mtu3_gadget.c 18 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * mtu3_gadget.c - MediaTek usb3 DRD peripheral support
  4. *
  5. * Copyright (C) 2016 MediaTek Inc.
  6. *
  7. * Author: Chunfeng Yun <[email protected]>
  8. */
  9. #include "mtu3.h"
  10. #include "mtu3_trace.h"
  11. void mtu3_req_complete(struct mtu3_ep *mep,
  12. struct usb_request *req, int status)
  13. __releases(mep->mtu->lock)
  14. __acquires(mep->mtu->lock)
  15. {
  16. struct mtu3_request *mreq = to_mtu3_request(req);
  17. struct mtu3 *mtu = mreq->mtu;
  18. list_del(&mreq->list);
  19. if (req->status == -EINPROGRESS)
  20. req->status = status;
  21. trace_mtu3_req_complete(mreq);
  22. spin_unlock(&mtu->lock);
  23. /* ep0 makes use of PIO, needn't unmap it */
  24. if (mep->epnum)
  25. usb_gadget_unmap_request(&mtu->g, req, mep->is_in);
  26. dev_dbg(mtu->dev, "%s complete req: %p, sts %d, %d/%d\n",
  27. mep->name, req, req->status, req->actual, req->length);
  28. usb_gadget_giveback_request(&mep->ep, req);
  29. spin_lock(&mtu->lock);
  30. }
  31. static void nuke(struct mtu3_ep *mep, const int status)
  32. {
  33. struct mtu3_request *mreq = NULL;
  34. if (list_empty(&mep->req_list))
  35. return;
  36. dev_dbg(mep->mtu->dev, "abort %s's req: sts %d\n", mep->name, status);
  37. /* exclude EP0 */
  38. if (mep->epnum)
  39. mtu3_qmu_flush(mep);
  40. while (!list_empty(&mep->req_list)) {
  41. mreq = list_first_entry(&mep->req_list,
  42. struct mtu3_request, list);
  43. mtu3_req_complete(mep, &mreq->request, status);
  44. }
  45. }
  46. static int mtu3_ep_enable(struct mtu3_ep *mep)
  47. {
  48. const struct usb_endpoint_descriptor *desc;
  49. const struct usb_ss_ep_comp_descriptor *comp_desc;
  50. struct mtu3 *mtu = mep->mtu;
  51. u32 interval = 0;
  52. u32 mult = 0;
  53. u32 burst = 0;
  54. int ret;
  55. desc = mep->desc;
  56. comp_desc = mep->comp_desc;
  57. mep->type = usb_endpoint_type(desc);
  58. mep->maxp = usb_endpoint_maxp(desc);
  59. switch (mtu->g.speed) {
  60. case USB_SPEED_SUPER:
  61. case USB_SPEED_SUPER_PLUS:
  62. if (usb_endpoint_xfer_int(desc) ||
  63. usb_endpoint_xfer_isoc(desc)) {
  64. interval = desc->bInterval;
  65. interval = clamp_val(interval, 1, 16);
  66. if (usb_endpoint_xfer_isoc(desc) && comp_desc)
  67. mult = comp_desc->bmAttributes;
  68. }
  69. if (comp_desc)
  70. burst = comp_desc->bMaxBurst;
  71. break;
  72. case USB_SPEED_HIGH:
  73. if (usb_endpoint_xfer_isoc(desc) ||
  74. usb_endpoint_xfer_int(desc)) {
  75. interval = desc->bInterval;
  76. interval = clamp_val(interval, 1, 16);
  77. mult = usb_endpoint_maxp_mult(desc) - 1;
  78. }
  79. break;
  80. case USB_SPEED_FULL:
  81. if (usb_endpoint_xfer_isoc(desc))
  82. interval = clamp_val(desc->bInterval, 1, 16);
  83. else if (usb_endpoint_xfer_int(desc))
  84. interval = clamp_val(desc->bInterval, 1, 255);
  85. break;
  86. default:
  87. break; /*others are ignored */
  88. }
  89. dev_dbg(mtu->dev, "%s maxp:%d, interval:%d, burst:%d, mult:%d\n",
  90. __func__, mep->maxp, interval, burst, mult);
  91. mep->ep.maxpacket = mep->maxp;
  92. mep->ep.desc = desc;
  93. mep->ep.comp_desc = comp_desc;
  94. /* slot mainly affects bulk/isoc transfer, so ignore int */
  95. mep->slot = usb_endpoint_xfer_int(desc) ? 0 : mtu->slot;
  96. ret = mtu3_config_ep(mtu, mep, interval, burst, mult);
  97. if (ret < 0)
  98. return ret;
  99. ret = mtu3_gpd_ring_alloc(mep);
  100. if (ret < 0) {
  101. mtu3_deconfig_ep(mtu, mep);
  102. return ret;
  103. }
  104. mtu3_qmu_start(mep);
  105. return 0;
  106. }
  107. static int mtu3_ep_disable(struct mtu3_ep *mep)
  108. {
  109. struct mtu3 *mtu = mep->mtu;
  110. mtu3_qmu_stop(mep);
  111. /* abort all pending requests */
  112. nuke(mep, -ESHUTDOWN);
  113. mtu3_deconfig_ep(mtu, mep);
  114. mtu3_gpd_ring_free(mep);
  115. mep->desc = NULL;
  116. mep->ep.desc = NULL;
  117. mep->comp_desc = NULL;
  118. mep->type = 0;
  119. mep->flags = 0;
  120. return 0;
  121. }
  122. static int mtu3_gadget_ep_enable(struct usb_ep *ep,
  123. const struct usb_endpoint_descriptor *desc)
  124. {
  125. struct mtu3_ep *mep;
  126. struct mtu3 *mtu;
  127. unsigned long flags;
  128. int ret = -EINVAL;
  129. if (!ep || !desc || desc->bDescriptorType != USB_DT_ENDPOINT) {
  130. pr_debug("%s invalid parameters\n", __func__);
  131. return -EINVAL;
  132. }
  133. if (!desc->wMaxPacketSize) {
  134. pr_debug("%s missing wMaxPacketSize\n", __func__);
  135. return -EINVAL;
  136. }
  137. mep = to_mtu3_ep(ep);
  138. mtu = mep->mtu;
  139. /* check ep number and direction against endpoint */
  140. if (usb_endpoint_num(desc) != mep->epnum)
  141. return -EINVAL;
  142. if (!!usb_endpoint_dir_in(desc) ^ !!mep->is_in)
  143. return -EINVAL;
  144. dev_dbg(mtu->dev, "%s %s\n", __func__, ep->name);
  145. if (mep->flags & MTU3_EP_ENABLED) {
  146. dev_WARN_ONCE(mtu->dev, true, "%s is already enabled\n",
  147. mep->name);
  148. return 0;
  149. }
  150. spin_lock_irqsave(&mtu->lock, flags);
  151. mep->desc = desc;
  152. mep->comp_desc = ep->comp_desc;
  153. ret = mtu3_ep_enable(mep);
  154. if (ret)
  155. goto error;
  156. mep->flags = MTU3_EP_ENABLED;
  157. mtu->active_ep++;
  158. error:
  159. spin_unlock_irqrestore(&mtu->lock, flags);
  160. dev_dbg(mtu->dev, "%s active_ep=%d\n", __func__, mtu->active_ep);
  161. trace_mtu3_gadget_ep_enable(mep);
  162. return ret;
  163. }
  164. static int mtu3_gadget_ep_disable(struct usb_ep *ep)
  165. {
  166. struct mtu3_ep *mep = to_mtu3_ep(ep);
  167. struct mtu3 *mtu = mep->mtu;
  168. unsigned long flags;
  169. dev_dbg(mtu->dev, "%s %s\n", __func__, mep->name);
  170. trace_mtu3_gadget_ep_disable(mep);
  171. if (!(mep->flags & MTU3_EP_ENABLED)) {
  172. dev_warn(mtu->dev, "%s is already disabled\n", mep->name);
  173. return 0;
  174. }
  175. spin_lock_irqsave(&mtu->lock, flags);
  176. mtu3_ep_disable(mep);
  177. mep->flags = 0;
  178. mtu->active_ep--;
  179. spin_unlock_irqrestore(&(mtu->lock), flags);
  180. dev_dbg(mtu->dev, "%s active_ep=%d, mtu3 is_active=%d\n",
  181. __func__, mtu->active_ep, mtu->is_active);
  182. return 0;
  183. }
  184. struct usb_request *mtu3_alloc_request(struct usb_ep *ep, gfp_t gfp_flags)
  185. {
  186. struct mtu3_ep *mep = to_mtu3_ep(ep);
  187. struct mtu3_request *mreq;
  188. mreq = kzalloc(sizeof(*mreq), gfp_flags);
  189. if (!mreq)
  190. return NULL;
  191. mreq->request.dma = DMA_ADDR_INVALID;
  192. mreq->epnum = mep->epnum;
  193. mreq->mep = mep;
  194. INIT_LIST_HEAD(&mreq->list);
  195. trace_mtu3_alloc_request(mreq);
  196. return &mreq->request;
  197. }
  198. void mtu3_free_request(struct usb_ep *ep, struct usb_request *req)
  199. {
  200. struct mtu3_request *mreq = to_mtu3_request(req);
  201. trace_mtu3_free_request(mreq);
  202. kfree(mreq);
  203. }
  204. static int mtu3_gadget_queue(struct usb_ep *ep,
  205. struct usb_request *req, gfp_t gfp_flags)
  206. {
  207. struct mtu3_ep *mep = to_mtu3_ep(ep);
  208. struct mtu3_request *mreq = to_mtu3_request(req);
  209. struct mtu3 *mtu = mep->mtu;
  210. unsigned long flags;
  211. int ret = 0;
  212. if (!req->buf)
  213. return -ENODATA;
  214. if (mreq->mep != mep)
  215. return -EINVAL;
  216. dev_dbg(mtu->dev, "%s %s EP%d(%s), req=%p, maxp=%d, len#%d\n",
  217. __func__, mep->is_in ? "TX" : "RX", mreq->epnum, ep->name,
  218. mreq, ep->maxpacket, mreq->request.length);
  219. if (req->length > GPD_BUF_SIZE ||
  220. (mtu->gen2cp && req->length > GPD_BUF_SIZE_EL)) {
  221. dev_warn(mtu->dev,
  222. "req length > supported MAX:%d requested:%d\n",
  223. mtu->gen2cp ? GPD_BUF_SIZE_EL : GPD_BUF_SIZE,
  224. req->length);
  225. return -EOPNOTSUPP;
  226. }
  227. /* don't queue if the ep is down */
  228. if (!mep->desc) {
  229. dev_dbg(mtu->dev, "req=%p queued to %s while it's disabled\n",
  230. req, ep->name);
  231. return -ESHUTDOWN;
  232. }
  233. mreq->mtu = mtu;
  234. mreq->request.actual = 0;
  235. mreq->request.status = -EINPROGRESS;
  236. ret = usb_gadget_map_request(&mtu->g, req, mep->is_in);
  237. if (ret) {
  238. dev_err(mtu->dev, "dma mapping failed\n");
  239. return ret;
  240. }
  241. spin_lock_irqsave(&mtu->lock, flags);
  242. if (mtu3_prepare_transfer(mep)) {
  243. ret = -EAGAIN;
  244. goto error;
  245. }
  246. list_add_tail(&mreq->list, &mep->req_list);
  247. mtu3_insert_gpd(mep, mreq);
  248. mtu3_qmu_resume(mep);
  249. error:
  250. spin_unlock_irqrestore(&mtu->lock, flags);
  251. trace_mtu3_gadget_queue(mreq);
  252. return ret;
  253. }
  254. static int mtu3_gadget_dequeue(struct usb_ep *ep, struct usb_request *req)
  255. {
  256. struct mtu3_ep *mep = to_mtu3_ep(ep);
  257. struct mtu3_request *mreq = to_mtu3_request(req);
  258. struct mtu3_request *r;
  259. struct mtu3 *mtu = mep->mtu;
  260. unsigned long flags;
  261. int ret = 0;
  262. if (mreq->mep != mep)
  263. return -EINVAL;
  264. dev_dbg(mtu->dev, "%s : req=%p\n", __func__, req);
  265. trace_mtu3_gadget_dequeue(mreq);
  266. spin_lock_irqsave(&mtu->lock, flags);
  267. list_for_each_entry(r, &mep->req_list, list) {
  268. if (r == mreq)
  269. break;
  270. }
  271. if (r != mreq) {
  272. dev_dbg(mtu->dev, "req=%p not queued to %s\n", req, ep->name);
  273. ret = -EINVAL;
  274. goto done;
  275. }
  276. mtu3_qmu_flush(mep); /* REVISIT: set BPS ?? */
  277. mtu3_req_complete(mep, req, -ECONNRESET);
  278. mtu3_qmu_start(mep);
  279. done:
  280. spin_unlock_irqrestore(&mtu->lock, flags);
  281. return ret;
  282. }
  283. /*
  284. * Set or clear the halt bit of an EP.
  285. * A halted EP won't TX/RX any data but will queue requests.
  286. */
  287. static int mtu3_gadget_ep_set_halt(struct usb_ep *ep, int value)
  288. {
  289. struct mtu3_ep *mep = to_mtu3_ep(ep);
  290. struct mtu3 *mtu = mep->mtu;
  291. struct mtu3_request *mreq;
  292. unsigned long flags;
  293. int ret = 0;
  294. dev_dbg(mtu->dev, "%s : %s...", __func__, ep->name);
  295. spin_lock_irqsave(&mtu->lock, flags);
  296. if (mep->type == USB_ENDPOINT_XFER_ISOC) {
  297. ret = -EINVAL;
  298. goto done;
  299. }
  300. mreq = next_request(mep);
  301. if (value) {
  302. /*
  303. * If there is not request for TX-EP, QMU will not transfer
  304. * data to TX-FIFO, so no need check whether TX-FIFO
  305. * holds bytes or not here
  306. */
  307. if (mreq) {
  308. dev_dbg(mtu->dev, "req in progress, cannot halt %s\n",
  309. ep->name);
  310. ret = -EAGAIN;
  311. goto done;
  312. }
  313. } else {
  314. mep->flags &= ~MTU3_EP_WEDGE;
  315. }
  316. dev_dbg(mtu->dev, "%s %s stall\n", ep->name, value ? "set" : "clear");
  317. mtu3_ep_stall_set(mep, value);
  318. done:
  319. spin_unlock_irqrestore(&mtu->lock, flags);
  320. trace_mtu3_gadget_ep_set_halt(mep);
  321. return ret;
  322. }
  323. /* Sets the halt feature with the clear requests ignored */
  324. static int mtu3_gadget_ep_set_wedge(struct usb_ep *ep)
  325. {
  326. struct mtu3_ep *mep = to_mtu3_ep(ep);
  327. mep->flags |= MTU3_EP_WEDGE;
  328. return usb_ep_set_halt(ep);
  329. }
  330. static const struct usb_ep_ops mtu3_ep_ops = {
  331. .enable = mtu3_gadget_ep_enable,
  332. .disable = mtu3_gadget_ep_disable,
  333. .alloc_request = mtu3_alloc_request,
  334. .free_request = mtu3_free_request,
  335. .queue = mtu3_gadget_queue,
  336. .dequeue = mtu3_gadget_dequeue,
  337. .set_halt = mtu3_gadget_ep_set_halt,
  338. .set_wedge = mtu3_gadget_ep_set_wedge,
  339. };
  340. static int mtu3_gadget_get_frame(struct usb_gadget *gadget)
  341. {
  342. struct mtu3 *mtu = gadget_to_mtu3(gadget);
  343. return (int)mtu3_readl(mtu->mac_base, U3D_USB20_FRAME_NUM);
  344. }
  345. static void function_wake_notif(struct mtu3 *mtu, u8 intf)
  346. {
  347. mtu3_writel(mtu->mac_base, U3D_DEV_NOTIF_0,
  348. TYPE_FUNCTION_WAKE | DEV_NOTIF_VAL_FW(intf));
  349. mtu3_setbits(mtu->mac_base, U3D_DEV_NOTIF_0, SEND_DEV_NOTIF);
  350. }
  351. static int mtu3_gadget_wakeup(struct usb_gadget *gadget)
  352. {
  353. struct mtu3 *mtu = gadget_to_mtu3(gadget);
  354. unsigned long flags;
  355. dev_dbg(mtu->dev, "%s\n", __func__);
  356. /* remote wakeup feature is not enabled by host */
  357. if (!mtu->may_wakeup)
  358. return -EOPNOTSUPP;
  359. spin_lock_irqsave(&mtu->lock, flags);
  360. if (mtu->g.speed >= USB_SPEED_SUPER) {
  361. /*
  362. * class driver may do function wakeup even UFP is in U0,
  363. * and UX_EXIT only takes effect in U1/U2/U3;
  364. */
  365. mtu3_setbits(mtu->mac_base, U3D_LINK_POWER_CONTROL, UX_EXIT);
  366. /*
  367. * Assume there's only one function on the composite device
  368. * and enable remote wake for the first interface.
  369. * FIXME if the IAD (interface association descriptor) shows
  370. * there is more than one function.
  371. */
  372. function_wake_notif(mtu, 0);
  373. } else {
  374. mtu3_setbits(mtu->mac_base, U3D_POWER_MANAGEMENT, RESUME);
  375. spin_unlock_irqrestore(&mtu->lock, flags);
  376. usleep_range(10000, 11000);
  377. spin_lock_irqsave(&mtu->lock, flags);
  378. mtu3_clrbits(mtu->mac_base, U3D_POWER_MANAGEMENT, RESUME);
  379. }
  380. spin_unlock_irqrestore(&mtu->lock, flags);
  381. return 0;
  382. }
  383. static int mtu3_gadget_set_self_powered(struct usb_gadget *gadget,
  384. int is_selfpowered)
  385. {
  386. struct mtu3 *mtu = gadget_to_mtu3(gadget);
  387. mtu->is_self_powered = !!is_selfpowered;
  388. return 0;
  389. }
  390. static int mtu3_gadget_pullup(struct usb_gadget *gadget, int is_on)
  391. {
  392. struct mtu3 *mtu = gadget_to_mtu3(gadget);
  393. unsigned long flags;
  394. dev_dbg(mtu->dev, "%s (%s) for %sactive device\n", __func__,
  395. is_on ? "on" : "off", mtu->is_active ? "" : "in");
  396. pm_runtime_get_sync(mtu->dev);
  397. /* we'd rather not pullup unless the device is active. */
  398. spin_lock_irqsave(&mtu->lock, flags);
  399. is_on = !!is_on;
  400. if (!mtu->is_active) {
  401. /* save it for mtu3_start() to process the request */
  402. mtu->softconnect = is_on;
  403. } else if (is_on != mtu->softconnect) {
  404. mtu->softconnect = is_on;
  405. mtu3_dev_on_off(mtu, is_on);
  406. }
  407. spin_unlock_irqrestore(&mtu->lock, flags);
  408. pm_runtime_put(mtu->dev);
  409. return 0;
  410. }
  411. static int mtu3_gadget_start(struct usb_gadget *gadget,
  412. struct usb_gadget_driver *driver)
  413. {
  414. struct mtu3 *mtu = gadget_to_mtu3(gadget);
  415. unsigned long flags;
  416. if (mtu->gadget_driver) {
  417. dev_err(mtu->dev, "%s is already bound to %s\n",
  418. mtu->g.name, mtu->gadget_driver->driver.name);
  419. return -EBUSY;
  420. }
  421. dev_dbg(mtu->dev, "bind driver %s\n", driver->function);
  422. pm_runtime_get_sync(mtu->dev);
  423. spin_lock_irqsave(&mtu->lock, flags);
  424. mtu->softconnect = 0;
  425. mtu->gadget_driver = driver;
  426. if (mtu->ssusb->dr_mode == USB_DR_MODE_PERIPHERAL)
  427. mtu3_start(mtu);
  428. spin_unlock_irqrestore(&mtu->lock, flags);
  429. pm_runtime_put(mtu->dev);
  430. return 0;
  431. }
  432. static void stop_activity(struct mtu3 *mtu)
  433. {
  434. struct usb_gadget_driver *driver = mtu->gadget_driver;
  435. int i;
  436. /* don't disconnect if it's not connected */
  437. if (mtu->g.speed == USB_SPEED_UNKNOWN)
  438. driver = NULL;
  439. else
  440. mtu->g.speed = USB_SPEED_UNKNOWN;
  441. /* deactivate the hardware */
  442. if (mtu->softconnect) {
  443. mtu->softconnect = 0;
  444. mtu3_dev_on_off(mtu, 0);
  445. }
  446. /*
  447. * killing any outstanding requests will quiesce the driver;
  448. * then report disconnect
  449. */
  450. nuke(mtu->ep0, -ESHUTDOWN);
  451. for (i = 1; i < mtu->num_eps; i++) {
  452. nuke(mtu->in_eps + i, -ESHUTDOWN);
  453. nuke(mtu->out_eps + i, -ESHUTDOWN);
  454. }
  455. if (driver) {
  456. spin_unlock(&mtu->lock);
  457. driver->disconnect(&mtu->g);
  458. spin_lock(&mtu->lock);
  459. }
  460. }
  461. static int mtu3_gadget_stop(struct usb_gadget *g)
  462. {
  463. struct mtu3 *mtu = gadget_to_mtu3(g);
  464. unsigned long flags;
  465. dev_dbg(mtu->dev, "%s\n", __func__);
  466. spin_lock_irqsave(&mtu->lock, flags);
  467. stop_activity(mtu);
  468. mtu->gadget_driver = NULL;
  469. if (mtu->ssusb->dr_mode == USB_DR_MODE_PERIPHERAL)
  470. mtu3_stop(mtu);
  471. spin_unlock_irqrestore(&mtu->lock, flags);
  472. synchronize_irq(mtu->irq);
  473. return 0;
  474. }
  475. static void
  476. mtu3_gadget_set_speed(struct usb_gadget *g, enum usb_device_speed speed)
  477. {
  478. struct mtu3 *mtu = gadget_to_mtu3(g);
  479. unsigned long flags;
  480. dev_dbg(mtu->dev, "%s %s\n", __func__, usb_speed_string(speed));
  481. spin_lock_irqsave(&mtu->lock, flags);
  482. mtu->speed = speed;
  483. spin_unlock_irqrestore(&mtu->lock, flags);
  484. }
  485. static void mtu3_gadget_async_callbacks(struct usb_gadget *g, bool enable)
  486. {
  487. struct mtu3 *mtu = gadget_to_mtu3(g);
  488. unsigned long flags;
  489. dev_dbg(mtu->dev, "%s %s\n", __func__, enable ? "en" : "dis");
  490. spin_lock_irqsave(&mtu->lock, flags);
  491. mtu->async_callbacks = enable;
  492. spin_unlock_irqrestore(&mtu->lock, flags);
  493. }
  494. static const struct usb_gadget_ops mtu3_gadget_ops = {
  495. .get_frame = mtu3_gadget_get_frame,
  496. .wakeup = mtu3_gadget_wakeup,
  497. .set_selfpowered = mtu3_gadget_set_self_powered,
  498. .pullup = mtu3_gadget_pullup,
  499. .udc_start = mtu3_gadget_start,
  500. .udc_stop = mtu3_gadget_stop,
  501. .udc_set_speed = mtu3_gadget_set_speed,
  502. .udc_async_callbacks = mtu3_gadget_async_callbacks,
  503. };
  504. static void mtu3_state_reset(struct mtu3 *mtu)
  505. {
  506. mtu->address = 0;
  507. mtu->ep0_state = MU3D_EP0_STATE_SETUP;
  508. mtu->may_wakeup = 0;
  509. mtu->u1_enable = 0;
  510. mtu->u2_enable = 0;
  511. mtu->delayed_status = false;
  512. mtu->test_mode = false;
  513. }
  514. static void init_hw_ep(struct mtu3 *mtu, struct mtu3_ep *mep,
  515. u32 epnum, u32 is_in)
  516. {
  517. mep->epnum = epnum;
  518. mep->mtu = mtu;
  519. mep->is_in = is_in;
  520. INIT_LIST_HEAD(&mep->req_list);
  521. sprintf(mep->name, "ep%d%s", epnum,
  522. !epnum ? "" : (is_in ? "in" : "out"));
  523. mep->ep.name = mep->name;
  524. INIT_LIST_HEAD(&mep->ep.ep_list);
  525. /* initialize maxpacket as SS */
  526. if (!epnum) {
  527. usb_ep_set_maxpacket_limit(&mep->ep, 512);
  528. mep->ep.caps.type_control = true;
  529. mep->ep.ops = &mtu3_ep0_ops;
  530. mtu->g.ep0 = &mep->ep;
  531. } else {
  532. usb_ep_set_maxpacket_limit(&mep->ep, 1024);
  533. mep->ep.caps.type_iso = true;
  534. mep->ep.caps.type_bulk = true;
  535. mep->ep.caps.type_int = true;
  536. mep->ep.ops = &mtu3_ep_ops;
  537. list_add_tail(&mep->ep.ep_list, &mtu->g.ep_list);
  538. }
  539. dev_dbg(mtu->dev, "%s, name=%s, maxp=%d\n", __func__, mep->ep.name,
  540. mep->ep.maxpacket);
  541. if (!epnum) {
  542. mep->ep.caps.dir_in = true;
  543. mep->ep.caps.dir_out = true;
  544. } else if (is_in) {
  545. mep->ep.caps.dir_in = true;
  546. } else {
  547. mep->ep.caps.dir_out = true;
  548. }
  549. }
  550. static void mtu3_gadget_init_eps(struct mtu3 *mtu)
  551. {
  552. u8 epnum;
  553. /* initialize endpoint list just once */
  554. INIT_LIST_HEAD(&(mtu->g.ep_list));
  555. dev_dbg(mtu->dev, "%s num_eps(1 for a pair of tx&rx ep)=%d\n",
  556. __func__, mtu->num_eps);
  557. init_hw_ep(mtu, mtu->ep0, 0, 0);
  558. for (epnum = 1; epnum < mtu->num_eps; epnum++) {
  559. init_hw_ep(mtu, mtu->in_eps + epnum, epnum, 1);
  560. init_hw_ep(mtu, mtu->out_eps + epnum, epnum, 0);
  561. }
  562. }
  563. int mtu3_gadget_setup(struct mtu3 *mtu)
  564. {
  565. mtu->g.ops = &mtu3_gadget_ops;
  566. mtu->g.max_speed = mtu->max_speed;
  567. mtu->g.speed = USB_SPEED_UNKNOWN;
  568. mtu->g.sg_supported = 0;
  569. mtu->g.name = MTU3_DRIVER_NAME;
  570. mtu->g.irq = mtu->irq;
  571. mtu->is_active = 0;
  572. mtu->delayed_status = false;
  573. mtu3_gadget_init_eps(mtu);
  574. return usb_add_gadget_udc(mtu->dev, &mtu->g);
  575. }
  576. void mtu3_gadget_cleanup(struct mtu3 *mtu)
  577. {
  578. usb_del_gadget_udc(&mtu->g);
  579. }
  580. void mtu3_gadget_resume(struct mtu3 *mtu)
  581. {
  582. dev_dbg(mtu->dev, "gadget RESUME\n");
  583. if (mtu->async_callbacks && mtu->gadget_driver && mtu->gadget_driver->resume) {
  584. spin_unlock(&mtu->lock);
  585. mtu->gadget_driver->resume(&mtu->g);
  586. spin_lock(&mtu->lock);
  587. }
  588. }
  589. /* called when SOF packets stop for 3+ msec or enters U3 */
  590. void mtu3_gadget_suspend(struct mtu3 *mtu)
  591. {
  592. dev_dbg(mtu->dev, "gadget SUSPEND\n");
  593. if (mtu->async_callbacks && mtu->gadget_driver && mtu->gadget_driver->suspend) {
  594. spin_unlock(&mtu->lock);
  595. mtu->gadget_driver->suspend(&mtu->g);
  596. spin_lock(&mtu->lock);
  597. }
  598. }
  599. /* called when VBUS drops below session threshold, and in other cases */
  600. void mtu3_gadget_disconnect(struct mtu3 *mtu)
  601. {
  602. dev_dbg(mtu->dev, "gadget DISCONNECT\n");
  603. if (mtu->async_callbacks && mtu->gadget_driver && mtu->gadget_driver->disconnect) {
  604. spin_unlock(&mtu->lock);
  605. mtu->gadget_driver->disconnect(&mtu->g);
  606. spin_lock(&mtu->lock);
  607. }
  608. mtu3_state_reset(mtu);
  609. usb_gadget_set_state(&mtu->g, USB_STATE_NOTATTACHED);
  610. }
  611. void mtu3_gadget_reset(struct mtu3 *mtu)
  612. {
  613. dev_dbg(mtu->dev, "gadget RESET\n");
  614. /* report disconnect, if we didn't flush EP state */
  615. if (mtu->g.speed != USB_SPEED_UNKNOWN)
  616. mtu3_gadget_disconnect(mtu);
  617. else
  618. mtu3_state_reset(mtu);
  619. }