forked from TrueCloudLab/frostfs-sdk-go
[#53] util: move signature package from neofs-api-go
Signed-off-by: Evgenii Stratonikov <evgeniy@nspcc.ru>
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3 changed files with 242 additions and 0 deletions
120
util/signature/data.go
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120
util/signature/data.go
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package signature
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import (
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"crypto/ecdsa"
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"crypto/elliptic"
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"errors"
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"fmt"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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)
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type DataSource interface {
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ReadSignedData([]byte) ([]byte, error)
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SignedDataSize() int
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}
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type DataWithSignature interface {
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DataSource
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GetSignatureWithKey() (key, sig []byte)
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SetSignatureWithKey(key, sig []byte)
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}
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type SignOption func(*cfg)
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type KeySignatureHandler func(key []byte, sig []byte)
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type KeySignatureSource func() (key, sig []byte)
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const (
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// PrivateKeyCompressedSize is constant with compressed size of private key (SK).
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// D coordinate stored, recover PK by formula x, y = curve.ScalarBaseMul(d,bytes).
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PrivateKeyCompressedSize = 32
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// PublicKeyCompressedSize is constant with compressed size of public key (PK).
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PublicKeyCompressedSize = 33
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// PublicKeyUncompressedSize is constant with uncompressed size of public key (PK).
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// First byte always should be 0x4 other 64 bytes is X and Y (32 bytes per coordinate).
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// 2 * 32 + 1.
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PublicKeyUncompressedSize = 65
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)
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var (
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// ErrEmptyPrivateKey is returned when used private key is empty.
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ErrEmptyPrivateKey = errors.New("empty private key")
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// ErrInvalidPublicKey is returned when public key cannot be unmarshalled.
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ErrInvalidPublicKey = errors.New("invalid public key")
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// ErrInvalidSignature is returned if signature cannot be verified.
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ErrInvalidSignature = errors.New("invalid signature")
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)
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func DataSignature(key *ecdsa.PrivateKey, src DataSource, opts ...SignOption) ([]byte, error) {
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if key == nil {
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return nil, ErrEmptyPrivateKey
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}
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data, err := dataForSignature(src)
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if err != nil {
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return nil, err
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}
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defer bytesPool.Put(&data)
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cfg := defaultCfg()
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for i := range opts {
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opts[i](cfg)
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}
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return cfg.signFunc(key, data)
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}
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func SignDataWithHandler(key *ecdsa.PrivateKey, src DataSource, handler KeySignatureHandler, opts ...SignOption) error {
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sig, err := DataSignature(key, src, opts...)
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if err != nil {
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return err
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}
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pub := (*keys.PublicKey)(&key.PublicKey)
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handler(pub.Bytes(), sig)
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return nil
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}
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func VerifyDataWithSource(dataSrc DataSource, sigSrc KeySignatureSource, opts ...SignOption) error {
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data, err := dataForSignature(dataSrc)
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if err != nil {
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return err
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}
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defer bytesPool.Put(&data)
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cfg := defaultCfg()
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for i := range opts {
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opts[i](cfg)
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}
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key, sig := sigSrc()
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var pub *keys.PublicKey
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if len(key) != 0 {
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pub, err = keys.NewPublicKeyFromBytes(key, elliptic.P256())
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if err != nil {
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return fmt.Errorf("%w: %v", ErrInvalidPublicKey, err)
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}
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}
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return cfg.verifyFunc(
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(*ecdsa.PublicKey)(pub),
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data,
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sig,
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)
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}
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func SignData(key *ecdsa.PrivateKey, v DataWithSignature, opts ...SignOption) error {
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return SignDataWithHandler(key, v, v.SetSignatureWithKey, opts...)
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}
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func VerifyData(src DataWithSignature, opts ...SignOption) error {
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return VerifyDataWithSource(src, src.GetSignatureWithKey, opts...)
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}
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91
util/signature/options.go
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91
util/signature/options.go
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package signature
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import (
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"crypto/ecdsa"
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"crypto/elliptic"
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"crypto/rand"
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"crypto/sha256"
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"crypto/sha512"
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"math/big"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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)
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var curve = elliptic.P256()
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type cfg struct {
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signFunc func(key *ecdsa.PrivateKey, msg []byte) ([]byte, error)
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verifyFunc func(key *ecdsa.PublicKey, msg []byte, sig []byte) error
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}
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func defaultCfg() *cfg {
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return &cfg{
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signFunc: sign,
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verifyFunc: verify,
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}
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}
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func sign(key *ecdsa.PrivateKey, msg []byte) ([]byte, error) {
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h := sha512.Sum512(msg)
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x, y, err := ecdsa.Sign(rand.Reader, key, h[:])
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if err != nil {
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return nil, err
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}
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return elliptic.Marshal(elliptic.P256(), x, y), nil
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}
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func verify(key *ecdsa.PublicKey, msg []byte, sig []byte) error {
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h := sha512.Sum512(msg)
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r, s := unmarshalXY(sig)
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if r != nil && s != nil && ecdsa.Verify(key, h[:], r, s) {
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return nil
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}
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return ErrInvalidSignature
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}
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// unmarshalXY converts a point, serialized by Marshal, into an x, y pair.
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// It is an error if the point is not in uncompressed form.
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// On error, x,y = nil.
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// Unlike the original version of the code, we ignore that x or y not on the curve
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// --------------
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// It's copy-paste elliptic.Unmarshal(curve, data) stdlib function, without last line
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// of code.
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// Link - https://golang.org/pkg/crypto/elliptic/#Unmarshal
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func unmarshalXY(data []byte) (x *big.Int, y *big.Int) {
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if len(data) != PublicKeyUncompressedSize {
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return
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} else if data[0] != 4 { // uncompressed form
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return
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}
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p := curve.Params().P
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x = new(big.Int).SetBytes(data[1:PublicKeyCompressedSize])
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y = new(big.Int).SetBytes(data[PublicKeyCompressedSize:])
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if x.Cmp(p) >= 0 || y.Cmp(p) >= 0 {
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x, y = nil, nil
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}
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return
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}
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func SignWithRFC6979() SignOption {
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return func(c *cfg) {
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c.signFunc = signRFC6979
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c.verifyFunc = verifyRFC6979
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}
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}
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func signRFC6979(key *ecdsa.PrivateKey, msg []byte) ([]byte, error) {
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p := &keys.PrivateKey{PrivateKey: *key}
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return p.Sign(msg), nil
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}
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func verifyRFC6979(key *ecdsa.PublicKey, msg []byte, sig []byte) error {
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p := (*keys.PublicKey)(key)
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h := sha256.Sum256(msg)
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if p.Verify(sig, h[:]) {
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return nil
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}
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return ErrInvalidSignature
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}
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31
util/signature/util.go
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31
util/signature/util.go
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package signature
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import (
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"errors"
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"sync"
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)
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var bytesPool = sync.Pool{
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New: func() interface{} {
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b := make([]byte, 5<<20)
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return &b
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},
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}
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func dataForSignature(src DataSource) ([]byte, error) {
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if src == nil {
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return nil, errors.New("nil source")
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}
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buf := *bytesPool.Get().(*[]byte)
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if size := src.SignedDataSize(); size < 0 {
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return nil, errors.New("negative length")
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} else if size <= cap(buf) {
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buf = buf[:size]
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} else {
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buf = make([]byte, size)
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}
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return src.ReadSignedData(buf)
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}
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