config.go 8.0 KB

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  1. package shadowsocks
  2. import (
  3. "bytes"
  4. "crypto/aes"
  5. "crypto/cipher"
  6. "crypto/md5"
  7. "crypto/sha1"
  8. "io"
  9. "golang.org/x/crypto/chacha20poly1305"
  10. "golang.org/x/crypto/hkdf"
  11. "v2ray.com/core/common"
  12. "v2ray.com/core/common/buf"
  13. "v2ray.com/core/common/crypto"
  14. "v2ray.com/core/common/protocol"
  15. )
  16. // MemoryAccount is an account type converted from Account.
  17. type MemoryAccount struct {
  18. Cipher Cipher
  19. Key []byte
  20. OneTimeAuth Account_OneTimeAuth
  21. }
  22. // Equals implements protocol.Account.Equals().
  23. func (a *MemoryAccount) Equals(another protocol.Account) bool {
  24. if account, ok := another.(*MemoryAccount); ok {
  25. return bytes.Equal(a.Key, account.Key)
  26. }
  27. return false
  28. }
  29. func createAesGcm(key []byte) cipher.AEAD {
  30. block, err := aes.NewCipher(key)
  31. common.Must(err)
  32. gcm, err := cipher.NewGCM(block)
  33. common.Must(err)
  34. return gcm
  35. }
  36. func createChacha20Poly1305(key []byte) cipher.AEAD {
  37. chacha20, err := chacha20poly1305.New(key)
  38. common.Must(err)
  39. return chacha20
  40. }
  41. func (a *Account) getCipher() (Cipher, error) {
  42. switch a.CipherType {
  43. case CipherType_AES_128_CFB:
  44. return &AesCfb{KeyBytes: 16}, nil
  45. case CipherType_AES_256_CFB:
  46. return &AesCfb{KeyBytes: 32}, nil
  47. case CipherType_CHACHA20:
  48. return &ChaCha20{IVBytes: 8}, nil
  49. case CipherType_CHACHA20_IETF:
  50. return &ChaCha20{IVBytes: 12}, nil
  51. case CipherType_AES_128_GCM:
  52. return &AEADCipher{
  53. KeyBytes: 16,
  54. IVBytes: 16,
  55. AEADAuthCreator: createAesGcm,
  56. }, nil
  57. case CipherType_AES_256_GCM:
  58. return &AEADCipher{
  59. KeyBytes: 32,
  60. IVBytes: 32,
  61. AEADAuthCreator: createAesGcm,
  62. }, nil
  63. case CipherType_CHACHA20_POLY1305:
  64. return &AEADCipher{
  65. KeyBytes: 32,
  66. IVBytes: 32,
  67. AEADAuthCreator: createChacha20Poly1305,
  68. }, nil
  69. case CipherType_NONE:
  70. return NoneCipher{}, nil
  71. default:
  72. return nil, newError("Unsupported cipher.")
  73. }
  74. }
  75. // AsAccount implements protocol.AsAccount.
  76. func (a *Account) AsAccount() (protocol.Account, error) {
  77. cipher, err := a.getCipher()
  78. if err != nil {
  79. return nil, newError("failed to get cipher").Base(err)
  80. }
  81. return &MemoryAccount{
  82. Cipher: cipher,
  83. Key: passwordToCipherKey([]byte(a.Password), cipher.KeySize()),
  84. OneTimeAuth: a.Ota,
  85. }, nil
  86. }
  87. // Cipher is an interface for all Shadowsocks ciphers.
  88. type Cipher interface {
  89. KeySize() int32
  90. IVSize() int32
  91. NewEncryptionWriter(key []byte, iv []byte, writer io.Writer) (buf.Writer, error)
  92. NewDecryptionReader(key []byte, iv []byte, reader io.Reader) (buf.Reader, error)
  93. IsAEAD() bool
  94. EncodePacket(key []byte, b *buf.Buffer) error
  95. DecodePacket(key []byte, b *buf.Buffer) error
  96. }
  97. // AesCfb represents all AES-CFB ciphers.
  98. type AesCfb struct {
  99. KeyBytes int32
  100. }
  101. func (*AesCfb) IsAEAD() bool {
  102. return false
  103. }
  104. func (v *AesCfb) KeySize() int32 {
  105. return v.KeyBytes
  106. }
  107. func (v *AesCfb) IVSize() int32 {
  108. return 16
  109. }
  110. func (v *AesCfb) NewEncryptionWriter(key []byte, iv []byte, writer io.Writer) (buf.Writer, error) {
  111. stream := crypto.NewAesEncryptionStream(key, iv)
  112. return &buf.SequentialWriter{Writer: crypto.NewCryptionWriter(stream, writer)}, nil
  113. }
  114. func (v *AesCfb) NewDecryptionReader(key []byte, iv []byte, reader io.Reader) (buf.Reader, error) {
  115. stream := crypto.NewAesDecryptionStream(key, iv)
  116. return &buf.SingleReader{
  117. Reader: crypto.NewCryptionReader(stream, reader),
  118. }, nil
  119. }
  120. func (v *AesCfb) EncodePacket(key []byte, b *buf.Buffer) error {
  121. iv := b.BytesTo(v.IVSize())
  122. stream := crypto.NewAesEncryptionStream(key, iv)
  123. stream.XORKeyStream(b.BytesFrom(v.IVSize()), b.BytesFrom(v.IVSize()))
  124. return nil
  125. }
  126. func (v *AesCfb) DecodePacket(key []byte, b *buf.Buffer) error {
  127. if b.Len() <= v.IVSize() {
  128. return newError("insufficient data: ", b.Len())
  129. }
  130. iv := b.BytesTo(v.IVSize())
  131. stream := crypto.NewAesDecryptionStream(key, iv)
  132. stream.XORKeyStream(b.BytesFrom(v.IVSize()), b.BytesFrom(v.IVSize()))
  133. b.Advance(v.IVSize())
  134. return nil
  135. }
  136. type AEADCipher struct {
  137. KeyBytes int32
  138. IVBytes int32
  139. AEADAuthCreator func(key []byte) cipher.AEAD
  140. }
  141. func (*AEADCipher) IsAEAD() bool {
  142. return true
  143. }
  144. func (c *AEADCipher) KeySize() int32 {
  145. return c.KeyBytes
  146. }
  147. func (c *AEADCipher) IVSize() int32 {
  148. return c.IVBytes
  149. }
  150. func (c *AEADCipher) createAuthenticator(key []byte, iv []byte) *crypto.AEADAuthenticator {
  151. nonce := crypto.GenerateInitialAEADNonce()
  152. subkey := make([]byte, c.KeyBytes)
  153. hkdfSHA1(key, iv, subkey)
  154. return &crypto.AEADAuthenticator{
  155. AEAD: c.AEADAuthCreator(subkey),
  156. NonceGenerator: nonce,
  157. }
  158. }
  159. func (c *AEADCipher) NewEncryptionWriter(key []byte, iv []byte, writer io.Writer) (buf.Writer, error) {
  160. auth := c.createAuthenticator(key, iv)
  161. return crypto.NewAuthenticationWriter(auth, &crypto.AEADChunkSizeParser{
  162. Auth: auth,
  163. }, writer, protocol.TransferTypeStream, nil), nil
  164. }
  165. func (c *AEADCipher) NewDecryptionReader(key []byte, iv []byte, reader io.Reader) (buf.Reader, error) {
  166. auth := c.createAuthenticator(key, iv)
  167. return crypto.NewAuthenticationReader(auth, &crypto.AEADChunkSizeParser{
  168. Auth: auth,
  169. }, reader, protocol.TransferTypeStream, nil), nil
  170. }
  171. func (c *AEADCipher) EncodePacket(key []byte, b *buf.Buffer) error {
  172. ivLen := c.IVSize()
  173. payloadLen := b.Len()
  174. auth := c.createAuthenticator(key, b.BytesTo(ivLen))
  175. b.Extend(int32(auth.Overhead()))
  176. _, err := auth.Seal(b.BytesTo(ivLen), b.BytesRange(ivLen, payloadLen))
  177. return err
  178. }
  179. func (c *AEADCipher) DecodePacket(key []byte, b *buf.Buffer) error {
  180. if b.Len() <= c.IVSize() {
  181. return newError("insufficient data: ", b.Len())
  182. }
  183. ivLen := c.IVSize()
  184. payloadLen := b.Len()
  185. auth := c.createAuthenticator(key, b.BytesTo(ivLen))
  186. bbb, err := auth.Open(b.BytesTo(ivLen), b.BytesRange(ivLen, payloadLen))
  187. if err != nil {
  188. return err
  189. }
  190. b.Resize(ivLen, ivLen+int32(len(bbb)))
  191. return nil
  192. }
  193. type ChaCha20 struct {
  194. IVBytes int32
  195. }
  196. func (*ChaCha20) IsAEAD() bool {
  197. return false
  198. }
  199. func (v *ChaCha20) KeySize() int32 {
  200. return 32
  201. }
  202. func (v *ChaCha20) IVSize() int32 {
  203. return v.IVBytes
  204. }
  205. func (v *ChaCha20) NewEncryptionWriter(key []byte, iv []byte, writer io.Writer) (buf.Writer, error) {
  206. stream := crypto.NewChaCha20Stream(key, iv)
  207. return &buf.SequentialWriter{Writer: crypto.NewCryptionWriter(stream, writer)}, nil
  208. }
  209. func (v *ChaCha20) NewDecryptionReader(key []byte, iv []byte, reader io.Reader) (buf.Reader, error) {
  210. stream := crypto.NewChaCha20Stream(key, iv)
  211. return &buf.SingleReader{Reader: crypto.NewCryptionReader(stream, reader)}, nil
  212. }
  213. func (v *ChaCha20) EncodePacket(key []byte, b *buf.Buffer) error {
  214. iv := b.BytesTo(v.IVSize())
  215. stream := crypto.NewChaCha20Stream(key, iv)
  216. stream.XORKeyStream(b.BytesFrom(v.IVSize()), b.BytesFrom(v.IVSize()))
  217. return nil
  218. }
  219. func (v *ChaCha20) DecodePacket(key []byte, b *buf.Buffer) error {
  220. if b.Len() <= v.IVSize() {
  221. return newError("insufficient data: ", b.Len())
  222. }
  223. iv := b.BytesTo(v.IVSize())
  224. stream := crypto.NewChaCha20Stream(key, iv)
  225. stream.XORKeyStream(b.BytesFrom(v.IVSize()), b.BytesFrom(v.IVSize()))
  226. b.Advance(v.IVSize())
  227. return nil
  228. }
  229. type NoneCipher struct{}
  230. func (NoneCipher) KeySize() int32 { return 0 }
  231. func (NoneCipher) IVSize() int32 { return 0 }
  232. func (NoneCipher) IsAEAD() bool {
  233. return true // to avoid OTA
  234. }
  235. func (NoneCipher) NewDecryptionReader(key []byte, iv []byte, reader io.Reader) (buf.Reader, error) {
  236. return buf.NewReader(reader), nil
  237. }
  238. func (NoneCipher) NewEncryptionWriter(key []byte, iv []byte, writer io.Writer) (buf.Writer, error) {
  239. return buf.NewWriter(writer), nil
  240. }
  241. func (NoneCipher) EncodePacket(key []byte, b *buf.Buffer) error {
  242. return nil
  243. }
  244. func (NoneCipher) DecodePacket(key []byte, b *buf.Buffer) error {
  245. return nil
  246. }
  247. func passwordToCipherKey(password []byte, keySize int32) []byte {
  248. key := make([]byte, 0, keySize)
  249. md5Sum := md5.Sum(password)
  250. key = append(key, md5Sum[:]...)
  251. for int32(len(key)) < keySize {
  252. md5Hash := md5.New()
  253. common.Must2(md5Hash.Write(md5Sum[:]))
  254. common.Must2(md5Hash.Write(password))
  255. md5Hash.Sum(md5Sum[:0])
  256. key = append(key, md5Sum[:]...)
  257. }
  258. return key
  259. }
  260. func hkdfSHA1(secret, salt, outkey []byte) {
  261. r := hkdf.New(sha1.New, secret, salt, []byte("ss-subkey"))
  262. common.Must2(io.ReadFull(r, outkey))
  263. }