xref: /OK3568_Linux_fs/u-boot/drivers/usb/cdns3/gadget.c (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Cadence USBSS DRD Driver - gadget side.
4  *
5  * Copyright (C) 2018-2019 Cadence Design Systems.
6  * Copyright (C) 2017-2018 NXP
7  *
8  * Authors: Pawel Jez <pjez@cadence.com>,
9  *          Pawel Laszczak <pawell@cadence.com>
10  *          Peter Chen <peter.chen@nxp.com>
11  */
12 
13 /*
14  * Work around 1:
15  * At some situations, the controller may get stale data address in TRB
16  * at below sequences:
17  * 1. Controller read TRB includes data address
18  * 2. Software updates TRBs includes data address and Cycle bit
19  * 3. Controller read TRB which includes Cycle bit
20  * 4. DMA run with stale data address
21  *
22  * To fix this problem, driver needs to make the first TRB in TD as invalid.
23  * After preparing all TRBs driver needs to check the position of DMA and
24  * if the DMA point to the first just added TRB and doorbell is 1,
25  * then driver must defer making this TRB as valid. This TRB will be make
26  * as valid during adding next TRB only if DMA is stopped or at TRBERR
27  * interrupt.
28  *
29  * Issue has been fixed in DEV_VER_V3 version of controller.
30  *
31  * Work around 2:
32  * Controller for OUT endpoints has shared on-chip buffers for all incoming
33  * packets, including ep0out. It's FIFO buffer, so packets must be handle by DMA
34  * in correct order. If the first packet in the buffer will not be handled,
35  * then the following packets directed for other endpoints and  functions
36  * will be blocked.
37  * Additionally the packets directed to one endpoint can block entire on-chip
38  * buffers. In this case transfer to other endpoints also will blocked.
39  *
40  * To resolve this issue after raising the descriptor missing interrupt
41  * driver prepares internal usb_request object and use it to arm DMA transfer.
42  *
43  * The problematic situation was observed in case when endpoint has been enabled
44  * but no usb_request were queued. Driver try detects such endpoints and will
45  * use this workaround only for these endpoint.
46  *
47  * Driver use limited number of buffer. This number can be set by macro
48  * CDNS3_WA2_NUM_BUFFERS.
49  *
50  * Such blocking situation was observed on ACM gadget. For this function
51  * host send OUT data packet but ACM function is not prepared for this packet.
52  * It's cause that buffer placed in on chip memory block transfer to other
53  * endpoints.
54  *
55  * Issue has been fixed in DEV_VER_V2 version of controller.
56  *
57  */
58 
59 #include <dm.h>
60 #include <linux/usb/gadget.h>
61 #include <linux/compat.h>
62 #include <linux/iopoll.h>
63 #include <asm/dma-mapping.h>
64 #include <linux/bitmap.h>
65 #include <linux/bug.h>
66 
67 #include "core.h"
68 #include "gadget-export.h"
69 #include "gadget.h"
70 #include "trace.h"
71 #include "drd.h"
72 
73 #define readl_poll_timeout_atomic readl_poll_timeout
74 #define usleep_range(a, b) udelay((b))
75 
76 static int __cdns3_gadget_ep_queue(struct usb_ep *ep,
77 				   struct usb_request *request,
78 				   gfp_t gfp_flags);
79 
80 /**
81  * cdns3_set_register_bit - set bit in given register.
82  * @ptr: address of device controller register to be read and changed
83  * @mask: bits requested to set
84  */
cdns3_set_register_bit(void __iomem * ptr,u32 mask)85 void cdns3_set_register_bit(void __iomem *ptr, u32 mask)
86 {
87 	mask = readl(ptr) | mask;
88 	writel(mask, ptr);
89 }
90 
91 /**
92  * cdns3_ep_addr_to_index - Macro converts endpoint address to
93  * index of endpoint object in cdns3_device.eps[] container
94  * @ep_addr: endpoint address for which endpoint object is required
95  *
96  */
cdns3_ep_addr_to_index(u8 ep_addr)97 u8 cdns3_ep_addr_to_index(u8 ep_addr)
98 {
99 	return (((ep_addr & 0x7F)) + ((ep_addr & USB_DIR_IN) ? 16 : 0));
100 }
101 
cdns3_get_dma_pos(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep)102 static int cdns3_get_dma_pos(struct cdns3_device *priv_dev,
103 			     struct cdns3_endpoint *priv_ep)
104 {
105 	int dma_index;
106 
107 	dma_index = readl(&priv_dev->regs->ep_traddr) - priv_ep->trb_pool_dma;
108 
109 	return dma_index / TRB_SIZE;
110 }
111 
112 /**
113  * cdns3_next_request - returns next request from list
114  * @list: list containing requests
115  *
116  * Returns request or NULL if no requests in list
117  */
cdns3_next_request(struct list_head * list)118 struct usb_request *cdns3_next_request(struct list_head *list)
119 {
120 	return list_first_entry_or_null(list, struct usb_request, list);
121 }
122 
123 /**
124  * cdns3_next_align_buf - returns next buffer from list
125  * @list: list containing buffers
126  *
127  * Returns buffer or NULL if no buffers in list
128  */
cdns3_next_align_buf(struct list_head * list)129 struct cdns3_aligned_buf *cdns3_next_align_buf(struct list_head *list)
130 {
131 	return list_first_entry_or_null(list, struct cdns3_aligned_buf, list);
132 }
133 
134 /**
135  * cdns3_next_priv_request - returns next request from list
136  * @list: list containing requests
137  *
138  * Returns request or NULL if no requests in list
139  */
cdns3_next_priv_request(struct list_head * list)140 struct cdns3_request *cdns3_next_priv_request(struct list_head *list)
141 {
142 	return list_first_entry_or_null(list, struct cdns3_request, list);
143 }
144 
145 /**
146  * select_ep - selects endpoint
147  * @priv_dev:  extended gadget object
148  * @ep: endpoint address
149  */
cdns3_select_ep(struct cdns3_device * priv_dev,u32 ep)150 void cdns3_select_ep(struct cdns3_device *priv_dev, u32 ep)
151 {
152 	if (priv_dev->selected_ep == ep)
153 		return;
154 
155 	priv_dev->selected_ep = ep;
156 	writel(ep, &priv_dev->regs->ep_sel);
157 }
158 
cdns3_trb_virt_to_dma(struct cdns3_endpoint * priv_ep,struct cdns3_trb * trb)159 dma_addr_t cdns3_trb_virt_to_dma(struct cdns3_endpoint *priv_ep,
160 				 struct cdns3_trb *trb)
161 {
162 	u32 offset = (char *)trb - (char *)priv_ep->trb_pool;
163 
164 	return priv_ep->trb_pool_dma + offset;
165 }
166 
cdns3_ring_size(struct cdns3_endpoint * priv_ep)167 int cdns3_ring_size(struct cdns3_endpoint *priv_ep)
168 {
169 	switch (priv_ep->type) {
170 	case USB_ENDPOINT_XFER_ISOC:
171 		return TRB_ISO_RING_SIZE;
172 	case USB_ENDPOINT_XFER_CONTROL:
173 		return TRB_CTRL_RING_SIZE;
174 	default:
175 		return TRB_RING_SIZE;
176 	}
177 }
178 
179 /**
180  * cdns3_allocate_trb_pool - Allocates TRB's pool for selected endpoint
181  * @priv_ep:  endpoint object
182  *
183  * Function will return 0 on success or -ENOMEM on allocation error
184  */
cdns3_allocate_trb_pool(struct cdns3_endpoint * priv_ep)185 int cdns3_allocate_trb_pool(struct cdns3_endpoint *priv_ep)
186 {
187 	int ring_size = cdns3_ring_size(priv_ep);
188 	struct cdns3_trb *link_trb;
189 
190 	if (!priv_ep->trb_pool) {
191 		priv_ep->trb_pool =
192 		dma_alloc_coherent(ring_size,
193 				   (unsigned long *)&priv_ep->trb_pool_dma);
194 		if (!priv_ep->trb_pool)
195 			return -ENOMEM;
196 	} else {
197 		memset(priv_ep->trb_pool, 0, ring_size);
198 	}
199 
200 	if (!priv_ep->num)
201 		return 0;
202 
203 	priv_ep->num_trbs = ring_size / TRB_SIZE;
204 	/* Initialize the last TRB as Link TRB. */
205 	link_trb = (priv_ep->trb_pool + (priv_ep->num_trbs - 1));
206 	link_trb->buffer = TRB_BUFFER(priv_ep->trb_pool_dma);
207 	link_trb->control = TRB_CYCLE | TRB_TYPE(TRB_LINK) | TRB_TOGGLE;
208 
209 	return 0;
210 }
211 
cdns3_free_trb_pool(struct cdns3_endpoint * priv_ep)212 static void cdns3_free_trb_pool(struct cdns3_endpoint *priv_ep)
213 {
214 	if (priv_ep->trb_pool) {
215 		dma_free_coherent(priv_ep->trb_pool);
216 		priv_ep->trb_pool = NULL;
217 	}
218 }
219 
220 /**
221  * cdns3_ep_stall_flush - Stalls and flushes selected endpoint
222  * @priv_ep: endpoint object
223  *
224  * Endpoint must be selected before call to this function
225  */
cdns3_ep_stall_flush(struct cdns3_endpoint * priv_ep)226 static void cdns3_ep_stall_flush(struct cdns3_endpoint *priv_ep)
227 {
228 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
229 	int val;
230 
231 	trace_cdns3_halt(priv_ep, 1, 1);
232 
233 	writel(EP_CMD_DFLUSH | EP_CMD_ERDY | EP_CMD_SSTALL,
234 	       &priv_dev->regs->ep_cmd);
235 
236 	/* wait for DFLUSH cleared */
237 	readl_poll_timeout_atomic(&priv_dev->regs->ep_cmd, val,
238 				  !(val & EP_CMD_DFLUSH), 1000);
239 	priv_ep->flags |= EP_STALLED;
240 	priv_ep->flags &= ~EP_STALL_PENDING;
241 }
242 
243 /**
244  * cdns3_hw_reset_eps_config - reset endpoints configuration kept by controller.
245  * @priv_dev: extended gadget object
246  */
cdns3_hw_reset_eps_config(struct cdns3_device * priv_dev)247 void cdns3_hw_reset_eps_config(struct cdns3_device *priv_dev)
248 {
249 	writel(USB_CONF_CFGRST, &priv_dev->regs->usb_conf);
250 
251 	cdns3_allow_enable_l1(priv_dev, 0);
252 	priv_dev->hw_configured_flag = 0;
253 	priv_dev->onchip_used_size = 0;
254 	priv_dev->out_mem_is_allocated = 0;
255 	priv_dev->wait_for_setup = 0;
256 }
257 
258 /**
259  * cdns3_ep_inc_trb - increment a trb index.
260  * @index: Pointer to the TRB index to increment.
261  * @cs: Cycle state
262  * @trb_in_seg: number of TRBs in segment
263  *
264  * The index should never point to the link TRB. After incrementing,
265  * if it is point to the link TRB, wrap around to the beginning and revert
266  * cycle state bit The
267  * link TRB is always at the last TRB entry.
268  */
cdns3_ep_inc_trb(int * index,u8 * cs,int trb_in_seg)269 static void cdns3_ep_inc_trb(int *index, u8 *cs, int trb_in_seg)
270 {
271 	(*index)++;
272 	if (*index == (trb_in_seg - 1)) {
273 		*index = 0;
274 		*cs ^=  1;
275 	}
276 }
277 
278 /**
279  * cdns3_ep_inc_enq - increment endpoint's enqueue pointer
280  * @priv_ep: The endpoint whose enqueue pointer we're incrementing
281  */
cdns3_ep_inc_enq(struct cdns3_endpoint * priv_ep)282 static void cdns3_ep_inc_enq(struct cdns3_endpoint *priv_ep)
283 {
284 	priv_ep->free_trbs--;
285 	cdns3_ep_inc_trb(&priv_ep->enqueue, &priv_ep->pcs, priv_ep->num_trbs);
286 }
287 
288 /**
289  * cdns3_ep_inc_deq - increment endpoint's dequeue pointer
290  * @priv_ep: The endpoint whose dequeue pointer we're incrementing
291  */
cdns3_ep_inc_deq(struct cdns3_endpoint * priv_ep)292 static void cdns3_ep_inc_deq(struct cdns3_endpoint *priv_ep)
293 {
294 	priv_ep->free_trbs++;
295 	cdns3_ep_inc_trb(&priv_ep->dequeue, &priv_ep->ccs, priv_ep->num_trbs);
296 }
297 
cdns3_move_deq_to_next_trb(struct cdns3_request * priv_req)298 void cdns3_move_deq_to_next_trb(struct cdns3_request *priv_req)
299 {
300 	struct cdns3_endpoint *priv_ep = priv_req->priv_ep;
301 	int current_trb = priv_req->start_trb;
302 
303 	while (current_trb != priv_req->end_trb) {
304 		cdns3_ep_inc_deq(priv_ep);
305 		current_trb = priv_ep->dequeue;
306 	}
307 
308 	cdns3_ep_inc_deq(priv_ep);
309 }
310 
311 /**
312  * cdns3_allow_enable_l1 - enable/disable permits to transition to L1.
313  * @priv_dev: Extended gadget object
314  * @enable: Enable/disable permit to transition to L1.
315  *
316  * If bit USB_CONF_L1EN is set and device receive Extended Token packet,
317  * then controller answer with ACK handshake.
318  * If bit USB_CONF_L1DS is set and device receive Extended Token packet,
319  * then controller answer with NYET handshake.
320  */
cdns3_allow_enable_l1(struct cdns3_device * priv_dev,int enable)321 void cdns3_allow_enable_l1(struct cdns3_device *priv_dev, int enable)
322 {
323 	if (enable)
324 		writel(USB_CONF_L1EN, &priv_dev->regs->usb_conf);
325 	else
326 		writel(USB_CONF_L1DS, &priv_dev->regs->usb_conf);
327 }
328 
cdns3_get_speed(struct cdns3_device * priv_dev)329 enum usb_device_speed cdns3_get_speed(struct cdns3_device *priv_dev)
330 {
331 	u32 reg;
332 
333 	reg = readl(&priv_dev->regs->usb_sts);
334 
335 	if (DEV_SUPERSPEED(reg))
336 		return USB_SPEED_SUPER;
337 	else if (DEV_HIGHSPEED(reg))
338 		return USB_SPEED_HIGH;
339 	else if (DEV_FULLSPEED(reg))
340 		return USB_SPEED_FULL;
341 	else if (DEV_LOWSPEED(reg))
342 		return USB_SPEED_LOW;
343 	return USB_SPEED_UNKNOWN;
344 }
345 
346 /**
347  * cdns3_start_all_request - add to ring all request not started
348  * @priv_dev: Extended gadget object
349  * @priv_ep: The endpoint for whom request will be started.
350  *
351  * Returns return ENOMEM if transfer ring i not enough TRBs to start
352  *         all requests.
353  */
cdns3_start_all_request(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep)354 static int cdns3_start_all_request(struct cdns3_device *priv_dev,
355 				   struct cdns3_endpoint *priv_ep)
356 {
357 	struct usb_request *request;
358 	int ret = 0;
359 
360 	while (!list_empty(&priv_ep->deferred_req_list)) {
361 		request = cdns3_next_request(&priv_ep->deferred_req_list);
362 
363 		ret = cdns3_ep_run_transfer(priv_ep, request);
364 		if (ret)
365 			return ret;
366 
367 		list_del(&request->list);
368 		list_add_tail(&request->list,
369 			      &priv_ep->pending_req_list);
370 	}
371 
372 	priv_ep->flags &= ~EP_RING_FULL;
373 	return ret;
374 }
375 
376 /*
377  * WA2: Set flag for all not ISOC OUT endpoints. If this flag is set
378  * driver try to detect whether endpoint need additional internal
379  * buffer for unblocking on-chip FIFO buffer. This flag will be cleared
380  * if before first DESCMISS interrupt the DMA will be armed.
381  */
382 #define cdns3_wa2_enable_detection(priv_dev, ep_priv, reg) do { \
383 	if (!priv_ep->dir && priv_ep->type != USB_ENDPOINT_XFER_ISOC) { \
384 		priv_ep->flags |= EP_QUIRK_EXTRA_BUF_DET; \
385 		(reg) |= EP_STS_EN_DESCMISEN; \
386 	} } while (0)
387 
388 /**
389  * cdns3_wa2_descmiss_copy_data copy data from internal requests to
390  * request queued by class driver.
391  * @priv_ep: extended endpoint object
392  * @request: request object
393  */
cdns3_wa2_descmiss_copy_data(struct cdns3_endpoint * priv_ep,struct usb_request * request)394 static void cdns3_wa2_descmiss_copy_data(struct cdns3_endpoint *priv_ep,
395 					 struct usb_request *request)
396 {
397 	struct usb_request *descmiss_req;
398 	struct cdns3_request *descmiss_priv_req;
399 
400 	while (!list_empty(&priv_ep->wa2_descmiss_req_list)) {
401 		int chunk_end;
402 		int length;
403 
404 		descmiss_priv_req =
405 			cdns3_next_priv_request(&priv_ep->wa2_descmiss_req_list);
406 		descmiss_req = &descmiss_priv_req->request;
407 
408 		/* driver can't touch pending request */
409 		if (descmiss_priv_req->flags & REQUEST_PENDING)
410 			break;
411 
412 		chunk_end = descmiss_priv_req->flags & REQUEST_INTERNAL_CH;
413 		length = request->actual + descmiss_req->actual;
414 
415 		request->status = descmiss_req->status;
416 
417 		if (length <= request->length) {
418 			memcpy(&((u8 *)request->buf)[request->actual],
419 			       descmiss_req->buf,
420 			       descmiss_req->actual);
421 			request->actual = length;
422 		} else {
423 			/* It should never occur */
424 			request->status = -ENOMEM;
425 		}
426 
427 		list_del_init(&descmiss_priv_req->list);
428 
429 		kfree(descmiss_req->buf);
430 		cdns3_gadget_ep_free_request(&priv_ep->endpoint, descmiss_req);
431 		--priv_ep->wa2_counter;
432 
433 		if (!chunk_end)
434 			break;
435 	}
436 }
437 
cdns3_wa2_gadget_giveback(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep,struct cdns3_request * priv_req)438 struct usb_request *cdns3_wa2_gadget_giveback(struct cdns3_device *priv_dev,
439 					      struct cdns3_endpoint *priv_ep,
440 					      struct cdns3_request *priv_req)
441 {
442 	if (priv_ep->flags & EP_QUIRK_EXTRA_BUF_EN &&
443 	    priv_req->flags & REQUEST_INTERNAL) {
444 		struct usb_request *req;
445 
446 		req = cdns3_next_request(&priv_ep->deferred_req_list);
447 
448 		priv_ep->descmis_req = NULL;
449 
450 		if (!req)
451 			return NULL;
452 
453 		cdns3_wa2_descmiss_copy_data(priv_ep, req);
454 		if (!(priv_ep->flags & EP_QUIRK_END_TRANSFER) &&
455 		    req->length != req->actual) {
456 			/* wait for next part of transfer */
457 			return NULL;
458 		}
459 
460 		if (req->status == -EINPROGRESS)
461 			req->status = 0;
462 
463 		list_del_init(&req->list);
464 		cdns3_start_all_request(priv_dev, priv_ep);
465 		return req;
466 	}
467 
468 	return &priv_req->request;
469 }
470 
cdns3_wa2_gadget_ep_queue(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep,struct cdns3_request * priv_req)471 int cdns3_wa2_gadget_ep_queue(struct cdns3_device *priv_dev,
472 			      struct cdns3_endpoint *priv_ep,
473 			      struct cdns3_request *priv_req)
474 {
475 	int deferred = 0;
476 
477 	/*
478 	 * If transfer was queued before DESCMISS appear than we
479 	 * can disable handling of DESCMISS interrupt. Driver assumes that it
480 	 * can disable special treatment for this endpoint.
481 	 */
482 	if (priv_ep->flags & EP_QUIRK_EXTRA_BUF_DET) {
483 		u32 reg;
484 
485 		cdns3_select_ep(priv_dev, priv_ep->num | priv_ep->dir);
486 		priv_ep->flags &= ~EP_QUIRK_EXTRA_BUF_DET;
487 		reg = readl(&priv_dev->regs->ep_sts_en);
488 		reg &= ~EP_STS_EN_DESCMISEN;
489 		trace_cdns3_wa2(priv_ep, "workaround disabled\n");
490 		writel(reg, &priv_dev->regs->ep_sts_en);
491 	}
492 
493 	if (priv_ep->flags & EP_QUIRK_EXTRA_BUF_EN) {
494 		u8 pending_empty = list_empty(&priv_ep->pending_req_list);
495 		u8 descmiss_empty = list_empty(&priv_ep->wa2_descmiss_req_list);
496 
497 		/*
498 		 *  DESCMISS transfer has been finished, so data will be
499 		 *  directly copied from internal allocated usb_request
500 		 *  objects.
501 		 */
502 		if (pending_empty && !descmiss_empty &&
503 		    !(priv_req->flags & REQUEST_INTERNAL)) {
504 			cdns3_wa2_descmiss_copy_data(priv_ep,
505 						     &priv_req->request);
506 
507 			trace_cdns3_wa2(priv_ep, "get internal stored data");
508 
509 			list_add_tail(&priv_req->request.list,
510 				      &priv_ep->pending_req_list);
511 			cdns3_gadget_giveback(priv_ep, priv_req,
512 					      priv_req->request.status);
513 
514 			/*
515 			 * Intentionally driver returns positive value as
516 			 * correct value. It informs that transfer has
517 			 * been finished.
518 			 */
519 			return EINPROGRESS;
520 		}
521 
522 		/*
523 		 * Driver will wait for completion DESCMISS transfer,
524 		 * before starts new, not DESCMISS transfer.
525 		 */
526 		if (!pending_empty && !descmiss_empty) {
527 			trace_cdns3_wa2(priv_ep, "wait for pending transfer\n");
528 			deferred = 1;
529 		}
530 
531 		if (priv_req->flags & REQUEST_INTERNAL)
532 			list_add_tail(&priv_req->list,
533 				      &priv_ep->wa2_descmiss_req_list);
534 	}
535 
536 	return deferred;
537 }
538 
cdns3_wa2_remove_old_request(struct cdns3_endpoint * priv_ep)539 static void cdns3_wa2_remove_old_request(struct cdns3_endpoint *priv_ep)
540 {
541 	struct cdns3_request *priv_req;
542 
543 	while (!list_empty(&priv_ep->wa2_descmiss_req_list)) {
544 		u8 chain;
545 
546 		priv_req = cdns3_next_priv_request(&priv_ep->wa2_descmiss_req_list);
547 		chain = !!(priv_req->flags & REQUEST_INTERNAL_CH);
548 
549 		trace_cdns3_wa2(priv_ep, "removes eldest request");
550 
551 		kfree(priv_req->request.buf);
552 		cdns3_gadget_ep_free_request(&priv_ep->endpoint,
553 					     &priv_req->request);
554 		list_del_init(&priv_req->list);
555 		--priv_ep->wa2_counter;
556 
557 		if (!chain)
558 			break;
559 	}
560 }
561 
562 /**
563  * cdns3_wa2_descmissing_packet - handles descriptor missing event.
564  * @priv_dev: extended gadget object
565  *
566  * This function is used only for WA2. For more information see Work around 2
567  * description.
568  */
cdns3_wa2_descmissing_packet(struct cdns3_endpoint * priv_ep)569 static void cdns3_wa2_descmissing_packet(struct cdns3_endpoint *priv_ep)
570 {
571 	struct cdns3_request *priv_req;
572 	struct usb_request *request;
573 
574 	if (priv_ep->flags & EP_QUIRK_EXTRA_BUF_DET) {
575 		priv_ep->flags &= ~EP_QUIRK_EXTRA_BUF_DET;
576 		priv_ep->flags |= EP_QUIRK_EXTRA_BUF_EN;
577 	}
578 
579 	trace_cdns3_wa2(priv_ep, "Description Missing detected\n");
580 
581 	if (priv_ep->wa2_counter >= CDNS3_WA2_NUM_BUFFERS)
582 		cdns3_wa2_remove_old_request(priv_ep);
583 
584 	request = cdns3_gadget_ep_alloc_request(&priv_ep->endpoint,
585 						GFP_ATOMIC);
586 	if (!request)
587 		goto err;
588 
589 	priv_req = to_cdns3_request(request);
590 	priv_req->flags |= REQUEST_INTERNAL;
591 
592 	/* if this field is still assigned it indicate that transfer related
593 	 * with this request has not been finished yet. Driver in this
594 	 * case simply allocate next request and assign flag REQUEST_INTERNAL_CH
595 	 * flag to previous one. It will indicate that current request is
596 	 * part of the previous one.
597 	 */
598 	if (priv_ep->descmis_req)
599 		priv_ep->descmis_req->flags |= REQUEST_INTERNAL_CH;
600 
601 	priv_req->request.buf = kzalloc(CDNS3_DESCMIS_BUF_SIZE,
602 					GFP_ATOMIC);
603 	priv_ep->wa2_counter++;
604 
605 	if (!priv_req->request.buf) {
606 		cdns3_gadget_ep_free_request(&priv_ep->endpoint, request);
607 		goto err;
608 	}
609 
610 	priv_req->request.length = CDNS3_DESCMIS_BUF_SIZE;
611 	priv_ep->descmis_req = priv_req;
612 
613 	__cdns3_gadget_ep_queue(&priv_ep->endpoint,
614 				&priv_ep->descmis_req->request,
615 				GFP_ATOMIC);
616 
617 	return;
618 
619 err:
620 	dev_err(priv_ep->cdns3_dev->dev,
621 		"Failed: No sufficient memory for DESCMIS\n");
622 }
623 
624 /**
625  * cdns3_gadget_giveback - call struct usb_request's ->complete callback
626  * @priv_ep: The endpoint to whom the request belongs to
627  * @priv_req: The request we're giving back
628  * @status: completion code for the request
629  *
630  * Must be called with controller's lock held and interrupts disabled. This
631  * function will unmap @req and call its ->complete() callback to notify upper
632  * layers that it has completed.
633  */
cdns3_gadget_giveback(struct cdns3_endpoint * priv_ep,struct cdns3_request * priv_req,int status)634 void cdns3_gadget_giveback(struct cdns3_endpoint *priv_ep,
635 			   struct cdns3_request *priv_req,
636 			   int status)
637 {
638 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
639 	struct usb_request *request = &priv_req->request;
640 
641 	list_del_init(&request->list);
642 
643 	if (request->status == -EINPROGRESS)
644 		request->status = status;
645 
646 	usb_gadget_unmap_request(&priv_dev->gadget, request,
647 				 priv_ep->dir);
648 
649 	if ((priv_req->flags & REQUEST_UNALIGNED) &&
650 	    priv_ep->dir == USB_DIR_OUT && !request->status)
651 		memcpy(request->buf, priv_req->aligned_buf->buf,
652 		       request->length);
653 
654 	priv_req->flags &= ~(REQUEST_PENDING | REQUEST_UNALIGNED);
655 	trace_cdns3_gadget_giveback(priv_req);
656 
657 	if (priv_dev->dev_ver < DEV_VER_V2) {
658 		request = cdns3_wa2_gadget_giveback(priv_dev, priv_ep,
659 						    priv_req);
660 		if (!request)
661 			return;
662 	}
663 
664 	if (request->complete) {
665 		spin_unlock(&priv_dev->lock);
666 		usb_gadget_giveback_request(&priv_ep->endpoint,
667 					    request);
668 		spin_lock(&priv_dev->lock);
669 	}
670 
671 	if (request->buf == priv_dev->zlp_buf)
672 		cdns3_gadget_ep_free_request(&priv_ep->endpoint, request);
673 }
674 
cdns3_wa1_restore_cycle_bit(struct cdns3_endpoint * priv_ep)675 void cdns3_wa1_restore_cycle_bit(struct cdns3_endpoint *priv_ep)
676 {
677 	/* Work around for stale data address in TRB*/
678 	if (priv_ep->wa1_set) {
679 		trace_cdns3_wa1(priv_ep, "restore cycle bit");
680 
681 		priv_ep->wa1_set = 0;
682 		priv_ep->wa1_trb_index = 0xFFFF;
683 		if (priv_ep->wa1_cycle_bit) {
684 			priv_ep->wa1_trb->control =
685 				priv_ep->wa1_trb->control | 0x1;
686 		} else {
687 			priv_ep->wa1_trb->control =
688 				priv_ep->wa1_trb->control & ~0x1;
689 		}
690 	}
691 }
692 
cdns3_free_aligned_request_buf(struct cdns3_device * priv_dev)693 static void cdns3_free_aligned_request_buf(struct cdns3_device *priv_dev)
694 {
695 	struct cdns3_aligned_buf *buf, *tmp;
696 	unsigned long flags;
697 
698 	spin_lock_irqsave(&priv_dev->lock, flags);
699 
700 	list_for_each_entry_safe(buf, tmp, &priv_dev->aligned_buf_list, list) {
701 		if (!buf->in_use) {
702 			list_del(&buf->list);
703 
704 			/*
705 			 * Re-enable interrupts to free DMA capable memory.
706 			 * Driver can't free this memory with disabled
707 			 * interrupts.
708 			 */
709 			spin_unlock_irqrestore(&priv_dev->lock, flags);
710 			dma_free_coherent(buf->buf);
711 			kfree(buf);
712 			spin_lock_irqsave(&priv_dev->lock, flags);
713 		}
714 	}
715 
716 	spin_unlock_irqrestore(&priv_dev->lock, flags);
717 }
718 
cdns3_prepare_aligned_request_buf(struct cdns3_request * priv_req)719 static int cdns3_prepare_aligned_request_buf(struct cdns3_request *priv_req)
720 {
721 	struct cdns3_endpoint *priv_ep = priv_req->priv_ep;
722 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
723 	struct cdns3_aligned_buf *buf;
724 
725 	/* check if buffer is aligned to 8. */
726 	if (!((uintptr_t)priv_req->request.buf & 0x7))
727 		return 0;
728 
729 	buf = priv_req->aligned_buf;
730 
731 	if (!buf || priv_req->request.length > buf->size) {
732 		buf = kzalloc(sizeof(*buf), GFP_ATOMIC);
733 		if (!buf)
734 			return -ENOMEM;
735 
736 		buf->size = priv_req->request.length;
737 
738 		buf->buf = dma_alloc_coherent(buf->size,
739 					      (unsigned long *)&buf->dma);
740 		if (!buf->buf) {
741 			kfree(buf);
742 			return -ENOMEM;
743 		}
744 
745 		if (priv_req->aligned_buf) {
746 			trace_cdns3_free_aligned_request(priv_req);
747 			priv_req->aligned_buf->in_use = 0;
748 #ifndef __UBOOT__
749 			queue_work(system_freezable_wq,
750 				   &priv_dev->aligned_buf_wq);
751 #else
752 			cdns3_free_aligned_request_buf(priv_dev);
753 #endif
754 		}
755 
756 		buf->in_use = 1;
757 		priv_req->aligned_buf = buf;
758 
759 		list_add_tail(&buf->list,
760 			      &priv_dev->aligned_buf_list);
761 	}
762 
763 	if (priv_ep->dir == USB_DIR_IN) {
764 		memcpy(buf->buf, priv_req->request.buf,
765 		       priv_req->request.length);
766 	}
767 
768 	priv_req->flags |= REQUEST_UNALIGNED;
769 	trace_cdns3_prepare_aligned_request(priv_req);
770 
771 	return 0;
772 }
773 
cdns3_wa1_update_guard(struct cdns3_endpoint * priv_ep,struct cdns3_trb * trb)774 static int cdns3_wa1_update_guard(struct cdns3_endpoint *priv_ep,
775 				  struct cdns3_trb *trb)
776 {
777 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
778 
779 	if (!priv_ep->wa1_set) {
780 		u32 doorbell;
781 
782 		doorbell = !!(readl(&priv_dev->regs->ep_cmd) & EP_CMD_DRDY);
783 
784 		if (doorbell) {
785 			priv_ep->wa1_cycle_bit = priv_ep->pcs ? TRB_CYCLE : 0;
786 			priv_ep->wa1_set = 1;
787 			priv_ep->wa1_trb = trb;
788 			priv_ep->wa1_trb_index = priv_ep->enqueue;
789 			trace_cdns3_wa1(priv_ep, "set guard");
790 			return 0;
791 		}
792 	}
793 	return 1;
794 }
795 
cdns3_wa1_tray_restore_cycle_bit(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep)796 static void cdns3_wa1_tray_restore_cycle_bit(struct cdns3_device *priv_dev,
797 					     struct cdns3_endpoint *priv_ep)
798 {
799 	int dma_index;
800 	u32 doorbell;
801 
802 	doorbell = !!(readl(&priv_dev->regs->ep_cmd) & EP_CMD_DRDY);
803 	dma_index = cdns3_get_dma_pos(priv_dev, priv_ep);
804 
805 	if (!doorbell || dma_index != priv_ep->wa1_trb_index)
806 		cdns3_wa1_restore_cycle_bit(priv_ep);
807 }
808 
809 /**
810  * cdns3_ep_run_transfer - start transfer on no-default endpoint hardware
811  * @priv_ep: endpoint object
812  *
813  * Returns zero on success or negative value on failure
814  */
cdns3_ep_run_transfer(struct cdns3_endpoint * priv_ep,struct usb_request * request)815 int cdns3_ep_run_transfer(struct cdns3_endpoint *priv_ep,
816 			  struct usb_request *request)
817 {
818 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
819 	struct cdns3_request *priv_req;
820 	struct cdns3_trb *trb;
821 	dma_addr_t trb_dma;
822 	u32 togle_pcs = 1;
823 	int sg_iter = 0;
824 	int num_trb = 1;
825 	int address;
826 	u32 control;
827 	int pcs;
828 
829 	if (num_trb > priv_ep->free_trbs) {
830 		priv_ep->flags |= EP_RING_FULL;
831 		return -ENOBUFS;
832 	}
833 
834 	priv_req = to_cdns3_request(request);
835 	address = priv_ep->endpoint.desc->bEndpointAddress;
836 
837 	priv_ep->flags |= EP_PENDING_REQUEST;
838 
839 	/* must allocate buffer aligned to 8 */
840 	if (priv_req->flags & REQUEST_UNALIGNED)
841 		trb_dma = priv_req->aligned_buf->dma;
842 	else
843 		trb_dma = request->dma;
844 
845 	trb = priv_ep->trb_pool + priv_ep->enqueue;
846 	priv_req->start_trb = priv_ep->enqueue;
847 	priv_req->trb = trb;
848 
849 	cdns3_select_ep(priv_ep->cdns3_dev, address);
850 
851 	/* prepare ring */
852 	if ((priv_ep->enqueue + num_trb)  >= (priv_ep->num_trbs - 1)) {
853 		struct cdns3_trb *link_trb;
854 		int doorbell, dma_index;
855 		u32 ch_bit = 0;
856 
857 		doorbell = !!(readl(&priv_dev->regs->ep_cmd) & EP_CMD_DRDY);
858 		dma_index = cdns3_get_dma_pos(priv_dev, priv_ep);
859 
860 		/* Driver can't update LINK TRB if it is current processed. */
861 		if (doorbell && dma_index == priv_ep->num_trbs - 1) {
862 			priv_ep->flags |= EP_DEFERRED_DRDY;
863 			return -ENOBUFS;
864 		}
865 
866 		/*updating C bt in  Link TRB before starting DMA*/
867 		link_trb = priv_ep->trb_pool + (priv_ep->num_trbs - 1);
868 		/*
869 		 * For TRs size equal 2 enabling TRB_CHAIN for epXin causes
870 		 * that DMA stuck at the LINK TRB.
871 		 * On the other hand, removing TRB_CHAIN for longer TRs for
872 		 * epXout cause that DMA stuck after handling LINK TRB.
873 		 * To eliminate this strange behavioral driver set TRB_CHAIN
874 		 * bit only for TR size > 2.
875 		 */
876 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC ||
877 		    TRBS_PER_SEGMENT > 2)
878 			ch_bit = TRB_CHAIN;
879 
880 		link_trb->control = ((priv_ep->pcs) ? TRB_CYCLE : 0) |
881 				    TRB_TYPE(TRB_LINK) | TRB_TOGGLE | ch_bit;
882 	}
883 
884 	if (priv_dev->dev_ver <= DEV_VER_V2)
885 		togle_pcs = cdns3_wa1_update_guard(priv_ep, trb);
886 
887 	/* set incorrect Cycle Bit for first trb*/
888 	control = priv_ep->pcs ? 0 : TRB_CYCLE;
889 
890 	do {
891 		u32 length;
892 		u16 td_size = 0;
893 
894 		/* fill TRB */
895 		control |= TRB_TYPE(TRB_NORMAL);
896 		trb->buffer = TRB_BUFFER(trb_dma);
897 
898 		length = request->length;
899 
900 		if (likely(priv_dev->dev_ver >= DEV_VER_V2))
901 			td_size = DIV_ROUND_UP(length,
902 					       priv_ep->endpoint.maxpacket);
903 
904 		trb->length = TRB_BURST_LEN(priv_ep->trb_burst_size) |
905 					TRB_LEN(length);
906 		if (priv_dev->gadget.speed == USB_SPEED_SUPER)
907 			trb->length |= TRB_TDL_SS_SIZE(td_size);
908 		else
909 			control |= TRB_TDL_HS_SIZE(td_size);
910 
911 		pcs = priv_ep->pcs ? TRB_CYCLE : 0;
912 
913 		/*
914 		 * first trb should be prepared as last to avoid processing
915 		 *  transfer to early
916 		 */
917 		if (sg_iter != 0)
918 			control |= pcs;
919 
920 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC  && !priv_ep->dir) {
921 			control |= TRB_IOC | TRB_ISP;
922 		} else {
923 			/* for last element in TD or in SG list */
924 			if (sg_iter == (num_trb - 1) && sg_iter != 0)
925 				control |= pcs | TRB_IOC | TRB_ISP;
926 		}
927 
928 		if (sg_iter)
929 			trb->control = control;
930 		else
931 			priv_req->trb->control = control;
932 
933 		control = 0;
934 		++sg_iter;
935 		priv_req->end_trb = priv_ep->enqueue;
936 		cdns3_ep_inc_enq(priv_ep);
937 		trb = priv_ep->trb_pool + priv_ep->enqueue;
938 	} while (sg_iter < num_trb);
939 
940 	trb = priv_req->trb;
941 
942 	priv_req->flags |= REQUEST_PENDING;
943 
944 	if (sg_iter == 1)
945 		trb->control |= TRB_IOC | TRB_ISP;
946 
947 	/*
948 	 * Memory barrier - cycle bit must be set before other filds in trb.
949 	 */
950 	dmb();
951 
952 	/* give the TD to the consumer*/
953 	if (togle_pcs)
954 		trb->control =  trb->control ^ 1;
955 
956 	if (priv_dev->dev_ver <= DEV_VER_V2)
957 		cdns3_wa1_tray_restore_cycle_bit(priv_dev, priv_ep);
958 
959 	trace_cdns3_prepare_trb(priv_ep, priv_req->trb);
960 
961 	/*
962 	 * Memory barrier - Cycle Bit must be set before trb->length  and
963 	 * trb->buffer fields.
964 	 */
965 	dmb();
966 
967 	/*
968 	 * For DMULT mode we can set address to transfer ring only once after
969 	 * enabling endpoint.
970 	 */
971 	if (priv_ep->flags & EP_UPDATE_EP_TRBADDR) {
972 		/*
973 		 * Until SW is not ready to handle the OUT transfer the ISO OUT
974 		 * Endpoint should be disabled (EP_CFG.ENABLE = 0).
975 		 * EP_CFG_ENABLE must be set before updating ep_traddr.
976 		 */
977 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC  && !priv_ep->dir &&
978 		    !(priv_ep->flags & EP_QUIRK_ISO_OUT_EN)) {
979 			priv_ep->flags |= EP_QUIRK_ISO_OUT_EN;
980 			cdns3_set_register_bit(&priv_dev->regs->ep_cfg,
981 					       EP_CFG_ENABLE);
982 		}
983 
984 		writel(EP_TRADDR_TRADDR(priv_ep->trb_pool_dma +
985 					priv_req->start_trb * TRB_SIZE),
986 					&priv_dev->regs->ep_traddr);
987 
988 		priv_ep->flags &= ~EP_UPDATE_EP_TRBADDR;
989 	}
990 
991 	if (!priv_ep->wa1_set && !(priv_ep->flags & EP_STALLED)) {
992 		trace_cdns3_ring(priv_ep);
993 		/*clearing TRBERR and EP_STS_DESCMIS before seting DRDY*/
994 		writel(EP_STS_TRBERR | EP_STS_DESCMIS, &priv_dev->regs->ep_sts);
995 		writel(EP_CMD_DRDY, &priv_dev->regs->ep_cmd);
996 		trace_cdns3_doorbell_epx(priv_ep->name,
997 					 readl(&priv_dev->regs->ep_traddr));
998 	}
999 
1000 	/* WORKAROUND for transition to L0 */
1001 	__cdns3_gadget_wakeup(priv_dev);
1002 
1003 	return 0;
1004 }
1005 
cdns3_set_hw_configuration(struct cdns3_device * priv_dev)1006 void cdns3_set_hw_configuration(struct cdns3_device *priv_dev)
1007 {
1008 	struct cdns3_endpoint *priv_ep;
1009 	struct usb_ep *ep;
1010 	int val;
1011 
1012 	if (priv_dev->hw_configured_flag)
1013 		return;
1014 
1015 	writel(USB_CONF_CFGSET, &priv_dev->regs->usb_conf);
1016 	writel(EP_CMD_ERDY | EP_CMD_REQ_CMPL, &priv_dev->regs->ep_cmd);
1017 
1018 	cdns3_set_register_bit(&priv_dev->regs->usb_conf,
1019 			       USB_CONF_U1EN | USB_CONF_U2EN);
1020 
1021 	/* wait until configuration set */
1022 	readl_poll_timeout_atomic(&priv_dev->regs->usb_sts, val,
1023 				  val & USB_STS_CFGSTS_MASK, 100);
1024 
1025 	priv_dev->hw_configured_flag = 1;
1026 
1027 	list_for_each_entry(ep, &priv_dev->gadget.ep_list, ep_list) {
1028 		priv_ep = ep_to_cdns3_ep(ep);
1029 		if (priv_ep->flags & EP_ENABLED)
1030 			cdns3_start_all_request(priv_dev, priv_ep);
1031 	}
1032 }
1033 
1034 /**
1035  * cdns3_request_handled - check whether request has been handled by DMA
1036  *
1037  * @priv_ep: extended endpoint object.
1038  * @priv_req: request object for checking
1039  *
1040  * Endpoint must be selected before invoking this function.
1041  *
1042  * Returns false if request has not been handled by DMA, else returns true.
1043  *
1044  * SR - start ring
1045  * ER -  end ring
1046  * DQ = priv_ep->dequeue - dequeue position
1047  * EQ = priv_ep->enqueue -  enqueue position
1048  * ST = priv_req->start_trb - index of first TRB in transfer ring
1049  * ET = priv_req->end_trb - index of last TRB in transfer ring
1050  * CI = current_index - index of processed TRB by DMA.
1051  *
1052  * As first step, function checks if cycle bit for priv_req->start_trb is
1053  * correct.
1054  *
1055  * some rules:
1056  * 1. priv_ep->dequeue never exceed current_index.
1057  * 2  priv_ep->enqueue never exceed priv_ep->dequeue
1058  * 3. exception: priv_ep->enqueue == priv_ep->dequeue
1059  *    and priv_ep->free_trbs is zero.
1060  *    This case indicate that TR is full.
1061  *
1062  * Then We can split recognition into two parts:
1063  * Case 1 - priv_ep->dequeue < current_index
1064  *      SR ... EQ ... DQ ... CI ... ER
1065  *      SR ... DQ ... CI ... EQ ... ER
1066  *
1067  *      Request has been handled by DMA if ST and ET is between DQ and CI.
1068  *
1069  * Case 2 - priv_ep->dequeue > current_index
1070  * This situation take place when CI go through the LINK TRB at the end of
1071  * transfer ring.
1072  *      SR ... CI ... EQ ... DQ ... ER
1073  *
1074  *      Request has been handled by DMA if ET is less then CI or
1075  *      ET is greater or equal DQ.
1076  */
cdns3_request_handled(struct cdns3_endpoint * priv_ep,struct cdns3_request * priv_req)1077 static bool cdns3_request_handled(struct cdns3_endpoint *priv_ep,
1078 				  struct cdns3_request *priv_req)
1079 {
1080 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
1081 	struct cdns3_trb *trb = priv_req->trb;
1082 	int current_index = 0;
1083 	int handled = 0;
1084 	int doorbell;
1085 
1086 	current_index = cdns3_get_dma_pos(priv_dev, priv_ep);
1087 	doorbell = !!(readl(&priv_dev->regs->ep_cmd) & EP_CMD_DRDY);
1088 
1089 	trb = &priv_ep->trb_pool[priv_req->start_trb];
1090 
1091 	if ((trb->control  & TRB_CYCLE) != priv_ep->ccs)
1092 		goto finish;
1093 
1094 	if (doorbell == 1 && current_index == priv_ep->dequeue)
1095 		goto finish;
1096 
1097 	/* The corner case for TRBS_PER_SEGMENT equal 2). */
1098 	if (TRBS_PER_SEGMENT == 2 && priv_ep->type != USB_ENDPOINT_XFER_ISOC) {
1099 		handled = 1;
1100 		goto finish;
1101 	}
1102 
1103 	if (priv_ep->enqueue == priv_ep->dequeue &&
1104 	    priv_ep->free_trbs == 0) {
1105 		handled = 1;
1106 	} else if (priv_ep->dequeue < current_index) {
1107 		if ((current_index == (priv_ep->num_trbs - 1)) &&
1108 		    !priv_ep->dequeue)
1109 			goto finish;
1110 
1111 		if (priv_req->end_trb >= priv_ep->dequeue &&
1112 		    priv_req->end_trb < current_index)
1113 			handled = 1;
1114 	} else if (priv_ep->dequeue  > current_index) {
1115 		if (priv_req->end_trb  < current_index ||
1116 		    priv_req->end_trb >= priv_ep->dequeue)
1117 			handled = 1;
1118 	}
1119 
1120 finish:
1121 	trace_cdns3_request_handled(priv_req, current_index, handled);
1122 
1123 	return handled;
1124 }
1125 
cdns3_transfer_completed(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep)1126 static void cdns3_transfer_completed(struct cdns3_device *priv_dev,
1127 				     struct cdns3_endpoint *priv_ep)
1128 {
1129 	struct cdns3_request *priv_req;
1130 	struct usb_request *request;
1131 	struct cdns3_trb *trb;
1132 
1133 	while (!list_empty(&priv_ep->pending_req_list)) {
1134 		request = cdns3_next_request(&priv_ep->pending_req_list);
1135 		priv_req = to_cdns3_request(request);
1136 
1137 		/* Re-select endpoint. It could be changed by other CPU during
1138 		 * handling usb_gadget_giveback_request.
1139 		 */
1140 #ifndef __UBOOT__
1141 		cdns3_select_ep(priv_dev, priv_ep->endpoint.address);
1142 #else
1143 		cdns3_select_ep(priv_dev,
1144 				priv_ep->endpoint.desc->bEndpointAddress);
1145 #endif
1146 
1147 		if (!cdns3_request_handled(priv_ep, priv_req))
1148 			goto prepare_next_td;
1149 
1150 		trb = priv_ep->trb_pool + priv_ep->dequeue;
1151 		trace_cdns3_complete_trb(priv_ep, trb);
1152 
1153 		if (trb != priv_req->trb)
1154 			dev_warn(priv_dev->dev,
1155 				 "request_trb=0x%p, queue_trb=0x%p\n",
1156 				 priv_req->trb, trb);
1157 
1158 		request->actual = TRB_LEN(le32_to_cpu(trb->length));
1159 		cdns3_move_deq_to_next_trb(priv_req);
1160 		cdns3_gadget_giveback(priv_ep, priv_req, 0);
1161 
1162 		if (priv_ep->type != USB_ENDPOINT_XFER_ISOC &&
1163 		    TRBS_PER_SEGMENT == 2)
1164 			break;
1165 	}
1166 	priv_ep->flags &= ~EP_PENDING_REQUEST;
1167 
1168 prepare_next_td:
1169 	if (!(priv_ep->flags & EP_STALLED) &&
1170 	    !(priv_ep->flags & EP_STALL_PENDING))
1171 		cdns3_start_all_request(priv_dev, priv_ep);
1172 }
1173 
cdns3_rearm_transfer(struct cdns3_endpoint * priv_ep,u8 rearm)1174 void cdns3_rearm_transfer(struct cdns3_endpoint *priv_ep, u8 rearm)
1175 {
1176 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
1177 
1178 	cdns3_wa1_restore_cycle_bit(priv_ep);
1179 
1180 	if (rearm) {
1181 		trace_cdns3_ring(priv_ep);
1182 
1183 		/* Cycle Bit must be updated before arming DMA. */
1184 		dmb();
1185 		writel(EP_CMD_DRDY, &priv_dev->regs->ep_cmd);
1186 
1187 		__cdns3_gadget_wakeup(priv_dev);
1188 
1189 		trace_cdns3_doorbell_epx(priv_ep->name,
1190 					 readl(&priv_dev->regs->ep_traddr));
1191 	}
1192 }
1193 
1194 /**
1195  * cdns3_check_ep_interrupt_proceed - Processes interrupt related to endpoint
1196  * @priv_ep: endpoint object
1197  *
1198  * Returns 0
1199  */
cdns3_check_ep_interrupt_proceed(struct cdns3_endpoint * priv_ep)1200 static int cdns3_check_ep_interrupt_proceed(struct cdns3_endpoint *priv_ep)
1201 {
1202 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
1203 	u32 ep_sts_reg;
1204 
1205 #ifndef __UBOOT__
1206 	cdns3_select_ep(priv_dev, priv_ep->endpoint.address);
1207 #else
1208 	cdns3_select_ep(priv_dev, priv_ep->endpoint.desc->bEndpointAddress);
1209 #endif
1210 
1211 	trace_cdns3_epx_irq(priv_dev, priv_ep);
1212 
1213 	ep_sts_reg = readl(&priv_dev->regs->ep_sts);
1214 	writel(ep_sts_reg, &priv_dev->regs->ep_sts);
1215 
1216 	if (ep_sts_reg & EP_STS_TRBERR) {
1217 		if (priv_ep->flags & EP_STALL_PENDING &&
1218 		    !(ep_sts_reg & EP_STS_DESCMIS &&
1219 		    priv_dev->dev_ver < DEV_VER_V2)) {
1220 			cdns3_ep_stall_flush(priv_ep);
1221 		}
1222 
1223 		/*
1224 		 * For isochronous transfer driver completes request on
1225 		 * IOC or on TRBERR. IOC appears only when device receive
1226 		 * OUT data packet. If host disable stream or lost some packet
1227 		 * then the only way to finish all queued transfer is to do it
1228 		 * on TRBERR event.
1229 		 */
1230 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC &&
1231 		    !priv_ep->wa1_set) {
1232 			if (!priv_ep->dir) {
1233 				u32 ep_cfg = readl(&priv_dev->regs->ep_cfg);
1234 
1235 				ep_cfg &= ~EP_CFG_ENABLE;
1236 				writel(ep_cfg, &priv_dev->regs->ep_cfg);
1237 				priv_ep->flags &= ~EP_QUIRK_ISO_OUT_EN;
1238 			}
1239 			cdns3_transfer_completed(priv_dev, priv_ep);
1240 		} else if (!(priv_ep->flags & EP_STALLED) &&
1241 			  !(priv_ep->flags & EP_STALL_PENDING)) {
1242 			if (priv_ep->flags & EP_DEFERRED_DRDY) {
1243 				priv_ep->flags &= ~EP_DEFERRED_DRDY;
1244 				cdns3_start_all_request(priv_dev, priv_ep);
1245 			} else {
1246 				cdns3_rearm_transfer(priv_ep,
1247 						     priv_ep->wa1_set);
1248 			}
1249 		}
1250 	}
1251 
1252 	if ((ep_sts_reg & EP_STS_IOC) || (ep_sts_reg & EP_STS_ISP)) {
1253 		if (priv_ep->flags & EP_QUIRK_EXTRA_BUF_EN) {
1254 			if (ep_sts_reg & EP_STS_ISP)
1255 				priv_ep->flags |= EP_QUIRK_END_TRANSFER;
1256 			else
1257 				priv_ep->flags &= ~EP_QUIRK_END_TRANSFER;
1258 		}
1259 
1260 		cdns3_transfer_completed(priv_dev, priv_ep);
1261 	}
1262 
1263 	/*
1264 	 * WA2: this condition should only be meet when
1265 	 * priv_ep->flags & EP_QUIRK_EXTRA_BUF_DET or
1266 	 * priv_ep->flags & EP_QUIRK_EXTRA_BUF_EN.
1267 	 * In other cases this interrupt will be disabled/
1268 	 */
1269 	if (ep_sts_reg & EP_STS_DESCMIS && priv_dev->dev_ver < DEV_VER_V2 &&
1270 	    !(priv_ep->flags & EP_STALLED))
1271 		cdns3_wa2_descmissing_packet(priv_ep);
1272 
1273 	return 0;
1274 }
1275 
cdns3_disconnect_gadget(struct cdns3_device * priv_dev)1276 static void cdns3_disconnect_gadget(struct cdns3_device *priv_dev)
1277 {
1278 	if (priv_dev->gadget_driver && priv_dev->gadget_driver->disconnect) {
1279 		spin_unlock(&priv_dev->lock);
1280 		priv_dev->gadget_driver->disconnect(&priv_dev->gadget);
1281 		spin_lock(&priv_dev->lock);
1282 	}
1283 }
1284 
1285 /**
1286  * cdns3_check_usb_interrupt_proceed - Processes interrupt related to device
1287  * @priv_dev: extended gadget object
1288  * @usb_ists: bitmap representation of device's reported interrupts
1289  * (usb_ists register value)
1290  */
cdns3_check_usb_interrupt_proceed(struct cdns3_device * priv_dev,u32 usb_ists)1291 static void cdns3_check_usb_interrupt_proceed(struct cdns3_device *priv_dev,
1292 					      u32 usb_ists)
1293 {
1294 	int speed = 0;
1295 
1296 	trace_cdns3_usb_irq(priv_dev, usb_ists);
1297 	if (usb_ists & USB_ISTS_L1ENTI) {
1298 		/*
1299 		 * WORKAROUND: CDNS3 controller has issue with hardware resuming
1300 		 * from L1. To fix it, if any DMA transfer is pending driver
1301 		 * must starts driving resume signal immediately.
1302 		 */
1303 		if (readl(&priv_dev->regs->drbl))
1304 			__cdns3_gadget_wakeup(priv_dev);
1305 	}
1306 
1307 	/* Connection detected */
1308 	if (usb_ists & (USB_ISTS_CON2I | USB_ISTS_CONI)) {
1309 		speed = cdns3_get_speed(priv_dev);
1310 		priv_dev->gadget.speed = speed;
1311 		usb_gadget_set_state(&priv_dev->gadget, USB_STATE_POWERED);
1312 		cdns3_ep0_config(priv_dev);
1313 	}
1314 
1315 	/* Disconnection detected */
1316 	if (usb_ists & (USB_ISTS_DIS2I | USB_ISTS_DISI)) {
1317 		cdns3_disconnect_gadget(priv_dev);
1318 		priv_dev->gadget.speed = USB_SPEED_UNKNOWN;
1319 		usb_gadget_set_state(&priv_dev->gadget, USB_STATE_NOTATTACHED);
1320 		cdns3_hw_reset_eps_config(priv_dev);
1321 	}
1322 
1323 	if (usb_ists & (USB_ISTS_L2ENTI | USB_ISTS_U3ENTI)) {
1324 		if (priv_dev->gadget_driver &&
1325 		    priv_dev->gadget_driver->suspend) {
1326 			spin_unlock(&priv_dev->lock);
1327 			priv_dev->gadget_driver->suspend(&priv_dev->gadget);
1328 			spin_lock(&priv_dev->lock);
1329 		}
1330 	}
1331 
1332 	if (usb_ists & (USB_ISTS_L2EXTI | USB_ISTS_U3EXTI)) {
1333 		if (priv_dev->gadget_driver &&
1334 		    priv_dev->gadget_driver->resume) {
1335 			spin_unlock(&priv_dev->lock);
1336 			priv_dev->gadget_driver->resume(&priv_dev->gadget);
1337 			spin_lock(&priv_dev->lock);
1338 		}
1339 	}
1340 
1341 	/* reset*/
1342 	if (usb_ists & (USB_ISTS_UWRESI | USB_ISTS_UHRESI | USB_ISTS_U2RESI)) {
1343 		if (priv_dev->gadget_driver) {
1344 			spin_unlock(&priv_dev->lock);
1345 			usb_gadget_udc_reset(&priv_dev->gadget,
1346 					     priv_dev->gadget_driver);
1347 			spin_lock(&priv_dev->lock);
1348 
1349 			/*read again to check the actual speed*/
1350 			speed = cdns3_get_speed(priv_dev);
1351 			priv_dev->gadget.speed = speed;
1352 			cdns3_hw_reset_eps_config(priv_dev);
1353 			cdns3_ep0_config(priv_dev);
1354 		}
1355 	}
1356 }
1357 
1358 /**
1359  * cdns3_device_irq_handler- interrupt handler for device part of controller
1360  *
1361  * @irq: irq number for cdns3 core device
1362  * @data: structure of cdns3
1363  *
1364  * Returns IRQ_HANDLED or IRQ_NONE
1365  */
cdns3_device_irq_handler(int irq,void * data)1366 static irqreturn_t cdns3_device_irq_handler(int irq, void *data)
1367 {
1368 	struct cdns3_device *priv_dev;
1369 	struct cdns3 *cdns = data;
1370 	irqreturn_t ret = IRQ_NONE;
1371 	u32 reg;
1372 
1373 	priv_dev = cdns->gadget_dev;
1374 
1375 	/* check USB device interrupt */
1376 	reg = readl(&priv_dev->regs->usb_ists);
1377 	if (reg) {
1378 		/* After masking interrupts the new interrupts won't be
1379 		 * reported in usb_ists/ep_ists. In order to not lose some
1380 		 * of them driver disables only detected interrupts.
1381 		 * They will be enabled ASAP after clearing source of
1382 		 * interrupt. This an unusual behavior only applies to
1383 		 * usb_ists register.
1384 		 */
1385 		reg = ~reg & readl(&priv_dev->regs->usb_ien);
1386 		/* mask deferred interrupt. */
1387 		writel(reg, &priv_dev->regs->usb_ien);
1388 		ret = IRQ_WAKE_THREAD;
1389 	}
1390 
1391 	/* check endpoint interrupt */
1392 	reg = readl(&priv_dev->regs->ep_ists);
1393 	if (reg) {
1394 		writel(0, &priv_dev->regs->ep_ien);
1395 		ret = IRQ_WAKE_THREAD;
1396 	}
1397 
1398 	return ret;
1399 }
1400 
1401 /**
1402  * cdns3_device_thread_irq_handler- interrupt handler for device part
1403  * of controller
1404  *
1405  * @irq: irq number for cdns3 core device
1406  * @data: structure of cdns3
1407  *
1408  * Returns IRQ_HANDLED or IRQ_NONE
1409  */
cdns3_device_thread_irq_handler(int irq,void * data)1410 static irqreturn_t cdns3_device_thread_irq_handler(int irq, void *data)
1411 {
1412 	struct cdns3_device *priv_dev;
1413 	struct cdns3 *cdns = data;
1414 	irqreturn_t ret = IRQ_NONE;
1415 	unsigned long flags;
1416 	int bit;
1417 	u32 reg;
1418 
1419 	priv_dev = cdns->gadget_dev;
1420 	spin_lock_irqsave(&priv_dev->lock, flags);
1421 
1422 	reg = readl(&priv_dev->regs->usb_ists);
1423 	if (reg) {
1424 		writel(reg, &priv_dev->regs->usb_ists);
1425 		writel(USB_IEN_INIT, &priv_dev->regs->usb_ien);
1426 		cdns3_check_usb_interrupt_proceed(priv_dev, reg);
1427 		ret = IRQ_HANDLED;
1428 	}
1429 
1430 	reg = readl(&priv_dev->regs->ep_ists);
1431 
1432 	/* handle default endpoint OUT */
1433 	if (reg & EP_ISTS_EP_OUT0) {
1434 		cdns3_check_ep0_interrupt_proceed(priv_dev, USB_DIR_OUT);
1435 		ret = IRQ_HANDLED;
1436 	}
1437 
1438 	/* handle default endpoint IN */
1439 	if (reg & EP_ISTS_EP_IN0) {
1440 		cdns3_check_ep0_interrupt_proceed(priv_dev, USB_DIR_IN);
1441 		ret = IRQ_HANDLED;
1442 	}
1443 
1444 	/* check if interrupt from non default endpoint, if no exit */
1445 	reg &= ~(EP_ISTS_EP_OUT0 | EP_ISTS_EP_IN0);
1446 	if (!reg)
1447 		goto irqend;
1448 
1449 	for_each_set_bit(bit, (unsigned long *)&reg,
1450 			 sizeof(u32) * BITS_PER_BYTE) {
1451 		cdns3_check_ep_interrupt_proceed(priv_dev->eps[bit]);
1452 		ret = IRQ_HANDLED;
1453 	}
1454 
1455 irqend:
1456 	writel(~0, &priv_dev->regs->ep_ien);
1457 	spin_unlock_irqrestore(&priv_dev->lock, flags);
1458 
1459 	return ret;
1460 }
1461 
1462 /**
1463  * cdns3_ep_onchip_buffer_reserve - Try to reserve onchip buf for EP
1464  *
1465  * The real reservation will occur during write to EP_CFG register,
1466  * this function is used to check if the 'size' reservation is allowed.
1467  *
1468  * @priv_dev: extended gadget object
1469  * @size: the size (KB) for EP would like to allocate
1470  * @is_in: endpoint direction
1471  *
1472  * Return 0 if the required size can met or negative value on failure
1473  */
cdns3_ep_onchip_buffer_reserve(struct cdns3_device * priv_dev,int size,int is_in)1474 static int cdns3_ep_onchip_buffer_reserve(struct cdns3_device *priv_dev,
1475 					  int size, int is_in)
1476 {
1477 	int remained;
1478 
1479 	/* 2KB are reserved for EP0*/
1480 	remained = priv_dev->onchip_buffers - priv_dev->onchip_used_size - 2;
1481 
1482 	if (is_in) {
1483 		if (remained < size)
1484 			return -EPERM;
1485 
1486 		priv_dev->onchip_used_size += size;
1487 	} else {
1488 		int required;
1489 
1490 		/**
1491 		 *  ALL OUT EPs are shared the same chunk onchip memory, so
1492 		 * driver checks if it already has assigned enough buffers
1493 		 */
1494 		if (priv_dev->out_mem_is_allocated >= size)
1495 			return 0;
1496 
1497 		required = size - priv_dev->out_mem_is_allocated;
1498 
1499 		if (required > remained)
1500 			return -EPERM;
1501 
1502 		priv_dev->out_mem_is_allocated += required;
1503 		priv_dev->onchip_used_size += required;
1504 	}
1505 
1506 	return 0;
1507 }
1508 
cdns3_configure_dmult(struct cdns3_device * priv_dev,struct cdns3_endpoint * priv_ep)1509 void cdns3_configure_dmult(struct cdns3_device *priv_dev,
1510 			   struct cdns3_endpoint *priv_ep)
1511 {
1512 	struct cdns3_usb_regs __iomem *regs = priv_dev->regs;
1513 
1514 	/* For dev_ver > DEV_VER_V2 DMULT is configured per endpoint */
1515 	if (priv_dev->dev_ver <= DEV_VER_V2)
1516 		writel(USB_CONF_DMULT, &regs->usb_conf);
1517 
1518 	if (priv_dev->dev_ver == DEV_VER_V2)
1519 		writel(USB_CONF2_EN_TDL_TRB, &regs->usb_conf2);
1520 
1521 	if (priv_dev->dev_ver >= DEV_VER_V3 && priv_ep) {
1522 		u32 mask;
1523 
1524 		if (priv_ep->dir)
1525 			mask = BIT(priv_ep->num + 16);
1526 		else
1527 			mask = BIT(priv_ep->num);
1528 
1529 		if (priv_ep->type != USB_ENDPOINT_XFER_ISOC) {
1530 			cdns3_set_register_bit(&regs->tdl_from_trb, mask);
1531 			cdns3_set_register_bit(&regs->tdl_beh, mask);
1532 			cdns3_set_register_bit(&regs->tdl_beh2, mask);
1533 			cdns3_set_register_bit(&regs->dma_adv_td, mask);
1534 		}
1535 
1536 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC && !priv_ep->dir)
1537 			cdns3_set_register_bit(&regs->tdl_from_trb, mask);
1538 
1539 		cdns3_set_register_bit(&regs->dtrans, mask);
1540 	}
1541 }
1542 
1543 /**
1544  * cdns3_ep_config Configure hardware endpoint
1545  * @priv_ep: extended endpoint object
1546  */
cdns3_ep_config(struct cdns3_endpoint * priv_ep)1547 void cdns3_ep_config(struct cdns3_endpoint *priv_ep)
1548 {
1549 	bool is_iso_ep = (priv_ep->type == USB_ENDPOINT_XFER_ISOC);
1550 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
1551 	u32 bEndpointAddress = priv_ep->num | priv_ep->dir;
1552 	u32 max_packet_size = 0;
1553 	u8 maxburst = 0;
1554 	u32 ep_cfg = 0;
1555 	u8 buffering;
1556 	u8 mult = 0;
1557 	int ret;
1558 
1559 	buffering = CDNS3_EP_BUF_SIZE - 1;
1560 
1561 	cdns3_configure_dmult(priv_dev, priv_ep);
1562 
1563 	switch (priv_ep->type) {
1564 	case USB_ENDPOINT_XFER_INT:
1565 		ep_cfg = EP_CFG_EPTYPE(USB_ENDPOINT_XFER_INT);
1566 
1567 		if ((priv_dev->dev_ver == DEV_VER_V2 && !priv_ep->dir) ||
1568 		    priv_dev->dev_ver > DEV_VER_V2)
1569 			ep_cfg |= EP_CFG_TDL_CHK;
1570 		break;
1571 	case USB_ENDPOINT_XFER_BULK:
1572 		ep_cfg = EP_CFG_EPTYPE(USB_ENDPOINT_XFER_BULK);
1573 
1574 		if ((priv_dev->dev_ver == DEV_VER_V2  && !priv_ep->dir) ||
1575 		    priv_dev->dev_ver > DEV_VER_V2)
1576 			ep_cfg |= EP_CFG_TDL_CHK;
1577 		break;
1578 	default:
1579 		ep_cfg = EP_CFG_EPTYPE(USB_ENDPOINT_XFER_ISOC);
1580 		mult = CDNS3_EP_ISO_HS_MULT - 1;
1581 		buffering = mult + 1;
1582 	}
1583 
1584 	switch (priv_dev->gadget.speed) {
1585 	case USB_SPEED_FULL:
1586 		max_packet_size = is_iso_ep ? 1023 : 64;
1587 		break;
1588 	case USB_SPEED_HIGH:
1589 		max_packet_size = is_iso_ep ? 1024 : 512;
1590 		break;
1591 	case USB_SPEED_SUPER:
1592 		/* It's limitation that driver assumes in driver. */
1593 		mult = 0;
1594 		max_packet_size = 1024;
1595 		if (priv_ep->type == USB_ENDPOINT_XFER_ISOC) {
1596 			maxburst = CDNS3_EP_ISO_SS_BURST - 1;
1597 			buffering = (mult + 1) *
1598 				    (maxburst + 1);
1599 
1600 			if (priv_ep->interval > 1)
1601 				buffering++;
1602 		} else {
1603 			maxburst = CDNS3_EP_BUF_SIZE - 1;
1604 		}
1605 		break;
1606 	default:
1607 		/* all other speed are not supported */
1608 		return;
1609 	}
1610 
1611 	if (max_packet_size == 1024)
1612 		priv_ep->trb_burst_size = 128;
1613 	else if (max_packet_size >= 512)
1614 		priv_ep->trb_burst_size = 64;
1615 	else
1616 		priv_ep->trb_burst_size = 16;
1617 
1618 	ret = cdns3_ep_onchip_buffer_reserve(priv_dev, buffering + 1,
1619 					     !!priv_ep->dir);
1620 	if (ret) {
1621 		dev_err(priv_dev->dev, "onchip mem is full, ep is invalid\n");
1622 		return;
1623 	}
1624 
1625 	ep_cfg |= EP_CFG_MAXPKTSIZE(max_packet_size) |
1626 		  EP_CFG_MULT(mult) |
1627 		  EP_CFG_BUFFERING(buffering) |
1628 		  EP_CFG_MAXBURST(maxburst);
1629 
1630 	cdns3_select_ep(priv_dev, bEndpointAddress);
1631 	writel(ep_cfg, &priv_dev->regs->ep_cfg);
1632 
1633 	dev_dbg(priv_dev->dev, "Configure %s: with val %08x\n",
1634 		priv_ep->name, ep_cfg);
1635 }
1636 
1637 /* Find correct direction for HW endpoint according to description */
cdns3_ep_dir_is_correct(struct usb_endpoint_descriptor * desc,struct cdns3_endpoint * priv_ep)1638 static int cdns3_ep_dir_is_correct(struct usb_endpoint_descriptor *desc,
1639 				   struct cdns3_endpoint *priv_ep)
1640 {
1641 	return (priv_ep->endpoint.caps.dir_in && usb_endpoint_dir_in(desc)) ||
1642 	       (priv_ep->endpoint.caps.dir_out && usb_endpoint_dir_out(desc));
1643 }
1644 
1645 static struct
cdns3_find_available_ep(struct cdns3_device * priv_dev,struct usb_endpoint_descriptor * desc)1646 cdns3_endpoint *cdns3_find_available_ep(struct cdns3_device *priv_dev,
1647 					struct usb_endpoint_descriptor *desc)
1648 {
1649 	struct usb_ep *ep;
1650 	struct cdns3_endpoint *priv_ep;
1651 
1652 	list_for_each_entry(ep, &priv_dev->gadget.ep_list, ep_list) {
1653 		unsigned long num;
1654 		/* ep name pattern likes epXin or epXout */
1655 		char c[2] = {ep->name[2], '\0'};
1656 
1657 		num = simple_strtoul(c, NULL, 10);
1658 
1659 		priv_ep = ep_to_cdns3_ep(ep);
1660 		if (cdns3_ep_dir_is_correct(desc, priv_ep)) {
1661 			if (!(priv_ep->flags & EP_CLAIMED)) {
1662 				priv_ep->num  = num;
1663 				return priv_ep;
1664 			}
1665 		}
1666 	}
1667 
1668 	return ERR_PTR(-ENOENT);
1669 }
1670 
1671 /*
1672  *  Cadence IP has one limitation that all endpoints must be configured
1673  * (Type & MaxPacketSize) before setting configuration through hardware
1674  * register, it means we can't change endpoints configuration after
1675  * set_configuration.
1676  *
1677  * This function set EP_CLAIMED flag which is added when the gadget driver
1678  * uses usb_ep_autoconfig to configure specific endpoint;
1679  * When the udc driver receives set_configurion request,
1680  * it goes through all claimed endpoints, and configure all endpoints
1681  * accordingly.
1682  *
1683  * At usb_ep_ops.enable/disable, we only enable and disable endpoint through
1684  * ep_cfg register which can be changed after set_configuration, and do
1685  * some software operation accordingly.
1686  */
1687 static struct
cdns3_gadget_match_ep(struct usb_gadget * gadget,struct usb_endpoint_descriptor * desc,struct usb_ss_ep_comp_descriptor * comp_desc)1688 usb_ep *cdns3_gadget_match_ep(struct usb_gadget *gadget,
1689 			      struct usb_endpoint_descriptor *desc,
1690 			      struct usb_ss_ep_comp_descriptor *comp_desc)
1691 {
1692 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
1693 	struct cdns3_endpoint *priv_ep;
1694 	unsigned long flags;
1695 
1696 	priv_ep = cdns3_find_available_ep(priv_dev, desc);
1697 	if (IS_ERR(priv_ep)) {
1698 		dev_err(priv_dev->dev, "no available ep\n");
1699 		return NULL;
1700 	}
1701 
1702 	dev_dbg(priv_dev->dev, "match endpoint: %s\n", priv_ep->name);
1703 
1704 	spin_lock_irqsave(&priv_dev->lock, flags);
1705 	priv_ep->endpoint.desc = desc;
1706 	priv_ep->dir  = usb_endpoint_dir_in(desc) ? USB_DIR_IN : USB_DIR_OUT;
1707 	priv_ep->type = usb_endpoint_type(desc);
1708 	priv_ep->flags |= EP_CLAIMED;
1709 	priv_ep->interval = desc->bInterval ? BIT(desc->bInterval - 1) : 0;
1710 
1711 	spin_unlock_irqrestore(&priv_dev->lock, flags);
1712 	return &priv_ep->endpoint;
1713 }
1714 
1715 /**
1716  * cdns3_gadget_ep_alloc_request Allocates request
1717  * @ep: endpoint object associated with request
1718  * @gfp_flags: gfp flags
1719  *
1720  * Returns allocated request address, NULL on allocation error
1721  */
cdns3_gadget_ep_alloc_request(struct usb_ep * ep,gfp_t gfp_flags)1722 struct usb_request *cdns3_gadget_ep_alloc_request(struct usb_ep *ep,
1723 						  gfp_t gfp_flags)
1724 {
1725 	struct cdns3_endpoint *priv_ep = ep_to_cdns3_ep(ep);
1726 	struct cdns3_request *priv_req;
1727 
1728 	priv_req = kzalloc(sizeof(*priv_req), gfp_flags);
1729 	if (!priv_req)
1730 		return NULL;
1731 
1732 	priv_req->priv_ep = priv_ep;
1733 
1734 	trace_cdns3_alloc_request(priv_req);
1735 	return &priv_req->request;
1736 }
1737 
1738 /**
1739  * cdns3_gadget_ep_free_request Free memory occupied by request
1740  * @ep: endpoint object associated with request
1741  * @request: request to free memory
1742  */
cdns3_gadget_ep_free_request(struct usb_ep * ep,struct usb_request * request)1743 void cdns3_gadget_ep_free_request(struct usb_ep *ep,
1744 				  struct usb_request *request)
1745 {
1746 	struct cdns3_request *priv_req = to_cdns3_request(request);
1747 
1748 	if (priv_req->aligned_buf)
1749 		priv_req->aligned_buf->in_use = 0;
1750 
1751 	trace_cdns3_free_request(priv_req);
1752 	kfree(priv_req);
1753 }
1754 
1755 /**
1756  * cdns3_gadget_ep_enable Enable endpoint
1757  * @ep: endpoint object
1758  * @desc: endpoint descriptor
1759  *
1760  * Returns 0 on success, error code elsewhere
1761  */
cdns3_gadget_ep_enable(struct usb_ep * ep,const struct usb_endpoint_descriptor * desc)1762 static int cdns3_gadget_ep_enable(struct usb_ep *ep,
1763 				  const struct usb_endpoint_descriptor *desc)
1764 {
1765 	struct cdns3_endpoint *priv_ep;
1766 	struct cdns3_device *priv_dev;
1767 	u32 reg = EP_STS_EN_TRBERREN;
1768 	u32 bEndpointAddress;
1769 	unsigned long flags;
1770 	int enable = 1;
1771 	int ret;
1772 	int val;
1773 
1774 	priv_ep = ep_to_cdns3_ep(ep);
1775 	priv_dev = priv_ep->cdns3_dev;
1776 
1777 	if (!ep || !desc || desc->bDescriptorType != USB_DT_ENDPOINT) {
1778 		dev_dbg(priv_dev->dev, "usbss: invalid parameters\n");
1779 		return -EINVAL;
1780 	}
1781 
1782 	if (!desc->wMaxPacketSize) {
1783 		dev_err(priv_dev->dev, "usbss: missing wMaxPacketSize\n");
1784 		return -EINVAL;
1785 	}
1786 
1787 	if (WARN_ON(priv_ep->flags & EP_ENABLED))
1788 		return 0;
1789 
1790 	spin_lock_irqsave(&priv_dev->lock, flags);
1791 
1792 	priv_ep->endpoint.desc = desc;
1793 	priv_ep->type = usb_endpoint_type(desc);
1794 	priv_ep->interval = desc->bInterval ? BIT(desc->bInterval - 1) : 0;
1795 
1796 	if (priv_ep->interval > ISO_MAX_INTERVAL &&
1797 	    priv_ep->type == USB_ENDPOINT_XFER_ISOC) {
1798 		dev_err(priv_dev->dev, "Driver is limited to %d period\n",
1799 			ISO_MAX_INTERVAL);
1800 
1801 		ret =  -EINVAL;
1802 		goto exit;
1803 	}
1804 
1805 	ret = cdns3_allocate_trb_pool(priv_ep);
1806 
1807 	if (ret)
1808 		goto exit;
1809 
1810 	bEndpointAddress = priv_ep->num | priv_ep->dir;
1811 	cdns3_select_ep(priv_dev, bEndpointAddress);
1812 
1813 	trace_cdns3_gadget_ep_enable(priv_ep);
1814 
1815 	writel(EP_CMD_EPRST, &priv_dev->regs->ep_cmd);
1816 
1817 	ret = readl_poll_timeout_atomic(&priv_dev->regs->ep_cmd, val,
1818 					!(val & (EP_CMD_CSTALL | EP_CMD_EPRST)),
1819 					1000);
1820 
1821 	if (unlikely(ret)) {
1822 		cdns3_free_trb_pool(priv_ep);
1823 		ret =  -EINVAL;
1824 		goto exit;
1825 	}
1826 
1827 	/* enable interrupt for selected endpoint */
1828 	cdns3_set_register_bit(&priv_dev->regs->ep_ien,
1829 			       BIT(cdns3_ep_addr_to_index(bEndpointAddress)));
1830 
1831 	if (priv_dev->dev_ver < DEV_VER_V2)
1832 		cdns3_wa2_enable_detection(priv_dev, priv_ep, reg);
1833 
1834 	writel(reg, &priv_dev->regs->ep_sts_en);
1835 
1836 	/*
1837 	 * For some versions of controller at some point during ISO OUT traffic
1838 	 * DMA reads Transfer Ring for the EP which has never got doorbell.
1839 	 * This issue was detected only on simulation, but to avoid this issue
1840 	 * driver add protection against it. To fix it driver enable ISO OUT
1841 	 * endpoint before setting DRBL. This special treatment of ISO OUT
1842 	 * endpoints are recommended by controller specification.
1843 	 */
1844 	if (priv_ep->type == USB_ENDPOINT_XFER_ISOC  && !priv_ep->dir)
1845 		enable = 0;
1846 
1847 	if (enable)
1848 		cdns3_set_register_bit(&priv_dev->regs->ep_cfg, EP_CFG_ENABLE);
1849 
1850 	ep->desc = desc;
1851 	priv_ep->flags &= ~(EP_PENDING_REQUEST | EP_STALLED | EP_STALL_PENDING |
1852 			    EP_QUIRK_ISO_OUT_EN | EP_QUIRK_EXTRA_BUF_EN);
1853 	priv_ep->flags |= EP_ENABLED | EP_UPDATE_EP_TRBADDR;
1854 	priv_ep->wa1_set = 0;
1855 	priv_ep->enqueue = 0;
1856 	priv_ep->dequeue = 0;
1857 	reg = readl(&priv_dev->regs->ep_sts);
1858 	priv_ep->pcs = !!EP_STS_CCS(reg);
1859 	priv_ep->ccs = !!EP_STS_CCS(reg);
1860 	/* one TRB is reserved for link TRB used in DMULT mode*/
1861 	priv_ep->free_trbs = priv_ep->num_trbs - 1;
1862 exit:
1863 	spin_unlock_irqrestore(&priv_dev->lock, flags);
1864 
1865 	return ret;
1866 }
1867 
1868 /**
1869  * cdns3_gadget_ep_disable Disable endpoint
1870  * @ep: endpoint object
1871  *
1872  * Returns 0 on success, error code elsewhere
1873  */
cdns3_gadget_ep_disable(struct usb_ep * ep)1874 static int cdns3_gadget_ep_disable(struct usb_ep *ep)
1875 {
1876 	struct cdns3_endpoint *priv_ep;
1877 	struct cdns3_request *priv_req;
1878 	struct cdns3_device *priv_dev;
1879 	struct usb_request *request;
1880 	unsigned long flags;
1881 	int ret = 0;
1882 	u32 ep_cfg;
1883 	int val;
1884 
1885 	if (!ep) {
1886 		pr_err("usbss: invalid parameters\n");
1887 		return -EINVAL;
1888 	}
1889 
1890 	priv_ep = ep_to_cdns3_ep(ep);
1891 	priv_dev = priv_ep->cdns3_dev;
1892 
1893 	if (WARN_ON(!(priv_ep->flags & EP_ENABLED)))
1894 		return 0;
1895 
1896 	spin_lock_irqsave(&priv_dev->lock, flags);
1897 
1898 	trace_cdns3_gadget_ep_disable(priv_ep);
1899 
1900 	cdns3_select_ep(priv_dev, ep->desc->bEndpointAddress);
1901 
1902 	ep_cfg = readl(&priv_dev->regs->ep_cfg);
1903 	ep_cfg &= ~EP_CFG_ENABLE;
1904 	writel(ep_cfg, &priv_dev->regs->ep_cfg);
1905 
1906 	/**
1907 	 * Driver needs some time before resetting endpoint.
1908 	 * It need waits for clearing DBUSY bit or for timeout expired.
1909 	 * 10us is enough time for controller to stop transfer.
1910 	 */
1911 	readl_poll_timeout_atomic(&priv_dev->regs->ep_sts, val,
1912 				  !(val & EP_STS_DBUSY), 10);
1913 	writel(EP_CMD_EPRST, &priv_dev->regs->ep_cmd);
1914 
1915 	readl_poll_timeout_atomic(&priv_dev->regs->ep_cmd, val,
1916 				  !(val & (EP_CMD_CSTALL | EP_CMD_EPRST)),
1917 				  1000);
1918 	if (unlikely(ret))
1919 		dev_err(priv_dev->dev, "Timeout: %s resetting failed.\n",
1920 			priv_ep->name);
1921 
1922 	while (!list_empty(&priv_ep->pending_req_list)) {
1923 		request = cdns3_next_request(&priv_ep->pending_req_list);
1924 
1925 		cdns3_gadget_giveback(priv_ep, to_cdns3_request(request),
1926 				      -ESHUTDOWN);
1927 	}
1928 
1929 	while (!list_empty(&priv_ep->wa2_descmiss_req_list)) {
1930 		priv_req = cdns3_next_priv_request(&priv_ep->wa2_descmiss_req_list);
1931 
1932 		kfree(priv_req->request.buf);
1933 		cdns3_gadget_ep_free_request(&priv_ep->endpoint,
1934 					     &priv_req->request);
1935 		list_del_init(&priv_req->list);
1936 		--priv_ep->wa2_counter;
1937 	}
1938 
1939 	while (!list_empty(&priv_ep->deferred_req_list)) {
1940 		request = cdns3_next_request(&priv_ep->deferred_req_list);
1941 
1942 		cdns3_gadget_giveback(priv_ep, to_cdns3_request(request),
1943 				      -ESHUTDOWN);
1944 	}
1945 
1946 	priv_ep->descmis_req = NULL;
1947 
1948 	ep->desc = NULL;
1949 	priv_ep->flags &= ~EP_ENABLED;
1950 
1951 	spin_unlock_irqrestore(&priv_dev->lock, flags);
1952 
1953 	return ret;
1954 }
1955 
1956 /**
1957  * cdns3_gadget_ep_queue Transfer data on endpoint
1958  * @ep: endpoint object
1959  * @request: request object
1960  * @gfp_flags: gfp flags
1961  *
1962  * Returns 0 on success, error code elsewhere
1963  */
__cdns3_gadget_ep_queue(struct usb_ep * ep,struct usb_request * request,gfp_t gfp_flags)1964 static int __cdns3_gadget_ep_queue(struct usb_ep *ep,
1965 				   struct usb_request *request,
1966 				   gfp_t gfp_flags)
1967 {
1968 	struct cdns3_endpoint *priv_ep = ep_to_cdns3_ep(ep);
1969 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
1970 	struct cdns3_request *priv_req;
1971 	int ret = 0;
1972 
1973 	request->actual = 0;
1974 	request->status = -EINPROGRESS;
1975 	priv_req = to_cdns3_request(request);
1976 	trace_cdns3_ep_queue(priv_req);
1977 
1978 	if (priv_dev->dev_ver < DEV_VER_V2) {
1979 		ret = cdns3_wa2_gadget_ep_queue(priv_dev, priv_ep,
1980 						priv_req);
1981 
1982 		if (ret == EINPROGRESS)
1983 			return 0;
1984 	}
1985 
1986 	ret = cdns3_prepare_aligned_request_buf(priv_req);
1987 	if (ret < 0)
1988 		return ret;
1989 
1990 	ret = usb_gadget_map_request(&priv_dev->gadget, request,
1991 				     usb_endpoint_dir_in(ep->desc));
1992 	if (ret)
1993 		return ret;
1994 
1995 	list_add_tail(&request->list, &priv_ep->deferred_req_list);
1996 
1997 	/*
1998 	 * If hardware endpoint configuration has not been set yet then
1999 	 * just queue request in deferred list. Transfer will be started in
2000 	 * cdns3_set_hw_configuration.
2001 	 */
2002 	if (priv_dev->hw_configured_flag && !(priv_ep->flags & EP_STALLED) &&
2003 	    !(priv_ep->flags & EP_STALL_PENDING))
2004 		cdns3_start_all_request(priv_dev, priv_ep);
2005 
2006 	return 0;
2007 }
2008 
cdns3_gadget_ep_queue(struct usb_ep * ep,struct usb_request * request,gfp_t gfp_flags)2009 static int cdns3_gadget_ep_queue(struct usb_ep *ep, struct usb_request *request,
2010 				 gfp_t gfp_flags)
2011 {
2012 	struct usb_request *zlp_request;
2013 	struct cdns3_endpoint *priv_ep;
2014 	struct cdns3_device *priv_dev;
2015 	unsigned long flags;
2016 	int ret;
2017 
2018 	if (!request || !ep)
2019 		return -EINVAL;
2020 
2021 	priv_ep = ep_to_cdns3_ep(ep);
2022 	priv_dev = priv_ep->cdns3_dev;
2023 
2024 	spin_lock_irqsave(&priv_dev->lock, flags);
2025 
2026 	ret = __cdns3_gadget_ep_queue(ep, request, gfp_flags);
2027 
2028 	if (ret == 0 && request->zero && request->length &&
2029 	    (request->length % ep->maxpacket == 0)) {
2030 		struct cdns3_request *priv_req;
2031 
2032 		zlp_request = cdns3_gadget_ep_alloc_request(ep, GFP_ATOMIC);
2033 		zlp_request->buf = priv_dev->zlp_buf;
2034 		zlp_request->length = 0;
2035 
2036 		priv_req = to_cdns3_request(zlp_request);
2037 		priv_req->flags |= REQUEST_ZLP;
2038 
2039 		dev_dbg(priv_dev->dev, "Queuing ZLP for endpoint: %s\n",
2040 			priv_ep->name);
2041 		ret = __cdns3_gadget_ep_queue(ep, zlp_request, gfp_flags);
2042 	}
2043 
2044 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2045 	return ret;
2046 }
2047 
2048 /**
2049  * cdns3_gadget_ep_dequeue Remove request from transfer queue
2050  * @ep: endpoint object associated with request
2051  * @request: request object
2052  *
2053  * Returns 0 on success, error code elsewhere
2054  */
cdns3_gadget_ep_dequeue(struct usb_ep * ep,struct usb_request * request)2055 int cdns3_gadget_ep_dequeue(struct usb_ep *ep,
2056 			    struct usb_request *request)
2057 {
2058 	struct cdns3_endpoint *priv_ep = ep_to_cdns3_ep(ep);
2059 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
2060 	struct usb_request *req, *req_temp;
2061 	struct cdns3_request *priv_req;
2062 	struct cdns3_trb *link_trb;
2063 	unsigned long flags;
2064 	int ret = 0;
2065 
2066 	if (!ep || !request || !ep->desc)
2067 		return -EINVAL;
2068 
2069 	spin_lock_irqsave(&priv_dev->lock, flags);
2070 
2071 	priv_req = to_cdns3_request(request);
2072 
2073 	trace_cdns3_ep_dequeue(priv_req);
2074 
2075 	cdns3_select_ep(priv_dev, ep->desc->bEndpointAddress);
2076 
2077 	list_for_each_entry_safe(req, req_temp, &priv_ep->pending_req_list,
2078 				 list) {
2079 		if (request == req)
2080 			goto found;
2081 	}
2082 
2083 	list_for_each_entry_safe(req, req_temp, &priv_ep->deferred_req_list,
2084 				 list) {
2085 		if (request == req)
2086 			goto found;
2087 	}
2088 
2089 	goto not_found;
2090 
2091 found:
2092 
2093 	if (priv_ep->wa1_trb == priv_req->trb)
2094 		cdns3_wa1_restore_cycle_bit(priv_ep);
2095 
2096 	link_trb = priv_req->trb;
2097 	cdns3_move_deq_to_next_trb(priv_req);
2098 	cdns3_gadget_giveback(priv_ep, priv_req, -ECONNRESET);
2099 
2100 	/* Update ring */
2101 	request = cdns3_next_request(&priv_ep->deferred_req_list);
2102 	if (request) {
2103 		priv_req = to_cdns3_request(request);
2104 
2105 		link_trb->buffer = TRB_BUFFER(priv_ep->trb_pool_dma +
2106 					      (priv_req->start_trb * TRB_SIZE));
2107 		link_trb->control = (link_trb->control & TRB_CYCLE) |
2108 				    TRB_TYPE(TRB_LINK) | TRB_CHAIN | TRB_TOGGLE;
2109 	} else {
2110 		priv_ep->flags |= EP_UPDATE_EP_TRBADDR;
2111 	}
2112 
2113 not_found:
2114 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2115 	return ret;
2116 }
2117 
2118 /**
2119  * __cdns3_gadget_ep_set_halt Sets stall on selected endpoint
2120  * Should be called after acquiring spin_lock and selecting ep
2121  * @ep: endpoint object to set stall on.
2122  */
__cdns3_gadget_ep_set_halt(struct cdns3_endpoint * priv_ep)2123 void __cdns3_gadget_ep_set_halt(struct cdns3_endpoint *priv_ep)
2124 {
2125 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
2126 
2127 	trace_cdns3_halt(priv_ep, 1, 0);
2128 
2129 	if (!(priv_ep->flags & EP_STALLED)) {
2130 		u32 ep_sts_reg = readl(&priv_dev->regs->ep_sts);
2131 
2132 		if (!(ep_sts_reg & EP_STS_DBUSY))
2133 			cdns3_ep_stall_flush(priv_ep);
2134 		else
2135 			priv_ep->flags |= EP_STALL_PENDING;
2136 	}
2137 }
2138 
2139 /**
2140  * __cdns3_gadget_ep_clear_halt Clears stall on selected endpoint
2141  * Should be called after acquiring spin_lock and selecting ep
2142  * @ep: endpoint object to clear stall on
2143  */
__cdns3_gadget_ep_clear_halt(struct cdns3_endpoint * priv_ep)2144 int __cdns3_gadget_ep_clear_halt(struct cdns3_endpoint *priv_ep)
2145 {
2146 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
2147 	struct usb_request *request;
2148 	int ret = 0;
2149 	int val;
2150 
2151 	trace_cdns3_halt(priv_ep, 0, 0);
2152 
2153 	writel(EP_CMD_CSTALL | EP_CMD_EPRST, &priv_dev->regs->ep_cmd);
2154 
2155 	/* wait for EPRST cleared */
2156 	readl_poll_timeout_atomic(&priv_dev->regs->ep_cmd, val,
2157 				  !(val & EP_CMD_EPRST), 100);
2158 	if (ret)
2159 		return -EINVAL;
2160 
2161 	priv_ep->flags &= ~(EP_STALLED | EP_STALL_PENDING);
2162 
2163 	request = cdns3_next_request(&priv_ep->pending_req_list);
2164 
2165 	if (request)
2166 		cdns3_rearm_transfer(priv_ep, 1);
2167 
2168 	cdns3_start_all_request(priv_dev, priv_ep);
2169 	return ret;
2170 }
2171 
2172 /**
2173  * cdns3_gadget_ep_set_halt Sets/clears stall on selected endpoint
2174  * @ep: endpoint object to set/clear stall on
2175  * @value: 1 for set stall, 0 for clear stall
2176  *
2177  * Returns 0 on success, error code elsewhere
2178  */
cdns3_gadget_ep_set_halt(struct usb_ep * ep,int value)2179 int cdns3_gadget_ep_set_halt(struct usb_ep *ep, int value)
2180 {
2181 	struct cdns3_endpoint *priv_ep = ep_to_cdns3_ep(ep);
2182 	struct cdns3_device *priv_dev = priv_ep->cdns3_dev;
2183 	unsigned long flags;
2184 	int ret = 0;
2185 
2186 	if (!(priv_ep->flags & EP_ENABLED))
2187 		return -EPERM;
2188 
2189 	spin_lock_irqsave(&priv_dev->lock, flags);
2190 
2191 	cdns3_select_ep(priv_dev, ep->desc->bEndpointAddress);
2192 
2193 	if (!value) {
2194 		priv_ep->flags &= ~EP_WEDGE;
2195 		ret = __cdns3_gadget_ep_clear_halt(priv_ep);
2196 	} else {
2197 		__cdns3_gadget_ep_set_halt(priv_ep);
2198 	}
2199 
2200 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2201 
2202 	return ret;
2203 }
2204 
2205 extern const struct usb_ep_ops cdns3_gadget_ep0_ops;
2206 
2207 static const struct usb_ep_ops cdns3_gadget_ep_ops = {
2208 	.enable = cdns3_gadget_ep_enable,
2209 	.disable = cdns3_gadget_ep_disable,
2210 	.alloc_request = cdns3_gadget_ep_alloc_request,
2211 	.free_request = cdns3_gadget_ep_free_request,
2212 	.queue = cdns3_gadget_ep_queue,
2213 	.dequeue = cdns3_gadget_ep_dequeue,
2214 	.set_halt = cdns3_gadget_ep_set_halt,
2215 	.set_wedge = cdns3_gadget_ep_set_wedge,
2216 };
2217 
2218 /**
2219  * cdns3_gadget_get_frame Returns number of actual ITP frame
2220  * @gadget: gadget object
2221  *
2222  * Returns number of actual ITP frame
2223  */
cdns3_gadget_get_frame(struct usb_gadget * gadget)2224 static int cdns3_gadget_get_frame(struct usb_gadget *gadget)
2225 {
2226 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2227 
2228 	return readl(&priv_dev->regs->usb_itpn);
2229 }
2230 
__cdns3_gadget_wakeup(struct cdns3_device * priv_dev)2231 int __cdns3_gadget_wakeup(struct cdns3_device *priv_dev)
2232 {
2233 	enum usb_device_speed speed;
2234 
2235 	speed = cdns3_get_speed(priv_dev);
2236 
2237 	if (speed >= USB_SPEED_SUPER)
2238 		return 0;
2239 
2240 	/* Start driving resume signaling to indicate remote wakeup. */
2241 	writel(USB_CONF_LGO_L0, &priv_dev->regs->usb_conf);
2242 
2243 	return 0;
2244 }
2245 
cdns3_gadget_wakeup(struct usb_gadget * gadget)2246 static int cdns3_gadget_wakeup(struct usb_gadget *gadget)
2247 {
2248 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2249 	unsigned long flags;
2250 	int ret = 0;
2251 
2252 	spin_lock_irqsave(&priv_dev->lock, flags);
2253 	ret = __cdns3_gadget_wakeup(priv_dev);
2254 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2255 	return ret;
2256 }
2257 
cdns3_gadget_set_selfpowered(struct usb_gadget * gadget,int is_selfpowered)2258 static int cdns3_gadget_set_selfpowered(struct usb_gadget *gadget,
2259 					int is_selfpowered)
2260 {
2261 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2262 	unsigned long flags;
2263 
2264 	spin_lock_irqsave(&priv_dev->lock, flags);
2265 	priv_dev->is_selfpowered = !!is_selfpowered;
2266 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2267 	return 0;
2268 }
2269 
cdns3_gadget_pullup(struct usb_gadget * gadget,int is_on)2270 static int cdns3_gadget_pullup(struct usb_gadget *gadget, int is_on)
2271 {
2272 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2273 
2274 	if (is_on)
2275 		writel(USB_CONF_DEVEN, &priv_dev->regs->usb_conf);
2276 	else
2277 		writel(USB_CONF_DEVDS, &priv_dev->regs->usb_conf);
2278 
2279 	return 0;
2280 }
2281 
cdns3_gadget_config(struct cdns3_device * priv_dev)2282 static void cdns3_gadget_config(struct cdns3_device *priv_dev)
2283 {
2284 	struct cdns3_usb_regs __iomem *regs = priv_dev->regs;
2285 	u32 reg;
2286 
2287 	cdns3_ep0_config(priv_dev);
2288 
2289 	/* enable interrupts for endpoint 0 (in and out) */
2290 	writel(EP_IEN_EP_OUT0 | EP_IEN_EP_IN0, &regs->ep_ien);
2291 
2292 	/*
2293 	 * Driver needs to modify LFPS minimal U1 Exit time for DEV_VER_TI_V1
2294 	 * revision of controller.
2295 	 */
2296 	if (priv_dev->dev_ver == DEV_VER_TI_V1) {
2297 		reg = readl(&regs->dbg_link1);
2298 
2299 		reg &= ~DBG_LINK1_LFPS_MIN_GEN_U1_EXIT_MASK;
2300 		reg |= DBG_LINK1_LFPS_MIN_GEN_U1_EXIT(0x55) |
2301 		       DBG_LINK1_LFPS_MIN_GEN_U1_EXIT_SET;
2302 		writel(reg, &regs->dbg_link1);
2303 	}
2304 
2305 	/*
2306 	 * By default some platforms has set protected access to memory.
2307 	 * This cause problem with cache, so driver restore non-secure
2308 	 * access to memory.
2309 	 */
2310 	reg = readl(&regs->dma_axi_ctrl);
2311 	reg |= DMA_AXI_CTRL_MARPROT(DMA_AXI_CTRL_NON_SECURE) |
2312 	       DMA_AXI_CTRL_MAWPROT(DMA_AXI_CTRL_NON_SECURE);
2313 	writel(reg, &regs->dma_axi_ctrl);
2314 
2315 	/* enable generic interrupt*/
2316 	writel(USB_IEN_INIT, &regs->usb_ien);
2317 	writel(USB_CONF_CLK2OFFDS | USB_CONF_L1DS, &regs->usb_conf);
2318 
2319 	cdns3_configure_dmult(priv_dev, NULL);
2320 
2321 	cdns3_gadget_pullup(&priv_dev->gadget, 1);
2322 }
2323 
2324 /**
2325  * cdns3_gadget_udc_start Gadget start
2326  * @gadget: gadget object
2327  * @driver: driver which operates on this gadget
2328  *
2329  * Returns 0 on success, error code elsewhere
2330  */
cdns3_gadget_udc_start(struct usb_gadget * gadget,struct usb_gadget_driver * driver)2331 static int cdns3_gadget_udc_start(struct usb_gadget *gadget,
2332 				  struct usb_gadget_driver *driver)
2333 {
2334 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2335 	unsigned long flags;
2336 
2337 	spin_lock_irqsave(&priv_dev->lock, flags);
2338 	priv_dev->gadget_driver = driver;
2339 	cdns3_gadget_config(priv_dev);
2340 	spin_unlock_irqrestore(&priv_dev->lock, flags);
2341 	return 0;
2342 }
2343 
2344 /**
2345  * cdns3_gadget_udc_stop Stops gadget
2346  * @gadget: gadget object
2347  *
2348  * Returns 0
2349  */
cdns3_gadget_udc_stop(struct usb_gadget * gadget)2350 static int cdns3_gadget_udc_stop(struct usb_gadget *gadget)
2351 {
2352 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2353 	struct cdns3_endpoint *priv_ep;
2354 	u32 bEndpointAddress;
2355 	struct usb_ep *ep;
2356 	int ret = 0;
2357 	int val;
2358 
2359 	priv_dev->gadget_driver = NULL;
2360 
2361 	priv_dev->onchip_used_size = 0;
2362 	priv_dev->out_mem_is_allocated = 0;
2363 	priv_dev->gadget.speed = USB_SPEED_UNKNOWN;
2364 
2365 	list_for_each_entry(ep, &priv_dev->gadget.ep_list, ep_list) {
2366 		priv_ep = ep_to_cdns3_ep(ep);
2367 		bEndpointAddress = priv_ep->num | priv_ep->dir;
2368 		cdns3_select_ep(priv_dev, bEndpointAddress);
2369 		writel(EP_CMD_EPRST, &priv_dev->regs->ep_cmd);
2370 		readl_poll_timeout_atomic(&priv_dev->regs->ep_cmd, val,
2371 					  !(val & EP_CMD_EPRST), 100);
2372 	}
2373 
2374 	/* disable interrupt for device */
2375 	writel(0, &priv_dev->regs->usb_ien);
2376 	writel(USB_CONF_DEVDS, &priv_dev->regs->usb_conf);
2377 
2378 	return ret;
2379 }
2380 
cdns3_gadget_udc_set_speed(struct usb_gadget * gadget,enum usb_device_speed speed)2381 static void cdns3_gadget_udc_set_speed(struct usb_gadget *gadget,
2382 				       enum usb_device_speed speed)
2383 {
2384 	struct cdns3_device *priv_dev = gadget_to_cdns3_device(gadget);
2385 
2386 	switch (speed) {
2387 	case USB_SPEED_FULL:
2388 		writel(USB_CONF_SFORCE_FS, &priv_dev->regs->usb_conf);
2389 		writel(USB_CONF_USB3DIS, &priv_dev->regs->usb_conf);
2390 		break;
2391 	case USB_SPEED_HIGH:
2392 		writel(USB_CONF_USB3DIS, &priv_dev->regs->usb_conf);
2393 		break;
2394 	case USB_SPEED_SUPER:
2395 		break;
2396 	default:
2397 		dev_err(cdns->dev, "invalid speed parameter %d\n",
2398 			speed);
2399 	}
2400 
2401 	priv_dev->gadget.speed = speed;
2402 }
2403 
2404 static const struct usb_gadget_ops cdns3_gadget_ops = {
2405 	.get_frame = cdns3_gadget_get_frame,
2406 	.wakeup = cdns3_gadget_wakeup,
2407 	.set_selfpowered = cdns3_gadget_set_selfpowered,
2408 	.pullup = cdns3_gadget_pullup,
2409 	.udc_start = cdns3_gadget_udc_start,
2410 	.udc_stop = cdns3_gadget_udc_stop,
2411 	.match_ep = cdns3_gadget_match_ep,
2412 	.udc_set_speed = cdns3_gadget_udc_set_speed,
2413 };
2414 
cdns3_free_all_eps(struct cdns3_device * priv_dev)2415 static void cdns3_free_all_eps(struct cdns3_device *priv_dev)
2416 {
2417 	int i;
2418 
2419 	/* ep0 OUT point to ep0 IN. */
2420 	priv_dev->eps[16] = NULL;
2421 
2422 	for (i = 0; i < CDNS3_ENDPOINTS_MAX_COUNT; i++)
2423 		if (priv_dev->eps[i]) {
2424 			cdns3_free_trb_pool(priv_dev->eps[i]);
2425 			devm_kfree(priv_dev->dev, priv_dev->eps[i]);
2426 		}
2427 }
2428 
2429 /**
2430  * cdns3_init_eps Initializes software endpoints of gadget
2431  * @cdns3: extended gadget object
2432  *
2433  * Returns 0 on success, error code elsewhere
2434  */
cdns3_init_eps(struct cdns3_device * priv_dev)2435 static int cdns3_init_eps(struct cdns3_device *priv_dev)
2436 {
2437 	u32 ep_enabled_reg, iso_ep_reg;
2438 	struct cdns3_endpoint *priv_ep;
2439 	int ep_dir, ep_number;
2440 	u32 ep_mask;
2441 	int ret = 0;
2442 	int i;
2443 
2444 	/* Read it from USB_CAP3 to USB_CAP5 */
2445 	ep_enabled_reg = readl(&priv_dev->regs->usb_cap3);
2446 	iso_ep_reg = readl(&priv_dev->regs->usb_cap4);
2447 
2448 	dev_dbg(priv_dev->dev, "Initializing non-zero endpoints\n");
2449 
2450 	for (i = 0; i < CDNS3_ENDPOINTS_MAX_COUNT; i++) {
2451 		ep_dir = i >> 4;	/* i div 16 */
2452 		ep_number = i & 0xF;	/* i % 16 */
2453 		ep_mask = BIT(i);
2454 
2455 		if (!(ep_enabled_reg & ep_mask))
2456 			continue;
2457 
2458 		if (ep_dir && !ep_number) {
2459 			priv_dev->eps[i] = priv_dev->eps[0];
2460 			continue;
2461 		}
2462 
2463 		priv_ep = devm_kzalloc(priv_dev->dev, sizeof(*priv_ep),
2464 				       GFP_KERNEL);
2465 		if (!priv_ep) {
2466 			ret = -ENOMEM;
2467 			goto err;
2468 		}
2469 
2470 		/* set parent of endpoint object */
2471 		priv_ep->cdns3_dev = priv_dev;
2472 		priv_dev->eps[i] = priv_ep;
2473 		priv_ep->num = ep_number;
2474 		priv_ep->dir = ep_dir ? USB_DIR_IN : USB_DIR_OUT;
2475 
2476 		if (!ep_number) {
2477 			ret = cdns3_init_ep0(priv_dev, priv_ep);
2478 			if (ret) {
2479 				dev_err(priv_dev->dev, "Failed to init ep0\n");
2480 				goto err;
2481 			}
2482 		} else {
2483 			snprintf(priv_ep->name, sizeof(priv_ep->name), "ep%d%s",
2484 				 ep_number, !!ep_dir ? "in" : "out");
2485 			priv_ep->endpoint.name = priv_ep->name;
2486 
2487 			usb_ep_set_maxpacket_limit(&priv_ep->endpoint,
2488 						   CDNS3_EP_MAX_PACKET_LIMIT);
2489 			priv_ep->endpoint.max_streams = CDNS3_EP_MAX_STREAMS;
2490 			priv_ep->endpoint.ops = &cdns3_gadget_ep_ops;
2491 			if (ep_dir)
2492 				priv_ep->endpoint.caps.dir_in = 1;
2493 			else
2494 				priv_ep->endpoint.caps.dir_out = 1;
2495 
2496 			if (iso_ep_reg & ep_mask)
2497 				priv_ep->endpoint.caps.type_iso = 1;
2498 
2499 			priv_ep->endpoint.caps.type_bulk = 1;
2500 			priv_ep->endpoint.caps.type_int = 1;
2501 
2502 			list_add_tail(&priv_ep->endpoint.ep_list,
2503 				      &priv_dev->gadget.ep_list);
2504 		}
2505 
2506 		priv_ep->flags = 0;
2507 
2508 		dev_info(priv_dev->dev, "Initialized  %s support: %s %s\n",
2509 			 priv_ep->name,
2510 			 priv_ep->endpoint.caps.type_bulk ? "BULK, INT" : "",
2511 			 priv_ep->endpoint.caps.type_iso ? "ISO" : "");
2512 
2513 		INIT_LIST_HEAD(&priv_ep->pending_req_list);
2514 		INIT_LIST_HEAD(&priv_ep->deferred_req_list);
2515 		INIT_LIST_HEAD(&priv_ep->wa2_descmiss_req_list);
2516 	}
2517 
2518 	return 0;
2519 err:
2520 	cdns3_free_all_eps(priv_dev);
2521 	return -ENOMEM;
2522 }
2523 
cdns3_gadget_exit(struct cdns3 * cdns)2524 void cdns3_gadget_exit(struct cdns3 *cdns)
2525 {
2526 	struct cdns3_device *priv_dev;
2527 
2528 	priv_dev = cdns->gadget_dev;
2529 
2530 	usb_del_gadget_udc(&priv_dev->gadget);
2531 
2532 	cdns3_free_all_eps(priv_dev);
2533 
2534 	while (!list_empty(&priv_dev->aligned_buf_list)) {
2535 		struct cdns3_aligned_buf *buf;
2536 
2537 		buf = cdns3_next_align_buf(&priv_dev->aligned_buf_list);
2538 		dma_free_coherent(buf->buf);
2539 
2540 		list_del(&buf->list);
2541 		kfree(buf);
2542 	}
2543 
2544 	dma_free_coherent(priv_dev->setup_buf);
2545 
2546 	kfree(priv_dev->zlp_buf);
2547 	kfree(priv_dev);
2548 	cdns->gadget_dev = NULL;
2549 	cdns3_drd_switch_gadget(cdns, 0);
2550 }
2551 
cdns3_gadget_start(struct cdns3 * cdns)2552 static int cdns3_gadget_start(struct cdns3 *cdns)
2553 {
2554 	struct cdns3_device *priv_dev;
2555 	u32 max_speed;
2556 	int ret;
2557 
2558 	priv_dev = kzalloc(sizeof(*priv_dev), GFP_KERNEL);
2559 	if (!priv_dev)
2560 		return -ENOMEM;
2561 
2562 	cdns->gadget_dev = priv_dev;
2563 	priv_dev->sysdev = cdns->dev;
2564 	priv_dev->dev = cdns->dev;
2565 	priv_dev->regs = cdns->dev_regs;
2566 
2567 	dev_read_u32(priv_dev->dev, "cdns,on-chip-buff-size",
2568 		     &priv_dev->onchip_buffers);
2569 
2570 	if (priv_dev->onchip_buffers <=  0) {
2571 		u32 reg = readl(&priv_dev->regs->usb_cap2);
2572 
2573 		priv_dev->onchip_buffers = USB_CAP2_ACTUAL_MEM_SIZE(reg);
2574 	}
2575 
2576 	if (!priv_dev->onchip_buffers)
2577 		priv_dev->onchip_buffers = 256;
2578 
2579 	max_speed = usb_get_maximum_speed(dev_ofnode(cdns->dev));
2580 
2581 	/* Check the maximum_speed parameter */
2582 	switch (max_speed) {
2583 	case USB_SPEED_FULL:
2584 		/* fall through */
2585 	case USB_SPEED_HIGH:
2586 		/* fall through */
2587 	case USB_SPEED_SUPER:
2588 		break;
2589 	default:
2590 		dev_err(cdns->dev, "invalid maximum_speed parameter %d\n",
2591 			max_speed);
2592 		/* fall through */
2593 	case USB_SPEED_UNKNOWN:
2594 		/* default to superspeed */
2595 		max_speed = USB_SPEED_SUPER;
2596 		break;
2597 	}
2598 
2599 	/* fill gadget fields */
2600 	priv_dev->gadget.max_speed = max_speed;
2601 	priv_dev->gadget.speed = USB_SPEED_UNKNOWN;
2602 	priv_dev->gadget.ops = &cdns3_gadget_ops;
2603 	priv_dev->gadget.name = "cdns3-gadget";
2604 #ifndef __UBOOT__
2605 	priv_dev->gadget.name = "usb-ss-gadget";
2606 	priv_dev->gadget.sg_supported = 1;
2607 	priv_dev->gadget.quirk_avoids_skb_reserve = 1;
2608 #endif
2609 
2610 	spin_lock_init(&priv_dev->lock);
2611 	INIT_WORK(&priv_dev->pending_status_wq,
2612 		  cdns3_pending_setup_status_handler);
2613 
2614 	/* initialize endpoint container */
2615 	INIT_LIST_HEAD(&priv_dev->gadget.ep_list);
2616 	INIT_LIST_HEAD(&priv_dev->aligned_buf_list);
2617 
2618 	ret = cdns3_init_eps(priv_dev);
2619 	if (ret) {
2620 		dev_err(priv_dev->dev, "Failed to create endpoints\n");
2621 		goto err1;
2622 	}
2623 
2624 	/* allocate memory for setup packet buffer */
2625 	priv_dev->setup_buf =
2626 		dma_alloc_coherent(8, (unsigned long *)&priv_dev->setup_dma);
2627 	if (!priv_dev->setup_buf) {
2628 		ret = -ENOMEM;
2629 		goto err2;
2630 	}
2631 
2632 	priv_dev->dev_ver = readl(&priv_dev->regs->usb_cap6);
2633 
2634 	dev_dbg(priv_dev->dev, "Device Controller version: %08x\n",
2635 		readl(&priv_dev->regs->usb_cap6));
2636 	dev_dbg(priv_dev->dev, "USB Capabilities:: %08x\n",
2637 		readl(&priv_dev->regs->usb_cap1));
2638 	dev_dbg(priv_dev->dev, "On-Chip memory cnfiguration: %08x\n",
2639 		readl(&priv_dev->regs->usb_cap2));
2640 
2641 	priv_dev->dev_ver = GET_DEV_BASE_VERSION(priv_dev->dev_ver);
2642 
2643 	priv_dev->zlp_buf = kzalloc(CDNS3_EP_ZLP_BUF_SIZE, GFP_KERNEL);
2644 	if (!priv_dev->zlp_buf) {
2645 		ret = -ENOMEM;
2646 		goto err3;
2647 	}
2648 
2649 	/* add USB gadget device */
2650 	ret = usb_add_gadget_udc((struct device *)priv_dev->dev,
2651 				 &priv_dev->gadget);
2652 	if (ret < 0) {
2653 		dev_err(priv_dev->dev,
2654 			"Failed to register USB device controller\n");
2655 		goto err4;
2656 	}
2657 
2658 	return 0;
2659 err4:
2660 	kfree(priv_dev->zlp_buf);
2661 err3:
2662 	dma_free_coherent(priv_dev->setup_buf);
2663 err2:
2664 	cdns3_free_all_eps(priv_dev);
2665 err1:
2666 	cdns->gadget_dev = NULL;
2667 	return ret;
2668 }
2669 
__cdns3_gadget_init(struct cdns3 * cdns)2670 static int __cdns3_gadget_init(struct cdns3 *cdns)
2671 {
2672 	int ret = 0;
2673 
2674 	cdns3_drd_switch_gadget(cdns, 1);
2675 
2676 	ret = cdns3_gadget_start(cdns);
2677 	if (ret)
2678 		return ret;
2679 
2680 	return 0;
2681 }
2682 
cdns3_gadget_suspend(struct cdns3 * cdns,bool do_wakeup)2683 static int cdns3_gadget_suspend(struct cdns3 *cdns, bool do_wakeup)
2684 {
2685 	struct cdns3_device *priv_dev = cdns->gadget_dev;
2686 
2687 	cdns3_disconnect_gadget(priv_dev);
2688 
2689 	priv_dev->gadget.speed = USB_SPEED_UNKNOWN;
2690 	usb_gadget_set_state(&priv_dev->gadget, USB_STATE_NOTATTACHED);
2691 	cdns3_hw_reset_eps_config(priv_dev);
2692 
2693 	/* disable interrupt for device */
2694 	writel(0, &priv_dev->regs->usb_ien);
2695 
2696 	cdns3_gadget_pullup(&priv_dev->gadget, 0);
2697 
2698 	return 0;
2699 }
2700 
cdns3_gadget_resume(struct cdns3 * cdns,bool hibernated)2701 static int cdns3_gadget_resume(struct cdns3 *cdns, bool hibernated)
2702 {
2703 	struct cdns3_device *priv_dev = cdns->gadget_dev;
2704 
2705 	if (!priv_dev->gadget_driver)
2706 		return 0;
2707 
2708 	cdns3_gadget_config(priv_dev);
2709 
2710 	return 0;
2711 }
2712 
2713 /**
2714  * cdns3_gadget_init - initialize device structure
2715  *
2716  * cdns: cdns3 instance
2717  *
2718  * This function initializes the gadget.
2719  */
cdns3_gadget_init(struct cdns3 * cdns)2720 int cdns3_gadget_init(struct cdns3 *cdns)
2721 {
2722 	struct cdns3_role_driver *rdrv;
2723 
2724 	rdrv = devm_kzalloc(cdns->dev, sizeof(*rdrv), GFP_KERNEL);
2725 	if (!rdrv)
2726 		return -ENOMEM;
2727 
2728 	rdrv->start	= __cdns3_gadget_init;
2729 	rdrv->stop	= cdns3_gadget_exit;
2730 	rdrv->suspend	= cdns3_gadget_suspend;
2731 	rdrv->resume	= cdns3_gadget_resume;
2732 	rdrv->state	= CDNS3_ROLE_STATE_INACTIVE;
2733 	rdrv->name	= "gadget";
2734 	cdns->roles[USB_ROLE_DEVICE] = rdrv;
2735 
2736 	return 0;
2737 }
2738 
2739 /**
2740  * cdns3_gadget_uboot_handle_interrupt - handle cdns3 gadget interrupt
2741  * @cdns: pointer to struct cdns3
2742  *
2743  * Handles ep0 and gadget interrupt
2744  */
cdns3_gadget_uboot_handle_interrupt(struct cdns3 * cdns)2745 static void cdns3_gadget_uboot_handle_interrupt(struct cdns3 *cdns)
2746 {
2747 	int ret = cdns3_device_irq_handler(0, cdns);
2748 
2749 	if (ret == IRQ_WAKE_THREAD)
2750 		cdns3_device_thread_irq_handler(0, cdns);
2751 }
2752 
dm_usb_gadget_handle_interrupts(struct udevice * dev)2753 int dm_usb_gadget_handle_interrupts(struct udevice *dev)
2754 {
2755 	struct cdns3 *cdns = dev_get_priv(dev);
2756 
2757 	cdns3_gadget_uboot_handle_interrupt(cdns);
2758 
2759 	return 0;
2760 }
2761