!"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~      !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~4 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone$3Certificate Usage callback possible returns values.%usage of certificate accepted&usage of certificate rejected'&Certificate and Chain rejection reason $%&'()*+"$%&'()*+$%&'()*+None BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone\Attempt to decode a bytestring representing an DER ASN.1 serialized object into the object.7Encode an ASN.1 Object to the DER serialized bytestringSafeTThis is a strict version of andThis is a strict version of &&.verify that 2 bytestrings are equals. it's a non lazy version, that will compare every bytes. arguments with different length will bail out early    BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafe DirectionRole,Compression identification-Cipher identification.Session data to resume5 A session ID6Versions known to TLSDSSL2 is just defined, but this version is and will not be supported.,-./0123456789:;,-./0123456789:; ,-./0123456789:;  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafe<A session manager>Aused on server side to decide whether to resume a client session.?#used when a session is established.@#used when a session is invalidated.<=>?@A<=>?@A<=>?@A NoneI   BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafeB'record some data about this connection.D$number of handshakes on this contextE#bytes received since last handshakeFbytes sent since last handshake BCDEF BCDEFBCDEF  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone   BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafe BSD-styleKazu Yamamoto <kazu@iij.ad.jp> experimentalunknownSafeGHIJKLMNOPQGHIJKLMNOPQG HIJKLMNOPQNone R R R BSD-styleKazu Yamamoto <kazu@iij.ad.jp> experimentalunknownNoneS2048 bits finite field Diffie-Hellman ephemeral parameters defined in RFC 7919. The estimated symmetric-equivalent strength is 103 bits.T3072 bits finite field Diffie-Hellman ephemeral parameters defined in RFC 7919. The estimated symmetric-equivalent strength is 125 bits.U4096 bits finite field Diffie-Hellman ephemeral parameters defined in RFC 7919. The estimated symmetric-equivalent strength is 150 bits.V6144 bits finite field Diffie-Hellman ephemeral parameters defined in RFC 7919. The estimated symmetric-equivalent strength is 175 bits.W8192 bits finite field Diffie-Hellman ephemeral parameters defined in RFC 7919. The estimated symmetric-equivalent strength is 192 bits.STUVWSTUVWSTUVWSTUVW BSD-styleKazu Yamamoto <kazu@iij.ad.jp> experimentalunknownNone&      !!        !NoneAT."#$%&'()*+,-.XYZ[\]^_`ab/01234+(for the md5 context, for the sha1 context)56789:;<=>?@ABCDRGHIJKLMNOPQR!"#$%&'(),X^]\[ZY_`ab/0123456789;<=>"#$%&'()*+,-.XYZ[\]^_`ab/0123456789:;<=>?@ABCD BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneEFor now we ignore the version, but perhaps some day the PRF will depend not only on the cipher PRF algorithm, but also on the protocol version. FGHIJKLMEGHJKLME FGHIJKLME BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone0hBdeprecated alert, should never be sent by compliant implementation@TLS Exceptions related to bad user usage or asynchronous errorsGEarly termination exception with the reason and the error associated(Handshake failed for the reason attachedjUsage error when the connection has not been established and the user is trying to send or receive data5TLSError that might be returned through the TLS stackmainly for instance of Errorhandshake policy failed.NOPQRSTUVcWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~defghijklmnopqrstuvwxyz{|}~./0123456789:;NOPQRSTVUc`WXYZ[\]^_bcdefghijklmnopqrstuvwxyz{|}~defghijklmnopqrstuvwxyz{|}~;NOPQRSTUVc WXYZ[\]^_`abcdef ghijklmnopqrstuvwxyz{|}~ defghijklmnopqrstuvwxyz{|}~  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneA collection of hooks actions.)called at each handshake message received1called at each certificate chain message received/hooks on IO and packets, receiving and sending.Hooks for logging8This is called when sending and receiving packets and IO  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone$,  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNonetry to create a new credential object from a public certificate and the associated private key that are stored on the filesystem in PEM format. similar to V but take the certificate and private key from memory instead of from the filesystem. similar to / but also allow specifying chain certificates. similar to / but also allow specifying chain certificates.Checks whether certificates in the chain comply with a list of hash/signature algorithm pairs. Currently the verification applies only to the leaf certificate, if it is not self-signed. This may be extended to additional chain elements in the future.!public certificate (X.509 format)private key associated!public certificate (X.509 format)!chain certificates (X.509 format)private key associated  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafeAT0This is the default compression which is a NOOP.Aevery compression need to be wrapped in this, to fit in structure>supported compression algorithms need to be part of this class+return the associated ID for this algorithmzdeflate (compress) a bytestring using a compression context and return the result along with the new compression context.winflate (decompress) a bytestring using a compression context and return the result along the new compression context.intersect a list of ids commonly given by the other side with a list of compression the function keeps the list of compression in order, to be able to find quickly the prefered compression.default null compression ,  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneATCipher algorithm Check if a specific 2 is allowed to be used with the version specified<     @-X^]\[ZY_            BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone,All AES ciphers supported ordered from strong to weak. This choice of ciphersuites should satisfy most normal needs. For otherwise strong ciphers we make little distinction between AES128 and AES256, and list each but the weakest of the AES128 ciphers ahead of the corresponding AES256 ciphers.DThe default ciphersuites + some not recommended last resort ciphers.list of medium ciphers.The strongest ciphers supported. For ciphers with PFS, AEAD and SHA2, we list each AES128 variant right after the corresponding AES256 variant. For weaker constructs, we use just the AES256 form.DHE-RSA cipher suite8all unencrypted ciphers, do not use on insecure network.@unencrypted cipher using RSA for key exchange and MD5 for digestAunencrypted cipher using RSA for key exchange and SHA1 for digest/RC4 cipher, RSA key exchange and MD5 for digest0RC4 cipher, RSA key exchange and SHA1 for digest?3DES cipher (168 bit key), RSA key exchange and SHA1 for digest>AES cipher (128 bit key), RSA key exchange and SHA1 for digestMAES cipher (128 bit key), DHE key exchanged signed by DSA and SHA1 for digestMAES cipher (128 bit key), DHE key exchanged signed by RSA and SHA1 for digest>AES cipher (256 bit key), RSA key exchange and SHA1 for digestMAES cipher (256 bit key), DHE key exchanged signed by DSA and SHA1 for digest MAES cipher (256 bit key), DHE key exchanged signed by RSA and SHA1 for digest!@AES cipher (128 bit key), RSA key exchange and SHA256 for digest"@AES cipher (256 bit key), RSA key exchange and SHA256 for digest&aAESGCM cipher (128 bit key), RSA key exchange. The SHA256 digest is used as a PRF, not as a MAC.'aAESGCM cipher (256 bit key), RSA key exchange. The SHA384 digest is used as a PRF, not as a MAC.8      !"#$%&'()*+,-./012345' !"#$%&'()*+,-./012345'!"&' $%()45.,-/*+0123#8      !"#$%&'()*+,-./012345 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone,STUVW !"#$%&'()*+,-./012345 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownSafe BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNonecurrent protocol versioncurrent key exchange typein certain cases, we haven't manage to decode ServerKeyExchange properly, because the decoding was too eager and the cipher wasn't been set yet. we keep the Server Key Exchange in it unparsed format, and this function is able to really decode the server key xchange if it's unparsed.fThe TLS12 PRF is cipher specific, and some TLS12 algorithms use SHA384 instead of the default SHA256.M !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abc"#$%&'()*+,-;<=>JKRSTUX[^_`abcJ !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abc BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoned-Application Layer Protocol Negotiation (ALPN)eSecure Renegotiationf?Max fragment extension with length from 512 bytes to 4096 bytesgServer Name extension including the name type and the associated name. the associated name decoding is dependant of its name type. name type = 0 : hostnamehKExtension class to transform bytes to and from a high level Extension type.i.all supported extensions by the implementationMjklmnopqrstuvwxyzd{e|6789:f}~ghi:GHIJKLMNOPQjklmnopqrstuvwxyzd{e|6789:f}~ghi6jklmnopqrstuvwxyzd{e|6789:f}~ghi BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone ;QA set of callbacks run by the server for various corners of the TLS establishment=This action is called when a client certificate chain is received from the client. When it returns a CertificateUsageReject value, the handshake is aborted.>NThis action is called when the client certificate cannot be verified. Return ' to accept the certificate anyway, or  to fail verification.?iAllow the server to choose the cipher relative to the the client version and the client list of ciphers.xThis could be useful with old clients and as a workaround to the BEAST (where RC4 is sometimes prefered with TLS < 1.1)'The client cipher list cannot be empty.@tAllow the server to indicate additional credentials to be used depending on the host name indicated by the client.This is most useful for transparent proxies where credentials must be generated on the fly according to the host the client is trying to connect to.yReturned credentials may be ignored if a client does not support the signature algorithms used in the certificate chain.AQat each new handshake, we call this hook to see if we allow handshake to happens.BAllow the server to choose an application layer protocol suggested from the client through the ALPN (Application Layer Protocol Negotiation) extensions.CNA set of callbacks run by the clients for various corners of TLS establishmentE This action is called when the server sends a certificate request. The parameter is the information from the request. The action should select a certificate chain of one of the given certificate types where the last certificate in the chain should be signed by one of the given distinguished names. Each certificate should be signed by the following one, except for the last. At least the first of the certificates in the chain must have a corresponding private key, because that is used for signing the certificate verify message.Note that is is the responsibility of this action to select a certificate matching one of the requested certificate types. Returning a non-matching one will lead to handshake failure later.Returning a certificate chain not matching the distinguished names may lead to problems or not, depending whether the server accepts it.FZUsed by the client to validate the server certificate. The default implementation calls H which validates according to the default hooks and checks provided by Data.X509.ValidationT. This can be replaced with a custom validation function using different settings.GqThis action is called when the client sends ClientHello to determine ALPN values such as '["h2", "http/1.1"]'.NDList all the supported algorithms, versions, ciphers, etc supported.PSupported Versions by this context On the client side, the highest version will be used to establish the connection. On the server side, the highest version that is less or equal than the client version will be chosed.QSSupported cipher methods. The default is empty, specify a suitable cipher list.  is often a good choice.Rsupported compressions methodsSAll supported hash/signature algorithms pair for client certificate verification and server signature in (EC)DHE, ordered by decreasing priority./This list is sent to the peer as part of the signature_algorithms extension. It is also used to restrict the choice of server credential, signature and hash algorithm, but only when the TLS version is 1.2 or above. In order to disable SHA-1 one must then also disable earlier protocol versions in P.T/Secure renegotiation defined in RFC5746. If 7, clients send the renegotiation_info extension. If g, servers handle the extension or the renegotiation SCSV then send the renegotiation_info extension.UIf ], renegotiation is allowed from the client side. This is vulnerable to DOS attacks. If I, renegotiation is allowed only from the server side via HelloRequest.VSet if we support session.W4Support for fallback SCSV defined in RFC7507. If b, servers reject handshakes which suggest a lower protocol than the highest protocol supported.XdIn ver <= TLS1.0, block ciphers using CBC are using CBC residue as IV, which can be guessed by an attacker. Hence, an empty packet is normally sent before a normal data packet, to prevent guessability. Some Microsoft TLS-based protocol implementations, however, consider these empty packets as a protocol violation and disconnect. If this parameter is Y, empty packets will never be added, which is less secure, but might help in rare cases.YUA list of supported elliptic curves in the preferred order. The default value is [H,I,J]. Hp provides 128-bit security which is strong enough until 2030 and is fast because its backend is written in C.\"request a certificate from client.]This is a list of certificates from which the disinguished names are sent in certificate request messages. For TLS1.0, it should not be empty.^~Server Optional Diffie Hellman parameters. If this value is not properly set, no Diffie Hellman key exchange will take place.fDefine the name of the server, along with an extra service identification blob. this is important that the hostname part is properly filled for security reason, as it allow to properly associate the remote side with the given certificate during a handshake.The extra blob is useful to differentiate services running on the same host, but that might have different certificates given. It's only used as part of the X509 validation infrastructure.gAllow the use of the Server Name Indication TLS extension during handshake, which allow the client to specify which host name, it's trying to access. This is useful to distinguish CNAME aliasing (e.g. web virtual host).h1try to establish a connection using this session.kIIn this element, you'll need to override the default empty value of of Q with a suitable cipherlist.m-All settings should not be used in productionoDisable the true randomness in favor of deterministic seed that will produce a deterministic random from. This is useful for tests and debugging purpose. Do not use in productionpyAdd a way to print the seed that was randomly generated. re-using the same seed will reproduce the same randomness with oH;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqE$%&'()*+6789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopq;<=>?@ABCDEFGHIJKLMN OPQRSTUVWXYZ[\]^_`abc defghijklmnopq BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone<=IOT74$  BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone<=               ! BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone<=I7Set to Just-value when certificate request was received4Set to true when a client certificate chain was sent/Set to true when a certificate request was sent6Generate the master secret from the pre master secret.Set master secret and as a side effect generate the key block with all the right parameters, and setup the pending tx/rx state.> !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNchosen transmission version2the role (Client or Server) of the generating sidethe pre master secretOPchosen versionQR5 !"#$%&'()*+,-./456789:;<=>?@ABCDEFGHIJKLMNP% !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQR" BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneCSRepresent a TLS record.TXturn a plaintext record into a compressed record using the compression function suppliedUTturn a compressed record into a ciphertext record using the cipher function suppliedVXturn a ciphertext fragment into a compressed fragment using the cipher function suppliedW^turn a compressed fragment into a plaintext fragment using the decompression function suppliedX&turn a record into an header and bytesY*turn a header and a fragment into a recordZturn a record into a header[\]^_`SabcdeTUVWXYZ[\]^`SabcdTUVWXYZ[\]^_`SabcdeTUVWXYZ# BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone:fghijffghij$ BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneklmnopqrkklmnopqr% BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone [\]^`SabcXYZfk& BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneuConnection IO backendw,Flush the connection sending buffer, if any.xClose the connection.y)Send a bytestring through the connection.z6Receive specified number of bytes from the connection. rstuvwxyzstuv rstuvwxyzrstuvwxyzstuv' BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone{JA TLS Context keep tls specific state, parameters and backend information.|6return the backend object associated with this contextwhas the handle EOFed or not.x0has the handshake been done and been successful.y-empty packet workaround for CBC guessability.zenable the reception of compatibility SSLv2 client hello. the flag will be set to false regardless of its initial value after the first packet received.{current tx state|current rx state}optional handshake state~hooks for this context;lock to use for writing data (including updating the state);lock to use for reading data (including updating the state)mlock used during read/write when receiving and sending packet. it is usually nested in a write or read lock.}=Information related to a running context, e.g. current cipher%Information about the current context9{|wxyz{|}~}~c./012345BCDEF6789:Z[\]^_`abcdefghijklq{|wxyz{|}~}~{|wxyz{|}~}~( BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone) BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone* BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneN+ BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone, BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone:- BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNonemakePacketData\ create a Header and a content bytestring related to a packet this doesn't change any statemarshall packet datajwritePacket transform a packet into marshalled data related to current state and updating state on the go. BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneJrecvRecord receive a full TLS record (header + data), from the other side..The record is disengaged from the record layerreceive one packet from the context that contains 1 or many messages (many only in case of handshake). if will returns a TLSError if the packet is unexpected or malformedSend one packet to the context1flag to enable SSLv2 compat ClientHello reception TLS context/None1when a new handshake is done, wrap up & clean up.?process a list of handshakes message in the recv state machine. 0 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone7send client Data after receiving all server data (hello certificateskey).> [certificate]> client key exchange> [cert verify]<onServerHello process the ServerHello message on the client.1) check the version chosen by the server is one allowed by parameters. 2) check that our compression and cipher algorithms are part of the list we sent 3) check extensions received are part of the one we sent 4) process the session parameter to see if the server want to start a new session or can resume 5) if no resume switch to processCertificate SM or in resume switch to expectChangeCipher  1 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone)Put the server context in handshake mode.Expect a client hello message as parameter. This is useful when the client hello has been already poped from the recv layer to inspect the packet.When the function returns, a new handshake has been succesfully negociated. On any error, a HandshakeFailed exception is raised.handshake protocol ( - receiving, -K sending, [] optional): (no session) (session resumption) <- client hello <- client hello -> server hello -> server hello -> [certificate] -> [server key xchg] -> [cert request] -> hello done <- [certificate] <- client key xchg <- [cert verify]  -change cipher - change cipher  -finish -Z finish -> change cipher <- change cipher -> finish <- finish>receive Client data in handshake until the Finished handshake.g<- [certificate] <- client key xchg <- [cert verify] <- change cipher <- finish  2 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNonesHandshake for a new TLS connection This is to be called at the beginning of a connection, and during renegotiation3 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone@create a new context using the backend and parameters specified."create a new context on an handle.!create a new context on a socket. NBackend abstraction with specific method to interact with the connection type.Parameters of the context.Handle of the connection.Parameters of the context.Socket of the connection.Parameters of the context.D{|wxyz{|}~}~ 4 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNoneTnotify the context that this side wants to close connection. this is important that it is called before closing the handle, otherwise the session might not be resumable (for version < TLS1.2).&this doesn't actually close the handleVIf the ALPN extensions have been used, this will return get the protocol agreed upon.dIf the Server Name Indication extension has been used, return the hostname specified by the client.[sendData sends a bunch of data. It will automatically chunk data to acceptable packet sizekrecvData get data out of Data packet, and automatically renegotiate if a Handshake ClientHello is received/same as recvData but returns a lazy bytestring. 5 BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNone./0123456789:;NOPQRSTUVc`WXYZ[\]^_bcdefghijklmnopqrstuvwxyz{|}~defghijklmnopqrstuvwxyz{|}~#$%&'()*+,-;<=>JKRSTUX[^_`abc BSD-style#Vincent Hanquez <vincent@snarc.org> experimentalunknownNonef "! #$%&'()*+-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRX^]\[ZY_`abcdefghijklmnopqrstuvwxyz{|}~     6789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~ocdefghijkl#Z[\]^_`abmnopRCDEFG;<=>?@ABNOPQRSTUVWXYHIJKLMcBCDEF$%&'()*+q6789:5./01234<=>?@Auvwxyz{||rst}~, XYZ[\]^_-    6789:;`abdefghijklmnopqrstuvwxyz{|}~ "! GHIJKLMNOPQ67867967:67;67<67=6>?6>@6>ABCDBCEBCFBCGBCHBCIBCJBCKBCLBCMBCMBCNBCOBCPBCQBCRBCRBSTBSUBSVBSWBSXBSYBSZBS[BS[B\]^_`abcdefghhijklmnopqrst u u v w x y z z { | }~       !"#$%&'()*+,-../0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghiijklmnoppqrsttuvwxyyz{|}~&&&&&&&&&''''''''''''''2333333344444466666666666666BCBCB\]                   !"#$%&'()*+,-./0123456789:;<=>?@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\]]^^_`abcdefghijklmnopqrstuvwxyz{|}~6      !"#$%&'()*+,-./0123456789:;<=>?@ABCDDEFGHIJKLMNOPQRSTUVWXYZ[\]^_`abcdefghijklmnopqrstuvwxyz{|}~]]]lE                            ! " # $ % & '!(!)!*!+!,!-!-!.!/!0!0!1!2!3!4!5!6!7!8!9!:!;!<!=!>!?!@!A!A!B!C!D!E!F!G!H!I!s!u!J!K!L!M!N!O!P!Q!R!S!T!U!V!W!X!Y!Z![!\!]!^!_!`"a"b"c"d"e"f"g"h"i"j"k"l"l"m"a"n"o"p"q#r#s#t#u#v$w$x$y$z${$|$}$~&&&&'''''''''''''''''''''''''''''''''''''''''''(()))))))****++++++++++++++++,,-----.....////////////////000000000000111111111111223333334] tls-1.4.0-7qlPZroJy5T3Rfb2HjASbj Network.TLSNetwork.TLS.Extra.FFDHENetwork.TLS.Extra.CipherNetwork.TLS.X509Network.TLS.Util.SerializationNetwork.TLS.Util.ASN1Network.TLS.UtilNetwork.TLS.TypesNetwork.TLS.SessionNetwork.TLS.RNGNetwork.TLS.MeasurementNetwork.TLS.ImportsNetwork.TLS.ErrTNetwork.TLS.Crypto.TypesNetwork.TLS.Crypto.DHNetwork.TLS.Crypto.IESNetwork.TLS.CryptoNetwork.TLS.MACNetwork.TLS.StructNetwork.TLS.HooksNetwork.TLS.WireNetwork.TLS.CredentialsNetwork.TLS.CompressionNetwork.TLS.CipherNetwork.TLS.ExtraNetwork.TLS.CapNetwork.TLS.PacketNetwork.TLS.ExtensionNetwork.TLS.Parametersciphersuite_defaultNetwork.TLS.StateNetwork.TLS.Record.StateNetwork.TLS.Handshake.StateNetwork.TLS.Record.TypesNetwork.TLS.Record.DisengageNetwork.TLS.Record.EngageNetwork.TLS.RecordNetwork.TLS.BackendNetwork.TLS.Context.Internal!Network.TLS.Handshake.CertificateNetwork.TLS.Handshake.KeyNetwork.TLS.Handshake.ProcessNetwork.TLS.Handshake.SignatureNetwork.TLS.ReceivingNetwork.TLS.SendingNetwork.TLS.IONetwork.TLS.Handshake.CommonNetwork.TLS.Handshake.ClientNetwork.TLS.Handshake.ServerNetwork.TLS.HandshakeNetwork.TLS.ContextNetwork.TLS.CoreNetwork.TLS.Internal x509-1.7.1-R9PR93Ek5xHDJqSIua7JIData.X509.PublicKey PubKeyUnknownPubKeyECPubKeyDH PubKeyDSA PubKeyRSAPubKeyData.X509.PrivateKey PrivKeyDSA PrivKeyRSAPrivKey,x509-validation-1.6.8-4Ok2trq9n5iHYMBom1822kData.X509.Validation checkFQHNcheckLeafKeyPurposecheckLeafKeyUsage checkLeafV3checkExhaustivecheckCAConstraintscheckStrictOrdering checkAtTimecheckTimeValidityValidationCheckshookFilterReasonhookValidateNamehookValidateTimehookMatchSubjectIssuerValidationHooksData.X509.Validation.CacheexceptionValidationCacheValidationCacheUnknownValidationCacheDeniedValidationCachePassValidationCacheResultcacheAdd cacheQueryValidationCacheData.X509.Validation.TypesHostNameCertificateUsageCertificateUsageAcceptCertificateUsageRejectCertificateRejectReasonCertificateRejectExpiredCertificateRejectRevokedCertificateRejectUnknownCACertificateRejectOther CompressionIDCipherID SessionDatasessionVersion sessionCiphersessionCompressionsessionClientSNI sessionSecret SessionIDVersionSSL2SSL3TLS10TLS11TLS12SessionManager sessionResumesessionEstablishsessionInvalidatenoSessionManager Measurement nbHandshakes bytesReceived bytesSentGroupP256P384P521X25519X448 FFDHE2048 FFDHE3072 FFDHE4096 FFDHE6144 FFDHE8192DHParams ffdhe2048 ffdhe3072 ffdhe4096 ffdhe6144 ffdhe8192HashMD5SHA1SHA224SHA256SHA384SHA512SHA1_MD5KxErrorRSAError KxUnsupported HandshakeAlertDescription CloseNotifyUnexpectedMessage BadRecordMacDecryptionFailedRecordOverflowDecompressionFailureHandshakeFailureBadCertificateUnsupportedCertificateCertificateRevokedCertificateExpiredCertificateUnknownIllegalParameter UnknownCa AccessDenied DecodeError DecryptErrorExportRestrictionProtocolVersionInsufficientSecurity InternalErrorInappropriateFallback UserCanceledNoRenegotiationUnsupportedExtensionCertificateUnobtainableUnrecognizedNameBadCertificateStatusResponseBadCertificateHashValue ClientRandomunClientRandom ServerRandomunServerRandomHeader TLSException TerminatedHandshakeFailedConnectionNotEstablishedTLSError Error_MiscError_ProtocolError_CertificateError_HandshakePolicy Error_EOF Error_PacketError_Packet_unexpectedError_Packet_Parsing ProtocolTypeProtocolType_ChangeCipherSpecProtocolType_AlertProtocolType_HandshakeProtocolType_AppData ProtocolType_DeprecatedHandshakeHashAndSignatureAlgorithmSignatureAlgorithmSignatureAnonymous SignatureRSA SignatureDSSSignatureECDSASignatureRSApssSHA256SignatureRSApssSHA384SignatureRSApssSHA512SignatureEd25519SignatureEd448SignatureOther HashAlgorithmHashNoneHashMD5HashSHA1 HashSHA224 HashSHA256 HashSHA384 HashSHA512 HashIntrinsic HashOtherCertificateTypeCertificateType_RSA_SignCertificateType_DSS_SignCertificateType_RSA_Fixed_DHCertificateType_DSS_Fixed_DH CertificateType_RSA_Ephemeral_DH CertificateType_DSS_Ephemeral_DHCertificateType_fortezza_dmsCertificateType_UnknownHookshookRecvHandshakehookRecvCertificates hookLoggingLoggingloggingPacketSentloggingPacketRecv loggingIOSent loggingIORecv Credentials CredentialcredentialLoadX509credentialLoadX509FromMemorycredentialLoadX509Chain!credentialLoadX509ChainFromMemoryNullCompression Compression CompressionCcompressionCIDcompressionCDeflatecompressionCInflate compressionIDcompressionDeflatecompressionInflatecompressionIntersectIDnullCompressionCiphercipherID cipherName cipherHash cipherBulkcipherKeyExchange cipherMinVer cipherPRFHashBulkbulkName bulkKeySize bulkIVSizebulkExplicitIVbulkAuthTagLen bulkBlockSizebulkFCipherKeyExchangeTypeCipherKeyExchange_RSACipherKeyExchange_DH_AnonCipherKeyExchange_DHE_RSACipherKeyExchange_ECDHE_RSACipherKeyExchange_DHE_DSSCipherKeyExchange_DH_DSSCipherKeyExchange_DH_RSACipherKeyExchange_ECDH_ECDSACipherKeyExchange_ECDH_RSACipherKeyExchange_ECDHE_ECDSA BulkFunctions BulkBlockF BulkStreamF BulkAeadF BulkDirection BulkEncrypt BulkDecryptBulkAEAD BulkBlock BulkStream BulkStateBulkStateStreamBulkStateBlock BulkStateAEADBulkStateUninitializedBulkAdditionalData BulkNonceBulkIVBulkKeybulkInithasMAC hasRecordIVcipherKeyBlockSizecipherAllowedForVersioncipherExchangeNeedMoreDataciphersuite_allciphersuite_mediumciphersuite_strongciphersuite_dhe_rsaciphersuite_dhe_dssciphersuite_unencryptedcipher_null_MD5cipher_null_SHA1cipher_RC4_128_MD5cipher_RC4_128_SHA1cipher_RSA_3DES_EDE_CBC_SHA1cipher_AES128_SHA1cipher_DHE_DSS_AES128_SHA1cipher_DHE_RSA_AES128_SHA1cipher_AES256_SHA1cipher_DHE_DSS_AES256_SHA1cipher_DHE_RSA_AES256_SHA1cipher_AES128_SHA256cipher_AES256_SHA256cipher_DHE_DSS_RC4_SHA1cipher_DHE_RSA_AES128_SHA256cipher_DHE_RSA_AES256_SHA256cipher_AES128GCM_SHA256cipher_AES256GCM_SHA384cipher_DHE_RSA_AES128GCM_SHA256cipher_DHE_RSA_AES256GCM_SHA384 cipher_ECDHE_ECDSA_AES128CBC_SHA 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credentialsListSigningAlgorithmscredentialsFindForSigningcredentialsFindForDecryptingcredentialCanDecryptcredentialCanSigncredentialPublicPrivateKeysgetHashSignature$fMonoidCredentials$fCompressionCNullCompression$fEqCompression$fShowCompression $fEqCipher $fShowCipher$fEqBulk $fShowBulk$fShowBulkState aes128cbc aes256cbc aes128gcm aes256gcmnoFailmakeIV_ tripledes_ede tripledes_ivrc4 bulk_nullbulk_rc4 bulk_aes128bulk_aes128gcmbulk_aes256gcm bulk_aes256bulk_tripledes_edehasHelloExtensionshasExplicitBlockIVcParamsVersioncParamsKeyXchgType&decodeReallyServerKeyXchgAlgorithmDatagetPRFPRF CurrentParams getVersion putVersion getHeaderType putHeaderTypegetHandshakeType decodeHeaderdecodeDeprecatedHeaderLengthdecodeDeprecatedHeader encodeHeaderencodeHeaderNoVer decodeAlert decodeAlerts 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