Fix BLE upload: write-with-response on CMD+DATA, on-demand advertising, wake-play-random, remove startup blink

This commit is contained in:
zyphlar
2026-07-04 03:28:14 -07:00
parent d3bd7b71b9
commit 96d0c44d11
5 changed files with 68 additions and 39 deletions
+1 -1
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@@ -38,7 +38,7 @@ function fmtBytes(n) {
// ---- connection state ----
dev.addEventListener('log', (e) => log(e.detail));
dev.addEventListener('connected', (e) => { setConnected(true, e.detail.name); refresh(); fetchVolume(); });
dev.addEventListener('connected', async (e) => { setConnected(true, e.detail.name); await refresh(); fetchVolume(); });
dev.addEventListener('disconnected', () => {
setConnected(false); deviceTracks = null; renderSlots();
$('volume-val').textContent = '—';
+9 -9
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@@ -186,7 +186,7 @@ export class BabyMobile extends EventTarget {
async _writeCmd(bytes) {
this._requireConnected();
await this.cmd.writeValueWithoutResponse(Uint8Array.from(bytes));
await this.cmd.writeValue(Uint8Array.from(bytes));
}
async play(track) {
@@ -282,21 +282,21 @@ export class BabyMobile extends EventTarget {
this._log(`Starting upload of ${total} bytes to slot ${track}`);
await this._writeCmd([CMD_UPLOAD_START, track & 0xff]);
// Send all data chunks sequentially. Chrome on Windows (WinRT BLE) only
// allows one writeValueWithoutResponse in flight at a time; concurrent calls
// fail with "GATT operation already in progress". Sequential writes are
// reliable and throughput is governed by the BLE connection interval, not
// by how many calls are in flight.
// Send all data chunks using write-with-response. Each writeValue() call
// blocks until the SoftDevice sends an ATT Write Response, which only happens
// after it has delivered the packet to the firmware's write callback. This
// provides natural per-packet flow control: CMD_UPLOAD_END cannot be sent until
// every data packet has been confirmed received, eliminating all OS TX-queue
// race conditions without any byte-counting hacks.
for (let off = 0; off < total; off += DATA_CHUNK) {
await this.data.writeValueWithoutResponse(
await this.data.writeValue(
wavBytes.subarray(off, Math.min(off + DATA_CHUNK, total)));
// Cap the optimistic local count at 99%; the final 1% is filled only when
// the device's finalize ack confirms the bytes actually landed in flash.
report(Math.min(off + DATA_CHUNK, Math.floor(total * 0.99)));
}
// Tell the firmware we're done. It will drain its ring buffer, write the
// track table, then send ONE finalize notification with the total byte count.
// All data confirmed received — finalize.
await this._writeCmd([CMD_UPLOAD_END]);
// Wait for that single finalize notification. Allow up to 60 s: at 300 ms/sector
+5 -5
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@@ -87,15 +87,15 @@ label { display: inline-flex; align-items: center; gap: 8px; font-size: .9rem; c
.handle:focus { outline: none; }
.handle:focus .line, .handle.dragging .line { background: var(--accent); box-shadow: 0 0 6px var(--accent); }
.handle:focus .chev, .handle.dragging .chev { filter: drop-shadow(0 0 4px var(--accent)); }
.trim-readout { display: flex; align-items: center; gap: 12px; font-size: .85rem; color: var(--muted); }
.time-fields { display: inline-flex; align-items: center; gap: 6px; }
.trim-readout { display: flex; align-items: center; flex-wrap: wrap; gap: 8px 12px; font-size: .85rem; color: var(--muted); }
.time-fields { display: inline-flex; align-items: center; gap: 6px; flex-shrink: 0; }
.time-fields .dash { color: var(--muted); }
.time-in {
width: 4.2rem; padding: 5px 7px; font-size: .85rem;
width: 3.8rem; min-width: 0; padding: 5px 7px; font-size: .85rem;
background: #1c123e; color: var(--text); border: 1px solid var(--line); border-radius: 7px;
}
.trim-readout .clip { color: var(--accent); font-weight: 600; }
.trim-readout button { margin-left: auto; }
.trim-readout .clip { margin-left: auto; color: var(--accent); font-weight: 600; }
.trim-readout button { flex-shrink: 0; }
.level { display: flex; align-items: center; gap: 10px; width: 100%; margin-top: 12px; font-size: .85rem; color: var(--muted); }
.level input[type=range] { flex: 1; min-width: 0; }
.level .unit { min-width: 3.2rem; text-align: right; color: var(--accent); font-weight: 600; }
+1 -1
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@@ -1,5 +1,5 @@
// sw.js — minimal offline cache so the PWA launches without a network.
const CACHE = 'babymobile-v8';
const CACHE = 'babymobile-v9';
const ASSETS = [
'./', './index.html', './styles.css',
'./app.js', './ble.js', './wav.js',
+52 -23
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@@ -49,6 +49,11 @@
#include <Adafruit_TinyUSB.h>
#include <bluefruit.h>
// ============================================================
// When defined, a wake from deep sleep (button press) plays a random track
// immediately instead of waiting for user input.
//#define WAKE_PLAY_RANDOM
// ============================================================
// POC MODE: stream audio from internal LittleFS instead of SPI flash.
// Upload tracks via upload_track.py (serial) or BLE (CMD 0x02).
@@ -247,6 +252,10 @@ unsigned long g_lastActivity = 0;
// USB connected flag
volatile bool g_usbConnected = false;
// Wake-from-sleep detection. Read before SoftDevice starts (setupBLE), stored here.
static bool g_wakeFromSleep = false;
static uint8_t g_wakeTrack = 0;
#ifdef POC_INTERNAL_FLASH
static void pocFilename(uint8_t n, char *buf) { // buf must be >=16 bytes
snprintf(buf, 16, "/track%d.wav", n);
@@ -746,8 +755,10 @@ void audioCmd_write_cb(uint16_t conn_handle, BLECharacteristic* chr,
loadTrackTable();
Serial.println("BLE: Upload complete");
#else
// Signal loop() to finalize after ring buffer drains.
// Don't call loadTrackTable() here — we're in a BLE callback.
// Signal loop() to finalize once the ring buffer drains.
// Because the DATA characteristic uses write-with-response, every data
// packet has been ATT-acknowledged before the client sends this command,
// so all bytes are already in the ring buffer by the time we get here.
if (g_bleUploading) {
g_bleFinalizing = true;
Serial.println("BLE: Finalizing upload...");
@@ -1003,17 +1014,20 @@ void setupBLE() {
// Audio service
audioSvc.begin();
// Command characteristic (write without response — avoids "GATT already in progress" errors)
audioCmd.setProperties(CHR_PROPS_WRITE_WO_RESP);
// Command characteristic: write-with-response so JS can await full OS-level
// completion before issuing the next operation on any characteristic.
audioCmd.setProperties(CHR_PROPS_WRITE);
audioCmd.setPermission(SECMODE_OPEN, SECMODE_OPEN);
audioCmd.setMaxLen(240);
audioCmd.setWriteCallback(audioCmd_write_cb);
audioCmd.begin();
// Data characteristic (write without response for speed)
audioData.setProperties(CHR_PROPS_WRITE_WO_RESP);
// Data characteristic (write with response — ATT flow control ensures the
// SoftDevice has acknowledged every packet before the client sends the next,
// so CMD_UPLOAD_END can never race ahead of the data stream)
audioData.setProperties(CHR_PROPS_WRITE);
audioData.setPermission(SECMODE_OPEN, SECMODE_OPEN);
audioData.setMaxLen(240);
audioData.setMaxLen(244); // must match DATA_CHUNK in ble.js (MTU 247 - 3 = 244)
audioData.setWriteCallback(audioData_write_cb);
audioData.begin();
@@ -1324,6 +1338,17 @@ void waitButtonRelease(uint8_t btn) {
// SLEEP / WAKE
// ============================================================
// One byte from the nRF52840 hardware true random number generator.
static uint8_t hwRandom() {
NRF_RNG->CONFIG = RNG_CONFIG_DERCEN_Enabled << RNG_CONFIG_DERCEN_Pos; // bias correction on
NRF_RNG->EVENTS_VALRDY = 0;
NRF_RNG->TASKS_START = 1;
while (!NRF_RNG->EVENTS_VALRDY) {}
uint8_t v = (uint8_t)NRF_RNG->VALUE;
NRF_RNG->TASKS_STOP = 1;
return v;
}
void enterDeepSleep() {
// Don't sleep if any button is currently LOW — would wake instantly.
// Also catches floating pins that the internal pull-up isn't winning against.
@@ -1372,22 +1397,6 @@ void setup() {
digitalWrite(PIN_LED, HIGH);
Serial.begin(115200);
Serial.println("...");
int c=0;
while(c<10) {
// pinMode(c, OUTPUT);
delay(250);
digitalWrite(PIN_LED, HIGH);
// digitalWrite(c, HIGH);
// Serial.println("0");
delay(250);
digitalWrite(PIN_LED, LOW);
// digitalWrite(c, LOW);
// Serial.println(c);
c++;
}
Serial.println("=== Baby Mobile v2 ===");
Serial.println("nRF52840 + IS25LP128F + PAM8302A");
@@ -1444,11 +1453,31 @@ void setup() {
usb_msc.begin();
#endif
// Read RESETREAS and collect a random byte BEFORE starting the SoftDevice.
// Once Bluefruit.begin() enables S140, the SoftDevice owns NRF_RNG and
// NRF_POWER — direct register access after that point causes a hard fault.
g_wakeFromSleep = (NRF_POWER->RESETREAS & POWER_RESETREAS_OFF_Msk) != 0;
NRF_POWER->RESETREAS = 0xFFFFFFFFUL; // write-1-to-clear
if (g_wakeFromSleep) Serial.println("Woke from deep sleep.");
#ifdef WAKE_PLAY_RANDOM
if (g_wakeFromSleep && g_numTracks > 0) {
// hwRandom() is safe here — SoftDevice not yet started.
g_wakeTrack = hwRandom() % g_numTracks;
}
#endif
// BLE
setupBLE();
g_lastActivity = millis();
#ifdef WAKE_PLAY_RANDOM
if (g_wakeFromSleep && g_numTracks > 0) {
Serial.print("Auto-play random track "); Serial.println(g_wakeTrack);
audioStart(g_wakeTrack);
}
#endif
digitalWrite(PIN_LED, HIGH);
Serial.println("Ready! Plug in USB to upload audio, or press a button.");
}