| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245 | package cryptoimport (	"crypto/cipher"	"io"	"golang.org/x/crypto/sha3"	"v2ray.com/core/common"	"v2ray.com/core/common/buf"	"v2ray.com/core/common/errors"	"v2ray.com/core/common/serial")var (	errInsufficientBuffer = errors.New("Insufficient buffer."))type BytesGenerator interface {	Next() []byte}type NoOpBytesGenerator struct {	buffer [1]byte}func (v NoOpBytesGenerator) Next() []byte {	return v.buffer[:0]}type StaticBytesGenerator struct {	Content []byte}func (v StaticBytesGenerator) Next() []byte {	return v.Content}type Authenticator interface {	NonceSize() int	Overhead() int	Open(dst, cipherText []byte) ([]byte, error)	Seal(dst, plainText []byte) ([]byte, error)}type AEADAuthenticator struct {	cipher.AEAD	NonceGenerator          BytesGenerator	AdditionalDataGenerator BytesGenerator}func (v *AEADAuthenticator) Open(dst, cipherText []byte) ([]byte, error) {	iv := v.NonceGenerator.Next()	if len(iv) != v.AEAD.NonceSize() {		return nil, errors.New("Crypto:AEADAuthenticator: Invalid nonce size: ", len(iv))	}	additionalData := v.AdditionalDataGenerator.Next()	return v.AEAD.Open(dst, iv, cipherText, additionalData)}func (v *AEADAuthenticator) Seal(dst, plainText []byte) ([]byte, error) {	iv := v.NonceGenerator.Next()	if len(iv) != v.AEAD.NonceSize() {		return nil, errors.New("Crypto:AEADAuthenticator: Invalid nonce size: ", len(iv))	}	additionalData := v.AdditionalDataGenerator.Next()	return v.AEAD.Seal(dst, iv, plainText, additionalData), nil}type Uint16Generator interface {	Next() uint16}type StaticUint16Generator uint16func (g StaticUint16Generator) Next() uint16 {	return uint16(g)}type MultiplyUint16Generator struct {	base  uint16	value uint16}func NewMultiplyUint16Generator(base uint16) *MultiplyUint16Generator {	return &MultiplyUint16Generator{		base:  base,		value: 1,	}}func (g *MultiplyUint16Generator) Next() uint16 {	g.value *= g.base	return g.value}type ShakeUint16Generator struct {	shake  sha3.ShakeHash	buffer [2]byte}func NewShakeUint16Generator(nonce []byte) *ShakeUint16Generator {	shake := sha3.NewShake128()	shake.Write(nonce)	return &ShakeUint16Generator{		shake: shake,	}}func (g *ShakeUint16Generator) Next() uint16 {	g.shake.Read(g.buffer[:])	return serial.BytesToUint16(g.buffer[:])}type AuthenticationReader struct {	auth     Authenticator	buffer   *buf.Buffer	reader   io.Reader	sizeMask Uint16Generator	chunk []byte}const (	readerBufferSize = 32 * 1024)func NewAuthenticationReader(auth Authenticator, reader io.Reader, sizeMask Uint16Generator) *AuthenticationReader {	return &AuthenticationReader{		auth:     auth,		buffer:   buf.NewLocal(readerBufferSize),		reader:   reader,		sizeMask: sizeMask,	}}func (v *AuthenticationReader) NextChunk(mask uint16) error {	if v.buffer.Len() < 2 {		return errInsufficientBuffer	}	size := int(serial.BytesToUint16(v.buffer.BytesTo(2)) ^ mask)	if size > v.buffer.Len()-2 {		return errInsufficientBuffer	}	if size > readerBufferSize-2 {		return errors.New("Crypto:AuthenticationReader: Size too large: ", size)	}	if size == v.auth.Overhead() {		return io.EOF	}	if size < v.auth.Overhead() {		return errors.New("AuthenticationReader: invalid packet size:", size)	}	cipherChunk := v.buffer.BytesRange(2, size+2)	plainChunk, err := v.auth.Open(cipherChunk[:0], cipherChunk)	if err != nil {		return err	}	v.chunk = plainChunk	v.buffer.SliceFrom(size + 2)	return nil}func (v *AuthenticationReader) CopyChunk(b []byte) int {	if len(v.chunk) == 0 {		return 0	}	nBytes := copy(b, v.chunk)	if nBytes == len(v.chunk) {		v.chunk = nil	} else {		v.chunk = v.chunk[nBytes:]	}	return nBytes}func (v *AuthenticationReader) EnsureChunk() error {	atHead := false	if v.buffer.IsEmpty() {		v.buffer.Clear()		atHead = true	}	mask := v.sizeMask.Next()	for {		err := v.NextChunk(mask)		if err != errInsufficientBuffer {			return err		}		leftover := v.buffer.Bytes()		if !atHead && len(leftover) > 0 {			common.Must(v.buffer.Reset(func(b []byte) (int, error) {				return copy(b, leftover), nil			}))		}		if err := v.buffer.AppendSupplier(buf.ReadFrom(v.reader)); err != nil {			return err		}	}}func (v *AuthenticationReader) Read(b []byte) (int, error) {	if len(v.chunk) > 0 {		nBytes := v.CopyChunk(b)		return nBytes, nil	}	err := v.EnsureChunk()	if err != nil {		return 0, err	}	return v.CopyChunk(b), nil}type AuthenticationWriter struct {	auth     Authenticator	buffer   []byte	writer   io.Writer	sizeMask Uint16Generator}func NewAuthenticationWriter(auth Authenticator, writer io.Writer, sizeMask Uint16Generator) *AuthenticationWriter {	return &AuthenticationWriter{		auth:     auth,		buffer:   make([]byte, 32*1024),		writer:   writer,		sizeMask: sizeMask,	}}func (v *AuthenticationWriter) Write(b []byte) (int, error) {	cipherChunk, err := v.auth.Seal(v.buffer[2:2], b)	if err != nil {		return 0, err	}	size := uint16(len(cipherChunk)) ^ v.sizeMask.Next()	serial.Uint16ToBytes(size, v.buffer[:0])	_, err = v.writer.Write(v.buffer[:2+len(cipherChunk)])	return len(b), err}
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