samd: Rename dma_{allocate,free} channel
These are now used in the (video) parallel capture device as well.
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@ -53,7 +53,7 @@ uint8_t find_sync_event_channel_raise() {
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return event_channel;
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}
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uint8_t audio_dma_allocate_channel(void) {
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uint8_t dma_allocate_channel(void) {
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uint8_t channel;
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for (channel = 0; channel < AUDIO_DMA_CHANNEL_COUNT; channel++) {
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if (!audio_dma_allocated[channel]) {
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@ -64,7 +64,7 @@ uint8_t audio_dma_allocate_channel(void) {
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return channel; // i.e., return failure
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}
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void audio_dma_free_channel(uint8_t channel) {
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void dma_free_channel(uint8_t channel) {
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assert(channel < AUDIO_DMA_CHANNEL_COUNT);
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assert(audio_dma_allocated[channel]);
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audio_dma_disable_channel(channel);
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@ -188,7 +188,7 @@ audio_dma_result audio_dma_setup_playback(audio_dma_t *dma,
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bool output_signed,
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uint32_t output_register_address,
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uint8_t dma_trigger_source) {
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uint8_t dma_channel = audio_dma_allocate_channel();
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uint8_t dma_channel = dma_allocate_channel();
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if (dma_channel >= AUDIO_DMA_CHANNEL_COUNT) {
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return AUDIO_DMA_DMA_BUSY;
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}
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@ -306,7 +306,7 @@ void audio_dma_stop(audio_dma_t *dma) {
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disable_event_channel(dma->event_channel);
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MP_STATE_PORT(playing_audio)[channel] = NULL;
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audio_dma_state[channel] = NULL;
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audio_dma_free_channel(dma->dma_channel);
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dma_free_channel(dma->dma_channel);
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}
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dma->dma_channel = AUDIO_DMA_CHANNEL_COUNT;
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}
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@ -66,8 +66,8 @@ uint8_t audiosample_channel_count(mp_obj_t sample_obj);
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void audio_dma_init(audio_dma_t *dma);
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void audio_dma_reset(void);
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uint8_t audio_dma_allocate_channel(void);
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void audio_dma_free_channel(uint8_t channel);
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uint8_t dma_allocate_channel(void);
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void dma_free_channel(uint8_t channel);
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// This sets everything up but doesn't start the timer.
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// Sample is the python object for the sample to play.
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@ -367,7 +367,7 @@ static uint16_t filter_sample(uint32_t pdm_samples[4]) {
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// output_buffer_length is the number of slots, not the number of bytes.
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uint32_t common_hal_audiobusio_pdmin_record_to_buffer(audiobusio_pdmin_obj_t* self,
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uint16_t* output_buffer, uint32_t output_buffer_length) {
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uint8_t dma_channel = audio_dma_allocate_channel();
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uint8_t dma_channel = dma_allocate_channel();
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uint8_t event_channel = find_sync_event_channel_raise();
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// We allocate two buffers on the stack to use for double buffering.
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@ -473,7 +473,7 @@ uint32_t common_hal_audiobusio_pdmin_record_to_buffer(audiobusio_pdmin_obj_t* se
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}
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disable_event_channel(event_channel);
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audio_dma_free_channel(dma_channel);
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dma_free_channel(dma_channel);
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// Turn off serializer, but leave clock on, to avoid mic startup delay.
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i2s_set_serializer_enable(self->serializer, false);
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@ -157,7 +157,7 @@ static void setup_dma(DmacDescriptor* descriptor, size_t count, uint32_t *buffer
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void common_hal_imagecapture_parallelimagecapture_capture(imagecapture_parallelimagecapture_obj_t *self, void *buffer, size_t bufsize)
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{
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uint8_t dma_channel = audio_dma_allocate_channel();
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uint8_t dma_channel = dma_allocate_channel();
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uint32_t *dest = buffer;
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size_t count = bufsize / 4; // PCC receives 4 bytes (2 pixels) at a time
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@ -178,7 +178,7 @@ void common_hal_imagecapture_parallelimagecapture_capture(imagecapture_paralleli
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RUN_BACKGROUND_TASKS;
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// Allow user to break out of a timeout with a KeyboardInterrupt.
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if (mp_hal_is_interrupted()) {
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audio_dma_free_channel(dma_channel);
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dma_free_channel(dma_channel);
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return;
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}
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}
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@ -194,5 +194,5 @@ void common_hal_imagecapture_parallelimagecapture_capture(imagecapture_paralleli
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}
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dma_disable_channel(dma_channel);
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audio_dma_free_channel(dma_channel);
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dma_free_channel(dma_channel);
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}
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