Files
3x-ui/internal/web/service/tgbot/tgbot.go
T
Sanaei 41645255f1 refactor: focused service files, leaf subpackages, and an internal/ layout (#5167)
* refactor(service): split client.go into focused files

client.go had grown to 4455 lines mixing ~10 responsibilities. Split it
verbatim into cohesive same-package files (no behavior change):

  client.go            foundation: ClientService, ClientWithAttachments,
                       ClientCreatePayload, ErrClientNotInInbound, sqlInChunk
  client_locks.go      inbound mutation locks, delete tombstones, compactOrphans
  client_lookup.go     read-only lookups (GetByID, List, EffectiveFlow, ...)
  client_link.go       inbound association sync (SyncInbound, DetachInbound, ...)
  client_crud.go       single-client CRUD + validation + protocol defaults
  client_inbound_apply.go  low-level inbound-settings mutators + by-email setters
  client_bulk.go       bulk attach/detach/adjust/delete/create + DelDepleted
  client_traffic.go    traffic-reset paths
  client_groups.go     client group management
  client_paging.go     paged listing, filtering, sorting, summary

Every declaration moved unchanged (verified: identical func/type/const/var
signature set before vs after). Imports redistributed per file via goimports.
go build ./..., go vet, and go test ./web/service/... all pass.

* refactor(service): split inbound.go into focused files

inbound.go was 4100 lines. Split it verbatim into cohesive same-package
files (no behavior change):

  inbound.go             core inbound CRUD + InboundService (keeps pkg doc)
  inbound_protocol.go    protocol / stream capability helpers
  inbound_node.go        node/runtime/remote coordination + online tracking
  inbound_traffic.go     traffic accounting, reset, client stats
  inbound_client_ips.go  per-client IP tracking
  inbound_clients.go     client lookups within inbounds + copy-clients
  inbound_disable.go     auto-disable invalid inbounds/clients
  inbound_migration.go   DB migrations
  inbound_sublink.go     subscription link providers
  inbound_util.go        generic slice/string helpers

Identical func/type/const/var signature set before vs after; package doc
comment preserved on inbound.go. Imports redistributed via goimports.
Build, vet, and go test ./web/service/... all pass.

* refactor(service): split tgbot.go into focused files

tgbot.go was 3738 lines dominated by a 1246-line answerCallback. Split it
verbatim into cohesive same-package files (no behavior change):

  tgbot.go           lifecycle, bot setup, caches, small utils
  tgbot_router.go    incoming update / command / callback dispatch
  tgbot_send.go      outbound messaging primitives
  tgbot_client.go    client views, actions, subscription links
  tgbot_inbound.go   inbound listing / pickers
  tgbot_report.go    server usage, exhausted, online, backups, notifications

Identical func/type/const/var signature set before vs after. Imports
redistributed via goimports. Build, vet, and go test ./web/service/... pass.

* refactor(client): dedupe single-field by-email setters

ResetClientIpLimitByEmail, ResetClientExpiryTimeByEmail, and
ResetClientTrafficLimitByEmail shared an identical ~50-line body that
resolves the inbound by email, confirms the client exists, rewrites a
single-client settings payload, and delegates to UpdateInboundClient.

Extract that into applyClientFieldByEmail(inboundSvc, email, mutate) and
reduce each setter to a 3-line wrapper. Behavior is unchanged: same checks
and error strings, same single-client payload contract, same totalGB guard.

SetClientTelegramUserID (resolves by traffic id, different error text) and
ToggleClientEnableByEmail/SetClientEnableByEmail (different return shape and
a pre-read of the old state) intentionally keep their own bodies.

* refactor(service): extract panel/ subpackage

Move the panel-administration leaf services out of the flat service
package into web/service/panel/ (package panel):

  user.go         UserService (auth / 2FA / LDAP)
  panel.go        PanelService (restart / self-update) + version helpers
  panel_other.go  non-unix RestartPanel
  panel_unix.go   unix RestartPanel
  api_token.go    ApiTokenService
  websocket.go    WebSocketService
  panel_test.go   version/shellQuote unit tests

These are leaves: they depend on core (SettingService, Release) but no
core file references them, so the extraction creates no import cycle.
Core references are now qualified (service.SettingService, service.Release);
callers in main.go, web/web.go, and web/controller/* updated to panel.*.
Build, vet, and go test ./web/... pass.

* refactor(service): extract integration/ subpackage

Move the external-provider integration leaves into web/service/integration/
(package integration):

  warp.go        WarpService (Cloudflare WARP)
  nord.go        NordService (NordVPN)
  custom_geo.go  CustomGeoService (custom geo asset management)
  *_test.go      custom_geo / panel-proxy tests

These depend on core (SettingService, ServerService, XraySettingService) but
no core file references them. xray_setting.go stays in core because it calls
the unexported SettingService.saveSetting. The shared isBlockedIP SSRF helper
(used by core url_safety.go and by custom_geo) now has a small copy in each
package rather than being exported. Core references qualified; callers in
web/web.go, web/job/*, and web/controller/* updated to integration.*.
Build, vet, and go test ./web/... pass.

* refactor(service): extract tgbot/ subpackage

Move the Telegram bot (6 files + test) into web/service/tgbot/ (package
tgbot). It is a leaf: it embeds five core services (Inbound/Client/Setting/
Server/Xray) and the core never references it, so no import cycle.

To support the package boundary without changing behavior:
  - core exposes XrayProcess() *xray.Process so tgbot keeps calling the
    exact same running-process methods it used via the package-level `p`;
  - three core methods tgbot calls are exported: ClientService.checkIs-
    EnabledByEmail -> CheckIsEnabledByEmail, InboundService.getAllEmails ->
    GetAllEmails (callers updated in-package);
  - tgbot's embedded-field types and the few core type refs (Status,
    ClientCreatePayload, SanitizePublicHTTPURL) are now service-qualified.

Callers in main.go, web/web.go, web/job/*, and web/controller/* updated to
tgbot.*. Build, vet, and go test ./web/... pass.

* refactor(service): extract outbound/ subpackage

OutboundService (outbound.go) imports only neutral packages (config,
database, model, xray) and its production code is referenced by no core or
sibling service file — only by web/controller/xray_setting.go and
web/job/xray_traffic_job.go. Move it to web/service/outbound/ (package
outbound); no core qualification needed inside. Callers updated to outbound.*.

The one coupling was a tiny pure test helper, outboundsContainTag, used by
both outbound.go and the core outbound_subscription_test.go; it now has a
small copy in that test file rather than being shared across the boundary.
Build, vet, and go test ./web/... pass.

* refactor(util): move wireguard into its own subpackage

util/wireguard.go was the lone file of the root `util` package (24 lines,
one exported func GenerateWireguardKeypair), while every other util concern
lives in a focused subpackage (util/common, util/crypto, util/netsafe, ...).
Move it to util/wireguard/ (package wireguard) for consistency; its only
importer, web/service/integration/warp.go, is updated. The root `util`
package no longer exists.

* refactor(sub): drop redundant sub prefix from filenames

Inside package sub the subXxx.go prefix just repeats the package name
(like client_*.go did inside service). Rename for consistency; content and
type names are unchanged:

  subController.go    -> controller.go
  subService.go       -> service.go
  subClashService.go  -> clash_service.go
  subJsonService.go   -> json_service.go
  (+ matching _test.go files)

* refactor(controller): rename xui.go -> spa.go

XUIController serves the panel's single-page-app shell; spa.go names that
role plainly (the other controller files are domain-named). File rename only
— the type stays XUIController. api_docs_test.go keys route base paths by
filename, so its "xui.go" case is updated to "spa.go".

* refactor: move backend packages under internal/

Adopt the idiomatic Go application layout: the backend packages now live
under internal/ (a boundary the toolchain enforces), signalling private
implementation instead of a library-style flat root. No runtime behavior
changes — only import paths and a few build/config paths move.

Moved: config, database, logger, mtproto, sub, util, web, xray -> internal/.
main.go stays at the repo root and tools/openapigen stays under tools/ (both
still import internal/* because the internal rule keys off the module root).
The module path github.com/mhsanaei/3x-ui/v3 is unchanged; 149 .go files had
their import prefix rewritten to .../internal/<pkg>.

Couplings the Go compiler can't see, updated to the new layout:
  - frontend i18n imports of web/translation (react.ts, setup.components.ts)
  - vite outDir + eslint/tsconfig ignore globs -> internal/web/dist
  - Dockerfile COPY paths for web/dist and web/translation
  - locale.go os.DirFS("web") disk fallback -> "internal/web"
  - .gitignore and ci.yml go:embed stub for internal/web/dist
  - api_docs_test.go repo-root relative walk (one level deeper)
  - tools/openapigen filesystem package paths; ApiTokenView repointed to the
    web/service/panel subpackage and codegen regenerated (clears a stale
    type the ci.yml codegen check was failing on)

Verified: go build/vet/test (all packages), and frontend typecheck, lint,
vitest (478 tests), and production build into internal/web/dist.

* fix(config): keep test runs from writing logs into the source tree

GetLogFolder() returns a CWD-relative "./log" on Windows. Under `go test`
the working directory is each package's own folder, so InitLogger (called by
tests in web/job, web/service, xray, web/websocket) created stray log/
directories scattered through the source tree (e.g. internal/web/job/log/).

Redirect to a shared temp folder when testing.Testing() reports a test run.
Production behavior is unchanged: Windows still uses ./log next to the binary
and Linux /var/log/x-ui. The log files were always gitignored (*.log) and
never committed; this just stops the noise at the source.

* docs: move subscription-template guide out of root into docs/

sub_templates/ was a top-level folder holding only a README and no actual
templates (3x-ui ships none by design), referenced nowhere and unlinked from
any doc — it read like an empty placeholder cluttering the repo root.

Move the guide to docs/custom-subscription-templates.md (a proper docs home),
reword its intro to read as documentation rather than a folder note, link it
from the Features list in README.md, and drop the empty sub_templates/ folder.

* fix: update stale web/ path references after the internal/ move

The internal/ migration rewrote Go import paths but left some references to
the old top-level layout in docs, comments, and a few runtime disk paths.

Functional (dev-mode only): the disk-serving fallbacks that read the Vite
build from disk when running from source still pointed at web/dist/, which
moved to internal/web/dist/ — so `os.DirFS`/`os.Stat`/`os.ReadFile` in
internal/web/web.go and internal/sub/{sub,controller}.go are corrected.
Production was unaffected (it serves the embedded FS; verified by the Docker
build), but `go run` with a live frontend build silently fell back to embed.

Docs/comments: frontend/README.md, CONTRIBUTING.md, the claude-issue-bot and
release workflows, the openapigen -root help text, and assorted Go comments
now reference internal/web, internal/database, internal/sub, internal/xray,
etc. Package-name mentions (the "web" package), root paths (main.go,
frontend/, install scripts, /etc/x-ui), routes (/panel/api/xray), and the
historical "web/assets no longer exists" note were intentionally left as-is.

* refactor(web): remove the legacy /xui -> /panel redirect middleware

RedirectMiddleware existed only for backward compatibility with the old
`/xui` URL scheme (301-redirecting /xui and /xui/API to /panel and
/panel/api). That cutover was long ago, so drop the middleware, its
registration in initRouter, and the now-inaccurate "URL redirection"
mention in the middleware package doc. Old /xui URLs now 404 like any other
unknown path. HTTPS auto-redirect and auth redirects are unrelated and stay.

* build: fix .dockerignore for internal/ layout and exclude runtime dir

- web/dist -> internal/web/dist: the embedded frontend moved under internal/,
  so the stale exclude no longer matched and the locally-built dist could be
  sent to the build context (the frontend stage rebuilds it fresh anyway).
- exclude x-ui/: the local runtime directory (SQLite db, geo .dat files, xray
  binaries, certs — ~150MB) was being shipped into the build context for no
  reason. Verified the pattern excludes only the directory and still keeps
  x-ui.sh, which the Dockerfile copies to /usr/bin/x-ui.
2026-06-10 15:19:22 +02:00

471 lines
14 KiB
Go

package tgbot
import (
"context"
"crypto/rand"
"embed"
"math/big"
"net/http"
"net/url"
"os"
"regexp"
"slices"
"strconv"
"strings"
"sync"
"time"
"github.com/mhsanaei/3x-ui/v3/internal/logger"
"github.com/mhsanaei/3x-ui/v3/internal/util/common"
"github.com/mhsanaei/3x-ui/v3/internal/web/global"
"github.com/mhsanaei/3x-ui/v3/internal/web/locale"
"github.com/mhsanaei/3x-ui/v3/internal/web/service"
"github.com/mymmrac/telego"
th "github.com/mymmrac/telego/telegohandler"
"github.com/valyala/fasthttp"
"github.com/valyala/fasthttp/fasthttpproxy"
)
var (
bot *telego.Bot
// botCancel stores the function to cancel the context, stopping Long Polling gracefully.
botCancel context.CancelFunc
// tgBotMutex protects concurrent access to botCancel variable
tgBotMutex sync.Mutex
// botWG waits for the OnReceive Long Polling goroutine to finish.
botWG sync.WaitGroup
botHandler *th.BotHandler
adminIds []int64
isRunning bool
hostname string
hashStorage *global.HashStorage
// Performance improvements
messageWorkerPool chan struct{} // Semaphore for limiting concurrent message processing
optimizedHTTPClient *http.Client // HTTP client with connection pooling and timeouts
// Simple cache for frequently accessed data
statusCache struct {
data *service.Status
timestamp time.Time
mutex sync.RWMutex
}
serverStatsCache struct {
data string
timestamp time.Time
mutex sync.RWMutex
}
// clients data to adding new client. receiver_inbound_IDs is the set of
// inbounds the new client will be attached to; receiver_inbound_ID mirrors
// the primary pick for the legacy attach-picker entry point. Per-protocol
// secrets (UUID, password, flow, method) are filled per-inbound on submit
// by ClientService.fillProtocolDefaults, so the bot only tracks universal
// client fields here.
receiver_inbound_ID int
receiver_inbound_IDs []int
client_Email string
client_LimitIP int
client_TotalGB int64
client_ExpiryTime int64
client_Enable bool
client_TgID string
client_SubID string
client_Comment string
client_Reset int
)
var userStates = make(map[int64]string)
// LoginStatus represents the result of a login attempt.
type LoginStatus byte
// Login status constants
const (
LoginSuccess LoginStatus = 1 // Login was successful
LoginFail LoginStatus = 0 // Login failed
EmptyTelegramUserID = int64(0) // Default value for empty Telegram user ID
)
// LoginAttempt contains safe metadata for panel login notifications.
// It intentionally does not include attempted passwords.
type LoginAttempt struct {
Username string
IP string
Time string
Status LoginStatus
Reason string
}
// Tgbot provides business logic for Telegram bot integration.
// It handles bot commands, user interactions, and status reporting via Telegram.
type Tgbot struct {
inboundService service.InboundService
clientService service.ClientService
settingService service.SettingService
serverService service.ServerService
xrayService service.XrayService
lastStatus *service.Status
}
// NewTgbot creates a new Tgbot instance.
func (t *Tgbot) NewTgbot() *Tgbot {
return new(Tgbot)
}
// I18nBot retrieves a localized message for the bot interface.
func (t *Tgbot) I18nBot(name string, params ...string) string {
return locale.I18n(locale.Bot, name, params...)
}
// GetHashStorage returns the hash storage instance for callback queries.
func (t *Tgbot) GetHashStorage() *global.HashStorage {
return hashStorage
}
// getCachedStatus returns cached server status if it's fresh enough (less than 5 seconds old)
func (t *Tgbot) getCachedStatus() (*service.Status, bool) {
statusCache.mutex.RLock()
defer statusCache.mutex.RUnlock()
if statusCache.data != nil && time.Since(statusCache.timestamp) < 5*time.Second {
return statusCache.data, true
}
return nil, false
}
// setCachedStatus updates the status cache
func (t *Tgbot) setCachedStatus(status *service.Status) {
statusCache.mutex.Lock()
defer statusCache.mutex.Unlock()
statusCache.data = status
statusCache.timestamp = time.Now()
}
// getCachedServerStats returns cached server stats if it's fresh enough (less than 10 seconds old)
func (t *Tgbot) getCachedServerStats() (string, bool) {
serverStatsCache.mutex.RLock()
defer serverStatsCache.mutex.RUnlock()
if serverStatsCache.data != "" && time.Since(serverStatsCache.timestamp) < 10*time.Second {
return serverStatsCache.data, true
}
return "", false
}
// setCachedServerStats updates the server stats cache
func (t *Tgbot) setCachedServerStats(stats string) {
serverStatsCache.mutex.Lock()
defer serverStatsCache.mutex.Unlock()
serverStatsCache.data = stats
serverStatsCache.timestamp = time.Now()
}
// Start initializes and starts the Telegram bot with the provided translation files.
func (t *Tgbot) Start(i18nFS embed.FS) error {
// Initialize localizer
err := locale.InitLocalizer(i18nFS, &t.settingService)
if err != nil {
return err
}
// If Start is called again (e.g. during reload), ensure any previous long-polling
// loop is stopped before creating a new bot / receiver.
StopBot()
// Initialize hash storage to store callback queries
hashStorage = global.NewHashStorage(20 * time.Minute)
// Initialize worker pool for concurrent message processing (max 10 concurrent handlers)
messageWorkerPool = make(chan struct{}, 10)
// Initialize optimized HTTP client with connection pooling
optimizedHTTPClient = &http.Client{
Timeout: 15 * time.Second,
Transport: &http.Transport{
MaxIdleConns: 100,
MaxIdleConnsPerHost: 10,
IdleConnTimeout: 30 * time.Second,
DisableKeepAlives: false,
},
}
t.SetHostname()
// Get Telegram bot token
tgBotToken, err := t.settingService.GetTgBotToken()
if err != nil || tgBotToken == "" {
logger.Warning("Failed to get Telegram bot token:", err)
return err
}
// Get Telegram bot chat ID(s)
tgBotID, err := t.settingService.GetTgBotChatId()
if err != nil {
logger.Warning("Failed to get Telegram bot chat ID:", err)
return err
}
parsedAdminIds := make([]int64, 0)
// Parse admin IDs from comma-separated string
if tgBotID != "" {
for adminID := range strings.SplitSeq(tgBotID, ",") {
id, err := strconv.ParseInt(adminID, 10, 64)
if err != nil {
logger.Warning("Failed to parse admin ID from Telegram bot chat ID:", err)
return err
}
parsedAdminIds = append(parsedAdminIds, int64(id))
}
}
tgBotMutex.Lock()
adminIds = parsedAdminIds
tgBotMutex.Unlock()
// Get Telegram bot proxy URL
tgBotProxy, err := t.settingService.GetTgBotProxy()
if err != nil {
logger.Warning("Failed to get Telegram bot proxy URL:", err)
}
// Fall back to the panel-wide proxy when no dedicated bot proxy is set.
if tgBotProxy == "" {
panelProxy, perr := t.settingService.GetPanelProxy()
if perr != nil {
logger.Warning("Failed to get panel proxy URL:", perr)
} else if isSupportedBotProxyScheme(panelProxy) {
tgBotProxy = panelProxy
}
}
// Get Telegram bot API server URL
tgBotAPIServer, err := t.settingService.GetTgBotAPIServer()
if err != nil {
logger.Warning("Failed to get Telegram bot API server URL:", err)
}
// Create new Telegram bot instance
bot, err = t.NewBot(tgBotToken, tgBotProxy, tgBotAPIServer)
if err != nil {
logger.Error("Failed to initialize Telegram bot API:", err)
return err
}
t.trySetBotCommands(bot)
// Start receiving Telegram bot messages
tgBotMutex.Lock()
alreadyRunning := isRunning || botCancel != nil
tgBotMutex.Unlock()
if !alreadyRunning {
logger.Info("Telegram bot receiver started")
go t.OnReceive()
}
return nil
}
func (t *Tgbot) trySetBotCommands(bot *telego.Bot) {
defer func() {
if r := recover(); r != nil {
logger.Warning("Failed to register bot commands (Telegram may be rate-limiting); bot will continue without them:", r)
}
}()
err := bot.SetMyCommands(context.Background(), &telego.SetMyCommandsParams{
Commands: []telego.BotCommand{
{Command: "start", Description: t.I18nBot("tgbot.commands.startDesc")},
{Command: "help", Description: t.I18nBot("tgbot.commands.helpDesc")},
{Command: "status", Description: t.I18nBot("tgbot.commands.statusDesc")},
{Command: "id", Description: t.I18nBot("tgbot.commands.idDesc")},
},
})
if err != nil {
logger.Warning("Failed to set bot commands:", err)
}
}
func isSupportedBotProxyScheme(proxyUrl string) bool {
return strings.HasPrefix(proxyUrl, "socks5://") ||
strings.HasPrefix(proxyUrl, "http://") ||
strings.HasPrefix(proxyUrl, "https://")
}
// createRobustFastHTTPClient creates a fasthttp.Client with proper connection handling
func (t *Tgbot) createRobustFastHTTPClient(proxyUrl string) *fasthttp.Client {
client := &fasthttp.Client{
// Connection timeouts
ReadTimeout: 30 * time.Second,
WriteTimeout: 30 * time.Second,
MaxIdleConnDuration: 60 * time.Second,
MaxConnDuration: 0, // unlimited, but controlled by MaxIdleConnDuration
MaxIdemponentCallAttempts: 3,
ReadBufferSize: 4096,
WriteBufferSize: 4096,
MaxConnsPerHost: 100,
MaxConnWaitTimeout: 10 * time.Second,
DisableHeaderNamesNormalizing: false,
DisablePathNormalizing: false,
// Retry on connection errors
RetryIf: func(request *fasthttp.Request) bool {
// Retry on connection errors for GET requests
return string(request.Header.Method()) == "GET" || string(request.Header.Method()) == "POST"
},
}
if proxyUrl != "" {
if strings.HasPrefix(proxyUrl, "socks5://") {
client.Dial = fasthttpproxy.FasthttpSocksDialer(proxyUrl)
} else {
client.Dial = fasthttpproxy.FasthttpHTTPDialer(proxyUrl)
}
}
return client
}
// NewBot creates a new Telegram bot instance with optional proxy and API server settings.
func (t *Tgbot) NewBot(token string, proxyUrl string, apiServerUrl string) (*telego.Bot, error) {
// Validate proxy URL if provided
if proxyUrl != "" {
if !isSupportedBotProxyScheme(proxyUrl) {
logger.Warning("Unsupported proxy scheme (want socks5:// or http(s)://), ignoring proxy")
proxyUrl = "" // Clear invalid proxy
} else if _, err := url.Parse(proxyUrl); err != nil {
logger.Warningf("Can't parse proxy URL, ignoring proxy: %v", err)
proxyUrl = ""
}
}
// Validate API server URL if provided
if apiServerUrl != "" {
safeURL, err := service.SanitizePublicHTTPURL(apiServerUrl, false)
if err != nil {
logger.Warningf("Invalid or blocked API server URL, using default: %v", err)
apiServerUrl = ""
} else {
apiServerUrl = safeURL
}
}
// Create robust fasthttp client
client := t.createRobustFastHTTPClient(proxyUrl)
// Build bot options
var options []telego.BotOption
options = append(options, telego.WithFastHTTPClient(client))
if apiServerUrl != "" {
options = append(options, telego.WithAPIServer(apiServerUrl))
}
return telego.NewBot(token, options...)
}
// IsRunning checks if the Telegram bot is currently running.
func (t *Tgbot) IsRunning() bool {
tgBotMutex.Lock()
defer tgBotMutex.Unlock()
return isRunning
}
// SetHostname sets the hostname for the bot.
func (t *Tgbot) SetHostname() {
host, err := os.Hostname()
if err != nil {
logger.Error("get hostname error:", err)
hostname = ""
return
}
hostname = host
}
// Stop safely stops the Telegram bot's Long Polling operation.
// This method now calls the global StopBot function and cleans up other resources.
func (t *Tgbot) Stop() {
StopBot()
logger.Info("Stop Telegram receiver ...")
tgBotMutex.Lock()
adminIds = nil
tgBotMutex.Unlock()
}
// StopBot safely stops the Telegram bot's Long Polling operation by cancelling its context.
// This is the global function called from main.go's signal handler and t.Stop().
func StopBot() {
// Don't hold the mutex while cancelling/waiting.
tgBotMutex.Lock()
cancel := botCancel
botCancel = nil
handler := botHandler
botHandler = nil
isRunning = false
tgBotMutex.Unlock()
if handler != nil {
handler.Stop()
}
if cancel != nil {
logger.Info("Sending cancellation signal to Telegram bot...")
// Cancels the context passed to UpdatesViaLongPolling; this closes updates channel
// and lets botHandler.Start() exit cleanly.
cancel()
botWG.Wait()
logger.Info("Telegram bot successfully stopped.")
}
}
// encodeQuery encodes the query string if it's longer than 64 characters.
func (t *Tgbot) encodeQuery(query string) string {
// NOTE: we only need to hash for more than 64 chars
if len(query) <= 64 {
return query
}
return hashStorage.SaveHash(query)
}
// decodeQuery decodes a hashed query string back to its original form.
func (t *Tgbot) decodeQuery(query string) (string, error) {
if !hashStorage.IsMD5(query) {
return query, nil
}
decoded, exists := hashStorage.GetValue(query)
if !exists {
return "", common.NewError("hash not found in storage!")
}
return decoded, nil
}
// randomLowerAndNum generates a random string of lowercase letters and numbers.
func (t *Tgbot) randomLowerAndNum(length int) string {
charset := "abcdefghijklmnopqrstuvwxyz0123456789"
bytes := make([]byte, length)
for i := range bytes {
randomIndex, _ := rand.Int(rand.Reader, big.NewInt(int64(len(charset))))
bytes[i] = charset[randomIndex.Int64()]
}
return string(bytes)
}
// int64Contains checks if an int64 slice contains a specific item.
func int64Contains(slice []int64, item int64) bool {
return slices.Contains(slice, item)
}
// isSingleWord checks if the text contains only a single word.
func (t *Tgbot) isSingleWord(text string) bool {
text = strings.TrimSpace(text)
re := regexp.MustCompile(`\s+`)
return re.MatchString(text)
}