small tweaks to how ADC channels are enabled.
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009180e0a9
commit
b9defeee02
39
lib/adc.c
39
lib/adc.c
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@ -34,9 +34,7 @@
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*/
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#include <stdint.h>
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#include "crm.h"
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#include "adc.h"
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#include "gpio-util.h"
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#include "mc1322x.h"
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//#define ADC_CHANS_ENABLED 0x3F // channels 0-5 enabled
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//#define ADC_CHANS_ENABLED 0x7E // channels 1-6 enabled
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@ -73,9 +71,26 @@ void adc_service(void) {
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}
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}
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void adc_init(void) {
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uint8_t n;
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#define _adc_setup_chan(x) do { \
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if ( channel == x ) { \
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ADC->SEQ_1bits.CH##x = 1; \
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GPIO->FUNC_SEL.ADC##x = 1; \
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GPIO->PAD_DIR.ADC##x = 0; \
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GPIO->PAD_PU_EN.ADC##x = 0; \
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}} while (0)
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void adc_setup_chan(uint8_t channel) {
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_adc_setup_chan(0);
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_adc_setup_chan(1);
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_adc_setup_chan(2);
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_adc_setup_chan(3);
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_adc_setup_chan(4);
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_adc_setup_chan(5);
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_adc_setup_chan(6);
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_adc_setup_chan(7);
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}
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void adc_init(void) {
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ADC->CLOCK_DIVIDER = 80; // 300 KHz
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ADC->PRESCALE = ADC_PRESCALE_VALUE - 1; // divide by 24 for 1MHz.
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@ -114,13 +129,13 @@ void adc_init(void) {
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ADC->SR_1_LOW = (REF_OSC / ADC_PRESCALE_VALUE) / (115200 / 8) + 1;
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#endif
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ADC->SEQ_1 = 0
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ADC->SEQ_1 = 0;
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#if ADC_USE_TIMER
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| (1 << 15) // sequence based on Timer 1.
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ADC->SEQ_1bits.SEQ_MODE = 1; // sequence based on Timer 1
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#else
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| (0 << 15) // sequence based on convert time.
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ADC->SEQ_1bits.SEQ_MODE = 0; // sequence based on convert time.
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#endif
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| ADC_CHANS_ENABLED;
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ADC->SEQ_1bits.BATT = 1;
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ADC->CONTROL = 0xF001
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//#if ADC_USE_TIMER
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@ -129,10 +144,4 @@ void adc_init(void) {
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;
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ADC->OVERRIDE = (1 << 8);
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for (n=0; n<=8; n++) {
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if ((ADC_CHANS_ENABLED >> n) & 1) {
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gpio_select_function(30 + n, 1); // Function 1 = ADC
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gpio_set_pad_dir(30 + n, PAD_DIR_INPUT);
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}
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}
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}
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@ -39,6 +39,9 @@
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#include <stdint.h>
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#include "utils.h"
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/* the Vbatt measurment reads about 200mV low --- trim by ADC_VBATT_TRIM */
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#define ADC_VBATT_TRIM 200
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/* ADC registers are all 16-bit wide with 16-bit access only */
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#define ADC_BASE (0x8000D000)
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@ -153,8 +156,14 @@ static volatile struct ADC_struct * const ADC = (void *) (ADC_BASE);
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#define adc_enable() (ADC->CONTROLbits.ON = 1)
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#define adc_disable() (ADC->CONTROLbits.ON = 0)
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#define adc_select_channels(chans) (ADC->SEQ_1 = (ADC->SEQ_1 & 0xFE00) | chans)
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void adc_setup_chan(uint8_t channel);
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extern uint16_t adc_reading[NUM_ADC_CHAN];
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/* use the internal reference to return adc_readings in mV */
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#define adc_voltage(x) (adc_reading[x] * 1200/adc_reading[8])
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/* return vbatt voltage in mV */
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#define adc_vbatt 4095 * 1200/adc_reading[8] + ADC_VBATT_TRIM
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void ADC_flush(void);
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uint16_t ADC_READ(void);
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void read_scanners(void);
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@ -52,12 +52,17 @@ int main(void)
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printf("\x1B[2J"); // clear screen
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for (c=0; c<=7; c++) {
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adc_setup_chan(c);
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}
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for(;;) {
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printf("\x1B[H"); // cursor home
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printf("# Value\r\n");
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for (c=0; c<NUM_ADC_CHAN; c++) {
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adc_service();
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printf("%u %04u\r\n", c, adc_reading[c]);
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}
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printf("%u %04u %04u mV\r\n", c, adc_reading[c], adc_voltage(c));
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}
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printf("vbatt: %04u mV", adc_vbatt);
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}
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}
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