1 /*
2 * Copyright 2016 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/module.h>
25
26 #ifdef CONFIG_X86
27 #include <asm/hypervisor.h>
28 #endif
29
30 #include <drm/drm_drv.h>
31 #include <xen/xen.h>
32
33 #include "amdgpu.h"
34 #include "amdgpu_ras.h"
35 #include "amdgpu_reset.h"
36 #include "amdgpu_dpm.h"
37 #include "amdgpu_video_codecs.h"
38 #include "vi.h"
39 #include "soc15.h"
40 #include "nv.h"
41 #include "amdgpu_virt_ras_cmd.h"
42
43 #define POPULATE_UCODE_INFO(vf2pf_info, ucode, ver) \
44 do { \
45 vf2pf_info->ucode_info[ucode].id = ucode; \
46 vf2pf_info->ucode_info[ucode].version = ver; \
47 } while (0)
48
49 #define mmRCC_CONFIG_MEMSIZE 0xde3
50
51 const char *amdgpu_virt_dynamic_crit_table_name[] = {
52 "IP DISCOVERY",
53 "VBIOS IMG",
54 "RAS TELEMETRY",
55 "DATA EXCHANGE",
56 "BAD PAGE INFO",
57 "INIT HEADER",
58 "LAST",
59 };
60
amdgpu_virt_mmio_blocked(struct amdgpu_device * adev)61 bool amdgpu_virt_mmio_blocked(struct amdgpu_device *adev)
62 {
63 /* By now all MMIO pages except mailbox are blocked */
64 /* if blocking is enabled in hypervisor. Choose the */
65 /* SCRATCH_REG0 to test. */
66 return RREG32_NO_KIQ(0xc040) == 0xffffffff;
67 }
68
amdgpu_virt_init_setting(struct amdgpu_device * adev)69 void amdgpu_virt_init_setting(struct amdgpu_device *adev)
70 {
71 struct drm_device *ddev = adev_to_drm(adev);
72
73 /* enable virtual display */
74 if (adev->asic_type != CHIP_ALDEBARAN &&
75 adev->asic_type != CHIP_ARCTURUS &&
76 ((adev->pdev->class >> 8) != PCI_CLASS_ACCELERATOR_PROCESSING)) {
77 if (adev->mode_info.num_crtc == 0)
78 adev->mode_info.num_crtc = 1;
79 adev->enable_virtual_display = true;
80 }
81 ddev->driver_features &= ~DRIVER_ATOMIC;
82 adev->cg_flags = 0;
83 adev->pg_flags = 0;
84
85 /* Reduce kcq number to 2 to reduce latency */
86 if (amdgpu_num_kcq == -1)
87 amdgpu_num_kcq = 2;
88 }
89
90 /**
91 * amdgpu_virt_request_full_gpu() - request full gpu access
92 * @adev: amdgpu device.
93 * @init: is driver init time.
94 * When start to init/fini driver, first need to request full gpu access.
95 * Return: Zero if request success, otherwise will return error.
96 */
amdgpu_virt_request_full_gpu(struct amdgpu_device * adev,bool init)97 int amdgpu_virt_request_full_gpu(struct amdgpu_device *adev, bool init)
98 {
99 struct amdgpu_virt *virt = &adev->virt;
100 int r;
101
102 if (virt->ops && virt->ops->req_full_gpu) {
103 r = virt->ops->req_full_gpu(adev, init);
104 if (r) {
105 adev->no_hw_access = true;
106 return r;
107 }
108
109 adev->virt.caps &= ~AMDGPU_SRIOV_CAPS_RUNTIME;
110 }
111
112 return 0;
113 }
114
115 /**
116 * amdgpu_virt_release_full_gpu() - release full gpu access
117 * @adev: amdgpu device.
118 * @init: is driver init time.
119 * When finishing driver init/fini, need to release full gpu access.
120 * Return: Zero if release success, otherwise will returen error.
121 */
amdgpu_virt_release_full_gpu(struct amdgpu_device * adev,bool init)122 int amdgpu_virt_release_full_gpu(struct amdgpu_device *adev, bool init)
123 {
124 struct amdgpu_virt *virt = &adev->virt;
125 int r;
126
127 if (virt->ops && virt->ops->rel_full_gpu) {
128 r = virt->ops->rel_full_gpu(adev, init);
129 if (r)
130 return r;
131
132 adev->virt.caps |= AMDGPU_SRIOV_CAPS_RUNTIME;
133 }
134 return 0;
135 }
136
137 /**
138 * amdgpu_virt_reset_gpu() - reset gpu
139 * @adev: amdgpu device.
140 * Send reset command to GPU hypervisor to reset GPU that VM is using
141 * Return: Zero if reset success, otherwise will return error.
142 */
amdgpu_virt_reset_gpu(struct amdgpu_device * adev)143 int amdgpu_virt_reset_gpu(struct amdgpu_device *adev)
144 {
145 struct amdgpu_virt *virt = &adev->virt;
146 int r;
147
148 if (virt->ops && virt->ops->reset_gpu) {
149 r = virt->ops->reset_gpu(adev);
150 if (r)
151 return r;
152
153 adev->virt.caps &= ~AMDGPU_SRIOV_CAPS_RUNTIME;
154 }
155
156 return 0;
157 }
158
amdgpu_virt_request_init_data(struct amdgpu_device * adev)159 void amdgpu_virt_request_init_data(struct amdgpu_device *adev)
160 {
161 struct amdgpu_virt *virt = &adev->virt;
162
163 if (virt->ops && virt->ops->req_init_data)
164 virt->ops->req_init_data(adev);
165
166 if (adev->virt.req_init_data_ver > 0)
167 dev_info(adev->dev, "host supports REQ_INIT_DATA handshake of critical_region_version %d\n",
168 adev->virt.req_init_data_ver);
169 else
170 dev_warn(adev->dev, "host doesn't support REQ_INIT_DATA handshake\n");
171 }
172
173 /**
174 * amdgpu_virt_ready_to_reset() - send ready to reset to host
175 * @adev: amdgpu device.
176 * Send ready to reset message to GPU hypervisor to signal we have stopped GPU
177 * activity and is ready for host FLR
178 */
amdgpu_virt_ready_to_reset(struct amdgpu_device * adev)179 void amdgpu_virt_ready_to_reset(struct amdgpu_device *adev)
180 {
181 struct amdgpu_virt *virt = &adev->virt;
182
183 if (virt->ops && virt->ops->reset_gpu)
184 virt->ops->ready_to_reset(adev);
185 }
186
187 /**
188 * amdgpu_virt_wait_reset() - wait for reset gpu completed
189 * @adev: amdgpu device.
190 * Wait for GPU reset completed.
191 * Return: Zero if reset success, otherwise will return error.
192 */
amdgpu_virt_wait_reset(struct amdgpu_device * adev)193 int amdgpu_virt_wait_reset(struct amdgpu_device *adev)
194 {
195 struct amdgpu_virt *virt = &adev->virt;
196
197 if (!virt->ops || !virt->ops->wait_reset)
198 return -EINVAL;
199
200 return virt->ops->wait_reset(adev);
201 }
202
203 /**
204 * amdgpu_virt_alloc_mm_table() - alloc memory for mm table
205 * @adev: amdgpu device.
206 * MM table is used by UVD and VCE for its initialization
207 * Return: Zero if allocate success.
208 */
amdgpu_virt_alloc_mm_table(struct amdgpu_device * adev)209 int amdgpu_virt_alloc_mm_table(struct amdgpu_device *adev)
210 {
211 int r;
212
213 if (!amdgpu_sriov_vf(adev) || adev->virt.mm_table.gpu_addr)
214 return 0;
215
216 r = amdgpu_bo_create_kernel(adev, PAGE_SIZE, PAGE_SIZE,
217 AMDGPU_GEM_DOMAIN_VRAM |
218 AMDGPU_GEM_DOMAIN_GTT,
219 &adev->virt.mm_table.bo,
220 &adev->virt.mm_table.gpu_addr,
221 (void *)&adev->virt.mm_table.cpu_addr);
222 if (r) {
223 dev_err(adev->dev, "failed to alloc mm table and error = %d.\n", r);
224 return r;
225 }
226
227 memset((void *)adev->virt.mm_table.cpu_addr, 0, PAGE_SIZE);
228 dev_info(adev->dev, "MM table gpu addr = 0x%llx, cpu addr = %p.\n",
229 adev->virt.mm_table.gpu_addr,
230 adev->virt.mm_table.cpu_addr);
231 return 0;
232 }
233
234 /**
235 * amdgpu_virt_free_mm_table() - free mm table memory
236 * @adev: amdgpu device.
237 * Free MM table memory
238 */
amdgpu_virt_free_mm_table(struct amdgpu_device * adev)239 void amdgpu_virt_free_mm_table(struct amdgpu_device *adev)
240 {
241 if (!amdgpu_sriov_vf(adev) || !adev->virt.mm_table.gpu_addr)
242 return;
243
244 amdgpu_bo_free_kernel(&adev->virt.mm_table.bo,
245 &adev->virt.mm_table.gpu_addr,
246 (void *)&adev->virt.mm_table.cpu_addr);
247 adev->virt.mm_table.gpu_addr = 0;
248 }
249
250 /**
251 * amdgpu_virt_rcvd_ras_interrupt() - receive ras interrupt
252 * @adev: amdgpu device.
253 * Check whether host sent RAS error message
254 * Return: true if found, otherwise false
255 */
amdgpu_virt_rcvd_ras_interrupt(struct amdgpu_device * adev)256 bool amdgpu_virt_rcvd_ras_interrupt(struct amdgpu_device *adev)
257 {
258 struct amdgpu_virt *virt = &adev->virt;
259
260 if (!virt->ops || !virt->ops->rcvd_ras_intr)
261 return false;
262
263 return virt->ops->rcvd_ras_intr(adev);
264 }
265
266
amd_sriov_msg_checksum(void * obj,unsigned long obj_size,unsigned int key,unsigned int checksum)267 unsigned int amd_sriov_msg_checksum(void *obj,
268 unsigned long obj_size,
269 unsigned int key,
270 unsigned int checksum)
271 {
272 unsigned int ret = key;
273 unsigned long i = 0;
274 unsigned char *pos;
275
276 pos = (char *)obj;
277 /* calculate checksum */
278 for (i = 0; i < obj_size; ++i)
279 ret += *(pos + i);
280 /* minus the checksum itself */
281 pos = (char *)&checksum;
282 for (i = 0; i < sizeof(checksum); ++i)
283 ret -= *(pos + i);
284 return ret;
285 }
286
287 #define AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_INIT_CAPACITY 512
288 /* Max bad page slots allowed for SRIOV*/
289 #define AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_MAX_CAPACITY 10665U
290
291 /**
292 * amdgpu_virt_ras_realloc_eh_data_space - alloc/realloc VF bad-page @data->bps and @data->bps_bo
293 * @adev: amdgpu device
294 * @data: VF RAS error-handler data
295 * @pages: minimum number of new slots to add beyond @data->capacity
296 *
297 * Return: 0 on success, %-ENOMEM on failure.
298 */
amdgpu_virt_ras_realloc_eh_data_space(struct amdgpu_device * adev,struct amdgpu_virt_ras_err_handler_data * data,int pages)299 static int amdgpu_virt_ras_realloc_eh_data_space(struct amdgpu_device *adev,
300 struct amdgpu_virt_ras_err_handler_data *data,
301 int pages)
302 {
303 struct eeprom_table_record *new_bps;
304 struct amdgpu_bo **new_bo;
305 unsigned int old_space;
306 unsigned int new_space;
307 unsigned int align_space;
308
309 old_space = (unsigned int)data->capacity;
310 new_space = old_space + max_t(unsigned int, (unsigned int)pages,
311 (unsigned int)AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_INIT_CAPACITY);
312 if (new_space < old_space || new_space > AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_MAX_CAPACITY)
313 return -ENOMEM;
314
315 align_space = ALIGN(new_space, AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_INIT_CAPACITY);
316 if (align_space > AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_MAX_CAPACITY)
317 return -ENOMEM;
318
319 new_bps = kmalloc_objs(*data->bps, align_space);
320 new_bo = kzalloc_objs(*data->bps_bo, align_space);
321 if (!new_bps || !new_bo) {
322 kfree(new_bps);
323 kfree(new_bo);
324 dev_warn_ratelimited(adev->dev,
325 "RAS WARN: failed to grow bad page table to %u slots\n",
326 align_space);
327 return -ENOMEM;
328 }
329
330 memcpy(new_bps, data->bps, data->count * sizeof(*data->bps));
331 memcpy(new_bo, data->bps_bo, data->count * sizeof(*data->bps_bo));
332
333 kfree(data->bps);
334 kfree(data->bps_bo);
335 data->bps = new_bps;
336 data->bps_bo = new_bo;
337 data->capacity = (int)align_space;
338
339 return 0;
340 }
341
amdgpu_virt_init_ras_err_handler_data(struct amdgpu_device * adev)342 static int amdgpu_virt_init_ras_err_handler_data(struct amdgpu_device *adev)
343 {
344 struct amdgpu_virt *virt = &adev->virt;
345 struct amdgpu_virt_ras_err_handler_data **data = &virt->virt_eh_data;
346 unsigned int align_space = AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_INIT_CAPACITY;
347 void *bps = NULL;
348 struct amdgpu_bo **bps_bo = NULL;
349
350 *data = kmalloc_obj(struct amdgpu_virt_ras_err_handler_data);
351 if (!*data)
352 goto data_failure;
353
354 bps = kmalloc_objs(*(*data)->bps, align_space);
355 if (!bps)
356 goto bps_failure;
357
358 bps_bo = kzalloc_objs(*(*data)->bps_bo, align_space);
359 if (!bps_bo)
360 goto bps_bo_failure;
361
362 (*data)->bps = bps;
363 (*data)->bps_bo = bps_bo;
364 (*data)->capacity = align_space;
365 (*data)->count = 0;
366 (*data)->last_reserved = 0;
367
368 virt->ras_init_done = true;
369
370 return 0;
371
372 bps_bo_failure:
373 kfree(bps);
374 bps_failure:
375 kfree(*data);
376 data_failure:
377 return -ENOMEM;
378 }
379
amdgpu_virt_ras_release_bp(struct amdgpu_device * adev)380 static void amdgpu_virt_ras_release_bp(struct amdgpu_device *adev)
381 {
382 struct amdgpu_virt *virt = &adev->virt;
383 struct amdgpu_virt_ras_err_handler_data *data = virt->virt_eh_data;
384 struct amdgpu_bo *bo;
385 int i;
386
387 if (!data)
388 return;
389
390 for (i = data->last_reserved - 1; i >= 0; i--) {
391 bo = data->bps_bo[i];
392 if (bo) {
393 amdgpu_bo_free_kernel(&bo, NULL, NULL);
394 data->bps_bo[i] = bo;
395 }
396 data->last_reserved = i;
397 }
398 }
399
amdgpu_virt_release_ras_err_handler_data(struct amdgpu_device * adev)400 void amdgpu_virt_release_ras_err_handler_data(struct amdgpu_device *adev)
401 {
402 struct amdgpu_virt *virt = &adev->virt;
403 struct amdgpu_virt_ras_err_handler_data *data = virt->virt_eh_data;
404
405 virt->ras_init_done = false;
406
407 if (!data)
408 return;
409
410 amdgpu_virt_ras_release_bp(adev);
411
412 kfree(data->bps);
413 kfree(data->bps_bo);
414 kfree(data);
415 virt->virt_eh_data = NULL;
416 }
417
amdgpu_virt_ras_add_bps(struct amdgpu_device * adev,const struct eeprom_table_record * bps,int pages)418 static bool amdgpu_virt_ras_add_bps(struct amdgpu_device *adev,
419 const struct eeprom_table_record *bps, int pages)
420 {
421 struct amdgpu_virt *virt = &adev->virt;
422 struct amdgpu_virt_ras_err_handler_data *data = virt->virt_eh_data;
423 int need;
424
425 if (!data || pages <= 0)
426 return false;
427
428 if (pages > AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_MAX_CAPACITY - data->count) {
429 dev_warn_ratelimited(adev->dev,
430 "RAS WARN: bad page table at capacity (count=%d pages=%d max=%u)\n",
431 data->count, pages,
432 AMDGPU_VIRT_RAS_BAD_PAGE_TABLE_MAX_CAPACITY);
433 return false;
434 }
435
436 need = data->count + pages;
437 if (need > data->capacity &&
438 amdgpu_virt_ras_realloc_eh_data_space(adev, data, need - data->capacity))
439 return false;
440
441 memcpy(&data->bps[data->count], bps, pages * sizeof(*data->bps));
442 data->count += pages;
443
444 return true;
445 }
446
amdgpu_virt_ras_reserve_bps(struct amdgpu_device * adev)447 static void amdgpu_virt_ras_reserve_bps(struct amdgpu_device *adev)
448 {
449 struct amdgpu_virt *virt = &adev->virt;
450 struct amdgpu_virt_ras_err_handler_data *data = virt->virt_eh_data;
451 struct amdgpu_vram_mgr *mgr = &adev->mman.vram_mgr;
452 struct ttm_resource_manager *man = &mgr->manager;
453 struct amdgpu_bo *bo = NULL;
454 uint64_t bp;
455 int i;
456
457 if (!data)
458 return;
459
460 for (i = data->last_reserved; i < data->count; i++) {
461 bp = data->bps[i].retired_page;
462
463 /* There are two cases of reserve error should be ignored:
464 * 1) a ras bad page has been allocated (used by someone);
465 * 2) a ras bad page has been reserved (duplicate error injection
466 * for one page);
467 */
468 if (ttm_resource_manager_used(man)) {
469 amdgpu_vram_mgr_reserve_range(&adev->mman.vram_mgr,
470 bp << AMDGPU_GPU_PAGE_SHIFT,
471 AMDGPU_GPU_PAGE_SIZE);
472 data->bps_bo[i] = NULL;
473 } else {
474 if (amdgpu_bo_create_kernel_at(adev, bp << AMDGPU_GPU_PAGE_SHIFT,
475 AMDGPU_GPU_PAGE_SIZE,
476 &bo, NULL))
477 dev_dbg(adev->dev,
478 "RAS WARN: reserve vram for retired page %llx fail\n",
479 bp);
480 data->bps_bo[i] = bo;
481 }
482 data->last_reserved = i + 1;
483 bo = NULL;
484 }
485 }
486
amdgpu_virt_ras_check_bad_page(struct amdgpu_device * adev,uint64_t retired_page)487 static bool amdgpu_virt_ras_check_bad_page(struct amdgpu_device *adev,
488 uint64_t retired_page)
489 {
490 struct amdgpu_virt *virt = &adev->virt;
491 struct amdgpu_virt_ras_err_handler_data *data = virt->virt_eh_data;
492 int i;
493
494 if (!data)
495 return true;
496
497 for (i = 0; i < data->count; i++)
498 if (retired_page == data->bps[i].retired_page)
499 return true;
500
501 return false;
502 }
503
amdgpu_virt_add_bad_page(struct amdgpu_device * adev,uint64_t bp_block_offset,uint32_t bp_block_size)504 static void amdgpu_virt_add_bad_page(struct amdgpu_device *adev,
505 uint64_t bp_block_offset, uint32_t bp_block_size)
506 {
507 struct eeprom_table_record bp;
508 uint64_t retired_page;
509 uint32_t bp_idx, bp_cnt;
510 void *fw_va = adev->mman.resv_region[AMDGPU_RESV_FW_VRAM_USAGE].cpu_ptr;
511 void *drv_va = adev->mman.resv_region[AMDGPU_RESV_DRV_VRAM_USAGE].cpu_ptr;
512 void *vram_usage_va = fw_va ? fw_va : drv_va;
513
514 memset(&bp, 0, sizeof(bp));
515
516 if (!bp_block_size)
517 return;
518
519 bp_cnt = bp_block_size / sizeof(uint64_t);
520 for (bp_idx = 0; bp_idx < bp_cnt; bp_idx++) {
521 retired_page = *(uint64_t *)(vram_usage_va +
522 bp_block_offset + bp_idx * sizeof(uint64_t));
523 bp.retired_page = retired_page;
524
525 if (amdgpu_virt_ras_check_bad_page(adev, retired_page))
526 continue;
527
528 if (!amdgpu_virt_ras_add_bps(adev, &bp, 1))
529 break;
530
531 amdgpu_virt_ras_reserve_bps(adev);
532 }
533 }
534
amdgpu_virt_read_pf2vf_data(struct amdgpu_device * adev)535 static int amdgpu_virt_read_pf2vf_data(struct amdgpu_device *adev)
536 {
537 struct amd_sriov_msg_pf2vf_info_header *pf2vf_info = adev->virt.fw_reserve.p_pf2vf;
538 struct amdgim_pf2vf_info_v1 *pf2vf_v1;
539 struct amd_sriov_msg_pf2vf_info *pf2vf;
540
541 uint32_t checksum;
542 uint32_t checkval;
543
544 uint32_t i;
545 uint32_t tmp;
546
547 if (adev->virt.fw_reserve.p_pf2vf == NULL)
548 return -EINVAL;
549
550 if (pf2vf_info->size > 1024) {
551 dev_err(adev->dev, "invalid pf2vf message size: 0x%x\n", pf2vf_info->size);
552 return -EINVAL;
553 }
554
555 switch (pf2vf_info->version) {
556 case 1:
557 pf2vf_v1 = (struct amdgim_pf2vf_info_v1 *)pf2vf_info;
558 checksum = pf2vf_v1->checksum;
559 checkval = amd_sriov_msg_checksum(
560 adev->virt.fw_reserve.p_pf2vf, pf2vf_info->size,
561 adev->virt.fw_reserve.checksum_key, checksum);
562 if (checksum != checkval) {
563 dev_err(adev->dev,
564 "invalid pf2vf message: header checksum=0x%x calculated checksum=0x%x\n",
565 checksum, checkval);
566 return -EINVAL;
567 }
568
569 adev->virt.gim_feature = pf2vf_v1->feature_flags;
570 break;
571 case 2:
572 /* TODO: missing key, need to add it later */
573 pf2vf = (struct amd_sriov_msg_pf2vf_info *)pf2vf_info;
574 checksum = pf2vf->checksum;
575 checkval = amd_sriov_msg_checksum(
576 adev->virt.fw_reserve.p_pf2vf, pf2vf_info->size,
577 0, checksum);
578 if (checksum != checkval) {
579 dev_err(adev->dev,
580 "invalid pf2vf message: header checksum=0x%x calculated checksum=0x%x\n",
581 checksum, checkval);
582 return -EINVAL;
583 }
584
585 adev->virt.vf2pf_update_interval_ms =
586 pf2vf->vf2pf_update_interval_ms;
587 adev->virt.gim_feature = pf2vf->feature_flags.all;
588 adev->virt.reg_access = pf2vf->reg_access_flags.all;
589
590 adev->virt.decode_max_dimension_pixels = 0;
591 adev->virt.decode_max_frame_pixels = 0;
592 adev->virt.encode_max_dimension_pixels = 0;
593 adev->virt.encode_max_frame_pixels = 0;
594 adev->virt.is_mm_bw_enabled = false;
595 for (i = 0; i < AMD_SRIOV_MSG_RESERVE_VCN_INST; i++) {
596 tmp = pf2vf->mm_bw_management[i].decode_max_dimension_pixels;
597 adev->virt.decode_max_dimension_pixels = max(tmp, adev->virt.decode_max_dimension_pixels);
598
599 tmp = pf2vf->mm_bw_management[i].decode_max_frame_pixels;
600 adev->virt.decode_max_frame_pixels = max(tmp, adev->virt.decode_max_frame_pixels);
601
602 tmp = pf2vf->mm_bw_management[i].encode_max_dimension_pixels;
603 adev->virt.encode_max_dimension_pixels = max(tmp, adev->virt.encode_max_dimension_pixels);
604
605 tmp = pf2vf->mm_bw_management[i].encode_max_frame_pixels;
606 adev->virt.encode_max_frame_pixels = max(tmp, adev->virt.encode_max_frame_pixels);
607 }
608 if ((adev->virt.decode_max_dimension_pixels > 0) || (adev->virt.encode_max_dimension_pixels > 0))
609 adev->virt.is_mm_bw_enabled = true;
610
611 adev->unique_id = pf2vf->uuid;
612
613 adev->unitid = 0;
614 if (amdgpu_sriov_is_unitid_support(adev))
615 adev->unitid = pf2vf->unitid;
616
617 adev->virt.ras_en_caps.all = pf2vf->ras_en_caps.all;
618 adev->virt.ras_telemetry_en_caps.all =
619 pf2vf->ras_telemetry_en_caps.all;
620 break;
621 default:
622 dev_err(adev->dev, "invalid pf2vf version: 0x%x\n", pf2vf_info->version);
623 return -EINVAL;
624 }
625
626 /* correct too large or too little interval value */
627 if (adev->virt.vf2pf_update_interval_ms < 200 || adev->virt.vf2pf_update_interval_ms > 10000)
628 adev->virt.vf2pf_update_interval_ms = 2000;
629
630 return 0;
631 }
632
amdgpu_virt_populate_vf2pf_ucode_info(struct amdgpu_device * adev)633 static void amdgpu_virt_populate_vf2pf_ucode_info(struct amdgpu_device *adev)
634 {
635 struct amd_sriov_msg_vf2pf_info *vf2pf_info;
636 vf2pf_info = (struct amd_sriov_msg_vf2pf_info *) adev->virt.fw_reserve.p_vf2pf;
637
638 if (adev->virt.fw_reserve.p_vf2pf == NULL)
639 return;
640
641 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_VCE, adev->vce.fw_version);
642 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_UVD, adev->uvd.fw_version);
643 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_MC, adev->gmc.fw_version);
644 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_ME, adev->gfx.me_fw_version);
645 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_PFP, adev->gfx.pfp_fw_version);
646 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_CE, adev->gfx.ce_fw_version);
647 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_RLC, adev->gfx.rlc_fw_version);
648 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_RLC_SRLC, adev->gfx.rlc_srlc_fw_version);
649 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_RLC_SRLG, adev->gfx.rlc_srlg_fw_version);
650 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_RLC_SRLS, adev->gfx.rlc_srls_fw_version);
651 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_MEC, adev->gfx.mec_fw_version);
652 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_MEC2, adev->gfx.mec2_fw_version);
653 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_SOS, adev->psp.sos.fw_version);
654 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_ASD,
655 adev->psp.asd_context.bin_desc.fw_version);
656 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_TA_RAS,
657 adev->psp.ras_context.context.bin_desc.fw_version);
658 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_TA_XGMI,
659 adev->psp.xgmi_context.context.bin_desc.fw_version);
660 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_SMC, adev->pm.fw_version);
661 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_SDMA, adev->sdma.instance[0].fw_version);
662 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_SDMA2, adev->sdma.instance[1].fw_version);
663 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_VCN, adev->vcn.fw_version);
664 POPULATE_UCODE_INFO(vf2pf_info, AMD_SRIOV_UCODE_ID_DMCU, adev->dm.dmcu_fw_version);
665 }
666
amdgpu_virt_write_vf2pf_data(struct amdgpu_device * adev)667 static int amdgpu_virt_write_vf2pf_data(struct amdgpu_device *adev)
668 {
669 struct amd_sriov_msg_vf2pf_info *vf2pf_info;
670
671 vf2pf_info = (struct amd_sriov_msg_vf2pf_info *) adev->virt.fw_reserve.p_vf2pf;
672
673 if (adev->virt.fw_reserve.p_vf2pf == NULL)
674 return -EINVAL;
675
676 memset(vf2pf_info, 0, sizeof(struct amd_sriov_msg_vf2pf_info));
677
678 vf2pf_info->header.size = sizeof(struct amd_sriov_msg_vf2pf_info);
679 vf2pf_info->header.version = AMD_SRIOV_MSG_FW_VRAM_VF2PF_VER;
680
681 #ifdef MODULE
682 if (THIS_MODULE->version != NULL)
683 strscpy(vf2pf_info->driver_version, THIS_MODULE->version);
684 else
685 #endif
686 strscpy(vf2pf_info->driver_version, "N/A");
687
688 vf2pf_info->pf2vf_version_required = 0; // no requirement, guest understands all
689 vf2pf_info->driver_cert = 0;
690 vf2pf_info->os_info.all = 0;
691
692 vf2pf_info->fb_usage = ttm_resource_manager_used(&adev->mman.vram_mgr.manager) ?
693 ttm_resource_manager_usage(&adev->mman.vram_mgr.manager) >> 20 : 0;
694 vf2pf_info->fb_vis_usage =
695 amdgpu_vram_mgr_vis_usage(&adev->mman.vram_mgr) >> 20;
696 vf2pf_info->fb_size = adev->gmc.real_vram_size >> 20;
697 vf2pf_info->fb_vis_size = adev->gmc.visible_vram_size >> 20;
698
699 amdgpu_virt_populate_vf2pf_ucode_info(adev);
700
701 /* TODO: read dynamic info */
702 vf2pf_info->gfx_usage = 0;
703 vf2pf_info->compute_usage = 0;
704 vf2pf_info->encode_usage = 0;
705 vf2pf_info->decode_usage = 0;
706
707 vf2pf_info->dummy_page_addr = (uint64_t)adev->dummy_page_addr;
708 if (amdgpu_sriov_is_mes_info_enable(adev)) {
709 vf2pf_info->mes_info_addr =
710 (uint64_t)(adev->mes.resource_1_gpu_addr[0] + AMDGPU_GPU_PAGE_SIZE);
711 vf2pf_info->mes_info_size =
712 adev->mes.resource_1[0]->tbo.base.size - AMDGPU_GPU_PAGE_SIZE;
713 }
714 vf2pf_info->checksum =
715 amd_sriov_msg_checksum(
716 vf2pf_info, sizeof(*vf2pf_info), 0, 0);
717
718 return 0;
719 }
720
amdgpu_virt_update_vf2pf_work_item(struct work_struct * work)721 static void amdgpu_virt_update_vf2pf_work_item(struct work_struct *work)
722 {
723 struct amdgpu_device *adev = container_of(work, struct amdgpu_device, virt.vf2pf_work.work);
724 int ret;
725
726 ret = amdgpu_virt_read_pf2vf_data(adev);
727 if (ret) {
728 adev->virt.vf2pf_update_retry_cnt++;
729
730 if ((amdgpu_virt_rcvd_ras_interrupt(adev) ||
731 adev->virt.vf2pf_update_retry_cnt >= AMDGPU_VF2PF_UPDATE_MAX_RETRY_LIMIT) &&
732 amdgpu_sriov_runtime(adev)) {
733
734 amdgpu_ras_set_fed(adev, true);
735 if (amdgpu_reset_domain_schedule(adev->reset_domain,
736 &adev->kfd.reset_work))
737 return;
738 else
739 dev_err(adev->dev, "Failed to queue work! at %s", __func__);
740 }
741
742 goto out;
743 }
744
745 adev->virt.vf2pf_update_retry_cnt = 0;
746 amdgpu_virt_write_vf2pf_data(adev);
747
748 out:
749 schedule_delayed_work(&(adev->virt.vf2pf_work), adev->virt.vf2pf_update_interval_ms);
750 }
751
amdgpu_virt_read_exchange_data_from_mem(struct amdgpu_device * adev,uint32_t * pfvf_data)752 static int amdgpu_virt_read_exchange_data_from_mem(struct amdgpu_device *adev, uint32_t *pfvf_data)
753 {
754 uint32_t dataexchange_offset =
755 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].offset;
756 uint32_t dataexchange_size =
757 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].size_kb << 10;
758 uint64_t pos = 0;
759
760 dev_info(adev->dev,
761 "Got data exchange info from dynamic crit_region_table at offset 0x%x with size of 0x%x bytes.\n",
762 dataexchange_offset, dataexchange_size);
763
764 if (!IS_ALIGNED(dataexchange_offset, 4) || !IS_ALIGNED(dataexchange_size, 4)) {
765 dev_err(adev->dev, "Data exchange data not aligned to 4 bytes\n");
766 return -EINVAL;
767 }
768
769 pos = (uint64_t)dataexchange_offset;
770 amdgpu_device_vram_access(adev, pos, pfvf_data,
771 dataexchange_size, false);
772
773 return 0;
774 }
775
amdgpu_virt_fini_data_exchange(struct amdgpu_device * adev)776 void amdgpu_virt_fini_data_exchange(struct amdgpu_device *adev)
777 {
778 if (adev->virt.vf2pf_update_interval_ms != 0) {
779 dev_info(adev->dev, "clean up the vf2pf work item\n");
780 cancel_delayed_work_sync(&adev->virt.vf2pf_work);
781 adev->virt.vf2pf_update_interval_ms = 0;
782 }
783 }
784
amdgpu_virt_init_data_exchange(struct amdgpu_device * adev)785 void amdgpu_virt_init_data_exchange(struct amdgpu_device *adev)
786 {
787 uint32_t *pfvf_data = NULL;
788 void *fw_va = adev->mman.resv_region[AMDGPU_RESV_FW_VRAM_USAGE].cpu_ptr;
789 void *drv_va = adev->mman.resv_region[AMDGPU_RESV_DRV_VRAM_USAGE].cpu_ptr;
790
791 adev->virt.fw_reserve.p_pf2vf = NULL;
792 adev->virt.fw_reserve.p_vf2pf = NULL;
793 adev->virt.vf2pf_update_interval_ms = 0;
794 adev->virt.vf2pf_update_retry_cnt = 0;
795
796 if (fw_va && drv_va) {
797 dev_warn(adev->dev, "Currently fw_vram and drv_vram should not have values at the same time!");
798 } else if (fw_va || drv_va) {
799 /* go through this logic in ip_init and reset to init workqueue*/
800 amdgpu_virt_exchange_data(adev);
801
802 INIT_DELAYED_WORK(&adev->virt.vf2pf_work, amdgpu_virt_update_vf2pf_work_item);
803 schedule_delayed_work(&(adev->virt.vf2pf_work), msecs_to_jiffies(adev->virt.vf2pf_update_interval_ms));
804 } else if (adev->bios != NULL) {
805 /* got through this logic in early init stage to get necessary flags, e.g. rlcg_acc related*/
806 if (adev->virt.req_init_data_ver == GPU_CRIT_REGION_V2) {
807 pfvf_data =
808 kzalloc(adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].size_kb << 10,
809 GFP_KERNEL);
810 if (!pfvf_data) {
811 dev_err(adev->dev, "Failed to allocate memory for pfvf_data\n");
812 return;
813 }
814
815 if (amdgpu_virt_read_exchange_data_from_mem(adev, pfvf_data))
816 goto free_pfvf_data;
817
818 adev->virt.fw_reserve.p_pf2vf =
819 (struct amd_sriov_msg_pf2vf_info_header *)pfvf_data;
820
821 amdgpu_virt_read_pf2vf_data(adev);
822
823 free_pfvf_data:
824 kfree(pfvf_data);
825 pfvf_data = NULL;
826 adev->virt.fw_reserve.p_pf2vf = NULL;
827 } else {
828 adev->virt.fw_reserve.p_pf2vf =
829 (struct amd_sriov_msg_pf2vf_info_header *)
830 (adev->bios + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB_V1 << 10));
831
832 amdgpu_virt_read_pf2vf_data(adev);
833 }
834 }
835 }
836
837
amdgpu_virt_exchange_data(struct amdgpu_device * adev)838 void amdgpu_virt_exchange_data(struct amdgpu_device *adev)
839 {
840 uint64_t bp_block_offset = 0;
841 uint32_t bp_block_size = 0;
842 struct amd_sriov_msg_pf2vf_info *pf2vf_v2 = NULL;
843 void *fw_va = adev->mman.resv_region[AMDGPU_RESV_FW_VRAM_USAGE].cpu_ptr;
844 void *drv_va = adev->mman.resv_region[AMDGPU_RESV_DRV_VRAM_USAGE].cpu_ptr;
845
846 if (fw_va || drv_va) {
847 if (fw_va) {
848 if (adev->virt.req_init_data_ver == GPU_CRIT_REGION_V2) {
849 adev->virt.fw_reserve.p_pf2vf =
850 (struct amd_sriov_msg_pf2vf_info_header *)
851 (fw_va +
852 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].offset);
853 adev->virt.fw_reserve.p_vf2pf =
854 (struct amd_sriov_msg_vf2pf_info_header *)
855 (fw_va +
856 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].offset +
857 (AMD_SRIOV_MSG_SIZE_KB << 10));
858 adev->virt.fw_reserve.ras_telemetry =
859 (fw_va +
860 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_RAS_TELEMETRY_TABLE_ID].offset);
861 } else {
862 adev->virt.fw_reserve.p_pf2vf =
863 (struct amd_sriov_msg_pf2vf_info_header *)
864 (fw_va + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB_V1 << 10));
865 adev->virt.fw_reserve.p_vf2pf =
866 (struct amd_sriov_msg_vf2pf_info_header *)
867 (fw_va + (AMD_SRIOV_MSG_VF2PF_OFFSET_KB_V1 << 10));
868 adev->virt.fw_reserve.ras_telemetry =
869 (fw_va + (AMD_SRIOV_MSG_RAS_TELEMETRY_OFFSET_KB_V1 << 10));
870 }
871 } else if (drv_va) {
872 adev->virt.fw_reserve.p_pf2vf =
873 (struct amd_sriov_msg_pf2vf_info_header *)
874 (drv_va + (AMD_SRIOV_MSG_PF2VF_OFFSET_KB_V1 << 10));
875 adev->virt.fw_reserve.p_vf2pf =
876 (struct amd_sriov_msg_vf2pf_info_header *)
877 (drv_va + (AMD_SRIOV_MSG_VF2PF_OFFSET_KB_V1 << 10));
878 adev->virt.fw_reserve.ras_telemetry =
879 (drv_va + (AMD_SRIOV_MSG_RAS_TELEMETRY_OFFSET_KB_V1 << 10));
880 }
881
882 amdgpu_virt_read_pf2vf_data(adev);
883 amdgpu_virt_write_vf2pf_data(adev);
884
885 /* bad page handling for version 2 */
886 if (adev->virt.fw_reserve.p_pf2vf->version == 2) {
887 pf2vf_v2 = (struct amd_sriov_msg_pf2vf_info *)adev->virt.fw_reserve.p_pf2vf;
888
889 bp_block_offset = ((uint64_t)pf2vf_v2->bp_block_offset_low & 0xFFFFFFFF) |
890 ((((uint64_t)pf2vf_v2->bp_block_offset_high) << 32) & 0xFFFFFFFF00000000);
891 bp_block_size = pf2vf_v2->bp_block_size;
892
893 if (bp_block_size && !adev->virt.ras_init_done)
894 amdgpu_virt_init_ras_err_handler_data(adev);
895
896 if (adev->virt.ras_init_done)
897 amdgpu_virt_add_bad_page(adev, bp_block_offset, bp_block_size);
898 }
899 }
900 }
901
amdgpu_virt_init_detect_asic(struct amdgpu_device * adev)902 static u32 amdgpu_virt_init_detect_asic(struct amdgpu_device *adev)
903 {
904 uint32_t reg;
905
906 switch (adev->asic_type) {
907 case CHIP_TONGA:
908 case CHIP_FIJI:
909 reg = RREG32(mmBIF_IOV_FUNC_IDENTIFIER);
910 break;
911 case CHIP_VEGA10:
912 case CHIP_VEGA20:
913 case CHIP_NAVI10:
914 case CHIP_NAVI12:
915 case CHIP_SIENNA_CICHLID:
916 case CHIP_ARCTURUS:
917 case CHIP_ALDEBARAN:
918 case CHIP_IP_DISCOVERY:
919 reg = RREG32(mmRCC_IOV_FUNC_IDENTIFIER);
920 break;
921 default: /* other chip doesn't support SRIOV */
922 reg = 0;
923 break;
924 }
925
926 if (reg & 1)
927 adev->virt.caps |= AMDGPU_SRIOV_CAPS_IS_VF;
928
929 if (reg & 0x80000000)
930 adev->virt.caps |= AMDGPU_SRIOV_CAPS_ENABLE_IOV;
931
932 if (!reg) {
933 /* passthrough mode exclus sriov mod */
934 if (is_virtual_machine() && !xen_initial_domain())
935 adev->virt.caps |= AMDGPU_PASSTHROUGH_MODE;
936 }
937
938 return reg;
939 }
940
amdgpu_virt_init_req_data(struct amdgpu_device * adev,u32 reg)941 static bool amdgpu_virt_init_req_data(struct amdgpu_device *adev, u32 reg)
942 {
943 bool is_sriov = false;
944
945 /* we have the ability to check now */
946 if (amdgpu_sriov_vf(adev)) {
947 is_sriov = true;
948
949 switch (adev->asic_type) {
950 case CHIP_TONGA:
951 case CHIP_FIJI:
952 vi_set_virt_ops(adev);
953 break;
954 case CHIP_VEGA10:
955 soc15_set_virt_ops(adev);
956 #ifdef CONFIG_X86
957 /* not send GPU_INIT_DATA with MS_HYPERV*/
958 if (!hypervisor_is_type(X86_HYPER_MS_HYPERV))
959 #endif
960 /* send a dummy GPU_INIT_DATA request to host on vega10 */
961 amdgpu_virt_request_init_data(adev);
962 break;
963 case CHIP_VEGA20:
964 case CHIP_ARCTURUS:
965 case CHIP_ALDEBARAN:
966 soc15_set_virt_ops(adev);
967 break;
968 case CHIP_NAVI10:
969 case CHIP_NAVI12:
970 case CHIP_SIENNA_CICHLID:
971 case CHIP_IP_DISCOVERY:
972 nv_set_virt_ops(adev);
973 /* try send GPU_INIT_DATA request to host */
974 amdgpu_virt_request_init_data(adev);
975 break;
976 default: /* other chip doesn't support SRIOV */
977 is_sriov = false;
978 dev_err(adev->dev, "Unknown asic type: %d!\n", adev->asic_type);
979 break;
980 }
981 }
982
983 return is_sriov;
984 }
985
amdgpu_virt_init_ras(struct amdgpu_device * adev)986 static void amdgpu_virt_init_ras(struct amdgpu_device *adev)
987 {
988 ratelimit_state_init(&adev->virt.ras.ras_error_cnt_rs, 5 * HZ, 1);
989 ratelimit_state_init(&adev->virt.ras.ras_cper_dump_rs, 5 * HZ, 1);
990 ratelimit_state_init(&adev->virt.ras.ras_chk_criti_rs, 5 * HZ, 1);
991
992 ratelimit_set_flags(&adev->virt.ras.ras_error_cnt_rs,
993 RATELIMIT_MSG_ON_RELEASE);
994 ratelimit_set_flags(&adev->virt.ras.ras_cper_dump_rs,
995 RATELIMIT_MSG_ON_RELEASE);
996 ratelimit_set_flags(&adev->virt.ras.ras_chk_criti_rs,
997 RATELIMIT_MSG_ON_RELEASE);
998
999 mutex_init(&adev->virt.ras.ras_telemetry_mutex);
1000 mutex_init(&adev->virt.access_req_mutex);
1001
1002 adev->virt.ras.cper_rptr = 0;
1003 }
1004
amdgpu_virt_crit_region_calc_checksum(uint8_t * buf_start,uint8_t * buf_end)1005 static uint8_t amdgpu_virt_crit_region_calc_checksum(uint8_t *buf_start, uint8_t *buf_end)
1006 {
1007 uint32_t sum = 0;
1008
1009 if (buf_start >= buf_end)
1010 return 0;
1011
1012 for (; buf_start < buf_end; buf_start++)
1013 sum += buf_start[0];
1014
1015 return 0xffffffff - sum;
1016 }
1017
amdgpu_virt_init_critical_region(struct amdgpu_device * adev)1018 int amdgpu_virt_init_critical_region(struct amdgpu_device *adev)
1019 {
1020 struct amd_sriov_msg_init_data_header *init_data_hdr = NULL;
1021 u64 init_hdr_offset = adev->virt.init_data_header.offset;
1022 u64 init_hdr_size = (u64)adev->virt.init_data_header.size_kb << 10; /* KB → bytes */
1023 u64 vram_size;
1024 u64 end;
1025 int r = 0;
1026 uint8_t checksum = 0;
1027
1028 /* Skip below init if critical region version != v2 */
1029 if (adev->virt.req_init_data_ver != GPU_CRIT_REGION_V2)
1030 return 0;
1031
1032 vram_size = RREG32(mmRCC_CONFIG_MEMSIZE);
1033 if (!vram_size || vram_size == U32_MAX)
1034 return -EINVAL;
1035 vram_size <<= 20;
1036
1037 if (check_add_overflow(init_hdr_offset, init_hdr_size, &end) || end > vram_size) {
1038 dev_err(adev->dev, "init_data_header exceeds VRAM size, exiting\n");
1039 return -EINVAL;
1040 }
1041
1042 /* Allocate for init_data_hdr */
1043 init_data_hdr = kzalloc_obj(struct amd_sriov_msg_init_data_header);
1044 if (!init_data_hdr)
1045 return -ENOMEM;
1046
1047 amdgpu_device_vram_access(adev, (uint64_t)init_hdr_offset, (uint32_t *)init_data_hdr,
1048 sizeof(struct amd_sriov_msg_init_data_header), false);
1049
1050 /* Table validation */
1051 if (strncmp(init_data_hdr->signature,
1052 AMDGPU_SRIOV_CRIT_DATA_SIGNATURE,
1053 AMDGPU_SRIOV_CRIT_DATA_SIG_LEN) != 0) {
1054 dev_err(adev->dev, "Invalid init data signature: %.4s\n",
1055 init_data_hdr->signature);
1056 r = -EINVAL;
1057 goto out;
1058 }
1059
1060 checksum = amdgpu_virt_crit_region_calc_checksum(
1061 (uint8_t *)&init_data_hdr->initdata_offset,
1062 (uint8_t *)init_data_hdr +
1063 sizeof(struct amd_sriov_msg_init_data_header));
1064 if (checksum != init_data_hdr->checksum) {
1065 dev_err(adev->dev, "Found unmatching checksum from calculation 0x%x and init_data 0x%x\n",
1066 checksum, init_data_hdr->checksum);
1067 r = -EINVAL;
1068 goto out;
1069 }
1070
1071 memset(&adev->virt.crit_regn, 0, sizeof(adev->virt.crit_regn));
1072 memset(adev->virt.crit_regn_tbl, 0, sizeof(adev->virt.crit_regn_tbl));
1073
1074 adev->virt.crit_regn.offset = init_data_hdr->initdata_offset;
1075 adev->virt.crit_regn.size_kb = init_data_hdr->initdata_size_in_kb;
1076
1077 /* Validation and initialization for each table entry */
1078 if (IS_SRIOV_CRIT_REGN_ENTRY_VALID(init_data_hdr, AMD_SRIOV_MSG_IPD_TABLE_ID)) {
1079 if (!init_data_hdr->ip_discovery_size_in_kb ||
1080 init_data_hdr->ip_discovery_size_in_kb > DISCOVERY_TMR_SIZE) {
1081 dev_err(adev->dev, "Invalid %s size: 0x%x\n",
1082 amdgpu_virt_dynamic_crit_table_name[AMD_SRIOV_MSG_IPD_TABLE_ID],
1083 init_data_hdr->ip_discovery_size_in_kb);
1084 r = -EINVAL;
1085 goto out;
1086 }
1087
1088 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_IPD_TABLE_ID].offset =
1089 init_data_hdr->ip_discovery_offset;
1090 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_IPD_TABLE_ID].size_kb =
1091 init_data_hdr->ip_discovery_size_in_kb;
1092 }
1093
1094 if (IS_SRIOV_CRIT_REGN_ENTRY_VALID(init_data_hdr, AMD_SRIOV_MSG_VBIOS_IMG_TABLE_ID)) {
1095 if (!init_data_hdr->vbios_img_size_in_kb) {
1096 dev_err(adev->dev, "Invalid %s size: 0x%x\n",
1097 amdgpu_virt_dynamic_crit_table_name[AMD_SRIOV_MSG_VBIOS_IMG_TABLE_ID],
1098 init_data_hdr->vbios_img_size_in_kb);
1099 r = -EINVAL;
1100 goto out;
1101 }
1102
1103 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_VBIOS_IMG_TABLE_ID].offset =
1104 init_data_hdr->vbios_img_offset;
1105 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_VBIOS_IMG_TABLE_ID].size_kb =
1106 init_data_hdr->vbios_img_size_in_kb;
1107 }
1108
1109 if (IS_SRIOV_CRIT_REGN_ENTRY_VALID(init_data_hdr, AMD_SRIOV_MSG_RAS_TELEMETRY_TABLE_ID)) {
1110 if (!init_data_hdr->ras_tele_info_size_in_kb) {
1111 dev_err(adev->dev, "Invalid %s size: 0x%x\n",
1112 amdgpu_virt_dynamic_crit_table_name[AMD_SRIOV_MSG_RAS_TELEMETRY_TABLE_ID],
1113 init_data_hdr->ras_tele_info_size_in_kb);
1114 r = -EINVAL;
1115 goto out;
1116 }
1117
1118 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_RAS_TELEMETRY_TABLE_ID].offset =
1119 init_data_hdr->ras_tele_info_offset;
1120 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_RAS_TELEMETRY_TABLE_ID].size_kb =
1121 init_data_hdr->ras_tele_info_size_in_kb;
1122 }
1123
1124 if (IS_SRIOV_CRIT_REGN_ENTRY_VALID(init_data_hdr, AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID)) {
1125 if (!init_data_hdr->dataexchange_size_in_kb) {
1126 dev_err(adev->dev, "Invalid %s size: 0x%x\n",
1127 amdgpu_virt_dynamic_crit_table_name[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID],
1128 init_data_hdr->dataexchange_size_in_kb);
1129 r = -EINVAL;
1130 goto out;
1131 }
1132
1133 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].offset =
1134 init_data_hdr->dataexchange_offset;
1135 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_DATAEXCHANGE_TABLE_ID].size_kb =
1136 init_data_hdr->dataexchange_size_in_kb;
1137 }
1138
1139 if (IS_SRIOV_CRIT_REGN_ENTRY_VALID(init_data_hdr, AMD_SRIOV_MSG_BAD_PAGE_INFO_TABLE_ID)) {
1140 if (!init_data_hdr->bad_page_size_in_kb) {
1141 dev_err(adev->dev, "Invalid %s size: 0x%x\n",
1142 amdgpu_virt_dynamic_crit_table_name[AMD_SRIOV_MSG_BAD_PAGE_INFO_TABLE_ID],
1143 init_data_hdr->bad_page_size_in_kb);
1144 r = -EINVAL;
1145 goto out;
1146 }
1147
1148 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_BAD_PAGE_INFO_TABLE_ID].offset =
1149 init_data_hdr->bad_page_info_offset;
1150 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_BAD_PAGE_INFO_TABLE_ID].size_kb =
1151 init_data_hdr->bad_page_size_in_kb;
1152 }
1153
1154 /* Validation for critical region info */
1155 if (adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_IPD_TABLE_ID].size_kb > DISCOVERY_TMR_SIZE) {
1156 dev_err(adev->dev, "Invalid IP discovery size: 0x%x\n",
1157 adev->virt.crit_regn_tbl[AMD_SRIOV_MSG_IPD_TABLE_ID].size_kb);
1158 r = -EINVAL;
1159 goto out;
1160 }
1161
1162 /* reserved memory starts from crit region base offset with the size of 5MB */
1163 amdgpu_ttm_init_vram_resv(adev, AMDGPU_RESV_FW_VRAM_USAGE,
1164 adev->virt.crit_regn.offset,
1165 adev->virt.crit_regn.size_kb << 10, true);
1166 dev_info(adev->dev,
1167 "critical region v%d requested to reserve memory start at %08llx with %llu KB.\n",
1168 init_data_hdr->version,
1169 adev->mman.resv_region[AMDGPU_RESV_FW_VRAM_USAGE].offset,
1170 adev->mman.resv_region[AMDGPU_RESV_FW_VRAM_USAGE].size >> 10);
1171
1172 adev->virt.is_dynamic_crit_regn_enabled = true;
1173
1174 out:
1175 kfree(init_data_hdr);
1176 init_data_hdr = NULL;
1177
1178 return r;
1179 }
1180
amdgpu_virt_get_dynamic_data_info(struct amdgpu_device * adev,int data_id,uint8_t * binary,u32 * size)1181 int amdgpu_virt_get_dynamic_data_info(struct amdgpu_device *adev,
1182 int data_id, uint8_t *binary, u32 *size)
1183 {
1184 uint32_t data_offset = 0;
1185 uint32_t data_size = 0;
1186 enum amd_sriov_msg_table_id_enum data_table_id = data_id;
1187
1188 if (data_table_id >= AMD_SRIOV_MSG_MAX_TABLE_ID)
1189 return -EINVAL;
1190
1191 data_offset = adev->virt.crit_regn_tbl[data_table_id].offset;
1192 data_size = adev->virt.crit_regn_tbl[data_table_id].size_kb << 10;
1193
1194 /* Validate on input params */
1195 if (!binary || !size || *size < (uint64_t)data_size)
1196 return -EINVAL;
1197
1198 /* Proceed to copy the dynamic content */
1199 amdgpu_device_vram_access(adev,
1200 (uint64_t)data_offset, (uint32_t *)binary, data_size, false);
1201 *size = (uint64_t)data_size;
1202
1203 dev_dbg(adev->dev,
1204 "Got %s info from dynamic crit_region_table at offset 0x%x with size of 0x%x bytes.\n",
1205 amdgpu_virt_dynamic_crit_table_name[data_id], data_offset, data_size);
1206
1207 return 0;
1208 }
1209
amdgpu_virt_init(struct amdgpu_device * adev)1210 void amdgpu_virt_init(struct amdgpu_device *adev)
1211 {
1212 bool is_sriov = false;
1213 uint32_t reg = amdgpu_virt_init_detect_asic(adev);
1214
1215 is_sriov = amdgpu_virt_init_req_data(adev, reg);
1216
1217 if (is_sriov)
1218 amdgpu_virt_init_ras(adev);
1219 }
1220
amdgpu_virt_access_debugfs_is_mmio(struct amdgpu_device * adev)1221 static bool amdgpu_virt_access_debugfs_is_mmio(struct amdgpu_device *adev)
1222 {
1223 return amdgpu_sriov_is_debug(adev) ? true : false;
1224 }
1225
amdgpu_virt_access_debugfs_is_kiq(struct amdgpu_device * adev)1226 static bool amdgpu_virt_access_debugfs_is_kiq(struct amdgpu_device *adev)
1227 {
1228 return amdgpu_sriov_is_normal(adev) ? true : false;
1229 }
1230
amdgpu_virt_enable_access_debugfs(struct amdgpu_device * adev)1231 int amdgpu_virt_enable_access_debugfs(struct amdgpu_device *adev)
1232 {
1233 if (!amdgpu_sriov_vf(adev) ||
1234 amdgpu_virt_access_debugfs_is_kiq(adev))
1235 return 0;
1236
1237 if (amdgpu_virt_access_debugfs_is_mmio(adev))
1238 adev->virt.caps &= ~AMDGPU_SRIOV_CAPS_RUNTIME;
1239 else
1240 return -EPERM;
1241
1242 return 0;
1243 }
1244
amdgpu_virt_disable_access_debugfs(struct amdgpu_device * adev)1245 void amdgpu_virt_disable_access_debugfs(struct amdgpu_device *adev)
1246 {
1247 if (amdgpu_sriov_vf(adev))
1248 adev->virt.caps |= AMDGPU_SRIOV_CAPS_RUNTIME;
1249 }
1250
amdgpu_virt_get_sriov_vf_mode(struct amdgpu_device * adev)1251 enum amdgpu_sriov_vf_mode amdgpu_virt_get_sriov_vf_mode(struct amdgpu_device *adev)
1252 {
1253 enum amdgpu_sriov_vf_mode mode;
1254
1255 if (amdgpu_sriov_vf(adev)) {
1256 if (amdgpu_sriov_is_pp_one_vf(adev))
1257 mode = SRIOV_VF_MODE_ONE_VF;
1258 else
1259 mode = SRIOV_VF_MODE_MULTI_VF;
1260 } else {
1261 mode = SRIOV_VF_MODE_BARE_METAL;
1262 }
1263
1264 return mode;
1265 }
1266
amdgpu_virt_pre_reset(struct amdgpu_device * adev)1267 void amdgpu_virt_pre_reset(struct amdgpu_device *adev)
1268 {
1269 /* stop the data exchange thread */
1270 amdgpu_virt_fini_data_exchange(adev);
1271 amdgpu_dpm_set_mp1_state(adev, PP_MP1_STATE_FLR);
1272 }
1273
amdgpu_virt_post_reset(struct amdgpu_device * adev)1274 void amdgpu_virt_post_reset(struct amdgpu_device *adev)
1275 {
1276 if (amdgpu_ip_version(adev, GC_HWIP, 0) == IP_VERSION(11, 0, 3)) {
1277 /* force set to GFXOFF state after reset,
1278 * to avoid some invalid operation before GC enable
1279 */
1280 adev->gfx.is_poweron = false;
1281 }
1282
1283 adev->mes.ring[0].sched.ready = false;
1284 }
1285
amdgpu_virt_fw_load_skip_check(struct amdgpu_device * adev,uint32_t ucode_id)1286 bool amdgpu_virt_fw_load_skip_check(struct amdgpu_device *adev, uint32_t ucode_id)
1287 {
1288 switch (amdgpu_ip_version(adev, MP0_HWIP, 0)) {
1289 case IP_VERSION(13, 0, 0):
1290 /* no vf autoload, white list */
1291 if (ucode_id == AMDGPU_UCODE_ID_VCN1 ||
1292 ucode_id == AMDGPU_UCODE_ID_VCN)
1293 return false;
1294 else
1295 return true;
1296 case IP_VERSION(11, 0, 9):
1297 case IP_VERSION(11, 0, 7):
1298 /* black list for CHIP_NAVI12 and CHIP_SIENNA_CICHLID */
1299 if (ucode_id == AMDGPU_UCODE_ID_RLC_G
1300 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_CNTL
1301 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_GPM_MEM
1302 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_SRM_MEM
1303 || ucode_id == AMDGPU_UCODE_ID_SMC)
1304 return true;
1305 else
1306 return false;
1307 case IP_VERSION(13, 0, 10):
1308 /* white list */
1309 if (ucode_id == AMDGPU_UCODE_ID_CAP
1310 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_PFP
1311 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_ME
1312 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_MEC
1313 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_PFP_P0_STACK
1314 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_PFP_P1_STACK
1315 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_ME_P0_STACK
1316 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_ME_P1_STACK
1317 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_MEC_P0_STACK
1318 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_MEC_P1_STACK
1319 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_MEC_P2_STACK
1320 || ucode_id == AMDGPU_UCODE_ID_CP_RS64_MEC_P3_STACK
1321 || ucode_id == AMDGPU_UCODE_ID_CP_MES
1322 || ucode_id == AMDGPU_UCODE_ID_CP_MES_DATA
1323 || ucode_id == AMDGPU_UCODE_ID_CP_MES1
1324 || ucode_id == AMDGPU_UCODE_ID_CP_MES1_DATA
1325 || ucode_id == AMDGPU_UCODE_ID_VCN1
1326 || ucode_id == AMDGPU_UCODE_ID_VCN)
1327 return false;
1328 else
1329 return true;
1330 default:
1331 /* lagacy black list */
1332 if (ucode_id == AMDGPU_UCODE_ID_SDMA0
1333 || ucode_id == AMDGPU_UCODE_ID_SDMA1
1334 || ucode_id == AMDGPU_UCODE_ID_SDMA2
1335 || ucode_id == AMDGPU_UCODE_ID_SDMA3
1336 || ucode_id == AMDGPU_UCODE_ID_SDMA4
1337 || ucode_id == AMDGPU_UCODE_ID_SDMA5
1338 || ucode_id == AMDGPU_UCODE_ID_SDMA6
1339 || ucode_id == AMDGPU_UCODE_ID_SDMA7
1340 || ucode_id == AMDGPU_UCODE_ID_SDMA_RS64
1341 || ucode_id == AMDGPU_UCODE_ID_RLC_G
1342 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_CNTL
1343 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_GPM_MEM
1344 || ucode_id == AMDGPU_UCODE_ID_RLC_RESTORE_LIST_SRM_MEM
1345 || ucode_id == AMDGPU_UCODE_ID_SMC)
1346 return true;
1347 else
1348 return false;
1349 }
1350 }
1351
amdgpu_virt_update_sriov_video_codec(struct amdgpu_device * adev,struct amdgpu_video_codec_info * encode,uint32_t encode_array_size,struct amdgpu_video_codec_info * decode,uint32_t decode_array_size)1352 void amdgpu_virt_update_sriov_video_codec(struct amdgpu_device *adev,
1353 struct amdgpu_video_codec_info *encode, uint32_t encode_array_size,
1354 struct amdgpu_video_codec_info *decode, uint32_t decode_array_size)
1355 {
1356 uint32_t i;
1357
1358 if (!adev->virt.is_mm_bw_enabled)
1359 return;
1360
1361 if (encode) {
1362 for (i = 0; i < encode_array_size; i++) {
1363 encode[i].max_width = adev->virt.encode_max_dimension_pixels;
1364 encode[i].max_pixels_per_frame = adev->virt.encode_max_frame_pixels;
1365 if (encode[i].max_width > 0)
1366 encode[i].max_height = encode[i].max_pixels_per_frame / encode[i].max_width;
1367 else
1368 encode[i].max_height = 0;
1369 }
1370 }
1371
1372 if (decode) {
1373 for (i = 0; i < decode_array_size; i++) {
1374 decode[i].max_width = adev->virt.decode_max_dimension_pixels;
1375 decode[i].max_pixels_per_frame = adev->virt.decode_max_frame_pixels;
1376 if (decode[i].max_width > 0)
1377 decode[i].max_height = decode[i].max_pixels_per_frame / decode[i].max_width;
1378 else
1379 decode[i].max_height = 0;
1380 }
1381 }
1382 }
1383
amdgpu_virt_get_rlcg_reg_access_flag(struct amdgpu_device * adev,u32 acc_flags,u32 hwip,bool write,u32 * rlcg_flag)1384 bool amdgpu_virt_get_rlcg_reg_access_flag(struct amdgpu_device *adev,
1385 u32 acc_flags, u32 hwip,
1386 bool write, u32 *rlcg_flag)
1387 {
1388 bool ret = false;
1389
1390 switch (hwip) {
1391 case GC_HWIP:
1392 if (amdgpu_sriov_reg_indirect_gc(adev)) {
1393 *rlcg_flag =
1394 write ? AMDGPU_RLCG_GC_WRITE : AMDGPU_RLCG_GC_READ;
1395 ret = true;
1396 /* only in new version, AMDGPU_REGS_NO_KIQ and
1397 * AMDGPU_REGS_RLC are enabled simultaneously */
1398 } else if ((acc_flags & AMDGPU_REGS_RLC) &&
1399 !(acc_flags & AMDGPU_REGS_NO_KIQ) && write) {
1400 *rlcg_flag = AMDGPU_RLCG_GC_WRITE_LEGACY;
1401 ret = true;
1402 }
1403 break;
1404 case MMHUB_HWIP:
1405 if (amdgpu_sriov_reg_indirect_mmhub(adev) &&
1406 (acc_flags & AMDGPU_REGS_RLC) && write) {
1407 *rlcg_flag = AMDGPU_RLCG_MMHUB_WRITE;
1408 ret = true;
1409 }
1410 break;
1411 default:
1412 break;
1413 }
1414 return ret;
1415 }
1416
amdgpu_virt_rlcg_vfi_reg_rw(struct amdgpu_device * adev,u32 offset,u32 v,u32 flag,u32 xcc_id)1417 static u32 amdgpu_virt_rlcg_vfi_reg_rw(struct amdgpu_device *adev, u32 offset, u32 v, u32 flag, u32 xcc_id)
1418 {
1419 uint32_t timeout = 100;
1420 uint32_t i;
1421
1422 struct amdgpu_rlcg_reg_access_ctrl *reg_access_ctrl;
1423 void *vfi_cmd;
1424 void *vfi_stat;
1425 void *vfi_addr;
1426 void *vfi_data;
1427 void *vfi_grbm_cntl;
1428 void *vfi_grbm_idx;
1429 uint32_t cmd;
1430 uint32_t stat;
1431 uint32_t addr = offset;
1432 uint32_t data;
1433 uint32_t grbm_cntl_data;
1434 uint32_t grbm_idx_data;
1435
1436 unsigned long flags;
1437 bool is_err = true;
1438
1439 if (!adev->gfx.rlc.rlcg_reg_access_supported) {
1440 dev_err(adev->dev, "VFi interface is not available\n");
1441 return 0;
1442 }
1443
1444 if (adev->gfx.xcc_mask && (((1 << xcc_id) & adev->gfx.xcc_mask) == 0)) {
1445 dev_err(adev->dev, "VFi invalid XCC, xcc_id=0x%x\n", xcc_id);
1446 return 0;
1447 }
1448
1449 if (amdgpu_device_skip_hw_access(adev))
1450 return 0;
1451
1452 reg_access_ctrl = &adev->gfx.rlc.reg_access_ctrl[xcc_id];
1453 vfi_cmd = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_cmd;
1454 vfi_stat = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_stat;
1455 vfi_addr = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_addr;
1456 vfi_data = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_data;
1457 vfi_grbm_cntl = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_grbm_cntl;
1458 vfi_grbm_idx = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->vfi_grbm_idx;
1459 grbm_cntl_data = reg_access_ctrl->vfi_grbm_cntl_data;
1460 grbm_idx_data = reg_access_ctrl->vfi_grbm_idx_data;
1461
1462 if (flag == AMDGPU_RLCG_GC_WRITE) {
1463 data = v;
1464 cmd = AMDGPU_RLCG_VFI_CMD__WR;
1465
1466 // the GRBM_GFX_CNTL and GRBM_GFX_INDEX are protected by mutex outside this call
1467 if (addr == reg_access_ctrl->grbm_cntl) {
1468 reg_access_ctrl->vfi_grbm_cntl_data = data;
1469 return 0;
1470 } else if (addr == reg_access_ctrl->grbm_idx) {
1471 reg_access_ctrl->vfi_grbm_idx_data = data;
1472 return 0;
1473 }
1474
1475 } else if (flag == AMDGPU_RLCG_GC_READ) {
1476 data = 0;
1477 cmd = AMDGPU_RLCG_VFI_CMD__RD;
1478
1479 // the GRBM_GFX_CNTL and GRBM_GFX_INDEX are protected by mutex outside this call
1480 if (addr == reg_access_ctrl->grbm_cntl)
1481 return grbm_cntl_data;
1482 else if (addr == reg_access_ctrl->grbm_idx)
1483 return grbm_idx_data;
1484
1485 } else {
1486 dev_err(adev->dev, "VFi invalid access, flag=0x%x\n", flag);
1487 return 0;
1488 }
1489
1490 spin_lock_irqsave(&adev->virt.rlcg_reg_lock, flags);
1491
1492 writel(addr, vfi_addr);
1493 writel(data, vfi_data);
1494 writel(grbm_cntl_data, vfi_grbm_cntl);
1495 writel(grbm_idx_data, vfi_grbm_idx);
1496
1497 writel(AMDGPU_RLCG_VFI_STAT__BUSY, vfi_stat);
1498 writel(cmd, vfi_cmd);
1499
1500 for (i = 0; i < timeout; i++) {
1501 stat = readl(vfi_stat);
1502 if (stat != AMDGPU_RLCG_VFI_STAT__BUSY)
1503 break;
1504 udelay(10);
1505 }
1506
1507 switch (stat) {
1508 case AMDGPU_RLCG_VFI_STAT__DONE:
1509 is_err = false;
1510 if (cmd == AMDGPU_RLCG_VFI_CMD__RD)
1511 data = readl(vfi_data);
1512 break;
1513 case AMDGPU_RLCG_VFI_STAT__BUSY:
1514 dev_err(adev->dev, "VFi access timeout\n");
1515 break;
1516 case AMDGPU_RLCG_VFI_STAT__INV_CMD:
1517 dev_err(adev->dev, "VFi invalid command\n");
1518 break;
1519 case AMDGPU_RLCG_VFI_STAT__INV_ADDR:
1520 dev_err(adev->dev, "VFi invalid address\n");
1521 break;
1522 case AMDGPU_RLCG_VFI_STAT__ERR:
1523 dev_err(adev->dev, "VFi unknown error\n");
1524 break;
1525 default:
1526 dev_err(adev->dev, "VFi unknown status code\n");
1527 break;
1528 }
1529
1530 spin_unlock_irqrestore(&adev->virt.rlcg_reg_lock, flags);
1531
1532 if (is_err)
1533 dev_err(adev->dev, "VFi: [grbm_cntl=0x%x grbm_idx=0x%x] addr=0x%x (byte addr 0x%x), data=0x%x, cmd=0x%x\n",
1534 grbm_cntl_data, grbm_idx_data,
1535 addr, addr * 4, data, cmd);
1536 else
1537 dev_dbg(adev->dev, "VFi: [grbm_cntl=0x%x grbm_idx=0x%x] addr=0x%x (byte addr 0x%x), data=0x%x, cmd=0x%x\n",
1538 grbm_cntl_data, grbm_idx_data,
1539 addr, addr * 4, data, cmd);
1540
1541 return data;
1542 }
1543
amdgpu_virt_rlcg_reg_rw(struct amdgpu_device * adev,u32 offset,u32 v,u32 flag,u32 xcc_id)1544 u32 amdgpu_virt_rlcg_reg_rw(struct amdgpu_device *adev, u32 offset, u32 v, u32 flag, u32 xcc_id)
1545 {
1546 struct amdgpu_rlcg_reg_access_ctrl *reg_access_ctrl;
1547 uint32_t timeout = 50000;
1548 uint32_t i, tmp;
1549 uint32_t ret = 0;
1550 void *scratch_reg0;
1551 void *scratch_reg1;
1552 void *scratch_reg2;
1553 void *scratch_reg3;
1554 void *spare_int;
1555 unsigned long flags;
1556
1557 if (amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(12, 1, 0))
1558 return amdgpu_virt_rlcg_vfi_reg_rw(adev, offset, v, flag, xcc_id);
1559
1560 if (!adev->gfx.rlc.rlcg_reg_access_supported) {
1561 dev_err(adev->dev,
1562 "indirect registers access through rlcg is not available\n");
1563 return 0;
1564 }
1565
1566 if (adev->gfx.xcc_mask && (((1 << xcc_id) & adev->gfx.xcc_mask) == 0)) {
1567 dev_err(adev->dev, "invalid xcc\n");
1568 return 0;
1569 }
1570
1571 if (amdgpu_device_skip_hw_access(adev))
1572 return 0;
1573
1574 reg_access_ctrl = &adev->gfx.rlc.reg_access_ctrl[xcc_id];
1575 scratch_reg0 = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->scratch_reg0;
1576 scratch_reg1 = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->scratch_reg1;
1577 scratch_reg2 = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->scratch_reg2;
1578 scratch_reg3 = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->scratch_reg3;
1579
1580 spin_lock_irqsave(&adev->virt.rlcg_reg_lock, flags);
1581
1582 if (reg_access_ctrl->spare_int)
1583 spare_int = (void __iomem *)adev->rmmio + 4 * reg_access_ctrl->spare_int;
1584
1585 if (offset == reg_access_ctrl->grbm_cntl) {
1586 /* if the target reg offset is grbm_cntl, write to scratch_reg2 */
1587 writel(v, scratch_reg2);
1588 if (flag == AMDGPU_RLCG_GC_WRITE_LEGACY)
1589 writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
1590 } else if (offset == reg_access_ctrl->grbm_idx) {
1591 /* if the target reg offset is grbm_idx, write to scratch_reg3 */
1592 writel(v, scratch_reg3);
1593 if (flag == AMDGPU_RLCG_GC_WRITE_LEGACY)
1594 writel(v, ((void __iomem *)adev->rmmio) + (offset * 4));
1595 } else {
1596 /*
1597 * SCRATCH_REG0 = read/write value
1598 * SCRATCH_REG1[30:28] = command
1599 * SCRATCH_REG1[19:0] = address in dword
1600 * SCRATCH_REG1[27:24] = Error reporting
1601 */
1602 writel(v, scratch_reg0);
1603 writel((offset | flag), scratch_reg1);
1604 if (reg_access_ctrl->spare_int)
1605 writel(1, spare_int);
1606
1607 for (i = 0; i < timeout; i++) {
1608 tmp = readl(scratch_reg1);
1609 if (!(tmp & AMDGPU_RLCG_SCRATCH1_ADDRESS_MASK))
1610 break;
1611 udelay(10);
1612 }
1613
1614 tmp = readl(scratch_reg1);
1615 if (i >= timeout || (tmp & AMDGPU_RLCG_SCRATCH1_ERROR_MASK) != 0) {
1616 if (amdgpu_sriov_rlcg_error_report_enabled(adev)) {
1617 if (tmp & AMDGPU_RLCG_VFGATE_DISABLED) {
1618 dev_err(adev->dev,
1619 "vfgate is disabled, rlcg failed to program reg: 0x%05x\n", offset);
1620 } else if (tmp & AMDGPU_RLCG_WRONG_OPERATION_TYPE) {
1621 dev_err(adev->dev,
1622 "wrong operation type, rlcg failed to program reg: 0x%05x\n", offset);
1623 } else if (tmp & AMDGPU_RLCG_REG_NOT_IN_RANGE) {
1624 dev_err(adev->dev,
1625 "register is not in range, rlcg failed to program reg: 0x%05x\n", offset);
1626 } else {
1627 dev_err(adev->dev,
1628 "unknown error type, rlcg failed to program reg: 0x%05x\n", offset);
1629 }
1630 } else {
1631 dev_err(adev->dev,
1632 "timeout: rlcg faled to program reg: 0x%05x\n", offset);
1633 }
1634 }
1635 }
1636
1637 ret = readl(scratch_reg0);
1638
1639 spin_unlock_irqrestore(&adev->virt.rlcg_reg_lock, flags);
1640
1641 return ret;
1642 }
1643
amdgpu_sriov_wreg(struct amdgpu_device * adev,u32 offset,u32 value,u32 acc_flags,u32 hwip,u32 xcc_id)1644 void amdgpu_sriov_wreg(struct amdgpu_device *adev,
1645 u32 offset, u32 value,
1646 u32 acc_flags, u32 hwip, u32 xcc_id)
1647 {
1648 u32 rlcg_flag;
1649
1650 if (amdgpu_device_skip_hw_access(adev))
1651 return;
1652
1653 if (!amdgpu_sriov_runtime(adev) &&
1654 amdgpu_virt_get_rlcg_reg_access_flag(adev, acc_flags, hwip, true, &rlcg_flag)) {
1655 amdgpu_virt_rlcg_reg_rw(adev, offset, value, rlcg_flag, xcc_id);
1656 return;
1657 }
1658
1659 if (acc_flags & AMDGPU_REGS_NO_KIQ)
1660 WREG32_NO_KIQ(offset, value);
1661 else
1662 WREG32(offset, value);
1663 }
1664
amdgpu_sriov_rreg(struct amdgpu_device * adev,u32 offset,u32 acc_flags,u32 hwip,u32 xcc_id)1665 u32 amdgpu_sriov_rreg(struct amdgpu_device *adev,
1666 u32 offset, u32 acc_flags, u32 hwip, u32 xcc_id)
1667 {
1668 u32 rlcg_flag;
1669
1670 if (amdgpu_device_skip_hw_access(adev))
1671 return 0;
1672
1673 if (!amdgpu_sriov_runtime(adev) &&
1674 amdgpu_virt_get_rlcg_reg_access_flag(adev, acc_flags, hwip, false, &rlcg_flag))
1675 return amdgpu_virt_rlcg_reg_rw(adev, offset, 0, rlcg_flag, xcc_id);
1676
1677 if (acc_flags & AMDGPU_REGS_NO_KIQ)
1678 return RREG32_NO_KIQ(offset);
1679 else
1680 return RREG32(offset);
1681 }
1682
amdgpu_sriov_xnack_support(struct amdgpu_device * adev)1683 bool amdgpu_sriov_xnack_support(struct amdgpu_device *adev)
1684 {
1685 bool xnack_mode = true;
1686
1687 if (amdgpu_sriov_vf(adev) &&
1688 amdgpu_ip_version(adev, GC_HWIP, 0) == IP_VERSION(9, 4, 2))
1689 xnack_mode = false;
1690
1691 return xnack_mode;
1692 }
1693
amdgpu_virt_get_ras_capability(struct amdgpu_device * adev)1694 bool amdgpu_virt_get_ras_capability(struct amdgpu_device *adev)
1695 {
1696 struct amdgpu_ras *con = amdgpu_ras_get_context(adev);
1697
1698 if (!amdgpu_sriov_ras_caps_en(adev))
1699 return false;
1700
1701 if (adev->virt.ras_en_caps.bits.block_umc)
1702 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__UMC);
1703 if (adev->virt.ras_en_caps.bits.block_sdma)
1704 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__SDMA);
1705 if (adev->virt.ras_en_caps.bits.block_gfx)
1706 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__GFX);
1707 if (adev->virt.ras_en_caps.bits.block_mmhub)
1708 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__MMHUB);
1709 if (adev->virt.ras_en_caps.bits.block_athub)
1710 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__ATHUB);
1711 if (adev->virt.ras_en_caps.bits.block_pcie_bif)
1712 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__PCIE_BIF);
1713 if (adev->virt.ras_en_caps.bits.block_hdp)
1714 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__HDP);
1715 if (adev->virt.ras_en_caps.bits.block_xgmi_wafl)
1716 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__XGMI_WAFL);
1717 if (adev->virt.ras_en_caps.bits.block_df)
1718 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__DF);
1719 if (adev->virt.ras_en_caps.bits.block_smn)
1720 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__SMN);
1721 if (adev->virt.ras_en_caps.bits.block_sem)
1722 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__SEM);
1723 if (adev->virt.ras_en_caps.bits.block_mp0)
1724 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__MP0);
1725 if (adev->virt.ras_en_caps.bits.block_mp1)
1726 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__MP1);
1727 if (adev->virt.ras_en_caps.bits.block_fuse)
1728 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__FUSE);
1729 if (adev->virt.ras_en_caps.bits.block_mca)
1730 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__MCA);
1731 if (adev->virt.ras_en_caps.bits.block_vcn)
1732 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__VCN);
1733 if (adev->virt.ras_en_caps.bits.block_jpeg)
1734 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__JPEG);
1735 if (adev->virt.ras_en_caps.bits.block_ih)
1736 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__IH);
1737 if (adev->virt.ras_en_caps.bits.block_mpio)
1738 adev->ras_hw_enabled |= BIT(AMDGPU_RAS_BLOCK__MPIO);
1739
1740 if (adev->virt.ras_en_caps.bits.poison_propogation_mode)
1741 con->poison_supported = true; /* Poison is handled by host */
1742
1743 if (adev->virt.ras_en_caps.bits.uniras_supported)
1744 amdgpu_virt_ras_set_remote_uniras(adev, true);
1745
1746 return true;
1747 }
1748
1749 static inline enum amd_sriov_ras_telemetry_gpu_block
amdgpu_ras_block_to_sriov(struct amdgpu_device * adev,enum amdgpu_ras_block block)1750 amdgpu_ras_block_to_sriov(struct amdgpu_device *adev, enum amdgpu_ras_block block) {
1751 switch (block) {
1752 case AMDGPU_RAS_BLOCK__UMC:
1753 return RAS_TELEMETRY_GPU_BLOCK_UMC;
1754 case AMDGPU_RAS_BLOCK__SDMA:
1755 return RAS_TELEMETRY_GPU_BLOCK_SDMA;
1756 case AMDGPU_RAS_BLOCK__GFX:
1757 return RAS_TELEMETRY_GPU_BLOCK_GFX;
1758 case AMDGPU_RAS_BLOCK__MMHUB:
1759 return RAS_TELEMETRY_GPU_BLOCK_MMHUB;
1760 case AMDGPU_RAS_BLOCK__ATHUB:
1761 return RAS_TELEMETRY_GPU_BLOCK_ATHUB;
1762 case AMDGPU_RAS_BLOCK__PCIE_BIF:
1763 return RAS_TELEMETRY_GPU_BLOCK_PCIE_BIF;
1764 case AMDGPU_RAS_BLOCK__HDP:
1765 return RAS_TELEMETRY_GPU_BLOCK_HDP;
1766 case AMDGPU_RAS_BLOCK__XGMI_WAFL:
1767 return RAS_TELEMETRY_GPU_BLOCK_XGMI_WAFL;
1768 case AMDGPU_RAS_BLOCK__DF:
1769 return RAS_TELEMETRY_GPU_BLOCK_DF;
1770 case AMDGPU_RAS_BLOCK__SMN:
1771 return RAS_TELEMETRY_GPU_BLOCK_SMN;
1772 case AMDGPU_RAS_BLOCK__SEM:
1773 return RAS_TELEMETRY_GPU_BLOCK_SEM;
1774 case AMDGPU_RAS_BLOCK__MP0:
1775 return RAS_TELEMETRY_GPU_BLOCK_MP0;
1776 case AMDGPU_RAS_BLOCK__MP1:
1777 return RAS_TELEMETRY_GPU_BLOCK_MP1;
1778 case AMDGPU_RAS_BLOCK__FUSE:
1779 return RAS_TELEMETRY_GPU_BLOCK_FUSE;
1780 case AMDGPU_RAS_BLOCK__MCA:
1781 return RAS_TELEMETRY_GPU_BLOCK_MCA;
1782 case AMDGPU_RAS_BLOCK__VCN:
1783 return RAS_TELEMETRY_GPU_BLOCK_VCN;
1784 case AMDGPU_RAS_BLOCK__JPEG:
1785 return RAS_TELEMETRY_GPU_BLOCK_JPEG;
1786 case AMDGPU_RAS_BLOCK__IH:
1787 return RAS_TELEMETRY_GPU_BLOCK_IH;
1788 case AMDGPU_RAS_BLOCK__MPIO:
1789 return RAS_TELEMETRY_GPU_BLOCK_MPIO;
1790 default:
1791 dev_warn(adev->dev, "Unsupported SRIOV RAS telemetry block 0x%x\n",
1792 block);
1793 return RAS_TELEMETRY_GPU_BLOCK_COUNT;
1794 }
1795 }
1796
amdgpu_virt_cache_host_error_counts(struct amdgpu_device * adev,struct amdsriov_ras_telemetry * host_telemetry)1797 static int amdgpu_virt_cache_host_error_counts(struct amdgpu_device *adev,
1798 struct amdsriov_ras_telemetry *host_telemetry)
1799 {
1800 struct amd_sriov_ras_telemetry_error_count *tmp = NULL;
1801 uint32_t checksum, used_size;
1802
1803 checksum = host_telemetry->header.checksum;
1804 used_size = host_telemetry->header.used_size;
1805
1806 if (used_size > (AMD_SRIOV_MSG_RAS_TELEMETRY_SIZE_KB_V1 << 10))
1807 return 0;
1808
1809 tmp = kmemdup(&host_telemetry->body.error_count, used_size, GFP_KERNEL);
1810 if (!tmp)
1811 return -ENOMEM;
1812
1813 if (checksum != amd_sriov_msg_checksum(tmp, used_size, 0, 0))
1814 goto out;
1815
1816 memcpy(&adev->virt.count_cache, tmp,
1817 min(used_size, sizeof(adev->virt.count_cache)));
1818 out:
1819 kfree(tmp);
1820
1821 return 0;
1822 }
1823
amdgpu_virt_req_ras_err_count_internal(struct amdgpu_device * adev,bool force_update)1824 static int amdgpu_virt_req_ras_err_count_internal(struct amdgpu_device *adev, bool force_update)
1825 {
1826 struct amdgpu_virt *virt = &adev->virt;
1827
1828 if (!virt->ops || !virt->ops->req_ras_err_count)
1829 return -EOPNOTSUPP;
1830
1831 /* Host allows 15 ras telemetry requests per 60 seconds. Afterwhich, the Host
1832 * will ignore incoming guest messages. Ratelimit the guest messages to
1833 * prevent guest self DOS.
1834 */
1835 if (__ratelimit(&virt->ras.ras_error_cnt_rs) || force_update) {
1836 mutex_lock(&virt->ras.ras_telemetry_mutex);
1837 if (!virt->ops->req_ras_err_count(adev))
1838 amdgpu_virt_cache_host_error_counts(adev,
1839 virt->fw_reserve.ras_telemetry);
1840 mutex_unlock(&virt->ras.ras_telemetry_mutex);
1841 }
1842
1843 return 0;
1844 }
1845
1846 /* Bypass ACA interface and query ECC counts directly from host */
amdgpu_virt_req_ras_err_count(struct amdgpu_device * adev,enum amdgpu_ras_block block,struct ras_err_data * err_data)1847 int amdgpu_virt_req_ras_err_count(struct amdgpu_device *adev, enum amdgpu_ras_block block,
1848 struct ras_err_data *err_data)
1849 {
1850 enum amd_sriov_ras_telemetry_gpu_block sriov_block;
1851
1852 sriov_block = amdgpu_ras_block_to_sriov(adev, block);
1853
1854 if (sriov_block >= RAS_TELEMETRY_GPU_BLOCK_COUNT ||
1855 !amdgpu_sriov_ras_telemetry_block_en(adev, sriov_block))
1856 return -EOPNOTSUPP;
1857
1858 /* Host Access may be lost during reset, just return last cached data. */
1859 if (down_read_trylock(&adev->reset_domain->sem)) {
1860 amdgpu_virt_req_ras_err_count_internal(adev, false);
1861 up_read(&adev->reset_domain->sem);
1862 }
1863
1864 err_data->ue_count = adev->virt.count_cache.block[sriov_block].ue_count;
1865 err_data->ce_count = adev->virt.count_cache.block[sriov_block].ce_count;
1866 err_data->de_count = adev->virt.count_cache.block[sriov_block].de_count;
1867
1868 return 0;
1869 }
1870
1871 static int
amdgpu_virt_write_cpers_to_ring(struct amdgpu_device * adev,struct amdsriov_ras_telemetry * host_telemetry,u32 * more)1872 amdgpu_virt_write_cpers_to_ring(struct amdgpu_device *adev,
1873 struct amdsriov_ras_telemetry *host_telemetry,
1874 u32 *more)
1875 {
1876 struct amd_sriov_ras_cper_dump *cper_dump = NULL;
1877 struct cper_hdr *entry = NULL;
1878 struct amdgpu_ring *ring = &adev->cper.ring_buf;
1879 uint32_t checksum, used_size;
1880 u64 remaining, cnt, i;
1881 int ret = 0;
1882
1883 checksum = host_telemetry->header.checksum;
1884 used_size = host_telemetry->header.used_size;
1885
1886 if (used_size < offsetof(struct amd_sriov_ras_cper_dump, buf) ||
1887 used_size > (AMD_SRIOV_MSG_RAS_TELEMETRY_SIZE_KB_V1 << 10))
1888 return -EINVAL;
1889
1890 cper_dump = kmemdup(&host_telemetry->body.cper_dump, used_size, GFP_KERNEL);
1891 if (!cper_dump)
1892 return -ENOMEM;
1893
1894 if (checksum != amd_sriov_msg_checksum(cper_dump, used_size, 0, 0)) {
1895 ret = -EINVAL;
1896 goto out;
1897 }
1898
1899 *more = cper_dump->more;
1900
1901 if (cper_dump->wptr < adev->virt.ras.cper_rptr) {
1902 dev_warn(
1903 adev->dev,
1904 "guest specified rptr that was too high! guest rptr: 0x%llx, host rptr: 0x%llx\n",
1905 adev->virt.ras.cper_rptr, cper_dump->wptr);
1906
1907 adev->virt.ras.cper_rptr = cper_dump->wptr;
1908 goto out;
1909 }
1910
1911 entry = (struct cper_hdr *)&cper_dump->buf[0];
1912 remaining = (u64)used_size - offsetof(struct amd_sriov_ras_cper_dump, buf);
1913 cnt = min_t(u64, cper_dump->count, CPER_MAX_ALLOWED_COUNT);
1914
1915 for (i = 0; i < cnt; i++) {
1916 if (entry->record_length < sizeof(struct cper_hdr) ||
1917 entry->record_length > remaining) {
1918 ret = -EINVAL;
1919 goto out;
1920 }
1921
1922 amdgpu_cper_ring_write(ring, entry, entry->record_length);
1923 remaining -= entry->record_length;
1924 entry = (struct cper_hdr *)((char *)entry + entry->record_length);
1925 }
1926
1927 if (cper_dump->overflow_count)
1928 dev_warn(adev->dev,
1929 "host reported CPER overflow of 0x%llx entries!\n",
1930 cper_dump->overflow_count);
1931
1932 adev->virt.ras.cper_rptr = cper_dump->wptr;
1933 out:
1934 kfree(cper_dump);
1935
1936 return ret;
1937 }
1938
amdgpu_virt_req_ras_cper_dump_internal(struct amdgpu_device * adev)1939 static int amdgpu_virt_req_ras_cper_dump_internal(struct amdgpu_device *adev)
1940 {
1941 struct amdgpu_virt *virt = &adev->virt;
1942 int ret = 0;
1943 uint32_t more = 0;
1944
1945 if (!virt->ops || !virt->ops->req_ras_cper_dump)
1946 return -EOPNOTSUPP;
1947
1948 do {
1949 if (!virt->ops->req_ras_cper_dump(adev, virt->ras.cper_rptr))
1950 ret = amdgpu_virt_write_cpers_to_ring(
1951 adev, virt->fw_reserve.ras_telemetry, &more);
1952 else
1953 ret = 0;
1954 } while (more && !ret);
1955
1956 return ret;
1957 }
1958
amdgpu_virt_req_ras_cper_dump(struct amdgpu_device * adev,bool force_update)1959 int amdgpu_virt_req_ras_cper_dump(struct amdgpu_device *adev, bool force_update)
1960 {
1961 struct amdgpu_virt *virt = &adev->virt;
1962 int ret = 0;
1963
1964 if (!amdgpu_sriov_ras_cper_en(adev))
1965 return -EOPNOTSUPP;
1966
1967 if ((__ratelimit(&virt->ras.ras_cper_dump_rs) || force_update) &&
1968 down_read_trylock(&adev->reset_domain->sem)) {
1969 mutex_lock(&virt->ras.ras_telemetry_mutex);
1970 ret = amdgpu_virt_req_ras_cper_dump_internal(adev);
1971 mutex_unlock(&virt->ras.ras_telemetry_mutex);
1972 up_read(&adev->reset_domain->sem);
1973 }
1974
1975 return ret;
1976 }
1977
amdgpu_virt_ras_telemetry_post_reset(struct amdgpu_device * adev)1978 int amdgpu_virt_ras_telemetry_post_reset(struct amdgpu_device *adev)
1979 {
1980 unsigned long ue_count, ce_count;
1981
1982 if (amdgpu_sriov_ras_telemetry_en(adev)) {
1983 amdgpu_virt_req_ras_err_count_internal(adev, true);
1984 amdgpu_ras_query_error_count(adev, &ce_count, &ue_count, NULL);
1985 }
1986
1987 return 0;
1988 }
1989
amdgpu_virt_ras_telemetry_block_en(struct amdgpu_device * adev,enum amdgpu_ras_block block)1990 bool amdgpu_virt_ras_telemetry_block_en(struct amdgpu_device *adev,
1991 enum amdgpu_ras_block block)
1992 {
1993 enum amd_sriov_ras_telemetry_gpu_block sriov_block;
1994
1995 sriov_block = amdgpu_ras_block_to_sriov(adev, block);
1996
1997 if (sriov_block >= RAS_TELEMETRY_GPU_BLOCK_COUNT ||
1998 !amdgpu_sriov_ras_telemetry_block_en(adev, sriov_block))
1999 return false;
2000
2001 return true;
2002 }
2003
2004 /*
2005 * amdgpu_virt_request_bad_pages() - request bad pages
2006 * @adev: amdgpu device.
2007 * Send command to GPU hypervisor to write new bad pages into the shared PF2VF region
2008 */
amdgpu_virt_request_bad_pages(struct amdgpu_device * adev)2009 void amdgpu_virt_request_bad_pages(struct amdgpu_device *adev)
2010 {
2011 struct amdgpu_virt *virt = &adev->virt;
2012
2013 if (virt->ops && virt->ops->req_bad_pages)
2014 virt->ops->req_bad_pages(adev);
2015 }
2016
amdgpu_virt_cache_chk_criti_hit(struct amdgpu_device * adev,struct amdsriov_ras_telemetry * host_telemetry,bool * hit)2017 static int amdgpu_virt_cache_chk_criti_hit(struct amdgpu_device *adev,
2018 struct amdsriov_ras_telemetry *host_telemetry,
2019 bool *hit)
2020 {
2021 struct amd_sriov_ras_chk_criti *tmp = NULL;
2022 uint32_t checksum, used_size;
2023
2024 checksum = host_telemetry->header.checksum;
2025 used_size = host_telemetry->header.used_size;
2026
2027 if (used_size > (AMD_SRIOV_MSG_RAS_TELEMETRY_SIZE_KB_V1 << 10))
2028 return 0;
2029
2030 tmp = kmemdup(&host_telemetry->body.chk_criti, used_size, GFP_KERNEL);
2031 if (!tmp)
2032 return -ENOMEM;
2033
2034 if (checksum != amd_sriov_msg_checksum(tmp, used_size, 0, 0))
2035 goto out;
2036
2037 if (hit)
2038 *hit = tmp->hit ? true : false;
2039
2040 out:
2041 kfree(tmp);
2042
2043 return 0;
2044 }
2045
amdgpu_virt_check_vf_critical_region(struct amdgpu_device * adev,u64 addr,bool * hit)2046 int amdgpu_virt_check_vf_critical_region(struct amdgpu_device *adev, u64 addr, bool *hit)
2047 {
2048 struct amdgpu_virt *virt = &adev->virt;
2049 int r = -EPERM;
2050
2051 if (!virt->ops || !virt->ops->req_ras_chk_criti)
2052 return -EOPNOTSUPP;
2053
2054 /* Host allows 15 ras telemetry requests per 60 seconds. Afterwhich, the Host
2055 * will ignore incoming guest messages. Ratelimit the guest messages to
2056 * prevent guest self DOS.
2057 */
2058 if (__ratelimit(&virt->ras.ras_chk_criti_rs)) {
2059 mutex_lock(&virt->ras.ras_telemetry_mutex);
2060 if (!virt->ops->req_ras_chk_criti(adev, addr))
2061 r = amdgpu_virt_cache_chk_criti_hit(
2062 adev, virt->fw_reserve.ras_telemetry, hit);
2063 mutex_unlock(&virt->ras.ras_telemetry_mutex);
2064 }
2065
2066 return r;
2067 }
2068
req_remote_ras_cmd(struct amdgpu_device * adev,u32 param1,u32 param2,u32 param3)2069 static int req_remote_ras_cmd(struct amdgpu_device *adev,
2070 u32 param1, u32 param2, u32 param3)
2071 {
2072 struct amdgpu_virt *virt = &adev->virt;
2073
2074 if (virt->ops && virt->ops->req_remote_ras_cmd)
2075 return virt->ops->req_remote_ras_cmd(adev, param1, param2, param3);
2076 return -ENOENT;
2077 }
2078
amdgpu_virt_send_remote_ras_cmd(struct amdgpu_device * adev,uint64_t buf,uint32_t buf_len)2079 int amdgpu_virt_send_remote_ras_cmd(struct amdgpu_device *adev,
2080 uint64_t buf, uint32_t buf_len)
2081 {
2082 uint64_t gpa = buf;
2083 int ret = -EIO;
2084
2085 if (down_read_trylock(&adev->reset_domain->sem)) {
2086 ret = req_remote_ras_cmd(adev,
2087 lower_32_bits(gpa), upper_32_bits(gpa), buf_len);
2088 up_read(&adev->reset_domain->sem);
2089 }
2090
2091 return ret;
2092 }
2093
amdgpu_virt_ptl_request(struct amdgpu_device * adev,u32 req_code,uint32_t * ptl_state,uint32_t * fmt1,uint32_t * fmt2)2094 int amdgpu_virt_ptl_request(struct amdgpu_device *adev, u32 req_code,
2095 uint32_t *ptl_state, uint32_t *fmt1, uint32_t *fmt2)
2096 {
2097 int ret;
2098
2099 if (!ptl_state || !fmt1 || !fmt2)
2100 return -EINVAL;
2101
2102 if (!amdgpu_sriov_ptl_support(adev) ||
2103 !adev->virt.ops || !adev->virt.ops->req_ptl_update)
2104 return -EOPNOTSUPP;
2105
2106 if (req_code == PSP_PTL_PERF_MON_SET && *ptl_state) {
2107 if (*fmt1 == *fmt2) {
2108 dev_warn(adev->dev,
2109 "PTL formats must be different (fmt1=%u, fmt2=%u)\n",
2110 *fmt1, *fmt2);
2111 return -EINVAL;
2112 }
2113 }
2114
2115 ret = adev->virt.ops->req_ptl_update(adev, req_code, *ptl_state, *fmt1, *fmt2);
2116 if (ret) {
2117 dev_warn(adev->dev, "VF PTL update request failed: %d\n", ret);
2118 return ret;
2119 }
2120
2121 if (req_code == PSP_PTL_PERF_MON_QUERY) {
2122 *ptl_state = adev->virt.ptl_state;
2123 *fmt1 = adev->virt.ptl_pref_format1;
2124 *fmt2 = adev->virt.ptl_pref_format2;
2125 }
2126
2127 return 0;
2128 }
2129