Files
aes67-ESP32-P4/main/player.c
T
bsncubed 3ebb27e4bb Step 7.4: HLS audio on AES67 (44.1 -> 48 kHz into the ring)
- decoder: s16 PCM -> stereo int32 -> esp_ae_rate_cvt 44.1 -> 48 kHz
  (32-bit, complexity 3; bypassed at 48 kHz; mono duplicated) -> ring.
  esp_audio_effects pinned to ~1.3.0 (1.4+ needs P4 rev >= 3).
- hls: each segment is downloaded completely into PSRAM (max 4 MB), then
  decoded; the connection is not held open while the decoder waits for
  ring space at playback speed.
- player: player_write() blocks while the ring is full and gives up when
  the source changes; the temporary 440 Hz producer is removed.
- Verified with Triple J Hottest: 441344 -> 480375 frames (10.008 s) and
  440320 -> 479260 (9.985 s) per segment; RTP 15000 packets, 0 gaps,
  peak -10 dBFS / RMS -22 dBFS; ring ~4.0 s, 0 underruns over ~50 s;
  heap 422 KB, PSRAM 27.5 MB free.

Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
2026-09-25 14:52:19 +10:00

123 lines
3.7 KiB
C

#include "player.h"
#include <string.h>
#include "aes67_cfg.h"
#include "aes67_tx.h"
#include "aes67_web.h"
#include "audio_ring.h"
#include "decoder.h"
#include "hls.h"
#include "esp_log.h"
#include "freertos/FreeRTOS.h"
#include "freertos/task.h"
#define RATE 48000
#define CHANNELS 2
#define RING_FRAMES (4 * RATE) // 4 s in PSRAM
#define PREFILL_FRAMES (RATE) // 1 s before (re)starting output
static const char *TAG = "player";
typedef enum { SRC_TONE, SRC_OFF, SRC_HLS, SRC_SPOTIFY } src_t;
static const char *const SRC_NAME[] = { "tone", "off", "hls", "spotify" };
static volatile src_t s_src = SRC_OFF;
static volatile bool s_playing; // ring output running (after prefill)
static volatile bool s_flush; // consumer drops buffered audio on the next read
static src_t mode_of(const char *m)
{
return !strcmp(m, "tone") ? SRC_TONE : !strcmp(m, "hls") ? SRC_HLS :
!strcmp(m, "spotify") ? SRC_SPOTIFY : !strcmp(m, "auto") ? SRC_HLS /* failover: step 7 */ : SRC_OFF;
}
// AES67 TX pull callback (TX task, must not block). Silence while buffering or off: not an underrun.
static size_t player_read(int32_t *buf, size_t frames)
{
if (s_flush) {
audio_ring_flush();
s_flush = false;
s_playing = false;
}
if (s_src == SRC_OFF || s_src == SRC_SPOTIFY) { // Spotify: step 7 (cspot)
memset(buf, 0, frames * CHANNELS * sizeof(int32_t));
return frames;
}
if (!s_playing) {
if (audio_ring_level() < PREFILL_FRAMES) {
memset(buf, 0, frames * CHANNELS * sizeof(int32_t));
return frames;
}
s_playing = true;
}
size_t got = audio_ring_read(buf, frames);
if (got < frames) {
s_playing = false; // ran dry: underrun (counted by TX), prefill again
}
return got;
}
void player_apply(const cJSON *source)
{
src_t src = mode_of(cJSON_GetObjectItemCaseSensitive(source, "mode")->valuestring);
if (src == s_src) {
return;
}
s_src = src;
s_flush = true;
// The test tone is TX's own (phase-locked to PTP); everything else goes through player_read.
aes67_tx_set_source(src == SRC_TONE ? NULL : player_read);
ESP_LOGI(TAG, "source: %s", SRC_NAME[src]);
}
// Source side (HLS task): write converted 48 kHz frames, waiting for space at playback speed.
// Gives up when the source is no longer HLS.
size_t player_write(const int32_t *frames, size_t n)
{
size_t done = 0;
while (done < n) {
if (s_src != SRC_HLS) {
return done;
}
size_t w = audio_ring_write(frames + done * CHANNELS, n - done);
if (!w) {
vTaskDelay(pdMS_TO_TICKS(20));
}
done += w;
}
return done;
}
static void player_status(cJSON *st)
{
const char *state = s_src == SRC_TONE ? "playing" : s_src == SRC_OFF ? "idle" :
s_src == SRC_SPOTIFY ? "not implemented" : s_playing ? "playing" : "buffering";
cJSON_AddStringToObject(st, "active_source", SRC_NAME[s_src]);
cJSON_AddStringToObject(st, "source_state", state);
cJSON_AddStringToObject(st, "spotify_state", "not implemented");
cJSON_AddNumberToObject(st, "buffer_ms", (double)(audio_ring_level() * 1000 / RATE));
}
esp_err_t player_init(void)
{
esp_err_t err = audio_ring_init(RING_FRAMES, CHANNELS);
if (err != ESP_OK) {
ESP_LOGE(TAG, "ring buffer: %s", esp_err_to_name(err));
return err;
}
cJSON *src = cfg_get("source");
s_src = (src_t)-1;
player_apply(src);
cJSON_Delete(src);
err = decoder_init();
if (err != ESP_OK) {
return err;
}
err = hls_start(decoder_feed);
if (err != ESP_OK) {
return err;
}
return status_register(player_status);
}