1 /*
2 * Copyright 2019 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/firmware.h>
25 #include <drm/drm_exec.h>
26
27 #include "amdgpu_mes.h"
28 #include "amdgpu.h"
29 #include "soc15_common.h"
30 #include "amdgpu_mes_ctx.h"
31
32 #define AMDGPU_MES_MAX_NUM_OF_QUEUES_PER_PROCESS 1024
33 #define AMDGPU_ONE_DOORBELL_SIZE 8
34
amdgpu_mes_doorbell_process_slice(struct amdgpu_device * adev)35 int amdgpu_mes_doorbell_process_slice(struct amdgpu_device *adev)
36 {
37 return roundup(AMDGPU_ONE_DOORBELL_SIZE *
38 AMDGPU_MES_MAX_NUM_OF_QUEUES_PER_PROCESS,
39 PAGE_SIZE);
40 }
41
amdgpu_mes_doorbell_init(struct amdgpu_device * adev)42 static int amdgpu_mes_doorbell_init(struct amdgpu_device *adev)
43 {
44 int i;
45 struct amdgpu_mes *mes = &adev->mes;
46
47 /* Bitmap for dynamic allocation of kernel doorbells */
48 mes->doorbell_bitmap = bitmap_zalloc(PAGE_SIZE / sizeof(u32), GFP_KERNEL);
49 if (!mes->doorbell_bitmap) {
50 dev_err(adev->dev, "Failed to allocate MES doorbell bitmap\n");
51 return -ENOMEM;
52 }
53
54 mes->num_mes_dbs = PAGE_SIZE / AMDGPU_ONE_DOORBELL_SIZE;
55 for (i = 0; i < AMDGPU_MES_PRIORITY_NUM_LEVELS; i++) {
56 adev->mes.aggregated_doorbells[i] = mes->db_start_dw_offset + i * 2;
57 set_bit(i, mes->doorbell_bitmap);
58 }
59
60 return 0;
61 }
62
amdgpu_mes_event_log_init(struct amdgpu_device * adev)63 static int amdgpu_mes_event_log_init(struct amdgpu_device *adev)
64 {
65 int r;
66
67 if (!amdgpu_mes_log_enable)
68 return 0;
69
70 r = amdgpu_bo_create_kernel(adev, adev->mes.event_log_size, PAGE_SIZE,
71 AMDGPU_GEM_DOMAIN_VRAM,
72 &adev->mes.event_log_gpu_obj,
73 &adev->mes.event_log_gpu_addr,
74 &adev->mes.event_log_cpu_addr);
75 if (r) {
76 dev_warn(adev->dev, "failed to create MES event log buffer (%d)", r);
77 return r;
78 }
79
80 memset(adev->mes.event_log_cpu_addr, 0, adev->mes.event_log_size);
81
82 return 0;
83
84 }
85
amdgpu_mes_doorbell_free(struct amdgpu_device * adev)86 static void amdgpu_mes_doorbell_free(struct amdgpu_device *adev)
87 {
88 bitmap_free(adev->mes.doorbell_bitmap);
89 }
90
amdgpu_mes_get_hqd_mask(u32 num_pipe,u32 num_hqd_per_pipe,u32 num_reserved_hqd)91 static inline u32 amdgpu_mes_get_hqd_mask(u32 num_pipe,
92 u32 num_hqd_per_pipe,
93 u32 num_reserved_hqd)
94 {
95 if (num_pipe == 0)
96 return 0;
97
98 u32 total_hqd_mask = (u32)((1ULL << num_hqd_per_pipe) - 1);
99 u32 reserved_hqd_mask = (u32)((1ULL << DIV_ROUND_UP(num_reserved_hqd, num_pipe)) - 1);
100
101 return (total_hqd_mask & ~reserved_hqd_mask);
102 }
103
amdgpu_mes_init(struct amdgpu_device * adev)104 int amdgpu_mes_init(struct amdgpu_device *adev)
105 {
106 int i, r, num_pipes, num_queues = 0;
107 u32 total_vmid_mask, reserved_vmid_mask;
108 int num_xcc = adev->gfx.xcc_mask ? NUM_XCC(adev->gfx.xcc_mask) : 1;
109 u32 gfx_hqd_mask = amdgpu_mes_get_hqd_mask(adev->gfx.me.num_pipe_per_me,
110 adev->gfx.me.num_queue_per_pipe,
111 adev->gfx.disable_kq ? 0 : adev->gfx.num_gfx_rings);
112 u32 compute_hqd_mask = amdgpu_mes_get_hqd_mask(adev->gfx.mec.num_pipe_per_mec,
113 adev->gfx.mec.num_queue_per_pipe,
114 adev->gfx.disable_kq ? 0 : adev->gfx.num_compute_rings);
115
116 adev->mes.adev = adev;
117
118 ida_init(&adev->mes.doorbell_ida);
119 spin_lock_init(&adev->mes.queue_id_lock);
120 mutex_init(&adev->mes.mutex_hidden);
121
122 for (i = 0; i < AMDGPU_MAX_MES_PIPES * num_xcc; i++)
123 spin_lock_init(&adev->mes.ring_lock[i]);
124
125 adev->mes.total_max_queue = AMDGPU_FENCE_MES_QUEUE_ID_MASK;
126 total_vmid_mask = (u32)((1UL << 16) - 1);
127 reserved_vmid_mask = (u32)((1UL << adev->vm_manager.first_kfd_vmid) - 1);
128
129 adev->mes.vmid_mask_mmhub = 0xFF00;
130 adev->mes.vmid_mask_gfxhub = total_vmid_mask & ~reserved_vmid_mask;
131
132 num_pipes = adev->gfx.me.num_pipe_per_me * adev->gfx.me.num_me;
133 if (num_pipes > AMDGPU_MES_MAX_GFX_PIPES)
134 dev_warn(adev->dev, "more gfx pipes than supported by MES! (%d vs %d)\n",
135 num_pipes, AMDGPU_MES_MAX_GFX_PIPES);
136
137 for (i = 0; i < AMDGPU_MES_MAX_GFX_PIPES; i++) {
138 if (i >= num_pipes)
139 break;
140
141 adev->mes.gfx_hqd_mask[i] = gfx_hqd_mask;
142 }
143
144 num_pipes = adev->gfx.mec.num_pipe_per_mec * adev->gfx.mec.num_mec;
145 if (num_pipes > AMDGPU_MES_MAX_COMPUTE_PIPES)
146 dev_warn(adev->dev, "more compute pipes than supported by MES! (%d vs %d)\n",
147 num_pipes, AMDGPU_MES_MAX_COMPUTE_PIPES);
148
149 for (i = 0; i < AMDGPU_MES_MAX_COMPUTE_PIPES; i++) {
150 /*
151 * Currently, only MEC1 is used for both kernel and user compute queue.
152 * To enable other MEC, we need to redistribute queues per pipe and
153 * adjust queue resource shared with kfd that needs a separate patch.
154 * Skip other MEC for now to avoid potential issues.
155 */
156 if (i >= adev->gfx.mec.num_pipe_per_mec)
157 break;
158
159 adev->mes.compute_hqd_mask[i] = compute_hqd_mask;
160 }
161
162 num_pipes = adev->sdma.num_inst_per_xcc ?
163 adev->sdma.num_inst_per_xcc : adev->sdma.num_instances;
164 if (num_pipes > AMDGPU_MES_MAX_SDMA_PIPES)
165 dev_warn(adev->dev, "more SDMA pipes than supported by MES! (%d vs %d)\n",
166 num_pipes, AMDGPU_MES_MAX_SDMA_PIPES);
167
168 for (i = 0; i < AMDGPU_MES_MAX_SDMA_PIPES; i++) {
169 if (i >= num_pipes)
170 break;
171 adev->mes.sdma_hqd_mask[i] = 0xfc;
172 }
173
174 dev_info(adev->dev,
175 "MES: vmid_mask_mmhub 0x%08x, vmid_mask_gfxhub 0x%08x\n",
176 adev->mes.vmid_mask_mmhub,
177 adev->mes.vmid_mask_gfxhub);
178
179 dev_info(adev->dev,
180 "MES: gfx_hqd_mask 0x%08x, compute_hqd_mask 0x%08x, sdma_hqd_mask 0x%08x\n",
181 adev->mes.gfx_hqd_mask[0],
182 adev->mes.compute_hqd_mask[0],
183 adev->mes.sdma_hqd_mask[0]);
184
185 for (i = 0; i < AMDGPU_MAX_MES_PIPES * num_xcc; i++) {
186 r = amdgpu_wb_get(adev, &adev->mes.sch_ctx_offs[i]);
187 if (r) {
188 dev_err(adev->dev,
189 "(%d) ring trail_fence_offs wb alloc failed\n",
190 r);
191 goto error;
192 }
193 adev->mes.sch_ctx_gpu_addr[i] =
194 adev->wb.gpu_addr + (adev->mes.sch_ctx_offs[i] * 4);
195 adev->mes.sch_ctx_ptr[i] =
196 (uint64_t *)&adev->wb.wb[adev->mes.sch_ctx_offs[i]];
197
198 r = amdgpu_wb_get(adev,
199 &adev->mes.query_status_fence_offs[i]);
200 if (r) {
201 dev_err(adev->dev,
202 "(%d) query_status_fence_offs wb alloc failed\n",
203 r);
204 goto error;
205 }
206 adev->mes.query_status_fence_gpu_addr[i] = adev->wb.gpu_addr +
207 (adev->mes.query_status_fence_offs[i] * 4);
208 adev->mes.query_status_fence_ptr[i] =
209 (uint64_t *)&adev->wb.wb[adev->mes.query_status_fence_offs[i]];
210 }
211
212 r = amdgpu_mes_doorbell_init(adev);
213 if (r)
214 goto error;
215
216 r = amdgpu_mes_event_log_init(adev);
217 if (r)
218 goto error_doorbell;
219
220 if (amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(11, 0, 0)) {
221 /* When queue/pipe reset is done in MES instead of in the
222 * driver, MES passes hung queues information to the driver in
223 * hung_queue_hqd_info. Calculate required space to store this
224 * information.
225 */
226 for (i = 0; i < AMDGPU_MES_MAX_GFX_PIPES; i++)
227 num_queues += hweight32(adev->mes.gfx_hqd_mask[i]);
228
229 for (i = 0; i < AMDGPU_MES_MAX_COMPUTE_PIPES; i++)
230 num_queues += hweight32(adev->mes.compute_hqd_mask[i]);
231
232 for (i = 0; i < AMDGPU_MES_MAX_SDMA_PIPES; i++)
233 num_queues += hweight32(adev->mes.sdma_hqd_mask[i]) * num_xcc;
234
235 adev->mes.hung_queue_hqd_info_offset = num_queues;
236 adev->mes.hung_queue_db_array_size = num_queues * 2;
237 }
238
239 if (adev->mes.hung_queue_db_array_size) {
240 for (i = 0; i < AMDGPU_MAX_MES_PIPES * num_xcc; i++) {
241 r = amdgpu_bo_create_kernel(adev,
242 adev->mes.hung_queue_db_array_size * sizeof(u32),
243 PAGE_SIZE,
244 AMDGPU_GEM_DOMAIN_GTT,
245 &adev->mes.hung_queue_db_array_gpu_obj[i],
246 &adev->mes.hung_queue_db_array_gpu_addr[i],
247 &adev->mes.hung_queue_db_array_cpu_addr[i]);
248 if (r) {
249 dev_warn(adev->dev, "failed to create MES hung db array buffer (%d)", r);
250 goto error_doorbell;
251 }
252 }
253
254 adev->gfx.mec.mes_hung_db_array =
255 kcalloc(amdgpu_mes_get_hung_queue_db_array_size(adev),
256 sizeof(u32), GFP_KERNEL);
257
258 if (!adev->gfx.mec.mes_hung_db_array) {
259 r = -ENOMEM;
260 goto error_doorbell;
261 }
262 }
263
264 return 0;
265
266 error_doorbell:
267 amdgpu_mes_doorbell_free(adev);
268 error:
269 for (i = 0; i < AMDGPU_MAX_MES_PIPES * num_xcc; i++) {
270 if (adev->mes.sch_ctx_ptr[i])
271 amdgpu_wb_free(adev, adev->mes.sch_ctx_offs[i]);
272 if (adev->mes.query_status_fence_ptr[i])
273 amdgpu_wb_free(adev,
274 adev->mes.query_status_fence_offs[i]);
275 if (adev->mes.hung_queue_db_array_gpu_obj[i])
276 amdgpu_bo_free_kernel(&adev->mes.hung_queue_db_array_gpu_obj[i],
277 &adev->mes.hung_queue_db_array_gpu_addr[i],
278 &adev->mes.hung_queue_db_array_cpu_addr[i]);
279 }
280
281 ida_destroy(&adev->mes.doorbell_ida);
282 mutex_destroy(&adev->mes.mutex_hidden);
283 return r;
284 }
285
amdgpu_mes_fini(struct amdgpu_device * adev)286 void amdgpu_mes_fini(struct amdgpu_device *adev)
287 {
288 int i;
289 int num_xcc = adev->gfx.xcc_mask ? NUM_XCC(adev->gfx.xcc_mask) : 1;
290
291 kfree(adev->gfx.mec.mes_hung_db_array);
292
293 amdgpu_bo_free_kernel(&adev->mes.event_log_gpu_obj,
294 &adev->mes.event_log_gpu_addr,
295 &adev->mes.event_log_cpu_addr);
296
297 for (i = 0; i < AMDGPU_MAX_MES_PIPES * num_xcc; i++) {
298 if (adev->mes.hung_queue_db_array_gpu_obj[i])
299 amdgpu_bo_free_kernel(&adev->mes.hung_queue_db_array_gpu_obj[i],
300 &adev->mes.hung_queue_db_array_gpu_addr[i],
301 &adev->mes.hung_queue_db_array_cpu_addr[i]);
302 if (adev->mes.sch_ctx_ptr[i])
303 amdgpu_wb_free(adev, adev->mes.sch_ctx_offs[i]);
304 if (adev->mes.query_status_fence_ptr[i])
305 amdgpu_wb_free(adev,
306 adev->mes.query_status_fence_offs[i]);
307 }
308
309 amdgpu_mes_doorbell_free(adev);
310
311 if (adev->mes.use_rs64mem)
312 amdgpu_mes_rs64mem_fini(&adev->mes);
313
314 ida_destroy(&adev->mes.doorbell_ida);
315 mutex_destroy(&adev->mes.mutex_hidden);
316
317 }
318
amdgpu_mes_suspend(struct amdgpu_device * adev,u32 xcc_id)319 int amdgpu_mes_suspend(struct amdgpu_device *adev, u32 xcc_id)
320 {
321 struct mes_suspend_gang_input input;
322 int r;
323
324 if (!amdgpu_mes_suspend_resume_all_supported(adev))
325 return 0;
326
327 memset(&input, 0x0, sizeof(struct mes_suspend_gang_input));
328 input.suspend_all_gangs = 1;
329 input.xcc_id = xcc_id;
330 if ((amdgpu_ip_version(adev, GC_HWIP, 0) == IP_VERSION(12, 1, 0)) &&
331 ((adev->mes.sched_version & AMDGPU_MES_VERSION_MASK) >= 0x71))
332 input.suspend_all_sdma_gangs = 1;
333
334 /*
335 * Avoid taking any other locks under MES lock to avoid circular
336 * lock dependencies.
337 */
338 amdgpu_mes_lock(&adev->mes);
339 r = adev->mes.funcs->suspend_gang(&adev->mes, &input);
340 amdgpu_mes_unlock(&adev->mes);
341 if (r)
342 dev_err(adev->dev, "failed to suspend all gangs");
343
344 return r;
345 }
346
amdgpu_mes_resume(struct amdgpu_device * adev,u32 xcc_id)347 int amdgpu_mes_resume(struct amdgpu_device *adev, u32 xcc_id)
348 {
349 struct mes_resume_gang_input input;
350 int r;
351
352 if (!amdgpu_mes_suspend_resume_all_supported(adev))
353 return 0;
354
355 memset(&input, 0x0, sizeof(struct mes_resume_gang_input));
356 input.resume_all_gangs = 1;
357 input.xcc_id = xcc_id;
358
359 /*
360 * Avoid taking any other locks under MES lock to avoid circular
361 * lock dependencies.
362 */
363 amdgpu_mes_lock(&adev->mes);
364 r = adev->mes.funcs->resume_gang(&adev->mes, &input);
365 amdgpu_mes_unlock(&adev->mes);
366 if (r)
367 dev_err(adev->dev, "failed to resume all gangs");
368
369 return r;
370 }
371
amdgpu_mes_map_legacy_queue(struct amdgpu_device * adev,struct amdgpu_ring * ring,uint32_t xcc_id)372 int amdgpu_mes_map_legacy_queue(struct amdgpu_device *adev,
373 struct amdgpu_ring *ring, uint32_t xcc_id)
374 {
375 struct mes_map_legacy_queue_input queue_input;
376 int r;
377
378 memset(&queue_input, 0, sizeof(queue_input));
379
380 queue_input.xcc_id = xcc_id;
381 queue_input.queue_type = ring->funcs->type;
382 queue_input.doorbell_offset = ring->doorbell_index;
383 queue_input.pipe_id = ring->pipe;
384 queue_input.queue_id = ring->queue;
385 queue_input.mqd_addr = amdgpu_bo_gpu_offset(ring->mqd_obj);
386 queue_input.wptr_addr = ring->wptr_gpu_addr;
387
388 amdgpu_mes_lock(&adev->mes);
389 r = adev->mes.funcs->map_legacy_queue(&adev->mes, &queue_input);
390 amdgpu_mes_unlock(&adev->mes);
391 if (r)
392 dev_err(adev->dev, "failed to map legacy queue\n");
393
394 return r;
395 }
396
amdgpu_mes_unmap_legacy_queue(struct amdgpu_device * adev,struct amdgpu_ring * ring,enum amdgpu_unmap_queues_action action,u64 gpu_addr,u64 seq,uint32_t xcc_id)397 int amdgpu_mes_unmap_legacy_queue(struct amdgpu_device *adev,
398 struct amdgpu_ring *ring,
399 enum amdgpu_unmap_queues_action action,
400 u64 gpu_addr, u64 seq, uint32_t xcc_id)
401 {
402 struct mes_unmap_legacy_queue_input queue_input;
403 int r;
404
405 queue_input.xcc_id = xcc_id;
406 queue_input.action = action;
407 queue_input.queue_type = ring->funcs->type;
408 queue_input.doorbell_offset = ring->doorbell_index;
409 queue_input.pipe_id = ring->pipe;
410 queue_input.queue_id = ring->queue;
411 queue_input.trail_fence_addr = gpu_addr;
412 queue_input.trail_fence_data = seq;
413
414 amdgpu_mes_lock(&adev->mes);
415 r = adev->mes.funcs->unmap_legacy_queue(&adev->mes, &queue_input);
416 amdgpu_mes_unlock(&adev->mes);
417 if (r)
418 dev_err(adev->dev, "failed to unmap legacy queue\n");
419
420 return r;
421 }
422
amdgpu_mes_reset_legacy_queue(struct amdgpu_device * adev,struct amdgpu_ring * ring,unsigned int vmid,bool use_mmio,uint32_t xcc_id)423 int amdgpu_mes_reset_legacy_queue(struct amdgpu_device *adev,
424 struct amdgpu_ring *ring,
425 unsigned int vmid,
426 bool use_mmio,
427 uint32_t xcc_id)
428 {
429 struct mes_reset_queue_input queue_input;
430 int r;
431
432 memset(&queue_input, 0, sizeof(queue_input));
433
434 queue_input.xcc_id = xcc_id;
435 queue_input.queue_type = ring->funcs->type;
436 queue_input.doorbell_offset = ring->doorbell_index;
437 queue_input.me_id = ring->me;
438 queue_input.pipe_id = ring->pipe;
439 queue_input.queue_id = ring->queue;
440 queue_input.mqd_addr = ring->mqd_obj ? amdgpu_bo_gpu_offset(ring->mqd_obj) : 0;
441 queue_input.wptr_addr = ring->wptr_gpu_addr;
442 queue_input.vmid = vmid;
443 queue_input.use_mmio = use_mmio;
444 queue_input.is_kq = true;
445 if (ring->funcs->type == AMDGPU_RING_TYPE_GFX)
446 queue_input.legacy_gfx = true;
447
448 amdgpu_mes_lock(&adev->mes);
449 r = adev->mes.funcs->reset_hw_queue(&adev->mes, &queue_input);
450 amdgpu_mes_unlock(&adev->mes);
451 if (r)
452 dev_err(adev->dev, "failed to reset legacy queue\n");
453
454 return r;
455 }
456
amdgpu_mes_reset_queue_mmio(struct amdgpu_device * adev,int queue_type,unsigned int vmid,unsigned int me,unsigned int pipe,unsigned int queue,uint32_t xcc_id)457 int amdgpu_mes_reset_queue_mmio(struct amdgpu_device *adev,
458 int queue_type,
459 unsigned int vmid,
460 unsigned int me,
461 unsigned int pipe,
462 unsigned int queue,
463 uint32_t xcc_id)
464 {
465 struct mes_reset_queue_input queue_input;
466 int r;
467
468 memset(&queue_input, 0, sizeof(queue_input));
469
470 queue_input.xcc_id = xcc_id;
471 queue_input.me_id = me;
472 queue_input.pipe_id = pipe;
473 queue_input.queue_id = queue;
474 queue_input.vmid = vmid;
475 queue_input.queue_type = queue_type;
476 queue_input.use_mmio = true;
477
478 amdgpu_mes_lock(&adev->mes);
479 r = adev->mes.funcs->reset_hw_queue(&adev->mes, &queue_input);
480 amdgpu_mes_unlock(&adev->mes);
481 if (r)
482 dev_err(adev->dev, "failed to reset legacy queue\n");
483
484 return r;
485 }
486
amdgpu_mes_reset_user_queue(struct amdgpu_device * adev,int queue_type,unsigned int doorbell_index,unsigned int xcc_id)487 int amdgpu_mes_reset_user_queue(struct amdgpu_device *adev,
488 int queue_type,
489 unsigned int doorbell_index,
490 unsigned int xcc_id)
491 {
492 struct mes_reset_queue_input queue_input;
493 int r;
494
495 memset(&queue_input, 0, sizeof(queue_input));
496
497 queue_input.xcc_id = xcc_id;
498 queue_input.queue_type = queue_type;
499 queue_input.doorbell_offset = doorbell_index;
500
501 amdgpu_mes_lock(&adev->mes);
502 r = adev->mes.funcs->reset_hw_queue(&adev->mes, &queue_input);
503 amdgpu_mes_unlock(&adev->mes);
504 if (r)
505 dev_err(adev->dev, "failed to reset user queue\n");
506
507 return r;
508 }
509
amdgpu_mes_get_hung_queue_db_array_size(struct amdgpu_device * adev)510 int amdgpu_mes_get_hung_queue_db_array_size(struct amdgpu_device *adev)
511 {
512 return adev->mes.hung_queue_db_array_size;
513 }
514
amdgpu_mes_detect_and_reset_hung_queues(struct amdgpu_device * adev,int queue_type,bool detect_only,unsigned int * hung_db_num,u32 * hung_db_array,uint32_t xcc_id)515 int amdgpu_mes_detect_and_reset_hung_queues(struct amdgpu_device *adev,
516 int queue_type,
517 bool detect_only,
518 unsigned int *hung_db_num,
519 u32 *hung_db_array,
520 uint32_t xcc_id)
521 {
522 struct mes_detect_and_reset_queue_input input;
523 u32 *db_array = adev->mes.hung_queue_db_array_cpu_addr[xcc_id];
524 int hqd_info_offset = adev->mes.hung_queue_hqd_info_offset, r, i;
525
526 if (!hung_db_num || !hung_db_array)
527 return -EINVAL;
528
529 if ((queue_type != AMDGPU_RING_TYPE_GFX) &&
530 (queue_type != AMDGPU_RING_TYPE_COMPUTE) &&
531 (queue_type != AMDGPU_RING_TYPE_SDMA))
532 return -EINVAL;
533
534 /* Clear the doorbell array before detection */
535 memset(adev->mes.hung_queue_db_array_cpu_addr[xcc_id], AMDGPU_MES_INVALID_DB_OFFSET,
536 adev->mes.hung_queue_db_array_size * sizeof(u32));
537 input.queue_type = queue_type;
538 input.detect_only = detect_only;
539 input.xcc_id = xcc_id;
540
541 r = adev->mes.funcs->detect_and_reset_hung_queues(&adev->mes,
542 &input);
543
544 if (r && detect_only) {
545 dev_err(adev->dev, "Failed to detect hung queues\n");
546 return r;
547 }
548
549 *hung_db_num = 0;
550 /* MES passes hung queues' doorbell to driver */
551 for (i = 0; i < adev->mes.hung_queue_hqd_info_offset; i++) {
552 /* Finding hung queues where db_array[i] is a valid doorbell */
553 if (db_array[i] != AMDGPU_MES_INVALID_DB_OFFSET) {
554 hung_db_array[i] = db_array[i];
555 *hung_db_num += 1;
556 }
557 }
558
559 if (r && !(*hung_db_num)) {
560 dev_err(adev->dev, "Failed to detect and reset hung queues\n");
561 return r;
562 }
563
564 for (i = hqd_info_offset; i < hqd_info_offset + *hung_db_num; i++)
565 hung_db_array[i] = db_array[i];
566
567 return r;
568 }
569
amdgpu_mes_rreg(struct amdgpu_device * adev,uint32_t reg,uint32_t xcc_id)570 uint32_t amdgpu_mes_rreg(struct amdgpu_device *adev, uint32_t reg,
571 uint32_t xcc_id)
572 {
573 struct mes_misc_op_input op_input;
574 int r, val = 0;
575 uint32_t addr_offset = 0;
576 uint64_t read_val_gpu_addr;
577 uint32_t *read_val_ptr;
578
579 if (amdgpu_wb_get(adev, &addr_offset)) {
580 dev_err(adev->dev, "critical bug! too many mes readers\n");
581 goto error;
582 }
583 read_val_gpu_addr = adev->wb.gpu_addr + (addr_offset * 4);
584 read_val_ptr = (uint32_t *)&adev->wb.wb[addr_offset];
585 op_input.xcc_id = xcc_id;
586 op_input.op = MES_MISC_OP_READ_REG;
587 op_input.read_reg.reg_offset = reg;
588 op_input.read_reg.buffer_addr = read_val_gpu_addr;
589
590 if (!adev->mes.funcs->misc_op) {
591 dev_err(adev->dev, "mes rreg is not supported!\n");
592 goto error;
593 }
594
595 amdgpu_mes_lock(&adev->mes);
596 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
597 amdgpu_mes_unlock(&adev->mes);
598 if (r)
599 dev_err(adev->dev, "failed to read reg (0x%x)\n", reg);
600 else
601 val = *(read_val_ptr);
602
603 error:
604 if (addr_offset)
605 amdgpu_wb_free(adev, addr_offset);
606 return val;
607 }
608
amdgpu_mes_wreg(struct amdgpu_device * adev,uint32_t reg,uint32_t val,uint32_t xcc_id)609 int amdgpu_mes_wreg(struct amdgpu_device *adev, uint32_t reg,
610 uint32_t val, uint32_t xcc_id)
611 {
612 struct mes_misc_op_input op_input;
613 int r;
614
615 op_input.xcc_id = xcc_id;
616 op_input.op = MES_MISC_OP_WRITE_REG;
617 op_input.write_reg.reg_offset = reg;
618 op_input.write_reg.reg_value = val;
619
620 if (!adev->mes.funcs->misc_op) {
621 dev_err(adev->dev, "mes wreg is not supported!\n");
622 r = -EINVAL;
623 goto error;
624 }
625
626 amdgpu_mes_lock(&adev->mes);
627 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
628 amdgpu_mes_unlock(&adev->mes);
629 if (r)
630 dev_err(adev->dev, "failed to write reg (0x%x)\n", reg);
631
632 error:
633 return r;
634 }
635
amdgpu_mes_reg_write_reg_wait(struct amdgpu_device * adev,uint32_t reg0,uint32_t reg1,uint32_t ref,uint32_t mask,uint32_t xcc_id)636 int amdgpu_mes_reg_write_reg_wait(struct amdgpu_device *adev,
637 uint32_t reg0, uint32_t reg1,
638 uint32_t ref, uint32_t mask,
639 uint32_t xcc_id)
640 {
641 struct mes_misc_op_input op_input;
642 int r;
643
644 op_input.xcc_id = xcc_id;
645 op_input.op = MES_MISC_OP_WRM_REG_WR_WAIT;
646 op_input.wrm_reg.reg0 = reg0;
647 op_input.wrm_reg.reg1 = reg1;
648 op_input.wrm_reg.ref = ref;
649 op_input.wrm_reg.mask = mask;
650
651 if (!adev->mes.funcs->misc_op) {
652 dev_err(adev->dev, "mes reg_write_reg_wait is not supported!\n");
653 r = -EINVAL;
654 goto error;
655 }
656
657 amdgpu_mes_lock(&adev->mes);
658 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
659 amdgpu_mes_unlock(&adev->mes);
660 if (r)
661 dev_err(adev->dev, "failed to reg_write_reg_wait\n");
662
663 error:
664 return r;
665 }
666
amdgpu_mes_hdp_flush(struct amdgpu_device * adev)667 int amdgpu_mes_hdp_flush(struct amdgpu_device *adev)
668 {
669 uint32_t hdp_flush_req_offset, hdp_flush_done_offset;
670 struct amdgpu_ring *mes_ring;
671 uint32_t ref_and_mask = 0, reg_mem_engine = 0;
672
673 if (!adev->gfx.funcs->get_hdp_flush_mask) {
674 dev_err(adev->dev, "mes hdp flush is not supported.\n");
675 return -EINVAL;
676 }
677
678 mes_ring = &adev->mes.ring[0];
679 hdp_flush_req_offset = adev->nbio.funcs->get_hdp_flush_req_offset(adev);
680 hdp_flush_done_offset = adev->nbio.funcs->get_hdp_flush_done_offset(adev);
681
682 adev->gfx.funcs->get_hdp_flush_mask(mes_ring, &ref_and_mask, ®_mem_engine);
683
684 return amdgpu_mes_reg_write_reg_wait(adev, hdp_flush_req_offset, hdp_flush_done_offset,
685 ref_and_mask, ref_and_mask, 0);
686 }
687
amdgpu_mes_set_shader_debugger(struct amdgpu_device * adev,uint64_t process_context_addr,uint32_t spi_gdbg_per_vmid_cntl,const uint32_t * tcp_watch_cntl,uint32_t flags,bool trap_en,uint32_t xcc_id)688 int amdgpu_mes_set_shader_debugger(struct amdgpu_device *adev,
689 uint64_t process_context_addr,
690 uint32_t spi_gdbg_per_vmid_cntl,
691 const uint32_t *tcp_watch_cntl,
692 uint32_t flags,
693 bool trap_en,
694 uint32_t xcc_id)
695 {
696 struct mes_misc_op_input op_input = {0};
697 int r;
698
699 if (!adev->mes.funcs->misc_op) {
700 dev_err(adev->dev,
701 "mes set shader debugger is not supported!\n");
702 return -EINVAL;
703 }
704
705 op_input.xcc_id = xcc_id;
706 op_input.op = MES_MISC_OP_SET_SHADER_DEBUGGER;
707 op_input.set_shader_debugger.process_context_addr = process_context_addr;
708 op_input.set_shader_debugger.flags.u32all = flags;
709
710 /* use amdgpu mes_flush_shader_debugger instead */
711 if (op_input.set_shader_debugger.flags.process_ctx_flush)
712 return -EINVAL;
713
714 op_input.set_shader_debugger.spi_gdbg_per_vmid_cntl = spi_gdbg_per_vmid_cntl;
715 memcpy(op_input.set_shader_debugger.tcp_watch_cntl, tcp_watch_cntl,
716 sizeof(op_input.set_shader_debugger.tcp_watch_cntl));
717
718 if (((adev->mes.sched_version & AMDGPU_MES_API_VERSION_MASK) >>
719 AMDGPU_MES_API_VERSION_SHIFT) >= 14)
720 op_input.set_shader_debugger.trap_en = trap_en;
721
722 amdgpu_mes_lock(&adev->mes);
723
724 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
725 if (r)
726 dev_err(adev->dev, "failed to set_shader_debugger\n");
727
728 amdgpu_mes_unlock(&adev->mes);
729
730 return r;
731 }
732
amdgpu_mes_flush_shader_debugger(struct amdgpu_device * adev,uint64_t process_context_addr,uint32_t xcc_id)733 int amdgpu_mes_flush_shader_debugger(struct amdgpu_device *adev,
734 uint64_t process_context_addr,
735 uint32_t xcc_id)
736 {
737 struct mes_misc_op_input op_input = {0};
738 int r;
739
740 if (!adev->mes.funcs->misc_op) {
741 dev_err(adev->dev,
742 "mes flush shader debugger is not supported!\n");
743 return -EINVAL;
744 }
745
746 op_input.xcc_id = xcc_id;
747 op_input.op = MES_MISC_OP_SET_SHADER_DEBUGGER;
748 op_input.set_shader_debugger.process_context_addr = process_context_addr;
749 op_input.set_shader_debugger.flags.process_ctx_flush = true;
750
751 amdgpu_mes_lock(&adev->mes);
752
753 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
754 if (r)
755 dev_err(adev->dev, "failed to set_shader_debugger\n");
756
757 amdgpu_mes_unlock(&adev->mes);
758
759 return r;
760 }
761
amdgpu_mes_get_aggregated_doorbell_index(struct amdgpu_device * adev,enum amdgpu_mes_priority_level prio)762 uint32_t amdgpu_mes_get_aggregated_doorbell_index(struct amdgpu_device *adev,
763 enum amdgpu_mes_priority_level prio)
764 {
765 return adev->mes.aggregated_doorbells[prio];
766 }
767
amdgpu_mes_init_microcode(struct amdgpu_device * adev,int pipe)768 int amdgpu_mes_init_microcode(struct amdgpu_device *adev, int pipe)
769 {
770 const struct mes_firmware_header_v1_0 *mes_hdr;
771 struct amdgpu_firmware_info *info;
772 char ucode_prefix[30];
773 char fw_name[50];
774 bool need_retry = false;
775 u32 *ucode_ptr;
776 int r;
777
778 amdgpu_ucode_ip_version_decode(adev, GC_HWIP, ucode_prefix,
779 sizeof(ucode_prefix));
780 if (adev->enable_uni_mes) {
781 snprintf(fw_name, sizeof(fw_name),
782 "amdgpu/%s_uni_mes.bin", ucode_prefix);
783 } else if (amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(11, 0, 0) &&
784 amdgpu_ip_version(adev, GC_HWIP, 0) < IP_VERSION(12, 0, 0)) {
785 snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes%s.bin",
786 ucode_prefix,
787 pipe == AMDGPU_MES_SCHED_PIPE ? "_2" : "1");
788 need_retry = true;
789 } else {
790 snprintf(fw_name, sizeof(fw_name), "amdgpu/%s_mes%s.bin",
791 ucode_prefix,
792 pipe == AMDGPU_MES_SCHED_PIPE ? "" : "1");
793 }
794
795 r = amdgpu_ucode_request(adev, &adev->mes.fw[pipe], AMDGPU_UCODE_REQUIRED,
796 "%s", fw_name);
797 if (r && need_retry && pipe == AMDGPU_MES_SCHED_PIPE) {
798 dev_info(adev->dev, "try to fall back to %s_mes.bin\n", ucode_prefix);
799 r = amdgpu_ucode_request(adev, &adev->mes.fw[pipe],
800 AMDGPU_UCODE_REQUIRED,
801 "amdgpu/%s_mes.bin", ucode_prefix);
802 }
803
804 if (r)
805 goto out;
806
807 mes_hdr = (const struct mes_firmware_header_v1_0 *)
808 adev->mes.fw[pipe]->data;
809 adev->mes.uc_start_addr[pipe] =
810 le32_to_cpu(mes_hdr->mes_uc_start_addr_lo) |
811 ((uint64_t)(le32_to_cpu(mes_hdr->mes_uc_start_addr_hi)) << 32);
812 adev->mes.data_start_addr[pipe] =
813 le32_to_cpu(mes_hdr->mes_data_start_addr_lo) |
814 ((uint64_t)(le32_to_cpu(mes_hdr->mes_data_start_addr_hi)) << 32);
815 ucode_ptr = (u32 *)(adev->mes.fw[pipe]->data +
816 sizeof(union amdgpu_firmware_header));
817 adev->mes.fw_version[pipe] =
818 le32_to_cpu(ucode_ptr[24]) & AMDGPU_MES_VERSION_MASK;
819
820 if (adev->firmware.load_type == AMDGPU_FW_LOAD_PSP) {
821 int ucode, ucode_data;
822
823 if (pipe == AMDGPU_MES_SCHED_PIPE) {
824 ucode = AMDGPU_UCODE_ID_CP_MES;
825 ucode_data = AMDGPU_UCODE_ID_CP_MES_DATA;
826 } else {
827 ucode = AMDGPU_UCODE_ID_CP_MES1;
828 ucode_data = AMDGPU_UCODE_ID_CP_MES1_DATA;
829 }
830
831 info = &adev->firmware.ucode[ucode];
832 info->ucode_id = ucode;
833 info->fw = adev->mes.fw[pipe];
834 adev->firmware.fw_size +=
835 ALIGN(le32_to_cpu(mes_hdr->mes_ucode_size_bytes),
836 PAGE_SIZE);
837
838 info = &adev->firmware.ucode[ucode_data];
839 info->ucode_id = ucode_data;
840 info->fw = adev->mes.fw[pipe];
841 adev->firmware.fw_size +=
842 ALIGN(le32_to_cpu(mes_hdr->mes_ucode_data_size_bytes),
843 PAGE_SIZE);
844 }
845
846 return 0;
847 out:
848 amdgpu_ucode_release(&adev->mes.fw[pipe]);
849 return r;
850 }
851
amdgpu_mes_validate_fw_version(struct amdgpu_device * adev)852 void amdgpu_mes_validate_fw_version(struct amdgpu_device *adev)
853 {
854 u32 fw_from_ucode = adev->mes.fw_version[AMDGPU_MES_SCHED_PIPE];
855 u32 fw_from_reg = adev->mes.sched_version & AMDGPU_MES_VERSION_MASK;
856
857 if (fw_from_ucode != fw_from_reg)
858 dev_info(adev->dev,
859 "MES firmware reports incorrect version in ucode binary (0x%x vs 0x%x)\n",
860 fw_from_ucode, fw_from_reg);
861 }
862
863
amdgpu_mes_suspend_resume_all_supported(struct amdgpu_device * adev)864 bool amdgpu_mes_suspend_resume_all_supported(struct amdgpu_device *adev)
865 {
866 uint32_t mes_rev = adev->mes.sched_version & AMDGPU_MES_VERSION_MASK;
867
868 return ((amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(11, 0, 0) &&
869 amdgpu_ip_version(adev, GC_HWIP, 0) < IP_VERSION(12, 0, 0) &&
870 mes_rev >= 0x63) ||
871 amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(12, 0, 0));
872 }
873
amdgpu_mes_queue_reset_by_mes_supported(struct amdgpu_device * adev)874 bool amdgpu_mes_queue_reset_by_mes_supported(struct amdgpu_device *adev)
875 {
876 u32 ip_maj = IP_VERSION_MAJ(amdgpu_ip_version(adev, GC_HWIP, 0));
877 u32 ip_min = IP_VERSION_MIN(amdgpu_ip_version(adev, GC_HWIP, 0));
878 u32 mes_sched = adev->mes.sched_version & AMDGPU_MES_VERSION_MASK;
879
880 return (ip_maj == 11 && mes_sched >= 0x8c) ||
881 ((ip_maj == 12 && ip_min == 0) && mes_sched >= 0x8d) ||
882 ((ip_maj == 12 && ip_min == 1) && mes_sched >= 0x7b);
883 }
884
885 /* Fix me -- node_id is used to identify the correct MES instances in the future */
amdgpu_mes_set_enforce_isolation(struct amdgpu_device * adev,uint32_t node_id,bool enable)886 static int amdgpu_mes_set_enforce_isolation(struct amdgpu_device *adev,
887 uint32_t node_id, bool enable)
888 {
889 struct mes_misc_op_input op_input = {0};
890 int r;
891
892 op_input.op = MES_MISC_OP_CHANGE_CONFIG;
893 op_input.change_config.option.limit_single_process = enable ? 1 : 0;
894
895 if (!adev->mes.funcs->misc_op) {
896 dev_err(adev->dev, "mes change config is not supported!\n");
897 r = -EINVAL;
898 goto error;
899 }
900
901 amdgpu_mes_lock(&adev->mes);
902 r = adev->mes.funcs->misc_op(&adev->mes, &op_input);
903 amdgpu_mes_unlock(&adev->mes);
904 if (r)
905 dev_err(adev->dev, "failed to change_config.\n");
906
907 error:
908 return r;
909 }
910
amdgpu_mes_update_enforce_isolation(struct amdgpu_device * adev)911 int amdgpu_mes_update_enforce_isolation(struct amdgpu_device *adev)
912 {
913 int i, r = 0;
914
915 if (adev->enable_mes && adev->gfx.enable_cleaner_shader) {
916 mutex_lock(&adev->enforce_isolation_mutex);
917 for (i = 0; i < (adev->xcp_mgr ? adev->xcp_mgr->num_xcps : 1); i++) {
918 if (adev->enforce_isolation[i] == AMDGPU_ENFORCE_ISOLATION_ENABLE)
919 r |= amdgpu_mes_set_enforce_isolation(adev, i, true);
920 else
921 r |= amdgpu_mes_set_enforce_isolation(adev, i, false);
922 }
923 mutex_unlock(&adev->enforce_isolation_mutex);
924 }
925 return r;
926 }
927
928 /**
929 * amdgpu_mes_rs64mem_init - initialize RS64 local memory context arrays
930 *
931 * @mes: MES instance
932 *
933 * Returns 0 on success, negative errno on failure.
934 */
amdgpu_mes_rs64mem_init(struct amdgpu_mes * mes)935 int amdgpu_mes_rs64mem_init(struct amdgpu_mes *mes)
936 {
937 struct amdgpu_device *adev = container_of(mes, struct amdgpu_device, mes);
938 int r;
939
940 if (!mes->use_rs64mem)
941 return 0;
942
943 r = amdgpu_bo_create_kernel(adev, PAGE_SIZE, PAGE_SIZE,
944 AMDGPU_GEM_DOMAIN_GTT,
945 &mes->ctx_array_size_bo,
946 &mes->ctx_array_size_gpu_addr,
947 (void **)&mes->ctx_array_size_cpu_ptr);
948 if (r) {
949 dev_err(adev->dev,
950 "Failed to allocate ctx array size BO, r=%d\n", r);
951 return r;
952 }
953
954 memset(mes->ctx_array_size_cpu_ptr, 0, PAGE_SIZE);
955
956 return 0;
957 }
958
959 /**
960 * amdgpu_mes_rs64mem_fini - tear down RS64 local memory management
961 *
962 * @mes: MES instance
963 */
amdgpu_mes_rs64mem_fini(struct amdgpu_mes * mes)964 void amdgpu_mes_rs64mem_fini(struct amdgpu_mes *mes)
965 {
966 if (mes->ctx_array_size_bo) {
967 amdgpu_bo_free_kernel(&mes->ctx_array_size_bo,
968 &mes->ctx_array_size_gpu_addr,
969 (void **)&mes->ctx_array_size_cpu_ptr);
970 }
971 bitmap_free(mes->proc_ctx_bitmap);
972 bitmap_free(mes->gang_ctx_bitmap);
973 mes->use_rs64mem = false;
974 }
975
976 /**
977 * amdgpu_mes_rs64mem_setup_bitmaps - allocate bitmaps after querying MES
978 *
979 * Called after QUERY_SCHEDULER_STATUS returns and MES has written
980 * the array sizes to the GPU buffer. Reads the sizes and allocates
981 * the tracking bitmaps.
982 *
983 * @mes: MES instance
984 *
985 * Returns 0 on success, negative errno on failure.
986 */
amdgpu_mes_rs64mem_setup_bitmaps(struct amdgpu_mes * mes)987 int amdgpu_mes_rs64mem_setup_bitmaps(struct amdgpu_mes *mes)
988 {
989 struct amdgpu_device *adev = container_of(mes, struct amdgpu_device, mes);
990
991 if (!mes->use_rs64mem || !mes->ctx_array_size_cpu_ptr)
992 return 0;
993
994 /*
995 * MES FW wrote the sizes to the GPU buffer:
996 * ctx_array_size_cpu_ptr[0] = proc_ctx_array_size (N)
997 * ctx_array_size_cpu_ptr[1] = gang_ctx_array_size (M)
998 */
999 mes->proc_ctx_array_size = mes->ctx_array_size_cpu_ptr[0];
1000 mes->gang_ctx_array_size = mes->ctx_array_size_cpu_ptr[1];
1001
1002 /* Sanity check - MES FW typically returns N=50, M=300 */
1003 if (mes->proc_ctx_array_size == 0 || mes->gang_ctx_array_size == 0) {
1004 dev_warn(adev->dev,
1005 "MES returned zero ctx array sizes (proc=%u, gang=%u), "
1006 "disabling RS64 local memory optimization\n",
1007 mes->proc_ctx_array_size, mes->gang_ctx_array_size);
1008 mes->use_rs64mem = false;
1009 return 0;
1010 }
1011
1012 /* Cap to safety limits */
1013 if (mes->proc_ctx_array_size > AMDGPU_MES_PROC_CTX_ARRAY_MAX)
1014 mes->proc_ctx_array_size = AMDGPU_MES_PROC_CTX_ARRAY_MAX;
1015 if (mes->gang_ctx_array_size > AMDGPU_MES_GANG_CTX_ARRAY_MAX)
1016 mes->gang_ctx_array_size = AMDGPU_MES_GANG_CTX_ARRAY_MAX;
1017
1018 dev_info(adev->dev,
1019 "MES RS64 local memory: proc_ctx_array_size:%u, "
1020 "gang_ctx_array_size:%u\n",
1021 mes->proc_ctx_array_size, mes->gang_ctx_array_size);
1022
1023 /* Allocate bitmaps */
1024 mes->proc_ctx_bitmap = bitmap_zalloc(mes->proc_ctx_array_size,
1025 GFP_KERNEL);
1026 if (!mes->proc_ctx_bitmap) {
1027 mes->use_rs64mem = false;
1028 return -ENOMEM;
1029 }
1030
1031 mes->gang_ctx_bitmap = bitmap_zalloc(mes->gang_ctx_array_size,
1032 GFP_KERNEL);
1033 if (!mes->gang_ctx_bitmap) {
1034 bitmap_free(mes->proc_ctx_bitmap);
1035 mes->proc_ctx_bitmap = NULL;
1036 mes->use_rs64mem = false;
1037 return -ENOMEM;
1038 }
1039
1040 return 0;
1041 }
1042
1043 /**
1044 * amdgpu_mes_alloc_proc_ctx_index - allocate a process context slot
1045 *
1046 * @mes: MES instance
1047 * @index: the allocated process context index
1048 *
1049 * Returns 0 on success, -ENOSPC if all slots are used, or
1050 * -EOPNOTSUPP if RS64 local memory is unavailable.
1051 */
amdgpu_mes_alloc_proc_ctx_index(struct amdgpu_mes * mes,uint32_t * index)1052 int amdgpu_mes_alloc_proc_ctx_index(struct amdgpu_mes *mes,
1053 uint32_t *index)
1054 {
1055 unsigned long bit;
1056
1057 if (!mes->use_rs64mem || !mes->proc_ctx_bitmap)
1058 return -EOPNOTSUPP;
1059
1060 amdgpu_mes_lock(mes);
1061 bit = find_first_zero_bit(mes->proc_ctx_bitmap,
1062 mes->proc_ctx_array_size);
1063 if (bit >= mes->proc_ctx_array_size) {
1064 amdgpu_mes_unlock(mes);
1065 return -ENOSPC;
1066 }
1067 set_bit(bit, mes->proc_ctx_bitmap);
1068 *index = (uint32_t)bit;
1069 amdgpu_mes_unlock(mes);
1070
1071 return 0;
1072 }
1073
1074 /**
1075 * amdgpu_mes_free_proc_ctx_index - free a process context slot
1076 *
1077 * @mes: MES instance
1078 * @index: process context index is released
1079 */
amdgpu_mes_free_proc_ctx_index(struct amdgpu_mes * mes,uint32_t index)1080 void amdgpu_mes_free_proc_ctx_index(struct amdgpu_mes *mes,
1081 uint32_t index)
1082 {
1083 if (!mes->use_rs64mem || !mes->proc_ctx_bitmap)
1084 return;
1085 if (index >= mes->proc_ctx_array_size)
1086 return;
1087
1088 amdgpu_mes_lock(mes);
1089 clear_bit(index, mes->proc_ctx_bitmap);
1090 amdgpu_mes_unlock(mes);
1091 }
1092
1093 /**
1094 * amdgpu_mes_alloc_gang_ctx_index - allocate a gang context slot
1095 *
1096 * @mes: MES instance
1097 * @index: the allocated gang context index
1098 *
1099 * Returns 0 on success, -ENOSPC if all slots are used, or
1100 * -EOPNOTSUPP if RS64 local memory is unavailable.
1101 */
amdgpu_mes_alloc_gang_ctx_index(struct amdgpu_mes * mes,uint32_t * index)1102 int amdgpu_mes_alloc_gang_ctx_index(struct amdgpu_mes *mes,
1103 uint32_t *index)
1104 {
1105 unsigned long bit;
1106
1107 if (!mes->use_rs64mem || !mes->gang_ctx_bitmap)
1108 return -EOPNOTSUPP;
1109
1110 amdgpu_mes_lock(mes);
1111 bit = find_first_zero_bit(mes->gang_ctx_bitmap,
1112 mes->gang_ctx_array_size);
1113 if (bit >= mes->gang_ctx_array_size) {
1114 amdgpu_mes_unlock(mes);
1115 return -ENOSPC;
1116 }
1117 set_bit(bit, mes->gang_ctx_bitmap);
1118 *index = bit;
1119 amdgpu_mes_unlock(mes);
1120
1121 return 0;
1122 }
1123
1124 /**
1125 * amdgpu_mes_free_gang_ctx_index - free a gang context slot
1126 *
1127 * @mes: MES instance
1128 * @index: gang context index is released
1129 */
amdgpu_mes_free_gang_ctx_index(struct amdgpu_mes * mes,uint32_t index)1130 void amdgpu_mes_free_gang_ctx_index(struct amdgpu_mes *mes,
1131 uint32_t index)
1132 {
1133 if (!mes->use_rs64mem || !mes->gang_ctx_bitmap)
1134 return;
1135 if (index >= mes->gang_ctx_array_size)
1136 return;
1137
1138 amdgpu_mes_lock(mes);
1139 clear_bit(index, mes->gang_ctx_bitmap);
1140 amdgpu_mes_unlock(mes);
1141 }
1142
1143 #if defined(CONFIG_DEBUG_FS)
1144
amdgpu_debugfs_mes_event_log_show(struct seq_file * m,void * unused)1145 static int amdgpu_debugfs_mes_event_log_show(struct seq_file *m, void *unused)
1146 {
1147 struct amdgpu_device *adev = m->private;
1148 uint32_t *mem = (uint32_t *)(adev->mes.event_log_cpu_addr);
1149
1150 seq_hex_dump(m, "", DUMP_PREFIX_OFFSET, 32, 4,
1151 mem, adev->mes.event_log_size, false);
1152
1153 return 0;
1154 }
1155
1156 DEFINE_SHOW_ATTRIBUTE(amdgpu_debugfs_mes_event_log);
1157
1158 #endif
1159
amdgpu_debugfs_mes_event_log_init(struct amdgpu_device * adev)1160 void amdgpu_debugfs_mes_event_log_init(struct amdgpu_device *adev)
1161 {
1162
1163 #if defined(CONFIG_DEBUG_FS)
1164 struct drm_minor *minor = adev_to_drm(adev)->primary;
1165 struct dentry *root = minor->debugfs_root;
1166 if (adev->enable_mes && amdgpu_mes_log_enable)
1167 debugfs_create_file("amdgpu_mes_event_log", 0444, root,
1168 adev, &amdgpu_debugfs_mes_event_log_fops);
1169
1170 #endif
1171 }
1172