format code according to conventions [skip ci]
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@ -17,35 +17,32 @@
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#include "analog.h"
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#include "analog.h"
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#include "quantum.h"
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#include "quantum.h"
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/* User configurable ADC options */
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/* User configurable ADC options */
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#ifndef ADC_CIRCULAR_BUFFER
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#ifndef ADC_CIRCULAR_BUFFER
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#define ADC_CIRCULAR_BUFFER FALSE
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# define ADC_CIRCULAR_BUFFER FALSE
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#endif
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#endif
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#ifndef ADC_NUM_CHANNELS
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#ifndef ADC_NUM_CHANNELS
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#define ADC_NUM_CHANNELS 1
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# define ADC_NUM_CHANNELS 1
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#elif ADC_NUM_CHANNELS != 1
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#elif ADC_NUM_CHANNELS != 1
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#error "The ARM ADC implementation currently only supports reading one channel at a time."
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# error "The ARM ADC implementation currently only supports reading one channel at a time."
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#endif
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#endif
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#ifndef ADC_BUFFER_DEPTH
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#ifndef ADC_BUFFER_DEPTH
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#define ADC_BUFFER_DEPTH 2
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# define ADC_BUFFER_DEPTH 2
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#endif
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#endif
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// For more sampling rate options, look at hal_adc_lld.h in ChibiOS
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// For more sampling rate options, look at hal_adc_lld.h in ChibiOS
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#ifndef ADC_SAMPLING_RATE
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#ifndef ADC_SAMPLING_RATE
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#define ADC_SAMPLING_RATE ADC_SMPR_SMP_1P5
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# define ADC_SAMPLING_RATE ADC_SMPR_SMP_1P5
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#endif
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#endif
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// Options are 12, 10, 8, and 6 bit.
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// Options are 12, 10, 8, and 6 bit.
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#ifndef ADC_RESOLUTION
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#ifndef ADC_RESOLUTION
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#define ADC_RESOLUTION ADC_CFGR1_RES_12BIT
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# define ADC_RESOLUTION ADC_CFGR1_RES_12BIT
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#endif
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#endif
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static ADCConfig adcCfg = {};
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static ADCConfig adcCfg = {};
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static adcsample_t sampleBuffer[ADC_NUM_CHANNELS * ADC_BUFFER_DEPTH];
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static adcsample_t sampleBuffer[ADC_NUM_CHANNELS * ADC_BUFFER_DEPTH];
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// Initialize to max number of ADCs, set to empty object to initialize all to false.
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// Initialize to max number of ADCs, set to empty object to initialize all to false.
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@ -54,21 +51,18 @@ static bool adcInitialized[1] = {};
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#elif defined(STM32F3XX)
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#elif defined(STM32F3XX)
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static bool adcInitialized[4] = {};
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static bool adcInitialized[4] = {};
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#else
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#else
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#error "adcInitialized has not been implemented for this ARM microcontroller."
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# error "adcInitialized has not been implemented for this ARM microcontroller."
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#endif
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#endif
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static ADCConversionGroup adcConversionGroup = {
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static ADCConversionGroup adcConversionGroup = {
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ADC_CIRCULAR_BUFFER,
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ADC_CIRCULAR_BUFFER,
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(uint16_t)(ADC_NUM_CHANNELS),
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(uint16_t)(ADC_NUM_CHANNELS),
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NULL, // No end callback
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NULL, // No end callback
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NULL, // No error callback
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NULL, // No error callback
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#if defined(STM32F0XX)
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#if defined(STM32F0XX)
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ADC_CFGR1_CONT | ADC_RESOLUTION,
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ADC_CFGR1_CONT | ADC_RESOLUTION,
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ADC_TR(0, 0).
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ADC_TR(0, 0).ADC_SAMPLING_RATE,
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ADC_SAMPLING_RATE,
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NULL, // Doesn't specify a default channel
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NULL, // Doesn't specify a default channel
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#elif defined(STM32F3XX)
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#elif defined(STM32F3XX)
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ADC_CFGR_CONT | ADC_RESOLUTION,
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ADC_CFGR_CONT | ADC_RESOLUTION,
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ADC_TR(0, 4095),
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ADC_TR(0, 4095),
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@ -77,7 +71,7 @@ static ADCConversionGroup adcConversionGroup = {
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ADC_SAMPLING_RATE,
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ADC_SAMPLING_RATE,
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},
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},
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{
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{
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0, // Doesn't specify a default channel
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0, // Doesn't specify a default channel
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0,
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0,
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0,
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0,
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0,
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0,
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@ -85,10 +79,7 @@ static ADCConversionGroup adcConversionGroup = {
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#endif
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#endif
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};
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};
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static inline ADCDriver* intToADCDriver(uint8_t adcInt) {
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static inline ADCDriver* intToADCDriver(uint8_t adcInt) {
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ADCDriver* target;
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ADCDriver* target;
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switch (adcInt) {
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switch (adcInt) {
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@ -106,7 +97,7 @@ static inline ADCDriver* intToADCDriver(uint8_t adcInt) {
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case 3: target = &ADCD4; break;
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case 3: target = &ADCD4; break;
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#endif
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#endif
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default: target = NULL; break;
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default: target = NULL; break;
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// clang-format on
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// clang-format on
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}
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}
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return target;
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return target;
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@ -119,12 +110,10 @@ static inline void manageAdcInitializationDriver(uint8_t adc, ADCDriver* adcDriv
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}
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}
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}
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}
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static inline void manageAdcInitialization(uint8_t adc) {
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static inline void manageAdcInitialization(uint8_t adc) { manageAdcInitializationDriver(adc, intToADCDriver(adc)); }
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manageAdcInitializationDriver(adc, intToADCDriver(adc));
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}
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pin_and_adc pinToMux(pin_t pin) {
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pin_and_adc pinToMux(pin_t pin) {
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switch(pin) {
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switch (pin) {
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// clang-format off
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// clang-format off
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#if defined(STM32F0XX)
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#if defined(STM32F0XX)
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case A0: return (pin_and_adc){ ADC_CHANNEL_IN0, 0 };
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case A0: return (pin_and_adc){ ADC_CHANNEL_IN0, 0 };
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@ -187,17 +176,15 @@ pin_and_adc pinToMux(pin_t pin) {
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#error "An ADC pin-to-mux configuration has not been specified for this microcontroller."
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#error "An ADC pin-to-mux configuration has not been specified for this microcontroller."
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#endif
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#endif
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default: return (pin_and_adc){ 0, 0 };
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default: return (pin_and_adc){ 0, 0 };
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// clang-format on
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// clang-format on
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}
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}
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}
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}
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adcsample_t analogReadPin(pin_t pin) {
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adcsample_t analogReadPin(pin_t pin) { return adc_read(pinToMux(pin)); }
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return adc_read(pinToMux(pin));
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}
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adcsample_t analogReadPinAdc(pin_t pin, uint8_t adc) {
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adcsample_t analogReadPinAdc(pin_t pin, uint8_t adc) {
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pin_and_adc target = pinToMux(pin);
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pin_and_adc target = pinToMux(pin);
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target.adc = adc;
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target.adc = adc;
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return adc_read(target);
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return adc_read(target);
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}
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}
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@ -207,7 +194,7 @@ adcsample_t adc_read(pin_and_adc mux) {
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#elif defined(STM32F3XX)
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#elif defined(STM32F3XX)
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adcConversionGroup.sqr[0] = ADC_SQR1_SQ1_N(mux.pin);
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adcConversionGroup.sqr[0] = ADC_SQR1_SQ1_N(mux.pin);
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#else
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#else
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#error "adc_read has not been updated to support this ARM microcontroller."
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# error "adc_read has not been updated to support this ARM microcontroller."
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#endif
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#endif
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ADCDriver* targetDriver = intToADCDriver(mux.adc);
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ADCDriver* targetDriver = intToADCDriver(mux.adc);
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@ -20,35 +20,32 @@
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#include "ch.h"
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#include "ch.h"
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#include <hal.h>
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#include <hal.h>
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#if !defined(STM32F0XX) && !defined(STM32F3XX)
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#if !defined(STM32F0XX) && !defined(STM32F3XX)
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#error "Only STM23F0 and STM32F3 devices have ADC support in QMK at this time."
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# error "Only STM23F0 and STM32F3 devices have ADC support in QMK at this time."
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#endif
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#endif
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#if !HAL_USE_ADC
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#if !HAL_USE_ADC
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#error "You need to set HAL_USE_ADC to TRUE in your halconf.h to use the ADC."
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# error "You need to set HAL_USE_ADC to TRUE in your halconf.h to use the ADC."
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#endif
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#endif
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#if !STM32_ADC_USE_ADC1 && !STM32_ADC_USE_ADC2 && !STM32_ADC_USE_ADC3 && !STM32_ADC_USE_ADC4
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#if !STM32_ADC_USE_ADC1 && !STM32_ADC_USE_ADC2 && !STM32_ADC_USE_ADC3 && !STM32_ADC_USE_ADC4
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#error "You need to set one of the 'STM32_ADC_USE_ADCx' settings to TRUE in your mcuconf.h to use the ADC."
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# error "You need to set one of the 'STM32_ADC_USE_ADCx' settings to TRUE in your mcuconf.h to use the ADC."
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#endif
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#endif
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#if STM32_ADC_DUAL_MODE
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#if STM32_ADC_DUAL_MODE
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#error "STM32 ADC Dual Mode is not supported at this time."
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# error "STM32 ADC Dual Mode is not supported at this time."
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#endif
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#endif
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#if STM32_ADCV3_OVERSAMPLING
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#if STM32_ADCV3_OVERSAMPLING
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#error "STM32 ADCV3 Oversampling is not supported at this time."
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# error "STM32 ADCV3 Oversampling is not supported at this time."
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#endif
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#endif
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typedef struct {
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typedef struct {
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pin_t pin;
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pin_t pin;
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uint8_t adc;
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uint8_t adc;
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} pin_and_adc;
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} pin_and_adc;
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#define PIN_AND_ADC(p,a) (pin_and_adc){p,a}
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#define PIN_AND_ADC(p, a) \
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(pin_and_adc) { p, a }
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// analogReference has been left un-defined for ARM devices.
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// analogReference has been left un-defined for ARM devices.
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// void analogReference(uint8_t mode);
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// void analogReference(uint8_t mode);
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