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-rw-r--r--examples/device/uac2_headset/CMakeLists.txt15
-rw-r--r--examples/device/uac2_headset/Makefile8
-rw-r--r--examples/device/uac2_headset/skip.txt1
-rw-r--r--examples/device/uac2_headset/src/main.c404
-rw-r--r--examples/device/uac2_headset/src/tusb_config.h51
-rw-r--r--examples/device/uac2_headset/src/usb_descriptors.c118
-rw-r--r--examples/device/uac2_headset/src/usb_descriptors.h233
7 files changed, 614 insertions, 216 deletions
diff --git a/examples/device/uac2_headset/CMakeLists.txt b/examples/device/uac2_headset/CMakeLists.txt
index ced98a909..52b88aac0 100644
--- a/examples/device/uac2_headset/CMakeLists.txt
+++ b/examples/device/uac2_headset/CMakeLists.txt
@@ -2,32 +2,29 @@ cmake_minimum_required(VERSION 3.20)
include(${CMAKE_CURRENT_SOURCE_DIR}/../../../hw/bsp/family_support.cmake)
-# gets PROJECT name for the example (e.g. <BOARD>-<DIR_NAME>)
-family_get_project_name(PROJECT ${CMAKE_CURRENT_LIST_DIR})
-
-project(${PROJECT} C CXX ASM)
+project(uac2_headset C CXX ASM)
# Checks this example is valid for the family and initializes the project
-family_initialize_project(${PROJECT} ${CMAKE_CURRENT_LIST_DIR})
+family_initialize_project(${PROJECT_NAME} ${CMAKE_CURRENT_LIST_DIR})
# Espressif has its own cmake build system
if(FAMILY STREQUAL "espressif")
return()
endif()
-add_executable(${PROJECT})
+add_executable(${PROJECT_NAME})
# Example source
-target_sources(${PROJECT} PUBLIC
+target_sources(${PROJECT_NAME} PUBLIC
${CMAKE_CURRENT_SOURCE_DIR}/src/main.c
${CMAKE_CURRENT_SOURCE_DIR}/src/usb_descriptors.c
)
# Example include
-target_include_directories(${PROJECT} PUBLIC
+target_include_directories(${PROJECT_NAME} PUBLIC
${CMAKE_CURRENT_SOURCE_DIR}/src
)
# Configure compilation flags and libraries for the example without RTOS.
# See the corresponding function in hw/bsp/FAMILY/family.cmake for details.
-family_configure_device_example(${PROJECT} noos)
+family_configure_device_example(${PROJECT_NAME} noos)
diff --git a/examples/device/uac2_headset/Makefile b/examples/device/uac2_headset/Makefile
index 7fa475da5..035e90308 100644
--- a/examples/device/uac2_headset/Makefile
+++ b/examples/device/uac2_headset/Makefile
@@ -1,11 +1,11 @@
-include ../../build_system/make/make.mk
+include ../../../hw/bsp/family_support.mk
INC += \
src \
- $(TOP)/hw \
+
# Example source
EXAMPLE_SOURCE += $(wildcard src/*.c)
-SRC_C += $(addprefix $(CURRENT_PATH)/, $(EXAMPLE_SOURCE))
+SRC_C += $(addprefix $(EXAMPLE_PATH)/, $(EXAMPLE_SOURCE))
-include ../../build_system/make/rules.mk
+include ../../../hw/bsp/family_rules.mk
diff --git a/examples/device/uac2_headset/skip.txt b/examples/device/uac2_headset/skip.txt
index a2a76af0e..db1d5b80b 100644
--- a/examples/device/uac2_headset/skip.txt
+++ b/examples/device/uac2_headset/skip.txt
@@ -6,3 +6,4 @@ mcu:SAME5X
mcu:SAMG
board:stm32l052dap52
family:espressif
+mcu:CH583
diff --git a/examples/device/uac2_headset/src/main.c b/examples/device/uac2_headset/src/main.c
index 102a6eef1..c30b31f67 100644
--- a/examples/device/uac2_headset/src/main.c
+++ b/examples/device/uac2_headset/src/main.c
@@ -73,7 +73,7 @@ static uint32_t blink_interval_ms = BLINK_NOT_MOUNTED;
// Audio controls
// Current states
-int8_t mute[CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX + 1]; // +1 for master channel 0
+uint8_t mute[CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX + 1]; // +1 for master channel 0
int16_t volume[CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX + 1];// +1 for master channel 0
// Buffer for microphone data
@@ -141,18 +141,195 @@ void tud_resume_cb(void) {
blink_interval_ms = tud_mounted() ? BLINK_MOUNTED : BLINK_NOT_MOUNTED;
}
+//--------------------------------------------------------------------+
+// Audio Callback Functions
+//--------------------------------------------------------------------+
+
+//--------------------------------------------------------------------+
+// UAC1 Helper Functions
+//--------------------------------------------------------------------+
+
+static bool audio10_set_req_ep(tusb_control_request_t const *p_request, uint8_t *pBuff) {
+ uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
+
+ switch (ctrlSel) {
+ case AUDIO10_EP_CTRL_SAMPLING_FREQ:
+ if (p_request->bRequest == AUDIO10_CS_REQ_SET_CUR) {
+ // Request uses 3 bytes
+ TU_VERIFY(p_request->wLength == 3);
+
+ current_sample_rate = tu_unaligned_read32(pBuff) & 0x00FFFFFF;
+
+ TU_LOG2("EP set current freq: %" PRIu32 "\r\n", current_sample_rate);
+
+ return true;
+ }
+ break;
+
+ // Unknown/Unsupported control
+ default:
+ TU_BREAKPOINT();
+ return false;
+ }
+
+ return false;
+}
+
+static bool audio10_get_req_ep(uint8_t rhport, tusb_control_request_t const *p_request) {
+ uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
+
+ switch (ctrlSel) {
+ case AUDIO10_EP_CTRL_SAMPLING_FREQ:
+ if (p_request->bRequest == AUDIO10_CS_REQ_GET_CUR) {
+ TU_LOG2("EP get current freq\r\n");
+
+ uint8_t freq[3];
+ freq[0] = (uint8_t) (current_sample_rate & 0xFF);
+ freq[1] = (uint8_t) ((current_sample_rate >> 8) & 0xFF);
+ freq[2] = (uint8_t) ((current_sample_rate >> 16) & 0xFF);
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, freq, sizeof(freq));
+ }
+ break;
+
+ // Unknown/Unsupported control
+ default:
+ TU_BREAKPOINT();
+ return false;
+ }
+
+ return false;
+}
+
+static bool audio10_set_req_entity(tusb_control_request_t const *p_request, uint8_t *pBuff) {
+ uint8_t channelNum = TU_U16_LOW(p_request->wValue);
+ uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
+ uint8_t entityID = TU_U16_HIGH(p_request->wIndex);
+
+ // If request is for our speaker feature unit
+ if (entityID == UAC1_ENTITY_SPK_FEATURE_UNIT) {
+ switch (ctrlSel) {
+ case AUDIO10_FU_CTRL_MUTE:
+ switch (p_request->bRequest) {
+ case AUDIO10_CS_REQ_SET_CUR:
+ // Only 1st form is supported
+ TU_VERIFY(p_request->wLength == 1);
+
+ mute[channelNum] = pBuff[0];
+
+ TU_LOG2(" Set Mute: %d of channel: %u\r\n", mute[channelNum], channelNum);
+ return true;
+
+ default:
+ return false; // not supported
+ }
+
+ case AUDIO10_FU_CTRL_VOLUME:
+ switch (p_request->bRequest) {
+ case AUDIO10_CS_REQ_SET_CUR:
+ // Only 1st form is supported
+ TU_VERIFY(p_request->wLength == 2);
+
+ volume[channelNum] = (int16_t)tu_unaligned_read16(pBuff) / 256;
+
+ TU_LOG2(" Set Volume: %d dB of channel: %u\r\n", volume[channelNum], channelNum);
+ return true;
+
+ default:
+ return false; // not supported
+ }
+
+ // Unknown/Unsupported control
+ default:
+ TU_BREAKPOINT();
+ return false;
+ }
+ }
+
+ return false;
+}
+
+static bool audio10_get_req_entity(uint8_t rhport, tusb_control_request_t const *p_request) {
+ uint8_t channelNum = TU_U16_LOW(p_request->wValue);
+ uint8_t ctrlSel = TU_U16_HIGH(p_request->wValue);
+ uint8_t entityID = TU_U16_HIGH(p_request->wIndex);
+
+ // If request is for our speaker feature unit
+ if (entityID == UAC1_ENTITY_SPK_FEATURE_UNIT) {
+ switch (ctrlSel) {
+ case AUDIO10_FU_CTRL_MUTE:
+ // Audio control mute cur parameter block consists of only one byte - we thus can send it right away
+ // There does not exist a range parameter block for mute
+ TU_LOG2(" Get Mute of channel: %u\r\n", channelNum);
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &mute[channelNum], 1);
+
+ case AUDIO10_FU_CTRL_VOLUME:
+ switch (p_request->bRequest) {
+ case AUDIO10_CS_REQ_GET_CUR:
+ TU_LOG2(" Get Volume of channel: %u\r\n", channelNum);
+ {
+ int16_t vol = (int16_t) volume[channelNum];
+ vol = vol * 256; // convert to 1/256 dB units
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &vol, sizeof(vol));
+ }
+
+ case AUDIO10_CS_REQ_GET_MIN:
+ TU_LOG2(" Get Volume min of channel: %u\r\n", channelNum);
+ {
+ int16_t min = -90; // -90 dB
+ min = min * 256; // convert to 1/256 dB units
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &min, sizeof(min));
+ }
+
+ case AUDIO10_CS_REQ_GET_MAX:
+ TU_LOG2(" Get Volume max of channel: %u\r\n", channelNum);
+ {
+ int16_t max = 30; // +30 dB
+ max = max * 256; // convert to 1/256 dB units
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &max, sizeof(max));
+ }
+
+ case AUDIO10_CS_REQ_GET_RES:
+ TU_LOG2(" Get Volume res of channel: %u\r\n", channelNum);
+ {
+ int16_t res = 1; // 1 dB
+ res = res * 256; // convert to 1/256 dB units
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &res, sizeof(res));
+ }
+ // Unknown/Unsupported control
+ default:
+ TU_BREAKPOINT();
+ return false;
+ }
+ break;
+
+ // Unknown/Unsupported control
+ default:
+ TU_BREAKPOINT();
+ return false;
+ }
+ }
+
+ return false;
+}
+
+//--------------------------------------------------------------------+
+// UAC2 Helper Functions
+//--------------------------------------------------------------------+
+
+#if TUD_OPT_HIGH_SPEED
+
// Helper for clock get requests
-static bool tud_audio_clock_get_request(uint8_t rhport, audio_control_request_t const *request) {
- TU_ASSERT(request->bEntityID == UAC2_ENTITY_CLOCK);
+static bool audio20_clock_get_request(uint8_t rhport, tusb_control_request_t const *p_request) {
+ uint8_t const ctrl_sel = TU_U16_HIGH(p_request->wValue);
- if (request->bControlSelector == AUDIO_CS_CTRL_SAM_FREQ) {
- if (request->bRequest == AUDIO_CS_REQ_CUR) {
+ if (ctrl_sel == AUDIO20_CS_CTRL_SAM_FREQ) {
+ if (p_request->bRequest == AUDIO20_CS_REQ_CUR) {
TU_LOG1("Clock get current freq %" PRIu32 "\r\n", current_sample_rate);
- audio_control_cur_4_t curf = {(int32_t) tu_htole32(current_sample_rate)};
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &curf, sizeof(curf));
- } else if (request->bRequest == AUDIO_CS_REQ_RANGE) {
- audio_control_range_4_n_t(N_SAMPLE_RATES) rangef =
+ audio20_control_cur_4_t curf = {(int32_t) tu_htole32(current_sample_rate)};
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &curf, sizeof(curf));
+ } else if (p_request->bRequest == AUDIO20_CS_REQ_RANGE) {
+ audio20_control_range_4_n_t(N_SAMPLE_RATES) rangef =
{
.wNumSubRanges = tu_htole16(N_SAMPLE_RATES)};
TU_LOG1("Clock get %d freq ranges\r\n", N_SAMPLE_RATES);
@@ -163,128 +340,185 @@ static bool tud_audio_clock_get_request(uint8_t rhport, audio_control_request_t
TU_LOG1("Range %d (%d, %d, %d)\r\n", i, (int) rangef.subrange[i].bMin, (int) rangef.subrange[i].bMax, (int) rangef.subrange[i].bRes);
}
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &rangef, sizeof(rangef));
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &rangef, sizeof(rangef));
}
- } else if (request->bControlSelector == AUDIO_CS_CTRL_CLK_VALID &&
- request->bRequest == AUDIO_CS_REQ_CUR) {
- audio_control_cur_1_t cur_valid = {.bCur = 1};
+ } else if (ctrl_sel == AUDIO20_CS_CTRL_CLK_VALID &&
+ p_request->bRequest == AUDIO20_CS_REQ_CUR) {
+ audio20_control_cur_1_t cur_valid = {.bCur = 1};
TU_LOG1("Clock get is valid %u\r\n", cur_valid.bCur);
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &cur_valid, sizeof(cur_valid));
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &cur_valid, sizeof(cur_valid));
}
- TU_LOG1("Clock get request not supported, entity = %u, selector = %u, request = %u\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ TU_LOG1("Clock get request not supported, selector = %u, request = %u\r\n",
+ ctrl_sel, p_request->bRequest);
return false;
}
// Helper for clock set requests
-static bool tud_audio_clock_set_request(uint8_t rhport, audio_control_request_t const *request, uint8_t const *buf) {
+static bool audio20_clock_set_request(uint8_t rhport, tusb_control_request_t const *p_request, uint8_t const *buf) {
(void) rhport;
- TU_ASSERT(request->bEntityID == UAC2_ENTITY_CLOCK);
- TU_VERIFY(request->bRequest == AUDIO_CS_REQ_CUR);
+ uint8_t const ctrl_sel = TU_U16_HIGH(p_request->wValue);
+
+ TU_VERIFY(p_request->bRequest == AUDIO20_CS_REQ_CUR);
- if (request->bControlSelector == AUDIO_CS_CTRL_SAM_FREQ) {
- TU_VERIFY(request->wLength == sizeof(audio_control_cur_4_t));
+ if (ctrl_sel == AUDIO20_CS_CTRL_SAM_FREQ) {
+ TU_VERIFY(p_request->wLength == sizeof(audio20_control_cur_4_t));
- current_sample_rate = (uint32_t) ((audio_control_cur_4_t const *) buf)->bCur;
+ current_sample_rate = (uint32_t) ((audio20_control_cur_4_t const *) buf)->bCur;
TU_LOG1("Clock set current freq: %" PRIu32 "\r\n", current_sample_rate);
return true;
} else {
- TU_LOG1("Clock set request not supported, entity = %u, selector = %u, request = %u\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ TU_LOG1("Clock set request not supported, selector = %u, request = %u\r\n",
+ ctrl_sel, p_request->bRequest);
return false;
}
}
// Helper for feature unit get requests
-static bool tud_audio_feature_unit_get_request(uint8_t rhport, audio_control_request_t const *request) {
- TU_ASSERT(request->bEntityID == UAC2_ENTITY_SPK_FEATURE_UNIT);
+static bool audio20_feature_unit_get_request(uint8_t rhport, tusb_control_request_t const *p_request) {
+ uint8_t const ctrl_sel = TU_U16_HIGH(p_request->wValue);
+ uint8_t const channel_num = TU_U16_LOW(p_request->wValue);
- if (request->bControlSelector == AUDIO_FU_CTRL_MUTE && request->bRequest == AUDIO_CS_REQ_CUR) {
- audio_control_cur_1_t mute1 = {.bCur = mute[request->bChannelNumber]};
- TU_LOG1("Get channel %u mute %d\r\n", request->bChannelNumber, mute1.bCur);
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &mute1, sizeof(mute1));
- } else if (request->bControlSelector == AUDIO_FU_CTRL_VOLUME) {
- if (request->bRequest == AUDIO_CS_REQ_RANGE) {
- audio_control_range_2_n_t(1) range_vol = {
+ if (ctrl_sel == AUDIO20_FU_CTRL_MUTE && p_request->bRequest == AUDIO20_CS_REQ_CUR) {
+ audio20_control_cur_1_t mute1 = {.bCur = mute[channel_num]};
+ TU_LOG1("Get channel %u mute %d\r\n", channel_num, mute1.bCur);
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &mute1, sizeof(mute1));
+ } else if (ctrl_sel == AUDIO20_FU_CTRL_VOLUME) {
+ if (p_request->bRequest == AUDIO20_CS_REQ_RANGE) {
+ audio20_control_range_2_n_t(1) range_vol = {
.wNumSubRanges = tu_htole16(1),
.subrange[0] = {.bMin = tu_htole16(-VOLUME_CTRL_50_DB), tu_htole16(VOLUME_CTRL_0_DB), tu_htole16(256)}};
- TU_LOG1("Get channel %u volume range (%d, %d, %u) dB\r\n", request->bChannelNumber,
+ TU_LOG1("Get channel %u volume range (%d, %d, %u) dB\r\n", channel_num,
range_vol.subrange[0].bMin / 256, range_vol.subrange[0].bMax / 256, range_vol.subrange[0].bRes / 256);
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &range_vol, sizeof(range_vol));
- } else if (request->bRequest == AUDIO_CS_REQ_CUR) {
- audio_control_cur_2_t cur_vol = {.bCur = tu_htole16(volume[request->bChannelNumber])};
- TU_LOG1("Get channel %u volume %d dB\r\n", request->bChannelNumber, cur_vol.bCur / 256);
- return tud_audio_buffer_and_schedule_control_xfer(rhport, (tusb_control_request_t const *) request, &cur_vol, sizeof(cur_vol));
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &range_vol, sizeof(range_vol));
+ } else if (p_request->bRequest == AUDIO20_CS_REQ_CUR) {
+ audio20_control_cur_2_t cur_vol = {.bCur = tu_htole16(volume[channel_num])};
+ TU_LOG1("Get channel %u volume %d dB\r\n", channel_num, cur_vol.bCur / 256);
+ return tud_audio_buffer_and_schedule_control_xfer(rhport, p_request, &cur_vol, sizeof(cur_vol));
}
}
- TU_LOG1("Feature unit get request not supported, entity = %u, selector = %u, request = %u\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ TU_LOG1("Feature unit get request not supported, selector = %u, request = %u\r\n",
+ ctrl_sel, p_request->bRequest);
return false;
}
// Helper for feature unit set requests
-static bool tud_audio_feature_unit_set_request(uint8_t rhport, audio_control_request_t const *request, uint8_t const *buf) {
+static bool audio20_feature_unit_set_request(uint8_t rhport, tusb_control_request_t const *p_request, uint8_t const *buf) {
(void) rhport;
- TU_ASSERT(request->bEntityID == UAC2_ENTITY_SPK_FEATURE_UNIT);
- TU_VERIFY(request->bRequest == AUDIO_CS_REQ_CUR);
+ uint8_t const ctrl_sel = TU_U16_HIGH(p_request->wValue);
+ uint8_t const channel_num = TU_U16_LOW(p_request->wValue);
+
+ TU_VERIFY(p_request->bRequest == AUDIO20_CS_REQ_CUR);
- if (request->bControlSelector == AUDIO_FU_CTRL_MUTE) {
- TU_VERIFY(request->wLength == sizeof(audio_control_cur_1_t));
+ if (ctrl_sel == AUDIO20_FU_CTRL_MUTE) {
+ TU_VERIFY(p_request->wLength == sizeof(audio20_control_cur_1_t));
- mute[request->bChannelNumber] = ((audio_control_cur_1_t const *) buf)->bCur;
+ mute[channel_num] = ((audio20_control_cur_1_t const *) buf)->bCur;
- TU_LOG1("Set channel %d Mute: %d\r\n", request->bChannelNumber, mute[request->bChannelNumber]);
+ TU_LOG1("Set channel %d Mute: %d\r\n", channel_num, mute[channel_num]);
return true;
- } else if (request->bControlSelector == AUDIO_FU_CTRL_VOLUME) {
- TU_VERIFY(request->wLength == sizeof(audio_control_cur_2_t));
+ } else if (ctrl_sel == AUDIO20_FU_CTRL_VOLUME) {
+ TU_VERIFY(p_request->wLength == sizeof(audio20_control_cur_2_t));
- volume[request->bChannelNumber] = ((audio_control_cur_2_t const *) buf)->bCur;
+ volume[channel_num] = ((audio20_control_cur_2_t const *) buf)->bCur;
- TU_LOG1("Set channel %d volume: %d dB\r\n", request->bChannelNumber, volume[request->bChannelNumber] / 256);
+ TU_LOG1("Set channel %d volume: %d dB\r\n", channel_num, volume[channel_num] / 256);
return true;
} else {
- TU_LOG1("Feature unit set request not supported, entity = %u, selector = %u, request = %u\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ TU_LOG1("Feature unit set request not supported, selector = %u, request = %u\r\n",
+ ctrl_sel, p_request->bRequest);
return false;
}
}
-//--------------------------------------------------------------------+
-// Application Callback API Implementations
-//--------------------------------------------------------------------+
+static bool audio20_get_req_entity(uint8_t rhport, tusb_control_request_t const *p_request) {
+ uint8_t const entity_id = TU_U16_HIGH(p_request->wIndex);
+
+ if (entity_id == UAC2_ENTITY_CLOCK)
+ return audio20_clock_get_request(rhport, p_request);
+ if (entity_id == UAC2_ENTITY_SPK_FEATURE_UNIT)
+ return audio20_feature_unit_get_request(rhport, p_request);
+ else {
+ TU_LOG1("Get request not handled, entity = %d, selector = %d, request = %d\r\n",
+ entity_id, TU_U16_HIGH(p_request->wValue), p_request->bRequest);
+ }
+ return false;
+}
+
+static bool audio20_set_req_entity(uint8_t rhport, tusb_control_request_t const *p_request, uint8_t *buf) {
+ uint8_t const entity_id = TU_U16_HIGH(p_request->wIndex);
+
+ if (entity_id == UAC2_ENTITY_SPK_FEATURE_UNIT)
+ return audio20_feature_unit_set_request(rhport, p_request, buf);
+ if (entity_id == UAC2_ENTITY_CLOCK)
+ return audio20_clock_set_request(rhport, p_request, buf);
+ TU_LOG1("Set request not handled, entity = %d, selector = %d, request = %d\r\n",
+ entity_id, TU_U16_HIGH(p_request->wValue), p_request->bRequest);
+
+ return false;
+}
+
+#endif // TUD_OPT_HIGH_SPEED
+
+// Invoked when audio class specific set request received for an EP
+bool tud_audio_set_req_ep_cb(uint8_t rhport, tusb_control_request_t const *p_request, uint8_t *pBuff) {
+ (void) rhport;
+ (void) pBuff;
+
+ if (tud_audio_version() == 1) {
+ return audio10_set_req_ep(p_request, pBuff);
+ } else if (tud_audio_version() == 2) {
+ // We do not support any requests here
+ }
+
+ return false;// Yet not implemented
+}
+
+// Invoked when audio class specific get request received for an EP
+bool tud_audio_get_req_ep_cb(uint8_t rhport, tusb_control_request_t const *p_request) {
+ (void) rhport;
+
+ if (tud_audio_version() == 1) {
+ return audio10_get_req_ep(rhport, p_request);
+ } else if (tud_audio_version() == 2) {
+ // We do not support any requests here
+ }
+
+ return false;// Yet not implemented
+}
// Invoked when audio class specific get request received for an entity
bool tud_audio_get_req_entity_cb(uint8_t rhport, tusb_control_request_t const *p_request) {
- audio_control_request_t const *request = (audio_control_request_t const *) p_request;
+ (void) rhport;
- if (request->bEntityID == UAC2_ENTITY_CLOCK)
- return tud_audio_clock_get_request(rhport, request);
- if (request->bEntityID == UAC2_ENTITY_SPK_FEATURE_UNIT)
- return tud_audio_feature_unit_get_request(rhport, request);
- else {
- TU_LOG1("Get request not handled, entity = %d, selector = %d, request = %d\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ if (tud_audio_version() == 1) {
+ return audio10_get_req_entity(rhport, p_request);
+#if TUD_OPT_HIGH_SPEED
+ } else if (tud_audio_version() == 2) {
+ return audio20_get_req_entity(rhport, p_request);
+#endif
}
+
return false;
}
// Invoked when audio class specific set request received for an entity
bool tud_audio_set_req_entity_cb(uint8_t rhport, tusb_control_request_t const *p_request, uint8_t *buf) {
- audio_control_request_t const *request = (audio_control_request_t const *) p_request;
+ (void) rhport;
- if (request->bEntityID == UAC2_ENTITY_SPK_FEATURE_UNIT)
- return tud_audio_feature_unit_set_request(rhport, request, buf);
- if (request->bEntityID == UAC2_ENTITY_CLOCK)
- return tud_audio_clock_set_request(rhport, request, buf);
- TU_LOG1("Set request not handled, entity = %d, selector = %d, request = %d\r\n",
- request->bEntityID, request->bControlSelector, request->bRequest);
+ if (tud_audio_version() == 1) {
+ return audio10_set_req_entity(p_request, buf);
+#if TUD_OPT_HIGH_SPEED
+ } else if (tud_audio_version() == 2) {
+ return audio20_set_req_entity(rhport, p_request, buf);
+#endif
+ }
return false;
}
@@ -292,8 +526,8 @@ bool tud_audio_set_req_entity_cb(uint8_t rhport, tusb_control_request_t const *p
bool tud_audio_set_itf_close_ep_cb(uint8_t rhport, tusb_control_request_t const *p_request) {
(void) rhport;
- uint8_t const itf = tu_u16_low(tu_le16toh(p_request->wIndex));
- uint8_t const alt = tu_u16_low(tu_le16toh(p_request->wValue));
+ uint8_t const itf = tu_u16_low(p_request->wIndex);
+ uint8_t const alt = tu_u16_low(p_request->wValue);
if (ITF_NUM_AUDIO_STREAMING_SPK == itf && alt == 0) {
blink_interval_ms = BLINK_MOUNTED;
@@ -304,8 +538,8 @@ bool tud_audio_set_itf_close_ep_cb(uint8_t rhport, tusb_control_request_t const
bool tud_audio_set_itf_cb(uint8_t rhport, tusb_control_request_t const *p_request) {
(void) rhport;
- uint8_t const itf = tu_u16_low(tu_le16toh(p_request->wIndex));
- uint8_t const alt = tu_u16_low(tu_le16toh(p_request->wValue));
+ uint8_t const itf = tu_u16_low(p_request->wIndex);
+ uint8_t const alt = tu_u16_low(p_request->wValue);
TU_LOG2("Set interface %d alt %d\r\n", itf, alt);
if (ITF_NUM_AUDIO_STREAMING_SPK == itf && alt != 0) {
@@ -329,7 +563,7 @@ bool tud_audio_set_itf_cb(uint8_t rhport, tusb_control_request_t const *p_reques
// In a real application, this would be replaced with actual I2S send/receive callback.
void audio_task(void) {
static uint32_t start_ms = 0;
- uint32_t curr_ms = board_millis();
+ uint32_t curr_ms = tusb_time_millis_api();
if (start_ms == curr_ms) return;// not enough time
start_ms = curr_ms;
// When new data arrived, copy data from speaker buffer, to microphone buffer
@@ -375,11 +609,15 @@ void audio_control_task(void) {
static uint32_t start_ms = 0;
static uint32_t btn_prev = 0;
- if (board_millis() - start_ms < interval_ms) return;// not enough time
+ if (tusb_time_millis_api() - start_ms < interval_ms) return;// not enough time
start_ms += interval_ms;
uint32_t btn = board_button_read();
+ // Even UAC1 spec have status interrupt support like UAC2, most host do not support it
+ // So you have to either use UAC2 or use old day HID volume control
+ TU_VERIFY((tud_audio_version() == 1),);
+
if (!btn_prev && btn) {
// Adjust volume between 0dB (100%) and -30dB (10%)
for (int i = 0; i < CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX + 1; i++) {
@@ -387,14 +625,14 @@ void audio_control_task(void) {
}
// 6.1 Interrupt Data Message
- const audio_interrupt_data_t data = {
+ const audio_interrupt_data_t data = {.v2 = {
.bInfo = 0, // Class-specific interrupt, originated from an interface
- .bAttribute = AUDIO_CS_REQ_CUR, // Caused by current settings
+ .bAttribute = AUDIO20_CS_REQ_CUR, // Caused by current settings
.wValue_cn_or_mcn = 0, // CH0: master volume
- .wValue_cs = AUDIO_FU_CTRL_VOLUME, // Volume change
+ .wValue_cs = AUDIO20_FU_CTRL_VOLUME, // Volume change
.wIndex_ep_or_int = 0, // From the interface itself
.wIndex_entity_id = UAC2_ENTITY_SPK_FEATURE_UNIT,// From feature unit
- };
+ }};
tud_audio_int_write(&data);
}
@@ -410,7 +648,7 @@ void led_blinking_task(void) {
static bool led_state = false;
// Blink every interval ms
- if (board_millis() - start_ms < blink_interval_ms) return;
+ if (tusb_time_millis_api() - start_ms < blink_interval_ms) return;
start_ms += blink_interval_ms;
board_led_write(led_state);
diff --git a/examples/device/uac2_headset/src/tusb_config.h b/examples/device/uac2_headset/src/tusb_config.h
index e9165163b..a43a4bd25 100644
--- a/examples/device/uac2_headset/src/tusb_config.h
+++ b/examples/device/uac2_headset/src/tusb_config.h
@@ -24,8 +24,8 @@
*
*/
-#ifndef _TUSB_CONFIG_H_
-#define _TUSB_CONFIG_H_
+#ifndef TUSB_CONFIG_H_
+#define TUSB_CONFIG_H_
#ifdef __cplusplus
extern "C" {
@@ -108,8 +108,6 @@ extern "C" {
// Allow volume controlled by on-baord button
#define CFG_TUD_AUDIO_ENABLE_INTERRUPT_EP 1
-#define CFG_TUD_AUDIO_FUNC_1_DESC_LEN TUD_AUDIO_HEADSET_STEREO_DESC_LEN
-
// How many formats are used, need to adjust USB descriptor if changed
#define CFG_TUD_AUDIO_FUNC_1_N_FORMATS 2
@@ -126,43 +124,48 @@ extern "C" {
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX 2
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_RX 16
-#if defined(__RX__)
-// 8bit in 8bit slots
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX 1
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_TX 8
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX 1
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_RX 8
-#else
-// 24bit in 32bit slots
+// 24bit in 32bit slots (UAC2 only)
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX 4
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_TX 24
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX 4
#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_RX 24
-#endif
// EP and buffer size - for isochronous EP´s, the buffer and EP size are equal (different sizes would not make sense)
#define CFG_TUD_AUDIO_ENABLE_EP_IN 1
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_1_EP_SZ_IN TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX)
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_EP_SZ_IN TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX)
+// UAC1 (Full-Speed) Endpoint size calculation
+#define CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_IN TUD_AUDIO_EP_SIZE(false, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX)
+
+// UAC2 (High-Speed) Endpoint size calculation
+#define CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_IN TUD_AUDIO_EP_SIZE(true, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX)
+#define CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_IN TUD_AUDIO_EP_SIZE(true, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX)
-#define CFG_TUD_AUDIO_FUNC_1_EP_IN_SZ_MAX TU_MAX(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_EP_SZ_IN, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_EP_SZ_IN) // Maximum EP IN size for all AS alternate settings used
-#define CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ (TUD_OPT_HIGH_SPEED ? 32 : 4) * CFG_TUD_AUDIO_FUNC_1_EP_IN_SZ_MAX // Example read FIFO every 1ms, so it should be 8 times larger for HS device
+// Maximum EP IN size for all AS alternate settings used
+#define CFG_TUD_AUDIO_FUNC_1_EP_IN_SZ_MAX TU_MAX(CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_IN, TU_MAX(CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_IN, CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_IN))
+
+// Tx flow control needs buffer size >= 4* EP size to work correctly
+// Example write FIFO every 1ms (8 HS frames), so buffer size should be 8 times larger for HS device
+#define CFG_TUD_AUDIO_FUNC_1_EP_IN_SW_BUF_SZ TU_MAX(4 * CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_IN, TU_MAX(32 * CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_IN, 32 * CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_IN))
// EP and buffer size - for isochronous EP´s, the buffer and EP size are equal (different sizes would not make sense)
#define CFG_TUD_AUDIO_ENABLE_EP_OUT 1
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_1_EP_SZ_OUT TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX)
-#define CFG_TUD_AUDIO_FUNC_1_FORMAT_2_EP_SZ_OUT TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX)
+// UAC1 (Full-Speed) Endpoint size calculation
+#define CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_OUT TUD_AUDIO_EP_SIZE(false, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX)
+
+// UAC2 (High-Speed) Endpoint size calculation
+#define CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_OUT TUD_AUDIO_EP_SIZE(true, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX)
+#define CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_OUT TUD_AUDIO_EP_SIZE(true, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX)
-#define CFG_TUD_AUDIO_FUNC_1_EP_OUT_SZ_MAX TU_MAX(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_EP_SZ_OUT, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_EP_SZ_OUT) // Maximum EP IN size for all AS alternate settings used
-#define CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ (TUD_OPT_HIGH_SPEED ? 32 : 4) * CFG_TUD_AUDIO_FUNC_1_EP_OUT_SZ_MAX // Example read FIFO every 1ms, so it should be 8 times larger for HS device
+// Maximum EP OUT size for all AS alternate settings used
+#define CFG_TUD_AUDIO_FUNC_1_EP_OUT_SZ_MAX TU_MAX(CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_OUT, TU_MAX(CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_OUT, CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_OUT))
-// Size of control request buffer
-#define CFG_TUD_AUDIO_FUNC_1_CTRL_BUF_SZ 64
+// Rx flow control needs buffer size >= 4* EP size to work correctly
+// Example read FIFO every 1ms (8 HS frames), so buffer size should be 8 times larger for HS device
+#define CFG_TUD_AUDIO_FUNC_1_EP_OUT_SW_BUF_SZ TU_MAX(4 * CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_OUT, TU_MAX(32 * CFG_TUD_AUDIO20_FUNC_1_FORMAT_1_EP_SZ_OUT, 32 * CFG_TUD_AUDIO20_FUNC_1_FORMAT_2_EP_SZ_OUT))
#ifdef __cplusplus
}
#endif
-#endif /* _TUSB_CONFIG_H_ */
+#endif /* TUSB_CONFIG_H_ */
diff --git a/examples/device/uac2_headset/src/usb_descriptors.c b/examples/device/uac2_headset/src/usb_descriptors.c
index bc9160d5e..b554e7195 100644
--- a/examples/device/uac2_headset/src/usb_descriptors.c
+++ b/examples/device/uac2_headset/src/usb_descriptors.c
@@ -34,14 +34,14 @@
* Auto ProductID layout's Bitmap:
* [MSB] AUDIO | MIDI | HID | MSC | CDC [LSB]
*/
-#define _PID_MAP(itf, n) ( (CFG_TUD_##itf) << (n) )
-#define USB_PID (0x4000 | _PID_MAP(CDC, 0) | _PID_MAP(MSC, 1) | _PID_MAP(HID, 2) | \
- _PID_MAP(MIDI, 3) | _PID_MAP(AUDIO, 4) | _PID_MAP(VENDOR, 5) )
+#define PID_MAP(itf, n) ((CFG_TUD_##itf) ? (1 << (n)) : 0)
+#define USB_PID (0x4000 | PID_MAP(CDC, 0) | PID_MAP(MSC, 1) | PID_MAP(HID, 2) | \
+ PID_MAP(MIDI, 3) | PID_MAP(AUDIO, 4) | PID_MAP(VENDOR, 5) )
//--------------------------------------------------------------------+
// Device Descriptors
//--------------------------------------------------------------------+
-tusb_desc_device_t const desc_device =
+static tusb_desc_device_t const desc_device =
{
.bLength = sizeof(tusb_desc_device_t),
.bDescriptorType = TUSB_DESC_DEVICE,
@@ -87,9 +87,9 @@ uint8_t const * tud_descriptor_device_cb(void)
#elif CFG_TUSB_MCU == OPT_MCU_CXD56
// CXD56 USB driver has fixed endpoint type (bulk/interrupt/iso) and direction (IN/OUT) by its number
// 0 control (IN/OUT), 1 Bulk (IN), 2 Bulk (OUT), 3 In (IN), 4 Bulk (IN), 5 Bulk (OUT), 6 In (IN)
- // #define EPNUM_AUDIO_IN 0x01
- // #define EPNUM_AUDIO_OUT 0x02
- // #define EPNUM_AUDIO_INT 0x03
+ #define EPNUM_AUDIO_IN 0x01
+ #define EPNUM_AUDIO_OUT 0x02
+ #define EPNUM_AUDIO_INT 0x03
#elif CFG_TUSB_MCU == OPT_MCU_NRF5X
// ISO endpoints for NRF5x are fixed to 0x08 (0x88)
@@ -97,12 +97,19 @@ uint8_t const * tud_descriptor_device_cb(void)
#define EPNUM_AUDIO_OUT 0x08
#define EPNUM_AUDIO_INT 0x01
-#elif defined(TUD_ENDPOINT_ONE_DIRECTION_ONLY)
+#elif CFG_TUD_ENDPOINT_ONE_DIRECTION_ONLY
// MCUs that don't support a same endpoint number with different direction IN and OUT defined in tusb_mcu.h
// e.g EP1 OUT & EP1 IN cannot exist together
- #define EPNUM_AUDIO_IN 0x01
- #define EPNUM_AUDIO_OUT 0x02
- #define EPNUM_AUDIO_INT 0x03
+ #if TU_CHECK_MCU(OPT_MCU_MAX32650, OPT_MCU_MAX32666, OPT_MCU_MAX32690, OPT_MCU_MAX78002)
+ // Put audio iso on EP10/11 so the 4096-byte FIFOs can back double packet buffering
+ #define EPNUM_AUDIO_OUT 0x0A
+ #define EPNUM_AUDIO_IN 0x0B
+ #define EPNUM_AUDIO_INT 0x01
+ #else
+ #define EPNUM_AUDIO_IN 0x01
+ #define EPNUM_AUDIO_OUT 0x02
+ #define EPNUM_AUDIO_INT 0x03
+ #endif
#else
#define EPNUM_AUDIO_IN 0x01
@@ -110,22 +117,93 @@ uint8_t const * tud_descriptor_device_cb(void)
#define EPNUM_AUDIO_INT 0x02
#endif
-uint8_t const desc_configuration[] =
+#define CONFIG_UAC1_TOTAL_LEN (TUD_CONFIG_DESC_LEN + TUD_AUDIO10_HEADSET_STEREO_DESC_LEN(2))
+
+uint8_t const desc_uac1_configuration[] =
{
// Config number, interface count, string index, total length, attribute, power in mA
- TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_TOTAL_LEN, 0x00, 100),
+ TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_UAC1_TOTAL_LEN, 0x00, 100),
+
+ // Interface number, string index, bytes per sample RX/TX, bits used per sample RX/TX, EP Out & EP In address, EP sizes, sample rate
+ TUD_AUDIO10_HEADSET_STEREO_DESCRIPTOR(ITF_NUM_AUDIO_CONTROL, 4, \
+ CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_RX, \
+ CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_TX, \
+ EPNUM_AUDIO_OUT, CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_OUT, \
+ EPNUM_AUDIO_IN | 0x80, CFG_TUD_AUDIO10_FUNC_1_FORMAT_1_EP_SZ_IN, \
+ 44100, 48000)
+};
+
+TU_VERIFY_STATIC(sizeof(desc_uac1_configuration) == CONFIG_UAC1_TOTAL_LEN, "Incorrect size");
+
+#if TUD_OPT_HIGH_SPEED
+
+#define CONFIG_UAC2_TOTAL_LEN (TUD_CONFIG_DESC_LEN + TUD_AUDIO20_HEADSET_STEREO_DESC_LEN)
+
+uint8_t const desc_uac2_configuration[] =
+{
+ // Config number, interface count, string index, total length, attribute, power in mA
+ TUD_CONFIG_DESCRIPTOR(1, ITF_NUM_TOTAL, 0, CONFIG_UAC2_TOTAL_LEN, 0x00, 100),
+
+ // String index, EP Out & EP In address, EP Interrupt address
+ TUD_AUDIO20_HEADSET_STEREO_DESCRIPTOR(5, EPNUM_AUDIO_OUT, EPNUM_AUDIO_IN | 0x80, EPNUM_AUDIO_INT | 0x80)
+};
- // Interface number, string index, EP Out & EP In address, EP size
- TUD_AUDIO_HEADSET_STEREO_DESCRIPTOR(2, EPNUM_AUDIO_OUT, EPNUM_AUDIO_IN | 0x80, EPNUM_AUDIO_INT | 0x80)
+TU_VERIFY_STATIC(sizeof(desc_uac2_configuration) == CONFIG_UAC2_TOTAL_LEN, "Incorrect size");
+
+
+// device qualifier is mostly similar to device descriptor since we don't change configuration based on speed
+tusb_desc_device_qualifier_t const desc_device_qualifier =
+{
+ .bLength = sizeof(tusb_desc_device_qualifier_t),
+ .bDescriptorType = TUSB_DESC_DEVICE_QUALIFIER,
+ .bcdUSB = 0x0200,
+
+ .bDeviceClass = TUSB_CLASS_MISC,
+ .bDeviceSubClass = MISC_SUBCLASS_COMMON,
+ .bDeviceProtocol = MISC_PROTOCOL_IAD,
+
+ .bMaxPacketSize0 = CFG_TUD_ENDPOINT0_SIZE,
+ .bNumConfigurations = 0x01,
+ .bReserved = 0x00
};
+// Invoked when received GET DEVICE QUALIFIER DESCRIPTOR request
+// Application return pointer to descriptor, whose contents must exist long enough for transfer to complete.
+// device_qualifier descriptor describes information about a high-speed capable device that would
+// change if the device were operating at the other speed. If not highspeed capable stall this request.
+uint8_t const *tud_descriptor_device_qualifier_cb(void)
+{
+ return (uint8_t const *) &desc_device_qualifier;
+}
+
+// Invoked when received GET OTHER SEED CONFIGURATION DESCRIPTOR request
+// Application return pointer to descriptor, whose contents must exist long enough for transfer to complete
+// Configuration descriptor in the other speed e.g if high speed then this is for full speed and vice versa
+uint8_t const *tud_descriptor_other_speed_configuration_cb(uint8_t index)
+{
+ (void) index; // for multiple configurations
+
+ // if link speed is high return fullspeed config, and vice versa
+ return (tud_speed_get() == TUSB_SPEED_HIGH) ? desc_uac1_configuration : desc_uac2_configuration;
+}
+#endif
+
// Invoked when received GET CONFIGURATION DESCRIPTOR
// Application return pointer to descriptor
// Descriptor contents must exist long enough for transfer to complete
uint8_t const * tud_descriptor_configuration_cb(uint8_t index)
{
(void)index; // for multiple configurations
- return desc_configuration;
+#if TUD_OPT_HIGH_SPEED
+ // Although we are highspeed, host may be fullspeed.
+ if(tud_speed_get() == TUSB_SPEED_FULL) {
+ return desc_uac1_configuration;
+ } else {
+ return desc_uac2_configuration;
+ }
+#else
+ return desc_uac1_configuration;
+#endif
}
//--------------------------------------------------------------------+
@@ -141,14 +219,14 @@ enum {
};
// array of pointer to string descriptors
-char const *string_desc_arr[] =
+static char const *string_desc_arr[] =
{
(const char[]) { 0x09, 0x04 }, // 0: is supported language is English (0x0409)
"TinyUSB", // 1: Manufacturer
- "TinyUSB headset", // 2: Product
+ "TinyUSB Headset", // 2: Product
NULL, // 3: Serials will use unique ID if possible
- "TinyUSB Speakers", // 4: Audio Interface
- "TinyUSB Microphone", // 5: Audio Interface
+ "TinyUSB UAC1 Headset", // 4: Function
+ "TinyUSB UAC2 Headset", // 5: Function
};
static uint16_t _desc_str[32 + 1];
diff --git a/examples/device/uac2_headset/src/usb_descriptors.h b/examples/device/uac2_headset/src/usb_descriptors.h
index da0da83e8..47154626e 100644
--- a/examples/device/uac2_headset/src/usb_descriptors.h
+++ b/examples/device/uac2_headset/src/usb_descriptors.h
@@ -23,10 +23,20 @@
*
*/
-#ifndef _USB_DESCRIPTORS_H_
-#define _USB_DESCRIPTORS_H_
+#ifndef USB_DESCRIPTORS_H_
+#define USB_DESCRIPTORS_H_
-// #include "tusb.h"
+enum
+{
+ ITF_NUM_AUDIO_CONTROL = 0,
+ ITF_NUM_AUDIO_STREAMING_SPK,
+ ITF_NUM_AUDIO_STREAMING_MIC,
+ ITF_NUM_TOTAL
+};
+
+//--------------------------------------------------------------------+
+// UAC2 DESCRIPTOR TEMPLATES
+//--------------------------------------------------------------------+
// Unit numbers are arbitrary selected
#define UAC2_ENTITY_CLOCK 0x04
@@ -38,121 +48,192 @@
#define UAC2_ENTITY_MIC_INPUT_TERMINAL 0x11
#define UAC2_ENTITY_MIC_OUTPUT_TERMINAL 0x13
-enum
-{
- ITF_NUM_AUDIO_CONTROL = 0,
- ITF_NUM_AUDIO_STREAMING_SPK,
- ITF_NUM_AUDIO_STREAMING_MIC,
- ITF_NUM_TOTAL
-};
-
-#define TUD_AUDIO_HEADSET_STEREO_DESC_LEN (TUD_AUDIO_DESC_IAD_LEN\
- + TUD_AUDIO_DESC_STD_AC_LEN\
- + TUD_AUDIO_DESC_CS_AC_LEN\
- + TUD_AUDIO_DESC_CLK_SRC_LEN\
- + TUD_AUDIO_DESC_INPUT_TERM_LEN\
- + TUD_AUDIO_DESC_FEATURE_UNIT_TWO_CHANNEL_LEN\
- + TUD_AUDIO_DESC_OUTPUT_TERM_LEN\
- + TUD_AUDIO_DESC_INPUT_TERM_LEN\
- + TUD_AUDIO_DESC_OUTPUT_TERM_LEN\
- + TUD_AUDIO_DESC_STD_AC_INT_EP_LEN\
+#define TUD_AUDIO20_HEADSET_STEREO_DESC_LEN (TUD_AUDIO20_DESC_IAD_LEN\
+ + TUD_AUDIO20_DESC_STD_AC_LEN\
+ + TUD_AUDIO20_DESC_CS_AC_LEN\
+ + TUD_AUDIO20_DESC_CLK_SRC_LEN\
+ + TUD_AUDIO20_DESC_INPUT_TERM_LEN\
+ + TUD_AUDIO20_DESC_FEATURE_UNIT_LEN(2)\
+ + TUD_AUDIO20_DESC_OUTPUT_TERM_LEN\
+ + TUD_AUDIO20_DESC_INPUT_TERM_LEN\
+ + TUD_AUDIO20_DESC_OUTPUT_TERM_LEN\
+ + TUD_AUDIO20_DESC_STD_AC_INT_EP_LEN\
/* Interface 1, Alternate 0 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
/* Interface 1, Alternate 1 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
- + TUD_AUDIO_DESC_CS_AS_INT_LEN\
- + TUD_AUDIO_DESC_TYPE_I_FORMAT_LEN\
- + TUD_AUDIO_DESC_STD_AS_ISO_EP_LEN\
- + TUD_AUDIO_DESC_CS_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_TYPE_I_FORMAT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_ISO_EP_LEN\
/* Interface 1, Alternate 2 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
- + TUD_AUDIO_DESC_CS_AS_INT_LEN\
- + TUD_AUDIO_DESC_TYPE_I_FORMAT_LEN\
- + TUD_AUDIO_DESC_STD_AS_ISO_EP_LEN\
- + TUD_AUDIO_DESC_CS_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_TYPE_I_FORMAT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_ISO_EP_LEN\
/* Interface 2, Alternate 0 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
/* Interface 2, Alternate 1 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
- + TUD_AUDIO_DESC_CS_AS_INT_LEN\
- + TUD_AUDIO_DESC_TYPE_I_FORMAT_LEN\
- + TUD_AUDIO_DESC_STD_AS_ISO_EP_LEN\
- + TUD_AUDIO_DESC_CS_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_TYPE_I_FORMAT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_ISO_EP_LEN\
/* Interface 2, Alternate 2 */\
- + TUD_AUDIO_DESC_STD_AS_INT_LEN\
- + TUD_AUDIO_DESC_CS_AS_INT_LEN\
- + TUD_AUDIO_DESC_TYPE_I_FORMAT_LEN\
- + TUD_AUDIO_DESC_STD_AS_ISO_EP_LEN\
- + TUD_AUDIO_DESC_CS_AS_ISO_EP_LEN)
+ + TUD_AUDIO20_DESC_STD_AS_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO20_DESC_TYPE_I_FORMAT_LEN\
+ + TUD_AUDIO20_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO20_DESC_CS_AS_ISO_EP_LEN)
-#define TUD_AUDIO_HEADSET_STEREO_DESCRIPTOR(_stridx, _epout, _epin, _epint) \
+#define TUD_AUDIO20_HEADSET_STEREO_DESCRIPTOR(_stridx, _epout, _epin, _epint) \
/* Standard Interface Association Descriptor (IAD) */\
- TUD_AUDIO_DESC_IAD(/*_firstitf*/ ITF_NUM_AUDIO_CONTROL, /*_nitfs*/ ITF_NUM_TOTAL, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_IAD(/*_firstitf*/ ITF_NUM_AUDIO_CONTROL, /*_nitfs*/ ITF_NUM_TOTAL, /*_stridx*/ 0x00),\
/* Standard AC Interface Descriptor(4.7.1) */\
- TUD_AUDIO_DESC_STD_AC(/*_itfnum*/ ITF_NUM_AUDIO_CONTROL, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
+ TUD_AUDIO20_DESC_STD_AC(/*_itfnum*/ ITF_NUM_AUDIO_CONTROL, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
/* Class-Specific AC Interface Header Descriptor(4.7.2) */\
- TUD_AUDIO_DESC_CS_AC(/*_bcdADC*/ 0x0200, /*_category*/ AUDIO_FUNC_HEADSET, /*_totallen*/ TUD_AUDIO_DESC_CLK_SRC_LEN+TUD_AUDIO_DESC_FEATURE_UNIT_TWO_CHANNEL_LEN+TUD_AUDIO_DESC_INPUT_TERM_LEN+TUD_AUDIO_DESC_OUTPUT_TERM_LEN+TUD_AUDIO_DESC_INPUT_TERM_LEN+TUD_AUDIO_DESC_OUTPUT_TERM_LEN, /*_ctrl*/ AUDIO_CS_AS_INTERFACE_CTRL_LATENCY_POS),\
+ TUD_AUDIO20_DESC_CS_AC(/*_bcdADC*/ 0x0200, /*_category*/ AUDIO20_FUNC_HEADSET, /*_totallen*/ TUD_AUDIO20_DESC_CLK_SRC_LEN+TUD_AUDIO20_DESC_FEATURE_UNIT_LEN(2)+TUD_AUDIO20_DESC_INPUT_TERM_LEN+TUD_AUDIO20_DESC_OUTPUT_TERM_LEN+TUD_AUDIO20_DESC_INPUT_TERM_LEN+TUD_AUDIO20_DESC_OUTPUT_TERM_LEN, /*_ctrl*/ AUDIO20_CS_AS_INTERFACE_CTRL_LATENCY_POS),\
/* Clock Source Descriptor(4.7.2.1) */\
- TUD_AUDIO_DESC_CLK_SRC(/*_clkid*/ UAC2_ENTITY_CLOCK, /*_attr*/ 3, /*_ctrl*/ 7, /*_assocTerm*/ 0x00, /*_stridx*/ 0x00), \
+ TUD_AUDIO20_DESC_CLK_SRC(/*_clkid*/ UAC2_ENTITY_CLOCK, /*_attr*/ 3, /*_ctrl*/ 7, /*_assocTerm*/ 0x00, /*_stridx*/ 0x00), \
/* Input Terminal Descriptor(4.7.2.4) */\
- TUD_AUDIO_DESC_INPUT_TERM(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ 0x00, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_nchannelslogical*/ 0x02, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_ctrl*/ 0 * (AUDIO_CTRL_R << AUDIO_IN_TERM_CTRL_CONNECTOR_POS), /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_INPUT_TERM(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_nchannelslogical*/ 0x02, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_ctrl*/ 0 * (AUDIO20_CTRL_R << AUDIO20_IN_TERM_CTRL_CONNECTOR_POS), /*_stridx*/ 0x00),\
/* Feature Unit Descriptor(4.7.2.8) */\
- TUD_AUDIO_DESC_FEATURE_UNIT_TWO_CHANNEL(/*_unitid*/ UAC2_ENTITY_SPK_FEATURE_UNIT, /*_srcid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_ctrlch0master*/ (AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_VOLUME_POS), /*_ctrlch1*/ (AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_VOLUME_POS), /*_ctrlch2*/ (AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO_CTRL_RW << AUDIO_FEATURE_UNIT_CTRL_VOLUME_POS), /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_FEATURE_UNIT(/*_unitid*/ UAC2_ENTITY_SPK_FEATURE_UNIT, /*_srcid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_stridx*/ 0x00, /*_ctrlch0master*/ (AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_VOLUME_POS), /*_ctrlch1*/ (AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_VOLUME_POS), /*_ctrlch2*/ (AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_MUTE_POS | AUDIO20_CTRL_RW << AUDIO20_FEATURE_UNIT_CTRL_VOLUME_POS)),\
/* Output Terminal Descriptor(4.7.2.5) */\
- TUD_AUDIO_DESC_OUTPUT_TERM(/*_termid*/ UAC2_ENTITY_SPK_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_OUT_HEADPHONES, /*_assocTerm*/ 0x00, /*_srcid*/ UAC2_ENTITY_SPK_FEATURE_UNIT, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_ctrl*/ 0x0000, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_OUTPUT_TERM(/*_termid*/ UAC2_ENTITY_SPK_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_OUT_HEADPHONES, /*_assocTerm*/ 0x00, /*_srcid*/ UAC2_ENTITY_SPK_FEATURE_UNIT, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_ctrl*/ 0x0000, /*_stridx*/ 0x00),\
/* Input Terminal Descriptor(4.7.2.4) */\
- TUD_AUDIO_DESC_INPUT_TERM(/*_termid*/ UAC2_ENTITY_MIC_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_IN_GENERIC_MIC, /*_assocTerm*/ 0x00, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_nchannelslogical*/ 0x01, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_ctrl*/ 0 * (AUDIO_CTRL_R << AUDIO_IN_TERM_CTRL_CONNECTOR_POS), /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_INPUT_TERM(/*_termid*/ UAC2_ENTITY_MIC_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_IN_GENERIC_MIC, /*_assocTerm*/ 0x00, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_nchannelslogical*/ 0x01, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_ctrl*/ 0 * (AUDIO20_CTRL_R << AUDIO20_IN_TERM_CTRL_CONNECTOR_POS), /*_stridx*/ 0x00),\
/* Output Terminal Descriptor(4.7.2.5) */\
- TUD_AUDIO_DESC_OUTPUT_TERM(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ 0x00, /*_srcid*/ UAC2_ENTITY_MIC_INPUT_TERMINAL, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_ctrl*/ 0x0000, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_OUTPUT_TERM(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_srcid*/ UAC2_ENTITY_MIC_INPUT_TERMINAL, /*_clkid*/ UAC2_ENTITY_CLOCK, /*_ctrl*/ 0x0000, /*_stridx*/ 0x00),\
/* Standard AC Interrupt Endpoint Descriptor(4.8.2.1) */\
- TUD_AUDIO_DESC_STD_AC_INT_EP(/*_ep*/ _epint, /*_interval*/ 0x01), \
+ TUD_AUDIO20_DESC_STD_AC_INT_EP(/*_ep*/ _epint, /*_interval*/ 0x01), \
/* Standard AS Interface Descriptor(4.9.1) */\
/* Interface 1, Alternate 0 - default alternate setting with 0 bandwidth */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ 0x05),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ _stridx),\
/* Standard AS Interface Descriptor(4.9.1) */\
/* Interface 1, Alternate 1 - alternate interface for data streaming */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ 0x05),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
/* Class-Specific AS Interface Descriptor(4.9.2) */\
- TUD_AUDIO_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_ctrl*/ AUDIO_CTRL_NONE, /*_formattype*/ AUDIO_FORMAT_TYPE_I, /*_formats*/ AUDIO_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_formattype*/ AUDIO20_FORMAT_TYPE_I, /*_formats*/ AUDIO20_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
/* Type I Format Type Descriptor(2.3.1.6 - Audio Formats) */\
- TUD_AUDIO_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_RX),\
+ TUD_AUDIO20_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_RX),\
/* Standard AS Isochronous Audio Data Endpoint Descriptor(4.10.1.1) */\
- TUD_AUDIO_DESC_STD_AS_ISO_EP(/*_ep*/ _epout, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ADAPTIVE | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX), /*_interval*/ 0x01),\
+ TUD_AUDIO20_DESC_STD_AS_ISO_EP(/*_ep*/ _epout, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ADAPTIVE | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(TUD_OPT_HIGH_SPEED, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX), /*_interval*/ 0x01),\
/* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.10.1.2) */\
- TUD_AUDIO_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO_CTRL_NONE, /*_lockdelayunit*/ AUDIO_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001),\
+ TUD_AUDIO20_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO20_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_lockdelayunit*/ AUDIO20_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001),\
/* Interface 1, Alternate 2 - alternate interface for data streaming */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x02, /*_nEPs*/ 0x01, /*_stridx*/ 0x05),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_SPK), /*_altset*/ 0x02, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
/* Class-Specific AS Interface Descriptor(4.9.2) */\
- TUD_AUDIO_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_ctrl*/ AUDIO_CTRL_NONE, /*_formattype*/ AUDIO_FORMAT_TYPE_I, /*_formats*/ AUDIO_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_SPK_INPUT_TERMINAL, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_formattype*/ AUDIO20_FORMAT_TYPE_I, /*_formats*/ AUDIO20_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
/* Type I Format Type Descriptor(2.3.1.6 - Audio Formats) */\
- TUD_AUDIO_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_RX),\
+ TUD_AUDIO20_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_RX),\
/* Standard AS Isochronous Audio Data Endpoint Descriptor(4.10.1.1) */\
- TUD_AUDIO_DESC_STD_AS_ISO_EP(/*_ep*/ _epout, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ADAPTIVE | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX), /*_interval*/ 0x01),\
+ TUD_AUDIO20_DESC_STD_AS_ISO_EP(/*_ep*/ _epout, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ADAPTIVE | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(TUD_OPT_HIGH_SPEED, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_RX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_RX), /*_interval*/ 0x01),\
/* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.10.1.2) */\
- TUD_AUDIO_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO_CTRL_NONE, /*_lockdelayunit*/ AUDIO_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001),\
+ TUD_AUDIO20_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO20_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_lockdelayunit*/ AUDIO20_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001),\
/* Standard AS Interface Descriptor(4.9.1) */\
/* Interface 2, Alternate 0 - default alternate setting with 0 bandwidth */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ 0x04),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ _stridx),\
/* Standard AS Interface Descriptor(4.9.1) */\
/* Interface 2, Alternate 1 - alternate interface for data streaming */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ 0x04),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
/* Class-Specific AS Interface Descriptor(4.9.2) */\
- TUD_AUDIO_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_ctrl*/ AUDIO_CTRL_NONE, /*_formattype*/ AUDIO_FORMAT_TYPE_I, /*_formats*/ AUDIO_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_formattype*/ AUDIO20_FORMAT_TYPE_I, /*_formats*/ AUDIO20_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
/* Type I Format Type Descriptor(2.3.1.6 - Audio Formats) */\
- TUD_AUDIO_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_TX),\
+ TUD_AUDIO20_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_RESOLUTION_TX),\
/* Standard AS Isochronous Audio Data Endpoint Descriptor(4.10.1.1) */\
- TUD_AUDIO_DESC_STD_AS_ISO_EP(/*_ep*/ _epin, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ASYNCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX), /*_interval*/ 0x01),\
+ TUD_AUDIO20_DESC_STD_AS_ISO_EP(/*_ep*/ _epin, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ASYNCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(TUD_OPT_HIGH_SPEED, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_1_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX), /*_interval*/ 0x01),\
/* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.10.1.2) */\
- TUD_AUDIO_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO_CTRL_NONE, /*_lockdelayunit*/ AUDIO_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_UNDEFINED, /*_lockdelay*/ 0x0000),\
+ TUD_AUDIO20_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO20_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_lockdelayunit*/ AUDIO20_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_UNDEFINED, /*_lockdelay*/ 0x0000),\
/* Interface 2, Alternate 2 - alternate interface for data streaming */\
- TUD_AUDIO_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x02, /*_nEPs*/ 0x01, /*_stridx*/ 0x04),\
+ TUD_AUDIO20_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)(ITF_NUM_AUDIO_STREAMING_MIC), /*_altset*/ 0x02, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
/* Class-Specific AS Interface Descriptor(4.9.2) */\
- TUD_AUDIO_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_ctrl*/ AUDIO_CTRL_NONE, /*_formattype*/ AUDIO_FORMAT_TYPE_I, /*_formats*/ AUDIO_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX, /*_channelcfg*/ AUDIO_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
+ TUD_AUDIO20_DESC_CS_AS_INT(/*_termid*/ UAC2_ENTITY_MIC_OUTPUT_TERMINAL, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_formattype*/ AUDIO20_FORMAT_TYPE_I, /*_formats*/ AUDIO20_DATA_FORMAT_TYPE_I_PCM, /*_nchannelsphysical*/ CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX, /*_channelcfg*/ AUDIO20_CHANNEL_CONFIG_NON_PREDEFINED, /*_stridx*/ 0x00),\
/* Type I Format Type Descriptor(2.3.1.6 - Audio Formats) */\
- TUD_AUDIO_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_TX),\
+ TUD_AUDIO20_DESC_TYPE_I_FORMAT(CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_RESOLUTION_TX),\
/* Standard AS Isochronous Audio Data Endpoint Descriptor(4.10.1.1) */\
- TUD_AUDIO_DESC_STD_AS_ISO_EP(/*_ep*/ _epin, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ASYNCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX), /*_interval*/ 0x01),\
+ TUD_AUDIO20_DESC_STD_AS_ISO_EP(/*_ep*/ _epin, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ASYNCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_DATA), /*_maxEPsize*/ TUD_AUDIO_EP_SIZE(TUD_OPT_HIGH_SPEED, CFG_TUD_AUDIO_FUNC_1_MAX_SAMPLE_RATE, CFG_TUD_AUDIO_FUNC_1_FORMAT_2_N_BYTES_PER_SAMPLE_TX, CFG_TUD_AUDIO_FUNC_1_N_CHANNELS_TX), /*_interval*/ 0x01),\
/* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.10.1.2) */\
- TUD_AUDIO_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO_CTRL_NONE, /*_lockdelayunit*/ AUDIO_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_UNDEFINED, /*_lockdelay*/ 0x0000)
+ TUD_AUDIO20_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO20_CS_AS_ISO_DATA_EP_ATT_NON_MAX_PACKETS_OK, /*_ctrl*/ AUDIO20_CTRL_NONE, /*_lockdelayunit*/ AUDIO20_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_UNDEFINED, /*_lockdelay*/ 0x0000)
+
+//--------------------------------------------------------------------+
+// UAC1 DESCRIPTOR TEMPLATES
+//--------------------------------------------------------------------+
+
+// UAC1 entity IDs for speaker and microphone
+// Speaker path
+#define UAC1_ENTITY_SPK_INPUT_TERMINAL 0x01
+#define UAC1_ENTITY_SPK_FEATURE_UNIT 0x02
+#define UAC1_ENTITY_SPK_OUTPUT_TERMINAL 0x03
+// Microphone path
+#define UAC1_ENTITY_MIC_INPUT_TERMINAL 0x11
+#define UAC1_ENTITY_MIC_OUTPUT_TERMINAL 0x13
+
+#define TUD_AUDIO10_HEADSET_STEREO_DESC_LEN(_nfreqs) (\
+ +TUD_AUDIO10_DESC_STD_AC_LEN\
+ + TUD_AUDIO10_DESC_CS_AC_LEN(2)\
+ + TUD_AUDIO10_DESC_INPUT_TERM_LEN\
+ + TUD_AUDIO10_DESC_FEATURE_UNIT_LEN(2)\
+ + TUD_AUDIO10_DESC_OUTPUT_TERM_LEN\
+ + TUD_AUDIO10_DESC_INPUT_TERM_LEN\
+ + TUD_AUDIO10_DESC_OUTPUT_TERM_LEN\
+ /* Interface 1, Alternate 0 (speaker) */\
+ + TUD_AUDIO10_DESC_STD_AS_LEN\
+ /* Interface 1, Alternate 1 (speaker) */\
+ + TUD_AUDIO10_DESC_STD_AS_LEN\
+ + TUD_AUDIO10_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO10_DESC_TYPE_I_FORMAT_LEN(_nfreqs)\
+ + TUD_AUDIO10_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO10_DESC_CS_AS_ISO_EP_LEN\
+ /* Interface 2, Alternate 0 (microphone) */\
+ + TUD_AUDIO10_DESC_STD_AS_LEN\
+ /* Interface 2, Alternate 1 (microphone) */\
+ + TUD_AUDIO10_DESC_STD_AS_LEN\
+ + TUD_AUDIO10_DESC_CS_AS_INT_LEN\
+ + TUD_AUDIO10_DESC_TYPE_I_FORMAT_LEN(_nfreqs)\
+ + TUD_AUDIO10_DESC_STD_AS_ISO_EP_LEN\
+ + TUD_AUDIO10_DESC_CS_AS_ISO_EP_LEN)
+
+
+#define TUD_AUDIO10_HEADSET_STEREO_DESCRIPTOR(_itfnum, _stridx, _nBytesPerSample_RX, _nBitsUsedPerSample_RX, _nBytesPerSample_TX, _nBitsUsedPerSample_TX, _epout, _epoutsize, _epin, _epinsize, ...) \
+ /* Standard AC Interface Descriptor(4.3.1) */\
+ TUD_AUDIO10_DESC_STD_AC(/*_itfnum*/ _itfnum, /*_nEPs*/ 0x00, /*_stridx*/ _stridx),\
+ /* Class-Specific AC Interface Header Descriptor(4.3.2) */\
+ TUD_AUDIO10_DESC_CS_AC(/*_bcdADC*/ 0x0100, /*_totallen*/ (TUD_AUDIO10_DESC_INPUT_TERM_LEN+TUD_AUDIO10_DESC_FEATURE_UNIT_LEN(2)+TUD_AUDIO10_DESC_OUTPUT_TERM_LEN+TUD_AUDIO10_DESC_INPUT_TERM_LEN+TUD_AUDIO10_DESC_FEATURE_UNIT_LEN(1)+TUD_AUDIO10_DESC_OUTPUT_TERM_LEN), /*_itf*/ ((_itfnum)+1), ((_itfnum)+2)),\
+ /* Speaker Input Terminal Descriptor(4.3.2.1) */\
+ TUD_AUDIO10_DESC_INPUT_TERM(/*_termid*/ UAC1_ENTITY_SPK_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ UAC1_ENTITY_MIC_OUTPUT_TERMINAL, /*_nchannels*/ 0x02, /*_channelcfg*/ AUDIO10_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_stridx*/ 0x00),\
+ /* Speaker Feature Unit Descriptor(4.3.2.5) */\
+ TUD_AUDIO10_DESC_FEATURE_UNIT(/*_unitid*/ UAC1_ENTITY_SPK_FEATURE_UNIT, /*_srcid*/ UAC1_ENTITY_SPK_INPUT_TERMINAL, /*_stridx*/ 0x00, /*_ctrlmaster*/ (AUDIO10_FU_CONTROL_BM_MUTE | AUDIO10_FU_CONTROL_BM_VOLUME), /*_ctrlch1*/ (AUDIO10_FU_CONTROL_BM_MUTE | AUDIO10_FU_CONTROL_BM_VOLUME), /*_ctrlch2*/ (AUDIO10_FU_CONTROL_BM_MUTE | AUDIO10_FU_CONTROL_BM_VOLUME)),\
+ /* Speaker Output Terminal Descriptor(4.3.2.2) */\
+ TUD_AUDIO10_DESC_OUTPUT_TERM(/*_termid*/ UAC1_ENTITY_SPK_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_OUT_HEADPHONES, /*_assocTerm*/ 0x00, /*_srcid*/ UAC1_ENTITY_SPK_FEATURE_UNIT, /*_stridx*/ 0x00),\
+ /* Microphone Input Terminal Descriptor(4.3.2.1) */\
+ TUD_AUDIO10_DESC_INPUT_TERM(/*_termid*/ UAC1_ENTITY_MIC_INPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_IN_GENERIC_MIC, /*_assocTerm*/ 0x00, /*_nchannels*/ 0x01, /*_channelcfg*/ AUDIO10_CHANNEL_CONFIG_NON_PREDEFINED, /*_idxchannelnames*/ 0x00, /*_stridx*/ 0x00),\
+ /* Microphone Output Terminal Descriptor(4.3.2.2) */\
+ TUD_AUDIO10_DESC_OUTPUT_TERM(/*_termid*/ UAC1_ENTITY_MIC_OUTPUT_TERMINAL, /*_termtype*/ AUDIO_TERM_TYPE_USB_STREAMING, /*_assocTerm*/ UAC1_ENTITY_SPK_INPUT_TERMINAL, /*_srcid*/ UAC1_ENTITY_MIC_INPUT_TERMINAL, /*_stridx*/ 0x00),\
+ /* Standard AS Interface Descriptor(4.5.1) - Speaker Interface 1, Alternate 0 */\
+ TUD_AUDIO10_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)((_itfnum)+1), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ _stridx),\
+ /* Standard AS Interface Descriptor(4.5.1) - Speaker Interface 1, Alternate 1 */\
+ TUD_AUDIO10_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)((_itfnum)+1), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
+ /* Class-Specific AS Interface Descriptor(4.5.2) */\
+ TUD_AUDIO10_DESC_CS_AS_INT(/*_termid*/ UAC1_ENTITY_SPK_INPUT_TERMINAL, /*_delay*/ 0x01, /*_formattype*/ AUDIO10_DATA_FORMAT_TYPE_I_PCM),\
+ /* Type I Format Type Descriptor(2.2.5) */\
+ TUD_AUDIO10_DESC_TYPE_I_FORMAT(/*_nrchannels*/ 0x02, /*_subframesize*/ _nBytesPerSample_RX, /*_bitresolution*/ _nBitsUsedPerSample_RX, /*_freqs*/ __VA_ARGS__),\
+ /* Standard AS Isochronous Audio Data Endpoint Descriptor(4.6.1.1) */\
+ TUD_AUDIO10_DESC_STD_AS_ISO_EP(/*_ep*/ _epout, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ADAPTIVE), /*_maxEPsize*/ _epoutsize, /*_interval*/ 0x01, /*_syncep*/ 0x00),\
+ /* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.6.1.2) */\
+ TUD_AUDIO10_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO10_CS_AS_ISO_DATA_EP_ATT_SAMPLING_FRQ, /*_lockdelayunits*/ AUDIO10_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001),\
+ /* Standard AS Interface Descriptor(4.5.1) - Microphone Interface 2, Alternate 0 */\
+ TUD_AUDIO10_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)((_itfnum)+2), /*_altset*/ 0x00, /*_nEPs*/ 0x00, /*_stridx*/ _stridx),\
+ /* Standard AS Interface Descriptor(4.5.1) - Microphone Interface 2, Alternate 1 */\
+ TUD_AUDIO10_DESC_STD_AS_INT(/*_itfnum*/ (uint8_t)((_itfnum)+2), /*_altset*/ 0x01, /*_nEPs*/ 0x01, /*_stridx*/ _stridx),\
+ /* Class-Specific AS Interface Descriptor(4.5.2) */\
+ TUD_AUDIO10_DESC_CS_AS_INT(/*_termid*/ UAC1_ENTITY_MIC_OUTPUT_TERMINAL, /*_delay*/ 0x01, /*_formattype*/ AUDIO10_DATA_FORMAT_TYPE_I_PCM),\
+ /* Type I Format Type Descriptor(2.2.5) */\
+ TUD_AUDIO10_DESC_TYPE_I_FORMAT(/*_nrchannels*/ 0x01, /*_subframesize*/ _nBytesPerSample_TX, /*_bitresolution*/ _nBitsUsedPerSample_TX, /*_freqs*/ __VA_ARGS__),\
+ /* Standard AS Isochronous Audio Data Endpoint Descriptor(4.6.1.1) */\
+ TUD_AUDIO10_DESC_STD_AS_ISO_EP(/*_ep*/ _epin, /*_attr*/ (uint8_t) ((uint8_t)TUSB_XFER_ISOCHRONOUS | (uint8_t)TUSB_ISO_EP_ATT_ASYNCHRONOUS), /*_maxEPsize*/ _epinsize, /*_interval*/ 0x01, /*_syncep*/ 0x00),\
+ /* Class-Specific AS Isochronous Audio Data Endpoint Descriptor(4.6.1.2) */\
+ TUD_AUDIO10_DESC_CS_AS_ISO_EP(/*_attr*/ AUDIO10_CS_AS_ISO_DATA_EP_ATT_SAMPLING_FRQ, /*_lockdelayunits*/ AUDIO10_CS_AS_ISO_DATA_EP_LOCK_DELAY_UNIT_MILLISEC, /*_lockdelay*/ 0x0001)
#endif