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https://github.com/superseriousbusiness/gotosocial.git
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Update dependencies (#333)
This commit is contained in:
parent
ce22e03f9d
commit
182b4eea73
848 changed files with 377869 additions and 107280 deletions
2
vendor/golang.org/x/crypto/acme/acme.go
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2
vendor/golang.org/x/crypto/acme/acme.go
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@ -4,7 +4,7 @@
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// Package acme provides an implementation of the
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// Automatic Certificate Management Environment (ACME) spec.
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// The intial implementation was based on ACME draft-02 and
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// The initial implementation was based on ACME draft-02 and
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// is now being extended to comply with RFC 8555.
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// See https://tools.ietf.org/html/draft-ietf-acme-acme-02
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// and https://tools.ietf.org/html/rfc8555 for details.
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26
vendor/golang.org/x/crypto/acme/rfc8555.go
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vendor/golang.org/x/crypto/acme/rfc8555.go
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@ -410,3 +410,29 @@ func isAlreadyRevoked(err error) bool {
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e, ok := err.(*Error)
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return ok && e.ProblemType == "urn:ietf:params:acme:error:alreadyRevoked"
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}
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// ListCertAlternates retrieves any alternate certificate chain URLs for the
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// given certificate chain URL. These alternate URLs can be passed to FetchCert
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// in order to retrieve the alternate certificate chains.
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//
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// If there are no alternate issuer certificate chains, a nil slice will be
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// returned.
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func (c *Client) ListCertAlternates(ctx context.Context, url string) ([]string, error) {
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if _, err := c.Discover(ctx); err != nil { // required by c.accountKID
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return nil, err
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}
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res, err := c.postAsGet(ctx, url, wantStatus(http.StatusOK))
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if err != nil {
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return nil, err
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}
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defer res.Body.Close()
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// We don't need the body but we need to discard it so we don't end up
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// preventing keep-alive
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if _, err := io.Copy(ioutil.Discard, res.Body); err != nil {
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return nil, fmt.Errorf("acme: cert alternates response stream: %v", err)
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}
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alts := linkHeader(res.Header, "alternate")
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return alts, nil
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}
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@ -15,7 +15,7 @@
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// used with a fixed key in order to generate one-time keys from an nonce.
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// However, in this package AES isn't used and the one-time key is specified
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// directly.
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package poly1305 // import "golang.org/x/crypto/poly1305"
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package poly1305
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import "crypto/subtle"
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@ -18,7 +18,7 @@
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// value. These limbs are, for the most part, zero extended and
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// placed into 64-bit vector register elements. Each vector
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// register is 128-bits wide and so holds 2 of these elements.
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// Using 26-bit limbs allows us plenty of headroom to accomodate
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// Using 26-bit limbs allows us plenty of headroom to accommodate
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// accumulations before and after multiplication without
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// overflowing either 32-bits (before multiplication) or 64-bits
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// (after multiplication).
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24
vendor/golang.org/x/crypto/ssh/certs.go
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vendor/golang.org/x/crypto/ssh/certs.go
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@ -14,7 +14,7 @@ import (
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"time"
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)
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// These constants from [PROTOCOL.certkeys] represent the algorithm names
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// These constants from [PROTOCOL.certkeys] represent the key algorithm names
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// for certificate types supported by this package.
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const (
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CertAlgoRSAv01 = "ssh-rsa-cert-v01@openssh.com"
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@ -27,6 +27,14 @@ const (
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CertAlgoSKED25519v01 = "sk-ssh-ed25519-cert-v01@openssh.com"
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)
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// These constants from [PROTOCOL.certkeys] represent additional signature
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// algorithm names for certificate types supported by this package.
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const (
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CertSigAlgoRSAv01 = "ssh-rsa-cert-v01@openssh.com"
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CertSigAlgoRSASHA2256v01 = "rsa-sha2-256-cert-v01@openssh.com"
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CertSigAlgoRSASHA2512v01 = "rsa-sha2-512-cert-v01@openssh.com"
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)
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// Certificate types distinguish between host and user
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// certificates. The values can be set in the CertType field of
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// Certificate.
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@ -423,6 +431,12 @@ func (c *Certificate) SignCert(rand io.Reader, authority Signer) error {
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}
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c.SignatureKey = authority.PublicKey()
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if v, ok := authority.(AlgorithmSigner); ok {
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if v.PublicKey().Type() == KeyAlgoRSA {
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authority = &rsaSigner{v, SigAlgoRSASHA2512}
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}
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}
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sig, err := authority.Sign(rand, c.bytesForSigning())
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if err != nil {
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return err
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@ -431,8 +445,14 @@ func (c *Certificate) SignCert(rand io.Reader, authority Signer) error {
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return nil
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}
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// certAlgoNames includes a mapping from signature algorithms to the
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// corresponding certificate signature algorithm. When a key type (such
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// as ED25516) is associated with only one algorithm, the KeyAlgo
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// constant is used instead of the SigAlgo.
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var certAlgoNames = map[string]string{
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KeyAlgoRSA: CertAlgoRSAv01,
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SigAlgoRSA: CertSigAlgoRSAv01,
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SigAlgoRSASHA2256: CertSigAlgoRSASHA2256v01,
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SigAlgoRSASHA2512: CertSigAlgoRSASHA2512v01,
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KeyAlgoDSA: CertAlgoDSAv01,
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KeyAlgoECDSA256: CertAlgoECDSA256v01,
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KeyAlgoECDSA384: CertAlgoECDSA384v01,
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2
vendor/golang.org/x/crypto/ssh/cipher.go
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2
vendor/golang.org/x/crypto/ssh/cipher.go
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@ -18,7 +18,7 @@ import (
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"io/ioutil"
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"golang.org/x/crypto/chacha20"
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"golang.org/x/crypto/poly1305"
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"golang.org/x/crypto/internal/poly1305"
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)
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const (
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15
vendor/golang.org/x/crypto/ssh/client.go
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vendor/golang.org/x/crypto/ssh/client.go
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@ -115,12 +115,25 @@ func (c *connection) clientHandshake(dialAddress string, config *ClientConfig) e
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// verifyHostKeySignature verifies the host key obtained in the key
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// exchange.
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func verifyHostKeySignature(hostKey PublicKey, result *kexResult) error {
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func verifyHostKeySignature(hostKey PublicKey, algo string, result *kexResult) error {
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sig, rest, ok := parseSignatureBody(result.Signature)
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if len(rest) > 0 || !ok {
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return errors.New("ssh: signature parse error")
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}
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// For keys, underlyingAlgo is exactly algo. For certificates,
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// we have to look up the underlying key algorithm that SSH
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// uses to evaluate signatures.
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underlyingAlgo := algo
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for sigAlgo, certAlgo := range certAlgoNames {
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if certAlgo == algo {
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underlyingAlgo = sigAlgo
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}
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}
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if sig.Format != underlyingAlgo {
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return fmt.Errorf("ssh: invalid signature algorithm %q, expected %q", sig.Format, underlyingAlgo)
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}
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return hostKey.Verify(result.H, sig)
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}
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30
vendor/golang.org/x/crypto/ssh/common.go
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vendor/golang.org/x/crypto/ssh/common.go
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@ -69,11 +69,13 @@ var preferredKexAlgos = []string{
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// supportedHostKeyAlgos specifies the supported host-key algorithms (i.e. methods
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// of authenticating servers) in preference order.
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var supportedHostKeyAlgos = []string{
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CertAlgoRSAv01, CertAlgoDSAv01, CertAlgoECDSA256v01,
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CertSigAlgoRSASHA2512v01, CertSigAlgoRSASHA2256v01,
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CertSigAlgoRSAv01, CertAlgoDSAv01, CertAlgoECDSA256v01,
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CertAlgoECDSA384v01, CertAlgoECDSA521v01, CertAlgoED25519v01,
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KeyAlgoECDSA256, KeyAlgoECDSA384, KeyAlgoECDSA521,
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KeyAlgoRSA, KeyAlgoDSA,
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SigAlgoRSASHA2512, SigAlgoRSASHA2256,
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SigAlgoRSA, KeyAlgoDSA,
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KeyAlgoED25519,
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}
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@ -90,16 +92,20 @@ var supportedCompressions = []string{compressionNone}
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// hashFuncs keeps the mapping of supported algorithms to their respective
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// hashes needed for signature verification.
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var hashFuncs = map[string]crypto.Hash{
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KeyAlgoRSA: crypto.SHA1,
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KeyAlgoDSA: crypto.SHA1,
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KeyAlgoECDSA256: crypto.SHA256,
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KeyAlgoECDSA384: crypto.SHA384,
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KeyAlgoECDSA521: crypto.SHA512,
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CertAlgoRSAv01: crypto.SHA1,
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CertAlgoDSAv01: crypto.SHA1,
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CertAlgoECDSA256v01: crypto.SHA256,
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CertAlgoECDSA384v01: crypto.SHA384,
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CertAlgoECDSA521v01: crypto.SHA512,
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SigAlgoRSA: crypto.SHA1,
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SigAlgoRSASHA2256: crypto.SHA256,
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SigAlgoRSASHA2512: crypto.SHA512,
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KeyAlgoDSA: crypto.SHA1,
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KeyAlgoECDSA256: crypto.SHA256,
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KeyAlgoECDSA384: crypto.SHA384,
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KeyAlgoECDSA521: crypto.SHA512,
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CertSigAlgoRSAv01: crypto.SHA1,
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CertSigAlgoRSASHA2256v01: crypto.SHA256,
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CertSigAlgoRSASHA2512v01: crypto.SHA512,
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CertAlgoDSAv01: crypto.SHA1,
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CertAlgoECDSA256v01: crypto.SHA256,
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CertAlgoECDSA384v01: crypto.SHA384,
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CertAlgoECDSA521v01: crypto.SHA512,
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}
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// unexpectedMessageError results when the SSH message that we received didn't
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29
vendor/golang.org/x/crypto/ssh/handshake.go
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vendor/golang.org/x/crypto/ssh/handshake.go
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@ -457,8 +457,15 @@ func (t *handshakeTransport) sendKexInit() error {
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if len(t.hostKeys) > 0 {
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for _, k := range t.hostKeys {
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msg.ServerHostKeyAlgos = append(
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msg.ServerHostKeyAlgos, k.PublicKey().Type())
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algo := k.PublicKey().Type()
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switch algo {
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case KeyAlgoRSA:
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msg.ServerHostKeyAlgos = append(msg.ServerHostKeyAlgos, []string{SigAlgoRSASHA2512, SigAlgoRSASHA2256, SigAlgoRSA}...)
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case CertAlgoRSAv01:
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msg.ServerHostKeyAlgos = append(msg.ServerHostKeyAlgos, []string{CertSigAlgoRSASHA2512v01, CertSigAlgoRSASHA2256v01, CertSigAlgoRSAv01}...)
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default:
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msg.ServerHostKeyAlgos = append(msg.ServerHostKeyAlgos, algo)
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}
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}
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} else {
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msg.ServerHostKeyAlgos = t.hostKeyAlgorithms
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@ -614,8 +621,22 @@ func (t *handshakeTransport) enterKeyExchange(otherInitPacket []byte) error {
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func (t *handshakeTransport) server(kex kexAlgorithm, algs *algorithms, magics *handshakeMagics) (*kexResult, error) {
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var hostKey Signer
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for _, k := range t.hostKeys {
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if algs.hostKey == k.PublicKey().Type() {
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kt := k.PublicKey().Type()
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if kt == algs.hostKey {
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hostKey = k
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} else if signer, ok := k.(AlgorithmSigner); ok {
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// Some signature algorithms don't show up as key types
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// so we have to manually check for a compatible host key.
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switch kt {
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case KeyAlgoRSA:
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if algs.hostKey == SigAlgoRSASHA2256 || algs.hostKey == SigAlgoRSASHA2512 {
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hostKey = &rsaSigner{signer, algs.hostKey}
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}
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case CertAlgoRSAv01:
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if algs.hostKey == CertSigAlgoRSASHA2256v01 || algs.hostKey == CertSigAlgoRSASHA2512v01 {
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hostKey = &rsaSigner{signer, certToPrivAlgo(algs.hostKey)}
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}
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}
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}
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}
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@ -634,7 +655,7 @@ func (t *handshakeTransport) client(kex kexAlgorithm, algs *algorithms, magics *
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return nil, err
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}
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if err := verifyHostKeySignature(hostKey, result); err != nil {
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if err := verifyHostKeySignature(hostKey, algs.hostKey, result); err != nil {
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return nil, err
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}
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9
vendor/golang.org/x/crypto/ssh/keys.go
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9
vendor/golang.org/x/crypto/ssh/keys.go
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@ -939,6 +939,15 @@ func newDSAPrivateKey(key *dsa.PrivateKey) (Signer, error) {
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return &dsaPrivateKey{key}, nil
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}
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type rsaSigner struct {
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AlgorithmSigner
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defaultAlgorithm string
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}
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func (s *rsaSigner) Sign(rand io.Reader, data []byte) (*Signature, error) {
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return s.AlgorithmSigner.SignWithAlgorithm(rand, data, s.defaultAlgorithm)
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}
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type wrappedSigner struct {
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signer crypto.Signer
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pubKey PublicKey
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2
vendor/golang.org/x/crypto/ssh/server.go
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2
vendor/golang.org/x/crypto/ssh/server.go
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@ -284,7 +284,7 @@ func (s *connection) serverHandshake(config *ServerConfig) (*Permissions, error)
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func isAcceptableAlgo(algo string) bool {
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switch algo {
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case KeyAlgoRSA, KeyAlgoDSA, KeyAlgoECDSA256, KeyAlgoECDSA384, KeyAlgoECDSA521, KeyAlgoSKECDSA256, KeyAlgoED25519, KeyAlgoSKED25519,
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case SigAlgoRSA, SigAlgoRSASHA2256, SigAlgoRSASHA2512, KeyAlgoDSA, KeyAlgoECDSA256, KeyAlgoECDSA384, KeyAlgoECDSA521, KeyAlgoSKECDSA256, KeyAlgoED25519, KeyAlgoSKED25519,
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CertAlgoRSAv01, CertAlgoDSAv01, CertAlgoECDSA256v01, CertAlgoECDSA384v01, CertAlgoECDSA521v01, CertAlgoSKECDSA256v01, CertAlgoED25519v01, CertAlgoSKED25519v01:
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return true
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}
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