194 lines
7.8 KiB
C
194 lines
7.8 KiB
C
// SPDX-License-Identifier: Apache-2.0
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#include <tactility/drivers/audio_codec_adapters.h>
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#include <tactility/drivers/i2s_controller.h>
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#include <tactility/freertos/freertos.h>
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#include <stdlib.h>
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// esp_codec_dev_read/write may issue several of these chunked I2S transfers per call and
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// gives us no way to forward the caller's audio_stream timeout through. Keep this short so
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// a stalled/underrunning I2S link returns promptly -- callers retry on failure, and a long
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// per-chunk timeout here is what made AudioStreamTest's loopback task unkillable (it blocked
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// far longer than its read/write timeout and the 2s drain wait in stopLoopback()).
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#define I2S_TIMEOUT_TICKS pdMS_TO_TICKS(200)
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struct I2sDataContext {
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audio_codec_data_if_t base;
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struct Device* i2s_controller;
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bool is_open;
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bool is_pdm; // true if created via audio_codec_adapter_new_i2s_pdm_data()
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};
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static bool data_is_open(const audio_codec_data_if_t* handle) {
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const struct I2sDataContext* context = (const struct I2sDataContext*) handle;
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return context->is_open;
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}
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static int data_open(const audio_codec_data_if_t* handle, void* data_cfg, int cfg_size) {
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(void) data_cfg;
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(void) cfg_size;
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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context->is_open = true;
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return ESP_CODEC_DEV_OK;
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}
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static int data_enable(const audio_codec_data_if_t* handle, esp_codec_dev_type_t dev_type, bool enable) {
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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// esp_codec_dev_close() calls this with enable=false but never calls set_fmt() again
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// before the next open -- without releasing the channel here, a TDM/PDM RX channel
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// (e.g. ES7210, a PDM mic) or a TX channel stays enabled and holding its GPIOs/DMA
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// channel indefinitely after the app that opened it closes, starving other I2S/DMA
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// users system-wide. Only release the direction this codec actually owns -- a single
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// I2S controller can carry an independent TX user (e.g. a speaker amp) and RX user
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// (e.g. a PDM mic) at once, and tearing down the whole controller on one closing would
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// also kill the other's still-active stream.
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if (!enable) {
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bool isInput = (dev_type & ESP_CODEC_DEV_TYPE_IN) != 0;
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bool isOutput = (dev_type & ESP_CODEC_DEV_TYPE_OUT) != 0;
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if (isInput) {
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i2s_controller_disable_direction(context->i2s_controller, true);
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}
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if (isOutput) {
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i2s_controller_disable_direction(context->i2s_controller, false);
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}
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}
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return ESP_CODEC_DEV_OK;
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}
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static int data_set_fmt(const audio_codec_data_if_t* handle, esp_codec_dev_type_t dev_type, esp_codec_dev_sample_info_t* fs) {
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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if (!context->is_open || fs == NULL) {
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return ESP_CODEC_DEV_INVALID_ARG;
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}
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// PDM RX is a distinct setup path chosen at adapter-construction time (see
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// audio_codec_adapter_new_i2s_pdm_data()), not inferred from fs here -- PDM mics are
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// mono/stereo just like standard mode, so there's no sample-info heuristic that could
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// tell them apart the way fs->channel > 2 does for TDM.
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if (context->is_pdm) {
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// ESP-IDF's PDM RX mode only supports 16-bit samples -- silently configuring the
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// controller anyway would leave the caller's chosen bit depth misapplied.
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if (fs->bits_per_sample != 16) {
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return ESP_CODEC_DEV_NOT_SUPPORT;
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}
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// PDM RX is fixed at 2 slots (mono or stereo) -- anything else doesn't map onto
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// I2S_SLOT_MODE_MONO/STEREO and would silently get treated as stereo otherwise.
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if (fs->channel != 1 && fs->channel != 2) {
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return ESP_CODEC_DEV_NOT_SUPPORT;
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}
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struct I2sPdmRxConfig pdm_config = {
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.sample_rate_hz = fs->sample_rate,
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.stereo = fs->channel == 2,
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};
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error_t error = i2s_controller_set_rx_pdm_config(context->i2s_controller, &pdm_config);
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if (error != ERROR_NONE) {
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return ESP_CODEC_DEV_DRV_ERR;
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}
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return ESP_CODEC_DEV_OK;
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}
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// Standard (stereo) mode and TDM mode are alternative setup paths for the same I2S
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// port, not sequential steps -- set_config() always allocates+enables a TX/RX channel
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// pair, and calling it before set_rx_tdm_config() leaves that pair's TX channel bound
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// to the shared BCLK/WS/MCLK pins, so the TDM path's fresh i2s_new_channel() can't
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// claim those pins ("occupied by i2s_driver" / "GPIO not usable" at runtime).
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if ((dev_type & ESP_CODEC_DEV_TYPE_IN) != 0 && fs->channel > 2) {
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struct I2sTdmRxConfig tdm_config = {
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.sample_rate_hz = fs->sample_rate,
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.mclk_multiple = (fs->mclk_multiple != 0) ? (uint32_t) fs->mclk_multiple : 256,
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.bclk_div = 8,
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.slot_count = fs->channel,
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.bits_per_sample = fs->bits_per_sample,
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.slot_bit_width = 0,
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};
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error_t error = i2s_controller_set_rx_tdm_config(context->i2s_controller, &tdm_config);
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if (error != ERROR_NONE) {
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return ESP_CODEC_DEV_DRV_ERR;
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}
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return ESP_CODEC_DEV_OK;
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}
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struct I2sConfig config = {
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.communication_format = I2S_FORMAT_STAND_I2S,
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.sample_rate = fs->sample_rate,
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.bits_per_sample = fs->bits_per_sample,
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.channel_left = 0,
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.channel_right = (fs->channel > 1) ? 1 : I2S_CHANNEL_NONE,
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};
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if (i2s_controller_set_config(context->i2s_controller, &config) != ERROR_NONE) {
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return ESP_CODEC_DEV_DRV_ERR;
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}
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return ESP_CODEC_DEV_OK;
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}
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static int data_read(const audio_codec_data_if_t* handle, uint8_t* data, int size) {
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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if (!context->is_open) {
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return ESP_CODEC_DEV_WRONG_STATE;
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}
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size_t bytes_read = 0;
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error_t error = i2s_controller_read(context->i2s_controller, data, (size_t) size, &bytes_read, I2S_TIMEOUT_TICKS);
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if (error != ERROR_NONE) {
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return ESP_CODEC_DEV_READ_FAIL;
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}
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return (int) bytes_read;
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}
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static int data_write(const audio_codec_data_if_t* handle, uint8_t* data, int size) {
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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if (!context->is_open) {
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return ESP_CODEC_DEV_WRONG_STATE;
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}
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size_t bytes_written = 0;
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error_t error = i2s_controller_write(context->i2s_controller, data, (size_t) size, &bytes_written, I2S_TIMEOUT_TICKS);
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if (error != ERROR_NONE) {
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return ESP_CODEC_DEV_WRITE_FAIL;
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}
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return (int) bytes_written;
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}
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static int data_close(const audio_codec_data_if_t* handle) {
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struct I2sDataContext* context = (struct I2sDataContext*) handle;
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context->is_open = false;
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return ESP_CODEC_DEV_OK;
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}
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static const audio_codec_data_if_t* new_i2s_data(struct Device* i2s_controller, bool is_pdm) {
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if (i2s_controller == NULL) {
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return NULL;
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}
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struct I2sDataContext* context = (struct I2sDataContext*) calloc(1, sizeof(struct I2sDataContext));
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if (context == NULL) {
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return NULL;
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}
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context->i2s_controller = i2s_controller;
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context->is_open = false;
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context->is_pdm = is_pdm;
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context->base.open = data_open;
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context->base.is_open = data_is_open;
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context->base.enable = data_enable;
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context->base.set_fmt = data_set_fmt;
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context->base.read = data_read;
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context->base.write = data_write;
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context->base.close = data_close;
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return &context->base;
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}
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const audio_codec_data_if_t* audio_codec_adapter_new_i2s_data(struct Device* i2s_controller) {
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return new_i2s_data(i2s_controller, false);
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}
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const audio_codec_data_if_t* audio_codec_adapter_new_i2s_pdm_data(struct Device* i2s_controller) {
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return new_i2s_data(i2s_controller, true);
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}
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// Note: esp_codec_dev already provides audio_codec_delete_data_if() (calls ->close then frees);
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// no adapter-specific cleanup is needed, so we don't redefine it here.
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