commit
918aaca871
@ -20,16 +20,9 @@ void setCyclicIRQ() {
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// do all housekeeping
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// do all housekeeping
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void doHousekeeping() {
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void doHousekeeping() {
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// check if update mode trigger switch was set
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// check if update mode trigger switch was set by rcommand
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if (RTC_runmode == RUNMODE_UPDATE) {
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if (RTC_runmode == RUNMODE_UPDATE)
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// check battery status if we can before doing ota
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do_reset(true);
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if (batt_sufficient()) {
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do_reset(true); // warmstart to runmode update
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} else {
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ESP_LOGE(TAG, "Battery level %d%% is too low for OTA", batt_level);
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RTC_runmode = RUNMODE_NORMAL; // keep running in normal mode
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}
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}
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// heap and task storage debugging
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// heap and task storage debugging
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ESP_LOGD(TAG, "Heap: Free:%d, Min:%d, Size:%d, Alloc:%d, StackHWM:%d",
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ESP_LOGD(TAG, "Heap: Free:%d, Min:%d, Size:%d, Alloc:%d, StackHWM:%d",
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@ -29,11 +29,11 @@ Task Core Prio Purpose
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-------------------------------------------------------------------------------
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-------------------------------------------------------------------------------
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ledloop 0 3 blinks LEDs
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ledloop 0 3 blinks LEDs
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spiloop 0 2 reads/writes data on spi interface
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spiloop 0 2 reads/writes data on spi interface
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mqttloop 0 2 reads/writes data on ETH interface
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IDLE 0 0 ESP32 arduino scheduler -> runs wifi sniffer
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IDLE 0 0 ESP32 arduino scheduler -> runs wifi sniffer
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lmictask 1 2 MCCI LMiC LORAWAN stack
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lmictask 1 2 MCCI LMiC LORAWAN stack
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clockloop 1 4 generates realtime telegrams for external clock
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clockloop 1 4 generates realtime telegrams for external clock
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mqttloop 1 2 reads/writes data on ETH interface
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timesync_proc 1 3 processes realtime time sync requests
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timesync_proc 1 3 processes realtime time sync requests
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irqhandler 1 2 cyclic tasks (i.e. displayrefresh) triggered by timers
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irqhandler 1 2 cyclic tasks (i.e. displayrefresh) triggered by timers
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gpsloop 1 1 reads data from GPS via serial or i2c
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gpsloop 1 1 reads data from GPS via serial or i2c
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@ -37,7 +37,7 @@ esp_err_t mqtt_init(void) {
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SEND_QUEUE_SIZE * PAYLOAD_BUFFER_SIZE);
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SEND_QUEUE_SIZE * PAYLOAD_BUFFER_SIZE);
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ESP_LOGI(TAG, "Starting MQTTloop...");
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ESP_LOGI(TAG, "Starting MQTTloop...");
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xTaskCreate(mqtt_client_task, "mqttloop", 4096, (void *)NULL, 1, &mqttTask);
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xTaskCreatePinnedToCore(mqtt_client_task, "mqttloop", 4096, (void *)NULL, 1, &mqttTask, 1);
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return ESP_OK;
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return ESP_OK;
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}
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}
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@ -35,7 +35,11 @@ void set_reset(uint8_t val[]) {
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case 9: // reset and ask for software update via Wifi OTA
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case 9: // reset and ask for software update via Wifi OTA
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ESP_LOGI(TAG, "Remote command: software update via Wifi");
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ESP_LOGI(TAG, "Remote command: software update via Wifi");
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#if (USE_OTA)
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#if (USE_OTA)
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// check power status before scheduling ota update
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if (batt_sufficient())
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RTC_runmode = RUNMODE_UPDATE;
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RTC_runmode = RUNMODE_UPDATE;
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else
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ESP_LOGE(TAG, "Battery level %d%% is too low for OTA", batt_level);
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#endif // USE_OTA
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#endif // USE_OTA
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break;
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break;
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@ -49,7 +49,6 @@ void do_after_reset(void) {
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break;
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break;
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case DEEPSLEEP_RESET: // 0x05 Deep Sleep reset digital core
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case DEEPSLEEP_RESET: // 0x05 Deep Sleep reset digital core
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RTC_runmode = RUNMODE_WAKEUP;
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// calculate time spent in deep sleep
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// calculate time spent in deep sleep
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gettimeofday(&sleep_stop_time, NULL);
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gettimeofday(&sleep_stop_time, NULL);
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sleep_time_ms =
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sleep_time_ms =
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@ -57,6 +56,9 @@ void do_after_reset(void) {
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(sleep_stop_time.tv_usec - RTC_sleep_start_time.tv_usec) / 1000;
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(sleep_stop_time.tv_usec - RTC_sleep_start_time.tv_usec) / 1000;
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ESP_LOGI(TAG, "Time spent in deep sleep: %d ms", sleep_time_ms);
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ESP_LOGI(TAG, "Time spent in deep sleep: %d ms", sleep_time_ms);
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RTC_millis += sleep_time_ms; // increment system monotonic time
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RTC_millis += sleep_time_ms; // increment system monotonic time
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// set wakeup state, not if we have pending OTA update
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if (RTC_runmode == RUNMODE_SLEEP)
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RTC_runmode = RUNMODE_WAKEUP;
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break;
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break;
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case SW_RESET: // 0x03 Software reset digital core
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case SW_RESET: // 0x03 Software reset digital core
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@ -103,7 +105,7 @@ void enter_deepsleep(const uint64_t wakeup_sec = 60,
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// stop further enqueuing of senddata and MAC processing
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// stop further enqueuing of senddata and MAC processing
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sendTimer.detach();
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sendTimer.detach();
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// switch off radio
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// switch off radio and other power consuming hardware
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#if (WIFICOUNTER)
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#if (WIFICOUNTER)
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switch_wifi_sniffer(0);
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switch_wifi_sniffer(0);
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#endif
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#endif
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@ -111,6 +113,9 @@ void enter_deepsleep(const uint64_t wakeup_sec = 60,
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stop_BLEscan();
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stop_BLEscan();
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btStop();
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btStop();
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#endif
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#endif
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#if (HAS_SDS011)
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sds011_sleep(void);
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#endif
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// stop MAC processing
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// stop MAC processing
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vTaskDelete(macProcessTask);
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vTaskDelete(macProcessTask);
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