1 /*
2 * Copyright (C) 2007 Ben Skeggs.
3 * All Rights Reserved.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining
6 * a copy of this software and associated documentation files (the
7 * "Software"), to deal in the Software without restriction, including
8 * without limitation the rights to use, copy, modify, merge, publish,
9 * distribute, sublicense, and/or sell copies of the Software, and to
10 * permit persons to whom the Software is furnished to do so, subject to
11 * the following conditions:
12 *
13 * The above copyright notice and this permission notice (including the
14 * next paragraph) shall be included in all copies or substantial
15 * portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
18 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
19 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
20 * IN NO EVENT SHALL THE COPYRIGHT OWNER(S) AND/OR ITS SUPPLIERS BE
21 * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
22 * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
23 * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
24 *
25 */
26
27 #include <linux/ktime.h>
28 #include <linux/hrtimer.h>
29 #include <linux/sched/signal.h>
30 #include <trace/events/dma_fence.h>
31
32 #include <nvif/if0020.h>
33
34 #include "nouveau_drv.h"
35 #include "nouveau_dma.h"
36 #include "nouveau_fence.h"
37
38 static const struct dma_fence_ops nouveau_fence_ops_uevent;
39 static const struct dma_fence_ops nouveau_fence_ops_legacy;
40
41 static inline struct nouveau_fence *
from_fence(struct dma_fence * fence)42 from_fence(struct dma_fence *fence)
43 {
44 return container_of(fence, struct nouveau_fence, base);
45 }
46
47 static inline struct nouveau_fence_chan *
nouveau_fctx(struct nouveau_fence * fence)48 nouveau_fctx(struct nouveau_fence *fence)
49 {
50 return container_of(fence->base.lock, struct nouveau_fence_chan, lock);
51 }
52
53 static int
nouveau_fence_signal(struct nouveau_fence * fence)54 nouveau_fence_signal(struct nouveau_fence *fence)
55 {
56 int drop = 0;
57
58 dma_fence_signal_locked(&fence->base);
59 list_del(&fence->head);
60 rcu_assign_pointer(fence->channel, NULL);
61
62 if (test_bit(DMA_FENCE_FLAG_USER_BITS, &fence->base.flags)) {
63 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
64
65 if (!--fctx->notify_ref)
66 drop = 1;
67 }
68
69 dma_fence_put(&fence->base);
70 return drop;
71 }
72
73 static struct nouveau_fence *
nouveau_local_fence(struct dma_fence * fence,struct nouveau_drm * drm)74 nouveau_local_fence(struct dma_fence *fence, struct nouveau_drm *drm)
75 {
76 if (fence->ops != &nouveau_fence_ops_legacy &&
77 fence->ops != &nouveau_fence_ops_uevent)
78 return NULL;
79
80 return from_fence(fence);
81 }
82
83 void
nouveau_fence_context_kill(struct nouveau_fence_chan * fctx,int error)84 nouveau_fence_context_kill(struct nouveau_fence_chan *fctx, int error)
85 {
86 struct nouveau_fence *fence;
87 unsigned long flags;
88
89 spin_lock_irqsave(&fctx->lock, flags);
90 while (!list_empty(&fctx->pending)) {
91 fence = list_entry(fctx->pending.next, typeof(*fence), head);
92
93 if (error)
94 dma_fence_set_error(&fence->base, error);
95
96 if (nouveau_fence_signal(fence))
97 nvif_event_block(&fctx->event);
98 }
99 fctx->killed = 1;
100 spin_unlock_irqrestore(&fctx->lock, flags);
101 }
102
103 void
nouveau_fence_context_del(struct nouveau_fence_chan * fctx)104 nouveau_fence_context_del(struct nouveau_fence_chan *fctx)
105 {
106 cancel_work_sync(&fctx->uevent_work);
107 nouveau_fence_context_kill(fctx, 0);
108 nvif_event_dtor(&fctx->event);
109 fctx->dead = 1;
110
111 /*
112 * Ensure that all accesses to fence->channel complete before freeing
113 * the channel.
114 */
115 synchronize_rcu();
116 }
117
118 static void
nouveau_fence_context_put(struct kref * fence_ref)119 nouveau_fence_context_put(struct kref *fence_ref)
120 {
121 kfree(container_of(fence_ref, struct nouveau_fence_chan, fence_ref));
122 }
123
124 void
nouveau_fence_context_free(struct nouveau_fence_chan * fctx)125 nouveau_fence_context_free(struct nouveau_fence_chan *fctx)
126 {
127 kref_put(&fctx->fence_ref, nouveau_fence_context_put);
128 }
129
130 static int
nouveau_fence_update(struct nouveau_channel * chan,struct nouveau_fence_chan * fctx)131 nouveau_fence_update(struct nouveau_channel *chan, struct nouveau_fence_chan *fctx)
132 {
133 struct nouveau_fence *fence;
134 int drop = 0;
135 u32 seq = fctx->read(chan);
136
137 while (!list_empty(&fctx->pending)) {
138 fence = list_entry(fctx->pending.next, typeof(*fence), head);
139
140 if ((int)(seq - fence->base.seqno) < 0)
141 break;
142
143 drop |= nouveau_fence_signal(fence);
144 }
145
146 return drop;
147 }
148
149 static void
nouveau_fence_uevent_work(struct work_struct * work)150 nouveau_fence_uevent_work(struct work_struct *work)
151 {
152 struct nouveau_fence_chan *fctx = container_of(work, struct nouveau_fence_chan,
153 uevent_work);
154 unsigned long flags;
155 int drop = 0;
156
157 spin_lock_irqsave(&fctx->lock, flags);
158 if (!list_empty(&fctx->pending)) {
159 struct nouveau_fence *fence;
160 struct nouveau_channel *chan;
161
162 fence = list_entry(fctx->pending.next, typeof(*fence), head);
163 chan = rcu_dereference_protected(fence->channel, lockdep_is_held(&fctx->lock));
164 if (nouveau_fence_update(chan, fctx))
165 drop = 1;
166 }
167 if (drop)
168 nvif_event_block(&fctx->event);
169
170 spin_unlock_irqrestore(&fctx->lock, flags);
171 }
172
173 static int
nouveau_fence_wait_uevent_handler(struct nvif_event * event,void * repv,u32 repc)174 nouveau_fence_wait_uevent_handler(struct nvif_event *event, void *repv, u32 repc)
175 {
176 struct nouveau_fence_chan *fctx = container_of(event, typeof(*fctx), event);
177 schedule_work(&fctx->uevent_work);
178 return NVIF_EVENT_KEEP;
179 }
180
181 void
nouveau_fence_context_new(struct nouveau_channel * chan,struct nouveau_fence_chan * fctx)182 nouveau_fence_context_new(struct nouveau_channel *chan, struct nouveau_fence_chan *fctx)
183 {
184 struct nouveau_cli *cli = chan->cli;
185 struct nouveau_drm *drm = cli->drm;
186 struct nouveau_fence_priv *priv = (void*)drm->fence;
187 struct {
188 struct nvif_event_v0 base;
189 struct nvif_chan_event_v0 host;
190 } args;
191 int ret;
192
193 INIT_WORK(&fctx->uevent_work, nouveau_fence_uevent_work);
194 INIT_LIST_HEAD(&fctx->flip);
195 INIT_LIST_HEAD(&fctx->pending);
196 spin_lock_init(&fctx->lock);
197 fctx->context = drm->runl[chan->runlist].context_base + chan->chid;
198
199 if (chan == drm->cechan)
200 strcpy(fctx->name, "copy engine channel");
201 else if (chan == drm->channel)
202 strcpy(fctx->name, "generic kernel channel");
203 else
204 strcpy(fctx->name, cli->name);
205
206 kref_init(&fctx->fence_ref);
207 if (!priv->uevent)
208 return;
209
210 args.host.version = 0;
211 args.host.type = NVIF_CHAN_EVENT_V0_NON_STALL_INTR;
212
213 ret = nvif_event_ctor(&chan->user, "fenceNonStallIntr", (chan->runlist << 16) | chan->chid,
214 nouveau_fence_wait_uevent_handler, false,
215 &args.base, sizeof(args), &fctx->event);
216
217 WARN_ON(ret);
218 }
219
220 int
nouveau_fence_emit(struct nouveau_fence * fence)221 nouveau_fence_emit(struct nouveau_fence *fence)
222 {
223 struct nouveau_channel *chan = unrcu_pointer(fence->channel);
224 struct nouveau_fence_chan *fctx = chan->fence;
225 struct nouveau_fence_priv *priv = (void*)chan->cli->drm->fence;
226 int ret;
227
228 fence->timeout = jiffies + (15 * HZ);
229
230 if (priv->uevent)
231 dma_fence_init(&fence->base, &nouveau_fence_ops_uevent,
232 &fctx->lock, fctx->context, ++fctx->sequence);
233 else
234 dma_fence_init(&fence->base, &nouveau_fence_ops_legacy,
235 &fctx->lock, fctx->context, ++fctx->sequence);
236 kref_get(&fctx->fence_ref);
237
238 ret = fctx->emit(fence);
239 if (!ret) {
240 dma_fence_get(&fence->base);
241 spin_lock_irq(&fctx->lock);
242
243 if (unlikely(fctx->killed)) {
244 spin_unlock_irq(&fctx->lock);
245 dma_fence_put(&fence->base);
246 return -ENODEV;
247 }
248
249 if (nouveau_fence_update(chan, fctx))
250 nvif_event_block(&fctx->event);
251
252 list_add_tail(&fence->head, &fctx->pending);
253 spin_unlock_irq(&fctx->lock);
254 }
255
256 return ret;
257 }
258
259 bool
nouveau_fence_done(struct nouveau_fence * fence)260 nouveau_fence_done(struct nouveau_fence *fence)
261 {
262 if (fence->base.ops == &nouveau_fence_ops_legacy ||
263 fence->base.ops == &nouveau_fence_ops_uevent) {
264 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
265 struct nouveau_channel *chan;
266 unsigned long flags;
267
268 if (test_bit(DMA_FENCE_FLAG_SIGNALED_BIT, &fence->base.flags))
269 return true;
270
271 spin_lock_irqsave(&fctx->lock, flags);
272 chan = rcu_dereference_protected(fence->channel, lockdep_is_held(&fctx->lock));
273 if (chan && nouveau_fence_update(chan, fctx))
274 nvif_event_block(&fctx->event);
275 spin_unlock_irqrestore(&fctx->lock, flags);
276 }
277 return dma_fence_is_signaled(&fence->base);
278 }
279
280 static long
nouveau_fence_wait_legacy(struct dma_fence * f,bool intr,long wait)281 nouveau_fence_wait_legacy(struct dma_fence *f, bool intr, long wait)
282 {
283 struct nouveau_fence *fence = from_fence(f);
284 unsigned long sleep_time = NSEC_PER_MSEC / 1000;
285 unsigned long t = jiffies, timeout = t + wait;
286
287 while (!nouveau_fence_done(fence)) {
288 ktime_t kt;
289
290 t = jiffies;
291
292 if (wait != MAX_SCHEDULE_TIMEOUT && time_after_eq(t, timeout)) {
293 __set_current_state(TASK_RUNNING);
294 return 0;
295 }
296
297 __set_current_state(intr ? TASK_INTERRUPTIBLE :
298 TASK_UNINTERRUPTIBLE);
299
300 kt = sleep_time;
301 schedule_hrtimeout(&kt, HRTIMER_MODE_REL);
302 sleep_time *= 2;
303 if (sleep_time > NSEC_PER_MSEC)
304 sleep_time = NSEC_PER_MSEC;
305
306 if (intr && signal_pending(current))
307 return -ERESTARTSYS;
308 }
309
310 __set_current_state(TASK_RUNNING);
311
312 return timeout - t;
313 }
314
315 static int
nouveau_fence_wait_busy(struct nouveau_fence * fence,bool intr)316 nouveau_fence_wait_busy(struct nouveau_fence *fence, bool intr)
317 {
318 int ret = 0;
319
320 while (!nouveau_fence_done(fence)) {
321 if (time_after_eq(jiffies, fence->timeout)) {
322 ret = -EBUSY;
323 break;
324 }
325
326 __set_current_state(intr ?
327 TASK_INTERRUPTIBLE :
328 TASK_UNINTERRUPTIBLE);
329
330 if (intr && signal_pending(current)) {
331 ret = -ERESTARTSYS;
332 break;
333 }
334 }
335
336 __set_current_state(TASK_RUNNING);
337 return ret;
338 }
339
340 int
nouveau_fence_wait(struct nouveau_fence * fence,bool lazy,bool intr)341 nouveau_fence_wait(struct nouveau_fence *fence, bool lazy, bool intr)
342 {
343 long ret;
344
345 if (!lazy)
346 return nouveau_fence_wait_busy(fence, intr);
347
348 ret = dma_fence_wait_timeout(&fence->base, intr, 15 * HZ);
349 if (ret < 0)
350 return ret;
351 else if (!ret)
352 return -EBUSY;
353 else
354 return 0;
355 }
356
357 int
nouveau_fence_sync(struct nouveau_bo * nvbo,struct nouveau_channel * chan,bool exclusive,bool intr)358 nouveau_fence_sync(struct nouveau_bo *nvbo, struct nouveau_channel *chan,
359 bool exclusive, bool intr)
360 {
361 struct nouveau_fence_chan *fctx = chan->fence;
362 struct dma_resv *resv = nvbo->bo.base.resv;
363 int i, ret;
364
365 ret = dma_resv_reserve_fences(resv, 1);
366 if (ret)
367 return ret;
368
369 /* Waiting for the writes first causes performance regressions
370 * under some circumstances. So manually wait for the reads first.
371 */
372 for (i = 0; i < 2; ++i) {
373 struct dma_resv_iter cursor;
374 struct dma_fence *fence;
375
376 dma_resv_for_each_fence(&cursor, resv,
377 dma_resv_usage_rw(exclusive),
378 fence) {
379 enum dma_resv_usage usage;
380 struct nouveau_fence *f;
381
382 usage = dma_resv_iter_usage(&cursor);
383 if (i == 0 && usage == DMA_RESV_USAGE_WRITE)
384 continue;
385
386 f = nouveau_local_fence(fence, chan->cli->drm);
387 if (f) {
388 struct nouveau_channel *prev;
389 bool must_wait = true;
390
391 rcu_read_lock();
392 prev = rcu_dereference(f->channel);
393 if (prev && (prev == chan ||
394 fctx->sync(f, prev, chan) == 0))
395 must_wait = false;
396 rcu_read_unlock();
397 if (!must_wait)
398 continue;
399 }
400
401 ret = dma_fence_wait(fence, intr);
402 if (ret)
403 return ret;
404 }
405 }
406
407 return 0;
408 }
409
410 void
nouveau_fence_unref(struct nouveau_fence ** pfence)411 nouveau_fence_unref(struct nouveau_fence **pfence)
412 {
413 if (*pfence)
414 dma_fence_put(&(*pfence)->base);
415 *pfence = NULL;
416 }
417
418 int
nouveau_fence_create(struct nouveau_fence ** pfence,struct nouveau_channel * chan)419 nouveau_fence_create(struct nouveau_fence **pfence,
420 struct nouveau_channel *chan)
421 {
422 struct nouveau_fence *fence;
423
424 if (unlikely(!chan->fence))
425 return -ENODEV;
426
427 fence = kzalloc(sizeof(*fence), GFP_KERNEL);
428 if (!fence)
429 return -ENOMEM;
430
431 fence->channel = chan;
432
433 *pfence = fence;
434 return 0;
435 }
436
437 int
nouveau_fence_new(struct nouveau_fence ** pfence,struct nouveau_channel * chan)438 nouveau_fence_new(struct nouveau_fence **pfence,
439 struct nouveau_channel *chan)
440 {
441 int ret = 0;
442
443 ret = nouveau_fence_create(pfence, chan);
444 if (ret)
445 return ret;
446
447 ret = nouveau_fence_emit(*pfence);
448 if (ret)
449 nouveau_fence_unref(pfence);
450
451 return ret;
452 }
453
nouveau_fence_get_get_driver_name(struct dma_fence * fence)454 static const char *nouveau_fence_get_get_driver_name(struct dma_fence *fence)
455 {
456 return "nouveau";
457 }
458
nouveau_fence_get_timeline_name(struct dma_fence * f)459 static const char *nouveau_fence_get_timeline_name(struct dma_fence *f)
460 {
461 struct nouveau_fence *fence = from_fence(f);
462 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
463
464 return !fctx->dead ? fctx->name : "dead channel";
465 }
466
467 /*
468 * In an ideal world, read would not assume the channel context is still alive.
469 * This function may be called from another device, running into free memory as a
470 * result. The drm node should still be there, so we can derive the index from
471 * the fence context.
472 */
nouveau_fence_is_signaled(struct dma_fence * f)473 static bool nouveau_fence_is_signaled(struct dma_fence *f)
474 {
475 struct nouveau_fence *fence = from_fence(f);
476 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
477 struct nouveau_channel *chan;
478 bool ret = false;
479
480 rcu_read_lock();
481 chan = rcu_dereference(fence->channel);
482 if (chan)
483 ret = (int)(fctx->read(chan) - fence->base.seqno) >= 0;
484 rcu_read_unlock();
485
486 return ret;
487 }
488
nouveau_fence_no_signaling(struct dma_fence * f)489 static bool nouveau_fence_no_signaling(struct dma_fence *f)
490 {
491 struct nouveau_fence *fence = from_fence(f);
492
493 /*
494 * caller should have a reference on the fence,
495 * else fence could get freed here
496 */
497 WARN_ON(kref_read(&fence->base.refcount) <= 1);
498
499 /*
500 * This needs uevents to work correctly, but dma_fence_add_callback relies on
501 * being able to enable signaling. It will still get signaled eventually,
502 * just not right away.
503 */
504 if (nouveau_fence_is_signaled(f)) {
505 list_del(&fence->head);
506
507 dma_fence_put(&fence->base);
508 return false;
509 }
510
511 return true;
512 }
513
nouveau_fence_release(struct dma_fence * f)514 static void nouveau_fence_release(struct dma_fence *f)
515 {
516 struct nouveau_fence *fence = from_fence(f);
517 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
518
519 kref_put(&fctx->fence_ref, nouveau_fence_context_put);
520 dma_fence_free(&fence->base);
521 }
522
523 static const struct dma_fence_ops nouveau_fence_ops_legacy = {
524 .get_driver_name = nouveau_fence_get_get_driver_name,
525 .get_timeline_name = nouveau_fence_get_timeline_name,
526 .enable_signaling = nouveau_fence_no_signaling,
527 .signaled = nouveau_fence_is_signaled,
528 .wait = nouveau_fence_wait_legacy,
529 .release = nouveau_fence_release
530 };
531
nouveau_fence_enable_signaling(struct dma_fence * f)532 static bool nouveau_fence_enable_signaling(struct dma_fence *f)
533 {
534 struct nouveau_fence *fence = from_fence(f);
535 struct nouveau_fence_chan *fctx = nouveau_fctx(fence);
536 bool ret;
537
538 if (!fctx->notify_ref++)
539 nvif_event_allow(&fctx->event);
540
541 ret = nouveau_fence_no_signaling(f);
542 if (ret)
543 set_bit(DMA_FENCE_FLAG_USER_BITS, &fence->base.flags);
544 else if (!--fctx->notify_ref)
545 nvif_event_block(&fctx->event);
546
547 return ret;
548 }
549
550 static const struct dma_fence_ops nouveau_fence_ops_uevent = {
551 .get_driver_name = nouveau_fence_get_get_driver_name,
552 .get_timeline_name = nouveau_fence_get_timeline_name,
553 .enable_signaling = nouveau_fence_enable_signaling,
554 .signaled = nouveau_fence_is_signaled,
555 .release = nouveau_fence_release
556 };
557