Issue #26: Add configuration for overtemperature flag to safety controller and include the config in the memory checking
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@ -193,6 +193,7 @@ shellmatta_retCode_t calibration_sequence_shell_cmd(shellmatta_handle_t shell, c
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case CAL_START:
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/* Clear errors of PT1000 reading */
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safety_controller_ack_flag(ERR_FLAG_MEAS_ADC_WATCHDOG);
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safety_controller_ack_flag(ERR_FLAG_OVERTEMP);
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adc_pt1000_get_resistance_calibration(&offset, &sens_dev, &cal_active);
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if (cal_active) {
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shellmatta_printf(shell, "Already calibrated.\r\n\tOffset: %f\r\n\tSens: %f\r\n", offset, sens_dev);
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@ -213,6 +214,7 @@ shellmatta_retCode_t calibration_sequence_shell_cmd(shellmatta_handle_t shell, c
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ret_val = SHELLMATTA_BUSY;
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shellmatta_printf(shell, "Measurement...\r\n");
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safety_controller_ack_flag(ERR_FLAG_MEAS_ADC_WATCHDOG);
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safety_controller_ack_flag(ERR_FLAG_OVERTEMP);
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data_buffer = calibration_acquire_data_start(512UL, &flag);
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break;
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} else if (stdin_data[i] == '\x03') {
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@ -264,6 +266,7 @@ shellmatta_retCode_t calibration_sequence_shell_cmd(shellmatta_handle_t shell, c
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ret_val = SHELLMATTA_BUSY;
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shellmatta_printf(shell, "Measurement...\r\n");
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safety_controller_ack_flag(ERR_FLAG_MEAS_ADC_WATCHDOG);
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safety_controller_ack_flag(ERR_FLAG_OVERTEMP);
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data_buffer = calibration_acquire_data_start(512UL, &flag);
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break;
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} else if (stdin_data[i] == '\x03') {
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@ -129,6 +129,11 @@ enum analog_value_monitor {
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#define SAFETY_EXT_WATCHDOG_RCC_MASK RCC_AHB1ENR_GPIODEN
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#define SAFETY_EXT_WATCHDOG_PIN (12)
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/**
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* @brief Default Limit of the overtemperature detection
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*/
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#define SAFETY_DEFAULT_OVERTEMP_LIMIT_DEGC (260.0f)
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/**
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* @brief Key used to lock the safety flags coming from the measurment ADC from external ack'ing
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*/
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@ -250,7 +250,22 @@ int safety_controller_get_timing_mon_name_by_index(uint32_t index, char *buffer,
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* @brief Get the count of timing monitors
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* @return Timing monitor count
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*/
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uint32_t safety_controller_get_timing_monitor_count();
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uint32_t safety_controller_get_timing_monitor_count(void);
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/**
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* @brief Set the overtemperature limit and store it permanently in the EEPROM
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*
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* If no EEPROM is present, this will fail. The default value @ref SAFETY_DEFAULT_OVERTEMP_LIMIT_DEGC will be used.
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* @param over_temperature Over temperature to set
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* @return 0 if successfully saved and applied, negative if error
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*/
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int safety_controller_configure_overtemp_limit(float over_temperature);
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/**
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* @brief Read the current overtemperature limit.
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* @return Over temperature limit
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*/
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float safety_controller_get_overtemp_limit(void);
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#endif /* __SAFETY_CONTROLLER_H__ */
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@ -41,6 +41,7 @@
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#include <reflow-controller/oven-driver.h>
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#include <helper-macros/helper-macros.h>
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#include <stm-periph/rcc-manager.h>
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#include <reflow-controller/temp-converter.h>
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/**
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* @brief Macro that checks if a given @ref error_flag is persistent
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@ -144,6 +145,13 @@ struct analog_mon {
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uint64_t timestamp;
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};
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struct overtemp_config {
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uint32_t crc_dummy_seed;
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float overtemp_deg_celsius;
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float overtemp_equiv_resistance;
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uint32_t crc;
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};
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/**
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* @brief All safety error flags.
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*/
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@ -234,6 +242,45 @@ static volatile struct safety_weight IN_SECTION(.ccm.bss) flag_weights[COUNT_OF(
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*/
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static uint32_t IN_SECTION(.ccm.bss) flag_weight_crc;
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/**
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* @brief Configuration struct containing the overtemperature flag configuration
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*/
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static struct overtemp_config IN_SECTION(.ccm.bss) safety_controller_overtemp_config;
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/**
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* @brief Configure the overtemperature flag's settings
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* @param over_temperature Temperature to set the limit to.
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*/
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static void set_overtemp_config(float over_temperature)
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{
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int result;
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float resistance;
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result = temp_convertet_convert_temp_to_resistance(over_temperature, &resistance);
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/* An error in this function is really bad... */
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if (result < -1)
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panic_mode();
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crc_unit_reset();
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safety_controller_overtemp_config.crc_dummy_seed = 0xA4F5C7E6UL;
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safety_controller_overtemp_config.overtemp_deg_celsius = over_temperature;
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safety_controller_overtemp_config.overtemp_equiv_resistance = resistance;
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crc_unit_input_array((const uint32_t *)&safety_controller_overtemp_config, wordsize_of(struct overtemp_config) - 1);
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safety_controller_overtemp_config.crc = crc_unit_get_crc();
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}
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static bool over_temperature_config_check(void)
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{
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if (safety_controller_overtemp_config.crc_dummy_seed != 0xA4F5C7E6UL)
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return true;
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crc_unit_reset();
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crc_unit_input_array((const uint32_t *)&safety_controller_overtemp_config, wordsize_of(struct overtemp_config) - 1);
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if (crc_unit_get_crc() != safety_controller_overtemp_config.crc)
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return true;
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return false;
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}
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/**
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* @brief Convert a flag enum to the flag number.
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*
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@ -721,6 +768,9 @@ void safety_controller_init()
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init_safety_flag_persistencies_from_default();
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apply_config_overrides();
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/* Set the default limit of the overtemperature check */
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set_overtemp_config(SAFETY_DEFAULT_OVERTEMP_LIMIT_DEGC);
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if (found_memory_state == SAFETY_MEMORY_INIT_CORRUPTED)
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safety_controller_report_error(ERR_FLAG_SAFETY_MEM_CORRUPT);
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else if (found_memory_state == SAFETY_MEMORY_INIT_VALID_MEMORY) {
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@ -842,6 +892,7 @@ static void safety_controller_handle_safety_adc()
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* Aditionally, the default flag weights are restored from Flash.
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* 3) The flag persistency table is CRC checked. In case of an error, the @ref ERR_FLAG_SAFETY_TAB_CORRUPT flag is set.
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* Aditionally, the default values of the flag persistence is restored from Flash.
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* 4) Check the Overtemperature flag configuration structure
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*/
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static void safety_controller_handle_memory_checks(void)
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{
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@ -870,6 +921,12 @@ static void safety_controller_handle_memory_checks(void)
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safety_controller_report_error(ERR_FLAG_SAFETY_TAB_CORRUPT);
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init_safety_flag_persistencies_from_default();
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}
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/* check overtemp struct */
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if (over_temperature_config_check()) {
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safety_controller_report_error(ERR_FLAG_SAFETY_TAB_CORRUPT);
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set_overtemp_config(SAFETY_DEFAULT_OVERTEMP_LIMIT_DEGC);
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}
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}
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}
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@ -1220,4 +1277,15 @@ int safety_controller_get_timing_mon_by_index(uint32_t index, struct timing_moni
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return 0;
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}
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int safety_controller_set_overtemp_limit(float over_temperature)
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{
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set_overtemp_config(over_temperature);
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return 0;
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}
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float safety_controller_get_overtemp_limit(void)
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{
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return safety_controller_overtemp_config.overtemp_deg_celsius;
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}
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/** @} */
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