/* * Copyright 2009-2017 Alibaba Cloud All rights reserved. * * 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 #include using namespace AlibabaCloud; using namespace AlibabaCloud::Location; using namespace AlibabaCloud::Fnf; using namespace AlibabaCloud::Fnf::Model; namespace { const std::string SERVICE_NAME = "fnf"; } FnfClient::FnfClient(const Credentials &credentials, const ClientConfiguration &configuration) : RpcServiceClient(SERVICE_NAME, std::make_shared(credentials), configuration) { auto locationClient = std::make_shared(credentials, configuration); endpointProvider_ = std::make_shared(locationClient, configuration.regionId(), SERVICE_NAME, "fnf"); } FnfClient::FnfClient(const std::shared_ptr& credentialsProvider, const ClientConfiguration & configuration) : RpcServiceClient(SERVICE_NAME, credentialsProvider, configuration) { auto locationClient = std::make_shared(credentialsProvider, configuration); endpointProvider_ = std::make_shared(locationClient, configuration.regionId(), SERVICE_NAME, "fnf"); } FnfClient::FnfClient(const std::string & accessKeyId, const std::string & accessKeySecret, const ClientConfiguration & configuration) : RpcServiceClient(SERVICE_NAME, std::make_shared(accessKeyId, accessKeySecret), configuration) { auto locationClient = std::make_shared(accessKeyId, accessKeySecret, configuration); endpointProvider_ = std::make_shared(locationClient, configuration.regionId(), SERVICE_NAME, "fnf"); } FnfClient::~FnfClient() {} FnfClient::CreateFlowOutcome FnfClient::createFlow(const CreateFlowRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return CreateFlowOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return CreateFlowOutcome(CreateFlowResult(outcome.result())); else return CreateFlowOutcome(outcome.error()); } void FnfClient::createFlowAsync(const CreateFlowRequest& request, const CreateFlowAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, createFlow(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::CreateFlowOutcomeCallable FnfClient::createFlowCallable(const CreateFlowRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->createFlow(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::CreateScheduleOutcome FnfClient::createSchedule(const CreateScheduleRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return CreateScheduleOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return CreateScheduleOutcome(CreateScheduleResult(outcome.result())); else return CreateScheduleOutcome(outcome.error()); } void FnfClient::createScheduleAsync(const CreateScheduleRequest& request, const CreateScheduleAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, createSchedule(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::CreateScheduleOutcomeCallable FnfClient::createScheduleCallable(const CreateScheduleRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->createSchedule(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::DeleteFlowOutcome FnfClient::deleteFlow(const DeleteFlowRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DeleteFlowOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DeleteFlowOutcome(DeleteFlowResult(outcome.result())); else return DeleteFlowOutcome(outcome.error()); } void FnfClient::deleteFlowAsync(const DeleteFlowRequest& request, const DeleteFlowAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, deleteFlow(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::DeleteFlowOutcomeCallable FnfClient::deleteFlowCallable(const DeleteFlowRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->deleteFlow(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::DeleteScheduleOutcome FnfClient::deleteSchedule(const DeleteScheduleRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DeleteScheduleOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DeleteScheduleOutcome(DeleteScheduleResult(outcome.result())); else return DeleteScheduleOutcome(outcome.error()); } void FnfClient::deleteScheduleAsync(const DeleteScheduleRequest& request, const DeleteScheduleAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, deleteSchedule(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::DeleteScheduleOutcomeCallable FnfClient::deleteScheduleCallable(const DeleteScheduleRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->deleteSchedule(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::DescribeExecutionOutcome FnfClient::describeExecution(const DescribeExecutionRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DescribeExecutionOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DescribeExecutionOutcome(DescribeExecutionResult(outcome.result())); else return DescribeExecutionOutcome(outcome.error()); } void FnfClient::describeExecutionAsync(const DescribeExecutionRequest& request, const DescribeExecutionAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, describeExecution(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::DescribeExecutionOutcomeCallable FnfClient::describeExecutionCallable(const DescribeExecutionRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->describeExecution(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::DescribeFlowOutcome FnfClient::describeFlow(const DescribeFlowRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DescribeFlowOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DescribeFlowOutcome(DescribeFlowResult(outcome.result())); else return DescribeFlowOutcome(outcome.error()); } void FnfClient::describeFlowAsync(const DescribeFlowRequest& request, const DescribeFlowAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, describeFlow(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::DescribeFlowOutcomeCallable FnfClient::describeFlowCallable(const DescribeFlowRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->describeFlow(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::DescribeScheduleOutcome FnfClient::describeSchedule(const DescribeScheduleRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DescribeScheduleOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DescribeScheduleOutcome(DescribeScheduleResult(outcome.result())); else return DescribeScheduleOutcome(outcome.error()); } void FnfClient::describeScheduleAsync(const DescribeScheduleRequest& request, const DescribeScheduleAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, describeSchedule(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::DescribeScheduleOutcomeCallable FnfClient::describeScheduleCallable(const DescribeScheduleRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->describeSchedule(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::GetExecutionHistoryOutcome FnfClient::getExecutionHistory(const GetExecutionHistoryRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return GetExecutionHistoryOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return GetExecutionHistoryOutcome(GetExecutionHistoryResult(outcome.result())); else return GetExecutionHistoryOutcome(outcome.error()); } void FnfClient::getExecutionHistoryAsync(const GetExecutionHistoryRequest& request, const GetExecutionHistoryAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, getExecutionHistory(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::GetExecutionHistoryOutcomeCallable FnfClient::getExecutionHistoryCallable(const GetExecutionHistoryRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->getExecutionHistory(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::ListExecutionsOutcome FnfClient::listExecutions(const ListExecutionsRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ListExecutionsOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ListExecutionsOutcome(ListExecutionsResult(outcome.result())); else return ListExecutionsOutcome(outcome.error()); } void FnfClient::listExecutionsAsync(const ListExecutionsRequest& request, const ListExecutionsAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, listExecutions(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::ListExecutionsOutcomeCallable FnfClient::listExecutionsCallable(const ListExecutionsRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->listExecutions(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::ListFlowsOutcome FnfClient::listFlows(const ListFlowsRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ListFlowsOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ListFlowsOutcome(ListFlowsResult(outcome.result())); else return ListFlowsOutcome(outcome.error()); } void FnfClient::listFlowsAsync(const ListFlowsRequest& request, const ListFlowsAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, listFlows(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::ListFlowsOutcomeCallable FnfClient::listFlowsCallable(const ListFlowsRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->listFlows(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::ListSchedulesOutcome FnfClient::listSchedules(const ListSchedulesRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ListSchedulesOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ListSchedulesOutcome(ListSchedulesResult(outcome.result())); else return ListSchedulesOutcome(outcome.error()); } void FnfClient::listSchedulesAsync(const ListSchedulesRequest& request, const ListSchedulesAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, listSchedules(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::ListSchedulesOutcomeCallable FnfClient::listSchedulesCallable(const ListSchedulesRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->listSchedules(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::ReportTaskFailedOutcome FnfClient::reportTaskFailed(const ReportTaskFailedRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ReportTaskFailedOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ReportTaskFailedOutcome(ReportTaskFailedResult(outcome.result())); else return ReportTaskFailedOutcome(outcome.error()); } void FnfClient::reportTaskFailedAsync(const ReportTaskFailedRequest& request, const ReportTaskFailedAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, reportTaskFailed(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::ReportTaskFailedOutcomeCallable FnfClient::reportTaskFailedCallable(const ReportTaskFailedRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->reportTaskFailed(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::ReportTaskSucceededOutcome FnfClient::reportTaskSucceeded(const ReportTaskSucceededRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ReportTaskSucceededOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ReportTaskSucceededOutcome(ReportTaskSucceededResult(outcome.result())); else return ReportTaskSucceededOutcome(outcome.error()); } void FnfClient::reportTaskSucceededAsync(const ReportTaskSucceededRequest& request, const ReportTaskSucceededAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, reportTaskSucceeded(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::ReportTaskSucceededOutcomeCallable FnfClient::reportTaskSucceededCallable(const ReportTaskSucceededRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->reportTaskSucceeded(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::StartExecutionOutcome FnfClient::startExecution(const StartExecutionRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return StartExecutionOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return StartExecutionOutcome(StartExecutionResult(outcome.result())); else return StartExecutionOutcome(outcome.error()); } void FnfClient::startExecutionAsync(const StartExecutionRequest& request, const StartExecutionAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, startExecution(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::StartExecutionOutcomeCallable FnfClient::startExecutionCallable(const StartExecutionRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->startExecution(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::StartSyncExecutionOutcome FnfClient::startSyncExecution(const StartSyncExecutionRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return StartSyncExecutionOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return StartSyncExecutionOutcome(StartSyncExecutionResult(outcome.result())); else return StartSyncExecutionOutcome(outcome.error()); } void FnfClient::startSyncExecutionAsync(const StartSyncExecutionRequest& request, const StartSyncExecutionAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, startSyncExecution(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::StartSyncExecutionOutcomeCallable FnfClient::startSyncExecutionCallable(const StartSyncExecutionRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->startSyncExecution(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::StopExecutionOutcome FnfClient::stopExecution(const StopExecutionRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return StopExecutionOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return StopExecutionOutcome(StopExecutionResult(outcome.result())); else return StopExecutionOutcome(outcome.error()); } void FnfClient::stopExecutionAsync(const StopExecutionRequest& request, const StopExecutionAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, stopExecution(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::StopExecutionOutcomeCallable FnfClient::stopExecutionCallable(const StopExecutionRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->stopExecution(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::UpdateFlowOutcome FnfClient::updateFlow(const UpdateFlowRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return UpdateFlowOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return UpdateFlowOutcome(UpdateFlowResult(outcome.result())); else return UpdateFlowOutcome(outcome.error()); } void FnfClient::updateFlowAsync(const UpdateFlowRequest& request, const UpdateFlowAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, updateFlow(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::UpdateFlowOutcomeCallable FnfClient::updateFlowCallable(const UpdateFlowRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->updateFlow(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } FnfClient::UpdateScheduleOutcome FnfClient::updateSchedule(const UpdateScheduleRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return UpdateScheduleOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return UpdateScheduleOutcome(UpdateScheduleResult(outcome.result())); else return UpdateScheduleOutcome(outcome.error()); } void FnfClient::updateScheduleAsync(const UpdateScheduleRequest& request, const UpdateScheduleAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, updateSchedule(request), context); }; asyncExecute(new Runnable(fn)); } FnfClient::UpdateScheduleOutcomeCallable FnfClient::updateScheduleCallable(const UpdateScheduleRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->updateSchedule(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); }