CcosThread.cpp 17 KB

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  1. #include "CcosThread.h"
  2. #include "MsgQueue.h"
  3. #include <iostream>
  4. #include <sys/time.h>
  5. #include <errno.h>
  6. #include <ctime>
  7. #include <thread>
  8. #include <stdexcept>
  9. #include <sstream>
  10. // 线程安全日志锁
  11. static std::mutex g_logMutex;
  12. #define LOG(...) { std::lock_guard<std::mutex> lock(g_logMutex); std::cout << __VA_ARGS__ << std::endl; }
  13. #define ERR_LOG(...) { std::lock_guard<std::mutex> lock(g_logMutex); std::cerr << __VA_ARGS__ << std::endl; }
  14. // Thread_Base 实现
  15. Thread_Base::Thread_Base(void)
  16. : m_Base_Thread(0),
  17. m_ThreadID(0),
  18. m_ThreadRunning(false),
  19. m_ExitRequested(false),
  20. m_strName(""),
  21. m_pThreadLogger(nullptr)
  22. {
  23. LOG("Creating exit/work/run events");
  24. m_ExitFlag = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  25. m_WorkFlag = LinuxEvent::CreateEvent(LinuxEvent::AUTO_RESET, false);
  26. m_RunFlag = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  27. if (!m_ExitFlag || !m_WorkFlag || !m_RunFlag) {
  28. throw std::runtime_error("Failed to create event objects");
  29. }
  30. // 初始化条件变量
  31. if (pthread_cond_init(&m_StateCond, nullptr) != 0) {
  32. throw std::runtime_error("Failed to initialize condition variable");
  33. }
  34. }
  35. Thread_Base::~Thread_Base(void)
  36. {
  37. try{
  38. // 温和停止线程,避免在析构中抛出异常
  39. if (m_ThreadRunning) {
  40. StopThread();
  41. }
  42. }
  43. catch (const std::exception& e) {
  44. ERR_LOG("[Thread] Exception in ~Thread_Base: " << e.what());
  45. }
  46. catch (...) {
  47. ERR_LOG("[Thread] Unknown exception in ~Thread_Base");
  48. }
  49. pthread_cond_destroy(&m_StateCond);
  50. }
  51. void Thread_Base::SetLogger(PVOID pLoger) {
  52. m_pThreadLogger = pLoger;
  53. }
  54. PVOID Thread_Base::GetLogger() {
  55. return m_pThreadLogger;
  56. }
  57. void* Thread_Base::Thread_Base_Thread(void* pPara) {
  58. Thread_Base* handle = static_cast<Thread_Base*>(pPara);
  59. if (!handle) {
  60. ERR_LOG("Invalid thread parameter");
  61. return nullptr;
  62. }
  63. try {
  64. usleep(30000); // Sleep(30) 替代
  65. if (!handle->RegistThread()) {
  66. goto endwork_entry;
  67. }
  68. if (!handle->OnStartThread()) {
  69. goto endwork_entry;
  70. }
  71. LOG("Thread " << handle->m_strName << " starting");
  72. handle->SetThreadOnTheRun(true);
  73. while (true) {
  74. if (!handle->Exec()) {
  75. break;
  76. }
  77. int waitevent = handle->WaitTheIncommingEvent(0);
  78. if (waitevent == 0) {
  79. break;
  80. }
  81. }
  82. endwork_entry:
  83. LOG("Thread " << handle->m_strName << " exiting");
  84. try {
  85. handle->ThreadExitProcedure();
  86. }
  87. catch (const std::exception& e) {
  88. ERR_LOG("[Thread] ThreadExitProcedure exception in " << handle->m_strName << ": " << e.what());
  89. }
  90. catch (...) {
  91. ERR_LOG("[Thread] Unknown ThreadExitProcedure exception in " << handle->m_strName);
  92. }
  93. return nullptr;
  94. }
  95. catch (const std::exception& e) {
  96. ERR_LOG("[Thread] Exception in thread " << handle->m_strName << ": " << e.what());
  97. // 异常情况下也要执行清理
  98. try {
  99. handle->ThreadExitProcedure();
  100. }
  101. catch (...) {
  102. ERR_LOG("[Thread] Cleanup failed after exception in " << handle->m_strName);
  103. }
  104. return nullptr;
  105. }
  106. catch (...) {
  107. ERR_LOG("[Thread] Unknown exception in thread " << handle->m_strName);
  108. // 异常情况下也要执行清理
  109. try {
  110. handle->ThreadExitProcedure();
  111. }
  112. catch (...) {
  113. ERR_LOG("[Thread] Cleanup failed after unknown exception in " << handle->m_strName);
  114. }
  115. return nullptr;
  116. }
  117. }
  118. bool Thread_Base::StartThread(bool Sync, bool Inherit)
  119. {
  120. if (m_strName.empty()) {
  121. LOG("Warning: Thread name is empty");
  122. }
  123. // 检查线程是否已运行
  124. if (m_ThreadRunning) {
  125. #ifdef __GNU_LIBRARY__ // 仅GNU环境支持非标准函数
  126. int tryJoin = pthread_tryjoin_np(m_Base_Thread, nullptr);
  127. if (tryJoin == EBUSY) {
  128. LOG("Thread " << m_strName << " is already running");
  129. return true;
  130. }
  131. #endif
  132. // 线程已结束,清理资源
  133. LOG("Thread " << m_strName << " has ended, cleaning up");
  134. pthread_join(m_Base_Thread, nullptr);
  135. m_ThreadRunning = false;
  136. }
  137. m_ExitFlag->ResetEvent();
  138. // 初始化线程属性
  139. pthread_attr_t attr;
  140. if (pthread_attr_init(&attr) != 0) {
  141. ERR_LOG("Failed to initialize thread attributes");
  142. return false;
  143. }
  144. // 设置栈大小
  145. size_t stack_size = 2 * 1024 * 1024; // 2MB
  146. if (pthread_attr_setstacksize(&attr, stack_size) != 0) {
  147. ERR_LOG("Failed to set thread stack size");
  148. pthread_attr_destroy(&attr);
  149. return false;
  150. }
  151. // 配置调度继承
  152. if (Inherit) {
  153. pthread_attr_setinheritsched(&attr, PTHREAD_INHERIT_SCHED);
  154. }
  155. else {
  156. pthread_attr_setinheritsched(&attr, PTHREAD_EXPLICIT_SCHED);
  157. }
  158. // 创建线程
  159. LOG("Creating thread " << m_strName);
  160. int result = pthread_create(&m_Base_Thread, &attr, Thread_Base_Thread, this);
  161. pthread_attr_destroy(&attr);
  162. if (result != 0) {
  163. ERR_LOG("Failed to create thread " << m_strName << ", error: " << result);
  164. m_ExitFlag->SetEvent();
  165. return false;
  166. }
  167. m_ThreadRunning = true;
  168. m_ThreadID = static_cast<unsigned long>(m_Base_Thread);
  169. LOG("Thread " << m_strName << " created, ID: " << m_ThreadID);
  170. // 同步等待线程启动
  171. if (Sync) {
  172. LOG("Waiting for thread " << m_strName << " to start");
  173. return WaitTheThreadOnTheRun(300000); // 300秒超时
  174. }
  175. return true;
  176. }
  177. bool Thread_Base::StopThread(unsigned long timeperiod)
  178. {
  179. // 如果已经停止,直接返回
  180. if (!m_ThreadRunning) {
  181. return true;
  182. }
  183. bool ret = true;
  184. // 设置退出标志 - 通过信号量通知
  185. m_ExitFlag->SetEvent();
  186. // 检查是否在同一个线程内调用
  187. if (pthread_equal(pthread_self(), m_Base_Thread)) {
  188. return true;
  189. }
  190. if (m_Base_Thread) {
  191. struct timespec ts;
  192. // 计算绝对超时时间
  193. if (clock_gettime(CLOCK_REALTIME, &ts) == -1) {
  194. perror("clock_gettime");
  195. return false;
  196. }
  197. // 将毫秒转换为秒和纳秒
  198. ts.tv_sec += timeperiod / 1000;
  199. ts.tv_nsec += (timeperiod % 1000) * 1000000;
  200. // 处理纳秒溢出
  201. if (ts.tv_nsec >= 1000000000) {
  202. ts.tv_sec += 1;
  203. ts.tv_nsec -= 1000000000;
  204. }
  205. #ifdef __GNU_LIBRARY__
  206. int joinResult = pthread_timedjoin_np(m_Base_Thread, nullptr, &ts);
  207. #else
  208. // 标准环境下使用循环等待
  209. int joinResult = ETIMEDOUT;
  210. const int interval = 100; // 100ms轮询
  211. for (unsigned long elapsed = 0; elapsed < timeperiod; elapsed += interval) {
  212. int tryJoin = pthread_tryjoin_np(m_Base_Thread, nullptr);
  213. if (tryJoin == 0) {
  214. joinResult = 0;
  215. break;
  216. }
  217. usleep(interval * 1000);
  218. }
  219. #endif
  220. if (joinResult == ETIMEDOUT) {
  221. ERR_LOG("Timeout stopping thread " << m_strName << ", using soft detach");
  222. // 不再使用 pthread_cancel,而是记录警告并分离
  223. pthread_detach(m_Base_Thread);
  224. ret = false;
  225. // 即使分离,也要确保清理状态
  226. m_ThreadRunning = false;
  227. m_Base_Thread = 0;
  228. m_ThreadID = 0;
  229. }
  230. else if (joinResult != 0) {
  231. ERR_LOG("Failed to join thread " << m_strName << ", error: " << joinResult);
  232. ret = false;
  233. }
  234. else {
  235. // 正常停止
  236. m_Base_Thread = 0;
  237. m_ThreadID = 0;
  238. m_ThreadRunning = false;
  239. }
  240. }
  241. return ret;
  242. }
  243. void Thread_Base::NotifyExit()
  244. {
  245. // 发送退出信号
  246. m_ExitFlag->SetEvent();
  247. }
  248. int Thread_Base::WaitTheIncommingEvent(unsigned long waittime) // 修改为 unsigned long 以匹配毫秒超时
  249. {
  250. std::vector<std::shared_ptr<LinuxEvent>> waitEvents = {
  251. m_ExitFlag,
  252. m_WorkFlag
  253. };
  254. if (m_Base_Thread)
  255. {
  256. // 等待两个事件中的一个发生
  257. int wait = LinuxEvent::WaitForMultipleEvents(waitEvents, waittime);
  258. if (wait == 0)
  259. {
  260. return 0; // ExitFlag触发
  261. }
  262. else if (wait == 1)
  263. {
  264. return 1; // WorkFlag触发
  265. }
  266. else
  267. {
  268. // 超时或错误
  269. return -1;
  270. }
  271. }
  272. // 无线程对象,默认认为退出
  273. return 0;
  274. }
  275. bool Thread_Base::WaitTheThreadEnd(unsigned long waittime)
  276. {
  277. if (m_Base_Thread == 0) {
  278. return true; // 没有线程存在,直接返回成功
  279. }
  280. // 计算绝对超时时间
  281. struct timespec ts;
  282. if (clock_gettime(CLOCK_REALTIME, &ts) == -1) {
  283. perror("clock_gettime");
  284. return false;
  285. }
  286. ts.tv_sec += waittime / 1000;
  287. ts.tv_nsec += (waittime % 1000) * 1000000;
  288. if (ts.tv_nsec >= 1000000000) {
  289. ts.tv_sec += 1;
  290. ts.tv_nsec -= 1000000000;
  291. }
  292. #ifdef __GNU_LIBRARY__
  293. int result = pthread_timedjoin_np(m_Base_Thread, nullptr, &ts);
  294. #else
  295. int result = ETIMEDOUT;
  296. const int interval = 100;
  297. for (unsigned long elapsed = 0; elapsed < waittime; elapsed += interval) {
  298. if (pthread_tryjoin_np(m_Base_Thread, nullptr) == 0) {
  299. result = 0;
  300. break;
  301. }
  302. usleep(interval * 1000);
  303. }
  304. #endif
  305. return result == 0;
  306. }
  307. bool Thread_Base::WaitTheThreadEndSign(unsigned long waittime)
  308. {
  309. return m_Base_Thread ? m_ExitFlag->Wait(waittime) : true;
  310. }
  311. bool Thread_Base::SetThreadOnTheRun(bool OnTheRun)
  312. {
  313. if (!m_ThreadRunning || !m_RunFlag) {
  314. return false;
  315. }
  316. try {
  317. if (OnTheRun) {
  318. m_RunFlag->SetEvent();
  319. }
  320. else {
  321. m_RunFlag->ResetEvent();
  322. }
  323. return true;
  324. }
  325. catch (...) {
  326. // 捕获所有异常,防止崩溃传播
  327. return false;
  328. }
  329. }
  330. void Thread_Base::NotifyThreadWork()
  331. {
  332. m_WorkFlag->SetEvent();
  333. // 发送退出信号
  334. }
  335. bool Thread_Base::WaitTheThreadOnTheRun(unsigned long waittime)
  336. {
  337. LOG("Waiting for thread " << m_strName << " to run");
  338. if (m_Base_Thread == 0) {
  339. ERR_LOG("Thread " << m_strName << " does not exist");
  340. return false;
  341. }
  342. return m_RunFlag->Wait(waittime);
  343. }
  344. // 虚函数默认实现
  345. bool Thread_Base::Exec() { return true; }
  346. bool Thread_Base::OnStartThread() { return true; }
  347. bool Thread_Base::OnEndThread() { return true; }
  348. bool Thread_Base::RegistThread() { return true; }
  349. bool Thread_Base::UnRegistThread() { return true; }
  350. pthread_t Thread_Base::GetTID() { return m_Base_Thread; }
  351. void Thread_Base::SetName(const char* pszThreadName) { if (pszThreadName) m_strName = pszThreadName; }
  352. std::shared_ptr<LinuxEvent> Thread_Base::GetWorkEvt()
  353. {
  354. return m_WorkFlag;
  355. }
  356. std::shared_ptr<LinuxEvent> Thread_Base::GetExitEvt()
  357. {
  358. return m_ExitFlag;
  359. }
  360. void Thread_Base::ThreadExitProcedure() {
  361. // 避免重复清理
  362. if (!m_ThreadRunning) {
  363. return;
  364. }
  365. try {
  366. m_ThreadRunning = false;
  367. // 安全设置事件
  368. if (m_ExitFlag) {
  369. try {
  370. m_ExitFlag->SetEvent();
  371. }
  372. catch (const std::exception& e) {
  373. ERR_LOG("[Thread] SetEvent exception in " << m_strName << ": " << e.what());
  374. }
  375. catch (...) {
  376. ERR_LOG("[Thread] Unknown SetEvent exception in " << m_strName);
  377. }
  378. }
  379. // 保护 OnEndThread - 允许失败但不影响清理
  380. try {
  381. OnEndThread();
  382. }
  383. catch (const std::exception& e) {
  384. ERR_LOG("[Thread] OnEndThread exception in " << m_strName << ": " << e.what());
  385. }
  386. catch (...) {
  387. ERR_LOG("[Thread] Unknown OnEndThread exception in " << m_strName);
  388. }
  389. // 保护 UnRegistThread - 允许失败但不影响清理
  390. try {
  391. UnRegistThread();
  392. }
  393. catch (const std::exception& e) {
  394. ERR_LOG("[Thread] UnRegistThread exception in " << m_strName << ": " << e.what());
  395. }
  396. catch (...) {
  397. ERR_LOG("[Thread] Unknown UnRegistThread exception in " << m_strName);
  398. }
  399. // 安全设置运行状态
  400. try {
  401. SetThreadOnTheRun(false);
  402. }
  403. catch (const std::exception& e) {
  404. ERR_LOG("[Thread] SetThreadOnTheRun exception in " << m_strName << ": " << e.what());
  405. }
  406. catch (...) {
  407. ERR_LOG("[Thread] Unknown SetThreadOnTheRun exception in " << m_strName);
  408. }
  409. }
  410. catch (const std::exception& e) {
  411. ERR_LOG("[Thread] Critical ThreadExitProcedure exception in " << m_strName << ": " << e.what());
  412. }
  413. catch (...) {
  414. ERR_LOG("[Thread] Critical unknown ThreadExitProcedure exception in " << m_strName);
  415. }
  416. }
  417. // Work_Thread 实现
  418. Work_Thread::Work_Thread() {
  419. m_PauseEvt = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  420. m_ResumeEvt = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  421. m_SleepingEvt = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  422. m_WorkingEvt = LinuxEvent::CreateEvent(LinuxEvent::MANUAL_RESET, false);
  423. if (!m_PauseEvt || !m_SleepingEvt || !m_ResumeEvt || !m_WorkingEvt) {
  424. throw std::runtime_error("Work_Thread event creation failed");
  425. }
  426. MsgQueue<ResDataObject>* p;
  427. p = new MsgQueue<ResDataObject>;
  428. m_pWorkQueReq = (void *)p;
  429. p = new MsgQueue<ResDataObject>;
  430. m_pWorkQueRes = (void*)p;
  431. }
  432. Work_Thread::~Work_Thread() {
  433. MsgQueue<ResDataObject>* p;
  434. p = (MsgQueue<ResDataObject> *)m_pWorkQueReq;
  435. delete p;
  436. m_pWorkQueReq = NULL;
  437. p = (MsgQueue<ResDataObject> *)m_pWorkQueRes;
  438. delete p;
  439. m_pWorkQueRes = NULL;
  440. }
  441. bool Work_Thread::PopReqDataObject(ResDataObject& obj) {
  442. return (bool)((MsgQueue<ResDataObject> *)m_pWorkQueReq)->DeQueue(obj);
  443. }
  444. bool Work_Thread::PushReqDataObject(ResDataObject& obj) {
  445. if (WaitTheThreadEndSign(0))
  446. {
  447. return false;//not possible to send it
  448. }
  449. //printf("Thread:%d,push REQ one\n", GetCurrentThreadId());
  450. ((MsgQueue<ResDataObject> *)m_pWorkQueReq)->InQueue(obj);
  451. NotifyThreadWork();
  452. return true;
  453. }
  454. bool Work_Thread::PopResDataObject(ResDataObject& obj) {
  455. //printf("Thread:%d,Pop Res one\n", GetCurrentThreadId());
  456. return (bool)((MsgQueue<ResDataObject> *)m_pWorkQueRes)->DeQueue(obj);
  457. }
  458. bool Work_Thread::PushResDataObject(ResDataObject& obj) {
  459. if (WaitTheThreadEndSign(0))
  460. {
  461. return false;//not possible to send it
  462. }
  463. //printf("Thread:%d,push Res one\n",GetCurrentThreadId());
  464. ((MsgQueue<ResDataObject> *)m_pWorkQueRes)->InQueue(obj);
  465. NotifyThreadWork();
  466. return true;
  467. }
  468. bool Work_Thread::WaitForInQue(unsigned long m_Timeout) {
  469. std::vector<std::shared_ptr<LinuxEvent>> waitEvents = {
  470. m_ExitFlag,
  471. m_PauseEvt,
  472. m_WorkFlag ,
  473. 0,
  474. 0
  475. };
  476. waitEvents[3] = ((MsgQueue<ResDataObject> *)m_pWorkQueReq)->GetNotifyHandle();
  477. waitEvents[4] = ((MsgQueue<ResDataObject> *)m_pWorkQueRes)->GetNotifyHandle();
  478. int ret = LinuxEvent::WaitForMultipleEvents(waitEvents,0);
  479. if ((ret >= WAIT_OBJECT_0) && (ret <= WAIT_OBJECT_0 + 1))
  480. {
  481. return false;
  482. }
  483. if (((MsgQueue<ResDataObject> *)m_pWorkQueReq)->WaitForInQue(0) == WAIT_OBJECT_0)
  484. {
  485. return true;
  486. }
  487. if (((MsgQueue<ResDataObject> *)m_pWorkQueRes)->WaitForInQue(0) == WAIT_OBJECT_0)
  488. {
  489. return true;
  490. }
  491. ret = LinuxEvent::WaitForMultipleEvents(waitEvents,m_Timeout);
  492. if ((ret >= WAIT_OBJECT_0 + 2) && (ret < (WAIT_OBJECT_0 + 5)))
  493. {
  494. return true;
  495. }
  496. return false;
  497. }
  498. bool Work_Thread::CheckForPause() {
  499. DWORD retEvt = 0;
  500. bool ret = false;
  501. std::vector<std::shared_ptr<LinuxEvent>> waitExp = {
  502. m_ExitFlag,
  503. m_PauseEvt
  504. };
  505. retEvt = LinuxEvent::WaitForMultipleEvents(waitExp, 0);
  506. if (retEvt == WAIT_OBJECT_0 + 1)
  507. {
  508. m_WorkingEvt->ResetEvent();
  509. m_SleepingEvt->SetEvent();
  510. ret = true;
  511. }
  512. return ret;
  513. }
  514. bool Work_Thread::WaitforResume() {
  515. bool Exret = false;
  516. std::vector<std::shared_ptr<LinuxEvent>> wait = {
  517. m_ExitFlag,
  518. m_ResumeEvt
  519. };
  520. DWORD ret = 0;
  521. ret = LinuxEvent::WaitForMultipleEvents(wait, -1);
  522. if (ret == WAIT_OBJECT_0 + 1)
  523. {
  524. //拿到Resume
  525. m_SleepingEvt->ResetEvent();
  526. m_WorkingEvt->SetEvent();
  527. Exret = true;
  528. }
  529. return Exret;
  530. }
  531. bool Work_Thread::PauseThread(unsigned long timeout) {
  532. bool ret = false;
  533. DWORD retEvt = 0;
  534. std::vector<std::shared_ptr<LinuxEvent>> wait = {
  535. m_ExitFlag,
  536. m_SleepingEvt
  537. };
  538. if (pthread_self() == GetTID()) {
  539. return false;
  540. }
  541. if (!WaitTheThreadOnTheRun(0)) {
  542. return false;
  543. }
  544. m_PauseEvt->SetEvent();
  545. //get response
  546. retEvt = LinuxEvent::WaitForMultipleEvents(wait, timeout);
  547. if (retEvt == WAIT_OBJECT_0 + 1)
  548. {
  549. ret = true;
  550. }
  551. m_PauseEvt->ResetEvent();
  552. return ret;
  553. }
  554. bool Work_Thread::ResumeThread(unsigned long timeout) {
  555. bool ret = false;
  556. DWORD retEvt = 0;
  557. std::vector<std::shared_ptr<LinuxEvent>> wait = {
  558. m_ExitFlag,
  559. m_WorkingEvt
  560. };
  561. if (pthread_self() == GetTID()) {
  562. return false;
  563. }
  564. if (!WaitTheThreadOnTheRun(0)) {
  565. return false;
  566. }
  567. m_ResumeEvt->SetEvent();
  568. //get response
  569. retEvt = LinuxEvent::WaitForMultipleEvents(wait, timeout);
  570. if (retEvt == WAIT_OBJECT_0 + 1)
  571. {
  572. ret = true;
  573. }
  574. m_ResumeEvt->ResetEvent();
  575. return ret;
  576. }
  577. // Ccos_Thread 实现
  578. Ccos_Thread::Ccos_Thread() {}
  579. Ccos_Thread::~Ccos_Thread() {}