GRPCServer.swift 12 KB

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  1. /*
  2. * Copyright 2023, gRPC Authors All rights reserved.
  3. *
  4. * Licensed under the Apache License, Version 2.0 (the "License");
  5. * you may not use this file except in compliance with the License.
  6. * You may obtain a copy of the License at
  7. *
  8. * http://www.apache.org/licenses/LICENSE-2.0
  9. *
  10. * Unless required by applicable law or agreed to in writing, software
  11. * distributed under the License is distributed on an "AS IS" BASIS,
  12. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  13. * See the License for the specific language governing permissions and
  14. * limitations under the License.
  15. */
  16. private import Synchronization
  17. /// A gRPC server.
  18. ///
  19. /// The server accepts connections from clients and listens on each connection for new streams
  20. /// which are initiated by the client. Each stream maps to a single RPC. The server routes accepted
  21. /// streams to a service to handle the RPC or rejects them with an appropriate error if no service
  22. /// can handle the RPC.
  23. ///
  24. /// A ``GRPCServer`` listens with a specific transport implementation (for example, HTTP/2 or in-process),
  25. /// and routes requests from the transport to the service instance. You can also use "interceptors",
  26. /// to implement cross-cutting logic which apply to all accepted RPCs. Example uses of interceptors
  27. /// include request filtering, authentication, and logging. Once requests have been intercepted
  28. /// they are passed to a handler which in turn returns a response to send back to the client.
  29. ///
  30. /// ## Configuring and starting a server
  31. ///
  32. /// The following example demonstrates how to create and run a server.
  33. ///
  34. /// ```swift
  35. /// // Create an transport
  36. /// let transport: any ServerTransport = ...
  37. ///
  38. /// // Create the 'Greeter' and 'Echo' services.
  39. /// let greeter = GreeterService()
  40. /// let echo = EchoService()
  41. ///
  42. /// // Create an interceptor.
  43. /// let statsRecorder = StatsRecordingServerInterceptors()
  44. ///
  45. /// // Run the server.
  46. /// try await withGRPCServer(
  47. /// transport: transport,
  48. /// services: [greeter, echo],
  49. /// interceptors: [statsRecorder]
  50. /// ) { server in
  51. /// // ...
  52. /// // The server begins shutting down when this closure returns
  53. /// // ...
  54. /// }
  55. /// ```
  56. ///
  57. /// ## Creating a client manually
  58. ///
  59. /// If the `with`-style methods for creating a server isn't suitable for your application then you
  60. /// can create and run it manually. This requires you to call the ``serve()`` method in a task
  61. /// which instructs the server to start its transport and listen for new RPCs. A ``RuntimeError`` is
  62. /// thrown if the transport can't be started or encounters some other runtime error.
  63. ///
  64. /// ```swift
  65. /// // Start running the server.
  66. /// try await server.serve()
  67. /// ```
  68. ///
  69. /// The ``serve()`` method won't return until the server has finished handling all requests. You can
  70. /// signal to the server that it should stop accepting new requests by calling ``beginGracefulShutdown()``.
  71. /// This allows the server to drain existing requests gracefully. To stop the server more abruptly
  72. /// you can cancel the task running your server. If your application requires additional resources
  73. /// that need their lifecycles managed you should consider using [Swift Service
  74. /// Lifecycle](https://github.com/swift-server/swift-service-lifecycle).
  75. public final class GRPCServer<Transport: ServerTransport>: Sendable {
  76. typealias Stream = RPCStream<Transport.Inbound, Transport.Outbound>
  77. /// The ``ServerTransport`` implementation that the server uses to listen for new requests.
  78. public let transport: Transport
  79. /// The services registered which the server is serving.
  80. private let router: RPCRouter<Transport>
  81. /// The state of the server.
  82. private let state: Mutex<State>
  83. private enum State: Sendable {
  84. /// The server hasn't been started yet. Can transition to `running` or `stopped`.
  85. case notStarted
  86. /// The server is running and accepting RPCs. Can transition to `stopping`.
  87. case running
  88. /// The server is stopping and no new RPCs will be accepted. Existing RPCs may run to
  89. /// completion. May transition to `stopped`.
  90. case stopping
  91. /// The server has stopped, no RPCs are in flight and no more will be accepted. This state
  92. /// is terminal.
  93. case stopped
  94. mutating func startServing() throws {
  95. switch self {
  96. case .notStarted:
  97. self = .running
  98. case .running:
  99. throw RuntimeError(
  100. code: .serverIsAlreadyRunning,
  101. message: "The server is already running and can only be started once."
  102. )
  103. case .stopping, .stopped:
  104. throw RuntimeError(
  105. code: .serverIsStopped,
  106. message: "The server has stopped and can only be started once."
  107. )
  108. }
  109. }
  110. mutating func beginGracefulShutdown() -> Bool {
  111. switch self {
  112. case .notStarted:
  113. self = .stopped
  114. return false
  115. case .running:
  116. self = .stopping
  117. return true
  118. case .stopping, .stopped:
  119. // Already stopping/stopped, ignore.
  120. return false
  121. }
  122. }
  123. mutating func stopped() {
  124. self = .stopped
  125. }
  126. }
  127. /// Creates a new server with no resources.
  128. ///
  129. /// - Parameters:
  130. /// - transport: The transport the server should listen on.
  131. /// - services: Services offered by the server.
  132. /// - interceptors: A collection of interceptors providing cross-cutting functionality to each
  133. /// accepted RPC. The order in which interceptors are added reflects the order in which they
  134. /// are called. The first interceptor added will be the first interceptor to intercept each
  135. /// request. The last interceptor added will be the final interceptor to intercept each
  136. /// request before calling the appropriate handler.
  137. public convenience init(
  138. transport: Transport,
  139. services: [any RegistrableRPCService],
  140. interceptors: [any ServerInterceptor] = []
  141. ) {
  142. self.init(
  143. transport: transport,
  144. services: services,
  145. interceptorPipeline: interceptors.map { .apply($0, to: .all) }
  146. )
  147. }
  148. /// Creates a new server with no resources.
  149. ///
  150. /// - Parameters:
  151. /// - transport: The transport the server should listen on.
  152. /// - services: Services offered by the server.
  153. /// - interceptorPipeline: A collection of interceptors providing cross-cutting functionality to each
  154. /// accepted RPC. The order in which interceptors are added reflects the order in which they
  155. /// are called. The first interceptor added will be the first interceptor to intercept each
  156. /// request. The last interceptor added will be the final interceptor to intercept each
  157. /// request before calling the appropriate handler.
  158. public convenience init(
  159. transport: Transport,
  160. services: [any RegistrableRPCService],
  161. interceptorPipeline: [ConditionalInterceptor<any ServerInterceptor>]
  162. ) {
  163. var router = RPCRouter<Transport>()
  164. for service in services {
  165. service.registerMethods(with: &router)
  166. }
  167. router.registerInterceptors(pipeline: interceptorPipeline)
  168. self.init(transport: transport, router: router)
  169. }
  170. /// Creates a new server with no resources.
  171. ///
  172. /// - Parameters:
  173. /// - transport: The transport the server should listen on.
  174. /// - router: A ``RPCRouter`` used by the server to route accepted streams to method handlers.
  175. public init(transport: Transport, router: RPCRouter<Transport>) {
  176. self.state = Mutex(.notStarted)
  177. self.transport = transport
  178. self.router = router
  179. }
  180. /// Starts the server and runs until the registered transport has closed.
  181. ///
  182. /// No RPCs are processed until the configured transport is listening. If the transport fails to start
  183. /// listening, or if it encounters a runtime error, then ``RuntimeError`` is thrown.
  184. ///
  185. /// This function returns when the configured transport has stopped listening and all requests have been
  186. /// handled. You can signal to the transport that it should stop listening by calling
  187. /// ``beginGracefulShutdown()``. The server will continue to process existing requests.
  188. ///
  189. /// To stop the server more abruptly you can cancel the task that this function is running in.
  190. ///
  191. /// - Note: You can only call this function once, repeated calls will result in a
  192. /// ``RuntimeError`` being thrown.
  193. public func serve() async throws {
  194. try self.state.withLock { try $0.startServing() }
  195. // When we exit this function the server must have stopped.
  196. defer {
  197. self.state.withLock { $0.stopped() }
  198. }
  199. do {
  200. try await transport.listen { stream, context in
  201. await self.router.handle(stream: stream, context: context)
  202. }
  203. } catch {
  204. throw RuntimeError(
  205. code: .transportError,
  206. message: "Server transport threw an error.",
  207. cause: error
  208. )
  209. }
  210. }
  211. /// Signal to the server that it should stop listening for new requests.
  212. ///
  213. /// By calling this function you indicate to clients that they mustn't start new requests
  214. /// against this server. Once the server has processed all requests the ``serve()`` method returns.
  215. ///
  216. /// Calling this on a server which is already stopping or has stopped has no effect.
  217. public func beginGracefulShutdown() {
  218. let wasRunning = self.state.withLock { $0.beginGracefulShutdown() }
  219. if wasRunning {
  220. self.transport.beginGracefulShutdown()
  221. }
  222. }
  223. }
  224. /// Creates and runs a gRPC server.
  225. ///
  226. /// - Parameters:
  227. /// - transport: The transport the server should listen on.
  228. /// - services: Services offered by the server.
  229. /// - interceptors: A collection of interceptors providing cross-cutting functionality to each
  230. /// accepted RPC. The order in which interceptors are added reflects the order in which they
  231. /// are called. The first interceptor added will be the first interceptor to intercept each
  232. /// request. The last interceptor added will be the final interceptor to intercept each
  233. /// request before calling the appropriate handler.
  234. /// - isolation: A reference to the actor to which the enclosing code is isolated, or nil if the
  235. /// code is nonisolated.
  236. /// - handleServer: A closure which is called with the server. When the closure returns, the
  237. /// server is shutdown gracefully.
  238. /// - Returns: The result of the `handleServer` closure.
  239. public func withGRPCServer<Transport: ServerTransport, Result: Sendable>(
  240. transport: Transport,
  241. services: [any RegistrableRPCService],
  242. interceptors: [any ServerInterceptor] = [],
  243. isolation: isolated (any Actor)? = #isolation,
  244. handleServer: (GRPCServer<Transport>) async throws -> Result
  245. ) async throws -> Result {
  246. try await withGRPCServer(
  247. transport: transport,
  248. services: services,
  249. interceptorPipeline: interceptors.map { .apply($0, to: .all) },
  250. isolation: isolation,
  251. handleServer: handleServer
  252. )
  253. }
  254. /// Creates and runs a gRPC server.
  255. ///
  256. /// - Parameters:
  257. /// - transport: The transport the server should listen on.
  258. /// - services: Services offered by the server.
  259. /// - interceptorPipeline: A collection of interceptors providing cross-cutting functionality to each
  260. /// accepted RPC. The order in which interceptors are added reflects the order in which they
  261. /// are called. The first interceptor added will be the first interceptor to intercept each
  262. /// request. The last interceptor added will be the final interceptor to intercept each
  263. /// request before calling the appropriate handler.
  264. /// - isolation: A reference to the actor to which the enclosing code is isolated, or nil if the
  265. /// code is nonisolated.
  266. /// - handleServer: A closure which is called with the server. When the closure returns, the
  267. /// server is shutdown gracefully.
  268. /// - Returns: The result of the `handleServer` closure.
  269. public func withGRPCServer<Transport: ServerTransport, Result: Sendable>(
  270. transport: Transport,
  271. services: [any RegistrableRPCService],
  272. interceptorPipeline: [ConditionalInterceptor<any ServerInterceptor>],
  273. isolation: isolated (any Actor)? = #isolation,
  274. handleServer: (GRPCServer<Transport>) async throws -> Result
  275. ) async throws -> Result {
  276. return try await withThrowingDiscardingTaskGroup { group in
  277. let server = GRPCServer(
  278. transport: transport,
  279. services: services,
  280. interceptorPipeline: interceptorPipeline
  281. )
  282. group.addTask {
  283. try await server.serve()
  284. }
  285. let result = try await handleServer(server)
  286. server.beginGracefulShutdown()
  287. return result
  288. }
  289. }