audio_v2_mic_multichan_template.c 8.9 KB

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  1. /*
  2. * Copyright (c) 2024, sakumisu
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. */
  6. #include "usbd_core.h"
  7. #include "usbd_audio.h"
  8. #define USBD_VID 0xffff
  9. #define USBD_PID 0xffff
  10. #define USBD_MAX_POWER 100
  11. #define USBD_LANGID_STRING 1033
  12. #ifdef CONFIG_USB_HS
  13. #define EP_INTERVAL 0x04
  14. #else
  15. #define EP_INTERVAL 0x01
  16. #endif
  17. #define AUDIO_IN_EP 0x81
  18. #define AUDIO_IN_CLOCK_ID 0x01
  19. #define AUDIO_IN_FU_ID 0x03
  20. #define AUDIO_IN_MAX_FREQ 96000
  21. #define AUDIO_MIC_FRAME_SIZE_BYTE 2u
  22. #define AUDIO_MIC_RESOLUTION_BIT 16u
  23. #define BMCONTROL (AUDIO_V2_CONTROL_MUTE | AUDIO_V2_CONTROL_VOLUME)
  24. #define IN_CHANNEL_NUM 2
  25. #if IN_CHANNEL_NUM == 1
  26. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  27. #define INPUT_CH_ENABLE 0x00000001
  28. #elif IN_CHANNEL_NUM == 2
  29. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  30. #define INPUT_CH_ENABLE 0x00000003
  31. #elif IN_CHANNEL_NUM == 3
  32. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  33. #define INPUT_CH_ENABLE 0x00000007
  34. #elif IN_CHANNEL_NUM == 4
  35. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  36. #define INPUT_CH_ENABLE 0x0000000f
  37. #elif IN_CHANNEL_NUM == 5
  38. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  39. #define INPUT_CH_ENABLE 0x0000001f
  40. #elif IN_CHANNEL_NUM == 6
  41. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  42. #define INPUT_CH_ENABLE 0x0000003F
  43. #elif IN_CHANNEL_NUM == 7
  44. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  45. #define INPUT_CH_ENABLE 0x0000007f
  46. #elif IN_CHANNEL_NUM == 8
  47. #define INPUT_CTRL DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL), DBVAL(BMCONTROL)
  48. #define INPUT_CH_ENABLE 0x000000ff
  49. #endif
  50. #define AUDIO_IN_PACKET ((uint32_t)((AUDIO_IN_MAX_FREQ * AUDIO_MIC_FRAME_SIZE_BYTE * IN_CHANNEL_NUM) / 1000))
  51. #define USB_CONFIG_SIZE (9 + \
  52. AUDIO_V2_AC_DESCRIPTOR_LEN + \
  53. AUDIO_V2_SIZEOF_AC_CLOCK_SOURCE_DESC + \
  54. AUDIO_V2_SIZEOF_AC_INPUT_TERMINAL_DESC + \
  55. AUDIO_V2_SIZEOF_AC_FEATURE_UNIT_DESC(IN_CHANNEL_NUM) + \
  56. AUDIO_V2_SIZEOF_AC_OUTPUT_TERMINAL_DESC + \
  57. AUDIO_V2_AS_DESCRIPTOR_LEN)
  58. #define AUDIO_AC_SIZ (AUDIO_V2_SIZEOF_AC_HEADER_DESC + \
  59. AUDIO_V2_SIZEOF_AC_CLOCK_SOURCE_DESC + \
  60. AUDIO_V2_SIZEOF_AC_INPUT_TERMINAL_DESC + \
  61. AUDIO_V2_SIZEOF_AC_FEATURE_UNIT_DESC(IN_CHANNEL_NUM) + \
  62. AUDIO_V2_SIZEOF_AC_OUTPUT_TERMINAL_DESC)
  63. static const uint8_t device_descriptor[] = {
  64. USB_DEVICE_DESCRIPTOR_INIT(USB_2_0, 0x00, 0x00, 0x00, USBD_VID, USBD_PID, 0x0001, 0x01)
  65. };
  66. static const uint8_t config_descriptor[] = {
  67. USB_CONFIG_DESCRIPTOR_INIT(USB_CONFIG_SIZE, 0x02, 0x01, USB_CONFIG_BUS_POWERED, USBD_MAX_POWER),
  68. AUDIO_V2_AC_DESCRIPTOR_INIT(0x00, 0x02, AUDIO_AC_SIZ, AUDIO_CATEGORY_MICROPHONE, 0x00, 0x00),
  69. AUDIO_V2_AC_CLOCK_SOURCE_DESCRIPTOR_INIT(AUDIO_IN_CLOCK_ID, 0x03, 0x03),
  70. AUDIO_V2_AC_INPUT_TERMINAL_DESCRIPTOR_INIT(0x02, AUDIO_INTERM_MIC, AUDIO_IN_CLOCK_ID, IN_CHANNEL_NUM, INPUT_CH_ENABLE, 0x0000),
  71. AUDIO_V2_AC_FEATURE_UNIT_DESCRIPTOR_INIT(AUDIO_IN_FU_ID, 0x02, INPUT_CTRL),
  72. AUDIO_V2_AC_OUTPUT_TERMINAL_DESCRIPTOR_INIT(0x04, AUDIO_TERMINAL_STREAMING, AUDIO_IN_FU_ID, AUDIO_IN_CLOCK_ID, 0x0000),
  73. AUDIO_V2_AS_DESCRIPTOR_INIT(0x01, 0x04, IN_CHANNEL_NUM, INPUT_CH_ENABLE, AUDIO_MIC_FRAME_SIZE_BYTE, AUDIO_MIC_RESOLUTION_BIT, AUDIO_IN_EP, 0x05, (AUDIO_IN_PACKET + 4), EP_INTERVAL)
  74. };
  75. static const uint8_t device_quality_descriptor[] = {
  76. ///////////////////////////////////////
  77. /// device qualifier descriptor
  78. ///////////////////////////////////////
  79. 0x0a,
  80. USB_DESCRIPTOR_TYPE_DEVICE_QUALIFIER,
  81. 0x00,
  82. 0x02,
  83. 0x00,
  84. 0x00,
  85. 0x00,
  86. 0x40,
  87. 0x00,
  88. 0x00,
  89. };
  90. static const char *string_descriptors[] = {
  91. (const char[]){ 0x09, 0x04 }, /* Langid */
  92. "CherryUSB", /* Manufacturer */
  93. "CherryUSB UAC DEMO", /* Product */
  94. "2022123456", /* Serial Number */
  95. };
  96. static const uint8_t *device_descriptor_callback(uint8_t speed)
  97. {
  98. return device_descriptor;
  99. }
  100. static const uint8_t *config_descriptor_callback(uint8_t speed)
  101. {
  102. return config_descriptor;
  103. }
  104. static const uint8_t *device_quality_descriptor_callback(uint8_t speed)
  105. {
  106. return device_quality_descriptor;
  107. }
  108. static const char *string_descriptor_callback(uint8_t speed, uint8_t index)
  109. {
  110. if (index > 3) {
  111. return NULL;
  112. }
  113. return string_descriptors[index];
  114. }
  115. const struct usb_descriptor audio_v2_descriptor = {
  116. .device_descriptor_callback = device_descriptor_callback,
  117. .config_descriptor_callback = config_descriptor_callback,
  118. .device_quality_descriptor_callback = device_quality_descriptor_callback,
  119. .string_descriptor_callback = string_descriptor_callback
  120. };
  121. static const uint8_t mic_default_sampling_freq_table[] = {
  122. AUDIO_SAMPLE_FREQ_NUM(5),
  123. AUDIO_SAMPLE_FREQ_4B(8000),
  124. AUDIO_SAMPLE_FREQ_4B(8000),
  125. AUDIO_SAMPLE_FREQ_4B(0x00),
  126. AUDIO_SAMPLE_FREQ_4B(16000),
  127. AUDIO_SAMPLE_FREQ_4B(16000),
  128. AUDIO_SAMPLE_FREQ_4B(0x00),
  129. AUDIO_SAMPLE_FREQ_4B(32000),
  130. AUDIO_SAMPLE_FREQ_4B(32000),
  131. AUDIO_SAMPLE_FREQ_4B(0x00),
  132. AUDIO_SAMPLE_FREQ_4B(48000),
  133. AUDIO_SAMPLE_FREQ_4B(48000),
  134. AUDIO_SAMPLE_FREQ_4B(0x00),
  135. AUDIO_SAMPLE_FREQ_4B(96000),
  136. AUDIO_SAMPLE_FREQ_4B(96000),
  137. AUDIO_SAMPLE_FREQ_4B(0x00),
  138. };
  139. USB_NOCACHE_RAM_SECTION USB_MEM_ALIGNX uint8_t write_buffer[AUDIO_IN_PACKET];
  140. volatile bool tx_flag = 0;
  141. volatile bool ep_tx_busy_flag = false;
  142. volatile uint32_t s_mic_sample_rate;
  143. static void usbd_event_handler(uint8_t busid, uint8_t event)
  144. {
  145. switch (event) {
  146. case USBD_EVENT_RESET:
  147. break;
  148. case USBD_EVENT_CONNECTED:
  149. break;
  150. case USBD_EVENT_DISCONNECTED:
  151. break;
  152. case USBD_EVENT_RESUME:
  153. break;
  154. case USBD_EVENT_SUSPEND:
  155. break;
  156. case USBD_EVENT_CONFIGURED:
  157. break;
  158. case USBD_EVENT_SET_REMOTE_WAKEUP:
  159. break;
  160. case USBD_EVENT_CLR_REMOTE_WAKEUP:
  161. break;
  162. default:
  163. break;
  164. }
  165. }
  166. void usbd_audio_open(uint8_t busid, uint8_t intf)
  167. {
  168. tx_flag = 1;
  169. USB_LOG_RAW("OPEN\r\n");
  170. }
  171. void usbd_audio_close(uint8_t busid, uint8_t intf)
  172. {
  173. USB_LOG_RAW("CLOSE\r\n");
  174. tx_flag = 0;
  175. }
  176. void usbd_audio_set_sampling_freq(uint8_t busid, uint8_t ep, uint32_t sampling_freq)
  177. {
  178. if (ep == AUDIO_IN_EP) {
  179. s_mic_sample_rate = sampling_freq;
  180. }
  181. }
  182. uint32_t usbd_audio_get_sampling_freq(uint8_t busid, uint8_t ep)
  183. {
  184. (void)busid;
  185. uint32_t freq = 0;
  186. if (ep == AUDIO_IN_EP) {
  187. freq = s_mic_sample_rate;
  188. }
  189. return freq;
  190. }
  191. void usbd_audio_get_sampling_freq_table(uint8_t busid, uint8_t ep, uint8_t **sampling_freq_table)
  192. {
  193. if (ep == AUDIO_IN_EP) {
  194. *sampling_freq_table = (uint8_t *)mic_default_sampling_freq_table;
  195. }
  196. }
  197. void usbd_audio_iso_in_callback(uint8_t busid, uint8_t ep, uint32_t nbytes)
  198. {
  199. ep_tx_busy_flag = false;
  200. }
  201. static struct usbd_endpoint audio_in_ep = {
  202. .ep_cb = usbd_audio_iso_in_callback,
  203. .ep_addr = AUDIO_IN_EP
  204. };
  205. struct usbd_interface intf0;
  206. struct usbd_interface intf1;
  207. struct audio_entity_info audio_entity_table[] = {
  208. { .bEntityId = AUDIO_IN_CLOCK_ID,
  209. .bDescriptorSubtype = AUDIO_CONTROL_CLOCK_SOURCE,
  210. .ep = AUDIO_IN_EP },
  211. { .bEntityId = AUDIO_IN_FU_ID,
  212. .bDescriptorSubtype = AUDIO_CONTROL_FEATURE_UNIT,
  213. .ep = AUDIO_IN_EP },
  214. };
  215. // In windows, audio driver cannot remove auto, so when you modify any descriptor information, please modify string descriptors too.
  216. void audio_v2_init(uint8_t busid, uintptr_t reg_base)
  217. {
  218. usbd_desc_register(busid, &audio_v2_descriptor);
  219. usbd_add_interface(busid, usbd_audio_init_intf(busid, &intf0, 0x0200, audio_entity_table, 2));
  220. usbd_add_interface(busid, usbd_audio_init_intf(busid, &intf1, 0x0200, audio_entity_table, 2));
  221. usbd_add_endpoint(busid, &audio_in_ep);
  222. usbd_initialize(busid, reg_base, usbd_event_handler);
  223. }
  224. void audio_v2_test(uint8_t busid)
  225. {
  226. if (tx_flag) {
  227. memset(write_buffer, 'a', AUDIO_IN_PACKET);
  228. ep_tx_busy_flag = true;
  229. usbd_ep_start_write(busid, AUDIO_IN_EP, write_buffer, AUDIO_IN_PACKET);
  230. while (ep_tx_busy_flag) {
  231. if (tx_flag == false) {
  232. break;
  233. }
  234. }
  235. }
  236. }