example-fs-bb48: ADC added
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@@ -1,3 +1,9 @@
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2016-05-26 NIIBE Yutaka <gniibe@fsij.org>
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* example-fs-bb48/adc_kl27z.c: Use DMA0 and DMA1.
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* example-fs-bb48/command.c (cmd_adc): Rename from
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cmd_temperature.
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2016-05-24 NIIBE Yutaka <gniibe@fsij.org>
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* example-fs-bb48/command.c: New.
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@@ -5,4 +5,4 @@ void adc_stop (void);
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extern uint32_t adc_buf[64];
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void adc_start_conversion (int offset, int count);
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int adc_wait_completion (chopstx_intr_t *intr);
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int adc_wait_completion (void);
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@@ -33,6 +33,27 @@
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#include <chopstx.h>
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#include "kl_sim.h"
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struct DMAMUX {
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volatile uint32_t CHCFG0;
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volatile uint32_t CHCFG1;
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volatile uint32_t CHCFG2;
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volatile uint32_t CHCFG3;
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};
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static struct DMAMUX *const DMAMUX = (struct DMAMUX *const)0x40021000;
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#define INTR_REQ_DMA0 0
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struct DMA {
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volatile uint32_t SAR;
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volatile uint32_t DAR;
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volatile uint32_t DSR_BCR;
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volatile uint32_t DCR;
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};
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static struct DMA *const DMA0 = (struct DMA *const)0x40008100;
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static struct DMA *const DMA1 = (struct DMA *const)0x40008110;
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/* We don't use ADC interrupt. Just for reference. */
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#define INTR_REQ_ADC 15
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struct ADC {
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@@ -70,7 +91,7 @@ struct ADC {
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volatile uint32_t CLM1;
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volatile uint32_t CLM0;
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};
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static struct ADC *const ADC = (struct ADC *const)0x4003B000;
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static struct ADC *const ADC0 = (struct ADC *const)0x4003B000;
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/* SC1 */
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#define ADC_SC1_DIFF (1 << 5)
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@@ -92,11 +113,7 @@ static struct ADC *const ADC = (struct ADC *const)0x4003B000;
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/**/
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#define ADC_CLOCK_SOURCE ADC_CLOCK_SOURCE_ASYNCH
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#define ADC_MODE ADC_MODE_16BIT
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#if 0
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#define ADC_ADLSMP ADC_ADLSMP_SHORT
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#else
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#define ADC_ADLSMP ADC_ADLSMP_LONG
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#endif
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#define ADC_ADIV ADC_ADIV_8
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#define ADC_ADLPC ADC_ADLPC_LOWPOWER
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@@ -129,41 +146,77 @@ static struct ADC *const ADC = (struct ADC *const)0x4003B000;
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#define ADC_SC3_CALF (1 << 6)
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#define ADC_SC3_CAL (1 << 7)
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#define ADC_DMA_SLOT_NUM 40
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/*
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* Buffer to save ADC data.
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*/
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uint32_t adc_buf[64];
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static const uint32_t adc0_sc1_setting = ADC_SC1_TEMPSENSOR;
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static chopstx_intr_t adc_intr;
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/*
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* Initialize ADC module, do calibration.
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* This is called by MAIN, only once, before creating any other threads.
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*
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* This is called by MAIN, only once, hopefully before creating any
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* other threads (to be accurate).
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*
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* We configure ADC0 to kick DMA0, configure DMA0 to kick DMA1.
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* DMA0 records output of ADC0 to the ADC_BUF.
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* DMA1 kicks ADC0 again to get another value.
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*
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* ADC0 --[finish conversion]--> DMA0 --[Link channel 1]--> DMA1
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*/
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int
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adc_init (void)
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{
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uint32_t v;
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/* Enable ADC0 clock. */
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SIM->SCGC6 |= (1 << 27);
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/* Enable ADC0 and DMAMUX clock. */
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SIM->SCGC6 |= (1 << 27) | (1 << 1);
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/* Enable DMA clock. */
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SIM->SCGC7 |= (1 << 8);
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ADC->CFG1 = ADC_CLOCK_SOURCE | ADC_MODE | ADC_ADLSMP | ADC_ADIV | ADC_ADLPC;
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ADC->CFG2 = ADC_ADLSTS | ADC_ADHSC | ADC_ADACKEN | ADC_MUXSEL;
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ADC->SC2 = ADC_SC2_REFSEL_DEFAULT;
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ADC->SC3 = ADC_SC3_CAL | ADC_SC3_CALF | ADC_SC3_AVGE | ADC_SC3_AVGS11;
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/* ADC0 setting for calibration. */
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ADC0->CFG1 = ADC_CLOCK_SOURCE | ADC_MODE | ADC_ADLSMP | ADC_ADIV | ADC_ADLPC;
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ADC0->CFG2 = ADC_ADLSTS | ADC_ADHSC | ADC_ADACKEN | ADC_MUXSEL;
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ADC0->SC2 = ADC_SC2_REFSEL_DEFAULT;
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ADC0->SC3 = ADC_SC3_CAL | ADC_SC3_CALF | ADC_SC3_AVGE | ADC_SC3_AVGS11;
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/* Wait ADC completion */
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while ((ADC->SC1[0] & ADC_SC1_COCO) == 0)
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if ((ADC->SC3 & ADC_SC3_CALF) != 0)
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while ((ADC0->SC1[0] & ADC_SC1_COCO) == 0)
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if ((ADC0->SC3 & ADC_SC3_CALF) != 0)
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/* Calibration failure */
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return -1;
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if ((ADC->SC3 & ADC_SC3_CALF) != 0)
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if ((ADC0->SC3 & ADC_SC3_CALF) != 0)
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/* Calibration failure */
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return -1;
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/* Configure PG by the calibration values. */
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v = ADC->CLP0 + ADC->CLP1 + ADC->CLP2 + ADC->CLP3 + ADC->CLP4 + ADC->CLPS;
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ADC->PG = 0x8000 | (v >> 1);
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v = ADC0->CLP0 + ADC0->CLP1 + ADC0->CLP2 + ADC0->CLP3 + ADC0->CLP4 + ADC0->CLPS;
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ADC0->PG = 0x8000 | (v >> 1);
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/* Configure MG by the calibration values. */
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v = ADC->CLM0 + ADC->CLM1 + ADC->CLM2 + ADC->CLM3 + ADC->CLM4 + ADC->CLMS;
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ADC->MG = 0x8000 | (v >> 1);
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v = ADC0->CLM0 + ADC0->CLM1 + ADC0->CLM2 + ADC0->CLM3 + ADC0->CLM4 + ADC0->CLMS;
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ADC0->MG = 0x8000 | (v >> 1);
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ADC0->SC1[0] = ADC_SC1_ADCSTOP;
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/* DMAMUX setting. */
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DMAMUX->CHCFG0 = (1 << 7) | ADC_DMA_SLOT_NUM;
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/* DMA0 initial setting. */
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DMA0->SAR = (uint32_t)&ADC0->R[0];
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/* DMA1 initial setting. */
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DMA1->SAR = (uint32_t)&adc0_sc1_setting;
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DMA1->DAR = (uint32_t)&ADC0->SC1[0];
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chopstx_claim_irq (&adc_intr, INTR_REQ_DMA0);
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return 0;
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}
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@@ -173,17 +226,12 @@ adc_init (void)
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void
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adc_start (void)
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{
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ADC->CFG1 = ADC_CLOCK_SOURCE | ADC_MODE | ADC_ADLSMP | ADC_ADIV | ADC_ADLPC;
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ADC->CFG2 = ADC_ADLSTS | ADC_ADHSC | ADC_ADACKEN | ADC_MUXSEL;
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ADC->SC2 = ADC_SC2_REFSEL_DEFAULT;
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ADC->SC3 = 0;
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ADC0->CFG1 = ADC_CLOCK_SOURCE | ADC_MODE | ADC_ADLSMP | ADC_ADIV | ADC_ADLPC;
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ADC0->CFG2 = ADC_ADLSTS | ADC_ADHSC | ADC_ADACKEN | ADC_MUXSEL;
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ADC0->SC2 = ADC_SC2_REFSEL_DEFAULT | ADC_SC2_DMAEN;
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ADC0->SC3 = 0;
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}
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/*
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* Buffer to save ADC data.
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*/
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uint32_t adc_buf[64];
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/*
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* Kick getting data for COUNT times.
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* Data will be saved in ADC_BUF starting at OFFSET.
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@@ -191,14 +239,22 @@ uint32_t adc_buf[64];
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void
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adc_start_conversion (int offset, int count)
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{
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ADC->SC1[0] = /*ADC_SC1_AIEN*/0 | ADC_SC1_TEMPSENSOR;
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/* DMA0 setting. */
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DMA0->DAR = (uint32_t)&adc_buf[offset];
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DMA0->DSR_BCR = 4 * count;
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DMA0->DCR = (1 << 31) | (1 << 30) | (1 << 29) | (0 << 20) | (1 << 19)
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| (0 << 17) | (1 << 7) | (2 << 4) | (1 << 2);
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/* Kick DMA1. */
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DMA1->DSR_BCR = 4 * count;
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DMA1->DCR = (1 << 30) | (1 << 29) | (0 << 19) | (0 << 17) | (1 << 16) | (1 << 7);
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}
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static void
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adc_stop_conversion (void)
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{
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ADC->SC1[0] = ADC_SC1_ADCSTOP;
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ADC0->SC1[0] = ADC_SC1_ADCSTOP;
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}
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/*
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@@ -215,13 +271,14 @@ adc_stop (void)
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* Return 1 on error.
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*/
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int
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adc_wait_completion (chopstx_intr_t *intr)
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adc_wait_completion (void)
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{
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/* Wait ADC completion */
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while ((ADC->SC1[0] & ADC_SC1_COCO) == 0)
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;
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/* Wait DMA completion */
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chopstx_poll (NULL, 1, &adc_intr);
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DMA0->DSR_BCR = (1 << 24);
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DMA1->DSR_BCR = (1 << 24);
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adc_buf[0] = ADC->R[0];
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adc_stop_conversion ();
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return 0;
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}
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@@ -3,7 +3,7 @@
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#include <chopstx.h>
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#include "tty.h"
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#include "config.h"
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#ifdef TEMPERATURE_SUPPORT
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#ifdef ADC_SUPPORT
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#include "adc.h"
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static int adc_initialized = 0;
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#endif
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@@ -30,8 +30,8 @@ static const char *help_string =
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#ifdef CRC32_SUPPORT
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"crc32 string\r\n"
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#endif
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#ifdef TEMPERATURE_SUPPORT
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"temp\r\n"
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#ifdef ADC_SUPPORT
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"adc\r\n"
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#endif
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"help\r\n";
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@@ -46,6 +46,7 @@ static char hexchar (uint8_t x)
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return '?';
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}
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#ifdef ENABLE_DECIMAL_OUTPUT
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static char *
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compose_decimal (char *s, int value)
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{
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@@ -81,6 +82,7 @@ compose_decimal (char *s, int value)
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return s;
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}
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#endif
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static char *
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compose_hex (char *s, uint32_t v)
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@@ -214,18 +216,12 @@ cmd_crc32 (struct tty *tty, const char *line)
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}
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#endif
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#ifdef TEMPERATURE_SUPPORT
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#define ADCV_TEMP25 14800 /* TYP: 716mV=14219 */
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#define ADCV_100M 3217
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/* m = 1.62 mV/C_degree */
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#ifdef ADC_SUPPORT
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static void
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cmd_temperature (struct tty *tty, const char *line)
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cmd_adc (struct tty *tty, const char *line)
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{
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uint32_t v;
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int t;
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char string[13];
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int i;
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char output[73];
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char *s;
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(void)line;
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@@ -244,21 +240,27 @@ cmd_temperature (struct tty *tty, const char *line)
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}
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}
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adc_start_conversion (0, 1);
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adc_wait_completion (NULL);
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v = adc_buf[0];
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adc_start_conversion (0, 64);
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adc_wait_completion ();
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t = 25 - (((int)v - ADCV_TEMP25) * 100 / ADCV_100M);
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s = compose_hex (string, v);
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*s++ = '\r';
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*s++ = '\n';
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tty_send (tty, (uint8_t *)string, s - string);
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s = compose_decimal (string, t);
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*s++ = '\r';
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*s++ = '\n';
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tty_send (tty, (uint8_t *)string, s - string);
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i = 0;
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s = output;
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while (1)
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{
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s = compose_hex (s, adc_buf[i]);
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i++;
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if ((i % 8))
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*s++ = ' ';
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else
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{
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*s++ = '\r';
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*s++ = '\n';
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tty_send (tty, (uint8_t *)output, s - output);
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s = output;
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if (i >= 64)
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break;
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}
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}
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}
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#endif
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@@ -276,8 +278,8 @@ struct command_table command_table[] = {
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#ifdef CRC32_SUPPORT
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{ "crc32", cmd_crc32 },
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#endif
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#ifdef TEMPERATURE_SUPPORT
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{ "temp", cmd_temperature },
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#ifdef ADC_SUPPORT
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{ "adc", cmd_adc },
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#endif
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{ "help", cmd_help },
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};
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@@ -1,2 +1,2 @@
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#define CRC32_SUPPORT
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#define TEMPERATURE_SUPPORT
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#define ADC_SUPPORT
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