| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340 | /* * * Copyright 2015-2016 gRPC authors. * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * *     http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * */#include <fstream>#include <memory>#include <sstream>#include <thread>#include <gflags/gflags.h>#include <grpc++/security/server_credentials.h>#include <grpc++/server.h>#include <grpc++/server_builder.h>#include <grpc++/server_context.h>#include <grpc/grpc.h>#include <grpc/support/log.h>#include <grpc/support/time.h>#include <grpc/support/useful.h>#include "src/core/lib/support/string.h"#include "src/core/lib/transport/byte_stream.h"#include "src/proto/grpc/testing/empty.pb.h"#include "src/proto/grpc/testing/messages.pb.h"#include "src/proto/grpc/testing/test.grpc.pb.h"#include "test/cpp/interop/server_helper.h"#include "test/cpp/util/test_config.h"DEFINE_bool(use_tls, false, "Whether to use tls.");DEFINE_string(custom_credentials_type, "", "User provided credentials type.");DEFINE_int32(port, 0, "Server port.");DEFINE_int32(max_send_message_size, -1, "The maximum send message size.");using grpc::Server;using grpc::ServerBuilder;using grpc::ServerContext;using grpc::ServerCredentials;using grpc::ServerReader;using grpc::ServerReaderWriter;using grpc::ServerWriter;using grpc::WriteOptions;using grpc::SslServerCredentialsOptions;using grpc::testing::InteropServerContextInspector;using grpc::testing::Payload;using grpc::testing::SimpleRequest;using grpc::testing::SimpleResponse;using grpc::testing::StreamingInputCallRequest;using grpc::testing::StreamingInputCallResponse;using grpc::testing::StreamingOutputCallRequest;using grpc::testing::StreamingOutputCallResponse;using grpc::testing::TestService;using grpc::Status;const char kEchoInitialMetadataKey[] = "x-grpc-test-echo-initial";const char kEchoTrailingBinMetadataKey[] = "x-grpc-test-echo-trailing-bin";const char kEchoUserAgentKey[] = "x-grpc-test-echo-useragent";void MaybeEchoMetadata(ServerContext* context) {  const auto& client_metadata = context->client_metadata();  GPR_ASSERT(client_metadata.count(kEchoInitialMetadataKey) <= 1);  GPR_ASSERT(client_metadata.count(kEchoTrailingBinMetadataKey) <= 1);  auto iter = client_metadata.find(kEchoInitialMetadataKey);  if (iter != client_metadata.end()) {    context->AddInitialMetadata(        kEchoInitialMetadataKey,        grpc::string(iter->second.begin(), iter->second.end()));  }  iter = client_metadata.find(kEchoTrailingBinMetadataKey);  if (iter != client_metadata.end()) {    context->AddTrailingMetadata(        kEchoTrailingBinMetadataKey,        grpc::string(iter->second.begin(), iter->second.end()));  }  // Check if client sent a magic key in the header that makes us echo  // back the user-agent (for testing purpose)  iter = client_metadata.find(kEchoUserAgentKey);  if (iter != client_metadata.end()) {    iter = client_metadata.find("user-agent");    if (iter != client_metadata.end()) {      context->AddInitialMetadata(          kEchoUserAgentKey,          grpc::string(iter->second.begin(), iter->second.end()));    }  }}bool SetPayload(int size, Payload* payload) {  std::unique_ptr<char[]> body(new char[size]());  payload->set_body(body.get(), size);  return true;}bool CheckExpectedCompression(const ServerContext& context,                              const bool compression_expected) {  const InteropServerContextInspector inspector(context);  const grpc_compression_algorithm received_compression =      inspector.GetCallCompressionAlgorithm();  if (compression_expected) {    if (received_compression == GRPC_COMPRESS_NONE) {      // Expected some compression, got NONE. This is an error.      gpr_log(GPR_ERROR,              "Expected compression but got uncompressed request from client.");      return false;    }    if (!(inspector.GetMessageFlags() & GRPC_WRITE_INTERNAL_COMPRESS)) {      gpr_log(GPR_ERROR,              "Failure: Requested compression in a compressable request, but "              "compression bit in message flags not set.");      return false;    }  } else {    // Didn't expect compression -> make sure the request is uncompressed    if (inspector.GetMessageFlags() & GRPC_WRITE_INTERNAL_COMPRESS) {      gpr_log(GPR_ERROR,              "Failure: Didn't requested compression, but compression bit in "              "message flags set.");      return false;    }  }  return true;}class TestServiceImpl : public TestService::Service { public:  Status EmptyCall(ServerContext* context, const grpc::testing::Empty* request,                   grpc::testing::Empty* response) {    MaybeEchoMetadata(context);    return Status::OK;  }  // Response contains current timestamp. We ignore everything in the request.  Status CacheableUnaryCall(ServerContext* context,                            const SimpleRequest* request,                            SimpleResponse* response) {    gpr_timespec ts = gpr_now(GPR_CLOCK_PRECISE);    std::string timestamp = std::to_string((long long unsigned)ts.tv_nsec);    response->mutable_payload()->set_body(timestamp.c_str(), timestamp.size());    context->AddInitialMetadata("cache-control", "max-age=60, public");    return Status::OK;  }  Status UnaryCall(ServerContext* context, const SimpleRequest* request,                   SimpleResponse* response) {    MaybeEchoMetadata(context);    if (request->has_response_compressed()) {      const bool compression_requested = request->response_compressed().value();      gpr_log(GPR_DEBUG, "Request for compression (%s) present for %s",              compression_requested ? "enabled" : "disabled", __func__);      if (compression_requested) {        // Any level would do, let's go for HIGH because we are overachievers.        context->set_compression_level(GRPC_COMPRESS_LEVEL_HIGH);      } else {        context->set_compression_level(GRPC_COMPRESS_LEVEL_NONE);      }    }    if (!CheckExpectedCompression(*context,                                  request->expect_compressed().value())) {      return Status(grpc::StatusCode::INVALID_ARGUMENT,                    "Compressed request expectation not met.");    }    if (request->response_size() > 0) {      if (!SetPayload(request->response_size(), response->mutable_payload())) {        return Status(grpc::StatusCode::INVALID_ARGUMENT,                      "Error creating payload.");      }    }    if (request->has_response_status()) {      return Status(          static_cast<grpc::StatusCode>(request->response_status().code()),          request->response_status().message());    }    return Status::OK;  }  Status StreamingOutputCall(      ServerContext* context, const StreamingOutputCallRequest* request,      ServerWriter<StreamingOutputCallResponse>* writer) {    StreamingOutputCallResponse response;    bool write_success = true;    for (int i = 0; write_success && i < request->response_parameters_size();         i++) {      if (!SetPayload(request->response_parameters(i).size(),                      response.mutable_payload())) {        return Status(grpc::StatusCode::INVALID_ARGUMENT,                      "Error creating payload.");      }      WriteOptions wopts;      if (request->response_parameters(i).has_compressed()) {        // Compress by default. Disabled on a per-message basis.        context->set_compression_level(GRPC_COMPRESS_LEVEL_HIGH);        const bool compression_requested =            request->response_parameters(i).compressed().value();        gpr_log(GPR_DEBUG, "Request for compression (%s) present for %s",                compression_requested ? "enabled" : "disabled", __func__);        if (!compression_requested) {          wopts.set_no_compression();        }  // else, compression is already enabled via the context.      }      int time_us;      if ((time_us = request->response_parameters(i).interval_us()) > 0) {        // Sleep before response if needed        gpr_timespec sleep_time =            gpr_time_add(gpr_now(GPR_CLOCK_REALTIME),                         gpr_time_from_micros(time_us, GPR_TIMESPAN));        gpr_sleep_until(sleep_time);      }      write_success = writer->Write(response, wopts);    }    if (write_success) {      return Status::OK;    } else {      return Status(grpc::StatusCode::INTERNAL, "Error writing response.");    }  }  Status StreamingInputCall(ServerContext* context,                            ServerReader<StreamingInputCallRequest>* reader,                            StreamingInputCallResponse* response) {    StreamingInputCallRequest request;    int aggregated_payload_size = 0;    while (reader->Read(&request)) {      if (!CheckExpectedCompression(*context,                                    request.expect_compressed().value())) {        return Status(grpc::StatusCode::INVALID_ARGUMENT,                      "Compressed request expectation not met.");      }      if (request.has_payload()) {        aggregated_payload_size += request.payload().body().size();      }    }    response->set_aggregated_payload_size(aggregated_payload_size);    return Status::OK;  }  Status FullDuplexCall(      ServerContext* context,      ServerReaderWriter<StreamingOutputCallResponse,                         StreamingOutputCallRequest>* stream) {    MaybeEchoMetadata(context);    StreamingOutputCallRequest request;    StreamingOutputCallResponse response;    bool write_success = true;    while (write_success && stream->Read(&request)) {      if (request.has_response_status()) {        return Status(            static_cast<grpc::StatusCode>(request.response_status().code()),            request.response_status().message());      }      if (request.response_parameters_size() != 0) {        response.mutable_payload()->set_type(request.payload().type());        response.mutable_payload()->set_body(            grpc::string(request.response_parameters(0).size(), '\0'));        int time_us;        if ((time_us = request.response_parameters(0).interval_us()) > 0) {          // Sleep before response if needed          gpr_timespec sleep_time =              gpr_time_add(gpr_now(GPR_CLOCK_REALTIME),                           gpr_time_from_micros(time_us, GPR_TIMESPAN));          gpr_sleep_until(sleep_time);        }        write_success = stream->Write(response);      }    }    if (write_success) {      return Status::OK;    } else {      return Status(grpc::StatusCode::INTERNAL, "Error writing response.");    }  }  Status HalfDuplexCall(      ServerContext* context,      ServerReaderWriter<StreamingOutputCallResponse,                         StreamingOutputCallRequest>* stream) {    std::vector<StreamingOutputCallRequest> requests;    StreamingOutputCallRequest request;    while (stream->Read(&request)) {      requests.push_back(request);    }    StreamingOutputCallResponse response;    bool write_success = true;    for (unsigned int i = 0; write_success && i < requests.size(); i++) {      response.mutable_payload()->set_type(requests[i].payload().type());      if (requests[i].response_parameters_size() == 0) {        return Status(grpc::StatusCode::INTERNAL,                      "Request does not have response parameters.");      }      response.mutable_payload()->set_body(          grpc::string(requests[i].response_parameters(0).size(), '\0'));      write_success = stream->Write(response);    }    if (write_success) {      return Status::OK;    } else {      return Status(grpc::StatusCode::INTERNAL, "Error writing response.");    }  }};void grpc::testing::interop::RunServer(    std::shared_ptr<ServerCredentials> creds) {  GPR_ASSERT(FLAGS_port != 0);  std::ostringstream server_address;  server_address << "0.0.0.0:" << FLAGS_port;  TestServiceImpl service;  SimpleRequest request;  SimpleResponse response;  ServerBuilder builder;  builder.RegisterService(&service);  builder.AddListeningPort(server_address.str(), creds);  if (FLAGS_max_send_message_size >= 0) {    builder.SetMaxSendMessageSize(FLAGS_max_send_message_size);  }  std::unique_ptr<Server> server(builder.BuildAndStart());  gpr_log(GPR_INFO, "Server listening on %s", server_address.str().c_str());  while (!gpr_atm_no_barrier_load(&g_got_sigint)) {    gpr_sleep_until(gpr_time_add(gpr_now(GPR_CLOCK_REALTIME),                                 gpr_time_from_seconds(5, GPR_TIMESPAN)));  }}
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