1 // SPDX-License-Identifier: MIT
2 /*
3 * Copyright 2023 Advanced Micro Devices, Inc.
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
9 * and/or sell copies of the Software, and to permit persons to whom the
10 * Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice shall be included in
13 * all copies or substantial portions of the Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
19 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
20 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
21 * OTHER DEALINGS IN THE SOFTWARE.
22 *
23 */
24
25 #include <drm/drm_auth.h>
26 #include <drm/drm_exec.h>
27 #include <linux/pm_runtime.h>
28 #include <linux/overflow.h>
29 #include <drm/drm_drv.h>
30
31 #include "amdgpu.h"
32 #include "amdgpu_reset.h"
33 #include "amdgpu_vm.h"
34 #include "amdgpu_userq.h"
35 #include "amdgpu_hmm.h"
36 #include "amdgpu_userq_fence.h"
37 #include "amdgpu_trace.h"
38
amdgpu_userq_get_supported_ip_mask(struct amdgpu_device * adev)39 u32 amdgpu_userq_get_supported_ip_mask(struct amdgpu_device *adev)
40 {
41 int i;
42 u32 userq_ip_mask = 0;
43
44 for (i = 0; i < AMDGPU_HW_IP_NUM; i++) {
45 if (adev->userq_funcs[i])
46 userq_ip_mask |= (1 << i);
47 }
48
49 return userq_ip_mask;
50 }
51
amdgpu_userq_is_reset_type_supported(struct amdgpu_device * adev,enum amdgpu_ring_type ring_type,int reset_type)52 static bool amdgpu_userq_is_reset_type_supported(struct amdgpu_device *adev,
53 enum amdgpu_ring_type ring_type, int reset_type)
54 {
55
56 if (ring_type < 0 || ring_type >= AMDGPU_RING_TYPE_MAX)
57 return false;
58
59 switch (ring_type) {
60 case AMDGPU_RING_TYPE_GFX:
61 if (adev->gfx.gfx_supported_reset & reset_type)
62 return true;
63 break;
64 case AMDGPU_RING_TYPE_COMPUTE:
65 if (adev->gfx.compute_supported_reset & reset_type)
66 return true;
67 break;
68 case AMDGPU_RING_TYPE_SDMA:
69 if (adev->sdma.supported_reset & reset_type)
70 return true;
71 break;
72 case AMDGPU_RING_TYPE_VCN_DEC:
73 case AMDGPU_RING_TYPE_VCN_ENC:
74 if (adev->vcn.supported_reset & reset_type)
75 return true;
76 break;
77 case AMDGPU_RING_TYPE_VCN_JPEG:
78 if (adev->jpeg.supported_reset & reset_type)
79 return true;
80 break;
81 default:
82 break;
83 }
84 return false;
85 }
86
amdgpu_userq_mgr_reset_work(struct work_struct * work)87 static void amdgpu_userq_mgr_reset_work(struct work_struct *work)
88 {
89 struct amdgpu_userq_mgr *uq_mgr =
90 container_of(work, struct amdgpu_userq_mgr,
91 reset_work);
92 struct amdgpu_device *adev = uq_mgr->adev;
93 struct amdgpu_reset_context reset_context;
94
95 if (unlikely(adev->debug_disable_gpu_ring_reset)) {
96 dev_err(adev->dev, "userq reset disabled by debug mask\n");
97 return;
98 }
99
100 /*
101 * If GPU recovery feature is disabled system-wide,
102 * skip all reset detection logic
103 */
104 if (!amdgpu_gpu_recovery)
105 return;
106
107 memset(&reset_context, 0, sizeof(reset_context));
108
109 reset_context.method = AMD_RESET_METHOD_NONE;
110 reset_context.reset_req_dev = adev;
111 reset_context.src = AMDGPU_RESET_SRC_USERQ;
112 set_bit(AMDGPU_NEED_FULL_RESET, &reset_context.flags);
113 /*set_bit(AMDGPU_SKIP_COREDUMP, &reset_context.flags);*/
114
115 amdgpu_device_gpu_recover(adev, NULL, &reset_context);
116 }
117
amdgpu_userq_hang_detect_work(struct work_struct * work)118 static void amdgpu_userq_hang_detect_work(struct work_struct *work)
119 {
120 struct amdgpu_usermode_queue *queue =
121 container_of(work, struct amdgpu_usermode_queue,
122 hang_detect_work.work);
123 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
124 struct amdgpu_device *adev = uq_mgr->adev;
125 const struct amdgpu_userq_funcs *userq_funcs =
126 adev->userq_funcs[queue->queue_type];
127 struct drm_wedge_task_info *info = NULL;
128 struct amdgpu_task_info *ti = NULL;
129 bool gpu_reset = false;
130
131 if (unlikely(adev->debug_disable_gpu_ring_reset)) {
132 dev_err(adev->dev, "userq reset disabled by debug mask\n");
133 return;
134 }
135
136 /*
137 * If GPU recovery feature is disabled system-wide,
138 * skip all reset detection logic
139 */
140 if (!amdgpu_gpu_recovery)
141 return;
142
143 if (queue->vm && queue->vm->pasid) {
144 ti = amdgpu_vm_get_task_info_pasid(adev, queue->vm->pasid);
145 if (ti) {
146 amdgpu_vm_print_task_info(adev, ti);
147 info = &ti->task;
148 }
149 }
150
151 if (amdgpu_userq_is_reset_type_supported(adev, queue->queue_type,
152 AMDGPU_RESET_TYPE_PER_QUEUE)) {
153 int r;
154
155 if (queue->queue_type == AMDGPU_HW_IP_COMPUTE)
156 r = amdgpu_gfx_reset_mes_compute(adev, NULL, NULL,
157 queue, NULL, NULL);
158 else
159 r = userq_funcs->reset(queue);
160 if (r) {
161 gpu_reset = true;
162 } else {
163 atomic_inc(&adev->gpu_reset_counter);
164 amdgpu_userq_fence_driver_force_completion(queue);
165 drm_dev_wedged_event(adev_to_drm(adev), DRM_WEDGE_RECOVERY_NONE, info);
166 }
167 } else {
168 gpu_reset = true;
169 }
170 amdgpu_vm_put_task_info(ti);
171
172 /*
173 * Don't schedule the work here! Scheduling or queue work from one reset
174 * handler to another is illegal if you don't take extra precautions!
175 */
176 if (gpu_reset)
177 amdgpu_userq_mgr_reset_work(&queue->userq_mgr->reset_work);
178 }
179
180 /*
181 * Start hang detection for a user queue fence. A delayed work will be scheduled
182 * to reset the queues when the fence doesn't signal in time.
183 */
amdgpu_userq_start_hang_detect_work(struct amdgpu_usermode_queue * queue)184 void amdgpu_userq_start_hang_detect_work(struct amdgpu_usermode_queue *queue)
185 {
186 struct amdgpu_device *adev;
187 unsigned long timeout_ms;
188
189 adev = queue->userq_mgr->adev;
190 /* Determine timeout based on queue type */
191 switch (queue->queue_type) {
192 case AMDGPU_RING_TYPE_GFX:
193 timeout_ms = adev->gfx_timeout;
194 break;
195 case AMDGPU_RING_TYPE_COMPUTE:
196 timeout_ms = adev->compute_timeout;
197 break;
198 case AMDGPU_RING_TYPE_SDMA:
199 timeout_ms = adev->sdma_timeout;
200 break;
201 default:
202 timeout_ms = adev->gfx_timeout;
203 break;
204 }
205
206 queue_delayed_work(adev->reset_domain->wq, &queue->hang_detect_work,
207 msecs_to_jiffies(timeout_ms));
208 }
209
amdgpu_userq_process_fence_irq(struct amdgpu_device * adev,u32 doorbell)210 void amdgpu_userq_process_fence_irq(struct amdgpu_device *adev, u32 doorbell)
211 {
212 struct xarray *xa = &adev->userq_doorbell_xa;
213 struct amdgpu_usermode_queue *queue;
214 unsigned long flags;
215 int r;
216
217 xa_lock_irqsave(xa, flags);
218 queue = xa_load(xa, doorbell);
219 if (queue) {
220 r = amdgpu_userq_fence_driver_process(queue->fence_drv);
221 /*
222 * We are in interrupt context here, this *can't* wait for
223 * reset work to finish.
224 */
225 if (r >= 0)
226 cancel_delayed_work(&queue->hang_detect_work);
227
228 /* Restart the timer when there are still fences pending */
229 if (r == 1)
230 amdgpu_userq_start_hang_detect_work(queue);
231 }
232 xa_unlock_irqrestore(xa, flags);
233 }
234
amdgpu_userq_input_va_validate(struct amdgpu_device * adev,struct amdgpu_usermode_queue * queue,u64 addr,u64 expected_size,u64 * va_out)235 int amdgpu_userq_input_va_validate(struct amdgpu_device *adev,
236 struct amdgpu_usermode_queue *queue,
237 u64 addr, u64 expected_size,
238 u64 *va_out)
239 {
240 struct amdgpu_bo_va_mapping *va_map;
241 struct amdgpu_vm *vm = queue->vm;
242 u64 start_addr;
243 u64 end_addr;
244 u64 start_page;
245
246 /* Caller must hold vm->root.bo reservation */
247 dma_resv_assert_held(queue->vm->root.bo->tbo.base.resv);
248
249 if (!expected_size)
250 return -EINVAL;
251
252 start_addr = addr & AMDGPU_GMC_HOLE_MASK;
253 if (check_add_overflow(start_addr, expected_size - 1, &end_addr))
254 return -EINVAL;
255
256 start_page = start_addr >> AMDGPU_GPU_PAGE_SHIFT;
257
258 va_map = amdgpu_vm_bo_lookup_mapping(vm, start_page);
259 if (!va_map)
260 return -EINVAL;
261
262 /* Lookup guarantees start_page is mapped; ensure full span is covered. */
263 if ((end_addr >> AMDGPU_GPU_PAGE_SHIFT) <= va_map->last) {
264 va_map->bo_va->userq_va_mapped = true;
265 *va_out = start_page;
266 return 0;
267 }
268
269 return -EINVAL;
270 }
271
amdgpu_userq_buffer_va_mapped(struct amdgpu_vm * vm,u64 addr)272 static bool amdgpu_userq_buffer_va_mapped(struct amdgpu_vm *vm, u64 addr)
273 {
274 struct amdgpu_bo_va_mapping *mapping;
275 bool r;
276
277 dma_resv_assert_held(vm->root.bo->tbo.base.resv);
278
279 mapping = amdgpu_vm_bo_lookup_mapping(vm, addr);
280 if (!IS_ERR_OR_NULL(mapping) && mapping->bo_va->userq_va_mapped)
281 r = true;
282 else
283 r = false;
284
285 return r;
286 }
287
amdgpu_userq_buffer_vas_mapped(struct amdgpu_usermode_queue * queue)288 static bool amdgpu_userq_buffer_vas_mapped(struct amdgpu_usermode_queue *queue)
289 {
290 int i;
291 bool mapped;
292
293 for (i = 0; i < ARRAY_SIZE(queue->userq_vas.va_array); i++) {
294 if (!queue->userq_vas.va_array[i])
295 continue;
296
297 mapped = amdgpu_userq_buffer_va_mapped(queue->vm,
298 queue->userq_vas.va_array[i]);
299 dev_dbg(queue->userq_mgr->adev->dev,
300 "validate the userq mapping:%p va:%llx r:%d\n",
301 queue, queue->userq_vas.va_array[i], mapped);
302
303 if (!mapped)
304 return false;
305 }
306
307 return true;
308 }
309
310
311
amdgpu_userq_preempt_helper(struct amdgpu_usermode_queue * queue)312 static int amdgpu_userq_preempt_helper(struct amdgpu_usermode_queue *queue)
313 {
314 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
315 struct amdgpu_device *adev = uq_mgr->adev;
316 const struct amdgpu_userq_funcs *userq_funcs =
317 adev->userq_funcs[queue->queue_type];
318 int r;
319
320 if (queue->state == AMDGPU_USERQ_STATE_MAPPED) {
321 trace_amdgpu_userq_state_start(queue);
322
323 r = userq_funcs->preempt(queue);
324 if (r) {
325 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_HUNG);
326 queue->state = AMDGPU_USERQ_STATE_HUNG;
327 return r;
328 } else {
329 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_PREEMPTED);
330 queue->state = AMDGPU_USERQ_STATE_PREEMPTED;
331 }
332 }
333 return 0;
334 }
335
amdgpu_userq_restore_helper(struct amdgpu_usermode_queue * queue)336 static int amdgpu_userq_restore_helper(struct amdgpu_usermode_queue *queue)
337 {
338 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
339 struct amdgpu_device *adev = uq_mgr->adev;
340 const struct amdgpu_userq_funcs *userq_funcs =
341 adev->userq_funcs[queue->queue_type];
342 int r = 0;
343
344 if (queue->state == AMDGPU_USERQ_STATE_PREEMPTED) {
345 trace_amdgpu_userq_state_start(queue);
346
347 r = userq_funcs->restore(queue);
348 if (r) {
349 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_HUNG);
350 queue->state = AMDGPU_USERQ_STATE_HUNG;
351 } else {
352 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_MAPPED);
353 queue->state = AMDGPU_USERQ_STATE_MAPPED;
354 }
355 }
356
357 return r;
358 }
359
amdgpu_userq_unmap_helper(struct amdgpu_usermode_queue * queue)360 static int amdgpu_userq_unmap_helper(struct amdgpu_usermode_queue *queue)
361 {
362 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
363 struct amdgpu_device *adev = uq_mgr->adev;
364 const struct amdgpu_userq_funcs *userq_funcs =
365 adev->userq_funcs[queue->queue_type];
366 int r;
367
368 if ((queue->state == AMDGPU_USERQ_STATE_MAPPED) ||
369 (queue->state == AMDGPU_USERQ_STATE_PREEMPTED)) {
370 trace_amdgpu_userq_state_start(queue);
371
372 r = userq_funcs->unmap(queue);
373 if (r) {
374 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_HUNG);
375 queue->state = AMDGPU_USERQ_STATE_HUNG;
376 return r;
377 } else {
378 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_UNMAPPED);
379 queue->state = AMDGPU_USERQ_STATE_UNMAPPED;
380 }
381 }
382
383 return 0;
384 }
385
amdgpu_userq_map_helper(struct amdgpu_usermode_queue * queue)386 static int amdgpu_userq_map_helper(struct amdgpu_usermode_queue *queue)
387 {
388 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
389 struct amdgpu_device *adev = uq_mgr->adev;
390 const struct amdgpu_userq_funcs *userq_funcs =
391 adev->userq_funcs[queue->queue_type];
392 int r;
393
394 if (queue->state == AMDGPU_USERQ_STATE_UNMAPPED) {
395 trace_amdgpu_userq_state_start(queue);
396
397 r = userq_funcs->map(queue);
398 if (r) {
399 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_HUNG);
400 queue->state = AMDGPU_USERQ_STATE_HUNG;
401 return r;
402 } else {
403 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_MAPPED);
404 queue->state = AMDGPU_USERQ_STATE_MAPPED;
405 }
406 }
407
408 return 0;
409 }
410
amdgpu_userq_wait_for_last_fence(struct amdgpu_usermode_queue * queue)411 static void amdgpu_userq_wait_for_last_fence(struct amdgpu_usermode_queue *queue)
412 {
413 struct dma_fence *f = queue->last_fence;
414
415 if (!f)
416 return;
417
418 dma_fence_wait(f, false);
419 }
420
amdgpu_userq_detach_doorbell(struct amdgpu_usermode_queue * queue)421 static void amdgpu_userq_detach_doorbell(struct amdgpu_usermode_queue *queue)
422 {
423 struct amdgpu_device *adev = queue->userq_mgr->adev;
424
425 down_read(&adev->reset_domain->sem);
426 xa_erase_irq(&adev->userq_doorbell_xa, queue->doorbell_index);
427 up_read(&adev->reset_domain->sem);
428 }
429
430 /**
431 * amdgpu_userq_ensure_ev_fence - ensure a valid, unsignaled eviction fence exists
432 * @uq_mgr: the usermode queue manager for this process
433 * @evf_mgr: the eviction fence manager to check and rearm
434 *
435 * Ensures that a valid and not yet signaled eviction fence is attached to the
436 * usermode queue before any queue operations proceed. If it is signalled, then
437 * rearm a new eviction fence.
438 */
439 void
amdgpu_userq_ensure_ev_fence(struct amdgpu_userq_mgr * uq_mgr,struct amdgpu_eviction_fence_mgr * evf_mgr)440 amdgpu_userq_ensure_ev_fence(struct amdgpu_userq_mgr *uq_mgr,
441 struct amdgpu_eviction_fence_mgr *evf_mgr)
442 {
443 struct dma_fence *ev_fence;
444
445 retry:
446 /* Flush any pending resume work to create ev_fence */
447 flush_delayed_work(&uq_mgr->resume_work);
448
449 mutex_lock(&uq_mgr->userq_mutex);
450 ev_fence = amdgpu_evf_mgr_get_fence(evf_mgr);
451 if (dma_fence_is_signaled(ev_fence)) {
452 dma_fence_put(ev_fence);
453 mutex_unlock(&uq_mgr->userq_mutex);
454 /*
455 * Looks like there was no pending resume work,
456 * add one now to create a valid eviction fence
457 */
458 schedule_delayed_work(&uq_mgr->resume_work, 0);
459 goto retry;
460 }
461 dma_fence_put(ev_fence);
462 }
463
464
465
466 static int
amdgpu_userq_get_doorbell_index(struct amdgpu_userq_mgr * uq_mgr,struct amdgpu_db_info * db_info,struct drm_file * filp,u64 * index)467 amdgpu_userq_get_doorbell_index(struct amdgpu_userq_mgr *uq_mgr,
468 struct amdgpu_db_info *db_info,
469 struct drm_file *filp,
470 u64 *index)
471 {
472 u64 doorbell_index;
473 struct drm_gem_object *gobj;
474 struct amdgpu_userq_obj *db_obj = db_info->db_obj;
475 int r, db_size;
476
477 gobj = drm_gem_object_lookup(filp, db_info->doorbell_handle);
478 if (gobj == NULL) {
479 drm_file_err(uq_mgr->file, "Can't find GEM object for doorbell\n");
480 return -EINVAL;
481 }
482
483 db_obj->obj = amdgpu_bo_ref(gem_to_amdgpu_bo(gobj));
484 drm_gem_object_put(gobj);
485
486 r = amdgpu_bo_reserve(db_obj->obj, true);
487 if (r) {
488 drm_file_err(uq_mgr->file, "[Usermode queues] Failed to pin doorbell object\n");
489 goto unref_bo;
490 }
491
492 /* Pin the BO before generating the index, unpin in queue destroy */
493 r = amdgpu_bo_pin(db_obj->obj, AMDGPU_GEM_DOMAIN_DOORBELL);
494 if (r) {
495 drm_file_err(uq_mgr->file, "[Usermode queues] Failed to pin doorbell object\n");
496 goto unresv_bo;
497 }
498
499 switch (db_info->queue_type) {
500 case AMDGPU_HW_IP_GFX:
501 case AMDGPU_HW_IP_COMPUTE:
502 case AMDGPU_HW_IP_DMA:
503 db_size = sizeof(u64);
504 break;
505 default:
506 drm_file_err(uq_mgr->file, "[Usermode queues] IP %d not support\n",
507 db_info->queue_type);
508 r = -EINVAL;
509 goto unpin_bo;
510 }
511
512 /* Validate doorbell_offset is within the doorbell BO */
513 if ((u64)db_info->doorbell_offset * db_size + db_size >
514 amdgpu_bo_size(db_obj->obj)) {
515 r = -EINVAL;
516 goto unpin_bo;
517 }
518
519 doorbell_index = amdgpu_doorbell_index_on_bar(uq_mgr->adev, db_obj->obj,
520 db_info->doorbell_offset, db_size);
521 drm_dbg_driver(adev_to_drm(uq_mgr->adev),
522 "[Usermode queues] doorbell index=%lld\n", doorbell_index);
523 amdgpu_bo_unreserve(db_obj->obj);
524 *index = doorbell_index;
525 return 0;
526
527 unpin_bo:
528 amdgpu_bo_unpin(db_obj->obj);
529 unresv_bo:
530 amdgpu_bo_unreserve(db_obj->obj);
531 unref_bo:
532 amdgpu_bo_unref(&db_obj->obj);
533 return r;
534 }
535
536 static int
amdgpu_userq_destroy(struct amdgpu_userq_mgr * uq_mgr,struct amdgpu_usermode_queue * queue)537 amdgpu_userq_destroy(struct amdgpu_userq_mgr *uq_mgr, struct amdgpu_usermode_queue *queue)
538 {
539 struct amdgpu_device *adev = uq_mgr->adev;
540 const struct amdgpu_userq_funcs *uq_funcs = adev->userq_funcs[queue->queue_type];
541 int r = 0;
542
543 trace_amdgpu_userq_destroy_start(queue);
544
545 cancel_delayed_work_sync(&uq_mgr->resume_work);
546
547 mutex_lock(&uq_mgr->userq_mutex);
548 amdgpu_userq_wait_for_last_fence(queue);
549
550 amdgpu_userq_detach_doorbell(queue);
551 cancel_delayed_work_sync(&queue->hang_detect_work);
552
553 #if defined(CONFIG_DEBUG_FS)
554 debugfs_remove_recursive(queue->debugfs_queue);
555 #endif
556 r = amdgpu_userq_unmap_helper(queue);
557 atomic_dec(&uq_mgr->userq_count[queue->queue_type]);
558 amdgpu_userq_fence_driver_free(queue);
559 queue->fence_drv = NULL;
560 mutex_unlock(&uq_mgr->userq_mutex);
561
562 /*
563 * A failed unmap means MES could not remove the hung queue and is now
564 * unresponsive. Recover the GPU here so the wedged MES does not fail
565 * the next, unrelated queue submission and trigger a reset attributed
566 * to an innocent workload.
567 */
568 if (r)
569 queue_work(adev->reset_domain->wq, &uq_mgr->reset_work);
570
571 uq_funcs->mqd_destroy(queue);
572 queue->userq_mgr = NULL;
573
574 amdgpu_bo_reserve(queue->db_obj.obj, true);
575 amdgpu_bo_unpin(queue->db_obj.obj);
576 amdgpu_bo_unreserve(queue->db_obj.obj);
577 amdgpu_bo_unref(&queue->db_obj.obj);
578
579 trace_amdgpu_userq_destroy_end(queue, r);
580 kfree(queue);
581
582 pm_runtime_put_autosuspend(adev_to_drm(adev)->dev);
583
584 return r;
585 }
586
amdgpu_userq_kref_destroy(struct kref * kref)587 static void amdgpu_userq_kref_destroy(struct kref *kref)
588 {
589 int r;
590 struct amdgpu_usermode_queue *queue =
591 container_of(kref, struct amdgpu_usermode_queue, refcount);
592 struct amdgpu_userq_mgr *uq_mgr = queue->userq_mgr;
593
594 r = amdgpu_userq_destroy(uq_mgr, queue);
595 if (r)
596 drm_file_err(uq_mgr->file, "Failed to destroy usermode queue %d\n", r);
597 }
598
amdgpu_userq_get(struct amdgpu_userq_mgr * uq_mgr,u32 qid)599 struct amdgpu_usermode_queue *amdgpu_userq_get(struct amdgpu_userq_mgr *uq_mgr, u32 qid)
600 {
601 struct amdgpu_usermode_queue *queue;
602
603 xa_lock(&uq_mgr->userq_xa);
604 queue = xa_load(&uq_mgr->userq_xa, qid);
605 if (queue)
606 kref_get(&queue->refcount);
607 xa_unlock(&uq_mgr->userq_xa);
608
609 return queue;
610 }
611
amdgpu_userq_put(struct amdgpu_usermode_queue * queue)612 void amdgpu_userq_put(struct amdgpu_usermode_queue *queue)
613 {
614 if (queue)
615 kref_put(&queue->refcount, amdgpu_userq_kref_destroy);
616 }
617
amdgpu_userq_priority_permit(struct drm_file * filp,int priority)618 static int amdgpu_userq_priority_permit(struct drm_file *filp,
619 int priority)
620 {
621 if (priority < AMDGPU_USERQ_CREATE_FLAGS_QUEUE_PRIORITY_HIGH)
622 return 0;
623
624 if (capable(CAP_SYS_NICE))
625 return 0;
626
627 if (drm_is_current_master(filp))
628 return 0;
629
630 return -EACCES;
631 }
632
633 static int
amdgpu_userq_create(struct drm_file * filp,union drm_amdgpu_userq * args)634 amdgpu_userq_create(struct drm_file *filp, union drm_amdgpu_userq *args)
635 {
636 struct amdgpu_fpriv *fpriv = filp->driver_priv;
637 struct amdgpu_userq_mgr *uq_mgr = &fpriv->userq_mgr;
638 struct amdgpu_device *adev = uq_mgr->adev;
639 const struct amdgpu_userq_funcs *uq_funcs;
640 struct amdgpu_usermode_queue *queue;
641 struct amdgpu_db_info db_info;
642 uint64_t index;
643 int priority;
644 u32 qid;
645 int r;
646
647 priority =
648 (args->in.flags & AMDGPU_USERQ_CREATE_FLAGS_QUEUE_PRIORITY_MASK)
649 >> AMDGPU_USERQ_CREATE_FLAGS_QUEUE_PRIORITY_SHIFT;
650 r = amdgpu_userq_priority_permit(filp, priority);
651 if (r)
652 return r;
653
654 r = pm_runtime_resume_and_get(adev_to_drm(adev)->dev);
655 if (r < 0) {
656 drm_file_err(uq_mgr->file, "pm_runtime_resume_and_get() failed for userqueue create\n");
657 return r;
658 }
659
660 uq_funcs = adev->userq_funcs[args->in.ip_type];
661 if (!uq_funcs) {
662 r = -EINVAL;
663 goto err_pm_runtime;
664 }
665
666 queue = kzalloc_obj(struct amdgpu_usermode_queue);
667 if (!queue) {
668 r = -ENOMEM;
669 goto err_pm_runtime;
670 }
671
672 kref_init(&queue->refcount);
673 queue->doorbell_handle = args->in.doorbell_handle;
674 queue->queue_type = args->in.ip_type;
675 queue->vm = &fpriv->vm;
676 queue->priority = priority;
677 queue->xcp_id = (fpriv->xcp_id != AMDGPU_XCP_NO_PARTITION) ?
678 fpriv->xcp_id : 0;
679 queue->userq_mgr = uq_mgr;
680 INIT_DELAYED_WORK(&queue->hang_detect_work,
681 amdgpu_userq_hang_detect_work);
682
683 r = amdgpu_userq_fence_driver_alloc(adev, &queue->fence_drv);
684 if (r)
685 goto free_queue;
686
687 xa_init_flags(&queue->fence_drv_xa, XA_FLAGS_ALLOC);
688 mutex_init(&queue->fence_drv_lock);
689 /* Make sure the queue can actually run with those virtual addresses. */
690 r = amdgpu_bo_reserve(fpriv->vm.root.bo, false);
691 if (r)
692 goto free_fence_drv;
693
694 if (amdgpu_userq_input_va_validate(adev, queue, args->in.queue_va,
695 args->in.queue_size,
696 &queue->userq_vas.va.queue_rb) ||
697 amdgpu_userq_input_va_validate(adev, queue, args->in.rptr_va,
698 sizeof(u64),
699 &queue->userq_vas.va.rptr) ||
700 amdgpu_userq_input_va_validate(adev, queue, args->in.wptr_va,
701 sizeof(u64),
702 &queue->userq_vas.va.wptr)) {
703 r = -EINVAL;
704 amdgpu_bo_unreserve(fpriv->vm.root.bo);
705 goto free_fence_drv;
706 }
707 amdgpu_bo_unreserve(fpriv->vm.root.bo);
708
709 /* Convert relative doorbell offset into absolute doorbell index */
710 db_info.queue_type = queue->queue_type;
711 db_info.doorbell_handle = queue->doorbell_handle;
712 db_info.db_obj = &queue->db_obj;
713 db_info.doorbell_offset = args->in.doorbell_offset;
714 r = amdgpu_userq_get_doorbell_index(uq_mgr, &db_info, filp, &index);
715 if (r) {
716 drm_file_err(uq_mgr->file, "Failed to get doorbell for queue\n");
717 goto free_fence_drv;
718 }
719
720 queue->doorbell_index = index;
721 queue->doorbell_offset = (u32)args->in.doorbell_offset;
722 trace_amdgpu_userq_create_start(queue);
723 r = uq_funcs->mqd_create(queue, &args->in);
724 if (r) {
725 drm_file_err(uq_mgr->file, "Failed to create Queue\n");
726 goto clean_doorbell_bo;
727 }
728
729 /* Update VM owner at userq submit-time for page-fault attribution. */
730 amdgpu_vm_set_task_info(&fpriv->vm);
731
732 r = xa_insert_irq(&adev->userq_doorbell_xa, index, queue,
733 GFP_KERNEL);
734 if (r)
735 goto clean_mqd;
736
737 amdgpu_userq_ensure_ev_fence(&fpriv->userq_mgr, &fpriv->evf_mgr);
738
739 /* don't map the queue if scheduling is halted */
740 if (!adev->userq_halt_for_enforce_isolation ||
741 ((queue->queue_type != AMDGPU_HW_IP_GFX) &&
742 (queue->queue_type != AMDGPU_HW_IP_COMPUTE))) {
743 /* Serialize the map against an in-progress GPU reset (MES is
744 * unresponsive during recovery), matching amdgpu_userq_detach_doorbell().
745 */
746 down_read(&adev->reset_domain->sem);
747 r = amdgpu_userq_map_helper(queue);
748 up_read(&adev->reset_domain->sem);
749 if (r) {
750 drm_file_err(uq_mgr->file, "Failed to map Queue\n");
751 trace_amdgpu_userq_create_end(queue, r);
752 mutex_unlock(&uq_mgr->userq_mutex);
753 goto erase_doorbell;
754 }
755 }
756
757 atomic_inc(&uq_mgr->userq_count[queue->queue_type]);
758 mutex_unlock(&uq_mgr->userq_mutex);
759
760 r = xa_alloc(&uq_mgr->userq_xa, &qid, queue,
761 XA_LIMIT(1, AMDGPU_MAX_USERQ_COUNT),
762 GFP_KERNEL);
763 if (r) {
764 /*
765 * This drops the last reference which should take care of
766 * all cleanup.
767 */
768 trace_amdgpu_userq_create_end(queue, r);
769 amdgpu_userq_put(queue);
770 return r;
771 }
772
773 amdgpu_debugfs_userq_init(filp, queue, qid);
774 trace_amdgpu_userq_create_end(queue, 0);
775 args->out.queue_id = qid;
776 return 0;
777
778 erase_doorbell:
779 xa_erase_irq(&adev->userq_doorbell_xa, index);
780 clean_mqd:
781 uq_funcs->mqd_destroy(queue);
782 clean_doorbell_bo:
783 amdgpu_bo_reserve(queue->db_obj.obj, true);
784 amdgpu_bo_unpin(queue->db_obj.obj);
785 amdgpu_bo_unreserve(queue->db_obj.obj);
786 amdgpu_bo_unref(&queue->db_obj.obj);
787 free_fence_drv:
788 amdgpu_userq_fence_driver_free(queue);
789 free_queue:
790 trace_amdgpu_userq_create_end(queue, r);
791 kfree(queue);
792 err_pm_runtime:
793 pm_runtime_put_autosuspend(adev_to_drm(adev)->dev);
794 return r;
795 }
796
amdgpu_userq_input_args_validate(struct drm_device * dev,union drm_amdgpu_userq * args,struct drm_file * filp)797 static int amdgpu_userq_input_args_validate(struct drm_device *dev,
798 union drm_amdgpu_userq *args,
799 struct drm_file *filp)
800 {
801 struct amdgpu_device *adev = drm_to_adev(dev);
802
803 switch (args->in.op) {
804 case AMDGPU_USERQ_OP_CREATE:
805 if (args->in.flags & ~(AMDGPU_USERQ_CREATE_FLAGS_QUEUE_PRIORITY_MASK |
806 AMDGPU_USERQ_CREATE_FLAGS_QUEUE_SECURE))
807 return -EINVAL;
808 /* Usermode queues are only supported for GFX IP as of now */
809 if (args->in.ip_type != AMDGPU_HW_IP_GFX &&
810 args->in.ip_type != AMDGPU_HW_IP_DMA &&
811 args->in.ip_type != AMDGPU_HW_IP_COMPUTE) {
812 drm_file_err(filp, "Usermode queue doesn't support IP type %u\n",
813 args->in.ip_type);
814 return -EINVAL;
815 }
816
817 if ((args->in.flags & AMDGPU_USERQ_CREATE_FLAGS_QUEUE_SECURE) &&
818 (args->in.ip_type != AMDGPU_HW_IP_GFX) &&
819 (args->in.ip_type != AMDGPU_HW_IP_COMPUTE) &&
820 !amdgpu_is_tmz(adev)) {
821 drm_file_err(filp, "Secure only supported on GFX/Compute queues\n");
822 return -EINVAL;
823 }
824
825 if (args->in.queue_va == AMDGPU_BO_INVALID_OFFSET ||
826 args->in.queue_va == 0 ||
827 args->in.queue_size == 0) {
828 drm_file_err(filp, "invalidate userq queue va or size\n");
829 return -EINVAL;
830 }
831
832 if (!is_power_of_2(args->in.queue_size)) {
833 drm_file_err(filp, "Queue size must be a power of 2\n");
834 return -EINVAL;
835 }
836
837 if (args->in.queue_size < AMDGPU_GPU_PAGE_SIZE) {
838 drm_file_err(filp, "Queue size smaller than AMDGPU_GPU_PAGE_SIZE\n");
839 return -EINVAL;
840 }
841
842 if (!args->in.wptr_va || !args->in.rptr_va) {
843 drm_file_err(filp, "invalidate userq queue rptr or wptr\n");
844 return -EINVAL;
845 }
846
847 if (!IS_ALIGNED(args->in.wptr_va, sizeof(u64)) ||
848 !IS_ALIGNED(args->in.rptr_va, sizeof(u64))) {
849 drm_file_err(filp, "user queue rptr or wptr is not 8-byte aligned\n");
850 return -EINVAL;
851 }
852 break;
853 case AMDGPU_USERQ_OP_FREE:
854 if (args->in.ip_type ||
855 args->in.doorbell_handle ||
856 args->in.doorbell_offset ||
857 args->in.flags ||
858 args->in.queue_va ||
859 args->in.queue_size ||
860 args->in.rptr_va ||
861 args->in.wptr_va ||
862 args->in.mqd ||
863 args->in.mqd_size)
864 return -EINVAL;
865 break;
866 default:
867 return -EINVAL;
868 }
869
870 return 0;
871 }
872
amdgpu_userq_enabled(struct drm_device * dev)873 bool amdgpu_userq_enabled(struct drm_device *dev)
874 {
875 struct amdgpu_device *adev = drm_to_adev(dev);
876 int i;
877
878 for (i = 0; i < AMDGPU_HW_IP_NUM; i++) {
879 if (adev->userq_funcs[i])
880 return true;
881 }
882
883 return false;
884 }
885
amdgpu_userq_ioctl(struct drm_device * dev,void * data,struct drm_file * filp)886 int amdgpu_userq_ioctl(struct drm_device *dev, void *data,
887 struct drm_file *filp)
888 {
889 union drm_amdgpu_userq *args = data;
890 struct amdgpu_fpriv *fpriv = filp->driver_priv;
891 struct amdgpu_usermode_queue *queue;
892 int r = 0;
893
894 if (!amdgpu_userq_enabled(dev))
895 return -ENOTSUPP;
896
897 if (amdgpu_userq_input_args_validate(dev, args, filp) < 0)
898 return -EINVAL;
899
900 switch (args->in.op) {
901 case AMDGPU_USERQ_OP_CREATE:
902 r = amdgpu_userq_create(filp, args);
903 if (r)
904 drm_file_err(filp, "Failed to create usermode queue\n");
905 break;
906
907 case AMDGPU_USERQ_OP_FREE: {
908 xa_lock(&fpriv->userq_mgr.userq_xa);
909 queue = __xa_erase(&fpriv->userq_mgr.userq_xa, args->in.queue_id);
910 xa_unlock(&fpriv->userq_mgr.userq_xa);
911 if (!queue)
912 return -ENOENT;
913
914 amdgpu_userq_put(queue);
915 break;
916 }
917
918 default:
919 drm_dbg_driver(dev, "Invalid user queue op specified: %d\n", args->in.op);
920 return -EINVAL;
921 }
922
923 return r;
924 }
925
926 static int
amdgpu_userq_restore_all(struct amdgpu_userq_mgr * uq_mgr)927 amdgpu_userq_restore_all(struct amdgpu_userq_mgr *uq_mgr)
928 {
929 struct amdgpu_usermode_queue *queue;
930 unsigned long queue_id;
931 int ret = 0, r;
932
933 mutex_lock(&uq_mgr->userq_mutex);
934 /* Resume all the queues for this process */
935 xa_for_each(&uq_mgr->userq_xa, queue_id, queue) {
936
937 if (!amdgpu_userq_buffer_vas_mapped(queue)) {
938 drm_file_err(uq_mgr->file,
939 "trying restore queue without va mapping\n");
940 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_INVALID_VA);
941 queue->state = AMDGPU_USERQ_STATE_INVALID_VA;
942 continue;
943 }
944
945 r = amdgpu_userq_map_helper(queue);
946 if (r)
947 ret = r;
948 }
949 mutex_unlock(&uq_mgr->userq_mutex);
950
951 if (ret)
952 drm_file_err(uq_mgr->file,
953 "Failed to map all the queues, restore failed ret=%d\n", ret);
954 return ret;
955 }
956
amdgpu_userq_validate_vm(void * param,struct amdgpu_bo * bo)957 static int amdgpu_userq_validate_vm(void *param, struct amdgpu_bo *bo)
958 {
959 struct ttm_operation_ctx ctx = { false, false };
960
961 amdgpu_bo_placement_from_domain(bo, bo->allowed_domains);
962 return ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
963 }
964
965 /* Handle all BOs on the invalidated list, validate them and update the PTs */
966 static int
amdgpu_userq_bo_validate(struct amdgpu_device * adev,struct drm_exec * exec,struct amdgpu_vm * vm)967 amdgpu_userq_bo_validate(struct amdgpu_device *adev, struct drm_exec *exec,
968 struct amdgpu_vm *vm)
969 {
970 struct ttm_operation_ctx ctx = { false, false };
971 struct amdgpu_bo_va *bo_va;
972 struct amdgpu_bo *bo;
973 int ret;
974
975 spin_lock(&vm->individual_lock);
976 while (!list_empty(&vm->always_valid.evicted)) {
977 bo_va = list_first_entry(&vm->always_valid.evicted,
978 struct amdgpu_bo_va,
979 base.vm_status);
980 spin_unlock(&vm->individual_lock);
981
982 bo = bo_va->base.bo;
983 ret = drm_exec_prepare_obj(exec, &bo->tbo.base,
984 TTM_NUM_MOVE_FENCES + 1);
985 if (unlikely(ret))
986 return ret;
987
988 amdgpu_bo_placement_from_domain(bo, bo->allowed_domains);
989 ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
990 if (ret)
991 return ret;
992
993 /* This moves the bo_va to the idle list */
994 ret = amdgpu_vm_bo_update(adev, bo_va, false);
995 if (ret)
996 return ret;
997
998 spin_lock(&vm->individual_lock);
999 }
1000 spin_unlock(&vm->individual_lock);
1001
1002 return 0;
1003 }
1004
1005 /* Make sure the whole VM is ready to be used */
1006 static int
amdgpu_userq_vm_validate_and_restore_queue(struct amdgpu_userq_mgr * uq_mgr)1007 amdgpu_userq_vm_validate_and_restore_queue(struct amdgpu_userq_mgr *uq_mgr)
1008 {
1009 struct amdgpu_fpriv *fpriv = uq_mgr_to_fpriv(uq_mgr);
1010 bool invalidated = false, new_addition = false;
1011 struct ttm_operation_ctx ctx = { true, false };
1012 struct amdgpu_device *adev = uq_mgr->adev;
1013 struct amdgpu_hmm_range *range;
1014 struct amdgpu_vm *vm = &fpriv->vm;
1015 unsigned long key, tmp_key;
1016 struct amdgpu_bo_va *bo_va;
1017 struct amdgpu_usermode_queue *queue;
1018 struct amdgpu_bo *bo;
1019 struct drm_exec exec;
1020 struct xarray xa;
1021 int ret;
1022
1023 xa_init(&xa);
1024
1025 retry_lock:
1026 drm_exec_init(&exec, DRM_EXEC_IGNORE_DUPLICATES, 0);
1027 drm_exec_until_all_locked(&exec) {
1028 ret = amdgpu_vm_lock_pd(vm, &exec, 1);
1029 drm_exec_retry_on_contention(&exec);
1030 if (unlikely(ret))
1031 goto unlock_all;
1032
1033 ret = amdgpu_vm_lock_individual(vm, &exec, TTM_NUM_MOVE_FENCES + 1);
1034 drm_exec_retry_on_contention(&exec);
1035 if (unlikely(ret))
1036 goto unlock_all;
1037
1038 /* This validates PDs, PTs and per VM BOs */
1039 ret = amdgpu_vm_validate(adev, vm, NULL,
1040 amdgpu_userq_validate_vm,
1041 NULL);
1042 if (unlikely(ret))
1043 goto unlock_all;
1044
1045 /* This locks and validates the remaining evicted BOs */
1046 ret = amdgpu_userq_bo_validate(adev, &exec, vm);
1047 drm_exec_retry_on_contention(&exec);
1048 if (unlikely(ret))
1049 goto unlock_all;
1050
1051 /*
1052 * WPTR BOs are VM-mapped, but each BO has its own reservation
1053 * object. Lock them into this drm_exec ww context so the later
1054 * amdgpu_bo_gpu_offset() reads are done with the BO resv locked.
1055 */
1056 xa_for_each(&uq_mgr->userq_xa, tmp_key, queue) {
1057 struct ttm_operation_ctx wptr_ctx = { false, false };
1058
1059 bo = queue->wptr_obj.obj;
1060 if (!bo)
1061 continue;
1062
1063 ret = drm_exec_prepare_obj(&exec, &bo->tbo.base,
1064 TTM_NUM_MOVE_FENCES + 1);
1065 drm_exec_retry_on_contention(&exec);
1066 if (unlikely(ret))
1067 goto unlock_all;
1068
1069 amdgpu_bo_placement_from_domain(bo, bo->allowed_domains);
1070 ret = ttm_bo_validate(&bo->tbo, &bo->placement, &wptr_ctx);
1071 if (unlikely(ret))
1072 goto unlock_all;
1073 }
1074 }
1075
1076 if (invalidated) {
1077 xa_for_each(&xa, tmp_key, range) {
1078 bo = range->bo;
1079 amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_CPU);
1080 ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
1081 if (ret)
1082 goto unlock_all;
1083
1084 amdgpu_ttm_tt_set_user_pages(bo->tbo.ttm, range);
1085
1086 amdgpu_bo_placement_from_domain(bo, AMDGPU_GEM_DOMAIN_GTT);
1087 ret = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx);
1088 if (ret)
1089 goto unlock_all;
1090 }
1091 invalidated = false;
1092 }
1093
1094 ret = amdgpu_vm_handle_moved(adev, vm, NULL);
1095 if (ret)
1096 goto unlock_all;
1097
1098 /*
1099 * PRT/sparse mappings are kept off the vm_bo state lists, so
1100 * amdgpu_vm_handle_moved() does not touch them. Refresh their PTEs
1101 * explicitly here (as the CS path does) so sparse mappings survive a
1102 * VRAM-lost reset.
1103 */
1104 ret = amdgpu_vm_bo_update(adev, fpriv->prt_va, false);
1105 if (ret)
1106 goto unlock_all;
1107
1108 key = 0;
1109 /* Validate User Ptr BOs */
1110 list_for_each_entry(bo_va, &vm->always_valid.idle, base.vm_status) {
1111 bo = bo_va->base.bo;
1112 if (!bo)
1113 continue;
1114
1115 if (!amdgpu_ttm_tt_is_userptr(bo->tbo.ttm))
1116 continue;
1117
1118 range = xa_load(&xa, key);
1119 if (range && range->bo != bo) {
1120 xa_erase(&xa, key);
1121 amdgpu_hmm_range_free(range);
1122 range = NULL;
1123 }
1124
1125 if (!range) {
1126 range = amdgpu_hmm_range_alloc(bo);
1127 if (!range) {
1128 ret = -ENOMEM;
1129 goto unlock_all;
1130 }
1131
1132 xa_store(&xa, key, range, GFP_KERNEL);
1133 new_addition = true;
1134 }
1135 key++;
1136 }
1137
1138 if (new_addition) {
1139 drm_exec_fini(&exec);
1140 xa_for_each(&xa, tmp_key, range) {
1141 if (!range)
1142 continue;
1143 bo = range->bo;
1144 ret = amdgpu_ttm_tt_get_user_pages(bo, range);
1145 if (ret)
1146 goto free_ranges;
1147 }
1148
1149 invalidated = true;
1150 new_addition = false;
1151 goto retry_lock;
1152 }
1153
1154 ret = amdgpu_vm_update_pdes(adev, vm, false);
1155 if (ret)
1156 goto unlock_all;
1157
1158 /*
1159 * We need to wait for all VM updates to finish before restarting the
1160 * queues. Using the idle list like that is now ok since everything is
1161 * locked in place.
1162 */
1163 list_for_each_entry(bo_va, &vm->always_valid.idle, base.vm_status)
1164 dma_fence_wait(bo_va->last_pt_update, false);
1165 /*
1166 * The PRT bo_va is kept off the state lists, so its PTE update fence
1167 * lands in prt_va->last_pt_update rather than vm->last_update; wait on
1168 * it explicitly (as the CS path syncs it) before restarting queues.
1169 */
1170 dma_fence_wait(fpriv->prt_va->last_pt_update, false);
1171 dma_fence_wait(vm->last_update, false);
1172
1173 xa_for_each(&uq_mgr->userq_xa, tmp_key, queue) {
1174 bo = queue->wptr_obj.obj;
1175 if (!bo) {
1176 ret = -EINVAL;
1177 goto unlock_all;
1178 }
1179
1180 ret = amdgpu_ttm_alloc_gart(&bo->tbo);
1181 if (unlikely(ret)) {
1182 drm_file_err(uq_mgr->file,
1183 "failed to bind wptr bo to gart on resume, qid=%lu ret=%d\n",
1184 tmp_key, ret);
1185 goto unlock_all;
1186 }
1187
1188 queue->wptr_obj.gpu_addr = amdgpu_bo_gpu_offset(bo);
1189 }
1190
1191 ret = amdgpu_evf_mgr_rearm(&fpriv->evf_mgr, &exec);
1192 if (ret) {
1193 drm_file_err(uq_mgr->file, "Failed to replace eviction fence\n");
1194 goto unlock_all;
1195 }
1196
1197 ret = amdgpu_userq_restore_all(uq_mgr);
1198
1199 unlock_all:
1200 drm_exec_fini(&exec);
1201 free_ranges:
1202 xa_for_each(&xa, tmp_key, range) {
1203 if (!range)
1204 continue;
1205 bo = range->bo;
1206 amdgpu_hmm_range_free(range);
1207 }
1208 xa_destroy(&xa);
1209 return ret;
1210 }
1211
amdgpu_userq_restore_worker(struct work_struct * work)1212 static void amdgpu_userq_restore_worker(struct work_struct *work)
1213 {
1214 struct amdgpu_userq_mgr *uq_mgr = work_to_uq_mgr(work, resume_work.work);
1215 struct amdgpu_fpriv *fpriv = uq_mgr_to_fpriv(uq_mgr);
1216 struct dma_fence *ev_fence;
1217 int ret;
1218
1219 ev_fence = amdgpu_evf_mgr_get_fence(&fpriv->evf_mgr);
1220 if (!dma_fence_is_signaled(ev_fence))
1221 goto put_fence;
1222
1223 ret = amdgpu_userq_vm_validate_and_restore_queue(uq_mgr);
1224 if (ret) {
1225 drm_file_err(uq_mgr->file, "Failed to validate BOs to restore ret=%d\n", ret);
1226 goto put_fence;
1227 }
1228
1229 put_fence:
1230 dma_fence_put(ev_fence);
1231 }
1232
amdgpu_userq_process_reset_irq(struct amdgpu_device * adev,u32 pasid,u32 doorbell_offset)1233 void amdgpu_userq_process_reset_irq(struct amdgpu_device *adev,
1234 u32 pasid, u32 doorbell_offset)
1235 {
1236 struct xarray *xa = &adev->userq_doorbell_xa;
1237 struct amdgpu_usermode_queue *queue;
1238 unsigned long flags, idx;
1239
1240 xa_lock_irqsave(xa, flags);
1241 xa_for_each(xa, idx, queue) {
1242 if (queue->vm && queue->vm->pasid == pasid &&
1243 queue->doorbell_offset == doorbell_offset) {
1244 amdgpu_userq_start_hang_detect_work(queue);
1245 break;
1246 }
1247 }
1248 xa_unlock_irqrestore(xa, flags);
1249 }
1250
1251 static int
amdgpu_userq_evict_all(struct amdgpu_userq_mgr * uq_mgr)1252 amdgpu_userq_evict_all(struct amdgpu_userq_mgr *uq_mgr)
1253 {
1254 struct amdgpu_usermode_queue *queue;
1255 unsigned long queue_id;
1256 int ret = 0, r;
1257
1258 /* Try to unmap all the queues in this process ctx */
1259 xa_for_each(&uq_mgr->userq_xa, queue_id, queue) {
1260 r = amdgpu_userq_unmap_helper(queue);
1261 if (r)
1262 ret = r;
1263 }
1264
1265 if (ret) {
1266 drm_file_err(uq_mgr->file,
1267 "Couldn't unmap all the queues, eviction failed ret=%d\n", ret);
1268 amdgpu_reset_domain_schedule(uq_mgr->adev->reset_domain,
1269 &uq_mgr->reset_work);
1270 flush_work(&uq_mgr->reset_work);
1271 }
1272 return ret;
1273 }
1274
1275 static void
amdgpu_userq_wait_for_signal(struct amdgpu_userq_mgr * uq_mgr)1276 amdgpu_userq_wait_for_signal(struct amdgpu_userq_mgr *uq_mgr)
1277 {
1278 struct amdgpu_usermode_queue *queue;
1279 unsigned long queue_id;
1280
1281 xa_for_each(&uq_mgr->userq_xa, queue_id, queue) {
1282 struct dma_fence *f = queue->last_fence;
1283
1284 if (!f)
1285 continue;
1286
1287 dma_fence_wait(f, false);
1288 }
1289 }
1290
1291 void
amdgpu_userq_evict(struct amdgpu_userq_mgr * uq_mgr)1292 amdgpu_userq_evict(struct amdgpu_userq_mgr *uq_mgr)
1293 {
1294 /* Wait for any pending userqueue fence work to finish */
1295 amdgpu_userq_wait_for_signal(uq_mgr);
1296 amdgpu_userq_evict_all(uq_mgr);
1297 }
1298
amdgpu_userq_mgr_init(struct amdgpu_userq_mgr * userq_mgr,struct drm_file * file_priv,struct amdgpu_device * adev)1299 int amdgpu_userq_mgr_init(struct amdgpu_userq_mgr *userq_mgr, struct drm_file *file_priv,
1300 struct amdgpu_device *adev)
1301 {
1302 mutex_init(&userq_mgr->userq_mutex);
1303 xa_init_flags(&userq_mgr->userq_xa, XA_FLAGS_ALLOC);
1304 userq_mgr->adev = adev;
1305 userq_mgr->file = file_priv;
1306 userq_mgr->proc_ctx_allocated = false;
1307 mutex_init(&userq_mgr->proc_ctx_lock);
1308
1309 INIT_DELAYED_WORK(&userq_mgr->resume_work, amdgpu_userq_restore_worker);
1310 INIT_WORK(&userq_mgr->reset_work, amdgpu_userq_mgr_reset_work);
1311 return 0;
1312 }
1313
amdgpu_userq_mgr_cancel_reset_work(struct amdgpu_device * adev)1314 void amdgpu_userq_mgr_cancel_reset_work(struct amdgpu_device *adev)
1315 {
1316 struct xarray *xa = &adev->userq_doorbell_xa;
1317 struct amdgpu_usermode_queue *queue;
1318 unsigned long flags, queue_id;
1319
1320 xa_lock_irqsave(xa, flags);
1321 xa_for_each(xa, queue_id, queue) {
1322 cancel_delayed_work(&queue->hang_detect_work);
1323 cancel_work(&queue->userq_mgr->reset_work);
1324 }
1325 xa_unlock_irqrestore(xa, flags);
1326 }
1327
amdgpu_userq_mgr_cancel_resume(struct amdgpu_userq_mgr * userq_mgr)1328 void amdgpu_userq_mgr_cancel_resume(struct amdgpu_userq_mgr *userq_mgr)
1329 {
1330 cancel_delayed_work_sync(&userq_mgr->resume_work);
1331 }
1332
amdgpu_userq_mgr_fini(struct amdgpu_userq_mgr * userq_mgr)1333 void amdgpu_userq_mgr_fini(struct amdgpu_userq_mgr *userq_mgr)
1334 {
1335 struct amdgpu_mes *mes = &userq_mgr->adev->mes;
1336 struct amdgpu_usermode_queue *queue;
1337 unsigned long queue_id = 0;
1338
1339 for (;;) {
1340 xa_lock(&userq_mgr->userq_xa);
1341 queue = xa_find(&userq_mgr->userq_xa, &queue_id, ULONG_MAX,
1342 XA_PRESENT);
1343 if (queue)
1344 __xa_erase(&userq_mgr->userq_xa, queue_id);
1345 xa_unlock(&userq_mgr->userq_xa);
1346
1347 if (!queue)
1348 break;
1349
1350 amdgpu_userq_put(queue);
1351 }
1352
1353 xa_destroy(&userq_mgr->userq_xa);
1354
1355 /*
1356 * Drain any in-flight reset_work. By this point all queues are freed
1357 * and userq_count is 0, so if reset_work starts now it exits early.
1358 * We still need to wait in case it was already executing gpu_recover.
1359 */
1360 cancel_work_sync(&userq_mgr->reset_work);
1361
1362 if (userq_mgr->proc_ctx_allocated) {
1363 amdgpu_mes_free_proc_ctx_index(mes, userq_mgr->proc_ctx_array_index);
1364 userq_mgr->proc_ctx_allocated = false;
1365 }
1366 amdgpu_bo_free_kernel(&userq_mgr->proc_ctx_obj.obj,
1367 &userq_mgr->proc_ctx_obj.gpu_addr,
1368 &userq_mgr->proc_ctx_obj.cpu_ptr);
1369
1370 mutex_destroy(&userq_mgr->proc_ctx_lock);
1371 mutex_destroy(&userq_mgr->userq_mutex);
1372 }
1373
amdgpu_userq_suspend(struct amdgpu_device * adev)1374 int amdgpu_userq_suspend(struct amdgpu_device *adev)
1375 {
1376 u32 ip_mask = amdgpu_userq_get_supported_ip_mask(adev);
1377 struct amdgpu_usermode_queue *queue;
1378 struct amdgpu_userq_mgr *uqm;
1379 unsigned long queue_id;
1380 int r;
1381
1382 if (!ip_mask)
1383 return 0;
1384
1385 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1386 uqm = queue->userq_mgr;
1387 cancel_delayed_work_sync(&uqm->resume_work);
1388 guard(mutex)(&uqm->userq_mutex);
1389 if (adev->in_s0ix)
1390 r = amdgpu_userq_preempt_helper(queue);
1391 else
1392 r = amdgpu_userq_unmap_helper(queue);
1393 if (r)
1394 return r;
1395 }
1396 return 0;
1397 }
1398
amdgpu_userq_resume(struct amdgpu_device * adev)1399 int amdgpu_userq_resume(struct amdgpu_device *adev)
1400 {
1401 u32 ip_mask = amdgpu_userq_get_supported_ip_mask(adev);
1402 struct amdgpu_usermode_queue *queue;
1403 struct amdgpu_userq_mgr *uqm;
1404 unsigned long queue_id;
1405 int r;
1406
1407 if (!ip_mask)
1408 return 0;
1409
1410 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1411 uqm = queue->userq_mgr;
1412 guard(mutex)(&uqm->userq_mutex);
1413 if (adev->in_s0ix)
1414 r = amdgpu_userq_restore_helper(queue);
1415 else
1416 r = amdgpu_userq_map_helper(queue);
1417 if (r)
1418 return r;
1419 }
1420
1421 return 0;
1422 }
1423
amdgpu_userq_stop_sched_for_enforce_isolation(struct amdgpu_device * adev,u32 idx)1424 int amdgpu_userq_stop_sched_for_enforce_isolation(struct amdgpu_device *adev,
1425 u32 idx)
1426 {
1427 u32 ip_mask = amdgpu_userq_get_supported_ip_mask(adev);
1428 struct amdgpu_usermode_queue *queue;
1429 struct amdgpu_userq_mgr *uqm;
1430 unsigned long queue_id;
1431 int ret = 0, r;
1432
1433 /* only need to stop gfx/compute */
1434 if (!(ip_mask & ((1 << AMDGPU_HW_IP_GFX) | (1 << AMDGPU_HW_IP_COMPUTE))))
1435 return 0;
1436
1437 if (adev->userq_halt_for_enforce_isolation)
1438 dev_warn(adev->dev, "userq scheduling already stopped!\n");
1439 adev->userq_halt_for_enforce_isolation = true;
1440 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1441 uqm = queue->userq_mgr;
1442 cancel_delayed_work_sync(&uqm->resume_work);
1443 mutex_lock(&uqm->userq_mutex);
1444 if (((queue->queue_type == AMDGPU_HW_IP_GFX) ||
1445 (queue->queue_type == AMDGPU_HW_IP_COMPUTE)) &&
1446 (queue->xcp_id == idx)) {
1447 r = amdgpu_userq_preempt_helper(queue);
1448 if (r)
1449 ret = r;
1450 }
1451 mutex_unlock(&uqm->userq_mutex);
1452 }
1453
1454 return ret;
1455 }
1456
amdgpu_userq_start_sched_for_enforce_isolation(struct amdgpu_device * adev,u32 idx)1457 int amdgpu_userq_start_sched_for_enforce_isolation(struct amdgpu_device *adev,
1458 u32 idx)
1459 {
1460 u32 ip_mask = amdgpu_userq_get_supported_ip_mask(adev);
1461 struct amdgpu_usermode_queue *queue;
1462 struct amdgpu_userq_mgr *uqm;
1463 unsigned long queue_id;
1464 int ret = 0, r;
1465
1466 /* only need to stop gfx/compute */
1467 if (!(ip_mask & ((1 << AMDGPU_HW_IP_GFX) | (1 << AMDGPU_HW_IP_COMPUTE))))
1468 return 0;
1469
1470 if (!adev->userq_halt_for_enforce_isolation)
1471 dev_warn(adev->dev, "userq scheduling already started!\n");
1472
1473 adev->userq_halt_for_enforce_isolation = false;
1474
1475 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1476 uqm = queue->userq_mgr;
1477 mutex_lock(&uqm->userq_mutex);
1478 if (((queue->queue_type == AMDGPU_HW_IP_GFX) ||
1479 (queue->queue_type == AMDGPU_HW_IP_COMPUTE)) &&
1480 (queue->xcp_id == idx)) {
1481 r = amdgpu_userq_restore_helper(queue);
1482 if (r)
1483 ret = r;
1484 }
1485 mutex_unlock(&uqm->userq_mutex);
1486 }
1487
1488 return ret;
1489 }
1490
amdgpu_userq_gem_va_unmap_validate(struct amdgpu_device * adev,struct amdgpu_bo_va_mapping * mapping)1491 void amdgpu_userq_gem_va_unmap_validate(struct amdgpu_device *adev,
1492 struct amdgpu_bo_va_mapping *mapping)
1493 {
1494 u32 ip_mask = amdgpu_userq_get_supported_ip_mask(adev);
1495 struct amdgpu_bo_va *bo_va = mapping->bo_va;
1496 struct dma_resv *resv = bo_va->base.bo->tbo.base.resv;
1497
1498 if (!ip_mask)
1499 return;
1500
1501 /**
1502 * The userq VA mapping reservation should include the eviction fence.
1503 * Note: The eviction fence may be attached to different BOs and this
1504 * unmap is only for one kind of userq VAs, so at this point suppose
1505 * the eviction fence is always unsignaled.
1506 */
1507 dma_resv_wait_timeout(resv, DMA_RESV_USAGE_BOOKKEEP,
1508 false, MAX_SCHEDULE_TIMEOUT);
1509 }
1510
amdgpu_userq_pre_reset(struct amdgpu_device * adev)1511 void amdgpu_userq_pre_reset(struct amdgpu_device *adev)
1512 {
1513 const struct amdgpu_userq_funcs *userq_funcs;
1514 struct amdgpu_usermode_queue *queue;
1515 unsigned long queue_id;
1516
1517 /* TODO: We probably need a new lock for the queue state */
1518 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1519 if (queue->state == AMDGPU_USERQ_STATE_MAPPED) {
1520 trace_amdgpu_userq_state_start(queue);
1521 userq_funcs = adev->userq_funcs[queue->queue_type];
1522 userq_funcs->unmap(queue);
1523 /* just mark all queues as hung at this point.
1524 * if unmap succeeds, we could map again
1525 * in amdgpu_userq_post_reset() if vram is not lost
1526 */
1527 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_HUNG);
1528 queue->state = AMDGPU_USERQ_STATE_HUNG;
1529 }
1530 /* Force-complete any pending fence regardless of queue state so
1531 * that eviction/suspend and queue teardown waiters don't block
1532 * forever on a fence that will never signal after the reset.
1533 */
1534 amdgpu_userq_fence_driver_force_completion(queue);
1535 }
1536 }
1537
amdgpu_userq_post_reset(struct amdgpu_device * adev,bool vram_lost)1538 int amdgpu_userq_post_reset(struct amdgpu_device *adev, bool vram_lost)
1539 {
1540 /* if any queue state is AMDGPU_USERQ_STATE_UNMAPPED
1541 * at this point, we should be able to map it again
1542 * and continue if vram is not lost.
1543 */
1544 struct amdgpu_usermode_queue *queue;
1545 const struct amdgpu_userq_funcs *userq_funcs;
1546 unsigned long queue_id;
1547 int ret = 0, r;
1548
1549 xa_for_each(&adev->userq_doorbell_xa, queue_id, queue) {
1550 if (queue->state == AMDGPU_USERQ_STATE_HUNG && !vram_lost) {
1551 trace_amdgpu_userq_state_start(queue);
1552
1553 userq_funcs = adev->userq_funcs[queue->queue_type];
1554 /* Re-map queue */
1555 r = userq_funcs->map(queue);
1556 if (r) {
1557 dev_err(adev->dev, "Failed to remap queue %ld\n", queue_id);
1558 ret = r;
1559 continue;
1560 }
1561 trace_amdgpu_userq_state_changed(queue, AMDGPU_USERQ_STATE_MAPPED);
1562 queue->state = AMDGPU_USERQ_STATE_MAPPED;
1563 }
1564 }
1565
1566 return ret;
1567 }
1568