git-svn-id: svn://svn.code.sf.net/p/chibios/svn/trunk@3509 35acf78f-673a-0410-8e92-d51de3d6d3f4
parent
bcdb92f134
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b1762e9295
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@ -266,9 +266,9 @@ void adc_lld_start(ADCDriver *adcp) {
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}
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#endif /* STM32_ADC_USE_ADC3 */
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/* ADC initial setup, just resetting control registers in this case.*/
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/* ADC initial setup, starting the analog part.*/
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adcp->adc->CR1 = 0;
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adcp->adc->CR2 = 0;
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adcp->adc->CR2 = ADC_CR2_ADON;
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}
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}
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@ -332,19 +332,16 @@ void adc_lld_start_conversion(ADCDriver *adcp) {
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/* ADC setup.*/
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adcp->adc->SR = 0;
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adcp->adc->CR1 = grpp->cr1 | ADC_CR1_OVRIE | ADC_CR1_SCAN;
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adcp->adc->CR2 = grpp->cr2 | ADC_CR2_CONT | ADC_CR2_DMA | ADC_CR2_DDS |
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ADC_CR2_ADON;
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adcp->adc->SMPR1 = grpp->smpr1;
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adcp->adc->SMPR2 = grpp->smpr2;
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adcp->adc->SQR1 = grpp->sqr1;
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adcp->adc->SQR2 = grpp->sqr2;
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adcp->adc->SQR3 = grpp->sqr3;
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/* TODO: According to section 10.3.6 of the reference manual there should
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be a 2uS delay between the ADC activation and conversion start.*/
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/* ADC start by raising ADC_CR2_SWSTART.*/
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adcp->adc->CR2 = grpp->cr2 | ADC_CR2_SWSTART | ADC_CR2_CONT | ADC_CR2_DMA |
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/* ADC configuration and start, the start is performed using the method
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specified in the CR2 configuration, usually ADC_CR2_SWSTART.*/
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adcp->adc->CR1 = grpp->cr1 | ADC_CR1_OVRIE | ADC_CR1_SCAN;
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adcp->adc->CR2 = grpp->cr2 | ADC_CR2_CONT | ADC_CR2_DMA |
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ADC_CR2_DDS | ADC_CR2_ADON;
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}
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@ -360,6 +357,7 @@ void adc_lld_stop_conversion(ADCDriver *adcp) {
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dmaStreamDisable(adcp->dmastp);
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adcp->adc->CR1 = 0;
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adcp->adc->CR2 = 0;
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adcp->adc->CR2 = ADC_CR2_ADON;
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}
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/**
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@ -54,40 +54,42 @@ static void adcerrorcallback(ADCDriver *adcp, adcerror_t err) {
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/*
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* ADC conversion group.
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* Mode: Linear buffer, 8 samples of 1 channel, SW triggered.
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* Channels: IN10.
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* Channels: IN11.
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*/
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static const ADCConversionGroup adcgrpcfg1 = {
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FALSE,
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ADC_GRP1_NUM_CHANNELS,
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NULL,
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adcerrorcallback,
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0, 0, /* CR1, CR2 */
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ADC_SMPR1_SMP_AN10(ADC_SAMPLE_3),
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0, /* SMPR2 */
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0, /* CR1 */
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ADC_CR2_SWSTART, /* CR2 */
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ADC_SMPR1_SMP_AN11(ADC_SAMPLE_3),
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0, /* SMPR2 */
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ADC_SQR1_NUM_CH(ADC_GRP1_NUM_CHANNELS),
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0, /* SQR2 */
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ADC_SQR3_SQ1_N(ADC_CHANNEL_IN10)
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0, /* SQR2 */
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ADC_SQR3_SQ1_N(ADC_CHANNEL_IN11)
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};
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/*
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* ADC conversion group.
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* Mode: Continuous, 16 samples of 8 channels, SW triggered.
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* Channels: IN10, IN11, IN10, IN11, IN10, IN11, Sensor, VRef.
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* Channels: IN11, IN12, IN11, IN12, IN11, IN12, Sensor, VRef.
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*/
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static const ADCConversionGroup adcgrpcfg2 = {
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TRUE,
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ADC_GRP2_NUM_CHANNELS,
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adccallback,
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adcerrorcallback,
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0, 0, /* CR1, CR2 */
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ADC_SMPR1_SMP_AN11(ADC_SAMPLE_56) | ADC_SMPR1_SMP_AN10(ADC_SAMPLE_56) |
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0, /* CR1 */
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ADC_CR2_SWSTART, /* CR2 */
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ADC_SMPR1_SMP_AN12(ADC_SAMPLE_56) | ADC_SMPR1_SMP_AN11(ADC_SAMPLE_56) |
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ADC_SMPR1_SMP_SENSOR(ADC_SAMPLE_144) | ADC_SMPR1_SMP_VREF(ADC_SAMPLE_144),
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0, /* SMPR2 */
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0, /* SMPR2 */
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ADC_SQR1_NUM_CH(ADC_GRP2_NUM_CHANNELS),
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ADC_SQR2_SQ8_N(ADC_CHANNEL_SENSOR) | ADC_SQR2_SQ7_N(ADC_CHANNEL_VREFINT),
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ADC_SQR3_SQ6_N(ADC_CHANNEL_IN11) | ADC_SQR3_SQ5_N(ADC_CHANNEL_IN10) |
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ADC_SQR3_SQ4_N(ADC_CHANNEL_IN11) | ADC_SQR3_SQ3_N(ADC_CHANNEL_IN10) |
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ADC_SQR3_SQ2_N(ADC_CHANNEL_IN11) | ADC_SQR3_SQ1_N(ADC_CHANNEL_IN10)
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ADC_SQR3_SQ6_N(ADC_CHANNEL_IN12) | ADC_SQR3_SQ5_N(ADC_CHANNEL_IN11) |
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ADC_SQR3_SQ4_N(ADC_CHANNEL_IN12) | ADC_SQR3_SQ3_N(ADC_CHANNEL_IN11) |
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ADC_SQR3_SQ2_N(ADC_CHANNEL_IN12) | ADC_SQR3_SQ1_N(ADC_CHANNEL_IN11)
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};
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/*
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@ -124,7 +126,7 @@ int main(void) {
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/*
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* Setting up analog inputs used by the demo.
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*/
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palSetGroupMode(GPIOC, PAL_PORT_BIT(0) | PAL_PORT_BIT(1),
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palSetGroupMode(GPIOC, PAL_PORT_BIT(1) | PAL_PORT_BIT(2),
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PAL_MODE_INPUT_ANALOG);
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/*
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@ -12,7 +12,7 @@ The application demonstrates the use of the STM32L1xx ADC driver.
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** Board Setup **
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- Connect PC0 to 3.3V and PC1 to GND for analog measurements.
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- Connect PC1 to 3.3V and PC2 to GND for analog measurements.
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** Build Procedure **
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