ImageprocessClient.cc 16 KB

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  1. /*
  2. * Copyright 2009-2017 Alibaba Cloud 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. #include <alibabacloud/imageprocess/ImageprocessClient.h>
  17. #include <alibabacloud/core/SimpleCredentialsProvider.h>
  18. using namespace AlibabaCloud;
  19. using namespace AlibabaCloud::Location;
  20. using namespace AlibabaCloud::Imageprocess;
  21. using namespace AlibabaCloud::Imageprocess::Model;
  22. namespace
  23. {
  24. const std::string SERVICE_NAME = "imageprocess";
  25. }
  26. ImageprocessClient::ImageprocessClient(const Credentials &credentials, const ClientConfiguration &configuration) :
  27. RpcServiceClient(SERVICE_NAME, std::make_shared<SimpleCredentialsProvider>(credentials), configuration)
  28. {
  29. auto locationClient = std::make_shared<LocationClient>(credentials, configuration);
  30. endpointProvider_ = std::make_shared<EndpointProvider>(locationClient, configuration.regionId(), SERVICE_NAME, "imageprocess");
  31. }
  32. ImageprocessClient::ImageprocessClient(const std::shared_ptr<CredentialsProvider>& credentialsProvider, const ClientConfiguration & configuration) :
  33. RpcServiceClient(SERVICE_NAME, credentialsProvider, configuration)
  34. {
  35. auto locationClient = std::make_shared<LocationClient>(credentialsProvider, configuration);
  36. endpointProvider_ = std::make_shared<EndpointProvider>(locationClient, configuration.regionId(), SERVICE_NAME, "imageprocess");
  37. }
  38. ImageprocessClient::ImageprocessClient(const std::string & accessKeyId, const std::string & accessKeySecret, const ClientConfiguration & configuration) :
  39. RpcServiceClient(SERVICE_NAME, std::make_shared<SimpleCredentialsProvider>(accessKeyId, accessKeySecret), configuration)
  40. {
  41. auto locationClient = std::make_shared<LocationClient>(accessKeyId, accessKeySecret, configuration);
  42. endpointProvider_ = std::make_shared<EndpointProvider>(locationClient, configuration.regionId(), SERVICE_NAME, "imageprocess");
  43. }
  44. ImageprocessClient::~ImageprocessClient()
  45. {}
  46. ImageprocessClient::CalcCACSOutcome ImageprocessClient::calcCACS(const CalcCACSRequest &request) const
  47. {
  48. auto endpointOutcome = endpointProvider_->getEndpoint();
  49. if (!endpointOutcome.isSuccess())
  50. return CalcCACSOutcome(endpointOutcome.error());
  51. auto outcome = makeRequest(endpointOutcome.result(), request);
  52. if (outcome.isSuccess())
  53. return CalcCACSOutcome(CalcCACSResult(outcome.result()));
  54. else
  55. return CalcCACSOutcome(outcome.error());
  56. }
  57. void ImageprocessClient::calcCACSAsync(const CalcCACSRequest& request, const CalcCACSAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  58. {
  59. auto fn = [this, request, handler, context]()
  60. {
  61. handler(this, request, calcCACS(request), context);
  62. };
  63. asyncExecute(new Runnable(fn));
  64. }
  65. ImageprocessClient::CalcCACSOutcomeCallable ImageprocessClient::calcCACSCallable(const CalcCACSRequest &request) const
  66. {
  67. auto task = std::make_shared<std::packaged_task<CalcCACSOutcome()>>(
  68. [this, request]()
  69. {
  70. return this->calcCACS(request);
  71. });
  72. asyncExecute(new Runnable([task]() { (*task)(); }));
  73. return task->get_future();
  74. }
  75. ImageprocessClient::ClassifyFNFOutcome ImageprocessClient::classifyFNF(const ClassifyFNFRequest &request) const
  76. {
  77. auto endpointOutcome = endpointProvider_->getEndpoint();
  78. if (!endpointOutcome.isSuccess())
  79. return ClassifyFNFOutcome(endpointOutcome.error());
  80. auto outcome = makeRequest(endpointOutcome.result(), request);
  81. if (outcome.isSuccess())
  82. return ClassifyFNFOutcome(ClassifyFNFResult(outcome.result()));
  83. else
  84. return ClassifyFNFOutcome(outcome.error());
  85. }
  86. void ImageprocessClient::classifyFNFAsync(const ClassifyFNFRequest& request, const ClassifyFNFAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  87. {
  88. auto fn = [this, request, handler, context]()
  89. {
  90. handler(this, request, classifyFNF(request), context);
  91. };
  92. asyncExecute(new Runnable(fn));
  93. }
  94. ImageprocessClient::ClassifyFNFOutcomeCallable ImageprocessClient::classifyFNFCallable(const ClassifyFNFRequest &request) const
  95. {
  96. auto task = std::make_shared<std::packaged_task<ClassifyFNFOutcome()>>(
  97. [this, request]()
  98. {
  99. return this->classifyFNF(request);
  100. });
  101. asyncExecute(new Runnable([task]() { (*task)(); }));
  102. return task->get_future();
  103. }
  104. ImageprocessClient::DetectCovid19CadOutcome ImageprocessClient::detectCovid19Cad(const DetectCovid19CadRequest &request) const
  105. {
  106. auto endpointOutcome = endpointProvider_->getEndpoint();
  107. if (!endpointOutcome.isSuccess())
  108. return DetectCovid19CadOutcome(endpointOutcome.error());
  109. auto outcome = makeRequest(endpointOutcome.result(), request);
  110. if (outcome.isSuccess())
  111. return DetectCovid19CadOutcome(DetectCovid19CadResult(outcome.result()));
  112. else
  113. return DetectCovid19CadOutcome(outcome.error());
  114. }
  115. void ImageprocessClient::detectCovid19CadAsync(const DetectCovid19CadRequest& request, const DetectCovid19CadAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  116. {
  117. auto fn = [this, request, handler, context]()
  118. {
  119. handler(this, request, detectCovid19Cad(request), context);
  120. };
  121. asyncExecute(new Runnable(fn));
  122. }
  123. ImageprocessClient::DetectCovid19CadOutcomeCallable ImageprocessClient::detectCovid19CadCallable(const DetectCovid19CadRequest &request) const
  124. {
  125. auto task = std::make_shared<std::packaged_task<DetectCovid19CadOutcome()>>(
  126. [this, request]()
  127. {
  128. return this->detectCovid19Cad(request);
  129. });
  130. asyncExecute(new Runnable([task]() { (*task)(); }));
  131. return task->get_future();
  132. }
  133. ImageprocessClient::DetectHipKeypointXRayOutcome ImageprocessClient::detectHipKeypointXRay(const DetectHipKeypointXRayRequest &request) const
  134. {
  135. auto endpointOutcome = endpointProvider_->getEndpoint();
  136. if (!endpointOutcome.isSuccess())
  137. return DetectHipKeypointXRayOutcome(endpointOutcome.error());
  138. auto outcome = makeRequest(endpointOutcome.result(), request);
  139. if (outcome.isSuccess())
  140. return DetectHipKeypointXRayOutcome(DetectHipKeypointXRayResult(outcome.result()));
  141. else
  142. return DetectHipKeypointXRayOutcome(outcome.error());
  143. }
  144. void ImageprocessClient::detectHipKeypointXRayAsync(const DetectHipKeypointXRayRequest& request, const DetectHipKeypointXRayAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  145. {
  146. auto fn = [this, request, handler, context]()
  147. {
  148. handler(this, request, detectHipKeypointXRay(request), context);
  149. };
  150. asyncExecute(new Runnable(fn));
  151. }
  152. ImageprocessClient::DetectHipKeypointXRayOutcomeCallable ImageprocessClient::detectHipKeypointXRayCallable(const DetectHipKeypointXRayRequest &request) const
  153. {
  154. auto task = std::make_shared<std::packaged_task<DetectHipKeypointXRayOutcome()>>(
  155. [this, request]()
  156. {
  157. return this->detectHipKeypointXRay(request);
  158. });
  159. asyncExecute(new Runnable([task]() { (*task)(); }));
  160. return task->get_future();
  161. }
  162. ImageprocessClient::DetectKneeKeypointXRayOutcome ImageprocessClient::detectKneeKeypointXRay(const DetectKneeKeypointXRayRequest &request) const
  163. {
  164. auto endpointOutcome = endpointProvider_->getEndpoint();
  165. if (!endpointOutcome.isSuccess())
  166. return DetectKneeKeypointXRayOutcome(endpointOutcome.error());
  167. auto outcome = makeRequest(endpointOutcome.result(), request);
  168. if (outcome.isSuccess())
  169. return DetectKneeKeypointXRayOutcome(DetectKneeKeypointXRayResult(outcome.result()));
  170. else
  171. return DetectKneeKeypointXRayOutcome(outcome.error());
  172. }
  173. void ImageprocessClient::detectKneeKeypointXRayAsync(const DetectKneeKeypointXRayRequest& request, const DetectKneeKeypointXRayAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  174. {
  175. auto fn = [this, request, handler, context]()
  176. {
  177. handler(this, request, detectKneeKeypointXRay(request), context);
  178. };
  179. asyncExecute(new Runnable(fn));
  180. }
  181. ImageprocessClient::DetectKneeKeypointXRayOutcomeCallable ImageprocessClient::detectKneeKeypointXRayCallable(const DetectKneeKeypointXRayRequest &request) const
  182. {
  183. auto task = std::make_shared<std::packaged_task<DetectKneeKeypointXRayOutcome()>>(
  184. [this, request]()
  185. {
  186. return this->detectKneeKeypointXRay(request);
  187. });
  188. asyncExecute(new Runnable([task]() { (*task)(); }));
  189. return task->get_future();
  190. }
  191. ImageprocessClient::DetectKneeXRayOutcome ImageprocessClient::detectKneeXRay(const DetectKneeXRayRequest &request) const
  192. {
  193. auto endpointOutcome = endpointProvider_->getEndpoint();
  194. if (!endpointOutcome.isSuccess())
  195. return DetectKneeXRayOutcome(endpointOutcome.error());
  196. auto outcome = makeRequest(endpointOutcome.result(), request);
  197. if (outcome.isSuccess())
  198. return DetectKneeXRayOutcome(DetectKneeXRayResult(outcome.result()));
  199. else
  200. return DetectKneeXRayOutcome(outcome.error());
  201. }
  202. void ImageprocessClient::detectKneeXRayAsync(const DetectKneeXRayRequest& request, const DetectKneeXRayAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  203. {
  204. auto fn = [this, request, handler, context]()
  205. {
  206. handler(this, request, detectKneeXRay(request), context);
  207. };
  208. asyncExecute(new Runnable(fn));
  209. }
  210. ImageprocessClient::DetectKneeXRayOutcomeCallable ImageprocessClient::detectKneeXRayCallable(const DetectKneeXRayRequest &request) const
  211. {
  212. auto task = std::make_shared<std::packaged_task<DetectKneeXRayOutcome()>>(
  213. [this, request]()
  214. {
  215. return this->detectKneeXRay(request);
  216. });
  217. asyncExecute(new Runnable([task]() { (*task)(); }));
  218. return task->get_future();
  219. }
  220. ImageprocessClient::DetectLungNoduleOutcome ImageprocessClient::detectLungNodule(const DetectLungNoduleRequest &request) const
  221. {
  222. auto endpointOutcome = endpointProvider_->getEndpoint();
  223. if (!endpointOutcome.isSuccess())
  224. return DetectLungNoduleOutcome(endpointOutcome.error());
  225. auto outcome = makeRequest(endpointOutcome.result(), request);
  226. if (outcome.isSuccess())
  227. return DetectLungNoduleOutcome(DetectLungNoduleResult(outcome.result()));
  228. else
  229. return DetectLungNoduleOutcome(outcome.error());
  230. }
  231. void ImageprocessClient::detectLungNoduleAsync(const DetectLungNoduleRequest& request, const DetectLungNoduleAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  232. {
  233. auto fn = [this, request, handler, context]()
  234. {
  235. handler(this, request, detectLungNodule(request), context);
  236. };
  237. asyncExecute(new Runnable(fn));
  238. }
  239. ImageprocessClient::DetectLungNoduleOutcomeCallable ImageprocessClient::detectLungNoduleCallable(const DetectLungNoduleRequest &request) const
  240. {
  241. auto task = std::make_shared<std::packaged_task<DetectLungNoduleOutcome()>>(
  242. [this, request]()
  243. {
  244. return this->detectLungNodule(request);
  245. });
  246. asyncExecute(new Runnable([task]() { (*task)(); }));
  247. return task->get_future();
  248. }
  249. ImageprocessClient::DetectSpineMRIOutcome ImageprocessClient::detectSpineMRI(const DetectSpineMRIRequest &request) const
  250. {
  251. auto endpointOutcome = endpointProvider_->getEndpoint();
  252. if (!endpointOutcome.isSuccess())
  253. return DetectSpineMRIOutcome(endpointOutcome.error());
  254. auto outcome = makeRequest(endpointOutcome.result(), request);
  255. if (outcome.isSuccess())
  256. return DetectSpineMRIOutcome(DetectSpineMRIResult(outcome.result()));
  257. else
  258. return DetectSpineMRIOutcome(outcome.error());
  259. }
  260. void ImageprocessClient::detectSpineMRIAsync(const DetectSpineMRIRequest& request, const DetectSpineMRIAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  261. {
  262. auto fn = [this, request, handler, context]()
  263. {
  264. handler(this, request, detectSpineMRI(request), context);
  265. };
  266. asyncExecute(new Runnable(fn));
  267. }
  268. ImageprocessClient::DetectSpineMRIOutcomeCallable ImageprocessClient::detectSpineMRICallable(const DetectSpineMRIRequest &request) const
  269. {
  270. auto task = std::make_shared<std::packaged_task<DetectSpineMRIOutcome()>>(
  271. [this, request]()
  272. {
  273. return this->detectSpineMRI(request);
  274. });
  275. asyncExecute(new Runnable([task]() { (*task)(); }));
  276. return task->get_future();
  277. }
  278. ImageprocessClient::GetAsyncJobResultOutcome ImageprocessClient::getAsyncJobResult(const GetAsyncJobResultRequest &request) const
  279. {
  280. auto endpointOutcome = endpointProvider_->getEndpoint();
  281. if (!endpointOutcome.isSuccess())
  282. return GetAsyncJobResultOutcome(endpointOutcome.error());
  283. auto outcome = makeRequest(endpointOutcome.result(), request);
  284. if (outcome.isSuccess())
  285. return GetAsyncJobResultOutcome(GetAsyncJobResultResult(outcome.result()));
  286. else
  287. return GetAsyncJobResultOutcome(outcome.error());
  288. }
  289. void ImageprocessClient::getAsyncJobResultAsync(const GetAsyncJobResultRequest& request, const GetAsyncJobResultAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  290. {
  291. auto fn = [this, request, handler, context]()
  292. {
  293. handler(this, request, getAsyncJobResult(request), context);
  294. };
  295. asyncExecute(new Runnable(fn));
  296. }
  297. ImageprocessClient::GetAsyncJobResultOutcomeCallable ImageprocessClient::getAsyncJobResultCallable(const GetAsyncJobResultRequest &request) const
  298. {
  299. auto task = std::make_shared<std::packaged_task<GetAsyncJobResultOutcome()>>(
  300. [this, request]()
  301. {
  302. return this->getAsyncJobResult(request);
  303. });
  304. asyncExecute(new Runnable([task]() { (*task)(); }));
  305. return task->get_future();
  306. }
  307. ImageprocessClient::RunCTRegistrationOutcome ImageprocessClient::runCTRegistration(const RunCTRegistrationRequest &request) const
  308. {
  309. auto endpointOutcome = endpointProvider_->getEndpoint();
  310. if (!endpointOutcome.isSuccess())
  311. return RunCTRegistrationOutcome(endpointOutcome.error());
  312. auto outcome = makeRequest(endpointOutcome.result(), request);
  313. if (outcome.isSuccess())
  314. return RunCTRegistrationOutcome(RunCTRegistrationResult(outcome.result()));
  315. else
  316. return RunCTRegistrationOutcome(outcome.error());
  317. }
  318. void ImageprocessClient::runCTRegistrationAsync(const RunCTRegistrationRequest& request, const RunCTRegistrationAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  319. {
  320. auto fn = [this, request, handler, context]()
  321. {
  322. handler(this, request, runCTRegistration(request), context);
  323. };
  324. asyncExecute(new Runnable(fn));
  325. }
  326. ImageprocessClient::RunCTRegistrationOutcomeCallable ImageprocessClient::runCTRegistrationCallable(const RunCTRegistrationRequest &request) const
  327. {
  328. auto task = std::make_shared<std::packaged_task<RunCTRegistrationOutcome()>>(
  329. [this, request]()
  330. {
  331. return this->runCTRegistration(request);
  332. });
  333. asyncExecute(new Runnable([task]() { (*task)(); }));
  334. return task->get_future();
  335. }
  336. ImageprocessClient::TranslateMedOutcome ImageprocessClient::translateMed(const TranslateMedRequest &request) const
  337. {
  338. auto endpointOutcome = endpointProvider_->getEndpoint();
  339. if (!endpointOutcome.isSuccess())
  340. return TranslateMedOutcome(endpointOutcome.error());
  341. auto outcome = makeRequest(endpointOutcome.result(), request);
  342. if (outcome.isSuccess())
  343. return TranslateMedOutcome(TranslateMedResult(outcome.result()));
  344. else
  345. return TranslateMedOutcome(outcome.error());
  346. }
  347. void ImageprocessClient::translateMedAsync(const TranslateMedRequest& request, const TranslateMedAsyncHandler& handler, const std::shared_ptr<const AsyncCallerContext>& context) const
  348. {
  349. auto fn = [this, request, handler, context]()
  350. {
  351. handler(this, request, translateMed(request), context);
  352. };
  353. asyncExecute(new Runnable(fn));
  354. }
  355. ImageprocessClient::TranslateMedOutcomeCallable ImageprocessClient::translateMedCallable(const TranslateMedRequest &request) const
  356. {
  357. auto task = std::make_shared<std::packaged_task<TranslateMedOutcome()>>(
  358. [this, request]()
  359. {
  360. return this->translateMed(request);
  361. });
  362. asyncExecute(new Runnable([task]() { (*task)(); }));
  363. return task->get_future();
  364. }