Merge pull request #208 from cod3doomy/dev

updated: t-beam supreme sx1262 to be merged
This commit is contained in:
ripplebiz
2025-04-21 16:23:06 +10:00
committed by GitHub
7 changed files with 443 additions and 3 deletions

View File

@@ -0,0 +1,51 @@
{
"build": {
"arduino":{
"ldscript": "esp32s3_out.ld",
"partitions": "default.csv",
"memory_type": "qio_qspi"
},
"core": "esp32",
"extra_flags": [
"-DARDUINO_USB_MODE=1",
"-DARDUINO_USB_CDC_ON_BOOT=1",
"-DARDUINO_RUNNING_CORE=1",
"-DARDUINO_EVENT_RUNNING_CORE=1"
],
"f_cpu": "240000000L",
"f_flash": "80000000L",
"flash_mode": "qio",
"hwids": [
[
"0x303A",
"0x1001"
]
],
"mcu": "esp32s3",
"variant": "esp32s3"
},
"connectivity": [
"wifi"
],
"debug": {
"default_tool": "esp-builtin",
"onboard_tools": [
"esp-builtin"
],
"openocd_target": "esp32s3.cfg"
},
"frameworks": [
"arduino",
"espidf"
],
"name": "LilyGo T-Beam supreme (8MB Flash 8MB PSRAM)",
"upload": {
"flash_size": "8MB",
"maximum_ram_size": 327680,
"maximum_size": 8388608,
"require_upload_port": true,
"speed": 460800
},
"url": "https://www.lilygo.cc/products/t-beamsupreme-m",
"vendor": "LilyGo"
}

View File

@@ -59,4 +59,4 @@ build_flags = ${nrf52_base.build_flags}
lib_deps =
${nrf52_base.lib_deps}
rweather/Crypto @ ^0.4.0
https://github.com/adafruit/Adafruit_nRF52_Arduino
https://github.com/adafruit/Adafruit_nRF52_Arduino

View File

@@ -1,6 +1,7 @@
#include "AutoDiscoverRTCClock.h"
#include "RTClib.h"
#include <Melopero_RV3028.h>
#include "pcf8563.h"
static RTC_DS3231 rtc_3231;
static bool ds3231_success = false;
@@ -8,8 +9,12 @@ static bool ds3231_success = false;
static Melopero_RV3028 rtc_rv3028;
static bool rv3028_success = false;
static RTC_PCF8563 rtc_8563;
static bool rtc_8563_success = false;
#define DS3231_ADDRESS 0x68
#define RV3028_ADDRESS 0x52
#define PCF8563_ADDRESS 0x51
bool AutoDiscoverRTCClock::i2c_probe(TwoWire& wire, uint8_t addr) {
wire.beginTransmission(addr);
@@ -28,6 +33,9 @@ void AutoDiscoverRTCClock::begin(TwoWire& wire) {
rtc_rv3028.set24HourMode(); // Set the device to use the 24hour format (default) instead of the 12 hour format
rv3028_success = true;
}
if(i2c_probe(wire,PCF8563_ADDRESS)){
rtc_8563_success = rtc_8563.begin(&wire);
}
}
uint32_t AutoDiscoverRTCClock::getCurrentTime() {
@@ -44,6 +52,9 @@ uint32_t AutoDiscoverRTCClock::getCurrentTime() {
rtc_rv3028.getSecond()
).unixtime();
}
if(rtc_8563_success){
return rtc_8563.now().unixtime();
}
return _fallback->getCurrentTime();
}
@@ -52,9 +63,10 @@ void AutoDiscoverRTCClock::setCurrentTime(uint32_t time) {
rtc_3231.adjust(DateTime(time));
} else if (rv3028_success) {
auto dt = DateTime(time);
uint8_t weekday = (dt.day() + (uint16_t)((2.6 * dt.month()) - 0.2) - (2 * (dt.year() / 100)) + dt.year() + (uint16_t)(dt.year() / 4) + (uint16_t)(dt.year() / 400)) % 7;
uint8_t weekday = (dt.day() + (uint16_t)((2.6 * dt.month()) - 0.2) - (2 * (dt.year() / 100)) + dt.year() + (uint16_t)(dt.year() / 4) + (uint16_t)(dt.year() / 400)) % 7;
rtc_rv3028.setTime(dt.year(), dt.month(), weekday, dt.day(), dt.hour(), dt.minute(), dt.second());
} else if (rtc_8563_success) {
rtc_8563.adjust(DateTime(time));
} else {
_fallback->setCurrentTime(time);
}

View File

@@ -0,0 +1,106 @@
#pragma once
#include "ESP32Board.h"
#include <driver/rtc_io.h>
#include <Wire.h>
#include <Arduino.h>
#include "XPowersLib.h"
// LoRa radio module pins for TBeam S3 Supreme
#define P_LORA_DIO_1 1 //SX1262 IRQ pin
#define P_LORA_NSS 10 //SX1262 SS pin
#define P_LORA_RESET 5 //SX1262 Rest pin
#define P_LORA_BUSY 4 //SX1262 Busy pin
#define P_LORA_SCLK 12 //SX1262 SCLK pin
#define P_LORA_MISO 13 //SX1262 MISO pin
#define P_LORA_MOSI 11 //SX1262 MOSI pin
#define PIN_BOARD_SDA 17 //SDA for OLED, BME280, and QMC6310U (0x1C)
#define PIN_BOARD_SCL 18 //SCL for OLED, BME280, and QMC6310U (0x1C)
#define PIN_BOARD_SDA1 42 //SDA for PMU and PFC8563 (RTC)
#define PIN_BOARD_SCL1 41 //SCL for PMU and PFC8563 (RTC)
#define PIN_PMU_IRQ 40 //IRQ pin for PMU
#define PIN_USER_BTN 0
#define P_BOARD_SPI_MOSI 35 //SPI for SD Card and QMI8653 (IMU)
#define P_BOARD_SPI_MISO 37 //SPI for SD Card and QMI8653 (IMU)
#define P_BOARD_SPI_SCK 36 //SPI for SD Card and QMI8653 (IMU)
#define P_BPARD_SPI_CS 47 //SPI for SD Card and QMI8653 (IMU)
#define P_BOARD_IMU_CS 34 //Pin for QMI8653 (IMU) CS
#define P_BOARD_IMU_INT 33 //IMU Int pin
#define P_BOARD_RTC_INT 14 //RTC Int pin
#define P_GPS_RX 9 //GPS RX pin
#define P_GPS_TX 8 //GPS TX pin
#define P_GPS_WAKE 7 //GPS Wakeup pin
#define P_GPS_1PPS 6 //GPS 1PPS pin
//I2C Wire addresses
#define I2C_BME280_ADD 0x76 //BME280 sensor I2C address on Wire
#define I2C_OLED_ADD 0x3C //SH1106 OLED I2C address on Wire
#define I2C_QMC6310U_ADD 0x1C //QMC6310U mag sensor I2C address on Wire
//I2C Wire1 addresses
#define I2C_RTC_ADD 0x51 //RTC I2C address on Wire1
#define I2C_PMU_ADD 0x34 //AXP2101 I2C address on Wire1
class TBeamS3SupremeBoard : public ESP32Board {
public:
void begin() {
bool power_init();
ESP32Board::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 enterDeepSleep(uint32_t secs, int pin_wake_btn = -1) {
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!
}
uint16_t getBattMilliVolts() override {
return 0;
}
uint16_t getBattPercent();
const char* getManufacturerName() const override {
return "LilyGo T-Beam S3 Supreme SX1262";
}
};

View File

@@ -0,0 +1,72 @@
[T_Beam_S3_Supreme_SX1262]
extends = esp32_base
board = t_beams3_supreme ; LILYGO T-Beam Supreme ESP32S3 with SX1262
build_flags =
${esp32_base.build_flags}
-I variants/lilygo_tbeam_supreme_SX1262
-D LORA_TX_POWER=22
-D RADIO_CLASS=CustomSX1262
-D WRAPPER_CLASS=CustomSX1262Wrapper
;-D DISPLAY_CLASS=SSD1306Display ;Needs to be modified for SH1106
-D SX126X_RX_BOOSTED_GAIN=1
build_src_filter = ${esp32_base.build_src_filter}
+<../variants/lilygo_tbeam_supreme_SX1262>
board_build.partitions = min_spiffs.csv ; get around 4mb flash limit
lib_deps =
${esp32_base.lib_deps}
lewisxhe/PCF8563_Library@^1.0.1
lewisxhe/XPowersLib @ ^0.2.7
;adafruit/Adafruit SSD1306 @ ^2.5.13
; === LILYGO T-Beam S3 Supreme with SX1262 environments ===
[env:T_Beam_S3_Supreme_SX1262_repeater]
extends = T_Beam_S3_Supreme_SX1262
build_flags =
${T_Beam_S3_Supreme_SX1262.build_flags}
-D ADVERT_NAME='"T-Beam S3 Supreme SX1262 Repeater"'
-D ADVERT_LAT=0
-D ADVERT_LON=0
-D ADMIN_PASSWORD='"password"'
; -D MESH_PACKET_LOGGING=1
; -D MESH_DEBUG=1
build_src_filter = ${T_Beam_S3_Supreme_SX1262.build_src_filter}
+<../examples/simple_repeater>
lib_deps =
${T_Beam_S3_Supreme_SX1262.lib_deps}
${esp32_ota.lib_deps}
[env:T_Beam_S3_Supreme_SX1262_room_server]
extends = T_Beam_S3_Supreme_SX1262
build_flags =
${T_Beam_S3_Supreme_SX1262.build_flags}
-D ADVERT_NAME='"T_Beam_S3_Supreme_SX1262 Room"'
-D ADVERT_LAT=0.0
-D ADVERT_LON=0.0
-D ADMIN_PASSWORD='"password"'
-D ROOM_PASSWORD='"hello"'
; -D MESH_PACKET_LOGGING=1
; -D MESH_DEBUG=1
build_src_filter = ${T_Beam_S3_Supreme_SX1262.build_src_filter}
+<../examples/simple_room_server>
lib_deps =
${T_Beam_S3_Supreme_SX1262.lib_deps}
${esp32_ota.lib_deps}
[env:T_Beam_S3_Supreme_SX1262_companion_radio_ble]
extends = T_Beam_S3_Supreme_SX1262
build_flags =
${T_Beam_S3_Supreme_SX1262.build_flags}
-D MAX_CONTACTS=100
-D MAX_GROUP_CHANNELS=1
-D BLE_PIN_CODE=123456
-D BLE_DEBUG_LOGGING=1
; -D ENABLE_PRIVATE_KEY_IMPORT=1
; -D ENABLE_PRIVATE_KEY_EXPORT=1
-D MESH_PACKET_LOGGING=8
-D MESH_DEBUG=1
build_src_filter = ${T_Beam_S3_Supreme_SX1262.build_src_filter}
+<helpers/esp32/*.cpp>
+<../examples/companion_radio>
lib_deps =
${T_Beam_S3_Supreme_SX1262.lib_deps}
densaugeo/base64 @ ~1.4.0

View File

@@ -0,0 +1,182 @@
#include <Arduino.h>
#include "target.h"
TBeamS3SupremeBoard board;
// Using PMU AXP2102
XPowersAXP2101 PMU;
bool pmuIntFlag;
#ifndef LORA_CR
#define LORA_CR 5
#endif
#if defined(P_LORA_SCLK)
static SPIClass spi;
RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_1, P_LORA_RESET, P_LORA_BUSY, spi);
#else
RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_1, P_LORA_RESET, P_LORA_BUSY);
#endif
WRAPPER_CLASS radio_driver(radio, board);
ESP32RTCClock fallback_clock;
AutoDiscoverRTCClock rtc_clock(fallback_clock);
static void setPMUIntFlag(){
pmuIntFlag = true;
}
bool power_init() {
//Start up Wire1 with PMU address
//Serial.println("Starting Wire1 for PMU");
//Wire1.begin(I2C_PMU_ADD);
//Wire1.begin(PIN_BOARD_SDA1,PIN_BOARD_SCL1);
//Set LED to indicate charge state
Serial.println("Setting charge led");
PMU.setChargingLedMode(XPOWERS_CHG_LED_CTRL_CHG);
//Set up PMU interrupts
Serial.println("Setting up PMU interrupts");
pinMode(PIN_PMU_IRQ,INPUT_PULLUP);
attachInterrupt(PIN_PMU_IRQ,setPMUIntFlag,FALLING);
//GPS
Serial.println("Setting and enabling a-ldo4 for GPS");
PMU.setALDO4Voltage(3300);
PMU.enableALDO4(); //disable to save power
//Lora
Serial.println("Setting and enabling a-ldo3 for LoRa");
PMU.setALDO3Voltage(3300);
PMU.enableALDO3();
//To avoid SPI bus issues during power up, reset OLED, sensor, and SD card supplies
Serial.println("Reset a-ldo1&2 and b-ldo1");
if(ESP_SLEEP_WAKEUP_UNDEFINED == esp_sleep_get_wakeup_cause()){
PMU.enableALDO1();
PMU.enableALDO2();
PMU.enableBLDO1();
delay(250);
}
//BME280 and OLED
Serial.println("Setting and enabling a-ldo1 for oled");
PMU.setALDO1Voltage(3300);
PMU.enableALDO1();
//QMC6310U
Serial.println("Setting and enabling a-ldo2 for QMC");
PMU.setALDO2Voltage(3300);
PMU.enableALDO2(); //disable to save power
//SD card
Serial.println("Setting and enabling b-ldo2 for SD card");
PMU.setBLDO1Voltage(3300);
PMU.enableBLDO1();
//Out to header pins
Serial.println("Setting and enabling b-ldo2 for output to header");
PMU.setBLDO2Voltage(3300);
PMU.enableBLDO2();
Serial.println("Setting and enabling dcdc4 for output to header");
PMU.setDC4Voltage(XPOWERS_AXP2101_DCDC4_VOL2_MAX); //1.8V
PMU.enableDC4();
Serial.println("Setting and enabling dcdc5 for output to header");
PMU.setDC5Voltage(3300);
PMU.enableDC5();
//Other power rails
Serial.println("Setting and enabling dcdc3 for ?");
PMU.setDC3Voltage(3300); //doesn't go anywhere in the schematic??
PMU.enableDC3();
//Unused power rails
Serial.println("Disabling unused supplies dcdc2, dldo1 and dldo2");
PMU.disableDC2();
PMU.disableDLDO1();
PMU.disableDLDO2();
//Set charge current to 300mA
Serial.println("Setting battery charge current limit and voltage");
PMU.setChargerConstantCurr(XPOWERS_AXP2101_CHG_CUR_300MA);
PMU.setChargeTargetVoltage(XPOWERS_AXP2101_CHG_VOL_4V2);
//enable battery voltage measurement
Serial.println("Enabling battery measurement");
PMU.enableBattVoltageMeasure();
//Reset and re-enable PMU interrupts
Serial.println("Re-enable interrupts");
PMU.disableIRQ(XPOWERS_AXP2101_ALL_IRQ);
PMU.clearIrqStatus();
PMU.enableIRQ(
XPOWERS_AXP2101_BAT_INSERT_IRQ | XPOWERS_AXP2101_BAT_REMOVE_IRQ | //Battery interrupts
XPOWERS_AXP2101_VBUS_INSERT_IRQ | XPOWERS_AXP2101_VBUS_REMOVE_IRQ | //VBUS interrupts
XPOWERS_AXP2101_PKEY_SHORT_IRQ | XPOWERS_AXP2101_PKEY_LONG_IRQ | //Power Key interrupts
XPOWERS_AXP2101_BAT_CHG_DONE_IRQ | XPOWERS_AXP2101_BAT_CHG_START_IRQ //Charging interrupts
);
//Set the power key off press time
PMU.setPowerKeyPressOffTime(XPOWERS_POWEROFF_4S);
return true;
}
bool radio_init() {
fallback_clock.begin();
Wire1.begin(PIN_BOARD_SDA1,PIN_BOARD_SCL1);
rtc_clock.begin(Wire1);
#ifdef SX126X_DIO3_TCXO_VOLTAGE
float tcxo = SX126X_DIO3_TCXO_VOLTAGE;
#else
float tcxo = 1.6f;
#endif
#if defined(P_LORA_SCLK)
spi.begin(P_LORA_SCLK, P_LORA_MISO, P_LORA_MOSI);
#endif
int status = radio.begin(LORA_FREQ, LORA_BW, LORA_SF, LORA_CR, RADIOLIB_SX126X_SYNC_WORD_PRIVATE, LORA_TX_POWER, 8, tcxo);
if (status != RADIOLIB_ERR_NONE) {
Serial.print("ERROR: radio init failed: ");
Serial.println(status);
return false; // fail
}
radio.setCRC(1);
return true; // success
}
uint16_t getBattPercent() {
//Read the PMU fuel guage for battery %
uint16_t battPercent = PMU.getBatteryPercent();
return battPercent;
}
uint32_t radio_get_rng_seed() {
return radio.random(0x7FFFFFFF);
}
void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr) {
radio.setFrequency(freq);
radio.setSpreadingFactor(sf);
radio.setBandwidth(bw);
radio.setCodingRate(cr);
}
void radio_set_tx_power(uint8_t dbm) {
radio.setOutputPower(dbm);
}
mesh::LocalIdentity radio_new_identity() {
RadioNoiseListener rng(radio);
return mesh::LocalIdentity(&rng); // create new random identity
}

View File

@@ -0,0 +1,17 @@
#pragma once
#include <RadioLib.h>
#include <helpers/RadioLibWrappers.h>
#include <helpers/TBeamS3SupremeBoard.h>
#include <helpers/CustomSX1262Wrapper.h>
#include <helpers/AutoDiscoverRTCClock.h>
extern TBeamS3SupremeBoard board;
extern WRAPPER_CLASS radio_driver;
extern AutoDiscoverRTCClock rtc_clock;
bool radio_init();
uint32_t radio_get_rng_seed();
void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr);
void radio_set_tx_power(uint8_t dbm);
mesh::LocalIdentity radio_new_identity();