mod_gpio.cpp 49 KB

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  1. #include "stdafx.h"
  2. #include "mod_gpio.h"
  3. #include "publicFunExport.h"
  4. const int MAX_GPIO_INIT_TRIES = 3;
  5. const int INPUT_PORT_2 = 2;
  6. const int MAX_MOVE_HOLD_TIMES = 5000;
  7. const int LOG_TIME_VALUE = 25;
  8. int positive_pulse_up_count = 0;
  9. int negative_pulse_down_count = 0;
  10. int positive_pulse_both_count = 0;
  11. int negative_pulse_both_count = 0;
  12. int positive_level_count = 0;
  13. int negative_level_count = 0;
  14. #define SETBIT(x,y) x|=(1<<(y))
  15. #define CLEARBIT(x,y) x&=((1<<(y))^0xffffff)
  16. using namespace SP::Module::Comm;
  17. static const char* GetDriverPortString(int pin)
  18. {
  19. switch (pin) {
  20. case 1: return "【驱动】读卡发卡器提示灯";
  21. case 2: return "【驱动】前端USB通断控制";
  22. case 3: return "【驱动】身份证阅读器提示灯";
  23. case 4: return "【驱动】密码键盘提示灯";
  24. case 5: return "【驱动】脸部照明灯";
  25. case 6: return "【驱动】故障灯";
  26. case 7: return "【驱动】读卡发卡器维护提示灯";
  27. case 8: return "【驱动】前端USB口提示灯";
  28. case 9: return "【驱动】非接IC读卡器提示灯";
  29. case 10: return "";
  30. case 11: return "【驱动】指纹仪提示灯";
  31. case 12: return "【驱动】凭条打印提示灯";
  32. case 13: return "【驱动】高拍仪提示灯";
  33. case 14: return "";
  34. case 15: return "";
  35. case 16: return "";
  36. case 17: return "【接收】震动探测器";
  37. case 18: return "【接收】机具门感应开关";
  38. case 19: return "【接收】话机提机感应开关";
  39. case 20: return "【接收】人体探测感应器";
  40. case 21: return "【接收】发卡器卡嘴覆盖探测器";
  41. //case 22: return "";
  42. //case 23: return "";
  43. //case 24: return "";
  44. //case 25: return "";
  45. case 26: return "【驱动】高拍仪提示灯";
  46. //case 27: return "";
  47. //case 28: return "";
  48. //case 29: return "";
  49. //case 30: return "";
  50. //case 31: return "";
  51. //case 32: return "";
  52. //case 33: return "";
  53. //case 34: return "";
  54. //case 35: return "";
  55. //case 36: return "";
  56. //case 37: return "";
  57. //case 38: return "";
  58. //case 39: return "";
  59. //case 40: return "";
  60. //case 41: return "";
  61. //case 42: return "";
  62. default:
  63. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("Unkown pin sequence: %d", pin);
  64. return "";
  65. break;
  66. }
  67. }
  68. #define LIGHT_STRING_CONVERT(str) case str : return #str; break;
  69. static const char* GetLightSeqString(int seq)
  70. {
  71. switch (seq) {
  72. LIGHT_STRING_CONVERT(UNKNOWN_DEVICE)
  73. LIGHT_STRING_CONVERT(CARDREADER)
  74. LIGHT_STRING_CONVERT(CARDREADER_RED)
  75. LIGHT_STRING_CONVERT(IDCERTIFICATE)
  76. LIGHT_STRING_CONVERT(PINPAD)
  77. LIGHT_STRING_CONVERT(SHAKEDETECT)
  78. LIGHT_STRING_CONVERT(SWITCHINDUCTOR)
  79. LIGHT_STRING_CONVERT(PHONEPICKUP)
  80. LIGHT_STRING_CONVERT(MOVEDETECT)
  81. LIGHT_STRING_CONVERT(CARDGATEDETECT)
  82. LIGHT_STRING_CONVERT(HEADLIGHT)
  83. LIGHT_STRING_CONVERT(HEADLIGHT_RED)
  84. LIGHT_STRING_CONVERT(CONTACTLESSCARD)
  85. LIGHT_STRING_CONVERT(HEADLIGHT_ASSIST)
  86. LIGHT_STRING_CONVERT(HSPSCANNER)
  87. LIGHT_STRING_CONVERT(FINGERPRINT)
  88. default:
  89. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("Unkonwn LightSeq: %d", seq);
  90. return "UnConver One";
  91. break;
  92. }
  93. }
  94. #undef LIGHT_STRING_CONVERT
  95. void CGpioServiceSession::Handle_Set(SpOnewayCallContext<GpioService_Set_Info>::Pointer ctx)
  96. {
  97. }
  98. void CGpioServiceSession::Handle_GetStatus(SpReqAnsContext<GpioService_GetStatus_Req, GpioService_GetStatus_Ans>::Pointer ctx)
  99. {
  100. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)(__FUNCTION__);
  101. ctx->Answer(Error_NotSupport);
  102. }
  103. void CGpioServiceSession::Handle_QueryCurrSet(SpReqAnsContext<GpioService_QueryCurrSet_Req, GpioService_QueryCurrSet_Ans>::Pointer ctx)
  104. {
  105. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)(__FUNCTION__);
  106. ctx->Answer(Error_NotSupport);
  107. }
  108. bool isnostr(const char* str)
  109. {
  110. int len = strlen(str);
  111. if (len == 0)
  112. return true;
  113. for (int i = 0; i < len; ++i) {
  114. if (*(str + i) != ' ')
  115. return false;
  116. }
  117. return true;
  118. }
  119. /** 因为GPIO没有状态机的概念,所以抛送信息的代码单独实现,没有跟其他硬件类似使用基类中的公有函数 [Gifur@2023810]*/
  120. void CGpioEntity::ToLogRootINIInfo()
  121. {
  122. CSmartPointer<IConfigInfo> spConfigRoot;
  123. GetFunction()->OpenConfig(Config_Root, spConfigRoot);
  124. CSimpleStringA entityName(GetEntityName());
  125. CSimpleStringA sectionName = CSimpleStringA::Format("Device.%s", entityName.GetData());
  126. CSimpleStringA csVendor(true), csVersion(true), csBatch(true), csPort(true), csBaudrate(true);
  127. spConfigRoot->ReadConfigValue(sectionName.GetData(), "Vendor", csVendor);
  128. spConfigRoot->ReadConfigValue(sectionName.GetData(), "Version", csVersion);
  129. spConfigRoot->ReadConfigValue(sectionName.GetData(), "Batch", csBatch);
  130. spConfigRoot->ReadConfigValue(sectionName.GetData(), "Port", csPort);
  131. spConfigRoot->ReadConfigValue(sectionName.GetData(), "Baudrate", csBaudrate);
  132. std::map<std::string, std::string> rootInfo;
  133. CSimpleStringA csPortNum(true), csCheckData(true), csKeySN(true);
  134. rootInfo["Vendor"] = csVendor;
  135. rootInfo["Version"] = csVersion;
  136. rootInfo["Batch"] = csBatch;
  137. rootInfo["Port"] = csPort;
  138. rootInfo["Baudrate"] = csBaudrate;
  139. spConfigRoot->ReadConfigValue(sectionName.GetData(), "PortNum", csPortNum);
  140. rootInfo["PortNum"] = csPortNum;
  141. std::pair<bool, std::string> strResult;
  142. strResult = generateJsonStr(rootInfo);
  143. strResult.second.c_str();
  144. if (!entityName.IsNullOrEmpty()) {
  145. LogWarn(Severity_Low, Error_Debug, GPIO_UserErrorCode_Real_Root_Config, strResult.second.c_str());
  146. } else {
  147. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("Entity Name is empty, please check!!!");
  148. }
  149. return;
  150. }
  151. struct GpioInitTask : public ITaskSp {
  152. CGpioEntity* m_entity;
  153. CSmartPointer<ITransactionContext> m_pTransactionContext;
  154. GpioInitTask(CGpioEntity* entity, CSmartPointer<ITransactionContext> pTransactionContext) :m_entity(entity), m_pTransactionContext(pTransactionContext) {}
  155. void Process()
  156. {
  157. m_entity->InitializeVendorLogSwitch();
  158. ErrorCodeEnum err = m_entity->Initial();
  159. if (err == Error_Succeed)
  160. {
  161. LOG_TRACE("Gpio open succeeded.");
  162. //oiltest 20130118 for audiodg handle
  163. m_entity->GetStatus(PHONEPICKUP, NULL);
  164. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("subscribelog...");
  165. //oiltmp the subscribelog should distinct machine type?
  166. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidHealth, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "HealthManager");
  167. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidIDC, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "IDCertificate");
  168. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidFP, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "FingerPrint");
  169. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidKB, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "PinPad");
  170. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidCR, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "CardIssuerStand");
  171. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidCA, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "CustomerAware");
  172. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidCC, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "ContactlessCard");
  173. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidDD, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "DeviceControl");
  174. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidCS, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "CardIssuerStore");
  175. m_entity->GetFunction()->SubscribeLog(m_entity->m_uuidHSPscanner, m_entity, Log_Event, Severity_Middle, Error_IgnoreAll, -1, "HSPScanner");
  176. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("sub ok...");
  177. m_pTransactionContext->SendAnswer(Error_Succeed);
  178. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("send Error_Succeed ok...");
  179. }
  180. else
  181. {
  182. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("gpio open failed(%d).", err);
  183. m_pTransactionContext->SendAnswer(Error_Unexpect);
  184. }
  185. }
  186. };
  187. void CGpioEntity::OnPreStart(CAutoArray<CSimpleStringA> strArgs, CSmartPointer<ITransactionContext> pTransactionContext)
  188. {
  189. LOG_FUNCTION();
  190. GpioInitTask* initTask = new GpioInitTask(this, pTransactionContext);
  191. GetFunction()->PostThreadPoolTask(initTask);
  192. }
  193. void CGpioEntity::ToLogWarnInfoAboutTerm(const AdapterInfo& m_adapterInfo)
  194. {
  195. LOG_FUNCTION();
  196. CSmartPointer<IConfigInfo> spConfigRoot;
  197. GetFunction()->OpenConfig(Config_Root, spConfigRoot);
  198. CSimpleStringA csEnvCamera(""), csOptCamera, csOSVerion, csWarnMsg("");
  199. //calculate file hash value
  200. std::map<std::string, std::string> termInfo;
  201. char* strFileHash = new char[128];
  202. ZeroMemory(strFileHash, 128);
  203. BYTE fileHash[32];
  204. SM3File(const_cast<char*>(m_adapterInfo.adapterFileName.GetData()), fileHash);
  205. SP::Module::Util::HexBuf2StrBuf(fileHash, &strFileHash, 32);
  206. //calculate file size
  207. #if defined(RVC_OS_LINUX)
  208. struct stat statbuf;
  209. ZeroMemory(&statbuf, sizeof(statbuf));
  210. stat(m_adapterInfo.adapterFilePath.GetData(), &statbuf);
  211. int fileSize = statbuf.st_size;
  212. #else
  213. int fileSize = 0;
  214. HANDLE hFile;
  215. hFile = CreateFile(m_adapterInfo.adapterFilePath.GetData(), 0, FILE_SHARE_READ, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
  216. if (hFile != INVALID_HANDLE_VALUE) {
  217. fileSize = GetFileSize(hFile, NULL);
  218. CloseHandle(hFile);
  219. }
  220. #endif //RVC_OS_LINUX
  221. termInfo["VendorDllName"] = m_adapterInfo.adapterFileName;
  222. termInfo["VendorDllFileHash"] = strFileHash;
  223. ZeroMemory(strFileHash, 128);
  224. termInfo["VendorDllFileSize"] = _itoa(fileSize, strFileHash, 10);
  225. termInfo["szModel"] = m_adapterInfo.devCatInfo.szModel;
  226. termInfo["szType"] = m_adapterInfo.devCatInfo.szType;
  227. termInfo["Port"] = m_port;
  228. termInfo["PortNum"] = m_portNum;
  229. termInfo["Baudrate"] = m_Baudrate;
  230. if (strFileHash != nullptr) {
  231. delete[] strFileHash;
  232. strFileHash = nullptr;
  233. }
  234. std::pair<bool, std::string> strResult;
  235. strResult = generateJsonStr(termInfo);
  236. LogWarn(Severity_Low, Error_Unexpect, GPIO_UserErrorCode_LogInfoAboutTerm, strResult.second.c_str());
  237. return;
  238. }
  239. bool CGpioEntity::DetectBit(ULONG data, int pos)
  240. {
  241. if (!m_bFuncVer2) {
  242. ULONG tmp = 0;
  243. SETBIT(tmp, pos);
  244. return (data & tmp);
  245. }
  246. else {
  247. #if defined(RVC_OS_LINUX)
  248. if (m_hDevHelper != nullptr) {
  249. DWORD dwReq = (GPIO_DEV_SN_SENSOR_SHAKE << pos);
  250. return (data & dwReq);
  251. }
  252. #endif //RVC_OS_LINUX
  253. }
  254. return 0;
  255. }
  256. ErrorCodeEnum CGpioEntity::Initial()
  257. {
  258. ErrorCodeEnum err;
  259. LOG_FUNCTION();
  260. ErrorCodeEnum eErrDev;
  261. CSimpleStringA dllName;
  262. eErrDev = ExtractVendorLibFullPath(dllName);
  263. if (eErrDev != Error_Succeed) {
  264. DbgWithLink(LOG_LEVEL_ERROR, LOG_TYPE_SYSTEM)("load vendor dll or so(%s)(%s) failed.", dllName.GetData(), SpStrError(eErrDev));
  265. return Error_DevLoadFileFailed;
  266. }
  267. LogWarn(Severity_Low, Error_Unexpect, GPIO_UserErrorCode_RootInfo, dllName.GetData());
  268. CSmartPointer<IEntityFunction> spEntityFunction = GetFunction();
  269. CSmartPointer<IConfigInfo> spConfig;
  270. eErrDev = spEntityFunction->OpenConfig(Config_Root, spConfig);
  271. if (eErrDev != Error_Succeed) {
  272. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("open cfg file failed %s", SpStrError(eErrDev));
  273. return eErrDev;
  274. }
  275. CSimpleStringA devVendor, devVer, devBatch, dllSuffix;
  276. devVendor = devVer = devBatch = "";
  277. spConfig->ReadConfigValue("Device.Gpio", "Vendor", devVendor);
  278. spConfig->ReadConfigValue("Device.Gpio", "Version", devVer);
  279. spConfig->ReadConfigValue("Device.Gpio", "Batch", devBatch);
  280. #if defined(RVC_OS_WIN)
  281. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("[%s],[%s],[%s]", devVendor.GetData(), devVer.GetData(), devBatch.GetData());
  282. if (!_stricmp(devVendor, "Hyosung") || !_stricmp(devVendor, "Keba") || !_stricmp(devVendor, "Kxd")) {
  283. if (devVer == "1" && devBatch == "1") {
  284. m_bNewVersion = FALSE;
  285. } else {
  286. m_bNewVersion = TRUE;
  287. }
  288. } else {
  289. m_bNewVersion = TRUE;
  290. }
  291. #else
  292. m_bNewVersion = TRUE;
  293. #endif
  294. eErrDev = m_hDevHelper.LoadUp(dllName);
  295. if (eErrDev != Error_Succeed) {
  296. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("load up %s failed: %s", dllName.GetData(), SpStrError(eErrDev));
  297. return Error_DevLoadFileFailed;
  298. }
  299. m_adapterInfo.adapterFilePath = dllName;
  300. int initTries = 0;
  301. do {
  302. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("to open device.");
  303. int portNum, port, baudRate;
  304. err = spConfig->ReadConfigValueInt("Device.Gpio", "PortNum", portNum);
  305. if (err == Error_Succeed)
  306. m_dwPortNum = portNum;
  307. else
  308. return Error_IO;
  309. spConfig->ReadConfigValueInt("Device.Gpio", "Port", port);
  310. spConfig->ReadConfigValueInt("Device.Gpio", "BaudRate", baudRate);
  311. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("read cfg suc, port(%d), baudrate(%d).", port, baudRate);
  312. m_port = CSimpleStringA::Format("%d", port);
  313. m_Baudrate = CSimpleStringA::Format("%d", baudRate);
  314. m_portNum = CSimpleStringA::Format("%d", portNum);
  315. GpioInitParam initParam;
  316. if (!m_bNewVersion) {
  317. initParam.dwPortNum = 3;
  318. initParam.dir[0] = true;
  319. initParam.dir[1] = true;
  320. initParam.dir[2] = false;
  321. } else {
  322. initParam.dwPortNum = 4;
  323. initParam.dir[0] = true;
  324. initParam.dir[1] = true;
  325. initParam.dir[2] = false;
  326. initParam.dir[3] = true;
  327. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("New available 4 port num");
  328. }
  329. CSimpleStringA errMsg("");
  330. initParam.dwPort = port;
  331. initParam.dwBaudRate = baudRate;
  332. err = m_hDevHelper->DevOpen(initParam);
  333. if (err == Error_Succeed) {
  334. ToLogRootINIInfo();
  335. ZeroMemory(m_devCatInfo.szModel, sizeof(m_devCatInfo.szModel));
  336. ZeroMemory(m_devCatInfo.szType, sizeof(m_devCatInfo.szType));
  337. ZeroMemory(m_devCatInfo.szVendor, sizeof(m_devCatInfo.szVendor));
  338. err = m_hDevHelper->GetDevCategory(m_devCatInfo);
  339. if (err == Error_Succeed) {
  340. m_adapterInfo.FulfillCategoryInfo(m_devCatInfo);
  341. #if defined(RVC_OS_LINUX)
  342. CSimpleStringA strType(m_devCatInfo.szType);
  343. if (strType.IndexOf("FUNCVER=2.0") != -1) {
  344. m_bFuncVer2 = TRUE;
  345. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("Detect new interface version: %s", strType.GetData());
  346. }
  347. #endif //RVC_OS_LINUX
  348. ToLogWarnInfoAboutTerm(m_adapterInfo);
  349. } else {
  350. DevErrorInfo devErrInfo;
  351. ZeroMemory(&devErrInfo, sizeof(devErrInfo));
  352. m_hDevHelper->GetLastErr(devErrInfo);
  353. errMsg = CSimpleStringA::Format("GetDevCategory failed:%s(s)", SpStrError(err), devErrInfo.szErrMsg);
  354. LogWarn(Severity_Middle, Error_Unexpect, GPIO_UserErrorCode_GetDevCategory_Failed, errMsg.GetData());
  355. }
  356. initTries = 0;
  357. break;
  358. } else {
  359. DevErrorInfo devErrInfo;
  360. ZeroMemory(&devErrInfo, sizeof(devErrInfo));
  361. m_hDevHelper->GetLastErr(devErrInfo);
  362. errMsg = CSimpleStringA::Format("DevOpen failed:%s(%s)", SpStrError(err), devErrInfo.szErrMsg);
  363. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM).setResultCode("RTA2901")(errMsg.GetData());
  364. LogWarn(Severity_Middle, Error_Unexpect, GPIO_UserErrorCode_DevOpen_Failed, errMsg.GetData());
  365. Sleep(300);
  366. initTries++;
  367. continue;
  368. }
  369. } while (initTries < MAX_GPIO_INIT_TRIES);
  370. if (initTries != 0) {
  371. LOG_TRACE("open gpio failed.");
  372. err = Error_DevConnFailed;
  373. }
  374. if (!m_bFuncVer2) {
  375. err = m_hDevHelper->WritePort(0, 0x00);
  376. if (err != Error_Succeed)
  377. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("write ports(0) returned: %s)", SpStrError(err));
  378. err = m_hDevHelper->WritePort(1, 0x00);
  379. if (err != Error_Succeed)
  380. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("write ports(1) returned: %s)", SpStrError(err));
  381. if (m_bNewVersion) {
  382. err = m_hDevHelper->WritePort(3, 0x00);
  383. if (err != Error_Succeed)
  384. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("write ports(3) returned: %s)", SpStrError(err));
  385. }
  386. } else {
  387. #if defined(RVC_OS_LINUX)
  388. err = m_hDevHelper->SetStatus(GPIO_DEV_SN_LIGHT_SENSOR_ALL, GPIO_DEV_LIGHT_MODE_RESET);
  389. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("write resetone returned: %s)", SpStrError(err));
  390. #endif //RVC_OS_LINUX
  391. }
  392. //oilyang@20170214
  393. eErrDev = Error_Unexpect;
  394. CSmartPointer<IConfigInfo> spConfigRun;
  395. eErrDev = spEntityFunction->OpenConfig(Config_Run, spConfigRun);
  396. if (eErrDev == Error_Succeed) {
  397. int iMoveHoldTimes = 0;
  398. spConfigRun->ReadConfigValueInt("Init", "MaxMoveHoldTimes", iMoveHoldTimes);
  399. if (iMoveHoldTimes == 0) {
  400. spConfigRun->WriteConfigValueInt("Init", "MaxMoveHoldTimes", MAX_MOVE_HOLD_TIMES);
  401. m_moveHoldTimes = MAX_MOVE_HOLD_TIMES;
  402. }
  403. } else {
  404. m_moveHoldTimes = MAX_MOVE_HOLD_TIMES;//oiltmp about 5000*300ms = 25 minutes
  405. }
  406. m_moveDisappearTimes = m_moveHoldTimes;
  407. m_eMachineType = SP::Module::Comm::GetTerminalMachineInfo(this).type;
  408. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("machine type: %s", SP::Module::Comm::Type2Str(m_eMachineType));
  409. return err;
  410. }
  411. void CGpioEntity::OnLog(const CAutoArray<CUUID>& SubIDs, const CUUID nLogID, const LogTypeEnum eLogType, const SeverityLevelEnum eLevel,
  412. const DWORD dwSysError, const DWORD dwUserCode, const DWORD dwEntityInstanceID, const WORD wEntityDevelID,
  413. const CAutoArray<DWORD>& Param, const char* pszEntityName, const char* pszModuleName, const char* pszMessage, const linkContext& pLinkInfo)
  414. {
  415. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("usercode [%x]", dwUserCode);
  416. GpioService_Set_Info Req;
  417. Req.close = 0;
  418. switch (dwUserCode) {
  419. case LOG_EVT_CARDISSUER_GREEN_ON:
  420. Req.devseq = CARDREADER;
  421. Req.mode = 1;
  422. break;
  423. case LOG_EVT_CARDISSUER_RED_ON:
  424. Req.devseq = CARDREADER_RED;
  425. Req.mode = 1;
  426. break;
  427. case LOG_EVT_IDCERTIFICATE_GREEN_ON:
  428. Req.devseq = IDCERTIFICATE;
  429. Req.mode = 1;
  430. break;
  431. case LOG_EVT_FINGERPRINT_GREEN_ON:
  432. Req.devseq = FINGERPRINT;
  433. Req.mode = 1;
  434. break;
  435. case LOG_EVT_PINPAD_GREEN_ON:
  436. Req.devseq = PINPAD;
  437. Req.mode = 1;
  438. break;
  439. case LOG_EVT_HEADLIGHT_GREEN_ON:
  440. m_bHeadLightFlag = true;
  441. Req.devseq = HEADLIGHT;
  442. Req.mode = 0;
  443. LOG_TRACE("machine light on");
  444. break;
  445. case LOG_EVT_HEADLIGHT_RED_ON:
  446. Req.devseq = HEADLIGHT_RED;
  447. Req.mode = 1;
  448. break;
  449. case LOG_EVT_CONTACTLESS_CARD_GREEN_ON:
  450. Req.devseq = CONTACTLESSCARD;
  451. Req.mode = 1;
  452. break;
  453. case LOG_EVT_IEBROWSER_LIGHT_ASSISTANT_ON:
  454. Req.devseq = HEADLIGHT_ASSIST;
  455. Req.mode = 1;
  456. break;
  457. case LOG_EVT_CARDISSUER_GREEN_OFF:
  458. Req.devseq = CARDREADER;
  459. Req.mode = 1;
  460. Req.close = 1;
  461. break;
  462. case LOG_EVT_CARDISSUER_RED_OFF:
  463. Req.devseq = CARDREADER_RED;
  464. Req.mode = 1;
  465. Req.close = 1;
  466. break;
  467. case LOG_EVT_IDCERTIFICATE_GREEN_OFF:
  468. Req.devseq = IDCERTIFICATE;
  469. Req.mode = 1;
  470. Req.close = 1;
  471. break;
  472. case LOG_EVT_FINGERPRINT_GREEN_OFF:
  473. Req.devseq = FINGERPRINT;
  474. Req.mode = 1;
  475. Req.close = 1;
  476. break;
  477. case LOG_EVT_PINPAD_GREEN_OFF:
  478. Req.devseq = PINPAD;
  479. Req.mode = 1;
  480. Req.close = 1;
  481. break;
  482. case LOG_EVT_HEADLIGHT_GREEN_OFF:
  483. m_bHeadLightFlag = false;
  484. Req.devseq = HEADLIGHT;
  485. Req.mode = 1;
  486. Req.close = 1;
  487. LOG_TRACE("machine light off");
  488. break;
  489. case LOG_EVT_HEADLIGHT_RED_OFF:
  490. Req.devseq = HEADLIGHT_RED;
  491. Req.mode = 1;
  492. Req.close = 1;
  493. break;
  494. case LOG_EVT_CONTACTLESS_CARD_GREEN_OFF:
  495. Req.devseq = CONTACTLESSCARD;
  496. Req.mode = 1;
  497. Req.close = 1;
  498. break;
  499. case LOG_EVT_IEBROWSER_LIGHT_ASSISTANT_OFF:
  500. Req.devseq = HEADLIGHT_ASSIST;
  501. Req.mode = 1;
  502. Req.close = 1;
  503. break;
  504. case LOG_EVT_HSPS_LIGHT_ON:
  505. Req.devseq = HSPSCANNER;
  506. Req.mode = 1;
  507. LOG_TRACE("hspscanner light on");
  508. break;
  509. case LOG_EVT_HSPS_LIGHT_OFF:
  510. Req.devseq = HSPSCANNER;
  511. Req.mode = 1;
  512. Req.close = 1;
  513. LOG_TRACE("hspscanner light off");
  514. break;
  515. default:
  516. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("unkown event: 0x%X", dwUserCode);
  517. return;
  518. }
  519. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("devseq[%d],mode[%d]close[%d]", Req.devseq, Req.mode, Req.close);
  520. m_bFuncVer2 ? SetEx(Req) : Set(Req);
  521. }
  522. void CGpioEntity::WritePin(DWORD dwPinSeq, bool bHighLevel)
  523. {
  524. ErrorCodeEnum result(Error_Succeed);
  525. LOG_TRACE("Write Pin %s with %s !", GetDriverPortString(dwPinSeq + 1), bHighLevel ? "[Active]" : "[Inactive]");
  526. if (dwPinSeq > 16) {
  527. if (!m_bNewVersion && dwPinSeq < 24) {
  528. return;
  529. }
  530. if (bHighLevel)
  531. SETBIT(m_btOutputStatus[3], dwPinSeq - 24);
  532. else
  533. CLEARBIT(m_btOutputStatus[3], dwPinSeq - 24);
  534. result = m_hDevHelper->WritePort(3, m_btOutputStatus[3]);
  535. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("after write port3, %d returned %s", m_btOutputStatus[3], SpStrError(result));
  536. return;
  537. }
  538. if (dwPinSeq < 8) {
  539. if (bHighLevel)
  540. SETBIT(m_btOutputStatus[0], dwPinSeq);
  541. else
  542. CLEARBIT(m_btOutputStatus[0], dwPinSeq);
  543. result = m_hDevHelper->WritePort(0, m_btOutputStatus[0]);
  544. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("after write port0,%d returned %s", m_btOutputStatus[0], SpStrError(result));
  545. } else {
  546. if (bHighLevel)
  547. SETBIT(m_btOutputStatus[1], dwPinSeq - 8);
  548. else
  549. CLEARBIT(m_btOutputStatus[1], dwPinSeq - 8);
  550. DWORD dwStart, dwEnd;
  551. dwStart = GetTickCount();
  552. result = m_hDevHelper->WritePort(1, m_btOutputStatus[1]);
  553. dwEnd = GetTickCount();
  554. if ((dwEnd - dwStart) > 3000)
  555. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("writepin so long.than 3s(%d)", (dwEnd - dwStart));
  556. else
  557. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("after write port1,%d returned %s", m_btOutputStatus[1], SpStrError(result));
  558. }
  559. }
  560. void CGpioEntity::SetEx(GpioService_Set_Info req)
  561. {
  562. #if defined(RVC_OS_LINUX)
  563. int devicePort;
  564. LOG_TRACE("SetEx request %s arrived!", GetLightSeqString(req.devseq));
  565. switch (req.devseq) {
  566. case CARDREADER:
  567. {
  568. devicePort = GPIO_DEV_SN_LIGHT_CARDISSUER;
  569. break;
  570. }
  571. case CARDREADER_RED:
  572. {
  573. devicePort = GPIO_DEV_SN_LIGHT_CARDISSUER_MAINTAIN;
  574. break;
  575. }
  576. case IDCERTIFICATE:
  577. {
  578. devicePort = GPIO_DEV_SN_LIGHT_IDCERTIFICATE;
  579. break;
  580. }
  581. case FINGERPRINT:
  582. {
  583. devicePort = GPIO_DEV_SN_LIGHT_FINGERPRINT;
  584. break;
  585. }
  586. case PINPAD:
  587. {
  588. devicePort = GPIO_DEV_SN_LIGHT_PINPAD;
  589. break;
  590. }
  591. case HEADLIGHT:
  592. {
  593. devicePort = GPIO_DEV_SN_LIGHT_FACE;
  594. break;
  595. }
  596. case HEADLIGHT_RED:
  597. {
  598. devicePort = 6/*GPIO_DEV_SN_LIGHT_MACHINE_FAULT*/;
  599. break;
  600. }
  601. case CONTACTLESSCARD:
  602. {
  603. devicePort = GPIO_DEV_SN_LIGHT_CONTACTLESSCARD;
  604. break;
  605. }
  606. case HEADLIGHT_ASSIST:
  607. {
  608. devicePort = GPIO_DEV_SN_LIGHT_FACE;
  609. break;
  610. }
  611. break;
  612. default:
  613. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("unsupport device seq: %d", req.devseq);
  614. return;
  615. }
  616. if (m_hDevHelper != nullptr) {
  617. DWORD dwReq = devicePort;
  618. DWORD dwMode = 0;
  619. if (!req.close) {
  620. dwMode |= GPIO_DEV_LIGHT_MODE_COLOR_NORMAL;
  621. if (!!req.mode) {
  622. dwMode |= GPIO_DEV_LIGHT_MODE_LIGHT_FLICKER;
  623. } else {
  624. dwMode |= GPIO_DEV_LIGHT_MODE_LIGHT_SUSTAIN;
  625. }
  626. }
  627. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("to set SetStatus...%d, 0x%X", dwReq, dwMode);
  628. const ErrorCodeEnum ec = m_hDevHelper->SetStatus(dwReq, dwMode);
  629. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("SetStatus returned %s", SpStrError(ec));
  630. if (ec != Error_Succeed) {
  631. DevErrorInfo devErrInfo;
  632. ZeroMemory(&devErrInfo, sizeof(devErrInfo));
  633. m_hDevHelper->GetLastErr(devErrInfo);
  634. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("SetStatus failed:%s(%s)", SpStrError(ec), devErrInfo.szErrMsg);
  635. }
  636. } else {
  637. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("dev helper object is invalid pointer!");
  638. }
  639. #endif //RVC_OS_LINUX
  640. }
  641. void CGpioEntity::Set(GpioService_Set_Info req)
  642. {
  643. CSimpleStringA activeModeSecName = "";
  644. int devicePort;
  645. const int deviceSeq = req.devseq;
  646. LOG_TRACE("Set request %s arrived!", GetLightSeqString(deviceSeq));
  647. switch (deviceSeq) {
  648. case CARDREADER:
  649. {
  650. activeModeSecName = "CardReaderNormal";
  651. devicePort = 0;
  652. break;
  653. }
  654. case CARDREADER_RED:
  655. {
  656. activeModeSecName = "RedLightNormal";
  657. devicePort = 6;
  658. break;
  659. }
  660. case IDCERTIFICATE:
  661. {
  662. activeModeSecName = "IDCertificateNormal";
  663. devicePort = 2;
  664. break;
  665. }
  666. case FINGERPRINT:
  667. {
  668. activeModeSecName = "FingerPrintNormal";
  669. devicePort = 10;
  670. break;
  671. }
  672. case PINPAD:
  673. {
  674. activeModeSecName = "CardReaderNormal";
  675. devicePort = 3;
  676. break;
  677. }
  678. case HEADLIGHT:
  679. {
  680. activeModeSecName = "LightNormal";
  681. devicePort = 4;
  682. m_headlightDevPort = devicePort;
  683. break;
  684. }
  685. case HEADLIGHT_RED:
  686. {
  687. activeModeSecName = "RedLightNormal";
  688. devicePort = 5;
  689. break;
  690. }
  691. case CONTACTLESSCARD:
  692. {
  693. activeModeSecName = "CardReaderNormal";
  694. devicePort = 8;
  695. break;
  696. }
  697. case HEADLIGHT_ASSIST:
  698. {
  699. activeModeSecName = "AssistNormal";
  700. devicePort = 4;
  701. break;
  702. }
  703. case HSPSCANNER:
  704. {
  705. activeModeSecName = "LightNormal";
  706. devicePort = 12;
  707. break;
  708. }
  709. break;
  710. default:
  711. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("unsupport device seq: %d", deviceSeq);
  712. return;
  713. }
  714. OutDrivingInfo odi;
  715. GetOutDrivingModInfo(activeModeSecName, odi);
  716. SetOutDriving(req, odi, 0, devicePort);
  717. }
  718. //仅仅获取挂机的状态,但远远没有这么简单,这点只调用了一次,开了一个监听线程,用于监听震动、开关门等事件
  719. void CGpioEntity::GetStatus(int deviceSeq, SpReqAnsContext<GpioService_GetStatus_Req, GpioService_GetStatus_Ans>::Pointer ctx)
  720. {
  721. /** 注意设备序号是实体内定义的逻辑,不是设备端口号,用作于计时器的ID去了*/
  722. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("GetStatus with devseq %d", deviceSeq);
  723. if (deviceSeq == PHONEPICKUP) {
  724. CSimpleStringA initDriver = "";
  725. int devicePort;
  726. /** 获取指定的模式,以便后续获取输入模式和持续触发模式,见 GetReceivingModInfo*/
  727. initDriver = "PhoneNormal";
  728. /** 获取硬件规格里对应的序号,其实是固定死的*/
  729. devicePort = 18;
  730. ReceivingInfo ri;
  731. GetReceivingModInfo(initDriver, ri);
  732. ri.Port = devicePort;
  733. GetReceiving(deviceSeq, ri, PICKUPSENSOR);
  734. }
  735. }
  736. void CGpioEntity::OnOutputPositiveLevelTimerout(void* pData)
  737. {
  738. SetContextInfo* pSCI = (SetContextInfo*)pData;
  739. GetFunction()->KillTimer(pSCI->timerID);
  740. DevOutputInfo doi = GetCurrDevStatus();
  741. WritePin(pSCI->pinSeq, true);
  742. delete pSCI;
  743. SaveCurrDevStatus(doi);
  744. }
  745. void CGpioEntity::OnPositiveFlickerSetTimerout(void* pData)
  746. {
  747. SetContextInfo* pSCI = (SetContextInfo*)pData;
  748. GetFunction()->KillTimer(pSCI->timerID);
  749. DevOutputInfo doi = GetCurrDevStatus();
  750. WritePin(pSCI->pinSeq, false);
  751. pSCI->timerID = pSCI->timerID;
  752. ITimerListener* pListener = new TimerOutHelper<CGpioEntity>(this, &CGpioEntity::OnPositiveFlickerResetTimerout, pSCI, true);
  753. GetFunction()->SetTimer(pSCI->timerID, pListener, pSCI->resetTime);
  754. }
  755. void CGpioEntity::OnPositiveFlickerResetTimerout(void* pData)
  756. {
  757. SetContextInfo* pSCI = (SetContextInfo*)pData;
  758. GetFunction()->KillTimer(pSCI->timerID);
  759. DevOutputInfo doi = GetCurrDevStatus();
  760. WritePin(pSCI->pinSeq, true);
  761. ITimerListener* pListener = new TimerOutHelper<CGpioEntity>(this, &CGpioEntity::OnPositiveFlickerSetTimerout, pSCI, true);
  762. GetFunction()->SetTimer(pSCI->timerID, pListener, pSCI->setTime);
  763. }
  764. //老接口,用于控制灯
  765. bool CGpioEntity::SetOutDriving(GpioService_Set_Info req, OutDrivingInfo od, ULONG iIndex, ULONG pinSeq)
  766. {
  767. DevOutputInfo doi = GetCurrDevStatus();
  768. if (req.close == 1) {
  769. GetFunction()->KillTimer(req.devseq);
  770. //oilyang add 20161222
  771. //如果关闭照明灯,以感知为准
  772. if (pinSeq == m_headlightDevPort)
  773. WritePin(pinSeq, m_bHeadLightFlag); //这个值有待商榷
  774. else {
  775. if (pinSeq == PIN_HSPSCANNER_PREVIEW_LIGHT) {
  776. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("off hspsanner.");
  777. WritePin(PIN_HSPSCANNER_LIGHT, false);
  778. }
  779. WritePin(pinSeq, false);
  780. }
  781. return true;
  782. }
  783. switch (od.OutputMode) {
  784. case OM_POSITIVE_LEVEL:
  785. {
  786. switch (od.StopMode) {
  787. case SM_CALLTRIGGER:
  788. {
  789. LOG_TRACE("0.0 mode:output[%u], pinSeq=%u", doi.output, pinSeq);
  790. //if it is hspsanner
  791. if (pinSeq == PIN_HSPSCANNER_PREVIEW_LIGHT) {
  792. DbgWithLink(LOG_LEVEL_INFO, LOG_TYPE_SYSTEM)("light hspsanner.");
  793. WritePin(PIN_HSPSCANNER_LIGHT, true);
  794. }
  795. WritePin(pinSeq, true);
  796. break;
  797. }
  798. case SM_TIMEOUT:
  799. {
  800. WritePin(pinSeq, true);
  801. SetContextInfo* pSci = new SetContextInfo();;
  802. pSci->ctx = NULL;
  803. pSci->timerID = req.devseq;
  804. pSci->timeout = od.TimeOut;
  805. pSci->index = iIndex;
  806. pSci->pinSeq = pinSeq;
  807. ITimerListener* pListener = new TimerOutHelper<CGpioEntity>(this, &CGpioEntity::OnOutputPositiveLevelTimerout, pSci);
  808. GetFunction()->SetTimer(pSci->timerID, pListener, od.TimeOut);
  809. break;
  810. }
  811. case SM_CYCLE:
  812. break;
  813. default:
  814. break;
  815. }
  816. }
  817. break;
  818. case OM_POSITIVE_FLICKER:
  819. switch (od.StopMode) {
  820. case SM_CALLTRIGGER:
  821. break;
  822. case SM_TIMEOUT:
  823. break;
  824. case SM_CYCLE:
  825. {
  826. SetContextInfo* pSci = new SetContextInfo();
  827. pSci->ctx = NULL;
  828. pSci->index = iIndex;
  829. pSci->pinSeq = pinSeq;
  830. pSci->timerID = req.devseq;
  831. pSci->setTime = od.SetTime;
  832. pSci->resetTime = od.ResetTime;
  833. pSci->timeout = od.TimeOut;
  834. ITimerListener* pListener = new TimerOutHelper<CGpioEntity>(this, &CGpioEntity::OnPositiveFlickerSetTimerout, pSci, true);
  835. WritePin(pinSeq, true);
  836. GetFunction()->SetTimer(pSci->timerID, pListener, pSci->setTime);
  837. break;
  838. }
  839. default:
  840. break;
  841. }
  842. break;
  843. case OM_NEGATIVE_FLICKER:
  844. switch (od.StopMode) {
  845. case SM_CALLTRIGGER:
  846. break;
  847. case SM_TIMEOUT:
  848. break;
  849. case SM_CYCLE:
  850. break;
  851. default:
  852. break;
  853. }
  854. break;
  855. default:
  856. break;
  857. }
  858. return true;
  859. }
  860. /** 太复杂了,先掺在一起再改动吧 [Gifur@2023921]*/
  861. void CGpioEntity::OnPositiveLevelTimerOut(void* pData)
  862. {
  863. GetContextInfo* pGci = (GetContextInfo*)pData;
  864. const int initCtt = pGci->InitCTT;
  865. const int pos = pGci->Port;
  866. ULONG input = 0;
  867. BYTE btInput;
  868. bool bShakeOne, bMoveOne, bSwitchOne, bPhoneOne, bCardOne;
  869. bShakeOne = bMoveOne = bSwitchOne = bPhoneOne = bCardOne = false;
  870. ErrorCodeEnum err(Error_Succeed);
  871. if (!m_bFuncVer2) {
  872. err = m_hDevHelper->ReadPort(INPUT_PORT_2, btInput);
  873. } else {
  874. #if defined(RVC_OS_LINUX)
  875. DWORD dwReq(GPIO_DEV_SN_LIGHT_SENSOR_ALL);
  876. DWORD dwMode = 0;
  877. //DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("to DetectStatus 0x%X...", dwReq);
  878. err = m_hDevHelper->DetectStatus(dwReq, dwMode);
  879. //DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("DetectStatus return %s, 0x%X", SpStrError(err), dwMode);
  880. btInput = dwMode;
  881. #else
  882. err = Error_NotSupport;
  883. #endif //RVC_OS_LINUX
  884. }
  885. if (err != Error_Succeed) {
  886. DevErrorInfo devErrInfo;
  887. ZeroMemory(&devErrInfo, sizeof(DevErrorInfo));
  888. ErrorCodeEnum erroCode = m_hDevHelper->GetLastErr(devErrInfo);
  889. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("%s failed: %s, ErrMsg[%s]", m_bFuncVer2 ? "DetectStatus": "ReadPort", SpStrError(err), (LPCTSTR)devErrInfo.szErrMsg);
  890. return;
  891. }
  892. /** 震动感应 */
  893. if (pGci->CttShake == 1) {
  894. bShakeOne = true;
  895. do {
  896. /** 待商榷,这里永远不可能为1 [Gifur@2023921]*/
  897. if (initCtt == 1) {
  898. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("test initCtt == 1");
  899. if (DetectBit(btInput, VIBRATIONSENSOR)) {
  900. if (!m_bVibrationFlag && IfHaveMoveDetect()) {
  901. LogEvent(Severity_Middle, LOG_EVT_VIBRATIONSENSOR, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(17), __LINE__));
  902. }
  903. m_bVibrationFlag = true;
  904. } else
  905. m_bVibrationFlag = false;
  906. break;
  907. }
  908. if (m_bVibrationRound) {
  909. if (DetectBit(btInput, VIBRATIONSENSOR) && !m_bVibrationFlag) {
  910. if (IfHaveMoveDetect())
  911. LogEvent(Severity_Middle, LOG_EVT_VIBRATIONSENSOR, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(17), __LINE__));
  912. m_bVibrationFlag = true;
  913. m_bVibrationRound = false;
  914. }
  915. } else if (!DetectBit(btInput, VIBRATIONSENSOR) && m_bVibrationFlag) {
  916. m_bVibrationFlag = false;
  917. m_bVibrationRound = true;
  918. }
  919. } while (0);
  920. pGci->CttShake = pGci->InitCTT;
  921. }
  922. /** 机箱门开关检测*/
  923. if (pGci->CttSwitch == 1) {
  924. bSwitchOne = true;
  925. do {
  926. if (initCtt == 1) {
  927. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("test initCtt == 1");
  928. if (DetectBit(btInput, OPENSENSOR)) {
  929. if (!m_bOpenFlag) {
  930. if (IfHaveMoveDetect())
  931. LogEvent(Severity_Middle, LOG_EVT_OPENSENSOR_ON, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(18), __LINE__));
  932. m_bOpenFlag = true;
  933. }
  934. } else if (m_bOpenFlag) {
  935. if (IfHaveMoveDetect())
  936. LogEvent(Severity_Middle, LOG_EVT_OPENSENSOR_OFF, CSimpleStringA::Format("%s [InActive] line: %d", GetDriverPortString(18), __LINE__));
  937. m_bOpenFlag = false;
  938. }
  939. break;
  940. }
  941. if (m_bOpenRound) {
  942. if (DetectBit(btInput, OPENSENSOR) && !m_bOpenFlag) {
  943. if (IfHaveMoveDetect())
  944. LogEvent(Severity_Middle, LOG_EVT_OPENSENSOR_ON, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(18), __LINE__));
  945. m_bOpenFlag = true;
  946. m_bOpenRound = false;
  947. }
  948. } else if (!DetectBit(btInput, OPENSENSOR) && m_bOpenFlag) {
  949. if (IfHaveMoveDetect())
  950. LogEvent(Severity_Middle, LOG_EVT_OPENSENSOR_OFF, CSimpleStringA::Format("%s [InActive] line: %d", GetDriverPortString(18), __LINE__));
  951. m_bOpenFlag = false;
  952. m_bOpenRound = true;
  953. }
  954. } while (0);
  955. pGci->CttSwitch = pGci->InitCTT;
  956. }
  957. /**话机检测*/
  958. if (pGci->CttPhone == 1) {
  959. bPhoneOne = true;
  960. do {
  961. if (initCtt == 1) {
  962. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("test initCtt == 1");
  963. if (m_ePickUpFlag == UnknownStatus) {
  964. if (DetectBit(btInput, PICKUPSENSOR)) m_ePickUpFlag = Actived;
  965. else if (!DetectBit(btInput, PICKUPSENSOR)) m_ePickUpFlag = InActive;
  966. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("Set initial value: %d", (int)m_ePickUpFlag);
  967. } else {
  968. if (DetectBit(btInput, PICKUPSENSOR)) {
  969. if (m_ePickUpFlag == InActive) {
  970. if (IfHaveMoveDetect())
  971. LogEvent(Severity_Middle, LOG_EVT_PICKUP, "话机提起");
  972. m_ePickUpFlag = Actived;
  973. }
  974. } else if (m_ePickUpFlag == Actived) {
  975. if (IfHaveMoveDetect())
  976. LogEvent(Severity_Middle, LOG_EVT_ONHOOK, "话机放下");
  977. m_ePickUpFlag = InActive;
  978. }
  979. }
  980. break;
  981. }
  982. if (m_bPickUpRound) {
  983. if (DetectBit(btInput, PICKUPSENSOR)) {
  984. if (m_ePickUpFlag == InActive) {
  985. if (IfHaveMoveDetect())
  986. LogEvent(Severity_Middle, LOG_EVT_PICKUP, "话机提起");
  987. m_ePickUpFlag = Actived;
  988. m_bPickUpRound = false;
  989. } else if (m_ePickUpFlag == UnknownStatus) {
  990. m_ePickUpFlag = Actived;
  991. }
  992. }
  993. } else if (!DetectBit(btInput, PICKUPSENSOR)) {
  994. if (m_ePickUpFlag == Actived) {
  995. if (IfHaveMoveDetect())
  996. LogEvent(Severity_Middle, LOG_EVT_ONHOOK, "话机放下");
  997. m_ePickUpFlag = InActive;
  998. m_bPickUpRound = true;
  999. } else if (m_ePickUpFlag == UnknownStatus) {
  1000. m_ePickUpFlag = InActive;
  1001. }
  1002. }
  1003. } while (0);
  1004. pGci->CttPhone = pGci->InitCTT;
  1005. }
  1006. /*物体靠近感知检测*/
  1007. if (pGci->CttMove == 1) {
  1008. bMoveOne = true;
  1009. do {
  1010. if (initCtt == 1) {
  1011. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("test initCtt == 1");
  1012. if (DetectBit(btInput, MOVESENSOR)) {
  1013. if (IfHaveMoveDetect())
  1014. LogEvent(Severity_Middle, LOG_EVT_MOVESENSOR_ON, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(20), __LINE__));
  1015. }
  1016. break;
  1017. }
  1018. if (m_bMoveRound) {
  1019. if (DetectBit(btInput, MOVESENSOR)) {
  1020. m_moveDisappearTimes = 0;
  1021. if (m_moveHoldTimes < MAX_MOVE_HOLD_TIMES) { // 100ms * 5000
  1022. if ((m_moveHoldTimes % LOG_TIME_VALUE) == 0) { //100ms * 25 = 2.5s 但因为厂家接口调用,不进来计数,需要800ms+
  1023. if (IfHaveMoveDetect())
  1024. LogEvent(Severity_Middle, LOG_EVT_MOVESENSOR_ON, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(20), __LINE__));
  1025. }
  1026. } else if ((m_moveHoldTimes % MAX_MOVE_HOLD_TIMES) == 0) { //难道8分钟一直有人就异常?还有一个 Round 标识
  1027. if (IfHaveMoveDetect()) {
  1028. SYSTEMTIME localTime;
  1029. GetLocalTime(&localTime);
  1030. if (localTime.wHour > 8 && localTime.wHour < 18)
  1031. {
  1032. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM).setResultCode("RTA2902")("Move detect is abnormal(Work time).");
  1033. LogWarn(Severity_High, Error_Unexpect, LOG_EVT_MOVEDETECT_ABNORMAL_WORKTIME, "Move detect is abnormal(Work time).");
  1034. }
  1035. else
  1036. {
  1037. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM).setResultCode("RTA2903")("Move detect is abnormal(off work).");
  1038. LogWarn(Severity_High, Error_Unexpect, LOG_EVT_MOVEDETECT_ABNORMAL_OFFWORK, "Move detect is abnormal(off work).");
  1039. }
  1040. }
  1041. }
  1042. m_moveHoldTimes++;
  1043. m_bMoveRound = false;
  1044. }
  1045. } else if (!DetectBit(btInput, MOVESENSOR)) {
  1046. m_moveHoldTimes = 0;
  1047. if ((m_moveDisappearTimes % LOG_TIME_VALUE) == 0) {
  1048. if (IfHaveMoveDetect())
  1049. LogEvent(Severity_Middle, LOG_EVT_MOVESENSOR_OFF, CSimpleStringA::Format("%s [InActive] line: %d", GetDriverPortString(20), __LINE__));
  1050. }
  1051. m_moveDisappearTimes++;
  1052. m_bMoveRound = true;
  1053. }
  1054. } while (0);
  1055. pGci->CttMove = pGci->InitCTT;
  1056. }
  1057. /*卡嘴异物检测*/
  1058. if (pGci->CttCard == 1) {
  1059. bCardOne = true;
  1060. do {
  1061. if (initCtt == 1) {
  1062. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("test initCtt == 1");
  1063. if (DetectBit(btInput, CARDGATESENSOR)) {
  1064. if (!m_bCardGateFlag) {
  1065. if (IfHaveMoveDetect())
  1066. LogEvent(Severity_Middle, LOG_EVT_CARDGATESENSOR, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(21), __LINE__));
  1067. m_bCardGateFlag = true;
  1068. }
  1069. } else
  1070. m_bCardGateFlag = false;
  1071. break;
  1072. }
  1073. if (m_bCardGateRound) {
  1074. if (DetectBit(btInput, CARDGATESENSOR) && !m_bCardGateFlag) {
  1075. if (IfHaveMoveDetect())
  1076. LogEvent(Severity_Middle, LOG_EVT_CARDGATESENSOR, CSimpleStringA::Format("%s [Active] line: %d", GetDriverPortString(21), __LINE__));
  1077. m_bCardGateFlag = true;
  1078. m_bCardGateRound = false;
  1079. }
  1080. } else if (!DetectBit(btInput, CARDGATESENSOR) && m_bCardGateFlag) {
  1081. m_bCardGateFlag = false;
  1082. m_bCardGateRound = true;
  1083. }
  1084. } while (0);
  1085. pGci->CttCard = pGci->InitCTT;
  1086. }
  1087. /////////////////////////////////////////////////////////////////////////////////////
  1088. if (pGci->CttShake > 1 && !bShakeOne) {
  1089. do {
  1090. if (m_bVibrationRound) {
  1091. if (DetectBit(btInput, VIBRATIONSENSOR))
  1092. pGci->CttShake--;
  1093. else {
  1094. m_bVibrationRound = false;
  1095. pGci->CttShake = pGci->InitCTT;
  1096. }
  1097. } else {
  1098. if (!DetectBit(btInput, VIBRATIONSENSOR))
  1099. pGci->CttShake--;
  1100. else {
  1101. m_bVibrationRound = true;
  1102. pGci->CttShake = pGci->InitCTT;
  1103. }
  1104. }
  1105. } while (0);
  1106. }
  1107. if (pGci->CttSwitch > 1 && !bSwitchOne) {
  1108. do {
  1109. if (m_bOpenRound) {
  1110. if (DetectBit(btInput, OPENSENSOR))
  1111. pGci->CttSwitch--;
  1112. else {
  1113. m_bOpenRound = false;
  1114. pGci->CttSwitch = pGci->InitCTT;
  1115. }
  1116. } else {
  1117. if (!DetectBit(btInput, OPENSENSOR))
  1118. pGci->CttSwitch--;
  1119. else {
  1120. m_bOpenRound = true;
  1121. pGci->CttSwitch = pGci->InitCTT;
  1122. }
  1123. }
  1124. } while (0);
  1125. }
  1126. if (pGci->CttPhone > 1 && !bPhoneOne) {
  1127. do {
  1128. if (m_ePickUpFlag == UnknownStatus) {
  1129. if (DetectBit(btInput, PICKUPSENSOR)) m_ePickUpFlag = Actived;
  1130. else if (!DetectBit(btInput, PICKUPSENSOR)) m_ePickUpFlag = InActive;
  1131. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("Set initial value: %d", (int)m_ePickUpFlag);
  1132. break;
  1133. }
  1134. if (m_bPickUpRound) { /** 该参数的作用貌似是用于记录当前是否是提机的累计次数中,状态切换时会重置次数 [Gifur@2022527]*/
  1135. if (DetectBit(btInput, PICKUPSENSOR)) {
  1136. pGci->CttPhone--;
  1137. } else {
  1138. m_bPickUpRound = false;
  1139. pGci->CttPhone = pGci->InitCTT;
  1140. }
  1141. } else {
  1142. if (!DetectBit(btInput, PICKUPSENSOR))
  1143. pGci->CttPhone--;
  1144. else {
  1145. m_bPickUpRound = true;
  1146. pGci->CttPhone = pGci->InitCTT;
  1147. }
  1148. }
  1149. } while (0);
  1150. }
  1151. if (pGci->CttMove > 1 && !bMoveOne) {
  1152. do {
  1153. if (m_bMoveRound) {
  1154. if (DetectBit(btInput, MOVESENSOR))
  1155. pGci->CttMove--;
  1156. else {
  1157. m_bMoveRound = false;
  1158. pGci->CttMove = pGci->InitCTT;
  1159. }
  1160. } else {
  1161. if (!DetectBit(btInput, MOVESENSOR))
  1162. pGci->CttMove--;
  1163. else {
  1164. m_bMoveRound = true;
  1165. pGci->CttMove = pGci->InitCTT;
  1166. }
  1167. }
  1168. } while (0);
  1169. }
  1170. if (pGci->CttCard > 1 && !bCardOne) {
  1171. do {
  1172. if (m_bCardGateRound) {
  1173. if (DetectBit(btInput, CARDGATESENSOR))
  1174. pGci->CttCard--;
  1175. else {
  1176. m_bCardGateRound = false;
  1177. pGci->CttCard = pGci->InitCTT;
  1178. }
  1179. } else {
  1180. if (!DetectBit(btInput, CARDGATESENSOR))
  1181. pGci->CttCard--;
  1182. else {
  1183. m_bCardGateRound = true;
  1184. pGci->CttCard = pGci->InitCTT;
  1185. }
  1186. }
  1187. } while (0);
  1188. }
  1189. GetFunction()->ResetTimer(pGci->timerID, 100);
  1190. }
  1191. bool CGpioEntity::GetReceiving(int deviceSeq, ReceivingInfo ri, ULONG iIndex)
  1192. {
  1193. DbgWithLink(LOG_LEVEL_DEBUG, LOG_TYPE_SYSTEM)("inputmode[%d],port[%d],ctt[%d]", ri.InputMode, ri.Port, ri.ContinuousTriggerTime);
  1194. switch (ri.InputMode)
  1195. {
  1196. case IM_POSITIVE_LEVEL:
  1197. { /** 目前只是使用了这一个 [Gifur@2023921]*/
  1198. GetContextInfo* pGci = new GetContextInfo();
  1199. pGci->timerID = deviceSeq;
  1200. pGci->index = iIndex;
  1201. pGci->Port = ri.Port;
  1202. pGci->CttCard = ri.ContinuousTriggerTime;
  1203. pGci->CttMove = ri.ContinuousTriggerTime;
  1204. pGci->CttPhone = ri.ContinuousTriggerTime;
  1205. pGci->CttShake = ri.ContinuousTriggerTime;
  1206. pGci->CttSwitch = ri.ContinuousTriggerTime;
  1207. pGci->InitCTT = ri.ContinuousTriggerTime;
  1208. ITimerListener* pListener = new TimerOutHelper<CGpioEntity>(this, &CGpioEntity::OnPositiveLevelTimerOut, pGci);
  1209. GetFunction()->SetTimer(pGci->timerID, pListener, 100);
  1210. break;
  1211. }
  1212. default:
  1213. DbgWithLink(LOG_LEVEL_WARN, LOG_TYPE_SYSTEM)("not support: %d", ri.InputMode);
  1214. break;
  1215. }
  1216. return true;
  1217. }
  1218. /** 旧接口,从配置中获取闪烁的属性 [Gifur@2023921]*/
  1219. void CGpioEntity::GetOutDrivingModInfo(CSimpleStringA modName, OutDrivingInfo& odi)
  1220. {
  1221. if (modName.Compare("IDCertificateNormal") == 0) {
  1222. odi.OutputMode = OM_POSITIVE_FLICKER;
  1223. odi.StopMode = SM_CYCLE;
  1224. odi.SetTime = 150;
  1225. odi.ResetTime = 150;
  1226. odi.TimeOut = 5000;
  1227. } else if (modName.Compare("FingerPrintNormal") == 0) {
  1228. odi.OutputMode = OM_POSITIVE_FLICKER;
  1229. odi.StopMode = SM_CYCLE;
  1230. odi.SetTime = 150;
  1231. odi.ResetTime = 150;
  1232. odi.TimeOut = 5000;
  1233. } else if (modName.Compare("CardReaderNormal") == 0) {
  1234. odi.OutputMode = OM_POSITIVE_FLICKER;
  1235. odi.StopMode = SM_CYCLE;
  1236. odi.SetTime = 200;
  1237. odi.ResetTime = 200;
  1238. odi.TimeOut = 5000;
  1239. } else if (modName.Compare("AssistNormal") == 0) {
  1240. odi.OutputMode = OM_POSITIVE_FLICKER;
  1241. odi.StopMode = SM_CYCLE;
  1242. odi.SetTime = 1000;
  1243. odi.ResetTime = 500;
  1244. odi.TimeOut = 5000;
  1245. } else if (modName.Compare("LightNormal") == 0) {
  1246. odi.OutputMode = OM_POSITIVE_LEVEL;
  1247. odi.StopMode = SM_CALLTRIGGER;
  1248. odi.SetTime = 1000;
  1249. odi.ResetTime = 1000;
  1250. odi.TimeOut = 5000;
  1251. } else if (modName.Compare("RedLightNormal") == 0) {
  1252. odi.OutputMode = OM_POSITIVE_LEVEL;
  1253. odi.StopMode = SM_CALLTRIGGER;
  1254. odi.SetTime = 200;
  1255. odi.ResetTime = 200;
  1256. odi.TimeOut = 3000;
  1257. } else {
  1258. odi.OutputMode = OM_POSITIVE_LEVEL;
  1259. odi.StopMode = SM_CALLTRIGGER;
  1260. odi.SetTime = 200;
  1261. odi.ResetTime = 200;
  1262. odi.TimeOut = 5000;
  1263. }
  1264. LOG_TRACE("outputmode.stopmode:[%d].[%d]", odi.OutputMode, odi.StopMode);
  1265. }
  1266. /*从配置文件中获取配置*/
  1267. void CGpioEntity::GetReceivingModInfo(CSimpleStringA modName, ReceivingInfo& ri)
  1268. {
  1269. if (modName.Compare("PhoneNormal") == 0) {
  1270. ri.ContinuousTriggerTime = 2;
  1271. } else if (modName.Compare("GpioNormal") == 0) {
  1272. ri.ContinuousTriggerTime = 10;
  1273. } else if (modName.Compare("CardGateNormal") == 0) {
  1274. ri.ContinuousTriggerTime = 10;
  1275. } else if (modName.Compare("ShakeNormal") == 0) {
  1276. ri.ContinuousTriggerTime = 4;
  1277. } else {
  1278. ri.ContinuousTriggerTime = 10;
  1279. }
  1280. ri.InputMode = IM_POSITIVE_LEVEL;
  1281. }
  1282. BYTE CGpioEntity::GetOutputStatus(int sn)
  1283. {
  1284. if (sn == 0)
  1285. return m_btOutputStatus[0];
  1286. else if (sn == 1)
  1287. return m_btOutputStatus[1];
  1288. else if (sn == 2)
  1289. return m_btOutputStatus[2];
  1290. else
  1291. return 0;
  1292. }
  1293. bool CGpioEntity::IfHaveMoveDetect()
  1294. {
  1295. if (m_eMachineType == RVC_Stand2S || m_eMachineType == RVC_Stand1SPlus ||m_eMachineType == RVC_CardPrinter)
  1296. return true;
  1297. else
  1298. return false;
  1299. }
  1300. SP_BEGIN_ENTITY_MAP()
  1301. SP_ENTITY(CGpioEntity)
  1302. SP_END_ENTITY_MAP()