BouncyCastle.Crypto.xml 1.4 MB

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  1. <?xml version="1.0"?>
  2. <doc>
  3. <assembly>
  4. <name>BouncyCastle.Crypto</name>
  5. </assembly>
  6. <members>
  7. <member name="M:Org.BouncyCastle.Asn1.Anssi.AnssiNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  8. return the X9ECParameters object for the named curve represented by
  9. the passed in object identifier. Null if the curve isn't present.
  10. @param oid an object identifier representing a named curve, if present.
  11. </member>
  12. <member name="M:Org.BouncyCastle.Asn1.Anssi.AnssiNamedCurves.GetOid(System.String)">
  13. return the object identifier signified by the passed in name. Null
  14. if there is no object identifier associated with name.
  15. @return the object identifier associated with name, if present.
  16. </member>
  17. <member name="M:Org.BouncyCastle.Asn1.Anssi.AnssiNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  18. return the named curve name represented by the given object identifier.
  19. </member>
  20. <member name="P:Org.BouncyCastle.Asn1.Anssi.AnssiNamedCurves.Names">
  21. returns an enumeration containing the name strings for curves
  22. contained in this structure.
  23. </member>
  24. <member name="M:Org.BouncyCastle.Asn1.Asn1Encodable.GetDerEncoded">
  25. Return the DER encoding of the object, null if the DER encoding can not be made.
  26. @return a DER byte array, null otherwise.
  27. </member>
  28. <member name="T:Org.BouncyCastle.Asn1.Asn1InputStream">
  29. a general purpose ASN.1 decoder - note: this class differs from the
  30. others in that it returns null after it has read the last object in
  31. the stream. If an ASN.1 Null is encountered a Der/BER Null object is
  32. returned.
  33. </member>
  34. <member name="M:Org.BouncyCastle.Asn1.Asn1InputStream.#ctor(System.IO.Stream,System.Int32)">
  35. Create an ASN1InputStream where no DER object will be longer than limit.
  36. @param input stream containing ASN.1 encoded data.
  37. @param limit maximum size of a DER encoded object.
  38. </member>
  39. <member name="M:Org.BouncyCastle.Asn1.Asn1InputStream.#ctor(System.Byte[])">
  40. Create an ASN1InputStream based on the input byte array. The length of DER objects in
  41. the stream is automatically limited to the length of the input array.
  42. @param input array containing ASN.1 encoded data.
  43. </member>
  44. <member name="M:Org.BouncyCastle.Asn1.Asn1InputStream.BuildObject(System.Int32,System.Int32,System.Int32)">
  45. build an object given its tag and the number of bytes to construct it from.
  46. </member>
  47. <member name="T:Org.BouncyCastle.Asn1.Asn1Null">
  48. A Null object.
  49. </member>
  50. <member name="M:Org.BouncyCastle.Asn1.Asn1Object.FromByteArray(System.Byte[])">
  51. <summary>Create a base ASN.1 object from a byte array.</summary>
  52. <param name="data">The byte array to parse.</param>
  53. <returns>The base ASN.1 object represented by the byte array.</returns>
  54. <exception cref="T:System.IO.IOException">
  55. If there is a problem parsing the data, or parsing an object did not exhaust the available data.
  56. </exception>
  57. </member>
  58. <member name="M:Org.BouncyCastle.Asn1.Asn1Object.FromStream(System.IO.Stream)">
  59. <summary>Read a base ASN.1 object from a stream.</summary>
  60. <param name="inStr">The stream to parse.</param>
  61. <returns>The base ASN.1 object represented by the byte array.</returns>
  62. <exception cref="T:System.IO.IOException">If there is a problem parsing the data.</exception>
  63. </member>
  64. <member name="M:Org.BouncyCastle.Asn1.Asn1OctetString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  65. return an Octet string from a tagged object.
  66. @param obj the tagged object holding the object we want.
  67. @param explicitly true if the object is meant to be explicitly
  68. tagged false otherwise.
  69. @exception ArgumentException if the tagged object cannot
  70. be converted.
  71. </member>
  72. <member name="M:Org.BouncyCastle.Asn1.Asn1OctetString.GetInstance(System.Object)">
  73. return an Octet string from the given object.
  74. @param obj the object we want converted.
  75. @exception ArgumentException if the object cannot be converted.
  76. </member>
  77. <member name="M:Org.BouncyCastle.Asn1.Asn1OctetString.#ctor(System.Byte[])">
  78. @param string the octets making up the octet string.
  79. </member>
  80. <member name="M:Org.BouncyCastle.Asn1.Asn1Sequence.GetInstance(System.Object)">
  81. return an Asn1Sequence from the given object.
  82. @param obj the object we want converted.
  83. @exception ArgumentException if the object cannot be converted.
  84. </member>
  85. <member name="M:Org.BouncyCastle.Asn1.Asn1Sequence.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  86. Return an ASN1 sequence from a tagged object. There is a special
  87. case here, if an object appears to have been explicitly tagged on
  88. reading but we were expecting it to be implicitly tagged in the
  89. normal course of events it indicates that we lost the surrounding
  90. sequence - so we need to add it back (this will happen if the tagged
  91. object is a sequence that contains other sequences). If you are
  92. dealing with implicitly tagged sequences you really <b>should</b>
  93. be using this method.
  94. @param obj the tagged object.
  95. @param explicitly true if the object is meant to be explicitly tagged,
  96. false otherwise.
  97. @exception ArgumentException if the tagged object cannot
  98. be converted.
  99. </member>
  100. <member name="P:Org.BouncyCastle.Asn1.Asn1Sequence.Item(System.Int32)">
  101. return the object at the sequence position indicated by index.
  102. @param index the sequence number (starting at zero) of the object
  103. @return the object at the sequence position indicated by index.
  104. </member>
  105. <member name="M:Org.BouncyCastle.Asn1.Asn1Set.GetInstance(System.Object)">
  106. return an ASN1Set from the given object.
  107. @param obj the object we want converted.
  108. @exception ArgumentException if the object cannot be converted.
  109. </member>
  110. <member name="M:Org.BouncyCastle.Asn1.Asn1Set.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  111. Return an ASN1 set from a tagged object. There is a special
  112. case here, if an object appears to have been explicitly tagged on
  113. reading but we were expecting it to be implicitly tagged in the
  114. normal course of events it indicates that we lost the surrounding
  115. set - so we need to add it back (this will happen if the tagged
  116. object is a sequence that contains other sequences). If you are
  117. dealing with implicitly tagged sets you really <b>should</b>
  118. be using this method.
  119. @param obj the tagged object.
  120. @param explicitly true if the object is meant to be explicitly tagged
  121. false otherwise.
  122. @exception ArgumentException if the tagged object cannot
  123. be converted.
  124. </member>
  125. <member name="P:Org.BouncyCastle.Asn1.Asn1Set.Item(System.Int32)">
  126. return the object at the set position indicated by index.
  127. @param index the set number (starting at zero) of the object
  128. @return the object at the set position indicated by index.
  129. </member>
  130. <member name="T:Org.BouncyCastle.Asn1.Asn1TaggedObject">
  131. ASN.1 TaggedObject - in ASN.1 notation this is any object preceded by
  132. a [n] where n is some number - these are assumed to follow the construction
  133. rules (as with sequences).
  134. </member>
  135. <member name="M:Org.BouncyCastle.Asn1.Asn1TaggedObject.#ctor(System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  136. @param tagNo the tag number for this object.
  137. @param obj the tagged object.
  138. </member>
  139. <member name="M:Org.BouncyCastle.Asn1.Asn1TaggedObject.#ctor(System.Boolean,System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  140. @param explicitly true if the object is explicitly tagged.
  141. @param tagNo the tag number for this object.
  142. @param obj the tagged object.
  143. </member>
  144. <member name="M:Org.BouncyCastle.Asn1.Asn1TaggedObject.IsExplicit">
  145. return whether or not the object may be explicitly tagged.
  146. <p>
  147. Note: if the object has been read from an input stream, the only
  148. time you can be sure if isExplicit is returning the true state of
  149. affairs is if it returns false. An implicitly tagged object may appear
  150. to be explicitly tagged, so you need to understand the context under
  151. which the reading was done as well, see GetObject below.</p>
  152. </member>
  153. <member name="M:Org.BouncyCastle.Asn1.Asn1TaggedObject.GetObject">
  154. return whatever was following the tag.
  155. <p>
  156. Note: tagged objects are generally context dependent if you're
  157. trying to extract a tagged object you should be going via the
  158. appropriate GetInstance method.</p>
  159. </member>
  160. <member name="M:Org.BouncyCastle.Asn1.Asn1TaggedObject.GetObjectParser(System.Int32,System.Boolean)">
  161. Return the object held in this tagged object as a parser assuming it has
  162. the type of the passed in tag. If the object doesn't have a parser
  163. associated with it, the base object is returned.
  164. </member>
  165. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc">
  166. iso.org.dod.internet.private.enterprise.legion-of-the-bouncy-castle
  167. <p>1.3.6.1.4.1.22554</p>
  168. </member>
  169. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe">
  170. pbe(1) algorithms
  171. <p>1.3.6.1.4.1.22554.1</p>
  172. </member>
  173. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1">
  174. SHA-1(1)
  175. <p>1.3.6.1.4.1.22554.1.1</p>
  176. </member>
  177. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256">
  178. SHA-2.SHA-256; 1.3.6.1.4.1.22554.1.2.1
  179. </member>
  180. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha384">
  181. SHA-2.SHA-384; 1.3.6.1.4.1.22554.1.2.2
  182. </member>
  183. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha512">
  184. SHA-2.SHA-512; 1.3.6.1.4.1.22554.1.2.3
  185. </member>
  186. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha224">
  187. SHA-2.SHA-224; 1.3.6.1.4.1.22554.1.2.4
  188. </member>
  189. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1_pkcs5">
  190. PKCS-5(1)|PKCS-12(2)
  191. SHA-1.PKCS5; 1.3.6.1.4.1.22554.1.1.1
  192. </member>
  193. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1_pkcs12">
  194. SHA-1.PKCS12; 1.3.6.1.4.1.22554.1.1.2
  195. </member>
  196. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256_pkcs5">
  197. SHA-256.PKCS12; 1.3.6.1.4.1.22554.1.2.1.1
  198. </member>
  199. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256_pkcs12">
  200. SHA-256.PKCS12; 1.3.6.1.4.1.22554.1.2.1.2
  201. </member>
  202. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1_pkcs12_aes128_cbc">
  203. AES(1) . (CBC-128(2)|CBC-192(22)|CBC-256(42))
  204. 1.3.6.1.4.1.22554.1.1.2.1.2
  205. </member>
  206. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1_pkcs12_aes192_cbc">
  207. 1.3.6.1.4.1.22554.1.1.2.1.22
  208. </member>
  209. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha1_pkcs12_aes256_cbc">
  210. 1.3.6.1.4.1.22554.1.1.2.1.42
  211. </member>
  212. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256_pkcs12_aes128_cbc">
  213. 1.3.6.1.4.1.22554.1.1.2.2.2
  214. </member>
  215. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256_pkcs12_aes192_cbc">
  216. 1.3.6.1.4.1.22554.1.1.2.2.22
  217. </member>
  218. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_pbe_sha256_pkcs12_aes256_cbc">
  219. 1.3.6.1.4.1.22554.1.1.2.2.42
  220. </member>
  221. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_sig">
  222. signature(2) algorithms
  223. </member>
  224. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.sphincs256">
  225. Sphincs-256
  226. </member>
  227. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.xmss">
  228. XMSS
  229. </member>
  230. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.xmss_mt">
  231. XMSS^MT
  232. </member>
  233. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.bc_exch">
  234. key_exchange(3) algorithms
  235. </member>
  236. <member name="F:Org.BouncyCastle.Asn1.BC.BCObjectIdentifiers.newHope">
  237. NewHope
  238. </member>
  239. <member name="T:Org.BouncyCastle.Asn1.BerNull">
  240. A BER Null object.
  241. </member>
  242. <member name="M:Org.BouncyCastle.Asn1.BerOctetString.ToBytes(System.Collections.IEnumerable)">
  243. convert a vector of octet strings into a single byte string
  244. </member>
  245. <member name="M:Org.BouncyCastle.Asn1.BerOctetString.#ctor(System.Byte[])">
  246. <param name="str">The octets making up the octet string.</param>
  247. </member>
  248. <member name="M:Org.BouncyCastle.Asn1.BerOctetString.GetEnumerator">
  249. return the DER octets that make up this string.
  250. </member>
  251. <member name="M:Org.BouncyCastle.Asn1.BerSequence.#ctor">
  252. create an empty sequence
  253. </member>
  254. <member name="M:Org.BouncyCastle.Asn1.BerSequence.#ctor(Org.BouncyCastle.Asn1.Asn1Encodable)">
  255. create a sequence containing one object
  256. </member>
  257. <member name="M:Org.BouncyCastle.Asn1.BerSequence.#ctor(Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  258. create a sequence containing a vector of objects.
  259. </member>
  260. <member name="M:Org.BouncyCastle.Asn1.BerSet.#ctor">
  261. create an empty sequence
  262. </member>
  263. <member name="M:Org.BouncyCastle.Asn1.BerSet.#ctor(Org.BouncyCastle.Asn1.Asn1Encodable)">
  264. create a set containing one object
  265. </member>
  266. <member name="M:Org.BouncyCastle.Asn1.BerSet.#ctor(Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  267. create a set containing a vector of objects.
  268. </member>
  269. <member name="T:Org.BouncyCastle.Asn1.BerTaggedObject">
  270. BER TaggedObject - in ASN.1 notation this is any object preceded by
  271. a [n] where n is some number - these are assumed to follow the construction
  272. rules (as with sequences).
  273. </member>
  274. <member name="M:Org.BouncyCastle.Asn1.BerTaggedObject.#ctor(System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  275. @param tagNo the tag number for this object.
  276. @param obj the tagged object.
  277. </member>
  278. <member name="M:Org.BouncyCastle.Asn1.BerTaggedObject.#ctor(System.Boolean,System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  279. @param explicitly true if an explicitly tagged object.
  280. @param tagNo the tag number for this object.
  281. @param obj the tagged object.
  282. </member>
  283. <member name="M:Org.BouncyCastle.Asn1.BerTaggedObject.#ctor(System.Int32)">
  284. create an implicitly tagged object that contains a zero
  285. length sequence.
  286. </member>
  287. <member name="T:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers">
  288. <remarks>See https://www.bsi.bund.de/cae/servlet/contentblob/471398/publicationFile/30615/BSI-TR-03111_pdf.pdf</remarks>
  289. </member>
  290. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.algorithm">
  291. 0.4.0.127.0.7.1
  292. </member>
  293. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf">
  294. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963 OID: 0.4.0.127.0.7.1.1.5.1.1
  295. </member>
  296. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_SHA1">
  297. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  298. with hash function SHA-1
  299. OID: 0.4.0.127.0.7.1.1.5.1.1.1
  300. </member>
  301. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_SHA224">
  302. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  303. with hash function SHA224
  304. OID: 0.4.0.127.0.7.1.1.5.1.1.2
  305. </member>
  306. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_SHA256">
  307. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  308. with hash function SHA256
  309. OID: 0.4.0.127.0.7.1.1.5.1.1.3
  310. </member>
  311. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_SHA384">
  312. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  313. with hash function SHA384
  314. OID: 0.4.0.127.0.7.1.1.5.1.1.4
  315. </member>
  316. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_SHA512">
  317. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  318. with hash function SHA512
  319. OID: 0.4.0.127.0.7.1.1.5.1.1.5
  320. </member>
  321. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_X963kdf_RIPEMD160">
  322. ElGamal Elliptic Curve Key Agreement and Key Derivation according to X963
  323. with hash function RIPEMD160
  324. OID: 0.4.0.127.0.7.1.1.5.1.1.6
  325. </member>
  326. <member name="F:Org.BouncyCastle.Asn1.Bsi.BsiObjectIdentifiers.ecka_eg_SessionKDF">
  327. Key Derivation Function for Session Keys
  328. </member>
  329. <member name="M:Org.BouncyCastle.Asn1.Cmp.CAKeyUpdAnnContent.ToAsn1Object">
  330. <pre>
  331. CAKeyUpdAnnContent ::= SEQUENCE {
  332. oldWithNew CmpCertificate, -- old pub signed with new priv
  333. newWithOld CmpCertificate, -- new pub signed with old priv
  334. newWithNew CmpCertificate -- new pub signed with new priv
  335. }
  336. </pre>
  337. @return a basic ASN.1 object representation.
  338. </member>
  339. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertConfirmContent.ToAsn1Object">
  340. <pre>
  341. CertConfirmContent ::= SEQUENCE OF CertStatus
  342. </pre>
  343. @return a basic ASN.1 object representation.
  344. </member>
  345. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertifiedKeyPair.ToAsn1Object">
  346. <pre>
  347. CertifiedKeyPair ::= SEQUENCE {
  348. certOrEncCert CertOrEncCert,
  349. privateKey [0] EncryptedValue OPTIONAL,
  350. -- see [CRMF] for comment on encoding
  351. publicationInfo [1] PKIPublicationInfo OPTIONAL
  352. }
  353. </pre>
  354. @return a basic ASN.1 object representation.
  355. </member>
  356. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertOrEncCert.ToAsn1Object">
  357. <pre>
  358. CertOrEncCert ::= CHOICE {
  359. certificate [0] CMPCertificate,
  360. encryptedCert [1] EncryptedValue
  361. }
  362. </pre>
  363. @return a basic ASN.1 object representation.
  364. </member>
  365. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertRepMessage.ToAsn1Object">
  366. <pre>
  367. CertRepMessage ::= SEQUENCE {
  368. caPubs [1] SEQUENCE SIZE (1..MAX) OF CMPCertificate
  369. OPTIONAL,
  370. response SEQUENCE OF CertResponse
  371. }
  372. </pre>
  373. @return a basic ASN.1 object representation.
  374. </member>
  375. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertResponse.ToAsn1Object">
  376. <pre>
  377. CertResponse ::= SEQUENCE {
  378. certReqId INTEGER,
  379. -- to match this response with corresponding request (a value
  380. -- of -1 is to be used if certReqId is not specified in the
  381. -- corresponding request)
  382. status PKIStatusInfo,
  383. certifiedKeyPair CertifiedKeyPair OPTIONAL,
  384. rspInfo OCTET STRING OPTIONAL
  385. -- analogous to the id-regInfo-utf8Pairs string defined
  386. -- for regInfo in CertReqMsg [CRMF]
  387. }
  388. </pre>
  389. @return a basic ASN.1 object representation.
  390. </member>
  391. <member name="M:Org.BouncyCastle.Asn1.Cmp.CertStatus.ToAsn1Object">
  392. <pre>
  393. CertStatus ::= SEQUENCE {
  394. certHash OCTET STRING,
  395. -- the hash of the certificate, using the same hash algorithm
  396. -- as is used to create and verify the certificate signature
  397. certReqId INTEGER,
  398. -- to match this confirmation with the corresponding req/rep
  399. statusInfo PKIStatusInfo OPTIONAL
  400. }
  401. </pre>
  402. @return a basic ASN.1 object representation.
  403. </member>
  404. <member name="M:Org.BouncyCastle.Asn1.Cmp.Challenge.ToAsn1Object">
  405. <pre>
  406. Challenge ::= SEQUENCE {
  407. owf AlgorithmIdentifier OPTIONAL,
  408. -- MUST be present in the first Challenge; MAY be omitted in
  409. -- any subsequent Challenge in POPODecKeyChallContent (if
  410. -- omitted, then the owf used in the immediately preceding
  411. -- Challenge is to be used).
  412. witness OCTET STRING,
  413. -- the result of applying the one-way function (owf) to a
  414. -- randomly-generated INTEGER, A. [Note that a different
  415. -- INTEGER MUST be used for each Challenge.]
  416. challenge OCTET STRING
  417. -- the encryption (under the public key for which the cert.
  418. -- request is being made) of Rand, where Rand is specified as
  419. -- Rand ::= SEQUENCE {
  420. -- int INTEGER,
  421. -- - the randomly-generated INTEGER A (above)
  422. -- sender GeneralName
  423. -- - the sender's name (as included in PKIHeader)
  424. -- }
  425. }
  426. </pre>
  427. @return a basic ASN.1 object representation.
  428. </member>
  429. <member name="M:Org.BouncyCastle.Asn1.Cmp.CmpCertificate.#ctor(Org.BouncyCastle.Asn1.X509.AttributeCertificate)">
  430. Note: the addition of attribute certificates is a BC extension.
  431. </member>
  432. <member name="M:Org.BouncyCastle.Asn1.Cmp.CmpCertificate.ToAsn1Object">
  433. <pre>
  434. CMPCertificate ::= CHOICE {
  435. x509v3PKCert Certificate
  436. x509v2AttrCert [1] AttributeCertificate
  437. }
  438. </pre>
  439. Note: the addition of attribute certificates is a BC extension.
  440. @return a basic ASN.1 object representation.
  441. </member>
  442. <member name="M:Org.BouncyCastle.Asn1.Cmp.CrlAnnContent.ToAsn1Object">
  443. <pre>
  444. CrlAnnContent ::= SEQUENCE OF CertificateList
  445. </pre>
  446. @return a basic ASN.1 object representation.
  447. </member>
  448. <member name="M:Org.BouncyCastle.Asn1.Cmp.ErrorMsgContent.ToAsn1Object">
  449. <pre>
  450. ErrorMsgContent ::= SEQUENCE {
  451. pKIStatusInfo PKIStatusInfo,
  452. errorCode INTEGER OPTIONAL,
  453. -- implementation-specific error codes
  454. errorDetails PKIFreeText OPTIONAL
  455. -- implementation-specific error details
  456. }
  457. </pre>
  458. @return a basic ASN.1 object representation.
  459. </member>
  460. <member name="M:Org.BouncyCastle.Asn1.Cmp.GenMsgContent.ToAsn1Object">
  461. <pre>
  462. GenMsgContent ::= SEQUENCE OF InfoTypeAndValue
  463. </pre>
  464. @return a basic ASN.1 object representation.
  465. </member>
  466. <member name="M:Org.BouncyCastle.Asn1.Cmp.GenRepContent.ToAsn1Object">
  467. <pre>
  468. GenRepContent ::= SEQUENCE OF InfoTypeAndValue
  469. </pre>
  470. @return a basic ASN.1 object representation.
  471. </member>
  472. <member name="T:Org.BouncyCastle.Asn1.Cmp.InfoTypeAndValue">
  473. Example InfoTypeAndValue contents include, but are not limited
  474. to, the following (un-comment in this ASN.1 module and use as
  475. appropriate for a given environment):
  476. <pre>
  477. id-it-caProtEncCert OBJECT IDENTIFIER ::= {id-it 1}
  478. CAProtEncCertValue ::= CMPCertificate
  479. id-it-signKeyPairTypes OBJECT IDENTIFIER ::= {id-it 2}
  480. SignKeyPairTypesValue ::= SEQUENCE OF AlgorithmIdentifier
  481. id-it-encKeyPairTypes OBJECT IDENTIFIER ::= {id-it 3}
  482. EncKeyPairTypesValue ::= SEQUENCE OF AlgorithmIdentifier
  483. id-it-preferredSymmAlg OBJECT IDENTIFIER ::= {id-it 4}
  484. PreferredSymmAlgValue ::= AlgorithmIdentifier
  485. id-it-caKeyUpdateInfo OBJECT IDENTIFIER ::= {id-it 5}
  486. CAKeyUpdateInfoValue ::= CAKeyUpdAnnContent
  487. id-it-currentCRL OBJECT IDENTIFIER ::= {id-it 6}
  488. CurrentCRLValue ::= CertificateList
  489. id-it-unsupportedOIDs OBJECT IDENTIFIER ::= {id-it 7}
  490. UnsupportedOIDsValue ::= SEQUENCE OF OBJECT IDENTIFIER
  491. id-it-keyPairParamReq OBJECT IDENTIFIER ::= {id-it 10}
  492. KeyPairParamReqValue ::= OBJECT IDENTIFIER
  493. id-it-keyPairParamRep OBJECT IDENTIFIER ::= {id-it 11}
  494. KeyPairParamRepValue ::= AlgorithmIdentifer
  495. id-it-revPassphrase OBJECT IDENTIFIER ::= {id-it 12}
  496. RevPassphraseValue ::= EncryptedValue
  497. id-it-implicitConfirm OBJECT IDENTIFIER ::= {id-it 13}
  498. ImplicitConfirmValue ::= NULL
  499. id-it-confirmWaitTime OBJECT IDENTIFIER ::= {id-it 14}
  500. ConfirmWaitTimeValue ::= GeneralizedTime
  501. id-it-origPKIMessage OBJECT IDENTIFIER ::= {id-it 15}
  502. OrigPKIMessageValue ::= PKIMessages
  503. id-it-suppLangTags OBJECT IDENTIFIER ::= {id-it 16}
  504. SuppLangTagsValue ::= SEQUENCE OF UTF8String
  505. where
  506. id-pkix OBJECT IDENTIFIER ::= {
  507. iso(1) identified-organization(3)
  508. dod(6) internet(1) security(5) mechanisms(5) pkix(7)}
  509. and
  510. id-it OBJECT IDENTIFIER ::= {id-pkix 4}
  511. </pre>
  512. </member>
  513. <member name="M:Org.BouncyCastle.Asn1.Cmp.InfoTypeAndValue.ToAsn1Object">
  514. <pre>
  515. InfoTypeAndValue ::= SEQUENCE {
  516. infoType OBJECT IDENTIFIER,
  517. infoValue ANY DEFINED BY infoType OPTIONAL
  518. }
  519. </pre>
  520. @return a basic ASN.1 object representation.
  521. </member>
  522. <member name="M:Org.BouncyCastle.Asn1.Cmp.KeyRecRepContent.ToAsn1Object">
  523. <pre>
  524. KeyRecRepContent ::= SEQUENCE {
  525. status PKIStatusInfo,
  526. newSigCert [0] CMPCertificate OPTIONAL,
  527. caCerts [1] SEQUENCE SIZE (1..MAX) OF
  528. CMPCertificate OPTIONAL,
  529. keyPairHist [2] SEQUENCE SIZE (1..MAX) OF
  530. CertifiedKeyPair OPTIONAL
  531. }
  532. </pre>
  533. @return a basic ASN.1 object representation.
  534. </member>
  535. <member name="M:Org.BouncyCastle.Asn1.Cmp.OobCertHash.ToAsn1Object">
  536. <pre>
  537. OobCertHash ::= SEQUENCE {
  538. hashAlg [0] AlgorithmIdentifier OPTIONAL,
  539. certId [1] CertId OPTIONAL,
  540. hashVal BIT STRING
  541. -- hashVal is calculated over the Der encoding of the
  542. -- self-signed certificate with the identifier certID.
  543. }
  544. </pre>
  545. @return a basic ASN.1 object representation.
  546. </member>
  547. <member name="M:Org.BouncyCastle.Asn1.Cmp.PbmParameter.ToAsn1Object">
  548. <pre>
  549. PbmParameter ::= SEQUENCE {
  550. salt OCTET STRING,
  551. -- note: implementations MAY wish to limit acceptable sizes
  552. -- of this string to values appropriate for their environment
  553. -- in order to reduce the risk of denial-of-service attacks
  554. owf AlgorithmIdentifier,
  555. -- AlgId for a One-Way Function (SHA-1 recommended)
  556. iterationCount INTEGER,
  557. -- number of times the OWF is applied
  558. -- note: implementations MAY wish to limit acceptable sizes
  559. -- of this integer to values appropriate for their environment
  560. -- in order to reduce the risk of denial-of-service attacks
  561. mac AlgorithmIdentifier
  562. -- the MAC AlgId (e.g., DES-MAC, Triple-DES-MAC [PKCS11],
  563. } -- or HMAC [RFC2104, RFC2202])
  564. </pre>
  565. @return a basic ASN.1 object representation.
  566. </member>
  567. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiBody.#ctor(System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  568. Creates a new PkiBody.
  569. @param type one of the TYPE_* constants
  570. @param content message content
  571. </member>
  572. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiBody.ToAsn1Object">
  573. <pre>
  574. PkiBody ::= CHOICE { -- message-specific body elements
  575. ir [0] CertReqMessages, --Initialization Request
  576. ip [1] CertRepMessage, --Initialization Response
  577. cr [2] CertReqMessages, --Certification Request
  578. cp [3] CertRepMessage, --Certification Response
  579. p10cr [4] CertificationRequest, --imported from [PKCS10]
  580. popdecc [5] POPODecKeyChallContent, --pop Challenge
  581. popdecr [6] POPODecKeyRespContent, --pop Response
  582. kur [7] CertReqMessages, --Key Update Request
  583. kup [8] CertRepMessage, --Key Update Response
  584. krr [9] CertReqMessages, --Key Recovery Request
  585. krp [10] KeyRecRepContent, --Key Recovery Response
  586. rr [11] RevReqContent, --Revocation Request
  587. rp [12] RevRepContent, --Revocation Response
  588. ccr [13] CertReqMessages, --Cross-Cert. Request
  589. ccp [14] CertRepMessage, --Cross-Cert. Response
  590. ckuann [15] CAKeyUpdAnnContent, --CA Key Update Ann.
  591. cann [16] CertAnnContent, --Certificate Ann.
  592. rann [17] RevAnnContent, --Revocation Ann.
  593. crlann [18] CRLAnnContent, --CRL Announcement
  594. pkiconf [19] PKIConfirmContent, --Confirmation
  595. nested [20] NestedMessageContent, --Nested Message
  596. genm [21] GenMsgContent, --General Message
  597. genp [22] GenRepContent, --General Response
  598. error [23] ErrorMsgContent, --Error Message
  599. certConf [24] CertConfirmContent, --Certificate confirm
  600. pollReq [25] PollReqContent, --Polling request
  601. pollRep [26] PollRepContent --Polling response
  602. }
  603. </pre>
  604. @return a basic ASN.1 object representation.
  605. </member>
  606. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiConfirmContent.ToAsn1Object">
  607. <pre>
  608. PkiConfirmContent ::= NULL
  609. </pre>
  610. @return a basic ASN.1 object representation.
  611. </member>
  612. <member name="T:Org.BouncyCastle.Asn1.Cmp.PkiFailureInfo">
  613. <pre>
  614. PKIFailureInfo ::= BIT STRING {
  615. badAlg (0),
  616. -- unrecognized or unsupported Algorithm Identifier
  617. badMessageCheck (1), -- integrity check failed (e.g., signature did not verify)
  618. badRequest (2),
  619. -- transaction not permitted or supported
  620. badTime (3), -- messageTime was not sufficiently close to the system time, as defined by local policy
  621. badCertId (4), -- no certificate could be found matching the provided criteria
  622. badDataFormat (5),
  623. -- the data submitted has the wrong format
  624. wrongAuthority (6), -- the authority indicated in the request is different from the one creating the response token
  625. incorrectData (7), -- the requester's data is incorrect (for notary services)
  626. missingTimeStamp (8), -- when the timestamp is missing but should be there (by policy)
  627. badPOP (9) -- the proof-of-possession failed
  628. certRevoked (10),
  629. certConfirmed (11),
  630. wrongIntegrity (12),
  631. badRecipientNonce (13),
  632. timeNotAvailable (14),
  633. -- the TSA's time source is not available
  634. unacceptedPolicy (15),
  635. -- the requested TSA policy is not supported by the TSA
  636. unacceptedExtension (16),
  637. -- the requested extension is not supported by the TSA
  638. addInfoNotAvailable (17)
  639. -- the additional information requested could not be understood
  640. -- or is not available
  641. badSenderNonce (18),
  642. badCertTemplate (19),
  643. signerNotTrusted (20),
  644. transactionIdInUse (21),
  645. unsupportedVersion (22),
  646. notAuthorized (23),
  647. systemUnavail (24),
  648. systemFailure (25),
  649. -- the request cannot be handled due to system failure
  650. duplicateCertReq (26)
  651. </pre>
  652. </member>
  653. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiFailureInfo.#ctor(System.Int32)">
  654. Basic constructor.
  655. </member>
  656. <member name="P:Org.BouncyCastle.Asn1.Cmp.PkiFreeText.Size">
  657. Return the number of string elements present.
  658. @return number of elements present.
  659. </member>
  660. <member name="P:Org.BouncyCastle.Asn1.Cmp.PkiFreeText.Item(System.Int32)">
  661. Return the UTF8STRING at index.
  662. @param index index of the string of interest
  663. @return the string at index.
  664. </member>
  665. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiFreeText.ToAsn1Object">
  666. <pre>
  667. PkiFreeText ::= SEQUENCE SIZE (1..MAX) OF UTF8String
  668. </pre>
  669. </member>
  670. <member name="F:Org.BouncyCastle.Asn1.Cmp.PkiHeader.NULL_NAME">
  671. Value for a "null" recipient or sender.
  672. </member>
  673. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiHeader.ToAsn1Object">
  674. <pre>
  675. PkiHeader ::= SEQUENCE {
  676. pvno INTEGER { cmp1999(1), cmp2000(2) },
  677. sender GeneralName,
  678. -- identifies the sender
  679. recipient GeneralName,
  680. -- identifies the intended recipient
  681. messageTime [0] GeneralizedTime OPTIONAL,
  682. -- time of production of this message (used when sender
  683. -- believes that the transport will be "suitable"; i.e.,
  684. -- that the time will still be meaningful upon receipt)
  685. protectionAlg [1] AlgorithmIdentifier OPTIONAL,
  686. -- algorithm used for calculation of protection bits
  687. senderKID [2] KeyIdentifier OPTIONAL,
  688. recipKID [3] KeyIdentifier OPTIONAL,
  689. -- to identify specific keys used for protection
  690. transactionID [4] OCTET STRING OPTIONAL,
  691. -- identifies the transaction; i.e., this will be the same in
  692. -- corresponding request, response, certConf, and PKIConf
  693. -- messages
  694. senderNonce [5] OCTET STRING OPTIONAL,
  695. recipNonce [6] OCTET STRING OPTIONAL,
  696. -- nonces used to provide replay protection, senderNonce
  697. -- is inserted by the creator of this message; recipNonce
  698. -- is a nonce previously inserted in a related message by
  699. -- the intended recipient of this message
  700. freeText [7] PKIFreeText OPTIONAL,
  701. -- this may be used to indicate context-specific instructions
  702. -- (this field is intended for human consumption)
  703. generalInfo [8] SEQUENCE SIZE (1..MAX) OF
  704. InfoTypeAndValue OPTIONAL
  705. -- this may be used to convey context-specific information
  706. -- (this field not primarily intended for human consumption)
  707. }
  708. </pre>
  709. @return a basic ASN.1 object representation.
  710. </member>
  711. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiHeaderBuilder.Build">
  712. <pre>
  713. PKIHeader ::= SEQUENCE {
  714. pvno INTEGER { cmp1999(1), cmp2000(2) },
  715. sender GeneralName,
  716. -- identifies the sender
  717. recipient GeneralName,
  718. -- identifies the intended recipient
  719. messageTime [0] GeneralizedTime OPTIONAL,
  720. -- time of production of this message (used when sender
  721. -- believes that the transport will be "suitable"; i.e.,
  722. -- that the time will still be meaningful upon receipt)
  723. protectionAlg [1] AlgorithmIdentifier OPTIONAL,
  724. -- algorithm used for calculation of protection bits
  725. senderKID [2] KeyIdentifier OPTIONAL,
  726. recipKID [3] KeyIdentifier OPTIONAL,
  727. -- to identify specific keys used for protection
  728. transactionID [4] OCTET STRING OPTIONAL,
  729. -- identifies the transaction; i.e., this will be the same in
  730. -- corresponding request, response, certConf, and PKIConf
  731. -- messages
  732. senderNonce [5] OCTET STRING OPTIONAL,
  733. recipNonce [6] OCTET STRING OPTIONAL,
  734. -- nonces used to provide replay protection, senderNonce
  735. -- is inserted by the creator of this message; recipNonce
  736. -- is a nonce previously inserted in a related message by
  737. -- the intended recipient of this message
  738. freeText [7] PKIFreeText OPTIONAL,
  739. -- this may be used to indicate context-specific instructions
  740. -- (this field is intended for human consumption)
  741. generalInfo [8] SEQUENCE SIZE (1..MAX) OF
  742. InfoTypeAndValue OPTIONAL
  743. -- this may be used to convey context-specific information
  744. -- (this field not primarily intended for human consumption)
  745. }
  746. </pre>
  747. @return a basic ASN.1 object representation.
  748. </member>
  749. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiMessage.#ctor(Org.BouncyCastle.Asn1.Cmp.PkiHeader,Org.BouncyCastle.Asn1.Cmp.PkiBody,Org.BouncyCastle.Asn1.DerBitString,Org.BouncyCastle.Asn1.Cmp.CmpCertificate[])">
  750. Creates a new PkiMessage.
  751. @param header message header
  752. @param body message body
  753. @param protection message protection (may be null)
  754. @param extraCerts extra certificates (may be null)
  755. </member>
  756. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiMessage.ToAsn1Object">
  757. <pre>
  758. PkiMessage ::= SEQUENCE {
  759. header PKIHeader,
  760. body PKIBody,
  761. protection [0] PKIProtection OPTIONAL,
  762. extraCerts [1] SEQUENCE SIZE (1..MAX) OF CMPCertificate
  763. OPTIONAL
  764. }
  765. </pre>
  766. @return a basic ASN.1 object representation.
  767. </member>
  768. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiMessages.ToAsn1Object">
  769. <pre>
  770. PkiMessages ::= SEQUENCE SIZE (1..MAX) OF PkiMessage
  771. </pre>
  772. @return a basic ASN.1 object representation.
  773. </member>
  774. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiStatusInfo.#ctor(System.Int32)">
  775. @param status
  776. </member>
  777. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiStatusInfo.#ctor(System.Int32,Org.BouncyCastle.Asn1.Cmp.PkiFreeText)">
  778. @param status
  779. @param statusString
  780. </member>
  781. <member name="M:Org.BouncyCastle.Asn1.Cmp.PkiStatusInfo.ToAsn1Object">
  782. <pre>
  783. PkiStatusInfo ::= SEQUENCE {
  784. status PKIStatus, (INTEGER)
  785. statusString PkiFreeText OPTIONAL,
  786. failInfo PkiFailureInfo OPTIONAL (BIT STRING)
  787. }
  788. PKIStatus:
  789. granted (0), -- you got exactly what you asked for
  790. grantedWithMods (1), -- you got something like what you asked for
  791. rejection (2), -- you don't get it, more information elsewhere in the message
  792. waiting (3), -- the request body part has not yet been processed, expect to hear more later
  793. revocationWarning (4), -- this message contains a warning that a revocation is imminent
  794. revocationNotification (5), -- notification that a revocation has occurred
  795. keyUpdateWarning (6) -- update already done for the oldCertId specified in CertReqMsg
  796. PkiFailureInfo:
  797. badAlg (0), -- unrecognized or unsupported Algorithm Identifier
  798. badMessageCheck (1), -- integrity check failed (e.g., signature did not verify)
  799. badRequest (2), -- transaction not permitted or supported
  800. badTime (3), -- messageTime was not sufficiently close to the system time, as defined by local policy
  801. badCertId (4), -- no certificate could be found matching the provided criteria
  802. badDataFormat (5), -- the data submitted has the wrong format
  803. wrongAuthority (6), -- the authority indicated in the request is different from the one creating the response token
  804. incorrectData (7), -- the requester's data is incorrect (for notary services)
  805. missingTimeStamp (8), -- when the timestamp is missing but should be there (by policy)
  806. badPOP (9) -- the proof-of-possession failed
  807. </pre>
  808. </member>
  809. <member name="M:Org.BouncyCastle.Asn1.Cmp.PollRepContent.ToAsn1Object">
  810. <pre>
  811. PollRepContent ::= SEQUENCE OF SEQUENCE {
  812. certReqId INTEGER,
  813. checkAfter INTEGER, -- time in seconds
  814. reason PKIFreeText OPTIONAL
  815. }
  816. </pre>
  817. @return a basic ASN.1 object representation.
  818. </member>
  819. <member name="M:Org.BouncyCastle.Asn1.Cmp.PollReqContent.ToAsn1Object">
  820. <pre>
  821. PollReqContent ::= SEQUENCE OF SEQUENCE {
  822. certReqId INTEGER
  823. }
  824. </pre>
  825. @return a basic ASN.1 object representation.
  826. </member>
  827. <member name="M:Org.BouncyCastle.Asn1.Cmp.PopoDecKeyChallContent.ToAsn1Object">
  828. <pre>
  829. PopoDecKeyChallContent ::= SEQUENCE OF Challenge
  830. </pre>
  831. @return a basic ASN.1 object representation.
  832. </member>
  833. <member name="M:Org.BouncyCastle.Asn1.Cmp.PopoDecKeyRespContent.ToAsn1Object">
  834. <pre>
  835. PopoDecKeyRespContent ::= SEQUENCE OF INTEGER
  836. </pre>
  837. @return a basic ASN.1 object representation.
  838. </member>
  839. <member name="M:Org.BouncyCastle.Asn1.Cmp.ProtectedPart.ToAsn1Object">
  840. <pre>
  841. ProtectedPart ::= SEQUENCE {
  842. header PKIHeader,
  843. body PKIBody
  844. }
  845. </pre>
  846. @return a basic ASN.1 object representation.
  847. </member>
  848. <member name="M:Org.BouncyCastle.Asn1.Cmp.RevAnnContent.ToAsn1Object">
  849. <pre>
  850. RevAnnContent ::= SEQUENCE {
  851. status PKIStatus,
  852. certId CertId,
  853. willBeRevokedAt GeneralizedTime,
  854. badSinceDate GeneralizedTime,
  855. crlDetails Extensions OPTIONAL
  856. -- extra CRL details (e.g., crl number, reason, location, etc.)
  857. }
  858. </pre>
  859. @return a basic ASN.1 object representation.
  860. </member>
  861. <member name="M:Org.BouncyCastle.Asn1.Cmp.RevDetails.ToAsn1Object">
  862. <pre>
  863. RevDetails ::= SEQUENCE {
  864. certDetails CertTemplate,
  865. -- allows requester to specify as much as they can about
  866. -- the cert. for which revocation is requested
  867. -- (e.g., for cases in which serialNumber is not available)
  868. crlEntryDetails Extensions OPTIONAL
  869. -- requested crlEntryExtensions
  870. }
  871. </pre>
  872. @return a basic ASN.1 object representation.
  873. </member>
  874. <member name="M:Org.BouncyCastle.Asn1.Cmp.RevRepContent.ToAsn1Object">
  875. <pre>
  876. RevRepContent ::= SEQUENCE {
  877. status SEQUENCE SIZE (1..MAX) OF PKIStatusInfo,
  878. -- in same order as was sent in RevReqContent
  879. revCerts [0] SEQUENCE SIZE (1..MAX) OF CertId OPTIONAL,
  880. -- IDs for which revocation was requested
  881. -- (same order as status)
  882. crls [1] SEQUENCE SIZE (1..MAX) OF CertificateList OPTIONAL
  883. -- the resulting CRLs (there may be more than one)
  884. }
  885. </pre>
  886. @return a basic ASN.1 object representation.
  887. </member>
  888. <member name="M:Org.BouncyCastle.Asn1.Cmp.RevReqContent.ToAsn1Object">
  889. <pre>
  890. RevReqContent ::= SEQUENCE OF RevDetails
  891. </pre>
  892. @return a basic ASN.1 object representation.
  893. </member>
  894. <member name="M:Org.BouncyCastle.Asn1.Cms.Attribute.GetInstance(System.Object)">
  895. return an Attribute object from the given object.
  896. @param o the object we want converted.
  897. @exception ArgumentException if the object cannot be converted.
  898. </member>
  899. <member name="M:Org.BouncyCastle.Asn1.Cms.Attribute.ToAsn1Object">
  900. Produce an object suitable for an Asn1OutputStream.
  901. <pre>
  902. Attribute ::= SEQUENCE {
  903. attrType OBJECT IDENTIFIER,
  904. attrValues SET OF AttributeValue
  905. }
  906. </pre>
  907. </member>
  908. <member name="M:Org.BouncyCastle.Asn1.Cms.Attributes.ToAsn1Object">
  909. <pre>
  910. Attributes ::=
  911. SET SIZE(1..MAX) OF Attribute -- according to RFC 5652
  912. </pre>
  913. @return
  914. </member>
  915. <member name="P:Org.BouncyCastle.Asn1.Cms.AttributeTable.Item(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  916. <summary>Return the first attribute matching the given OBJECT IDENTIFIER</summary>
  917. </member>
  918. <member name="M:Org.BouncyCastle.Asn1.Cms.AttributeTable.GetAll(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  919. Return all the attributes matching the OBJECT IDENTIFIER oid. The vector will be
  920. empty if there are no attributes of the required type present.
  921. @param oid type of attribute required.
  922. @return a vector of all the attributes found of type oid.
  923. </member>
  924. <member name="M:Org.BouncyCastle.Asn1.Cms.AttributeTable.Add(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.Asn1Encodable)">
  925. Return a new table with the passed in attribute added.
  926. @param attrType
  927. @param attrValue
  928. @return
  929. </member>
  930. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthenticatedData.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  931. return an AuthenticatedData object from a tagged object.
  932. @param obj the tagged object holding the object we want.
  933. @param isExplicit true if the object is meant to be explicitly
  934. tagged false otherwise.
  935. @throws ArgumentException if the object held by the
  936. tagged object cannot be converted.
  937. </member>
  938. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthenticatedData.GetInstance(System.Object)">
  939. return an AuthenticatedData object from the given object.
  940. @param obj the object we want converted.
  941. @throws ArgumentException if the object cannot be converted.
  942. </member>
  943. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthenticatedData.ToAsn1Object">
  944. Produce an object suitable for an Asn1OutputStream.
  945. <pre>
  946. AuthenticatedData ::= SEQUENCE {
  947. version CMSVersion,
  948. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  949. recipientInfos RecipientInfos,
  950. macAlgorithm MessageAuthenticationCodeAlgorithm,
  951. digestAlgorithm [1] DigestAlgorithmIdentifier OPTIONAL,
  952. encapContentInfo EncapsulatedContentInfo,
  953. authAttrs [2] IMPLICIT AuthAttributes OPTIONAL,
  954. mac MessageAuthenticationCode,
  955. unauthAttrs [3] IMPLICIT UnauthAttributes OPTIONAL }
  956. AuthAttributes ::= SET SIZE (1..MAX) OF Attribute
  957. UnauthAttributes ::= SET SIZE (1..MAX) OF Attribute
  958. MessageAuthenticationCode ::= OCTET STRING
  959. </pre>
  960. </member>
  961. <member name="T:Org.BouncyCastle.Asn1.Cms.AuthenticatedDataParser">
  962. Produce an object suitable for an Asn1OutputStream.
  963. <pre>
  964. AuthenticatedData ::= SEQUENCE {
  965. version CMSVersion,
  966. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  967. recipientInfos RecipientInfos,
  968. macAlgorithm MessageAuthenticationCodeAlgorithm,
  969. digestAlgorithm [1] DigestAlgorithmIdentifier OPTIONAL,
  970. encapContentInfo EncapsulatedContentInfo,
  971. authAttrs [2] IMPLICIT AuthAttributes OPTIONAL,
  972. mac MessageAuthenticationCode,
  973. unauthAttrs [3] IMPLICIT UnauthAttributes OPTIONAL }
  974. AuthAttributes ::= SET SIZE (1..MAX) OF Attribute
  975. UnauthAttributes ::= SET SIZE (1..MAX) OF Attribute
  976. MessageAuthenticationCode ::= OCTET STRING
  977. </pre>
  978. </member>
  979. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthEnvelopedData.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  980. return an AuthEnvelopedData object from a tagged object.
  981. @param obj the tagged object holding the object we want.
  982. @param isExplicit true if the object is meant to be explicitly
  983. tagged false otherwise.
  984. @throws ArgumentException if the object held by the
  985. tagged object cannot be converted.
  986. </member>
  987. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthEnvelopedData.GetInstance(System.Object)">
  988. return an AuthEnvelopedData object from the given object.
  989. @param obj the object we want converted.
  990. @throws ArgumentException if the object cannot be converted.
  991. </member>
  992. <member name="M:Org.BouncyCastle.Asn1.Cms.AuthEnvelopedData.ToAsn1Object">
  993. Produce an object suitable for an Asn1OutputStream.
  994. <pre>
  995. AuthEnvelopedData ::= SEQUENCE {
  996. version CMSVersion,
  997. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  998. recipientInfos RecipientInfos,
  999. authEncryptedContentInfo EncryptedContentInfo,
  1000. authAttrs [1] IMPLICIT AuthAttributes OPTIONAL,
  1001. mac MessageAuthenticationCode,
  1002. unauthAttrs [2] IMPLICIT UnauthAttributes OPTIONAL }
  1003. </pre>
  1004. </member>
  1005. <member name="T:Org.BouncyCastle.Asn1.Cms.AuthEnvelopedDataParser">
  1006. Produce an object suitable for an Asn1OutputStream.
  1007. <pre>
  1008. AuthEnvelopedData ::= SEQUENCE {
  1009. version CMSVersion,
  1010. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  1011. recipientInfos RecipientInfos,
  1012. authEncryptedContentInfo EncryptedContentInfo,
  1013. authAttrs [1] IMPLICIT AuthAttributes OPTIONAL,
  1014. mac MessageAuthenticationCode,
  1015. unauthAttrs [2] IMPLICIT UnauthAttributes OPTIONAL }
  1016. </pre>
  1017. </member>
  1018. <member name="F:Org.BouncyCastle.Asn1.Cms.CmsObjectIdentifiers.id_ri">
  1019. The other Revocation Info arc
  1020. id-ri OBJECT IDENTIFIER ::= { iso(1) identified-organization(3)
  1021. dod(6) internet(1) security(5) mechanisms(5) pkix(7) ri(16) }
  1022. </member>
  1023. <member name="T:Org.BouncyCastle.Asn1.Cms.CompressedData">
  1024. RFC 3274 - CMS Compressed Data.
  1025. <pre>
  1026. CompressedData ::= Sequence {
  1027. version CMSVersion,
  1028. compressionAlgorithm CompressionAlgorithmIdentifier,
  1029. encapContentInfo EncapsulatedContentInfo
  1030. }
  1031. </pre>
  1032. </member>
  1033. <member name="M:Org.BouncyCastle.Asn1.Cms.CompressedData.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1034. return a CompressedData object from a tagged object.
  1035. @param ato the tagged object holding the object we want.
  1036. @param explicitly true if the object is meant to be explicitly
  1037. tagged false otherwise.
  1038. @exception ArgumentException if the object held by the
  1039. tagged object cannot be converted.
  1040. </member>
  1041. <member name="M:Org.BouncyCastle.Asn1.Cms.CompressedData.GetInstance(System.Object)">
  1042. return a CompressedData object from the given object.
  1043. @param _obj the object we want converted.
  1044. @exception ArgumentException if the object cannot be converted.
  1045. </member>
  1046. <member name="T:Org.BouncyCastle.Asn1.Cms.CompressedDataParser">
  1047. RFC 3274 - CMS Compressed Data.
  1048. <pre>
  1049. CompressedData ::= SEQUENCE {
  1050. version CMSVersion,
  1051. compressionAlgorithm CompressionAlgorithmIdentifier,
  1052. encapContentInfo EncapsulatedContentInfo
  1053. }
  1054. </pre>
  1055. </member>
  1056. <member name="M:Org.BouncyCastle.Asn1.Cms.ContentInfo.ToAsn1Object">
  1057. Produce an object suitable for an Asn1OutputStream.
  1058. <pre>
  1059. ContentInfo ::= Sequence {
  1060. contentType ContentType,
  1061. content
  1062. [0] EXPLICIT ANY DEFINED BY contentType OPTIONAL }
  1063. </pre>
  1064. </member>
  1065. <member name="T:Org.BouncyCastle.Asn1.Cms.ContentInfoParser">
  1066. Produce an object suitable for an Asn1OutputStream.
  1067. <pre>
  1068. ContentInfo ::= SEQUENCE {
  1069. contentType ContentType,
  1070. content
  1071. [0] EXPLICIT ANY DEFINED BY contentType OPTIONAL }
  1072. </pre>
  1073. </member>
  1074. <member name="M:Org.BouncyCastle.Asn1.Cms.Ecc.MQVuserKeyingMaterial.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1075. return an AuthEnvelopedData object from a tagged object.
  1076. @param obj the tagged object holding the object we want.
  1077. @param isExplicit true if the object is meant to be explicitly
  1078. tagged false otherwise.
  1079. @throws ArgumentException if the object held by the
  1080. tagged object cannot be converted.
  1081. </member>
  1082. <member name="M:Org.BouncyCastle.Asn1.Cms.Ecc.MQVuserKeyingMaterial.GetInstance(System.Object)">
  1083. return an AuthEnvelopedData object from the given object.
  1084. @param obj the object we want converted.
  1085. @throws ArgumentException if the object cannot be converted.
  1086. </member>
  1087. <member name="M:Org.BouncyCastle.Asn1.Cms.Ecc.MQVuserKeyingMaterial.ToAsn1Object">
  1088. Produce an object suitable for an Asn1OutputStream.
  1089. <pre>
  1090. MQVuserKeyingMaterial ::= SEQUENCE {
  1091. ephemeralPublicKey OriginatorPublicKey,
  1092. addedukm [0] EXPLICIT UserKeyingMaterial OPTIONAL }
  1093. </pre>
  1094. </member>
  1095. <member name="M:Org.BouncyCastle.Asn1.Cms.EncryptedContentInfo.GetInstance(System.Object)">
  1096. return an EncryptedContentInfo object from the given object.
  1097. @param obj the object we want converted.
  1098. @exception ArgumentException if the object cannot be converted.
  1099. </member>
  1100. <member name="M:Org.BouncyCastle.Asn1.Cms.EncryptedContentInfo.ToAsn1Object">
  1101. Produce an object suitable for an Asn1OutputStream.
  1102. <pre>
  1103. EncryptedContentInfo ::= Sequence {
  1104. contentType ContentType,
  1105. contentEncryptionAlgorithm ContentEncryptionAlgorithmIdentifier,
  1106. encryptedContent [0] IMPLICIT EncryptedContent OPTIONAL
  1107. }
  1108. </pre>
  1109. </member>
  1110. <member name="T:Org.BouncyCastle.Asn1.Cms.EncryptedContentInfoParser">
  1111. <pre>
  1112. EncryptedContentInfo ::= SEQUENCE {
  1113. contentType ContentType,
  1114. contentEncryptionAlgorithm ContentEncryptionAlgorithmIdentifier,
  1115. encryptedContent [0] IMPLICIT EncryptedContent OPTIONAL
  1116. }
  1117. </pre>
  1118. </member>
  1119. <member name="M:Org.BouncyCastle.Asn1.Cms.EncryptedData.ToAsn1Object">
  1120. <pre>
  1121. EncryptedData ::= SEQUENCE {
  1122. version CMSVersion,
  1123. encryptedContentInfo EncryptedContentInfo,
  1124. unprotectedAttrs [1] IMPLICIT UnprotectedAttributes OPTIONAL }
  1125. </pre>
  1126. @return a basic ASN.1 object representation.
  1127. </member>
  1128. <member name="M:Org.BouncyCastle.Asn1.Cms.EnvelopedData.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1129. return an EnvelopedData object from a tagged object.
  1130. @param obj the tagged object holding the object we want.
  1131. @param explicitly true if the object is meant to be explicitly
  1132. tagged false otherwise.
  1133. @exception ArgumentException if the object held by the
  1134. tagged object cannot be converted.
  1135. </member>
  1136. <member name="M:Org.BouncyCastle.Asn1.Cms.EnvelopedData.GetInstance(System.Object)">
  1137. return an EnvelopedData object from the given object.
  1138. @param obj the object we want converted.
  1139. @exception ArgumentException if the object cannot be converted.
  1140. </member>
  1141. <member name="M:Org.BouncyCastle.Asn1.Cms.EnvelopedData.ToAsn1Object">
  1142. Produce an object suitable for an Asn1OutputStream.
  1143. <pre>
  1144. EnvelopedData ::= Sequence {
  1145. version CMSVersion,
  1146. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  1147. recipientInfos RecipientInfos,
  1148. encryptedContentInfo EncryptedContentInfo,
  1149. unprotectedAttrs [1] IMPLICIT UnprotectedAttributes OPTIONAL
  1150. }
  1151. </pre>
  1152. </member>
  1153. <member name="T:Org.BouncyCastle.Asn1.Cms.EnvelopedDataParser">
  1154. Produce an object suitable for an Asn1OutputStream.
  1155. <pre>
  1156. EnvelopedData ::= SEQUENCE {
  1157. version CMSVersion,
  1158. originatorInfo [0] IMPLICIT OriginatorInfo OPTIONAL,
  1159. recipientInfos RecipientInfos,
  1160. encryptedContentInfo EncryptedContentInfo,
  1161. unprotectedAttrs [1] IMPLICIT UnprotectedAttributes OPTIONAL
  1162. }
  1163. </pre>
  1164. </member>
  1165. <member name="M:Org.BouncyCastle.Asn1.Cms.KekIdentifier.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1166. return a KekIdentifier object from a tagged object.
  1167. @param obj the tagged object holding the object we want.
  1168. @param explicitly true if the object is meant to be explicitly
  1169. tagged false otherwise.
  1170. @exception ArgumentException if the object held by the
  1171. tagged object cannot be converted.
  1172. </member>
  1173. <member name="M:Org.BouncyCastle.Asn1.Cms.KekIdentifier.GetInstance(System.Object)">
  1174. return a KekIdentifier object from the given object.
  1175. @param obj the object we want converted.
  1176. @exception ArgumentException if the object cannot be converted.
  1177. </member>
  1178. <member name="M:Org.BouncyCastle.Asn1.Cms.KekIdentifier.ToAsn1Object">
  1179. Produce an object suitable for an Asn1OutputStream.
  1180. <pre>
  1181. KekIdentifier ::= Sequence {
  1182. keyIdentifier OCTET STRING,
  1183. date GeneralizedTime OPTIONAL,
  1184. other OtherKeyAttribute OPTIONAL
  1185. }
  1186. </pre>
  1187. </member>
  1188. <member name="M:Org.BouncyCastle.Asn1.Cms.KekRecipientInfo.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1189. return a KekRecipientInfo object from a tagged object.
  1190. @param obj the tagged object holding the object we want.
  1191. @param explicitly true if the object is meant to be explicitly
  1192. tagged false otherwise.
  1193. @exception ArgumentException if the object held by the
  1194. tagged object cannot be converted.
  1195. </member>
  1196. <member name="M:Org.BouncyCastle.Asn1.Cms.KekRecipientInfo.GetInstance(System.Object)">
  1197. return a KekRecipientInfo object from the given object.
  1198. @param obj the object we want converted.
  1199. @exception ArgumentException if the object cannot be converted.
  1200. </member>
  1201. <member name="M:Org.BouncyCastle.Asn1.Cms.KekRecipientInfo.ToAsn1Object">
  1202. Produce an object suitable for an Asn1OutputStream.
  1203. <pre>
  1204. KekRecipientInfo ::= Sequence {
  1205. version CMSVersion, -- always set to 4
  1206. kekID KekIdentifier,
  1207. keyEncryptionAlgorithm KeyEncryptionAlgorithmIdentifier,
  1208. encryptedKey EncryptedKey
  1209. }
  1210. </pre>
  1211. </member>
  1212. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientIdentifier.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1213. return an KeyAgreeRecipientIdentifier object from a tagged object.
  1214. @param obj the tagged object holding the object we want.
  1215. @param isExplicit true if the object is meant to be explicitly
  1216. tagged false otherwise.
  1217. @exception ArgumentException if the object held by the
  1218. tagged object cannot be converted.
  1219. </member>
  1220. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientIdentifier.GetInstance(System.Object)">
  1221. return an KeyAgreeRecipientIdentifier object from the given object.
  1222. @param obj the object we want converted.
  1223. @exception ArgumentException if the object cannot be converted.
  1224. </member>
  1225. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientIdentifier.ToAsn1Object">
  1226. Produce an object suitable for an Asn1OutputStream.
  1227. <pre>
  1228. KeyAgreeRecipientIdentifier ::= CHOICE {
  1229. issuerAndSerialNumber IssuerAndSerialNumber,
  1230. rKeyId [0] IMPLICIT RecipientKeyIdentifier
  1231. }
  1232. </pre>
  1233. </member>
  1234. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientInfo.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1235. return a KeyAgreeRecipientInfo object from a tagged object.
  1236. @param obj the tagged object holding the object we want.
  1237. @param explicitly true if the object is meant to be explicitly
  1238. tagged false otherwise.
  1239. @exception ArgumentException if the object held by the
  1240. tagged object cannot be converted.
  1241. </member>
  1242. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientInfo.GetInstance(System.Object)">
  1243. return a KeyAgreeRecipientInfo object from the given object.
  1244. @param obj the object we want converted.
  1245. @exception ArgumentException if the object cannot be converted.
  1246. </member>
  1247. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyAgreeRecipientInfo.ToAsn1Object">
  1248. * Produce an object suitable for an Asn1OutputStream.
  1249. * <pre>
  1250. * KeyAgreeRecipientInfo ::= Sequence {
  1251. * version CMSVersion, -- always set to 3
  1252. * originator [0] EXPLICIT OriginatorIdentifierOrKey,
  1253. * ukm [1] EXPLICIT UserKeyingMaterial OPTIONAL,
  1254. * keyEncryptionAlgorithm KeyEncryptionAlgorithmIdentifier,
  1255. * recipientEncryptedKeys RecipientEncryptedKeys
  1256. * }
  1257. *
  1258. * UserKeyingMaterial ::= OCTET STRING
  1259. * </pre>
  1260. </member>
  1261. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyTransRecipientInfo.GetInstance(System.Object)">
  1262. return a KeyTransRecipientInfo object from the given object.
  1263. @param obj the object we want converted.
  1264. @exception ArgumentException if the object cannot be converted.
  1265. </member>
  1266. <member name="M:Org.BouncyCastle.Asn1.Cms.KeyTransRecipientInfo.ToAsn1Object">
  1267. Produce an object suitable for an Asn1OutputStream.
  1268. <pre>
  1269. KeyTransRecipientInfo ::= Sequence {
  1270. version CMSVersion, -- always set to 0 or 2
  1271. rid RecipientIdentifier,
  1272. keyEncryptionAlgorithm KeyEncryptionAlgorithmIdentifier,
  1273. encryptedKey EncryptedKey
  1274. }
  1275. </pre>
  1276. </member>
  1277. <member name="M:Org.BouncyCastle.Asn1.Cms.MetaData.ToAsn1Object">
  1278. <pre>
  1279. MetaData ::= SEQUENCE {
  1280. hashProtected BOOLEAN,
  1281. fileName UTF8String OPTIONAL,
  1282. mediaType IA5String OPTIONAL,
  1283. otherMetaData Attributes OPTIONAL
  1284. }
  1285. </pre>
  1286. @return
  1287. </member>
  1288. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorIdentifierOrKey.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1289. return an OriginatorIdentifierOrKey object from a tagged object.
  1290. @param o the tagged object holding the object we want.
  1291. @param explicitly true if the object is meant to be explicitly
  1292. tagged false otherwise.
  1293. @exception ArgumentException if the object held by the
  1294. tagged object cannot be converted.
  1295. </member>
  1296. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorIdentifierOrKey.GetInstance(System.Object)">
  1297. return an OriginatorIdentifierOrKey object from the given object.
  1298. @param o the object we want converted.
  1299. @exception ArgumentException if the object cannot be converted.
  1300. </member>
  1301. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorIdentifierOrKey.ToAsn1Object">
  1302. Produce an object suitable for an Asn1OutputStream.
  1303. <pre>
  1304. OriginatorIdentifierOrKey ::= CHOICE {
  1305. issuerAndSerialNumber IssuerAndSerialNumber,
  1306. subjectKeyIdentifier [0] SubjectKeyIdentifier,
  1307. originatorKey [1] OriginatorPublicKey
  1308. }
  1309. SubjectKeyIdentifier ::= OCTET STRING
  1310. </pre>
  1311. </member>
  1312. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorInfo.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1313. return an OriginatorInfo object from a tagged object.
  1314. @param obj the tagged object holding the object we want.
  1315. @param explicitly true if the object is meant to be explicitly
  1316. tagged false otherwise.
  1317. @exception ArgumentException if the object held by the
  1318. tagged object cannot be converted.
  1319. </member>
  1320. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorInfo.GetInstance(System.Object)">
  1321. return an OriginatorInfo object from the given object.
  1322. @param obj the object we want converted.
  1323. @exception ArgumentException if the object cannot be converted.
  1324. </member>
  1325. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorInfo.ToAsn1Object">
  1326. Produce an object suitable for an Asn1OutputStream.
  1327. <pre>
  1328. OriginatorInfo ::= Sequence {
  1329. certs [0] IMPLICIT CertificateSet OPTIONAL,
  1330. crls [1] IMPLICIT CertificateRevocationLists OPTIONAL
  1331. }
  1332. </pre>
  1333. </member>
  1334. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorPublicKey.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1335. return an OriginatorPublicKey object from a tagged object.
  1336. @param obj the tagged object holding the object we want.
  1337. @param explicitly true if the object is meant to be explicitly
  1338. tagged false otherwise.
  1339. @exception ArgumentException if the object held by the
  1340. tagged object cannot be converted.
  1341. </member>
  1342. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorPublicKey.GetInstance(System.Object)">
  1343. return an OriginatorPublicKey object from the given object.
  1344. @param obj the object we want converted.
  1345. @exception ArgumentException if the object cannot be converted.
  1346. </member>
  1347. <member name="M:Org.BouncyCastle.Asn1.Cms.OriginatorPublicKey.ToAsn1Object">
  1348. Produce an object suitable for an Asn1OutputStream.
  1349. <pre>
  1350. OriginatorPublicKey ::= Sequence {
  1351. algorithm AlgorithmIdentifier,
  1352. publicKey BIT STRING
  1353. }
  1354. </pre>
  1355. </member>
  1356. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherKeyAttribute.GetInstance(System.Object)">
  1357. return an OtherKeyAttribute object from the given object.
  1358. @param o the object we want converted.
  1359. @exception ArgumentException if the object cannot be converted.
  1360. </member>
  1361. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherKeyAttribute.ToAsn1Object">
  1362. Produce an object suitable for an Asn1OutputStream.
  1363. <pre>
  1364. OtherKeyAttribute ::= Sequence {
  1365. keyAttrId OBJECT IDENTIFIER,
  1366. keyAttr ANY DEFINED BY keyAttrId OPTIONAL
  1367. }
  1368. </pre>
  1369. </member>
  1370. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRecipientInfo.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1371. return a OtherRecipientInfo object from a tagged object.
  1372. @param obj the tagged object holding the object we want.
  1373. @param explicitly true if the object is meant to be explicitly
  1374. tagged false otherwise.
  1375. @exception ArgumentException if the object held by the
  1376. tagged object cannot be converted.
  1377. </member>
  1378. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRecipientInfo.GetInstance(System.Object)">
  1379. return a OtherRecipientInfo object from the given object.
  1380. @param obj the object we want converted.
  1381. @exception ArgumentException if the object cannot be converted.
  1382. </member>
  1383. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRecipientInfo.ToAsn1Object">
  1384. Produce an object suitable for an Asn1OutputStream.
  1385. <pre>
  1386. OtherRecipientInfo ::= Sequence {
  1387. oriType OBJECT IDENTIFIER,
  1388. oriValue ANY DEFINED BY oriType }
  1389. </pre>
  1390. </member>
  1391. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRevocationInfoFormat.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1392. return a OtherRevocationInfoFormat object from a tagged object.
  1393. @param obj the tagged object holding the object we want.
  1394. @param explicit true if the object is meant to be explicitly
  1395. tagged false otherwise.
  1396. @exception IllegalArgumentException if the object held by the
  1397. tagged object cannot be converted.
  1398. </member>
  1399. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRevocationInfoFormat.GetInstance(System.Object)">
  1400. return a OtherRevocationInfoFormat object from the given object.
  1401. @param obj the object we want converted.
  1402. @exception IllegalArgumentException if the object cannot be converted.
  1403. </member>
  1404. <member name="M:Org.BouncyCastle.Asn1.Cms.OtherRevocationInfoFormat.ToAsn1Object">
  1405. Produce an object suitable for an ASN1OutputStream.
  1406. <pre>
  1407. OtherRevocationInfoFormat ::= SEQUENCE {
  1408. otherRevInfoFormat OBJECT IDENTIFIER,
  1409. otherRevInfo ANY DEFINED BY otherRevInfoFormat }
  1410. </pre>
  1411. </member>
  1412. <member name="M:Org.BouncyCastle.Asn1.Cms.PasswordRecipientInfo.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1413. return a PasswordRecipientInfo object from a tagged object.
  1414. @param obj the tagged object holding the object we want.
  1415. @param explicitly true if the object is meant to be explicitly
  1416. tagged false otherwise.
  1417. @exception ArgumentException if the object held by the
  1418. tagged object cannot be converted.
  1419. </member>
  1420. <member name="M:Org.BouncyCastle.Asn1.Cms.PasswordRecipientInfo.GetInstance(System.Object)">
  1421. return a PasswordRecipientInfo object from the given object.
  1422. @param obj the object we want converted.
  1423. @exception ArgumentException if the object cannot be converted.
  1424. </member>
  1425. <member name="M:Org.BouncyCastle.Asn1.Cms.PasswordRecipientInfo.ToAsn1Object">
  1426. Produce an object suitable for an Asn1OutputStream.
  1427. <pre>
  1428. PasswordRecipientInfo ::= Sequence {
  1429. version CMSVersion, -- Always set to 0
  1430. keyDerivationAlgorithm [0] KeyDerivationAlgorithmIdentifier
  1431. OPTIONAL,
  1432. keyEncryptionAlgorithm KeyEncryptionAlgorithmIdentifier,
  1433. encryptedKey EncryptedKey }
  1434. </pre>
  1435. </member>
  1436. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientEncryptedKey.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1437. return an RecipientEncryptedKey object from a tagged object.
  1438. @param obj the tagged object holding the object we want.
  1439. @param isExplicit true if the object is meant to be explicitly
  1440. tagged false otherwise.
  1441. @exception ArgumentException if the object held by the
  1442. tagged object cannot be converted.
  1443. </member>
  1444. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientEncryptedKey.GetInstance(System.Object)">
  1445. return a RecipientEncryptedKey object from the given object.
  1446. @param obj the object we want converted.
  1447. @exception ArgumentException if the object cannot be converted.
  1448. </member>
  1449. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientEncryptedKey.ToAsn1Object">
  1450. Produce an object suitable for an Asn1OutputStream.
  1451. <pre>
  1452. RecipientEncryptedKey ::= SEQUENCE {
  1453. rid KeyAgreeRecipientIdentifier,
  1454. encryptedKey EncryptedKey
  1455. }
  1456. </pre>
  1457. </member>
  1458. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientIdentifier.GetInstance(System.Object)">
  1459. return a RecipientIdentifier object from the given object.
  1460. @param o the object we want converted.
  1461. @exception ArgumentException if the object cannot be converted.
  1462. </member>
  1463. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientIdentifier.ToAsn1Object">
  1464. Produce an object suitable for an Asn1OutputStream.
  1465. <pre>
  1466. RecipientIdentifier ::= CHOICE {
  1467. issuerAndSerialNumber IssuerAndSerialNumber,
  1468. subjectKeyIdentifier [0] SubjectKeyIdentifier
  1469. }
  1470. SubjectKeyIdentifier ::= OCTET STRING
  1471. </pre>
  1472. </member>
  1473. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientInfo.ToAsn1Object">
  1474. Produce an object suitable for an Asn1OutputStream.
  1475. <pre>
  1476. RecipientInfo ::= CHOICE {
  1477. ktri KeyTransRecipientInfo,
  1478. kari [1] KeyAgreeRecipientInfo,
  1479. kekri [2] KekRecipientInfo,
  1480. pwri [3] PasswordRecipientInfo,
  1481. ori [4] OtherRecipientInfo }
  1482. </pre>
  1483. </member>
  1484. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientKeyIdentifier.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1485. return a RecipientKeyIdentifier object from a tagged object.
  1486. @param _ato the tagged object holding the object we want.
  1487. @param _explicit true if the object is meant to be explicitly
  1488. tagged false otherwise.
  1489. @exception ArgumentException if the object held by the
  1490. tagged object cannot be converted.
  1491. </member>
  1492. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientKeyIdentifier.GetInstance(System.Object)">
  1493. return a RecipientKeyIdentifier object from the given object.
  1494. @param _obj the object we want converted.
  1495. @exception ArgumentException if the object cannot be converted.
  1496. </member>
  1497. <member name="M:Org.BouncyCastle.Asn1.Cms.RecipientKeyIdentifier.ToAsn1Object">
  1498. Produce an object suitable for an Asn1OutputStream.
  1499. <pre>
  1500. RecipientKeyIdentifier ::= Sequence {
  1501. subjectKeyIdentifier SubjectKeyIdentifier,
  1502. date GeneralizedTime OPTIONAL,
  1503. other OtherKeyAttribute OPTIONAL
  1504. }
  1505. SubjectKeyIdentifier ::= OCTET STRING
  1506. </pre>
  1507. </member>
  1508. <member name="M:Org.BouncyCastle.Asn1.Cms.ScvpReqRes.ToAsn1Object">
  1509. <pre>
  1510. ScvpReqRes ::= SEQUENCE {
  1511. request [0] EXPLICIT ContentInfo OPTIONAL,
  1512. response ContentInfo }
  1513. </pre>
  1514. @return the ASN.1 primitive representation.
  1515. </member>
  1516. <member name="T:Org.BouncyCastle.Asn1.Cms.SignedData">
  1517. a signed data object.
  1518. </member>
  1519. <member name="M:Org.BouncyCastle.Asn1.Cms.SignedData.ToAsn1Object">
  1520. Produce an object suitable for an Asn1OutputStream.
  1521. <pre>
  1522. SignedData ::= Sequence {
  1523. version CMSVersion,
  1524. digestAlgorithms DigestAlgorithmIdentifiers,
  1525. encapContentInfo EncapsulatedContentInfo,
  1526. certificates [0] IMPLICIT CertificateSet OPTIONAL,
  1527. crls [1] IMPLICIT CertificateRevocationLists OPTIONAL,
  1528. signerInfos SignerInfos
  1529. }
  1530. </pre>
  1531. </member>
  1532. <member name="T:Org.BouncyCastle.Asn1.Cms.SignedDataParser">
  1533. <pre>
  1534. SignedData ::= SEQUENCE {
  1535. version CMSVersion,
  1536. digestAlgorithms DigestAlgorithmIdentifiers,
  1537. encapContentInfo EncapsulatedContentInfo,
  1538. certificates [0] IMPLICIT CertificateSet OPTIONAL,
  1539. crls [1] IMPLICIT CertificateRevocationLists OPTIONAL,
  1540. signerInfos SignerInfos
  1541. }
  1542. </pre>
  1543. </member>
  1544. <member name="M:Org.BouncyCastle.Asn1.Cms.SignerIdentifier.GetInstance(System.Object)">
  1545. return a SignerIdentifier object from the given object.
  1546. @param o the object we want converted.
  1547. @exception ArgumentException if the object cannot be converted.
  1548. </member>
  1549. <member name="M:Org.BouncyCastle.Asn1.Cms.SignerIdentifier.ToAsn1Object">
  1550. Produce an object suitable for an Asn1OutputStream.
  1551. <pre>
  1552. SignerIdentifier ::= CHOICE {
  1553. issuerAndSerialNumber IssuerAndSerialNumber,
  1554. subjectKeyIdentifier [0] SubjectKeyIdentifier
  1555. }
  1556. SubjectKeyIdentifier ::= OCTET STRING
  1557. </pre>
  1558. </member>
  1559. <member name="M:Org.BouncyCastle.Asn1.Cms.SignerInfo.ToAsn1Object">
  1560. Produce an object suitable for an Asn1OutputStream.
  1561. <pre>
  1562. SignerInfo ::= Sequence {
  1563. version Version,
  1564. SignerIdentifier sid,
  1565. digestAlgorithm DigestAlgorithmIdentifier,
  1566. authenticatedAttributes [0] IMPLICIT Attributes OPTIONAL,
  1567. digestEncryptionAlgorithm DigestEncryptionAlgorithmIdentifier,
  1568. encryptedDigest EncryptedDigest,
  1569. unauthenticatedAttributes [1] IMPLICIT Attributes OPTIONAL
  1570. }
  1571. EncryptedDigest ::= OCTET STRING
  1572. DigestAlgorithmIdentifier ::= AlgorithmIdentifier
  1573. DigestEncryptionAlgorithmIdentifier ::= AlgorithmIdentifier
  1574. </pre>
  1575. </member>
  1576. <member name="M:Org.BouncyCastle.Asn1.Cms.Time.#ctor(System.DateTime)">
  1577. creates a time object from a given date - if the date is between 1950
  1578. and 2049 a UTCTime object is Generated, otherwise a GeneralizedTime
  1579. is used.
  1580. </member>
  1581. <member name="M:Org.BouncyCastle.Asn1.Cms.Time.ToAsn1Object">
  1582. Produce an object suitable for an Asn1OutputStream.
  1583. <pre>
  1584. Time ::= CHOICE {
  1585. utcTime UTCTime,
  1586. generalTime GeneralizedTime }
  1587. </pre>
  1588. </member>
  1589. <member name="M:Org.BouncyCastle.Asn1.Cms.TimeStampAndCrl.ToAsn1Object">
  1590. <pre>
  1591. TimeStampAndCRL ::= SEQUENCE {
  1592. timeStamp TimeStampToken, -- according to RFC 3161
  1593. crl CertificateList OPTIONAL -- according to RFC 5280
  1594. }
  1595. </pre>
  1596. @return
  1597. </member>
  1598. <member name="M:Org.BouncyCastle.Asn1.Cms.TimeStampedData.ToAsn1Object">
  1599. <pre>
  1600. TimeStampedData ::= SEQUENCE {
  1601. version INTEGER { v1(1) },
  1602. dataUri IA5String OPTIONAL,
  1603. metaData MetaData OPTIONAL,
  1604. content OCTET STRING OPTIONAL,
  1605. temporalEvidence Evidence
  1606. }
  1607. </pre>
  1608. @return
  1609. </member>
  1610. <member name="M:Org.BouncyCastle.Asn1.Cms.TimeStampTokenEvidence.ToAsn1Object">
  1611. <pre>
  1612. TimeStampTokenEvidence ::=
  1613. SEQUENCE SIZE(1..MAX) OF TimeStampAndCrl
  1614. </pre>
  1615. @return
  1616. </member>
  1617. <member name="M:Org.BouncyCastle.Asn1.Crmf.AttributeTypeAndValue.ToAsn1Object">
  1618. <pre>
  1619. AttributeTypeAndValue ::= SEQUENCE {
  1620. type OBJECT IDENTIFIER,
  1621. value ANY DEFINED BY type }
  1622. </pre>
  1623. @return a basic ASN.1 object representation.
  1624. </member>
  1625. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertId.ToAsn1Object">
  1626. <pre>
  1627. CertId ::= SEQUENCE {
  1628. issuer GeneralName,
  1629. serialNumber INTEGER }
  1630. </pre>
  1631. @return a basic ASN.1 object representation.
  1632. </member>
  1633. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertReqMessages.ToAsn1Object">
  1634. <pre>
  1635. CertReqMessages ::= SEQUENCE SIZE (1..MAX) OF CertReqMsg
  1636. </pre>
  1637. @return a basic ASN.1 object representation.
  1638. </member>
  1639. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertReqMsg.#ctor(Org.BouncyCastle.Asn1.Crmf.CertRequest,Org.BouncyCastle.Asn1.Crmf.ProofOfPossession,Org.BouncyCastle.Asn1.Crmf.AttributeTypeAndValue[])">
  1640. Creates a new CertReqMsg.
  1641. @param certReq CertRequest
  1642. @param popo may be null
  1643. @param regInfo may be null
  1644. </member>
  1645. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertReqMsg.ToAsn1Object">
  1646. <pre>
  1647. CertReqMsg ::= SEQUENCE {
  1648. certReq CertRequest,
  1649. pop ProofOfPossession OPTIONAL,
  1650. -- content depends upon key type
  1651. regInfo SEQUENCE SIZE(1..MAX) OF AttributeTypeAndValue OPTIONAL }
  1652. </pre>
  1653. @return a basic ASN.1 object representation.
  1654. </member>
  1655. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertRequest.ToAsn1Object">
  1656. <pre>
  1657. CertRequest ::= SEQUENCE {
  1658. certReqId INTEGER, -- ID for matching request and reply
  1659. certTemplate CertTemplate, -- Selected fields of cert to be issued
  1660. controls Controls OPTIONAL } -- Attributes affecting issuance
  1661. </pre>
  1662. @return a basic ASN.1 object representation.
  1663. </member>
  1664. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertTemplate.ToAsn1Object">
  1665. <pre>
  1666. CertTemplate ::= SEQUENCE {
  1667. version [0] Version OPTIONAL,
  1668. serialNumber [1] INTEGER OPTIONAL,
  1669. signingAlg [2] AlgorithmIdentifier OPTIONAL,
  1670. issuer [3] Name OPTIONAL,
  1671. validity [4] OptionalValidity OPTIONAL,
  1672. subject [5] Name OPTIONAL,
  1673. publicKey [6] SubjectPublicKeyInfo OPTIONAL,
  1674. issuerUID [7] UniqueIdentifier OPTIONAL,
  1675. subjectUID [8] UniqueIdentifier OPTIONAL,
  1676. extensions [9] Extensions OPTIONAL }
  1677. </pre>
  1678. @return a basic ASN.1 object representation.
  1679. </member>
  1680. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertTemplateBuilder.SetVersion(System.Int32)">
  1681. Sets the X.509 version. Note: for X509v3, use 2 here.
  1682. </member>
  1683. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertTemplateBuilder.SetIssuerUID(Org.BouncyCastle.Asn1.DerBitString)">
  1684. Sets the issuer unique ID (deprecated in X.509v3)
  1685. </member>
  1686. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertTemplateBuilder.SetSubjectUID(Org.BouncyCastle.Asn1.DerBitString)">
  1687. Sets the subject unique ID (deprecated in X.509v3)
  1688. </member>
  1689. <member name="M:Org.BouncyCastle.Asn1.Crmf.CertTemplateBuilder.Build">
  1690. <pre>
  1691. CertTemplate ::= SEQUENCE {
  1692. version [0] Version OPTIONAL,
  1693. serialNumber [1] INTEGER OPTIONAL,
  1694. signingAlg [2] AlgorithmIdentifier OPTIONAL,
  1695. issuer [3] Name OPTIONAL,
  1696. validity [4] OptionalValidity OPTIONAL,
  1697. subject [5] Name OPTIONAL,
  1698. publicKey [6] SubjectPublicKeyInfo OPTIONAL,
  1699. issuerUID [7] UniqueIdentifier OPTIONAL,
  1700. subjectUID [8] UniqueIdentifier OPTIONAL,
  1701. extensions [9] Extensions OPTIONAL }
  1702. </pre>
  1703. @return a basic ASN.1 object representation.
  1704. </member>
  1705. <member name="M:Org.BouncyCastle.Asn1.Crmf.Controls.ToAsn1Object">
  1706. <pre>
  1707. Controls ::= SEQUENCE SIZE(1..MAX) OF AttributeTypeAndValue
  1708. </pre>
  1709. @return a basic ASN.1 object representation.
  1710. </member>
  1711. <member name="M:Org.BouncyCastle.Asn1.Crmf.EncKeyWithID.ToAsn1Object">
  1712. <pre>
  1713. EncKeyWithID ::= SEQUENCE {
  1714. privateKey PrivateKeyInfo,
  1715. identifier CHOICE {
  1716. string UTF8String,
  1717. generalName GeneralName
  1718. } OPTIONAL
  1719. }
  1720. </pre>
  1721. @return
  1722. </member>
  1723. <member name="M:Org.BouncyCastle.Asn1.Crmf.EncryptedKey.ToAsn1Object">
  1724. <pre>
  1725. EncryptedKey ::= CHOICE {
  1726. encryptedValue EncryptedValue, -- deprecated
  1727. envelopedData [0] EnvelopedData }
  1728. -- The encrypted private key MUST be placed in the envelopedData
  1729. -- encryptedContentInfo encryptedContent OCTET STRING.
  1730. </pre>
  1731. </member>
  1732. <member name="M:Org.BouncyCastle.Asn1.Crmf.EncryptedValue.ToAsn1Object">
  1733. <pre>
  1734. EncryptedValue ::= SEQUENCE {
  1735. intendedAlg [0] AlgorithmIdentifier OPTIONAL,
  1736. -- the intended algorithm for which the value will be used
  1737. symmAlg [1] AlgorithmIdentifier OPTIONAL,
  1738. -- the symmetric algorithm used to encrypt the value
  1739. encSymmKey [2] BIT STRING OPTIONAL,
  1740. -- the (encrypted) symmetric key used to encrypt the value
  1741. keyAlg [3] AlgorithmIdentifier OPTIONAL,
  1742. -- algorithm used to encrypt the symmetric key
  1743. valueHint [4] OCTET STRING OPTIONAL,
  1744. -- a brief description or identifier of the encValue content
  1745. -- (may be meaningful only to the sending entity, and used only
  1746. -- if EncryptedValue might be re-examined by the sending entity
  1747. -- in the future)
  1748. encValue BIT STRING }
  1749. -- the encrypted value itself
  1750. </pre>
  1751. @return a basic ASN.1 object representation.
  1752. </member>
  1753. <member name="M:Org.BouncyCastle.Asn1.Crmf.OptionalValidity.ToAsn1Object">
  1754. <pre>
  1755. OptionalValidity ::= SEQUENCE {
  1756. notBefore [0] Time OPTIONAL,
  1757. notAfter [1] Time OPTIONAL } --at least one MUST be present
  1758. </pre>
  1759. @return a basic ASN.1 object representation.
  1760. </member>
  1761. <member name="M:Org.BouncyCastle.Asn1.Crmf.PkiArchiveOptions.ToAsn1Object">
  1762. <pre>
  1763. PkiArchiveOptions ::= CHOICE {
  1764. encryptedPrivKey [0] EncryptedKey,
  1765. -- the actual value of the private key
  1766. keyGenParameters [1] KeyGenParameters,
  1767. -- parameters which allow the private key to be re-generated
  1768. archiveRemGenPrivKey [2] BOOLEAN }
  1769. -- set to TRUE if sender wishes receiver to archive the private
  1770. -- key of a key pair that the receiver generates in response to
  1771. -- this request; set to FALSE if no archival is desired.
  1772. </pre>
  1773. </member>
  1774. <member name="M:Org.BouncyCastle.Asn1.Crmf.PkiPublicationInfo.ToAsn1Object">
  1775. <pre>
  1776. PkiPublicationInfo ::= SEQUENCE {
  1777. action INTEGER {
  1778. dontPublish (0),
  1779. pleasePublish (1) },
  1780. pubInfos SEQUENCE SIZE (1..MAX) OF SinglePubInfo OPTIONAL }
  1781. -- pubInfos MUST NOT be present if action is "dontPublish"
  1782. -- (if action is "pleasePublish" and pubInfos is omitted,
  1783. -- "dontCare" is assumed)
  1784. </pre>
  1785. @return a basic ASN.1 object representation.
  1786. </member>
  1787. <member name="T:Org.BouncyCastle.Asn1.Crmf.PKMacValue">
  1788. Password-based MAC value for use with POPOSigningKeyInput.
  1789. </member>
  1790. <member name="M:Org.BouncyCastle.Asn1.Crmf.PKMacValue.#ctor(Org.BouncyCastle.Asn1.Cmp.PbmParameter,Org.BouncyCastle.Asn1.DerBitString)">
  1791. Creates a new PKMACValue.
  1792. @param params parameters for password-based MAC
  1793. @param value MAC of the DER-encoded SubjectPublicKeyInfo
  1794. </member>
  1795. <member name="M:Org.BouncyCastle.Asn1.Crmf.PKMacValue.#ctor(Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier,Org.BouncyCastle.Asn1.DerBitString)">
  1796. Creates a new PKMACValue.
  1797. @param aid CMPObjectIdentifiers.passwordBasedMAC, with PBMParameter
  1798. @param value MAC of the DER-encoded SubjectPublicKeyInfo
  1799. </member>
  1800. <member name="M:Org.BouncyCastle.Asn1.Crmf.PKMacValue.ToAsn1Object">
  1801. <pre>
  1802. PKMACValue ::= SEQUENCE {
  1803. algId AlgorithmIdentifier,
  1804. -- algorithm value shall be PasswordBasedMac 1.2.840.113533.7.66.13
  1805. -- parameter value is PBMParameter
  1806. value BIT STRING }
  1807. </pre>
  1808. @return a basic ASN.1 object representation.
  1809. </member>
  1810. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoPrivKey.ToAsn1Object">
  1811. <pre>
  1812. PopoPrivKey ::= CHOICE {
  1813. thisMessage [0] BIT STRING, -- Deprecated
  1814. -- possession is proven in this message (which contains the private
  1815. -- key itself (encrypted for the CA))
  1816. subsequentMessage [1] SubsequentMessage,
  1817. -- possession will be proven in a subsequent message
  1818. dhMAC [2] BIT STRING, -- Deprecated
  1819. agreeMAC [3] PKMACValue,
  1820. encryptedKey [4] EnvelopedData }
  1821. </pre>
  1822. </member>
  1823. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoSigningKey.#ctor(Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput,Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier,Org.BouncyCastle.Asn1.DerBitString)">
  1824. Creates a new Proof of Possession object for a signing key.
  1825. @param poposkIn the PopoSigningKeyInput structure, or null if the
  1826. CertTemplate includes both subject and publicKey values.
  1827. @param aid the AlgorithmIdentifier used to sign the proof of possession.
  1828. @param signature a signature over the DER-encoded value of poposkIn,
  1829. or the DER-encoded value of certReq if poposkIn is null.
  1830. </member>
  1831. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoSigningKey.ToAsn1Object">
  1832. <pre>
  1833. PopoSigningKey ::= SEQUENCE {
  1834. poposkInput [0] PopoSigningKeyInput OPTIONAL,
  1835. algorithmIdentifier AlgorithmIdentifier,
  1836. signature BIT STRING }
  1837. -- The signature (using "algorithmIdentifier") is on the
  1838. -- DER-encoded value of poposkInput. NOTE: If the CertReqMsg
  1839. -- certReq CertTemplate contains the subject and publicKey values,
  1840. -- then poposkInput MUST be omitted and the signature MUST be
  1841. -- computed on the DER-encoded value of CertReqMsg certReq. If
  1842. -- the CertReqMsg certReq CertTemplate does not contain the public
  1843. -- key and subject values, then poposkInput MUST be present and
  1844. -- MUST be signed. This strategy ensures that the public key is
  1845. -- not present in both the poposkInput and CertReqMsg certReq
  1846. -- CertTemplate fields.
  1847. </pre>
  1848. @return a basic ASN.1 object representation.
  1849. </member>
  1850. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName,Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  1851. Creates a new PopoSigningKeyInput with sender name as authInfo.
  1852. </member>
  1853. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput.#ctor(Org.BouncyCastle.Asn1.Crmf.PKMacValue,Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  1854. Creates a new PopoSigningKeyInput using password-based MAC.
  1855. </member>
  1856. <member name="P:Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput.Sender">
  1857. Returns the sender field, or null if authInfo is publicKeyMac
  1858. </member>
  1859. <member name="P:Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput.PublicKeyMac">
  1860. Returns the publicKeyMac field, or null if authInfo is sender
  1861. </member>
  1862. <member name="M:Org.BouncyCastle.Asn1.Crmf.PopoSigningKeyInput.ToAsn1Object">
  1863. <pre>
  1864. PopoSigningKeyInput ::= SEQUENCE {
  1865. authInfo CHOICE {
  1866. sender [0] GeneralName,
  1867. -- used only if an authenticated identity has been
  1868. -- established for the sender (e.g., a DN from a
  1869. -- previously-issued and currently-valid certificate
  1870. publicKeyMac PKMacValue },
  1871. -- used if no authenticated GeneralName currently exists for
  1872. -- the sender; publicKeyMac contains a password-based MAC
  1873. -- on the DER-encoded value of publicKey
  1874. publicKey SubjectPublicKeyInfo } -- from CertTemplate
  1875. </pre>
  1876. @return a basic ASN.1 object representation.
  1877. </member>
  1878. <member name="M:Org.BouncyCastle.Asn1.Crmf.ProofOfPossession.#ctor">
  1879. Creates a ProofOfPossession with type raVerified.
  1880. </member>
  1881. <member name="M:Org.BouncyCastle.Asn1.Crmf.ProofOfPossession.#ctor(Org.BouncyCastle.Asn1.Crmf.PopoSigningKey)">
  1882. Creates a ProofOfPossession for a signing key.
  1883. </member>
  1884. <member name="M:Org.BouncyCastle.Asn1.Crmf.ProofOfPossession.#ctor(System.Int32,Org.BouncyCastle.Asn1.Crmf.PopoPrivKey)">
  1885. Creates a ProofOfPossession for key encipherment or agreement.
  1886. @param type one of TYPE_KEY_ENCIPHERMENT or TYPE_KEY_AGREEMENT
  1887. </member>
  1888. <member name="M:Org.BouncyCastle.Asn1.Crmf.ProofOfPossession.ToAsn1Object">
  1889. <pre>
  1890. ProofOfPossession ::= CHOICE {
  1891. raVerified [0] NULL,
  1892. -- used if the RA has already verified that the requester is in
  1893. -- possession of the private key
  1894. signature [1] PopoSigningKey,
  1895. keyEncipherment [2] PopoPrivKey,
  1896. keyAgreement [3] PopoPrivKey }
  1897. </pre>
  1898. @return a basic ASN.1 object representation.
  1899. </member>
  1900. <member name="M:Org.BouncyCastle.Asn1.Crmf.SinglePubInfo.ToAsn1Object">
  1901. <pre>
  1902. SinglePubInfo ::= SEQUENCE {
  1903. pubMethod INTEGER {
  1904. dontCare (0),
  1905. x500 (1),
  1906. web (2),
  1907. ldap (3) },
  1908. pubLocation GeneralName OPTIONAL }
  1909. </pre>
  1910. @return a basic ASN.1 object representation.
  1911. </member>
  1912. <member name="T:Org.BouncyCastle.Asn1.CryptoPro.ECGost3410NamedCurves">
  1913. <summary>
  1914. Table of the available named parameters for GOST 3410-2001 / 2012.
  1915. </summary>
  1916. </member>
  1917. <member name="M:Org.BouncyCastle.Asn1.CryptoPro.ECGost3410NamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  1918. return the ECDomainParameters object for the given OID, null if it
  1919. isn't present.
  1920. @param oid an object identifier representing a named parameters, if present.
  1921. </member>
  1922. <member name="P:Org.BouncyCastle.Asn1.CryptoPro.ECGost3410NamedCurves.Names">
  1923. returns an enumeration containing the name strings for curves
  1924. contained in this structure.
  1925. </member>
  1926. <member name="M:Org.BouncyCastle.Asn1.CryptoPro.ECGost3410NamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  1927. return the named curve name represented by the given object identifier.
  1928. </member>
  1929. <member name="M:Org.BouncyCastle.Asn1.CryptoPro.Gost28147Parameters.ToAsn1Object">
  1930. <pre>
  1931. Gost28147-89-Parameters ::=
  1932. SEQUENCE {
  1933. iv Gost28147-89-IV,
  1934. encryptionParamSet OBJECT IDENTIFIER
  1935. }
  1936. Gost28147-89-IV ::= OCTET STRING (SIZE (8))
  1937. </pre>
  1938. </member>
  1939. <member name="T:Org.BouncyCastle.Asn1.CryptoPro.Gost3410NamedParameters">
  1940. table of the available named parameters for GOST 3410-94.
  1941. </member>
  1942. <member name="M:Org.BouncyCastle.Asn1.CryptoPro.Gost3410NamedParameters.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  1943. return the GOST3410ParamSetParameters object for the given OID, null if it
  1944. isn't present.
  1945. @param oid an object identifier representing a named parameters, if present.
  1946. </member>
  1947. <member name="P:Org.BouncyCastle.Asn1.CryptoPro.Gost3410NamedParameters.Names">
  1948. returns an enumeration containing the name strings for parameters
  1949. contained in this structure.
  1950. </member>
  1951. <member name="T:Org.BouncyCastle.Asn1.DerApplicationSpecific">
  1952. Base class for an application specific object
  1953. </member>
  1954. <member name="M:Org.BouncyCastle.Asn1.DerApplicationSpecific.GetObject">
  1955. Return the enclosed object assuming explicit tagging.
  1956. @return the resulting object
  1957. @throws IOException if reconstruction fails.
  1958. </member>
  1959. <member name="M:Org.BouncyCastle.Asn1.DerApplicationSpecific.GetObject(System.Int32)">
  1960. Return the enclosed object assuming implicit tagging.
  1961. @param derTagNo the type tag that should be applied to the object's contents.
  1962. @return the resulting object
  1963. @throws IOException if reconstruction fails.
  1964. </member>
  1965. <member name="M:Org.BouncyCastle.Asn1.DerBitString.GetInstance(System.Object)">
  1966. return a Bit string from the passed in object
  1967. @exception ArgumentException if the object cannot be converted.
  1968. </member>
  1969. <member name="M:Org.BouncyCastle.Asn1.DerBitString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1970. return a Bit string from a tagged object.
  1971. @param obj the tagged object holding the object we want
  1972. @param explicitly true if the object is meant to be explicitly
  1973. tagged false otherwise.
  1974. @exception ArgumentException if the tagged object cannot
  1975. be converted.
  1976. </member>
  1977. <member name="M:Org.BouncyCastle.Asn1.DerBitString.#ctor(System.Byte[],System.Int32)">
  1978. @param data the octets making up the bit string.
  1979. @param padBits the number of extra bits at the end of the string.
  1980. </member>
  1981. <member name="M:Org.BouncyCastle.Asn1.DerBitString.GetOctets">
  1982. Return the octets contained in this BIT STRING, checking that this BIT STRING really
  1983. does represent an octet aligned string. Only use this method when the standard you are
  1984. following dictates that the BIT STRING will be octet aligned.
  1985. @return a copy of the octet aligned data.
  1986. </member>
  1987. <member name="P:Org.BouncyCastle.Asn1.DerBitString.IntValue">
  1988. @return the value of the bit string as an int (truncating if necessary)
  1989. </member>
  1990. <member name="T:Org.BouncyCastle.Asn1.DerBmpString">
  1991. Der BMPString object.
  1992. </member>
  1993. <member name="M:Org.BouncyCastle.Asn1.DerBmpString.GetInstance(System.Object)">
  1994. return a BMP string from the given object.
  1995. @param obj the object we want converted.
  1996. @exception ArgumentException if the object cannot be converted.
  1997. </member>
  1998. <member name="M:Org.BouncyCastle.Asn1.DerBmpString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  1999. return a BMP string from a tagged object.
  2000. @param obj the tagged object holding the object we want
  2001. @param explicitly true if the object is meant to be explicitly
  2002. tagged false otherwise.
  2003. @exception ArgumentException if the tagged object cannot
  2004. be converted.
  2005. </member>
  2006. <member name="M:Org.BouncyCastle.Asn1.DerBmpString.#ctor(System.Byte[])">
  2007. basic constructor - byte encoded string.
  2008. </member>
  2009. <member name="M:Org.BouncyCastle.Asn1.DerBmpString.#ctor(System.String)">
  2010. basic constructor
  2011. </member>
  2012. <member name="M:Org.BouncyCastle.Asn1.DerBoolean.GetInstance(System.Object)">
  2013. return a bool from the passed in object.
  2014. @exception ArgumentException if the object cannot be converted.
  2015. </member>
  2016. <member name="M:Org.BouncyCastle.Asn1.DerBoolean.GetInstance(System.Boolean)">
  2017. return a DerBoolean from the passed in bool.
  2018. </member>
  2019. <member name="M:Org.BouncyCastle.Asn1.DerBoolean.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2020. return a Boolean from a tagged object.
  2021. @param obj the tagged object holding the object we want
  2022. @param explicitly true if the object is meant to be explicitly
  2023. tagged false otherwise.
  2024. @exception ArgumentException if the tagged object cannot
  2025. be converted.
  2026. </member>
  2027. <member name="M:Org.BouncyCastle.Asn1.DerEnumerated.GetInstance(System.Object)">
  2028. return an integer from the passed in object
  2029. @exception ArgumentException if the object cannot be converted.
  2030. </member>
  2031. <member name="M:Org.BouncyCastle.Asn1.DerEnumerated.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2032. return an Enumerated from a tagged object.
  2033. @param obj the tagged object holding the object we want
  2034. @param explicitly true if the object is meant to be explicitly
  2035. tagged false otherwise.
  2036. @exception ArgumentException if the tagged object cannot
  2037. be converted.
  2038. </member>
  2039. <member name="T:Org.BouncyCastle.Asn1.DerExternal">
  2040. Class representing the DER-type External
  2041. </member>
  2042. <member name="M:Org.BouncyCastle.Asn1.DerExternal.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.DerInteger,Org.BouncyCastle.Asn1.Asn1Object,Org.BouncyCastle.Asn1.DerTaggedObject)">
  2043. Creates a new instance of DerExternal
  2044. See X.690 for more informations about the meaning of these parameters
  2045. @param directReference The direct reference or <code>null</code> if not set.
  2046. @param indirectReference The indirect reference or <code>null</code> if not set.
  2047. @param dataValueDescriptor The data value descriptor or <code>null</code> if not set.
  2048. @param externalData The external data in its encoded form.
  2049. </member>
  2050. <member name="M:Org.BouncyCastle.Asn1.DerExternal.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.DerInteger,Org.BouncyCastle.Asn1.Asn1Object,System.Int32,Org.BouncyCastle.Asn1.Asn1Object)">
  2051. Creates a new instance of DerExternal.
  2052. See X.690 for more informations about the meaning of these parameters
  2053. @param directReference The direct reference or <code>null</code> if not set.
  2054. @param indirectReference The indirect reference or <code>null</code> if not set.
  2055. @param dataValueDescriptor The data value descriptor or <code>null</code> if not set.
  2056. @param encoding The encoding to be used for the external data
  2057. @param externalData The external data
  2058. </member>
  2059. <member name="P:Org.BouncyCastle.Asn1.DerExternal.Encoding">
  2060. The encoding of the content. Valid values are
  2061. <ul>
  2062. <li><code>0</code> single-ASN1-type</li>
  2063. <li><code>1</code> OCTET STRING</li>
  2064. <li><code>2</code> BIT STRING</li>
  2065. </ul>
  2066. </member>
  2067. <member name="T:Org.BouncyCastle.Asn1.DerGeneralizedTime">
  2068. Generalized time object.
  2069. </member>
  2070. <member name="M:Org.BouncyCastle.Asn1.DerGeneralizedTime.GetInstance(System.Object)">
  2071. return a generalized time from the passed in object
  2072. @exception ArgumentException if the object cannot be converted.
  2073. </member>
  2074. <member name="M:Org.BouncyCastle.Asn1.DerGeneralizedTime.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2075. return a Generalized Time object from a tagged object.
  2076. @param obj the tagged object holding the object we want
  2077. @param explicitly true if the object is meant to be explicitly
  2078. tagged false otherwise.
  2079. @exception ArgumentException if the tagged object cannot
  2080. be converted.
  2081. </member>
  2082. <member name="M:Org.BouncyCastle.Asn1.DerGeneralizedTime.#ctor(System.String)">
  2083. The correct format for this is YYYYMMDDHHMMSS[.f]Z, or without the Z
  2084. for local time, or Z+-HHMM on the end, for difference between local
  2085. time and UTC time. The fractional second amount f must consist of at
  2086. least one number with trailing zeroes removed.
  2087. @param time the time string.
  2088. @exception ArgumentException if string is an illegal format.
  2089. </member>
  2090. <member name="M:Org.BouncyCastle.Asn1.DerGeneralizedTime.#ctor(System.DateTime)">
  2091. base constructor from a local time object
  2092. </member>
  2093. <member name="P:Org.BouncyCastle.Asn1.DerGeneralizedTime.TimeString">
  2094. Return the time.
  2095. @return The time string as it appeared in the encoded object.
  2096. </member>
  2097. <member name="M:Org.BouncyCastle.Asn1.DerGeneralizedTime.GetTime">
  2098. return the time - always in the form of
  2099. YYYYMMDDhhmmssGMT(+hh:mm|-hh:mm).
  2100. <p>
  2101. Normally in a certificate we would expect "Z" rather than "GMT",
  2102. however adding the "GMT" means we can just use:
  2103. <pre>
  2104. dateF = new SimpleDateFormat("yyyyMMddHHmmssz");
  2105. </pre>
  2106. To read in the time and Get a date which is compatible with our local
  2107. time zone.</p>
  2108. </member>
  2109. <member name="M:Org.BouncyCastle.Asn1.DerGraphicString.GetInstance(System.Object)">
  2110. return a Graphic String from the passed in object
  2111. @param obj a DerGraphicString or an object that can be converted into one.
  2112. @exception IllegalArgumentException if the object cannot be converted.
  2113. @return a DerGraphicString instance, or null.
  2114. </member>
  2115. <member name="M:Org.BouncyCastle.Asn1.DerGraphicString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2116. return a Graphic String from a tagged object.
  2117. @param obj the tagged object holding the object we want
  2118. @param explicit true if the object is meant to be explicitly
  2119. tagged false otherwise.
  2120. @exception IllegalArgumentException if the tagged object cannot
  2121. be converted.
  2122. @return a DerGraphicString instance, or null.
  2123. </member>
  2124. <member name="M:Org.BouncyCastle.Asn1.DerGraphicString.#ctor(System.Byte[])">
  2125. basic constructor - with bytes.
  2126. @param string the byte encoding of the characters making up the string.
  2127. </member>
  2128. <member name="T:Org.BouncyCastle.Asn1.DerIA5String">
  2129. Der IA5String object - this is an ascii string.
  2130. </member>
  2131. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.GetInstance(System.Object)">
  2132. return a IA5 string from the passed in object
  2133. @exception ArgumentException if the object cannot be converted.
  2134. </member>
  2135. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2136. return an IA5 string from a tagged object.
  2137. @param obj the tagged object holding the object we want
  2138. @param explicitly true if the object is meant to be explicitly
  2139. tagged false otherwise.
  2140. @exception ArgumentException if the tagged object cannot
  2141. be converted.
  2142. </member>
  2143. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.#ctor(System.Byte[])">
  2144. basic constructor - with bytes.
  2145. </member>
  2146. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.#ctor(System.String)">
  2147. basic constructor - without validation.
  2148. </member>
  2149. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.#ctor(System.String,System.Boolean)">
  2150. Constructor with optional validation.
  2151. @param string the base string to wrap.
  2152. @param validate whether or not to check the string.
  2153. @throws ArgumentException if validate is true and the string
  2154. contains characters that should not be in an IA5String.
  2155. </member>
  2156. <member name="M:Org.BouncyCastle.Asn1.DerIA5String.IsIA5String(System.String)">
  2157. return true if the passed in String can be represented without
  2158. loss as an IA5String, false otherwise.
  2159. @return true if in printable set, false otherwise.
  2160. </member>
  2161. <member name="M:Org.BouncyCastle.Asn1.DerInteger.GetInstance(System.Object)">
  2162. return an integer from the passed in object
  2163. @exception ArgumentException if the object cannot be converted.
  2164. </member>
  2165. <member name="M:Org.BouncyCastle.Asn1.DerInteger.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2166. return an Integer from a tagged object.
  2167. @param obj the tagged object holding the object we want
  2168. @param isExplicit true if the object is meant to be explicitly
  2169. tagged false otherwise.
  2170. @exception ArgumentException if the tagged object cannot
  2171. be converted.
  2172. </member>
  2173. <member name="P:Org.BouncyCastle.Asn1.DerInteger.PositiveValue">
  2174. in some cases positive values Get crammed into a space,
  2175. that's not quite big enough...
  2176. </member>
  2177. <member name="T:Org.BouncyCastle.Asn1.DerNull">
  2178. A Null object.
  2179. </member>
  2180. <member name="T:Org.BouncyCastle.Asn1.DerNumericString">
  2181. Der NumericString object - this is an ascii string of characters {0,1,2,3,4,5,6,7,8,9, }.
  2182. </member>
  2183. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.GetInstance(System.Object)">
  2184. return a Numeric string from the passed in object
  2185. @exception ArgumentException if the object cannot be converted.
  2186. </member>
  2187. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2188. return an Numeric string from a tagged object.
  2189. @param obj the tagged object holding the object we want
  2190. @param explicitly true if the object is meant to be explicitly
  2191. tagged false otherwise.
  2192. @exception ArgumentException if the tagged object cannot
  2193. be converted.
  2194. </member>
  2195. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.#ctor(System.Byte[])">
  2196. basic constructor - with bytes.
  2197. </member>
  2198. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.#ctor(System.String)">
  2199. basic constructor - without validation..
  2200. </member>
  2201. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.#ctor(System.String,System.Boolean)">
  2202. Constructor with optional validation.
  2203. @param string the base string to wrap.
  2204. @param validate whether or not to check the string.
  2205. @throws ArgumentException if validate is true and the string
  2206. contains characters that should not be in a NumericString.
  2207. </member>
  2208. <member name="M:Org.BouncyCastle.Asn1.DerNumericString.IsNumericString(System.String)">
  2209. Return true if the string can be represented as a NumericString ('0'..'9', ' ')
  2210. @param str string to validate.
  2211. @return true if numeric, fale otherwise.
  2212. </member>
  2213. <member name="M:Org.BouncyCastle.Asn1.DerObjectIdentifier.GetInstance(System.Object)">
  2214. return an Oid from the passed in object
  2215. @exception ArgumentException if the object cannot be converted.
  2216. </member>
  2217. <member name="M:Org.BouncyCastle.Asn1.DerObjectIdentifier.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2218. return an object Identifier from a tagged object.
  2219. @param obj the tagged object holding the object we want
  2220. @param explicitly true if the object is meant to be explicitly
  2221. tagged false otherwise.
  2222. @exception ArgumentException if the tagged object cannot
  2223. be converted.
  2224. </member>
  2225. <member name="M:Org.BouncyCastle.Asn1.DerObjectIdentifier.On(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  2226. Return true if this oid is an extension of the passed in branch, stem.
  2227. @param stem the arc or branch that is a possible parent.
  2228. @return true if the branch is on the passed in stem, false otherwise.
  2229. </member>
  2230. <member name="M:Org.BouncyCastle.Asn1.DerOctetString.#ctor(System.Byte[])">
  2231. <param name="str">The octets making up the octet string.</param>
  2232. </member>
  2233. <member name="T:Org.BouncyCastle.Asn1.DerPrintableString">
  2234. Der PrintableString object.
  2235. </member>
  2236. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.GetInstance(System.Object)">
  2237. return a printable string from the passed in object.
  2238. @exception ArgumentException if the object cannot be converted.
  2239. </member>
  2240. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2241. return a Printable string from a tagged object.
  2242. @param obj the tagged object holding the object we want
  2243. @param explicitly true if the object is meant to be explicitly
  2244. tagged false otherwise.
  2245. @exception ArgumentException if the tagged object cannot
  2246. be converted.
  2247. </member>
  2248. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.#ctor(System.Byte[])">
  2249. basic constructor - byte encoded string.
  2250. </member>
  2251. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.#ctor(System.String)">
  2252. basic constructor - this does not validate the string
  2253. </member>
  2254. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.#ctor(System.String,System.Boolean)">
  2255. Constructor with optional validation.
  2256. @param string the base string to wrap.
  2257. @param validate whether or not to check the string.
  2258. @throws ArgumentException if validate is true and the string
  2259. contains characters that should not be in a PrintableString.
  2260. </member>
  2261. <member name="M:Org.BouncyCastle.Asn1.DerPrintableString.IsPrintableString(System.String)">
  2262. return true if the passed in String can be represented without
  2263. loss as a PrintableString, false otherwise.
  2264. @return true if in printable set, false otherwise.
  2265. </member>
  2266. <member name="M:Org.BouncyCastle.Asn1.DerSequence.#ctor">
  2267. create an empty sequence
  2268. </member>
  2269. <member name="M:Org.BouncyCastle.Asn1.DerSequence.#ctor(Org.BouncyCastle.Asn1.Asn1Encodable)">
  2270. create a sequence containing one object
  2271. </member>
  2272. <member name="M:Org.BouncyCastle.Asn1.DerSequence.#ctor(Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  2273. create a sequence containing a vector of objects.
  2274. </member>
  2275. <member name="T:Org.BouncyCastle.Asn1.DerSet">
  2276. A Der encoded set object
  2277. </member>
  2278. <member name="M:Org.BouncyCastle.Asn1.DerSet.#ctor">
  2279. create an empty set
  2280. </member>
  2281. <member name="M:Org.BouncyCastle.Asn1.DerSet.#ctor(Org.BouncyCastle.Asn1.Asn1Encodable)">
  2282. @param obj - a single object that makes up the set.
  2283. </member>
  2284. <member name="M:Org.BouncyCastle.Asn1.DerSet.#ctor(Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  2285. @param v - a vector of objects making up the set.
  2286. </member>
  2287. <member name="T:Org.BouncyCastle.Asn1.DerT61String">
  2288. Der T61String (also the teletex string) - 8-bit characters
  2289. </member>
  2290. <member name="M:Org.BouncyCastle.Asn1.DerT61String.GetInstance(System.Object)">
  2291. return a T61 string from the passed in object.
  2292. @exception ArgumentException if the object cannot be converted.
  2293. </member>
  2294. <member name="M:Org.BouncyCastle.Asn1.DerT61String.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2295. return an T61 string from a tagged object.
  2296. @param obj the tagged object holding the object we want
  2297. @param explicitly true if the object is meant to be explicitly
  2298. tagged false otherwise.
  2299. @exception ArgumentException if the tagged object cannot
  2300. be converted.
  2301. </member>
  2302. <member name="M:Org.BouncyCastle.Asn1.DerT61String.#ctor(System.Byte[])">
  2303. basic constructor - with bytes.
  2304. </member>
  2305. <member name="M:Org.BouncyCastle.Asn1.DerT61String.#ctor(System.String)">
  2306. basic constructor - with string.
  2307. </member>
  2308. <member name="T:Org.BouncyCastle.Asn1.DerTaggedObject">
  2309. DER TaggedObject - in ASN.1 notation this is any object preceded by
  2310. a [n] where n is some number - these are assumed to follow the construction
  2311. rules (as with sequences).
  2312. </member>
  2313. <member name="M:Org.BouncyCastle.Asn1.DerTaggedObject.#ctor(System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  2314. @param tagNo the tag number for this object.
  2315. @param obj the tagged object.
  2316. </member>
  2317. <member name="M:Org.BouncyCastle.Asn1.DerTaggedObject.#ctor(System.Boolean,System.Int32,Org.BouncyCastle.Asn1.Asn1Encodable)">
  2318. @param explicitly true if an explicitly tagged object.
  2319. @param tagNo the tag number for this object.
  2320. @param obj the tagged object.
  2321. </member>
  2322. <member name="M:Org.BouncyCastle.Asn1.DerTaggedObject.#ctor(System.Int32)">
  2323. create an implicitly tagged object that contains a zero
  2324. length sequence.
  2325. </member>
  2326. <member name="T:Org.BouncyCastle.Asn1.DerUniversalString">
  2327. Der UniversalString object.
  2328. </member>
  2329. <member name="M:Org.BouncyCastle.Asn1.DerUniversalString.GetInstance(System.Object)">
  2330. return a Universal string from the passed in object.
  2331. @exception ArgumentException if the object cannot be converted.
  2332. </member>
  2333. <member name="M:Org.BouncyCastle.Asn1.DerUniversalString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2334. return a Universal string from a tagged object.
  2335. @param obj the tagged object holding the object we want
  2336. @param explicitly true if the object is meant to be explicitly
  2337. tagged false otherwise.
  2338. @exception ArgumentException if the tagged object cannot
  2339. be converted.
  2340. </member>
  2341. <member name="M:Org.BouncyCastle.Asn1.DerUniversalString.#ctor(System.Byte[])">
  2342. basic constructor - byte encoded string.
  2343. </member>
  2344. <member name="T:Org.BouncyCastle.Asn1.DerUtcTime">
  2345. UTC time object.
  2346. </member>
  2347. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.GetInstance(System.Object)">
  2348. return an UTC Time from the passed in object.
  2349. @exception ArgumentException if the object cannot be converted.
  2350. </member>
  2351. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2352. return an UTC Time from a tagged object.
  2353. @param obj the tagged object holding the object we want
  2354. @param explicitly true if the object is meant to be explicitly
  2355. tagged false otherwise.
  2356. @exception ArgumentException if the tagged object cannot
  2357. be converted.
  2358. </member>
  2359. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.#ctor(System.String)">
  2360. The correct format for this is YYMMDDHHMMSSZ (it used to be that seconds were
  2361. never encoded. When you're creating one of these objects from scratch, that's
  2362. what you want to use, otherwise we'll try to deal with whatever Gets read from
  2363. the input stream... (this is why the input format is different from the GetTime()
  2364. method output).
  2365. <p>
  2366. @param time the time string.</p>
  2367. </member>
  2368. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.#ctor(System.DateTime)">
  2369. base constructor from a DateTime object
  2370. </member>
  2371. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.ToDateTime">
  2372. return the time as a date based on whatever a 2 digit year will return. For
  2373. standardised processing use ToAdjustedDateTime().
  2374. @return the resulting date
  2375. @exception ParseException if the date string cannot be parsed.
  2376. </member>
  2377. <member name="M:Org.BouncyCastle.Asn1.DerUtcTime.ToAdjustedDateTime">
  2378. return the time as an adjusted date
  2379. in the range of 1950 - 2049.
  2380. @return a date in the range of 1950 to 2049.
  2381. @exception ParseException if the date string cannot be parsed.
  2382. </member>
  2383. <member name="P:Org.BouncyCastle.Asn1.DerUtcTime.TimeString">
  2384. return the time - always in the form of
  2385. YYMMDDhhmmssGMT(+hh:mm|-hh:mm).
  2386. <p>
  2387. Normally in a certificate we would expect "Z" rather than "GMT",
  2388. however adding the "GMT" means we can just use:
  2389. <pre>
  2390. dateF = new SimpleDateFormat("yyMMddHHmmssz");
  2391. </pre>
  2392. To read in the time and Get a date which is compatible with our local
  2393. time zone.</p>
  2394. <p>
  2395. <b>Note:</b> In some cases, due to the local date processing, this
  2396. may lead to unexpected results. If you want to stick the normal
  2397. convention of 1950 to 2049 use the GetAdjustedTime() method.</p>
  2398. </member>
  2399. <member name="P:Org.BouncyCastle.Asn1.DerUtcTime.AdjustedTimeString">
  2400. <summary>
  2401. Return a time string as an adjusted date with a 4 digit year.
  2402. This goes in the range of 1950 - 2049.
  2403. </summary>
  2404. </member>
  2405. <member name="T:Org.BouncyCastle.Asn1.DerUtf8String">
  2406. Der UTF8String object.
  2407. </member>
  2408. <member name="M:Org.BouncyCastle.Asn1.DerUtf8String.GetInstance(System.Object)">
  2409. return an UTF8 string from the passed in object.
  2410. @exception ArgumentException if the object cannot be converted.
  2411. </member>
  2412. <member name="M:Org.BouncyCastle.Asn1.DerUtf8String.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2413. return an UTF8 string from a tagged object.
  2414. @param obj the tagged object holding the object we want
  2415. @param explicitly true if the object is meant to be explicitly
  2416. tagged false otherwise.
  2417. @exception ArgumentException if the tagged object cannot
  2418. be converted.
  2419. </member>
  2420. <member name="M:Org.BouncyCastle.Asn1.DerUtf8String.#ctor(System.Byte[])">
  2421. basic constructor - byte encoded string.
  2422. </member>
  2423. <member name="M:Org.BouncyCastle.Asn1.DerUtf8String.#ctor(System.String)">
  2424. basic constructor
  2425. </member>
  2426. <member name="M:Org.BouncyCastle.Asn1.DerVideotexString.GetInstance(System.Object)">
  2427. return a Videotex String from the passed in object
  2428. @param obj a DERVideotexString or an object that can be converted into one.
  2429. @exception IllegalArgumentException if the object cannot be converted.
  2430. @return a DERVideotexString instance, or null.
  2431. </member>
  2432. <member name="M:Org.BouncyCastle.Asn1.DerVideotexString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2433. return a Videotex String from a tagged object.
  2434. @param obj the tagged object holding the object we want
  2435. @param explicit true if the object is meant to be explicitly
  2436. tagged false otherwise.
  2437. @exception IllegalArgumentException if the tagged object cannot
  2438. be converted.
  2439. @return a DERVideotexString instance, or null.
  2440. </member>
  2441. <member name="M:Org.BouncyCastle.Asn1.DerVideotexString.#ctor(System.Byte[])">
  2442. basic constructor - with bytes.
  2443. @param string the byte encoding of the characters making up the string.
  2444. </member>
  2445. <member name="T:Org.BouncyCastle.Asn1.DerVisibleString">
  2446. Der VisibleString object.
  2447. </member>
  2448. <member name="M:Org.BouncyCastle.Asn1.DerVisibleString.GetInstance(System.Object)">
  2449. return a Visible string from the passed in object.
  2450. @exception ArgumentException if the object cannot be converted.
  2451. </member>
  2452. <member name="M:Org.BouncyCastle.Asn1.DerVisibleString.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  2453. return a Visible string from a tagged object.
  2454. @param obj the tagged object holding the object we want
  2455. @param explicitly true if the object is meant to be explicitly
  2456. tagged false otherwise.
  2457. @exception ArgumentException if the tagged object cannot
  2458. be converted.
  2459. </member>
  2460. <member name="M:Org.BouncyCastle.Asn1.DerVisibleString.#ctor(System.Byte[])">
  2461. basic constructor - byte encoded string.
  2462. </member>
  2463. <member name="M:Org.BouncyCastle.Asn1.DerVisibleString.#ctor(System.String)">
  2464. basic constructor
  2465. </member>
  2466. <member name="T:Org.BouncyCastle.Asn1.EdEC.EdECObjectIdentifiers">
  2467. Edwards Elliptic Curve Object Identifiers (RFC 8410)
  2468. </member>
  2469. <member name="T:Org.BouncyCastle.Asn1.Esf.CertificateValues">
  2470. <remarks>
  2471. RFC 3126: 4.3.1 Certificate Values Attribute Definition
  2472. <code>
  2473. CertificateValues ::= SEQUENCE OF Certificate
  2474. </code>
  2475. </remarks>
  2476. </member>
  2477. <member name="M:Org.BouncyCastle.Asn1.Esf.CommitmentTypeIndication.ToAsn1Object">
  2478. <pre>
  2479. CommitmentTypeIndication ::= SEQUENCE {
  2480. commitmentTypeId CommitmentTypeIdentifier,
  2481. commitmentTypeQualifier SEQUENCE SIZE (1..MAX) OF
  2482. CommitmentTypeQualifier OPTIONAL }
  2483. </pre>
  2484. </member>
  2485. <member name="T:Org.BouncyCastle.Asn1.Esf.CommitmentTypeQualifier">
  2486. Commitment type qualifiers, used in the Commitment-Type-Indication attribute (RFC3126).
  2487. <pre>
  2488. CommitmentTypeQualifier ::= SEQUENCE {
  2489. commitmentTypeIdentifier CommitmentTypeIdentifier,
  2490. qualifier ANY DEFINED BY commitmentTypeIdentifier OPTIONAL }
  2491. </pre>
  2492. </member>
  2493. <member name="M:Org.BouncyCastle.Asn1.Esf.CommitmentTypeQualifier.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  2494. Creates a new <code>CommitmentTypeQualifier</code> instance.
  2495. @param commitmentTypeIdentifier a <code>CommitmentTypeIdentifier</code> value
  2496. </member>
  2497. <member name="M:Org.BouncyCastle.Asn1.Esf.CommitmentTypeQualifier.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.Asn1Encodable)">
  2498. Creates a new <code>CommitmentTypeQualifier</code> instance.
  2499. @param commitmentTypeIdentifier a <code>CommitmentTypeIdentifier</code> value
  2500. @param qualifier the qualifier, defined by the above field.
  2501. </member>
  2502. <member name="M:Org.BouncyCastle.Asn1.Esf.CommitmentTypeQualifier.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2503. Creates a new <code>CommitmentTypeQualifier</code> instance.
  2504. @param as <code>CommitmentTypeQualifier</code> structure
  2505. encoded as an Asn1Sequence.
  2506. </member>
  2507. <member name="M:Org.BouncyCastle.Asn1.Esf.CommitmentTypeQualifier.ToAsn1Object">
  2508. Returns a DER-encodable representation of this instance.
  2509. @return a <code>Asn1Object</code> value
  2510. </member>
  2511. <member name="T:Org.BouncyCastle.Asn1.Esf.CompleteCertificateRefs">
  2512. <remarks>
  2513. RFC 3126: 4.2.1 Complete Certificate Refs Attribute Definition
  2514. <code>
  2515. CompleteCertificateRefs ::= SEQUENCE OF OtherCertID
  2516. </code>
  2517. </remarks>
  2518. </member>
  2519. <member name="T:Org.BouncyCastle.Asn1.Esf.CompleteRevocationRefs">
  2520. <remarks>
  2521. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2522. <code>
  2523. CompleteRevocationRefs ::= SEQUENCE OF CrlOcspRef
  2524. </code>
  2525. </remarks>
  2526. </member>
  2527. <member name="T:Org.BouncyCastle.Asn1.Esf.CrlIdentifier">
  2528. <remarks>
  2529. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2530. <code>
  2531. CrlIdentifier ::= SEQUENCE
  2532. {
  2533. crlissuer Name,
  2534. crlIssuedTime UTCTime,
  2535. crlNumber INTEGER OPTIONAL
  2536. }
  2537. </code>
  2538. </remarks>
  2539. </member>
  2540. <member name="T:Org.BouncyCastle.Asn1.Esf.CrlListID">
  2541. <remarks>
  2542. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2543. <code>
  2544. CRLListID ::= SEQUENCE
  2545. {
  2546. crls SEQUENCE OF CrlValidatedID
  2547. }
  2548. </code>
  2549. </remarks>
  2550. </member>
  2551. <member name="T:Org.BouncyCastle.Asn1.Esf.CrlOcspRef">
  2552. <remarks>
  2553. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2554. <code>
  2555. CrlOcspRef ::= SEQUENCE {
  2556. crlids [0] CRLListID OPTIONAL,
  2557. ocspids [1] OcspListID OPTIONAL,
  2558. otherRev [2] OtherRevRefs OPTIONAL
  2559. }
  2560. </code>
  2561. </remarks>
  2562. </member>
  2563. <member name="T:Org.BouncyCastle.Asn1.Esf.CrlValidatedID">
  2564. <remarks>
  2565. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2566. <code>
  2567. CrlValidatedID ::= SEQUENCE {
  2568. crlHash OtherHash,
  2569. crlIdentifier CrlIdentifier OPTIONAL}
  2570. </code>
  2571. </remarks>
  2572. </member>
  2573. <member name="T:Org.BouncyCastle.Asn1.Esf.OcspIdentifier">
  2574. <remarks>
  2575. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2576. <code>
  2577. OcspIdentifier ::= SEQUENCE {
  2578. ocspResponderID ResponderID,
  2579. -- As in OCSP response data
  2580. producedAt GeneralizedTime
  2581. -- As in OCSP response data
  2582. }
  2583. </code>
  2584. </remarks>
  2585. </member>
  2586. <member name="T:Org.BouncyCastle.Asn1.Esf.OcspListID">
  2587. <remarks>
  2588. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2589. <code>
  2590. OcspListID ::= SEQUENCE {
  2591. ocspResponses SEQUENCE OF OcspResponsesID
  2592. }
  2593. </code>
  2594. </remarks>
  2595. </member>
  2596. <member name="T:Org.BouncyCastle.Asn1.Esf.OcspResponsesID">
  2597. <remarks>
  2598. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2599. <code>
  2600. OcspResponsesID ::= SEQUENCE {
  2601. ocspIdentifier OcspIdentifier,
  2602. ocspRepHash OtherHash OPTIONAL
  2603. }
  2604. </code>
  2605. </remarks>
  2606. </member>
  2607. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherCertID">
  2608. <remarks>
  2609. <code>
  2610. OtherCertID ::= SEQUENCE {
  2611. otherCertHash OtherHash,
  2612. issuerSerial IssuerSerial OPTIONAL
  2613. }
  2614. </code>
  2615. </remarks>
  2616. </member>
  2617. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherHash">
  2618. <remarks>
  2619. <code>
  2620. OtherHash ::= CHOICE {
  2621. sha1Hash OtherHashValue, -- This contains a SHA-1 hash
  2622. otherHash OtherHashAlgAndValue
  2623. }
  2624. OtherHashValue ::= OCTET STRING
  2625. </code>
  2626. </remarks>
  2627. </member>
  2628. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherHashAlgAndValue">
  2629. <summary>
  2630. Summary description for OtherHashAlgAndValue.
  2631. </summary>
  2632. <remarks>
  2633. <code>
  2634. OtherHashAlgAndValue ::= SEQUENCE {
  2635. hashAlgorithm AlgorithmIdentifier,
  2636. hashValue OtherHashValue
  2637. }
  2638. OtherHashValue ::= OCTET STRING
  2639. </code>
  2640. </remarks>
  2641. </member>
  2642. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherRevRefs">
  2643. <remarks>
  2644. RFC 3126: 4.2.2 Complete Revocation Refs Attribute Definition
  2645. <code>
  2646. OtherRevRefs ::= SEQUENCE
  2647. {
  2648. otherRevRefType OtherRevRefType,
  2649. otherRevRefs ANY DEFINED BY otherRevRefType
  2650. }
  2651. OtherRevRefType ::= OBJECT IDENTIFIER
  2652. </code>
  2653. </remarks>
  2654. </member>
  2655. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherRevVals">
  2656. <remarks>
  2657. RFC 3126: 4.3.2 Revocation Values Attribute Definition
  2658. <code>
  2659. OtherRevVals ::= SEQUENCE
  2660. {
  2661. otherRevValType OtherRevValType,
  2662. otherRevVals ANY DEFINED BY otherRevValType
  2663. }
  2664. OtherRevValType ::= OBJECT IDENTIFIER
  2665. </code>
  2666. </remarks>
  2667. </member>
  2668. <member name="T:Org.BouncyCastle.Asn1.Esf.OtherSigningCertificate">
  2669. <remarks>
  2670. <code>
  2671. OtherSigningCertificate ::= SEQUENCE {
  2672. certs SEQUENCE OF OtherCertID,
  2673. policies SEQUENCE OF PolicyInformation OPTIONAL
  2674. }
  2675. </code>
  2676. </remarks>
  2677. </member>
  2678. <member name="T:Org.BouncyCastle.Asn1.Esf.RevocationValues">
  2679. <remarks>
  2680. RFC 5126: 6.3.4. revocation-values Attribute Definition
  2681. <code>
  2682. RevocationValues ::= SEQUENCE {
  2683. crlVals [0] SEQUENCE OF CertificateList OPTIONAL,
  2684. ocspVals [1] SEQUENCE OF BasicOCSPResponse OPTIONAL,
  2685. otherRevVals [2] OtherRevVals OPTIONAL
  2686. }
  2687. </code>
  2688. </remarks>
  2689. </member>
  2690. <member name="T:Org.BouncyCastle.Asn1.Esf.SignaturePolicyId">
  2691. <remarks>
  2692. <code>
  2693. SignaturePolicyId ::= SEQUENCE {
  2694. sigPolicyIdentifier SigPolicyId,
  2695. sigPolicyHash SigPolicyHash,
  2696. sigPolicyQualifiers SEQUENCE SIZE (1..MAX) OF SigPolicyQualifierInfo OPTIONAL
  2697. }
  2698. SigPolicyId ::= OBJECT IDENTIFIER
  2699. SigPolicyHash ::= OtherHashAlgAndValue
  2700. </code>
  2701. </remarks>
  2702. </member>
  2703. <member name="T:Org.BouncyCastle.Asn1.Esf.SignaturePolicyIdentifier">
  2704. <remarks>
  2705. <code>
  2706. SignaturePolicyIdentifier ::= CHOICE {
  2707. SignaturePolicyId SignaturePolicyId,
  2708. SignaturePolicyImplied SignaturePolicyImplied
  2709. }
  2710. SignaturePolicyImplied ::= NULL
  2711. </code>
  2712. </remarks>
  2713. </member>
  2714. <member name="M:Org.BouncyCastle.Asn1.Esf.SignerAttribute.ToAsn1Object">
  2715. <pre>
  2716. SignerAttribute ::= SEQUENCE OF CHOICE {
  2717. claimedAttributes [0] ClaimedAttributes,
  2718. certifiedAttributes [1] CertifiedAttributes }
  2719. ClaimedAttributes ::= SEQUENCE OF Attribute
  2720. CertifiedAttributes ::= AttributeCertificate -- as defined in RFC 3281: see clause 4.1.
  2721. </pre>
  2722. </member>
  2723. <member name="T:Org.BouncyCastle.Asn1.Esf.SignerLocation">
  2724. Signer-Location attribute (RFC3126).
  2725. <pre>
  2726. SignerLocation ::= SEQUENCE {
  2727. countryName [0] DirectoryString OPTIONAL,
  2728. localityName [1] DirectoryString OPTIONAL,
  2729. postalAddress [2] PostalAddress OPTIONAL }
  2730. PostalAddress ::= SEQUENCE SIZE(1..6) OF DirectoryString
  2731. </pre>
  2732. </member>
  2733. <member name="M:Org.BouncyCastle.Asn1.Esf.SignerLocation.ToAsn1Object">
  2734. <pre>
  2735. SignerLocation ::= SEQUENCE {
  2736. countryName [0] DirectoryString OPTIONAL,
  2737. localityName [1] DirectoryString OPTIONAL,
  2738. postalAddress [2] PostalAddress OPTIONAL }
  2739. PostalAddress ::= SEQUENCE SIZE(1..6) OF DirectoryString
  2740. DirectoryString ::= CHOICE {
  2741. teletexString TeletexString (SIZE (1..MAX)),
  2742. printableString PrintableString (SIZE (1..MAX)),
  2743. universalString UniversalString (SIZE (1..MAX)),
  2744. utf8String UTF8String (SIZE (1.. MAX)),
  2745. bmpString BMPString (SIZE (1..MAX)) }
  2746. </pre>
  2747. </member>
  2748. <member name="T:Org.BouncyCastle.Asn1.Esf.SigPolicyQualifierInfo">
  2749. <remarks>
  2750. <code>
  2751. SigPolicyQualifierInfo ::= SEQUENCE {
  2752. sigPolicyQualifierId SigPolicyQualifierId,
  2753. sigQualifier ANY DEFINED BY sigPolicyQualifierId
  2754. }
  2755. SigPolicyQualifierId ::= OBJECT IDENTIFIER
  2756. </code>
  2757. </remarks>
  2758. </member>
  2759. <member name="M:Org.BouncyCastle.Asn1.Ess.ContentHints.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2760. constructor
  2761. </member>
  2762. <member name="M:Org.BouncyCastle.Asn1.Ess.ContentHints.ToAsn1Object">
  2763. <pre>
  2764. ContentHints ::= SEQUENCE {
  2765. contentDescription UTF8String (SIZE (1..MAX)) OPTIONAL,
  2766. contentType ContentType }
  2767. </pre>
  2768. </member>
  2769. <member name="M:Org.BouncyCastle.Asn1.Ess.ContentIdentifier.#ctor(Org.BouncyCastle.Asn1.Asn1OctetString)">
  2770. Create from OCTET STRING whose octets represent the identifier.
  2771. </member>
  2772. <member name="M:Org.BouncyCastle.Asn1.Ess.ContentIdentifier.#ctor(System.Byte[])">
  2773. Create from byte array representing the identifier.
  2774. </member>
  2775. <member name="M:Org.BouncyCastle.Asn1.Ess.ContentIdentifier.ToAsn1Object">
  2776. The definition of ContentIdentifier is
  2777. <pre>
  2778. ContentIdentifier ::= OCTET STRING
  2779. </pre>
  2780. id-aa-contentIdentifier OBJECT IDENTIFIER ::= { iso(1)
  2781. member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9)
  2782. smime(16) id-aa(2) 7 }
  2783. </member>
  2784. <member name="M:Org.BouncyCastle.Asn1.Ess.EssCertID.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2785. constructor
  2786. </member>
  2787. <member name="M:Org.BouncyCastle.Asn1.Ess.EssCertID.ToAsn1Object">
  2788. <pre>
  2789. EssCertID ::= SEQUENCE {
  2790. certHash Hash,
  2791. issuerSerial IssuerSerial OPTIONAL }
  2792. </pre>
  2793. </member>
  2794. <member name="M:Org.BouncyCastle.Asn1.Ess.EssCertIDv2.ToAsn1Object">
  2795. <pre>
  2796. EssCertIDv2 ::= SEQUENCE {
  2797. hashAlgorithm AlgorithmIdentifier
  2798. DEFAULT {algorithm id-sha256},
  2799. certHash Hash,
  2800. issuerSerial IssuerSerial OPTIONAL
  2801. }
  2802. Hash ::= OCTET STRING
  2803. IssuerSerial ::= SEQUENCE {
  2804. issuer GeneralNames,
  2805. serialNumber CertificateSerialNumber
  2806. }
  2807. </pre>
  2808. </member>
  2809. <member name="M:Org.BouncyCastle.Asn1.Ess.OtherCertID.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2810. constructor
  2811. </member>
  2812. <member name="M:Org.BouncyCastle.Asn1.Ess.OtherCertID.ToAsn1Object">
  2813. <pre>
  2814. OtherCertID ::= SEQUENCE {
  2815. otherCertHash OtherHash,
  2816. issuerSerial IssuerSerial OPTIONAL }
  2817. OtherHash ::= CHOICE {
  2818. sha1Hash OCTET STRING,
  2819. otherHash OtherHashAlgAndValue }
  2820. OtherHashAlgAndValue ::= SEQUENCE {
  2821. hashAlgorithm AlgorithmIdentifier,
  2822. hashValue OCTET STRING }
  2823. </pre>
  2824. </member>
  2825. <member name="M:Org.BouncyCastle.Asn1.Ess.OtherSigningCertificate.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2826. constructors
  2827. </member>
  2828. <member name="M:Org.BouncyCastle.Asn1.Ess.OtherSigningCertificate.ToAsn1Object">
  2829. The definition of OtherSigningCertificate is
  2830. <pre>
  2831. OtherSigningCertificate ::= SEQUENCE {
  2832. certs SEQUENCE OF OtherCertID,
  2833. policies SEQUENCE OF PolicyInformation OPTIONAL
  2834. }
  2835. </pre>
  2836. id-aa-ets-otherSigCert OBJECT IDENTIFIER ::= { iso(1)
  2837. member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9)
  2838. smime(16) id-aa(2) 19 }
  2839. </member>
  2840. <member name="M:Org.BouncyCastle.Asn1.Ess.SigningCertificate.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  2841. constructors
  2842. </member>
  2843. <member name="M:Org.BouncyCastle.Asn1.Ess.SigningCertificate.ToAsn1Object">
  2844. The definition of SigningCertificate is
  2845. <pre>
  2846. SigningCertificate ::= SEQUENCE {
  2847. certs SEQUENCE OF EssCertID,
  2848. policies SEQUENCE OF PolicyInformation OPTIONAL
  2849. }
  2850. </pre>
  2851. id-aa-signingCertificate OBJECT IDENTIFIER ::= { iso(1)
  2852. member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9)
  2853. smime(16) id-aa(2) 12 }
  2854. </member>
  2855. <member name="M:Org.BouncyCastle.Asn1.Ess.SigningCertificateV2.ToAsn1Object">
  2856. The definition of SigningCertificateV2 is
  2857. <pre>
  2858. SigningCertificateV2 ::= SEQUENCE {
  2859. certs SEQUENCE OF EssCertIDv2,
  2860. policies SEQUENCE OF PolicyInformation OPTIONAL
  2861. }
  2862. </pre>
  2863. id-aa-signingCertificateV2 OBJECT IDENTIFIER ::= { iso(1)
  2864. member-body(2) us(840) rsadsi(113549) pkcs(1) pkcs9(9)
  2865. smime(16) id-aa(2) 47 }
  2866. </member>
  2867. <member name="M:Org.BouncyCastle.Asn1.GM.GMNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  2868. return the X9ECParameters object for the named curve represented by
  2869. the passed in object identifier. Null if the curve isn't present.
  2870. @param oid an object identifier representing a named curve, if present.
  2871. </member>
  2872. <member name="M:Org.BouncyCastle.Asn1.GM.GMNamedCurves.GetOid(System.String)">
  2873. return the object identifier signified by the passed in name. Null
  2874. if there is no object identifier associated with name.
  2875. @return the object identifier associated with name, if present.
  2876. </member>
  2877. <member name="M:Org.BouncyCastle.Asn1.GM.GMNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  2878. return the named curve name represented by the given object identifier.
  2879. </member>
  2880. <member name="P:Org.BouncyCastle.Asn1.GM.GMNamedCurves.Names">
  2881. returns an enumeration containing the name strings for curves
  2882. contained in this structure.
  2883. </member>
  2884. <member name="F:Org.BouncyCastle.Asn1.Gnu.GnuObjectIdentifiers.EllipticCurve">
  2885. 1.3.6.1.4.1.11591.15 - ellipticCurve
  2886. </member>
  2887. <member name="T:Org.BouncyCastle.Asn1.IAsn1Choice">
  2888. Marker interface for CHOICE objects - if you implement this in a roll-your-own
  2889. object, any attempt to tag the object implicitly will convert the tag to an
  2890. explicit one as the encoding rules require.
  2891. <p>
  2892. If you use this interface your class should also implement the getInstance
  2893. pattern which takes a tag object and the tagging mode used.
  2894. </p>
  2895. </member>
  2896. <member name="T:Org.BouncyCastle.Asn1.IAsn1String">
  2897. basic interface for Der string objects.
  2898. </member>
  2899. <member name="T:Org.BouncyCastle.Asn1.Icao.CscaMasterList">
  2900. The CscaMasterList object. This object can be wrapped in a
  2901. CMSSignedData to be published in LDAP.
  2902. <pre>
  2903. CscaMasterList ::= SEQUENCE {
  2904. version CscaMasterListVersion,
  2905. certList SET OF Certificate }
  2906. CscaMasterListVersion :: INTEGER {v0(0)}
  2907. </pre>
  2908. </member>
  2909. <member name="T:Org.BouncyCastle.Asn1.Icao.DataGroupHash">
  2910. The DataGroupHash object.
  2911. <pre>
  2912. DataGroupHash ::= SEQUENCE {
  2913. dataGroupNumber DataGroupNumber,
  2914. dataGroupHashValue OCTET STRING }
  2915. DataGroupNumber ::= INTEGER {
  2916. dataGroup1 (1),
  2917. dataGroup1 (2),
  2918. dataGroup1 (3),
  2919. dataGroup1 (4),
  2920. dataGroup1 (5),
  2921. dataGroup1 (6),
  2922. dataGroup1 (7),
  2923. dataGroup1 (8),
  2924. dataGroup1 (9),
  2925. dataGroup1 (10),
  2926. dataGroup1 (11),
  2927. dataGroup1 (12),
  2928. dataGroup1 (13),
  2929. dataGroup1 (14),
  2930. dataGroup1 (15),
  2931. dataGroup1 (16) }
  2932. </pre>
  2933. </member>
  2934. <member name="T:Org.BouncyCastle.Asn1.Icao.LdsSecurityObject">
  2935. The LDSSecurityObject object (V1.8).
  2936. <pre>
  2937. LDSSecurityObject ::= SEQUENCE {
  2938. version LDSSecurityObjectVersion,
  2939. hashAlgorithm DigestAlgorithmIdentifier,
  2940. dataGroupHashValues SEQUENCE SIZE (2..ub-DataGroups) OF DataHashGroup,
  2941. ldsVersionInfo LDSVersionInfo OPTIONAL
  2942. -- if present, version MUST be v1 }
  2943. DigestAlgorithmIdentifier ::= AlgorithmIdentifier,
  2944. LDSSecurityObjectVersion :: INTEGER {V0(0)}
  2945. </pre>
  2946. </member>
  2947. <member name="M:Org.BouncyCastle.Asn1.Icao.LdsVersionInfo.ToAsn1Object">
  2948. <pre>
  2949. LDSVersionInfo ::= SEQUENCE {
  2950. ldsVersion PRINTABLE STRING
  2951. unicodeVersion PRINTABLE STRING
  2952. }
  2953. </pre>
  2954. @return
  2955. </member>
  2956. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttCPAccredited">
  2957. The id-isismtt-cp-accredited OID indicates that the certificate is a
  2958. qualified certificate according to Directive 1999/93/EC of the European
  2959. Parliament and of the Council of 13 December 1999 on a Community
  2960. Framework for Electronic Signatures, which additionally conforms the
  2961. special requirements of the SigG and has been issued by an accredited CA.
  2962. </member>
  2963. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATDateOfCertGen">
  2964. Certificate extensionDate of certificate generation
  2965. <pre>
  2966. DateOfCertGenSyntax ::= GeneralizedTime
  2967. </pre>
  2968. </member>
  2969. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATProcuration">
  2970. Attribute to indicate that the certificate holder may sign in the name of
  2971. a third person. May also be used as extension in a certificate.
  2972. </member>
  2973. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATAdmission">
  2974. Attribute to indicate admissions to certain professions. May be used as
  2975. attribute in attribute certificate or as extension in a certificate
  2976. </member>
  2977. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATMonetaryLimit">
  2978. Monetary limit for transactions. The QcEuMonetaryLimit QC statement MUST
  2979. be used in new certificates in place of the extension/attribute
  2980. MonetaryLimit since January 1, 2004. For the sake of backward
  2981. compatibility with certificates already in use, SigG conforming
  2982. components MUST support MonetaryLimit (as well as QcEuLimitValue).
  2983. </member>
  2984. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATDeclarationOfMajority">
  2985. A declaration of majority. May be used as attribute in attribute
  2986. certificate or as extension in a certificate
  2987. </member>
  2988. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATIccsn">
  2989. Serial number of the smart card containing the corresponding private key
  2990. <pre>
  2991. ICCSNSyntax ::= OCTET STRING (SIZE(8..20))
  2992. </pre>
  2993. </member>
  2994. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATPKReference">
  2995. Reference for a file of a smartcard that stores the public key of this
  2996. certificate and that is used as �security anchor�.
  2997. <pre>
  2998. PKReferenceSyntax ::= OCTET STRING (SIZE(20))
  2999. </pre>
  3000. </member>
  3001. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATRestriction">
  3002. Some other restriction regarding the usage of this certificate. May be
  3003. used as attribute in attribute certificate or as extension in a
  3004. certificate.
  3005. <pre>
  3006. RestrictionSyntax ::= DirectoryString (SIZE(1..1024))
  3007. </pre>
  3008. @see Org.BouncyCastle.Asn1.IsisMtt.X509.Restriction
  3009. </member>
  3010. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATRetrieveIfAllowed">
  3011. (Single)Request extension: Clients may include this extension in a
  3012. (single) Request to request the responder to send the certificate in the
  3013. response message along with the status information. Besides the LDAP
  3014. service, this extension provides another mechanism for the distribution
  3015. of certificates, which MAY optionally be provided by certificate
  3016. repositories.
  3017. <pre>
  3018. RetrieveIfAllowed ::= BOOLEAN
  3019. </pre>
  3020. </member>
  3021. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATRequestedCertificate">
  3022. SingleOCSPResponse extension: The certificate requested by the client by
  3023. inserting the RetrieveIfAllowed extension in the request, will be
  3024. returned in this extension.
  3025. @see Org.BouncyCastle.Asn1.IsisMtt.Ocsp.RequestedCertificate
  3026. </member>
  3027. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATNamingAuthorities">
  3028. Base ObjectIdentifier for naming authorities
  3029. </member>
  3030. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATCertInDirSince">
  3031. SingleOCSPResponse extension: Date, when certificate has been published
  3032. in the directory and status information has become available. Currently,
  3033. accrediting authorities enforce that SigG-conforming OCSP servers include
  3034. this extension in the responses.
  3035. <pre>
  3036. CertInDirSince ::= GeneralizedTime
  3037. </pre>
  3038. </member>
  3039. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATCertHash">
  3040. Hash of a certificate in OCSP.
  3041. @see Org.BouncyCastle.Asn1.IsisMtt.Ocsp.CertHash
  3042. </member>
  3043. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATNameAtBirth">
  3044. <pre>
  3045. NameAtBirth ::= DirectoryString(SIZE(1..64)
  3046. </pre>
  3047. Used in
  3048. {@link Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes SubjectDirectoryAttributes}
  3049. </member>
  3050. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATAdditionalInformation">
  3051. Some other information of non-restrictive nature regarding the usage of
  3052. this certificate. May be used as attribute in atribute certificate or as
  3053. extension in a certificate.
  3054. <pre>
  3055. AdditionalInformationSyntax ::= DirectoryString (SIZE(1..2048))
  3056. </pre>
  3057. @see Org.BouncyCastle.Asn1.IsisMtt.X509.AdditionalInformationSyntax
  3058. </member>
  3059. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.IsisMttObjectIdentifiers.IdIsisMttATLiabilityLimitationFlag">
  3060. Indicates that an attribute certificate exists, which limits the
  3061. usability of this public key certificate. Whenever verifying a signature
  3062. with the help of this certificate, the content of the corresponding
  3063. attribute certificate should be concerned. This extension MUST be
  3064. included in a PKC, if a corresponding attribute certificate (having the
  3065. PKC as base certificate) contains some attribute that restricts the
  3066. usability of the PKC too. Attribute certificates with restricting content
  3067. MUST always be included in the signed document.
  3068. <pre>
  3069. LiabilityLimitationFlagSyntax ::= BOOLEAN
  3070. </pre>
  3071. </member>
  3072. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.CertHash">
  3073. ISIS-MTT PROFILE: The responder may include this extension in a response to
  3074. send the hash of the requested certificate to the responder. This hash is
  3075. cryptographically bound to the certificate and serves as evidence that the
  3076. certificate is known to the responder (i.e. it has been issued and is present
  3077. in the directory). Hence, this extension is a means to provide a positive
  3078. statement of availability as described in T8.[8]. As explained in T13.[1],
  3079. clients may rely on this information to be able to validate signatures after
  3080. the expiry of the corresponding certificate. Hence, clients MUST support this
  3081. extension. If a positive statement of availability is to be delivered, this
  3082. extension syntax and OID MUST be used.
  3083. <p/>
  3084. <p/>
  3085. <pre>
  3086. CertHash ::= SEQUENCE {
  3087. hashAlgorithm AlgorithmIdentifier,
  3088. certificateHash OCTET STRING
  3089. }
  3090. </pre>
  3091. </member>
  3092. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.CertHash.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3093. Constructor from Asn1Sequence.
  3094. <p/>
  3095. The sequence is of type CertHash:
  3096. <p/>
  3097. <pre>
  3098. CertHash ::= SEQUENCE {
  3099. hashAlgorithm AlgorithmIdentifier,
  3100. certificateHash OCTET STRING
  3101. }
  3102. </pre>
  3103. @param seq The ASN.1 sequence.
  3104. </member>
  3105. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.CertHash.#ctor(Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier,System.Byte[])">
  3106. Constructor from a given details.
  3107. @param hashAlgorithm The hash algorithm identifier.
  3108. @param certificateHash The hash of the whole DER encoding of the certificate.
  3109. </member>
  3110. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.CertHash.ToAsn1Object">
  3111. Produce an object suitable for an Asn1OutputStream.
  3112. <p/>
  3113. Returns:
  3114. <p/>
  3115. <pre>
  3116. CertHash ::= SEQUENCE {
  3117. hashAlgorithm AlgorithmIdentifier,
  3118. certificateHash OCTET STRING
  3119. }
  3120. </pre>
  3121. @return an Asn1Object
  3122. </member>
  3123. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.RequestedCertificate">
  3124. ISIS-MTT-Optional: The certificate requested by the client by inserting the
  3125. RetrieveIfAllowed extension in the request, will be returned in this
  3126. extension.
  3127. <p/>
  3128. ISIS-MTT-SigG: The signature act allows publishing certificates only then,
  3129. when the certificate owner gives his isExplicit permission. Accordingly, there
  3130. may be �nondownloadable� certificates, about which the responder must provide
  3131. status information, but MUST NOT include them in the response. Clients may
  3132. get therefore the following three kind of answers on a single request
  3133. including the RetrieveIfAllowed extension:
  3134. <ul>
  3135. <li> a) the responder supports the extension and is allowed to publish the
  3136. certificate: RequestedCertificate returned including the requested
  3137. certificate</li>
  3138. <li>b) the responder supports the extension but is NOT allowed to publish
  3139. the certificate: RequestedCertificate returned including an empty OCTET
  3140. STRING</li>
  3141. <li>c) the responder does not support the extension: RequestedCertificate is
  3142. not included in the response</li>
  3143. </ul>
  3144. Clients requesting RetrieveIfAllowed MUST be able to handle these cases. If
  3145. any of the OCTET STRING options is used, it MUST contain the DER encoding of
  3146. the requested certificate.
  3147. <p/>
  3148. <pre>
  3149. RequestedCertificate ::= CHOICE {
  3150. Certificate Certificate,
  3151. publicKeyCertificate [0] EXPLICIT OCTET STRING,
  3152. attributeCertificate [1] EXPLICIT OCTET STRING
  3153. }
  3154. </pre>
  3155. </member>
  3156. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.RequestedCertificate.#ctor(Org.BouncyCastle.Asn1.X509.X509CertificateStructure)">
  3157. Constructor from a given details.
  3158. <p/>
  3159. Only one parameter can be given. All other must be <code>null</code>.
  3160. @param certificate Given as Certificate
  3161. </member>
  3162. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.Ocsp.RequestedCertificate.ToAsn1Object">
  3163. Produce an object suitable for an Asn1OutputStream.
  3164. <p/>
  3165. Returns:
  3166. <p/>
  3167. <pre>
  3168. RequestedCertificate ::= CHOICE {
  3169. Certificate Certificate,
  3170. publicKeyCertificate [0] EXPLICIT OCTET STRING,
  3171. attributeCertificate [1] EXPLICIT OCTET STRING
  3172. }
  3173. </pre>
  3174. @return an Asn1Object
  3175. </member>
  3176. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.AdditionalInformationSyntax">
  3177. Some other information of non-restrictive nature regarding the usage of this
  3178. certificate.
  3179. <pre>
  3180. AdditionalInformationSyntax ::= DirectoryString (SIZE(1..2048))
  3181. </pre>
  3182. </member>
  3183. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdditionalInformationSyntax.#ctor(System.String)">
  3184. Constructor from a given details.
  3185. @param information The describtion of the information.
  3186. </member>
  3187. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdditionalInformationSyntax.ToAsn1Object">
  3188. Produce an object suitable for an Asn1OutputStream.
  3189. <p/>
  3190. Returns:
  3191. <p/>
  3192. <pre>
  3193. AdditionalInformationSyntax ::= DirectoryString (SIZE(1..2048))
  3194. </pre>
  3195. @return an Asn1Object
  3196. </member>
  3197. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.Admissions">
  3198. An Admissions structure.
  3199. <p/>
  3200. <pre>
  3201. Admissions ::= SEQUENCE
  3202. {
  3203. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3204. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3205. professionInfos SEQUENCE OF ProfessionInfo
  3206. }
  3207. <p/>
  3208. </pre>
  3209. @see Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax
  3210. @see Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo
  3211. @see Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority
  3212. </member>
  3213. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Admissions.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3214. Constructor from Asn1Sequence.
  3215. <p/>
  3216. The sequence is of type ProcurationSyntax:
  3217. <p/>
  3218. <pre>
  3219. Admissions ::= SEQUENCE
  3220. {
  3221. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3222. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3223. professionInfos SEQUENCE OF ProfessionInfo
  3224. }
  3225. </pre>
  3226. @param seq The ASN.1 sequence.
  3227. </member>
  3228. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Admissions.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName,Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority,Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo[])">
  3229. Constructor from a given details.
  3230. <p/>
  3231. Parameter <code>professionInfos</code> is mandatory.
  3232. @param admissionAuthority The admission authority.
  3233. @param namingAuthority The naming authority.
  3234. @param professionInfos The profession infos.
  3235. </member>
  3236. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Admissions.ToAsn1Object">
  3237. Produce an object suitable for an Asn1OutputStream.
  3238. <p/>
  3239. Returns:
  3240. <p/>
  3241. <pre>
  3242. Admissions ::= SEQUENCE
  3243. {
  3244. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3245. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3246. professionInfos SEQUENCE OF ProfessionInfo
  3247. }
  3248. <p/>
  3249. </pre>
  3250. @return an Asn1Object
  3251. </member>
  3252. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax">
  3253. Attribute to indicate admissions to certain professions.
  3254. <p/>
  3255. <pre>
  3256. AdmissionSyntax ::= SEQUENCE
  3257. {
  3258. admissionAuthority GeneralName OPTIONAL,
  3259. contentsOfAdmissions SEQUENCE OF Admissions
  3260. }
  3261. <p/>
  3262. Admissions ::= SEQUENCE
  3263. {
  3264. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3265. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3266. professionInfos SEQUENCE OF ProfessionInfo
  3267. }
  3268. <p/>
  3269. NamingAuthority ::= SEQUENCE
  3270. {
  3271. namingAuthorityId OBJECT IDENTIFIER OPTIONAL,
  3272. namingAuthorityUrl IA5String OPTIONAL,
  3273. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3274. }
  3275. <p/>
  3276. ProfessionInfo ::= SEQUENCE
  3277. {
  3278. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3279. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3280. professionOIDs SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3281. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3282. addProfessionInfo OCTET STRING OPTIONAL
  3283. }
  3284. </pre>
  3285. <p/>
  3286. <p/>
  3287. ISIS-MTT PROFILE: The relatively complex structure of AdmissionSyntax
  3288. supports the following concepts and requirements:
  3289. <ul>
  3290. <li> External institutions (e.g. professional associations, chambers, unions,
  3291. administrative bodies, companies, etc.), which are responsible for granting
  3292. and verifying professional admissions, are indicated by means of the data
  3293. field admissionAuthority. An admission authority is indicated by a
  3294. GeneralName object. Here an X.501 directory name (distinguished name) can be
  3295. indicated in the field directoryName, a URL address can be indicated in the
  3296. field uniformResourceIdentifier, and an object identifier can be indicated in
  3297. the field registeredId.</li>
  3298. <li> The names of authorities which are responsible for the administration of
  3299. title registers are indicated in the data field namingAuthority. The name of
  3300. the authority can be identified by an object identifier in the field
  3301. namingAuthorityId, by means of a text string in the field
  3302. namingAuthorityText, by means of a URL address in the field
  3303. namingAuthorityUrl, or by a combination of them. For example, the text string
  3304. can contain the name of the authority, the country and the name of the title
  3305. register. The URL-option refers to a web page which contains lists with
  3306. officially registered professions (text and possibly OID) as well as
  3307. further information on these professions. Object identifiers for the
  3308. component namingAuthorityId are grouped under the OID-branch
  3309. id-isis-at-namingAuthorities and must be applied for.</li>
  3310. <li>See http://www.teletrust.de/anwend.asp?Id=30200&amp;Sprache=E_&amp;HomePG=0
  3311. for an application form and http://www.teletrust.de/links.asp?id=30220,11
  3312. for an overview of registered naming authorities.</li>
  3313. <li> By means of the data type ProfessionInfo certain professions,
  3314. specializations, disciplines, fields of activity, etc. are identified. A
  3315. profession is represented by one or more text strings, resp. profession OIDs
  3316. in the fields professionItems and professionOIDs and by a registration number
  3317. in the field registrationNumber. An indication in text form must always be
  3318. present, whereas the other indications are optional. The component
  3319. addProfessionInfo may contain additional applicationspecific information in
  3320. DER-encoded form.</li>
  3321. </ul>
  3322. <p/>
  3323. By means of different namingAuthority-OIDs or profession OIDs hierarchies of
  3324. professions, specializations, disciplines, fields of activity, etc. can be
  3325. expressed. The issuing admission authority should always be indicated (field
  3326. admissionAuthority), whenever a registration number is presented. Still,
  3327. information on admissions can be given without indicating an admission or a
  3328. naming authority by the exclusive use of the component professionItems. In
  3329. this case the certification authority is responsible for the verification of
  3330. the admission information.
  3331. <p/>
  3332. <p/>
  3333. <p/>
  3334. This attribute is single-valued. Still, several admissions can be captured in
  3335. the sequence structure of the component contentsOfAdmissions of
  3336. AdmissionSyntax or in the component professionInfos of Admissions. The
  3337. component admissionAuthority of AdmissionSyntax serves as default value for
  3338. the component admissionAuthority of Admissions. Within the latter component
  3339. the default value can be overwritten, in case that another authority is
  3340. responsible. The component namingAuthority of Admissions serves as a default
  3341. value for the component namingAuthority of ProfessionInfo. Within the latter
  3342. component the default value can be overwritten, in case that another naming
  3343. authority needs to be recorded.
  3344. <p/>
  3345. The length of the string objects is limited to 128 characters. It is
  3346. recommended to indicate a namingAuthorityURL in all issued attribute
  3347. certificates. If a namingAuthorityURL is indicated, the field professionItems
  3348. of ProfessionInfo should contain only registered titles. If the field
  3349. professionOIDs exists, it has to contain the OIDs of the professions listed
  3350. in professionItems in the same order. In general, the field professionInfos
  3351. should contain only one entry, unless the admissions that are to be listed
  3352. are logically connected (e.g. they have been issued under the same admission
  3353. number).
  3354. @see Org.BouncyCastle.Asn1.IsisMtt.X509.Admissions
  3355. @see Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo
  3356. @see Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority
  3357. </member>
  3358. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3359. Constructor from Asn1Sequence.
  3360. <p/>
  3361. The sequence is of type ProcurationSyntax:
  3362. <p/>
  3363. <pre>
  3364. AdmissionSyntax ::= SEQUENCE
  3365. {
  3366. admissionAuthority GeneralName OPTIONAL,
  3367. contentsOfAdmissions SEQUENCE OF Admissions
  3368. }
  3369. <p/>
  3370. Admissions ::= SEQUENCE
  3371. {
  3372. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3373. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3374. professionInfos SEQUENCE OF ProfessionInfo
  3375. }
  3376. <p/>
  3377. NamingAuthority ::= SEQUENCE
  3378. {
  3379. namingAuthorityId OBJECT IDENTIFIER OPTIONAL,
  3380. namingAuthorityUrl IA5String OPTIONAL,
  3381. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3382. }
  3383. <p/>
  3384. ProfessionInfo ::= SEQUENCE
  3385. {
  3386. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3387. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3388. professionOIDs SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3389. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3390. addProfessionInfo OCTET STRING OPTIONAL
  3391. }
  3392. </pre>
  3393. @param seq The ASN.1 sequence.
  3394. </member>
  3395. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName,Org.BouncyCastle.Asn1.Asn1Sequence)">
  3396. Constructor from given details.
  3397. @param admissionAuthority The admission authority.
  3398. @param contentsOfAdmissions The admissions.
  3399. </member>
  3400. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax.ToAsn1Object">
  3401. Produce an object suitable for an Asn1OutputStream.
  3402. <p/>
  3403. Returns:
  3404. <p/>
  3405. <pre>
  3406. AdmissionSyntax ::= SEQUENCE
  3407. {
  3408. admissionAuthority GeneralName OPTIONAL,
  3409. contentsOfAdmissions SEQUENCE OF Admissions
  3410. }
  3411. <p/>
  3412. Admissions ::= SEQUENCE
  3413. {
  3414. admissionAuthority [0] EXPLICIT GeneralName OPTIONAL
  3415. namingAuthority [1] EXPLICIT NamingAuthority OPTIONAL
  3416. professionInfos SEQUENCE OF ProfessionInfo
  3417. }
  3418. <p/>
  3419. NamingAuthority ::= SEQUENCE
  3420. {
  3421. namingAuthorityId OBJECT IDENTIFIER OPTIONAL,
  3422. namingAuthorityUrl IA5String OPTIONAL,
  3423. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3424. }
  3425. <p/>
  3426. ProfessionInfo ::= SEQUENCE
  3427. {
  3428. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3429. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3430. professionOIDs SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3431. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3432. addProfessionInfo OCTET STRING OPTIONAL
  3433. }
  3434. </pre>
  3435. @return an Asn1Object
  3436. </member>
  3437. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax.AdmissionAuthority">
  3438. @return Returns the admissionAuthority if present, null otherwise.
  3439. </member>
  3440. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax.GetContentsOfAdmissions">
  3441. @return Returns the contentsOfAdmissions.
  3442. </member>
  3443. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.DeclarationOfMajority">
  3444. A declaration of majority.
  3445. <p/>
  3446. <pre>
  3447. DeclarationOfMajoritySyntax ::= CHOICE
  3448. {
  3449. notYoungerThan [0] IMPLICIT INTEGER,
  3450. fullAgeAtCountry [1] IMPLICIT SEQUENCE
  3451. {
  3452. fullAge BOOLEAN DEFAULT TRUE,
  3453. country PrintableString (SIZE(2))
  3454. }
  3455. dateOfBirth [2] IMPLICIT GeneralizedTime
  3456. }
  3457. </pre>
  3458. <p/>
  3459. fullAgeAtCountry indicates the majority of the owner with respect to the laws
  3460. of a specific country.
  3461. </member>
  3462. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.DeclarationOfMajority.ToAsn1Object">
  3463. Produce an object suitable for an Asn1OutputStream.
  3464. <p/>
  3465. Returns:
  3466. <p/>
  3467. <pre>
  3468. DeclarationOfMajoritySyntax ::= CHOICE
  3469. {
  3470. notYoungerThan [0] IMPLICIT INTEGER,
  3471. fullAgeAtCountry [1] IMPLICIT SEQUENCE
  3472. {
  3473. fullAge BOOLEAN DEFAULT TRUE,
  3474. country PrintableString (SIZE(2))
  3475. }
  3476. dateOfBirth [2] IMPLICIT GeneralizedTime
  3477. }
  3478. </pre>
  3479. @return an Asn1Object
  3480. </member>
  3481. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.DeclarationOfMajority.NotYoungerThan">
  3482. @return notYoungerThan if that's what we are, -1 otherwise
  3483. </member>
  3484. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.MonetaryLimit">
  3485. Monetary limit for transactions. The QcEuMonetaryLimit QC statement MUST be
  3486. used in new certificates in place of the extension/attribute MonetaryLimit
  3487. since January 1, 2004. For the sake of backward compatibility with
  3488. certificates already in use, components SHOULD support MonetaryLimit (as well
  3489. as QcEuLimitValue).
  3490. <p/>
  3491. Indicates a monetary limit within which the certificate holder is authorized
  3492. to act. (This value DOES NOT express a limit on the liability of the
  3493. certification authority).
  3494. <p/>
  3495. <pre>
  3496. MonetaryLimitSyntax ::= SEQUENCE
  3497. {
  3498. currency PrintableString (SIZE(3)),
  3499. amount INTEGER,
  3500. exponent INTEGER
  3501. }
  3502. </pre>
  3503. <p/>
  3504. currency must be the ISO code.
  3505. <p/>
  3506. value = amount�10*exponent
  3507. </member>
  3508. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.MonetaryLimit.#ctor(System.String,System.Int32,System.Int32)">
  3509. Constructor from a given details.
  3510. <p/>
  3511. <p/>
  3512. value = amount�10^exponent
  3513. @param currency The currency. Must be the ISO code.
  3514. @param amount The amount
  3515. @param exponent The exponent
  3516. </member>
  3517. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.MonetaryLimit.ToAsn1Object">
  3518. Produce an object suitable for an Asn1OutputStream.
  3519. <p/>
  3520. Returns:
  3521. <p/>
  3522. <pre>
  3523. MonetaryLimitSyntax ::= SEQUENCE
  3524. {
  3525. currency PrintableString (SIZE(3)),
  3526. amount INTEGER,
  3527. exponent INTEGER
  3528. }
  3529. </pre>
  3530. @return an Asn1Object
  3531. </member>
  3532. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority">
  3533. Names of authorities which are responsible for the administration of title
  3534. registers.
  3535. <pre>
  3536. NamingAuthority ::= SEQUENCE
  3537. {
  3538. namingAuthorityID OBJECT IDENTIFIER OPTIONAL,
  3539. namingAuthorityUrl IA5String OPTIONAL,
  3540. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3541. }
  3542. </pre>
  3543. @see Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax
  3544. </member>
  3545. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.IdIsisMttATNamingAuthoritiesRechtWirtschaftSteuern">
  3546. Profession OIDs should always be defined under the OID branch of the
  3547. responsible naming authority. At the time of this writing, the work group
  3548. �Recht, Wirtschaft, Steuern� (�Law, Economy, Taxes�) is registered as the
  3549. first naming authority under the OID id-isismtt-at-namingAuthorities.
  3550. </member>
  3551. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3552. Constructor from Asn1Sequence.
  3553. <p/>
  3554. <p/>
  3555. <pre>
  3556. NamingAuthority ::= SEQUENCE
  3557. {
  3558. namingAuthorityID OBJECT IDENTIFIER OPTIONAL,
  3559. namingAuthorityUrl IA5String OPTIONAL,
  3560. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3561. }
  3562. </pre>
  3563. @param seq The ASN.1 sequence.
  3564. </member>
  3565. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.NamingAuthorityID">
  3566. @return Returns the namingAuthorityID.
  3567. </member>
  3568. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.NamingAuthorityText">
  3569. @return Returns the namingAuthorityText.
  3570. </member>
  3571. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.NamingAuthorityUrl">
  3572. @return Returns the namingAuthorityUrl.
  3573. </member>
  3574. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.String,Org.BouncyCastle.Asn1.X500.DirectoryString)">
  3575. Constructor from given details.
  3576. <p/>
  3577. All parameters can be combined.
  3578. @param namingAuthorityID ObjectIdentifier for naming authority.
  3579. @param namingAuthorityUrl URL for naming authority.
  3580. @param namingAuthorityText Textual representation of naming authority.
  3581. </member>
  3582. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority.ToAsn1Object">
  3583. Produce an object suitable for an Asn1OutputStream.
  3584. <p/>
  3585. Returns:
  3586. <p/>
  3587. <pre>
  3588. NamingAuthority ::= SEQUENCE
  3589. {
  3590. namingAuthorityID OBJECT IDENTIFIER OPTIONAL,
  3591. namingAuthorityUrl IA5String OPTIONAL,
  3592. namingAuthorityText DirectoryString(SIZE(1..128)) OPTIONAL
  3593. }
  3594. </pre>
  3595. @return an Asn1Object
  3596. </member>
  3597. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.ProcurationSyntax">
  3598. Attribute to indicate that the certificate holder may sign in the name of a
  3599. third person.
  3600. <p>
  3601. ISIS-MTT PROFILE: The corresponding ProcurationSyntax contains either the
  3602. name of the person who is represented (subcomponent thirdPerson) or a
  3603. reference to his/her base certificate (in the component signingFor,
  3604. subcomponent certRef), furthermore the optional components country and
  3605. typeSubstitution to indicate the country whose laws apply, and respectively
  3606. the type of procuration (e.g. manager, procuration, custody).
  3607. </p>
  3608. <p>
  3609. ISIS-MTT PROFILE: The GeneralName MUST be of type directoryName and MAY only
  3610. contain: - RFC3039 attributes, except pseudonym (countryName, commonName,
  3611. surname, givenName, serialNumber, organizationName, organizationalUnitName,
  3612. stateOrProvincename, localityName, postalAddress) and - SubjectDirectoryName
  3613. attributes (title, dateOfBirth, placeOfBirth, gender, countryOfCitizenship,
  3614. countryOfResidence and NameAtBirth).
  3615. </p>
  3616. <pre>
  3617. ProcurationSyntax ::= SEQUENCE {
  3618. country [1] EXPLICIT PrintableString(SIZE(2)) OPTIONAL,
  3619. typeOfSubstitution [2] EXPLICIT DirectoryString (SIZE(1..128)) OPTIONAL,
  3620. signingFor [3] EXPLICIT SigningFor
  3621. }
  3622. SigningFor ::= CHOICE
  3623. {
  3624. thirdPerson GeneralName,
  3625. certRef IssuerSerial
  3626. }
  3627. </pre>
  3628. </member>
  3629. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProcurationSyntax.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3630. Constructor from Asn1Sequence.
  3631. <p/>
  3632. The sequence is of type ProcurationSyntax:
  3633. <p/>
  3634. <pre>
  3635. ProcurationSyntax ::= SEQUENCE {
  3636. country [1] EXPLICIT PrintableString(SIZE(2)) OPTIONAL,
  3637. typeOfSubstitution [2] EXPLICIT DirectoryString (SIZE(1..128)) OPTIONAL,
  3638. signingFor [3] EXPLICIT SigningFor
  3639. }
  3640. <p/>
  3641. SigningFor ::= CHOICE
  3642. {
  3643. thirdPerson GeneralName,
  3644. certRef IssuerSerial
  3645. }
  3646. </pre>
  3647. @param seq The ASN.1 sequence.
  3648. </member>
  3649. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProcurationSyntax.#ctor(System.String,Org.BouncyCastle.Asn1.X500.DirectoryString,Org.BouncyCastle.Asn1.X509.IssuerSerial)">
  3650. Constructor from a given details.
  3651. <p/>
  3652. <p/>
  3653. Either <code>generalName</code> or <code>certRef</code> MUST be
  3654. <code>null</code>.
  3655. @param country The country code whose laws apply.
  3656. @param typeOfSubstitution The type of procuration.
  3657. @param certRef Reference to certificate of the person who is represented.
  3658. </member>
  3659. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProcurationSyntax.#ctor(System.String,Org.BouncyCastle.Asn1.X500.DirectoryString,Org.BouncyCastle.Asn1.X509.GeneralName)">
  3660. Constructor from a given details.
  3661. <p/>
  3662. <p/>
  3663. Either <code>generalName</code> or <code>certRef</code> MUST be
  3664. <code>null</code>.
  3665. @param country The country code whose laws apply.
  3666. @param typeOfSubstitution The type of procuration.
  3667. @param thirdPerson The GeneralName of the person who is represented.
  3668. </member>
  3669. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProcurationSyntax.ToAsn1Object">
  3670. Produce an object suitable for an Asn1OutputStream.
  3671. <p/>
  3672. Returns:
  3673. <p/>
  3674. <pre>
  3675. ProcurationSyntax ::= SEQUENCE {
  3676. country [1] EXPLICIT PrintableString(SIZE(2)) OPTIONAL,
  3677. typeOfSubstitution [2] EXPLICIT DirectoryString (SIZE(1..128)) OPTIONAL,
  3678. signingFor [3] EXPLICIT SigningFor
  3679. }
  3680. <p/>
  3681. SigningFor ::= CHOICE
  3682. {
  3683. thirdPerson GeneralName,
  3684. certRef IssuerSerial
  3685. }
  3686. </pre>
  3687. @return an Asn1Object
  3688. </member>
  3689. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo">
  3690. Professions, specializations, disciplines, fields of activity, etc.
  3691. <pre>
  3692. ProfessionInfo ::= SEQUENCE
  3693. {
  3694. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3695. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3696. professionOids SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3697. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3698. addProfessionInfo OCTET STRING OPTIONAL
  3699. }
  3700. </pre>
  3701. @see Org.BouncyCastle.Asn1.IsisMtt.X509.AdmissionSyntax
  3702. </member>
  3703. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Rechtsanwltin">
  3704. Rechtsanw�ltin
  3705. </member>
  3706. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Rechtsanwalt">
  3707. Rechtsanwalt
  3708. </member>
  3709. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Rechtsbeistand">
  3710. Rechtsbeistand
  3711. </member>
  3712. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Steuerberaterin">
  3713. Steuerberaterin
  3714. </member>
  3715. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Steuerberater">
  3716. Steuerberater
  3717. </member>
  3718. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Steuerbevollmchtigte">
  3719. Steuerbevollm�chtigte
  3720. </member>
  3721. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Steuerbevollmchtigter">
  3722. Steuerbevollm�chtigter
  3723. </member>
  3724. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notarin">
  3725. Notarin
  3726. </member>
  3727. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notar">
  3728. Notar
  3729. </member>
  3730. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notarvertreterin">
  3731. Notarvertreterin
  3732. </member>
  3733. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notarvertreter">
  3734. Notarvertreter
  3735. </member>
  3736. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notariatsverwalterin">
  3737. Notariatsverwalterin
  3738. </member>
  3739. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Notariatsverwalter">
  3740. Notariatsverwalter
  3741. </member>
  3742. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Wirtschaftsprferin">
  3743. Wirtschaftspr�ferin
  3744. </member>
  3745. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Wirtschaftsprfer">
  3746. Wirtschaftspr�fer
  3747. </member>
  3748. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.VereidigteBuchprferin">
  3749. Vereidigte Buchpr�ferin
  3750. </member>
  3751. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.VereidigterBuchprfer">
  3752. Vereidigter Buchpr�fer
  3753. </member>
  3754. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Patentanwltin">
  3755. Patentanw�ltin
  3756. </member>
  3757. <member name="F:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.Patentanwalt">
  3758. Patentanwalt
  3759. </member>
  3760. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  3761. Constructor from Asn1Sequence.
  3762. <p/>
  3763. <p/>
  3764. <pre>
  3765. ProfessionInfo ::= SEQUENCE
  3766. {
  3767. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3768. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3769. professionOids SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3770. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3771. addProfessionInfo OCTET STRING OPTIONAL
  3772. }
  3773. </pre>
  3774. @param seq The ASN.1 sequence.
  3775. </member>
  3776. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.#ctor(Org.BouncyCastle.Asn1.IsisMtt.X509.NamingAuthority,Org.BouncyCastle.Asn1.X500.DirectoryString[],Org.BouncyCastle.Asn1.DerObjectIdentifier[],System.String,Org.BouncyCastle.Asn1.Asn1OctetString)">
  3777. Constructor from given details.
  3778. <p/>
  3779. <code>professionItems</code> is mandatory, all other parameters are
  3780. optional.
  3781. @param namingAuthority The naming authority.
  3782. @param professionItems Directory strings of the profession.
  3783. @param professionOids DERObjectIdentfier objects for the
  3784. profession.
  3785. @param registrationNumber Registration number.
  3786. @param addProfessionInfo Additional infos in encoded form.
  3787. </member>
  3788. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.ToAsn1Object">
  3789. Produce an object suitable for an Asn1OutputStream.
  3790. <p/>
  3791. Returns:
  3792. <p/>
  3793. <pre>
  3794. ProfessionInfo ::= SEQUENCE
  3795. {
  3796. namingAuthority [0] EXPLICIT NamingAuthority OPTIONAL,
  3797. professionItems SEQUENCE OF DirectoryString (SIZE(1..128)),
  3798. professionOids SEQUENCE OF OBJECT IDENTIFIER OPTIONAL,
  3799. registrationNumber PrintableString(SIZE(1..128)) OPTIONAL,
  3800. addProfessionInfo OCTET STRING OPTIONAL
  3801. }
  3802. </pre>
  3803. @return an Asn1Object
  3804. </member>
  3805. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.AddProfessionInfo">
  3806. @return Returns the addProfessionInfo.
  3807. </member>
  3808. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.NamingAuthority">
  3809. @return Returns the namingAuthority.
  3810. </member>
  3811. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.GetProfessionItems">
  3812. @return Returns the professionItems.
  3813. </member>
  3814. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.GetProfessionOids">
  3815. @return Returns the professionOids.
  3816. </member>
  3817. <member name="P:Org.BouncyCastle.Asn1.IsisMtt.X509.ProfessionInfo.RegistrationNumber">
  3818. @return Returns the registrationNumber.
  3819. </member>
  3820. <member name="T:Org.BouncyCastle.Asn1.IsisMtt.X509.Restriction">
  3821. Some other restriction regarding the usage of this certificate.
  3822. <p/>
  3823. <pre>
  3824. RestrictionSyntax ::= DirectoryString (SIZE(1..1024))
  3825. </pre>
  3826. </member>
  3827. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Restriction.#ctor(Org.BouncyCastle.Asn1.X500.DirectoryString)">
  3828. Constructor from DirectoryString.
  3829. <p/>
  3830. The DirectoryString is of type RestrictionSyntax:
  3831. <p/>
  3832. <pre>
  3833. RestrictionSyntax ::= DirectoryString (SIZE(1..1024))
  3834. </pre>
  3835. @param restriction A IAsn1String.
  3836. </member>
  3837. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Restriction.#ctor(System.String)">
  3838. Constructor from a given details.
  3839. @param restriction The description of the restriction.
  3840. </member>
  3841. <member name="M:Org.BouncyCastle.Asn1.IsisMtt.X509.Restriction.ToAsn1Object">
  3842. Produce an object suitable for an Asn1OutputStream.
  3843. <p/>
  3844. Returns:
  3845. <p/>
  3846. <pre>
  3847. RestrictionSyntax ::= DirectoryString (SIZE(1..1024))
  3848. <p/>
  3849. </pre>
  3850. @return an Asn1Object
  3851. </member>
  3852. <member name="M:Org.BouncyCastle.Asn1.Misc.Cast5CbcParameters.ToAsn1Object">
  3853. Produce an object suitable for an Asn1OutputStream.
  3854. <pre>
  3855. cast5CBCParameters ::= Sequence {
  3856. iv OCTET STRING DEFAULT 0,
  3857. -- Initialization vector
  3858. keyLength Integer
  3859. -- Key length, in bits
  3860. }
  3861. </pre>
  3862. </member>
  3863. <member name="M:Org.BouncyCastle.Asn1.Misc.IdeaCbcPar.ToAsn1Object">
  3864. Produce an object suitable for an Asn1OutputStream.
  3865. <pre>
  3866. IDEA-CBCPar ::= Sequence {
  3867. iv OCTET STRING OPTIONAL -- exactly 8 octets
  3868. }
  3869. </pre>
  3870. </member>
  3871. <member name="T:Org.BouncyCastle.Asn1.Misc.NetscapeCertType">
  3872. The NetscapeCertType object.
  3873. <pre>
  3874. NetscapeCertType ::= BIT STRING {
  3875. SSLClient (0),
  3876. SSLServer (1),
  3877. S/MIME (2),
  3878. Object Signing (3),
  3879. Reserved (4),
  3880. SSL CA (5),
  3881. S/MIME CA (6),
  3882. Object Signing CA (7) }
  3883. </pre>
  3884. </member>
  3885. <member name="M:Org.BouncyCastle.Asn1.Misc.NetscapeCertType.#ctor(System.Int32)">
  3886. Basic constructor.
  3887. @param usage - the bitwise OR of the Key Usage flags giving the
  3888. allowed uses for the key.
  3889. e.g. (X509NetscapeCertType.sslCA | X509NetscapeCertType.smimeCA)
  3890. </member>
  3891. <member name="T:Org.BouncyCastle.Asn1.Mozilla.PublicKeyAndChallenge">
  3892. This is designed to parse
  3893. the PublicKeyAndChallenge created by the KEYGEN tag included by
  3894. Mozilla based browsers.
  3895. <pre>
  3896. PublicKeyAndChallenge ::= SEQUENCE {
  3897. spki SubjectPublicKeyInfo,
  3898. challenge IA5STRING
  3899. }
  3900. </pre>
  3901. </member>
  3902. <member name="T:Org.BouncyCastle.Asn1.Nist.NistNamedCurves">
  3903. Utility class for fetching curves using their NIST names as published in FIPS-PUB 186-3
  3904. </member>
  3905. <member name="M:Org.BouncyCastle.Asn1.Nist.NistNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  3906. return the X9ECParameters object for the named curve represented by
  3907. the passed in object identifier. Null if the curve isn't present.
  3908. @param oid an object identifier representing a named curve, if present.
  3909. </member>
  3910. <member name="M:Org.BouncyCastle.Asn1.Nist.NistNamedCurves.GetOid(System.String)">
  3911. return the object identifier signified by the passed in name. Null
  3912. if there is no object identifier associated with name.
  3913. @return the object identifier associated with name, if present.
  3914. </member>
  3915. <member name="M:Org.BouncyCastle.Asn1.Nist.NistNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  3916. return the named curve name represented by the given object identifier.
  3917. </member>
  3918. <member name="P:Org.BouncyCastle.Asn1.Nist.NistNamedCurves.Names">
  3919. returns an enumeration containing the name strings for curves
  3920. contained in this structure.
  3921. </member>
  3922. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdDsaWithSha3_224">
  3923. 2.16.840.1.101.3.4.3.5
  3924. </member>
  3925. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdDsaWithSha3_256">
  3926. 2.16.840.1.101.3.4.3.6
  3927. </member>
  3928. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdDsaWithSha3_384">
  3929. 2.16.840.1.101.3.4.3.7
  3930. </member>
  3931. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdDsaWithSha3_512">
  3932. 2.16.840.1.101.3.4.3.8
  3933. </member>
  3934. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdEcdsaWithSha3_224">
  3935. 2.16.840.1.101.3.4.3.9
  3936. </member>
  3937. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdEcdsaWithSha3_256">
  3938. 2.16.840.1.101.3.4.3.10
  3939. </member>
  3940. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdEcdsaWithSha3_384">
  3941. 2.16.840.1.101.3.4.3.11
  3942. </member>
  3943. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdEcdsaWithSha3_512">
  3944. 2.16.840.1.101.3.4.3.12
  3945. </member>
  3946. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdRsassaPkcs1V15WithSha3_224">
  3947. 2.16.840.1.101.3.4.3.9
  3948. </member>
  3949. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdRsassaPkcs1V15WithSha3_256">
  3950. 2.16.840.1.101.3.4.3.10
  3951. </member>
  3952. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdRsassaPkcs1V15WithSha3_384">
  3953. 2.16.840.1.101.3.4.3.11
  3954. </member>
  3955. <member name="F:Org.BouncyCastle.Asn1.Nist.NistObjectIdentifiers.IdRsassaPkcs1V15WithSha3_512">
  3956. 2.16.840.1.101.3.4.3.12
  3957. </member>
  3958. <member name="T:Org.BouncyCastle.Asn1.Ntt.NttObjectIdentifiers">
  3959. <summary>From RFC 3657</summary>
  3960. </member>
  3961. <member name="M:Org.BouncyCastle.Asn1.Ocsp.BasicOcspResponse.ToAsn1Object">
  3962. Produce an object suitable for an Asn1OutputStream.
  3963. <pre>
  3964. BasicOcspResponse ::= Sequence {
  3965. tbsResponseData ResponseData,
  3966. signatureAlgorithm AlgorithmIdentifier,
  3967. signature BIT STRING,
  3968. certs [0] EXPLICIT Sequence OF Certificate OPTIONAL }
  3969. </pre>
  3970. </member>
  3971. <member name="M:Org.BouncyCastle.Asn1.Ocsp.CertID.ToAsn1Object">
  3972. Produce an object suitable for an Asn1OutputStream.
  3973. <pre>
  3974. CertID ::= Sequence {
  3975. hashAlgorithm AlgorithmIdentifier,
  3976. issuerNameHash OCTET STRING, -- Hash of Issuer's DN
  3977. issuerKeyHash OCTET STRING, -- Hash of Issuers public key
  3978. serialNumber CertificateSerialNumber }
  3979. </pre>
  3980. </member>
  3981. <member name="M:Org.BouncyCastle.Asn1.Ocsp.CertStatus.#ctor">
  3982. create a CertStatus object with a tag of zero.
  3983. </member>
  3984. <member name="M:Org.BouncyCastle.Asn1.Ocsp.CertStatus.ToAsn1Object">
  3985. Produce an object suitable for an Asn1OutputStream.
  3986. <pre>
  3987. CertStatus ::= CHOICE {
  3988. good [0] IMPLICIT Null,
  3989. revoked [1] IMPLICIT RevokedInfo,
  3990. unknown [2] IMPLICIT UnknownInfo }
  3991. </pre>
  3992. </member>
  3993. <member name="M:Org.BouncyCastle.Asn1.Ocsp.CrlID.ToAsn1Object">
  3994. Produce an object suitable for an Asn1OutputStream.
  3995. <pre>
  3996. CrlID ::= Sequence {
  3997. crlUrl [0] EXPLICIT IA5String OPTIONAL,
  3998. crlNum [1] EXPLICIT Integer OPTIONAL,
  3999. crlTime [2] EXPLICIT GeneralizedTime OPTIONAL }
  4000. </pre>
  4001. </member>
  4002. <member name="M:Org.BouncyCastle.Asn1.Ocsp.OcspRequest.ToAsn1Object">
  4003. Produce an object suitable for an Asn1OutputStream.
  4004. <pre>
  4005. OcspRequest ::= Sequence {
  4006. tbsRequest TBSRequest,
  4007. optionalSignature [0] EXPLICIT Signature OPTIONAL }
  4008. </pre>
  4009. </member>
  4010. <member name="M:Org.BouncyCastle.Asn1.Ocsp.OcspResponse.ToAsn1Object">
  4011. Produce an object suitable for an Asn1OutputStream.
  4012. <pre>
  4013. OcspResponse ::= Sequence {
  4014. responseStatus OcspResponseStatus,
  4015. responseBytes [0] EXPLICIT ResponseBytes OPTIONAL }
  4016. </pre>
  4017. </member>
  4018. <member name="M:Org.BouncyCastle.Asn1.Ocsp.OcspResponseStatus.#ctor(System.Int32)">
  4019. The OcspResponseStatus enumeration.
  4020. <pre>
  4021. OcspResponseStatus ::= Enumerated {
  4022. successful (0), --Response has valid confirmations
  4023. malformedRequest (1), --Illegal confirmation request
  4024. internalError (2), --Internal error in issuer
  4025. tryLater (3), --Try again later
  4026. --(4) is not used
  4027. sigRequired (5), --Must sign the request
  4028. unauthorized (6) --Request unauthorized
  4029. }
  4030. </pre>
  4031. </member>
  4032. <member name="M:Org.BouncyCastle.Asn1.Ocsp.Request.ToAsn1Object">
  4033. Produce an object suitable for an Asn1OutputStream.
  4034. <pre>
  4035. Request ::= Sequence {
  4036. reqCert CertID,
  4037. singleRequestExtensions [0] EXPLICIT Extensions OPTIONAL }
  4038. </pre>
  4039. </member>
  4040. <member name="M:Org.BouncyCastle.Asn1.Ocsp.ResponderID.ToAsn1Object">
  4041. Produce an object suitable for an Asn1OutputStream.
  4042. <pre>
  4043. ResponderID ::= CHOICE {
  4044. byName [1] Name,
  4045. byKey [2] KeyHash }
  4046. </pre>
  4047. </member>
  4048. <member name="M:Org.BouncyCastle.Asn1.Ocsp.ResponseBytes.ToAsn1Object">
  4049. Produce an object suitable for an Asn1OutputStream.
  4050. <pre>
  4051. ResponseBytes ::= Sequence {
  4052. responseType OBJECT IDENTIFIER,
  4053. response OCTET STRING }
  4054. </pre>
  4055. </member>
  4056. <member name="M:Org.BouncyCastle.Asn1.Ocsp.ResponseData.ToAsn1Object">
  4057. Produce an object suitable for an Asn1OutputStream.
  4058. <pre>
  4059. ResponseData ::= Sequence {
  4060. version [0] EXPLICIT Version DEFAULT v1,
  4061. responderID ResponderID,
  4062. producedAt GeneralizedTime,
  4063. responses Sequence OF SingleResponse,
  4064. responseExtensions [1] EXPLICIT Extensions OPTIONAL }
  4065. </pre>
  4066. </member>
  4067. <member name="M:Org.BouncyCastle.Asn1.Ocsp.RevokedInfo.ToAsn1Object">
  4068. Produce an object suitable for an Asn1OutputStream.
  4069. <pre>
  4070. RevokedInfo ::= Sequence {
  4071. revocationTime GeneralizedTime,
  4072. revocationReason [0] EXPLICIT CRLReason OPTIONAL }
  4073. </pre>
  4074. </member>
  4075. <member name="M:Org.BouncyCastle.Asn1.Ocsp.ServiceLocator.ToAsn1Object">
  4076. Produce an object suitable for an Asn1OutputStream.
  4077. <pre>
  4078. ServiceLocator ::= Sequence {
  4079. issuer Name,
  4080. locator AuthorityInfoAccessSyntax OPTIONAL }
  4081. </pre>
  4082. </member>
  4083. <member name="M:Org.BouncyCastle.Asn1.Ocsp.Signature.ToAsn1Object">
  4084. Produce an object suitable for an Asn1OutputStream.
  4085. <pre>
  4086. Signature ::= Sequence {
  4087. signatureAlgorithm AlgorithmIdentifier,
  4088. signature BIT STRING,
  4089. certs [0] EXPLICIT Sequence OF Certificate OPTIONAL}
  4090. </pre>
  4091. </member>
  4092. <member name="M:Org.BouncyCastle.Asn1.Ocsp.SingleResponse.ToAsn1Object">
  4093. Produce an object suitable for an Asn1OutputStream.
  4094. <pre>
  4095. SingleResponse ::= Sequence {
  4096. certID CertID,
  4097. certStatus CertStatus,
  4098. thisUpdate GeneralizedTime,
  4099. nextUpdate [0] EXPLICIT GeneralizedTime OPTIONAL,
  4100. singleExtensions [1] EXPLICIT Extensions OPTIONAL }
  4101. </pre>
  4102. </member>
  4103. <member name="M:Org.BouncyCastle.Asn1.Ocsp.TbsRequest.ToAsn1Object">
  4104. Produce an object suitable for an Asn1OutputStream.
  4105. <pre>
  4106. TBSRequest ::= Sequence {
  4107. version [0] EXPLICIT Version DEFAULT v1,
  4108. requestorName [1] EXPLICIT GeneralName OPTIONAL,
  4109. requestList Sequence OF Request,
  4110. requestExtensions [2] EXPLICIT Extensions OPTIONAL }
  4111. </pre>
  4112. </member>
  4113. <member name="T:Org.BouncyCastle.Asn1.OidTokenizer">
  4114. class for breaking up an Oid into it's component tokens, ala
  4115. java.util.StringTokenizer. We need this class as some of the
  4116. lightweight Java environment don't support classes like
  4117. StringTokenizer.
  4118. </member>
  4119. <member name="M:Org.BouncyCastle.Asn1.Pkcs.AttributePkcs.GetInstance(System.Object)">
  4120. return an Attribute object from the given object.
  4121. @param o the object we want converted.
  4122. @exception ArgumentException if the object cannot be converted.
  4123. </member>
  4124. <member name="M:Org.BouncyCastle.Asn1.Pkcs.AttributePkcs.ToAsn1Object">
  4125. Produce an object suitable for an Asn1OutputStream.
  4126. <pre>
  4127. Attr ::= Sequence {
  4128. attrType OBJECT IDENTIFIER,
  4129. attrValues Set OF AttributeValue
  4130. }
  4131. </pre>
  4132. </member>
  4133. <member name="T:Org.BouncyCastle.Asn1.Pkcs.CertificationRequest">
  4134. Pkcs10 Certfication request object.
  4135. <pre>
  4136. CertificationRequest ::= Sequence {
  4137. certificationRequestInfo CertificationRequestInfo,
  4138. signatureAlgorithm AlgorithmIdentifier{{ SignatureAlgorithms }},
  4139. signature BIT STRING
  4140. }
  4141. </pre>
  4142. </member>
  4143. <member name="T:Org.BouncyCastle.Asn1.Pkcs.CertificationRequestInfo">
  4144. Pkcs10 CertificationRequestInfo object.
  4145. <pre>
  4146. CertificationRequestInfo ::= Sequence {
  4147. version Integer { v1(0) } (v1,...),
  4148. subject Name,
  4149. subjectPKInfo SubjectPublicKeyInfo{{ PKInfoAlgorithms }},
  4150. attributes [0] Attributes{{ CRIAttributes }}
  4151. }
  4152. Attributes { ATTRIBUTE:IOSet } ::= Set OF Attr{{ IOSet }}
  4153. Attr { ATTRIBUTE:IOSet } ::= Sequence {
  4154. type ATTRIBUTE.&amp;id({IOSet}),
  4155. values Set SIZE(1..MAX) OF ATTRIBUTE.&amp;Type({IOSet}{\@type})
  4156. }
  4157. </pre>
  4158. </member>
  4159. <member name="M:Org.BouncyCastle.Asn1.Pkcs.ContentInfo.ToAsn1Object">
  4160. Produce an object suitable for an Asn1OutputStream.
  4161. <pre>
  4162. ContentInfo ::= Sequence {
  4163. contentType ContentType,
  4164. content
  4165. [0] EXPLICIT ANY DEFINED BY contentType OPTIONAL }
  4166. </pre>
  4167. </member>
  4168. <member name="T:Org.BouncyCastle.Asn1.Pkcs.EncryptedData">
  4169. The EncryptedData object.
  4170. <pre>
  4171. EncryptedData ::= Sequence {
  4172. version Version,
  4173. encryptedContentInfo EncryptedContentInfo
  4174. }
  4175. EncryptedContentInfo ::= Sequence {
  4176. contentType ContentType,
  4177. contentEncryptionAlgorithm ContentEncryptionAlgorithmIdentifier,
  4178. encryptedContent [0] IMPLICIT EncryptedContent OPTIONAL
  4179. }
  4180. EncryptedContent ::= OCTET STRING
  4181. </pre>
  4182. </member>
  4183. <member name="M:Org.BouncyCastle.Asn1.Pkcs.EncryptedPrivateKeyInfo.ToAsn1Object">
  4184. Produce an object suitable for an Asn1OutputStream.
  4185. <pre>
  4186. EncryptedPrivateKeyInfo ::= Sequence {
  4187. encryptionAlgorithm AlgorithmIdentifier {{KeyEncryptionAlgorithms}},
  4188. encryptedData EncryptedData
  4189. }
  4190. EncryptedData ::= OCTET STRING
  4191. KeyEncryptionAlgorithms ALGORITHM-IDENTIFIER ::= {
  4192. ... -- For local profiles
  4193. }
  4194. </pre>
  4195. </member>
  4196. <member name="M:Org.BouncyCastle.Asn1.Pkcs.MacData.ToAsn1Object">
  4197. <pre>
  4198. MacData ::= SEQUENCE {
  4199. mac DigestInfo,
  4200. macSalt OCTET STRING,
  4201. iterations INTEGER DEFAULT 1
  4202. -- Note: The default is for historic reasons and its use is deprecated. A
  4203. -- higher value, like 1024 is recommended.
  4204. </pre>
  4205. @return the basic DERObject construction.
  4206. </member>
  4207. <member name="T:Org.BouncyCastle.Asn1.Pkcs.Pfx">
  4208. the infamous Pfx from Pkcs12
  4209. </member>
  4210. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.Sha512_224WithRSAEncryption">
  4211. PKCS#1: 1.2.840.113549.1.1.15
  4212. </member>
  4213. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.Sha512_256WithRSAEncryption">
  4214. PKCS#1: 1.2.840.113549.1.1.16
  4215. </member>
  4216. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.IdAADecryptKeyID">
  4217. PKCS#9: 1.2.840.113549.1.9.16.2.37 - <a href="https://tools.ietf.org/html/rfc4108#section-2.2.5">RFC 4108</a>
  4218. </member>
  4219. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.IdAAImplCryptoAlgs">
  4220. PKCS#9: 1.2.840.113549.1.9.16.2.38 - <a href="https://tools.ietf.org/html/rfc4108#section-2.2.6">RFC 4108</a>
  4221. </member>
  4222. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.IdAAAsymmDecryptKeyID">
  4223. PKCS#9: 1.2.840.113549.1.9.16.2.54 <a href="https://tools.ietf.org/html/rfc7030">RFC7030</a>
  4224. </member>
  4225. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.IdAAImplCompressAlgs">
  4226. PKCS#9: 1.2.840.113549.1.9.16.2.43 <a href="https://tools.ietf.org/html/rfc7030">RFC7030</a>
  4227. </member>
  4228. <member name="F:Org.BouncyCastle.Asn1.Pkcs.PkcsObjectIdentifiers.IdAACommunityIdentifiers">
  4229. PKCS#9: 1.2.840.113549.1.9.16.2.40 <a href="https://tools.ietf.org/html/rfc7030">RFC7030</a>
  4230. </member>
  4231. <member name="T:Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo">
  4232. RFC 5958
  4233. <pre>
  4234. [IMPLICIT TAGS]
  4235. OneAsymmetricKey ::= SEQUENCE {
  4236. version Version,
  4237. privateKeyAlgorithm PrivateKeyAlgorithmIdentifier,
  4238. privateKey PrivateKey,
  4239. attributes [0] Attributes OPTIONAL,
  4240. ...,
  4241. [[2: publicKey [1] PublicKey OPTIONAL ]],
  4242. ...
  4243. }
  4244. PrivateKeyInfo ::= OneAsymmetricKey
  4245. Version ::= INTEGER { v1(0), v2(1) } (v1, ..., v2)
  4246. PrivateKeyAlgorithmIdentifier ::= AlgorithmIdentifier
  4247. { PUBLIC-KEY,
  4248. { PrivateKeyAlgorithms } }
  4249. PrivateKey ::= OCTET STRING
  4250. -- Content varies based on type of key. The
  4251. -- algorithm identifier dictates the format of
  4252. -- the key.
  4253. PublicKey ::= BIT STRING
  4254. -- Content varies based on type of key. The
  4255. -- algorithm identifier dictates the format of
  4256. -- the key.
  4257. Attributes ::= SET OF Attribute { { OneAsymmetricKeyAttributes } }
  4258. </pre>
  4259. </member>
  4260. <member name="P:Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo.HasPublicKey">
  4261. <summary>Return true if a public key is present, false otherwise.</summary>
  4262. </member>
  4263. <member name="M:Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo.ParsePublicKey">
  4264. <summary>For when the public key is an ASN.1 encoding.</summary>
  4265. </member>
  4266. <member name="P:Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo.PublicKeyData">
  4267. <summary>Return the public key as a raw bit string.</summary>
  4268. </member>
  4269. <member name="M:Org.BouncyCastle.Asn1.Pkcs.RsaesOaepParameters.#ctor">
  4270. The default version
  4271. </member>
  4272. <member name="M:Org.BouncyCastle.Asn1.Pkcs.RsaesOaepParameters.ToAsn1Object">
  4273. <pre>
  4274. RSAES-OAEP-params ::= SEQUENCE {
  4275. hashAlgorithm [0] OAEP-PSSDigestAlgorithms DEFAULT sha1,
  4276. maskGenAlgorithm [1] PKCS1MGFAlgorithms DEFAULT mgf1SHA1,
  4277. pSourceAlgorithm [2] PKCS1PSourceAlgorithms DEFAULT pSpecifiedEmpty
  4278. }
  4279. OAEP-PSSDigestAlgorithms ALGORITHM-IDENTIFIER ::= {
  4280. { OID id-sha1 PARAMETERS NULL }|
  4281. { OID id-sha256 PARAMETERS NULL }|
  4282. { OID id-sha384 PARAMETERS NULL }|
  4283. { OID id-sha512 PARAMETERS NULL },
  4284. ... -- Allows for future expansion --
  4285. }
  4286. PKCS1MGFAlgorithms ALGORITHM-IDENTIFIER ::= {
  4287. { OID id-mgf1 PARAMETERS OAEP-PSSDigestAlgorithms },
  4288. ... -- Allows for future expansion --
  4289. }
  4290. PKCS1PSourceAlgorithms ALGORITHM-IDENTIFIER ::= {
  4291. { OID id-pSpecified PARAMETERS OCTET STRING },
  4292. ... -- Allows for future expansion --
  4293. }
  4294. </pre>
  4295. @return the asn1 primitive representing the parameters.
  4296. </member>
  4297. <member name="M:Org.BouncyCastle.Asn1.Pkcs.RsaPrivateKeyStructure.ToAsn1Object">
  4298. This outputs the key in Pkcs1v2 format.
  4299. <pre>
  4300. RsaPrivateKey ::= Sequence {
  4301. version Version,
  4302. modulus Integer, -- n
  4303. publicExponent Integer, -- e
  4304. privateExponent Integer, -- d
  4305. prime1 Integer, -- p
  4306. prime2 Integer, -- q
  4307. exponent1 Integer, -- d mod (p-1)
  4308. exponent2 Integer, -- d mod (q-1)
  4309. coefficient Integer -- (inverse of q) mod p
  4310. }
  4311. Version ::= Integer
  4312. </pre>
  4313. <p>This routine is written to output Pkcs1 version 0, private keys.</p>
  4314. </member>
  4315. <member name="M:Org.BouncyCastle.Asn1.Pkcs.RsassaPssParameters.#ctor">
  4316. The default version
  4317. </member>
  4318. <member name="M:Org.BouncyCastle.Asn1.Pkcs.RsassaPssParameters.ToAsn1Object">
  4319. <pre>
  4320. RSASSA-PSS-params ::= SEQUENCE {
  4321. hashAlgorithm [0] OAEP-PSSDigestAlgorithms DEFAULT sha1,
  4322. maskGenAlgorithm [1] PKCS1MGFAlgorithms DEFAULT mgf1SHA1,
  4323. saltLength [2] INTEGER DEFAULT 20,
  4324. trailerField [3] TrailerField DEFAULT trailerFieldBC
  4325. }
  4326. OAEP-PSSDigestAlgorithms ALGORITHM-IDENTIFIER ::= {
  4327. { OID id-sha1 PARAMETERS NULL }|
  4328. { OID id-sha256 PARAMETERS NULL }|
  4329. { OID id-sha384 PARAMETERS NULL }|
  4330. { OID id-sha512 PARAMETERS NULL },
  4331. ... -- Allows for future expansion --
  4332. }
  4333. PKCS1MGFAlgorithms ALGORITHM-IDENTIFIER ::= {
  4334. { OID id-mgf1 PARAMETERS OAEP-PSSDigestAlgorithms },
  4335. ... -- Allows for future expansion --
  4336. }
  4337. TrailerField ::= INTEGER { trailerFieldBC(1) }
  4338. </pre>
  4339. @return the asn1 primitive representing the parameters.
  4340. </member>
  4341. <member name="T:Org.BouncyCastle.Asn1.Pkcs.SignedData">
  4342. a Pkcs#7 signed data object.
  4343. </member>
  4344. <member name="M:Org.BouncyCastle.Asn1.Pkcs.SignedData.ToAsn1Object">
  4345. Produce an object suitable for an Asn1OutputStream.
  4346. <pre>
  4347. SignedData ::= Sequence {
  4348. version Version,
  4349. digestAlgorithms DigestAlgorithmIdentifiers,
  4350. contentInfo ContentInfo,
  4351. certificates
  4352. [0] IMPLICIT ExtendedCertificatesAndCertificates
  4353. OPTIONAL,
  4354. crls
  4355. [1] IMPLICIT CertificateRevocationLists OPTIONAL,
  4356. signerInfos SignerInfos }
  4357. </pre>
  4358. </member>
  4359. <member name="T:Org.BouncyCastle.Asn1.Pkcs.SignerInfo">
  4360. a Pkcs#7 signer info object.
  4361. </member>
  4362. <member name="M:Org.BouncyCastle.Asn1.Pkcs.SignerInfo.ToAsn1Object">
  4363. Produce an object suitable for an Asn1OutputStream.
  4364. <pre>
  4365. SignerInfo ::= Sequence {
  4366. version Version,
  4367. issuerAndSerialNumber IssuerAndSerialNumber,
  4368. digestAlgorithm DigestAlgorithmIdentifier,
  4369. authenticatedAttributes [0] IMPLICIT Attributes OPTIONAL,
  4370. digestEncryptionAlgorithm DigestEncryptionAlgorithmIdentifier,
  4371. encryptedDigest EncryptedDigest,
  4372. unauthenticatedAttributes [1] IMPLICIT Attributes OPTIONAL
  4373. }
  4374. EncryptedDigest ::= OCTET STRING
  4375. DigestAlgorithmIdentifier ::= AlgorithmIdentifier
  4376. DigestEncryptionAlgorithmIdentifier ::= AlgorithmIdentifier
  4377. </pre>
  4378. </member>
  4379. <member name="T:Org.BouncyCastle.Asn1.Sec.ECPrivateKeyStructure">
  4380. the elliptic curve private key object from SEC 1
  4381. </member>
  4382. <member name="M:Org.BouncyCastle.Asn1.Sec.ECPrivateKeyStructure.ToAsn1Object">
  4383. ECPrivateKey ::= SEQUENCE {
  4384. version INTEGER { ecPrivkeyVer1(1) } (ecPrivkeyVer1),
  4385. privateKey OCTET STRING,
  4386. parameters [0] Parameters OPTIONAL,
  4387. publicKey [1] BIT STRING OPTIONAL }
  4388. </member>
  4389. <member name="M:Org.BouncyCastle.Asn1.Sec.SecNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  4390. return the X9ECParameters object for the named curve represented by
  4391. the passed in object identifier. Null if the curve isn't present.
  4392. @param oid an object identifier representing a named curve, if present.
  4393. </member>
  4394. <member name="M:Org.BouncyCastle.Asn1.Sec.SecNamedCurves.GetOid(System.String)">
  4395. return the object identifier signified by the passed in name. Null
  4396. if there is no object identifier associated with name.
  4397. @return the object identifier associated with name, if present.
  4398. </member>
  4399. <member name="M:Org.BouncyCastle.Asn1.Sec.SecNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  4400. return the named curve name represented by the given object identifier.
  4401. </member>
  4402. <member name="P:Org.BouncyCastle.Asn1.Sec.SecNamedCurves.Names">
  4403. returns an enumeration containing the name strings for curves
  4404. contained in this structure.
  4405. </member>
  4406. <member name="F:Org.BouncyCastle.Asn1.Sec.SecObjectIdentifiers.EllipticCurve">
  4407. EllipticCurve OBJECT IDENTIFIER ::= {
  4408. iso(1) identified-organization(3) certicom(132) curve(0)
  4409. }
  4410. </member>
  4411. <member name="T:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities">
  4412. Handler class for dealing with S/MIME Capabilities
  4413. </member>
  4414. <member name="F:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities.PreferSignedData">
  4415. general preferences
  4416. </member>
  4417. <member name="F:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities.Aes256Cbc">
  4418. encryption algorithms preferences
  4419. </member>
  4420. <member name="M:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities.GetInstance(System.Object)">
  4421. return an Attr object from the given object.
  4422. @param o the object we want converted.
  4423. @exception ArgumentException if the object cannot be converted.
  4424. </member>
  4425. <member name="M:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities.GetCapabilitiesForOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  4426. returns an ArrayList with 0 or more objects of all the capabilities
  4427. matching the passed in capability Oid. If the Oid passed is null the
  4428. entire set is returned.
  4429. </member>
  4430. <member name="M:Org.BouncyCastle.Asn1.Smime.SmimeCapabilities.ToAsn1Object">
  4431. Produce an object suitable for an Asn1OutputStream.
  4432. <pre>
  4433. SMIMECapabilities ::= Sequence OF SMIMECapability
  4434. </pre>
  4435. </member>
  4436. <member name="F:Org.BouncyCastle.Asn1.Smime.SmimeCapability.PreferSignedData">
  4437. general preferences
  4438. </member>
  4439. <member name="F:Org.BouncyCastle.Asn1.Smime.SmimeCapability.DesCbc">
  4440. encryption algorithms preferences
  4441. </member>
  4442. <member name="M:Org.BouncyCastle.Asn1.Smime.SmimeCapability.ToAsn1Object">
  4443. Produce an object suitable for an Asn1OutputStream.
  4444. <pre>
  4445. SMIMECapability ::= Sequence {
  4446. capabilityID OBJECT IDENTIFIER,
  4447. parameters ANY DEFINED BY capabilityID OPTIONAL
  4448. }
  4449. </pre>
  4450. </member>
  4451. <member name="T:Org.BouncyCastle.Asn1.Smime.SmimeCapabilityVector">
  4452. Handler for creating a vector S/MIME Capabilities
  4453. </member>
  4454. <member name="T:Org.BouncyCastle.Asn1.Smime.SmimeEncryptionKeyPreferenceAttribute">
  4455. The SmimeEncryptionKeyPreference object.
  4456. <pre>
  4457. SmimeEncryptionKeyPreference ::= CHOICE {
  4458. issuerAndSerialNumber [0] IssuerAndSerialNumber,
  4459. receipentKeyId [1] RecipientKeyIdentifier,
  4460. subjectAltKeyIdentifier [2] SubjectKeyIdentifier
  4461. }
  4462. </pre>
  4463. </member>
  4464. <member name="M:Org.BouncyCastle.Asn1.Smime.SmimeEncryptionKeyPreferenceAttribute.#ctor(Org.BouncyCastle.Asn1.Asn1OctetString)">
  4465. @param sKeyId the subjectKeyIdentifier value (normally the X.509 one)
  4466. </member>
  4467. <member name="T:Org.BouncyCastle.Asn1.TeleTrust.TeleTrusTNamedCurves">
  4468. elliptic curves defined in "ECC Brainpool Standard Curves and Curve Generation"
  4469. http://www.ecc-brainpool.org/download/draft_pkix_additional_ecc_dp.txt
  4470. </member>
  4471. <member name="M:Org.BouncyCastle.Asn1.TeleTrust.TeleTrusTNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  4472. return the X9ECParameters object for the named curve represented by
  4473. the passed in object identifier. Null if the curve isn't present.
  4474. @param oid an object identifier representing a named curve, if present.
  4475. </member>
  4476. <member name="M:Org.BouncyCastle.Asn1.TeleTrust.TeleTrusTNamedCurves.GetOid(System.String)">
  4477. return the object identifier signified by the passed in name. Null
  4478. if there is no object identifier associated with name.
  4479. @return the object identifier associated with name, if present.
  4480. </member>
  4481. <member name="M:Org.BouncyCastle.Asn1.TeleTrust.TeleTrusTNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  4482. return the named curve name represented by the given object identifier.
  4483. </member>
  4484. <member name="P:Org.BouncyCastle.Asn1.TeleTrust.TeleTrusTNamedCurves.Names">
  4485. returns an enumeration containing the name strings for curves
  4486. contained in this structure.
  4487. </member>
  4488. <member name="M:Org.BouncyCastle.Asn1.Tsp.Accuracy.ToAsn1Object">
  4489. <pre>
  4490. Accuracy ::= SEQUENCE {
  4491. seconds INTEGER OPTIONAL,
  4492. millis [0] INTEGER (1..999) OPTIONAL,
  4493. micros [1] INTEGER (1..999) OPTIONAL
  4494. }
  4495. </pre>
  4496. </member>
  4497. <member name="M:Org.BouncyCastle.Asn1.Tsp.MessageImprint.GetInstance(System.Object)">
  4498. @param o
  4499. @return a MessageImprint object.
  4500. </member>
  4501. <member name="M:Org.BouncyCastle.Asn1.Tsp.MessageImprint.ToAsn1Object">
  4502. <pre>
  4503. MessageImprint ::= SEQUENCE {
  4504. hashAlgorithm AlgorithmIdentifier,
  4505. hashedMessage OCTET STRING }
  4506. </pre>
  4507. </member>
  4508. <member name="M:Org.BouncyCastle.Asn1.Tsp.TimeStampReq.ToAsn1Object">
  4509. <pre>
  4510. TimeStampReq ::= SEQUENCE {
  4511. version INTEGER { v1(1) },
  4512. messageImprint MessageImprint,
  4513. --a hash algorithm OID and the hash value of the data to be
  4514. --time-stamped
  4515. reqPolicy TSAPolicyId OPTIONAL,
  4516. nonce INTEGER OPTIONAL,
  4517. certReq BOOLEAN DEFAULT FALSE,
  4518. extensions [0] IMPLICIT Extensions OPTIONAL
  4519. }
  4520. </pre>
  4521. </member>
  4522. <member name="M:Org.BouncyCastle.Asn1.Tsp.TimeStampResp.ToAsn1Object">
  4523. <pre>
  4524. TimeStampResp ::= SEQUENCE {
  4525. status PkiStatusInfo,
  4526. timeStampToken TimeStampToken OPTIONAL }
  4527. </pre>
  4528. </member>
  4529. <member name="M:Org.BouncyCastle.Asn1.Tsp.TstInfo.ToAsn1Object">
  4530. <pre>
  4531. TstInfo ::= SEQUENCE {
  4532. version INTEGER { v1(1) },
  4533. policy TSAPolicyId,
  4534. messageImprint MessageImprint,
  4535. -- MUST have the same value as the similar field in
  4536. -- TimeStampReq
  4537. serialNumber INTEGER,
  4538. -- Time-Stamping users MUST be ready to accommodate integers
  4539. -- up to 160 bits.
  4540. genTime GeneralizedTime,
  4541. accuracy Accuracy OPTIONAL,
  4542. ordering BOOLEAN DEFAULT FALSE,
  4543. nonce INTEGER OPTIONAL,
  4544. -- MUST be present if the similar field was present
  4545. -- in TimeStampReq. In that case it MUST have the same value.
  4546. tsa [0] GeneralName OPTIONAL,
  4547. extensions [1] IMPLICIT Extensions OPTIONAL }
  4548. </pre>
  4549. </member>
  4550. <!-- Badly formed XML comment ignored for member "T:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers" -->
  4551. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.UaOid">
  4552. Base OID: 1.2.804.2.1.1.1
  4553. </member>
  4554. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu4145le">
  4555. DSTU4145 Little Endian presentation. OID: 1.2.804.2.1.1.1.1.3.1.1
  4556. </member>
  4557. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu4145be">
  4558. DSTU4145 Big Endian presentation. OID: 1.2.804.2.1.1.1.1.3.1.1.1
  4559. </member>
  4560. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564digest_256">
  4561. DSTU7564 256-bit digest presentation.
  4562. </member>
  4563. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564digest_384">
  4564. DSTU7564 384-bit digest presentation.
  4565. </member>
  4566. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564digest_512">
  4567. DSTU7564 512-bit digest presentation.
  4568. </member>
  4569. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564mac_256">
  4570. DSTU7564 256-bit mac presentation.
  4571. </member>
  4572. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564mac_384">
  4573. DSTU7564 384-bit mac presentation.
  4574. </member>
  4575. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7564mac_512">
  4576. DSTU7564 512-bit mac presentation.
  4577. </member>
  4578. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ecb_128">
  4579. DSTU7624 in ECB mode with 128 bit block/key presentation
  4580. </member>
  4581. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ecb_256">
  4582. DSTU7624 in ECB mode with 256 bit block/key presentation
  4583. </member>
  4584. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ecb_512">
  4585. DSTU7624 in ECB mode with 512 bit block/key presentation
  4586. </member>
  4587. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ctr_128">
  4588. DSTU7624 in CTR mode with 128 bit block/key presentation
  4589. </member>
  4590. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ctr_256">
  4591. DSTU7624 in CTR mode with 256 bit block/key presentation
  4592. </member>
  4593. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ctr_512">
  4594. DSTU7624 in CTR mode with 512 bit block/key presentation
  4595. </member>
  4596. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cfb_128">
  4597. DSTU7624 in CFB mode with 128 bit block/key presentation
  4598. </member>
  4599. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cfb_256">
  4600. DSTU7624 in CFB mode with 256 bit block/key presentation
  4601. </member>
  4602. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cfb_512">
  4603. DSTU7624 in CFB mode with 512 bit block/key presentation
  4604. </member>
  4605. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cmac_128">
  4606. DSTU7624 in MAC mode with 128 bit block/key presentation
  4607. </member>
  4608. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cmac_256">
  4609. DSTU7624 in MAC mode with 256 bit block/key presentation
  4610. </member>
  4611. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cmac_512">
  4612. DSTU7624 in MAC mode with 512 bit block/key presentation
  4613. </member>
  4614. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cbc_128">
  4615. DSTU7624 in CBC mode with 128 bit block/key presentation
  4616. </member>
  4617. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cbc_256">
  4618. DSTU7624 in CBC mode with 256 bit block/key presentation
  4619. </member>
  4620. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624cbc_512">
  4621. DSTU7624 in CBC mode with 512 bit block/key presentation
  4622. </member>
  4623. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ofb_128">
  4624. DSTU7624 in OFB mode with 128 bit block/key presentation
  4625. </member>
  4626. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ofb_256">
  4627. DSTU7624 in OFB mode with 256 bit block/key presentation
  4628. </member>
  4629. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ofb_512">
  4630. DSTU7624 in OFB mode with 512 bit block/key presentation
  4631. </member>
  4632. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624gmac_128">
  4633. DSTU7624 in GMAC (GCM witout encryption) mode with 128 bit block/key presentation
  4634. </member>
  4635. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624gmac_256">
  4636. DSTU7624 in GMAC (GCM witout encryption) mode with 256 bit block/key presentation
  4637. </member>
  4638. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624gmac_512">
  4639. DSTU7624 in GMAC (GCM witout encryption) mode with 512 bit block/key presentation
  4640. </member>
  4641. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ccm_128">
  4642. DSTU7624 in CCM mode with 128 bit block/key presentation
  4643. </member>
  4644. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ccm_256">
  4645. DSTU7624 in CCM mode with 256 bit block/key presentation
  4646. </member>
  4647. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624ccm_512">
  4648. DSTU7624 in CCM mode with 512 bit block/key presentation
  4649. </member>
  4650. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624xts_128">
  4651. DSTU7624 in XTS mode with 128 bit block/key presentation
  4652. </member>
  4653. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624xts_256">
  4654. DSTU7624 in XTS mode with 256 bit block/key presentation
  4655. </member>
  4656. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624xts_512">
  4657. DSTU7624 in XTS mode with 512 bit block/key presentation
  4658. </member>
  4659. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624kw_128">
  4660. DSTU7624 in key wrap (KW) mode with 128 bit block/key presentation
  4661. </member>
  4662. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624kw_256">
  4663. DSTU7624 in key wrap (KW) mode with 256 bit block/key presentation
  4664. </member>
  4665. <member name="F:Org.BouncyCastle.Asn1.UA.UAObjectIdentifiers.dstu7624kw_512">
  4666. DSTU7624 in key wrap (KW) mode with 512 bit block/key presentation
  4667. </member>
  4668. <member name="M:Org.BouncyCastle.Asn1.Utilities.Asn1Dump.AsString(System.String,System.Boolean,Org.BouncyCastle.Asn1.Asn1Object,System.Text.StringBuilder)">
  4669. dump a Der object as a formatted string with indentation
  4670. @param obj the Asn1Object to be dumped out.
  4671. </member>
  4672. <member name="M:Org.BouncyCastle.Asn1.Utilities.Asn1Dump.DumpAsString(Org.BouncyCastle.Asn1.Asn1Encodable)">
  4673. dump out a DER object as a formatted string, in non-verbose mode
  4674. @param obj the Asn1Encodable to be dumped out.
  4675. @return the resulting string.
  4676. </member>
  4677. <member name="M:Org.BouncyCastle.Asn1.Utilities.Asn1Dump.DumpAsString(Org.BouncyCastle.Asn1.Asn1Encodable,System.Boolean)">
  4678. Dump out the object as a string
  4679. @param obj the Asn1Encodable to be dumped out.
  4680. @param verbose if true, dump out the contents of octet and bit strings.
  4681. @return the resulting string.
  4682. </member>
  4683. <member name="M:Org.BouncyCastle.Asn1.X500.DirectoryString.ToAsn1Object">
  4684. <pre>
  4685. DirectoryString ::= CHOICE {
  4686. teletexString TeletexString (SIZE (1..MAX)),
  4687. printableString PrintableString (SIZE (1..MAX)),
  4688. universalString UniversalString (SIZE (1..MAX)),
  4689. utf8String UTF8String (SIZE (1..MAX)),
  4690. bmpString BMPString (SIZE (1..MAX)) }
  4691. </pre>
  4692. </member>
  4693. <member name="T:Org.BouncyCastle.Asn1.X509.AccessDescription">
  4694. The AccessDescription object.
  4695. <pre>
  4696. AccessDescription ::= SEQUENCE {
  4697. accessMethod OBJECT IDENTIFIER,
  4698. accessLocation GeneralName }
  4699. </pre>
  4700. </member>
  4701. <member name="M:Org.BouncyCastle.Asn1.X509.AccessDescription.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.X509.GeneralName)">
  4702. create an AccessDescription with the oid and location provided.
  4703. </member>
  4704. <member name="P:Org.BouncyCastle.Asn1.X509.AccessDescription.AccessMethod">
  4705. @return the access method.
  4706. </member>
  4707. <member name="P:Org.BouncyCastle.Asn1.X509.AccessDescription.AccessLocation">
  4708. @return the access location
  4709. </member>
  4710. <member name="P:Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier.Algorithm">
  4711. <summary>
  4712. Return the OID in the Algorithm entry of this identifier.
  4713. </summary>
  4714. </member>
  4715. <member name="P:Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier.Parameters">
  4716. <summary>
  4717. Return the parameters structure in the Parameters entry of this identifier.
  4718. </summary>
  4719. </member>
  4720. <member name="M:Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier.ToAsn1Object">
  4721. Produce an object suitable for an Asn1OutputStream.
  4722. <pre>
  4723. AlgorithmIdentifier ::= Sequence {
  4724. algorithm OBJECT IDENTIFIER,
  4725. parameters ANY DEFINED BY algorithm OPTIONAL }
  4726. </pre>
  4727. </member>
  4728. <member name="M:Org.BouncyCastle.Asn1.X509.AttCertIssuer.#ctor(Org.BouncyCastle.Asn1.X509.GeneralNames)">
  4729. <summary>
  4730. Don't use this one if you are trying to be RFC 3281 compliant.
  4731. Use it for v1 attribute certificates only.
  4732. </summary>
  4733. <param name="names">Our GeneralNames structure</param>
  4734. </member>
  4735. <member name="M:Org.BouncyCastle.Asn1.X509.AttCertIssuer.ToAsn1Object">
  4736. Produce an object suitable for an Asn1OutputStream.
  4737. <pre>
  4738. AttCertIssuer ::= CHOICE {
  4739. v1Form GeneralNames, -- MUST NOT be used in this
  4740. -- profile
  4741. v2Form [0] V2Form -- v2 only
  4742. }
  4743. </pre>
  4744. </member>
  4745. <member name="M:Org.BouncyCastle.Asn1.X509.AttCertValidityPeriod.ToAsn1Object">
  4746. Produce an object suitable for an Asn1OutputStream.
  4747. <pre>
  4748. AttCertValidityPeriod ::= Sequence {
  4749. notBeforeTime GeneralizedTime,
  4750. notAfterTime GeneralizedTime
  4751. }
  4752. </pre>
  4753. </member>
  4754. <member name="M:Org.BouncyCastle.Asn1.X509.AttributeX509.GetInstance(System.Object)">
  4755. return an Attr object from the given object.
  4756. @param o the object we want converted.
  4757. @exception ArgumentException if the object cannot be converted.
  4758. </member>
  4759. <member name="M:Org.BouncyCastle.Asn1.X509.AttributeX509.ToAsn1Object">
  4760. Produce an object suitable for an Asn1OutputStream.
  4761. <pre>
  4762. Attr ::= Sequence {
  4763. attrType OBJECT IDENTIFIER,
  4764. attrValues Set OF AttributeValue
  4765. }
  4766. </pre>
  4767. </member>
  4768. <member name="M:Org.BouncyCastle.Asn1.X509.AttributeCertificate.GetInstance(System.Object)">
  4769. @param obj
  4770. @return
  4771. </member>
  4772. <member name="M:Org.BouncyCastle.Asn1.X509.AttributeCertificate.ToAsn1Object">
  4773. Produce an object suitable for an Asn1OutputStream.
  4774. <pre>
  4775. AttributeCertificate ::= Sequence {
  4776. acinfo AttributeCertificateInfo,
  4777. signatureAlgorithm AlgorithmIdentifier,
  4778. signatureValue BIT STRING
  4779. }
  4780. </pre>
  4781. </member>
  4782. <member name="M:Org.BouncyCastle.Asn1.X509.AttributeCertificateInfo.ToAsn1Object">
  4783. Produce an object suitable for an Asn1OutputStream.
  4784. <pre>
  4785. AttributeCertificateInfo ::= Sequence {
  4786. version AttCertVersion -- version is v2,
  4787. holder Holder,
  4788. issuer AttCertIssuer,
  4789. signature AlgorithmIdentifier,
  4790. serialNumber CertificateSerialNumber,
  4791. attrCertValidityPeriod AttCertValidityPeriod,
  4792. attributes Sequence OF Attr,
  4793. issuerUniqueID UniqueIdentifier OPTIONAL,
  4794. extensions Extensions OPTIONAL
  4795. }
  4796. AttCertVersion ::= Integer { v2(1) }
  4797. </pre>
  4798. </member>
  4799. <member name="T:Org.BouncyCastle.Asn1.X509.AuthorityInformationAccess">
  4800. The AuthorityInformationAccess object.
  4801. <pre>
  4802. id-pe-authorityInfoAccess OBJECT IDENTIFIER ::= { id-pe 1 }
  4803. AuthorityInfoAccessSyntax ::=
  4804. Sequence SIZE (1..MAX) OF AccessDescription
  4805. AccessDescription ::= Sequence {
  4806. accessMethod OBJECT IDENTIFIER,
  4807. accessLocation GeneralName }
  4808. id-ad OBJECT IDENTIFIER ::= { id-pkix 48 }
  4809. id-ad-caIssuers OBJECT IDENTIFIER ::= { id-ad 2 }
  4810. id-ad-ocsp OBJECT IDENTIFIER ::= { id-ad 1 }
  4811. </pre>
  4812. </member>
  4813. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityInformationAccess.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.X509.GeneralName)">
  4814. create an AuthorityInformationAccess with the oid and location provided.
  4815. </member>
  4816. <member name="T:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier">
  4817. The AuthorityKeyIdentifier object.
  4818. <pre>
  4819. id-ce-authorityKeyIdentifier OBJECT IDENTIFIER ::= { id-ce 35 }
  4820. AuthorityKeyIdentifier ::= Sequence {
  4821. keyIdentifier [0] IMPLICIT KeyIdentifier OPTIONAL,
  4822. authorityCertIssuer [1] IMPLICIT GeneralNames OPTIONAL,
  4823. authorityCertSerialNumber [2] IMPLICIT CertificateSerialNumber OPTIONAL }
  4824. KeyIdentifier ::= OCTET STRING
  4825. </pre>
  4826. </member>
  4827. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.#ctor(Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  4828. *
  4829. * Calulates the keyidentifier using a SHA1 hash over the BIT STRING
  4830. * from SubjectPublicKeyInfo as defined in RFC2459.
  4831. *
  4832. * Example of making a AuthorityKeyIdentifier:
  4833. * <pre>
  4834. * SubjectPublicKeyInfo apki = new SubjectPublicKeyInfo((ASN1Sequence)new ASN1InputStream(
  4835. * publicKey.getEncoded()).readObject());
  4836. * AuthorityKeyIdentifier aki = new AuthorityKeyIdentifier(apki);
  4837. * </pre>
  4838. *
  4839. *
  4840. </member>
  4841. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.#ctor(Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo,Org.BouncyCastle.Asn1.X509.GeneralNames,Org.BouncyCastle.Math.BigInteger)">
  4842. create an AuthorityKeyIdentifier with the GeneralNames tag and
  4843. the serial number provided as well.
  4844. </member>
  4845. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.#ctor(Org.BouncyCastle.Asn1.X509.GeneralNames,Org.BouncyCastle.Math.BigInteger)">
  4846. create an AuthorityKeyIdentifier with the GeneralNames tag and
  4847. the serial number provided.
  4848. </member>
  4849. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.#ctor(System.Byte[])">
  4850. create an AuthorityKeyIdentifier with a precomputed key identifier
  4851. </member>
  4852. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.#ctor(System.Byte[],Org.BouncyCastle.Asn1.X509.GeneralNames,Org.BouncyCastle.Math.BigInteger)">
  4853. create an AuthorityKeyIdentifier with a precomupted key identifier
  4854. and the GeneralNames tag and the serial number provided as well.
  4855. </member>
  4856. <member name="M:Org.BouncyCastle.Asn1.X509.AuthorityKeyIdentifier.ToAsn1Object">
  4857. Produce an object suitable for an Asn1OutputStream.
  4858. </member>
  4859. <member name="M:Org.BouncyCastle.Asn1.X509.BasicConstraints.#ctor(System.Int32)">
  4860. create a cA=true object for the given path length constraint.
  4861. @param pathLenConstraint
  4862. </member>
  4863. <member name="M:Org.BouncyCastle.Asn1.X509.BasicConstraints.ToAsn1Object">
  4864. Produce an object suitable for an Asn1OutputStream.
  4865. <pre>
  4866. BasicConstraints := Sequence {
  4867. cA Boolean DEFAULT FALSE,
  4868. pathLenConstraint Integer (0..MAX) OPTIONAL
  4869. }
  4870. </pre>
  4871. </member>
  4872. <member name="T:Org.BouncyCastle.Asn1.X509.CertificateList">
  4873. PKIX RFC-2459
  4874. The X.509 v2 CRL syntax is as follows. For signature calculation,
  4875. the data that is to be signed is ASN.1 Der encoded.
  4876. <pre>
  4877. CertificateList ::= Sequence {
  4878. tbsCertList TbsCertList,
  4879. signatureAlgorithm AlgorithmIdentifier,
  4880. signatureValue BIT STRING }
  4881. </pre>
  4882. </member>
  4883. <member name="T:Org.BouncyCastle.Asn1.X509.CertificatePair">
  4884. This class helps to support crossCerfificatePairs in a LDAP directory
  4885. according RFC 2587
  4886. <pre>
  4887. crossCertificatePairATTRIBUTE::={
  4888. WITH SYNTAX CertificatePair
  4889. EQUALITY MATCHING RULE certificatePairExactMatch
  4890. ID joint-iso-ccitt(2) ds(5) attributeType(4) crossCertificatePair(40)}
  4891. </pre>
  4892. <blockquote> The forward elements of the crossCertificatePair attribute of a
  4893. CA's directory entry shall be used to store all, except self-issued
  4894. certificates issued to this CA. Optionally, the reverse elements of the
  4895. crossCertificatePair attribute, of a CA's directory entry may contain a
  4896. subset of certificates issued by this CA to other CAs. When both the forward
  4897. and the reverse elements are present in a single attribute value, issuer name
  4898. in one certificate shall match the subject name in the other and vice versa,
  4899. and the subject public key in one certificate shall be capable of verifying
  4900. the digital signature on the other certificate and vice versa.
  4901. When a reverse element is present, the forward element value and the reverse
  4902. element value need not be stored in the same attribute value; in other words,
  4903. they can be stored in either a single attribute value or two attribute
  4904. values. </blockquote>
  4905. <pre>
  4906. CertificatePair ::= SEQUENCE {
  4907. forward [0] Certificate OPTIONAL,
  4908. reverse [1] Certificate OPTIONAL,
  4909. -- at least one of the pair shall be present -- }
  4910. </pre>
  4911. </member>
  4912. <member name="M:Org.BouncyCastle.Asn1.X509.CertificatePair.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  4913. Constructor from Asn1Sequence.
  4914. <p/>
  4915. The sequence is of type CertificatePair:
  4916. <p/>
  4917. <pre>
  4918. CertificatePair ::= SEQUENCE {
  4919. forward [0] Certificate OPTIONAL,
  4920. reverse [1] Certificate OPTIONAL,
  4921. -- at least one of the pair shall be present -- }
  4922. </pre>
  4923. @param seq The ASN.1 sequence.
  4924. </member>
  4925. <member name="M:Org.BouncyCastle.Asn1.X509.CertificatePair.#ctor(Org.BouncyCastle.Asn1.X509.X509CertificateStructure,Org.BouncyCastle.Asn1.X509.X509CertificateStructure)">
  4926. Constructor from a given details.
  4927. @param forward Certificates issued to this CA.
  4928. @param reverse Certificates issued by this CA to other CAs.
  4929. </member>
  4930. <member name="M:Org.BouncyCastle.Asn1.X509.CertificatePair.ToAsn1Object">
  4931. Produce an object suitable for an Asn1OutputStream.
  4932. <p/>
  4933. Returns:
  4934. <p/>
  4935. <pre>
  4936. CertificatePair ::= SEQUENCE {
  4937. forward [0] Certificate OPTIONAL,
  4938. reverse [1] Certificate OPTIONAL,
  4939. -- at least one of the pair shall be present -- }
  4940. </pre>
  4941. @return a DERObject
  4942. </member>
  4943. <member name="P:Org.BouncyCastle.Asn1.X509.CertificatePair.Forward">
  4944. @return Returns the forward.
  4945. </member>
  4946. <member name="P:Org.BouncyCastle.Asn1.X509.CertificatePair.Reverse">
  4947. @return Returns the reverse.
  4948. </member>
  4949. <member name="M:Org.BouncyCastle.Asn1.X509.CertificatePolicies.#ctor(Org.BouncyCastle.Asn1.X509.PolicyInformation)">
  4950. Construct a CertificatePolicies object containing one PolicyInformation.
  4951. @param name the name to be contained.
  4952. </member>
  4953. <member name="M:Org.BouncyCastle.Asn1.X509.CertificatePolicies.ToAsn1Object">
  4954. Produce an object suitable for an ASN1OutputStream.
  4955. <pre>
  4956. CertificatePolicies ::= SEQUENCE SIZE {1..MAX} OF PolicyInformation
  4957. </pre>
  4958. </member>
  4959. <member name="T:Org.BouncyCastle.Asn1.X509.CertPolicyID">
  4960. CertPolicyId, used in the CertificatePolicies and PolicyMappings
  4961. X509V3 Extensions.
  4962. <pre>
  4963. CertPolicyId ::= OBJECT IDENTIFIER
  4964. </pre>
  4965. </member>
  4966. <member name="M:Org.BouncyCastle.Asn1.X509.CrlDistPoint.GetDistributionPoints">
  4967. Return the distribution points making up the sequence.
  4968. @return DistributionPoint[]
  4969. </member>
  4970. <member name="M:Org.BouncyCastle.Asn1.X509.CrlDistPoint.ToAsn1Object">
  4971. Produce an object suitable for an Asn1OutputStream.
  4972. <pre>
  4973. CrlDistPoint ::= Sequence SIZE {1..MAX} OF DistributionPoint
  4974. </pre>
  4975. </member>
  4976. <member name="T:Org.BouncyCastle.Asn1.X509.CrlNumber">
  4977. The CRLNumber object.
  4978. <pre>
  4979. CRLNumber::= Integer(0..MAX)
  4980. </pre>
  4981. </member>
  4982. <member name="T:Org.BouncyCastle.Asn1.X509.CrlReason">
  4983. The CRLReason enumeration.
  4984. <pre>
  4985. CRLReason ::= Enumerated {
  4986. unspecified (0),
  4987. keyCompromise (1),
  4988. cACompromise (2),
  4989. affiliationChanged (3),
  4990. superseded (4),
  4991. cessationOfOperation (5),
  4992. certificateHold (6),
  4993. removeFromCRL (8),
  4994. privilegeWithdrawn (9),
  4995. aACompromise (10)
  4996. }
  4997. </pre>
  4998. </member>
  4999. <member name="T:Org.BouncyCastle.Asn1.X509.DigestInfo">
  5000. The DigestInfo object.
  5001. <pre>
  5002. DigestInfo::=Sequence{
  5003. digestAlgorithm AlgorithmIdentifier,
  5004. digest OCTET STRING }
  5005. </pre>
  5006. </member>
  5007. <member name="T:Org.BouncyCastle.Asn1.X509.DisplayText">
  5008. <code>DisplayText</code> class, used in
  5009. <code>CertificatePolicies</code> X509 V3 extensions (in policy qualifiers).
  5010. <p>It stores a string in a chosen encoding.
  5011. <pre>
  5012. DisplayText ::= CHOICE {
  5013. ia5String IA5String (SIZE (1..200)),
  5014. visibleString VisibleString (SIZE (1..200)),
  5015. bmpString BMPString (SIZE (1..200)),
  5016. utf8String UTF8String (SIZE (1..200)) }
  5017. </pre></p>
  5018. @see PolicyQualifierInfo
  5019. @see PolicyInformation
  5020. </member>
  5021. <member name="F:Org.BouncyCastle.Asn1.X509.DisplayText.ContentTypeIA5String">
  5022. Constant corresponding to ia5String encoding.
  5023. </member>
  5024. <member name="F:Org.BouncyCastle.Asn1.X509.DisplayText.ContentTypeBmpString">
  5025. Constant corresponding to bmpString encoding.
  5026. </member>
  5027. <member name="F:Org.BouncyCastle.Asn1.X509.DisplayText.ContentTypeUtf8String">
  5028. Constant corresponding to utf8String encoding.
  5029. </member>
  5030. <member name="F:Org.BouncyCastle.Asn1.X509.DisplayText.ContentTypeVisibleString">
  5031. Constant corresponding to visibleString encoding.
  5032. </member>
  5033. <member name="F:Org.BouncyCastle.Asn1.X509.DisplayText.DisplayTextMaximumSize">
  5034. Describe constant <code>DisplayTextMaximumSize</code> here.
  5035. </member>
  5036. <member name="M:Org.BouncyCastle.Asn1.X509.DisplayText.#ctor(System.Int32,System.String)">
  5037. Creates a new <code>DisplayText</code> instance.
  5038. @param type the desired encoding type for the text.
  5039. @param text the text to store. Strings longer than 200
  5040. characters are truncated.
  5041. </member>
  5042. <member name="M:Org.BouncyCastle.Asn1.X509.DisplayText.#ctor(System.String)">
  5043. Creates a new <code>DisplayText</code> instance.
  5044. @param text the text to encapsulate. Strings longer than 200
  5045. characters are truncated.
  5046. </member>
  5047. <member name="M:Org.BouncyCastle.Asn1.X509.DisplayText.#ctor(Org.BouncyCastle.Asn1.IAsn1String)">
  5048. Creates a new <code>DisplayText</code> instance.
  5049. <p>Useful when reading back a <code>DisplayText</code> class
  5050. from it's Asn1Encodable form.</p>
  5051. @param contents an <code>Asn1Encodable</code> instance.
  5052. </member>
  5053. <member name="M:Org.BouncyCastle.Asn1.X509.DisplayText.GetString">
  5054. Returns the stored <code>string</code> object.
  5055. @return the stored text as a <code>string</code>.
  5056. </member>
  5057. <member name="T:Org.BouncyCastle.Asn1.X509.DistributionPoint">
  5058. The DistributionPoint object.
  5059. <pre>
  5060. DistributionPoint ::= Sequence {
  5061. distributionPoint [0] DistributionPointName OPTIONAL,
  5062. reasons [1] ReasonFlags OPTIONAL,
  5063. cRLIssuer [2] GeneralNames OPTIONAL
  5064. }
  5065. </pre>
  5066. </member>
  5067. <member name="T:Org.BouncyCastle.Asn1.X509.DistributionPointName">
  5068. The DistributionPointName object.
  5069. <pre>
  5070. DistributionPointName ::= CHOICE {
  5071. fullName [0] GeneralNames,
  5072. nameRelativeToCRLIssuer [1] RDN
  5073. }
  5074. </pre>
  5075. </member>
  5076. <member name="T:Org.BouncyCastle.Asn1.X509.ExtendedKeyUsage">
  5077. The extendedKeyUsage object.
  5078. <pre>
  5079. extendedKeyUsage ::= Sequence SIZE (1..MAX) OF KeyPurposeId
  5080. </pre>
  5081. </member>
  5082. <member name="M:Org.BouncyCastle.Asn1.X509.ExtendedKeyUsage.GetAllUsages">
  5083. Returns all extended key usages.
  5084. The returned ArrayList contains DerObjectIdentifier instances.
  5085. @return An ArrayList with all key purposes.
  5086. </member>
  5087. <member name="T:Org.BouncyCastle.Asn1.X509.GeneralName">
  5088. The GeneralName object.
  5089. <pre>
  5090. GeneralName ::= CHOICE {
  5091. otherName [0] OtherName,
  5092. rfc822Name [1] IA5String,
  5093. dNSName [2] IA5String,
  5094. x400Address [3] ORAddress,
  5095. directoryName [4] Name,
  5096. ediPartyName [5] EDIPartyName,
  5097. uniformResourceIdentifier [6] IA5String,
  5098. iPAddress [7] OCTET STRING,
  5099. registeredID [8] OBJECT IDENTIFIER}
  5100. OtherName ::= Sequence {
  5101. type-id OBJECT IDENTIFIER,
  5102. value [0] EXPLICIT ANY DEFINED BY type-id }
  5103. EDIPartyName ::= Sequence {
  5104. nameAssigner [0] DirectoryString OPTIONAL,
  5105. partyName [1] DirectoryString }
  5106. </pre>
  5107. </member>
  5108. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralName.#ctor(Org.BouncyCastle.Asn1.Asn1Object,System.Int32)">
  5109. When the subjectAltName extension contains an Internet mail address,
  5110. the address MUST be included as an rfc822Name. The format of an
  5111. rfc822Name is an "addr-spec" as defined in RFC 822 [RFC 822].
  5112. When the subjectAltName extension contains a domain name service
  5113. label, the domain name MUST be stored in the dNSName (an IA5String).
  5114. The name MUST be in the "preferred name syntax," as specified by RFC
  5115. 1034 [RFC 1034].
  5116. When the subjectAltName extension contains a URI, the name MUST be
  5117. stored in the uniformResourceIdentifier (an IA5String). The name MUST
  5118. be a non-relative URL, and MUST follow the URL syntax and encoding
  5119. rules specified in [RFC 1738]. The name must include both a scheme
  5120. (e.g., "http" or "ftp") and a scheme-specific-part. The scheme-
  5121. specific-part must include a fully qualified domain name or IP
  5122. address as the host.
  5123. When the subjectAltName extension contains a iPAddress, the address
  5124. MUST be stored in the octet string in "network byte order," as
  5125. specified in RFC 791 [RFC 791]. The least significant bit (LSB) of
  5126. each octet is the LSB of the corresponding byte in the network
  5127. address. For IP Version 4, as specified in RFC 791, the octet string
  5128. MUST contain exactly four octets. For IP Version 6, as specified in
  5129. RFC 1883, the octet string MUST contain exactly sixteen octets [RFC
  5130. 1883].
  5131. </member>
  5132. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralName.#ctor(System.Int32,System.String)">
  5133. Create a GeneralName for the given tag from the passed in string.
  5134. <p>
  5135. This constructor can handle:
  5136. <ul>
  5137. <li>rfc822Name</li>
  5138. <li>iPAddress</li>
  5139. <li>directoryName</li>
  5140. <li>dNSName</li>
  5141. <li>uniformResourceIdentifier</li>
  5142. <li>registeredID</li>
  5143. </ul>
  5144. For x400Address, otherName and ediPartyName there is no common string
  5145. format defined.
  5146. </p><p>
  5147. Note: A directory name can be encoded in different ways into a byte
  5148. representation. Be aware of this if the byte representation is used for
  5149. comparing results.
  5150. </p>
  5151. @param tag tag number
  5152. @param name string representation of name
  5153. @throws ArgumentException if the string encoding is not correct or
  5154. not supported.
  5155. </member>
  5156. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralNames.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName)">
  5157. <summary>Construct a GeneralNames object containing one GeneralName.</summary>
  5158. <param name="name">The name to be contained.</param>
  5159. </member>
  5160. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralNames.ToAsn1Object">
  5161. Produce an object suitable for an Asn1OutputStream.
  5162. <pre>
  5163. GeneralNames ::= Sequence SIZE {1..MAX} OF GeneralName
  5164. </pre>
  5165. </member>
  5166. <member name="T:Org.BouncyCastle.Asn1.X509.GeneralSubtree">
  5167. Class for containing a restriction object subtrees in NameConstraints. See
  5168. RFC 3280.
  5169. <pre>
  5170. GeneralSubtree ::= SEQUENCE
  5171. {
  5172. baseName GeneralName,
  5173. minimum [0] BaseDistance DEFAULT 0,
  5174. maximum [1] BaseDistance OPTIONAL
  5175. }
  5176. </pre>
  5177. @see org.bouncycastle.asn1.x509.NameConstraints
  5178. </member>
  5179. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralSubtree.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  5180. Constructor from a given details.
  5181. According RFC 3280, the minimum and maximum fields are not used with any
  5182. name forms, thus minimum MUST be zero, and maximum MUST be absent.
  5183. <p>
  5184. If minimum is <code>null</code>, zero is assumed, if
  5185. maximum is <code>null</code>, maximum is absent.</p>
  5186. @param baseName
  5187. A restriction.
  5188. @param minimum
  5189. Minimum
  5190. @param maximum
  5191. Maximum
  5192. </member>
  5193. <member name="M:Org.BouncyCastle.Asn1.X509.GeneralSubtree.ToAsn1Object">
  5194. Produce an object suitable for an Asn1OutputStream.
  5195. Returns:
  5196. <pre>
  5197. GeneralSubtree ::= SEQUENCE
  5198. {
  5199. baseName GeneralName,
  5200. minimum [0] BaseDistance DEFAULT 0,
  5201. maximum [1] BaseDistance OPTIONAL
  5202. }
  5203. </pre>
  5204. @return a DERObject
  5205. </member>
  5206. <member name="T:Org.BouncyCastle.Asn1.X509.Holder">
  5207. The Holder object.
  5208. <p>
  5209. For an v2 attribute certificate this is:
  5210. <pre>
  5211. Holder ::= SEQUENCE {
  5212. baseCertificateID [0] IssuerSerial OPTIONAL,
  5213. -- the issuer and serial number of
  5214. -- the holder's Public Key Certificate
  5215. entityName [1] GeneralNames OPTIONAL,
  5216. -- the name of the claimant or role
  5217. objectDigestInfo [2] ObjectDigestInfo OPTIONAL
  5218. -- used to directly authenticate the holder,
  5219. -- for example, an executable
  5220. }
  5221. </pre>
  5222. </p>
  5223. <p>
  5224. For an v1 attribute certificate this is:
  5225. <pre>
  5226. subject CHOICE {
  5227. baseCertificateID [0] IssuerSerial,
  5228. -- associated with a Public Key Certificate
  5229. subjectName [1] GeneralNames },
  5230. -- associated with a name
  5231. </pre>
  5232. </p>
  5233. </member>
  5234. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.Asn1TaggedObject)">
  5235. Constructor for a holder for an v1 attribute certificate.
  5236. @param tagObj The ASN.1 tagged holder object.
  5237. </member>
  5238. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5239. Constructor for a holder for an v2 attribute certificate. *
  5240. @param seq The ASN.1 sequence.
  5241. </member>
  5242. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.X509.IssuerSerial,System.Int32)">
  5243. Constructs a holder from a IssuerSerial.
  5244. @param baseCertificateID The IssuerSerial.
  5245. @param version The version of the attribute certificate.
  5246. </member>
  5247. <member name="P:Org.BouncyCastle.Asn1.X509.Holder.Version">
  5248. Returns 1 for v2 attribute certificates or 0 for v1 attribute
  5249. certificates.
  5250. @return The version of the attribute certificate.
  5251. </member>
  5252. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.X509.GeneralNames)">
  5253. Constructs a holder with an entityName for v2 attribute certificates or
  5254. with a subjectName for v1 attribute certificates.
  5255. @param entityName The entity or subject name.
  5256. </member>
  5257. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.X509.GeneralNames,System.Int32)">
  5258. Constructs a holder with an entityName for v2 attribute certificates or
  5259. with a subjectName for v1 attribute certificates.
  5260. @param entityName The entity or subject name.
  5261. @param version The version of the attribute certificate.
  5262. </member>
  5263. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.#ctor(Org.BouncyCastle.Asn1.X509.ObjectDigestInfo)">
  5264. Constructs a holder from an object digest info.
  5265. @param objectDigestInfo The object digest info object.
  5266. </member>
  5267. <member name="P:Org.BouncyCastle.Asn1.X509.Holder.EntityName">
  5268. Returns the entityName for an v2 attribute certificate or the subjectName
  5269. for an v1 attribute certificate.
  5270. @return The entityname or subjectname.
  5271. </member>
  5272. <member name="M:Org.BouncyCastle.Asn1.X509.Holder.ToAsn1Object">
  5273. The Holder object.
  5274. <pre>
  5275. Holder ::= Sequence {
  5276. baseCertificateID [0] IssuerSerial OPTIONAL,
  5277. -- the issuer and serial number of
  5278. -- the holder's Public Key Certificate
  5279. entityName [1] GeneralNames OPTIONAL,
  5280. -- the name of the claimant or role
  5281. objectDigestInfo [2] ObjectDigestInfo OPTIONAL
  5282. -- used to directly authenticate the holder,
  5283. -- for example, an executable
  5284. }
  5285. </pre>
  5286. </member>
  5287. <member name="T:Org.BouncyCastle.Asn1.X509.IetfAttrSyntax">
  5288. Implementation of <code>IetfAttrSyntax</code> as specified by RFC3281.
  5289. </member>
  5290. <member name="M:Org.BouncyCastle.Asn1.X509.IetfAttrSyntax.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5291. </member>
  5292. <member name="M:Org.BouncyCastle.Asn1.X509.IetfAttrSyntax.ToAsn1Object">
  5293. <pre>
  5294. IetfAttrSyntax ::= Sequence {
  5295. policyAuthority [0] GeneralNames OPTIONAL,
  5296. values Sequence OF CHOICE {
  5297. octets OCTET STRING,
  5298. oid OBJECT IDENTIFIER,
  5299. string UTF8String
  5300. }
  5301. }
  5302. </pre>
  5303. </member>
  5304. <member name="M:Org.BouncyCastle.Asn1.X509.IssuerSerial.ToAsn1Object">
  5305. Produce an object suitable for an Asn1OutputStream.
  5306. <pre>
  5307. IssuerSerial ::= Sequence {
  5308. issuer GeneralNames,
  5309. serial CertificateSerialNumber,
  5310. issuerUid UniqueIdentifier OPTIONAL
  5311. }
  5312. </pre>
  5313. </member>
  5314. <member name="T:Org.BouncyCastle.Asn1.X509.IssuingDistributionPoint">
  5315. <pre>
  5316. IssuingDistributionPoint ::= SEQUENCE {
  5317. distributionPoint [0] DistributionPointName OPTIONAL,
  5318. onlyContainsUserCerts [1] BOOLEAN DEFAULT FALSE,
  5319. onlyContainsCACerts [2] BOOLEAN DEFAULT FALSE,
  5320. onlySomeReasons [3] ReasonFlags OPTIONAL,
  5321. indirectCRL [4] BOOLEAN DEFAULT FALSE,
  5322. onlyContainsAttributeCerts [5] BOOLEAN DEFAULT FALSE }
  5323. </pre>
  5324. </member>
  5325. <member name="M:Org.BouncyCastle.Asn1.X509.IssuingDistributionPoint.#ctor(Org.BouncyCastle.Asn1.X509.DistributionPointName,System.Boolean,System.Boolean,Org.BouncyCastle.Asn1.X509.ReasonFlags,System.Boolean,System.Boolean)">
  5326. Constructor from given details.
  5327. @param distributionPoint
  5328. May contain an URI as pointer to most current CRL.
  5329. @param onlyContainsUserCerts Covers revocation information for end certificates.
  5330. @param onlyContainsCACerts Covers revocation information for CA certificates.
  5331. @param onlySomeReasons
  5332. Which revocation reasons does this point cover.
  5333. @param indirectCRL
  5334. If <code>true</code> then the CRL contains revocation
  5335. information about certificates ssued by other CAs.
  5336. @param onlyContainsAttributeCerts Covers revocation information for attribute certificates.
  5337. </member>
  5338. <member name="M:Org.BouncyCastle.Asn1.X509.IssuingDistributionPoint.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5339. Constructor from Asn1Sequence
  5340. </member>
  5341. <member name="P:Org.BouncyCastle.Asn1.X509.IssuingDistributionPoint.DistributionPoint">
  5342. @return Returns the distributionPoint.
  5343. </member>
  5344. <member name="P:Org.BouncyCastle.Asn1.X509.IssuingDistributionPoint.OnlySomeReasons">
  5345. @return Returns the onlySomeReasons.
  5346. </member>
  5347. <member name="T:Org.BouncyCastle.Asn1.X509.KeyPurposeID">
  5348. The KeyPurposeID object.
  5349. <pre>
  5350. KeyPurposeID ::= OBJECT IDENTIFIER
  5351. </pre>
  5352. </member>
  5353. <member name="T:Org.BouncyCastle.Asn1.X509.KeyUsage">
  5354. The KeyUsage object.
  5355. <pre>
  5356. id-ce-keyUsage OBJECT IDENTIFIER ::= { id-ce 15 }
  5357. KeyUsage ::= BIT STRING {
  5358. digitalSignature (0),
  5359. nonRepudiation (1),
  5360. keyEncipherment (2),
  5361. dataEncipherment (3),
  5362. keyAgreement (4),
  5363. keyCertSign (5),
  5364. cRLSign (6),
  5365. encipherOnly (7),
  5366. decipherOnly (8) }
  5367. </pre>
  5368. </member>
  5369. <member name="M:Org.BouncyCastle.Asn1.X509.KeyUsage.#ctor(System.Int32)">
  5370. Basic constructor.
  5371. @param usage - the bitwise OR of the Key Usage flags giving the
  5372. allowed uses for the key.
  5373. e.g. (KeyUsage.keyEncipherment | KeyUsage.dataEncipherment)
  5374. </member>
  5375. <member name="M:Org.BouncyCastle.Asn1.X509.NameConstraints.#ctor(System.Collections.IList,System.Collections.IList)">
  5376. Constructor from a given details.
  5377. <p>permitted and excluded are Vectors of GeneralSubtree objects.</p>
  5378. @param permitted Permitted subtrees
  5379. @param excluded Excluded subtrees
  5380. </member>
  5381. <member name="T:Org.BouncyCastle.Asn1.X509.NoticeReference">
  5382. <code>NoticeReference</code> class, used in
  5383. <code>CertificatePolicies</code> X509 V3 extensions
  5384. (in policy qualifiers).
  5385. <pre>
  5386. NoticeReference ::= Sequence {
  5387. organization DisplayText,
  5388. noticeNumbers Sequence OF Integer }
  5389. </pre>
  5390. @see PolicyQualifierInfo
  5391. @see PolicyInformation
  5392. </member>
  5393. <member name="M:Org.BouncyCastle.Asn1.X509.NoticeReference.#ctor(System.String,System.Collections.IList)">
  5394. Creates a new <code>NoticeReference</code> instance.
  5395. @param organization a <code>String</code> value
  5396. @param numbers a <code>Vector</code> value
  5397. </member>
  5398. <member name="M:Org.BouncyCastle.Asn1.X509.NoticeReference.#ctor(System.String,Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  5399. Creates a new <code>NoticeReference</code> instance.
  5400. @param organization a <code>String</code> value
  5401. @param noticeNumbers an <code>ASN1EncodableVector</code> value
  5402. </member>
  5403. <member name="M:Org.BouncyCastle.Asn1.X509.NoticeReference.#ctor(Org.BouncyCastle.Asn1.X509.DisplayText,Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  5404. Creates a new <code>NoticeReference</code> instance.
  5405. @param organization displayText
  5406. @param noticeNumbers an <code>ASN1EncodableVector</code> value
  5407. </member>
  5408. <member name="M:Org.BouncyCastle.Asn1.X509.NoticeReference.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5409. Creates a new <code>NoticeReference</code> instance.
  5410. <p>Useful for reconstructing a <code>NoticeReference</code>
  5411. instance from its encodable/encoded form.</p>
  5412. @param as an <code>Asn1Sequence</code> value obtained from either
  5413. calling @{link ToAsn1Object()} for a <code>NoticeReference</code>
  5414. instance or from parsing it from a Der-encoded stream.
  5415. </member>
  5416. <member name="M:Org.BouncyCastle.Asn1.X509.NoticeReference.ToAsn1Object">
  5417. Describe <code>ToAsn1Object</code> method here.
  5418. @return a <code>Asn1Object</code> value
  5419. </member>
  5420. <member name="T:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo">
  5421. ObjectDigestInfo ASN.1 structure used in v2 attribute certificates.
  5422. <pre>
  5423. ObjectDigestInfo ::= SEQUENCE {
  5424. digestedObjectType ENUMERATED {
  5425. publicKey (0),
  5426. publicKeyCert (1),
  5427. otherObjectTypes (2) },
  5428. -- otherObjectTypes MUST NOT
  5429. -- be used in this profile
  5430. otherObjectTypeID OBJECT IDENTIFIER OPTIONAL,
  5431. digestAlgorithm AlgorithmIdentifier,
  5432. objectDigest BIT STRING
  5433. }
  5434. </pre>
  5435. </member>
  5436. <member name="F:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo.PublicKey">
  5437. The public key is hashed.
  5438. </member>
  5439. <member name="F:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo.PublicKeyCert">
  5440. The public key certificate is hashed.
  5441. </member>
  5442. <member name="F:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo.OtherObjectDigest">
  5443. An other object is hashed.
  5444. </member>
  5445. <member name="M:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo.#ctor(System.Int32,System.String,Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier,System.Byte[])">
  5446. Constructor from given details.
  5447. <p>
  5448. If <code>digestedObjectType</code> is not {@link #publicKeyCert} or
  5449. {@link #publicKey} <code>otherObjectTypeID</code> must be given,
  5450. otherwise it is ignored.</p>
  5451. @param digestedObjectType The digest object type.
  5452. @param otherObjectTypeID The object type ID for
  5453. <code>otherObjectDigest</code>.
  5454. @param digestAlgorithm The algorithm identifier for the hash.
  5455. @param objectDigest The hash value.
  5456. </member>
  5457. <member name="M:Org.BouncyCastle.Asn1.X509.ObjectDigestInfo.ToAsn1Object">
  5458. Produce an object suitable for an Asn1OutputStream.
  5459. <pre>
  5460. ObjectDigestInfo ::= SEQUENCE {
  5461. digestedObjectType ENUMERATED {
  5462. publicKey (0),
  5463. publicKeyCert (1),
  5464. otherObjectTypes (2) },
  5465. -- otherObjectTypes MUST NOT
  5466. -- be used in this profile
  5467. otherObjectTypeID OBJECT IDENTIFIER OPTIONAL,
  5468. digestAlgorithm AlgorithmIdentifier,
  5469. objectDigest BIT STRING
  5470. }
  5471. </pre>
  5472. </member>
  5473. <member name="T:Org.BouncyCastle.Asn1.X509.PolicyMappings">
  5474. PolicyMappings V3 extension, described in RFC3280.
  5475. <pre>
  5476. PolicyMappings ::= Sequence SIZE (1..MAX) OF Sequence {
  5477. issuerDomainPolicy CertPolicyId,
  5478. subjectDomainPolicy CertPolicyId }
  5479. </pre>
  5480. @see <a href="http://www.faqs.org/rfc/rfc3280.txt">RFC 3280, section 4.2.1.6</a>
  5481. </member>
  5482. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyMappings.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5483. Creates a new <code>PolicyMappings</code> instance.
  5484. @param seq an <code>Asn1Sequence</code> constructed as specified
  5485. in RFC 3280
  5486. </member>
  5487. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyMappings.#ctor(System.Collections.IDictionary)">
  5488. Creates a new <code>PolicyMappings</code> instance.
  5489. @param mappings a <code>HashMap</code> value that maps
  5490. <code>string</code> oids
  5491. to other <code>string</code> oids.
  5492. </member>
  5493. <member name="T:Org.BouncyCastle.Asn1.X509.PolicyQualifierID">
  5494. PolicyQualifierId, used in the CertificatePolicies
  5495. X509V3 extension.
  5496. <pre>
  5497. id-qt OBJECT IDENTIFIER ::= { id-pkix 2 }
  5498. id-qt-cps OBJECT IDENTIFIER ::= { id-qt 1 }
  5499. id-qt-unotice OBJECT IDENTIFIER ::= { id-qt 2 }
  5500. PolicyQualifierId ::=
  5501. OBJECT IDENTIFIER ( id-qt-cps | id-qt-unotice )
  5502. </pre>
  5503. </member>
  5504. <member name="T:Org.BouncyCastle.Asn1.X509.PolicyQualifierInfo">
  5505. Policy qualifiers, used in the X509V3 CertificatePolicies
  5506. extension.
  5507. <pre>
  5508. PolicyQualifierInfo ::= Sequence {
  5509. policyQualifierId PolicyQualifierId,
  5510. qualifier ANY DEFINED BY policyQualifierId }
  5511. </pre>
  5512. </member>
  5513. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyQualifierInfo.#ctor(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Asn1.Asn1Encodable)">
  5514. Creates a new <code>PolicyQualifierInfo</code> instance.
  5515. @param policyQualifierId a <code>PolicyQualifierId</code> value
  5516. @param qualifier the qualifier, defined by the above field.
  5517. </member>
  5518. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyQualifierInfo.#ctor(System.String)">
  5519. Creates a new <code>PolicyQualifierInfo</code> containing a
  5520. cPSuri qualifier.
  5521. @param cps the CPS (certification practice statement) uri as a
  5522. <code>string</code>.
  5523. </member>
  5524. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyQualifierInfo.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5525. Creates a new <code>PolicyQualifierInfo</code> instance.
  5526. @param as <code>PolicyQualifierInfo</code> X509 structure
  5527. encoded as an Asn1Sequence.
  5528. </member>
  5529. <member name="M:Org.BouncyCastle.Asn1.X509.PolicyQualifierInfo.ToAsn1Object">
  5530. Returns a Der-encodable representation of this instance.
  5531. @return a <code>Asn1Object</code> value
  5532. </member>
  5533. <member name="T:Org.BouncyCastle.Asn1.X509.PrivateKeyUsagePeriod">
  5534. <remarks>
  5535. <pre>
  5536. PrivateKeyUsagePeriod ::= SEQUENCE
  5537. {
  5538. notBefore [0] GeneralizedTime OPTIONAL,
  5539. notAfter [1] GeneralizedTime OPTIONAL }
  5540. </pre>
  5541. </remarks>
  5542. </member>
  5543. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.BiometricData">
  5544. The BiometricData object.
  5545. <pre>
  5546. BiometricData ::= SEQUENCE {
  5547. typeOfBiometricData TypeOfBiometricData,
  5548. hashAlgorithm AlgorithmIdentifier,
  5549. biometricDataHash OCTET STRING,
  5550. sourceDataUri IA5String OPTIONAL }
  5551. </pre>
  5552. </member>
  5553. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.Iso4217CurrencyCode">
  5554. The Iso4217CurrencyCode object.
  5555. <pre>
  5556. Iso4217CurrencyCode ::= CHOICE {
  5557. alphabetic PrintableString (SIZE 3), --Recommended
  5558. numeric INTEGER (1..999) }
  5559. -- Alphabetic or numeric currency code as defined in ISO 4217
  5560. -- It is recommended that the Alphabetic form is used
  5561. </pre>
  5562. </member>
  5563. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.MonetaryValue">
  5564. The MonetaryValue object.
  5565. <pre>
  5566. MonetaryValue ::= SEQUENCE {
  5567. currency Iso4217CurrencyCode,
  5568. amount INTEGER,
  5569. exponent INTEGER }
  5570. -- value = amount * 10^exponent
  5571. </pre>
  5572. </member>
  5573. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.QCStatement">
  5574. The QCStatement object.
  5575. <pre>
  5576. QCStatement ::= SEQUENCE {
  5577. statementId OBJECT IDENTIFIER,
  5578. statementInfo ANY DEFINED BY statementId OPTIONAL}
  5579. </pre>
  5580. </member>
  5581. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.SemanticsInformation">
  5582. The SemanticsInformation object.
  5583. <pre>
  5584. SemanticsInformation ::= SEQUENCE {
  5585. semanticsIdentifier OBJECT IDENTIFIER OPTIONAL,
  5586. nameRegistrationAuthorities NameRegistrationAuthorities
  5587. OPTIONAL }
  5588. (WITH COMPONENTS {..., semanticsIdentifier PRESENT}|
  5589. WITH COMPONENTS {..., nameRegistrationAuthorities PRESENT})
  5590. NameRegistrationAuthorities ::= SEQUENCE SIZE (1..MAX) OF
  5591. GeneralName
  5592. </pre>
  5593. </member>
  5594. <member name="T:Org.BouncyCastle.Asn1.X509.Qualified.TypeOfBiometricData">
  5595. The TypeOfBiometricData object.
  5596. <pre>
  5597. TypeOfBiometricData ::= CHOICE {
  5598. predefinedBiometricType PredefinedBiometricType,
  5599. biometricDataOid OBJECT IDENTIFIER }
  5600. PredefinedBiometricType ::= INTEGER {
  5601. picture(0),handwritten-signature(1)}
  5602. (picture|handwritten-signature)
  5603. </pre>
  5604. </member>
  5605. <member name="T:Org.BouncyCastle.Asn1.X509.ReasonFlags">
  5606. The ReasonFlags object.
  5607. <pre>
  5608. ReasonFlags ::= BIT STRING {
  5609. unused(0),
  5610. keyCompromise(1),
  5611. cACompromise(2),
  5612. affiliationChanged(3),
  5613. superseded(4),
  5614. cessationOfOperation(5),
  5615. certficateHold(6)
  5616. }
  5617. </pre>
  5618. </member>
  5619. <member name="M:Org.BouncyCastle.Asn1.X509.ReasonFlags.#ctor(System.Int32)">
  5620. @param reasons - the bitwise OR of the Key Reason flags giving the
  5621. allowed uses for the key.
  5622. </member>
  5623. <member name="T:Org.BouncyCastle.Asn1.X509.RoleSyntax">
  5624. Implementation of the RoleSyntax object as specified by the RFC3281.
  5625. <pre>
  5626. RoleSyntax ::= SEQUENCE {
  5627. roleAuthority [0] GeneralNames OPTIONAL,
  5628. roleName [1] GeneralName
  5629. }
  5630. </pre>
  5631. </member>
  5632. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.GetInstance(System.Object)">
  5633. RoleSyntax factory method.
  5634. @param obj the object used to construct an instance of <code>
  5635. RoleSyntax</code>. It must be an instance of <code>RoleSyntax
  5636. </code> or <code>Asn1Sequence</code>.
  5637. @return the instance of <code>RoleSyntax</code> built from the
  5638. supplied object.
  5639. @throws java.lang.ArgumentException if the object passed
  5640. to the factory is not an instance of <code>RoleSyntax</code> or
  5641. <code>Asn1Sequence</code>.
  5642. </member>
  5643. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.#ctor(Org.BouncyCastle.Asn1.X509.GeneralNames,Org.BouncyCastle.Asn1.X509.GeneralName)">
  5644. Constructor.
  5645. @param roleAuthority the role authority of this RoleSyntax.
  5646. @param roleName the role name of this RoleSyntax.
  5647. </member>
  5648. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.#ctor(Org.BouncyCastle.Asn1.X509.GeneralName)">
  5649. Constructor. Invoking this constructor is the same as invoking
  5650. <code>new RoleSyntax(null, roleName)</code>.
  5651. @param roleName the role name of this RoleSyntax.
  5652. </member>
  5653. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.#ctor(System.String)">
  5654. Utility constructor. Takes a <code>string</code> argument representing
  5655. the role name, builds a <code>GeneralName</code> to hold the role name
  5656. and calls the constructor that takes a <code>GeneralName</code>.
  5657. @param roleName
  5658. </member>
  5659. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5660. Constructor that builds an instance of <code>RoleSyntax</code> by
  5661. extracting the encoded elements from the <code>Asn1Sequence</code>
  5662. object supplied.
  5663. @param seq an instance of <code>Asn1Sequence</code> that holds
  5664. the encoded elements used to build this <code>RoleSyntax</code>.
  5665. </member>
  5666. <member name="P:Org.BouncyCastle.Asn1.X509.RoleSyntax.RoleAuthority">
  5667. Gets the role authority of this RoleSyntax.
  5668. @return an instance of <code>GeneralNames</code> holding the
  5669. role authority of this RoleSyntax.
  5670. </member>
  5671. <member name="P:Org.BouncyCastle.Asn1.X509.RoleSyntax.RoleName">
  5672. Gets the role name of this RoleSyntax.
  5673. @return an instance of <code>GeneralName</code> holding the
  5674. role name of this RoleSyntax.
  5675. </member>
  5676. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.GetRoleNameAsString">
  5677. Gets the role name as a <code>java.lang.string</code> object.
  5678. @return the role name of this RoleSyntax represented as a
  5679. <code>string</code> object.
  5680. </member>
  5681. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.GetRoleAuthorityAsString">
  5682. Gets the role authority as a <code>string[]</code> object.
  5683. @return the role authority of this RoleSyntax represented as a
  5684. <code>string[]</code> array.
  5685. </member>
  5686. <member name="M:Org.BouncyCastle.Asn1.X509.RoleSyntax.ToAsn1Object">
  5687. Implementation of the method <code>ToAsn1Object</code> as
  5688. required by the superclass <code>ASN1Encodable</code>.
  5689. <pre>
  5690. RoleSyntax ::= SEQUENCE {
  5691. roleAuthority [0] GeneralNames OPTIONAL,
  5692. roleName [1] GeneralName
  5693. }
  5694. </pre>
  5695. </member>
  5696. <member name="M:Org.BouncyCastle.Asn1.X509.RsaPublicKeyStructure.ToAsn1Object">
  5697. This outputs the key in Pkcs1v2 format.
  5698. <pre>
  5699. RSAPublicKey ::= Sequence {
  5700. modulus Integer, -- n
  5701. publicExponent Integer, -- e
  5702. }
  5703. </pre>
  5704. </member>
  5705. <member name="T:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym">
  5706. Structure for a name or pseudonym.
  5707. <pre>
  5708. NameOrPseudonym ::= CHOICE {
  5709. surAndGivenName SEQUENCE {
  5710. surName DirectoryString,
  5711. givenName SEQUENCE OF DirectoryString
  5712. },
  5713. pseudonym DirectoryString
  5714. }
  5715. </pre>
  5716. @see org.bouncycastle.asn1.x509.sigi.PersonalData
  5717. </member>
  5718. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym.#ctor(Org.BouncyCastle.Asn1.X500.DirectoryString)">
  5719. Constructor from DERString.
  5720. <p/>
  5721. The sequence is of type NameOrPseudonym:
  5722. <p/>
  5723. <pre>
  5724. NameOrPseudonym ::= CHOICE {
  5725. surAndGivenName SEQUENCE {
  5726. surName DirectoryString,
  5727. givenName SEQUENCE OF DirectoryString
  5728. },
  5729. pseudonym DirectoryString
  5730. }
  5731. </pre>
  5732. @param pseudonym pseudonym value to use.
  5733. </member>
  5734. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5735. Constructor from Asn1Sequence.
  5736. <p/>
  5737. The sequence is of type NameOrPseudonym:
  5738. <p/>
  5739. <pre>
  5740. NameOrPseudonym ::= CHOICE {
  5741. surAndGivenName SEQUENCE {
  5742. surName DirectoryString,
  5743. givenName SEQUENCE OF DirectoryString
  5744. },
  5745. pseudonym DirectoryString
  5746. }
  5747. </pre>
  5748. @param seq The ASN.1 sequence.
  5749. </member>
  5750. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym.#ctor(System.String)">
  5751. Constructor from a given details.
  5752. @param pseudonym The pseudonym.
  5753. </member>
  5754. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym.#ctor(Org.BouncyCastle.Asn1.X500.DirectoryString,Org.BouncyCastle.Asn1.Asn1Sequence)">
  5755. Constructor from a given details.
  5756. @param surname The surname.
  5757. @param givenName A sequence of directory strings making up the givenName
  5758. </member>
  5759. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym.ToAsn1Object">
  5760. Produce an object suitable for an Asn1OutputStream.
  5761. <p/>
  5762. Returns:
  5763. <p/>
  5764. <pre>
  5765. NameOrPseudonym ::= CHOICE {
  5766. surAndGivenName SEQUENCE {
  5767. surName DirectoryString,
  5768. givenName SEQUENCE OF DirectoryString
  5769. },
  5770. pseudonym DirectoryString
  5771. }
  5772. </pre>
  5773. @return an Asn1Object
  5774. </member>
  5775. <member name="T:Org.BouncyCastle.Asn1.X509.SigI.PersonalData">
  5776. Contains personal data for the otherName field in the subjectAltNames
  5777. extension.
  5778. <p/>
  5779. <pre>
  5780. PersonalData ::= SEQUENCE {
  5781. nameOrPseudonym NameOrPseudonym,
  5782. nameDistinguisher [0] INTEGER OPTIONAL,
  5783. dateOfBirth [1] GeneralizedTime OPTIONAL,
  5784. placeOfBirth [2] DirectoryString OPTIONAL,
  5785. gender [3] PrintableString OPTIONAL,
  5786. postalAddress [4] DirectoryString OPTIONAL
  5787. }
  5788. </pre>
  5789. @see org.bouncycastle.asn1.x509.sigi.NameOrPseudonym
  5790. @see org.bouncycastle.asn1.x509.sigi.SigIObjectIdentifiers
  5791. </member>
  5792. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.PersonalData.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5793. Constructor from Asn1Sequence.
  5794. <p/>
  5795. The sequence is of type NameOrPseudonym:
  5796. <p/>
  5797. <pre>
  5798. PersonalData ::= SEQUENCE {
  5799. nameOrPseudonym NameOrPseudonym,
  5800. nameDistinguisher [0] INTEGER OPTIONAL,
  5801. dateOfBirth [1] GeneralizedTime OPTIONAL,
  5802. placeOfBirth [2] DirectoryString OPTIONAL,
  5803. gender [3] PrintableString OPTIONAL,
  5804. postalAddress [4] DirectoryString OPTIONAL
  5805. }
  5806. </pre>
  5807. @param seq The ASN.1 sequence.
  5808. </member>
  5809. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.PersonalData.#ctor(Org.BouncyCastle.Asn1.X509.SigI.NameOrPseudonym,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Asn1.DerGeneralizedTime,Org.BouncyCastle.Asn1.X500.DirectoryString,System.String,Org.BouncyCastle.Asn1.X500.DirectoryString)">
  5810. Constructor from a given details.
  5811. @param nameOrPseudonym Name or pseudonym.
  5812. @param nameDistinguisher Name distinguisher.
  5813. @param dateOfBirth Date of birth.
  5814. @param placeOfBirth Place of birth.
  5815. @param gender Gender.
  5816. @param postalAddress Postal Address.
  5817. </member>
  5818. <member name="M:Org.BouncyCastle.Asn1.X509.SigI.PersonalData.ToAsn1Object">
  5819. Produce an object suitable for an Asn1OutputStream.
  5820. <p/>
  5821. Returns:
  5822. <p/>
  5823. <pre>
  5824. PersonalData ::= SEQUENCE {
  5825. nameOrPseudonym NameOrPseudonym,
  5826. nameDistinguisher [0] INTEGER OPTIONAL,
  5827. dateOfBirth [1] GeneralizedTime OPTIONAL,
  5828. placeOfBirth [2] DirectoryString OPTIONAL,
  5829. gender [3] PrintableString OPTIONAL,
  5830. postalAddress [4] DirectoryString OPTIONAL
  5831. }
  5832. </pre>
  5833. @return an Asn1Object
  5834. </member>
  5835. <member name="T:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers">
  5836. Object Identifiers of SigI specifciation (German Signature Law
  5837. Interoperability specification).
  5838. </member>
  5839. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigIKP">
  5840. Key purpose IDs for German SigI (Signature Interoperability
  5841. Specification)
  5842. </member>
  5843. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigICP">
  5844. Certificate policy IDs for German SigI (Signature Interoperability
  5845. Specification)
  5846. </member>
  5847. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigION">
  5848. Other Name IDs for German SigI (Signature Interoperability Specification)
  5849. </member>
  5850. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigIKPDirectoryService">
  5851. To be used for for the generation of directory service certificates.
  5852. </member>
  5853. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigIONPersonalData">
  5854. ID for PersonalData
  5855. </member>
  5856. <member name="F:Org.BouncyCastle.Asn1.X509.SigI.SigIObjectIdentifiers.IdSigICPSigConform">
  5857. Certificate is conform to german signature law.
  5858. </member>
  5859. <member name="T:Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes">
  5860. This extension may contain further X.500 attributes of the subject. See also
  5861. RFC 3039.
  5862. <pre>
  5863. SubjectDirectoryAttributes ::= Attributes
  5864. Attributes ::= SEQUENCE SIZE (1..MAX) OF Attribute
  5865. Attribute ::= SEQUENCE
  5866. {
  5867. type AttributeType
  5868. values SET OF AttributeValue
  5869. }
  5870. AttributeType ::= OBJECT IDENTIFIER
  5871. AttributeValue ::= ANY DEFINED BY AttributeType
  5872. </pre>
  5873. @see org.bouncycastle.asn1.x509.X509Name for AttributeType ObjectIdentifiers.
  5874. </member>
  5875. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  5876. Constructor from Asn1Sequence.
  5877. The sequence is of type SubjectDirectoryAttributes:
  5878. <pre>
  5879. SubjectDirectoryAttributes ::= Attributes
  5880. Attributes ::= SEQUENCE SIZE (1..MAX) OF Attribute
  5881. Attribute ::= SEQUENCE
  5882. {
  5883. type AttributeType
  5884. values SET OF AttributeValue
  5885. }
  5886. AttributeType ::= OBJECT IDENTIFIER
  5887. AttributeValue ::= ANY DEFINED BY AttributeType
  5888. </pre>
  5889. @param seq
  5890. The ASN.1 sequence.
  5891. </member>
  5892. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes.#ctor(System.Collections.IList)">
  5893. Constructor from an ArrayList of attributes.
  5894. The ArrayList consists of attributes of type {@link Attribute Attribute}
  5895. @param attributes The attributes.
  5896. </member>
  5897. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes.ToAsn1Object">
  5898. Produce an object suitable for an Asn1OutputStream.
  5899. Returns:
  5900. <pre>
  5901. SubjectDirectoryAttributes ::= Attributes
  5902. Attributes ::= SEQUENCE SIZE (1..MAX) OF Attribute
  5903. Attribute ::= SEQUENCE
  5904. {
  5905. type AttributeType
  5906. values SET OF AttributeValue
  5907. }
  5908. AttributeType ::= OBJECT IDENTIFIER
  5909. AttributeValue ::= ANY DEFINED BY AttributeType
  5910. </pre>
  5911. @return a DERObject
  5912. </member>
  5913. <member name="P:Org.BouncyCastle.Asn1.X509.SubjectDirectoryAttributes.Attributes">
  5914. @return Returns the attributes.
  5915. </member>
  5916. <member name="T:Org.BouncyCastle.Asn1.X509.SubjectKeyIdentifier">
  5917. The SubjectKeyIdentifier object.
  5918. <pre>
  5919. SubjectKeyIdentifier::= OCTET STRING
  5920. </pre>
  5921. </member>
  5922. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectKeyIdentifier.#ctor(Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  5923. Calculates the keyIdentifier using a SHA1 hash over the BIT STRING
  5924. from SubjectPublicKeyInfo as defined in RFC3280.
  5925. @param spki the subject public key info.
  5926. </member>
  5927. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectKeyIdentifier.CreateSha1KeyIdentifier(Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  5928. Return a RFC 3280 type 1 key identifier. As in:
  5929. <pre>
  5930. (1) The keyIdentifier is composed of the 160-bit SHA-1 hash of the
  5931. value of the BIT STRING subjectPublicKey (excluding the tag,
  5932. length, and number of unused bits).
  5933. </pre>
  5934. @param keyInfo the key info object containing the subjectPublicKey field.
  5935. @return the key identifier.
  5936. </member>
  5937. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectKeyIdentifier.CreateTruncatedSha1KeyIdentifier(Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo)">
  5938. Return a RFC 3280 type 2 key identifier. As in:
  5939. <pre>
  5940. (2) The keyIdentifier is composed of a four bit type field with
  5941. the value 0100 followed by the least significant 60 bits of the
  5942. SHA-1 hash of the value of the BIT STRING subjectPublicKey.
  5943. </pre>
  5944. @param keyInfo the key info object containing the subjectPublicKey field.
  5945. @return the key identifier.
  5946. </member>
  5947. <member name="T:Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo">
  5948. The object that contains the public key stored in a certficate.
  5949. <p>
  5950. The GetEncoded() method in the public keys in the JCE produces a DER
  5951. encoded one of these.</p>
  5952. </member>
  5953. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo.GetPublicKey">
  5954. for when the public key is an encoded object - if the bitstring
  5955. can't be decoded this routine raises an IOException.
  5956. @exception IOException - if the bit string doesn't represent a Der
  5957. encoded object.
  5958. </member>
  5959. <member name="P:Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo.PublicKeyData">
  5960. for when the public key is raw bits...
  5961. </member>
  5962. <member name="M:Org.BouncyCastle.Asn1.X509.SubjectPublicKeyInfo.ToAsn1Object">
  5963. Produce an object suitable for an Asn1OutputStream.
  5964. <pre>
  5965. SubjectPublicKeyInfo ::= Sequence {
  5966. algorithm AlgorithmIdentifier,
  5967. publicKey BIT STRING }
  5968. </pre>
  5969. </member>
  5970. <member name="T:Org.BouncyCastle.Asn1.X509.Target">
  5971. Target structure used in target information extension for attribute
  5972. certificates from RFC 3281.
  5973. <pre>
  5974. Target ::= CHOICE {
  5975. targetName [0] GeneralName,
  5976. targetGroup [1] GeneralName,
  5977. targetCert [2] TargetCert
  5978. }
  5979. </pre>
  5980. <p>
  5981. The targetCert field is currently not supported and must not be used
  5982. according to RFC 3281.</p>
  5983. </member>
  5984. <member name="M:Org.BouncyCastle.Asn1.X509.Target.GetInstance(System.Object)">
  5985. Creates an instance of a Target from the given object.
  5986. <p>
  5987. <code>obj</code> can be a Target or a {@link Asn1TaggedObject}</p>
  5988. @param obj The object.
  5989. @return A Target instance.
  5990. @throws ArgumentException if the given object cannot be
  5991. interpreted as Target.
  5992. </member>
  5993. <member name="M:Org.BouncyCastle.Asn1.X509.Target.#ctor(Org.BouncyCastle.Asn1.Asn1TaggedObject)">
  5994. Constructor from Asn1TaggedObject.
  5995. @param tagObj The tagged object.
  5996. @throws ArgumentException if the encoding is wrong.
  5997. </member>
  5998. <member name="M:Org.BouncyCastle.Asn1.X509.Target.#ctor(Org.BouncyCastle.Asn1.X509.Target.Choice,Org.BouncyCastle.Asn1.X509.GeneralName)">
  5999. Constructor from given details.
  6000. <p>
  6001. Exactly one of the parameters must be not <code>null</code>.</p>
  6002. @param type the choice type to apply to the name.
  6003. @param name the general name.
  6004. @throws ArgumentException if type is invalid.
  6005. </member>
  6006. <member name="P:Org.BouncyCastle.Asn1.X509.Target.TargetGroup">
  6007. @return Returns the targetGroup.
  6008. </member>
  6009. <member name="P:Org.BouncyCastle.Asn1.X509.Target.TargetName">
  6010. @return Returns the targetName.
  6011. </member>
  6012. <member name="M:Org.BouncyCastle.Asn1.X509.Target.ToAsn1Object">
  6013. Produce an object suitable for an Asn1OutputStream.
  6014. Returns:
  6015. <pre>
  6016. Target ::= CHOICE {
  6017. targetName [0] GeneralName,
  6018. targetGroup [1] GeneralName,
  6019. targetCert [2] TargetCert
  6020. }
  6021. </pre>
  6022. @return an Asn1Object
  6023. </member>
  6024. <member name="T:Org.BouncyCastle.Asn1.X509.TargetInformation">
  6025. Target information extension for attributes certificates according to RFC
  6026. 3281.
  6027. <pre>
  6028. SEQUENCE OF Targets
  6029. </pre>
  6030. </member>
  6031. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.GetInstance(System.Object)">
  6032. Creates an instance of a TargetInformation from the given object.
  6033. <p>
  6034. <code>obj</code> can be a TargetInformation or a {@link Asn1Sequence}</p>
  6035. @param obj The object.
  6036. @return A TargetInformation instance.
  6037. @throws ArgumentException if the given object cannot be interpreted as TargetInformation.
  6038. </member>
  6039. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  6040. Constructor from a Asn1Sequence.
  6041. @param seq The Asn1Sequence.
  6042. @throws ArgumentException if the sequence does not contain
  6043. correctly encoded Targets elements.
  6044. </member>
  6045. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.GetTargetsObjects">
  6046. Returns the targets in this target information extension.
  6047. <p>
  6048. The ArrayList is cloned before it is returned.</p>
  6049. @return Returns the targets.
  6050. </member>
  6051. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.#ctor(Org.BouncyCastle.Asn1.X509.Targets)">
  6052. Constructs a target information from a single targets element.
  6053. According to RFC 3281 only one targets element must be produced.
  6054. @param targets A Targets instance.
  6055. </member>
  6056. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.#ctor(Org.BouncyCastle.Asn1.X509.Target[])">
  6057. According to RFC 3281 only one targets element must be produced. If
  6058. multiple targets are given they must be merged in
  6059. into one targets element.
  6060. @param targets An array with {@link Targets}.
  6061. </member>
  6062. <member name="M:Org.BouncyCastle.Asn1.X509.TargetInformation.ToAsn1Object">
  6063. Produce an object suitable for an Asn1OutputStream.
  6064. Returns:
  6065. <pre>
  6066. SEQUENCE OF Targets
  6067. </pre>
  6068. <p>
  6069. According to RFC 3281 only one targets element must be produced. If
  6070. multiple targets are given in the constructor they are merged into one
  6071. targets element. If this was produced from a
  6072. {@link Org.BouncyCastle.Asn1.Asn1Sequence} the encoding is kept.</p>
  6073. @return an Asn1Object
  6074. </member>
  6075. <member name="T:Org.BouncyCastle.Asn1.X509.Targets">
  6076. Targets structure used in target information extension for attribute
  6077. certificates from RFC 3281.
  6078. <pre>
  6079. Targets ::= SEQUENCE OF Target
  6080. Target ::= CHOICE {
  6081. targetName [0] GeneralName,
  6082. targetGroup [1] GeneralName,
  6083. targetCert [2] TargetCert
  6084. }
  6085. TargetCert ::= SEQUENCE {
  6086. targetCertificate IssuerSerial,
  6087. targetName GeneralName OPTIONAL,
  6088. certDigestInfo ObjectDigestInfo OPTIONAL
  6089. }
  6090. </pre>
  6091. @see org.bouncycastle.asn1.x509.Target
  6092. @see org.bouncycastle.asn1.x509.TargetInformation
  6093. </member>
  6094. <member name="M:Org.BouncyCastle.Asn1.X509.Targets.GetInstance(System.Object)">
  6095. Creates an instance of a Targets from the given object.
  6096. <p>
  6097. <code>obj</code> can be a Targets or a {@link Asn1Sequence}</p>
  6098. @param obj The object.
  6099. @return A Targets instance.
  6100. @throws ArgumentException if the given object cannot be interpreted as Target.
  6101. </member>
  6102. <member name="M:Org.BouncyCastle.Asn1.X509.Targets.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  6103. Constructor from Asn1Sequence.
  6104. @param targets The ASN.1 SEQUENCE.
  6105. @throws ArgumentException if the contents of the sequence are
  6106. invalid.
  6107. </member>
  6108. <member name="M:Org.BouncyCastle.Asn1.X509.Targets.#ctor(Org.BouncyCastle.Asn1.X509.Target[])">
  6109. Constructor from given targets.
  6110. <p>
  6111. The ArrayList is copied.</p>
  6112. @param targets An <code>ArrayList</code> of {@link Target}s.
  6113. @see Target
  6114. @throws ArgumentException if the ArrayList contains not only Targets.
  6115. </member>
  6116. <member name="M:Org.BouncyCastle.Asn1.X509.Targets.GetTargets">
  6117. Returns the targets in an <code>ArrayList</code>.
  6118. <p>
  6119. The ArrayList is cloned before it is returned.</p>
  6120. @return Returns the targets.
  6121. </member>
  6122. <member name="M:Org.BouncyCastle.Asn1.X509.Targets.ToAsn1Object">
  6123. Produce an object suitable for an Asn1OutputStream.
  6124. Returns:
  6125. <pre>
  6126. Targets ::= SEQUENCE OF Target
  6127. </pre>
  6128. @return an Asn1Object
  6129. </member>
  6130. <member name="T:Org.BouncyCastle.Asn1.X509.TbsCertificateStructure">
  6131. The TbsCertificate object.
  6132. <pre>
  6133. TbsCertificate ::= Sequence {
  6134. version [ 0 ] Version DEFAULT v1(0),
  6135. serialNumber CertificateSerialNumber,
  6136. signature AlgorithmIdentifier,
  6137. issuer Name,
  6138. validity Validity,
  6139. subject Name,
  6140. subjectPublicKeyInfo SubjectPublicKeyInfo,
  6141. issuerUniqueID [ 1 ] IMPLICIT UniqueIdentifier OPTIONAL,
  6142. subjectUniqueID [ 2 ] IMPLICIT UniqueIdentifier OPTIONAL,
  6143. extensions [ 3 ] Extensions OPTIONAL
  6144. }
  6145. </pre>
  6146. <p>
  6147. Note: issuerUniqueID and subjectUniqueID are both deprecated by the IETF. This class
  6148. will parse them, but you really shouldn't be creating new ones.</p>
  6149. </member>
  6150. <member name="T:Org.BouncyCastle.Asn1.X509.TbsCertificateList">
  6151. PKIX RFC-2459 - TbsCertList object.
  6152. <pre>
  6153. TbsCertList ::= Sequence {
  6154. version Version OPTIONAL,
  6155. -- if present, shall be v2
  6156. signature AlgorithmIdentifier,
  6157. issuer Name,
  6158. thisUpdate Time,
  6159. nextUpdate Time OPTIONAL,
  6160. revokedCertificates Sequence OF Sequence {
  6161. userCertificate CertificateSerialNumber,
  6162. revocationDate Time,
  6163. crlEntryExtensions Extensions OPTIONAL
  6164. -- if present, shall be v2
  6165. } OPTIONAL,
  6166. crlExtensions [0] EXPLICIT Extensions OPTIONAL
  6167. -- if present, shall be v2
  6168. }
  6169. </pre>
  6170. </member>
  6171. <member name="M:Org.BouncyCastle.Asn1.X509.Time.#ctor(System.DateTime)">
  6172. creates a time object from a given date - if the date is between 1950
  6173. and 2049 a UTCTime object is Generated, otherwise a GeneralizedTime
  6174. is used.
  6175. </member>
  6176. <member name="M:Org.BouncyCastle.Asn1.X509.Time.ToDateTime">
  6177. <summary>
  6178. Return our time as DateTime.
  6179. </summary>
  6180. <returns>A date time.</returns>
  6181. </member>
  6182. <member name="M:Org.BouncyCastle.Asn1.X509.Time.ToAsn1Object">
  6183. Produce an object suitable for an Asn1OutputStream.
  6184. <pre>
  6185. Time ::= CHOICE {
  6186. utcTime UTCTime,
  6187. generalTime GeneralizedTime }
  6188. </pre>
  6189. </member>
  6190. <member name="T:Org.BouncyCastle.Asn1.X509.UserNotice">
  6191. <code>UserNotice</code> class, used in
  6192. <code>CertificatePolicies</code> X509 extensions (in policy
  6193. qualifiers).
  6194. <pre>
  6195. UserNotice ::= Sequence {
  6196. noticeRef NoticeReference OPTIONAL,
  6197. explicitText DisplayText OPTIONAL}
  6198. </pre>
  6199. @see PolicyQualifierId
  6200. @see PolicyInformation
  6201. </member>
  6202. <member name="M:Org.BouncyCastle.Asn1.X509.UserNotice.#ctor(Org.BouncyCastle.Asn1.X509.NoticeReference,Org.BouncyCastle.Asn1.X509.DisplayText)">
  6203. Creates a new <code>UserNotice</code> instance.
  6204. @param noticeRef a <code>NoticeReference</code> value
  6205. @param explicitText a <code>DisplayText</code> value
  6206. </member>
  6207. <member name="M:Org.BouncyCastle.Asn1.X509.UserNotice.#ctor(Org.BouncyCastle.Asn1.X509.NoticeReference,System.String)">
  6208. Creates a new <code>UserNotice</code> instance.
  6209. @param noticeRef a <code>NoticeReference</code> value
  6210. @param str the explicitText field as a string.
  6211. </member>
  6212. <member name="M:Org.BouncyCastle.Asn1.X509.UserNotice.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  6213. Creates a new <code>UserNotice</code> instance.
  6214. <p>Useful from reconstructing a <code>UserNotice</code> instance
  6215. from its encodable/encoded form.
  6216. @param as an <code>ASN1Sequence</code> value obtained from either
  6217. calling @{link toASN1Object()} for a <code>UserNotice</code>
  6218. instance or from parsing it from a DER-encoded stream.</p>
  6219. </member>
  6220. <member name="T:Org.BouncyCastle.Asn1.X509.V1TbsCertificateGenerator">
  6221. Generator for Version 1 TbsCertificateStructures.
  6222. <pre>
  6223. TbsCertificate ::= Sequence {
  6224. version [ 0 ] Version DEFAULT v1(0),
  6225. serialNumber CertificateSerialNumber,
  6226. signature AlgorithmIdentifier,
  6227. issuer Name,
  6228. validity Validity,
  6229. subject Name,
  6230. subjectPublicKeyInfo SubjectPublicKeyInfo,
  6231. }
  6232. </pre>
  6233. </member>
  6234. <member name="T:Org.BouncyCastle.Asn1.X509.V2AttributeCertificateInfoGenerator">
  6235. Generator for Version 2 AttributeCertificateInfo
  6236. <pre>
  6237. AttributeCertificateInfo ::= Sequence {
  6238. version AttCertVersion -- version is v2,
  6239. holder Holder,
  6240. issuer AttCertIssuer,
  6241. signature AlgorithmIdentifier,
  6242. serialNumber CertificateSerialNumber,
  6243. attrCertValidityPeriod AttCertValidityPeriod,
  6244. attributes Sequence OF Attr,
  6245. issuerUniqueID UniqueIdentifier OPTIONAL,
  6246. extensions Extensions OPTIONAL
  6247. }
  6248. </pre>
  6249. </member>
  6250. <member name="M:Org.BouncyCastle.Asn1.X509.V2AttributeCertificateInfoGenerator.AddAttribute(Org.BouncyCastle.Asn1.X509.AttributeX509)">
  6251. @param attribute
  6252. </member>
  6253. <member name="M:Org.BouncyCastle.Asn1.X509.V2Form.ToAsn1Object">
  6254. Produce an object suitable for an Asn1OutputStream.
  6255. <pre>
  6256. V2Form ::= Sequence {
  6257. issuerName GeneralNames OPTIONAL,
  6258. baseCertificateID [0] IssuerSerial OPTIONAL,
  6259. objectDigestInfo [1] ObjectDigestInfo OPTIONAL
  6260. -- issuerName MUST be present in this profile
  6261. -- baseCertificateID and objectDigestInfo MUST NOT
  6262. -- be present in this profile
  6263. }
  6264. </pre>
  6265. </member>
  6266. <member name="T:Org.BouncyCastle.Asn1.X509.V2TbsCertListGenerator">
  6267. Generator for Version 2 TbsCertList structures.
  6268. <pre>
  6269. TbsCertList ::= Sequence {
  6270. version Version OPTIONAL,
  6271. -- if present, shall be v2
  6272. signature AlgorithmIdentifier,
  6273. issuer Name,
  6274. thisUpdate Time,
  6275. nextUpdate Time OPTIONAL,
  6276. revokedCertificates Sequence OF Sequence {
  6277. userCertificate CertificateSerialNumber,
  6278. revocationDate Time,
  6279. crlEntryExtensions Extensions OPTIONAL
  6280. -- if present, shall be v2
  6281. } OPTIONAL,
  6282. crlExtensions [0] EXPLICIT Extensions OPTIONAL
  6283. -- if present, shall be v2
  6284. }
  6285. </pre>
  6286. <b>Note: This class may be subject to change</b>
  6287. </member>
  6288. <member name="T:Org.BouncyCastle.Asn1.X509.V3TbsCertificateGenerator">
  6289. Generator for Version 3 TbsCertificateStructures.
  6290. <pre>
  6291. TbsCertificate ::= Sequence {
  6292. version [ 0 ] Version DEFAULT v1(0),
  6293. serialNumber CertificateSerialNumber,
  6294. signature AlgorithmIdentifier,
  6295. issuer Name,
  6296. validity Validity,
  6297. subject Name,
  6298. subjectPublicKeyInfo SubjectPublicKeyInfo,
  6299. issuerUniqueID [ 1 ] IMPLICIT UniqueIdentifier OPTIONAL,
  6300. subjectUniqueID [ 2 ] IMPLICIT UniqueIdentifier OPTIONAL,
  6301. extensions [ 3 ] Extensions OPTIONAL
  6302. }
  6303. </pre>
  6304. </member>
  6305. <member name="T:Org.BouncyCastle.Asn1.X509.X509CertificateStructure">
  6306. an X509Certificate structure.
  6307. <pre>
  6308. Certificate ::= Sequence {
  6309. tbsCertificate TbsCertificate,
  6310. signatureAlgorithm AlgorithmIdentifier,
  6311. signature BIT STRING
  6312. }
  6313. </pre>
  6314. </member>
  6315. <member name="T:Org.BouncyCastle.Asn1.X509.X509DefaultEntryConverter">
  6316. The default converter for X509 DN entries when going from their
  6317. string value to ASN.1 strings.
  6318. </member>
  6319. <member name="M:Org.BouncyCastle.Asn1.X509.X509DefaultEntryConverter.GetConvertedValue(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.String)">
  6320. Apply default conversion for the given value depending on the oid
  6321. and the character range of the value.
  6322. @param oid the object identifier for the DN entry
  6323. @param value the value associated with it
  6324. @return the ASN.1 equivalent for the string value.
  6325. </member>
  6326. <member name="T:Org.BouncyCastle.Asn1.X509.X509Extension">
  6327. an object for the elements in the X.509 V3 extension block.
  6328. </member>
  6329. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extension.ConvertValueToObject(Org.BouncyCastle.Asn1.X509.X509Extension)">
  6330. <sumary>Convert the value of the passed in extension to an object.</sumary>
  6331. <param name="ext">The extension to parse.</param>
  6332. <returns>The object the value string contains.</returns>
  6333. <exception cref="T:System.ArgumentException">If conversion is not possible.</exception>
  6334. </member>
  6335. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.SubjectDirectoryAttributes">
  6336. Subject Directory Attributes
  6337. </member>
  6338. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.SubjectKeyIdentifier">
  6339. Subject Key Identifier
  6340. </member>
  6341. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.KeyUsage">
  6342. Key Usage
  6343. </member>
  6344. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.PrivateKeyUsagePeriod">
  6345. Private Key Usage Period
  6346. </member>
  6347. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.SubjectAlternativeName">
  6348. Subject Alternative Name
  6349. </member>
  6350. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.IssuerAlternativeName">
  6351. Issuer Alternative Name
  6352. </member>
  6353. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.BasicConstraints">
  6354. Basic Constraints
  6355. </member>
  6356. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.CrlNumber">
  6357. CRL Number
  6358. </member>
  6359. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.ReasonCode">
  6360. Reason code
  6361. </member>
  6362. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.InstructionCode">
  6363. Hold Instruction Code
  6364. </member>
  6365. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.InvalidityDate">
  6366. Invalidity Date
  6367. </member>
  6368. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.DeltaCrlIndicator">
  6369. Delta CRL indicator
  6370. </member>
  6371. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.IssuingDistributionPoint">
  6372. Issuing Distribution Point
  6373. </member>
  6374. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.CertificateIssuer">
  6375. Certificate Issuer
  6376. </member>
  6377. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.NameConstraints">
  6378. Name Constraints
  6379. </member>
  6380. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.CrlDistributionPoints">
  6381. CRL Distribution Points
  6382. </member>
  6383. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.CertificatePolicies">
  6384. Certificate Policies
  6385. </member>
  6386. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.PolicyMappings">
  6387. Policy Mappings
  6388. </member>
  6389. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.AuthorityKeyIdentifier">
  6390. Authority Key Identifier
  6391. </member>
  6392. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.PolicyConstraints">
  6393. Policy Constraints
  6394. </member>
  6395. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.ExtendedKeyUsage">
  6396. Extended Key Usage
  6397. </member>
  6398. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.FreshestCrl">
  6399. Freshest CRL
  6400. </member>
  6401. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.InhibitAnyPolicy">
  6402. Inhibit Any Policy
  6403. </member>
  6404. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.AuthorityInfoAccess">
  6405. Authority Info Access
  6406. </member>
  6407. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.SubjectInfoAccess">
  6408. Subject Info Access
  6409. </member>
  6410. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.LogoType">
  6411. Logo Type
  6412. </member>
  6413. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.BiometricInfo">
  6414. BiometricInfo
  6415. </member>
  6416. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.QCStatements">
  6417. QCStatements
  6418. </member>
  6419. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.AuditIdentity">
  6420. Audit identity extension in attribute certificates.
  6421. </member>
  6422. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.NoRevAvail">
  6423. NoRevAvail extension in attribute certificates.
  6424. </member>
  6425. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.TargetInformation">
  6426. TargetInformation extension in attribute certificates.
  6427. </member>
  6428. <member name="F:Org.BouncyCastle.Asn1.X509.X509Extensions.ExpiredCertsOnCrl">
  6429. Expired Certificates on CRL extension
  6430. </member>
  6431. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  6432. Constructor from Asn1Sequence.
  6433. the extensions are a list of constructed sequences, either with (Oid, OctetString) or (Oid, Boolean, OctetString)
  6434. </member>
  6435. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.IDictionary)">
  6436. constructor from a table of extensions.
  6437. <p>
  6438. it's is assumed the table contains Oid/string pairs.</p>
  6439. </member>
  6440. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.IList,System.Collections.IDictionary)">
  6441. Constructor from a table of extensions with ordering.
  6442. <p>
  6443. It's is assumed the table contains Oid/string pairs.</p>
  6444. </member>
  6445. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.IList,System.Collections.IList)">
  6446. Constructor from two vectors
  6447. @param objectIDs an ArrayList of the object identifiers.
  6448. @param values an ArrayList of the extension values.
  6449. </member>
  6450. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.Hashtable)">
  6451. constructor from a table of extensions.
  6452. <p>
  6453. it's is assumed the table contains Oid/string pairs.</p>
  6454. </member>
  6455. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.ArrayList,System.Collections.Hashtable)">
  6456. Constructor from a table of extensions with ordering.
  6457. <p>
  6458. It's is assumed the table contains Oid/string pairs.</p>
  6459. </member>
  6460. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.#ctor(System.Collections.ArrayList,System.Collections.ArrayList)">
  6461. Constructor from two vectors
  6462. @param objectIDs an ArrayList of the object identifiers.
  6463. @param values an ArrayList of the extension values.
  6464. </member>
  6465. <member name="P:Org.BouncyCastle.Asn1.X509.X509Extensions.ExtensionOids">
  6466. return an Enumeration of the extension field's object ids.
  6467. </member>
  6468. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.GetExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  6469. return the extension represented by the object identifier
  6470. passed in.
  6471. @return the extension if it's present, null otherwise.
  6472. </member>
  6473. <member name="M:Org.BouncyCastle.Asn1.X509.X509Extensions.ToAsn1Object">
  6474. <pre>
  6475. Extensions ::= SEQUENCE SIZE (1..MAX) OF Extension
  6476. Extension ::= SEQUENCE {
  6477. extnId EXTENSION.&amp;id ({ExtensionSet}),
  6478. critical BOOLEAN DEFAULT FALSE,
  6479. extnValue OCTET STRING }
  6480. </pre>
  6481. </member>
  6482. <member name="T:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator">
  6483. <remarks>Generator for X.509 extensions</remarks>
  6484. </member>
  6485. <member name="M:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator.Reset">
  6486. <summary>Reset the generator</summary>
  6487. </member>
  6488. <member name="M:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  6489. <summary>
  6490. Add an extension with the given oid and the passed in value to be included
  6491. in the OCTET STRING associated with the extension.
  6492. </summary>
  6493. <param name="oid">OID for the extension.</param>
  6494. <param name="critical">True if critical, false otherwise.</param>
  6495. <param name="extValue">The ASN.1 object to be included in the extension.</param>
  6496. </member>
  6497. <member name="M:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,System.Byte[])">
  6498. <summary>
  6499. Add an extension with the given oid and the passed in byte array to be wrapped
  6500. in the OCTET STRING associated with the extension.
  6501. </summary>
  6502. <param name="oid">OID for the extension.</param>
  6503. <param name="critical">True if critical, false otherwise.</param>
  6504. <param name="extValue">The byte array to be wrapped.</param>
  6505. </member>
  6506. <member name="P:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator.IsEmpty">
  6507. <summary>Return true if there are no extension present in this generator.</summary>
  6508. <returns>True if empty, false otherwise</returns>
  6509. </member>
  6510. <member name="M:Org.BouncyCastle.Asn1.X509.X509ExtensionsGenerator.Generate">
  6511. <summary>Generate an X509Extensions object based on the current state of the generator.</summary>
  6512. <returns>An <c>X509Extensions</c> object</returns>
  6513. </member>
  6514. <member name="T:Org.BouncyCastle.Asn1.X509.X509Name">
  6515. <pre>
  6516. RDNSequence ::= SEQUENCE OF RelativeDistinguishedName
  6517. RelativeDistinguishedName ::= SET SIZE (1..MAX) OF AttributeTypeAndValue
  6518. AttributeTypeAndValue ::= SEQUENCE {
  6519. type OBJECT IDENTIFIER,
  6520. value ANY }
  6521. </pre>
  6522. </member>
  6523. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.C">
  6524. country code - StringType(SIZE(2))
  6525. </member>
  6526. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.O">
  6527. organization - StringType(SIZE(1..64))
  6528. </member>
  6529. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.OU">
  6530. organizational unit name - StringType(SIZE(1..64))
  6531. </member>
  6532. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.T">
  6533. Title
  6534. </member>
  6535. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.CN">
  6536. common name - StringType(SIZE(1..64))
  6537. </member>
  6538. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.Street">
  6539. street - StringType(SIZE(1..64))
  6540. </member>
  6541. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.SerialNumber">
  6542. device serial number name - StringType(SIZE(1..64))
  6543. </member>
  6544. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.L">
  6545. locality name - StringType(SIZE(1..64))
  6546. </member>
  6547. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.ST">
  6548. state, or province name - StringType(SIZE(1..64))
  6549. </member>
  6550. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.Surname">
  6551. Naming attributes of type X520name
  6552. </member>
  6553. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.BusinessCategory">
  6554. businessCategory - DirectoryString(SIZE(1..128)
  6555. </member>
  6556. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.PostalCode">
  6557. postalCode - DirectoryString(SIZE(1..40)
  6558. </member>
  6559. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.DnQualifier">
  6560. dnQualifier - DirectoryString(SIZE(1..64)
  6561. </member>
  6562. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.Pseudonym">
  6563. RFC 3039 Pseudonym - DirectoryString(SIZE(1..64)
  6564. </member>
  6565. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.DateOfBirth">
  6566. RFC 3039 DateOfBirth - GeneralizedTime - YYYYMMDD000000Z
  6567. </member>
  6568. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.PlaceOfBirth">
  6569. RFC 3039 PlaceOfBirth - DirectoryString(SIZE(1..128)
  6570. </member>
  6571. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.Gender">
  6572. RFC 3039 DateOfBirth - PrintableString (SIZE(1)) -- "M", "F", "m" or "f"
  6573. </member>
  6574. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.CountryOfCitizenship">
  6575. RFC 3039 CountryOfCitizenship - PrintableString (SIZE (2)) -- ISO 3166
  6576. codes only
  6577. </member>
  6578. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.CountryOfResidence">
  6579. RFC 3039 CountryOfCitizenship - PrintableString (SIZE (2)) -- ISO 3166
  6580. codes only
  6581. </member>
  6582. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.NameAtBirth">
  6583. ISIS-MTT NameAtBirth - DirectoryString(SIZE(1..64)
  6584. </member>
  6585. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.PostalAddress">
  6586. RFC 3039 PostalAddress - SEQUENCE SIZE (1..6) OF
  6587. DirectoryString(SIZE(1..30))
  6588. </member>
  6589. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.DmdName">
  6590. RFC 2256 dmdName
  6591. </member>
  6592. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.TelephoneNumber">
  6593. id-at-telephoneNumber
  6594. </member>
  6595. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.OrganizationIdentifier">
  6596. id-at-organizationIdentifier
  6597. </member>
  6598. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.Name">
  6599. id-at-name
  6600. </member>
  6601. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.EmailAddress">
  6602. Email address (RSA PKCS#9 extension) - IA5String.
  6603. <p>Note: if you're trying to be ultra orthodox, don't use this! It shouldn't be in here.</p>
  6604. </member>
  6605. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.UnstructuredName">
  6606. more from PKCS#9
  6607. </member>
  6608. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.E">
  6609. email address in Verisign certificates
  6610. </member>
  6611. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.UID">
  6612. LDAP User id.
  6613. </member>
  6614. <member name="P:Org.BouncyCastle.Asn1.X509.X509Name.DefaultReverse">
  6615. determines whether or not strings should be processed and printed
  6616. from back to front.
  6617. </member>
  6618. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.DefaultSymbols">
  6619. default look up table translating OID values into their common symbols following
  6620. the convention in RFC 2253 with a few extras
  6621. </member>
  6622. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.RFC2253Symbols">
  6623. look up table translating OID values into their common symbols following the convention in RFC 2253
  6624. </member>
  6625. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.RFC1779Symbols">
  6626. look up table translating OID values into their common symbols following the convention in RFC 1779
  6627. </member>
  6628. <member name="F:Org.BouncyCastle.Asn1.X509.X509Name.DefaultLookup">
  6629. look up table translating common symbols into their OIDS.
  6630. </member>
  6631. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.GetInstance(Org.BouncyCastle.Asn1.Asn1TaggedObject,System.Boolean)">
  6632. Return a X509Name based on the passed in tagged object.
  6633. @param obj tag object holding name.
  6634. @param explicitly true if explicitly tagged false otherwise.
  6635. @return the X509Name
  6636. </member>
  6637. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(Org.BouncyCastle.Asn1.Asn1Sequence)">
  6638. Constructor from Asn1Sequence
  6639. the principal will be a list of constructed sets, each containing an (OID, string) pair.
  6640. </member>
  6641. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Collections.IList,System.Collections.IDictionary)">
  6642. Constructor from a table of attributes with ordering.
  6643. <p>
  6644. it's is assumed the table contains OID/string pairs, and the contents
  6645. of the table are copied into an internal table as part of the
  6646. construction process. The ordering ArrayList should contain the OIDs
  6647. in the order they are meant to be encoded or printed in ToString.</p>
  6648. </member>
  6649. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Collections.IList,System.Collections.IDictionary,Org.BouncyCastle.Asn1.X509.X509NameEntryConverter)">
  6650. Constructor from a table of attributes with ordering.
  6651. <p>
  6652. it's is assumed the table contains OID/string pairs, and the contents
  6653. of the table are copied into an internal table as part of the
  6654. construction process. The ordering ArrayList should contain the OIDs
  6655. in the order they are meant to be encoded or printed in ToString.</p>
  6656. <p>
  6657. The passed in converter will be used to convert the strings into their
  6658. ASN.1 counterparts.</p>
  6659. </member>
  6660. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Collections.IList,System.Collections.IList)">
  6661. Takes two vectors one of the oids and the other of the values.
  6662. </member>
  6663. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Collections.IList,System.Collections.IList,Org.BouncyCastle.Asn1.X509.X509NameEntryConverter)">
  6664. Takes two vectors one of the oids and the other of the values.
  6665. <p>
  6666. The passed in converter will be used to convert the strings into their
  6667. ASN.1 counterparts.</p>
  6668. </member>
  6669. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.String)">
  6670. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6671. some such, converting it into an ordered set of name attributes.
  6672. </member>
  6673. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.String,Org.BouncyCastle.Asn1.X509.X509NameEntryConverter)">
  6674. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6675. some such, converting it into an ordered set of name attributes with each
  6676. string value being converted to its associated ASN.1 type using the passed
  6677. in converter.
  6678. </member>
  6679. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Boolean,System.String)">
  6680. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6681. some such, converting it into an ordered set of name attributes. If reverse
  6682. is true, create the encoded version of the sequence starting from the
  6683. last element in the string.
  6684. </member>
  6685. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Boolean,System.String,Org.BouncyCastle.Asn1.X509.X509NameEntryConverter)">
  6686. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6687. some such, converting it into an ordered set of name attributes with each
  6688. string value being converted to its associated ASN.1 type using the passed
  6689. in converter. If reverse is true the ASN.1 sequence representing the DN will
  6690. be built by starting at the end of the string, rather than the start.
  6691. </member>
  6692. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Boolean,System.Collections.IDictionary,System.String)">
  6693. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6694. some such, converting it into an ordered set of name attributes. lookUp
  6695. should provide a table of lookups, indexed by lowercase only strings and
  6696. yielding a DerObjectIdentifier, other than that OID. and numeric oids
  6697. will be processed automatically.
  6698. <br/>
  6699. If reverse is true, create the encoded version of the sequence
  6700. starting from the last element in the string.
  6701. @param reverse true if we should start scanning from the end (RFC 2553).
  6702. @param lookUp table of names and their oids.
  6703. @param dirName the X.500 string to be parsed.
  6704. </member>
  6705. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.#ctor(System.Boolean,System.Collections.IDictionary,System.String,Org.BouncyCastle.Asn1.X509.X509NameEntryConverter)">
  6706. Takes an X509 dir name as a string of the format "C=AU, ST=Victoria", or
  6707. some such, converting it into an ordered set of name attributes. lookUp
  6708. should provide a table of lookups, indexed by lowercase only strings and
  6709. yielding a DerObjectIdentifier, other than that OID. and numeric oids
  6710. will be processed automatically. The passed in converter is used to convert the
  6711. string values to the right of each equals sign to their ASN.1 counterparts.
  6712. <br/>
  6713. @param reverse true if we should start scanning from the end, false otherwise.
  6714. @param lookUp table of names and oids.
  6715. @param dirName the string dirName
  6716. @param converter the converter to convert string values into their ASN.1 equivalents
  6717. </member>
  6718. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.GetOidList">
  6719. return an IList of the oids in the name, in the order they were found.
  6720. </member>
  6721. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.GetValueList">
  6722. return an IList of the values found in the name, in the order they
  6723. were found.
  6724. </member>
  6725. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.GetValueList(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  6726. return an IList of the values found in the name, in the order they
  6727. were found, with the DN label corresponding to passed in oid.
  6728. </member>
  6729. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.Equivalent(Org.BouncyCastle.Asn1.X509.X509Name,System.Boolean)">
  6730. <param name="other">The X509Name object to test equivalency against.</param>
  6731. <param name="inOrder">If true, the order of elements must be the same,
  6732. as well as the values associated with each element.</param>
  6733. </member>
  6734. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.Equivalent(Org.BouncyCastle.Asn1.X509.X509Name)">
  6735. test for equivalence - note: case is ignored.
  6736. </member>
  6737. <member name="M:Org.BouncyCastle.Asn1.X509.X509Name.ToString(System.Boolean,System.Collections.IDictionary)">
  6738. convert the structure to a string - if reverse is true the
  6739. oids and values are listed out starting with the last element
  6740. in the sequence (ala RFC 2253), otherwise the string will begin
  6741. with the first element of the structure. If no string definition
  6742. for the oid is found in oidSymbols the string value of the oid is
  6743. added. Two standard symbol tables are provided DefaultSymbols, and
  6744. RFC2253Symbols as part of this class.
  6745. @param reverse if true start at the end of the sequence and work back.
  6746. @param oidSymbols look up table strings for oids.
  6747. </member>
  6748. <member name="T:Org.BouncyCastle.Asn1.X509.X509NameEntryConverter">
  6749. * It turns out that the number of standard ways the fields in a DN should be
  6750. * encoded into their ASN.1 counterparts is rapidly approaching the
  6751. * number of machines on the internet. By default the X509Name class
  6752. * will produce UTF8Strings in line with the current recommendations (RFC 3280).
  6753. * <p>
  6754. * An example of an encoder look like below:
  6755. * <pre>
  6756. * public class X509DirEntryConverter
  6757. * : X509NameEntryConverter
  6758. * {
  6759. * public Asn1Object GetConvertedValue(
  6760. * DerObjectIdentifier oid,
  6761. * string value)
  6762. * {
  6763. * if (str.Length() != 0 &amp;&amp; str.charAt(0) == '#')
  6764. * {
  6765. * return ConvertHexEncoded(str, 1);
  6766. * }
  6767. * if (oid.Equals(EmailAddress))
  6768. * {
  6769. * return new DerIA5String(str);
  6770. * }
  6771. * else if (CanBePrintable(str))
  6772. * {
  6773. * return new DerPrintableString(str);
  6774. * }
  6775. * else if (CanBeUTF8(str))
  6776. * {
  6777. * return new DerUtf8String(str);
  6778. * }
  6779. * else
  6780. * {
  6781. * return new DerBmpString(str);
  6782. * }
  6783. * }
  6784. * }
  6785. * </pre>
  6786. * </p>
  6787. </member>
  6788. <member name="M:Org.BouncyCastle.Asn1.X509.X509NameEntryConverter.ConvertHexEncoded(System.String,System.Int32)">
  6789. Convert an inline encoded hex string rendition of an ASN.1
  6790. object back into its corresponding ASN.1 object.
  6791. @param str the hex encoded object
  6792. @param off the index at which the encoding starts
  6793. @return the decoded object
  6794. </member>
  6795. <member name="M:Org.BouncyCastle.Asn1.X509.X509NameEntryConverter.CanBePrintable(System.String)">
  6796. return true if the passed in string can be represented without
  6797. loss as a PrintableString, false otherwise.
  6798. </member>
  6799. <member name="M:Org.BouncyCastle.Asn1.X509.X509NameEntryConverter.GetConvertedValue(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.String)">
  6800. Convert the passed in string value into the appropriate ASN.1
  6801. encoded object.
  6802. @param oid the oid associated with the value in the DN.
  6803. @param value the value of the particular DN component.
  6804. @return the ASN.1 equivalent for the value.
  6805. </member>
  6806. <member name="T:Org.BouncyCastle.Asn1.X509.X509NameTokenizer">
  6807. class for breaking up an X500 Name into it's component tokens, ala
  6808. java.util.StringTokenizer. We need this class as some of the
  6809. lightweight Java environment don't support classes like
  6810. StringTokenizer.
  6811. </member>
  6812. <member name="T:Org.BouncyCastle.Asn1.X9.ECNamedCurveTable">
  6813. A general class that reads all X9.62 style EC curve tables.
  6814. </member>
  6815. <member name="M:Org.BouncyCastle.Asn1.X9.ECNamedCurveTable.GetByName(System.String)">
  6816. return a X9ECParameters object representing the passed in named
  6817. curve. The routine returns null if the curve is not present.
  6818. @param name the name of the curve requested
  6819. @return an X9ECParameters object or null if the curve is not available.
  6820. </member>
  6821. <member name="M:Org.BouncyCastle.Asn1.X9.ECNamedCurveTable.GetOid(System.String)">
  6822. return the object identifier signified by the passed in name. Null
  6823. if there is no object identifier associated with name.
  6824. @return the object identifier associated with name, if present.
  6825. </member>
  6826. <member name="M:Org.BouncyCastle.Asn1.X9.ECNamedCurveTable.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  6827. return a X9ECParameters object representing the passed in named
  6828. curve.
  6829. @param oid the object id of the curve requested
  6830. @return an X9ECParameters object or null if the curve is not available.
  6831. </member>
  6832. <member name="P:Org.BouncyCastle.Asn1.X9.ECNamedCurveTable.Names">
  6833. return an enumeration of the names of the available curves.
  6834. @return an enumeration of the names of the available curves.
  6835. </member>
  6836. <member name="T:Org.BouncyCastle.Asn1.X9.KeySpecificInfo">
  6837. ASN.1 def for Diffie-Hellman key exchange KeySpecificInfo structure. See
  6838. RFC 2631, or X9.42, for further details.
  6839. </member>
  6840. <member name="M:Org.BouncyCastle.Asn1.X9.KeySpecificInfo.ToAsn1Object">
  6841. Produce an object suitable for an Asn1OutputStream.
  6842. <pre>
  6843. KeySpecificInfo ::= Sequence {
  6844. algorithm OBJECT IDENTIFIER,
  6845. counter OCTET STRING SIZE (4..4)
  6846. }
  6847. </pre>
  6848. </member>
  6849. <member name="T:Org.BouncyCastle.Asn1.X9.OtherInfo">
  6850. ANS.1 def for Diffie-Hellman key exchange OtherInfo structure. See
  6851. RFC 2631, or X9.42, for further details.
  6852. </member>
  6853. <member name="M:Org.BouncyCastle.Asn1.X9.OtherInfo.ToAsn1Object">
  6854. Produce an object suitable for an Asn1OutputStream.
  6855. <pre>
  6856. OtherInfo ::= Sequence {
  6857. keyInfo KeySpecificInfo,
  6858. partyAInfo [0] OCTET STRING OPTIONAL,
  6859. suppPubInfo [2] OCTET STRING
  6860. }
  6861. </pre>
  6862. </member>
  6863. <member name="T:Org.BouncyCastle.Asn1.X9.X962NamedCurves">
  6864. table of the current named curves defined in X.962 EC-DSA.
  6865. </member>
  6866. <member name="M:Org.BouncyCastle.Asn1.X9.X962NamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  6867. return the X9ECParameters object for the named curve represented by
  6868. the passed in object identifier. Null if the curve isn't present.
  6869. @param oid an object identifier representing a named curve, if present.
  6870. </member>
  6871. <member name="M:Org.BouncyCastle.Asn1.X9.X962NamedCurves.GetOid(System.String)">
  6872. return the object identifier signified by the passed in name. Null
  6873. if there is no object identifier associated with name.
  6874. @return the object identifier associated with name, if present.
  6875. </member>
  6876. <member name="M:Org.BouncyCastle.Asn1.X9.X962NamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  6877. return the named curve name represented by the given object identifier.
  6878. </member>
  6879. <member name="P:Org.BouncyCastle.Asn1.X9.X962NamedCurves.Names">
  6880. returns an enumeration containing the name strings for curves
  6881. contained in this structure.
  6882. </member>
  6883. <member name="M:Org.BouncyCastle.Asn1.X9.X962Parameters.ToAsn1Object">
  6884. Produce an object suitable for an Asn1OutputStream.
  6885. <pre>
  6886. Parameters ::= CHOICE {
  6887. ecParameters ECParameters,
  6888. namedCurve CURVES.&amp;id({CurveNames}),
  6889. implicitlyCA Null
  6890. }
  6891. </pre>
  6892. </member>
  6893. <member name="T:Org.BouncyCastle.Asn1.X9.X9Curve">
  6894. ASN.1 def for Elliptic-Curve Curve structure. See
  6895. X9.62, for further details.
  6896. </member>
  6897. <member name="M:Org.BouncyCastle.Asn1.X9.X9Curve.ToAsn1Object">
  6898. Produce an object suitable for an Asn1OutputStream.
  6899. <pre>
  6900. Curve ::= Sequence {
  6901. a FieldElement,
  6902. b FieldElement,
  6903. seed BIT STRING OPTIONAL
  6904. }
  6905. </pre>
  6906. </member>
  6907. <member name="T:Org.BouncyCastle.Asn1.X9.X9ECParameters">
  6908. ASN.1 def for Elliptic-Curve ECParameters structure. See
  6909. X9.62, for further details.
  6910. </member>
  6911. <member name="P:Org.BouncyCastle.Asn1.X9.X9ECParameters.CurveEntry">
  6912. Return the ASN.1 entry representing the Curve.
  6913. @return the X9Curve for the curve in these parameters.
  6914. </member>
  6915. <member name="P:Org.BouncyCastle.Asn1.X9.X9ECParameters.FieldIDEntry">
  6916. Return the ASN.1 entry representing the FieldID.
  6917. @return the X9FieldID for the FieldID in these parameters.
  6918. </member>
  6919. <member name="P:Org.BouncyCastle.Asn1.X9.X9ECParameters.BaseEntry">
  6920. Return the ASN.1 entry representing the base point G.
  6921. @return the X9ECPoint for the base point in these parameters.
  6922. </member>
  6923. <member name="M:Org.BouncyCastle.Asn1.X9.X9ECParameters.ToAsn1Object">
  6924. Produce an object suitable for an Asn1OutputStream.
  6925. <pre>
  6926. ECParameters ::= Sequence {
  6927. version Integer { ecpVer1(1) } (ecpVer1),
  6928. fieldID FieldID {{FieldTypes}},
  6929. curve X9Curve,
  6930. base X9ECPoint,
  6931. order Integer,
  6932. cofactor Integer OPTIONAL
  6933. }
  6934. </pre>
  6935. </member>
  6936. <member name="T:Org.BouncyCastle.Asn1.X9.X9ECPoint">
  6937. class for describing an ECPoint as a Der object.
  6938. </member>
  6939. <member name="M:Org.BouncyCastle.Asn1.X9.X9ECPoint.ToAsn1Object">
  6940. Produce an object suitable for an Asn1OutputStream.
  6941. <pre>
  6942. ECPoint ::= OCTET STRING
  6943. </pre>
  6944. <p>
  6945. Octet string produced using ECPoint.GetEncoded().</p>
  6946. </member>
  6947. <member name="T:Org.BouncyCastle.Asn1.X9.X9FieldElement">
  6948. Class for processing an ECFieldElement as a DER object.
  6949. </member>
  6950. <member name="M:Org.BouncyCastle.Asn1.X9.X9FieldElement.ToAsn1Object">
  6951. Produce an object suitable for an Asn1OutputStream.
  6952. <pre>
  6953. FieldElement ::= OCTET STRING
  6954. </pre>
  6955. <p>
  6956. <ol>
  6957. <li> if <i>q</i> is an odd prime then the field element is
  6958. processed as an Integer and converted to an octet string
  6959. according to x 9.62 4.3.1.</li>
  6960. <li> if <i>q</i> is 2<sup>m</sup> then the bit string
  6961. contained in the field element is converted into an octet
  6962. string with the same ordering padded at the front if necessary.
  6963. </li>
  6964. </ol>
  6965. </p>
  6966. </member>
  6967. <member name="T:Org.BouncyCastle.Asn1.X9.X9FieldID">
  6968. ASN.1 def for Elliptic-Curve Field ID structure. See
  6969. X9.62, for further details.
  6970. </member>
  6971. <member name="M:Org.BouncyCastle.Asn1.X9.X9FieldID.#ctor(Org.BouncyCastle.Math.BigInteger)">
  6972. Constructor for elliptic curves over prime fields
  6973. <code>F<sub>2</sub></code>.
  6974. @param primeP The prime <code>p</code> defining the prime field.
  6975. </member>
  6976. <member name="M:Org.BouncyCastle.Asn1.X9.X9FieldID.#ctor(System.Int32,System.Int32)">
  6977. Constructor for elliptic curves over binary fields
  6978. <code>F<sub>2<sup>m</sup></sub></code>.
  6979. @param m The exponent <code>m</code> of
  6980. <code>F<sub>2<sup>m</sup></sub></code>.
  6981. @param k1 The integer <code>k1</code> where <code>x<sup>m</sup> +
  6982. x<sup>k1</sup> + 1</code>
  6983. represents the reduction polynomial <code>f(z)</code>.
  6984. </member>
  6985. <member name="M:Org.BouncyCastle.Asn1.X9.X9FieldID.#ctor(System.Int32,System.Int32,System.Int32,System.Int32)">
  6986. Constructor for elliptic curves over binary fields
  6987. <code>F<sub>2<sup>m</sup></sub></code>.
  6988. @param m The exponent <code>m</code> of
  6989. <code>F<sub>2<sup>m</sup></sub></code>.
  6990. @param k1 The integer <code>k1</code> where <code>x<sup>m</sup> +
  6991. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  6992. represents the reduction polynomial <code>f(z)</code>.
  6993. @param k2 The integer <code>k2</code> where <code>x<sup>m</sup> +
  6994. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  6995. represents the reduction polynomial <code>f(z)</code>.
  6996. @param k3 The integer <code>k3</code> where <code>x<sup>m</sup> +
  6997. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  6998. represents the reduction polynomial <code>f(z)</code>..
  6999. </member>
  7000. <member name="M:Org.BouncyCastle.Asn1.X9.X9FieldID.ToAsn1Object">
  7001. Produce a Der encoding of the following structure.
  7002. <pre>
  7003. FieldID ::= Sequence {
  7004. fieldType FIELD-ID.&amp;id({IOSet}),
  7005. parameters FIELD-ID.&amp;Type({IOSet}{&#64;fieldType})
  7006. }
  7007. </pre>
  7008. </member>
  7009. <member name="F:Org.BouncyCastle.Asn1.X9.X9ObjectIdentifiers.IdDsaWithSha1">
  7010. id-dsa-with-sha1 OBJECT IDENTIFIER ::= { iso(1) member-body(2)
  7011. us(840) x9-57 (10040) x9cm(4) 3 }
  7012. </member>
  7013. <member name="F:Org.BouncyCastle.Asn1.X9.X9ObjectIdentifiers.X9x63Scheme">
  7014. X9.63
  7015. </member>
  7016. <member name="F:Org.BouncyCastle.Asn1.X9.X9ObjectIdentifiers.ansi_x9_42">
  7017. X9.42
  7018. </member>
  7019. <member name="T:Org.BouncyCastle.Bcpg.ArmoredInputStream">
  7020. reader for Base64 armored objects - read the headers and then start returning
  7021. bytes when the data is reached. An IOException is thrown if the CRC check
  7022. fails.
  7023. </member>
  7024. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.Decode(System.Int32,System.Int32,System.Int32,System.Int32,System.Int32[])">
  7025. decode the base 64 encoded input data.
  7026. @return the offset the data starts in out.
  7027. </member>
  7028. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.#ctor(System.IO.Stream)">
  7029. Create a stream for reading a PGP armoured message, parsing up to a header
  7030. and then reading the data that follows.
  7031. @param input
  7032. </member>
  7033. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.#ctor(System.IO.Stream,System.Boolean)">
  7034. Create an armoured input stream which will assume the data starts
  7035. straight away, or parse for headers first depending on the value of
  7036. hasHeaders.
  7037. @param input
  7038. @param hasHeaders true if headers are to be looked for, false otherwise.
  7039. </member>
  7040. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.IsClearText">
  7041. @return true if we are inside the clear text section of a PGP
  7042. signed message.
  7043. </member>
  7044. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.IsEndOfStream">
  7045. @return true if the stream is actually at end of file.
  7046. </member>
  7047. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.GetArmorHeaderLine">
  7048. Return the armor header line (if there is one)
  7049. @return the armor header line, null if none present.
  7050. </member>
  7051. <member name="M:Org.BouncyCastle.Bcpg.ArmoredInputStream.GetArmorHeaders">
  7052. Return the armor headers (the lines after the armor header line),
  7053. @return an array of armor headers, null if there aren't any.
  7054. </member>
  7055. <member name="T:Org.BouncyCastle.Bcpg.ArmoredOutputStream">
  7056. Basic output stream.
  7057. </member>
  7058. <member name="M:Org.BouncyCastle.Bcpg.ArmoredOutputStream.Encode(System.IO.Stream,System.Int32[],System.Int32)">
  7059. encode the input data producing a base 64 encoded byte array.
  7060. </member>
  7061. <member name="M:Org.BouncyCastle.Bcpg.ArmoredOutputStream.SetHeader(System.String,System.String)">
  7062. Set an additional header entry. A null value will clear the entry for name.
  7063. @param name the name of the header entry.
  7064. @param v the value of the header entry.
  7065. </member>
  7066. <member name="M:Org.BouncyCastle.Bcpg.ArmoredOutputStream.ResetHeaders">
  7067. Reset the headers to only contain a Version string (if one is present).
  7068. </member>
  7069. <member name="M:Org.BouncyCastle.Bcpg.ArmoredOutputStream.BeginClearText(Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7070. Start a clear text signed message.
  7071. @param hashAlgorithm
  7072. </member>
  7073. <member name="M:Org.BouncyCastle.Bcpg.ArmoredOutputStream.Close">
  7074. <b>Note</b>: Close() does not close the underlying stream. So it is possible to write
  7075. multiple objects using armoring to a single stream.
  7076. </member>
  7077. <member name="T:Org.BouncyCastle.Bcpg.Attr.ImageAttrib">
  7078. <remarks>Basic type for a image attribute packet.</remarks>
  7079. </member>
  7080. <member name="T:Org.BouncyCastle.Bcpg.BcpgInputStream">
  7081. <remarks>Reader for PGP objects.</remarks>
  7082. </member>
  7083. <member name="M:Org.BouncyCastle.Bcpg.BcpgInputStream.NextPacketTag">
  7084. <summary>Returns the next packet tag in the stream.</summary>
  7085. </member>
  7086. <member name="T:Org.BouncyCastle.Bcpg.BcpgInputStream.PartialInputStream">
  7087. <summary>
  7088. A stream that overlays our input stream, allowing the user to only read a segment of it.
  7089. NB: dataLength will be negative if the segment length is in the upper range above 2**31.
  7090. </summary>
  7091. </member>
  7092. <member name="T:Org.BouncyCastle.Bcpg.BcpgObject">
  7093. <remarks>Base class for a PGP object.</remarks>
  7094. </member>
  7095. <member name="T:Org.BouncyCastle.Bcpg.BcpgOutputStream">
  7096. <remarks>Basic output stream.</remarks>
  7097. </member>
  7098. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.#ctor(System.IO.Stream)">
  7099. <summary>Create a stream representing a general packet.</summary>
  7100. <param name="outStr">Output stream to write to.</param>
  7101. </member>
  7102. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.#ctor(System.IO.Stream,Org.BouncyCastle.Bcpg.PacketTag)">
  7103. <summary>Create a stream representing an old style partial object.</summary>
  7104. <param name="outStr">Output stream to write to.</param>
  7105. <param name="tag">The packet tag for the object.</param>
  7106. </member>
  7107. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.#ctor(System.IO.Stream,Org.BouncyCastle.Bcpg.PacketTag,System.Int64,System.Boolean)">
  7108. <summary>Create a stream representing a general packet.</summary>
  7109. <param name="outStr">Output stream to write to.</param>
  7110. <param name="tag">Packet tag.</param>
  7111. <param name="length">Size of chunks making up the packet.</param>
  7112. <param name="oldFormat">If true, the header is written out in old format.</param>
  7113. </member>
  7114. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.#ctor(System.IO.Stream,Org.BouncyCastle.Bcpg.PacketTag,System.Int64)">
  7115. <summary>Create a new style partial input stream buffered into chunks.</summary>
  7116. <param name="outStr">Output stream to write to.</param>
  7117. <param name="tag">Packet tag.</param>
  7118. <param name="length">Size of chunks making up the packet.</param>
  7119. </member>
  7120. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.#ctor(System.IO.Stream,Org.BouncyCastle.Bcpg.PacketTag,System.Byte[])">
  7121. <summary>Create a new style partial input stream buffered into chunks.</summary>
  7122. <param name="outStr">Output stream to write to.</param>
  7123. <param name="tag">Packet tag.</param>
  7124. <param name="buffer">Buffer to use for collecting chunks.</param>
  7125. </member>
  7126. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.Flush">
  7127. <summary>Flush the underlying stream.</summary>
  7128. </member>
  7129. <member name="M:Org.BouncyCastle.Bcpg.BcpgOutputStream.Finish">
  7130. <summary>Finish writing out the current packet without closing the underlying stream.</summary>
  7131. </member>
  7132. <member name="T:Org.BouncyCastle.Bcpg.CompressedDataPacket">
  7133. <remarks>Generic compressed data object.</remarks>
  7134. </member>
  7135. <member name="P:Org.BouncyCastle.Bcpg.CompressedDataPacket.Algorithm">
  7136. <summary>The algorithm tag value.</summary>
  7137. </member>
  7138. <member name="T:Org.BouncyCastle.Bcpg.CompressionAlgorithmTag">
  7139. <remarks>Basic tags for compression algorithms.</remarks>
  7140. </member>
  7141. <member name="T:Org.BouncyCastle.Bcpg.ContainedPacket">
  7142. <remarks>Basic type for a PGP packet.</remarks>
  7143. </member>
  7144. <member name="T:Org.BouncyCastle.Bcpg.DsaPublicBcpgKey">
  7145. <remarks>Base class for a DSA public key.</remarks>
  7146. </member>
  7147. <member name="M:Org.BouncyCastle.Bcpg.DsaPublicBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7148. <param name="bcpgIn">The stream to read the packet from.</param>
  7149. </member>
  7150. <member name="P:Org.BouncyCastle.Bcpg.DsaPublicBcpgKey.Format">
  7151. <summary>The format, as a string, always "PGP".</summary>
  7152. </member>
  7153. <member name="M:Org.BouncyCastle.Bcpg.DsaPublicBcpgKey.GetEncoded">
  7154. <summary>Return the standard PGP encoding of the key.</summary>
  7155. </member>
  7156. <member name="T:Org.BouncyCastle.Bcpg.DsaSecretBcpgKey">
  7157. <remarks>Base class for a DSA secret key.</remarks>
  7158. </member>
  7159. <member name="M:Org.BouncyCastle.Bcpg.DsaSecretBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7160. @param in
  7161. </member>
  7162. <member name="P:Org.BouncyCastle.Bcpg.DsaSecretBcpgKey.Format">
  7163. <summary>The format, as a string, always "PGP".</summary>
  7164. </member>
  7165. <member name="M:Org.BouncyCastle.Bcpg.DsaSecretBcpgKey.GetEncoded">
  7166. <summary>Return the standard PGP encoding of the key.</summary>
  7167. </member>
  7168. <member name="P:Org.BouncyCastle.Bcpg.DsaSecretBcpgKey.X">
  7169. @return x
  7170. </member>
  7171. <member name="T:Org.BouncyCastle.Bcpg.ECDHPublicBcpgKey">
  7172. <remarks>Base class for an ECDH Public Key.</remarks>
  7173. </member>
  7174. <member name="M:Org.BouncyCastle.Bcpg.ECDHPublicBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7175. <param name="bcpgIn">The stream to read the packet from.</param>
  7176. </member>
  7177. <member name="T:Org.BouncyCastle.Bcpg.ECDsaPublicBcpgKey">
  7178. <remarks>Base class for an ECDSA Public Key.</remarks>
  7179. </member>
  7180. <member name="M:Org.BouncyCastle.Bcpg.ECDsaPublicBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7181. <param name="bcpgIn">The stream to read the packet from.</param>
  7182. </member>
  7183. <member name="T:Org.BouncyCastle.Bcpg.ECPublicBcpgKey">
  7184. <remarks>Base class for an EC Public Key.</remarks>
  7185. </member>
  7186. <member name="M:Org.BouncyCastle.Bcpg.ECPublicBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7187. <param name="bcpgIn">The stream to read the packet from.</param>
  7188. </member>
  7189. <member name="P:Org.BouncyCastle.Bcpg.ECPublicBcpgKey.Format">
  7190. <summary>The format, as a string, always "PGP".</summary>
  7191. </member>
  7192. <member name="M:Org.BouncyCastle.Bcpg.ECPublicBcpgKey.GetEncoded">
  7193. <summary>Return the standard PGP encoding of the key.</summary>
  7194. </member>
  7195. <member name="T:Org.BouncyCastle.Bcpg.ECSecretBcpgKey">
  7196. <remarks>Base class for an EC Secret Key.</remarks>
  7197. </member>
  7198. <member name="P:Org.BouncyCastle.Bcpg.ECSecretBcpgKey.Format">
  7199. <summary>The format, as a string, always "PGP".</summary>
  7200. </member>
  7201. <member name="M:Org.BouncyCastle.Bcpg.ECSecretBcpgKey.GetEncoded">
  7202. <summary>Return the standard PGP encoding of the key.</summary>
  7203. </member>
  7204. <member name="T:Org.BouncyCastle.Bcpg.ElGamalPublicBcpgKey">
  7205. <remarks>Base class for an ElGamal public key.</remarks>
  7206. </member>
  7207. <member name="P:Org.BouncyCastle.Bcpg.ElGamalPublicBcpgKey.Format">
  7208. <summary>The format, as a string, always "PGP".</summary>
  7209. </member>
  7210. <member name="M:Org.BouncyCastle.Bcpg.ElGamalPublicBcpgKey.GetEncoded">
  7211. <summary>Return the standard PGP encoding of the key.</summary>
  7212. </member>
  7213. <member name="T:Org.BouncyCastle.Bcpg.ElGamalSecretBcpgKey">
  7214. <remarks>Base class for an ElGamal secret key.</remarks>
  7215. </member>
  7216. <member name="M:Org.BouncyCastle.Bcpg.ElGamalSecretBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7217. @param in
  7218. </member>
  7219. <member name="M:Org.BouncyCastle.Bcpg.ElGamalSecretBcpgKey.#ctor(Org.BouncyCastle.Math.BigInteger)">
  7220. @param x
  7221. </member>
  7222. <member name="P:Org.BouncyCastle.Bcpg.ElGamalSecretBcpgKey.Format">
  7223. <summary>The format, as a string, always "PGP".</summary>
  7224. </member>
  7225. <member name="M:Org.BouncyCastle.Bcpg.ElGamalSecretBcpgKey.GetEncoded">
  7226. <summary>Return the standard PGP encoding of the key.</summary>
  7227. </member>
  7228. <member name="T:Org.BouncyCastle.Bcpg.ExperimentalPacket">
  7229. <remarks>Basic packet for an experimental packet.</remarks>
  7230. </member>
  7231. <member name="T:Org.BouncyCastle.Bcpg.HashAlgorithmTag">
  7232. <remarks>Basic tags for hash algorithms.</remarks>
  7233. </member>
  7234. <member name="T:Org.BouncyCastle.Bcpg.IBcpgKey">
  7235. <remarks>Base interface for a PGP key.</remarks>
  7236. </member>
  7237. <member name="P:Org.BouncyCastle.Bcpg.IBcpgKey.Format">
  7238. <summary>
  7239. The base format for this key - in the case of the symmetric keys it will generally
  7240. be raw indicating that the key is just a straight byte representation, for an asymmetric
  7241. key the format will be PGP, indicating the key is a string of MPIs encoded in PGP format.
  7242. </summary>
  7243. <returns>"RAW" or "PGP".</returns>
  7244. </member>
  7245. <member name="M:Org.BouncyCastle.Bcpg.InputStreamPacket.GetInputStream">
  7246. <summary>Note: you can only read from this once...</summary>
  7247. </member>
  7248. <member name="T:Org.BouncyCastle.Bcpg.LiteralDataPacket">
  7249. <remarks>Generic literal data packet.</remarks>
  7250. </member>
  7251. <member name="P:Org.BouncyCastle.Bcpg.LiteralDataPacket.Format">
  7252. <summary>The format tag value.</summary>
  7253. </member>
  7254. <member name="P:Org.BouncyCastle.Bcpg.LiteralDataPacket.ModificationTime">
  7255. <summary>The modification time of the file in milli-seconds (since Jan 1, 1970 UTC)</summary>
  7256. </member>
  7257. <member name="T:Org.BouncyCastle.Bcpg.MarkerPacket">
  7258. <remarks>Basic type for a marker packet.</remarks>
  7259. </member>
  7260. <member name="T:Org.BouncyCastle.Bcpg.ModDetectionCodePacket">
  7261. <remarks>Basic packet for a modification detection code packet.</remarks>
  7262. </member>
  7263. <member name="T:Org.BouncyCastle.Bcpg.MPInteger">
  7264. <remarks>A multiple precision integer</remarks>
  7265. </member>
  7266. <member name="T:Org.BouncyCastle.Bcpg.OnePassSignaturePacket">
  7267. <remarks>Generic signature object</remarks>
  7268. </member>
  7269. <member name="P:Org.BouncyCastle.Bcpg.OnePassSignaturePacket.KeyAlgorithm">
  7270. <summary>The encryption algorithm tag.</summary>
  7271. </member>
  7272. <member name="P:Org.BouncyCastle.Bcpg.OnePassSignaturePacket.HashAlgorithm">
  7273. <summary>The hash algorithm tag.</summary>
  7274. </member>
  7275. <member name="T:Org.BouncyCastle.Bcpg.PacketTag">
  7276. <remarks>Basic PGP packet tag types.</remarks>
  7277. </member>
  7278. <member name="T:Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag">
  7279. <remarks>Public Key Algorithm tag numbers.</remarks>
  7280. </member>
  7281. <member name="T:Org.BouncyCastle.Bcpg.PublicKeyEncSessionPacket">
  7282. <remarks>Basic packet for a PGP public key.</remarks>
  7283. </member>
  7284. <member name="T:Org.BouncyCastle.Bcpg.PublicKeyPacket">
  7285. <remarks>Basic packet for a PGP public key.</remarks>
  7286. </member>
  7287. <member name="M:Org.BouncyCastle.Bcpg.PublicKeyPacket.#ctor(Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,System.DateTime,Org.BouncyCastle.Bcpg.IBcpgKey)">
  7288. <summary>Construct a version 4 public key packet.</summary>
  7289. </member>
  7290. <member name="T:Org.BouncyCastle.Bcpg.PublicSubkeyPacket">
  7291. <remarks>Basic packet for a PGP public subkey</remarks>
  7292. </member>
  7293. <member name="M:Org.BouncyCastle.Bcpg.PublicSubkeyPacket.#ctor(Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,System.DateTime,Org.BouncyCastle.Bcpg.IBcpgKey)">
  7294. <summary>Construct a version 4 public subkey packet.</summary>
  7295. </member>
  7296. <member name="T:Org.BouncyCastle.Bcpg.RsaPublicBcpgKey">
  7297. <remarks>Base class for an RSA public key.</remarks>
  7298. </member>
  7299. <member name="M:Org.BouncyCastle.Bcpg.RsaPublicBcpgKey.#ctor(Org.BouncyCastle.Bcpg.BcpgInputStream)">
  7300. <summary>Construct an RSA public key from the passed in stream.</summary>
  7301. </member>
  7302. <member name="M:Org.BouncyCastle.Bcpg.RsaPublicBcpgKey.#ctor(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  7303. <param name="n">The modulus.</param>
  7304. <param name="e">The public exponent.</param>
  7305. </member>
  7306. <member name="P:Org.BouncyCastle.Bcpg.RsaPublicBcpgKey.Format">
  7307. <summary>The format, as a string, always "PGP".</summary>
  7308. </member>
  7309. <member name="M:Org.BouncyCastle.Bcpg.RsaPublicBcpgKey.GetEncoded">
  7310. <summary>Return the standard PGP encoding of the key.</summary>
  7311. </member>
  7312. <member name="T:Org.BouncyCastle.Bcpg.RsaSecretBcpgKey">
  7313. <remarks>Base class for an RSA secret (or priate) key.</remarks>
  7314. </member>
  7315. <member name="P:Org.BouncyCastle.Bcpg.RsaSecretBcpgKey.Format">
  7316. <summary>The format, as a string, always "PGP".</summary>
  7317. </member>
  7318. <member name="M:Org.BouncyCastle.Bcpg.RsaSecretBcpgKey.GetEncoded">
  7319. <summary>Return the standard PGP encoding of the key.</summary>
  7320. </member>
  7321. <member name="T:Org.BouncyCastle.Bcpg.S2k">
  7322. <remarks>The string to key specifier class.</remarks>
  7323. </member>
  7324. <member name="P:Org.BouncyCastle.Bcpg.S2k.HashAlgorithm">
  7325. <summary>The hash algorithm.</summary>
  7326. </member>
  7327. <member name="M:Org.BouncyCastle.Bcpg.S2k.GetIV">
  7328. <summary>The IV for the key generation algorithm.</summary>
  7329. </member>
  7330. <member name="P:Org.BouncyCastle.Bcpg.S2k.IterationCount">
  7331. <summary>The iteration count</summary>
  7332. </member>
  7333. <member name="P:Org.BouncyCastle.Bcpg.S2k.ProtectionMode">
  7334. <summary>The protection mode - only if GnuDummyS2K</summary>
  7335. </member>
  7336. <member name="T:Org.BouncyCastle.Bcpg.SecretKeyPacket">
  7337. <remarks>Basic packet for a PGP secret key.</remarks>
  7338. </member>
  7339. <member name="T:Org.BouncyCastle.Bcpg.SecretSubkeyPacket">
  7340. <remarks>Basic packet for a PGP secret key.</remarks>
  7341. </member>
  7342. <member name="T:Org.BouncyCastle.Bcpg.SignaturePacket">
  7343. <remarks>Generic signature packet.</remarks>
  7344. </member>
  7345. <member name="M:Org.BouncyCastle.Bcpg.SignaturePacket.#ctor(System.Int32,System.Int64,Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,Org.BouncyCastle.Bcpg.SignatureSubpacket[],Org.BouncyCastle.Bcpg.SignatureSubpacket[],System.Byte[],Org.BouncyCastle.Bcpg.MPInteger[])">
  7346. Generate a version 4 signature packet.
  7347. @param signatureType
  7348. @param keyAlgorithm
  7349. @param hashAlgorithm
  7350. @param hashedData
  7351. @param unhashedData
  7352. @param fingerprint
  7353. @param signature
  7354. </member>
  7355. <member name="M:Org.BouncyCastle.Bcpg.SignaturePacket.#ctor(System.Int32,System.Int32,System.Int64,Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Int64,System.Byte[],Org.BouncyCastle.Bcpg.MPInteger[])">
  7356. Generate a version 2/3 signature packet.
  7357. @param signatureType
  7358. @param keyAlgorithm
  7359. @param hashAlgorithm
  7360. @param fingerprint
  7361. @param signature
  7362. </member>
  7363. <member name="P:Org.BouncyCastle.Bcpg.SignaturePacket.KeyId">
  7364. return the keyId
  7365. @return the keyId that created the signature.
  7366. </member>
  7367. <member name="M:Org.BouncyCastle.Bcpg.SignaturePacket.GetSignatureTrailer">
  7368. return the signature trailer that must be included with the data
  7369. to reconstruct the signature
  7370. @return byte[]
  7371. </member>
  7372. <member name="M:Org.BouncyCastle.Bcpg.SignaturePacket.GetSignature">
  7373. * return the signature as a set of integers - note this is normalised to be the
  7374. * ASN.1 encoding of what appears in the signature packet.
  7375. </member>
  7376. <member name="M:Org.BouncyCastle.Bcpg.SignaturePacket.GetSignatureBytes">
  7377. Return the byte encoding of the signature section.
  7378. @return uninterpreted signature bytes.
  7379. </member>
  7380. <member name="P:Org.BouncyCastle.Bcpg.SignaturePacket.CreationTime">
  7381. <summary>Return the creation time in milliseconds since 1 Jan., 1970 UTC.</summary>
  7382. </member>
  7383. <member name="T:Org.BouncyCastle.Bcpg.SignatureSubpacket">
  7384. <remarks>Basic type for a PGP Signature sub-packet.</remarks>
  7385. </member>
  7386. <member name="M:Org.BouncyCastle.Bcpg.SignatureSubpacket.GetData">
  7387. <summary>Return the generic data making up the packet.</summary>
  7388. </member>
  7389. <member name="T:Org.BouncyCastle.Bcpg.SignatureSubpacketsParser">
  7390. reader for signature sub-packets
  7391. </member>
  7392. <member name="T:Org.BouncyCastle.Bcpg.SignatureSubpacketTag">
  7393. Basic PGP signature sub-packet tag types.
  7394. </member>
  7395. <member name="T:Org.BouncyCastle.Bcpg.Sig.EmbeddedSignature">
  7396. Packet embedded signature
  7397. </member>
  7398. <member name="T:Org.BouncyCastle.Bcpg.Sig.Exportable">
  7399. packet giving signature creation time.
  7400. </member>
  7401. <member name="T:Org.BouncyCastle.Bcpg.Sig.Features">
  7402. packet giving signature expiration time.
  7403. </member>
  7404. <member name="F:Org.BouncyCastle.Bcpg.Sig.Features.FEATURE_MODIFICATION_DETECTION">
  7405. Identifier for the modification detection feature
  7406. </member>
  7407. <member name="P:Org.BouncyCastle.Bcpg.Sig.Features.SupportsModificationDetection">
  7408. Returns if modification detection is supported.
  7409. </member>
  7410. <member name="M:Org.BouncyCastle.Bcpg.Sig.Features.SupportsFeature(System.Byte)">
  7411. Returns if a particular feature is supported.
  7412. </member>
  7413. <member name="M:Org.BouncyCastle.Bcpg.Sig.Features.SetSupportsFeature(System.Byte,System.Boolean)">
  7414. Sets support for a particular feature.
  7415. </member>
  7416. <member name="T:Org.BouncyCastle.Bcpg.Sig.IssuerKeyId">
  7417. packet giving signature creation time.
  7418. </member>
  7419. <member name="T:Org.BouncyCastle.Bcpg.Sig.KeyExpirationTime">
  7420. packet giving time after creation at which the key expires.
  7421. </member>
  7422. <member name="P:Org.BouncyCastle.Bcpg.Sig.KeyExpirationTime.Time">
  7423. Return the number of seconds after creation time a key is valid for.
  7424. @return second count for key validity.
  7425. </member>
  7426. <member name="T:Org.BouncyCastle.Bcpg.Sig.KeyFlags">
  7427. Packet holding the key flag values.
  7428. </member>
  7429. <member name="P:Org.BouncyCastle.Bcpg.Sig.KeyFlags.Flags">
  7430. <summary>
  7431. Return the flag values contained in the first 4 octets (note: at the moment
  7432. the standard only uses the first one).
  7433. </summary>
  7434. </member>
  7435. <member name="T:Org.BouncyCastle.Bcpg.Sig.NotationData">
  7436. Class provided a NotationData object according to
  7437. RFC2440, Chapter 5.2.3.15. Notation Data
  7438. </member>
  7439. <member name="T:Org.BouncyCastle.Bcpg.Sig.PreferredAlgorithms">
  7440. packet giving signature creation time.
  7441. </member>
  7442. <member name="T:Org.BouncyCastle.Bcpg.Sig.PrimaryUserId">
  7443. packet giving whether or not the signature is signed using the primary user ID for the key.
  7444. </member>
  7445. <member name="T:Org.BouncyCastle.Bcpg.Sig.Revocable">
  7446. packet giving whether or not is revocable.
  7447. </member>
  7448. <member name="T:Org.BouncyCastle.Bcpg.Sig.SignatureCreationTime">
  7449. packet giving signature creation time.
  7450. </member>
  7451. <member name="T:Org.BouncyCastle.Bcpg.Sig.SignatureExpirationTime">
  7452. packet giving signature expiration time.
  7453. </member>
  7454. <member name="P:Org.BouncyCastle.Bcpg.Sig.SignatureExpirationTime.Time">
  7455. return time in seconds before signature expires after creation time.
  7456. </member>
  7457. <member name="T:Org.BouncyCastle.Bcpg.Sig.SignerUserId">
  7458. packet giving the User ID of the signer.
  7459. </member>
  7460. <member name="T:Org.BouncyCastle.Bcpg.Sig.TrustSignature">
  7461. packet giving trust.
  7462. </member>
  7463. <member name="T:Org.BouncyCastle.Bcpg.RevocationKey">
  7464. <summary>
  7465. Represents revocation key OpenPGP signature sub packet.
  7466. </summary>
  7467. </member>
  7468. <member name="T:Org.BouncyCastle.Bcpg.RevocationReason">
  7469. <summary>
  7470. Represents revocation reason OpenPGP signature sub packet.
  7471. </summary>
  7472. </member>
  7473. <member name="T:Org.BouncyCastle.Bcpg.SymmetricEncDataPacket">
  7474. <remarks>Basic type for a symmetric key encrypted packet.</remarks>
  7475. </member>
  7476. <member name="T:Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag">
  7477. Basic tags for symmetric key algorithms
  7478. </member>
  7479. <member name="T:Org.BouncyCastle.Bcpg.SymmetricKeyEncSessionPacket">
  7480. Basic type for a symmetric encrypted session key packet
  7481. </member>
  7482. <member name="P:Org.BouncyCastle.Bcpg.SymmetricKeyEncSessionPacket.EncAlgorithm">
  7483. @return int
  7484. </member>
  7485. <member name="P:Org.BouncyCastle.Bcpg.SymmetricKeyEncSessionPacket.S2k">
  7486. @return S2k
  7487. </member>
  7488. <member name="M:Org.BouncyCastle.Bcpg.SymmetricKeyEncSessionPacket.GetSecKeyData">
  7489. @return byte[]
  7490. </member>
  7491. <member name="P:Org.BouncyCastle.Bcpg.SymmetricKeyEncSessionPacket.Version">
  7492. @return int
  7493. </member>
  7494. <member name="T:Org.BouncyCastle.Bcpg.TrustPacket">
  7495. <summary>Basic type for a trust packet.</summary>
  7496. </member>
  7497. <member name="T:Org.BouncyCastle.Bcpg.UserAttributePacket">
  7498. Basic type for a user attribute packet.
  7499. </member>
  7500. <member name="T:Org.BouncyCastle.Bcpg.UserAttributeSubpacket">
  7501. Basic type for a user attribute sub-packet.
  7502. </member>
  7503. <member name="M:Org.BouncyCastle.Bcpg.UserAttributeSubpacket.GetData">
  7504. return the generic data making up the packet.
  7505. </member>
  7506. <member name="T:Org.BouncyCastle.Bcpg.UserAttributeSubpacketsParser">
  7507. reader for user attribute sub-packets
  7508. </member>
  7509. <member name="T:Org.BouncyCastle.Bcpg.UserAttributeSubpacketTag">
  7510. Basic PGP user attribute sub-packet tag types.
  7511. </member>
  7512. <member name="T:Org.BouncyCastle.Bcpg.UserIdPacket">
  7513. Basic type for a user ID packet.
  7514. </member>
  7515. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedData">
  7516. <remarks>Compressed data objects</remarks>
  7517. </member>
  7518. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedData.Algorithm">
  7519. <summary>The algorithm used for compression</summary>
  7520. </member>
  7521. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedData.GetInputStream">
  7522. <summary>Get the raw input stream contained in the object.</summary>
  7523. </member>
  7524. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedData.GetDataStream">
  7525. <summary>Return an uncompressed input stream which allows reading of the compressed data.</summary>
  7526. </member>
  7527. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedDataGenerator">
  7528. <remarks>Class for producing compressed data packets.</remarks>
  7529. </member>
  7530. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedDataGenerator.Open(System.IO.Stream)">
  7531. <summary>
  7532. <p>
  7533. Return an output stream which will save the data being written to
  7534. the compressed object.
  7535. </p>
  7536. <p>
  7537. The stream created can be closed off by either calling Close()
  7538. on the stream or Close() on the generator. Closing the returned
  7539. stream does not close off the Stream parameter <c>outStr</c>.
  7540. </p>
  7541. </summary>
  7542. <param name="outStr">Stream to be used for output.</param>
  7543. <returns>A Stream for output of the compressed data.</returns>
  7544. <exception cref="T:System.ArgumentNullException"></exception>
  7545. <exception cref="T:System.InvalidOperationException"></exception>
  7546. <exception cref="T:System.IO.IOException"></exception>
  7547. </member>
  7548. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedDataGenerator.Open(System.IO.Stream,System.Byte[])">
  7549. <summary>
  7550. <p>
  7551. Return an output stream which will compress the data as it is written to it.
  7552. The stream will be written out in chunks according to the size of the passed in buffer.
  7553. </p>
  7554. <p>
  7555. The stream created can be closed off by either calling Close()
  7556. on the stream or Close() on the generator. Closing the returned
  7557. stream does not close off the Stream parameter <c>outStr</c>.
  7558. </p>
  7559. <p>
  7560. <b>Note</b>: if the buffer is not a power of 2 in length only the largest power of 2
  7561. bytes worth of the buffer will be used.
  7562. </p>
  7563. <p>
  7564. <b>Note</b>: using this may break compatibility with RFC 1991 compliant tools.
  7565. Only recent OpenPGP implementations are capable of accepting these streams.
  7566. </p>
  7567. </summary>
  7568. <param name="outStr">Stream to be used for output.</param>
  7569. <param name="buffer">The buffer to use.</param>
  7570. <returns>A Stream for output of the compressed data.</returns>
  7571. <exception cref="T:System.ArgumentNullException"></exception>
  7572. <exception cref="T:System.InvalidOperationException"></exception>
  7573. <exception cref="T:System.IO.IOException"></exception>
  7574. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException"></exception>
  7575. </member>
  7576. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpCompressedDataGenerator.Close">
  7577. <summary>Close the compressed object.</summary>summary>
  7578. </member>
  7579. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpDataValidationException">
  7580. <remarks>
  7581. Thrown if the IV at the start of a data stream indicates the wrong key is being used.
  7582. </remarks>
  7583. </member>
  7584. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedData.GetInputStream">
  7585. <summary>Return the raw input stream for the data stream.</summary>
  7586. </member>
  7587. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedData.IsIntegrityProtected">
  7588. <summary>Return true if the message is integrity protected.</summary>
  7589. <returns>True, if there is a modification detection code namespace associated
  7590. with this stream.</returns>
  7591. </member>
  7592. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedData.Verify">
  7593. <summary>Note: This can only be called after the message has been read.</summary>
  7594. <returns>True, if the message verifies, false otherwise</returns>
  7595. </member>
  7596. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator">
  7597. <remarks>Generator for encrypted objects.</remarks>
  7598. </member>
  7599. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.#ctor(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom)">
  7600. <summary>Existing SecureRandom constructor.</summary>
  7601. <param name="encAlgorithm">The symmetric algorithm to use.</param>
  7602. <param name="rand">Source of randomness.</param>
  7603. </member>
  7604. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.#ctor(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Boolean,Org.BouncyCastle.Security.SecureRandom)">
  7605. <summary>Creates a cipher stream which will have an integrity packet associated with it.</summary>
  7606. </member>
  7607. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.#ctor(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom,System.Boolean)">
  7608. <summary>Base constructor.</summary>
  7609. <param name="encAlgorithm">The symmetric algorithm to use.</param>
  7610. <param name="rand">Source of randomness.</param>
  7611. <param name="oldFormat">PGP 2.6.x compatibility required.</param>
  7612. </member>
  7613. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.AddMethod(System.Char[])">
  7614. <summary>
  7615. Add a PBE encryption method to the encrypted object using the default algorithm (S2K_SHA1).
  7616. </summary>
  7617. <remarks>
  7618. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  7619. the historical behaviour of the library (1.7 and earlier).
  7620. </remarks>
  7621. </member>
  7622. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.AddMethod(System.Char[],Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7623. <summary>Add a PBE encryption method to the encrypted object.</summary>
  7624. <remarks>
  7625. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  7626. the historical behaviour of the library (1.7 and earlier).
  7627. </remarks>
  7628. </member>
  7629. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.AddMethodUtf8(System.Char[],Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7630. <summary>Add a PBE encryption method to the encrypted object.</summary>
  7631. <remarks>
  7632. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  7633. </remarks>
  7634. </member>
  7635. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.AddMethodRaw(System.Byte[],Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7636. <summary>Add a PBE encryption method to the encrypted object.</summary>
  7637. <remarks>
  7638. Allows the caller to handle the encoding of the passphrase to bytes.
  7639. </remarks>
  7640. </member>
  7641. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.AddMethod(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  7642. <summary>Add a public key encrypted session key to the encrypted object.</summary>
  7643. </member>
  7644. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.Open(System.IO.Stream,System.Int64,System.Byte[])">
  7645. <summary>
  7646. <p>
  7647. If buffer is non null stream assumed to be partial, otherwise the length will be used
  7648. to output a fixed length packet.
  7649. </p>
  7650. <p>
  7651. The stream created can be closed off by either calling Close()
  7652. on the stream or Close() on the generator. Closing the returned
  7653. stream does not close off the Stream parameter <c>outStr</c>.
  7654. </p>
  7655. </summary>
  7656. </member>
  7657. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.Open(System.IO.Stream,System.Int64)">
  7658. <summary>
  7659. <p>
  7660. Return an output stream which will encrypt the data as it is written to it.
  7661. </p>
  7662. <p>
  7663. The stream created can be closed off by either calling Close()
  7664. on the stream or Close() on the generator. Closing the returned
  7665. stream does not close off the Stream parameter <c>outStr</c>.
  7666. </p>
  7667. </summary>
  7668. </member>
  7669. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.Open(System.IO.Stream,System.Byte[])">
  7670. <summary>
  7671. <p>
  7672. Return an output stream which will encrypt the data as it is written to it.
  7673. The stream will be written out in chunks according to the size of the passed in buffer.
  7674. </p>
  7675. <p>
  7676. The stream created can be closed off by either calling Close()
  7677. on the stream or Close() on the generator. Closing the returned
  7678. stream does not close off the Stream parameter <c>outStr</c>.
  7679. </p>
  7680. <p>
  7681. <b>Note</b>: if the buffer is not a power of 2 in length only the largest power of 2
  7682. bytes worth of the buffer will be used.
  7683. </p>
  7684. </summary>
  7685. </member>
  7686. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataGenerator.Close">
  7687. <summary>
  7688. <p>
  7689. Close off the encrypted object - this is equivalent to calling Close() on the stream
  7690. returned by the Open() method.
  7691. </p>
  7692. <p>
  7693. <b>Note</b>: This does not close the underlying output stream, only the stream on top of
  7694. it created by the Open() method.
  7695. </p>
  7696. </summary>
  7697. </member>
  7698. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpEncryptedDataList">
  7699. <remarks>A holder for a list of PGP encryption method packets.</remarks>
  7700. </member>
  7701. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">
  7702. <remarks>Generic exception class for PGP encoding/decoding problems.</remarks>
  7703. </member>
  7704. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyFlags">
  7705. <remarks>Key flag values for the KeyFlags subpacket.</remarks>
  7706. </member>
  7707. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair">
  7708. <remarks>
  7709. General class to handle JCA key pairs and convert them into OpenPGP ones.
  7710. <p>
  7711. A word for the unwary, the KeyId for an OpenPGP public key is calculated from
  7712. a hash that includes the time of creation, if you pass a different date to the
  7713. constructor below with the same public private key pair the KeyIs will not be the
  7714. same as for previous generations of the key, so ideally you only want to do
  7715. this once.
  7716. </p>
  7717. </remarks>
  7718. </member>
  7719. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair.#ctor(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey)">
  7720. <summary>Create a key pair from a PgpPrivateKey and a PgpPublicKey.</summary>
  7721. <param name="pub">The public key.</param>
  7722. <param name="priv">The private key.</param>
  7723. </member>
  7724. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair.KeyId">
  7725. <summary>The keyId associated with this key pair.</summary>
  7726. </member>
  7727. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator">
  7728. <remarks>
  7729. Generator for a PGP master and subkey ring.
  7730. This class will generate both the secret and public key rings
  7731. </remarks>
  7732. </member>
  7733. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Char[],Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7734. <summary>
  7735. Create a new key ring generator using old style checksumming. It is recommended to use
  7736. SHA1 checksumming where possible.
  7737. </summary>
  7738. <remarks>
  7739. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  7740. the historical behaviour of the library (1.7 and earlier).
  7741. </remarks>
  7742. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7743. <param name="masterKey">The master key pair.</param>
  7744. <param name="id">The id to be associated with the ring.</param>
  7745. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7746. <param name="passPhrase">The passPhrase to be used to protect secret keys.</param>
  7747. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7748. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7749. <param name="rand">input secured random.</param>
  7750. </member>
  7751. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7752. <summary>
  7753. Create a new key ring generator.
  7754. </summary>
  7755. <remarks>
  7756. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  7757. the historical behaviour of the library (1.7 and earlier).
  7758. </remarks>
  7759. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7760. <param name="masterKey">The master key pair.</param>
  7761. <param name="id">The id to be associated with the ring.</param>
  7762. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7763. <param name="passPhrase">The passPhrase to be used to protect secret keys.</param>
  7764. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7765. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7766. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7767. <param name="rand">input secured random.</param>
  7768. </member>
  7769. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Boolean,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7770. <summary>
  7771. Create a new key ring generator.
  7772. </summary>
  7773. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7774. <param name="masterKey">The master key pair.</param>
  7775. <param name="id">The id to be associated with the ring.</param>
  7776. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7777. <param name="utf8PassPhrase">
  7778. If true, conversion of the passphrase to bytes uses Encoding.UTF8.GetBytes(), otherwise the conversion
  7779. is performed using Convert.ToByte(), which is the historical behaviour of the library (1.7 and earlier).
  7780. </param>
  7781. <param name="passPhrase">The passPhrase to be used to protect secret keys.</param>
  7782. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7783. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7784. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7785. <param name="rand">input secured random.</param>
  7786. </member>
  7787. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Byte[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7788. <summary>
  7789. Create a new key ring generator.
  7790. </summary>
  7791. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7792. <param name="masterKey">The master key pair.</param>
  7793. <param name="id">The id to be associated with the ring.</param>
  7794. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7795. <param name="rawPassPhrase">The passPhrase to be used to protect secret keys.</param>
  7796. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7797. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7798. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7799. <param name="rand">input secured random.</param>
  7800. </member>
  7801. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7802. <summary>
  7803. Create a new key ring generator.
  7804. </summary>
  7805. <remarks>
  7806. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  7807. the historical behaviour of the library (1.7 and earlier).
  7808. </remarks>
  7809. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7810. <param name="masterKey">The master key pair.</param>
  7811. <param name="id">The id to be associated with the ring.</param>
  7812. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7813. <param name="hashAlgorithm">The hash algorithm.</param>
  7814. <param name="passPhrase">The passPhrase to be used to protect secret keys.</param>
  7815. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7816. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7817. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7818. <param name="rand">input secured random.</param>
  7819. </member>
  7820. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Boolean,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7821. <summary>
  7822. Create a new key ring generator.
  7823. </summary>
  7824. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7825. <param name="masterKey">The master key pair.</param>
  7826. <param name="id">The id to be associated with the ring.</param>
  7827. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7828. <param name="hashAlgorithm">The hash algorithm.</param>
  7829. <param name="utf8PassPhrase">
  7830. If true, conversion of the passphrase to bytes uses Encoding.UTF8.GetBytes(), otherwise the conversion
  7831. is performed using Convert.ToByte(), which is the historical behaviour of the library (1.7 and earlier).
  7832. </param>
  7833. <param name="passPhrase">The passPhrase to be used to protect secret keys.</param>
  7834. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7835. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7836. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7837. <param name="rand">input secured random.</param>
  7838. </member>
  7839. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Byte[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  7840. <summary>
  7841. Create a new key ring generator.
  7842. </summary>
  7843. <remarks>
  7844. Allows the caller to handle the encoding of the passphrase to bytes.
  7845. </remarks>
  7846. <param name="certificationLevel">The certification level for keys on this ring.</param>
  7847. <param name="masterKey">The master key pair.</param>
  7848. <param name="id">The id to be associated with the ring.</param>
  7849. <param name="encAlgorithm">The algorithm to be used to protect secret keys.</param>
  7850. <param name="hashAlgorithm">The hash algorithm.</param>
  7851. <param name="rawPassPhrase">The passPhrase to be used to protect secret keys.</param>
  7852. <param name="useSha1">Checksum the secret keys with SHA1 rather than the older 16 bit checksum.</param>
  7853. <param name="hashedPackets">Packets to be included in the certification hash.</param>
  7854. <param name="unhashedPackets">Packets to be attached unhashed to the certification.</param>
  7855. <param name="rand">input secured random.</param>
  7856. </member>
  7857. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.AddSubKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair)">
  7858. <summary>Add a subkey to the key ring to be generated with default certification.</summary>
  7859. </member>
  7860. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.AddSubKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7861. <summary>
  7862. Add a subkey to the key ring to be generated with default certification.
  7863. </summary>
  7864. <param name="keyPair">The key pair.</param>
  7865. <param name="hashAlgorithm">The hash algorithm.</param>
  7866. </member>
  7867. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.AddSubKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector)">
  7868. <summary>
  7869. Add a subkey with specific hashed and unhashed packets associated with it and
  7870. default certification.
  7871. </summary>
  7872. <param name="keyPair">Public/private key pair.</param>
  7873. <param name="hashedPackets">Hashed packet values to be included in certification.</param>
  7874. <param name="unhashedPackets">Unhashed packets values to be included in certification.</param>
  7875. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException"></exception>
  7876. </member>
  7877. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.AddSubKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  7878. <summary>
  7879. Add a subkey with specific hashed and unhashed packets associated with it and
  7880. default certification.
  7881. </summary>
  7882. <param name="keyPair">Public/private key pair.</param>
  7883. <param name="hashedPackets">Hashed packet values to be included in certification.</param>
  7884. <param name="unhashedPackets">Unhashed packets values to be included in certification.</param>
  7885. <param name="hashAlgorithm">The hash algorithm.</param>
  7886. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">exception adding subkey: </exception>
  7887. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException"></exception>
  7888. </member>
  7889. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.GenerateSecretKeyRing">
  7890. <summary>Return the secret key ring.</summary>
  7891. </member>
  7892. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyRingGenerator.GeneratePublicKeyRing">
  7893. <summary>Return the public key ring that corresponds to the secret key ring.</summary>
  7894. </member>
  7895. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyValidationException">
  7896. <remarks>
  7897. Thrown if the key checksum is invalid.
  7898. </remarks>
  7899. </member>
  7900. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData">
  7901. <summary>Class for processing literal data objects.</summary>
  7902. </member>
  7903. <member name="F:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.Console">
  7904. <summary>The special name indicating a "for your eyes only" packet.</summary>
  7905. </member>
  7906. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.Format">
  7907. <summary>The format of the data stream - Binary or Text</summary>
  7908. </member>
  7909. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.FileName">
  7910. <summary>The file name that's associated with the data stream.</summary>
  7911. </member>
  7912. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.GetRawFileName">
  7913. Return the file name as an unintrepreted byte array.
  7914. </member>
  7915. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.ModificationTime">
  7916. <summary>The modification time for the file.</summary>
  7917. </member>
  7918. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.GetInputStream">
  7919. <summary>The raw input stream for the data stream.</summary>
  7920. </member>
  7921. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralData.GetDataStream">
  7922. <summary>The input stream representing the data stream.</summary>
  7923. </member>
  7924. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator">
  7925. <remarks>Class for producing literal data packets.</remarks>
  7926. </member>
  7927. <member name="F:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.Console">
  7928. <summary>The special name indicating a "for your eyes only" packet.</summary>
  7929. </member>
  7930. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.#ctor(System.Boolean)">
  7931. <summary>
  7932. Generates literal data objects in the old format.
  7933. This is important if you need compatibility with PGP 2.6.x.
  7934. </summary>
  7935. <param name="oldFormat">If true, uses old format.</param>
  7936. </member>
  7937. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.Open(System.IO.Stream,System.Char,System.String,System.Int64,System.DateTime)">
  7938. <summary>
  7939. <p>
  7940. Open a literal data packet, returning a stream to store the data inside the packet.
  7941. </p>
  7942. <p>
  7943. The stream created can be closed off by either calling Close()
  7944. on the stream or Close() on the generator. Closing the returned
  7945. stream does not close off the Stream parameter <c>outStr</c>.
  7946. </p>
  7947. </summary>
  7948. <param name="outStr">The stream we want the packet in.</param>
  7949. <param name="format">The format we are using.</param>
  7950. <param name="name">The name of the 'file'.</param>
  7951. <param name="length">The length of the data we will write.</param>
  7952. <param name="modificationTime">The time of last modification we want stored.</param>
  7953. </member>
  7954. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.Open(System.IO.Stream,System.Char,System.String,System.DateTime,System.Byte[])">
  7955. <summary>
  7956. <p>
  7957. Open a literal data packet, returning a stream to store the data inside the packet,
  7958. as an indefinite length stream. The stream is written out as a series of partial
  7959. packets with a chunk size determined by the size of the passed in buffer.
  7960. </p>
  7961. <p>
  7962. The stream created can be closed off by either calling Close()
  7963. on the stream or Close() on the generator. Closing the returned
  7964. stream does not close off the Stream parameter <c>outStr</c>.
  7965. </p>
  7966. <p>
  7967. <b>Note</b>: if the buffer is not a power of 2 in length only the largest power of 2
  7968. bytes worth of the buffer will be used.</p>
  7969. </summary>
  7970. <param name="outStr">The stream we want the packet in.</param>
  7971. <param name="format">The format we are using.</param>
  7972. <param name="name">The name of the 'file'.</param>
  7973. <param name="modificationTime">The time of last modification we want stored.</param>
  7974. <param name="buffer">The buffer to use for collecting data to put into chunks.</param>
  7975. </member>
  7976. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.Open(System.IO.Stream,System.Char,System.IO.FileInfo)">
  7977. <summary>
  7978. <p>
  7979. Open a literal data packet for the passed in <c>FileInfo</c> object, returning
  7980. an output stream for saving the file contents.
  7981. </p>
  7982. <p>
  7983. The stream created can be closed off by either calling Close()
  7984. on the stream or Close() on the generator. Closing the returned
  7985. stream does not close off the Stream parameter <c>outStr</c>.
  7986. </p>
  7987. </summary>
  7988. <param name="outStr">The stream we want the packet in.</param>
  7989. <param name="format">The format we are using.</param>
  7990. <param name="file">The <c>FileInfo</c> object containg the packet details.</param>
  7991. </member>
  7992. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpLiteralDataGenerator.Close">
  7993. <summary>
  7994. Close the literal data packet - this is equivalent to calling Close()
  7995. on the stream returned by the Open() method.
  7996. </summary>
  7997. </member>
  7998. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpMarker">
  7999. <remarks>
  8000. A PGP marker packet - in general these should be ignored other than where
  8001. the idea is to preserve the original input stream.
  8002. </remarks>
  8003. </member>
  8004. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpObjectFactory">
  8005. <remarks>
  8006. General class for reading a PGP object stream.
  8007. <p>
  8008. Note: if this class finds a PgpPublicKey or a PgpSecretKey it
  8009. will create a PgpPublicKeyRing, or a PgpSecretKeyRing for each
  8010. key found. If all you are trying to do is read a key ring file use
  8011. either PgpPublicKeyRingBundle or PgpSecretKeyRingBundle.</p>
  8012. </remarks>
  8013. </member>
  8014. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpObjectFactory.NextPgpObject">
  8015. <summary>Return the next object in the stream, or null if the end is reached.</summary>
  8016. <exception cref="T:System.IO.IOException">On a parse error</exception>
  8017. </member>
  8018. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpObjectFactory.AllPgpObjects">
  8019. <summary>
  8020. Return all available objects in a list.
  8021. </summary>
  8022. <returns>An <c>IList</c> containing all objects from this factory, in order.</returns>
  8023. </member>
  8024. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpOnePassSignature">
  8025. <remarks>A one pass signature object.</remarks>
  8026. </member>
  8027. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpOnePassSignature.InitVerify(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8028. <summary>Initialise the signature object for verification.</summary>
  8029. </member>
  8030. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpOnePassSignature.Verify(Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8031. <summary>Verify the calculated signature against the passed in PgpSignature.</summary>
  8032. </member>
  8033. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpOnePassSignatureList">
  8034. <remarks>Holder for a list of PgpOnePassSignature objects.</remarks>
  8035. </member>
  8036. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPad">
  8037. <remarks>Padding functions.</remarks>
  8038. </member>
  8039. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPbeEncryptedData">
  8040. <remarks>A password based encryption object.</remarks>
  8041. </member>
  8042. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPbeEncryptedData.GetInputStream">
  8043. <summary>Return the raw input stream for the data stream.</summary>
  8044. </member>
  8045. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPbeEncryptedData.GetDataStream(System.Char[])">
  8046. <summary>Return the decrypted input stream, using the passed in passphrase.</summary>
  8047. <remarks>
  8048. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8049. the historical behaviour of the library (1.7 and earlier).
  8050. </remarks>
  8051. </member>
  8052. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPbeEncryptedData.GetDataStreamUtf8(System.Char[])">
  8053. <summary>Return the decrypted input stream, using the passed in passphrase.</summary>
  8054. <remarks>
  8055. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8056. </remarks>
  8057. </member>
  8058. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPbeEncryptedData.GetDataStreamRaw(System.Byte[])">
  8059. <summary>Return the decrypted input stream, using the passed in passphrase.</summary>
  8060. <remarks>
  8061. Allows the caller to handle the encoding of the passphrase to bytes.
  8062. </remarks>
  8063. </member>
  8064. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey">
  8065. <remarks>General class to contain a private key for use with other OpenPGP objects.</remarks>
  8066. </member>
  8067. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey.#ctor(System.Int64,Org.BouncyCastle.Bcpg.PublicKeyPacket,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  8068. <summary>
  8069. Create a PgpPrivateKey from a keyID, the associated public data packet, and a regular private key.
  8070. </summary>
  8071. <param name="keyID">ID of the corresponding public key.</param>
  8072. <param name="publicKeyPacket">the public key data packet to be associated with this private key.</param>
  8073. <param name="privateKey">the private key data packet to be associated with this private key.</param>
  8074. </member>
  8075. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey.KeyId">
  8076. <summary>The keyId associated with the contained private key.</summary>
  8077. </member>
  8078. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey.PublicKeyPacket">
  8079. <summary>The public key packet associated with this private key, if available.</summary>
  8080. </member>
  8081. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey.Key">
  8082. <summary>The contained private key.</summary>
  8083. </member>
  8084. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey">
  8085. <remarks>General class to handle a PGP public key object.</remarks>
  8086. </member>
  8087. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.#ctor(Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.DateTime)">
  8088. <summary>
  8089. Create a PgpPublicKey from the passed in lightweight one.
  8090. </summary>
  8091. <remarks>
  8092. Note: the time passed in affects the value of the key's keyId, so you probably only want
  8093. to do this once for a lightweight key, or make sure you keep track of the time you used.
  8094. </remarks>
  8095. <param name="algorithm">Asymmetric algorithm type representing the public key.</param>
  8096. <param name="pubKey">Actual public key to associate.</param>
  8097. <param name="time">Date of creation.</param>
  8098. <exception cref="T:System.ArgumentException">If <c>pubKey</c> is not public.</exception>
  8099. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">On key creation problem.</exception>
  8100. </member>
  8101. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.#ctor(Org.BouncyCastle.Bcpg.PublicKeyPacket,Org.BouncyCastle.Bcpg.TrustPacket,System.Collections.IList)">
  8102. <summary>Constructor for a sub-key.</summary>
  8103. </member>
  8104. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.#ctor(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8105. <summary>Copy constructor.</summary>
  8106. <param name="pubKey">The public key to copy.</param>
  8107. </member>
  8108. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.Version">
  8109. <summary>The version of this key.</summary>
  8110. </member>
  8111. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.CreationTime">
  8112. <summary>The creation time of this key.</summary>
  8113. </member>
  8114. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.ValidDays">
  8115. <summary>The number of valid days from creation time - zero means no expiry.</summary>
  8116. <remarks>WARNING: This method will return 1 for keys with version > 3 that expire in less than 1 day</remarks>
  8117. </member>
  8118. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetTrustData">
  8119. <summary>Return the trust data associated with the public key, if present.</summary>
  8120. <returns>A byte array with trust data, null otherwise.</returns>
  8121. </member>
  8122. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetValidSeconds">
  8123. <summary>The number of valid seconds from creation time - zero means no expiry.</summary>
  8124. </member>
  8125. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.KeyId">
  8126. <summary>The keyId associated with the public key.</summary>
  8127. </member>
  8128. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetFingerprint">
  8129. <summary>The fingerprint of the key</summary>
  8130. </member>
  8131. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.IsEncryptionKey">
  8132. <summary>
  8133. Check if this key has an algorithm type that makes it suitable to use for encryption.
  8134. </summary>
  8135. <remarks>
  8136. Note: with version 4 keys KeyFlags subpackets should also be considered when present for
  8137. determining the preferred use of the key.
  8138. </remarks>
  8139. <returns>
  8140. <c>true</c> if this key algorithm is suitable for encryption.
  8141. </returns>
  8142. </member>
  8143. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.IsMasterKey">
  8144. <summary>True, if this is a master key.</summary>
  8145. </member>
  8146. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.Algorithm">
  8147. <summary>The algorithm code associated with the public key.</summary>
  8148. </member>
  8149. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.BitStrength">
  8150. <summary>The strength of the key in bits.</summary>
  8151. </member>
  8152. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetKey">
  8153. <summary>The public key contained in the object.</summary>
  8154. <returns>A lightweight public key.</returns>
  8155. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">If the key algorithm is not recognised.</exception>
  8156. </member>
  8157. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetUserIds">
  8158. <summary>Allows enumeration of any user IDs associated with the key.</summary>
  8159. <returns>An <c>IEnumerable</c> of <c>string</c> objects.</returns>
  8160. </member>
  8161. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetUserAttributes">
  8162. <summary>Allows enumeration of any user attribute vectors associated with the key.</summary>
  8163. <returns>An <c>IEnumerable</c> of <c>PgpUserAttributeSubpacketVector</c> objects.</returns>
  8164. </member>
  8165. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetSignaturesForId(System.String)">
  8166. <summary>Allows enumeration of any signatures associated with the passed in id.</summary>
  8167. <param name="id">The ID to be matched.</param>
  8168. <returns>An <c>IEnumerable</c> of <c>PgpSignature</c> objects.</returns>
  8169. </member>
  8170. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetSignaturesForUserAttribute(Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector)">
  8171. <summary>Allows enumeration of signatures associated with the passed in user attributes.</summary>
  8172. <param name="userAttributes">The vector of user attributes to be matched.</param>
  8173. <returns>An <c>IEnumerable</c> of <c>PgpSignature</c> objects.</returns>
  8174. </member>
  8175. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetSignaturesOfType(System.Int32)">
  8176. <summary>Allows enumeration of signatures of the passed in type that are on this key.</summary>
  8177. <param name="signatureType">The type of the signature to be returned.</param>
  8178. <returns>An <c>IEnumerable</c> of <c>PgpSignature</c> objects.</returns>
  8179. </member>
  8180. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetSignatures">
  8181. <summary>Allows enumeration of all signatures/certifications associated with this key.</summary>
  8182. <returns>An <c>IEnumerable</c> with all signatures/certifications.</returns>
  8183. </member>
  8184. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.GetKeySignatures">
  8185. Return all signatures/certifications directly associated with this key (ie, not to a user id).
  8186. @return an iterator (possibly empty) with all signatures/certifications.
  8187. </member>
  8188. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.IsRevoked">
  8189. <summary>Check whether this (sub)key has a revocation signature on it.</summary>
  8190. <returns>True, if this (sub)key has been revoked.</returns>
  8191. </member>
  8192. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.AddCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,System.String,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8193. <summary>Add a certification for an id to the given public key.</summary>
  8194. <param name="key">The key the certification is to be added to.</param>
  8195. <param name="id">The ID the certification is associated with.</param>
  8196. <param name="certification">The new certification.</param>
  8197. <returns>The re-certified key.</returns>
  8198. </member>
  8199. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.AddCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8200. <summary>Add a certification for the given UserAttributeSubpackets to the given public key.</summary>
  8201. <param name="key">The key the certification is to be added to.</param>
  8202. <param name="userAttributes">The attributes the certification is associated with.</param>
  8203. <param name="certification">The new certification.</param>
  8204. <returns>The re-certified key.</returns>
  8205. </member>
  8206. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.RemoveCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector)">
  8207. <summary>
  8208. Remove any certifications associated with a user attribute subpacket on a key.
  8209. </summary>
  8210. <param name="key">The key the certifications are to be removed from.</param>
  8211. <param name="userAttributes">The attributes to be removed.</param>
  8212. <returns>
  8213. The re-certified key, or null if the user attribute subpacket was not found on the key.
  8214. </returns>
  8215. </member>
  8216. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.RemoveCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,System.String)">
  8217. <summary>Remove any certifications associated with a given ID on a key.</summary>
  8218. <param name="key">The key the certifications are to be removed from.</param>
  8219. <param name="id">The ID that is to be removed.</param>
  8220. <returns>The re-certified key, or null if the ID was not found on the key.</returns>
  8221. </member>
  8222. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.RemoveCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,System.String,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8223. <summary>Remove a certification associated with a given ID on a key.</summary>
  8224. <param name="key">The key the certifications are to be removed from.</param>
  8225. <param name="id">The ID that the certfication is to be removed from.</param>
  8226. <param name="certification">The certfication to be removed.</param>
  8227. <returns>The re-certified key, or null if the certification was not found.</returns>
  8228. </member>
  8229. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.RemoveCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8230. <summary>Remove a certification associated with a given user attributes on a key.</summary>
  8231. <param name="key">The key the certifications are to be removed from.</param>
  8232. <param name="userAttributes">The user attributes that the certfication is to be removed from.</param>
  8233. <param name="certification">The certification to be removed.</param>
  8234. <returns>The re-certified key, or null if the certification was not found.</returns>
  8235. </member>
  8236. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.AddCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8237. <summary>Add a revocation or some other key certification to a key.</summary>
  8238. <param name="key">The key the revocation is to be added to.</param>
  8239. <param name="certification">The key signature to be added.</param>
  8240. <returns>The new changed public key object.</returns>
  8241. </member>
  8242. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey.RemoveCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature)">
  8243. <summary>Remove a certification from the key.</summary>
  8244. <param name="key">The key the certifications are to be removed from.</param>
  8245. <param name="certification">The certfication to be removed.</param>
  8246. <returns>The modified key, null if the certification was not found.</returns>
  8247. </member>
  8248. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyEncryptedData">
  8249. <remarks>A public key encrypted data object.</remarks>
  8250. </member>
  8251. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyEncryptedData.KeyId">
  8252. <summary>The key ID for the key used to encrypt the data.</summary>
  8253. </member>
  8254. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyEncryptedData.GetSymmetricAlgorithm(Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey)">
  8255. <summary>
  8256. Return the algorithm code for the symmetric algorithm used to encrypt the data.
  8257. </summary>
  8258. </member>
  8259. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyEncryptedData.GetDataStream(Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey)">
  8260. <summary>Return the decrypted data stream for the packet.</summary>
  8261. </member>
  8262. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing">
  8263. <remarks>
  8264. Class to hold a single master public key and its subkeys.
  8265. <p>
  8266. Often PGP keyring files consist of multiple master keys, if you are trying to process
  8267. or construct one of these you should use the <c>PgpPublicKeyRingBundle</c> class.
  8268. </p>
  8269. </remarks>
  8270. </member>
  8271. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing.GetPublicKey">
  8272. <summary>Return the first public key in the ring.</summary>
  8273. </member>
  8274. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing.GetPublicKey(System.Int64)">
  8275. <summary>Return the public key referred to by the passed in key ID if it is present.</summary>
  8276. </member>
  8277. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing.GetPublicKeys">
  8278. <summary>Allows enumeration of all the public keys.</summary>
  8279. <returns>An <c>IEnumerable</c> of <c>PgpPublicKey</c> objects.</returns>
  8280. </member>
  8281. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing.InsertPublicKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8282. <summary>
  8283. Returns a new key ring with the public key passed in either added or
  8284. replacing an existing one.
  8285. </summary>
  8286. <param name="pubRing">The public key ring to be modified.</param>
  8287. <param name="pubKey">The public key to be inserted.</param>
  8288. <returns>A new <c>PgpPublicKeyRing</c></returns>
  8289. </member>
  8290. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing.RemovePublicKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8291. <summary>Returns a new key ring with the public key passed in removed from the key ring.</summary>
  8292. <param name="pubRing">The public key ring to be modified.</param>
  8293. <param name="pubKey">The public key to be removed.</param>
  8294. <returns>A new <c>PgpPublicKeyRing</c>, or null if pubKey is not found.</returns>
  8295. </member>
  8296. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle">
  8297. <remarks>
  8298. Often a PGP key ring file is made up of a succession of master/sub-key key rings.
  8299. If you want to read an entire public key file in one hit this is the class for you.
  8300. </remarks>
  8301. </member>
  8302. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.#ctor(System.IO.Stream)">
  8303. <summary>Build a PgpPublicKeyRingBundle from the passed in input stream.</summary>
  8304. <param name="inputStream">Input stream containing data.</param>
  8305. <exception cref="T:System.IO.IOException">If a problem parsing the stream occurs.</exception>
  8306. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">If an object is encountered which isn't a PgpPublicKeyRing.</exception>
  8307. </member>
  8308. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.Count">
  8309. <summary>Return the number of key rings in this collection.</summary>
  8310. </member>
  8311. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetKeyRings">
  8312. <summary>Allow enumeration of the public key rings making up this collection.</summary>
  8313. </member>
  8314. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetKeyRings(System.String)">
  8315. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8316. <param name="userId">The user ID to be matched.</param>
  8317. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8318. </member>
  8319. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetKeyRings(System.String,System.Boolean)">
  8320. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8321. <param name="userId">The user ID to be matched.</param>
  8322. <param name="matchPartial">If true, userId need only be a substring of an actual ID string to match.</param>
  8323. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8324. </member>
  8325. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetKeyRings(System.String,System.Boolean,System.Boolean)">
  8326. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8327. <param name="userId">The user ID to be matched.</param>
  8328. <param name="matchPartial">If true, userId need only be a substring of an actual ID string to match.</param>
  8329. <param name="ignoreCase">If true, case is ignored in user ID comparisons.</param>
  8330. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8331. </member>
  8332. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetPublicKey(System.Int64)">
  8333. <summary>Return the PGP public key associated with the given key id.</summary>
  8334. <param name="keyId">The ID of the public key to return.</param>
  8335. </member>
  8336. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.GetPublicKeyRing(System.Int64)">
  8337. <summary>Return the public key ring which contains the key referred to by keyId</summary>
  8338. <param name="keyId">key ID to match against</param>
  8339. </member>
  8340. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.Contains(System.Int64)">
  8341. <summary>
  8342. Return true if a key matching the passed in key ID is present, false otherwise.
  8343. </summary>
  8344. <param name="keyID">key ID to look for.</param>
  8345. </member>
  8346. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.AddPublicKeyRing(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing)">
  8347. <summary>
  8348. Return a new bundle containing the contents of the passed in bundle and
  8349. the passed in public key ring.
  8350. </summary>
  8351. <param name="bundle">The <c>PgpPublicKeyRingBundle</c> the key ring is to be added to.</param>
  8352. <param name="publicKeyRing">The key ring to be added.</param>
  8353. <returns>A new <c>PgpPublicKeyRingBundle</c> merging the current one with the passed in key ring.</returns>
  8354. <exception cref="T:System.ArgumentException">If the keyId for the passed in key ring is already present.</exception>
  8355. </member>
  8356. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle.RemovePublicKeyRing(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRingBundle,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing)">
  8357. <summary>
  8358. Return a new bundle containing the contents of the passed in bundle with
  8359. the passed in public key ring removed.
  8360. </summary>
  8361. <param name="bundle">The <c>PgpPublicKeyRingBundle</c> the key ring is to be removed from.</param>
  8362. <param name="publicKeyRing">The key ring to be removed.</param>
  8363. <returns>A new <c>PgpPublicKeyRingBundle</c> not containing the passed in key ring.</returns>
  8364. <exception cref="T:System.ArgumentException">If the keyId for the passed in key ring is not present.</exception>
  8365. </member>
  8366. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey">
  8367. <remarks>General class to handle a PGP secret key object.</remarks>
  8368. </member>
  8369. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Char[],Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8370. <remarks>
  8371. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8372. the historical behaviour of the library (1.7 and earlier).
  8373. </remarks>
  8374. </member>
  8375. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8376. <remarks>
  8377. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8378. the historical behaviour of the library (1.7 and earlier).
  8379. </remarks>
  8380. </member>
  8381. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Boolean,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8382. <remarks>
  8383. If utf8PassPhrase is true, conversion of the passphrase to bytes uses Encoding.UTF8.GetBytes(), otherwise the conversion
  8384. is performed using Convert.ToByte(), which is the historical behaviour of the library (1.7 and earlier).
  8385. </remarks>
  8386. </member>
  8387. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,System.Byte[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8388. <remarks>
  8389. Allows the caller to handle the encoding of the passphrase to bytes.
  8390. </remarks>
  8391. </member>
  8392. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8393. <remarks>
  8394. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8395. the historical behaviour of the library (1.7 and earlier).
  8396. </remarks>
  8397. </member>
  8398. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Boolean,System.Char[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8399. <remarks>
  8400. If utf8PassPhrase is true, conversion of the passphrase to bytes uses Encoding.UTF8.GetBytes(), otherwise the conversion
  8401. is performed using Convert.ToByte(), which is the historical behaviour of the library (1.7 and earlier).
  8402. </remarks>
  8403. </member>
  8404. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.#ctor(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpKeyPair,System.String,Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag,System.Byte[],System.Boolean,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector,Org.BouncyCastle.Security.SecureRandom)">
  8405. <remarks>
  8406. Allows the caller to handle the encoding of the passphrase to bytes.
  8407. </remarks>
  8408. </member>
  8409. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.IsSigningKey">
  8410. <summary>
  8411. Check if this key has an algorithm type that makes it suitable to use for signing.
  8412. </summary>
  8413. <remarks>
  8414. Note: with version 4 keys KeyFlags subpackets should also be considered when present for
  8415. determining the preferred use of the key.
  8416. </remarks>
  8417. <returns>
  8418. <c>true</c> if this key algorithm is suitable for use with signing.
  8419. </returns>
  8420. </member>
  8421. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.IsMasterKey">
  8422. <summary>True, if this is a master key.</summary>
  8423. </member>
  8424. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.IsPrivateKeyEmpty">
  8425. <summary>Detect if the Secret Key's Private Key is empty or not</summary>
  8426. </member>
  8427. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.KeyEncryptionAlgorithm">
  8428. <summary>The algorithm the key is encrypted with.</summary>
  8429. </member>
  8430. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.KeyId">
  8431. <summary>The key ID of the public key associated with this key.</summary>
  8432. </member>
  8433. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.S2kUsage">
  8434. <summary>Return the S2K usage associated with this key.</summary>
  8435. </member>
  8436. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.S2k">
  8437. <summary>Return the S2K used to process this key.</summary>
  8438. </member>
  8439. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.PublicKey">
  8440. <summary>The public key associated with this key.</summary>
  8441. </member>
  8442. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.UserIds">
  8443. <summary>Allows enumeration of any user IDs associated with the key.</summary>
  8444. <returns>An <c>IEnumerable</c> of <c>string</c> objects.</returns>
  8445. </member>
  8446. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.UserAttributes">
  8447. <summary>Allows enumeration of any user attribute vectors associated with the key.</summary>
  8448. <returns>An <c>IEnumerable</c> of <c>string</c> objects.</returns>
  8449. </member>
  8450. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ExtractPrivateKey(System.Char[])">
  8451. <summary>Extract a <c>PgpPrivateKey</c> from this secret key's encrypted contents.</summary>
  8452. <remarks>
  8453. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8454. the historical behaviour of the library (1.7 and earlier).
  8455. </remarks>
  8456. </member>
  8457. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ExtractPrivateKeyUtf8(System.Char[])">
  8458. <summary>Extract a <c>PgpPrivateKey</c> from this secret key's encrypted contents.</summary>
  8459. <remarks>
  8460. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8461. </remarks>
  8462. </member>
  8463. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ExtractPrivateKeyRaw(System.Byte[])">
  8464. <summary>Extract a <c>PgpPrivateKey</c> from this secret key's encrypted contents.</summary>
  8465. <remarks>
  8466. Allows the caller to handle the encoding of the passphrase to bytes.
  8467. </remarks>
  8468. </member>
  8469. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.CopyWithNewPassword(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey,System.Char[],System.Char[],Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom)">
  8470. <summary>
  8471. Return a copy of the passed in secret key, encrypted using a new password
  8472. and the passed in algorithm.
  8473. </summary>
  8474. <remarks>
  8475. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8476. the historical behaviour of the library (1.7 and earlier).
  8477. </remarks>
  8478. <param name="key">The PgpSecretKey to be copied.</param>
  8479. <param name="oldPassPhrase">The current password for the key.</param>
  8480. <param name="newPassPhrase">The new password for the key.</param>
  8481. <param name="newEncAlgorithm">The algorithm to be used for the encryption.</param>
  8482. <param name="rand">Source of randomness.</param>
  8483. </member>
  8484. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.CopyWithNewPasswordUtf8(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey,System.Char[],System.Char[],Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom)">
  8485. <summary>
  8486. Return a copy of the passed in secret key, encrypted using a new password
  8487. and the passed in algorithm.
  8488. </summary>
  8489. <remarks>
  8490. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8491. </remarks>
  8492. <param name="key">The PgpSecretKey to be copied.</param>
  8493. <param name="oldPassPhrase">The current password for the key.</param>
  8494. <param name="newPassPhrase">The new password for the key.</param>
  8495. <param name="newEncAlgorithm">The algorithm to be used for the encryption.</param>
  8496. <param name="rand">Source of randomness.</param>
  8497. </member>
  8498. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.CopyWithNewPasswordRaw(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey,System.Byte[],System.Byte[],Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom)">
  8499. <summary>
  8500. Return a copy of the passed in secret key, encrypted using a new password
  8501. and the passed in algorithm.
  8502. </summary>
  8503. <remarks>
  8504. Allows the caller to handle the encoding of the passphrase to bytes.
  8505. </remarks>
  8506. <param name="key">The PgpSecretKey to be copied.</param>
  8507. <param name="rawOldPassPhrase">The current password for the key.</param>
  8508. <param name="rawNewPassPhrase">The new password for the key.</param>
  8509. <param name="newEncAlgorithm">The algorithm to be used for the encryption.</param>
  8510. <param name="rand">Source of randomness.</param>
  8511. </member>
  8512. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ReplacePublicKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8513. <summary>Replace the passed the public key on the passed in secret key.</summary>
  8514. <param name="secretKey">Secret key to change.</param>
  8515. <param name="publicKey">New public key.</param>
  8516. <returns>A new secret key.</returns>
  8517. <exception cref="T:System.ArgumentException">If KeyId's do not match.</exception>
  8518. </member>
  8519. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExpr(System.IO.Stream,System.Char[],Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8520. <summary>
  8521. Parse a secret key from one of the GPG S expression keys associating it with the passed in public key.
  8522. </summary>
  8523. <remarks>
  8524. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8525. the historical behaviour of the library (1.7 and earlier).
  8526. </remarks>
  8527. </member>
  8528. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExprUtf8(System.IO.Stream,System.Char[],Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8529. <summary>
  8530. Parse a secret key from one of the GPG S expression keys associating it with the passed in public key.
  8531. </summary>
  8532. <remarks>
  8533. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8534. </remarks>
  8535. </member>
  8536. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExprRaw(System.IO.Stream,System.Byte[],Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8537. <summary>
  8538. Parse a secret key from one of the GPG S expression keys associating it with the passed in public key.
  8539. </summary>
  8540. <remarks>
  8541. Allows the caller to handle the encoding of the passphrase to bytes.
  8542. </remarks>
  8543. </member>
  8544. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExpr(System.IO.Stream,System.Char[])">
  8545. <summary>
  8546. Parse a secret key from one of the GPG S expression keys.
  8547. </summary>
  8548. <remarks>
  8549. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8550. the historical behaviour of the library (1.7 and earlier).
  8551. </remarks>
  8552. </member>
  8553. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExprUtf8(System.IO.Stream,System.Char[])">
  8554. <summary>
  8555. Parse a secret key from one of the GPG S expression keys.
  8556. </summary>
  8557. <remarks>
  8558. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8559. </remarks>
  8560. </member>
  8561. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.ParseSecretKeyFromSExprRaw(System.IO.Stream,System.Byte[])">
  8562. <summary>
  8563. Parse a secret key from one of the GPG S expression keys.
  8564. </summary>
  8565. <remarks>
  8566. Allows the caller to handle the encoding of the passphrase to bytes.
  8567. </remarks>
  8568. </member>
  8569. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey.DoParseSecretKeyFromSExpr(System.IO.Stream,System.Byte[],System.Boolean)">
  8570. <summary>
  8571. Parse a secret key from one of the GPG S expression keys.
  8572. </summary>
  8573. </member>
  8574. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing">
  8575. <remarks>
  8576. Class to hold a single master secret key and its subkeys.
  8577. <p>
  8578. Often PGP keyring files consist of multiple master keys, if you are trying to process
  8579. or construct one of these you should use the <c>PgpSecretKeyRingBundle</c> class.
  8580. </p>
  8581. </remarks>
  8582. </member>
  8583. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.GetPublicKey">
  8584. <summary>Return the public key for the master key.</summary>
  8585. </member>
  8586. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.GetSecretKey">
  8587. <summary>Return the master private key.</summary>
  8588. </member>
  8589. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.GetSecretKeys">
  8590. <summary>Allows enumeration of the secret keys.</summary>
  8591. <returns>An <c>IEnumerable</c> of <c>PgpSecretKey</c> objects.</returns>
  8592. </member>
  8593. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.GetExtraPublicKeys">
  8594. <summary>
  8595. Return an iterator of the public keys in the secret key ring that
  8596. have no matching private key. At the moment only personal certificate data
  8597. appears in this fashion.
  8598. </summary>
  8599. <returns>An <c>IEnumerable</c> of unattached, or extra, public keys.</returns>
  8600. </member>
  8601. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.ReplacePublicKeys(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKeyRing)">
  8602. <summary>
  8603. Replace the public key set on the secret ring with the corresponding key off the public ring.
  8604. </summary>
  8605. <param name="secretRing">Secret ring to be changed.</param>
  8606. <param name="publicRing">Public ring containing the new public key set.</param>
  8607. </member>
  8608. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.CopyWithNewPassword(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing,System.Char[],System.Char[],Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Security.SecureRandom)">
  8609. <summary>
  8610. Return a copy of the passed in secret key ring, with the master key and sub keys encrypted
  8611. using a new password and the passed in algorithm.
  8612. </summary>
  8613. <param name="ring">The <c>PgpSecretKeyRing</c> to be copied.</param>
  8614. <param name="oldPassPhrase">The current password for key.</param>
  8615. <param name="newPassPhrase">The new password for the key.</param>
  8616. <param name="newEncAlgorithm">The algorithm to be used for the encryption.</param>
  8617. <param name="rand">Source of randomness.</param>
  8618. </member>
  8619. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.InsertSecretKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing,Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey)">
  8620. <summary>
  8621. Returns a new key ring with the secret key passed in either added or
  8622. replacing an existing one with the same key ID.
  8623. </summary>
  8624. <param name="secRing">The secret key ring to be modified.</param>
  8625. <param name="secKey">The secret key to be inserted.</param>
  8626. <returns>A new <c>PgpSecretKeyRing</c></returns>
  8627. </member>
  8628. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing.RemoveSecretKey(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing,Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKey)">
  8629. <summary>Returns a new key ring with the secret key passed in removed from the key ring.</summary>
  8630. <param name="secRing">The secret key ring to be modified.</param>
  8631. <param name="secKey">The secret key to be removed.</param>
  8632. <returns>A new <c>PgpSecretKeyRing</c>, or null if secKey is not found.</returns>
  8633. </member>
  8634. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle">
  8635. <remarks>
  8636. Often a PGP key ring file is made up of a succession of master/sub-key key rings.
  8637. If you want to read an entire secret key file in one hit this is the class for you.
  8638. </remarks>
  8639. </member>
  8640. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.#ctor(System.IO.Stream)">
  8641. <summary>Build a PgpSecretKeyRingBundle from the passed in input stream.</summary>
  8642. <param name="inputStream">Input stream containing data.</param>
  8643. <exception cref="T:System.IO.IOException">If a problem parsing the stream occurs.</exception>
  8644. <exception cref="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpException">If an object is encountered which isn't a PgpSecretKeyRing.</exception>
  8645. </member>
  8646. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.Count">
  8647. <summary>Return the number of rings in this collection.</summary>
  8648. </member>
  8649. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetKeyRings">
  8650. <summary>Allow enumeration of the secret key rings making up this collection.</summary>
  8651. </member>
  8652. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetKeyRings(System.String)">
  8653. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8654. <param name="userId">The user ID to be matched.</param>
  8655. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8656. </member>
  8657. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetKeyRings(System.String,System.Boolean)">
  8658. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8659. <param name="userId">The user ID to be matched.</param>
  8660. <param name="matchPartial">If true, userId need only be a substring of an actual ID string to match.</param>
  8661. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8662. </member>
  8663. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetKeyRings(System.String,System.Boolean,System.Boolean)">
  8664. <summary>Allow enumeration of the key rings associated with the passed in userId.</summary>
  8665. <param name="userId">The user ID to be matched.</param>
  8666. <param name="matchPartial">If true, userId need only be a substring of an actual ID string to match.</param>
  8667. <param name="ignoreCase">If true, case is ignored in user ID comparisons.</param>
  8668. <returns>An <c>IEnumerable</c> of key rings which matched (possibly none).</returns>
  8669. </member>
  8670. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetSecretKey(System.Int64)">
  8671. <summary>Return the PGP secret key associated with the given key id.</summary>
  8672. <param name="keyId">The ID of the secret key to return.</param>
  8673. </member>
  8674. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.GetSecretKeyRing(System.Int64)">
  8675. <summary>Return the secret key ring which contains the key referred to by keyId</summary>
  8676. <param name="keyId">The ID of the secret key</param>
  8677. </member>
  8678. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.Contains(System.Int64)">
  8679. <summary>
  8680. Return true if a key matching the passed in key ID is present, false otherwise.
  8681. </summary>
  8682. <param name="keyID">key ID to look for.</param>
  8683. </member>
  8684. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.AddSecretKeyRing(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle,Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing)">
  8685. <summary>
  8686. Return a new bundle containing the contents of the passed in bundle and
  8687. the passed in secret key ring.
  8688. </summary>
  8689. <param name="bundle">The <c>PgpSecretKeyRingBundle</c> the key ring is to be added to.</param>
  8690. <param name="secretKeyRing">The key ring to be added.</param>
  8691. <returns>A new <c>PgpSecretKeyRingBundle</c> merging the current one with the passed in key ring.</returns>
  8692. <exception cref="T:System.ArgumentException">If the keyId for the passed in key ring is already present.</exception>
  8693. </member>
  8694. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle.RemoveSecretKeyRing(Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRingBundle,Org.BouncyCastle.Bcpg.OpenPgp.PgpSecretKeyRing)">
  8695. <summary>
  8696. Return a new bundle containing the contents of the passed in bundle with
  8697. the passed in secret key ring removed.
  8698. </summary>
  8699. <param name="bundle">The <c>PgpSecretKeyRingBundle</c> the key ring is to be removed from.</param>
  8700. <param name="secretKeyRing">The key ring to be removed.</param>
  8701. <returns>A new <c>PgpSecretKeyRingBundle</c> not containing the passed in key ring.</returns>
  8702. <exception cref="T:System.ArgumentException">If the keyId for the passed in key ring is not present.</exception>
  8703. </member>
  8704. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature">
  8705. <remarks>A PGP signature object.</remarks>
  8706. </member>
  8707. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.Version">
  8708. <summary>The OpenPGP version number for this signature.</summary>
  8709. </member>
  8710. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.KeyAlgorithm">
  8711. <summary>The key algorithm associated with this signature.</summary>
  8712. </member>
  8713. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.HashAlgorithm">
  8714. <summary>The hash algorithm associated with this signature.</summary>
  8715. </member>
  8716. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.IsCertification">
  8717. <summary>Return true if this signature represents a certification.</summary>
  8718. </member>
  8719. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.VerifyCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8720. <summary>
  8721. Verify the signature as certifying the passed in public key as associated
  8722. with the passed in user attributes.
  8723. </summary>
  8724. <param name="userAttributes">User attributes the key was stored under.</param>
  8725. <param name="key">The key to be verified.</param>
  8726. <returns>True, if the signature matches, false otherwise.</returns>
  8727. </member>
  8728. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.VerifyCertification(System.String,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8729. <summary>
  8730. Verify the signature as certifying the passed in public key as associated
  8731. with the passed in ID.
  8732. </summary>
  8733. <param name="id">ID the key was stored under.</param>
  8734. <param name="key">The key to be verified.</param>
  8735. <returns>True, if the signature matches, false otherwise.</returns>
  8736. </member>
  8737. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.VerifyCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8738. <summary>Verify a certification for the passed in key against the passed in master key.</summary>
  8739. <param name="masterKey">The key we are verifying against.</param>
  8740. <param name="pubKey">The key we are verifying.</param>
  8741. <returns>True, if the certification is valid, false otherwise.</returns>
  8742. </member>
  8743. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.VerifyCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8744. <summary>Verify a key certification, such as revocation, for the passed in key.</summary>
  8745. <param name="pubKey">The key we are checking.</param>
  8746. <returns>True, if the certification is valid, false otherwise.</returns>
  8747. </member>
  8748. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.KeyId">
  8749. <summary>The ID of the key that created the signature.</summary>
  8750. </member>
  8751. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.CreationTime">
  8752. <summary>The creation time of this signature.</summary>
  8753. </member>
  8754. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.HasSubpackets">
  8755. <summary>
  8756. Return true if the signature has either hashed or unhashed subpackets.
  8757. </summary>
  8758. </member>
  8759. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignature.IsCertification(System.Int32)">
  8760. <summary>
  8761. Return true if the passed in signature type represents a certification, false if the signature type is not.
  8762. </summary>
  8763. <param name="signatureType"></param>
  8764. <returns>true if signatureType is a certification, false otherwise.</returns>
  8765. </member>
  8766. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator">
  8767. <remarks>Generator for PGP signatures.</remarks>
  8768. </member>
  8769. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.#ctor(Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  8770. <summary>Create a generator for the passed in keyAlgorithm and hashAlgorithm codes.</summary>
  8771. </member>
  8772. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.InitSign(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey)">
  8773. <summary>Initialise the generator for signing.</summary>
  8774. </member>
  8775. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.InitSign(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey,Org.BouncyCastle.Security.SecureRandom)">
  8776. <summary>Initialise the generator for signing.</summary>
  8777. </member>
  8778. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.GenerateOnePassVersion(System.Boolean)">
  8779. <summary>Return the one pass header associated with the current signature.</summary>
  8780. </member>
  8781. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.Generate">
  8782. <summary>Return a signature object containing the current signature state.</summary>
  8783. </member>
  8784. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.GenerateCertification(System.String,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8785. <summary>Generate a certification for the passed in ID and key.</summary>
  8786. <param name="id">The ID we are certifying against the public key.</param>
  8787. <param name="pubKey">The key we are certifying against the ID.</param>
  8788. <returns>The certification.</returns>
  8789. </member>
  8790. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.GenerateCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8791. <summary>Generate a certification for the passed in userAttributes.</summary>
  8792. <param name="userAttributes">The ID we are certifying against the public key.</param>
  8793. <param name="pubKey">The key we are certifying against the ID.</param>
  8794. <returns>The certification.</returns>
  8795. </member>
  8796. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.GenerateCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey,Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8797. <summary>Generate a certification for the passed in key against the passed in master key.</summary>
  8798. <param name="masterKey">The key we are certifying against.</param>
  8799. <param name="pubKey">The key we are certifying.</param>
  8800. <returns>The certification.</returns>
  8801. </member>
  8802. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureGenerator.GenerateCertification(Org.BouncyCastle.Bcpg.OpenPgp.PgpPublicKey)">
  8803. <summary>Generate a certification, such as a revocation, for the passed in key.</summary>
  8804. <param name="pubKey">The key we are certifying.</param>
  8805. <returns>The certification.</returns>
  8806. </member>
  8807. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureList">
  8808. <remarks>A list of PGP signatures - normally in the signature block after literal data.</remarks>
  8809. </member>
  8810. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator">
  8811. <remarks>Generator for signature subpackets.</remarks>
  8812. </member>
  8813. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetTrust(System.Boolean,System.Int32,System.Int32)">
  8814. <summary>
  8815. Add a TrustSignature packet to the signature. The values for depth and trust are largely
  8816. installation dependent but there are some guidelines in RFC 4880 - 5.2.3.13.
  8817. </summary>
  8818. <param name="isCritical">true if the packet is critical.</param>
  8819. <param name="depth">depth level.</param>
  8820. <param name="trustAmount">trust amount.</param>
  8821. </member>
  8822. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetKeyExpirationTime(System.Boolean,System.Int64)">
  8823. <summary>
  8824. Set the number of seconds a key is valid for after the time of its creation.
  8825. A value of zero means the key never expires.
  8826. </summary>
  8827. <param name="isCritical">True, if should be treated as critical, false otherwise.</param>
  8828. <param name="seconds">The number of seconds the key is valid, or zero if no expiry.</param>
  8829. </member>
  8830. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetSignatureExpirationTime(System.Boolean,System.Int64)">
  8831. <summary>
  8832. Set the number of seconds a signature is valid for after the time of its creation.
  8833. A value of zero means the signature never expires.
  8834. </summary>
  8835. <param name="isCritical">True, if should be treated as critical, false otherwise.</param>
  8836. <param name="seconds">The number of seconds the signature is valid, or zero if no expiry.</param>
  8837. </member>
  8838. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetSignatureCreationTime(System.Boolean,System.DateTime)">
  8839. <summary>
  8840. Set the creation time for the signature.
  8841. <p>
  8842. Note: this overrides the generation of a creation time when the signature
  8843. is generated.</p>
  8844. </summary>
  8845. </member>
  8846. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetRevocationReason(System.Boolean,Org.BouncyCastle.Bcpg.RevocationReasonTag,System.String)">
  8847. <summary>
  8848. Sets revocation reason sub packet
  8849. </summary>
  8850. </member>
  8851. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetRevocationKey(System.Boolean,Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,System.Byte[])">
  8852. <summary>
  8853. Sets revocation key sub packet
  8854. </summary>
  8855. </member>
  8856. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketGenerator.SetIssuerKeyID(System.Boolean,System.Int64)">
  8857. <summary>
  8858. Sets issuer key sub packet
  8859. </summary>
  8860. </member>
  8861. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector">
  8862. <remarks>Container for a list of signature subpackets.</remarks>
  8863. </member>
  8864. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector.HasSubpacket(Org.BouncyCastle.Bcpg.SignatureSubpacketTag)">
  8865. Return true if a particular subpacket type exists.
  8866. @param type type to look for.
  8867. @return true if present, false otherwise.
  8868. </member>
  8869. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector.GetSubpackets(Org.BouncyCastle.Bcpg.SignatureSubpacketTag)">
  8870. Return all signature subpackets of the passed in type.
  8871. @param type subpacket type code
  8872. @return an array of zero or more matching subpackets.
  8873. </member>
  8874. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector.GetSignatureExpirationTime">
  8875. <summary>
  8876. Return the number of seconds a signature is valid for after its creation date.
  8877. A value of zero means the signature never expires.
  8878. </summary>
  8879. <returns>Seconds a signature is valid for.</returns>
  8880. </member>
  8881. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector.GetKeyExpirationTime">
  8882. <summary>
  8883. Return the number of seconds a key is valid for after its creation date.
  8884. A value of zero means the key never expires.
  8885. </summary>
  8886. <returns>Seconds a signature is valid for.</returns>
  8887. </member>
  8888. <member name="P:Org.BouncyCastle.Bcpg.OpenPgp.PgpSignatureSubpacketVector.Count">
  8889. <summary>Return the number of packets this vector contains.</summary>
  8890. </member>
  8891. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpUserAttributeSubpacketVector">
  8892. <remarks>Container for a list of user attribute subpackets.</remarks>
  8893. </member>
  8894. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities">
  8895. <remarks>Basic utility class.</remarks>
  8896. </member>
  8897. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.MakeKeyFromPassPhrase(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.S2k,System.Char[])">
  8898. <remarks>
  8899. Conversion of the passphrase characters to bytes is performed using Convert.ToByte(), which is
  8900. the historical behaviour of the library (1.7 and earlier).
  8901. </remarks>
  8902. </member>
  8903. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.MakeKeyFromPassPhraseUtf8(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.S2k,System.Char[])">
  8904. <remarks>
  8905. The passphrase is encoded to bytes using UTF8 (Encoding.UTF8.GetBytes).
  8906. </remarks>
  8907. </member>
  8908. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.MakeKeyFromPassPhraseRaw(Org.BouncyCastle.Bcpg.SymmetricKeyAlgorithmTag,Org.BouncyCastle.Bcpg.S2k,System.Byte[])">
  8909. <remarks>
  8910. Allows the caller to handle the encoding of the passphrase to bytes.
  8911. </remarks>
  8912. </member>
  8913. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.WriteFileToLiteralData(System.IO.Stream,System.Char,System.IO.FileInfo)">
  8914. <summary>Write out the passed in file as a literal data packet.</summary>
  8915. </member>
  8916. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.WriteFileToLiteralData(System.IO.Stream,System.Char,System.IO.FileInfo,System.Byte[])">
  8917. <summary>Write out the passed in file as a literal data packet in partial packet format.</summary>
  8918. </member>
  8919. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpUtilities.GetDecoderStream(System.IO.Stream)">
  8920. <summary>
  8921. Return either an ArmoredInputStream or a BcpgInputStream based on whether
  8922. the initial characters of the stream are binary PGP encodings or not.
  8923. </summary>
  8924. </member>
  8925. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator">
  8926. <remarks>Generator for old style PGP V3 Signatures.</remarks>
  8927. </member>
  8928. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator.#ctor(Org.BouncyCastle.Bcpg.PublicKeyAlgorithmTag,Org.BouncyCastle.Bcpg.HashAlgorithmTag)">
  8929. <summary>Create a generator for the passed in keyAlgorithm and hashAlgorithm codes.</summary>
  8930. </member>
  8931. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator.InitSign(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey)">
  8932. <summary>Initialise the generator for signing.</summary>
  8933. </member>
  8934. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator.InitSign(System.Int32,Org.BouncyCastle.Bcpg.OpenPgp.PgpPrivateKey,Org.BouncyCastle.Security.SecureRandom)">
  8935. <summary>Initialise the generator for signing.</summary>
  8936. </member>
  8937. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator.GenerateOnePassVersion(System.Boolean)">
  8938. <summary>Return the one pass header associated with the current signature.</summary>
  8939. </member>
  8940. <member name="M:Org.BouncyCastle.Bcpg.OpenPgp.PgpV3SignatureGenerator.Generate">
  8941. <summary>Return a V3 signature object containing the current signature state.</summary>
  8942. </member>
  8943. <member name="T:Org.BouncyCastle.Bcpg.OpenPgp.SXprUtilities">
  8944. Utility functions for looking a S-expression keys. This class will move when it finds a better home!
  8945. <p>
  8946. Format documented here:
  8947. http://git.gnupg.org/cgi-bin/gitweb.cgi?p=gnupg.git;a=blob;f=agent/keyformat.txt;h=42c4b1f06faf1bbe71ffadc2fee0fad6bec91a97;hb=refs/heads/master
  8948. </p>
  8949. </member>
  8950. <member name="M:Org.BouncyCastle.Cmp.GeneralPkiMessage.#ctor(Org.BouncyCastle.Asn1.Cmp.PkiMessage)">
  8951. <summary>
  8952. Wrap a PKIMessage ASN.1 structure.
  8953. </summary>
  8954. <param name="pkiMessage">PKI message.</param>
  8955. </member>
  8956. <member name="M:Org.BouncyCastle.Cmp.GeneralPkiMessage.#ctor(System.Byte[])">
  8957. <summary>
  8958. Create a PKIMessage from the passed in bytes.
  8959. </summary>
  8960. <param name="encoding">BER/DER encoding of the PKIMessage</param>
  8961. </member>
  8962. <member name="P:Org.BouncyCastle.Cmp.GeneralPkiMessage.HasProtection">
  8963. <summary>
  8964. Return true if this message has protection bits on it. A return value of true
  8965. indicates the message can be used to construct a ProtectedPKIMessage.
  8966. </summary>
  8967. </member>
  8968. <member name="T:Org.BouncyCastle.Cmp.ProtectedPkiMessage">
  8969. <summary>
  8970. Wrapper for a PKIMessage with protection attached to it.
  8971. </summary>
  8972. </member>
  8973. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.#ctor(Org.BouncyCastle.Cmp.GeneralPkiMessage)">
  8974. <summary>
  8975. Wrap a general message.
  8976. </summary>
  8977. <exception cref="T:System.ArgumentException">If the general message does not have protection.</exception>
  8978. <param name="pkiMessage">The General message</param>
  8979. </member>
  8980. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.#ctor(Org.BouncyCastle.Asn1.Cmp.PkiMessage)">
  8981. <summary>
  8982. Wrap a PKI message.
  8983. </summary>
  8984. <exception cref="T:System.ArgumentException">If the PKI message does not have protection.</exception>
  8985. <param name="pkiMessage">The PKI message</param>
  8986. </member>
  8987. <member name="P:Org.BouncyCastle.Cmp.ProtectedPkiMessage.Header">
  8988. <summary>
  8989. Message header
  8990. </summary>
  8991. </member>
  8992. <member name="P:Org.BouncyCastle.Cmp.ProtectedPkiMessage.Body">
  8993. <summary>
  8994. Message Body
  8995. </summary>
  8996. </member>
  8997. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.ToAsn1Message">
  8998. <summary>
  8999. Return the underlying ASN.1 structure contained in this object.
  9000. </summary>
  9001. <returns>PKI Message structure</returns>
  9002. </member>
  9003. <member name="P:Org.BouncyCastle.Cmp.ProtectedPkiMessage.HasPasswordBasedMacProtected">
  9004. <summary>
  9005. Determine whether the message is protected by a password based MAC. Use verify(PKMACBuilder, char[])
  9006. to verify the message if this method returns true.
  9007. </summary>
  9008. <returns>true if protection MAC PBE based, false otherwise.</returns>
  9009. </member>
  9010. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.GetCertificates">
  9011. <summary>
  9012. Return the extra certificates associated with this message.
  9013. </summary>
  9014. <returns>an array of extra certificates, zero length if none present.</returns>
  9015. </member>
  9016. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.Verify(Org.BouncyCastle.Crypto.IVerifierFactory)">
  9017. <summary>
  9018. Verify a message with a public key based signature attached.
  9019. </summary>
  9020. <param name="verifierFactory">a factory of signature verifiers.</param>
  9021. <returns>true if the provider is able to create a verifier that validates the signature, false otherwise.</returns>
  9022. </member>
  9023. <member name="M:Org.BouncyCastle.Cmp.ProtectedPkiMessage.Verify(Org.BouncyCastle.Crmf.PKMacBuilder,System.Char[])">
  9024. <summary>
  9025. Verify a message with password based MAC protection.
  9026. </summary>
  9027. <param name="pkMacBuilder">MAC builder that can be used to construct the appropriate MacCalculator</param>
  9028. <param name="password">the MAC password</param>
  9029. <returns>true if the passed in password and MAC builder verify the message, false otherwise.</returns>
  9030. <exception cref="T:System.InvalidOperationException">if algorithm not MAC based, or an exception is thrown verifying the MAC.</exception>
  9031. </member>
  9032. <member name="T:Org.BouncyCastle.Cms.CmsAttributeTableParameter">
  9033. <remarks>
  9034. The 'Signature' parameter is only available when generating unsigned attributes.
  9035. </remarks>
  9036. </member>
  9037. <member name="T:Org.BouncyCastle.Cms.CmsAuthenticatedData">
  9038. containing class for an CMS Authenticated Data object
  9039. </member>
  9040. <member name="P:Org.BouncyCastle.Cms.CmsAuthenticatedData.MacAlgOid">
  9041. return the object identifier for the content MAC algorithm.
  9042. </member>
  9043. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedData.GetRecipientInfos">
  9044. return a store of the intended recipients for this message
  9045. </member>
  9046. <member name="P:Org.BouncyCastle.Cms.CmsAuthenticatedData.ContentInfo">
  9047. return the ContentInfo
  9048. </member>
  9049. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedData.GetAuthAttrs">
  9050. return a table of the digested attributes indexed by
  9051. the OID of the attribute.
  9052. </member>
  9053. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedData.GetUnauthAttrs">
  9054. return a table of the undigested attributes indexed by
  9055. the OID of the attribute.
  9056. </member>
  9057. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedData.GetEncoded">
  9058. return the ASN.1 encoded representation of this object.
  9059. </member>
  9060. <member name="T:Org.BouncyCastle.Cms.CmsAuthenticatedDataGenerator">
  9061. General class for generating a CMS authenticated-data message.
  9062. A simple example of usage.
  9063. <pre>
  9064. CMSAuthenticatedDataGenerator fact = new CMSAuthenticatedDataGenerator();
  9065. fact.addKeyTransRecipient(cert);
  9066. CMSAuthenticatedData data = fact.generate(content, algorithm, "BC");
  9067. </pre>
  9068. </member>
  9069. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataGenerator.#ctor">
  9070. base constructor
  9071. </member>
  9072. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9073. constructor allowing specific source of randomness
  9074. @param rand instance of SecureRandom to use
  9075. </member>
  9076. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String,Org.BouncyCastle.Crypto.CipherKeyGenerator)">
  9077. generate an enveloped object that contains an CMS Enveloped Data
  9078. object using the given provider and the passed in key generator.
  9079. </member>
  9080. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String)">
  9081. generate an authenticated object that contains an CMS Authenticated Data object
  9082. </member>
  9083. <member name="T:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser">
  9084. Parsing class for an CMS Authenticated Data object from an input stream.
  9085. <p>
  9086. Note: that because we are in a streaming mode only one recipient can be tried and it is important
  9087. that the methods on the parser are called in the appropriate order.
  9088. </p>
  9089. <p>
  9090. Example of use - assuming the first recipient matches the private key we have.
  9091. <pre>
  9092. CMSAuthenticatedDataParser ad = new CMSAuthenticatedDataParser(inputStream);
  9093. RecipientInformationStore recipients = ad.getRecipientInfos();
  9094. Collection c = recipients.getRecipients();
  9095. Iterator it = c.iterator();
  9096. if (it.hasNext())
  9097. {
  9098. RecipientInformation recipient = (RecipientInformation)it.next();
  9099. CMSTypedStream recData = recipient.getContentStream(privateKey, "BC");
  9100. processDataStream(recData.getContentStream());
  9101. if (!Arrays.equals(ad.getMac(), recipient.getMac())
  9102. {
  9103. System.err.println("Data corrupted!!!!");
  9104. }
  9105. }
  9106. </pre>
  9107. Note: this class does not introduce buffering - if you are processing large files you should create
  9108. the parser with:
  9109. <pre>
  9110. CMSAuthenticatedDataParser ep = new CMSAuthenticatedDataParser(new BufferedInputStream(inputStream, bufSize));
  9111. </pre>
  9112. where bufSize is a suitably large buffer size.
  9113. </p>
  9114. </member>
  9115. <member name="P:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser.MacAlgOid">
  9116. return the object identifier for the mac algorithm.
  9117. </member>
  9118. <member name="P:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser.MacAlgParams">
  9119. return the ASN.1 encoded encryption algorithm parameters, or null if
  9120. there aren't any.
  9121. </member>
  9122. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser.GetRecipientInfos">
  9123. return a store of the intended recipients for this message
  9124. </member>
  9125. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser.GetAuthAttrs">
  9126. return a table of the unauthenticated attributes indexed by
  9127. the OID of the attribute.
  9128. @exception java.io.IOException
  9129. </member>
  9130. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataParser.GetUnauthAttrs">
  9131. return a table of the unauthenticated attributes indexed by
  9132. the OID of the attribute.
  9133. @exception java.io.IOException
  9134. </member>
  9135. <member name="T:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator">
  9136. General class for generating a CMS authenticated-data message stream.
  9137. <p>
  9138. A simple example of usage.
  9139. <pre>
  9140. CMSAuthenticatedDataStreamGenerator edGen = new CMSAuthenticatedDataStreamGenerator();
  9141. edGen.addKeyTransRecipient(cert);
  9142. ByteArrayOutputStream bOut = new ByteArrayOutputStream();
  9143. OutputStream out = edGen.open(
  9144. bOut, CMSAuthenticatedDataGenerator.AES128_CBC, "BC");*
  9145. out.write(data);
  9146. out.close();
  9147. </pre>
  9148. </p>
  9149. </member>
  9150. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.#ctor">
  9151. base constructor
  9152. </member>
  9153. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9154. constructor allowing specific source of randomness
  9155. @param rand instance of SecureRandom to use
  9156. </member>
  9157. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.SetBufferSize(System.Int32)">
  9158. Set the underlying string size for encapsulated data
  9159. @param bufferSize length of octet strings to buffer the data.
  9160. </member>
  9161. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.SetBerEncodeRecipients(System.Boolean)">
  9162. Use a BER Set to store the recipient information
  9163. </member>
  9164. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.Open(System.IO.Stream,System.String,Org.BouncyCastle.Crypto.CipherKeyGenerator)">
  9165. generate an enveloped object that contains an CMS Enveloped Data
  9166. object using the given provider and the passed in key generator.
  9167. @throws java.io.IOException
  9168. </member>
  9169. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.Open(System.IO.Stream,System.String)">
  9170. generate an enveloped object that contains an CMS Enveloped Data object
  9171. </member>
  9172. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedDataStreamGenerator.Open(System.IO.Stream,System.String,System.Int32)">
  9173. generate an enveloped object that contains an CMS Enveloped Data object
  9174. </member>
  9175. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedGenerator.#ctor">
  9176. base constructor
  9177. </member>
  9178. <member name="M:Org.BouncyCastle.Cms.CmsAuthenticatedGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9179. constructor allowing specific source of randomness
  9180. @param rand instance of SecureRandom to use
  9181. </member>
  9182. <member name="T:Org.BouncyCastle.Cms.CmsAuthEnvelopedData">
  9183. containing class for an CMS AuthEnveloped Data object
  9184. </member>
  9185. <member name="T:Org.BouncyCastle.Cms.CmsCompressedData">
  9186. containing class for an CMS Compressed Data object
  9187. </member>
  9188. <member name="M:Org.BouncyCastle.Cms.CmsCompressedData.GetContent">
  9189. Return the uncompressed content.
  9190. @return the uncompressed content
  9191. @throws CmsException if there is an exception uncompressing the data.
  9192. </member>
  9193. <member name="M:Org.BouncyCastle.Cms.CmsCompressedData.GetContent(System.Int32)">
  9194. Return the uncompressed content, throwing an exception if the data size
  9195. is greater than the passed in limit. If the content is exceeded getCause()
  9196. on the CMSException will contain a StreamOverflowException
  9197. @param limit maximum number of bytes to read
  9198. @return the content read
  9199. @throws CMSException if there is an exception uncompressing the data.
  9200. </member>
  9201. <member name="P:Org.BouncyCastle.Cms.CmsCompressedData.ContentInfo">
  9202. return the ContentInfo
  9203. </member>
  9204. <member name="M:Org.BouncyCastle.Cms.CmsCompressedData.GetEncoded">
  9205. return the ASN.1 encoded representation of this object.
  9206. </member>
  9207. <member name="T:Org.BouncyCastle.Cms.CmsCompressedDataGenerator">
  9208. * General class for generating a compressed CMS message.
  9209. * <p>
  9210. * A simple example of usage.</p>
  9211. * <p>
  9212. * <pre>
  9213. * CMSCompressedDataGenerator fact = new CMSCompressedDataGenerator();
  9214. * CMSCompressedData data = fact.Generate(content, algorithm);
  9215. * </pre>
  9216. * </p>
  9217. </member>
  9218. <member name="M:Org.BouncyCastle.Cms.CmsCompressedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String)">
  9219. Generate an object that contains an CMS Compressed Data
  9220. </member>
  9221. <member name="T:Org.BouncyCastle.Cms.CmsCompressedDataParser">
  9222. Class for reading a CMS Compressed Data stream.
  9223. <pre>
  9224. CMSCompressedDataParser cp = new CMSCompressedDataParser(inputStream);
  9225. process(cp.GetContent().GetContentStream());
  9226. </pre>
  9227. Note: this class does not introduce buffering - if you are processing large files you should create
  9228. the parser with:
  9229. <pre>
  9230. CMSCompressedDataParser ep = new CMSCompressedDataParser(new BufferedInputStream(inputStream, bufSize));
  9231. </pre>
  9232. where bufSize is a suitably large buffer size.
  9233. </member>
  9234. <member name="T:Org.BouncyCastle.Cms.CmsCompressedDataStreamGenerator">
  9235. General class for generating a compressed CMS message stream.
  9236. <p>
  9237. A simple example of usage.
  9238. </p>
  9239. <pre>
  9240. CMSCompressedDataStreamGenerator gen = new CMSCompressedDataStreamGenerator();
  9241. Stream cOut = gen.Open(outputStream, CMSCompressedDataStreamGenerator.ZLIB);
  9242. cOut.Write(data);
  9243. cOut.Close();
  9244. </pre>
  9245. </member>
  9246. <member name="M:Org.BouncyCastle.Cms.CmsCompressedDataStreamGenerator.#ctor">
  9247. base constructor
  9248. </member>
  9249. <member name="M:Org.BouncyCastle.Cms.CmsCompressedDataStreamGenerator.SetBufferSize(System.Int32)">
  9250. Set the underlying string size for encapsulated data
  9251. @param bufferSize length of octet strings to buffer the data.
  9252. </member>
  9253. <member name="M:Org.BouncyCastle.Cms.CmsContentInfoParser.Close">
  9254. Close the underlying data stream.
  9255. @throws IOException if the close fails.
  9256. </member>
  9257. <member name="T:Org.BouncyCastle.Cms.CmsEnvelopedData">
  9258. containing class for an CMS Enveloped Data object
  9259. </member>
  9260. <member name="P:Org.BouncyCastle.Cms.CmsEnvelopedData.EncryptionAlgOid">
  9261. return the object identifier for the content encryption algorithm.
  9262. </member>
  9263. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedData.GetRecipientInfos">
  9264. return a store of the intended recipients for this message
  9265. </member>
  9266. <member name="P:Org.BouncyCastle.Cms.CmsEnvelopedData.ContentInfo">
  9267. return the ContentInfo
  9268. </member>
  9269. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedData.GetUnprotectedAttributes">
  9270. return a table of the unprotected attributes indexed by
  9271. the OID of the attribute.
  9272. </member>
  9273. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedData.GetEncoded">
  9274. return the ASN.1 encoded representation of this object.
  9275. </member>
  9276. <member name="T:Org.BouncyCastle.Cms.CmsEnvelopedDataGenerator">
  9277. <remarks>
  9278. General class for generating a CMS enveloped-data message.
  9279. A simple example of usage.
  9280. <pre>
  9281. CmsEnvelopedDataGenerator fact = new CmsEnvelopedDataGenerator();
  9282. fact.AddKeyTransRecipient(cert);
  9283. CmsEnvelopedData data = fact.Generate(content, algorithm);
  9284. </pre>
  9285. </remarks>
  9286. </member>
  9287. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9288. <summary>Constructor allowing specific source of randomness</summary>
  9289. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9290. </member>
  9291. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String,Org.BouncyCastle.Crypto.CipherKeyGenerator)">
  9292. <summary>
  9293. Generate an enveloped object that contains a CMS Enveloped Data
  9294. object using the passed in key generator.
  9295. </summary>
  9296. </member>
  9297. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String)">
  9298. <summary>Generate an enveloped object that contains an CMS Enveloped Data object.</summary>
  9299. </member>
  9300. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.String,System.Int32)">
  9301. <summary>Generate an enveloped object that contains an CMS Enveloped Data object.</summary>
  9302. </member>
  9303. <member name="T:Org.BouncyCastle.Cms.CmsEnvelopedDataParser">
  9304. Parsing class for an CMS Enveloped Data object from an input stream.
  9305. <p>
  9306. Note: that because we are in a streaming mode only one recipient can be tried and it is important
  9307. that the methods on the parser are called in the appropriate order.
  9308. </p>
  9309. <p>
  9310. Example of use - assuming the first recipient matches the private key we have.
  9311. <pre>
  9312. CmsEnvelopedDataParser ep = new CmsEnvelopedDataParser(inputStream);
  9313. RecipientInformationStore recipients = ep.GetRecipientInfos();
  9314. Collection c = recipients.getRecipients();
  9315. Iterator it = c.iterator();
  9316. if (it.hasNext())
  9317. {
  9318. RecipientInformation recipient = (RecipientInformation)it.next();
  9319. CMSTypedStream recData = recipient.getContentStream(privateKey);
  9320. processDataStream(recData.getContentStream());
  9321. }
  9322. </pre>
  9323. Note: this class does not introduce buffering - if you are processing large files you should create
  9324. the parser with:
  9325. <pre>
  9326. CmsEnvelopedDataParser ep = new CmsEnvelopedDataParser(new BufferedInputStream(inputStream, bufSize));
  9327. </pre>
  9328. where bufSize is a suitably large buffer size.
  9329. </p>
  9330. </member>
  9331. <member name="P:Org.BouncyCastle.Cms.CmsEnvelopedDataParser.EncryptionAlgOid">
  9332. return the object identifier for the content encryption algorithm.
  9333. </member>
  9334. <member name="P:Org.BouncyCastle.Cms.CmsEnvelopedDataParser.EncryptionAlgParams">
  9335. return the ASN.1 encoded encryption algorithm parameters, or null if
  9336. there aren't any.
  9337. </member>
  9338. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataParser.GetRecipientInfos">
  9339. return a store of the intended recipients for this message
  9340. </member>
  9341. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataParser.GetUnprotectedAttributes">
  9342. return a table of the unprotected attributes indexed by
  9343. the OID of the attribute.
  9344. @throws IOException
  9345. </member>
  9346. <member name="T:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator">
  9347. General class for generating a CMS enveloped-data message stream.
  9348. <p>
  9349. A simple example of usage.
  9350. <pre>
  9351. CmsEnvelopedDataStreamGenerator edGen = new CmsEnvelopedDataStreamGenerator();
  9352. edGen.AddKeyTransRecipient(cert);
  9353. MemoryStream bOut = new MemoryStream();
  9354. Stream out = edGen.Open(
  9355. bOut, CMSEnvelopedDataGenerator.AES128_CBC);*
  9356. out.Write(data);
  9357. out.Close();
  9358. </pre>
  9359. </p>
  9360. </member>
  9361. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9362. <summary>Constructor allowing specific source of randomness</summary>
  9363. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9364. </member>
  9365. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.SetBufferSize(System.Int32)">
  9366. <summary>Set the underlying string size for encapsulated data.</summary>
  9367. <param name="bufferSize">Length of octet strings to buffer the data.</param>
  9368. </member>
  9369. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.SetBerEncodeRecipients(System.Boolean)">
  9370. <summary>Use a BER Set to store the recipient information.</summary>
  9371. </member>
  9372. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.Open(System.IO.Stream,System.String,Org.BouncyCastle.Crypto.CipherKeyGenerator)">
  9373. <summary>
  9374. Generate an enveloped object that contains an CMS Enveloped Data
  9375. object using the passed in key generator.
  9376. </summary>
  9377. </member>
  9378. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.Open(System.IO.Stream,System.String)">
  9379. generate an enveloped object that contains an CMS Enveloped Data object
  9380. @throws IOException
  9381. </member>
  9382. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedDataStreamGenerator.Open(System.IO.Stream,System.String,System.Int32)">
  9383. generate an enveloped object that contains an CMS Enveloped Data object
  9384. @throws IOException
  9385. </member>
  9386. <member name="T:Org.BouncyCastle.Cms.CmsEnvelopedGenerator">
  9387. General class for generating a CMS enveloped-data message.
  9388. A simple example of usage.
  9389. <pre>
  9390. CMSEnvelopedDataGenerator fact = new CMSEnvelopedDataGenerator();
  9391. fact.addKeyTransRecipient(cert);
  9392. CMSEnvelopedData data = fact.generate(content, algorithm, "BC");
  9393. </pre>
  9394. </member>
  9395. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9396. <summary>Constructor allowing specific source of randomness</summary>
  9397. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9398. </member>
  9399. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKeyTransRecipient(Org.BouncyCastle.X509.X509Certificate)">
  9400. add a recipient.
  9401. @param cert recipient's public key certificate
  9402. @exception ArgumentException if there is a problem with the certificate
  9403. </member>
  9404. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKeyTransRecipient(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[])">
  9405. add a recipient
  9406. @param key the public key used by the recipient
  9407. @param subKeyId the identifier for the recipient's public key
  9408. @exception ArgumentException if there is a problem with the key
  9409. </member>
  9410. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKekRecipient(System.String,Org.BouncyCastle.Crypto.Parameters.KeyParameter,System.Byte[])">
  9411. add a KEK recipient.
  9412. @param key the secret key to use for wrapping
  9413. @param keyIdentifier the byte string that identifies the key
  9414. </member>
  9415. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKekRecipient(System.String,Org.BouncyCastle.Crypto.Parameters.KeyParameter,Org.BouncyCastle.Asn1.Cms.KekIdentifier)">
  9416. add a KEK recipient.
  9417. @param key the secret key to use for wrapping
  9418. @param keyIdentifier the byte string that identifies the key
  9419. </member>
  9420. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKeyAgreementRecipient(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String)">
  9421. Add a key agreement based recipient.
  9422. @param agreementAlgorithm key agreement algorithm to use.
  9423. @param senderPrivateKey private key to initialise sender side of agreement with.
  9424. @param senderPublicKey sender public key to include with message.
  9425. @param recipientCert recipient's public key certificate.
  9426. @param cekWrapAlgorithm OID for key wrapping algorithm to use.
  9427. @exception SecurityUtilityException if the algorithm requested cannot be found
  9428. @exception InvalidKeyException if the keys are inappropriate for the algorithm specified
  9429. </member>
  9430. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddKeyAgreementRecipients(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Collections.ICollection,System.String)">
  9431. Add multiple key agreement based recipients (sharing a single KeyAgreeRecipientInfo structure).
  9432. @param agreementAlgorithm key agreement algorithm to use.
  9433. @param senderPrivateKey private key to initialise sender side of agreement with.
  9434. @param senderPublicKey sender public key to include with message.
  9435. @param recipientCerts recipients' public key certificates.
  9436. @param cekWrapAlgorithm OID for key wrapping algorithm to use.
  9437. @exception SecurityUtilityException if the algorithm requested cannot be found
  9438. @exception InvalidKeyException if the keys are inappropriate for the algorithm specified
  9439. </member>
  9440. <member name="M:Org.BouncyCastle.Cms.CmsEnvelopedGenerator.AddRecipientInfoGenerator(Org.BouncyCastle.Cms.RecipientInfoGenerator)">
  9441. <summary>
  9442. Add a generator to produce the recipient info required.
  9443. </summary>
  9444. <param name="recipientInfoGenerator">a generator of a recipient info object.</param>
  9445. </member>
  9446. <member name="M:Org.BouncyCastle.Cms.CmsProcessable.Write(System.IO.Stream)">
  9447. <summary>
  9448. Generic routine to copy out the data we want processed.
  9449. </summary>
  9450. <remarks>
  9451. This routine may be called multiple times.
  9452. </remarks>
  9453. </member>
  9454. <member name="T:Org.BouncyCastle.Cms.CmsProcessableByteArray">
  9455. a holding class for a byte array of data to be processed.
  9456. </member>
  9457. <member name="M:Org.BouncyCastle.Cms.CmsProcessableByteArray.GetContent">
  9458. <returns>A clone of the byte array</returns>
  9459. </member>
  9460. <member name="T:Org.BouncyCastle.Cms.CmsProcessableFile">
  9461. a holding class for a file of data to be processed.
  9462. </member>
  9463. <member name="M:Org.BouncyCastle.Cms.CmsProcessableFile.GetContent">
  9464. <returns>The file handle</returns>
  9465. </member>
  9466. <member name="T:Org.BouncyCastle.Cms.CmsSignedData">
  9467. general class for handling a pkcs7-signature message.
  9468. A simple example of usage - note, in the example below the validity of
  9469. the certificate isn't verified, just the fact that one of the certs
  9470. matches the given signer...
  9471. <pre>
  9472. IX509Store certs = s.GetCertificates();
  9473. SignerInformationStore signers = s.GetSignerInfos();
  9474. foreach (SignerInformation signer in signers.GetSigners())
  9475. {
  9476. ArrayList certList = new ArrayList(certs.GetMatches(signer.SignerID));
  9477. X509Certificate cert = (X509Certificate) certList[0];
  9478. if (signer.Verify(cert.GetPublicKey()))
  9479. {
  9480. verified++;
  9481. }
  9482. }
  9483. </pre>
  9484. </member>
  9485. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.#ctor(System.Collections.IDictionary,System.Byte[])">
  9486. Content with detached signature, digests precomputed
  9487. @param hashes a map of precomputed digests for content indexed by name of hash.
  9488. @param sigBlock the signature object.
  9489. </member>
  9490. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.#ctor(Org.BouncyCastle.Cms.CmsProcessable,System.IO.Stream)">
  9491. base constructor - content with detached signature.
  9492. @param signedContent the content that was signed.
  9493. @param sigData the signature object.
  9494. </member>
  9495. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.#ctor(System.IO.Stream)">
  9496. base constructor - with encapsulated content
  9497. </member>
  9498. <member name="P:Org.BouncyCastle.Cms.CmsSignedData.Version">
  9499. <summary>Return the version number for this object.</summary>
  9500. </member>
  9501. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.GetSignerInfos">
  9502. return the collection of signers that are associated with the
  9503. signatures for the message.
  9504. </member>
  9505. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.GetAttributeCertificates(System.String)">
  9506. return a X509Store containing the attribute certificates, if any, contained
  9507. in this message.
  9508. @param type type of store to create
  9509. @return a store of attribute certificates
  9510. @exception NoSuchStoreException if the store type isn't available.
  9511. @exception CmsException if a general exception prevents creation of the X509Store
  9512. </member>
  9513. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.GetCertificates(System.String)">
  9514. return a X509Store containing the public key certificates, if any, contained
  9515. in this message.
  9516. @param type type of store to create
  9517. @return a store of public key certificates
  9518. @exception NoSuchStoreException if the store type isn't available.
  9519. @exception CmsException if a general exception prevents creation of the X509Store
  9520. </member>
  9521. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.GetCrls(System.String)">
  9522. return a X509Store containing CRLs, if any, contained
  9523. in this message.
  9524. @param type type of store to create
  9525. @return a store of CRLs
  9526. @exception NoSuchStoreException if the store type isn't available.
  9527. @exception CmsException if a general exception prevents creation of the X509Store
  9528. </member>
  9529. <member name="P:Org.BouncyCastle.Cms.CmsSignedData.SignedContentType">
  9530. <summary>
  9531. Return the <c>DerObjectIdentifier</c> associated with the encapsulated
  9532. content info structure carried in the signed data.
  9533. </summary>
  9534. </member>
  9535. <member name="P:Org.BouncyCastle.Cms.CmsSignedData.ContentInfo">
  9536. return the ContentInfo
  9537. </member>
  9538. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.GetEncoded">
  9539. return the ASN.1 encoded representation of this object.
  9540. </member>
  9541. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.ReplaceSigners(Org.BouncyCastle.Cms.CmsSignedData,Org.BouncyCastle.Cms.SignerInformationStore)">
  9542. Replace the signerinformation store associated with this
  9543. CmsSignedData object with the new one passed in. You would
  9544. probably only want to do this if you wanted to change the unsigned
  9545. attributes associated with a signer, or perhaps delete one.
  9546. @param signedData the signed data object to be used as a base.
  9547. @param signerInformationStore the new signer information store to use.
  9548. @return a new signed data object.
  9549. </member>
  9550. <member name="M:Org.BouncyCastle.Cms.CmsSignedData.ReplaceCertificatesAndCrls(Org.BouncyCastle.Cms.CmsSignedData,Org.BouncyCastle.X509.Store.IX509Store,Org.BouncyCastle.X509.Store.IX509Store,Org.BouncyCastle.X509.Store.IX509Store)">
  9551. Replace the certificate and CRL information associated with this
  9552. CmsSignedData object with the new one passed in.
  9553. @param signedData the signed data object to be used as a base.
  9554. @param x509Certs the new certificates to be used.
  9555. @param x509Crls the new CRLs to be used.
  9556. @return a new signed data object.
  9557. @exception CmsException if there is an error processing the stores
  9558. </member>
  9559. <member name="T:Org.BouncyCastle.Cms.CmsSignedDataGenerator">
  9560. * general class for generating a pkcs7-signature message.
  9561. * <p>
  9562. * A simple example of usage.
  9563. *
  9564. * <pre>
  9565. * IX509Store certs...
  9566. * IX509Store crls...
  9567. * CmsSignedDataGenerator gen = new CmsSignedDataGenerator();
  9568. *
  9569. * gen.AddSigner(privKey, cert, CmsSignedGenerator.DigestSha1);
  9570. * gen.AddCertificates(certs);
  9571. * gen.AddCrls(crls);
  9572. *
  9573. * CmsSignedData data = gen.Generate(content);
  9574. * </pre>
  9575. * </p>
  9576. </member>
  9577. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9578. <summary>Constructor allowing specific source of randomness</summary>
  9579. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9580. </member>
  9581. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String)">
  9582. * add a signer - no attributes other than the default ones will be
  9583. * provided here.
  9584. *
  9585. * @param key signing key to use
  9586. * @param cert certificate containing corresponding public key
  9587. * @param digestOID digest algorithm OID
  9588. </member>
  9589. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String)">
  9590. add a signer, specifying the digest encryption algorithm to use - no attributes other than the default ones will be
  9591. provided here.
  9592. @param key signing key to use
  9593. @param cert certificate containing corresponding public key
  9594. @param encryptionOID digest encryption algorithm OID
  9595. @param digestOID digest algorithm OID
  9596. </member>
  9597. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String)">
  9598. add a signer - no attributes other than the default ones will be
  9599. provided here.
  9600. </member>
  9601. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,System.String)">
  9602. add a signer, specifying the digest encryption algorithm to use - no attributes other than the default ones will be
  9603. provided here.
  9604. </member>
  9605. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9606. * add a signer with extra signed/unsigned attributes.
  9607. *
  9608. * @param key signing key to use
  9609. * @param cert certificate containing corresponding public key
  9610. * @param digestOID digest algorithm OID
  9611. * @param signedAttr table of attributes to be included in signature
  9612. * @param unsignedAttr table of attributes to be included as unsigned
  9613. </member>
  9614. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9615. add a signer, specifying the digest encryption algorithm, with extra signed/unsigned attributes.
  9616. @param key signing key to use
  9617. @param cert certificate containing corresponding public key
  9618. @param encryptionOID digest encryption algorithm OID
  9619. @param digestOID digest algorithm OID
  9620. @param signedAttr table of attributes to be included in signature
  9621. @param unsignedAttr table of attributes to be included as unsigned
  9622. </member>
  9623. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9624. * add a signer with extra signed/unsigned attributes.
  9625. *
  9626. * @param key signing key to use
  9627. * @param subjectKeyID subjectKeyID of corresponding public key
  9628. * @param digestOID digest algorithm OID
  9629. * @param signedAttr table of attributes to be included in signature
  9630. * @param unsignedAttr table of attributes to be included as unsigned
  9631. </member>
  9632. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9633. add a signer, specifying the digest encryption algorithm, with extra signed/unsigned attributes.
  9634. @param key signing key to use
  9635. @param subjectKeyID subjectKeyID of corresponding public key
  9636. @param encryptionOID digest encryption algorithm OID
  9637. @param digestOID digest algorithm OID
  9638. @param signedAttr table of attributes to be included in signature
  9639. @param unsignedAttr table of attributes to be included as unsigned
  9640. </member>
  9641. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,Org.BouncyCastle.Cms.CmsAttributeTableGenerator,Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  9642. add a signer with extra signed/unsigned attributes based on generators.
  9643. </member>
  9644. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String,Org.BouncyCastle.Cms.CmsAttributeTableGenerator,Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  9645. add a signer, specifying the digest encryption algorithm, with extra signed/unsigned attributes based on generators.
  9646. </member>
  9647. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,Org.BouncyCastle.Cms.CmsAttributeTableGenerator,Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  9648. add a signer with extra signed/unsigned attributes based on generators.
  9649. </member>
  9650. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,System.String,Org.BouncyCastle.Cms.CmsAttributeTableGenerator,Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  9651. add a signer, including digest encryption algorithm, with extra signed/unsigned attributes based on generators.
  9652. </member>
  9653. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable)">
  9654. generate a signed object that for a CMS Signed Data object
  9655. </member>
  9656. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.Generate(System.String,Org.BouncyCastle.Cms.CmsProcessable,System.Boolean)">
  9657. generate a signed object that for a CMS Signed Data
  9658. object - if encapsulate is true a copy
  9659. of the message will be included in the signature. The content type
  9660. is set according to the OID represented by the string signedContentType.
  9661. </member>
  9662. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.Generate(Org.BouncyCastle.Cms.CmsProcessable,System.Boolean)">
  9663. generate a signed object that for a CMS Signed Data
  9664. object - if encapsulate is true a copy
  9665. of the message will be included in the signature with the
  9666. default content type "data".
  9667. </member>
  9668. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataGenerator.GenerateCounterSigners(Org.BouncyCastle.Cms.SignerInformation)">
  9669. generate a set of one or more SignerInformation objects representing counter signatures on
  9670. the passed in SignerInformation object.
  9671. @param signer the signer to be countersigned
  9672. @param sigProvider the provider to be used for counter signing.
  9673. @return a store containing the signers.
  9674. </member>
  9675. <member name="T:Org.BouncyCastle.Cms.CmsSignedDataParser">
  9676. Parsing class for an CMS Signed Data object from an input stream.
  9677. <p>
  9678. Note: that because we are in a streaming mode only one signer can be tried and it is important
  9679. that the methods on the parser are called in the appropriate order.
  9680. </p>
  9681. <p>
  9682. A simple example of usage for an encapsulated signature.
  9683. </p>
  9684. <p>
  9685. Two notes: first, in the example below the validity of
  9686. the certificate isn't verified, just the fact that one of the certs
  9687. matches the given signer, and, second, because we are in a streaming
  9688. mode the order of the operations is important.
  9689. </p>
  9690. <pre>
  9691. CmsSignedDataParser sp = new CmsSignedDataParser(encapSigData);
  9692. sp.GetSignedContent().Drain();
  9693. IX509Store certs = sp.GetCertificates();
  9694. SignerInformationStore signers = sp.GetSignerInfos();
  9695. foreach (SignerInformation signer in signers.GetSigners())
  9696. {
  9697. ArrayList certList = new ArrayList(certs.GetMatches(signer.SignerID));
  9698. X509Certificate cert = (X509Certificate) certList[0];
  9699. Console.WriteLine("verify returns: " + signer.Verify(cert));
  9700. }
  9701. </pre>
  9702. Note also: this class does not introduce buffering - if you are processing large files you should create
  9703. the parser with:
  9704. <pre>
  9705. CmsSignedDataParser ep = new CmsSignedDataParser(new BufferedInputStream(encapSigData, bufSize));
  9706. </pre>
  9707. where bufSize is a suitably large buffer size.
  9708. </member>
  9709. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.#ctor(System.IO.Stream)">
  9710. base constructor - with encapsulated content
  9711. </member>
  9712. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.#ctor(Org.BouncyCastle.Cms.CmsTypedStream,System.IO.Stream)">
  9713. base constructor
  9714. @param signedContent the content that was signed.
  9715. @param sigData the signature object.
  9716. </member>
  9717. <member name="P:Org.BouncyCastle.Cms.CmsSignedDataParser.Version">
  9718. Return the version number for the SignedData object
  9719. @return the version number
  9720. </member>
  9721. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.GetSignerInfos">
  9722. return the collection of signers that are associated with the
  9723. signatures for the message.
  9724. @throws CmsException
  9725. </member>
  9726. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.GetAttributeCertificates(System.String)">
  9727. return a X509Store containing the attribute certificates, if any, contained
  9728. in this message.
  9729. @param type type of store to create
  9730. @return a store of attribute certificates
  9731. @exception org.bouncycastle.x509.NoSuchStoreException if the store type isn't available.
  9732. @exception CmsException if a general exception prevents creation of the X509Store
  9733. </member>
  9734. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.GetCertificates(System.String)">
  9735. return a X509Store containing the public key certificates, if any, contained
  9736. in this message.
  9737. @param type type of store to create
  9738. @return a store of public key certificates
  9739. @exception NoSuchStoreException if the store type isn't available.
  9740. @exception CmsException if a general exception prevents creation of the X509Store
  9741. </member>
  9742. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.GetCrls(System.String)">
  9743. return a X509Store containing CRLs, if any, contained
  9744. in this message.
  9745. @param type type of store to create
  9746. @return a store of CRLs
  9747. @exception NoSuchStoreException if the store type isn't available.
  9748. @exception CmsException if a general exception prevents creation of the X509Store
  9749. </member>
  9750. <member name="P:Org.BouncyCastle.Cms.CmsSignedDataParser.SignedContentType">
  9751. <summary>
  9752. Return the <c>DerObjectIdentifier</c> associated with the encapsulated
  9753. content info structure carried in the signed data.
  9754. </summary>
  9755. </member>
  9756. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.ReplaceSigners(System.IO.Stream,Org.BouncyCastle.Cms.SignerInformationStore,System.IO.Stream)">
  9757. Replace the signerinformation store associated with the passed
  9758. in message contained in the stream original with the new one passed in.
  9759. You would probably only want to do this if you wanted to change the unsigned
  9760. attributes associated with a signer, or perhaps delete one.
  9761. <p>
  9762. The output stream is returned unclosed.
  9763. </p>
  9764. @param original the signed data stream to be used as a base.
  9765. @param signerInformationStore the new signer information store to use.
  9766. @param out the stream to Write the new signed data object to.
  9767. @return out.
  9768. </member>
  9769. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataParser.ReplaceCertificatesAndCrls(System.IO.Stream,Org.BouncyCastle.X509.Store.IX509Store,Org.BouncyCastle.X509.Store.IX509Store,Org.BouncyCastle.X509.Store.IX509Store,System.IO.Stream)">
  9770. Replace the certificate and CRL information associated with this
  9771. CMSSignedData object with the new one passed in.
  9772. <p>
  9773. The output stream is returned unclosed.
  9774. </p>
  9775. @param original the signed data stream to be used as a base.
  9776. @param certsAndCrls the new certificates and CRLs to be used.
  9777. @param out the stream to Write the new signed data object to.
  9778. @return out.
  9779. @exception CmsException if there is an error processing the CertStore
  9780. </member>
  9781. <member name="T:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator">
  9782. General class for generating a pkcs7-signature message stream.
  9783. <p>
  9784. A simple example of usage.
  9785. </p>
  9786. <pre>
  9787. IX509Store certs...
  9788. CmsSignedDataStreamGenerator gen = new CmsSignedDataStreamGenerator();
  9789. gen.AddSigner(privateKey, cert, CmsSignedDataStreamGenerator.DIGEST_SHA1);
  9790. gen.AddCertificates(certs);
  9791. Stream sigOut = gen.Open(bOut);
  9792. sigOut.Write(Encoding.UTF8.GetBytes("Hello World!"));
  9793. sigOut.Close();
  9794. </pre>
  9795. </member>
  9796. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9797. <summary>Constructor allowing specific source of randomness</summary>
  9798. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9799. </member>
  9800. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.SetBufferSize(System.Int32)">
  9801. Set the underlying string size for encapsulated data
  9802. @param bufferSize length of octet strings to buffer the data.
  9803. </member>
  9804. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String)">
  9805. add a signer - no attributes other than the default ones will be
  9806. provided here.
  9807. @throws NoSuchAlgorithmException
  9808. @throws InvalidKeyException
  9809. </member>
  9810. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String)">
  9811. add a signer, specifying the digest encryption algorithm - no attributes other than the default ones will be
  9812. provided here.
  9813. @throws NoSuchProviderException
  9814. @throws NoSuchAlgorithmException
  9815. @throws InvalidKeyException
  9816. </member>
  9817. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9818. add a signer with extra signed/unsigned attributes.
  9819. @throws NoSuchAlgorithmException
  9820. @throws InvalidKeyException
  9821. </member>
  9822. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9823. add a signer with extra signed/unsigned attributes - specifying digest
  9824. encryption algorithm.
  9825. @throws NoSuchProviderException
  9826. @throws NoSuchAlgorithmException
  9827. @throws InvalidKeyException
  9828. </member>
  9829. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String)">
  9830. add a signer - no attributes other than the default ones will be
  9831. provided here.
  9832. @throws NoSuchAlgorithmException
  9833. @throws InvalidKeyException
  9834. </member>
  9835. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,System.String)">
  9836. add a signer - no attributes other than the default ones will be
  9837. provided here.
  9838. @throws NoSuchProviderException
  9839. @throws NoSuchAlgorithmException
  9840. @throws InvalidKeyException
  9841. </member>
  9842. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.AddSigner(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[],System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9843. add a signer with extra signed/unsigned attributes.
  9844. @throws NoSuchAlgorithmException
  9845. @throws InvalidKeyException
  9846. </member>
  9847. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.Open(System.IO.Stream)">
  9848. generate a signed object that for a CMS Signed Data object
  9849. </member>
  9850. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.Open(System.IO.Stream,System.Boolean)">
  9851. generate a signed object that for a CMS Signed Data
  9852. object - if encapsulate is true a copy
  9853. of the message will be included in the signature with the
  9854. default content type "data".
  9855. </member>
  9856. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.Open(System.IO.Stream,System.Boolean,System.IO.Stream)">
  9857. generate a signed object that for a CMS Signed Data
  9858. object using the given provider - if encapsulate is true a copy
  9859. of the message will be included in the signature with the
  9860. default content type "data". If dataOutputStream is non null the data
  9861. being signed will be written to the stream as it is processed.
  9862. @param out stream the CMS object is to be written to.
  9863. @param encapsulate true if data should be encapsulated.
  9864. @param dataOutputStream output stream to copy the data being signed to.
  9865. </member>
  9866. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.Open(System.IO.Stream,System.String,System.Boolean)">
  9867. generate a signed object that for a CMS Signed Data
  9868. object - if encapsulate is true a copy
  9869. of the message will be included in the signature. The content type
  9870. is set according to the OID represented by the string signedContentType.
  9871. </member>
  9872. <member name="M:Org.BouncyCastle.Cms.CmsSignedDataStreamGenerator.Open(System.IO.Stream,System.String,System.Boolean,System.IO.Stream)">
  9873. generate a signed object that for a CMS Signed Data
  9874. object using the given provider - if encapsulate is true a copy
  9875. of the message will be included in the signature. The content type
  9876. is set according to the OID represented by the string signedContentType.
  9877. @param out stream the CMS object is to be written to.
  9878. @param signedContentType OID for data to be signed.
  9879. @param encapsulate true if data should be encapsulated.
  9880. @param dataOutputStream output stream to copy the data being signed to.
  9881. </member>
  9882. <member name="F:Org.BouncyCastle.Cms.CmsSignedGenerator.Data">
  9883. Default type for the signed data.
  9884. </member>
  9885. <member name="M:Org.BouncyCastle.Cms.CmsSignedGenerator.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  9886. <summary>Constructor allowing specific source of randomness</summary>
  9887. <param name="rand">Instance of <c>SecureRandom</c> to use.</param>
  9888. </member>
  9889. <member name="M:Org.BouncyCastle.Cms.CmsSignedGenerator.AddAttributeCertificates(Org.BouncyCastle.X509.Store.IX509Store)">
  9890. Add the attribute certificates contained in the passed in store to the
  9891. generator.
  9892. @param store a store of Version 2 attribute certificates
  9893. @throws CmsException if an error occurse processing the store.
  9894. </member>
  9895. <member name="M:Org.BouncyCastle.Cms.CmsSignedGenerator.AddSigners(Org.BouncyCastle.Cms.SignerInformationStore)">
  9896. Add a store of precalculated signers to the generator.
  9897. @param signerStore store of signers
  9898. </member>
  9899. <member name="M:Org.BouncyCastle.Cms.CmsSignedGenerator.GetGeneratedDigests">
  9900. Return a map of oids and byte arrays representing the digests calculated on the content during
  9901. the last generate.
  9902. @return a map of oids (as string objects) and byte[] representing digests.
  9903. </member>
  9904. <member name="M:Org.BouncyCastle.Cms.CmsSignedHelper.GetDigestAlgName(System.String)">
  9905. Return the digest algorithm using one of the standard JCA string
  9906. representations rather than the algorithm identifier (if possible).
  9907. </member>
  9908. <member name="M:Org.BouncyCastle.Cms.CmsSignedHelper.GetEncryptionAlgName(System.String)">
  9909. Return the digest encryption algorithm using one of the standard
  9910. JCA string representations rather than the algorithm identifier (if
  9911. possible).
  9912. </member>
  9913. <member name="T:Org.BouncyCastle.Cms.DefaultAuthenticatedAttributeTableGenerator">
  9914. Default authenticated attributes generator.
  9915. </member>
  9916. <member name="M:Org.BouncyCastle.Cms.DefaultAuthenticatedAttributeTableGenerator.#ctor">
  9917. Initialise to use all defaults
  9918. </member>
  9919. <member name="M:Org.BouncyCastle.Cms.DefaultAuthenticatedAttributeTableGenerator.#ctor(Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9920. Initialise with some extra attributes or overrides.
  9921. @param attributeTable initial attribute table to use.
  9922. </member>
  9923. <member name="M:Org.BouncyCastle.Cms.DefaultAuthenticatedAttributeTableGenerator.CreateStandardAttributeTable(System.Collections.IDictionary)">
  9924. Create a standard attribute table from the passed in parameters - this will
  9925. normally include contentType and messageDigest. If the constructor
  9926. using an AttributeTable was used, entries in it for contentType and
  9927. messageDigest will override the generated ones.
  9928. @param parameters source parameters for table generation.
  9929. @return a filled in IDictionary of attributes.
  9930. </member>
  9931. <member name="M:Org.BouncyCastle.Cms.DefaultAuthenticatedAttributeTableGenerator.GetAttributes(System.Collections.IDictionary)">
  9932. @param parameters source parameters
  9933. @return the populated attribute table
  9934. </member>
  9935. <member name="T:Org.BouncyCastle.Cms.DefaultSignedAttributeTableGenerator">
  9936. Default signed attributes generator.
  9937. </member>
  9938. <member name="M:Org.BouncyCastle.Cms.DefaultSignedAttributeTableGenerator.#ctor">
  9939. Initialise to use all defaults
  9940. </member>
  9941. <member name="M:Org.BouncyCastle.Cms.DefaultSignedAttributeTableGenerator.#ctor(Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  9942. Initialise with some extra attributes or overrides.
  9943. @param attributeTable initial attribute table to use.
  9944. </member>
  9945. <member name="M:Org.BouncyCastle.Cms.DefaultSignedAttributeTableGenerator.createStandardAttributeTable(System.Collections.IDictionary)">
  9946. Create a standard attribute table from the passed in parameters - this will
  9947. normally include contentType, signingTime, and messageDigest. If the constructor
  9948. using an AttributeTable was used, entries in it for contentType, signingTime, and
  9949. messageDigest will override the generated ones.
  9950. @param parameters source parameters for table generation.
  9951. @return a filled in Hashtable of attributes.
  9952. </member>
  9953. <member name="M:Org.BouncyCastle.Cms.DefaultSignedAttributeTableGenerator.GetAttributes(System.Collections.IDictionary)">
  9954. @param parameters source parameters
  9955. @return the populated attribute table
  9956. </member>
  9957. <member name="T:Org.BouncyCastle.Cms.KekRecipientInformation">
  9958. the RecipientInfo class for a recipient who has been sent a message
  9959. encrypted using a secret key known to the other side.
  9960. </member>
  9961. <member name="M:Org.BouncyCastle.Cms.KekRecipientInformation.GetContentStream(Org.BouncyCastle.Crypto.ICipherParameters)">
  9962. decrypt the content and return an input stream.
  9963. </member>
  9964. <member name="T:Org.BouncyCastle.Cms.KeyAgreeRecipientInformation">
  9965. the RecipientInfo class for a recipient who has been sent a message
  9966. encrypted using key agreement.
  9967. </member>
  9968. <member name="M:Org.BouncyCastle.Cms.KeyAgreeRecipientInformation.GetContentStream(Org.BouncyCastle.Crypto.ICipherParameters)">
  9969. decrypt the content and return an input stream.
  9970. </member>
  9971. <member name="T:Org.BouncyCastle.Cms.KeyTransRecipientInformation">
  9972. the KeyTransRecipientInformation class for a recipient who has been sent a secret
  9973. key encrypted using their public key that needs to be used to
  9974. extract the message.
  9975. </member>
  9976. <member name="M:Org.BouncyCastle.Cms.KeyTransRecipientInformation.GetContentStream(Org.BouncyCastle.Crypto.ICipherParameters)">
  9977. decrypt the content and return it as a byte array.
  9978. </member>
  9979. <member name="T:Org.BouncyCastle.Cms.OriginatorID">
  9980. a basic index for an originator.
  9981. </member>
  9982. <member name="M:Org.BouncyCastle.Cms.OriginatorInformation.GetCertificates">
  9983. Return the certificates stored in the underlying OriginatorInfo object.
  9984. @return a Store of X509CertificateHolder objects.
  9985. </member>
  9986. <member name="M:Org.BouncyCastle.Cms.OriginatorInformation.GetCrls">
  9987. Return the CRLs stored in the underlying OriginatorInfo object.
  9988. @return a Store of X509CRLHolder objects.
  9989. </member>
  9990. <member name="M:Org.BouncyCastle.Cms.OriginatorInformation.ToAsn1Structure">
  9991. Return the underlying ASN.1 object defining this SignerInformation object.
  9992. @return a OriginatorInfo.
  9993. </member>
  9994. <member name="T:Org.BouncyCastle.Cms.PasswordRecipientInformation">
  9995. the RecipientInfo class for a recipient who has been sent a message
  9996. encrypted using a password.
  9997. </member>
  9998. <member name="P:Org.BouncyCastle.Cms.PasswordRecipientInformation.KeyDerivationAlgorithm">
  9999. return the object identifier for the key derivation algorithm, or null
  10000. if there is none present.
  10001. @return OID for key derivation algorithm, if present.
  10002. </member>
  10003. <member name="M:Org.BouncyCastle.Cms.PasswordRecipientInformation.GetContentStream(Org.BouncyCastle.Crypto.ICipherParameters)">
  10004. decrypt the content and return an input stream.
  10005. </member>
  10006. <member name="T:Org.BouncyCastle.Cms.Pkcs5Scheme2PbeKey">
  10007. <summary>
  10008. PKCS5 scheme-2 - password converted to bytes assuming ASCII.
  10009. </summary>
  10010. </member>
  10011. <member name="T:Org.BouncyCastle.Cms.Pkcs5Scheme2Utf8PbeKey">
  10012. PKCS5 scheme-2 - password converted to bytes using UTF-8.
  10013. </member>
  10014. <member name="M:Org.BouncyCastle.Cms.RecipientInfoGenerator.Generate(Org.BouncyCastle.Crypto.Parameters.KeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  10015. <summary>
  10016. Generate a RecipientInfo object for the given key.
  10017. </summary>
  10018. <param name="contentEncryptionKey">
  10019. A <see cref="T:Org.BouncyCastle.Crypto.Parameters.KeyParameter"/>
  10020. </param>
  10021. <param name="random">
  10022. A <see cref="T:Org.BouncyCastle.Security.SecureRandom"/>
  10023. </param>
  10024. <returns>
  10025. A <see cref="T:Org.BouncyCastle.Asn1.Cms.RecipientInfo"/>
  10026. </returns>
  10027. <exception cref="T:Org.BouncyCastle.Security.GeneralSecurityException"></exception>
  10028. </member>
  10029. <member name="P:Org.BouncyCastle.Cms.RecipientInformation.KeyEncryptionAlgOid">
  10030. * return the object identifier for the key encryption algorithm.
  10031. *
  10032. * @return OID for key encryption algorithm.
  10033. </member>
  10034. <member name="P:Org.BouncyCastle.Cms.RecipientInformation.KeyEncryptionAlgParams">
  10035. * return the ASN.1 encoded key encryption algorithm parameters, or null if
  10036. * there aren't any.
  10037. *
  10038. * @return ASN.1 encoding of key encryption algorithm parameters.
  10039. </member>
  10040. <member name="M:Org.BouncyCastle.Cms.RecipientInformation.GetMac">
  10041. Return the MAC calculated for the content stream. Note: this call is only meaningful once all
  10042. the content has been read.
  10043. @return byte array containing the mac.
  10044. </member>
  10045. <member name="M:Org.BouncyCastle.Cms.RecipientInformationStore.GetFirstRecipient(Org.BouncyCastle.Cms.RecipientID)">
  10046. Return the first RecipientInformation object that matches the
  10047. passed in selector. Null if there are no matches.
  10048. @param selector to identify a recipient
  10049. @return a single RecipientInformation object. Null if none matches.
  10050. </member>
  10051. <member name="P:Org.BouncyCastle.Cms.RecipientInformationStore.Count">
  10052. Return the number of recipients in the collection.
  10053. @return number of recipients identified.
  10054. </member>
  10055. <member name="M:Org.BouncyCastle.Cms.RecipientInformationStore.GetRecipients">
  10056. Return all recipients in the collection
  10057. @return a collection of recipients.
  10058. </member>
  10059. <member name="M:Org.BouncyCastle.Cms.RecipientInformationStore.GetRecipients(Org.BouncyCastle.Cms.RecipientID)">
  10060. Return possible empty collection with recipients matching the passed in RecipientID
  10061. @param selector a recipient id to select against.
  10062. @return a collection of RecipientInformation objects.
  10063. </member>
  10064. <member name="T:Org.BouncyCastle.Cms.SignerID">
  10065. a basic index for a signer.
  10066. </member>
  10067. <member name="M:Org.BouncyCastle.Cms.SignerInfoGeneratorBuilder.SetDirectSignature(System.Boolean)">
  10068. If the passed in flag is true, the signer signature will be based on the data, not
  10069. a collection of signed attributes, and no signed attributes will be included.
  10070. @return the builder object
  10071. </member>
  10072. <member name="M:Org.BouncyCastle.Cms.SignerInfoGeneratorBuilder.WithSignedAttributeGenerator(Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  10073. Provide a custom signed attribute generator.
  10074. @param signedGen a generator of signed attributes.
  10075. @return the builder object
  10076. </member>
  10077. <member name="M:Org.BouncyCastle.Cms.SignerInfoGeneratorBuilder.WithUnsignedAttributeGenerator(Org.BouncyCastle.Cms.CmsAttributeTableGenerator)">
  10078. Provide a generator of unsigned attributes.
  10079. @param unsignedGen a generator for signed attributes.
  10080. @return the builder object
  10081. </member>
  10082. <member name="M:Org.BouncyCastle.Cms.SignerInfoGeneratorBuilder.Build(Org.BouncyCastle.Crypto.ISignatureFactory,Org.BouncyCastle.X509.X509Certificate)">
  10083. Build a generator with the passed in X.509 certificate issuer and serial number as the signerIdentifier.
  10084. @param contentSigner operator for generating the final signature in the SignerInfo with.
  10085. @param certificate X.509 certificate related to the contentSigner.
  10086. @return a SignerInfoGenerator
  10087. @throws OperatorCreationException if the generator cannot be built.
  10088. </member>
  10089. <member name="M:Org.BouncyCastle.Cms.SignerInfoGeneratorBuilder.Build(Org.BouncyCastle.Crypto.ISignatureFactory,System.Byte[])">
  10090. Build a generator with the passed in subjectKeyIdentifier as the signerIdentifier. If used you should
  10091. try to follow the calculation described in RFC 5280 section 4.2.1.2.
  10092. @param signerFactory operator factory for generating the final signature in the SignerInfo with.
  10093. @param subjectKeyIdentifier key identifier to identify the public key for verifying the signature.
  10094. @return a SignerInfoGenerator
  10095. </member>
  10096. <member name="T:Org.BouncyCastle.Cms.SignerInformation">
  10097. an expanded SignerInfo block from a CMS Signed message
  10098. </member>
  10099. <member name="M:Org.BouncyCastle.Cms.SignerInformation.#ctor(Org.BouncyCastle.Cms.SignerInformation)">
  10100. Protected constructor. In some cases clients have their own idea about how to encode
  10101. the signed attributes and calculate the signature. This constructor is to allow developers
  10102. to deal with that by extending off the class and overridng methods like getSignedAttributes().
  10103. @param baseInfo the SignerInformation to base this one on.
  10104. </member>
  10105. <member name="P:Org.BouncyCastle.Cms.SignerInformation.Version">
  10106. return the version number for this objects underlying SignerInfo structure.
  10107. </member>
  10108. <member name="P:Org.BouncyCastle.Cms.SignerInformation.DigestAlgOid">
  10109. return the object identifier for the signature.
  10110. </member>
  10111. <member name="P:Org.BouncyCastle.Cms.SignerInformation.DigestAlgParams">
  10112. return the signature parameters, or null if there aren't any.
  10113. </member>
  10114. <member name="M:Org.BouncyCastle.Cms.SignerInformation.GetContentDigest">
  10115. return the content digest that was calculated during verification.
  10116. </member>
  10117. <member name="P:Org.BouncyCastle.Cms.SignerInformation.EncryptionAlgOid">
  10118. return the object identifier for the signature.
  10119. </member>
  10120. <member name="P:Org.BouncyCastle.Cms.SignerInformation.EncryptionAlgParams">
  10121. return the signature/encryption algorithm parameters, or null if
  10122. there aren't any.
  10123. </member>
  10124. <member name="P:Org.BouncyCastle.Cms.SignerInformation.SignedAttributes">
  10125. return a table of the signed attributes - indexed by
  10126. the OID of the attribute.
  10127. </member>
  10128. <member name="P:Org.BouncyCastle.Cms.SignerInformation.UnsignedAttributes">
  10129. return a table of the unsigned attributes indexed by
  10130. the OID of the attribute.
  10131. </member>
  10132. <member name="M:Org.BouncyCastle.Cms.SignerInformation.GetSignature">
  10133. return the encoded signature
  10134. </member>
  10135. <member name="M:Org.BouncyCastle.Cms.SignerInformation.GetCounterSignatures">
  10136. Return a SignerInformationStore containing the counter signatures attached to this
  10137. signer. If no counter signatures are present an empty store is returned.
  10138. </member>
  10139. <member name="M:Org.BouncyCastle.Cms.SignerInformation.GetEncodedSignedAttributes">
  10140. return the DER encoding of the signed attributes.
  10141. @throws IOException if an encoding error occurs.
  10142. </member>
  10143. <member name="M:Org.BouncyCastle.Cms.SignerInformation.Verify(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  10144. verify that the given public key successfully handles and confirms the
  10145. signature associated with this signer.
  10146. </member>
  10147. <member name="M:Org.BouncyCastle.Cms.SignerInformation.Verify(Org.BouncyCastle.X509.X509Certificate)">
  10148. verify that the given certificate successfully handles and confirms
  10149. the signature associated with this signer and, if a signingTime
  10150. attribute is available, that the certificate was valid at the time the
  10151. signature was generated.
  10152. </member>
  10153. <member name="M:Org.BouncyCastle.Cms.SignerInformation.ToSignerInfo">
  10154. Return the base ASN.1 CMS structure that this object contains.
  10155. @return an object containing a CMS SignerInfo structure.
  10156. </member>
  10157. <member name="M:Org.BouncyCastle.Cms.SignerInformation.ReplaceUnsignedAttributes(Org.BouncyCastle.Cms.SignerInformation,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  10158. Return a signer information object with the passed in unsigned
  10159. attributes replacing the ones that are current associated with
  10160. the object passed in.
  10161. @param signerInformation the signerInfo to be used as the basis.
  10162. @param unsignedAttributes the unsigned attributes to add.
  10163. @return a copy of the original SignerInformationObject with the changed attributes.
  10164. </member>
  10165. <member name="M:Org.BouncyCastle.Cms.SignerInformation.AddCounterSigners(Org.BouncyCastle.Cms.SignerInformation,Org.BouncyCastle.Cms.SignerInformationStore)">
  10166. Return a signer information object with passed in SignerInformationStore representing counter
  10167. signatures attached as an unsigned attribute.
  10168. @param signerInformation the signerInfo to be used as the basis.
  10169. @param counterSigners signer info objects carrying counter signature.
  10170. @return a copy of the original SignerInformationObject with the changed attributes.
  10171. </member>
  10172. <member name="M:Org.BouncyCastle.Cms.SignerInformationStore.#ctor(Org.BouncyCastle.Cms.SignerInformation)">
  10173. Create a store containing a single SignerInformation object.
  10174. @param signerInfo the signer information to contain.
  10175. </member>
  10176. <member name="M:Org.BouncyCastle.Cms.SignerInformationStore.#ctor(System.Collections.ICollection)">
  10177. Create a store containing a collection of SignerInformation objects.
  10178. @param signerInfos a collection signer information objects to contain.
  10179. </member>
  10180. <member name="M:Org.BouncyCastle.Cms.SignerInformationStore.GetFirstSigner(Org.BouncyCastle.Cms.SignerID)">
  10181. Return the first SignerInformation object that matches the
  10182. passed in selector. Null if there are no matches.
  10183. @param selector to identify a signer
  10184. @return a single SignerInformation object. Null if none matches.
  10185. </member>
  10186. <member name="P:Org.BouncyCastle.Cms.SignerInformationStore.Count">
  10187. <summary>The number of signers in the collection.</summary>
  10188. </member>
  10189. <member name="M:Org.BouncyCastle.Cms.SignerInformationStore.GetSigners">
  10190. <returns>An ICollection of all signers in the collection</returns>
  10191. </member>
  10192. <member name="M:Org.BouncyCastle.Cms.SignerInformationStore.GetSigners(Org.BouncyCastle.Cms.SignerID)">
  10193. Return possible empty collection with signers matching the passed in SignerID
  10194. @param selector a signer id to select against.
  10195. @return a collection of SignerInformation objects.
  10196. </member>
  10197. <member name="T:Org.BouncyCastle.Cms.SimpleAttributeTableGenerator">
  10198. Basic generator that just returns a preconstructed attribute table
  10199. </member>
  10200. <member name="T:Org.BouncyCastle.Crmf.AuthenticatorControl">
  10201. <summary>
  10202. Carrier for an authenticator control.
  10203. </summary>
  10204. </member>
  10205. <member name="M:Org.BouncyCastle.Crmf.AuthenticatorControl.#ctor(Org.BouncyCastle.Asn1.DerUtf8String)">
  10206. <summary>
  10207. Basic constructor - build from a UTF-8 string representing the token.
  10208. </summary>
  10209. <param name="token">UTF-8 string representing the token.</param>
  10210. </member>
  10211. <member name="M:Org.BouncyCastle.Crmf.AuthenticatorControl.#ctor(System.String)">
  10212. <summary>
  10213. Basic constructor - build from a string representing the token.
  10214. </summary>
  10215. <param name="token">string representing the token.</param>
  10216. </member>
  10217. <member name="P:Org.BouncyCastle.Crmf.AuthenticatorControl.Type">
  10218. <summary>
  10219. Return the type of this control.
  10220. </summary>
  10221. </member>
  10222. <member name="P:Org.BouncyCastle.Crmf.AuthenticatorControl.Value">
  10223. <summary>
  10224. Return the token associated with this control (a UTF8String).
  10225. </summary>
  10226. </member>
  10227. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.#ctor(System.Byte[])">
  10228. <summary>
  10229. Create a CertificateRequestMessage from the passed in bytes.
  10230. </summary>
  10231. <param name="encoded">BER/DER encoding of the CertReqMsg structure.</param>
  10232. </member>
  10233. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.ToAsn1Structure">
  10234. <summary>
  10235. Return the underlying ASN.1 object defining this CertificateRequestMessage object.
  10236. </summary>
  10237. <returns>A CertReqMsg</returns>
  10238. </member>
  10239. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.GetCertTemplate">
  10240. <summary>
  10241. Return the certificate template contained in this message.
  10242. </summary>
  10243. <returns>a CertTemplate structure.</returns>
  10244. </member>
  10245. <member name="P:Org.BouncyCastle.Crmf.CertificateRequestMessage.HasControls">
  10246. <summary>
  10247. Return whether or not this request has control values associated with it.
  10248. </summary>
  10249. <returns>true if there are control values present, false otherwise.</returns>
  10250. </member>
  10251. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.HasControl(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  10252. <summary>
  10253. Return whether or not this request has a specific type of control value.
  10254. </summary>
  10255. <param name="objectIdentifier">the type OID for the control value we are checking for.</param>
  10256. <returns>true if a control value of type is present, false otherwise.</returns>
  10257. </member>
  10258. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.GetControl(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  10259. <summary>
  10260. Return a control value of the specified type.
  10261. </summary>
  10262. <param name="type">the type OID for the control value we are checking for.</param>
  10263. <returns>the control value if present, null otherwise.</returns>
  10264. </member>
  10265. <member name="P:Org.BouncyCastle.Crmf.CertificateRequestMessage.HasProofOfPossession">
  10266. <summary>
  10267. Return whether or not this request message has a proof-of-possession field in it.
  10268. </summary>
  10269. <returns>true if proof-of-possession is present, false otherwise.</returns>
  10270. </member>
  10271. <member name="P:Org.BouncyCastle.Crmf.CertificateRequestMessage.ProofOfPossession">
  10272. <summary>
  10273. Return the type of the proof-of-possession this request message provides.
  10274. </summary>
  10275. <returns>one of: popRaVerified, popSigningKey, popKeyEncipherment, popKeyAgreement</returns>
  10276. </member>
  10277. <member name="P:Org.BouncyCastle.Crmf.CertificateRequestMessage.HasSigningKeyProofOfPossessionWithPkMac">
  10278. <summary>
  10279. Return whether or not the proof-of-possession (POP) is of the type popSigningKey and
  10280. it has a public key MAC associated with it.
  10281. </summary>
  10282. <returns>true if POP is popSigningKey and a PKMAC is present, false otherwise.</returns>
  10283. </member>
  10284. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.IsValidSigningKeyPop(Org.BouncyCastle.Crypto.IVerifierFactoryProvider)">
  10285. <summary>
  10286. Return whether or not a signing key proof-of-possession (POP) is valid.
  10287. </summary>
  10288. <param name="verifierProvider">a provider that can produce content verifiers for the signature contained in this POP.</param>
  10289. <returns>true if the POP is valid, false otherwise.</returns>
  10290. <exception cref="T:System.InvalidOperationException">if there is a problem in verification or content verifier creation.</exception>
  10291. <exception cref="T:System.InvalidOperationException">if POP not appropriate.</exception>
  10292. </member>
  10293. <member name="M:Org.BouncyCastle.Crmf.CertificateRequestMessage.GetEncoded">
  10294. <summary>
  10295. Return the ASN.1 encoding of the certReqMsg we wrap.
  10296. </summary>
  10297. <returns>a byte array containing the binary encoding of the certReqMsg.</returns>
  10298. </member>
  10299. <member name="M:Org.BouncyCastle.Crmf.EncryptedValueBuilder.#ctor(Org.BouncyCastle.Crypto.IKeyWrapper,Org.BouncyCastle.Crypto.ICipherBuilderWithKey)">
  10300. Create a builder that makes EncryptedValue structures.
  10301. <param name="wrapper">wrapper a wrapper for key used to encrypt the actual data contained in the EncryptedValue.</param>
  10302. <param name="encryptor">encryptor an output encryptor to encrypt the actual data contained in the EncryptedValue. </param>
  10303. </member>
  10304. <member name="M:Org.BouncyCastle.Crmf.EncryptedValueBuilder.#ctor(Org.BouncyCastle.Crypto.IKeyWrapper,Org.BouncyCastle.Crypto.ICipherBuilderWithKey,Org.BouncyCastle.Crmf.IEncryptedValuePadder)">
  10305. Create a builder that makes EncryptedValue structures with fixed length blocks padded using the passed in padder.
  10306. <param name="wrapper">a wrapper for key used to encrypt the actual data contained in the EncryptedValue.</param>
  10307. <param name="encryptor">encryptor an output encryptor to encrypt the actual data contained in the EncryptedValue.</param>
  10308. <param name="padder">padder a padder to ensure that the EncryptedValue created will always be a constant length.</param>
  10309. </member>
  10310. <member name="M:Org.BouncyCastle.Crmf.EncryptedValueBuilder.Build(System.Char[])">
  10311. Build an EncryptedValue structure containing the passed in pass phrase.
  10312. <param name="revocationPassphrase">a revocation pass phrase.</param>
  10313. <returns>an EncryptedValue containing the encrypted pass phrase.</returns>
  10314. </member>
  10315. <member name="M:Org.BouncyCastle.Crmf.EncryptedValueBuilder.Build(Org.BouncyCastle.X509.X509Certificate)">
  10316. <summary>
  10317. Build an EncryptedValue structure containing the certificate contained in
  10318. the passed in holder.
  10319. </summary>
  10320. <param name="holder">a holder containing a certificate.</param>
  10321. <returns>an EncryptedValue containing the encrypted certificate.</returns>
  10322. <exception cref="T:Org.BouncyCastle.Crmf.CrmfException">on a failure to encrypt the data, or wrap the symmetric key for this value.</exception>
  10323. </member>
  10324. <member name="M:Org.BouncyCastle.Crmf.EncryptedValueBuilder.Build(Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo)">
  10325. <summary>
  10326. Build an EncryptedValue structure containing the private key contained in
  10327. the passed info structure.
  10328. </summary>
  10329. <param name="privateKeyInfo">a PKCS#8 private key info structure.</param>
  10330. <returns>an EncryptedValue containing an EncryptedPrivateKeyInfo structure.</returns>
  10331. <exception cref="T:Org.BouncyCastle.Crmf.CrmfException">on a failure to encrypt the data, or wrap the symmetric key for this value.</exception>
  10332. </member>
  10333. <member name="T:Org.BouncyCastle.Crmf.IControl">
  10334. <summary>
  10335. Generic interface for a CertificateRequestMessage control value.
  10336. </summary>
  10337. </member>
  10338. <member name="P:Org.BouncyCastle.Crmf.IControl.Type">
  10339. <summary>
  10340. Return the type of this control.
  10341. </summary>
  10342. </member>
  10343. <member name="P:Org.BouncyCastle.Crmf.IControl.Value">
  10344. <summary>
  10345. Return the value contained in this control object.
  10346. </summary>
  10347. </member>
  10348. <member name="T:Org.BouncyCastle.Crmf.IEncryptedValuePadder">
  10349. <summary>
  10350. An encrypted value padder is used to make sure that prior to a value been
  10351. encrypted the data is padded to a standard length.
  10352. </summary>
  10353. </member>
  10354. <member name="M:Org.BouncyCastle.Crmf.IEncryptedValuePadder.GetPaddedData(System.Byte[])">
  10355. <summary>Return a byte array of padded data.</summary>
  10356. <param name="data">the data to be padded.</param>
  10357. <returns>a padded byte array containing data.</returns>
  10358. </member>
  10359. <member name="M:Org.BouncyCastle.Crmf.IEncryptedValuePadder.GetUnpaddedData(System.Byte[])">
  10360. <summary>Return a byte array of with padding removed.</summary>
  10361. <param name="paddedData">the data to be padded.</param>
  10362. <returns>an array containing the original unpadded data.</returns>
  10363. </member>
  10364. <member name="M:Org.BouncyCastle.Crmf.PkiArchiveControl.#ctor(Org.BouncyCastle.Asn1.Crmf.PkiArchiveOptions)">
  10365. <summary>
  10366. Basic constructor - build from an PKIArchiveOptions structure.
  10367. </summary>
  10368. <param name="pkiArchiveOptions">the ASN.1 structure that will underlie this control.</param>
  10369. </member>
  10370. <member name="P:Org.BouncyCastle.Crmf.PkiArchiveControl.Type">
  10371. <summary>
  10372. Return the type of this control.
  10373. </summary>
  10374. <returns>CRMFObjectIdentifiers.id_regCtrl_pkiArchiveOptions</returns>
  10375. </member>
  10376. <member name="P:Org.BouncyCastle.Crmf.PkiArchiveControl.Value">
  10377. <summary>
  10378. Return the underlying ASN.1 object.
  10379. </summary>
  10380. <returns>a PKIArchiveOptions structure.</returns>
  10381. </member>
  10382. <member name="P:Org.BouncyCastle.Crmf.PkiArchiveControl.ArchiveType">
  10383. <summary>
  10384. Return the archive control type, one of: encryptedPrivKey,keyGenParameters,or archiveRemGenPrivKey.
  10385. </summary>
  10386. <returns>the archive control type.</returns>
  10387. </member>
  10388. <member name="P:Org.BouncyCastle.Crmf.PkiArchiveControl.EnvelopedData">
  10389. <summary>
  10390. Return whether this control contains enveloped data.
  10391. </summary>
  10392. <returns>true if the control contains enveloped data, false otherwise.</returns>
  10393. </member>
  10394. <member name="M:Org.BouncyCastle.Crmf.PkiArchiveControl.GetEnvelopedData">
  10395. <summary>
  10396. Return the enveloped data structure contained in this control.
  10397. </summary>
  10398. <returns>a CMSEnvelopedData object.</returns>
  10399. </member>
  10400. <member name="M:Org.BouncyCastle.Crmf.PkiArchiveControlBuilder.#ctor(Org.BouncyCastle.Asn1.Pkcs.PrivateKeyInfo,Org.BouncyCastle.Asn1.X509.GeneralName)">
  10401. <summary>
  10402. Basic constructor - specify the contents of the PKIArchiveControl structure.
  10403. </summary>
  10404. <param name="privateKeyInfo">the private key to be archived.</param>
  10405. <param name="generalName">the general name to be associated with the private key.</param>
  10406. </member>
  10407. <member name="M:Org.BouncyCastle.Crmf.PkiArchiveControlBuilder.AddRecipientGenerator(Org.BouncyCastle.Cms.RecipientInfoGenerator)">
  10408. <summary>Add a recipient generator to this control.</summary>
  10409. <param name="recipientGen"> recipient generator created for a specific recipient.</param>
  10410. <returns>this builder object.</returns>
  10411. </member>
  10412. <member name="M:Org.BouncyCastle.Crmf.PkiArchiveControlBuilder.Build(Org.BouncyCastle.Crypto.ICipherBuilderWithKey)">
  10413. <summary>Build the PKIArchiveControl using the passed in encryptor to encrypt its contents.</summary>
  10414. <param name="contentEncryptor">a suitable content encryptor.</param>
  10415. <returns>a PKIArchiveControl object.</returns>
  10416. </member>
  10417. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.#ctor">
  10418. <summary>
  10419. Default, IterationCount = 1000, OIW=IdSha1, Mac=HmacSHA1
  10420. </summary>
  10421. </member>
  10422. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.#ctor(Org.BouncyCastle.Crmf.IPKMacPrimitivesProvider)">
  10423. <summary>
  10424. Defaults with IPKMacPrimitivesProvider
  10425. </summary>
  10426. <param name="provider"></param>
  10427. </member>
  10428. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.#ctor(Org.BouncyCastle.Crmf.IPKMacPrimitivesProvider,Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier,Org.BouncyCastle.Asn1.X509.AlgorithmIdentifier)">
  10429. <summary>
  10430. Create.
  10431. </summary>
  10432. <param name="provider">The Mac provider</param>
  10433. <param name="digestAlgorithmIdentifier">Digest Algorithm Id</param>
  10434. <param name="macAlgorithmIdentifier">Mac Algorithm Id</param>
  10435. </member>
  10436. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.#ctor(Org.BouncyCastle.Crmf.IPKMacPrimitivesProvider,System.Int32)">
  10437. <summary>
  10438. Create a PKMAC builder enforcing a ceiling on the maximum iteration count.
  10439. </summary>
  10440. <param name="provider">supporting calculator</param>
  10441. <param name="maxIterations">max allowable value for iteration count.</param>
  10442. </member>
  10443. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.SetSaltLength(System.Int32)">
  10444. Set the salt length in octets.
  10445. @param saltLength length in octets of the salt to be generated.
  10446. @return the generator
  10447. </member>
  10448. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.SetIterationCount(System.Int32)">
  10449. <summary>
  10450. Set the iteration count.
  10451. </summary>
  10452. <param name="iterationCount">the iteration count.</param>
  10453. <returns>this</returns>
  10454. <exception cref="T:System.ArgumentException">if iteration count is less than 100</exception>
  10455. </member>
  10456. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.SetParameters(Org.BouncyCastle.Asn1.Cmp.PbmParameter)">
  10457. <summary>
  10458. Set PbmParameters
  10459. </summary>
  10460. <param name="parameters">The parameters.</param>
  10461. <returns>this</returns>
  10462. </member>
  10463. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.SetSecureRandom(Org.BouncyCastle.Security.SecureRandom)">
  10464. <summary>
  10465. The Secure random
  10466. </summary>
  10467. <param name="random">The random.</param>
  10468. <returns>this</returns>
  10469. </member>
  10470. <member name="M:Org.BouncyCastle.Crmf.PKMacBuilder.Build(System.Char[])">
  10471. <summary>
  10472. Build an IMacFactory.
  10473. </summary>
  10474. <param name="password">The password.</param>
  10475. <returns>IMacFactory</returns>
  10476. </member>
  10477. <member name="M:Org.BouncyCastle.Crmf.RegTokenControl.#ctor(Org.BouncyCastle.Asn1.DerUtf8String)">
  10478. <summary>
  10479. Basic constructor - build from a UTF-8 string representing the token.
  10480. </summary>
  10481. <param name="token">UTF-8 string representing the token.</param>
  10482. </member>
  10483. <member name="M:Org.BouncyCastle.Crmf.RegTokenControl.#ctor(System.String)">
  10484. <summary>
  10485. Basic constructor - build from a string representing the token.
  10486. </summary>
  10487. <param name="token">string representing the token.</param>
  10488. </member>
  10489. <member name="P:Org.BouncyCastle.Crmf.RegTokenControl.Type">
  10490. <summary>
  10491. Return the type of this control.
  10492. </summary>
  10493. <returns>CRMFObjectIdentifiers.id_regCtrl_regToken</returns>
  10494. </member>
  10495. <member name="P:Org.BouncyCastle.Crmf.RegTokenControl.Value">
  10496. <summary>
  10497. Return the token associated with this control (a UTF8String).
  10498. </summary>
  10499. <returns>a UTF8String.</returns>
  10500. </member>
  10501. <member name="T:Org.BouncyCastle.Crypto.Agreement.DHAgreement">
  10502. a Diffie-Hellman key exchange engine.
  10503. <p>
  10504. note: This uses MTI/A0 key agreement in order to make the key agreement
  10505. secure against passive attacks. If you're doing Diffie-Hellman and both
  10506. parties have long term public keys you should look at using this. For
  10507. further information have a look at RFC 2631.</p>
  10508. <p>
  10509. It's possible to extend this to more than two parties as well, for the moment
  10510. that is left as an exercise for the reader.</p>
  10511. </member>
  10512. <member name="M:Org.BouncyCastle.Crypto.Agreement.DHAgreement.CalculateMessage">
  10513. calculate our initial message.
  10514. </member>
  10515. <member name="M:Org.BouncyCastle.Crypto.Agreement.DHAgreement.CalculateAgreement(Org.BouncyCastle.Crypto.Parameters.DHPublicKeyParameters,Org.BouncyCastle.Math.BigInteger)">
  10516. given a message from a given party and the corresponding public key
  10517. calculate the next message in the agreement sequence. In this case
  10518. this will represent the shared secret.
  10519. </member>
  10520. <member name="T:Org.BouncyCastle.Crypto.Agreement.DHBasicAgreement">
  10521. a Diffie-Hellman key agreement class.
  10522. <p>
  10523. note: This is only the basic algorithm, it doesn't take advantage of
  10524. long term public keys if they are available. See the DHAgreement class
  10525. for a "better" implementation.</p>
  10526. </member>
  10527. <member name="M:Org.BouncyCastle.Crypto.Agreement.DHBasicAgreement.CalculateAgreement(Org.BouncyCastle.Crypto.ICipherParameters)">
  10528. given a short term public key from a given party calculate the next
  10529. message in the agreement sequence.
  10530. </member>
  10531. <member name="T:Org.BouncyCastle.Crypto.Agreement.DHStandardGroups">
  10532. <summary>Standard Diffie-Hellman groups from various IETF specifications.</summary>
  10533. </member>
  10534. <member name="F:Org.BouncyCastle.Crypto.Agreement.DHStandardGroups.rfc5114_1024_160">
  10535. <remarks>
  10536. Existence of a "hidden SNFS" backdoor cannot be ruled out. see https://eprint.iacr.org/2016/961.pdf .
  10537. </remarks>
  10538. </member>
  10539. <member name="F:Org.BouncyCastle.Crypto.Agreement.DHStandardGroups.rfc5114_2048_224">
  10540. <remarks>
  10541. Existence of a "hidden SNFS" backdoor cannot be ruled out. see https://eprint.iacr.org/2016/961.pdf .
  10542. </remarks>
  10543. </member>
  10544. <member name="F:Org.BouncyCastle.Crypto.Agreement.DHStandardGroups.rfc5114_2048_256">
  10545. <remarks>
  10546. Existence of a "hidden SNFS" backdoor cannot be ruled out. see https://eprint.iacr.org/2016/961.pdf .
  10547. </remarks>
  10548. </member>
  10549. <member name="T:Org.BouncyCastle.Crypto.Agreement.ECDHBasicAgreement">
  10550. P1363 7.2.1 ECSVDP-DH
  10551. ECSVDP-DH is Elliptic Curve Secret Value Derivation Primitive,
  10552. Diffie-Hellman version. It is based on the work of [DH76], [Mil86],
  10553. and [Kob87]. This primitive derives a shared secret value from one
  10554. party's private key and another party's public key, where both have
  10555. the same set of EC domain parameters. If two parties correctly
  10556. execute this primitive, they will produce the same output. This
  10557. primitive can be invoked by a scheme to derive a shared secret key;
  10558. specifically, it may be used with the schemes ECKAS-DH1 and
  10559. DL/ECKAS-DH2. It assumes that the input keys are valid (see also
  10560. Section 7.2.2).
  10561. </member>
  10562. <member name="T:Org.BouncyCastle.Crypto.Agreement.ECDHCBasicAgreement">
  10563. P1363 7.2.2 ECSVDP-DHC
  10564. ECSVDP-DHC is Elliptic Curve Secret Value Derivation Primitive,
  10565. Diffie-Hellman version with cofactor multiplication. It is based on
  10566. the work of [DH76], [Mil86], [Kob87], [LMQ98] and [Kal98a]. This
  10567. primitive derives a shared secret value from one party's private key
  10568. and another party's public key, where both have the same set of EC
  10569. domain parameters. If two parties correctly execute this primitive,
  10570. they will produce the same output. This primitive can be invoked by a
  10571. scheme to derive a shared secret key; specifically, it may be used
  10572. with the schemes ECKAS-DH1 and DL/ECKAS-DH2. It does not assume the
  10573. validity of the input public key (see also Section 7.2.1).
  10574. <p>
  10575. Note: As stated P1363 compatibility mode with ECDH can be preset, and
  10576. in this case the implementation doesn't have a ECDH compatibility mode
  10577. (if you want that just use ECDHBasicAgreement and note they both implement
  10578. BasicAgreement!).</p>
  10579. </member>
  10580. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant">
  10581. <summary>
  10582. A participant in a Password Authenticated Key Exchange by Juggling (J-PAKE) exchange.
  10583. The J-PAKE exchange is defined by Feng Hao and Peter Ryan in the paper
  10584. <a href="http://grouper.ieee.org/groups/1363/Research/contributions/hao-ryan-2008.pdf">
  10585. "Password Authenticated Key Exchange by Juggling, 2008."</a>
  10586. The J-PAKE protocol is symmetric.
  10587. There is no notion of a <i>client</i> or <i>server</i>, but rather just two <i>participants</i>.
  10588. An instance of JPakeParticipant represents one participant, and
  10589. is the primary interface for executing the exchange.
  10590. To execute an exchange, construct a JPakeParticipant on each end,
  10591. and call the following 7 methods
  10592. (once and only once, in the given order, for each participant, sending messages between them as described):
  10593. CreateRound1PayloadToSend() - and send the payload to the other participant
  10594. ValidateRound1PayloadReceived(JPakeRound1Payload) - use the payload received from the other participant
  10595. CreateRound2PayloadToSend() - and send the payload to the other participant
  10596. ValidateRound2PayloadReceived(JPakeRound2Payload) - use the payload received from the other participant
  10597. CalculateKeyingMaterial()
  10598. CreateRound3PayloadToSend(BigInteger) - and send the payload to the other participant
  10599. ValidateRound3PayloadReceived(JPakeRound3Payload, BigInteger) - use the payload received from the other participant
  10600. Each side should derive a session key from the keying material returned by CalculateKeyingMaterial().
  10601. The caller is responsible for deriving the session key using a secure key derivation function (KDF).
  10602. Round 3 is an optional key confirmation process.
  10603. If you do not execute round 3, then there is no assurance that both participants are using the same key.
  10604. (i.e. if the participants used different passwords, then their session keys will differ.)
  10605. If the round 3 validation succeeds, then the keys are guaranteed to be the same on both sides.
  10606. The symmetric design can easily support the asymmetric cases when one party initiates the communication.
  10607. e.g. Sometimes the round1 payload and round2 payload may be sent in one pass.
  10608. Also, in some cases, the key confirmation payload can be sent together with the round2 payload.
  10609. These are the trivial techniques to optimize the communication.
  10610. The key confirmation process is implemented as specified in
  10611. <a href="http://csrc.nist.gov/publications/nistpubs/800-56A/SP800-56A_Revision1_Mar08-2007.pdf">NIST SP 800-56A Revision 1</a>,
  10612. Section 8.2 Unilateral Key Confirmation for Key Agreement Schemes.
  10613. This class is stateful and NOT threadsafe.
  10614. Each instance should only be used for ONE complete J-PAKE exchange
  10615. (i.e. a new JPakeParticipant should be constructed for each new J-PAKE exchange).
  10616. </summary>
  10617. </member>
  10618. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.#ctor(System.String,System.Char[])">
  10619. <summary>
  10620. Convenience constructor for a new JPakeParticipant that uses
  10621. the JPakePrimeOrderGroups#NIST_3072 prime order group,
  10622. a SHA-256 digest, and a default SecureRandom implementation.
  10623. After construction, the State state will be STATE_INITIALIZED.
  10624. Throws NullReferenceException if any argument is null. Throws
  10625. ArgumentException if password is empty.
  10626. </summary>
  10627. <param name="participantId">Unique identifier of this participant.
  10628. The two participants in the exchange must NOT share the same id.</param>
  10629. <param name="password">Shared secret.
  10630. A defensive copy of this array is made (and cleared once CalculateKeyingMaterial() is called).
  10631. Caller should clear the input password as soon as possible.</param>
  10632. </member>
  10633. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.#ctor(System.String,System.Char[],Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroup)">
  10634. <summary>
  10635. Convenience constructor for a new JPakeParticipant that uses
  10636. a SHA-256 digest, and a default SecureRandom implementation.
  10637. After construction, the State state will be STATE_INITIALIZED.
  10638. Throws NullReferenceException if any argument is null. Throws
  10639. ArgumentException if password is empty.
  10640. </summary>
  10641. <param name="participantId">Unique identifier of this participant.
  10642. The two participants in the exchange must NOT share the same id.</param>
  10643. <param name="password">Shared secret.
  10644. A defensive copy of this array is made (and cleared once CalculateKeyingMaterial() is called).
  10645. Caller should clear the input password as soon as possible.</param>
  10646. <param name="group">Prime order group. See JPakePrimeOrderGroups for standard groups.</param>
  10647. </member>
  10648. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.#ctor(System.String,System.Char[],Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroup,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Security.SecureRandom)">
  10649. <summary>
  10650. Constructor for a new JPakeParticipant.
  10651. After construction, the State state will be STATE_INITIALIZED.
  10652. Throws NullReferenceException if any argument is null. Throws
  10653. ArgumentException if password is empty.
  10654. </summary>
  10655. <param name="participantId">Unique identifier of this participant.
  10656. The two participants in the exchange must NOT share the same id.</param>
  10657. <param name="password">Shared secret.
  10658. A defensive copy of this array is made (and cleared once CalculateKeyingMaterial() is called).
  10659. Caller should clear the input password as soon as possible.</param>
  10660. <param name="group">Prime order group. See JPakePrimeOrderGroups for standard groups.</param>
  10661. <param name="digest">Digest to use during zero knowledge proofs and key confirmation
  10662. (SHA-256 or stronger preferred).</param>
  10663. <param name="random">Source of secure random data for x1 and x2, and for the zero knowledge proofs.</param>
  10664. </member>
  10665. <member name="P:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.State">
  10666. <summary>
  10667. Gets the current state of this participant.
  10668. See the <tt>STATE_*</tt> constants for possible values.
  10669. </summary>
  10670. </member>
  10671. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.CreateRound1PayloadToSend">
  10672. <summary>
  10673. Creates and returns the payload to send to the other participant during round 1.
  10674. After execution, the State state} will be STATE_ROUND_1_CREATED}.
  10675. </summary>
  10676. </member>
  10677. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.ValidateRound1PayloadReceived(Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload)">
  10678. <summary>
  10679. Validates the payload received from the other participant during round 1.
  10680. Must be called prior to CreateRound2PayloadToSend().
  10681. After execution, the State state will be STATE_ROUND_1_VALIDATED.
  10682. Throws CryptoException if validation fails. Throws InvalidOperationException
  10683. if called multiple times.
  10684. </summary>
  10685. </member>
  10686. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.CreateRound2PayloadToSend">
  10687. <summary>
  10688. Creates and returns the payload to send to the other participant during round 2.
  10689. ValidateRound1PayloadReceived(JPakeRound1Payload) must be called prior to this method.
  10690. After execution, the State state will be STATE_ROUND_2_CREATED.
  10691. Throws InvalidOperationException if called prior to ValidateRound1PayloadReceived(JPakeRound1Payload), or multiple times
  10692. </summary>
  10693. </member>
  10694. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.ValidateRound2PayloadReceived(Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound2Payload)">
  10695. <summary>
  10696. Validates the payload received from the other participant during round 2.
  10697. Note that this DOES NOT detect a non-common password.
  10698. The only indication of a non-common password is through derivation
  10699. of different keys (which can be detected explicitly by executing round 3 and round 4)
  10700. Must be called prior to CalculateKeyingMaterial().
  10701. After execution, the State state will be STATE_ROUND_2_VALIDATED.
  10702. Throws CryptoException if validation fails. Throws
  10703. InvalidOperationException if called prior to ValidateRound1PayloadReceived(JPakeRound1Payload), or multiple times
  10704. </summary>
  10705. </member>
  10706. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.CalculateKeyingMaterial">
  10707. <summary>
  10708. Calculates and returns the key material.
  10709. A session key must be derived from this key material using a secure key derivation function (KDF).
  10710. The KDF used to derive the key is handled externally (i.e. not by JPakeParticipant).
  10711. The keying material will be identical for each participant if and only if
  10712. each participant's password is the same. i.e. If the participants do not
  10713. share the same password, then each participant will derive a different key.
  10714. Therefore, if you immediately start using a key derived from
  10715. the keying material, then you must handle detection of incorrect keys.
  10716. If you want to handle this detection explicitly, you can optionally perform
  10717. rounds 3 and 4. See JPakeParticipant for details on how to execute
  10718. rounds 3 and 4.
  10719. The keying material will be in the range <tt>[0, p-1]</tt>.
  10720. ValidateRound2PayloadReceived(JPakeRound2Payload) must be called prior to this method.
  10721. As a side effect, the internal password array is cleared, since it is no longer needed.
  10722. After execution, the State state will be STATE_KEY_CALCULATED.
  10723. Throws InvalidOperationException if called prior to ValidateRound2PayloadReceived(JPakeRound2Payload),
  10724. or if called multiple times.
  10725. </summary>
  10726. </member>
  10727. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.CreateRound3PayloadToSend(Org.BouncyCastle.Math.BigInteger)">
  10728. <summary>
  10729. Creates and returns the payload to send to the other participant during round 3.
  10730. See JPakeParticipant for more details on round 3.
  10731. After execution, the State state} will be STATE_ROUND_3_CREATED.
  10732. Throws InvalidOperationException if called prior to CalculateKeyingMaterial, or multiple
  10733. times.
  10734. </summary>
  10735. <param name="keyingMaterial">The keying material as returned from CalculateKeyingMaterial().</param>
  10736. </member>
  10737. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeParticipant.ValidateRound3PayloadReceived(Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound3Payload,Org.BouncyCastle.Math.BigInteger)">
  10738. <summary>
  10739. Validates the payload received from the other participant during round 3.
  10740. See JPakeParticipant for more details on round 3.
  10741. After execution, the State state will be STATE_ROUND_3_VALIDATED.
  10742. Throws CryptoException if validation fails. Throws InvalidOperationException if called prior to
  10743. CalculateKeyingMaterial or multiple times
  10744. </summary>
  10745. <param name="round3PayloadReceived">The round 3 payload received from the other participant.</param>
  10746. <param name="keyingMaterial">The keying material as returned from CalculateKeyingMaterial().</param>
  10747. </member>
  10748. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroup">
  10749. <summary>
  10750. A pre-computed prime order group for use during a J-PAKE exchange.
  10751. Typically a Schnorr group is used. In general, J-PAKE can use any prime order group
  10752. that is suitable for public key cryptography, including elliptic curve cryptography.
  10753. See JPakePrimeOrderGroups for convenient standard groups.
  10754. NIST <a href="http://csrc.nist.gov/groups/ST/toolkit/documents/Examples/DSA2_All.pdf">publishes</a>
  10755. many groups that can be used for the desired level of security.
  10756. </summary>
  10757. </member>
  10758. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroup.#ctor(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10759. <summary>
  10760. Constructs a new JPakePrimeOrderGroup.
  10761. In general, you should use one of the pre-approved groups from
  10762. JPakePrimeOrderGroups, rather than manually constructing one.
  10763. The following basic checks are performed:
  10764. p-1 must be evenly divisible by q
  10765. g must be in [2, p-1]
  10766. g^q mod p must equal 1
  10767. p must be prime (within reasonably certainty)
  10768. q must be prime (within reasonably certainty)
  10769. The prime checks are performed using BigInteger#isProbablePrime(int),
  10770. and are therefore subject to the same probability guarantees.
  10771. These checks prevent trivial mistakes.
  10772. However, due to the small uncertainties if p and q are not prime,
  10773. advanced attacks are not prevented.
  10774. Use it at your own risk.
  10775. Throws NullReferenceException if any argument is null. Throws
  10776. InvalidOperationException is any of the above validations fail.
  10777. </summary>
  10778. </member>
  10779. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroup.#ctor(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.Boolean)">
  10780. <summary>
  10781. Constructor used by the pre-approved groups in JPakePrimeOrderGroups.
  10782. These pre-approved groups can avoid the expensive checks.
  10783. User-specified groups should not use this constructor.
  10784. </summary>
  10785. </member>
  10786. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroups">
  10787. <summary>
  10788. Standard pre-computed prime order groups for use by J-PAKE.
  10789. (J-PAKE can use pre-computed prime order groups, same as DSA and Diffie-Hellman.)
  10790. <p/>
  10791. This class contains some convenient constants for use as input for
  10792. constructing {@link JPAKEParticipant}s.
  10793. <p/>
  10794. The prime order groups below are taken from Sun's JDK JavaDoc (docs/guide/security/CryptoSpec.html#AppB),
  10795. and from the prime order groups
  10796. <a href="http://csrc.nist.gov/groups/ST/toolkit/documents/Examples/DSA2_All.pdf">published by NIST</a>.
  10797. </summary>
  10798. </member>
  10799. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroups.SUN_JCE_1024">
  10800. <summary>
  10801. From Sun's JDK JavaDoc (docs/guide/security/CryptoSpec.html#AppB)
  10802. 1024-bit p, 160-bit q and 1024-bit g for 80-bit security.
  10803. </summary>
  10804. </member>
  10805. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroups.NIST_2048">
  10806. <summary>
  10807. From NIST.
  10808. 2048-bit p, 224-bit q and 2048-bit g for 112-bit security.
  10809. </summary>
  10810. </member>
  10811. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakePrimeOrderGroups.NIST_3072">
  10812. <summary>
  10813. From NIST.
  10814. 3072-bit p, 256-bit q and 3072-bit g for 128-bit security.
  10815. </summary>
  10816. </member>
  10817. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload">
  10818. <summary>
  10819. The payload sent/received during the first round of a J-PAKE exchange.
  10820. Each JPAKEParticipant creates and sends an instance of this payload to
  10821. the other. The payload to send should be created via
  10822. JPAKEParticipant.CreateRound1PayloadToSend().
  10823. Each participant must also validate the payload received from the other.
  10824. The received payload should be validated via
  10825. JPAKEParticipant.ValidateRound1PayloadReceived(JPakeRound1Payload).
  10826. </summary>
  10827. </member>
  10828. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload.participantId">
  10829. <summary>
  10830. The id of the JPAKEParticipant who created/sent this payload.
  10831. </summary>
  10832. </member>
  10833. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload.gx1">
  10834. <summary>
  10835. The value of g^x1
  10836. </summary>
  10837. </member>
  10838. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload.gx2">
  10839. <summary>
  10840. The value of g^x2
  10841. </summary>
  10842. </member>
  10843. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload.knowledgeProofForX1">
  10844. <summary>
  10845. The zero knowledge proof for x1.
  10846. This is a two element array, containing {g^v, r} for x1.
  10847. </summary>
  10848. </member>
  10849. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound1Payload.knowledgeProofForX2">
  10850. <summary>
  10851. The zero knowledge proof for x2.
  10852. This is a two element array, containing {g^v, r} for x2.
  10853. </summary>
  10854. </member>
  10855. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound2Payload">
  10856. <summary>
  10857. The payload sent/received during the second round of a J-PAKE exchange.
  10858. Each JPAKEParticipant creates and sends an instance
  10859. of this payload to the other JPAKEParticipant.
  10860. The payload to send should be created via
  10861. JPAKEParticipant#createRound2PayloadToSend()
  10862. Each JPAKEParticipant must also validate the payload
  10863. received from the other JPAKEParticipant.
  10864. The received payload should be validated via
  10865. JPAKEParticipant#validateRound2PayloadReceived(JPakeRound2Payload)
  10866. </summary>
  10867. </member>
  10868. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound2Payload.participantId">
  10869. <summary>
  10870. The id of the JPAKEParticipant who created/sent this payload.
  10871. </summary>
  10872. </member>
  10873. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound2Payload.a">
  10874. <summary>
  10875. The value of A, as computed during round 2.
  10876. </summary>
  10877. </member>
  10878. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound2Payload.knowledgeProofForX2s">
  10879. <summary>
  10880. The zero knowledge proof for x2 * s.
  10881. This is a two element array, containing {g^v, r} for x2 * s.
  10882. </summary>
  10883. </member>
  10884. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound3Payload">
  10885. <summary>
  10886. The payload sent/received during the optional third round of a J-PAKE exchange,
  10887. which is for explicit key confirmation.
  10888. Each JPAKEParticipant creates and sends an instance
  10889. of this payload to the other JPAKEParticipant.
  10890. The payload to send should be created via
  10891. JPAKEParticipant#createRound3PayloadToSend(BigInteger)
  10892. Eeach JPAKEParticipant must also validate the payload
  10893. received from the other JPAKEParticipant.
  10894. The received payload should be validated via
  10895. JPAKEParticipant#validateRound3PayloadReceived(JPakeRound3Payload, BigInteger)
  10896. </summary>
  10897. </member>
  10898. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound3Payload.participantId">
  10899. <summary>
  10900. The id of the {@link JPAKEParticipant} who created/sent this payload.
  10901. </summary>
  10902. </member>
  10903. <member name="F:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeRound3Payload.macTag">
  10904. <summary>
  10905. The value of MacTag, as computed by round 3.
  10906. See JPAKEUtil#calculateMacTag(string, string, BigInteger, BigInteger, BigInteger, BigInteger, BigInteger, org.bouncycastle.crypto.Digest)
  10907. </summary>
  10908. </member>
  10909. <member name="T:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities">
  10910. <summary>
  10911. Primitives needed for a J-PAKE exchange.
  10912. The recommended way to perform a J-PAKE exchange is by using
  10913. two JPAKEParticipants. Internally, those participants
  10914. call these primitive operations in JPakeUtilities.
  10915. The primitives, however, can be used without a JPAKEParticipant if needed.
  10916. </summary>
  10917. </member>
  10918. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.GenerateX1(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom)">
  10919. <summary>
  10920. Return a value that can be used as x1 or x3 during round 1.
  10921. The returned value is a random value in the range [0, q-1].
  10922. </summary>
  10923. </member>
  10924. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.GenerateX2(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom)">
  10925. <summary>
  10926. Return a value that can be used as x2 or x4 during round 1.
  10927. The returned value is a random value in the range [1, q-1].
  10928. </summary>
  10929. </member>
  10930. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateS(System.Char[])">
  10931. <summary>
  10932. Converts the given password to a BigInteger
  10933. for use in arithmetic calculations.
  10934. </summary>
  10935. </member>
  10936. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateGx(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10937. <summary>
  10938. Calculate g^x mod p as done in round 1.
  10939. </summary>
  10940. </member>
  10941. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateGA(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10942. <summary>
  10943. Calculate ga as done in round 2.
  10944. </summary>
  10945. </member>
  10946. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateX2s(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10947. <summary>
  10948. Calculate x2 * s as done in round 2.
  10949. </summary>
  10950. </member>
  10951. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateA(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10952. <summary>
  10953. Calculate A as done in round 2.
  10954. </summary>
  10955. </member>
  10956. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateZeroKnowledgeProof(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.String,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Security.SecureRandom)">
  10957. <summary>
  10958. Calculate a zero knowledge proof of x using Schnorr's signature.
  10959. The returned array has two elements {g^v, r = v-x*h} for x.
  10960. </summary>
  10961. </member>
  10962. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateGx4(Org.BouncyCastle.Math.BigInteger)">
  10963. <summary>
  10964. Validates that g^x4 is not 1.
  10965. throws CryptoException if g^x4 is 1
  10966. </summary>
  10967. </member>
  10968. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateGa(Org.BouncyCastle.Math.BigInteger)">
  10969. <summary>
  10970. Validates that ga is not 1.
  10971. As described by Feng Hao...
  10972. Alice could simply check ga != 1 to ensure it is a generator.
  10973. In fact, as we will explain in Section 3, (x1 + x3 + x4 ) is random over Zq even in the face of active attacks.
  10974. Hence, the probability for ga = 1 is extremely small - on the order of 2^160 for 160-bit q.
  10975. throws CryptoException if ga is 1
  10976. </summary>
  10977. </member>
  10978. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateZeroKnowledgeProof(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger[],System.String,Org.BouncyCastle.Crypto.IDigest)">
  10979. <summary>
  10980. Validates the zero knowledge proof (generated by
  10981. calculateZeroKnowledgeProof(BigInteger, BigInteger, BigInteger, BigInteger, BigInteger, string, Digest, SecureRandom)
  10982. is correct.
  10983. throws CryptoException if the zero knowledge proof is not correct
  10984. </summary>
  10985. </member>
  10986. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateKeyingMaterial(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  10987. <summary>
  10988. Calculates the keying material, which can be done after round 2 has completed.
  10989. A session key must be derived from this key material using a secure key derivation function (KDF).
  10990. The KDF used to derive the key is handled externally (i.e. not by JPAKEParticipant).
  10991. KeyingMaterial = (B/g^{x2*x4*s})^x2
  10992. </summary>
  10993. </member>
  10994. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateParticipantIdsDiffer(System.String,System.String)">
  10995. <summary>
  10996. Validates that the given participant ids are not equal.
  10997. (For the J-PAKE exchange, each participant must use a unique id.)
  10998. Throws CryptoException if the participantId strings are equal.
  10999. </summary>
  11000. </member>
  11001. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateParticipantIdsEqual(System.String,System.String)">
  11002. <summary>
  11003. Validates that the given participant ids are equal.
  11004. This is used to ensure that the payloads received from
  11005. each round all come from the same participant.
  11006. </summary>
  11007. </member>
  11008. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateNotNull(System.Object,System.String)">
  11009. <summary>
  11010. Validates that the given object is not null.
  11011. throws NullReferenceException if the object is null.
  11012. </summary>
  11013. <param name="obj">object in question</param>
  11014. <param name="description">name of the object (to be used in exception message)</param>
  11015. </member>
  11016. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateMacTag(System.String,System.String,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest)">
  11017. <summary>
  11018. Calculates the MacTag (to be used for key confirmation), as defined by
  11019. <a href="http://csrc.nist.gov/publications/nistpubs/800-56A/SP800-56A_Revision1_Mar08-2007.pdf">NIST SP 800-56A Revision 1</a>,
  11020. Section 8.2 Unilateral Key Confirmation for Key Agreement Schemes.
  11021. MacTag = HMAC(MacKey, MacLen, MacData)
  11022. MacKey = H(K || "JPAKE_KC")
  11023. MacData = "KC_1_U" || participantId || partnerParticipantId || gx1 || gx2 || gx3 || gx4
  11024. Note that both participants use "KC_1_U" because the sender of the round 3 message
  11025. is always the initiator for key confirmation.
  11026. HMAC = {@link HMac} used with the given {@link Digest}
  11027. H = The given {@link Digest}
  11028. MacLen = length of MacTag
  11029. </summary>
  11030. </member>
  11031. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.CalculateMacKey(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest)">
  11032. <summary>
  11033. Calculates the MacKey (i.e. the key to use when calculating the MagTag for key confirmation).
  11034. MacKey = H(K || "JPAKE_KC")
  11035. </summary>
  11036. </member>
  11037. <member name="M:Org.BouncyCastle.Crypto.Agreement.JPake.JPakeUtilities.ValidateMacTag(System.String,System.String,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Math.BigInteger)">
  11038. <summary>
  11039. Validates the MacTag received from the partner participant.
  11040. throws CryptoException if the participantId strings are equal.
  11041. </summary>
  11042. </member>
  11043. <member name="T:Org.BouncyCastle.Crypto.Agreement.Kdf.ConcatenationKdfGenerator">
  11044. Generator for Concatenation Key Derivation Function defined in NIST SP 800-56A, Sect 5.8.1
  11045. </member>
  11046. <member name="M:Org.BouncyCastle.Crypto.Agreement.Kdf.ConcatenationKdfGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  11047. @param digest the digest to be used as the source of generated bytes
  11048. </member>
  11049. <member name="P:Org.BouncyCastle.Crypto.Agreement.Kdf.ConcatenationKdfGenerator.Digest">
  11050. return the underlying digest.
  11051. </member>
  11052. <member name="M:Org.BouncyCastle.Crypto.Agreement.Kdf.ConcatenationKdfGenerator.GenerateBytes(System.Byte[],System.Int32,System.Int32)">
  11053. fill len bytes of the output buffer with bytes generated from
  11054. the derivation function.
  11055. @throws DataLengthException if the out buffer is too small.
  11056. </member>
  11057. <member name="T:Org.BouncyCastle.Crypto.Agreement.Kdf.DHKekGenerator">
  11058. RFC 2631 Diffie-hellman KEK derivation function.
  11059. </member>
  11060. <member name="T:Org.BouncyCastle.Crypto.Agreement.Kdf.ECDHKekGenerator">
  11061. X9.63 based key derivation function for ECDH CMS.
  11062. </member>
  11063. <member name="T:Org.BouncyCastle.Crypto.Agreement.SM2KeyExchange">
  11064. <summary>
  11065. SM2 Key Exchange protocol - based on https://tools.ietf.org/html/draft-shen-sm2-ecdsa-02
  11066. </summary>
  11067. </member>
  11068. <member name="T:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client">
  11069. Implements the client side SRP-6a protocol. Note that this class is stateful, and therefore NOT threadsafe.
  11070. This implementation of SRP is based on the optimized message sequence put forth by Thomas Wu in the paper
  11071. "SRP-6: Improvements and Refinements to the Secure Remote Password Protocol, 2002"
  11072. </member>
  11073. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.Init(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Security.SecureRandom)">
  11074. Initialises the client to begin new authentication attempt
  11075. @param N The safe prime associated with the client's verifier
  11076. @param g The group parameter associated with the client's verifier
  11077. @param digest The digest algorithm associated with the client's verifier
  11078. @param random For key generation
  11079. </member>
  11080. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.GenerateClientCredentials(System.Byte[],System.Byte[],System.Byte[])">
  11081. Generates client's credentials given the client's salt, identity and password
  11082. @param salt The salt used in the client's verifier.
  11083. @param identity The user's identity (eg. username)
  11084. @param password The user's password
  11085. @return Client's public value to send to server
  11086. </member>
  11087. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.CalculateSecret(Org.BouncyCastle.Math.BigInteger)">
  11088. Generates client's verification message given the server's credentials
  11089. @param serverB The server's credentials
  11090. @return Client's verification message for the server
  11091. @throws CryptoException If server's credentials are invalid
  11092. </member>
  11093. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.CalculateClientEvidenceMessage">
  11094. Computes the client evidence message M1 using the previously received values.
  11095. To be called after calculating the secret S.
  11096. @return M1: the client side generated evidence message
  11097. @throws CryptoException
  11098. </member>
  11099. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.VerifyServerEvidenceMessage(Org.BouncyCastle.Math.BigInteger)">
  11100. Authenticates the server evidence message M2 received and saves it only if correct.
  11101. @param M2: the server side generated evidence message
  11102. @return A boolean indicating if the server message M2 was the expected one.
  11103. @throws CryptoException
  11104. </member>
  11105. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Client.CalculateSessionKey">
  11106. Computes the final session key as a result of the SRP successful mutual authentication
  11107. To be called after verifying the server evidence message M2.
  11108. @return Key: the mutually authenticated symmetric session key
  11109. @throws CryptoException
  11110. </member>
  11111. <member name="T:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server">
  11112. Implements the server side SRP-6a protocol. Note that this class is stateful, and therefore NOT threadsafe.
  11113. This implementation of SRP is based on the optimized message sequence put forth by Thomas Wu in the paper
  11114. "SRP-6: Improvements and Refinements to the Secure Remote Password Protocol, 2002"
  11115. </member>
  11116. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.Init(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Security.SecureRandom)">
  11117. Initialises the server to accept a new client authentication attempt
  11118. @param N The safe prime associated with the client's verifier
  11119. @param g The group parameter associated with the client's verifier
  11120. @param v The client's verifier
  11121. @param digest The digest algorithm associated with the client's verifier
  11122. @param random For key generation
  11123. </member>
  11124. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.GenerateServerCredentials">
  11125. Generates the server's credentials that are to be sent to the client.
  11126. @return The server's public value to the client
  11127. </member>
  11128. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.CalculateSecret(Org.BouncyCastle.Math.BigInteger)">
  11129. Processes the client's credentials. If valid the shared secret is generated and returned.
  11130. @param clientA The client's credentials
  11131. @return A shared secret BigInteger
  11132. @throws CryptoException If client's credentials are invalid
  11133. </member>
  11134. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.VerifyClientEvidenceMessage(Org.BouncyCastle.Math.BigInteger)">
  11135. Authenticates the received client evidence message M1 and saves it only if correct.
  11136. To be called after calculating the secret S.
  11137. @param M1: the client side generated evidence message
  11138. @return A boolean indicating if the client message M1 was the expected one.
  11139. @throws CryptoException
  11140. </member>
  11141. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.CalculateServerEvidenceMessage">
  11142. Computes the server evidence message M2 using the previously verified values.
  11143. To be called after successfully verifying the client evidence message M1.
  11144. @return M2: the server side generated evidence message
  11145. @throws CryptoException
  11146. </member>
  11147. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Server.CalculateSessionKey">
  11148. Computes the final session key as a result of the SRP successful mutual authentication
  11149. To be called after calculating the server evidence message M2.
  11150. @return Key: the mutual authenticated symmetric session key
  11151. @throws CryptoException
  11152. </member>
  11153. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Utilities.CalculateM1(Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  11154. Computes the client evidence message (M1) according to the standard routine:
  11155. M1 = H( A | B | S )
  11156. @param digest The Digest used as the hashing function H
  11157. @param N Modulus used to get the pad length
  11158. @param A The public client value
  11159. @param B The public server value
  11160. @param S The secret calculated by both sides
  11161. @return M1 The calculated client evidence message
  11162. </member>
  11163. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Utilities.CalculateM2(Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  11164. Computes the server evidence message (M2) according to the standard routine:
  11165. M2 = H( A | M1 | S )
  11166. @param digest The Digest used as the hashing function H
  11167. @param N Modulus used to get the pad length
  11168. @param A The public client value
  11169. @param M1 The client evidence message
  11170. @param S The secret calculated by both sides
  11171. @return M2 The calculated server evidence message
  11172. </member>
  11173. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6Utilities.CalculateKey(Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  11174. Computes the final Key according to the standard routine: Key = H(S)
  11175. @param digest The Digest used as the hashing function H
  11176. @param N Modulus used to get the pad length
  11177. @param S The secret calculated by both sides
  11178. @return
  11179. </member>
  11180. <member name="T:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6VerifierGenerator">
  11181. Generates new SRP verifier for user
  11182. </member>
  11183. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6VerifierGenerator.Init(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Crypto.IDigest)">
  11184. Initialises generator to create new verifiers
  11185. @param N The safe prime to use (see DHParametersGenerator)
  11186. @param g The group parameter to use (see DHParametersGenerator)
  11187. @param digest The digest to use. The same digest type will need to be used later for the actual authentication
  11188. attempt. Also note that the final session key size is dependent on the chosen digest.
  11189. </member>
  11190. <member name="M:Org.BouncyCastle.Crypto.Agreement.Srp.Srp6VerifierGenerator.GenerateVerifier(System.Byte[],System.Byte[],System.Byte[])">
  11191. Creates a new SRP verifier
  11192. @param salt The salt to use, generally should be large and random
  11193. @param identity The user's identifying information (eg. username)
  11194. @param password The user's password
  11195. @return A new verifier for use in future SRP authentication
  11196. </member>
  11197. <member name="T:Org.BouncyCastle.Crypto.AsymmetricCipherKeyPair">
  11198. a holding class for public/private parameter pairs.
  11199. </member>
  11200. <member name="M:Org.BouncyCastle.Crypto.AsymmetricCipherKeyPair.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  11201. basic constructor.
  11202. @param publicParam a public key parameters object.
  11203. @param privateParam the corresponding private key parameters.
  11204. </member>
  11205. <member name="P:Org.BouncyCastle.Crypto.AsymmetricCipherKeyPair.Public">
  11206. return the public key parameters.
  11207. @return the public key parameters.
  11208. </member>
  11209. <member name="P:Org.BouncyCastle.Crypto.AsymmetricCipherKeyPair.Private">
  11210. return the private key parameters.
  11211. @return the private key parameters.
  11212. </member>
  11213. <member name="T:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher">
  11214. The AEAD block ciphers already handle buffering internally, so this class
  11215. just takes care of implementing IBufferedCipher methods.
  11216. </member>
  11217. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  11218. initialise the cipher.
  11219. @param forEncryption if true the cipher is initialised for
  11220. encryption, if false for decryption.
  11221. @param param the key and other data required by the cipher.
  11222. @exception ArgumentException if the parameters argument is
  11223. inappropriate.
  11224. </member>
  11225. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.GetBlockSize">
  11226. return the blocksize for the underlying cipher.
  11227. @return the blocksize for the underlying cipher.
  11228. </member>
  11229. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.GetUpdateOutputSize(System.Int32)">
  11230. return the size of the output buffer required for an update
  11231. an input of len bytes.
  11232. @param len the length of the input.
  11233. @return the space required to accommodate a call to update
  11234. with len bytes of input.
  11235. </member>
  11236. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.GetOutputSize(System.Int32)">
  11237. return the size of the output buffer required for an update plus a
  11238. doFinal with an input of len bytes.
  11239. @param len the length of the input.
  11240. @return the space required to accommodate a call to update and doFinal
  11241. with len bytes of input.
  11242. </member>
  11243. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  11244. process a single byte, producing an output block if necessary.
  11245. @param in the input byte.
  11246. @param out the space for any output that might be produced.
  11247. @param outOff the offset from which the output will be copied.
  11248. @return the number of output bytes copied to out.
  11249. @exception DataLengthException if there isn't enough space in out.
  11250. @exception InvalidOperationException if the cipher isn't initialised.
  11251. </member>
  11252. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  11253. process an array of bytes, producing output if necessary.
  11254. @param in the input byte array.
  11255. @param inOff the offset at which the input data starts.
  11256. @param len the number of bytes to be copied out of the input array.
  11257. @param out the space for any output that might be produced.
  11258. @param outOff the offset from which the output will be copied.
  11259. @return the number of output bytes copied to out.
  11260. @exception DataLengthException if there isn't enough space in out.
  11261. @exception InvalidOperationException if the cipher isn't initialised.
  11262. </member>
  11263. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.DoFinal(System.Byte[],System.Int32)">
  11264. Process the last block in the buffer.
  11265. @param out the array the block currently being held is copied into.
  11266. @param outOff the offset at which the copying starts.
  11267. @return the number of output bytes copied to out.
  11268. @exception DataLengthException if there is insufficient space in out for
  11269. the output, or the input is not block size aligned and should be.
  11270. @exception InvalidOperationException if the underlying cipher is not
  11271. initialised.
  11272. @exception InvalidCipherTextException if padding is expected and not found.
  11273. @exception DataLengthException if the input is not block size
  11274. aligned.
  11275. </member>
  11276. <member name="M:Org.BouncyCastle.Crypto.BufferedAeadBlockCipher.Reset">
  11277. Reset the buffer and cipher. After resetting the object is in the same
  11278. state as it was after the last init (if there was one).
  11279. </member>
  11280. <member name="T:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher">
  11281. a buffer wrapper for an asymmetric block cipher, allowing input
  11282. to be accumulated in a piecemeal fashion until final processing.
  11283. </member>
  11284. <member name="M:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher)">
  11285. base constructor.
  11286. @param cipher the cipher this buffering object wraps.
  11287. </member>
  11288. <member name="M:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher.GetBufferPosition">
  11289. return the amount of data sitting in the buffer.
  11290. @return the amount of data sitting in the buffer.
  11291. </member>
  11292. <member name="M:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  11293. initialise the buffer and the underlying cipher.
  11294. @param forEncryption if true the cipher is initialised for
  11295. encryption, if false for decryption.
  11296. @param param the key and other data required by the cipher.
  11297. </member>
  11298. <member name="M:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher.DoFinal">
  11299. process the contents of the buffer using the underlying
  11300. cipher.
  11301. @return the result of the encryption/decryption process on the
  11302. buffer.
  11303. @exception InvalidCipherTextException if we are given a garbage block.
  11304. </member>
  11305. <member name="M:Org.BouncyCastle.Crypto.BufferedAsymmetricBlockCipher.Reset">
  11306. <summary>Reset the buffer</summary>
  11307. </member>
  11308. <member name="T:Org.BouncyCastle.Crypto.BufferedBlockCipher">
  11309. A wrapper class that allows block ciphers to be used to process data in
  11310. a piecemeal fashion. The BufferedBlockCipher outputs a block only when the
  11311. buffer is full and more data is being added, or on a doFinal.
  11312. <p>
  11313. Note: in the case where the underlying cipher is either a CFB cipher or an
  11314. OFB one the last block may not be a multiple of the block size.
  11315. </p>
  11316. </member>
  11317. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.#ctor">
  11318. constructor for subclasses
  11319. </member>
  11320. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  11321. Create a buffered block cipher without padding.
  11322. @param cipher the underlying block cipher this buffering object wraps.
  11323. false otherwise.
  11324. </member>
  11325. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  11326. initialise the cipher.
  11327. @param forEncryption if true the cipher is initialised for
  11328. encryption, if false for decryption.
  11329. @param param the key and other data required by the cipher.
  11330. @exception ArgumentException if the parameters argument is
  11331. inappropriate.
  11332. </member>
  11333. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.GetBlockSize">
  11334. return the blocksize for the underlying cipher.
  11335. @return the blocksize for the underlying cipher.
  11336. </member>
  11337. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.GetUpdateOutputSize(System.Int32)">
  11338. return the size of the output buffer required for an update
  11339. an input of len bytes.
  11340. @param len the length of the input.
  11341. @return the space required to accommodate a call to update
  11342. with len bytes of input.
  11343. </member>
  11344. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.GetOutputSize(System.Int32)">
  11345. return the size of the output buffer required for an update plus a
  11346. doFinal with an input of len bytes.
  11347. @param len the length of the input.
  11348. @return the space required to accommodate a call to update and doFinal
  11349. with len bytes of input.
  11350. </member>
  11351. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  11352. process a single byte, producing an output block if necessary.
  11353. @param in the input byte.
  11354. @param out the space for any output that might be produced.
  11355. @param outOff the offset from which the output will be copied.
  11356. @return the number of output bytes copied to out.
  11357. @exception DataLengthException if there isn't enough space in out.
  11358. @exception InvalidOperationException if the cipher isn't initialised.
  11359. </member>
  11360. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  11361. process an array of bytes, producing output if necessary.
  11362. @param in the input byte array.
  11363. @param inOff the offset at which the input data starts.
  11364. @param len the number of bytes to be copied out of the input array.
  11365. @param out the space for any output that might be produced.
  11366. @param outOff the offset from which the output will be copied.
  11367. @return the number of output bytes copied to out.
  11368. @exception DataLengthException if there isn't enough space in out.
  11369. @exception InvalidOperationException if the cipher isn't initialised.
  11370. </member>
  11371. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.DoFinal(System.Byte[],System.Int32)">
  11372. Process the last block in the buffer.
  11373. @param out the array the block currently being held is copied into.
  11374. @param outOff the offset at which the copying starts.
  11375. @return the number of output bytes copied to out.
  11376. @exception DataLengthException if there is insufficient space in out for
  11377. the output, or the input is not block size aligned and should be.
  11378. @exception InvalidOperationException if the underlying cipher is not
  11379. initialised.
  11380. @exception InvalidCipherTextException if padding is expected and not found.
  11381. @exception DataLengthException if the input is not block size
  11382. aligned.
  11383. </member>
  11384. <member name="M:Org.BouncyCastle.Crypto.BufferedBlockCipher.Reset">
  11385. Reset the buffer and cipher. After resetting the object is in the same
  11386. state as it was after the last init (if there was one).
  11387. </member>
  11388. <member name="T:Org.BouncyCastle.Crypto.CipherKeyGenerator">
  11389. The base class for symmetric, or secret, cipher key generators.
  11390. </member>
  11391. <member name="M:Org.BouncyCastle.Crypto.CipherKeyGenerator.Init(Org.BouncyCastle.Crypto.KeyGenerationParameters)">
  11392. initialise the key generator.
  11393. @param param the parameters to be used for key generation
  11394. </member>
  11395. <member name="M:Org.BouncyCastle.Crypto.CipherKeyGenerator.GenerateKey">
  11396. Generate a secret key.
  11397. @return a byte array containing the key value.
  11398. </member>
  11399. <member name="T:Org.BouncyCastle.Crypto.DataLengthException">
  11400. this exception is thrown if a buffer that is meant to have output
  11401. copied into it turns out to be too short, or if we've been given
  11402. insufficient input. In general this exception will Get thrown rather
  11403. than an ArrayOutOfBounds exception.
  11404. </member>
  11405. <member name="M:Org.BouncyCastle.Crypto.DataLengthException.#ctor">
  11406. base constructor.
  11407. </member>
  11408. <member name="M:Org.BouncyCastle.Crypto.DataLengthException.#ctor(System.String)">
  11409. create a DataLengthException with the given message.
  11410. @param message the message to be carried with the exception.
  11411. </member>
  11412. <!-- Badly formed XML comment ignored for member "T:Org.BouncyCastle.Crypto.Digests.Blake2bDigest" -->
  11413. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.#ctor(System.Int32)">
  11414. Basic sized constructor - size in bits.
  11415. @param digestSize size of the digest in bits
  11416. </member>
  11417. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.#ctor(System.Byte[])">
  11418. Blake2b for authentication ("Prefix-MAC mode").
  11419. After calling the doFinal() method, the key will
  11420. remain to be used for further computations of
  11421. this instance.
  11422. The key can be overwritten using the clearKey() method.
  11423. @param key A key up to 64 bytes or null
  11424. </member>
  11425. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.#ctor(System.Byte[],System.Int32,System.Byte[],System.Byte[])">
  11426. Blake2b with key, required digest length (in bytes), salt and personalization.
  11427. After calling the doFinal() method, the key, the salt and the personal string
  11428. will remain and might be used for further computations with this instance.
  11429. The key can be overwritten using the clearKey() method, the salt (pepper)
  11430. can be overwritten using the clearSalt() method.
  11431. @param key A key up to 64 bytes or null
  11432. @param digestLength from 1 up to 64 bytes
  11433. @param salt 16 bytes or null
  11434. @param personalization 16 bytes or null
  11435. </member>
  11436. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.Update(System.Byte)">
  11437. update the message digest with a single byte.
  11438. @param b the input byte to be entered.
  11439. </member>
  11440. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  11441. update the message digest with a block of bytes.
  11442. @param message the byte array containing the data.
  11443. @param offset the offset into the byte array where the data starts.
  11444. @param len the length of the data.
  11445. </member>
  11446. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.DoFinal(System.Byte[],System.Int32)">
  11447. close the digest, producing the final digest value. The doFinal
  11448. call leaves the digest reset.
  11449. Key, salt and personal string remain.
  11450. @param out the array the digest is to be copied into.
  11451. @param outOffset the offset into the out array the digest is to start at.
  11452. </member>
  11453. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.Reset">
  11454. Reset the digest back to it's initial state.
  11455. The key, the salt and the personal string will
  11456. remain for further computations.
  11457. </member>
  11458. <member name="P:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.AlgorithmName">
  11459. return the algorithm name
  11460. @return the algorithm name
  11461. </member>
  11462. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.GetDigestSize">
  11463. return the size, in bytes, of the digest produced by this message digest.
  11464. @return the size, in bytes, of the digest produced by this message digest.
  11465. </member>
  11466. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.GetByteLength">
  11467. Return the size in bytes of the internal buffer the digest applies it's compression
  11468. function to.
  11469. @return byte length of the digests internal buffer.
  11470. </member>
  11471. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.ClearKey">
  11472. Overwrite the key
  11473. if it is no longer used (zeroization)
  11474. </member>
  11475. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2bDigest.ClearSalt">
  11476. Overwrite the salt (pepper) if it
  11477. is secret and no longer used (zeroization)
  11478. </member>
  11479. <member name="T:Org.BouncyCastle.Crypto.Digests.Blake2sDigest">
  11480. Implementation of the cryptographic hash function BLAKE2s.
  11481. <p/>
  11482. BLAKE2s offers a built-in keying mechanism to be used directly
  11483. for authentication ("Prefix-MAC") rather than a HMAC construction.
  11484. <p/>
  11485. BLAKE2s offers a built-in support for a salt for randomized hashing
  11486. and a personal string for defining a unique hash function for each application.
  11487. <p/>
  11488. BLAKE2s is optimized for 32-bit platforms and produces digests of any size
  11489. between 1 and 32 bytes.
  11490. </member>
  11491. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.blake2s_IV">
  11492. BLAKE2s Initialization Vector
  11493. </member>
  11494. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.blake2s_sigma">
  11495. Message word permutations
  11496. </member>
  11497. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.buffer">
  11498. Whenever this buffer overflows, it will be processed in the Compress()
  11499. function. For performance issues, long messages will not use this buffer.
  11500. </member>
  11501. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.bufferPos">
  11502. Position of last inserted byte
  11503. </member>
  11504. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.internalState">
  11505. Internal state, in the BLAKE2 paper it is called v
  11506. </member>
  11507. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.chainValue">
  11508. State vector, in the BLAKE2 paper it is called h
  11509. </member>
  11510. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.t0">
  11511. holds least significant bits of counter
  11512. </member>
  11513. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.t1">
  11514. holds most significant bits of counter
  11515. </member>
  11516. <member name="F:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.f0">
  11517. finalization flag, for last block: ~0
  11518. </member>
  11519. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.#ctor">
  11520. BLAKE2s-256 for hashing.
  11521. </member>
  11522. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.#ctor(System.Int32)">
  11523. BLAKE2s for hashing.
  11524. @param digestBits the desired digest length in bits. Must be a multiple of 8 and less than 256.
  11525. </member>
  11526. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.#ctor(System.Byte[])">
  11527. BLAKE2s for authentication ("Prefix-MAC mode").
  11528. <p/>
  11529. After calling the doFinal() method, the key will remain to be used for
  11530. further computations of this instance. The key can be overwritten using
  11531. the clearKey() method.
  11532. @param key a key up to 32 bytes or null
  11533. </member>
  11534. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.#ctor(System.Byte[],System.Int32,System.Byte[],System.Byte[])">
  11535. BLAKE2s with key, required digest length, salt and personalization.
  11536. <p/>
  11537. After calling the doFinal() method, the key, the salt and the personal
  11538. string will remain and might be used for further computations with this
  11539. instance. The key can be overwritten using the clearKey() method, the
  11540. salt (pepper) can be overwritten using the clearSalt() method.
  11541. @param key a key up to 32 bytes or null
  11542. @param digestBytes from 1 up to 32 bytes
  11543. @param salt 8 bytes or null
  11544. @param personalization 8 bytes or null
  11545. </member>
  11546. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.Update(System.Byte)">
  11547. Update the message digest with a single byte.
  11548. @param b the input byte to be entered.
  11549. </member>
  11550. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  11551. Update the message digest with a block of bytes.
  11552. @param message the byte array containing the data.
  11553. @param offset the offset into the byte array where the data starts.
  11554. @param len the length of the data.
  11555. </member>
  11556. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.DoFinal(System.Byte[],System.Int32)">
  11557. Close the digest, producing the final digest value. The doFinal() call
  11558. leaves the digest reset. Key, salt and personal string remain.
  11559. @param out the array the digest is to be copied into.
  11560. @param outOffset the offset into the out array the digest is to start at.
  11561. </member>
  11562. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.Reset">
  11563. Reset the digest back to its initial state. The key, the salt and the
  11564. personal string will remain for further computations.
  11565. </member>
  11566. <member name="P:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.AlgorithmName">
  11567. Return the algorithm name.
  11568. @return the algorithm name
  11569. </member>
  11570. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.GetDigestSize">
  11571. Return the size in bytes of the digest produced by this message digest.
  11572. @return the size in bytes of the digest produced by this message digest.
  11573. </member>
  11574. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.GetByteLength">
  11575. Return the size in bytes of the internal buffer the digest applies its
  11576. compression function to.
  11577. @return byte length of the digest's internal buffer.
  11578. </member>
  11579. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.ClearKey">
  11580. Overwrite the key if it is no longer used (zeroization).
  11581. </member>
  11582. <member name="M:Org.BouncyCastle.Crypto.Digests.Blake2sDigest.ClearSalt">
  11583. Overwrite the salt (pepper) if it is secret and no longer used
  11584. (zeroization).
  11585. </member>
  11586. <member name="T:Org.BouncyCastle.Crypto.Digests.Dstu7564Digest">
  11587. implementation of Ukrainian DSTU 7564 hash function
  11588. </member>
  11589. <member name="T:Org.BouncyCastle.Crypto.Digests.GeneralDigest">
  11590. base implementation of MD4 family style digest as outlined in
  11591. "Handbook of Applied Cryptography", pages 344 - 347.
  11592. </member>
  11593. <member name="T:Org.BouncyCastle.Crypto.Digests.Gost3411Digest">
  11594. implementation of GOST R 34.11-94
  11595. </member>
  11596. <member name="M:Org.BouncyCastle.Crypto.Digests.Gost3411Digest.#ctor">
  11597. Standard constructor
  11598. </member>
  11599. <member name="M:Org.BouncyCastle.Crypto.Digests.Gost3411Digest.#ctor(System.Byte[])">
  11600. Constructor to allow use of a particular sbox with GOST28147
  11601. @see GOST28147Engine#getSBox(String)
  11602. </member>
  11603. <member name="M:Org.BouncyCastle.Crypto.Digests.Gost3411Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Gost3411Digest)">
  11604. Copy constructor. This will copy the state of the provided
  11605. message digest.
  11606. </member>
  11607. <member name="F:Org.BouncyCastle.Crypto.Digests.Gost3411Digest.C2">
  11608. reset the chaining variables to the IV values.
  11609. </member>
  11610. <member name="T:Org.BouncyCastle.Crypto.Digests.KeccakDigest">
  11611. <summary>
  11612. Implementation of Keccak based on following KeccakNISTInterface.c from http://keccak.noekeon.org/
  11613. </summary>
  11614. <remarks>
  11615. Following the naming conventions used in the C source code to enable easy review of the implementation.
  11616. </remarks>
  11617. </member>
  11618. <member name="M:Org.BouncyCastle.Crypto.Digests.KeccakDigest.GetByteLength">
  11619. Return the size of block that the compression function is applied to in bytes.
  11620. @return internal byte length of a block.
  11621. </member>
  11622. <member name="T:Org.BouncyCastle.Crypto.Digests.LongDigest">
  11623. Base class for SHA-384 and SHA-512.
  11624. </member>
  11625. <member name="M:Org.BouncyCastle.Crypto.Digests.LongDigest.#ctor">
  11626. Constructor for variable length word
  11627. </member>
  11628. <member name="M:Org.BouncyCastle.Crypto.Digests.LongDigest.#ctor(Org.BouncyCastle.Crypto.Digests.LongDigest)">
  11629. Copy constructor. We are using copy constructors in place
  11630. of the object.Clone() interface as this interface is not
  11631. supported by J2ME.
  11632. </member>
  11633. <member name="M:Org.BouncyCastle.Crypto.Digests.LongDigest.AdjustByteCounts">
  11634. adjust the byte counts so that byteCount2 represents the
  11635. upper long (less 3 bits) word of the byte count.
  11636. </member>
  11637. <member name="T:Org.BouncyCastle.Crypto.Digests.MD2Digest">
  11638. implementation of MD2
  11639. as outlined in RFC1319 by B.Kaliski from RSA Laboratories April 1992
  11640. </member>
  11641. <member name="P:Org.BouncyCastle.Crypto.Digests.MD2Digest.AlgorithmName">
  11642. return the algorithm name
  11643. @return the algorithm name
  11644. </member>
  11645. <member name="M:Org.BouncyCastle.Crypto.Digests.MD2Digest.DoFinal(System.Byte[],System.Int32)">
  11646. Close the digest, producing the final digest value. The doFinal
  11647. call leaves the digest reset.
  11648. @param out the array the digest is to be copied into.
  11649. @param outOff the offset into the out array the digest is to start at.
  11650. </member>
  11651. <member name="M:Org.BouncyCastle.Crypto.Digests.MD2Digest.Reset">
  11652. reset the digest back to it's initial state.
  11653. </member>
  11654. <member name="M:Org.BouncyCastle.Crypto.Digests.MD2Digest.Update(System.Byte)">
  11655. update the message digest with a single byte.
  11656. @param in the input byte to be entered.
  11657. </member>
  11658. <member name="M:Org.BouncyCastle.Crypto.Digests.MD2Digest.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  11659. update the message digest with a block of bytes.
  11660. @param in the byte array containing the data.
  11661. @param inOff the offset into the byte array where the data starts.
  11662. @param len the length of the data.
  11663. </member>
  11664. <member name="T:Org.BouncyCastle.Crypto.Digests.MD4Digest">
  11665. implementation of MD4 as RFC 1320 by R. Rivest, MIT Laboratory for
  11666. Computer Science and RSA Data Security, Inc.
  11667. <p>
  11668. <b>NOTE</b>: This algorithm is only included for backwards compatibility
  11669. with legacy applications, it's not secure, don't use it for anything new!</p>
  11670. </member>
  11671. <member name="M:Org.BouncyCastle.Crypto.Digests.MD4Digest.#ctor">
  11672. Standard constructor
  11673. </member>
  11674. <member name="M:Org.BouncyCastle.Crypto.Digests.MD4Digest.#ctor(Org.BouncyCastle.Crypto.Digests.MD4Digest)">
  11675. Copy constructor. This will copy the state of the provided
  11676. message digest.
  11677. </member>
  11678. <member name="M:Org.BouncyCastle.Crypto.Digests.MD4Digest.Reset">
  11679. reset the chaining variables to the IV values.
  11680. </member>
  11681. <member name="T:Org.BouncyCastle.Crypto.Digests.MD5Digest">
  11682. implementation of MD5 as outlined in "Handbook of Applied Cryptography", pages 346 - 347.
  11683. </member>
  11684. <member name="M:Org.BouncyCastle.Crypto.Digests.MD5Digest.#ctor(Org.BouncyCastle.Crypto.Digests.MD5Digest)">
  11685. Copy constructor. This will copy the state of the provided
  11686. message digest.
  11687. </member>
  11688. <member name="M:Org.BouncyCastle.Crypto.Digests.MD5Digest.Reset">
  11689. reset the chaining variables to the IV values.
  11690. </member>
  11691. <member name="T:Org.BouncyCastle.Crypto.Digests.NonMemoableDigest">
  11692. Wrapper removes exposure to the IMemoable interface on an IDigest implementation.
  11693. </member>
  11694. <member name="M:Org.BouncyCastle.Crypto.Digests.NonMemoableDigest.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  11695. Base constructor.
  11696. @param baseDigest underlying digest to use.
  11697. @exception IllegalArgumentException if baseDigest is null
  11698. </member>
  11699. <member name="T:Org.BouncyCastle.Crypto.Digests.RipeMD128Digest">
  11700. implementation of RipeMD128
  11701. </member>
  11702. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD128Digest.#ctor">
  11703. Standard constructor
  11704. </member>
  11705. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD128Digest.#ctor(Org.BouncyCastle.Crypto.Digests.RipeMD128Digest)">
  11706. Copy constructor. This will copy the state of the provided
  11707. message digest.
  11708. </member>
  11709. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD128Digest.Reset">
  11710. reset the chaining variables to the IV values.
  11711. </member>
  11712. <member name="T:Org.BouncyCastle.Crypto.Digests.RipeMD160Digest">
  11713. implementation of RipeMD see,
  11714. http://www.esat.kuleuven.ac.be/~bosselae/ripemd160.html
  11715. </member>
  11716. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD160Digest.#ctor">
  11717. Standard constructor
  11718. </member>
  11719. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD160Digest.#ctor(Org.BouncyCastle.Crypto.Digests.RipeMD160Digest)">
  11720. Copy constructor. This will copy the state of the provided
  11721. message digest.
  11722. </member>
  11723. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD160Digest.Reset">
  11724. reset the chaining variables to the IV values.
  11725. </member>
  11726. <member name="T:Org.BouncyCastle.Crypto.Digests.RipeMD256Digest">
  11727. <remarks>
  11728. <p>Implementation of RipeMD256.</p>
  11729. <p><b>Note:</b> this algorithm offers the same level of security as RipeMD128.</p>
  11730. </remarks>
  11731. </member>
  11732. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD256Digest.#ctor">
  11733. <summary> Standard constructor</summary>
  11734. </member>
  11735. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD256Digest.#ctor(Org.BouncyCastle.Crypto.Digests.RipeMD256Digest)">
  11736. <summary> Copy constructor. This will copy the state of the provided
  11737. message digest.
  11738. </summary>
  11739. </member>
  11740. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD256Digest.Reset">
  11741. <summary> reset the chaining variables to the IV values.</summary>
  11742. </member>
  11743. <member name="T:Org.BouncyCastle.Crypto.Digests.RipeMD320Digest">
  11744. <remarks>
  11745. <p>Implementation of RipeMD 320.</p>
  11746. <p><b>Note:</b> this algorithm offers the same level of security as RipeMD160.</p>
  11747. </remarks>
  11748. </member>
  11749. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD320Digest.#ctor">
  11750. <summary> Standard constructor</summary>
  11751. </member>
  11752. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD320Digest.#ctor(Org.BouncyCastle.Crypto.Digests.RipeMD320Digest)">
  11753. <summary> Copy constructor. This will copy the state of the provided
  11754. message digest.
  11755. </summary>
  11756. </member>
  11757. <member name="M:Org.BouncyCastle.Crypto.Digests.RipeMD320Digest.Reset">
  11758. <summary> reset the chaining variables to the IV values.</summary>
  11759. </member>
  11760. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha1Digest">
  11761. implementation of SHA-1 as outlined in "Handbook of Applied Cryptography", pages 346 - 349.
  11762. It is interesting to ponder why the, apart from the extra IV, the other difference here from MD5
  11763. is the "endianness" of the word processing!
  11764. </member>
  11765. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha1Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha1Digest)">
  11766. Copy constructor. This will copy the state of the provided
  11767. message digest.
  11768. </member>
  11769. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha1Digest.Reset">
  11770. reset the chaining variables
  11771. </member>
  11772. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha224Digest">
  11773. SHA-224 as described in RFC 3874
  11774. <pre>
  11775. block word digest
  11776. SHA-1 512 32 160
  11777. SHA-224 512 32 224
  11778. SHA-256 512 32 256
  11779. SHA-384 1024 64 384
  11780. SHA-512 1024 64 512
  11781. </pre>
  11782. </member>
  11783. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha224Digest.#ctor">
  11784. Standard constructor
  11785. </member>
  11786. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha224Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha224Digest)">
  11787. Copy constructor. This will copy the state of the provided
  11788. message digest.
  11789. </member>
  11790. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha224Digest.Reset">
  11791. reset the chaining variables
  11792. </member>
  11793. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha256Digest">
  11794. Draft FIPS 180-2 implementation of SHA-256. <b>Note:</b> As this is
  11795. based on a draft this implementation is subject to change.
  11796. <pre>
  11797. block word digest
  11798. SHA-1 512 32 160
  11799. SHA-256 512 32 256
  11800. SHA-384 1024 64 384
  11801. SHA-512 1024 64 512
  11802. </pre>
  11803. </member>
  11804. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha256Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha256Digest)">
  11805. Copy constructor. This will copy the state of the provided
  11806. message digest.
  11807. </member>
  11808. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha256Digest.Reset">
  11809. reset the chaining variables
  11810. </member>
  11811. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha384Digest">
  11812. Draft FIPS 180-2 implementation of SHA-384. <b>Note:</b> As this is
  11813. based on a draft this implementation is subject to change.
  11814. <pre>
  11815. block word digest
  11816. SHA-1 512 32 160
  11817. SHA-256 512 32 256
  11818. SHA-384 1024 64 384
  11819. SHA-512 1024 64 512
  11820. </pre>
  11821. </member>
  11822. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha384Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha384Digest)">
  11823. Copy constructor. This will copy the state of the provided
  11824. message digest.
  11825. </member>
  11826. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha384Digest.Reset">
  11827. reset the chaining variables
  11828. </member>
  11829. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha3Digest">
  11830. <summary>
  11831. Implementation of SHA-3 based on following KeccakNISTInterface.c from http://keccak.noekeon.org/
  11832. </summary>
  11833. <remarks>
  11834. Following the naming conventions used in the C source code to enable easy review of the implementation.
  11835. </remarks>
  11836. </member>
  11837. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha512Digest">
  11838. Draft FIPS 180-2 implementation of SHA-512. <b>Note:</b> As this is
  11839. based on a draft this implementation is subject to change.
  11840. <pre>
  11841. block word digest
  11842. SHA-1 512 32 160
  11843. SHA-256 512 32 256
  11844. SHA-384 1024 64 384
  11845. SHA-512 1024 64 512
  11846. </pre>
  11847. </member>
  11848. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha512Digest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha512Digest)">
  11849. Copy constructor. This will copy the state of the provided
  11850. message digest.
  11851. </member>
  11852. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha512Digest.Reset">
  11853. reset the chaining variables
  11854. </member>
  11855. <member name="T:Org.BouncyCastle.Crypto.Digests.Sha512tDigest">
  11856. FIPS 180-4 implementation of SHA-512/t
  11857. </member>
  11858. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha512tDigest.#ctor(System.Int32)">
  11859. Standard constructor
  11860. </member>
  11861. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha512tDigest.#ctor(Org.BouncyCastle.Crypto.Digests.Sha512tDigest)">
  11862. Copy constructor. This will copy the state of the provided
  11863. message digest.
  11864. </member>
  11865. <member name="M:Org.BouncyCastle.Crypto.Digests.Sha512tDigest.Reset">
  11866. reset the chaining variables
  11867. </member>
  11868. <member name="T:Org.BouncyCastle.Crypto.Digests.ShakeDigest">
  11869. <summary>
  11870. Implementation of SHAKE based on following KeccakNISTInterface.c from http://keccak.noekeon.org/
  11871. </summary>
  11872. <remarks>
  11873. Following the naming conventions used in the C source code to enable easy review of the implementation.
  11874. </remarks>
  11875. </member>
  11876. <member name="T:Org.BouncyCastle.Crypto.Digests.ShortenedDigest">
  11877. Wrapper class that reduces the output length of a particular digest to
  11878. only the first n bytes of the digest function.
  11879. </member>
  11880. <member name="M:Org.BouncyCastle.Crypto.Digests.ShortenedDigest.#ctor(Org.BouncyCastle.Crypto.IDigest,System.Int32)">
  11881. Base constructor.
  11882. @param baseDigest underlying digest to use.
  11883. @param length length in bytes of the output of doFinal.
  11884. @exception ArgumentException if baseDigest is null, or length is greater than baseDigest.GetDigestSize().
  11885. </member>
  11886. <member name="T:Org.BouncyCastle.Crypto.Digests.SkeinDigest">
  11887. <summary>
  11888. Implementation of the Skein parameterised hash function in 256, 512 and 1024 bit block sizes,
  11889. based on the <see cref="T:Org.BouncyCastle.Crypto.Engines.ThreefishEngine">Threefish</see> tweakable block cipher.
  11890. </summary>
  11891. <remarks>
  11892. This is the 1.3 version of Skein defined in the Skein hash function submission to the NIST SHA-3
  11893. competition in October 2010.
  11894. <p/>
  11895. Skein was designed by Niels Ferguson - Stefan Lucks - Bruce Schneier - Doug Whiting - Mihir
  11896. Bellare - Tadayoshi Kohno - Jon Callas - Jesse Walker.
  11897. </remarks>
  11898. <seealso cref="T:Org.BouncyCastle.Crypto.Digests.SkeinEngine"/>
  11899. <seealso cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/>
  11900. </member>
  11901. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_256">
  11902. <summary>
  11903. 256 bit block size - Skein-256
  11904. </summary>
  11905. </member>
  11906. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_512">
  11907. <summary>
  11908. 512 bit block size - Skein-512
  11909. </summary>
  11910. </member>
  11911. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_1024">
  11912. <summary>
  11913. 1024 bit block size - Skein-1024
  11914. </summary>
  11915. </member>
  11916. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinDigest.#ctor(System.Int32,System.Int32)">
  11917. <summary>
  11918. Constructs a Skein digest with an internal state size and output size.
  11919. </summary>
  11920. <param name="stateSizeBits">the internal state size in bits - one of <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_256"/> <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_512"/> or
  11921. <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinDigest.SKEIN_1024"/>.</param>
  11922. <param name="digestSizeBits">the output/digest size to produce in bits, which must be an integral number of
  11923. bytes.</param>
  11924. </member>
  11925. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinDigest.Init(Org.BouncyCastle.Crypto.Parameters.SkeinParameters)">
  11926. <summary>
  11927. Optionally initialises the Skein digest with the provided parameters.
  11928. </summary>
  11929. See <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"></see> for details on the parameterisation of the Skein hash function.
  11930. <param name="parameters">the parameters to apply to this engine, or <code>null</code> to use no parameters.</param>
  11931. </member>
  11932. <member name="T:Org.BouncyCastle.Crypto.Digests.SkeinEngine">
  11933. <summary>
  11934. Implementation of the Skein family of parameterised hash functions in 256, 512 and 1024 bit block
  11935. sizes, based on the <see cref="T:Org.BouncyCastle.Crypto.Engines.ThreefishEngine">Threefish</see> tweakable block cipher.
  11936. </summary>
  11937. <remarks>
  11938. This is the 1.3 version of Skein defined in the Skein hash function submission to the NIST SHA-3
  11939. competition in October 2010.
  11940. <p/>
  11941. Skein was designed by Niels Ferguson - Stefan Lucks - Bruce Schneier - Doug Whiting - Mihir
  11942. Bellare - Tadayoshi Kohno - Jon Callas - Jesse Walker.
  11943. <p/>
  11944. This implementation is the basis for <see cref="T:Org.BouncyCastle.Crypto.Digests.SkeinDigest"/> and <see cref="T:Org.BouncyCastle.Crypto.Macs.SkeinMac"/>, implementing the
  11945. parameter based configuration system that allows Skein to be adapted to multiple applications. <br/>
  11946. Initialising the engine with <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/> allows standard and arbitrary parameters to
  11947. be applied during the Skein hash function.
  11948. <p/>
  11949. Implemented:
  11950. <ul>
  11951. <li>256, 512 and 1024 bit internal states.</li>
  11952. <li>Full 96 bit input length.</li>
  11953. <li>Parameters defined in the Skein specification, and arbitrary other pre and post message
  11954. parameters.</li>
  11955. <li>Arbitrary output size in 1 byte intervals.</li>
  11956. </ul>
  11957. <p/>
  11958. Not implemented:
  11959. <ul>
  11960. <li>Sub-byte length input (bit padding).</li>
  11961. <li>Tree hashing.</li>
  11962. </ul>
  11963. </remarks>
  11964. <seealso cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/>
  11965. </member>
  11966. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_256">
  11967. <summary>
  11968. 256 bit block size - Skein-256
  11969. </summary>
  11970. </member>
  11971. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_512">
  11972. <summary>
  11973. 512 bit block size - Skein-512
  11974. </summary>
  11975. </member>
  11976. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_1024">
  11977. <summary>
  11978. 1024 bit block size - Skein-1024
  11979. </summary>
  11980. </member>
  11981. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.PARAM_TYPE_KEY">
  11982. The parameter type for the Skein key.
  11983. </member>
  11984. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.PARAM_TYPE_CONFIG">
  11985. The parameter type for the Skein configuration block.
  11986. </member>
  11987. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.PARAM_TYPE_MESSAGE">
  11988. The parameter type for the message.
  11989. </member>
  11990. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.PARAM_TYPE_OUTPUT">
  11991. The parameter type for the output transformation.
  11992. </member>
  11993. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.INITIAL_STATES">
  11994. Precalculated UBI(CFG) states for common state/output combinations without key or other
  11995. pre-message params.
  11996. </member>
  11997. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.LOW_RANGE">
  11998. Point at which position might overflow long, so switch to add with carry logic
  11999. </member>
  12000. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.T1_FINAL">
  12001. Bit 127 = final
  12002. </member>
  12003. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.T1_FIRST">
  12004. Bit 126 = first
  12005. </member>
  12006. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.tweak">
  12007. UBI uses a 128 bit tweak
  12008. </member>
  12009. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.extendedPosition">
  12010. Whether 64 bit position exceeded
  12011. </member>
  12012. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UbiTweak.AdvancePosition(System.Int32)">
  12013. Advances the position in the tweak by the specified value.
  12014. </member>
  12015. <member name="T:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UBI">
  12016. The Unique Block Iteration chaining mode.
  12017. </member>
  12018. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UBI.currentBlock">
  12019. Buffer for the current block of message data
  12020. </member>
  12021. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UBI.currentOffset">
  12022. Offset into the current message block
  12023. </member>
  12024. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.UBI.message">
  12025. Buffer for message words for feedback into encrypted block
  12026. </member>
  12027. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.threefish">
  12028. Underlying Threefish tweakable block cipher
  12029. </member>
  12030. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.outputSizeBytes">
  12031. Size of the digest output, in bytes
  12032. </member>
  12033. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.chain">
  12034. The current chaining/state value
  12035. </member>
  12036. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.initialState">
  12037. The initial state value
  12038. </member>
  12039. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.key">
  12040. The (optional) key parameter
  12041. </member>
  12042. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.preMessageParameters">
  12043. Parameters to apply prior to the message
  12044. </member>
  12045. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.postMessageParameters">
  12046. Parameters to apply after the message, but prior to output
  12047. </member>
  12048. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.ubi">
  12049. The current UBI operation
  12050. </member>
  12051. <member name="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.singleByte">
  12052. Buffer for single byte update method
  12053. </member>
  12054. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.#ctor(System.Int32,System.Int32)">
  12055. <summary>
  12056. Constructs a Skein digest with an internal state size and output size.
  12057. </summary>
  12058. <param name="blockSizeBits">the internal state size in bits - one of <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_256"/> <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_512"/> or
  12059. <see cref="F:Org.BouncyCastle.Crypto.Digests.SkeinEngine.SKEIN_1024"/>.</param>
  12060. <param name="outputSizeBits">the output/digest size to produce in bits, which must be an integral number of
  12061. bytes.</param>
  12062. </member>
  12063. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.#ctor(Org.BouncyCastle.Crypto.Digests.SkeinEngine)">
  12064. <summary>
  12065. Creates a SkeinEngine as an exact copy of an existing instance.
  12066. </summary>
  12067. </member>
  12068. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.Init(Org.BouncyCastle.Crypto.Parameters.SkeinParameters)">
  12069. <summary>
  12070. Initialises the Skein engine with the provided parameters. See <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/> for
  12071. details on the parameterisation of the Skein hash function.
  12072. </summary>
  12073. <param name="parameters">the parameters to apply to this engine, or <code>null</code> to use no parameters.</param>
  12074. </member>
  12075. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.CreateInitialState">
  12076. Calculate the initial (pre message block) chaining state.
  12077. </member>
  12078. <member name="M:Org.BouncyCastle.Crypto.Digests.SkeinEngine.Reset">
  12079. <summary>
  12080. Reset the engine to the initial state (with the key and any pre-message parameters , ready to
  12081. accept message input.
  12082. </summary>
  12083. </member>
  12084. <member name="T:Org.BouncyCastle.Crypto.Digests.SM3Digest">
  12085. <summary>
  12086. Implementation of Chinese SM3 digest as described at
  12087. http://tools.ietf.org/html/draft-shen-sm3-hash-00
  12088. and at .... ( Chinese PDF )
  12089. </summary>
  12090. <remarks>
  12091. The specification says "process a bit stream",
  12092. but this is written to process bytes in blocks of 4,
  12093. meaning this will process 32-bit word groups.
  12094. But so do also most other digest specifications,
  12095. including the SHA-256 which was a origin for
  12096. this specification.
  12097. </remarks>
  12098. </member>
  12099. <member name="M:Org.BouncyCastle.Crypto.Digests.SM3Digest.#ctor">
  12100. <summary>
  12101. Standard constructor
  12102. </summary>
  12103. </member>
  12104. <member name="M:Org.BouncyCastle.Crypto.Digests.SM3Digest.#ctor(Org.BouncyCastle.Crypto.Digests.SM3Digest)">
  12105. <summary>
  12106. Copy constructor. This will copy the state of the provided
  12107. message digest.
  12108. </summary>
  12109. </member>
  12110. <member name="M:Org.BouncyCastle.Crypto.Digests.SM3Digest.Reset">
  12111. <summary>
  12112. reset the chaining variables
  12113. </summary>
  12114. </member>
  12115. <member name="T:Org.BouncyCastle.Crypto.Digests.TigerDigest">
  12116. implementation of Tiger based on:
  12117. <a href="http://www.cs.technion.ac.il/~biham/Reports/Tiger">
  12118. http://www.cs.technion.ac.il/~biham/Reports/Tiger</a>
  12119. </member>
  12120. <member name="M:Org.BouncyCastle.Crypto.Digests.TigerDigest.#ctor">
  12121. Standard constructor
  12122. </member>
  12123. <member name="M:Org.BouncyCastle.Crypto.Digests.TigerDigest.#ctor(Org.BouncyCastle.Crypto.Digests.TigerDigest)">
  12124. Copy constructor. This will copy the state of the provided
  12125. message digest.
  12126. </member>
  12127. <member name="M:Org.BouncyCastle.Crypto.Digests.TigerDigest.Reset">
  12128. reset the chaining variables
  12129. </member>
  12130. <member name="T:Org.BouncyCastle.Crypto.Digests.WhirlpoolDigest">
  12131. Implementation of WhirlpoolDigest, based on Java source published by Barreto
  12132. and Rijmen.
  12133. </member>
  12134. <member name="M:Org.BouncyCastle.Crypto.Digests.WhirlpoolDigest.#ctor(Org.BouncyCastle.Crypto.Digests.WhirlpoolDigest)">
  12135. Copy constructor. This will copy the state of the provided message
  12136. digest.
  12137. </member>
  12138. <member name="M:Org.BouncyCastle.Crypto.Digests.WhirlpoolDigest.Reset">
  12139. Reset the chaining variables
  12140. </member>
  12141. <member name="M:Org.BouncyCastle.Crypto.EC.CustomNamedCurves.GetByOid(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  12142. return the X9ECParameters object for the named curve represented by
  12143. the passed in object identifier. Null if the curve isn't present.
  12144. @param oid an object identifier representing a named curve, if present.
  12145. </member>
  12146. <member name="M:Org.BouncyCastle.Crypto.EC.CustomNamedCurves.GetOid(System.String)">
  12147. return the object identifier signified by the passed in name. Null
  12148. if there is no object identifier associated with name.
  12149. @return the object identifier associated with name, if present.
  12150. </member>
  12151. <member name="M:Org.BouncyCastle.Crypto.EC.CustomNamedCurves.GetName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  12152. return the named curve name represented by the given object identifier.
  12153. </member>
  12154. <member name="P:Org.BouncyCastle.Crypto.EC.CustomNamedCurves.Names">
  12155. returns an enumeration containing the name strings for curves
  12156. contained in this structure.
  12157. </member>
  12158. <member name="T:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding">
  12159. ISO 9796-1 padding. Note in the light of recent results you should
  12160. only use this with RSA (rather than the "simpler" Rabin keys) and you
  12161. should never use it with anything other than a hash (ie. even if the
  12162. message is small don't sign the message, sign it's hash) or some "random"
  12163. value. See your favorite search engine for details.
  12164. </member>
  12165. <member name="M:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding.GetInputBlockSize">
  12166. return the input block size. The largest message we can process
  12167. is (key_size_in_bits + 3)/16, which in our world comes to
  12168. key_size_in_bytes / 2.
  12169. </member>
  12170. <member name="M:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding.GetOutputBlockSize">
  12171. return the maximum possible size for the output.
  12172. </member>
  12173. <member name="M:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding.SetPadBits(System.Int32)">
  12174. set the number of bits in the next message to be treated as
  12175. pad bits.
  12176. </member>
  12177. <member name="M:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding.GetPadBits">
  12178. retrieve the number of pad bits in the last decoded message.
  12179. </member>
  12180. <member name="M:Org.BouncyCastle.Crypto.Encodings.ISO9796d1Encoding.DecodeBlock(System.Byte[],System.Int32,System.Int32)">
  12181. @exception InvalidCipherTextException if the decrypted block is not a valid ISO 9796 bit string
  12182. </member>
  12183. <member name="T:Org.BouncyCastle.Crypto.Encodings.OaepEncoding">
  12184. Optimal Asymmetric Encryption Padding (OAEP) - see PKCS 1 V 2.
  12185. </member>
  12186. <member name="M:Org.BouncyCastle.Crypto.Encodings.OaepEncoding.DecodeBlock(System.Byte[],System.Int32,System.Int32)">
  12187. @exception InvalidCipherTextException if the decrypted block turns out to
  12188. be badly formatted.
  12189. </member>
  12190. <member name="M:Org.BouncyCastle.Crypto.Encodings.OaepEncoding.ItoOSP(System.Int32,System.Byte[])">
  12191. int to octet string.
  12192. </member>
  12193. <member name="M:Org.BouncyCastle.Crypto.Encodings.OaepEncoding.maskGeneratorFunction1(System.Byte[],System.Int32,System.Int32,System.Int32)">
  12194. mask generator function, as described in PKCS1v2.
  12195. </member>
  12196. <member name="T:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding">
  12197. this does your basic Pkcs 1 v1.5 padding - whether or not you should be using this
  12198. depends on your application - see Pkcs1 Version 2 for details.
  12199. </member>
  12200. <member name="F:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.StrictLengthEnabledProperty">
  12201. some providers fail to include the leading zero in PKCS1 encoded blocks. If you need to
  12202. work with one of these set the system property Org.BouncyCastle.Pkcs1.Strict to false.
  12203. </member>
  12204. <member name="P:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.StrictLengthEnabled">
  12205. The same effect can be achieved by setting the static property directly
  12206. <p>
  12207. The static property is checked during construction of the encoding object, it is set to
  12208. true by default.
  12209. </p>
  12210. </member>
  12211. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher)">
  12212. Basic constructor.
  12213. @param cipher
  12214. </member>
  12215. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,System.Int32)">
  12216. Constructor for decryption with a fixed plaintext length.
  12217. @param cipher The cipher to use for cryptographic operation.
  12218. @param pLen Length of the expected plaintext.
  12219. </member>
  12220. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,System.Byte[])">
  12221. Constructor for decryption with a fixed plaintext length and a fallback
  12222. value that is returned, if the padding is incorrect.
  12223. @param cipher
  12224. The cipher to use for cryptographic operation.
  12225. @param fallback
  12226. The fallback value, we don't to a arraycopy here.
  12227. </member>
  12228. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.CheckPkcs1Encoding(System.Byte[],System.Int32)">
  12229. Checks if the argument is a correctly PKCS#1.5 encoded Plaintext
  12230. for encryption.
  12231. @param encoded The Plaintext.
  12232. @param pLen Expected length of the plaintext.
  12233. @return Either 0, if the encoding is correct, or -1, if it is incorrect.
  12234. </member>
  12235. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.DecodeBlockOrRandom(System.Byte[],System.Int32,System.Int32)">
  12236. Decode PKCS#1.5 encoding, and return a random value if the padding is not correct.
  12237. @param in The encrypted block.
  12238. @param inOff Offset in the encrypted block.
  12239. @param inLen Length of the encrypted block.
  12240. @param pLen Length of the desired output.
  12241. @return The plaintext without padding, or a random value if the padding was incorrect.
  12242. @throws InvalidCipherTextException
  12243. </member>
  12244. <member name="M:Org.BouncyCastle.Crypto.Encodings.Pkcs1Encoding.DecodeBlock(System.Byte[],System.Int32,System.Int32)">
  12245. @exception InvalidCipherTextException if the decrypted block is not in Pkcs1 format.
  12246. </member>
  12247. <member name="T:Org.BouncyCastle.Crypto.Engines.AesEngine">
  12248. an implementation of the AES (Rijndael), from FIPS-197.
  12249. <p>
  12250. For further details see: <a href="http://csrc.nist.gov/encryption/aes/">http://csrc.nist.gov/encryption/aes/</a>.
  12251. This implementation is based on optimizations from Dr. Brian Gladman's paper and C code at
  12252. <a href="http://fp.gladman.plus.com/cryptography_technology/rijndael/">http://fp.gladman.plus.com/cryptography_technology/rijndael/</a>
  12253. There are three levels of tradeoff of speed vs memory
  12254. Because java has no preprocessor, they are written as three separate classes from which to choose
  12255. The fastest uses 8Kbytes of static tables to precompute round calculations, 4 256 word tables for encryption
  12256. and 4 for decryption.
  12257. The middle performance version uses only one 256 word table for each, for a total of 2Kbytes,
  12258. adding 12 rotate operations per round to compute the values contained in the other tables from
  12259. the contents of the first.
  12260. The slowest version uses no static tables at all and computes the values in each round.
  12261. </p>
  12262. <p>
  12263. This file contains the middle performance version with 2Kbytes of static tables for round precomputation.
  12264. </p>
  12265. </member>
  12266. <member name="M:Org.BouncyCastle.Crypto.Engines.AesEngine.GenerateWorkingKey(System.Byte[],System.Boolean)">
  12267. Calculate the necessary round keys
  12268. The number of calculations depends on key size and block size
  12269. AES specified a fixed block size of 128 bits and key sizes 128/192/256 bits
  12270. This code is written assuming those are the only possible values
  12271. </member>
  12272. <member name="M:Org.BouncyCastle.Crypto.Engines.AesEngine.#ctor">
  12273. default constructor - 128 bit block size.
  12274. </member>
  12275. <member name="M:Org.BouncyCastle.Crypto.Engines.AesEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12276. initialise an AES cipher.
  12277. @param forEncryption whether or not we are for encryption.
  12278. @param parameters the parameters required to set up the cipher.
  12279. @exception ArgumentException if the parameters argument is
  12280. inappropriate.
  12281. </member>
  12282. <member name="T:Org.BouncyCastle.Crypto.Engines.AesFastEngine">
  12283. an implementation of the AES (Rijndael)), from FIPS-197.
  12284. <p>
  12285. For further details see: <a href="http://csrc.nist.gov/encryption/aes/">http://csrc.nist.gov/encryption/aes/</a>.
  12286. This implementation is based on optimizations from Dr. Brian Gladman's paper and C code at
  12287. <a href="http://fp.gladman.plus.com/cryptography_technology/rijndael/">http://fp.gladman.plus.com/cryptography_technology/rijndael/</a>
  12288. There are three levels of tradeoff of speed vs memory
  12289. Because java has no preprocessor), they are written as three separate classes from which to choose
  12290. The fastest uses 8Kbytes of static tables to precompute round calculations), 4 256 word tables for encryption
  12291. and 4 for decryption.
  12292. The middle performance version uses only one 256 word table for each), for a total of 2Kbytes),
  12293. adding 12 rotate operations per round to compute the values contained in the other tables from
  12294. the contents of the first
  12295. The slowest version uses no static tables at all and computes the values in each round
  12296. </p>
  12297. <p>
  12298. This file contains the fast version with 8Kbytes of static tables for round precomputation
  12299. </p>
  12300. <remarks>
  12301. Unfortunately this class has a few side channel issues.
  12302. In an environment where encryption/decryption may be closely observed it should not be used.
  12303. </remarks>
  12304. </member>
  12305. <member name="M:Org.BouncyCastle.Crypto.Engines.AesFastEngine.GenerateWorkingKey(System.Byte[],System.Boolean)">
  12306. Calculate the necessary round keys
  12307. The number of calculations depends on key size and block size
  12308. AES specified a fixed block size of 128 bits and key sizes 128/192/256 bits
  12309. This code is written assuming those are the only possible values
  12310. </member>
  12311. <member name="M:Org.BouncyCastle.Crypto.Engines.AesFastEngine.#ctor">
  12312. default constructor - 128 bit block size.
  12313. </member>
  12314. <member name="M:Org.BouncyCastle.Crypto.Engines.AesFastEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12315. initialise an AES cipher.
  12316. @param forEncryption whether or not we are for encryption.
  12317. @param parameters the parameters required to set up the cipher.
  12318. @exception ArgumentException if the parameters argument is
  12319. inappropriate.
  12320. </member>
  12321. <member name="T:Org.BouncyCastle.Crypto.Engines.AesLightEngine">
  12322. an implementation of the AES (Rijndael), from FIPS-197.
  12323. <p>
  12324. For further details see: <a href="http://csrc.nist.gov/encryption/aes/">http://csrc.nist.gov/encryption/aes/</a>.
  12325. This implementation is based on optimizations from Dr. Brian Gladman's paper and C code at
  12326. <a href="http://fp.gladman.plus.com/cryptography_technology/rijndael/">http://fp.gladman.plus.com/cryptography_technology/rijndael/</a>
  12327. There are three levels of tradeoff of speed vs memory
  12328. Because java has no preprocessor, they are written as three separate classes from which to choose
  12329. The fastest uses 8Kbytes of static tables to precompute round calculations, 4 256 word tables for encryption
  12330. and 4 for decryption.
  12331. The middle performance version uses only one 256 word table for each, for a total of 2Kbytes,
  12332. adding 12 rotate operations per round to compute the values contained in the other tables from
  12333. the contents of the first
  12334. The slowest version uses no static tables at all and computes the values
  12335. in each round.
  12336. </p>
  12337. <p>
  12338. This file contains the slowest performance version with no static tables
  12339. for round precomputation, but it has the smallest foot print.
  12340. </p>
  12341. </member>
  12342. <member name="M:Org.BouncyCastle.Crypto.Engines.AesLightEngine.GenerateWorkingKey(System.Byte[],System.Boolean)">
  12343. Calculate the necessary round keys
  12344. The number of calculations depends on key size and block size
  12345. AES specified a fixed block size of 128 bits and key sizes 128/192/256 bits
  12346. This code is written assuming those are the only possible values
  12347. </member>
  12348. <member name="M:Org.BouncyCastle.Crypto.Engines.AesLightEngine.#ctor">
  12349. default constructor - 128 bit block size.
  12350. </member>
  12351. <member name="M:Org.BouncyCastle.Crypto.Engines.AesLightEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12352. initialise an AES cipher.
  12353. @param forEncryption whether or not we are for encryption.
  12354. @param parameters the parameters required to set up the cipher.
  12355. @exception ArgumentException if the parameters argument is
  12356. inappropriate.
  12357. </member>
  12358. <member name="T:Org.BouncyCastle.Crypto.Engines.AesWrapEngine">
  12359. <remarks>
  12360. An implementation of the AES Key Wrapper from the NIST Key Wrap Specification.
  12361. <p/>
  12362. For further details see: <a href="http://csrc.nist.gov/encryption/kms/key-wrap.pdf">http://csrc.nist.gov/encryption/kms/key-wrap.pdf</a>.
  12363. </remarks>
  12364. </member>
  12365. <member name="T:Org.BouncyCastle.Crypto.Engines.BlowfishEngine">
  12366. A class that provides Blowfish key encryption operations,
  12367. such as encoding data and generating keys.
  12368. All the algorithms herein are from Applied Cryptography
  12369. and implement a simplified cryptography interface.
  12370. </member>
  12371. <member name="M:Org.BouncyCastle.Crypto.Engines.BlowfishEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12372. initialise a Blowfish cipher.
  12373. @param forEncryption whether or not we are for encryption.
  12374. @param parameters the parameters required to set up the cipher.
  12375. @exception ArgumentException if the parameters argument is
  12376. inappropriate.
  12377. </member>
  12378. <member name="M:Org.BouncyCastle.Crypto.Engines.BlowfishEngine.ProcessTable(System.UInt32,System.UInt32,System.UInt32[])">
  12379. apply the encryption cycle to each value pair in the table.
  12380. </member>
  12381. <member name="M:Org.BouncyCastle.Crypto.Engines.BlowfishEngine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12382. Encrypt the given input starting at the given offset and place
  12383. the result in the provided buffer starting at the given offset.
  12384. The input will be an exact multiple of our blocksize.
  12385. </member>
  12386. <member name="M:Org.BouncyCastle.Crypto.Engines.BlowfishEngine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12387. Decrypt the given input starting at the given offset and place
  12388. the result in the provided buffer starting at the given offset.
  12389. The input will be an exact multiple of our blocksize.
  12390. </member>
  12391. <member name="T:Org.BouncyCastle.Crypto.Engines.CamelliaEngine">
  12392. Camellia - based on RFC 3713.
  12393. </member>
  12394. <member name="T:Org.BouncyCastle.Crypto.Engines.CamelliaLightEngine">
  12395. Camellia - based on RFC 3713, smaller implementation, about half the size of CamelliaEngine.
  12396. </member>
  12397. <member name="T:Org.BouncyCastle.Crypto.Engines.CamelliaWrapEngine">
  12398. <remarks>
  12399. An implementation of the Camellia key wrapper based on RFC 3657/RFC 3394.
  12400. <p/>
  12401. For further details see: <a href="http://www.ietf.org/rfc/rfc3657.txt">http://www.ietf.org/rfc/rfc3657.txt</a>.
  12402. </remarks>
  12403. </member>
  12404. <member name="T:Org.BouncyCastle.Crypto.Engines.Cast5Engine">
  12405. A class that provides CAST key encryption operations,
  12406. such as encoding data and generating keys.
  12407. All the algorithms herein are from the Internet RFC's
  12408. RFC2144 - Cast5 (64bit block, 40-128bit key)
  12409. RFC2612 - CAST6 (128bit block, 128-256bit key)
  12410. and implement a simplified cryptography interface.
  12411. </member>
  12412. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12413. initialise a CAST cipher.
  12414. @param forEncryption whether or not we are for encryption.
  12415. @param parameters the parameters required to set up the cipher.
  12416. @exception ArgumentException if the parameters argument is
  12417. inappropriate.
  12418. </member>
  12419. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12420. Encrypt the given input starting at the given offset and place
  12421. the result in the provided buffer starting at the given offset.
  12422. @param src The plaintext buffer
  12423. @param srcIndex An offset into src
  12424. @param dst The ciphertext buffer
  12425. @param dstIndex An offset into dst
  12426. </member>
  12427. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12428. Decrypt the given input starting at the given offset and place
  12429. the result in the provided buffer starting at the given offset.
  12430. @param src The plaintext buffer
  12431. @param srcIndex An offset into src
  12432. @param dst The ciphertext buffer
  12433. @param dstIndex An offset into dst
  12434. </member>
  12435. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.F1(System.UInt32,System.UInt32,System.Int32)">
  12436. The first of the three processing functions for the
  12437. encryption and decryption.
  12438. @param D the input to be processed
  12439. @param Kmi the mask to be used from Km[n]
  12440. @param Kri the rotation value to be used
  12441. </member>
  12442. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.F2(System.UInt32,System.UInt32,System.Int32)">
  12443. The second of the three processing functions for the
  12444. encryption and decryption.
  12445. @param D the input to be processed
  12446. @param Kmi the mask to be used from Km[n]
  12447. @param Kri the rotation value to be used
  12448. </member>
  12449. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.F3(System.UInt32,System.UInt32,System.Int32)">
  12450. The third of the three processing functions for the
  12451. encryption and decryption.
  12452. @param D the input to be processed
  12453. @param Kmi the mask to be used from Km[n]
  12454. @param Kri the rotation value to be used
  12455. </member>
  12456. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast5Engine.CAST_Encipher(System.UInt32,System.UInt32,System.UInt32[])">
  12457. Does the 16 rounds to encrypt the block.
  12458. @param L0 the LH-32bits of the plaintext block
  12459. @param R0 the RH-32bits of the plaintext block
  12460. </member>
  12461. <member name="T:Org.BouncyCastle.Crypto.Engines.Cast6Engine">
  12462. A class that provides CAST6 key encryption operations,
  12463. such as encoding data and generating keys.
  12464. All the algorithms herein are from the Internet RFC
  12465. RFC2612 - CAST6 (128bit block, 128-256bit key)
  12466. and implement a simplified cryptography interface.
  12467. </member>
  12468. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast6Engine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12469. Encrypt the given input starting at the given offset and place
  12470. the result in the provided buffer starting at the given offset.
  12471. @param src The plaintext buffer
  12472. @param srcIndex An offset into src
  12473. @param dst The ciphertext buffer
  12474. @param dstIndex An offset into dst
  12475. </member>
  12476. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast6Engine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12477. Decrypt the given input starting at the given offset and place
  12478. the result in the provided buffer starting at the given offset.
  12479. @param src The plaintext buffer
  12480. @param srcIndex An offset into src
  12481. @param dst The ciphertext buffer
  12482. @param dstIndex An offset into dst
  12483. </member>
  12484. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast6Engine.CAST_Encipher(System.UInt32,System.UInt32,System.UInt32,System.UInt32,System.UInt32[])">
  12485. Does the 12 quad rounds rounds to encrypt the block.
  12486. @param A the 00-31 bits of the plaintext block
  12487. @param B the 32-63 bits of the plaintext block
  12488. @param C the 64-95 bits of the plaintext block
  12489. @param D the 96-127 bits of the plaintext block
  12490. @param result the resulting ciphertext
  12491. </member>
  12492. <member name="M:Org.BouncyCastle.Crypto.Engines.Cast6Engine.CAST_Decipher(System.UInt32,System.UInt32,System.UInt32,System.UInt32,System.UInt32[])">
  12493. Does the 12 quad rounds rounds to decrypt the block.
  12494. @param A the 00-31 bits of the ciphertext block
  12495. @param B the 32-63 bits of the ciphertext block
  12496. @param C the 64-95 bits of the ciphertext block
  12497. @param D the 96-127 bits of the ciphertext block
  12498. @param result the resulting plaintext
  12499. </member>
  12500. <member name="T:Org.BouncyCastle.Crypto.Engines.ChaCha7539Engine">
  12501. <summary>
  12502. Implementation of Daniel J. Bernstein's ChaCha stream cipher.
  12503. </summary>
  12504. </member>
  12505. <member name="M:Org.BouncyCastle.Crypto.Engines.ChaCha7539Engine.#ctor">
  12506. <summary>
  12507. Creates a 20 rounds ChaCha engine.
  12508. </summary>
  12509. </member>
  12510. <member name="T:Org.BouncyCastle.Crypto.Engines.ChaChaEngine">
  12511. <summary>
  12512. Implementation of Daniel J. Bernstein's ChaCha stream cipher.
  12513. </summary>
  12514. </member>
  12515. <member name="M:Org.BouncyCastle.Crypto.Engines.ChaChaEngine.#ctor">
  12516. <summary>
  12517. Creates a 20 rounds ChaCha engine.
  12518. </summary>
  12519. </member>
  12520. <member name="M:Org.BouncyCastle.Crypto.Engines.ChaChaEngine.#ctor(System.Int32)">
  12521. <summary>
  12522. Creates a ChaCha engine with a specific number of rounds.
  12523. </summary>
  12524. <param name="rounds">the number of rounds (must be an even number).</param>
  12525. </member>
  12526. <member name="M:Org.BouncyCastle.Crypto.Engines.ChaChaEngine.ChachaCore(System.Int32,System.UInt32[],System.UInt32[])">
  12527. <summary>
  12528. ChaCha function.
  12529. </summary>
  12530. <param name="rounds">The number of ChaCha rounds to execute</param>
  12531. <param name="input">The input words.</param>
  12532. <param name="x">The ChaCha state to modify.</param>
  12533. </member>
  12534. <member name="T:Org.BouncyCastle.Crypto.Engines.DesEdeEngine">
  12535. <remarks>A class that provides a basic DESede (or Triple DES) engine.</remarks>
  12536. </member>
  12537. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12538. initialise a DESede cipher.
  12539. @param forEncryption whether or not we are for encryption.
  12540. @param parameters the parameters required to set up the cipher.
  12541. @exception ArgumentException if the parameters argument is
  12542. inappropriate.
  12543. </member>
  12544. <member name="T:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine">
  12545. * Wrap keys according to
  12546. * <a href="http://www.ietf.org/internet-drafts/draft-ietf-smime-key-wrap-01.txt">
  12547. * draft-ietf-smime-key-wrap-01.txt</a>.
  12548. * <p>
  12549. * Note:
  12550. * <ul>
  12551. * <li>this is based on a draft, and as such is subject to change - don't use this class for anything requiring long term storage.</li>
  12552. * <li>if you are using this to wrap triple-des keys you need to set the
  12553. * parity bits on the key and, if it's a two-key triple-des key, pad it
  12554. * yourself.</li>
  12555. * </ul>
  12556. * </p>
  12557. </member>
  12558. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.engine">
  12559. Field engine
  12560. </member>
  12561. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.param">
  12562. Field param
  12563. </member>
  12564. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.paramPlusIV">
  12565. Field paramPlusIV
  12566. </member>
  12567. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.iv">
  12568. Field iv
  12569. </member>
  12570. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.forWrapping">
  12571. Field forWrapping
  12572. </member>
  12573. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.IV2">
  12574. Field IV2
  12575. </member>
  12576. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12577. Method init
  12578. @param forWrapping
  12579. @param param
  12580. </member>
  12581. <member name="P:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.AlgorithmName">
  12582. Method GetAlgorithmName
  12583. @return
  12584. </member>
  12585. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.Wrap(System.Byte[],System.Int32,System.Int32)">
  12586. Method wrap
  12587. @param in
  12588. @param inOff
  12589. @param inLen
  12590. @return
  12591. </member>
  12592. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.Unwrap(System.Byte[],System.Int32,System.Int32)">
  12593. Method unwrap
  12594. @param in
  12595. @param inOff
  12596. @param inLen
  12597. @return
  12598. @throws InvalidCipherTextException
  12599. </member>
  12600. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.CalculateCmsKeyChecksum(System.Byte[])">
  12601. Some key wrap algorithms make use of the Key Checksum defined
  12602. in CMS [CMS-Algorithms]. This is used to provide an integrity
  12603. check value for the key being wrapped. The algorithm is
  12604. - Compute the 20 octet SHA-1 hash on the key being wrapped.
  12605. - Use the first 8 octets of this hash as the checksum value.
  12606. @param key
  12607. @return
  12608. @throws Exception
  12609. @see http://www.w3.org/TR/xmlenc-core/#sec-CMSKeyChecksum
  12610. </member>
  12611. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEdeWrapEngine.CheckCmsKeyChecksum(System.Byte[],System.Byte[])">
  12612. @param key
  12613. @param checksum
  12614. @return
  12615. @see http://www.w3.org/TR/xmlenc-core/#sec-CMSKeyChecksum
  12616. </member>
  12617. <member name="T:Org.BouncyCastle.Crypto.Engines.DesEngine">
  12618. <remarks>A class that provides a basic DES engine.</remarks>
  12619. </member>
  12620. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12621. initialise a DES cipher.
  12622. @param forEncryption whether or not we are for encryption.
  12623. @param parameters the parameters required to set up the cipher.
  12624. @exception ArgumentException if the parameters argument is
  12625. inappropriate.
  12626. </member>
  12627. <member name="F:Org.BouncyCastle.Crypto.Engines.DesEngine.bytebit">
  12628. what follows is mainly taken from "Applied Cryptography", by
  12629. Bruce Schneier, however it also bears great resemblance to Richard
  12630. Outerbridge's D3DES...
  12631. </member>
  12632. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEngine.GenerateWorkingKey(System.Boolean,System.Byte[])">
  12633. Generate an integer based working key based on our secret key
  12634. and what we processing we are planning to do.
  12635. Acknowledgements for this routine go to James Gillogly and Phil Karn.
  12636. (whoever, and wherever they are!).
  12637. </member>
  12638. <member name="M:Org.BouncyCastle.Crypto.Engines.DesEngine.DesFunc(System.Int32[],System.Byte[],System.Int32,System.Byte[],System.Int32)">
  12639. the DES engine.
  12640. </member>
  12641. <member name="T:Org.BouncyCastle.Crypto.Engines.Dstu7624Engine">
  12642. implementation of DSTU 7624 (Kalyna)
  12643. </member>
  12644. <member name="T:Org.BouncyCastle.Crypto.Engines.ElGamalEngine">
  12645. this does your basic ElGamal algorithm.
  12646. </member>
  12647. <member name="M:Org.BouncyCastle.Crypto.Engines.ElGamalEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12648. initialise the ElGamal engine.
  12649. @param forEncryption true if we are encrypting, false otherwise.
  12650. @param param the necessary ElGamal key parameters.
  12651. </member>
  12652. <member name="M:Org.BouncyCastle.Crypto.Engines.ElGamalEngine.GetInputBlockSize">
  12653. Return the maximum size for an input block to this engine.
  12654. For ElGamal this is always one byte less than the size of P on
  12655. encryption, and twice the length as the size of P on decryption.
  12656. @return maximum size for an input block.
  12657. </member>
  12658. <member name="M:Org.BouncyCastle.Crypto.Engines.ElGamalEngine.GetOutputBlockSize">
  12659. Return the maximum size for an output block to this engine.
  12660. For ElGamal this is always one byte less than the size of P on
  12661. decryption, and twice the length as the size of P on encryption.
  12662. @return maximum size for an output block.
  12663. </member>
  12664. <member name="M:Org.BouncyCastle.Crypto.Engines.ElGamalEngine.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  12665. Process a single block using the basic ElGamal algorithm.
  12666. @param in the input array.
  12667. @param inOff the offset into the input buffer where the data starts.
  12668. @param length the length of the data to be processed.
  12669. @return the result of the ElGamal process.
  12670. @exception DataLengthException the input block is too large.
  12671. </member>
  12672. <member name="T:Org.BouncyCastle.Crypto.Engines.Gost28147Engine">
  12673. implementation of GOST 28147-89
  12674. </member>
  12675. <member name="M:Org.BouncyCastle.Crypto.Engines.Gost28147Engine.#ctor">
  12676. standard constructor.
  12677. </member>
  12678. <member name="M:Org.BouncyCastle.Crypto.Engines.Gost28147Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12679. initialise an Gost28147 cipher.
  12680. @param forEncryption whether or not we are for encryption.
  12681. @param parameters the parameters required to set up the cipher.
  12682. @exception ArgumentException if the parameters argument is inappropriate.
  12683. </member>
  12684. <member name="M:Org.BouncyCastle.Crypto.Engines.Gost28147Engine.GetSBox(System.String)">
  12685. Return the S-Box associated with SBoxName
  12686. @param sBoxName name of the S-Box
  12687. @return byte array representing the S-Box
  12688. </member>
  12689. <member name="T:Org.BouncyCastle.Crypto.Engines.HC128Engine">
  12690. HC-128 is a software-efficient stream cipher created by Hongjun Wu. It
  12691. generates keystream from a 128-bit secret key and a 128-bit initialization
  12692. vector.
  12693. <p>
  12694. http://www.ecrypt.eu.org/stream/p3ciphers/hc/hc128_p3.pdf
  12695. </p><p>
  12696. It is a third phase candidate in the eStream contest, and is patent-free.
  12697. No attacks are known as of today (April 2007). See
  12698. http://www.ecrypt.eu.org/stream/hcp3.html
  12699. </p>
  12700. </member>
  12701. <member name="M:Org.BouncyCastle.Crypto.Engines.HC128Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12702. Initialise a HC-128 cipher.
  12703. @param forEncryption whether or not we are for encryption. Irrelevant, as
  12704. encryption and decryption are the same.
  12705. @param params the parameters required to set up the cipher.
  12706. @throws ArgumentException if the params argument is
  12707. inappropriate (ie. the key is not 128 bit long).
  12708. </member>
  12709. <member name="T:Org.BouncyCastle.Crypto.Engines.HC256Engine">
  12710. HC-256 is a software-efficient stream cipher created by Hongjun Wu. It
  12711. generates keystream from a 256-bit secret key and a 256-bit initialization
  12712. vector.
  12713. <p>
  12714. http://www.ecrypt.eu.org/stream/p3ciphers/hc/hc256_p3.pdf
  12715. </p><p>
  12716. Its brother, HC-128, is a third phase candidate in the eStream contest.
  12717. The algorithm is patent-free. No attacks are known as of today (April 2007).
  12718. See
  12719. http://www.ecrypt.eu.org/stream/hcp3.html
  12720. </p>
  12721. </member>
  12722. <member name="M:Org.BouncyCastle.Crypto.Engines.HC256Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12723. Initialise a HC-256 cipher.
  12724. @param forEncryption whether or not we are for encryption. Irrelevant, as
  12725. encryption and decryption are the same.
  12726. @param params the parameters required to set up the cipher.
  12727. @throws ArgumentException if the params argument is
  12728. inappropriate (ie. the key is not 256 bit long).
  12729. </member>
  12730. <member name="T:Org.BouncyCastle.Crypto.Engines.IdeaEngine">
  12731. A class that provides a basic International Data Encryption Algorithm (IDEA) engine.
  12732. <p>
  12733. This implementation is based on the "HOWTO: INTERNATIONAL DATA ENCRYPTION ALGORITHM"
  12734. implementation summary by Fauzan Mirza (F.U.Mirza@sheffield.ac.uk). (barring 1 typo at the
  12735. end of the MulInv function!).
  12736. </p>
  12737. <p>
  12738. It can be found at ftp://ftp.funet.fi/pub/crypt/cryptography/symmetric/idea/
  12739. </p>
  12740. <p>
  12741. Note: This algorithm was patented in the USA, Japan and Europe. These patents expired in 2011/2012.
  12742. </p>
  12743. </member>
  12744. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.#ctor">
  12745. standard constructor.
  12746. </member>
  12747. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12748. initialise an IDEA cipher.
  12749. @param forEncryption whether or not we are for encryption.
  12750. @param parameters the parameters required to set up the cipher.
  12751. @exception ArgumentException if the parameters argument is
  12752. inappropriate.
  12753. </member>
  12754. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.Mul(System.Int32,System.Int32)">
  12755. return x = x * y where the multiplication is done modulo
  12756. 65537 (0x10001) (as defined in the IDEA specification) and
  12757. a zero input is taken to be 65536 (0x10000).
  12758. @param x the x value
  12759. @param y the y value
  12760. @return x = x * y
  12761. </member>
  12762. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.ExpandKey(System.Byte[])">
  12763. The following function is used to expand the user key to the encryption
  12764. subkey. The first 16 bytes are the user key, and the rest of the subkey
  12765. is calculated by rotating the previous 16 bytes by 25 bits to the left,
  12766. and so on until the subkey is completed.
  12767. </member>
  12768. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.MulInv(System.Int32)">
  12769. This function computes multiplicative inverse using Euclid's Greatest
  12770. Common Divisor algorithm. Zero and one are self inverse.
  12771. <p>
  12772. i.e. x * MulInv(x) == 1 (modulo BASE)
  12773. </p>
  12774. </member>
  12775. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.AddInv(System.Int32)">
  12776. Return the additive inverse of x.
  12777. <p>
  12778. i.e. x + AddInv(x) == 0
  12779. </p>
  12780. </member>
  12781. <member name="M:Org.BouncyCastle.Crypto.Engines.IdeaEngine.InvertKey(System.Int32[])">
  12782. The function to invert the encryption subkey to the decryption subkey.
  12783. It also involves the multiplicative inverse and the additive inverse functions.
  12784. </member>
  12785. <member name="T:Org.BouncyCastle.Crypto.Engines.IesEngine">
  12786. support class for constructing intergrated encryption ciphers
  12787. for doing basic message exchanges on top of key agreement ciphers
  12788. </member>
  12789. <member name="M:Org.BouncyCastle.Crypto.Engines.IesEngine.#ctor(Org.BouncyCastle.Crypto.IBasicAgreement,Org.BouncyCastle.Crypto.IDerivationFunction,Org.BouncyCastle.Crypto.IMac)">
  12790. set up for use with stream mode, where the key derivation function
  12791. is used to provide a stream of bytes to xor with the message.
  12792. @param agree the key agreement used as the basis for the encryption
  12793. @param kdf the key derivation function used for byte generation
  12794. @param mac the message authentication code generator for the message
  12795. </member>
  12796. <member name="M:Org.BouncyCastle.Crypto.Engines.IesEngine.#ctor(Org.BouncyCastle.Crypto.IBasicAgreement,Org.BouncyCastle.Crypto.IDerivationFunction,Org.BouncyCastle.Crypto.IMac,Org.BouncyCastle.Crypto.BufferedBlockCipher)">
  12797. set up for use in conjunction with a block cipher to handle the
  12798. message.
  12799. @param agree the key agreement used as the basis for the encryption
  12800. @param kdf the key derivation function used for byte generation
  12801. @param mac the message authentication code generator for the message
  12802. @param cipher the cipher to used for encrypting the message
  12803. </member>
  12804. <member name="M:Org.BouncyCastle.Crypto.Engines.IesEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters,Org.BouncyCastle.Crypto.ICipherParameters,Org.BouncyCastle.Crypto.ICipherParameters)">
  12805. Initialise the encryptor.
  12806. @param forEncryption whether or not this is encryption/decryption.
  12807. @param privParam our private key parameters
  12808. @param pubParam the recipient's/sender's public key parameters
  12809. @param param encoding and derivation parameters.
  12810. </member>
  12811. <member name="T:Org.BouncyCastle.Crypto.Engines.IsaacEngine">
  12812. Implementation of Bob Jenkin's ISAAC (Indirection Shift Accumulate Add and Count).
  12813. see: http://www.burtleburtle.net/bob/rand/isaacafa.html
  12814. </member>
  12815. <member name="M:Org.BouncyCastle.Crypto.Engines.IsaacEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12816. initialise an ISAAC cipher.
  12817. @param forEncryption whether or not we are for encryption.
  12818. @param params the parameters required to set up the cipher.
  12819. @exception ArgumentException if the params argument is
  12820. inappropriate.
  12821. </member>
  12822. <member name="T:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine">
  12823. NaccacheStern Engine. For details on this cipher, please see
  12824. http://www.gemplus.com/smart/rd/publications/pdf/NS98pkcs.pdf
  12825. </member>
  12826. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12827. Initializes this algorithm. Must be called before all other Functions.
  12828. @see org.bouncycastle.crypto.AsymmetricBlockCipher#init(bool,
  12829. org.bouncycastle.crypto.CipherParameters)
  12830. </member>
  12831. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.GetInputBlockSize">
  12832. Returns the input block size of this algorithm.
  12833. @see org.bouncycastle.crypto.AsymmetricBlockCipher#GetInputBlockSize()
  12834. </member>
  12835. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.GetOutputBlockSize">
  12836. Returns the output block size of this algorithm.
  12837. @see org.bouncycastle.crypto.AsymmetricBlockCipher#GetOutputBlockSize()
  12838. </member>
  12839. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  12840. Process a single Block using the Naccache-Stern algorithm.
  12841. @see org.bouncycastle.crypto.AsymmetricBlockCipher#ProcessBlock(byte[],
  12842. int, int)
  12843. </member>
  12844. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.Encrypt(Org.BouncyCastle.Math.BigInteger)">
  12845. Encrypts a BigInteger aka Plaintext with the public key.
  12846. @param plain
  12847. The BigInteger to encrypt
  12848. @return The byte[] representation of the encrypted BigInteger (i.e.
  12849. crypted.toByteArray())
  12850. </member>
  12851. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.AddCryptedBlocks(System.Byte[],System.Byte[])">
  12852. Adds the contents of two encrypted blocks mod sigma
  12853. @param block1
  12854. the first encrypted block
  12855. @param block2
  12856. the second encrypted block
  12857. @return encrypt((block1 + block2) mod sigma)
  12858. @throws InvalidCipherTextException
  12859. </member>
  12860. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.ProcessData(System.Byte[])">
  12861. Convenience Method for data exchange with the cipher.
  12862. Determines blocksize and splits data to blocksize.
  12863. @param data the data to be processed
  12864. @return the data after it went through the NaccacheSternEngine.
  12865. @throws InvalidCipherTextException
  12866. </member>
  12867. <member name="M:Org.BouncyCastle.Crypto.Engines.NaccacheSternEngine.chineseRemainder(System.Collections.IList,System.Collections.IList)">
  12868. Computes the integer x that is expressed through the given primes and the
  12869. congruences with the chinese remainder theorem (CRT).
  12870. @param congruences
  12871. the congruences c_i
  12872. @param primes
  12873. the primes p_i
  12874. @return an integer x for that x % p_i == c_i
  12875. </member>
  12876. <member name="T:Org.BouncyCastle.Crypto.Engines.NoekeonEngine">
  12877. A Noekeon engine, using direct-key mode.
  12878. </member>
  12879. <member name="M:Org.BouncyCastle.Crypto.Engines.NoekeonEngine.#ctor">
  12880. Create an instance of the Noekeon encryption algorithm
  12881. and set some defaults
  12882. </member>
  12883. <member name="M:Org.BouncyCastle.Crypto.Engines.NoekeonEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12884. initialise
  12885. @param forEncryption whether or not we are for encryption.
  12886. @param params the parameters required to set up the cipher.
  12887. @exception ArgumentException if the params argument is
  12888. inappropriate.
  12889. </member>
  12890. <member name="M:Org.BouncyCastle.Crypto.Engines.NoekeonEngine.setKey(System.Byte[])">
  12891. Re-key the cipher.
  12892. @param key the key to be used
  12893. </member>
  12894. <member name="T:Org.BouncyCastle.Crypto.Engines.NullEngine">
  12895. The no-op engine that just copies bytes through, irrespective of whether encrypting and decrypting.
  12896. Provided for the sake of completeness.
  12897. </member>
  12898. <member name="T:Org.BouncyCastle.Crypto.Engines.RC2Engine">
  12899. an implementation of RC2 as described in RFC 2268
  12900. "A Description of the RC2(r) Encryption Algorithm" R. Rivest.
  12901. </member>
  12902. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12903. initialise a RC2 cipher.
  12904. @param forEncryption whether or not we are for encryption.
  12905. @param parameters the parameters required to set up the cipher.
  12906. @exception ArgumentException if the parameters argument is
  12907. inappropriate.
  12908. </member>
  12909. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2Engine.RotateWordLeft(System.Int32,System.Int32)">
  12910. return the result rotating the 16 bit number in x left by y
  12911. </member>
  12912. <member name="T:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine">
  12913. Wrap keys according to RFC 3217 - RC2 mechanism
  12914. </member>
  12915. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.engine">
  12916. Field engine
  12917. </member>
  12918. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.parameters">
  12919. Field param
  12920. </member>
  12921. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.paramPlusIV">
  12922. Field paramPlusIV
  12923. </member>
  12924. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.iv">
  12925. Field iv
  12926. </member>
  12927. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.forWrapping">
  12928. Field forWrapping
  12929. </member>
  12930. <member name="F:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.IV2">
  12931. Field IV2
  12932. </member>
  12933. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12934. Method init
  12935. @param forWrapping
  12936. @param param
  12937. </member>
  12938. <member name="P:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.AlgorithmName">
  12939. Method GetAlgorithmName
  12940. @return
  12941. </member>
  12942. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.Wrap(System.Byte[],System.Int32,System.Int32)">
  12943. Method wrap
  12944. @param in
  12945. @param inOff
  12946. @param inLen
  12947. @return
  12948. </member>
  12949. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.Unwrap(System.Byte[],System.Int32,System.Int32)">
  12950. Method unwrap
  12951. @param in
  12952. @param inOff
  12953. @param inLen
  12954. @return
  12955. @throws InvalidCipherTextException
  12956. </member>
  12957. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.CalculateCmsKeyChecksum(System.Byte[])">
  12958. Some key wrap algorithms make use of the Key Checksum defined
  12959. in CMS [CMS-Algorithms]. This is used to provide an integrity
  12960. check value for the key being wrapped. The algorithm is
  12961. - Compute the 20 octet SHA-1 hash on the key being wrapped.
  12962. - Use the first 8 octets of this hash as the checksum value.
  12963. @param key
  12964. @return
  12965. @throws Exception
  12966. @see http://www.w3.org/TR/xmlenc-core/#sec-CMSKeyChecksum
  12967. </member>
  12968. <member name="M:Org.BouncyCastle.Crypto.Engines.RC2WrapEngine.CheckCmsKeyChecksum(System.Byte[],System.Byte[])">
  12969. @param key
  12970. @param checksum
  12971. @return
  12972. @see http://www.w3.org/TR/xmlenc-core/#sec-CMSKeyChecksum
  12973. </member>
  12974. <member name="M:Org.BouncyCastle.Crypto.Engines.RC4Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12975. initialise a RC4 cipher.
  12976. @param forEncryption whether or not we are for encryption.
  12977. @param parameters the parameters required to set up the cipher.
  12978. @exception ArgumentException if the parameters argument is
  12979. inappropriate.
  12980. </member>
  12981. <member name="T:Org.BouncyCastle.Crypto.Engines.RC532Engine">
  12982. The specification for RC5 came from the <code>RC5 Encryption Algorithm</code>
  12983. publication in RSA CryptoBytes, Spring of 1995.
  12984. <em>http://www.rsasecurity.com/rsalabs/cryptobytes</em>.
  12985. <p>
  12986. This implementation has a word size of 32 bits.</p>
  12987. </member>
  12988. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.#ctor">
  12989. Create an instance of the RC5 encryption algorithm
  12990. and set some defaults
  12991. </member>
  12992. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  12993. initialise a RC5-32 cipher.
  12994. @param forEncryption whether or not we are for encryption.
  12995. @param parameters the parameters required to set up the cipher.
  12996. @exception ArgumentException if the parameters argument is
  12997. inappropriate.
  12998. </member>
  12999. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.SetKey(System.Byte[])">
  13000. Re-key the cipher.
  13001. @param key the key to be used
  13002. </member>
  13003. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13004. Encrypt the given block starting at the given offset and place
  13005. the result in the provided buffer starting at the given offset.
  13006. @param in in byte buffer containing data to encrypt
  13007. @param inOff offset into src buffer
  13008. @param out out buffer where encrypted data is written
  13009. @param outOff offset into out buffer
  13010. </member>
  13011. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.RotateLeft(System.Int32,System.Int32)">
  13012. Perform a left "spin" of the word. The rotation of the given
  13013. word <em>x</em> is rotated left by <em>y</em> bits.
  13014. Only the <em>lg(32)</em> low-order bits of <em>y</em>
  13015. are used to determine the rotation amount. Here it is
  13016. assumed that the wordsize used is a power of 2.
  13017. @param x word to rotate
  13018. @param y number of bits to rotate % 32
  13019. </member>
  13020. <member name="M:Org.BouncyCastle.Crypto.Engines.RC532Engine.RotateRight(System.Int32,System.Int32)">
  13021. Perform a right "spin" of the word. The rotation of the given
  13022. word <em>x</em> is rotated left by <em>y</em> bits.
  13023. Only the <em>lg(32)</em> low-order bits of <em>y</em>
  13024. are used to determine the rotation amount. Here it is
  13025. assumed that the wordsize used is a power of 2.
  13026. @param x word to rotate
  13027. @param y number of bits to rotate % 32
  13028. </member>
  13029. <member name="T:Org.BouncyCastle.Crypto.Engines.RC564Engine">
  13030. The specification for RC5 came from the <code>RC5 Encryption Algorithm</code>
  13031. publication in RSA CryptoBytes, Spring of 1995.
  13032. <em>http://www.rsasecurity.com/rsalabs/cryptobytes</em>.
  13033. <p>
  13034. This implementation is set to work with a 64 bit word size.</p>
  13035. </member>
  13036. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.#ctor">
  13037. Create an instance of the RC5 encryption algorithm
  13038. and set some defaults
  13039. </member>
  13040. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13041. initialise a RC5-64 cipher.
  13042. @param forEncryption whether or not we are for encryption.
  13043. @param parameters the parameters required to set up the cipher.
  13044. @exception ArgumentException if the parameters argument is
  13045. inappropriate.
  13046. </member>
  13047. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.SetKey(System.Byte[])">
  13048. Re-key the cipher.
  13049. @param key the key to be used
  13050. </member>
  13051. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13052. Encrypt the given block starting at the given offset and place
  13053. the result in the provided buffer starting at the given offset.
  13054. @param in in byte buffer containing data to encrypt
  13055. @param inOff offset into src buffer
  13056. @param out out buffer where encrypted data is written
  13057. @param outOff offset into out buffer
  13058. </member>
  13059. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.RotateLeft(System.Int64,System.Int64)">
  13060. Perform a left "spin" of the word. The rotation of the given
  13061. word <em>x</em> is rotated left by <em>y</em> bits.
  13062. Only the <em>lg(wordSize)</em> low-order bits of <em>y</em>
  13063. are used to determine the rotation amount. Here it is
  13064. assumed that the wordsize used is a power of 2.
  13065. @param x word to rotate
  13066. @param y number of bits to rotate % wordSize
  13067. </member>
  13068. <member name="M:Org.BouncyCastle.Crypto.Engines.RC564Engine.RotateRight(System.Int64,System.Int64)">
  13069. Perform a right "spin" of the word. The rotation of the given
  13070. word <em>x</em> is rotated left by <em>y</em> bits.
  13071. Only the <em>lg(wordSize)</em> low-order bits of <em>y</em>
  13072. are used to determine the rotation amount. Here it is
  13073. assumed that the wordsize used is a power of 2.
  13074. @param x word to rotate
  13075. @param y number of bits to rotate % wordSize
  13076. </member>
  13077. <member name="T:Org.BouncyCastle.Crypto.Engines.RC6Engine">
  13078. An RC6 engine.
  13079. </member>
  13080. <member name="M:Org.BouncyCastle.Crypto.Engines.RC6Engine.#ctor">
  13081. Create an instance of the RC6 encryption algorithm
  13082. and set some defaults
  13083. </member>
  13084. <member name="M:Org.BouncyCastle.Crypto.Engines.RC6Engine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13085. initialise a RC5-32 cipher.
  13086. @param forEncryption whether or not we are for encryption.
  13087. @param parameters the parameters required to set up the cipher.
  13088. @exception ArgumentException if the parameters argument is
  13089. inappropriate.
  13090. </member>
  13091. <member name="M:Org.BouncyCastle.Crypto.Engines.RC6Engine.SetKey(System.Byte[])">
  13092. Re-key the cipher.
  13093. @param inKey the key to be used
  13094. </member>
  13095. <member name="M:Org.BouncyCastle.Crypto.Engines.RC6Engine.RotateLeft(System.Int32,System.Int32)">
  13096. Perform a left "spin" of the word. The rotation of the given
  13097. word <em>x</em> is rotated left by <em>y</em> bits.
  13098. Only the <em>lg(wordSize)</em> low-order bits of <em>y</em>
  13099. are used to determine the rotation amount. Here it is
  13100. assumed that the wordsize used is a power of 2.
  13101. @param x word to rotate
  13102. @param y number of bits to rotate % wordSize
  13103. </member>
  13104. <member name="M:Org.BouncyCastle.Crypto.Engines.RC6Engine.RotateRight(System.Int32,System.Int32)">
  13105. Perform a right "spin" of the word. The rotation of the given
  13106. word <em>x</em> is rotated left by <em>y</em> bits.
  13107. Only the <em>lg(wordSize)</em> low-order bits of <em>y</em>
  13108. are used to determine the rotation amount. Here it is
  13109. assumed that the wordsize used is a power of 2.
  13110. @param x word to rotate
  13111. @param y number of bits to rotate % wordSize
  13112. </member>
  13113. <member name="T:Org.BouncyCastle.Crypto.Engines.Rfc3211WrapEngine">
  13114. an implementation of the RFC 3211 Key Wrap
  13115. Specification.
  13116. </member>
  13117. <member name="T:Org.BouncyCastle.Crypto.Engines.Rfc3394WrapEngine">
  13118. <remarks>
  13119. An implementation of the AES Key Wrapper from the NIST Key Wrap
  13120. Specification as described in RFC 3394.
  13121. <p/>
  13122. For further details see: <a href="http://www.ietf.org/rfc/rfc3394.txt">http://www.ietf.org/rfc/rfc3394.txt</a>
  13123. and <a href="http://csrc.nist.gov/encryption/kms/key-wrap.pdf">http://csrc.nist.gov/encryption/kms/key-wrap.pdf</a>.
  13124. </remarks>
  13125. </member>
  13126. <member name="T:Org.BouncyCastle.Crypto.Engines.RijndaelEngine">
  13127. an implementation of Rijndael, based on the documentation and reference implementation
  13128. by Paulo Barreto, Vincent Rijmen, for v2.0 August '99.
  13129. <p>
  13130. Note: this implementation is based on information prior to readonly NIST publication.
  13131. </p>
  13132. </member>
  13133. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.Mul0x2(System.Int32)">
  13134. multiply two elements of GF(2^m)
  13135. needed for MixColumn and InvMixColumn
  13136. </member>
  13137. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.KeyAddition(System.Int64[])">
  13138. xor corresponding text input and round key input bytes
  13139. </member>
  13140. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.ShiftRow(System.Byte[])">
  13141. Row 0 remains unchanged
  13142. The other three rows are shifted a variable amount
  13143. </member>
  13144. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.Substitution(System.Byte[])">
  13145. Replace every byte of the input by the byte at that place
  13146. in the nonlinear S-box
  13147. </member>
  13148. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.MixColumn">
  13149. Mix the bytes of every column in a linear way
  13150. </member>
  13151. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.InvMixColumn">
  13152. Mix the bytes of every column in a linear way
  13153. This is the opposite operation of Mixcolumn
  13154. </member>
  13155. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.GenerateWorkingKey(System.Byte[])">
  13156. Calculate the necessary round keys
  13157. The number of calculations depends on keyBits and blockBits
  13158. </member>
  13159. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.#ctor">
  13160. default constructor - 128 bit block size.
  13161. </member>
  13162. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.#ctor(System.Int32)">
  13163. basic constructor - set the cipher up for a given blocksize
  13164. @param blocksize the blocksize in bits, must be 128, 192, or 256.
  13165. </member>
  13166. <member name="M:Org.BouncyCastle.Crypto.Engines.RijndaelEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13167. initialise a Rijndael cipher.
  13168. @param forEncryption whether or not we are for encryption.
  13169. @param parameters the parameters required to set up the cipher.
  13170. @exception ArgumentException if the parameters argument is
  13171. inappropriate.
  13172. </member>
  13173. <member name="T:Org.BouncyCastle.Crypto.Engines.RsaBlindedEngine">
  13174. this does your basic RSA algorithm with blinding
  13175. </member>
  13176. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindedEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13177. initialise the RSA engine.
  13178. @param forEncryption true if we are encrypting, false otherwise.
  13179. @param param the necessary RSA key parameters.
  13180. </member>
  13181. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindedEngine.GetInputBlockSize">
  13182. Return the maximum size for an input block to this engine.
  13183. For RSA this is always one byte less than the key size on
  13184. encryption, and the same length as the key size on decryption.
  13185. @return maximum size for an input block.
  13186. </member>
  13187. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindedEngine.GetOutputBlockSize">
  13188. Return the maximum size for an output block to this engine.
  13189. For RSA this is always one byte less than the key size on
  13190. decryption, and the same length as the key size on encryption.
  13191. @return maximum size for an output block.
  13192. </member>
  13193. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindedEngine.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  13194. Process a single block using the basic RSA algorithm.
  13195. @param inBuf the input array.
  13196. @param inOff the offset into the input buffer where the data starts.
  13197. @param inLen the length of the data to be processed.
  13198. @return the result of the RSA process.
  13199. @exception DataLengthException the input block is too large.
  13200. </member>
  13201. <member name="T:Org.BouncyCastle.Crypto.Engines.RsaBlindingEngine">
  13202. This does your basic RSA Chaum's blinding and unblinding as outlined in
  13203. "Handbook of Applied Cryptography", page 475. You need to use this if you are
  13204. trying to get another party to generate signatures without them being aware
  13205. of the message they are signing.
  13206. </member>
  13207. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindingEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13208. Initialise the blinding engine.
  13209. @param forEncryption true if we are encrypting (blinding), false otherwise.
  13210. @param param the necessary RSA key parameters.
  13211. </member>
  13212. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindingEngine.GetInputBlockSize">
  13213. Return the maximum size for an input block to this engine.
  13214. For RSA this is always one byte less than the key size on
  13215. encryption, and the same length as the key size on decryption.
  13216. @return maximum size for an input block.
  13217. </member>
  13218. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindingEngine.GetOutputBlockSize">
  13219. Return the maximum size for an output block to this engine.
  13220. For RSA this is always one byte less than the key size on
  13221. decryption, and the same length as the key size on encryption.
  13222. @return maximum size for an output block.
  13223. </member>
  13224. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaBlindingEngine.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  13225. Process a single block using the RSA blinding algorithm.
  13226. @param in the input array.
  13227. @param inOff the offset into the input buffer where the data starts.
  13228. @param inLen the length of the data to be processed.
  13229. @return the result of the RSA process.
  13230. @throws DataLengthException the input block is too large.
  13231. </member>
  13232. <member name="T:Org.BouncyCastle.Crypto.Engines.RsaCoreEngine">
  13233. this does your basic RSA algorithm.
  13234. </member>
  13235. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaCoreEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13236. initialise the RSA engine.
  13237. @param forEncryption true if we are encrypting, false otherwise.
  13238. @param param the necessary RSA key parameters.
  13239. </member>
  13240. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaCoreEngine.GetInputBlockSize">
  13241. Return the maximum size for an input block to this engine.
  13242. For RSA this is always one byte less than the key size on
  13243. encryption, and the same length as the key size on decryption.
  13244. @return maximum size for an input block.
  13245. </member>
  13246. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaCoreEngine.GetOutputBlockSize">
  13247. Return the maximum size for an output block to this engine.
  13248. For RSA this is always one byte less than the key size on
  13249. decryption, and the same length as the key size on encryption.
  13250. @return maximum size for an output block.
  13251. </member>
  13252. <member name="T:Org.BouncyCastle.Crypto.Engines.RsaEngine">
  13253. this does your basic RSA algorithm.
  13254. </member>
  13255. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13256. initialise the RSA engine.
  13257. @param forEncryption true if we are encrypting, false otherwise.
  13258. @param param the necessary RSA key parameters.
  13259. </member>
  13260. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaEngine.GetInputBlockSize">
  13261. Return the maximum size for an input block to this engine.
  13262. For RSA this is always one byte less than the key size on
  13263. encryption, and the same length as the key size on decryption.
  13264. @return maximum size for an input block.
  13265. </member>
  13266. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaEngine.GetOutputBlockSize">
  13267. Return the maximum size for an output block to this engine.
  13268. For RSA this is always one byte less than the key size on
  13269. decryption, and the same length as the key size on encryption.
  13270. @return maximum size for an output block.
  13271. </member>
  13272. <member name="M:Org.BouncyCastle.Crypto.Engines.RsaEngine.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  13273. Process a single block using the basic RSA algorithm.
  13274. @param inBuf the input array.
  13275. @param inOff the offset into the input buffer where the data starts.
  13276. @param inLen the length of the data to be processed.
  13277. @return the result of the RSA process.
  13278. @exception DataLengthException the input block is too large.
  13279. </member>
  13280. <member name="T:Org.BouncyCastle.Crypto.Engines.Salsa20Engine">
  13281. <summary>
  13282. Implementation of Daniel J. Bernstein's Salsa20 stream cipher, Snuffle 2005
  13283. </summary>
  13284. </member>
  13285. <member name="F:Org.BouncyCastle.Crypto.Engines.Salsa20Engine.StateSize">
  13286. Constants
  13287. </member>
  13288. <member name="M:Org.BouncyCastle.Crypto.Engines.Salsa20Engine.#ctor">
  13289. <summary>
  13290. Creates a 20 round Salsa20 engine.
  13291. </summary>
  13292. </member>
  13293. <member name="M:Org.BouncyCastle.Crypto.Engines.Salsa20Engine.#ctor(System.Int32)">
  13294. <summary>
  13295. Creates a Salsa20 engine with a specific number of rounds.
  13296. </summary>
  13297. <param name="rounds">the number of rounds (must be an even number).</param>
  13298. </member>
  13299. <member name="M:Org.BouncyCastle.Crypto.Engines.Salsa20Engine.R(System.UInt32,System.Int32)">
  13300. Rotate left
  13301. @param x value to rotate
  13302. @param y amount to rotate x
  13303. @return rotated x
  13304. </member>
  13305. <member name="T:Org.BouncyCastle.Crypto.Engines.SeedEngine">
  13306. Implementation of the SEED algorithm as described in RFC 4009
  13307. </member>
  13308. <member name="T:Org.BouncyCastle.Crypto.Engines.SeedWrapEngine">
  13309. <remarks>
  13310. An implementation of the SEED key wrapper based on RFC 4010/RFC 3394.
  13311. <p/>
  13312. For further details see: <a href="http://www.ietf.org/rfc/rfc4010.txt">http://www.ietf.org/rfc/rfc4010.txt</a>.
  13313. </remarks>
  13314. </member>
  13315. <member name="T:Org.BouncyCastle.Crypto.Engines.SerpentEngine">
  13316. * Serpent is a 128-bit 32-round block cipher with variable key lengths,
  13317. * including 128, 192 and 256 bit keys conjectured to be at least as
  13318. * secure as three-key triple-DES.
  13319. * <p>
  13320. * Serpent was designed by Ross Anderson, Eli Biham and Lars Knudsen as a
  13321. * candidate algorithm for the NIST AES Quest.
  13322. * </p>
  13323. * <p>
  13324. * For full details see <a href="http://www.cl.cam.ac.uk/~rja14/serpent.html">The Serpent home page</a>
  13325. * </p>
  13326. </member>
  13327. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngine.MakeWorkingKey(System.Byte[])">
  13328. Expand a user-supplied key material into a session key.
  13329. @param key The user-key bytes (multiples of 4) to use.
  13330. @exception ArgumentException
  13331. </member>
  13332. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13333. Encrypt one block of plaintext.
  13334. @param input the array containing the input data.
  13335. @param inOff offset into the in array the data starts at.
  13336. @param output the array the output data will be copied into.
  13337. @param outOff the offset into the out array the output will start at.
  13338. </member>
  13339. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13340. Decrypt one block of ciphertext.
  13341. @param input the array containing the input data.
  13342. @param inOff offset into the in array the data starts at.
  13343. @param output the array the output data will be copied into.
  13344. @param outOff the offset into the out array the output will start at.
  13345. </member>
  13346. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13347. initialise a Serpent cipher.
  13348. @param encrypting whether or not we are for encryption.
  13349. @param params the parameters required to set up the cipher.
  13350. @throws IllegalArgumentException if the params argument is
  13351. inappropriate.
  13352. </member>
  13353. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13354. Process one block of input from the array in and write it to
  13355. the out array.
  13356. @param in the array containing the input data.
  13357. @param inOff offset into the in array the data starts at.
  13358. @param out the array the output data will be copied into.
  13359. @param outOff the offset into the out array the output will start at.
  13360. @return the number of bytes processed and produced.
  13361. @throws DataLengthException if there isn't enough data in in, or
  13362. space in out.
  13363. @throws IllegalStateException if the cipher isn't initialised.
  13364. </member>
  13365. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib0(System.Int32,System.Int32,System.Int32,System.Int32)">
  13366. InvSO - {13, 3,11, 0,10, 6, 5,12, 1,14, 4, 7,15, 9, 8, 2 } - 15 terms.
  13367. </member>
  13368. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb1(System.Int32,System.Int32,System.Int32,System.Int32)">
  13369. S1 - {15,12, 2, 7, 9, 0, 5,10, 1,11,14, 8, 6,13, 3, 4 } - 14 terms.
  13370. </member>
  13371. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib1(System.Int32,System.Int32,System.Int32,System.Int32)">
  13372. InvS1 - { 5, 8, 2,14,15, 6,12, 3,11, 4, 7, 9, 1,13,10, 0 } - 14 steps.
  13373. </member>
  13374. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb2(System.Int32,System.Int32,System.Int32,System.Int32)">
  13375. S2 - { 8, 6, 7, 9, 3,12,10,15,13, 1,14, 4, 0,11, 5, 2 } - 16 terms.
  13376. </member>
  13377. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib2(System.Int32,System.Int32,System.Int32,System.Int32)">
  13378. InvS2 - {12, 9,15, 4,11,14, 1, 2, 0, 3, 6,13, 5, 8,10, 7 } - 16 steps.
  13379. </member>
  13380. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb3(System.Int32,System.Int32,System.Int32,System.Int32)">
  13381. S3 - { 0,15,11, 8,12, 9, 6, 3,13, 1, 2, 4,10, 7, 5,14 } - 16 terms.
  13382. </member>
  13383. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib3(System.Int32,System.Int32,System.Int32,System.Int32)">
  13384. InvS3 - { 0, 9,10, 7,11,14, 6,13, 3, 5,12, 2, 4, 8,15, 1 } - 15 terms
  13385. </member>
  13386. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb4(System.Int32,System.Int32,System.Int32,System.Int32)">
  13387. S4 - { 1,15, 8, 3,12, 0,11, 6, 2, 5, 4,10, 9,14, 7,13 } - 15 terms.
  13388. </member>
  13389. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib4(System.Int32,System.Int32,System.Int32,System.Int32)">
  13390. InvS4 - { 5, 0, 8, 3,10, 9, 7,14, 2,12,11, 6, 4,15,13, 1 } - 15 terms.
  13391. </member>
  13392. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb5(System.Int32,System.Int32,System.Int32,System.Int32)">
  13393. S5 - {15, 5, 2,11, 4,10, 9,12, 0, 3,14, 8,13, 6, 7, 1 } - 16 terms.
  13394. </member>
  13395. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib5(System.Int32,System.Int32,System.Int32,System.Int32)">
  13396. InvS5 - { 8,15, 2, 9, 4, 1,13,14,11, 6, 5, 3, 7,12,10, 0 } - 16 terms.
  13397. </member>
  13398. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb6(System.Int32,System.Int32,System.Int32,System.Int32)">
  13399. S6 - { 7, 2,12, 5, 8, 4, 6,11,14, 9, 1,15,13, 3,10, 0 } - 15 terms.
  13400. </member>
  13401. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib6(System.Int32,System.Int32,System.Int32,System.Int32)">
  13402. InvS6 - {15,10, 1,13, 5, 3, 6, 0, 4, 9,14, 7, 2,12, 8,11 } - 15 terms.
  13403. </member>
  13404. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Sb7(System.Int32,System.Int32,System.Int32,System.Int32)">
  13405. S7 - { 1,13,15, 0,14, 8, 2,11, 7, 4,12,10, 9, 3, 5, 6 } - 16 terms.
  13406. </member>
  13407. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.Ib7(System.Int32,System.Int32,System.Int32,System.Int32)">
  13408. InvS7 - { 3, 0, 6,13, 9,14,15, 8, 5,12,11, 7,10, 1, 4, 2 } - 17 terms.
  13409. </member>
  13410. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.LT">
  13411. Apply the linear transformation to the register set.
  13412. </member>
  13413. <member name="M:Org.BouncyCastle.Crypto.Engines.SerpentEngineBase.InverseLT">
  13414. Apply the inverse of the linear transformation to the register set.
  13415. </member>
  13416. <member name="T:Org.BouncyCastle.Crypto.Engines.SkipjackEngine">
  13417. a class that provides a basic SKIPJACK engine.
  13418. </member>
  13419. <member name="M:Org.BouncyCastle.Crypto.Engines.SkipjackEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13420. initialise a SKIPJACK cipher.
  13421. @param forEncryption whether or not we are for encryption.
  13422. @param parameters the parameters required to set up the cipher.
  13423. @exception ArgumentException if the parameters argument is
  13424. inappropriate.
  13425. </member>
  13426. <member name="M:Org.BouncyCastle.Crypto.Engines.SkipjackEngine.G(System.Int32,System.Int32)">
  13427. The G permutation
  13428. </member>
  13429. <member name="M:Org.BouncyCastle.Crypto.Engines.SkipjackEngine.H(System.Int32,System.Int32)">
  13430. the inverse of the G permutation.
  13431. </member>
  13432. <member name="T:Org.BouncyCastle.Crypto.Engines.SM2Engine">
  13433. <summary>
  13434. SM2 public key encryption engine - based on https://tools.ietf.org/html/draft-shen-sm2-ecdsa-02.
  13435. </summary>
  13436. </member>
  13437. <member name="T:Org.BouncyCastle.Crypto.Engines.SM4Engine">
  13438. <summary>SM4 Block Cipher - SM4 is a 128 bit block cipher with a 128 bit key.</summary>
  13439. <remarks>
  13440. The implementation here is based on the document <a href="http://eprint.iacr.org/2008/329.pdf">http://eprint.iacr.org/2008/329.pdf</a>
  13441. by Whitfield Diffie and George Ledin, which is a translation of Prof. LU Shu-wang's original standard.
  13442. </remarks>
  13443. </member>
  13444. <member name="T:Org.BouncyCastle.Crypto.Engines.TeaEngine">
  13445. An TEA engine.
  13446. </member>
  13447. <member name="M:Org.BouncyCastle.Crypto.Engines.TeaEngine.#ctor">
  13448. Create an instance of the TEA encryption algorithm
  13449. and set some defaults
  13450. </member>
  13451. <member name="M:Org.BouncyCastle.Crypto.Engines.TeaEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13452. initialise
  13453. @param forEncryption whether or not we are for encryption.
  13454. @param params the parameters required to set up the cipher.
  13455. @exception ArgumentException if the params argument is
  13456. inappropriate.
  13457. </member>
  13458. <member name="M:Org.BouncyCastle.Crypto.Engines.TeaEngine.setKey(System.Byte[])">
  13459. Re-key the cipher.
  13460. @param key the key to be used
  13461. </member>
  13462. <member name="T:Org.BouncyCastle.Crypto.Engines.ThreefishEngine">
  13463. <summary>
  13464. Implementation of the Threefish tweakable large block cipher in 256, 512 and 1024 bit block
  13465. sizes.
  13466. </summary>
  13467. <remarks>
  13468. This is the 1.3 version of Threefish defined in the Skein hash function submission to the NIST
  13469. SHA-3 competition in October 2010.
  13470. <p/>
  13471. Threefish was designed by Niels Ferguson - Stefan Lucks - Bruce Schneier - Doug Whiting - Mihir
  13472. Bellare - Tadayoshi Kohno - Jon Callas - Jesse Walker.
  13473. <p/>
  13474. This implementation inlines all round functions, unrolls 8 rounds, and uses 1.2k of static tables
  13475. to speed up key schedule injection. <br/>
  13476. 2 x block size state is retained by each cipher instance.
  13477. </remarks>
  13478. </member>
  13479. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_256">
  13480. <summary>
  13481. 256 bit block size - Threefish-256
  13482. </summary>
  13483. </member>
  13484. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_512">
  13485. <summary>
  13486. 512 bit block size - Threefish-512
  13487. </summary>
  13488. </member>
  13489. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_1024">
  13490. <summary>
  13491. 1024 bit block size - Threefish-1024
  13492. </summary>
  13493. </member>
  13494. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.TWEAK_SIZE_BYTES">
  13495. Size of the tweak in bytes (always 128 bit/16 bytes)
  13496. </member>
  13497. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ROUNDS_256">
  13498. Rounds in Threefish-256
  13499. </member>
  13500. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ROUNDS_512">
  13501. Rounds in Threefish-512
  13502. </member>
  13503. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ROUNDS_1024">
  13504. Rounds in Threefish-1024
  13505. </member>
  13506. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.MAX_ROUNDS">
  13507. Max rounds of any of the variants
  13508. </member>
  13509. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.C_240">
  13510. Key schedule parity constant
  13511. </member>
  13512. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.blocksizeBytes">
  13513. Block size in bytes
  13514. </member>
  13515. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.blocksizeWords">
  13516. Block size in 64 bit words
  13517. </member>
  13518. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.currentBlock">
  13519. Buffer for byte oriented processBytes to call internal word API
  13520. </member>
  13521. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.t">
  13522. Tweak bytes (2 byte t1,t2, calculated t3 and repeat of t1,t2 for modulo free lookup
  13523. </member>
  13524. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.kw">
  13525. Key schedule words
  13526. </member>
  13527. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.cipher">
  13528. The internal cipher implementation (varies by blocksize)
  13529. </member>
  13530. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.#ctor(System.Int32)">
  13531. <summary>
  13532. Constructs a new Threefish cipher, with a specified block size.
  13533. </summary>
  13534. <param name="blocksizeBits">the block size in bits, one of <see cref="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_256"/>, <see cref="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_512"/>,
  13535. <see cref="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BLOCKSIZE_1024"/> .</param>
  13536. </member>
  13537. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13538. <summary>
  13539. Initialise the engine.
  13540. </summary>
  13541. <param name="forEncryption">Initialise for encryption if true, for decryption if false.</param>
  13542. <param name="parameters">an instance of <see cref="T:Org.BouncyCastle.Crypto.Parameters.TweakableBlockCipherParameters"/> or <see cref="T:Org.BouncyCastle.Crypto.Parameters.KeyParameter"/> (to
  13543. use a 0 tweak)</param>
  13544. </member>
  13545. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Init(System.Boolean,System.UInt64[],System.UInt64[])">
  13546. <summary>
  13547. Initialise the engine, specifying the key and tweak directly.
  13548. </summary>
  13549. <param name="forEncryption">the cipher mode.</param>
  13550. <param name="key">the words of the key, or <code>null</code> to use the current key.</param>
  13551. <param name="tweak">the 2 word (128 bit) tweak, or <code>null</code> to use the current tweak.</param>
  13552. </member>
  13553. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ProcessBlock(System.UInt64[],System.UInt64[])">
  13554. <summary>
  13555. Process a block of data represented as 64 bit words.
  13556. </summary>
  13557. <returns>the number of 8 byte words processed (which will be the same as the block size).</returns>
  13558. <param name="inWords">a block sized buffer of words to process.</param>
  13559. <param name="outWords">a block sized buffer of words to receive the output of the operation.</param>
  13560. <exception cref="T:Org.BouncyCastle.Crypto.DataLengthException">if either the input or output is not block sized</exception>
  13561. <exception cref="T:System.InvalidOperationException">if this engine is not initialised</exception>
  13562. </member>
  13563. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.BytesToWord(System.Byte[],System.Int32)">
  13564. <summary>
  13565. Read a single 64 bit word from input in LSB first order.
  13566. </summary>
  13567. </member>
  13568. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.WordToBytes(System.UInt64,System.Byte[],System.Int32)">
  13569. <summary>
  13570. Write a 64 bit word to output in LSB first order.
  13571. </summary>
  13572. </member>
  13573. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.RotlXor(System.UInt64,System.Int32,System.UInt64)">
  13574. Rotate left + xor part of the mix operation.
  13575. </member>
  13576. <member name="M:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.XorRotr(System.UInt64,System.Int32,System.UInt64)">
  13577. Rotate xor + rotate right part of the unmix operation.
  13578. </member>
  13579. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ThreefishCipher.t">
  13580. The extended + repeated tweak words
  13581. </member>
  13582. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.ThreefishCipher.kw">
  13583. The extended + repeated key words
  13584. </member>
  13585. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish256Cipher.ROTATION_0_0">
  13586. Mix rotation constants defined in Skein 1.3 specification
  13587. </member>
  13588. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish256Cipher.ROTATION_0_1">
  13589. Mix rotation constants defined in Skein 1.3 specification
  13590. </member>
  13591. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish512Cipher.ROTATION_0_0">
  13592. Mix rotation constants defined in Skein 1.3 specification
  13593. </member>
  13594. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish512Cipher.ROTATION_0_1">
  13595. Mix rotation constants defined in Skein 1.3 specification
  13596. </member>
  13597. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish512Cipher.ROTATION_0_2">
  13598. Mix rotation constants defined in Skein 1.3 specification
  13599. </member>
  13600. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish512Cipher.ROTATION_0_3">
  13601. Mix rotation constants defined in Skein 1.3 specification
  13602. </member>
  13603. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish1024Cipher.ROTATION_0_0">
  13604. Mix rotation constants defined in Skein 1.3 specification
  13605. </member>
  13606. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish1024Cipher.ROTATION_0_1">
  13607. Mix rotation constants defined in Skein 1.3 specification
  13608. </member>
  13609. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish1024Cipher.ROTATION_0_2">
  13610. Mix rotation constants defined in Skein 1.3 specification
  13611. </member>
  13612. <member name="F:Org.BouncyCastle.Crypto.Engines.ThreefishEngine.Threefish1024Cipher.ROTATION_0_3">
  13613. Mix rotation constants defined in Skein 1.3 specification
  13614. </member>
  13615. <member name="T:Org.BouncyCastle.Crypto.Engines.TnepresEngine">
  13616. Tnepres is a 128-bit 32-round block cipher with variable key lengths,
  13617. including 128, 192 and 256 bit keys conjectured to be at least as
  13618. secure as three-key triple-DES.
  13619. <p>
  13620. Tnepres is based on Serpent which was designed by Ross Anderson, Eli Biham and Lars Knudsen as a
  13621. candidate algorithm for the NIST AES Quest. Unfortunately there was an endianness issue
  13622. with test vectors in the AES submission and the resulting confusion lead to the Tnepres cipher
  13623. as well, which is a byte swapped version of Serpent.
  13624. </p>
  13625. <p>
  13626. For full details see <a href="http://www.cl.cam.ac.uk/~rja14/serpent.html">The Serpent home page</a>
  13627. </p>
  13628. </member>
  13629. <member name="M:Org.BouncyCastle.Crypto.Engines.TnepresEngine.MakeWorkingKey(System.Byte[])">
  13630. Expand a user-supplied key material into a session key.
  13631. @param key The user-key bytes (multiples of 4) to use.
  13632. @exception ArgumentException
  13633. </member>
  13634. <member name="M:Org.BouncyCastle.Crypto.Engines.TnepresEngine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13635. Encrypt one block of plaintext.
  13636. @param input the array containing the input data.
  13637. @param inOff offset into the in array the data starts at.
  13638. @param output the array the output data will be copied into.
  13639. @param outOff the offset into the out array the output will start at.
  13640. </member>
  13641. <member name="M:Org.BouncyCastle.Crypto.Engines.TnepresEngine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13642. Decrypt one block of ciphertext.
  13643. @param input the array containing the input data.
  13644. @param inOff offset into the in array the data starts at.
  13645. @param output the array the output data will be copied into.
  13646. @param outOff the offset into the out array the output will start at.
  13647. </member>
  13648. <member name="T:Org.BouncyCastle.Crypto.Engines.TwofishEngine">
  13649. A class that provides Twofish encryption operations.
  13650. This Java implementation is based on the Java reference
  13651. implementation provided by Bruce Schneier and developed
  13652. by Raif S. Naffah.
  13653. </member>
  13654. <member name="F:Org.BouncyCastle.Crypto.Engines.TwofishEngine.P_00">
  13655. Define the fixed p0/p1 permutations used in keyed S-box lookup.
  13656. By changing the following constant definitions, the S-boxes will
  13657. automatically Get changed in the Twofish engine.
  13658. </member>
  13659. <member name="F:Org.BouncyCastle.Crypto.Engines.TwofishEngine.gSubKeys">
  13660. gSubKeys[] and gSBox[] are eventually used in the
  13661. encryption and decryption methods.
  13662. </member>
  13663. <member name="M:Org.BouncyCastle.Crypto.Engines.TwofishEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13664. initialise a Twofish cipher.
  13665. @param forEncryption whether or not we are for encryption.
  13666. @param parameters the parameters required to set up the cipher.
  13667. @exception ArgumentException if the parameters argument is
  13668. inappropriate.
  13669. </member>
  13670. <member name="M:Org.BouncyCastle.Crypto.Engines.TwofishEngine.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13671. Encrypt the given input starting at the given offset and place
  13672. the result in the provided buffer starting at the given offset.
  13673. The input will be an exact multiple of our blocksize.
  13674. encryptBlock uses the pre-calculated gSBox[] and subKey[]
  13675. arrays.
  13676. </member>
  13677. <member name="M:Org.BouncyCastle.Crypto.Engines.TwofishEngine.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  13678. Decrypt the given input starting at the given offset and place
  13679. the result in the provided buffer starting at the given offset.
  13680. The input will be an exact multiple of our blocksize.
  13681. </member>
  13682. <member name="M:Org.BouncyCastle.Crypto.Engines.TwofishEngine.RS_MDS_Encode(System.Int32,System.Int32)">
  13683. Use (12, 8) Reed-Solomon code over GF(256) to produce
  13684. a key S-box 32-bit entity from 2 key material 32-bit
  13685. entities.
  13686. @param k0 first 32-bit entity
  13687. @param k1 second 32-bit entity
  13688. @return Remainder polynomial Generated using RS code
  13689. </member>
  13690. <member name="M:Org.BouncyCastle.Crypto.Engines.TwofishEngine.RS_rem(System.Int32)">
  13691. * Reed-Solomon code parameters: (12,8) reversible code:
  13692. * <p>
  13693. * <pre>
  13694. * G(x) = x^4 + (a+1/a)x^3 + ax^2 + (a+1/a)x + 1
  13695. * </pre>
  13696. * where a = primitive root of field generator 0x14D
  13697. * </p>
  13698. </member>
  13699. <member name="M:Org.BouncyCastle.Crypto.Engines.VmpcEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13700. initialise a VMPC cipher.
  13701. @param forEncryption
  13702. whether or not we are for encryption.
  13703. @param params
  13704. the parameters required to set up the cipher.
  13705. @exception ArgumentException
  13706. if the params argument is inappropriate.
  13707. </member>
  13708. <member name="T:Org.BouncyCastle.Crypto.Engines.XSalsa20Engine">
  13709. <summary>
  13710. Implementation of Daniel J. Bernstein's XSalsa20 stream cipher - Salsa20 with an extended nonce.
  13711. </summary>
  13712. <remarks>
  13713. XSalsa20 requires a 256 bit key, and a 192 bit nonce.
  13714. </remarks>
  13715. </member>
  13716. <member name="M:Org.BouncyCastle.Crypto.Engines.XSalsa20Engine.SetKey(System.Byte[],System.Byte[])">
  13717. <summary>
  13718. XSalsa20 key generation: process 256 bit input key and 128 bits of the input nonce
  13719. using a core Salsa20 function without input addition to produce 256 bit working key
  13720. and use that with the remaining 64 bits of nonce to initialize a standard Salsa20 engine state.
  13721. </summary>
  13722. </member>
  13723. <member name="T:Org.BouncyCastle.Crypto.Engines.XteaEngine">
  13724. An XTEA engine.
  13725. </member>
  13726. <member name="M:Org.BouncyCastle.Crypto.Engines.XteaEngine.#ctor">
  13727. Create an instance of the TEA encryption algorithm
  13728. and set some defaults
  13729. </member>
  13730. <member name="M:Org.BouncyCastle.Crypto.Engines.XteaEngine.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  13731. initialise
  13732. @param forEncryption whether or not we are for encryption.
  13733. @param params the parameters required to set up the cipher.
  13734. @exception ArgumentException if the params argument is
  13735. inappropriate.
  13736. </member>
  13737. <member name="M:Org.BouncyCastle.Crypto.Engines.XteaEngine.setKey(System.Byte[])">
  13738. Re-key the cipher.
  13739. @param key the key to be used
  13740. </member>
  13741. <member name="T:Org.BouncyCastle.Crypto.Generators.BaseKdfBytesGenerator">
  13742. Basic KDF generator for derived keys and ivs as defined by IEEE P1363a/ISO 18033
  13743. <br/>
  13744. This implementation is based on ISO 18033/P1363a.
  13745. </member>
  13746. <member name="M:Org.BouncyCastle.Crypto.Generators.BaseKdfBytesGenerator.#ctor(System.Int32,Org.BouncyCastle.Crypto.IDigest)">
  13747. Construct a KDF Parameters generator.
  13748. @param counterStart value of counter.
  13749. @param digest the digest to be used as the source of derived keys.
  13750. </member>
  13751. <member name="P:Org.BouncyCastle.Crypto.Generators.BaseKdfBytesGenerator.Digest">
  13752. return the underlying digest.
  13753. </member>
  13754. <member name="M:Org.BouncyCastle.Crypto.Generators.BaseKdfBytesGenerator.GenerateBytes(System.Byte[],System.Int32,System.Int32)">
  13755. fill len bytes of the output buffer with bytes generated from
  13756. the derivation function.
  13757. @throws ArgumentException if the size of the request will cause an overflow.
  13758. @throws DataLengthException if the out buffer is too small.
  13759. </member>
  13760. <member name="T:Org.BouncyCastle.Crypto.Generators.BCrypt">
  13761. Core of password hashing scheme Bcrypt,
  13762. designed by Niels Provos and David Mazières,
  13763. corresponds to the C reference implementation.
  13764. <p>
  13765. This implementation does not correspondent to the 1999 published paper
  13766. "A Future-Adaptable Password Scheme" of Niels Provos and David Mazières,
  13767. see: https://www.usenix.org/legacy/events/usenix99/provos/provos_html/node1.html.
  13768. In contrast to the paper, the order of key setup and salt setup is reversed:
  13769. state &lt;- ExpandKey(state, 0, key)
  13770. state %lt;- ExpandKey(state, 0, salt)
  13771. This corresponds to the OpenBSD reference implementation of Bcrypt.
  13772. </p><p>
  13773. Note:
  13774. There is no successful cryptanalysis (status 2015), but
  13775. the amount of memory and the band width of Bcrypt
  13776. may be insufficient to effectively prevent attacks
  13777. with custom hardware like FPGAs, ASICs
  13778. </p><p>
  13779. This implementation uses some parts of Bouncy Castle's BlowfishEngine.
  13780. </p>
  13781. </member>
  13782. <member name="M:Org.BouncyCastle.Crypto.Generators.BCrypt.DeriveRawKey(System.Int32,System.Byte[],System.Byte[])">
  13783. Derives a raw 192 bit Bcrypt key
  13784. @param cost the cost factor, treated as an exponent of 2
  13785. @param salt a 16 byte salt
  13786. @param psw the password
  13787. @return a 192 bit key
  13788. </member>
  13789. <member name="F:Org.BouncyCastle.Crypto.Generators.BCrypt.SALT_SIZE_BYTES">
  13790. Size of the salt parameter in bytes
  13791. </member>
  13792. <member name="F:Org.BouncyCastle.Crypto.Generators.BCrypt.MIN_COST">
  13793. Minimum value of cost parameter, equal to log2(bytes of salt)
  13794. </member>
  13795. <member name="F:Org.BouncyCastle.Crypto.Generators.BCrypt.MAX_COST">
  13796. Maximum value of cost parameter (31 == 2,147,483,648)
  13797. </member>
  13798. <member name="F:Org.BouncyCastle.Crypto.Generators.BCrypt.MAX_PASSWORD_BYTES">
  13799. Maximum size of password == max (unrestricted) size of Blowfish key
  13800. </member>
  13801. <member name="M:Org.BouncyCastle.Crypto.Generators.BCrypt.PasswordToByteArray(System.Char[])">
  13802. Converts a character password to bytes incorporating the required trailing zero byte.
  13803. @param password the password to be encoded.
  13804. @return a byte representation of the password in UTF8 + trailing zero.
  13805. </member>
  13806. <member name="M:Org.BouncyCastle.Crypto.Generators.BCrypt.Generate(System.Byte[],System.Byte[],System.Int32)">
  13807. Calculates the <b>bcrypt</b> hash of a password.
  13808. <p>
  13809. This implements the raw <b>bcrypt</b> function as defined in the bcrypt specification, not
  13810. the crypt encoded version implemented in OpenBSD.
  13811. </p>
  13812. @param password the password bytes (up to 72 bytes) to use for this invocation.
  13813. @param salt the 128 bit salt to use for this invocation.
  13814. @param cost the bcrypt cost parameter. The cost of the bcrypt function grows as
  13815. <code>2^cost</code>. Legal values are 4..31 inclusive.
  13816. @return the output of the raw bcrypt operation: a 192 bit (24 byte) hash.
  13817. </member>
  13818. <member name="M:Org.BouncyCastle.Crypto.Generators.DesEdeKeyGenerator.engineInit(Org.BouncyCastle.Crypto.KeyGenerationParameters)">
  13819. initialise the key generator - if strength is set to zero
  13820. the key Generated will be 192 bits in size, otherwise
  13821. strength can be 128 or 192 (or 112 or 168 if you don't count
  13822. parity bits), depending on whether you wish to do 2-key or 3-key
  13823. triple DES.
  13824. @param param the parameters to be used for key generation
  13825. </member>
  13826. <member name="M:Org.BouncyCastle.Crypto.Generators.DesKeyGenerator.engineInit(Org.BouncyCastle.Crypto.KeyGenerationParameters)">
  13827. initialise the key generator - if strength is set to zero
  13828. the key generated will be 64 bits in size, otherwise
  13829. strength can be 64 or 56 bits (if you don't count the parity bits).
  13830. @param param the parameters to be used for key generation
  13831. </member>
  13832. <member name="T:Org.BouncyCastle.Crypto.Generators.DHBasicKeyPairGenerator">
  13833. a basic Diffie-Hellman key pair generator.
  13834. This generates keys consistent for use with the basic algorithm for
  13835. Diffie-Hellman.
  13836. </member>
  13837. <member name="T:Org.BouncyCastle.Crypto.Generators.DHKeyPairGenerator">
  13838. a Diffie-Hellman key pair generator.
  13839. This generates keys consistent for use in the MTI/A0 key agreement protocol
  13840. as described in "Handbook of Applied Cryptography", Pages 516-519.
  13841. </member>
  13842. <member name="M:Org.BouncyCastle.Crypto.Generators.DHParametersGenerator.GenerateParameters">
  13843. which Generates the p and g values from the given parameters,
  13844. returning the DHParameters object.
  13845. <p>
  13846. Note: can take a while...</p>
  13847. </member>
  13848. <member name="T:Org.BouncyCastle.Crypto.Generators.DsaKeyPairGenerator">
  13849. a DSA key pair generator.
  13850. This Generates DSA keys in line with the method described
  13851. in <i>FIPS 186-3 B.1 FFC Key Pair Generation</i>.
  13852. </member>
  13853. <member name="T:Org.BouncyCastle.Crypto.Generators.DsaParametersGenerator">
  13854. Generate suitable parameters for DSA, in line with FIPS 186-2, or FIPS 186-3.
  13855. </member>
  13856. <member name="M:Org.BouncyCastle.Crypto.Generators.DsaParametersGenerator.Init(System.Int32,System.Int32,Org.BouncyCastle.Security.SecureRandom)">
  13857. <summary>Initialise the generator</summary>
  13858. <remarks>This form can only be used for older DSA (pre-DSA2) parameters</remarks>
  13859. <param name="size">the size of keys in bits (from 512 up to 1024, and a multiple of 64)</param>
  13860. <param name="certainty">measure of robustness of primes (at least 80 for FIPS 186-2 compliance)</param>
  13861. <param name="random">the source of randomness to use</param>
  13862. </member>
  13863. <member name="M:Org.BouncyCastle.Crypto.Generators.DsaParametersGenerator.Init(Org.BouncyCastle.Crypto.Parameters.DsaParameterGenerationParameters)">
  13864. <summary>Initialise the generator for DSA 2</summary>
  13865. <remarks>You must use this Init method if you need to generate parameters for DSA 2 keys</remarks>
  13866. <param name="parameters">An instance of <c>DsaParameterGenerationParameters</c> used to configure this generator</param>
  13867. </member>
  13868. <member name="M:Org.BouncyCastle.Crypto.Generators.DsaParametersGenerator.GenerateParameters">
  13869. <summary>Generates a set of <c>DsaParameters</c></summary>
  13870. <remarks>Can take a while...</remarks>
  13871. </member>
  13872. <member name="M:Org.BouncyCastle.Crypto.Generators.DsaParametersGenerator.GenerateParameters_FIPS186_3">
  13873. generate suitable parameters for DSA, in line with
  13874. <i>FIPS 186-3 A.1 Generation of the FFC Primes p and q</i>.
  13875. </member>
  13876. <member name="M:Org.BouncyCastle.Crypto.Generators.ECKeyPairGenerator.GenerateKeyPair">
  13877. Given the domain parameters this routine generates an EC key
  13878. pair in accordance with X9.62 section 5.2.1 pages 26, 27.
  13879. </member>
  13880. <member name="T:Org.BouncyCastle.Crypto.Generators.ElGamalKeyPairGenerator">
  13881. a ElGamal key pair generator.
  13882. <p>
  13883. This Generates keys consistent for use with ElGamal as described in
  13884. page 164 of "Handbook of Applied Cryptography".</p>
  13885. </member>
  13886. <member name="M:Org.BouncyCastle.Crypto.Generators.ElGamalParametersGenerator.GenerateParameters">
  13887. * which Generates the p and g values from the given parameters,
  13888. * returning the ElGamalParameters object.
  13889. * <p>
  13890. * Note: can take a while...
  13891. * </p>
  13892. </member>
  13893. <member name="T:Org.BouncyCastle.Crypto.Generators.Gost3410KeyPairGenerator">
  13894. a GOST3410 key pair generator.
  13895. This generates GOST3410 keys in line with the method described
  13896. in GOST R 34.10-94.
  13897. </member>
  13898. <member name="T:Org.BouncyCastle.Crypto.Generators.Gost3410ParametersGenerator">
  13899. generate suitable parameters for GOST3410.
  13900. </member>
  13901. <member name="M:Org.BouncyCastle.Crypto.Generators.Gost3410ParametersGenerator.Init(System.Int32,System.Int32,Org.BouncyCastle.Security.SecureRandom)">
  13902. initialise the key generator.
  13903. @param size size of the key
  13904. @param typeProcedure type procedure A,B = 1; A',B' - else
  13905. @param random random byte source.
  13906. </member>
  13907. <member name="M:Org.BouncyCastle.Crypto.Generators.Gost3410ParametersGenerator.procedure_C(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  13908. Procedure C
  13909. procedure generates the a value from the given p,q,
  13910. returning the a value.
  13911. </member>
  13912. <member name="M:Org.BouncyCastle.Crypto.Generators.Gost3410ParametersGenerator.GenerateParameters">
  13913. which generates the p , q and a values from the given parameters,
  13914. returning the Gost3410Parameters object.
  13915. </member>
  13916. <member name="T:Org.BouncyCastle.Crypto.Generators.HkdfBytesGenerator">
  13917. HMAC-based Extract-and-Expand Key Derivation Function (HKDF) implemented
  13918. according to IETF RFC 5869, May 2010 as specified by H. Krawczyk, IBM
  13919. Research &amp; P. Eronen, Nokia. It uses a HMac internally to compute de OKM
  13920. (output keying material) and is likely to have better security properties
  13921. than KDF's based on just a hash function.
  13922. </member>
  13923. <member name="M:Org.BouncyCastle.Crypto.Generators.HkdfBytesGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  13924. Creates a HKDFBytesGenerator based on the given hash function.
  13925. @param hash the digest to be used as the source of generatedBytes bytes
  13926. </member>
  13927. <member name="M:Org.BouncyCastle.Crypto.Generators.HkdfBytesGenerator.Extract(System.Byte[],System.Byte[])">
  13928. Performs the extract part of the key derivation function.
  13929. @param salt the salt to use
  13930. @param ikm the input keying material
  13931. @return the PRK as KeyParameter
  13932. </member>
  13933. <member name="M:Org.BouncyCastle.Crypto.Generators.HkdfBytesGenerator.ExpandNext">
  13934. Performs the expand part of the key derivation function, using currentT
  13935. as input and output buffer.
  13936. @throws DataLengthException if the total number of bytes generated is larger than the one
  13937. specified by RFC 5869 (255 * HashLen)
  13938. </member>
  13939. <member name="T:Org.BouncyCastle.Crypto.Generators.Kdf1BytesGenerator">
  13940. KFD2 generator for derived keys and ivs as defined by IEEE P1363a/ISO 18033
  13941. <br/>
  13942. This implementation is based on IEEE P1363/ISO 18033.
  13943. </member>
  13944. <member name="M:Org.BouncyCastle.Crypto.Generators.Kdf1BytesGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  13945. Construct a KDF1 byte generator.
  13946. @param digest the digest to be used as the source of derived keys.
  13947. </member>
  13948. <member name="T:Org.BouncyCastle.Crypto.Generators.Kdf2BytesGenerator">
  13949. KDF2 generator for derived keys and ivs as defined by IEEE P1363a/ISO 18033
  13950. <br/>
  13951. This implementation is based on IEEE P1363/ISO 18033.
  13952. </member>
  13953. <member name="M:Org.BouncyCastle.Crypto.Generators.Kdf2BytesGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  13954. Construct a KDF2 bytes generator. Generates key material
  13955. according to IEEE P1363 or ISO 18033 depending on the initialisation.
  13956. @param digest the digest to be used as the source of derived keys.
  13957. </member>
  13958. <member name="T:Org.BouncyCastle.Crypto.Generators.Mgf1BytesGenerator">
  13959. Generator for MGF1 as defined in Pkcs 1v2
  13960. </member>
  13961. <member name="M:Org.BouncyCastle.Crypto.Generators.Mgf1BytesGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  13962. @param digest the digest to be used as the source of Generated bytes
  13963. </member>
  13964. <member name="P:Org.BouncyCastle.Crypto.Generators.Mgf1BytesGenerator.Digest">
  13965. return the underlying digest.
  13966. </member>
  13967. <member name="M:Org.BouncyCastle.Crypto.Generators.Mgf1BytesGenerator.ItoOSP(System.Int32,System.Byte[])">
  13968. int to octet string.
  13969. </member>
  13970. <member name="M:Org.BouncyCastle.Crypto.Generators.Mgf1BytesGenerator.GenerateBytes(System.Byte[],System.Int32,System.Int32)">
  13971. fill len bytes of the output buffer with bytes Generated from
  13972. the derivation function.
  13973. @throws DataLengthException if the out buffer is too small.
  13974. </member>
  13975. <member name="T:Org.BouncyCastle.Crypto.Generators.NaccacheSternKeyPairGenerator">
  13976. Key generation parameters for NaccacheStern cipher. For details on this cipher, please see
  13977. http://www.gemplus.com/smart/rd/publications/pdf/NS98pkcs.pdf
  13978. </member>
  13979. <member name="M:Org.BouncyCastle.Crypto.Generators.NaccacheSternKeyPairGenerator.permuteList(System.Collections.IList,Org.BouncyCastle.Security.SecureRandom)">
  13980. Generates a permuted ArrayList from the original one. The original List
  13981. is not modified
  13982. @param arr
  13983. the ArrayList to be permuted
  13984. @param rand
  13985. the source of Randomness for permutation
  13986. @return a new IList with the permuted elements.
  13987. </member>
  13988. <member name="M:Org.BouncyCastle.Crypto.Generators.NaccacheSternKeyPairGenerator.findFirstPrimes(System.Int32)">
  13989. Finds the first 'count' primes starting with 3
  13990. @param count
  13991. the number of primes to find
  13992. @return a vector containing the found primes as Integer
  13993. </member>
  13994. <member name="T:Org.BouncyCastle.Crypto.Generators.OpenBsdBCrypt">
  13995. Password hashing scheme BCrypt,
  13996. designed by Niels Provos and David Mazières, using the
  13997. String format and the Base64 encoding
  13998. of the reference implementation on OpenBSD
  13999. </member>
  14000. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenBsdBCrypt.CreateBcryptString(System.String,System.Byte[],System.Byte[],System.Int32)">
  14001. Creates a 60 character Bcrypt String, including
  14002. version, cost factor, salt and hash, separated by '$'
  14003. @param version the version, 2y,2b or 2a. (2a is not backwards compatible.)
  14004. @param cost the cost factor, treated as an exponent of 2
  14005. @param salt a 16 byte salt
  14006. @param password the password
  14007. @return a 60 character Bcrypt String
  14008. </member>
  14009. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenBsdBCrypt.Generate(System.Char[],System.Byte[],System.Int32)">
  14010. Creates a 60 character Bcrypt String, including
  14011. version, cost factor, salt and hash, separated by '$' using version
  14012. '2y'.
  14013. @param cost the cost factor, treated as an exponent of 2
  14014. @param salt a 16 byte salt
  14015. @param password the password
  14016. @return a 60 character Bcrypt String
  14017. </member>
  14018. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenBsdBCrypt.Generate(System.String,System.Char[],System.Byte[],System.Int32)">
  14019. Creates a 60 character Bcrypt String, including
  14020. version, cost factor, salt and hash, separated by '$'
  14021. @param version the version, may be 2b, 2y or 2a. (2a is not backwards compatible.)
  14022. @param cost the cost factor, treated as an exponent of 2
  14023. @param salt a 16 byte salt
  14024. @param password the password
  14025. @return a 60 character Bcrypt String
  14026. </member>
  14027. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenBsdBCrypt.CheckPassword(System.String,System.Char[])">
  14028. Checks if a password corresponds to a 60 character Bcrypt String
  14029. @param bcryptString a 60 character Bcrypt String, including
  14030. version, cost factor, salt and hash,
  14031. separated by '$'
  14032. @param password the password as an array of chars
  14033. @return true if the password corresponds to the
  14034. Bcrypt String, otherwise false
  14035. </member>
  14036. <member name="T:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator">
  14037. Generator for PBE derived keys and ivs as usd by OpenSSL.
  14038. <p>
  14039. The scheme is a simple extension of PKCS 5 V2.0 Scheme 1 using MD5 with an
  14040. iteration count of 1.
  14041. </p>
  14042. </member>
  14043. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.#ctor">
  14044. Construct a OpenSSL Parameters generator.
  14045. </member>
  14046. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.Init(System.Byte[],System.Byte[])">
  14047. Initialise - note the iteration count for this algorithm is fixed at 1.
  14048. @param password password to use.
  14049. @param salt salt to use.
  14050. </member>
  14051. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.GenerateDerivedKey(System.Int32)">
  14052. the derived key function, the ith hash of the password and the salt.
  14053. </member>
  14054. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.GenerateDerivedParameters(System.Int32)">
  14055. Generate a key parameter derived from the password, salt, and iteration
  14056. count we are currently initialised with.
  14057. @param keySize the size of the key we want (in bits)
  14058. @return a KeyParameter object.
  14059. @exception ArgumentException if the key length larger than the base hash size.
  14060. </member>
  14061. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.GenerateDerivedParameters(System.Int32,System.Int32)">
  14062. Generate a key with initialisation vector parameter derived from
  14063. the password, salt, and iteration count we are currently initialised
  14064. with.
  14065. @param keySize the size of the key we want (in bits)
  14066. @param ivSize the size of the iv we want (in bits)
  14067. @return a ParametersWithIV object.
  14068. @exception ArgumentException if keySize + ivSize is larger than the base hash size.
  14069. </member>
  14070. <member name="M:Org.BouncyCastle.Crypto.Generators.OpenSslPbeParametersGenerator.GenerateDerivedMacParameters(System.Int32)">
  14071. Generate a key parameter for use with a MAC derived from the password,
  14072. salt, and iteration count we are currently initialised with.
  14073. @param keySize the size of the key we want (in bits)
  14074. @return a KeyParameter object.
  14075. @exception ArgumentException if the key length larger than the base hash size.
  14076. </member>
  14077. <member name="T:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator">
  14078. Generator for Pbe derived keys and ivs as defined by Pkcs 12 V1.0.
  14079. <p>
  14080. The document this implementation is based on can be found at
  14081. <a href="http://www.rsasecurity.com/rsalabs/pkcs/pkcs-12/index.html">
  14082. RSA's Pkcs12 Page</a>
  14083. </p>
  14084. </member>
  14085. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  14086. Construct a Pkcs 12 Parameters generator.
  14087. @param digest the digest to be used as the source of derived keys.
  14088. @exception ArgumentException if an unknown digest is passed in.
  14089. </member>
  14090. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.Adjust(System.Byte[],System.Int32,System.Byte[])">
  14091. add a + b + 1, returning the result in a. The a value is treated
  14092. as a BigInteger of length (b.Length * 8) bits. The result is
  14093. modulo 2^b.Length in case of overflow.
  14094. </member>
  14095. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.GenerateDerivedKey(System.Int32,System.Int32)">
  14096. generation of a derived key ala Pkcs12 V1.0.
  14097. </member>
  14098. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.GenerateDerivedParameters(System.Int32)">
  14099. Generate a key parameter derived from the password, salt, and iteration
  14100. count we are currently initialised with.
  14101. @param keySize the size of the key we want (in bits)
  14102. @return a KeyParameter object.
  14103. </member>
  14104. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.GenerateDerivedParameters(System.Int32,System.Int32)">
  14105. Generate a key with initialisation vector parameter derived from
  14106. the password, salt, and iteration count we are currently initialised
  14107. with.
  14108. @param keySize the size of the key we want (in bits)
  14109. @param ivSize the size of the iv we want (in bits)
  14110. @return a ParametersWithIV object.
  14111. </member>
  14112. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs12ParametersGenerator.GenerateDerivedMacParameters(System.Int32)">
  14113. Generate a key parameter for use with a MAC derived from the password,
  14114. salt, and iteration count we are currently initialised with.
  14115. @param keySize the size of the key we want (in bits)
  14116. @return a KeyParameter object.
  14117. </member>
  14118. <member name="T:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator">
  14119. Generator for Pbe derived keys and ivs as defined by Pkcs 5 V2.0 Scheme 1.
  14120. Note this generator is limited to the size of the hash produced by the
  14121. digest used to drive it.
  14122. <p>
  14123. The document this implementation is based on can be found at
  14124. <a href="http://www.rsasecurity.com/rsalabs/pkcs/pkcs-5/index.html">
  14125. RSA's Pkcs5 Page</a>
  14126. </p>
  14127. </member>
  14128. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  14129. Construct a Pkcs 5 Scheme 1 Parameters generator.
  14130. @param digest the digest to be used as the source of derived keys.
  14131. </member>
  14132. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator.GenerateDerivedKey">
  14133. the derived key function, the ith hash of the mPassword and the mSalt.
  14134. </member>
  14135. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator.GenerateDerivedParameters(System.Int32)">
  14136. Generate a key parameter derived from the mPassword, mSalt, and iteration
  14137. count we are currently initialised with.
  14138. @param keySize the size of the key we want (in bits)
  14139. @return a KeyParameter object.
  14140. @exception ArgumentException if the key length larger than the base hash size.
  14141. </member>
  14142. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator.GenerateDerivedParameters(System.Int32,System.Int32)">
  14143. Generate a key with initialisation vector parameter derived from
  14144. the mPassword, mSalt, and iteration count we are currently initialised
  14145. with.
  14146. @param keySize the size of the key we want (in bits)
  14147. @param ivSize the size of the iv we want (in bits)
  14148. @return a ParametersWithIV object.
  14149. @exception ArgumentException if keySize + ivSize is larger than the base hash size.
  14150. </member>
  14151. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S1ParametersGenerator.GenerateDerivedMacParameters(System.Int32)">
  14152. Generate a key parameter for use with a MAC derived from the mPassword,
  14153. mSalt, and iteration count we are currently initialised with.
  14154. @param keySize the size of the key we want (in bits)
  14155. @return a KeyParameter object.
  14156. @exception ArgumentException if the key length larger than the base hash size.
  14157. </member>
  14158. <member name="T:Org.BouncyCastle.Crypto.Generators.Pkcs5S2ParametersGenerator">
  14159. Generator for Pbe derived keys and ivs as defined by Pkcs 5 V2.0 Scheme 2.
  14160. This generator uses a SHA-1 HMac as the calculation function.
  14161. <p>
  14162. The document this implementation is based on can be found at
  14163. <a href="http://www.rsasecurity.com/rsalabs/pkcs/pkcs-5/index.html">
  14164. RSA's Pkcs5 Page</a></p>
  14165. </member>
  14166. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S2ParametersGenerator.#ctor">
  14167. construct a Pkcs5 Scheme 2 Parameters generator.
  14168. </member>
  14169. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S2ParametersGenerator.GenerateDerivedParameters(System.Int32)">
  14170. Generate a key parameter derived from the password, salt, and iteration
  14171. count we are currently initialised with.
  14172. @param keySize the size of the key we want (in bits)
  14173. @return a KeyParameter object.
  14174. </member>
  14175. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S2ParametersGenerator.GenerateDerivedParameters(System.Int32,System.Int32)">
  14176. Generate a key with initialisation vector parameter derived from
  14177. the password, salt, and iteration count we are currently initialised
  14178. with.
  14179. @param keySize the size of the key we want (in bits)
  14180. @param ivSize the size of the iv we want (in bits)
  14181. @return a ParametersWithIV object.
  14182. </member>
  14183. <member name="M:Org.BouncyCastle.Crypto.Generators.Pkcs5S2ParametersGenerator.GenerateDerivedMacParameters(System.Int32)">
  14184. Generate a key parameter for use with a MAC derived from the password,
  14185. salt, and iteration count we are currently initialised with.
  14186. @param keySize the size of the key we want (in bits)
  14187. @return a KeyParameter object.
  14188. </member>
  14189. <member name="T:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator">
  14190. <summary>
  14191. Generates keys for the Poly1305 MAC.
  14192. </summary>
  14193. <remarks>
  14194. Poly1305 keys are 256 bit keys consisting of a 128 bit secret key used for the underlying block
  14195. cipher followed by a 128 bit {@code r} value used for the polynomial portion of the Mac. <br/>
  14196. The {@code r} value has a specific format with some bits required to be cleared, resulting in an
  14197. effective 106 bit key. <br/>
  14198. A separately generated 256 bit key can be modified to fit the Poly1305 key format by using the
  14199. {@link #clamp(byte[])} method to clear the required bits.
  14200. </remarks>
  14201. <seealso cref="T:Org.BouncyCastle.Crypto.Macs.Poly1305"/>
  14202. </member>
  14203. <member name="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.engineInit(Org.BouncyCastle.Crypto.KeyGenerationParameters)">
  14204. <summary>
  14205. Initialises the key generator.
  14206. </summary>
  14207. <remarks>
  14208. Poly1305 keys are always 256 bits, so the key length in the provided parameters is ignored.
  14209. </remarks>
  14210. </member>
  14211. <member name="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.engineGenerateKey">
  14212. <summary>
  14213. Generates a 256 bit key in the format required for Poly1305 - e.g.
  14214. <code>k[0] ... k[15], r[0] ... r[15]</code> with the required bits in <code>r</code> cleared
  14215. as per <see cref="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.Clamp(System.Byte[])"/>.
  14216. </summary>
  14217. </member>
  14218. <member name="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.Clamp(System.Byte[])">
  14219. <summary>
  14220. Modifies an existing 32 byte key value to comply with the requirements of the Poly1305 key by
  14221. clearing required bits in the <code>r</code> (second 16 bytes) portion of the key.<br/>
  14222. Specifically:
  14223. <ul>
  14224. <li>r[3], r[7], r[11], r[15] have top four bits clear (i.e., are {0, 1, . . . , 15})</li>
  14225. <li>r[4], r[8], r[12] have bottom two bits clear (i.e., are in {0, 4, 8, . . . , 252})</li>
  14226. </ul>
  14227. </summary>
  14228. <param name="key">a 32 byte key value <code>k[0] ... k[15], r[0] ... r[15]</code></param>
  14229. </member>
  14230. <member name="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.CheckKey(System.Byte[])">
  14231. <summary>
  14232. Checks a 32 byte key for compliance with the Poly1305 key requirements, e.g.
  14233. <code>k[0] ... k[15], r[0] ... r[15]</code> with the required bits in <code>r</code> cleared
  14234. as per <see cref="M:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator.Clamp(System.Byte[])"/>.
  14235. </summary>
  14236. <param name="key">Key.</param>
  14237. <exception cref="T:System.ArgumentException">if the key is of the wrong length, or has invalid bits set
  14238. in the <code>r</code> portion of the key.</exception>
  14239. </member>
  14240. <member name="T:Org.BouncyCastle.Crypto.Generators.RsaBlindingFactorGenerator">
  14241. Generate a random factor suitable for use with RSA blind signatures
  14242. as outlined in Chaum's blinding and unblinding as outlined in
  14243. "Handbook of Applied Cryptography", page 475.
  14244. </member>
  14245. <member name="M:Org.BouncyCastle.Crypto.Generators.RsaBlindingFactorGenerator.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  14246. Initialise the factor generator
  14247. @param param the necessary RSA key parameters.
  14248. </member>
  14249. <member name="M:Org.BouncyCastle.Crypto.Generators.RsaBlindingFactorGenerator.GenerateBlindingFactor">
  14250. Generate a suitable blind factor for the public key the generator was initialised with.
  14251. @return a random blind factor
  14252. </member>
  14253. <member name="T:Org.BouncyCastle.Crypto.Generators.RsaKeyPairGenerator">
  14254. an RSA key pair generator.
  14255. </member>
  14256. <member name="M:Org.BouncyCastle.Crypto.Generators.RsaKeyPairGenerator.ChooseRandomPrime(System.Int32,Org.BouncyCastle.Math.BigInteger)">
  14257. <summary>Choose a random prime value for use with RSA</summary>
  14258. <param name="bitlength">the bit-length of the returned prime</param>
  14259. <param name="e">the RSA public exponent</param>
  14260. <returns>a prime p, with (p-1) relatively prime to e</returns>
  14261. </member>
  14262. <member name="T:Org.BouncyCastle.Crypto.Generators.SCrypt">
  14263. <summary>Implementation of the scrypt a password-based key derivation function.</summary>
  14264. <remarks>
  14265. Scrypt was created by Colin Percival and is specified in
  14266. <a href="http://tools.ietf.org/html/draft-josefsson-scrypt-kdf-01">draft-josefsson-scrypt-kd</a>.
  14267. </remarks>
  14268. </member>
  14269. <member name="M:Org.BouncyCastle.Crypto.Generators.SCrypt.Generate(System.Byte[],System.Byte[],System.Int32,System.Int32,System.Int32,System.Int32)">
  14270. <summary>Generate a key using the scrypt key derivation function.</summary>
  14271. <param name="P">the bytes of the pass phrase.</param>
  14272. <param name="S">the salt to use for this invocation.</param>
  14273. <param name="N">CPU/Memory cost parameter. Must be larger than 1, a power of 2 and less than
  14274. <code>2^(128 * r / 8)</code>.</param>
  14275. <param name="r">the block size, must be >= 1.</param>
  14276. <param name="p">Parallelization parameter. Must be a positive integer less than or equal to
  14277. <code>Int32.MaxValue / (128 * r * 8)</code>.</param>
  14278. <param name="dkLen">the length of the key to generate.</param>
  14279. <returns>the generated key.</returns>
  14280. </member>
  14281. <member name="T:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher">
  14282. <remarks>Base interface for a public/private key block cipher.</remarks>
  14283. </member>
  14284. <member name="P:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher.AlgorithmName">
  14285. <summary>The name of the algorithm this cipher implements.</summary>
  14286. </member>
  14287. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14288. <summary>Initialise the cipher.</summary>
  14289. <param name="forEncryption">Initialise for encryption if true, for decryption if false.</param>
  14290. <param name="parameters">The key or other data required by the cipher.</param>
  14291. </member>
  14292. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher.GetInputBlockSize">
  14293. <returns>The maximum size, in bytes, an input block may be.</returns>
  14294. </member>
  14295. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher.GetOutputBlockSize">
  14296. <returns>The maximum size, in bytes, an output block will be.</returns>
  14297. </member>
  14298. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Int32)">
  14299. <summary>Process a block.</summary>
  14300. <param name="inBuf">The input buffer.</param>
  14301. <param name="inOff">The offset into <paramref>inBuf</paramref> that the input block begins.</param>
  14302. <param name="inLen">The length of the input block.</param>
  14303. <exception cref="T:Org.BouncyCastle.Crypto.InvalidCipherTextException">Input decrypts improperly.</exception>
  14304. <exception cref="T:Org.BouncyCastle.Crypto.DataLengthException">Input is too large for the cipher.</exception>
  14305. </member>
  14306. <member name="T:Org.BouncyCastle.Crypto.IAsymmetricCipherKeyPairGenerator">
  14307. interface that a public/private key pair generator should conform to.
  14308. </member>
  14309. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricCipherKeyPairGenerator.Init(Org.BouncyCastle.Crypto.KeyGenerationParameters)">
  14310. intialise the key pair generator.
  14311. @param the parameters the key pair is to be initialised with.
  14312. </member>
  14313. <member name="M:Org.BouncyCastle.Crypto.IAsymmetricCipherKeyPairGenerator.GenerateKeyPair">
  14314. return an AsymmetricCipherKeyPair containing the Generated keys.
  14315. @return an AsymmetricCipherKeyPair containing the Generated keys.
  14316. </member>
  14317. <member name="T:Org.BouncyCastle.Crypto.IBasicAgreement">
  14318. The basic interface that basic Diffie-Hellman implementations
  14319. conforms to.
  14320. </member>
  14321. <member name="M:Org.BouncyCastle.Crypto.IBasicAgreement.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  14322. initialise the agreement engine.
  14323. </member>
  14324. <member name="M:Org.BouncyCastle.Crypto.IBasicAgreement.GetFieldSize">
  14325. return the field size for the agreement algorithm in bytes.
  14326. </member>
  14327. <member name="M:Org.BouncyCastle.Crypto.IBasicAgreement.CalculateAgreement(Org.BouncyCastle.Crypto.ICipherParameters)">
  14328. given a public key from a given party calculate the next
  14329. message in the agreement sequence.
  14330. </member>
  14331. <member name="T:Org.BouncyCastle.Crypto.IBlockCipher">
  14332. <remarks>Base interface for a symmetric key block cipher.</remarks>
  14333. </member>
  14334. <member name="P:Org.BouncyCastle.Crypto.IBlockCipher.AlgorithmName">
  14335. <summary>The name of the algorithm this cipher implements.</summary>
  14336. </member>
  14337. <member name="M:Org.BouncyCastle.Crypto.IBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14338. <summary>Initialise the cipher.</summary>
  14339. <param name="forEncryption">Initialise for encryption if true, for decryption if false.</param>
  14340. <param name="parameters">The key or other data required by the cipher.</param>
  14341. </member>
  14342. <member name="M:Org.BouncyCastle.Crypto.IBlockCipher.GetBlockSize">
  14343. <returns>The block size for this cipher, in bytes.</returns>
  14344. </member>
  14345. <member name="P:Org.BouncyCastle.Crypto.IBlockCipher.IsPartialBlockOkay">
  14346. <summary>Indicates whether this cipher can handle partial blocks.</summary>
  14347. </member>
  14348. <member name="M:Org.BouncyCastle.Crypto.IBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  14349. <summary>Process a block.</summary>
  14350. <param name="inBuf">The input buffer.</param>
  14351. <param name="inOff">The offset into <paramref>inBuf</paramref> that the input block begins.</param>
  14352. <param name="outBuf">The output buffer.</param>
  14353. <param name="outOff">The offset into <paramref>outBuf</paramref> to write the output block.</param>
  14354. <exception cref="T:Org.BouncyCastle.Crypto.DataLengthException">If input block is wrong size, or outBuf too small.</exception>
  14355. <returns>The number of bytes processed and produced.</returns>
  14356. </member>
  14357. <member name="M:Org.BouncyCastle.Crypto.IBlockCipher.Reset">
  14358. <summary>
  14359. Reset the cipher to the same state as it was after the last init (if there was one).
  14360. </summary>
  14361. </member>
  14362. <member name="T:Org.BouncyCastle.Crypto.IBlockResult">
  14363. <summary>
  14364. Operators that reduce their input to a single block return an object
  14365. of this type.
  14366. </summary>
  14367. </member>
  14368. <member name="M:Org.BouncyCastle.Crypto.IBlockResult.Collect">
  14369. <summary>
  14370. Return the final result of the operation.
  14371. </summary>
  14372. <returns>A block of bytes, representing the result of an operation.</returns>
  14373. </member>
  14374. <member name="M:Org.BouncyCastle.Crypto.IBlockResult.Collect(System.Byte[],System.Int32)">
  14375. <summary>
  14376. Store the final result of the operation by copying it into the destination array.
  14377. </summary>
  14378. <returns>The number of bytes copied into destination.</returns>
  14379. <param name="destination">The byte array to copy the result into.</param>
  14380. <param name="offset">The offset into destination to start copying the result at.</param>
  14381. </member>
  14382. <member name="T:Org.BouncyCastle.Crypto.IBufferedCipher">
  14383. <remarks>Block cipher engines are expected to conform to this interface.</remarks>
  14384. </member>
  14385. <member name="P:Org.BouncyCastle.Crypto.IBufferedCipher.AlgorithmName">
  14386. <summary>The name of the algorithm this cipher implements.</summary>
  14387. </member>
  14388. <member name="M:Org.BouncyCastle.Crypto.IBufferedCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14389. <summary>Initialise the cipher.</summary>
  14390. <param name="forEncryption">If true the cipher is initialised for encryption,
  14391. if false for decryption.</param>
  14392. <param name="parameters">The key and other data required by the cipher.</param>
  14393. </member>
  14394. <member name="M:Org.BouncyCastle.Crypto.IBufferedCipher.Reset">
  14395. <summary>
  14396. Reset the cipher. After resetting the cipher is in the same state
  14397. as it was after the last init (if there was one).
  14398. </summary>
  14399. </member>
  14400. <member name="T:Org.BouncyCastle.Crypto.ICipher">
  14401. <summary>
  14402. Base interface for a ciphers that do not require data to be block aligned.
  14403. <para>
  14404. Note: In cases where the underlying algorithm is block based, these ciphers may add or remove padding as needed.
  14405. </para>
  14406. </summary>
  14407. </member>
  14408. <member name="M:Org.BouncyCastle.Crypto.ICipher.GetMaxOutputSize(System.Int32)">
  14409. <summary>
  14410. Return the size of the output buffer required for a Write() plus a
  14411. close() with the write() being passed inputLen bytes.
  14412. <para>
  14413. The returned size may be dependent on the initialisation of this cipher
  14414. and may not be accurate once subsequent input data is processed as the cipher may
  14415. add, add or remove padding, as it sees fit.
  14416. </para>
  14417. </summary>
  14418. <returns>The space required to accommodate a call to processBytes and doFinal with inputLen bytes of input.</returns>
  14419. <param name="inputLen">The length of the expected input.</param>
  14420. </member>
  14421. <member name="M:Org.BouncyCastle.Crypto.ICipher.GetUpdateOutputSize(System.Int32)">
  14422. <summary>
  14423. Return the size of the output buffer required for a write() with the write() being
  14424. passed inputLen bytes and just updating the cipher output.
  14425. </summary>
  14426. <returns>The space required to accommodate a call to processBytes with inputLen bytes of input.</returns>
  14427. <param name="inputLen">The length of the expected input.</param>
  14428. </member>
  14429. <member name="P:Org.BouncyCastle.Crypto.ICipher.Stream">
  14430. <summary>
  14431. Gets the stream for reading/writing data processed/to be processed.
  14432. </summary>
  14433. <value>The stream associated with this cipher.</value>
  14434. </member>
  14435. <member name="T:Org.BouncyCastle.Crypto.ICipherBuilder">
  14436. <summary>
  14437. Base interface for cipher builders.
  14438. </summary>
  14439. </member>
  14440. <member name="P:Org.BouncyCastle.Crypto.ICipherBuilder.AlgorithmDetails">
  14441. <summary>
  14442. Return the algorithm and parameter details associated with any cipher built.
  14443. </summary>
  14444. </member>
  14445. <member name="M:Org.BouncyCastle.Crypto.ICipherBuilder.GetMaxOutputSize(System.Int32)">
  14446. <summary>
  14447. Return the maximum output size that a given input will produce.
  14448. </summary>
  14449. <param name="inputLen">the length of the expected input.</param>
  14450. <returns>The maximum possible output size that can produced for the expected input length.</returns>
  14451. </member>
  14452. <member name="M:Org.BouncyCastle.Crypto.ICipherBuilder.BuildCipher(System.IO.Stream)">
  14453. <summary>
  14454. Build a cipher that operates on the passed in stream.
  14455. </summary>
  14456. <param name="stream">The stream to write/read any encrypted/decrypted data.</param>
  14457. <returns>A cipher based around the given stream.</returns>
  14458. </member>
  14459. <member name="T:Org.BouncyCastle.Crypto.ICipherBuilderWithKey">
  14460. <summary>
  14461. A cipher builder that can also return the key it was initialized with.
  14462. </summary>
  14463. </member>
  14464. <member name="P:Org.BouncyCastle.Crypto.ICipherBuilderWithKey.Key">
  14465. <summary>
  14466. Return the key we were initialized with.
  14467. </summary>
  14468. </member>
  14469. <member name="T:Org.BouncyCastle.Crypto.ICipherParameters">
  14470. all parameter classes implement this.
  14471. </member>
  14472. <member name="T:Org.BouncyCastle.Crypto.IDecryptorBuilderProvider">
  14473. <summary>
  14474. Interface describing a provider of cipher builders for creating decrypting ciphers.
  14475. </summary>
  14476. </member>
  14477. <member name="M:Org.BouncyCastle.Crypto.IDecryptorBuilderProvider.CreateDecryptorBuilder(System.Object)">
  14478. <summary>
  14479. Return a cipher builder for creating decrypting ciphers.
  14480. </summary>
  14481. <param name="algorithmDetails">The algorithm details/parameters to use to create the final cipher.</param>
  14482. <returns>A new cipher builder.</returns>
  14483. </member>
  14484. <member name="T:Org.BouncyCastle.Crypto.IDerivationFunction">
  14485. base interface for general purpose byte derivation functions.
  14486. </member>
  14487. <member name="P:Org.BouncyCastle.Crypto.IDerivationFunction.Digest">
  14488. return the message digest used as the basis for the function
  14489. </member>
  14490. <member name="T:Org.BouncyCastle.Crypto.IDerivationParameters">
  14491. Parameters for key/byte stream derivation classes
  14492. </member>
  14493. <member name="T:Org.BouncyCastle.Crypto.IDigest">
  14494. interface that a message digest conforms to.
  14495. </member>
  14496. <member name="P:Org.BouncyCastle.Crypto.IDigest.AlgorithmName">
  14497. return the algorithm name
  14498. @return the algorithm name
  14499. </member>
  14500. <member name="M:Org.BouncyCastle.Crypto.IDigest.GetDigestSize">
  14501. return the size, in bytes, of the digest produced by this message digest.
  14502. @return the size, in bytes, of the digest produced by this message digest.
  14503. </member>
  14504. <member name="M:Org.BouncyCastle.Crypto.IDigest.GetByteLength">
  14505. return the size, in bytes, of the internal buffer used by this digest.
  14506. @return the size, in bytes, of the internal buffer used by this digest.
  14507. </member>
  14508. <member name="M:Org.BouncyCastle.Crypto.IDigest.Update(System.Byte)">
  14509. update the message digest with a single byte.
  14510. @param inByte the input byte to be entered.
  14511. </member>
  14512. <member name="M:Org.BouncyCastle.Crypto.IDigest.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  14513. update the message digest with a block of bytes.
  14514. @param input the byte array containing the data.
  14515. @param inOff the offset into the byte array where the data starts.
  14516. @param len the length of the data.
  14517. </member>
  14518. <member name="M:Org.BouncyCastle.Crypto.IDigest.DoFinal(System.Byte[],System.Int32)">
  14519. Close the digest, producing the final digest value. The doFinal
  14520. call leaves the digest reset.
  14521. @param output the array the digest is to be copied into.
  14522. @param outOff the offset into the out array the digest is to start at.
  14523. </member>
  14524. <member name="M:Org.BouncyCastle.Crypto.IDigest.Reset">
  14525. reset the digest back to it's initial state.
  14526. </member>
  14527. <member name="T:Org.BouncyCastle.Crypto.IDsa">
  14528. interface for classes implementing the Digital Signature Algorithm
  14529. </member>
  14530. <member name="M:Org.BouncyCastle.Crypto.IDsa.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14531. initialise the signer for signature generation or signature
  14532. verification.
  14533. @param forSigning true if we are generating a signature, false
  14534. otherwise.
  14535. @param param key parameters for signature generation.
  14536. </member>
  14537. <member name="M:Org.BouncyCastle.Crypto.IDsa.GenerateSignature(System.Byte[])">
  14538. sign the passed in message (usually the output of a hash function).
  14539. @param message the message to be signed.
  14540. @return two big integers representing the r and s values respectively.
  14541. </member>
  14542. <member name="M:Org.BouncyCastle.Crypto.IDsa.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  14543. verify the message message against the signature values r and s.
  14544. @param message the message that was supposed to have been signed.
  14545. @param r the r signature value.
  14546. @param s the s signature value.
  14547. </member>
  14548. <member name="T:Org.BouncyCastle.Crypto.IDsaExt">
  14549. <summary>
  14550. An "extended" interface for classes implementing DSA-style algorithms, that provides access
  14551. to the group order.
  14552. </summary>
  14553. </member>
  14554. <member name="P:Org.BouncyCastle.Crypto.IDsaExt.Order">
  14555. <summary>The order of the group that the r, s values in signatures belong to.</summary>
  14556. </member>
  14557. <member name="T:Org.BouncyCastle.Crypto.IEntropySource">
  14558. <summary>
  14559. Base interface describing an entropy source for a DRBG.
  14560. </summary>
  14561. </member>
  14562. <member name="P:Org.BouncyCastle.Crypto.IEntropySource.IsPredictionResistant">
  14563. <summary>
  14564. Return whether or not this entropy source is regarded as prediction resistant.
  14565. </summary>
  14566. <value><c>true</c> if this instance is prediction resistant; otherwise, <c>false</c>.</value>
  14567. </member>
  14568. <member name="M:Org.BouncyCastle.Crypto.IEntropySource.GetEntropy">
  14569. <summary>
  14570. Return a byte array of entropy.
  14571. </summary>
  14572. <returns>The entropy bytes.</returns>
  14573. </member>
  14574. <member name="P:Org.BouncyCastle.Crypto.IEntropySource.EntropySize">
  14575. <summary>
  14576. Return the number of bits of entropy this source can produce.
  14577. </summary>
  14578. <value>The size, in bits, of the return value of getEntropy.</value>
  14579. </member>
  14580. <member name="T:Org.BouncyCastle.Crypto.IEntropySourceProvider">
  14581. <summary>
  14582. Base interface describing a provider of entropy sources.
  14583. </summary>
  14584. </member>
  14585. <member name="M:Org.BouncyCastle.Crypto.IEntropySourceProvider.Get(System.Int32)">
  14586. <summary>
  14587. Return an entropy source providing a block of entropy.
  14588. </summary>
  14589. <param name="bitsRequired">The size of the block of entropy required.</param>
  14590. <returns>An entropy source providing bitsRequired blocks of entropy.</returns>
  14591. </member>
  14592. <member name="T:Org.BouncyCastle.Crypto.IKeyUnwrapper">
  14593. <summary>
  14594. Base interface for a key unwrapper.
  14595. </summary>
  14596. </member>
  14597. <member name="P:Org.BouncyCastle.Crypto.IKeyUnwrapper.AlgorithmDetails">
  14598. <summary>
  14599. The parameter set used to configure this key unwrapper.
  14600. </summary>
  14601. </member>
  14602. <member name="M:Org.BouncyCastle.Crypto.IKeyUnwrapper.Unwrap(System.Byte[],System.Int32,System.Int32)">
  14603. <summary>
  14604. Unwrap the passed in data.
  14605. </summary>
  14606. <param name="cipherText">The array containing the data to be unwrapped.</param>
  14607. <param name="offset">The offset into cipherText at which the unwrapped data starts.</param>
  14608. <param name="length">The length of the data to be unwrapped.</param>
  14609. <returns>an IBlockResult containing the unwrapped key data.</returns>
  14610. </member>
  14611. <member name="T:Org.BouncyCastle.Crypto.IKeyWrapper">
  14612. <summary>
  14613. Base interface for a key wrapper.
  14614. </summary>
  14615. </member>
  14616. <member name="P:Org.BouncyCastle.Crypto.IKeyWrapper.AlgorithmDetails">
  14617. <summary>
  14618. The parameter set used to configure this key wrapper.
  14619. </summary>
  14620. </member>
  14621. <member name="M:Org.BouncyCastle.Crypto.IKeyWrapper.Wrap(System.Byte[])">
  14622. <summary>
  14623. Wrap the passed in key data.
  14624. </summary>
  14625. <param name="keyData">The key data to be wrapped.</param>
  14626. <returns>an IBlockResult containing the wrapped key data.</returns>
  14627. </member>
  14628. <member name="T:Org.BouncyCastle.Crypto.IMac">
  14629. The base interface for implementations of message authentication codes (MACs).
  14630. </member>
  14631. <member name="M:Org.BouncyCastle.Crypto.IMac.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  14632. Initialise the MAC.
  14633. @param param the key and other data required by the MAC.
  14634. @exception ArgumentException if the parameters argument is
  14635. inappropriate.
  14636. </member>
  14637. <member name="P:Org.BouncyCastle.Crypto.IMac.AlgorithmName">
  14638. Return the name of the algorithm the MAC implements.
  14639. @return the name of the algorithm the MAC implements.
  14640. </member>
  14641. <member name="M:Org.BouncyCastle.Crypto.IMac.GetMacSize">
  14642. Return the block size for this MAC (in bytes).
  14643. @return the block size for this MAC in bytes.
  14644. </member>
  14645. <member name="M:Org.BouncyCastle.Crypto.IMac.Update(System.Byte)">
  14646. add a single byte to the mac for processing.
  14647. @param in the byte to be processed.
  14648. @exception InvalidOperationException if the MAC is not initialised.
  14649. </member>
  14650. <member name="M:Org.BouncyCastle.Crypto.IMac.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  14651. @param in the array containing the input.
  14652. @param inOff the index in the array the data begins at.
  14653. @param len the length of the input starting at inOff.
  14654. @exception InvalidOperationException if the MAC is not initialised.
  14655. @exception DataLengthException if there isn't enough data in in.
  14656. </member>
  14657. <member name="M:Org.BouncyCastle.Crypto.IMac.DoFinal(System.Byte[],System.Int32)">
  14658. Compute the final stage of the MAC writing the output to the out
  14659. parameter.
  14660. <p>
  14661. doFinal leaves the MAC in the same state it was after the last init.
  14662. </p>
  14663. @param out the array the MAC is to be output to.
  14664. @param outOff the offset into the out buffer the output is to start at.
  14665. @exception DataLengthException if there isn't enough space in out.
  14666. @exception InvalidOperationException if the MAC is not initialised.
  14667. </member>
  14668. <member name="M:Org.BouncyCastle.Crypto.IMac.Reset">
  14669. Reset the MAC. At the end of resetting the MAC should be in the
  14670. in the same state it was after the last init (if there was one).
  14671. </member>
  14672. <member name="P:Org.BouncyCastle.Crypto.IMacFactory.AlgorithmDetails">
  14673. <summary>The algorithm details object for this calculator.</summary>
  14674. </member>
  14675. <member name="M:Org.BouncyCastle.Crypto.IMacFactory.CreateCalculator">
  14676. <summary>
  14677. Create a stream calculator for this signature calculator. The stream
  14678. calculator is used for the actual operation of entering the data to be signed
  14679. and producing the signature block.
  14680. </summary>
  14681. <returns>A calculator producing an IBlockResult with a signature in it.</returns>
  14682. </member>
  14683. <member name="T:Org.BouncyCastle.Crypto.InvalidCipherTextException">
  14684. this exception is thrown whenever we find something we don't expect in a
  14685. message.
  14686. </member>
  14687. <member name="M:Org.BouncyCastle.Crypto.InvalidCipherTextException.#ctor">
  14688. base constructor.
  14689. </member>
  14690. <member name="M:Org.BouncyCastle.Crypto.InvalidCipherTextException.#ctor(System.String)">
  14691. create a InvalidCipherTextException with the given message.
  14692. @param message the message to be carried with the exception.
  14693. </member>
  14694. <member name="T:Org.BouncyCastle.Crypto.ISignatureFactory">
  14695. <summary>
  14696. Base interface for operators that serve as stream-based signature calculators.
  14697. </summary>
  14698. </member>
  14699. <member name="P:Org.BouncyCastle.Crypto.ISignatureFactory.AlgorithmDetails">
  14700. <summary>The algorithm details object for this calculator.</summary>
  14701. </member>
  14702. <member name="M:Org.BouncyCastle.Crypto.ISignatureFactory.CreateCalculator">
  14703. <summary>
  14704. Create a stream calculator for this signature calculator. The stream
  14705. calculator is used for the actual operation of entering the data to be signed
  14706. and producing the signature block.
  14707. </summary>
  14708. <returns>A calculator producing an IBlockResult with a signature in it.</returns>
  14709. </member>
  14710. <member name="P:Org.BouncyCastle.Crypto.ISigner.AlgorithmName">
  14711. Return the name of the algorithm the signer implements.
  14712. @return the name of the algorithm the signer implements.
  14713. </member>
  14714. <member name="M:Org.BouncyCastle.Crypto.ISigner.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14715. Initialise the signer for signing or verification.
  14716. @param forSigning true if for signing, false otherwise
  14717. @param param necessary parameters.
  14718. </member>
  14719. <member name="M:Org.BouncyCastle.Crypto.ISigner.Update(System.Byte)">
  14720. update the internal digest with the byte b
  14721. </member>
  14722. <member name="M:Org.BouncyCastle.Crypto.ISigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  14723. update the internal digest with the byte array in
  14724. </member>
  14725. <member name="M:Org.BouncyCastle.Crypto.ISigner.GenerateSignature">
  14726. Generate a signature for the message we've been loaded with using
  14727. the key we were initialised with.
  14728. </member>
  14729. <member name="M:Org.BouncyCastle.Crypto.ISigner.VerifySignature(System.Byte[])">
  14730. return true if the internal state represents the signature described
  14731. in the passed in array.
  14732. </member>
  14733. <member name="M:Org.BouncyCastle.Crypto.ISigner.Reset">
  14734. reset the internal state
  14735. </member>
  14736. <member name="T:Org.BouncyCastle.Crypto.ISignerWithRecovery">
  14737. Signer with message recovery.
  14738. </member>
  14739. <member name="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.HasFullMessage">
  14740. Returns true if the signer has recovered the full message as
  14741. part of signature verification.
  14742. @return true if full message recovered.
  14743. </member>
  14744. <member name="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.GetRecoveredMessage">
  14745. Returns a reference to what message was recovered (if any).
  14746. @return full/partial message, null if nothing.
  14747. </member>
  14748. <member name="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.UpdateWithRecoveredMessage(System.Byte[])">
  14749. Perform an update with the recovered message before adding any other data. This must
  14750. be the first update method called, and calling it will result in the signer assuming
  14751. that further calls to update will include message content past what is recoverable.
  14752. @param signature the signature that we are in the process of verifying.
  14753. @throws IllegalStateException
  14754. </member>
  14755. <member name="T:Org.BouncyCastle.Crypto.IStreamCalculator">
  14756. <summary>
  14757. Base interface for cryptographic operations such as Hashes, MACs, and Signatures which reduce a stream of data
  14758. to a single value.
  14759. </summary>
  14760. </member>
  14761. <member name="P:Org.BouncyCastle.Crypto.IStreamCalculator.Stream">
  14762. <summary>Return a "sink" stream which only exists to update the implementing object.</summary>
  14763. <returns>A stream to write to in order to update the implementing object.</returns>
  14764. </member>
  14765. <member name="M:Org.BouncyCastle.Crypto.IStreamCalculator.GetResult">
  14766. <summary>
  14767. Return the result of processing the stream. This value is only available once the stream
  14768. has been closed.
  14769. </summary>
  14770. <returns>The result of processing the stream.</returns>
  14771. </member>
  14772. <member name="T:Org.BouncyCastle.Crypto.IStreamCipher">
  14773. <summary>The interface stream ciphers conform to.</summary>
  14774. </member>
  14775. <member name="P:Org.BouncyCastle.Crypto.IStreamCipher.AlgorithmName">
  14776. <summary>The name of the algorithm this cipher implements.</summary>
  14777. </member>
  14778. <member name="M:Org.BouncyCastle.Crypto.IStreamCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14779. <summary>Initialise the cipher.</summary>
  14780. <param name="forEncryption">If true the cipher is initialised for encryption,
  14781. if false for decryption.</param>
  14782. <param name="parameters">The key and other data required by the cipher.</param>
  14783. <exception cref="T:System.ArgumentException">
  14784. If the parameters argument is inappropriate.
  14785. </exception>
  14786. </member>
  14787. <member name="M:Org.BouncyCastle.Crypto.IStreamCipher.ReturnByte(System.Byte)">
  14788. <summary>encrypt/decrypt a single byte returning the result.</summary>
  14789. <param name="input">the byte to be processed.</param>
  14790. <returns>the result of processing the input byte.</returns>
  14791. </member>
  14792. <member name="M:Org.BouncyCastle.Crypto.IStreamCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  14793. <summary>
  14794. Process a block of bytes from <c>input</c> putting the result into <c>output</c>.
  14795. </summary>
  14796. <param name="input">The input byte array.</param>
  14797. <param name="inOff">
  14798. The offset into <c>input</c> where the data to be processed starts.
  14799. </param>
  14800. <param name="length">The number of bytes to be processed.</param>
  14801. <param name="output">The output buffer the processed bytes go into.</param>
  14802. <param name="outOff">
  14803. The offset into <c>output</c> the processed data starts at.
  14804. </param>
  14805. <exception cref="T:Org.BouncyCastle.Crypto.DataLengthException">If the output buffer is too small.</exception>
  14806. </member>
  14807. <member name="M:Org.BouncyCastle.Crypto.IStreamCipher.Reset">
  14808. <summary>
  14809. Reset the cipher to the same state as it was after the last init (if there was one).
  14810. </summary>
  14811. </member>
  14812. <member name="T:Org.BouncyCastle.Crypto.IVerifier">
  14813. <summary>
  14814. Operators that reduce their input to the validation of a signature produce this type.
  14815. </summary>
  14816. </member>
  14817. <member name="M:Org.BouncyCastle.Crypto.IVerifier.IsVerified(System.Byte[])">
  14818. <summary>
  14819. Return true if the passed in data matches what is expected by the verification result.
  14820. </summary>
  14821. <param name="data">The bytes representing the signature.</param>
  14822. <returns>true if the signature verifies, false otherwise.</returns>
  14823. </member>
  14824. <member name="M:Org.BouncyCastle.Crypto.IVerifier.IsVerified(System.Byte[],System.Int32,System.Int32)">
  14825. <summary>
  14826. Return true if the length bytes from off in the source array match the signature
  14827. expected by the verification result.
  14828. </summary>
  14829. <param name="source">Byte array containing the signature.</param>
  14830. <param name="off">The offset into the source array where the signature starts.</param>
  14831. <param name="length">The number of bytes in source making up the signature.</param>
  14832. <returns>true if the signature verifies, false otherwise.</returns>
  14833. </member>
  14834. <member name="T:Org.BouncyCastle.Crypto.IVerifierFactory">
  14835. <summary>
  14836. Base interface for operators that serve as stream-based signature verifiers.
  14837. </summary>
  14838. </member>
  14839. <member name="P:Org.BouncyCastle.Crypto.IVerifierFactory.AlgorithmDetails">
  14840. <summary>The algorithm details object for this verifier.</summary>
  14841. </member>
  14842. <member name="M:Org.BouncyCastle.Crypto.IVerifierFactory.CreateCalculator">
  14843. <summary>
  14844. Create a stream calculator for this verifier. The stream
  14845. calculator is used for the actual operation of entering the data to be verified
  14846. and producing a result which can be used to verify the original signature.
  14847. </summary>
  14848. <returns>A calculator producing an IVerifier which can verify the signature.</returns>
  14849. </member>
  14850. <member name="T:Org.BouncyCastle.Crypto.IVerifierFactoryProvider">
  14851. <summary>
  14852. Base interface for a provider to support the dynamic creation of signature verifiers.
  14853. </summary>
  14854. </member>
  14855. <member name="M:Org.BouncyCastle.Crypto.IVerifierFactoryProvider.CreateVerifierFactory(System.Object)">
  14856. <summary>
  14857. Return a signature verfier for signature algorithm described in the passed in algorithm details object.
  14858. </summary>
  14859. <param name="algorithmDetails">The details of the signature algorithm verification is required for.</param>
  14860. <returns>A new signature verifier.</returns>
  14861. </member>
  14862. <member name="P:Org.BouncyCastle.Crypto.IWrapper.AlgorithmName">
  14863. <summary>The name of the algorithm this cipher implements.</summary>
  14864. </member>
  14865. <member name="T:Org.BouncyCastle.Crypto.IXof">
  14866. <remarks>
  14867. With FIPS PUB 202 a new kind of message digest was announced which supported extendable output, or variable digest sizes.
  14868. This interface provides the extra method required to support variable output on a digest implementation.
  14869. </remarks>
  14870. </member>
  14871. <member name="M:Org.BouncyCastle.Crypto.IXof.DoFinal(System.Byte[],System.Int32,System.Int32)">
  14872. <summary>
  14873. Output the results of the final calculation for this digest to outLen number of bytes.
  14874. </summary>
  14875. <param name="output">output array to write the output bytes to.</param>
  14876. <param name="outOff">offset to start writing the bytes at.</param>
  14877. <param name="outLen">the number of output bytes requested.</param>
  14878. <returns>the number of bytes written</returns>
  14879. </member>
  14880. <member name="M:Org.BouncyCastle.Crypto.IXof.DoOutput(System.Byte[],System.Int32,System.Int32)">
  14881. <summary>
  14882. Start outputting the results of the final calculation for this digest. Unlike DoFinal, this method
  14883. will continue producing output until the Xof is explicitly reset, or signals otherwise.
  14884. </summary>
  14885. <param name="output">output array to write the output bytes to.</param>
  14886. <param name="outOff">offset to start writing the bytes at.</param>
  14887. <param name="outLen">the number of output bytes requested.</param>
  14888. <returns>the number of bytes written</returns>
  14889. </member>
  14890. <member name="T:Org.BouncyCastle.Crypto.KeyGenerationParameters">
  14891. The base class for parameters to key generators.
  14892. </member>
  14893. <member name="M:Org.BouncyCastle.Crypto.KeyGenerationParameters.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Int32)">
  14894. initialise the generator with a source of randomness
  14895. and a strength (in bits).
  14896. @param random the random byte source.
  14897. @param strength the size, in bits, of the keys we want to produce.
  14898. </member>
  14899. <member name="P:Org.BouncyCastle.Crypto.KeyGenerationParameters.Random">
  14900. return the random source associated with this
  14901. generator.
  14902. @return the generators random source.
  14903. </member>
  14904. <member name="P:Org.BouncyCastle.Crypto.KeyGenerationParameters.Strength">
  14905. return the bit strength for keys produced by this generator,
  14906. @return the strength of the keys this generator produces (in bits).
  14907. </member>
  14908. <member name="T:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac">
  14909. standard CBC Block Cipher MAC - if no padding is specified the default of
  14910. pad of zeroes is used.
  14911. </member>
  14912. <member name="M:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  14913. create a standard MAC based on a CBC block cipher. This will produce an
  14914. authentication code half the length of the block size of the cipher.
  14915. @param cipher the cipher to be used as the basis of the MAC generation.
  14916. </member>
  14917. <member name="M:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  14918. create a standard MAC based on a CBC block cipher. This will produce an
  14919. authentication code half the length of the block size of the cipher.
  14920. @param cipher the cipher to be used as the basis of the MAC generation.
  14921. @param padding the padding to be used to complete the last block.
  14922. </member>
  14923. <member name="M:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  14924. create a standard MAC based on a block cipher with the size of the
  14925. MAC been given in bits. This class uses CBC mode as the basis for the
  14926. MAC generation.
  14927. <p>
  14928. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  14929. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  14930. and in general should be less than the size of the block cipher as it reduces
  14931. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  14932. </p>
  14933. @param cipher the cipher to be used as the basis of the MAC generation.
  14934. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  14935. </member>
  14936. <member name="M:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  14937. create a standard MAC based on a block cipher with the size of the
  14938. MAC been given in bits. This class uses CBC mode as the basis for the
  14939. MAC generation.
  14940. <p>
  14941. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  14942. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  14943. and in general should be less than the size of the block cipher as it reduces
  14944. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  14945. </p>
  14946. @param cipher the cipher to be used as the basis of the MAC generation.
  14947. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  14948. @param padding the padding to be used to complete the last block.
  14949. </member>
  14950. <member name="M:Org.BouncyCastle.Crypto.Macs.CbcBlockCipherMac.Reset">
  14951. Reset the mac generator.
  14952. </member>
  14953. <member name="T:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher">
  14954. implements a Cipher-FeedBack (CFB) mode on top of a simple cipher.
  14955. </member>
  14956. <member name="M:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  14957. Basic constructor.
  14958. @param cipher the block cipher to be used as the basis of the
  14959. feedback mode.
  14960. @param blockSize the block size in bits (note: a multiple of 8)
  14961. </member>
  14962. <member name="M:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  14963. Initialise the cipher and, possibly, the initialisation vector (IV).
  14964. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  14965. An IV which is too short is handled in FIPS compliant fashion.
  14966. @param param the key and other data required by the cipher.
  14967. @exception ArgumentException if the parameters argument is
  14968. inappropriate.
  14969. </member>
  14970. <member name="P:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.AlgorithmName">
  14971. return the algorithm name and mode.
  14972. @return the name of the underlying algorithm followed by "/CFB"
  14973. and the block size in bits.
  14974. </member>
  14975. <member name="M:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.GetBlockSize">
  14976. return the block size we are operating at.
  14977. @return the block size we are operating at (in bytes).
  14978. </member>
  14979. <member name="M:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  14980. Process one block of input from the array in and write it to
  14981. the out array.
  14982. @param in the array containing the input data.
  14983. @param inOff offset into the in array the data starts at.
  14984. @param out the array the output data will be copied into.
  14985. @param outOff the offset into the out array the output will start at.
  14986. @exception DataLengthException if there isn't enough data in in, or
  14987. space in out.
  14988. @exception InvalidOperationException if the cipher isn't initialised.
  14989. @return the number of bytes processed and produced.
  14990. </member>
  14991. <member name="M:Org.BouncyCastle.Crypto.Macs.MacCFBBlockCipher.Reset">
  14992. reset the chaining vector back to the IV and reset the underlying
  14993. cipher.
  14994. </member>
  14995. <member name="M:Org.BouncyCastle.Crypto.Macs.CfbBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  14996. create a standard MAC based on a CFB block cipher. This will produce an
  14997. authentication code half the length of the block size of the cipher, with
  14998. the CFB mode set to 8 bits.
  14999. @param cipher the cipher to be used as the basis of the MAC generation.
  15000. </member>
  15001. <member name="M:Org.BouncyCastle.Crypto.Macs.CfbBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  15002. create a standard MAC based on a CFB block cipher. This will produce an
  15003. authentication code half the length of the block size of the cipher, with
  15004. the CFB mode set to 8 bits.
  15005. @param cipher the cipher to be used as the basis of the MAC generation.
  15006. @param padding the padding to be used.
  15007. </member>
  15008. <member name="M:Org.BouncyCastle.Crypto.Macs.CfbBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,System.Int32)">
  15009. create a standard MAC based on a block cipher with the size of the
  15010. MAC been given in bits. This class uses CFB mode as the basis for the
  15011. MAC generation.
  15012. <p>
  15013. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  15014. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  15015. and in general should be less than the size of the block cipher as it reduces
  15016. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  15017. </p>
  15018. @param cipher the cipher to be used as the basis of the MAC generation.
  15019. @param cfbBitSize the size of an output block produced by the CFB mode.
  15020. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  15021. </member>
  15022. <member name="M:Org.BouncyCastle.Crypto.Macs.CfbBlockCipherMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,System.Int32,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  15023. create a standard MAC based on a block cipher with the size of the
  15024. MAC been given in bits. This class uses CFB mode as the basis for the
  15025. MAC generation.
  15026. <p>
  15027. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  15028. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  15029. and in general should be less than the size of the block cipher as it reduces
  15030. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  15031. </p>
  15032. @param cipher the cipher to be used as the basis of the MAC generation.
  15033. @param cfbBitSize the size of an output block produced by the CFB mode.
  15034. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  15035. @param padding a padding to be used.
  15036. </member>
  15037. <member name="M:Org.BouncyCastle.Crypto.Macs.CfbBlockCipherMac.Reset">
  15038. Reset the mac generator.
  15039. </member>
  15040. <member name="T:Org.BouncyCastle.Crypto.Macs.CMac">
  15041. CMAC - as specified at www.nuee.nagoya-u.ac.jp/labs/tiwata/omac/omac.html
  15042. <p>
  15043. CMAC is analogous to OMAC1 - see also en.wikipedia.org/wiki/CMAC
  15044. </p><p>
  15045. CMAC is a NIST recomendation - see
  15046. csrc.nist.gov/CryptoToolkit/modes/800-38_Series_Publications/SP800-38B.pdf
  15047. </p><p>
  15048. CMAC/OMAC1 is a blockcipher-based message authentication code designed and
  15049. analyzed by Tetsu Iwata and Kaoru Kurosawa.
  15050. </p><p>
  15051. CMAC/OMAC1 is a simple variant of the CBC MAC (Cipher Block Chaining Message
  15052. Authentication Code). OMAC stands for One-Key CBC MAC.
  15053. </p><p>
  15054. It supports 128- or 64-bits block ciphers, with any key size, and returns
  15055. a MAC with dimension less or equal to the block size of the underlying
  15056. cipher.
  15057. </p>
  15058. </member>
  15059. <member name="M:Org.BouncyCastle.Crypto.Macs.CMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15060. create a standard MAC based on a CBC block cipher (64 or 128 bit block).
  15061. This will produce an authentication code the length of the block size
  15062. of the cipher.
  15063. @param cipher the cipher to be used as the basis of the MAC generation.
  15064. </member>
  15065. <member name="M:Org.BouncyCastle.Crypto.Macs.CMac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  15066. create a standard MAC based on a block cipher with the size of the
  15067. MAC been given in bits.
  15068. <p/>
  15069. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  15070. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  15071. and in general should be less than the size of the block cipher as it reduces
  15072. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  15073. @param cipher the cipher to be used as the basis of the MAC generation.
  15074. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8 and @lt;= 128.
  15075. </member>
  15076. <member name="M:Org.BouncyCastle.Crypto.Macs.CMac.Reset">
  15077. Reset the mac generator.
  15078. </member>
  15079. <member name="T:Org.BouncyCastle.Crypto.Macs.Dstu7564Mac">
  15080. <summary>
  15081. Implementation of DSTU7564 mac mode
  15082. </summary>
  15083. </member>
  15084. <member name="T:Org.BouncyCastle.Crypto.Macs.Dstu7624Mac">
  15085. implementation of DSTU 7624 MAC
  15086. </member>
  15087. <member name="T:Org.BouncyCastle.Crypto.Macs.GMac">
  15088. <summary>
  15089. The GMAC specialisation of Galois/Counter mode (GCM) detailed in NIST Special Publication
  15090. 800-38D.
  15091. </summary>
  15092. <remarks>
  15093. GMac is an invocation of the GCM mode where no data is encrypted (i.e. all input data to the Mac
  15094. is processed as additional authenticated data with the underlying GCM block cipher).
  15095. </remarks>
  15096. </member>
  15097. <member name="M:Org.BouncyCastle.Crypto.Macs.GMac.#ctor(Org.BouncyCastle.Crypto.Modes.GcmBlockCipher)">
  15098. <summary>
  15099. Creates a GMAC based on the operation of a block cipher in GCM mode.
  15100. </summary>
  15101. <remarks>
  15102. This will produce an authentication code the length of the block size of the cipher.
  15103. </remarks>
  15104. <param name="cipher">the cipher to be used in GCM mode to generate the MAC.</param>
  15105. </member>
  15106. <member name="M:Org.BouncyCastle.Crypto.Macs.GMac.#ctor(Org.BouncyCastle.Crypto.Modes.GcmBlockCipher,System.Int32)">
  15107. <summary>
  15108. Creates a GMAC based on the operation of a 128 bit block cipher in GCM mode.
  15109. </summary>
  15110. <remarks>
  15111. This will produce an authentication code the length of the block size of the cipher.
  15112. </remarks>
  15113. <param name="cipher">the cipher to be used in GCM mode to generate the MAC.</param>
  15114. <param name="macSizeBits">the mac size to generate, in bits. Must be a multiple of 8, between 32 and 128 (inclusive).
  15115. Sizes less than 96 are not recommended, but are supported for specialized applications.</param>
  15116. </member>
  15117. <member name="M:Org.BouncyCastle.Crypto.Macs.GMac.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  15118. <summary>
  15119. Initialises the GMAC - requires a <see cref="T:Org.BouncyCastle.Crypto.Parameters.ParametersWithIV"/>
  15120. providing a <see cref="T:Org.BouncyCastle.Crypto.Parameters.KeyParameter"/> and a nonce.
  15121. </summary>
  15122. </member>
  15123. <member name="T:Org.BouncyCastle.Crypto.Macs.Gost28147Mac">
  15124. implementation of GOST 28147-89 MAC
  15125. </member>
  15126. <member name="T:Org.BouncyCastle.Crypto.Macs.HMac">
  15127. HMAC implementation based on RFC2104
  15128. H(K XOR opad, H(K XOR ipad, text))
  15129. </member>
  15130. <member name="M:Org.BouncyCastle.Crypto.Macs.HMac.Reset">
  15131. Reset the mac generator.
  15132. </member>
  15133. <member name="T:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac">
  15134. DES based CBC Block Cipher MAC according to ISO9797, algorithm 3 (ANSI X9.19 Retail MAC)
  15135. This could as well be derived from CBCBlockCipherMac, but then the property mac in the base
  15136. class must be changed to protected
  15137. </member>
  15138. <member name="M:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15139. create a Retail-MAC based on a CBC block cipher. This will produce an
  15140. authentication code of the length of the block size of the cipher.
  15141. @param cipher the cipher to be used as the basis of the MAC generation. This must
  15142. be DESEngine.
  15143. </member>
  15144. <member name="M:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  15145. create a Retail-MAC based on a CBC block cipher. This will produce an
  15146. authentication code of the length of the block size of the cipher.
  15147. @param cipher the cipher to be used as the basis of the MAC generation.
  15148. @param padding the padding to be used to complete the last block.
  15149. </member>
  15150. <member name="M:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  15151. create a Retail-MAC based on a block cipher with the size of the
  15152. MAC been given in bits. This class uses single DES CBC mode as the basis for the
  15153. MAC generation.
  15154. <p>
  15155. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  15156. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  15157. and in general should be less than the size of the block cipher as it reduces
  15158. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  15159. </p>
  15160. @param cipher the cipher to be used as the basis of the MAC generation.
  15161. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  15162. </member>
  15163. <member name="M:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  15164. create a standard MAC based on a block cipher with the size of the
  15165. MAC been given in bits. This class uses single DES CBC mode as the basis for the
  15166. MAC generation. The final block is decrypted and then encrypted using the
  15167. middle and right part of the key.
  15168. <p>
  15169. Note: the size of the MAC must be at least 24 bits (FIPS Publication 81),
  15170. or 16 bits if being used as a data authenticator (FIPS Publication 113),
  15171. and in general should be less than the size of the block cipher as it reduces
  15172. the chance of an exhaustive attack (see Handbook of Applied Cryptography).
  15173. </p>
  15174. @param cipher the cipher to be used as the basis of the MAC generation.
  15175. @param macSizeInBits the size of the MAC in bits, must be a multiple of 8.
  15176. @param padding the padding to be used to complete the last block.
  15177. </member>
  15178. <member name="M:Org.BouncyCastle.Crypto.Macs.ISO9797Alg3Mac.Reset">
  15179. Reset the mac generator.
  15180. </member>
  15181. <member name="T:Org.BouncyCastle.Crypto.Macs.Poly1305">
  15182. <summary>
  15183. Poly1305 message authentication code, designed by D. J. Bernstein.
  15184. </summary>
  15185. <remarks>
  15186. Poly1305 computes a 128-bit (16 bytes) authenticator, using a 128 bit nonce and a 256 bit key
  15187. consisting of a 128 bit key applied to an underlying cipher, and a 128 bit key (with 106
  15188. effective key bits) used in the authenticator.
  15189. The polynomial calculation in this implementation is adapted from the public domain <a
  15190. href="https://github.com/floodyberry/poly1305-donna">poly1305-donna-unrolled</a> C implementation
  15191. by Andrew M (@floodyberry).
  15192. </remarks>
  15193. <seealso cref="T:Org.BouncyCastle.Crypto.Generators.Poly1305KeyGenerator"/>
  15194. </member>
  15195. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.r0">
  15196. Polynomial key
  15197. </member>
  15198. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.r1">
  15199. Polynomial key
  15200. </member>
  15201. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.r2">
  15202. Polynomial key
  15203. </member>
  15204. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.r3">
  15205. Polynomial key
  15206. </member>
  15207. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.r4">
  15208. Polynomial key
  15209. </member>
  15210. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.s1">
  15211. Precomputed 5 * r[1..4]
  15212. </member>
  15213. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.s2">
  15214. Precomputed 5 * r[1..4]
  15215. </member>
  15216. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.s3">
  15217. Precomputed 5 * r[1..4]
  15218. </member>
  15219. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.s4">
  15220. Precomputed 5 * r[1..4]
  15221. </member>
  15222. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.k0">
  15223. Encrypted nonce
  15224. </member>
  15225. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.k1">
  15226. Encrypted nonce
  15227. </member>
  15228. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.k2">
  15229. Encrypted nonce
  15230. </member>
  15231. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.k3">
  15232. Encrypted nonce
  15233. </member>
  15234. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.currentBlock">
  15235. Current block of buffered input
  15236. </member>
  15237. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.currentBlockOffset">
  15238. Current offset in input buffer
  15239. </member>
  15240. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.h0">
  15241. Polynomial accumulator
  15242. </member>
  15243. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.h1">
  15244. Polynomial accumulator
  15245. </member>
  15246. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.h2">
  15247. Polynomial accumulator
  15248. </member>
  15249. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.h3">
  15250. Polynomial accumulator
  15251. </member>
  15252. <member name="F:Org.BouncyCastle.Crypto.Macs.Poly1305.h4">
  15253. Polynomial accumulator
  15254. </member>
  15255. <member name="M:Org.BouncyCastle.Crypto.Macs.Poly1305.#ctor">
  15256. Constructs a Poly1305 MAC, where the key passed to init() will be used directly.
  15257. </member>
  15258. <member name="M:Org.BouncyCastle.Crypto.Macs.Poly1305.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15259. Constructs a Poly1305 MAC, using a 128 bit block cipher.
  15260. </member>
  15261. <member name="M:Org.BouncyCastle.Crypto.Macs.Poly1305.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  15262. <summary>
  15263. Initialises the Poly1305 MAC.
  15264. </summary>
  15265. <param name="parameters">a {@link ParametersWithIV} containing a 128 bit nonce and a {@link KeyParameter} with
  15266. a 256 bit key complying to the {@link Poly1305KeyGenerator Poly1305 key format}.</param>
  15267. </member>
  15268. <member name="T:Org.BouncyCastle.Crypto.Macs.SipHash">
  15269. <summary>
  15270. Implementation of SipHash as specified in "SipHash: a fast short-input PRF", by Jean-Philippe
  15271. Aumasson and Daniel J. Bernstein (https://131002.net/siphash/siphash.pdf).
  15272. </summary>
  15273. <remarks>
  15274. "SipHash is a family of PRFs SipHash-c-d where the integer parameters c and d are the number of
  15275. compression rounds and the number of finalization rounds. A compression round is identical to a
  15276. finalization round and this round function is called SipRound. Given a 128-bit key k and a
  15277. (possibly empty) byte string m, SipHash-c-d returns a 64-bit value..."
  15278. </remarks>
  15279. </member>
  15280. <member name="M:Org.BouncyCastle.Crypto.Macs.SipHash.#ctor">
  15281. <summary>SipHash-2-4</summary>
  15282. </member>
  15283. <member name="M:Org.BouncyCastle.Crypto.Macs.SipHash.#ctor(System.Int32,System.Int32)">
  15284. <summary>SipHash-c-d</summary>
  15285. <param name="c">the number of compression rounds</param>
  15286. <param name="d">the number of finalization rounds</param>
  15287. </member>
  15288. <member name="T:Org.BouncyCastle.Crypto.Macs.SkeinMac">
  15289. <summary>
  15290. Implementation of the Skein parameterised MAC function in 256, 512 and 1024 bit block sizes,
  15291. based on the <see cref="T:Org.BouncyCastle.Crypto.Engines.ThreefishEngine">Threefish</see> tweakable block cipher.
  15292. </summary>
  15293. <remarks>
  15294. This is the 1.3 version of Skein defined in the Skein hash function submission to the NIST SHA-3
  15295. competition in October 2010.
  15296. <p/>
  15297. Skein was designed by Niels Ferguson - Stefan Lucks - Bruce Schneier - Doug Whiting - Mihir
  15298. Bellare - Tadayoshi Kohno - Jon Callas - Jesse Walker.
  15299. </remarks>
  15300. <seealso cref="T:Org.BouncyCastle.Crypto.Digests.SkeinEngine"/>
  15301. <seealso cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/>
  15302. </member>
  15303. <member name="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_256">
  15304. <summary>
  15305. 256 bit block size - Skein-256
  15306. </summary>
  15307. </member>
  15308. <member name="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_512">
  15309. <summary>
  15310. 512 bit block size - Skein-512
  15311. </summary>
  15312. </member>
  15313. <member name="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_1024">
  15314. <summary>
  15315. 1024 bit block size - Skein-1024
  15316. </summary>
  15317. </member>
  15318. <member name="M:Org.BouncyCastle.Crypto.Macs.SkeinMac.#ctor(System.Int32,System.Int32)">
  15319. <summary>
  15320. Constructs a Skein MAC with an internal state size and output size.
  15321. </summary>
  15322. <param name="stateSizeBits">the internal state size in bits - one of <see cref="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_256"/> <see cref="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_512"/> or
  15323. <see cref="F:Org.BouncyCastle.Crypto.Macs.SkeinMac.SKEIN_1024"/>.</param>
  15324. <param name="digestSizeBits">the output/MAC size to produce in bits, which must be an integral number of
  15325. bytes.</param>
  15326. </member>
  15327. <member name="M:Org.BouncyCastle.Crypto.Macs.SkeinMac.Init(Org.BouncyCastle.Crypto.ICipherParameters)">
  15328. <summary>
  15329. Optionally initialises the Skein digest with the provided parameters.
  15330. </summary>
  15331. See <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"></see> for details on the parameterisation of the Skein hash function.
  15332. <param name="parameters">the parameters to apply to this engine, or <code>null</code> to use no parameters.</param>
  15333. </member>
  15334. <member name="T:Org.BouncyCastle.Crypto.MaxBytesExceededException">
  15335. <summary>
  15336. This exception is thrown whenever a cipher requires a change of key, iv
  15337. or similar after x amount of bytes enciphered
  15338. </summary>
  15339. </member>
  15340. <member name="T:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher">
  15341. implements Cipher-Block-Chaining (CBC) mode on top of a simple cipher.
  15342. </member>
  15343. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15344. Basic constructor.
  15345. @param cipher the block cipher to be used as the basis of chaining.
  15346. </member>
  15347. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.GetUnderlyingCipher">
  15348. return the underlying block cipher that we are wrapping.
  15349. @return the underlying block cipher that we are wrapping.
  15350. </member>
  15351. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15352. Initialise the cipher and, possibly, the initialisation vector (IV).
  15353. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15354. @param forEncryption if true the cipher is initialised for
  15355. encryption, if false for decryption.
  15356. @param param the key and other data required by the cipher.
  15357. @exception ArgumentException if the parameters argument is
  15358. inappropriate.
  15359. </member>
  15360. <member name="P:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.AlgorithmName">
  15361. return the algorithm name and mode.
  15362. @return the name of the underlying algorithm followed by "/CBC".
  15363. </member>
  15364. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.GetBlockSize">
  15365. return the block size of the underlying cipher.
  15366. @return the block size of the underlying cipher.
  15367. </member>
  15368. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15369. Process one block of input from the array in and write it to
  15370. the out array.
  15371. @param in the array containing the input data.
  15372. @param inOff offset into the in array the data starts at.
  15373. @param out the array the output data will be copied into.
  15374. @param outOff the offset into the out array the output will start at.
  15375. @exception DataLengthException if there isn't enough data in in, or
  15376. space in out.
  15377. @exception InvalidOperationException if the cipher isn't initialised.
  15378. @return the number of bytes processed and produced.
  15379. </member>
  15380. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.Reset">
  15381. reset the chaining vector back to the IV and reset the underlying
  15382. cipher.
  15383. </member>
  15384. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15385. Do the appropriate chaining step for CBC mode encryption.
  15386. @param in the array containing the data to be encrypted.
  15387. @param inOff offset into the in array the data starts at.
  15388. @param out the array the encrypted data will be copied into.
  15389. @param outOff the offset into the out array the output will start at.
  15390. @exception DataLengthException if there isn't enough data in in, or
  15391. space in out.
  15392. @exception InvalidOperationException if the cipher isn't initialised.
  15393. @return the number of bytes processed and produced.
  15394. </member>
  15395. <member name="M:Org.BouncyCastle.Crypto.Modes.CbcBlockCipher.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15396. Do the appropriate chaining step for CBC mode decryption.
  15397. @param in the array containing the data to be decrypted.
  15398. @param inOff offset into the in array the data starts at.
  15399. @param out the array the decrypted data will be copied into.
  15400. @param outOff the offset into the out array the output will start at.
  15401. @exception DataLengthException if there isn't enough data in in, or
  15402. space in out.
  15403. @exception InvalidOperationException if the cipher isn't initialised.
  15404. @return the number of bytes processed and produced.
  15405. </member>
  15406. <member name="T:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher">
  15407. Implements the Counter with Cipher Block Chaining mode (CCM) detailed in
  15408. NIST Special Publication 800-38C.
  15409. <p>
  15410. <b>Note</b>: this mode is a packet mode - it needs all the data up front.
  15411. </p>
  15412. </member>
  15413. <member name="M:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15414. Basic constructor.
  15415. @param cipher the block cipher to be used.
  15416. </member>
  15417. <member name="M:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher.GetUnderlyingCipher">
  15418. return the underlying block cipher that we are wrapping.
  15419. @return the underlying block cipher that we are wrapping.
  15420. </member>
  15421. <member name="M:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher.GetMac">
  15422. Returns a byte array containing the mac calculated as part of the
  15423. last encrypt or decrypt operation.
  15424. @return the last mac calculated.
  15425. </member>
  15426. <member name="M:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher.ProcessPacket(System.Byte[],System.Int32,System.Int32)">
  15427. Process a packet of data for either CCM decryption or encryption.
  15428. @param in data for processing.
  15429. @param inOff offset at which data starts in the input array.
  15430. @param inLen length of the data in the input array.
  15431. @return a byte array containing the processed input..
  15432. @throws IllegalStateException if the cipher is not appropriately set up.
  15433. @throws InvalidCipherTextException if the input data is truncated or the mac check fails.
  15434. </member>
  15435. <member name="M:Org.BouncyCastle.Crypto.Modes.CcmBlockCipher.ProcessPacket(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  15436. Process a packet of data for either CCM decryption or encryption.
  15437. @param in data for processing.
  15438. @param inOff offset at which data starts in the input array.
  15439. @param inLen length of the data in the input array.
  15440. @param output output array.
  15441. @param outOff offset into output array to start putting processed bytes.
  15442. @return the number of bytes added to output.
  15443. @throws IllegalStateException if the cipher is not appropriately set up.
  15444. @throws InvalidCipherTextException if the input data is truncated or the mac check fails.
  15445. @throws DataLengthException if output buffer too short.
  15446. </member>
  15447. <member name="T:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher">
  15448. implements a Cipher-FeedBack (CFB) mode on top of a simple cipher.
  15449. </member>
  15450. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  15451. Basic constructor.
  15452. @param cipher the block cipher to be used as the basis of the
  15453. feedback mode.
  15454. @param blockSize the block size in bits (note: a multiple of 8)
  15455. </member>
  15456. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.GetUnderlyingCipher">
  15457. return the underlying block cipher that we are wrapping.
  15458. @return the underlying block cipher that we are wrapping.
  15459. </member>
  15460. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15461. Initialise the cipher and, possibly, the initialisation vector (IV).
  15462. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15463. An IV which is too short is handled in FIPS compliant fashion.
  15464. @param forEncryption if true the cipher is initialised for
  15465. encryption, if false for decryption.
  15466. @param param the key and other data required by the cipher.
  15467. @exception ArgumentException if the parameters argument is
  15468. inappropriate.
  15469. </member>
  15470. <member name="P:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.AlgorithmName">
  15471. return the algorithm name and mode.
  15472. @return the name of the underlying algorithm followed by "/CFB"
  15473. and the block size in bits.
  15474. </member>
  15475. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.GetBlockSize">
  15476. return the block size we are operating at.
  15477. @return the block size we are operating at (in bytes).
  15478. </member>
  15479. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15480. Process one block of input from the array in and write it to
  15481. the out array.
  15482. @param in the array containing the input data.
  15483. @param inOff offset into the in array the data starts at.
  15484. @param out the array the output data will be copied into.
  15485. @param outOff the offset into the out array the output will start at.
  15486. @exception DataLengthException if there isn't enough data in in, or
  15487. space in out.
  15488. @exception InvalidOperationException if the cipher isn't initialised.
  15489. @return the number of bytes processed and produced.
  15490. </member>
  15491. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15492. Do the appropriate processing for CFB mode encryption.
  15493. @param in the array containing the data to be encrypted.
  15494. @param inOff offset into the in array the data starts at.
  15495. @param out the array the encrypted data will be copied into.
  15496. @param outOff the offset into the out array the output will start at.
  15497. @exception DataLengthException if there isn't enough data in in, or
  15498. space in out.
  15499. @exception InvalidOperationException if the cipher isn't initialised.
  15500. @return the number of bytes processed and produced.
  15501. </member>
  15502. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15503. Do the appropriate processing for CFB mode decryption.
  15504. @param in the array containing the data to be decrypted.
  15505. @param inOff offset into the in array the data starts at.
  15506. @param out the array the encrypted data will be copied into.
  15507. @param outOff the offset into the out array the output will start at.
  15508. @exception DataLengthException if there isn't enough data in in, or
  15509. space in out.
  15510. @exception InvalidOperationException if the cipher isn't initialised.
  15511. @return the number of bytes processed and produced.
  15512. </member>
  15513. <member name="M:Org.BouncyCastle.Crypto.Modes.CfbBlockCipher.Reset">
  15514. reset the chaining vector back to the IV and reset the underlying
  15515. cipher.
  15516. </member>
  15517. <member name="T:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher">
  15518. A Cipher Text Stealing (CTS) mode cipher. CTS allows block ciphers to
  15519. be used to produce cipher text which is the same outLength as the plain text.
  15520. </member>
  15521. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15522. Create a buffered block cipher that uses Cipher Text Stealing
  15523. @param cipher the underlying block cipher this buffering object wraps.
  15524. </member>
  15525. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.GetUpdateOutputSize(System.Int32)">
  15526. return the size of the output buffer required for an update of 'length' bytes.
  15527. @param length the outLength of the input.
  15528. @return the space required to accommodate a call to update
  15529. with length bytes of input.
  15530. </member>
  15531. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.GetOutputSize(System.Int32)">
  15532. return the size of the output buffer required for an update plus a
  15533. doFinal with an input of length bytes.
  15534. @param length the outLength of the input.
  15535. @return the space required to accommodate a call to update and doFinal
  15536. with length bytes of input.
  15537. </member>
  15538. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  15539. process a single byte, producing an output block if necessary.
  15540. @param in the input byte.
  15541. @param out the space for any output that might be produced.
  15542. @param outOff the offset from which the output will be copied.
  15543. @return the number of output bytes copied to out.
  15544. @exception DataLengthException if there isn't enough space in out.
  15545. @exception InvalidOperationException if the cipher isn't initialised.
  15546. </member>
  15547. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  15548. process an array of bytes, producing output if necessary.
  15549. @param in the input byte array.
  15550. @param inOff the offset at which the input data starts.
  15551. @param length the number of bytes to be copied out of the input array.
  15552. @param out the space for any output that might be produced.
  15553. @param outOff the offset from which the output will be copied.
  15554. @return the number of output bytes copied to out.
  15555. @exception DataLengthException if there isn't enough space in out.
  15556. @exception InvalidOperationException if the cipher isn't initialised.
  15557. </member>
  15558. <member name="M:Org.BouncyCastle.Crypto.Modes.CtsBlockCipher.DoFinal(System.Byte[],System.Int32)">
  15559. Process the last block in the buffer.
  15560. @param out the array the block currently being held is copied into.
  15561. @param outOff the offset at which the copying starts.
  15562. @return the number of output bytes copied to out.
  15563. @exception DataLengthException if there is insufficient space in out for
  15564. the output.
  15565. @exception InvalidOperationException if the underlying cipher is not
  15566. initialised.
  15567. @exception InvalidCipherTextException if cipher text decrypts wrongly (in
  15568. case the exception will never Get thrown).
  15569. </member>
  15570. <member name="T:Org.BouncyCastle.Crypto.Modes.EaxBlockCipher">
  15571. A Two-Pass Authenticated-Encryption Scheme Optimized for Simplicity and
  15572. Efficiency - by M. Bellare, P. Rogaway, D. Wagner.
  15573. http://www.cs.ucdavis.edu/~rogaway/papers/eax.pdf
  15574. EAX is an AEAD scheme based on CTR and OMAC1/CMAC, that uses a single block
  15575. cipher to encrypt and authenticate data. It's on-line (the length of a
  15576. message isn't needed to begin processing it), has good performances, it's
  15577. simple and provably secure (provided the underlying block cipher is secure).
  15578. Of course, this implementations is NOT thread-safe.
  15579. </member>
  15580. <member name="M:Org.BouncyCastle.Crypto.Modes.EaxBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15581. Constructor that accepts an instance of a block cipher engine.
  15582. @param cipher the engine to use
  15583. </member>
  15584. <member name="T:Org.BouncyCastle.Crypto.Modes.GcmBlockCipher">
  15585. <summary>
  15586. Implements the Galois/Counter mode (GCM) detailed in
  15587. NIST Special Publication 800-38D.
  15588. </summary>
  15589. </member>
  15590. <member name="M:Org.BouncyCastle.Crypto.Modes.GcmBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15591. <remarks>
  15592. MAC sizes from 32 bits to 128 bits (must be a multiple of 8) are supported. The default is 128 bits.
  15593. Sizes less than 96 are not recommended, but are supported for specialized applications.
  15594. </remarks>
  15595. </member>
  15596. <member name="T:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher">
  15597. implements the GOST 28147 OFB counter mode (GCTR).
  15598. </member>
  15599. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15600. Basic constructor.
  15601. @param cipher the block cipher to be used as the basis of the
  15602. counter mode (must have a 64 bit block size).
  15603. </member>
  15604. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.GetUnderlyingCipher">
  15605. return the underlying block cipher that we are wrapping.
  15606. @return the underlying block cipher that we are wrapping.
  15607. </member>
  15608. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15609. Initialise the cipher and, possibly, the initialisation vector (IV).
  15610. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15611. An IV which is too short is handled in FIPS compliant fashion.
  15612. @param encrypting if true the cipher is initialised for
  15613. encryption, if false for decryption.
  15614. @param parameters the key and other data required by the cipher.
  15615. @exception ArgumentException if the parameters argument is inappropriate.
  15616. </member>
  15617. <member name="P:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.AlgorithmName">
  15618. return the algorithm name and mode.
  15619. @return the name of the underlying algorithm followed by "/GCTR"
  15620. and the block size in bits
  15621. </member>
  15622. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.GetBlockSize">
  15623. return the block size we are operating at (in bytes).
  15624. @return the block size we are operating at (in bytes).
  15625. </member>
  15626. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15627. Process one block of input from the array in and write it to
  15628. the out array.
  15629. @param in the array containing the input data.
  15630. @param inOff offset into the in array the data starts at.
  15631. @param out the array the output data will be copied into.
  15632. @param outOff the offset into the out array the output will start at.
  15633. @exception DataLengthException if there isn't enough data in in, or
  15634. space in out.
  15635. @exception InvalidOperationException if the cipher isn't initialised.
  15636. @return the number of bytes processed and produced.
  15637. </member>
  15638. <member name="M:Org.BouncyCastle.Crypto.Modes.GOfbBlockCipher.Reset">
  15639. reset the feedback vector back to the IV and reset the underlying
  15640. cipher.
  15641. </member>
  15642. <member name="T:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher">
  15643. <summary>
  15644. A block cipher mode that includes authenticated encryption with a streaming mode
  15645. and optional associated data.</summary>
  15646. <see cref="T:Org.BouncyCastle.Crypto.Parameters.AeadParameters"/>
  15647. </member>
  15648. <member name="P:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.AlgorithmName">
  15649. <summary>The name of the algorithm this cipher implements.</summary>
  15650. </member>
  15651. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.GetUnderlyingCipher">
  15652. <summary>The block cipher underlying this algorithm.</summary>
  15653. </member>
  15654. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15655. <summary>Initialise the cipher.</summary>
  15656. <remarks>Parameter can either be an AeadParameters or a ParametersWithIV object.</remarks>
  15657. <param name="forEncryption">Initialise for encryption if true, for decryption if false.</param>
  15658. <param name="parameters">The key or other data required by the cipher.</param>
  15659. </member>
  15660. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.GetBlockSize">
  15661. <returns>The block size for this cipher, in bytes.</returns>
  15662. </member>
  15663. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.ProcessAadByte(System.Byte)">
  15664. <summary>Add a single byte to the associated data check.</summary>
  15665. <remarks>If the implementation supports it, this will be an online operation and will not retain the associated data.</remarks>
  15666. <param name="input">The byte to be processed.</param>
  15667. </member>
  15668. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.ProcessAadBytes(System.Byte[],System.Int32,System.Int32)">
  15669. <summary>Add a sequence of bytes to the associated data check.</summary>
  15670. <remarks>If the implementation supports it, this will be an online operation and will not retain the associated data.</remarks>
  15671. <param name="inBytes">The input byte array.</param>
  15672. <param name="inOff">The offset into the input array where the data to be processed starts.</param>
  15673. <param name="len">The number of bytes to be processed.</param>
  15674. </member>
  15675. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  15676. Encrypt/decrypt a single byte.
  15677. @param input the byte to be processed.
  15678. @param outBytes the output buffer the processed byte goes into.
  15679. @param outOff the offset into the output byte array the processed data starts at.
  15680. @return the number of bytes written to out.
  15681. @exception DataLengthException if the output buffer is too small.
  15682. </member>
  15683. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  15684. Process a block of bytes from in putting the result into out.
  15685. @param inBytes the input byte array.
  15686. @param inOff the offset into the in array where the data to be processed starts.
  15687. @param len the number of bytes to be processed.
  15688. @param outBytes the output buffer the processed bytes go into.
  15689. @param outOff the offset into the output byte array the processed data starts at.
  15690. @return the number of bytes written to out.
  15691. @exception DataLengthException if the output buffer is too small.
  15692. </member>
  15693. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.DoFinal(System.Byte[],System.Int32)">
  15694. Finish the operation either appending or verifying the MAC at the end of the data.
  15695. @param outBytes space for any resulting output data.
  15696. @param outOff offset into out to start copying the data at.
  15697. @return number of bytes written into out.
  15698. @throws InvalidOperationException if the cipher is in an inappropriate state.
  15699. @throws InvalidCipherTextException if the MAC fails to match.
  15700. </member>
  15701. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.GetMac">
  15702. Return the value of the MAC associated with the last stream processed.
  15703. @return MAC for plaintext data.
  15704. </member>
  15705. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.GetUpdateOutputSize(System.Int32)">
  15706. Return the size of the output buffer required for a ProcessBytes
  15707. an input of len bytes.
  15708. @param len the length of the input.
  15709. @return the space required to accommodate a call to ProcessBytes
  15710. with len bytes of input.
  15711. </member>
  15712. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.GetOutputSize(System.Int32)">
  15713. Return the size of the output buffer required for a ProcessBytes plus a
  15714. DoFinal with an input of len bytes.
  15715. @param len the length of the input.
  15716. @return the space required to accommodate a call to ProcessBytes and DoFinal
  15717. with len bytes of input.
  15718. </member>
  15719. <member name="M:Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher.Reset">
  15720. <summary>
  15721. Reset the cipher to the same state as it was after the last init (if there was one).
  15722. </summary>
  15723. </member>
  15724. <member name="M:Org.BouncyCastle.Crypto.Modes.KCcmBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15725. <summary>
  15726. Base constructor. Nb value is set to 4.
  15727. </summary>
  15728. <param name="engine">base cipher to use under CCM.</param>
  15729. </member>
  15730. <member name="M:Org.BouncyCastle.Crypto.Modes.KCcmBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  15731. <summary>
  15732. Constructor allowing Nb configuration.
  15733. Nb is a parameter specified in CCM mode of DSTU7624 standard.
  15734. This parameter specifies maximum possible length of input.It should
  15735. be calculated as follows: Nb = 1 / 8 * (-3 + log[2]Nmax) + 1,
  15736. where Nmax - length of input message in bits.For practical reasons
  15737. Nmax usually less than 4Gb, e.g. for Nmax = 2^32 - 1, Nb = 4.
  15738. </summary>
  15739. <param name="engine">base cipher to use under CCM.</param>
  15740. <param name="Nb">Nb value to use.</param>
  15741. </member>
  15742. <member name="T:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher">
  15743. Implements a Gamming or Counter (CTR) mode on top of a DSTU 7624 block cipher.
  15744. </member>
  15745. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15746. Basic constructor.
  15747. @param cipher the block cipher to be used as the basis of the
  15748. feedback mode.
  15749. </member>
  15750. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.GetUnderlyingCipher">
  15751. return the underlying block cipher that we are wrapping.
  15752. @return the underlying block cipher that we are wrapping.
  15753. </member>
  15754. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15755. Initialise the cipher and, possibly, the initialisation vector (IV).
  15756. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15757. An IV which is too short is handled in FIPS compliant fashion.
  15758. @param forEncryption if true the cipher is initialised for
  15759. encryption, if false for decryption.
  15760. @param param the key and other data required by the cipher.
  15761. @exception ArgumentException if the parameters argument is
  15762. inappropriate.
  15763. </member>
  15764. <member name="P:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.AlgorithmName">
  15765. return the algorithm name and mode.
  15766. @return the name of the underlying algorithm followed by "/KCTR"
  15767. and the block size in bits.
  15768. </member>
  15769. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.GetBlockSize">
  15770. return the block size we are operating at.
  15771. @return the block size we are operating at (in bytes).
  15772. </member>
  15773. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15774. Process one block of input from the array in and write it to
  15775. the out array.
  15776. @param input the array containing the input data.
  15777. @param inOff offset into the in array the data starts at.
  15778. @param output the array the output data will be copied into.
  15779. @param outOff the offset into the out array the output will start at.
  15780. @exception DataLengthException if there isn't enough data in in, or
  15781. space in out.
  15782. @exception InvalidOperationException if the cipher isn't initialised.
  15783. @return the number of bytes processed and produced.
  15784. </member>
  15785. <member name="M:Org.BouncyCastle.Crypto.Modes.KCtrBlockCipher.Reset">
  15786. reset the chaining vector back to the IV and reset the underlying
  15787. cipher.
  15788. </member>
  15789. <member name="T:Org.BouncyCastle.Crypto.Modes.OcbBlockCipher">
  15790. An implementation of <a href="http://tools.ietf.org/html/rfc7253">RFC 7253 on The OCB
  15791. Authenticated-Encryption Algorithm</a>, licensed per:
  15792. <blockquote><p><a href="http://www.cs.ucdavis.edu/~rogaway/ocb/license1.pdf">License for
  15793. Open-Source Software Implementations of OCB</a> (Jan 9, 2013) - 'License 1'<br/>
  15794. Under this license, you are authorized to make, use, and distribute open-source software
  15795. implementations of OCB. This license terminates for you if you sue someone over their open-source
  15796. software implementation of OCB claiming that you have a patent covering their implementation.
  15797. </p><p>
  15798. This is a non-binding summary of a legal document (the link above). The parameters of the license
  15799. are specified in the license document and that document is controlling.</p></blockquote>
  15800. </member>
  15801. <member name="T:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher">
  15802. implements a Output-FeedBack (OFB) mode on top of a simple cipher.
  15803. </member>
  15804. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32)">
  15805. Basic constructor.
  15806. @param cipher the block cipher to be used as the basis of the
  15807. feedback mode.
  15808. @param blockSize the block size in bits (note: a multiple of 8)
  15809. </member>
  15810. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.GetUnderlyingCipher">
  15811. return the underlying block cipher that we are wrapping.
  15812. @return the underlying block cipher that we are wrapping.
  15813. </member>
  15814. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15815. Initialise the cipher and, possibly, the initialisation vector (IV).
  15816. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15817. An IV which is too short is handled in FIPS compliant fashion.
  15818. @param forEncryption if true the cipher is initialised for
  15819. encryption, if false for decryption.
  15820. @param param the key and other data required by the cipher.
  15821. @exception ArgumentException if the parameters argument is
  15822. inappropriate.
  15823. </member>
  15824. <member name="P:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.AlgorithmName">
  15825. return the algorithm name and mode.
  15826. @return the name of the underlying algorithm followed by "/OFB"
  15827. and the block size in bits
  15828. </member>
  15829. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.GetBlockSize">
  15830. return the block size we are operating at (in bytes).
  15831. @return the block size we are operating at (in bytes).
  15832. </member>
  15833. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15834. Process one block of input from the array in and write it to
  15835. the out array.
  15836. @param in the array containing the input data.
  15837. @param inOff offset into the in array the data starts at.
  15838. @param out the array the output data will be copied into.
  15839. @param outOff the offset into the out array the output will start at.
  15840. @exception DataLengthException if there isn't enough data in in, or
  15841. space in out.
  15842. @exception InvalidOperationException if the cipher isn't initialised.
  15843. @return the number of bytes processed and produced.
  15844. </member>
  15845. <member name="M:Org.BouncyCastle.Crypto.Modes.OfbBlockCipher.Reset">
  15846. reset the feedback vector back to the IV and reset the underlying
  15847. cipher.
  15848. </member>
  15849. <member name="T:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher">
  15850. * Implements OpenPGP's rather strange version of Cipher-FeedBack (CFB) mode
  15851. * on top of a simple cipher. This class assumes the IV has been prepended
  15852. * to the data stream already, and just accomodates the reset after
  15853. * (blockSize + 2) bytes have been read.
  15854. * <p>
  15855. * For further info see <a href="http://www.ietf.org/rfc/rfc2440.html">RFC 2440</a>.
  15856. * </p>
  15857. </member>
  15858. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15859. Basic constructor.
  15860. @param cipher the block cipher to be used as the basis of the
  15861. feedback mode.
  15862. </member>
  15863. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.GetUnderlyingCipher">
  15864. return the underlying block cipher that we are wrapping.
  15865. @return the underlying block cipher that we are wrapping.
  15866. </member>
  15867. <member name="P:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.AlgorithmName">
  15868. return the algorithm name and mode.
  15869. @return the name of the underlying algorithm followed by "/PGPCFB"
  15870. and the block size in bits.
  15871. </member>
  15872. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.GetBlockSize">
  15873. return the block size we are operating at.
  15874. @return the block size we are operating at (in bytes).
  15875. </member>
  15876. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.ProcessBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15877. Process one block of input from the array in and write it to
  15878. the out array.
  15879. @param in the array containing the input data.
  15880. @param inOff offset into the in array the data starts at.
  15881. @param out the array the output data will be copied into.
  15882. @param outOff the offset into the out array the output will start at.
  15883. @exception DataLengthException if there isn't enough data in in, or
  15884. space in out.
  15885. @exception InvalidOperationException if the cipher isn't initialised.
  15886. @return the number of bytes processed and produced.
  15887. </member>
  15888. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.Reset">
  15889. reset the chaining vector back to the IV and reset the underlying
  15890. cipher.
  15891. </member>
  15892. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  15893. Initialise the cipher and, possibly, the initialisation vector (IV).
  15894. If an IV isn't passed as part of the parameter, the IV will be all zeros.
  15895. An IV which is too short is handled in FIPS compliant fashion.
  15896. @param forEncryption if true the cipher is initialised for
  15897. encryption, if false for decryption.
  15898. @param parameters the key and other data required by the cipher.
  15899. @exception ArgumentException if the parameters argument is
  15900. inappropriate.
  15901. </member>
  15902. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.EncryptByte(System.Byte,System.Int32)">
  15903. Encrypt one byte of data according to CFB mode.
  15904. @param data the byte to encrypt
  15905. @param blockOff offset in the current block
  15906. @returns the encrypted byte
  15907. </member>
  15908. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.EncryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15909. Do the appropriate processing for CFB IV mode encryption.
  15910. @param in the array containing the data to be encrypted.
  15911. @param inOff offset into the in array the data starts at.
  15912. @param out the array the encrypted data will be copied into.
  15913. @param outOff the offset into the out array the output will start at.
  15914. @exception DataLengthException if there isn't enough data in in, or
  15915. space in out.
  15916. @exception InvalidOperationException if the cipher isn't initialised.
  15917. @return the number of bytes processed and produced.
  15918. </member>
  15919. <member name="M:Org.BouncyCastle.Crypto.Modes.OpenPgpCfbBlockCipher.DecryptBlock(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  15920. Do the appropriate processing for CFB IV mode decryption.
  15921. @param in the array containing the data to be decrypted.
  15922. @param inOff offset into the in array the data starts at.
  15923. @param out the array the encrypted data will be copied into.
  15924. @param outOff the offset into the out array the output will start at.
  15925. @exception DataLengthException if there isn't enough data in in, or
  15926. space in out.
  15927. @exception InvalidOperationException if the cipher isn't initialised.
  15928. @return the number of bytes processed and produced.
  15929. </member>
  15930. <member name="T:Org.BouncyCastle.Crypto.Modes.SicBlockCipher">
  15931. Implements the Segmented Integer Counter (SIC) mode on top of a simple
  15932. block cipher.
  15933. </member>
  15934. <member name="M:Org.BouncyCastle.Crypto.Modes.SicBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  15935. Basic constructor.
  15936. @param c the block cipher to be used.
  15937. </member>
  15938. <member name="M:Org.BouncyCastle.Crypto.Modes.SicBlockCipher.GetUnderlyingCipher">
  15939. return the underlying block cipher that we are wrapping.
  15940. @return the underlying block cipher that we are wrapping.
  15941. </member>
  15942. <member name="M:Org.BouncyCastle.Crypto.Operators.X509Utilities.GetDigestAlgName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  15943. Return the digest algorithm using one of the standard JCA string
  15944. representations rather than the algorithm identifier (if possible).
  15945. </member>
  15946. <member name="T:Org.BouncyCastle.Crypto.Operators.Asn1SignatureFactory">
  15947. <summary>
  15948. Calculator factory class for signature generation in ASN.1 based profiles that use an AlgorithmIdentifier to preserve
  15949. signature algorithm details.
  15950. </summary>
  15951. </member>
  15952. <member name="M:Org.BouncyCastle.Crypto.Operators.Asn1SignatureFactory.#ctor(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  15953. <summary>
  15954. Base constructor.
  15955. </summary>
  15956. <param name="algorithm">The name of the signature algorithm to use.</param>
  15957. <param name="privateKey">The private key to be used in the signing operation.</param>
  15958. </member>
  15959. <member name="M:Org.BouncyCastle.Crypto.Operators.Asn1SignatureFactory.#ctor(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  15960. <summary>
  15961. Constructor which also specifies a source of randomness to be used if one is required.
  15962. </summary>
  15963. <param name="algorithm">The name of the signature algorithm to use.</param>
  15964. <param name="privateKey">The private key to be used in the signing operation.</param>
  15965. <param name="random">The source of randomness to be used in signature calculation.</param>
  15966. </member>
  15967. <member name="P:Org.BouncyCastle.Crypto.Operators.Asn1SignatureFactory.SignatureAlgNames">
  15968. <summary>
  15969. Allows enumeration of the signature names supported by the verifier provider.
  15970. </summary>
  15971. </member>
  15972. <member name="T:Org.BouncyCastle.Crypto.Operators.Asn1VerifierFactory">
  15973. <summary>
  15974. Verifier class for signature verification in ASN.1 based profiles that use an AlgorithmIdentifier to preserve
  15975. signature algorithm details.
  15976. </summary>
  15977. </member>
  15978. <member name="M:Org.BouncyCastle.Crypto.Operators.Asn1VerifierFactory.#ctor(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  15979. <summary>
  15980. Base constructor.
  15981. </summary>
  15982. <param name="algorithm">The name of the signature algorithm to use.</param>
  15983. <param name="publicKey">The public key to be used in the verification operation.</param>
  15984. </member>
  15985. <member name="T:Org.BouncyCastle.Crypto.Operators.Asn1VerifierFactoryProvider">
  15986. <summary>
  15987. Provider class which supports dynamic creation of signature verifiers.
  15988. </summary>
  15989. </member>
  15990. <member name="M:Org.BouncyCastle.Crypto.Operators.Asn1VerifierFactoryProvider.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  15991. <summary>
  15992. Base constructor - specify the public key to be used in verification.
  15993. </summary>
  15994. <param name="publicKey">The public key to be used in creating verifiers provided by this object.</param>
  15995. </member>
  15996. <member name="P:Org.BouncyCastle.Crypto.Operators.Asn1VerifierFactoryProvider.SignatureAlgNames">
  15997. <summary>
  15998. Allows enumeration of the signature names supported by the verifier provider.
  15999. </summary>
  16000. </member>
  16001. <member name="T:Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding">
  16002. Block cipher padders are expected to conform to this interface
  16003. </member>
  16004. <member name="M:Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16005. Initialise the padder.
  16006. @param param parameters, if any required.
  16007. </member>
  16008. <member name="P:Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding.PaddingName">
  16009. Return the name of the algorithm the cipher implements.
  16010. @return the name of the algorithm the cipher implements.
  16011. </member>
  16012. <member name="M:Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding.AddPadding(System.Byte[],System.Int32)">
  16013. add the pad bytes to the passed in block, returning the
  16014. number of bytes added.
  16015. </member>
  16016. <member name="M:Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding.PadCount(System.Byte[])">
  16017. return the number of pad bytes present in the block.
  16018. @exception InvalidCipherTextException if the padding is badly formed
  16019. or invalid.
  16020. </member>
  16021. <member name="T:Org.BouncyCastle.Crypto.Paddings.ISO10126d2Padding">
  16022. A padder that adds ISO10126-2 padding to a block.
  16023. </member>
  16024. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO10126d2Padding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16025. Initialise the padder.
  16026. @param random a SecureRandom if available.
  16027. </member>
  16028. <member name="P:Org.BouncyCastle.Crypto.Paddings.ISO10126d2Padding.PaddingName">
  16029. Return the name of the algorithm the cipher implements.
  16030. @return the name of the algorithm the cipher implements.
  16031. </member>
  16032. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO10126d2Padding.AddPadding(System.Byte[],System.Int32)">
  16033. add the pad bytes to the passed in block, returning the
  16034. number of bytes added.
  16035. </member>
  16036. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO10126d2Padding.PadCount(System.Byte[])">
  16037. return the number of pad bytes present in the block.
  16038. </member>
  16039. <member name="T:Org.BouncyCastle.Crypto.Paddings.ISO7816d4Padding">
  16040. A padder that adds the padding according to the scheme referenced in
  16041. ISO 7814-4 - scheme 2 from ISO 9797-1. The first byte is 0x80, rest is 0x00
  16042. </member>
  16043. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO7816d4Padding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16044. Initialise the padder.
  16045. @param random - a SecureRandom if available.
  16046. </member>
  16047. <member name="P:Org.BouncyCastle.Crypto.Paddings.ISO7816d4Padding.PaddingName">
  16048. Return the name of the algorithm the padder implements.
  16049. @return the name of the algorithm the padder implements.
  16050. </member>
  16051. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO7816d4Padding.AddPadding(System.Byte[],System.Int32)">
  16052. add the pad bytes to the passed in block, returning the
  16053. number of bytes added.
  16054. </member>
  16055. <member name="M:Org.BouncyCastle.Crypto.Paddings.ISO7816d4Padding.PadCount(System.Byte[])">
  16056. return the number of pad bytes present in the block.
  16057. </member>
  16058. <member name="T:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher">
  16059. A wrapper class that allows block ciphers to be used to process data in
  16060. a piecemeal fashion with padding. The PaddedBufferedBlockCipher
  16061. outputs a block only when the buffer is full and more data is being added,
  16062. or on a doFinal (unless the current block in the buffer is a pad block).
  16063. The default padding mechanism used is the one outlined in Pkcs5/Pkcs7.
  16064. </member>
  16065. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.Paddings.IBlockCipherPadding)">
  16066. Create a buffered block cipher with the desired padding.
  16067. @param cipher the underlying block cipher this buffering object wraps.
  16068. @param padding the padding type.
  16069. </member>
  16070. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  16071. Create a buffered block cipher Pkcs7 padding
  16072. @param cipher the underlying block cipher this buffering object wraps.
  16073. </member>
  16074. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  16075. initialise the cipher.
  16076. @param forEncryption if true the cipher is initialised for
  16077. encryption, if false for decryption.
  16078. @param param the key and other data required by the cipher.
  16079. @exception ArgumentException if the parameters argument is
  16080. inappropriate.
  16081. </member>
  16082. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.GetOutputSize(System.Int32)">
  16083. return the minimum size of the output buffer required for an update
  16084. plus a doFinal with an input of len bytes.
  16085. @param len the length of the input.
  16086. @return the space required to accommodate a call to update and doFinal
  16087. with len bytes of input.
  16088. </member>
  16089. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.GetUpdateOutputSize(System.Int32)">
  16090. return the size of the output buffer required for an update
  16091. an input of len bytes.
  16092. @param len the length of the input.
  16093. @return the space required to accommodate a call to update
  16094. with len bytes of input.
  16095. </member>
  16096. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  16097. process a single byte, producing an output block if necessary.
  16098. @param in the input byte.
  16099. @param out the space for any output that might be produced.
  16100. @param outOff the offset from which the output will be copied.
  16101. @return the number of output bytes copied to out.
  16102. @exception DataLengthException if there isn't enough space in out.
  16103. @exception InvalidOperationException if the cipher isn't initialised.
  16104. </member>
  16105. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  16106. process an array of bytes, producing output if necessary.
  16107. @param in the input byte array.
  16108. @param inOff the offset at which the input data starts.
  16109. @param len the number of bytes to be copied out of the input array.
  16110. @param out the space for any output that might be produced.
  16111. @param outOff the offset from which the output will be copied.
  16112. @return the number of output bytes copied to out.
  16113. @exception DataLengthException if there isn't enough space in out.
  16114. @exception InvalidOperationException if the cipher isn't initialised.
  16115. </member>
  16116. <member name="M:Org.BouncyCastle.Crypto.Paddings.PaddedBufferedBlockCipher.DoFinal(System.Byte[],System.Int32)">
  16117. Process the last block in the buffer. If the buffer is currently
  16118. full and padding needs to be added a call to doFinal will produce
  16119. 2 * GetBlockSize() bytes.
  16120. @param out the array the block currently being held is copied into.
  16121. @param outOff the offset at which the copying starts.
  16122. @return the number of output bytes copied to out.
  16123. @exception DataLengthException if there is insufficient space in out for
  16124. the output or we are decrypting and the input is not block size aligned.
  16125. @exception InvalidOperationException if the underlying cipher is not
  16126. initialised.
  16127. @exception InvalidCipherTextException if padding is expected and not found.
  16128. </member>
  16129. <member name="T:Org.BouncyCastle.Crypto.Paddings.Pkcs7Padding">
  16130. A padder that adds Pkcs7/Pkcs5 padding to a block.
  16131. </member>
  16132. <member name="M:Org.BouncyCastle.Crypto.Paddings.Pkcs7Padding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16133. Initialise the padder.
  16134. @param random - a SecureRandom if available.
  16135. </member>
  16136. <member name="P:Org.BouncyCastle.Crypto.Paddings.Pkcs7Padding.PaddingName">
  16137. Return the name of the algorithm the cipher implements.
  16138. @return the name of the algorithm the cipher implements.
  16139. </member>
  16140. <member name="M:Org.BouncyCastle.Crypto.Paddings.Pkcs7Padding.AddPadding(System.Byte[],System.Int32)">
  16141. add the pad bytes to the passed in block, returning the
  16142. number of bytes added.
  16143. </member>
  16144. <member name="M:Org.BouncyCastle.Crypto.Paddings.Pkcs7Padding.PadCount(System.Byte[])">
  16145. return the number of pad bytes present in the block.
  16146. </member>
  16147. <member name="T:Org.BouncyCastle.Crypto.Paddings.TbcPadding">
  16148. <summary> A padder that adds Trailing-Bit-Compliment padding to a block.
  16149. <p>
  16150. This padding pads the block out compliment of the last bit
  16151. of the plain text.
  16152. </p>
  16153. </summary>
  16154. </member>
  16155. <member name="P:Org.BouncyCastle.Crypto.Paddings.TbcPadding.PaddingName">
  16156. <summary> Return the name of the algorithm the cipher implements.</summary>
  16157. <returns> the name of the algorithm the cipher implements.
  16158. </returns>
  16159. </member>
  16160. <member name="M:Org.BouncyCastle.Crypto.Paddings.TbcPadding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16161. <summary> Initialise the padder.</summary>
  16162. <param name="random">- a SecureRandom if available.
  16163. </param>
  16164. </member>
  16165. <member name="M:Org.BouncyCastle.Crypto.Paddings.TbcPadding.AddPadding(System.Byte[],System.Int32)">
  16166. <summary> add the pad bytes to the passed in block, returning the
  16167. number of bytes added.
  16168. <p>
  16169. Note: this assumes that the last block of plain text is always
  16170. passed to it inside in. i.e. if inOff is zero, indicating the
  16171. entire block is to be overwritten with padding the value of in
  16172. should be the same as the last block of plain text.
  16173. </p>
  16174. </summary>
  16175. </member>
  16176. <member name="M:Org.BouncyCastle.Crypto.Paddings.TbcPadding.PadCount(System.Byte[])">
  16177. <summary> return the number of pad bytes present in the block.</summary>
  16178. </member>
  16179. <member name="T:Org.BouncyCastle.Crypto.Paddings.X923Padding">
  16180. A padder that adds X9.23 padding to a block - if a SecureRandom is
  16181. passed in random padding is assumed, otherwise padding with zeros is used.
  16182. </member>
  16183. <member name="M:Org.BouncyCastle.Crypto.Paddings.X923Padding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16184. Initialise the padder.
  16185. @param random a SecureRandom if one is available.
  16186. </member>
  16187. <member name="P:Org.BouncyCastle.Crypto.Paddings.X923Padding.PaddingName">
  16188. Return the name of the algorithm the cipher implements.
  16189. @return the name of the algorithm the cipher implements.
  16190. </member>
  16191. <member name="M:Org.BouncyCastle.Crypto.Paddings.X923Padding.AddPadding(System.Byte[],System.Int32)">
  16192. add the pad bytes to the passed in block, returning the
  16193. number of bytes added.
  16194. </member>
  16195. <member name="M:Org.BouncyCastle.Crypto.Paddings.X923Padding.PadCount(System.Byte[])">
  16196. return the number of pad bytes present in the block.
  16197. </member>
  16198. <member name="T:Org.BouncyCastle.Crypto.Paddings.ZeroBytePadding">
  16199. <summary> A padder that adds Null byte padding to a block.</summary>
  16200. </member>
  16201. <member name="P:Org.BouncyCastle.Crypto.Paddings.ZeroBytePadding.PaddingName">
  16202. <summary> Return the name of the algorithm the cipher implements.
  16203. </summary>
  16204. <returns> the name of the algorithm the cipher implements.
  16205. </returns>
  16206. </member>
  16207. <member name="M:Org.BouncyCastle.Crypto.Paddings.ZeroBytePadding.Init(Org.BouncyCastle.Security.SecureRandom)">
  16208. <summary> Initialise the padder.
  16209. </summary>
  16210. <param name="random">- a SecureRandom if available.
  16211. </param>
  16212. </member>
  16213. <member name="M:Org.BouncyCastle.Crypto.Paddings.ZeroBytePadding.AddPadding(System.Byte[],System.Int32)">
  16214. <summary> add the pad bytes to the passed in block, returning the
  16215. number of bytes added.
  16216. </summary>
  16217. </member>
  16218. <member name="M:Org.BouncyCastle.Crypto.Paddings.ZeroBytePadding.PadCount(System.Byte[])">
  16219. <summary> return the number of pad bytes present in the block.</summary>
  16220. </member>
  16221. <member name="M:Org.BouncyCastle.Crypto.Parameters.AeadParameters.#ctor(Org.BouncyCastle.Crypto.Parameters.KeyParameter,System.Int32,System.Byte[])">
  16222. Base constructor.
  16223. @param key key to be used by underlying cipher
  16224. @param macSize macSize in bits
  16225. @param nonce nonce to be used
  16226. </member>
  16227. <member name="M:Org.BouncyCastle.Crypto.Parameters.AeadParameters.#ctor(Org.BouncyCastle.Crypto.Parameters.KeyParameter,System.Int32,System.Byte[],System.Byte[])">
  16228. Base constructor.
  16229. @param key key to be used by underlying cipher
  16230. @param macSize macSize in bits
  16231. @param nonce nonce to be used
  16232. @param associatedText associated text, if any
  16233. </member>
  16234. <member name="M:Org.BouncyCastle.Crypto.Parameters.CcmParameters.#ctor(Org.BouncyCastle.Crypto.Parameters.KeyParameter,System.Int32,System.Byte[],System.Byte[])">
  16235. Base constructor.
  16236. @param key key to be used by underlying cipher
  16237. @param macSize macSize in bits
  16238. @param nonce nonce to be used
  16239. @param associatedText associated text, if any
  16240. </member>
  16241. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesEdeParameters.IsWeakKey(System.Byte[],System.Int32,System.Int32)">
  16242. return true if the passed in key is a DES-EDE weak key.
  16243. @param key bytes making up the key
  16244. @param offset offset into the byte array the key starts at
  16245. @param length number of bytes making up the key
  16246. </member>
  16247. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesEdeParameters.IsWeakKey(System.Byte[],System.Int32)">
  16248. return true if the passed in key is a DES-EDE weak key.
  16249. @param key bytes making up the key
  16250. @param offset offset into the byte array the key starts at
  16251. </member>
  16252. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesEdeParameters.IsRealEdeKey(System.Byte[],System.Int32)">
  16253. return true if the passed in key is a real 2/3 part DES-EDE key.
  16254. @param key bytes making up the key
  16255. @param offset offset into the byte array the key starts at
  16256. </member>
  16257. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesEdeParameters.IsReal2Key(System.Byte[],System.Int32)">
  16258. return true if the passed in key is a real 2 part DES-EDE key.
  16259. @param key bytes making up the key
  16260. @param offset offset into the byte array the key starts at
  16261. </member>
  16262. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesEdeParameters.IsReal3Key(System.Byte[],System.Int32)">
  16263. return true if the passed in key is a real 3 part DES-EDE key.
  16264. @param key bytes making up the key
  16265. @param offset offset into the byte array the key starts at
  16266. </member>
  16267. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesParameters.IsWeakKey(System.Byte[],System.Int32)">
  16268. DES has 16 weak keys. This method will check
  16269. if the given DES key material is weak or semi-weak.
  16270. Key material that is too short is regarded as weak.
  16271. <p>
  16272. See <a href="http://www.counterpane.com/applied.html">"Applied
  16273. Cryptography"</a> by Bruce Schneier for more information.
  16274. </p>
  16275. @return true if the given DES key material is weak or semi-weak,
  16276. false otherwise.
  16277. </member>
  16278. <member name="M:Org.BouncyCastle.Crypto.Parameters.DesParameters.SetOddParity(System.Byte[])">
  16279. DES Keys use the LSB as the odd parity bit. This can
  16280. be used to check for corrupt keys.
  16281. @param bytes the byte array to set the parity on.
  16282. </member>
  16283. <member name="P:Org.BouncyCastle.Crypto.Parameters.DHParameters.M">
  16284. <summary>The minimum bitlength of the private value.</summary>
  16285. </member>
  16286. <member name="P:Org.BouncyCastle.Crypto.Parameters.DHParameters.L">
  16287. <summary>The bitlength of the private value.</summary>
  16288. </member>
  16289. <member name="M:Org.BouncyCastle.Crypto.Parameters.DsaParameterGenerationParameters.#ctor(System.Int32,System.Int32,System.Int32,Org.BouncyCastle.Security.SecureRandom)">
  16290. Construct without a usage index, this will do a random construction of G.
  16291. @param L desired length of prime P in bits (the effective key size).
  16292. @param N desired length of prime Q in bits.
  16293. @param certainty certainty level for prime number generation.
  16294. @param random the source of randomness to use.
  16295. </member>
  16296. <member name="M:Org.BouncyCastle.Crypto.Parameters.DsaParameterGenerationParameters.#ctor(System.Int32,System.Int32,System.Int32,Org.BouncyCastle.Security.SecureRandom,System.Int32)">
  16297. Construct for a specific usage index - this has the effect of using verifiable canonical generation of G.
  16298. @param L desired length of prime P in bits (the effective key size).
  16299. @param N desired length of prime Q in bits.
  16300. @param certainty certainty level for prime number generation.
  16301. @param random the source of randomness to use.
  16302. @param usageIndex a valid usage index.
  16303. </member>
  16304. <member name="P:Org.BouncyCastle.Crypto.Parameters.ElGamalParameters.G">
  16305. return the generator - g
  16306. </member>
  16307. <member name="P:Org.BouncyCastle.Crypto.Parameters.ElGamalParameters.L">
  16308. return private value limit - l
  16309. </member>
  16310. <member name="T:Org.BouncyCastle.Crypto.Parameters.HkdfParameters">
  16311. Parameter class for the HkdfBytesGenerator class.
  16312. </member>
  16313. <member name="M:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.#ctor(System.Byte[],System.Byte[],System.Byte[])">
  16314. Generates parameters for HKDF, specifying both the optional salt and
  16315. optional info. Step 1: Extract won't be skipped.
  16316. @param ikm the input keying material or seed
  16317. @param salt the salt to use, may be null for a salt for hashLen zeros
  16318. @param info the info to use, may be null for an info field of zero bytes
  16319. </member>
  16320. <member name="M:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.SkipExtractParameters(System.Byte[],System.Byte[])">
  16321. Factory method that makes the HKDF skip the extract part of the key
  16322. derivation function.
  16323. @param ikm the input keying material or seed, directly used for step 2:
  16324. Expand
  16325. @param info the info to use, may be null for an info field of zero bytes
  16326. @return HKDFParameters that makes the implementation skip step 1
  16327. </member>
  16328. <member name="M:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.GetIkm">
  16329. Returns the input keying material or seed.
  16330. @return the keying material
  16331. </member>
  16332. <member name="P:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.SkipExtract">
  16333. Returns if step 1: extract has to be skipped or not
  16334. @return true for skipping, false for no skipping of step 1
  16335. </member>
  16336. <member name="M:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.GetSalt">
  16337. Returns the salt, or null if the salt should be generated as a byte array
  16338. of HashLen zeros.
  16339. @return the salt, or null
  16340. </member>
  16341. <member name="M:Org.BouncyCastle.Crypto.Parameters.HkdfParameters.GetInfo">
  16342. Returns the info field, which may be empty (null is converted to empty).
  16343. @return the info field, never null
  16344. </member>
  16345. <member name="T:Org.BouncyCastle.Crypto.Parameters.IesParameters">
  16346. parameters for using an integrated cipher in stream mode.
  16347. </member>
  16348. <member name="M:Org.BouncyCastle.Crypto.Parameters.IesParameters.#ctor(System.Byte[],System.Byte[],System.Int32)">
  16349. @param derivation the derivation parameter for the KDF function.
  16350. @param encoding the encoding parameter for the KDF function.
  16351. @param macKeySize the size of the MAC key (in bits).
  16352. </member>
  16353. <member name="M:Org.BouncyCastle.Crypto.Parameters.IesWithCipherParameters.#ctor(System.Byte[],System.Byte[],System.Int32,System.Int32)">
  16354. @param derivation the derivation parameter for the KDF function.
  16355. @param encoding the encoding parameter for the KDF function.
  16356. @param macKeySize the size of the MAC key (in bits).
  16357. @param cipherKeySize the size of the associated Cipher key (in bits).
  16358. </member>
  16359. <member name="T:Org.BouncyCastle.Crypto.Parameters.Iso18033KdfParameters">
  16360. parameters for Key derivation functions for ISO-18033
  16361. </member>
  16362. <member name="T:Org.BouncyCastle.Crypto.Parameters.KdfParameters">
  16363. parameters for Key derivation functions for IEEE P1363a
  16364. </member>
  16365. <member name="T:Org.BouncyCastle.Crypto.Parameters.MgfParameters">
  16366. <remarks>Parameters for mask derivation functions.</remarks>
  16367. </member>
  16368. <member name="T:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyGenerationParameters">
  16369. Parameters for NaccacheStern public private key generation. For details on
  16370. this cipher, please see
  16371. http://www.gemplus.com/smart/rd/publications/pdf/NS98pkcs.pdf
  16372. </member>
  16373. <member name="M:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyGenerationParameters.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Int32,System.Int32,System.Int32)">
  16374. Parameters for generating a NaccacheStern KeyPair.
  16375. @param random
  16376. The source of randomness
  16377. @param strength
  16378. The desired strength of the Key in Bits
  16379. @param certainty
  16380. the probability that the generated primes are not really prime
  16381. as integer: 2^(-certainty) is then the probability
  16382. @param countSmallPrimes
  16383. How many small key factors are desired
  16384. </member>
  16385. <member name="M:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyGenerationParameters.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Int32,System.Int32,System.Int32,System.Boolean)">
  16386. * Parameters for a NaccacheStern KeyPair.
  16387. *
  16388. * @param random
  16389. * The source of randomness
  16390. * @param strength
  16391. * The desired strength of the Key in Bits
  16392. * @param certainty
  16393. * the probability that the generated primes are not really prime
  16394. * as integer: 2^(-certainty) is then the probability
  16395. * @param cntSmallPrimes
  16396. * How many small key factors are desired
  16397. * @param debug
  16398. * Ignored
  16399. </member>
  16400. <member name="P:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyGenerationParameters.Certainty">
  16401. @return Returns the certainty.
  16402. </member>
  16403. <member name="P:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyGenerationParameters.CountSmallPrimes">
  16404. @return Returns the countSmallPrimes.
  16405. </member>
  16406. <member name="T:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyParameters">
  16407. Public key parameters for NaccacheStern cipher. For details on this cipher,
  16408. please see
  16409. http://www.gemplus.com/smart/rd/publications/pdf/NS98pkcs.pdf
  16410. </member>
  16411. <member name="M:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyParameters.#ctor(System.Boolean,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.Int32)">
  16412. @param privateKey
  16413. </member>
  16414. <member name="P:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyParameters.G">
  16415. @return Returns the g.
  16416. </member>
  16417. <member name="P:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyParameters.LowerSigmaBound">
  16418. @return Returns the lowerSigmaBound.
  16419. </member>
  16420. <member name="P:Org.BouncyCastle.Crypto.Parameters.NaccacheSternKeyParameters.Modulus">
  16421. @return Returns the n.
  16422. </member>
  16423. <member name="T:Org.BouncyCastle.Crypto.Parameters.NaccacheSternPrivateKeyParameters">
  16424. Private key parameters for NaccacheStern cipher. For details on this cipher,
  16425. please see
  16426. http://www.gemplus.com/smart/rd/publications/pdf/NS98pkcs.pdf
  16427. </member>
  16428. <member name="M:Org.BouncyCastle.Crypto.Parameters.NaccacheSternPrivateKeyParameters.#ctor(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.Int32,System.Collections.IList,Org.BouncyCastle.Math.BigInteger)">
  16429. Constructs a NaccacheSternPrivateKey
  16430. @param g
  16431. the public enryption parameter g
  16432. @param n
  16433. the public modulus n = p*q
  16434. @param lowerSigmaBound
  16435. the public lower sigma bound up to which data can be encrypted
  16436. @param smallPrimes
  16437. the small primes, of which sigma is constructed in the right
  16438. order
  16439. @param phi_n
  16440. the private modulus phi(n) = (p-1)(q-1)
  16441. </member>
  16442. <member name="T:Org.BouncyCastle.Crypto.Parameters.ParametersWithSalt">
  16443. <summary> Cipher parameters with a fixed salt value associated with them.</summary>
  16444. </member>
  16445. <member name="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters">
  16446. <summary>
  16447. Parameters for the Skein hash function - a series of byte[] strings identified by integer tags.
  16448. </summary>
  16449. <remarks>
  16450. Parameterised Skein can be used for:
  16451. <ul>
  16452. <li>MAC generation, by providing a <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetKey(System.Byte[])">key</see>.</li>
  16453. <li>Randomised hashing, by providing a <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetNonce(System.Byte[])">nonce</see>.</li>
  16454. <li>A hash function for digital signatures, associating a
  16455. <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPublicKey(System.Byte[])">public key</see> with the message digest.</li>
  16456. <li>A key derivation function, by providing a
  16457. <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetKeyIdentifier(System.Byte[])">key identifier</see>.</li>
  16458. <li>Personalised hashing, by providing a
  16459. <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPersonalisation(System.DateTime,System.String,System.String)">recommended format</see> or
  16460. <see cref="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPersonalisation(System.Byte[])">arbitrary</see> personalisation string.</li>
  16461. </ul>
  16462. </remarks>
  16463. <seealso cref="T:Org.BouncyCastle.Crypto.Digests.SkeinEngine"/>
  16464. <seealso cref="T:Org.BouncyCastle.Crypto.Digests.SkeinDigest"/>
  16465. <seealso cref="T:Org.BouncyCastle.Crypto.Macs.SkeinMac"/>
  16466. </member>
  16467. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY">
  16468. <summary>
  16469. The parameter type for a secret key, supporting MAC or KDF functions: 0
  16470. </summary>
  16471. </member>
  16472. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_CONFIG">
  16473. <summary>
  16474. The parameter type for the Skein configuration block: 4
  16475. </summary>
  16476. </member>
  16477. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_PERSONALISATION">
  16478. <summary>
  16479. The parameter type for a personalisation string: 8
  16480. </summary>
  16481. </member>
  16482. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_PUBLIC_KEY">
  16483. <summary>
  16484. The parameter type for a public key: 12
  16485. </summary>
  16486. </member>
  16487. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY_IDENTIFIER">
  16488. <summary>
  16489. The parameter type for a key identifier string: 16
  16490. </summary>
  16491. </member>
  16492. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_NONCE">
  16493. <summary>
  16494. The parameter type for a nonce: 20
  16495. </summary>
  16496. </member>
  16497. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_MESSAGE">
  16498. <summary>
  16499. The parameter type for the message: 48
  16500. </summary>
  16501. </member>
  16502. <member name="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_OUTPUT">
  16503. <summary>
  16504. The parameter type for the output transformation: 63
  16505. </summary>
  16506. </member>
  16507. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetParameters">
  16508. <summary>
  16509. Obtains a map of type (int) to value (byte[]) for the parameters tracked in this object.
  16510. </summary>
  16511. </member>
  16512. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetKey">
  16513. <summary>
  16514. Obtains the value of the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY">key parameter</see>, or <code>null</code> if not
  16515. set.
  16516. </summary>
  16517. <returns>The key.</returns>
  16518. </member>
  16519. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetPersonalisation">
  16520. <summary>
  16521. Obtains the value of the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_PERSONALISATION">personalisation parameter</see>, or
  16522. <code>null</code> if not set.
  16523. </summary>
  16524. </member>
  16525. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetPublicKey">
  16526. <summary>
  16527. Obtains the value of the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_PUBLIC_KEY">public key parameter</see>, or
  16528. <code>null</code> if not set.
  16529. </summary>
  16530. </member>
  16531. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetKeyIdentifier">
  16532. <summary>
  16533. Obtains the value of the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY_IDENTIFIER">key identifier parameter</see>, or
  16534. <code>null</code> if not set.
  16535. </summary>
  16536. </member>
  16537. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.GetNonce">
  16538. <summary>
  16539. Obtains the value of the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_NONCE">nonce parameter</see>, or <code>null</code> if
  16540. not set.
  16541. </summary>
  16542. </member>
  16543. <member name="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder">
  16544. <summary>
  16545. A builder for <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/>.
  16546. </summary>
  16547. </member>
  16548. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.Set(System.Int32,System.Byte[])">
  16549. <summary>
  16550. Sets a parameters to apply to the Skein hash function.
  16551. </summary>
  16552. <remarks>
  16553. Parameter types must be in the range 0,5..62, and cannot use the value 48
  16554. (reserved for message body).
  16555. <p/>
  16556. Parameters with type &lt; 48 are processed before
  16557. the message content, parameters with type &gt; 48
  16558. are processed after the message and prior to output.
  16559. </remarks>
  16560. <param name="type">the type of the parameter, in the range 5..62.</param>
  16561. <param name="value">the byte sequence of the parameter.</param>
  16562. </member>
  16563. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetKey(System.Byte[])">
  16564. <summary>
  16565. Sets the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY"/> parameter.
  16566. </summary>
  16567. </member>
  16568. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPersonalisation(System.Byte[])">
  16569. <summary>
  16570. Sets the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_PERSONALISATION"/> parameter.
  16571. </summary>
  16572. </member>
  16573. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPersonalisation(System.DateTime,System.String,System.String)">
  16574. <summary>
  16575. Implements the recommended personalisation format for Skein defined in Section 4.11 of
  16576. the Skein 1.3 specification.
  16577. </summary>
  16578. <remarks>
  16579. The format is <code>YYYYMMDD email@address distinguisher</code>, encoded to a byte
  16580. sequence using UTF-8 encoding.
  16581. </remarks>
  16582. <param name="date">the date the personalised application of the Skein was defined.</param>
  16583. <param name="emailAddress">the email address of the creation of the personalised application.</param>
  16584. <param name="distinguisher">an arbitrary personalisation string distinguishing the application.</param>
  16585. </member>
  16586. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetPublicKey(System.Byte[])">
  16587. <summary>
  16588. Sets the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY_IDENTIFIER"/> parameter.
  16589. </summary>
  16590. </member>
  16591. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetKeyIdentifier(System.Byte[])">
  16592. <summary>
  16593. Sets the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_KEY_IDENTIFIER"/> parameter.
  16594. </summary>
  16595. </member>
  16596. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.SetNonce(System.Byte[])">
  16597. <summary>
  16598. Sets the <see cref="F:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.PARAM_TYPE_NONCE"/> parameter.
  16599. </summary>
  16600. </member>
  16601. <member name="M:Org.BouncyCastle.Crypto.Parameters.SkeinParameters.Builder.Build">
  16602. <summary>
  16603. Constructs a new <see cref="T:Org.BouncyCastle.Crypto.Parameters.SkeinParameters"/> instance with the parameters provided to this
  16604. builder.
  16605. </summary>
  16606. </member>
  16607. <member name="T:Org.BouncyCastle.Crypto.Parameters.SM2KeyExchangePrivateParameters">
  16608. <summary>Private parameters for an SM2 key exchange.</summary>
  16609. <remarks>The ephemeralPrivateKey is used to calculate the random point used in the algorithm.</remarks>
  16610. </member>
  16611. <member name="T:Org.BouncyCastle.Crypto.Parameters.SM2KeyExchangePublicParameters">
  16612. <summary>Public parameters for an SM2 key exchange.</summary>
  16613. <remarks>In this case the ephemeralPublicKey provides the random point used in the algorithm.</remarks>
  16614. </member>
  16615. <member name="T:Org.BouncyCastle.Crypto.Parameters.TweakableBlockCipherParameters">
  16616. <summary>
  16617. Parameters for tweakable block ciphers.
  16618. </summary>
  16619. </member>
  16620. <member name="P:Org.BouncyCastle.Crypto.Parameters.TweakableBlockCipherParameters.Key">
  16621. <summary>
  16622. Gets the key.
  16623. </summary>
  16624. <value>the key to use, or <code>null</code> to use the current key.</value>
  16625. </member>
  16626. <member name="P:Org.BouncyCastle.Crypto.Parameters.TweakableBlockCipherParameters.Tweak">
  16627. <summary>
  16628. Gets the tweak value.
  16629. </summary>
  16630. <value>The tweak to use, or <code>null</code> to use the current tweak.</value>
  16631. </member>
  16632. <member name="T:Org.BouncyCastle.Crypto.PbeParametersGenerator">
  16633. super class for all Password Based Encyrption (Pbe) parameter generator classes.
  16634. </member>
  16635. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.#ctor">
  16636. base constructor.
  16637. </member>
  16638. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.Init(System.Byte[],System.Byte[],System.Int32)">
  16639. initialise the Pbe generator.
  16640. @param password the password converted into bytes (see below).
  16641. @param salt the salt to be mixed with the password.
  16642. @param iterationCount the number of iterations the "mixing" function
  16643. is to be applied for.
  16644. </member>
  16645. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.GetPassword">
  16646. return the password byte array.
  16647. @return the password byte array.
  16648. </member>
  16649. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.GetSalt">
  16650. return the salt byte array.
  16651. @return the salt byte array.
  16652. </member>
  16653. <member name="P:Org.BouncyCastle.Crypto.PbeParametersGenerator.IterationCount">
  16654. return the iteration count.
  16655. @return the iteration count.
  16656. </member>
  16657. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.GenerateDerivedParameters(System.Int32)">
  16658. Generate derived parameters for a key of length keySize.
  16659. @param keySize the length, in bits, of the key required.
  16660. @return a parameters object representing a key.
  16661. </member>
  16662. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.GenerateDerivedParameters(System.Int32,System.Int32)">
  16663. Generate derived parameters for a key of length keySize, and
  16664. an initialisation vector (IV) of length ivSize.
  16665. @param keySize the length, in bits, of the key required.
  16666. @param ivSize the length, in bits, of the iv required.
  16667. @return a parameters object representing a key and an IV.
  16668. </member>
  16669. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.GenerateDerivedMacParameters(System.Int32)">
  16670. Generate derived parameters for a key of length keySize, specifically
  16671. for use with a MAC.
  16672. @param keySize the length, in bits, of the key required.
  16673. @return a parameters object representing a key.
  16674. </member>
  16675. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.Pkcs5PasswordToBytes(System.Char[])">
  16676. converts a password to a byte array according to the scheme in
  16677. Pkcs5 (ascii, no padding)
  16678. @param password a character array representing the password.
  16679. @return a byte array representing the password.
  16680. </member>
  16681. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.Pkcs5PasswordToUtf8Bytes(System.Char[])">
  16682. converts a password to a byte array according to the scheme in
  16683. PKCS5 (UTF-8, no padding)
  16684. @param password a character array representing the password.
  16685. @return a byte array representing the password.
  16686. </member>
  16687. <member name="M:Org.BouncyCastle.Crypto.PbeParametersGenerator.Pkcs12PasswordToBytes(System.Char[])">
  16688. converts a password to a byte array according to the scheme in
  16689. Pkcs12 (unicode, big endian, 2 zero pad bytes at the end).
  16690. @param password a character array representing the password.
  16691. @return a byte array representing the password.
  16692. </member>
  16693. <member name="T:Org.BouncyCastle.Crypto.Prng.BasicEntropySourceProvider">
  16694. An EntropySourceProvider where entropy generation is based on a SecureRandom output using SecureRandom.generateSeed().
  16695. </member>
  16696. <member name="M:Org.BouncyCastle.Crypto.Prng.BasicEntropySourceProvider.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Boolean)">
  16697. Create a entropy source provider based on the passed in SecureRandom.
  16698. @param secureRandom the SecureRandom to base EntropySource construction on.
  16699. @param isPredictionResistant boolean indicating if the SecureRandom is based on prediction resistant entropy or not (true if it is).
  16700. </member>
  16701. <member name="M:Org.BouncyCastle.Crypto.Prng.BasicEntropySourceProvider.Get(System.Int32)">
  16702. Return an entropy source that will create bitsRequired bits of entropy on
  16703. each invocation of getEntropy().
  16704. @param bitsRequired size (in bits) of entropy to be created by the provided source.
  16705. @return an EntropySource that generates bitsRequired bits of entropy on each call to its getEntropy() method.
  16706. </member>
  16707. <member name="T:Org.BouncyCastle.Crypto.Prng.CryptoApiRandomGenerator">
  16708. <summary>
  16709. Uses RandomNumberGenerator.Create() to get randomness generator
  16710. </summary>
  16711. </member>
  16712. <member name="T:Org.BouncyCastle.Crypto.Prng.DigestRandomGenerator">
  16713. Random generation based on the digest with counter. Calling AddSeedMaterial will
  16714. always increase the entropy of the hash.
  16715. <p>
  16716. Internal access to the digest is synchronized so a single one of these can be shared.
  16717. </p>
  16718. </member>
  16719. <member name="T:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg">
  16720. A SP800-90A CTR DRBG.
  16721. </member>
  16722. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,System.Int32,Org.BouncyCastle.Crypto.IEntropySource,System.Byte[],System.Byte[])">
  16723. Construct a SP800-90A CTR DRBG.
  16724. <p>
  16725. Minimum entropy requirement is the security strength requested.
  16726. </p>
  16727. @param engine underlying block cipher to use to support DRBG
  16728. @param keySizeInBits size of the key to use with the block cipher.
  16729. @param securityStrength security strength required (in bits)
  16730. @param entropySource source of entropy to use for seeding/reseeding.
  16731. @param personalizationString personalization string to distinguish this DRBG (may be null).
  16732. @param nonce nonce to further distinguish this DRBG (may be null).
  16733. </member>
  16734. <member name="P:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg.BlockSize">
  16735. Return the block size (in bits) of the DRBG.
  16736. @return the number of bits produced on each internal round of the DRBG.
  16737. </member>
  16738. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg.Generate(System.Byte[],System.Byte[],System.Boolean)">
  16739. Populate a passed in array with random data.
  16740. @param output output array for generated bits.
  16741. @param additionalInput additional input to be added to the DRBG in this step.
  16742. @param predictionResistant true if a reseed should be forced, false otherwise.
  16743. @return number of bits generated, -1 if a reseed required.
  16744. </member>
  16745. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg.Reseed(System.Byte[])">
  16746. Reseed the DRBG.
  16747. @param additionalInput additional input to be added to the DRBG in this step.
  16748. </member>
  16749. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.CtrSP800Drbg.PadKey(System.Byte[],System.Int32,System.Byte[],System.Int32)">
  16750. Pad out a key for TDEA, setting odd parity for each byte.
  16751. @param keyMaster
  16752. @param keyOff
  16753. @param tmp
  16754. @param tmpOff
  16755. </member>
  16756. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.DrbgUtilities.HashDF(Org.BouncyCastle.Crypto.IDigest,System.Byte[],System.Int32)">
  16757. Used by both Dual EC and Hash.
  16758. </member>
  16759. <member name="T:Org.BouncyCastle.Crypto.Prng.Drbg.HashSP800Drbg">
  16760. A SP800-90A Hash DRBG.
  16761. </member>
  16762. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HashSP800Drbg.#ctor(Org.BouncyCastle.Crypto.IDigest,System.Int32,Org.BouncyCastle.Crypto.IEntropySource,System.Byte[],System.Byte[])">
  16763. Construct a SP800-90A Hash DRBG.
  16764. <p>
  16765. Minimum entropy requirement is the security strength requested.
  16766. </p>
  16767. @param digest source digest to use for DRB stream.
  16768. @param securityStrength security strength required (in bits)
  16769. @param entropySource source of entropy to use for seeding/reseeding.
  16770. @param personalizationString personalization string to distinguish this DRBG (may be null).
  16771. @param nonce nonce to further distinguish this DRBG (may be null).
  16772. </member>
  16773. <member name="P:Org.BouncyCastle.Crypto.Prng.Drbg.HashSP800Drbg.BlockSize">
  16774. Return the block size (in bits) of the DRBG.
  16775. @return the number of bits produced on each internal round of the DRBG.
  16776. </member>
  16777. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HashSP800Drbg.Generate(System.Byte[],System.Byte[],System.Boolean)">
  16778. Populate a passed in array with random data.
  16779. @param output output array for generated bits.
  16780. @param additionalInput additional input to be added to the DRBG in this step.
  16781. @param predictionResistant true if a reseed should be forced, false otherwise.
  16782. @return number of bits generated, -1 if a reseed required.
  16783. </member>
  16784. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HashSP800Drbg.Reseed(System.Byte[])">
  16785. Reseed the DRBG.
  16786. @param additionalInput additional input to be added to the DRBG in this step.
  16787. </member>
  16788. <member name="T:Org.BouncyCastle.Crypto.Prng.Drbg.HMacSP800Drbg">
  16789. A SP800-90A HMAC DRBG.
  16790. </member>
  16791. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HMacSP800Drbg.#ctor(Org.BouncyCastle.Crypto.IMac,System.Int32,Org.BouncyCastle.Crypto.IEntropySource,System.Byte[],System.Byte[])">
  16792. Construct a SP800-90A Hash DRBG.
  16793. <p>
  16794. Minimum entropy requirement is the security strength requested.
  16795. </p>
  16796. @param hMac Hash MAC to base the DRBG on.
  16797. @param securityStrength security strength required (in bits)
  16798. @param entropySource source of entropy to use for seeding/reseeding.
  16799. @param personalizationString personalization string to distinguish this DRBG (may be null).
  16800. @param nonce nonce to further distinguish this DRBG (may be null).
  16801. </member>
  16802. <member name="P:Org.BouncyCastle.Crypto.Prng.Drbg.HMacSP800Drbg.BlockSize">
  16803. Return the block size (in bits) of the DRBG.
  16804. @return the number of bits produced on each round of the DRBG.
  16805. </member>
  16806. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HMacSP800Drbg.Generate(System.Byte[],System.Byte[],System.Boolean)">
  16807. Populate a passed in array with random data.
  16808. @param output output array for generated bits.
  16809. @param additionalInput additional input to be added to the DRBG in this step.
  16810. @param predictionResistant true if a reseed should be forced, false otherwise.
  16811. @return number of bits generated, -1 if a reseed required.
  16812. </member>
  16813. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.HMacSP800Drbg.Reseed(System.Byte[])">
  16814. Reseed the DRBG.
  16815. @param additionalInput additional input to be added to the DRBG in this step.
  16816. </member>
  16817. <member name="T:Org.BouncyCastle.Crypto.Prng.Drbg.ISP80090Drbg">
  16818. Interface to SP800-90A deterministic random bit generators.
  16819. </member>
  16820. <member name="P:Org.BouncyCastle.Crypto.Prng.Drbg.ISP80090Drbg.BlockSize">
  16821. Return the block size of the DRBG.
  16822. @return the block size (in bits) produced by each round of the DRBG.
  16823. </member>
  16824. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.ISP80090Drbg.Generate(System.Byte[],System.Byte[],System.Boolean)">
  16825. Populate a passed in array with random data.
  16826. @param output output array for generated bits.
  16827. @param additionalInput additional input to be added to the DRBG in this step.
  16828. @param predictionResistant true if a reseed should be forced, false otherwise.
  16829. @return number of bits generated, -1 if a reseed required.
  16830. </member>
  16831. <member name="M:Org.BouncyCastle.Crypto.Prng.Drbg.ISP80090Drbg.Reseed(System.Byte[])">
  16832. Reseed the DRBG.
  16833. @param additionalInput additional input to be added to the DRBG in this step.
  16834. </member>
  16835. <member name="M:Org.BouncyCastle.Crypto.Prng.EntropyUtilities.GenerateSeed(Org.BouncyCastle.Crypto.IEntropySource,System.Int32)">
  16836. Generate numBytes worth of entropy from the passed in entropy source.
  16837. @param entropySource the entropy source to request the data from.
  16838. @param numBytes the number of bytes of entropy requested.
  16839. @return a byte array populated with the random data.
  16840. </member>
  16841. <member name="T:Org.BouncyCastle.Crypto.Prng.IRandomGenerator">
  16842. <remarks>Generic interface for objects generating random bytes.</remarks>
  16843. </member>
  16844. <member name="M:Org.BouncyCastle.Crypto.Prng.IRandomGenerator.AddSeedMaterial(System.Byte[])">
  16845. <summary>Add more seed material to the generator.</summary>
  16846. <param name="seed">A byte array to be mixed into the generator's state.</param>
  16847. </member>
  16848. <member name="M:Org.BouncyCastle.Crypto.Prng.IRandomGenerator.AddSeedMaterial(System.Int64)">
  16849. <summary>Add more seed material to the generator.</summary>
  16850. <param name="seed">A long value to be mixed into the generator's state.</param>
  16851. </member>
  16852. <member name="M:Org.BouncyCastle.Crypto.Prng.IRandomGenerator.NextBytes(System.Byte[])">
  16853. <summary>Fill byte array with random values.</summary>
  16854. <param name="bytes">Array to be filled.</param>
  16855. </member>
  16856. <member name="M:Org.BouncyCastle.Crypto.Prng.IRandomGenerator.NextBytes(System.Byte[],System.Int32,System.Int32)">
  16857. <summary>Fill byte array with random values.</summary>
  16858. <param name="bytes">Array to receive bytes.</param>
  16859. <param name="start">Index to start filling at.</param>
  16860. <param name="len">Length of segment to fill.</param>
  16861. </member>
  16862. <member name="T:Org.BouncyCastle.Crypto.Prng.ReversedWindowGenerator">
  16863. <remarks>
  16864. Takes bytes generated by an underling RandomGenerator and reverses the order in
  16865. each small window (of configurable size).
  16866. <p>
  16867. Access to internals is synchronized so a single one of these can be shared.
  16868. </p>
  16869. </remarks>
  16870. </member>
  16871. <member name="M:Org.BouncyCastle.Crypto.Prng.ReversedWindowGenerator.AddSeedMaterial(System.Byte[])">
  16872. <summary>Add more seed material to the generator.</summary>
  16873. <param name="seed">A byte array to be mixed into the generator's state.</param>
  16874. </member>
  16875. <member name="M:Org.BouncyCastle.Crypto.Prng.ReversedWindowGenerator.AddSeedMaterial(System.Int64)">
  16876. <summary>Add more seed material to the generator.</summary>
  16877. <param name="seed">A long value to be mixed into the generator's state.</param>
  16878. </member>
  16879. <member name="M:Org.BouncyCastle.Crypto.Prng.ReversedWindowGenerator.NextBytes(System.Byte[])">
  16880. <summary>Fill byte array with random values.</summary>
  16881. <param name="bytes">Array to be filled.</param>
  16882. </member>
  16883. <member name="M:Org.BouncyCastle.Crypto.Prng.ReversedWindowGenerator.NextBytes(System.Byte[],System.Int32,System.Int32)">
  16884. <summary>Fill byte array with random values.</summary>
  16885. <param name="bytes">Array to receive bytes.</param>
  16886. <param name="start">Index to start filling at.</param>
  16887. <param name="len">Length of segment to fill.</param>
  16888. </member>
  16889. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandom.Reseed(System.Byte[])">
  16890. <summary>Force a reseed of the DRBG.</summary>
  16891. <param name="additionalInput">optional additional input</param>
  16892. </member>
  16893. <member name="T:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder">
  16894. Builder class for making SecureRandom objects based on SP 800-90A Deterministic Random Bit Generators (DRBG).
  16895. </member>
  16896. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.#ctor">
  16897. Basic constructor, creates a builder using an EntropySourceProvider based on the default SecureRandom with
  16898. predictionResistant set to false.
  16899. <p>
  16900. Any SecureRandom created from a builder constructed like this will make use of input passed to SecureRandom.setSeed() if
  16901. the default SecureRandom does for its generateSeed() call.
  16902. </p>
  16903. </member>
  16904. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Boolean)">
  16905. Construct a builder with an EntropySourceProvider based on the passed in SecureRandom and the passed in value
  16906. for prediction resistance.
  16907. <p>
  16908. Any SecureRandom created from a builder constructed like this will make use of input passed to SecureRandom.setSeed() if
  16909. the passed in SecureRandom does for its generateSeed() call.
  16910. </p>
  16911. @param entropySource
  16912. @param predictionResistant
  16913. </member>
  16914. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.#ctor(Org.BouncyCastle.Crypto.IEntropySourceProvider)">
  16915. Create a builder which makes creates the SecureRandom objects from a specified entropy source provider.
  16916. <p>
  16917. <b>Note:</b> If this constructor is used any calls to setSeed() in the resulting SecureRandom will be ignored.
  16918. </p>
  16919. @param entropySourceProvider a provider of EntropySource objects.
  16920. </member>
  16921. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.SetPersonalizationString(System.Byte[])">
  16922. Set the personalization string for DRBG SecureRandoms created by this builder
  16923. @param personalizationString the personalisation string for the underlying DRBG.
  16924. @return the current builder.
  16925. </member>
  16926. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.SetSecurityStrength(System.Int32)">
  16927. Set the security strength required for DRBGs used in building SecureRandom objects.
  16928. @param securityStrength the security strength (in bits)
  16929. @return the current builder.
  16930. </member>
  16931. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.SetEntropyBitsRequired(System.Int32)">
  16932. Set the amount of entropy bits required for seeding and reseeding DRBGs used in building SecureRandom objects.
  16933. @param entropyBitsRequired the number of bits of entropy to be requested from the entropy source on each seed/reseed.
  16934. @return the current builder.
  16935. </member>
  16936. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.BuildHash(Org.BouncyCastle.Crypto.IDigest,System.Byte[],System.Boolean)">
  16937. Build a SecureRandom based on a SP 800-90A Hash DRBG.
  16938. @param digest digest algorithm to use in the DRBG underneath the SecureRandom.
  16939. @param nonce nonce value to use in DRBG construction.
  16940. @param predictionResistant specify whether the underlying DRBG in the resulting SecureRandom should reseed on each request for bytes.
  16941. @return a SecureRandom supported by a Hash DRBG.
  16942. </member>
  16943. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.BuildCtr(Org.BouncyCastle.Crypto.IBlockCipher,System.Int32,System.Byte[],System.Boolean)">
  16944. Build a SecureRandom based on a SP 800-90A CTR DRBG.
  16945. @param cipher the block cipher to base the DRBG on.
  16946. @param keySizeInBits key size in bits to be used with the block cipher.
  16947. @param nonce nonce value to use in DRBG construction.
  16948. @param predictionResistant specify whether the underlying DRBG in the resulting SecureRandom should reseed on each request for bytes.
  16949. @return a SecureRandom supported by a CTR DRBG.
  16950. </member>
  16951. <member name="M:Org.BouncyCastle.Crypto.Prng.SP800SecureRandomBuilder.BuildHMac(Org.BouncyCastle.Crypto.IMac,System.Byte[],System.Boolean)">
  16952. Build a SecureRandom based on a SP 800-90A HMAC DRBG.
  16953. @param hMac HMAC algorithm to use in the DRBG underneath the SecureRandom.
  16954. @param nonce nonce value to use in DRBG construction.
  16955. @param predictionResistant specify whether the underlying DRBG in the resulting SecureRandom should reseed on each request for bytes.
  16956. @return a SecureRandom supported by a HMAC DRBG.
  16957. </member>
  16958. <member name="T:Org.BouncyCastle.Crypto.Prng.ThreadedSeedGenerator">
  16959. A thread based seed generator - one source of randomness.
  16960. <p>
  16961. Based on an idea from Marcus Lippert.
  16962. </p>
  16963. </member>
  16964. <member name="M:Org.BouncyCastle.Crypto.Prng.ThreadedSeedGenerator.GenerateSeed(System.Int32,System.Boolean)">
  16965. Generate seed bytes. Set fast to false for best quality.
  16966. <p>
  16967. If fast is set to true, the code should be round about 8 times faster when
  16968. generating a long sequence of random bytes. 20 bytes of random values using
  16969. the fast mode take less than half a second on a Nokia e70. If fast is set to false,
  16970. it takes round about 2500 ms.
  16971. </p>
  16972. @param numBytes the number of bytes to generate
  16973. @param fast true if fast mode should be used
  16974. </member>
  16975. <member name="F:Org.BouncyCastle.Crypto.Prng.VmpcRandomGenerator.P">
  16976. <remarks>
  16977. Permutation generated by code:
  16978. <code>
  16979. // First 1850 fractional digit of Pi number.
  16980. byte[] key = new BigInteger("14159265358979323846...5068006422512520511").ToByteArray();
  16981. s = 0;
  16982. P = new byte[256];
  16983. for (int i = 0; i &lt; 256; i++)
  16984. {
  16985. P[i] = (byte) i;
  16986. }
  16987. for (int m = 0; m &lt; 768; m++)
  16988. {
  16989. s = P[(s + P[m &amp; 0xff] + key[m % key.length]) &amp; 0xff];
  16990. byte temp = P[m &amp; 0xff];
  16991. P[m &amp; 0xff] = P[s &amp; 0xff];
  16992. P[s &amp; 0xff] = temp;
  16993. } </code>
  16994. </remarks>
  16995. </member>
  16996. <member name="F:Org.BouncyCastle.Crypto.Prng.VmpcRandomGenerator.s">
  16997. <remarks>Value generated in the same way as <c>P</c>.</remarks>
  16998. </member>
  16999. <member name="M:Org.BouncyCastle.Crypto.Prng.X931Rng.#ctor(Org.BouncyCastle.Crypto.IBlockCipher,System.Byte[],Org.BouncyCastle.Crypto.IEntropySource)">
  17000. @param engine
  17001. @param entropySource
  17002. </member>
  17003. <member name="M:Org.BouncyCastle.Crypto.Prng.X931Rng.Generate(System.Byte[],System.Boolean)">
  17004. Populate a passed in array with random data.
  17005. @param output output array for generated bits.
  17006. @param predictionResistant true if a reseed should be forced, false otherwise.
  17007. @return number of bits generated, -1 if a reseed required.
  17008. </member>
  17009. <member name="M:Org.BouncyCastle.Crypto.Prng.X931Rng.Reseed">
  17010. Reseed the RNG.
  17011. </member>
  17012. <member name="M:Org.BouncyCastle.Crypto.Prng.X931SecureRandomBuilder.#ctor">
  17013. Basic constructor, creates a builder using an EntropySourceProvider based on the default SecureRandom with
  17014. predictionResistant set to false.
  17015. <p>
  17016. Any SecureRandom created from a builder constructed like this will make use of input passed to SecureRandom.setSeed() if
  17017. the default SecureRandom does for its generateSeed() call.
  17018. </p>
  17019. </member>
  17020. <member name="M:Org.BouncyCastle.Crypto.Prng.X931SecureRandomBuilder.#ctor(Org.BouncyCastle.Security.SecureRandom,System.Boolean)">
  17021. Construct a builder with an EntropySourceProvider based on the passed in SecureRandom and the passed in value
  17022. for prediction resistance.
  17023. <p>
  17024. Any SecureRandom created from a builder constructed like this will make use of input passed to SecureRandom.setSeed() if
  17025. the passed in SecureRandom does for its generateSeed() call.
  17026. </p>
  17027. @param entropySource
  17028. @param predictionResistant
  17029. </member>
  17030. <member name="M:Org.BouncyCastle.Crypto.Prng.X931SecureRandomBuilder.#ctor(Org.BouncyCastle.Crypto.IEntropySourceProvider)">
  17031. Create a builder which makes creates the SecureRandom objects from a specified entropy source provider.
  17032. <p>
  17033. <b>Note:</b> If this constructor is used any calls to setSeed() in the resulting SecureRandom will be ignored.
  17034. </p>
  17035. @param entropySourceProvider a provider of EntropySource objects.
  17036. </member>
  17037. <member name="M:Org.BouncyCastle.Crypto.Prng.X931SecureRandomBuilder.Build(Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.Parameters.KeyParameter,System.Boolean)">
  17038. Construct a X9.31 secure random generator using the passed in engine and key. If predictionResistant is true the
  17039. generator will be reseeded on each request.
  17040. @param engine a block cipher to use as the operator.
  17041. @param key the block cipher key to initialise engine with.
  17042. @param predictionResistant true if engine to be reseeded on each use, false otherwise.
  17043. @return a SecureRandom.
  17044. </member>
  17045. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaDigestSigner.Update(System.Byte)">
  17046. update the internal digest with the byte b
  17047. </member>
  17048. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaDigestSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17049. update the internal digest with the byte array in
  17050. </member>
  17051. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaDigestSigner.GenerateSignature">
  17052. Generate a signature for the message we've been loaded with using
  17053. the key we were initialised with.
  17054. </member>
  17055. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaDigestSigner.VerifySignature(System.Byte[])">
  17056. <returns>true if the internal state represents the signature described in the passed in array.</returns>
  17057. </member>
  17058. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaDigestSigner.Reset">
  17059. <summary>Reset the internal state</summary>
  17060. </member>
  17061. <member name="T:Org.BouncyCastle.Crypto.Signers.DsaSigner">
  17062. The Digital Signature Algorithm - as described in "Handbook of Applied
  17063. Cryptography", pages 452 - 453.
  17064. </member>
  17065. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaSigner.#ctor">
  17066. Default configuration, random K values.
  17067. </member>
  17068. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaSigner.#ctor(Org.BouncyCastle.Crypto.Signers.IDsaKCalculator)">
  17069. Configuration with an alternate, possibly deterministic calculator of K.
  17070. @param kCalculator a K value calculator.
  17071. </member>
  17072. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaSigner.GenerateSignature(System.Byte[])">
  17073. Generate a signature for the given message using the key we were
  17074. initialised with. For conventional DSA the message should be a SHA-1
  17075. hash of the message of interest.
  17076. @param message the message that will be verified later.
  17077. </member>
  17078. <member name="M:Org.BouncyCastle.Crypto.Signers.DsaSigner.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17079. return true if the value r and s represent a DSA signature for
  17080. the passed in message for standard DSA the message should be a
  17081. SHA-1 hash of the real message to be verified.
  17082. </member>
  17083. <member name="T:Org.BouncyCastle.Crypto.Signers.ECDsaSigner">
  17084. EC-DSA as described in X9.62
  17085. </member>
  17086. <member name="M:Org.BouncyCastle.Crypto.Signers.ECDsaSigner.#ctor">
  17087. Default configuration, random K values.
  17088. </member>
  17089. <member name="M:Org.BouncyCastle.Crypto.Signers.ECDsaSigner.#ctor(Org.BouncyCastle.Crypto.Signers.IDsaKCalculator)">
  17090. Configuration with an alternate, possibly deterministic calculator of K.
  17091. @param kCalculator a K value calculator.
  17092. </member>
  17093. <member name="M:Org.BouncyCastle.Crypto.Signers.ECDsaSigner.GenerateSignature(System.Byte[])">
  17094. Generate a signature for the given message using the key we were
  17095. initialised with. For conventional DSA the message should be a SHA-1
  17096. hash of the message of interest.
  17097. @param message the message that will be verified later.
  17098. </member>
  17099. <member name="M:Org.BouncyCastle.Crypto.Signers.ECDsaSigner.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17100. return true if the value r and s represent a DSA signature for
  17101. the passed in message (for standard DSA the message should be
  17102. a SHA-1 hash of the real message to be verified).
  17103. </member>
  17104. <member name="T:Org.BouncyCastle.Crypto.Signers.ECGost3410Signer">
  17105. GOST R 34.10-2001 Signature Algorithm
  17106. </member>
  17107. <member name="M:Org.BouncyCastle.Crypto.Signers.ECGost3410Signer.GenerateSignature(System.Byte[])">
  17108. generate a signature for the given message using the key we were
  17109. initialised with. For conventional GOST3410 the message should be a GOST3411
  17110. hash of the message of interest.
  17111. @param message the message that will be verified later.
  17112. </member>
  17113. <member name="M:Org.BouncyCastle.Crypto.Signers.ECGost3410Signer.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17114. return true if the value r and s represent a GOST3410 signature for
  17115. the passed in message (for standard GOST3410 the message should be
  17116. a GOST3411 hash of the real message to be verified).
  17117. </member>
  17118. <member name="T:Org.BouncyCastle.Crypto.Signers.ECNRSigner">
  17119. EC-NR as described in IEEE 1363-2000
  17120. </member>
  17121. <member name="M:Org.BouncyCastle.Crypto.Signers.ECNRSigner.GenerateSignature(System.Byte[])">
  17122. generate a signature for the given message using the key we were
  17123. initialised with. Generally, the order of the curve should be at
  17124. least as long as the hash of the message of interest, and with
  17125. ECNR it *must* be at least as long.
  17126. @param digest the digest to be signed.
  17127. @exception DataLengthException if the digest is longer than the key allows
  17128. </member>
  17129. <member name="M:Org.BouncyCastle.Crypto.Signers.ECNRSigner.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17130. return true if the value r and s represent a signature for the
  17131. message passed in. Generally, the order of the curve should be at
  17132. least as long as the hash of the message of interest, and with
  17133. ECNR, it *must* be at least as long. But just in case the signer
  17134. applied mod(n) to the longer digest, this implementation will
  17135. apply mod(n) during verification.
  17136. @param digest the digest to be verified.
  17137. @param r the r value of the signature.
  17138. @param s the s value of the signature.
  17139. @exception DataLengthException if the digest is longer than the key allows
  17140. </member>
  17141. <member name="M:Org.BouncyCastle.Crypto.Signers.GenericSigner.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  17142. initialise the signer for signing or verification.
  17143. @param forSigning
  17144. true if for signing, false otherwise
  17145. @param parameters
  17146. necessary parameters.
  17147. </member>
  17148. <member name="M:Org.BouncyCastle.Crypto.Signers.GenericSigner.Update(System.Byte)">
  17149. update the internal digest with the byte b
  17150. </member>
  17151. <member name="M:Org.BouncyCastle.Crypto.Signers.GenericSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17152. update the internal digest with the byte array in
  17153. </member>
  17154. <member name="M:Org.BouncyCastle.Crypto.Signers.GenericSigner.GenerateSignature">
  17155. Generate a signature for the message we've been loaded with using the key
  17156. we were initialised with.
  17157. </member>
  17158. <member name="M:Org.BouncyCastle.Crypto.Signers.GenericSigner.VerifySignature(System.Byte[])">
  17159. return true if the internal state represents the signature described in
  17160. the passed in array.
  17161. </member>
  17162. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410DigestSigner.Update(System.Byte)">
  17163. update the internal digest with the byte b
  17164. </member>
  17165. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410DigestSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17166. update the internal digest with the byte array in
  17167. </member>
  17168. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410DigestSigner.GenerateSignature">
  17169. Generate a signature for the message we've been loaded with using
  17170. the key we were initialised with.
  17171. </member>
  17172. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410DigestSigner.VerifySignature(System.Byte[])">
  17173. <returns>true if the internal state represents the signature described in the passed in array.</returns>
  17174. </member>
  17175. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410DigestSigner.Reset">
  17176. <summary>Reset the internal state</summary>
  17177. </member>
  17178. <member name="T:Org.BouncyCastle.Crypto.Signers.Gost3410Signer">
  17179. Gost R 34.10-94 Signature Algorithm
  17180. </member>
  17181. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410Signer.GenerateSignature(System.Byte[])">
  17182. generate a signature for the given message using the key we were
  17183. initialised with. For conventional Gost3410 the message should be a Gost3411
  17184. hash of the message of interest.
  17185. @param message the message that will be verified later.
  17186. </member>
  17187. <member name="M:Org.BouncyCastle.Crypto.Signers.Gost3410Signer.VerifySignature(System.Byte[],Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17188. return true if the value r and s represent a Gost3410 signature for
  17189. the passed in message for standard Gost3410 the message should be a
  17190. Gost3411 hash of the real message to be verified.
  17191. </member>
  17192. <member name="T:Org.BouncyCastle.Crypto.Signers.HMacDsaKCalculator">
  17193. A deterministic K calculator based on the algorithm in section 3.2 of RFC 6979.
  17194. </member>
  17195. <member name="M:Org.BouncyCastle.Crypto.Signers.HMacDsaKCalculator.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  17196. Base constructor.
  17197. @param digest digest to build the HMAC on.
  17198. </member>
  17199. <member name="T:Org.BouncyCastle.Crypto.Signers.IDsaEncoding">
  17200. <summary>
  17201. An interface for different encoding formats for DSA signatures.
  17202. </summary>
  17203. </member>
  17204. <member name="M:Org.BouncyCastle.Crypto.Signers.IDsaEncoding.Decode(Org.BouncyCastle.Math.BigInteger,System.Byte[])">
  17205. <summary>Decode the (r, s) pair of a DSA signature.</summary>
  17206. <param name="n">The order of the group that r, s belong to.</param>
  17207. <param name="encoding">An encoding of the (r, s) pair of a DSA signature.</param>
  17208. <returns>The (r, s) of a DSA signature, stored in an array of exactly two elements, r followed by s.</returns>
  17209. </member>
  17210. <member name="M:Org.BouncyCastle.Crypto.Signers.IDsaEncoding.Encode(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  17211. <summary>Encode the (r, s) pair of a DSA signature.</summary>
  17212. <param name="n">The order of the group that r, s belong to.</param>
  17213. <param name="r">The r value of a DSA signature.</param>
  17214. <param name="s">The s value of a DSA signature.</param>
  17215. <returns>An encoding of the DSA signature given by the provided (r, s) pair.</returns>
  17216. </member>
  17217. <member name="T:Org.BouncyCastle.Crypto.Signers.IDsaKCalculator">
  17218. Interface define calculators of K values for DSA/ECDSA.
  17219. </member>
  17220. <member name="P:Org.BouncyCastle.Crypto.Signers.IDsaKCalculator.IsDeterministic">
  17221. Return true if this calculator is deterministic, false otherwise.
  17222. @return true if deterministic, otherwise false.
  17223. </member>
  17224. <member name="M:Org.BouncyCastle.Crypto.Signers.IDsaKCalculator.Init(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom)">
  17225. Non-deterministic initialiser.
  17226. @param n the order of the DSA group.
  17227. @param random a source of randomness.
  17228. </member>
  17229. <member name="M:Org.BouncyCastle.Crypto.Signers.IDsaKCalculator.Init(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.Byte[])">
  17230. Deterministic initialiser.
  17231. @param n the order of the DSA group.
  17232. @param d the DSA private value.
  17233. @param message the message being signed.
  17234. </member>
  17235. <member name="M:Org.BouncyCastle.Crypto.Signers.IDsaKCalculator.NextK">
  17236. Return the next valid value of K.
  17237. @return a K value.
  17238. </member>
  17239. <member name="T:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner">
  17240. <summary> ISO9796-2 - mechanism using a hash function with recovery (scheme 2 and 3).
  17241. <p>
  17242. Note: the usual length for the salt is the length of the hash
  17243. function used in bytes.</p>
  17244. </summary>
  17245. </member>
  17246. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.GetRecoveredMessage">
  17247. <summary>
  17248. Return a reference to the recoveredMessage message.
  17249. </summary>
  17250. <returns>The full/partial recoveredMessage message.</returns>
  17251. <seealso cref="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.GetRecoveredMessage"/>
  17252. </member>
  17253. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Int32,System.Boolean)">
  17254. <summary>
  17255. Generate a signer with either implicit or explicit trailers for ISO9796-2, scheme 2 or 3.
  17256. </summary>
  17257. <param name="cipher">base cipher to use for signature creation/verification</param>
  17258. <param name="digest">digest to use.</param>
  17259. <param name="saltLength">length of salt in bytes.</param>
  17260. <param name="isImplicit">whether or not the trailer is implicit or gives the hash.</param>
  17261. </member>
  17262. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Int32)">
  17263. <summary> Constructor for a signer with an explicit digest trailer.
  17264. </summary>
  17265. <param name="cipher">cipher to use.
  17266. </param>
  17267. <param name="digest">digest to sign with.
  17268. </param>
  17269. <param name="saltLength">length of salt in bytes.
  17270. </param>
  17271. </member>
  17272. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  17273. <summary>Initialise the signer.</summary>
  17274. <param name="forSigning">true if for signing, false if for verification.</param>
  17275. <param name="parameters">parameters for signature generation/verification. If the
  17276. parameters are for generation they should be a ParametersWithRandom,
  17277. a ParametersWithSalt, or just an RsaKeyParameters object. If RsaKeyParameters
  17278. are passed in a SecureRandom will be created.
  17279. </param>
  17280. <exception cref="T:System.ArgumentException">if wrong parameter type or a fixed
  17281. salt is passed in which is the wrong length.
  17282. </exception>
  17283. </member>
  17284. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.IsSameAs(System.Byte[],System.Byte[])">
  17285. <summary> compare two byte arrays - constant time.</summary>
  17286. </member>
  17287. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.ClearBlock(System.Byte[])">
  17288. <summary> clear possible sensitive data</summary>
  17289. </member>
  17290. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.Update(System.Byte)">
  17291. <summary> update the internal digest with the byte b</summary>
  17292. </member>
  17293. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17294. <summary> update the internal digest with the byte array in</summary>
  17295. </member>
  17296. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.Reset">
  17297. <summary> reset the internal state</summary>
  17298. </member>
  17299. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.GenerateSignature">
  17300. <summary> Generate a signature for the loaded message using the key we were
  17301. initialised with.
  17302. </summary>
  17303. </member>
  17304. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.VerifySignature(System.Byte[])">
  17305. <summary> return true if the signature represents a ISO9796-2 signature
  17306. for the passed in message.
  17307. </summary>
  17308. </member>
  17309. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.HasFullMessage">
  17310. <summary>
  17311. Return true if the full message was recoveredMessage.
  17312. </summary>
  17313. <returns>true on full message recovery, false otherwise, or if not sure.</returns>
  17314. <seealso cref="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.HasFullMessage"/>
  17315. </member>
  17316. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.ItoOSP(System.Int32,System.Byte[])">
  17317. <summary> int to octet string.</summary>
  17318. <summary> int to octet string.</summary>
  17319. </member>
  17320. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.LtoOSP(System.Int64,System.Byte[])">
  17321. <summary> long to octet string.</summary>
  17322. </member>
  17323. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2PssSigner.MaskGeneratorFunction1(System.Byte[],System.Int32,System.Int32,System.Int32)">
  17324. <summary> mask generator function, as described in Pkcs1v2.</summary>
  17325. </member>
  17326. <member name="T:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer">
  17327. <summary> ISO9796-2 - mechanism using a hash function with recovery (scheme 1)</summary>
  17328. </member>
  17329. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.GetRecoveredMessage">
  17330. <summary>
  17331. Return a reference to the recoveredMessage message.
  17332. </summary>
  17333. <returns>The full/partial recoveredMessage message.</returns>
  17334. <seealso cref="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.GetRecoveredMessage"/>
  17335. </member>
  17336. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Boolean)">
  17337. <summary>
  17338. Generate a signer with either implicit or explicit trailers for ISO9796-2.
  17339. </summary>
  17340. <param name="cipher">base cipher to use for signature creation/verification</param>
  17341. <param name="digest">digest to use.</param>
  17342. <param name="isImplicit">whether or not the trailer is implicit or gives the hash.</param>
  17343. </member>
  17344. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest)">
  17345. <summary> Constructor for a signer with an explicit digest trailer.
  17346. </summary>
  17347. <param name="cipher">cipher to use.
  17348. </param>
  17349. <param name="digest">digest to sign with.
  17350. </param>
  17351. </member>
  17352. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.IsSameAs(System.Byte[],System.Byte[])">
  17353. <summary> compare two byte arrays - constant time.</summary>
  17354. </member>
  17355. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.ClearBlock(System.Byte[])">
  17356. <summary> clear possible sensitive data</summary>
  17357. </member>
  17358. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.Update(System.Byte)">
  17359. <summary> update the internal digest with the byte b</summary>
  17360. </member>
  17361. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17362. <summary> update the internal digest with the byte array in</summary>
  17363. </member>
  17364. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.Reset">
  17365. <summary> reset the internal state</summary>
  17366. </member>
  17367. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.GenerateSignature">
  17368. <summary> Generate a signature for the loaded message using the key we were
  17369. initialised with.
  17370. </summary>
  17371. </member>
  17372. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.VerifySignature(System.Byte[])">
  17373. <summary> return true if the signature represents a ISO9796-2 signature
  17374. for the passed in message.
  17375. </summary>
  17376. </member>
  17377. <member name="M:Org.BouncyCastle.Crypto.Signers.Iso9796d2Signer.HasFullMessage">
  17378. <summary>
  17379. Return true if the full message was recoveredMessage.
  17380. </summary>
  17381. <returns> true on full message recovery, false otherwise.</returns>
  17382. <seealso cref="M:Org.BouncyCastle.Crypto.ISignerWithRecovery.HasFullMessage"/>
  17383. </member>
  17384. <member name="T:Org.BouncyCastle.Crypto.Signers.PssSigner">
  17385. <summary> RSA-PSS as described in Pkcs# 1 v 2.1.
  17386. <p>
  17387. Note: the usual value for the salt length is the number of
  17388. bytes in the hash function.</p>
  17389. </summary>
  17390. </member>
  17391. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Int32)">
  17392. <summary>Basic constructor</summary>
  17393. <param name="cipher">the asymmetric cipher to use.</param>
  17394. <param name="digest">the digest to use.</param>
  17395. <param name="saltLen">the length of the salt to use (in bytes).</param>
  17396. </member>
  17397. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Byte[])">
  17398. <summary>Basic constructor</summary>
  17399. <param name="cipher">the asymmetric cipher to use.</param>
  17400. <param name="digest">the digest to use.</param>
  17401. <param name="salt">the fixed salt to be used.</param>
  17402. </member>
  17403. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.ClearBlock(System.Byte[])">
  17404. <summary> clear possible sensitive data</summary>
  17405. </member>
  17406. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.Update(System.Byte)">
  17407. <summary> update the internal digest with the byte b</summary>
  17408. </member>
  17409. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17410. <summary> update the internal digest with the byte array in</summary>
  17411. </member>
  17412. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.Reset">
  17413. <summary> reset the internal state</summary>
  17414. </member>
  17415. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.GenerateSignature">
  17416. <summary> Generate a signature for the message we've been loaded with using
  17417. the key we were initialised with.
  17418. </summary>
  17419. </member>
  17420. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.VerifySignature(System.Byte[])">
  17421. <summary> return true if the internal state represents the signature described
  17422. in the passed in array.
  17423. </summary>
  17424. </member>
  17425. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.ItoOSP(System.Int32,System.Byte[])">
  17426. <summary> int to octet string.</summary>
  17427. </member>
  17428. <member name="M:Org.BouncyCastle.Crypto.Signers.PssSigner.MaskGeneratorFunction1(System.Byte[],System.Int32,System.Int32,System.Int32)">
  17429. <summary> mask generator function, as described in Pkcs1v2.</summary>
  17430. </member>
  17431. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.#cctor">
  17432. <summary>
  17433. Load oid table.
  17434. </summary>
  17435. </member>
  17436. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  17437. Initialise the signer for signing or verification.
  17438. @param forSigning true if for signing, false otherwise
  17439. @param param necessary parameters.
  17440. </member>
  17441. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.Update(System.Byte)">
  17442. update the internal digest with the byte b
  17443. </member>
  17444. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17445. update the internal digest with the byte array in
  17446. </member>
  17447. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.GenerateSignature">
  17448. Generate a signature for the message we've been loaded with using
  17449. the key we were initialised with.
  17450. </member>
  17451. <member name="M:Org.BouncyCastle.Crypto.Signers.RsaDigestSigner.VerifySignature(System.Byte[])">
  17452. return true if the internal state represents the signature described
  17453. in the passed in array.
  17454. </member>
  17455. <member name="T:Org.BouncyCastle.Crypto.Signers.SM2Signer">
  17456. <summary>The SM2 Digital Signature algorithm.</summary>
  17457. </member>
  17458. <member name="T:Org.BouncyCastle.Crypto.Signers.X931Signer">
  17459. X9.31-1998 - signing using a hash.
  17460. <p>
  17461. The message digest hash, H, is encapsulated to form a byte string as follows
  17462. </p>
  17463. <pre>
  17464. EB = 06 || PS || 0xBA || H || TRAILER
  17465. </pre>
  17466. where PS is a string of bytes all of value 0xBB of length such that |EB|=|n|, and TRAILER is the ISO/IEC 10118 part number† for the digest. The byte string, EB, is converted to an integer value, the message representative, f.
  17467. </member>
  17468. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest,System.Boolean)">
  17469. Generate a signer with either implicit or explicit trailers for X9.31.
  17470. @param cipher base cipher to use for signature creation/verification
  17471. @param digest digest to use.
  17472. @param implicit whether or not the trailer is implicit or gives the hash.
  17473. </member>
  17474. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.#ctor(Org.BouncyCastle.Crypto.IAsymmetricBlockCipher,Org.BouncyCastle.Crypto.IDigest)">
  17475. Constructor for a signer with an explicit digest trailer.
  17476. @param cipher cipher to use.
  17477. @param digest digest to sign with.
  17478. </member>
  17479. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.ClearBlock(System.Byte[])">
  17480. <summary> clear possible sensitive data</summary>
  17481. </member>
  17482. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.Update(System.Byte)">
  17483. update the internal digest with the byte b
  17484. </member>
  17485. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17486. update the internal digest with the byte array in
  17487. </member>
  17488. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.Reset">
  17489. reset the internal state
  17490. </member>
  17491. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.GenerateSignature">
  17492. generate a signature for the loaded message using the key we were
  17493. initialised with.
  17494. </member>
  17495. <member name="M:Org.BouncyCastle.Crypto.Signers.X931Signer.VerifySignature(System.Byte[])">
  17496. return true if the signature represents a ISO9796-2 signature
  17497. for the passed in message.
  17498. </member>
  17499. <member name="T:Org.BouncyCastle.Crypto.SimpleBlockResult">
  17500. <summary>
  17501. A simple block result object which just carries a byte array.
  17502. </summary>
  17503. </member>
  17504. <member name="M:Org.BouncyCastle.Crypto.SimpleBlockResult.#ctor(System.Byte[])">
  17505. <summary>
  17506. Base constructor - a wrapper for the passed in byte array.
  17507. </summary>
  17508. <param name="result">The byte array to be wrapped.</param>
  17509. </member>
  17510. <member name="P:Org.BouncyCastle.Crypto.SimpleBlockResult.Length">
  17511. <summary>
  17512. Return the number of bytes in the result
  17513. </summary>
  17514. <value>The length of the result in bytes.</value>
  17515. </member>
  17516. <member name="M:Org.BouncyCastle.Crypto.SimpleBlockResult.Collect">
  17517. <summary>
  17518. Return the final result of the operation.
  17519. </summary>
  17520. <returns>A block of bytes, representing the result of an operation.</returns>
  17521. </member>
  17522. <member name="M:Org.BouncyCastle.Crypto.SimpleBlockResult.Collect(System.Byte[],System.Int32)">
  17523. <summary>
  17524. Store the final result of the operation by copying it into the destination array.
  17525. </summary>
  17526. <returns>The number of bytes copied into destination.</returns>
  17527. <param name="destination">The byte array to copy the result into.</param>
  17528. <param name="offset">The offset into destination to start copying the result at.</param>
  17529. </member>
  17530. <member name="T:Org.BouncyCastle.Crypto.StreamBlockCipher">
  17531. a wrapper for block ciphers with a single byte block size, so that they
  17532. can be treated like stream ciphers.
  17533. </member>
  17534. <member name="M:Org.BouncyCastle.Crypto.StreamBlockCipher.#ctor(Org.BouncyCastle.Crypto.IBlockCipher)">
  17535. basic constructor.
  17536. @param cipher the block cipher to be wrapped.
  17537. @exception ArgumentException if the cipher has a block size other than
  17538. one.
  17539. </member>
  17540. <member name="M:Org.BouncyCastle.Crypto.StreamBlockCipher.Init(System.Boolean,Org.BouncyCastle.Crypto.ICipherParameters)">
  17541. initialise the underlying cipher.
  17542. @param forEncryption true if we are setting up for encryption, false otherwise.
  17543. @param param the necessary parameters for the underlying cipher to be initialised.
  17544. </member>
  17545. <member name="P:Org.BouncyCastle.Crypto.StreamBlockCipher.AlgorithmName">
  17546. return the name of the algorithm we are wrapping.
  17547. @return the name of the algorithm we are wrapping.
  17548. </member>
  17549. <member name="M:Org.BouncyCastle.Crypto.StreamBlockCipher.ReturnByte(System.Byte)">
  17550. encrypt/decrypt a single byte returning the result.
  17551. @param in the byte to be processed.
  17552. @return the result of processing the input byte.
  17553. </member>
  17554. <member name="M:Org.BouncyCastle.Crypto.StreamBlockCipher.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  17555. process a block of bytes from in putting the result into out.
  17556. @param in the input byte array.
  17557. @param inOff the offset into the in array where the data to be processed starts.
  17558. @param len the number of bytes to be processed.
  17559. @param out the output buffer the processed bytes go into.
  17560. @param outOff the offset into the output byte array the processed data stars at.
  17561. @exception DataLengthException if the output buffer is too small.
  17562. </member>
  17563. <member name="M:Org.BouncyCastle.Crypto.StreamBlockCipher.Reset">
  17564. reset the underlying cipher. This leaves it in the same state
  17565. it was at after the last init (if there was one).
  17566. </member>
  17567. <member name="M:Org.BouncyCastle.Crypto.Tls.AbstractTlsAgreementCredentials.GenerateAgreement(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  17568. <exception cref="T:System.IO.IOException"></exception>
  17569. </member>
  17570. <member name="M:Org.BouncyCastle.Crypto.Tls.AbstractTlsCipherFactory.CreateCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  17571. <exception cref="T:System.IO.IOException"></exception>
  17572. </member>
  17573. <member name="M:Org.BouncyCastle.Crypto.Tls.AbstractTlsEncryptionCredentials.DecryptPreMasterSecret(System.Byte[])">
  17574. <exception cref="T:System.IO.IOException"></exception>
  17575. </member>
  17576. <member name="M:Org.BouncyCastle.Crypto.Tls.AbstractTlsSignerCredentials.GenerateCertificateSignature(System.Byte[])">
  17577. <exception cref="T:System.IO.IOException"></exception>
  17578. </member>
  17579. <member name="T:Org.BouncyCastle.Crypto.Tls.AlertDescription">
  17580. <summary>
  17581. RFC 5246 7.2
  17582. </summary>
  17583. </member>
  17584. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.close_notify">
  17585. This message notifies the recipient that the sender will not send any more messages on this
  17586. connection. Note that as of TLS 1.1, failure to properly close a connection no longer
  17587. requires that a session not be resumed. This is a change from TLS 1.0 ("The session becomes
  17588. unresumable if any connection is terminated without proper close_notify messages with level
  17589. equal to warning.") to conform with widespread implementation practice.
  17590. </member>
  17591. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unexpected_message">
  17592. An inappropriate message was received. This alert is always fatal and should never be
  17593. observed in communication between proper implementations.
  17594. </member>
  17595. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.bad_record_mac">
  17596. This alert is returned if a record is received with an incorrect MAC. This alert also MUST be
  17597. returned if an alert is sent because a TLSCiphertext decrypted in an invalid way: either it
  17598. wasn't an even multiple of the block length, or its padding values, when checked, weren't
  17599. correct. This message is always fatal and should never be observed in communication between
  17600. proper implementations (except when messages were corrupted in the network).
  17601. </member>
  17602. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.decryption_failed">
  17603. This alert was used in some earlier versions of TLS, and may have permitted certain attacks
  17604. against the CBC mode [CBCATT]. It MUST NOT be sent by compliant implementations.
  17605. </member>
  17606. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.record_overflow">
  17607. A TLSCiphertext record was received that had a length more than 2^14+2048 bytes, or a record
  17608. decrypted to a TLSCompressed record with more than 2^14+1024 bytes. This message is always
  17609. fatal and should never be observed in communication between proper implementations (except
  17610. when messages were corrupted in the network).
  17611. </member>
  17612. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.decompression_failure">
  17613. The decompression function received improper input (e.g., data that would expand to excessive
  17614. length). This message is always fatal and should never be observed in communication between
  17615. proper implementations.
  17616. </member>
  17617. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.handshake_failure">
  17618. Reception of a handshake_failure alert message indicates that the sender was unable to
  17619. negotiate an acceptable set of security parameters given the options available. This is a
  17620. fatal error.
  17621. </member>
  17622. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.no_certificate">
  17623. This alert was used in SSLv3 but not any version of TLS. It MUST NOT be sent by compliant
  17624. implementations.
  17625. </member>
  17626. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.bad_certificate">
  17627. A certificate was corrupt, contained signatures that did not verify correctly, etc.
  17628. </member>
  17629. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unsupported_certificate">
  17630. A certificate was of an unsupported type.
  17631. </member>
  17632. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.certificate_revoked">
  17633. A certificate was revoked by its signer.
  17634. </member>
  17635. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.certificate_expired">
  17636. A certificate has expired or is not currently valid.
  17637. </member>
  17638. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.certificate_unknown">
  17639. Some other (unspecified) issue arose in processing the certificate, rendering it
  17640. unacceptable.
  17641. </member>
  17642. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.illegal_parameter">
  17643. A field in the handshake was out of range or inconsistent with other fields. This message is
  17644. always fatal.
  17645. </member>
  17646. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unknown_ca">
  17647. A valid certificate chain or partial chain was received, but the certificate was not accepted
  17648. because the CA certificate could not be located or couldn't be matched with a known, trusted
  17649. CA. This message is always fatal.
  17650. </member>
  17651. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.access_denied">
  17652. A valid certificate was received, but when access control was applied, the sender decided not
  17653. to proceed with negotiation. This message is always fatal.
  17654. </member>
  17655. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.decode_error">
  17656. A message could not be decoded because some field was out of the specified range or the
  17657. length of the message was incorrect. This message is always fatal and should never be
  17658. observed in communication between proper implementations (except when messages were corrupted
  17659. in the network).
  17660. </member>
  17661. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.decrypt_error">
  17662. A handshake cryptographic operation failed, including being unable to correctly verify a
  17663. signature or validate a Finished message. This message is always fatal.
  17664. </member>
  17665. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.export_restriction">
  17666. This alert was used in some earlier versions of TLS. It MUST NOT be sent by compliant
  17667. implementations.
  17668. </member>
  17669. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.protocol_version">
  17670. The protocol version the client has attempted to negotiate is recognized but not supported.
  17671. (For example, old protocol versions might be avoided for security reasons.) This message is
  17672. always fatal.
  17673. </member>
  17674. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.insufficient_security">
  17675. Returned instead of handshake_failure when a negotiation has failed specifically because the
  17676. server requires ciphers more secure than those supported by the client. This message is
  17677. always fatal.
  17678. </member>
  17679. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.internal_error">
  17680. An internal error unrelated to the peer or the correctness of the protocol (such as a memory
  17681. allocation failure) makes it impossible to continue. This message is always fatal.
  17682. </member>
  17683. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.user_canceled">
  17684. This handshake is being canceled for some reason unrelated to a protocol failure. If the user
  17685. cancels an operation after the handshake is complete, just closing the connection by sending
  17686. a close_notify is more appropriate. This alert should be followed by a close_notify. This
  17687. message is generally a warning.
  17688. </member>
  17689. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.no_renegotiation">
  17690. Sent by the client in response to a hello request or by the server in response to a client
  17691. hello after initial handshaking. Either of these would normally lead to renegotiation; when
  17692. that is not appropriate, the recipient should respond with this alert. At that point, the
  17693. original requester can decide whether to proceed with the connection. One case where this
  17694. would be appropriate is where a server has spawned a process to satisfy a request; the
  17695. process might receive security parameters (key length, authentication, etc.) at startup, and
  17696. it might be difficult to communicate changes to these parameters after that point. This
  17697. message is always a warning.
  17698. </member>
  17699. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unsupported_extension">
  17700. Sent by clients that receive an extended server hello containing an extension that they did
  17701. not put in the corresponding client hello. This message is always fatal.
  17702. </member>
  17703. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.certificate_unobtainable">
  17704. This alert is sent by servers who are unable to retrieve a certificate chain from the URL
  17705. supplied by the client (see Section 3.3). This message MAY be fatal - for example if client
  17706. authentication is required by the server for the handshake to continue and the server is
  17707. unable to retrieve the certificate chain, it may send a fatal alert.
  17708. </member>
  17709. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unrecognized_name">
  17710. This alert is sent by servers that receive a server_name extension request, but do not
  17711. recognize the server name. This message MAY be fatal.
  17712. </member>
  17713. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.bad_certificate_status_response">
  17714. This alert is sent by clients that receive an invalid certificate status response (see
  17715. Section 3.6). This message is always fatal.
  17716. </member>
  17717. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.bad_certificate_hash_value">
  17718. This alert is sent by servers when a certificate hash does not match a client provided
  17719. certificate_hash. This message is always fatal.
  17720. </member>
  17721. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.unknown_psk_identity">
  17722. If the server does not recognize the PSK identity, it MAY respond with an
  17723. "unknown_psk_identity" alert message.
  17724. </member>
  17725. <member name="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.inappropriate_fallback">
  17726. If TLS_FALLBACK_SCSV appears in ClientHello.cipher_suites and the highest protocol version
  17727. supported by the server is higher than the version indicated in ClientHello.client_version,
  17728. the server MUST respond with a fatal inappropriate_fallback alert [..].
  17729. </member>
  17730. <member name="T:Org.BouncyCastle.Crypto.Tls.AlertLevel">
  17731. <summary>
  17732. RFC 5246 7.2
  17733. </summary>
  17734. </member>
  17735. <member name="T:Org.BouncyCastle.Crypto.Tls.BulkCipherAlgorithm">
  17736. <summary>RFC 2246</summary>
  17737. <remarks>
  17738. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  17739. depend on the particular values (e.g. serialization).
  17740. </remarks>
  17741. </member>
  17742. <member name="T:Org.BouncyCastle.Crypto.Tls.ByteQueue">
  17743. <remarks>
  17744. A queue for bytes.
  17745. <p>
  17746. This file could be more optimized.
  17747. </p>
  17748. </remarks>
  17749. </member>
  17750. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.NextTwoPow(System.Int32)">
  17751. <returns>The smallest number which can be written as 2^x which is bigger than i.</returns>
  17752. </member>
  17753. <member name="F:Org.BouncyCastle.Crypto.Tls.ByteQueue.DefaultCapacity">
  17754. The initial size for our buffer.
  17755. </member>
  17756. <member name="F:Org.BouncyCastle.Crypto.Tls.ByteQueue.databuf">
  17757. The buffer where we store our data.
  17758. </member>
  17759. <member name="F:Org.BouncyCastle.Crypto.Tls.ByteQueue.skipped">
  17760. How many bytes at the beginning of the buffer are skipped.
  17761. </member>
  17762. <member name="F:Org.BouncyCastle.Crypto.Tls.ByteQueue.available">
  17763. How many bytes in the buffer are valid data.
  17764. </member>
  17765. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.AddData(System.Byte[],System.Int32,System.Int32)">
  17766. <summary>Add some data to our buffer.</summary>
  17767. <param name="data">A byte-array to read data from.</param>
  17768. <param name="offset">How many bytes to skip at the beginning of the array.</param>
  17769. <param name="len">How many bytes to read from the array.</param>
  17770. </member>
  17771. <member name="P:Org.BouncyCastle.Crypto.Tls.ByteQueue.Available">
  17772. <summary>The number of bytes which are available in this buffer.</summary>
  17773. </member>
  17774. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.CopyTo(System.IO.Stream,System.Int32)">
  17775. <summary>Copy some bytes from the beginning of the data to the provided <c cref="T:System.IO.Stream">Stream</c>.</summary>
  17776. <param name="output">The <c cref="T:System.IO.Stream">Stream</c> to copy the bytes to.</param>
  17777. <param name="length">How many bytes to copy.</param>
  17778. <exception cref="T:System.InvalidOperationException">If insufficient data is available.</exception>
  17779. <exception cref="T:System.IO.IOException">If there is a problem copying the data.</exception>
  17780. </member>
  17781. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.Read(System.Byte[],System.Int32,System.Int32,System.Int32)">
  17782. <summary>Read data from the buffer.</summary>
  17783. <param name="buf">The buffer where the read data will be copied to.</param>
  17784. <param name="offset">How many bytes to skip at the beginning of buf.</param>
  17785. <param name="len">How many bytes to read at all.</param>
  17786. <param name="skip">How many bytes from our data to skip.</param>
  17787. </member>
  17788. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.ReadFrom(System.Int32)">
  17789. <summary>Return a <c cref="T:System.IO.MemoryStream">MemoryStream</c> over some bytes at the beginning of the data.</summary>
  17790. <param name="length">How many bytes will be readable.</param>
  17791. <returns>A <c cref="T:System.IO.MemoryStream">MemoryStream</c> over the data.</returns>
  17792. <exception cref="T:System.InvalidOperationException">If insufficient data is available.</exception>
  17793. </member>
  17794. <member name="M:Org.BouncyCastle.Crypto.Tls.ByteQueue.RemoveData(System.Int32)">
  17795. <summary>Remove some bytes from our data from the beginning.</summary>
  17796. <param name="i">How many bytes to remove.</param>
  17797. </member>
  17798. <member name="T:Org.BouncyCastle.Crypto.Tls.Certificate">
  17799. Parsing and encoding of a <i>Certificate</i> struct from RFC 4346.
  17800. <p/>
  17801. <pre>
  17802. opaque ASN.1Cert&lt;2^24-1&gt;;
  17803. struct {
  17804. ASN.1Cert certificate_list&lt;0..2^24-1&gt;;
  17805. } Certificate;
  17806. </pre>
  17807. @see Org.BouncyCastle.Asn1.X509.X509CertificateStructure
  17808. </member>
  17809. <member name="F:Org.BouncyCastle.Crypto.Tls.Certificate.mCertificateList">
  17810. The certificates.
  17811. </member>
  17812. <member name="M:Org.BouncyCastle.Crypto.Tls.Certificate.GetCertificateList">
  17813. @return an array of {@link org.bouncycastle.asn1.x509.Certificate} representing a certificate
  17814. chain.
  17815. </member>
  17816. <member name="P:Org.BouncyCastle.Crypto.Tls.Certificate.IsEmpty">
  17817. @return <code>true</code> if this certificate chain contains no certificates, or
  17818. <code>false</code> otherwise.
  17819. </member>
  17820. <member name="M:Org.BouncyCastle.Crypto.Tls.Certificate.Encode(System.IO.Stream)">
  17821. Encode this {@link Certificate} to a {@link Stream}.
  17822. @param output the {@link Stream} to encode to.
  17823. @throws IOException
  17824. </member>
  17825. <member name="M:Org.BouncyCastle.Crypto.Tls.Certificate.Parse(System.IO.Stream)">
  17826. Parse a {@link Certificate} from a {@link Stream}.
  17827. @param input the {@link Stream} to parse from.
  17828. @return a {@link Certificate} object.
  17829. @throws IOException
  17830. </member>
  17831. <member name="T:Org.BouncyCastle.Crypto.Tls.CertificateRequest">
  17832. Parsing and encoding of a <i>CertificateRequest</i> struct from RFC 4346.
  17833. <p/>
  17834. <pre>
  17835. struct {
  17836. ClientCertificateType certificate_types&lt;1..2^8-1&gt;;
  17837. DistinguishedName certificate_authorities&lt;3..2^16-1&gt;
  17838. } CertificateRequest;
  17839. </pre>
  17840. @see ClientCertificateType
  17841. @see X509Name
  17842. </member>
  17843. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateRequest.#ctor(System.Byte[],System.Collections.IList,System.Collections.IList)">
  17844. @param certificateTypes see {@link ClientCertificateType} for valid constants.
  17845. @param certificateAuthorities an {@link IList} of {@link X509Name}.
  17846. </member>
  17847. <member name="P:Org.BouncyCastle.Crypto.Tls.CertificateRequest.CertificateTypes">
  17848. @return an array of certificate types
  17849. @see {@link ClientCertificateType}
  17850. </member>
  17851. <member name="P:Org.BouncyCastle.Crypto.Tls.CertificateRequest.SupportedSignatureAlgorithms">
  17852. @return an {@link IList} of {@link SignatureAndHashAlgorithm} (or null before TLS 1.2).
  17853. </member>
  17854. <member name="P:Org.BouncyCastle.Crypto.Tls.CertificateRequest.CertificateAuthorities">
  17855. @return an {@link IList} of {@link X509Name}
  17856. </member>
  17857. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateRequest.Encode(System.IO.Stream)">
  17858. Encode this {@link CertificateRequest} to a {@link Stream}.
  17859. @param output the {@link Stream} to encode to.
  17860. @throws IOException
  17861. </member>
  17862. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateRequest.Parse(Org.BouncyCastle.Crypto.Tls.TlsContext,System.IO.Stream)">
  17863. Parse a {@link CertificateRequest} from a {@link Stream}.
  17864. @param context
  17865. the {@link TlsContext} of the current connection.
  17866. @param input
  17867. the {@link Stream} to parse from.
  17868. @return a {@link CertificateRequest} object.
  17869. @throws IOException
  17870. </member>
  17871. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateStatus.Encode(System.IO.Stream)">
  17872. Encode this {@link CertificateStatus} to a {@link Stream}.
  17873. @param output
  17874. the {@link Stream} to encode to.
  17875. @throws IOException
  17876. </member>
  17877. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateStatus.Parse(System.IO.Stream)">
  17878. Parse a {@link CertificateStatus} from a {@link Stream}.
  17879. @param input
  17880. the {@link Stream} to parse from.
  17881. @return a {@link CertificateStatus} object.
  17882. @throws IOException
  17883. </member>
  17884. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateStatusRequest.Encode(System.IO.Stream)">
  17885. Encode this {@link CertificateStatusRequest} to a {@link Stream}.
  17886. @param output
  17887. the {@link Stream} to encode to.
  17888. @throws IOException
  17889. </member>
  17890. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateStatusRequest.Parse(System.IO.Stream)">
  17891. Parse a {@link CertificateStatusRequest} from a {@link Stream}.
  17892. @param input
  17893. the {@link Stream} to parse from.
  17894. @return a {@link CertificateStatusRequest} object.
  17895. @throws IOException
  17896. </member>
  17897. <member name="T:Org.BouncyCastle.Crypto.Tls.CertificateType">
  17898. RFC 6091
  17899. </member>
  17900. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateUrl.#ctor(System.Byte,System.Collections.IList)">
  17901. @param type
  17902. see {@link CertChainType} for valid constants.
  17903. @param urlAndHashList
  17904. a {@link IList} of {@link UrlAndHash}.
  17905. </member>
  17906. <member name="P:Org.BouncyCastle.Crypto.Tls.CertificateUrl.Type">
  17907. @return {@link CertChainType}
  17908. </member>
  17909. <member name="P:Org.BouncyCastle.Crypto.Tls.CertificateUrl.UrlAndHashList">
  17910. @return an {@link IList} of {@link UrlAndHash}
  17911. </member>
  17912. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateUrl.Encode(System.IO.Stream)">
  17913. Encode this {@link CertificateUrl} to a {@link Stream}.
  17914. @param output the {@link Stream} to encode to.
  17915. @throws IOException
  17916. </member>
  17917. <member name="M:Org.BouncyCastle.Crypto.Tls.CertificateUrl.parse(Org.BouncyCastle.Crypto.Tls.TlsContext,System.IO.Stream)">
  17918. Parse a {@link CertificateUrl} from a {@link Stream}.
  17919. @param context
  17920. the {@link TlsContext} of the current connection.
  17921. @param input
  17922. the {@link Stream} to parse from.
  17923. @return a {@link CertificateUrl} object.
  17924. @throws IOException
  17925. </member>
  17926. <member name="T:Org.BouncyCastle.Crypto.Tls.Chacha20Poly1305">
  17927. draft-ietf-tls-chacha20-poly1305-04
  17928. </member>
  17929. <member name="M:Org.BouncyCastle.Crypto.Tls.Chacha20Poly1305.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext)">
  17930. <exception cref="T:System.IO.IOException"></exception>
  17931. </member>
  17932. <member name="M:Org.BouncyCastle.Crypto.Tls.Chacha20Poly1305.EncodePlaintext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  17933. <exception cref="T:System.IO.IOException"></exception>
  17934. </member>
  17935. <member name="M:Org.BouncyCastle.Crypto.Tls.Chacha20Poly1305.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  17936. <exception cref="T:System.IO.IOException"></exception>
  17937. </member>
  17938. <member name="M:Org.BouncyCastle.Crypto.Tls.Chacha20Poly1305.GetAdditionalData(System.Int64,System.Byte,System.Int32)">
  17939. <exception cref="T:System.IO.IOException"></exception>
  17940. </member>
  17941. <member name="T:Org.BouncyCastle.Crypto.Tls.CipherSuite">
  17942. <summary>
  17943. RFC 2246 A.5
  17944. </summary>
  17945. </member>
  17946. <member name="T:Org.BouncyCastle.Crypto.Tls.CipherType">
  17947. <summary>RFC 2246</summary>
  17948. <remarks>
  17949. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  17950. depend on the particular values (e.g. serialization).
  17951. </remarks>
  17952. </member>
  17953. <member name="T:Org.BouncyCastle.Crypto.Tls.CombinedHash">
  17954. A combined hash, which implements md5(m) || sha1(m).
  17955. </member>
  17956. <member name="M:Org.BouncyCastle.Crypto.Tls.CombinedHash.BlockUpdate(System.Byte[],System.Int32,System.Int32)">
  17957. @see org.bouncycastle.crypto.Digest#update(byte[], int, int)
  17958. </member>
  17959. <member name="M:Org.BouncyCastle.Crypto.Tls.CombinedHash.DoFinal(System.Byte[],System.Int32)">
  17960. @see org.bouncycastle.crypto.Digest#doFinal(byte[], int)
  17961. </member>
  17962. <member name="M:Org.BouncyCastle.Crypto.Tls.CombinedHash.Reset">
  17963. @see org.bouncycastle.crypto.Digest#reset()
  17964. </member>
  17965. <member name="T:Org.BouncyCastle.Crypto.Tls.CompressionMethod">
  17966. <summary>
  17967. RFC 2246 6.1
  17968. </summary>
  17969. </member>
  17970. <member name="T:Org.BouncyCastle.Crypto.Tls.ConnectionEnd">
  17971. <summary>RFC 2246</summary>
  17972. <remarks>
  17973. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  17974. depend on the particular values (e.g. serialization).
  17975. </remarks>
  17976. </member>
  17977. <member name="T:Org.BouncyCastle.Crypto.Tls.ContentType">
  17978. RFC 2246 6.2.1
  17979. </member>
  17980. <member name="M:Org.BouncyCastle.Crypto.Tls.DatagramTransport.GetReceiveLimit">
  17981. <exception cref="T:System.IO.IOException"/>
  17982. </member>
  17983. <member name="M:Org.BouncyCastle.Crypto.Tls.DatagramTransport.GetSendLimit">
  17984. <exception cref="T:System.IO.IOException"/>
  17985. </member>
  17986. <member name="M:Org.BouncyCastle.Crypto.Tls.DatagramTransport.Receive(System.Byte[],System.Int32,System.Int32,System.Int32)">
  17987. <exception cref="T:System.IO.IOException"/>
  17988. </member>
  17989. <member name="M:Org.BouncyCastle.Crypto.Tls.DatagramTransport.Send(System.Byte[],System.Int32,System.Int32)">
  17990. <exception cref="T:System.IO.IOException"/>
  17991. </member>
  17992. <member name="M:Org.BouncyCastle.Crypto.Tls.DatagramTransport.Close">
  17993. <exception cref="T:System.IO.IOException"/>
  17994. </member>
  17995. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsAgreementCredentials.GenerateAgreement(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  17996. <exception cref="T:System.IO.IOException"></exception>
  17997. </member>
  17998. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  17999. <exception cref="T:System.IO.IOException"></exception>
  18000. </member>
  18001. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateAESCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18002. <exception cref="T:System.IO.IOException"></exception>
  18003. </member>
  18004. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCamelliaCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18005. <exception cref="T:System.IO.IOException"></exception>
  18006. </member>
  18007. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateChaCha20Poly1305(Org.BouncyCastle.Crypto.Tls.TlsContext)">
  18008. <exception cref="T:System.IO.IOException"></exception>
  18009. </member>
  18010. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCipher_Aes_Ccm(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18011. <exception cref="T:System.IO.IOException"></exception>
  18012. </member>
  18013. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCipher_Aes_Gcm(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18014. <exception cref="T:System.IO.IOException"></exception>
  18015. </member>
  18016. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCipher_Aes_Ocb(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18017. <exception cref="T:System.IO.IOException"></exception>
  18018. </member>
  18019. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateCipher_Camellia_Gcm(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18020. <exception cref="T:System.IO.IOException"></exception>
  18021. </member>
  18022. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateDesEdeCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32)">
  18023. <exception cref="T:System.IO.IOException"></exception>
  18024. </member>
  18025. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateNullCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32)">
  18026. <exception cref="T:System.IO.IOException"></exception>
  18027. </member>
  18028. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateRC4Cipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18029. <exception cref="T:System.IO.IOException"></exception>
  18030. </member>
  18031. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateSeedCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32)">
  18032. <exception cref="T:System.IO.IOException"></exception>
  18033. </member>
  18034. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsCipherFactory.CreateHMacDigest(System.Int32)">
  18035. <exception cref="T:System.IO.IOException"></exception>
  18036. </member>
  18037. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsDHVerifier.#ctor">
  18038. <summary>Accept various standard DH groups with 'P' at least <c>DefaultMinimumPrimeBits</c> bits.</summary>
  18039. </member>
  18040. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsDHVerifier.#ctor(System.Int32)">
  18041. <summary>Accept various standard DH groups with 'P' at least the specified number of bits.</summary>
  18042. </member>
  18043. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsDHVerifier.#ctor(System.Collections.IList,System.Int32)">
  18044. <summary>Accept a custom set of group parameters, subject to a minimum bitlength for 'P'.</summary>
  18045. <param name="groups">An <c>IList</c> of acceptable <c>DHParameters</c>.</param>
  18046. <param name="minimumPrimeBits">The minimum acceptable bitlength of the 'P' parameter.</param>
  18047. </member>
  18048. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsEncryptionCredentials.DecryptPreMasterSecret(System.Byte[])">
  18049. <exception cref="T:System.IO.IOException"></exception>
  18050. </member>
  18051. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsSignerCredentials.GenerateCertificateSignature(System.Byte[])">
  18052. <exception cref="T:System.IO.IOException"></exception>
  18053. </member>
  18054. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsSrpGroupVerifier.#ctor">
  18055. Accept only the group parameters specified in RFC 5054 Appendix A.
  18056. </member>
  18057. <member name="M:Org.BouncyCastle.Crypto.Tls.DefaultTlsSrpGroupVerifier.#ctor(System.Collections.IList)">
  18058. Specify a custom set of acceptable group parameters.
  18059. @param groups a {@link Vector} of acceptable {@link SRP6GroupParameters}
  18060. </member>
  18061. <member name="T:Org.BouncyCastle.Crypto.Tls.DeferredHash">
  18062. Buffers input until the hash algorithm is determined.
  18063. </member>
  18064. <member name="P:Org.BouncyCastle.Crypto.Tls.DigitallySigned.Algorithm">
  18065. @return a {@link SignatureAndHashAlgorithm} (or null before TLS 1.2).
  18066. </member>
  18067. <member name="M:Org.BouncyCastle.Crypto.Tls.DigitallySigned.Encode(System.IO.Stream)">
  18068. Encode this {@link DigitallySigned} to a {@link Stream}.
  18069. @param output
  18070. the {@link Stream} to encode to.
  18071. @throws IOException
  18072. </member>
  18073. <member name="M:Org.BouncyCastle.Crypto.Tls.DigitallySigned.Parse(Org.BouncyCastle.Crypto.Tls.TlsContext,System.IO.Stream)">
  18074. Parse a {@link DigitallySigned} from a {@link Stream}.
  18075. @param context
  18076. the {@link TlsContext} of the current connection.
  18077. @param input
  18078. the {@link Stream} to parse from.
  18079. @return a {@link DigitallySigned} object.
  18080. @throws IOException
  18081. </member>
  18082. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsHandshakeRetransmit.ReceivedHandshakeRecord(System.Int32,System.Byte[],System.Int32,System.Int32)">
  18083. <exception cref="T:System.IO.IOException"/>
  18084. </member>
  18085. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.ProcessFinished(System.Byte[],System.Byte[])">
  18086. <exception cref="T:System.IO.IOException"/>
  18087. </member>
  18088. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.ApplyMaxFragmentLengthExtension(Org.BouncyCastle.Crypto.Tls.DtlsRecordLayer,System.Int16)">
  18089. <exception cref="T:System.IO.IOException"/>
  18090. </member>
  18091. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.EvaluateMaxFragmentLengthExtension(System.Boolean,System.Collections.IDictionary,System.Collections.IDictionary,System.Byte)">
  18092. <exception cref="T:System.IO.IOException"/>
  18093. </member>
  18094. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.GenerateCertificate(Org.BouncyCastle.Crypto.Tls.Certificate)">
  18095. <exception cref="T:System.IO.IOException"/>
  18096. </member>
  18097. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.GenerateSupplementalData(System.Collections.IList)">
  18098. <exception cref="T:System.IO.IOException"/>
  18099. </member>
  18100. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsProtocol.ValidateSelectedCipherSuite(System.Int32,System.Byte)">
  18101. <exception cref="T:System.IO.IOException"/>
  18102. </member>
  18103. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsRecordLayer.Send(System.Byte[],System.Int32,System.Int32)">
  18104. <exception cref="T:System.IO.IOException"/>
  18105. </member>
  18106. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsReliableHandshake.CheckInboundFlight">
  18107. Check that there are no "extra" messages left in the current inbound flight
  18108. </member>
  18109. <member name="T:Org.BouncyCastle.Crypto.Tls.DtlsReplayWindow">
  18110. RFC 4347 4.1.2.5 Anti-replay
  18111. <p/>
  18112. Support fast rejection of duplicate records by maintaining a sliding receive window
  18113. </member>
  18114. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsReplayWindow.ShouldDiscard(System.Int64)">
  18115. Check whether a received record with the given sequence number should be rejected as a duplicate.
  18116. @param seq the 48-bit DTLSPlainText.sequence_number field of a received record.
  18117. @return true if the record should be discarded without further processing.
  18118. </member>
  18119. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsReplayWindow.ReportAuthenticated(System.Int64)">
  18120. Report that a received record with the given sequence number passed authentication checks.
  18121. @param seq the 48-bit DTLSPlainText.sequence_number field of an authenticated record.
  18122. </member>
  18123. <member name="M:Org.BouncyCastle.Crypto.Tls.DtlsReplayWindow.Reset">
  18124. When a new epoch begins, sequence numbers begin again at 0
  18125. </member>
  18126. <member name="T:Org.BouncyCastle.Crypto.Tls.ECBasisType">
  18127. <summary>RFC 4492 5.4. (Errata ID: 2389)</summary>
  18128. </member>
  18129. <member name="T:Org.BouncyCastle.Crypto.Tls.ECCurveType">
  18130. <summary>
  18131. RFC 4492 5.4
  18132. </summary>
  18133. </member>
  18134. <member name="F:Org.BouncyCastle.Crypto.Tls.ECCurveType.explicit_prime">
  18135. Indicates the elliptic curve domain parameters are conveyed verbosely, and the
  18136. underlying finite field is a prime field.
  18137. </member>
  18138. <member name="F:Org.BouncyCastle.Crypto.Tls.ECCurveType.explicit_char2">
  18139. Indicates the elliptic curve domain parameters are conveyed verbosely, and the
  18140. underlying finite field is a characteristic-2 field.
  18141. </member>
  18142. <member name="F:Org.BouncyCastle.Crypto.Tls.ECCurveType.named_curve">
  18143. Indicates that a named curve is used. This option SHOULD be used when applicable.
  18144. </member>
  18145. <member name="T:Org.BouncyCastle.Crypto.Tls.ECPointFormat">
  18146. <summary>
  18147. RFC 4492 5.1.2
  18148. </summary>
  18149. </member>
  18150. <member name="T:Org.BouncyCastle.Crypto.Tls.EncryptionAlgorithm">
  18151. <summary>RFC 2246</summary>
  18152. <remarks>
  18153. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  18154. depend on the particular values (e.g. serialization).
  18155. </remarks>
  18156. </member>
  18157. <member name="T:Org.BouncyCastle.Crypto.Tls.ExporterLabel">
  18158. <summary>RFC 5705</summary>
  18159. </member>
  18160. <member name="T:Org.BouncyCastle.Crypto.Tls.HashAlgorithm">
  18161. <summary>RFC 5246 7.4.1.4.1</summary>
  18162. </member>
  18163. <member name="M:Org.BouncyCastle.Crypto.Tls.HeartbeatExtension.Encode(System.IO.Stream)">
  18164. Encode this {@link HeartbeatExtension} to a {@link Stream}.
  18165. @param output
  18166. the {@link Stream} to encode to.
  18167. @throws IOException
  18168. </member>
  18169. <member name="M:Org.BouncyCastle.Crypto.Tls.HeartbeatExtension.Parse(System.IO.Stream)">
  18170. Parse a {@link HeartbeatExtension} from a {@link Stream}.
  18171. @param input
  18172. the {@link Stream} to parse from.
  18173. @return a {@link HeartbeatExtension} object.
  18174. @throws IOException
  18175. </member>
  18176. <member name="M:Org.BouncyCastle.Crypto.Tls.HeartbeatMessage.Encode(Org.BouncyCastle.Crypto.Tls.TlsContext,System.IO.Stream)">
  18177. Encode this {@link HeartbeatMessage} to a {@link Stream}.
  18178. @param output
  18179. the {@link Stream} to encode to.
  18180. @throws IOException
  18181. </member>
  18182. <member name="M:Org.BouncyCastle.Crypto.Tls.HeartbeatMessage.Parse(System.IO.Stream)">
  18183. Parse a {@link HeartbeatMessage} from a {@link Stream}.
  18184. @param input
  18185. the {@link Stream} to parse from.
  18186. @return a {@link HeartbeatMessage} object.
  18187. @throws IOException
  18188. </member>
  18189. <member name="T:Org.BouncyCastle.Crypto.Tls.KeyExchangeAlgorithm">
  18190. <summary>RFC 2246</summary>
  18191. <remarks>
  18192. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  18193. depend on the particular values (e.g. serialization).
  18194. </remarks>
  18195. </member>
  18196. <member name="T:Org.BouncyCastle.Crypto.Tls.MacAlgorithm">
  18197. <summary>RFC 2246</summary>
  18198. <remarks>
  18199. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  18200. depend on the particular values (e.g. serialization).
  18201. </remarks>
  18202. </member>
  18203. <member name="T:Org.BouncyCastle.Crypto.Tls.NamedCurve">
  18204. <summary>
  18205. RFC 4492 5.1.1
  18206. The named curves defined here are those specified in SEC 2 [13]. Note that many of
  18207. these curves are also recommended in ANSI X9.62 [7] and FIPS 186-2 [11]. Values 0xFE00
  18208. through 0xFEFF are reserved for private use. Values 0xFF01 and 0xFF02 indicate that the
  18209. client supports arbitrary prime and characteristic-2 curves, respectively (the curve
  18210. parameters must be encoded explicitly in ECParameters).
  18211. </summary>
  18212. </member>
  18213. <member name="M:Org.BouncyCastle.Crypto.Tls.NewSessionTicket.Encode(System.IO.Stream)">
  18214. Encode this {@link NewSessionTicket} to a {@link Stream}.
  18215. @param output the {@link Stream} to encode to.
  18216. @throws IOException
  18217. </member>
  18218. <member name="M:Org.BouncyCastle.Crypto.Tls.NewSessionTicket.Parse(System.IO.Stream)">
  18219. Parse a {@link NewSessionTicket} from a {@link Stream}.
  18220. @param input the {@link Stream} to parse from.
  18221. @return a {@link NewSessionTicket} object.
  18222. @throws IOException
  18223. </member>
  18224. <member name="T:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest">
  18225. RFC 3546 3.6
  18226. </member>
  18227. <member name="M:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest.#ctor(System.Collections.IList,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  18228. @param responderIDList
  18229. an {@link IList} of {@link ResponderID}, specifying the list of trusted OCSP
  18230. responders. An empty list has the special meaning that the responders are
  18231. implicitly known to the server - e.g., by prior arrangement.
  18232. @param requestExtensions
  18233. OCSP request extensions. A null value means that there are no extensions.
  18234. </member>
  18235. <member name="P:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest.ResponderIDList">
  18236. @return an {@link IList} of {@link ResponderID}
  18237. </member>
  18238. <member name="P:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest.RequestExtensions">
  18239. @return OCSP request extensions
  18240. </member>
  18241. <member name="M:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest.Encode(System.IO.Stream)">
  18242. Encode this {@link OcspStatusRequest} to a {@link Stream}.
  18243. @param output
  18244. the {@link Stream} to encode to.
  18245. @throws IOException
  18246. </member>
  18247. <member name="M:Org.BouncyCastle.Crypto.Tls.OcspStatusRequest.Parse(System.IO.Stream)">
  18248. Parse a {@link OcspStatusRequest} from a {@link Stream}.
  18249. @param input
  18250. the {@link Stream} to parse from.
  18251. @return an {@link OcspStatusRequest} object.
  18252. @throws IOException
  18253. </member>
  18254. <member name="T:Org.BouncyCastle.Crypto.Tls.PrfAlgorithm">
  18255. <summary>RFC 5246</summary>
  18256. <remarks>
  18257. Note that the values here are implementation-specific and arbitrary. It is recommended not to
  18258. depend on the particular values (e.g. serialization).
  18259. </remarks>
  18260. </member>
  18261. <member name="M:Org.BouncyCastle.Crypto.Tls.ProtocolVersion.Get(System.Int32,System.Int32)">
  18262. <exception cref="T:System.IO.IOException"/>
  18263. </member>
  18264. <member name="T:Org.BouncyCastle.Crypto.Tls.RecordStream">
  18265. <summary>An implementation of the TLS 1.0/1.1/1.2 record layer, allowing downgrade to SSLv3.</summary>
  18266. </member>
  18267. <member name="M:Org.BouncyCastle.Crypto.Tls.RecordStream.SetRestrictReadVersion(System.Boolean)">
  18268. RFC 5246 E.1. "Earlier versions of the TLS specification were not fully clear on what the
  18269. record layer version number (TLSPlaintext.version) should contain when sending ClientHello
  18270. (i.e., before it is known which version of the protocol will be employed). Thus, TLS servers
  18271. compliant with this specification MUST accept any value {03,XX} as the record layer version
  18272. number for ClientHello."
  18273. </member>
  18274. <member name="P:Org.BouncyCastle.Crypto.Tls.SecurityParameters.Entity">
  18275. @return {@link ConnectionEnd}
  18276. </member>
  18277. <member name="P:Org.BouncyCastle.Crypto.Tls.SecurityParameters.CipherSuite">
  18278. @return {@link CipherSuite}
  18279. </member>
  18280. <member name="P:Org.BouncyCastle.Crypto.Tls.SecurityParameters.CompressionAlgorithm">
  18281. @return {@link CompressionMethod}
  18282. </member>
  18283. <member name="P:Org.BouncyCastle.Crypto.Tls.SecurityParameters.PrfAlgorithm">
  18284. @return {@link PRFAlgorithm}
  18285. </member>
  18286. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerName.Encode(System.IO.Stream)">
  18287. Encode this {@link ServerName} to a {@link Stream}.
  18288. @param output
  18289. the {@link Stream} to encode to.
  18290. @throws IOException
  18291. </member>
  18292. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerName.Parse(System.IO.Stream)">
  18293. Parse a {@link ServerName} from a {@link Stream}.
  18294. @param input
  18295. the {@link Stream} to parse from.
  18296. @return a {@link ServerName} object.
  18297. @throws IOException
  18298. </member>
  18299. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerNameList.#ctor(System.Collections.IList)">
  18300. @param serverNameList an {@link IList} of {@link ServerName}.
  18301. </member>
  18302. <member name="P:Org.BouncyCastle.Crypto.Tls.ServerNameList.ServerNames">
  18303. @return an {@link IList} of {@link ServerName}.
  18304. </member>
  18305. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerNameList.Encode(System.IO.Stream)">
  18306. Encode this {@link ServerNameList} to a {@link Stream}.
  18307. @param output
  18308. the {@link Stream} to encode to.
  18309. @throws IOException
  18310. </member>
  18311. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerNameList.Parse(System.IO.Stream)">
  18312. Parse a {@link ServerNameList} from a {@link Stream}.
  18313. @param input
  18314. the {@link Stream} to parse from.
  18315. @return a {@link ServerNameList} object.
  18316. @throws IOException
  18317. </member>
  18318. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerSrpParams.Encode(System.IO.Stream)">
  18319. Encode this {@link ServerSRPParams} to an {@link OutputStream}.
  18320. @param output
  18321. the {@link OutputStream} to encode to.
  18322. @throws IOException
  18323. </member>
  18324. <member name="M:Org.BouncyCastle.Crypto.Tls.ServerSrpParams.Parse(System.IO.Stream)">
  18325. Parse a {@link ServerSRPParams} from an {@link InputStream}.
  18326. @param input
  18327. the {@link InputStream} to parse from.
  18328. @return a {@link ServerSRPParams} object.
  18329. @throws IOException
  18330. </member>
  18331. <member name="T:Org.BouncyCastle.Crypto.Tls.SignatureAlgorithm">
  18332. RFC 5246 7.4.1.4.1 (in RFC 2246, there were no specific values assigned)
  18333. </member>
  18334. <member name="T:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm">
  18335. RFC 5246 7.4.1.4.1
  18336. </member>
  18337. <member name="M:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm.#ctor(System.Byte,System.Byte)">
  18338. @param hash {@link HashAlgorithm}
  18339. @param signature {@link SignatureAlgorithm}
  18340. </member>
  18341. <member name="P:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm.Hash">
  18342. @return {@link HashAlgorithm}
  18343. </member>
  18344. <member name="P:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm.Signature">
  18345. @return {@link SignatureAlgorithm}
  18346. </member>
  18347. <member name="M:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm.Encode(System.IO.Stream)">
  18348. Encode this {@link SignatureAndHashAlgorithm} to a {@link Stream}.
  18349. @param output the {@link Stream} to encode to.
  18350. @throws IOException
  18351. </member>
  18352. <member name="M:Org.BouncyCastle.Crypto.Tls.SignatureAndHashAlgorithm.Parse(System.IO.Stream)">
  18353. Parse a {@link SignatureAndHashAlgorithm} from a {@link Stream}.
  18354. @param input the {@link Stream} to parse from.
  18355. @return a {@link SignatureAndHashAlgorithm} object.
  18356. @throws IOException
  18357. </member>
  18358. <member name="T:Org.BouncyCastle.Crypto.Tls.SimulatedTlsSrpIdentityManager">
  18359. An implementation of {@link TlsSRPIdentityManager} that simulates the existence of "unknown" identities
  18360. to obscure the fact that there is no verifier for them.
  18361. </member>
  18362. <member name="M:Org.BouncyCastle.Crypto.Tls.SimulatedTlsSrpIdentityManager.GetRfc5054Default(Org.BouncyCastle.Crypto.Parameters.Srp6GroupParameters,System.Byte[])">
  18363. Create a {@link SimulatedTlsSRPIdentityManager} that implements the algorithm from RFC 5054 2.5.1.3
  18364. @param group the {@link SRP6GroupParameters} defining the group that SRP is operating in
  18365. @param seedKey the secret "seed key" referred to in RFC 5054 2.5.1.3
  18366. @return an instance of {@link SimulatedTlsSRPIdentityManager}
  18367. </member>
  18368. <member name="T:Org.BouncyCastle.Crypto.Tls.Ssl3Mac">
  18369. HMAC implementation based on original internet draft for HMAC (RFC 2104)
  18370. The difference is that padding is concatentated versus XORed with the key
  18371. H(K + opad, H(K + ipad, text))
  18372. </member>
  18373. <member name="M:Org.BouncyCastle.Crypto.Tls.Ssl3Mac.#ctor(Org.BouncyCastle.Crypto.IDigest)">
  18374. Base constructor for one of the standard digest algorithms that the byteLength of
  18375. the algorithm is know for. Behaviour is undefined for digests other than MD5 or SHA1.
  18376. @param digest the digest.
  18377. </member>
  18378. <member name="M:Org.BouncyCastle.Crypto.Tls.Ssl3Mac.Reset">
  18379. Reset the mac generator.
  18380. </member>
  18381. <member name="T:Org.BouncyCastle.Crypto.Tls.SupplementalDataType">
  18382. <summary>RFC 4680</summary>
  18383. </member>
  18384. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAeadCipher.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher,Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher,System.Int32,System.Int32)">
  18385. <exception cref="T:System.IO.IOException"></exception>
  18386. </member>
  18387. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAeadCipher.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher,Org.BouncyCastle.Crypto.Modes.IAeadBlockCipher,System.Int32,System.Int32,System.Int32)">
  18388. <exception cref="T:System.IO.IOException"></exception>
  18389. </member>
  18390. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAeadCipher.EncodePlaintext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18391. <exception cref="T:System.IO.IOException"></exception>
  18392. </member>
  18393. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAeadCipher.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18394. <exception cref="T:System.IO.IOException"></exception>
  18395. </member>
  18396. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAeadCipher.GetAdditionalData(System.Int64,System.Byte,System.Int32)">
  18397. <exception cref="T:System.IO.IOException"></exception>
  18398. </member>
  18399. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAgreementCredentials.GenerateAgreement(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  18400. <exception cref="T:System.IO.IOException"></exception>
  18401. </member>
  18402. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAuthentication.NotifyServerCertificate(Org.BouncyCastle.Crypto.Tls.Certificate)">
  18403. <summary>
  18404. Called by the protocol handler to report the server certificate.
  18405. </summary>
  18406. <remarks>
  18407. This method is responsible for certificate verification and validation
  18408. </remarks>
  18409. <param name="serverCertificate">The server <see cref="T:Org.BouncyCastle.Crypto.Tls.Certificate"/> received</param>
  18410. <exception cref="T:System.IO.IOException"></exception>
  18411. </member>
  18412. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsAuthentication.GetClientCredentials(Org.BouncyCastle.Crypto.Tls.CertificateRequest)">
  18413. <summary>
  18414. Return client credentials in response to server's certificate request
  18415. </summary>
  18416. <param name="certificateRequest">
  18417. A <see cref="T:Org.BouncyCastle.Crypto.Tls.CertificateRequest"/> containing server certificate request details
  18418. </param>
  18419. <returns>
  18420. A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsCredentials"/> to be used for client authentication
  18421. (or <c>null</c> for no client authentication)
  18422. </returns>
  18423. <exception cref="T:System.IO.IOException"></exception>
  18424. </member>
  18425. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsBlockCipher">
  18426. <summary>
  18427. A generic TLS 1.0-1.2 / SSLv3 block cipher. This can be used for AES or 3DES for example.
  18428. </summary>
  18429. </member>
  18430. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsBlockCipher.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.IBlockCipher,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Crypto.IDigest,System.Int32)">
  18431. <exception cref="T:System.IO.IOException"></exception>
  18432. </member>
  18433. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsBlockCipher.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18434. <exception cref="T:System.IO.IOException"></exception>
  18435. </member>
  18436. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsCipher.EncodePlaintext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18437. <exception cref="T:System.IO.IOException"></exception>
  18438. </member>
  18439. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsCipher.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18440. <exception cref="T:System.IO.IOException"></exception>
  18441. </member>
  18442. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsCipherFactory.CreateCipher(Org.BouncyCastle.Crypto.Tls.TlsContext,System.Int32,System.Int32)">
  18443. <exception cref="T:System.IO.IOException"></exception>
  18444. </member>
  18445. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.Init(Org.BouncyCastle.Crypto.Tls.TlsClientContext)">
  18446. <summary>
  18447. Called at the start of a new TLS session, before any other methods.
  18448. </summary>
  18449. <param name="context">
  18450. A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsProtocolHandler"/>
  18451. </param>
  18452. </member>
  18453. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetSessionToResume">
  18454. <summary>Return the session this client wants to resume, if any.</summary>
  18455. <remarks>Note that the peer's certificate chain for the session (if any) may need to be periodically revalidated.</remarks>
  18456. <returns>
  18457. A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsSession"/> representing the resumable session to be used for this connection,
  18458. or null to use a new session.
  18459. </returns>
  18460. </member>
  18461. <member name="P:Org.BouncyCastle.Crypto.Tls.TlsClient.ClientHelloRecordLayerVersion">
  18462. <summary>
  18463. Return the <see cref="T:Org.BouncyCastle.Crypto.Tls.ProtocolVersion"/> to use for the <c>TLSPlaintext.version</c> field prior to
  18464. receiving the server version. NOTE: This method is <b>not</b> called for DTLS.
  18465. </summary>
  18466. <remarks>
  18467. See RFC 5246 E.1.: "TLS clients that wish to negotiate with older servers MAY send any value
  18468. {03,XX} as the record layer version number. Typical values would be {03,00}, the lowest
  18469. version number supported by the client, and the value of ClientHello.client_version. No
  18470. single value will guarantee interoperability with all old servers, but this is a complex
  18471. topic beyond the scope of this document."
  18472. </remarks>
  18473. <returns>The <see cref="T:Org.BouncyCastle.Crypto.Tls.ProtocolVersion"/> to use.</returns>
  18474. </member>
  18475. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetCipherSuites">
  18476. <summary>
  18477. Get the list of cipher suites that this client supports.
  18478. </summary>
  18479. <returns>
  18480. An array of <see cref="T:Org.BouncyCastle.Crypto.Tls.CipherSuite"/> values, each specifying a supported cipher suite.
  18481. </returns>
  18482. </member>
  18483. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetCompressionMethods">
  18484. <summary>
  18485. Get the list of compression methods that this client supports.
  18486. </summary>
  18487. <returns>
  18488. An array of <see cref="T:Org.BouncyCastle.Crypto.Tls.CompressionMethod"/> values, each specifying a supported compression method.
  18489. </returns>
  18490. </member>
  18491. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetClientExtensions">
  18492. <summary>
  18493. Get the (optional) table of client extensions to be included in (extended) client hello.
  18494. </summary>
  18495. <returns>
  18496. A <see cref="T:System.Collections.IDictionary"/> (Int32 -> byte[]). May be null.
  18497. </returns>
  18498. <exception cref="T:System.IO.IOException"></exception>
  18499. </member>
  18500. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.NotifyServerVersion(Org.BouncyCastle.Crypto.Tls.ProtocolVersion)">
  18501. <exception cref="T:System.IO.IOException"></exception>
  18502. </member>
  18503. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.NotifySessionID(System.Byte[])">
  18504. <summary>
  18505. Notifies the client of the session_id sent in the ServerHello.
  18506. </summary>
  18507. <param name="sessionID">An array of <see cref="T:System.Byte"/></param>
  18508. </member>
  18509. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.NotifySelectedCipherSuite(System.Int32)">
  18510. <summary>
  18511. Report the cipher suite that was selected by the server.
  18512. </summary>
  18513. <remarks>
  18514. The protocol handler validates this value against the offered cipher suites
  18515. <seealso cref="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetCipherSuites"/>
  18516. </remarks>
  18517. <param name="selectedCipherSuite">
  18518. A <see cref="T:Org.BouncyCastle.Crypto.Tls.CipherSuite"/>
  18519. </param>
  18520. </member>
  18521. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.NotifySelectedCompressionMethod(System.Byte)">
  18522. <summary>
  18523. Report the compression method that was selected by the server.
  18524. </summary>
  18525. <remarks>
  18526. The protocol handler validates this value against the offered compression methods
  18527. <seealso cref="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetCompressionMethods"/>
  18528. </remarks>
  18529. <param name="selectedCompressionMethod">
  18530. A <see cref="T:Org.BouncyCastle.Crypto.Tls.CompressionMethod"/>
  18531. </param>
  18532. </member>
  18533. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.ProcessServerExtensions(System.Collections.IDictionary)">
  18534. <summary>
  18535. Report the extensions from an extended server hello.
  18536. </summary>
  18537. <remarks>
  18538. Will only be called if we returned a non-null result from <see cref="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetClientExtensions"/>.
  18539. </remarks>
  18540. <param name="serverExtensions">
  18541. A <see cref="T:System.Collections.IDictionary"/> (Int32 -> byte[])
  18542. </param>
  18543. </member>
  18544. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.ProcessServerSupplementalData(System.Collections.IList)">
  18545. <param name="serverSupplementalData">A <see cref="T:System.Collections.IList">list</see> of <see cref="T:Org.BouncyCastle.Crypto.Tls.SupplementalDataEntry"/></param>
  18546. <exception cref="T:System.IO.IOException"/>
  18547. </member>
  18548. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetKeyExchange">
  18549. <summary>
  18550. Return an implementation of <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange"/> to negotiate the key exchange
  18551. part of the protocol.
  18552. </summary>
  18553. <returns>
  18554. A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange"/>
  18555. </returns>
  18556. <exception cref="T:System.IO.IOException"/>
  18557. </member>
  18558. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetAuthentication">
  18559. <summary>
  18560. Return an implementation of <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsAuthentication"/> to handle authentication
  18561. part of the protocol.
  18562. </summary>
  18563. <exception cref="T:System.IO.IOException"/>
  18564. </member>
  18565. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.GetClientSupplementalData">
  18566. <returns>A <see cref="T:System.Collections.IList">list</see> of <see cref="T:Org.BouncyCastle.Crypto.Tls.SupplementalDataEntry"/></returns>
  18567. <exception cref="T:System.IO.IOException"/>
  18568. </member>
  18569. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClient.NotifyNewSessionTicket(Org.BouncyCastle.Crypto.Tls.NewSessionTicket)">
  18570. <summary>RFC 5077 3.3. NewSessionTicket Handshake Message</summary>
  18571. <remarks>
  18572. This method will be called (only) when a NewSessionTicket handshake message is received. The
  18573. ticket is opaque to the client and clients MUST NOT examine the ticket under the assumption
  18574. that it complies with e.g. <i>RFC 5077 4. Recommended Ticket Construction</i>.
  18575. </remarks>
  18576. <param name="newSessionTicket">The <see cref="T:Org.BouncyCastle.Crypto.Tls.NewSessionTicket">ticket</see></param>
  18577. <exception cref="T:System.IO.IOException"/>
  18578. </member>
  18579. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClientProtocol.#ctor(System.IO.Stream,Org.BouncyCastle.Security.SecureRandom)">
  18580. Constructor for blocking mode.
  18581. @param stream The bi-directional stream of data to/from the server
  18582. @param secureRandom Random number generator for various cryptographic functions
  18583. </member>
  18584. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClientProtocol.#ctor(System.IO.Stream,System.IO.Stream,Org.BouncyCastle.Security.SecureRandom)">
  18585. Constructor for blocking mode.
  18586. @param input The stream of data from the server
  18587. @param output The stream of data to the server
  18588. @param secureRandom Random number generator for various cryptographic functions
  18589. </member>
  18590. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClientProtocol.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  18591. Constructor for non-blocking mode.<br/>
  18592. <br/>
  18593. When data is received, use {@link #offerInput(java.nio.ByteBuffer)} to
  18594. provide the received ciphertext, then use
  18595. {@link #readInput(byte[], int, int)} to read the corresponding cleartext.<br/>
  18596. <br/>
  18597. Similarly, when data needs to be sent, use
  18598. {@link #offerOutput(byte[], int, int)} to provide the cleartext, then use
  18599. {@link #readOutput(byte[], int, int)} to get the corresponding
  18600. ciphertext.
  18601. @param secureRandom
  18602. Random number generator for various cryptographic functions
  18603. </member>
  18604. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsClientProtocol.Connect(Org.BouncyCastle.Crypto.Tls.TlsClient)">
  18605. Initiates a TLS handshake in the role of client.<br/>
  18606. <br/>
  18607. In blocking mode, this will not return until the handshake is complete.
  18608. In non-blocking mode, use {@link TlsPeer#NotifyHandshakeComplete()} to
  18609. receive a callback when the handshake is complete.
  18610. @param tlsClient The {@link TlsClient} to use for the handshake.
  18611. @throws IOException If in blocking mode and handshake was not successful.
  18612. </member>
  18613. <member name="P:Org.BouncyCastle.Crypto.Tls.TlsContext.ResumableSession">
  18614. Used to get the resumable session, if any, used by this connection. Only available after the
  18615. handshake has successfully completed.
  18616. @return A {@link TlsSession} representing the resumable session used by this connection, or
  18617. null if no resumable session available.
  18618. @see TlsPeer#NotifyHandshakeComplete()
  18619. </member>
  18620. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsContext.ExportKeyingMaterial(System.String,System.Byte[],System.Int32)">
  18621. Export keying material according to RFC 5705: "Keying Material Exporters for TLS".
  18622. @param asciiLabel indicates which application will use the exported keys.
  18623. @param context_value allows the application using the exporter to mix its own data with the TLS PRF for
  18624. the exporter output.
  18625. @param length the number of bytes to generate
  18626. @return a pseudorandom bit string of 'length' bytes generated from the master_secret.
  18627. </member>
  18628. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsDHKeyExchange">
  18629. <summary>(D)TLS DH key exchange.</summary>
  18630. </member>
  18631. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsDHVerifier">
  18632. <summary>An interface for verifying that Diffie-Hellman parameters are acceptable.</summary>
  18633. </member>
  18634. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsDHVerifier.Accept(Org.BouncyCastle.Crypto.Parameters.DHParameters)">
  18635. <summary>Verify that the given <c>DHParameters</c> are acceptable.</summary>
  18636. <param name="dhParameters">The <c>DHParameters</c> to verify.</param>
  18637. <returns>true if (and only if) the specified parameters are acceptable.</returns>
  18638. </member>
  18639. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsECDheKeyExchange">
  18640. <summary>(D)TLS ECDHE key exchange (see RFC 4492).</summary>
  18641. </member>
  18642. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsECDHKeyExchange">
  18643. <summary>(D)TLS ECDH key exchange (see RFC 4492).</summary>
  18644. </member>
  18645. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsEncryptionCredentials.DecryptPreMasterSecret(System.Byte[])">
  18646. <exception cref="T:System.IO.IOException"></exception>
  18647. </member>
  18648. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddClientCertificateTypeExtensionClient(System.Collections.IDictionary,System.Byte[])">
  18649. <exception cref="T:System.IO.IOException"></exception>
  18650. </member>
  18651. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddClientCertificateTypeExtensionServer(System.Collections.IDictionary,System.Byte)">
  18652. <exception cref="T:System.IO.IOException"></exception>
  18653. </member>
  18654. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddHeartbeatExtension(System.Collections.IDictionary,Org.BouncyCastle.Crypto.Tls.HeartbeatExtension)">
  18655. <exception cref="T:System.IO.IOException"></exception>
  18656. </member>
  18657. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddMaxFragmentLengthExtension(System.Collections.IDictionary,System.Byte)">
  18658. <exception cref="T:System.IO.IOException"></exception>
  18659. </member>
  18660. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddPaddingExtension(System.Collections.IDictionary,System.Int32)">
  18661. <exception cref="T:System.IO.IOException"></exception>
  18662. </member>
  18663. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddServerCertificateTypeExtensionClient(System.Collections.IDictionary,System.Byte[])">
  18664. <exception cref="T:System.IO.IOException"></exception>
  18665. </member>
  18666. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddServerCertificateTypeExtensionServer(System.Collections.IDictionary,System.Byte)">
  18667. <exception cref="T:System.IO.IOException"></exception>
  18668. </member>
  18669. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddServerNameExtension(System.Collections.IDictionary,Org.BouncyCastle.Crypto.Tls.ServerNameList)">
  18670. <exception cref="T:System.IO.IOException"></exception>
  18671. </member>
  18672. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.AddStatusRequestExtension(System.Collections.IDictionary,Org.BouncyCastle.Crypto.Tls.CertificateStatusRequest)">
  18673. <exception cref="T:System.IO.IOException"></exception>
  18674. </member>
  18675. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetClientCertificateTypeExtensionClient(System.Collections.IDictionary)">
  18676. <exception cref="T:System.IO.IOException"></exception>
  18677. </member>
  18678. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetClientCertificateTypeExtensionServer(System.Collections.IDictionary)">
  18679. <exception cref="T:System.IO.IOException"></exception>
  18680. </member>
  18681. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetHeartbeatExtension(System.Collections.IDictionary)">
  18682. <exception cref="T:System.IO.IOException"></exception>
  18683. </member>
  18684. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetMaxFragmentLengthExtension(System.Collections.IDictionary)">
  18685. <exception cref="T:System.IO.IOException"></exception>
  18686. </member>
  18687. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetPaddingExtension(System.Collections.IDictionary)">
  18688. <exception cref="T:System.IO.IOException"></exception>
  18689. </member>
  18690. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetServerCertificateTypeExtensionClient(System.Collections.IDictionary)">
  18691. <exception cref="T:System.IO.IOException"></exception>
  18692. </member>
  18693. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetServerCertificateTypeExtensionServer(System.Collections.IDictionary)">
  18694. <exception cref="T:System.IO.IOException"></exception>
  18695. </member>
  18696. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetServerNameExtension(System.Collections.IDictionary)">
  18697. <exception cref="T:System.IO.IOException"></exception>
  18698. </member>
  18699. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.GetStatusRequestExtension(System.Collections.IDictionary)">
  18700. <exception cref="T:System.IO.IOException"></exception>
  18701. </member>
  18702. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.HasEncryptThenMacExtension(System.Collections.IDictionary)">
  18703. <exception cref="T:System.IO.IOException"></exception>
  18704. </member>
  18705. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.HasExtendedMasterSecretExtension(System.Collections.IDictionary)">
  18706. <exception cref="T:System.IO.IOException"></exception>
  18707. </member>
  18708. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.HasTruncatedHMacExtension(System.Collections.IDictionary)">
  18709. <exception cref="T:System.IO.IOException"></exception>
  18710. </member>
  18711. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateCertificateTypeExtensionClient(System.Byte[])">
  18712. <exception cref="T:System.IO.IOException"></exception>
  18713. </member>
  18714. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateCertificateTypeExtensionServer(System.Byte)">
  18715. <exception cref="T:System.IO.IOException"></exception>
  18716. </member>
  18717. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateHeartbeatExtension(Org.BouncyCastle.Crypto.Tls.HeartbeatExtension)">
  18718. <exception cref="T:System.IO.IOException"></exception>
  18719. </member>
  18720. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateMaxFragmentLengthExtension(System.Byte)">
  18721. <exception cref="T:System.IO.IOException"></exception>
  18722. </member>
  18723. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreatePaddingExtension(System.Int32)">
  18724. <exception cref="T:System.IO.IOException"></exception>
  18725. </member>
  18726. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateServerNameExtension(Org.BouncyCastle.Crypto.Tls.ServerNameList)">
  18727. <exception cref="T:System.IO.IOException"></exception>
  18728. </member>
  18729. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.CreateStatusRequestExtension(Org.BouncyCastle.Crypto.Tls.CertificateStatusRequest)">
  18730. <exception cref="T:System.IO.IOException"></exception>
  18731. </member>
  18732. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadEmptyExtensionData(System.Byte[])">
  18733. <exception cref="T:System.IO.IOException"></exception>
  18734. </member>
  18735. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadCertificateTypeExtensionClient(System.Byte[])">
  18736. <exception cref="T:System.IO.IOException"></exception>
  18737. </member>
  18738. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadCertificateTypeExtensionServer(System.Byte[])">
  18739. <exception cref="T:System.IO.IOException"></exception>
  18740. </member>
  18741. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadEncryptThenMacExtension(System.Byte[])">
  18742. <exception cref="T:System.IO.IOException"></exception>
  18743. </member>
  18744. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadExtendedMasterSecretExtension(System.Byte[])">
  18745. <exception cref="T:System.IO.IOException"></exception>
  18746. </member>
  18747. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadHeartbeatExtension(System.Byte[])">
  18748. <exception cref="T:System.IO.IOException"></exception>
  18749. </member>
  18750. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadMaxFragmentLengthExtension(System.Byte[])">
  18751. <exception cref="T:System.IO.IOException"></exception>
  18752. </member>
  18753. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadPaddingExtension(System.Byte[])">
  18754. <exception cref="T:System.IO.IOException"></exception>
  18755. </member>
  18756. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadServerNameExtension(System.Byte[])">
  18757. <exception cref="T:System.IO.IOException"></exception>
  18758. </member>
  18759. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadStatusRequestExtension(System.Byte[])">
  18760. <exception cref="T:System.IO.IOException"></exception>
  18761. </member>
  18762. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsExtensionsUtilities.ReadTruncatedHMacExtension(System.Byte[])">
  18763. <exception cref="T:System.IO.IOException"></exception>
  18764. </member>
  18765. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange">
  18766. <summary>
  18767. A generic interface for key exchange implementations in (D)TLS.
  18768. </summary>
  18769. </member>
  18770. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.SkipServerCredentials">
  18771. <exception cref="T:System.IO.IOException"/>
  18772. </member>
  18773. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessServerCredentials(Org.BouncyCastle.Crypto.Tls.TlsCredentials)">
  18774. <exception cref="T:System.IO.IOException"/>
  18775. </member>
  18776. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessServerCertificate(Org.BouncyCastle.Crypto.Tls.Certificate)">
  18777. <exception cref="T:System.IO.IOException"/>
  18778. </member>
  18779. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.GenerateServerKeyExchange">
  18780. <exception cref="T:System.IO.IOException"/>
  18781. </member>
  18782. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.SkipServerKeyExchange">
  18783. <exception cref="T:System.IO.IOException"/>
  18784. </member>
  18785. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessServerKeyExchange(System.IO.Stream)">
  18786. <exception cref="T:System.IO.IOException"/>
  18787. </member>
  18788. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ValidateCertificateRequest(Org.BouncyCastle.Crypto.Tls.CertificateRequest)">
  18789. <exception cref="T:System.IO.IOException"/>
  18790. </member>
  18791. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.SkipClientCredentials">
  18792. <exception cref="T:System.IO.IOException"/>
  18793. </member>
  18794. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessClientCredentials(Org.BouncyCastle.Crypto.Tls.TlsCredentials)">
  18795. <exception cref="T:System.IO.IOException"/>
  18796. </member>
  18797. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessClientCertificate(Org.BouncyCastle.Crypto.Tls.Certificate)">
  18798. <exception cref="T:System.IO.IOException"/>
  18799. </member>
  18800. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.GenerateClientKeyExchange(System.IO.Stream)">
  18801. <exception cref="T:System.IO.IOException"/>
  18802. </member>
  18803. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.ProcessClientKeyExchange(System.IO.Stream)">
  18804. <exception cref="T:System.IO.IOException"/>
  18805. </member>
  18806. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsKeyExchange.GeneratePremasterSecret">
  18807. <exception cref="T:System.IO.IOException"/>
  18808. </member>
  18809. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsMac">
  18810. <summary>
  18811. A generic TLS MAC implementation, acting as an HMAC based on some underlying Digest.
  18812. </summary>
  18813. </member>
  18814. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsMac.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.IDigest,System.Byte[],System.Int32,System.Int32)">
  18815. Generate a new instance of an TlsMac.
  18816. @param context the TLS client context
  18817. @param digest The digest to use.
  18818. @param key A byte-array where the key for this MAC is located.
  18819. @param keyOff The number of bytes to skip, before the key starts in the buffer.
  18820. @param keyLen The length of the key.
  18821. </member>
  18822. <member name="P:Org.BouncyCastle.Crypto.Tls.TlsMac.MacSecret">
  18823. @return the MAC write secret
  18824. </member>
  18825. <member name="P:Org.BouncyCastle.Crypto.Tls.TlsMac.Size">
  18826. @return The output length of this MAC.
  18827. </member>
  18828. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsMac.CalculateMac(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18829. Calculate the MAC for some given data.
  18830. @param type The message type of the message.
  18831. @param message A byte-buffer containing the message.
  18832. @param offset The number of bytes to skip, before the message starts.
  18833. @param length The length of the message.
  18834. @return A new byte-buffer containing the MAC value.
  18835. </member>
  18836. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsNoCloseNotifyException">
  18837. <summary>
  18838. This exception will be thrown(only) when the connection is closed by the peer without sending a
  18839. <code cref="F:Org.BouncyCastle.Crypto.Tls.AlertDescription.close_notify">close_notify</code> warning alert.
  18840. </summary>
  18841. <remarks>
  18842. If this happens, the TLS protocol cannot rule out truncation of the connection data (potentially
  18843. malicious). It may be possible to check for truncation via some property of a higher level protocol
  18844. built upon TLS, e.g.the Content-Length header for HTTPS.
  18845. </remarks>
  18846. </member>
  18847. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsNullCipher">
  18848. <summary>
  18849. A NULL CipherSuite, with optional MAC.
  18850. </summary>
  18851. </member>
  18852. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsNullCipher.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Crypto.IDigest)">
  18853. <exception cref="T:System.IO.IOException"></exception>
  18854. </member>
  18855. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsNullCipher.EncodePlaintext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18856. <exception cref="T:System.IO.IOException"></exception>
  18857. </member>
  18858. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsNullCipher.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  18859. <exception cref="T:System.IO.IOException"></exception>
  18860. </member>
  18861. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.RequiresExtendedMasterSecret">
  18862. <summary>
  18863. This implementation supports RFC 7627 and will always negotiate the extended_master_secret
  18864. extension where possible.
  18865. </summary>
  18866. <remarks>
  18867. When connecting to a peer that does not offer/accept this extension, it is recommended to
  18868. abort the handshake. This option is provided for interoperability with legacy peers,
  18869. although some TLS features will be disabled in that case (see RFC 7627 5.4).
  18870. </remarks>
  18871. <returns>
  18872. <code>true</code> if the handshake should be aborted when the peer does not negotiate the
  18873. extended_master_secret extension, or <code>false</code> to support legacy interoperability.
  18874. </returns>
  18875. </member>
  18876. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.ShouldUseGmtUnixTime">
  18877. <summary>
  18878. draft-mathewson-no-gmtunixtime-00 2. "If existing users of a TLS implementation may rely on
  18879. gmt_unix_time containing the current time, we recommend that implementors MAY provide the
  18880. ability to set gmt_unix_time as an option only, off by default."
  18881. </summary>
  18882. <returns>
  18883. <code>true</code> if the current time should be used in the gmt_unix_time field of
  18884. Random, or <code>false</code> if gmt_unix_time should contain a cryptographically
  18885. random value.
  18886. </returns>
  18887. </member>
  18888. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.NotifySecureRenegotiation(System.Boolean)">
  18889. <summary>
  18890. Report whether the server supports secure renegotiation
  18891. </summary>
  18892. <remarks>
  18893. The protocol handler automatically processes the relevant extensions
  18894. </remarks>
  18895. <param name="secureRenegotiation">
  18896. A <see cref="T:System.Boolean"/>, true if the server supports secure renegotiation
  18897. </param>
  18898. <exception cref="T:System.IO.IOException"></exception>
  18899. </member>
  18900. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.GetCompression">
  18901. <summary>
  18902. Return an implementation of <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsCompression"/> to handle record compression.
  18903. </summary>
  18904. <returns>A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsCompression"/></returns>
  18905. <exception cref="T:System.IO.IOException"/>
  18906. </member>
  18907. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.GetCipher">
  18908. <summary>
  18909. Return an implementation of <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsCipher"/> to use for encryption/decryption.
  18910. </summary>
  18911. <returns>A <see cref="T:Org.BouncyCastle.Crypto.Tls.TlsCipher"/></returns>
  18912. <exception cref="T:System.IO.IOException"/>
  18913. </member>
  18914. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.NotifyAlertRaised(System.Byte,System.Byte,System.String,System.Exception)">
  18915. <summary>This method will be called when an alert is raised by the protocol.</summary>
  18916. <param name="alertLevel"><see cref="T:Org.BouncyCastle.Crypto.Tls.AlertLevel"/></param>
  18917. <param name="alertDescription"><see cref="T:Org.BouncyCastle.Crypto.Tls.AlertDescription"/></param>
  18918. <param name="message">A human-readable message explaining what caused this alert. May be null.</param>
  18919. <param name="cause">The <c>Exception</c> that caused this alert to be raised. May be null.</param>
  18920. </member>
  18921. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.NotifyAlertReceived(System.Byte,System.Byte)">
  18922. <summary>This method will be called when an alert is received from the remote peer.</summary>
  18923. <param name="alertLevel"><see cref="T:Org.BouncyCastle.Crypto.Tls.AlertLevel"/></param>
  18924. <param name="alertDescription"><see cref="T:Org.BouncyCastle.Crypto.Tls.AlertDescription"/></param>
  18925. </member>
  18926. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsPeer.NotifyHandshakeComplete">
  18927. <summary>Notifies the peer that the handshake has been successfully completed.</summary>
  18928. <exception cref="T:System.IO.IOException"></exception>
  18929. </member>
  18930. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.ProcessChangeCipherSpec(System.Byte[],System.Int32,System.Int32)">
  18931. This method is called, when a change cipher spec message is received.
  18932. @throws IOException If the message has an invalid content or the handshake is not in the correct
  18933. state.
  18934. </member>
  18935. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.ReadApplicationData(System.Byte[],System.Int32,System.Int32)">
  18936. Read data from the network. The method will return immediately, if there is still some data
  18937. left in the buffer, or block until some application data has been read from the network.
  18938. @param buf The buffer where the data will be copied to.
  18939. @param offset The position where the data will be placed in the buffer.
  18940. @param len The maximum number of bytes to read.
  18941. @return The number of bytes read.
  18942. @throws IOException If something goes wrong during reading data.
  18943. </member>
  18944. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.WriteData(System.Byte[],System.Int32,System.Int32)">
  18945. Send some application data to the remote system.
  18946. <p/>
  18947. The method will handle fragmentation internally.
  18948. @param buf The buffer with the data.
  18949. @param offset The position in the buffer where the data is placed.
  18950. @param len The length of the data.
  18951. @throws IOException If something goes wrong during sending.
  18952. </member>
  18953. <member name="P:Org.BouncyCastle.Crypto.Tls.TlsProtocol.Stream">
  18954. <summary>The secure bidirectional stream for this connection</summary>
  18955. <remarks>Only allowed in blocking mode.</remarks>
  18956. </member>
  18957. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.CloseInput">
  18958. Should be called in non-blocking mode when the input data reaches EOF.
  18959. </member>
  18960. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.OfferInput(System.Byte[])">
  18961. Offer input from an arbitrary source. Only allowed in non-blocking mode.<br/>
  18962. <br/>
  18963. After this method returns, the input buffer is "owned" by this object. Other code
  18964. must not attempt to do anything with it.<br/>
  18965. <br/>
  18966. This method will decrypt and process all records that are fully available.
  18967. If only part of a record is available, the buffer will be retained until the
  18968. remainder of the record is offered.<br/>
  18969. <br/>
  18970. If any records containing application data were processed, the decrypted data
  18971. can be obtained using {@link #readInput(byte[], int, int)}. If any records
  18972. containing protocol data were processed, a response may have been generated.
  18973. You should always check to see if there is any available output after calling
  18974. this method by calling {@link #getAvailableOutputBytes()}.
  18975. @param input The input buffer to offer
  18976. @throws IOException If an error occurs while decrypting or processing a record
  18977. </member>
  18978. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.GetAvailableInputBytes">
  18979. Gets the amount of received application data. A call to {@link #readInput(byte[], int, int)}
  18980. is guaranteed to be able to return at least this much data.<br/>
  18981. <br/>
  18982. Only allowed in non-blocking mode.
  18983. @return The number of bytes of available application data
  18984. </member>
  18985. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.ReadInput(System.Byte[],System.Int32,System.Int32)">
  18986. Retrieves received application data. Use {@link #getAvailableInputBytes()} to check
  18987. how much application data is currently available. This method functions similarly to
  18988. {@link InputStream#read(byte[], int, int)}, except that it never blocks. If no data
  18989. is available, nothing will be copied and zero will be returned.<br/>
  18990. <br/>
  18991. Only allowed in non-blocking mode.
  18992. @param buffer The buffer to hold the application data
  18993. @param offset The start offset in the buffer at which the data is written
  18994. @param length The maximum number of bytes to read
  18995. @return The total number of bytes copied to the buffer. May be less than the
  18996. length specified if the length was greater than the amount of available data.
  18997. </member>
  18998. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.OfferOutput(System.Byte[],System.Int32,System.Int32)">
  18999. Offer output from an arbitrary source. Only allowed in non-blocking mode.<br/>
  19000. <br/>
  19001. After this method returns, the specified section of the buffer will have been
  19002. processed. Use {@link #readOutput(byte[], int, int)} to get the bytes to
  19003. transmit to the other peer.<br/>
  19004. <br/>
  19005. This method must not be called until after the handshake is complete! Attempting
  19006. to call it before the handshake is complete will result in an exception.
  19007. @param buffer The buffer containing application data to encrypt
  19008. @param offset The offset at which to begin reading data
  19009. @param length The number of bytes of data to read
  19010. @throws IOException If an error occurs encrypting the data, or the handshake is not complete
  19011. </member>
  19012. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.GetAvailableOutputBytes">
  19013. Gets the amount of encrypted data available to be sent. A call to
  19014. {@link #readOutput(byte[], int, int)} is guaranteed to be able to return at
  19015. least this much data.<br/>
  19016. <br/>
  19017. Only allowed in non-blocking mode.
  19018. @return The number of bytes of available encrypted data
  19019. </member>
  19020. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.ReadOutput(System.Byte[],System.Int32,System.Int32)">
  19021. Retrieves encrypted data to be sent. Use {@link #getAvailableOutputBytes()} to check
  19022. how much encrypted data is currently available. This method functions similarly to
  19023. {@link InputStream#read(byte[], int, int)}, except that it never blocks. If no data
  19024. is available, nothing will be copied and zero will be returned.<br/>
  19025. <br/>
  19026. Only allowed in non-blocking mode.
  19027. @param buffer The buffer to hold the encrypted data
  19028. @param offset The start offset in the buffer at which the data is written
  19029. @param length The maximum number of bytes to read
  19030. @return The total number of bytes copied to the buffer. May be less than the
  19031. length specified if the length was greater than the amount of available data.
  19032. </member>
  19033. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.Close">
  19034. Closes this connection.
  19035. @throws IOException If something goes wrong during closing.
  19036. </member>
  19037. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.AssertEmpty(System.IO.MemoryStream)">
  19038. Make sure the InputStream 'buf' now empty. Fail otherwise.
  19039. @param buf The InputStream to check.
  19040. @throws IOException If 'buf' is not empty.
  19041. </member>
  19042. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocol.GetCurrentPrfHash(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.Tls.TlsHandshakeHash,System.Byte[])">
  19043. 'sender' only relevant to SSLv3
  19044. </member>
  19045. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsProtocolHandler.#ctor(System.IO.Stream,System.IO.Stream,Org.BouncyCastle.Security.SecureRandom)">
  19046. <remarks>Both streams can be the same object</remarks>
  19047. </member>
  19048. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsPskKeyExchange">
  19049. <summary>(D)TLS PSK key exchange (RFC 4279).</summary>
  19050. </member>
  19051. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsRsaKeyExchange">
  19052. <summary>(D)TLS and SSLv3 RSA key exchange.</summary>
  19053. </member>
  19054. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsRsaUtilities.GenerateEncryptedPreMasterSecret(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.Parameters.RsaKeyParameters,System.IO.Stream)">
  19055. <exception cref="T:System.IO.IOException"></exception>
  19056. </member>
  19057. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.NotifyClientVersion(Org.BouncyCastle.Crypto.Tls.ProtocolVersion)">
  19058. <exception cref="T:System.IO.IOException"></exception>
  19059. </member>
  19060. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.NotifyFallback(System.Boolean)">
  19061. <exception cref="T:System.IO.IOException"></exception>
  19062. </member>
  19063. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.NotifyOfferedCipherSuites(System.Int32[])">
  19064. <exception cref="T:System.IO.IOException"></exception>
  19065. </member>
  19066. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.NotifyOfferedCompressionMethods(System.Byte[])">
  19067. <exception cref="T:System.IO.IOException"></exception>
  19068. </member>
  19069. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.ProcessClientExtensions(System.Collections.IDictionary)">
  19070. <param name="clientExtensions">A <see cref="T:System.Collections.IDictionary"/> (Int32 -> byte[]). Will never be null.</param>
  19071. <exception cref="T:System.IO.IOException"></exception>
  19072. </member>
  19073. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetServerVersion">
  19074. <exception cref="T:System.IO.IOException"></exception>
  19075. </member>
  19076. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetSelectedCipherSuite">
  19077. <exception cref="T:System.IO.IOException"></exception>
  19078. </member>
  19079. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetSelectedCompressionMethod">
  19080. <exception cref="T:System.IO.IOException"></exception>
  19081. </member>
  19082. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetServerExtensions">
  19083. <summary>
  19084. Get the (optional) table of server extensions to be included in (extended) server hello.
  19085. </summary>
  19086. <returns>
  19087. A <see cref="T:System.Collections.IDictionary"/> (Int32 -> byte[]). May be null.
  19088. </returns>
  19089. <exception cref="T:System.IO.IOException"></exception>
  19090. </member>
  19091. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetServerSupplementalData">
  19092. <returns>
  19093. A <see cref="T:System.Collections.IList"/> (<see cref="T:Org.BouncyCastle.Crypto.Tls.SupplementalDataEntry"/>). May be null.
  19094. </returns>
  19095. <exception cref="T:System.IO.IOException"></exception>
  19096. </member>
  19097. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetCredentials">
  19098. <exception cref="T:System.IO.IOException"></exception>
  19099. </member>
  19100. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetCertificateStatus">
  19101. <remarks>
  19102. This method will be called (only) if the server included an extension of type
  19103. "status_request" with empty "extension_data" in the extended server hello. See <i>RFC 3546
  19104. 3.6. Certificate Status Request</i>. If a non-null <see cref="T:Org.BouncyCastle.Crypto.Tls.CertificateStatus"/> is returned, it
  19105. is sent to the client as a handshake message of type "certificate_status".
  19106. </remarks>
  19107. <returns>A <see cref="T:Org.BouncyCastle.Crypto.Tls.CertificateStatus"/> to be sent to the client (or null for none).</returns>
  19108. <exception cref="T:System.IO.IOException"></exception>
  19109. </member>
  19110. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetKeyExchange">
  19111. <exception cref="T:System.IO.IOException"></exception>
  19112. </member>
  19113. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetCertificateRequest">
  19114. <exception cref="T:System.IO.IOException"></exception>
  19115. </member>
  19116. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.ProcessClientSupplementalData(System.Collections.IList)">
  19117. <param name="clientSupplementalData"><see cref="T:System.Collections.IList"/> (<see cref="T:Org.BouncyCastle.Crypto.Tls.SupplementalDataEntry"/>)</param>
  19118. <exception cref="T:System.IO.IOException"></exception>
  19119. </member>
  19120. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.NotifyClientCertificate(Org.BouncyCastle.Crypto.Tls.Certificate)">
  19121. <summary>
  19122. Called by the protocol handler to report the client certificate, only if <c>GetCertificateRequest</c>
  19123. returned non-null.
  19124. </summary>
  19125. <remarks>Note: this method is responsible for certificate verification and validation.</remarks>
  19126. <param name="clientCertificate">the effective client certificate (may be an empty chain).</param>
  19127. <exception cref="T:System.IO.IOException"></exception>
  19128. </member>
  19129. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServer.GetNewSessionTicket">
  19130. <summary>RFC 5077 3.3. NewSessionTicket Handshake Message.</summary>
  19131. <remarks>
  19132. This method will be called (only) if a NewSessionTicket extension was sent by the server. See
  19133. <i>RFC 5077 4. Recommended Ticket Construction</i> for recommended format and protection.
  19134. </remarks>
  19135. <returns>The <see cref="T:Org.BouncyCastle.Crypto.Tls.NewSessionTicket">ticket</see>)</returns>
  19136. <exception cref="T:System.IO.IOException"></exception>
  19137. </member>
  19138. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServerProtocol.#ctor(System.IO.Stream,Org.BouncyCastle.Security.SecureRandom)">
  19139. Constructor for blocking mode.
  19140. @param stream The bi-directional stream of data to/from the client
  19141. @param output The stream of data to the client
  19142. @param secureRandom Random number generator for various cryptographic functions
  19143. </member>
  19144. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServerProtocol.#ctor(System.IO.Stream,System.IO.Stream,Org.BouncyCastle.Security.SecureRandom)">
  19145. Constructor for blocking mode.
  19146. @param input The stream of data from the client
  19147. @param output The stream of data to the client
  19148. @param secureRandom Random number generator for various cryptographic functions
  19149. </member>
  19150. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServerProtocol.#ctor(Org.BouncyCastle.Security.SecureRandom)">
  19151. Constructor for non-blocking mode.<br/>
  19152. <br/>
  19153. When data is received, use {@link #offerInput(java.nio.ByteBuffer)} to
  19154. provide the received ciphertext, then use
  19155. {@link #readInput(byte[], int, int)} to read the corresponding cleartext.<br/>
  19156. <br/>
  19157. Similarly, when data needs to be sent, use
  19158. {@link #offerOutput(byte[], int, int)} to provide the cleartext, then use
  19159. {@link #readOutput(byte[], int, int)} to get the corresponding
  19160. ciphertext.
  19161. @param secureRandom
  19162. Random number generator for various cryptographic functions
  19163. </member>
  19164. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsServerProtocol.Accept(Org.BouncyCastle.Crypto.Tls.TlsServer)">
  19165. Receives a TLS handshake in the role of server.<br/>
  19166. <br/>
  19167. In blocking mode, this will not return until the handshake is complete.
  19168. In non-blocking mode, use {@link TlsPeer#notifyHandshakeComplete()} to
  19169. receive a callback when the handshake is complete.
  19170. @param tlsServer
  19171. @throws IOException If in blocking mode and handshake was not successful.
  19172. </member>
  19173. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsSignerCredentials.GenerateCertificateSignature(System.Byte[])">
  19174. <exception cref="T:System.IO.IOException"></exception>
  19175. </member>
  19176. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsSrpGroupVerifier.Accept(Org.BouncyCastle.Crypto.Parameters.Srp6GroupParameters)">
  19177. Check whether the given SRP group parameters are acceptable for use.
  19178. @param group the {@link SRP6GroupParameters} to check
  19179. @return true if (and only if) the specified group parameters are acceptable
  19180. </member>
  19181. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsSrpIdentityManager.GetLoginParameters(System.Byte[])">
  19182. Lookup the {@link TlsSRPLoginParameters} corresponding to the specified identity.
  19183. NOTE: To avoid "identity probing", unknown identities SHOULD be handled as recommended in RFC
  19184. 5054 2.5.1.3. {@link SimulatedTlsSRPIdentityManager} is provided for this purpose.
  19185. @param identity
  19186. the SRP identity sent by the connecting client
  19187. @return the {@link TlsSRPLoginParameters} for the specified identity, or else 'simulated'
  19188. parameters if the identity is not recognized. A null value is also allowed, but not
  19189. recommended.
  19190. </member>
  19191. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsSrpKeyExchange">
  19192. <summary>(D)TLS SRP key exchange (RFC 5054).</summary>
  19193. </member>
  19194. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsSRTPUtils">
  19195. RFC 5764 DTLS Extension to Establish Keys for SRTP.
  19196. </member>
  19197. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsStreamCipher.#ctor(Org.BouncyCastle.Crypto.Tls.TlsContext,Org.BouncyCastle.Crypto.IStreamCipher,Org.BouncyCastle.Crypto.IStreamCipher,Org.BouncyCastle.Crypto.IDigest,Org.BouncyCastle.Crypto.IDigest,System.Int32,System.Boolean)">
  19198. <exception cref="T:System.IO.IOException"></exception>
  19199. </member>
  19200. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsStreamCipher.DecodeCiphertext(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32)">
  19201. <exception cref="T:System.IO.IOException"></exception>
  19202. </member>
  19203. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsStreamCipher.CheckMac(System.Int64,System.Byte,System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32,System.Int32)">
  19204. <exception cref="T:System.IO.IOException"></exception>
  19205. </member>
  19206. <member name="T:Org.BouncyCastle.Crypto.Tls.TlsUtilities">
  19207. <remarks>Some helper functions for MicroTLS.</remarks>
  19208. </member>
  19209. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsUtilities.AddSignatureAlgorithmsExtension(System.Collections.IDictionary,System.Collections.IList)">
  19210. Add a 'signature_algorithms' extension to existing extensions.
  19211. @param extensions A {@link Hashtable} to add the extension to.
  19212. @param supportedSignatureAlgorithms {@link Vector} containing at least 1 {@link SignatureAndHashAlgorithm}.
  19213. @throws IOException
  19214. </member>
  19215. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsUtilities.GetSignatureAlgorithmsExtension(System.Collections.IDictionary)">
  19216. Get a 'signature_algorithms' extension from extensions.
  19217. @param extensions A {@link Hashtable} to get the extension from, if it is present.
  19218. @return A {@link Vector} containing at least 1 {@link SignatureAndHashAlgorithm}, or null.
  19219. @throws IOException
  19220. </member>
  19221. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsUtilities.CreateSignatureAlgorithmsExtension(System.Collections.IList)">
  19222. Create a 'signature_algorithms' extension value.
  19223. @param supportedSignatureAlgorithms A {@link Vector} containing at least 1 {@link SignatureAndHashAlgorithm}.
  19224. @return A byte array suitable for use as an extension value.
  19225. @throws IOException
  19226. </member>
  19227. <member name="M:Org.BouncyCastle.Crypto.Tls.TlsUtilities.ReadSignatureAlgorithmsExtension(System.Byte[])">
  19228. Read 'signature_algorithms' extension data.
  19229. @param extensionData The extension data.
  19230. @return A {@link Vector} containing at least 1 {@link SignatureAndHashAlgorithm}.
  19231. @throws IOException
  19232. </member>
  19233. <member name="T:Org.BouncyCastle.Crypto.Tls.UrlAndHash">
  19234. RFC 6066 5.
  19235. </member>
  19236. <member name="M:Org.BouncyCastle.Crypto.Tls.UrlAndHash.Encode(System.IO.Stream)">
  19237. Encode this {@link UrlAndHash} to a {@link Stream}.
  19238. @param output the {@link Stream} to encode to.
  19239. @throws IOException
  19240. </member>
  19241. <member name="M:Org.BouncyCastle.Crypto.Tls.UrlAndHash.Parse(Org.BouncyCastle.Crypto.Tls.TlsContext,System.IO.Stream)">
  19242. Parse a {@link UrlAndHash} from a {@link Stream}.
  19243. @param context
  19244. the {@link TlsContext} of the current connection.
  19245. @param input
  19246. the {@link Stream} to parse from.
  19247. @return a {@link UrlAndHash} object.
  19248. @throws IOException
  19249. </member>
  19250. <member name="T:Org.BouncyCastle.Crypto.Tls.UserMappingType">
  19251. <remarks>RFC 4681</remarks>
  19252. </member>
  19253. <member name="T:Org.BouncyCastle.Crypto.Tls.UseSrtpData">
  19254. RFC 5764 4.1.1
  19255. </member>
  19256. <member name="M:Org.BouncyCastle.Crypto.Tls.UseSrtpData.#ctor(System.Int32[],System.Byte[])">
  19257. @param protectionProfiles see {@link SrtpProtectionProfile} for valid constants.
  19258. @param mki valid lengths from 0 to 255.
  19259. </member>
  19260. <member name="P:Org.BouncyCastle.Crypto.Tls.UseSrtpData.ProtectionProfiles">
  19261. @return see {@link SrtpProtectionProfile} for valid constants.
  19262. </member>
  19263. <member name="P:Org.BouncyCastle.Crypto.Tls.UseSrtpData.Mki">
  19264. @return valid lengths from 0 to 255.
  19265. </member>
  19266. <member name="M:Org.BouncyCastle.Crypto.Utilities.AlgorithmIdentifierFactory.GenerateEncryptionAlgID(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Int32,Org.BouncyCastle.Security.SecureRandom)">
  19267. Create an AlgorithmIdentifier for the passed in encryption algorithm.
  19268. @param encryptionOID OID for the encryption algorithm
  19269. @param keySize key size in bits (-1 if unknown)
  19270. @param random SecureRandom to use for parameter generation.
  19271. @return a full AlgorithmIdentifier including parameters
  19272. @throws IllegalArgumentException if encryptionOID cannot be matched
  19273. </member>
  19274. <member name="M:Org.BouncyCastle.Crypto.Utilities.CipherKeyGeneratorFactory.CreateKeyGenerator(Org.BouncyCastle.Asn1.DerObjectIdentifier,Org.BouncyCastle.Security.SecureRandom)">
  19275. Create a key generator for the passed in Object Identifier.
  19276. @param algorithm the Object Identifier indicating the algorithn the generator is for.
  19277. @param random a source of random to initialise the generator with.
  19278. @return an initialised CipherKeyGenerator.
  19279. @throws IllegalArgumentException if the algorithm cannot be identified.
  19280. </member>
  19281. <member name="M:Org.BouncyCastle.Math.BigInteger.AddMagnitudes(System.Int32[],System.Int32[])">
  19282. return a = a + b - b preserved.
  19283. </member>
  19284. <member name="M:Org.BouncyCastle.Math.BigInteger.CompareTo(System.Int32,System.Int32[],System.Int32,System.Int32[])">
  19285. unsigned comparison on two arrays - note the arrays may
  19286. start with leading zeros.
  19287. </member>
  19288. <member name="M:Org.BouncyCastle.Math.BigInteger.Divide(System.Int32[],System.Int32[])">
  19289. return z = x / y - done in place (z value preserved, x contains the
  19290. remainder)
  19291. </member>
  19292. <member name="M:Org.BouncyCastle.Math.BigInteger.IsProbablePrime(System.Int32)">
  19293. return whether or not a BigInteger is probably prime with a
  19294. probability of 1 - (1/2)**certainty.
  19295. <p>From Knuth Vol 2, pg 395.</p>
  19296. </member>
  19297. <member name="M:Org.BouncyCastle.Math.BigInteger.ExtEuclid(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger@)">
  19298. Calculate the numbers u1, u2, and u3 such that:
  19299. u1 * a + u2 * b = u3
  19300. where u3 is the greatest common divider of a and b.
  19301. a and b using the extended Euclid algorithm (refer p. 323
  19302. of The Art of Computer Programming vol 2, 2nd ed).
  19303. This also seems to have the side effect of calculating
  19304. some form of multiplicative inverse.
  19305. @param a First number to calculate gcd for
  19306. @param b Second number to calculate gcd for
  19307. @param u1Out the return object for the u1 value
  19308. @return The greatest common divisor of a and b
  19309. </member>
  19310. <member name="M:Org.BouncyCastle.Math.BigInteger.Square(System.Int32[],System.Int32[])">
  19311. return w with w = x * x - w is assumed to have enough space.
  19312. </member>
  19313. <member name="M:Org.BouncyCastle.Math.BigInteger.Multiply(System.Int32[],System.Int32[],System.Int32[])">
  19314. return x with x = y * z - x is assumed to have enough space.
  19315. </member>
  19316. <member name="M:Org.BouncyCastle.Math.BigInteger.GetMQuote">
  19317. Calculate mQuote = -m^(-1) mod b with b = 2^32 (32 = word size)
  19318. </member>
  19319. <member name="M:Org.BouncyCastle.Math.BigInteger.MultiplyMonty(System.Int32[],System.Int32[],System.Int32[],System.Int32[],System.UInt32,System.Boolean)">
  19320. Montgomery multiplication: a = x * y * R^(-1) mod m
  19321. <br/>
  19322. Based algorithm 14.36 of Handbook of Applied Cryptography.
  19323. <br/>
  19324. <li> m, x, y should have length n </li>
  19325. <li> a should have length (n + 1) </li>
  19326. <li> b = 2^32, R = b^n </li>
  19327. <br/>
  19328. The result is put in x
  19329. <br/>
  19330. NOTE: the indices of x, y, m, a different in HAC and in Java
  19331. </member>
  19332. <member name="M:Org.BouncyCastle.Math.BigInteger.Remainder(System.Int32[],System.Int32[])">
  19333. return x = x % y - done in place (y value preserved)
  19334. </member>
  19335. <member name="M:Org.BouncyCastle.Math.BigInteger.ShiftLeft(System.Int32[],System.Int32)">
  19336. do a left shift - this returns a new array.
  19337. </member>
  19338. <member name="M:Org.BouncyCastle.Math.BigInteger.ShiftRightInPlace(System.Int32,System.Int32[],System.Int32)">
  19339. do a right shift - this does it in place.
  19340. </member>
  19341. <member name="M:Org.BouncyCastle.Math.BigInteger.ShiftRightOneInPlace(System.Int32,System.Int32[])">
  19342. do a right shift by one - this does it in place.
  19343. </member>
  19344. <member name="M:Org.BouncyCastle.Math.BigInteger.Subtract(System.Int32,System.Int32[],System.Int32,System.Int32[])">
  19345. returns x = x - y - we assume x is >= y
  19346. </member>
  19347. <member name="T:Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal">
  19348. Class representing a simple version of a big decimal. A
  19349. <code>SimpleBigDecimal</code> is basically a
  19350. {@link java.math.BigInteger BigInteger} with a few digits on the right of
  19351. the decimal point. The number of (binary) digits on the right of the decimal
  19352. point is called the <code>scale</code> of the <code>SimpleBigDecimal</code>.
  19353. Unlike in {@link java.math.BigDecimal BigDecimal}, the scale is not adjusted
  19354. automatically, but must be set manually. All <code>SimpleBigDecimal</code>s
  19355. taking part in the same arithmetic operation must have equal scale. The
  19356. result of a multiplication of two <code>SimpleBigDecimal</code>s returns a
  19357. <code>SimpleBigDecimal</code> with double scale.
  19358. </member>
  19359. <member name="M:Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal.GetInstance(Org.BouncyCastle.Math.BigInteger,System.Int32)">
  19360. Returns a <code>SimpleBigDecimal</code> representing the same numerical
  19361. value as <code>value</code>.
  19362. @param value The value of the <code>SimpleBigDecimal</code> to be
  19363. created.
  19364. @param scale The scale of the <code>SimpleBigDecimal</code> to be
  19365. created.
  19366. @return The such created <code>SimpleBigDecimal</code>.
  19367. </member>
  19368. <member name="M:Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal.#ctor(Org.BouncyCastle.Math.BigInteger,System.Int32)">
  19369. Constructor for <code>SimpleBigDecimal</code>. The value of the
  19370. constructed <code>SimpleBigDecimal</code> Equals <code>bigInt /
  19371. 2<sup>scale</sup></code>.
  19372. @param bigInt The <code>bigInt</code> value parameter.
  19373. @param scale The scale of the constructed <code>SimpleBigDecimal</code>.
  19374. </member>
  19375. <member name="T:Org.BouncyCastle.Math.EC.Abc.Tnaf">
  19376. Class holding methods for point multiplication based on the window
  19377. &#964;-adic nonadjacent form (WTNAF). The algorithms are based on the
  19378. paper "Improved Algorithms for Arithmetic on Anomalous Binary Curves"
  19379. by Jerome A. Solinas. The paper first appeared in the Proceedings of
  19380. Crypto 1997.
  19381. </member>
  19382. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Width">
  19383. The window width of WTNAF. The standard value of 4 is slightly less
  19384. than optimal for running time, but keeps space requirements for
  19385. precomputation low. For typical curves, a value of 5 or 6 results in
  19386. a better running time. When changing this value, the
  19387. <code>&#945;<sub>u</sub></code>'s must be computed differently, see
  19388. e.g. "Guide to Elliptic Curve Cryptography", Darrel Hankerson,
  19389. Alfred Menezes, Scott Vanstone, Springer-Verlag New York Inc., 2004,
  19390. p. 121-122
  19391. </member>
  19392. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Pow2Width">
  19393. 2<sup>4</sup>
  19394. </member>
  19395. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Alpha0">
  19396. The <code>&#945;<sub>u</sub></code>'s for <code>a=0</code> as an array
  19397. of <code>ZTauElement</code>s.
  19398. </member>
  19399. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Alpha0Tnaf">
  19400. The <code>&#945;<sub>u</sub></code>'s for <code>a=0</code> as an array
  19401. of TNAFs.
  19402. </member>
  19403. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Alpha1">
  19404. The <code>&#945;<sub>u</sub></code>'s for <code>a=1</code> as an array
  19405. of <code>ZTauElement</code>s.
  19406. </member>
  19407. <member name="F:Org.BouncyCastle.Math.EC.Abc.Tnaf.Alpha1Tnaf">
  19408. The <code>&#945;<sub>u</sub></code>'s for <code>a=1</code> as an array
  19409. of TNAFs.
  19410. </member>
  19411. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.Norm(System.SByte,Org.BouncyCastle.Math.EC.Abc.ZTauElement)">
  19412. Computes the norm of an element <code>&#955;</code> of
  19413. <code><b>Z</b>[&#964;]</code>.
  19414. @param mu The parameter <code>&#956;</code> of the elliptic curve.
  19415. @param lambda The element <code>&#955;</code> of
  19416. <code><b>Z</b>[&#964;]</code>.
  19417. @return The norm of <code>&#955;</code>.
  19418. </member>
  19419. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.Norm(System.SByte,Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal,Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal)">
  19420. Computes the norm of an element <code>&#955;</code> of
  19421. <code><b>R</b>[&#964;]</code>, where <code>&#955; = u + v&#964;</code>
  19422. and <code>u</code> and <code>u</code> are real numbers (elements of
  19423. <code><b>R</b></code>).
  19424. @param mu The parameter <code>&#956;</code> of the elliptic curve.
  19425. @param u The real part of the element <code>&#955;</code> of
  19426. <code><b>R</b>[&#964;]</code>.
  19427. @param v The <code>&#964;</code>-adic part of the element
  19428. <code>&#955;</code> of <code><b>R</b>[&#964;]</code>.
  19429. @return The norm of <code>&#955;</code>.
  19430. </member>
  19431. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.Round(Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal,Org.BouncyCastle.Math.EC.Abc.SimpleBigDecimal,System.SByte)">
  19432. Rounds an element <code>&#955;</code> of <code><b>R</b>[&#964;]</code>
  19433. to an element of <code><b>Z</b>[&#964;]</code>, such that their difference
  19434. has minimal norm. <code>&#955;</code> is given as
  19435. <code>&#955; = &#955;<sub>0</sub> + &#955;<sub>1</sub>&#964;</code>.
  19436. @param lambda0 The component <code>&#955;<sub>0</sub></code>.
  19437. @param lambda1 The component <code>&#955;<sub>1</sub></code>.
  19438. @param mu The parameter <code>&#956;</code> of the elliptic curve. Must
  19439. equal 1 or -1.
  19440. @return The rounded element of <code><b>Z</b>[&#964;]</code>.
  19441. @throws ArgumentException if <code>lambda0</code> and
  19442. <code>lambda1</code> do not have same scale.
  19443. </member>
  19444. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.ApproximateDivisionByN(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,System.SByte,System.Int32,System.Int32)">
  19445. Approximate division by <code>n</code>. For an integer
  19446. <code>k</code>, the value <code>&#955; = s k / n</code> is
  19447. computed to <code>c</code> bits of accuracy.
  19448. @param k The parameter <code>k</code>.
  19449. @param s The curve parameter <code>s<sub>0</sub></code> or
  19450. <code>s<sub>1</sub></code>.
  19451. @param vm The Lucas Sequence element <code>V<sub>m</sub></code>.
  19452. @param a The parameter <code>a</code> of the elliptic curve.
  19453. @param m The bit length of the finite field
  19454. <code><b>F</b><sub>m</sub></code>.
  19455. @param c The number of bits of accuracy, i.e. the scale of the returned
  19456. <code>SimpleBigDecimal</code>.
  19457. @return The value <code>&#955; = s k / n</code> computed to
  19458. <code>c</code> bits of accuracy.
  19459. </member>
  19460. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.TauAdicNaf(System.SByte,Org.BouncyCastle.Math.EC.Abc.ZTauElement)">
  19461. Computes the <code>&#964;</code>-adic NAF (non-adjacent form) of an
  19462. element <code>&#955;</code> of <code><b>Z</b>[&#964;]</code>.
  19463. @param mu The parameter <code>&#956;</code> of the elliptic curve.
  19464. @param lambda The element <code>&#955;</code> of
  19465. <code><b>Z</b>[&#964;]</code>.
  19466. @return The <code>&#964;</code>-adic NAF of <code>&#955;</code>.
  19467. </member>
  19468. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.Tau(Org.BouncyCastle.Math.EC.AbstractF2mPoint)">
  19469. Applies the operation <code>&#964;()</code> to an
  19470. <code>AbstractF2mPoint</code>.
  19471. @param p The AbstractF2mPoint to which <code>&#964;()</code> is applied.
  19472. @return <code>&#964;(p)</code>
  19473. </member>
  19474. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.GetMu(Org.BouncyCastle.Math.EC.AbstractF2mCurve)">
  19475. Returns the parameter <code>&#956;</code> of the elliptic curve.
  19476. @param curve The elliptic curve from which to obtain <code>&#956;</code>.
  19477. The curve must be a Koblitz curve, i.e. <code>a</code> Equals
  19478. <code>0</code> or <code>1</code> and <code>b</code> Equals
  19479. <code>1</code>.
  19480. @return <code>&#956;</code> of the elliptic curve.
  19481. @throws ArgumentException if the given ECCurve is not a Koblitz
  19482. curve.
  19483. </member>
  19484. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.GetLucas(System.SByte,System.Int32,System.Boolean)">
  19485. Calculates the Lucas Sequence elements <code>U<sub>k-1</sub></code> and
  19486. <code>U<sub>k</sub></code> or <code>V<sub>k-1</sub></code> and
  19487. <code>V<sub>k</sub></code>.
  19488. @param mu The parameter <code>&#956;</code> of the elliptic curve.
  19489. @param k The index of the second element of the Lucas Sequence to be
  19490. returned.
  19491. @param doV If set to true, computes <code>V<sub>k-1</sub></code> and
  19492. <code>V<sub>k</sub></code>, otherwise <code>U<sub>k-1</sub></code> and
  19493. <code>U<sub>k</sub></code>.
  19494. @return An array with 2 elements, containing <code>U<sub>k-1</sub></code>
  19495. and <code>U<sub>k</sub></code> or <code>V<sub>k-1</sub></code>
  19496. and <code>V<sub>k</sub></code>.
  19497. </member>
  19498. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.GetTw(System.SByte,System.Int32)">
  19499. Computes the auxiliary value <code>t<sub>w</sub></code>. If the width is
  19500. 4, then for <code>mu = 1</code>, <code>t<sub>w</sub> = 6</code> and for
  19501. <code>mu = -1</code>, <code>t<sub>w</sub> = 10</code>
  19502. @param mu The parameter <code>&#956;</code> of the elliptic curve.
  19503. @param w The window width of the WTNAF.
  19504. @return the auxiliary value <code>t<sub>w</sub></code>
  19505. </member>
  19506. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.GetSi(Org.BouncyCastle.Math.EC.AbstractF2mCurve)">
  19507. Computes the auxiliary values <code>s<sub>0</sub></code> and
  19508. <code>s<sub>1</sub></code> used for partial modular reduction.
  19509. @param curve The elliptic curve for which to compute
  19510. <code>s<sub>0</sub></code> and <code>s<sub>1</sub></code>.
  19511. @throws ArgumentException if <code>curve</code> is not a
  19512. Koblitz curve (Anomalous Binary Curve, ABC).
  19513. </member>
  19514. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.PartModReduction(Org.BouncyCastle.Math.BigInteger,System.Int32,System.SByte,Org.BouncyCastle.Math.BigInteger[],System.SByte,System.SByte)">
  19515. Partial modular reduction modulo
  19516. <code>(&#964;<sup>m</sup> - 1)/(&#964; - 1)</code>.
  19517. @param k The integer to be reduced.
  19518. @param m The bitlength of the underlying finite field.
  19519. @param a The parameter <code>a</code> of the elliptic curve.
  19520. @param s The auxiliary values <code>s<sub>0</sub></code> and
  19521. <code>s<sub>1</sub></code>.
  19522. @param mu The parameter &#956; of the elliptic curve.
  19523. @param c The precision (number of bits of accuracy) of the partial
  19524. modular reduction.
  19525. @return <code>&#961; := k partmod (&#964;<sup>m</sup> - 1)/(&#964; - 1)</code>
  19526. </member>
  19527. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.MultiplyRTnaf(Org.BouncyCastle.Math.EC.AbstractF2mPoint,Org.BouncyCastle.Math.BigInteger)">
  19528. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  19529. by a <code>BigInteger</code> using the reduced <code>&#964;</code>-adic
  19530. NAF (RTNAF) method.
  19531. @param p The AbstractF2mPoint to Multiply.
  19532. @param k The <code>BigInteger</code> by which to Multiply <code>p</code>.
  19533. @return <code>k * p</code>
  19534. </member>
  19535. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.MultiplyTnaf(Org.BouncyCastle.Math.EC.AbstractF2mPoint,Org.BouncyCastle.Math.EC.Abc.ZTauElement)">
  19536. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  19537. by an element <code>&#955;</code> of <code><b>Z</b>[&#964;]</code>
  19538. using the <code>&#964;</code>-adic NAF (TNAF) method.
  19539. @param p The AbstractF2mPoint to Multiply.
  19540. @param lambda The element <code>&#955;</code> of
  19541. <code><b>Z</b>[&#964;]</code>.
  19542. @return <code>&#955; * p</code>
  19543. </member>
  19544. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.MultiplyFromTnaf(Org.BouncyCastle.Math.EC.AbstractF2mPoint,System.SByte[])">
  19545. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  19546. by an element <code>&#955;</code> of <code><b>Z</b>[&#964;]</code>
  19547. using the <code>&#964;</code>-adic NAF (TNAF) method, given the TNAF
  19548. of <code>&#955;</code>.
  19549. @param p The AbstractF2mPoint to Multiply.
  19550. @param u The the TNAF of <code>&#955;</code>..
  19551. @return <code>&#955; * p</code>
  19552. </member>
  19553. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.TauAdicWNaf(System.SByte,Org.BouncyCastle.Math.EC.Abc.ZTauElement,System.SByte,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.EC.Abc.ZTauElement[])">
  19554. Computes the <code>[&#964;]</code>-adic window NAF of an element
  19555. <code>&#955;</code> of <code><b>Z</b>[&#964;]</code>.
  19556. @param mu The parameter &#956; of the elliptic curve.
  19557. @param lambda The element <code>&#955;</code> of
  19558. <code><b>Z</b>[&#964;]</code> of which to compute the
  19559. <code>[&#964;]</code>-adic NAF.
  19560. @param width The window width of the resulting WNAF.
  19561. @param pow2w 2<sup>width</sup>.
  19562. @param tw The auxiliary value <code>t<sub>w</sub></code>.
  19563. @param alpha The <code>&#945;<sub>u</sub></code>'s for the window width.
  19564. @return The <code>[&#964;]</code>-adic window NAF of
  19565. <code>&#955;</code>.
  19566. </member>
  19567. <member name="M:Org.BouncyCastle.Math.EC.Abc.Tnaf.GetPreComp(Org.BouncyCastle.Math.EC.AbstractF2mPoint,System.SByte)">
  19568. Does the precomputation for WTNAF multiplication.
  19569. @param p The <code>ECPoint</code> for which to do the precomputation.
  19570. @param a The parameter <code>a</code> of the elliptic curve.
  19571. @return The precomputation array for <code>p</code>.
  19572. </member>
  19573. <member name="T:Org.BouncyCastle.Math.EC.Abc.ZTauElement">
  19574. Class representing an element of <code><b>Z</b>[&#964;]</code>. Let
  19575. <code>&#955;</code> be an element of <code><b>Z</b>[&#964;]</code>. Then
  19576. <code>&#955;</code> is given as <code>&#955; = u + v&#964;</code>. The
  19577. components <code>u</code> and <code>v</code> may be used directly, there
  19578. are no accessor methods.
  19579. Immutable class.
  19580. </member>
  19581. <member name="F:Org.BouncyCastle.Math.EC.Abc.ZTauElement.u">
  19582. The &quot;real&quot; part of <code>&#955;</code>.
  19583. </member>
  19584. <member name="F:Org.BouncyCastle.Math.EC.Abc.ZTauElement.v">
  19585. The &quot;<code>&#964;</code>-adic&quot; part of <code>&#955;</code>.
  19586. </member>
  19587. <member name="M:Org.BouncyCastle.Math.EC.Abc.ZTauElement.#ctor(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  19588. Constructor for an element <code>&#955;</code> of
  19589. <code><b>Z</b>[&#964;]</code>.
  19590. @param u The &quot;real&quot; part of <code>&#955;</code>.
  19591. @param v The &quot;<code>&#964;</code>-adic&quot; part of
  19592. <code>&#955;</code>.
  19593. </member>
  19594. <member name="M:Org.BouncyCastle.Math.EC.Custom.Djb.Curve25519FieldElement.Sqrt">
  19595. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19596. none exists it returns null.
  19597. </member>
  19598. <member name="M:Org.BouncyCastle.Math.EC.Custom.Djb.Curve25519Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19599. Create a point which encodes with point compression.
  19600. @param curve the curve to use
  19601. @param x affine x co-ordinate
  19602. @param y affine y co-ordinate
  19603. @deprecated Use ECCurve.CreatePoint to construct points
  19604. </member>
  19605. <member name="M:Org.BouncyCastle.Math.EC.Custom.Djb.Curve25519Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19606. Create a point that encodes with or without point compresion.
  19607. @param curve the curve to use
  19608. @param x affine x co-ordinate
  19609. @param y affine y co-ordinate
  19610. @param withCompression if true encode with point compression
  19611. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19612. </member>
  19613. <member name="M:Org.BouncyCastle.Math.EC.Custom.GM.SM2P256V1FieldElement.Sqrt">
  19614. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19615. none exists it returns null.
  19616. </member>
  19617. <member name="M:Org.BouncyCastle.Math.EC.Custom.GM.SM2P256V1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19618. Create a point which encodes with point compression.
  19619. @param curve
  19620. the curve to use
  19621. @param x
  19622. affine x co-ordinate
  19623. @param y
  19624. affine y co-ordinate
  19625. @deprecated Use ECCurve.createPoint to construct points
  19626. </member>
  19627. <member name="M:Org.BouncyCastle.Math.EC.Custom.GM.SM2P256V1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19628. Create a point that encodes with or without point compresion.
  19629. @param curve
  19630. the curve to use
  19631. @param x
  19632. affine x co-ordinate
  19633. @param y
  19634. affine y co-ordinate
  19635. @param withCompression
  19636. if true encode with point compression
  19637. @deprecated per-point compression property will be removed, refer
  19638. {@link #getEncoded(bool)}
  19639. </member>
  19640. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP128R1FieldElement.Sqrt">
  19641. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19642. none exists it returns null.
  19643. </member>
  19644. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP128R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19645. Create a point which encodes with point compression.
  19646. @param curve
  19647. the curve to use
  19648. @param x
  19649. affine x co-ordinate
  19650. @param y
  19651. affine y co-ordinate
  19652. @deprecated Use ECCurve.createPoint to construct points
  19653. </member>
  19654. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP128R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19655. Create a point that encodes with or without point compresion.
  19656. @param curve
  19657. the curve to use
  19658. @param x
  19659. affine x co-ordinate
  19660. @param y
  19661. affine y co-ordinate
  19662. @param withCompression
  19663. if true encode with point compression
  19664. @deprecated per-point compression property will be removed, refer
  19665. {@link #getEncoded(boolean)}
  19666. </member>
  19667. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19668. Create a point which encodes with point compression.
  19669. @param curve
  19670. the curve to use
  19671. @param x
  19672. affine x co-ordinate
  19673. @param y
  19674. affine y co-ordinate
  19675. @deprecated Use ECCurve.CreatePoint to construct points
  19676. </member>
  19677. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19678. Create a point that encodes with or without point compresion.
  19679. @param curve
  19680. the curve to use
  19681. @param x
  19682. affine x co-ordinate
  19683. @param y
  19684. affine y co-ordinate
  19685. @param withCompression
  19686. if true encode with point compression
  19687. @deprecated per-point compression property will be removed, refer
  19688. {@link #getEncoded(bool)}
  19689. </member>
  19690. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R1FieldElement.Sqrt">
  19691. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19692. none exists it returns null.
  19693. </member>
  19694. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19695. Create a point which encodes with point compression.
  19696. @param curve
  19697. the curve to use
  19698. @param x
  19699. affine x co-ordinate
  19700. @param y
  19701. affine y co-ordinate
  19702. @deprecated Use ECCurve.CreatePoint to construct points
  19703. </member>
  19704. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19705. Create a point that encodes with or without point compresion.
  19706. @param curve
  19707. the curve to use
  19708. @param x
  19709. affine x co-ordinate
  19710. @param y
  19711. affine y co-ordinate
  19712. @param withCompression
  19713. if true encode with point compression
  19714. @deprecated per-point compression property will be removed, refer
  19715. {@link #getEncoded(bool)}
  19716. </member>
  19717. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R2FieldElement.Sqrt">
  19718. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19719. none exists it returns null.
  19720. </member>
  19721. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19722. Create a point which encodes with point compression.
  19723. @param curve
  19724. the curve to use
  19725. @param x
  19726. affine x co-ordinate
  19727. @param y
  19728. affine y co-ordinate
  19729. @deprecated Use ECCurve.CreatePoint to construct points
  19730. </member>
  19731. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP160R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19732. Create a point that encodes with or without point compresion.
  19733. @param curve
  19734. the curve to use
  19735. @param x
  19736. affine x co-ordinate
  19737. @param y
  19738. affine y co-ordinate
  19739. @param withCompression
  19740. if true encode with point compression
  19741. @deprecated per-point compression property will be removed, refer
  19742. {@link #getEncoded(bool)}
  19743. </member>
  19744. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192K1FieldElement.Sqrt">
  19745. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19746. none exists it returns null.
  19747. </member>
  19748. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19749. Create a point which encodes with point compression.
  19750. @param curve
  19751. the curve to use
  19752. @param x
  19753. affine x co-ordinate
  19754. @param y
  19755. affine y co-ordinate
  19756. @deprecated Use ECCurve.createPoint to construct points
  19757. </member>
  19758. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19759. Create a point that encodes with or without point compresion.
  19760. @param curve
  19761. the curve to use
  19762. @param x
  19763. affine x co-ordinate
  19764. @param y
  19765. affine y co-ordinate
  19766. @param withCompression
  19767. if true encode with point compression
  19768. @deprecated per-point compression property will be removed, refer
  19769. {@link #getEncoded(bool)}
  19770. </member>
  19771. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192R1FieldElement.Sqrt">
  19772. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19773. none exists it returns null.
  19774. </member>
  19775. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19776. Create a point which encodes with point compression.
  19777. @param curve
  19778. the curve to use
  19779. @param x
  19780. affine x co-ordinate
  19781. @param y
  19782. affine y co-ordinate
  19783. @deprecated Use ECCurve.createPoint to construct points
  19784. </member>
  19785. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP192R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19786. Create a point that encodes with or without point compresion.
  19787. @param curve
  19788. the curve to use
  19789. @param x
  19790. affine x co-ordinate
  19791. @param y
  19792. affine y co-ordinate
  19793. @param withCompression
  19794. if true encode with point compression
  19795. @deprecated per-point compression property will be removed, refer
  19796. {@link #getEncoded(bool)}
  19797. </member>
  19798. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224K1FieldElement.Sqrt">
  19799. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19800. none exists it returns null.
  19801. </member>
  19802. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19803. Create a point which encodes with point compression.
  19804. @param curve
  19805. the curve to use
  19806. @param x
  19807. affine x co-ordinate
  19808. @param y
  19809. affine y co-ordinate
  19810. @deprecated Use ECCurve.createPoint to construct points
  19811. </member>
  19812. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19813. Create a point that encodes with or without point compresion.
  19814. @param curve
  19815. the curve to use
  19816. @param x
  19817. affine x co-ordinate
  19818. @param y
  19819. affine y co-ordinate
  19820. @param withCompression
  19821. if true encode with point compression
  19822. @deprecated per-point compression property will be removed, refer
  19823. {@link #getEncoded(bool)}
  19824. </member>
  19825. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224R1FieldElement.Sqrt">
  19826. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19827. none exists it returns null.
  19828. </member>
  19829. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19830. Create a point which encodes with point compression.
  19831. @param curve
  19832. the curve to use
  19833. @param x
  19834. affine x co-ordinate
  19835. @param y
  19836. affine y co-ordinate
  19837. @deprecated Use ECCurve.createPoint to construct points
  19838. </member>
  19839. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP224R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19840. Create a point that encodes with or without point compresion.
  19841. @param curve
  19842. the curve to use
  19843. @param x
  19844. affine x co-ordinate
  19845. @param y
  19846. affine y co-ordinate
  19847. @param withCompression
  19848. if true encode with point compression
  19849. @deprecated per-point compression property will be removed, refer
  19850. {@link #getEncoded(bool)}
  19851. </member>
  19852. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256K1FieldElement.Sqrt">
  19853. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19854. none exists it returns null.
  19855. </member>
  19856. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19857. Create a point which encodes with point compression.
  19858. @param curve
  19859. the curve to use
  19860. @param x
  19861. affine x co-ordinate
  19862. @param y
  19863. affine y co-ordinate
  19864. @deprecated Use ECCurve.createPoint to construct points
  19865. </member>
  19866. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19867. Create a point that encodes with or without point compresion.
  19868. @param curve
  19869. the curve to use
  19870. @param x
  19871. affine x co-ordinate
  19872. @param y
  19873. affine y co-ordinate
  19874. @param withCompression
  19875. if true encode with point compression
  19876. @deprecated per-point compression property will be removed, refer
  19877. {@link #getEncoded(bool)}
  19878. </member>
  19879. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256R1FieldElement.Sqrt">
  19880. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19881. none exists it returns null.
  19882. </member>
  19883. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19884. Create a point which encodes with point compression.
  19885. @param curve
  19886. the curve to use
  19887. @param x
  19888. affine x co-ordinate
  19889. @param y
  19890. affine y co-ordinate
  19891. @deprecated Use ECCurve.createPoint to construct points
  19892. </member>
  19893. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP256R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19894. Create a point that encodes with or without point compresion.
  19895. @param curve
  19896. the curve to use
  19897. @param x
  19898. affine x co-ordinate
  19899. @param y
  19900. affine y co-ordinate
  19901. @param withCompression
  19902. if true encode with point compression
  19903. @deprecated per-point compression property will be removed, refer
  19904. {@link #getEncoded(bool)}
  19905. </member>
  19906. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP384R1FieldElement.Sqrt">
  19907. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19908. none exists it returns null.
  19909. </member>
  19910. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP384R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19911. Create a point which encodes with point compression.
  19912. @param curve
  19913. the curve to use
  19914. @param x
  19915. affine x co-ordinate
  19916. @param y
  19917. affine y co-ordinate
  19918. @deprecated Use ECCurve.createPoint to construct points
  19919. </member>
  19920. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP384R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19921. Create a point that encodes with or without point compresion.
  19922. @param curve
  19923. the curve to use
  19924. @param x
  19925. affine x co-ordinate
  19926. @param y
  19927. affine y co-ordinate
  19928. @param withCompression
  19929. if true encode with point compression
  19930. @deprecated per-point compression property will be removed, refer
  19931. {@link #getEncoded(bool)}
  19932. </member>
  19933. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP521R1FieldElement.Sqrt">
  19934. return a sqrt root - the routine verifies that the calculation returns the right value - if
  19935. none exists it returns null.
  19936. </member>
  19937. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP521R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19938. Create a point which encodes with point compression.
  19939. @param curve
  19940. the curve to use
  19941. @param x
  19942. affine x co-ordinate
  19943. @param y
  19944. affine y co-ordinate
  19945. @deprecated Use ECCurve.createPoint to construct points
  19946. </member>
  19947. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecP521R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19948. Create a point that encodes with or without point compresion.
  19949. @param curve
  19950. the curve to use
  19951. @param x
  19952. affine x co-ordinate
  19953. @param y
  19954. affine y co-ordinate
  19955. @param withCompression
  19956. if true encode with point compression
  19957. @deprecated per-point compression property will be removed, refer
  19958. {@link #getEncoded(bool)}
  19959. </member>
  19960. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT113R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19961. @deprecated Use ECCurve.createPoint to construct points
  19962. </member>
  19963. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT113R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19964. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19965. </member>
  19966. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT113R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19967. @deprecated Use ECCurve.createPoint to construct points
  19968. </member>
  19969. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT113R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19970. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19971. </member>
  19972. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT131R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19973. @deprecated Use ECCurve.createPoint to construct points
  19974. </member>
  19975. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT131R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19976. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19977. </member>
  19978. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT131R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19979. @deprecated Use ECCurve.createPoint to construct points
  19980. </member>
  19981. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT131R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19982. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19983. </member>
  19984. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19985. @deprecated Use ECCurve.createPoint to construct points
  19986. </member>
  19987. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19988. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19989. </member>
  19990. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19991. @deprecated Use ECCurve.createPoint to construct points
  19992. </member>
  19993. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  19994. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  19995. </member>
  19996. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  19997. @deprecated Use ECCurve.createPoint to construct points
  19998. </member>
  19999. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT163R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20000. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20001. </member>
  20002. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT193R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20003. @deprecated Use ECCurve.createPoint to construct points
  20004. </member>
  20005. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT193R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20006. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20007. </member>
  20008. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT193R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20009. @deprecated Use ECCurve.createPoint to construct points
  20010. </member>
  20011. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT193R2Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20012. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20013. </member>
  20014. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT233K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20015. @deprecated Use ECCurve.createPoint to construct points
  20016. </member>
  20017. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT233K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20018. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20019. </member>
  20020. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT233R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20021. @deprecated Use ECCurve.createPoint to construct points
  20022. </member>
  20023. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT233R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20024. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20025. </member>
  20026. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT239K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20027. @deprecated Use ECCurve.createPoint to construct points
  20028. </member>
  20029. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT239K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20030. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20031. </member>
  20032. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT283K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20033. @deprecated Use ECCurve.createPoint to construct points
  20034. </member>
  20035. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT283K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20036. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20037. </member>
  20038. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT283R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20039. @deprecated Use ECCurve.createPoint to construct points
  20040. </member>
  20041. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT283R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20042. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20043. </member>
  20044. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT409K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20045. @deprecated Use ECCurve.createPoint to construct points
  20046. </member>
  20047. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT409K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20048. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20049. </member>
  20050. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT409R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20051. @deprecated Use ECCurve.createPoint to construct points
  20052. </member>
  20053. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT409R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20054. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20055. </member>
  20056. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT571K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20057. @deprecated Use ECCurve.createPoint to construct points
  20058. </member>
  20059. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT571K1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20060. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20061. </member>
  20062. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT571R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20063. @deprecated Use ECCurve.createPoint to construct points
  20064. </member>
  20065. <member name="M:Org.BouncyCastle.Math.EC.Custom.Sec.SecT571R1Point.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20066. @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
  20067. </member>
  20068. <member name="M:Org.BouncyCastle.Math.EC.ECAlgorithms.ReferenceMultiply(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20069. Simple shift-and-add multiplication. Serves as reference implementation
  20070. to verify (possibly faster) implementations, and for very small scalars.
  20071. @param p
  20072. The point to multiply.
  20073. @param k
  20074. The multiplier.
  20075. @return The result of the point multiplication <code>kP</code>.
  20076. </member>
  20077. <member name="T:Org.BouncyCastle.Math.EC.ECCurve">
  20078. <remarks>Base class for an elliptic curve.</remarks>
  20079. </member>
  20080. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.Precompute(Org.BouncyCastle.Math.EC.ECPoint,System.String,Org.BouncyCastle.Math.EC.Multiplier.IPreCompCallback)">
  20081. Compute a <code>PreCompInfo</code> for a point on this curve, under a given name. Used by
  20082. <code>ECMultiplier</code>s to save the precomputation for this <code>ECPoint</code> for use
  20083. by subsequent multiplication.
  20084. @param point
  20085. The <code>ECPoint</code> to store precomputations for.
  20086. @param name
  20087. A <code>String</code> used to index precomputations of different types.
  20088. @param callback
  20089. Called to calculate the <code>PreCompInfo</code>.
  20090. </member>
  20091. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.NormalizeAll(Org.BouncyCastle.Math.EC.ECPoint[])">
  20092. Normalization ensures that any projective coordinate is 1, and therefore that the x, y
  20093. coordinates reflect those of the equivalent point in an affine coordinate system. Where more
  20094. than one point is to be normalized, this method will generally be more efficient than
  20095. normalizing each point separately.
  20096. @param points
  20097. An array of points that will be updated in place with their normalized versions,
  20098. where necessary
  20099. </member>
  20100. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.NormalizeAll(Org.BouncyCastle.Math.EC.ECPoint[],System.Int32,System.Int32,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20101. Normalization ensures that any projective coordinate is 1, and therefore that the x, y
  20102. coordinates reflect those of the equivalent point in an affine coordinate system. Where more
  20103. than one point is to be normalized, this method will generally be more efficient than
  20104. normalizing each point separately. An (optional) z-scaling factor can be applied; effectively
  20105. each z coordinate is scaled by this value prior to normalization (but only one
  20106. actual multiplication is needed).
  20107. @param points
  20108. An array of points that will be updated in place with their normalized versions,
  20109. where necessary
  20110. @param off
  20111. The start of the range of points to normalize
  20112. @param len
  20113. The length of the range of points to normalize
  20114. @param iso
  20115. The (optional) z-scaling factor - can be null
  20116. </member>
  20117. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.CreateCacheSafeLookupTable(Org.BouncyCastle.Math.EC.ECPoint[],System.Int32,System.Int32)">
  20118. Create a cache-safe lookup table for the specified sequence of points. All the points MUST
  20119. belong to this <code>ECCurve</code> instance, and MUST already be normalized.
  20120. </member>
  20121. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.GetMultiplier">
  20122. Sets the default <code>ECMultiplier</code>, unless already set.
  20123. </member>
  20124. <member name="M:Org.BouncyCastle.Math.EC.ECCurve.DecodePoint(System.Byte[])">
  20125. Decode a point on this curve from its ASN.1 encoding. The different
  20126. encodings are taken account of, including point compression for
  20127. <code>F<sub>p</sub></code> (X9.62 s 4.2.1 pg 17).
  20128. @return The decoded point.
  20129. </member>
  20130. <member name="T:Org.BouncyCastle.Math.EC.FpCurve">
  20131. Elliptic curve over Fp
  20132. </member>
  20133. <member name="F:Org.BouncyCastle.Math.EC.AbstractF2mCurve.si">
  20134. The auxiliary values <code>s<sub>0</sub></code> and
  20135. <code>s<sub>1</sub></code> used for partial modular reduction for
  20136. Koblitz curves.
  20137. </member>
  20138. <member name="M:Org.BouncyCastle.Math.EC.AbstractF2mCurve.SolveQuadraticEquation(Org.BouncyCastle.Math.EC.ECFieldElement)">
  20139. Solves a quadratic equation <code>z<sup>2</sup> + z = beta</code>(X9.62
  20140. D.1.6) The other solution is <code>z + 1</code>.
  20141. @param beta
  20142. The value to solve the quadratic equation for.
  20143. @return the solution for <code>z<sup>2</sup> + z = beta</code> or
  20144. <code>null</code> if no solution exists.
  20145. </member>
  20146. <member name="M:Org.BouncyCastle.Math.EC.AbstractF2mCurve.GetSi">
  20147. @return the auxiliary values <code>s<sub>0</sub></code> and
  20148. <code>s<sub>1</sub></code> used for partial modular reduction for
  20149. Koblitz curves.
  20150. </member>
  20151. <member name="P:Org.BouncyCastle.Math.EC.AbstractF2mCurve.IsKoblitz">
  20152. Returns true if this is a Koblitz curve (ABC curve).
  20153. @return true if this is a Koblitz curve (ABC curve), false otherwise
  20154. </member>
  20155. <member name="T:Org.BouncyCastle.Math.EC.F2mCurve">
  20156. Elliptic curves over F2m. The Weierstrass equation is given by
  20157. <code>y<sup>2</sup> + xy = x<sup>3</sup> + ax<sup>2</sup> + b</code>.
  20158. </member>
  20159. <member name="F:Org.BouncyCastle.Math.EC.F2mCurve.m">
  20160. The exponent <code>m</code> of <code>F<sub>2<sup>m</sup></sub></code>.
  20161. </member>
  20162. <member name="F:Org.BouncyCastle.Math.EC.F2mCurve.k1">
  20163. TPB: The integer <code>k</code> where <code>x<sup>m</sup> +
  20164. x<sup>k</sup> + 1</code> represents the reduction polynomial
  20165. <code>f(z)</code>.<br/>
  20166. PPB: The integer <code>k1</code> where <code>x<sup>m</sup> +
  20167. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20168. represents the reduction polynomial <code>f(z)</code>.<br/>
  20169. </member>
  20170. <member name="F:Org.BouncyCastle.Math.EC.F2mCurve.k2">
  20171. TPB: Always set to <code>0</code><br/>
  20172. PPB: The integer <code>k2</code> where <code>x<sup>m</sup> +
  20173. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20174. represents the reduction polynomial <code>f(z)</code>.<br/>
  20175. </member>
  20176. <member name="F:Org.BouncyCastle.Math.EC.F2mCurve.k3">
  20177. TPB: Always set to <code>0</code><br/>
  20178. PPB: The integer <code>k3</code> where <code>x<sup>m</sup> +
  20179. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20180. represents the reduction polynomial <code>f(z)</code>.<br/>
  20181. </member>
  20182. <member name="F:Org.BouncyCastle.Math.EC.F2mCurve.m_infinity">
  20183. The point at infinity on this curve.
  20184. </member>
  20185. <member name="M:Org.BouncyCastle.Math.EC.F2mCurve.#ctor(System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  20186. Constructor for Trinomial Polynomial Basis (TPB).
  20187. @param m The exponent <code>m</code> of
  20188. <code>F<sub>2<sup>m</sup></sub></code>.
  20189. @param k The integer <code>k</code> where <code>x<sup>m</sup> +
  20190. x<sup>k</sup> + 1</code> represents the reduction
  20191. polynomial <code>f(z)</code>.
  20192. @param a The coefficient <code>a</code> in the Weierstrass equation
  20193. for non-supersingular elliptic curves over
  20194. <code>F<sub>2<sup>m</sup></sub></code>.
  20195. @param b The coefficient <code>b</code> in the Weierstrass equation
  20196. for non-supersingular elliptic curves over
  20197. <code>F<sub>2<sup>m</sup></sub></code>.
  20198. </member>
  20199. <member name="M:Org.BouncyCastle.Math.EC.F2mCurve.#ctor(System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  20200. Constructor for Trinomial Polynomial Basis (TPB).
  20201. @param m The exponent <code>m</code> of
  20202. <code>F<sub>2<sup>m</sup></sub></code>.
  20203. @param k The integer <code>k</code> where <code>x<sup>m</sup> +
  20204. x<sup>k</sup> + 1</code> represents the reduction
  20205. polynomial <code>f(z)</code>.
  20206. @param a The coefficient <code>a</code> in the Weierstrass equation
  20207. for non-supersingular elliptic curves over
  20208. <code>F<sub>2<sup>m</sup></sub></code>.
  20209. @param b The coefficient <code>b</code> in the Weierstrass equation
  20210. for non-supersingular elliptic curves over
  20211. <code>F<sub>2<sup>m</sup></sub></code>.
  20212. @param order The order of the main subgroup of the elliptic curve.
  20213. @param cofactor The cofactor of the elliptic curve, i.e.
  20214. <code>#E<sub>a</sub>(F<sub>2<sup>m</sup></sub>) = h * n</code>.
  20215. </member>
  20216. <member name="M:Org.BouncyCastle.Math.EC.F2mCurve.#ctor(System.Int32,System.Int32,System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  20217. Constructor for Pentanomial Polynomial Basis (PPB).
  20218. @param m The exponent <code>m</code> of
  20219. <code>F<sub>2<sup>m</sup></sub></code>.
  20220. @param k1 The integer <code>k1</code> where <code>x<sup>m</sup> +
  20221. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20222. represents the reduction polynomial <code>f(z)</code>.
  20223. @param k2 The integer <code>k2</code> where <code>x<sup>m</sup> +
  20224. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20225. represents the reduction polynomial <code>f(z)</code>.
  20226. @param k3 The integer <code>k3</code> where <code>x<sup>m</sup> +
  20227. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20228. represents the reduction polynomial <code>f(z)</code>.
  20229. @param a The coefficient <code>a</code> in the Weierstrass equation
  20230. for non-supersingular elliptic curves over
  20231. <code>F<sub>2<sup>m</sup></sub></code>.
  20232. @param b The coefficient <code>b</code> in the Weierstrass equation
  20233. for non-supersingular elliptic curves over
  20234. <code>F<sub>2<sup>m</sup></sub></code>.
  20235. </member>
  20236. <member name="M:Org.BouncyCastle.Math.EC.F2mCurve.#ctor(System.Int32,System.Int32,System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  20237. Constructor for Pentanomial Polynomial Basis (PPB).
  20238. @param m The exponent <code>m</code> of
  20239. <code>F<sub>2<sup>m</sup></sub></code>.
  20240. @param k1 The integer <code>k1</code> where <code>x<sup>m</sup> +
  20241. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20242. represents the reduction polynomial <code>f(z)</code>.
  20243. @param k2 The integer <code>k2</code> where <code>x<sup>m</sup> +
  20244. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20245. represents the reduction polynomial <code>f(z)</code>.
  20246. @param k3 The integer <code>k3</code> where <code>x<sup>m</sup> +
  20247. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20248. represents the reduction polynomial <code>f(z)</code>.
  20249. @param a The coefficient <code>a</code> in the Weierstrass equation
  20250. for non-supersingular elliptic curves over
  20251. <code>F<sub>2<sup>m</sup></sub></code>.
  20252. @param b The coefficient <code>b</code> in the Weierstrass equation
  20253. for non-supersingular elliptic curves over
  20254. <code>F<sub>2<sup>m</sup></sub></code>.
  20255. @param order The order of the main subgroup of the elliptic curve.
  20256. @param cofactor The cofactor of the elliptic curve, i.e.
  20257. <code>#E<sub>a</sub>(F<sub>2<sup>m</sup></sub>) = h * n</code>.
  20258. </member>
  20259. <member name="M:Org.BouncyCastle.Math.EC.F2mCurve.IsTrinomial">
  20260. Return true if curve uses a Trinomial basis.
  20261. @return true if curve Trinomial, false otherwise.
  20262. </member>
  20263. <member name="P:Org.BouncyCastle.Math.EC.FpFieldElement.FieldName">
  20264. return the field name for this field.
  20265. @return the string "Fp".
  20266. </member>
  20267. <member name="M:Org.BouncyCastle.Math.EC.FpFieldElement.Sqrt">
  20268. return a sqrt root - the routine verifies that the calculation
  20269. returns the right value - if none exists it returns null.
  20270. </member>
  20271. <member name="T:Org.BouncyCastle.Math.EC.F2mFieldElement">
  20272. Class representing the Elements of the finite field
  20273. <code>F<sub>2<sup>m</sup></sub></code> in polynomial basis (PB)
  20274. representation. Both trinomial (Tpb) and pentanomial (Ppb) polynomial
  20275. basis representations are supported. Gaussian normal basis (GNB)
  20276. representation is not supported.
  20277. </member>
  20278. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.Gnb">
  20279. Indicates gaussian normal basis representation (GNB). Number chosen
  20280. according to X9.62. GNB is not implemented at present.
  20281. </member>
  20282. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.Tpb">
  20283. Indicates trinomial basis representation (Tpb). Number chosen
  20284. according to X9.62.
  20285. </member>
  20286. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.Ppb">
  20287. Indicates pentanomial basis representation (Ppb). Number chosen
  20288. according to X9.62.
  20289. </member>
  20290. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.representation">
  20291. Tpb or Ppb.
  20292. </member>
  20293. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.m">
  20294. The exponent <code>m</code> of <code>F<sub>2<sup>m</sup></sub></code>.
  20295. </member>
  20296. <member name="F:Org.BouncyCastle.Math.EC.F2mFieldElement.x">
  20297. The <code>LongArray</code> holding the bits.
  20298. </member>
  20299. <member name="M:Org.BouncyCastle.Math.EC.F2mFieldElement.#ctor(System.Int32,System.Int32,System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger)">
  20300. Constructor for Ppb.
  20301. @param m The exponent <code>m</code> of
  20302. <code>F<sub>2<sup>m</sup></sub></code>.
  20303. @param k1 The integer <code>k1</code> where <code>x<sup>m</sup> +
  20304. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20305. represents the reduction polynomial <code>f(z)</code>.
  20306. @param k2 The integer <code>k2</code> where <code>x<sup>m</sup> +
  20307. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20308. represents the reduction polynomial <code>f(z)</code>.
  20309. @param k3 The integer <code>k3</code> where <code>x<sup>m</sup> +
  20310. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20311. represents the reduction polynomial <code>f(z)</code>.
  20312. @param x The BigInteger representing the value of the field element.
  20313. </member>
  20314. <member name="M:Org.BouncyCastle.Math.EC.F2mFieldElement.#ctor(System.Int32,System.Int32,Org.BouncyCastle.Math.BigInteger)">
  20315. Constructor for Tpb.
  20316. @param m The exponent <code>m</code> of
  20317. <code>F<sub>2<sup>m</sup></sub></code>.
  20318. @param k The integer <code>k</code> where <code>x<sup>m</sup> +
  20319. x<sup>k</sup> + 1</code> represents the reduction
  20320. polynomial <code>f(z)</code>.
  20321. @param x The BigInteger representing the value of the field element.
  20322. </member>
  20323. <member name="M:Org.BouncyCastle.Math.EC.F2mFieldElement.CheckFieldElements(Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20324. Checks, if the ECFieldElements <code>a</code> and <code>b</code>
  20325. are elements of the same field <code>F<sub>2<sup>m</sup></sub></code>
  20326. (having the same representation).
  20327. @param a field element.
  20328. @param b field element to be compared.
  20329. @throws ArgumentException if <code>a</code> and <code>b</code>
  20330. are not elements of the same field
  20331. <code>F<sub>2<sup>m</sup></sub></code> (having the same
  20332. representation).
  20333. </member>
  20334. <member name="P:Org.BouncyCastle.Math.EC.F2mFieldElement.Representation">
  20335. @return the representation of the field
  20336. <code>F<sub>2<sup>m</sup></sub></code>, either of
  20337. {@link F2mFieldElement.Tpb} (trinomial
  20338. basis representation) or
  20339. {@link F2mFieldElement.Ppb} (pentanomial
  20340. basis representation).
  20341. </member>
  20342. <member name="P:Org.BouncyCastle.Math.EC.F2mFieldElement.M">
  20343. @return the degree <code>m</code> of the reduction polynomial
  20344. <code>f(z)</code>.
  20345. </member>
  20346. <member name="P:Org.BouncyCastle.Math.EC.F2mFieldElement.K1">
  20347. @return Tpb: The integer <code>k</code> where <code>x<sup>m</sup> +
  20348. x<sup>k</sup> + 1</code> represents the reduction polynomial
  20349. <code>f(z)</code>.<br/>
  20350. Ppb: The integer <code>k1</code> where <code>x<sup>m</sup> +
  20351. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20352. represents the reduction polynomial <code>f(z)</code>.<br/>
  20353. </member>
  20354. <member name="P:Org.BouncyCastle.Math.EC.F2mFieldElement.K2">
  20355. @return Tpb: Always returns <code>0</code><br/>
  20356. Ppb: The integer <code>k2</code> where <code>x<sup>m</sup> +
  20357. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20358. represents the reduction polynomial <code>f(z)</code>.<br/>
  20359. </member>
  20360. <member name="P:Org.BouncyCastle.Math.EC.F2mFieldElement.K3">
  20361. @return Tpb: Always set to <code>0</code><br/>
  20362. Ppb: The integer <code>k3</code> where <code>x<sup>m</sup> +
  20363. x<sup>k3</sup> + x<sup>k2</sup> + x<sup>k1</sup> + 1</code>
  20364. represents the reduction polynomial <code>f(z)</code>.<br/>
  20365. </member>
  20366. <member name="T:Org.BouncyCastle.Math.EC.ECPoint">
  20367. base class for points on elliptic curves.
  20368. </member>
  20369. <member name="P:Org.BouncyCastle.Math.EC.ECPoint.AffineXCoord">
  20370. Returns the affine x-coordinate after checking that this point is normalized.
  20371. @return The affine x-coordinate of this point
  20372. @throws IllegalStateException if the point is not normalized
  20373. </member>
  20374. <member name="P:Org.BouncyCastle.Math.EC.ECPoint.AffineYCoord">
  20375. Returns the affine y-coordinate after checking that this point is normalized
  20376. @return The affine y-coordinate of this point
  20377. @throws IllegalStateException if the point is not normalized
  20378. </member>
  20379. <member name="P:Org.BouncyCastle.Math.EC.ECPoint.XCoord">
  20380. Returns the x-coordinate.
  20381. Caution: depending on the curve's coordinate system, this may not be the same value as in an
  20382. affine coordinate system; use Normalize() to get a point where the coordinates have their
  20383. affine values, or use AffineXCoord if you expect the point to already have been normalized.
  20384. @return the x-coordinate of this point
  20385. </member>
  20386. <member name="P:Org.BouncyCastle.Math.EC.ECPoint.YCoord">
  20387. Returns the y-coordinate.
  20388. Caution: depending on the curve's coordinate system, this may not be the same value as in an
  20389. affine coordinate system; use Normalize() to get a point where the coordinates have their
  20390. affine values, or use AffineYCoord if you expect the point to already have been normalized.
  20391. @return the y-coordinate of this point
  20392. </member>
  20393. <member name="M:Org.BouncyCastle.Math.EC.ECPoint.Normalize">
  20394. Normalization ensures that any projective coordinate is 1, and therefore that the x, y
  20395. coordinates reflect those of the equivalent point in an affine coordinate system.
  20396. @return a new ECPoint instance representing the same point, but with normalized coordinates
  20397. </member>
  20398. <member name="M:Org.BouncyCastle.Math.EC.ECPointBase.GetEncoded(System.Boolean)">
  20399. return the field element encoded with point compression. (S 4.3.6)
  20400. </member>
  20401. <member name="M:Org.BouncyCastle.Math.EC.ECPointBase.Multiply(Org.BouncyCastle.Math.BigInteger)">
  20402. Multiplies this <code>ECPoint</code> by the given number.
  20403. @param k The multiplicator.
  20404. @return <code>k * this</code>.
  20405. </member>
  20406. <member name="T:Org.BouncyCastle.Math.EC.FpPoint">
  20407. Elliptic curve points over Fp
  20408. </member>
  20409. <member name="M:Org.BouncyCastle.Math.EC.FpPoint.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20410. Create a point which encodes without point compression.
  20411. @param curve the curve to use
  20412. @param x affine x co-ordinate
  20413. @param y affine y co-ordinate
  20414. </member>
  20415. <member name="M:Org.BouncyCastle.Math.EC.FpPoint.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20416. Create a point that encodes with or without point compression.
  20417. @param curve the curve to use
  20418. @param x affine x co-ordinate
  20419. @param y affine y co-ordinate
  20420. @param withCompression if true encode with point compression
  20421. </member>
  20422. <member name="T:Org.BouncyCastle.Math.EC.F2mPoint">
  20423. Elliptic curve points over F2m
  20424. </member>
  20425. <member name="M:Org.BouncyCastle.Math.EC.F2mPoint.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement)">
  20426. @param curve base curve
  20427. @param x x point
  20428. @param y y point
  20429. </member>
  20430. <member name="M:Org.BouncyCastle.Math.EC.F2mPoint.#ctor(Org.BouncyCastle.Math.EC.ECCurve,Org.BouncyCastle.Math.EC.ECFieldElement,Org.BouncyCastle.Math.EC.ECFieldElement,System.Boolean)">
  20431. @param curve base curve
  20432. @param x x point
  20433. @param y y point
  20434. @param withCompression true if encode with point compression.
  20435. </member>
  20436. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.DoubleAddMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20437. Joye's double-add algorithm.
  20438. </member>
  20439. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.ECMultiplier">
  20440. Interface for classes encapsulating a point multiplication algorithm
  20441. for <code>ECPoint</code>s.
  20442. </member>
  20443. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.ECMultiplier.Multiply(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20444. Multiplies the <code>ECPoint p</code> by <code>k</code>, i.e.
  20445. <code>p</code> is added <code>k</code> times to itself.
  20446. @param p The <code>ECPoint</code> to be multiplied.
  20447. @param k The factor by which <code>p</code> is multiplied.
  20448. @return <code>p</code> multiplied by <code>k</code>.
  20449. </member>
  20450. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.FixedPointPreCompInfo">
  20451. Class holding precomputation data for fixed-point multiplications.
  20452. </member>
  20453. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.FixedPointPreCompInfo.m_lookupTable">
  20454. Lookup table for the precomputed <code>ECPoint</code>s used for a fixed point multiplication.
  20455. </member>
  20456. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.FixedPointPreCompInfo.m_width">
  20457. The width used for the precomputation. If a larger width precomputation
  20458. is already available this may be larger than was requested, so calling
  20459. code should refer to the actual width.
  20460. </member>
  20461. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.MixedNafR2LMultiplier">
  20462. Class implementing the NAF (Non-Adjacent Form) multiplication algorithm (right-to-left) using
  20463. mixed coordinates.
  20464. </member>
  20465. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.MixedNafR2LMultiplier.#ctor">
  20466. By default, addition will be done in Jacobian coordinates, and doubling will be done in
  20467. Modified Jacobian coordinates (independent of the original coordinate system of each point).
  20468. </member>
  20469. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.MontgomeryLadderMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20470. Montgomery ladder.
  20471. </member>
  20472. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.NafL2RMultiplier">
  20473. Class implementing the NAF (Non-Adjacent Form) multiplication algorithm (left-to-right).
  20474. </member>
  20475. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.NafR2LMultiplier">
  20476. Class implementing the NAF (Non-Adjacent Form) multiplication algorithm (right-to-left).
  20477. </member>
  20478. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.PreCompInfo">
  20479. Interface for classes storing precomputation data for multiplication
  20480. algorithms. Used as a Memento (see GOF patterns) for
  20481. <code>WNafMultiplier</code>.
  20482. </member>
  20483. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.WNafL2RMultiplier">
  20484. Class implementing the WNAF (Window Non-Adjacent Form) multiplication
  20485. algorithm.
  20486. </member>
  20487. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WNafL2RMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20488. Multiplies <code>this</code> by an integer <code>k</code> using the
  20489. Window NAF method.
  20490. @param k The integer by which <code>this</code> is multiplied.
  20491. @return A new <code>ECPoint</code> which equals <code>this</code>
  20492. multiplied by <code>k</code>.
  20493. </member>
  20494. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WNafL2RMultiplier.GetWindowSize(System.Int32)">
  20495. Determine window width to use for a scalar multiplication of the given size.
  20496. @param bits the bit-length of the scalar to multiply by
  20497. @return the window size to use
  20498. </member>
  20499. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.WNafPreCompInfo">
  20500. Class holding precomputation data for the WNAF (Window Non-Adjacent Form)
  20501. algorithm.
  20502. </member>
  20503. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.WNafPreCompInfo.m_preComp">
  20504. Array holding the precomputed <code>ECPoint</code>s used for a Window
  20505. NAF multiplication.
  20506. </member>
  20507. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.WNafPreCompInfo.m_preCompNeg">
  20508. Array holding the negations of the precomputed <code>ECPoint</code>s used
  20509. for a Window NAF multiplication.
  20510. </member>
  20511. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.WNafPreCompInfo.m_twice">
  20512. Holds an <code>ECPoint</code> representing Twice(this). Used for the
  20513. Window NAF multiplication to create or extend the precomputed values.
  20514. </member>
  20515. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WNafUtilities.GenerateWindowNaf(System.Int32,Org.BouncyCastle.Math.BigInteger)">
  20516. Computes the Window NAF (non-adjacent Form) of an integer.
  20517. @param width The width <code>w</code> of the Window NAF. The width is
  20518. defined as the minimal number <code>w</code>, such that for any
  20519. <code>w</code> consecutive digits in the resulting representation, at
  20520. most one is non-zero.
  20521. @param k The integer of which the Window NAF is computed.
  20522. @return The Window NAF of the given width, such that the following holds:
  20523. <code>k = &amp;sum;<sub>i=0</sub><sup>l-1</sup> k<sub>i</sub>2<sup>i</sup>
  20524. </code>, where the <code>k<sub>i</sub></code> denote the elements of the
  20525. returned <code>byte[]</code>.
  20526. </member>
  20527. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WNafUtilities.GetWindowSize(System.Int32)">
  20528. Determine window width to use for a scalar multiplication of the given size.
  20529. @param bits the bit-length of the scalar to multiply by
  20530. @return the window size to use
  20531. </member>
  20532. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WNafUtilities.GetWindowSize(System.Int32,System.Int32[])">
  20533. Determine window width to use for a scalar multiplication of the given size.
  20534. @param bits the bit-length of the scalar to multiply by
  20535. @param windowSizeCutoffs a monotonically increasing list of bit sizes at which to increment the window width
  20536. @return the window size to use
  20537. </member>
  20538. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.WTauNafMultiplier">
  20539. Class implementing the WTNAF (Window
  20540. <code>&#964;</code>-adic Non-Adjacent Form) algorithm.
  20541. </member>
  20542. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WTauNafMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20543. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  20544. by <code>k</code> using the reduced <code>&#964;</code>-adic NAF (RTNAF)
  20545. method.
  20546. @param p The AbstractF2mPoint to multiply.
  20547. @param k The integer by which to multiply <code>k</code>.
  20548. @return <code>p</code> multiplied by <code>k</code>.
  20549. </member>
  20550. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WTauNafMultiplier.MultiplyWTnaf(Org.BouncyCastle.Math.EC.AbstractF2mPoint,Org.BouncyCastle.Math.EC.Abc.ZTauElement,System.SByte,System.SByte)">
  20551. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  20552. by an element <code>&#955;</code> of <code><b>Z</b>[&#964;]</code> using
  20553. the <code>&#964;</code>-adic NAF (TNAF) method.
  20554. @param p The AbstractF2mPoint to multiply.
  20555. @param lambda The element <code>&#955;</code> of
  20556. <code><b>Z</b>[&#964;]</code> of which to compute the
  20557. <code>[&#964;]</code>-adic NAF.
  20558. @return <code>p</code> multiplied by <code>&#955;</code>.
  20559. </member>
  20560. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.WTauNafMultiplier.MultiplyFromWTnaf(Org.BouncyCastle.Math.EC.AbstractF2mPoint,System.SByte[])">
  20561. Multiplies a {@link org.bouncycastle.math.ec.AbstractF2mPoint AbstractF2mPoint}
  20562. by an element <code>&#955;</code> of <code><b>Z</b>[&#964;]</code>
  20563. using the window <code>&#964;</code>-adic NAF (TNAF) method, given the
  20564. WTNAF of <code>&#955;</code>.
  20565. @param p The AbstractF2mPoint to multiply.
  20566. @param u The the WTNAF of <code>&#955;</code>..
  20567. @return <code>&#955; * p</code>
  20568. </member>
  20569. <member name="T:Org.BouncyCastle.Math.EC.Multiplier.WTauNafPreCompInfo">
  20570. Class holding precomputation data for the WTNAF (Window
  20571. <code>&#964;</code>-adic Non-Adjacent Form) algorithm.
  20572. </member>
  20573. <member name="F:Org.BouncyCastle.Math.EC.Multiplier.WTauNafPreCompInfo.m_preComp">
  20574. Array holding the precomputed <code>AbstractF2mPoint</code>s used for the
  20575. WTNAF multiplication in <code>
  20576. {@link org.bouncycastle.math.ec.multiplier.WTauNafMultiplier.multiply()
  20577. WTauNafMultiplier.multiply()}</code>.
  20578. </member>
  20579. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.ZSignedDigitL2RMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20580. 'Zeroless' Signed Digit Left-to-Right.
  20581. </member>
  20582. <member name="M:Org.BouncyCastle.Math.EC.Multiplier.ZSignedDigitR2LMultiplier.MultiplyPositive(Org.BouncyCastle.Math.EC.ECPoint,Org.BouncyCastle.Math.BigInteger)">
  20583. 'Zeroless' Signed Digit Right-to-Left.
  20584. </member>
  20585. <member name="T:Org.BouncyCastle.Math.Primes">
  20586. Utility methods for generating primes and testing for primality.
  20587. </member>
  20588. <member name="T:Org.BouncyCastle.Math.Primes.MROutput">
  20589. Used to return the output from the
  20590. {@linkplain Primes#enhancedMRProbablePrimeTest(BigInteger, SecureRandom, int) Enhanced
  20591. Miller-Rabin Probabilistic Primality Test}
  20592. </member>
  20593. <member name="T:Org.BouncyCastle.Math.Primes.STOutput">
  20594. Used to return the output from the {@linkplain Primes#generateSTRandomPrime(Digest, int, byte[]) Shawe-Taylor Random_Prime Routine}
  20595. </member>
  20596. <member name="M:Org.BouncyCastle.Math.Primes.GenerateSTRandomPrime(Org.BouncyCastle.Crypto.IDigest,System.Int32,System.Byte[])">
  20597. FIPS 186-4 C.6 Shawe-Taylor Random_Prime Routine
  20598. Construct a provable prime number using a hash function.
  20599. @param hash
  20600. the {@link Digest} instance to use (as "Hash()"). Cannot be null.
  20601. @param length
  20602. the length (in bits) of the prime to be generated. Must be at least 2.
  20603. @param inputSeed
  20604. the seed to be used for the generation of the requested prime. Cannot be null or
  20605. empty.
  20606. @return an {@link STOutput} instance containing the requested prime.
  20607. </member>
  20608. <member name="M:Org.BouncyCastle.Math.Primes.EnhancedMRProbablePrimeTest(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom,System.Int32)">
  20609. FIPS 186-4 C.3.2 Enhanced Miller-Rabin Probabilistic Primality Test
  20610. Run several iterations of the Miller-Rabin algorithm with randomly-chosen bases. This is an
  20611. alternative to {@link #isMRProbablePrime(BigInteger, SecureRandom, int)} that provides more
  20612. information about a composite candidate, which may be useful when generating or validating
  20613. RSA moduli.
  20614. @param candidate
  20615. the {@link BigInteger} instance to test for primality.
  20616. @param random
  20617. the source of randomness to use to choose bases.
  20618. @param iterations
  20619. the number of randomly-chosen bases to perform the test for.
  20620. @return an {@link MROutput} instance that can be further queried for details.
  20621. </member>
  20622. <member name="M:Org.BouncyCastle.Math.Primes.HasAnySmallFactors(Org.BouncyCastle.Math.BigInteger)">
  20623. A fast check for small divisors, up to some implementation-specific limit.
  20624. @param candidate
  20625. the {@link BigInteger} instance to test for division by small factors.
  20626. @return <code>true</code> if the candidate is found to have any small factors,
  20627. <code>false</code> otherwise.
  20628. </member>
  20629. <member name="M:Org.BouncyCastle.Math.Primes.IsMRProbablePrime(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom,System.Int32)">
  20630. FIPS 186-4 C.3.1 Miller-Rabin Probabilistic Primality Test
  20631. Run several iterations of the Miller-Rabin algorithm with randomly-chosen bases.
  20632. @param candidate
  20633. the {@link BigInteger} instance to test for primality.
  20634. @param random
  20635. the source of randomness to use to choose bases.
  20636. @param iterations
  20637. the number of randomly-chosen bases to perform the test for.
  20638. @return <code>false</code> if any witness to compositeness is found amongst the chosen bases
  20639. (so <code>candidate</code> is definitely NOT prime), or else <code>true</code>
  20640. (indicating primality with some probability dependent on the number of iterations
  20641. that were performed).
  20642. </member>
  20643. <member name="M:Org.BouncyCastle.Math.Primes.IsMRProbablePrimeToBase(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger)">
  20644. FIPS 186-4 C.3.1 Miller-Rabin Probabilistic Primality Test (to a fixed base).
  20645. Run a single iteration of the Miller-Rabin algorithm against the specified base.
  20646. @param candidate
  20647. the {@link BigInteger} instance to test for primality.
  20648. @param baseValue
  20649. the base value to use for this iteration.
  20650. @return <code>false</code> if the specified base is a witness to compositeness (so
  20651. <code>candidate</code> is definitely NOT prime), or else <code>true</code>.
  20652. </member>
  20653. <member name="T:Org.BouncyCastle.Ocsp.BasicOcspResp">
  20654. <remarks>
  20655. <code>
  20656. BasicOcspResponse ::= SEQUENCE {
  20657. tbsResponseData ResponseData,
  20658. signatureAlgorithm AlgorithmIdentifier,
  20659. signature BIT STRING,
  20660. certs [0] EXPLICIT SEQUENCE OF Certificate OPTIONAL
  20661. }
  20662. </code>
  20663. </remarks>
  20664. </member>
  20665. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspResp.GetTbsResponseData">
  20666. <returns>The DER encoding of the tbsResponseData field.</returns>
  20667. <exception cref="T:Org.BouncyCastle.Ocsp.OcspException">In the event of an encoding error.</exception>
  20668. </member>
  20669. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspResp.GetCertificates(System.String)">
  20670. <returns>The certificates, if any, associated with the response.</returns>
  20671. <exception cref="T:Org.BouncyCastle.Ocsp.OcspException">In the event of an encoding error.</exception>
  20672. </member>
  20673. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspResp.Verify(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  20674. <summary>
  20675. Verify the signature against the tbsResponseData object we contain.
  20676. </summary>
  20677. </member>
  20678. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspResp.GetEncoded">
  20679. <returns>The ASN.1 encoded representation of this object.</returns>
  20680. </member>
  20681. <member name="T:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator">
  20682. Generator for basic OCSP response objects.
  20683. </member>
  20684. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.#ctor(Org.BouncyCastle.Ocsp.RespID)">
  20685. basic constructor
  20686. </member>
  20687. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  20688. construct with the responderID to be the SHA-1 keyHash of the passed in public key.
  20689. </member>
  20690. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.AddResponse(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Ocsp.CertificateStatus)">
  20691. Add a response for a particular Certificate ID.
  20692. @param certID certificate ID details
  20693. @param certStatus status of the certificate - null if okay
  20694. </member>
  20695. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.AddResponse(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Ocsp.CertificateStatus,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  20696. Add a response for a particular Certificate ID.
  20697. @param certID certificate ID details
  20698. @param certStatus status of the certificate - null if okay
  20699. @param singleExtensions optional extensions
  20700. </member>
  20701. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.AddResponse(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Ocsp.CertificateStatus,System.DateTime,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  20702. Add a response for a particular Certificate ID.
  20703. @param certID certificate ID details
  20704. @param nextUpdate date when next update should be requested
  20705. @param certStatus status of the certificate - null if okay
  20706. @param singleExtensions optional extensions
  20707. </member>
  20708. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.AddResponse(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Ocsp.CertificateStatus,System.DateTime,System.DateTime,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  20709. Add a response for a particular Certificate ID.
  20710. @param certID certificate ID details
  20711. @param thisUpdate date this response was valid on
  20712. @param nextUpdate date when next update should be requested
  20713. @param certStatus status of the certificate - null if okay
  20714. @param singleExtensions optional extensions
  20715. </member>
  20716. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.SetResponseExtensions(Org.BouncyCastle.Asn1.X509.X509Extensions)">
  20717. Set the extensions for the response.
  20718. @param responseExtensions the extension object to carry.
  20719. </member>
  20720. <member name="M:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.Generate(Org.BouncyCastle.Crypto.ISignatureFactory,Org.BouncyCastle.X509.X509Certificate[],System.DateTime)">
  20721. <summary>
  20722. Generate the signed response using the passed in signature calculator.
  20723. </summary>
  20724. <param name="signatureCalculatorFactory">Implementation of signing calculator factory.</param>
  20725. <param name="chain">The certificate chain associated with the response signer.</param>
  20726. <param name="producedAt">"produced at" date.</param>
  20727. <returns></returns>
  20728. </member>
  20729. <member name="P:Org.BouncyCastle.Ocsp.BasicOcspRespGenerator.SignatureAlgNames">
  20730. Return an IEnumerable of the signature names supported by the generator.
  20731. @return an IEnumerable containing recognised names.
  20732. </member>
  20733. <member name="M:Org.BouncyCastle.Ocsp.CertificateID.#ctor(System.String,Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Math.BigInteger)">
  20734. create from an issuer certificate and the serial number of the
  20735. certificate it signed.
  20736. @exception OcspException if any problems occur creating the id fields.
  20737. </member>
  20738. <member name="P:Org.BouncyCastle.Ocsp.CertificateID.SerialNumber">
  20739. return the serial number for the certificate associated
  20740. with this request.
  20741. </member>
  20742. <member name="M:Org.BouncyCastle.Ocsp.CertificateID.DeriveCertificateID(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Math.BigInteger)">
  20743. Create a new CertificateID for a new serial number derived from a previous one
  20744. calculated for the same CA certificate.
  20745. @param original the previously calculated CertificateID for the CA.
  20746. @param newSerialNumber the serial number for the new certificate of interest.
  20747. @return a new CertificateID for newSerialNumber
  20748. </member>
  20749. <member name="T:Org.BouncyCastle.Ocsp.OcspReq">
  20750. <pre>
  20751. OcspRequest ::= SEQUENCE {
  20752. tbsRequest TBSRequest,
  20753. optionalSignature [0] EXPLICIT Signature OPTIONAL }
  20754. TBSRequest ::= SEQUENCE {
  20755. version [0] EXPLICIT Version DEFAULT v1,
  20756. requestorName [1] EXPLICIT GeneralName OPTIONAL,
  20757. requestList SEQUENCE OF Request,
  20758. requestExtensions [2] EXPLICIT Extensions OPTIONAL }
  20759. Signature ::= SEQUENCE {
  20760. signatureAlgorithm AlgorithmIdentifier,
  20761. signature BIT STRING,
  20762. certs [0] EXPLICIT SEQUENCE OF Certificate OPTIONAL}
  20763. Version ::= INTEGER { v1(0) }
  20764. Request ::= SEQUENCE {
  20765. reqCert CertID,
  20766. singleRequestExtensions [0] EXPLICIT Extensions OPTIONAL }
  20767. CertID ::= SEQUENCE {
  20768. hashAlgorithm AlgorithmIdentifier,
  20769. issuerNameHash OCTET STRING, -- Hash of Issuer's DN
  20770. issuerKeyHash OCTET STRING, -- Hash of Issuers public key
  20771. serialNumber CertificateSerialNumber }
  20772. </pre>
  20773. </member>
  20774. <member name="M:Org.BouncyCastle.Ocsp.OcspReq.GetTbsRequest">
  20775. Return the DER encoding of the tbsRequest field.
  20776. @return DER encoding of tbsRequest
  20777. @throws OcspException in the event of an encoding error.
  20778. </member>
  20779. <member name="P:Org.BouncyCastle.Ocsp.OcspReq.SignatureAlgOid">
  20780. return the object identifier representing the signature algorithm
  20781. </member>
  20782. <member name="M:Org.BouncyCastle.Ocsp.OcspReq.GetCertificates(System.String)">
  20783. If the request is signed return a possibly empty CertStore containing the certificates in the
  20784. request. If the request is not signed the method returns null.
  20785. @return null if not signed, a CertStore otherwise
  20786. @throws OcspException
  20787. </member>
  20788. <member name="P:Org.BouncyCastle.Ocsp.OcspReq.IsSigned">
  20789. Return whether or not this request is signed.
  20790. @return true if signed false otherwise.
  20791. </member>
  20792. <member name="M:Org.BouncyCastle.Ocsp.OcspReq.Verify(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  20793. Verify the signature against the TBSRequest object we contain.
  20794. </member>
  20795. <member name="M:Org.BouncyCastle.Ocsp.OcspReq.GetEncoded">
  20796. return the ASN.1 encoded representation of this object.
  20797. </member>
  20798. <member name="M:Org.BouncyCastle.Ocsp.OcspReqGenerator.AddRequest(Org.BouncyCastle.Ocsp.CertificateID)">
  20799. Add a request for the given CertificateID.
  20800. @param certId certificate ID of interest
  20801. </member>
  20802. <member name="M:Org.BouncyCastle.Ocsp.OcspReqGenerator.AddRequest(Org.BouncyCastle.Ocsp.CertificateID,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  20803. Add a request with extensions
  20804. @param certId certificate ID of interest
  20805. @param singleRequestExtensions the extensions to attach to the request
  20806. </member>
  20807. <member name="M:Org.BouncyCastle.Ocsp.OcspReqGenerator.SetRequestorName(Org.BouncyCastle.Asn1.X509.X509Name)">
  20808. Set the requestor name to the passed in X509Principal
  20809. @param requestorName a X509Principal representing the requestor name.
  20810. </member>
  20811. <member name="M:Org.BouncyCastle.Ocsp.OcspReqGenerator.Generate">
  20812. Generate an unsigned request
  20813. @return the OcspReq
  20814. @throws OcspException
  20815. </member>
  20816. <member name="P:Org.BouncyCastle.Ocsp.OcspReqGenerator.SignatureAlgNames">
  20817. Return an IEnumerable of the signature names supported by the generator.
  20818. @return an IEnumerable containing recognised names.
  20819. </member>
  20820. <member name="M:Org.BouncyCastle.Ocsp.OcspResp.GetEncoded">
  20821. return the ASN.1 encoded representation of this object.
  20822. </member>
  20823. <member name="T:Org.BouncyCastle.Ocsp.OCSPRespGenerator">
  20824. base generator for an OCSP response - at the moment this only supports the
  20825. generation of responses containing BasicOCSP responses.
  20826. </member>
  20827. <member name="F:Org.BouncyCastle.Ocsp.OcspRespStatus.Successful">
  20828. note 4 is not used.
  20829. </member>
  20830. <member name="T:Org.BouncyCastle.Ocsp.RespID">
  20831. Carrier for a ResponderID.
  20832. </member>
  20833. <member name="T:Org.BouncyCastle.Ocsp.RevokedStatus">
  20834. wrapper for the RevokedInfo object
  20835. </member>
  20836. <member name="P:Org.BouncyCastle.Ocsp.RevokedStatus.RevocationReason">
  20837. return the revocation reason. Note: this field is optional, test for it
  20838. with hasRevocationReason() first.
  20839. @exception InvalidOperationException if a reason is asked for and none is avaliable
  20840. </member>
  20841. <member name="M:Org.BouncyCastle.Ocsp.SingleResp.GetCertStatus">
  20842. Return the status object for the response - null indicates good.
  20843. @return the status object for the response, null if it is good.
  20844. </member>
  20845. <member name="P:Org.BouncyCastle.Ocsp.SingleResp.NextUpdate">
  20846. return the NextUpdate value - note: this is an optional field so may
  20847. be returned as null.
  20848. @return nextUpdate, or null if not present.
  20849. </member>
  20850. <member name="T:Org.BouncyCastle.Ocsp.UnknownStatus">
  20851. wrapper for the UnknownInfo object
  20852. </member>
  20853. <member name="T:Org.BouncyCastle.Security.AgreementUtilities">
  20854. <remarks>
  20855. Utility class for creating IBasicAgreement objects from their names/Oids
  20856. </remarks>
  20857. </member>
  20858. <member name="T:Org.BouncyCastle.Security.CipherUtilities">
  20859. <remarks>
  20860. Cipher Utility class contains methods that can not be specifically grouped into other classes.
  20861. </remarks>
  20862. </member>
  20863. <member name="M:Org.BouncyCastle.Security.CipherUtilities.GetObjectIdentifier(System.String)">
  20864. <summary>
  20865. Returns a ObjectIdentifier for a give encoding.
  20866. </summary>
  20867. <param name="mechanism">A string representation of the encoding.</param>
  20868. <returns>A DerObjectIdentifier, null if the Oid is not available.</returns>
  20869. </member>
  20870. <member name="T:Org.BouncyCastle.Security.DigestUtilities">
  20871. <remarks>
  20872. Utility class for creating IDigest objects from their names/Oids
  20873. </remarks>
  20874. </member>
  20875. <member name="M:Org.BouncyCastle.Security.DigestUtilities.GetObjectIdentifier(System.String)">
  20876. <summary>
  20877. Returns a ObjectIdentifier for a given digest mechanism.
  20878. </summary>
  20879. <param name="mechanism">A string representation of the digest meanism.</param>
  20880. <returns>A DerObjectIdentifier, null if the Oid is not available.</returns>
  20881. </member>
  20882. <member name="T:Org.BouncyCastle.Security.DotNetUtilities">
  20883. <summary>
  20884. A class containing methods to interface the BouncyCastle world to the .NET Crypto world.
  20885. </summary>
  20886. </member>
  20887. <member name="M:Org.BouncyCastle.Security.DotNetUtilities.ToX509Certificate(Org.BouncyCastle.Asn1.X509.X509CertificateStructure)">
  20888. <summary>
  20889. Create an System.Security.Cryptography.X509Certificate from an X509Certificate Structure.
  20890. </summary>
  20891. <param name="x509Struct"></param>
  20892. <returns>A System.Security.Cryptography.X509Certificate.</returns>
  20893. </member>
  20894. <member name="T:Org.BouncyCastle.Security.MacUtilities">
  20895. <remarks>
  20896. Utility class for creating HMac object from their names/Oids
  20897. </remarks>
  20898. </member>
  20899. <member name="T:Org.BouncyCastle.Security.PbeUtilities">
  20900. <summary>
  20901. </summary>
  20902. </member>
  20903. <member name="M:Org.BouncyCastle.Security.PbeUtilities.GetObjectIdentifier(System.String)">
  20904. <summary>
  20905. Returns a ObjectIdentifier for a give encoding.
  20906. </summary>
  20907. <param name="mechanism">A string representation of the encoding.</param>
  20908. <returns>A DerObjectIdentifier, null if the Oid is not available.</returns>
  20909. </member>
  20910. <member name="M:Org.BouncyCastle.Security.SecureRandom.GetInstance(System.String)">
  20911. <summary>
  20912. Create and auto-seed an instance based on the given algorithm.
  20913. </summary>
  20914. <remarks>Equivalent to GetInstance(algorithm, true)</remarks>
  20915. <param name="algorithm">e.g. "SHA256PRNG"</param>
  20916. </member>
  20917. <member name="M:Org.BouncyCastle.Security.SecureRandom.GetInstance(System.String,System.Boolean)">
  20918. <summary>
  20919. Create an instance based on the given algorithm, with optional auto-seeding
  20920. </summary>
  20921. <param name="algorithm">e.g. "SHA256PRNG"</param>
  20922. <param name="autoSeed">If true, the instance will be auto-seeded.</param>
  20923. </member>
  20924. <member name="M:Org.BouncyCastle.Security.SecureRandom.#ctor(System.Byte[])">
  20925. <remarks>
  20926. To replicate existing predictable output, replace with GetInstance("SHA1PRNG", false), followed by SetSeed(seed)
  20927. </remarks>
  20928. </member>
  20929. <member name="M:Org.BouncyCastle.Security.SecureRandom.#ctor(Org.BouncyCastle.Crypto.Prng.IRandomGenerator)">
  20930. <summary>Use the specified instance of IRandomGenerator as random source.</summary>
  20931. <remarks>
  20932. This constructor performs no seeding of either the <c>IRandomGenerator</c> or the
  20933. constructed <c>SecureRandom</c>. It is the responsibility of the client to provide
  20934. proper seed material as necessary/appropriate for the given <c>IRandomGenerator</c>
  20935. implementation.
  20936. </remarks>
  20937. <param name="generator">The source to generate all random bytes from.</param>
  20938. </member>
  20939. <member name="M:Org.BouncyCastle.Security.SecurityUtilityException.#ctor">
  20940. base constructor.
  20941. </member>
  20942. <member name="M:Org.BouncyCastle.Security.SecurityUtilityException.#ctor(System.String)">
  20943. create a SecurityUtilityException with the given message.
  20944. @param message the message to be carried with the exception.
  20945. </member>
  20946. <member name="T:Org.BouncyCastle.Security.SignerUtilities">
  20947. <summary>
  20948. Signer Utility class contains methods that can not be specifically grouped into other classes.
  20949. </summary>
  20950. </member>
  20951. <member name="M:Org.BouncyCastle.Security.SignerUtilities.GetObjectIdentifier(System.String)">
  20952. <summary>
  20953. Returns an ObjectIdentifier for a given encoding.
  20954. </summary>
  20955. <param name="mechanism">A string representation of the encoding.</param>
  20956. <returns>A DerObjectIdentifier, null if the OID is not available.</returns>
  20957. </member>
  20958. <member name="T:Org.BouncyCastle.Security.WrapperUtilities">
  20959. <remarks>
  20960. Utility class for creating IWrapper objects from their names/Oids
  20961. </remarks>
  20962. </member>
  20963. <member name="T:Org.BouncyCastle.OpenSsl.MiscPemGenerator">
  20964. PEM generator for the original set of PEM objects used in Open SSL.
  20965. </member>
  20966. <member name="T:Org.BouncyCastle.OpenSsl.PemReader">
  20967. Class for reading OpenSSL PEM encoded streams containing
  20968. X509 certificates, PKCS8 encoded keys and PKCS7 objects.
  20969. <p>
  20970. In the case of PKCS7 objects the reader will return a CMS ContentInfo object. Keys and
  20971. Certificates will be returned using the appropriate java.security type.</p>
  20972. </member>
  20973. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.#ctor(System.IO.TextReader)">
  20974. Create a new PemReader
  20975. @param reader the Reader
  20976. </member>
  20977. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.#ctor(System.IO.TextReader,Org.BouncyCastle.OpenSsl.IPasswordFinder)">
  20978. Create a new PemReader with a password finder
  20979. @param reader the Reader
  20980. @param pFinder the password finder
  20981. </member>
  20982. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadCertificate(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  20983. Reads in a X509Certificate.
  20984. @return the X509Certificate
  20985. @throws IOException if an I/O error occured
  20986. </member>
  20987. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadCrl(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  20988. Reads in a X509CRL.
  20989. @return the X509Certificate
  20990. @throws IOException if an I/O error occured
  20991. </member>
  20992. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadCertificateRequest(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  20993. Reads in a PKCS10 certification request.
  20994. @return the certificate request.
  20995. @throws IOException if an I/O error occured
  20996. </member>
  20997. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadAttributeCertificate(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  20998. Reads in a X509 Attribute Certificate.
  20999. @return the X509 Attribute Certificate
  21000. @throws IOException if an I/O error occured
  21001. </member>
  21002. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadPkcs7(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  21003. Reads in a PKCS7 object. This returns a ContentInfo object suitable for use with the CMS
  21004. API.
  21005. @return the X509Certificate
  21006. @throws IOException if an I/O error occured
  21007. </member>
  21008. <member name="M:Org.BouncyCastle.OpenSsl.PemReader.ReadPrivateKey(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  21009. Read a Key Pair
  21010. </member>
  21011. <member name="T:Org.BouncyCastle.OpenSsl.PemWriter">
  21012. <remarks>General purpose writer for OpenSSL PEM objects.</remarks>
  21013. </member>
  21014. <member name="M:Org.BouncyCastle.OpenSsl.PemWriter.#ctor(System.IO.TextWriter)">
  21015. <param name="writer">The TextWriter object to write the output to.</param>
  21016. </member>
  21017. <member name="M:Org.BouncyCastle.OpenSsl.Pkcs8Generator.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  21018. Constructor for an unencrypted private key PEM object.
  21019. @param key private key to be encoded.
  21020. </member>
  21021. <member name="M:Org.BouncyCastle.OpenSsl.Pkcs8Generator.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.String)">
  21022. Constructor for an encrypted private key PEM object.
  21023. @param key private key to be encoded
  21024. @param algorithm encryption algorithm to use
  21025. @param provider provider to use
  21026. @throws NoSuchAlgorithmException if algorithm/mode cannot be found
  21027. </member>
  21028. <member name="T:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest">
  21029. <remarks>
  21030. A class for verifying and creating Pkcs10 Certification requests.
  21031. </remarks>
  21032. <code>
  21033. CertificationRequest ::= Sequence {
  21034. certificationRequestInfo CertificationRequestInfo,
  21035. signatureAlgorithm AlgorithmIdentifier{{ SignatureAlgorithms }},
  21036. signature BIT STRING
  21037. }
  21038. CertificationRequestInfo ::= Sequence {
  21039. version Integer { v1(0) } (v1,...),
  21040. subject Name,
  21041. subjectPKInfo SubjectPublicKeyInfo{{ PKInfoAlgorithms }},
  21042. attributes [0] Attributes{{ CRIAttributes }}
  21043. }
  21044. Attributes { ATTRIBUTE:IOSet } ::= Set OF Attr{{ IOSet }}
  21045. Attr { ATTRIBUTE:IOSet } ::= Sequence {
  21046. type ATTRIBUTE.&amp;id({IOSet}),
  21047. values Set SIZE(1..MAX) OF ATTRIBUTE.&amp;Type({IOSet}{\@type})
  21048. }
  21049. </code>
  21050. see <a href="http://www.rsasecurity.com/rsalabs/node.asp?id=2132"/>
  21051. </member>
  21052. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest.#ctor(System.String,Org.BouncyCastle.Asn1.X509.X509Name,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Asn1.Asn1Set,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  21053. <summary>
  21054. Instantiate a Pkcs10CertificationRequest object with the necessary credentials.
  21055. </summary>
  21056. <param name="signatureAlgorithm">Name of Sig Alg.</param>
  21057. <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param>
  21058. <param name="publicKey">Public Key to be included in cert reqest.</param>
  21059. <param name="attributes">ASN1Set of Attributes.</param>
  21060. <param name="signingKey">Matching Private key for nominated (above) public key to be used to sign the request.</param>
  21061. </member>
  21062. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest.#ctor(Org.BouncyCastle.Crypto.ISignatureFactory,Org.BouncyCastle.Asn1.X509.X509Name,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Asn1.Asn1Set,Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  21063. <summary>
  21064. Instantiate a Pkcs10CertificationRequest object with the necessary credentials.
  21065. </summary>
  21066. <param name="signatureFactory">The factory for signature calculators to sign the PKCS#10 request with.</param>
  21067. <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param>
  21068. <param name="publicKey">Public Key to be included in cert reqest.</param>
  21069. <param name="attributes">ASN1Set of Attributes.</param>
  21070. <param name="signingKey">Ignored.</param>
  21071. </member>
  21072. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest.#ctor(Org.BouncyCastle.Crypto.ISignatureFactory,Org.BouncyCastle.Asn1.X509.X509Name,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Asn1.Asn1Set)">
  21073. <summary>
  21074. Instantiate a Pkcs10CertificationRequest object with the necessary credentials.
  21075. </summary>
  21076. <param name="signatureFactory">The factory for signature calculators to sign the PKCS#10 request with.</param>
  21077. <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param>
  21078. <param name="publicKey">Public Key to be included in cert reqest.</param>
  21079. <param name="attributes">ASN1Set of Attributes.</param>
  21080. </member>
  21081. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest.GetPublicKey">
  21082. <summary>
  21083. Get the public key.
  21084. </summary>
  21085. <returns>The public key.</returns>
  21086. </member>
  21087. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest.Verify">
  21088. <summary>
  21089. Verify Pkcs10 Cert Request is valid.
  21090. </summary>
  21091. <returns>true = valid.</returns>
  21092. </member>
  21093. <member name="T:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequestDelaySigned">
  21094. <remarks>
  21095. A class for creating and verifying Pkcs10 Certification requests (this is an extension on <see cref="T:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequest"/>).
  21096. The requests are made using delay signing. This is useful for situations where
  21097. the private key is in another environment and not directly accessible (e.g. HSM)
  21098. So the first step creates the request, then the signing is done outside this
  21099. object and the signature is then used to complete the request.
  21100. </remarks>
  21101. <code>
  21102. CertificationRequest ::= Sequence {
  21103. certificationRequestInfo CertificationRequestInfo,
  21104. signatureAlgorithm AlgorithmIdentifier{{ SignatureAlgorithms }},
  21105. signature BIT STRING
  21106. }
  21107. CertificationRequestInfo ::= Sequence {
  21108. version Integer { v1(0) } (v1,...),
  21109. subject Name,
  21110. subjectPKInfo SubjectPublicKeyInfo{{ PKInfoAlgorithms }},
  21111. attributes [0] Attributes{{ CRIAttributes }}
  21112. }
  21113. Attributes { ATTRIBUTE:IOSet } ::= Set OF Attr{{ IOSet }}
  21114. Attr { ATTRIBUTE:IOSet } ::= Sequence {
  21115. type ATTRIBUTE.&amp;id({IOSet}),
  21116. values Set SIZE(1..MAX) OF ATTRIBUTE.&amp;Type({IOSet}{\@type})
  21117. }
  21118. </code>
  21119. see <a href="http://www.rsasecurity.com/rsalabs/node.asp?id=2132"/>
  21120. </member>
  21121. <member name="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequestDelaySigned.#ctor(System.String,Org.BouncyCastle.Asn1.X509.X509Name,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Asn1.Asn1Set)">
  21122. <summary>
  21123. Instantiate a Pkcs10CertificationRequest object with the necessary credentials.
  21124. </summary>
  21125. <param name="signatureAlgorithm">Name of Sig Alg.</param>
  21126. <param name="subject">X509Name of subject eg OU="My unit." O="My Organisatioin" C="au" </param>
  21127. <param name="publicKey">Public Key to be included in cert reqest.</param>
  21128. <param name="attributes">ASN1Set of Attributes.</param>
  21129. <remarks>
  21130. After the object is constructed use the <see cref="M:Org.BouncyCastle.Pkcs.Pkcs10CertificationRequestDelaySigned.GetDataToSign"/> and finally the
  21131. SignRequest methods to finalize the request.
  21132. </remarks>
  21133. </member>
  21134. <member name="M:Org.BouncyCastle.Pkcs.Pkcs12Store.GetCertificate(System.String)">
  21135. simply return the cert entry for the private key
  21136. </member>
  21137. <member name="T:Org.BouncyCastle.Pkcs.Pkcs12Utilities">
  21138. Utility class for reencoding PKCS#12 files to definite length.
  21139. </member>
  21140. <member name="M:Org.BouncyCastle.Pkcs.Pkcs12Utilities.ConvertToDefiniteLength(System.Byte[])">
  21141. Just re-encode the outer layer of the PKCS#12 file to definite length encoding.
  21142. @param berPKCS12File - original PKCS#12 file
  21143. @return a byte array representing the DER encoding of the PFX structure
  21144. @throws IOException
  21145. </member>
  21146. <member name="M:Org.BouncyCastle.Pkcs.Pkcs12Utilities.ConvertToDefiniteLength(System.Byte[],System.Char[])">
  21147. Re-encode the PKCS#12 structure to definite length encoding at the inner layer
  21148. as well, recomputing the MAC accordingly.
  21149. @param berPKCS12File - original PKCS12 file.
  21150. @param provider - provider to use for MAC calculation.
  21151. @return a byte array representing the DER encoding of the PFX structure.
  21152. @throws IOException on parsing, encoding errors.
  21153. </member>
  21154. <member name="T:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo">
  21155. <summary>
  21156. A holding class for a PKCS#8 encrypted private key info object that allows for its decryption.
  21157. </summary>
  21158. </member>
  21159. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.#ctor(Org.BouncyCastle.Asn1.Pkcs.EncryptedPrivateKeyInfo)">
  21160. <summary>
  21161. Base constructor from a PKCS#8 EncryptedPrivateKeyInfo object.
  21162. </summary>
  21163. <param name="encryptedPrivateKeyInfo">A PKCS#8 EncryptedPrivateKeyInfo object.</param>
  21164. </member>
  21165. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.#ctor(System.Byte[])">
  21166. <summary>
  21167. Base constructor from a BER encoding of a PKCS#8 EncryptedPrivateKeyInfo object.
  21168. </summary>
  21169. <param name="encryptedPrivateKeyInfo">A BER encoding of a PKCS#8 EncryptedPrivateKeyInfo objects.</param>
  21170. </member>
  21171. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.ToAsn1Structure">
  21172. <summary>
  21173. Returns the underlying ASN.1 structure inside this object.
  21174. </summary>
  21175. <returns>Return the EncryptedPrivateKeyInfo structure in this object.</returns>
  21176. </member>
  21177. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.GetEncryptedData">
  21178. <summary>
  21179. Returns a copy of the encrypted data in this structure.
  21180. </summary>
  21181. <returns>Return a copy of the encrypted data in this object.</returns>
  21182. </member>
  21183. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.GetEncoded">
  21184. <summary>
  21185. Return a binary ASN.1 encoding of the EncryptedPrivateKeyInfo structure in this object.
  21186. </summary>
  21187. <returns>A byte array containing the encoded object.</returns>
  21188. </member>
  21189. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfo.DecryptPrivateKeyInfo(Org.BouncyCastle.Crypto.IDecryptorBuilderProvider)">
  21190. <summary>
  21191. Get a decryptor from the passed in provider and decrypt the encrypted private key info, returning the result.
  21192. </summary>
  21193. <param name="inputDecryptorProvider">A provider to query for decryptors for the object.</param>
  21194. <returns>The decrypted private key info structure.</returns>
  21195. </member>
  21196. <member name="M:Org.BouncyCastle.Pkcs.Pkcs8EncryptedPrivateKeyInfoBuilder.Build(Org.BouncyCastle.Crypto.ICipherBuilder)">
  21197. <summary>
  21198. Create the encrypted private key info using the passed in encryptor.
  21199. </summary>
  21200. <param name="encryptor">The encryptor to use.</param>
  21201. <returns>An encrypted private key info containing the original private key info.</returns>
  21202. </member>
  21203. <member name="T:Org.BouncyCastle.Pkcs.PkcsException">
  21204. <summary>
  21205. Base exception for PKCS related issues.
  21206. </summary>
  21207. </member>
  21208. <member name="T:Org.BouncyCastle.Pkcs.PkcsIOException">
  21209. <summary>
  21210. Base exception for parsing related issues in the PKCS namespace.
  21211. </summary>
  21212. </member>
  21213. <member name="M:Org.BouncyCastle.Pkcs.PrivateKeyInfoFactory.CreatePrivateKeyInfo(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Asn1.Asn1Set)">
  21214. Create a PrivateKeyInfo representation of a private key with attributes.
  21215. @param privateKey the key to be encoded into the info object.
  21216. @param attributes the set of attributes to be included.
  21217. @return the appropriate PrivateKeyInfo
  21218. @throws java.io.IOException on an error encoding the key
  21219. </member>
  21220. <member name="P:Org.BouncyCastle.Pkix.CertStatus.RevocationDate">
  21221. <summary>
  21222. Returns the revocationDate.
  21223. </summary>
  21224. </member>
  21225. <member name="P:Org.BouncyCastle.Pkix.CertStatus.Status">
  21226. <summary>
  21227. Returns the certStatus.
  21228. </summary>
  21229. </member>
  21230. <member name="M:Org.BouncyCastle.Pkix.PkixAttrCertChecker.GetSupportedExtensions">
  21231. Returns an immutable <code>Set</code> of X.509 attribute certificate
  21232. extensions that this <code>PkixAttrCertChecker</code> supports or
  21233. <code>null</code> if no extensions are supported.
  21234. <p>
  21235. Each element of the set is a <code>String</code> representing the
  21236. Object Identifier (OID) of the X.509 extension that is supported.
  21237. </p>
  21238. <p>
  21239. All X.509 attribute certificate extensions that a
  21240. <code>PkixAttrCertChecker</code> might possibly be able to process
  21241. should be included in the set.
  21242. </p>
  21243. @return an immutable <code>Set</code> of X.509 extension OIDs (in
  21244. <code>String</code> format) supported by this
  21245. <code>PkixAttrCertChecker</code>, or <code>null</code> if no
  21246. extensions are supported
  21247. </member>
  21248. <member name="M:Org.BouncyCastle.Pkix.PkixAttrCertChecker.Check(Org.BouncyCastle.X509.IX509AttributeCertificate,Org.BouncyCastle.Pkix.PkixCertPath,Org.BouncyCastle.Pkix.PkixCertPath,System.Collections.ICollection)">
  21249. Performs checks on the specified attribute certificate. Every handled
  21250. extension is rmeoved from the <code>unresolvedCritExts</code>
  21251. collection.
  21252. @param attrCert The attribute certificate to be checked.
  21253. @param certPath The certificate path which belongs to the attribute
  21254. certificate issuer public key certificate.
  21255. @param holderCertPath The certificate path which belongs to the holder
  21256. certificate.
  21257. @param unresolvedCritExts a <code>Collection</code> of OID strings
  21258. representing the current set of unresolved critical extensions
  21259. @throws CertPathValidatorException if the specified attribute certificate
  21260. does not pass the check.
  21261. </member>
  21262. <member name="M:Org.BouncyCastle.Pkix.PkixAttrCertChecker.Clone">
  21263. Returns a clone of this object.
  21264. @return a copy of this <code>PkixAttrCertChecker</code>
  21265. </member>
  21266. <member name="M:Org.BouncyCastle.Pkix.PkixAttrCertPathBuilder.Build(Org.BouncyCastle.Pkix.PkixBuilderParameters)">
  21267. Build and validate a CertPath using the given parameter.
  21268. @param params PKIXBuilderParameters object containing all information to
  21269. build the CertPath
  21270. </member>
  21271. <member name="T:Org.BouncyCastle.Pkix.PkixAttrCertPathValidator">
  21272. CertPathValidatorSpi implementation for X.509 Attribute Certificates la RFC 3281.
  21273. @see org.bouncycastle.x509.ExtendedPkixParameters
  21274. </member>
  21275. <member name="M:Org.BouncyCastle.Pkix.PkixAttrCertPathValidator.Validate(Org.BouncyCastle.Pkix.PkixCertPath,Org.BouncyCastle.Pkix.PkixParameters)">
  21276. Validates an attribute certificate with the given certificate path.
  21277. <p>
  21278. <code>params</code> must be an instance of
  21279. <code>ExtendedPkixParameters</code>.
  21280. </p><p>
  21281. The target constraints in the <code>params</code> must be an
  21282. <code>X509AttrCertStoreSelector</code> with at least the attribute
  21283. certificate criterion set. Obey that also target informations may be
  21284. necessary to correctly validate this attribute certificate.
  21285. </p><p>
  21286. The attribute certificate issuer must be added to the trusted attribute
  21287. issuers with {@link ExtendedPkixParameters#setTrustedACIssuers(Set)}.
  21288. </p>
  21289. @param certPath The certificate path which belongs to the attribute
  21290. certificate issuer public key certificate.
  21291. @param params The PKIX parameters.
  21292. @return A <code>PKIXCertPathValidatorResult</code> of the result of
  21293. validating the <code>certPath</code>.
  21294. @throws InvalidAlgorithmParameterException if <code>params</code> is
  21295. inappropriate for this validator.
  21296. @throws CertPathValidatorException if the verification fails.
  21297. </member>
  21298. <member name="T:Org.BouncyCastle.Pkix.PkixBuilderParameters">
  21299. <summary>
  21300. Summary description for PkixBuilderParameters.
  21301. </summary>
  21302. </member>
  21303. <member name="M:Org.BouncyCastle.Pkix.PkixBuilderParameters.GetInstance(Org.BouncyCastle.Pkix.PkixParameters)">
  21304. Returns an instance of <code>PkixBuilderParameters</code>.
  21305. <p>
  21306. This method can be used to get a copy from other
  21307. <code>PKIXBuilderParameters</code>, <code>PKIXParameters</code>,
  21308. and <code>ExtendedPKIXParameters</code> instances.
  21309. </p>
  21310. @param pkixParams The PKIX parameters to create a copy of.
  21311. @return An <code>PkixBuilderParameters</code> instance.
  21312. </member>
  21313. <member name="M:Org.BouncyCastle.Pkix.PkixBuilderParameters.GetExcludedCerts">
  21314. <summary>
  21315. Excluded certificates are not used for building a certification path.
  21316. </summary>
  21317. <returns>the excluded certificates.</returns>
  21318. </member>
  21319. <member name="M:Org.BouncyCastle.Pkix.PkixBuilderParameters.SetExcludedCerts(Org.BouncyCastle.Utilities.Collections.ISet)">
  21320. <summary>
  21321. Sets the excluded certificates which are not used for building a
  21322. certification path. If the <code>ISet</code> is <code>null</code> an
  21323. empty set is assumed.
  21324. </summary>
  21325. <remarks>
  21326. The given set is cloned to protect it against subsequent modifications.
  21327. </remarks>
  21328. <param name="excludedCerts">The excluded certificates to set.</param>
  21329. </member>
  21330. <member name="M:Org.BouncyCastle.Pkix.PkixBuilderParameters.SetParams(Org.BouncyCastle.Pkix.PkixParameters)">
  21331. Can alse handle <code>ExtendedPKIXBuilderParameters</code> and
  21332. <code>PKIXBuilderParameters</code>.
  21333. @param params Parameters to set.
  21334. @see org.bouncycastle.x509.ExtendedPKIXParameters#setParams(java.security.cert.PKIXParameters)
  21335. </member>
  21336. <member name="M:Org.BouncyCastle.Pkix.PkixBuilderParameters.Clone">
  21337. Makes a copy of this <code>PKIXParameters</code> object. Changes to the
  21338. copy will not affect the original and vice versa.
  21339. @return a copy of this <code>PKIXParameters</code> object
  21340. </member>
  21341. <member name="T:Org.BouncyCastle.Pkix.PkixCertPath">
  21342. An immutable sequence of certificates (a certification path).<br />
  21343. <br />
  21344. This is an abstract class that defines the methods common to all CertPaths.
  21345. Subclasses can handle different kinds of certificates (X.509, PGP, etc.).<br />
  21346. <br />
  21347. All CertPath objects have a type, a list of Certificates, and one or more
  21348. supported encodings. Because the CertPath class is immutable, a CertPath
  21349. cannot change in any externally visible way after being constructed. This
  21350. stipulation applies to all public fields and methods of this class and any
  21351. added or overridden by subclasses.<br />
  21352. <br />
  21353. The type is a string that identifies the type of Certificates in the
  21354. certification path. For each certificate cert in a certification path
  21355. certPath, cert.getType().equals(certPath.getType()) must be true.<br />
  21356. <br />
  21357. The list of Certificates is an ordered List of zero or more Certificates.
  21358. This List and all of the Certificates contained in it must be immutable.<br />
  21359. <br />
  21360. Each CertPath object must support one or more encodings so that the object
  21361. can be translated into a byte array for storage or transmission to other
  21362. parties. Preferably, these encodings should be well-documented standards
  21363. (such as PKCS#7). One of the encodings supported by a CertPath is considered
  21364. the default encoding. This encoding is used if no encoding is explicitly
  21365. requested (for the {@link #getEncoded()} method, for instance).<br />
  21366. <br />
  21367. All CertPath objects are also Serializable. CertPath objects are resolved
  21368. into an alternate {@link CertPathRep} object during serialization. This
  21369. allows a CertPath object to be serialized into an equivalent representation
  21370. regardless of its underlying implementation.<br />
  21371. <br />
  21372. CertPath objects can be created with a CertificateFactory or they can be
  21373. returned by other classes, such as a CertPathBuilder.<br />
  21374. <br />
  21375. By convention, X.509 CertPaths (consisting of X509Certificates), are ordered
  21376. starting with the target certificate and ending with a certificate issued by
  21377. the trust anchor. That is, the issuer of one certificate is the subject of
  21378. the following one. The certificate representing the
  21379. {@link TrustAnchor TrustAnchor} should not be included in the certification
  21380. path. Unvalidated X.509 CertPaths may not follow these conventions. PKIX
  21381. CertPathValidators will detect any departure from these conventions that
  21382. cause the certification path to be invalid and throw a
  21383. CertPathValidatorException.<br />
  21384. <br />
  21385. <strong>Concurrent Access</strong><br />
  21386. <br />
  21387. All CertPath objects must be thread-safe. That is, multiple threads may
  21388. concurrently invoke the methods defined in this class on a single CertPath
  21389. object (or more than one) with no ill effects. This is also true for the List
  21390. returned by CertPath.getCertificates.<br />
  21391. <br />
  21392. Requiring CertPath objects to be immutable and thread-safe allows them to be
  21393. passed around to various pieces of code without worrying about coordinating
  21394. access. Providing this thread-safety is generally not difficult, since the
  21395. CertPath and List objects in question are immutable.
  21396. @see CertificateFactory
  21397. @see CertPathBuilder
  21398. <summary>
  21399. CertPath implementation for X.509 certificates.
  21400. </summary>
  21401. </member>
  21402. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.SortCerts(System.Collections.IList)">
  21403. @param certs
  21404. </member>
  21405. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.#ctor(System.Collections.ICollection)">
  21406. Creates a CertPath of the specified type.
  21407. This constructor is protected because most users should use
  21408. a CertificateFactory to create CertPaths.
  21409. @param type the standard name of the type of Certificatesin this path
  21410. </member>
  21411. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.#ctor(System.IO.Stream,System.String)">
  21412. Creates a CertPath of the specified type.
  21413. This constructor is protected because most users should use
  21414. a CertificateFactory to create CertPaths.
  21415. @param type the standard name of the type of Certificatesin this path
  21416. </member>
  21417. <member name="P:Org.BouncyCastle.Pkix.PkixCertPath.Encodings">
  21418. Returns an iteration of the encodings supported by this
  21419. certification path, with the default encoding
  21420. first. Attempts to modify the returned Iterator via its
  21421. remove method result in an UnsupportedOperationException.
  21422. @return an Iterator over the names of the supported encodings (as Strings)
  21423. </member>
  21424. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.Equals(System.Object)">
  21425. Compares this certification path for equality with the specified object.
  21426. Two CertPaths are equal if and only if their types are equal and their
  21427. certificate Lists (and by implication the Certificates in those Lists)
  21428. are equal. A CertPath is never equal to an object that is not a CertPath.<br />
  21429. <br />
  21430. This algorithm is implemented by this method. If it is overridden, the
  21431. behavior specified here must be maintained.
  21432. @param other
  21433. the object to test for equality with this certification path
  21434. @return true if the specified object is equal to this certification path,
  21435. false otherwise
  21436. @see Object#hashCode() Object.hashCode()
  21437. </member>
  21438. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.GetEncoded">
  21439. Returns the encoded form of this certification path, using
  21440. the default encoding.
  21441. @return the encoded bytes
  21442. @exception CertificateEncodingException if an encoding error occurs
  21443. </member>
  21444. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.GetEncoded(System.String)">
  21445. Returns the encoded form of this certification path, using
  21446. the specified encoding.
  21447. @param encoding the name of the encoding to use
  21448. @return the encoded bytes
  21449. @exception CertificateEncodingException if an encoding error
  21450. occurs or the encoding requested is not supported
  21451. </member>
  21452. <member name="P:Org.BouncyCastle.Pkix.PkixCertPath.Certificates">
  21453. <summary>
  21454. Returns the list of certificates in this certification
  21455. path.
  21456. </summary>
  21457. </member>
  21458. <member name="M:Org.BouncyCastle.Pkix.PkixCertPath.ToAsn1Object(Org.BouncyCastle.X509.X509Certificate)">
  21459. Return a DERObject containing the encoded certificate.
  21460. @param cert the X509Certificate object to be encoded
  21461. @return the DERObject
  21462. </member>
  21463. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathBuilder">
  21464. Implements the PKIX CertPathBuilding algorithm for BouncyCastle.
  21465. @see CertPathBuilderSpi
  21466. </member>
  21467. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathBuilder.Build(Org.BouncyCastle.Pkix.PkixBuilderParameters)">
  21468. Build and validate a CertPath using the given parameter.
  21469. @param params PKIXBuilderParameters object containing all information to
  21470. build the CertPath
  21471. </member>
  21472. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathBuilderException">
  21473. <summary>
  21474. Summary description for PkixCertPathBuilderException.
  21475. </summary>
  21476. </member>
  21477. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathBuilderResult">
  21478. <summary>
  21479. Summary description for PkixCertPathBuilderResult.
  21480. </summary>
  21481. </member>
  21482. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathChecker.Init(System.Boolean)">
  21483. * Initializes the internal state of this <code>PKIXCertPathChecker</code>.
  21484. * <p>
  21485. * The <code>forward</code> flag specifies the order that certificates
  21486. * will be passed to the {@link #check check} method (forward or reverse). A
  21487. * <code>PKIXCertPathChecker</code> <b>must</b> support reverse checking
  21488. * and <b>may</b> support forward checking.
  21489. * </p>
  21490. *
  21491. * @param forward
  21492. * the order that certificates are presented to the
  21493. * <code>check</code> method. If <code>true</code>,
  21494. * certificates are presented from target to most-trusted CA
  21495. * (forward); if <code>false</code>, from most-trusted CA to
  21496. * target (reverse).
  21497. * @exception CertPathValidatorException
  21498. * if this <code>PKIXCertPathChecker</code> is unable to
  21499. * check certificates in the specified order; it should never
  21500. * be thrown if the forward flag is false since reverse
  21501. * checking must be supported
  21502. </member>
  21503. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathChecker.IsForwardCheckingSupported">
  21504. Indicates if forward checking is supported. Forward checking refers to
  21505. the ability of the <code>PKIXCertPathChecker</code> to perform its
  21506. checks when certificates are presented to the <code>check</code> method
  21507. in the forward direction (from target to most-trusted CA).
  21508. @return <code>true</code> if forward checking is supported,
  21509. <code>false</code> otherwise
  21510. </member>
  21511. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathChecker.GetSupportedExtensions">
  21512. * Returns an immutable <code>Set</code> of X.509 certificate extensions
  21513. * that this <code>PKIXCertPathChecker</code> supports (i.e. recognizes,
  21514. * is able to process), or <code>null</code> if no extensions are
  21515. * supported.
  21516. * <p>
  21517. * Each element of the set is a <code>String</code> representing the
  21518. * Object Identifier (OID) of the X.509 extension that is supported. The OID
  21519. * is represented by a set of nonnegative integers separated by periods.
  21520. * </p><p>
  21521. * All X.509 certificate extensions that a <code>PKIXCertPathChecker</code>
  21522. * might possibly be able to process should be included in the set.
  21523. * </p>
  21524. *
  21525. * @return an immutable <code>Set</code> of X.509 extension OIDs (in
  21526. * <code>String</code> format) supported by this
  21527. * <code>PKIXCertPathChecker</code>, or <code>null</code> if no
  21528. * extensions are supported
  21529. </member>
  21530. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathChecker.Check(Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Utilities.Collections.ISet)">
  21531. Performs the check(s) on the specified certificate using its internal
  21532. state and removes any critical extensions that it processes from the
  21533. specified collection of OID strings that represent the unresolved
  21534. critical extensions. The certificates are presented in the order
  21535. specified by the <code>init</code> method.
  21536. @param cert
  21537. the <code>Certificate</code> to be checked
  21538. @param unresolvedCritExts
  21539. a <code>Collection</code> of OID strings representing the
  21540. current set of unresolved critical extensions
  21541. @exception CertPathValidatorException
  21542. if the specified certificate does not pass the check
  21543. </member>
  21544. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathChecker.Clone">
  21545. Returns a clone of this object. Calls the <code>Object.clone()</code>
  21546. method. All subclasses which maintain state must support and override
  21547. this method, if necessary.
  21548. @return a copy of this <code>PKIXCertPathChecker</code>
  21549. </member>
  21550. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathValidator">
  21551. The <i>Service Provider Interface</i> (<b>SPI</b>)
  21552. for the {@link CertPathValidator CertPathValidator} class. All
  21553. <code>CertPathValidator</code> implementations must include a class (the
  21554. SPI class) that extends this class (<code>CertPathValidatorSpi</code>)
  21555. and implements all of its methods. In general, instances of this class
  21556. should only be accessed through the <code>CertPathValidator</code> class.
  21557. For details, see the Java Cryptography Architecture.<br />
  21558. <br />
  21559. <b>Concurrent Access</b><br />
  21560. <br />
  21561. Instances of this class need not be protected against concurrent
  21562. access from multiple threads. Threads that need to access a single
  21563. <code>CertPathValidatorSpi</code> instance concurrently should synchronize
  21564. amongst themselves and provide the necessary locking before calling the
  21565. wrapping <code>CertPathValidator</code> object.<br />
  21566. <br />
  21567. However, implementations of <code>CertPathValidatorSpi</code> may still
  21568. encounter concurrency issues, since multiple threads each
  21569. manipulating a different <code>CertPathValidatorSpi</code> instance need not
  21570. synchronize.
  21571. <summary>
  21572. CertPathValidatorSpi implementation for X.509 Certificate validation a la RFC
  21573. 3280.
  21574. </summary>
  21575. </member>
  21576. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathValidatorException">
  21577. An exception indicating one of a variety of problems encountered when
  21578. validating a certification path. <br />
  21579. <br />
  21580. A <code>CertPathValidatorException</code> provides support for wrapping
  21581. exceptions. The {@link #getCause getCause} method returns the throwable,
  21582. if any, that caused this exception to be thrown. <br />
  21583. <br />
  21584. A <code>CertPathValidatorException</code> may also include the
  21585. certification path that was being validated when the exception was thrown
  21586. and the index of the certificate in the certification path that caused the
  21587. exception to be thrown. Use the {@link #getCertPath getCertPath} and
  21588. {@link #getIndex getIndex} methods to retrieve this information.<br />
  21589. <br />
  21590. <b>Concurrent Access</b><br />
  21591. <br />
  21592. Unless otherwise specified, the methods defined in this class are not
  21593. thread-safe. Multiple threads that need to access a single
  21594. object concurrently should synchronize amongst themselves and
  21595. provide the necessary locking. Multiple threads each manipulating
  21596. separate objects need not synchronize.
  21597. @see CertPathValidator
  21598. </member>
  21599. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.#ctor(System.String)">
  21600. <summary>
  21601. Creates a <code>PkixCertPathValidatorException</code> with the given detail
  21602. message. A detail message is a <code>String</code> that describes this
  21603. particular exception.
  21604. </summary>
  21605. <param name="message">the detail message</param>
  21606. </member>
  21607. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.#ctor(System.String,System.Exception)">
  21608. <summary>
  21609. Creates a <code>PkixCertPathValidatorException</code> with the specified
  21610. detail message and cause.
  21611. </summary>
  21612. <param name="message">the detail message</param>
  21613. <param name="cause">the cause (which is saved for later retrieval by the
  21614. {@link #getCause getCause()} method). (A <code>null</code>
  21615. value is permitted, and indicates that the cause is
  21616. nonexistent or unknown.)</param>
  21617. </member>
  21618. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.#ctor(System.String,System.Exception,Org.BouncyCastle.Pkix.PkixCertPath,System.Int32)">
  21619. <summary>
  21620. Creates a <code>PkixCertPathValidatorException</code> with the specified
  21621. detail message, cause, certification path, and index.
  21622. </summary>
  21623. <param name="message">the detail message (or <code>null</code> if none)</param>
  21624. <param name="cause">the cause (or <code>null</code> if none)</param>
  21625. <param name="certPath">the certification path that was in the process of being
  21626. validated when the error was encountered</param>
  21627. <param name="index">the index of the certificate in the certification path that</param> *
  21628. </member>
  21629. <member name="P:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.Message">
  21630. <summary>
  21631. Returns the detail message for this <code>CertPathValidatorException</code>.
  21632. </summary>
  21633. <returns>the detail message, or <code>null</code> if neither the message nor cause were specified</returns>
  21634. </member>
  21635. <member name="P:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.CertPath">
  21636. Returns the certification path that was being validated when the
  21637. exception was thrown.
  21638. @return the <code>CertPath</code> that was being validated when the
  21639. exception was thrown (or <code>null</code> if not specified)
  21640. </member>
  21641. <member name="P:Org.BouncyCastle.Pkix.PkixCertPathValidatorException.Index">
  21642. Returns the index of the certificate in the certification path that
  21643. caused the exception to be thrown. Note that the list of certificates in
  21644. a <code>CertPath</code> is zero based. If no index has been set, -1 is
  21645. returned.
  21646. @return the index that has been set, or -1 if none has been set
  21647. </member>
  21648. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathValidatorResult">
  21649. <summary>
  21650. Summary description for PkixCertPathValidatorResult.
  21651. </summary>
  21652. </member>
  21653. <member name="T:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities">
  21654. <summary>
  21655. Summary description for PkixCertPathValidatorUtilities.
  21656. </summary>
  21657. </member>
  21658. <member name="F:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.KEY_CERT_SIGN">
  21659. <summary>
  21660. key usage bits
  21661. </summary>
  21662. </member>
  21663. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.FindTrustAnchor(Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Utilities.Collections.ISet)">
  21664. <summary>
  21665. Search the given Set of TrustAnchor's for one that is the
  21666. issuer of the given X509 certificate.
  21667. </summary>
  21668. <param name="cert">the X509 certificate</param>
  21669. <param name="trustAnchors">a Set of TrustAnchor's</param>
  21670. <returns>the <code>TrustAnchor</code> object if found or
  21671. <code>null</code> if not.
  21672. </returns>
  21673. @exception
  21674. </member>
  21675. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetIssuerPrincipal(System.Object)">
  21676. <summary>
  21677. Returns the issuer of an attribute certificate or certificate.
  21678. </summary>
  21679. <param name="cert">The attribute certificate or certificate.</param>
  21680. <returns>The issuer as <code>X500Principal</code>.</returns>
  21681. </member>
  21682. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetNextWorkingKey(System.Collections.IList,System.Int32)">
  21683. Return the next working key inheriting DSA parameters if necessary.
  21684. <p>
  21685. This methods inherits DSA parameters from the indexed certificate or
  21686. previous certificates in the certificate chain to the returned
  21687. <code>PublicKey</code>. The list is searched upwards, meaning the end
  21688. certificate is at position 0 and previous certificates are following.
  21689. </p>
  21690. <p>
  21691. If the indexed certificate does not contain a DSA key this method simply
  21692. returns the public key. If the DSA key already contains DSA parameters
  21693. the key is also only returned.
  21694. </p>
  21695. @param certs The certification path.
  21696. @param index The index of the certificate which contains the public key
  21697. which should be extended with DSA parameters.
  21698. @return The public key of the certificate in list position
  21699. <code>index</code> extended with DSA parameters if applicable.
  21700. @throws Exception if DSA parameters cannot be inherited.
  21701. </member>
  21702. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.FindCertificates(Org.BouncyCastle.X509.Store.X509CertStoreSelector,System.Collections.IList)">
  21703. <summary>
  21704. Return a Collection of all certificates or attribute certificates found
  21705. in the X509Store's that are matching the certSelect criteriums.
  21706. </summary>
  21707. <param name="certSelect">a {@link Selector} object that will be used to select
  21708. the certificates</param>
  21709. <param name="certStores">a List containing only X509Store objects. These
  21710. are used to search for certificates.</param>
  21711. <returns>a Collection of all found <see cref="T:Org.BouncyCastle.X509.X509Certificate"/> or
  21712. <see cref="T:Org.BouncyCastle.X509.IX509AttributeCertificate"/> objects.
  21713. May be empty but never <code>null</code>.</returns>
  21714. <exception cref="T:System.Exception"></exception>
  21715. </member>
  21716. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetCrlIssuersFromDistributionPoint(Org.BouncyCastle.Asn1.X509.DistributionPoint,System.Collections.ICollection,Org.BouncyCastle.X509.Store.X509CrlStoreSelector,Org.BouncyCastle.Pkix.PkixParameters)">
  21717. Add the CRL issuers from the cRLIssuer field of the distribution point or
  21718. from the certificate if not given to the issuer criterion of the
  21719. <code>selector</code>.
  21720. <p>
  21721. The <code>issuerPrincipals</code> are a collection with a single
  21722. <code>X500Principal</code> for <code>X509Certificate</code>s. For
  21723. {@link X509AttributeCertificate}s the issuer may contain more than one
  21724. <code>X500Principal</code>.
  21725. </p>
  21726. @param dp The distribution point.
  21727. @param issuerPrincipals The issuers of the certificate or attribute
  21728. certificate which contains the distribution point.
  21729. @param selector The CRL selector.
  21730. @param pkixParams The PKIX parameters containing the cert stores.
  21731. @throws Exception if an exception occurs while processing.
  21732. @throws ClassCastException if <code>issuerPrincipals</code> does not
  21733. contain only <code>X500Principal</code>s.
  21734. </member>
  21735. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetCompleteCrls(Org.BouncyCastle.Asn1.X509.DistributionPoint,System.Object,System.DateTime,Org.BouncyCastle.Pkix.PkixParameters)">
  21736. Fetches complete CRLs according to RFC 3280.
  21737. @param dp The distribution point for which the complete CRL
  21738. @param cert The <code>X509Certificate</code> or
  21739. {@link org.bouncycastle.x509.X509AttributeCertificate} for
  21740. which the CRL should be searched.
  21741. @param currentDate The date for which the delta CRLs must be valid.
  21742. @param paramsPKIX The extended PKIX parameters.
  21743. @return A <code>Set</code> of <code>X509CRL</code>s with complete
  21744. CRLs.
  21745. @throws Exception if an exception occurs while picking the CRLs
  21746. or no CRLs are found.
  21747. </member>
  21748. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetDeltaCrls(System.DateTime,Org.BouncyCastle.Pkix.PkixParameters,Org.BouncyCastle.X509.X509Crl)">
  21749. Fetches delta CRLs according to RFC 3280 section 5.2.4.
  21750. @param currentDate The date for which the delta CRLs must be valid.
  21751. @param paramsPKIX The extended PKIX parameters.
  21752. @param completeCRL The complete CRL the delta CRL is for.
  21753. @return A <code>Set</code> of <code>X509CRL</code>s with delta CRLs.
  21754. @throws Exception if an exception occurs while picking the delta
  21755. CRLs.
  21756. </member>
  21757. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.FindIssuerCerts(Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Pkix.PkixBuilderParameters)">
  21758. Find the issuer certificates of a given certificate.
  21759. @param cert
  21760. The certificate for which an issuer should be found.
  21761. @param pkixParams
  21762. @return A <code>Collection</code> object containing the issuer
  21763. <code>X509Certificate</code>s. Never <code>null</code>.
  21764. @exception Exception
  21765. if an error occurs.
  21766. </member>
  21767. <member name="M:Org.BouncyCastle.Pkix.PkixCertPathValidatorUtilities.GetExtensionValue(Org.BouncyCastle.X509.IX509Extension,Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  21768. <summary>
  21769. Extract the value of the given extension, if it exists.
  21770. </summary>
  21771. <param name="ext">The extension object.</param>
  21772. <param name="oid">The object identifier to obtain.</param>
  21773. <returns>Asn1Object</returns>
  21774. <exception cref="T:System.Exception">if the extension cannot be read.</exception>
  21775. </member>
  21776. <member name="M:Org.BouncyCastle.Pkix.PkixCrlUtilities.FindCrls(Org.BouncyCastle.X509.Store.X509CrlStoreSelector,System.Collections.IList)">
  21777. <summary>
  21778. crl checking
  21779. Return a Collection of all CRLs found in the X509Store's that are
  21780. matching the crlSelect criteriums.
  21781. </summary>
  21782. <param name="crlSelect">a {@link X509CRLStoreSelector} object that will be used
  21783. to select the CRLs</param>
  21784. <param name="crlStores">a List containing only {@link org.bouncycastle.x509.X509Store
  21785. X509Store} objects. These are used to search for CRLs</param>
  21786. <returns>a Collection of all found {@link X509CRL X509CRL} objects. May be
  21787. empty but never <code>null</code>.
  21788. </returns>
  21789. </member>
  21790. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.IntersectIP(Org.BouncyCastle.Utilities.Collections.ISet,Org.BouncyCastle.Utilities.Collections.ISet)">
  21791. Returns the intersection of the permitted IP ranges in
  21792. <code>permitted</code> with <code>ip</code>.
  21793. @param permitted A <code>Set</code> of permitted IP addresses with
  21794. their subnet mask as byte arrays.
  21795. @param ips The IP address with its subnet mask.
  21796. @return The <code>Set</code> of permitted IP ranges intersected with
  21797. <code>ip</code>.
  21798. </member>
  21799. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.UnionIP(Org.BouncyCastle.Utilities.Collections.ISet,System.Byte[])">
  21800. Returns the union of the excluded IP ranges in <code>excluded</code>
  21801. with <code>ip</code>.
  21802. @param excluded A <code>Set</code> of excluded IP addresses with their
  21803. subnet mask as byte arrays.
  21804. @param ip The IP address with its subnet mask.
  21805. @return The <code>Set</code> of excluded IP ranges unified with
  21806. <code>ip</code> as byte arrays.
  21807. </member>
  21808. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.UnionIPRange(System.Byte[],System.Byte[])">
  21809. Calculates the union if two IP ranges.
  21810. @param ipWithSubmask1 The first IP address with its subnet mask.
  21811. @param ipWithSubmask2 The second IP address with its subnet mask.
  21812. @return A <code>Set</code> with the union of both addresses.
  21813. </member>
  21814. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.IntersectIPRange(System.Byte[],System.Byte[])">
  21815. Calculates the interesction if two IP ranges.
  21816. @param ipWithSubmask1 The first IP address with its subnet mask.
  21817. @param ipWithSubmask2 The second IP address with its subnet mask.
  21818. @return A <code>Set</code> with the single IP address with its subnet
  21819. mask as a byte array or an empty <code>Set</code>.
  21820. </member>
  21821. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.IpWithSubnetMask(System.Byte[],System.Byte[])">
  21822. Concatenates the IP address with its subnet mask.
  21823. @param ip The IP address.
  21824. @param subnetMask Its subnet mask.
  21825. @return The concatenated IP address with its subnet mask.
  21826. </member>
  21827. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.ExtractIPsAndSubnetMasks(System.Byte[],System.Byte[])">
  21828. Splits the IP addresses and their subnet mask.
  21829. @param ipWithSubmask1 The first IP address with the subnet mask.
  21830. @param ipWithSubmask2 The second IP address with the subnet mask.
  21831. @return An array with two elements. Each element contains the IP address
  21832. and the subnet mask in this order.
  21833. </member>
  21834. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.MinMaxIPs(System.Byte[],System.Byte[],System.Byte[],System.Byte[])">
  21835. Based on the two IP addresses and their subnet masks the IP range is
  21836. computed for each IP address - subnet mask pair and returned as the
  21837. minimum IP address and the maximum address of the range.
  21838. @param ip1 The first IP address.
  21839. @param subnetmask1 The subnet mask of the first IP address.
  21840. @param ip2 The second IP address.
  21841. @param subnetmask2 The subnet mask of the second IP address.
  21842. @return A array with two elements. The first/second element contains the
  21843. min and max IP address of the first/second IP address and its
  21844. subnet mask.
  21845. </member>
  21846. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.CheckPermittedIP(Org.BouncyCastle.Utilities.Collections.ISet,System.Byte[])">
  21847. Checks if the IP <code>ip</code> is included in the permitted ISet
  21848. <code>permitted</code>.
  21849. @param permitted A <code>Set</code> of permitted IP addresses with
  21850. their subnet mask as byte arrays.
  21851. @param ip The IP address.
  21852. @throws PkixNameConstraintValidatorException
  21853. if the IP is not permitted.
  21854. </member>
  21855. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.checkExcludedIP(Org.BouncyCastle.Utilities.Collections.ISet,System.Byte[])">
  21856. Checks if the IP <code>ip</code> is included in the excluded ISet
  21857. <code>excluded</code>.
  21858. @param excluded A <code>Set</code> of excluded IP addresses with their
  21859. subnet mask as byte arrays.
  21860. @param ip The IP address.
  21861. @throws PkixNameConstraintValidatorException
  21862. if the IP is excluded.
  21863. </member>
  21864. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.IsIPConstrained(System.Byte[],System.Byte[])">
  21865. Checks if the IP address <code>ip</code> is constrained by
  21866. <code>constraint</code>.
  21867. @param ip The IP address.
  21868. @param constraint The constraint. This is an IP address concatenated with
  21869. its subnetmask.
  21870. @return <code>true</code> if constrained, <code>false</code>
  21871. otherwise.
  21872. </member>
  21873. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.unionEmail(System.String,System.String,Org.BouncyCastle.Utilities.Collections.ISet)">
  21874. The common part of <code>email1</code> and <code>email2</code> is
  21875. added to the union <code>union</code>. If <code>email1</code> and
  21876. <code>email2</code> have nothing in common they are added both.
  21877. @param email1 Email address constraint 1.
  21878. @param email2 Email address constraint 2.
  21879. @param union The union.
  21880. </member>
  21881. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.intersectEmail(System.String,System.String,Org.BouncyCastle.Utilities.Collections.ISet)">
  21882. The most restricting part from <code>email1</code> and
  21883. <code>email2</code> is added to the intersection <code>intersect</code>.
  21884. @param email1 Email address constraint 1.
  21885. @param email2 Email address constraint 2.
  21886. @param intersect The intersection.
  21887. </member>
  21888. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.checkPermitted(Org.BouncyCastle.Asn1.X509.GeneralName)">
  21889. Checks if the given GeneralName is in the permitted ISet.
  21890. @param name The GeneralName
  21891. @throws PkixNameConstraintValidatorException
  21892. If the <code>name</code>
  21893. </member>
  21894. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.checkExcluded(Org.BouncyCastle.Asn1.X509.GeneralName)">
  21895. Check if the given GeneralName is contained in the excluded ISet.
  21896. @param name The GeneralName.
  21897. @throws PkixNameConstraintValidatorException
  21898. If the <code>name</code> is
  21899. excluded.
  21900. </member>
  21901. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.IntersectPermittedSubtree(Org.BouncyCastle.Asn1.Asn1Sequence)">
  21902. Updates the permitted ISet of these name constraints with the intersection
  21903. with the given subtree.
  21904. @param permitted The permitted subtrees
  21905. </member>
  21906. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.AddExcludedSubtree(Org.BouncyCastle.Asn1.X509.GeneralSubtree)">
  21907. Adds a subtree to the excluded ISet of these name constraints.
  21908. @param subtree A subtree with an excluded GeneralName.
  21909. </member>
  21910. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.Max(System.Byte[],System.Byte[])">
  21911. Returns the maximum IP address.
  21912. @param ip1 The first IP address.
  21913. @param ip2 The second IP address.
  21914. @return The maximum IP address.
  21915. </member>
  21916. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.Min(System.Byte[],System.Byte[])">
  21917. Returns the minimum IP address.
  21918. @param ip1 The first IP address.
  21919. @param ip2 The second IP address.
  21920. @return The minimum IP address.
  21921. </member>
  21922. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.CompareTo(System.Byte[],System.Byte[])">
  21923. Compares IP address <code>ip1</code> with <code>ip2</code>. If ip1
  21924. is equal to ip2 0 is returned. If ip1 is bigger 1 is returned, -1
  21925. otherwise.
  21926. @param ip1 The first IP address.
  21927. @param ip2 The second IP address.
  21928. @return 0 if ip1 is equal to ip2, 1 if ip1 is bigger, -1 otherwise.
  21929. </member>
  21930. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.Or(System.Byte[],System.Byte[])">
  21931. Returns the logical OR of the IP addresses <code>ip1</code> and
  21932. <code>ip2</code>.
  21933. @param ip1 The first IP address.
  21934. @param ip2 The second IP address.
  21935. @return The OR of <code>ip1</code> and <code>ip2</code>.
  21936. </member>
  21937. <member name="M:Org.BouncyCastle.Pkix.PkixNameConstraintValidator.StringifyIP(System.Byte[])">
  21938. Stringifies an IPv4 or v6 address with subnet mask.
  21939. @param ip The IP with subnet mask.
  21940. @return The stringified IP address.
  21941. </member>
  21942. <member name="T:Org.BouncyCastle.Pkix.PkixParameters">
  21943. <summary>
  21944. Summary description for PkixParameters.
  21945. </summary>
  21946. </member>
  21947. <member name="F:Org.BouncyCastle.Pkix.PkixParameters.PkixValidityModel">
  21948. This is the default PKIX validity model. Actually there are two variants
  21949. of this: The PKIX model and the modified PKIX model. The PKIX model
  21950. verifies that all involved certificates must have been valid at the
  21951. current time. The modified PKIX model verifies that all involved
  21952. certificates were valid at the signing time. Both are indirectly choosen
  21953. with the {@link PKIXParameters#setDate(java.util.Date)} method, so this
  21954. methods sets the Date when <em>all</em> certificates must have been
  21955. valid.
  21956. </member>
  21957. <member name="F:Org.BouncyCastle.Pkix.PkixParameters.ChainValidityModel">
  21958. This model uses the following validity model. Each certificate must have
  21959. been valid at the moment where is was used. That means the end
  21960. certificate must have been valid at the time the signature was done. The
  21961. CA certificate which signed the end certificate must have been valid,
  21962. when the end certificate was signed. The CA (or Root CA) certificate must
  21963. have been valid, when the CA certificate was signed and so on. So the
  21964. {@link PKIXParameters#setDate(java.util.Date)} method sets the time, when
  21965. the <em>end certificate</em> must have been valid. <p/> It is used e.g.
  21966. in the German signature law.
  21967. </member>
  21968. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.#ctor(Org.BouncyCastle.Utilities.Collections.ISet)">
  21969. Creates an instance of PKIXParameters with the specified Set of
  21970. most-trusted CAs. Each element of the set is a TrustAnchor.<br />
  21971. <br />
  21972. Note that the Set is copied to protect against subsequent modifications.
  21973. @param trustAnchors
  21974. a Set of TrustAnchors
  21975. @exception InvalidAlgorithmParameterException
  21976. if the specified Set is empty
  21977. <code>(trustAnchors.isEmpty() == true)</code>
  21978. @exception NullPointerException
  21979. if the specified Set is <code>null</code>
  21980. @exception ClassCastException
  21981. if any of the elements in the Set are not of type
  21982. <code>java.security.cert.TrustAnchor</code>
  21983. </member>
  21984. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetTargetCertConstraints">
  21985. Returns the required constraints on the target certificate. The
  21986. constraints are returned as an instance of CertSelector. If
  21987. <code>null</code>, no constraints are defined.<br />
  21988. <br />
  21989. Note that the CertSelector returned is cloned to protect against
  21990. subsequent modifications.
  21991. @return a CertSelector specifying the constraints on the target
  21992. certificate (or <code>null</code>)
  21993. @see #setTargetCertConstraints(CertSelector)
  21994. </member>
  21995. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetTargetCertConstraints(Org.BouncyCastle.X509.Store.IX509Selector)">
  21996. Sets the required constraints on the target certificate. The constraints
  21997. are specified as an instance of CertSelector. If null, no constraints are
  21998. defined.<br />
  21999. <br />
  22000. Note that the CertSelector specified is cloned to protect against
  22001. subsequent modifications.
  22002. @param selector
  22003. a CertSelector specifying the constraints on the target
  22004. certificate (or <code>null</code>)
  22005. @see #getTargetCertConstraints()
  22006. </member>
  22007. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetInitialPolicies">
  22008. Returns an immutable Set of initial policy identifiers (OID strings),
  22009. indicating that any one of these policies would be acceptable to the
  22010. certificate user for the purposes of certification path processing. The
  22011. default return value is an empty <code>Set</code>, which is
  22012. interpreted as meaning that any policy would be acceptable.
  22013. @return an immutable <code>Set</code> of initial policy OIDs in String
  22014. format, or an empty <code>Set</code> (implying any policy is
  22015. acceptable). Never returns <code>null</code>.
  22016. @see #setInitialPolicies(java.util.Set)
  22017. </member>
  22018. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetInitialPolicies(Org.BouncyCastle.Utilities.Collections.ISet)">
  22019. Sets the <code>Set</code> of initial policy identifiers (OID strings),
  22020. indicating that any one of these policies would be acceptable to the
  22021. certificate user for the purposes of certification path processing. By
  22022. default, any policy is acceptable (i.e. all policies), so a user that
  22023. wants to allow any policy as acceptable does not need to call this
  22024. method, or can call it with an empty <code>Set</code> (or
  22025. <code>null</code>).<br />
  22026. <br />
  22027. Note that the Set is copied to protect against subsequent modifications.<br />
  22028. <br />
  22029. @param initialPolicies
  22030. a Set of initial policy OIDs in String format (or
  22031. <code>null</code>)
  22032. @exception ClassCastException
  22033. if any of the elements in the set are not of type String
  22034. @see #getInitialPolicies()
  22035. </member>
  22036. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetCertPathCheckers(System.Collections.IList)">
  22037. Sets a <code>List</code> of additional certification path checkers. If
  22038. the specified List contains an object that is not a PKIXCertPathChecker,
  22039. it is ignored.<br />
  22040. <br />
  22041. Each <code>PKIXCertPathChecker</code> specified implements additional
  22042. checks on a certificate. Typically, these are checks to process and
  22043. verify private extensions contained in certificates. Each
  22044. <code>PKIXCertPathChecker</code> should be instantiated with any
  22045. initialization parameters needed to execute the check.<br />
  22046. <br />
  22047. This method allows sophisticated applications to extend a PKIX
  22048. <code>CertPathValidator</code> or <code>CertPathBuilder</code>. Each
  22049. of the specified PKIXCertPathCheckers will be called, in turn, by a PKIX
  22050. <code>CertPathValidator</code> or <code>CertPathBuilder</code> for
  22051. each certificate processed or validated.<br />
  22052. <br />
  22053. Regardless of whether these additional PKIXCertPathCheckers are set, a
  22054. PKIX <code>CertPathValidator</code> or <code>CertPathBuilder</code>
  22055. must perform all of the required PKIX checks on each certificate. The one
  22056. exception to this rule is if the RevocationEnabled flag is set to false
  22057. (see the {@link #setRevocationEnabled(boolean) setRevocationEnabled}
  22058. method).<br />
  22059. <br />
  22060. Note that the List supplied here is copied and each PKIXCertPathChecker
  22061. in the list is cloned to protect against subsequent modifications.
  22062. @param checkers
  22063. a List of PKIXCertPathCheckers. May be null, in which case no
  22064. additional checkers will be used.
  22065. @exception ClassCastException
  22066. if any of the elements in the list are not of type
  22067. <code>java.security.cert.PKIXCertPathChecker</code>
  22068. @see #getCertPathCheckers()
  22069. </member>
  22070. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetCertPathCheckers">
  22071. Returns the List of certification path checkers. Each PKIXCertPathChecker
  22072. in the returned IList is cloned to protect against subsequent modifications.
  22073. @return an immutable List of PKIXCertPathCheckers (may be empty, but not
  22074. <code>null</code>)
  22075. @see #setCertPathCheckers(java.util.List)
  22076. </member>
  22077. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.AddCertPathChecker(Org.BouncyCastle.Pkix.PkixCertPathChecker)">
  22078. Adds a <code>PKIXCertPathChecker</code> to the list of certification
  22079. path checkers. See the {@link #setCertPathCheckers setCertPathCheckers}
  22080. method for more details.
  22081. <p>
  22082. Note that the <code>PKIXCertPathChecker</code> is cloned to protect
  22083. against subsequent modifications.</p>
  22084. @param checker a <code>PKIXCertPathChecker</code> to add to the list of
  22085. checks. If <code>null</code>, the checker is ignored (not added to list).
  22086. </member>
  22087. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetParams(Org.BouncyCastle.Pkix.PkixParameters)">
  22088. Method to support <code>Clone()</code> under J2ME.
  22089. <code>super.Clone()</code> does not exist and fields are not copied.
  22090. @param params Parameters to set. If this are
  22091. <code>ExtendedPkixParameters</code> they are copied to.
  22092. </member>
  22093. <member name="P:Org.BouncyCastle.Pkix.PkixParameters.IsUseDeltasEnabled">
  22094. Whether delta CRLs should be used for checking the revocation status.
  22095. Defaults to <code>false</code>.
  22096. </member>
  22097. <member name="P:Org.BouncyCastle.Pkix.PkixParameters.ValidityModel">
  22098. The validity model.
  22099. @see #CHAIN_VALIDITY_MODEL
  22100. @see #PKIX_VALIDITY_MODEL
  22101. </member>
  22102. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetStores(System.Collections.IList)">
  22103. Sets the Bouncy Castle Stores for finding CRLs, certificates, attribute
  22104. certificates or cross certificates.
  22105. <p>
  22106. The <code>IList</code> is cloned.
  22107. </p>
  22108. @param stores A list of stores to use.
  22109. @see #getStores
  22110. @throws ClassCastException if an element of <code>stores</code> is not
  22111. a {@link Store}.
  22112. </member>
  22113. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.AddStore(Org.BouncyCastle.X509.Store.IX509Store)">
  22114. Adds a Bouncy Castle {@link Store} to find CRLs, certificates, attribute
  22115. certificates or cross certificates.
  22116. <p>
  22117. This method should be used to add local stores, like collection based
  22118. X.509 stores, if available. Local stores should be considered first,
  22119. before trying to use additional (remote) locations, because they do not
  22120. need possible additional network traffic.
  22121. </p><p>
  22122. If <code>store</code> is <code>null</code> it is ignored.
  22123. </p>
  22124. @param store The store to add.
  22125. @see #getStores
  22126. </member>
  22127. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.AddAdditionalStore(Org.BouncyCastle.X509.Store.IX509Store)">
  22128. Adds an additional Bouncy Castle {@link Store} to find CRLs, certificates,
  22129. attribute certificates or cross certificates.
  22130. <p>
  22131. You should not use this method. This method is used for adding additional
  22132. X.509 stores, which are used to add (remote) locations, e.g. LDAP, found
  22133. during X.509 object processing, e.g. in certificates or CRLs. This method
  22134. is used in PKIX certification path processing.
  22135. </p><p>
  22136. If <code>store</code> is <code>null</code> it is ignored.
  22137. </p>
  22138. @param store The store to add.
  22139. @see #getStores()
  22140. </member>
  22141. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetAdditionalStores">
  22142. Returns an <code>IList</code> of additional Bouncy Castle
  22143. <code>Store</code>s used for finding CRLs, certificates, attribute
  22144. certificates or cross certificates.
  22145. @return an immutable <code>IList</code> of additional Bouncy Castle
  22146. <code>Store</code>s. Never <code>null</code>.
  22147. @see #addAddionalStore(Store)
  22148. </member>
  22149. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetStores">
  22150. Returns an <code>IList</code> of Bouncy Castle
  22151. <code>Store</code>s used for finding CRLs, certificates, attribute
  22152. certificates or cross certificates.
  22153. @return an immutable <code>IList</code> of Bouncy Castle
  22154. <code>Store</code>s. Never <code>null</code>.
  22155. @see #setStores(IList)
  22156. </member>
  22157. <member name="P:Org.BouncyCastle.Pkix.PkixParameters.IsAdditionalLocationsEnabled">
  22158. Returns if additional {@link X509Store}s for locations like LDAP found
  22159. in certificates or CRLs should be used.
  22160. @return Returns <code>true</code> if additional stores are used.
  22161. </member>
  22162. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetAdditionalLocationsEnabled(System.Boolean)">
  22163. Sets if additional {@link X509Store}s for locations like LDAP found in
  22164. certificates or CRLs should be used.
  22165. @param enabled <code>true</code> if additional stores are used.
  22166. </member>
  22167. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetTargetConstraints">
  22168. Returns the required constraints on the target certificate or attribute
  22169. certificate. The constraints are returned as an instance of
  22170. <code>IX509Selector</code>. If <code>null</code>, no constraints are
  22171. defined.
  22172. <p>
  22173. The target certificate in a PKIX path may be a certificate or an
  22174. attribute certificate.
  22175. </p><p>
  22176. Note that the <code>IX509Selector</code> returned is cloned to protect
  22177. against subsequent modifications.
  22178. </p>
  22179. @return a <code>IX509Selector</code> specifying the constraints on the
  22180. target certificate or attribute certificate (or <code>null</code>)
  22181. @see #setTargetConstraints
  22182. @see X509CertStoreSelector
  22183. @see X509AttributeCertStoreSelector
  22184. </member>
  22185. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetTargetConstraints(Org.BouncyCastle.X509.Store.IX509Selector)">
  22186. Sets the required constraints on the target certificate or attribute
  22187. certificate. The constraints are specified as an instance of
  22188. <code>IX509Selector</code>. If <code>null</code>, no constraints are
  22189. defined.
  22190. <p>
  22191. The target certificate in a PKIX path may be a certificate or an
  22192. attribute certificate.
  22193. </p><p>
  22194. Note that the <code>IX509Selector</code> specified is cloned to protect
  22195. against subsequent modifications.
  22196. </p>
  22197. @param selector a <code>IX509Selector</code> specifying the constraints on
  22198. the target certificate or attribute certificate (or
  22199. <code>null</code>)
  22200. @see #getTargetConstraints
  22201. @see X509CertStoreSelector
  22202. @see X509AttributeCertStoreSelector
  22203. </member>
  22204. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetTrustedACIssuers">
  22205. Returns the trusted attribute certificate issuers. If attribute
  22206. certificates is verified the trusted AC issuers must be set.
  22207. <p>
  22208. The returned <code>ISet</code> consists of <code>TrustAnchor</code>s.
  22209. </p><p>
  22210. The returned <code>ISet</code> is immutable. Never <code>null</code>
  22211. </p>
  22212. @return Returns an immutable set of the trusted AC issuers.
  22213. </member>
  22214. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetTrustedACIssuers(Org.BouncyCastle.Utilities.Collections.ISet)">
  22215. Sets the trusted attribute certificate issuers. If attribute certificates
  22216. is verified the trusted AC issuers must be set.
  22217. <p>
  22218. The <code>trustedACIssuers</code> must be a <code>ISet</code> of
  22219. <code>TrustAnchor</code>
  22220. </p><p>
  22221. The given set is cloned.
  22222. </p>
  22223. @param trustedACIssuers The trusted AC issuers to set. Is never
  22224. <code>null</code>.
  22225. @throws ClassCastException if an element of <code>stores</code> is not
  22226. a <code>TrustAnchor</code>.
  22227. </member>
  22228. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetNecessaryACAttributes">
  22229. Returns the necessary attributes which must be contained in an attribute
  22230. certificate.
  22231. <p>
  22232. The returned <code>ISet</code> is immutable and contains
  22233. <code>String</code>s with the OIDs.
  22234. </p>
  22235. @return Returns the necessary AC attributes.
  22236. </member>
  22237. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetNecessaryACAttributes(Org.BouncyCastle.Utilities.Collections.ISet)">
  22238. Sets the necessary which must be contained in an attribute certificate.
  22239. <p>
  22240. The <code>ISet</code> must contain <code>String</code>s with the
  22241. OIDs.
  22242. </p><p>
  22243. The set is cloned.
  22244. </p>
  22245. @param necessaryACAttributes The necessary AC attributes to set.
  22246. @throws ClassCastException if an element of
  22247. <code>necessaryACAttributes</code> is not a
  22248. <code>String</code>.
  22249. </member>
  22250. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetProhibitedACAttributes">
  22251. Returns the attribute certificates which are not allowed.
  22252. <p>
  22253. The returned <code>ISet</code> is immutable and contains
  22254. <code>String</code>s with the OIDs.
  22255. </p>
  22256. @return Returns the prohibited AC attributes. Is never <code>null</code>.
  22257. </member>
  22258. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetProhibitedACAttributes(Org.BouncyCastle.Utilities.Collections.ISet)">
  22259. Sets the attribute certificates which are not allowed.
  22260. <p>
  22261. The <code>ISet</code> must contain <code>String</code>s with the
  22262. OIDs.
  22263. </p><p>
  22264. The set is cloned.
  22265. </p>
  22266. @param prohibitedACAttributes The prohibited AC attributes to set.
  22267. @throws ClassCastException if an element of
  22268. <code>prohibitedACAttributes</code> is not a
  22269. <code>String</code>.
  22270. </member>
  22271. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.GetAttrCertCheckers">
  22272. Returns the attribute certificate checker. The returned set contains
  22273. {@link PKIXAttrCertChecker}s and is immutable.
  22274. @return Returns the attribute certificate checker. Is never
  22275. <code>null</code>.
  22276. </member>
  22277. <member name="M:Org.BouncyCastle.Pkix.PkixParameters.SetAttrCertCheckers(Org.BouncyCastle.Utilities.Collections.ISet)">
  22278. Sets the attribute certificate checkers.
  22279. <p>
  22280. All elements in the <code>ISet</code> must a {@link PKIXAttrCertChecker}.
  22281. </p>
  22282. <p>
  22283. The given set is cloned.
  22284. </p>
  22285. @param attrCertCheckers The attribute certificate checkers to set. Is
  22286. never <code>null</code>.
  22287. @throws ClassCastException if an element of <code>attrCertCheckers</code>
  22288. is not a <code>PKIXAttrCertChecker</code>.
  22289. </member>
  22290. <member name="T:Org.BouncyCastle.Pkix.PkixPolicyNode">
  22291. <summary>
  22292. Summary description for PkixPolicyNode.
  22293. </summary>
  22294. </member>
  22295. <member name="M:Org.BouncyCastle.Pkix.PkixPolicyNode.#ctor(System.Collections.IList,System.Int32,Org.BouncyCastle.Utilities.Collections.ISet,Org.BouncyCastle.Pkix.PkixPolicyNode,Org.BouncyCastle.Utilities.Collections.ISet,System.String,System.Boolean)">
  22296. Constructors
  22297. </member>
  22298. <member name="T:Org.BouncyCastle.Pkix.ReasonsMask">
  22299. <summary>
  22300. This class helps to handle CRL revocation reasons mask. Each CRL handles a
  22301. certain set of revocation reasons.
  22302. </summary>
  22303. </member>
  22304. <member name="M:Org.BouncyCastle.Pkix.ReasonsMask.#ctor(System.Int32)">
  22305. <summary>
  22306. Constructs are reason mask with the reasons.
  22307. </summary>
  22308. <param name="reasons">The reasons.</param>
  22309. </member>
  22310. <member name="M:Org.BouncyCastle.Pkix.ReasonsMask.#ctor">
  22311. <summary>
  22312. A reason mask with no reason.
  22313. </summary>
  22314. </member>
  22315. <member name="F:Org.BouncyCastle.Pkix.ReasonsMask.AllReasons">
  22316. <summary>
  22317. A mask with all revocation reasons.
  22318. </summary>
  22319. </member>
  22320. <member name="M:Org.BouncyCastle.Pkix.ReasonsMask.AddReasons(Org.BouncyCastle.Pkix.ReasonsMask)">
  22321. Adds all reasons from the reasons mask to this mask.
  22322. @param mask The reasons mask to add.
  22323. </member>
  22324. <member name="P:Org.BouncyCastle.Pkix.ReasonsMask.IsAllReasons">
  22325. <summary>
  22326. Returns <code>true</code> if this reasons mask contains all possible
  22327. reasons.
  22328. </summary>
  22329. <returns>true if this reasons mask contains all possible reasons.
  22330. </returns>
  22331. </member>
  22332. <member name="M:Org.BouncyCastle.Pkix.ReasonsMask.Intersect(Org.BouncyCastle.Pkix.ReasonsMask)">
  22333. <summary>
  22334. Intersects this mask with the given reasons mask.
  22335. </summary>
  22336. <param name="mask">mask The mask to intersect with.</param>
  22337. <returns>The intersection of this and teh given mask.</returns>
  22338. </member>
  22339. <member name="M:Org.BouncyCastle.Pkix.ReasonsMask.HasNewReasons(Org.BouncyCastle.Pkix.ReasonsMask)">
  22340. <summary>
  22341. Returns <c>true</c> if the passed reasons mask has new reasons.
  22342. </summary>
  22343. <param name="mask">The reasons mask which should be tested for new reasons.</param>
  22344. <returns><c>true</c> if the passed reasons mask has new reasons.</returns>
  22345. </member>
  22346. <member name="P:Org.BouncyCastle.Pkix.ReasonsMask.Reasons">
  22347. <summary>
  22348. Returns the reasons in this mask.
  22349. </summary>
  22350. </member>
  22351. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.ProcessCrlB2(Org.BouncyCastle.Asn1.X509.DistributionPoint,System.Object,Org.BouncyCastle.X509.X509Crl)">
  22352. If the complete CRL includes an issuing distribution point (IDP) CRL
  22353. extension check the following:
  22354. <p>
  22355. (i) If the distribution point name is present in the IDP CRL extension
  22356. and the distribution field is present in the DP, then verify that one of
  22357. the names in the IDP matches one of the names in the DP. If the
  22358. distribution point name is present in the IDP CRL extension and the
  22359. distribution field is omitted from the DP, then verify that one of the
  22360. names in the IDP matches one of the names in the cRLIssuer field of the
  22361. DP.
  22362. </p>
  22363. <p>
  22364. (ii) If the onlyContainsUserCerts boolean is asserted in the IDP CRL
  22365. extension, verify that the certificate does not include the basic
  22366. constraints extension with the cA boolean asserted.
  22367. </p>
  22368. <p>
  22369. (iii) If the onlyContainsCACerts boolean is asserted in the IDP CRL
  22370. extension, verify that the certificate includes the basic constraints
  22371. extension with the cA boolean asserted.
  22372. </p>
  22373. <p>
  22374. (iv) Verify that the onlyContainsAttributeCerts boolean is not asserted.
  22375. </p>
  22376. @param dp The distribution point.
  22377. @param cert The certificate.
  22378. @param crl The CRL.
  22379. @throws AnnotatedException if one of the conditions is not met or an error occurs.
  22380. </member>
  22381. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.ProcessCrlB1(Org.BouncyCastle.Asn1.X509.DistributionPoint,System.Object,Org.BouncyCastle.X509.X509Crl)">
  22382. If the DP includes cRLIssuer, then verify that the issuer field in the
  22383. complete CRL matches cRLIssuer in the DP and that the complete CRL
  22384. contains an
  22385. g distribution point extension with the indirectCRL
  22386. boolean asserted. Otherwise, verify that the CRL issuer matches the
  22387. certificate issuer.
  22388. @param dp The distribution point.
  22389. @param cert The certificate ot attribute certificate.
  22390. @param crl The CRL for <code>cert</code>.
  22391. @throws AnnotatedException if one of the above conditions does not apply or an error
  22392. occurs.
  22393. </member>
  22394. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.ProcessCrlF(Org.BouncyCastle.X509.X509Crl,System.Object,Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Pkix.PkixParameters,System.Collections.IList)">
  22395. Obtain and validate the certification path for the complete CRL issuer.
  22396. If a key usage extension is present in the CRL issuer's certificate,
  22397. verify that the cRLSign bit is set.
  22398. @param crl CRL which contains revocation information for the certificate
  22399. <code>cert</code>.
  22400. @param cert The attribute certificate or certificate to check if it is
  22401. revoked.
  22402. @param defaultCRLSignCert The issuer certificate of the certificate <code>cert</code>.
  22403. @param defaultCRLSignKey The public key of the issuer certificate
  22404. <code>defaultCRLSignCert</code>.
  22405. @param paramsPKIX paramsPKIX PKIX parameters.
  22406. @param certPathCerts The certificates on the certification path.
  22407. @return A <code>Set</code> with all keys of possible CRL issuer
  22408. certificates.
  22409. @throws AnnotatedException if the CRL is not valid or the status cannot be checked or
  22410. some error occurs.
  22411. </member>
  22412. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.CheckCrl(Org.BouncyCastle.Asn1.X509.DistributionPoint,Org.BouncyCastle.Pkix.PkixParameters,Org.BouncyCastle.X509.X509Certificate,System.DateTime,Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Pkix.CertStatus,Org.BouncyCastle.Pkix.ReasonsMask,System.Collections.IList)">
  22413. Checks a distribution point for revocation information for the
  22414. certificate <code>cert</code>.
  22415. @param dp The distribution point to consider.
  22416. @param paramsPKIX PKIX parameters.
  22417. @param cert Certificate to check if it is revoked.
  22418. @param validDate The date when the certificate revocation status should be
  22419. checked.
  22420. @param defaultCRLSignCert The issuer certificate of the certificate <code>cert</code>.
  22421. @param defaultCRLSignKey The public key of the issuer certificate
  22422. <code>defaultCRLSignCert</code>.
  22423. @param certStatus The current certificate revocation status.
  22424. @param reasonMask The reasons mask which is already checked.
  22425. @param certPathCerts The certificates of the certification path.
  22426. @throws AnnotatedException if the certificate is revoked or the status cannot be checked
  22427. or some error occurs.
  22428. </member>
  22429. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.CheckCrls(Org.BouncyCastle.Pkix.PkixParameters,Org.BouncyCastle.X509.X509Certificate,System.DateTime,Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Collections.IList)">
  22430. Checks a certificate if it is revoked.
  22431. @param paramsPKIX PKIX parameters.
  22432. @param cert Certificate to check if it is revoked.
  22433. @param validDate The date when the certificate revocation status should be
  22434. checked.
  22435. @param sign The issuer certificate of the certificate <code>cert</code>.
  22436. @param workingPublicKey The public key of the issuer certificate <code>sign</code>.
  22437. @param certPathCerts The certificates of the certification path.
  22438. @throws AnnotatedException if the certificate is revoked or the status cannot be checked
  22439. or some error occurs.
  22440. </member>
  22441. <member name="M:Org.BouncyCastle.Pkix.Rfc3280CertPathUtilities.ProcessCrlC(Org.BouncyCastle.X509.X509Crl,Org.BouncyCastle.X509.X509Crl,Org.BouncyCastle.Pkix.PkixParameters)">
  22442. If use-deltas is set, verify the issuer and scope of the delta CRL.
  22443. @param deltaCRL The delta CRL.
  22444. @param completeCRL The complete CRL.
  22445. @param pkixParams The PKIX paramaters.
  22446. @throws AnnotatedException if an exception occurs.
  22447. </member>
  22448. <member name="M:Org.BouncyCastle.Pkix.Rfc3281CertPathUtilities.CheckCrls(Org.BouncyCastle.X509.IX509AttributeCertificate,Org.BouncyCastle.Pkix.PkixParameters,Org.BouncyCastle.X509.X509Certificate,System.DateTime,System.Collections.IList)">
  22449. Checks if an attribute certificate is revoked.
  22450. @param attrCert Attribute certificate to check if it is revoked.
  22451. @param paramsPKIX PKIX parameters.
  22452. @param issuerCert The issuer certificate of the attribute certificate
  22453. <code>attrCert</code>.
  22454. @param validDate The date when the certificate revocation status should
  22455. be checked.
  22456. @param certPathCerts The certificates of the certification path to be
  22457. checked.
  22458. @throws CertPathValidatorException if the certificate is revoked or the
  22459. status cannot be checked or some error occurs.
  22460. </member>
  22461. <member name="M:Org.BouncyCastle.Pkix.Rfc3281CertPathUtilities.ProcessAttrCert1(Org.BouncyCastle.X509.IX509AttributeCertificate,Org.BouncyCastle.Pkix.PkixParameters)">
  22462. Searches for a holder public key certificate and verifies its
  22463. certification path.
  22464. @param attrCert the attribute certificate.
  22465. @param pkixParams The PKIX parameters.
  22466. @return The certificate path of the holder certificate.
  22467. @throws Exception if
  22468. <ul>
  22469. <li>no public key certificate can be found although holder
  22470. information is given by an entity name or a base certificate
  22471. ID</li>
  22472. <li>support classes cannot be created</li>
  22473. <li>no certification path for the public key certificate can
  22474. be built</li>
  22475. </ul>
  22476. </member>
  22477. <member name="M:Org.BouncyCastle.Pkix.Rfc3281CertPathUtilities.CheckCrl(Org.BouncyCastle.Asn1.X509.DistributionPoint,Org.BouncyCastle.X509.IX509AttributeCertificate,Org.BouncyCastle.Pkix.PkixParameters,System.DateTime,Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.Pkix.CertStatus,Org.BouncyCastle.Pkix.ReasonsMask,System.Collections.IList)">
  22478. Checks a distribution point for revocation information for the
  22479. certificate <code>attrCert</code>.
  22480. @param dp The distribution point to consider.
  22481. @param attrCert The attribute certificate which should be checked.
  22482. @param paramsPKIX PKIX parameters.
  22483. @param validDate The date when the certificate revocation status should
  22484. be checked.
  22485. @param issuerCert Certificate to check if it is revoked.
  22486. @param reasonMask The reasons mask which is already checked.
  22487. @param certPathCerts The certificates of the certification path to be
  22488. checked.
  22489. @throws Exception if the certificate is revoked or the status
  22490. cannot be checked or some error occurs.
  22491. </member>
  22492. <member name="T:Org.BouncyCastle.Pkix.TrustAnchor">
  22493. <summary>
  22494. A trust anchor or most-trusted Certification Authority (CA).
  22495. This class represents a "most-trusted CA", which is used as a trust anchor
  22496. for validating X.509 certification paths. A most-trusted CA includes the
  22497. public key of the CA, the CA's name, and any constraints upon the set of
  22498. paths which may be validated using this key. These parameters can be
  22499. specified in the form of a trusted X509Certificate or as individual
  22500. parameters.
  22501. </summary>
  22502. </member>
  22503. <member name="M:Org.BouncyCastle.Pkix.TrustAnchor.#ctor(Org.BouncyCastle.X509.X509Certificate,System.Byte[])">
  22504. <summary>
  22505. Creates an instance of TrustAnchor with the specified X509Certificate and
  22506. optional name constraints, which are intended to be used as additional
  22507. constraints when validating an X.509 certification path.
  22508. The name constraints are specified as a byte array. This byte array
  22509. should contain the DER encoded form of the name constraints, as they
  22510. would appear in the NameConstraints structure defined in RFC 2459 and
  22511. X.509. The ASN.1 definition of this structure appears below.
  22512. <pre>
  22513. NameConstraints ::= SEQUENCE {
  22514. permittedSubtrees [0] GeneralSubtrees OPTIONAL,
  22515. excludedSubtrees [1] GeneralSubtrees OPTIONAL }
  22516. GeneralSubtrees ::= SEQUENCE SIZE (1..MAX) OF GeneralSubtree
  22517. GeneralSubtree ::= SEQUENCE {
  22518. base GeneralName,
  22519. minimum [0] BaseDistance DEFAULT 0,
  22520. maximum [1] BaseDistance OPTIONAL }
  22521. BaseDistance ::= INTEGER (0..MAX)
  22522. GeneralName ::= CHOICE {
  22523. otherName [0] OtherName,
  22524. rfc822Name [1] IA5String,
  22525. dNSName [2] IA5String,
  22526. x400Address [3] ORAddress,
  22527. directoryName [4] Name,
  22528. ediPartyName [5] EDIPartyName,
  22529. uniformResourceIdentifier [6] IA5String,
  22530. iPAddress [7] OCTET STRING,
  22531. registeredID [8] OBJECT IDENTIFIER}
  22532. </pre>
  22533. Note that the name constraints byte array supplied is cloned to protect
  22534. against subsequent modifications.
  22535. </summary>
  22536. <param name="trustedCert">a trusted X509Certificate</param>
  22537. <param name="nameConstraints">a byte array containing the ASN.1 DER encoding of a
  22538. NameConstraints extension to be used for checking name
  22539. constraints. Only the value of the extension is included, not
  22540. the OID or criticality flag. Specify null to omit the
  22541. parameter.</param>
  22542. <exception cref="T:System.ArgumentNullException">if the specified X509Certificate is null</exception>
  22543. </member>
  22544. <member name="M:Org.BouncyCastle.Pkix.TrustAnchor.#ctor(Org.BouncyCastle.Asn1.X509.X509Name,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[])">
  22545. <summary>
  22546. Creates an instance of <c>TrustAnchor</c> where the
  22547. most-trusted CA is specified as an X500Principal and public key.
  22548. </summary>
  22549. <remarks>
  22550. <p>
  22551. Name constraints are an optional parameter, and are intended to be used
  22552. as additional constraints when validating an X.509 certification path.
  22553. </p><p>
  22554. The name constraints are specified as a byte array. This byte array
  22555. contains the DER encoded form of the name constraints, as they
  22556. would appear in the NameConstraints structure defined in RFC 2459
  22557. and X.509. The ASN.1 notation for this structure is supplied in the
  22558. documentation for the other constructors.
  22559. </p><p>
  22560. Note that the name constraints byte array supplied here is cloned to
  22561. protect against subsequent modifications.
  22562. </p>
  22563. </remarks>
  22564. <param name="caPrincipal">the name of the most-trusted CA as X509Name</param>
  22565. <param name="pubKey">the public key of the most-trusted CA</param>
  22566. <param name="nameConstraints">
  22567. a byte array containing the ASN.1 DER encoding of a NameConstraints extension to
  22568. be used for checking name constraints. Only the value of the extension is included,
  22569. not the OID or criticality flag. Specify <c>null</c> to omit the parameter.
  22570. </param>
  22571. <exception cref="T:System.ArgumentNullException">
  22572. if <c>caPrincipal</c> or <c>pubKey</c> is null
  22573. </exception>
  22574. </member>
  22575. <member name="M:Org.BouncyCastle.Pkix.TrustAnchor.#ctor(System.String,Org.BouncyCastle.Crypto.AsymmetricKeyParameter,System.Byte[])">
  22576. <summary>
  22577. Creates an instance of <code>TrustAnchor</code> where the most-trusted
  22578. CA is specified as a distinguished name and public key. Name constraints
  22579. are an optional parameter, and are intended to be used as additional
  22580. constraints when validating an X.509 certification path.
  22581. <br/>
  22582. The name constraints are specified as a byte array. This byte array
  22583. contains the DER encoded form of the name constraints, as they would
  22584. appear in the NameConstraints structure defined in RFC 2459 and X.509.
  22585. </summary>
  22586. <param name="caName">the X.500 distinguished name of the most-trusted CA in RFC
  22587. 2253 string format</param>
  22588. <param name="pubKey">the public key of the most-trusted CA</param>
  22589. <param name="nameConstraints">a byte array containing the ASN.1 DER encoding of a
  22590. NameConstraints extension to be used for checking name
  22591. constraints. Only the value of the extension is included, not
  22592. the OID or criticality flag. Specify null to omit the
  22593. parameter.</param>
  22594. throws NullPointerException, IllegalArgumentException
  22595. </member>
  22596. <member name="P:Org.BouncyCastle.Pkix.TrustAnchor.TrustedCert">
  22597. <summary>
  22598. Returns the most-trusted CA certificate.
  22599. </summary>
  22600. </member>
  22601. <member name="P:Org.BouncyCastle.Pkix.TrustAnchor.CA">
  22602. <summary>
  22603. Returns the name of the most-trusted CA as an X509Name.
  22604. </summary>
  22605. </member>
  22606. <member name="P:Org.BouncyCastle.Pkix.TrustAnchor.CAName">
  22607. <summary>
  22608. Returns the name of the most-trusted CA in RFC 2253 string format.
  22609. </summary>
  22610. </member>
  22611. <member name="P:Org.BouncyCastle.Pkix.TrustAnchor.CAPublicKey">
  22612. <summary>
  22613. Returns the public key of the most-trusted CA.
  22614. </summary>
  22615. </member>
  22616. <member name="M:Org.BouncyCastle.Pkix.TrustAnchor.setNameConstraints(System.Byte[])">
  22617. <summary>
  22618. Decode the name constraints and clone them if not null.
  22619. </summary>
  22620. </member>
  22621. <member name="M:Org.BouncyCastle.Pkix.TrustAnchor.ToString">
  22622. <summary>
  22623. Returns a formatted string describing the <code>TrustAnchor</code>.
  22624. </summary>
  22625. <returns>a formatted string describing the <code>TrustAnchor</code></returns>
  22626. </member>
  22627. <member name="T:Org.BouncyCastle.Tsp.TimeStampRequest">
  22628. Base class for an RFC 3161 Time Stamp Request.
  22629. </member>
  22630. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequest.#ctor(System.Byte[])">
  22631. Create a TimeStampRequest from the past in byte array.
  22632. @param req byte array containing the request.
  22633. @throws IOException if the request is malformed.
  22634. </member>
  22635. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequest.#ctor(System.IO.Stream)">
  22636. Create a TimeStampRequest from the past in input stream.
  22637. @param in input stream containing the request.
  22638. @throws IOException if the request is malformed.
  22639. </member>
  22640. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequest.Validate(System.Collections.IList,System.Collections.IList,System.Collections.IList)">
  22641. Validate the timestamp request, checking the digest to see if it is of an
  22642. accepted type and whether it is of the correct length for the algorithm specified.
  22643. @param algorithms a set of string OIDS giving accepted algorithms.
  22644. @param policies if non-null a set of policies we are willing to sign under.
  22645. @param extensions if non-null a set of extensions we are willing to accept.
  22646. @throws TspException if the request is invalid, or processing fails.
  22647. </member>
  22648. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequest.GetEncoded">
  22649. return the ASN.1 encoded representation of this object.
  22650. </member>
  22651. <member name="T:Org.BouncyCastle.Tsp.TimeStampRequestGenerator">
  22652. Generator for RFC 3161 Time Stamp Request objects.
  22653. </member>
  22654. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequestGenerator.AddExtension(System.String,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  22655. add a given extension field for the standard extensions tag (tag 3)
  22656. @throws IOException
  22657. </member>
  22658. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequestGenerator.AddExtension(System.String,System.Boolean,System.Byte[])">
  22659. add a given extension field for the standard extensions tag
  22660. The value parameter becomes the contents of the octet string associated
  22661. with the extension.
  22662. </member>
  22663. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequestGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  22664. add a given extension field for the standard extensions tag (tag 3)
  22665. @throws IOException
  22666. </member>
  22667. <member name="M:Org.BouncyCastle.Tsp.TimeStampRequestGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,System.Byte[])">
  22668. add a given extension field for the standard extensions tag
  22669. The value parameter becomes the contents of the octet string associated
  22670. with the extension.
  22671. </member>
  22672. <member name="T:Org.BouncyCastle.Tsp.TimeStampResponse">
  22673. Base class for an RFC 3161 Time Stamp Response object.
  22674. </member>
  22675. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponse.#ctor(System.Byte[])">
  22676. Create a TimeStampResponse from a byte array containing an ASN.1 encoding.
  22677. @param resp the byte array containing the encoded response.
  22678. @throws TspException if the response is malformed.
  22679. @throws IOException if the byte array doesn't represent an ASN.1 encoding.
  22680. </member>
  22681. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponse.#ctor(System.IO.Stream)">
  22682. Create a TimeStampResponse from an input stream containing an ASN.1 encoding.
  22683. @param input the input stream containing the encoded response.
  22684. @throws TspException if the response is malformed.
  22685. @throws IOException if the stream doesn't represent an ASN.1 encoding.
  22686. </member>
  22687. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponse.Validate(Org.BouncyCastle.Tsp.TimeStampRequest)">
  22688. Check this response against to see if it a well formed response for
  22689. the passed in request. Validation will include checking the time stamp
  22690. token if the response status is GRANTED or GRANTED_WITH_MODS.
  22691. @param request the request to be checked against
  22692. @throws TspException if the request can not match this response.
  22693. </member>
  22694. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponse.GetEncoded">
  22695. return the ASN.1 encoded representation of this object.
  22696. </member>
  22697. <member name="T:Org.BouncyCastle.Tsp.TimeStampResponseGenerator">
  22698. Generator for RFC 3161 Time Stamp Responses.
  22699. </member>
  22700. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponseGenerator.Generate(Org.BouncyCastle.Tsp.TimeStampRequest,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Utilities.Date.DateTimeObject)">
  22701. Return an appropriate TimeStampResponse.
  22702. <p>
  22703. If genTime is null a timeNotAvailable error response will be returned.
  22704. @param request the request this response is for.
  22705. @param serialNumber serial number for the response token.
  22706. @param genTime generation time for the response token.
  22707. @param provider provider to use for signature calculation.
  22708. @return
  22709. @throws NoSuchAlgorithmException
  22710. @throws NoSuchProviderException
  22711. @throws TSPException
  22712. </p>
  22713. </member>
  22714. <member name="M:Org.BouncyCastle.Tsp.TimeStampResponseGenerator.GenerateFailResponse(Org.BouncyCastle.Asn1.Cmp.PkiStatus,System.Int32,System.String)">
  22715. Generate a TimeStampResponse with chosen status and FailInfoField.
  22716. @param status the PKIStatus to set.
  22717. @param failInfoField the FailInfoField to set.
  22718. @param statusString an optional string describing the failure.
  22719. @return a TimeStampResponse with a failInfoField and optional statusString
  22720. @throws TSPException in case the response could not be created
  22721. </member>
  22722. <member name="M:Org.BouncyCastle.Tsp.TimeStampToken.Validate(Org.BouncyCastle.X509.X509Certificate)">
  22723. Validate the time stamp token.
  22724. <p>
  22725. To be valid the token must be signed by the passed in certificate and
  22726. the certificate must be the one referred to by the SigningCertificate
  22727. attribute included in the hashed attributes of the token. The
  22728. certificate must also have the ExtendedKeyUsageExtension with only
  22729. KeyPurposeID.IdKPTimeStamping and have been valid at the time the
  22730. timestamp was created.
  22731. </p>
  22732. <p>
  22733. A successful call to validate means all the above are true.
  22734. </p>
  22735. </member>
  22736. <member name="M:Org.BouncyCastle.Tsp.TimeStampToken.ToCmsSignedData">
  22737. Return the underlying CmsSignedData object.
  22738. @return the underlying CMS structure.
  22739. </member>
  22740. <member name="M:Org.BouncyCastle.Tsp.TimeStampToken.GetEncoded">
  22741. Return a ASN.1 encoded byte stream representing the encoded object.
  22742. @throws IOException if encoding fails.
  22743. </member>
  22744. <member name="M:Org.BouncyCastle.Tsp.TimeStampTokenGenerator.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String)">
  22745. basic creation - only the default attributes will be included here.
  22746. </member>
  22747. <member name="M:Org.BouncyCastle.Tsp.TimeStampTokenGenerator.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.X509.X509Certificate,System.String,System.String,Org.BouncyCastle.Asn1.Cms.AttributeTable,Org.BouncyCastle.Asn1.Cms.AttributeTable)">
  22748. create with a signer with extra signed/unsigned attributes.
  22749. </member>
  22750. <member name="P:Org.BouncyCastle.Tsp.TimeStampTokenInfo.Nonce">
  22751. @return the nonce value, null if there isn't one.
  22752. </member>
  22753. <member name="T:Org.BouncyCastle.Tsp.TspAlgorithms">
  22754. Recognised hash algorithms for the time stamp protocol.
  22755. </member>
  22756. <member name="M:Org.BouncyCastle.Tsp.TspUtil.GetSignatureTimestamps(Org.BouncyCastle.Cms.SignerInformation)">
  22757. Fetches the signature time-stamp attributes from a SignerInformation object.
  22758. Checks that the MessageImprint for each time-stamp matches the signature field.
  22759. (see RFC 3161 Appendix A).
  22760. @param signerInfo a SignerInformation to search for time-stamps
  22761. @return a collection of TimeStampToken objects
  22762. @throws TSPValidationException
  22763. </member>
  22764. <member name="M:Org.BouncyCastle.Tsp.TspUtil.ValidateCertificate(Org.BouncyCastle.X509.X509Certificate)">
  22765. Validate the passed in certificate as being of the correct type to be used
  22766. for time stamping. To be valid it must have an ExtendedKeyUsage extension
  22767. which has a key purpose identifier of id-kp-timeStamping.
  22768. @param cert the certificate of interest.
  22769. @throws TspValidationException if the certicate fails on one of the check points.
  22770. </member>
  22771. <member name="M:Org.BouncyCastle.Tsp.TspUtil.GetDigestAlgName(System.String)">
  22772. <summary>
  22773. Return the digest algorithm using one of the standard JCA string
  22774. representations rather than the algorithm identifier (if possible).
  22775. </summary>
  22776. </member>
  22777. <member name="T:Org.BouncyCastle.Tsp.TspValidationException">
  22778. Exception thrown if a TSP request or response fails to validate.
  22779. <p>
  22780. If a failure code is associated with the exception it can be retrieved using
  22781. the getFailureCode() method.</p>
  22782. </member>
  22783. <member name="P:Org.BouncyCastle.Tsp.TspValidationException.FailureCode">
  22784. Return the failure code associated with this exception - if one is set.
  22785. @return the failure code if set, -1 otherwise.
  22786. </member>
  22787. <member name="T:Org.BouncyCastle.Utilities.Arrays">
  22788. <summary> General array utilities.</summary>
  22789. </member>
  22790. <member name="M:Org.BouncyCastle.Utilities.Arrays.AreEqual(System.Byte[],System.Byte[])">
  22791. <summary>
  22792. Are two arrays equal.
  22793. </summary>
  22794. <param name="a">Left side.</param>
  22795. <param name="b">Right side.</param>
  22796. <returns>True if equal.</returns>
  22797. </member>
  22798. <member name="M:Org.BouncyCastle.Utilities.Arrays.ConstantTimeAreEqual(System.Byte[],System.Byte[])">
  22799. <summary>
  22800. A constant time equals comparison - does not terminate early if
  22801. test will fail.
  22802. </summary>
  22803. <param name="a">first array</param>
  22804. <param name="b">second array</param>
  22805. <returns>true if arrays equal, false otherwise.</returns>
  22806. </member>
  22807. <member name="M:Org.BouncyCastle.Utilities.Arrays.CopyOfRange(System.Byte[],System.Int32,System.Int32)">
  22808. Make a copy of a range of bytes from the passed in data array. The range can
  22809. extend beyond the end of the input array, in which case the return array will
  22810. be padded with zeroes.
  22811. @param data the array from which the data is to be copied.
  22812. @param from the start index at which the copying should take place.
  22813. @param to the final index of the range (exclusive).
  22814. @return a new byte array containing the range given.
  22815. </member>
  22816. <member name="T:Org.BouncyCastle.Utilities.BigIntegers">
  22817. BigInteger utilities.
  22818. </member>
  22819. <member name="M:Org.BouncyCastle.Utilities.BigIntegers.AsUnsignedByteArray(Org.BouncyCastle.Math.BigInteger)">
  22820. Return the passed in value as an unsigned byte array.
  22821. @param value value to be converted.
  22822. @return a byte array without a leading zero byte if present in the signed encoding.
  22823. </member>
  22824. <member name="M:Org.BouncyCastle.Utilities.BigIntegers.AsUnsignedByteArray(System.Int32,Org.BouncyCastle.Math.BigInteger)">
  22825. Return the passed in value as an unsigned byte array of specified length, zero-extended as necessary.
  22826. @param length desired length of result array.
  22827. @param n value to be converted.
  22828. @return a byte array of specified length, with leading zeroes as necessary given the size of n.
  22829. </member>
  22830. <member name="M:Org.BouncyCastle.Utilities.BigIntegers.CreateRandomBigInteger(System.Int32,Org.BouncyCastle.Security.SecureRandom)">
  22831. <summary>
  22832. Creates a Random BigInteger from the secure random of a given bit length.
  22833. </summary>
  22834. <param name="bitLength"></param>
  22835. <param name="secureRandom"></param>
  22836. <returns></returns>
  22837. </member>
  22838. <member name="M:Org.BouncyCastle.Utilities.BigIntegers.CreateRandomInRange(Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Math.BigInteger,Org.BouncyCastle.Security.SecureRandom)">
  22839. Return a random BigInteger not less than 'min' and not greater than 'max'
  22840. @param min the least value that may be generated
  22841. @param max the greatest value that may be generated
  22842. @param random the source of randomness
  22843. @return a random BigInteger value in the range [min,max]
  22844. </member>
  22845. <member name="M:Org.BouncyCastle.Utilities.Date.DateTimeUtilities.DateTimeToUnixMs(System.DateTime)">
  22846. <summary>
  22847. Return the number of milliseconds since the Unix epoch (1 Jan., 1970 UTC) for a given DateTime value.
  22848. </summary>
  22849. <param name="dateTime">A UTC DateTime value not before epoch.</param>
  22850. <returns>Number of whole milliseconds after epoch.</returns>
  22851. <exception cref="T:System.ArgumentException">'dateTime' is before epoch.</exception>
  22852. </member>
  22853. <member name="M:Org.BouncyCastle.Utilities.Date.DateTimeUtilities.UnixMsToDateTime(System.Int64)">
  22854. <summary>
  22855. Create a DateTime value from the number of milliseconds since the Unix epoch (1 Jan., 1970 UTC).
  22856. </summary>
  22857. <param name="unixMs">Number of milliseconds since the epoch.</param>
  22858. <returns>A UTC DateTime value</returns>
  22859. </member>
  22860. <member name="M:Org.BouncyCastle.Utilities.Date.DateTimeUtilities.CurrentUnixMs">
  22861. <summary>
  22862. Return the current number of milliseconds since the Unix epoch (1 Jan., 1970 UTC).
  22863. </summary>
  22864. </member>
  22865. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Encode(System.Byte[])">
  22866. encode the input data producing a base 64 encoded byte array.
  22867. @return a byte array containing the base 64 encoded data.
  22868. </member>
  22869. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Encode(System.Byte[],System.Int32,System.Int32)">
  22870. encode the input data producing a base 64 encoded byte array.
  22871. @return a byte array containing the base 64 encoded data.
  22872. </member>
  22873. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Encode(System.Byte[],System.IO.Stream)">
  22874. Encode the byte data to base 64 writing it to the given output stream.
  22875. @return the number of bytes produced.
  22876. </member>
  22877. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Encode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  22878. Encode the byte data to base 64 writing it to the given output stream.
  22879. @return the number of bytes produced.
  22880. </member>
  22881. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Decode(System.Byte[])">
  22882. decode the base 64 encoded input data. It is assumed the input data is valid.
  22883. @return a byte array representing the decoded data.
  22884. </member>
  22885. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Decode(System.String)">
  22886. decode the base 64 encoded string data - whitespace will be ignored.
  22887. @return a byte array representing the decoded data.
  22888. </member>
  22889. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64.Decode(System.String,System.IO.Stream)">
  22890. decode the base 64 encoded string data writing it to the given output stream,
  22891. whitespace characters will be ignored.
  22892. @return the number of bytes produced.
  22893. </member>
  22894. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64Encoder.Encode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  22895. encode the input data producing a base 64 output stream.
  22896. @return the number of bytes produced.
  22897. </member>
  22898. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64Encoder.Decode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  22899. decode the base 64 encoded byte data writing it to the given output stream,
  22900. whitespace characters will be ignored.
  22901. @return the number of bytes produced.
  22902. </member>
  22903. <member name="M:Org.BouncyCastle.Utilities.Encoders.Base64Encoder.DecodeString(System.String,System.IO.Stream)">
  22904. decode the base 64 encoded string data writing it to the given output stream,
  22905. whitespace characters will be ignored.
  22906. @return the number of bytes produced.
  22907. </member>
  22908. <member name="T:Org.BouncyCastle.Utilities.Encoders.BufferedDecoder">
  22909. <summary>
  22910. A buffering class to allow translation from one format to another to
  22911. be done in discrete chunks.
  22912. </summary>
  22913. </member>
  22914. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedDecoder.#ctor(Org.BouncyCastle.Utilities.Encoders.ITranslator,System.Int32)">
  22915. <summary>
  22916. Create a buffered Decoder.
  22917. </summary>
  22918. <param name="translator">The translater to use.</param>
  22919. <param name="bufferSize">The size of the buffer.</param>
  22920. </member>
  22921. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedDecoder.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  22922. <summary>
  22923. Process one byte of data.
  22924. </summary>
  22925. <param name="input">Data in.</param>
  22926. <param name="output">Byte array for the output.</param>
  22927. <param name="outOff">The offset in the output byte array to start writing from.</param>
  22928. <returns>The amount of output bytes.</returns>
  22929. </member>
  22930. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedDecoder.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  22931. <summary>
  22932. Process data from a byte array.
  22933. </summary>
  22934. <param name="input">The input data.</param>
  22935. <param name="inOff">Start position within input data array.</param>
  22936. <param name="len">Amount of data to process from input data array.</param>
  22937. <param name="outBytes">Array to store output.</param>
  22938. <param name="outOff">Position in output array to start writing from.</param>
  22939. <returns>The amount of output bytes.</returns>
  22940. </member>
  22941. <member name="T:Org.BouncyCastle.Utilities.Encoders.BufferedEncoder">
  22942. <summary>
  22943. A class that allows encoding of data using a specific encoder to be processed in chunks.
  22944. </summary>
  22945. </member>
  22946. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedEncoder.#ctor(Org.BouncyCastle.Utilities.Encoders.ITranslator,System.Int32)">
  22947. <summary>
  22948. Create.
  22949. </summary>
  22950. <param name="translator">The translator to use.</param>
  22951. <param name="bufferSize">Size of the chunks.</param>
  22952. </member>
  22953. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedEncoder.ProcessByte(System.Byte,System.Byte[],System.Int32)">
  22954. <summary>
  22955. Process one byte of data.
  22956. </summary>
  22957. <param name="input">The byte.</param>
  22958. <param name="outBytes">An array to store output in.</param>
  22959. <param name="outOff">Offset within output array to start writing from.</param>
  22960. <returns></returns>
  22961. </member>
  22962. <member name="M:Org.BouncyCastle.Utilities.Encoders.BufferedEncoder.ProcessBytes(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  22963. <summary>
  22964. Process data from a byte array.
  22965. </summary>
  22966. <param name="input">Input data Byte array containing data to be processed.</param>
  22967. <param name="inOff">Start position within input data array.</param>
  22968. <param name="len">Amount of input data to be processed.</param>
  22969. <param name="outBytes">Output data array.</param>
  22970. <param name="outOff">Offset within output data array to start writing to.</param>
  22971. <returns>The amount of data written.</returns>
  22972. </member>
  22973. <member name="T:Org.BouncyCastle.Utilities.Encoders.Hex">
  22974. <summary>
  22975. Class to decode and encode Hex.
  22976. </summary>
  22977. </member>
  22978. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Encode(System.Byte[])">
  22979. encode the input data producing a Hex encoded byte array.
  22980. @return a byte array containing the Hex encoded data.
  22981. </member>
  22982. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Encode(System.Byte[],System.Int32,System.Int32)">
  22983. encode the input data producing a Hex encoded byte array.
  22984. @return a byte array containing the Hex encoded data.
  22985. </member>
  22986. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Encode(System.Byte[],System.IO.Stream)">
  22987. Hex encode the byte data writing it to the given output stream.
  22988. @return the number of bytes produced.
  22989. </member>
  22990. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Encode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  22991. Hex encode the byte data writing it to the given output stream.
  22992. @return the number of bytes produced.
  22993. </member>
  22994. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Decode(System.Byte[])">
  22995. decode the Hex encoded input data. It is assumed the input data is valid.
  22996. @return a byte array representing the decoded data.
  22997. </member>
  22998. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Decode(System.String)">
  22999. decode the Hex encoded string data - whitespace will be ignored.
  23000. @return a byte array representing the decoded data.
  23001. </member>
  23002. <member name="M:Org.BouncyCastle.Utilities.Encoders.Hex.Decode(System.String,System.IO.Stream)">
  23003. decode the Hex encoded string data writing it to the given output stream,
  23004. whitespace characters will be ignored.
  23005. @return the number of bytes produced.
  23006. </member>
  23007. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexEncoder.Encode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  23008. encode the input data producing a Hex output stream.
  23009. @return the number of bytes produced.
  23010. </member>
  23011. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexEncoder.Decode(System.Byte[],System.Int32,System.Int32,System.IO.Stream)">
  23012. decode the Hex encoded byte data writing it to the given output stream,
  23013. whitespace characters will be ignored.
  23014. @return the number of bytes produced.
  23015. </member>
  23016. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexEncoder.DecodeString(System.String,System.IO.Stream)">
  23017. decode the Hex encoded string data writing it to the given output stream,
  23018. whitespace characters will be ignored.
  23019. @return the number of bytes produced.
  23020. </member>
  23021. <member name="T:Org.BouncyCastle.Utilities.Encoders.HexTranslator">
  23022. <summary>
  23023. A hex translator.
  23024. </summary>
  23025. </member>
  23026. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexTranslator.GetEncodedBlockSize">
  23027. <summary>
  23028. Return encoded block size.
  23029. </summary>
  23030. <returns>2</returns>
  23031. </member>
  23032. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexTranslator.Encode(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  23033. <summary>
  23034. Encode some data.
  23035. </summary>
  23036. <param name="input">Input data array.</param>
  23037. <param name="inOff">Start position within input data array.</param>
  23038. <param name="length">The amount of data to process.</param>
  23039. <param name="outBytes">The output data array.</param>
  23040. <param name="outOff">The offset within the output data array to start writing from.</param>
  23041. <returns>Amount of data encoded.</returns>
  23042. </member>
  23043. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexTranslator.GetDecodedBlockSize">
  23044. <summary>
  23045. Returns the decoded block size.
  23046. </summary>
  23047. <returns>1</returns>
  23048. </member>
  23049. <member name="M:Org.BouncyCastle.Utilities.Encoders.HexTranslator.Decode(System.Byte[],System.Int32,System.Int32,System.Byte[],System.Int32)">
  23050. <summary>
  23051. Decode data from a byte array.
  23052. </summary>
  23053. <param name="input">The input data array.</param>
  23054. <param name="inOff">Start position within input data array.</param>
  23055. <param name="length">The amounty of data to process.</param>
  23056. <param name="outBytes">The output data array.</param>
  23057. <param name="outOff">The position within the output data array to start writing from.</param>
  23058. <returns>The amount of data written.</returns>
  23059. </member>
  23060. <member name="T:Org.BouncyCastle.Utilities.Encoders.IEncoder">
  23061. Encode and decode byte arrays (typically from binary to 7-bit ASCII
  23062. encodings).
  23063. </member>
  23064. <member name="T:Org.BouncyCastle.Utilities.Encoders.ITranslator">
  23065. <summary>
  23066. Translator interface.
  23067. </summary>
  23068. </member>
  23069. <member name="T:Org.BouncyCastle.Utilities.Encoders.UrlBase64">
  23070. Convert binary data to and from UrlBase64 encoding. This is identical to
  23071. Base64 encoding, except that the padding character is "." and the other
  23072. non-alphanumeric characters are "-" and "_" instead of "+" and "/".
  23073. <p>
  23074. The purpose of UrlBase64 encoding is to provide a compact encoding of binary
  23075. data that is safe for use as an URL parameter. Base64 encoding does not
  23076. produce encoded values that are safe for use in URLs, since "/" can be
  23077. interpreted as a path delimiter; "+" is the encoded form of a space; and
  23078. "=" is used to separate a name from the corresponding value in an URL
  23079. parameter.
  23080. </p>
  23081. </member>
  23082. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Encode(System.Byte[])">
  23083. Encode the input data producing a URL safe base 64 encoded byte array.
  23084. @return a byte array containing the URL safe base 64 encoded data.
  23085. </member>
  23086. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Encode(System.Byte[],System.IO.Stream)">
  23087. Encode the byte data writing it to the given output stream.
  23088. @return the number of bytes produced.
  23089. </member>
  23090. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Decode(System.Byte[])">
  23091. Decode the URL safe base 64 encoded input data - white space will be ignored.
  23092. @return a byte array representing the decoded data.
  23093. </member>
  23094. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Decode(System.Byte[],System.IO.Stream)">
  23095. decode the URL safe base 64 encoded byte data writing it to the given output stream,
  23096. whitespace characters will be ignored.
  23097. @return the number of bytes produced.
  23098. </member>
  23099. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Decode(System.String)">
  23100. decode the URL safe base 64 encoded string data - whitespace will be ignored.
  23101. @return a byte array representing the decoded data.
  23102. </member>
  23103. <member name="M:Org.BouncyCastle.Utilities.Encoders.UrlBase64.Decode(System.String,System.IO.Stream)">
  23104. Decode the URL safe base 64 encoded string data writing it to the given output stream,
  23105. whitespace characters will be ignored.
  23106. @return the number of bytes produced.
  23107. </member>
  23108. <member name="T:Org.BouncyCastle.Utilities.Encoders.UrlBase64Encoder">
  23109. Convert binary data to and from UrlBase64 encoding. This is identical to
  23110. Base64 encoding, except that the padding character is "." and the other
  23111. non-alphanumeric characters are "-" and "_" instead of "+" and "/".
  23112. <p>
  23113. The purpose of UrlBase64 encoding is to provide a compact encoding of binary
  23114. data that is safe for use as an URL parameter. Base64 encoding does not
  23115. produce encoded values that are safe for use in URLs, since "/" can be
  23116. interpreted as a path delimiter; "+" is the encoded form of a space; and
  23117. "=" is used to separate a name from the corresponding value in an URL
  23118. parameter.
  23119. </p>
  23120. </member>
  23121. <member name="M:Org.BouncyCastle.Utilities.IMemoable.Copy">
  23122. <summary>
  23123. Produce a copy of this object with its configuration and in its current state.
  23124. </summary>
  23125. <remarks>
  23126. The returned object may be used simply to store the state, or may be used as a similar object
  23127. starting from the copied state.
  23128. </remarks>
  23129. </member>
  23130. <member name="M:Org.BouncyCastle.Utilities.IMemoable.Reset(Org.BouncyCastle.Utilities.IMemoable)">
  23131. <summary>
  23132. Restore a copied object state into this object.
  23133. </summary>
  23134. <remarks>
  23135. Implementations of this method <em>should</em> try to avoid or minimise memory allocation to perform the reset.
  23136. </remarks>
  23137. <param name="other">an object originally {@link #copy() copied} from an object of the same type as this instance.</param>
  23138. <exception cref="T:System.InvalidCastException">if the provided object is not of the correct type.</exception>
  23139. <exception cref="T:Org.BouncyCastle.Utilities.MemoableResetException">if the <b>other</b> parameter is in some other way invalid.</exception>
  23140. </member>
  23141. <member name="M:Org.BouncyCastle.Utilities.IO.Pem.PemObjectGenerator.Generate">
  23142. <returns>
  23143. A <see cref="T:Org.BouncyCastle.Utilities.IO.Pem.PemObject"/>
  23144. </returns>
  23145. <exception cref="T:Org.BouncyCastle.Utilities.IO.Pem.PemGenerationException"></exception>
  23146. </member>
  23147. <member name="M:Org.BouncyCastle.Utilities.IO.Pem.PemObjectParser.ParseObject(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  23148. <param name="obj">
  23149. A <see cref="T:Org.BouncyCastle.Utilities.IO.Pem.PemObject"/>
  23150. </param>
  23151. <returns>
  23152. A <see cref="T:System.Object"/>
  23153. </returns>
  23154. <exception cref="T:System.IO.IOException"></exception>
  23155. </member>
  23156. <member name="M:Org.BouncyCastle.Utilities.IO.Pem.PemReader.ReadPemObject">
  23157. <returns>
  23158. A <see cref="T:Org.BouncyCastle.Utilities.IO.Pem.PemObject"/>
  23159. </returns>
  23160. <exception cref="T:System.IO.IOException"></exception>
  23161. </member>
  23162. <member name="T:Org.BouncyCastle.Utilities.IO.Pem.PemWriter">
  23163. A generic PEM writer, based on RFC 1421
  23164. </member>
  23165. <member name="M:Org.BouncyCastle.Utilities.IO.Pem.PemWriter.#ctor(System.IO.TextWriter)">
  23166. Base constructor.
  23167. @param out output stream to use.
  23168. </member>
  23169. <member name="M:Org.BouncyCastle.Utilities.IO.Pem.PemWriter.GetOutputSize(Org.BouncyCastle.Utilities.IO.Pem.PemObject)">
  23170. Return the number of bytes or characters required to contain the
  23171. passed in object if it is PEM encoded.
  23172. @param obj pem object to be output
  23173. @return an estimate of the number of bytes
  23174. </member>
  23175. <member name="M:Org.BouncyCastle.Utilities.IO.Streams.PipeAllLimited(System.IO.Stream,System.Int64,System.IO.Stream)">
  23176. <summary>
  23177. Pipe all bytes from <c>inStr</c> to <c>outStr</c>, throwing <c>StreamFlowException</c> if greater
  23178. than <c>limit</c> bytes in <c>inStr</c>.
  23179. </summary>
  23180. <param name="inStr">
  23181. A <see cref="T:System.IO.Stream"/>
  23182. </param>
  23183. <param name="limit">
  23184. A <see cref="T:System.Int64"/>
  23185. </param>
  23186. <param name="outStr">
  23187. A <see cref="T:System.IO.Stream"/>
  23188. </param>
  23189. <returns>The number of bytes actually transferred, if not greater than <c>limit</c></returns>
  23190. <exception cref="T:System.IO.IOException"></exception>
  23191. </member>
  23192. <member name="M:Org.BouncyCastle.Utilities.IO.Streams.WriteBufTo(System.IO.MemoryStream,System.IO.Stream)">
  23193. <exception cref="T:System.IO.IOException"></exception>
  23194. </member>
  23195. <member name="M:Org.BouncyCastle.Utilities.IO.Streams.WriteBufTo(System.IO.MemoryStream,System.Byte[],System.Int32)">
  23196. <exception cref="T:System.IO.IOException"></exception>
  23197. </member>
  23198. <member name="T:Org.BouncyCastle.Utilities.MemoableResetException">
  23199. Exception to be thrown on a failure to reset an object implementing Memoable.
  23200. <p>
  23201. The exception extends InvalidCastException to enable users to have a single handling case,
  23202. only introducing specific handling of this one if required.
  23203. </p>
  23204. </member>
  23205. <member name="M:Org.BouncyCastle.Utilities.MemoableResetException.#ctor(System.String)">
  23206. Basic Constructor.
  23207. @param msg message to be associated with this exception.
  23208. </member>
  23209. <member name="M:Org.BouncyCastle.Utilities.Net.IPAddress.IsValid(System.String)">
  23210. Validate the given IPv4 or IPv6 address.
  23211. @param address the IP address as a string.
  23212. @return true if a valid address, false otherwise
  23213. </member>
  23214. <member name="M:Org.BouncyCastle.Utilities.Net.IPAddress.IsValidWithNetMask(System.String)">
  23215. Validate the given IPv4 or IPv6 address and netmask.
  23216. @param address the IP address as a string.
  23217. @return true if a valid address with netmask, false otherwise
  23218. </member>
  23219. <member name="M:Org.BouncyCastle.Utilities.Net.IPAddress.IsValidIPv4(System.String)">
  23220. Validate the given IPv4 address.
  23221. @param address the IP address as a string.
  23222. @return true if a valid IPv4 address, false otherwise
  23223. </member>
  23224. <member name="M:Org.BouncyCastle.Utilities.Net.IPAddress.IsValidIPv6(System.String)">
  23225. Validate the given IPv6 address.
  23226. @param address the IP address as a string.
  23227. @return true if a valid IPv4 address, false otherwise
  23228. </member>
  23229. <member name="T:Org.BouncyCastle.Utilities.Strings">
  23230. <summary> General string utilities.</summary>
  23231. </member>
  23232. <member name="T:Org.BouncyCastle.Utilities.Zlib.ZDeflaterOutputStream">
  23233. <summary>
  23234. Summary description for DeflaterOutputStream.
  23235. </summary>
  23236. </member>
  23237. <member name="T:Org.BouncyCastle.Utilities.Zlib.ZInflaterInputStream">
  23238. <summary>
  23239. Summary description for DeflaterOutputStream.
  23240. </summary>
  23241. </member>
  23242. <member name="T:Org.BouncyCastle.X509.AttributeCertificateHolder">
  23243. <remarks>
  23244. The Holder object.
  23245. <pre>
  23246. Holder ::= SEQUENCE {
  23247. baseCertificateID [0] IssuerSerial OPTIONAL,
  23248. -- the issuer and serial number of
  23249. -- the holder's Public Key Certificate
  23250. entityName [1] GeneralNames OPTIONAL,
  23251. -- the name of the claimant or role
  23252. objectDigestInfo [2] ObjectDigestInfo OPTIONAL
  23253. -- used to directly authenticate the holder,
  23254. -- for example, an executable
  23255. }
  23256. </pre>
  23257. </remarks>
  23258. </member>
  23259. <member name="M:Org.BouncyCastle.X509.AttributeCertificateHolder.#ctor(System.Int32,System.String,System.String,System.Byte[])">
  23260. Constructs a holder for v2 attribute certificates with a hash value for
  23261. some type of object.
  23262. <p>
  23263. <code>digestedObjectType</code> can be one of the following:
  23264. <ul>
  23265. <li>0 - publicKey - A hash of the public key of the holder must be
  23266. passed.</li>
  23267. <li>1 - publicKeyCert - A hash of the public key certificate of the
  23268. holder must be passed.</li>
  23269. <li>2 - otherObjectDigest - A hash of some other object type must be
  23270. passed. <code>otherObjectTypeID</code> must not be empty.</li>
  23271. </ul>
  23272. </p>
  23273. <p>This cannot be used if a v1 attribute certificate is used.</p>
  23274. @param digestedObjectType The digest object type.
  23275. @param digestAlgorithm The algorithm identifier for the hash.
  23276. @param otherObjectTypeID The object type ID if
  23277. <code>digestedObjectType</code> is
  23278. <code>otherObjectDigest</code>.
  23279. @param objectDigest The hash value.
  23280. </member>
  23281. <member name="P:Org.BouncyCastle.X509.AttributeCertificateHolder.DigestedObjectType">
  23282. Returns the digest object type if an object digest info is used.
  23283. <p>
  23284. <ul>
  23285. <li>0 - publicKey - A hash of the public key of the holder must be
  23286. passed.</li>
  23287. <li>1 - publicKeyCert - A hash of the public key certificate of the
  23288. holder must be passed.</li>
  23289. <li>2 - otherObjectDigest - A hash of some other object type must be
  23290. passed. <code>otherObjectTypeID</code> must not be empty.</li>
  23291. </ul>
  23292. </p>
  23293. @return The digest object type or -1 if no object digest info is set.
  23294. </member>
  23295. <member name="P:Org.BouncyCastle.X509.AttributeCertificateHolder.DigestAlgorithm">
  23296. Returns the other object type ID if an object digest info is used.
  23297. @return The other object type ID or <code>null</code> if no object
  23298. digest info is set.
  23299. </member>
  23300. <member name="M:Org.BouncyCastle.X509.AttributeCertificateHolder.GetObjectDigest">
  23301. Returns the hash if an object digest info is used.
  23302. @return The hash or <code>null</code> if no object digest info is set.
  23303. </member>
  23304. <member name="P:Org.BouncyCastle.X509.AttributeCertificateHolder.OtherObjectTypeID">
  23305. Returns the digest algorithm ID if an object digest info is used.
  23306. @return The digest algorithm ID or <code>null</code> if no object
  23307. digest info is set.
  23308. </member>
  23309. <member name="M:Org.BouncyCastle.X509.AttributeCertificateHolder.GetEntityNames">
  23310. Return any principal objects inside the attribute certificate holder entity names field.
  23311. @return an array of IPrincipal objects (usually X509Name), null if no entity names field is set.
  23312. </member>
  23313. <member name="M:Org.BouncyCastle.X509.AttributeCertificateHolder.GetIssuer">
  23314. Return the principals associated with the issuer attached to this holder
  23315. @return an array of principals, null if no BaseCertificateID is set.
  23316. </member>
  23317. <member name="P:Org.BouncyCastle.X509.AttributeCertificateHolder.SerialNumber">
  23318. Return the serial number associated with the issuer attached to this holder.
  23319. @return the certificate serial number, null if no BaseCertificateID is set.
  23320. </member>
  23321. <member name="T:Org.BouncyCastle.X509.AttributeCertificateIssuer">
  23322. Carrying class for an attribute certificate issuer.
  23323. </member>
  23324. <member name="M:Org.BouncyCastle.X509.AttributeCertificateIssuer.#ctor(Org.BouncyCastle.Asn1.X509.AttCertIssuer)">
  23325. Set the issuer directly with the ASN.1 structure.
  23326. @param issuer The issuer
  23327. </member>
  23328. <member name="M:Org.BouncyCastle.X509.AttributeCertificateIssuer.GetPrincipals">
  23329. <summary>Return any principal objects inside the attribute certificate issuer object.</summary>
  23330. <returns>An array of IPrincipal objects (usually X509Principal).</returns>
  23331. </member>
  23332. <member name="T:Org.BouncyCastle.X509.Extension.AuthorityKeyIdentifierStructure">
  23333. <remarks>A high level authority key identifier.</remarks>
  23334. </member>
  23335. <member name="M:Org.BouncyCastle.X509.Extension.AuthorityKeyIdentifierStructure.#ctor(Org.BouncyCastle.Asn1.Asn1OctetString)">
  23336. Constructor which will take the byte[] returned from getExtensionValue()
  23337. @param encodedValue a DER octet encoded string with the extension structure in it.
  23338. @throws IOException on parsing errors.
  23339. </member>
  23340. <member name="M:Org.BouncyCastle.X509.Extension.AuthorityKeyIdentifierStructure.#ctor(Org.BouncyCastle.X509.X509Certificate)">
  23341. Create an AuthorityKeyIdentifier using the passed in certificate's public
  23342. key, issuer and serial number.
  23343. @param certificate the certificate providing the information.
  23344. @throws CertificateParsingException if there is a problem processing the certificate
  23345. </member>
  23346. <member name="M:Org.BouncyCastle.X509.Extension.AuthorityKeyIdentifierStructure.#ctor(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  23347. Create an AuthorityKeyIdentifier using just the hash of the
  23348. public key.
  23349. @param pubKey the key to generate the hash from.
  23350. @throws InvalidKeyException if there is a problem using the key.
  23351. </member>
  23352. <member name="T:Org.BouncyCastle.X509.Extension.SubjectKeyIdentifierStructure">
  23353. A high level subject key identifier.
  23354. </member>
  23355. <member name="M:Org.BouncyCastle.X509.Extension.SubjectKeyIdentifierStructure.#ctor(Org.BouncyCastle.Asn1.Asn1OctetString)">
  23356. Constructor which will take the byte[] returned from getExtensionValue()
  23357. @param encodedValue a DER octet encoded string with the extension structure in it.
  23358. @throws IOException on parsing errors.
  23359. </member>
  23360. <member name="T:Org.BouncyCastle.X509.IX509AttributeCertificate">
  23361. <remarks>Interface for an X.509 Attribute Certificate.</remarks>
  23362. </member>
  23363. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.Version">
  23364. <summary>The version number for the certificate.</summary>
  23365. </member>
  23366. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.SerialNumber">
  23367. <summary>The serial number for the certificate.</summary>
  23368. </member>
  23369. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.NotBefore">
  23370. <summary>The UTC DateTime before which the certificate is not valid.</summary>
  23371. </member>
  23372. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.NotAfter">
  23373. <summary>The UTC DateTime after which the certificate is not valid.</summary>
  23374. </member>
  23375. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.Holder">
  23376. <summary>The holder of the certificate.</summary>
  23377. </member>
  23378. <member name="P:Org.BouncyCastle.X509.IX509AttributeCertificate.Issuer">
  23379. <summary>The issuer details for the certificate.</summary>
  23380. </member>
  23381. <member name="M:Org.BouncyCastle.X509.IX509AttributeCertificate.GetAttributes">
  23382. <summary>Return the attributes contained in the attribute block in the certificate.</summary>
  23383. <returns>An array of attributes.</returns>
  23384. </member>
  23385. <member name="M:Org.BouncyCastle.X509.IX509AttributeCertificate.GetAttributes(System.String)">
  23386. <summary>Return the attributes with the same type as the passed in oid.</summary>
  23387. <param name="oid">The object identifier we wish to match.</param>
  23388. <returns>An array of matched attributes, null if there is no match.</returns>
  23389. </member>
  23390. <member name="M:Org.BouncyCastle.X509.IX509AttributeCertificate.GetEncoded">
  23391. <summary>Return an ASN.1 encoded byte array representing the attribute certificate.</summary>
  23392. <returns>An ASN.1 encoded byte array.</returns>
  23393. <exception cref="T:System.IO.IOException">If the certificate cannot be encoded.</exception>
  23394. </member>
  23395. <member name="M:Org.BouncyCastle.X509.IX509Extension.GetCriticalExtensionOids">
  23396. <summary>
  23397. Get all critical extension values, by oid
  23398. </summary>
  23399. <returns>IDictionary with string (OID) keys and Asn1OctetString values</returns>
  23400. </member>
  23401. <member name="M:Org.BouncyCastle.X509.IX509Extension.GetNonCriticalExtensionOids">
  23402. <summary>
  23403. Get all non-critical extension values, by oid
  23404. </summary>
  23405. <returns>IDictionary with string (OID) keys and Asn1OctetString values</returns>
  23406. </member>
  23407. <member name="T:Org.BouncyCastle.X509.PrincipalUtilities">
  23408. <remarks>
  23409. A utility class that will extract X509Principal objects from X.509 certificates.
  23410. <p>
  23411. Use this in preference to trying to recreate a principal from a string, not all
  23412. DNs are what they should be, so it's best to leave them encoded where they
  23413. can be.</p>
  23414. </remarks>
  23415. </member>
  23416. <member name="M:Org.BouncyCastle.X509.PrincipalUtilities.GetIssuerX509Principal(Org.BouncyCastle.X509.X509Certificate)">
  23417. <summary>Return the issuer of the given cert as an X509Principal.</summary>
  23418. </member>
  23419. <member name="M:Org.BouncyCastle.X509.PrincipalUtilities.GetSubjectX509Principal(Org.BouncyCastle.X509.X509Certificate)">
  23420. <summary>Return the subject of the given cert as an X509Principal.</summary>
  23421. </member>
  23422. <member name="M:Org.BouncyCastle.X509.PrincipalUtilities.GetIssuerX509Principal(Org.BouncyCastle.X509.X509Crl)">
  23423. <summary>Return the issuer of the given CRL as an X509Principal.</summary>
  23424. </member>
  23425. <member name="T:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector">
  23426. This class is an <code>Selector</code> like implementation to select
  23427. attribute certificates from a given set of criteria.
  23428. @see org.bouncycastle.x509.X509AttributeCertificate
  23429. @see org.bouncycastle.x509.X509Store
  23430. </member>
  23431. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.Match(System.Object)">
  23432. <summary>
  23433. Decides if the given attribute certificate should be selected.
  23434. </summary>
  23435. <param name="obj">The attribute certificate to be checked.</param>
  23436. <returns><code>true</code> if the object matches this selector.</returns>
  23437. </member>
  23438. <member name="P:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AttributeCert">
  23439. <summary>The attribute certificate which must be matched.</summary>
  23440. <remarks>If <c>null</c> is given, any will do.</remarks>
  23441. </member>
  23442. <member name="P:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AttributeCertificateValid">
  23443. <summary>The criteria for validity</summary>
  23444. <remarks>If <c>null</c> is given any will do.</remarks>
  23445. </member>
  23446. <member name="P:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.Holder">
  23447. <summary>The holder.</summary>
  23448. <remarks>If <c>null</c> is given any will do.</remarks>
  23449. </member>
  23450. <member name="P:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.Issuer">
  23451. <summary>The issuer.</summary>
  23452. <remarks>If <c>null</c> is given any will do.</remarks>
  23453. </member>
  23454. <member name="P:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.SerialNumber">
  23455. <summary>The serial number.</summary>
  23456. <remarks>If <c>null</c> is given any will do.</remarks>
  23457. </member>
  23458. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AddTargetName(Org.BouncyCastle.Asn1.X509.GeneralName)">
  23459. Adds a target name criterion for the attribute certificate to the target
  23460. information extension criteria. The <code>X509AttributeCertificate</code>
  23461. must contain at least one of the specified target names.
  23462. <p>
  23463. Each attribute certificate may contain a target information extension
  23464. limiting the servers where this attribute certificate can be used. If
  23465. this extension is not present, the attribute certificate is not targeted
  23466. and may be accepted by any server.
  23467. </p>
  23468. @param name The name as a GeneralName (not <code>null</code>)
  23469. </member>
  23470. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AddTargetName(System.Byte[])">
  23471. Adds a target name criterion for the attribute certificate to the target
  23472. information extension criteria. The <code>X509AttributeCertificate</code>
  23473. must contain at least one of the specified target names.
  23474. <p>
  23475. Each attribute certificate may contain a target information extension
  23476. limiting the servers where this attribute certificate can be used. If
  23477. this extension is not present, the attribute certificate is not targeted
  23478. and may be accepted by any server.
  23479. </p>
  23480. @param name a byte array containing the name in ASN.1 DER encoded form of a GeneralName
  23481. @throws IOException if a parsing error occurs.
  23482. </member>
  23483. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.SetTargetNames(System.Collections.IEnumerable)">
  23484. Adds a collection with target names criteria. If <code>null</code> is
  23485. given any will do.
  23486. <p>
  23487. The collection consists of either GeneralName objects or byte[] arrays representing
  23488. DER encoded GeneralName structures.
  23489. </p>
  23490. @param names A collection of target names.
  23491. @throws IOException if a parsing error occurs.
  23492. @see #AddTargetName(byte[])
  23493. @see #AddTargetName(GeneralName)
  23494. </member>
  23495. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.GetTargetNames">
  23496. Gets the target names. The collection consists of <code>List</code>s
  23497. made up of an <code>Integer</code> in the first entry and a DER encoded
  23498. byte array or a <code>String</code> in the second entry.
  23499. <p>The returned collection is immutable.</p>
  23500. @return The collection of target names
  23501. @see #setTargetNames(Collection)
  23502. </member>
  23503. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AddTargetGroup(Org.BouncyCastle.Asn1.X509.GeneralName)">
  23504. Adds a target group criterion for the attribute certificate to the target
  23505. information extension criteria. The <code>X509AttributeCertificate</code>
  23506. must contain at least one of the specified target groups.
  23507. <p>
  23508. Each attribute certificate may contain a target information extension
  23509. limiting the servers where this attribute certificate can be used. If
  23510. this extension is not present, the attribute certificate is not targeted
  23511. and may be accepted by any server.
  23512. </p>
  23513. @param group The group as GeneralName form (not <code>null</code>)
  23514. </member>
  23515. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.AddTargetGroup(System.Byte[])">
  23516. Adds a target group criterion for the attribute certificate to the target
  23517. information extension criteria. The <code>X509AttributeCertificate</code>
  23518. must contain at least one of the specified target groups.
  23519. <p>
  23520. Each attribute certificate may contain a target information extension
  23521. limiting the servers where this attribute certificate can be used. If
  23522. this extension is not present, the attribute certificate is not targeted
  23523. and may be accepted by any server.
  23524. </p>
  23525. @param name a byte array containing the group in ASN.1 DER encoded form of a GeneralName
  23526. @throws IOException if a parsing error occurs.
  23527. </member>
  23528. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.SetTargetGroups(System.Collections.IEnumerable)">
  23529. Adds a collection with target groups criteria. If <code>null</code> is
  23530. given any will do.
  23531. <p>
  23532. The collection consists of <code>GeneralName</code> objects or <code>byte[]</code>
  23533. representing DER encoded GeneralNames.
  23534. </p>
  23535. @param names A collection of target groups.
  23536. @throws IOException if a parsing error occurs.
  23537. @see #AddTargetGroup(byte[])
  23538. @see #AddTargetGroup(GeneralName)
  23539. </member>
  23540. <member name="M:Org.BouncyCastle.X509.Store.X509AttrCertStoreSelector.GetTargetGroups">
  23541. Gets the target groups. The collection consists of <code>List</code>s
  23542. made up of an <code>Integer</code> in the first entry and a DER encoded
  23543. byte array or a <code>String</code> in the second entry.
  23544. <p>The returned collection is immutable.</p>
  23545. @return The collection of target groups.
  23546. @see #setTargetGroups(Collection)
  23547. </member>
  23548. <member name="T:Org.BouncyCastle.X509.Store.X509CertPairStoreSelector">
  23549. <remarks>
  23550. This class is an <code>IX509Selector</code> implementation to select
  23551. certificate pairs, which are e.g. used for cross certificates. The set of
  23552. criteria is given from two <code>X509CertStoreSelector</code> objects,
  23553. each of which, if present, must match the respective component of a pair.
  23554. </remarks>
  23555. </member>
  23556. <member name="P:Org.BouncyCastle.X509.Store.X509CertPairStoreSelector.CertPair">
  23557. <summary>The certificate pair which is used for testing on equality.</summary>
  23558. </member>
  23559. <member name="P:Org.BouncyCastle.X509.Store.X509CertPairStoreSelector.ForwardSelector">
  23560. <summary>The certificate selector for the forward part.</summary>
  23561. </member>
  23562. <member name="P:Org.BouncyCastle.X509.Store.X509CertPairStoreSelector.ReverseSelector">
  23563. <summary>The certificate selector for the reverse part.</summary>
  23564. </member>
  23565. <member name="M:Org.BouncyCastle.X509.Store.X509CertPairStoreSelector.Match(System.Object)">
  23566. <summary>
  23567. Decides if the given certificate pair should be selected. If
  23568. <c>obj</c> is not a <code>X509CertificatePair</code>, this method
  23569. returns <code>false</code>.
  23570. </summary>
  23571. <param name="obj">The <code>X509CertificatePair</code> to be tested.</param>
  23572. <returns><code>true</code> if the object matches this selector.</returns>
  23573. </member>
  23574. <member name="P:Org.BouncyCastle.X509.Store.X509CertStoreSelector.Policy">
  23575. <summary>
  23576. An <code>ISet</code> of <code>DerObjectIdentifier</code> objects.
  23577. </summary>
  23578. </member>
  23579. <member name="T:Org.BouncyCastle.X509.Store.X509CollectionStore">
  23580. A simple collection backed store.
  23581. </member>
  23582. <member name="M:Org.BouncyCastle.X509.Store.X509CollectionStore.#ctor(System.Collections.ICollection)">
  23583. Basic constructor.
  23584. @param collection - initial contents for the store, this is copied.
  23585. </member>
  23586. <member name="M:Org.BouncyCastle.X509.Store.X509CollectionStore.GetMatches(Org.BouncyCastle.X509.Store.IX509Selector)">
  23587. Return the matches in the collection for the passed in selector.
  23588. @param selector the selector to match against.
  23589. @return a possibly empty collection of matching objects.
  23590. </member>
  23591. <member name="T:Org.BouncyCastle.X509.Store.X509CollectionStoreParameters">
  23592. <remarks>This class contains a collection for collection based <code>X509Store</code>s.</remarks>
  23593. </member>
  23594. <member name="M:Org.BouncyCastle.X509.Store.X509CollectionStoreParameters.#ctor(System.Collections.ICollection)">
  23595. <summary>
  23596. Constructor.
  23597. <p>
  23598. The collection is copied.
  23599. </p>
  23600. </summary>
  23601. <param name="collection">The collection containing X.509 object types.</param>
  23602. <exception cref="T:System.ArgumentNullException">If collection is null.</exception>
  23603. </member>
  23604. <member name="M:Org.BouncyCastle.X509.Store.X509CollectionStoreParameters.GetCollection">
  23605. <summary>Returns a copy of the <code>ICollection</code>.</summary>
  23606. </member>
  23607. <member name="M:Org.BouncyCastle.X509.Store.X509CollectionStoreParameters.ToString">
  23608. <summary>Returns a formatted string describing the parameters.</summary>
  23609. </member>
  23610. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.Issuers">
  23611. <summary>
  23612. An <code>ICollection</code> of <code>X509Name</code> objects
  23613. </summary>
  23614. </member>
  23615. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.AttrCertChecking">
  23616. The attribute certificate being checked. This is not a criterion.
  23617. Rather, it is optional information that may help a {@link X509Store} find
  23618. CRLs that would be relevant when checking revocation for the specified
  23619. attribute certificate. If <code>null</code> is specified, then no such
  23620. optional information is provided.
  23621. @param attrCert the <code>IX509AttributeCertificate</code> being checked (or
  23622. <code>null</code>)
  23623. @see #getAttrCertificateChecking()
  23624. </member>
  23625. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.CompleteCrlEnabled">
  23626. If <code>true</code> only complete CRLs are returned. Defaults to
  23627. <code>false</code>.
  23628. @return <code>true</code> if only complete CRLs are returned.
  23629. </member>
  23630. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.DeltaCrlIndicatorEnabled">
  23631. Returns if this selector must match CRLs with the delta CRL indicator
  23632. extension set. Defaults to <code>false</code>.
  23633. @return Returns <code>true</code> if only CRLs with the delta CRL
  23634. indicator extension are selected.
  23635. </member>
  23636. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.IssuingDistributionPoint">
  23637. The issuing distribution point.
  23638. <p>
  23639. The issuing distribution point extension is a CRL extension which
  23640. identifies the scope and the distribution point of a CRL. The scope
  23641. contains among others information about revocation reasons contained in
  23642. the CRL. Delta CRLs and complete CRLs must have matching issuing
  23643. distribution points.</p>
  23644. <p>
  23645. The byte array is cloned to protect against subsequent modifications.</p>
  23646. <p>
  23647. You must also enable or disable this criteria with
  23648. {@link #setIssuingDistributionPointEnabled(bool)}.</p>
  23649. @param issuingDistributionPoint The issuing distribution point to set.
  23650. This is the DER encoded OCTET STRING extension value.
  23651. @see #getIssuingDistributionPoint()
  23652. </member>
  23653. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.IssuingDistributionPointEnabled">
  23654. Whether the issuing distribution point criteria should be applied.
  23655. Defaults to <code>false</code>.
  23656. <p>
  23657. You may also set the issuing distribution point criteria if not a missing
  23658. issuing distribution point should be assumed.</p>
  23659. @return Returns if the issuing distribution point check is enabled.
  23660. </member>
  23661. <member name="P:Org.BouncyCastle.X509.Store.X509CrlStoreSelector.MaxBaseCrlNumber">
  23662. The maximum base CRL number. Defaults to <code>null</code>.
  23663. @return Returns the maximum base CRL number.
  23664. @see #setMaxBaseCRLNumber(BigInteger)
  23665. </member>
  23666. <member name="T:Org.BouncyCastle.X509.SubjectPublicKeyInfoFactory">
  23667. <summary>
  23668. A factory to produce Public Key Info Objects.
  23669. </summary>
  23670. </member>
  23671. <member name="M:Org.BouncyCastle.X509.SubjectPublicKeyInfoFactory.CreateSubjectPublicKeyInfo(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  23672. <summary>
  23673. Create a Subject Public Key Info object for a given public key.
  23674. </summary>
  23675. <param name="publicKey">One of ElGammalPublicKeyParameters, DSAPublicKeyParameter, DHPublicKeyParameters, RsaKeyParameters or ECPublicKeyParameters</param>
  23676. <returns>A subject public key info object.</returns>
  23677. <exception cref="T:System.Exception">Throw exception if object provided is not one of the above.</exception>
  23678. </member>
  23679. <member name="M:Org.BouncyCastle.X509.X509AttrCertParser.ReadAttrCert(System.Byte[])">
  23680. <summary>
  23681. Create loading data from byte array.
  23682. </summary>
  23683. <param name="input"></param>
  23684. </member>
  23685. <member name="M:Org.BouncyCastle.X509.X509AttrCertParser.ReadAttrCerts(System.Byte[])">
  23686. <summary>
  23687. Create loading data from byte array.
  23688. </summary>
  23689. <param name="input"></param>
  23690. </member>
  23691. <member name="M:Org.BouncyCastle.X509.X509AttrCertParser.ReadAttrCert(System.IO.Stream)">
  23692. Generates a certificate object and initializes it with the data
  23693. read from the input stream inStream.
  23694. </member>
  23695. <member name="M:Org.BouncyCastle.X509.X509AttrCertParser.ReadAttrCerts(System.IO.Stream)">
  23696. Returns a (possibly empty) collection view of the certificates
  23697. read from the given input stream inStream.
  23698. </member>
  23699. <member name="T:Org.BouncyCastle.X509.X509Attribute">
  23700. Class for carrying the values in an X.509 Attribute.
  23701. </member>
  23702. <member name="M:Org.BouncyCastle.X509.X509Attribute.#ctor(Org.BouncyCastle.Asn1.Asn1Encodable)">
  23703. @param at an object representing an attribute.
  23704. </member>
  23705. <member name="M:Org.BouncyCastle.X509.X509Attribute.#ctor(System.String,Org.BouncyCastle.Asn1.Asn1Encodable)">
  23706. Create an X.509 Attribute with the type given by the passed in oid and
  23707. the value represented by an ASN.1 Set containing value.
  23708. @param oid type of the attribute
  23709. @param value value object to go into the atribute's value set.
  23710. </member>
  23711. <member name="M:Org.BouncyCastle.X509.X509Attribute.#ctor(System.String,Org.BouncyCastle.Asn1.Asn1EncodableVector)">
  23712. Create an X.59 Attribute with the type given by the passed in oid and the
  23713. value represented by an ASN.1 Set containing the objects in value.
  23714. @param oid type of the attribute
  23715. @param value vector of values to go in the attribute's value set.
  23716. </member>
  23717. <member name="T:Org.BouncyCastle.X509.X509Certificate">
  23718. <summary>
  23719. An Object representing an X509 Certificate.
  23720. Has static methods for loading Certificates encoded in many forms that return X509Certificate Objects.
  23721. </summary>
  23722. </member>
  23723. <member name="P:Org.BouncyCastle.X509.X509Certificate.IsValidNow">
  23724. <summary>
  23725. Return true if the current time is within the start and end times nominated on the certificate.
  23726. </summary>
  23727. <returns>true id certificate is valid for the current time.</returns>
  23728. </member>
  23729. <member name="M:Org.BouncyCastle.X509.X509Certificate.IsValid(System.DateTime)">
  23730. <summary>
  23731. Return true if the nominated time is within the start and end times nominated on the certificate.
  23732. </summary>
  23733. <param name="time">The time to test validity against.</param>
  23734. <returns>True if certificate is valid for nominated time.</returns>
  23735. </member>
  23736. <member name="M:Org.BouncyCastle.X509.X509Certificate.CheckValidity">
  23737. <summary>
  23738. Checks if the current date is within certificate's validity period.
  23739. </summary>
  23740. </member>
  23741. <member name="M:Org.BouncyCastle.X509.X509Certificate.CheckValidity(System.DateTime)">
  23742. <summary>
  23743. Checks if the given date is within certificate's validity period.
  23744. </summary>
  23745. <exception cref="T:Org.BouncyCastle.Security.Certificates.CertificateExpiredException">if the certificate is expired by given date</exception>
  23746. <exception cref="T:Org.BouncyCastle.Security.Certificates.CertificateNotYetValidException">if the certificate is not yet valid on given date</exception>
  23747. </member>
  23748. <member name="P:Org.BouncyCastle.X509.X509Certificate.Version">
  23749. <summary>
  23750. Return the certificate's version.
  23751. </summary>
  23752. <returns>An integer whose value Equals the version of the cerficate.</returns>
  23753. </member>
  23754. <member name="P:Org.BouncyCastle.X509.X509Certificate.SerialNumber">
  23755. <summary>
  23756. Return a <see cref="T:Org.BouncyCastle.Math.BigInteger">BigInteger</see> containing the serial number.
  23757. </summary>
  23758. <returns>The Serial number.</returns>
  23759. </member>
  23760. <member name="P:Org.BouncyCastle.X509.X509Certificate.IssuerDN">
  23761. <summary>
  23762. Get the Issuer Distinguished Name. (Who signed the certificate.)
  23763. </summary>
  23764. <returns>And X509Object containing name and value pairs.</returns>
  23765. </member>
  23766. <member name="P:Org.BouncyCastle.X509.X509Certificate.SubjectDN">
  23767. <summary>
  23768. Get the subject of this certificate.
  23769. </summary>
  23770. <returns>An X509Name object containing name and value pairs.</returns>
  23771. </member>
  23772. <member name="P:Org.BouncyCastle.X509.X509Certificate.NotBefore">
  23773. <summary>
  23774. The time that this certificate is valid from.
  23775. </summary>
  23776. <returns>A DateTime object representing that time in the local time zone.</returns>
  23777. </member>
  23778. <member name="P:Org.BouncyCastle.X509.X509Certificate.NotAfter">
  23779. <summary>
  23780. The time that this certificate is valid up to.
  23781. </summary>
  23782. <returns>A DateTime object representing that time in the local time zone.</returns>
  23783. </member>
  23784. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetTbsCertificate">
  23785. <summary>
  23786. Return the Der encoded TbsCertificate data.
  23787. This is the certificate component less the signature.
  23788. To Get the whole certificate call the GetEncoded() member.
  23789. </summary>
  23790. <returns>A byte array containing the Der encoded Certificate component.</returns>
  23791. </member>
  23792. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetSignature">
  23793. <summary>
  23794. The signature.
  23795. </summary>
  23796. <returns>A byte array containg the signature of the certificate.</returns>
  23797. </member>
  23798. <member name="P:Org.BouncyCastle.X509.X509Certificate.SigAlgName">
  23799. <summary>
  23800. A meaningful version of the Signature Algorithm. (EG SHA1WITHRSA)
  23801. </summary>
  23802. <returns>A sting representing the signature algorithm.</returns>
  23803. </member>
  23804. <member name="P:Org.BouncyCastle.X509.X509Certificate.SigAlgOid">
  23805. <summary>
  23806. Get the Signature Algorithms Object ID.
  23807. </summary>
  23808. <returns>A string containg a '.' separated object id.</returns>
  23809. </member>
  23810. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetSigAlgParams">
  23811. <summary>
  23812. Get the signature algorithms parameters. (EG DSA Parameters)
  23813. </summary>
  23814. <returns>A byte array containing the Der encoded version of the parameters or null if there are none.</returns>
  23815. </member>
  23816. <member name="P:Org.BouncyCastle.X509.X509Certificate.IssuerUniqueID">
  23817. <summary>
  23818. Get the issuers UID.
  23819. </summary>
  23820. <returns>A DerBitString.</returns>
  23821. </member>
  23822. <member name="P:Org.BouncyCastle.X509.X509Certificate.SubjectUniqueID">
  23823. <summary>
  23824. Get the subjects UID.
  23825. </summary>
  23826. <returns>A DerBitString.</returns>
  23827. </member>
  23828. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetKeyUsage">
  23829. <summary>
  23830. Get a key usage guidlines.
  23831. </summary>
  23832. </member>
  23833. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetPublicKey">
  23834. <summary>
  23835. Get the public key of the subject of the certificate.
  23836. </summary>
  23837. <returns>The public key parameters.</returns>
  23838. </member>
  23839. <member name="M:Org.BouncyCastle.X509.X509Certificate.GetEncoded">
  23840. <summary>
  23841. Return a Der encoded version of this certificate.
  23842. </summary>
  23843. <returns>A byte array.</returns>
  23844. </member>
  23845. <member name="M:Org.BouncyCastle.X509.X509Certificate.Verify(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  23846. <summary>
  23847. Verify the certificate's signature using the nominated public key.
  23848. </summary>
  23849. <param name="key">An appropriate public key parameter object, RsaPublicKeyParameters, DsaPublicKeyParameters or ECDsaPublicKeyParameters</param>
  23850. <returns>True if the signature is valid.</returns>
  23851. <exception cref="T:System.Exception">If key submitted is not of the above nominated types.</exception>
  23852. </member>
  23853. <member name="M:Org.BouncyCastle.X509.X509Certificate.Verify(Org.BouncyCastle.Crypto.IVerifierFactoryProvider)">
  23854. <summary>
  23855. Verify the certificate's signature using a verifier created using the passed in verifier provider.
  23856. </summary>
  23857. <param name="verifierProvider">An appropriate provider for verifying the certificate's signature.</param>
  23858. <returns>True if the signature is valid.</returns>
  23859. <exception cref="T:System.Exception">If verifier provider is not appropriate or the certificate algorithm is invalid.</exception>
  23860. </member>
  23861. <member name="T:Org.BouncyCastle.X509.X509CertificatePair">
  23862. <remarks>
  23863. This class contains a cross certificate pair. Cross certificates pairs may
  23864. contain two cross signed certificates from two CAs. A certificate from the
  23865. other CA to this CA is contained in the forward certificate, the certificate
  23866. from this CA to the other CA is contained in the reverse certificate.
  23867. </remarks>
  23868. </member>
  23869. <member name="M:Org.BouncyCastle.X509.X509CertificatePair.#ctor(Org.BouncyCastle.X509.X509Certificate,Org.BouncyCastle.X509.X509Certificate)">
  23870. <summary>Constructor</summary>
  23871. <param name="forward">Certificate from the other CA to this CA.</param>
  23872. <param name="reverse">Certificate from this CA to the other CA.</param>
  23873. </member>
  23874. <member name="M:Org.BouncyCastle.X509.X509CertificatePair.#ctor(Org.BouncyCastle.Asn1.X509.CertificatePair)">
  23875. <summary>Constructor from a ASN.1 CertificatePair structure.</summary>
  23876. <param name="pair">The <c>CertificatePair</c> ASN.1 object.</param>
  23877. </member>
  23878. <member name="P:Org.BouncyCastle.X509.X509CertificatePair.Forward">
  23879. <summary>Returns the certificate from the other CA to this CA.</summary>
  23880. </member>
  23881. <member name="P:Org.BouncyCastle.X509.X509CertificatePair.Reverse">
  23882. <summary>Returns the certificate from this CA to the other CA.</summary>
  23883. </member>
  23884. <member name="T:Org.BouncyCastle.X509.X509CertificateParser">
  23885. class for dealing with X509 certificates.
  23886. <p>
  23887. At the moment this will deal with "-----BEGIN CERTIFICATE-----" to "-----END CERTIFICATE-----"
  23888. base 64 encoded certs, as well as the BER binaries of certificates and some classes of PKCS#7
  23889. objects.</p>
  23890. </member>
  23891. <member name="M:Org.BouncyCastle.X509.X509CertificateParser.ReadCertificate(System.Byte[])">
  23892. <summary>
  23893. Create loading data from byte array.
  23894. </summary>
  23895. <param name="input"></param>
  23896. </member>
  23897. <member name="M:Org.BouncyCastle.X509.X509CertificateParser.ReadCertificates(System.Byte[])">
  23898. <summary>
  23899. Create loading data from byte array.
  23900. </summary>
  23901. <param name="input"></param>
  23902. </member>
  23903. <member name="M:Org.BouncyCastle.X509.X509CertificateParser.ReadCertificate(System.IO.Stream)">
  23904. Generates a certificate object and initializes it with the data
  23905. read from the input stream inStream.
  23906. </member>
  23907. <member name="M:Org.BouncyCastle.X509.X509CertificateParser.ReadCertificates(System.IO.Stream)">
  23908. Returns a (possibly empty) collection view of the certificates
  23909. read from the given input stream inStream.
  23910. </member>
  23911. <member name="M:Org.BouncyCastle.X509.X509CertPairParser.ReadCertPair(System.Byte[])">
  23912. <summary>
  23913. Create loading data from byte array.
  23914. </summary>
  23915. <param name="input"></param>
  23916. </member>
  23917. <member name="M:Org.BouncyCastle.X509.X509CertPairParser.ReadCertPairs(System.Byte[])">
  23918. <summary>
  23919. Create loading data from byte array.
  23920. </summary>
  23921. <param name="input"></param>
  23922. </member>
  23923. <member name="T:Org.BouncyCastle.X509.X509Crl">
  23924. The following extensions are listed in RFC 2459 as relevant to CRLs
  23925. Authority Key Identifier
  23926. Issuer Alternative Name
  23927. CRL Number
  23928. Delta CRL Indicator (critical)
  23929. Issuing Distribution Point (critical)
  23930. </member>
  23931. <member name="M:Org.BouncyCastle.X509.X509Crl.Verify(Org.BouncyCastle.Crypto.IVerifierFactoryProvider)">
  23932. <summary>
  23933. Verify the CRL's signature using a verifier created using the passed in verifier provider.
  23934. </summary>
  23935. <param name="verifierProvider">An appropriate provider for verifying the CRL's signature.</param>
  23936. <returns>True if the signature is valid.</returns>
  23937. <exception cref="T:System.Exception">If verifier provider is not appropriate or the CRL algorithm is invalid.</exception>
  23938. </member>
  23939. <member name="M:Org.BouncyCastle.X509.X509Crl.ToString">
  23940. Returns a string representation of this CRL.
  23941. @return a string representation of this CRL.
  23942. </member>
  23943. <member name="M:Org.BouncyCastle.X509.X509Crl.IsRevoked(Org.BouncyCastle.X509.X509Certificate)">
  23944. Checks whether the given certificate is on this CRL.
  23945. @param cert the certificate to check for.
  23946. @return true if the given certificate is on this CRL,
  23947. false otherwise.
  23948. </member>
  23949. <member name="T:Org.BouncyCastle.X509.X509CrlEntry">
  23950. The following extensions are listed in RFC 2459 as relevant to CRL Entries
  23951. ReasonCode Hode Instruction Code Invalidity Date Certificate Issuer
  23952. (critical)
  23953. </member>
  23954. <member name="M:Org.BouncyCastle.X509.X509CrlEntry.#ctor(Org.BouncyCastle.Asn1.X509.CrlEntry,System.Boolean,Org.BouncyCastle.Asn1.X509.X509Name)">
  23955. Constructor for CRLEntries of indirect CRLs. If <code>isIndirect</code>
  23956. is <code>false</code> {@link #getCertificateIssuer()} will always
  23957. return <code>null</code>, <code>previousCertificateIssuer</code> is
  23958. ignored. If this <code>isIndirect</code> is specified and this CrlEntry
  23959. has no certificate issuer CRL entry extension
  23960. <code>previousCertificateIssuer</code> is returned by
  23961. {@link #getCertificateIssuer()}.
  23962. @param c
  23963. TbsCertificateList.CrlEntry object.
  23964. @param isIndirect
  23965. <code>true</code> if the corresponding CRL is a indirect
  23966. CRL.
  23967. @param previousCertificateIssuer
  23968. Certificate issuer of the previous CrlEntry.
  23969. </member>
  23970. <member name="M:Org.BouncyCastle.X509.X509CrlParser.ReadCrl(System.Byte[])">
  23971. <summary>
  23972. Create loading data from byte array.
  23973. </summary>
  23974. <param name="input"></param>
  23975. </member>
  23976. <member name="M:Org.BouncyCastle.X509.X509CrlParser.ReadCrls(System.Byte[])">
  23977. <summary>
  23978. Create loading data from byte array.
  23979. </summary>
  23980. <param name="input"></param>
  23981. </member>
  23982. <member name="M:Org.BouncyCastle.X509.X509CrlParser.ReadCrl(System.IO.Stream)">
  23983. Generates a certificate revocation list (CRL) object and initializes
  23984. it with the data read from the input stream inStream.
  23985. </member>
  23986. <member name="M:Org.BouncyCastle.X509.X509CrlParser.ReadCrls(System.IO.Stream)">
  23987. Returns a (possibly empty) collection view of the CRLs read from
  23988. the given input stream inStream.
  23989. The inStream may contain a sequence of DER-encoded CRLs, or
  23990. a PKCS#7 CRL set. This is a PKCS#7 SignedData object, with the
  23991. only significant field being crls. In particular the signature
  23992. and the contents are ignored.
  23993. </member>
  23994. <member name="M:Org.BouncyCastle.X509.X509ExtensionBase.GetNonCriticalExtensionOids">
  23995. <summary>
  23996. Get non critical extensions.
  23997. </summary>
  23998. <returns>A set of non critical extension oids.</returns>
  23999. </member>
  24000. <member name="M:Org.BouncyCastle.X509.X509ExtensionBase.GetCriticalExtensionOids">
  24001. <summary>
  24002. Get any critical extensions.
  24003. </summary>
  24004. <returns>A sorted list of critical entension.</returns>
  24005. </member>
  24006. <member name="M:Org.BouncyCastle.X509.X509ExtensionBase.GetExtensionValue(System.String)">
  24007. <summary>
  24008. Get the value of a given extension.
  24009. </summary>
  24010. <param name="oid">The object ID of the extension. </param>
  24011. <returns>An Asn1OctetString object if that extension is found or null if not.</returns>
  24012. </member>
  24013. <member name="T:Org.BouncyCastle.X509.X509KeyUsage">
  24014. A holding class for constructing an X509 Key Usage extension.
  24015. <pre>
  24016. id-ce-keyUsage OBJECT IDENTIFIER ::= { id-ce 15 }
  24017. KeyUsage ::= BIT STRING {
  24018. digitalSignature (0),
  24019. nonRepudiation (1),
  24020. keyEncipherment (2),
  24021. dataEncipherment (3),
  24022. keyAgreement (4),
  24023. keyCertSign (5),
  24024. cRLSign (6),
  24025. encipherOnly (7),
  24026. decipherOnly (8) }
  24027. </pre>
  24028. </member>
  24029. <member name="M:Org.BouncyCastle.X509.X509KeyUsage.#ctor(System.Int32)">
  24030. Basic constructor.
  24031. @param usage - the bitwise OR of the Key Usage flags giving the
  24032. allowed uses for the key.
  24033. e.g. (X509KeyUsage.keyEncipherment | X509KeyUsage.dataEncipherment)
  24034. </member>
  24035. <member name="M:Org.BouncyCastle.X509.X509SignatureUtilities.GetDigestAlgName(Org.BouncyCastle.Asn1.DerObjectIdentifier)">
  24036. Return the digest algorithm using one of the standard JCA string
  24037. representations rather than the algorithm identifier (if possible).
  24038. </member>
  24039. <member name="T:Org.BouncyCastle.X509.X509V1CertificateGenerator">
  24040. <summary>
  24041. Class to Generate X509V1 Certificates.
  24042. </summary>
  24043. </member>
  24044. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.#ctor">
  24045. <summary>
  24046. Default Constructor.
  24047. </summary>
  24048. </member>
  24049. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.Reset">
  24050. <summary>
  24051. Reset the generator.
  24052. </summary>
  24053. </member>
  24054. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetSerialNumber(Org.BouncyCastle.Math.BigInteger)">
  24055. <summary>
  24056. Set the certificate's serial number.
  24057. </summary>
  24058. <remarks>Make serial numbers long, if you have no serial number policy make sure the number is at least 16 bytes of secure random data.
  24059. You will be surprised how ugly a serial number collision can get.</remarks>
  24060. <param name="serialNumber">The serial number.</param>
  24061. </member>
  24062. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetIssuerDN(Org.BouncyCastle.Asn1.X509.X509Name)">
  24063. <summary>
  24064. Set the issuer distinguished name.
  24065. The issuer is the entity whose private key is used to sign the certificate.
  24066. </summary>
  24067. <param name="issuer">The issuers DN.</param>
  24068. </member>
  24069. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetNotBefore(System.DateTime)">
  24070. <summary>
  24071. Set the date that this certificate is to be valid from.
  24072. </summary>
  24073. <param name="date"/>
  24074. </member>
  24075. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetNotAfter(System.DateTime)">
  24076. <summary>
  24077. Set the date after which this certificate will no longer be valid.
  24078. </summary>
  24079. <param name="date"/>
  24080. </member>
  24081. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetSubjectDN(Org.BouncyCastle.Asn1.X509.X509Name)">
  24082. <summary>
  24083. Set the subject distinguished name.
  24084. The subject describes the entity associated with the public key.
  24085. </summary>
  24086. <param name="subject"/>
  24087. </member>
  24088. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetPublicKey(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24089. <summary>
  24090. Set the public key that this certificate identifies.
  24091. </summary>
  24092. <param name="publicKey"/>
  24093. </member>
  24094. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.SetSignatureAlgorithm(System.String)">
  24095. <summary>
  24096. Set the signature algorithm that will be used to sign this certificate.
  24097. This can be either a name or an OID, names are treated as case insensitive.
  24098. </summary>
  24099. <param name="signatureAlgorithm">string representation of the algorithm name</param>
  24100. </member>
  24101. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24102. <summary>
  24103. Generate a new X509Certificate.
  24104. </summary>
  24105. <param name="privateKey">The private key of the issuer used to sign this certificate.</param>
  24106. <returns>An X509Certificate.</returns>
  24107. </member>
  24108. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  24109. <summary>
  24110. Generate a new X509Certificate specifying a SecureRandom instance that you would like to use.
  24111. </summary>
  24112. <param name="privateKey">The private key of the issuer used to sign this certificate.</param>
  24113. <param name="random">The Secure Random you want to use.</param>
  24114. <returns>An X509Certificate.</returns>
  24115. </member>
  24116. <member name="M:Org.BouncyCastle.X509.X509V1CertificateGenerator.Generate(Org.BouncyCastle.Crypto.ISignatureFactory)">
  24117. <summary>
  24118. Generate a new X509Certificate using the passed in SignatureCalculator.
  24119. </summary>
  24120. <param name="signatureCalculatorFactory">A signature calculator factory with the necessary algorithm details.</param>
  24121. <returns>An X509Certificate.</returns>
  24122. </member>
  24123. <member name="P:Org.BouncyCastle.X509.X509V1CertificateGenerator.SignatureAlgNames">
  24124. <summary>
  24125. Allows enumeration of the signature names supported by the generator.
  24126. </summary>
  24127. </member>
  24128. <member name="T:Org.BouncyCastle.X509.X509V2AttributeCertificate">
  24129. <summary>An implementation of a version 2 X.509 Attribute Certificate.</summary>
  24130. </member>
  24131. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificate.Verify(Org.BouncyCastle.Crypto.IVerifierFactoryProvider)">
  24132. <summary>
  24133. Verify the certificate's signature using a verifier created using the passed in verifier provider.
  24134. </summary>
  24135. <param name="verifierProvider">An appropriate provider for verifying the certificate's signature.</param>
  24136. <returns>True if the signature is valid.</returns>
  24137. <exception cref="T:System.Exception">If verifier provider is not appropriate or the certificate algorithm is invalid.</exception>
  24138. </member>
  24139. <member name="T:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator">
  24140. <remarks>Class to produce an X.509 Version 2 AttributeCertificate.</remarks>
  24141. </member>
  24142. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.Reset">
  24143. <summary>Reset the generator</summary>
  24144. </member>
  24145. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.SetHolder(Org.BouncyCastle.X509.AttributeCertificateHolder)">
  24146. <summary>Set the Holder of this Attribute Certificate.</summary>
  24147. </member>
  24148. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.SetIssuer(Org.BouncyCastle.X509.AttributeCertificateIssuer)">
  24149. <summary>Set the issuer.</summary>
  24150. </member>
  24151. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.SetSerialNumber(Org.BouncyCastle.Math.BigInteger)">
  24152. <summary>Set the serial number for the certificate.</summary>
  24153. </member>
  24154. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.SetSignatureAlgorithm(System.String)">
  24155. <summary>
  24156. Set the signature algorithm. This can be either a name or an OID, names
  24157. are treated as case insensitive.
  24158. </summary>
  24159. <param name="signatureAlgorithm">The algorithm name.</param>
  24160. </member>
  24161. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.AddAttribute(Org.BouncyCastle.X509.X509Attribute)">
  24162. <summary>Add an attribute.</summary>
  24163. </member>
  24164. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.AddExtension(System.String,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  24165. <summary>Add a given extension field for the standard extensions tag.</summary>
  24166. </member>
  24167. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.AddExtension(System.String,System.Boolean,System.Byte[])">
  24168. <summary>
  24169. Add a given extension field for the standard extensions tag.
  24170. The value parameter becomes the contents of the octet string associated
  24171. with the extension.
  24172. </summary>
  24173. </member>
  24174. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24175. <summary>
  24176. Generate an X509 certificate, based on the current issuer and subject.
  24177. </summary>
  24178. </member>
  24179. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  24180. <summary>
  24181. Generate an X509 certificate, based on the current issuer and subject,
  24182. using the supplied source of randomness, if required.
  24183. </summary>
  24184. </member>
  24185. <member name="M:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.Generate(Org.BouncyCastle.Crypto.ISignatureFactory)">
  24186. <summary>
  24187. Generate a new X.509 Attribute Certificate using the passed in SignatureCalculator.
  24188. </summary>
  24189. <param name="signatureCalculatorFactory">A signature calculator factory with the necessary algorithm details.</param>
  24190. <returns>An IX509AttributeCertificate.</returns>
  24191. </member>
  24192. <member name="P:Org.BouncyCastle.X509.X509V2AttributeCertificateGenerator.SignatureAlgNames">
  24193. <summary>
  24194. Allows enumeration of the signature names supported by the generator.
  24195. </summary>
  24196. </member>
  24197. <member name="T:Org.BouncyCastle.X509.X509V2CrlGenerator">
  24198. class to produce an X.509 Version 2 CRL.
  24199. </member>
  24200. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.Reset">
  24201. reset the generator
  24202. </member>
  24203. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.SetIssuerDN(Org.BouncyCastle.Asn1.X509.X509Name)">
  24204. Set the issuer distinguished name - the issuer is the entity whose private key is used to sign the
  24205. certificate.
  24206. </member>
  24207. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddCrlEntry(Org.BouncyCastle.Math.BigInteger,System.DateTime,System.Int32)">
  24208. Reason being as indicated by CrlReason, i.e. CrlReason.KeyCompromise
  24209. or 0 if CrlReason is not to be used
  24210. </member>
  24211. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddCrlEntry(Org.BouncyCastle.Math.BigInteger,System.DateTime,System.Int32,System.DateTime)">
  24212. Add a CRL entry with an Invalidity Date extension as well as a CrlReason extension.
  24213. Reason being as indicated by CrlReason, i.e. CrlReason.KeyCompromise
  24214. or 0 if CrlReason is not to be used
  24215. </member>
  24216. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddCrlEntry(Org.BouncyCastle.Math.BigInteger,System.DateTime,Org.BouncyCastle.Asn1.X509.X509Extensions)">
  24217. Add a CRL entry with extensions.
  24218. </member>
  24219. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddCrl(Org.BouncyCastle.X509.X509Crl)">
  24220. Add the CRLEntry objects contained in a previous CRL.
  24221. @param other the X509Crl to source the other entries from.
  24222. </member>
  24223. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.SetSignatureAlgorithm(System.String)">
  24224. <summary>
  24225. Set the signature algorithm that will be used to sign this CRL.
  24226. </summary>
  24227. <param name="signatureAlgorithm"/>
  24228. </member>
  24229. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddExtension(System.String,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  24230. add a given extension field for the standard extensions tag (tag 0)
  24231. </member>
  24232. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  24233. add a given extension field for the standard extensions tag (tag 0)
  24234. </member>
  24235. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddExtension(System.String,System.Boolean,System.Byte[])">
  24236. add a given extension field for the standard extensions tag (tag 0)
  24237. </member>
  24238. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,System.Byte[])">
  24239. add a given extension field for the standard extensions tag (tag 0)
  24240. </member>
  24241. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24242. <summary>
  24243. Generate an X.509 CRL, based on the current issuer and subject.
  24244. </summary>
  24245. <param name="privateKey">The private key of the issuer that is signing this certificate.</param>
  24246. <returns>An X509Crl.</returns>
  24247. </member>
  24248. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  24249. <summary>
  24250. Generate an X.509 CRL, based on the current issuer and subject using the specified secure random.
  24251. </summary>
  24252. <param name="privateKey">The private key of the issuer that is signing this certificate.</param>
  24253. <param name="random">Your Secure Random instance.</param>
  24254. <returns>An X509Crl.</returns>
  24255. </member>
  24256. <member name="M:Org.BouncyCastle.X509.X509V2CrlGenerator.Generate(Org.BouncyCastle.Crypto.ISignatureFactory)">
  24257. <summary>
  24258. Generate a new X509Crl using the passed in SignatureCalculator.
  24259. </summary>
  24260. <param name="signatureCalculatorFactory">A signature calculator factory with the necessary algorithm details.</param>
  24261. <returns>An X509Crl.</returns>
  24262. </member>
  24263. <member name="P:Org.BouncyCastle.X509.X509V2CrlGenerator.SignatureAlgNames">
  24264. <summary>
  24265. Allows enumeration of the signature names supported by the generator.
  24266. </summary>
  24267. </member>
  24268. <member name="T:Org.BouncyCastle.X509.X509V3CertificateGenerator">
  24269. <summary>
  24270. A class to Generate Version 3 X509Certificates.
  24271. </summary>
  24272. </member>
  24273. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.Reset">
  24274. <summary>
  24275. Reset the Generator.
  24276. </summary>
  24277. </member>
  24278. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetSerialNumber(Org.BouncyCastle.Math.BigInteger)">
  24279. <summary>
  24280. Set the certificate's serial number.
  24281. </summary>
  24282. <remarks>Make serial numbers long, if you have no serial number policy make sure the number is at least 16 bytes of secure random data.
  24283. You will be surprised how ugly a serial number collision can Get.</remarks>
  24284. <param name="serialNumber">The serial number.</param>
  24285. </member>
  24286. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetIssuerDN(Org.BouncyCastle.Asn1.X509.X509Name)">
  24287. <summary>
  24288. Set the distinguished name of the issuer.
  24289. The issuer is the entity which is signing the certificate.
  24290. </summary>
  24291. <param name="issuer">The issuer's DN.</param>
  24292. </member>
  24293. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetNotBefore(System.DateTime)">
  24294. <summary>
  24295. Set the date that this certificate is to be valid from.
  24296. </summary>
  24297. <param name="date"/>
  24298. </member>
  24299. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetNotAfter(System.DateTime)">
  24300. <summary>
  24301. Set the date after which this certificate will no longer be valid.
  24302. </summary>
  24303. <param name="date"/>
  24304. </member>
  24305. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetSubjectDN(Org.BouncyCastle.Asn1.X509.X509Name)">
  24306. <summary>
  24307. Set the DN of the entity that this certificate is about.
  24308. </summary>
  24309. <param name="subject"/>
  24310. </member>
  24311. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetPublicKey(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24312. <summary>
  24313. Set the public key that this certificate identifies.
  24314. </summary>
  24315. <param name="publicKey"/>
  24316. </member>
  24317. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetSignatureAlgorithm(System.String)">
  24318. <summary>
  24319. Set the signature algorithm that will be used to sign this certificate.
  24320. </summary>
  24321. <param name="signatureAlgorithm"/>
  24322. </member>
  24323. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetSubjectUniqueID(System.Boolean[])">
  24324. <summary>
  24325. Set the subject unique ID - note: it is very rare that it is correct to do this.
  24326. </summary>
  24327. <param name="uniqueID"/>
  24328. </member>
  24329. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.SetIssuerUniqueID(System.Boolean[])">
  24330. <summary>
  24331. Set the issuer unique ID - note: it is very rare that it is correct to do this.
  24332. </summary>
  24333. <param name="uniqueID"/>
  24334. </member>
  24335. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.AddExtension(System.String,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  24336. <summary>
  24337. Add a given extension field for the standard extensions tag (tag 3).
  24338. </summary>
  24339. <param name="oid">string containing a dotted decimal Object Identifier.</param>
  24340. <param name="critical">Is it critical.</param>
  24341. <param name="extensionValue">The value.</param>
  24342. </member>
  24343. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,Org.BouncyCastle.Asn1.Asn1Encodable)">
  24344. <summary>
  24345. Add an extension to this certificate.
  24346. </summary>
  24347. <param name="oid">Its Object Identifier.</param>
  24348. <param name="critical">Is it critical.</param>
  24349. <param name="extensionValue">The value.</param>
  24350. </member>
  24351. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.AddExtension(System.String,System.Boolean,System.Byte[])">
  24352. <summary>
  24353. Add an extension using a string with a dotted decimal OID.
  24354. </summary>
  24355. <param name="oid">string containing a dotted decimal Object Identifier.</param>
  24356. <param name="critical">Is it critical.</param>
  24357. <param name="extensionValue">byte[] containing the value of this extension.</param>
  24358. </member>
  24359. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.AddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,System.Byte[])">
  24360. <summary>
  24361. Add an extension to this certificate.
  24362. </summary>
  24363. <param name="oid">Its Object Identifier.</param>
  24364. <param name="critical">Is it critical.</param>
  24365. <param name="extensionValue">byte[] containing the value of this extension.</param>
  24366. </member>
  24367. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.CopyAndAddExtension(System.String,System.Boolean,Org.BouncyCastle.X509.X509Certificate)">
  24368. <summary>
  24369. Add a given extension field for the standard extensions tag (tag 3),
  24370. copying the extension value from another certificate.
  24371. </summary>
  24372. </member>
  24373. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.CopyAndAddExtension(Org.BouncyCastle.Asn1.DerObjectIdentifier,System.Boolean,Org.BouncyCastle.X509.X509Certificate)">
  24374. add a given extension field for the standard extensions tag (tag 3)
  24375. copying the extension value from another certificate.
  24376. @throws CertificateParsingException if the extension cannot be extracted.
  24377. </member>
  24378. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter)">
  24379. <summary>
  24380. Generate an X509Certificate.
  24381. </summary>
  24382. <param name="privateKey">The private key of the issuer that is signing this certificate.</param>
  24383. <returns>An X509Certificate.</returns>
  24384. </member>
  24385. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.Generate(Org.BouncyCastle.Crypto.AsymmetricKeyParameter,Org.BouncyCastle.Security.SecureRandom)">
  24386. <summary>
  24387. Generate an X509Certificate using your own SecureRandom.
  24388. </summary>
  24389. <param name="privateKey">The private key of the issuer that is signing this certificate.</param>
  24390. <param name="random">You Secure Random instance.</param>
  24391. <returns>An X509Certificate.</returns>
  24392. </member>
  24393. <member name="M:Org.BouncyCastle.X509.X509V3CertificateGenerator.Generate(Org.BouncyCastle.Crypto.ISignatureFactory)">
  24394. <summary>
  24395. Generate a new X509Certificate using the passed in SignatureCalculator.
  24396. </summary>
  24397. <param name="signatureCalculatorFactory">A signature calculator factory with the necessary algorithm details.</param>
  24398. <returns>An X509Certificate.</returns>
  24399. </member>
  24400. <member name="P:Org.BouncyCastle.X509.X509V3CertificateGenerator.SignatureAlgNames">
  24401. <summary>
  24402. Allows enumeration of the signature names supported by the generator.
  24403. </summary>
  24404. </member>
  24405. <member name="T:Org.BouncyCastle.Apache.Bzip2.BZip2Constants">
  24406. Base class for both the compress and decompress classes.
  24407. Holds common arrays, and static data.
  24408. @author <a href="mailto:keiron@aftexsw.com">Keiron Liddle</a>
  24409. </member>
  24410. <member name="T:Org.BouncyCastle.Apache.Bzip2.CBZip2InputStream">
  24411. An input stream that decompresses from the BZip2 format (with the file
  24412. header chars) to be read as any other stream.
  24413. @author <a href="mailto:keiron@aftexsw.com">Keiron Liddle</a>
  24414. <b>NB:</b> note this class has been modified to read the leading BZ from the
  24415. start of the BZIP2 stream to make it compatible with other PGP programs.
  24416. </member>
  24417. <member name="T:Org.BouncyCastle.Apache.Bzip2.CBZip2OutputStream">
  24418. An output stream that compresses into the BZip2 format (with the file
  24419. header chars) into another stream.
  24420. @author <a href="mailto:keiron@aftexsw.com">Keiron Liddle</a>
  24421. TODO: Update to BZip2 1.0.1
  24422. <b>NB:</b> note this class has been modified to add a leading BZ to the
  24423. start of the BZIP2 stream to make it compatible with other PGP programs.
  24424. </member>
  24425. <member name="M:Org.BouncyCastle.Apache.Bzip2.CBZip2OutputStream.WriteByte(System.Byte)">
  24426. modified by Oliver Merkel, 010128
  24427. </member>
  24428. <member name="T:Org.BouncyCastle.Apache.Bzip2.CRC">
  24429. A simple class the hold and calculate the CRC for sanity checking
  24430. of the data.
  24431. @author <a href="mailto:keiron@aftexsw.com">Keiron Liddle</a>
  24432. </member>
  24433. <member name="M:crypto.Security.ComputeHash(System.String,System.String)">
  24434. <summary>
  24435. Return a salted hash based on PBKDF2 for the UTF-8 encoding of the argument text.
  24436. </summary>
  24437. <param name="text">Provided key text</param>
  24438. <param name="salt">Base64 encoded string representing the salt</param>
  24439. <returns></returns>
  24440. </member>
  24441. </members>
  24442. </doc>