Ported from meshcore-dev/MeshCore#2140 (Quency-D <hj_zzns@163.com>).
The upstream v1.16.0 merge changed the Heltec FEM LNA to disabled by
default (upstream commit 696aae6e). This patch restores the enabled
default for repeater via the new "radio.fem.rxgain" preference
(defaulted to 1), while also making the setting user-configurable
and persisted across reboots.
104 строки
3.0 KiB
C++
104 строки
3.0 KiB
C++
#include "HeltecV4Board.h"
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void HeltecV4Board::begin() {
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ESP32Board::begin();
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pinMode(PIN_ADC_CTRL, OUTPUT);
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digitalWrite(PIN_ADC_CTRL, LOW); // Initially inactive
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loRaFEMControl.init();
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periph_power.begin();
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esp_reset_reason_t reason = esp_reset_reason();
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if (reason == ESP_RST_DEEPSLEEP) {
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long wakeup_source = esp_sleep_get_ext1_wakeup_status();
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if (wakeup_source & (1 << P_LORA_DIO_1)) { // received a LoRa packet (while in deep sleep)
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startup_reason = BD_STARTUP_RX_PACKET;
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}
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rtc_gpio_hold_dis((gpio_num_t)P_LORA_NSS);
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rtc_gpio_deinit((gpio_num_t)P_LORA_DIO_1);
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}
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}
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void HeltecV4Board::onBeforeTransmit(void) {
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digitalWrite(P_LORA_TX_LED, HIGH); // turn TX LED on
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loRaFEMControl.setTxModeEnable();
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}
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void HeltecV4Board::onAfterTransmit(void) {
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digitalWrite(P_LORA_TX_LED, LOW); // turn TX LED off
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loRaFEMControl.setRxModeEnable();
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}
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void HeltecV4Board::enterDeepSleep(uint32_t secs, int pin_wake_btn) {
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esp_sleep_pd_config(ESP_PD_DOMAIN_RTC_PERIPH, ESP_PD_OPTION_ON);
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// Make sure the DIO1 and NSS GPIOs are hold on required levels during deep sleep
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rtc_gpio_set_direction((gpio_num_t)P_LORA_DIO_1, RTC_GPIO_MODE_INPUT_ONLY);
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rtc_gpio_pulldown_en((gpio_num_t)P_LORA_DIO_1);
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rtc_gpio_hold_en((gpio_num_t)P_LORA_NSS);
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loRaFEMControl.setRxModeEnableWhenMCUSleep();//It also needs to be enabled in receive mode
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if (pin_wake_btn < 0) {
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esp_sleep_enable_ext1_wakeup( (1L << P_LORA_DIO_1), ESP_EXT1_WAKEUP_ANY_HIGH); // wake up on: recv LoRa packet
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} else {
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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
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}
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if (secs > 0) {
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esp_sleep_enable_timer_wakeup(secs * 1000000);
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}
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// Finally set ESP32 into sleep
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esp_deep_sleep_start(); // CPU halts here and never returns!
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}
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void HeltecV4Board::powerOff() {
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enterDeepSleep(0);
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}
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uint16_t HeltecV4Board::getBattMilliVolts() {
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analogReadResolution(10);
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digitalWrite(PIN_ADC_CTRL, HIGH);
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delay(10);
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uint32_t raw = 0;
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for (int i = 0; i < 8; i++) {
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raw += analogRead(PIN_VBAT_READ);
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}
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raw = raw / 8;
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digitalWrite(PIN_ADC_CTRL, LOW);
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return (adc_mult * (3.3 / 1024.0) * raw) * 1000;
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}
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const char* HeltecV4Board::getManufacturerName() const {
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#ifdef HELTEC_LORA_V4_TFT
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return loRaFEMControl.getFEMType() == KCT8103L_PA ? "Heltec V4.3 TFT" : "Heltec V4 TFT";
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#else
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return loRaFEMControl.getFEMType() == KCT8103L_PA ? "Heltec V4.3 OLED" : "Heltec V4 OLED";
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#endif
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}
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bool HeltecV4Board::setLoRaFemLnaEnabled(bool enable) {
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if (!loRaFEMControl.isLnaCanControl()) {
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return false;
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}
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loRaFEMControl.setLNAEnable(enable);
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loRaFEMControl.setRxModeEnable();
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return true;
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}
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bool HeltecV4Board::canControlLoRaFemLna() const {
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return loRaFEMControl.isLnaCanControl();
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}
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bool HeltecV4Board::isLoRaFemLnaEnabled() const {
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return loRaFEMControl.isLNAEnabled();
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}
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