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243 lines
8.6 KiB
243 lines
8.6 KiB
#include "playback.hpp"
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#include "dac.hpp"
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#include <cstdint>
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#include "audio_element.h"
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#include "audio_event_iface.h"
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#include "audio_pipeline.h"
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#include "driver/i2s.h"
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#include "esp_err.h"
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#include "freertos/portmacro.h"
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#include "mp3_decoder.h"
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static const char* kTag = "PLAYBACK";
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static const i2s_port_t kI2SPort = I2S_NUM_0;
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namespace gay_ipod {
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static audio_element_status_t status_from_the_void(void *status) {
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uintptr_t as_pointer_int = reinterpret_cast<uintptr_t>(status);
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return static_cast<audio_element_status_t>(as_pointer_int);
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}
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auto DacAudioPlayback::create(AudioDac* dac)
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-> cpp::result<std::unique_ptr<DacAudioPlayback>, Error> {
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// Ensure we're soft-muted before initialising, in order to reduce protential
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// clicks and pops.
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dac->WriteVolume(255);
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audio_pipeline_handle_t pipeline;
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audio_element_handle_t fatfs_stream_reader;
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audio_element_handle_t i2s_stream_writer;
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audio_event_iface_handle_t event_interface;
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audio_pipeline_cfg_t pipeline_config =
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audio_pipeline_cfg_t(DEFAULT_AUDIO_PIPELINE_CONFIG());
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pipeline = audio_pipeline_init(&pipeline_config);
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if (pipeline == NULL) {
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return cpp::fail(Error::PIPELINE_INIT);
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}
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fatfs_stream_cfg_t fatfs_stream_config =
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fatfs_stream_cfg_t(FATFS_STREAM_CFG_DEFAULT());
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fatfs_stream_config.type = AUDIO_STREAM_READER;
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fatfs_stream_reader = fatfs_stream_init(&fatfs_stream_config);
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if (fatfs_stream_reader == NULL) {
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return cpp::fail(Error::PIPELINE_INIT);
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}
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i2s_stream_cfg_t i2s_stream_config = i2s_stream_cfg_t{
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.type = AUDIO_STREAM_WRITER,
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.i2s_config =
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{
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// static_cast bc esp-adf uses enums incorrectly
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.mode = static_cast<i2s_mode_t>(I2S_MODE_MASTER | I2S_MODE_TX),
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.sample_rate = 44100,
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.bits_per_sample = I2S_BITS_PER_SAMPLE_16BIT,
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.channel_format = I2S_CHANNEL_FMT_RIGHT_LEFT,
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.communication_format = I2S_COMM_FORMAT_STAND_I2S,
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.intr_alloc_flags = ESP_INTR_FLAG_LOWMED,
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.dma_buf_count = 8,
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.dma_buf_len = 64,
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.use_apll = false,
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.tx_desc_auto_clear = false,
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.fixed_mclk = 0,
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.mclk_multiple = I2S_MCLK_MULTIPLE_DEFAULT,
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.bits_per_chan = I2S_BITS_PER_CHAN_DEFAULT,
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},
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.i2s_port = kI2SPort,
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.use_alc = false,
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.volume = 0, // Does nothing; use AudioDac to change this.
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.out_rb_size = I2S_STREAM_RINGBUFFER_SIZE,
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.task_stack = I2S_STREAM_TASK_STACK,
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.task_core = I2S_STREAM_TASK_CORE,
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.task_prio = I2S_STREAM_TASK_PRIO,
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.stack_in_ext = false,
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.multi_out_num = 0,
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.uninstall_drv = true,
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.need_expand = false,
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.expand_src_bits = I2S_BITS_PER_SAMPLE_16BIT,
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};
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i2s_stream_writer = i2s_stream_init(&i2s_stream_config);
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if (i2s_stream_writer == NULL) {
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return cpp::fail(Error::PIPELINE_INIT);
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}
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// NOTE: i2s_stream_init does some additional setup that hardcodes MCK as
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// GPIO0. This happens to work fine for us, but be careful if changing.
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i2s_pin_config_t pin_config = {.mck_io_num = GPIO_NUM_0,
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.bck_io_num = GPIO_NUM_26,
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.ws_io_num = GPIO_NUM_27,
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.data_out_num = GPIO_NUM_5,
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.data_in_num = I2S_PIN_NO_CHANGE};
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if (esp_err_t err = i2s_set_pin(kI2SPort, &pin_config) != ESP_OK) {
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ESP_LOGE(kTag, "failed to configure i2s pins %x", err);
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return cpp::fail(Error::PIPELINE_INIT);
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}
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// TODO: Create encoders dynamically when we need them.
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audio_element_handle_t mp3_decoder;
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mp3_decoder_cfg_t mp3_config =
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mp3_decoder_cfg_t(DEFAULT_MP3_DECODER_CONFIG());
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mp3_decoder = mp3_decoder_init(&mp3_config);
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assert(mp3_decoder != NULL);
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audio_event_iface_cfg_t event_config = AUDIO_EVENT_IFACE_DEFAULT_CFG();
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event_interface = audio_event_iface_init(&event_config);
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audio_pipeline_set_listener(pipeline, event_interface);
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audio_element_msg_set_listener(fatfs_stream_reader, event_interface);
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audio_element_msg_set_listener(mp3_decoder, event_interface);
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audio_element_msg_set_listener(i2s_stream_writer, event_interface);
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// TODO: most of this is likely post-init, since it involves a decoder.
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// All the elements of our pipeline have been initialised. Now switch them
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// together.
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audio_pipeline_register(pipeline, fatfs_stream_reader, "file");
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audio_pipeline_register(pipeline, mp3_decoder, "dec");
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audio_pipeline_register(pipeline, i2s_stream_writer, "i2s");
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const char* link_tag[3] = {"file", "dec", "i2s"};
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audio_pipeline_link(pipeline, &link_tag[0], 3);
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return std::make_unique<DacAudioPlayback>(dac, pipeline, fatfs_stream_reader,
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i2s_stream_writer, event_interface,
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mp3_decoder);
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}
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DacAudioPlayback::DacAudioPlayback(AudioDac* dac,
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audio_pipeline_handle_t pipeline,
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audio_element_handle_t fatfs_stream_reader,
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audio_element_handle_t i2s_stream_writer,
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audio_event_iface_handle_t event_interface,
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audio_element_handle_t mp3_decoder)
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: dac_(dac),
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pipeline_(pipeline),
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fatfs_stream_reader_(fatfs_stream_reader),
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i2s_stream_writer_(i2s_stream_writer),
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event_interface_(event_interface),
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mp3_decoder_(mp3_decoder) {}
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DacAudioPlayback::~DacAudioPlayback() {
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dac_->WriteVolume(255);
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audio_pipeline_remove_listener(pipeline_);
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audio_element_msg_remove_listener(fatfs_stream_reader_, event_interface_);
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audio_element_msg_remove_listener(mp3_decoder_, event_interface_);
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audio_element_msg_remove_listener(i2s_stream_writer_, event_interface_);
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audio_pipeline_stop(pipeline_);
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audio_pipeline_wait_for_stop(pipeline_);
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audio_pipeline_terminate(pipeline_);
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audio_pipeline_unregister(pipeline_, fatfs_stream_reader_);
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audio_pipeline_unregister(pipeline_, mp3_decoder_);
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audio_pipeline_unregister(pipeline_, i2s_stream_writer_);
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audio_event_iface_destroy(event_interface_);
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audio_pipeline_deinit(pipeline_);
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audio_element_deinit(fatfs_stream_reader_);
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audio_element_deinit(i2s_stream_writer_);
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audio_element_deinit(mp3_decoder_);
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}
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void DacAudioPlayback::Play(const std::string& filename) {
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dac_->WriteVolume(255);
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// TODO: handle reconfiguring the pipeline if needed.
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audio_element_set_uri(fatfs_stream_reader_, filename.c_str());
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audio_pipeline_run(pipeline_);
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dac_->WriteVolume(volume_);
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}
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void DacAudioPlayback::Resume() {
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// TODO.
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}
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void DacAudioPlayback::Pause() {
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// TODO.
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}
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void DacAudioPlayback::ProcessEvents() {
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while (1) {
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audio_event_iface_msg_t event;
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esp_err_t err = audio_event_iface_listen(event_interface_, &event, portMAX_DELAY);
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if (err != ESP_OK) {
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ESP_LOGI(kTag, "error listening for event:%x", err);
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continue;
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}
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ESP_LOGI(kTag, "received event, cmd %i", event.cmd);
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if (event.source_type == AUDIO_ELEMENT_TYPE_ELEMENT
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&& event.source == (void *) mp3_decoder_
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&& event.cmd == AEL_MSG_CMD_REPORT_MUSIC_INFO) {
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audio_element_info_t music_info = {0};
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audio_element_getinfo(mp3_decoder_, &music_info);
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ESP_LOGI(kTag, "sample_rate=%d, bits=%d, ch=%d", music_info.sample_rates, music_info.bits, music_info.channels);
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audio_element_setinfo(i2s_stream_writer_, &music_info);
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i2s_stream_set_clk(i2s_stream_writer_, music_info.sample_rates, music_info.bits, music_info.channels);
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}
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if (event.source_type == AUDIO_ELEMENT_TYPE_ELEMENT
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&& event.source == (void *) fatfs_stream_reader_
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&& event.cmd == AEL_MSG_CMD_REPORT_STATUS) {
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audio_element_status_t status = status_from_the_void(event.data);
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if (status == AEL_STATUS_STATE_FINISHED) {
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// TODO: enqueue next track?
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}
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}
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if (event.source_type == AUDIO_ELEMENT_TYPE_ELEMENT
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&& event.source == (void *) i2s_stream_writer_
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&& event.cmd == AEL_MSG_CMD_REPORT_STATUS) {
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audio_element_status_t status = status_from_the_void(event.data);
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if (status == AEL_STATUS_STATE_FINISHED) {
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// TODO.
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return;
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}
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}
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if (event.need_free_data) {
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ESP_LOGI(kTag, "freeing event data");
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free(event.data);
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}
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}
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}
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/* for gapless */
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void DacAudioPlayback::set_next_file(const std::string& filename) {
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next_filename_ = filename;
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}
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void DacAudioPlayback::set_volume(uint8_t volume) {
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volume_ = volume;
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// TODO: don't write immediately if we're muting to change track or similar.
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dac_->WriteVolume(volume);
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}
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auto DacAudioPlayback::volume() -> uint8_t {
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return volume_;
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}
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} // namespace gay_ipod
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