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update crypto vendors (#10385)
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parent
3c45cf8494
commit
63a6e71ac2
129 changed files with 3568 additions and 1374 deletions
93
vendor/golang.org/x/crypto/ssh/internal/bcrypt_pbkdf/bcrypt_pbkdf.go
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vendored
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93
vendor/golang.org/x/crypto/ssh/internal/bcrypt_pbkdf/bcrypt_pbkdf.go
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@ -0,0 +1,93 @@
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// Copyright 2014 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Package bcrypt_pbkdf implements bcrypt_pbkdf(3) from OpenBSD.
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//
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// See https://flak.tedunangst.com/post/bcrypt-pbkdf and
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// https://cvsweb.openbsd.org/cgi-bin/cvsweb/src/lib/libutil/bcrypt_pbkdf.c.
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package bcrypt_pbkdf
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import (
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"crypto/sha512"
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"errors"
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"golang.org/x/crypto/blowfish"
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)
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const blockSize = 32
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// Key derives a key from the password, salt and rounds count, returning a
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// []byte of length keyLen that can be used as cryptographic key.
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func Key(password, salt []byte, rounds, keyLen int) ([]byte, error) {
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if rounds < 1 {
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return nil, errors.New("bcrypt_pbkdf: number of rounds is too small")
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}
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if len(password) == 0 {
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return nil, errors.New("bcrypt_pbkdf: empty password")
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}
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if len(salt) == 0 || len(salt) > 1<<20 {
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return nil, errors.New("bcrypt_pbkdf: bad salt length")
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}
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if keyLen > 1024 {
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return nil, errors.New("bcrypt_pbkdf: keyLen is too large")
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}
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numBlocks := (keyLen + blockSize - 1) / blockSize
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key := make([]byte, numBlocks*blockSize)
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h := sha512.New()
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h.Write(password)
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shapass := h.Sum(nil)
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shasalt := make([]byte, 0, sha512.Size)
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cnt, tmp := make([]byte, 4), make([]byte, blockSize)
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for block := 1; block <= numBlocks; block++ {
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h.Reset()
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h.Write(salt)
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cnt[0] = byte(block >> 24)
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cnt[1] = byte(block >> 16)
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cnt[2] = byte(block >> 8)
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cnt[3] = byte(block)
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h.Write(cnt)
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bcryptHash(tmp, shapass, h.Sum(shasalt))
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out := make([]byte, blockSize)
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copy(out, tmp)
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for i := 2; i <= rounds; i++ {
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h.Reset()
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h.Write(tmp)
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bcryptHash(tmp, shapass, h.Sum(shasalt))
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for j := 0; j < len(out); j++ {
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out[j] ^= tmp[j]
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}
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}
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for i, v := range out {
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key[i*numBlocks+(block-1)] = v
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}
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}
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return key[:keyLen], nil
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}
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var magic = []byte("OxychromaticBlowfishSwatDynamite")
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func bcryptHash(out, shapass, shasalt []byte) {
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c, err := blowfish.NewSaltedCipher(shapass, shasalt)
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if err != nil {
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panic(err)
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}
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for i := 0; i < 64; i++ {
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blowfish.ExpandKey(shasalt, c)
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blowfish.ExpandKey(shapass, c)
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}
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copy(out, magic)
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for i := 0; i < 32; i += 8 {
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for j := 0; j < 64; j++ {
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c.Encrypt(out[i:i+8], out[i:i+8])
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}
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}
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// Swap bytes due to different endianness.
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for i := 0; i < 32; i += 4 {
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out[i+3], out[i+2], out[i+1], out[i] = out[i], out[i+1], out[i+2], out[i+3]
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}
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}
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170
vendor/golang.org/x/crypto/ssh/keys.go
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170
vendor/golang.org/x/crypto/ssh/keys.go
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@ -7,6 +7,8 @@ package ssh
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import (
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"bytes"
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"crypto"
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"crypto/aes"
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"crypto/cipher"
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"crypto/dsa"
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"crypto/ecdsa"
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"crypto/elliptic"
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@ -25,6 +27,7 @@ import (
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"strings"
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"golang.org/x/crypto/ed25519"
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"golang.org/x/crypto/ssh/internal/bcrypt_pbkdf"
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)
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// These constants represent the algorithm names for key types supported by this
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@ -1122,21 +1125,25 @@ func ParseRawPrivateKey(pemBytes []byte) (interface{}, error) {
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case "DSA PRIVATE KEY":
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return ParseDSAPrivateKey(block.Bytes)
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case "OPENSSH PRIVATE KEY":
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return parseOpenSSHPrivateKey(block.Bytes)
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return parseOpenSSHPrivateKey(block.Bytes, unencryptedOpenSSHKey)
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default:
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return nil, fmt.Errorf("ssh: unsupported key type %q", block.Type)
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}
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}
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// ParseRawPrivateKeyWithPassphrase returns a private key decrypted with
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// passphrase from a PEM encoded private key. If wrong passphrase, return
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// x509.IncorrectPasswordError.
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// passphrase from a PEM encoded private key. If the passphrase is wrong, it
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// will return x509.IncorrectPasswordError.
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func ParseRawPrivateKeyWithPassphrase(pemBytes, passphrase []byte) (interface{}, error) {
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block, _ := pem.Decode(pemBytes)
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if block == nil {
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return nil, errors.New("ssh: no key found")
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}
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if block.Type == "OPENSSH PRIVATE KEY" {
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return parseOpenSSHPrivateKey(block.Bytes, passphraseProtectedOpenSSHKey(passphrase))
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}
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if !encryptedBlock(block) || !x509.IsEncryptedPEMBlock(block) {
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return nil, errors.New("ssh: not an encrypted key")
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}
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@ -1193,9 +1200,60 @@ func ParseDSAPrivateKey(der []byte) (*dsa.PrivateKey, error) {
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}, nil
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}
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// Implemented based on the documentation at
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// https://github.com/openssh/openssh-portable/blob/master/PROTOCOL.key
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func parseOpenSSHPrivateKey(key []byte) (crypto.PrivateKey, error) {
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func unencryptedOpenSSHKey(cipherName, kdfName, kdfOpts string, privKeyBlock []byte) ([]byte, error) {
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if kdfName != "none" || cipherName != "none" {
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return nil, &PassphraseMissingError{}
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}
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if kdfOpts != "" {
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return nil, errors.New("ssh: invalid openssh private key")
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}
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return privKeyBlock, nil
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}
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func passphraseProtectedOpenSSHKey(passphrase []byte) openSSHDecryptFunc {
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return func(cipherName, kdfName, kdfOpts string, privKeyBlock []byte) ([]byte, error) {
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if kdfName == "none" || cipherName == "none" {
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return nil, errors.New("ssh: key is not password protected")
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}
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if kdfName != "bcrypt" {
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return nil, fmt.Errorf("ssh: unknown KDF %q, only supports %q", kdfName, "bcrypt")
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}
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var opts struct {
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Salt string
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Rounds uint32
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}
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if err := Unmarshal([]byte(kdfOpts), &opts); err != nil {
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return nil, err
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}
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k, err := bcrypt_pbkdf.Key(passphrase, []byte(opts.Salt), int(opts.Rounds), 32+16)
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if err != nil {
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return nil, err
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}
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key, iv := k[:32], k[32:]
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if cipherName != "aes256-ctr" {
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return nil, fmt.Errorf("ssh: unknown cipher %q, only supports %q", cipherName, "aes256-ctr")
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}
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c, err := aes.NewCipher(key)
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if err != nil {
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return nil, err
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}
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ctr := cipher.NewCTR(c, iv)
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ctr.XORKeyStream(privKeyBlock, privKeyBlock)
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return privKeyBlock, nil
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}
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}
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type openSSHDecryptFunc func(CipherName, KdfName, KdfOpts string, PrivKeyBlock []byte) ([]byte, error)
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// parseOpenSSHPrivateKey parses an OpenSSH private key, using the decrypt
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// function to unwrap the encrypted portion. unencryptedOpenSSHKey can be used
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// as the decrypt function to parse an unencrypted private key. See
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// https://github.com/openssh/openssh-portable/blob/master/PROTOCOL.key.
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func parseOpenSSHPrivateKey(key []byte, decrypt openSSHDecryptFunc) (crypto.PrivateKey, error) {
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const magic = "openssh-key-v1\x00"
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if len(key) < len(magic) || string(key[:len(magic)]) != magic {
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return nil, errors.New("ssh: invalid openssh private key format")
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@ -1214,9 +1272,22 @@ func parseOpenSSHPrivateKey(key []byte) (crypto.PrivateKey, error) {
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if err := Unmarshal(remaining, &w); err != nil {
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return nil, err
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}
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if w.NumKeys != 1 {
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// We only support single key files, and so does OpenSSH.
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// https://github.com/openssh/openssh-portable/blob/4103a3ec7/sshkey.c#L4171
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return nil, errors.New("ssh: multi-key files are not supported")
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}
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if w.KdfName != "none" || w.CipherName != "none" {
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return nil, errors.New("ssh: cannot decode encrypted private keys")
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privKeyBlock, err := decrypt(w.CipherName, w.KdfName, w.KdfOpts, w.PrivKeyBlock)
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if err != nil {
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if err, ok := err.(*PassphraseMissingError); ok {
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pub, errPub := ParsePublicKey(w.PubKey)
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if errPub != nil {
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return nil, fmt.Errorf("ssh: failed to parse embedded public key: %v", errPub)
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}
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err.PublicKey = pub
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}
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return nil, err
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}
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pk1 := struct {
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@ -1226,12 +1297,11 @@ func parseOpenSSHPrivateKey(key []byte) (crypto.PrivateKey, error) {
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Rest []byte `ssh:"rest"`
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}{}
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if err := Unmarshal(w.PrivKeyBlock, &pk1); err != nil {
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return nil, err
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}
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if pk1.Check1 != pk1.Check2 {
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return nil, errors.New("ssh: checkint mismatch")
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if err := Unmarshal(privKeyBlock, &pk1); err != nil || pk1.Check1 != pk1.Check2 {
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if w.CipherName != "none" {
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return nil, x509.IncorrectPasswordError
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}
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return nil, errors.New("ssh: malformed OpenSSH key")
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}
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// we only handle ed25519 and rsa keys currently
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@ -1253,10 +1323,8 @@ func parseOpenSSHPrivateKey(key []byte) (crypto.PrivateKey, error) {
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return nil, err
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}
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for i, b := range key.Pad {
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if int(b) != i+1 {
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return nil, errors.New("ssh: padding not as expected")
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}
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if err := checkOpenSSHKeyPadding(key.Pad); err != nil {
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return nil, err
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}
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pk := &rsa.PrivateKey{
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@ -1291,20 +1359,78 @@ func parseOpenSSHPrivateKey(key []byte) (crypto.PrivateKey, error) {
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return nil, errors.New("ssh: private key unexpected length")
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}
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for i, b := range key.Pad {
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if int(b) != i+1 {
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return nil, errors.New("ssh: padding not as expected")
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}
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if err := checkOpenSSHKeyPadding(key.Pad); err != nil {
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return nil, err
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}
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pk := ed25519.PrivateKey(make([]byte, ed25519.PrivateKeySize))
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copy(pk, key.Priv)
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return &pk, nil
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case KeyAlgoECDSA256, KeyAlgoECDSA384, KeyAlgoECDSA521:
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key := struct {
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Curve string
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Pub []byte
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D *big.Int
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Comment string
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Pad []byte `ssh:"rest"`
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}{}
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if err := Unmarshal(pk1.Rest, &key); err != nil {
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return nil, err
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}
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if err := checkOpenSSHKeyPadding(key.Pad); err != nil {
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return nil, err
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}
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var curve elliptic.Curve
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switch key.Curve {
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case "nistp256":
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curve = elliptic.P256()
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case "nistp384":
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curve = elliptic.P384()
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case "nistp521":
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curve = elliptic.P521()
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default:
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return nil, errors.New("ssh: unhandled elliptic curve: " + key.Curve)
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}
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X, Y := elliptic.Unmarshal(curve, key.Pub)
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if X == nil || Y == nil {
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return nil, errors.New("ssh: failed to unmarshal public key")
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}
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if key.D.Cmp(curve.Params().N) >= 0 {
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return nil, errors.New("ssh: scalar is out of range")
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}
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x, y := curve.ScalarBaseMult(key.D.Bytes())
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if x.Cmp(X) != 0 || y.Cmp(Y) != 0 {
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return nil, errors.New("ssh: public key does not match private key")
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}
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return &ecdsa.PrivateKey{
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PublicKey: ecdsa.PublicKey{
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Curve: curve,
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X: X,
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Y: Y,
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},
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D: key.D,
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}, nil
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default:
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return nil, errors.New("ssh: unhandled key type")
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}
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}
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func checkOpenSSHKeyPadding(pad []byte) error {
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for i, b := range pad {
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if int(b) != i+1 {
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return errors.New("ssh: padding not as expected")
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}
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}
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return nil
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}
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// FingerprintLegacyMD5 returns the user presentation of the key's
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// fingerprint as described by RFC 4716 section 4.
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func FingerprintLegacyMD5(pubKey PublicKey) string {
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