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https://github.com/hathach/tinyusb.git
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Improve user feedback in case of wrong configuration of audio driver
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2134c1a875
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@ -81,14 +81,14 @@
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#endif
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#if (CFG_TUSB_MCU == OPT_MCU_STM32F1 && defined(STM32F1_SYNOPSYS)) || \
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CFG_TUSB_MCU == OPT_MCU_STM32F2 || \
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CFG_TUSB_MCU == OPT_MCU_STM32F4 || \
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CFG_TUSB_MCU == OPT_MCU_STM32F7 || \
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CFG_TUSB_MCU == OPT_MCU_STM32H7 || \
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CFG_TUSB_MCU == OPT_MCU_STM32F2 || \
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CFG_TUSB_MCU == OPT_MCU_STM32F4 || \
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CFG_TUSB_MCU == OPT_MCU_STM32F7 || \
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CFG_TUSB_MCU == OPT_MCU_STM32H7 || \
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(CFG_TUSB_MCU == OPT_MCU_STM32L4 && defined(STM32L4_SYNOPSYS))
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#define USE_LINEAR_BUFFER 0
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#define USE_LINEAR_BUFFER 0
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#else
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#define USE_LINEAR_BUFFER 1
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#define USE_LINEAR_BUFFER 1
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#endif
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// Declaration of buffers
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@ -182,9 +182,7 @@ CFG_TUSB_MEM_ALIGN uint8_t ctrl_buf_3[CFG_TUD_AUDIO_FUNC_3_CTRL_BUF_SZ];
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#endif
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// Active alternate setting of interfaces
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#if CFG_TUD_AUDIO_FUNC_1_N_AS_INT > 0
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CFG_TUSB_MEM_ALIGN uint8_t alt_setting_1[CFG_TUD_AUDIO_FUNC_1_N_AS_INT];
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#endif
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#if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_N_AS_INT > 0
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CFG_TUSB_MEM_ALIGN uint8_t alt_setting_2[CFG_TUD_AUDIO_FUNC_2_N_AS_INT];
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#endif
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@ -267,9 +265,7 @@ typedef struct
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uint8_t ep_int_ctr; // Audio control interrupt EP.
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#endif
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#if CFG_TUD_AUDIO_FUNC_1_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_2_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_3_N_AS_INT > 0
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uint8_t * alt_setting_ptr; // We need to save the current alternate setting this way, because it is possible that there are AS interfaces which do not have an EP!
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#endif
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uint8_t * alt_setting; // We need to save the current alternate setting this way, because it is possible that there are AS interfaces which do not have an EP!
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/*------------- From this point, data is not cleared by bus reset -------------*/
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@ -486,7 +482,7 @@ static bool audiod_rx_done_cb(uint8_t rhport, audiod_interface_t* audio, uint16_
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TU_VERIFY(audiod_get_AS_interface_index(audio->ep_out_as_intf_num, &idxDriver, &idxItf, &dummy2));
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// Call a weak callback here - a possibility for user to get informed an audio packet was received and data gets now loaded into EP FIFO (or decoded into support RX software FIFO)
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if (tud_audio_rx_done_pre_read_cb) TU_VERIFY(tud_audio_rx_done_pre_read_cb(rhport, n_bytes_received, idxDriver, audio->ep_out, audio->alt_setting_ptr[idxItf]));
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if (tud_audio_rx_done_pre_read_cb) TU_VERIFY(tud_audio_rx_done_pre_read_cb(rhport, n_bytes_received, idxDriver, audio->ep_out, audio->alt_setting[idxItf]));
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#if CFG_TUD_AUDIO_ENABLE_DECODING && CFG_TUD_AUDIO_ENABLE_EP_OUT
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@ -540,7 +536,7 @@ static bool audiod_rx_done_cb(uint8_t rhport, audiod_interface_t* audio, uint16_
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#endif
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// Call a weak callback here - a possibility for user to get informed decoding was completed
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if (tud_audio_rx_done_post_read_cb) TU_VERIFY(tud_audio_rx_done_post_read_cb(rhport, n_bytes_received, idxDriver, audio->ep_out, audio->alt_setting_ptr[idxItf]));
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if (tud_audio_rx_done_post_read_cb) TU_VERIFY(tud_audio_rx_done_post_read_cb(rhport, n_bytes_received, idxDriver, audio->ep_out, audio->alt_setting[idxItf]));
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return true;
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}
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@ -557,12 +553,12 @@ static inline uint8_t * audiod_interleaved_copy_bytes_fast_decode(uint16_t const
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{
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// This function is an optimized version of
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// while((uint8_t *)dst < dst_end)
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// {
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// memcpy(dst, src, nBytesToCopy);
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// dst = (uint8_t *)dst + nBytesToCopy;
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// src += nBytesToCopy * n_ff_used;
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// }
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// while((uint8_t *)dst < dst_end)
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// {
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// memcpy(dst, src, nBytesToCopy);
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// dst = (uint8_t *)dst + nBytesToCopy;
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// src += nBytesToCopy * n_ff_used;
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// }
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// Optimize for fast half word copies
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typedef struct{
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@ -596,9 +592,9 @@ static inline uint8_t * audiod_interleaved_copy_bytes_fast_decode(uint16_t const
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case 3:
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while((uint8_t *)dst < dst_end)
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{
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// memcpy(dst, src, 3);
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// dst = (uint8_t *)dst + 3;
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// src += 3 * n_ff_used;
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// memcpy(dst, src, 3);
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// dst = (uint8_t *)dst + 3;
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// src += 3 * n_ff_used;
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// TODO: Is there a faster way to copy 3 bytes?
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*(uint8_t *)dst++ = *src++;
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@ -767,7 +763,7 @@ static bool audiod_tx_done_cb(uint8_t rhport, audiod_interface_t * audio)
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// Call a weak callback here - a possibility for user to get informed former TX was completed and data gets now loaded into EP in buffer (in case FIFOs are used) or
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// if no FIFOs are used the user may use this call back to load its data into the EP IN buffer by use of tud_audio_n_write_ep_in_buffer().
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if (tud_audio_tx_done_pre_load_cb) TU_VERIFY(tud_audio_tx_done_pre_load_cb(rhport, idxDriver, audio->ep_in, audio->alt_setting_ptr[idxItf]));
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if (tud_audio_tx_done_pre_load_cb) TU_VERIFY(tud_audio_tx_done_pre_load_cb(rhport, idxDriver, audio->ep_in, audio->alt_setting[idxItf]));
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// Send everything in ISO EP FIFO
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uint16_t n_bytes_tx;
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@ -827,7 +823,7 @@ static bool audiod_tx_done_cb(uint8_t rhport, audiod_interface_t * audio)
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#endif
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// Call a weak callback here - a possibility for user to get informed former TX was completed and how many bytes were loaded for the next frame
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if (tud_audio_tx_done_post_load_cb) TU_VERIFY(tud_audio_tx_done_post_load_cb(rhport, n_bytes_tx, idxDriver, audio->ep_in, audio->alt_setting_ptr[idxItf]));
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if (tud_audio_tx_done_post_load_cb) TU_VERIFY(tud_audio_tx_done_post_load_cb(rhport, n_bytes_tx, idxDriver, audio->ep_in, audio->alt_setting[idxItf]));
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return true;
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}
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@ -887,9 +883,9 @@ static inline uint8_t * audiod_interleaved_copy_bytes_fast_encode(uint16_t const
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case 3:
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while((uint8_t *)src < src_end)
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{
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// memcpy(dst, src, 3);
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// src = (uint8_t *)src + 3;
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// dst += 3 * n_ff_used;
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// memcpy(dst, src, 3);
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// src = (uint8_t *)src + 3;
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// dst += 3 * n_ff_used;
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// TODO: Is there a faster way to copy 3 bytes?
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*dst++ = *(uint8_t *)src++;
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@ -1021,26 +1017,24 @@ void audiod_init(void)
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}
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// Initialize active alternate interface buffers
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#if CFG_TUD_AUDIO_FUNC_1_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_2_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_3_N_AS_INT > 0
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switch (i)
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{
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#if CFG_TUD_AUDIO_FUNC_1_N_AS_INT > 0
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case 0:
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audio->alt_setting_ptr = alt_setting_1;
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audio->alt_setting = alt_setting_1;
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break;
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#endif
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#if CFG_TUD_AUDIO > 1 && CFG_TUD_AUDIO_FUNC_2_N_AS_INT > 0
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case 1:
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audio->alt_setting_ptr = alt_setting_2;
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audio->alt_setting = alt_setting_2;
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break;
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#endif
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#if CFG_TUD_AUDIO > 2 && CFG_TUD_AUDIO_FUNC_3_N_AS_INT > 0
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case 2:
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audio->alt_setting_ptr = alt_setting_3;
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audio->alt_setting = alt_setting_3;
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break;
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#endif
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}
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#endif
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// Initialize IN EP FIFO if required
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#if CFG_TUD_AUDIO_ENABLE_EP_IN && !CFG_TUD_AUDIO_ENABLE_ENCODING
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@ -1400,7 +1394,6 @@ uint16_t audiod_open(uint8_t rhport, tusb_desc_interface_t const * itf_desc, uin
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static bool audiod_get_interface(uint8_t rhport, tusb_control_request_t const * p_request)
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{
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#if CFG_TUD_AUDIO_FUNC_1_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_2_N_AS_INT > 0 || CFG_TUD_AUDIO_FUNC_3_N_AS_INT > 0
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uint8_t const itf = tu_u16_low(p_request->wIndex);
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// Find index of audio streaming interface
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@ -1408,17 +1401,11 @@ static bool audiod_get_interface(uint8_t rhport, tusb_control_request_t const *
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uint8_t const *dummy;
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TU_VERIFY(audiod_get_AS_interface_index(itf, &idxDriver, &idxItf, &dummy));
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TU_VERIFY(tud_control_xfer(rhport, p_request, &_audiod_itf[idxDriver].alt_setting_ptr[idxItf], 1));
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TU_VERIFY(tud_control_xfer(rhport, p_request, &_audiod_itf[idxDriver].alt_setting[idxItf], 1));
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TU_LOG2(" Get itf: %u - current alt: %u\r\n", itf, _audiod_itf[idxDriver].alt_setting_ptr[idxItf]);
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TU_LOG2(" Get itf: %u - current alt: %u\r\n", itf, _audiod_itf[idxDriver].alt_setting[idxItf]);
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return true;
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#else
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(void) rhport;
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(void) p_request;
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return false;
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#endif
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}
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static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const * p_request)
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@ -1495,7 +1482,7 @@ static bool audiod_set_interface(uint8_t rhport, tusb_control_request_t const *
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#endif
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// Save current alternative interface setting
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audio->alt_setting_ptr[idxItf] = alt;
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audio->alt_setting[idxItf] = alt;
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// Open new EP if necessary - EPs are only to be closed or opened for AS interfaces - Look for AS interface with correct alternate interface
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// Get pointer at end
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