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handlers.go
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handlers.go
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// Copyright (c) 2012-2014 Jeremy Latt
// Copyright (c) 2014-2015 Edmund Huber
// Copyright (c) 2016-2018 Daniel Oaks <daniel@danieloaks.net>
// Copyright (c) 2017-2018 Shivaram Lingamneni <slingamn@cs.stanford.edu>
// released under the MIT license
package irc
import (
"bytes"
"encoding/base64"
"fmt"
"os"
"runtime"
"runtime/debug"
"runtime/pprof"
"sort"
"strconv"
"strings"
"time"
"github.com/goshuirc/irc-go/ircfmt"
"github.com/goshuirc/irc-go/ircmatch"
"github.com/goshuirc/irc-go/ircmsg"
"github.com/oragono/oragono/irc/caps"
"github.com/oragono/oragono/irc/custime"
"github.com/oragono/oragono/irc/history"
"github.com/oragono/oragono/irc/modes"
"github.com/oragono/oragono/irc/sno"
"github.com/oragono/oragono/irc/utils"
"golang.org/x/crypto/bcrypt"
)
// ACC [REGISTER|VERIFY] ...
func accHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
// make sure reg is enabled
if !server.AccountConfig().Registration.Enabled {
rb.Add(nil, server.name, ERR_REG_UNSPECIFIED_ERROR, client.nick, "*", client.t("Account registration is disabled"))
return false
}
subcommand := strings.ToLower(msg.Params[0])
if subcommand == "register" {
return accRegisterHandler(server, client, msg, rb)
} else if subcommand == "verify" {
return accVerifyHandler(server, client, msg, rb)
} else {
rb.Add(nil, server.name, ERR_UNKNOWNERROR, client.nick, "ACC", msg.Params[0], client.t("Unknown subcommand"))
}
return false
}
// helper function to parse ACC callbacks, e.g., mailto:person@example.com, tel:16505551234
func parseCallback(spec string, config *AccountConfig) (callbackNamespace string, callbackValue string) {
callback := strings.ToLower(spec)
if callback == "*" {
callbackNamespace = "*"
} else if strings.Contains(callback, ":") {
callbackValues := strings.SplitN(callback, ":", 2)
callbackNamespace, callbackValue = callbackValues[0], callbackValues[1]
} else {
// "the IRC server MAY choose to use mailto as a default"
callbackNamespace = "mailto"
callbackValue = callback
}
// ensure the callback namespace is valid
// need to search callback list, maybe look at using a map later?
for _, name := range config.Registration.EnabledCallbacks {
if callbackNamespace == name {
return
}
}
// error value
callbackNamespace = ""
return
}
// ACC REGISTER <accountname> [callback_namespace:]<callback> [cred_type] :<credential>
func accRegisterHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
nick := client.Nick()
// clients can't reg new accounts if they're already logged in
if client.LoggedIntoAccount() {
rb.Add(nil, server.name, ERR_REG_UNSPECIFIED_ERROR, nick, "*", client.t("You're already logged into an account"))
return false
}
// get and sanitise account name
account := strings.TrimSpace(msg.Params[1])
casefoldedAccount, err := CasefoldName(account)
// probably don't need explicit check for "*" here... but let's do it anyway just to make sure
if err != nil || msg.Params[1] == "*" {
rb.Add(nil, server.name, ERR_REG_UNSPECIFIED_ERROR, nick, account, client.t("Account name is not valid"))
return false
}
if len(msg.Params) < 4 {
rb.Add(nil, server.name, ERR_NEEDMOREPARAMS, nick, msg.Command, client.t("Not enough parameters"))
return false
}
callbackSpec := msg.Params[2]
callbackNamespace, callbackValue := parseCallback(callbackSpec, server.AccountConfig())
if callbackNamespace == "" {
rb.Add(nil, server.name, ERR_REG_INVALID_CALLBACK, nick, account, callbackSpec, client.t("Callback namespace is not supported"))
return false
}
// get credential type/value
var credentialType, credentialValue string
if len(msg.Params) > 4 {
credentialType = strings.ToLower(msg.Params[3])
credentialValue = msg.Params[4]
} else {
// exactly 4 params
credentialType = "passphrase" // default from the spec
credentialValue = msg.Params[3]
}
// ensure the credential type is valid
var credentialValid bool
for _, name := range server.AccountConfig().Registration.EnabledCredentialTypes {
if credentialType == name {
credentialValid = true
}
}
if credentialType == "certfp" && client.certfp == "" {
rb.Add(nil, server.name, ERR_REG_INVALID_CRED_TYPE, nick, credentialType, callbackNamespace, client.t("You are not using a TLS certificate"))
return false
}
if !credentialValid {
rb.Add(nil, server.name, ERR_REG_INVALID_CRED_TYPE, nick, credentialType, callbackNamespace, client.t("Credential type is not supported"))
return false
}
var passphrase, certfp string
if credentialType == "certfp" {
certfp = client.certfp
} else if credentialType == "passphrase" {
passphrase = credentialValue
}
throttled, remainingTime := client.loginThrottle.Touch()
if throttled {
rb.Add(nil, server.name, ERR_REG_UNSPECIFIED_ERROR, nick, fmt.Sprintf(client.t("Please wait at least %v and try again"), remainingTime))
return false
}
err = server.accounts.Register(client, account, callbackNamespace, callbackValue, passphrase, certfp)
if err != nil {
msg, code := registrationErrorToMessageAndCode(err)
rb.Add(nil, server.name, code, nick, "ACC", "REGISTER", client.t(msg))
return false
}
// automatically complete registration
if callbackNamespace == "*" {
err := server.accounts.Verify(client, casefoldedAccount, "")
if err != nil {
return false
}
sendSuccessfulRegResponse(client, rb, false)
} else {
messageTemplate := client.t("Account created, pending verification; verification code has been sent to %s:%s")
message := fmt.Sprintf(messageTemplate, callbackNamespace, callbackValue)
rb.Add(nil, server.name, RPL_REG_VERIFICATION_REQUIRED, nick, casefoldedAccount, message)
}
return false
}
func registrationErrorToMessageAndCode(err error) (message, numeric string) {
// default responses: let's be risk-averse about displaying internal errors
// to the clients, especially for something as sensitive as accounts
message = `Could not register`
numeric = ERR_UNKNOWNERROR
switch err {
case errAccountAlreadyRegistered, errAccountAlreadyVerified:
message = err.Error()
numeric = ERR_ACCOUNT_ALREADY_EXISTS
case errAccountCreation, errAccountMustHoldNick, errAccountBadPassphrase, errCertfpAlreadyExists, errFeatureDisabled:
message = err.Error()
}
return
}
// helper function to dispatch messages when a client successfully registers
func sendSuccessfulRegResponse(client *Client, rb *ResponseBuffer, forNS bool) {
if forNS {
rb.Notice(client.t("Account created"))
} else {
rb.Add(nil, client.server.name, RPL_REGISTRATION_SUCCESS, client.nick, client.AccountName(), client.t("Account created"))
}
sendSuccessfulSaslAuth(client, rb, forNS)
}
// sendSuccessfulSaslAuth means that a SASL auth attempt completed successfully, and is used to dispatch messages.
func sendSuccessfulSaslAuth(client *Client, rb *ResponseBuffer, forNS bool) {
details := client.Details()
if forNS {
rb.Notice(fmt.Sprintf(client.t("You're now logged in as %s"), details.accountName))
} else {
rb.Add(nil, client.server.name, RPL_LOGGEDIN, details.nick, details.nickMask, details.accountName, fmt.Sprintf(client.t("You are now logged in as %s"), details.accountName))
rb.Add(nil, client.server.name, RPL_SASLSUCCESS, details.nick, client.t("Authentication successful"))
}
// dispatch account-notify
for friend := range client.Friends(caps.AccountNotify) {
friend.Send(nil, details.nickMask, "ACCOUNT", details.accountName)
}
client.server.snomasks.Send(sno.LocalAccounts, fmt.Sprintf(ircfmt.Unescape("Client $c[grey][$r%s$c[grey]] logged into account $c[grey][$r%s$c[grey]]"), details.nickMask, details.accountName))
client.server.logger.Info("accounts", "client", details.nick, "logged into account", details.accountName)
}
// ACC VERIFY <accountname> <auth_code>
func accVerifyHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
account := strings.TrimSpace(msg.Params[1])
err := server.accounts.Verify(client, account, msg.Params[2])
var code string
var message string
if err == errAccountVerificationInvalidCode {
code = ERR_ACCOUNT_INVALID_VERIFY_CODE
message = err.Error()
} else if err == errAccountAlreadyVerified {
code = ERR_ACCOUNT_ALREADY_VERIFIED
message = err.Error()
} else if err != nil {
code = ERR_UNKNOWNERROR
message = errAccountVerificationFailed.Error()
}
if err == nil {
sendSuccessfulRegResponse(client, rb, false)
} else {
rb.Add(nil, server.name, code, client.nick, account, client.t(message))
}
return false
}
// AUTHENTICATE [<mechanism>|<data>|*]
func authenticateHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
// sasl abort
if !server.AccountConfig().AuthenticationEnabled || len(msg.Params) == 1 && msg.Params[0] == "*" {
rb.Add(nil, server.name, ERR_SASLABORTED, client.nick, client.t("SASL authentication aborted"))
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return false
}
// start new sasl session
if !client.saslInProgress {
mechanism := strings.ToUpper(msg.Params[0])
_, mechanismIsEnabled := EnabledSaslMechanisms[mechanism]
if mechanismIsEnabled {
client.saslInProgress = true
client.saslMechanism = mechanism
rb.Add(nil, server.name, "AUTHENTICATE", "+")
} else {
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, client.t("SASL authentication failed"))
}
return false
}
// continue existing sasl session
rawData := msg.Params[0]
if len(rawData) > 400 {
rb.Add(nil, server.name, ERR_SASLTOOLONG, client.nick, client.t("SASL message too long"))
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return false
} else if len(rawData) == 400 {
client.saslValue += rawData
// allow 4 'continuation' lines before rejecting for length
if len(client.saslValue) > 400*4 {
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, client.t("SASL authentication failed: Passphrase too long"))
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return false
}
return false
}
if rawData != "+" {
client.saslValue += rawData
}
var data []byte
var err error
if client.saslValue != "+" {
data, err = base64.StdEncoding.DecodeString(client.saslValue)
if err != nil {
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, client.t("SASL authentication failed: Invalid b64 encoding"))
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return false
}
}
// call actual handler
handler, handlerExists := EnabledSaslMechanisms[client.saslMechanism]
// like 100% not required, but it's good to be safe I guess
if !handlerExists {
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, client.t("SASL authentication failed"))
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return false
}
// let the SASL handler do its thing
exiting := handler(server, client, client.saslMechanism, data, rb)
// wait 'til SASL is done before emptying the sasl vars
client.saslInProgress = false
client.saslMechanism = ""
client.saslValue = ""
return exiting
}
// AUTHENTICATE PLAIN
func authPlainHandler(server *Server, client *Client, mechanism string, value []byte, rb *ResponseBuffer) bool {
splitValue := bytes.Split(value, []byte{'\000'})
var accountKey, authzid string
nick := client.Nick()
if len(splitValue) == 3 {
accountKey = string(splitValue[0])
authzid = string(splitValue[1])
if accountKey == "" {
accountKey = authzid
} else if accountKey != authzid {
rb.Add(nil, server.name, ERR_SASLFAIL, nick, client.t("SASL authentication failed: authcid and authzid should be the same"))
return false
}
} else {
rb.Add(nil, server.name, ERR_SASLFAIL, nick, client.t("SASL authentication failed: Invalid auth blob"))
return false
}
throttled, remainingTime := client.loginThrottle.Touch()
if throttled {
rb.Add(nil, server.name, ERR_SASLFAIL, nick, fmt.Sprintf(client.t("Please wait at least %v and try again"), remainingTime))
return false
}
password := string(splitValue[2])
err := server.accounts.AuthenticateByPassphrase(client, accountKey, password)
if err != nil {
msg := authErrorToMessage(server, err)
rb.Add(nil, server.name, ERR_SASLFAIL, nick, fmt.Sprintf("%s: %s", client.t("SASL authentication failed"), client.t(msg)))
return false
}
sendSuccessfulSaslAuth(client, rb, false)
return false
}
func authErrorToMessage(server *Server, err error) (msg string) {
if err == errAccountDoesNotExist || err == errAccountUnverified || err == errAccountInvalidCredentials {
msg = err.Error()
} else {
server.logger.Error("internal", "sasl authentication failure", err.Error())
msg = "Unknown"
}
return
}
// AUTHENTICATE EXTERNAL
func authExternalHandler(server *Server, client *Client, mechanism string, value []byte, rb *ResponseBuffer) bool {
if client.certfp == "" {
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, client.t("SASL authentication failed, you are not connecting with a certificate"))
return false
}
err := server.accounts.AuthenticateByCertFP(client)
if err != nil {
msg := authErrorToMessage(server, err)
rb.Add(nil, server.name, ERR_SASLFAIL, client.nick, fmt.Sprintf("%s: %s", client.t("SASL authentication failed"), client.t(msg)))
return false
}
sendSuccessfulSaslAuth(client, rb, false)
return false
}
// AWAY [<message>]
func awayHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
var isAway bool
var awayMessage string
if len(msg.Params) > 0 {
isAway = true
awayMessage = msg.Params[0]
awayLen := server.Limits().AwayLen
if len(awayMessage) > awayLen {
awayMessage = awayMessage[:awayLen]
}
}
client.SetMode(modes.Away, isAway)
client.SetAwayMessage(awayMessage)
var op modes.ModeOp
if isAway {
op = modes.Add
rb.Add(nil, server.name, RPL_NOWAWAY, client.nick, client.t("You have been marked as being away"))
} else {
op = modes.Remove
rb.Add(nil, server.name, RPL_UNAWAY, client.nick, client.t("You are no longer marked as being away"))
}
//TODO(dan): Should this be sent automagically as part of setting the flag/mode?
modech := modes.ModeChanges{modes.ModeChange{
Mode: modes.Away,
Op: op,
}}
rb.Add(nil, server.name, "MODE", client.nick, modech.String())
// dispatch away-notify
for friend := range client.Friends(caps.AwayNotify) {
if isAway {
friend.SendFromClient("", client, nil, "AWAY", awayMessage)
} else {
friend.SendFromClient("", client, nil, "AWAY")
}
}
return false
}
// CAP <subcmd> [<caps>]
func capHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
subCommand := strings.ToUpper(msg.Params[0])
toAdd := caps.NewSet()
toRemove := caps.NewSet()
var capString string
badCaps := false
if len(msg.Params) > 1 {
capString = msg.Params[1]
strs := strings.Fields(capString)
for _, str := range strs {
remove := false
if str[0] == '-' {
str = str[1:]
remove = true
}
capab, err := caps.NameToCapability(str)
if err != nil || (!remove && !SupportedCapabilities.Has(capab)) {
badCaps = true
} else if !remove {
toAdd.Enable(capab)
} else {
toRemove.Enable(capab)
}
}
}
switch subCommand {
case "LS":
if !client.registered {
client.capState = caps.NegotiatingState
}
if len(msg.Params) > 1 && msg.Params[1] == "302" {
client.capVersion = 302
}
// weechat 1.4 has a bug here where it won't accept the CAP reply unless it contains
// the server.name source... otherwise it doesn't respond to the CAP message with
// anything and just hangs on connection.
//TODO(dan): limit number of caps and send it multiline in 3.2 style as appropriate.
rb.Add(nil, server.name, "CAP", client.nick, subCommand, SupportedCapabilities.String(client.capVersion, CapValues))
case "LIST":
rb.Add(nil, server.name, "CAP", client.nick, subCommand, client.capabilities.String(caps.Cap301, CapValues)) // values not sent on LIST so force 3.1
case "REQ":
if !client.registered {
client.capState = caps.NegotiatingState
}
// make sure all capabilities actually exist
if badCaps {
rb.Add(nil, server.name, "CAP", client.nick, "NAK", capString)
return false
}
client.capabilities.Union(toAdd)
client.capabilities.Subtract(toRemove)
rb.Add(nil, server.name, "CAP", client.nick, "ACK", capString)
// if this is the first time the client is requesting a resume token,
// send it to them
if toAdd.Has(caps.Resume) {
token := server.resumeManager.GenerateToken(client)
if token != "" {
rb.Add(nil, server.name, "RESUME", "TOKEN", token)
}
}
case "END":
if !client.registered {
client.capState = caps.NegotiatedState
}
default:
rb.Add(nil, server.name, ERR_INVALIDCAPCMD, client.nick, subCommand, client.t("Invalid CAP subcommand"))
}
return false
}
// CHATHISTORY <target> <preposition> <query> [<limit>]
// e.g., CHATHISTORY #ircv3 AFTER id=ytNBbt565yt4r3err3 10
// CHATHISTORY <target> BETWEEN <query> <query> <direction> [<limit>]
// e.g., CHATHISTORY #ircv3 BETWEEN timestamp=YYYY-MM-DDThh:mm:ss.sssZ timestamp=YYYY-MM-DDThh:mm:ss.sssZ + 100
func chathistoryHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) (exiting bool) {
config := server.Config()
// batch type is chathistory; send an empty batch if necessary
rb.InitializeBatch("chathistory", true)
var items []history.Item
success := false
var hist *history.Buffer
var channel *Channel
defer func() {
if success {
if channel == nil {
client.replayPrivmsgHistory(rb, items, true)
} else {
channel.replayHistoryItems(rb, items)
}
}
rb.Send(true) // terminate the chathistory batch
if success && len(items) > 0 {
return
}
newRb := NewResponseBuffer(client)
newRb.Label = rb.Label // same label, new batch
// TODO: send `WARN CHATHISTORY MAX_MESSAGES_EXCEEDED` when appropriate
if hist == nil {
newRb.Add(nil, server.name, "ERR", "CHATHISTORY", "NO_SUCH_CHANNEL")
} else if len(items) == 0 {
newRb.Add(nil, server.name, "ERR", "CHATHISTORY", "NO_TEXT_TO_SEND")
} else if !success {
newRb.Add(nil, server.name, "ERR", "CHATHISTORY", "NEED_MORE_PARAMS")
}
newRb.Send(true)
}()
target := msg.Params[0]
channel = server.channels.Get(target)
if channel != nil && channel.hasClient(client) {
// "If [...] the user does not have permission to view the requested content, [...]
// NO_SUCH_CHANNEL SHOULD be returned"
hist = &channel.history
} else {
targetClient := server.clients.Get(target)
if targetClient != nil {
myAccount := client.Account()
targetAccount := targetClient.Account()
if myAccount != "" && targetAccount != "" && myAccount == targetAccount {
hist = targetClient.history
}
}
}
if hist == nil {
return
}
preposition := strings.ToLower(msg.Params[1])
parseQueryParam := func(param string) (msgid string, timestamp time.Time, err error) {
err = errInvalidParams
pieces := strings.SplitN(param, "=", 2)
if len(pieces) < 2 {
return
}
identifier, value := strings.ToLower(pieces[0]), pieces[1]
if identifier == "id" {
msgid, err = value, nil
return
} else if identifier == "timestamp" {
timestamp, err = time.Parse(IRCv3TimestampFormat, value)
return
}
return
}
maxChathistoryLimit := config.History.ChathistoryMax
if maxChathistoryLimit == 0 {
return
}
parseHistoryLimit := func(paramIndex int) (limit int) {
if len(msg.Params) < (paramIndex + 1) {
return maxChathistoryLimit
}
limit, err := strconv.Atoi(msg.Params[paramIndex])
if err != nil || limit == 0 || limit > maxChathistoryLimit {
limit = maxChathistoryLimit
}
return
}
// TODO: as currently implemented, almost all of thes queries are worst-case O(n)
// in the number of stored history entries. Every one of them can be made O(1)
// if necessary, without too much difficulty. Some ideas:
// * Ensure that the ring buffer is sorted by time, enabling binary search for times
// * Maintain a map from msgid to position in the ring buffer
if preposition == "between" {
if len(msg.Params) >= 5 {
startMsgid, startTimestamp, startErr := parseQueryParam(msg.Params[2])
endMsgid, endTimestamp, endErr := parseQueryParam(msg.Params[3])
ascending := msg.Params[4] == "+"
limit := parseHistoryLimit(5)
if startErr != nil || endErr != nil {
success = false
} else if startMsgid != "" && endMsgid != "" {
inInterval := false
matches := func(item history.Item) (result bool) {
result = inInterval
if item.HasMsgid(startMsgid) {
if ascending {
inInterval = true
} else {
inInterval = false
return false // interval is exclusive
}
} else if item.HasMsgid(endMsgid) {
if ascending {
inInterval = false
return false
} else {
inInterval = true
}
}
return
}
items = hist.Match(matches, ascending, limit)
success = true
} else if !startTimestamp.IsZero() && !endTimestamp.IsZero() {
items, _ = hist.Between(startTimestamp, endTimestamp, ascending, limit)
if !ascending {
history.Reverse(items)
}
success = true
}
// else: mismatched params, success = false, fail
}
return
}
// before, after, latest, around
queryParam := msg.Params[2]
msgid, timestamp, err := parseQueryParam(queryParam)
limit := parseHistoryLimit(3)
before := false
switch preposition {
case "before":
before = true
fallthrough
case "after":
var matches history.Predicate
if err != nil {
break
} else if msgid != "" {
inInterval := false
matches = func(item history.Item) (result bool) {
result = inInterval
if item.HasMsgid(msgid) {
inInterval = true
}
return
}
} else {
matches = func(item history.Item) bool {
return before == item.Time.Before(timestamp)
}
}
items = hist.Match(matches, !before, limit)
success = true
case "latest":
if queryParam == "*" {
items = hist.Latest(limit)
} else if err != nil {
break
} else {
var matches history.Predicate
if msgid != "" {
shouldStop := false
matches = func(item history.Item) bool {
if shouldStop {
return false
}
shouldStop = item.HasMsgid(msgid)
return !shouldStop
}
} else {
matches = func(item history.Item) bool {
return item.Time.After(timestamp)
}
}
items = hist.Match(matches, false, limit)
}
success = true
case "around":
if err != nil {
break
}
var initialMatcher history.Predicate
if msgid != "" {
inInterval := false
initialMatcher = func(item history.Item) (result bool) {
if inInterval {
return true
} else {
inInterval = item.HasMsgid(msgid)
return inInterval
}
}
} else {
initialMatcher = func(item history.Item) (result bool) {
return item.Time.Before(timestamp)
}
}
var halfLimit int
halfLimit = (limit + 1) / 2
firstPass := hist.Match(initialMatcher, false, halfLimit)
if len(firstPass) > 0 {
timeWindowStart := firstPass[0].Time
items = hist.Match(func(item history.Item) bool {
return item.Time.Equal(timeWindowStart) || item.Time.After(timeWindowStart)
}, true, limit)
}
success = true
}
return
}
// DEBUG <subcmd>
func debugHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
param := strings.ToUpper(msg.Params[0])
switch param {
case "GCSTATS":
stats := debug.GCStats{
Pause: make([]time.Duration, 10),
PauseQuantiles: make([]time.Duration, 5),
}
debug.ReadGCStats(&stats)
rb.Notice(fmt.Sprintf("last GC: %s", stats.LastGC.Format(time.RFC1123)))
rb.Notice(fmt.Sprintf("num GC: %d", stats.NumGC))
rb.Notice(fmt.Sprintf("pause total: %s", stats.PauseTotal))
rb.Notice(fmt.Sprintf("pause quantiles min%%: %s", stats.PauseQuantiles[0]))
rb.Notice(fmt.Sprintf("pause quantiles 25%%: %s", stats.PauseQuantiles[1]))
rb.Notice(fmt.Sprintf("pause quantiles 50%%: %s", stats.PauseQuantiles[2]))
rb.Notice(fmt.Sprintf("pause quantiles 75%%: %s", stats.PauseQuantiles[3]))
rb.Notice(fmt.Sprintf("pause quantiles max%%: %s", stats.PauseQuantiles[4]))
case "NUMGOROUTINE":
count := runtime.NumGoroutine()
rb.Notice(fmt.Sprintf("num goroutines: %d", count))
case "PROFILEHEAP":
profFile := "oragono.mprof"
file, err := os.Create(profFile)
if err != nil {
rb.Notice(fmt.Sprintf("error: %s", err))
break
}
defer file.Close()
pprof.Lookup("heap").WriteTo(file, 0)
rb.Notice(fmt.Sprintf("written to %s", profFile))
case "STARTCPUPROFILE":
profFile := "oragono.prof"
file, err := os.Create(profFile)
if err != nil {
rb.Notice(fmt.Sprintf("error: %s", err))
break
}
if err := pprof.StartCPUProfile(file); err != nil {
defer file.Close()
rb.Notice(fmt.Sprintf("error: %s", err))
break
}
rb.Notice(fmt.Sprintf("CPU profile writing to %s", profFile))
case "STOPCPUPROFILE":
pprof.StopCPUProfile()
rb.Notice(fmt.Sprintf("CPU profiling stopped"))
}
return false
}
// helper for parsing the reason args to DLINE and KLINE
func getReasonsFromParams(params []string, currentArg int) (reason, operReason string) {
reason = "No reason given"
operReason = ""
if len(params) > currentArg {
reasons := strings.SplitN(strings.Join(params[currentArg:], " "), "|", 2)
if len(reasons) == 1 {
reason = strings.TrimSpace(reasons[0])
} else if len(reasons) == 2 {
reason = strings.TrimSpace(reasons[0])
operReason = strings.TrimSpace(reasons[1])
}
}
return
}
func formatBanForListing(client *Client, key string, info IPBanInfo) string {
desc := info.Reason
if info.OperReason != "" && info.OperReason != info.Reason {
desc = fmt.Sprintf("%s | %s", info.Reason, info.OperReason)
}
if info.Duration != 0 {
desc = fmt.Sprintf("%s [%s]", desc, info.TimeLeft())
}
return fmt.Sprintf(client.t("Ban - %[1]s - added by %[2]s - %[3]s"), key, info.OperName, desc)
}
// DLINE [ANDKILL] [MYSELF] [duration] <ip>/<net> [ON <server>] [reason [| oper reason]]
// DLINE LIST
func dlineHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
// check oper permissions
oper := client.Oper()
if oper == nil || !oper.Class.Capabilities["oper:local_ban"] {
rb.Add(nil, server.name, ERR_NOPRIVS, client.nick, msg.Command, client.t("Insufficient oper privs"))
return false
}
currentArg := 0
// if they say LIST, we just list the current dlines
if len(msg.Params) == currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "list" {
bans := server.dlines.AllBans()
if len(bans) == 0 {
rb.Notice(client.t("No DLINEs have been set!"))
}
for key, info := range bans {
client.Notice(formatBanForListing(client, key, info))
}
return false
}
// when setting a ban, if they say "ANDKILL" we should also kill all users who match it
var andKill bool
if len(msg.Params) > currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "andkill" {
andKill = true
currentArg++
}
// when setting a ban that covers the oper's current connection, we require them to say
// "DLINE MYSELF" so that we're sure they really mean it.
var dlineMyself bool
if len(msg.Params) > currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "myself" {
dlineMyself = true
currentArg++
}
// duration
duration, err := custime.ParseDuration(msg.Params[currentArg])
if err != nil {
duration = 0
} else {
currentArg++
}
// get host
if len(msg.Params) < currentArg+1 {
rb.Add(nil, server.name, ERR_NEEDMOREPARAMS, client.nick, msg.Command, client.t("Not enough parameters"))
return false
}
hostString := msg.Params[currentArg]
currentArg++
// check host
hostNet, err := utils.NormalizedNetFromString(hostString)
if err != nil {
rb.Add(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("Could not parse IP address or CIDR network"))
return false
}
if !dlineMyself && hostNet.Contains(client.IP()) {
rb.Add(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("This ban matches you. To DLINE yourself, you must use the command: /DLINE MYSELF <arguments>"))
return false
}
// check remote
if len(msg.Params) > currentArg && msg.Params[currentArg] == "ON" {
rb.Add(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("Remote servers not yet supported"))
return false
}
// get comment(s)
reason, operReason := getReasonsFromParams(msg.Params, currentArg)
operName := oper.Name
if operName == "" {
operName = server.name
}
err = server.dlines.AddNetwork(hostNet, duration, reason, operReason, operName)
if err != nil {
rb.Notice(fmt.Sprintf(client.t("Could not successfully save new D-LINE: %s"), err.Error()))
return false
}
var snoDescription string
hostString = utils.NetToNormalizedString(hostNet)
if duration != 0 {
rb.Notice(fmt.Sprintf(client.t("Added temporary (%[1]s) D-Line for %[2]s"), duration.String(), hostString))
snoDescription = fmt.Sprintf(ircfmt.Unescape("%s [%s]$r added temporary (%s) D-Line for %s"), client.nick, operName, duration.String(), hostString)
} else {
rb.Notice(fmt.Sprintf(client.t("Added D-Line for %s"), hostString))
snoDescription = fmt.Sprintf(ircfmt.Unescape("%s [%s]$r added D-Line for %s"), client.nick, operName, hostString)
}
server.snomasks.Send(sno.LocalXline, snoDescription)
var killClient bool
if andKill {
var clientsToKill []*Client
var killedClientNicks []string
for _, mcl := range server.clients.AllClients() {
if hostNet.Contains(mcl.IP()) {
clientsToKill = append(clientsToKill, mcl)
killedClientNicks = append(killedClientNicks, mcl.nick)
}
}
for _, mcl := range clientsToKill {
mcl.exitedSnomaskSent = true
mcl.Quit(fmt.Sprintf(mcl.t("You have been banned from this server (%s)"), reason))
if mcl == client {
killClient = true
} else {
// if mcl == client, we kill them below
mcl.destroy(false)
}
}
// send snomask
sort.Strings(killedClientNicks)
server.snomasks.Send(sno.LocalKills, fmt.Sprintf(ircfmt.Unescape("%s [%s] killed %d clients with a DLINE $c[grey][$r%s$c[grey]]"), client.nick, operName, len(killedClientNicks), strings.Join(killedClientNicks, ", ")))
}
return killClient
}
// HELP [<query>]
func helpHandler(server *Server, client *Client, msg ircmsg.IrcMessage, rb *ResponseBuffer) bool {
argument := strings.ToLower(strings.TrimSpace(strings.Join(msg.Params, " ")))
if len(argument) < 1 {
client.sendHelp("HELPOP", client.t(`HELPOP <argument>
Get an explanation of <argument>, or "index" for a list of help topics.`), rb)
return false
}
// handle index
if argument == "index" {
if client.HasMode(modes.Operator) {
client.sendHelp("HELP", GetHelpIndex(client.languages, HelpIndexOpers), rb)
} else {
client.sendHelp("HELP", GetHelpIndex(client.languages, HelpIndex), rb)
}
return false
}
helpHandler, exists := Help[argument]