Major updates:
- added DAConverter(s) - added ADConverter(s) - Fixed some display issues - Made repair process and signalProfileGenerator calculate with voltages (signed) instead of DAC/ADC values - Fixed several bugs in task handlings - Put display data mirror into dedicated file displaycontent git-svn-id: https://svn.vbchaos.nl/svn/hsb/trunk@261 05563f52-14a8-4384-a975-3d1654cca0fa
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// -----------------------------------------------------------------------------
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/// @file ADConverters.c
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/// @brief Description
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// -----------------------------------------------------------------------------
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// Micro-Key bv
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// Industrieweg 28, 9804 TG Noordhorn
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// Postbus 92, 9800 AB Zuidhorn
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// The Netherlands
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// Tel: +31 594 503020
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// Fax: +31 594 505825
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// Email: support@microkey.nl
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// Web: www.microkey.nl
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// -----------------------------------------------------------------------------
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/// $Revision$
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/// $Author$
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/// $Date$
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// (c) 2017 Micro-Key bv
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// -----------------------------------------------------------------------------
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/// @file ADConverters.c
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/// @ingroup {group_name}
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// -----------------------------------------------------------------------------
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// Include files
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// -----------------------------------------------------------------------------
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#include "ADConverters.h"
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#include "hsb-mrts.h"
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#include "internalADC.h"
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#include "PCBA.h"
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// -----------------------------------------------------------------------------
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// Constant and macro definitions
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// -----------------------------------------------------------------------------
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// -----------------------------------------------------------------------------
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// Type definitions
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// -----------------------------------------------------------------------------
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// -----------------------------------------------------------------------------
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// File-scope variables
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// -----------------------------------------------------------------------------
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static struct ADConverter _adcRow1;
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static struct ADConverter _adcRow2;
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static struct ADConverter _adcRow3;
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struct ADConverter* adcRow1 = &_adcRow1;
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struct ADConverter* adcRow2 = &_adcRow2;
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struct ADConverter* adcRow3 = &_adcRow3;
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// -----------------------------------------------------------------------------
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// Function declarations
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// -----------------------------------------------------------------------------
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// -----------------------------------------------------------------------------
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// Function definitions
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// -----------------------------------------------------------------------------
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ErrorStatus ADConverters_construct(void)
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{
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ErrorStatus returnValue = SUCCESS;
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int minVoltage;
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int maxVoltage;
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if (returnValue == SUCCESS)
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{
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if (PCBA_getInstance()->pcba == PCBA_Anode)
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{
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minVoltage = HSB_ADC_ANODE_MIN_VOLTAGE;
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maxVoltage = HSB_ADC_ANODE_MAX_VOLTAGE;
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}
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else if (PCBA_getInstance()->pcba == PCBA_CathodeMCP)
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{
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minVoltage = HSB_ADC_CMCP_MIN_VOLTAGE;
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maxVoltage = HSB_ADC_CMCP_MAX_VOLTAGE;
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}
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else if (PCBA_getInstance()->pcba == PCBA_Tesla)
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{
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minVoltage = HSB_ADC_TESLA_MIN_VOLTAGE;
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maxVoltage = HSB_ADC_TESLA_MAX_VOLTAGE;
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}
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else
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{
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minVoltage = 0;
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maxVoltage = 0;
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returnValue = ERROR;
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}
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if (returnValue == SUCCESS)
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{
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returnValue = ADConverter_construct(adcRow1, minVoltage, maxVoltage, &adc1->channel[0].adcDevice);
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}
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if (returnValue == SUCCESS)
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{
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returnValue = ADConverter_construct(adcRow2, minVoltage, maxVoltage, &adc1->channel[1].adcDevice);
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}
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if (returnValue == SUCCESS)
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{
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returnValue = ADConverter_construct(adcRow3, minVoltage, maxVoltage, &adc1->channel[2].adcDevice);
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}
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}
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return returnValue;
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}
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void ADConverters_destruct(void)
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{
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ADConverter_destruct(adcRow1);
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ADConverter_destruct(adcRow2);
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ADConverter_destruct(adcRow3);
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}
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