rtc_tempsensor.c 5.5 KB

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  1. /*
  2. * SPDX-FileCopyrightText: 2016-2021 Espressif Systems (Shanghai) CO LTD
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include <esp_types.h>
  7. #include <stdlib.h>
  8. #include <ctype.h>
  9. #include <math.h>
  10. #include "freertos/FreeRTOS.h"
  11. #include "freertos/semphr.h"
  12. #include "esp_log.h"
  13. #include "esp_check.h"
  14. #include "hal/adc_ll.h"
  15. #include "soc/rtc_cntl_reg.h"
  16. #include "soc/apb_saradc_struct.h"
  17. #include "soc/apb_saradc_reg.h"
  18. #include "soc/system_reg.h"
  19. #include "driver/temp_sensor.h"
  20. #include "regi2c_ctrl.h"
  21. #include "esp32h2/rom/ets_sys.h"
  22. #include "esp_efuse_rtc_calib.h"
  23. static const char *TAG = "tsens";
  24. #define TSENS_XPD_WAIT_DEFAULT 0xFF /* Set wait cycle time(8MHz) from power up to reset enable. */
  25. #define TSENS_ADC_FACTOR (0.4386)
  26. #define TSENS_DAC_FACTOR (27.88)
  27. #define TSENS_SYS_OFFSET (20.52)
  28. typedef struct {
  29. int index;
  30. int offset;
  31. int set_val;
  32. int range_min;
  33. int range_max;
  34. int error_max;
  35. } tsens_dac_offset_t;
  36. static const tsens_dac_offset_t dac_offset[TSENS_DAC_MAX] = {
  37. /* DAC Offset reg_val min max error */
  38. {TSENS_DAC_L0, -2, 5, 50, 125, 3},
  39. {TSENS_DAC_L1, -1, 7, 20, 100, 2},
  40. {TSENS_DAC_L2, 0, 15, -10, 80, 1},
  41. {TSENS_DAC_L3, 1, 11, -30, 50, 2},
  42. {TSENS_DAC_L4, 2, 10, -40, 20, 3},
  43. };
  44. typedef enum {
  45. TSENS_HW_STATE_UNCONFIGURED,
  46. TSENS_HW_STATE_CONFIGURED,
  47. TSENS_HW_STATE_STARTED,
  48. } tsens_hw_state_t;
  49. static tsens_hw_state_t tsens_hw_state = TSENS_HW_STATE_UNCONFIGURED;
  50. static float s_deltaT = NAN; // unused number
  51. esp_err_t temp_sensor_set_config(temp_sensor_config_t tsens)
  52. {
  53. if (tsens_hw_state == TSENS_HW_STATE_STARTED) {
  54. ESP_LOGE(TAG, "Do not configure the temp sensor when it's running!");
  55. return ESP_ERR_INVALID_STATE;
  56. }
  57. REG_SET_BIT(SYSTEM_PERIP_CLK_EN1_REG, SYSTEM_TSENS_CLK_EN);
  58. CLEAR_PERI_REG_MASK(ANA_CONFIG_REG, ANA_I2C_SAR_FORCE_PD);
  59. SET_PERI_REG_MASK(ANA_CONFIG2_REG, ANA_I2C_SAR_FORCE_PU);
  60. REGI2C_WRITE_MASK(I2C_SAR_ADC, I2C_SARADC_TSENS_DAC, dac_offset[tsens.dac_offset].set_val);
  61. APB_SARADC.apb_tsens_ctrl.tsens_clk_div = tsens.clk_div;
  62. APB_SARADC.apb_tsens_ctrl2.tsens_xpd_wait = TSENS_XPD_WAIT_DEFAULT;
  63. APB_SARADC.apb_tsens_ctrl2.tsens_xpd_force = 1;
  64. ESP_LOGD(TAG, "Config temperature range [%d°C ~ %d°C], error < %d°C",
  65. dac_offset[tsens.dac_offset].range_min,
  66. dac_offset[tsens.dac_offset].range_max,
  67. dac_offset[tsens.dac_offset].error_max);
  68. tsens_hw_state = TSENS_HW_STATE_CONFIGURED;
  69. return ESP_OK;
  70. }
  71. esp_err_t temp_sensor_get_config(temp_sensor_config_t *tsens)
  72. {
  73. ESP_RETURN_ON_FALSE(tsens != NULL, ESP_ERR_INVALID_ARG, TAG, "no tsens specified");
  74. CLEAR_PERI_REG_MASK(ANA_CONFIG_REG, ANA_I2C_SAR_FORCE_PD);
  75. SET_PERI_REG_MASK(ANA_CONFIG2_REG, ANA_I2C_SAR_FORCE_PU);
  76. tsens->dac_offset = REGI2C_READ_MASK(I2C_SAR_ADC, I2C_SARADC_TSENS_DAC);
  77. for (int i = TSENS_DAC_L0; i < TSENS_DAC_MAX; i++) {
  78. if (tsens->dac_offset == dac_offset[i].set_val) {
  79. tsens->dac_offset = dac_offset[i].index;
  80. break;
  81. }
  82. }
  83. tsens->clk_div = APB_SARADC.apb_tsens_ctrl.tsens_clk_div;
  84. return ESP_OK;
  85. }
  86. esp_err_t temp_sensor_start(void)
  87. {
  88. if (tsens_hw_state != TSENS_HW_STATE_CONFIGURED) {
  89. ESP_LOGE(TAG, "Temperature sensor is already running or not be configured");
  90. return ESP_ERR_INVALID_STATE;
  91. }
  92. REG_SET_BIT(SYSTEM_PERIP_CLK_EN1_REG, SYSTEM_TSENS_CLK_EN);
  93. APB_SARADC.apb_tsens_ctrl2.tsens_clk_sel = 1;
  94. APB_SARADC.apb_tsens_ctrl.tsens_pu = 1;
  95. tsens_hw_state = TSENS_HW_STATE_STARTED;
  96. return ESP_OK;
  97. }
  98. esp_err_t temp_sensor_stop(void)
  99. {
  100. APB_SARADC.apb_tsens_ctrl.tsens_pu = 0;
  101. APB_SARADC.apb_tsens_ctrl2.tsens_clk_sel = 0;
  102. return ESP_OK;
  103. }
  104. esp_err_t temp_sensor_read_raw(uint32_t *tsens_out)
  105. {
  106. ESP_RETURN_ON_FALSE(tsens_out != NULL, ESP_ERR_INVALID_ARG, TAG, "no tsens_out specified");
  107. *tsens_out = APB_SARADC.apb_tsens_ctrl.tsens_out;
  108. return ESP_OK;
  109. }
  110. static void read_delta_t_from_efuse(void)
  111. {
  112. uint32_t version = esp_efuse_rtc_calib_get_ver();
  113. if (version == 1) {
  114. // fetch calibration value for temp sensor from eFuse
  115. s_deltaT = esp_efuse_rtc_calib_get_cal_temp(version);
  116. } else {
  117. // no value to fetch, use 0.
  118. s_deltaT = 0;
  119. }
  120. ESP_LOGD(TAG, "s_deltaT = %f", s_deltaT);
  121. }
  122. static float parse_temp_sensor_raw_value(uint32_t tsens_raw, const int dac_offset)
  123. {
  124. if (isnan(s_deltaT)) { //suggests that the value is not initialized
  125. read_delta_t_from_efuse();
  126. }
  127. float result = (TSENS_ADC_FACTOR * (float)tsens_raw - TSENS_DAC_FACTOR * dac_offset - TSENS_SYS_OFFSET) - s_deltaT / 10.0;
  128. return result;
  129. }
  130. esp_err_t temp_sensor_read_celsius(float *celsius)
  131. {
  132. ESP_RETURN_ON_FALSE(celsius != NULL, ESP_ERR_INVALID_ARG, TAG, "celsius points to nothing");
  133. temp_sensor_config_t tsens;
  134. uint32_t tsens_out = 0;
  135. esp_err_t ret = temp_sensor_get_config(&tsens);
  136. if (ret == ESP_OK) {
  137. ret = temp_sensor_read_raw(&tsens_out);
  138. ESP_LOGV(TAG, "tsens_out %d", tsens_out);
  139. ESP_RETURN_ON_FALSE(ret == ESP_OK, ret, TAG, "failed to read raw data");
  140. const tsens_dac_offset_t *dac = &dac_offset[tsens.dac_offset];
  141. *celsius = parse_temp_sensor_raw_value(tsens_out, dac->offset);
  142. if (*celsius < dac->range_min || *celsius > dac->range_max) {
  143. ESP_LOGW(TAG, "Exceeding the temperature range!");
  144. ret = ESP_ERR_INVALID_STATE;
  145. }
  146. }
  147. return ret;
  148. }