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@ -427,7 +427,6 @@ void HAL_init() {
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dma_init();
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dma_init();
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#endif
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#endif
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#if ENABLED(SDSUPPORT)
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#if ENABLED(SDSUPPORT)
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// SD_DETECT_PIN may be removed if NO_SD_HOST_DRIVE is not defined in Configuration_adv.h
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#if SD_CONNECTION_IS(ONBOARD) && PIN_EXISTS(SD_DETECT)
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#if SD_CONNECTION_IS(ONBOARD) && PIN_EXISTS(SD_DETECT)
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SET_INPUT_PULLUP(SD_DETECT_PIN);
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SET_INPUT_PULLUP(SD_DETECT_PIN);
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#endif
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#endif
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@ -496,14 +495,14 @@ void HAL_adc_init() {
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// Preloaded data (fixed for all ADC instances hence not loaded by DMA)
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// Preloaded data (fixed for all ADC instances hence not loaded by DMA)
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adc->REFCTRL.bit.REFSEL = ADC_REFCTRL_REFSEL_AREFA_Val; // VRefA pin
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adc->REFCTRL.bit.REFSEL = ADC_REFCTRL_REFSEL_AREFA_Val; // VRefA pin
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SYNC(adc->SYNCBUSY.bit.REFCTRL);
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SYNC(adc->SYNCBUSY.bit.REFCTRL);
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adc->CTRLB.bit.RESSEL = ADC_CTRLB_RESSEL_12BIT_Val;
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adc->CTRLB.bit.RESSEL = ADC_CTRLB_RESSEL_10BIT_Val; // ... ADC_CTRLB_RESSEL_16BIT_Val
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SYNC(adc->SYNCBUSY.bit.CTRLB);
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SYNC(adc->SYNCBUSY.bit.CTRLB);
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adc->SAMPCTRL.bit.SAMPLEN = (6 - 1); // Sampling clocks
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adc->SAMPCTRL.bit.SAMPLEN = (6 - 1); // Sampling clocks
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adc->AVGCTRL.reg = ADC_AVGCTRL_SAMPLENUM_16 | ADC_AVGCTRL_ADJRES(4); // 16 Accumulated conversions and shift 4 to get oversampled 12 bits result
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//adc->AVGCTRL.reg = ADC_AVGCTRL_SAMPLENUM_16 | ADC_AVGCTRL_ADJRES(4); // 16 Accumulated conversions and shift 4 to get oversampled 12 bits result
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SYNC(adc->SYNCBUSY.bit.AVGCTRL);
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//SYNC(adc->SYNCBUSY.bit.AVGCTRL);
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// Registers loaded by DMA
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// Registers loaded by DMA
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adc->DSEQCTRL.bit.INPUTCTRL = true;
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adc->DSEQCTRL.bit.INPUTCTRL = true;
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adc->DSEQCTRL.bit.AUTOSTART = true; // Start conversion after DMA sequence
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adc->DSEQCTRL.bit.AUTOSTART = true; // Start conversion after DMA sequence
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adc->CTRLA.bit.ENABLE = true; // Enable ADC
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adc->CTRLA.bit.ENABLE = true; // Enable ADC
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