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IN NO EVENT SHALL THE COPYRIGHT * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * */ #ifndef GRPCXX_IMPL_CODEGEN_SERVER_INTERFACE_H #define GRPCXX_IMPL_CODEGEN_SERVER_INTERFACE_H #include #include #include #include #include namespace grpc { class AsyncGenericService; class GenericServerContext; class RpcService; class ServerAsyncStreamingInterface; class ServerCompletionQueue; class ServerContext; class ServerCredentials; class Service; class ThreadPoolInterface; extern CoreCodegenInterface* g_core_codegen_interface; /// Models a gRPC server. /// /// Servers are configured and started via \a grpc::ServerBuilder. class ServerInterface : public CallHook { public: virtual ~ServerInterface() {} /// Shutdown the server, blocking until all rpc processing finishes. /// Forcefully terminate pending calls after \a deadline expires. /// /// All completion queue associated with the server (for example, for async /// serving) must be shutdown *after* this method has returned: /// See \a ServerBuilder::AddCompletionQueue for details. /// /// \param deadline How long to wait until pending rpcs are forcefully /// terminated. template void Shutdown(const T& deadline) { ShutdownInternal(TimePoint(deadline).raw_time()); } /// Shutdown the server, waiting for all rpc processing to finish. /// /// All completion queue associated with the server (for example, for async /// serving) must be shutdown *after* this method has returned: /// See \a ServerBuilder::AddCompletionQueue for details. void Shutdown() { ShutdownInternal( g_core_codegen_interface->gpr_inf_future(GPR_CLOCK_MONOTONIC)); } /// Block waiting for all work to complete. /// /// \warning The server must be either shutting down or some other thread must /// call \a Shutdown for this function to ever return. virtual void Wait() = 0; protected: friend class Service; /// Register a service. This call does not take ownership of the service. /// The service must exist for the lifetime of the Server instance. virtual bool RegisterService(const grpc::string* host, Service* service) = 0; /// Register a generic service. This call does not take ownership of the /// service. The service must exist for the lifetime of the Server instance. virtual void RegisterAsyncGenericService(AsyncGenericService* service) = 0; /// Tries to bind \a server to the given \a addr. /// /// It can be invoked multiple times. /// /// \param addr The address to try to bind to the server (eg, localhost:1234, /// 192.168.1.1:31416, [::1]:27182, etc.). /// \params creds The credentials associated with the server. /// /// \return bound port number on sucess, 0 on failure. /// /// \warning It's an error to call this method on an already started server. virtual int AddListeningPort(const grpc::string& addr, ServerCredentials* creds) = 0; /// Start the server. /// /// \param cqs Completion queues for handling asynchronous services. The /// caller is required to keep all completion queues live until the server is /// destroyed. /// \param num_cqs How many completion queues does \a cqs hold. /// /// \return true on a successful shutdown. virtual bool Start(ServerCompletionQueue** cqs, size_t num_cqs) = 0; /// Process one or more incoming calls. virtual void RunRpc() = 0; /// Schedule \a RunRpc to run in the threadpool. virtual void ScheduleCallback() = 0; virtual void ShutdownInternal(gpr_timespec deadline) = 0; virtual int max_message_size() const = 0; virtual grpc_server* server() = 0; virtual void PerformOpsOnCall(CallOpSetInterface* ops, Call* call) = 0; class BaseAsyncRequest : public CompletionQueueTag { public: BaseAsyncRequest(ServerInterface* server, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, void* tag, bool delete_on_finalize); virtual ~BaseAsyncRequest() {} bool FinalizeResult(void** tag, bool* status) GRPC_OVERRIDE; protected: ServerInterface* const server_; ServerContext* const context_; ServerAsyncStreamingInterface* const stream_; CompletionQueue* const call_cq_; void* const tag_; const bool delete_on_finalize_; grpc_call* call_; grpc_metadata_array initial_metadata_array_; }; class RegisteredAsyncRequest : public BaseAsyncRequest { public: RegisteredAsyncRequest(ServerInterface* server, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, void* tag); // uses BaseAsyncRequest::FinalizeResult protected: void IssueRequest(void* registered_method, grpc_byte_buffer** payload, ServerCompletionQueue* notification_cq); }; class NoPayloadAsyncRequest GRPC_FINAL : public RegisteredAsyncRequest { public: NoPayloadAsyncRequest(void* registered_method, ServerInterface* server, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag) : RegisteredAsyncRequest(server, context, stream, call_cq, tag) { IssueRequest(registered_method, nullptr, notification_cq); } // uses RegisteredAsyncRequest::FinalizeResult }; template class PayloadAsyncRequest GRPC_FINAL : public RegisteredAsyncRequest { public: PayloadAsyncRequest(void* registered_method, ServerInterface* server, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag, Message* request) : RegisteredAsyncRequest(server, context, stream, call_cq, tag), request_(request) { IssueRequest(registered_method, &payload_, notification_cq); } bool FinalizeResult(void** tag, bool* status) GRPC_OVERRIDE { bool serialization_status = *status && payload_ && SerializationTraits::Deserialize(payload_, request_, server_->max_message_size()) .ok(); bool ret = RegisteredAsyncRequest::FinalizeResult(tag, status); *status = serialization_status && *status; return ret; } private: grpc_byte_buffer* payload_; Message* const request_; }; class GenericAsyncRequest : public BaseAsyncRequest { public: GenericAsyncRequest(ServerInterface* server, GenericServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag, bool delete_on_finalize); bool FinalizeResult(void** tag, bool* status) GRPC_OVERRIDE; private: grpc_call_details call_details_; }; template void RequestAsyncCall(RpcServiceMethod* method, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag, Message* message) { GPR_CODEGEN_ASSERT(method); new PayloadAsyncRequest(method->server_tag(), this, context, stream, call_cq, notification_cq, tag, message); } void RequestAsyncCall(RpcServiceMethod* method, ServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag) { GPR_CODEGEN_ASSERT(method); new NoPayloadAsyncRequest(method->server_tag(), this, context, stream, call_cq, notification_cq, tag); } void RequestAsyncGenericCall(GenericServerContext* context, ServerAsyncStreamingInterface* stream, CompletionQueue* call_cq, ServerCompletionQueue* notification_cq, void* tag) { new GenericAsyncRequest(this, context, stream, call_cq, notification_cq, tag, true); } }; } // namespace grpc #endif // GRPCXX_IMPL_CODEGEN_SERVER_INTERFACE_H