USB: xhci: Make debugging more verbose.
[linux-2.6] / drivers / usb / host / xhci-ring.c
1 /*
2  * xHCI host controller driver
3  *
4  * Copyright (C) 2008 Intel Corp.
5  *
6  * Author: Sarah Sharp
7  * Some code borrowed from the Linux EHCI driver.
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 as
11  * published by the Free Software Foundation.
12  *
13  * This program is distributed in the hope that it will be useful, but
14  * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15  * or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
16  * for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program; if not, write to the Free Software Foundation,
20  * Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21  */
22
23 /*
24  * Ring initialization rules:
25  * 1. Each segment is initialized to zero, except for link TRBs.
26  * 2. Ring cycle state = 0.  This represents Producer Cycle State (PCS) or
27  *    Consumer Cycle State (CCS), depending on ring function.
28  * 3. Enqueue pointer = dequeue pointer = address of first TRB in the segment.
29  *
30  * Ring behavior rules:
31  * 1. A ring is empty if enqueue == dequeue.  This means there will always be at
32  *    least one free TRB in the ring.  This is useful if you want to turn that
33  *    into a link TRB and expand the ring.
34  * 2. When incrementing an enqueue or dequeue pointer, if the next TRB is a
35  *    link TRB, then load the pointer with the address in the link TRB.  If the
36  *    link TRB had its toggle bit set, you may need to update the ring cycle
37  *    state (see cycle bit rules).  You may have to do this multiple times
38  *    until you reach a non-link TRB.
39  * 3. A ring is full if enqueue++ (for the definition of increment above)
40  *    equals the dequeue pointer.
41  *
42  * Cycle bit rules:
43  * 1. When a consumer increments a dequeue pointer and encounters a toggle bit
44  *    in a link TRB, it must toggle the ring cycle state.
45  * 2. When a producer increments an enqueue pointer and encounters a toggle bit
46  *    in a link TRB, it must toggle the ring cycle state.
47  *
48  * Producer rules:
49  * 1. Check if ring is full before you enqueue.
50  * 2. Write the ring cycle state to the cycle bit in the TRB you're enqueuing.
51  *    Update enqueue pointer between each write (which may update the ring
52  *    cycle state).
53  * 3. Notify consumer.  If SW is producer, it rings the doorbell for command
54  *    and endpoint rings.  If HC is the producer for the event ring,
55  *    and it generates an interrupt according to interrupt modulation rules.
56  *
57  * Consumer rules:
58  * 1. Check if TRB belongs to you.  If the cycle bit == your ring cycle state,
59  *    the TRB is owned by the consumer.
60  * 2. Update dequeue pointer (which may update the ring cycle state) and
61  *    continue processing TRBs until you reach a TRB which is not owned by you.
62  * 3. Notify the producer.  SW is the consumer for the event ring, and it
63  *   updates event ring dequeue pointer.  HC is the consumer for the command and
64  *   endpoint rings; it generates events on the event ring for these.
65  */
66
67 #include <linux/scatterlist.h>
68 #include "xhci.h"
69
70 /*
71  * Returns zero if the TRB isn't in this segment, otherwise it returns the DMA
72  * address of the TRB.
73  */
74 dma_addr_t xhci_trb_virt_to_dma(struct xhci_segment *seg,
75                 union xhci_trb *trb)
76 {
77         unsigned long segment_offset;
78
79         if (!seg || !trb || trb < seg->trbs)
80                 return 0;
81         /* offset in TRBs */
82         segment_offset = trb - seg->trbs;
83         if (segment_offset > TRBS_PER_SEGMENT)
84                 return 0;
85         return seg->dma + (segment_offset * sizeof(*trb));
86 }
87
88 /* Does this link TRB point to the first segment in a ring,
89  * or was the previous TRB the last TRB on the last segment in the ERST?
90  */
91 static inline bool last_trb_on_last_seg(struct xhci_hcd *xhci, struct xhci_ring *ring,
92                 struct xhci_segment *seg, union xhci_trb *trb)
93 {
94         if (ring == xhci->event_ring)
95                 return (trb == &seg->trbs[TRBS_PER_SEGMENT]) &&
96                         (seg->next == xhci->event_ring->first_seg);
97         else
98                 return trb->link.control & LINK_TOGGLE;
99 }
100
101 /* Is this TRB a link TRB or was the last TRB the last TRB in this event ring
102  * segment?  I.e. would the updated event TRB pointer step off the end of the
103  * event seg?
104  */
105 static inline int last_trb(struct xhci_hcd *xhci, struct xhci_ring *ring,
106                 struct xhci_segment *seg, union xhci_trb *trb)
107 {
108         if (ring == xhci->event_ring)
109                 return trb == &seg->trbs[TRBS_PER_SEGMENT];
110         else
111                 return (trb->link.control & TRB_TYPE_BITMASK) == TRB_TYPE(TRB_LINK);
112 }
113
114 /* Updates trb to point to the next TRB in the ring, and updates seg if the next
115  * TRB is in a new segment.  This does not skip over link TRBs, and it does not
116  * effect the ring dequeue or enqueue pointers.
117  */
118 static void next_trb(struct xhci_hcd *xhci,
119                 struct xhci_ring *ring,
120                 struct xhci_segment **seg,
121                 union xhci_trb **trb)
122 {
123         if (last_trb(xhci, ring, *seg, *trb)) {
124                 *seg = (*seg)->next;
125                 *trb = ((*seg)->trbs);
126         } else {
127                 *trb = (*trb)++;
128         }
129 }
130
131 /*
132  * See Cycle bit rules. SW is the consumer for the event ring only.
133  * Don't make a ring full of link TRBs.  That would be dumb and this would loop.
134  */
135 static void inc_deq(struct xhci_hcd *xhci, struct xhci_ring *ring, bool consumer)
136 {
137         union xhci_trb *next = ++(ring->dequeue);
138         unsigned long long addr;
139
140         ring->deq_updates++;
141         /* Update the dequeue pointer further if that was a link TRB or we're at
142          * the end of an event ring segment (which doesn't have link TRBS)
143          */
144         while (last_trb(xhci, ring, ring->deq_seg, next)) {
145                 if (consumer && last_trb_on_last_seg(xhci, ring, ring->deq_seg, next)) {
146                         ring->cycle_state = (ring->cycle_state ? 0 : 1);
147                         if (!in_interrupt())
148                                 xhci_dbg(xhci, "Toggle cycle state for ring %p = %i\n",
149                                                 ring,
150                                                 (unsigned int) ring->cycle_state);
151                 }
152                 ring->deq_seg = ring->deq_seg->next;
153                 ring->dequeue = ring->deq_seg->trbs;
154                 next = ring->dequeue;
155         }
156         addr = (unsigned long long) xhci_trb_virt_to_dma(ring->deq_seg, ring->dequeue);
157         if (ring == xhci->event_ring)
158                 xhci_dbg(xhci, "Event ring deq = 0x%llx (DMA)\n", addr);
159         else if (ring == xhci->cmd_ring)
160                 xhci_dbg(xhci, "Command ring deq = 0x%llx (DMA)\n", addr);
161         else
162                 xhci_dbg(xhci, "Ring deq = 0x%llx (DMA)\n", addr);
163 }
164
165 /*
166  * See Cycle bit rules. SW is the consumer for the event ring only.
167  * Don't make a ring full of link TRBs.  That would be dumb and this would loop.
168  *
169  * If we've just enqueued a TRB that is in the middle of a TD (meaning the
170  * chain bit is set), then set the chain bit in all the following link TRBs.
171  * If we've enqueued the last TRB in a TD, make sure the following link TRBs
172  * have their chain bit cleared (so that each Link TRB is a separate TD).
173  *
174  * Section 6.4.4.1 of the 0.95 spec says link TRBs cannot have the chain bit
175  * set, but other sections talk about dealing with the chain bit set.
176  * Assume section 6.4.4.1 is wrong, and the chain bit can be set in a Link TRB.
177  */
178 static void inc_enq(struct xhci_hcd *xhci, struct xhci_ring *ring, bool consumer)
179 {
180         u32 chain;
181         union xhci_trb *next;
182         unsigned long long addr;
183
184         chain = ring->enqueue->generic.field[3] & TRB_CHAIN;
185         next = ++(ring->enqueue);
186
187         ring->enq_updates++;
188         /* Update the dequeue pointer further if that was a link TRB or we're at
189          * the end of an event ring segment (which doesn't have link TRBS)
190          */
191         while (last_trb(xhci, ring, ring->enq_seg, next)) {
192                 if (!consumer) {
193                         if (ring != xhci->event_ring) {
194                                 next->link.control &= ~TRB_CHAIN;
195                                 next->link.control |= chain;
196                                 /* Give this link TRB to the hardware */
197                                 wmb();
198                                 if (next->link.control & TRB_CYCLE)
199                                         next->link.control &= (u32) ~TRB_CYCLE;
200                                 else
201                                         next->link.control |= (u32) TRB_CYCLE;
202                         }
203                         /* Toggle the cycle bit after the last ring segment. */
204                         if (last_trb_on_last_seg(xhci, ring, ring->enq_seg, next)) {
205                                 ring->cycle_state = (ring->cycle_state ? 0 : 1);
206                                 if (!in_interrupt())
207                                         xhci_dbg(xhci, "Toggle cycle state for ring %p = %i\n",
208                                                         ring,
209                                                         (unsigned int) ring->cycle_state);
210                         }
211                 }
212                 ring->enq_seg = ring->enq_seg->next;
213                 ring->enqueue = ring->enq_seg->trbs;
214                 next = ring->enqueue;
215         }
216         addr = (unsigned long long) xhci_trb_virt_to_dma(ring->enq_seg, ring->enqueue);
217         if (ring == xhci->event_ring)
218                 xhci_dbg(xhci, "Event ring enq = 0x%llx (DMA)\n", addr);
219         else if (ring == xhci->cmd_ring)
220                 xhci_dbg(xhci, "Command ring enq = 0x%llx (DMA)\n", addr);
221         else
222                 xhci_dbg(xhci, "Ring enq = 0x%llx (DMA)\n", addr);
223 }
224
225 /*
226  * Check to see if there's room to enqueue num_trbs on the ring.  See rules
227  * above.
228  * FIXME: this would be simpler and faster if we just kept track of the number
229  * of free TRBs in a ring.
230  */
231 static int room_on_ring(struct xhci_hcd *xhci, struct xhci_ring *ring,
232                 unsigned int num_trbs)
233 {
234         int i;
235         union xhci_trb *enq = ring->enqueue;
236         struct xhci_segment *enq_seg = ring->enq_seg;
237
238         /* Check if ring is empty */
239         if (enq == ring->dequeue)
240                 return 1;
241         /* Make sure there's an extra empty TRB available */
242         for (i = 0; i <= num_trbs; ++i) {
243                 if (enq == ring->dequeue)
244                         return 0;
245                 enq++;
246                 while (last_trb(xhci, ring, enq_seg, enq)) {
247                         enq_seg = enq_seg->next;
248                         enq = enq_seg->trbs;
249                 }
250         }
251         return 1;
252 }
253
254 void xhci_set_hc_event_deq(struct xhci_hcd *xhci)
255 {
256         u64 temp;
257         dma_addr_t deq;
258
259         deq = xhci_trb_virt_to_dma(xhci->event_ring->deq_seg,
260                         xhci->event_ring->dequeue);
261         if (deq == 0 && !in_interrupt())
262                 xhci_warn(xhci, "WARN something wrong with SW event ring "
263                                 "dequeue ptr.\n");
264         /* Update HC event ring dequeue pointer */
265         temp = xhci_read_64(xhci, &xhci->ir_set->erst_dequeue);
266         temp &= ERST_PTR_MASK;
267         /* Don't clear the EHB bit (which is RW1C) because
268          * there might be more events to service.
269          */
270         temp &= ~ERST_EHB;
271         xhci_dbg(xhci, "// Write event ring dequeue pointer, preserving EHB bit\n");
272         xhci_write_64(xhci, ((u64) deq & (u64) ~ERST_PTR_MASK) | temp,
273                         &xhci->ir_set->erst_dequeue);
274 }
275
276 /* Ring the host controller doorbell after placing a command on the ring */
277 void xhci_ring_cmd_db(struct xhci_hcd *xhci)
278 {
279         u32 temp;
280
281         xhci_dbg(xhci, "// Ding dong!\n");
282         temp = xhci_readl(xhci, &xhci->dba->doorbell[0]) & DB_MASK;
283         xhci_writel(xhci, temp | DB_TARGET_HOST, &xhci->dba->doorbell[0]);
284         /* Flush PCI posted writes */
285         xhci_readl(xhci, &xhci->dba->doorbell[0]);
286 }
287
288 static void ring_ep_doorbell(struct xhci_hcd *xhci,
289                 unsigned int slot_id,
290                 unsigned int ep_index)
291 {
292         struct xhci_ring *ep_ring;
293         u32 field;
294         __u32 __iomem *db_addr = &xhci->dba->doorbell[slot_id];
295
296         ep_ring = xhci->devs[slot_id]->ep_rings[ep_index];
297         /* Don't ring the doorbell for this endpoint if there are pending
298          * cancellations because the we don't want to interrupt processing.
299          */
300         if (!ep_ring->cancels_pending && !(ep_ring->state & SET_DEQ_PENDING)
301                         && !(ep_ring->state & EP_HALTED)) {
302                 field = xhci_readl(xhci, db_addr) & DB_MASK;
303                 xhci_writel(xhci, field | EPI_TO_DB(ep_index), db_addr);
304                 /* Flush PCI posted writes - FIXME Matthew Wilcox says this
305                  * isn't time-critical and we shouldn't make the CPU wait for
306                  * the flush.
307                  */
308                 xhci_readl(xhci, db_addr);
309         }
310 }
311
312 /*
313  * Find the segment that trb is in.  Start searching in start_seg.
314  * If we must move past a segment that has a link TRB with a toggle cycle state
315  * bit set, then we will toggle the value pointed at by cycle_state.
316  */
317 static struct xhci_segment *find_trb_seg(
318                 struct xhci_segment *start_seg,
319                 union xhci_trb  *trb, int *cycle_state)
320 {
321         struct xhci_segment *cur_seg = start_seg;
322         struct xhci_generic_trb *generic_trb;
323
324         while (cur_seg->trbs > trb ||
325                         &cur_seg->trbs[TRBS_PER_SEGMENT - 1] < trb) {
326                 generic_trb = &cur_seg->trbs[TRBS_PER_SEGMENT - 1].generic;
327                 if (TRB_TYPE(generic_trb->field[3]) == TRB_LINK &&
328                                 (generic_trb->field[3] & LINK_TOGGLE))
329                         *cycle_state = ~(*cycle_state) & 0x1;
330                 cur_seg = cur_seg->next;
331                 if (cur_seg == start_seg)
332                         /* Looped over the entire list.  Oops! */
333                         return 0;
334         }
335         return cur_seg;
336 }
337
338 struct dequeue_state {
339         struct xhci_segment *new_deq_seg;
340         union xhci_trb *new_deq_ptr;
341         int new_cycle_state;
342 };
343
344 /*
345  * Move the xHC's endpoint ring dequeue pointer past cur_td.
346  * Record the new state of the xHC's endpoint ring dequeue segment,
347  * dequeue pointer, and new consumer cycle state in state.
348  * Update our internal representation of the ring's dequeue pointer.
349  *
350  * We do this in three jumps:
351  *  - First we update our new ring state to be the same as when the xHC stopped.
352  *  - Then we traverse the ring to find the segment that contains
353  *    the last TRB in the TD.  We toggle the xHC's new cycle state when we pass
354  *    any link TRBs with the toggle cycle bit set.
355  *  - Finally we move the dequeue state one TRB further, toggling the cycle bit
356  *    if we've moved it past a link TRB with the toggle cycle bit set.
357  */
358 static void find_new_dequeue_state(struct xhci_hcd *xhci,
359                 unsigned int slot_id, unsigned int ep_index,
360                 struct xhci_td *cur_td, struct dequeue_state *state)
361 {
362         struct xhci_virt_device *dev = xhci->devs[slot_id];
363         struct xhci_ring *ep_ring = dev->ep_rings[ep_index];
364         struct xhci_generic_trb *trb;
365
366         state->new_cycle_state = 0;
367         state->new_deq_seg = find_trb_seg(cur_td->start_seg,
368                         ep_ring->stopped_trb,
369                         &state->new_cycle_state);
370         if (!state->new_deq_seg)
371                 BUG();
372         /* Dig out the cycle state saved by the xHC during the stop ep cmd */
373         state->new_cycle_state = 0x1 & dev->out_ctx->ep[ep_index].deq;
374
375         state->new_deq_ptr = cur_td->last_trb;
376         state->new_deq_seg = find_trb_seg(state->new_deq_seg,
377                         state->new_deq_ptr,
378                         &state->new_cycle_state);
379         if (!state->new_deq_seg)
380                 BUG();
381
382         trb = &state->new_deq_ptr->generic;
383         if (TRB_TYPE(trb->field[3]) == TRB_LINK &&
384                                 (trb->field[3] & LINK_TOGGLE))
385                 state->new_cycle_state = ~(state->new_cycle_state) & 0x1;
386         next_trb(xhci, ep_ring, &state->new_deq_seg, &state->new_deq_ptr);
387
388         /* Don't update the ring cycle state for the producer (us). */
389         ep_ring->dequeue = state->new_deq_ptr;
390         ep_ring->deq_seg = state->new_deq_seg;
391 }
392
393 static void td_to_noop(struct xhci_hcd *xhci, struct xhci_ring *ep_ring,
394                 struct xhci_td *cur_td)
395 {
396         struct xhci_segment *cur_seg;
397         union xhci_trb *cur_trb;
398
399         for (cur_seg = cur_td->start_seg, cur_trb = cur_td->first_trb;
400                         true;
401                         next_trb(xhci, ep_ring, &cur_seg, &cur_trb)) {
402                 if ((cur_trb->generic.field[3] & TRB_TYPE_BITMASK) ==
403                                 TRB_TYPE(TRB_LINK)) {
404                         /* Unchain any chained Link TRBs, but
405                          * leave the pointers intact.
406                          */
407                         cur_trb->generic.field[3] &= ~TRB_CHAIN;
408                         xhci_dbg(xhci, "Cancel (unchain) link TRB\n");
409                         xhci_dbg(xhci, "Address = %p (0x%llx dma); "
410                                         "in seg %p (0x%llx dma)\n",
411                                         cur_trb,
412                                         (unsigned long long)xhci_trb_virt_to_dma(cur_seg, cur_trb),
413                                         cur_seg,
414                                         (unsigned long long)cur_seg->dma);
415                 } else {
416                         cur_trb->generic.field[0] = 0;
417                         cur_trb->generic.field[1] = 0;
418                         cur_trb->generic.field[2] = 0;
419                         /* Preserve only the cycle bit of this TRB */
420                         cur_trb->generic.field[3] &= TRB_CYCLE;
421                         cur_trb->generic.field[3] |= TRB_TYPE(TRB_TR_NOOP);
422                         xhci_dbg(xhci, "Cancel TRB %p (0x%llx dma) "
423                                         "in seg %p (0x%llx dma)\n",
424                                         cur_trb,
425                                         (unsigned long long)xhci_trb_virt_to_dma(cur_seg, cur_trb),
426                                         cur_seg,
427                                         (unsigned long long)cur_seg->dma);
428                 }
429                 if (cur_trb == cur_td->last_trb)
430                         break;
431         }
432 }
433
434 static int queue_set_tr_deq(struct xhci_hcd *xhci, int slot_id,
435                 unsigned int ep_index, struct xhci_segment *deq_seg,
436                 union xhci_trb *deq_ptr, u32 cycle_state);
437
438 /*
439  * When we get a command completion for a Stop Endpoint Command, we need to
440  * unlink any cancelled TDs from the ring.  There are two ways to do that:
441  *
442  *  1. If the HW was in the middle of processing the TD that needs to be
443  *     cancelled, then we must move the ring's dequeue pointer past the last TRB
444  *     in the TD with a Set Dequeue Pointer Command.
445  *  2. Otherwise, we turn all the TRBs in the TD into No-op TRBs (with the chain
446  *     bit cleared) so that the HW will skip over them.
447  */
448 static void handle_stopped_endpoint(struct xhci_hcd *xhci,
449                 union xhci_trb *trb)
450 {
451         unsigned int slot_id;
452         unsigned int ep_index;
453         struct xhci_ring *ep_ring;
454         struct list_head *entry;
455         struct xhci_td *cur_td = 0;
456         struct xhci_td *last_unlinked_td;
457
458         struct dequeue_state deq_state;
459 #ifdef CONFIG_USB_HCD_STAT
460         ktime_t stop_time = ktime_get();
461 #endif
462
463         memset(&deq_state, 0, sizeof(deq_state));
464         slot_id = TRB_TO_SLOT_ID(trb->generic.field[3]);
465         ep_index = TRB_TO_EP_INDEX(trb->generic.field[3]);
466         ep_ring = xhci->devs[slot_id]->ep_rings[ep_index];
467
468         if (list_empty(&ep_ring->cancelled_td_list))
469                 return;
470
471         /* Fix up the ep ring first, so HW stops executing cancelled TDs.
472          * We have the xHCI lock, so nothing can modify this list until we drop
473          * it.  We're also in the event handler, so we can't get re-interrupted
474          * if another Stop Endpoint command completes
475          */
476         list_for_each(entry, &ep_ring->cancelled_td_list) {
477                 cur_td = list_entry(entry, struct xhci_td, cancelled_td_list);
478                 xhci_dbg(xhci, "Cancelling TD starting at %p, 0x%llx (dma).\n",
479                                 cur_td->first_trb,
480                                 (unsigned long long)xhci_trb_virt_to_dma(cur_td->start_seg, cur_td->first_trb));
481                 /*
482                  * If we stopped on the TD we need to cancel, then we have to
483                  * move the xHC endpoint ring dequeue pointer past this TD.
484                  */
485                 if (cur_td == ep_ring->stopped_td)
486                         find_new_dequeue_state(xhci, slot_id, ep_index, cur_td,
487                                         &deq_state);
488                 else
489                         td_to_noop(xhci, ep_ring, cur_td);
490                 /*
491                  * The event handler won't see a completion for this TD anymore,
492                  * so remove it from the endpoint ring's TD list.  Keep it in
493                  * the cancelled TD list for URB completion later.
494                  */
495                 list_del(&cur_td->td_list);
496                 ep_ring->cancels_pending--;
497         }
498         last_unlinked_td = cur_td;
499
500         /* If necessary, queue a Set Transfer Ring Dequeue Pointer command */
501         if (deq_state.new_deq_ptr && deq_state.new_deq_seg) {
502                 xhci_dbg(xhci, "Set TR Deq Ptr cmd, new deq seg = %p (0x%llx dma), "
503                                 "new deq ptr = %p (0x%llx dma), new cycle = %u\n",
504                                 deq_state.new_deq_seg,
505                                 (unsigned long long)deq_state.new_deq_seg->dma,
506                                 deq_state.new_deq_ptr,
507                                 (unsigned long long)xhci_trb_virt_to_dma(deq_state.new_deq_seg, deq_state.new_deq_ptr),
508                                 deq_state.new_cycle_state);
509                 queue_set_tr_deq(xhci, slot_id, ep_index,
510                                 deq_state.new_deq_seg,
511                                 deq_state.new_deq_ptr,
512                                 (u32) deq_state.new_cycle_state);
513                 /* Stop the TD queueing code from ringing the doorbell until
514                  * this command completes.  The HC won't set the dequeue pointer
515                  * if the ring is running, and ringing the doorbell starts the
516                  * ring running.
517                  */
518                 ep_ring->state |= SET_DEQ_PENDING;
519                 xhci_ring_cmd_db(xhci);
520         } else {
521                 /* Otherwise just ring the doorbell to restart the ring */
522                 ring_ep_doorbell(xhci, slot_id, ep_index);
523         }
524
525         /*
526          * Drop the lock and complete the URBs in the cancelled TD list.
527          * New TDs to be cancelled might be added to the end of the list before
528          * we can complete all the URBs for the TDs we already unlinked.
529          * So stop when we've completed the URB for the last TD we unlinked.
530          */
531         do {
532                 cur_td = list_entry(ep_ring->cancelled_td_list.next,
533                                 struct xhci_td, cancelled_td_list);
534                 list_del(&cur_td->cancelled_td_list);
535
536                 /* Clean up the cancelled URB */
537 #ifdef CONFIG_USB_HCD_STAT
538                 hcd_stat_update(xhci->tp_stat, cur_td->urb->actual_length,
539                                 ktime_sub(stop_time, cur_td->start_time));
540 #endif
541                 cur_td->urb->hcpriv = NULL;
542                 usb_hcd_unlink_urb_from_ep(xhci_to_hcd(xhci), cur_td->urb);
543
544                 xhci_dbg(xhci, "Giveback cancelled URB %p\n", cur_td->urb);
545                 spin_unlock(&xhci->lock);
546                 /* Doesn't matter what we pass for status, since the core will
547                  * just overwrite it (because the URB has been unlinked).
548                  */
549                 usb_hcd_giveback_urb(xhci_to_hcd(xhci), cur_td->urb, 0);
550                 kfree(cur_td);
551
552                 spin_lock(&xhci->lock);
553         } while (cur_td != last_unlinked_td);
554
555         /* Return to the event handler with xhci->lock re-acquired */
556 }
557
558 /*
559  * When we get a completion for a Set Transfer Ring Dequeue Pointer command,
560  * we need to clear the set deq pending flag in the endpoint ring state, so that
561  * the TD queueing code can ring the doorbell again.  We also need to ring the
562  * endpoint doorbell to restart the ring, but only if there aren't more
563  * cancellations pending.
564  */
565 static void handle_set_deq_completion(struct xhci_hcd *xhci,
566                 struct xhci_event_cmd *event,
567                 union xhci_trb *trb)
568 {
569         unsigned int slot_id;
570         unsigned int ep_index;
571         struct xhci_ring *ep_ring;
572         struct xhci_virt_device *dev;
573
574         slot_id = TRB_TO_SLOT_ID(trb->generic.field[3]);
575         ep_index = TRB_TO_EP_INDEX(trb->generic.field[3]);
576         dev = xhci->devs[slot_id];
577         ep_ring = dev->ep_rings[ep_index];
578
579         if (GET_COMP_CODE(event->status) != COMP_SUCCESS) {
580                 unsigned int ep_state;
581                 unsigned int slot_state;
582
583                 switch (GET_COMP_CODE(event->status)) {
584                 case COMP_TRB_ERR:
585                         xhci_warn(xhci, "WARN Set TR Deq Ptr cmd invalid because "
586                                         "of stream ID configuration\n");
587                         break;
588                 case COMP_CTX_STATE:
589                         xhci_warn(xhci, "WARN Set TR Deq Ptr cmd failed due "
590                                         "to incorrect slot or ep state.\n");
591                         ep_state = dev->out_ctx->ep[ep_index].ep_info;
592                         ep_state &= EP_STATE_MASK;
593                         slot_state = dev->out_ctx->slot.dev_state;
594                         slot_state = GET_SLOT_STATE(slot_state);
595                         xhci_dbg(xhci, "Slot state = %u, EP state = %u\n",
596                                         slot_state, ep_state);
597                         break;
598                 case COMP_EBADSLT:
599                         xhci_warn(xhci, "WARN Set TR Deq Ptr cmd failed because "
600                                         "slot %u was not enabled.\n", slot_id);
601                         break;
602                 default:
603                         xhci_warn(xhci, "WARN Set TR Deq Ptr cmd with unknown "
604                                         "completion code of %u.\n",
605                                         GET_COMP_CODE(event->status));
606                         break;
607                 }
608                 /* OK what do we do now?  The endpoint state is hosed, and we
609                  * should never get to this point if the synchronization between
610                  * queueing, and endpoint state are correct.  This might happen
611                  * if the device gets disconnected after we've finished
612                  * cancelling URBs, which might not be an error...
613                  */
614         } else {
615                 xhci_dbg(xhci, "Successful Set TR Deq Ptr cmd, deq = @%08llx\n",
616                                 dev->out_ctx->ep[ep_index].deq);
617         }
618
619         ep_ring->state &= ~SET_DEQ_PENDING;
620         ring_ep_doorbell(xhci, slot_id, ep_index);
621 }
622
623 static void handle_reset_ep_completion(struct xhci_hcd *xhci,
624                 struct xhci_event_cmd *event,
625                 union xhci_trb *trb)
626 {
627         int slot_id;
628         unsigned int ep_index;
629
630         slot_id = TRB_TO_SLOT_ID(trb->generic.field[3]);
631         ep_index = TRB_TO_EP_INDEX(trb->generic.field[3]);
632         /* This command will only fail if the endpoint wasn't halted,
633          * but we don't care.
634          */
635         xhci_dbg(xhci, "Ignoring reset ep completion code of %u\n",
636                         (unsigned int) GET_COMP_CODE(event->status));
637
638         /* Clear our internal halted state and restart the ring */
639         xhci->devs[slot_id]->ep_rings[ep_index]->state &= ~EP_HALTED;
640         ring_ep_doorbell(xhci, slot_id, ep_index);
641 }
642
643 static void handle_cmd_completion(struct xhci_hcd *xhci,
644                 struct xhci_event_cmd *event)
645 {
646         int slot_id = TRB_TO_SLOT_ID(event->flags);
647         u64 cmd_dma;
648         dma_addr_t cmd_dequeue_dma;
649
650         cmd_dma = event->cmd_trb;
651         cmd_dequeue_dma = xhci_trb_virt_to_dma(xhci->cmd_ring->deq_seg,
652                         xhci->cmd_ring->dequeue);
653         /* Is the command ring deq ptr out of sync with the deq seg ptr? */
654         if (cmd_dequeue_dma == 0) {
655                 xhci->error_bitmask |= 1 << 4;
656                 return;
657         }
658         /* Does the DMA address match our internal dequeue pointer address? */
659         if (cmd_dma != (u64) cmd_dequeue_dma) {
660                 xhci->error_bitmask |= 1 << 5;
661                 return;
662         }
663         switch (xhci->cmd_ring->dequeue->generic.field[3] & TRB_TYPE_BITMASK) {
664         case TRB_TYPE(TRB_ENABLE_SLOT):
665                 if (GET_COMP_CODE(event->status) == COMP_SUCCESS)
666                         xhci->slot_id = slot_id;
667                 else
668                         xhci->slot_id = 0;
669                 complete(&xhci->addr_dev);
670                 break;
671         case TRB_TYPE(TRB_DISABLE_SLOT):
672                 if (xhci->devs[slot_id])
673                         xhci_free_virt_device(xhci, slot_id);
674                 break;
675         case TRB_TYPE(TRB_CONFIG_EP):
676                 xhci->devs[slot_id]->cmd_status = GET_COMP_CODE(event->status);
677                 complete(&xhci->devs[slot_id]->cmd_completion);
678                 break;
679         case TRB_TYPE(TRB_ADDR_DEV):
680                 xhci->devs[slot_id]->cmd_status = GET_COMP_CODE(event->status);
681                 complete(&xhci->addr_dev);
682                 break;
683         case TRB_TYPE(TRB_STOP_RING):
684                 handle_stopped_endpoint(xhci, xhci->cmd_ring->dequeue);
685                 break;
686         case TRB_TYPE(TRB_SET_DEQ):
687                 handle_set_deq_completion(xhci, event, xhci->cmd_ring->dequeue);
688                 break;
689         case TRB_TYPE(TRB_CMD_NOOP):
690                 ++xhci->noops_handled;
691                 break;
692         case TRB_TYPE(TRB_RESET_EP):
693                 handle_reset_ep_completion(xhci, event, xhci->cmd_ring->dequeue);
694                 break;
695         default:
696                 /* Skip over unknown commands on the event ring */
697                 xhci->error_bitmask |= 1 << 6;
698                 break;
699         }
700         inc_deq(xhci, xhci->cmd_ring, false);
701 }
702
703 static void handle_port_status(struct xhci_hcd *xhci,
704                 union xhci_trb *event)
705 {
706         u32 port_id;
707
708         /* Port status change events always have a successful completion code */
709         if (GET_COMP_CODE(event->generic.field[2]) != COMP_SUCCESS) {
710                 xhci_warn(xhci, "WARN: xHC returned failed port status event\n");
711                 xhci->error_bitmask |= 1 << 8;
712         }
713         /* FIXME: core doesn't care about all port link state changes yet */
714         port_id = GET_PORT_ID(event->generic.field[0]);
715         xhci_dbg(xhci, "Port Status Change Event for port %d\n", port_id);
716
717         /* Update event ring dequeue pointer before dropping the lock */
718         inc_deq(xhci, xhci->event_ring, true);
719         xhci_set_hc_event_deq(xhci);
720
721         spin_unlock(&xhci->lock);
722         /* Pass this up to the core */
723         usb_hcd_poll_rh_status(xhci_to_hcd(xhci));
724         spin_lock(&xhci->lock);
725 }
726
727 /*
728  * This TD is defined by the TRBs starting at start_trb in start_seg and ending
729  * at end_trb, which may be in another segment.  If the suspect DMA address is a
730  * TRB in this TD, this function returns that TRB's segment.  Otherwise it
731  * returns 0.
732  */
733 static struct xhci_segment *trb_in_td(
734                 struct xhci_segment *start_seg,
735                 union xhci_trb  *start_trb,
736                 union xhci_trb  *end_trb,
737                 dma_addr_t      suspect_dma)
738 {
739         dma_addr_t start_dma;
740         dma_addr_t end_seg_dma;
741         dma_addr_t end_trb_dma;
742         struct xhci_segment *cur_seg;
743
744         start_dma = xhci_trb_virt_to_dma(start_seg, start_trb);
745         cur_seg = start_seg;
746
747         do {
748                 /* We may get an event for a Link TRB in the middle of a TD */
749                 end_seg_dma = xhci_trb_virt_to_dma(cur_seg,
750                                 &start_seg->trbs[TRBS_PER_SEGMENT - 1]);
751                 /* If the end TRB isn't in this segment, this is set to 0 */
752                 end_trb_dma = xhci_trb_virt_to_dma(cur_seg, end_trb);
753
754                 if (end_trb_dma > 0) {
755                         /* The end TRB is in this segment, so suspect should be here */
756                         if (start_dma <= end_trb_dma) {
757                                 if (suspect_dma >= start_dma && suspect_dma <= end_trb_dma)
758                                         return cur_seg;
759                         } else {
760                                 /* Case for one segment with
761                                  * a TD wrapped around to the top
762                                  */
763                                 if ((suspect_dma >= start_dma &&
764                                                         suspect_dma <= end_seg_dma) ||
765                                                 (suspect_dma >= cur_seg->dma &&
766                                                  suspect_dma <= end_trb_dma))
767                                         return cur_seg;
768                         }
769                         return 0;
770                 } else {
771                         /* Might still be somewhere in this segment */
772                         if (suspect_dma >= start_dma && suspect_dma <= end_seg_dma)
773                                 return cur_seg;
774                 }
775                 cur_seg = cur_seg->next;
776                 start_dma = xhci_trb_virt_to_dma(cur_seg, &cur_seg->trbs[0]);
777         } while (1);
778
779 }
780
781 /*
782  * If this function returns an error condition, it means it got a Transfer
783  * event with a corrupted Slot ID, Endpoint ID, or TRB DMA address.
784  * At this point, the host controller is probably hosed and should be reset.
785  */
786 static int handle_tx_event(struct xhci_hcd *xhci,
787                 struct xhci_transfer_event *event)
788 {
789         struct xhci_virt_device *xdev;
790         struct xhci_ring *ep_ring;
791         int ep_index;
792         struct xhci_td *td = 0;
793         dma_addr_t event_dma;
794         struct xhci_segment *event_seg;
795         union xhci_trb *event_trb;
796         struct urb *urb = 0;
797         int status = -EINPROGRESS;
798
799         xhci_dbg(xhci, "In %s\n", __func__);
800         xdev = xhci->devs[TRB_TO_SLOT_ID(event->flags)];
801         if (!xdev) {
802                 xhci_err(xhci, "ERROR Transfer event pointed to bad slot\n");
803                 return -ENODEV;
804         }
805
806         /* Endpoint ID is 1 based, our index is zero based */
807         ep_index = TRB_TO_EP_ID(event->flags) - 1;
808         xhci_dbg(xhci, "%s - ep index = %d\n", __func__, ep_index);
809         ep_ring = xdev->ep_rings[ep_index];
810         if (!ep_ring || (xdev->out_ctx->ep[ep_index].ep_info & EP_STATE_MASK) == EP_STATE_DISABLED) {
811                 xhci_err(xhci, "ERROR Transfer event pointed to disabled endpoint\n");
812                 return -ENODEV;
813         }
814
815         event_dma = event->buffer;
816         /* This TRB should be in the TD at the head of this ring's TD list */
817         xhci_dbg(xhci, "%s - checking for list empty\n", __func__);
818         if (list_empty(&ep_ring->td_list)) {
819                 xhci_warn(xhci, "WARN Event TRB for slot %d ep %d with no TDs queued?\n",
820                                 TRB_TO_SLOT_ID(event->flags), ep_index);
821                 xhci_dbg(xhci, "Event TRB with TRB type ID %u\n",
822                                 (unsigned int) (event->flags & TRB_TYPE_BITMASK)>>10);
823                 xhci_print_trb_offsets(xhci, (union xhci_trb *) event);
824                 urb = NULL;
825                 goto cleanup;
826         }
827         xhci_dbg(xhci, "%s - getting list entry\n", __func__);
828         td = list_entry(ep_ring->td_list.next, struct xhci_td, td_list);
829
830         /* Is this a TRB in the currently executing TD? */
831         xhci_dbg(xhci, "%s - looking for TD\n", __func__);
832         event_seg = trb_in_td(ep_ring->deq_seg, ep_ring->dequeue,
833                         td->last_trb, event_dma);
834         xhci_dbg(xhci, "%s - found event_seg = %p\n", __func__, event_seg);
835         if (!event_seg) {
836                 /* HC is busted, give up! */
837                 xhci_err(xhci, "ERROR Transfer event TRB DMA ptr not part of current TD\n");
838                 return -ESHUTDOWN;
839         }
840         event_trb = &event_seg->trbs[(event_dma - event_seg->dma) / sizeof(*event_trb)];
841         xhci_dbg(xhci, "Event TRB with TRB type ID %u\n",
842                         (unsigned int) (event->flags & TRB_TYPE_BITMASK)>>10);
843         xhci_dbg(xhci, "Offset 0x00 (buffer lo) = 0x%x\n",
844                         lower_32_bits(event->buffer));
845         xhci_dbg(xhci, "Offset 0x04 (buffer hi) = 0x%x\n",
846                         upper_32_bits(event->buffer));
847         xhci_dbg(xhci, "Offset 0x08 (transfer length) = 0x%x\n",
848                         (unsigned int) event->transfer_len);
849         xhci_dbg(xhci, "Offset 0x0C (flags) = 0x%x\n",
850                         (unsigned int) event->flags);
851
852         /* Look for common error cases */
853         switch (GET_COMP_CODE(event->transfer_len)) {
854         /* Skip codes that require special handling depending on
855          * transfer type
856          */
857         case COMP_SUCCESS:
858         case COMP_SHORT_TX:
859                 break;
860         case COMP_STOP:
861                 xhci_dbg(xhci, "Stopped on Transfer TRB\n");
862                 break;
863         case COMP_STOP_INVAL:
864                 xhci_dbg(xhci, "Stopped on No-op or Link TRB\n");
865                 break;
866         case COMP_STALL:
867                 xhci_warn(xhci, "WARN: Stalled endpoint\n");
868                 ep_ring->state |= EP_HALTED;
869                 status = -EPIPE;
870                 break;
871         case COMP_TRB_ERR:
872                 xhci_warn(xhci, "WARN: TRB error on endpoint\n");
873                 status = -EILSEQ;
874                 break;
875         case COMP_TX_ERR:
876                 xhci_warn(xhci, "WARN: transfer error on endpoint\n");
877                 status = -EPROTO;
878                 break;
879         case COMP_DB_ERR:
880                 xhci_warn(xhci, "WARN: HC couldn't access mem fast enough\n");
881                 status = -ENOSR;
882                 break;
883         default:
884                 xhci_warn(xhci, "ERROR Unknown event condition, HC probably busted\n");
885                 urb = NULL;
886                 goto cleanup;
887         }
888         /* Now update the urb's actual_length and give back to the core */
889         /* Was this a control transfer? */
890         if (usb_endpoint_xfer_control(&td->urb->ep->desc)) {
891                 xhci_debug_trb(xhci, xhci->event_ring->dequeue);
892                 switch (GET_COMP_CODE(event->transfer_len)) {
893                 case COMP_SUCCESS:
894                         if (event_trb == ep_ring->dequeue) {
895                                 xhci_warn(xhci, "WARN: Success on ctrl setup TRB without IOC set??\n");
896                                 status = -ESHUTDOWN;
897                         } else if (event_trb != td->last_trb) {
898                                 xhci_warn(xhci, "WARN: Success on ctrl data TRB without IOC set??\n");
899                                 status = -ESHUTDOWN;
900                         } else {
901                                 xhci_dbg(xhci, "Successful control transfer!\n");
902                                 status = 0;
903                         }
904                         break;
905                 case COMP_SHORT_TX:
906                         xhci_warn(xhci, "WARN: short transfer on control ep\n");
907                         status = -EREMOTEIO;
908                         break;
909                 default:
910                         /* Others already handled above */
911                         break;
912                 }
913                 /*
914                  * Did we transfer any data, despite the errors that might have
915                  * happened?  I.e. did we get past the setup stage?
916                  */
917                 if (event_trb != ep_ring->dequeue) {
918                         /* The event was for the status stage */
919                         if (event_trb == td->last_trb) {
920                                 /* Did we already see a short data stage? */
921                                 if (td->urb->actual_length != 0)
922                                         status = -EREMOTEIO;
923                                 else
924                                         td->urb->actual_length =
925                                                 td->urb->transfer_buffer_length;
926                         } else {
927                         /* Maybe the event was for the data stage? */
928                                 if (GET_COMP_CODE(event->transfer_len) != COMP_STOP_INVAL) {
929                                         /* We didn't stop on a link TRB in the middle */
930                                         td->urb->actual_length =
931                                                 td->urb->transfer_buffer_length -
932                                                 TRB_LEN(event->transfer_len);
933                                         xhci_dbg(xhci, "Waiting for status stage event\n");
934                                         urb = NULL;
935                                         goto cleanup;
936                                 }
937                         }
938                 }
939         } else {
940                 switch (GET_COMP_CODE(event->transfer_len)) {
941                 case COMP_SUCCESS:
942                         /* Double check that the HW transferred everything. */
943                         if (event_trb != td->last_trb) {
944                                 xhci_warn(xhci, "WARN Successful completion "
945                                                 "on short TX\n");
946                                 if (td->urb->transfer_flags & URB_SHORT_NOT_OK)
947                                         status = -EREMOTEIO;
948                                 else
949                                         status = 0;
950                         } else {
951                                 xhci_dbg(xhci, "Successful bulk transfer!\n");
952                                 status = 0;
953                         }
954                         break;
955                 case COMP_SHORT_TX:
956                         if (td->urb->transfer_flags & URB_SHORT_NOT_OK)
957                                 status = -EREMOTEIO;
958                         else
959                                 status = 0;
960                         break;
961                 default:
962                         /* Others already handled above */
963                         break;
964                 }
965                 dev_dbg(&td->urb->dev->dev,
966                                 "ep %#x - asked for %d bytes, "
967                                 "%d bytes untransferred\n",
968                                 td->urb->ep->desc.bEndpointAddress,
969                                 td->urb->transfer_buffer_length,
970                                 TRB_LEN(event->transfer_len));
971                 /* Fast path - was this the last TRB in the TD for this URB? */
972                 if (event_trb == td->last_trb) {
973                         if (TRB_LEN(event->transfer_len) != 0) {
974                                 td->urb->actual_length =
975                                         td->urb->transfer_buffer_length -
976                                         TRB_LEN(event->transfer_len);
977                                 if (td->urb->actual_length < 0) {
978                                         xhci_warn(xhci, "HC gave bad length "
979                                                         "of %d bytes left\n",
980                                                         TRB_LEN(event->transfer_len));
981                                         td->urb->actual_length = 0;
982                                 }
983                                 if (td->urb->transfer_flags & URB_SHORT_NOT_OK)
984                                         status = -EREMOTEIO;
985                                 else
986                                         status = 0;
987                         } else {
988                                 td->urb->actual_length = td->urb->transfer_buffer_length;
989                                 /* Ignore a short packet completion if the
990                                  * untransferred length was zero.
991                                  */
992                                 status = 0;
993                         }
994                 } else {
995                         /* Slow path - walk the list, starting from the dequeue
996                          * pointer, to get the actual length transferred.
997                          */
998                         union xhci_trb *cur_trb;
999                         struct xhci_segment *cur_seg;
1000
1001                         td->urb->actual_length = 0;
1002                         for (cur_trb = ep_ring->dequeue, cur_seg = ep_ring->deq_seg;
1003                                         cur_trb != event_trb;
1004                                         next_trb(xhci, ep_ring, &cur_seg, &cur_trb)) {
1005                                 if (TRB_TYPE(cur_trb->generic.field[3]) != TRB_TR_NOOP &&
1006                                                 TRB_TYPE(cur_trb->generic.field[3]) != TRB_LINK)
1007                                         td->urb->actual_length +=
1008                                                 TRB_LEN(cur_trb->generic.field[2]);
1009                         }
1010                         /* If the ring didn't stop on a Link or No-op TRB, add
1011                          * in the actual bytes transferred from the Normal TRB
1012                          */
1013                         if (GET_COMP_CODE(event->transfer_len) != COMP_STOP_INVAL)
1014                                 td->urb->actual_length +=
1015                                         TRB_LEN(cur_trb->generic.field[2]) -
1016                                         TRB_LEN(event->transfer_len);
1017                 }
1018         }
1019         /* The Endpoint Stop Command completion will take care of
1020          * any stopped TDs.  A stopped TD may be restarted, so don't update the
1021          * ring dequeue pointer or take this TD off any lists yet.
1022          */
1023         if (GET_COMP_CODE(event->transfer_len) == COMP_STOP_INVAL ||
1024                         GET_COMP_CODE(event->transfer_len) == COMP_STOP) {
1025                 ep_ring->stopped_td = td;
1026                 ep_ring->stopped_trb = event_trb;
1027         } else {
1028                 /* Update ring dequeue pointer */
1029                 while (ep_ring->dequeue != td->last_trb)
1030                         inc_deq(xhci, ep_ring, false);
1031                 inc_deq(xhci, ep_ring, false);
1032
1033                 /* Clean up the endpoint's TD list */
1034                 urb = td->urb;
1035                 list_del(&td->td_list);
1036                 /* Was this TD slated to be cancelled but completed anyway? */
1037                 if (!list_empty(&td->cancelled_td_list)) {
1038                         list_del(&td->cancelled_td_list);
1039                         ep_ring->cancels_pending--;
1040                 }
1041                 kfree(td);
1042                 urb->hcpriv = NULL;
1043         }
1044 cleanup:
1045         inc_deq(xhci, xhci->event_ring, true);
1046         xhci_set_hc_event_deq(xhci);
1047
1048         /* FIXME for multi-TD URBs (who have buffers bigger than 64MB) */
1049         if (urb) {
1050                 usb_hcd_unlink_urb_from_ep(xhci_to_hcd(xhci), urb);
1051                 xhci_dbg(xhci, "Giveback URB %p, len = %d, status = %d\n",
1052                                 urb, td->urb->actual_length, status);
1053                 spin_unlock(&xhci->lock);
1054                 usb_hcd_giveback_urb(xhci_to_hcd(xhci), urb, status);
1055                 spin_lock(&xhci->lock);
1056         }
1057         return 0;
1058 }
1059
1060 /*
1061  * This function handles all OS-owned events on the event ring.  It may drop
1062  * xhci->lock between event processing (e.g. to pass up port status changes).
1063  */
1064 void xhci_handle_event(struct xhci_hcd *xhci)
1065 {
1066         union xhci_trb *event;
1067         int update_ptrs = 1;
1068         int ret;
1069
1070         xhci_dbg(xhci, "In %s\n", __func__);
1071         if (!xhci->event_ring || !xhci->event_ring->dequeue) {
1072                 xhci->error_bitmask |= 1 << 1;
1073                 return;
1074         }
1075
1076         event = xhci->event_ring->dequeue;
1077         /* Does the HC or OS own the TRB? */
1078         if ((event->event_cmd.flags & TRB_CYCLE) !=
1079                         xhci->event_ring->cycle_state) {
1080                 xhci->error_bitmask |= 1 << 2;
1081                 return;
1082         }
1083         xhci_dbg(xhci, "%s - OS owns TRB\n", __func__);
1084
1085         /* FIXME: Handle more event types. */
1086         switch ((event->event_cmd.flags & TRB_TYPE_BITMASK)) {
1087         case TRB_TYPE(TRB_COMPLETION):
1088                 xhci_dbg(xhci, "%s - calling handle_cmd_completion\n", __func__);
1089                 handle_cmd_completion(xhci, &event->event_cmd);
1090                 xhci_dbg(xhci, "%s - returned from handle_cmd_completion\n", __func__);
1091                 break;
1092         case TRB_TYPE(TRB_PORT_STATUS):
1093                 xhci_dbg(xhci, "%s - calling handle_port_status\n", __func__);
1094                 handle_port_status(xhci, event);
1095                 xhci_dbg(xhci, "%s - returned from handle_port_status\n", __func__);
1096                 update_ptrs = 0;
1097                 break;
1098         case TRB_TYPE(TRB_TRANSFER):
1099                 xhci_dbg(xhci, "%s - calling handle_tx_event\n", __func__);
1100                 ret = handle_tx_event(xhci, &event->trans_event);
1101                 xhci_dbg(xhci, "%s - returned from handle_tx_event\n", __func__);
1102                 if (ret < 0)
1103                         xhci->error_bitmask |= 1 << 9;
1104                 else
1105                         update_ptrs = 0;
1106                 break;
1107         default:
1108                 xhci->error_bitmask |= 1 << 3;
1109         }
1110
1111         if (update_ptrs) {
1112                 /* Update SW and HC event ring dequeue pointer */
1113                 inc_deq(xhci, xhci->event_ring, true);
1114                 xhci_set_hc_event_deq(xhci);
1115         }
1116         /* Are there more items on the event ring? */
1117         xhci_handle_event(xhci);
1118 }
1119
1120 /****           Endpoint Ring Operations        ****/
1121
1122 /*
1123  * Generic function for queueing a TRB on a ring.
1124  * The caller must have checked to make sure there's room on the ring.
1125  */
1126 static void queue_trb(struct xhci_hcd *xhci, struct xhci_ring *ring,
1127                 bool consumer,
1128                 u32 field1, u32 field2, u32 field3, u32 field4)
1129 {
1130         struct xhci_generic_trb *trb;
1131
1132         trb = &ring->enqueue->generic;
1133         trb->field[0] = field1;
1134         trb->field[1] = field2;
1135         trb->field[2] = field3;
1136         trb->field[3] = field4;
1137         inc_enq(xhci, ring, consumer);
1138 }
1139
1140 /*
1141  * Does various checks on the endpoint ring, and makes it ready to queue num_trbs.
1142  * FIXME allocate segments if the ring is full.
1143  */
1144 static int prepare_ring(struct xhci_hcd *xhci, struct xhci_ring *ep_ring,
1145                 u32 ep_state, unsigned int num_trbs, gfp_t mem_flags)
1146 {
1147         /* Make sure the endpoint has been added to xHC schedule */
1148         xhci_dbg(xhci, "Endpoint state = 0x%x\n", ep_state);
1149         switch (ep_state) {
1150         case EP_STATE_DISABLED:
1151                 /*
1152                  * USB core changed config/interfaces without notifying us,
1153                  * or hardware is reporting the wrong state.
1154                  */
1155                 xhci_warn(xhci, "WARN urb submitted to disabled ep\n");
1156                 return -ENOENT;
1157         case EP_STATE_HALTED:
1158         case EP_STATE_ERROR:
1159                 xhci_warn(xhci, "WARN waiting for halt or error on ep "
1160                                 "to be cleared\n");
1161                 /* FIXME event handling code for error needs to clear it */
1162                 /* XXX not sure if this should be -ENOENT or not */
1163                 return -EINVAL;
1164         case EP_STATE_STOPPED:
1165         case EP_STATE_RUNNING:
1166                 break;
1167         default:
1168                 xhci_err(xhci, "ERROR unknown endpoint state for ep\n");
1169                 /*
1170                  * FIXME issue Configure Endpoint command to try to get the HC
1171                  * back into a known state.
1172                  */
1173                 return -EINVAL;
1174         }
1175         if (!room_on_ring(xhci, ep_ring, num_trbs)) {
1176                 /* FIXME allocate more room */
1177                 xhci_err(xhci, "ERROR no room on ep ring\n");
1178                 return -ENOMEM;
1179         }
1180         return 0;
1181 }
1182
1183 static int prepare_transfer(struct xhci_hcd *xhci,
1184                 struct xhci_virt_device *xdev,
1185                 unsigned int ep_index,
1186                 unsigned int num_trbs,
1187                 struct urb *urb,
1188                 struct xhci_td **td,
1189                 gfp_t mem_flags)
1190 {
1191         int ret;
1192
1193         ret = prepare_ring(xhci, xdev->ep_rings[ep_index],
1194                         xdev->out_ctx->ep[ep_index].ep_info & EP_STATE_MASK,
1195                         num_trbs, mem_flags);
1196         if (ret)
1197                 return ret;
1198         *td = kzalloc(sizeof(struct xhci_td), mem_flags);
1199         if (!*td)
1200                 return -ENOMEM;
1201         INIT_LIST_HEAD(&(*td)->td_list);
1202         INIT_LIST_HEAD(&(*td)->cancelled_td_list);
1203
1204         ret = usb_hcd_link_urb_to_ep(xhci_to_hcd(xhci), urb);
1205         if (unlikely(ret)) {
1206                 kfree(*td);
1207                 return ret;
1208         }
1209
1210         (*td)->urb = urb;
1211         urb->hcpriv = (void *) (*td);
1212         /* Add this TD to the tail of the endpoint ring's TD list */
1213         list_add_tail(&(*td)->td_list, &xdev->ep_rings[ep_index]->td_list);
1214         (*td)->start_seg = xdev->ep_rings[ep_index]->enq_seg;
1215         (*td)->first_trb = xdev->ep_rings[ep_index]->enqueue;
1216
1217         return 0;
1218 }
1219
1220 static unsigned int count_sg_trbs_needed(struct xhci_hcd *xhci, struct urb *urb)
1221 {
1222         int num_sgs, num_trbs, running_total, temp, i;
1223         struct scatterlist *sg;
1224
1225         sg = NULL;
1226         num_sgs = urb->num_sgs;
1227         temp = urb->transfer_buffer_length;
1228
1229         xhci_dbg(xhci, "count sg list trbs: \n");
1230         num_trbs = 0;
1231         for_each_sg(urb->sg->sg, sg, num_sgs, i) {
1232                 unsigned int previous_total_trbs = num_trbs;
1233                 unsigned int len = sg_dma_len(sg);
1234
1235                 /* Scatter gather list entries may cross 64KB boundaries */
1236                 running_total = TRB_MAX_BUFF_SIZE -
1237                         (sg_dma_address(sg) & ((1 << TRB_MAX_BUFF_SHIFT) - 1));
1238                 if (running_total != 0)
1239                         num_trbs++;
1240
1241                 /* How many more 64KB chunks to transfer, how many more TRBs? */
1242                 while (running_total < sg_dma_len(sg)) {
1243                         num_trbs++;
1244                         running_total += TRB_MAX_BUFF_SIZE;
1245                 }
1246                 xhci_dbg(xhci, " sg #%d: dma = %#llx, len = %#x (%d), num_trbs = %d\n",
1247                                 i, (unsigned long long)sg_dma_address(sg),
1248                                 len, len, num_trbs - previous_total_trbs);
1249
1250                 len = min_t(int, len, temp);
1251                 temp -= len;
1252                 if (temp == 0)
1253                         break;
1254         }
1255         xhci_dbg(xhci, "\n");
1256         if (!in_interrupt())
1257                 dev_dbg(&urb->dev->dev, "ep %#x - urb len = %d, sglist used, num_trbs = %d\n",
1258                                 urb->ep->desc.bEndpointAddress,
1259                                 urb->transfer_buffer_length,
1260                                 num_trbs);
1261         return num_trbs;
1262 }
1263
1264 static void check_trb_math(struct urb *urb, int num_trbs, int running_total)
1265 {
1266         if (num_trbs != 0)
1267                 dev_dbg(&urb->dev->dev, "%s - ep %#x - Miscalculated number of "
1268                                 "TRBs, %d left\n", __func__,
1269                                 urb->ep->desc.bEndpointAddress, num_trbs);
1270         if (running_total != urb->transfer_buffer_length)
1271                 dev_dbg(&urb->dev->dev, "%s - ep %#x - Miscalculated tx length, "
1272                                 "queued %#x (%d), asked for %#x (%d)\n",
1273                                 __func__,
1274                                 urb->ep->desc.bEndpointAddress,
1275                                 running_total, running_total,
1276                                 urb->transfer_buffer_length,
1277                                 urb->transfer_buffer_length);
1278 }
1279
1280 static void giveback_first_trb(struct xhci_hcd *xhci, int slot_id,
1281                 unsigned int ep_index, int start_cycle,
1282                 struct xhci_generic_trb *start_trb, struct xhci_td *td)
1283 {
1284         /*
1285          * Pass all the TRBs to the hardware at once and make sure this write
1286          * isn't reordered.
1287          */
1288         wmb();
1289         start_trb->field[3] |= start_cycle;
1290         ring_ep_doorbell(xhci, slot_id, ep_index);
1291 }
1292
1293 static int queue_bulk_sg_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
1294                 struct urb *urb, int slot_id, unsigned int ep_index)
1295 {
1296         struct xhci_ring *ep_ring;
1297         unsigned int num_trbs;
1298         struct xhci_td *td;
1299         struct scatterlist *sg;
1300         int num_sgs;
1301         int trb_buff_len, this_sg_len, running_total;
1302         bool first_trb;
1303         u64 addr;
1304
1305         struct xhci_generic_trb *start_trb;
1306         int start_cycle;
1307
1308         ep_ring = xhci->devs[slot_id]->ep_rings[ep_index];
1309         num_trbs = count_sg_trbs_needed(xhci, urb);
1310         num_sgs = urb->num_sgs;
1311
1312         trb_buff_len = prepare_transfer(xhci, xhci->devs[slot_id],
1313                         ep_index, num_trbs, urb, &td, mem_flags);
1314         if (trb_buff_len < 0)
1315                 return trb_buff_len;
1316         /*
1317          * Don't give the first TRB to the hardware (by toggling the cycle bit)
1318          * until we've finished creating all the other TRBs.  The ring's cycle
1319          * state may change as we enqueue the other TRBs, so save it too.
1320          */
1321         start_trb = &ep_ring->enqueue->generic;
1322         start_cycle = ep_ring->cycle_state;
1323
1324         running_total = 0;
1325         /*
1326          * How much data is in the first TRB?
1327          *
1328          * There are three forces at work for TRB buffer pointers and lengths:
1329          * 1. We don't want to walk off the end of this sg-list entry buffer.
1330          * 2. The transfer length that the driver requested may be smaller than
1331          *    the amount of memory allocated for this scatter-gather list.
1332          * 3. TRBs buffers can't cross 64KB boundaries.
1333          */
1334         sg = urb->sg->sg;
1335         addr = (u64) sg_dma_address(sg);
1336         this_sg_len = sg_dma_len(sg);
1337         trb_buff_len = TRB_MAX_BUFF_SIZE -
1338                 (addr & ((1 << TRB_MAX_BUFF_SHIFT) - 1));
1339         trb_buff_len = min_t(int, trb_buff_len, this_sg_len);
1340         if (trb_buff_len > urb->transfer_buffer_length)
1341                 trb_buff_len = urb->transfer_buffer_length;
1342         xhci_dbg(xhci, "First length to xfer from 1st sglist entry = %u\n",
1343                         trb_buff_len);
1344
1345         first_trb = true;
1346         /* Queue the first TRB, even if it's zero-length */
1347         do {
1348                 u32 field = 0;
1349                 u32 length_field = 0;
1350
1351                 /* Don't change the cycle bit of the first TRB until later */
1352                 if (first_trb)
1353                         first_trb = false;
1354                 else
1355                         field |= ep_ring->cycle_state;
1356
1357                 /* Chain all the TRBs together; clear the chain bit in the last
1358                  * TRB to indicate it's the last TRB in the chain.
1359                  */
1360                 if (num_trbs > 1) {
1361                         field |= TRB_CHAIN;
1362                 } else {
1363                         /* FIXME - add check for ZERO_PACKET flag before this */
1364                         td->last_trb = ep_ring->enqueue;
1365                         field |= TRB_IOC;
1366                 }
1367                 xhci_dbg(xhci, " sg entry: dma = %#x, len = %#x (%d), "
1368                                 "64KB boundary at %#x, end dma = %#x\n",
1369                                 (unsigned int) addr, trb_buff_len, trb_buff_len,
1370                                 (unsigned int) (addr + TRB_MAX_BUFF_SIZE) & ~(TRB_MAX_BUFF_SIZE - 1),
1371                                 (unsigned int) addr + trb_buff_len);
1372                 if (TRB_MAX_BUFF_SIZE -
1373                                 (addr & ((1 << TRB_MAX_BUFF_SHIFT) - 1)) < trb_buff_len) {
1374                         xhci_warn(xhci, "WARN: sg dma xfer crosses 64KB boundaries!\n");
1375                         xhci_dbg(xhci, "Next boundary at %#x, end dma = %#x\n",
1376                                         (unsigned int) (addr + TRB_MAX_BUFF_SIZE) & ~(TRB_MAX_BUFF_SIZE - 1),
1377                                         (unsigned int) addr + trb_buff_len);
1378                 }
1379                 length_field = TRB_LEN(trb_buff_len) |
1380                         TD_REMAINDER(urb->transfer_buffer_length - running_total) |
1381                         TRB_INTR_TARGET(0);
1382                 queue_trb(xhci, ep_ring, false,
1383                                 lower_32_bits(addr),
1384                                 upper_32_bits(addr),
1385                                 length_field,
1386                                 /* We always want to know if the TRB was short,
1387                                  * or we won't get an event when it completes.
1388                                  * (Unless we use event data TRBs, which are a
1389                                  * waste of space and HC resources.)
1390                                  */
1391                                 field | TRB_ISP | TRB_TYPE(TRB_NORMAL));
1392                 --num_trbs;
1393                 running_total += trb_buff_len;
1394
1395                 /* Calculate length for next transfer --
1396                  * Are we done queueing all the TRBs for this sg entry?
1397                  */
1398                 this_sg_len -= trb_buff_len;
1399                 if (this_sg_len == 0) {
1400                         --num_sgs;
1401                         if (num_sgs == 0)
1402                                 break;
1403                         sg = sg_next(sg);
1404                         addr = (u64) sg_dma_address(sg);
1405                         this_sg_len = sg_dma_len(sg);
1406                 } else {
1407                         addr += trb_buff_len;
1408                 }
1409
1410                 trb_buff_len = TRB_MAX_BUFF_SIZE -
1411                         (addr & ((1 << TRB_MAX_BUFF_SHIFT) - 1));
1412                 trb_buff_len = min_t(int, trb_buff_len, this_sg_len);
1413                 if (running_total + trb_buff_len > urb->transfer_buffer_length)
1414                         trb_buff_len =
1415                                 urb->transfer_buffer_length - running_total;
1416         } while (running_total < urb->transfer_buffer_length);
1417
1418         check_trb_math(urb, num_trbs, running_total);
1419         giveback_first_trb(xhci, slot_id, ep_index, start_cycle, start_trb, td);
1420         return 0;
1421 }
1422
1423 /* This is very similar to what ehci-q.c qtd_fill() does */
1424 int xhci_queue_bulk_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
1425                 struct urb *urb, int slot_id, unsigned int ep_index)
1426 {
1427         struct xhci_ring *ep_ring;
1428         struct xhci_td *td;
1429         int num_trbs;
1430         struct xhci_generic_trb *start_trb;
1431         bool first_trb;
1432         int start_cycle;
1433         u32 field, length_field;
1434
1435         int running_total, trb_buff_len, ret;
1436         u64 addr;
1437
1438         if (urb->sg)
1439                 return queue_bulk_sg_tx(xhci, mem_flags, urb, slot_id, ep_index);
1440
1441         ep_ring = xhci->devs[slot_id]->ep_rings[ep_index];
1442
1443         num_trbs = 0;
1444         /* How much data is (potentially) left before the 64KB boundary? */
1445         running_total = TRB_MAX_BUFF_SIZE -
1446                 (urb->transfer_dma & ((1 << TRB_MAX_BUFF_SHIFT) - 1));
1447
1448         /* If there's some data on this 64KB chunk, or we have to send a
1449          * zero-length transfer, we need at least one TRB
1450          */
1451         if (running_total != 0 || urb->transfer_buffer_length == 0)
1452                 num_trbs++;
1453         /* How many more 64KB chunks to transfer, how many more TRBs? */
1454         while (running_total < urb->transfer_buffer_length) {
1455                 num_trbs++;
1456                 running_total += TRB_MAX_BUFF_SIZE;
1457         }
1458         /* FIXME: this doesn't deal with URB_ZERO_PACKET - need one more */
1459
1460         if (!in_interrupt())
1461                 dev_dbg(&urb->dev->dev, "ep %#x - urb len = %#x (%d), addr = %#llx, num_trbs = %d\n",
1462                                 urb->ep->desc.bEndpointAddress,
1463                                 urb->transfer_buffer_length,
1464                                 urb->transfer_buffer_length,
1465                                 (unsigned long long)urb->transfer_dma,
1466                                 num_trbs);
1467
1468         ret = prepare_transfer(xhci, xhci->devs[slot_id], ep_index,
1469                         num_trbs, urb, &td, mem_flags);
1470         if (ret < 0)
1471                 return ret;
1472
1473         /*
1474          * Don't give the first TRB to the hardware (by toggling the cycle bit)
1475          * until we've finished creating all the other TRBs.  The ring's cycle
1476          * state may change as we enqueue the other TRBs, so save it too.
1477          */
1478         start_trb = &ep_ring->enqueue->generic;
1479         start_cycle = ep_ring->cycle_state;
1480
1481         running_total = 0;
1482         /* How much data is in the first TRB? */
1483         addr = (u64) urb->transfer_dma;
1484         trb_buff_len = TRB_MAX_BUFF_SIZE -
1485                 (urb->transfer_dma & ((1 << TRB_MAX_BUFF_SHIFT) - 1));
1486         if (urb->transfer_buffer_length < trb_buff_len)
1487                 trb_buff_len = urb->transfer_buffer_length;
1488
1489         first_trb = true;
1490
1491         /* Queue the first TRB, even if it's zero-length */
1492         do {
1493                 field = 0;
1494
1495                 /* Don't change the cycle bit of the first TRB until later */
1496                 if (first_trb)
1497                         first_trb = false;
1498                 else
1499                         field |= ep_ring->cycle_state;
1500
1501                 /* Chain all the TRBs together; clear the chain bit in the last
1502                  * TRB to indicate it's the last TRB in the chain.
1503                  */
1504                 if (num_trbs > 1) {
1505                         field |= TRB_CHAIN;
1506                 } else {
1507                         /* FIXME - add check for ZERO_PACKET flag before this */
1508                         td->last_trb = ep_ring->enqueue;
1509                         field |= TRB_IOC;
1510                 }
1511                 length_field = TRB_LEN(trb_buff_len) |
1512                         TD_REMAINDER(urb->transfer_buffer_length - running_total) |
1513                         TRB_INTR_TARGET(0);
1514                 queue_trb(xhci, ep_ring, false,
1515                                 lower_32_bits(addr),
1516                                 upper_32_bits(addr),
1517                                 length_field,
1518                                 /* We always want to know if the TRB was short,
1519                                  * or we won't get an event when it completes.
1520                                  * (Unless we use event data TRBs, which are a
1521                                  * waste of space and HC resources.)
1522                                  */
1523                                 field | TRB_ISP | TRB_TYPE(TRB_NORMAL));
1524                 --num_trbs;
1525                 running_total += trb_buff_len;
1526
1527                 /* Calculate length for next transfer */
1528                 addr += trb_buff_len;
1529                 trb_buff_len = urb->transfer_buffer_length - running_total;
1530                 if (trb_buff_len > TRB_MAX_BUFF_SIZE)
1531                         trb_buff_len = TRB_MAX_BUFF_SIZE;
1532         } while (running_total < urb->transfer_buffer_length);
1533
1534         check_trb_math(urb, num_trbs, running_total);
1535         giveback_first_trb(xhci, slot_id, ep_index, start_cycle, start_trb, td);
1536         return 0;
1537 }
1538
1539 /* Caller must have locked xhci->lock */
1540 int xhci_queue_ctrl_tx(struct xhci_hcd *xhci, gfp_t mem_flags,
1541                 struct urb *urb, int slot_id, unsigned int ep_index)
1542 {
1543         struct xhci_ring *ep_ring;
1544         int num_trbs;
1545         int ret;
1546         struct usb_ctrlrequest *setup;
1547         struct xhci_generic_trb *start_trb;
1548         int start_cycle;
1549         u32 field, length_field;
1550         struct xhci_td *td;
1551
1552         ep_ring = xhci->devs[slot_id]->ep_rings[ep_index];
1553
1554         /*
1555          * Need to copy setup packet into setup TRB, so we can't use the setup
1556          * DMA address.
1557          */
1558         if (!urb->setup_packet)
1559                 return -EINVAL;
1560
1561         if (!in_interrupt())
1562                 xhci_dbg(xhci, "Queueing ctrl tx for slot id %d, ep %d\n",
1563                                 slot_id, ep_index);
1564         /* 1 TRB for setup, 1 for status */
1565         num_trbs = 2;
1566         /*
1567          * Don't need to check if we need additional event data and normal TRBs,
1568          * since data in control transfers will never get bigger than 16MB
1569          * XXX: can we get a buffer that crosses 64KB boundaries?
1570          */
1571         if (urb->transfer_buffer_length > 0)
1572                 num_trbs++;
1573         ret = prepare_transfer(xhci, xhci->devs[slot_id], ep_index, num_trbs,
1574                         urb, &td, mem_flags);
1575         if (ret < 0)
1576                 return ret;
1577
1578         /*
1579          * Don't give the first TRB to the hardware (by toggling the cycle bit)
1580          * until we've finished creating all the other TRBs.  The ring's cycle
1581          * state may change as we enqueue the other TRBs, so save it too.
1582          */
1583         start_trb = &ep_ring->enqueue->generic;
1584         start_cycle = ep_ring->cycle_state;
1585
1586         /* Queue setup TRB - see section 6.4.1.2.1 */
1587         /* FIXME better way to translate setup_packet into two u32 fields? */
1588         setup = (struct usb_ctrlrequest *) urb->setup_packet;
1589         queue_trb(xhci, ep_ring, false,
1590                         /* FIXME endianness is probably going to bite my ass here. */
1591                         setup->bRequestType | setup->bRequest << 8 | setup->wValue << 16,
1592                         setup->wIndex | setup->wLength << 16,
1593                         TRB_LEN(8) | TRB_INTR_TARGET(0),
1594                         /* Immediate data in pointer */
1595                         TRB_IDT | TRB_TYPE(TRB_SETUP));
1596
1597         /* If there's data, queue data TRBs */
1598         field = 0;
1599         length_field = TRB_LEN(urb->transfer_buffer_length) |
1600                 TD_REMAINDER(urb->transfer_buffer_length) |
1601                 TRB_INTR_TARGET(0);
1602         if (urb->transfer_buffer_length > 0) {
1603                 if (setup->bRequestType & USB_DIR_IN)
1604                         field |= TRB_DIR_IN;
1605                 queue_trb(xhci, ep_ring, false,
1606                                 lower_32_bits(urb->transfer_dma),
1607                                 upper_32_bits(urb->transfer_dma),
1608                                 length_field,
1609                                 /* Event on short tx */
1610                                 field | TRB_ISP | TRB_TYPE(TRB_DATA) | ep_ring->cycle_state);
1611         }
1612
1613         /* Save the DMA address of the last TRB in the TD */
1614         td->last_trb = ep_ring->enqueue;
1615
1616         /* Queue status TRB - see Table 7 and sections 4.11.2.2 and 6.4.1.2.3 */
1617         /* If the device sent data, the status stage is an OUT transfer */
1618         if (urb->transfer_buffer_length > 0 && setup->bRequestType & USB_DIR_IN)
1619                 field = 0;
1620         else
1621                 field = TRB_DIR_IN;
1622         queue_trb(xhci, ep_ring, false,
1623                         0,
1624                         0,
1625                         TRB_INTR_TARGET(0),
1626                         /* Event on completion */
1627                         field | TRB_IOC | TRB_TYPE(TRB_STATUS) | ep_ring->cycle_state);
1628
1629         giveback_first_trb(xhci, slot_id, ep_index, start_cycle, start_trb, td);
1630         return 0;
1631 }
1632
1633 /****           Command Ring Operations         ****/
1634
1635 /* Generic function for queueing a command TRB on the command ring */
1636 static int queue_command(struct xhci_hcd *xhci, u32 field1, u32 field2, u32 field3, u32 field4)
1637 {
1638         if (!room_on_ring(xhci, xhci->cmd_ring, 1)) {
1639                 if (!in_interrupt())
1640                         xhci_err(xhci, "ERR: No room for command on command ring\n");
1641                 return -ENOMEM;
1642         }
1643         queue_trb(xhci, xhci->cmd_ring, false, field1, field2, field3,
1644                         field4 | xhci->cmd_ring->cycle_state);
1645         return 0;
1646 }
1647
1648 /* Queue a no-op command on the command ring */
1649 static int queue_cmd_noop(struct xhci_hcd *xhci)
1650 {
1651         return queue_command(xhci, 0, 0, 0, TRB_TYPE(TRB_CMD_NOOP));
1652 }
1653
1654 /*
1655  * Place a no-op command on the command ring to test the command and
1656  * event ring.
1657  */
1658 void *xhci_setup_one_noop(struct xhci_hcd *xhci)
1659 {
1660         if (queue_cmd_noop(xhci) < 0)
1661                 return NULL;
1662         xhci->noops_submitted++;
1663         return xhci_ring_cmd_db;
1664 }
1665
1666 /* Queue a slot enable or disable request on the command ring */
1667 int xhci_queue_slot_control(struct xhci_hcd *xhci, u32 trb_type, u32 slot_id)
1668 {
1669         return queue_command(xhci, 0, 0, 0,
1670                         TRB_TYPE(trb_type) | SLOT_ID_FOR_TRB(slot_id));
1671 }
1672
1673 /* Queue an address device command TRB */
1674 int xhci_queue_address_device(struct xhci_hcd *xhci, dma_addr_t in_ctx_ptr,
1675                 u32 slot_id)
1676 {
1677         return queue_command(xhci, lower_32_bits(in_ctx_ptr),
1678                         upper_32_bits(in_ctx_ptr), 0,
1679                         TRB_TYPE(TRB_ADDR_DEV) | SLOT_ID_FOR_TRB(slot_id));
1680 }
1681
1682 /* Queue a configure endpoint command TRB */
1683 int xhci_queue_configure_endpoint(struct xhci_hcd *xhci, dma_addr_t in_ctx_ptr,
1684                 u32 slot_id)
1685 {
1686         return queue_command(xhci, lower_32_bits(in_ctx_ptr),
1687                         upper_32_bits(in_ctx_ptr), 0,
1688                         TRB_TYPE(TRB_CONFIG_EP) | SLOT_ID_FOR_TRB(slot_id));
1689 }
1690
1691 int xhci_queue_stop_endpoint(struct xhci_hcd *xhci, int slot_id,
1692                 unsigned int ep_index)
1693 {
1694         u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
1695         u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
1696         u32 type = TRB_TYPE(TRB_STOP_RING);
1697
1698         return queue_command(xhci, 0, 0, 0,
1699                         trb_slot_id | trb_ep_index | type);
1700 }
1701
1702 /* Set Transfer Ring Dequeue Pointer command.
1703  * This should not be used for endpoints that have streams enabled.
1704  */
1705 static int queue_set_tr_deq(struct xhci_hcd *xhci, int slot_id,
1706                 unsigned int ep_index, struct xhci_segment *deq_seg,
1707                 union xhci_trb *deq_ptr, u32 cycle_state)
1708 {
1709         dma_addr_t addr;
1710         u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
1711         u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
1712         u32 type = TRB_TYPE(TRB_SET_DEQ);
1713
1714         addr = xhci_trb_virt_to_dma(deq_seg, deq_ptr);
1715         if (addr == 0)
1716                 xhci_warn(xhci, "WARN Cannot submit Set TR Deq Ptr\n");
1717                 xhci_warn(xhci, "WARN deq seg = %p, deq pt = %p\n",
1718                                 deq_seg, deq_ptr);
1719         return queue_command(xhci, lower_32_bits(addr) | cycle_state,
1720                         upper_32_bits(addr), 0,
1721                         trb_slot_id | trb_ep_index | type);
1722 }
1723
1724 int xhci_queue_reset_ep(struct xhci_hcd *xhci, int slot_id,
1725                 unsigned int ep_index)
1726 {
1727         u32 trb_slot_id = SLOT_ID_FOR_TRB(slot_id);
1728         u32 trb_ep_index = EP_ID_FOR_TRB(ep_index);
1729         u32 type = TRB_TYPE(TRB_RESET_EP);
1730
1731         return queue_command(xhci, 0, 0, 0, trb_slot_id | trb_ep_index | type);
1732 }