blob: 1699df9f256831e994164158eea94c32b4532463 [file] [log] [blame]
Sarah Sharp66d4ead2009-04-27 19:52:28 -07001/*
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#include <linux/usb.h>
Sarah Sharp0ebbab32009-04-27 19:52:34 -070024#include <linux/pci.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090025#include <linux/slab.h>
Sarah Sharp527c6d72009-04-29 19:06:56 -070026#include <linux/dmapool.h>
Sarah Sharp66d4ead2009-04-27 19:52:28 -070027
28#include "xhci.h"
29
Sarah Sharp0ebbab32009-04-27 19:52:34 -070030/*
31 * Allocates a generic ring segment from the ring pool, sets the dma address,
32 * initializes the segment to zero, and sets the private next pointer to NULL.
33 *
34 * Section 4.11.1.1:
35 * "All components of all Command and Transfer TRBs shall be initialized to '0'"
36 */
37static struct xhci_segment *xhci_segment_alloc(struct xhci_hcd *xhci, gfp_t flags)
38{
39 struct xhci_segment *seg;
40 dma_addr_t dma;
41
42 seg = kzalloc(sizeof *seg, flags);
43 if (!seg)
Randy Dunlap326b4812010-04-19 08:53:50 -070044 return NULL;
Sarah Sharp0ebbab32009-04-27 19:52:34 -070045
46 seg->trbs = dma_pool_alloc(xhci->segment_pool, flags, &dma);
47 if (!seg->trbs) {
48 kfree(seg);
Randy Dunlap326b4812010-04-19 08:53:50 -070049 return NULL;
Sarah Sharp0ebbab32009-04-27 19:52:34 -070050 }
Sarah Sharp0ebbab32009-04-27 19:52:34 -070051
52 memset(seg->trbs, 0, SEGMENT_SIZE);
53 seg->dma = dma;
54 seg->next = NULL;
55
56 return seg;
57}
58
59static void xhci_segment_free(struct xhci_hcd *xhci, struct xhci_segment *seg)
60{
Sarah Sharp0ebbab32009-04-27 19:52:34 -070061 if (seg->trbs) {
Sarah Sharp0ebbab32009-04-27 19:52:34 -070062 dma_pool_free(xhci->segment_pool, seg->trbs, seg->dma);
63 seg->trbs = NULL;
64 }
Sarah Sharp0ebbab32009-04-27 19:52:34 -070065 kfree(seg);
66}
67
68/*
69 * Make the prev segment point to the next segment.
70 *
71 * Change the last TRB in the prev segment to be a Link TRB which points to the
72 * DMA address of the next segment. The caller needs to set any Link TRB
73 * related flags, such as End TRB, Toggle Cycle, and no snoop.
74 */
75static void xhci_link_segments(struct xhci_hcd *xhci, struct xhci_segment *prev,
Andiry Xu3b72fca2012-03-05 17:49:32 +080076 struct xhci_segment *next, enum xhci_ring_type type)
Sarah Sharp0ebbab32009-04-27 19:52:34 -070077{
78 u32 val;
79
80 if (!prev || !next)
81 return;
82 prev->next = next;
Andiry Xu3b72fca2012-03-05 17:49:32 +080083 if (type != TYPE_EVENT) {
Matt Evansf5960b62011-06-01 10:22:55 +100084 prev->trbs[TRBS_PER_SEGMENT-1].link.segment_ptr =
85 cpu_to_le64(next->dma);
Sarah Sharp0ebbab32009-04-27 19:52:34 -070086
87 /* Set the last TRB in the segment to have a TRB type ID of Link TRB */
Matt Evans28ccd292011-03-29 13:40:46 +110088 val = le32_to_cpu(prev->trbs[TRBS_PER_SEGMENT-1].link.control);
Sarah Sharp0ebbab32009-04-27 19:52:34 -070089 val &= ~TRB_TYPE_BITMASK;
90 val |= TRB_TYPE(TRB_LINK);
Sarah Sharpb0567b32009-08-07 14:04:36 -070091 /* Always set the chain bit with 0.95 hardware */
Andiry Xu7e393a82011-09-23 14:19:54 -070092 /* Set chain bit for isoc rings on AMD 0.96 host */
93 if (xhci_link_trb_quirk(xhci) ||
Andiry Xu3b72fca2012-03-05 17:49:32 +080094 (type == TYPE_ISOC &&
95 (xhci->quirks & XHCI_AMD_0x96_HOST)))
Sarah Sharpb0567b32009-08-07 14:04:36 -070096 val |= TRB_CHAIN;
Matt Evans28ccd292011-03-29 13:40:46 +110097 prev->trbs[TRBS_PER_SEGMENT-1].link.control = cpu_to_le32(val);
Sarah Sharp0ebbab32009-04-27 19:52:34 -070098 }
Sarah Sharp0ebbab32009-04-27 19:52:34 -070099}
100
101/* XXX: Do we need the hcd structure in all these functions? */
Sarah Sharpf94e01862009-04-27 19:58:38 -0700102void xhci_ring_free(struct xhci_hcd *xhci, struct xhci_ring *ring)
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700103{
104 struct xhci_segment *seg;
105 struct xhci_segment *first_seg;
106
Kautuk Consul0e6c7f742011-09-19 16:53:12 -0700107 if (!ring)
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700108 return;
Kautuk Consul0e6c7f742011-09-19 16:53:12 -0700109 if (ring->first_seg) {
110 first_seg = ring->first_seg;
111 seg = first_seg->next;
Kautuk Consul0e6c7f742011-09-19 16:53:12 -0700112 while (seg != first_seg) {
113 struct xhci_segment *next = seg->next;
114 xhci_segment_free(xhci, seg);
115 seg = next;
116 }
117 xhci_segment_free(xhci, first_seg);
118 ring->first_seg = NULL;
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700119 }
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700120 kfree(ring);
121}
122
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800123static void xhci_initialize_ring_info(struct xhci_ring *ring)
124{
125 /* The ring is empty, so the enqueue pointer == dequeue pointer */
126 ring->enqueue = ring->first_seg->trbs;
127 ring->enq_seg = ring->first_seg;
128 ring->dequeue = ring->enqueue;
129 ring->deq_seg = ring->first_seg;
130 /* The ring is initialized to 0. The producer must write 1 to the cycle
131 * bit to handover ownership of the TRB, so PCS = 1. The consumer must
132 * compare CCS to the cycle bit to check ownership, so CCS = 1.
133 */
134 ring->cycle_state = 1;
135 /* Not necessary for new rings, but needed for re-initialized rings */
136 ring->enq_updates = 0;
137 ring->deq_updates = 0;
138}
139
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700140/**
141 * Create a new ring with zero or more segments.
142 *
143 * Link each segment together into a ring.
144 * Set the end flag and the cycle toggle bit on the last segment.
145 * See section 4.9.1 and figures 15 and 16.
146 */
147static struct xhci_ring *xhci_ring_alloc(struct xhci_hcd *xhci,
Andiry Xu3b72fca2012-03-05 17:49:32 +0800148 unsigned int num_segs, enum xhci_ring_type type, gfp_t flags)
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700149{
150 struct xhci_ring *ring;
151 struct xhci_segment *prev;
152
153 ring = kzalloc(sizeof *(ring), flags);
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700154 if (!ring)
Randy Dunlap326b4812010-04-19 08:53:50 -0700155 return NULL;
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700156
Sarah Sharpd0e96f52009-04-27 19:58:01 -0700157 INIT_LIST_HEAD(&ring->td_list);
Andiry Xu3b72fca2012-03-05 17:49:32 +0800158 ring->type = type;
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700159 if (num_segs == 0)
160 return ring;
161
162 ring->first_seg = xhci_segment_alloc(xhci, flags);
163 if (!ring->first_seg)
164 goto fail;
165 num_segs--;
166
167 prev = ring->first_seg;
168 while (num_segs > 0) {
169 struct xhci_segment *next;
170
171 next = xhci_segment_alloc(xhci, flags);
172 if (!next)
173 goto fail;
Andiry Xu3b72fca2012-03-05 17:49:32 +0800174 xhci_link_segments(xhci, prev, next, type);
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700175
176 prev = next;
177 num_segs--;
178 }
Andiry Xu3b72fca2012-03-05 17:49:32 +0800179 xhci_link_segments(xhci, prev, ring->first_seg, type);
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700180
Andiry Xu3b72fca2012-03-05 17:49:32 +0800181 /* Only event ring does not use link TRB */
182 if (type != TYPE_EVENT) {
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700183 /* See section 4.9.2.1 and 6.4.4.1 */
Matt Evansf5960b62011-06-01 10:22:55 +1000184 prev->trbs[TRBS_PER_SEGMENT-1].link.control |=
185 cpu_to_le32(LINK_TOGGLE);
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700186 }
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800187 xhci_initialize_ring_info(ring);
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700188 return ring;
189
190fail:
191 xhci_ring_free(xhci, ring);
Randy Dunlap326b4812010-04-19 08:53:50 -0700192 return NULL;
Sarah Sharp0ebbab32009-04-27 19:52:34 -0700193}
194
Sarah Sharp412566b2009-12-09 15:59:01 -0800195void xhci_free_or_cache_endpoint_ring(struct xhci_hcd *xhci,
196 struct xhci_virt_device *virt_dev,
197 unsigned int ep_index)
198{
199 int rings_cached;
200
201 rings_cached = virt_dev->num_rings_cached;
202 if (rings_cached < XHCI_MAX_RINGS_CACHED) {
Sarah Sharp412566b2009-12-09 15:59:01 -0800203 virt_dev->ring_cache[rings_cached] =
204 virt_dev->eps[ep_index].ring;
Sarah Sharp30f89ca2011-05-16 13:09:08 -0700205 virt_dev->num_rings_cached++;
Sarah Sharp412566b2009-12-09 15:59:01 -0800206 xhci_dbg(xhci, "Cached old ring, "
207 "%d ring%s cached\n",
Sarah Sharp30f89ca2011-05-16 13:09:08 -0700208 virt_dev->num_rings_cached,
209 (virt_dev->num_rings_cached > 1) ? "s" : "");
Sarah Sharp412566b2009-12-09 15:59:01 -0800210 } else {
211 xhci_ring_free(xhci, virt_dev->eps[ep_index].ring);
212 xhci_dbg(xhci, "Ring cache full (%d rings), "
213 "freeing ring\n",
214 virt_dev->num_rings_cached);
215 }
216 virt_dev->eps[ep_index].ring = NULL;
217}
218
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800219/* Zero an endpoint ring (except for link TRBs) and move the enqueue and dequeue
220 * pointers to the beginning of the ring.
221 */
222static void xhci_reinit_cached_ring(struct xhci_hcd *xhci,
Andiry Xu3b72fca2012-03-05 17:49:32 +0800223 struct xhci_ring *ring, enum xhci_ring_type type)
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800224{
225 struct xhci_segment *seg = ring->first_seg;
226 do {
227 memset(seg->trbs, 0,
228 sizeof(union xhci_trb)*TRBS_PER_SEGMENT);
229 /* All endpoint rings have link TRBs */
Andiry Xu3b72fca2012-03-05 17:49:32 +0800230 xhci_link_segments(xhci, seg, seg->next, type);
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800231 seg = seg->next;
232 } while (seg != ring->first_seg);
Andiry Xu3b72fca2012-03-05 17:49:32 +0800233 ring->type = type;
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800234 xhci_initialize_ring_info(ring);
235 /* td list should be empty since all URBs have been cancelled,
236 * but just in case...
237 */
238 INIT_LIST_HEAD(&ring->td_list);
239}
240
John Yound115b042009-07-27 12:05:15 -0700241#define CTX_SIZE(_hcc) (HCC_64BYTE_CONTEXT(_hcc) ? 64 : 32)
242
Randy Dunlap326b4812010-04-19 08:53:50 -0700243static struct xhci_container_ctx *xhci_alloc_container_ctx(struct xhci_hcd *xhci,
John Yound115b042009-07-27 12:05:15 -0700244 int type, gfp_t flags)
245{
246 struct xhci_container_ctx *ctx = kzalloc(sizeof(*ctx), flags);
247 if (!ctx)
248 return NULL;
249
250 BUG_ON((type != XHCI_CTX_TYPE_DEVICE) && (type != XHCI_CTX_TYPE_INPUT));
251 ctx->type = type;
252 ctx->size = HCC_64BYTE_CONTEXT(xhci->hcc_params) ? 2048 : 1024;
253 if (type == XHCI_CTX_TYPE_INPUT)
254 ctx->size += CTX_SIZE(xhci->hcc_params);
255
256 ctx->bytes = dma_pool_alloc(xhci->device_pool, flags, &ctx->dma);
257 memset(ctx->bytes, 0, ctx->size);
258 return ctx;
259}
260
Randy Dunlap326b4812010-04-19 08:53:50 -0700261static void xhci_free_container_ctx(struct xhci_hcd *xhci,
John Yound115b042009-07-27 12:05:15 -0700262 struct xhci_container_ctx *ctx)
263{
Sarah Sharpa1d78c12009-12-09 15:59:03 -0800264 if (!ctx)
265 return;
John Yound115b042009-07-27 12:05:15 -0700266 dma_pool_free(xhci->device_pool, ctx->bytes, ctx->dma);
267 kfree(ctx);
268}
269
270struct xhci_input_control_ctx *xhci_get_input_control_ctx(struct xhci_hcd *xhci,
271 struct xhci_container_ctx *ctx)
272{
273 BUG_ON(ctx->type != XHCI_CTX_TYPE_INPUT);
274 return (struct xhci_input_control_ctx *)ctx->bytes;
275}
276
277struct xhci_slot_ctx *xhci_get_slot_ctx(struct xhci_hcd *xhci,
278 struct xhci_container_ctx *ctx)
279{
280 if (ctx->type == XHCI_CTX_TYPE_DEVICE)
281 return (struct xhci_slot_ctx *)ctx->bytes;
282
283 return (struct xhci_slot_ctx *)
284 (ctx->bytes + CTX_SIZE(xhci->hcc_params));
285}
286
287struct xhci_ep_ctx *xhci_get_ep_ctx(struct xhci_hcd *xhci,
288 struct xhci_container_ctx *ctx,
289 unsigned int ep_index)
290{
291 /* increment ep index by offset of start of ep ctx array */
292 ep_index++;
293 if (ctx->type == XHCI_CTX_TYPE_INPUT)
294 ep_index++;
295
296 return (struct xhci_ep_ctx *)
297 (ctx->bytes + (ep_index * CTX_SIZE(xhci->hcc_params)));
298}
299
Sarah Sharp8df75f42010-04-02 15:34:16 -0700300
301/***************** Streams structures manipulation *************************/
302
Dmitry Torokhov8212a492011-02-08 13:55:59 -0800303static void xhci_free_stream_ctx(struct xhci_hcd *xhci,
Sarah Sharp8df75f42010-04-02 15:34:16 -0700304 unsigned int num_stream_ctxs,
305 struct xhci_stream_ctx *stream_ctx, dma_addr_t dma)
306{
307 struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller);
308
309 if (num_stream_ctxs > MEDIUM_STREAM_ARRAY_SIZE)
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -0700310 dma_free_coherent(&pdev->dev,
Sarah Sharp8df75f42010-04-02 15:34:16 -0700311 sizeof(struct xhci_stream_ctx)*num_stream_ctxs,
312 stream_ctx, dma);
313 else if (num_stream_ctxs <= SMALL_STREAM_ARRAY_SIZE)
314 return dma_pool_free(xhci->small_streams_pool,
315 stream_ctx, dma);
316 else
317 return dma_pool_free(xhci->medium_streams_pool,
318 stream_ctx, dma);
319}
320
321/*
322 * The stream context array for each endpoint with bulk streams enabled can
323 * vary in size, based on:
324 * - how many streams the endpoint supports,
325 * - the maximum primary stream array size the host controller supports,
326 * - and how many streams the device driver asks for.
327 *
328 * The stream context array must be a power of 2, and can be as small as
329 * 64 bytes or as large as 1MB.
330 */
Dmitry Torokhov8212a492011-02-08 13:55:59 -0800331static struct xhci_stream_ctx *xhci_alloc_stream_ctx(struct xhci_hcd *xhci,
Sarah Sharp8df75f42010-04-02 15:34:16 -0700332 unsigned int num_stream_ctxs, dma_addr_t *dma,
333 gfp_t mem_flags)
334{
335 struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller);
336
337 if (num_stream_ctxs > MEDIUM_STREAM_ARRAY_SIZE)
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -0700338 return dma_alloc_coherent(&pdev->dev,
Sarah Sharp8df75f42010-04-02 15:34:16 -0700339 sizeof(struct xhci_stream_ctx)*num_stream_ctxs,
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -0700340 dma, mem_flags);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700341 else if (num_stream_ctxs <= SMALL_STREAM_ARRAY_SIZE)
342 return dma_pool_alloc(xhci->small_streams_pool,
343 mem_flags, dma);
344 else
345 return dma_pool_alloc(xhci->medium_streams_pool,
346 mem_flags, dma);
347}
348
Sarah Sharpe9df17e2010-04-02 15:34:43 -0700349struct xhci_ring *xhci_dma_to_transfer_ring(
350 struct xhci_virt_ep *ep,
351 u64 address)
352{
353 if (ep->ep_state & EP_HAS_STREAMS)
354 return radix_tree_lookup(&ep->stream_info->trb_address_map,
355 address >> SEGMENT_SHIFT);
356 return ep->ring;
357}
358
359/* Only use this when you know stream_info is valid */
Sarah Sharp8df75f42010-04-02 15:34:16 -0700360#ifdef CONFIG_USB_XHCI_HCD_DEBUGGING
Sarah Sharpe9df17e2010-04-02 15:34:43 -0700361static struct xhci_ring *dma_to_stream_ring(
Sarah Sharp8df75f42010-04-02 15:34:16 -0700362 struct xhci_stream_info *stream_info,
363 u64 address)
364{
365 return radix_tree_lookup(&stream_info->trb_address_map,
366 address >> SEGMENT_SHIFT);
367}
368#endif /* CONFIG_USB_XHCI_HCD_DEBUGGING */
369
Sarah Sharpe9df17e2010-04-02 15:34:43 -0700370struct xhci_ring *xhci_stream_id_to_ring(
371 struct xhci_virt_device *dev,
372 unsigned int ep_index,
373 unsigned int stream_id)
374{
375 struct xhci_virt_ep *ep = &dev->eps[ep_index];
376
377 if (stream_id == 0)
378 return ep->ring;
379 if (!ep->stream_info)
380 return NULL;
381
382 if (stream_id > ep->stream_info->num_streams)
383 return NULL;
384 return ep->stream_info->stream_rings[stream_id];
385}
386
Sarah Sharp8df75f42010-04-02 15:34:16 -0700387#ifdef CONFIG_USB_XHCI_HCD_DEBUGGING
388static int xhci_test_radix_tree(struct xhci_hcd *xhci,
389 unsigned int num_streams,
390 struct xhci_stream_info *stream_info)
391{
392 u32 cur_stream;
393 struct xhci_ring *cur_ring;
394 u64 addr;
395
396 for (cur_stream = 1; cur_stream < num_streams; cur_stream++) {
397 struct xhci_ring *mapped_ring;
398 int trb_size = sizeof(union xhci_trb);
399
400 cur_ring = stream_info->stream_rings[cur_stream];
401 for (addr = cur_ring->first_seg->dma;
402 addr < cur_ring->first_seg->dma + SEGMENT_SIZE;
403 addr += trb_size) {
404 mapped_ring = dma_to_stream_ring(stream_info, addr);
405 if (cur_ring != mapped_ring) {
406 xhci_warn(xhci, "WARN: DMA address 0x%08llx "
407 "didn't map to stream ID %u; "
408 "mapped to ring %p\n",
409 (unsigned long long) addr,
410 cur_stream,
411 mapped_ring);
412 return -EINVAL;
413 }
414 }
415 /* One TRB after the end of the ring segment shouldn't return a
416 * pointer to the current ring (although it may be a part of a
417 * different ring).
418 */
419 mapped_ring = dma_to_stream_ring(stream_info, addr);
420 if (mapped_ring != cur_ring) {
421 /* One TRB before should also fail */
422 addr = cur_ring->first_seg->dma - trb_size;
423 mapped_ring = dma_to_stream_ring(stream_info, addr);
424 }
425 if (mapped_ring == cur_ring) {
426 xhci_warn(xhci, "WARN: Bad DMA address 0x%08llx "
427 "mapped to valid stream ID %u; "
428 "mapped ring = %p\n",
429 (unsigned long long) addr,
430 cur_stream,
431 mapped_ring);
432 return -EINVAL;
433 }
434 }
435 return 0;
436}
437#endif /* CONFIG_USB_XHCI_HCD_DEBUGGING */
438
439/*
440 * Change an endpoint's internal structure so it supports stream IDs. The
441 * number of requested streams includes stream 0, which cannot be used by device
442 * drivers.
443 *
444 * The number of stream contexts in the stream context array may be bigger than
445 * the number of streams the driver wants to use. This is because the number of
446 * stream context array entries must be a power of two.
447 *
448 * We need a radix tree for mapping physical addresses of TRBs to which stream
449 * ID they belong to. We need to do this because the host controller won't tell
450 * us which stream ring the TRB came from. We could store the stream ID in an
451 * event data TRB, but that doesn't help us for the cancellation case, since the
452 * endpoint may stop before it reaches that event data TRB.
453 *
454 * The radix tree maps the upper portion of the TRB DMA address to a ring
455 * segment that has the same upper portion of DMA addresses. For example, say I
456 * have segments of size 1KB, that are always 64-byte aligned. A segment may
457 * start at 0x10c91000 and end at 0x10c913f0. If I use the upper 10 bits, the
458 * key to the stream ID is 0x43244. I can use the DMA address of the TRB to
459 * pass the radix tree a key to get the right stream ID:
460 *
461 * 0x10c90fff >> 10 = 0x43243
462 * 0x10c912c0 >> 10 = 0x43244
463 * 0x10c91400 >> 10 = 0x43245
464 *
465 * Obviously, only those TRBs with DMA addresses that are within the segment
466 * will make the radix tree return the stream ID for that ring.
467 *
468 * Caveats for the radix tree:
469 *
470 * The radix tree uses an unsigned long as a key pair. On 32-bit systems, an
471 * unsigned long will be 32-bits; on a 64-bit system an unsigned long will be
472 * 64-bits. Since we only request 32-bit DMA addresses, we can use that as the
473 * key on 32-bit or 64-bit systems (it would also be fine if we asked for 64-bit
474 * PCI DMA addresses on a 64-bit system). There might be a problem on 32-bit
475 * extended systems (where the DMA address can be bigger than 32-bits),
476 * if we allow the PCI dma mask to be bigger than 32-bits. So don't do that.
477 */
478struct xhci_stream_info *xhci_alloc_stream_info(struct xhci_hcd *xhci,
479 unsigned int num_stream_ctxs,
480 unsigned int num_streams, gfp_t mem_flags)
481{
482 struct xhci_stream_info *stream_info;
483 u32 cur_stream;
484 struct xhci_ring *cur_ring;
485 unsigned long key;
486 u64 addr;
487 int ret;
488
489 xhci_dbg(xhci, "Allocating %u streams and %u "
490 "stream context array entries.\n",
491 num_streams, num_stream_ctxs);
492 if (xhci->cmd_ring_reserved_trbs == MAX_RSVD_CMD_TRBS) {
493 xhci_dbg(xhci, "Command ring has no reserved TRBs available\n");
494 return NULL;
495 }
496 xhci->cmd_ring_reserved_trbs++;
497
498 stream_info = kzalloc(sizeof(struct xhci_stream_info), mem_flags);
499 if (!stream_info)
500 goto cleanup_trbs;
501
502 stream_info->num_streams = num_streams;
503 stream_info->num_stream_ctxs = num_stream_ctxs;
504
505 /* Initialize the array of virtual pointers to stream rings. */
506 stream_info->stream_rings = kzalloc(
507 sizeof(struct xhci_ring *)*num_streams,
508 mem_flags);
509 if (!stream_info->stream_rings)
510 goto cleanup_info;
511
512 /* Initialize the array of DMA addresses for stream rings for the HW. */
513 stream_info->stream_ctx_array = xhci_alloc_stream_ctx(xhci,
514 num_stream_ctxs, &stream_info->ctx_array_dma,
515 mem_flags);
516 if (!stream_info->stream_ctx_array)
517 goto cleanup_ctx;
518 memset(stream_info->stream_ctx_array, 0,
519 sizeof(struct xhci_stream_ctx)*num_stream_ctxs);
520
521 /* Allocate everything needed to free the stream rings later */
522 stream_info->free_streams_command =
523 xhci_alloc_command(xhci, true, true, mem_flags);
524 if (!stream_info->free_streams_command)
525 goto cleanup_ctx;
526
527 INIT_RADIX_TREE(&stream_info->trb_address_map, GFP_ATOMIC);
528
529 /* Allocate rings for all the streams that the driver will use,
530 * and add their segment DMA addresses to the radix tree.
531 * Stream 0 is reserved.
532 */
533 for (cur_stream = 1; cur_stream < num_streams; cur_stream++) {
534 stream_info->stream_rings[cur_stream] =
Andiry Xu3b72fca2012-03-05 17:49:32 +0800535 xhci_ring_alloc(xhci, 1, TYPE_STREAM, mem_flags);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700536 cur_ring = stream_info->stream_rings[cur_stream];
537 if (!cur_ring)
538 goto cleanup_rings;
Sarah Sharpe9df17e2010-04-02 15:34:43 -0700539 cur_ring->stream_id = cur_stream;
Sarah Sharp8df75f42010-04-02 15:34:16 -0700540 /* Set deq ptr, cycle bit, and stream context type */
541 addr = cur_ring->first_seg->dma |
542 SCT_FOR_CTX(SCT_PRI_TR) |
543 cur_ring->cycle_state;
Matt Evansf5960b62011-06-01 10:22:55 +1000544 stream_info->stream_ctx_array[cur_stream].stream_ring =
545 cpu_to_le64(addr);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700546 xhci_dbg(xhci, "Setting stream %d ring ptr to 0x%08llx\n",
547 cur_stream, (unsigned long long) addr);
548
549 key = (unsigned long)
550 (cur_ring->first_seg->dma >> SEGMENT_SHIFT);
551 ret = radix_tree_insert(&stream_info->trb_address_map,
552 key, cur_ring);
553 if (ret) {
554 xhci_ring_free(xhci, cur_ring);
555 stream_info->stream_rings[cur_stream] = NULL;
556 goto cleanup_rings;
557 }
558 }
559 /* Leave the other unused stream ring pointers in the stream context
560 * array initialized to zero. This will cause the xHC to give us an
561 * error if the device asks for a stream ID we don't have setup (if it
562 * was any other way, the host controller would assume the ring is
563 * "empty" and wait forever for data to be queued to that stream ID).
564 */
565#if XHCI_DEBUG
566 /* Do a little test on the radix tree to make sure it returns the
567 * correct values.
568 */
569 if (xhci_test_radix_tree(xhci, num_streams, stream_info))
570 goto cleanup_rings;
571#endif
572
573 return stream_info;
574
575cleanup_rings:
576 for (cur_stream = 1; cur_stream < num_streams; cur_stream++) {
577 cur_ring = stream_info->stream_rings[cur_stream];
578 if (cur_ring) {
579 addr = cur_ring->first_seg->dma;
580 radix_tree_delete(&stream_info->trb_address_map,
581 addr >> SEGMENT_SHIFT);
582 xhci_ring_free(xhci, cur_ring);
583 stream_info->stream_rings[cur_stream] = NULL;
584 }
585 }
586 xhci_free_command(xhci, stream_info->free_streams_command);
587cleanup_ctx:
588 kfree(stream_info->stream_rings);
589cleanup_info:
590 kfree(stream_info);
591cleanup_trbs:
592 xhci->cmd_ring_reserved_trbs--;
593 return NULL;
594}
595/*
596 * Sets the MaxPStreams field and the Linear Stream Array field.
597 * Sets the dequeue pointer to the stream context array.
598 */
599void xhci_setup_streams_ep_input_ctx(struct xhci_hcd *xhci,
600 struct xhci_ep_ctx *ep_ctx,
601 struct xhci_stream_info *stream_info)
602{
603 u32 max_primary_streams;
604 /* MaxPStreams is the number of stream context array entries, not the
605 * number we're actually using. Must be in 2^(MaxPstreams + 1) format.
606 * fls(0) = 0, fls(0x1) = 1, fls(0x10) = 2, fls(0x100) = 3, etc.
607 */
608 max_primary_streams = fls(stream_info->num_stream_ctxs) - 2;
609 xhci_dbg(xhci, "Setting number of stream ctx array entries to %u\n",
610 1 << (max_primary_streams + 1));
Matt Evans28ccd292011-03-29 13:40:46 +1100611 ep_ctx->ep_info &= cpu_to_le32(~EP_MAXPSTREAMS_MASK);
612 ep_ctx->ep_info |= cpu_to_le32(EP_MAXPSTREAMS(max_primary_streams)
613 | EP_HAS_LSA);
614 ep_ctx->deq = cpu_to_le64(stream_info->ctx_array_dma);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700615}
616
617/*
618 * Sets the MaxPStreams field and the Linear Stream Array field to 0.
619 * Reinstalls the "normal" endpoint ring (at its previous dequeue mark,
620 * not at the beginning of the ring).
621 */
622void xhci_setup_no_streams_ep_input_ctx(struct xhci_hcd *xhci,
623 struct xhci_ep_ctx *ep_ctx,
624 struct xhci_virt_ep *ep)
625{
626 dma_addr_t addr;
Matt Evans28ccd292011-03-29 13:40:46 +1100627 ep_ctx->ep_info &= cpu_to_le32(~(EP_MAXPSTREAMS_MASK | EP_HAS_LSA));
Sarah Sharp8df75f42010-04-02 15:34:16 -0700628 addr = xhci_trb_virt_to_dma(ep->ring->deq_seg, ep->ring->dequeue);
Matt Evans28ccd292011-03-29 13:40:46 +1100629 ep_ctx->deq = cpu_to_le64(addr | ep->ring->cycle_state);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700630}
631
632/* Frees all stream contexts associated with the endpoint,
633 *
634 * Caller should fix the endpoint context streams fields.
635 */
636void xhci_free_stream_info(struct xhci_hcd *xhci,
637 struct xhci_stream_info *stream_info)
638{
639 int cur_stream;
640 struct xhci_ring *cur_ring;
641 dma_addr_t addr;
642
643 if (!stream_info)
644 return;
645
646 for (cur_stream = 1; cur_stream < stream_info->num_streams;
647 cur_stream++) {
648 cur_ring = stream_info->stream_rings[cur_stream];
649 if (cur_ring) {
650 addr = cur_ring->first_seg->dma;
651 radix_tree_delete(&stream_info->trb_address_map,
652 addr >> SEGMENT_SHIFT);
653 xhci_ring_free(xhci, cur_ring);
654 stream_info->stream_rings[cur_stream] = NULL;
655 }
656 }
657 xhci_free_command(xhci, stream_info->free_streams_command);
658 xhci->cmd_ring_reserved_trbs--;
659 if (stream_info->stream_ctx_array)
660 xhci_free_stream_ctx(xhci,
661 stream_info->num_stream_ctxs,
662 stream_info->stream_ctx_array,
663 stream_info->ctx_array_dma);
664
665 if (stream_info)
666 kfree(stream_info->stream_rings);
667 kfree(stream_info);
668}
669
670
671/***************** Device context manipulation *************************/
672
Sarah Sharp6f5165c2009-10-27 10:57:01 -0700673static void xhci_init_endpoint_timer(struct xhci_hcd *xhci,
674 struct xhci_virt_ep *ep)
675{
676 init_timer(&ep->stop_cmd_timer);
677 ep->stop_cmd_timer.data = (unsigned long) ep;
678 ep->stop_cmd_timer.function = xhci_stop_endpoint_command_watchdog;
679 ep->xhci = xhci;
680}
681
Sarah Sharp839c8172011-09-02 11:05:47 -0700682static void xhci_free_tt_info(struct xhci_hcd *xhci,
683 struct xhci_virt_device *virt_dev,
684 int slot_id)
685{
686 struct list_head *tt;
687 struct list_head *tt_list_head;
688 struct list_head *tt_next;
689 struct xhci_tt_bw_info *tt_info;
690
691 /* If the device never made it past the Set Address stage,
692 * it may not have the real_port set correctly.
693 */
694 if (virt_dev->real_port == 0 ||
695 virt_dev->real_port > HCS_MAX_PORTS(xhci->hcs_params1)) {
696 xhci_dbg(xhci, "Bad real port.\n");
697 return;
698 }
699
700 tt_list_head = &(xhci->rh_bw[virt_dev->real_port - 1].tts);
701 if (list_empty(tt_list_head))
702 return;
703
704 list_for_each(tt, tt_list_head) {
705 tt_info = list_entry(tt, struct xhci_tt_bw_info, tt_list);
706 if (tt_info->slot_id == slot_id)
707 break;
708 }
709 /* Cautionary measure in case the hub was disconnected before we
710 * stored the TT information.
711 */
712 if (tt_info->slot_id != slot_id)
713 return;
714
715 tt_next = tt->next;
716 tt_info = list_entry(tt, struct xhci_tt_bw_info,
717 tt_list);
718 /* Multi-TT hubs will have more than one entry */
719 do {
720 list_del(tt);
721 kfree(tt_info);
722 tt = tt_next;
723 if (list_empty(tt_list_head))
724 break;
725 tt_next = tt->next;
726 tt_info = list_entry(tt, struct xhci_tt_bw_info,
727 tt_list);
728 } while (tt_info->slot_id == slot_id);
729}
730
731int xhci_alloc_tt_info(struct xhci_hcd *xhci,
732 struct xhci_virt_device *virt_dev,
733 struct usb_device *hdev,
734 struct usb_tt *tt, gfp_t mem_flags)
735{
736 struct xhci_tt_bw_info *tt_info;
737 unsigned int num_ports;
738 int i, j;
739
740 if (!tt->multi)
741 num_ports = 1;
742 else
743 num_ports = hdev->maxchild;
744
745 for (i = 0; i < num_ports; i++, tt_info++) {
746 struct xhci_interval_bw_table *bw_table;
747
748 tt_info = kzalloc(sizeof(*tt_info), mem_flags);
749 if (!tt_info)
750 goto free_tts;
751 INIT_LIST_HEAD(&tt_info->tt_list);
752 list_add(&tt_info->tt_list,
753 &xhci->rh_bw[virt_dev->real_port - 1].tts);
754 tt_info->slot_id = virt_dev->udev->slot_id;
755 if (tt->multi)
756 tt_info->ttport = i+1;
757 bw_table = &tt_info->bw_table;
758 for (j = 0; j < XHCI_MAX_INTERVAL; j++)
759 INIT_LIST_HEAD(&bw_table->interval_bw[j].endpoints);
760 }
761 return 0;
762
763free_tts:
764 xhci_free_tt_info(xhci, virt_dev, virt_dev->udev->slot_id);
765 return -ENOMEM;
766}
767
768
769/* All the xhci_tds in the ring's TD list should be freed at this point.
770 * Should be called with xhci->lock held if there is any chance the TT lists
771 * will be manipulated by the configure endpoint, allocate device, or update
772 * hub functions while this function is removing the TT entries from the list.
773 */
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700774void xhci_free_virt_device(struct xhci_hcd *xhci, int slot_id)
775{
776 struct xhci_virt_device *dev;
777 int i;
Sarah Sharp2e279802011-09-02 11:05:50 -0700778 int old_active_eps = 0;
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700779
780 /* Slot ID 0 is reserved */
781 if (slot_id == 0 || !xhci->devs[slot_id])
782 return;
783
784 dev = xhci->devs[slot_id];
Sarah Sharp8e595a52009-07-27 12:03:31 -0700785 xhci->dcbaa->dev_context_ptrs[slot_id] = 0;
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700786 if (!dev)
787 return;
788
Sarah Sharp2e279802011-09-02 11:05:50 -0700789 if (dev->tt_info)
790 old_active_eps = dev->tt_info->active_eps;
791
Sarah Sharp8df75f42010-04-02 15:34:16 -0700792 for (i = 0; i < 31; ++i) {
Sarah Sharp63a0d9a2009-09-04 10:53:09 -0700793 if (dev->eps[i].ring)
794 xhci_ring_free(xhci, dev->eps[i].ring);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700795 if (dev->eps[i].stream_info)
796 xhci_free_stream_info(xhci,
797 dev->eps[i].stream_info);
Sarah Sharp2e279802011-09-02 11:05:50 -0700798 /* Endpoints on the TT/root port lists should have been removed
799 * when usb_disable_device() was called for the device.
800 * We can't drop them anyway, because the udev might have gone
801 * away by this point, and we can't tell what speed it was.
802 */
803 if (!list_empty(&dev->eps[i].bw_endpoint_list))
804 xhci_warn(xhci, "Slot %u endpoint %u "
805 "not removed from BW list!\n",
806 slot_id, i);
Sarah Sharp8df75f42010-04-02 15:34:16 -0700807 }
Sarah Sharp839c8172011-09-02 11:05:47 -0700808 /* If this is a hub, free the TT(s) from the TT list */
809 xhci_free_tt_info(xhci, dev, slot_id);
Sarah Sharp2e279802011-09-02 11:05:50 -0700810 /* If necessary, update the number of active TTs on this root port */
811 xhci_update_tt_active_eps(xhci, dev, old_active_eps);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700812
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800813 if (dev->ring_cache) {
814 for (i = 0; i < dev->num_rings_cached; i++)
815 xhci_ring_free(xhci, dev->ring_cache[i]);
816 kfree(dev->ring_cache);
817 }
818
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700819 if (dev->in_ctx)
John Yound115b042009-07-27 12:05:15 -0700820 xhci_free_container_ctx(xhci, dev->in_ctx);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700821 if (dev->out_ctx)
John Yound115b042009-07-27 12:05:15 -0700822 xhci_free_container_ctx(xhci, dev->out_ctx);
823
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700824 kfree(xhci->devs[slot_id]);
Randy Dunlap326b4812010-04-19 08:53:50 -0700825 xhci->devs[slot_id] = NULL;
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700826}
827
828int xhci_alloc_virt_device(struct xhci_hcd *xhci, int slot_id,
829 struct usb_device *udev, gfp_t flags)
830{
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700831 struct xhci_virt_device *dev;
Sarah Sharp63a0d9a2009-09-04 10:53:09 -0700832 int i;
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700833
834 /* Slot ID 0 is reserved */
835 if (slot_id == 0 || xhci->devs[slot_id]) {
836 xhci_warn(xhci, "Bad Slot ID %d\n", slot_id);
837 return 0;
838 }
839
840 xhci->devs[slot_id] = kzalloc(sizeof(*xhci->devs[slot_id]), flags);
841 if (!xhci->devs[slot_id])
842 return 0;
843 dev = xhci->devs[slot_id];
844
John Yound115b042009-07-27 12:05:15 -0700845 /* Allocate the (output) device context that will be used in the HC. */
846 dev->out_ctx = xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_DEVICE, flags);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700847 if (!dev->out_ctx)
848 goto fail;
John Yound115b042009-07-27 12:05:15 -0700849
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -0700850 xhci_dbg(xhci, "Slot %d output ctx = 0x%llx (dma)\n", slot_id,
John Yound115b042009-07-27 12:05:15 -0700851 (unsigned long long)dev->out_ctx->dma);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700852
853 /* Allocate the (input) device context for address device command */
John Yound115b042009-07-27 12:05:15 -0700854 dev->in_ctx = xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_INPUT, flags);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700855 if (!dev->in_ctx)
856 goto fail;
John Yound115b042009-07-27 12:05:15 -0700857
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -0700858 xhci_dbg(xhci, "Slot %d input ctx = 0x%llx (dma)\n", slot_id,
John Yound115b042009-07-27 12:05:15 -0700859 (unsigned long long)dev->in_ctx->dma);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700860
Sarah Sharp6f5165c2009-10-27 10:57:01 -0700861 /* Initialize the cancellation list and watchdog timers for each ep */
862 for (i = 0; i < 31; i++) {
863 xhci_init_endpoint_timer(xhci, &dev->eps[i]);
Sarah Sharp63a0d9a2009-09-04 10:53:09 -0700864 INIT_LIST_HEAD(&dev->eps[i].cancelled_td_list);
Sarah Sharp2e279802011-09-02 11:05:50 -0700865 INIT_LIST_HEAD(&dev->eps[i].bw_endpoint_list);
Sarah Sharp6f5165c2009-10-27 10:57:01 -0700866 }
Sarah Sharp63a0d9a2009-09-04 10:53:09 -0700867
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700868 /* Allocate endpoint 0 ring */
Andiry Xu3b72fca2012-03-05 17:49:32 +0800869 dev->eps[0].ring = xhci_ring_alloc(xhci, 1, TYPE_CTRL, flags);
Sarah Sharp63a0d9a2009-09-04 10:53:09 -0700870 if (!dev->eps[0].ring)
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700871 goto fail;
872
Sarah Sharp74f9fe22009-12-03 09:44:29 -0800873 /* Allocate pointers to the ring cache */
874 dev->ring_cache = kzalloc(
875 sizeof(struct xhci_ring *)*XHCI_MAX_RINGS_CACHED,
876 flags);
877 if (!dev->ring_cache)
878 goto fail;
879 dev->num_rings_cached = 0;
880
Sarah Sharpf94e01862009-04-27 19:58:38 -0700881 init_completion(&dev->cmd_completion);
Sarah Sharp913a8a32009-09-04 10:53:13 -0700882 INIT_LIST_HEAD(&dev->cmd_list);
Andiry Xu64927732010-10-14 07:22:45 -0700883 dev->udev = udev;
Sarah Sharpf94e01862009-04-27 19:58:38 -0700884
Sarah Sharp28c2d2e2009-07-27 12:05:08 -0700885 /* Point to output device context in dcbaa. */
Matt Evans28ccd292011-03-29 13:40:46 +1100886 xhci->dcbaa->dev_context_ptrs[slot_id] = cpu_to_le64(dev->out_ctx->dma);
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -0700887 xhci_dbg(xhci, "Set slot id %d dcbaa entry %p to 0x%llx\n",
Matt Evans28ccd292011-03-29 13:40:46 +1100888 slot_id,
889 &xhci->dcbaa->dev_context_ptrs[slot_id],
Matt Evansf5960b62011-06-01 10:22:55 +1000890 le64_to_cpu(xhci->dcbaa->dev_context_ptrs[slot_id]));
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700891
892 return 1;
893fail:
894 xhci_free_virt_device(xhci, slot_id);
895 return 0;
896}
897
Sarah Sharp2d1ee592010-07-09 17:08:54 +0200898void xhci_copy_ep0_dequeue_into_input_ctx(struct xhci_hcd *xhci,
899 struct usb_device *udev)
900{
901 struct xhci_virt_device *virt_dev;
902 struct xhci_ep_ctx *ep0_ctx;
903 struct xhci_ring *ep_ring;
904
905 virt_dev = xhci->devs[udev->slot_id];
906 ep0_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, 0);
907 ep_ring = virt_dev->eps[0].ring;
908 /*
909 * FIXME we don't keep track of the dequeue pointer very well after a
910 * Set TR dequeue pointer, so we're setting the dequeue pointer of the
911 * host to our enqueue pointer. This should only be called after a
912 * configured device has reset, so all control transfers should have
913 * been completed or cancelled before the reset.
914 */
Matt Evans28ccd292011-03-29 13:40:46 +1100915 ep0_ctx->deq = cpu_to_le64(xhci_trb_virt_to_dma(ep_ring->enq_seg,
916 ep_ring->enqueue)
917 | ep_ring->cycle_state);
Sarah Sharp2d1ee592010-07-09 17:08:54 +0200918}
919
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -0800920/*
921 * The xHCI roothub may have ports of differing speeds in any order in the port
922 * status registers. xhci->port_array provides an array of the port speed for
923 * each offset into the port status registers.
924 *
925 * The xHCI hardware wants to know the roothub port number that the USB device
926 * is attached to (or the roothub port its ancestor hub is attached to). All we
927 * know is the index of that port under either the USB 2.0 or the USB 3.0
928 * roothub, but that doesn't give us the real index into the HW port status
929 * registers. Scan through the xHCI roothub port array, looking for the Nth
930 * entry of the correct port speed. Return the port number of that entry.
931 */
932static u32 xhci_find_real_port_number(struct xhci_hcd *xhci,
933 struct usb_device *udev)
934{
935 struct usb_device *top_dev;
936 unsigned int num_similar_speed_ports;
937 unsigned int faked_port_num;
938 int i;
939
940 for (top_dev = udev; top_dev->parent && top_dev->parent->parent;
941 top_dev = top_dev->parent)
942 /* Found device below root hub */;
943 faked_port_num = top_dev->portnum;
944 for (i = 0, num_similar_speed_ports = 0;
945 i < HCS_MAX_PORTS(xhci->hcs_params1); i++) {
946 u8 port_speed = xhci->port_array[i];
947
948 /*
949 * Skip ports that don't have known speeds, or have duplicate
950 * Extended Capabilities port speed entries.
951 */
Dan Carpenter22e04872011-03-17 22:39:49 +0300952 if (port_speed == 0 || port_speed == DUPLICATE_ENTRY)
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -0800953 continue;
954
955 /*
956 * USB 3.0 ports are always under a USB 3.0 hub. USB 2.0 and
957 * 1.1 ports are under the USB 2.0 hub. If the port speed
958 * matches the device speed, it's a similar speed port.
959 */
960 if ((port_speed == 0x03) == (udev->speed == USB_SPEED_SUPER))
961 num_similar_speed_ports++;
962 if (num_similar_speed_ports == faked_port_num)
963 /* Roothub ports are numbered from 1 to N */
964 return i+1;
965 }
966 return 0;
967}
968
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700969/* Setup an xHCI virtual device for a Set Address command */
970int xhci_setup_addressable_virt_dev(struct xhci_hcd *xhci, struct usb_device *udev)
971{
972 struct xhci_virt_device *dev;
973 struct xhci_ep_ctx *ep0_ctx;
John Yound115b042009-07-27 12:05:15 -0700974 struct xhci_slot_ctx *slot_ctx;
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -0800975 u32 port_num;
976 struct usb_device *top_dev;
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700977
978 dev = xhci->devs[udev->slot_id];
979 /* Slot ID 0 is reserved */
980 if (udev->slot_id == 0 || !dev) {
981 xhci_warn(xhci, "Slot ID %d is not assigned to this device\n",
982 udev->slot_id);
983 return -EINVAL;
984 }
John Yound115b042009-07-27 12:05:15 -0700985 ep0_ctx = xhci_get_ep_ctx(xhci, dev->in_ctx, 0);
John Yound115b042009-07-27 12:05:15 -0700986 slot_ctx = xhci_get_slot_ctx(xhci, dev->in_ctx);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700987
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700988 /* 3) Only the control endpoint is valid - one endpoint context */
Matt Evansf5960b62011-06-01 10:22:55 +1000989 slot_ctx->dev_info |= cpu_to_le32(LAST_CTX(1) | udev->route);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700990 switch (udev->speed) {
991 case USB_SPEED_SUPER:
Matt Evansf5960b62011-06-01 10:22:55 +1000992 slot_ctx->dev_info |= cpu_to_le32(SLOT_SPEED_SS);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700993 break;
994 case USB_SPEED_HIGH:
Matt Evansf5960b62011-06-01 10:22:55 +1000995 slot_ctx->dev_info |= cpu_to_le32(SLOT_SPEED_HS);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700996 break;
997 case USB_SPEED_FULL:
Matt Evansf5960b62011-06-01 10:22:55 +1000998 slot_ctx->dev_info |= cpu_to_le32(SLOT_SPEED_FS);
Sarah Sharp3ffbba92009-04-27 19:57:38 -0700999 break;
1000 case USB_SPEED_LOW:
Matt Evansf5960b62011-06-01 10:22:55 +10001001 slot_ctx->dev_info |= cpu_to_le32(SLOT_SPEED_LS);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001002 break;
Greg Kroah-Hartman551cdbb2010-01-14 11:08:04 -08001003 case USB_SPEED_WIRELESS:
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001004 xhci_dbg(xhci, "FIXME xHCI doesn't support wireless speeds\n");
1005 return -EINVAL;
1006 break;
1007 default:
1008 /* Speed was set earlier, this shouldn't happen. */
1009 BUG();
1010 }
1011 /* Find the root hub port this device is under */
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08001012 port_num = xhci_find_real_port_number(xhci, udev);
1013 if (!port_num)
1014 return -EINVAL;
Matt Evansf5960b62011-06-01 10:22:55 +10001015 slot_ctx->dev_info2 |= cpu_to_le32(ROOT_HUB_PORT(port_num));
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08001016 /* Set the port number in the virtual_device to the faked port number */
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001017 for (top_dev = udev; top_dev->parent && top_dev->parent->parent;
1018 top_dev = top_dev->parent)
1019 /* Found device below root hub */;
Sarah Sharpfe301822011-09-02 11:05:41 -07001020 dev->fake_port = top_dev->portnum;
Sarah Sharp66381752011-09-02 11:05:45 -07001021 dev->real_port = port_num;
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08001022 xhci_dbg(xhci, "Set root hub portnum to %d\n", port_num);
Sarah Sharpfe301822011-09-02 11:05:41 -07001023 xhci_dbg(xhci, "Set fake root hub portnum to %d\n", dev->fake_port);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001024
Sarah Sharp839c8172011-09-02 11:05:47 -07001025 /* Find the right bandwidth table that this device will be a part of.
1026 * If this is a full speed device attached directly to a root port (or a
1027 * decendent of one), it counts as a primary bandwidth domain, not a
1028 * secondary bandwidth domain under a TT. An xhci_tt_info structure
1029 * will never be created for the HS root hub.
1030 */
1031 if (!udev->tt || !udev->tt->hub->parent) {
1032 dev->bw_table = &xhci->rh_bw[port_num - 1].bw_table;
1033 } else {
1034 struct xhci_root_port_bw_info *rh_bw;
1035 struct xhci_tt_bw_info *tt_bw;
1036
1037 rh_bw = &xhci->rh_bw[port_num - 1];
1038 /* Find the right TT. */
1039 list_for_each_entry(tt_bw, &rh_bw->tts, tt_list) {
1040 if (tt_bw->slot_id != udev->tt->hub->slot_id)
1041 continue;
1042
1043 if (!dev->udev->tt->multi ||
1044 (udev->tt->multi &&
1045 tt_bw->ttport == dev->udev->ttport)) {
1046 dev->bw_table = &tt_bw->bw_table;
1047 dev->tt_info = tt_bw;
1048 break;
1049 }
1050 }
1051 if (!dev->tt_info)
1052 xhci_warn(xhci, "WARN: Didn't find a matching TT\n");
1053 }
1054
Sarah Sharpaa1b13e2011-03-03 05:40:51 -08001055 /* Is this a LS/FS device under an external HS hub? */
1056 if (udev->tt && udev->tt->hub->parent) {
Matt Evans28ccd292011-03-29 13:40:46 +11001057 slot_ctx->tt_info = cpu_to_le32(udev->tt->hub->slot_id |
1058 (udev->ttport << 8));
Sarah Sharp07b6de12009-09-04 10:53:19 -07001059 if (udev->tt->multi)
Matt Evans28ccd292011-03-29 13:40:46 +11001060 slot_ctx->dev_info |= cpu_to_le32(DEV_MTT);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001061 }
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07001062 xhci_dbg(xhci, "udev->tt = %p\n", udev->tt);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001063 xhci_dbg(xhci, "udev->ttport = 0x%x\n", udev->ttport);
1064
1065 /* Step 4 - ring already allocated */
1066 /* Step 5 */
Matt Evans28ccd292011-03-29 13:40:46 +11001067 ep0_ctx->ep_info2 = cpu_to_le32(EP_TYPE(CTRL_EP));
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001068 /*
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001069 * XXX: Not sure about wireless USB devices.
1070 */
Sarah Sharp47aded82009-08-07 14:04:46 -07001071 switch (udev->speed) {
1072 case USB_SPEED_SUPER:
Matt Evans28ccd292011-03-29 13:40:46 +11001073 ep0_ctx->ep_info2 |= cpu_to_le32(MAX_PACKET(512));
Sarah Sharp47aded82009-08-07 14:04:46 -07001074 break;
1075 case USB_SPEED_HIGH:
1076 /* USB core guesses at a 64-byte max packet first for FS devices */
1077 case USB_SPEED_FULL:
Matt Evans28ccd292011-03-29 13:40:46 +11001078 ep0_ctx->ep_info2 |= cpu_to_le32(MAX_PACKET(64));
Sarah Sharp47aded82009-08-07 14:04:46 -07001079 break;
1080 case USB_SPEED_LOW:
Matt Evans28ccd292011-03-29 13:40:46 +11001081 ep0_ctx->ep_info2 |= cpu_to_le32(MAX_PACKET(8));
Sarah Sharp47aded82009-08-07 14:04:46 -07001082 break;
Greg Kroah-Hartman551cdbb2010-01-14 11:08:04 -08001083 case USB_SPEED_WIRELESS:
Sarah Sharp47aded82009-08-07 14:04:46 -07001084 xhci_dbg(xhci, "FIXME xHCI doesn't support wireless speeds\n");
1085 return -EINVAL;
1086 break;
1087 default:
1088 /* New speed? */
1089 BUG();
1090 }
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001091 /* EP 0 can handle "burst" sizes of 1, so Max Burst Size field is 0 */
Matt Evans28ccd292011-03-29 13:40:46 +11001092 ep0_ctx->ep_info2 |= cpu_to_le32(MAX_BURST(0) | ERROR_COUNT(3));
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001093
Matt Evans28ccd292011-03-29 13:40:46 +11001094 ep0_ctx->deq = cpu_to_le64(dev->eps[0].ring->first_seg->dma |
1095 dev->eps[0].ring->cycle_state);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001096
1097 /* Steps 7 and 8 were done in xhci_alloc_virt_device() */
1098
1099 return 0;
1100}
1101
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001102/*
1103 * Convert interval expressed as 2^(bInterval - 1) == interval into
1104 * straight exponent value 2^n == interval.
1105 *
1106 */
1107static unsigned int xhci_parse_exponent_interval(struct usb_device *udev,
1108 struct usb_host_endpoint *ep)
1109{
1110 unsigned int interval;
1111
1112 interval = clamp_val(ep->desc.bInterval, 1, 16) - 1;
1113 if (interval != ep->desc.bInterval - 1)
1114 dev_warn(&udev->dev,
Dmitry Torokhovcd3c18b2011-05-31 14:37:23 -07001115 "ep %#x - rounding interval to %d %sframes\n",
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001116 ep->desc.bEndpointAddress,
Dmitry Torokhovcd3c18b2011-05-31 14:37:23 -07001117 1 << interval,
1118 udev->speed == USB_SPEED_FULL ? "" : "micro");
1119
1120 if (udev->speed == USB_SPEED_FULL) {
1121 /*
1122 * Full speed isoc endpoints specify interval in frames,
1123 * not microframes. We are using microframes everywhere,
1124 * so adjust accordingly.
1125 */
1126 interval += 3; /* 1 frame = 2^3 uframes */
1127 }
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001128
1129 return interval;
1130}
1131
1132/*
Sarah Sharp340a3502012-02-13 14:42:11 -08001133 * Convert bInterval expressed in microframes (in 1-255 range) to exponent of
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001134 * microframes, rounded down to nearest power of 2.
1135 */
Sarah Sharp340a3502012-02-13 14:42:11 -08001136static unsigned int xhci_microframes_to_exponent(struct usb_device *udev,
1137 struct usb_host_endpoint *ep, unsigned int desc_interval,
1138 unsigned int min_exponent, unsigned int max_exponent)
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001139{
1140 unsigned int interval;
1141
Sarah Sharp340a3502012-02-13 14:42:11 -08001142 interval = fls(desc_interval) - 1;
1143 interval = clamp_val(interval, min_exponent, max_exponent);
1144 if ((1 << interval) != desc_interval)
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001145 dev_warn(&udev->dev,
1146 "ep %#x - rounding interval to %d microframes, ep desc says %d microframes\n",
1147 ep->desc.bEndpointAddress,
1148 1 << interval,
Sarah Sharp340a3502012-02-13 14:42:11 -08001149 desc_interval);
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001150
1151 return interval;
1152}
1153
Sarah Sharp340a3502012-02-13 14:42:11 -08001154static unsigned int xhci_parse_microframe_interval(struct usb_device *udev,
1155 struct usb_host_endpoint *ep)
1156{
1157 return xhci_microframes_to_exponent(udev, ep,
1158 ep->desc.bInterval, 0, 15);
1159}
1160
1161
1162static unsigned int xhci_parse_frame_interval(struct usb_device *udev,
1163 struct usb_host_endpoint *ep)
1164{
1165 return xhci_microframes_to_exponent(udev, ep,
1166 ep->desc.bInterval * 8, 3, 10);
1167}
1168
Sarah Sharpf94e01862009-04-27 19:58:38 -07001169/* Return the polling or NAK interval.
1170 *
1171 * The polling interval is expressed in "microframes". If xHCI's Interval field
1172 * is set to N, it will service the endpoint every 2^(Interval)*125us.
1173 *
1174 * The NAK interval is one NAK per 1 to 255 microframes, or no NAKs if interval
1175 * is set to 0.
1176 */
Dmitry Torokhov575688e2011-03-20 02:15:16 -07001177static unsigned int xhci_get_endpoint_interval(struct usb_device *udev,
Sarah Sharpf94e01862009-04-27 19:58:38 -07001178 struct usb_host_endpoint *ep)
1179{
1180 unsigned int interval = 0;
1181
1182 switch (udev->speed) {
1183 case USB_SPEED_HIGH:
1184 /* Max NAK rate */
1185 if (usb_endpoint_xfer_control(&ep->desc) ||
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001186 usb_endpoint_xfer_bulk(&ep->desc)) {
Sarah Sharp340a3502012-02-13 14:42:11 -08001187 interval = xhci_parse_microframe_interval(udev, ep);
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001188 break;
1189 }
Sarah Sharpf94e01862009-04-27 19:58:38 -07001190 /* Fall through - SS and HS isoc/int have same decoding */
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001191
Sarah Sharpf94e01862009-04-27 19:58:38 -07001192 case USB_SPEED_SUPER:
1193 if (usb_endpoint_xfer_int(&ep->desc) ||
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001194 usb_endpoint_xfer_isoc(&ep->desc)) {
1195 interval = xhci_parse_exponent_interval(udev, ep);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001196 }
1197 break;
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001198
Sarah Sharpf94e01862009-04-27 19:58:38 -07001199 case USB_SPEED_FULL:
Sarah Sharpb513d442011-05-13 13:10:01 -07001200 if (usb_endpoint_xfer_isoc(&ep->desc)) {
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001201 interval = xhci_parse_exponent_interval(udev, ep);
1202 break;
1203 }
1204 /*
Sarah Sharpb513d442011-05-13 13:10:01 -07001205 * Fall through for interrupt endpoint interval decoding
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001206 * since it uses the same rules as low speed interrupt
1207 * endpoints.
1208 */
1209
Sarah Sharpf94e01862009-04-27 19:58:38 -07001210 case USB_SPEED_LOW:
1211 if (usb_endpoint_xfer_int(&ep->desc) ||
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001212 usb_endpoint_xfer_isoc(&ep->desc)) {
1213
1214 interval = xhci_parse_frame_interval(udev, ep);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001215 }
1216 break;
Dmitry Torokhovdfa49c42011-03-23 22:41:23 -07001217
Sarah Sharpf94e01862009-04-27 19:58:38 -07001218 default:
1219 BUG();
1220 }
1221 return EP_INTERVAL(interval);
1222}
1223
Sarah Sharpc30c7912010-07-10 15:48:01 +02001224/* The "Mult" field in the endpoint context is only set for SuperSpeed isoc eps.
Sarah Sharp1cf62242010-04-16 08:07:04 -07001225 * High speed endpoint descriptors can define "the number of additional
1226 * transaction opportunities per microframe", but that goes in the Max Burst
1227 * endpoint context field.
1228 */
Dmitry Torokhov575688e2011-03-20 02:15:16 -07001229static u32 xhci_get_endpoint_mult(struct usb_device *udev,
Sarah Sharp1cf62242010-04-16 08:07:04 -07001230 struct usb_host_endpoint *ep)
1231{
Sarah Sharpc30c7912010-07-10 15:48:01 +02001232 if (udev->speed != USB_SPEED_SUPER ||
1233 !usb_endpoint_xfer_isoc(&ep->desc))
Sarah Sharp1cf62242010-04-16 08:07:04 -07001234 return 0;
Alan Stern842f1692010-04-30 12:44:46 -04001235 return ep->ss_ep_comp.bmAttributes;
Sarah Sharp1cf62242010-04-16 08:07:04 -07001236}
1237
Dmitry Torokhov575688e2011-03-20 02:15:16 -07001238static u32 xhci_get_endpoint_type(struct usb_device *udev,
Sarah Sharpf94e01862009-04-27 19:58:38 -07001239 struct usb_host_endpoint *ep)
1240{
1241 int in;
1242 u32 type;
1243
1244 in = usb_endpoint_dir_in(&ep->desc);
1245 if (usb_endpoint_xfer_control(&ep->desc)) {
1246 type = EP_TYPE(CTRL_EP);
1247 } else if (usb_endpoint_xfer_bulk(&ep->desc)) {
1248 if (in)
1249 type = EP_TYPE(BULK_IN_EP);
1250 else
1251 type = EP_TYPE(BULK_OUT_EP);
1252 } else if (usb_endpoint_xfer_isoc(&ep->desc)) {
1253 if (in)
1254 type = EP_TYPE(ISOC_IN_EP);
1255 else
1256 type = EP_TYPE(ISOC_OUT_EP);
1257 } else if (usb_endpoint_xfer_int(&ep->desc)) {
1258 if (in)
1259 type = EP_TYPE(INT_IN_EP);
1260 else
1261 type = EP_TYPE(INT_OUT_EP);
1262 } else {
1263 BUG();
1264 }
1265 return type;
1266}
1267
Sarah Sharp9238f252010-04-16 08:07:27 -07001268/* Return the maximum endpoint service interval time (ESIT) payload.
1269 * Basically, this is the maxpacket size, multiplied by the burst size
1270 * and mult size.
1271 */
Dmitry Torokhov575688e2011-03-20 02:15:16 -07001272static u32 xhci_get_max_esit_payload(struct xhci_hcd *xhci,
Sarah Sharp9238f252010-04-16 08:07:27 -07001273 struct usb_device *udev,
1274 struct usb_host_endpoint *ep)
1275{
1276 int max_burst;
1277 int max_packet;
1278
1279 /* Only applies for interrupt or isochronous endpoints */
1280 if (usb_endpoint_xfer_control(&ep->desc) ||
1281 usb_endpoint_xfer_bulk(&ep->desc))
1282 return 0;
1283
Alan Stern842f1692010-04-30 12:44:46 -04001284 if (udev->speed == USB_SPEED_SUPER)
Sebastian Andrzej Siewior64b3c302011-04-11 20:19:12 +02001285 return le16_to_cpu(ep->ss_ep_comp.wBytesPerInterval);
Sarah Sharp9238f252010-04-16 08:07:27 -07001286
Kuninori Morimoto29cc8892011-08-23 03:12:03 -07001287 max_packet = GET_MAX_PACKET(usb_endpoint_maxp(&ep->desc));
1288 max_burst = (usb_endpoint_maxp(&ep->desc) & 0x1800) >> 11;
Sarah Sharp9238f252010-04-16 08:07:27 -07001289 /* A 0 in max burst means 1 transfer per ESIT */
1290 return max_packet * (max_burst + 1);
1291}
1292
Sarah Sharp8df75f42010-04-02 15:34:16 -07001293/* Set up an endpoint with one ring segment. Do not allocate stream rings.
1294 * Drivers will have to call usb_alloc_streams() to do that.
1295 */
Sarah Sharpf94e01862009-04-27 19:58:38 -07001296int xhci_endpoint_init(struct xhci_hcd *xhci,
1297 struct xhci_virt_device *virt_dev,
1298 struct usb_device *udev,
Sarah Sharpf88ba782009-05-14 11:44:22 -07001299 struct usb_host_endpoint *ep,
1300 gfp_t mem_flags)
Sarah Sharpf94e01862009-04-27 19:58:38 -07001301{
1302 unsigned int ep_index;
1303 struct xhci_ep_ctx *ep_ctx;
1304 struct xhci_ring *ep_ring;
1305 unsigned int max_packet;
1306 unsigned int max_burst;
Andiry Xu3b72fca2012-03-05 17:49:32 +08001307 enum xhci_ring_type type;
Sarah Sharp9238f252010-04-16 08:07:27 -07001308 u32 max_esit_payload;
Sarah Sharpf94e01862009-04-27 19:58:38 -07001309
1310 ep_index = xhci_get_endpoint_index(&ep->desc);
John Yound115b042009-07-27 12:05:15 -07001311 ep_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, ep_index);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001312
Andiry Xu3b72fca2012-03-05 17:49:32 +08001313 type = usb_endpoint_type(&ep->desc);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001314 /* Set up the endpoint ring */
Andiry Xua061a5a2010-07-22 15:23:47 -07001315 /*
1316 * Isochronous endpoint ring needs bigger size because one isoc URB
1317 * carries multiple packets and it will insert multiple tds to the
1318 * ring.
1319 * This should be replaced with dynamic ring resizing in the future.
1320 */
1321 if (usb_endpoint_xfer_isoc(&ep->desc))
1322 virt_dev->eps[ep_index].new_ring =
Andiry Xu3b72fca2012-03-05 17:49:32 +08001323 xhci_ring_alloc(xhci, 8, type, mem_flags);
Andiry Xua061a5a2010-07-22 15:23:47 -07001324 else
1325 virt_dev->eps[ep_index].new_ring =
Andiry Xu3b72fca2012-03-05 17:49:32 +08001326 xhci_ring_alloc(xhci, 1, type, mem_flags);
Sarah Sharp74f9fe22009-12-03 09:44:29 -08001327 if (!virt_dev->eps[ep_index].new_ring) {
1328 /* Attempt to use the ring cache */
1329 if (virt_dev->num_rings_cached == 0)
1330 return -ENOMEM;
1331 virt_dev->eps[ep_index].new_ring =
1332 virt_dev->ring_cache[virt_dev->num_rings_cached];
1333 virt_dev->ring_cache[virt_dev->num_rings_cached] = NULL;
1334 virt_dev->num_rings_cached--;
Andiry Xu7e393a82011-09-23 14:19:54 -07001335 xhci_reinit_cached_ring(xhci, virt_dev->eps[ep_index].new_ring,
Andiry Xu3b72fca2012-03-05 17:49:32 +08001336 type);
Sarah Sharp74f9fe22009-12-03 09:44:29 -08001337 }
Andiry Xud18240d2010-07-22 15:23:25 -07001338 virt_dev->eps[ep_index].skip = false;
Sarah Sharp63a0d9a2009-09-04 10:53:09 -07001339 ep_ring = virt_dev->eps[ep_index].new_ring;
Matt Evans28ccd292011-03-29 13:40:46 +11001340 ep_ctx->deq = cpu_to_le64(ep_ring->first_seg->dma | ep_ring->cycle_state);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001341
Matt Evans28ccd292011-03-29 13:40:46 +11001342 ep_ctx->ep_info = cpu_to_le32(xhci_get_endpoint_interval(udev, ep)
1343 | EP_MULT(xhci_get_endpoint_mult(udev, ep)));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001344
1345 /* FIXME dig Mult and streams info out of ep companion desc */
1346
Sarah Sharp47692d12009-07-27 12:04:27 -07001347 /* Allow 3 retries for everything but isoc;
Andiry Xu7b1fc2e2011-05-05 18:14:00 +08001348 * CErr shall be set to 0 for Isoch endpoints.
Sarah Sharp47692d12009-07-27 12:04:27 -07001349 */
Sarah Sharpf94e01862009-04-27 19:58:38 -07001350 if (!usb_endpoint_xfer_isoc(&ep->desc))
Matt Evans28ccd292011-03-29 13:40:46 +11001351 ep_ctx->ep_info2 = cpu_to_le32(ERROR_COUNT(3));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001352 else
Andiry Xu7b1fc2e2011-05-05 18:14:00 +08001353 ep_ctx->ep_info2 = cpu_to_le32(ERROR_COUNT(0));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001354
Matt Evans28ccd292011-03-29 13:40:46 +11001355 ep_ctx->ep_info2 |= cpu_to_le32(xhci_get_endpoint_type(udev, ep));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001356
1357 /* Set the max packet size and max burst */
1358 switch (udev->speed) {
1359 case USB_SPEED_SUPER:
Kuninori Morimoto29cc8892011-08-23 03:12:03 -07001360 max_packet = usb_endpoint_maxp(&ep->desc);
Matt Evans28ccd292011-03-29 13:40:46 +11001361 ep_ctx->ep_info2 |= cpu_to_le32(MAX_PACKET(max_packet));
Sarah Sharpb10de142009-04-27 19:58:50 -07001362 /* dig out max burst from ep companion desc */
Alan Stern842f1692010-04-30 12:44:46 -04001363 max_packet = ep->ss_ep_comp.bMaxBurst;
Matt Evans28ccd292011-03-29 13:40:46 +11001364 ep_ctx->ep_info2 |= cpu_to_le32(MAX_BURST(max_packet));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001365 break;
1366 case USB_SPEED_HIGH:
1367 /* bits 11:12 specify the number of additional transaction
1368 * opportunities per microframe (USB 2.0, section 9.6.6)
1369 */
1370 if (usb_endpoint_xfer_isoc(&ep->desc) ||
1371 usb_endpoint_xfer_int(&ep->desc)) {
Kuninori Morimoto29cc8892011-08-23 03:12:03 -07001372 max_burst = (usb_endpoint_maxp(&ep->desc)
Matt Evans28ccd292011-03-29 13:40:46 +11001373 & 0x1800) >> 11;
1374 ep_ctx->ep_info2 |= cpu_to_le32(MAX_BURST(max_burst));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001375 }
1376 /* Fall through */
1377 case USB_SPEED_FULL:
1378 case USB_SPEED_LOW:
Kuninori Morimoto29cc8892011-08-23 03:12:03 -07001379 max_packet = GET_MAX_PACKET(usb_endpoint_maxp(&ep->desc));
Matt Evans28ccd292011-03-29 13:40:46 +11001380 ep_ctx->ep_info2 |= cpu_to_le32(MAX_PACKET(max_packet));
Sarah Sharpf94e01862009-04-27 19:58:38 -07001381 break;
1382 default:
1383 BUG();
1384 }
Sarah Sharp9238f252010-04-16 08:07:27 -07001385 max_esit_payload = xhci_get_max_esit_payload(xhci, udev, ep);
Matt Evans28ccd292011-03-29 13:40:46 +11001386 ep_ctx->tx_info = cpu_to_le32(MAX_ESIT_PAYLOAD_FOR_EP(max_esit_payload));
Sarah Sharp9238f252010-04-16 08:07:27 -07001387
1388 /*
1389 * XXX no idea how to calculate the average TRB buffer length for bulk
1390 * endpoints, as the driver gives us no clue how big each scatter gather
1391 * list entry (or buffer) is going to be.
1392 *
1393 * For isochronous and interrupt endpoints, we set it to the max
1394 * available, until we have new API in the USB core to allow drivers to
1395 * declare how much bandwidth they actually need.
1396 *
1397 * Normally, it would be calculated by taking the total of the buffer
1398 * lengths in the TD and then dividing by the number of TRBs in a TD,
1399 * including link TRBs, No-op TRBs, and Event data TRBs. Since we don't
1400 * use Event Data TRBs, and we don't chain in a link TRB on short
1401 * transfers, we're basically dividing by 1.
Andiry Xu51eb01a2011-05-05 18:13:58 +08001402 *
1403 * xHCI 1.0 specification indicates that the Average TRB Length should
1404 * be set to 8 for control endpoints.
Sarah Sharp9238f252010-04-16 08:07:27 -07001405 */
Andiry Xu51eb01a2011-05-05 18:13:58 +08001406 if (usb_endpoint_xfer_control(&ep->desc) && xhci->hci_version == 0x100)
1407 ep_ctx->tx_info |= cpu_to_le32(AVG_TRB_LENGTH_FOR_EP(8));
1408 else
1409 ep_ctx->tx_info |=
1410 cpu_to_le32(AVG_TRB_LENGTH_FOR_EP(max_esit_payload));
Sarah Sharp9238f252010-04-16 08:07:27 -07001411
Sarah Sharpf94e01862009-04-27 19:58:38 -07001412 /* FIXME Debug endpoint context */
1413 return 0;
1414}
1415
1416void xhci_endpoint_zero(struct xhci_hcd *xhci,
1417 struct xhci_virt_device *virt_dev,
1418 struct usb_host_endpoint *ep)
1419{
1420 unsigned int ep_index;
1421 struct xhci_ep_ctx *ep_ctx;
1422
1423 ep_index = xhci_get_endpoint_index(&ep->desc);
John Yound115b042009-07-27 12:05:15 -07001424 ep_ctx = xhci_get_ep_ctx(xhci, virt_dev->in_ctx, ep_index);
Sarah Sharpf94e01862009-04-27 19:58:38 -07001425
1426 ep_ctx->ep_info = 0;
1427 ep_ctx->ep_info2 = 0;
Sarah Sharp8e595a52009-07-27 12:03:31 -07001428 ep_ctx->deq = 0;
Sarah Sharpf94e01862009-04-27 19:58:38 -07001429 ep_ctx->tx_info = 0;
1430 /* Don't free the endpoint ring until the set interface or configuration
1431 * request succeeds.
1432 */
1433}
1434
Sarah Sharp9af5d712011-09-02 11:05:48 -07001435void xhci_clear_endpoint_bw_info(struct xhci_bw_info *bw_info)
1436{
1437 bw_info->ep_interval = 0;
1438 bw_info->mult = 0;
1439 bw_info->num_packets = 0;
1440 bw_info->max_packet_size = 0;
1441 bw_info->type = 0;
1442 bw_info->max_esit_payload = 0;
1443}
1444
1445void xhci_update_bw_info(struct xhci_hcd *xhci,
1446 struct xhci_container_ctx *in_ctx,
1447 struct xhci_input_control_ctx *ctrl_ctx,
1448 struct xhci_virt_device *virt_dev)
1449{
1450 struct xhci_bw_info *bw_info;
1451 struct xhci_ep_ctx *ep_ctx;
1452 unsigned int ep_type;
1453 int i;
1454
1455 for (i = 1; i < 31; ++i) {
1456 bw_info = &virt_dev->eps[i].bw_info;
1457
1458 /* We can't tell what endpoint type is being dropped, but
1459 * unconditionally clearing the bandwidth info for non-periodic
1460 * endpoints should be harmless because the info will never be
1461 * set in the first place.
1462 */
1463 if (!EP_IS_ADDED(ctrl_ctx, i) && EP_IS_DROPPED(ctrl_ctx, i)) {
1464 /* Dropped endpoint */
1465 xhci_clear_endpoint_bw_info(bw_info);
1466 continue;
1467 }
1468
1469 if (EP_IS_ADDED(ctrl_ctx, i)) {
1470 ep_ctx = xhci_get_ep_ctx(xhci, in_ctx, i);
1471 ep_type = CTX_TO_EP_TYPE(le32_to_cpu(ep_ctx->ep_info2));
1472
1473 /* Ignore non-periodic endpoints */
1474 if (ep_type != ISOC_OUT_EP && ep_type != INT_OUT_EP &&
1475 ep_type != ISOC_IN_EP &&
1476 ep_type != INT_IN_EP)
1477 continue;
1478
1479 /* Added or changed endpoint */
1480 bw_info->ep_interval = CTX_TO_EP_INTERVAL(
1481 le32_to_cpu(ep_ctx->ep_info));
Sarah Sharp170c0262011-09-13 16:41:12 -07001482 /* Number of packets and mult are zero-based in the
1483 * input context, but we want one-based for the
1484 * interval table.
Sarah Sharp9af5d712011-09-02 11:05:48 -07001485 */
Sarah Sharp170c0262011-09-13 16:41:12 -07001486 bw_info->mult = CTX_TO_EP_MULT(
1487 le32_to_cpu(ep_ctx->ep_info)) + 1;
Sarah Sharp9af5d712011-09-02 11:05:48 -07001488 bw_info->num_packets = CTX_TO_MAX_BURST(
1489 le32_to_cpu(ep_ctx->ep_info2)) + 1;
1490 bw_info->max_packet_size = MAX_PACKET_DECODED(
1491 le32_to_cpu(ep_ctx->ep_info2));
1492 bw_info->type = ep_type;
1493 bw_info->max_esit_payload = CTX_TO_MAX_ESIT_PAYLOAD(
1494 le32_to_cpu(ep_ctx->tx_info));
1495 }
1496 }
1497}
1498
Sarah Sharpf2217e82009-08-07 14:04:43 -07001499/* Copy output xhci_ep_ctx to the input xhci_ep_ctx copy.
1500 * Useful when you want to change one particular aspect of the endpoint and then
1501 * issue a configure endpoint command.
1502 */
1503void xhci_endpoint_copy(struct xhci_hcd *xhci,
Sarah Sharp913a8a32009-09-04 10:53:13 -07001504 struct xhci_container_ctx *in_ctx,
1505 struct xhci_container_ctx *out_ctx,
1506 unsigned int ep_index)
Sarah Sharpf2217e82009-08-07 14:04:43 -07001507{
1508 struct xhci_ep_ctx *out_ep_ctx;
1509 struct xhci_ep_ctx *in_ep_ctx;
1510
Sarah Sharp913a8a32009-09-04 10:53:13 -07001511 out_ep_ctx = xhci_get_ep_ctx(xhci, out_ctx, ep_index);
1512 in_ep_ctx = xhci_get_ep_ctx(xhci, in_ctx, ep_index);
Sarah Sharpf2217e82009-08-07 14:04:43 -07001513
1514 in_ep_ctx->ep_info = out_ep_ctx->ep_info;
1515 in_ep_ctx->ep_info2 = out_ep_ctx->ep_info2;
1516 in_ep_ctx->deq = out_ep_ctx->deq;
1517 in_ep_ctx->tx_info = out_ep_ctx->tx_info;
1518}
1519
1520/* Copy output xhci_slot_ctx to the input xhci_slot_ctx.
1521 * Useful when you want to change one particular aspect of the endpoint and then
1522 * issue a configure endpoint command. Only the context entries field matters,
1523 * but we'll copy the whole thing anyway.
1524 */
Sarah Sharp913a8a32009-09-04 10:53:13 -07001525void xhci_slot_copy(struct xhci_hcd *xhci,
1526 struct xhci_container_ctx *in_ctx,
1527 struct xhci_container_ctx *out_ctx)
Sarah Sharpf2217e82009-08-07 14:04:43 -07001528{
1529 struct xhci_slot_ctx *in_slot_ctx;
1530 struct xhci_slot_ctx *out_slot_ctx;
1531
Sarah Sharp913a8a32009-09-04 10:53:13 -07001532 in_slot_ctx = xhci_get_slot_ctx(xhci, in_ctx);
1533 out_slot_ctx = xhci_get_slot_ctx(xhci, out_ctx);
Sarah Sharpf2217e82009-08-07 14:04:43 -07001534
1535 in_slot_ctx->dev_info = out_slot_ctx->dev_info;
1536 in_slot_ctx->dev_info2 = out_slot_ctx->dev_info2;
1537 in_slot_ctx->tt_info = out_slot_ctx->tt_info;
1538 in_slot_ctx->dev_state = out_slot_ctx->dev_state;
1539}
1540
John Youn254c80a2009-07-27 12:05:03 -07001541/* Set up the scratchpad buffer array and scratchpad buffers, if needed. */
1542static int scratchpad_alloc(struct xhci_hcd *xhci, gfp_t flags)
1543{
1544 int i;
1545 struct device *dev = xhci_to_hcd(xhci)->self.controller;
1546 int num_sp = HCS_MAX_SCRATCHPAD(xhci->hcs_params2);
1547
1548 xhci_dbg(xhci, "Allocating %d scratchpad buffers\n", num_sp);
1549
1550 if (!num_sp)
1551 return 0;
1552
1553 xhci->scratchpad = kzalloc(sizeof(*xhci->scratchpad), flags);
1554 if (!xhci->scratchpad)
1555 goto fail_sp;
1556
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001557 xhci->scratchpad->sp_array = dma_alloc_coherent(dev,
John Youn254c80a2009-07-27 12:05:03 -07001558 num_sp * sizeof(u64),
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001559 &xhci->scratchpad->sp_dma, flags);
John Youn254c80a2009-07-27 12:05:03 -07001560 if (!xhci->scratchpad->sp_array)
1561 goto fail_sp2;
1562
1563 xhci->scratchpad->sp_buffers = kzalloc(sizeof(void *) * num_sp, flags);
1564 if (!xhci->scratchpad->sp_buffers)
1565 goto fail_sp3;
1566
1567 xhci->scratchpad->sp_dma_buffers =
1568 kzalloc(sizeof(dma_addr_t) * num_sp, flags);
1569
1570 if (!xhci->scratchpad->sp_dma_buffers)
1571 goto fail_sp4;
1572
Matt Evans28ccd292011-03-29 13:40:46 +11001573 xhci->dcbaa->dev_context_ptrs[0] = cpu_to_le64(xhci->scratchpad->sp_dma);
John Youn254c80a2009-07-27 12:05:03 -07001574 for (i = 0; i < num_sp; i++) {
1575 dma_addr_t dma;
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001576 void *buf = dma_alloc_coherent(dev, xhci->page_size, &dma,
1577 flags);
John Youn254c80a2009-07-27 12:05:03 -07001578 if (!buf)
1579 goto fail_sp5;
1580
1581 xhci->scratchpad->sp_array[i] = dma;
1582 xhci->scratchpad->sp_buffers[i] = buf;
1583 xhci->scratchpad->sp_dma_buffers[i] = dma;
1584 }
1585
1586 return 0;
1587
1588 fail_sp5:
1589 for (i = i - 1; i >= 0; i--) {
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001590 dma_free_coherent(dev, xhci->page_size,
John Youn254c80a2009-07-27 12:05:03 -07001591 xhci->scratchpad->sp_buffers[i],
1592 xhci->scratchpad->sp_dma_buffers[i]);
1593 }
1594 kfree(xhci->scratchpad->sp_dma_buffers);
1595
1596 fail_sp4:
1597 kfree(xhci->scratchpad->sp_buffers);
1598
1599 fail_sp3:
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001600 dma_free_coherent(dev, num_sp * sizeof(u64),
John Youn254c80a2009-07-27 12:05:03 -07001601 xhci->scratchpad->sp_array,
1602 xhci->scratchpad->sp_dma);
1603
1604 fail_sp2:
1605 kfree(xhci->scratchpad);
1606 xhci->scratchpad = NULL;
1607
1608 fail_sp:
1609 return -ENOMEM;
1610}
1611
1612static void scratchpad_free(struct xhci_hcd *xhci)
1613{
1614 int num_sp;
1615 int i;
1616 struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller);
1617
1618 if (!xhci->scratchpad)
1619 return;
1620
1621 num_sp = HCS_MAX_SCRATCHPAD(xhci->hcs_params2);
1622
1623 for (i = 0; i < num_sp; i++) {
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001624 dma_free_coherent(&pdev->dev, xhci->page_size,
John Youn254c80a2009-07-27 12:05:03 -07001625 xhci->scratchpad->sp_buffers[i],
1626 xhci->scratchpad->sp_dma_buffers[i]);
1627 }
1628 kfree(xhci->scratchpad->sp_dma_buffers);
1629 kfree(xhci->scratchpad->sp_buffers);
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001630 dma_free_coherent(&pdev->dev, num_sp * sizeof(u64),
John Youn254c80a2009-07-27 12:05:03 -07001631 xhci->scratchpad->sp_array,
1632 xhci->scratchpad->sp_dma);
1633 kfree(xhci->scratchpad);
1634 xhci->scratchpad = NULL;
1635}
1636
Sarah Sharp913a8a32009-09-04 10:53:13 -07001637struct xhci_command *xhci_alloc_command(struct xhci_hcd *xhci,
Sarah Sharpa1d78c12009-12-09 15:59:03 -08001638 bool allocate_in_ctx, bool allocate_completion,
1639 gfp_t mem_flags)
Sarah Sharp913a8a32009-09-04 10:53:13 -07001640{
1641 struct xhci_command *command;
1642
1643 command = kzalloc(sizeof(*command), mem_flags);
1644 if (!command)
1645 return NULL;
1646
Sarah Sharpa1d78c12009-12-09 15:59:03 -08001647 if (allocate_in_ctx) {
1648 command->in_ctx =
1649 xhci_alloc_container_ctx(xhci, XHCI_CTX_TYPE_INPUT,
1650 mem_flags);
1651 if (!command->in_ctx) {
1652 kfree(command);
1653 return NULL;
1654 }
Julia Lawall06e18292009-11-21 12:51:47 +01001655 }
Sarah Sharp913a8a32009-09-04 10:53:13 -07001656
1657 if (allocate_completion) {
1658 command->completion =
1659 kzalloc(sizeof(struct completion), mem_flags);
1660 if (!command->completion) {
1661 xhci_free_container_ctx(xhci, command->in_ctx);
Julia Lawall06e18292009-11-21 12:51:47 +01001662 kfree(command);
Sarah Sharp913a8a32009-09-04 10:53:13 -07001663 return NULL;
1664 }
1665 init_completion(command->completion);
1666 }
1667
1668 command->status = 0;
1669 INIT_LIST_HEAD(&command->cmd_list);
1670 return command;
1671}
1672
Andiry Xu8e51adc2010-07-22 15:23:31 -07001673void xhci_urb_free_priv(struct xhci_hcd *xhci, struct urb_priv *urb_priv)
1674{
Andiry Xu2ffdea22011-09-02 11:05:57 -07001675 if (urb_priv) {
1676 kfree(urb_priv->td[0]);
1677 kfree(urb_priv);
Andiry Xu8e51adc2010-07-22 15:23:31 -07001678 }
Andiry Xu8e51adc2010-07-22 15:23:31 -07001679}
1680
Sarah Sharp913a8a32009-09-04 10:53:13 -07001681void xhci_free_command(struct xhci_hcd *xhci,
1682 struct xhci_command *command)
1683{
1684 xhci_free_container_ctx(xhci,
1685 command->in_ctx);
1686 kfree(command->completion);
1687 kfree(command);
1688}
1689
Sarah Sharp66d4ead2009-04-27 19:52:28 -07001690void xhci_mem_cleanup(struct xhci_hcd *xhci)
1691{
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001692 struct pci_dev *pdev = to_pci_dev(xhci_to_hcd(xhci)->self.controller);
Andiry Xu95743232011-09-23 14:19:51 -07001693 struct dev_info *dev_info, *next;
1694 unsigned long flags;
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001695 int size;
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001696 int i;
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001697
1698 /* Free the Event Ring Segment Table and the actual Event Ring */
Sarah Sharpd94c05e2009-11-03 22:02:22 -08001699 if (xhci->ir_set) {
1700 xhci_writel(xhci, 0, &xhci->ir_set->erst_size);
1701 xhci_write_64(xhci, 0, &xhci->ir_set->erst_base);
1702 xhci_write_64(xhci, 0, &xhci->ir_set->erst_dequeue);
1703 }
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001704 size = sizeof(struct xhci_erst_entry)*(xhci->erst.num_entries);
1705 if (xhci->erst.entries)
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001706 dma_free_coherent(&pdev->dev, size,
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001707 xhci->erst.entries, xhci->erst.erst_dma_addr);
1708 xhci->erst.entries = NULL;
1709 xhci_dbg(xhci, "Freed ERST\n");
1710 if (xhci->event_ring)
1711 xhci_ring_free(xhci, xhci->event_ring);
1712 xhci->event_ring = NULL;
1713 xhci_dbg(xhci, "Freed event ring\n");
1714
Sarah Sharp8e595a52009-07-27 12:03:31 -07001715 xhci_write_64(xhci, 0, &xhci->op_regs->cmd_ring);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001716 if (xhci->cmd_ring)
1717 xhci_ring_free(xhci, xhci->cmd_ring);
1718 xhci->cmd_ring = NULL;
1719 xhci_dbg(xhci, "Freed command ring\n");
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001720
1721 for (i = 1; i < MAX_HC_SLOTS; ++i)
1722 xhci_free_virt_device(xhci, i);
1723
Sarah Sharp0ebbab32009-04-27 19:52:34 -07001724 if (xhci->segment_pool)
1725 dma_pool_destroy(xhci->segment_pool);
1726 xhci->segment_pool = NULL;
1727 xhci_dbg(xhci, "Freed segment pool\n");
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001728
1729 if (xhci->device_pool)
1730 dma_pool_destroy(xhci->device_pool);
1731 xhci->device_pool = NULL;
1732 xhci_dbg(xhci, "Freed device context pool\n");
1733
Sarah Sharp8df75f42010-04-02 15:34:16 -07001734 if (xhci->small_streams_pool)
1735 dma_pool_destroy(xhci->small_streams_pool);
1736 xhci->small_streams_pool = NULL;
1737 xhci_dbg(xhci, "Freed small stream array pool\n");
1738
1739 if (xhci->medium_streams_pool)
1740 dma_pool_destroy(xhci->medium_streams_pool);
1741 xhci->medium_streams_pool = NULL;
1742 xhci_dbg(xhci, "Freed medium stream array pool\n");
1743
Sarah Sharp8e595a52009-07-27 12:03:31 -07001744 xhci_write_64(xhci, 0, &xhci->op_regs->dcbaa_ptr);
Sarah Sharpa74588f2009-04-27 19:53:42 -07001745 if (xhci->dcbaa)
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07001746 dma_free_coherent(&pdev->dev, sizeof(*xhci->dcbaa),
Sarah Sharpa74588f2009-04-27 19:53:42 -07001747 xhci->dcbaa, xhci->dcbaa->dma);
1748 xhci->dcbaa = NULL;
Sarah Sharp3ffbba92009-04-27 19:57:38 -07001749
Sarah Sharp5294bea2009-11-04 11:22:19 -08001750 scratchpad_free(xhci);
Sarah Sharpda6699c2010-10-26 16:47:13 -07001751
Andiry Xu95743232011-09-23 14:19:51 -07001752 spin_lock_irqsave(&xhci->lock, flags);
1753 list_for_each_entry_safe(dev_info, next, &xhci->lpm_failed_devs, list) {
1754 list_del(&dev_info->list);
1755 kfree(dev_info);
1756 }
1757 spin_unlock_irqrestore(&xhci->lock, flags);
1758
Sarah Sharpda6699c2010-10-26 16:47:13 -07001759 xhci->num_usb2_ports = 0;
1760 xhci->num_usb3_ports = 0;
1761 kfree(xhci->usb2_ports);
1762 kfree(xhci->usb3_ports);
1763 kfree(xhci->port_array);
Sarah Sharp839c8172011-09-02 11:05:47 -07001764 kfree(xhci->rh_bw);
Sarah Sharpda6699c2010-10-26 16:47:13 -07001765
Sarah Sharp66d4ead2009-04-27 19:52:28 -07001766 xhci->page_size = 0;
1767 xhci->page_shift = 0;
Sarah Sharp20b67cf2010-12-15 12:47:14 -08001768 xhci->bus_state[0].bus_suspended = 0;
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08001769 xhci->bus_state[1].bus_suspended = 0;
Sarah Sharp66d4ead2009-04-27 19:52:28 -07001770}
1771
Sarah Sharp6648f292009-11-09 13:35:23 -08001772static int xhci_test_trb_in_td(struct xhci_hcd *xhci,
1773 struct xhci_segment *input_seg,
1774 union xhci_trb *start_trb,
1775 union xhci_trb *end_trb,
1776 dma_addr_t input_dma,
1777 struct xhci_segment *result_seg,
1778 char *test_name, int test_number)
1779{
1780 unsigned long long start_dma;
1781 unsigned long long end_dma;
1782 struct xhci_segment *seg;
1783
1784 start_dma = xhci_trb_virt_to_dma(input_seg, start_trb);
1785 end_dma = xhci_trb_virt_to_dma(input_seg, end_trb);
1786
1787 seg = trb_in_td(input_seg, start_trb, end_trb, input_dma);
1788 if (seg != result_seg) {
1789 xhci_warn(xhci, "WARN: %s TRB math test %d failed!\n",
1790 test_name, test_number);
1791 xhci_warn(xhci, "Tested TRB math w/ seg %p and "
1792 "input DMA 0x%llx\n",
1793 input_seg,
1794 (unsigned long long) input_dma);
1795 xhci_warn(xhci, "starting TRB %p (0x%llx DMA), "
1796 "ending TRB %p (0x%llx DMA)\n",
1797 start_trb, start_dma,
1798 end_trb, end_dma);
1799 xhci_warn(xhci, "Expected seg %p, got seg %p\n",
1800 result_seg, seg);
1801 return -1;
1802 }
1803 return 0;
1804}
1805
1806/* TRB math checks for xhci_trb_in_td(), using the command and event rings. */
1807static int xhci_check_trb_in_td_math(struct xhci_hcd *xhci, gfp_t mem_flags)
1808{
1809 struct {
1810 dma_addr_t input_dma;
1811 struct xhci_segment *result_seg;
1812 } simple_test_vector [] = {
1813 /* A zeroed DMA field should fail */
1814 { 0, NULL },
1815 /* One TRB before the ring start should fail */
1816 { xhci->event_ring->first_seg->dma - 16, NULL },
1817 /* One byte before the ring start should fail */
1818 { xhci->event_ring->first_seg->dma - 1, NULL },
1819 /* Starting TRB should succeed */
1820 { xhci->event_ring->first_seg->dma, xhci->event_ring->first_seg },
1821 /* Ending TRB should succeed */
1822 { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 1)*16,
1823 xhci->event_ring->first_seg },
1824 /* One byte after the ring end should fail */
1825 { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 1)*16 + 1, NULL },
1826 /* One TRB after the ring end should fail */
1827 { xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT)*16, NULL },
1828 /* An address of all ones should fail */
1829 { (dma_addr_t) (~0), NULL },
1830 };
1831 struct {
1832 struct xhci_segment *input_seg;
1833 union xhci_trb *start_trb;
1834 union xhci_trb *end_trb;
1835 dma_addr_t input_dma;
1836 struct xhci_segment *result_seg;
1837 } complex_test_vector [] = {
1838 /* Test feeding a valid DMA address from a different ring */
1839 { .input_seg = xhci->event_ring->first_seg,
1840 .start_trb = xhci->event_ring->first_seg->trbs,
1841 .end_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1],
1842 .input_dma = xhci->cmd_ring->first_seg->dma,
1843 .result_seg = NULL,
1844 },
1845 /* Test feeding a valid end TRB from a different ring */
1846 { .input_seg = xhci->event_ring->first_seg,
1847 .start_trb = xhci->event_ring->first_seg->trbs,
1848 .end_trb = &xhci->cmd_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1],
1849 .input_dma = xhci->cmd_ring->first_seg->dma,
1850 .result_seg = NULL,
1851 },
1852 /* Test feeding a valid start and end TRB from a different ring */
1853 { .input_seg = xhci->event_ring->first_seg,
1854 .start_trb = xhci->cmd_ring->first_seg->trbs,
1855 .end_trb = &xhci->cmd_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1],
1856 .input_dma = xhci->cmd_ring->first_seg->dma,
1857 .result_seg = NULL,
1858 },
1859 /* TRB in this ring, but after this TD */
1860 { .input_seg = xhci->event_ring->first_seg,
1861 .start_trb = &xhci->event_ring->first_seg->trbs[0],
1862 .end_trb = &xhci->event_ring->first_seg->trbs[3],
1863 .input_dma = xhci->event_ring->first_seg->dma + 4*16,
1864 .result_seg = NULL,
1865 },
1866 /* TRB in this ring, but before this TD */
1867 { .input_seg = xhci->event_ring->first_seg,
1868 .start_trb = &xhci->event_ring->first_seg->trbs[3],
1869 .end_trb = &xhci->event_ring->first_seg->trbs[6],
1870 .input_dma = xhci->event_ring->first_seg->dma + 2*16,
1871 .result_seg = NULL,
1872 },
1873 /* TRB in this ring, but after this wrapped TD */
1874 { .input_seg = xhci->event_ring->first_seg,
1875 .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3],
1876 .end_trb = &xhci->event_ring->first_seg->trbs[1],
1877 .input_dma = xhci->event_ring->first_seg->dma + 2*16,
1878 .result_seg = NULL,
1879 },
1880 /* TRB in this ring, but before this wrapped TD */
1881 { .input_seg = xhci->event_ring->first_seg,
1882 .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3],
1883 .end_trb = &xhci->event_ring->first_seg->trbs[1],
1884 .input_dma = xhci->event_ring->first_seg->dma + (TRBS_PER_SEGMENT - 4)*16,
1885 .result_seg = NULL,
1886 },
1887 /* TRB not in this ring, and we have a wrapped TD */
1888 { .input_seg = xhci->event_ring->first_seg,
1889 .start_trb = &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 3],
1890 .end_trb = &xhci->event_ring->first_seg->trbs[1],
1891 .input_dma = xhci->cmd_ring->first_seg->dma + 2*16,
1892 .result_seg = NULL,
1893 },
1894 };
1895
1896 unsigned int num_tests;
1897 int i, ret;
1898
Kulikov Vasiliye10fa472010-06-28 15:55:46 +04001899 num_tests = ARRAY_SIZE(simple_test_vector);
Sarah Sharp6648f292009-11-09 13:35:23 -08001900 for (i = 0; i < num_tests; i++) {
1901 ret = xhci_test_trb_in_td(xhci,
1902 xhci->event_ring->first_seg,
1903 xhci->event_ring->first_seg->trbs,
1904 &xhci->event_ring->first_seg->trbs[TRBS_PER_SEGMENT - 1],
1905 simple_test_vector[i].input_dma,
1906 simple_test_vector[i].result_seg,
1907 "Simple", i);
1908 if (ret < 0)
1909 return ret;
1910 }
1911
Kulikov Vasiliye10fa472010-06-28 15:55:46 +04001912 num_tests = ARRAY_SIZE(complex_test_vector);
Sarah Sharp6648f292009-11-09 13:35:23 -08001913 for (i = 0; i < num_tests; i++) {
1914 ret = xhci_test_trb_in_td(xhci,
1915 complex_test_vector[i].input_seg,
1916 complex_test_vector[i].start_trb,
1917 complex_test_vector[i].end_trb,
1918 complex_test_vector[i].input_dma,
1919 complex_test_vector[i].result_seg,
1920 "Complex", i);
1921 if (ret < 0)
1922 return ret;
1923 }
1924 xhci_dbg(xhci, "TRB math tests passed.\n");
1925 return 0;
1926}
1927
Sarah Sharp257d5852010-07-29 22:12:56 -07001928static void xhci_set_hc_event_deq(struct xhci_hcd *xhci)
1929{
1930 u64 temp;
1931 dma_addr_t deq;
1932
1933 deq = xhci_trb_virt_to_dma(xhci->event_ring->deq_seg,
1934 xhci->event_ring->dequeue);
1935 if (deq == 0 && !in_interrupt())
1936 xhci_warn(xhci, "WARN something wrong with SW event ring "
1937 "dequeue ptr.\n");
1938 /* Update HC event ring dequeue pointer */
1939 temp = xhci_read_64(xhci, &xhci->ir_set->erst_dequeue);
1940 temp &= ERST_PTR_MASK;
1941 /* Don't clear the EHB bit (which is RW1C) because
1942 * there might be more events to service.
1943 */
1944 temp &= ~ERST_EHB;
1945 xhci_dbg(xhci, "// Write event ring dequeue pointer, "
1946 "preserving EHB bit\n");
1947 xhci_write_64(xhci, ((u64) deq & (u64) ~ERST_PTR_MASK) | temp,
1948 &xhci->ir_set->erst_dequeue);
1949}
1950
Sarah Sharpda6699c2010-10-26 16:47:13 -07001951static void xhci_add_in_port(struct xhci_hcd *xhci, unsigned int num_ports,
Matt Evans28ccd292011-03-29 13:40:46 +11001952 __le32 __iomem *addr, u8 major_revision)
Sarah Sharpda6699c2010-10-26 16:47:13 -07001953{
1954 u32 temp, port_offset, port_count;
1955 int i;
1956
1957 if (major_revision > 0x03) {
1958 xhci_warn(xhci, "Ignoring unknown port speed, "
1959 "Ext Cap %p, revision = 0x%x\n",
1960 addr, major_revision);
1961 /* Ignoring port protocol we can't understand. FIXME */
1962 return;
1963 }
1964
1965 /* Port offset and count in the third dword, see section 7.2 */
1966 temp = xhci_readl(xhci, addr + 2);
1967 port_offset = XHCI_EXT_PORT_OFF(temp);
1968 port_count = XHCI_EXT_PORT_COUNT(temp);
1969 xhci_dbg(xhci, "Ext Cap %p, port offset = %u, "
1970 "count = %u, revision = 0x%x\n",
1971 addr, port_offset, port_count, major_revision);
1972 /* Port count includes the current port offset */
1973 if (port_offset == 0 || (port_offset + port_count - 1) > num_ports)
1974 /* WTF? "Valid values are ‘1’ to MaxPorts" */
1975 return;
Andiry Xufc71ff72011-09-23 14:19:51 -07001976
1977 /* Check the host's USB2 LPM capability */
1978 if ((xhci->hci_version == 0x96) && (major_revision != 0x03) &&
1979 (temp & XHCI_L1C)) {
1980 xhci_dbg(xhci, "xHCI 0.96: support USB2 software lpm\n");
1981 xhci->sw_lpm_support = 1;
1982 }
1983
1984 if ((xhci->hci_version >= 0x100) && (major_revision != 0x03)) {
1985 xhci_dbg(xhci, "xHCI 1.0: support USB2 software lpm\n");
1986 xhci->sw_lpm_support = 1;
1987 if (temp & XHCI_HLC) {
1988 xhci_dbg(xhci, "xHCI 1.0: support USB2 hardware lpm\n");
1989 xhci->hw_lpm_support = 1;
1990 }
1991 }
1992
Sarah Sharpda6699c2010-10-26 16:47:13 -07001993 port_offset--;
1994 for (i = port_offset; i < (port_offset + port_count); i++) {
1995 /* Duplicate entry. Ignore the port if the revisions differ. */
1996 if (xhci->port_array[i] != 0) {
1997 xhci_warn(xhci, "Duplicate port entry, Ext Cap %p,"
1998 " port %u\n", addr, i);
1999 xhci_warn(xhci, "Port was marked as USB %u, "
2000 "duplicated as USB %u\n",
2001 xhci->port_array[i], major_revision);
2002 /* Only adjust the roothub port counts if we haven't
2003 * found a similar duplicate.
2004 */
2005 if (xhci->port_array[i] != major_revision &&
Dan Carpenter22e04872011-03-17 22:39:49 +03002006 xhci->port_array[i] != DUPLICATE_ENTRY) {
Sarah Sharpda6699c2010-10-26 16:47:13 -07002007 if (xhci->port_array[i] == 0x03)
2008 xhci->num_usb3_ports--;
2009 else
2010 xhci->num_usb2_ports--;
Dan Carpenter22e04872011-03-17 22:39:49 +03002011 xhci->port_array[i] = DUPLICATE_ENTRY;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002012 }
2013 /* FIXME: Should we disable the port? */
Sarah Sharpf8bbeab2010-12-09 10:29:00 -08002014 continue;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002015 }
2016 xhci->port_array[i] = major_revision;
2017 if (major_revision == 0x03)
2018 xhci->num_usb3_ports++;
2019 else
2020 xhci->num_usb2_ports++;
2021 }
2022 /* FIXME: Should we disable ports not in the Extended Capabilities? */
2023}
2024
2025/*
2026 * Scan the Extended Capabilities for the "Supported Protocol Capabilities" that
2027 * specify what speeds each port is supposed to be. We can't count on the port
2028 * speed bits in the PORTSC register being correct until a device is connected,
2029 * but we need to set up the two fake roothubs with the correct number of USB
2030 * 3.0 and USB 2.0 ports at host controller initialization time.
2031 */
2032static int xhci_setup_port_arrays(struct xhci_hcd *xhci, gfp_t flags)
2033{
Matt Evans28ccd292011-03-29 13:40:46 +11002034 __le32 __iomem *addr;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002035 u32 offset;
2036 unsigned int num_ports;
Sarah Sharp2e279802011-09-02 11:05:50 -07002037 int i, j, port_index;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002038
2039 addr = &xhci->cap_regs->hcc_params;
2040 offset = XHCI_HCC_EXT_CAPS(xhci_readl(xhci, addr));
2041 if (offset == 0) {
2042 xhci_err(xhci, "No Extended Capability registers, "
2043 "unable to set up roothub.\n");
2044 return -ENODEV;
2045 }
2046
2047 num_ports = HCS_MAX_PORTS(xhci->hcs_params1);
2048 xhci->port_array = kzalloc(sizeof(*xhci->port_array)*num_ports, flags);
2049 if (!xhci->port_array)
2050 return -ENOMEM;
2051
Sarah Sharp839c8172011-09-02 11:05:47 -07002052 xhci->rh_bw = kzalloc(sizeof(*xhci->rh_bw)*num_ports, flags);
2053 if (!xhci->rh_bw)
2054 return -ENOMEM;
Sarah Sharp2e279802011-09-02 11:05:50 -07002055 for (i = 0; i < num_ports; i++) {
2056 struct xhci_interval_bw_table *bw_table;
2057
Sarah Sharp839c8172011-09-02 11:05:47 -07002058 INIT_LIST_HEAD(&xhci->rh_bw[i].tts);
Sarah Sharp2e279802011-09-02 11:05:50 -07002059 bw_table = &xhci->rh_bw[i].bw_table;
2060 for (j = 0; j < XHCI_MAX_INTERVAL; j++)
2061 INIT_LIST_HEAD(&bw_table->interval_bw[j].endpoints);
2062 }
Sarah Sharp839c8172011-09-02 11:05:47 -07002063
Sarah Sharpda6699c2010-10-26 16:47:13 -07002064 /*
2065 * For whatever reason, the first capability offset is from the
2066 * capability register base, not from the HCCPARAMS register.
2067 * See section 5.3.6 for offset calculation.
2068 */
2069 addr = &xhci->cap_regs->hc_capbase + offset;
2070 while (1) {
2071 u32 cap_id;
2072
2073 cap_id = xhci_readl(xhci, addr);
2074 if (XHCI_EXT_CAPS_ID(cap_id) == XHCI_EXT_CAPS_PROTOCOL)
2075 xhci_add_in_port(xhci, num_ports, addr,
2076 (u8) XHCI_EXT_PORT_MAJOR(cap_id));
2077 offset = XHCI_EXT_CAPS_NEXT(cap_id);
2078 if (!offset || (xhci->num_usb2_ports + xhci->num_usb3_ports)
2079 == num_ports)
2080 break;
2081 /*
2082 * Once you're into the Extended Capabilities, the offset is
2083 * always relative to the register holding the offset.
2084 */
2085 addr += offset;
2086 }
2087
2088 if (xhci->num_usb2_ports == 0 && xhci->num_usb3_ports == 0) {
2089 xhci_warn(xhci, "No ports on the roothubs?\n");
2090 return -ENODEV;
2091 }
2092 xhci_dbg(xhci, "Found %u USB 2.0 ports and %u USB 3.0 ports.\n",
2093 xhci->num_usb2_ports, xhci->num_usb3_ports);
Sarah Sharpd30b2a22010-11-23 10:42:22 -08002094
2095 /* Place limits on the number of roothub ports so that the hub
2096 * descriptors aren't longer than the USB core will allocate.
2097 */
2098 if (xhci->num_usb3_ports > 15) {
2099 xhci_dbg(xhci, "Limiting USB 3.0 roothub ports to 15.\n");
2100 xhci->num_usb3_ports = 15;
2101 }
2102 if (xhci->num_usb2_ports > USB_MAXCHILDREN) {
2103 xhci_dbg(xhci, "Limiting USB 2.0 roothub ports to %u.\n",
2104 USB_MAXCHILDREN);
2105 xhci->num_usb2_ports = USB_MAXCHILDREN;
2106 }
2107
Sarah Sharpda6699c2010-10-26 16:47:13 -07002108 /*
2109 * Note we could have all USB 3.0 ports, or all USB 2.0 ports.
2110 * Not sure how the USB core will handle a hub with no ports...
2111 */
2112 if (xhci->num_usb2_ports) {
2113 xhci->usb2_ports = kmalloc(sizeof(*xhci->usb2_ports)*
2114 xhci->num_usb2_ports, flags);
2115 if (!xhci->usb2_ports)
2116 return -ENOMEM;
2117
2118 port_index = 0;
Sarah Sharpf8bbeab2010-12-09 10:29:00 -08002119 for (i = 0; i < num_ports; i++) {
2120 if (xhci->port_array[i] == 0x03 ||
2121 xhci->port_array[i] == 0 ||
Dan Carpenter22e04872011-03-17 22:39:49 +03002122 xhci->port_array[i] == DUPLICATE_ENTRY)
Sarah Sharpf8bbeab2010-12-09 10:29:00 -08002123 continue;
2124
2125 xhci->usb2_ports[port_index] =
2126 &xhci->op_regs->port_status_base +
2127 NUM_PORT_REGS*i;
2128 xhci_dbg(xhci, "USB 2.0 port at index %u, "
2129 "addr = %p\n", i,
2130 xhci->usb2_ports[port_index]);
2131 port_index++;
Sarah Sharpd30b2a22010-11-23 10:42:22 -08002132 if (port_index == xhci->num_usb2_ports)
2133 break;
Sarah Sharpf8bbeab2010-12-09 10:29:00 -08002134 }
Sarah Sharpda6699c2010-10-26 16:47:13 -07002135 }
2136 if (xhci->num_usb3_ports) {
2137 xhci->usb3_ports = kmalloc(sizeof(*xhci->usb3_ports)*
2138 xhci->num_usb3_ports, flags);
2139 if (!xhci->usb3_ports)
2140 return -ENOMEM;
2141
2142 port_index = 0;
2143 for (i = 0; i < num_ports; i++)
2144 if (xhci->port_array[i] == 0x03) {
2145 xhci->usb3_ports[port_index] =
2146 &xhci->op_regs->port_status_base +
2147 NUM_PORT_REGS*i;
2148 xhci_dbg(xhci, "USB 3.0 port at index %u, "
2149 "addr = %p\n", i,
2150 xhci->usb3_ports[port_index]);
2151 port_index++;
Sarah Sharpd30b2a22010-11-23 10:42:22 -08002152 if (port_index == xhci->num_usb3_ports)
2153 break;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002154 }
2155 }
2156 return 0;
2157}
Sarah Sharp6648f292009-11-09 13:35:23 -08002158
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002159int xhci_mem_init(struct xhci_hcd *xhci, gfp_t flags)
2160{
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002161 dma_addr_t dma;
2162 struct device *dev = xhci_to_hcd(xhci)->self.controller;
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002163 unsigned int val, val2;
Sarah Sharp8e595a52009-07-27 12:03:31 -07002164 u64 val_64;
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002165 struct xhci_segment *seg;
Sarah Sharp623bef92011-11-11 14:57:33 -08002166 u32 page_size, temp;
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002167 int i;
2168
2169 page_size = xhci_readl(xhci, &xhci->op_regs->page_size);
2170 xhci_dbg(xhci, "Supported page size register = 0x%x\n", page_size);
2171 for (i = 0; i < 16; i++) {
2172 if ((0x1 & page_size) != 0)
2173 break;
2174 page_size = page_size >> 1;
2175 }
2176 if (i < 16)
2177 xhci_dbg(xhci, "Supported page size of %iK\n", (1 << (i+12)) / 1024);
2178 else
2179 xhci_warn(xhci, "WARN: no supported page size\n");
2180 /* Use 4K pages, since that's common and the minimum the HC supports */
2181 xhci->page_shift = 12;
2182 xhci->page_size = 1 << xhci->page_shift;
2183 xhci_dbg(xhci, "HCD page size set to %iK\n", xhci->page_size / 1024);
2184
2185 /*
2186 * Program the Number of Device Slots Enabled field in the CONFIG
2187 * register with the max value of slots the HC can handle.
2188 */
2189 val = HCS_MAX_SLOTS(xhci_readl(xhci, &xhci->cap_regs->hcs_params1));
2190 xhci_dbg(xhci, "// xHC can handle at most %d device slots.\n",
2191 (unsigned int) val);
2192 val2 = xhci_readl(xhci, &xhci->op_regs->config_reg);
2193 val |= (val2 & ~HCS_SLOTS_MASK);
2194 xhci_dbg(xhci, "// Setting Max device slots reg = 0x%x.\n",
2195 (unsigned int) val);
2196 xhci_writel(xhci, val, &xhci->op_regs->config_reg);
2197
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002198 /*
Sarah Sharpa74588f2009-04-27 19:53:42 -07002199 * Section 5.4.8 - doorbell array must be
2200 * "physically contiguous and 64-byte (cache line) aligned".
2201 */
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07002202 xhci->dcbaa = dma_alloc_coherent(dev, sizeof(*xhci->dcbaa), &dma,
2203 GFP_KERNEL);
Sarah Sharpa74588f2009-04-27 19:53:42 -07002204 if (!xhci->dcbaa)
2205 goto fail;
2206 memset(xhci->dcbaa, 0, sizeof *(xhci->dcbaa));
2207 xhci->dcbaa->dma = dma;
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002208 xhci_dbg(xhci, "// Device context base array address = 0x%llx (DMA), %p (virt)\n",
2209 (unsigned long long)xhci->dcbaa->dma, xhci->dcbaa);
Sarah Sharp8e595a52009-07-27 12:03:31 -07002210 xhci_write_64(xhci, dma, &xhci->op_regs->dcbaa_ptr);
Sarah Sharpa74588f2009-04-27 19:53:42 -07002211
2212 /*
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002213 * Initialize the ring segment pool. The ring must be a contiguous
2214 * structure comprised of TRBs. The TRBs must be 16 byte aligned,
2215 * however, the command ring segment needs 64-byte aligned segments,
2216 * so we pick the greater alignment need.
2217 */
2218 xhci->segment_pool = dma_pool_create("xHCI ring segments", dev,
2219 SEGMENT_SIZE, 64, xhci->page_size);
John Yound115b042009-07-27 12:05:15 -07002220
Sarah Sharp3ffbba92009-04-27 19:57:38 -07002221 /* See Table 46 and Note on Figure 55 */
Sarah Sharp3ffbba92009-04-27 19:57:38 -07002222 xhci->device_pool = dma_pool_create("xHCI input/output contexts", dev,
John Yound115b042009-07-27 12:05:15 -07002223 2112, 64, xhci->page_size);
Sarah Sharp3ffbba92009-04-27 19:57:38 -07002224 if (!xhci->segment_pool || !xhci->device_pool)
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002225 goto fail;
2226
Sarah Sharp8df75f42010-04-02 15:34:16 -07002227 /* Linear stream context arrays don't have any boundary restrictions,
2228 * and only need to be 16-byte aligned.
2229 */
2230 xhci->small_streams_pool =
2231 dma_pool_create("xHCI 256 byte stream ctx arrays",
2232 dev, SMALL_STREAM_ARRAY_SIZE, 16, 0);
2233 xhci->medium_streams_pool =
2234 dma_pool_create("xHCI 1KB stream ctx arrays",
2235 dev, MEDIUM_STREAM_ARRAY_SIZE, 16, 0);
2236 /* Any stream context array bigger than MEDIUM_STREAM_ARRAY_SIZE
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07002237 * will be allocated with dma_alloc_coherent()
Sarah Sharp8df75f42010-04-02 15:34:16 -07002238 */
2239
2240 if (!xhci->small_streams_pool || !xhci->medium_streams_pool)
2241 goto fail;
2242
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002243 /* Set up the command ring to have one segments for now. */
Andiry Xu3b72fca2012-03-05 17:49:32 +08002244 xhci->cmd_ring = xhci_ring_alloc(xhci, 1, TYPE_COMMAND, flags);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002245 if (!xhci->cmd_ring)
2246 goto fail;
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002247 xhci_dbg(xhci, "Allocated command ring at %p\n", xhci->cmd_ring);
2248 xhci_dbg(xhci, "First segment DMA is 0x%llx\n",
2249 (unsigned long long)xhci->cmd_ring->first_seg->dma);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002250
2251 /* Set the address in the Command Ring Control register */
Sarah Sharp8e595a52009-07-27 12:03:31 -07002252 val_64 = xhci_read_64(xhci, &xhci->op_regs->cmd_ring);
2253 val_64 = (val_64 & (u64) CMD_RING_RSVD_BITS) |
2254 (xhci->cmd_ring->first_seg->dma & (u64) ~CMD_RING_RSVD_BITS) |
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002255 xhci->cmd_ring->cycle_state;
Sarah Sharp8e595a52009-07-27 12:03:31 -07002256 xhci_dbg(xhci, "// Setting command ring address to 0x%x\n", val);
2257 xhci_write_64(xhci, val_64, &xhci->op_regs->cmd_ring);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002258 xhci_dbg_cmd_ptrs(xhci);
2259
2260 val = xhci_readl(xhci, &xhci->cap_regs->db_off);
2261 val &= DBOFF_MASK;
2262 xhci_dbg(xhci, "// Doorbell array is located at offset 0x%x"
2263 " from cap regs base addr\n", val);
Dmitry Torokhovc50a00f2011-02-08 16:29:34 -08002264 xhci->dba = (void __iomem *) xhci->cap_regs + val;
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002265 xhci_dbg_regs(xhci);
2266 xhci_print_run_regs(xhci);
2267 /* Set ir_set to interrupt register set 0 */
Dmitry Torokhovc50a00f2011-02-08 16:29:34 -08002268 xhci->ir_set = &xhci->run_regs->ir_set[0];
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002269
2270 /*
2271 * Event ring setup: Allocate a normal ring, but also setup
2272 * the event ring segment table (ERST). Section 4.9.3.
2273 */
2274 xhci_dbg(xhci, "// Allocating event ring\n");
Andiry Xu3b72fca2012-03-05 17:49:32 +08002275 xhci->event_ring = xhci_ring_alloc(xhci, ERST_NUM_SEGS, TYPE_EVENT,
Andiry Xu7e393a82011-09-23 14:19:54 -07002276 flags);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002277 if (!xhci->event_ring)
2278 goto fail;
Sarah Sharp6648f292009-11-09 13:35:23 -08002279 if (xhci_check_trb_in_td_math(xhci, flags) < 0)
2280 goto fail;
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002281
Sebastian Andrzej Siewior22d45f02011-09-23 14:19:59 -07002282 xhci->erst.entries = dma_alloc_coherent(dev,
2283 sizeof(struct xhci_erst_entry) * ERST_NUM_SEGS, &dma,
2284 GFP_KERNEL);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002285 if (!xhci->erst.entries)
2286 goto fail;
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002287 xhci_dbg(xhci, "// Allocated event ring segment table at 0x%llx\n",
2288 (unsigned long long)dma);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002289
2290 memset(xhci->erst.entries, 0, sizeof(struct xhci_erst_entry)*ERST_NUM_SEGS);
2291 xhci->erst.num_entries = ERST_NUM_SEGS;
2292 xhci->erst.erst_dma_addr = dma;
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002293 xhci_dbg(xhci, "Set ERST to 0; private num segs = %i, virt addr = %p, dma addr = 0x%llx\n",
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002294 xhci->erst.num_entries,
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002295 xhci->erst.entries,
2296 (unsigned long long)xhci->erst.erst_dma_addr);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002297
2298 /* set ring base address and size for each segment table entry */
2299 for (val = 0, seg = xhci->event_ring->first_seg; val < ERST_NUM_SEGS; val++) {
2300 struct xhci_erst_entry *entry = &xhci->erst.entries[val];
Matt Evans28ccd292011-03-29 13:40:46 +11002301 entry->seg_addr = cpu_to_le64(seg->dma);
2302 entry->seg_size = cpu_to_le32(TRBS_PER_SEGMENT);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002303 entry->rsvd = 0;
2304 seg = seg->next;
2305 }
2306
2307 /* set ERST count with the number of entries in the segment table */
2308 val = xhci_readl(xhci, &xhci->ir_set->erst_size);
2309 val &= ERST_SIZE_MASK;
2310 val |= ERST_NUM_SEGS;
2311 xhci_dbg(xhci, "// Write ERST size = %i to ir_set 0 (some bits preserved)\n",
2312 val);
2313 xhci_writel(xhci, val, &xhci->ir_set->erst_size);
2314
2315 xhci_dbg(xhci, "// Set ERST entries to point to event ring.\n");
2316 /* set the segment table base address */
Greg Kroah-Hartman700e2052009-04-29 19:14:08 -07002317 xhci_dbg(xhci, "// Set ERST base address for ir_set 0 = 0x%llx\n",
2318 (unsigned long long)xhci->erst.erst_dma_addr);
Sarah Sharp8e595a52009-07-27 12:03:31 -07002319 val_64 = xhci_read_64(xhci, &xhci->ir_set->erst_base);
2320 val_64 &= ERST_PTR_MASK;
2321 val_64 |= (xhci->erst.erst_dma_addr & (u64) ~ERST_PTR_MASK);
2322 xhci_write_64(xhci, val_64, &xhci->ir_set->erst_base);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002323
2324 /* Set the event ring dequeue address */
Sarah Sharp23e3be12009-04-29 19:05:20 -07002325 xhci_set_hc_event_deq(xhci);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002326 xhci_dbg(xhci, "Wrote ERST address to ir_set 0.\n");
Dmitry Torokhov09ece302011-02-08 16:29:33 -08002327 xhci_print_ir_set(xhci, 0);
Sarah Sharp0ebbab32009-04-27 19:52:34 -07002328
2329 /*
2330 * XXX: Might need to set the Interrupter Moderation Register to
2331 * something other than the default (~1ms minimum between interrupts).
2332 * See section 5.5.1.2.
2333 */
Sarah Sharp3ffbba92009-04-27 19:57:38 -07002334 init_completion(&xhci->addr_dev);
2335 for (i = 0; i < MAX_HC_SLOTS; ++i)
Randy Dunlap326b4812010-04-19 08:53:50 -07002336 xhci->devs[i] = NULL;
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08002337 for (i = 0; i < USB_MAXCHILDREN; ++i) {
Sarah Sharp20b67cf2010-12-15 12:47:14 -08002338 xhci->bus_state[0].resume_done[i] = 0;
Sarah Sharpf6ff0ac2010-12-16 11:21:10 -08002339 xhci->bus_state[1].resume_done[i] = 0;
2340 }
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002341
John Youn254c80a2009-07-27 12:05:03 -07002342 if (scratchpad_alloc(xhci, flags))
2343 goto fail;
Sarah Sharpda6699c2010-10-26 16:47:13 -07002344 if (xhci_setup_port_arrays(xhci, flags))
2345 goto fail;
John Youn254c80a2009-07-27 12:05:03 -07002346
Andiry Xu95743232011-09-23 14:19:51 -07002347 INIT_LIST_HEAD(&xhci->lpm_failed_devs);
2348
Sarah Sharp623bef92011-11-11 14:57:33 -08002349 /* Enable USB 3.0 device notifications for function remote wake, which
2350 * is necessary for allowing USB 3.0 devices to do remote wakeup from
2351 * U3 (device suspend).
2352 */
2353 temp = xhci_readl(xhci, &xhci->op_regs->dev_notification);
2354 temp &= ~DEV_NOTE_MASK;
2355 temp |= DEV_NOTE_FWAKE;
2356 xhci_writel(xhci, temp, &xhci->op_regs->dev_notification);
2357
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002358 return 0;
John Youn254c80a2009-07-27 12:05:03 -07002359
Sarah Sharp66d4ead2009-04-27 19:52:28 -07002360fail:
2361 xhci_warn(xhci, "Couldn't initialize memory\n");
2362 xhci_mem_cleanup(xhci);
2363 return -ENOMEM;
2364}