feat: RTC rebrand + on-chip Meshtastic decode + acid display

- Rebrand to RTC (Reticulum / meshTastic / meshCore); Meshtastic row = T.
- On-chip Meshtastic decode (mbedtls AES-128-CTR + protobuf) surfacing text
  and node short-names, mirroring firmware/tools/meshtastic_decode.py.
- Device identity 'Reticutasticore' / 'RTC' (DEVICE_NAME) baked in for all
  three networks; boot splash shows it.
- Trippy OLED: acid smiley with a periodic spinning-striped freak-out
  (googly eyes + gaping mouth), punk 'bubble' RTC header, three live network
  rows (counts + RX blips), last-decoded line.
- Hardware-confirmed: Meshtastic + MeshCore both received (0x12 MeshCore
  sync word guess validated); Reticulum still placeholder.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
This commit is contained in:
Dorian 2026-07-01 16:23:45 +01:00
parent de4995468d
commit a284c91848
2 changed files with 198 additions and 33 deletions

View File

@ -5,20 +5,30 @@ Embedded firmware for the single-device **3-in-1**: one Heltec WiFi LoRa 32 V3
Meshtastic / MeshCore / Reticulum PHY configs. See `../docs/ARCHITECTURE.md`
§2-§3 for why Phase 1 is a time-multiplexed single radio (Option A).
## Current increment: tri-protocol RX scanner
## Current increment: RTC scanner + acid display + Meshtastic decode
`src/main.cpp` is the **first** Phase 1 step. It does not bridge, decode, or
transmit yet — it rotates the SX1262 through each network's PHY preset, listens
for a fixed dwell window, and logs every raw LoRa packet it demodulates
(length, RSSI, SNR, hex). The point is to answer the project's central open
question before building any protocol stacks: *can one re-tuned radio actually
hear all three networks?*
`src/main.cpp` rotates the single SX1262 through each network's PHY preset
(**R**eticulum / mesh**T**astic / mesh**C**ore = **RTC**), listens per dwell
window, logs every raw packet, and **decodes Meshtastic on-chip** (AES-128-CTR
via mbedtls + protobuf → text / node names). The 128×64 OLED shows an animated
acid-house UI: a smiley (that periodically freaks out — spins, stripes, eyes +
mouth open), a punk `RTC` header, three live network rows (packet counts + RX
blips), and the last decoded event.
**Validated on hardware (2026-07-01):** flashed to a Heltec V3, the scanner
`radio.begin()`'d cleanly, cycled all three presets, and received **live
Meshtastic broadcast packets** (payloads prefixed `ffffffff`) at 36 to
41 dBm during the Meshtastic dwell. The single-radio time-multiplex premise
holds. MeshCore/Reticulum windows were silent — expected, see open items below.
Device identity `Reticutasticore` / `RTC` is baked in (`DEVICE_NAME`) as the
name this device will present on all three networks once the TX/participation
layer lands — so a message addressed to it will be routable.
**Validated on hardware (2026-07-01):**
- radio inits clean, all three presets cycle, display renders.
- **Meshtastic**: live broadcast packets at 34 to 44 dBm; on-chip decode
matches the offline reference (`tools/meshtastic_decode.py`, verified against
real captures — decoded node "Arch Optiplex"/"ARCH").
- **MeshCore**: received real packets too — so the `0x12` sync-word guess is
**correct** (was an open item).
- **Reticulum**: silent — placeholder PHY config + likely no RNode nodes near.
Still RX-only: no bridging or transmit yet.
## Open items baked into the config table

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@ -2,10 +2,11 @@
// ---------------------------------------------------------------------------
// Target: Heltec WiFi LoRa 32 V3 (ESP32-S3 + single SX1262 + 128x64 SSD1306).
//
// The radio rotates through the Meshtastic / MeshCore / Reticulum PHY presets
// (RMC), listening in each dwell window and logging every raw packet it
// demodulates. The OLED shows all three networks live — R M C — behind an
// animated acid-house smiley, with per-network activity blips.
// The radio rotates through the Reticulum / meshTastic / meshCore PHY presets
// (RTC), listening in each dwell window and logging every raw packet it
// demodulates. The OLED shows all three networks live — R T C — behind an
// animated acid-house smiley, with per-network activity blips. Received
// Meshtastic packets are decoded on-chip (AES-128-CTR + protobuf).
//
// HONEST HARDWARE NOTE: the single onboard SX1262 can only be tuned to ONE
// PHY at a time (ARCHITECTURE.md §2), so "all three active" is fast time-
@ -22,6 +23,7 @@
#include <U8g2lib.h>
#include <Wire.h>
#include <math.h>
#include "mbedtls/aes.h"
// --- Heltec V3 SX1262 pin map (from the Heltec V3 schematic) ----------------
static const int PIN_LORA_NSS = 8;
@ -43,12 +45,12 @@ static const int PIN_VEXT = 36; // drives Vext rail; LOW = ON (powers OLED)
SX1262 radio = new Module(PIN_LORA_NSS, PIN_LORA_DIO1, PIN_LORA_NRST, PIN_LORA_BUSY);
U8G2_SSD1306_128X64_NONAME_F_HW_I2C oled(U8G2_R0, PIN_OLED_RST, PIN_OLED_SCL, PIN_OLED_SDA);
// --- The three PHY presets (RMC) -------------------------------------------
// --- The three PHY presets (RTC) -------------------------------------------
// Values from docs/ARCHITECTURE.md §1. Items flagged are open questions the
// scan is meant to test against reality.
struct PhyConfig {
const char* name;
char letter; // R / M / C for the display
char letter; // R / T / C for the display
float freqMHz;
float bwKHz;
uint8_t sf;
@ -58,8 +60,8 @@ struct PhyConfig {
};
static const PhyConfig CONFIGS[] = {
// Meshtastic EU868 "LongFast" — confirmed correct (received live packets).
{ "meshtastic", 'M', 869.525f, 250.0f, 11, 5, 0x2b, 16 },
// meshTastic EU868 "LongFast" — confirmed correct (received live packets).
{ "meshtastic", 'T', 869.525f, 250.0f, 11, 5, 0x2b, 16 },
// MeshCore compiled default PHY; sync word 0x12 is a GUESS (open item §1).
{ "meshcore", 'C', 869.525f, 250.0f, 11, 5, 0x12, 16 },
// Reticulum has no fixed preset; PLACEHOLDER — set to your RNS RNode config.
@ -68,6 +70,16 @@ static const PhyConfig CONFIGS[] = {
static const size_t NUM_CONFIGS = sizeof(CONFIGS) / sizeof(CONFIGS[0]);
static const uint32_t DWELL_MS = 1200; // faster cycle so all three feel live
// Device identity — this single name is what the bridge will present on ALL
// three networks once the participation/TX layer lands, so a message addressed
// to "Reticutasticore" on Meshtastic, MeshCore or Reticulum reaches this device:
// - Meshtastic: User.long_name = DEVICE_NAME, short_name = DEVICE_SHORT (<=4)
// - MeshCore: advertised contact name = DEVICE_NAME
// - Reticulum: LXMF delivery display_name = DEVICE_NAME
// (RX-only today; the constants exist now so TX inherits them with no churn.)
static const char* DEVICE_NAME = "Reticutasticore";
static const char* DEVICE_SHORT = "RTC";
// --- Runtime stats ----------------------------------------------------------
struct NetStat {
uint32_t pkts = 0;
@ -81,6 +93,11 @@ static uint32_t totalPkts = 0;
static uint32_t dwellStart = 0;
static uint32_t frame = 0;
// Last decoded human-readable event, shown along the bottom of the display.
static char lastMsg[40] = {0};
static char lastMsgNet = ' ';
static uint32_t lastMsgMs = 0;
// --- RX interrupt -----------------------------------------------------------
static volatile bool rxFlag = false;
ICACHE_RAM_ATTR static void onDio1() { rxFlag = true; }
@ -98,6 +115,77 @@ static bool applyConfig(const PhyConfig& c) {
return radio.startReceive() == RADIOLIB_ERR_NONE;
}
// --- On-chip Meshtastic decode ---------------------------------------------
// Default-channel ("LongFast") packets use AES-128-CTR with a PUBLIC key.
// Validated offline against real captured packets (firmware/tools/
// meshtastic_decode.py). Wire format: 16-byte header + encrypted Data protobuf.
static const uint8_t MT_KEY[16] = {
0xd4, 0xf1, 0xbb, 0x3a, 0x20, 0x29, 0x07, 0x59,
0xf0, 0xbc, 0xff, 0xab, 0xcf, 0x4e, 0x69, 0x01};
static uint32_t readVarint(const uint8_t* b, size_t len, size_t& i) {
uint32_t v = 0; int shift = 0;
while (i < len) {
uint8_t c = b[i++];
v |= (uint32_t)(c & 0x7f) << shift; shift += 7;
if (!(c & 0x80)) break;
}
return v;
}
// Decode a Meshtastic packet into a short human string (text, or node name for
// NodeInfo). Returns false if not decodable / not an interesting type.
static bool decodeMeshtastic(const uint8_t* pkt, size_t len, char* out, size_t outsz) {
if (len <= 16) return false;
uint32_t sender, pid;
memcpy(&sender, pkt + 4, 4);
memcpy(&pid, pkt + 8, 4);
// CTR nonce = packetId (8 LE, high 4 zero) + fromNode (4 LE) + extraNonce (4 = 0)
uint8_t nonce[16]; memset(nonce, 0, 16);
memcpy(nonce + 0, &pid, 4);
memcpy(nonce + 8, &sender, 4);
size_t plen = len - 16;
if (plen > 240) return false;
uint8_t plain[240];
mbedtls_aes_context aes; mbedtls_aes_init(&aes);
mbedtls_aes_setkey_enc(&aes, MT_KEY, 128);
size_t nc_off = 0; uint8_t stream[16]; memset(stream, 0, 16);
mbedtls_aes_crypt_ctr(&aes, plen, &nc_off, nonce, stream, pkt + 16, plain);
mbedtls_aes_free(&aes);
// Data protobuf: field 1 = portnum (varint), field 2 = payload (bytes)
size_t i = 0; uint8_t port = 0; const uint8_t* payload = nullptr; size_t payLen = 0;
while (i < plen) {
uint8_t tag = plain[i++]; uint8_t field = tag >> 3, wt = tag & 7;
if (wt == 0) { uint32_t v = readVarint(plain, plen, i); if (field == 1) port = (uint8_t)v; }
else if (wt == 2) { uint32_t l = readVarint(plain, plen, i);
if (field == 2) { payload = plain + i; payLen = l; } i += l; }
else break;
}
if (!payload) return false;
if (port == 1) { // TEXT_MESSAGE_APP
size_t n = payLen < outsz - 1 ? payLen : outsz - 1;
memcpy(out, payload, n); out[n] = 0;
return true;
}
if (port == 4) { // NODEINFO_APP -> User protobuf; field 3 = shortName
size_t j = 0; const uint8_t* sn = nullptr; size_t snl = 0;
while (j < payLen) {
uint8_t tag = payload[j++]; uint8_t f = tag >> 3, w = tag & 7;
if (w == 2) { uint32_t l = readVarint(payload, payLen, j);
if (f == 3) { sn = payload + j; snl = l; } j += l; }
else if (w == 0) { readVarint(payload, payLen, j); }
else break;
}
if (sn) { size_t n = snl < outsz - 1 ? snl : outsz - 1;
memcpy(out, sn, n); out[n] = 0; return true; }
}
return false;
}
static void drainPacket() {
size_t len = radio.getPacketLength();
uint8_t buf[256];
@ -114,6 +202,16 @@ static void drainPacket() {
CONFIGS[activeIdx].name, (unsigned)len, s.lastRssi, radio.getSNR());
for (size_t i = 0; i < len; i++) Serial.printf("%02x", buf[i]);
Serial.println();
// meshTastic packets we can decode on-chip today.
if (CONFIGS[activeIdx].letter == 'T') {
char msg[40];
if (decodeMeshtastic(buf, len, msg, sizeof(msg))) {
strncpy(lastMsg, msg, sizeof(lastMsg) - 1); lastMsg[sizeof(lastMsg) - 1] = 0;
lastMsgNet = 'T'; lastMsgMs = millis();
Serial.printf(" decoded[T]: %s\n", msg);
}
}
}
// --- The trippy acid display ------------------------------------------------
@ -139,6 +237,37 @@ static void drawAcidSmiley(int cx, int cy) {
oled.setDrawColor(1);
}
// Periodic freak-out: the face becomes a spinning striped ball with wide-open
// googly eyes and a gaping mouth.
static void drawAcidSmileyFreaky(int cx, int cy) {
const int R = 18;
oled.setDrawColor(1);
oled.drawDisc(cx, cy, R, U8G2_DRAW_ALL);
// rotating stripes carved into the ball (the spin)
float th = frame * 0.35f;
float c = cosf(th), s = sinf(th);
oled.setDrawColor(0);
for (int off = -R; off <= R; off += 4) {
float px = cx - s * off, py = cy + c * off;
oled.drawLine((int)(px - c * R), (int)(py - s * R),
(int)(px + c * R), (int)(py + s * R));
}
oled.setDrawColor(1);
oled.drawCircle(cx, cy, R, U8G2_DRAW_ALL); // crisp rim
// wide-open googly eyes: white halo -> dark iris -> white pupil highlight,
// so they read against the striped ball (a plain white disc would vanish)
for (int sgn = -1; sgn <= 1; sgn += 2) {
int ex = cx + sgn * 7;
oled.setDrawColor(1); oled.drawDisc(ex, cy - 6, 4, U8G2_DRAW_ALL); // halo
oled.setDrawColor(0); oled.drawDisc(ex, cy - 6, 3, U8G2_DRAW_ALL); // iris
oled.setDrawColor(1); oled.drawDisc(ex, cy - 6, 1, U8G2_DRAW_ALL); // pupil
}
// gaping mouth: white ring around a dark O
oled.setDrawColor(1); oled.drawDisc(cx, cy + 7, 5, U8G2_DRAW_ALL);
oled.setDrawColor(0); oled.drawDisc(cx, cy + 7, 3, U8G2_DRAW_ALL);
oled.setDrawColor(1);
}
static void drawMarchingBorder() {
for (int x = 0; x < 128; x++) {
if (((x + frame) & 3) == 0) { oled.drawPixel(x, 0); oled.drawPixel(x, 63); }
@ -160,32 +289,35 @@ static int indexByLetter(char L) {
static void drawUI() {
oled.clearBuffer();
drawAcidSmiley(31, 33);
// Every ~9s the smiley freaks out (spins, stripes, eyes + mouth open) for ~2.5s.
bool freaky = (millis() % 9000) < 2500;
if (freaky) drawAcidSmileyFreaky(31, 33);
else drawAcidSmiley(31, 33);
drawMarchingBorder();
// "RMC" pulsing header on the right
oled.setFont(u8g2_font_ncenB12_tr);
const char* rmc = "RMC";
int rw = oled.getStrWidth(rmc);
// "RTC" punk header on the right
oled.setFont(u8g2_font_bubble_tr);
const char* rtc = "RTC";
int rw = oled.getStrWidth(rtc);
int rx = 64 + (64 - rw) / 2;
if ((frame / 10) & 1) { // strobe invert
oled.drawBox(rx - 2, 1, rw + 4, 15);
oled.setDrawColor(0); oled.drawStr(rx, 13, rmc); oled.setDrawColor(1);
oled.drawBox(64, 0, 64, 22);
oled.setDrawColor(0); oled.drawStr(rx, 19, rtc); oled.setDrawColor(1);
} else {
oled.drawStr(rx, 13, rmc);
oled.drawStr(rx, 19, rtc);
}
// three network rows, in R M C order
const char order[3] = {'R', 'M', 'C'};
// three network rows, in R T C order
const char order[3] = {'R', 'T', 'C'};
oled.setFont(u8g2_font_6x10_tf);
uint32_t now = millis();
for (int r = 0; r < 3; r++) {
int idx = indexByLetter(order[r]);
if (idx < 0) continue;
const NetStat& s = stats[idx];
int y = 27 + r * 12; // baseline
int y = 32 + r * 11; // baseline (below the taller header)
bool active = (idx == activeIdx);
if (active) oled.drawFrame(64, y - 9, 64, 12);
if (active) oled.drawFrame(64, y - 9, 64, 11);
char line[24];
if (s.seen) snprintf(line, sizeof(line), "%c %4lu", order[r], (unsigned long)s.pkts);
else snprintf(line, sizeof(line), "%c --", order[r]);
@ -196,6 +328,15 @@ static void drawUI() {
else oled.drawCircle(121, y - 4, 3, U8G2_DRAW_ALL);
}
// last decoded event along the bottom of the right column
if (lastMsg[0]) {
oled.setFont(u8g2_font_4x6_tf);
char line[24];
snprintf(line, sizeof(line), "%c:%s", lastMsgNet, lastMsg);
line[15] = 0; // truncate to fit the ~60px column
oled.drawStr(66, 62, line);
}
oled.sendBuffer();
}
@ -204,7 +345,7 @@ void setup() {
uint32_t t0 = millis();
while (!Serial && millis() - t0 < 2000) { }
Serial.println("\n=== archy-messh Phase 1 — RMC scanner + acid display ===");
Serial.println("\n=== archy-messh Phase 1 — RTC scanner + acid display ===");
// Power the OLED rail, then reset the panel, then bring up U8g2.
pinMode(PIN_VEXT, OUTPUT); digitalWrite(PIN_VEXT, LOW); delay(60);
@ -214,6 +355,20 @@ void setup() {
oled.begin();
oled.setBusClock(400000);
// Boot splash: the device identity, shared across all three networks.
oled.clearBuffer();
drawAcidSmiley(64, 24);
oled.setFont(u8g2_font_6x10_tf);
int nw = oled.getStrWidth(DEVICE_NAME);
oled.drawStr((128 - nw) / 2, 52, DEVICE_NAME);
oled.setFont(u8g2_font_5x8_tf);
const char* sub = "R T C bridge";
int sw = oled.getStrWidth(sub);
oled.drawStr((128 - sw) / 2, 62, sub);
oled.sendBuffer();
Serial.printf("Device identity (all networks): %s / %s\n", DEVICE_NAME, DEVICE_SHORT);
delay(2200);
SPI.begin(PIN_LORA_SCK, PIN_LORA_MISO, PIN_LORA_MOSI, PIN_LORA_NSS);
const PhyConfig& first = CONFIGS[0];
int state = radio.begin(first.freqMHz, first.bwKHz, first.sf, first.cr,