134 lines
3.0 KiB
Go
134 lines
3.0 KiB
Go
package prox5
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import (
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"sync/atomic"
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"time"
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)
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// Socks5Str gets a SOCKS5 proxy that we have fully verified (dialed and then retrieved our IP address from a what-is-my-ip endpoint.
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// Will block if one is not available!
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func (p5 *ProxyEngine) Socks5Str() string {
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for {
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select {
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case sock := <-p5.Valids.SOCKS5:
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if !p5.stillGood(sock) {
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continue
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}
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p5.stats.dispense()
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return sock.Endpoint
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default:
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p5.recycling()
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}
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}
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}
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// Socks4Str gets a SOCKS4 proxy that we have fully verified.
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// Will block if one is not available!
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func (p5 *ProxyEngine) Socks4Str() string {
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defer p5.stats.dispense()
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for {
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select {
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case sock := <-p5.Valids.SOCKS4:
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if !p5.stillGood(sock) {
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continue
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}
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return sock.Endpoint
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default:
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p5.recycling()
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}
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}
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}
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// Socks4aStr gets a SOCKS4 proxy that we have fully verified.
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// Will block if one is not available!
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func (p5 *ProxyEngine) Socks4aStr() string {
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defer p5.stats.dispense()
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for {
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select {
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case sock := <-p5.Valids.SOCKS4a:
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if !p5.stillGood(sock) {
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continue
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}
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return sock.Endpoint
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default:
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p5.recycling()
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}
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}
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}
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// GetHTTPTunnel checks for an available HTTP CONNECT proxy in our pool.
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// For now, this function does not loop forever like the GetAnySOCKS does.
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// Alternatively it can be included within the for loop by passing true to GetAnySOCKS.
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// If there is an HTTP proxy available, ok will be true. If not, it will return false without delay.
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func (p5 *ProxyEngine) GetHTTPTunnel() (p *Proxy, ok bool) {
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select {
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case httptunnel := <-p5.Valids.HTTP:
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return httptunnel, true
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default:
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return nil, false
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}
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}
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// GetAnySOCKS retrieves any version SOCKS proxy as a Proxy type
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// Will block if one is not available!
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func (p5 *ProxyEngine) GetAnySOCKS() *Proxy {
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defer p5.stats.dispense()
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for {
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var sock *Proxy
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select {
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case sock = <-p5.Valids.SOCKS4:
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break
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case sock = <-p5.Valids.SOCKS4a:
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break
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case sock = <-p5.Valids.SOCKS5:
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break
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default:
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p5.recycling()
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}
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if p5.stillGood(sock) {
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return sock
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}
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continue
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}
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}
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func (p5 *ProxyEngine) stillGood(sock *Proxy) bool {
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if sock == nil {
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return false
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}
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if !atomic.CompareAndSwapUint32(&sock.lock, stateUnlocked, stateLocked) {
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return false
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}
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defer atomic.StoreUint32(&sock.lock, stateUnlocked)
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if atomic.LoadInt64(&sock.timesBad) > int64(p5.GetRemoveAfter()) && p5.GetRemoveAfter() != -1 {
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buf := strs.Get()
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buf.MustWriteString("deleting from map (too many failures): ")
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buf.MustWriteString(sock.Endpoint)
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p5.dbgPrint(buf)
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if err := p5.proxyMap.delete(sock.Endpoint); err != nil {
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p5.dbgPrint(simpleString(err.Error()))
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}
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}
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if p5.badProx.Peek(sock) {
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buf := strs.Get()
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buf.MustWriteString("badProx dial ratelimited: ")
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buf.MustWriteString(sock.Endpoint)
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p5.dbgPrint(buf)
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return false
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}
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if time.Since(sock.lastValidated) > p5.opt.stale {
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buf := strs.Get()
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buf.MustWriteString("proxy stale: ")
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buf.MustWriteString(sock.Endpoint)
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p5.dbgPrint(buf)
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go p5.stats.stale()
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return false
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}
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return true
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}
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