f_uac1.c 22 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * f_uac1.c -- USB Audio Class 1.0 Function (using u_audio API)
  4. *
  5. * Copyright (C) 2016 Ruslan Bilovol <ruslan.bilovol@gmail.com>
  6. *
  7. * This driver doesn't expect any real Audio codec to be present
  8. * on the device - the audio streams are simply sinked to and
  9. * sourced from a virtual ALSA sound card created.
  10. *
  11. * This file is based on f_uac1.c which is
  12. * Copyright (C) 2008 Bryan Wu <cooloney@kernel.org>
  13. * Copyright (C) 2008 Analog Devices, Inc
  14. */
  15. #include <linux/usb/audio.h>
  16. #include <linux/module.h>
  17. #include "u_audio.h"
  18. #include "u_uac1.h"
  19. struct f_uac1 {
  20. struct g_audio g_audio;
  21. u8 ac_intf, as_in_intf, as_out_intf;
  22. u8 ac_alt, as_in_alt, as_out_alt; /* needed for get_alt() */
  23. };
  24. static inline struct f_uac1 *func_to_uac1(struct usb_function *f)
  25. {
  26. return container_of(f, struct f_uac1, g_audio.func);
  27. }
  28. /*
  29. * DESCRIPTORS ... most are static, but strings and full
  30. * configuration descriptors are built on demand.
  31. */
  32. /*
  33. * We have three interfaces - one AudioControl and two AudioStreaming
  34. *
  35. * The driver implements a simple UAC_1 topology.
  36. * USB-OUT -> IT_1 -> OT_2 -> ALSA_Capture
  37. * ALSA_Playback -> IT_3 -> OT_4 -> USB-IN
  38. */
  39. #define F_AUDIO_AC_INTERFACE 0
  40. #define F_AUDIO_AS_OUT_INTERFACE 1
  41. #define F_AUDIO_AS_IN_INTERFACE 2
  42. /* Number of streaming interfaces */
  43. #define F_AUDIO_NUM_INTERFACES 2
  44. /* B.3.1 Standard AC Interface Descriptor */
  45. static struct usb_interface_descriptor ac_interface_desc = {
  46. .bLength = USB_DT_INTERFACE_SIZE,
  47. .bDescriptorType = USB_DT_INTERFACE,
  48. .bNumEndpoints = 0,
  49. .bInterfaceClass = USB_CLASS_AUDIO,
  50. .bInterfaceSubClass = USB_SUBCLASS_AUDIOCONTROL,
  51. };
  52. /*
  53. * The number of AudioStreaming and MIDIStreaming interfaces
  54. * in the Audio Interface Collection
  55. */
  56. DECLARE_UAC_AC_HEADER_DESCRIPTOR(2);
  57. #define UAC_DT_AC_HEADER_LENGTH UAC_DT_AC_HEADER_SIZE(F_AUDIO_NUM_INTERFACES)
  58. /* 2 input terminals and 2 output terminals */
  59. #define UAC_DT_TOTAL_LENGTH (UAC_DT_AC_HEADER_LENGTH \
  60. + 2*UAC_DT_INPUT_TERMINAL_SIZE + 2*UAC_DT_OUTPUT_TERMINAL_SIZE)
  61. /* B.3.2 Class-Specific AC Interface Descriptor */
  62. static struct uac1_ac_header_descriptor_2 ac_header_desc = {
  63. .bLength = UAC_DT_AC_HEADER_LENGTH,
  64. .bDescriptorType = USB_DT_CS_INTERFACE,
  65. .bDescriptorSubtype = UAC_HEADER,
  66. .bcdADC = cpu_to_le16(0x0100),
  67. .wTotalLength = cpu_to_le16(UAC_DT_TOTAL_LENGTH),
  68. .bInCollection = F_AUDIO_NUM_INTERFACES,
  69. .baInterfaceNr = {
  70. /* Interface number of the AudioStream interfaces */
  71. [0] = 1,
  72. [1] = 2,
  73. }
  74. };
  75. #define USB_OUT_IT_ID 1
  76. static struct uac_input_terminal_descriptor usb_out_it_desc = {
  77. .bLength = UAC_DT_INPUT_TERMINAL_SIZE,
  78. .bDescriptorType = USB_DT_CS_INTERFACE,
  79. .bDescriptorSubtype = UAC_INPUT_TERMINAL,
  80. .bTerminalID = USB_OUT_IT_ID,
  81. .wTerminalType = cpu_to_le16(UAC_TERMINAL_STREAMING),
  82. .bAssocTerminal = 0,
  83. .wChannelConfig = cpu_to_le16(0x3),
  84. };
  85. #define IO_OUT_OT_ID 2
  86. static struct uac1_output_terminal_descriptor io_out_ot_desc = {
  87. .bLength = UAC_DT_OUTPUT_TERMINAL_SIZE,
  88. .bDescriptorType = USB_DT_CS_INTERFACE,
  89. .bDescriptorSubtype = UAC_OUTPUT_TERMINAL,
  90. .bTerminalID = IO_OUT_OT_ID,
  91. .wTerminalType = cpu_to_le16(UAC_OUTPUT_TERMINAL_SPEAKER),
  92. .bAssocTerminal = 0,
  93. .bSourceID = USB_OUT_IT_ID,
  94. };
  95. #define IO_IN_IT_ID 3
  96. static struct uac_input_terminal_descriptor io_in_it_desc = {
  97. .bLength = UAC_DT_INPUT_TERMINAL_SIZE,
  98. .bDescriptorType = USB_DT_CS_INTERFACE,
  99. .bDescriptorSubtype = UAC_INPUT_TERMINAL,
  100. .bTerminalID = IO_IN_IT_ID,
  101. .wTerminalType = cpu_to_le16(UAC_INPUT_TERMINAL_MICROPHONE),
  102. .bAssocTerminal = 0,
  103. .wChannelConfig = cpu_to_le16(0x3),
  104. };
  105. #define USB_IN_OT_ID 4
  106. static struct uac1_output_terminal_descriptor usb_in_ot_desc = {
  107. .bLength = UAC_DT_OUTPUT_TERMINAL_SIZE,
  108. .bDescriptorType = USB_DT_CS_INTERFACE,
  109. .bDescriptorSubtype = UAC_OUTPUT_TERMINAL,
  110. .bTerminalID = USB_IN_OT_ID,
  111. .wTerminalType = cpu_to_le16(UAC_TERMINAL_STREAMING),
  112. .bAssocTerminal = 0,
  113. .bSourceID = IO_IN_IT_ID,
  114. };
  115. /* B.4.1 Standard AS Interface Descriptor */
  116. static struct usb_interface_descriptor as_out_interface_alt_0_desc = {
  117. .bLength = USB_DT_INTERFACE_SIZE,
  118. .bDescriptorType = USB_DT_INTERFACE,
  119. .bAlternateSetting = 0,
  120. .bNumEndpoints = 0,
  121. .bInterfaceClass = USB_CLASS_AUDIO,
  122. .bInterfaceSubClass = USB_SUBCLASS_AUDIOSTREAMING,
  123. };
  124. static struct usb_interface_descriptor as_out_interface_alt_1_desc = {
  125. .bLength = USB_DT_INTERFACE_SIZE,
  126. .bDescriptorType = USB_DT_INTERFACE,
  127. .bAlternateSetting = 1,
  128. .bNumEndpoints = 1,
  129. .bInterfaceClass = USB_CLASS_AUDIO,
  130. .bInterfaceSubClass = USB_SUBCLASS_AUDIOSTREAMING,
  131. };
  132. static struct usb_interface_descriptor as_in_interface_alt_0_desc = {
  133. .bLength = USB_DT_INTERFACE_SIZE,
  134. .bDescriptorType = USB_DT_INTERFACE,
  135. .bAlternateSetting = 0,
  136. .bNumEndpoints = 0,
  137. .bInterfaceClass = USB_CLASS_AUDIO,
  138. .bInterfaceSubClass = USB_SUBCLASS_AUDIOSTREAMING,
  139. };
  140. static struct usb_interface_descriptor as_in_interface_alt_1_desc = {
  141. .bLength = USB_DT_INTERFACE_SIZE,
  142. .bDescriptorType = USB_DT_INTERFACE,
  143. .bAlternateSetting = 1,
  144. .bNumEndpoints = 1,
  145. .bInterfaceClass = USB_CLASS_AUDIO,
  146. .bInterfaceSubClass = USB_SUBCLASS_AUDIOSTREAMING,
  147. };
  148. /* B.4.2 Class-Specific AS Interface Descriptor */
  149. static struct uac1_as_header_descriptor as_out_header_desc = {
  150. .bLength = UAC_DT_AS_HEADER_SIZE,
  151. .bDescriptorType = USB_DT_CS_INTERFACE,
  152. .bDescriptorSubtype = UAC_AS_GENERAL,
  153. .bTerminalLink = USB_OUT_IT_ID,
  154. .bDelay = 1,
  155. .wFormatTag = cpu_to_le16(UAC_FORMAT_TYPE_I_PCM),
  156. };
  157. static struct uac1_as_header_descriptor as_in_header_desc = {
  158. .bLength = UAC_DT_AS_HEADER_SIZE,
  159. .bDescriptorType = USB_DT_CS_INTERFACE,
  160. .bDescriptorSubtype = UAC_AS_GENERAL,
  161. .bTerminalLink = USB_IN_OT_ID,
  162. .bDelay = 1,
  163. .wFormatTag = cpu_to_le16(UAC_FORMAT_TYPE_I_PCM),
  164. };
  165. DECLARE_UAC_FORMAT_TYPE_I_DISCRETE_DESC(1);
  166. static struct uac_format_type_i_discrete_descriptor_1 as_out_type_i_desc = {
  167. .bLength = UAC_FORMAT_TYPE_I_DISCRETE_DESC_SIZE(1),
  168. .bDescriptorType = USB_DT_CS_INTERFACE,
  169. .bDescriptorSubtype = UAC_FORMAT_TYPE,
  170. .bFormatType = UAC_FORMAT_TYPE_I,
  171. .bSubframeSize = 2,
  172. .bBitResolution = 16,
  173. .bSamFreqType = 1,
  174. };
  175. /* Standard ISO OUT Endpoint Descriptor */
  176. static struct usb_endpoint_descriptor as_out_ep_desc = {
  177. .bLength = USB_DT_ENDPOINT_AUDIO_SIZE,
  178. .bDescriptorType = USB_DT_ENDPOINT,
  179. .bEndpointAddress = USB_DIR_OUT,
  180. .bmAttributes = USB_ENDPOINT_SYNC_ADAPTIVE
  181. | USB_ENDPOINT_XFER_ISOC,
  182. .wMaxPacketSize = cpu_to_le16(UAC1_OUT_EP_MAX_PACKET_SIZE),
  183. .bInterval = 4,
  184. };
  185. /* Class-specific AS ISO OUT Endpoint Descriptor */
  186. static struct uac_iso_endpoint_descriptor as_iso_out_desc = {
  187. .bLength = UAC_ISO_ENDPOINT_DESC_SIZE,
  188. .bDescriptorType = USB_DT_CS_ENDPOINT,
  189. .bDescriptorSubtype = UAC_EP_GENERAL,
  190. .bmAttributes = 1,
  191. .bLockDelayUnits = 1,
  192. .wLockDelay = cpu_to_le16(1),
  193. };
  194. static struct uac_format_type_i_discrete_descriptor_1 as_in_type_i_desc = {
  195. .bLength = UAC_FORMAT_TYPE_I_DISCRETE_DESC_SIZE(1),
  196. .bDescriptorType = USB_DT_CS_INTERFACE,
  197. .bDescriptorSubtype = UAC_FORMAT_TYPE,
  198. .bFormatType = UAC_FORMAT_TYPE_I,
  199. .bSubframeSize = 2,
  200. .bBitResolution = 16,
  201. .bSamFreqType = 1,
  202. };
  203. /* Standard ISO OUT Endpoint Descriptor */
  204. static struct usb_endpoint_descriptor as_in_ep_desc = {
  205. .bLength = USB_DT_ENDPOINT_AUDIO_SIZE,
  206. .bDescriptorType = USB_DT_ENDPOINT,
  207. .bEndpointAddress = USB_DIR_IN,
  208. .bmAttributes = USB_ENDPOINT_SYNC_ASYNC
  209. | USB_ENDPOINT_XFER_ISOC,
  210. .wMaxPacketSize = cpu_to_le16(UAC1_OUT_EP_MAX_PACKET_SIZE),
  211. .bInterval = 4,
  212. };
  213. /* Class-specific AS ISO OUT Endpoint Descriptor */
  214. static struct uac_iso_endpoint_descriptor as_iso_in_desc = {
  215. .bLength = UAC_ISO_ENDPOINT_DESC_SIZE,
  216. .bDescriptorType = USB_DT_CS_ENDPOINT,
  217. .bDescriptorSubtype = UAC_EP_GENERAL,
  218. .bmAttributes = 1,
  219. .bLockDelayUnits = 0,
  220. .wLockDelay = 0,
  221. };
  222. static struct usb_descriptor_header *f_audio_desc[] = {
  223. (struct usb_descriptor_header *)&ac_interface_desc,
  224. (struct usb_descriptor_header *)&ac_header_desc,
  225. (struct usb_descriptor_header *)&usb_out_it_desc,
  226. (struct usb_descriptor_header *)&io_out_ot_desc,
  227. (struct usb_descriptor_header *)&io_in_it_desc,
  228. (struct usb_descriptor_header *)&usb_in_ot_desc,
  229. (struct usb_descriptor_header *)&as_out_interface_alt_0_desc,
  230. (struct usb_descriptor_header *)&as_out_interface_alt_1_desc,
  231. (struct usb_descriptor_header *)&as_out_header_desc,
  232. (struct usb_descriptor_header *)&as_out_type_i_desc,
  233. (struct usb_descriptor_header *)&as_out_ep_desc,
  234. (struct usb_descriptor_header *)&as_iso_out_desc,
  235. (struct usb_descriptor_header *)&as_in_interface_alt_0_desc,
  236. (struct usb_descriptor_header *)&as_in_interface_alt_1_desc,
  237. (struct usb_descriptor_header *)&as_in_header_desc,
  238. (struct usb_descriptor_header *)&as_in_type_i_desc,
  239. (struct usb_descriptor_header *)&as_in_ep_desc,
  240. (struct usb_descriptor_header *)&as_iso_in_desc,
  241. NULL,
  242. };
  243. enum {
  244. STR_AC_IF,
  245. STR_USB_OUT_IT,
  246. STR_USB_OUT_IT_CH_NAMES,
  247. STR_IO_OUT_OT,
  248. STR_IO_IN_IT,
  249. STR_IO_IN_IT_CH_NAMES,
  250. STR_USB_IN_OT,
  251. STR_AS_OUT_IF_ALT0,
  252. STR_AS_OUT_IF_ALT1,
  253. STR_AS_IN_IF_ALT0,
  254. STR_AS_IN_IF_ALT1,
  255. };
  256. static struct usb_string strings_uac1[] = {
  257. [STR_AC_IF].s = "AC Interface",
  258. [STR_USB_OUT_IT].s = "Playback Input terminal",
  259. [STR_USB_OUT_IT_CH_NAMES].s = "Playback Channels",
  260. [STR_IO_OUT_OT].s = "Playback Output terminal",
  261. [STR_IO_IN_IT].s = "Capture Input terminal",
  262. [STR_IO_IN_IT_CH_NAMES].s = "Capture Channels",
  263. [STR_USB_IN_OT].s = "Capture Output terminal",
  264. [STR_AS_OUT_IF_ALT0].s = "Playback Inactive",
  265. [STR_AS_OUT_IF_ALT1].s = "Playback Active",
  266. [STR_AS_IN_IF_ALT0].s = "Capture Inactive",
  267. [STR_AS_IN_IF_ALT1].s = "Capture Active",
  268. { },
  269. };
  270. static struct usb_gadget_strings str_uac1 = {
  271. .language = 0x0409, /* en-us */
  272. .strings = strings_uac1,
  273. };
  274. static struct usb_gadget_strings *uac1_strings[] = {
  275. &str_uac1,
  276. NULL,
  277. };
  278. /*
  279. * This function is an ALSA sound card following USB Audio Class Spec 1.0.
  280. */
  281. static int audio_set_endpoint_req(struct usb_function *f,
  282. const struct usb_ctrlrequest *ctrl)
  283. {
  284. struct usb_composite_dev *cdev = f->config->cdev;
  285. int value = -EOPNOTSUPP;
  286. u16 ep = le16_to_cpu(ctrl->wIndex);
  287. u16 len = le16_to_cpu(ctrl->wLength);
  288. u16 w_value = le16_to_cpu(ctrl->wValue);
  289. DBG(cdev, "bRequest 0x%x, w_value 0x%04x, len %d, endpoint %d\n",
  290. ctrl->bRequest, w_value, len, ep);
  291. switch (ctrl->bRequest) {
  292. case UAC_SET_CUR:
  293. value = len;
  294. break;
  295. case UAC_SET_MIN:
  296. break;
  297. case UAC_SET_MAX:
  298. break;
  299. case UAC_SET_RES:
  300. break;
  301. case UAC_SET_MEM:
  302. break;
  303. default:
  304. break;
  305. }
  306. return value;
  307. }
  308. static int audio_get_endpoint_req(struct usb_function *f,
  309. const struct usb_ctrlrequest *ctrl)
  310. {
  311. struct usb_composite_dev *cdev = f->config->cdev;
  312. int value = -EOPNOTSUPP;
  313. u8 ep = ((le16_to_cpu(ctrl->wIndex) >> 8) & 0xFF);
  314. u16 len = le16_to_cpu(ctrl->wLength);
  315. u16 w_value = le16_to_cpu(ctrl->wValue);
  316. DBG(cdev, "bRequest 0x%x, w_value 0x%04x, len %d, endpoint %d\n",
  317. ctrl->bRequest, w_value, len, ep);
  318. switch (ctrl->bRequest) {
  319. case UAC_GET_CUR:
  320. case UAC_GET_MIN:
  321. case UAC_GET_MAX:
  322. case UAC_GET_RES:
  323. value = len;
  324. break;
  325. case UAC_GET_MEM:
  326. break;
  327. default:
  328. break;
  329. }
  330. return value;
  331. }
  332. static int
  333. f_audio_setup(struct usb_function *f, const struct usb_ctrlrequest *ctrl)
  334. {
  335. struct usb_composite_dev *cdev = f->config->cdev;
  336. struct usb_request *req = cdev->req;
  337. int value = -EOPNOTSUPP;
  338. u16 w_index = le16_to_cpu(ctrl->wIndex);
  339. u16 w_value = le16_to_cpu(ctrl->wValue);
  340. u16 w_length = le16_to_cpu(ctrl->wLength);
  341. /* composite driver infrastructure handles everything; interface
  342. * activation uses set_alt().
  343. */
  344. switch (ctrl->bRequestType) {
  345. case USB_DIR_OUT | USB_TYPE_CLASS | USB_RECIP_ENDPOINT:
  346. value = audio_set_endpoint_req(f, ctrl);
  347. break;
  348. case USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_ENDPOINT:
  349. value = audio_get_endpoint_req(f, ctrl);
  350. break;
  351. default:
  352. ERROR(cdev, "invalid control req%02x.%02x v%04x i%04x l%d\n",
  353. ctrl->bRequestType, ctrl->bRequest,
  354. w_value, w_index, w_length);
  355. }
  356. /* respond with data transfer or status phase? */
  357. if (value >= 0) {
  358. DBG(cdev, "audio req%02x.%02x v%04x i%04x l%d\n",
  359. ctrl->bRequestType, ctrl->bRequest,
  360. w_value, w_index, w_length);
  361. req->zero = 0;
  362. req->length = value;
  363. value = usb_ep_queue(cdev->gadget->ep0, req, GFP_ATOMIC);
  364. if (value < 0)
  365. ERROR(cdev, "audio response on err %d\n", value);
  366. }
  367. /* device either stalls (value < 0) or reports success */
  368. return value;
  369. }
  370. static int f_audio_set_alt(struct usb_function *f, unsigned intf, unsigned alt)
  371. {
  372. struct usb_composite_dev *cdev = f->config->cdev;
  373. struct usb_gadget *gadget = cdev->gadget;
  374. struct device *dev = &gadget->dev;
  375. struct f_uac1 *uac1 = func_to_uac1(f);
  376. int ret = 0;
  377. /* No i/f has more than 2 alt settings */
  378. if (alt > 1) {
  379. dev_err(dev, "%s:%d Error!\n", __func__, __LINE__);
  380. return -EINVAL;
  381. }
  382. if (intf == uac1->ac_intf) {
  383. /* Control I/f has only 1 AltSetting - 0 */
  384. if (alt) {
  385. dev_err(dev, "%s:%d Error!\n", __func__, __LINE__);
  386. return -EINVAL;
  387. }
  388. return 0;
  389. }
  390. if (intf == uac1->as_out_intf) {
  391. uac1->as_out_alt = alt;
  392. if (alt)
  393. ret = u_audio_start_capture(&uac1->g_audio);
  394. else
  395. u_audio_stop_capture(&uac1->g_audio);
  396. } else if (intf == uac1->as_in_intf) {
  397. uac1->as_in_alt = alt;
  398. if (alt)
  399. ret = u_audio_start_playback(&uac1->g_audio);
  400. else
  401. u_audio_stop_playback(&uac1->g_audio);
  402. } else {
  403. dev_err(dev, "%s:%d Error!\n", __func__, __LINE__);
  404. return -EINVAL;
  405. }
  406. return ret;
  407. }
  408. static int f_audio_get_alt(struct usb_function *f, unsigned intf)
  409. {
  410. struct usb_composite_dev *cdev = f->config->cdev;
  411. struct usb_gadget *gadget = cdev->gadget;
  412. struct device *dev = &gadget->dev;
  413. struct f_uac1 *uac1 = func_to_uac1(f);
  414. if (intf == uac1->ac_intf)
  415. return uac1->ac_alt;
  416. else if (intf == uac1->as_out_intf)
  417. return uac1->as_out_alt;
  418. else if (intf == uac1->as_in_intf)
  419. return uac1->as_in_alt;
  420. else
  421. dev_err(dev, "%s:%d Invalid Interface %d!\n",
  422. __func__, __LINE__, intf);
  423. return -EINVAL;
  424. }
  425. static void f_audio_disable(struct usb_function *f)
  426. {
  427. struct f_uac1 *uac1 = func_to_uac1(f);
  428. uac1->as_out_alt = 0;
  429. uac1->as_in_alt = 0;
  430. u_audio_stop_capture(&uac1->g_audio);
  431. }
  432. /*-------------------------------------------------------------------------*/
  433. /* audio function driver setup/binding */
  434. static int f_audio_bind(struct usb_configuration *c, struct usb_function *f)
  435. {
  436. struct usb_composite_dev *cdev = c->cdev;
  437. struct usb_gadget *gadget = cdev->gadget;
  438. struct f_uac1 *uac1 = func_to_uac1(f);
  439. struct g_audio *audio = func_to_g_audio(f);
  440. struct f_uac1_opts *audio_opts;
  441. struct usb_ep *ep = NULL;
  442. struct usb_string *us;
  443. u8 *sam_freq;
  444. int rate;
  445. int status;
  446. audio_opts = container_of(f->fi, struct f_uac1_opts, func_inst);
  447. us = usb_gstrings_attach(cdev, uac1_strings, ARRAY_SIZE(strings_uac1));
  448. if (IS_ERR(us))
  449. return PTR_ERR(us);
  450. ac_interface_desc.iInterface = us[STR_AC_IF].id;
  451. usb_out_it_desc.iTerminal = us[STR_USB_OUT_IT].id;
  452. usb_out_it_desc.iChannelNames = us[STR_USB_OUT_IT_CH_NAMES].id;
  453. io_out_ot_desc.iTerminal = us[STR_IO_OUT_OT].id;
  454. as_out_interface_alt_0_desc.iInterface = us[STR_AS_OUT_IF_ALT0].id;
  455. as_out_interface_alt_1_desc.iInterface = us[STR_AS_OUT_IF_ALT1].id;
  456. io_in_it_desc.iTerminal = us[STR_IO_IN_IT].id;
  457. io_in_it_desc.iChannelNames = us[STR_IO_IN_IT_CH_NAMES].id;
  458. usb_in_ot_desc.iTerminal = us[STR_USB_IN_OT].id;
  459. as_in_interface_alt_0_desc.iInterface = us[STR_AS_IN_IF_ALT0].id;
  460. as_in_interface_alt_1_desc.iInterface = us[STR_AS_IN_IF_ALT1].id;
  461. /* Set channel numbers */
  462. usb_out_it_desc.bNrChannels = num_channels(audio_opts->c_chmask);
  463. usb_out_it_desc.wChannelConfig = cpu_to_le16(audio_opts->c_chmask);
  464. as_out_type_i_desc.bNrChannels = num_channels(audio_opts->c_chmask);
  465. as_out_type_i_desc.bSubframeSize = audio_opts->c_ssize;
  466. as_out_type_i_desc.bBitResolution = audio_opts->c_ssize * 8;
  467. io_in_it_desc.bNrChannels = num_channels(audio_opts->p_chmask);
  468. io_in_it_desc.wChannelConfig = cpu_to_le16(audio_opts->p_chmask);
  469. as_in_type_i_desc.bNrChannels = num_channels(audio_opts->p_chmask);
  470. as_in_type_i_desc.bSubframeSize = audio_opts->p_ssize;
  471. as_in_type_i_desc.bBitResolution = audio_opts->p_ssize * 8;
  472. /* Set sample rates */
  473. rate = audio_opts->c_srate;
  474. sam_freq = as_out_type_i_desc.tSamFreq[0];
  475. memcpy(sam_freq, &rate, 3);
  476. rate = audio_opts->p_srate;
  477. sam_freq = as_in_type_i_desc.tSamFreq[0];
  478. memcpy(sam_freq, &rate, 3);
  479. /* allocate instance-specific interface IDs, and patch descriptors */
  480. status = usb_interface_id(c, f);
  481. if (status < 0)
  482. goto fail;
  483. ac_interface_desc.bInterfaceNumber = status;
  484. uac1->ac_intf = status;
  485. uac1->ac_alt = 0;
  486. status = usb_interface_id(c, f);
  487. if (status < 0)
  488. goto fail;
  489. as_out_interface_alt_0_desc.bInterfaceNumber = status;
  490. as_out_interface_alt_1_desc.bInterfaceNumber = status;
  491. uac1->as_out_intf = status;
  492. uac1->as_out_alt = 0;
  493. status = usb_interface_id(c, f);
  494. if (status < 0)
  495. goto fail;
  496. as_in_interface_alt_0_desc.bInterfaceNumber = status;
  497. as_in_interface_alt_1_desc.bInterfaceNumber = status;
  498. uac1->as_in_intf = status;
  499. uac1->as_in_alt = 0;
  500. audio->gadget = gadget;
  501. status = -ENODEV;
  502. /* allocate instance-specific endpoints */
  503. ep = usb_ep_autoconfig(cdev->gadget, &as_out_ep_desc);
  504. if (!ep)
  505. goto fail;
  506. audio->out_ep = ep;
  507. audio->out_ep->desc = &as_out_ep_desc;
  508. ep = usb_ep_autoconfig(cdev->gadget, &as_in_ep_desc);
  509. if (!ep)
  510. goto fail;
  511. audio->in_ep = ep;
  512. audio->in_ep->desc = &as_in_ep_desc;
  513. /* copy descriptors, and track endpoint copies */
  514. status = usb_assign_descriptors(f, f_audio_desc, f_audio_desc, NULL,
  515. NULL);
  516. if (status)
  517. goto fail;
  518. audio->out_ep_maxpsize = le16_to_cpu(as_out_ep_desc.wMaxPacketSize);
  519. audio->in_ep_maxpsize = le16_to_cpu(as_in_ep_desc.wMaxPacketSize);
  520. audio->params.c_chmask = audio_opts->c_chmask;
  521. audio->params.c_srate = audio_opts->c_srate;
  522. audio->params.c_ssize = audio_opts->c_ssize;
  523. audio->params.p_chmask = audio_opts->p_chmask;
  524. audio->params.p_srate = audio_opts->p_srate;
  525. audio->params.p_ssize = audio_opts->p_ssize;
  526. audio->params.req_number = audio_opts->req_number;
  527. status = g_audio_setup(audio, "UAC1_PCM", "UAC1_Gadget");
  528. if (status)
  529. goto err_card_register;
  530. return 0;
  531. err_card_register:
  532. usb_free_all_descriptors(f);
  533. fail:
  534. return status;
  535. }
  536. /*-------------------------------------------------------------------------*/
  537. static inline struct f_uac1_opts *to_f_uac1_opts(struct config_item *item)
  538. {
  539. return container_of(to_config_group(item), struct f_uac1_opts,
  540. func_inst.group);
  541. }
  542. static void f_uac1_attr_release(struct config_item *item)
  543. {
  544. struct f_uac1_opts *opts = to_f_uac1_opts(item);
  545. usb_put_function_instance(&opts->func_inst);
  546. }
  547. static struct configfs_item_operations f_uac1_item_ops = {
  548. .release = f_uac1_attr_release,
  549. };
  550. #define UAC1_ATTRIBUTE(name) \
  551. static ssize_t f_uac1_opts_##name##_show( \
  552. struct config_item *item, \
  553. char *page) \
  554. { \
  555. struct f_uac1_opts *opts = to_f_uac1_opts(item); \
  556. int result; \
  557. \
  558. mutex_lock(&opts->lock); \
  559. result = sprintf(page, "%u\n", opts->name); \
  560. mutex_unlock(&opts->lock); \
  561. \
  562. return result; \
  563. } \
  564. \
  565. static ssize_t f_uac1_opts_##name##_store( \
  566. struct config_item *item, \
  567. const char *page, size_t len) \
  568. { \
  569. struct f_uac1_opts *opts = to_f_uac1_opts(item); \
  570. int ret; \
  571. u32 num; \
  572. \
  573. mutex_lock(&opts->lock); \
  574. if (opts->refcnt) { \
  575. ret = -EBUSY; \
  576. goto end; \
  577. } \
  578. \
  579. ret = kstrtou32(page, 0, &num); \
  580. if (ret) \
  581. goto end; \
  582. \
  583. opts->name = num; \
  584. ret = len; \
  585. \
  586. end: \
  587. mutex_unlock(&opts->lock); \
  588. return ret; \
  589. } \
  590. \
  591. CONFIGFS_ATTR(f_uac1_opts_, name)
  592. UAC1_ATTRIBUTE(c_chmask);
  593. UAC1_ATTRIBUTE(c_srate);
  594. UAC1_ATTRIBUTE(c_ssize);
  595. UAC1_ATTRIBUTE(p_chmask);
  596. UAC1_ATTRIBUTE(p_srate);
  597. UAC1_ATTRIBUTE(p_ssize);
  598. UAC1_ATTRIBUTE(req_number);
  599. static struct configfs_attribute *f_uac1_attrs[] = {
  600. &f_uac1_opts_attr_c_chmask,
  601. &f_uac1_opts_attr_c_srate,
  602. &f_uac1_opts_attr_c_ssize,
  603. &f_uac1_opts_attr_p_chmask,
  604. &f_uac1_opts_attr_p_srate,
  605. &f_uac1_opts_attr_p_ssize,
  606. &f_uac1_opts_attr_req_number,
  607. NULL,
  608. };
  609. static const struct config_item_type f_uac1_func_type = {
  610. .ct_item_ops = &f_uac1_item_ops,
  611. .ct_attrs = f_uac1_attrs,
  612. .ct_owner = THIS_MODULE,
  613. };
  614. static void f_audio_free_inst(struct usb_function_instance *f)
  615. {
  616. struct f_uac1_opts *opts;
  617. opts = container_of(f, struct f_uac1_opts, func_inst);
  618. kfree(opts);
  619. }
  620. static struct usb_function_instance *f_audio_alloc_inst(void)
  621. {
  622. struct f_uac1_opts *opts;
  623. opts = kzalloc(sizeof(*opts), GFP_KERNEL);
  624. if (!opts)
  625. return ERR_PTR(-ENOMEM);
  626. mutex_init(&opts->lock);
  627. opts->func_inst.free_func_inst = f_audio_free_inst;
  628. config_group_init_type_name(&opts->func_inst.group, "",
  629. &f_uac1_func_type);
  630. opts->c_chmask = UAC1_DEF_CCHMASK;
  631. opts->c_srate = UAC1_DEF_CSRATE;
  632. opts->c_ssize = UAC1_DEF_CSSIZE;
  633. opts->p_chmask = UAC1_DEF_PCHMASK;
  634. opts->p_srate = UAC1_DEF_PSRATE;
  635. opts->p_ssize = UAC1_DEF_PSSIZE;
  636. opts->req_number = UAC1_DEF_REQ_NUM;
  637. return &opts->func_inst;
  638. }
  639. static void f_audio_free(struct usb_function *f)
  640. {
  641. struct g_audio *audio;
  642. struct f_uac1_opts *opts;
  643. audio = func_to_g_audio(f);
  644. opts = container_of(f->fi, struct f_uac1_opts, func_inst);
  645. kfree(audio);
  646. mutex_lock(&opts->lock);
  647. --opts->refcnt;
  648. mutex_unlock(&opts->lock);
  649. }
  650. static void f_audio_unbind(struct usb_configuration *c, struct usb_function *f)
  651. {
  652. struct g_audio *audio = func_to_g_audio(f);
  653. g_audio_cleanup(audio);
  654. usb_free_all_descriptors(f);
  655. audio->gadget = NULL;
  656. }
  657. static struct usb_function *f_audio_alloc(struct usb_function_instance *fi)
  658. {
  659. struct f_uac1 *uac1;
  660. struct f_uac1_opts *opts;
  661. /* allocate and initialize one new instance */
  662. uac1 = kzalloc(sizeof(*uac1), GFP_KERNEL);
  663. if (!uac1)
  664. return ERR_PTR(-ENOMEM);
  665. opts = container_of(fi, struct f_uac1_opts, func_inst);
  666. mutex_lock(&opts->lock);
  667. ++opts->refcnt;
  668. mutex_unlock(&opts->lock);
  669. uac1->g_audio.func.name = "uac1_func";
  670. uac1->g_audio.func.bind = f_audio_bind;
  671. uac1->g_audio.func.unbind = f_audio_unbind;
  672. uac1->g_audio.func.set_alt = f_audio_set_alt;
  673. uac1->g_audio.func.get_alt = f_audio_get_alt;
  674. uac1->g_audio.func.setup = f_audio_setup;
  675. uac1->g_audio.func.disable = f_audio_disable;
  676. uac1->g_audio.func.free_func = f_audio_free;
  677. return &uac1->g_audio.func;
  678. }
  679. DECLARE_USB_FUNCTION_INIT(uac1, f_audio_alloc_inst, f_audio_alloc);
  680. MODULE_LICENSE("GPL");
  681. MODULE_AUTHOR("Ruslan Bilovol");