🐛 STM32 ADC followup (#22798)
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@ -156,17 +156,17 @@ int freeMemory();
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using FilteredADC = LPC176x::ADC<ADC_LOWPASS_K_VALUE, ADC_MEDIAN_FILTER_SIZE>;
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extern uint32_t HAL_adc_reading;
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[[gnu::always_inline]] inline void HAL_start_adc(const pin_t pin) {
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[[gnu::always_inline]] inline void HAL_adc_start_conversion(const pin_t pin) {
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HAL_adc_reading = FilteredADC::read(pin) >> (16 - HAL_ADC_RESOLUTION); // returns 16bit value, reduce to required bits
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}
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[[gnu::always_inline]] inline uint16_t HAL_read_adc() {
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[[gnu::always_inline]] inline uint16_t HAL_adc_get_result() {
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return HAL_adc_reading;
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}
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#define HAL_adc_init()
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#define HAL_ANALOG_SELECT(pin) FilteredADC::enable_channel(pin)
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#define HAL_START_ADC(pin) HAL_start_adc(pin)
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#define HAL_READ_ADC() HAL_read_adc()
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#define HAL_START_ADC(pin) HAL_adc_start_conversion(pin)
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#define HAL_READ_ADC() HAL_adc_get_result()
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#define HAL_ADC_READY() (true)
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// Test whether the pin is valid
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@ -437,7 +437,7 @@ void HAL_adc_start_conversion(const uint8_t adc_pin) {
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case POWER_MONITOR_VOLTAGE_PIN: pin_index = POWERMON_VOLTS; break;
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#endif
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}
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HAL_adc_result = (HAL_adc_results[(int)pin_index] >> 2) & 0x3FF; // shift to get 10 bits only.
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HAL_adc_result = HAL_adc_results[(int)pin_index] >> (12 - HAL_ADC_RESOLUTION); // shift out unused bits
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}
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uint16_t HAL_adc_get_result() { return HAL_adc_result; }
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