352 lines
12 KiB
JavaScript
352 lines
12 KiB
JavaScript
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/**
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* test_micropython_i2c_ssd1306_repro.mjs — Phase 1b reproduction test
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*
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* Phase 1 (test_micropython_i2c_minimal) confirmed that I2C(0,...), scan(),
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* and a single-byte writeto(0x3C, b"\xA0") all work without rebooting.
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* The bug must be triggered by something more specific that ssd1306.py does.
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*
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* This test walks the SSD1306_I2C init sequence step by step and prints a
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* marker after every write, so we can see EXACTLY which call is the last
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* one before the chip resets.
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*
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* What ssd1306.SSD1306_I2C(128, 64, i2c) does on construction:
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* - For each cmd in a 27-entry init list:
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* i2c.writeto(0x3C, bytes([0x80, cmd])) # 2-byte writes
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* - self.fill(0) # framebuffer fill, no I2C
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* - self.show()
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* - 6× writeto(0x3C, bytes([0x80, addr_cmd])) # set col/page addrs
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* - i2c.writevto(0x3C, [b"\x40", buffer]) # 1024-byte data dump
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*
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* Markers (last one printed = the suspect):
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* mp_step0_ok — I2C ctor
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* mp_step1_ok devs=… — scan
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* mp_step2_ok — 2-byte writeto (cmd shape)
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* mp_step3_iter N cmd=0xXX — each cmd of the 27-cmd init loop
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* mp_step3_ok after_idx=27 — full init survived
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* mp_step4_ok — show() prelude (6× addr writes)
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* mp_step5_ok — writevto with small payload (8 bytes)
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* mp_step6_ok — writevto with full framebuffer (1024 bytes)
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* mp_done — all good, no reboot
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*
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* Run:
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* node --experimental-websocket test/test_micropython_i2c_ssd1306_repro/test.mjs \
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* --backend=http://localhost:3080 [--timeout=120]
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*/
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const BACKEND = process.env.BACKEND_URL
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?? process.argv.find(a => a.startsWith('--backend='))?.slice(10)
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?? 'http://localhost:8001';
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const WS_BASE = BACKEND.replace(/^https?:/, m => m === 'https:' ? 'wss:' : 'ws:');
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const SESSION = `test-mp-i2c-ssd1306-${Date.now()}`;
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const TIMEOUT_S = parseInt(
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process.argv.find(a => a.startsWith('--timeout='))?.slice(10) ?? '120'
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);
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const FIRMWARE_URL = 'https://micropython.org/resources/firmware/ESP32_GENERIC-20230426-v1.20.0.bin';
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const FLASH_OFFSET = 0x1000;
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const FLASH_SIZE = 4 * 1024 * 1024;
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const INJECT_CODE = `
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from machine import Pin, I2C
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import time
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ADDR = 0x3C
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i2c = I2C(0, scl=Pin(22), sda=Pin(21))
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print("mp_step0_ok")
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devs = i2c.scan()
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print("mp_step1_ok devs=" + str(devs))
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# step 2: same shape ssd1306.write_cmd uses (2-byte writeto with 0x80 prefix)
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i2c.writeto(ADDR, bytes([0x80, 0xAE]))
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print("mp_step2_ok")
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# step 3: full 27-entry init sequence (verbatim from ssd1306.py for 128x64)
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INIT = [
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0xAE, # SET_DISP off
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0x20, 0x00, # SET_MEM_ADDR horizontal
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0x40, # SET_DISP_START_LINE | 0
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0xA1, # SET_SEG_REMAP | 1
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0xA8, 0x3F, # SET_MUX_RATIO 64-1
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0xC8, # SET_COM_OUT_DIR | 8
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0xD3, 0x00, # SET_DISP_OFFSET 0
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0xDA, 0x12, # SET_COM_PIN_CFG 0x12
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0xD5, 0x80, # SET_DISP_CLK_DIV
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0xD9, 0xF1, # SET_PRECHARGE
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0xDB, 0x30, # SET_VCOM_DESEL
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0x81, 0xFF, # SET_CONTRAST
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0xA4, # SET_ENTIRE_ON
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0xA6, # SET_NORM_INV
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0x8D, 0x14, # SET_CHARGE_PUMP
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0xAF, # SET_DISP on
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]
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for idx, cmd in enumerate(INIT):
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i2c.writeto(ADDR, bytes([0x80, cmd]))
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print("mp_step3_iter " + str(idx) + " cmd=0x" + ("%02x" % cmd))
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print("mp_step3_ok after_idx=" + str(len(INIT)))
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# step 4: 6 address commands (.show() prelude)
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for cmd in (0x21, 32, 32 + 127, 0x22, 0, 7):
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i2c.writeto(ADDR, bytes([0x80, cmd]))
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print("mp_step4_ok")
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# step 5: writevto with small payload (8 bytes)
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try:
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i2c.writevto(ADDR, (b"\\x40", bytes([0]*8)))
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print("mp_step5_ok")
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except Exception as e:
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print("mp_step5_err " + repr(e))
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# step 6: writevto with full 1024-byte framebuffer payload
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try:
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i2c.writevto(ADDR, (b"\\x40", bytes([0]*1024)))
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print("mp_step6_ok")
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except Exception as e:
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print("mp_step6_err " + repr(e))
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print("mp_done")
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`.trim();
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const T0 = Date.now();
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const ts = () => `[+${((Date.now() - T0) / 1000).toFixed(3)}s]`;
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const C = {
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INFO: '\x1b[36m', WARN: '\x1b[33m', ERROR: '\x1b[31m',
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OK: '\x1b[32m', SERIAL: '\x1b[35m', RESET: '\x1b[0m',
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};
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const log = (lvl, ...a) => console.log(`${C[lvl] ?? ''}${ts()} [${lvl}]${C.RESET}`, ...a);
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const info = (...a) => log('INFO', ...a);
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const ok = (...a) => log('OK', ...a);
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const warn = (...a) => log('WARN', ...a);
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const err = (...a) => log('ERROR', ...a);
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async function downloadFirmware() {
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info(`Downloading MicroPython firmware from ${FIRMWARE_URL} ...`);
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const ctrl = new AbortController();
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const t = setTimeout(() => ctrl.abort(), 60_000);
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try {
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const res = await fetch(FIRMWARE_URL, { signal: ctrl.signal });
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if (!res.ok) throw new Error(`HTTP ${res.status}`);
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const bytes = new Uint8Array(await res.arrayBuffer());
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clearTimeout(t);
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ok(`Downloaded ${bytes.length} bytes`);
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return bytes;
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} finally { clearTimeout(t); }
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}
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function buildFlashImage(firmware) {
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const image = new Uint8Array(FLASH_SIZE).fill(0xFF);
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image.set(firmware, FLASH_OFFSET);
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return image;
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}
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const toBase64 = (bytes) => Buffer.from(bytes).toString('base64');
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function runSimulation(firmware_b64) {
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return new Promise((resolve) => {
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const wsUrl = `${WS_BASE}/api/simulation/ws/${SESSION}`;
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info(`Connecting WebSocket → ${wsUrl}`);
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const ws = new WebSocket(wsUrl);
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const result = {
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replReady: false,
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codeInjected: false,
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markers: [],
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lastMarker: null,
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step3Iters: 0,
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step3LastCmd: null,
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step5Status: null,
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step6Status: null,
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done: false,
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reboot: false,
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systemEvents: [],
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wsCloseCode: null,
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serialBuf: '',
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timedOut: false,
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};
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let replState = 'idle';
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let serialBuf = '';
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const globalTimer = setTimeout(() => {
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info(`Global timeout (${TIMEOUT_S}s)`);
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result.timedOut = true;
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try { ws.close(); } catch {}
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}, TIMEOUT_S * 1000);
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const finish = () => {
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clearTimeout(globalTimer);
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resolve(result);
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};
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function sendCodeInRawRepl() {
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if (result.codeInjected) return;
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result.codeInjected = true;
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info('Stage 3: raw REPL confirmed → sending code (64-byte chunks)');
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const codeBytes = Array.from(new TextEncoder().encode(INJECT_CODE));
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const CHUNK = 64, DELAY = 150;
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let offset = 0;
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const sendChunk = () => {
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if (offset >= codeBytes.length) {
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setTimeout(() => {
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ws.send(JSON.stringify({ type: 'esp32_serial_input', data: { bytes: [0x04] } }));
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info('Ctrl+D sent — code executing');
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}, 300);
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return;
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}
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const chunk = codeBytes.slice(offset, offset + CHUNK);
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ws.send(JSON.stringify({ type: 'esp32_serial_input', data: { bytes: chunk } }));
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offset += CHUNK;
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setTimeout(sendChunk, DELAY);
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};
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sendChunk();
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}
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ws.addEventListener('open', () => {
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ok('WebSocket connected');
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ws.send(JSON.stringify({
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type: 'start_esp32',
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data: {
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board: 'esp32',
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firmware_b64,
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sensors: [{ sensor_type: 'ssd1306', pin: 200 + 0x3C, addr: 0x3C }],
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wifi_enabled: false,
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},
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}));
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info('Sent start_esp32 with sensors=[{ssd1306@0x3C}]');
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});
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ws.addEventListener('message', ev => {
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let msg;
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try { msg = JSON.parse(ev.data); } catch { return; }
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const { type, data } = msg;
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if (type === 'system') {
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result.systemEvents.push(data);
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info(`system: ${JSON.stringify(data)}`);
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if (data?.event === 'reboot' || data?.status === 'reboot') {
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warn('!!! ESP32 REBOOTED — last marker before reboot: ' + (result.lastMarker || '(none)'));
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result.reboot = true;
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}
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return;
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}
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if (type === 'serial_output') {
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const text = data?.data ?? '';
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serialBuf += text;
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for (const ch of text) process.stdout.write(ch);
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// 4-stage REPL state machine
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if (replState === 'idle' && serialBuf.includes('Type "help()"')) {
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replState = 'banner_seen';
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info('Stage 1: banner seen → poking UART with \\r');
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setTimeout(() => ws.send(JSON.stringify({
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type: 'esp32_serial_input', data: { bytes: [0x0D] }
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})), 800);
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}
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if (replState === 'banner_seen' && serialBuf.includes('>>>')) {
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replState = 'prompt_seen';
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result.replReady = true;
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serialBuf = '';
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ok('Stage 2: >>> seen → sending Ctrl+A');
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setTimeout(() => ws.send(JSON.stringify({
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type: 'esp32_serial_input', data: { bytes: [0x01] }
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})), 200);
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}
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if (replState === 'prompt_seen' && serialBuf.includes('raw REPL')) {
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replState = 'raw_repl_entered';
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serialBuf = '';
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setTimeout(sendCodeInRawRepl, 200);
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}
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// Parse markers line by line
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let nl;
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while ((nl = serialBuf.indexOf('\n')) !== -1) {
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const line = serialBuf.slice(0, nl).replace(/\r$/, '');
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serialBuf = serialBuf.slice(nl + 1);
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if (!line.trim()) continue;
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const m = line.match(/mp_(step\d|done)\w*(?:\s+(.+))?/);
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if (m) {
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const tag = 'mp_' + m[1] + (m[0].slice(3 + m[1].length).match(/^_[a-z]+/)?.[0] ?? '');
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const tail = (m[2] || '').trim();
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const full = tail ? `${tag} ${tail}` : tag;
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result.markers.push(full);
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result.lastMarker = full;
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}
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const iter = line.match(/mp_step3_iter (\d+) cmd=0x([0-9a-f]{2})/);
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if (iter) {
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result.step3Iters = parseInt(iter[1]) + 1;
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result.step3LastCmd = '0x' + iter[2];
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}
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if (line.includes('mp_step5_ok')) result.step5Status = 'ok';
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if (line.includes('mp_step5_err')) result.step5Status = line.slice(line.indexOf('mp_step5_err'));
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if (line.includes('mp_step6_ok')) result.step6Status = 'ok';
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if (line.includes('mp_step6_err')) result.step6Status = line.slice(line.indexOf('mp_step6_err'));
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if (line.includes('mp_done')) {
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result.done = true;
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setTimeout(() => { try { ws.close(); } catch {} finish(); }, 400);
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}
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if (line.includes('Traceback')) warn(`TRACEBACK: ${line}`);
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}
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if (serialBuf.length > 8192) serialBuf = serialBuf.slice(-1024);
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return;
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}
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if (type === 'error') {
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err(`backend error: ${JSON.stringify(data)}`);
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}
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});
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ws.addEventListener('close', ev => {
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result.wsCloseCode = ev.code;
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info(`WebSocket closed (code=${ev.code})`);
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finish();
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});
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ws.addEventListener('error', ev => err('WebSocket error', ev.message ?? ''));
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});
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}
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async function main() {
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console.log('\n' + '='.repeat(70));
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console.log(' Phase 1b — SSD1306_I2C init sequence step-by-step reproduction');
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console.log('='.repeat(70) + '\n');
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info(`Backend: ${BACKEND}`);
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info(`Timeout: ${TIMEOUT_S}s`);
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const fw = await downloadFirmware();
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const image = buildFlashImage(fw);
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const b64 = toBase64(image);
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info(`Flash image: ${Math.round(b64.length / 1024)} KB base64`);
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const r = await runSimulation(b64);
|
|||
|
|
|
|||
|
|
console.log('\n' + '─'.repeat(70));
|
|||
|
|
console.log(' Results');
|
|||
|
|
console.log('─'.repeat(70));
|
|||
|
|
console.log(` REPL ready: ${r.replReady}`);
|
|||
|
|
console.log(` Code injected: ${r.codeInjected}`);
|
|||
|
|
console.log(` Last marker: ${r.lastMarker ?? '(none)'}`);
|
|||
|
|
console.log(` Step3 init iters OK: ${r.step3Iters} / 27`);
|
|||
|
|
console.log(` Step3 last cmd OK: ${r.step3LastCmd ?? '(none)'}`);
|
|||
|
|
console.log(` Step5 (writevto 8B): ${r.step5Status ?? '(not reached)'}`);
|
|||
|
|
console.log(` Step6 (writevto 1KB): ${r.step6Status ?? '(not reached)'}`);
|
|||
|
|
console.log(` System reboot: ${r.reboot}`);
|
|||
|
|
console.log(` WS close code: ${r.wsCloseCode ?? '(open)'}`);
|
|||
|
|
console.log(` Timed out: ${r.timedOut}`);
|
|||
|
|
console.log('─'.repeat(70) + '\n');
|
|||
|
|
|
|||
|
|
if (r.done && !r.reboot) {
|
|||
|
|
ok('Full SSD1306 init sequence completed without reboot.');
|
|||
|
|
process.exit(0);
|
|||
|
|
}
|
|||
|
|
if (r.reboot) {
|
|||
|
|
err('REBOOT REPRODUCED. Suspect = last marker before reboot.');
|
|||
|
|
console.log(' → ' + (r.lastMarker || '(no markers — reboot before any marker)'));
|
|||
|
|
process.exit(1);
|
|||
|
|
}
|
|||
|
|
warn('Inconclusive: no reboot but no mp_done either. See serial output above.');
|
|||
|
|
process.exit(3);
|
|||
|
|
}
|
|||
|
|
|
|||
|
|
main().catch(e => { err('Fatal:', e.message); console.error(e.stack); process.exit(2); });
|