/* * 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::Imageprocess; using namespace AlibabaCloud::Imageprocess::Model; namespace { const std::string SERVICE_NAME = "imageprocess"; } ImageprocessClient::ImageprocessClient(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, "imageprocess"); } ImageprocessClient::ImageprocessClient(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, "imageprocess"); } ImageprocessClient::ImageprocessClient(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, "imageprocess"); } ImageprocessClient::~ImageprocessClient() {} ImageprocessClient::AnalyzeChestVesselOutcome ImageprocessClient::analyzeChestVessel(const AnalyzeChestVesselRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return AnalyzeChestVesselOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return AnalyzeChestVesselOutcome(AnalyzeChestVesselResult(outcome.result())); else return AnalyzeChestVesselOutcome(outcome.error()); } void ImageprocessClient::analyzeChestVesselAsync(const AnalyzeChestVesselRequest& request, const AnalyzeChestVesselAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, analyzeChestVessel(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::AnalyzeChestVesselOutcomeCallable ImageprocessClient::analyzeChestVesselCallable(const AnalyzeChestVesselRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->analyzeChestVessel(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::CalcCACSOutcome ImageprocessClient::calcCACS(const CalcCACSRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return CalcCACSOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return CalcCACSOutcome(CalcCACSResult(outcome.result())); else return CalcCACSOutcome(outcome.error()); } void ImageprocessClient::calcCACSAsync(const CalcCACSRequest& request, const CalcCACSAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, calcCACS(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::CalcCACSOutcomeCallable ImageprocessClient::calcCACSCallable(const CalcCACSRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->calcCACS(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::ClassifyFNFOutcome ImageprocessClient::classifyFNF(const ClassifyFNFRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ClassifyFNFOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ClassifyFNFOutcome(ClassifyFNFResult(outcome.result())); else return ClassifyFNFOutcome(outcome.error()); } void ImageprocessClient::classifyFNFAsync(const ClassifyFNFRequest& request, const ClassifyFNFAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, classifyFNF(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::ClassifyFNFOutcomeCallable ImageprocessClient::classifyFNFCallable(const ClassifyFNFRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->classifyFNF(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectCovid19CadOutcome ImageprocessClient::detectCovid19Cad(const DetectCovid19CadRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectCovid19CadOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectCovid19CadOutcome(DetectCovid19CadResult(outcome.result())); else return DetectCovid19CadOutcome(outcome.error()); } void ImageprocessClient::detectCovid19CadAsync(const DetectCovid19CadRequest& request, const DetectCovid19CadAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectCovid19Cad(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectCovid19CadOutcomeCallable ImageprocessClient::detectCovid19CadCallable(const DetectCovid19CadRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectCovid19Cad(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectHipKeypointXRayOutcome ImageprocessClient::detectHipKeypointXRay(const DetectHipKeypointXRayRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectHipKeypointXRayOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectHipKeypointXRayOutcome(DetectHipKeypointXRayResult(outcome.result())); else return DetectHipKeypointXRayOutcome(outcome.error()); } void ImageprocessClient::detectHipKeypointXRayAsync(const DetectHipKeypointXRayRequest& request, const DetectHipKeypointXRayAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectHipKeypointXRay(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectHipKeypointXRayOutcomeCallable ImageprocessClient::detectHipKeypointXRayCallable(const DetectHipKeypointXRayRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectHipKeypointXRay(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectKneeKeypointXRayOutcome ImageprocessClient::detectKneeKeypointXRay(const DetectKneeKeypointXRayRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectKneeKeypointXRayOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectKneeKeypointXRayOutcome(DetectKneeKeypointXRayResult(outcome.result())); else return DetectKneeKeypointXRayOutcome(outcome.error()); } void ImageprocessClient::detectKneeKeypointXRayAsync(const DetectKneeKeypointXRayRequest& request, const DetectKneeKeypointXRayAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectKneeKeypointXRay(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectKneeKeypointXRayOutcomeCallable ImageprocessClient::detectKneeKeypointXRayCallable(const DetectKneeKeypointXRayRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectKneeKeypointXRay(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectKneeXRayOutcome ImageprocessClient::detectKneeXRay(const DetectKneeXRayRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectKneeXRayOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectKneeXRayOutcome(DetectKneeXRayResult(outcome.result())); else return DetectKneeXRayOutcome(outcome.error()); } void ImageprocessClient::detectKneeXRayAsync(const DetectKneeXRayRequest& request, const DetectKneeXRayAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectKneeXRay(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectKneeXRayOutcomeCallable ImageprocessClient::detectKneeXRayCallable(const DetectKneeXRayRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectKneeXRay(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectLungNoduleOutcome ImageprocessClient::detectLungNodule(const DetectLungNoduleRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectLungNoduleOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectLungNoduleOutcome(DetectLungNoduleResult(outcome.result())); else return DetectLungNoduleOutcome(outcome.error()); } void ImageprocessClient::detectLungNoduleAsync(const DetectLungNoduleRequest& request, const DetectLungNoduleAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectLungNodule(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectLungNoduleOutcomeCallable ImageprocessClient::detectLungNoduleCallable(const DetectLungNoduleRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectLungNodule(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectRibFractureOutcome ImageprocessClient::detectRibFracture(const DetectRibFractureRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectRibFractureOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectRibFractureOutcome(DetectRibFractureResult(outcome.result())); else return DetectRibFractureOutcome(outcome.error()); } void ImageprocessClient::detectRibFractureAsync(const DetectRibFractureRequest& request, const DetectRibFractureAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectRibFracture(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectRibFractureOutcomeCallable ImageprocessClient::detectRibFractureCallable(const DetectRibFractureRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectRibFracture(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectSkinDiseaseOutcome ImageprocessClient::detectSkinDisease(const DetectSkinDiseaseRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectSkinDiseaseOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectSkinDiseaseOutcome(DetectSkinDiseaseResult(outcome.result())); else return DetectSkinDiseaseOutcome(outcome.error()); } void ImageprocessClient::detectSkinDiseaseAsync(const DetectSkinDiseaseRequest& request, const DetectSkinDiseaseAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectSkinDisease(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectSkinDiseaseOutcomeCallable ImageprocessClient::detectSkinDiseaseCallable(const DetectSkinDiseaseRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectSkinDisease(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::DetectSpineMRIOutcome ImageprocessClient::detectSpineMRI(const DetectSpineMRIRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return DetectSpineMRIOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return DetectSpineMRIOutcome(DetectSpineMRIResult(outcome.result())); else return DetectSpineMRIOutcome(outcome.error()); } void ImageprocessClient::detectSpineMRIAsync(const DetectSpineMRIRequest& request, const DetectSpineMRIAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, detectSpineMRI(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::DetectSpineMRIOutcomeCallable ImageprocessClient::detectSpineMRICallable(const DetectSpineMRIRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->detectSpineMRI(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::GetAsyncJobResultOutcome ImageprocessClient::getAsyncJobResult(const GetAsyncJobResultRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return GetAsyncJobResultOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return GetAsyncJobResultOutcome(GetAsyncJobResultResult(outcome.result())); else return GetAsyncJobResultOutcome(outcome.error()); } void ImageprocessClient::getAsyncJobResultAsync(const GetAsyncJobResultRequest& request, const GetAsyncJobResultAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, getAsyncJobResult(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::GetAsyncJobResultOutcomeCallable ImageprocessClient::getAsyncJobResultCallable(const GetAsyncJobResultRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->getAsyncJobResult(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::RunCTRegistrationOutcome ImageprocessClient::runCTRegistration(const RunCTRegistrationRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return RunCTRegistrationOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return RunCTRegistrationOutcome(RunCTRegistrationResult(outcome.result())); else return RunCTRegistrationOutcome(outcome.error()); } void ImageprocessClient::runCTRegistrationAsync(const RunCTRegistrationRequest& request, const RunCTRegistrationAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, runCTRegistration(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::RunCTRegistrationOutcomeCallable ImageprocessClient::runCTRegistrationCallable(const RunCTRegistrationRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->runCTRegistration(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::RunMedQAOutcome ImageprocessClient::runMedQA(const RunMedQARequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return RunMedQAOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return RunMedQAOutcome(RunMedQAResult(outcome.result())); else return RunMedQAOutcome(outcome.error()); } void ImageprocessClient::runMedQAAsync(const RunMedQARequest& request, const RunMedQAAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, runMedQA(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::RunMedQAOutcomeCallable ImageprocessClient::runMedQACallable(const RunMedQARequest &request) const { auto task = std::make_shared>( [this, request]() { return this->runMedQA(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::ScreenChestCTOutcome ImageprocessClient::screenChestCT(const ScreenChestCTRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return ScreenChestCTOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return ScreenChestCTOutcome(ScreenChestCTResult(outcome.result())); else return ScreenChestCTOutcome(outcome.error()); } void ImageprocessClient::screenChestCTAsync(const ScreenChestCTRequest& request, const ScreenChestCTAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, screenChestCT(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::ScreenChestCTOutcomeCallable ImageprocessClient::screenChestCTCallable(const ScreenChestCTRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->screenChestCT(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); } ImageprocessClient::TranslateMedOutcome ImageprocessClient::translateMed(const TranslateMedRequest &request) const { auto endpointOutcome = endpointProvider_->getEndpoint(); if (!endpointOutcome.isSuccess()) return TranslateMedOutcome(endpointOutcome.error()); auto outcome = makeRequest(endpointOutcome.result(), request); if (outcome.isSuccess()) return TranslateMedOutcome(TranslateMedResult(outcome.result())); else return TranslateMedOutcome(outcome.error()); } void ImageprocessClient::translateMedAsync(const TranslateMedRequest& request, const TranslateMedAsyncHandler& handler, const std::shared_ptr& context) const { auto fn = [this, request, handler, context]() { handler(this, request, translateMed(request), context); }; asyncExecute(new Runnable(fn)); } ImageprocessClient::TranslateMedOutcomeCallable ImageprocessClient::translateMedCallable(const TranslateMedRequest &request) const { auto task = std::make_shared>( [this, request]() { return this->translateMed(request); }); asyncExecute(new Runnable([task]() { (*task)(); })); return task->get_future(); }