mirror of
https://github.com/apernet/OpenGFW.git
synced 2024-12-23 01:19:21 +08:00
refactor: Improve parsing docs
Reveal intentions by: - extracting magic numbers into constants - changing function names with >1 responsibilities - documenting non-obvious behaviors.
This commit is contained in:
parent
4257788f33
commit
3bd02ed46e
@ -5,7 +5,26 @@ import (
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"github.com/apernet/OpenGFW/analyzer/utils"
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)
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func ParseTLSClientHello(chBuf *utils.ByteBuffer) analyzer.PropMap {
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// TLS record types.
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const (
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RecordTypeHandshake = 0x16
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)
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// TLS handshake message types.
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const (
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TypeClientHello = 0x01
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TypeServerHello = 0x02
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)
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// TLS extension numbers.
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const (
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extServerName = 0x0000
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extALPN = 0x0010
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extSupportedVersions = 0x002b
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extEncryptedClientHello = 0xfe0d
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)
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func ParseTLSClientHelloMsgData(chBuf *utils.ByteBuffer) analyzer.PropMap {
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var ok bool
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m := make(analyzer.PropMap)
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// Version, random & session ID length combined are within 35 bytes,
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@ -76,7 +95,7 @@ func ParseTLSClientHello(chBuf *utils.ByteBuffer) analyzer.PropMap {
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return m
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}
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func ParseTLSServerHello(shBuf *utils.ByteBuffer) analyzer.PropMap {
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func ParseTLSServerHelloMsgData(shBuf *utils.ByteBuffer) analyzer.PropMap {
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var ok bool
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m := make(analyzer.PropMap)
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// Version, random & session ID length combined are within 35 bytes,
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@ -133,7 +152,7 @@ func ParseTLSServerHello(shBuf *utils.ByteBuffer) analyzer.PropMap {
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func parseTLSExtensions(extType uint16, extDataBuf *utils.ByteBuffer, m analyzer.PropMap) bool {
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switch extType {
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case 0x0000: // SNI
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case extServerName:
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ok := extDataBuf.Skip(2) // Ignore list length, we only care about the first entry for now
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if !ok {
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// Not enough data for list length
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@ -154,7 +173,7 @@ func parseTLSExtensions(extType uint16, extDataBuf *utils.ByteBuffer, m analyzer
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// Not enough data for SNI
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return false
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}
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case 0x0010: // ALPN
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case extALPN:
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ok := extDataBuf.Skip(2) // Ignore list length, as we read until the end
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if !ok {
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// Not enough data for list length
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@ -175,7 +194,7 @@ func parseTLSExtensions(extType uint16, extDataBuf *utils.ByteBuffer, m analyzer
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alpnList = append(alpnList, alpn)
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}
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m["alpn"] = alpnList
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case 0x002b: // Supported Versions
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case extSupportedVersions:
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if extDataBuf.Len() == 2 {
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// Server only selects one version
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m["supported_versions"], _ = extDataBuf.GetUint16(false, true)
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@ -197,7 +216,7 @@ func parseTLSExtensions(extType uint16, extDataBuf *utils.ByteBuffer, m analyzer
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}
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m["supported_versions"] = versions
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}
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case 0xfe0d: // ECH
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case extEncryptedClientHello:
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// We can't parse ECH for now, just set a flag
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m["ech"] = true
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}
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@ -44,12 +44,12 @@ type tlsStream struct {
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func newTLSStream(logger analyzer.Logger) *tlsStream {
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s := &tlsStream{logger: logger, reqBuf: &utils.ByteBuffer{}, respBuf: &utils.ByteBuffer{}}
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s.reqLSM = utils.NewLinearStateMachine(
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s.tlsClientHelloSanityCheck,
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s.parseClientHello,
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s.tlsClientHelloPreprocess,
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s.parseClientHelloData,
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)
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s.respLSM = utils.NewLinearStateMachine(
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s.tlsServerHelloSanityCheck,
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s.parseServerHello,
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s.tlsServerHelloPreprocess,
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s.parseServerHelloData,
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)
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return s
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}
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@ -89,61 +89,105 @@ func (s *tlsStream) Feed(rev, start, end bool, skip int, data []byte) (u *analyz
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return update, cancelled || (s.reqDone && s.respDone)
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}
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func (s *tlsStream) tlsClientHelloSanityCheck() utils.LSMAction {
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data, ok := s.reqBuf.Get(9, true)
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// tlsClientHelloPreprocess validates ClientHello message.
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//
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// During validation, message header and first handshake header may be removed
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// from `s.reqBuf`.
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func (s *tlsStream) tlsClientHelloPreprocess() utils.LSMAction {
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// headers size: content type (1 byte) + legacy protocol version (2 bytes) +
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// + content length (2 bytes) + message type (1 byte) +
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// + handshake length (3 bytes)
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const headersSize = 9
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// minimal data size: protocol version (2 bytes) + random (32 bytes) +
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// + session ID (1 byte) + cipher suites (4 bytes) +
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// + compression methods (2 bytes) + no extensions
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const minDataSize = 41
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header, ok := s.reqBuf.Get(headersSize, true)
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if !ok {
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// not a full header yet
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return utils.LSMActionPause
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}
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if data[0] != 0x16 || data[5] != 0x01 {
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// Not a TLS handshake, or not a client hello
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if header[0] != internal.RecordTypeHandshake || header[5] != internal.TypeClientHello {
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return utils.LSMActionCancel
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}
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s.clientHelloLen = int(data[6])<<16 | int(data[7])<<8 | int(data[8])
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if s.clientHelloLen < 41 {
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// 2 (Protocol Version) +
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// 32 (Random) +
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// 1 (Session ID Length) +
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// 2 (Cipher Suites Length) +_ws.col.protocol == "TLSv1.3"
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// 2 (Cipher Suite) +
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// 1 (Compression Methods Length) +
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// 1 (Compression Method) +
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// No extensions
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// This should be the bare minimum for a client hello
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s.clientHelloLen = int(header[6])<<16 | int(header[7])<<8 | int(header[8])
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if s.clientHelloLen < minDataSize {
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return utils.LSMActionCancel
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}
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// TODO: something is missing. See:
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// const messageHeaderSize = 4
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// fullMessageLen := int(header[3])<<8 | int(header[4])
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// msgNo := fullMessageLen / int(messageHeaderSize+s.serverHelloLen)
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// if msgNo != 1 {
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// // what here?
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// }
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// if messageNo != int(messageNo) {
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// // what here?
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// }
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return utils.LSMActionNext
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}
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func (s *tlsStream) tlsServerHelloSanityCheck() utils.LSMAction {
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data, ok := s.respBuf.Get(9, true)
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// tlsServerHelloPreprocess validates ServerHello message.
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//
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// During validation, message header and first handshake header may be removed
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// from `s.reqBuf`.
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func (s *tlsStream) tlsServerHelloPreprocess() utils.LSMAction {
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// header size: content type (1 byte) + legacy protocol version (2 byte) +
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// + content length (2 byte) + message type (1 byte) +
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// + handshake length (3 byte)
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const headersSize = 9
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// minimal data size: server version (2 byte) + random (32 byte) +
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// + session ID (>=1 byte) + cipher suite (2 byte) +
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// + compression method (1 byte) + no extensions
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const minDataSize = 38
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header, ok := s.respBuf.Get(headersSize, true)
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if !ok {
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// not a full header yet
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return utils.LSMActionPause
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}
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if data[0] != 0x16 || data[5] != 0x02 {
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// Not a TLS handshake, or not a server hello
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if header[0] != internal.RecordTypeHandshake || header[5] != internal.TypeServerHello {
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return utils.LSMActionCancel
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}
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s.serverHelloLen = int(data[6])<<16 | int(data[7])<<8 | int(data[8])
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if s.serverHelloLen < 38 {
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// 2 (Protocol Version) +
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// 32 (Random) +
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// 1 (Session ID Length) +
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// 2 (Cipher Suite) +
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// 1 (Compression Method) +
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// No extensions
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// This should be the bare minimum for a server hello
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s.serverHelloLen = int(header[6])<<16 | int(header[7])<<8 | int(header[8])
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if s.serverHelloLen < minDataSize {
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return utils.LSMActionCancel
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}
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// TODO: something is missing. See example:
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// const messageHeaderSize = 4
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// fullMessageLen := int(header[3])<<8 | int(header[4])
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// msgNo := fullMessageLen / int(messageHeaderSize+s.serverHelloLen)
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// if msgNo != 1 {
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// // what here?
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// }
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// if messageNo != int(messageNo) {
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// // what here?
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// }
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return utils.LSMActionNext
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}
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func (s *tlsStream) parseClientHello() utils.LSMAction {
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// parseClientHelloData converts valid ClientHello message data (without
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// headers) into `analyzer.PropMap`.
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//
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// Parsing error may leave `s.reqBuf` in an unusable state.
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func (s *tlsStream) parseClientHelloData() utils.LSMAction {
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chBuf, ok := s.reqBuf.GetSubBuffer(s.clientHelloLen, true)
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if !ok {
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// Not a full client hello yet
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return utils.LSMActionPause
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}
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m := internal.ParseTLSClientHello(chBuf)
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m := internal.ParseTLSClientHelloMsgData(chBuf)
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if m == nil {
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return utils.LSMActionCancel
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} else {
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@ -153,13 +197,17 @@ func (s *tlsStream) parseClientHello() utils.LSMAction {
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}
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}
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func (s *tlsStream) parseServerHello() utils.LSMAction {
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// parseServerHelloData converts valid ServerHello message data (without
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// headers) into `analyzer.PropMap`.
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//
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// Parsing error may leave `s.respBuf` in an unusable state.
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func (s *tlsStream) parseServerHelloData() utils.LSMAction {
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shBuf, ok := s.respBuf.GetSubBuffer(s.serverHelloLen, true)
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if !ok {
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// Not a full server hello yet
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return utils.LSMActionPause
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}
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m := internal.ParseTLSServerHello(shBuf)
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m := internal.ParseTLSServerHelloMsgData(shBuf)
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if m == nil {
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return utils.LSMActionCancel
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} else {
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@ -36,41 +36,40 @@ type quicStream struct {
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}
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func (s *quicStream) Feed(rev bool, data []byte) (u *analyzer.PropUpdate, done bool) {
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// minimal data size: protocol version (2 bytes) + random (32 bytes) +
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// + session ID (1 byte) + cipher suites (4 bytes) +
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// + compression methods (2 bytes) + no extensions
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const minDataSize = 41
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if rev {
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// We don't support server direction for now
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s.invalidCount++
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return nil, s.invalidCount >= quicInvalidCountThreshold
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}
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pl, err := quic.ReadCryptoPayload(data)
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if err != nil || len(pl) < 4 {
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if err != nil || len(pl) < 4 { // FIXME: isn't length checked inside quic.ReadCryptoPayload? Also, what about error handling?
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s.invalidCount++
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return nil, s.invalidCount >= quicInvalidCountThreshold
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}
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// Should be a TLS client hello
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if pl[0] != 0x01 {
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// Not a client hello
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if pl[0] != internal.TypeClientHello {
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s.invalidCount++
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return nil, s.invalidCount >= quicInvalidCountThreshold
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}
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chLen := int(pl[1])<<16 | int(pl[2])<<8 | int(pl[3])
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if chLen < 41 {
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// 2 (Protocol Version) +
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// 32 (Random) +
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// 1 (Session ID Length) +
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// 2 (Cipher Suites Length) +_ws.col.protocol == "TLSv1.3"
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// 2 (Cipher Suite) +
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// 1 (Compression Methods Length) +
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// 1 (Compression Method) +
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// No extensions
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// This should be the bare minimum for a client hello
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if chLen < minDataSize {
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s.invalidCount++
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return nil, s.invalidCount >= quicInvalidCountThreshold
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}
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m := internal.ParseTLSClientHello(&utils.ByteBuffer{Buf: pl[4:]})
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m := internal.ParseTLSClientHelloMsgData(&utils.ByteBuffer{Buf: pl[4:]})
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if m == nil {
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s.invalidCount++
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return nil, s.invalidCount >= quicInvalidCountThreshold
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}
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return &analyzer.PropUpdate{
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Type: analyzer.PropUpdateMerge,
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M: analyzer.PropMap{"req": m},
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