#pragma once #include "CCOS.Dev.FPDDeviceMould.hpp" #include "OemAcq.h" #include "OemSync.h" #include "OemCtrl.h" #include "OemCalib.h" #include "DetectorConfiguration.h" #include "CCOS.Dev.MSGMould.hpp" #include "FPDErrorWarningProcess.h" #ifdef CCOSDEVFPDPZMEDICALDM_EXPORTS #define CCOSDEVFPDPZMEDICALDM_API __declspec(dllexport) #else #define CCOSDEVFPDPZMEDICALDM_API __declspec(dllimport) #endif namespace CCOS::Dev::Detail::Detector { class CCOSDEVFPDPZMEDICALDM_API PZMedicalDriver : public FPDDriverMould { FPDDevicePZMedical* m_pObjDev; ResDataObject m_DeviceConfig; ResDataObject m_ConfigAll; //存储当前的配置,用于修改配置时写回文件 ResDataObject m_Configurations; //存储当前配置中“CONFIGURATION”节点的内容 std::unique_ptr m_pAttribute; std::unique_ptr m_pDescription; public: PZMedicalDriver(); virtual ~PZMedicalDriver(); bool m_bDriverConnect; //driver是否连接的标记位 virtual void Prepare() override; virtual bool Connect() override; virtual void Disconnect() override; virtual bool isConnected() const override; virtual auto CreateDevice(int index)->std::unique_ptr override; virtual std::string DriverProbe() override; virtual std::string GetResource() override; virtual std::string DeviceProbe() override; virtual bool GetDeviceConfig(std::string& Cfg) override; virtual bool SetDeviceConfig(std::string Cfg) override; bool SaveConfigFile(bool bSendNotify); bool GetDeviceConfigValue(ResDataObject config, const char* pInnerKey, int nPathID, string& strValue); bool SetDeviceConfigValue(ResDataObject& config, const char* pInnerKey, int nPathID, const char* szValue); }; namespace nsDetail = CCOS::Dev::Detail; class CCOSDEVFPDPZMEDICALDM_API FPDDevicePZMedical : public FPDDeviceMould { using super = IODeviceDetail; //IODeviceDetail类的别名声明 std::unique_ptr m_DetectorCtrlUnit; std::unique_ptr m_AcqUnit; std::unique_ptr m_SyncUnit; std::unique_ptr m_CalibUnit; std::unique_ptr m_Temperature; std::unique_ptr m_Battery; std::unique_ptr m_Wifi; std::unique_ptr m_DetectorConfiguration; std::unique_ptr m_WarnAndError; std::string m_strWorkPath; bool m_bConnect; int m_nFullImageWidth; int m_nFullImageHeight; int m_nImageBits; //图像位数 int m_nPixelSpacing; WORD* m_pwFullImageData; //裁剪后的有效图像内存 WORD* m_pwPreviewImg; //preview内存 ResDataObject* m_pFullImageHead; ResDataObject* m_pPreviewImageHead; int m_nSensitivity; APP_STATUS m_eAppStatus; SYSTEMTIME m_SystemTime; //记录图像生成时间(软同步使用开窗时间),用于填写dicom SYNC_MODE m_eSyncMode; HANDLE m_PauseCalibrationEvt; HANDLE m_WaitCalibDoseEvt; ResDataObject m_CalibDoseList; //加载平板自己的校正剂量配置 int m_nCalibTotalExposureNum; //校正曝光总次数 int m_nCalibCurrentCalibrationRound; //校正曝光第几轮 int m_nCalibCurrentExposureIndex; //当前轮点击Accept 曝光第几次 int m_nCalibCurrentExposureNum; //点击Accept 接受曝光的总次数 int m_nXrayCalibNum; float m_fFactorEXI2UGY; //探测器EXI -> UGY 转换系数 float m_fDoseParam;// 校正用的曝光计量,发送到UI 且本地记录 int m_nBatteryCapacity; int m_nBatteryCharges; float m_fBatteryTemperature; HANDLE m_UploadCalibMapOver; bool m_bImagePendingOrNot; //是否有未获取成功的图像 bool m_bResetDetector; //是否reset探测器,暂时不用 int m_nShockCounts; string m_strCurrentAcqMode;//当前采集模式 public: DeviceIndexStruct m_stDeviceConfig; public: FPDDevicePZMedical(std::shared_ptr center, std::string strConfigPath); ~FPDDevicePZMedical(); virtual std::string GetGUID() const override; virtual bool Prepare() override; bool CreateDevice(); void Register(); RET_STATUS Connect(); RET_STATUS EnterExam(int nExamMode); RET_STATUS ActiveDetector(int nDetectorIndex, bool bActive); RET_STATUS SetAcqMode(string strAcqMode); RET_STATUS PrepareAcquisition(); RET_STATUS StartAcquisition(string in = ""); RET_STATUS StopAcquisition(); RET_STATUS ActiveCalibration(CCOS_CALIBRATION_TYPE eType); RET_STATUS PrepareCalibration(); RET_STATUS GetRequestedDose(std::string& strDose); RET_STATUS SetRequestedDose(std::string strDose); RET_STATUS StartCalibration(); RET_STATUS StopCalibration(); RET_STATUS AcceptCalibration(); RET_STATUS RejectCalibration(); RET_STATUS SaveCalibrationFile(bool bSaveFlag); RET_STATUS GetCalibrationStep(int nDetectorID, string& strCalibrationStepInfo); RET_STATUS PauseCalibration(); RET_STATUS Reset(); RET_STATUS GetDetectorInfo(string& strFDI); RET_STATUS ActiveSyncMode(int nSyncMode); RET_STATUS UpdateCalibMode(CCOS_CALIBRATION_MODE eCalibMode); RET_STATUS UpdateNotifyStatusTimePeriod(int nTime); RET_STATUS UpdateReconnectTimePeriod(int nTime); RET_STATUS UpdateDetectorWiredIP(string strWiredIP); RET_STATUS UpdateDetectorWirelessIP(string strWirelessIP); RET_STATUS UpdateLastCalibrationDate(std::string in); RET_STATUS UpdateCalibrationFileExpireTime(std::string in); RET_STATUS UpdateCalibrationFileExpirationReminder(std::string in); bool CompleteCalibration(); void AbortCalibration(); void OnFPDCallback(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); int GetGainExposureNum();//获取gain校正曝光总次数 void FullImageDateArrived(WORD* pImg); WORD* GetFullImageData(); bool GetLogicMode(string& strAcqMode, int& nLogicMode); private: bool LoadConfig(); void SendTemperatureValue(float fValue); void SendWifiValue(int nValue); void SendBatteryValue(int nValue); void OnEventProcessConf(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); void OnEventProcessInfo(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); void OnEventProcessStatus(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); void OnEventProcessData(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); void OnEventProcessError(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); void OnEventProcessWarning(int nDetectorID, int nEventID, int nEventLevel, const char* pszMsg, int nParam1, float fParam2, int nPtrParamLen, void* pParam); bool OnProcessPreviewImage(WORD* pRawImage, int nWidth, int nHeight); void PrevImageDateArrived(WORD* pImg); RET_STATUS AddFrameWithRawHead(IMAGE_VIEW_TYPE Type, WORD* pFrameBuff, DWORD FrameSize); string MakeImageHead(IMAGE_VIEW_TYPE Type); bool OnProcessImage(WORD* pImage, int nWidth, int nHeight); void OnProcessTemperature(int nID, float fTemperature); protected: void RegisterCtrl(nsDetail::Dispatch* Dispatch); void RegisterAcq(nsDetail::Dispatch* Dispatch); void RegisterSync(nsDetail::Dispatch* Dispatch); void RegisterCalib(nsDetail::Dispatch* Dispatch); void RegisterOthers(nsDetail::Dispatch* Dispatch); }; } //end namespace CCOS::Dev::Detail::Detector