Files
MeshCore-Solo/examples/simple_repeater/main.cpp
T
JakubandClaude Sonnet 5 9cfb58a60b feat(sim): two-device messaging + repeater relay over a JS ether
Ports examples/simple_repeater to variants/sim/ (new sim_simple_repeater
native env + build_wasm_repeater.sh) and adds a JS "ether"
(variants/sim/web/mesh.html) that bridges two real companion_radio WASM
instances through a real simple_repeater instance in a strict A<->R<->B
topology (no direct A-B link), proving genuine relay routing rather than
a shortcut.

Also fixes multi-instance issues Phase 2's single-instance design never
surfaced: SimDisplayDriver's canvas context/id caching was keyed on a
single global instead of per-instance, and both wasm builds were missing
_malloc/_free/HEAPU8 runtime exports needed for the ether to poke bytes
into an instance's memory.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
2026-09-03 09:14:15 +02:00

259 lines
7.8 KiB
C++

#include <Arduino.h> // needed for PlatformIO
#include <Mesh.h>
#include "MyMesh.h"
#ifdef DISPLAY_CLASS
#include "UITask.h"
static UITask ui_task(display);
#endif
#ifdef ETHERNET_ENABLED
#define ETHERNET_CLI_BANNER "MeshCore Repeater CLI"
#include <helpers/nrf52/EthernetCLI.h>
#endif
StdRNG fast_rng;
SimpleMeshTables tables;
MyMesh the_mesh(board, radio_driver, *new ArduinoMillis(), fast_rng, rtc_clock, tables);
void halt() {
while (1) ;
}
#if defined(SIM_PLATFORM) && defined(__EMSCRIPTEN__)
#include <emscripten.h>
// Phase 3 sim ether: a JS-visible "did this repeater just relay a packet"
// hook. MyMesh (src/Mesh.h's Mesh base class) already keeps an exact count
// of packets actually re-transmitted in the repeater/transport role --
// n_forwarded, incremented at the real ACTION_RETRANSMIT decision points in
// src/Mesh.cpp (routeRecvPacket()) and decremented in onRetransmitCancelled()
// if an overhear cancels a queued retransmit before it goes out -- and
// already exposes it publicly as getNumForwarded() (the same number
// DiagnosticsScreen.h prints on a real companion_radio's screen). Rather
// than re-deriving "was this a relay" from TX/RX byte timing (fragile,
// and duplicates logic the real Mesh class already gets right, including
// the overhear-cancellation edge case), this just exports that exact
// counter for JS to poll and diff on its own ether tick -- zero changes
// to any shared/platform-agnostic src/ file.
extern "C" EMSCRIPTEN_KEEPALIVE uint32_t sim_repeater_get_relay_count() {
return the_mesh.getNumForwarded();
}
// Same "has setup() actually finished" readiness flag as
// examples/companion_radio/main.cpp -- see that file's comment for why
// this is needed instead of a fixed post-ready delay.
static bool g_sim_ready = false;
extern "C" EMSCRIPTEN_KEEPALIVE int sim_is_ready() {
return g_sim_ready ? 1 : 0;
}
#endif
static char command[160];
#ifdef ETHERNET_ENABLED
static char ethernet_command[160];
#endif
// For power saving
unsigned long POWERSAVING_FIRSTSLEEP_SECS = 120; // The first sleep (if enabled) from boot
#if defined(PIN_USER_BTN) && defined(_SEEED_SENSECAP_SOLAR_H_)
static unsigned long userBtnDownAt = 0;
#define USER_BTN_HOLD_OFF_MILLIS 1500
#endif
void setup() {
Serial.begin(115200);
#ifndef SIM_PLATFORM
// Skip this one-shot boot pause in the sim: under Emscripten it would
// synchronously block the browser's single JS thread for a full second
// (Arduino.h's sim delay() is a real std::this_thread::sleep_for(), and
// this runs before emscripten_set_main_loop ever hands control back) --
// harmless on a real board's own thread, unnecessary UX friction here.
delay(1000);
#endif
board.begin();
#ifdef HAS_EXTERNAL_WATCHDOG
external_watchdog.begin();
#endif
#if defined(MESH_DEBUG) && defined(NRF52_PLATFORM)
// give some extra time for serial to settle so
// boot debug messages can be seen on terminal
delay(5000);
#endif
#ifdef DISPLAY_CLASS
if (display.begin()) {
display.startFrame();
display.setCursor(0, 0);
display.print("Please wait...");
display.endFrame();
}
#endif
if (!radio_init()) {
MESH_DEBUG_PRINTLN("Radio init failed!");
halt();
}
fast_rng.begin(radio_driver.getRngSeed());
FILESYSTEM* fs;
#if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
InternalFS.begin();
fs = &InternalFS;
IdentityStore store(InternalFS, "");
#elif defined(ESP32)
SPIFFS.begin(true);
fs = &SPIFFS;
IdentityStore store(SPIFFS, "/identity");
#elif defined(RP2040_PLATFORM)
LittleFS.begin();
fs = &LittleFS;
IdentityStore store(LittleFS, "/identity");
store.begin();
#elif defined(SIM_PLATFORM)
// Real files under ./sim_data_repeater/ (relative to the process's cwd,
// native; or the Emscripten virtual FS, wasm) -- deliberately a DIFFERENT
// root than examples/companion_radio/main.cpp's "./sim_data" so a
// repeater instance's identity can never collide with a companion
// instance's, even if both happened to run from the same cwd (native) or
// the same page (wasm, see variants/sim/sim_main.cpp's SIM_FS_ROOT).
// "static" (not a plain local) so sim_fs outlives setup() -- IdentityStore
// only stores a pointer to it, same reasoning as the ui_task static above.
static SimFS sim_fs("./sim_data_repeater");
fs = &sim_fs;
IdentityStore store(sim_fs, "/identity");
store.begin();
#else
#error "need to define filesystem"
#endif
if (!store.load("_main", the_mesh.self_id)) {
MESH_DEBUG_PRINTLN("Generating new keypair");
the_mesh.self_id = radio_new_identity(); // create new random identity
int count = 0;
while (count < 10 && (the_mesh.self_id.pub_key[0] == 0x00 || the_mesh.self_id.pub_key[0] == 0xFF)) { // reserved id hashes
the_mesh.self_id = radio_new_identity(); count++;
}
store.save("_main", the_mesh.self_id);
}
Serial.print("Repeater ID: ");
mesh::Utils::printHex(Serial, the_mesh.self_id.pub_key, PUB_KEY_SIZE); Serial.println();
command[0] = 0;
#ifdef ETHERNET_ENABLED
ethernet_command[0] = 0;
#endif
sensors.begin();
the_mesh.begin(fs);
#ifdef DISPLAY_CLASS
ui_task.begin(the_mesh.getNodePrefs(), FIRMWARE_BUILD_DATE, FIRMWARE_VERSION);
#endif
#ifdef ETHERNET_ENABLED
ethernet_start_task();
#endif
// send out initial zero hop Advertisement to the mesh
#if ENABLE_ADVERT_ON_BOOT == 1
the_mesh.sendSelfAdvertisement(16000, false);
#endif
board.onBootComplete();
#if defined(SIM_PLATFORM) && defined(__EMSCRIPTEN__)
g_sim_ready = true;
#endif
}
void loop() {
// Handle Serial CLI
int len = strlen(command);
while (Serial.available() && len < sizeof(command)-1) {
char c = Serial.read();
if (c != '\n') {
command[len++] = c;
command[len] = 0;
Serial.print(c);
}
if (c == '\r') break;
}
if (len == sizeof(command)-1) { // command buffer full
command[sizeof(command)-1] = '\r';
}
if (len > 0 && command[len - 1] == '\r') { // received complete line
Serial.print('\n');
command[len - 1] = 0; // replace newline with C string null terminator
char reply[160];
reply[0] = 0;
#ifdef ETHERNET_ENABLED
if (!ethernet_handle_command(command, reply)) {
the_mesh.handleCommand(0, command, reply);
}
#else
the_mesh.handleCommand(0, command, reply); // NOTE: there is no sender_timestamp via serial!
#endif
if (reply[0]) {
Serial.print(" -> "); Serial.println(reply);
}
command[0] = 0; // reset command buffer
}
#ifdef ETHERNET_ENABLED
ethernet_loop_maintain();
if (ethernet_read_line(ethernet_command, sizeof(ethernet_command))) {
char reply[160];
reply[0] = 0;
if (!ethernet_handle_command(ethernet_command, reply)) {
the_mesh.handleCommand(0, ethernet_command, reply);
}
ethernet_send_reply(reply);
ethernet_command[0] = 0;
}
#endif
#if defined(PIN_USER_BTN) && defined(_SEEED_SENSECAP_SOLAR_H_) && !defined(DISPLAY_CLASS)
// Hold the user button to power off the SenseCAP Solar repeater.
int btnState = digitalRead(PIN_USER_BTN);
if (btnState == LOW) {
if (userBtnDownAt == 0) {
userBtnDownAt = millis();
} else if ((unsigned long)(millis() - userBtnDownAt) >= USER_BTN_HOLD_OFF_MILLIS) {
Serial.println("Powering off...");
board.powerOff(); // does not return
}
} else {
userBtnDownAt = 0;
}
#endif
the_mesh.loop();
sensors.loop();
#ifdef DISPLAY_CLASS
ui_task.loop();
#endif
rtc_clock.tick();
#ifdef HAS_EXTERNAL_WATCHDOG
external_watchdog.loop();
#endif
if (the_mesh.getNodePrefs()->powersaving_enabled && !the_mesh.hasPendingWork()) {
#if defined(NRF52_PLATFORM)
board.sleep(0); // nrf ignores seconds param, sleeps whenever possible
#else
if (the_mesh.millisHasNowPassed(POWERSAVING_FIRSTSLEEP_SECS * 1000)) { // To check if it is time to sleep
board.sleep(30); // Sleep. Wake up after a while or when receiving a LoRa packet
}
#endif
}
}