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ergo/irc/server.go

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// Copyright (c) 2012-2014 Jeremy Latt
// Copyright (c) 2014-2015 Edmund Huber
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// Copyright (c) 2016-2017 Daniel Oaks <daniel@danieloaks.net>
// released under the MIT license
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package irc
import (
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"bufio"
"crypto/tls"
"fmt"
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"net"
"net/http"
_ "net/http/pprof"
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"os"
"os/signal"
"strconv"
"strings"
"sync"
"syscall"
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"time"
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"unsafe"
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"github.com/goshuirc/irc-go/ircfmt"
"github.com/oragono/oragono/irc/caps"
"github.com/oragono/oragono/irc/connection_limits"
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"github.com/oragono/oragono/irc/logger"
"github.com/oragono/oragono/irc/modes"
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"github.com/oragono/oragono/irc/sno"
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"github.com/tidwall/buntdb"
)
var (
// common error line to sub values into
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errorMsg = "ERROR :%s\r\n"
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// supportedUserModesString acts as a cache for when we introduce users
supportedUserModesString = modes.SupportedUserModes.String()
// supportedChannelModesString acts as a cache for when we introduce users
supportedChannelModesString = modes.SupportedChannelModes.String()
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// whitelist of caps to serve on the STS-only listener. In particular,
// never advertise SASL, to discourage people from sending their passwords:
stsOnlyCaps = caps.NewSet(caps.STS, caps.MessageTags, caps.ServerTime, caps.LabeledResponse, caps.Nope)
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// we only have standard channels for now. TODO: any updates to this
// will also need to be reflected in CasefoldChannel
chanTypes = "#"
throttleMessage = "You have attempted to connect too many times within a short duration. Wait a while, and you will be able to connect."
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)
// ListenerWrapper wraps a listener so it can be safely reconfigured or stopped
type ListenerWrapper struct {
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// protects atomic update of config and shouldStop:
sync.Mutex // tier 1
listener net.Listener
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config listenerConfig
shouldStop bool
}
// Server is the main Oragono server.
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type Server struct {
accounts AccountManager
channels ChannelManager
channelRegistry ChannelRegistry
clients ClientManager
config unsafe.Pointer
configFilename string
connectionLimiter connection_limits.Limiter
ctime time.Time
dlines *DLineManager
helpIndexManager HelpIndexManager
klines *KLineManager
listeners map[string]*ListenerWrapper
logger *logger.Manager
monitorManager MonitorManager
name string
nameCasefolded string
rehashMutex sync.Mutex // tier 4
rehashSignal chan os.Signal
pprofServer *http.Server
resumeManager ResumeManager
signals chan os.Signal
snomasks SnoManager
store *buntdb.DB
torLimiter connection_limits.TorLimiter
whoWas WhoWasList
stats Stats
semaphores ServerSemaphores
}
var (
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// ServerExitSignals are the signals the server will exit on.
ServerExitSignals = []os.Signal{
syscall.SIGINT,
syscall.SIGTERM,
syscall.SIGQUIT,
}
)
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type clientConn struct {
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Conn net.Conn
Config listenerConfig
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}
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// NewServer returns a new Oragono server.
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func NewServer(config *Config, logger *logger.Manager) (*Server, error) {
// initialize data structures
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server := &Server{
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ctime: time.Now().UTC(),
listeners: make(map[string]*ListenerWrapper),
logger: logger,
rehashSignal: make(chan os.Signal, 1),
signals: make(chan os.Signal, len(ServerExitSignals)),
}
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server.clients.Initialize()
server.semaphores.Initialize()
server.resumeManager.Initialize(server)
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server.whoWas.Initialize(config.Limits.WhowasEntries)
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server.monitorManager.Initialize()
server.snomasks.Initialize()
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if err := server.applyConfig(config, true); err != nil {
return nil, err
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}
// Attempt to clean up when receiving these signals.
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signal.Notify(server.signals, ServerExitSignals...)
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signal.Notify(server.rehashSignal, syscall.SIGHUP)
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return server, nil
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}
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// Shutdown shuts down the server.
func (server *Server) Shutdown() {
//TODO(dan): Make sure we disallow new nicks
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for _, client := range server.clients.AllClients() {
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client.Notice("Server is shutting down")
}
if err := server.store.Close(); err != nil {
server.logger.Error("shutdown", fmt.Sprintln("Could not close datastore:", err))
}
}
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// Run starts the server.
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func (server *Server) Run() {
// defer closing db/store
defer server.store.Close()
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for {
select {
case <-server.signals:
server.Shutdown()
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return
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case <-server.rehashSignal:
go func() {
server.logger.Info("server", "Rehashing due to SIGHUP")
err := server.rehash()
if err != nil {
server.logger.Error("server", fmt.Sprintln("Failed to rehash:", err.Error()))
}
}()
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}
}
}
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func (server *Server) checkBans(ipaddr net.IP) (banned bool, message string) {
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// check DLINEs
isBanned, info := server.dlines.CheckIP(ipaddr)
if isBanned {
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server.logger.Info("localconnect-ip", fmt.Sprintf("Client from %v rejected by d-line", ipaddr))
return true, info.BanMessage("You are banned from this server (%s)")
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}
// check connection limits
err := server.connectionLimiter.AddClient(ipaddr)
if err == connection_limits.ErrLimitExceeded {
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// too many connections from one client, tell the client and close the connection
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server.logger.Info("localconnect-ip", fmt.Sprintf("Client from %v rejected for connection limit", ipaddr))
return true, "Too many clients from your network"
} else if err == connection_limits.ErrThrottleExceeded {
duration := server.Config().Server.IPLimits.BanDuration
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if duration == 0 {
return false, ""
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}
server.dlines.AddIP(ipaddr, duration, throttleMessage, "Exceeded automated connection throttle", "auto.connection.throttler")
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// they're DLINE'd for 15 minutes or whatever, so we can reset the connection throttle now,
// and once their temporary DLINE is finished they can fill up the throttler again
server.connectionLimiter.ResetThrottle(ipaddr)
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// this might not show up properly on some clients, but our objective here is just to close it out before it has a load impact on us
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server.logger.Info(
"localconnect-ip",
fmt.Sprintf("Client from %v exceeded connection throttle, d-lining for %v", ipaddr, duration))
return true, throttleMessage
} else if err != nil {
server.logger.Warning("internal", "unexpected ban result", err.Error())
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}
return false, ""
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}
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func (server *Server) checkTorLimits() (banned bool, message string) {
switch server.torLimiter.AddClient() {
case connection_limits.ErrLimitExceeded:
return true, "Too many clients from the Tor network"
case connection_limits.ErrThrottleExceeded:
return true, "Exceeded connection throttle for the Tor network"
default:
return false, ""
}
}
//
// IRC protocol listeners
//
// createListener starts a given listener.
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func (server *Server) createListener(addr string, conf listenerConfig, bindMode os.FileMode) (*ListenerWrapper, error) {
// make listener
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var listener net.Listener
var err error
addr = strings.TrimPrefix(addr, "unix:")
if strings.HasPrefix(addr, "/") {
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// https://stackoverflow.com/a/34881585
os.Remove(addr)
listener, err = net.Listen("unix", addr)
if err == nil && bindMode != 0 {
os.Chmod(addr, bindMode)
}
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} else {
listener, err = net.Listen("tcp", addr)
}
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if err != nil {
return nil, err
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}
// throw our details to the server so we can be modified/killed later
wrapper := ListenerWrapper{
listener: listener,
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config: conf,
shouldStop: false,
}
var shouldStop bool
// setup accept goroutine
go func() {
for {
conn, err := listener.Accept()
// synchronously access config data:
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wrapper.Lock()
shouldStop = wrapper.shouldStop
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conf := wrapper.config
wrapper.Unlock()
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if shouldStop {
if conn != nil {
conn.Close()
}
listener.Close()
return
} else if err == nil {
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var proxyLine string
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if conf.ProxyBeforeTLS {
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proxyLine = readRawProxyLine(conn)
if proxyLine == "" {
server.logger.Error("internal", "bad TLS-proxy line from", addr)
conn.Close()
continue
}
}
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if conf.TLSConfig != nil {
conn = tls.Server(conn, conf.TLSConfig)
}
newConn := clientConn{
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Conn: conn,
Config: conf,
}
// hand off the connection
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go server.RunClient(newConn, proxyLine)
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} else {
server.logger.Error("internal", "accept error", addr, err.Error())
}
}
}()
return &wrapper, nil
}
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//
// server functionality
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//
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func (server *Server) tryRegister(c *Client, session *Session) (exiting bool) {
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// if the session just sent us a RESUME line, try to resume
if session.resumeDetails != nil {
session.tryResume()
return // whether we succeeded or failed, either way `c` is not getting registered
}
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// try to complete registration normally
if c.preregNick == "" || !c.HasUsername() || session.capState == caps.NegotiatingState {
return
}
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if c.isSTSOnly {
server.playRegistrationBurst(session)
return true
}
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// client MUST send PASS if necessary, or authenticate with SASL if necessary,
// before completing the other registration commands
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authOutcome := c.isAuthorized(server.Config())
var quitMessage string
switch authOutcome {
case authFailPass:
quitMessage = c.t("Password incorrect")
c.Send(nil, server.name, ERR_PASSWDMISMATCH, "*", quitMessage)
case authFailSaslRequired, authFailTorSaslRequired:
quitMessage = c.t("You must log in with SASL to join this server")
c.Send(nil, c.server.name, "FAIL", "*", "ACCOUNT_REQUIRED", quitMessage)
}
if authOutcome != authSuccess {
c.Quit(quitMessage, nil)
return true
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}
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rb := NewResponseBuffer(session)
nickAssigned := performNickChange(server, c, c, session, c.preregNick, rb)
rb.Send(true)
if !nickAssigned {
c.preregNick = ""
return
}
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// we have nickname, username, and the final value of the IP address:
// do the hostname lookup and set the nickmask
session.client.lookupHostname(session, false)
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if session.client != c {
// reattached, bail out.
// we'll play the reg burst later, on the new goroutine associated with
// (thisSession, otherClient). This is to avoid having to transfer state
// like nickname, hostname, etc. to show the correct values in the reg burst.
return
}
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// check KLINEs
isBanned, info := server.klines.CheckMasks(c.AllNickmasks()...)
if isBanned {
c.Quit(info.BanMessage(c.t("You are banned from this server (%s)")), nil)
return true
}
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// registration has succeeded:
c.SetRegistered()
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// count new user in statistics
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server.stats.Register()
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server.monitorManager.AlertAbout(c, true)
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server.playRegistrationBurst(session)
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return false
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}
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func (server *Server) playRegistrationBurst(session *Session) {
c := session.client
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// continue registration
d := c.Details()
server.logger.Info("localconnect", fmt.Sprintf("Client connected [%s] [u:%s] [r:%s]", d.nick, d.username, d.realname))
server.snomasks.Send(sno.LocalConnects, fmt.Sprintf("Client connected [%s] [u:%s] [h:%s] [ip:%s] [r:%s]", d.nick, d.username, c.RawHostname(), c.IPString(), d.realname))
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// send welcome text
//NOTE(dan): we specifically use the NICK here instead of the nickmask
// see http://modern.ircdocs.horse/#rplwelcome-001 for details on why we avoid using the nickmask
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session.Send(nil, server.name, RPL_WELCOME, d.nick, fmt.Sprintf(c.t("Welcome to the Internet Relay Network %s"), d.nick))
session.Send(nil, server.name, RPL_YOURHOST, d.nick, fmt.Sprintf(c.t("Your host is %[1]s, running version %[2]s"), server.name, Ver))
session.Send(nil, server.name, RPL_CREATED, d.nick, fmt.Sprintf(c.t("This server was created %s"), server.ctime.Format(time.RFC1123)))
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//TODO(dan): Look at adding last optional [<channel modes with a parameter>] parameter
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session.Send(nil, server.name, RPL_MYINFO, d.nick, server.name, Ver, supportedUserModesString, supportedChannelModesString)
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if c.isSTSOnly {
for _, line := range server.Config().Server.STS.bannerLines {
c.Notice(line)
}
return
}
rb := NewResponseBuffer(session)
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server.RplISupport(c, rb)
server.Lusers(c, rb)
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server.MOTD(c, rb)
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rb.Send(true)
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modestring := c.ModeString()
if modestring != "+" {
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session.Send(nil, d.nickMask, RPL_UMODEIS, d.nick, modestring)
}
c.attemptAutoOper(session)
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if server.logger.IsLoggingRawIO() {
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session.Send(nil, c.server.name, "NOTICE", d.nick, c.t("This server is in debug mode and is logging all user I/O. If you do not wish for everything you send to be readable by the server owner(s), please disconnect."))
}
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// #572: defer nick warnings to the end of the registration burst
session.client.nickTimer.Touch(nil)
}
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// RplISupport outputs our ISUPPORT lines to the client. This is used on connection and in VERSION responses.
func (server *Server) RplISupport(client *Client, rb *ResponseBuffer) {
translatedISupport := client.t("are supported by this server")
nick := client.Nick()
config := server.Config()
for _, cachedTokenLine := range config.Server.isupport.CachedReply {
length := len(cachedTokenLine) + 2
tokenline := make([]string, length)
tokenline[0] = nick
copy(tokenline[1:], cachedTokenLine)
tokenline[length-1] = translatedISupport
rb.Add(nil, server.name, RPL_ISUPPORT, tokenline...)
}
}
func (server *Server) Lusers(client *Client, rb *ResponseBuffer) {
nick := client.Nick()
stats := server.stats.GetValues()
rb.Add(nil, server.name, RPL_LUSERCLIENT, nick, fmt.Sprintf(client.t("There are %[1]d users and %[2]d invisible on %[3]d server(s)"), stats.Total-stats.Invisible, stats.Invisible, 1))
rb.Add(nil, server.name, RPL_LUSEROP, nick, strconv.Itoa(stats.Operators), client.t("IRC Operators online"))
rb.Add(nil, server.name, RPL_LUSERUNKNOWN, nick, strconv.Itoa(stats.Unknown), client.t("unregistered connections"))
rb.Add(nil, server.name, RPL_LUSERCHANNELS, nick, strconv.Itoa(server.channels.Len()), client.t("channels formed"))
rb.Add(nil, server.name, RPL_LUSERME, nick, fmt.Sprintf(client.t("I have %[1]d clients and %[2]d servers"), stats.Total, 1))
total := strconv.Itoa(stats.Total)
max := strconv.Itoa(stats.Max)
rb.Add(nil, server.name, RPL_LOCALUSERS, nick, total, max, fmt.Sprintf(client.t("Current local users %[1]s, max %[2]s"), total, max))
rb.Add(nil, server.name, RPL_GLOBALUSERS, nick, total, max, fmt.Sprintf(client.t("Current global users %[1]s, max %[2]s"), total, max))
}
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// MOTD serves the Message of the Day.
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func (server *Server) MOTD(client *Client, rb *ResponseBuffer) {
motdLines := server.Config().Server.motdLines
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if len(motdLines) < 1 {
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rb.Add(nil, server.name, ERR_NOMOTD, client.nick, client.t("MOTD File is missing"))
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return
}
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rb.Add(nil, server.name, RPL_MOTDSTART, client.nick, fmt.Sprintf(client.t("- %s Message of the day - "), server.name))
for _, line := range motdLines {
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rb.Add(nil, server.name, RPL_MOTD, client.nick, line)
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}
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rb.Add(nil, server.name, RPL_ENDOFMOTD, client.nick, client.t("End of MOTD command"))
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}
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// WhoisChannelsNames returns the common channel names between two users.
func (client *Client) WhoisChannelsNames(target *Client, multiPrefix bool) []string {
var chstrs []string
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for _, channel := range target.Channels() {
// channel is secret and the target can't see it
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if !client.HasMode(modes.Operator) {
if (target.HasMode(modes.Invisible) || channel.flags.HasMode(modes.Secret)) && !channel.hasClient(client) {
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continue
}
}
chstrs = append(chstrs, channel.ClientPrefixes(target, multiPrefix)+channel.name)
}
return chstrs
}
func (client *Client) getWhoisOf(target *Client, rb *ResponseBuffer) {
cnick := client.Nick()
targetInfo := target.Details()
rb.Add(nil, client.server.name, RPL_WHOISUSER, cnick, targetInfo.nick, targetInfo.username, targetInfo.hostname, "*", targetInfo.realname)
tnick := targetInfo.nick
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whoischannels := client.WhoisChannelsNames(target, rb.session.capabilities.Has(caps.MultiPrefix))
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if whoischannels != nil {
rb.Add(nil, client.server.name, RPL_WHOISCHANNELS, cnick, tnick, strings.Join(whoischannels, " "))
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}
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tOper := target.Oper()
if tOper != nil {
rb.Add(nil, client.server.name, RPL_WHOISOPERATOR, cnick, tnick, tOper.WhoisLine)
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}
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if client.HasMode(modes.Operator) || client == target {
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rb.Add(nil, client.server.name, RPL_WHOISACTUALLY, cnick, tnick, fmt.Sprintf("%s@%s", targetInfo.username, target.RawHostname()), target.IPString(), client.t("Actual user@host, Actual IP"))
}
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if target.HasMode(modes.TLS) {
rb.Add(nil, client.server.name, RPL_WHOISSECURE, cnick, tnick, client.t("is using a secure connection"))
}
if targetInfo.accountName != "*" {
rb.Add(nil, client.server.name, RPL_WHOISACCOUNT, cnick, tnick, targetInfo.accountName, client.t("is logged in as"))
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}
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if target.HasMode(modes.Bot) {
rb.Add(nil, client.server.name, RPL_WHOISBOT, cnick, tnick, ircfmt.Unescape(fmt.Sprintf(client.t("is a $bBot$b on %s"), client.server.Config().Network.Name)))
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}
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if target.certfp != "" && (client.HasMode(modes.Operator) || client == target) {
rb.Add(nil, client.server.name, RPL_WHOISCERTFP, cnick, tnick, fmt.Sprintf(client.t("has client certificate fingerprint %s"), target.certfp))
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}
rb.Add(nil, client.server.name, RPL_WHOISIDLE, cnick, tnick, strconv.FormatUint(target.IdleSeconds(), 10), strconv.FormatInt(target.SignonTime(), 10), client.t("seconds idle, signon time"))
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}
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// rplWhoReply returns the WHO reply between one user and another channel/user.
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// <channel> <user> <host> <server> <nick> ( "H" / "G" ) ["*"] [ ( "@" / "+" ) ]
// :<hopcount> <real name>
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func (client *Client) rplWhoReply(channel *Channel, target *Client, rb *ResponseBuffer) {
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channelName := "*"
flags := ""
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if target.Away() {
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flags = "G"
} else {
flags = "H"
}
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if target.HasMode(modes.Operator) {
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flags += "*"
}
if channel != nil {
// TODO is this right?
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flags += channel.ClientPrefixes(target, rb.session.capabilities.Has(caps.MultiPrefix))
channelName = channel.name
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}
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details := target.Details()
// hardcode a hopcount of 0 for now
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rb.Add(nil, client.server.name, RPL_WHOREPLY, client.Nick(), channelName, details.username, details.hostname, client.server.name, details.nick, flags, "0 "+details.realname)
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}
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// rehash reloads the config and applies the changes from the config file.
func (server *Server) rehash() error {
server.logger.Debug("server", "Starting rehash")
// only let one REHASH go on at a time
server.rehashMutex.Lock()
defer server.rehashMutex.Unlock()
server.logger.Debug("server", "Got rehash lock")
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config, err := LoadConfig(server.configFilename)
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if err != nil {
return fmt.Errorf("Error loading config file config: %s", err.Error())
}
err = server.applyConfig(config, false)
if err != nil {
return fmt.Errorf("Error applying config changes: %s", err.Error())
}
return nil
}
func (server *Server) applyConfig(config *Config, initial bool) (err error) {
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if initial {
server.configFilename = config.Filename
server.name = config.Server.Name
server.nameCasefolded = config.Server.nameCasefolded
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globalCasemappingSetting = config.Server.Casemapping
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} else {
// enforce configs that can't be changed after launch:
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if server.name != config.Server.Name {
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return fmt.Errorf("Server name cannot be changed after launching the server, rehash aborted")
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} else if server.Config().Datastore.Path != config.Datastore.Path {
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return fmt.Errorf("Datastore path cannot be changed after launching the server, rehash aborted")
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} else if globalCasemappingSetting != config.Server.Casemapping {
return fmt.Errorf("Casemapping cannot be changed after launching the server, rehash aborted")
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}
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}
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server.logger.Info("server", "Using config file", server.configFilename)
oldConfig := server.Config()
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// first, reload config sections for functionality implemented in subpackages:
wasLoggingRawIO := !initial && server.logger.IsLoggingRawIO()
err = server.logger.ApplyConfig(config.Logging)
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if err != nil {
return err
}
nowLoggingRawIO := server.logger.IsLoggingRawIO()
// notify existing clients if raw i/o logging was enabled by a rehash
sendRawOutputNotice := !wasLoggingRawIO && nowLoggingRawIO
server.connectionLimiter.ApplyConfig(&config.Server.IPLimits)
tlConf := &config.Server.TorListeners
server.torLimiter.Configure(tlConf.MaxConnections, tlConf.ThrottleDuration, tlConf.MaxConnectionsPerDuration)
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// Translations
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server.logger.Debug("server", "Regenerating HELP indexes for new languages")
server.helpIndexManager.GenerateIndices(config.languageManager)
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if oldConfig != nil {
// if certain features were enabled by rehash, we need to load the corresponding data
// from the store
if !oldConfig.Accounts.NickReservation.Enabled {
server.accounts.buildNickToAccountIndex(config)
}
if !oldConfig.Accounts.VHosts.Enabled {
server.accounts.initVHostRequestQueue(config)
}
if !oldConfig.Channels.Registration.Enabled {
server.channels.loadRegisteredChannels(config)
}
// resize history buffers as needed
if oldConfig.History != config.History {
for _, channel := range server.channels.Channels() {
channel.history.Resize(config.History.ChannelLength, config.History.AutoresizeWindow)
}
for _, client := range server.clients.AllClients() {
client.history.Resize(config.History.ClientLength, config.History.AutoresizeWindow)
}
}
}
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// activate the new config
server.SetConfig(config)
// burst new and removed caps
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addedCaps, removedCaps := config.Diff(oldConfig)
var capBurstSessions []*Session
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added := make(map[caps.Version][]string)
var removed []string
if !addedCaps.Empty() || !removedCaps.Empty() {
capBurstSessions = server.clients.AllWithCapsNotify()
added[caps.Cap301] = addedCaps.Strings(caps.Cap301, config.Server.capValues, 0)
added[caps.Cap302] = addedCaps.Strings(caps.Cap302, config.Server.capValues, 0)
// removed never has values, so we leave it as Cap301
removed = removedCaps.Strings(caps.Cap301, config.Server.capValues, 0)
}
for _, sSession := range capBurstSessions {
// DEL caps and then send NEW ones so that updated caps get removed/added correctly
if !removedCaps.Empty() {
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for _, capStr := range removed {
sSession.Send(nil, server.name, "CAP", sSession.client.Nick(), "DEL", capStr)
}
}
if !addedCaps.Empty() {
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for _, capStr := range added[sSession.capVersion] {
sSession.Send(nil, server.name, "CAP", sSession.client.Nick(), "NEW", capStr)
}
}
}
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server.logger.Info("server", "Using datastore", config.Datastore.Path)
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if initial {
if err := server.loadDatastore(config); err != nil {
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return err
}
}
server.setupPprofListener(config)
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// set RPL_ISUPPORT
var newISupportReplies [][]string
if oldConfig != nil {
newISupportReplies = oldConfig.Server.isupport.GetDifference(&config.Server.isupport)
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}
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// we are now open for business
err = server.setupListeners(config)
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if !initial {
// push new info to all of our clients
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for _, sClient := range server.clients.AllClients() {
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for _, tokenline := range newISupportReplies {
sClient.Send(nil, server.name, RPL_ISUPPORT, append([]string{sClient.nick}, tokenline...)...)
}
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if sendRawOutputNotice {
sClient.Notice(sClient.t("This server is in debug mode and is logging all user I/O. If you do not wish for everything you send to be readable by the server owner(s), please disconnect."))
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}
if !oldConfig.Accounts.NickReservation.Enabled && config.Accounts.NickReservation.Enabled {
sClient.nickTimer.Initialize(sClient)
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sClient.nickTimer.Touch(nil)
} else if oldConfig.Accounts.NickReservation.Enabled && !config.Accounts.NickReservation.Enabled {
sClient.nickTimer.Stop()
}
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}
}
return err
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}
func (server *Server) setupPprofListener(config *Config) {
pprofListener := ""
if config.Debug.PprofListener != nil {
pprofListener = *config.Debug.PprofListener
}
if server.pprofServer != nil {
if pprofListener == "" || (pprofListener != server.pprofServer.Addr) {
server.logger.Info("server", "Stopping pprof listener", server.pprofServer.Addr)
server.pprofServer.Close()
server.pprofServer = nil
}
}
if pprofListener != "" && server.pprofServer == nil {
ps := http.Server{
Addr: pprofListener,
}
go func() {
if err := ps.ListenAndServe(); err != nil {
server.logger.Error("server", "pprof listener failed", err.Error())
}
}()
server.pprofServer = &ps
server.logger.Info("server", "Started pprof listener", server.pprofServer.Addr)
}
}
func (config *Config) loadMOTD() (err error) {
if config.Server.MOTD != "" {
file, err := os.Open(config.Server.MOTD)
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if err == nil {
defer file.Close()
reader := bufio.NewReader(file)
for {
line, err := reader.ReadString('\n')
if err != nil {
break
}
line = strings.TrimRight(line, "\r\n")
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if config.Server.MOTDFormatting {
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line = ircfmt.Unescape(line)
}
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// "- " is the required prefix for MOTD, we just add it here to make
// bursting it out to clients easier
line = fmt.Sprintf("- %s", line)
config.Server.motdLines = append(config.Server.motdLines, line)
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}
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}
}
return
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}
func (server *Server) loadDatastore(config *Config) error {
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// open the datastore and load server state for which it (rather than config)
// is the source of truth
_, err := os.Stat(config.Datastore.Path)
if os.IsNotExist(err) {
server.logger.Warning("server", "database does not exist, creating it", config.Datastore.Path)
err = initializeDB(config.Datastore.Path)
if err != nil {
return err
}
}
db, err := OpenDatabase(config)
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if err == nil {
server.store = db
} else {
return fmt.Errorf("Failed to open datastore: %s", err.Error())
}
// load *lines (from the datastores)
server.logger.Debug("server", "Loading D/Klines")
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server.loadDLines()
server.loadKLines()
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server.channelRegistry.Initialize(server)
server.channels.Initialize(server)
server.accounts.Initialize(server)
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return nil
}
func (server *Server) setupListeners(config *Config) (err error) {
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logListener := func(addr string, config listenerConfig) {
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server.logger.Info("listeners",
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fmt.Sprintf("now listening on %s, tls=%t, tlsproxy=%t, tor=%t.", addr, (config.TLSConfig != nil), config.ProxyBeforeTLS, config.Tor),
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)
}
// update or destroy all existing listeners
for addr := range server.listeners {
currentListener := server.listeners[addr]
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newConfig, stillConfigured := config.Server.trueListeners[addr]
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currentListener.Lock()
currentListener.shouldStop = !stillConfigured
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currentListener.config = newConfig
currentListener.Unlock()
if stillConfigured {
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logListener(addr, newConfig)
} else {
// tell the listener it should stop by interrupting its Accept() call:
currentListener.listener.Close()
delete(server.listeners, addr)
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server.logger.Info("listeners", fmt.Sprintf("stopped listening on %s.", addr))
}
}
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publicPlaintextListener := ""
// create new listeners that were not previously configured
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for newAddr, newConfig := range config.Server.trueListeners {
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if strings.HasPrefix(newAddr, ":") && !newConfig.Tor && !newConfig.STSOnly && newConfig.TLSConfig == nil {
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publicPlaintextListener = newAddr
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}
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_, exists := server.listeners[newAddr]
if !exists {
// make new listener
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listener, listenerErr := server.createListener(newAddr, newConfig, config.Server.UnixBindMode)
if listenerErr != nil {
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server.logger.Error("server", "couldn't listen on", newAddr, listenerErr.Error())
err = listenerErr
continue
}
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server.listeners[newAddr] = listener
logListener(newAddr, newConfig)
}
}
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if publicPlaintextListener != "" {
server.logger.Warning("listeners", fmt.Sprintf("Your server is configured with public plaintext listener %s. Consider disabling it for improved security and privacy.", publicPlaintextListener))
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}
return
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}
// elistMatcher takes and matches ELIST conditions
type elistMatcher struct {
MinClientsActive bool
MinClients int
MaxClientsActive bool
MaxClients int
}
// Matches checks whether the given channel matches our matches.
func (matcher *elistMatcher) Matches(channel *Channel) bool {
if matcher.MinClientsActive {
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if len(channel.Members()) < matcher.MinClients {
return false
}
}
if matcher.MaxClientsActive {
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if len(channel.Members()) < len(channel.members) {
return false
}
}
return true
}
// RplList returns the RPL_LIST numeric for the given channel.
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func (target *Client) RplList(channel *Channel, rb *ResponseBuffer) {
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// get the correct number of channel members
var memberCount int
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if target.HasMode(modes.Operator) || channel.hasClient(target) {
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memberCount = len(channel.Members())
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} else {
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for _, member := range channel.Members() {
if !member.HasMode(modes.Invisible) {
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memberCount++
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}
}
}
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rb.Add(nil, target.server.name, RPL_LIST, target.nick, channel.name, strconv.Itoa(memberCount), channel.topic)
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}
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var (
infoString1 = strings.Split(` ·
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·
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. .
. ·
https://oragono.io/
https://github.com/oragono/oragono
https://crowdin.com/project/oragono
`, "\n")
infoString2 = strings.Split(` Daniel Oakley, DanielOaks, <daniel@danieloaks.net>
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Shivaram Lingamneni, slingamn, <slingamn@cs.stanford.edu>
`, "\n")
infoString3 = strings.Split(` 3onyc
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Edmund Huber
Euan Kemp (euank)
Jeremy Latt
Martin Lindhe (martinlindhe)
Roberto Besser (besser)
Robin Burchell (rburchell)
Sean Enck (enckse)
soul9
Vegax
`, "\n")
)