1 /*
2 * Copyright 2015 Advanced Micro Devices, Inc.
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
21 *
22 */
23
24 #include <linux/kthread.h>
25 #include <linux/slab.h>
26 #include <linux/completion.h>
27
28 #include <drm/drm_print.h>
29 #include <drm/gpu_scheduler.h>
30
31 #include "sched_internal.h"
32
33 #include "gpu_scheduler_trace.h"
34
35 /**
36 * drm_sched_entity_init - Init a context entity used by scheduler when
37 * submit to HW ring.
38 *
39 * @entity: scheduler entity to init
40 * @priority: priority of the entity
41 * @sched_list: the list of drm scheds on which jobs from this
42 * entity can be submitted
43 * @num_sched_list: number of drm sched in sched_list
44 * @guilty: atomic_t set to 1 when a job on this queue
45 * is found to be guilty causing a timeout
46 *
47 * Note that the &sched_list must have at least one element to schedule the entity.
48 *
49 * For changing @priority later on at runtime see
50 * drm_sched_entity_set_priority(). For changing the set of schedulers
51 * @sched_list at runtime see drm_sched_entity_modify_sched().
52 *
53 * An entity is cleaned up by calling drm_sched_entity_fini(). See also
54 * drm_sched_entity_destroy().
55 *
56 * Returns 0 on success or a negative error code on failure.
57 */
drm_sched_entity_init(struct drm_sched_entity * entity,enum drm_sched_priority priority,struct drm_gpu_scheduler ** sched_list,unsigned int num_sched_list,atomic_t * guilty)58 int drm_sched_entity_init(struct drm_sched_entity *entity,
59 enum drm_sched_priority priority,
60 struct drm_gpu_scheduler **sched_list,
61 unsigned int num_sched_list,
62 atomic_t *guilty)
63 {
64 if (!(entity && sched_list && (num_sched_list == 0 || sched_list[0])))
65 return -EINVAL;
66
67 memset(entity, 0, sizeof(struct drm_sched_entity));
68 INIT_LIST_HEAD(&entity->list);
69 entity->rq = NULL;
70 entity->guilty = guilty;
71 entity->num_sched_list = num_sched_list;
72 entity->priority = priority;
73 /*
74 * It's perfectly valid to initialize an entity without having a valid
75 * scheduler attached. It's just not valid to use the scheduler before it
76 * is initialized itself.
77 */
78 entity->sched_list = num_sched_list > 1 ? sched_list : NULL;
79 RCU_INIT_POINTER(entity->last_scheduled, NULL);
80 RB_CLEAR_NODE(&entity->rb_tree_node);
81
82 if (num_sched_list && !sched_list[0]->sched_rq) {
83 /* Since every entry covered by num_sched_list
84 * should be non-NULL and therefore we warn drivers
85 * not to do this and to fix their DRM calling order.
86 */
87 pr_warn("%s: called with uninitialized scheduler\n", __func__);
88 } else if (num_sched_list) {
89 /* The "priority" of an entity cannot exceed the number of run-queues of a
90 * scheduler. Protect against num_rqs being 0, by converting to signed. Choose
91 * the lowest priority available.
92 */
93 if (entity->priority >= sched_list[0]->num_rqs) {
94 dev_err(sched_list[0]->dev, "entity has out-of-bounds priority: %u. num_rqs: %u\n",
95 entity->priority, sched_list[0]->num_rqs);
96 entity->priority = max_t(s32, (s32) sched_list[0]->num_rqs - 1,
97 (s32) DRM_SCHED_PRIORITY_KERNEL);
98 }
99 entity->rq = sched_list[0]->sched_rq[entity->priority];
100 }
101
102 init_completion(&entity->entity_idle);
103
104 /* We start in an idle state. */
105 complete_all(&entity->entity_idle);
106
107 spin_lock_init(&entity->lock);
108 spsc_queue_init(&entity->job_queue);
109
110 atomic_set(&entity->fence_seq, 0);
111 entity->fence_context = dma_fence_context_alloc(2);
112
113 return 0;
114 }
115 EXPORT_SYMBOL(drm_sched_entity_init);
116
117 /**
118 * drm_sched_entity_modify_sched - Modify sched of an entity
119 * @entity: scheduler entity to init
120 * @sched_list: the list of new drm scheds which will replace
121 * existing entity->sched_list
122 * @num_sched_list: number of drm sched in sched_list
123 *
124 * Note that this must be called under the same common lock for @entity as
125 * drm_sched_job_arm() and drm_sched_entity_push_job(), or the driver needs to
126 * guarantee through some other means that this is never called while new jobs
127 * can be pushed to @entity.
128 */
drm_sched_entity_modify_sched(struct drm_sched_entity * entity,struct drm_gpu_scheduler ** sched_list,unsigned int num_sched_list)129 void drm_sched_entity_modify_sched(struct drm_sched_entity *entity,
130 struct drm_gpu_scheduler **sched_list,
131 unsigned int num_sched_list)
132 {
133 WARN_ON(!num_sched_list || !sched_list);
134
135 spin_lock(&entity->lock);
136 entity->sched_list = sched_list;
137 entity->num_sched_list = num_sched_list;
138 spin_unlock(&entity->lock);
139 }
140 EXPORT_SYMBOL(drm_sched_entity_modify_sched);
141
drm_sched_entity_is_idle(struct drm_sched_entity * entity)142 static bool drm_sched_entity_is_idle(struct drm_sched_entity *entity)
143 {
144 rmb(); /* for list_empty to work without lock */
145
146 if (list_empty(&entity->list) ||
147 spsc_queue_count(&entity->job_queue) == 0 ||
148 entity->stopped)
149 return true;
150
151 return false;
152 }
153
154 /**
155 * drm_sched_entity_error - return error of last scheduled job
156 * @entity: scheduler entity to check
157 *
158 * Opportunistically return the error of the last scheduled job. Result can
159 * change any time when new jobs are pushed to the hw.
160 */
drm_sched_entity_error(struct drm_sched_entity * entity)161 int drm_sched_entity_error(struct drm_sched_entity *entity)
162 {
163 struct dma_fence *fence;
164 int r;
165
166 rcu_read_lock();
167 fence = rcu_dereference(entity->last_scheduled);
168 r = fence ? fence->error : 0;
169 rcu_read_unlock();
170
171 return r;
172 }
173 EXPORT_SYMBOL(drm_sched_entity_error);
174
drm_sched_entity_kill_jobs_work(struct work_struct * wrk)175 static void drm_sched_entity_kill_jobs_work(struct work_struct *wrk)
176 {
177 struct drm_sched_job *job = container_of(wrk, typeof(*job), work);
178
179 drm_sched_fence_scheduled(job->s_fence, NULL);
180 drm_sched_fence_finished(job->s_fence, -ESRCH);
181 WARN_ON(job->s_fence->parent);
182 job->sched->ops->free_job(job);
183 }
184
185 /* Signal the scheduler finished fence when the entity in question is killed. */
drm_sched_entity_kill_jobs_cb(struct dma_fence * f,struct dma_fence_cb * cb)186 static void drm_sched_entity_kill_jobs_cb(struct dma_fence *f,
187 struct dma_fence_cb *cb)
188 {
189 struct drm_sched_job *job = container_of(cb, struct drm_sched_job,
190 finish_cb);
191 unsigned long index;
192
193 dma_fence_put(f);
194
195 /* Wait for all dependencies to avoid data corruptions */
196 xa_for_each(&job->dependencies, index, f) {
197 struct drm_sched_fence *s_fence = to_drm_sched_fence(f);
198
199 if (s_fence && f == &s_fence->scheduled) {
200 /* The dependencies array had a reference on the scheduled
201 * fence, and the finished fence refcount might have
202 * dropped to zero. Use dma_fence_get_rcu() so we get
203 * a NULL fence in that case.
204 */
205 f = dma_fence_get_rcu(&s_fence->finished);
206
207 /* Now that we have a reference on the finished fence,
208 * we can release the reference the dependencies array
209 * had on the scheduled fence.
210 */
211 dma_fence_put(&s_fence->scheduled);
212 }
213
214 xa_erase(&job->dependencies, index);
215 if (f && !dma_fence_add_callback(f, &job->finish_cb,
216 drm_sched_entity_kill_jobs_cb))
217 return;
218
219 dma_fence_put(f);
220 }
221
222 INIT_WORK(&job->work, drm_sched_entity_kill_jobs_work);
223 schedule_work(&job->work);
224 }
225
226 /* Remove the entity from the scheduler and kill all pending jobs */
drm_sched_entity_kill(struct drm_sched_entity * entity)227 static void drm_sched_entity_kill(struct drm_sched_entity *entity)
228 {
229 struct drm_sched_job *job;
230 struct dma_fence *prev;
231
232 if (!entity->rq)
233 return;
234
235 spin_lock(&entity->lock);
236 entity->stopped = true;
237 drm_sched_rq_remove_entity(entity->rq, entity);
238 spin_unlock(&entity->lock);
239
240 /* Make sure this entity is not used by the scheduler at the moment */
241 wait_for_completion(&entity->entity_idle);
242
243 /* The entity is guaranteed to not be used by the scheduler */
244 prev = rcu_dereference_check(entity->last_scheduled, true);
245 dma_fence_get(prev);
246 while ((job = drm_sched_entity_queue_pop(entity))) {
247 struct drm_sched_fence *s_fence = job->s_fence;
248
249 dma_fence_get(&s_fence->finished);
250 if (!prev ||
251 dma_fence_add_callback(prev, &job->finish_cb,
252 drm_sched_entity_kill_jobs_cb)) {
253 /*
254 * Adding callback above failed.
255 * dma_fence_put() checks for NULL.
256 */
257 dma_fence_put(prev);
258 drm_sched_entity_kill_jobs_cb(NULL, &job->finish_cb);
259 }
260
261 prev = &s_fence->finished;
262 }
263 dma_fence_put(prev);
264 }
265
266 /**
267 * drm_sched_entity_flush - Flush a context entity
268 *
269 * @entity: scheduler entity
270 * @timeout: time to wait in for Q to become empty in jiffies.
271 *
272 * Splitting drm_sched_entity_fini() into two functions, The first one does the
273 * waiting, removes the entity from the runqueue and returns an error when the
274 * process was killed.
275 *
276 * Returns the remaining time in jiffies left from the input timeout
277 */
drm_sched_entity_flush(struct drm_sched_entity * entity,long timeout)278 long drm_sched_entity_flush(struct drm_sched_entity *entity, long timeout)
279 {
280 struct drm_gpu_scheduler *sched;
281 struct task_struct *last_user;
282 long ret = timeout;
283
284 if (!entity->rq)
285 return 0;
286
287 sched = entity->rq->sched;
288 /**
289 * The client will not queue more IBs during this fini, consume existing
290 * queued IBs or discard them on SIGKILL
291 */
292 if (current->flags & PF_EXITING) {
293 if (timeout)
294 ret = wait_event_timeout(
295 sched->job_scheduled,
296 drm_sched_entity_is_idle(entity),
297 timeout);
298 } else {
299 wait_event_killable(sched->job_scheduled,
300 drm_sched_entity_is_idle(entity));
301 }
302
303 /* For killed process disable any more IBs enqueue right now */
304 last_user = cmpxchg(&entity->last_user, current->group_leader, NULL);
305 if ((!last_user || last_user == current->group_leader) &&
306 (current->flags & PF_EXITING) && (current->exit_code == SIGKILL))
307 drm_sched_entity_kill(entity);
308
309 return ret;
310 }
311 EXPORT_SYMBOL(drm_sched_entity_flush);
312
313 /**
314 * drm_sched_entity_fini - Destroy a context entity
315 *
316 * @entity: scheduler entity
317 *
318 * Cleanups up @entity which has been initialized by drm_sched_entity_init().
319 *
320 * If there are potentially job still in flight or getting newly queued
321 * drm_sched_entity_flush() must be called first. This function then goes over
322 * the entity and signals all jobs with an error code if the process was killed.
323 */
drm_sched_entity_fini(struct drm_sched_entity * entity)324 void drm_sched_entity_fini(struct drm_sched_entity *entity)
325 {
326 /*
327 * If consumption of existing IBs wasn't completed. Forcefully remove
328 * them here. Also makes sure that the scheduler won't touch this entity
329 * any more.
330 */
331 drm_sched_entity_kill(entity);
332
333 if (entity->dependency) {
334 dma_fence_remove_callback(entity->dependency, &entity->cb);
335 dma_fence_put(entity->dependency);
336 entity->dependency = NULL;
337 }
338
339 dma_fence_put(rcu_dereference_check(entity->last_scheduled, true));
340 RCU_INIT_POINTER(entity->last_scheduled, NULL);
341 }
342 EXPORT_SYMBOL(drm_sched_entity_fini);
343
344 /**
345 * drm_sched_entity_destroy - Destroy a context entity
346 * @entity: scheduler entity
347 *
348 * Calls drm_sched_entity_flush() and drm_sched_entity_fini() as a
349 * convenience wrapper.
350 */
drm_sched_entity_destroy(struct drm_sched_entity * entity)351 void drm_sched_entity_destroy(struct drm_sched_entity *entity)
352 {
353 drm_sched_entity_flush(entity, MAX_WAIT_SCHED_ENTITY_Q_EMPTY);
354 drm_sched_entity_fini(entity);
355 }
356 EXPORT_SYMBOL(drm_sched_entity_destroy);
357
358 /* drm_sched_entity_clear_dep - callback to clear the entities dependency */
drm_sched_entity_clear_dep(struct dma_fence * f,struct dma_fence_cb * cb)359 static void drm_sched_entity_clear_dep(struct dma_fence *f,
360 struct dma_fence_cb *cb)
361 {
362 struct drm_sched_entity *entity =
363 container_of(cb, struct drm_sched_entity, cb);
364
365 entity->dependency = NULL;
366 dma_fence_put(f);
367 }
368
369 /*
370 * drm_sched_entity_wakeup - callback to clear the entity's dependency and
371 * wake up the scheduler
372 */
drm_sched_entity_wakeup(struct dma_fence * f,struct dma_fence_cb * cb)373 static void drm_sched_entity_wakeup(struct dma_fence *f,
374 struct dma_fence_cb *cb)
375 {
376 struct drm_sched_entity *entity =
377 container_of(cb, struct drm_sched_entity, cb);
378
379 drm_sched_entity_clear_dep(f, cb);
380 drm_sched_wakeup(entity->rq->sched);
381 }
382
383 /**
384 * drm_sched_entity_set_priority - Sets priority of the entity
385 *
386 * @entity: scheduler entity
387 * @priority: scheduler priority
388 *
389 * Update the priority of runqueues used for the entity.
390 */
drm_sched_entity_set_priority(struct drm_sched_entity * entity,enum drm_sched_priority priority)391 void drm_sched_entity_set_priority(struct drm_sched_entity *entity,
392 enum drm_sched_priority priority)
393 {
394 spin_lock(&entity->lock);
395 entity->priority = priority;
396 spin_unlock(&entity->lock);
397 }
398 EXPORT_SYMBOL(drm_sched_entity_set_priority);
399
400 /*
401 * Add a callback to the current dependency of the entity to wake up the
402 * scheduler when the entity becomes available.
403 */
drm_sched_entity_add_dependency_cb(struct drm_sched_entity * entity)404 static bool drm_sched_entity_add_dependency_cb(struct drm_sched_entity *entity)
405 {
406 struct drm_gpu_scheduler *sched = entity->rq->sched;
407 struct dma_fence *fence = entity->dependency;
408 struct drm_sched_fence *s_fence;
409
410 if (fence->context == entity->fence_context ||
411 fence->context == entity->fence_context + 1) {
412 /*
413 * Fence is a scheduled/finished fence from a job
414 * which belongs to the same entity, we can ignore
415 * fences from ourself
416 */
417 dma_fence_put(entity->dependency);
418 return false;
419 }
420
421 s_fence = to_drm_sched_fence(fence);
422 if (!fence->error && s_fence && s_fence->sched == sched &&
423 !test_bit(DRM_SCHED_FENCE_DONT_PIPELINE, &fence->flags)) {
424
425 /*
426 * Fence is from the same scheduler, only need to wait for
427 * it to be scheduled
428 */
429 fence = dma_fence_get(&s_fence->scheduled);
430 dma_fence_put(entity->dependency);
431 entity->dependency = fence;
432 if (!dma_fence_add_callback(fence, &entity->cb,
433 drm_sched_entity_clear_dep))
434 return true;
435
436 /* Ignore it when it is already scheduled */
437 dma_fence_put(fence);
438 return false;
439 }
440
441 if (!dma_fence_add_callback(entity->dependency, &entity->cb,
442 drm_sched_entity_wakeup))
443 return true;
444
445 dma_fence_put(entity->dependency);
446 return false;
447 }
448
449 static struct dma_fence *
drm_sched_job_dependency(struct drm_sched_job * job,struct drm_sched_entity * entity)450 drm_sched_job_dependency(struct drm_sched_job *job,
451 struct drm_sched_entity *entity)
452 {
453 struct dma_fence *f;
454
455 /* We keep the fence around, so we can iterate over all dependencies
456 * in drm_sched_entity_kill_jobs_cb() to ensure all deps are signaled
457 * before killing the job.
458 */
459 f = xa_load(&job->dependencies, job->last_dependency);
460 if (f) {
461 job->last_dependency++;
462 return dma_fence_get(f);
463 }
464
465 if (job->sched->ops->prepare_job)
466 return job->sched->ops->prepare_job(job, entity);
467
468 return NULL;
469 }
470
drm_sched_entity_pop_job(struct drm_sched_entity * entity)471 struct drm_sched_job *drm_sched_entity_pop_job(struct drm_sched_entity *entity)
472 {
473 struct drm_sched_job *sched_job;
474
475 sched_job = drm_sched_entity_queue_peek(entity);
476 if (!sched_job)
477 return NULL;
478
479 while ((entity->dependency =
480 drm_sched_job_dependency(sched_job, entity))) {
481 trace_drm_sched_job_wait_dep(sched_job, entity->dependency);
482
483 if (drm_sched_entity_add_dependency_cb(entity))
484 return NULL;
485 }
486
487 /* skip jobs from entity that marked guilty */
488 if (entity->guilty && atomic_read(entity->guilty))
489 dma_fence_set_error(&sched_job->s_fence->finished, -ECANCELED);
490
491 dma_fence_put(rcu_dereference_check(entity->last_scheduled, true));
492 rcu_assign_pointer(entity->last_scheduled,
493 dma_fence_get(&sched_job->s_fence->finished));
494
495 /*
496 * If the queue is empty we allow drm_sched_entity_select_rq() to
497 * locklessly access ->last_scheduled. This only works if we set the
498 * pointer before we dequeue and if we a write barrier here.
499 */
500 smp_wmb();
501
502 spsc_queue_pop(&entity->job_queue);
503
504 /*
505 * Update the entity's location in the min heap according to
506 * the timestamp of the next job, if any.
507 */
508 if (drm_sched_policy == DRM_SCHED_POLICY_FIFO) {
509 struct drm_sched_job *next;
510
511 next = drm_sched_entity_queue_peek(entity);
512 if (next) {
513 struct drm_sched_rq *rq;
514
515 spin_lock(&entity->lock);
516 rq = entity->rq;
517 spin_lock(&rq->lock);
518 drm_sched_rq_update_fifo_locked(entity, rq,
519 next->submit_ts);
520 spin_unlock(&rq->lock);
521 spin_unlock(&entity->lock);
522 }
523 }
524
525 /* Jobs and entities might have different lifecycles. Since we're
526 * removing the job from the entities queue, set the jobs entity pointer
527 * to NULL to prevent any future access of the entity through this job.
528 */
529 sched_job->entity = NULL;
530
531 return sched_job;
532 }
533
drm_sched_entity_select_rq(struct drm_sched_entity * entity)534 void drm_sched_entity_select_rq(struct drm_sched_entity *entity)
535 {
536 struct dma_fence *fence;
537 struct drm_gpu_scheduler *sched;
538 struct drm_sched_rq *rq;
539
540 /* single possible engine and already selected */
541 if (!entity->sched_list)
542 return;
543
544 /* queue non-empty, stay on the same engine */
545 if (spsc_queue_count(&entity->job_queue))
546 return;
547
548 /*
549 * Only when the queue is empty are we guaranteed that the scheduler
550 * thread cannot change ->last_scheduled. To enforce ordering we need
551 * a read barrier here. See drm_sched_entity_pop_job() for the other
552 * side.
553 */
554 smp_rmb();
555
556 fence = rcu_dereference_check(entity->last_scheduled, true);
557
558 /* stay on the same engine if the previous job hasn't finished */
559 if (fence && !dma_fence_is_signaled(fence))
560 return;
561
562 spin_lock(&entity->lock);
563 sched = drm_sched_pick_best(entity->sched_list, entity->num_sched_list);
564 rq = sched ? sched->sched_rq[entity->priority] : NULL;
565 if (rq != entity->rq) {
566 drm_sched_rq_remove_entity(entity->rq, entity);
567 entity->rq = rq;
568 }
569 spin_unlock(&entity->lock);
570
571 if (entity->num_sched_list == 1)
572 entity->sched_list = NULL;
573 }
574
575 /**
576 * drm_sched_entity_push_job - Submit a job to the entity's job queue
577 * @sched_job: job to submit
578 *
579 * Note: To guarantee that the order of insertion to queue matches the job's
580 * fence sequence number this function should be called with drm_sched_job_arm()
581 * under common lock for the struct drm_sched_entity that was set up for
582 * @sched_job in drm_sched_job_init().
583 */
drm_sched_entity_push_job(struct drm_sched_job * sched_job)584 void drm_sched_entity_push_job(struct drm_sched_job *sched_job)
585 {
586 struct drm_sched_entity *entity = sched_job->entity;
587 bool first;
588 ktime_t submit_ts;
589
590 trace_drm_sched_job(sched_job, entity);
591 atomic_inc(entity->rq->sched->score);
592 WRITE_ONCE(entity->last_user, current->group_leader);
593
594 /*
595 * After the sched_job is pushed into the entity queue, it may be
596 * completed and freed up at any time. We can no longer access it.
597 * Make sure to set the submit_ts first, to avoid a race.
598 */
599 sched_job->submit_ts = submit_ts = ktime_get();
600 first = spsc_queue_push(&entity->job_queue, &sched_job->queue_node);
601
602 /* first job wakes up scheduler */
603 if (first) {
604 struct drm_gpu_scheduler *sched;
605 struct drm_sched_rq *rq;
606
607 /* Add the entity to the run queue */
608 spin_lock(&entity->lock);
609 if (entity->stopped) {
610 spin_unlock(&entity->lock);
611
612 DRM_ERROR("Trying to push to a killed entity\n");
613 return;
614 }
615
616 rq = entity->rq;
617 sched = rq->sched;
618
619 spin_lock(&rq->lock);
620 drm_sched_rq_add_entity(rq, entity);
621
622 if (drm_sched_policy == DRM_SCHED_POLICY_FIFO)
623 drm_sched_rq_update_fifo_locked(entity, rq, submit_ts);
624
625 spin_unlock(&rq->lock);
626 spin_unlock(&entity->lock);
627
628 drm_sched_wakeup(sched);
629 }
630 }
631 EXPORT_SYMBOL(drm_sched_entity_push_job);
632