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dialer.go
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dialer.go
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// Copyright 2015-2019 HenryLee. All Rights Reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package erpc
import (
"context"
"crypto/tls"
"net"
"time"
"github.com/andeya/erpc/v7/kcp"
"github.com/andeya/erpc/v7/quic"
)
// Dialer dial-up connection
type Dialer struct {
network string
localAddr net.Addr
tlsConfig *tls.Config
dialTimeout time.Duration
redialInterval time.Duration
redialTimes int32
}
// NewDialer creates a dialer.
func NewDialer(localAddr net.Addr, tlsConfig *tls.Config,
dialTimeout, redialInterval time.Duration, redialTimes int32,
) *Dialer {
return &Dialer{
network: localAddr.Network(),
localAddr: localAddr,
tlsConfig: tlsConfig,
dialTimeout: dialTimeout,
redialInterval: redialInterval,
redialTimes: redialTimes,
}
}
// Network returns the network.
func (d *Dialer) Network() string {
return d.network
}
// LocalAddr returns the local address.
func (d *Dialer) LocalAddr() net.Addr {
return d.localAddr
}
// TLSConfig returns the TLS config.
func (d *Dialer) TLSConfig() *tls.Config {
return d.tlsConfig
}
// DialTimeout returns the dial timeout.
func (d *Dialer) DialTimeout() time.Duration {
return d.dialTimeout
}
// RedialInterval returns the redial interval.
func (d *Dialer) RedialInterval() time.Duration {
return d.redialInterval
}
// RedialTimes returns the redial times.
func (d *Dialer) RedialTimes() int32 {
return d.redialTimes
}
// Dial dials the connection, and try again if it fails.
func (d *Dialer) Dial(addr string) (net.Conn, error) {
return d.dialWithRetry(addr, "", nil)
}
// dialWithRetry dials the connection, and try again if it fails.
// NOTE:
//
// sessID is not empty only when the disconnection is redialing
func (d *Dialer) dialWithRetry(addr, sessID string, fn func(conn net.Conn) error) (net.Conn, error) {
conn, err := d.dialOne(addr)
if err == nil {
if fn == nil {
return conn, nil
}
err = fn(conn)
if err == nil {
return conn, nil
}
}
redialTimes := d.newRedialCounter()
for redialTimes.Next() {
time.Sleep(d.redialInterval)
if sessID == "" {
Debugf("trying to redial... (network:%s, addr:%s)", d.network, addr)
} else {
Debugf("trying to redial... (network:%s, addr:%s, id:%s)", d.network, addr, sessID)
}
conn, err = d.dialOne(addr)
if err == nil {
if fn == nil {
return conn, nil
}
err = fn(conn)
if err == nil {
return conn, nil
}
}
}
return nil, err
}
const (
dataShards = 10
parityShards = 3
)
// dialOne dials the connection once.
func (d *Dialer) dialOne(addr string) (net.Conn, error) {
if network := asQUIC(d.network); network != "" {
ctx := context.Background()
if d.dialTimeout > 0 {
ctx, _ = context.WithTimeout(ctx, d.dialTimeout)
}
var tlsConf = d.tlsConfig
if tlsConf == nil {
tlsConf = GenerateTLSConfigForClient()
}
return quic.DialAddrContext(ctx, network, d.localAddr.(*FakeAddr).udpAddr, addr, tlsConf, nil)
}
if network := asKCP(d.network); network != "" {
return kcp.DialAddrContext(network, d.localAddr.(*FakeAddr).udpAddr, addr, d.tlsConfig, dataShards, parityShards)
}
dialer := &net.Dialer{
LocalAddr: d.localAddr,
Timeout: d.dialTimeout,
}
if d.tlsConfig != nil {
return tls.DialWithDialer(dialer, d.network, addr, d.tlsConfig)
}
return dialer.Dial(d.network, addr)
}
// newRedialCounter creates a new redial counter.
func (d *Dialer) newRedialCounter() *redialCounter {
r := redialCounter(d.redialTimes)
return &r
}
// redialCounter redial counter
type redialCounter int32
// Next returns whether there are still more redial times.
func (r *redialCounter) Next() bool {
t := *r
if t == 0 {
return false
}
if t > 0 {
*r--
}
return true
}