#include "MeshnologyW12Board.h" void MeshnologyW12Board::begin() { ESP32Board::begin(); pinMode(PIN_ADC_CTRL, OUTPUT); digitalWrite(PIN_ADC_CTRL, LOW); // Disable battery sense until required pinMode(P_LORA_LF_PA_POWER, OUTPUT); digitalWrite(P_LORA_LF_PA_POWER, HIGH); // PA_EN_M — power the GC1109 FEM pinMode(P_LORA_HF_PA_POWER, OUTPUT); digitalWrite(P_LORA_HF_PA_POWER, LOW); // PA_EN_G — disable the 2.4GHz FEM delay(100); // give the GC1109 some time to start periph_power.begin(); esp_reset_reason_t reason = esp_reset_reason(); if (reason == ESP_RST_DEEPSLEEP) { long wakeup_source = esp_sleep_get_ext1_wakeup_status(); if (wakeup_source & (1 << P_LORA_DIO_1)) { // received a LoRa packet (while in deep sleep) startup_reason = BD_STARTUP_RX_PACKET; } rtc_gpio_hold_dis((gpio_num_t)P_LORA_NSS); rtc_gpio_deinit((gpio_num_t)P_LORA_DIO_1); } } void MeshnologyW12Board::onBeforeTransmit(void) { neopixelWrite(NEOPIXEL_LED, NEOPIXEL_BRIGHTNESS, NEOPIXEL_BRIGHTNESS, NEOPIXEL_BRIGHTNESS); // turn TX neopixel on (White) } void MeshnologyW12Board::onAfterTransmit(void) { neopixelWrite(NEOPIXEL_LED, 0, 0, 0); // turn TX neopixel off } void MeshnologyW12Board::enterDeepSleep(uint32_t secs, int pin_wake_btn) { esp_sleep_pd_config(ESP_PD_DOMAIN_RTC_PERIPH, ESP_PD_OPTION_ON); // Make sure the DIO1 and NSS GPIOs are hold on required levels during deep sleep rtc_gpio_set_direction((gpio_num_t)P_LORA_DIO_1, RTC_GPIO_MODE_INPUT_ONLY); rtc_gpio_pulldown_en((gpio_num_t)P_LORA_DIO_1); rtc_gpio_hold_en((gpio_num_t)P_LORA_NSS); if (pin_wake_btn < 0) { esp_sleep_enable_ext1_wakeup( (1L << P_LORA_DIO_1), ESP_EXT1_WAKEUP_ANY_HIGH); // wake up on: recv LoRa packet } else { esp_sleep_enable_ext1_wakeup( (1L << P_LORA_DIO_1) | (1L << pin_wake_btn), ESP_EXT1_WAKEUP_ANY_HIGH); // wake up on: recv LoRa packet OR wake btn } if (secs > 0) { esp_sleep_enable_timer_wakeup(secs * 1000000); } // Finally set ESP32 into sleep esp_deep_sleep_start(); // CPU halts here and never returns! } void MeshnologyW12Board::powerOff() { enterDeepSleep(0); } uint16_t MeshnologyW12Board::getBattMilliVolts() { analogReadResolution(12); analogSetAttenuation(ADC_11db); digitalWrite(PIN_ADC_CTRL, HIGH); delay(10); uint32_t raw = 0; for (int i = 0; i < 8; i++) { raw += analogRead(PIN_VBAT_READ); } raw = raw / 8; digitalWrite(PIN_ADC_CTRL, LOW); return (adc_mult * (3.3 / 4096.0) * raw) * 1000; } const char* MeshnologyW12Board::getManufacturerName() const { return "Meshnology W12"; }