DIOS.Dev.FPD.KonicaDR.cpp 83 KB

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  1. #include "stdafx.h"
  2. #include "FileVersion.hpp"
  3. #include "CCOS.Dev.FPD.KonicaDR.h"
  4. #include "DICOMImageHeadKey.h"
  5. #include "KonicaCtrl.h"
  6. #include "common_api.h"
  7. namespace nsFPD = CCOS::Dev::Detail::Detector;
  8. extern KonicaCtrl* g_pDetector;
  9. static nsFPD::KonicaDriver gIODriver;
  10. Log4CPP::Logger* gLogger = nullptr;
  11. extern const char* g_szMouldPath;
  12. KonicaDriver* gDriver = nullptr;
  13. extern "C" CCOS::Dev::IODriver * __cdecl GetIODriver() // 返回静态对象的引用, 调用者不能删除 !
  14. {
  15. return &gIODriver;
  16. }
  17. extern "C" CCOS::Dev::IODriver * __cdecl CreateIODriver() // 返回新对象, 调用者必须自行删除此对象 !
  18. {
  19. gDriver = new nsFPD::KonicaDriver();
  20. return gDriver;
  21. }
  22. nsFPD::KonicaDriver::KonicaDriver()
  23. {
  24. pObjDev = nullptr;
  25. m_bDriverConnect = false; //缺省为false
  26. m_pAttribute.reset(new ResDataObject());
  27. m_pDescription.reset(new ResDataObject());
  28. }
  29. nsFPD::KonicaDriver::~KonicaDriver()
  30. {
  31. if (pObjDev != nullptr)
  32. {
  33. delete pObjDev;
  34. pObjDev = nullptr;
  35. }
  36. Close();
  37. Log4CPP::ThreadContext::Map::Clear();
  38. gLogger = nullptr;
  39. }
  40. auto nsFPD::KonicaDriver::CreateDevice(int index)->std::unique_ptr <IODevice>
  41. {
  42. printf("--Driver-- CreateDevice \r\n");
  43. FINFO("--Driver-- createdevice");
  44. pObjDev = new FPDDeviceKonica(EventCenter, m_ConfigFileName);
  45. auto Device = std::unique_ptr<IODevice>(new IODevice(pObjDev));
  46. pObjDev->CreateDevice();
  47. pObjDev->Register();
  48. return Device;
  49. }
  50. bool nsFPD::KonicaDriver::Connect()
  51. {
  52. printf("--Driver-- Connect \r\n");
  53. FINFO("--Driver-- connect");
  54. return m_bDriverConnect;
  55. }
  56. void nsFPD::KonicaDriver::Disconnect()
  57. {
  58. printf("--Driver-- Disconnect \r\n");
  59. FINFO("--Driver-- disconnect");
  60. if (pObjDev != nullptr)
  61. {
  62. delete pObjDev;
  63. pObjDev = nullptr;
  64. }
  65. m_bDriverConnect = false;
  66. }
  67. bool nsFPD::KonicaDriver::isConnected() const
  68. {
  69. return m_bDriverConnect;
  70. }
  71. void nsFPD::KonicaDriver::Prepare()
  72. {
  73. printf("--Driver-- prepare \r\n");
  74. string strLogPath = GetProcessDirectory() + R"(\Conf\Log4CPP.Config.xml)";
  75. auto rc = Log4CPP::LogManager::LoadConfigFile(strLogPath.c_str());
  76. gLogger = Log4CPP::LogManager::GetLogger("Module");
  77. FINFO("Code Build datetime [{$} {$}]", __DATE__, __TIME__);
  78. #ifdef _WIN64
  79. FINFO("=============================Version: {$} (64-bit)==================================", FileVersion(g_szMouldPath).GetVersionString());
  80. #else
  81. FINFO("=============================Version: {$} (32-bit)==================================", FileVersion(g_szMouldPath).GetVersionString());
  82. #endif
  83. FINFO("Driver Prepare get logger");
  84. }
  85. std::string nsFPD::KonicaDriver::DriverProbe()
  86. {
  87. printf("--Driver-- DriverProbe \r\n");
  88. FINFO("--Driver-- DriverProbe config name:{$}", m_ConfigFileName);
  89. ResDataObject r_config, HardwareInfo;
  90. if (r_config.loadFile(m_ConfigFileName.c_str()))
  91. {
  92. HardwareInfo.add("MajorID", r_config["CONFIGURATION"]["MajorID"]);
  93. HardwareInfo.add("MinorID", r_config["CONFIGURATION"]["MinorID"]);
  94. HardwareInfo.add("VendorID", r_config["CONFIGURATION"]["VendorID"]);
  95. HardwareInfo.add("ProductID", r_config["CONFIGURATION"]["ProductID"]);
  96. HardwareInfo.add("SerialID", r_config["CONFIGURATION"]["SerialID"]);
  97. }
  98. else
  99. {
  100. HardwareInfo.add("MajorID", "Detector");
  101. HardwareInfo.add("MinorID", "DR");
  102. HardwareInfo.add("VendorID", "Konica");
  103. HardwareInfo.add("ProductID", "Konica");
  104. HardwareInfo.add("SerialID", "Driver");
  105. }
  106. string str = HardwareInfo.encode();
  107. return str;
  108. }
  109. std::string nsFPD::KonicaDriver::GetResource()
  110. {
  111. printf("--Driver-- GetResource \r\n");
  112. FINFO("--Driver-- GetResource");
  113. ResDataObject r_config, temp;
  114. printf("m_ConfigFileName:%s\n", m_ConfigFileName.c_str());
  115. FINFO("m_ConfigFileName:{$}", m_ConfigFileName);
  116. if (!temp.loadFile(m_ConfigFileName.c_str()))
  117. {
  118. return "";
  119. }
  120. m_ConfigAll = temp;
  121. r_config = temp["CONFIGURATION"];
  122. m_Configurations = r_config;
  123. ResDataObject DescriptionTemp;
  124. ResDataObject ListTemp;
  125. //ResDataObject m_pAttribute;
  126. //ResDataObject m_pDescription;
  127. string strTemp = ""; //用于读取字符串配置信息
  128. string strIndex = ""; //用于读取配置信息中的List项
  129. int nTemp = -1; //用于读取整型配置信息
  130. char sstream[10] = { 0 }; //用于转换值
  131. string strValue = ""; //用于存储配置的值
  132. string strType = ""; //用于存储配置的类型 int/float/string...
  133. string strAccess = ""; //用于存储权限的类型 R/W/RW
  134. string strRequired = ""; // TRUE/FALSE
  135. string strDefaultValue = "";
  136. string strRangeMin = "";
  137. string strRangeMax = "";
  138. try
  139. {
  140. int nConfigInfoCount = (int)m_Configurations["ConfigToolInfo"].GetKeyCount("AttributeInfo");
  141. //FINFO(g_pFPDCtrlLog, "ConfigInfo Count: {$}", nConfigInfoCount);
  142. m_pAttribute->clear();
  143. m_pDescription->clear();
  144. for (int nInfoIndex = 0; nInfoIndex < nConfigInfoCount; nInfoIndex++)
  145. {
  146. DescriptionTemp.clear();
  147. ListTemp.clear();
  148. //AttributeType
  149. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["Type"];
  150. DescriptionTemp.add(AttributeType, strTemp.c_str());
  151. //FINFO("DescriptionTemp--> {$}: {$}", AttributeType, strTemp.c_str());
  152. strType = strTemp; //记录配置项的类型
  153. //AttributeKey
  154. //1. 根据AttributeType,内部key和配置路径,拿到当前的真实值
  155. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["InnerKey"];
  156. nTemp = (int)m_Configurations["ConfigToolInfo"][nInfoIndex]["PathID"];
  157. GetDeviceConfigValue(r_config, strTemp.c_str(), nTemp, strValue);
  158. //2. 赋值
  159. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeKey"];
  160. if ("int" == strType)
  161. {
  162. (*m_pAttribute).add(strTemp.c_str(), atoi(strValue.c_str()));
  163. }
  164. else if ("float" == strType)
  165. {
  166. (*m_pAttribute).add(strTemp.c_str(), atof(strValue.c_str()));
  167. }
  168. else //其它先按string类型处理
  169. {
  170. (*m_pAttribute).add(strTemp.c_str(), strValue.c_str());
  171. }
  172. //AttributeAccess
  173. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["Access"];
  174. DescriptionTemp.add(AttributeAccess, strTemp.c_str());
  175. //AttributeRangeMin
  176. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["RangeMin"];
  177. if (strTemp != "") //不需要的配置项为空
  178. {
  179. DescriptionTemp.add(AttributeRangeMin, strTemp.c_str());
  180. }
  181. //AttributeRangeMax
  182. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["RangeMax"];
  183. if (strTemp != "") //不需要的配置项为空
  184. {
  185. DescriptionTemp.add(AttributeRangeMax, strTemp.c_str());
  186. }
  187. //AttributeList
  188. nTemp = m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["ListNum"];
  189. if (nTemp > 0) //ListNum不大于0时说明不需要list配置
  190. {
  191. for (int nListIndex = 0; nListIndex < nTemp; nListIndex++)
  192. {
  193. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["ListInfo"][nListIndex];
  194. //sprintf_s(sstream, "{$}", nListIndex);
  195. auto temKey = std::to_string(nListIndex);
  196. ListTemp.add(temKey.c_str(), strTemp.c_str());
  197. }
  198. DescriptionTemp.add(AttributeList, ListTemp);
  199. }
  200. //AttributeRequired
  201. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["Required"];
  202. DescriptionTemp.add(AttributeRequired, strTemp.c_str());
  203. //AttributeDefaultValue
  204. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeDescripition"]["DefaultValue"];
  205. if (strTemp != "") //不需要的配置项为空
  206. {
  207. DescriptionTemp.add(AttributeDefaultValue, strTemp.c_str());
  208. }
  209. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeKey"];
  210. (*m_pDescription).add(strTemp.c_str(), DescriptionTemp);
  211. }
  212. }
  213. catch (ResDataObjectExption& e)
  214. {
  215. FERROR("Get config error: {$}", e.what());
  216. return "";
  217. }
  218. ResDataObject resDeviceResource;
  219. resDeviceResource.add(ConfKey::CcosDetectorAttribute, (*m_pAttribute));
  220. resDeviceResource.add(ConfKey::CcosDetectorDescription, (*m_pDescription));
  221. ResDataObject DescriptionTempEx;
  222. DescriptionTempEx.add(ConfKey::CcosDetectorConfig, resDeviceResource);
  223. m_DeviceConfig = DescriptionTempEx;
  224. string res = DescriptionTempEx.encode();
  225. printf("KonicaDriver module: get resource over \r\n");
  226. FINFO("KonicaDriver module: get resource over");
  227. return res;
  228. }
  229. std::string nsFPD::KonicaDriver::DeviceProbe()
  230. {
  231. printf("--Driver-- DeviceProbe \r\n");
  232. FINFO("--Driver-- DeviceProbe");
  233. ResDataObject r_config, HardwareInfo;
  234. if (r_config.loadFile(m_ConfigFileName.c_str()))
  235. {
  236. HardwareInfo.add("MajorID", r_config["CONFIGURATION"]["MajorID"]);
  237. HardwareInfo.add("MinorID", "Device");
  238. HardwareInfo.add("VendorID", r_config["CONFIGURATION"]["VendorID"]);
  239. HardwareInfo.add("ProductID", r_config["CONFIGURATION"]["ProductID"]);
  240. HardwareInfo.add("SerialID", r_config["CONFIGURATION"]["SerialID"]);
  241. }
  242. else
  243. {
  244. HardwareInfo.add("MajorID", "Detector");
  245. HardwareInfo.add("MinorID", "Device");
  246. HardwareInfo.add("VendorID", "Konica");
  247. HardwareInfo.add("ProductID", "Konica");
  248. HardwareInfo.add("SerialID", "1234");
  249. }
  250. string str = HardwareInfo.encode();
  251. FINFO("KonicaDriver module DeviceProbe over");
  252. return str;
  253. }
  254. bool nsFPD::KonicaDriver::GetDeviceConfig(std::string& Cfg)
  255. {
  256. Cfg = m_DeviceConfig.encode();
  257. FINFO("--Driver-- GetDeviceConfig Cfg:{$}", Cfg);
  258. return true;
  259. }
  260. bool nsFPD::KonicaDriver::SetDeviceConfig(std::string Cfg)
  261. {
  262. FINFO("--Driver-- SetDeviceConfig {$}", Cfg.c_str());
  263. ResDataObject DeviceConfig;
  264. DeviceConfig.decode(Cfg.c_str());
  265. ResDataObject DescriptionTempEx;
  266. DescriptionTempEx = DeviceConfig["DeviceConfig"];
  267. bool bSaveFile = false; //true:重新保存配置文件
  268. string strAccess = "";
  269. for (int i = 0; i < DescriptionTempEx.size(); i++)
  270. {
  271. ResDataObject temp = DescriptionTempEx[i];
  272. FINFO("{$}", temp.encode());
  273. for (int j = 0; j < temp.size(); j++)
  274. {
  275. string strKey = temp.GetKey(j);
  276. FINFO("{$}", strKey.c_str());
  277. try
  278. {
  279. if (m_pAttribute->GetFirstOf(strKey.c_str()) >= 0)
  280. {
  281. strAccess = (string)(*m_pDescription)[strKey.c_str()]["Access"];
  282. if ("RW" == strAccess || "rw" == strAccess)
  283. {
  284. //修改对应配置,在其他单元的配置项要同时调用其修改函数修改真实值
  285. //1. 修改内存中的值,用于给上层发消息
  286. (*m_pAttribute)[strKey.c_str()] = temp[j];
  287. //2. 拿到Innerkey
  288. int nConfigInfoCount = (int)m_Configurations["ConfigToolInfo"].GetKeyCount("AttributeInfo");
  289. FINFO("ConfigInfo Count: {$}", nConfigInfoCount);
  290. string strTemp = ""; //存储AttributeKey
  291. for (int nInfoIndex = 0; nInfoIndex < nConfigInfoCount; nInfoIndex++)
  292. {
  293. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["AttributeKey"];
  294. if (strTemp == strKey)
  295. {
  296. strTemp = (string)m_Configurations["ConfigToolInfo"][nInfoIndex]["InnerKey"];
  297. break;
  298. }
  299. }
  300. //3. 修改配置文件中的值
  301. if (SetDeviceConfigValue(m_Configurations, strTemp.c_str(), 1, temp[j]))
  302. {
  303. bSaveFile = true;
  304. }
  305. }
  306. else
  307. {
  308. FINFO("{$} is not a RW configuration item", strKey.c_str());
  309. }
  310. }
  311. }
  312. catch (ResDataObjectExption& e)
  313. {
  314. FERROR("SetDriverConfig crashed: {$}", e.what());
  315. return false;
  316. }
  317. }
  318. }
  319. if (bSaveFile)
  320. {
  321. //3. 重新保存配置文件
  322. SaveConfigFile(true);
  323. }
  324. return true;
  325. }
  326. bool nsFPD::KonicaDriver::SaveConfigFile(bool bSendNotify)
  327. {
  328. FINFO("--Driver-- SaveConfigFile m_ConfigFileName:{$}", m_ConfigFileName);
  329. m_ConfigAll["CONFIGURATION"] = m_Configurations;
  330. bool ret = m_ConfigAll.SaveFile(m_ConfigFileName.c_str());
  331. if (ret)
  332. {
  333. FINFO("SaveConfigFile Success!");
  334. return true;
  335. }
  336. else
  337. {
  338. FERROR("SaveConfigFile Fail!");
  339. return false;
  340. }
  341. }
  342. bool nsFPD::KonicaDriver::GetDeviceConfigValue(ResDataObject config, const char* pInnerKey,
  343. int nPathID, string& strValue)
  344. {
  345. strValue = "";
  346. string strTemp = pInnerKey;
  347. if (1 == nPathID) //从DriverConfig路径下每个DPC自己的配置文件读取
  348. {
  349. if (WiredIP == strTemp || WirelessIP == strTemp || LocalIP == strTemp)
  350. {
  351. strValue = (string)config["connections"][pInnerKey];
  352. }
  353. else if (DetectorVender == strTemp || DetectorModel == strTemp ||
  354. DetectorDescription == strTemp || DetectorSerialNumber == strTemp)
  355. {
  356. strValue = (string)config[pInnerKey];
  357. }
  358. else if (SyncType == strTemp || FPDWorkStation == strTemp ||
  359. ImageWidth == strTemp || ImageHeight == strTemp)
  360. {
  361. strValue = (string)config["ModeTable"]["DetectorMode"][pInnerKey];
  362. }
  363. else if (TempMaxLimit == strTemp || ReConnect == strTemp ||
  364. TempUpperLimit == strTemp || TempLowerLimit == strTemp || TempMinLimit == strTemp ||
  365. BatLowerLimit == strTemp || BatMiniLimit == strTemp ||
  366. BatLowerLimitInCali == strTemp || WifiLowerLimit == strTemp ||
  367. WifiMiniLimit == strTemp || HighPowerTimeout == strTemp ||
  368. ShowTemperature == strTemp || ShowWifi == strTemp ||
  369. ShowBattery == strTemp || ShowBluetooth == strTemp ||
  370. FPDExamMode == strTemp || FPDAcqMode == strTemp || FPDModeMatch == strTemp ||
  371. CcosDetectorAttachedFlag == strTemp)
  372. {
  373. strValue = (string)config[pInnerKey];
  374. }
  375. else
  376. {
  377. strValue = "";
  378. FERROR("Error Configuration item: {$}", pInnerKey);
  379. }
  380. }
  381. //FINFO("GetDeviceConfigValue pInnerKey:{$},nPathID:{$},strValue:{$}", pInnerKey, nPathID, strValue);
  382. return true;
  383. }
  384. bool nsFPD::KonicaDriver::SetDeviceConfigValue(ResDataObject &config, const char* pInnerKey,
  385. int nPathID, const char* szValue)
  386. {
  387. FINFO("--Driver-- SetDeviceConfigValue change {$} item value to {$}", pInnerKey, szValue);
  388. string strTemp = pInnerKey;
  389. if (1 == nPathID) //从DriverConfig路径下每个DPC自己的配置文件读取
  390. {
  391. if (WiredIP == strTemp || WirelessIP == strTemp || LocalIP == strTemp)
  392. {
  393. config["connections"][pInnerKey] = szValue;
  394. }
  395. else if (DetectorVender == strTemp || DetectorModel == strTemp ||
  396. DetectorDescription == strTemp || DetectorSerialNumber == strTemp)
  397. {
  398. config[pInnerKey] = szValue;
  399. }
  400. else if (SyncType == strTemp || FPDWorkStation == strTemp ||
  401. ImageWidth == strTemp || ImageHeight == strTemp)
  402. {
  403. config["ModeTable"]["DetectorMode"][pInnerKey] = szValue;
  404. }
  405. else if (TempMaxLimit == strTemp || ReConnect == strTemp ||
  406. TempUpperLimit == strTemp || TempLowerLimit == strTemp ||
  407. BatLowerLimit == strTemp || BatMiniLimit == strTemp ||
  408. BatLowerLimitInCali == strTemp || WifiLowerLimit == strTemp ||
  409. WifiMiniLimit == strTemp || HighPowerTimeout == strTemp ||
  410. ShowTemperature == strTemp || ShowWifi == strTemp ||
  411. ShowBattery == strTemp || ShowBluetooth == strTemp ||
  412. FPDExamMode == strTemp || FPDAcqMode == strTemp || FPDModeMatch == strTemp ||
  413. CcosDetectorAttachedFlag == strTemp)
  414. {
  415. config[pInnerKey] = szValue;
  416. }
  417. else
  418. {
  419. FERROR("Error Configuration item: {$}", pInnerKey);
  420. return false;
  421. }
  422. }
  423. return true;
  424. }
  425. nsFPD::FPDDeviceKonica::FPDDeviceKonica(std::shared_ptr<IOEventCenter> center,std::string strConfigPath)
  426. {
  427. m_strWorkPath = GetProcessDirectory();
  428. m_nFullImageWidth = 0;
  429. m_nFullImageHeight = 0;
  430. m_nPreviewEnable = 0;
  431. m_nPreviewImageWidth = 0;
  432. m_nPreviewImageHeight = 0;
  433. m_nImgBits = 0;
  434. m_nAngle = 0;
  435. m_nPixelSpacing = 0;
  436. m_nSensitivity = 0;
  437. m_pFullImgBuffer = nullptr;
  438. m_pPreviewImgBuffer = nullptr;
  439. m_eAppStatus = APP_STATUS_IDLE;
  440. m_bDeviceConnect = false;
  441. m_eSyncMode = SYNC_SOFTWARE;
  442. m_fFactorEXI2UGY = 0.0f;
  443. m_nTargetCalibExi = 0;
  444. m_nCalibTotalExposureNum = 0,
  445. m_nCalibCurrentCalibrationRound = 0,
  446. m_nCalibCurrentExposureIndex = 0,
  447. m_nCalibCurrentExposureNum = 0;
  448. m_bEnterAcqStatus = false;
  449. m_CalibType = CCOS_CALIBRATION_TYPE_NONE;
  450. m_DetectorCtrlUnit.reset(new OemCtrl(center, this));
  451. m_AcqUnit.reset(new OemAcq(center, this));
  452. m_SyncUnit.reset(new OemSync(center, this));
  453. m_CalibUnit.reset(new OemCalib(center, this));
  454. m_DetectorConfiguration.reset(new DetectorConfiguration(strConfigPath));
  455. string fullpath = g_szMouldPath;
  456. string::size_type firstHit = fullpath.find_last_of('\\');
  457. if (firstHit == string::npos || firstHit == 0)
  458. {
  459. FERROR("Get DLL path error!");
  460. }
  461. else
  462. {
  463. FINFO("g_szMouldPath:{$}", g_szMouldPath);
  464. }
  465. string strInfoPath = fullpath.substr(0, firstHit);
  466. m_WarnAndError.reset(new FPDErrorWarning(center, DetectorUnitType, strInfoPath));
  467. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_INIT));
  468. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_ERROR));
  469. EventCenter = center;
  470. }
  471. nsFPD::FPDDeviceKonica::~FPDDeviceKonica()
  472. {
  473. if (nullptr != m_pFullImgBuffer)
  474. {
  475. delete[]m_pFullImgBuffer;
  476. m_pFullImgBuffer = nullptr;
  477. }
  478. if (nullptr != m_pPreviewImgBuffer)
  479. {
  480. delete[]m_pPreviewImgBuffer;
  481. m_pPreviewImgBuffer = nullptr;
  482. }
  483. }
  484. std::string nsFPD::FPDDeviceKonica::GetGUID() const
  485. {
  486. FINFO("--Func-- GetGUID");
  487. return DetectorUnitType;
  488. }
  489. void nsFPD::FPDDeviceKonica::Register()
  490. {
  491. FINFO("--Func-- Register");
  492. auto Disp = &Dispatch;
  493. RegisterCtrl(Disp);
  494. RegisterAcq(Disp);
  495. RegisterSync(Disp);
  496. RegisterCalib(Disp);
  497. RegisterOthers(Disp);
  498. }
  499. bool nsFPD::FPDDeviceKonica::CreateDevice()
  500. {
  501. FINFO("--Func-- CreateDevice");
  502. if (!LoadConfig())
  503. {
  504. FERROR("LoadConfig fail!");
  505. return false;
  506. }
  507. if (nullptr == g_pDetector)
  508. {
  509. g_pDetector = new KonicaCtrl();
  510. }
  511. bool bRet = g_pDetector->DriverEntry(this, m_DetectorConfiguration->m_Configurations);
  512. if (!bRet)
  513. {
  514. FERROR("DriverEntry fail!");
  515. return false;
  516. }
  517. RET_STATUS ret = Connect();
  518. if (ret != RET_SUCCEED)
  519. {
  520. FERROR("Connect fail!");
  521. return false;
  522. }
  523. FINFO("CreateDevice end");
  524. return true;
  525. }
  526. bool nsFPD::FPDDeviceKonica::Prepare()
  527. {
  528. FINFO("--Func-- device prepare");
  529. EventCenter->OnMaxBlockSize("KonicaDrQue", m_stDeviceConfig.nMaxImgWidth * m_stDeviceConfig.nMaxImgWidth * 4, 3, 4000 * 4000 * 2, 1);
  530. return true;
  531. }
  532. RET_STATUS nsFPD::FPDDeviceKonica::Connect()
  533. {
  534. FINFO("--Func-- device Connect");
  535. m_DetectorCtrlUnit->SetAttachStatus("1"); //没有attach功能,直接上发1,使客户端显示探测器状态
  536. RET_STATUS ret = RET_STATUS::RET_FAILED;
  537. if (g_pDetector->Connect(this, m_strWorkPath.c_str()))
  538. {
  539. ret = RET_STATUS::RET_SUCCEED;
  540. if (m_stDeviceConfig.bSupportDDR) //是否支持DDR采集功能
  541. {
  542. m_DetectorCtrlUnit->SetSupportDDR("1");
  543. }
  544. else
  545. {
  546. m_DetectorCtrlUnit->SetSupportDDR("0");
  547. }
  548. //把通知状态信息的时间间隔传给ctrl
  549. g_pDetector->SetNotifyStatusTimePeriod(m_stDeviceConfig.nNotifyStatusTimePeriod);
  550. g_pDetector->SetReconnectTimePeriod(m_stDeviceConfig.nReconnectTimePeriod);
  551. m_SyncUnit->SetSupportSyncMode(m_stDeviceConfig.strSupportSyncMode);
  552. m_CalibUnit->SetCalibMode(std::to_string(m_stDeviceConfig.nCalibMode));
  553. m_CalibUnit->SetLastCalibrationDate(m_stDeviceConfig.strLastCalibrationDate);
  554. m_CalibUnit->SetCalibrationFileExpireTime(m_stDeviceConfig.strCalibrationFileExpireTime);
  555. m_CalibUnit->SetCalibrationFileExpirationReminder(m_stDeviceConfig.strCalibrationFileExpirationReminder);
  556. m_DetectorCtrlUnit->SetSupportSwitchResolution(std::to_string(m_stDeviceConfig.nSupportSwitchResolution));
  557. string strTemp = "";
  558. strTemp = (string)m_DetectorConfiguration->m_Configurations["DetectorType"];
  559. m_DetectorCtrlUnit->SetDetectorType(strTemp);
  560. strTemp = (string)m_DetectorConfiguration->m_Configurations["Description"];
  561. m_DetectorCtrlUnit->SetDescription(strTemp);
  562. strTemp = (string)m_DetectorConfiguration->m_Configurations["SerialNumber"];
  563. m_DetectorCtrlUnit->SetSerialNumber(strTemp);
  564. strTemp = (string)m_DetectorConfiguration->m_Configurations["DetectorWiredIP"];
  565. m_DetectorCtrlUnit->SetDetectorWiredIP(strTemp);
  566. strTemp = (string)m_DetectorConfiguration->m_Configurations["DetectorWirelessIP"];
  567. m_DetectorCtrlUnit->SetDetectorWirelessIP(strTemp);
  568. strTemp = (string)m_DetectorConfiguration->m_Configurations["LocalIP"];
  569. m_DetectorCtrlUnit->SetLocalIP(strTemp);
  570. strTemp = (string)m_DetectorConfiguration->m_Configurations["ShowTemperature"];
  571. m_DetectorCtrlUnit->SetShowTemperature(strTemp);
  572. strTemp = (string)m_DetectorConfiguration->m_Configurations["ShowWifi"];
  573. m_DetectorCtrlUnit->SetShowWifi(strTemp);
  574. strTemp = (string)m_DetectorConfiguration->m_Configurations["ShowBattery"];
  575. m_DetectorCtrlUnit->SetShowBattery(strTemp);
  576. strTemp = (string)m_DetectorConfiguration->m_Configurations["ShowBluetooth"];
  577. m_DetectorCtrlUnit->SetShowBluetooth(strTemp);
  578. }
  579. return ret;
  580. }
  581. RET_STATUS nsFPD::FPDDeviceKonica::EnterExam(int nExamMode)
  582. {
  583. FINFO("--Func-- EnterExam {$}", nExamMode);
  584. switch (nExamMode)
  585. {
  586. case APP_STATUS_WORK_BEGIN:
  587. FINFO("Enter into Exam Windows");
  588. m_eAppStatus = APP_STATUS_WORK_BEGIN;
  589. FINFO("strLastCalibrationDate:{$},strCalibrationFileExpirationReminder:{$}", m_stDeviceConfig.strLastCalibrationDate, m_stDeviceConfig.strCalibrationFileExpirationReminder);
  590. if (m_stDeviceConfig.strCalibrationFileExpirationReminder == "1")
  591. {
  592. //进检查时判断当前校正文件是否过期,如果即将过期或者已过期都向上通知
  593. if (m_stDeviceConfig.strLastCalibrationDate == "0000-00-00 00:00:00")
  594. {
  595. //没有做过校正
  596. FWARN("No calibration file, please make a calibration!");
  597. m_WarnAndError->SendWarn(ERR_FPD_CAL_FILE_NOT_EXIST, "");
  598. }
  599. else
  600. {
  601. time_t lastCalibDate = StringToDatetime(m_stDeviceConfig.strLastCalibrationDate);
  602. int nExpireTime = std::stoi(m_stDeviceConfig.strCalibrationFileExpireTime);//单位:天
  603. FINFO("nExpireTime:{$}", nExpireTime);
  604. time_t localtime = time(NULL);
  605. //判断是否过期
  606. if (localtime > lastCalibDate + nExpireTime * 24 * 3600)
  607. {
  608. //过期了报错
  609. FWARN("Calibration file is expired! please make a calibration!");
  610. m_WarnAndError->SendWarn(ERR_FPD_CAL_FILE_OUTDATE, "");
  611. }
  612. }
  613. }
  614. break;
  615. case APP_STATUS_WORK_END:
  616. FINFO("Quit Exam Windows");
  617. m_eAppStatus = APP_STATUS_WORK_END;
  618. FINFO("strCalibrationFileExpirationReminder:{$}", m_stDeviceConfig.strCalibrationFileExpirationReminder);
  619. if (m_stDeviceConfig.strCalibrationFileExpirationReminder == "1")
  620. {
  621. m_WarnAndError->ClearWarn(ERR_FPD_CAL_FILE_NOT_EXIST);
  622. m_WarnAndError->ClearWarn(ERR_FPD_CAL_FILE_OUTDATE);
  623. }
  624. break;
  625. case APP_STATUS_DETSHARE_BEGIN:
  626. FINFO("Enter into Detector Share Windows");
  627. m_eAppStatus = APP_STATUS_DETSHARE_BEGIN;
  628. break;
  629. case APP_STATUS_DETSHAR_END:
  630. FINFO("Quit Detector Share Windows");
  631. m_eAppStatus = APP_STATUS_DETSHAR_END;
  632. break;
  633. case APP_STATUS_CAL_BEGIN:
  634. FINFO("Enter into Calibration Windows");
  635. m_eAppStatus = APP_STATUS_CAL_BEGIN;
  636. break;
  637. case APP_STATUS_CAL_END:
  638. FINFO("Quit Calibration Windows");
  639. m_eAppStatus = APP_STATUS_CAL_END;
  640. break;
  641. case APP_STATUS_WORK_IN_SENSITIVITY:
  642. FINFO("Enter into sensitivity test interface");
  643. m_eAppStatus = APP_STATUS_WORK_IN_SENSITIVITY;
  644. break;
  645. default:
  646. break;
  647. }
  648. g_pDetector->EnterExamMode(nExamMode);
  649. if (nExamMode == APP_STATUS_WORK_END || nExamMode == APP_STATUS_CAL_END)
  650. {
  651. RET_STATUS ret = StopAcquisition();
  652. if (ret != RET_STATUS::RET_SUCCEED)
  653. {
  654. FERROR("EnterExam StopAcquisition fail!");
  655. return ret;
  656. }
  657. }
  658. return RET_STATUS::RET_SUCCEED;
  659. }
  660. bool nsFPD::FPDDeviceKonica::GetLogicMode(string& strAcqMode, int& nLogicMode)
  661. {
  662. if (strAcqMode == "RAD")
  663. {
  664. nLogicMode = RAD;
  665. }
  666. else if (strAcqMode == "Stitch")
  667. {
  668. nLogicMode = Stitch;
  669. }
  670. else if (strAcqMode == "1")
  671. {
  672. nLogicMode = RAD;
  673. }
  674. else if (strAcqMode == "2")
  675. {
  676. nLogicMode = Stitch;
  677. }
  678. else
  679. {
  680. FERROR("Not support mode!");
  681. return false;
  682. }
  683. return true;
  684. }
  685. RET_STATUS nsFPD::FPDDeviceKonica::SetAcqMode(string strAcqMode)
  686. {
  687. FINFO("--Func-- SetAcqMode({$})", strAcqMode);
  688. RET_STATUS ret = RET_STATUS::RET_FAILED;
  689. //如果没连接,不执行
  690. if (!m_bDeviceConnect)
  691. {
  692. FERROR("m_bDeviceConnect is false, detector not connect, return");
  693. return ret;
  694. }
  695. //设置采集模式时发一次非Standby状态,配合子系统走流程,使界面ready状态和探测器同步
  696. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_WAKEUP));
  697. int nMode = RAD;
  698. bool bRet = GetLogicMode(strAcqMode, nMode);
  699. if (!bRet)
  700. {
  701. return ret;
  702. }
  703. try
  704. {
  705. ResDataObject objModeConfig = m_DetectorConfiguration->m_Configurations;
  706. int nModeCount = (int)objModeConfig["ModeTable"].size();
  707. for (int i = 0; i < nModeCount; i++)
  708. {
  709. int nLogicMode = (int)objModeConfig["ModeTable"][i]["LogicMode"];
  710. if (nLogicMode == nMode)
  711. {
  712. m_nImgBits = (int)objModeConfig["ModeTable"][i]["PhySizeInfoBit"];
  713. m_nAngle = (int)objModeConfig["ModeTable"][i]["RotateAngle"];
  714. m_nPixelSpacing = (int)objModeConfig["ModeTable"][i]["PixelPitch"];
  715. m_nSensitivity = (int)objModeConfig["ModeTable"][i]["Sensitivity"];
  716. m_nPreviewEnable = (int)objModeConfig["ModeTable"][i]["PreviewEnable"];
  717. FINFO("m_nImgBits:{$},m_nAngle:{$},m_nPixelSpacing:{$},m_nSensitivity:{$},m_nPreviewEnable:{$}",
  718. m_nImgBits, m_nAngle, m_nPixelSpacing, m_nSensitivity, m_nPreviewEnable);
  719. string strDoseOfExi = std::to_string(m_nSensitivity);
  720. m_fFactorEXI2UGY = 100.0f / stof(strDoseOfExi) * 1.0f;//统一使用IEC标准 呈现四角信息,无单位 ugy * 100 -ugy。所有Zskk探测器的FactorEXI2UGY均需*100
  721. FINFO("m_fFactorEXI2UGY = {$} ", m_fFactorEXI2UGY);
  722. m_DetectorCtrlUnit->SetFPDSensitivity(std::to_string(m_fFactorEXI2UGY));
  723. if (g_pDetector->SetAcqMode(nMode))
  724. {
  725. ret = RET_STATUS::RET_SUCCEED;
  726. m_AcqUnit->AcqModeNotify(strAcqMode);
  727. }
  728. else
  729. {
  730. ret = RET_STATUS::RET_FAILED;
  731. }
  732. break;
  733. }
  734. }
  735. }
  736. catch (ResDataObjectExption& e)
  737. {
  738. FERROR("Read configuration failed, Error code: {$}", e.what());
  739. }
  740. return ret;
  741. }
  742. RET_STATUS nsFPD::FPDDeviceKonica::GetSyncMode(SYNC_MODE& eSyncMode)
  743. {
  744. FINFO("--Func-- GetSyncMode");
  745. eSyncMode = m_eSyncMode;
  746. return RET_STATUS::RET_SUCCEED;
  747. }
  748. RET_STATUS nsFPD::FPDDeviceKonica::PrepareAcquisition()
  749. {
  750. FINFO("--Func-- PrepareAcquisition");
  751. RET_STATUS ret = RET_STATUS::RET_FAILED;
  752. if (!m_bDeviceConnect)
  753. {
  754. FERROR("m_bDeviceConnect is false, detector not connect, return");
  755. return ret;
  756. }
  757. //先检查设备内是否有未上传的图,如果有的话,后续需要通知APP是否进行图像的恢复或者舍弃
  758. //如果探测器已经处于采集状态,那么不调用此函数
  759. if (!m_bEnterAcqStatus)
  760. {
  761. if (g_pDetector->CheckImageInDetector(this))
  762. {
  763. ret = RET_STATUS::RET_SUCCEED;
  764. }
  765. else
  766. {
  767. ret = RET_STATUS::RET_FAILED;
  768. return ret;
  769. }
  770. }
  771. if (g_pDetector->StopAcquisition(this))
  772. {
  773. ret = RET_STATUS::RET_SUCCEED;
  774. m_bEnterAcqStatus = false;
  775. }
  776. else
  777. {
  778. FERROR("StopAcquisition fail!");
  779. ret = RET_STATUS::RET_FAILED;
  780. return ret;
  781. }
  782. if (g_pDetector->PrepareAcquisition(this))
  783. {
  784. ret = RET_STATUS::RET_SUCCEED;
  785. }
  786. else
  787. {
  788. FERROR("PrepareAcquisition fail!");
  789. ret = RET_STATUS::RET_FAILED;
  790. }
  791. FINFO("PrepareAcquisition over");
  792. return ret;
  793. }
  794. RET_STATUS nsFPD::FPDDeviceKonica::StartAcquisition(string in)
  795. {
  796. printf("--Func-- StartAcquisition \r\n");
  797. FINFO("--Func-- StartAcquisition");
  798. RET_STATUS ret = RET_STATUS::RET_FAILED;
  799. if (!m_bDeviceConnect)
  800. {
  801. FERROR("m_bDeviceConnect is false, detector not connect, return");
  802. return ret;
  803. }
  804. if (g_pDetector->StartAcquisition(this))
  805. {
  806. ret = RET_STATUS::RET_SUCCEED;
  807. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_ACQ));//StartAcquisition
  808. m_SyncUnit->XWindowOnNotify();//StartAcquisition
  809. }
  810. else
  811. {
  812. FERROR("StartAcquisition fail!");
  813. return ret;
  814. }
  815. FINFO("StartAcquisition over");
  816. return ret;
  817. }
  818. RET_STATUS nsFPD::FPDDeviceKonica::StopAcquisition()
  819. {
  820. printf("--Func-- StopAcquisition \r\n");
  821. FINFO("--Func-- StopAcquisition");
  822. RET_STATUS ret = RET_STATUS::RET_FAILED;
  823. if (!m_bDeviceConnect)
  824. {
  825. FERROR("m_bDeviceConnect is false, detector not connect, return");
  826. return ret;
  827. }
  828. if (g_pDetector->StopAcquisition(this))
  829. {
  830. ret = RET_STATUS::RET_SUCCEED;
  831. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//StopAcquisition
  832. m_bEnterAcqStatus = false;
  833. }
  834. FINFO("StopAcquisition over");
  835. return ret;
  836. }
  837. RET_STATUS nsFPD::FPDDeviceKonica::ActiveCalibration(CCOS_CALIBRATION_TYPE eType)
  838. {
  839. printf("--Func-- ActiveCalibration %d \r\n", eType);
  840. FINFO("--Func-- ActiveCalibration {$}", (int)eType);
  841. RET_STATUS ret = RET_STATUS::RET_FAILED;
  842. if (!m_bDeviceConnect)
  843. {
  844. FERROR("m_bDeviceConnect is false, detector not connect, return");
  845. return ret;
  846. }
  847. if (eType == CCOS_CALIBRATION_TYPE_NONE || eType == CCOS_CALIBRATION_TYPE_MAX)
  848. {
  849. FERROR("calibration type is invalid!");
  850. return RET_STATUS::RET_INVALID;
  851. }
  852. else
  853. {
  854. m_CalibType = eType;
  855. }
  856. FINFO("m_bEnterAcqStatus:{$}", m_bEnterAcqStatus);
  857. ret = StopAcquisition();
  858. if (ret != RET_STATUS::RET_SUCCEED)
  859. {
  860. FERROR("StopAcquisition fail!");
  861. return ret;
  862. }
  863. m_eAppStatus = APP_STATUS_CAL_BEGIN;
  864. if (eType == CCOS_CALIBRATION_TYPE_XRAY)
  865. {
  866. FINFO("calibration type: XRAY");
  867. int nCalibrationRounds = (int)m_CalibDoseList.size();
  868. g_pDetector->SetCalibRounds(nCalibrationRounds);
  869. }
  870. if (g_pDetector->ActiveCalibration(this, eType))
  871. {
  872. ret = RET_STATUS::RET_SUCCEED;
  873. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_ACTIVE));
  874. m_CalibUnit->SetCalibrationProgress("0");
  875. }
  876. else
  877. {
  878. FERROR("Active calibration failed");
  879. ret = RET_STATUS::RET_FAILED;
  880. }
  881. //重置校正流程参数
  882. m_nCalibCurrentCalibrationRound = 1;
  883. m_nCalibCurrentExposureIndex = 1;
  884. m_nCalibCurrentExposureNum = 0;
  885. FINFO("ActiveCalibration over");
  886. return ret;
  887. }
  888. RET_STATUS nsFPD::FPDDeviceKonica::PrepareCalibration()
  889. {
  890. printf("--Func-- PrepareCalibration------ \n");
  891. FINFO("--Func-- PrepareCalibration");
  892. RET_STATUS ret = RET_STATUS::RET_FAILED;
  893. if (!m_bDeviceConnect)
  894. {
  895. FERROR("m_bDeviceConnect is false, detector not connect, return");
  896. return ret;
  897. }
  898. if (g_pDetector->PrepareCalibration(this))
  899. {
  900. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_PREPARE));
  901. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//PrepareCalibration
  902. ret = RET_STATUS::RET_SUCCEED;
  903. }
  904. else
  905. {
  906. printf("PrepareCalibration failed!\n");
  907. FERROR("PrepareCalibration failed!");
  908. return ret;
  909. }
  910. FINFO("--Func-- PrepareCalibration over");
  911. return ret;
  912. }
  913. RET_STATUS nsFPD::FPDDeviceKonica::GetRequestedDose(std::string& strDose)
  914. {
  915. FINFO("--Func-- GetRequestedDose");
  916. RET_STATUS ret = RET_STATUS::RET_FAILED;
  917. ResDataObject out;
  918. if (!m_bDeviceConnect)
  919. {
  920. FERROR("m_bDeviceConnect is false, detector not connect, return");
  921. return ret;
  922. }
  923. CCOS_CALIBRATION_TYPE nCalibrationType = m_CalibUnit->GetCalibrationType();
  924. FINFO("GetRequestedDose calib type is {$}", (int)nCalibrationType);
  925. if (CCOS_CALIBRATION_TYPE_DARK == nCalibrationType)
  926. {
  927. out.add("Dose", 0.0f);
  928. out.add("kV", 0.0f);
  929. out.add("mA", 0.0f);
  930. out.add("ms", 0.0f);
  931. out.add("mAs", 0.0f);
  932. }
  933. else if (CCOS_CALIBRATION_TYPE_XRAY == nCalibrationType)
  934. {
  935. FINFO("calib dose list size is {$}", m_CalibDoseList.size());
  936. ResDataObject temp = m_CalibDoseList[m_nCalibCurrentCalibrationRound - 1];
  937. int nTargetExi = (int)temp["TargetGainEXI"];
  938. m_DetectorCtrlUnit->SetTargetEXI(std::to_string(nTargetExi));
  939. FINFO("nTargetExi:{$}", nTargetExi);
  940. out.add("Dose", nTargetExi);
  941. out.add("kV", temp["KV"]);
  942. out.add("mA", temp["MA"]);
  943. out.add("ms", temp["MS"]);
  944. out.add("mAs", temp["MAS"]);
  945. }
  946. else
  947. {
  948. FERROR("Don't support CalibrationType($)", (int)nCalibrationType);
  949. return ret;
  950. }
  951. strDose = out.encode();
  952. FINFO("GetRequestedDose:{$}", strDose);
  953. ret = RET_STATUS::RET_SUCCEED;
  954. FINFO("--Func-- GetRequestedDose over");
  955. return ret;
  956. }
  957. RET_STATUS nsFPD::FPDDeviceKonica::SetRequestedDose(std::string strDose)
  958. {
  959. FINFO("--Func-- SetRequestedDose");
  960. RET_STATUS Ret = RET_STATUS::RET_SUCCEED;
  961. return Ret;
  962. }
  963. RET_STATUS nsFPD::FPDDeviceKonica::GetCalibrationStep(int nDetectorID, string& strCalibrationStepInfo)
  964. {
  965. printf("--Func-- GetCalibrationStep\n");
  966. FINFO("--Func-- GetCalibrationStep DetectorID:{$}", nDetectorID);
  967. RET_STATUS ret = RET_STATUS::RET_SUCCEED;
  968. ResDataObject out;
  969. int nCalibrationRounds = (int)m_CalibDoseList.size();
  970. int nExposureNumCurrentRound = (int)m_CalibDoseList[m_nCalibCurrentCalibrationRound - 1]["ExpNum"];
  971. if (g_pDetector->GetCalibrationStep(m_nCalibCurrentCalibrationRound, nCalibrationRounds, m_nCalibCurrentExposureIndex, nExposureNumCurrentRound))
  972. {
  973. FINFO("GetCalibrationStep success");
  974. }
  975. else
  976. {
  977. FERROR("GetCalibrationStep error");
  978. ret = RET_STATUS::RET_FAILED;
  979. return ret;
  980. }
  981. out.add("CalibrationRounds", (int)m_CalibDoseList.size());
  982. out.add("TotalExposureNum", m_nCalibTotalExposureNum);
  983. out.add("CurrentCalibrationRound", m_nCalibCurrentCalibrationRound);
  984. out.add("ExposureNumCurrentRound", (int)m_CalibDoseList[m_nCalibCurrentCalibrationRound - 1]["ExpNum"]);
  985. out.add("CurrentExposureIndex", m_nCalibCurrentExposureIndex);
  986. out.add("CurrentExposureNum", m_nCalibCurrentExposureNum);
  987. strCalibrationStepInfo = out.encode();
  988. FINFO("GetCalibrationStep over,strCalibrationStepInfo: {$}", strCalibrationStepInfo.c_str());
  989. return ret;
  990. }
  991. RET_STATUS nsFPD::FPDDeviceKonica::StartCalibration()
  992. {
  993. printf("--Func-- StartCalibration \r\n");
  994. FINFO("--Func-- StartCalibration");
  995. RET_STATUS ret = RET_STATUS::RET_FAILED;
  996. if (!m_bDeviceConnect)
  997. {
  998. FERROR("m_bDeviceConnect is false, detector not connect, return");
  999. return ret;
  1000. }
  1001. if (m_CalibUnit->GetCalibrationStatus() != CCOS_CALIBRATION_STATUS_PREPARE)
  1002. {
  1003. printf("CCOS_CALIBRATION_STATUS = %d\r\n", (int)m_CalibUnit->GetCalibrationStatus());
  1004. FERROR("Start calibration failed, in {$} status", (int)m_CalibUnit->GetCalibrationStatus());
  1005. return ret;
  1006. }
  1007. if (g_pDetector->StartCalibration(this))
  1008. {
  1009. printf("start calibration success set detector status\n");
  1010. FINFO("start calibration success set detector status");
  1011. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_RUNNING));
  1012. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_ACQ));//StartCalibration
  1013. ret = RET_STATUS::RET_SUCCEED;
  1014. }
  1015. else
  1016. {
  1017. FERROR("StartCalibration failed");
  1018. ret = RET_STATUS::RET_FAILED;
  1019. return ret;
  1020. }
  1021. FINFO("StartCalibration over");
  1022. return ret;
  1023. }
  1024. RET_STATUS nsFPD::FPDDeviceKonica::StopCalibration()
  1025. {
  1026. FINFO("--Func-- StopCalibration");
  1027. RET_STATUS ret = RET_STATUS::RET_FAILED;
  1028. if (!m_bDeviceConnect)
  1029. {
  1030. FERROR("m_bDeviceConnect is false, detector not connect, return");
  1031. return ret;
  1032. }
  1033. m_eAppStatus = APP_STATUS_CAL_END;
  1034. if (g_pDetector->StopCalibration(this))
  1035. {
  1036. ret = RET_STATUS::RET_SUCCEED;
  1037. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_BESTOPPED));
  1038. }
  1039. else
  1040. {
  1041. FERROR("StopCalibration failed");
  1042. }
  1043. ret = StopAcquisition();
  1044. if (ret != RET_STATUS::RET_SUCCEED)
  1045. {
  1046. FERROR("StopAcquisition fail!");
  1047. return ret;
  1048. }
  1049. FINFO("StopCalibration over");
  1050. return ret;
  1051. }
  1052. void nsFPD::FPDDeviceKonica::AbortCalibration()
  1053. {
  1054. FINFO("--Func-- AbortCalibration");
  1055. m_eAppStatus = APP_STATUS_CAL_END;
  1056. CCOS_CALIBRATION_TYPE nCalibrationType = m_CalibUnit->GetCalibrationType();
  1057. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//AbortCalibration
  1058. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_ERROR));
  1059. m_CalibUnit->SetCalibrationProgress("100");
  1060. if(CCOS_CALIBRATION_TYPE_XRAY == nCalibrationType)
  1061. {
  1062. g_pDetector->AbortCalibration(this);
  1063. m_AcqUnit->SendNoNeedWaitImage(true);
  1064. }
  1065. //如果中止的时候探测器在采集状态需要停止采集
  1066. FINFO("--Func-- AbortCalibration over");
  1067. }
  1068. RET_STATUS nsFPD::FPDDeviceKonica::AcceptCalibration()
  1069. {
  1070. FINFO("--Func-- AcceptCalibration");
  1071. RET_STATUS Ret = RET_STATUS::RET_SUCCEED;
  1072. if (g_pDetector->AcceptCalibration())
  1073. {
  1074. FINFO("AcceptCalibration over");
  1075. Ret = RET_STATUS::RET_SUCCEED;
  1076. }
  1077. else
  1078. {
  1079. FERROR("AcceptCalibration error");
  1080. Ret = RET_STATUS::RET_FAILED;
  1081. }
  1082. int nExposureNumCurrentRound = (int)m_CalibDoseList[m_nCalibCurrentCalibrationRound - 1]["ExpNum"];
  1083. //完成校正条件:轮数够了,曝光次数够了
  1084. if ((m_nCalibCurrentCalibrationRound == (int)m_CalibDoseList.size()) && (m_nCalibCurrentExposureIndex == nExposureNumCurrentRound))
  1085. {
  1086. FINFO("Calibration Round: {$}, Exposure Index: {$}, Finished", m_nCalibCurrentCalibrationRound, m_nCalibCurrentExposureIndex);
  1087. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//AcceptCalibration1
  1088. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_STANDBY));
  1089. m_CalibUnit->SetCalibrationProgress("100");
  1090. return Ret;
  1091. }
  1092. if (m_nCalibCurrentExposureIndex >= nExposureNumCurrentRound) //跳到下一轮校正参数
  1093. {
  1094. m_nCalibCurrentCalibrationRound++;
  1095. m_nCalibCurrentExposureIndex = 1;
  1096. }
  1097. else
  1098. {
  1099. m_nCalibCurrentExposureIndex++;
  1100. }
  1101. m_nCalibCurrentExposureNum++;
  1102. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//AcceptCalibration2
  1103. FINFO("--Func-- AcceptCalibration over");
  1104. return Ret;
  1105. }
  1106. RET_STATUS nsFPD::FPDDeviceKonica::RejectCalibration()
  1107. {
  1108. printf("--Func-- RejectCalibration \n");
  1109. FINFO("--Func-- RejectCalibration");
  1110. RET_STATUS Ret = RET_STATUS::RET_SUCCEED;
  1111. if (g_pDetector->RejectCalibration())
  1112. {
  1113. Ret = RET_STATUS::RET_SUCCEED;
  1114. }
  1115. else
  1116. {
  1117. FERROR("RejectCalibration error");
  1118. Ret = RET_STATUS::RET_FAILED;
  1119. }
  1120. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//RejectCalibration
  1121. FINFO("--Func-- RejectCalibration over");
  1122. return Ret;
  1123. }
  1124. bool nsFPD::FPDDeviceKonica::CompleteCalibration()
  1125. {
  1126. printf("--Func-- CompleteCalibration \n");
  1127. FINFO("--Func-- CompleteCalibration");
  1128. if (!g_pDetector->CompleteCalibration(this))
  1129. {
  1130. FERROR("CompleteCalibration fail!");
  1131. return false;
  1132. }
  1133. if (g_pDetector->GetCalibType() == CCOS_CALIBRATION_TYPE_DARK)
  1134. {
  1135. printf("CompleteCalibration Calibration Type DARK\n");
  1136. FINFO("CompleteCalibration Calibration Type DARK");
  1137. }
  1138. else if (g_pDetector->GetCalibType() == CCOS_CALIBRATION_TYPE_XRAY)
  1139. {
  1140. printf("CompleteCalibration Calibration Type XRAY\n");
  1141. FINFO("CompleteCalibration Calibration Type XRAY");
  1142. m_eAppStatus = APP_STATUS_CAL_END;
  1143. }
  1144. FINFO("CompleteCalibration set detector status standby");
  1145. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//CompleteCalibration
  1146. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_STANDBY));
  1147. m_CalibUnit->SetCalibrationProgress("100");
  1148. FINFO("--Func-- CompleteCalibration over");
  1149. return true;
  1150. }
  1151. RET_STATUS nsFPD::FPDDeviceKonica::SaveCalibrationFile(bool bSaveFlag)
  1152. {
  1153. printf("--Func-- SaveCalibrationFile \n");
  1154. FINFO("--Func-- SaveCalibrationFile");
  1155. RET_STATUS Ret = RET_STATUS::RET_SUCCEED;
  1156. FINFO("SaveCalibrationFile bSaveFlag: {$}", bSaveFlag);
  1157. if (!bSaveFlag)
  1158. {
  1159. FERROR("Not save calibration file");
  1160. return Ret;
  1161. }
  1162. //点击save按钮时先调用compelte再调用save
  1163. CompleteCalibration();
  1164. if (g_pDetector->SaveCalibrationFile())
  1165. {
  1166. m_CalibUnit->SetSaveCalibrationFileFinish(true);
  1167. Ret = RET_STATUS::RET_SUCCEED;
  1168. //更新配置文件中校正日期和时间
  1169. time_t localtime = time(NULL);
  1170. string strLocalTime = DatetimeToString(localtime);
  1171. FINFO("strLocalTime:{$}", strLocalTime);
  1172. m_CalibUnit->SetLastCalibrationDate(strLocalTime);
  1173. //清除校正文件相关警告
  1174. m_WarnAndError->ClearWarn(ERR_FPD_CAL_FILE_NOT_EXIST);
  1175. m_WarnAndError->ClearWarn(ERR_FPD_CAL_FILE_OUTDATE);
  1176. }
  1177. else
  1178. {
  1179. FERROR("SaveCalibrationFile error");
  1180. m_CalibUnit->SetSaveCalibrationFileFinish(false);
  1181. Ret = RET_STATUS::RET_FAILED;
  1182. }
  1183. FINFO("--Func-- SaveCalibrationFile over");
  1184. return Ret;
  1185. }
  1186. bool nsFPD::FPDDeviceKonica::Support_DarkCalib()
  1187. {
  1188. return true;
  1189. }
  1190. bool nsFPD::FPDDeviceKonica::Support_XrayCalib()
  1191. {
  1192. return true;
  1193. }
  1194. void nsFPD::FPDDeviceKonica::SendTemperatureValue(float fValue)
  1195. {
  1196. int nStatus = 0;
  1197. m_Temperature->SetTemperature(fValue, nStatus);
  1198. FINFO("SendTemperatureValue: {$}, status {$}", fValue, nStatus);
  1199. return;
  1200. }
  1201. void nsFPD::FPDDeviceKonica::SendWifiValue(int nValue)
  1202. {
  1203. int nStatus = 0;
  1204. m_Wifi->SetSignalValue(nValue, nStatus);
  1205. FINFO("SendWifiValue: {$}, status {$}", nValue, nStatus);
  1206. return;
  1207. }
  1208. void nsFPD::FPDDeviceKonica::SendBatteryValue(int nValue)
  1209. {
  1210. int nStatus = 0;
  1211. m_Battery->SetRemainPowerValue(nValue, nStatus);
  1212. FINFO("SendBatteryValue: {$}, status {$}", nValue, nStatus);
  1213. return;
  1214. }
  1215. bool nsFPD::FPDDeviceKonica::LoadConfig()
  1216. {
  1217. FINFO("--Func-- LoadConfig start");
  1218. if (!m_DetectorConfiguration->LoadConfigurations(m_stDeviceConfig, m_CalibDoseList, m_nCalibTotalExposureNum))
  1219. {
  1220. FERROR("Load configuration file failed!!!");
  1221. return false;
  1222. }
  1223. FINFO("m_CalibDoseList:{$}", m_CalibDoseList.encode());
  1224. FINFO("m_nCalibTotalExposureNum:{$}", m_nCalibTotalExposureNum);
  1225. //const char* strkey, int initialvalue, int min, int WarnMin, int WarnMax, int CalibWarnMin, int CalibWarnMax, int max, int accuracy, std::shared_ptr <CCOS::Dev::IOEventCenter> EventCenter
  1226. m_Battery.reset(new DeviceBatteryMould("DetectorBattery", 0,
  1227. m_stDeviceConfig.nBatteryLimit,
  1228. m_stDeviceConfig.nBatteryWarning,
  1229. 100,
  1230. m_stDeviceConfig.nBatLowerLimitInCali,
  1231. 100, 100, 0, EventCenter));
  1232. //const char* strkey, float initialvalue, float min, float WarnMin, float WarnMax, float CalibWarnMin, float CalibWarnMax, float max, float accuracy,std::shared_ptr <CCOS::Dev::IOEventCenter> EventCenter
  1233. m_Temperature.reset(new DeviceTemperatureMould("DetectorTemperature", 0.0f,
  1234. m_stDeviceConfig.fTemperatureErrorMin,
  1235. m_stDeviceConfig.fTemperatureWarnMin,
  1236. m_stDeviceConfig.fTemperatureWarnMax,
  1237. m_stDeviceConfig.fTemperatureWarnMin,
  1238. m_stDeviceConfig.fTemperatureWarnMax,
  1239. m_stDeviceConfig.fTemperatureErrorMax,
  1240. 0.0f, EventCenter));
  1241. //const char* strkey, int initialvalue, int min, int WarnMin, int WarnMax, int CalibWarnMin, int CalibWarnMax, int max, int accuracy, std::shared_ptr <CCOS::Dev::IOEventCenter> EventCenter
  1242. m_Wifi.reset(new DeviceWifiMould("DetectorWifi", 0,
  1243. m_stDeviceConfig.nWifiLimit,
  1244. m_stDeviceConfig.nWifiWarning,
  1245. 100,
  1246. m_stDeviceConfig.nWifiWarning,
  1247. 100, 100, 0, EventCenter));
  1248. FINFO("--Func-- LoadConfig end");
  1249. return true;
  1250. }
  1251. void nsFPD::FPDDeviceKonica::RegisterCtrl(nsDetail::Dispatch* Dispatch)
  1252. {
  1253. Dispatch->Action.Push(ActionKey::ActiveDetector, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSActiveDetector);
  1254. Dispatch->Action.Push(ActionKey::AttachConnect, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSAttachConnect);
  1255. Dispatch->Action.Push(ActionKey::CancelAttach, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSCancelAttach);
  1256. Dispatch->Action.Push(ActionKey::DisConnectFPD, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSDisConnectFPD);
  1257. Dispatch->Action.Push(ActionKey::UpdateFirmware, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateFirmware);
  1258. Dispatch->Action.Push(ActionKey::GetFPDinformation, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorInfo);
  1259. Dispatch->Action.Push(ActionKey::EnterExam, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSEnterExam);
  1260. Dispatch->Action.Push(ActionKey::RecoverImage, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSRecoverImage);
  1261. Dispatch->Action.Push(ActionKey::SaveSensitivity, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSSaveSensitivity);
  1262. Dispatch->Action.Push(ActionKey::RESET, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSRESET);
  1263. Dispatch->Action.Push(ActionKey::ExitExam, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSExitExam);
  1264. Dispatch->Action.Push(ActionKey::SetExposureTimes, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSSetExposureTimes);
  1265. Dispatch->Action.Push(ActionKey::SetXrayOnNum, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSSetXrayOnNum);
  1266. Dispatch->Get.Push(AttrKey::DetectorConnectStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetConnectStatus);
  1267. Dispatch->Get.Push(AttrKey::DetectorInitialStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetInitialStatus);
  1268. Dispatch->Get.Push(AttrKey::DetectorUpdateFWStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetUpdateFWStatus);
  1269. Dispatch->Get.Push(AttrKey::FPDShockSensorInfo, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetShockSensorInfo);
  1270. Dispatch->Get.Push(AttrKey::DetectorStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetFPDStatus);
  1271. Dispatch->Get.Push(AttrKey::FPDAttached, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetAttachStatus);
  1272. Dispatch->Get.Push(AttrKey::DetectorAttach, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetAttachResult);
  1273. Dispatch->Get.Push(AttrKey::FieldofViewShape, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetFieldofViewShape);
  1274. Dispatch->Get.Push(AttrKey::FieldofViewDimension, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetFieldofViewDimension);
  1275. Dispatch->Get.Push(AttrKey::DetectorType, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorType);
  1276. Dispatch->Get.Push(AttrKey::Description, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDescription);
  1277. Dispatch->Get.Push(AttrKey::DetectorID, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorID);
  1278. Dispatch->Get.Push(AttrKey::DateofLastDetectorCalibration, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDateofLastDetectorCalibration);
  1279. Dispatch->Get.Push(AttrKey::TimeofLastDetectorCalibration, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetTimeofLastDetectorCalibration);
  1280. Dispatch->Get.Push(AttrKey::DetectorConditionsNominalFlag, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorConditionsNominalFlag);
  1281. Dispatch->Get.Push(AttrKey::FPDSensitivity, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetFPDSensitivity);
  1282. Dispatch->Get.Push(AttrKey::PixelData, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetPixelData);
  1283. Dispatch->Get.Push(AttrKey::TargetEXI, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetTargetEXI);
  1284. Dispatch->Get.Push(AttrKey::SupportSwitchResolution, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetSupportSwitchResolution);
  1285. Dispatch->Get.Push(AttrKey::CurrentResolution, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetCurrentResolution);
  1286. Dispatch->Get.Push(AttrKey::SerialNumber, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetSerialNumber);
  1287. Dispatch->Get.Push(AttrKey::DetectorWiredIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorWiredIP);
  1288. Dispatch->Get.Push(AttrKey::DetectorWirelessIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetDetectorWirelessIP);
  1289. Dispatch->Get.Push(SupportDDR, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetSupportDDR);
  1290. Dispatch->Get.Push(LocalIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetLocalIP);
  1291. Dispatch->Get.Push(ShowTemperature, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetShowTemperature);
  1292. Dispatch->Get.Push(ShowWifi, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetShowWifi);
  1293. Dispatch->Get.Push(ShowBattery, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetShowBattery);
  1294. Dispatch->Get.Push(ShowBluetooth, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSGetShowBluetooth);
  1295. Dispatch->Set.Push(AttrKey::DetectorConnectStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorStatus);
  1296. Dispatch->Set.Push(AttrKey::DetectorStatus, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorStatus);
  1297. Dispatch->Set.Push(AttrKey::DetectorType, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorType);
  1298. Dispatch->Set.Push(AttrKey::Description, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDescription);
  1299. Dispatch->Set.Push(AttrKey::DetectorID, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorID);
  1300. Dispatch->Set.Push(AttrKey::PixelData, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetPixelData);
  1301. Dispatch->Set.Push(AttrKey::TargetEXI, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetTargetEXI);
  1302. Dispatch->Set.Push(AttrKey::FPDAttached, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetAttachStatus);
  1303. Dispatch->Set.Push(AttrKey::SupportSwitchResolution, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetSupportSwitchResolution);
  1304. Dispatch->Set.Push(AttrKey::CurrentResolution, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetCurrentResolution);
  1305. Dispatch->Set.Push(AttrKey::SerialNumber, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetSerialNumber);
  1306. Dispatch->Set.Push(AttrKey::DetectorWiredIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorWiredIP);
  1307. Dispatch->Set.Push(AttrKey::DetectorWirelessIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetDetectorWirelessIP);
  1308. Dispatch->Set.Push(SupportDDR, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetSupportDDR);
  1309. Dispatch->Set.Push(LocalIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetLocalIP);
  1310. Dispatch->Set.Push(ShowTemperature, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetShowTemperature);
  1311. Dispatch->Set.Push(ShowWifi, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetShowWifi);
  1312. Dispatch->Set.Push(ShowBattery, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetShowBattery);
  1313. Dispatch->Set.Push(ShowBluetooth, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::SetShowBluetooth);
  1314. Dispatch->Update.Push(AttrKey::NotifyStatusTimePeriod, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateNotifyStatusTimePeriod);
  1315. Dispatch->Update.Push(AttrKey::ReconnectTimePeriod, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateReconnectTimePeriod);
  1316. Dispatch->Update.Push(AttrKey::DetectorWiredIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateDetectorWiredIP);
  1317. Dispatch->Update.Push(AttrKey::DetectorWirelessIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateDetectorWirelessIP);
  1318. Dispatch->Update.Push(AttrKey::SerialNumber, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateSerialNumber);
  1319. Dispatch->Update.Push(LocalIP, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateLocalIP);
  1320. Dispatch->Update.Push(ShowTemperature, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateShowTemperature);
  1321. Dispatch->Update.Push(ShowWifi, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateShowWifi);
  1322. Dispatch->Update.Push(ShowBattery, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateShowBattery);
  1323. Dispatch->Update.Push(ShowBluetooth, m_DetectorCtrlUnit.get(), &DetectorCtrlUnit::JSUpdateShowBluetooth);
  1324. }
  1325. void nsFPD::FPDDeviceKonica::RegisterAcq(nsDetail::Dispatch* Dispatch)
  1326. {
  1327. Dispatch->Action.Push(ActionKey::SetAcqMode, m_AcqUnit.get(), &AcqUnit::JSSetAcqMode);
  1328. Dispatch->Action.Push(ActionKey::SetResolution, m_AcqUnit.get(), &AcqUnit::JSSetResolution);
  1329. Dispatch->Get.Push(AttrKey::AcqMode, m_AcqUnit.get(), &AcqUnit::JSGetAcqMode);
  1330. Dispatch->Get.Push(AttrKey::ZskkFPDState, m_AcqUnit.get(), &AcqUnit::JSGetZskkFPDState);
  1331. Dispatch->Get.Push(AttrKey::NoNeedWaitImage, m_AcqUnit.get(), &AcqUnit::JSGetNoNeedWaitImage);
  1332. Dispatch->Get.Push(AttrKey::ImgDataInfo, m_AcqUnit.get(), &AcqUnit::JSGetLastImage);
  1333. Dispatch->Set.Push(AttrKey::ZskkFPDState, m_AcqUnit.get(), &AcqUnit::SetZskkFPDState);
  1334. Dispatch->Set.Push(AttrKey::NoNeedWaitImage, m_AcqUnit.get(), &AcqUnit::JSSetNoNeedWaitImage);
  1335. }
  1336. void nsFPD::FPDDeviceKonica::RegisterSync(nsDetail::Dispatch* Dispatch)
  1337. {
  1338. Dispatch->Action.Push(ActionKey::SetSyncMode, m_SyncUnit.get(), &SyncUnit::JSSetSyncMode);
  1339. Dispatch->Action.Push(ActionKey::SetXwindowSize, m_SyncUnit.get(), &SyncUnit::JSSetXwindowSize);
  1340. Dispatch->Action.Push(ActionKey::PrepareAcquisition, m_SyncUnit.get(), &SyncUnit::JSPrepareAcquisition);
  1341. Dispatch->Action.Push(ActionKey::StartAcquisition, m_SyncUnit.get(), &SyncUnit::JSStartAcquisition);
  1342. Dispatch->Action.Push(ActionKey::StopAcquisition, m_SyncUnit.get(), &SyncUnit::JSStopAcquisition);
  1343. Dispatch->Action.Push(ActionKey::ActiveSyncMode, m_SyncUnit.get(), &SyncUnit::JSActiveSyncMode);
  1344. Dispatch->Get.Push(AttrKey::FPDReadyStatus, m_SyncUnit.get(), &SyncUnit::JSGetFPDReady);
  1345. Dispatch->Get.Push(AttrKey::XwindowStatus, m_SyncUnit.get(), &SyncUnit::JSGetXWindowStatus);
  1346. Dispatch->Get.Push(AttrKey::ImageReadingStatus, m_SyncUnit.get(), &SyncUnit::JSGetImageReadingStatus);
  1347. Dispatch->Get.Push(AttrKey::XrayON, m_SyncUnit.get(), &SyncUnit::JSGetXrayON);
  1348. Dispatch->Get.Push(AttrKey::SyncMode, m_SyncUnit.get(), &SyncUnit::JSGetSyncMode);
  1349. Dispatch->Get.Push(AttrKey::SupportSyncMode, m_SyncUnit.get(), &SyncUnit::JSGetSupportSyncMode);
  1350. Dispatch->Set.Push(AttrKey::FPDReadyStatus, m_SyncUnit.get(), &SyncUnit::JSSetFPDReady);
  1351. Dispatch->Set.Push(AttrKey::XwindowStatus, m_SyncUnit.get(), &SyncUnit::JSSetXWindowStatus);
  1352. Dispatch->Set.Push(AttrKey::ImageReadingStatus, m_SyncUnit.get(), &SyncUnit::JSSetImageReadingStatus);
  1353. Dispatch->Set.Push(AttrKey::SupportSyncMode, m_SyncUnit.get(), &SyncUnit::SetSupportSyncMode);
  1354. }
  1355. void nsFPD::FPDDeviceKonica::RegisterCalib(nsDetail::Dispatch* Dispatch)
  1356. {
  1357. Dispatch->Action.Push(ActionKey::ActiveCalibration, m_CalibUnit.get(), &CalibUnit::JSActiveCalibration);
  1358. Dispatch->Action.Push(ActionKey::GetRequestedDose, m_CalibUnit.get(), &CalibUnit::JSGetRequestedDose);
  1359. Dispatch->Action.Push(ActionKey::SetRequestedDose, m_CalibUnit.get(), &CalibUnit::JSSetRequestedDose);
  1360. Dispatch->Action.Push(ActionKey::PrepareCalibration, m_CalibUnit.get(), &CalibUnit::JSPrepareCalibration);
  1361. Dispatch->Action.Push(ActionKey::StartCalibration, m_CalibUnit.get(), &CalibUnit::JSStartCalibration);
  1362. Dispatch->Action.Push(ActionKey::StopCalibration, m_CalibUnit.get(), &CalibUnit::JSStopCalibration);
  1363. Dispatch->Action.Push(ActionKey::SetCorrectionType, m_CalibUnit.get(), &CalibUnit::JSSetCorrectionType);
  1364. Dispatch->Action.Push(ActionKey::AcceptCalibration, m_CalibUnit.get(), &CalibUnit::JSAcceptCalibration);
  1365. Dispatch->Action.Push(ActionKey::RejectCalibration, m_CalibUnit.get(), &CalibUnit::JSRejectCalibration);
  1366. Dispatch->Action.Push(ActionKey::SaveCalibrationFile, m_CalibUnit.get(), &CalibUnit::JSSaveCalibrationFile);
  1367. Dispatch->Action.Push(ActionKey::GetCalibrationStep, m_CalibUnit.get(), &CalibUnit::JSGetCalibrationStep);
  1368. Dispatch->Get.Push(AttrKey::CalibrationStatus, m_CalibUnit.get(), &CalibUnit::JSGetCalibStatus);
  1369. Dispatch->Get.Push(AttrKey::CalibrationProgress, m_CalibUnit.get(), &CalibUnit::JSGetCalibProgress);
  1370. Dispatch->Get.Push(AttrKey::UploadCalibrationFilesResult, m_CalibUnit.get(), &CalibUnit::JSGetUploadCalibrationFilesResult);
  1371. Dispatch->Get.Push(AttrKey::SupportCalibrationType, m_CalibUnit.get(), &CalibUnit::JSGetSupportCalibrationType);
  1372. Dispatch->Get.Push(AttrKey::HaveImgCalibration, m_CalibUnit.get(), &CalibUnit::JSGetHaveImgCalibration);
  1373. Dispatch->Get.Push(AttrKey::SaveCalibrationFileFinish, m_CalibUnit.get(), &CalibUnit::JSGetSaveCalibrationFileFinish);
  1374. Dispatch->Get.Push(AttrKey::CalibMode, m_CalibUnit.get(), &CalibUnit::JSGetCalibMode);
  1375. Dispatch->Get.Push(AttrKey::LastCalibrationDate, m_CalibUnit.get(), &CalibUnit::JSGetLastCalibrationDate);
  1376. Dispatch->Get.Push(AttrKey::CalibrationFileExpireTime, m_CalibUnit.get(), &CalibUnit::JSGetCalibrationFileExpireTime);
  1377. Dispatch->Get.Push(AttrKey::CalibrationFileExpirationReminder, m_CalibUnit.get(), &CalibUnit::JSGetCalibrationFileExpirationReminder);
  1378. Dispatch->Set.Push(AttrKey::CalibrationStatus, m_CalibUnit.get(), &CalibUnit::SetCalibrationStatus);
  1379. Dispatch->Set.Push(AttrKey::CalibrationProgress, m_CalibUnit.get(), &CalibUnit::SetCalibrationProgress);
  1380. Dispatch->Set.Push(AttrKey::UploadCalibrationFilesResult, m_CalibUnit.get(), &CalibUnit::SetUploadCalibrationFilesResult);
  1381. Dispatch->Set.Push(AttrKey::CalibMode, m_CalibUnit.get(), &CalibUnit::SetCalibMode);
  1382. Dispatch->Set.Push(AttrKey::LastCalibrationDate, m_CalibUnit.get(), &CalibUnit::SetLastCalibrationDate);
  1383. Dispatch->Set.Push(AttrKey::CalibrationFileExpireTime, m_CalibUnit.get(), &CalibUnit::SetCalibrationFileExpireTime);
  1384. Dispatch->Set.Push(AttrKey::CalibrationFileExpirationReminder, m_CalibUnit.get(), &CalibUnit::SetCalibrationFileExpirationReminder);
  1385. Dispatch->Update.Push(AttrKey::CalibMode, m_CalibUnit.get(), &CalibUnit::JSUpdateCalibMode);
  1386. Dispatch->Update.Push(AttrKey::LastCalibrationDate, m_CalibUnit.get(), &CalibUnit::JSUpdateLastCalibrationDate);
  1387. Dispatch->Update.Push(AttrKey::CalibrationFileExpireTime, m_CalibUnit.get(), &CalibUnit::JSUpdateCalibrationFileExpireTime);
  1388. Dispatch->Update.Push(AttrKey::CalibrationFileExpirationReminder, m_CalibUnit.get(), &CalibUnit::JSUpdateCalibrationFileExpirationReminder);
  1389. }
  1390. void nsFPD::FPDDeviceKonica::RegisterOthers(nsDetail::Dispatch* Dispatch)
  1391. {
  1392. Dispatch->Get.Push(AttrKey::Temperature_Value, m_Temperature.get(), &DeviceTemperatureMould::JSGetCurrentTemperatureValue);
  1393. Dispatch->Get.Push(AttrKey::Remain_Power_Value, m_Battery.get(), &DeviceBatteryMould::JSGetCurrentBatteryValue);
  1394. Dispatch->Get.Push(AttrKey::Wifi_Strength_Value, m_Wifi.get(), &DeviceWifiMould::JSGetCurrentSignalValue);
  1395. Dispatch->Get.Push(TempUpperLimit, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureWarningMax);
  1396. Dispatch->Get.Push(TempLowerLimit, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureWarningMin);
  1397. Dispatch->Get.Push(TempMaxLimit, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureErrorMax);
  1398. Dispatch->Get.Push(TempMinLimit, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureErrorMin);
  1399. Dispatch->Get.Push(TemperatureCalibUpWarn, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureCalibWarningMax);
  1400. Dispatch->Get.Push(TemperatureCalibLowWarn, m_Temperature.get(), &DeviceTemperatureMould::JSGetTemperatureCalibWarningMin);
  1401. Dispatch->Get.Push(BatLowerLimit, m_Battery.get(), &DeviceBatteryMould::JSGetBatteryWarningMin);
  1402. Dispatch->Get.Push(BatMiniLimit, m_Battery.get(), &DeviceBatteryMould::JSGetBatteryErrorMin);
  1403. Dispatch->Get.Push(BatLowerLimitInCali, m_Battery.get(), &DeviceBatteryMould::JSGetBatteryCalibWarningMin);
  1404. Dispatch->Get.Push(WifiLowerLimit, m_Wifi.get(), &DeviceWifiMould::JSGetSignalWarningMin);
  1405. Dispatch->Get.Push(WifiMiniLimit, m_Wifi.get(), &DeviceWifiMould::JSGetSignalErrorMin);
  1406. //Error
  1407. Dispatch->Get.Push(nDetail::AttrKey::ErrorList, m_WarnAndError.get(), &FPDErrorWarning::JSGetErrorList);
  1408. Dispatch->Set.Push(TempUpperLimit, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureWarningMax);
  1409. Dispatch->Set.Push(TempLowerLimit, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureWarningMin);
  1410. Dispatch->Set.Push(TempMaxLimit, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureErrorMax);
  1411. Dispatch->Set.Push(TempMinLimit, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureErrorMin);
  1412. Dispatch->Set.Push(TemperatureCalibUpWarn, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureCalibWarningMax);
  1413. Dispatch->Set.Push(TemperatureCalibLowWarn, m_Temperature.get(), &DeviceTemperatureMould::SetTemperatureCalibWarningMin);
  1414. Dispatch->Set.Push(BatLowerLimit, m_Battery.get(), &DeviceBatteryMould::SetBatteryWarningMin);
  1415. Dispatch->Set.Push(BatMiniLimit, m_Battery.get(), &DeviceBatteryMould::SetBatteryErrorMin);
  1416. Dispatch->Set.Push(BatLowerLimitInCali, m_Battery.get(), &DeviceBatteryMould::SetBatLowerLimitInCalib);
  1417. Dispatch->Set.Push(WifiLowerLimit, m_Wifi.get(), &DeviceWifiMould::SetSignalWarningMin);
  1418. Dispatch->Set.Push(WifiMiniLimit, m_Wifi.get(), &DeviceWifiMould::SetSignalErrorMin);
  1419. Dispatch->Update.Push(TempUpperLimit, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureWarningMax);
  1420. Dispatch->Update.Push(TempLowerLimit, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureWarningMin);
  1421. Dispatch->Update.Push(TempMaxLimit, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureErrorMax);
  1422. Dispatch->Update.Push(TempMinLimit, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureErrorMin);
  1423. Dispatch->Update.Push(TemperatureCalibUpWarn, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureCalibWarningMax);
  1424. Dispatch->Update.Push(TemperatureCalibLowWarn, m_Temperature.get(), &DeviceTemperatureMould::JSUpdateTemperatureCalibWarningMin);
  1425. Dispatch->Update.Push(BatLowerLimit, m_Battery.get(), &DeviceBatteryMould::JSUpdateBatteryWarningMin);
  1426. Dispatch->Update.Push(BatMiniLimit, m_Battery.get(), &DeviceBatteryMould::JSUpdateBatteryErrorMin);
  1427. Dispatch->Update.Push(BatLowerLimitInCali, m_Battery.get(), &DeviceBatteryMould::JSUpdateBatLowerLimitInCalib);
  1428. Dispatch->Update.Push(WifiLowerLimit, m_Wifi.get(), &DeviceWifiMould::JSUpdateSignalWarningMin);
  1429. Dispatch->Update.Push(WifiMiniLimit, m_Wifi.get(), &DeviceWifiMould::JSUpdateSignalErrorMin);
  1430. }
  1431. void nsFPD::FPDDeviceKonica::OnFPDCallback(int nDetectorID, int nEventID, int nEventLevel,
  1432. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1433. {
  1434. switch (nEventLevel)
  1435. {
  1436. case EVT_LEVEL_CONFIGURATION:
  1437. {
  1438. OnEventProcessConf(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1439. break;
  1440. }
  1441. case EVT_LEVEL_INFORMATOION:
  1442. {
  1443. OnEventProcessInfo(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1444. break;
  1445. }
  1446. case EVT_LEVEL_STATUS:
  1447. {
  1448. OnEventProcessStatus(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1449. break;
  1450. }
  1451. case EVT_LEVEL_DATA:
  1452. {
  1453. OnEventProcessData(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1454. break;
  1455. }
  1456. case EVT_LEVEL_WARNING:
  1457. {
  1458. OnEventProcessWarning(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1459. break;
  1460. }
  1461. case EVT_LEVEL_ERROR:
  1462. {
  1463. OnEventProcessError(nDetectorID, nEventID, nEventLevel, pszMsg, nParam1, fParam2, nPtrParamLen, pParam);
  1464. break;
  1465. }
  1466. default:
  1467. break;
  1468. }
  1469. }
  1470. void nsFPD::FPDDeviceKonica::OnEventProcessConf(int nDetectorID, int nEventID, int nEventLevel,
  1471. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1472. {
  1473. switch (nEventID)
  1474. {
  1475. case EVT_CONF_PANEL_SERIAL:
  1476. {
  1477. m_stDeviceConfig.strPanelSerial = pszMsg;
  1478. FINFO("Detector ID:{$}, SN {$}", nDetectorID, pszMsg);
  1479. m_DetectorCtrlUnit->SetDetectorID(m_stDeviceConfig.strPanelSerial);
  1480. break;
  1481. }
  1482. case EVT_CONF_RAW_WIDTH:
  1483. {
  1484. m_nFullImageWidth = nParam1;
  1485. m_stDeviceConfig.nFullImageWidth = nParam1;
  1486. FINFO("Detector ID:{$}, Image Width:{$}", nDetectorID, m_nFullImageWidth);
  1487. break;
  1488. }
  1489. case EVT_CONF_RAW_HIGHT:
  1490. {
  1491. m_nFullImageHeight = nParam1;
  1492. m_stDeviceConfig.nFullImageHeight = nParam1;
  1493. FINFO("Detector ID:{$}, Image Height:{$}", nDetectorID, m_nFullImageHeight);
  1494. break;
  1495. }
  1496. case EVT_CONF_RAW_BITS:
  1497. {
  1498. m_stDeviceConfig.nImageBits = nParam1;
  1499. m_nImgBits = nParam1;
  1500. FINFO("Detector ID:{$}, Image Bit:{$}", nDetectorID, m_nImgBits);
  1501. break;
  1502. }
  1503. case EVT_CONF_PIXELSPACE:
  1504. {
  1505. m_stDeviceConfig.nPixelSpace = (int)fParam2;
  1506. FINFO("Detector ID:{$}, nPixelSpace:{$}", nDetectorID, m_stDeviceConfig.nPixelSpace);
  1507. break;
  1508. }
  1509. case EVT_CONF_PREVIEW_WIDTH:
  1510. {
  1511. m_nPreviewImageWidth = nParam1;
  1512. m_stDeviceConfig.nPreviewWidth = nParam1;
  1513. FINFO("Detector ID:{$}, nPreviewWidth:{$}", nDetectorID, m_nPreviewImageWidth);
  1514. break;
  1515. }
  1516. case EVT_CONF_PREVIEW_HIGHT:
  1517. {
  1518. m_nPreviewImageHeight = nParam1;
  1519. m_stDeviceConfig.nPreviewHeight = nParam1;
  1520. FINFO("Detector ID:{$}, nPreviewHeight:{$}", nDetectorID, m_nPreviewImageHeight);
  1521. break;
  1522. }
  1523. case EVT_CONF_MODULE_TYPE:
  1524. {
  1525. //m_strModuleType = pszMsg;
  1526. FINFO("Detector ID:{$}, ModuleType {$}", nDetectorID, pszMsg);
  1527. break;
  1528. }
  1529. case EVT_CONF_MODULE_IP:
  1530. {
  1531. //m_strModuleIP = pszMsg;
  1532. FINFO("Detector ID:{$}, ModuleIP {$}", nDetectorID, pszMsg);
  1533. break;
  1534. }
  1535. case EVT_CONF_MODULE_SN:
  1536. {
  1537. //m_strModuleSN = pszMsg;
  1538. FINFO("Detector ID:{$}, ModuleSN {$}", nDetectorID, pszMsg);
  1539. break;
  1540. }
  1541. case EVT_CONF_FIRWARE_UPDATE:
  1542. {
  1543. m_stDeviceConfig.nFirmwareStatus = nParam1;
  1544. FINFO("Detector ID:{$}, FirmwareUpdate:{$}", nDetectorID, m_stDeviceConfig.nFirmwareStatus);
  1545. break;
  1546. }
  1547. case EVT_CONF_PART_NUMBER:
  1548. {
  1549. m_stDeviceConfig.strPartNumber = pszMsg;
  1550. FINFO("Detector ID:{$}, PartNumber:{$}", nDetectorID, pszMsg);
  1551. break;
  1552. }
  1553. case EVT_CONF_BATTERY_SN:
  1554. {
  1555. //m_strBatterySN = pszMsg;
  1556. FINFO("Detector ID:{$}, Battery SN:{$}", nDetectorID, pszMsg);
  1557. break;
  1558. }
  1559. case EVT_CONF_WIFI_SSID:
  1560. {
  1561. m_stDeviceConfig.strWifiSSID = pszMsg;
  1562. FINFO("Detector ID:{$}, WifiSSID:{$}", nDetectorID, pszMsg);
  1563. break;
  1564. }
  1565. case EVT_CONF_IFBOARD:
  1566. {
  1567. m_stDeviceConfig.strInterfaceBoard = pszMsg;
  1568. FINFO("Detector ID:{$}, InterfaceBoard:{$}", nDetectorID, pszMsg);
  1569. break;
  1570. }
  1571. case EVT_CONF_DATECODE:
  1572. {
  1573. m_stDeviceConfig.strDateCode = pszMsg;
  1574. FINFO("Detector ID:{$}, DateCode:{$}", nDetectorID, pszMsg);
  1575. break;
  1576. }
  1577. case EVT_CONF_LIFETIME:
  1578. {
  1579. int nLifeTime = nParam1;
  1580. if ((nLifeTime != m_stDeviceConfig.nLifeTime))
  1581. {
  1582. FINFO("LifeTime:{$}", nLifeTime);
  1583. m_stDeviceConfig.nLifeTime = nLifeTime;
  1584. }
  1585. break;
  1586. }
  1587. case EVT_CONF_SUPPORT_SWITCH_RESOLUTION:
  1588. {
  1589. int nSupportSwitchResolution = nParam1;
  1590. FINFO("Detector ID:{$}, nSupportSwitchResolution:{$}", nDetectorID, nSupportSwitchResolution);
  1591. if (nSupportSwitchResolution)
  1592. {
  1593. m_DetectorCtrlUnit->SetSupportSwitchResolution("1");
  1594. }
  1595. else
  1596. {
  1597. m_DetectorCtrlUnit->SetSupportSwitchResolution("0");
  1598. }
  1599. break;
  1600. }
  1601. case EVT_CONF_CURRENT_RESOLUTION:
  1602. {
  1603. int nCurrentResolution = nParam1;
  1604. FINFO("Detector ID:{$}, nCurrentResolution:{$}", nDetectorID, nCurrentResolution);
  1605. m_DetectorCtrlUnit->SetCurrentResolution(std::to_string(nCurrentResolution));
  1606. break;
  1607. }
  1608. default:
  1609. break;
  1610. }
  1611. }
  1612. void nsFPD::FPDDeviceKonica::OnEventProcessInfo(int nDetectorID, int nEventID, int nEventLevel,
  1613. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1614. {
  1615. FERROR("Not support this info({$})", nEventID);
  1616. }
  1617. void nsFPD::FPDDeviceKonica::OnEventProcessStatus(int nDetectorID, int nEventID, int nEventLevel,
  1618. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1619. {
  1620. switch (nEventID)
  1621. {
  1622. case EVT_STATUS_INIT:
  1623. {
  1624. FINFO("EVT_STATUS_INIT nParam1:{$}", nParam1);
  1625. break;
  1626. }
  1627. case EVT_STATUS_PANEL:
  1628. {
  1629. PanelStatus m_ePanelStatus = (PanelStatus)nParam1;
  1630. if (PANEL_CLOSE == nParam1)
  1631. {
  1632. FINFO("EVT_STATUS_PANEL PANEL_CLOSE");
  1633. m_bDeviceConnect = false;
  1634. gDriver->m_bDriverConnect = false;
  1635. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_SHUTDOWN));
  1636. m_DetectorCtrlUnit->SetConnectStatus(to_string(PANEL_DISCONNECT_SUCCESS));
  1637. m_WarnAndError->SendError(ERR_FPD_DISCONNECT, "");
  1638. }
  1639. else if (PANEL_CONNECT == nParam1)
  1640. {
  1641. FINFO("EVT_STATUS_PANEL PANEL_CONNECT");
  1642. m_bDeviceConnect = true;
  1643. gDriver->m_bDriverConnect = true;
  1644. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_WAKEUP));
  1645. m_DetectorCtrlUnit->SetConnectStatus(to_string(PANEL_CONNECT_OK));
  1646. m_WarnAndError->ClearError(ERR_FPD_DISCONNECT);
  1647. }
  1648. else if (PANEL_STANDBY == nParam1)
  1649. {
  1650. FINFO("EVT_STATUS_PANEL PANEL_STANDBY");
  1651. m_bEnterAcqStatus = false;
  1652. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_WAKEUP));
  1653. //检查界面曝光超时后,如果用户没有退出检查界面需要重新ready
  1654. /*if (m_eAppStatus == APP_STATUS_WORK_BEGIN)
  1655. {
  1656. RET_STATUS ret = PrepareAcquisition();
  1657. if (ret != RET_SUCCEED)
  1658. {
  1659. FERROR("PrepareAcquisition fail!");
  1660. }
  1661. }*/
  1662. }
  1663. else if (PANEL_READY_EXP == nParam1)
  1664. {
  1665. FINFO("EVT_STATUS_PANEL PANEL_READY_EXP");
  1666. m_AcqUnit->SetZskkFPDState(to_string(ZSKK_FPD_STATE_READY));
  1667. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//PANEL_READY_EXP
  1668. m_WarnAndError->ClearAllError();
  1669. m_bEnterAcqStatus = true;
  1670. }
  1671. else if (PANEL_XWINDOW_ON == nParam1) //Xwindow On
  1672. {
  1673. m_stSystemTime = { 0 };
  1674. GetLocalTime(&m_stSystemTime);
  1675. FINFO("XWindowOn at {$:d04}-{$:d02}-{$:d02} {$:d02}:{$:d02}:{$:d02}:{$:d03}",
  1676. m_stSystemTime.wYear, m_stSystemTime.wMonth, m_stSystemTime.wDay,
  1677. m_stSystemTime.wHour, m_stSystemTime.wMinute, m_stSystemTime.wSecond, m_stSystemTime.wMilliseconds);
  1678. m_SyncUnit->XWindowOnNotify();//Xwindow On
  1679. }
  1680. else if (PANEL_XWINDOW_OFF == nParam1) // Xwindow Off
  1681. {
  1682. m_stSystemTime = { 0 };
  1683. GetLocalTime(&m_stSystemTime);
  1684. FINFO("XWindowOff at {$:d04}-{$:d02}-{$:d02} {$:d02}:{$:d02}:{$:d02}:{$:d03}",
  1685. m_stSystemTime.wYear, m_stSystemTime.wMonth, m_stSystemTime.wDay,
  1686. m_stSystemTime.wHour, m_stSystemTime.wMinute, m_stSystemTime.wSecond, m_stSystemTime.wMilliseconds);
  1687. m_SyncUnit->XWindowOffNotify();
  1688. }
  1689. else if (PANEL_START_ACQ == nParam1)
  1690. {
  1691. FINFO("EVT_STATUS_PANEL PANEL_START_ACQ");
  1692. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_ACQ));//PANEL_START_ACQ
  1693. m_bEnterAcqStatus = true;
  1694. }
  1695. else if (PANEL_XRAY_ON == nParam1)
  1696. {
  1697. FINFO("EVT_STATUS_PANEL PANEL_XRAY_ON");
  1698. m_SyncUnit->XrayOnNotify();
  1699. }
  1700. else if (PANEL_XRAY_OFF == nParam1)
  1701. {
  1702. FINFO("EVT_STATUS_PANEL PANEL_XRAY_OFF");
  1703. m_SyncUnit->XrayOffNotify();
  1704. }
  1705. else if (PANEL_READY_TIMEOUT == nParam1)
  1706. {
  1707. FINFO("EVT_STATUS_PANEL PANEL_READY_TIMEOUT");
  1708. m_WarnAndError->SendError(ERR_FPD_READY_TIMEOUT, "");
  1709. }
  1710. else if (PANEL_SLEEP == nParam1)
  1711. {
  1712. FINFO("EVT_STATUS_PANEL PANEL_SLEEP");
  1713. m_bEnterAcqStatus = false;
  1714. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_SLEEP));
  1715. }
  1716. break;
  1717. }
  1718. case EVT_STATUS_CALIBRATIOIN:
  1719. {
  1720. FINFO("EVT_STATUS_PANEL EVT_STATUS_CALIBRATIOIN");
  1721. PanelEventState eStatus = (PanelEventState)nParam1;
  1722. switch (eStatus)
  1723. {
  1724. case PANEL_EVENT_START:
  1725. break;
  1726. case PANEL_EVENT_END_OK:
  1727. case PANEL_EVENT_END_ERROR:
  1728. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//EVT_STATUS_CALIBRATIOIN PANEL_EVENT_END_OK
  1729. m_CalibUnit->SetCalibrationStatus(to_string(CCOS_CALIBRATION_STATUS_STANDBY));
  1730. m_CalibUnit->SetCalibrationProgress("100");
  1731. break;
  1732. case PANEL_EVENT_TIMEOUT:
  1733. break;
  1734. default:
  1735. break;
  1736. }
  1737. break;
  1738. }
  1739. case EVT_STATUS_SAVECALIB:
  1740. {
  1741. FINFO("EVT_STATUS_SAVECALIB");
  1742. PanelEventState eStatus = (PanelEventState)nParam1;
  1743. switch (eStatus)
  1744. {
  1745. case PANEL_EVENT_START:
  1746. {
  1747. FINFO("save calib file start");
  1748. break;
  1749. }
  1750. case PANEL_EVENT_END:
  1751. {
  1752. FINFO("save calib file end");
  1753. break;
  1754. }
  1755. default:
  1756. break;
  1757. }
  1758. break;
  1759. }
  1760. case EVT_STATUS_SINGLEEXP:
  1761. {
  1762. FINFO("EVT_STATUS_PANEL EVT_STATUS_SINGLEEXP");
  1763. if (DOSE_ACCEPT == nParam1)
  1764. {
  1765. FINFO("Calibration Result is acceptable");
  1766. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_STANDBY));//EVT_STATUS_SINGLEEXP DOSE_ACCEPT
  1767. m_CalibUnit->PauseCalibration();
  1768. }
  1769. else
  1770. {
  1771. FERROR("Not support this param({$})", nParam1);
  1772. }
  1773. break;
  1774. }
  1775. case EVT_STATUS_IMAGEPENDING:
  1776. {
  1777. FINFO("EVT_STATUS_PANEL EVT_STATUS_IMAGEPENDING");
  1778. m_WarnAndError->SendError(ERR_COMSERVER_ERROR, "");
  1779. break;
  1780. }
  1781. case EVT_STATUS_TEMPERATURE:
  1782. {
  1783. FINFO("EVT_STATUS_PANEL EVT_STATUS_TEMPERATURE");
  1784. float fTemperature = fParam2;
  1785. // if (fTemperature > m_fTemperMaxLimit)
  1786. // {
  1787. // AddErrMsg("14", "temperature_toohigh");
  1788. // }
  1789. // else if (fTemperature >= m_fTemperWarning)
  1790. // {
  1791. // AddWarnMsg("14", "temperature_high");
  1792. // }
  1793. // else if (fTemperature < m_fTemperMinLimit)
  1794. // {
  1795. // AddErrMsg("14", "temperature_toolow");
  1796. // }
  1797. // else if (fTemperature <= m_fTemperLowLimit)
  1798. // {
  1799. // AddWarnMsg("14", "temperature_low");
  1800. // }
  1801. // else
  1802. // {
  1803. // DelErrMsg("14");
  1804. // }
  1805. SendTemperatureValue(fTemperature);
  1806. break;
  1807. }
  1808. case EVT_STATUS_WIFI:
  1809. {
  1810. FINFO("EVT_STATUS_PANEL EVT_STATUS_WIFI");
  1811. int nWifiLevel = nParam1;
  1812. // if (nWifiLevel < m_nWifiLimit)
  1813. // {
  1814. // AddErrMsg("15", "wifi_toolow");
  1815. // }
  1816. // else if (nWifiLevel <= m_nWifiWarning)
  1817. // {
  1818. // AddWarnMsg("15", "wifi_low");
  1819. // }
  1820. // else
  1821. // {
  1822. // DelErrMsg("15");
  1823. // }
  1824. SendWifiValue(nWifiLevel);
  1825. break;
  1826. }
  1827. case EVT_STATUS_BATTERY_VALUE:
  1828. {
  1829. FINFO("EVT_STATUS_PANEL EVT_STATUS_BATTERY_VALUE");
  1830. int nBatteryValue = nParam1;
  1831. // if (nBatteryValue < m_nBatteryLimit)
  1832. // {
  1833. // AddErrMsg("16", "battery_toolow");
  1834. // }
  1835. // else if (nBatteryValue <= m_nBatteryWarning)
  1836. // {
  1837. // AddWarnMsg("16", "battery_low");
  1838. // }
  1839. // else
  1840. // {
  1841. // DelErrMsg("16");
  1842. // }
  1843. SendBatteryValue(nBatteryValue);
  1844. break;
  1845. }
  1846. default:
  1847. FERROR("Not support this event({$})", nEventID);
  1848. break;
  1849. }
  1850. }
  1851. string nsFPD::FPDDeviceKonica::MakeImageHead(IMAGE_VIEW_TYPE Type)
  1852. {
  1853. ResDataObject pFullImageHead;
  1854. ResDataObject pPreviewImageHead;
  1855. SYSTEMTIME SystemTime = { 0 };
  1856. GetLocalTime(&SystemTime);
  1857. if (Type == IMAGE_FULL)
  1858. {
  1859. ResDataObject json;
  1860. json.add(SM_IMAGE_TYPE, (int)Type);
  1861. json.add(SM_IMAGE_BIT, m_nImgBits);
  1862. json.add(SM_IMAGE_TAG, 1);
  1863. json.add(SM_IMAGE_INDEX, 1);
  1864. json.add(SM_IMAGE_YEAR, SystemTime.wYear);
  1865. json.add(SM_IMAGE_MONTH, SystemTime.wMonth);
  1866. json.add(SM_IMAGE_DAY, SystemTime.wDay);
  1867. json.add(SM_IMAGE_HOUR, SystemTime.wHour);
  1868. json.add(SM_IMAGE_MINUTE, SystemTime.wMinute);
  1869. json.add(SM_IMAGE_SEC, SystemTime.wSecond);
  1870. json.add(SM_IMAGE_MILLSEC, SystemTime.wMilliseconds);
  1871. json.add(SM_IMAGE_LSB, "5000");
  1872. json.add(SM_IMAGE_DOSE, m_nSensitivity);
  1873. json.add(SM_IMAGE_PIXELREPRESENTATION, "1");
  1874. json.add(SM_IMAGE_PIXELSPACING, m_nPixelSpacing);
  1875. json.add(SM_IMAGE_FLIP, "No");
  1876. json.add(SM_IMAGE_ORIGINX, "0");
  1877. json.add(SM_IMAGE_ORIGINY, "0");
  1878. json.add(SM_IMAGE_EXI2UGY, m_fFactorEXI2UGY);
  1879. json.add(SM_IMAGE_TEMP, 0.0f);
  1880. if (90 == m_nAngle || 270 == m_nAngle)
  1881. {
  1882. json.add(SM_IMAGE_WIDTH, m_nFullImageHeight);
  1883. json.add(SM_IMAGE_HEIGHT, m_nFullImageWidth);
  1884. json.add(SM_IMAGE_ROTATION, "Yes");
  1885. }
  1886. else
  1887. {
  1888. json.add(SM_IMAGE_WIDTH, m_nFullImageWidth);
  1889. json.add(SM_IMAGE_HEIGHT, m_nFullImageHeight);
  1890. json.add(SM_IMAGE_ROTATION, "No");
  1891. }
  1892. pFullImageHead.add(SM_IMAGE_HEAD, json);
  1893. return pFullImageHead.encode();
  1894. }
  1895. else
  1896. {
  1897. ResDataObject json;
  1898. json.add(SM_IMAGE_TYPE, (int)Type);
  1899. json.add(SM_IMAGE_WIDTH, m_nPreviewImageWidth);
  1900. json.add(SM_IMAGE_HEIGHT, m_nPreviewImageHeight);
  1901. json.add(SM_IMAGE_BIT, m_nImgBits);
  1902. json.add(SM_IMAGE_TAG, 1);
  1903. json.add(SM_IMAGE_INDEX, 1);
  1904. json.add(SM_IMAGE_YEAR, SystemTime.wYear);
  1905. json.add(SM_IMAGE_MONTH, SystemTime.wMonth);
  1906. json.add(SM_IMAGE_DAY, SystemTime.wDay);
  1907. json.add(SM_IMAGE_HOUR, SystemTime.wHour);
  1908. json.add(SM_IMAGE_MINUTE, SystemTime.wMinute);
  1909. json.add(SM_IMAGE_SEC, SystemTime.wSecond);
  1910. json.add(SM_IMAGE_MILLSEC, SystemTime.wMilliseconds);
  1911. json.add(SM_IMAGE_LSB, "5000");
  1912. json.add(SM_IMAGE_DOSE, m_nSensitivity);
  1913. json.add(SM_IMAGE_ROTATION, "No");
  1914. json.add(SM_IMAGE_FLIP, "No");
  1915. json.add(SM_IMAGE_ORIGINX, "0");
  1916. json.add(SM_IMAGE_ORIGINY, "0");
  1917. json.add(SM_IMAGE_PIXELSPACING, m_nPixelSpacing);
  1918. json.add(SM_IMAGE_PIXELREPRESENTATION, "1");
  1919. json.add(SM_IMAGE_TEMP, m_stDeviceConfig.fCurrentTemperValue);
  1920. pPreviewImageHead.add(SM_IMAGE_HEAD, json);
  1921. return pPreviewImageHead.encode();
  1922. }
  1923. }
  1924. void nsFPD::FPDDeviceKonica::OnEventProcessData(int nDetectorID, int nEventID, int nEventLevel,
  1925. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1926. {
  1927. switch (nEventID)
  1928. {
  1929. case EVT_DATA_RAW_IMAGE:
  1930. {
  1931. FINFO("EVT_DATA_RAW_IMAGE");
  1932. if (nullptr != m_pFullImgBuffer)
  1933. {
  1934. delete[]m_pFullImgBuffer;
  1935. m_pFullImgBuffer = nullptr;
  1936. }
  1937. m_pFullImgBuffer = new WORD[m_nFullImageWidth * m_nFullImageHeight];
  1938. m_AcqUnit->ImagerPixelSpacingNotify(m_nPixelSpacing);
  1939. if (m_nAngle == 90 || m_nAngle == 270)
  1940. {
  1941. m_AcqUnit->SetFulImageInfo(m_nFullImageWidth, m_nFullImageHeight, m_nImgBits, false);
  1942. }
  1943. else
  1944. {
  1945. m_AcqUnit->SetFulImageInfo(m_nFullImageHeight, m_nFullImageWidth, m_nImgBits, false);
  1946. }
  1947. memcpy(m_pFullImgBuffer, pParam, (size_t)m_nFullImageWidth * (size_t)m_nFullImageHeight * sizeof(WORD));
  1948. string strImageHeader = MakeImageHead(IMAGE_FULL);
  1949. FINFO("Full image head: {$}", strImageHeader);
  1950. if (0 != m_nAngle)
  1951. {
  1952. m_AcqUnit->RotateImage(m_pFullImgBuffer, m_nFullImageHeight, m_nFullImageWidth, m_nAngle);
  1953. }
  1954. m_AcqUnit->AddFrameWithRawHead(IMAGE_FULL, strImageHeader, m_pFullImgBuffer, m_nFullImageWidth * m_nFullImageHeight);
  1955. FINFO("Add image over");
  1956. break;
  1957. }
  1958. case EVT_DATA_PREVIEW_IMAGE:
  1959. {
  1960. FINFO("EVT_DATA_PREVIEW_IMAGE");
  1961. if (m_nPreviewEnable)
  1962. {
  1963. m_AcqUnit->SetPrevImageInfo(true, m_nPreviewImageHeight, m_nPreviewImageWidth, 0);
  1964. if (nullptr != m_pPreviewImgBuffer)
  1965. {
  1966. delete[] m_pPreviewImgBuffer;
  1967. m_pPreviewImgBuffer = nullptr;
  1968. }
  1969. m_pPreviewImgBuffer = new WORD[m_nPreviewImageWidth * m_nPreviewImageHeight];
  1970. memcpy(m_pPreviewImgBuffer, pParam, (size_t)m_nPreviewImageWidth * (size_t)m_nPreviewImageHeight * sizeof(WORD));
  1971. string strImageHeader = MakeImageHead(IMAGE_PREVIEW);
  1972. FINFO("Preview image head: {$}", strImageHeader);
  1973. m_AcqUnit->AddFrameWithRawHead(IMAGE_PREVIEW, strImageHeader, m_pPreviewImgBuffer, m_nPreviewImageWidth * m_nPreviewImageHeight);
  1974. }
  1975. break;
  1976. }
  1977. case EVT_DATA_DOSEPARAM:
  1978. {
  1979. m_nTargetCalibExi = nParam1;
  1980. FINFO("EVT_DATA_DOSEPARAM m_nTargetCalibExi:{$}", m_nTargetCalibExi);
  1981. break;
  1982. }
  1983. default:
  1984. FERROR("Not support this data({$})", nEventID);
  1985. break;
  1986. }
  1987. }
  1988. void nsFPD::FPDDeviceKonica::OnEventProcessError(int nDetectorID, int nEventID, int nEventLevel,
  1989. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  1990. {
  1991. switch (nEventID)
  1992. {
  1993. case EVT_ERR_COMMUNICATE:
  1994. //{
  1995. // string strTemp = pszMsg;
  1996. // if (strTemp.find("true") != std::string::npos)
  1997. // {
  1998. // AddErrMsg("0", "communication error");
  1999. // SendTemperatureValue(0);
  2000. // SendWifiValue(0);
  2001. // SendBatteryValue(0);
  2002. // }
  2003. // else if (strTemp.find("false") != std::string::npos)
  2004. // {
  2005. // DelErrMsg("0");
  2006. // }
  2007. //}
  2008. break;
  2009. case EVT_ERR_INIT_FAILED:
  2010. //{
  2011. // string strTemp = pszMsg;
  2012. // if (strTemp.find("true") != std::string::npos)
  2013. // {
  2014. // AddErrMsg("6", "initialize error");
  2015. // }
  2016. // else if (strTemp.find("false") != std::string::npos)
  2017. // {
  2018. // //一般不可恢复
  2019. // }
  2020. //}
  2021. break;
  2022. default:
  2023. FERROR("Not support this error({$})", nEventID);
  2024. break;
  2025. }
  2026. }
  2027. void nsFPD::FPDDeviceKonica::OnEventProcessWarning(int nDetectorID, int nEventID, int nEventLevel,
  2028. const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam)
  2029. {
  2030. FERROR("Not support this warn({$})", nEventID);
  2031. }
  2032. RET_STATUS nsFPD::FPDDeviceKonica::ActiveSyncMode(int nSyncMode)
  2033. {
  2034. FINFO("--Func-- ActiveSyncMode nSyncMode:{$}", nSyncMode);
  2035. m_eSyncMode = (SYNC_MODE)nSyncMode;
  2036. if (g_pDetector->ActiveSyncMode(nSyncMode))
  2037. {
  2038. return RET_SUCCEED;
  2039. }
  2040. else
  2041. {
  2042. FERROR("ActiveSyncMode fail!");
  2043. return RET_FAILED;
  2044. }
  2045. }
  2046. RET_STATUS nsFPD::FPDDeviceKonica::ActiveDetector(bool bActive)
  2047. {
  2048. FINFO("--Func-- ActiveDetector bActive:{$}", bActive);
  2049. if (g_pDetector->ActiveDetector(this, bActive))
  2050. {
  2051. if (bActive)
  2052. {
  2053. FINFO("ActiveDetector success!");
  2054. }
  2055. else
  2056. {
  2057. FINFO("InActiveDetector success!");
  2058. }
  2059. return RET_SUCCEED;
  2060. }
  2061. else
  2062. {
  2063. if (bActive)
  2064. {
  2065. FERROR("ActiveDetector fail!");
  2066. }
  2067. else
  2068. {
  2069. FERROR("InActiveDetector fail!");
  2070. }
  2071. return RET_FAILED;
  2072. }
  2073. }
  2074. RET_STATUS nsFPD::FPDDeviceKonica::UpdateCalibMode(CCOS_CALIBRATION_MODE eCalibMode)
  2075. {
  2076. FINFO("--Func-- UpdateCalibMode eCalibMode:{$}", (int)eCalibMode);
  2077. m_stDeviceConfig.nCalibMode = (int)eCalibMode;
  2078. if (g_pDetector->UpdateCalibMode(eCalibMode))
  2079. {
  2080. FINFO("UpdateCalibMode success!");
  2081. return RET_SUCCEED;
  2082. }
  2083. else
  2084. {
  2085. FERROR("UpdateCalibMode fail!");
  2086. return RET_FAILED;
  2087. }
  2088. }
  2089. RET_STATUS nsFPD::FPDDeviceKonica::UpdateNotifyStatusTimePeriod(int nTime)
  2090. {
  2091. FINFO("--Func-- UpdateNotifyStatusTimePeriod nTime:{$}", nTime);
  2092. m_stDeviceConfig.nNotifyStatusTimePeriod = nTime;
  2093. g_pDetector->SetNotifyStatusTimePeriod(nTime);
  2094. return RET_SUCCEED;
  2095. }
  2096. RET_STATUS nsFPD::FPDDeviceKonica::UpdateReconnectTimePeriod(int nTime)
  2097. {
  2098. FINFO("--Func-- UpdateReconnectTimePeriod nTime:{$}", nTime);
  2099. m_stDeviceConfig.nReconnectTimePeriod = nTime;
  2100. g_pDetector->SetReconnectTimePeriod(nTime);
  2101. return RET_SUCCEED;
  2102. }
  2103. RET_STATUS nsFPD::FPDDeviceKonica::SetResolution(int nResolution)
  2104. {
  2105. FINFO("--Func-- SetResolution nResolution:{$}", nResolution);
  2106. if (!m_bDeviceConnect)
  2107. {
  2108. FERROR("m_bDeviceConnect is false, detector not connect, return");
  2109. return RET_FAILED;
  2110. }
  2111. if (m_stDeviceConfig.nSupportSwitchResolution == 0)
  2112. {
  2113. FWARN("Current detector do not support switch resolution!");
  2114. return RET_SUCCEED;
  2115. }
  2116. if (g_pDetector->SetResolution(nResolution))
  2117. {
  2118. FINFO("SetResolution success!");
  2119. m_DetectorCtrlUnit->SetDetectorStatus(to_string(DETECTOR_STATUS_WAKEUP));//SetResolution
  2120. }
  2121. else
  2122. {
  2123. FERROR("SetResolution fail!");
  2124. return RET_FAILED;
  2125. }
  2126. //通知ErrorList,让状态机重新走ready流程
  2127. m_WarnAndError->SendError(ERR_SWITCH_RESOLUTION, "");
  2128. /*RET_STATUS ret = PrepareAcquisition();
  2129. if(ret != RET_SUCCEED)
  2130. {
  2131. FERROR("PrepareAcquisition fail!");
  2132. return RET_FAILED;
  2133. }*/
  2134. return RET_SUCCEED;
  2135. }
  2136. RET_STATUS nsFPD::FPDDeviceKonica::UpdateLastCalibrationDate(std::string in)
  2137. {
  2138. FINFO("--Func-- UpdateLastCalibrationDate in:{$}", in);
  2139. m_stDeviceConfig.strLastCalibrationDate = in;
  2140. return RET_SUCCEED;
  2141. }
  2142. RET_STATUS nsFPD::FPDDeviceKonica::UpdateCalibrationFileExpireTime(std::string in)
  2143. {
  2144. FINFO("--Func-- UpdateCalibrationFileExpireTime in:{$}", in);
  2145. m_stDeviceConfig.strCalibrationFileExpireTime = in;
  2146. return RET_SUCCEED;
  2147. }
  2148. RET_STATUS nsFPD::FPDDeviceKonica::UpdateCalibrationFileExpirationReminder(std::string in)
  2149. {
  2150. FINFO("--Func-- UpdateCalibrationFileExpirationReminder in:{$}", in);
  2151. m_stDeviceConfig.strCalibrationFileExpirationReminder = in;
  2152. return RET_SUCCEED;
  2153. }
  2154. /***
  2155. * 客户端获取探测器信息
  2156. ***/
  2157. RET_STATUS nsFPD::FPDDeviceKonica::GetDetectorInfo(string& strInfo)
  2158. {
  2159. FINFO("--Func-- GetDetectorInfo");
  2160. ResDataObject strDetectorInfo;
  2161. if (m_stDeviceConfig.strPanelSerial == "")
  2162. {
  2163. FWARN("strPanelSerial is null, Send Default Info");
  2164. strDetectorInfo.add("DetectorName", "Simulator");
  2165. strDetectorInfo.add("DetectorSN", "Simulator");
  2166. strDetectorInfo.add("SSID", " ");
  2167. strDetectorInfo.add("LifeTime", "0");
  2168. strDetectorInfo.add("PowerOn", "0");
  2169. strDetectorInfo.add("DateCode", " ");
  2170. strDetectorInfo.add("PartNumber", " ");
  2171. strDetectorInfo.add("WifiDataRate", " ");
  2172. strDetectorInfo.add("WifiChannel", "0");
  2173. strDetectorInfo.add("DetectorExist", "0");
  2174. strDetectorInfo.add("SystemAS", "0");
  2175. strDetectorInfo.add("CalibrationDate", "0");
  2176. strDetectorInfo.add("CalibrationDue", "0");
  2177. strDetectorInfo.add("CalibrationExist", "0");
  2178. strDetectorInfo.add("CommunicationStatus", "0");
  2179. strDetectorInfo.add("DetectorTemperature", "0");
  2180. strDetectorInfo.add("FDCalibrationTemperature", "0");
  2181. strDetectorInfo.add("TemperatureStatus", "0");
  2182. strDetectorInfo.add("WaitTime", "0");
  2183. strDetectorInfo.add("DetectorWifiSignal", "0");
  2184. strDetectorInfo.add("DetectorBattery", "0");
  2185. strDetectorInfo.add("ShockSensor", "NULL");
  2186. strDetectorInfo.add("FirmwareUpdate", "0");
  2187. strInfo = strDetectorInfo.encode();
  2188. return RET_STATUS::RET_SUCCEED;
  2189. }
  2190. strDetectorInfo.add("DetectorName", m_stDeviceConfig.strDeviceName.c_str());
  2191. strDetectorInfo.add("DetectorSN", m_stDeviceConfig.strPanelSerial.c_str());
  2192. //strDetectorInfo.add("Firmware", m_stDeviceConfig.strFirmware.c_str());
  2193. //strDetectorInfo.add("APFirmware", "NULL");
  2194. //strDetectorInfo.add("Software", m_stDeviceConfig.strSoftware.c_str());
  2195. //strDetectorInfo.add("SSID", m_stDeviceConfig.strWifiSSID.c_str());
  2196. //strDetectorInfo.add("LifeTime", m_stDeviceConfig.nLifeTime);
  2197. //strDetectorInfo.add("PowerOn", m_stDeviceConfig.nPowerOn);
  2198. //strDetectorInfo.add("FD_Voltage_List1", m_strVoltage.c_str());
  2199. //strDetectorInfo.add("DateCode", m_stDeviceConfig.strDateCode.c_str());
  2200. //strDetectorInfo.add("PartNumber", m_stDeviceConfig.strPartNumber.c_str());
  2201. //strDetectorInfo.add("WifiDataRate", m_stDeviceConfig.nWifiDataRate);
  2202. //strDetectorInfo.add("WifiChannel", m_stDeviceConfig.nWifiChannel);
  2203. //strDetectorInfo.add("DetectorExist", m_stDeviceConfig.bExisted);
  2204. //strDetectorInfo.add("SystemAS", m_stDeviceConfig.pDetModeInfoStruct[0].nWorkStation);
  2205. strInfo = strDetectorInfo.encode();
  2206. return RET_STATUS::RET_SUCCEED;
  2207. }