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522 lines
13 KiB
Go
522 lines
13 KiB
Go
// Copyright (c) 2016-2017 Daniel Oaks <daniel@danieloaks.net>
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// released under the MIT license
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package irc
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import (
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"errors"
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"fmt"
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"net"
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"sort"
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"sync"
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"time"
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"strings"
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"encoding/json"
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"github.com/goshuirc/irc-go/ircfmt"
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"github.com/goshuirc/irc-go/ircmsg"
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"github.com/oragono/oragono/irc/custime"
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"github.com/oragono/oragono/irc/sno"
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"github.com/tidwall/buntdb"
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)
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const (
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keyDlineEntry = "bans.dline %s"
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)
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var (
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errNoExistingBan = errors.New("Ban does not exist")
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)
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// IPRestrictTime contains the expiration info about the given IP.
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type IPRestrictTime struct {
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// Duration is how long this block lasts for.
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Duration time.Duration `json:"duration"`
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// Expires is when this block expires.
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Expires time.Time `json:"expires"`
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}
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// IsExpired returns true if the time has expired.
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func (iptime *IPRestrictTime) IsExpired() bool {
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return iptime.Expires.Before(time.Now())
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}
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// IPBanInfo holds info about an IP/net ban.
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type IPBanInfo struct {
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// Reason is the ban reason.
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Reason string `json:"reason"`
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// OperReason is an oper ban reason.
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OperReason string `json:"oper_reason"`
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// OperName is the oper who set the ban.
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OperName string `json:"oper_name"`
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// Time holds details about the duration, if it exists.
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Time *IPRestrictTime `json:"time"`
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}
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// BanMessage returns the ban message.
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func (info IPBanInfo) BanMessage(message string) string {
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message = fmt.Sprintf(message, info.Reason)
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if info.Time != nil {
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message += fmt.Sprintf(" [%s]", info.Time.Duration.String())
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}
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return message
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}
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// dLineAddr contains the address itself and expiration time for a given network.
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type dLineAddr struct {
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// Address is the address that is blocked.
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Address net.IP
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// Info contains information on the ban.
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Info IPBanInfo
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}
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// dLineNet contains the net itself and expiration time for a given network.
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type dLineNet struct {
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// Network is the network that is blocked.
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Network net.IPNet
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// Info contains information on the ban.
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Info IPBanInfo
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}
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// DLineManager manages and dlines.
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type DLineManager struct {
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sync.RWMutex // tier 1
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// addresses that are dlined
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addresses map[string]*dLineAddr
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// networks that are dlined
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networks map[string]*dLineNet
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}
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// NewDLineManager returns a new DLineManager.
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func NewDLineManager() *DLineManager {
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var dm DLineManager
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dm.addresses = make(map[string]*dLineAddr)
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dm.networks = make(map[string]*dLineNet)
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return &dm
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}
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// AllBans returns all bans (for use with APIs, etc).
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func (dm *DLineManager) AllBans() map[string]IPBanInfo {
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allb := make(map[string]IPBanInfo)
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dm.RLock()
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defer dm.RUnlock()
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for name, info := range dm.addresses {
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allb[name] = info.Info
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}
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for name, info := range dm.networks {
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allb[name] = info.Info
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}
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return allb
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}
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// AddNetwork adds a network to the blocked list.
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func (dm *DLineManager) AddNetwork(network net.IPNet, length *IPRestrictTime, reason, operReason, operName string) {
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netString := network.String()
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dln := dLineNet{
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Network: network,
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Info: IPBanInfo{
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Time: length,
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Reason: reason,
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OperReason: operReason,
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OperName: operName,
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},
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}
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dm.Lock()
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dm.networks[netString] = &dln
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dm.Unlock()
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}
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// RemoveNetwork removes a network from the blocked list.
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func (dm *DLineManager) RemoveNetwork(network net.IPNet) {
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netString := network.String()
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dm.Lock()
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delete(dm.networks, netString)
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dm.Unlock()
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}
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// AddIP adds an IP address to the blocked list.
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func (dm *DLineManager) AddIP(addr net.IP, length *IPRestrictTime, reason, operReason, operName string) {
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addrString := addr.String()
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dla := dLineAddr{
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Address: addr,
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Info: IPBanInfo{
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Time: length,
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Reason: reason,
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OperReason: operReason,
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OperName: operName,
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},
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}
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dm.Lock()
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dm.addresses[addrString] = &dla
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dm.Unlock()
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}
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// RemoveIP removes an IP from the blocked list.
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func (dm *DLineManager) RemoveIP(addr net.IP) {
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addrString := addr.String()
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dm.Lock()
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delete(dm.addresses, addrString)
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dm.Unlock()
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}
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// CheckIP returns whether or not an IP address was banned, and how long it is banned for.
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func (dm *DLineManager) CheckIP(addr net.IP) (isBanned bool, info *IPBanInfo) {
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// check IP addr
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addrString := addr.String()
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dm.RLock()
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addrInfo := dm.addresses[addrString]
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dm.RUnlock()
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if addrInfo != nil {
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if addrInfo.Info.Time != nil {
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if addrInfo.Info.Time.IsExpired() {
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// ban on IP has expired, remove it from our blocked list
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dm.RemoveIP(addr)
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} else {
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return true, &addrInfo.Info
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}
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} else {
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return true, &addrInfo.Info
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}
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}
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// check networks
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doCleanup := false
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defer func() {
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if doCleanup {
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go func() {
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dm.Lock()
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defer dm.Unlock()
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for key, netInfo := range dm.networks {
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if netInfo.Info.Time.IsExpired() {
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delete(dm.networks, key)
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}
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}
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}()
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}
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}()
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dm.RLock()
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defer dm.RUnlock()
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for _, netInfo := range dm.networks {
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if netInfo.Info.Time != nil && netInfo.Info.Time.IsExpired() {
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// expired ban, ignore and clean up later
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doCleanup = true
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} else if netInfo.Network.Contains(addr) {
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return true, &netInfo.Info
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}
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}
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// no matches!
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return false, nil
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}
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// DLINE [ANDKILL] [MYSELF] [duration] <ip>/<net> [ON <server>] [reason [| oper reason]]
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// DLINE LIST
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func dlineHandler(server *Server, client *Client, msg ircmsg.IrcMessage) bool {
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// check oper permissions
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if !client.class.Capabilities["oper:local_ban"] {
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client.Send(nil, server.name, ERR_NOPRIVS, client.nick, msg.Command, client.t("Insufficient oper privs"))
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return false
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}
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currentArg := 0
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// if they say LIST, we just list the current dlines
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if len(msg.Params) == currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "list" {
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bans := server.dlines.AllBans()
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if len(bans) == 0 {
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client.Notice(client.t("No DLINEs have been set!"))
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}
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for key, info := range bans {
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client.Notice(fmt.Sprintf(client.t("Ban - %[1]s - added by %[2]s - %[3]s"), key, info.OperName, info.BanMessage("%s")))
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}
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return false
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}
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// when setting a ban, if they say "ANDKILL" we should also kill all users who match it
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var andKill bool
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if len(msg.Params) > currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "andkill" {
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andKill = true
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currentArg++
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}
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// when setting a ban that covers the oper's current connection, we require them to say
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// "DLINE MYSELF" so that we're sure they really mean it.
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var dlineMyself bool
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if len(msg.Params) > currentArg+1 && strings.ToLower(msg.Params[currentArg]) == "myself" {
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dlineMyself = true
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currentArg++
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}
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// duration
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duration, err := custime.ParseDuration(msg.Params[currentArg])
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durationIsUsed := err == nil
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if durationIsUsed {
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currentArg++
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}
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// get host
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if len(msg.Params) < currentArg+1 {
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client.Send(nil, server.name, ERR_NEEDMOREPARAMS, client.nick, msg.Command, client.t("Not enough parameters"))
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return false
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}
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hostString := msg.Params[currentArg]
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currentArg++
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// check host
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var hostAddr net.IP
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var hostNet *net.IPNet
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_, hostNet, err = net.ParseCIDR(hostString)
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if err != nil {
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hostAddr = net.ParseIP(hostString)
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}
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if hostAddr == nil && hostNet == nil {
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client.Send(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("Could not parse IP address or CIDR network"))
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return false
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}
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if hostNet == nil {
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hostString = hostAddr.String()
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if !dlineMyself && hostAddr.Equal(client.IP()) {
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client.Send(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>"))
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return false
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}
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} else {
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hostString = hostNet.String()
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if !dlineMyself && hostNet.Contains(client.IP()) {
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client.Send(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>"))
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return false
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}
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}
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// check remote
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if len(msg.Params) > currentArg && msg.Params[currentArg] == "ON" {
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client.Send(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("Remote servers not yet supported"))
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return false
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}
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// get comment(s)
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reason := "No reason given"
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operReason := "No reason given"
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if len(msg.Params) > currentArg {
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tempReason := strings.TrimSpace(msg.Params[currentArg])
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if len(tempReason) > 0 && tempReason != "|" {
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tempReasons := strings.SplitN(tempReason, "|", 2)
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if tempReasons[0] != "" {
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reason = tempReasons[0]
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}
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if len(tempReasons) > 1 && tempReasons[1] != "" {
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operReason = tempReasons[1]
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} else {
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operReason = reason
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}
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}
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}
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operName := client.operName
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if operName == "" {
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operName = server.name
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}
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// assemble ban info
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var banTime *IPRestrictTime
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if durationIsUsed {
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banTime = &IPRestrictTime{
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Duration: duration,
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Expires: time.Now().Add(duration),
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}
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}
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info := IPBanInfo{
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Reason: reason,
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OperReason: operReason,
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OperName: operName,
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Time: banTime,
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}
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// save in datastore
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err = server.store.Update(func(tx *buntdb.Tx) error {
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dlineKey := fmt.Sprintf(keyDlineEntry, hostString)
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// assemble json from ban info
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b, err := json.Marshal(info)
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if err != nil {
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return err
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}
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tx.Set(dlineKey, string(b), nil)
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return nil
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})
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if err != nil {
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client.Notice(fmt.Sprintf(client.t("Could not successfully save new D-LINE: %s"), err.Error()))
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return false
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}
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if hostNet == nil {
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server.dlines.AddIP(hostAddr, banTime, reason, operReason, operName)
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} else {
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server.dlines.AddNetwork(*hostNet, banTime, reason, operReason, operName)
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}
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var snoDescription string
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if durationIsUsed {
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client.Notice(fmt.Sprintf(client.t("Added temporary (%[1]s) D-Line for %[2]s"), duration.String(), hostString))
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snoDescription = fmt.Sprintf(ircfmt.Unescape("%s [%s]$r added temporary (%s) D-Line for %s"), client.nick, operName, duration.String(), hostString)
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} else {
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client.Notice(fmt.Sprintf(client.t("Added D-Line for %s"), hostString))
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snoDescription = fmt.Sprintf(ircfmt.Unescape("%s [%s]$r added D-Line for %s"), client.nick, operName, hostString)
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}
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server.snomasks.Send(sno.LocalXline, snoDescription)
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var killClient bool
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if andKill {
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var clientsToKill []*Client
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var killedClientNicks []string
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var toKill bool
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for _, mcl := range server.clients.AllClients() {
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if hostNet == nil {
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toKill = hostAddr.Equal(mcl.IP())
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} else {
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toKill = hostNet.Contains(mcl.IP())
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}
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if toKill {
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clientsToKill = append(clientsToKill, mcl)
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killedClientNicks = append(killedClientNicks, mcl.nick)
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}
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}
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for _, mcl := range clientsToKill {
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mcl.exitedSnomaskSent = true
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mcl.Quit(fmt.Sprintf(mcl.t("You have been banned from this server (%s)"), reason))
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if mcl == client {
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killClient = true
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} else {
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// if mcl == client, we kill them below
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mcl.destroy(false)
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}
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}
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// send snomask
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sort.Strings(killedClientNicks)
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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, ", ")))
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}
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return killClient
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}
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func unDLineHandler(server *Server, client *Client, msg ircmsg.IrcMessage) bool {
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// check oper permissions
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if !client.class.Capabilities["oper:local_unban"] {
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client.Send(nil, server.name, ERR_NOPRIVS, client.nick, msg.Command, client.t("Insufficient oper privs"))
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return false
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}
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// get host
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hostString := msg.Params[0]
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// check host
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var hostAddr net.IP
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var hostNet *net.IPNet
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_, hostNet, err := net.ParseCIDR(hostString)
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if err != nil {
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hostAddr = net.ParseIP(hostString)
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}
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if hostAddr == nil && hostNet == nil {
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client.Send(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, client.t("Could not parse IP address or CIDR network"))
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return false
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}
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if hostNet == nil {
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hostString = hostAddr.String()
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} else {
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hostString = hostNet.String()
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}
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// save in datastore
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err = server.store.Update(func(tx *buntdb.Tx) error {
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dlineKey := fmt.Sprintf(keyDlineEntry, hostString)
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// check if it exists or not
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val, err := tx.Get(dlineKey)
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if val == "" {
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return errNoExistingBan
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} else if err != nil {
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return err
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}
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tx.Delete(dlineKey)
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return nil
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})
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if err != nil {
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client.Send(nil, server.name, ERR_UNKNOWNERROR, client.nick, msg.Command, fmt.Sprintf(client.t("Could not remove ban [%s]"), err.Error()))
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return false
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}
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if hostNet == nil {
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server.dlines.RemoveIP(hostAddr)
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} else {
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server.dlines.RemoveNetwork(*hostNet)
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}
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client.Notice(fmt.Sprintf(client.t("Removed D-Line for %s"), hostString))
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server.snomasks.Send(sno.LocalXline, fmt.Sprintf(ircfmt.Unescape("%s$r removed D-Line for %s"), client.nick, hostString))
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return false
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}
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func (s *Server) loadDLines() {
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s.dlines = NewDLineManager()
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// load from datastore
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s.store.View(func(tx *buntdb.Tx) error {
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//TODO(dan): We could make this safer
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tx.AscendKeys("bans.dline *", func(key, value string) bool {
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// get address name
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key = key[len("bans.dline "):]
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// load addr/net
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var hostAddr net.IP
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var hostNet *net.IPNet
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_, hostNet, err := net.ParseCIDR(key)
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if err != nil {
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hostAddr = net.ParseIP(key)
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}
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// load ban info
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var info IPBanInfo
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json.Unmarshal([]byte(value), &info)
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// set opername if it isn't already set
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if info.OperName == "" {
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info.OperName = s.name
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}
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// add to the server
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if hostNet == nil {
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s.dlines.AddIP(hostAddr, info.Time, info.Reason, info.OperReason, info.OperName)
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} else {
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s.dlines.AddNetwork(*hostNet, info.Time, info.Reason, info.OperReason, info.OperName)
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}
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return true // true to continue I guess?
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})
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return nil
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})
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}
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