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ergo/irc/client_lookup_set.go

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// Copyright (c) 2012-2014 Jeremy Latt
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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 (
"fmt"
"log"
"regexp"
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"strings"
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"github.com/goshuirc/irc-go/ircmatch"
"github.com/oragono/oragono/irc/caps"
"github.com/oragono/oragono/irc/modes"
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"sync"
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)
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// ExpandUserHost takes a userhost, and returns an expanded version.
func ExpandUserHost(userhost string) (expanded string) {
expanded = userhost
// fill in missing wildcards for nicks
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//TODO(dan): this would fail with dan@lol, fix that.
if !strings.Contains(expanded, "!") {
expanded += "!*"
}
if !strings.Contains(expanded, "@") {
expanded += "@*"
}
return
}
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// ClientManager keeps track of clients by nick, enforcing uniqueness of casefolded nicks
type ClientManager struct {
sync.RWMutex // tier 2
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byNick map[string]*Client
bySkeleton map[string]*Client
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}
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// Initialize initializes a ClientManager.
func (clients *ClientManager) Initialize() {
clients.byNick = make(map[string]*Client)
clients.bySkeleton = make(map[string]*Client)
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}
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// Count returns how many clients are in the manager.
func (clients *ClientManager) Count() int {
clients.RLock()
defer clients.RUnlock()
count := len(clients.byNick)
return count
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}
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// Get retrieves a client from the manager, if they exist.
func (clients *ClientManager) Get(nick string) *Client {
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casefoldedName, err := CasefoldName(nick)
if err == nil {
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clients.RLock()
defer clients.RUnlock()
cli := clients.byNick[casefoldedName]
return cli
}
return nil
}
func (clients *ClientManager) removeInternal(client *Client) (err error) {
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// requires holding the writable Lock()
oldcfnick, oldskeleton := client.uniqueIdentifiers()
if oldcfnick == "*" || oldcfnick == "" {
return errNickMissing
}
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currentEntry, present := clients.byNick[oldcfnick]
if present {
if currentEntry == client {
delete(clients.byNick, oldcfnick)
} else {
// this shouldn't happen, but we can ignore it
client.server.logger.Warning("internal", "clients for nick out of sync", oldcfnick)
err = errNickMissing
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}
} else {
err = errNickMissing
}
currentEntry, present = clients.bySkeleton[oldskeleton]
if present {
if currentEntry == client {
delete(clients.bySkeleton, oldskeleton)
} else {
client.server.logger.Warning("internal", "clients for skeleton out of sync", oldskeleton)
err = errNickMissing
}
} else {
err = errNickMissing
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}
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return
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}
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// Remove removes a client from the lookup set.
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func (clients *ClientManager) Remove(client *Client) error {
clients.Lock()
defer clients.Unlock()
return clients.removeInternal(client)
}
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// Handles a RESUME by attaching a session to a designated client. It is the
// caller's responsibility to verify that the resume is allowed (checking tokens,
// TLS status, etc.) before calling this.
func (clients *ClientManager) Resume(oldClient *Client, session *Session) (err error) {
clients.Lock()
defer clients.Unlock()
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cfnick := oldClient.NickCasefolded()
if _, ok := clients.byNick[cfnick]; !ok {
return errNickMissing
}
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if !oldClient.AddSession(session) {
return errNickMissing
}
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return nil
}
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// SetNick sets a client's nickname, validating it against nicknames in use
func (clients *ClientManager) SetNick(client *Client, session *Session, newNick string) error {
if len(newNick) > client.server.Config().Limits.NickLen {
return errNicknameInvalid
}
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newcfnick, err := CasefoldName(newNick)
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if err != nil {
return errNicknameInvalid
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}
newSkeleton, err := Skeleton(newNick)
if err != nil {
return errNicknameInvalid
}
if restrictedCasefoldedNicks[newcfnick] || restrictedSkeletons[newSkeleton] {
return errNicknameInvalid
}
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reservedAccount, method := client.server.accounts.EnforcementStatus(newcfnick, newSkeleton)
account := client.Account()
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config := client.server.Config()
var bouncerAllowed bool
if config.Accounts.Bouncer.Enabled {
if session != nil && session.capabilities.Has(caps.Bouncer) {
bouncerAllowed = true
} else {
settings := client.AccountSettings()
if config.Accounts.Bouncer.AllowedByDefault && settings.AllowBouncer != BouncerDisallowedByUser {
bouncerAllowed = true
} else if settings.AllowBouncer == BouncerAllowedByUser {
bouncerAllowed = true
}
}
}
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clients.Lock()
defer clients.Unlock()
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currentClient := clients.byNick[newcfnick]
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// the client may just be changing case
if currentClient != nil && currentClient != client && session != nil {
// these conditions forbid reattaching to an existing session:
if client.Registered() || !bouncerAllowed || account == "" || account != currentClient.Account() || client.isTor != currentClient.isTor || client.HasMode(modes.TLS) != currentClient.HasMode(modes.TLS) {
return errNicknameInUse
}
if !currentClient.AddSession(session) {
return errNicknameInUse
}
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// successful reattach!
return nil
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}
// analogous checks for skeletons
skeletonHolder := clients.bySkeleton[newSkeleton]
if skeletonHolder != nil && skeletonHolder != client {
return errNicknameInUse
}
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if method == NickEnforcementStrict && reservedAccount != "" && reservedAccount != account {
return errNicknameReserved
}
clients.removeInternal(client)
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clients.byNick[newcfnick] = client
clients.bySkeleton[newSkeleton] = client
client.updateNick(newNick, newcfnick, newSkeleton)
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return nil
}
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func (clients *ClientManager) AllClients() (result []*Client) {
clients.RLock()
defer clients.RUnlock()
result = make([]*Client, len(clients.byNick))
i := 0
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for _, client := range clients.byNick {
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result[i] = client
i++
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}
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return
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}
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// AllWithCaps returns all clients with the given capabilities.
func (clients *ClientManager) AllWithCaps(capabs ...caps.Capability) (sessions []*Session) {
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clients.RLock()
defer clients.RUnlock()
for _, client := range clients.byNick {
for _, session := range client.Sessions() {
if session.capabilities.HasAll(capabs...) {
sessions = append(sessions, session)
}
}
}
return
}
// AllWithCapsNotify returns all clients with the given capabilities, and that support cap-notify.
func (clients *ClientManager) AllWithCapsNotify(capabs ...caps.Capability) (sessions []*Session) {
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capabs = append(capabs, caps.CapNotify)
clients.RLock()
defer clients.RUnlock()
for _, client := range clients.byNick {
for _, session := range client.Sessions() {
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// cap-notify is implicit in cap version 302 and above
if session.capabilities.HasAll(capabs...) || 302 <= session.capVersion {
sessions = append(sessions, session)
}
}
}
return
}
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// FindAll returns all clients that match the given userhost mask.
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func (clients *ClientManager) FindAll(userhost string) (set ClientSet) {
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set = make(ClientSet)
userhost, err := Casefold(ExpandUserHost(userhost))
if err != nil {
return set
}
matcher := ircmatch.MakeMatch(userhost)
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clients.RLock()
defer clients.RUnlock()
for _, client := range clients.byNick {
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if matcher.Match(client.NickMaskCasefolded()) {
set.Add(client)
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}
}
return set
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}
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//
// usermask to regexp
//
//TODO(dan): move this over to generally using glob syntax instead?
// kinda more expected in normal ban/etc masks, though regex is useful (probably as an extban?)
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// UserMaskSet holds a set of client masks and lets you match hostnames to them.
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type UserMaskSet struct {
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sync.RWMutex
masks map[string]bool
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regexp *regexp.Regexp
}
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// NewUserMaskSet returns a new UserMaskSet.
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func NewUserMaskSet() *UserMaskSet {
return &UserMaskSet{
masks: make(map[string]bool),
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}
}
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// Add adds the given mask to this set.
func (set *UserMaskSet) Add(mask string) (added bool) {
casefoldedMask, err := Casefold(mask)
if err != nil {
log.Println(fmt.Sprintf("ERROR: Could not add mask to usermaskset: [%s]", mask))
return false
}
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set.Lock()
added = !set.masks[casefoldedMask]
if added {
set.masks[casefoldedMask] = true
}
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set.Unlock()
if added {
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set.setRegexp()
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}
return
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}
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// AddAll adds the given masks to this set.
func (set *UserMaskSet) AddAll(masks []string) (added bool) {
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set.Lock()
defer set.Unlock()
for _, mask := range masks {
if !added && !set.masks[mask] {
added = true
}
set.masks[mask] = true
}
if added {
set.setRegexp()
}
return
}
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// Remove removes the given mask from this set.
func (set *UserMaskSet) Remove(mask string) (removed bool) {
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set.Lock()
removed = set.masks[mask]
if removed {
delete(set.masks, mask)
}
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set.Unlock()
if removed {
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set.setRegexp()
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}
return
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}
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// Match matches the given n!u@h.
func (set *UserMaskSet) Match(userhost string) bool {
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set.RLock()
regexp := set.regexp
set.RUnlock()
if regexp == nil {
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return false
}
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return regexp.MatchString(userhost)
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}
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// String returns the masks in this set.
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func (set *UserMaskSet) String() string {
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set.RLock()
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masks := make([]string, len(set.masks))
index := 0
for mask := range set.masks {
masks[index] = mask
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index++
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}
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set.RUnlock()
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return strings.Join(masks, " ")
}
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func (set *UserMaskSet) Length() int {
set.RLock()
defer set.RUnlock()
return len(set.masks)
}
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// setRegexp generates a regular expression from the set of user mask
// strings. Masks are split at the two types of wildcards, `*` and
// `?`. All the pieces are meta-escaped. `*` is replaced with `.*`,
// the regexp equivalent. Likewise, `?` is replaced with `.`. The
// parts are re-joined and finally all masks are joined into a big
// or-expression.
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func (set *UserMaskSet) setRegexp() {
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var re *regexp.Regexp
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set.RLock()
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maskExprs := make([]string, len(set.masks))
index := 0
for mask := range set.masks {
manyParts := strings.Split(mask, "*")
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manyExprs := make([]string, len(manyParts))
for mindex, manyPart := range manyParts {
oneParts := strings.Split(manyPart, "?")
oneExprs := make([]string, len(oneParts))
for oindex, onePart := range oneParts {
oneExprs[oindex] = regexp.QuoteMeta(onePart)
}
manyExprs[mindex] = strings.Join(oneExprs, ".")
}
maskExprs[index] = strings.Join(manyExprs, ".*")
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index++
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}
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set.RUnlock()
if index > 0 {
expr := "^" + strings.Join(maskExprs, "|") + "$"
re, _ = regexp.Compile(expr)
}
set.Lock()
set.regexp = re
set.Unlock()
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}