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2 Commits
| Author | SHA1 | Date | |
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4cb0403e08
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0318a9759b
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@@ -8,5 +8,6 @@ var (
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ErrBadTlsCipher error = errors.New("invalid TLS cipher suite")
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ErrBadTlsCurve error = errors.New("invalid TLS curve")
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ErrBadTlsVer error = errors.New("invalid TLS version")
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ErrUnknownCipher error = errors.New("unknown TLS cipher")
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ErrUnknownKey error = errors.New("unknown key type")
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)
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@@ -128,7 +128,7 @@ func ParseTlsCipher(s string) (cipherSuite uint16, err error) {
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if tlsCipherNmToUint == nil {
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tlsCipherNmToUint = make(map[string]uint16)
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for i = 0; i <= MaxTlsCipher; i++ {
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if nm = tls.VersionName(i); !strings.HasPrefix(nm, "0x") {
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if nm = tls.CipherSuiteName(i); !strings.HasPrefix(nm, "0x") {
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tlsCipherNmToUint[nm] = i
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}
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}
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@@ -142,6 +142,56 @@ func ParseTlsCipher(s string) (cipherSuite uint16, err error) {
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return
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}
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// ParseTlsCipherStrict is like ParseTlsCipher, but an ErrBadTlsCipher or ErrUnknownCipher error will be raised if no matching cipher is found.
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func ParseTlsCipherStrict(s string) (cipherSuite uint16, err error) {
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var nm string
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var n uint64
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var i uint16
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var ok bool
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if n, err = strconv.ParseUint(s, 10, 16); err != nil {
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if errors.Is(err, strconv.ErrSyntax) {
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// It's a name; parse below.
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err = nil
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} else {
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return
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}
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} else {
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// It's a number.
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if nm = tls.CipherSuiteName(uint16(n)); strings.HasPrefix(nm, "0x") {
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// ...but invalid.
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err = ErrBadTlsCipher
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return
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} else {
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// Valid (as number). Return it.
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cipherSuite = uint16(n)
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return
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}
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}
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s = strings.ToUpper(s)
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s = strings.ReplaceAll(s, " ", "_")
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// We build a dynamic map of cipher suite names to uint16s (if not already created).
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if tlsCipherNmToUint == nil {
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tlsCipherNmToUint = make(map[string]uint16)
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for i = 0; i <= MaxTlsCipher; i++ {
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if nm = tls.CipherSuiteName(i); !strings.HasPrefix(nm, "0x") {
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tlsCipherNmToUint[nm] = i
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}
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}
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}
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if i, ok = tlsCipherNmToUint[s]; ok {
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cipherSuite = i
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} else {
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err = ErrUnknownCipher
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}
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return
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}
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/*
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ParseTlsCiphers parses s as a comma-separated list of cipher suite names/integers and returns a slice of suites.
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@@ -198,6 +248,31 @@ func ParseTlsCipherSuite(s string) (cipherSuite *tls.CipherSuite, err error) {
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return
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}
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// ParseTlsCipherSuiteStrict is like ParseTlsCipherSuite, but an ErrBadTlsCipher or ErrUnknownCipher error will be raised if no matching cipher is found.
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func ParseTlsCipherSuiteStrict(s string) (cipherSuite *tls.CipherSuite, err error) {
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var cipherId uint16
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if cipherId, err = ParseTlsCipherStrict(s); err != nil {
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return
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}
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for _, v := range tls.CipherSuites() {
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if v.ID == cipherId {
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cipherSuite = v
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return
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}
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}
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for _, v := range tls.InsecureCipherSuites() {
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if v.ID == cipherId {
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cipherSuite = v
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return
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}
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}
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return
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}
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// ParseTlsCipherSuites is like ParseTlsCiphers but returns a []*tls.CipherSuite instead of a []uint16 of TLS cipher identifiers.
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func ParseTlsCipherSuites(s string) (cipherSuites []*tls.CipherSuite, err error) {
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37
cryptparse/funcs_test.go
Normal file
37
cryptparse/funcs_test.go
Normal file
@@ -0,0 +1,37 @@
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package cryptparse
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import (
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`crypto/tls`
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"testing"
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)
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func TestCiphers(t *testing.T) {
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var err error
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var cs *tls.CipherSuite
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// Good ciphers
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for _, cn := range []string{
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"TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256",
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"tls ecdhe ecdsa with chacha20 poly1305 sha256",
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} {
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if cs, err = ParseTlsCipherSuiteStrict(cn); err != nil {
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t.Fatalf("ERROR parsing good cipher '%s': %v", cn, err)
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}
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if cs.Name != cn {
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t.Logf("Cipher name change: '%s' => '%s'", cn, cs.Name)
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}
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t.Logf("Cipher for '%s':\n%#v", cn, cs)
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}
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// Bad ciphers
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for _, cn := range []string{
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"TLS_BAD_CIPHER",
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} {
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if cs, err = ParseTlsCipherSuiteStrict(cn); err == nil {
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t.Fatalf("ERROR parsing bad cipher '%s'; err is nil", cn)
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}
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}
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_ = cs
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}
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