BidirectionalStreamingServerHandler.swift 12 KB

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  1. /*
  2. * Copyright 2021, 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. import NIOCore
  17. import NIOHPACK
  18. public final class BidirectionalStreamingServerHandler<
  19. Serializer: MessageSerializer,
  20. Deserializer: MessageDeserializer
  21. >: GRPCServerHandlerProtocol {
  22. public typealias Request = Deserializer.Output
  23. public typealias Response = Serializer.Input
  24. /// A response serializer.
  25. @usableFromInline
  26. internal let serializer: Serializer
  27. /// A request deserializer.
  28. @usableFromInline
  29. internal let deserializer: Deserializer
  30. /// A pipeline of user provided interceptors.
  31. @usableFromInline
  32. internal var interceptors: ServerInterceptorPipeline<Request, Response>!
  33. /// Stream events which have arrived before the stream observer future has been resolved.
  34. @usableFromInline
  35. internal var requestBuffer: CircularBuffer<StreamEvent<Request>> = CircularBuffer()
  36. /// The context required in order create the function.
  37. @usableFromInline
  38. internal let context: CallHandlerContext
  39. /// A reference to a `UserInfo`.
  40. @usableFromInline
  41. internal let userInfoRef: Ref<UserInfo>
  42. /// The user provided function to execute.
  43. @usableFromInline
  44. internal let observerFactory: (_StreamingResponseCallContext<Request, Response>)
  45. -> EventLoopFuture<(StreamEvent<Request>) -> Void>
  46. /// The state of the handler.
  47. @usableFromInline
  48. internal var state: State = .idle
  49. @usableFromInline
  50. internal enum State {
  51. // No headers have been received.
  52. case idle
  53. // Headers have been received, a context has been created and the user code has been called to
  54. // make a stream observer with. The observer is yet to see any messages.
  55. case creatingObserver(_StreamingResponseCallContext<Request, Response>)
  56. // The observer future has resolved and the observer may have seen messages.
  57. case observing((StreamEvent<Request>) -> Void, _StreamingResponseCallContext<Request, Response>)
  58. // The observer has completed by completing the status promise.
  59. case completed
  60. }
  61. @inlinable
  62. public init(
  63. context: CallHandlerContext,
  64. requestDeserializer: Deserializer,
  65. responseSerializer: Serializer,
  66. interceptors: [ServerInterceptor<Request, Response>],
  67. observerFactory: @escaping (StreamingResponseCallContext<Response>)
  68. -> EventLoopFuture<(StreamEvent<Request>) -> Void>
  69. ) {
  70. self.serializer = responseSerializer
  71. self.deserializer = requestDeserializer
  72. self.context = context
  73. self.observerFactory = observerFactory
  74. let userInfoRef = Ref(UserInfo())
  75. self.userInfoRef = userInfoRef
  76. self.interceptors = ServerInterceptorPipeline(
  77. logger: context.logger,
  78. eventLoop: context.eventLoop,
  79. path: context.path,
  80. callType: .bidirectionalStreaming,
  81. remoteAddress: context.remoteAddress,
  82. userInfoRef: userInfoRef,
  83. closeFuture: context.closeFuture,
  84. interceptors: interceptors,
  85. onRequestPart: self.receiveInterceptedPart(_:),
  86. onResponsePart: self.sendInterceptedPart(_:promise:)
  87. )
  88. }
  89. // MARK: - Public API: gRPC to Handler
  90. @inlinable
  91. public func receiveMetadata(_ headers: HPACKHeaders) {
  92. self.interceptors.receive(.metadata(headers))
  93. }
  94. @inlinable
  95. public func receiveMessage(_ bytes: ByteBuffer) {
  96. do {
  97. let message = try self.deserializer.deserialize(byteBuffer: bytes)
  98. self.interceptors.receive(.message(message))
  99. } catch {
  100. self.handleError(error)
  101. }
  102. }
  103. @inlinable
  104. public func receiveEnd() {
  105. self.interceptors.receive(.end)
  106. }
  107. @inlinable
  108. public func receiveError(_ error: Error) {
  109. self.handleError(error)
  110. self.finish()
  111. }
  112. @inlinable
  113. public func finish() {
  114. switch self.state {
  115. case .idle:
  116. self.interceptors = nil
  117. self.state = .completed
  118. case let .creatingObserver(context),
  119. let .observing(_, context):
  120. context.statusPromise.fail(GRPCStatus(code: .unavailable, message: nil))
  121. self.context.eventLoop.execute {
  122. self.interceptors = nil
  123. }
  124. case .completed:
  125. self.interceptors = nil
  126. }
  127. }
  128. // MARK: - Interceptors to User Function
  129. @inlinable
  130. internal func receiveInterceptedPart(_ part: GRPCServerRequestPart<Request>) {
  131. switch part {
  132. case let .metadata(headers):
  133. self.receiveInterceptedMetadata(headers)
  134. case let .message(message):
  135. self.receiveInterceptedMessage(message)
  136. case .end:
  137. self.receiveInterceptedEnd()
  138. }
  139. }
  140. @inlinable
  141. internal func receiveInterceptedMetadata(_ headers: HPACKHeaders) {
  142. switch self.state {
  143. case .idle:
  144. // Make a context to invoke the observer block factory with.
  145. let context = _StreamingResponseCallContext<Request, Response>(
  146. eventLoop: self.context.eventLoop,
  147. headers: headers,
  148. logger: self.context.logger,
  149. userInfoRef: self.userInfoRef,
  150. compressionIsEnabled: self.context.encoding.isEnabled,
  151. closeFuture: self.context.closeFuture,
  152. sendResponse: self.interceptResponse(_:metadata:promise:)
  153. )
  154. // Move to the next state.
  155. self.state = .creatingObserver(context)
  156. // Send response headers back via the interceptors.
  157. self.interceptors.send(.metadata([:]), promise: nil)
  158. // Register callbacks on the status future.
  159. context.statusPromise.futureResult.whenComplete(self.userFunctionStatusResolved(_:))
  160. // Make an observer block and register a completion block.
  161. self.observerFactory(context).whenComplete(self.userFunctionResolvedWithResult(_:))
  162. case .creatingObserver, .observing:
  163. self.handleError(GRPCError.ProtocolViolation("Multiple header blocks received on RPC"))
  164. case .completed:
  165. // We may receive headers from the interceptor pipeline if we have already finished (i.e. due
  166. // to an error or otherwise) and an interceptor doing some async work later emitting headers.
  167. // Dropping them is fine.
  168. ()
  169. }
  170. }
  171. @inlinable
  172. internal func receiveInterceptedMessage(_ request: Request) {
  173. switch self.state {
  174. case .idle:
  175. self.handleError(GRPCError.ProtocolViolation("Message received before headers"))
  176. case .creatingObserver:
  177. self.requestBuffer.append(.message(request))
  178. case let .observing(observer, _):
  179. observer(.message(request))
  180. case .completed:
  181. // We received a message but we're already done: this may happen if we terminate the RPC
  182. // due to a channel error, for example.
  183. ()
  184. }
  185. }
  186. @inlinable
  187. internal func receiveInterceptedEnd() {
  188. switch self.state {
  189. case .idle:
  190. self.handleError(GRPCError.ProtocolViolation("End of stream received before headers"))
  191. case .creatingObserver:
  192. self.requestBuffer.append(.end)
  193. case let .observing(observer, _):
  194. observer(.end)
  195. case .completed:
  196. // We received a message but we're already done: this may happen if we terminate the RPC
  197. // due to a channel error, for example.
  198. ()
  199. }
  200. }
  201. // MARK: - User Function To Interceptors
  202. @inlinable
  203. internal func userFunctionResolvedWithResult(
  204. _ result: Result<(StreamEvent<Request>) -> Void, Error>
  205. ) {
  206. switch self.state {
  207. case .idle, .observing:
  208. // The observer block can't resolve if it hasn't been created ('idle') and it can't be
  209. // resolved more than once ('observing').
  210. preconditionFailure()
  211. case let .creatingObserver(context):
  212. switch result {
  213. case let .success(observer):
  214. // We have an observer block now; unbuffer any requests.
  215. self.state = .observing(observer, context)
  216. while let request = self.requestBuffer.popFirst() {
  217. observer(request)
  218. }
  219. case let .failure(error):
  220. self.handleError(error, thrownFromHandler: true)
  221. }
  222. case .completed:
  223. // We've already completed. That's fine.
  224. ()
  225. }
  226. }
  227. @inlinable
  228. internal func interceptResponse(
  229. _ response: Response,
  230. metadata: MessageMetadata,
  231. promise: EventLoopPromise<Void>?
  232. ) {
  233. switch self.state {
  234. case .idle:
  235. // The observer block can't end responses if it doesn't exist!
  236. preconditionFailure()
  237. case .creatingObserver, .observing:
  238. // The user has access to the response context before returning a future observer,
  239. // so 'creatingObserver' is valid here (if a little strange).
  240. self.interceptors.send(.message(response, metadata), promise: promise)
  241. case .completed:
  242. promise?.fail(GRPCError.AlreadyComplete())
  243. }
  244. }
  245. @inlinable
  246. internal func userFunctionStatusResolved(_ result: Result<GRPCStatus, Error>) {
  247. switch self.state {
  248. case .idle:
  249. // The promise can't fail before we create it.
  250. preconditionFailure()
  251. // Making is possible, the user can complete the status before returning a stream handler.
  252. case let .creatingObserver(context), let .observing(_, context):
  253. switch result {
  254. case let .success(status):
  255. // We're sending end back, we're done.
  256. self.state = .completed
  257. self.interceptors.send(.end(status, context.trailers), promise: nil)
  258. case let .failure(error):
  259. self.handleError(error, thrownFromHandler: true)
  260. }
  261. case .completed:
  262. ()
  263. }
  264. }
  265. @inlinable
  266. internal func handleError(_ error: Error, thrownFromHandler isHandlerError: Bool = false) {
  267. switch self.state {
  268. case .idle:
  269. assert(!isHandlerError)
  270. self.state = .completed
  271. // We don't have a promise to fail. Just send back end.
  272. let (status, trailers) = ServerErrorProcessor.processLibraryError(
  273. error,
  274. delegate: self.context.errorDelegate
  275. )
  276. self.interceptors.send(.end(status, trailers), promise: nil)
  277. case let .creatingObserver(context),
  278. let .observing(_, context):
  279. // We don't have a promise to fail. Just send back end.
  280. self.state = .completed
  281. let status: GRPCStatus
  282. let trailers: HPACKHeaders
  283. if isHandlerError {
  284. (status, trailers) = ServerErrorProcessor.processObserverError(
  285. error,
  286. headers: context.headers,
  287. trailers: context.trailers,
  288. delegate: self.context.errorDelegate
  289. )
  290. } else {
  291. (status, trailers) = ServerErrorProcessor.processLibraryError(
  292. error,
  293. delegate: self.context.errorDelegate
  294. )
  295. }
  296. self.interceptors.send(.end(status, trailers), promise: nil)
  297. // We're already in the 'completed' state so failing the promise will be a no-op in the
  298. // callback to 'userHandlerCompleted' (but we also need to avoid leaking the promise.)
  299. context.statusPromise.fail(error)
  300. case .completed:
  301. ()
  302. }
  303. }
  304. @inlinable
  305. internal func sendInterceptedPart(
  306. _ part: GRPCServerResponsePart<Response>,
  307. promise: EventLoopPromise<Void>?
  308. ) {
  309. switch part {
  310. case let .metadata(headers):
  311. self.context.responseWriter.sendMetadata(headers, flush: true, promise: promise)
  312. case let .message(message, metadata):
  313. do {
  314. let bytes = try self.serializer.serialize(message, allocator: ByteBufferAllocator())
  315. self.context.responseWriter.sendMessage(bytes, metadata: metadata, promise: promise)
  316. } catch {
  317. // Serialization failed: fail the promise and send end.
  318. promise?.fail(error)
  319. let (status, trailers) = ServerErrorProcessor.processLibraryError(
  320. error,
  321. delegate: self.context.errorDelegate
  322. )
  323. // Loop back via the interceptors.
  324. self.interceptors.send(.end(status, trailers), promise: nil)
  325. }
  326. case let .end(status, trailers):
  327. self.context.responseWriter.sendEnd(status: status, trailers: trailers, promise: promise)
  328. }
  329. }
  330. }