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crypto/tls: add *Config argument to Dial
Document undocumented exported names. Allow nil Rand, Time, RootCAs in Config. Fixes #1248. R=agl1 CC=golang-dev https://golang.org/cl/3481042
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@ -16,6 +16,7 @@ type CASet struct {
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byName map[string][]*x509.Certificate
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}
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// NewCASet returns a new, empty CASet.
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func NewCASet() *CASet {
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return &CASet{
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make(map[string][]*x509.Certificate),
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@ -78,6 +78,7 @@ const (
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// Rest of these are reserved by the TLS spec
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)
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// ConnectionState records basic TLS details about the connection.
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type ConnectionState struct {
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HandshakeComplete bool
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CipherSuite uint16
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@ -88,28 +89,65 @@ type ConnectionState struct {
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// has been passed to a TLS function it must not be modified.
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type Config struct {
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// Rand provides the source of entropy for nonces and RSA blinding.
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// If Rand is nil, TLS uses the cryptographic random reader in package
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// crypto/rand.
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Rand io.Reader
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// Time returns the current time as the number of seconds since the epoch.
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// If Time is nil, TLS uses the system time.Seconds.
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Time func() int64
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// Certificates contains one or more certificate chains.
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// Certificates contains one or more certificate chains
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// to present to the other side of the connection.
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// Server configurations must include at least one certificate.
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Certificates []Certificate
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RootCAs *CASet
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// RootCAs defines the set of root certificate authorities
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// that clients use when verifying server certificates.
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// If RootCAs is nil, TLS uses the host's root CA set.
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RootCAs *CASet
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// NextProtos is a list of supported, application level protocols.
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// Currently only server-side handling is supported.
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NextProtos []string
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// ServerName is included in the client's handshake to support virtual
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// hosting.
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ServerName string
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// AuthenticateClient determines if a server will request a certificate
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// AuthenticateClient controls whether a server will request a certificate
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// from the client. It does not require that the client send a
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// certificate nor, if it does, that the certificate is anything more
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// than self-signed.
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// certificate nor does it require that the certificate sent be
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// anything more than self-signed.
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AuthenticateClient bool
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}
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func (c *Config) rand() io.Reader {
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r := c.Rand
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if r == nil {
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return rand.Reader
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}
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return r
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}
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func (c *Config) time() int64 {
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t := c.Time
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if t == nil {
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t = time.Seconds
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}
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return t()
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}
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func (c *Config) rootCAs() *CASet {
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s := c.RootCAs
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if s == nil {
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s = defaultRoots()
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}
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return s
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}
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// A Certificate is a chain of one or more certificates, leaf first.
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type Certificate struct {
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// Certificate contains a chain of one or more certificates. Leaf
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// certificate first.
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Certificate [][]byte
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PrivateKey *rsa.PrivateKey
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}
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@ -143,14 +181,10 @@ func mutualVersion(vers uint16) (uint16, bool) {
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return vers, true
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}
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// The defaultConfig is used in place of a nil *Config in the TLS server and client.
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var varDefaultConfig *Config
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var once sync.Once
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var emptyConfig Config
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func defaultConfig() *Config {
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once.Do(initDefaultConfig)
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return varDefaultConfig
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return &emptyConfig
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}
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// Possible certificate files; stop after finding one.
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@ -162,7 +196,16 @@ var certFiles = []string{
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"/usr/share/curl/curl-ca-bundle.crt", // OS X
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}
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func initDefaultConfig() {
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var once sync.Once
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func defaultRoots() *CASet {
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once.Do(initDefaultRoots)
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return varDefaultRoots
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}
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var varDefaultRoots *CASet
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func initDefaultRoots() {
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roots := NewCASet()
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for _, file := range certFiles {
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data, err := ioutil.ReadFile(file)
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@ -171,10 +214,5 @@ func initDefaultConfig() {
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break
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}
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}
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varDefaultConfig = &Config{
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Rand: rand.Reader,
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Time: time.Seconds,
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RootCAs: roots,
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}
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varDefaultRoots = roots
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}
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@ -30,12 +30,12 @@ func (c *Conn) clientHandshake() os.Error {
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serverName: c.config.ServerName,
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}
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t := uint32(c.config.Time())
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t := uint32(c.config.time())
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hello.random[0] = byte(t >> 24)
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hello.random[1] = byte(t >> 16)
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hello.random[2] = byte(t >> 8)
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hello.random[3] = byte(t)
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_, err := io.ReadFull(c.config.Rand, hello.random[4:])
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_, err := io.ReadFull(c.config.rand(), hello.random[4:])
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if err != nil {
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c.sendAlert(alertInternalError)
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return os.ErrorString("short read from Rand")
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@ -217,12 +217,12 @@ func (c *Conn) clientHandshake() os.Error {
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preMasterSecret := make([]byte, 48)
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preMasterSecret[0] = byte(hello.vers >> 8)
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preMasterSecret[1] = byte(hello.vers)
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_, err = io.ReadFull(c.config.Rand, preMasterSecret[2:])
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_, err = io.ReadFull(c.config.rand(), preMasterSecret[2:])
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if err != nil {
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return c.sendAlert(alertInternalError)
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}
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ckx.ciphertext, err = rsa.EncryptPKCS1v15(c.config.Rand, pub, preMasterSecret)
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ckx.ciphertext, err = rsa.EncryptPKCS1v15(c.config.rand(), pub, preMasterSecret)
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if err != nil {
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return c.sendAlert(alertInternalError)
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}
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@ -235,7 +235,7 @@ func (c *Conn) clientHandshake() os.Error {
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var digest [36]byte
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copy(digest[0:16], finishedHash.serverMD5.Sum())
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copy(digest[16:36], finishedHash.serverSHA1.Sum())
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signed, err := rsa.SignPKCS1v15(c.config.Rand, c.config.Certificates[0].PrivateKey, rsa.HashMD5SHA1, digest[0:])
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signed, err := rsa.SignPKCS1v15(c.config.rand(), c.config.Certificates[0].PrivateKey, rsa.HashMD5SHA1, digest[0:])
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if err != nil {
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return c.sendAlert(alertInternalError)
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}
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@ -84,13 +84,13 @@ func (c *Conn) serverHandshake() os.Error {
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hello.vers = vers
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hello.cipherSuite = suite.id
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t := uint32(config.Time())
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t := uint32(config.time())
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hello.random = make([]byte, 32)
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hello.random[0] = byte(t >> 24)
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hello.random[1] = byte(t >> 16)
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hello.random[2] = byte(t >> 8)
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hello.random[3] = byte(t)
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_, err = io.ReadFull(config.Rand, hello.random[4:])
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_, err = io.ReadFull(config.rand(), hello.random[4:])
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if err != nil {
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return c.sendAlert(alertInternalError)
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}
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@ -209,12 +209,12 @@ func (c *Conn) serverHandshake() os.Error {
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}
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preMasterSecret := make([]byte, 48)
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_, err = io.ReadFull(config.Rand, preMasterSecret[2:])
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_, err = io.ReadFull(config.rand(), preMasterSecret[2:])
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if err != nil {
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return c.sendAlert(alertInternalError)
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}
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err = rsa.DecryptPKCS1v15SessionKey(config.Rand, config.Certificates[0].PrivateKey, ckx.ciphertext, preMasterSecret)
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err = rsa.DecryptPKCS1v15SessionKey(config.rand(), config.Certificates[0].PrivateKey, ckx.ciphertext, preMasterSecret)
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if err != nil {
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return c.sendAlert(alertHandshakeFailure)
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}
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@ -15,19 +15,31 @@ import (
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"strings"
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)
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// Server returns a new TLS server side connection
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// using conn as the underlying transport.
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// The configuration config must be non-nil and must have
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// at least one certificate.
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func Server(conn net.Conn, config *Config) *Conn {
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return &Conn{conn: conn, config: config}
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}
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// Client returns a new TLS client side connection
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// using conn as the underlying transport.
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// Client interprets a nil configuration as equivalent to
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// the zero configuration; see the documentation of Config
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// for the defaults.
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func Client(conn net.Conn, config *Config) *Conn {
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return &Conn{conn: conn, config: config, isClient: true}
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}
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// A Listener implements a network listener (net.Listener) for TLS connections.
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type Listener struct {
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listener net.Listener
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config *Config
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}
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// Accept waits for and returns the next incoming TLS connection.
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// The returned connection c is a *tls.Conn.
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func (l *Listener) Accept() (c net.Conn, err os.Error) {
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c, err = l.listener.Accept()
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if err != nil {
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@ -37,8 +49,10 @@ func (l *Listener) Accept() (c net.Conn, err os.Error) {
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return
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}
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// Close closes the listener.
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func (l *Listener) Close() os.Error { return l.listener.Close() }
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// Addr returns the listener's network address.
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func (l *Listener) Addr() net.Addr { return l.listener.Addr() }
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// NewListener creates a Listener which accepts connections from an inner
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@ -52,7 +66,11 @@ func NewListener(listener net.Listener, config *Config) (l *Listener) {
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return
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}
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func Listen(network, laddr string, config *Config) (net.Listener, os.Error) {
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// Listen creates a TLS listener accepting connections on the
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// given network address using net.Listen.
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// The configuration config must be non-nil and must have
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// at least one certificate.
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func Listen(network, laddr string, config *Config) (*Listener, os.Error) {
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if config == nil || len(config.Certificates) == 0 {
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return nil, os.NewError("tls.Listen: no certificates in configuration")
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}
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@ -63,7 +81,13 @@ func Listen(network, laddr string, config *Config) (net.Listener, os.Error) {
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return NewListener(l, config), nil
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}
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func Dial(network, laddr, raddr string) (net.Conn, os.Error) {
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// Dial connects to the given network address using net.Dial
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// and then initiates a TLS handshake, returning the resulting
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// TLS connection.
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// Dial interprets a nil configuration as equivalent to
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// the zero configuration; see the documentation of Config
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// for the defaults.
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func Dial(network, laddr, raddr string, config *Config) (*Conn, os.Error) {
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c, err := net.Dial(network, laddr, raddr)
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if err != nil {
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return nil, err
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@ -75,15 +99,21 @@ func Dial(network, laddr, raddr string) (net.Conn, os.Error) {
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}
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hostname := raddr[:colonPos]
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config := defaultConfig()
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config.ServerName = hostname
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conn := Client(c, config)
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err = conn.Handshake()
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if err == nil {
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return conn, nil
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if config == nil {
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config = defaultConfig()
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}
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c.Close()
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return nil, err
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if config.ServerName != "" {
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// Make a copy to avoid polluting argument or default.
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c := *config
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c.ServerName = hostname
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config = &c
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}
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conn := Client(c, config)
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if err = conn.Handshake(); err != nil {
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c.Close()
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return nil, err
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}
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return conn, nil
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}
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// LoadX509KeyPair reads and parses a public/private key pair from a pair of
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@ -63,7 +63,7 @@ func send(req *Request) (resp *Response, err os.Error) {
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return nil, err
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}
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} else { // https
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conn, err = tls.Dial("tcp", "", addr)
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conn, err = tls.Dial("tcp", "", addr, nil)
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if err != nil {
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return nil, err
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}
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@ -111,7 +111,7 @@ func Dial(url, protocol, origin string) (ws *Conn, err os.Error) {
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client, err = net.Dial("tcp", "", parsedUrl.Host)
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case "wss":
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client, err = tls.Dial("tcp", "", parsedUrl.Host)
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client, err = tls.Dial("tcp", "", parsedUrl.Host, nil)
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default:
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err = ErrBadScheme
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