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#include <Arduino.h> // needed for PlatformIO
#include <Mesh.h>
#include "MyMesh.h"
// Believe it or not, this std C function is busted on some platforms!
static uint32_t _atoi(const char* sp) {
uint32_t n = 0;
while (*sp && *sp >= '0' && *sp <= '9') {
n *= 10;
n += (*sp++ - '0');
}
return n;
}
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#if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
#include <InternalFileSystem.h>
#if defined(QSPIFLASH)
#include <CustomLFS_QSPIFlash.h>
DataStore store(InternalFS, QSPIFlash, rtc_clock);
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#else
#if defined(EXTRAFS)
#include <CustomLFS.h>
CustomLFS ExtraFS(0xD4000, 0x19000, 128);
DataStore store(InternalFS, ExtraFS, rtc_clock);
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#else
DataStore store(InternalFS, rtc_clock);
#endif
#endif
#elif defined(RP2040_PLATFORM)
#include <LittleFS.h>
DataStore store(LittleFS, rtc_clock);
#elif defined(ESP32)
#include <SPIFFS.h>
DataStore store(SPIFFS, rtc_clock);
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#endif
#ifdef ESP32
#ifdef WIFI_SSID
#include <helpers/esp32/SerialWifiInterface.h>
SerialWifiInterface serial_interface;
#ifndef TCP_PORT
#define TCP_PORT 5000
#endif
#elif defined(BLE_PIN_CODE)
#include <helpers/esp32/SerialBLEInterface.h>
SerialBLEInterface serial_interface;
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#elif defined(SERIAL_RX)
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
HardwareSerial companion_serial(1);
#else
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
#endif
#elif defined(RP2040_PLATFORM)
//#ifdef WIFI_SSID
// #include <helpers/rp2040/SerialWifiInterface.h>
// SerialWifiInterface serial_interface;
// #ifndef TCP_PORT
// #define TCP_PORT 5000
// #endif
// #elif defined(BLE_PIN_CODE)
// #include <helpers/rp2040/SerialBLEInterface.h>
// SerialBLEInterface serial_interface;
#if defined(SERIAL_RX)
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
HardwareSerial companion_serial(1);
#else
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
#endif
#elif defined(NRF52_PLATFORM)
#ifdef DUAL_SERIAL
#include <helpers/nrf52/DualSerialInterface.h>
DualSerialInterface serial_interface;
#elif defined(BLE_PIN_CODE)
#include <helpers/nrf52/SerialBLEInterface.h>
SerialBLEInterface serial_interface;
#else
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
#endif
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#elif defined(STM32_PLATFORM)
#include <helpers/ArduinoSerialInterface.h>
ArduinoSerialInterface serial_interface;
#else
#error "need to define a serial interface"
#endif
/* GLOBAL OBJECTS */
#ifdef DISPLAY_CLASS
#include "UITask.h"
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UITask ui_task(&board, &serial_interface);
#endif
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StdRNG fast_rng;
SimpleMeshTables tables;
MyMesh the_mesh(radio_driver, fast_rng, rtc_clock, tables, store
#ifdef DISPLAY_CLASS
, &ui_task
#endif
);
/* END GLOBAL OBJECTS */
void halt() {
while (1) ;
}
/* WIFI RECONNECT TRACKERS */
#if defined(ESP32) && defined(WIFI_SSID)
bool wifi_needs_reconnect = false;
unsigned long last_wifi_reconnect_attempt = 0;
#endif
void setup() {
Serial.begin(115200);
board.begin();
#ifdef DISPLAY_CLASS
DisplayDriver* disp = NULL;
if (display.begin()) {
disp = &display;
disp->startFrame();
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#ifdef ST7789
disp->setTextSize(2);
#endif
disp->drawTextCentered(disp->width() / 2, 28, "Loading...");
disp->endFrame();
}
#endif
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if (!radio_init()) { halt(); }
fast_rng.begin(radio_driver.getRngSeed());
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#if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
InternalFS.begin();
#if defined(QSPIFLASH)
if (!QSPIFlash.begin()) {
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// debug output might not be available at this point, might be too early. maybe should fall back to InternalFS here?
MESH_DEBUG_PRINTLN("CustomLFS_QSPIFlash: failed to initialize");
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} else {
MESH_DEBUG_PRINTLN("CustomLFS_QSPIFlash: initialized successfully");
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}
#else
#if defined(EXTRAFS)
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ExtraFS.begin();
#endif
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#endif
store.begin();
the_mesh.begin(
#ifdef DISPLAY_CLASS
disp != NULL
#else
false
#endif
);
#ifdef DUAL_SERIAL
serial_interface.begin(BLE_NAME_PREFIX, the_mesh.getNodePrefs()->node_name, the_mesh.getBLEPin(), Serial);
#elif defined(BLE_PIN_CODE)
serial_interface.begin(BLE_NAME_PREFIX, the_mesh.getNodePrefs()->node_name, the_mesh.getBLEPin());
#else
serial_interface.begin(Serial);
#endif
the_mesh.startInterface(serial_interface);
#elif defined(RP2040_PLATFORM)
LittleFS.begin();
store.begin();
the_mesh.begin(
#ifdef DISPLAY_CLASS
disp != NULL
#else
false
#endif
);
//#ifdef WIFI_SSID
// WiFi.begin(WIFI_SSID, WIFI_PWD);
// serial_interface.begin(TCP_PORT);
// #elif defined(BLE_PIN_CODE)
// char dev_name[32+16];
// sprintf(dev_name, "%s%s", BLE_NAME_PREFIX, the_mesh.getNodeName());
// serial_interface.begin(dev_name, the_mesh.getBLEPin());
#if defined(SERIAL_RX)
companion_serial.setPins(SERIAL_RX, SERIAL_TX);
companion_serial.begin(115200);
serial_interface.begin(companion_serial);
#else
serial_interface.begin(Serial);
#endif
the_mesh.startInterface(serial_interface);
#elif defined(ESP32)
SPIFFS.begin(true);
store.begin();
the_mesh.begin(
#ifdef DISPLAY_CLASS
disp != NULL
#else
false
#endif
);
#ifdef WIFI_SSID
board.setInhibitSleep(true); // prevent sleep when WiFi is active
WiFi.setAutoReconnect(true);
WiFi.onEvent([](WiFiEvent_t event, WiFiEventInfo_t info){
if (event == ARDUINO_EVENT_WIFI_STA_DISCONNECTED) {
WIFI_DEBUG_PRINTLN("WiFi disconnected. Flagging for reconnect...");
wifi_needs_reconnect = true;
} else if (event == ARDUINO_EVENT_WIFI_STA_GOT_IP) {
WIFI_DEBUG_PRINTLN("WiFi connected successfully!");
wifi_needs_reconnect = false;
}
});
WiFi.begin(WIFI_SSID, WIFI_PWD);
serial_interface.begin(TCP_PORT);
#elif defined(BLE_PIN_CODE)
serial_interface.begin(BLE_NAME_PREFIX, the_mesh.getNodePrefs()->node_name, the_mesh.getBLEPin());
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#elif defined(SERIAL_RX)
companion_serial.setPins(SERIAL_RX, SERIAL_TX);
companion_serial.begin(115200);
serial_interface.begin(companion_serial);
#else
serial_interface.begin(Serial);
#endif
the_mesh.startInterface(serial_interface);
#else
#error "need to define filesystem"
#endif
store.restoreRTCTime();
sensors.begin();
#if ENV_INCLUDE_GPS == 1
the_mesh.applyGpsPrefs();
#endif
#ifdef DISPLAY_CLASS
// Apply saved brightness as soon as prefs are available so the tail of
// the loading screen is not stuck at full brightness.
if (disp && the_mesh.getNodePrefs())
disp->setBrightness(the_mesh.getNodePrefs()->display_brightness);
ui_task.begin(disp, &sensors, the_mesh.getNodePrefs()); // still want to pass this in as dependency, as prefs might be moved
#endif
#ifdef NRF52_PLATFORM
NRF_WDT->CONFIG = 0x01; // run during sleep; pause during debug halt
NRF_WDT->CRV = 32768*30-1; // 30 second timeout
NRF_WDT->RREN = 0x01; // enable reload register 0
NRF_WDT->TASKS_START = 1;
#endif
board.onBootComplete();
}
void loop() {
#ifdef NRF52_PLATFORM
NRF_WDT->RR[0] = 0x6E524635UL; // pet watchdog
#endif
the_mesh.loop();
sensors.loop();
#ifdef DISPLAY_CLASS
ui_task.loop();
#endif
rtc_clock.tick();
Merge upstream/main (v1.16.0) into wio-unified Merge 254 upstream commits. Highlights relevant to the Wio fork: native NRF52 companion power-saving (sleep when !hasPendingWork), preamble 16->32 for SF<9, generic sensor-registration model, CMD_SEND_RAW_PACKET, isEink() display abstraction, KEEP_DISPLAY_ON_USB, contacts-sync/transient fixes. Conflicts resolved (11 files): - buzzer.h/.cpp: keep NRF52 include guard + our begin()->startup(); fold in upstream doc comment. - platformio (wio + eink): keep our slim env layout, add upstream kiss_modem env (+ debug_tool=stlink on eink ble). - GxEPDDisplay.h: take upstream isEink() override. - EnvironmentSensorManager.h: take upstream's wider #if guard. - DataStore.cpp: take upstream saveContacts(filter) signature, keep our ::openWrite (member openWrite would shadow the global 2-arg overload). - main.cpp: keep our watchdog init + add board.onBootComplete(); adopt upstream's `if(!hasPendingWork()) sleep` loop. - MyMesh.h: version -> v1.16-solo.0, build date 6 Jun 2026. - MyMesh.cpp: keep both CMD codes (SCREENSHOT 66 + RAW_PACKET 65), both field inits, both handlers, our screenshot fns + upstream saveContacts/save_filter, upstream hasPendingWork() + our MyMeshBot include. - UITask.cpp: keep our solo splash/clock page/snprintf/buzzer init; merge auto-off (+ opt-in KEEP_DISPLAY_ON_USB); merge low-batt shutdown (our EMA + prefs threshold + upstream's !isExternalPowered() guard and eink-aware delay). Post-merge drift fixes (upstream API/architecture changes, not conflicts): - applyTxPower(): radio_set_tx_power() removed upstream -> radio_driver.setTxPower(). - Sensor refactor dropped the per-sensor *_initialized flags our getAvailableLPPTypes() relied on; removed that override and the SENSORS page now derives available LPP types from the populated sensors_lpp buffer. README kept ours via .gitattributes merge=ours. Builds verified on all 5 Wio envs (dual, eink dual, radio_ble, dual_dev, eink_dual_dev). Not yet hardware-verified. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-06 17:21:41 +02:00
// CPU sleeps until next interrupt (radio, timer, BLE) — but only when the
// mesh has no pending work, so queued TX/processing isn't delayed.
if (!the_mesh.hasPendingWork()) {
#if defined(NRF52_PLATFORM)
board.sleep(0); // nrf ignores seconds param, sleeps whenever possible
#endif
}
#if defined(ESP32) && defined(WIFI_SSID)
// Safely attempt to reconnect every 10 seconds if flagged
if (wifi_needs_reconnect && (millis() - last_wifi_reconnect_attempt > 10000)) {
WIFI_DEBUG_PRINTLN("Attempting manual WiFi reconnect...");
WiFi.disconnect();
WiFi.reconnect();
last_wifi_reconnect_attempt = millis();
}
#endif
}