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1// SPDX-License-Identifier: GPL-2.0
2/*
3 * ep0.c - DesignWare USB3 DRD Controller Endpoint 0 Handling
4 *
5 * Copyright (C) 2010-2011 Texas Instruments Incorporated - http://www.ti.com
6 *
7 * Authors: Felipe Balbi <balbi@ti.com>,
8 * Sebastian Andrzej Siewior <bigeasy@linutronix.de>
9 */
10
11#include <linux/kernel.h>
12#include <linux/slab.h>
13#include <linux/spinlock.h>
14#include <linux/platform_device.h>
15#include <linux/pm_runtime.h>
16#include <linux/interrupt.h>
17#include <linux/io.h>
18#include <linux/list.h>
19#include <linux/dma-mapping.h>
20
21#include <linux/usb/ch9.h>
22#include <linux/usb/gadget.h>
23#include <linux/usb/composite.h>
24
25#include "core.h"
26#include "debug.h"
27#include "gadget.h"
28#include "io.h"
29
30static void __dwc3_ep0_do_control_status(struct dwc3 *dwc, struct dwc3_ep *dep);
31static void __dwc3_ep0_do_control_data(struct dwc3 *dwc,
32 struct dwc3_ep *dep, struct dwc3_request *req);
33
34static void dwc3_ep0_prepare_one_trb(struct dwc3_ep *dep,
35 dma_addr_t buf_dma, u32 len, u32 type, bool chain)
36{
37 struct dwc3_trb *trb;
38 struct dwc3 *dwc;
39
40 dwc = dep->dwc;
41 trb = &dwc->ep0_trb[dep->trb_enqueue];
42
43 if (chain)
44 dep->trb_enqueue++;
45
46 trb->bpl = lower_32_bits(buf_dma);
47 trb->bph = upper_32_bits(buf_dma);
48 trb->size = len;
49 trb->ctrl = type;
50
51 trb->ctrl |= (DWC3_TRB_CTRL_HWO
52 | DWC3_TRB_CTRL_ISP_IMI);
53
54 if (chain)
55 trb->ctrl |= DWC3_TRB_CTRL_CHN;
56 else
57 trb->ctrl |= (DWC3_TRB_CTRL_IOC
58 | DWC3_TRB_CTRL_LST);
59
60 trace_dwc3_prepare_trb(dep, trb);
61}
62
63static int dwc3_ep0_start_trans(struct dwc3_ep *dep)
64{
65 struct dwc3_gadget_ep_cmd_params params;
66 struct dwc3 *dwc;
67 int ret;
68
69 if (dep->flags & DWC3_EP_BUSY)
70 return 0;
71
72 dwc = dep->dwc;
73
74 memset(¶ms, 0, sizeof(params));
75 params.param0 = upper_32_bits(dwc->ep0_trb_addr);
76 params.param1 = lower_32_bits(dwc->ep0_trb_addr);
77
78 ret = dwc3_send_gadget_ep_cmd(dep, DWC3_DEPCMD_STARTTRANSFER, ¶ms);
79 if (ret < 0)
80 return ret;
81
82 dep->flags |= DWC3_EP_BUSY;
83 dep->resource_index = dwc3_gadget_ep_get_transfer_index(dep);
84 dwc->ep0_next_event = DWC3_EP0_COMPLETE;
85
86 return 0;
87}
88
89static int __dwc3_gadget_ep0_queue(struct dwc3_ep *dep,
90 struct dwc3_request *req)
91{
92 struct dwc3 *dwc = dep->dwc;
93
94 req->request.actual = 0;
95 req->request.status = -EINPROGRESS;
96 req->epnum = dep->number;
97
98 list_add_tail(&req->list, &dep->pending_list);
99
100 /*
101 * Gadget driver might not be quick enough to queue a request
102 * before we get a Transfer Not Ready event on this endpoint.
103 *
104 * In that case, we will set DWC3_EP_PENDING_REQUEST. When that
105 * flag is set, it's telling us that as soon as Gadget queues the
106 * required request, we should kick the transfer here because the
107 * IRQ we were waiting for is long gone.
108 */
109 if (dep->flags & DWC3_EP_PENDING_REQUEST) {
110 unsigned direction;
111
112 direction = !!(dep->flags & DWC3_EP0_DIR_IN);
113
114 if (dwc->ep0state != EP0_DATA_PHASE) {
115 dev_WARN(dwc->dev, "Unexpected pending request\n");
116 return 0;
117 }
118
119 __dwc3_ep0_do_control_data(dwc, dwc->eps[direction], req);
120
121 dep->flags &= ~(DWC3_EP_PENDING_REQUEST |
122 DWC3_EP0_DIR_IN);
123
124 return 0;
125 }
126
127 /*
128 * In case gadget driver asked us to delay the STATUS phase,
129 * handle it here.
130 */
131 if (dwc->delayed_status) {
132 unsigned direction;
133
134 direction = !dwc->ep0_expect_in;
135 dwc->delayed_status = false;
136 usb_gadget_set_state(&dwc->gadget, USB_STATE_CONFIGURED);
137
138 if (dwc->ep0state == EP0_STATUS_PHASE)
139 __dwc3_ep0_do_control_status(dwc, dwc->eps[direction]);
140
141 return 0;
142 }
143
144 /*
145 * Unfortunately we have uncovered a limitation wrt the Data Phase.
146 *
147 * Section 9.4 says we can wait for the XferNotReady(DATA) event to
148 * come before issueing Start Transfer command, but if we do, we will
149 * miss situations where the host starts another SETUP phase instead of
150 * the DATA phase. Such cases happen at least on TD.7.6 of the Link
151 * Layer Compliance Suite.
152 *
153 * The problem surfaces due to the fact that in case of back-to-back
154 * SETUP packets there will be no XferNotReady(DATA) generated and we
155 * will be stuck waiting for XferNotReady(DATA) forever.
156 *
157 * By looking at tables 9-13 and 9-14 of the Databook, we can see that
158 * it tells us to start Data Phase right away. It also mentions that if
159 * we receive a SETUP phase instead of the DATA phase, core will issue
160 * XferComplete for the DATA phase, before actually initiating it in
161 * the wire, with the TRB's status set to "SETUP_PENDING". Such status
162 * can only be used to print some debugging logs, as the core expects
163 * us to go through to the STATUS phase and start a CONTROL_STATUS TRB,
164 * just so it completes right away, without transferring anything and,
165 * only then, we can go back to the SETUP phase.
166 *
167 * Because of this scenario, SNPS decided to change the programming
168 * model of control transfers and support on-demand transfers only for
169 * the STATUS phase. To fix the issue we have now, we will always wait
170 * for gadget driver to queue the DATA phase's struct usb_request, then
171 * start it right away.
172 *
173 * If we're actually in a 2-stage transfer, we will wait for
174 * XferNotReady(STATUS).
175 */
176 if (dwc->three_stage_setup) {
177 unsigned direction;
178
179 direction = dwc->ep0_expect_in;
180 dwc->ep0state = EP0_DATA_PHASE;
181
182 __dwc3_ep0_do_control_data(dwc, dwc->eps[direction], req);
183
184 dep->flags &= ~DWC3_EP0_DIR_IN;
185 }
186
187 return 0;
188}
189
190int dwc3_gadget_ep0_queue(struct usb_ep *ep, struct usb_request *request,
191 gfp_t gfp_flags)
192{
193 struct dwc3_request *req = to_dwc3_request(request);
194 struct dwc3_ep *dep = to_dwc3_ep(ep);
195 struct dwc3 *dwc = dep->dwc;
196
197 unsigned long flags;
198
199 int ret;
200
201 spin_lock_irqsave(&dwc->lock, flags);
202 if (!dep->endpoint.desc) {
203 dev_err(dwc->dev, "%s: can't queue to disabled endpoint\n",
204 dep->name);
205 ret = -ESHUTDOWN;
206 goto out;
207 }
208
209 /* we share one TRB for ep0/1 */
210 if (!list_empty(&dep->pending_list)) {
211 ret = -EBUSY;
212 goto out;
213 }
214
215 ret = __dwc3_gadget_ep0_queue(dep, req);
216
217out:
218 spin_unlock_irqrestore(&dwc->lock, flags);
219
220 return ret;
221}
222
223static void dwc3_ep0_stall_and_restart(struct dwc3 *dwc)
224{
225 struct dwc3_ep *dep;
226
227 /* reinitialize physical ep1 */
228 dep = dwc->eps[1];
229 dep->flags = DWC3_EP_ENABLED;
230
231 /* stall is always issued on EP0 */
232 dep = dwc->eps[0];
233 __dwc3_gadget_ep_set_halt(dep, 1, false);
234 dep->flags = DWC3_EP_ENABLED;
235 dwc->delayed_status = false;
236
237 if (!list_empty(&dep->pending_list)) {
238 struct dwc3_request *req;
239
240 req = next_request(&dep->pending_list);
241 dwc3_gadget_giveback(dep, req, -ECONNRESET);
242 }
243
244 dwc->ep0state = EP0_SETUP_PHASE;
245 dwc3_ep0_out_start(dwc);
246}
247
248int __dwc3_gadget_ep0_set_halt(struct usb_ep *ep, int value)
249{
250 struct dwc3_ep *dep = to_dwc3_ep(ep);
251 struct dwc3 *dwc = dep->dwc;
252
253 dwc3_ep0_stall_and_restart(dwc);
254
255 return 0;
256}
257
258int dwc3_gadget_ep0_set_halt(struct usb_ep *ep, int value)
259{
260 struct dwc3_ep *dep = to_dwc3_ep(ep);
261 struct dwc3 *dwc = dep->dwc;
262 unsigned long flags;
263 int ret;
264
265 spin_lock_irqsave(&dwc->lock, flags);
266 ret = __dwc3_gadget_ep0_set_halt(ep, value);
267 spin_unlock_irqrestore(&dwc->lock, flags);
268
269 return ret;
270}
271
272void dwc3_ep0_out_start(struct dwc3 *dwc)
273{
274 struct dwc3_ep *dep;
275 int ret;
276
277 complete(&dwc->ep0_in_setup);
278
279 dep = dwc->eps[0];
280 dwc3_ep0_prepare_one_trb(dep, dwc->ep0_trb_addr, 8,
281 DWC3_TRBCTL_CONTROL_SETUP, false);
282 ret = dwc3_ep0_start_trans(dep);
283 WARN_ON(ret < 0);
284}
285
286static struct dwc3_ep *dwc3_wIndex_to_dep(struct dwc3 *dwc, __le16 wIndex_le)
287{
288 struct dwc3_ep *dep;
289 u32 windex = le16_to_cpu(wIndex_le);
290 u32 epnum;
291
292 epnum = (windex & USB_ENDPOINT_NUMBER_MASK) << 1;
293 if ((windex & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN)
294 epnum |= 1;
295
296 dep = dwc->eps[epnum];
297 if (dep->flags & DWC3_EP_ENABLED)
298 return dep;
299
300 return NULL;
301}
302
303static void dwc3_ep0_status_cmpl(struct usb_ep *ep, struct usb_request *req)
304{
305}
306/*
307 * ch 9.4.5
308 */
309static int dwc3_ep0_handle_status(struct dwc3 *dwc,
310 struct usb_ctrlrequest *ctrl)
311{
312 struct dwc3_ep *dep;
313 u32 recip;
314 u32 value;
315 u32 reg;
316 u16 usb_status = 0;
317 __le16 *response_pkt;
318
319 /* We don't support PTM_STATUS */
320 value = le16_to_cpu(ctrl->wValue);
321 if (value != 0)
322 return -EINVAL;
323
324 recip = ctrl->bRequestType & USB_RECIP_MASK;
325 switch (recip) {
326 case USB_RECIP_DEVICE:
327 /*
328 * LTM will be set once we know how to set this in HW.
329 */
330 usb_status |= dwc->gadget.is_selfpowered;
331
332 if ((dwc->speed == DWC3_DSTS_SUPERSPEED) ||
333 (dwc->speed == DWC3_DSTS_SUPERSPEED_PLUS)) {
334 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
335 if (reg & DWC3_DCTL_INITU1ENA)
336 usb_status |= 1 << USB_DEV_STAT_U1_ENABLED;
337 if (reg & DWC3_DCTL_INITU2ENA)
338 usb_status |= 1 << USB_DEV_STAT_U2_ENABLED;
339 }
340
341 break;
342
343 case USB_RECIP_INTERFACE:
344 /*
345 * Function Remote Wake Capable D0
346 * Function Remote Wakeup D1
347 */
348 break;
349
350 case USB_RECIP_ENDPOINT:
351 dep = dwc3_wIndex_to_dep(dwc, ctrl->wIndex);
352 if (!dep)
353 return -EINVAL;
354
355 if (dep->flags & DWC3_EP_STALL)
356 usb_status = 1 << USB_ENDPOINT_HALT;
357 break;
358 default:
359 return -EINVAL;
360 }
361
362 response_pkt = (__le16 *) dwc->setup_buf;
363 *response_pkt = cpu_to_le16(usb_status);
364
365 dep = dwc->eps[0];
366 dwc->ep0_usb_req.dep = dep;
367 dwc->ep0_usb_req.request.length = sizeof(*response_pkt);
368 dwc->ep0_usb_req.request.buf = dwc->setup_buf;
369 dwc->ep0_usb_req.request.complete = dwc3_ep0_status_cmpl;
370
371 return __dwc3_gadget_ep0_queue(dep, &dwc->ep0_usb_req);
372}
373
374static int dwc3_ep0_handle_u1(struct dwc3 *dwc, enum usb_device_state state,
375 int set)
376{
377 u32 reg;
378
379 if (state != USB_STATE_CONFIGURED)
380 return -EINVAL;
381 if ((dwc->speed != DWC3_DSTS_SUPERSPEED) &&
382 (dwc->speed != DWC3_DSTS_SUPERSPEED_PLUS))
383 return -EINVAL;
384
385 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
386 if (set)
387 reg |= DWC3_DCTL_INITU1ENA;
388 else
389 reg &= ~DWC3_DCTL_INITU1ENA;
390 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
391
392 return 0;
393}
394
395static int dwc3_ep0_handle_u2(struct dwc3 *dwc, enum usb_device_state state,
396 int set)
397{
398 u32 reg;
399
400
401 if (state != USB_STATE_CONFIGURED)
402 return -EINVAL;
403 if ((dwc->speed != DWC3_DSTS_SUPERSPEED) &&
404 (dwc->speed != DWC3_DSTS_SUPERSPEED_PLUS))
405 return -EINVAL;
406
407 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
408 if (set)
409 reg |= DWC3_DCTL_INITU2ENA;
410 else
411 reg &= ~DWC3_DCTL_INITU2ENA;
412 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
413
414 return 0;
415}
416
417static int dwc3_ep0_handle_test(struct dwc3 *dwc, enum usb_device_state state,
418 u32 wIndex, int set)
419{
420 if ((wIndex & 0xff) != 0)
421 return -EINVAL;
422 if (!set)
423 return -EINVAL;
424
425 switch (wIndex >> 8) {
426 case TEST_J:
427 case TEST_K:
428 case TEST_SE0_NAK:
429 case TEST_PACKET:
430 case TEST_FORCE_EN:
431 dwc->test_mode_nr = wIndex >> 8;
432 dwc->test_mode = true;
433 break;
434 default:
435 return -EINVAL;
436 }
437
438 return 0;
439}
440
441static int dwc3_ep0_handle_device(struct dwc3 *dwc,
442 struct usb_ctrlrequest *ctrl, int set)
443{
444 enum usb_device_state state;
445 u32 wValue;
446 u32 wIndex;
447 int ret = 0;
448
449 wValue = le16_to_cpu(ctrl->wValue);
450 wIndex = le16_to_cpu(ctrl->wIndex);
451 state = dwc->gadget.state;
452
453 switch (wValue) {
454 case USB_DEVICE_REMOTE_WAKEUP:
455 break;
456 /*
457 * 9.4.1 says only only for SS, in AddressState only for
458 * default control pipe
459 */
460 case USB_DEVICE_U1_ENABLE:
461 ret = dwc3_ep0_handle_u1(dwc, state, set);
462 break;
463 case USB_DEVICE_U2_ENABLE:
464 ret = dwc3_ep0_handle_u2(dwc, state, set);
465 break;
466 case USB_DEVICE_LTM_ENABLE:
467 ret = -EINVAL;
468 break;
469 case USB_DEVICE_TEST_MODE:
470 ret = dwc3_ep0_handle_test(dwc, state, wIndex, set);
471 break;
472 default:
473 ret = -EINVAL;
474 }
475
476 return ret;
477}
478
479static int dwc3_ep0_handle_intf(struct dwc3 *dwc,
480 struct usb_ctrlrequest *ctrl, int set)
481{
482 u32 wValue;
483 int ret = 0;
484
485 wValue = le16_to_cpu(ctrl->wValue);
486
487 switch (wValue) {
488 case USB_INTRF_FUNC_SUSPEND:
489 /*
490 * REVISIT: Ideally we would enable some low power mode here,
491 * however it's unclear what we should be doing here.
492 *
493 * For now, we're not doing anything, just making sure we return
494 * 0 so USB Command Verifier tests pass without any errors.
495 */
496 break;
497 default:
498 ret = -EINVAL;
499 }
500
501 return ret;
502}
503
504static int dwc3_ep0_handle_endpoint(struct dwc3 *dwc,
505 struct usb_ctrlrequest *ctrl, int set)
506{
507 struct dwc3_ep *dep;
508 u32 wValue;
509 int ret;
510
511 wValue = le16_to_cpu(ctrl->wValue);
512
513 switch (wValue) {
514 case USB_ENDPOINT_HALT:
515 dep = dwc3_wIndex_to_dep(dwc, ctrl->wIndex);
516 if (!dep)
517 return -EINVAL;
518
519 if (set == 0 && (dep->flags & DWC3_EP_WEDGE))
520 break;
521
522 ret = __dwc3_gadget_ep_set_halt(dep, set, true);
523 if (ret)
524 return -EINVAL;
525 break;
526 default:
527 return -EINVAL;
528 }
529
530 return 0;
531}
532
533static int dwc3_ep0_handle_feature(struct dwc3 *dwc,
534 struct usb_ctrlrequest *ctrl, int set)
535{
536 u32 recip;
537 int ret;
538
539 recip = ctrl->bRequestType & USB_RECIP_MASK;
540
541 switch (recip) {
542 case USB_RECIP_DEVICE:
543 ret = dwc3_ep0_handle_device(dwc, ctrl, set);
544 break;
545 case USB_RECIP_INTERFACE:
546 ret = dwc3_ep0_handle_intf(dwc, ctrl, set);
547 break;
548 case USB_RECIP_ENDPOINT:
549 ret = dwc3_ep0_handle_endpoint(dwc, ctrl, set);
550 break;
551 default:
552 ret = -EINVAL;
553 }
554
555 return ret;
556}
557
558static int dwc3_ep0_set_address(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
559{
560 enum usb_device_state state = dwc->gadget.state;
561 u32 addr;
562 u32 reg;
563
564 addr = le16_to_cpu(ctrl->wValue);
565 if (addr > 127) {
566 dev_err(dwc->dev, "invalid device address %d\n", addr);
567 return -EINVAL;
568 }
569
570 if (state == USB_STATE_CONFIGURED) {
571 dev_err(dwc->dev, "can't SetAddress() from Configured State\n");
572 return -EINVAL;
573 }
574
575 reg = dwc3_readl(dwc->regs, DWC3_DCFG);
576 reg &= ~(DWC3_DCFG_DEVADDR_MASK);
577 reg |= DWC3_DCFG_DEVADDR(addr);
578 dwc3_writel(dwc->regs, DWC3_DCFG, reg);
579
580 if (addr)
581 usb_gadget_set_state(&dwc->gadget, USB_STATE_ADDRESS);
582 else
583 usb_gadget_set_state(&dwc->gadget, USB_STATE_DEFAULT);
584
585 return 0;
586}
587
588static int dwc3_ep0_delegate_req(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
589{
590 int ret;
591
592 spin_unlock(&dwc->lock);
593 ret = dwc->gadget_driver->setup(&dwc->gadget, ctrl);
594 spin_lock(&dwc->lock);
595 return ret;
596}
597
598static int dwc3_ep0_set_config(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
599{
600 enum usb_device_state state = dwc->gadget.state;
601 u32 cfg;
602 int ret;
603 u32 reg;
604
605 cfg = le16_to_cpu(ctrl->wValue);
606
607 switch (state) {
608 case USB_STATE_DEFAULT:
609 return -EINVAL;
610
611 case USB_STATE_ADDRESS:
612 ret = dwc3_ep0_delegate_req(dwc, ctrl);
613 /* if the cfg matches and the cfg is non zero */
614 if (cfg && (!ret || (ret == USB_GADGET_DELAYED_STATUS))) {
615
616 /*
617 * only change state if set_config has already
618 * been processed. If gadget driver returns
619 * USB_GADGET_DELAYED_STATUS, we will wait
620 * to change the state on the next usb_ep_queue()
621 */
622 if (ret == 0)
623 usb_gadget_set_state(&dwc->gadget,
624 USB_STATE_CONFIGURED);
625
626 /*
627 * Enable transition to U1/U2 state when
628 * nothing is pending from application.
629 */
630 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
631 reg |= (DWC3_DCTL_ACCEPTU1ENA | DWC3_DCTL_ACCEPTU2ENA);
632 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
633 }
634 break;
635
636 case USB_STATE_CONFIGURED:
637 ret = dwc3_ep0_delegate_req(dwc, ctrl);
638 if (!cfg && !ret)
639 usb_gadget_set_state(&dwc->gadget,
640 USB_STATE_ADDRESS);
641 break;
642 default:
643 ret = -EINVAL;
644 }
645 return ret;
646}
647
648static void dwc3_ep0_set_sel_cmpl(struct usb_ep *ep, struct usb_request *req)
649{
650 struct dwc3_ep *dep = to_dwc3_ep(ep);
651 struct dwc3 *dwc = dep->dwc;
652
653 u32 param = 0;
654 u32 reg;
655
656 struct timing {
657 u8 u1sel;
658 u8 u1pel;
659 __le16 u2sel;
660 __le16 u2pel;
661 } __packed timing;
662
663 int ret;
664
665 memcpy(&timing, req->buf, sizeof(timing));
666
667 dwc->u1sel = timing.u1sel;
668 dwc->u1pel = timing.u1pel;
669 dwc->u2sel = le16_to_cpu(timing.u2sel);
670 dwc->u2pel = le16_to_cpu(timing.u2pel);
671
672 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
673 if (reg & DWC3_DCTL_INITU2ENA)
674 param = dwc->u2pel;
675 if (reg & DWC3_DCTL_INITU1ENA)
676 param = dwc->u1pel;
677
678 /*
679 * According to Synopsys Databook, if parameter is
680 * greater than 125, a value of zero should be
681 * programmed in the register.
682 */
683 if (param > 125)
684 param = 0;
685
686 /* now that we have the time, issue DGCMD Set Sel */
687 ret = dwc3_send_gadget_generic_command(dwc,
688 DWC3_DGCMD_SET_PERIODIC_PAR, param);
689 WARN_ON(ret < 0);
690}
691
692static int dwc3_ep0_set_sel(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
693{
694 struct dwc3_ep *dep;
695 enum usb_device_state state = dwc->gadget.state;
696 u16 wLength;
697
698 if (state == USB_STATE_DEFAULT)
699 return -EINVAL;
700
701 wLength = le16_to_cpu(ctrl->wLength);
702
703 if (wLength != 6) {
704 dev_err(dwc->dev, "Set SEL should be 6 bytes, got %d\n",
705 wLength);
706 return -EINVAL;
707 }
708
709 /*
710 * To handle Set SEL we need to receive 6 bytes from Host. So let's
711 * queue a usb_request for 6 bytes.
712 *
713 * Remember, though, this controller can't handle non-wMaxPacketSize
714 * aligned transfers on the OUT direction, so we queue a request for
715 * wMaxPacketSize instead.
716 */
717 dep = dwc->eps[0];
718 dwc->ep0_usb_req.dep = dep;
719 dwc->ep0_usb_req.request.length = dep->endpoint.maxpacket;
720 dwc->ep0_usb_req.request.buf = dwc->setup_buf;
721 dwc->ep0_usb_req.request.complete = dwc3_ep0_set_sel_cmpl;
722
723 return __dwc3_gadget_ep0_queue(dep, &dwc->ep0_usb_req);
724}
725
726static int dwc3_ep0_set_isoch_delay(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
727{
728 u16 wLength;
729 u16 wValue;
730 u16 wIndex;
731
732 wValue = le16_to_cpu(ctrl->wValue);
733 wLength = le16_to_cpu(ctrl->wLength);
734 wIndex = le16_to_cpu(ctrl->wIndex);
735
736 if (wIndex || wLength)
737 return -EINVAL;
738
739 dwc->gadget.isoch_delay = wValue;
740
741 return 0;
742}
743
744static int dwc3_ep0_std_request(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
745{
746 int ret;
747
748 switch (ctrl->bRequest) {
749 case USB_REQ_GET_STATUS:
750 ret = dwc3_ep0_handle_status(dwc, ctrl);
751 break;
752 case USB_REQ_CLEAR_FEATURE:
753 ret = dwc3_ep0_handle_feature(dwc, ctrl, 0);
754 break;
755 case USB_REQ_SET_FEATURE:
756 ret = dwc3_ep0_handle_feature(dwc, ctrl, 1);
757 break;
758 case USB_REQ_SET_ADDRESS:
759 ret = dwc3_ep0_set_address(dwc, ctrl);
760 break;
761 case USB_REQ_SET_CONFIGURATION:
762 ret = dwc3_ep0_set_config(dwc, ctrl);
763 break;
764 case USB_REQ_SET_SEL:
765 ret = dwc3_ep0_set_sel(dwc, ctrl);
766 break;
767 case USB_REQ_SET_ISOCH_DELAY:
768 ret = dwc3_ep0_set_isoch_delay(dwc, ctrl);
769 break;
770 default:
771 ret = dwc3_ep0_delegate_req(dwc, ctrl);
772 break;
773 }
774
775 return ret;
776}
777
778static void dwc3_ep0_inspect_setup(struct dwc3 *dwc,
779 const struct dwc3_event_depevt *event)
780{
781 struct usb_ctrlrequest *ctrl = (void *) dwc->ep0_trb;
782 int ret = -EINVAL;
783 u32 len;
784
785 if (!dwc->gadget_driver)
786 goto out;
787
788 trace_dwc3_ctrl_req(ctrl);
789
790 len = le16_to_cpu(ctrl->wLength);
791 if (!len) {
792 dwc->three_stage_setup = false;
793 dwc->ep0_expect_in = false;
794 dwc->ep0_next_event = DWC3_EP0_NRDY_STATUS;
795 } else {
796 dwc->three_stage_setup = true;
797 dwc->ep0_expect_in = !!(ctrl->bRequestType & USB_DIR_IN);
798 dwc->ep0_next_event = DWC3_EP0_NRDY_DATA;
799 }
800
801 if ((ctrl->bRequestType & USB_TYPE_MASK) == USB_TYPE_STANDARD)
802 ret = dwc3_ep0_std_request(dwc, ctrl);
803 else
804 ret = dwc3_ep0_delegate_req(dwc, ctrl);
805
806 if (ret == USB_GADGET_DELAYED_STATUS)
807 dwc->delayed_status = true;
808
809out:
810 if (ret < 0)
811 dwc3_ep0_stall_and_restart(dwc);
812}
813
814static void dwc3_ep0_complete_data(struct dwc3 *dwc,
815 const struct dwc3_event_depevt *event)
816{
817 struct dwc3_request *r;
818 struct usb_request *ur;
819 struct dwc3_trb *trb;
820 struct dwc3_ep *ep0;
821 u32 transferred = 0;
822 u32 status;
823 u32 length;
824 u8 epnum;
825
826 epnum = event->endpoint_number;
827 ep0 = dwc->eps[0];
828
829 dwc->ep0_next_event = DWC3_EP0_NRDY_STATUS;
830 trb = dwc->ep0_trb;
831 trace_dwc3_complete_trb(ep0, trb);
832
833 r = next_request(&ep0->pending_list);
834 if (!r)
835 return;
836
837 status = DWC3_TRB_SIZE_TRBSTS(trb->size);
838 if (status == DWC3_TRBSTS_SETUP_PENDING) {
839 dwc->setup_packet_pending = true;
840 if (r)
841 dwc3_gadget_giveback(ep0, r, -ECONNRESET);
842
843 return;
844 }
845
846 ur = &r->request;
847
848 length = trb->size & DWC3_TRB_SIZE_MASK;
849 transferred = ur->length - length;
850 ur->actual += transferred;
851
852 if ((IS_ALIGNED(ur->length, ep0->endpoint.maxpacket) &&
853 ur->length && ur->zero) || dwc->ep0_bounced) {
854 trb++;
855 trb->ctrl &= ~DWC3_TRB_CTRL_HWO;
856 trace_dwc3_complete_trb(ep0, trb);
857
858 if (r->direction)
859 dwc->eps[1]->trb_enqueue = 0;
860 else
861 dwc->eps[0]->trb_enqueue = 0;
862
863 dwc->ep0_bounced = false;
864 }
865
866 if ((epnum & 1) && ur->actual < ur->length)
867 dwc3_ep0_stall_and_restart(dwc);
868 else
869 dwc3_gadget_giveback(ep0, r, 0);
870}
871
872static void dwc3_ep0_complete_status(struct dwc3 *dwc,
873 const struct dwc3_event_depevt *event)
874{
875 struct dwc3_request *r;
876 struct dwc3_ep *dep;
877 struct dwc3_trb *trb;
878 u32 status;
879
880 dep = dwc->eps[0];
881 trb = dwc->ep0_trb;
882
883 trace_dwc3_complete_trb(dep, trb);
884
885 if (!list_empty(&dep->pending_list)) {
886 r = next_request(&dep->pending_list);
887
888 dwc3_gadget_giveback(dep, r, 0);
889 }
890
891 if (dwc->test_mode) {
892 int ret;
893
894 ret = dwc3_gadget_set_test_mode(dwc, dwc->test_mode_nr);
895 if (ret < 0) {
896 dev_err(dwc->dev, "invalid test #%d\n",
897 dwc->test_mode_nr);
898 dwc3_ep0_stall_and_restart(dwc);
899 return;
900 }
901 }
902
903 status = DWC3_TRB_SIZE_TRBSTS(trb->size);
904 if (status == DWC3_TRBSTS_SETUP_PENDING)
905 dwc->setup_packet_pending = true;
906
907 dwc->ep0state = EP0_SETUP_PHASE;
908 dwc3_ep0_out_start(dwc);
909}
910
911static void dwc3_ep0_xfer_complete(struct dwc3 *dwc,
912 const struct dwc3_event_depevt *event)
913{
914 struct dwc3_ep *dep = dwc->eps[event->endpoint_number];
915
916 dep->flags &= ~DWC3_EP_BUSY;
917 dep->resource_index = 0;
918 dwc->setup_packet_pending = false;
919
920 switch (dwc->ep0state) {
921 case EP0_SETUP_PHASE:
922 dwc3_ep0_inspect_setup(dwc, event);
923 break;
924
925 case EP0_DATA_PHASE:
926 dwc3_ep0_complete_data(dwc, event);
927 break;
928
929 case EP0_STATUS_PHASE:
930 dwc3_ep0_complete_status(dwc, event);
931 break;
932 default:
933 WARN(true, "UNKNOWN ep0state %d\n", dwc->ep0state);
934 }
935}
936
937static void __dwc3_ep0_do_control_data(struct dwc3 *dwc,
938 struct dwc3_ep *dep, struct dwc3_request *req)
939{
940 int ret;
941
942 req->direction = !!dep->number;
943
944 if (req->request.length == 0) {
945 dwc3_ep0_prepare_one_trb(dep, dwc->ep0_trb_addr, 0,
946 DWC3_TRBCTL_CONTROL_DATA, false);
947 ret = dwc3_ep0_start_trans(dep);
948 } else if (!IS_ALIGNED(req->request.length, dep->endpoint.maxpacket)
949 && (dep->number == 0)) {
950 u32 maxpacket;
951 u32 rem;
952
953 ret = usb_gadget_map_request_by_dev(dwc->sysdev,
954 &req->request, dep->number);
955 if (ret)
956 return;
957
958 maxpacket = dep->endpoint.maxpacket;
959 rem = req->request.length % maxpacket;
960 dwc->ep0_bounced = true;
961
962 /* prepare normal TRB */
963 dwc3_ep0_prepare_one_trb(dep, req->request.dma,
964 req->request.length,
965 DWC3_TRBCTL_CONTROL_DATA,
966 true);
967
968 req->trb = &dwc->ep0_trb[dep->trb_enqueue - 1];
969
970 /* Now prepare one extra TRB to align transfer size */
971 dwc3_ep0_prepare_one_trb(dep, dwc->bounce_addr,
972 maxpacket - rem,
973 DWC3_TRBCTL_CONTROL_DATA,
974 false);
975 ret = dwc3_ep0_start_trans(dep);
976 } else if (IS_ALIGNED(req->request.length, dep->endpoint.maxpacket) &&
977 req->request.length && req->request.zero) {
978 u32 maxpacket;
979
980 ret = usb_gadget_map_request_by_dev(dwc->sysdev,
981 &req->request, dep->number);
982 if (ret)
983 return;
984
985 maxpacket = dep->endpoint.maxpacket;
986
987 /* prepare normal TRB */
988 dwc3_ep0_prepare_one_trb(dep, req->request.dma,
989 req->request.length,
990 DWC3_TRBCTL_CONTROL_DATA,
991 true);
992
993 req->trb = &dwc->ep0_trb[dep->trb_enqueue - 1];
994
995 /* Now prepare one extra TRB to align transfer size */
996 dwc3_ep0_prepare_one_trb(dep, dwc->bounce_addr,
997 0, DWC3_TRBCTL_CONTROL_DATA,
998 false);
999 ret = dwc3_ep0_start_trans(dep);
1000 } else {
1001 ret = usb_gadget_map_request_by_dev(dwc->sysdev,
1002 &req->request, dep->number);
1003 if (ret)
1004 return;
1005
1006 dwc3_ep0_prepare_one_trb(dep, req->request.dma,
1007 req->request.length, DWC3_TRBCTL_CONTROL_DATA,
1008 false);
1009
1010 req->trb = &dwc->ep0_trb[dep->trb_enqueue];
1011
1012 ret = dwc3_ep0_start_trans(dep);
1013 }
1014
1015 WARN_ON(ret < 0);
1016}
1017
1018static int dwc3_ep0_start_control_status(struct dwc3_ep *dep)
1019{
1020 struct dwc3 *dwc = dep->dwc;
1021 u32 type;
1022
1023 type = dwc->three_stage_setup ? DWC3_TRBCTL_CONTROL_STATUS3
1024 : DWC3_TRBCTL_CONTROL_STATUS2;
1025
1026 dwc3_ep0_prepare_one_trb(dep, dwc->ep0_trb_addr, 0, type, false);
1027 return dwc3_ep0_start_trans(dep);
1028}
1029
1030static void __dwc3_ep0_do_control_status(struct dwc3 *dwc, struct dwc3_ep *dep)
1031{
1032 WARN_ON(dwc3_ep0_start_control_status(dep));
1033}
1034
1035static void dwc3_ep0_do_control_status(struct dwc3 *dwc,
1036 const struct dwc3_event_depevt *event)
1037{
1038 struct dwc3_ep *dep = dwc->eps[event->endpoint_number];
1039
1040 __dwc3_ep0_do_control_status(dwc, dep);
1041}
1042
1043static void dwc3_ep0_end_control_data(struct dwc3 *dwc, struct dwc3_ep *dep)
1044{
1045 struct dwc3_gadget_ep_cmd_params params;
1046 u32 cmd;
1047 int ret;
1048
1049 if (!dep->resource_index)
1050 return;
1051
1052 cmd = DWC3_DEPCMD_ENDTRANSFER;
1053 cmd |= DWC3_DEPCMD_CMDIOC;
1054 cmd |= DWC3_DEPCMD_PARAM(dep->resource_index);
1055 memset(¶ms, 0, sizeof(params));
1056 ret = dwc3_send_gadget_ep_cmd(dep, cmd, ¶ms);
1057 WARN_ON_ONCE(ret);
1058 dep->resource_index = 0;
1059}
1060
1061static void dwc3_ep0_xfernotready(struct dwc3 *dwc,
1062 const struct dwc3_event_depevt *event)
1063{
1064 switch (event->status) {
1065 case DEPEVT_STATUS_CONTROL_DATA:
1066 /*
1067 * We already have a DATA transfer in the controller's cache,
1068 * if we receive a XferNotReady(DATA) we will ignore it, unless
1069 * it's for the wrong direction.
1070 *
1071 * In that case, we must issue END_TRANSFER command to the Data
1072 * Phase we already have started and issue SetStall on the
1073 * control endpoint.
1074 */
1075 if (dwc->ep0_expect_in != event->endpoint_number) {
1076 struct dwc3_ep *dep = dwc->eps[dwc->ep0_expect_in];
1077
1078 dev_err(dwc->dev, "unexpected direction for Data Phase\n");
1079 dwc3_ep0_end_control_data(dwc, dep);
1080 dwc3_ep0_stall_and_restart(dwc);
1081 return;
1082 }
1083
1084 break;
1085
1086 case DEPEVT_STATUS_CONTROL_STATUS:
1087 if (dwc->ep0_next_event != DWC3_EP0_NRDY_STATUS)
1088 return;
1089
1090 dwc->ep0state = EP0_STATUS_PHASE;
1091
1092 if (dwc->delayed_status) {
1093 struct dwc3_ep *dep = dwc->eps[0];
1094
1095 WARN_ON_ONCE(event->endpoint_number != 1);
1096 /*
1097 * We should handle the delay STATUS phase here if the
1098 * request for handling delay STATUS has been queued
1099 * into the list.
1100 */
1101 if (!list_empty(&dep->pending_list)) {
1102 dwc->delayed_status = false;
1103 usb_gadget_set_state(&dwc->gadget,
1104 USB_STATE_CONFIGURED);
1105 dwc3_ep0_do_control_status(dwc, event);
1106 }
1107
1108 return;
1109 }
1110
1111 dwc3_ep0_do_control_status(dwc, event);
1112 }
1113}
1114
1115void dwc3_ep0_interrupt(struct dwc3 *dwc,
1116 const struct dwc3_event_depevt *event)
1117{
1118 switch (event->endpoint_event) {
1119 case DWC3_DEPEVT_XFERCOMPLETE:
1120 dwc3_ep0_xfer_complete(dwc, event);
1121 break;
1122
1123 case DWC3_DEPEVT_XFERNOTREADY:
1124 dwc3_ep0_xfernotready(dwc, event);
1125 break;
1126
1127 case DWC3_DEPEVT_XFERINPROGRESS:
1128 case DWC3_DEPEVT_RXTXFIFOEVT:
1129 case DWC3_DEPEVT_STREAMEVT:
1130 case DWC3_DEPEVT_EPCMDCMPLT:
1131 break;
1132 }
1133}
1/**
2 * ep0.c - DesignWare USB3 DRD Controller Endpoint 0 Handling
3 *
4 * Copyright (C) 2010-2011 Texas Instruments Incorporated - http://www.ti.com
5 *
6 * Authors: Felipe Balbi <balbi@ti.com>,
7 * Sebastian Andrzej Siewior <bigeasy@linutronix.de>
8 *
9 * This program is free software: you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 of
11 * the License as published by the Free Software Foundation.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 */
18
19#include <linux/kernel.h>
20#include <linux/slab.h>
21#include <linux/spinlock.h>
22#include <linux/platform_device.h>
23#include <linux/pm_runtime.h>
24#include <linux/interrupt.h>
25#include <linux/io.h>
26#include <linux/list.h>
27#include <linux/dma-mapping.h>
28
29#include <linux/usb/ch9.h>
30#include <linux/usb/gadget.h>
31#include <linux/usb/composite.h>
32
33#include "core.h"
34#include "debug.h"
35#include "gadget.h"
36#include "io.h"
37
38static void __dwc3_ep0_do_control_status(struct dwc3 *dwc, struct dwc3_ep *dep);
39static void __dwc3_ep0_do_control_data(struct dwc3 *dwc,
40 struct dwc3_ep *dep, struct dwc3_request *req);
41
42static void dwc3_ep0_prepare_one_trb(struct dwc3 *dwc, u8 epnum,
43 dma_addr_t buf_dma, u32 len, u32 type, bool chain)
44{
45 struct dwc3_trb *trb;
46 struct dwc3_ep *dep;
47
48 dep = dwc->eps[epnum];
49
50 trb = &dwc->ep0_trb[dep->trb_enqueue];
51
52 if (chain)
53 dep->trb_enqueue++;
54
55 trb->bpl = lower_32_bits(buf_dma);
56 trb->bph = upper_32_bits(buf_dma);
57 trb->size = len;
58 trb->ctrl = type;
59
60 trb->ctrl |= (DWC3_TRB_CTRL_HWO
61 | DWC3_TRB_CTRL_ISP_IMI);
62
63 if (chain)
64 trb->ctrl |= DWC3_TRB_CTRL_CHN;
65 else
66 trb->ctrl |= (DWC3_TRB_CTRL_IOC
67 | DWC3_TRB_CTRL_LST);
68
69 trace_dwc3_prepare_trb(dep, trb);
70}
71
72static int dwc3_ep0_start_trans(struct dwc3 *dwc, u8 epnum)
73{
74 struct dwc3_gadget_ep_cmd_params params;
75 struct dwc3_ep *dep;
76 int ret;
77
78 dep = dwc->eps[epnum];
79 if (dep->flags & DWC3_EP_BUSY)
80 return 0;
81
82 memset(¶ms, 0, sizeof(params));
83 params.param0 = upper_32_bits(dwc->ep0_trb_addr);
84 params.param1 = lower_32_bits(dwc->ep0_trb_addr);
85
86 ret = dwc3_send_gadget_ep_cmd(dep, DWC3_DEPCMD_STARTTRANSFER, ¶ms);
87 if (ret < 0)
88 return ret;
89
90 dep->flags |= DWC3_EP_BUSY;
91 dep->resource_index = dwc3_gadget_ep_get_transfer_index(dep);
92 dwc->ep0_next_event = DWC3_EP0_COMPLETE;
93
94 return 0;
95}
96
97static int __dwc3_gadget_ep0_queue(struct dwc3_ep *dep,
98 struct dwc3_request *req)
99{
100 struct dwc3 *dwc = dep->dwc;
101
102 req->request.actual = 0;
103 req->request.status = -EINPROGRESS;
104 req->epnum = dep->number;
105
106 list_add_tail(&req->list, &dep->pending_list);
107
108 /*
109 * Gadget driver might not be quick enough to queue a request
110 * before we get a Transfer Not Ready event on this endpoint.
111 *
112 * In that case, we will set DWC3_EP_PENDING_REQUEST. When that
113 * flag is set, it's telling us that as soon as Gadget queues the
114 * required request, we should kick the transfer here because the
115 * IRQ we were waiting for is long gone.
116 */
117 if (dep->flags & DWC3_EP_PENDING_REQUEST) {
118 unsigned direction;
119
120 direction = !!(dep->flags & DWC3_EP0_DIR_IN);
121
122 if (dwc->ep0state != EP0_DATA_PHASE) {
123 dev_WARN(dwc->dev, "Unexpected pending request\n");
124 return 0;
125 }
126
127 __dwc3_ep0_do_control_data(dwc, dwc->eps[direction], req);
128
129 dep->flags &= ~(DWC3_EP_PENDING_REQUEST |
130 DWC3_EP0_DIR_IN);
131
132 return 0;
133 }
134
135 /*
136 * In case gadget driver asked us to delay the STATUS phase,
137 * handle it here.
138 */
139 if (dwc->delayed_status) {
140 unsigned direction;
141
142 direction = !dwc->ep0_expect_in;
143 dwc->delayed_status = false;
144 usb_gadget_set_state(&dwc->gadget, USB_STATE_CONFIGURED);
145
146 if (dwc->ep0state == EP0_STATUS_PHASE)
147 __dwc3_ep0_do_control_status(dwc, dwc->eps[direction]);
148
149 return 0;
150 }
151
152 /*
153 * Unfortunately we have uncovered a limitation wrt the Data Phase.
154 *
155 * Section 9.4 says we can wait for the XferNotReady(DATA) event to
156 * come before issueing Start Transfer command, but if we do, we will
157 * miss situations where the host starts another SETUP phase instead of
158 * the DATA phase. Such cases happen at least on TD.7.6 of the Link
159 * Layer Compliance Suite.
160 *
161 * The problem surfaces due to the fact that in case of back-to-back
162 * SETUP packets there will be no XferNotReady(DATA) generated and we
163 * will be stuck waiting for XferNotReady(DATA) forever.
164 *
165 * By looking at tables 9-13 and 9-14 of the Databook, we can see that
166 * it tells us to start Data Phase right away. It also mentions that if
167 * we receive a SETUP phase instead of the DATA phase, core will issue
168 * XferComplete for the DATA phase, before actually initiating it in
169 * the wire, with the TRB's status set to "SETUP_PENDING". Such status
170 * can only be used to print some debugging logs, as the core expects
171 * us to go through to the STATUS phase and start a CONTROL_STATUS TRB,
172 * just so it completes right away, without transferring anything and,
173 * only then, we can go back to the SETUP phase.
174 *
175 * Because of this scenario, SNPS decided to change the programming
176 * model of control transfers and support on-demand transfers only for
177 * the STATUS phase. To fix the issue we have now, we will always wait
178 * for gadget driver to queue the DATA phase's struct usb_request, then
179 * start it right away.
180 *
181 * If we're actually in a 2-stage transfer, we will wait for
182 * XferNotReady(STATUS).
183 */
184 if (dwc->three_stage_setup) {
185 unsigned direction;
186
187 direction = dwc->ep0_expect_in;
188 dwc->ep0state = EP0_DATA_PHASE;
189
190 __dwc3_ep0_do_control_data(dwc, dwc->eps[direction], req);
191
192 dep->flags &= ~DWC3_EP0_DIR_IN;
193 }
194
195 return 0;
196}
197
198int dwc3_gadget_ep0_queue(struct usb_ep *ep, struct usb_request *request,
199 gfp_t gfp_flags)
200{
201 struct dwc3_request *req = to_dwc3_request(request);
202 struct dwc3_ep *dep = to_dwc3_ep(ep);
203 struct dwc3 *dwc = dep->dwc;
204
205 unsigned long flags;
206
207 int ret;
208
209 spin_lock_irqsave(&dwc->lock, flags);
210 if (!dep->endpoint.desc) {
211 dev_err(dwc->dev, "%s: can't queue to disabled endpoint\n",
212 dep->name);
213 ret = -ESHUTDOWN;
214 goto out;
215 }
216
217 /* we share one TRB for ep0/1 */
218 if (!list_empty(&dep->pending_list)) {
219 ret = -EBUSY;
220 goto out;
221 }
222
223 ret = __dwc3_gadget_ep0_queue(dep, req);
224
225out:
226 spin_unlock_irqrestore(&dwc->lock, flags);
227
228 return ret;
229}
230
231static void dwc3_ep0_stall_and_restart(struct dwc3 *dwc)
232{
233 struct dwc3_ep *dep;
234
235 /* reinitialize physical ep1 */
236 dep = dwc->eps[1];
237 dep->flags = DWC3_EP_ENABLED;
238
239 /* stall is always issued on EP0 */
240 dep = dwc->eps[0];
241 __dwc3_gadget_ep_set_halt(dep, 1, false);
242 dep->flags = DWC3_EP_ENABLED;
243 dwc->delayed_status = false;
244
245 if (!list_empty(&dep->pending_list)) {
246 struct dwc3_request *req;
247
248 req = next_request(&dep->pending_list);
249 dwc3_gadget_giveback(dep, req, -ECONNRESET);
250 }
251
252 dwc->ep0state = EP0_SETUP_PHASE;
253 dwc3_ep0_out_start(dwc);
254}
255
256int __dwc3_gadget_ep0_set_halt(struct usb_ep *ep, int value)
257{
258 struct dwc3_ep *dep = to_dwc3_ep(ep);
259 struct dwc3 *dwc = dep->dwc;
260
261 dwc3_ep0_stall_and_restart(dwc);
262
263 return 0;
264}
265
266int dwc3_gadget_ep0_set_halt(struct usb_ep *ep, int value)
267{
268 struct dwc3_ep *dep = to_dwc3_ep(ep);
269 struct dwc3 *dwc = dep->dwc;
270 unsigned long flags;
271 int ret;
272
273 spin_lock_irqsave(&dwc->lock, flags);
274 ret = __dwc3_gadget_ep0_set_halt(ep, value);
275 spin_unlock_irqrestore(&dwc->lock, flags);
276
277 return ret;
278}
279
280void dwc3_ep0_out_start(struct dwc3 *dwc)
281{
282 int ret;
283
284 complete(&dwc->ep0_in_setup);
285
286 dwc3_ep0_prepare_one_trb(dwc, 0, dwc->ctrl_req_addr, 8,
287 DWC3_TRBCTL_CONTROL_SETUP, false);
288 ret = dwc3_ep0_start_trans(dwc, 0);
289 WARN_ON(ret < 0);
290}
291
292static struct dwc3_ep *dwc3_wIndex_to_dep(struct dwc3 *dwc, __le16 wIndex_le)
293{
294 struct dwc3_ep *dep;
295 u32 windex = le16_to_cpu(wIndex_le);
296 u32 epnum;
297
298 epnum = (windex & USB_ENDPOINT_NUMBER_MASK) << 1;
299 if ((windex & USB_ENDPOINT_DIR_MASK) == USB_DIR_IN)
300 epnum |= 1;
301
302 dep = dwc->eps[epnum];
303 if (dep->flags & DWC3_EP_ENABLED)
304 return dep;
305
306 return NULL;
307}
308
309static void dwc3_ep0_status_cmpl(struct usb_ep *ep, struct usb_request *req)
310{
311}
312/*
313 * ch 9.4.5
314 */
315static int dwc3_ep0_handle_status(struct dwc3 *dwc,
316 struct usb_ctrlrequest *ctrl)
317{
318 struct dwc3_ep *dep;
319 u32 recip;
320 u32 reg;
321 u16 usb_status = 0;
322 __le16 *response_pkt;
323
324 recip = ctrl->bRequestType & USB_RECIP_MASK;
325 switch (recip) {
326 case USB_RECIP_DEVICE:
327 /*
328 * LTM will be set once we know how to set this in HW.
329 */
330 usb_status |= dwc->gadget.is_selfpowered;
331
332 if ((dwc->speed == DWC3_DSTS_SUPERSPEED) ||
333 (dwc->speed == DWC3_DSTS_SUPERSPEED_PLUS)) {
334 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
335 if (reg & DWC3_DCTL_INITU1ENA)
336 usb_status |= 1 << USB_DEV_STAT_U1_ENABLED;
337 if (reg & DWC3_DCTL_INITU2ENA)
338 usb_status |= 1 << USB_DEV_STAT_U2_ENABLED;
339 }
340
341 break;
342
343 case USB_RECIP_INTERFACE:
344 /*
345 * Function Remote Wake Capable D0
346 * Function Remote Wakeup D1
347 */
348 break;
349
350 case USB_RECIP_ENDPOINT:
351 dep = dwc3_wIndex_to_dep(dwc, ctrl->wIndex);
352 if (!dep)
353 return -EINVAL;
354
355 if (dep->flags & DWC3_EP_STALL)
356 usb_status = 1 << USB_ENDPOINT_HALT;
357 break;
358 default:
359 return -EINVAL;
360 }
361
362 response_pkt = (__le16 *) dwc->setup_buf;
363 *response_pkt = cpu_to_le16(usb_status);
364
365 dep = dwc->eps[0];
366 dwc->ep0_usb_req.dep = dep;
367 dwc->ep0_usb_req.request.length = sizeof(*response_pkt);
368 dwc->ep0_usb_req.request.buf = dwc->setup_buf;
369 dwc->ep0_usb_req.request.complete = dwc3_ep0_status_cmpl;
370
371 return __dwc3_gadget_ep0_queue(dep, &dwc->ep0_usb_req);
372}
373
374static int dwc3_ep0_handle_u1(struct dwc3 *dwc, enum usb_device_state state,
375 int set)
376{
377 u32 reg;
378
379 if (state != USB_STATE_CONFIGURED)
380 return -EINVAL;
381 if ((dwc->speed != DWC3_DSTS_SUPERSPEED) &&
382 (dwc->speed != DWC3_DSTS_SUPERSPEED_PLUS))
383 return -EINVAL;
384
385 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
386 if (set)
387 reg |= DWC3_DCTL_INITU1ENA;
388 else
389 reg &= ~DWC3_DCTL_INITU1ENA;
390 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
391
392 return 0;
393}
394
395static int dwc3_ep0_handle_u2(struct dwc3 *dwc, enum usb_device_state state,
396 int set)
397{
398 u32 reg;
399
400
401 if (state != USB_STATE_CONFIGURED)
402 return -EINVAL;
403 if ((dwc->speed != DWC3_DSTS_SUPERSPEED) &&
404 (dwc->speed != DWC3_DSTS_SUPERSPEED_PLUS))
405 return -EINVAL;
406
407 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
408 if (set)
409 reg |= DWC3_DCTL_INITU2ENA;
410 else
411 reg &= ~DWC3_DCTL_INITU2ENA;
412 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
413
414 return 0;
415}
416
417static int dwc3_ep0_handle_test(struct dwc3 *dwc, enum usb_device_state state,
418 u32 wIndex, int set)
419{
420 if ((wIndex & 0xff) != 0)
421 return -EINVAL;
422 if (!set)
423 return -EINVAL;
424
425 switch (wIndex >> 8) {
426 case TEST_J:
427 case TEST_K:
428 case TEST_SE0_NAK:
429 case TEST_PACKET:
430 case TEST_FORCE_EN:
431 dwc->test_mode_nr = wIndex >> 8;
432 dwc->test_mode = true;
433 break;
434 default:
435 return -EINVAL;
436 }
437
438 return 0;
439}
440
441static int dwc3_ep0_handle_device(struct dwc3 *dwc,
442 struct usb_ctrlrequest *ctrl, int set)
443{
444 enum usb_device_state state;
445 u32 wValue;
446 u32 wIndex;
447 int ret = 0;
448
449 wValue = le16_to_cpu(ctrl->wValue);
450 wIndex = le16_to_cpu(ctrl->wIndex);
451 state = dwc->gadget.state;
452
453 switch (wValue) {
454 case USB_DEVICE_REMOTE_WAKEUP:
455 break;
456 /*
457 * 9.4.1 says only only for SS, in AddressState only for
458 * default control pipe
459 */
460 case USB_DEVICE_U1_ENABLE:
461 ret = dwc3_ep0_handle_u1(dwc, state, set);
462 break;
463 case USB_DEVICE_U2_ENABLE:
464 ret = dwc3_ep0_handle_u2(dwc, state, set);
465 break;
466 case USB_DEVICE_LTM_ENABLE:
467 ret = -EINVAL;
468 break;
469 case USB_DEVICE_TEST_MODE:
470 ret = dwc3_ep0_handle_test(dwc, state, wIndex, set);
471 break;
472 default:
473 ret = -EINVAL;
474 }
475
476 return ret;
477}
478
479static int dwc3_ep0_handle_intf(struct dwc3 *dwc,
480 struct usb_ctrlrequest *ctrl, int set)
481{
482 enum usb_device_state state;
483 u32 wValue;
484 u32 wIndex;
485 int ret = 0;
486
487 wValue = le16_to_cpu(ctrl->wValue);
488 wIndex = le16_to_cpu(ctrl->wIndex);
489 state = dwc->gadget.state;
490
491 switch (wValue) {
492 case USB_INTRF_FUNC_SUSPEND:
493 /*
494 * REVISIT: Ideally we would enable some low power mode here,
495 * however it's unclear what we should be doing here.
496 *
497 * For now, we're not doing anything, just making sure we return
498 * 0 so USB Command Verifier tests pass without any errors.
499 */
500 break;
501 default:
502 ret = -EINVAL;
503 }
504
505 return ret;
506}
507
508static int dwc3_ep0_handle_endpoint(struct dwc3 *dwc,
509 struct usb_ctrlrequest *ctrl, int set)
510{
511 struct dwc3_ep *dep;
512 enum usb_device_state state;
513 u32 wValue;
514 u32 wIndex;
515 int ret;
516
517 wValue = le16_to_cpu(ctrl->wValue);
518 wIndex = le16_to_cpu(ctrl->wIndex);
519 state = dwc->gadget.state;
520
521 switch (wValue) {
522 case USB_ENDPOINT_HALT:
523 dep = dwc3_wIndex_to_dep(dwc, ctrl->wIndex);
524 if (!dep)
525 return -EINVAL;
526
527 if (set == 0 && (dep->flags & DWC3_EP_WEDGE))
528 break;
529
530 ret = __dwc3_gadget_ep_set_halt(dep, set, true);
531 if (ret)
532 return -EINVAL;
533 break;
534 default:
535 return -EINVAL;
536 }
537
538 return 0;
539}
540
541static int dwc3_ep0_handle_feature(struct dwc3 *dwc,
542 struct usb_ctrlrequest *ctrl, int set)
543{
544 u32 recip;
545 int ret;
546 enum usb_device_state state;
547
548 recip = ctrl->bRequestType & USB_RECIP_MASK;
549 state = dwc->gadget.state;
550
551 switch (recip) {
552 case USB_RECIP_DEVICE:
553 ret = dwc3_ep0_handle_device(dwc, ctrl, set);
554 break;
555 case USB_RECIP_INTERFACE:
556 ret = dwc3_ep0_handle_intf(dwc, ctrl, set);
557 break;
558 case USB_RECIP_ENDPOINT:
559 ret = dwc3_ep0_handle_endpoint(dwc, ctrl, set);
560 break;
561 default:
562 ret = -EINVAL;
563 }
564
565 return ret;
566}
567
568static int dwc3_ep0_set_address(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
569{
570 enum usb_device_state state = dwc->gadget.state;
571 u32 addr;
572 u32 reg;
573
574 addr = le16_to_cpu(ctrl->wValue);
575 if (addr > 127) {
576 dev_err(dwc->dev, "invalid device address %d\n", addr);
577 return -EINVAL;
578 }
579
580 if (state == USB_STATE_CONFIGURED) {
581 dev_err(dwc->dev, "can't SetAddress() from Configured State\n");
582 return -EINVAL;
583 }
584
585 reg = dwc3_readl(dwc->regs, DWC3_DCFG);
586 reg &= ~(DWC3_DCFG_DEVADDR_MASK);
587 reg |= DWC3_DCFG_DEVADDR(addr);
588 dwc3_writel(dwc->regs, DWC3_DCFG, reg);
589
590 if (addr)
591 usb_gadget_set_state(&dwc->gadget, USB_STATE_ADDRESS);
592 else
593 usb_gadget_set_state(&dwc->gadget, USB_STATE_DEFAULT);
594
595 return 0;
596}
597
598static int dwc3_ep0_delegate_req(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
599{
600 int ret;
601
602 spin_unlock(&dwc->lock);
603 ret = dwc->gadget_driver->setup(&dwc->gadget, ctrl);
604 spin_lock(&dwc->lock);
605 return ret;
606}
607
608static int dwc3_ep0_set_config(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
609{
610 enum usb_device_state state = dwc->gadget.state;
611 u32 cfg;
612 int ret;
613 u32 reg;
614
615 cfg = le16_to_cpu(ctrl->wValue);
616
617 switch (state) {
618 case USB_STATE_DEFAULT:
619 return -EINVAL;
620
621 case USB_STATE_ADDRESS:
622 ret = dwc3_ep0_delegate_req(dwc, ctrl);
623 /* if the cfg matches and the cfg is non zero */
624 if (cfg && (!ret || (ret == USB_GADGET_DELAYED_STATUS))) {
625
626 /*
627 * only change state if set_config has already
628 * been processed. If gadget driver returns
629 * USB_GADGET_DELAYED_STATUS, we will wait
630 * to change the state on the next usb_ep_queue()
631 */
632 if (ret == 0)
633 usb_gadget_set_state(&dwc->gadget,
634 USB_STATE_CONFIGURED);
635
636 /*
637 * Enable transition to U1/U2 state when
638 * nothing is pending from application.
639 */
640 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
641 reg |= (DWC3_DCTL_ACCEPTU1ENA | DWC3_DCTL_ACCEPTU2ENA);
642 dwc3_writel(dwc->regs, DWC3_DCTL, reg);
643 }
644 break;
645
646 case USB_STATE_CONFIGURED:
647 ret = dwc3_ep0_delegate_req(dwc, ctrl);
648 if (!cfg && !ret)
649 usb_gadget_set_state(&dwc->gadget,
650 USB_STATE_ADDRESS);
651 break;
652 default:
653 ret = -EINVAL;
654 }
655 return ret;
656}
657
658static void dwc3_ep0_set_sel_cmpl(struct usb_ep *ep, struct usb_request *req)
659{
660 struct dwc3_ep *dep = to_dwc3_ep(ep);
661 struct dwc3 *dwc = dep->dwc;
662
663 u32 param = 0;
664 u32 reg;
665
666 struct timing {
667 u8 u1sel;
668 u8 u1pel;
669 __le16 u2sel;
670 __le16 u2pel;
671 } __packed timing;
672
673 int ret;
674
675 memcpy(&timing, req->buf, sizeof(timing));
676
677 dwc->u1sel = timing.u1sel;
678 dwc->u1pel = timing.u1pel;
679 dwc->u2sel = le16_to_cpu(timing.u2sel);
680 dwc->u2pel = le16_to_cpu(timing.u2pel);
681
682 reg = dwc3_readl(dwc->regs, DWC3_DCTL);
683 if (reg & DWC3_DCTL_INITU2ENA)
684 param = dwc->u2pel;
685 if (reg & DWC3_DCTL_INITU1ENA)
686 param = dwc->u1pel;
687
688 /*
689 * According to Synopsys Databook, if parameter is
690 * greater than 125, a value of zero should be
691 * programmed in the register.
692 */
693 if (param > 125)
694 param = 0;
695
696 /* now that we have the time, issue DGCMD Set Sel */
697 ret = dwc3_send_gadget_generic_command(dwc,
698 DWC3_DGCMD_SET_PERIODIC_PAR, param);
699 WARN_ON(ret < 0);
700}
701
702static int dwc3_ep0_set_sel(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
703{
704 struct dwc3_ep *dep;
705 enum usb_device_state state = dwc->gadget.state;
706 u16 wLength;
707 u16 wValue;
708
709 if (state == USB_STATE_DEFAULT)
710 return -EINVAL;
711
712 wValue = le16_to_cpu(ctrl->wValue);
713 wLength = le16_to_cpu(ctrl->wLength);
714
715 if (wLength != 6) {
716 dev_err(dwc->dev, "Set SEL should be 6 bytes, got %d\n",
717 wLength);
718 return -EINVAL;
719 }
720
721 /*
722 * To handle Set SEL we need to receive 6 bytes from Host. So let's
723 * queue a usb_request for 6 bytes.
724 *
725 * Remember, though, this controller can't handle non-wMaxPacketSize
726 * aligned transfers on the OUT direction, so we queue a request for
727 * wMaxPacketSize instead.
728 */
729 dep = dwc->eps[0];
730 dwc->ep0_usb_req.dep = dep;
731 dwc->ep0_usb_req.request.length = dep->endpoint.maxpacket;
732 dwc->ep0_usb_req.request.buf = dwc->setup_buf;
733 dwc->ep0_usb_req.request.complete = dwc3_ep0_set_sel_cmpl;
734
735 return __dwc3_gadget_ep0_queue(dep, &dwc->ep0_usb_req);
736}
737
738static int dwc3_ep0_set_isoch_delay(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
739{
740 u16 wLength;
741 u16 wValue;
742 u16 wIndex;
743
744 wValue = le16_to_cpu(ctrl->wValue);
745 wLength = le16_to_cpu(ctrl->wLength);
746 wIndex = le16_to_cpu(ctrl->wIndex);
747
748 if (wIndex || wLength)
749 return -EINVAL;
750
751 /*
752 * REVISIT It's unclear from Databook what to do with this
753 * value. For now, just cache it.
754 */
755 dwc->isoch_delay = wValue;
756
757 return 0;
758}
759
760static int dwc3_ep0_std_request(struct dwc3 *dwc, struct usb_ctrlrequest *ctrl)
761{
762 int ret;
763
764 switch (ctrl->bRequest) {
765 case USB_REQ_GET_STATUS:
766 ret = dwc3_ep0_handle_status(dwc, ctrl);
767 break;
768 case USB_REQ_CLEAR_FEATURE:
769 ret = dwc3_ep0_handle_feature(dwc, ctrl, 0);
770 break;
771 case USB_REQ_SET_FEATURE:
772 ret = dwc3_ep0_handle_feature(dwc, ctrl, 1);
773 break;
774 case USB_REQ_SET_ADDRESS:
775 ret = dwc3_ep0_set_address(dwc, ctrl);
776 break;
777 case USB_REQ_SET_CONFIGURATION:
778 ret = dwc3_ep0_set_config(dwc, ctrl);
779 break;
780 case USB_REQ_SET_SEL:
781 ret = dwc3_ep0_set_sel(dwc, ctrl);
782 break;
783 case USB_REQ_SET_ISOCH_DELAY:
784 ret = dwc3_ep0_set_isoch_delay(dwc, ctrl);
785 break;
786 default:
787 ret = dwc3_ep0_delegate_req(dwc, ctrl);
788 break;
789 }
790
791 return ret;
792}
793
794static void dwc3_ep0_inspect_setup(struct dwc3 *dwc,
795 const struct dwc3_event_depevt *event)
796{
797 struct usb_ctrlrequest *ctrl = dwc->ctrl_req;
798 int ret = -EINVAL;
799 u32 len;
800
801 if (!dwc->gadget_driver)
802 goto out;
803
804 trace_dwc3_ctrl_req(ctrl);
805
806 len = le16_to_cpu(ctrl->wLength);
807 if (!len) {
808 dwc->three_stage_setup = false;
809 dwc->ep0_expect_in = false;
810 dwc->ep0_next_event = DWC3_EP0_NRDY_STATUS;
811 } else {
812 dwc->three_stage_setup = true;
813 dwc->ep0_expect_in = !!(ctrl->bRequestType & USB_DIR_IN);
814 dwc->ep0_next_event = DWC3_EP0_NRDY_DATA;
815 }
816
817 if ((ctrl->bRequestType & USB_TYPE_MASK) == USB_TYPE_STANDARD)
818 ret = dwc3_ep0_std_request(dwc, ctrl);
819 else
820 ret = dwc3_ep0_delegate_req(dwc, ctrl);
821
822 if (ret == USB_GADGET_DELAYED_STATUS)
823 dwc->delayed_status = true;
824
825out:
826 if (ret < 0)
827 dwc3_ep0_stall_and_restart(dwc);
828}
829
830static void dwc3_ep0_complete_data(struct dwc3 *dwc,
831 const struct dwc3_event_depevt *event)
832{
833 struct dwc3_request *r = NULL;
834 struct usb_request *ur;
835 struct dwc3_trb *trb;
836 struct dwc3_ep *ep0;
837 unsigned transfer_size = 0;
838 unsigned maxp;
839 unsigned remaining_ur_length;
840 void *buf;
841 u32 transferred = 0;
842 u32 status;
843 u32 length;
844 u8 epnum;
845
846 epnum = event->endpoint_number;
847 ep0 = dwc->eps[0];
848
849 dwc->ep0_next_event = DWC3_EP0_NRDY_STATUS;
850
851 trb = dwc->ep0_trb;
852
853 trace_dwc3_complete_trb(ep0, trb);
854
855 r = next_request(&ep0->pending_list);
856 if (!r)
857 return;
858
859 status = DWC3_TRB_SIZE_TRBSTS(trb->size);
860 if (status == DWC3_TRBSTS_SETUP_PENDING) {
861 dwc->setup_packet_pending = true;
862 if (r)
863 dwc3_gadget_giveback(ep0, r, -ECONNRESET);
864
865 return;
866 }
867
868 ur = &r->request;
869 buf = ur->buf;
870 remaining_ur_length = ur->length;
871
872 length = trb->size & DWC3_TRB_SIZE_MASK;
873
874 maxp = ep0->endpoint.maxpacket;
875
876 if (dwc->ep0_bounced) {
877 /*
878 * Handle the first TRB before handling the bounce buffer if
879 * the request length is greater than the bounce buffer size
880 */
881 if (ur->length > DWC3_EP0_BOUNCE_SIZE) {
882 transfer_size = ALIGN(ur->length - maxp, maxp);
883 transferred = transfer_size - length;
884 buf = (u8 *)buf + transferred;
885 ur->actual += transferred;
886 remaining_ur_length -= transferred;
887
888 trb++;
889 length = trb->size & DWC3_TRB_SIZE_MASK;
890
891 ep0->trb_enqueue = 0;
892 }
893
894 transfer_size = roundup((ur->length - transfer_size),
895 maxp);
896
897 transferred = min_t(u32, remaining_ur_length,
898 transfer_size - length);
899 memcpy(buf, dwc->ep0_bounce, transferred);
900 } else {
901 transferred = ur->length - length;
902 }
903
904 ur->actual += transferred;
905
906 if ((epnum & 1) && ur->actual < ur->length) {
907 /* for some reason we did not get everything out */
908
909 dwc3_ep0_stall_and_restart(dwc);
910 } else {
911 dwc3_gadget_giveback(ep0, r, 0);
912
913 if (IS_ALIGNED(ur->length, ep0->endpoint.maxpacket) &&
914 ur->length && ur->zero) {
915 int ret;
916
917 dwc->ep0_next_event = DWC3_EP0_COMPLETE;
918
919 dwc3_ep0_prepare_one_trb(dwc, epnum, dwc->ctrl_req_addr,
920 0, DWC3_TRBCTL_CONTROL_DATA, false);
921 ret = dwc3_ep0_start_trans(dwc, epnum);
922 WARN_ON(ret < 0);
923 }
924 }
925}
926
927static void dwc3_ep0_complete_status(struct dwc3 *dwc,
928 const struct dwc3_event_depevt *event)
929{
930 struct dwc3_request *r;
931 struct dwc3_ep *dep;
932 struct dwc3_trb *trb;
933 u32 status;
934
935 dep = dwc->eps[0];
936 trb = dwc->ep0_trb;
937
938 trace_dwc3_complete_trb(dep, trb);
939
940 if (!list_empty(&dep->pending_list)) {
941 r = next_request(&dep->pending_list);
942
943 dwc3_gadget_giveback(dep, r, 0);
944 }
945
946 if (dwc->test_mode) {
947 int ret;
948
949 ret = dwc3_gadget_set_test_mode(dwc, dwc->test_mode_nr);
950 if (ret < 0) {
951 dev_err(dwc->dev, "invalid test #%d\n",
952 dwc->test_mode_nr);
953 dwc3_ep0_stall_and_restart(dwc);
954 return;
955 }
956 }
957
958 status = DWC3_TRB_SIZE_TRBSTS(trb->size);
959 if (status == DWC3_TRBSTS_SETUP_PENDING)
960 dwc->setup_packet_pending = true;
961
962 dwc->ep0state = EP0_SETUP_PHASE;
963 dwc3_ep0_out_start(dwc);
964}
965
966static void dwc3_ep0_xfer_complete(struct dwc3 *dwc,
967 const struct dwc3_event_depevt *event)
968{
969 struct dwc3_ep *dep = dwc->eps[event->endpoint_number];
970
971 dep->flags &= ~DWC3_EP_BUSY;
972 dep->resource_index = 0;
973 dwc->setup_packet_pending = false;
974
975 switch (dwc->ep0state) {
976 case EP0_SETUP_PHASE:
977 dwc3_ep0_inspect_setup(dwc, event);
978 break;
979
980 case EP0_DATA_PHASE:
981 dwc3_ep0_complete_data(dwc, event);
982 break;
983
984 case EP0_STATUS_PHASE:
985 dwc3_ep0_complete_status(dwc, event);
986 break;
987 default:
988 WARN(true, "UNKNOWN ep0state %d\n", dwc->ep0state);
989 }
990}
991
992static void __dwc3_ep0_do_control_data(struct dwc3 *dwc,
993 struct dwc3_ep *dep, struct dwc3_request *req)
994{
995 int ret;
996
997 req->direction = !!dep->number;
998
999 if (req->request.length == 0) {
1000 dwc3_ep0_prepare_one_trb(dwc, dep->number,
1001 dwc->ctrl_req_addr, 0,
1002 DWC3_TRBCTL_CONTROL_DATA, false);
1003 ret = dwc3_ep0_start_trans(dwc, dep->number);
1004 } else if (!IS_ALIGNED(req->request.length, dep->endpoint.maxpacket)
1005 && (dep->number == 0)) {
1006 u32 transfer_size = 0;
1007 u32 maxpacket;
1008
1009 ret = usb_gadget_map_request_by_dev(dwc->sysdev,
1010 &req->request, dep->number);
1011 if (ret)
1012 return;
1013
1014 maxpacket = dep->endpoint.maxpacket;
1015
1016 if (req->request.length > DWC3_EP0_BOUNCE_SIZE) {
1017 transfer_size = ALIGN(req->request.length - maxpacket,
1018 maxpacket);
1019 dwc3_ep0_prepare_one_trb(dwc, dep->number,
1020 req->request.dma,
1021 transfer_size,
1022 DWC3_TRBCTL_CONTROL_DATA,
1023 true);
1024 }
1025
1026 transfer_size = roundup((req->request.length - transfer_size),
1027 maxpacket);
1028
1029 dwc->ep0_bounced = true;
1030
1031 dwc3_ep0_prepare_one_trb(dwc, dep->number,
1032 dwc->ep0_bounce_addr, transfer_size,
1033 DWC3_TRBCTL_CONTROL_DATA, false);
1034 ret = dwc3_ep0_start_trans(dwc, dep->number);
1035 } else {
1036 ret = usb_gadget_map_request_by_dev(dwc->sysdev,
1037 &req->request, dep->number);
1038 if (ret)
1039 return;
1040
1041 dwc3_ep0_prepare_one_trb(dwc, dep->number, req->request.dma,
1042 req->request.length, DWC3_TRBCTL_CONTROL_DATA,
1043 false);
1044 ret = dwc3_ep0_start_trans(dwc, dep->number);
1045 }
1046
1047 WARN_ON(ret < 0);
1048}
1049
1050static int dwc3_ep0_start_control_status(struct dwc3_ep *dep)
1051{
1052 struct dwc3 *dwc = dep->dwc;
1053 u32 type;
1054
1055 type = dwc->three_stage_setup ? DWC3_TRBCTL_CONTROL_STATUS3
1056 : DWC3_TRBCTL_CONTROL_STATUS2;
1057
1058 dwc3_ep0_prepare_one_trb(dwc, dep->number,
1059 dwc->ctrl_req_addr, 0, type, false);
1060 return dwc3_ep0_start_trans(dwc, dep->number);
1061}
1062
1063static void __dwc3_ep0_do_control_status(struct dwc3 *dwc, struct dwc3_ep *dep)
1064{
1065 WARN_ON(dwc3_ep0_start_control_status(dep));
1066}
1067
1068static void dwc3_ep0_do_control_status(struct dwc3 *dwc,
1069 const struct dwc3_event_depevt *event)
1070{
1071 struct dwc3_ep *dep = dwc->eps[event->endpoint_number];
1072
1073 __dwc3_ep0_do_control_status(dwc, dep);
1074}
1075
1076static void dwc3_ep0_end_control_data(struct dwc3 *dwc, struct dwc3_ep *dep)
1077{
1078 struct dwc3_gadget_ep_cmd_params params;
1079 u32 cmd;
1080 int ret;
1081
1082 if (!dep->resource_index)
1083 return;
1084
1085 cmd = DWC3_DEPCMD_ENDTRANSFER;
1086 cmd |= DWC3_DEPCMD_CMDIOC;
1087 cmd |= DWC3_DEPCMD_PARAM(dep->resource_index);
1088 memset(¶ms, 0, sizeof(params));
1089 ret = dwc3_send_gadget_ep_cmd(dep, cmd, ¶ms);
1090 WARN_ON_ONCE(ret);
1091 dep->resource_index = 0;
1092}
1093
1094static void dwc3_ep0_xfernotready(struct dwc3 *dwc,
1095 const struct dwc3_event_depevt *event)
1096{
1097 switch (event->status) {
1098 case DEPEVT_STATUS_CONTROL_DATA:
1099 /*
1100 * We already have a DATA transfer in the controller's cache,
1101 * if we receive a XferNotReady(DATA) we will ignore it, unless
1102 * it's for the wrong direction.
1103 *
1104 * In that case, we must issue END_TRANSFER command to the Data
1105 * Phase we already have started and issue SetStall on the
1106 * control endpoint.
1107 */
1108 if (dwc->ep0_expect_in != event->endpoint_number) {
1109 struct dwc3_ep *dep = dwc->eps[dwc->ep0_expect_in];
1110
1111 dev_err(dwc->dev, "unexpected direction for Data Phase\n");
1112 dwc3_ep0_end_control_data(dwc, dep);
1113 dwc3_ep0_stall_and_restart(dwc);
1114 return;
1115 }
1116
1117 break;
1118
1119 case DEPEVT_STATUS_CONTROL_STATUS:
1120 if (dwc->ep0_next_event != DWC3_EP0_NRDY_STATUS)
1121 return;
1122
1123 dwc->ep0state = EP0_STATUS_PHASE;
1124
1125 if (dwc->delayed_status) {
1126 WARN_ON_ONCE(event->endpoint_number != 1);
1127 return;
1128 }
1129
1130 dwc3_ep0_do_control_status(dwc, event);
1131 }
1132}
1133
1134void dwc3_ep0_interrupt(struct dwc3 *dwc,
1135 const struct dwc3_event_depevt *event)
1136{
1137 switch (event->endpoint_event) {
1138 case DWC3_DEPEVT_XFERCOMPLETE:
1139 dwc3_ep0_xfer_complete(dwc, event);
1140 break;
1141
1142 case DWC3_DEPEVT_XFERNOTREADY:
1143 dwc3_ep0_xfernotready(dwc, event);
1144 break;
1145
1146 case DWC3_DEPEVT_XFERINPROGRESS:
1147 case DWC3_DEPEVT_RXTXFIFOEVT:
1148 case DWC3_DEPEVT_STREAMEVT:
1149 case DWC3_DEPEVT_EPCMDCMPLT:
1150 break;
1151 }
1152}