Sink-only proof-of-life (diagnostic)
Replace src/main.cpp with a minimal single-object A2DP sink advertising "BikeAudio", to verify the iPhone can discover + connect. Isolates the sink/advertising path that the full sketch corrupts by instantiating one sink + two sources (ESP32-A2DP uses a global singleton that each constructor overwrites; a single Bluedroid A2DP callback is registered, so the sink is orphaned and never discoverable). Not the final firmware — does not drive the speakers. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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src/main.cpp
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src/main.cpp
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/**
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* BikeAudio — ESP32 DevKitC v4 Bluetooth Audio Relay
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* BikeAudio — SINK-ONLY proof-of-life (diagnostic, NOT the final firmware)
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*
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* iPhone --> [ESP32 A2DP SINK] --> [A2DP SOURCE x2] --> JBL Charge 5 + Cardo Packtalk Edge
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* Purpose: prove the iPhone can discover and connect to an A2DP sink named
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* "BikeAudio". The full BikeAudio sketch instantiates one A2DP sink + two A2DP
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* sources at once; the ESP32-A2DP library keeps a single global instance
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* (actual_bluetooth_a2dp_common) that each constructor overwrites and registers
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* one Bluedroid A2DP callback, so the sink gets orphaned and is never
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* discoverable. ESP32 classic-BT A2DP source also supports only one outgoing
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* link, so one ESP32 cannot stream to two speakers regardless. This sketch
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* isolates the sink path with a single object — no sources, no singleton clobber.
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*
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* Libraries required (install via Arduino IDE Library Manager or .zip):
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* - ESP32-A2DP by Phil Schatzmann https://github.com/pschatzmann/ESP32-A2DP
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* - arduino-audio-tools by Phil Schatzmann https://github.com/pschatzmann/arduino-audio-tools
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* Pass condition: iPhone sees "BikeAudio" in Bluetooth settings, connects, and
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* serial prints "[SINK] iPhone CONNECTED".
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*
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* Board: ESP32 Dev Module
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* Partition scheme: Huge APP (3MB No OTA/1MB SPIFFS) <-- required for BT stack size
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* ESP32 Arduino core: 2.0.17 (do NOT use 3.x — BT stack regression)
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*
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* HOW IT WORKS:
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* 1. ESP32 boots and connects to JBL Charge 5 and Cardo as A2DP sources
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* 2. Then advertises itself as "BikeAudio" for the iPhone to connect to
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* 3. Audio received from iPhone is forwarded to both speakers in real time
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* 4. Auto-reconnect on power cycle — just turn everything on and it finds each other
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*
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* FIRST TIME SETUP:
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* - Forget JBL and Cardo from your iPhone
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* - Put JBL in pairing mode (hold Bluetooth button)
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* - Put Cardo in pairing mode (check Cardo manual — usually hold phone button)
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* - Flash this sketch, open Serial Monitor at 115200
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* - ESP32 will find and pair with both devices on first boot
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* - On iPhone, go to Bluetooth settings and connect to "BikeAudio"
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* - Done — play audio, both speakers output simultaneously
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* Board / partition / core: unchanged (esp32dev, huge_app.csv, core 2.0.x).
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*/
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#include <Arduino.h>
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#include "AudioTools.h"
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#include "BluetoothA2DPSink.h"
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#include "BluetoothA2DPSource.h"
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#include "BluetoothA2DPCommon.h"
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// Forward declaration — defined below. Required in .cpp builds: the Arduino IDE
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// auto-generates prototypes for .ino files, but PlatformIO compiles .cpp directly
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// and print_status() is called in setup()/loop() before its definition.
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void print_status();
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BluetoothA2DPSink sink; // single A2DP object — receives audio FROM iPhone
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// ─── CONFIGURATION ────────────────────────────────────────────────────────────
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// Name this device shows to iPhone
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#define SINK_NAME "BikeAudio"
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// Exact Bluetooth names of your speakers (must match exactly, case sensitive)
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#define JBL_NAME "JBL Charge 5"
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#define CARDO_NAME "Tangerine EDGE"
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// Retry interval if a speaker disconnects (ms)
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#define RECONNECT_MS 5000
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// Audio buffer size — larger = more stable, slightly more latency
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#define BUFFER_SIZE (4 * 1024)
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// ─── GLOBALS ──────────────────────────────────────────────────────────────────
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BluetoothA2DPSink sink; // receives audio FROM iPhone
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BluetoothA2DPSource src_jbl; // sends audio TO JBL
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BluetoothA2DPSource src_cardo; // sends audio TO Cardo
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// Shared ring buffer — sink writes, sources read
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RingBuffer<uint8_t> ring_buf(BUFFER_SIZE * 2);
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// Connection state
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volatile bool jbl_connected = false;
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volatile bool cardo_connected = false;
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volatile bool iphone_connected = false;
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unsigned long last_reconnect_jbl = 0;
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unsigned long last_reconnect_cardo = 0;
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// ─── AUDIO CALLBACK (iPhone → buffer) ────────────────────────────────────────
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/**
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* Called by the A2DP sink every time a new audio frame arrives from iPhone.
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* We write raw PCM into the shared ring buffer.
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* Both sources pull from this buffer simultaneously.
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*/
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void audio_received_cb(const uint8_t *data, uint32_t len) {
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// Write to ring buffer — non-blocking, drop if full (prevents deadlock)
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for (uint32_t i = 0; i < len; i++) {
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if (!ring_buf.isFull()) {
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ring_buf.write(data[i]);
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}
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}
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}
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// ─── SOURCE DATA CALLBACK (buffer → JBL / Cardo) ─────────────────────────────
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/**
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* Called by each A2DP source when it needs audio data to send.
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* Both JBL and Cardo call this — they share the same buffer read pointer
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* via a duplicated/mirrored buffer approach.
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*
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* We use a simple approach: one primary reader (JBL) drains the buffer,
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* Cardo gets the same data via a mirrored write in audio_received_cb.
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*/
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// Second ring buffer mirroring data for Cardo
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RingBuffer<uint8_t> ring_buf_cardo(BUFFER_SIZE * 2);
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void audio_received_mirror_cb(const uint8_t *data, uint32_t len) {
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// Write to BOTH ring buffers — JBL gets ring_buf, Cardo gets ring_buf_cardo
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for (uint32_t i = 0; i < len; i++) {
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if (!ring_buf.isFull()) ring_buf.write(data[i]);
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if (!ring_buf_cardo.isFull()) ring_buf_cardo.write(data[i]);
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}
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}
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int32_t get_audio_for_jbl(uint8_t *data, int32_t len) {
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int32_t bytes_read = 0;
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uint8_t b;
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while (bytes_read < len && ring_buf.read(b)) {
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data[bytes_read++] = b;
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}
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// Pad with silence if buffer underrun
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if (bytes_read < len) {
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memset(data + bytes_read, 0, len - bytes_read);
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}
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return len;
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}
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int32_t get_audio_for_cardo(uint8_t *data, int32_t len) {
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int32_t bytes_read = 0;
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uint8_t b;
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while (bytes_read < len && ring_buf_cardo.read(b)) {
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data[bytes_read++] = b;
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}
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if (bytes_read < len) {
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memset(data + bytes_read, 0, len - bytes_read);
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}
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return len;
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}
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// ─── CONNECTION CALLBACKS ─────────────────────────────────────────────────────
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void sink_connected_cb(esp_a2d_connection_state_t state, void *obj) {
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void on_conn_state(esp_a2d_connection_state_t state, void *obj) {
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if (state == ESP_A2D_CONNECTION_STATE_CONNECTED) {
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Serial.println("[SINK] iPhone connected");
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iphone_connected = true;
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} else {
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Serial.println("[SINK] iPhone CONNECTED");
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} else if (state == ESP_A2D_CONNECTION_STATE_DISCONNECTED) {
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Serial.println("[SINK] iPhone disconnected");
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iphone_connected = false;
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}
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}
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void jbl_connected_cb(esp_a2d_connection_state_t state, void *obj) {
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if (state == ESP_A2D_CONNECTION_STATE_CONNECTED) {
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Serial.println("[JBL] Connected");
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jbl_connected = true;
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} else {
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Serial.println("[JBL] Disconnected — will retry");
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jbl_connected = false;
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last_reconnect_jbl = millis();
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Serial.printf("[SINK] connection state = %d\n", (int)state);
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}
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}
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void cardo_connected_cb(esp_a2d_connection_state_t state, void *obj) {
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if (state == ESP_A2D_CONNECTION_STATE_CONNECTED) {
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Serial.println("[CARDO] Connected");
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cardo_connected = true;
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} else {
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Serial.println("[CARDO] Disconnected — will retry");
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cardo_connected = false;
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last_reconnect_cardo = millis();
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}
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}
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// ─── SETUP ────────────────────────────────────────────────────────────────────
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void setup() {
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Serial.begin(115200);
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delay(500);
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Serial.println("=== BikeAudio Booting ===");
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Serial.println("=== BikeAudio SINK-ONLY proof ===");
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// ── Step 1: Connect to JBL as A2DP source ─────────────────────────────────
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Serial.println("[JBL] Connecting...");
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src_jbl.set_data_callback(get_audio_for_jbl);
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src_jbl.set_on_connection_state_changed(jbl_connected_cb);
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src_jbl.set_auto_reconnect(true);
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src_jbl.start(JBL_NAME); // auto-reconnect handled by set_auto_reconnect() above
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sink.set_on_connection_state_changed(on_conn_state);
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sink.start("BikeAudio");
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// Give it time to connect before starting second source
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// (Bluedroid needs sequential connection setup)
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uint32_t t = millis();
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while (!jbl_connected && millis() - t < 10000) {
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delay(100);
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Serial.println("[SINK] Advertising as 'BikeAudio' — connect from iPhone");
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Serial.println("=== Ready ===");
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}
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if (jbl_connected) {
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Serial.println("[JBL] Ready");
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} else {
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Serial.println("[JBL] Not found yet — will retry in background");
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}
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// ── Step 2: Connect to Cardo as A2DP source ────────────────────────────────
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Serial.println("[CARDO] Connecting...");
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src_cardo.set_data_callback(get_audio_for_cardo);
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src_cardo.set_on_connection_state_changed(cardo_connected_cb);
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src_cardo.set_auto_reconnect(true);
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src_cardo.start(CARDO_NAME);
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t = millis();
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while (!cardo_connected && millis() - t < 10000) {
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delay(100);
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}
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if (cardo_connected) {
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Serial.println("[CARDO] Ready");
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} else {
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Serial.println("[CARDO] Not found yet — will retry in background");
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}
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// ── Step 3: Start sink — advertise "BikeAudio" to iPhone ──────────────────
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Serial.println("[SINK] Advertising as '" SINK_NAME "' ...");
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sink.set_stream_reader(audio_received_mirror_cb);
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sink.set_on_connection_state_changed(sink_connected_cb);
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sink.start(SINK_NAME);
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Serial.println("[SINK] Ready — connect iPhone to 'BikeAudio'");
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Serial.println("=== BikeAudio Ready ===");
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print_status();
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}
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// ─── LOOP ─────────────────────────────────────────────────────────────────────
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void loop() {
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// Auto-reconnect JBL if lost
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if (!jbl_connected && millis() - last_reconnect_jbl > RECONNECT_MS) {
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Serial.println("[JBL] Retrying connection...");
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src_jbl.start(JBL_NAME);
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last_reconnect_jbl = millis();
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static unsigned long last = 0;
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if (millis() - last > 5000) {
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Serial.printf("[SINK] connected=%s heap=%d bytes free\n",
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sink.is_connected() ? "YES" : "no", ESP.getFreeHeap());
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last = millis();
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}
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// Auto-reconnect Cardo if lost
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if (!cardo_connected && millis() - last_reconnect_cardo > RECONNECT_MS) {
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Serial.println("[CARDO] Retrying connection...");
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src_cardo.start(CARDO_NAME);
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last_reconnect_cardo = millis();
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}
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// Print status every 10 seconds
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static unsigned long last_status = 0;
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if (millis() - last_status > 10000) {
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print_status();
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last_status = millis();
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}
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delay(100);
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}
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// ─── HELPERS ──────────────────────────────────────────────────────────────────
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void print_status() {
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Serial.println("--- Status ---");
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Serial.printf(" iPhone : %s\n", iphone_connected ? "CONNECTED" : "waiting...");
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Serial.printf(" JBL : %s\n", jbl_connected ? "CONNECTED" : "waiting...");
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Serial.printf(" Cardo : %s\n", cardo_connected ? "CONNECTED" : "waiting...");
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Serial.printf(" Heap : %d bytes free\n", ESP.getFreeHeap());
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Serial.println("--------------");
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}
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