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process.go 21 KB

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  1. package xray
  2. import (
  3. "bytes"
  4. "encoding/json"
  5. "errors"
  6. "fmt"
  7. "os"
  8. "os/exec"
  9. "path/filepath"
  10. "runtime"
  11. "sort"
  12. "strings"
  13. "sync"
  14. "sync/atomic"
  15. "syscall"
  16. "time"
  17. "github.com/mhsanaei/3x-ui/v3/internal/config"
  18. "github.com/mhsanaei/3x-ui/v3/internal/logger"
  19. "github.com/mhsanaei/3x-ui/v3/internal/util/common"
  20. )
  21. // GetBinaryName returns the Xray binary filename for the current OS and architecture.
  22. func GetBinaryName() string {
  23. arch := runtime.GOARCH
  24. if arch == "arm" {
  25. arch = "arm32"
  26. }
  27. return fmt.Sprintf("xray-%s-%s", runtime.GOOS, arch)
  28. }
  29. // GetBinaryPath returns the full path to the Xray binary executable.
  30. func GetBinaryPath() string {
  31. return config.GetBinFolderPath() + "/" + GetBinaryName()
  32. }
  33. // GetConfigPath returns the path to the Xray configuration file in the binary folder.
  34. func GetConfigPath() string {
  35. return config.GetBinFolderPath() + "/config.json"
  36. }
  37. // GetGeositePath returns the path to the geosite data file used by Xray.
  38. func GetGeositePath() string {
  39. return config.GetBinFolderPath() + "/geosite.dat"
  40. }
  41. // GetGeoipPath returns the path to the geoip data file used by Xray.
  42. func GetGeoipPath() string {
  43. return config.GetBinFolderPath() + "/geoip.dat"
  44. }
  45. // GetIPLimitLogPath returns the path to the IP limit log file.
  46. func GetIPLimitLogPath() string {
  47. return config.GetLogFolder() + "/3xipl.log"
  48. }
  49. // GetIPLimitBannedLogPath returns the path to the banned IP log file.
  50. func GetIPLimitBannedLogPath() string {
  51. return config.GetLogFolder() + "/3xipl-banned.log"
  52. }
  53. // GetIPLimitBannedPrevLogPath returns the path to the previous banned IP log file.
  54. func GetIPLimitBannedPrevLogPath() string {
  55. return config.GetLogFolder() + "/3xipl-banned.prev.log"
  56. }
  57. // GetAccessPersistentLogPath returns the path to the persistent access log file.
  58. func GetAccessPersistentLogPath() string {
  59. return config.GetLogFolder() + "/3xipl-ap.log"
  60. }
  61. // GetAccessPersistentPrevLogPath returns the path to the previous persistent access log file.
  62. func GetAccessPersistentPrevLogPath() string {
  63. return config.GetLogFolder() + "/3xipl-ap.prev.log"
  64. }
  65. // GetAccessLogPath reads the Xray config and returns the access log file path.
  66. func GetAccessLogPath() (string, error) {
  67. config, err := os.ReadFile(GetConfigPath())
  68. if err != nil {
  69. logger.Warningf("Failed to read configuration file: %s", err)
  70. return "", err
  71. }
  72. jsonConfig := map[string]any{}
  73. err = json.Unmarshal([]byte(config), &jsonConfig)
  74. if err != nil {
  75. logger.Warningf("Failed to parse JSON configuration: %s", err)
  76. return "", err
  77. }
  78. if jsonConfig["log"] != nil {
  79. jsonLog := jsonConfig["log"].(map[string]any)
  80. if jsonLog["access"] != nil {
  81. accessLogPath := jsonLog["access"].(string)
  82. return accessLogPath, nil
  83. }
  84. }
  85. return "", err
  86. }
  87. // stopProcess calls Stop on the given Process instance.
  88. func stopProcess(p *Process) {
  89. p.Stop()
  90. }
  91. // Process wraps an Xray process instance and provides management methods.
  92. type Process struct {
  93. *process
  94. }
  95. // NewProcess creates a new Xray process and sets up cleanup on garbage collection.
  96. func NewProcess(xrayConfig *Config) *Process {
  97. p := &Process{newProcess(xrayConfig)}
  98. runtime.SetFinalizer(p, stopProcess)
  99. return p
  100. }
  101. // NewTestProcess creates a new Xray process that uses a specific config file path.
  102. // Used for test runs (e.g. outbound test) so the main config.json is not overwritten.
  103. // The config file at configPath is removed when the process is stopped.
  104. func NewTestProcess(xrayConfig *Config, configPath string) *Process {
  105. p := &Process{newTestProcess(xrayConfig, configPath)}
  106. runtime.SetFinalizer(p, stopProcess)
  107. return p
  108. }
  109. type process struct {
  110. // mu guards the process lifecycle fields (cmd, done, exitErr) which are
  111. // written by Start/startCommand and the waitForCommand goroutine while being
  112. // read concurrently by IsRunning/GetErr/GetResult/Stop from other goroutines
  113. // (status endpoint, check-xray-running job). Snapshot under the lock, then do
  114. // any blocking syscall (Wait/Signal/Kill) on the local copy without holding it.
  115. mu sync.RWMutex
  116. cmd *exec.Cmd
  117. done chan struct{}
  118. version string
  119. apiPort int
  120. // onlineClients is the set of emails active on THIS panel's own xray
  121. // within the online grace window. It is derived only from local xray
  122. // traffic polls (see RefreshLocalOnline) — never from remote-node
  123. // snapshots — so a client connected solely to a remote node is not
  124. // reported online on local inbounds.
  125. onlineClients []string
  126. // localActiveInbounds is the set of THIS panel's inbound tags that
  127. // carried traffic within the same grace window. Xray's user>>>email
  128. // stat aggregates across every inbound a client is attached to, so an
  129. // online email alone can't say which inbound it actually used. Pairing
  130. // it with the inbound>>>tag stat lets the per-inbound view drop a
  131. // multi-inbound client from inbounds that saw no traffic this window.
  132. localActiveInbounds []string
  133. // localLastOnline records, per email, the last time this panel's own
  134. // xray reported traffic for it. RefreshLocalOnline rebuilds
  135. // onlineClients from this map each tick, keeping the local online set
  136. // independent of the shared client_traffics.last_online column — that
  137. // column is bumped by remote-node syncs too and would otherwise leak
  138. // remote-only clients into the local set.
  139. localLastOnline map[string]int64
  140. // localInboundLastActive mirrors localLastOnline for inbound tags: the
  141. // last tick this panel's xray reported traffic through each tag.
  142. // Rebuilt into localActiveInbounds under the same grace window so the
  143. // two signals stay aligned — an email within grace always has the
  144. // inbound it used within grace too.
  145. localInboundLastActive map[string]int64
  146. // nodeOnlineTrees holds, per direct remote node (keyed by that node's
  147. // panel-local id), the GUID-keyed online-emails subtree that node
  148. // reported — its own clients under its panelGuid plus every descendant
  149. // under theirs. Keying the stored value by GUID (not node id) lets the
  150. // master attribute a deeply nested client to the node that physically
  151. // hosts it across a chain (#4983); the outer node-id key is only so a
  152. // failed probe can drop that whole branch's contribution. NodeTrafficSyncJob
  153. // populates entries per cron tick and clears them when a probe fails. The
  154. // mutex guards this map, onlineClients, and localLastOnline above so the
  155. // online getters never see a torn read.
  156. nodeOnlineTrees map[int]map[string][]string
  157. onlineMu sync.RWMutex
  158. // onlineAPISupport caches whether the running core implements the
  159. // online-stats RPCs (GetUsersStats). A new process is created on every
  160. // restart/version switch, so the flag resets to Unknown and is re-probed
  161. // lazily by the first caller.
  162. onlineAPISupport atomic.Int32
  163. config *Config
  164. configPath string // if set, use this path instead of GetConfigPath() and remove on Stop
  165. logWriter *LogWriter
  166. exitErr error
  167. startTime time.Time
  168. intentionalStop atomic.Bool
  169. }
  170. // OnlineAPISupport describes whether the running Xray core implements the
  171. // online-stats API (statsUserOnline + GetUsersStats).
  172. type OnlineAPISupport int32
  173. const (
  174. // OnlineAPIUnknown means support has not been probed yet for this process.
  175. OnlineAPIUnknown OnlineAPISupport = iota
  176. // OnlineAPISupported means the core answered the online-stats RPC.
  177. OnlineAPISupported
  178. // OnlineAPIUnsupported means the core returned Unimplemented (older binary).
  179. OnlineAPIUnsupported
  180. )
  181. // OnlineAPISupport returns the cached online-stats capability of this process.
  182. func (p *process) OnlineAPISupport() OnlineAPISupport {
  183. return OnlineAPISupport(p.onlineAPISupport.Load())
  184. }
  185. // SetOnlineAPISupport records the probed online-stats capability of this process.
  186. func (p *process) SetOnlineAPISupport(v OnlineAPISupport) {
  187. p.onlineAPISupport.Store(int32(v))
  188. }
  189. var (
  190. xrayGracefulStopTimeout = 5 * time.Second
  191. xrayForceStopTimeout = 2 * time.Second
  192. // OnCrash is called when xray crashes unexpectedly. Set from web layer.
  193. OnCrash func(err error)
  194. )
  195. // newProcess creates a new internal process struct for Xray.
  196. func newProcess(config *Config) *process {
  197. return &process{
  198. version: "Unknown",
  199. config: config,
  200. logWriter: NewLogWriter(),
  201. startTime: time.Now(),
  202. }
  203. }
  204. // newTestProcess creates a process that writes and runs with a specific config path.
  205. func newTestProcess(config *Config, configPath string) *process {
  206. p := newProcess(config)
  207. p.configPath = configPath
  208. return p
  209. }
  210. // IsRunning returns true if the Xray process is currently running.
  211. func (p *process) IsRunning() bool {
  212. p.mu.RLock()
  213. cmd, done := p.cmd, p.done
  214. p.mu.RUnlock()
  215. if cmd == nil || cmd.Process == nil {
  216. return false
  217. }
  218. // done is closed by the waitForCommand goroutine exactly when cmd.Wait
  219. // returns, i.e. when the process has exited; it is the race-free signal here
  220. // (reading cmd.ProcessState would race with that Wait).
  221. if done != nil {
  222. select {
  223. case <-done:
  224. return false
  225. default:
  226. }
  227. }
  228. return true
  229. }
  230. // GetErr returns the last error encountered by the Xray process.
  231. func (p *process) GetErr() error {
  232. p.mu.RLock()
  233. defer p.mu.RUnlock()
  234. return p.exitErr
  235. }
  236. // GetResult returns the last log line or error from the Xray process.
  237. func (p *process) GetResult() string {
  238. p.mu.RLock()
  239. exitErr := p.exitErr
  240. p.mu.RUnlock()
  241. lastLine := p.logWriter.LastLine()
  242. if len(lastLine) == 0 && exitErr != nil {
  243. return exitErr.Error()
  244. }
  245. return lastLine
  246. }
  247. // GetVersion returns the version string of the Xray process.
  248. func (p *process) GetVersion() string {
  249. return p.version
  250. }
  251. // GetAPIPort returns the API port used by the Xray process.
  252. func (p *Process) GetAPIPort() int {
  253. return p.apiPort
  254. }
  255. // GetConfig returns the configuration used by the Xray process.
  256. func (p *Process) GetConfig() *Config {
  257. return p.config
  258. }
  259. // SetConfig replaces the stored configuration snapshot after the running
  260. // process has been reconciled with it through the gRPC API (hot apply), so
  261. // later change detection compares against what is actually running.
  262. func (p *Process) SetConfig(config *Config) {
  263. p.config = config
  264. }
  265. // GetOnlineClients returns the union of locally-online clients and
  266. // node-online clients from every registered remote panel. Dedupes by
  267. // email so a client connected to both a local and a node-managed inbound
  268. // surfaces once. Cheap allocation — typical online sets are small and
  269. // the union is recomputed on demand.
  270. func (p *Process) GetOnlineClients() []string {
  271. p.onlineMu.RLock()
  272. defer p.onlineMu.RUnlock()
  273. if len(p.nodeOnlineTrees) == 0 {
  274. // Hot path for single-panel deployments: avoid the map+dedupe
  275. // work entirely and return the local slice as-is.
  276. return p.onlineClients
  277. }
  278. seen := make(map[string]struct{}, len(p.onlineClients))
  279. out := make([]string, 0, len(p.onlineClients))
  280. add := func(emails []string) {
  281. for _, email := range emails {
  282. if _, dup := seen[email]; dup {
  283. continue
  284. }
  285. seen[email] = struct{}{}
  286. out = append(out, email)
  287. }
  288. }
  289. add(p.onlineClients)
  290. for _, tree := range p.nodeOnlineTrees {
  291. for _, emails := range tree {
  292. add(emails)
  293. }
  294. }
  295. return out
  296. }
  297. // GetLocalOnlineClients returns a copy of the emails online on THIS panel's own
  298. // xray within the grace window. The service layer keys these under the panel's
  299. // own GUID when assembling the per-node online view.
  300. func (p *Process) GetLocalOnlineClients() []string {
  301. p.onlineMu.RLock()
  302. defer p.onlineMu.RUnlock()
  303. if len(p.onlineClients) == 0 {
  304. return nil
  305. }
  306. out := make([]string, len(p.onlineClients))
  307. copy(out, p.onlineClients)
  308. return out
  309. }
  310. // GetMergedNodeTrees returns the union of every direct node's reported subtree,
  311. // keyed by the panelGuid of the node that physically hosts each client set.
  312. // Because each child already reports its descendants under their own GUIDs,
  313. // merging the direct children yields the whole tree at any depth (#4983), so a
  314. // client three hops down is attributed to its real node, not the intermediate
  315. // one. GUIDs are globally unique, but a set reported under the same GUID by more
  316. // than one path is deduped per key; empty sets are omitted.
  317. func (p *Process) GetMergedNodeTrees() map[string][]string {
  318. p.onlineMu.RLock()
  319. defer p.onlineMu.RUnlock()
  320. if len(p.nodeOnlineTrees) == 0 {
  321. return map[string][]string{}
  322. }
  323. out := make(map[string][]string)
  324. seen := make(map[string]map[string]struct{})
  325. for _, tree := range p.nodeOnlineTrees {
  326. for guid, emails := range tree {
  327. if guid == "" || len(emails) == 0 {
  328. continue
  329. }
  330. dedup := seen[guid]
  331. if dedup == nil {
  332. dedup = make(map[string]struct{}, len(emails))
  333. seen[guid] = dedup
  334. }
  335. for _, email := range emails {
  336. if _, ok := dedup[email]; ok {
  337. continue
  338. }
  339. dedup[email] = struct{}{}
  340. out[guid] = append(out[guid], email)
  341. }
  342. }
  343. }
  344. return out
  345. }
  346. // GetLocalActiveInbounds returns a copy of THIS panel's inbound tags that
  347. // carried traffic within the grace window. Only the local xray reports
  348. // per-inbound activity; remote-node snapshots don't carry it, so the service
  349. // layer keys these under the panel's own GUID and a node missing from the
  350. // active-inbounds map means "don't gate" (fall back to the email-only signal).
  351. func (p *Process) GetLocalActiveInbounds() []string {
  352. p.onlineMu.RLock()
  353. defer p.onlineMu.RUnlock()
  354. if len(p.localActiveInbounds) == 0 {
  355. return nil
  356. }
  357. out := make([]string, len(p.localActiveInbounds))
  358. copy(out, p.localActiveInbounds)
  359. return out
  360. }
  361. // RefreshLocalOnline records that each email in activeEmails and each tag in
  362. // activeInboundTags had local xray traffic at now, then rebuilds onlineClients
  363. // and localActiveInbounds from every entry seen within graceMs, pruning older
  364. // ones. Called by the local XrayTrafficJob after each xray gRPC stats poll.
  365. // Pass nil/empty slices to only prune — NodeTrafficSyncJob does this so a
  366. // stopped local xray's clients and inbounds still age out between local polls.
  367. func (p *Process) RefreshLocalOnline(activeEmails, activeInboundTags []string, now, graceMs int64) {
  368. p.onlineMu.Lock()
  369. defer p.onlineMu.Unlock()
  370. if p.localLastOnline == nil {
  371. p.localLastOnline = make(map[string]int64, len(activeEmails))
  372. }
  373. for _, email := range activeEmails {
  374. p.localLastOnline[email] = now
  375. }
  376. online := make([]string, 0, len(p.localLastOnline))
  377. for email, ts := range p.localLastOnline {
  378. if now-ts < graceMs {
  379. online = append(online, email)
  380. } else {
  381. delete(p.localLastOnline, email)
  382. }
  383. }
  384. p.onlineClients = online
  385. if p.localInboundLastActive == nil {
  386. p.localInboundLastActive = make(map[string]int64, len(activeInboundTags))
  387. }
  388. for _, tag := range activeInboundTags {
  389. p.localInboundLastActive[tag] = now
  390. }
  391. activeInbounds := make([]string, 0, len(p.localInboundLastActive))
  392. for tag, ts := range p.localInboundLastActive {
  393. if now-ts < graceMs {
  394. activeInbounds = append(activeInbounds, tag)
  395. } else {
  396. delete(p.localInboundLastActive, tag)
  397. }
  398. }
  399. p.localActiveInbounds = activeInbounds
  400. }
  401. // SetNodeOnlineTree records the GUID-keyed online subtree one direct remote
  402. // node reported (its own clients under its panelGuid plus every descendant
  403. // under theirs). Replaces any previous entry for that node — NodeTrafficSyncJob
  404. // always sends the full subtree per tick.
  405. func (p *Process) SetNodeOnlineTree(nodeID int, tree map[string][]string) {
  406. p.onlineMu.Lock()
  407. defer p.onlineMu.Unlock()
  408. if p.nodeOnlineTrees == nil {
  409. p.nodeOnlineTrees = map[int]map[string][]string{}
  410. }
  411. p.nodeOnlineTrees[nodeID] = tree
  412. }
  413. // ClearNodeOnlineClients drops a direct node's whole subtree contribution.
  414. // Called when a probe fails so a downed node — and everything behind it — doesn't
  415. // keep its clients listed as "online" until the next successful probe.
  416. func (p *Process) ClearNodeOnlineClients(nodeID int) {
  417. p.onlineMu.Lock()
  418. defer p.onlineMu.Unlock()
  419. delete(p.nodeOnlineTrees, nodeID)
  420. }
  421. // GetUptime returns the uptime of the Xray process in seconds.
  422. func (p *Process) GetUptime() uint64 {
  423. return uint64(time.Since(p.startTime).Seconds())
  424. }
  425. // refreshAPIPort updates the API port from the inbound configs.
  426. func (p *process) refreshAPIPort() {
  427. for _, inbound := range p.config.InboundConfigs {
  428. if inbound.Tag == "api" {
  429. p.apiPort = inbound.Port
  430. break
  431. }
  432. }
  433. }
  434. // refreshVersion updates the version string by running the Xray binary with -version.
  435. func (p *process) refreshVersion() {
  436. cmd := exec.Command(GetBinaryPath(), "-version")
  437. data, err := cmd.Output()
  438. if err != nil {
  439. p.version = "Unknown"
  440. } else {
  441. datas := bytes.Split(data, []byte(" "))
  442. if len(datas) <= 1 {
  443. p.version = "Unknown"
  444. } else {
  445. p.version = string(datas[1])
  446. }
  447. }
  448. }
  449. // Start launches the Xray process with the current configuration.
  450. func (p *process) Start() (err error) {
  451. if p.IsRunning() {
  452. return errors.New("xray is already running")
  453. }
  454. defer func() {
  455. if err != nil {
  456. logger.Error("Failure in running xray-core process: ", err)
  457. p.setExitErr(err)
  458. }
  459. }()
  460. data, err := json.MarshalIndent(p.config, "", " ")
  461. if err != nil {
  462. return common.NewErrorf("Failed to generate XRAY configuration files: %v", err)
  463. }
  464. err = os.MkdirAll(config.GetLogFolder(), 0o770)
  465. if err != nil {
  466. logger.Warningf("Failed to create log folder: %s", err)
  467. }
  468. configPath := GetConfigPath()
  469. if p.configPath != "" {
  470. configPath = p.configPath
  471. }
  472. err = os.WriteFile(configPath, data, 0644)
  473. if err != nil {
  474. return common.NewErrorf("Failed to write configuration file: %v", err)
  475. }
  476. cmd := exec.Command(GetBinaryPath(), "-c", configPath)
  477. cmd.Stdout = p.logWriter
  478. cmd.Stderr = p.logWriter
  479. err = p.startCommand(cmd)
  480. if err != nil {
  481. return err
  482. }
  483. p.refreshVersion()
  484. p.refreshAPIPort()
  485. return nil
  486. }
  487. func (p *process) startCommand(cmd *exec.Cmd) error {
  488. p.mu.Lock()
  489. p.cmd = cmd
  490. p.done = make(chan struct{})
  491. p.exitErr = nil
  492. done := p.done
  493. p.mu.Unlock()
  494. p.intentionalStop.Store(false)
  495. if err := cmd.Start(); err != nil {
  496. close(done)
  497. p.mu.Lock()
  498. p.cmd = nil
  499. p.mu.Unlock()
  500. return err
  501. }
  502. attachChildLifetime(cmd)
  503. go p.waitForCommand(cmd, done)
  504. return nil
  505. }
  506. func (p *process) setExitErr(err error) {
  507. p.mu.Lock()
  508. p.exitErr = err
  509. p.mu.Unlock()
  510. }
  511. func (p *process) waitForCommand(cmd *exec.Cmd, done chan struct{}) {
  512. defer close(done)
  513. err := cmd.Wait()
  514. if err == nil || p.intentionalStop.Load() {
  515. return
  516. }
  517. // On Windows, killing the process results in "exit status 1" which isn't an error for us.
  518. if runtime.GOOS == "windows" {
  519. errStr := strings.ToLower(err.Error())
  520. if strings.Contains(errStr, "exit status 1") {
  521. p.setExitErr(err)
  522. return
  523. }
  524. }
  525. logger.Error("Failure in running xray-core:", err)
  526. p.setExitErr(err)
  527. if OnCrash != nil {
  528. OnCrash(err)
  529. }
  530. }
  531. // Stop terminates the running Xray process.
  532. func (p *process) Stop() error {
  533. if !p.IsRunning() {
  534. return errors.New("xray is not running")
  535. }
  536. p.intentionalStop.Store(true)
  537. // Snapshot cmd once, then run the blocking Signal/Kill/Wait on the local copy
  538. // without holding the lock.
  539. p.mu.RLock()
  540. cmd := p.cmd
  541. p.mu.RUnlock()
  542. if cmd == nil || cmd.Process == nil {
  543. return errors.New("xray is not running")
  544. }
  545. // Remove temporary config file used for test runs so main config is never touched
  546. if p.configPath != "" {
  547. if p.configPath != GetConfigPath() {
  548. // Check if file exists before removing
  549. if _, err := os.Stat(p.configPath); err == nil {
  550. _ = os.Remove(p.configPath)
  551. }
  552. }
  553. }
  554. if runtime.GOOS == "windows" {
  555. if err := cmd.Process.Kill(); err != nil && !errors.Is(err, os.ErrProcessDone) {
  556. return err
  557. }
  558. return p.waitForExit(xrayForceStopTimeout)
  559. }
  560. if err := cmd.Process.Signal(syscall.SIGTERM); err != nil {
  561. if errors.Is(err, os.ErrProcessDone) {
  562. return p.waitForExit(xrayForceStopTimeout)
  563. }
  564. return err
  565. }
  566. if err := p.waitForExit(xrayGracefulStopTimeout); err == nil {
  567. return nil
  568. }
  569. logger.Warning("xray-core did not stop after SIGTERM, killing process")
  570. if err := cmd.Process.Kill(); err != nil && !errors.Is(err, os.ErrProcessDone) {
  571. return err
  572. }
  573. return p.waitForExit(xrayForceStopTimeout)
  574. }
  575. func (p *process) waitForExit(timeout time.Duration) error {
  576. p.mu.RLock()
  577. done := p.done
  578. p.mu.RUnlock()
  579. if done == nil {
  580. return nil
  581. }
  582. timer := time.NewTimer(timeout)
  583. defer timer.Stop()
  584. select {
  585. case <-done:
  586. return nil
  587. case <-timer.C:
  588. return common.NewErrorf("timed out waiting for xray-core process to stop after %s", timeout)
  589. }
  590. }
  591. const (
  592. crashReportPrefix = "core_crash_"
  593. crashReportSuffix = ".log"
  594. maxCrashReports = 10
  595. )
  596. // writeCrashReport persists a captured xray crash chunk to the log folder
  597. // with nanosecond-precision filename so restart-loop bursts don't overwrite
  598. // each other, and prunes old reports to keep the folder bounded.
  599. func writeCrashReport(m []byte) error {
  600. dir := config.GetLogFolder()
  601. if err := os.MkdirAll(dir, 0o770); err != nil {
  602. return err
  603. }
  604. pruneOldCrashReports(dir, maxCrashReports-1)
  605. name := crashReportPrefix + time.Now().Format("20060102_150405_000000000") + crashReportSuffix
  606. return os.WriteFile(filepath.Join(dir, name), m, 0o640)
  607. }
  608. func pruneOldCrashReports(dir string, keep int) {
  609. entries, err := os.ReadDir(dir)
  610. if err != nil {
  611. return
  612. }
  613. var reports []string
  614. for _, e := range entries {
  615. n := e.Name()
  616. if !e.IsDir() && strings.HasPrefix(n, crashReportPrefix) && strings.HasSuffix(n, crashReportSuffix) {
  617. reports = append(reports, n)
  618. }
  619. }
  620. if len(reports) <= keep {
  621. return
  622. }
  623. sort.Strings(reports)
  624. for _, old := range reports[:len(reports)-keep] {
  625. _ = os.Remove(filepath.Join(dir, old))
  626. }
  627. }