#include "stdafx.h"
#include "EpdBaseClr.h"
#pragma managed
EpdBaseClr::Epd2::Epd2(int port, bool OnlyMK2)
{
//HANDLE hMod = LoadLibrary(L"Reader2.dll");
EpdID = 0;
isMK3 = EPDIssued = isBG = 0;
onlyMK2 = OnlyMK2;
epd = new EpdBase::Epd2U(port);
if (!OnlyMK2) {
epd3 = new Epd3Base::Epd3U(port);
if (epd3) epd3->WriteConfig32 = 0;
}
else epd3 = nullptr;
this->InitRV = epd->InitRv;
Hp10Name = gcnew String(tHp10);
Hp07Name = gcnew String(tHp07);
isTitleNG = false;
}
EpdBaseClr::Epd2::~Epd2()
{
if (epd != nullptr) {
epd->EndCom();
delete epd;
epd = nullptr;
}
if (epd3 != nullptr) {
epd3->EndCom();
delete epd3;
epd3 = nullptr;
}
this->!Epd2();
}
EpdBaseClr::Epd2::!Epd2()
{
}
int EpdBaseClr::Epd2::SetFeedbackSound(byte sound, UINT16 sound3)
{
epd->EndSessionControl = sound;
if (epd3!=nullptr) epd3->EndSessionControl = sound3;
return 0;
}
///
/// find Epd
///
///
/// 0 = success
int EpdBaseClr::Epd2::Connect(bool reinit, int EPDTimeout)
{
int rv = 1;
ConnectError = 0;
EpdID= 0;
DeviceCount = 0;
DiscRV = 0;
if (epd != nullptr) {
if (epd->CommsInitialized == 0) epd->StartCom();
DiscRV = epd->StartDiscover(EPDTimeout);
if (DiscRV == 1)
{
DeviceCount = epd->DeviceCount;
if (epd->DeviceCount > 0) {
EpdID = epd->DeviceIDs[0]; rv = 0;
}
else rv = 1;
}
else {
rv = 2;
ConnectError = epd->Error;
}
}
return rv;
}
int EpdBaseClr::Epd2::Close()
{
EpdID= 0;
if (epd != nullptr) epd->EndCom();
if (epd3 != nullptr) epd3->EndCom();
return 0;
}
int EpdBaseClr::Epd2::DecodeStatus(Epd3Base::Epd3U* epd)
{
epd->DecodeStatus();
//OperatingStatus
DetectorsOn = epd->DetectorsOn;
EPDIssued = epd->EPDIssued;
EPDLocked = epd->EPDLocked;
EPDTesting = epd->EPDTesting;
EPDProcSec = epd->EPDProcSec;
EPDFaulty = epd->EPDFaulty;
EPDNewFault = epd->EPDNewFault;
EPDComFault = epd->EPDComFault;
EPDCalFault = epd->EPDCalFault;
EPDDetFault = epd->EPDDetFault;
EPDEprFault = epd->EPDEprFault;
EPDTrhFault = epd->EPDTrhFault;
EPDOthFault = epd->EPDOthFault;
AlarmDoseHP101G = epd->AlarmDoseHP101G;
AlarmDoseHP102G = epd->AlarmDoseHP102G;
AlarmDoseHP07N = epd->AlarmDoseHP07N;
AlarmRateHP101G = epd->AlarmRateHP101G;
AlarmRateHP102G = epd->AlarmRateHP102G;
AlarmRateHP07N = epd->AlarmRateHP07N;
OtherAlarmRateHp101G = epd->OtherAlarmRateHp101G;
OtherAlarmRateHp102G = epd->OtherAlarmRateHp102G;
OtherAlarmRateHp07N = epd->OtherAlarmRateHp07N;
OtherAlarmReturn = epd->OtherAlarmReturn;
OtherAlarmBatLow = epd->OtherAlarmBatLow;
OtherAlarmCarrier = epd->OtherAlarmCarrier;
OtherAlarmBatVolt = epd->OtherAlarmBatVolt;
return 1;
}
int EpdBaseClr::Epd2::DecodeStatus(EpdBase::Epd2U* epd)
{
epd->DecodeStatus();
//OperatingStatus
DetectorsOn = epd->DetectorsOn;
EPDIssued = epd->EPDIssued;
EPDLocked = epd->EPDLocked;
EPDTesting = epd->EPDTesting;
EPDProcSec = epd->EPDProcSec;
EPDFaulty = epd->EPDFaulty;
EPDNewFault = epd->EPDNewFault;
EPDComFault = epd->EPDComFault;
EPDCalFault = epd->EPDCalFault;
EPDDetFault = epd->EPDDetFault;
EPDEprFault = epd->EPDEprFault;
EPDTrhFault = epd->EPDTrhFault;
EPDOthFault = epd->EPDOthFault;
AlarmDoseHP101G = epd->AlarmDoseHP101G;
AlarmDoseHP102G = epd->AlarmDoseHP102G;
AlarmDoseHP07N = epd->AlarmDoseHP07N;
AlarmRateHP101G = epd->AlarmRateHP101G;
AlarmRateHP102G = epd->AlarmRateHP102G;
AlarmRateHP07N = epd->AlarmRateHP07N;
OtherAlarmRateHp101G = epd->OtherAlarmRateHp101G;
OtherAlarmRateHp102G = epd->OtherAlarmRateHp102G;
OtherAlarmRateHp07N = epd->OtherAlarmRateHp07N;
OtherAlarmReturn = epd->OtherAlarmReturn;
OtherAlarmBatLow = epd->OtherAlarmBatLow;
OtherAlarmCarrier = epd->OtherAlarmCarrier;
OtherAlarmBatVolt = epd->OtherAlarmBatVolt;
return 1;
}
///
///
///
/// 0=success
int EpdBaseClr::Epd2::GetStatus()
{
int rv = 1;
StatusRV = epd->ReadStatus();
if (StatusRV != 1) GetStatusError = epd->Error; else GetStatusError= rv = 0;
AfterGetStatus(epd);
return rv;
}
int EpdBaseClr::Epd2::AfterGetStatus(EpdBase::Epd2U *epd)
{
isMK3 = false;
EPDIssued = epd->EPDIssued;
WearerID = gcnew String((char*)epd->WearerID);
WearerName = gcnew String((char*)epd->WearerName);
isOn = (epd->DetectorsOn != 0);
epdType = epd->EpdType;
isBG = epd->isBG;
isNG = epd->isNG;
VersionOK = epd->VersionOK ;
//isBG = (epd->EpdType == 0 || epd->EpdType == 4); //MK2 BG=0 or MK3 BG=4 3=MK2 Neuruon 7=MK3 neutron
alarmStatus = epd->AlarmStatus;
otherAlarms = epd->OtherAlarms;
errorStatus = epd->ErrorStatus;
operatingStatus = epd->OperatingStatus;
hasAlarm = epd->hasAlarm;
EpdID = epd->EpdID;
HardVersion = epd->HardVersion;
SoftVersion = epd->SoftVersion;
FunctionFlags = epd->FunctionFlags;
CountsClock = epd->EpdClock;
DecodeStatus(epd);
return 0;
}
int EpdBaseClr::Epd2::AfterGetStatus(Epd3Base::Epd3U* epd)
{
EPDIssued= epd->EPDIssued;
WearerID = gcnew String((char*)epd->WearerID);
WearerName = gcnew String((char*)epd->WearerName);
isOn = (epd->DetectorsOn != 0);
epdType = (int)epd->EpdType;
isBG = (epd->EpdType == EpdTypes::Mk2BetaGamma || epd->EpdType == EpdTypes::Mk3BetaGamma); //MK2 BG=0 or MK3 BG=4 3=MK2 Neuruon 7=MK3 neutron
isNG = epd->isNG;
VersionOK = epd->VersionOK;
isMK3 = epd->isMK3;
alarmStatus = (int)epd->AlarmStatus;
otherAlarms = (int)epd->OtherAlarms;
errorStatus = (int)epd->ErrorStatus;
operatingStatus = (int)epd->OperatingStatus;
hasAlarm = epd->hasAlarm;
EpdID = epd->EpdID;
HardVersion = epd->HardVersion;
HardVersionMinor = epd->HardVersionMinor;
SoftVersion = epd->SoftVersion;
FunctionFlags = epd->FunctionFlags;
CountsClock = epd->EpdClock;
DecodeStatus( epd);
return 0;
}
int EpdBaseClr::Epd2::AfterGetStatus()
{
int rv = 0;
if (isMK3) rv=AfterGetStatus(epd3);
else rv=AfterGetStatus(epd);
return rv;
}
///
///
///
/// 0 OK
int EpdBaseClr::Epd2::GetDoses()
{
int rv = 0;
if (isMK3)
rv = GetDoses(epd3);
else
rv = GetDoses(epd);
return rv;
}
int EpdBaseClr::Epd2::GetDoses(EpdBase::Epd2U* epd)
{
int rv = 1;
Hp10 = Hp07 = 0.0;
ReadDosesRV = epd->ReadDoses();
if (ReadDosesRV == 1) {
rv = AfterGetDoses(epd);
}
else {
rv = 1;
GetDosesError = epd->Error;
}
return rv;
}
int EpdBaseClr::Epd2::AfterGetDoses(Epd3Base::Epd3U* epd)
{
int rv = 0;
rv = 0;
GetDosesError = 0;
Hp10 = (double)epd->Hp10Dose;
Hp07 = (double)epd->Hp07Dose;
Hp07Peak = (double)epd->Hp07Peak;
Hp10Peak = (double)epd->Hp10Peak;
Hp07Total = epd->Hp07Total;
Hp10Total = epd->Hp10Total;
if (epd->Hp10FTime != 0) {
//seconds since 2000 ?
//double x = (epd->EpdClock - epd->Hp10Time) * -1.0;
Hp10PeakTime = System::DateTime::FromFileTime(epd->Hp10FTime);
//Hp10PeakTime = Jan2000->AddSeconds(epd->Hp10Time);
}
else
Hp10PeakTime = System::Nullable();;
if (epd->Hp07FTime != 0) {
//double x = (epd->EpdClock - epd->Hp07Time) * -1.0;
Hp07PeakTime = System::DateTime::FromFileTime(epd->Hp07FTime);
//Hp07PeakTime = Jan2000->AddSeconds(epd->Hp07Time);
}
else
Hp07PeakTime = System::Nullable();
QualityData = epd->QualityData;
K1 = (int)epd->K1;
K2 = (int)epd->K2;
K3 = (int)epd->K3;
K4 = (int)epd->K4;
K5 = (int)epd->K5;
K6 = (int)epd->K6;
SG = (int)epd->SG;
BC = epd->SG;
FB = epd->FB;
HG = epd->HG;
NGgain = K3;
eDosDose07Warning = epd->eDosDose07Warning;
eDosDose07Alarm= epd->eDosDose07Alarm;
eDosDose10Warning = epd->eDosDose10Warning;
eDosDose10Alarm = epd->eDosDose10Alarm;
eDosRate07Warning = epd->eDosRate07Warning;
eDosRate07Alarm = epd->eDosRate07Alarm;
eDosRate10Warning = epd->eDosRate10Warning;
eDosRate10Alarm = epd->eDosRate10Alarm;
eDosBatteryWarning = epd->eDosBatteryWarning;
eDoshasAlarm = epd->hasAlarm;
eDosHasFault = epd->hasFault;
return rv;
}
///
///
///
///
/// 0 OK
int EpdBaseClr::Epd2::GetDoses(Epd3Base::Epd3U* epd)
{
int rv = 1;
Hp10 = Hp07 = 0.0;
int ReadDosesRV = epd->ReadDoses();
if (ReadDosesRV == 0) {
rv = AfterGetDoses(epd3);
}
else {
rv = 1;
GetDosesError = epd->Error;
}
return rv;
}
int EpdBaseClr::Epd2::ClearAlarms()
{
int rv = 0;
if (isMK3) rv = epd3->ClearAlarms();
else rv = epd->ClearAlarms();
return rv;
}
///
///
///
/// 0 OK
int EpdBaseClr::Epd2::SetDeIssued()
{
int rv = 0;
ErrorStep = 0; ErrorRV = 0;
if (isMK3) {
rv = epd3->DeIssue();
ErrorStep = epd3->ErrorStep;
ErrorRV = epd3->Error;
}
else rv = epd->DeIssue();
return rv;
}
int EpdBaseClr::Epd2::PrepareForIssue()
{
int rv = 0;
PrepareForIssueError = 0;
ErrorStep = 0; ErrorRV = 0;
if (isMK3) {
rv = epd3->PrepareForIssue();
ErrorStep = epd3->ErrorStep;
ErrorRV = epd3->Error;
}
else rv= epd->PrepareForIssue();
if (rv != 0) PrepareForIssueError = epd->Error;
return rv;
}
///
///
///
/// 0 OK
int EpdBaseClr::Epd2::SetIssued()
{
int rv = 0;
ErrorStep = 0; ErrorRV = 0;
if (isMK3) {
rv=SetIssued(epd3);
ErrorStep = epd3->ErrorStep;
ErrorRV = epd3->Error;
}
else rv=SetIssued(epd);
return rv;
}
int EpdBaseClr::Epd2::BeforeSetIssued(Epd3Base::Epd3U* epd)
{
int rv = 0;
SetIssuedError = 0;
epd->Hp07THDose = (float)Hp07THDose;
epd->Hp10THDose1 = (float)Hp10THDose1;
epd->Hp10THDose2 = (float)Hp10THDose2;
epd->Hp10Rate1On = (float)Hp10Rate1On;
epd->Hp10Rate2On = (float)Hp10Rate2On;
epd->Hp07RateOn = (float)Hp07RateOn;
epd->Hp10Rate1Off = (float)Hp10Rate1Off;
epd->Hp10Rate2Off = (float)Hp10Rate2Off;
epd->Hp07RateOff = (float)Hp07RateOff;
memset(epd->WearerID, ' ', WearerIDLength); epd->WearerID[WearerIDLength] = 0;
char* str1 = (char*)(void*)Runtime::InteropServices::Marshal::StringToHGlobalAnsi(WearerID);
int l = strlen(str1);
if (l > WearerIDLength) l = WearerIDLength;
_memccpy(epd->WearerID + WearerIDLength - l, str1, l, WearerIDLength);
Runtime::InteropServices::Marshal::FreeHGlobal((IntPtr)str1);
memset(epd->WearerName, 0, WearerNameLength + 1);
char* str2 = (char*)(void*)Runtime::InteropServices::Marshal::StringToHGlobalAnsi(WearerName);
l = strlen(str2);
if (l > WearerNameLength) l = WearerNameLength;
_memccpy(epd->WearerName, str2, l, WearerNameLength);
Runtime::InteropServices::Marshal::FreeHGlobal((IntPtr)str2);
return 0;
}
///
///
///
///
/// 0 success
int EpdBaseClr::Epd2::SetIssued(Epd3Base::Epd3U* epd)
{
int rv = 0;
rv = BeforeSetIssued(epd);
rv = epd->Issue(false);
if (rv != 0) SetIssuedError = epd->Error;
return rv;
}
int EpdBaseClr::Epd2::BeforeSetIssued(EpdBase::Epd2U* epd)
{
int rv = 0;
SetIssuedError = 0;
epd->Hp07THDose = (DWORD)(Hp07THDose * 64.0);
epd->Hp10THDose1 = (DWORD)(Hp10THDose1 * 64.0);
epd->Hp10THDose2 = (DWORD)(Hp10THDose2 * 64.0);
epd->Hp10Rate1On = (DWORD)(Hp10Rate1On);
epd->Hp10Rate2On = (DWORD)(Hp10Rate2On);
epd->Hp07RateOn = (DWORD)(Hp07RateOn);
epd->Hp10Rate1Off = (DWORD)(Hp10Rate1Off);
epd->Hp10Rate2Off = (DWORD)(Hp10Rate2Off);
epd->Hp07RateOff = (DWORD)(Hp07RateOff);
memset(epd->WearerID, ' ', WearerIDLength); epd->WearerID[WearerIDLength] = 0;
char* str1 = (char*)(void*)Runtime::InteropServices::Marshal::StringToHGlobalAnsi(WearerID);
int l = strlen(str1);
if (l > WearerIDLength) l = WearerIDLength;
_memccpy(epd->WearerID + WearerIDLength - l, str1, l, WearerIDLength);
Runtime::InteropServices::Marshal::FreeHGlobal((IntPtr)str1);
memset(epd->WearerName, 0, WearerNameLength + 1);
char* str2 = (char*)(void*)Runtime::InteropServices::Marshal::StringToHGlobalAnsi(WearerName);
l = strlen(str2);
if (l > WearerNameLength) l = WearerNameLength;
_memccpy(epd->WearerName, str2, l, WearerNameLength);
Runtime::InteropServices::Marshal::FreeHGlobal((IntPtr)str2);
return 0;
}
int EpdBaseClr::Epd2::SetIssued(EpdBase::Epd2U* epd)
{
int rv = 0;
BeforeSetIssued(epd);
rv = epd->Issue();
if (rv != 0) SetIssuedError = epd->Error;
return rv;
}
int EpdBaseClr::Epd2::WriteCalibration()
{
int rv = 0;
if (isMK3) rv = WriteCalibration(epd3);
else rv = WriteCalibration(epd);
return rv;
}
int EpdBaseClr::Epd2::WriteCalibration(EpdBase::Epd2U* epd)
{
epd->K1 = K1;
epd->K2 = K2;
epd->K3 = K3;
epd->K4 = K4;
epd->K5 = K5;
epd->K6 = K6;
//epd->K1 = 903;
//epd->K2 = 613;
//epd->K5 = 13100;
//epd->K6 = 1310;
int rv = epd->WriteCal();
return rv;
}
int EpdBaseClr::Epd2::WriteCalibration(Epd3Base::Epd3U* epd)
{
epd->K1 = (float)K1;
epd->K2 = (float)K2;
epd->K3 = (float)K3;
epd->K4 = (float)K4;
epd->K5 = (float)K5;
epd->K6 = (float)K6;
//epd->K1 = 903;
//epd->K2 = 613;
//epd->K5 = 13100;
//epd->K6 = 1310;
int rv = epd->WriteCal();
return rv;
}
///
///
///
/// 0=success
int EpdBaseClr::Epd2::ReadTresholds()
{
int rv = 0;
if (isMK3)
rv = ReadTresholds(epd3);
else
rv = ReadTresholds(epd);
return rv;
}
int EpdBaseClr::Epd2::AfterReadTresholds(EpdBase::Epd2U* epd)
{
int rv = 0;
Hp10THDose1 = (double)epd->Hp10THDose1 / 64.0;
Hp10THDose2 = (double)epd->Hp10THDose2 / 64.0;
Hp07THDose = (double)epd->Hp07THDose / 64.0;
Hp10Rate1On = (double)epd->Hp10Rate1On;
Hp10Rate2On = (double)epd->Hp10Rate2On;
Hp07RateOn = (double)epd->Hp07RateOn;
Hp10Rate1Off = (double)epd->Hp10Rate1Off;
Hp10Rate2Off = (double)epd->Hp10Rate2Off;
Hp07RateOff = (double)epd->Hp07RateOff;
K1 = epd->K1;
K2 = epd->K2;
K3 = epd->K3;
K4 = epd->K4;
K5 = epd->K5;
K6 = epd->K6;
SG = epd->SG;
BC = epd->BC;
FB = epd->FB;
HG = epd->HG;
NGgain = K3;
return rv;
}
///
///
///
///
/// 0 = Success
int EpdBaseClr::Epd2::ReadTresholds(EpdBase::Epd2U* epd)
{
ReadTresholdsError = 0;
int rv = epd->ReadTresHolds();
if (rv != 0) ReadTresholdsError = epd->Error;
rv = AfterReadTresholds(epd);
return rv;
}
int EpdBaseClr::Epd2::AfterReadTresholds(Epd3Base::Epd3U* epd)
{
int rv = 0;
Hp10THDose1 = (double)epd->Hp10THDose1;
Hp10THDose2 = (double)epd->Hp10THDose2;
Hp07THDose = (double)epd->Hp07THDose;
Hp10Rate1On = (double)epd->Hp10Rate1On;
Hp10Rate2On = (double)epd->Hp10Rate2On;
Hp07RateOn = (double)epd->Hp07RateOn;
Hp10Rate1Off = (double)epd->Hp10Rate1Off;
Hp10Rate2Off = (double)epd->Hp10Rate2Off;
Hp07RateOff = (double)epd->Hp07RateOff;
Hp10Total = (double)epd->Hp10Total;
Hp07Total = (double)epd->Hp07Total;
K1 = (int)epd->K1;
K2 = (int)epd->K2;
K3 = (int)epd->K3;
K4 = (int)epd->K4;
K5 = (int)epd->K5;
K6 = (int)epd->K6;
SG = epd->SG;
BC = epd->BC;
FB = epd->FB;
HG = epd->HG;
NGgain = K3;
return rv;
}
///
///
///
///
/// 0 Success
int EpdBaseClr::Epd2::ReadTresholds(Epd3Base::Epd3U* epd)
{
int rv = 0;
ReadTresholdsError = 0;
rv= epd->ReadAlarmTresholds();
rv = epd->ReadSensitivitiesAndTresholds();
if (rv != 0) ReadTresholdsError = epd->Error;
rv = AfterReadTresholds(epd);
return rv;
}
///
///
///
/// 0=Success
int EpdBaseClr::Epd2::ReadExtraStatus()
{
int rv = 0;
if (isMK3) rv = ReadExtraStatus(epd3);
else rv = ReadExtraStatus(epd);
return rv;
}
int EpdBaseClr::Epd2::ReadExtraStatus(EpdBase::Epd2U* epd)
{
int rv = epd->EPDReadExtraStatus();
BatADC = epd->byBatADC;
SupplyADC = epd->bySupplyADC;
D1 = epd->D1 - epd->BaseD1;
D2 = epd->D2 - epd->BaseD2;
D3 = epd->D3 - epd->BaseD3;
D4 = epd->D4 - epd->BaseD4;
CountsClock = epd->CountsClock;
CountsClockBase = epd->BaseCountsClock;
return rv;
}
int EpdBaseClr::Epd2::ReadExtraStatus(Epd3Base::Epd3U* epd)
{
int rv = epd->EPDReadExtraStatus();
BatADC = 0; //epd->byBatADC;
SupplyADC = 0; // epd->bySupplyADC;
D1 = epd->D1 - epd->BaseD1;
D2 = epd->D2 - epd->BaseD2;
D3 = epd->D3 - epd->BaseD3;
D4 = epd->D4 - epd->BaseD4;
CountsClock = epd->CountsClock;
CountsClockBase = epd->BaseCountsClock;
return rv;
}
int EpdBaseClr::Epd2::AfterGetDoses(EpdBase::Epd2U* epd)
{
eDoshasAlarm = eDosHasFault = false;
int rv = 0;
GetDosesError = 0;
Hp10 = (double)epd->Hp10Dose / 64.0;
Hp07 = (double)epd->Hp07Dose / 64.0;
Hp07Peak = (double)epd->Hp07Peak; // / niet delen door 64 !!!
Hp10Peak = (double)epd->Hp10Peak; // / niet delen door 64 !!!
Hp07Total = epd->Hp07Total / 64.0;
Hp10Total = epd->Hp10Total / 64.0;
if (epd->Hp10FTime != 0) {
try {
Hp10PeakTime = System::DateTime::FromFileTime(epd->Hp10FTime);
}
catch (System::Exception^ ex) {
Hp10PeakTime = System::Nullable();
}
//double x = (epd->EpdClock - epd->Hp10Time) * -1.0;
//Hp10PeakTime = System::DateTime::Now.AddSeconds(x);
}
else
Hp10PeakTime = System::Nullable();
if (epd->Hp07FTime != 0) {
try {
Hp07PeakTime = System::DateTime::FromFileTime(epd->Hp07FTime);
}
catch (System::Exception^ ex) {
Hp10PeakTime = System::Nullable();
}
//double x = (epd->EpdClock - epd->Hp07Time) * -1.0;
//Hp07PeakTime = System::DateTime::Now.AddSeconds(x);
}
else
Hp10PeakTime = System::Nullable();
QualityData = epd->QualityData;
K1 = epd->K1;
K2 = epd->K2;
K3 = epd->K3;
K4 = epd->K4;
K5 = epd->K5;
K6 = epd->K6;
SG = epd->SG;
BC = epd->SG;
FB = epd->FB;
HG = epd->HG;
NGgain = K3;
eDosDose07Warning = epd->eDosDose07Warning;
eDosDose07Alarm = epd->eDosDose07Alarm;
eDosDose10Warning = epd->eDosDose10Warning;
eDosDose10Alarm = epd->eDosDose10Alarm;
eDosRate07Warning = epd->eDosRate07Warning;
eDosRate07Alarm = epd->eDosRate07Alarm;
eDosRate10Warning = epd->eDosRate10Warning;
eDosRate10Alarm = epd->eDosRate10Alarm;
eDosBatteryWarning = epd->eDosBatteryWarning;
eDoshasAlarm = epd->hasAlarm;
eDosHasFault = epd->hasFault;
return rv;
}
///
/// Get Doses and tresholds, and close if requested
///
///
///
int EpdBaseClr::Epd2::GetAll(bool close)
{
int rv = 0;
if (!isMK3) {
rv = epd->GetAll(close);
rv = AfterGetDoses(epd);
rv = AfterReadTresholds(epd);
}
else
{
rv = epd3->GetAll(close);
rv = AfterGetDoses(epd3);
rv = AfterReadTresholds(epd3);
}
return rv;
}
int EpdBaseClr::Epd2::GetAllDeissue(bool reconnect)
{
ErrorRV = ErrorStep = 0;
int rv = 0;
if (!isMK3) {
rv = epd->GetAllDeissue();
rv = AfterGetDoses(epd);
rv = AfterReadTresholds(epd);
}
else
{
rv = epd3->GetAllDeissue(reconnect);
ErrorRV = epd3->Error;
ErrorStep = epd3->ErrorStep;
rv = AfterGetDoses(epd3);
rv = AfterReadTresholds(epd3);
}
return rv;
}
///
/// Clear Doses, for Neutron : get and check K, Issue
///
///
///
int EpdBaseClr::Epd2::IssueAndCheck(float gain,float ChirpRate)
{
int rv = 0;
if (!isMK3) {
BeforeSetIssued(epd);
rv = epd->IssueAndCheck(gain);
}
else
{
BeforeSetIssued(epd3); //geen interactie met epd
rv = epd3->IssueAndCheck(gain, ChirpRate);
}
return rv;
}
int EpdBaseClr::Epd2::SwitchCon()
{
int rv = 0;
if (isMK3) {
if (epd3->epdComsHandle != INVALID_HANDLE_VALUE) {
epd->EndCom();
Sleep(500);
rv=epd3->StartCom();
}
}
else {
if (epd->CommsInitialized == 0) {
epd3->EndCom();
Sleep(500);
rv = epd->StartCom(); //0=ok
if (!rv) rv = epd->Open(EpdID);
if (!rv) rv = epd->ReadStatus();
}
}
return rv;
}
void EpdBaseClr::Epd2::InitData()
{
ConnectError = 0;
EpdID = 0;
DeviceCount = 0;
GetStatusError = 0; StatusRV = 0; EPDIssued = false;
WearerID = String::Empty;
WearerName = String::Empty;
isOn = 0;
epdType = 0;
isBG = 0;
alarmStatus = 0;
otherAlarms = 0;
errorStatus = 0;
operatingStatus = 0;
HardVersion = 0; HardVersionMinor = 0;
SoftVersion = 0;
FunctionFlags = 0;
CountsClock = 0;
}
///
/// connect to Epd and read status
///
/// 0=success 1=Connect error 2=TO 3=StatusReadError
int EpdBaseClr::Epd2::ConnectAndStatus()
{
int rv = 1;
int step = 0;
ErrorStep = ErrorRV = 0;
if (!onlyMK2) epd->EndCom(); //indien Mk2
InitData();
//Sleep(100);
step = 1;
if (onlyMK2 || !epd3)
rv = epd->ConnectAndStatus(tokenSourceTimeout);
else {
rv = epd3->ConnectAndStatus(tokenSourceTimeout);
}
if (rv==0) {
if (onlyMK2) {
DeviceCount = epd->DeviceCount;
EpdID = epd->EpdID;
if (epd3 != nullptr) epd3->EpdID = EpdID;
isMK3 = 0;
isBG = epd->isBG;
isNG = epd->isNG;
}
else {
DeviceCount = epd3->DeviceCount;
EpdID = epd3->EpdID;
epd->EpdID = epd3->EpdID;
isMK3 = epd3->isMK3;
isBG = epd3->isBG;
isNG = epd3->isNG;
}
if (isMK3) {
AfterGetStatus(epd3);
}
else {
if (!onlyMK2) rv = SwitchCon();
else rv= epd->ReadStatus();
AfterGetStatus(epd);
}
if (isTitleNG != isNG) {
if (isNG) {
Hp10Name = gcnew String(tHp10G); Hp07Name = gcnew String(tHp07N);
}
else {
Hp10Name = gcnew String(tHp10); Hp07Name = gcnew String(tHp07);
}
isTitleNG = isNG;
}
}
else {
if (epd == nullptr) ConnectError = 99;
else ConnectError = epd->Error;
goto error;
}
return rv;
error:
ErrorStep = step;
ErrorRV = rv;
return rv;
}
void EpdBaseClr::Epd2::WaitEpd()
{
int rv = 0; //start
System::Threading::CancellationToken^ token = tokenSource->Token;
rv = ConnectAndStatus();
/*if (token->IsCancellationRequested && rv != 2) {
rv = 2;
}*/
if (rv == 0) {
if (_EpdRead != nullptr)
_EpdRead(this, gcnew EpdEventArgs(EpdID, EPDIssued, isBG, isMK3));
}
else if (rv == 2 && _EpdTO != nullptr) {
_EpdTO(this, gcnew EpdTOEventArgs(0, 0)); // epd3->ConnectTries, epd3->ConnectTimerFired));
}
else if (rv > 0 && _EpdError != nullptr) {
_EpdError(this, gcnew EpdErrorEventArgs(rv,ErrorRV,ErrorStep));
}
return;
}
System::Threading::Tasks::Task^ EpdBaseClr::Epd2::Wait(int timeout, int Retries)
{
if (waitTask == nullptr)
{
tokenSourceTimeout = timeout;
tokenSource = gcnew System::Threading::CancellationTokenSource(tokenSourceTimeout+500);
readRetries = Retries;
waitTask = System::Threading::Tasks::Task::Run(gcnew Action(this, &Epd2::WaitEpd)); // System::Threading::Tasks::Task::Factory->cre(gcnew Action(this, &CCard::WaitBadge), tokenSource->Token);
}
else {
tokenSource = gcnew System::Threading::CancellationTokenSource(tokenSourceTimeout +500);
}
return waitTask;
}
void EpdBaseClr::Epd2::WaitEnd()
{
if (waitTask != nullptr)
{
waitTask->Wait(1000);
int tries = 5;
while (tries-->0 && waitTask->Status == System::Threading::Tasks::TaskStatus::Running) {
tokenSource->Cancel();
waitTask->Wait(1000);
}
if (
waitTask->Status == System::Threading::Tasks::TaskStatus::RanToCompletion
|| waitTask->Status == System::Threading::Tasks::TaskStatus::Canceled
|| waitTask->Status == System::Threading::Tasks::TaskStatus::Faulted
) {
delete waitTask;
waitTask = nullptr;
}
delete tokenSource;
tokenSource = nullptr;
Close();
}
}