Merge remote-tracking branch 'origin/stable' into v2

This commit is contained in:
9seconds
2026-04-01 17:17:22 +02:00
17 changed files with 567 additions and 128 deletions
+1 -1
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@@ -122,7 +122,7 @@ jobs:
artifacts: artifacts:
name: Build release artifacts name: Build release artifacts
runs-on: ubuntu-latest runs-on: ubuntu-latest
timeout-minutes: 10 timeout-minutes: 20
steps: steps:
- name: Checkout - name: Checkout
uses: actions/checkout@v6 uses: actions/checkout@v6
+1 -1
View File
@@ -33,7 +33,7 @@ RUN go mod download
COPY . /app COPY . /app
RUN set -x \ RUN set -x \
&& version="$(git describe --exact-match HEAD 2>/dev/null || git describe --tags --always)" \ && version="$(git describe --exact-match HEAD 2>/dev/null || git describe --tags --always 2>/dev/null || echo dev)" \
&& go build \ && go build \
-trimpath \ -trimpath \
-mod=readonly \ -mod=readonly \
+2
View File
@@ -29,6 +29,8 @@ are the most notable:
* [Official](https://github.com/TelegramMessenger/MTProxy) * [Official](https://github.com/TelegramMessenger/MTProxy)
* [Python](https://github.com/alexbers/mtprotoproxy) * [Python](https://github.com/alexbers/mtprotoproxy)
* [Erlang](https://github.com/seriyps/mtproto_proxy) * [Erlang](https://github.com/seriyps/mtproto_proxy)
* [Teleproxy (C)](https://github.com/teleproxy/teleproxy)
* [mtproto.zig (Zig)](https://github.com/sleep3r/mtproto.zig)
* [Telemt (Rust)](https://github.com/telemt/telemt) * [Telemt (Rust)](https://github.com/telemt/telemt)
You can use any of these. They work great and all implementations have You can use any of these. They work great and all implementations have
+1 -1
View File
@@ -12,7 +12,7 @@ type StableBloomFilterTestSuite struct {
} }
func (suite *StableBloomFilterTestSuite) TestOp() { func (suite *StableBloomFilterTestSuite) TestOp() {
filter := antireplay.NewStableBloomFilter(500, 0.001) filter := antireplay.NewStableBloomFilter(100000, 0.001)
suite.False(filter.SeenBefore([]byte{1, 2, 3})) suite.False(filter.SeenBefore([]byte{1, 2, 3}))
suite.False(filter.SeenBefore([]byte{4, 5, 6})) suite.False(filter.SeenBefore([]byte{4, 5, 6}))
+4 -4
View File
@@ -52,10 +52,10 @@ type Config struct {
Blocklist ListConfig `json:"blocklist"` Blocklist ListConfig `json:"blocklist"`
Allowlist ListConfig `json:"allowlist"` Allowlist ListConfig `json:"allowlist"`
Doppelganger struct { Doppelganger struct {
URLs []TypeHttpsURL `json:"urls"` URLs []TypeHttpsURL `json:"urls"`
Repeats TypeConcurrency `json:"repeats_per_raid"` Repeats TypeConcurrency `json:"repeats_per_raid"`
UpdateEach TypeDuration `json:"raid_each"` UpdateEach TypeDuration `json:"raid_each"`
DRS TypeBool `json:"drs"` DRS TypeBool `json:"drs"`
} `json:"doppelganger"` } `json:"doppelganger"`
} `json:"defense"` } `json:"defense"`
Network struct { Network struct {
+4 -4
View File
@@ -47,10 +47,10 @@ type tomlConfig struct {
UpdateEach string `toml:"update-each" json:"updateEach,omitempty"` UpdateEach string `toml:"update-each" json:"updateEach,omitempty"`
} `toml:"allowlist" json:"allowlist,omitempty"` } `toml:"allowlist" json:"allowlist,omitempty"`
Doppelganger struct { Doppelganger struct {
URLs []string `toml:"urls" json:"urls,omitempty"` URLs []string `toml:"urls" json:"urls,omitempty"`
Repeats uint `toml:"repeats-per-raid" json:"repeats_per_raid,omitempty"` Repeats uint `toml:"repeats-per-raid" json:"repeats_per_raid,omitempty"`
UpdateEach string `toml:"raid-each" json:"raid_each,omitempty"` UpdateEach string `toml:"raid-each" json:"raid_each,omitempty"`
DRS bool `toml:"drs" json:"drs,omitempty"` DRS bool `toml:"drs" json:"drs,omitempty"`
} `toml:"doppelganger" json:"doppelganger,omitempty"` } `toml:"doppelganger" json:"doppelganger,omitempty"`
} `toml:"defense" json:"defense,omitempty"` } `toml:"defense" json:"defense,omitempty"`
Network struct { Network struct {
+16 -16
View File
@@ -82,40 +82,40 @@ checksum = "sha256:4932cfca5e75bf60fe1c576edf459e5e809e6644664a068185d64b84af3fa
url = "https://github.com/golangci/golangci-lint/releases/download/v2.11.4/golangci-lint-2.11.4-windows-amd64.zip" url = "https://github.com/golangci/golangci-lint/releases/download/v2.11.4/golangci-lint-2.11.4-windows-amd64.zip"
[[tools.goreleaser]] [[tools.goreleaser]]
version = "2.14.3" version = "2.15.2"
backend = "aqua:goreleaser/goreleaser" backend = "aqua:goreleaser/goreleaser"
[tools.goreleaser."platforms.linux-arm64"] [tools.goreleaser."platforms.linux-arm64"]
checksum = "sha256:581a10e53c1176b3e81ee45cf531e02dbf899db0bc7b795669347df4276ce948" checksum = "sha256:5db66761a98f6693161e49e1a95d28d2673a892ba60cb4a5e16736cafd41c4c9"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Linux_arm64.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Linux_arm64.tar.gz"
provenance = "cosign" provenance = "cosign"
[tools.goreleaser."platforms.linux-arm64-musl"] [tools.goreleaser."platforms.linux-arm64-musl"]
checksum = "sha256:581a10e53c1176b3e81ee45cf531e02dbf899db0bc7b795669347df4276ce948" checksum = "sha256:5db66761a98f6693161e49e1a95d28d2673a892ba60cb4a5e16736cafd41c4c9"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Linux_arm64.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Linux_arm64.tar.gz"
provenance = "cosign" provenance = "cosign"
[tools.goreleaser."platforms.linux-x64"] [tools.goreleaser."platforms.linux-x64"]
checksum = "sha256:dc7faeeeb6da8bdfda788626263a4ae725892a8c7504b975c3234127d4a44579" checksum = "sha256:0ebdbf0353aba566b969dde746cc4e4806f96c27aa2f3971b229a9df7611fedc"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Linux_x86_64.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Linux_x86_64.tar.gz"
provenance = "cosign" provenance = "cosign"
[tools.goreleaser."platforms.linux-x64-musl"] [tools.goreleaser."platforms.linux-x64-musl"]
checksum = "sha256:dc7faeeeb6da8bdfda788626263a4ae725892a8c7504b975c3234127d4a44579" checksum = "sha256:0ebdbf0353aba566b969dde746cc4e4806f96c27aa2f3971b229a9df7611fedc"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Linux_x86_64.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Linux_x86_64.tar.gz"
provenance = "cosign" provenance = "cosign"
[tools.goreleaser."platforms.macos-arm64"] [tools.goreleaser."platforms.macos-arm64"]
checksum = "sha256:3507798489e107a78aff36b169de48148a335ac26eb3161608d905f3f3a957bd" checksum = "sha256:0e6bd67688ac949780bf1166813a91f89856898ef4c40d7d46c2c74ebaa4b9ee"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Darwin_all.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Darwin_all.tar.gz"
provenance = "cosign" provenance = "github-attestations"
[tools.goreleaser."platforms.macos-x64"] [tools.goreleaser."platforms.macos-x64"]
checksum = "sha256:3507798489e107a78aff36b169de48148a335ac26eb3161608d905f3f3a957bd" checksum = "sha256:0e6bd67688ac949780bf1166813a91f89856898ef4c40d7d46c2c74ebaa4b9ee"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Darwin_all.tar.gz" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Darwin_all.tar.gz"
provenance = "cosign" provenance = "cosign"
[tools.goreleaser."platforms.windows-x64"] [tools.goreleaser."platforms.windows-x64"]
checksum = "sha256:3deea8ff471aa258a2d99f3e5302971d7028647ae8ddaf103257a8113e485a31" checksum = "sha256:7459832946dbe122c144f8d7f87484d8572ca005b779310aa6bb03346e8de17a"
url = "https://github.com/goreleaser/goreleaser/releases/download/v2.14.3/goreleaser_Windows_x86_64.zip" url = "https://github.com/goreleaser/goreleaser/releases/download/v2.15.2/goreleaser_Windows_x86_64.zip"
provenance = "cosign" provenance = "cosign"
+14 -17
View File
@@ -3,6 +3,7 @@ package mtglib
import ( import (
"bytes" "bytes"
"context" "context"
"errors"
"fmt" "fmt"
"io" "io"
"net" "net"
@@ -102,7 +103,7 @@ func newConnProxyProtocol(source, target essentials.Conn) *connProxyProtocol {
// Both directions update the same timestamp so that activity in one direction // Both directions update the same timestamp so that activity in one direction
// prevents the other (idle) direction from timing out. // prevents the other (idle) direction from timing out.
type idleTracker struct { type idleTracker struct {
lastActive atomic.Int64 // unix nanos lastActive atomic.Pointer[time.Time]
timeout time.Duration timeout time.Duration
} }
@@ -114,13 +115,12 @@ func newIdleTracker(timeout time.Duration) *idleTracker {
} }
func (t *idleTracker) touch() { func (t *idleTracker) touch() {
t.lastActive.Store(time.Now().UnixNano()) stamp := time.Now()
t.lastActive.Store(&stamp)
} }
func (t *idleTracker) isIdle() bool { func (t *idleTracker) isIdle() bool {
last := time.Unix(0, t.lastActive.Load()) return time.Since(*t.lastActive.Load()) >= t.timeout
return time.Since(last) >= t.timeout
} }
type connIdleTimeout struct { type connIdleTimeout struct {
@@ -130,25 +130,22 @@ type connIdleTimeout struct {
} }
func (c connIdleTimeout) Read(b []byte) (int, error) { func (c connIdleTimeout) Read(b []byte) (int, error) {
var netErr net.Error
for { for {
c.SetReadDeadline(time.Now().Add(c.tracker.timeout)) //nolint: errcheck c.SetReadDeadline(time.Now().Add(c.tracker.timeout)) //nolint: errcheck
n, err := c.Conn.Read(b) n, err := c.Conn.Read(b)
if n > 0 {
switch {
case err == nil:
c.tracker.touch() c.tracker.touch()
return n, nil
return n, err //nolint: wrapcheck case errors.As(err, &netErr) && netErr.Timeout() && !c.tracker.isIdle():
continue
} }
if err != nil { return n, err
if netErr, ok := err.(net.Error); ok && netErr.Timeout() && !c.tracker.isIdle() { //nolint: errorlint
continue
}
return 0, err //nolint: wrapcheck
}
return 0, nil
} }
} }
+6 -2
View File
@@ -5,15 +5,19 @@ type dcView struct {
} }
func (d dcView) getV4(dc int) []Addr { func (d dcView) getV4(dc int) []Addr {
addrs := d.publicConfigs.getV4(dc) var addrs []Addr
addrs = append(addrs, defaultDCAddrSet.getV4(dc)...) addrs = append(addrs, defaultDCAddrSet.getV4(dc)...)
addrs = append(addrs, d.publicConfigs.getV4(dc)...)
return addrs return addrs
} }
func (d dcView) getV6(dc int) []Addr { func (d dcView) getV6(dc int) []Addr {
addrs := d.publicConfigs.getV6(dc) var addrs []Addr
addrs = append(addrs, defaultDCAddrSet.getV6(dc)...) addrs = append(addrs, defaultDCAddrSet.getV6(dc)...)
addrs = append(addrs, d.publicConfigs.getV6(dc)...)
return addrs return addrs
} }
+12 -6
View File
@@ -61,23 +61,29 @@ func (s Scout) learn(ctx context.Context, url string) (ScoutResult, error) {
client.CloseIdleConnections() client.CloseIdleConnections()
} }
if err != nil || len(results.data) == 0 { if err != nil {
return ScoutResult{}, err return ScoutResult{}, err
} }
data, writeIndex := results.Snapshot()
if len(data) == 0 {
return ScoutResult{}, nil
}
var result ScoutResult var result ScoutResult
// Compute inter-record durations (existing logic). // Compute inter-record durations (existing logic).
lastTimestamp := time.Time{} lastTimestamp := time.Time{}
for i, v := range results.data { for i, v := range data {
if v.recordType != tls.TypeApplicationData { if v.recordType != tls.TypeApplicationData {
continue continue
} }
if lastTimestamp.IsZero() { if lastTimestamp.IsZero() {
if i > 0 { if i > 0 {
lastTimestamp = results.data[i-1].timestamp lastTimestamp = data[i-1].timestamp
} else { } else {
lastTimestamp = v.timestamp lastTimestamp = v.timestamp
} }
@@ -90,12 +96,12 @@ func (s Scout) learn(ctx context.Context, url string) (ScoutResult, error) {
// Compute cert size: sum of ApplicationData payload between CCS and // Compute cert size: sum of ApplicationData payload between CCS and
// the first client Write (which marks the end of server handshake). // the first client Write (which marks the end of server handshake).
seenCCS := false seenCCS := false
boundary := results.writeIndex boundary := writeIndex
if boundary < 0 { if boundary < 0 {
boundary = len(results.data) boundary = len(data)
} }
for i, v := range results.data { for i, v := range data {
if i >= boundary { if i >= boundary {
break break
} }
+20 -1
View File
@@ -1,6 +1,10 @@
package doppel package doppel
import "time" import (
"slices"
"sync"
"time"
)
const ( const (
ScoutConnCollectedPreallocSize = 100 ScoutConnCollectedPreallocSize = 100
@@ -13,23 +17,38 @@ type ScoutConnResult struct {
} }
type ScoutConnCollected struct { type ScoutConnCollected struct {
mu sync.Mutex
data []ScoutConnResult data []ScoutConnResult
writeIndex int // index at which client first wrote post-handshake data; -1 if not set writeIndex int // index at which client first wrote post-handshake data; -1 if not set
} }
func (s *ScoutConnCollected) Add(record byte, payloadLen int) { func (s *ScoutConnCollected) Add(record byte, payloadLen int) {
s.mu.Lock()
s.data = append(s.data, ScoutConnResult{ s.data = append(s.data, ScoutConnResult{
timestamp: time.Now(), timestamp: time.Now(),
recordType: record, recordType: record,
payloadLen: payloadLen, payloadLen: payloadLen,
}) })
s.mu.Unlock()
} }
// MarkWrite records the current data length as the handshake boundary. // MarkWrite records the current data length as the handshake boundary.
func (s *ScoutConnCollected) MarkWrite() { func (s *ScoutConnCollected) MarkWrite() {
s.mu.Lock()
if s.writeIndex < 0 { if s.writeIndex < 0 {
s.writeIndex = len(s.data) s.writeIndex = len(s.data)
} }
s.mu.Unlock()
}
// Snapshot returns a copy of the collected data and the write index.
func (s *ScoutConnCollected) Snapshot() ([]ScoutConnResult, int) {
s.mu.Lock()
snapshot := slices.Clone(s.data)
writeIndex := s.writeIndex
s.mu.Unlock()
return snapshot, writeIndex
} }
func NewScoutConnCollected() *ScoutConnCollected { func NewScoutConnCollected() *ScoutConnCollected {
@@ -1,6 +1,7 @@
package doppel package doppel
import ( import (
"sync"
"testing" "testing"
"time" "time"
@@ -16,8 +17,10 @@ func (suite *ScoutConnCollectedTestSuite) TestAddSingle() {
collected := NewScoutConnCollected() collected := NewScoutConnCollected()
collected.Add(tls.TypeApplicationData, 100) collected.Add(tls.TypeApplicationData, 100)
suite.Len(collected.data, 1) data, _ := collected.Snapshot()
suite.Equal(byte(tls.TypeApplicationData), collected.data[0].recordType)
suite.Len(data, 1)
suite.Equal(byte(tls.TypeApplicationData), data[0].recordType)
} }
func (suite *ScoutConnCollectedTestSuite) TestAddTimestampsAreMonotonic() { func (suite *ScoutConnCollectedTestSuite) TestAddTimestampsAreMonotonic() {
@@ -31,11 +34,52 @@ func (suite *ScoutConnCollectedTestSuite) TestAddTimestampsAreMonotonic() {
time.Sleep(time.Microsecond) time.Sleep(time.Microsecond)
collected.Add(tls.TypeApplicationData, 100) collected.Add(tls.TypeApplicationData, 100)
for i := 1; i < len(collected.data); i++ { data, _ := collected.Snapshot()
suite.True(collected.data[i].timestamp.After(collected.data[i-1].timestamp))
for i := 1; i < len(data); i++ {
suite.True(data[i].timestamp.After(data[i-1].timestamp))
} }
} }
func (suite *ScoutConnCollectedTestSuite) TestConcurrentAddSnapshot() {
collected := NewScoutConnCollected()
var wg sync.WaitGroup
wg.Add(3)
go func() {
defer wg.Done()
for i := 0; i < 1000; i++ {
collected.Add(tls.TypeApplicationData, i)
}
}()
go func() {
defer wg.Done()
for i := 0; i < 100; i++ {
collected.MarkWrite()
}
}()
go func() {
defer wg.Done()
for i := 0; i < 1000; i++ {
// call Snapshot concurrently to exercise the lock under -race
collected.Snapshot() //nolint:errcheck
}
}()
wg.Wait()
data, writeIndex := collected.Snapshot()
suite.Len(data, 1000)
suite.GreaterOrEqual(writeIndex, 0)
}
func TestScoutConnCollected(t *testing.T) { func TestScoutConnCollected(t *testing.T) {
t.Parallel() t.Parallel()
suite.Run(t, &ScoutConnCollectedTestSuite{}) suite.Run(t, &ScoutConnCollectedTestSuite{})
+7 -69
View File
@@ -11,8 +11,6 @@ import (
"net" "net"
"slices" "slices"
"time" "time"
"github.com/9seconds/mtg/v2/mtglib/internal/tls"
) )
const ( const (
@@ -56,25 +54,17 @@ func ReadClientHello(
// 4. New digest should be all 0 except of last 4 bytes // 4. New digest should be all 0 except of last 4 bytes
// 5. Last 4 bytes are little endian uint32 of UNIX timestamp when // 5. Last 4 bytes are little endian uint32 of UNIX timestamp when
// this message was created. // this message was created.
handshakeCopyBuf := &bytes.Buffer{} clientHelloCopy, handshakeReader, err := parseClientHello(conn)
reader := io.TeeReader(conn, handshakeCopyBuf)
reader, err := parseTLSHeader(reader)
if err != nil { if err != nil {
return nil, fmt.Errorf("cannot parse tls header: %w", err) return nil, fmt.Errorf("cannot read client hello: %w", err)
} }
reader, err = parseHandshakeHeader(reader) hello, err := parseHandshake(handshakeReader)
if err != nil {
return nil, fmt.Errorf("cannot parse handshake header: %w", err)
}
hello, err := parseHandshake(reader)
if err != nil { if err != nil {
return nil, fmt.Errorf("cannot parse handshake: %w", err) return nil, fmt.Errorf("cannot parse handshake: %w", err)
} }
sniHostnames, err := parseSNI(reader) sniHostnames, err := parseSNI(handshakeReader)
if err != nil { if err != nil {
return nil, fmt.Errorf("cannot parse SNI: %w", err) return nil, fmt.Errorf("cannot parse SNI: %w", err)
} }
@@ -85,10 +75,10 @@ func ReadClientHello(
digest := hmac.New(sha256.New, secret) digest := hmac.New(sha256.New, secret)
// we write a copy of the handshake with client random all nullified. // we write a copy of the handshake with client random all nullified.
digest.Write(handshakeCopyBuf.Next(RandomOffset)) digest.Write(clientHelloCopy.Next(RandomOffset))
handshakeCopyBuf.Next(RandomLen) clientHelloCopy.Next(RandomLen)
digest.Write(emptyRandom[:]) digest.Write(emptyRandom[:])
digest.Write(handshakeCopyBuf.Bytes()) digest.Write(clientHelloCopy.Bytes())
computed := digest.Sum(nil) computed := digest.Sum(nil)
@@ -110,58 +100,6 @@ func ReadClientHello(
return hello, nil return hello, nil
} }
func parseTLSHeader(r io.Reader) (io.Reader, error) {
// record_type(1) + version(2) + size(2)
// 16 - type is 0x16 (handshake record)
// 03 01 - protocol version is "3,1" (also known as TLS 1.0)
// 00 f8 - 0xF8 (248) bytes of handshake message follows
header := [1 + 2 + 2]byte{}
if _, err := io.ReadFull(r, header[:]); err != nil {
return nil, fmt.Errorf("cannot read record header: %w", err)
}
if header[0] != tls.TypeHandshake {
return nil, fmt.Errorf("unexpected record type %#x", header[0])
}
if header[1] != 3 || header[2] != 1 {
return nil, fmt.Errorf("unexpected protocol version %#x %#x", header[1], header[2])
}
length := int64(binary.BigEndian.Uint16(header[3:]))
buf := &bytes.Buffer{}
_, err := io.CopyN(buf, r, length)
return buf, err
}
func parseHandshakeHeader(r io.Reader) (io.Reader, error) {
// type(1) + size(3 / uint24)
// 01 - handshake message type 0x01 (client hello)
// 00 00 f4 - 0xF4 (244) bytes of client hello data follows
header := [1 + 3]byte{}
if _, err := io.ReadFull(r, header[:]); err != nil {
return nil, fmt.Errorf("cannot read handshake header: %w", err)
}
if header[0] != TypeHandshakeClient {
return nil, fmt.Errorf("incorrect handshake type: %#x", header[0])
}
// unfortunately there is not uint24 in golang, so we just reust header
header[0] = 0
length := int64(binary.BigEndian.Uint32(header[:]))
buf := &bytes.Buffer{}
_, err := io.CopyN(buf, r, length)
return buf, err
}
func parseHandshake(r io.Reader) (*ClientHello, error) { func parseHandshake(r io.Reader) (*ClientHello, error) {
// A protocol version of "3,3" (meaning TLS 1.2) is given. // A protocol version of "3,3" (meaning TLS 1.2) is given.
header := [2]byte{} header := [2]byte{}
@@ -3,8 +3,10 @@ package fake_test
import ( import (
"bytes" "bytes"
"encoding/binary" "encoding/binary"
"encoding/json"
"errors" "errors"
"io" "io"
"os"
"testing" "testing"
"time" "time"
@@ -393,3 +395,273 @@ func TestParseClientHelloSNI(t *testing.T) {
t.Parallel() t.Parallel()
suite.Run(t, &ParseClientHelloSNITestSuite{}) suite.Run(t, &ParseClientHelloSNITestSuite{})
} }
// fragmentTLSRecord splits a single TLS record into n TLS records by
// dividing the payload into roughly equal parts. Each part gets its own
// TLS record header with the same record type and version.
func fragmentTLSRecord(t testing.TB, full []byte, n int) []byte {
t.Helper()
recordType := full[0]
version := full[1:3]
payload := full[tls.SizeHeader:]
chunkSize := len(payload) / n
result := &bytes.Buffer{}
for i := 0; i < n; i++ {
start := i * chunkSize
end := start + chunkSize
if i == n-1 {
end = len(payload)
}
chunk := payload[start:end]
result.WriteByte(recordType)
result.Write(version)
require.NoError(t, binary.Write(result, binary.BigEndian, uint16(len(chunk))))
result.Write(chunk)
}
return result.Bytes()
}
// splitPayloadAt creates two TLS records from a single record by splitting
// the payload at the given byte position.
func splitPayloadAt(t testing.TB, full []byte, pos int) []byte {
t.Helper()
payload := full[tls.SizeHeader:]
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(t, binary.Write(buf, binary.BigEndian, uint16(pos)))
buf.Write(payload[:pos])
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(t, binary.Write(buf, binary.BigEndian, uint16(len(payload)-pos)))
buf.Write(payload[pos:])
return buf.Bytes()
}
type ParseClientHelloFragmentedTestSuite struct {
suite.Suite
secret mtglib.Secret
snapshot *clientHelloSnapshot
}
func (s *ParseClientHelloFragmentedTestSuite) SetupSuite() {
parsed, err := mtglib.ParseSecret(
"ee367a189aee18fa31c190054efd4a8e9573746f726167652e676f6f676c65617069732e636f6d",
)
require.NoError(s.T(), err)
s.secret = parsed
fileData, err := os.ReadFile("testdata/client-hello-ok-19dfe38384b9884b.json")
require.NoError(s.T(), err)
s.snapshot = &clientHelloSnapshot{}
require.NoError(s.T(), json.Unmarshal(fileData, s.snapshot))
}
func (s *ParseClientHelloFragmentedTestSuite) makeConn(data []byte) *parseClientHelloConnMock {
readBuf := &bytes.Buffer{}
readBuf.Write(data)
connMock := &parseClientHelloConnMock{
readBuf: readBuf,
}
connMock.
On("SetReadDeadline", mock.AnythingOfType("time.Time")).
Twice().
Return(nil)
return connMock
}
func (s *ParseClientHelloFragmentedTestSuite) TestReassemblySuccess() {
full := s.snapshot.GetFull()
tests := []struct {
name string
data []byte
}{
{"two equal fragments", fragmentTLSRecord(s.T(), full, 2)},
{"three equal fragments", fragmentTLSRecord(s.T(), full, 3)},
{"single byte first fragment", splitPayloadAt(s.T(), full, 1)},
{"three byte first fragment", splitPayloadAt(s.T(), full, 3)},
}
for _, tt := range tests {
s.Run(tt.name, func() {
connMock := s.makeConn(tt.data)
defer connMock.AssertExpectations(s.T())
hello, err := fake.ReadClientHello(
connMock,
s.secret.Key[:],
s.secret.Host,
TolerateTime,
)
s.Require().NoError(err)
s.Equal(s.snapshot.GetRandom(), hello.Random[:])
s.Equal(s.snapshot.GetSessionID(), hello.SessionID)
s.Equal(uint16(s.snapshot.CipherSuite), hello.CipherSuite)
})
}
}
func (s *ParseClientHelloFragmentedTestSuite) TestReassemblyErrors() {
full := s.snapshot.GetFull()
payload := full[tls.SizeHeader:]
tests := []struct {
name string
buildData func() []byte
errMsg string
}{
{
name: "wrong continuation record type",
buildData: func() []byte {
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(10)))
buf.Write(payload[:10])
// Wrong type: application data instead of handshake
buf.WriteByte(tls.TypeApplicationData)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(len(payload)-10)))
buf.Write(payload[10:])
return buf.Bytes()
},
errMsg: "unexpected record type",
},
{
name: "too many continuation records",
buildData: func() []byte {
// Handshake header claiming 256 bytes, but we only send 1 byte per continuation
handshakePayload := []byte{0x01, 0x00, 0x01, 0x00}
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write([]byte{3, 1})
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(len(handshakePayload))))
buf.Write(handshakePayload)
for range 11 {
buf.WriteByte(tls.TypeHandshake)
buf.Write([]byte{3, 1})
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(1)))
buf.WriteByte(0xAB)
}
return buf.Bytes()
},
errMsg: "too many fragments",
},
{
name: "zero-length continuation record",
buildData: func() []byte {
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(10)))
buf.Write(payload[:10])
// Valid header but zero-length payload
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(0)))
return buf.Bytes()
},
errMsg: "cannot read record header",
},
{
name: "wrong continuation record version",
buildData: func() []byte {
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(10)))
buf.Write(payload[:10])
// Wrong version: 3.3 instead of 3.1
buf.WriteByte(tls.TypeHandshake)
buf.Write([]byte{3, 3})
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(len(payload)-10)))
buf.Write(payload[10:])
return buf.Bytes()
},
errMsg: "unexpected protocol version",
},
{
name: "handshake message too large",
buildData: func() []byte {
// Handshake header claiming 0x010000 (65536) bytes — exceeds 0xFFFF limit
handshakePayload := []byte{0x01, 0x01, 0x00, 0x00}
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write([]byte{3, 1})
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(len(handshakePayload))))
buf.Write(handshakePayload)
return buf.Bytes()
},
errMsg: "cannot read record header",
},
{
name: "truncated continuation record header",
buildData: func() []byte {
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(10)))
buf.Write(payload[:10])
// Connection ends mid-header (only 2 bytes)
buf.WriteByte(tls.TypeHandshake)
buf.WriteByte(3)
return buf.Bytes()
},
errMsg: "cannot read record header",
},
{
name: "truncated continuation record payload",
buildData: func() []byte {
buf := &bytes.Buffer{}
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(10)))
buf.Write(payload[:10])
// Claims 100 bytes but no payload follows
buf.WriteByte(tls.TypeHandshake)
buf.Write(full[1:3])
require.NoError(s.T(), binary.Write(buf, binary.BigEndian, uint16(100)))
return buf.Bytes()
},
errMsg: "EOF",
},
}
for _, tt := range tests {
s.Run(tt.name, func() {
connMock := s.makeConn(tt.buildData())
defer connMock.AssertExpectations(s.T())
_, err := fake.ReadClientHello(
connMock,
s.secret.Key[:],
s.secret.Host,
TolerateTime,
)
s.ErrorContains(err, tt.errMsg)
})
}
}
func TestParseClientHelloFragmented(t *testing.T) {
t.Parallel()
suite.Run(t, &ParseClientHelloFragmentedTestSuite{})
}
+158
View File
@@ -0,0 +1,158 @@
package fake
import (
"bytes"
"encoding/binary"
"errors"
"fmt"
"io"
"github.com/9seconds/mtg/v2/mtglib/internal/tls"
)
const (
maxFragmentsCount = 10
)
var ErrTooManyFragments = errors.New("too many fragments")
// https://datatracker.ietf.org/doc/html/rfc5246#section-6.2.1
// client hello can be fragmented in a series of packets:
//
// Bytes on the wire:
//
// 16 03 01 00 F8 01 00 00 F4 03 03 [32 bytes random] [session_id] [ciphers] [SNI...]
// ├─────────────┤├──────────────────────────────────────────────────────────────────┤
//
// TLS record Payload (248 bytes)
// header (5B)
//
// 16 = Handshake
// 03 01 = TLS 1.0 (record layer version)
// 00 F8 = 248 bytes follow
//
// 01 = ClientHello (handshake type)
// 00 00 F4 = 244 bytes of handshake body
// 03 03 = TLS 1.2 (actual protocol version)
// ...rest of ClientHello...
//
// Fragmented record look like:
//
// Record 1:
//
// 16 03 01 00 03 01 00 00
// ├─────────────┤├──────┤
//
// TLS header 3 bytes of payload
//
// 16 = Handshake
// 03 01 = TLS 1.0
// 00 03 = only 3 bytes follow
//
// 01 = ClientHello type
// 00 00 = first 2 bytes of the uint24 length (INCOMPLETE!)
//
// Record 2:
// 16 03 01 00 F5 F4 03 03 [32 bytes random] [session_id] [ciphers] [SNI...]
// ├─────────────┤├────────────────────────────────────────────────────────────┤
//
// TLS header remaining 245 bytes of payload
//
// 16 = Handshake
// 03 01 = TLS 1.0
// 00 F5 = 245 bytes follow
//
// F4 = last byte of uint24 length (now complete: 00 00 F4 = 244)
// 03 03 = TLS 1.2
// ...rest of ClientHello continues...
//
// So it means that there could be a series of handshake packets of different
// lengths. The goal of this function is to concatenate these fragments.
type fragmentedHandshakeReader struct {
r io.Reader
buf bytes.Buffer
readFragments int
}
func (f *fragmentedHandshakeReader) Read(p []byte) (int, error) {
if n, err := f.buf.Read(p); err == nil {
return n, nil
}
f.buf.Reset()
for f.buf.Len() == 0 {
if f.readFragments > maxFragmentsCount {
return 0, ErrTooManyFragments
}
if err := f.parseNextFragment(); err != nil {
return 0, err
}
f.readFragments++
}
return f.buf.Read(p)
}
func (f *fragmentedHandshakeReader) parseNextFragment() error {
// record_type(1) + version(2) + size(2)
// 16 - type is 0x16 (handshake record)
// 03 01 - protocol version is "3,1" (also known as TLS 1.0)
// 00 f8 - 0xF8 (248) bytes of handshake message follows
header := [1 + 2 + 2]byte{}
if _, err := io.ReadFull(f.r, header[:]); err != nil {
return fmt.Errorf("cannot read record header: %w", err)
}
if header[0] != tls.TypeHandshake {
return fmt.Errorf("unexpected record type %#x", header[0])
}
if header[1] != 3 || header[2] != 1 {
return fmt.Errorf("unexpected protocol version %#x %#x", header[1], header[2])
}
length := int64(binary.BigEndian.Uint16(header[3:]))
_, err := io.CopyN(&f.buf, f.r, length)
return err
}
func parseClientHello(r io.Reader) (*bytes.Buffer, *bytes.Buffer, error) {
r = &fragmentedHandshakeReader{r: r}
header := [1 + 3]byte{}
if _, err := io.ReadFull(r, header[:]); err != nil {
return nil, nil, fmt.Errorf("cannot read handshake header: %w", err)
}
if header[0] != TypeHandshakeClient {
return nil, nil, fmt.Errorf("incorrect handshake type: %#x", header[0])
}
// unfortunately there is not uint24 in golang, so we just reuse header
header[0] = 0
length := int64(binary.BigEndian.Uint32(header[:]))
clientHelloCopy := &bytes.Buffer{}
clientHelloCopy.Write([]byte{tls.TypeHandshake, 3, 1})
binary.Write( //nolint: errcheck
clientHelloCopy,
binary.BigEndian,
// 1 for handshake type
// 3 for handshake length
uint16(1+3+length),
)
clientHelloCopy.WriteByte(TypeHandshakeClient)
clientHelloCopy.Write(header[1:])
handshakeCopy := &bytes.Buffer{}
writer := io.MultiWriter(clientHelloCopy, handshakeCopy)
_, err := io.CopyN(writer, r, length)
return clientHelloCopy, handshakeCopy, err
}
-1
View File
@@ -160,7 +160,6 @@ type ProxyOpts struct {
// DoppelGangerDRS defines if TLS Dynamic Record Sizing is active. // DoppelGangerDRS defines if TLS Dynamic Record Sizing is active.
DoppelGangerDRS bool DoppelGangerDRS bool
} }
func (p ProxyOpts) valid() error { func (p ProxyOpts) valid() error {
+1 -1
View File
@@ -175,7 +175,7 @@ func (suite *ProxyTestSuite) TestHTTPSRequest() {
addr := fmt.Sprintf("https://%s/headers", suite.ProxyAddress()) addr := fmt.Sprintf("https://%s/headers", suite.ProxyAddress())
resp, err := client.Get(addr) //nolint: noctx resp, err := client.Get(addr) //nolint: noctx
suite.NoError(err) suite.Require().NoError(err)
defer resp.Body.Close() //nolint: errcheck defer resp.Body.Close() //nolint: errcheck