xref: /linux/drivers/gpu/drm/amd/amdgpu/amdgpu_ib.c (revision 570f7e331f5febb30f1384817463c7e42b65ca7d)
1 /*
2  * Copyright 2008 Advanced Micro Devices, Inc.
3  * Copyright 2008 Red Hat Inc.
4  * Copyright 2009 Jerome Glisse.
5  *
6  * Permission is hereby granted, free of charge, to any person obtaining a
7  * copy of this software and associated documentation files (the "Software"),
8  * to deal in the Software without restriction, including without limitation
9  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
10  * and/or sell copies of the Software, and to permit persons to whom the
11  * Software is furnished to do so, subject to the following conditions:
12  *
13  * The above copyright notice and this permission notice shall be included in
14  * all copies or substantial portions of the Software.
15  *
16  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
19  * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
20  * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
21  * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
22  * OTHER DEALINGS IN THE SOFTWARE.
23  *
24  * Authors: Dave Airlie
25  *          Alex Deucher
26  *          Jerome Glisse
27  *          Christian König
28  */
29 #include <linux/seq_file.h>
30 #include <linux/slab.h>
31 
32 #include <drm/amdgpu_drm.h>
33 
34 #include "amdgpu.h"
35 #include "atom.h"
36 #include "amdgpu_trace.h"
37 
38 #define AMDGPU_IB_TEST_TIMEOUT	msecs_to_jiffies(1000)
39 #define AMDGPU_IB_TEST_GFX_XGMI_TIMEOUT	msecs_to_jiffies(2000)
40 
41 /*
42  * IB
43  * IBs (Indirect Buffers) and areas of GPU accessible memory where
44  * commands are stored.  You can put a pointer to the IB in the
45  * command ring and the hw will fetch the commands from the IB
46  * and execute them.  Generally userspace acceleration drivers
47  * produce command buffers which are send to the kernel and
48  * put in IBs for execution by the requested ring.
49  */
50 
51 /**
52  * amdgpu_ib_get - request an IB (Indirect Buffer)
53  *
54  * @adev: amdgpu_device pointer
55  * @vm: amdgpu_vm pointer
56  * @size: requested IB size
57  * @pool_type: IB pool type (delayed, immediate, direct)
58  * @ib: IB object returned
59  *
60  * Request an IB (all asics).  IBs are allocated using the
61  * suballocator.
62  * Returns 0 on success, error on failure.
63  */
64 int amdgpu_ib_get(struct amdgpu_device *adev, struct amdgpu_vm *vm,
65 		  unsigned int size, enum amdgpu_ib_pool_type pool_type,
66 		  struct amdgpu_ib *ib)
67 {
68 	int r;
69 
70 	if (size) {
71 		r = amdgpu_sa_bo_new(&adev->ib_pools[pool_type],
72 				     &ib->sa_bo, size);
73 		if (r) {
74 			dev_err(adev->dev, "failed to get a new IB (%d)\n", r);
75 			return r;
76 		}
77 
78 		ib->ptr = amdgpu_sa_bo_cpu_addr(ib->sa_bo);
79 		/* flush the cache before commit the IB */
80 		ib->flags = AMDGPU_IB_FLAG_EMIT_MEM_SYNC;
81 
82 		if (!vm)
83 			ib->gpu_addr = amdgpu_sa_bo_gpu_addr(ib->sa_bo);
84 	}
85 
86 	return 0;
87 }
88 
89 /**
90  * amdgpu_ib_free - free an IB (Indirect Buffer)
91  *
92  * @ib: IB object to free
93  * @f: the fence SA bo need wait on for the ib alloation
94  *
95  * Free an IB (all asics).
96  */
97 void amdgpu_ib_free(struct amdgpu_ib *ib, struct dma_fence *f)
98 {
99 	amdgpu_sa_bo_free(&ib->sa_bo, f);
100 }
101 
102 /**
103  * amdgpu_ib_schedule - schedule an IB (Indirect Buffer) on the ring
104  *
105  * @ring: ring index the IB is associated with
106  * @num_ibs: number of IBs to schedule
107  * @ibs: IB objects to schedule
108  * @job: job to schedule
109  * @f: fence created during this submission
110  *
111  * Schedule an IB on the associated ring (all asics).
112  * Returns 0 on success, error on failure.
113  *
114  * On SI, there are two parallel engines fed from the primary ring,
115  * the CE (Constant Engine) and the DE (Drawing Engine).  Since
116  * resource descriptors have moved to memory, the CE allows you to
117  * prime the caches while the DE is updating register state so that
118  * the resource descriptors will be already in cache when the draw is
119  * processed.  To accomplish this, the userspace driver submits two
120  * IBs, one for the CE and one for the DE.  If there is a CE IB (called
121  * a CONST_IB), it will be put on the ring prior to the DE IB.  Prior
122  * to SI there was just a DE IB.
123  */
124 int amdgpu_ib_schedule(struct amdgpu_ring *ring, unsigned int num_ibs,
125 		       struct amdgpu_ib *ibs, struct amdgpu_job *job,
126 		       struct dma_fence **f)
127 {
128 	struct amdgpu_device *adev = ring->adev;
129 	struct amdgpu_ib *ib = &ibs[0];
130 	struct dma_fence *tmp = NULL;
131 	struct amdgpu_fence *af;
132 	struct amdgpu_fence *vm_af;
133 	bool need_ctx_switch;
134 	bool emit_spm_needed = false;
135 	bool emit_gds_needed = false;
136 	struct amdgpu_vm *vm;
137 	uint64_t fence_ctx;
138 	uint32_t status = 0, alloc_size;
139 	unsigned int fence_flags = 0;
140 	bool secure, init_shadow;
141 	u64 shadow_va, csa_va, gds_va;
142 	int vmid = AMDGPU_JOB_GET_VMID(job);
143 	bool need_pipe_sync = false;
144 	unsigned int cond_exec;
145 	unsigned int i;
146 	int r = 0;
147 
148 	if (num_ibs == 0)
149 		return -EINVAL;
150 
151 	/* ring tests don't use a job */
152 	if (job) {
153 		vm = job->vm;
154 		fence_ctx = job->base.s_fence ?
155 			job->base.s_fence->finished.context : 0;
156 		shadow_va = job->shadow_va;
157 		csa_va = job->csa_va;
158 		gds_va = job->gds_va;
159 		init_shadow = job->init_shadow;
160 		af = job->hw_fence;
161 		/* Save the context of the job for reset handling.
162 		 * The driver needs this so it can skip the ring
163 		 * contents for guilty contexts.
164 		 */
165 		af->context = fence_ctx;
166 		/* the vm fence is also part of the job's context */
167 		job->hw_vm_fence->context = fence_ctx;
168 	} else {
169 		vm = NULL;
170 		fence_ctx = 0;
171 		shadow_va = 0;
172 		csa_va = 0;
173 		gds_va = 0;
174 		init_shadow = false;
175 		af = kzalloc_obj(*af, GFP_ATOMIC);
176 		if (!af)
177 			return -ENOMEM;
178 	}
179 
180 	if (!ring->sched.ready) {
181 		dev_err(adev->dev, "couldn't schedule ib on ring <%s>\n", ring->name);
182 		r = -EINVAL;
183 		goto free_fence;
184 	}
185 
186 	if (vm && !job->vmid) {
187 		dev_err(adev->dev, "VM IB without ID\n");
188 		r = -EINVAL;
189 		goto free_fence;
190 	}
191 
192 	if ((ib->flags & AMDGPU_IB_FLAGS_SECURE) &&
193 	    (!ring->funcs->secure_submission_supported)) {
194 		dev_err(adev->dev, "secure submissions not supported on ring <%s>\n", ring->name);
195 		r = -EINVAL;
196 		goto free_fence;
197 	}
198 
199 	alloc_size = ring->funcs->emit_frame_size + num_ibs *
200 		ring->funcs->emit_ib_size;
201 
202 	r = amdgpu_ring_alloc(ring, alloc_size);
203 	if (r) {
204 		dev_err(adev->dev, "scheduling IB failed (%d).\n", r);
205 		goto free_fence;
206 	}
207 
208 	need_ctx_switch = ring->current_ctx != fence_ctx;
209 	if (ring->funcs->emit_pipeline_sync && job &&
210 	    ((tmp = amdgpu_sync_get_fence(&job->explicit_sync)) ||
211 	     need_ctx_switch || amdgpu_vm_need_pipeline_sync(ring, job))) {
212 
213 		need_pipe_sync = true;
214 
215 		if (tmp)
216 			trace_amdgpu_ib_pipe_sync(job, tmp);
217 
218 		dma_fence_put(tmp);
219 	}
220 
221 	if (job) {
222 		vm_af = job->hw_vm_fence;
223 		/* VM sequence */
224 		vm_af->ib_wptr = ring->wptr;
225 		amdgpu_vm_flush(ring, job, need_pipe_sync, &emit_spm_needed,
226 				&emit_gds_needed);
227 		vm_af->ib_dw_size =
228 			amdgpu_ring_get_dw_distance(ring, vm_af->ib_wptr, ring->wptr);
229 	}
230 
231 	/* IB sequence */
232 	af->ib_wptr = ring->wptr;
233 	amdgpu_ring_ib_begin(ring);
234 
235 	if (ring->funcs->insert_start)
236 		ring->funcs->insert_start(ring);
237 
238 	if (emit_spm_needed)
239 		adev->gfx.rlc.funcs->update_spm_vmid(adev, ring->xcc_id, ring, job->vmid);
240 
241 	if (emit_gds_needed)
242 		amdgpu_ring_emit_gds_switch(ring, job->vmid, job->gds_base,
243 					    job->gds_size, job->gws_base,
244 					    job->gws_size, job->oa_base,
245 					    job->oa_size);
246 
247 	if ((ib->flags & AMDGPU_IB_FLAG_EMIT_MEM_SYNC) && ring->funcs->emit_mem_sync)
248 		ring->funcs->emit_mem_sync(ring);
249 
250 	if (ring->funcs->emit_wave_limit &&
251 	    ring->hw_prio == AMDGPU_GFX_PIPE_PRIO_HIGH)
252 		ring->funcs->emit_wave_limit(ring, true);
253 
254 	if (ring->funcs->emit_gfx_shadow && adev->gfx.cp_gfx_shadow)
255 		amdgpu_ring_emit_gfx_shadow(ring, shadow_va, csa_va, gds_va,
256 					    init_shadow, vmid);
257 
258 	if (ring->funcs->init_cond_exec)
259 		cond_exec = amdgpu_ring_init_cond_exec(ring,
260 						       ring->cond_exe_gpu_addr);
261 
262 	/* Skip the IB for guilty contexts */
263 	af->skip_ib_dw_start_offset =
264 		amdgpu_ring_get_dw_distance(ring, af->ib_wptr, ring->wptr);
265 	amdgpu_device_flush_hdp(adev, ring);
266 
267 	if (need_ctx_switch)
268 		status |= AMDGPU_HAVE_CTX_SWITCH;
269 
270 	if (job && ring->funcs->emit_cntxcntl) {
271 		status |= job->preamble_status;
272 		status |= job->preemption_status;
273 		amdgpu_ring_emit_cntxcntl(ring, status);
274 	}
275 
276 	/* Setup initial TMZiness and send it off.
277 	 */
278 	secure = false;
279 	if (job && ring->funcs->emit_frame_cntl) {
280 		secure = ib->flags & AMDGPU_IB_FLAGS_SECURE;
281 		amdgpu_ring_emit_frame_cntl(ring, true, secure);
282 	}
283 
284 	for (i = 0; i < num_ibs; ++i) {
285 		ib = &ibs[i];
286 
287 		if (job && ring->funcs->emit_frame_cntl) {
288 			if (secure != !!(ib->flags & AMDGPU_IB_FLAGS_SECURE)) {
289 				amdgpu_ring_emit_frame_cntl(ring, false, secure);
290 				secure = !secure;
291 				amdgpu_ring_emit_frame_cntl(ring, true, secure);
292 			}
293 		}
294 
295 		amdgpu_ring_emit_ib(ring, job, ib, status);
296 		status &= ~AMDGPU_HAVE_CTX_SWITCH;
297 	}
298 
299 	if (job && ring->funcs->emit_frame_cntl)
300 		amdgpu_ring_emit_frame_cntl(ring, false, secure);
301 
302 	amdgpu_device_invalidate_hdp(adev, ring);
303 	/* Skip the IB for guilty contexts */
304 	af->skip_ib_dw_end_offset =
305 		amdgpu_ring_get_dw_distance(ring, af->ib_wptr, ring->wptr);
306 
307 	if (ib->flags & AMDGPU_IB_FLAG_TC_WB_NOT_INVALIDATE)
308 		fence_flags |= AMDGPU_FENCE_FLAG_TC_WB_ONLY;
309 
310 	/* wrap the last IB with fence */
311 	if (job && job->uf_addr) {
312 		amdgpu_ring_emit_fence(ring, job->uf_addr, job->uf_sequence,
313 				       fence_flags | AMDGPU_FENCE_FLAG_64BIT);
314 	}
315 
316 	if (ring->funcs->emit_gfx_shadow && ring->funcs->init_cond_exec &&
317 	    adev->gfx.cp_gfx_shadow) {
318 		amdgpu_ring_emit_gfx_shadow(ring, 0, 0, 0, false, 0);
319 		amdgpu_ring_init_cond_exec(ring, ring->cond_exe_gpu_addr);
320 	}
321 
322 	amdgpu_fence_emit(ring, af, fence_flags);
323 	*f = &af->base;
324 	/* get a ref for the job */
325 	if (job)
326 		dma_fence_get(*f);
327 
328 	if (ring->funcs->insert_end)
329 		ring->funcs->insert_end(ring);
330 
331 	amdgpu_ring_patch_cond_exec(ring, cond_exec);
332 
333 	ring->current_ctx = fence_ctx;
334 	if (job && ring->funcs->emit_switch_buffer)
335 		amdgpu_ring_emit_switch_buffer(ring);
336 
337 	if (ring->funcs->emit_wave_limit &&
338 	    ring->hw_prio == AMDGPU_GFX_PIPE_PRIO_HIGH)
339 		ring->funcs->emit_wave_limit(ring, false);
340 
341 	amdgpu_ring_ib_end(ring);
342 
343 	af->ib_dw_size = amdgpu_ring_get_dw_distance(ring, af->ib_wptr, ring->wptr);
344 
345 	amdgpu_ring_commit(ring);
346 
347 	return 0;
348 
349 free_fence:
350 	if (!job)
351 		kfree(af);
352 	return r;
353 }
354 
355 /**
356  * amdgpu_ib_pool_init - Init the IB (Indirect Buffer) pool
357  *
358  * @adev: amdgpu_device pointer
359  *
360  * Initialize the suballocator to manage a pool of memory
361  * for use as IBs (all asics).
362  * Returns 0 on success, error on failure.
363  */
364 int amdgpu_ib_pool_init(struct amdgpu_device *adev)
365 {
366 	const int sizes[AMDGPU_IB_POOL_MAX] = {
367 		[AMDGPU_IB_POOL_DELAYED] = SZ_1M,
368 		[AMDGPU_IB_POOL_IMMEDIATE] = SZ_128K,
369 		[AMDGPU_IB_POOL_DIRECT] = SZ_512K
370 	};
371 	const gfp_t gfp_flags[AMDGPU_IB_POOL_MAX] = {
372 		/*
373 		 * For normal page table updates and recoverable retry faults
374 		 * (for SVM), further restricted by the VM eviction lock to not
375 		 * wait for memory reclaim.
376 		 */
377 		[AMDGPU_IB_POOL_DELAYED] = GFP_KERNEL,
378 		/*
379 		 * For redirecting unrecoverable retry faults to the dummy page
380 		 * or set the PRT bits. dma_fence submissions might depend on
381 		 * that so we need the emmergency reserves.
382 		 */
383 		[AMDGPU_IB_POOL_IMMEDIATE] = GFP_ATOMIC,
384 		/*
385 		 * For IB tests during GPU resets. Only very small and temporary
386 		 * allocation to allow dma_fences to signal.
387 		 */
388 		[AMDGPU_IB_POOL_DIRECT] = GFP_ATOMIC
389 	};
390 	int r, i;
391 
392 	if (adev->ib_pool_ready)
393 		return 0;
394 
395 	for (i = 0; i < AMDGPU_IB_POOL_MAX; i++) {
396 		r = amdgpu_sa_bo_manager_init(adev, &adev->ib_pools[i],
397 					      sizes[i], gfp_flags[i]);
398 		if (r)
399 			goto error;
400 	}
401 	adev->ib_pool_ready = true;
402 
403 	return 0;
404 
405 error:
406 	while (i--)
407 		amdgpu_sa_bo_manager_fini(adev, &adev->ib_pools[i]);
408 	return r;
409 }
410 
411 /**
412  * amdgpu_ib_pool_fini - Free the IB (Indirect Buffer) pool
413  *
414  * @adev: amdgpu_device pointer
415  *
416  * Tear down the suballocator managing the pool of memory
417  * for use as IBs (all asics).
418  */
419 void amdgpu_ib_pool_fini(struct amdgpu_device *adev)
420 {
421 	int i;
422 
423 	if (!adev->ib_pool_ready)
424 		return;
425 
426 	for (i = 0; i < AMDGPU_IB_POOL_MAX; i++)
427 		amdgpu_sa_bo_manager_fini(adev, &adev->ib_pools[i]);
428 	adev->ib_pool_ready = false;
429 }
430 
431 /**
432  * amdgpu_ib_pool_gfp_flags - Returns the gfp flags to use for each pool
433  * @adev: amdgpu device pointer
434  * @type: the IB pool type
435  */
436 gfp_t amdgpu_ib_pool_gfp_flags(struct amdgpu_device *adev,
437 			       enum amdgpu_ib_pool_type type)
438 {
439 	return adev->ib_pools[type].gfp_flags;
440 }
441 
442 /**
443  * amdgpu_ib_ring_tests - test IBs on the rings
444  *
445  * @adev: amdgpu_device pointer
446  *
447  * Test an IB (Indirect Buffer) on each ring.
448  * If the test fails, disable the ring.
449  * Returns 0 on success, error if the primary GFX ring
450  * IB test fails.
451  */
452 int amdgpu_ib_ring_tests(struct amdgpu_device *adev)
453 {
454 	long tmo_gfx, tmo_mm;
455 	int r, ret = 0;
456 	unsigned int i;
457 
458 	tmo_mm = tmo_gfx = AMDGPU_IB_TEST_TIMEOUT;
459 	if (amdgpu_sriov_vf(adev)) {
460 		/* for MM engines in hypervisor side they are not scheduled together
461 		 * with CP and SDMA engines, so even in exclusive mode MM engine could
462 		 * still running on other VF thus the IB TEST TIMEOUT for MM engines
463 		 * under SR-IOV should be set to a long time. 8 sec should be enough
464 		 * for the MM comes back to this VF.
465 		 */
466 		tmo_mm = 8 * AMDGPU_IB_TEST_TIMEOUT;
467 	}
468 
469 	if (amdgpu_sriov_runtime(adev)) {
470 		/* for CP & SDMA engines since they are scheduled together so
471 		 * need to make the timeout width enough to cover the time
472 		 * cost waiting for it coming back under RUNTIME only
473 		 */
474 		tmo_gfx = 8 * AMDGPU_IB_TEST_TIMEOUT;
475 	} else if (adev->gmc.xgmi.hive_id) {
476 		tmo_gfx = AMDGPU_IB_TEST_GFX_XGMI_TIMEOUT;
477 	}
478 
479 	for (i = 0; i < adev->num_rings; ++i) {
480 		struct amdgpu_ring *ring = adev->rings[i];
481 		long tmo;
482 
483 		/* KIQ rings don't have an IB test because we never submit IBs
484 		 * to them and they have no interrupt support.
485 		 */
486 		if (!ring->sched.ready || !ring->funcs->test_ib)
487 			continue;
488 
489 		if (adev->enable_mes &&
490 		    ring->funcs->type == AMDGPU_RING_TYPE_KIQ)
491 			continue;
492 
493 		/* MM engine need more time */
494 		if (ring->funcs->type == AMDGPU_RING_TYPE_UVD ||
495 			ring->funcs->type == AMDGPU_RING_TYPE_VCE ||
496 			ring->funcs->type == AMDGPU_RING_TYPE_UVD_ENC ||
497 			ring->funcs->type == AMDGPU_RING_TYPE_VCN_DEC ||
498 			ring->funcs->type == AMDGPU_RING_TYPE_VCN_ENC ||
499 			ring->funcs->type == AMDGPU_RING_TYPE_VCN_JPEG)
500 			tmo = tmo_mm;
501 		else
502 			tmo = tmo_gfx;
503 
504 		r = amdgpu_ring_test_ib(ring, tmo);
505 		if (!r) {
506 			DRM_DEV_DEBUG(adev->dev, "ib test on %s succeeded\n",
507 				      ring->name);
508 			continue;
509 		}
510 
511 		ring->sched.ready = false;
512 		DRM_DEV_ERROR(adev->dev, "IB test failed on %s (%d).\n",
513 			  ring->name, r);
514 
515 		if (ring == &adev->gfx.gfx_ring[0]) {
516 			/* oh, oh, that's really bad */
517 			adev->accel_working = false;
518 			return r;
519 
520 		} else {
521 			ret = r;
522 		}
523 	}
524 	return ret;
525 }
526 
527 /*
528  * Debugfs info
529  */
530 #if defined(CONFIG_DEBUG_FS)
531 
532 static int amdgpu_debugfs_sa_info_show(struct seq_file *m, void *unused)
533 {
534 	struct amdgpu_device *adev = m->private;
535 
536 	seq_puts(m, "--------------------- DELAYED ---------------------\n");
537 	amdgpu_sa_bo_dump_debug_info(&adev->ib_pools[AMDGPU_IB_POOL_DELAYED],
538 				     m);
539 	seq_puts(m, "-------------------- IMMEDIATE --------------------\n");
540 	amdgpu_sa_bo_dump_debug_info(&adev->ib_pools[AMDGPU_IB_POOL_IMMEDIATE],
541 				     m);
542 	seq_puts(m, "--------------------- DIRECT ----------------------\n");
543 	amdgpu_sa_bo_dump_debug_info(&adev->ib_pools[AMDGPU_IB_POOL_DIRECT], m);
544 
545 	return 0;
546 }
547 
548 DEFINE_SHOW_ATTRIBUTE(amdgpu_debugfs_sa_info);
549 
550 #endif
551 
552 void amdgpu_debugfs_sa_init(struct amdgpu_device *adev)
553 {
554 #if defined(CONFIG_DEBUG_FS)
555 	struct drm_minor *minor = adev_to_drm(adev)->primary;
556 	struct dentry *root = minor->debugfs_root;
557 
558 	debugfs_create_file("amdgpu_sa_info", 0444, root, adev,
559 			    &amdgpu_debugfs_sa_info_fops);
560 
561 #endif
562 }
563