dispatch_manager.cpp 25 KB

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  1. //
  2. // Created by huli on 2020/7/20.
  3. //
  4. #include "dispatch_manager.h"
  5. #include "../tool/proto_tool.h"
  6. #include <cstdlib>
  7. Dispatch_manager::Dispatch_manager()
  8. {
  9. m_dispatch_manager_status = E_DISPATCH_MANAGER_UNKNOW;
  10. m_dispatch_manager_id = -1;
  11. m_catcher_size = 0;
  12. m_carrier_size = 0;
  13. m_passageway_size = 0;
  14. m_process_thread_queue = nullptr;
  15. m_dispatch_manager_thread = nullptr;
  16. }
  17. Dispatch_manager::~Dispatch_manager()
  18. {
  19. dispatch_manager_uninit();
  20. }
  21. //调度管理 初始化
  22. Error_manager Dispatch_manager::dispatch_manager_init(int dispatch_manager_id)
  23. {
  24. m_dispatch_manager_id = dispatch_manager_id;
  25. return dispatch_manager_init_from_protobuf(DISPATCH_DEVICE_PARAMETER_PATH);
  26. }
  27. //调度管理 初始化
  28. Error_manager Dispatch_manager::dispatch_manager_init()
  29. {
  30. return dispatch_manager_init_from_protobuf(DISPATCH_DEVICE_PARAMETER_PATH);
  31. }
  32. //初始化 调度管理 模块。从文件读取
  33. Error_manager Dispatch_manager::dispatch_manager_init_from_protobuf(std::string prototxt_path)
  34. {
  35. Dispatch_proto::Dispatch_device_parameter_all t_dispatch_device_parameter_all;
  36. if(! proto_tool::read_proto_param(prototxt_path,t_dispatch_device_parameter_all) )
  37. {
  38. return Error_manager(DISPATCH_MANAGER_READ_PROTOBUF_ERROR,MINOR_ERROR,
  39. "Dispatch_manager read_proto_param failed");
  40. }
  41. return dispatch_manager_init_from_protobuf(t_dispatch_device_parameter_all);
  42. }
  43. //初始化 调度管理 模块。从protobuf读取
  44. Error_manager Dispatch_manager::dispatch_manager_init_from_protobuf(Dispatch_proto::Dispatch_device_parameter_all& dispatch_device_parameter_all)
  45. {
  46. LOG(INFO) << " ----Dispatch_manager::dispatch_manager_init_from_protobuf----- "<< this;
  47. Error_manager t_error;
  48. m_catcher_size = dispatch_device_parameter_all.catcher_parameters_size();
  49. for (int i = 0; i < m_catcher_size; ++i)
  50. {
  51. std::shared_ptr<Dispatch_device_base> tp_dispatch_device_base(new Catcher);
  52. Catcher* tp_catcher = (Catcher*)tp_dispatch_device_base.get();
  53. int t_id = dispatch_device_parameter_all.catcher_parameters(i).id();
  54. int t_key = dispatch_device_parameter_all.catcher_parameters(i).key();
  55. tp_catcher->dispatch_device_base_init(t_id, t_key);
  56. m_catcher_map[t_id] = tp_dispatch_device_base;
  57. }
  58. m_carrier_size = dispatch_device_parameter_all.carrier_parameters_size();
  59. for (int i = 0; i < m_carrier_size; ++i)
  60. {
  61. std::shared_ptr<Dispatch_device_base> tp_dispatch_device_base(new Carrier);
  62. Carrier* tp_carrier = (Carrier*)tp_dispatch_device_base.get();
  63. int t_id = dispatch_device_parameter_all.carrier_parameters(i).id();
  64. int t_key = dispatch_device_parameter_all.carrier_parameters(i).key();
  65. tp_carrier->dispatch_device_base_init(t_id, t_key);
  66. m_carrier_map[t_id] = tp_dispatch_device_base;
  67. }
  68. m_passageway_size = dispatch_device_parameter_all.passageway_parameters_size();
  69. for (int i = 0; i < m_passageway_size; ++i)
  70. {
  71. std::shared_ptr<Dispatch_device_base> tp_dispatch_device_base(new Passageway);
  72. Passageway* tp_passageway = (Passageway*)tp_dispatch_device_base.get();
  73. int t_id = dispatch_device_parameter_all.passageway_parameters(i).id();
  74. int t_key = dispatch_device_parameter_all.passageway_parameters(i).key();
  75. tp_passageway->dispatch_device_base_init(t_id, t_key);
  76. m_passageway_map[t_id] = tp_dispatch_device_base;
  77. }
  78. //调度管理 设备复位
  79. t_error = dispatch_manager_device_reset();
  80. if ( t_error != Error_code::SUCCESS )
  81. {
  82. return t_error;
  83. }
  84. //创建线程池
  85. if (m_process_thread_queue == nullptr) {
  86. m_process_thread_queue = tq::TQFactory::CreateDefaultQueue();
  87. m_process_thread_queue->Start(48);
  88. }
  89. m_dispatch_manager_status = E_DISPATCH_MANAGER_READY;
  90. return Error_code::SUCCESS;
  91. }
  92. //调度管理 反初始化
  93. Error_manager Dispatch_manager::dispatch_manager_uninit()
  94. {
  95. if (m_dispatch_manager_thread)
  96. {
  97. m_dispatch_manager_condition.kill_all();
  98. }
  99. if (m_dispatch_manager_thread)
  100. {
  101. m_dispatch_manager_thread->join();
  102. delete m_dispatch_manager_thread;
  103. m_dispatch_manager_thread = NULL;
  104. }
  105. //等待线程池完成
  106. if(m_process_thread_queue!=nullptr) {
  107. m_process_thread_queue->WaitForFinish();
  108. m_process_thread_queue->Stop();
  109. m_process_thread_queue = nullptr;
  110. }
  111. m_dispatch_manager_status = E_DISPATCH_MANAGER_UNKNOW;
  112. m_dispatch_manager_id = -1;
  113. return Error_code::SUCCESS;
  114. }
  115. //调度管理 设备复位
  116. Error_manager Dispatch_manager::dispatch_manager_device_reset()
  117. {
  118. //以后再写
  119. return Error_code::SUCCESS;
  120. }
  121. //对外的接口函数,负责接受并处理任务单,
  122. Error_manager Dispatch_manager::execute_task(Dispatch_manager::Dispatch_motion_direction dispatch_motion_direction)
  123. {
  124. return Error_code::SUCCESS;
  125. // std::this_thread::sleep_for(std::chrono::seconds(rand()%3+3));
  126. if ( dispatch_motion_direction == E_PICKUP_CAR )
  127. {
  128. return Error_code::SUCCESS;
  129. }
  130. // return Error_code::SUCCESS;
  131. // srand(0);
  132. unsigned int t_probability = rand();
  133. if ( t_probability%100 >=20 )
  134. {
  135. return Error_code::SUCCESS;
  136. }
  137. else
  138. {
  139. return Error_manager(Error_code::ERROR, Error_level::MINOR_ERROR,
  140. " Dispatch_manager::execute_task() error ");
  141. }
  142. }
  143. //检查能否执行消息指令
  144. Error_manager Dispatch_manager::check_execute_msg(Communication_message* p_msg)
  145. {
  146. Error_manager t_error = Dispatch_manager::get_instance_references().check_status();
  147. if ( t_error == Error_code::SUCCESS )
  148. {
  149. return Error_code::SUCCESS;
  150. }
  151. else if (t_error.get_error_level() == NEGLIGIBLE_ERROR)//一级故障,轻微故障,
  152. {
  153. std::cout << "Dispatch_manager _is_busy , " << std::endl;
  154. //返回繁忙之后, 通信模块1秒后再次调用check
  155. return Error_code::COMMUNICATION_EXCUTER_IS_BUSY;
  156. }
  157. switch ( p_msg->get_message_type() )
  158. {
  159. case Communication_message::Message_type::eDispatch_request_msg:
  160. {
  161. message::Dispatch_request_msg t_dispatch_request_msg;
  162. //针对消息类型, 对消息进行二次解析
  163. if (t_dispatch_request_msg.ParseFromString(p_msg->get_message_buf()))
  164. {
  165. //创建一条答复消息
  166. message::Dispatch_response_msg t_dispatch_response_msg;
  167. t_dispatch_response_msg.mutable_base_info()->set_msg_type(message::Message_type::eDispatch_response_msg);
  168. t_dispatch_response_msg.mutable_base_info()->set_timeout_ms(5000);
  169. t_dispatch_response_msg.mutable_base_info()->set_sender(message::Communicator::eDispatch_manager);
  170. t_dispatch_response_msg.mutable_base_info()->set_receiver(message::Communicator::eMain);
  171. t_dispatch_response_msg.set_command_key(t_dispatch_request_msg.command_key());
  172. t_dispatch_response_msg.mutable_error_manager()->set_error_code(t_error.get_error_code());
  173. t_dispatch_response_msg.mutable_error_manager()->set_error_level((message::Error_level)t_error.get_error_level());
  174. t_dispatch_response_msg.mutable_error_manager()->set_error_description(t_error.get_error_description());
  175. std::string t_msg = t_dispatch_response_msg.SerializeAsString();
  176. System_communication::get_instance_references().encapsulate_msg(t_msg);
  177. LOG(INFO) << " System_executor::check_execute_msg executer status error "<< this;
  178. return t_error;
  179. }
  180. else
  181. {
  182. LOG(INFO) << " System_executor::check_executer Second analysis ERROR "<< this;
  183. return Error_manager(Error_code::SYSTEM_EXECUTOR_PARSE_ERROR, Error_level::MINOR_ERROR,
  184. " message::Measure_request_msg ParseFromString error ");
  185. }
  186. }
  187. case Communication_message::Message_type::eDispatch_plan_response_msg:
  188. {
  189. return Error_code::SUCCESS;
  190. break;
  191. }
  192. case Communication_message::Message_type::eDispatch_control_request_msg:
  193. {
  194. return Error_code::SUCCESS;
  195. break;
  196. }
  197. default :
  198. //无效的消息,
  199. return Error_manager(Error_code::INVALID_MESSAGE, Error_level::NEGLIGIBLE_ERROR,
  200. " INVALID_MESSAGE error ");
  201. break;
  202. }
  203. }
  204. //检查状态
  205. Error_manager Dispatch_manager::check_status()
  206. {
  207. if ( m_dispatch_manager_status == E_DISPATCH_MANAGER_READY )
  208. {
  209. return Error_code::SUCCESS;
  210. }
  211. else if ( m_dispatch_manager_status == E_DISPATCH_MANAGER_STORE || m_dispatch_manager_status == E_DISPATCH_MANAGER_STORE )
  212. {
  213. return Error_manager(Error_code::DISPATCH_MANAGER_STATUS_BUSY, Error_level::NEGLIGIBLE_ERROR,
  214. " Dispatch_manager::check_status() error ");
  215. }
  216. else
  217. {
  218. return Error_manager(Error_code::DISPATCH_MANAGER_STATUS_ERROR, Error_level::MINOR_ERROR,
  219. " Dispatch_manager::check_status() error ");
  220. }
  221. return Error_code::SUCCESS;
  222. }
  223. //调度模块 //执行搬运请求(主控->调度管理)
  224. Error_manager Dispatch_manager::execute_for_dispatch_request_msg(message::Dispatch_request_msg& dispatch_request_msg)
  225. {
  226. LOG(INFO) << " ---Dispatch_manager::execute_for_dispatch_request_msg--- "<< dispatch_request_msg.DebugString() << " "<< this;
  227. LOG(INFO) << " dispatch_request_msg->m_command_key = "<<dispatch_request_msg.command_key()<< " "<< this;
  228. Error_manager t_error;
  229. //创建调度流程
  230. Dispatch_process * tp_dispatch_process(new Dispatch_process);
  231. t_error = tp_dispatch_process->Dispatch_process_init(dispatch_request_msg);
  232. if ( t_error != Error_code::SUCCESS )
  233. {
  234. delete(tp_dispatch_process);
  235. return t_error;
  236. }
  237. {//加锁
  238. std::unique_lock<std::mutex> t_lock(m_lock);
  239. //流程缓存到map
  240. if (tp_dispatch_process->m_dispatch_process_type ==
  241. Dispatch_process::Dispatch_process_type::DISPATCH_PROCESS_STORE)
  242. {
  243. m_process_store_list.push_back(tp_dispatch_process);
  244. //这里就不查重了, 需要主控保证不会重复发送...
  245. // if (m_key_to_dispatch_process_store_map.find(tp_dispatch_process->m_command_key) !=
  246. // m_key_to_dispatch_process_store_map.end())
  247. // {
  248. // t_error = Error_manager(Error_code::DISPATCH_PROCESS_COMMAND_KEY_REPEAT, Error_level::MINOR_ERROR,
  249. // " tp_dispatch_process->m_command_key is repeat ");
  250. // }
  251. // else
  252. // {
  253. // m_key_to_dispatch_process_store_map[tp_dispatch_process->m_command_key] = tp_dispatch_process;
  254. // }
  255. }
  256. else if (tp_dispatch_process->m_dispatch_process_type ==
  257. Dispatch_process::Dispatch_process_type::DISPATCH_PROCESS_PICKUP)
  258. {
  259. m_process_pickup_list.push_back(tp_dispatch_process);
  260. //这里就不查重了, 需要主控保证不会重复发送...
  261. // if (m_key_to_dispatch_process_pickup_map.find(tp_dispatch_process->m_command_key) !=
  262. // m_key_to_dispatch_process_pickup_map.end())
  263. // {
  264. // t_error = Error_manager(Error_code::DISPATCH_PROCESS_COMMAND_KEY_REPEAT, Error_level::MINOR_ERROR,
  265. // " tp_dispatch_process->m_command_key is repeat ");
  266. // }
  267. // else
  268. // {
  269. // m_key_to_dispatch_process_pickup_map[tp_dispatch_process->m_command_key] = tp_dispatch_process;
  270. // }
  271. }
  272. else
  273. {
  274. t_error = Error_manager(Error_code::DISPATCH_PROCESS_TASK_STATUS_ERROR, Error_level::MINOR_ERROR,
  275. " tp_dispatch_process->m_dispatch_process_type PARAMRTER ERROR ");
  276. }
  277. }
  278. if ( t_error != Error_code::SUCCESS )
  279. {
  280. delete(tp_dispatch_process);
  281. send_dispatch_response_msg_with_error(dispatch_request_msg, t_error);
  282. return t_error;
  283. }
  284. else
  285. {
  286. //把流程添加到 调度线程池里面, 里面的线程池会自动回收调度流程的内存
  287. m_process_thread_queue->AddTask(tp_dispatch_process);
  288. }
  289. return Error_code::SUCCESS;
  290. }
  291. //调度模块 答复数据异常
  292. Error_manager Dispatch_manager::send_dispatch_response_msg_with_error(message::Dispatch_request_msg &dispatch_request_msg, Error_manager error)
  293. {
  294. message::Dispatch_response_msg t_dispatch_response_msg;
  295. t_dispatch_response_msg.mutable_base_info()->set_msg_type(message::Message_type::eDispatch_response_msg);
  296. t_dispatch_response_msg.mutable_base_info()->set_timeout_ms(dispatch_request_msg.base_info().timeout_ms());
  297. t_dispatch_response_msg.mutable_base_info()->set_sender(message::Communicator::eDispatch_manager);
  298. t_dispatch_response_msg.mutable_base_info()->set_receiver(message::Communicator::eMain);
  299. t_dispatch_response_msg.set_command_key(dispatch_request_msg.command_key());
  300. t_dispatch_response_msg.mutable_error_manager()->set_error_code(error.get_error_code());
  301. t_dispatch_response_msg.mutable_error_manager()->set_error_level((message::Error_level)error.get_error_level());
  302. t_dispatch_response_msg.mutable_error_manager()->set_error_description(error.get_error_description(), error.get_description_length());
  303. System_communication::get_instance_references().encapsulate_msg(t_dispatch_response_msg.SerializeAsString());
  304. return Error_code::SUCCESS;
  305. }
  306. //调度模块 //调度总规划的答复(调度算法->调度管理)
  307. Error_manager Dispatch_manager::execute_for_dispatch_plan_response_msg(message::Dispatch_plan_response_msg &dispatch_plan_response_msg)
  308. {
  309. LOG(INFO) << " ---Dispatch_manager::execute_for_dispatch_plan_response_msg--- "<< this;
  310. LOG(INFO) << " dispatch_plan_response_msg->m_command_key = "<<dispatch_plan_response_msg.command_key()<< " "<< this;
  311. Error_manager t_error;
  312. std::unique_lock<std::mutex> t_lock(m_lock);
  313. //使用 command_key 找到对应的流程
  314. std::string t_command_key = dispatch_plan_response_msg.command_key();
  315. for (auto iter = m_key_to_dispatch_process_store_map.begin(); iter != m_key_to_dispatch_process_store_map.end(); ++iter)
  316. {
  317. if ( 0 == iter->first.compare(0, COMMAND_KEY_DEFAULT_LENGTH, t_command_key, 0, COMMAND_KEY_DEFAULT_LENGTH) )
  318. {
  319. t_error = iter->second->check_process_ready() ;
  320. if ( t_error != Error_code::SUCCESS )
  321. {
  322. return t_error;
  323. }
  324. //把消息 写入流程
  325. std::unique_lock<std::mutex> t_lock(iter->second->m_lock);
  326. iter->second->m_dispatch_plan_response_msg = dispatch_plan_response_msg;
  327. return Error_code::SUCCESS;
  328. }
  329. }
  330. for (auto iter = m_key_to_dispatch_process_pickup_map.begin(); iter != m_key_to_dispatch_process_pickup_map.end(); ++iter)
  331. {
  332. if ( 0 == iter->first.compare(0, COMMAND_KEY_DEFAULT_LENGTH, t_command_key, 0, COMMAND_KEY_DEFAULT_LENGTH) )
  333. {
  334. t_error = iter->second->check_process_ready() ;
  335. if ( t_error != Error_code::SUCCESS )
  336. {
  337. return t_error;
  338. }
  339. //把消息 写入流程
  340. std::unique_lock<std::mutex> t_lock(iter->second->m_lock);
  341. iter->second->m_dispatch_plan_response_msg = dispatch_plan_response_msg;
  342. return Error_code::SUCCESS;
  343. }
  344. }
  345. return Error_code::SUCCESS;
  346. }
  347. //调度模块 //调度控制的任务请求(调度算法->调度管理)
  348. Error_manager Dispatch_manager::execute_for_dispatch_control_request_msg(message::Dispatch_control_request_msg &dispatch_control_request_msg)
  349. {
  350. LOG(INFO) << " ---Dispatch_manager::execute_for_dispatch_control_request_msg--- "<< this;
  351. LOG(INFO) << " dispatch_control_request_msg->m_command_key = "<<dispatch_control_request_msg.command_key()<< " "<< this;
  352. Error_manager t_error;
  353. std::unique_lock<std::mutex> t_lock(m_lock);
  354. //使用 command_key 找到对应的流程
  355. std::string t_command_key = dispatch_control_request_msg.command_key();
  356. for (auto iter = m_key_to_dispatch_process_store_map.begin(); iter != m_key_to_dispatch_process_store_map.end(); ++iter)
  357. {
  358. if ( 0 == iter->first.compare(0, COMMAND_KEY_DEFAULT_LENGTH, t_command_key, 0, COMMAND_KEY_DEFAULT_LENGTH) )
  359. {
  360. t_error = iter->second->check_process_ready() ;
  361. if ( t_error != Error_code::SUCCESS )
  362. {
  363. return t_error;
  364. }
  365. //把消息 写入流程
  366. std::unique_lock<std::mutex> t_lock(iter->second->m_lock);
  367. int t_dispatch_device_type = dispatch_control_request_msg.dispatch_device_type();
  368. if ( iter->second->m_dispatch_control_node_map.find(t_dispatch_device_type) == iter->second->m_dispatch_control_node_map.end() )
  369. {
  370. Dispatch_process::Dispatch_control_node t_dispatch_control_node;
  371. iter->second->m_dispatch_control_node_map[t_dispatch_device_type] = t_dispatch_control_node;
  372. iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_status = Dispatch_process::Dispatch_control_status::DISPATCH_CONTROL_READY;
  373. }
  374. iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_request_msg = dispatch_control_request_msg;
  375. // iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_status = Dispatch_process::Dispatch_control_status::DISPATCH_CONTROL_READY;
  376. return Error_code::SUCCESS;
  377. }
  378. }
  379. for (auto iter = m_key_to_dispatch_process_pickup_map.begin(); iter != m_key_to_dispatch_process_pickup_map.end(); ++iter)
  380. {
  381. if ( 0 == iter->first.compare(0, COMMAND_KEY_DEFAULT_LENGTH, t_command_key, 0, COMMAND_KEY_DEFAULT_LENGTH) )
  382. {
  383. t_error = iter->second->check_process_ready() ;
  384. if ( t_error != Error_code::SUCCESS )
  385. {
  386. return t_error;
  387. }
  388. //把消息 写入流程
  389. std::unique_lock<std::mutex> t_lock(iter->second->m_lock);
  390. int t_dispatch_device_type = dispatch_control_request_msg.dispatch_device_type();
  391. if ( iter->second->m_dispatch_control_node_map.find(t_dispatch_device_type) == iter->second->m_dispatch_control_node_map.end() )
  392. {
  393. Dispatch_process::Dispatch_control_node t_dispatch_control_node;
  394. iter->second->m_dispatch_control_node_map[t_dispatch_device_type] = t_dispatch_control_node;
  395. iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_status = Dispatch_process::Dispatch_control_status::DISPATCH_CONTROL_READY;
  396. }
  397. iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_request_msg = dispatch_control_request_msg;
  398. // iter->second->m_dispatch_control_node_map[t_dispatch_device_type].m_dispatch_control_status = Dispatch_process::Dispatch_control_status::DISPATCH_CONTROL_READY;
  399. return Error_code::SUCCESS;
  400. }
  401. }
  402. return Error_code::SUCCESS;
  403. }
  404. //定时发送 调度管理的状态
  405. Error_manager Dispatch_manager::encapsulate_send_dispatch_manager_status()
  406. {
  407. Error_manager t_error;
  408. int t_dispatch_manager_id = get_dispatch_manager_id();
  409. std::string t_msg;
  410. //创建一条 调度管理总管理的状态
  411. message::Dispatch_manager_status_msg t_dispatch_manager_status_msg;
  412. t_dispatch_manager_status_msg.mutable_base_info()->set_msg_type(message::Message_type::eDispatch_manager_status_msg);
  413. t_dispatch_manager_status_msg.mutable_base_info()->set_timeout_ms(5000);
  414. t_dispatch_manager_status_msg.mutable_base_info()->set_sender(message::Communicator::eDispatch_manager);
  415. t_dispatch_manager_status_msg.mutable_base_info()->set_receiver(message::Communicator::eEmpty);
  416. t_dispatch_manager_status_msg.set_dispatch_id(t_dispatch_manager_id);
  417. Dispatch_manager::Dispatch_manager_status t_dispatch_manager_status = get_dispatch_manager_status();
  418. t_dispatch_manager_status_msg.set_dispatch_manager_status((message::Dispatch_manager_status)t_dispatch_manager_status);
  419. for (auto iter = m_catcher_map.begin(); iter != m_catcher_map.end(); ++iter)
  420. {
  421. Catcher* tp_catcher = (Catcher*)iter->second.get();
  422. message::Catcher_data * tp_catcher_data = t_dispatch_manager_status_msg.mutable_catcher_data_map()->Add();
  423. switch ( tp_catcher->get_device_id() )
  424. {
  425. case 0:
  426. {
  427. tp_catcher_data->set_dispatch_device_type(message::Dispatch_device_type::ROBOT_1);
  428. break;
  429. }
  430. case 1:
  431. {
  432. tp_catcher_data->set_dispatch_device_type(message::Dispatch_device_type::ROBOT_2);
  433. break;
  434. }
  435. default:
  436. {
  437. break;
  438. }
  439. }
  440. if ( tp_catcher->get_dispatch_device_status() >= Dispatch_device_base::Dispatch_device_status::DISPATCH_DEVICE_BUSY &&
  441. tp_catcher->get_dispatch_device_status() <= Dispatch_device_base::Dispatch_device_status::DISPATCH_DEVICE_THREE_LEVEL_WORK)
  442. {
  443. tp_catcher_data->set_dispatch_device_status(message::Dispatch_device_status::DISPATCH_DEVICE_BUSY);
  444. }
  445. else
  446. {
  447. tp_catcher_data->set_dispatch_device_status((message::Dispatch_device_status)tp_catcher->get_dispatch_device_status());
  448. }
  449. tp_catcher_data->set_device_id(tp_catcher->get_device_id());
  450. tp_catcher_data->set_actual_device_status((message::Hardware_device_status)tp_catcher->m_actual_device_status);
  451. tp_catcher_data->set_actual_load_status((message::Load_status)tp_catcher->m_actual_load_status);
  452. tp_catcher_data->set_actual_coordinates_id(tp_catcher->m_actual_coordinates_id);
  453. tp_catcher_data->set_actual_x(tp_catcher->m_actual_x);
  454. tp_catcher_data->set_actual_y(tp_catcher->m_actual_y);
  455. tp_catcher_data->set_actual_b(tp_catcher->m_actual_b);
  456. tp_catcher_data->set_actual_z(tp_catcher->m_actual_z);
  457. tp_catcher_data->set_actual_d1(tp_catcher->m_actual_d1);
  458. tp_catcher_data->set_actual_d2(tp_catcher->m_actual_d2);
  459. tp_catcher_data->set_actual_clamp_motion1((message::Clamp_motion)tp_catcher->m_actual_clamp_motion1);
  460. tp_catcher_data->set_actual_clamp_motion2((message::Clamp_motion)tp_catcher->m_actual_clamp_motion2);
  461. tp_catcher_data->set_actual_clamp_motion3((message::Clamp_motion)tp_catcher->m_actual_clamp_motion3);
  462. tp_catcher_data->set_actual_clamp_motion4((message::Clamp_motion)tp_catcher->m_actual_clamp_motion4);
  463. std::string t_actual_error_code((char*)tp_catcher->m_actual_error_code, 50);
  464. tp_catcher_data->set_actual_error_code(t_actual_error_code);
  465. std::string t_actual_warning_code((char*)tp_catcher->m_actual_warning_code, 50);
  466. tp_catcher_data->set_actual_error_code(t_actual_warning_code);
  467. tp_catcher_data->set_actual_error_code(tp_catcher->m_actual_error_description);
  468. }
  469. for (auto iter = m_carrier_map.begin(); iter != m_carrier_map.end(); ++iter)
  470. {
  471. Carrier* tp_carrier = (Carrier*)iter->second.get();
  472. message::Carrier_data * tp_carrier_data = t_dispatch_manager_status_msg.mutable_carrier_data_map()->Add();
  473. switch ( tp_carrier->get_device_id() )
  474. {
  475. case 0:
  476. {
  477. tp_carrier_data->set_dispatch_device_type(message::Dispatch_device_type::CARRIER_1);
  478. break;
  479. }
  480. case 1:
  481. {
  482. tp_carrier_data->set_dispatch_device_type(message::Dispatch_device_type::CARRIER_2);
  483. break;
  484. }
  485. case 2:
  486. {
  487. tp_carrier_data->set_dispatch_device_type(message::Dispatch_device_type::CARRIER_3);
  488. break;
  489. }
  490. default:
  491. {
  492. break;
  493. }
  494. }
  495. if ( tp_carrier->get_dispatch_device_status() >= Dispatch_device_base::Dispatch_device_status::DISPATCH_DEVICE_BUSY &&
  496. tp_carrier->get_dispatch_device_status() <= Dispatch_device_base::Dispatch_device_status::DISPATCH_DEVICE_THREE_LEVEL_WORK)
  497. {
  498. tp_carrier_data->set_dispatch_device_status(message::Dispatch_device_status::DISPATCH_DEVICE_BUSY);
  499. }
  500. else
  501. {
  502. tp_carrier_data->set_dispatch_device_status((message::Dispatch_device_status)tp_carrier->get_dispatch_device_status());
  503. }
  504. tp_carrier_data->set_device_id(tp_carrier->get_device_id());
  505. tp_carrier_data->set_actual_device_status((message::Hardware_device_status)tp_carrier->m_actual_device_status);
  506. tp_carrier_data->set_actual_load_status((message::Load_status)tp_carrier->m_actual_load_status);
  507. tp_carrier_data->set_actual_coordinates_id(tp_carrier->m_actual_coordinates_id);
  508. tp_carrier_data->set_actual_x(tp_carrier->m_actual_x);
  509. tp_carrier_data->set_actual_y(tp_carrier->m_actual_y);
  510. tp_carrier_data->set_actual_z(tp_carrier->m_actual_z);
  511. tp_carrier_data->set_actual_y1(tp_carrier->m_actual_y1);
  512. tp_carrier_data->set_actual_y2(tp_carrier->m_actual_y2);
  513. tp_carrier_data->set_actual_clamp_motion1((message::Clamp_motion)tp_carrier->m_actual_clamp_motion1);
  514. tp_carrier_data->set_actual_clamp_motion2((message::Clamp_motion)tp_carrier->m_actual_clamp_motion2);
  515. tp_carrier_data->set_actual_small_sports_car_motion((message::Small_sports_car_motion)tp_carrier->m_actual_small_sports_car_motion);
  516. tp_carrier_data->set_actual_joint_motion_x1((message::Joint_motion)tp_carrier->m_actual_joint_motion_x1);
  517. tp_carrier_data->set_actual_joint_motion_x2((message::Joint_motion)tp_carrier->m_actual_joint_motion_x2);
  518. std::string t_actual_error_code((char*)tp_carrier->m_actual_error_code, 50);
  519. tp_carrier_data->set_actual_error_code(t_actual_error_code);
  520. std::string t_actual_warning_code((char*)tp_carrier->m_actual_warning_code, 50);
  521. tp_carrier_data->set_actual_error_code(t_actual_warning_code);
  522. tp_carrier_data->set_actual_error_code(tp_carrier->m_actual_error_description);
  523. }
  524. t_msg = t_dispatch_manager_status_msg.SerializeAsString();
  525. System_communication::get_instance_references().encapsulate_msg(t_msg);
  526. // std::cout << " huli test :::: " << " 12312312312312 = " << t_dispatch_manager_status_msg.DebugString() << std::endl;
  527. // std::cout << " huli test :::: " << " 123123ggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggggg12312312 = " << 123 << std::endl;
  528. return Error_code::SUCCESS;
  529. }
  530. //在流程的map 里面释放指定的流程
  531. Error_manager Dispatch_manager::release_dispatch_process(std::string command_key)
  532. {
  533. std::unique_lock<std::mutex> t_lock(m_lock);
  534. auto iter1 = m_key_to_dispatch_process_store_map.find(command_key);
  535. if ( iter1 != m_key_to_dispatch_process_store_map.end())
  536. {
  537. m_key_to_dispatch_process_store_map.erase(iter1);
  538. }
  539. auto iter2 = m_key_to_dispatch_process_pickup_map.find(command_key);
  540. if ( iter2 != m_key_to_dispatch_process_pickup_map.end())
  541. {
  542. m_key_to_dispatch_process_pickup_map.erase(iter2);
  543. }
  544. return Error_code::SUCCESS;
  545. }
  546. Dispatch_manager::Dispatch_manager_status Dispatch_manager::get_dispatch_manager_status()
  547. {
  548. return m_dispatch_manager_status;
  549. }
  550. int Dispatch_manager::get_dispatch_manager_id()
  551. {
  552. return m_dispatch_manager_id;
  553. }
  554. void Dispatch_manager::set_dispatch_manager_id(int dispatch_manager_id)
  555. {
  556. m_dispatch_manager_id = dispatch_manager_id;
  557. }