mirror of https://github.com/fluffle/goirc
346 lines
8.2 KiB
Go
346 lines
8.2 KiB
Go
package client
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import (
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"bufio"
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"crypto/tls"
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"errors"
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"fmt"
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"github.com/fluffle/goevent/event"
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"github.com/fluffle/goirc/state"
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"github.com/fluffle/golog/logging"
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"net"
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"strings"
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"time"
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)
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// An IRC connection is represented by this struct.
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type Conn struct {
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// Connection Hostname and Nickname
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Host string
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Me *state.Nick
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Network string
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// Event handler registry and dispatcher
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ER event.EventRegistry
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ED event.EventDispatcher
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// State tracker for nicks and channels
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ST state.StateTracker
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st bool
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// Logger for debugging/warning/etc output
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l logging.Logger
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// Use the State field to store external state that handlers might need.
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// Remember ... you might need locking for this ;-)
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State interface{}
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// I/O stuff to server
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sock net.Conn
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io *bufio.ReadWriter
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in chan *Line
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out chan string
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Connected bool
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// Control channels to goroutines
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cSend, cLoop, cPing chan bool
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// Misc knobs to tweak client behaviour:
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// Are we connecting via SSL? Do we care about certificate validity?
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SSL bool
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SSLConfig *tls.Config
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// Client->server ping frequency, in seconds. Defaults to 3m.
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PingFreq time.Duration
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// Set this to true to disable flood protection and false to re-enable
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Flood bool
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// Internal counters for flood protection
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badness time.Duration
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lastsent time.Time
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}
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// Creates a new IRC connection object, but doesn't connect to anything so
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// that you can add event handlers to it. See AddHandler() for details.
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func SimpleClient(nick string, args ...string) *Conn {
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r := event.NewRegistry()
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l := logging.InitFromFlags()
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ident := "goirc"
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name := "Powered by GoIRC"
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if len(args) > 0 && args[0] != "" {
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ident = args[0]
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}
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if len(args) > 1 && args[1] != "" {
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name = args[1]
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}
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return Client(nick, ident, name, r, l)
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}
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func Client(nick, ident, name string,
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r event.EventRegistry, l logging.Logger) *Conn {
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if r == nil || l == nil {
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return nil
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}
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conn := &Conn{
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ER: r,
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ED: r,
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l: l,
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st: false,
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in: make(chan *Line, 32),
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out: make(chan string, 32),
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cSend: make(chan bool),
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cLoop: make(chan bool),
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cPing: make(chan bool),
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SSL: false,
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SSLConfig: nil,
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PingFreq: 3 * time.Minute,
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Flood: false,
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badness: 0,
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lastsent: time.Now(),
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}
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conn.addIntHandlers()
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conn.Me = state.NewNick(nick, l)
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conn.Me.Ident = ident
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conn.Me.Name = name
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conn.initialise()
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return conn
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}
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func (conn *Conn) EnableStateTracking() {
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if !conn.st {
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n := conn.Me
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conn.ST = state.NewTracker(n.Nick, conn.l)
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conn.Me = conn.ST.Me()
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conn.Me.Ident = n.Ident
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conn.Me.Name = n.Name
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conn.addSTHandlers()
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conn.st = true
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}
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}
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func (conn *Conn) DisableStateTracking() {
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if conn.st {
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conn.st = false
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conn.delSTHandlers()
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conn.ST.Wipe()
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conn.ST = nil
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}
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}
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// Per-connection state initialisation.
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func (conn *Conn) initialise() {
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conn.io = nil
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conn.sock = nil
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if conn.st {
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conn.ST.Wipe()
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}
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}
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// Connect the IRC connection object to "host[:port]" which should be either
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// a hostname or an IP address, with an optional port. To enable explicit SSL
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// on the connection to the IRC server, set Conn.SSL to true before calling
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// Connect(). The port will default to 6697 if ssl is enabled, and 6667
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// otherwise. You can also provide an optional connect password.
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func (conn *Conn) Connect(host string, pass ...string) error {
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if conn.Connected {
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return errors.New(fmt.Sprintf(
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"irc.Connect(): already connected to %s, cannot connect to %s",
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conn.Host, host))
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}
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if conn.SSL {
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if !hasPort(host) {
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host += ":6697"
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}
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conn.l.Info("irc.Connect(): Connecting to %s with SSL.", host)
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if s, err := tls.Dial("tcp", host, conn.SSLConfig); err == nil {
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conn.sock = s
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} else {
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return err
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}
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} else {
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if !hasPort(host) {
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host += ":6667"
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}
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conn.l.Info("irc.Connect(): Connecting to %s without SSL.", host)
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if s, err := net.Dial("tcp", host); err == nil {
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conn.sock = s
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} else {
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return err
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}
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}
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conn.Host = host
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conn.Connected = true
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conn.postConnect()
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if len(pass) > 0 {
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conn.Pass(pass[0])
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}
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conn.Nick(conn.Me.Nick)
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conn.User(conn.Me.Ident, conn.Me.Name)
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return nil
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}
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// Post-connection setup (for ease of testing)
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func (conn *Conn) postConnect() {
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conn.io = bufio.NewReadWriter(
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bufio.NewReader(conn.sock),
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bufio.NewWriter(conn.sock))
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go conn.send()
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go conn.recv()
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if conn.PingFreq > 0 {
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go conn.ping()
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} else {
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// Otherwise the send in shutdown will hang :-/
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go func() { <-conn.cPing }()
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}
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go conn.runLoop()
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}
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// copied from http.client for great justice
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func hasPort(s string) bool {
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return strings.LastIndex(s, ":") > strings.LastIndex(s, "]")
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}
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// goroutine to pass data from output channel to write()
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func (conn *Conn) send() {
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for {
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select {
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case line := <-conn.out:
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conn.write(line)
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case <-conn.cSend:
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// strobe on control channel, bail out
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return
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}
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}
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}
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// receive one \r\n terminated line from peer, parse and dispatch it
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func (conn *Conn) recv() {
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for {
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s, err := conn.io.ReadString('\n')
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if err != nil {
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conn.l.Error("irc.recv(): %s", err.Error())
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conn.shutdown()
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return
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}
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s = strings.Trim(s, "\r\n")
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conn.l.Debug("<- %s", s)
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if line := parseLine(s); line != nil {
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line.Time = time.Now()
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conn.in <- line
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} else {
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conn.l.Warn("irc.recv(): problems parsing line:\n %s", s)
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}
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}
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}
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// Repeatedly pings the server every PingFreq seconds (no matter what)
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func (conn *Conn) ping() {
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tick := time.NewTicker(conn.PingFreq)
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for {
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select {
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case <-tick.C:
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conn.Raw(fmt.Sprintf("PING :%d", time.Now().UnixNano()))
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case <-conn.cPing:
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tick.Stop()
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return
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}
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}
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}
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// goroutine to dispatch events for lines received on input channel
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func (conn *Conn) runLoop() {
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for {
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select {
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case line := <-conn.in:
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conn.ED.Dispatch(line.Cmd, conn, line)
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case <-conn.cLoop:
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// strobe on control channel, bail out
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return
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}
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}
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}
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// Write a \r\n terminated line of output to the connected server,
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// using Hybrid's algorithm to rate limit if conn.Flood is false.
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func (conn *Conn) write(line string) {
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if !conn.Flood {
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if t := conn.rateLimit(len(line)); t != 0 {
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// sleep for the current line's time value before sending it
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conn.l.Debug("irc.rateLimit(): Flood! Sleeping for %.2f secs.",
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t.Seconds())
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<-time.After(t)
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}
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}
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if _, err := conn.io.WriteString(line + "\r\n"); err != nil {
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conn.l.Error("irc.send(): %s", err.Error())
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conn.shutdown()
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return
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}
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if err := conn.io.Flush(); err != nil {
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conn.l.Error("irc.send(): %s", err.Error())
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conn.shutdown()
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return
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}
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conn.l.Debug("-> %s", line)
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}
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// Implement Hybrid's flood control algorithm to rate-limit outgoing lines.
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func (conn *Conn) rateLimit(chars int) time.Duration {
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// Hybrid's algorithm allows for 2 seconds per line and an additional
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// 1/120 of a second per character on that line.
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linetime := 2*time.Second + time.Duration(chars)*time.Second/120
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elapsed := time.Now().Sub(conn.lastsent)
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if conn.badness += linetime - elapsed; conn.badness < 0 {
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// negative badness times are badness...
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conn.badness = 0
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}
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conn.lastsent = time.Now()
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// If we've sent more than 10 second's worth of lines according to the
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// calculation above, then we're at risk of "Excess Flood".
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if conn.badness > 10*time.Second {
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return linetime
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}
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return 0
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}
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func (conn *Conn) shutdown() {
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// Guard against double-call of shutdown() if we get an error in send()
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// as calling sock.Close() will cause recv() to recieve EOF in readstring()
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if conn.Connected {
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conn.l.Info("irc.shutdown(): Disconnected from server.")
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conn.ED.Dispatch("disconnected", conn, &Line{})
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conn.Connected = false
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conn.sock.Close()
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conn.cSend <- true
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conn.cLoop <- true
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conn.cPing <- true
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// reinit datastructures ready for next connection
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// do this here rather than after runLoop()'s for due to race
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conn.initialise()
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}
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}
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// Dumps a load of information about the current state of the connection to a
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// string for debugging state tracking and other such things.
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func (conn *Conn) String() string {
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str := "GoIRC Connection\n"
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str += "----------------\n\n"
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if conn.Connected {
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str += "Connected to " + conn.Host + "\n\n"
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} else {
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str += "Not currently connected!\n\n"
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}
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str += conn.Me.String() + "\n"
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if conn.st {
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str += conn.ST.String() + "\n"
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}
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return str
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}
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