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233 lines
6.2 KiB
233 lines
6.2 KiB
2 years ago
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/**
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* TODO file description
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*/
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#include "main.h"
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#include <stdbool.h>
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#include <stdint.h>
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#include <string.h>
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2 years ago
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#include "app_temp.h"
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2 years ago
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#include "adc.h"
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/* DMA dest */
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static volatile uint16_t adc_values[4];
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const float V_REFINT = 1.23f;
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#define AVERAGEBUF_DEPTH 16
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#define OVENTEMP_HISTORY_DEPTH 10
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static struct App {
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float oven_temp;
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float soc_temp;
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float v_sensor;
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uint16_t adc_averagebuf[AVERAGEBUF_DEPTH * 4];
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uint8_t averagebuf_ptr;
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float adc_averages[4];
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float oventemp_history[OVENTEMP_HISTORY_DEPTH];
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uint8_t oventemp_history_ptr;
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} s_analog = {};
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#define TSENSE_LOOKUP_LEN 101
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#define TSENSE_T_STEP 5.0f
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#define TSENSE_T_MIN 0.0f
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#define TSENSE_T_MAX 500.0f
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static const float TSENSE_LOOKUP[TSENSE_LOOKUP_LEN] = {
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0.092678405931418f,
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0.0943174479327356f,
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0.095948157844312f,
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0.0975706768542549f,
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0.103978983136042f,
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0.209261606226334f,
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0.210346827933364f,
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0.211427232937629f,
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0.212502848543705f,
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0.213573765013592f,
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0.214639882704581f,
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0.215701354457324f,
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0.216758080892489f,
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0.217810213752734f,
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0.218857716249547f,
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0.219900614222686f,
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0.220938933310224f,
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0.221972760781578f,
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0.223001998051553f,
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};
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void app_analog_init()
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{
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HAL_ADCEx_Calibration_Start(&hadc1);
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/* Start periodic reading of the ADC channels */
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HAL_ADC_Start_DMA(&hadc1, (uint32_t *) (void *) adc_values, 4);
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}
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static float val_to_c(float val)
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{
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// TODO use binary search.. lol
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for (int i = 1; i < TSENSE_LOOKUP_LEN; i++) {
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float cur = TSENSE_LOOKUP[i];
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if (cur >= val) {
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float prev = TSENSE_LOOKUP[i - 1];
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float ratio = (val - prev) / (cur - prev);
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return TSENSE_T_MIN + ((float) i + ratio) * TSENSE_T_STEP;
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}
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}
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return TSENSE_T_MAX;
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}
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2 years ago
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void app_temp_sample()
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2 years ago
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{
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uint32_t sums[4] = {};
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2 years ago
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int count = 0;
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2 years ago
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for (int i = 0; i < AVERAGEBUF_DEPTH * 4; i += 4) {
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2 years ago
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if (s_analog.adc_averagebuf[i + 3] != 0) {
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sums[0] += s_analog.adc_averagebuf[i];
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sums[1] += s_analog.adc_averagebuf[i + 1];
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sums[2] += s_analog.adc_averagebuf[i + 2];
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sums[3] += s_analog.adc_averagebuf[i + 3];
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count++;
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}
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}
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if (count == 0) {
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return;
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2 years ago
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}
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2 years ago
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s_analog.adc_averages[0] = (float) sums[0] / count;
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s_analog.adc_averages[1] = (float) sums[1] / count;
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s_analog.adc_averages[2] = (float) sums[2] / count;
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s_analog.adc_averages[3] = (float) sums[3] / count;
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2 years ago
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/* r_pt100, r_ref, internal_temp, v_ref_int */
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float refint = s_analog.adc_averages[3];
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float scale = V_REFINT / refint;
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const float avg_slope = 4.3f * scale;
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const float v25 = 1.43f;
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const float v_tsen = s_analog.adc_averages[2] * scale;
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s_analog.soc_temp = (v25 - v_tsen) / avg_slope + 25.f;
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s_analog.v_sensor = s_analog.adc_averages[0] * scale; // good for debug/tuning
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// using a voltage divider, so assuming the reference resistor is measured well,
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// we can just use the ratio and the exact voltage value is not important.
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float actual_temp = val_to_c(s_analog.adc_averages[0] / s_analog.adc_averages[1]);
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s_analog.oventemp_history[s_analog.oventemp_history_ptr] = actual_temp;
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s_analog.oventemp_history_ptr = (s_analog.oventemp_history_ptr + 1) % OVENTEMP_HISTORY_DEPTH;
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float sum = 0;
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2 years ago
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int depth = 0;
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2 years ago
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for (int i = 0; i < OVENTEMP_HISTORY_DEPTH; i++) {
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2 years ago
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if (s_analog.oventemp_history[i] > 0.0f) {
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sum += s_analog.oventemp_history[i];
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depth++;
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}
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}
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if (depth > 0) {
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sum /= depth;
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2 years ago
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}
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s_analog.oven_temp = sum;
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2 years ago
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}
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2 years ago
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2 years ago
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float app_temp_read_oven()
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{
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2 years ago
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return s_analog.oven_temp;
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}
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2 years ago
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float app_temp_read_soc()
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{
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return s_analog.soc_temp;
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}
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2 years ago
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void HAL_ADC_ConvCpltCallback(ADC_HandleTypeDef *hadc)
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{
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// notify
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memcpy((void *) &s_analog.adc_averagebuf[s_analog.averagebuf_ptr * 4], (const void *) adc_values, 8);
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s_analog.averagebuf_ptr = (s_analog.averagebuf_ptr + 1) % AVERAGEBUF_DEPTH;
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}
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