router.go 16 KB

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  1. package route
  2. import (
  3. "context"
  4. "net/netip"
  5. "net/url"
  6. "os"
  7. "runtime"
  8. "strings"
  9. "time"
  10. "github.com/sagernet/sing-box/adapter"
  11. "github.com/sagernet/sing-box/common/dialer"
  12. "github.com/sagernet/sing-box/common/geoip"
  13. "github.com/sagernet/sing-box/common/geosite"
  14. "github.com/sagernet/sing-box/common/process"
  15. "github.com/sagernet/sing-box/common/taskmonitor"
  16. C "github.com/sagernet/sing-box/constant"
  17. "github.com/sagernet/sing-box/experimental/libbox/platform"
  18. "github.com/sagernet/sing-box/log"
  19. "github.com/sagernet/sing-box/option"
  20. R "github.com/sagernet/sing-box/route/rule"
  21. "github.com/sagernet/sing-box/transport/fakeip"
  22. "github.com/sagernet/sing-dns"
  23. "github.com/sagernet/sing/common"
  24. E "github.com/sagernet/sing/common/exceptions"
  25. F "github.com/sagernet/sing/common/format"
  26. M "github.com/sagernet/sing/common/metadata"
  27. N "github.com/sagernet/sing/common/network"
  28. "github.com/sagernet/sing/common/task"
  29. "github.com/sagernet/sing/service"
  30. "github.com/sagernet/sing/service/pause"
  31. )
  32. var _ adapter.Router = (*Router)(nil)
  33. type Router struct {
  34. ctx context.Context
  35. logger log.ContextLogger
  36. dnsLogger log.ContextLogger
  37. inboundManager adapter.InboundManager
  38. outboundManager adapter.OutboundManager
  39. networkManager adapter.NetworkManager
  40. rules []adapter.Rule
  41. needGeoIPDatabase bool
  42. needGeositeDatabase bool
  43. geoIPOptions option.GeoIPOptions
  44. geositeOptions option.GeositeOptions
  45. geoIPReader *geoip.Reader
  46. geositeReader *geosite.Reader
  47. geositeCache map[string]adapter.Rule
  48. needFindProcess bool
  49. dnsClient *dns.Client
  50. defaultDomainStrategy dns.DomainStrategy
  51. dnsRules []adapter.DNSRule
  52. ruleSets []adapter.RuleSet
  53. ruleSetMap map[string]adapter.RuleSet
  54. defaultTransport dns.Transport
  55. transports []dns.Transport
  56. transportMap map[string]dns.Transport
  57. transportDomainStrategy map[dns.Transport]dns.DomainStrategy
  58. dnsReverseMapping *DNSReverseMapping
  59. fakeIPStore adapter.FakeIPStore
  60. processSearcher process.Searcher
  61. pauseManager pause.Manager
  62. tracker adapter.ConnectionTracker
  63. platformInterface platform.Interface
  64. needWIFIState bool
  65. started bool
  66. }
  67. func NewRouter(ctx context.Context, logFactory log.Factory, options option.RouteOptions, dnsOptions option.DNSOptions) (*Router, error) {
  68. router := &Router{
  69. ctx: ctx,
  70. logger: logFactory.NewLogger("router"),
  71. dnsLogger: logFactory.NewLogger("dns"),
  72. inboundManager: service.FromContext[adapter.InboundManager](ctx),
  73. outboundManager: service.FromContext[adapter.OutboundManager](ctx),
  74. networkManager: service.FromContext[adapter.NetworkManager](ctx),
  75. rules: make([]adapter.Rule, 0, len(options.Rules)),
  76. dnsRules: make([]adapter.DNSRule, 0, len(dnsOptions.Rules)),
  77. ruleSetMap: make(map[string]adapter.RuleSet),
  78. needGeoIPDatabase: hasRule(options.Rules, isGeoIPRule) || hasDNSRule(dnsOptions.Rules, isGeoIPDNSRule),
  79. needGeositeDatabase: hasRule(options.Rules, isGeositeRule) || hasDNSRule(dnsOptions.Rules, isGeositeDNSRule),
  80. geoIPOptions: common.PtrValueOrDefault(options.GeoIP),
  81. geositeOptions: common.PtrValueOrDefault(options.Geosite),
  82. geositeCache: make(map[string]adapter.Rule),
  83. needFindProcess: hasRule(options.Rules, isProcessRule) || hasDNSRule(dnsOptions.Rules, isProcessDNSRule) || options.FindProcess,
  84. defaultDomainStrategy: dns.DomainStrategy(dnsOptions.Strategy),
  85. pauseManager: service.FromContext[pause.Manager](ctx),
  86. platformInterface: service.FromContext[platform.Interface](ctx),
  87. needWIFIState: hasRule(options.Rules, isWIFIRule) || hasDNSRule(dnsOptions.Rules, isWIFIDNSRule),
  88. }
  89. service.MustRegister[adapter.Router](ctx, router)
  90. router.dnsClient = dns.NewClient(dns.ClientOptions{
  91. DisableCache: dnsOptions.DNSClientOptions.DisableCache,
  92. DisableExpire: dnsOptions.DNSClientOptions.DisableExpire,
  93. IndependentCache: dnsOptions.DNSClientOptions.IndependentCache,
  94. CacheCapacity: dnsOptions.DNSClientOptions.CacheCapacity,
  95. RDRC: func() dns.RDRCStore {
  96. cacheFile := service.FromContext[adapter.CacheFile](ctx)
  97. if cacheFile == nil {
  98. return nil
  99. }
  100. if !cacheFile.StoreRDRC() {
  101. return nil
  102. }
  103. return cacheFile
  104. },
  105. Logger: router.dnsLogger,
  106. })
  107. for i, ruleOptions := range options.Rules {
  108. routeRule, err := R.NewRule(ctx, router.logger, ruleOptions, true)
  109. if err != nil {
  110. return nil, E.Cause(err, "parse rule[", i, "]")
  111. }
  112. router.rules = append(router.rules, routeRule)
  113. }
  114. for i, dnsRuleOptions := range dnsOptions.Rules {
  115. dnsRule, err := R.NewDNSRule(ctx, router.logger, dnsRuleOptions, true)
  116. if err != nil {
  117. return nil, E.Cause(err, "parse dns rule[", i, "]")
  118. }
  119. router.dnsRules = append(router.dnsRules, dnsRule)
  120. }
  121. for i, ruleSetOptions := range options.RuleSet {
  122. if _, exists := router.ruleSetMap[ruleSetOptions.Tag]; exists {
  123. return nil, E.New("duplicate rule-set tag: ", ruleSetOptions.Tag)
  124. }
  125. ruleSet, err := R.NewRuleSet(ctx, router.logger, ruleSetOptions)
  126. if err != nil {
  127. return nil, E.Cause(err, "parse rule-set[", i, "]")
  128. }
  129. router.ruleSets = append(router.ruleSets, ruleSet)
  130. router.ruleSetMap[ruleSetOptions.Tag] = ruleSet
  131. }
  132. transports := make([]dns.Transport, len(dnsOptions.Servers))
  133. dummyTransportMap := make(map[string]dns.Transport)
  134. transportMap := make(map[string]dns.Transport)
  135. transportTags := make([]string, len(dnsOptions.Servers))
  136. transportTagMap := make(map[string]bool)
  137. transportDomainStrategy := make(map[dns.Transport]dns.DomainStrategy)
  138. for i, server := range dnsOptions.Servers {
  139. var tag string
  140. if server.Tag != "" {
  141. tag = server.Tag
  142. } else {
  143. tag = F.ToString(i)
  144. }
  145. if transportTagMap[tag] {
  146. return nil, E.New("duplicate dns server tag: ", tag)
  147. }
  148. transportTags[i] = tag
  149. transportTagMap[tag] = true
  150. }
  151. outboundManager := service.FromContext[adapter.OutboundManager](ctx)
  152. for {
  153. lastLen := len(dummyTransportMap)
  154. for i, server := range dnsOptions.Servers {
  155. tag := transportTags[i]
  156. if _, exists := dummyTransportMap[tag]; exists {
  157. continue
  158. }
  159. var detour N.Dialer
  160. if server.Detour == "" {
  161. detour = dialer.NewDefaultOutbound(outboundManager)
  162. } else {
  163. detour = dialer.NewDetour(outboundManager, server.Detour)
  164. }
  165. var serverProtocol string
  166. switch server.Address {
  167. case "local":
  168. serverProtocol = "local"
  169. default:
  170. serverURL, _ := url.Parse(server.Address)
  171. var serverAddress string
  172. if serverURL != nil {
  173. if serverURL.Scheme == "" {
  174. serverProtocol = "udp"
  175. } else {
  176. serverProtocol = serverURL.Scheme
  177. }
  178. serverAddress = serverURL.Hostname()
  179. }
  180. if serverAddress == "" {
  181. serverAddress = server.Address
  182. }
  183. notIpAddress := !M.ParseSocksaddr(serverAddress).Addr.IsValid()
  184. if server.AddressResolver != "" {
  185. if !transportTagMap[server.AddressResolver] {
  186. return nil, E.New("parse dns server[", tag, "]: address resolver not found: ", server.AddressResolver)
  187. }
  188. if upstream, exists := dummyTransportMap[server.AddressResolver]; exists {
  189. detour = dns.NewDialerWrapper(detour, router.dnsClient, upstream, dns.DomainStrategy(server.AddressStrategy), time.Duration(server.AddressFallbackDelay))
  190. } else {
  191. continue
  192. }
  193. } else if notIpAddress && strings.Contains(server.Address, ".") {
  194. return nil, E.New("parse dns server[", tag, "]: missing address_resolver")
  195. }
  196. }
  197. var clientSubnet netip.Prefix
  198. if server.ClientSubnet != nil {
  199. clientSubnet = netip.Prefix(common.PtrValueOrDefault(server.ClientSubnet))
  200. } else if dnsOptions.ClientSubnet != nil {
  201. clientSubnet = netip.Prefix(common.PtrValueOrDefault(dnsOptions.ClientSubnet))
  202. }
  203. if serverProtocol == "" {
  204. serverProtocol = "transport"
  205. }
  206. transport, err := dns.CreateTransport(dns.TransportOptions{
  207. Context: ctx,
  208. Logger: logFactory.NewLogger(F.ToString("dns/", serverProtocol, "[", tag, "]")),
  209. Name: tag,
  210. Dialer: detour,
  211. Address: server.Address,
  212. ClientSubnet: clientSubnet,
  213. })
  214. if err != nil {
  215. return nil, E.Cause(err, "parse dns server[", tag, "]")
  216. }
  217. transports[i] = transport
  218. dummyTransportMap[tag] = transport
  219. if server.Tag != "" {
  220. transportMap[server.Tag] = transport
  221. }
  222. strategy := dns.DomainStrategy(server.Strategy)
  223. if strategy != dns.DomainStrategyAsIS {
  224. transportDomainStrategy[transport] = strategy
  225. }
  226. }
  227. if len(transports) == len(dummyTransportMap) {
  228. break
  229. }
  230. if lastLen != len(dummyTransportMap) {
  231. continue
  232. }
  233. unresolvedTags := common.MapIndexed(common.FilterIndexed(dnsOptions.Servers, func(index int, server option.DNSServerOptions) bool {
  234. _, exists := dummyTransportMap[transportTags[index]]
  235. return !exists
  236. }), func(index int, server option.DNSServerOptions) string {
  237. return transportTags[index]
  238. })
  239. if len(unresolvedTags) == 0 {
  240. panic(F.ToString("unexpected unresolved dns servers: ", len(transports), " ", len(dummyTransportMap), " ", len(transportMap)))
  241. }
  242. return nil, E.New("found circular reference in dns servers: ", strings.Join(unresolvedTags, " "))
  243. }
  244. var defaultTransport dns.Transport
  245. if dnsOptions.Final != "" {
  246. defaultTransport = dummyTransportMap[dnsOptions.Final]
  247. if defaultTransport == nil {
  248. return nil, E.New("default dns server not found: ", dnsOptions.Final)
  249. }
  250. }
  251. if defaultTransport == nil {
  252. if len(transports) == 0 {
  253. transports = append(transports, common.Must1(dns.CreateTransport(dns.TransportOptions{
  254. Context: ctx,
  255. Name: "local",
  256. Address: "local",
  257. Dialer: common.Must1(dialer.NewDefault(router.networkManager, option.DialerOptions{})),
  258. })))
  259. }
  260. defaultTransport = transports[0]
  261. }
  262. if _, isFakeIP := defaultTransport.(adapter.FakeIPTransport); isFakeIP {
  263. return nil, E.New("default DNS server cannot be fakeip")
  264. }
  265. router.defaultTransport = defaultTransport
  266. router.transports = transports
  267. router.transportMap = transportMap
  268. router.transportDomainStrategy = transportDomainStrategy
  269. if dnsOptions.ReverseMapping {
  270. router.dnsReverseMapping = NewDNSReverseMapping()
  271. }
  272. if fakeIPOptions := dnsOptions.FakeIP; fakeIPOptions != nil && dnsOptions.FakeIP.Enabled {
  273. var inet4Range netip.Prefix
  274. var inet6Range netip.Prefix
  275. if fakeIPOptions.Inet4Range != nil {
  276. inet4Range = *fakeIPOptions.Inet4Range
  277. }
  278. if fakeIPOptions.Inet6Range != nil {
  279. inet6Range = *fakeIPOptions.Inet6Range
  280. }
  281. router.fakeIPStore = fakeip.NewStore(ctx, router.logger, inet4Range, inet6Range)
  282. }
  283. return router, nil
  284. }
  285. func (r *Router) Start(stage adapter.StartStage) error {
  286. monitor := taskmonitor.New(r.logger, C.StartTimeout)
  287. switch stage {
  288. case adapter.StartStateInitialize:
  289. if r.fakeIPStore != nil {
  290. monitor.Start("initialize fakeip store")
  291. err := r.fakeIPStore.Start()
  292. monitor.Finish()
  293. if err != nil {
  294. return err
  295. }
  296. }
  297. case adapter.StartStateStart:
  298. if r.needGeoIPDatabase {
  299. monitor.Start("initialize geoip database")
  300. err := r.prepareGeoIPDatabase()
  301. monitor.Finish()
  302. if err != nil {
  303. return err
  304. }
  305. }
  306. if r.needGeositeDatabase {
  307. monitor.Start("initialize geosite database")
  308. err := r.prepareGeositeDatabase()
  309. monitor.Finish()
  310. if err != nil {
  311. return err
  312. }
  313. }
  314. if r.needGeositeDatabase {
  315. for _, rule := range r.rules {
  316. err := rule.UpdateGeosite()
  317. if err != nil {
  318. r.logger.Error("failed to initialize geosite: ", err)
  319. }
  320. }
  321. for _, rule := range r.dnsRules {
  322. err := rule.UpdateGeosite()
  323. if err != nil {
  324. r.logger.Error("failed to initialize geosite: ", err)
  325. }
  326. }
  327. err := common.Close(r.geositeReader)
  328. if err != nil {
  329. return err
  330. }
  331. r.geositeCache = nil
  332. r.geositeReader = nil
  333. }
  334. monitor.Start("initialize DNS client")
  335. r.dnsClient.Start()
  336. monitor.Finish()
  337. for i, rule := range r.dnsRules {
  338. monitor.Start("initialize DNS rule[", i, "]")
  339. err := rule.Start()
  340. monitor.Finish()
  341. if err != nil {
  342. return E.Cause(err, "initialize DNS rule[", i, "]")
  343. }
  344. }
  345. for i, transport := range r.transports {
  346. monitor.Start("initialize DNS transport[", i, "]")
  347. err := transport.Start()
  348. monitor.Finish()
  349. if err != nil {
  350. return E.Cause(err, "initialize DNS server[", i, "]")
  351. }
  352. }
  353. case adapter.StartStatePostStart:
  354. var cacheContext *adapter.HTTPStartContext
  355. if len(r.ruleSets) > 0 {
  356. monitor.Start("initialize rule-set")
  357. cacheContext = adapter.NewHTTPStartContext()
  358. var ruleSetStartGroup task.Group
  359. for i, ruleSet := range r.ruleSets {
  360. ruleSetInPlace := ruleSet
  361. ruleSetStartGroup.Append0(func(ctx context.Context) error {
  362. err := ruleSetInPlace.StartContext(ctx, cacheContext)
  363. if err != nil {
  364. return E.Cause(err, "initialize rule-set[", i, "]")
  365. }
  366. return nil
  367. })
  368. }
  369. ruleSetStartGroup.Concurrency(5)
  370. ruleSetStartGroup.FastFail()
  371. err := ruleSetStartGroup.Run(r.ctx)
  372. monitor.Finish()
  373. if err != nil {
  374. return err
  375. }
  376. }
  377. if cacheContext != nil {
  378. cacheContext.Close()
  379. }
  380. needFindProcess := r.needFindProcess
  381. for _, ruleSet := range r.ruleSets {
  382. metadata := ruleSet.Metadata()
  383. if metadata.ContainsProcessRule {
  384. needFindProcess = true
  385. }
  386. if metadata.ContainsWIFIRule {
  387. r.needWIFIState = true
  388. }
  389. }
  390. if needFindProcess {
  391. if r.platformInterface != nil {
  392. r.processSearcher = r.platformInterface
  393. } else {
  394. monitor.Start("initialize process searcher")
  395. searcher, err := process.NewSearcher(process.Config{
  396. Logger: r.logger,
  397. PackageManager: r.networkManager.PackageManager(),
  398. })
  399. monitor.Finish()
  400. if err != nil {
  401. if err != os.ErrInvalid {
  402. r.logger.Warn(E.Cause(err, "create process searcher"))
  403. }
  404. } else {
  405. r.processSearcher = searcher
  406. }
  407. }
  408. }
  409. for i, rule := range r.rules {
  410. monitor.Start("initialize rule[", i, "]")
  411. err := rule.Start()
  412. monitor.Finish()
  413. if err != nil {
  414. return E.Cause(err, "initialize rule[", i, "]")
  415. }
  416. }
  417. for _, ruleSet := range r.ruleSets {
  418. monitor.Start("post start rule_set[", ruleSet.Name(), "]")
  419. err := ruleSet.PostStart()
  420. monitor.Finish()
  421. if err != nil {
  422. return E.Cause(err, "post start rule_set[", ruleSet.Name(), "]")
  423. }
  424. }
  425. r.started = true
  426. return nil
  427. case adapter.StartStateStarted:
  428. for _, ruleSet := range r.ruleSetMap {
  429. ruleSet.Cleanup()
  430. }
  431. runtime.GC()
  432. }
  433. return nil
  434. }
  435. func (r *Router) Close() error {
  436. monitor := taskmonitor.New(r.logger, C.StopTimeout)
  437. var err error
  438. for i, rule := range r.rules {
  439. monitor.Start("close rule[", i, "]")
  440. err = E.Append(err, rule.Close(), func(err error) error {
  441. return E.Cause(err, "close rule[", i, "]")
  442. })
  443. monitor.Finish()
  444. }
  445. for i, rule := range r.dnsRules {
  446. monitor.Start("close dns rule[", i, "]")
  447. err = E.Append(err, rule.Close(), func(err error) error {
  448. return E.Cause(err, "close dns rule[", i, "]")
  449. })
  450. monitor.Finish()
  451. }
  452. for i, transport := range r.transports {
  453. monitor.Start("close dns transport[", i, "]")
  454. err = E.Append(err, transport.Close(), func(err error) error {
  455. return E.Cause(err, "close dns transport[", i, "]")
  456. })
  457. monitor.Finish()
  458. }
  459. if r.geoIPReader != nil {
  460. monitor.Start("close geoip reader")
  461. err = E.Append(err, r.geoIPReader.Close(), func(err error) error {
  462. return E.Cause(err, "close geoip reader")
  463. })
  464. monitor.Finish()
  465. }
  466. if r.fakeIPStore != nil {
  467. monitor.Start("close fakeip store")
  468. err = E.Append(err, r.fakeIPStore.Close(), func(err error) error {
  469. return E.Cause(err, "close fakeip store")
  470. })
  471. monitor.Finish()
  472. }
  473. return err
  474. }
  475. func (r *Router) FakeIPStore() adapter.FakeIPStore {
  476. return r.fakeIPStore
  477. }
  478. func (r *Router) RuleSet(tag string) (adapter.RuleSet, bool) {
  479. ruleSet, loaded := r.ruleSetMap[tag]
  480. return ruleSet, loaded
  481. }
  482. func (r *Router) NeedWIFIState() bool {
  483. return r.needWIFIState
  484. }
  485. func (r *Router) Rules() []adapter.Rule {
  486. return r.rules
  487. }
  488. func (r *Router) SetTracker(tracker adapter.ConnectionTracker) {
  489. r.tracker = tracker
  490. }
  491. func (r *Router) ResetNetwork() {
  492. r.networkManager.ResetNetwork()
  493. for _, transport := range r.transports {
  494. transport.Reset()
  495. }
  496. }