blob: 1ba8332419faee78ce45f7179b379bd5a285ffb1 [file] [log] [blame]
Oded Gabbay4a488a72014-07-16 21:08:55 +03001/*
2 * Copyright 2014 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#include <linux/amd-iommu.h>
24#include <linux/bsearch.h>
25#include <linux/pci.h>
26#include <linux/slab.h>
27#include "kfd_priv.h"
Ben Goz64c7f8c2014-07-17 01:27:00 +030028#include "kfd_device_queue_manager.h"
Oded Gabbaye18e7942014-10-26 10:12:22 +020029#include "kfd_pm4_headers.h"
Oded Gabbay4a488a72014-07-16 21:08:55 +030030
Oded Gabbay19f6d2a2014-07-16 23:25:31 +030031#define MQD_SIZE_ALIGNED 768
32
Oded Gabbay4a488a72014-07-16 21:08:55 +030033static const struct kfd_device_info kaveri_device_info = {
Ben Goz0da75582015-01-01 17:10:01 +020034 .asic_family = CHIP_KAVERI,
35 .max_pasid_bits = 16,
36 .ih_ring_entry_size = 4 * sizeof(uint32_t),
37 .mqd_size_aligned = MQD_SIZE_ALIGNED
38};
39
40static const struct kfd_device_info carrizo_device_info = {
41 .asic_family = CHIP_CARRIZO,
Oded Gabbay4a488a72014-07-16 21:08:55 +030042 .max_pasid_bits = 16,
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +030043 .ih_ring_entry_size = 4 * sizeof(uint32_t),
Alexey Skidanovf7c826a2014-10-13 16:35:12 +030044 .num_of_watch_points = 4,
Oded Gabbay19f6d2a2014-07-16 23:25:31 +030045 .mqd_size_aligned = MQD_SIZE_ALIGNED
Oded Gabbay4a488a72014-07-16 21:08:55 +030046};
47
48struct kfd_deviceid {
49 unsigned short did;
50 const struct kfd_device_info *device_info;
51};
52
53/* Please keep this sorted by increasing device id. */
54static const struct kfd_deviceid supported_devices[] = {
55 { 0x1304, &kaveri_device_info }, /* Kaveri */
56 { 0x1305, &kaveri_device_info }, /* Kaveri */
57 { 0x1306, &kaveri_device_info }, /* Kaveri */
58 { 0x1307, &kaveri_device_info }, /* Kaveri */
59 { 0x1309, &kaveri_device_info }, /* Kaveri */
60 { 0x130A, &kaveri_device_info }, /* Kaveri */
61 { 0x130B, &kaveri_device_info }, /* Kaveri */
62 { 0x130C, &kaveri_device_info }, /* Kaveri */
63 { 0x130D, &kaveri_device_info }, /* Kaveri */
64 { 0x130E, &kaveri_device_info }, /* Kaveri */
65 { 0x130F, &kaveri_device_info }, /* Kaveri */
66 { 0x1310, &kaveri_device_info }, /* Kaveri */
67 { 0x1311, &kaveri_device_info }, /* Kaveri */
68 { 0x1312, &kaveri_device_info }, /* Kaveri */
69 { 0x1313, &kaveri_device_info }, /* Kaveri */
70 { 0x1315, &kaveri_device_info }, /* Kaveri */
71 { 0x1316, &kaveri_device_info }, /* Kaveri */
72 { 0x1317, &kaveri_device_info }, /* Kaveri */
73 { 0x1318, &kaveri_device_info }, /* Kaveri */
74 { 0x131B, &kaveri_device_info }, /* Kaveri */
75 { 0x131C, &kaveri_device_info }, /* Kaveri */
Ben Goz0da75582015-01-01 17:10:01 +020076 { 0x131D, &kaveri_device_info } /* Kaveri */
Oded Gabbay4a488a72014-07-16 21:08:55 +030077};
78
Oded Gabbay6e810902014-10-27 14:36:07 +020079static int kfd_gtt_sa_init(struct kfd_dev *kfd, unsigned int buf_size,
80 unsigned int chunk_size);
81static void kfd_gtt_sa_fini(struct kfd_dev *kfd);
82
Oded Gabbay4a488a72014-07-16 21:08:55 +030083static const struct kfd_device_info *lookup_device_info(unsigned short did)
84{
85 size_t i;
86
87 for (i = 0; i < ARRAY_SIZE(supported_devices); i++) {
88 if (supported_devices[i].did == did) {
89 BUG_ON(supported_devices[i].device_info == NULL);
90 return supported_devices[i].device_info;
91 }
92 }
93
94 return NULL;
95}
96
97struct kfd_dev *kgd2kfd_probe(struct kgd_dev *kgd, struct pci_dev *pdev)
98{
99 struct kfd_dev *kfd;
100
101 const struct kfd_device_info *device_info =
102 lookup_device_info(pdev->device);
103
104 if (!device_info)
105 return NULL;
106
107 kfd = kzalloc(sizeof(*kfd), GFP_KERNEL);
108 if (!kfd)
109 return NULL;
110
111 kfd->kgd = kgd;
112 kfd->device_info = device_info;
113 kfd->pdev = pdev;
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300114 kfd->init_complete = false;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300115
116 return kfd;
117}
118
Oded Gabbayb17f0682014-07-17 00:06:27 +0300119static bool device_iommu_pasid_init(struct kfd_dev *kfd)
120{
121 const u32 required_iommu_flags = AMD_IOMMU_DEVICE_FLAG_ATS_SUP |
122 AMD_IOMMU_DEVICE_FLAG_PRI_SUP |
123 AMD_IOMMU_DEVICE_FLAG_PASID_SUP;
124
125 struct amd_iommu_device_info iommu_info;
126 unsigned int pasid_limit;
127 int err;
128
129 err = amd_iommu_device_info(kfd->pdev, &iommu_info);
130 if (err < 0) {
131 dev_err(kfd_device,
132 "error getting iommu info. is the iommu enabled?\n");
133 return false;
134 }
135
136 if ((iommu_info.flags & required_iommu_flags) != required_iommu_flags) {
137 dev_err(kfd_device, "error required iommu flags ats(%i), pri(%i), pasid(%i)\n",
138 (iommu_info.flags & AMD_IOMMU_DEVICE_FLAG_ATS_SUP) != 0,
139 (iommu_info.flags & AMD_IOMMU_DEVICE_FLAG_PRI_SUP) != 0,
140 (iommu_info.flags & AMD_IOMMU_DEVICE_FLAG_PASID_SUP) != 0);
141 return false;
142 }
143
144 pasid_limit = min_t(unsigned int,
145 (unsigned int)1 << kfd->device_info->max_pasid_bits,
146 iommu_info.max_pasids);
147 /*
148 * last pasid is used for kernel queues doorbells
149 * in the future the last pasid might be used for a kernel thread.
150 */
151 pasid_limit = min_t(unsigned int,
152 pasid_limit,
153 kfd->doorbell_process_limit - 1);
154
155 err = amd_iommu_init_device(kfd->pdev, pasid_limit);
156 if (err < 0) {
157 dev_err(kfd_device, "error initializing iommu device\n");
158 return false;
159 }
160
161 if (!kfd_set_pasid_limit(pasid_limit)) {
162 dev_err(kfd_device, "error setting pasid limit\n");
163 amd_iommu_free_device(kfd->pdev);
164 return false;
165 }
166
167 return true;
168}
169
170static void iommu_pasid_shutdown_callback(struct pci_dev *pdev, int pasid)
171{
172 struct kfd_dev *dev = kfd_device_by_pci_dev(pdev);
173
174 if (dev)
175 kfd_unbind_process_from_device(dev, pasid);
176}
177
Oded Gabbay4a488a72014-07-16 21:08:55 +0300178bool kgd2kfd_device_init(struct kfd_dev *kfd,
179 const struct kgd2kfd_shared_resources *gpu_resources)
180{
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300181 unsigned int size;
182
Oded Gabbay4a488a72014-07-16 21:08:55 +0300183 kfd->shared_resources = *gpu_resources;
184
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300185 /* calculate max size of mqds needed for queues */
186 size = max_num_of_processes *
187 max_num_of_queues_per_process *
188 kfd->device_info->mqd_size_aligned;
189
Oded Gabbaye18e7942014-10-26 10:12:22 +0200190 /*
191 * calculate max size of runlist packet.
192 * There can be only 2 packets at once
193 */
194 size += (max_num_of_processes * sizeof(struct pm4_map_process) +
195 max_num_of_processes * max_num_of_queues_per_process *
196 sizeof(struct pm4_map_queues) + sizeof(struct pm4_runlist)) * 2;
197
198 /* Add size of HIQ & DIQ */
199 size += KFD_KERNEL_QUEUE_SIZE * 2;
200
201 /* add another 512KB for all other allocations on gart (HPD, fences) */
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300202 size += 512 * 1024;
203
Oded Gabbay73a1da02014-10-26 09:53:37 +0200204 if (kfd2kgd->init_gtt_mem_allocation(kfd->kgd, size, &kfd->gtt_mem,
205 &kfd->gtt_start_gpu_addr, &kfd->gtt_start_cpu_ptr)) {
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300206 dev_err(kfd_device,
Oded Gabbaye18e7942014-10-26 10:12:22 +0200207 "Could not allocate %d bytes for device (%x:%x)\n",
208 size, kfd->pdev->vendor, kfd->pdev->device);
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300209 goto out;
210 }
211
Oded Gabbaye18e7942014-10-26 10:12:22 +0200212 dev_info(kfd_device,
213 "Allocated %d bytes on gart for device(%x:%x)\n",
214 size, kfd->pdev->vendor, kfd->pdev->device);
215
Oded Gabbay73a1da02014-10-26 09:53:37 +0200216 /* Initialize GTT sa with 512 byte chunk size */
217 if (kfd_gtt_sa_init(kfd, size, 512) != 0) {
218 dev_err(kfd_device,
219 "Error initializing gtt sub-allocator\n");
220 goto kfd_gtt_sa_init_error;
221 }
222
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300223 kfd_doorbell_init(kfd);
224
225 if (kfd_topology_add_device(kfd) != 0) {
226 dev_err(kfd_device,
227 "Error adding device (%x:%x) to topology\n",
228 kfd->pdev->vendor, kfd->pdev->device);
229 goto kfd_topology_add_device_error;
230 }
231
Oded Gabbayb17f0682014-07-17 00:06:27 +0300232 if (!device_iommu_pasid_init(kfd)) {
233 dev_err(kfd_device,
234 "Error initializing iommuv2 for device (%x:%x)\n",
235 kfd->pdev->vendor, kfd->pdev->device);
236 goto device_iommu_pasid_error;
237 }
238 amd_iommu_set_invalidate_ctx_cb(kfd->pdev,
239 iommu_pasid_shutdown_callback);
Evgeny Pinchuk5b5c4e42014-07-16 21:22:32 +0300240
Ben Goz64c7f8c2014-07-17 01:27:00 +0300241 kfd->dqm = device_queue_manager_init(kfd);
242 if (!kfd->dqm) {
243 dev_err(kfd_device,
244 "Error initializing queue manager for device (%x:%x)\n",
245 kfd->pdev->vendor, kfd->pdev->device);
246 goto device_queue_manager_error;
247 }
248
Oded Gabbay45c9a5e2015-01-12 14:26:10 +0200249 if (kfd->dqm->ops.start(kfd->dqm) != 0) {
Ben Goz64c7f8c2014-07-17 01:27:00 +0300250 dev_err(kfd_device,
251 "Error starting queuen manager for device (%x:%x)\n",
252 kfd->pdev->vendor, kfd->pdev->device);
253 goto dqm_start_error;
254 }
255
Oded Gabbay4a488a72014-07-16 21:08:55 +0300256 kfd->init_complete = true;
257 dev_info(kfd_device, "added device (%x:%x)\n", kfd->pdev->vendor,
258 kfd->pdev->device);
259
Ben Goz64c7f8c2014-07-17 01:27:00 +0300260 pr_debug("kfd: Starting kfd with the following scheduling policy %d\n",
261 sched_policy);
262
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300263 goto out;
264
Ben Goz64c7f8c2014-07-17 01:27:00 +0300265dqm_start_error:
266 device_queue_manager_uninit(kfd->dqm);
267device_queue_manager_error:
268 amd_iommu_free_device(kfd->pdev);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300269device_iommu_pasid_error:
270 kfd_topology_remove_device(kfd);
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300271kfd_topology_add_device_error:
Oded Gabbay73a1da02014-10-26 09:53:37 +0200272 kfd_gtt_sa_fini(kfd);
273kfd_gtt_sa_init_error:
274 kfd2kgd->free_gtt_mem(kfd->kgd, kfd->gtt_mem);
Oded Gabbay19f6d2a2014-07-16 23:25:31 +0300275 dev_err(kfd_device,
276 "device (%x:%x) NOT added due to errors\n",
277 kfd->pdev->vendor, kfd->pdev->device);
278out:
279 return kfd->init_complete;
Oded Gabbay4a488a72014-07-16 21:08:55 +0300280}
281
282void kgd2kfd_device_exit(struct kfd_dev *kfd)
283{
Oded Gabbayb17f0682014-07-17 00:06:27 +0300284 if (kfd->init_complete) {
Ben Goz64c7f8c2014-07-17 01:27:00 +0300285 device_queue_manager_uninit(kfd->dqm);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300286 amd_iommu_free_device(kfd->pdev);
287 kfd_topology_remove_device(kfd);
Oded Gabbay73a1da02014-10-26 09:53:37 +0200288 kfd_gtt_sa_fini(kfd);
289 kfd2kgd->free_gtt_mem(kfd->kgd, kfd->gtt_mem);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300290 }
Evgeny Pinchuk5b5c4e42014-07-16 21:22:32 +0300291
Oded Gabbay4a488a72014-07-16 21:08:55 +0300292 kfree(kfd);
293}
294
295void kgd2kfd_suspend(struct kfd_dev *kfd)
296{
297 BUG_ON(kfd == NULL);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300298
Ben Goz64c7f8c2014-07-17 01:27:00 +0300299 if (kfd->init_complete) {
Oded Gabbay45c9a5e2015-01-12 14:26:10 +0200300 kfd->dqm->ops.stop(kfd->dqm);
Oded Gabbayabc9d3e2014-11-09 22:36:22 +0200301 amd_iommu_set_invalidate_ctx_cb(kfd->pdev, NULL);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300302 amd_iommu_free_device(kfd->pdev);
Ben Goz64c7f8c2014-07-17 01:27:00 +0300303 }
Oded Gabbay4a488a72014-07-16 21:08:55 +0300304}
305
306int kgd2kfd_resume(struct kfd_dev *kfd)
307{
Oded Gabbayb17f0682014-07-17 00:06:27 +0300308 unsigned int pasid_limit;
309 int err;
310
Oded Gabbay4a488a72014-07-16 21:08:55 +0300311 BUG_ON(kfd == NULL);
312
Oded Gabbayb17f0682014-07-17 00:06:27 +0300313 pasid_limit = kfd_get_pasid_limit();
314
315 if (kfd->init_complete) {
316 err = amd_iommu_init_device(kfd->pdev, pasid_limit);
317 if (err < 0)
318 return -ENXIO;
319 amd_iommu_set_invalidate_ctx_cb(kfd->pdev,
320 iommu_pasid_shutdown_callback);
Oded Gabbay45c9a5e2015-01-12 14:26:10 +0200321 kfd->dqm->ops.start(kfd->dqm);
Oded Gabbayb17f0682014-07-17 00:06:27 +0300322 }
323
Oded Gabbay4a488a72014-07-16 21:08:55 +0300324 return 0;
325}
326
Andrew Lewyckyb3f5e6b2014-07-17 01:37:30 +0300327/* This is called directly from KGD at ISR. */
328void kgd2kfd_interrupt(struct kfd_dev *kfd, const void *ih_ring_entry)
Oded Gabbay4a488a72014-07-16 21:08:55 +0300329{
Michel Dänzer6ee0ad22015-01-08 13:27:15 +0900330 /* Process interrupts / schedule work as necessary */
Oded Gabbay4a488a72014-07-16 21:08:55 +0300331}
Oded Gabbay6e810902014-10-27 14:36:07 +0200332
333static int kfd_gtt_sa_init(struct kfd_dev *kfd, unsigned int buf_size,
334 unsigned int chunk_size)
335{
336 unsigned int num_of_bits;
337
338 BUG_ON(!kfd);
339 BUG_ON(!kfd->gtt_mem);
340 BUG_ON(buf_size < chunk_size);
341 BUG_ON(buf_size == 0);
342 BUG_ON(chunk_size == 0);
343
344 kfd->gtt_sa_chunk_size = chunk_size;
345 kfd->gtt_sa_num_of_chunks = buf_size / chunk_size;
346
347 num_of_bits = kfd->gtt_sa_num_of_chunks / BITS_PER_BYTE;
348 BUG_ON(num_of_bits == 0);
349
350 kfd->gtt_sa_bitmap = kzalloc(num_of_bits, GFP_KERNEL);
351
352 if (!kfd->gtt_sa_bitmap)
353 return -ENOMEM;
354
355 pr_debug("kfd: gtt_sa_num_of_chunks = %d, gtt_sa_bitmap = %p\n",
356 kfd->gtt_sa_num_of_chunks, kfd->gtt_sa_bitmap);
357
358 mutex_init(&kfd->gtt_sa_lock);
359
360 return 0;
361
362}
363
364static void kfd_gtt_sa_fini(struct kfd_dev *kfd)
365{
366 mutex_destroy(&kfd->gtt_sa_lock);
367 kfree(kfd->gtt_sa_bitmap);
368}
369
370static inline uint64_t kfd_gtt_sa_calc_gpu_addr(uint64_t start_addr,
371 unsigned int bit_num,
372 unsigned int chunk_size)
373{
374 return start_addr + bit_num * chunk_size;
375}
376
377static inline uint32_t *kfd_gtt_sa_calc_cpu_addr(void *start_addr,
378 unsigned int bit_num,
379 unsigned int chunk_size)
380{
381 return (uint32_t *) ((uint64_t) start_addr + bit_num * chunk_size);
382}
383
384int kfd_gtt_sa_allocate(struct kfd_dev *kfd, unsigned int size,
385 struct kfd_mem_obj **mem_obj)
386{
387 unsigned int found, start_search, cur_size;
388
389 BUG_ON(!kfd);
390
391 if (size == 0)
392 return -EINVAL;
393
394 if (size > kfd->gtt_sa_num_of_chunks * kfd->gtt_sa_chunk_size)
395 return -ENOMEM;
396
397 *mem_obj = kmalloc(sizeof(struct kfd_mem_obj), GFP_KERNEL);
398 if ((*mem_obj) == NULL)
399 return -ENOMEM;
400
401 pr_debug("kfd: allocated mem_obj = %p for size = %d\n", *mem_obj, size);
402
403 start_search = 0;
404
405 mutex_lock(&kfd->gtt_sa_lock);
406
407kfd_gtt_restart_search:
408 /* Find the first chunk that is free */
409 found = find_next_zero_bit(kfd->gtt_sa_bitmap,
410 kfd->gtt_sa_num_of_chunks,
411 start_search);
412
413 pr_debug("kfd: found = %d\n", found);
414
415 /* If there wasn't any free chunk, bail out */
416 if (found == kfd->gtt_sa_num_of_chunks)
417 goto kfd_gtt_no_free_chunk;
418
419 /* Update fields of mem_obj */
420 (*mem_obj)->range_start = found;
421 (*mem_obj)->range_end = found;
422 (*mem_obj)->gpu_addr = kfd_gtt_sa_calc_gpu_addr(
423 kfd->gtt_start_gpu_addr,
424 found,
425 kfd->gtt_sa_chunk_size);
426 (*mem_obj)->cpu_ptr = kfd_gtt_sa_calc_cpu_addr(
427 kfd->gtt_start_cpu_ptr,
428 found,
429 kfd->gtt_sa_chunk_size);
430
431 pr_debug("kfd: gpu_addr = %p, cpu_addr = %p\n",
432 (uint64_t *) (*mem_obj)->gpu_addr, (*mem_obj)->cpu_ptr);
433
434 /* If we need only one chunk, mark it as allocated and get out */
435 if (size <= kfd->gtt_sa_chunk_size) {
436 pr_debug("kfd: single bit\n");
437 set_bit(found, kfd->gtt_sa_bitmap);
438 goto kfd_gtt_out;
439 }
440
441 /* Otherwise, try to see if we have enough contiguous chunks */
442 cur_size = size - kfd->gtt_sa_chunk_size;
443 do {
444 (*mem_obj)->range_end =
445 find_next_zero_bit(kfd->gtt_sa_bitmap,
446 kfd->gtt_sa_num_of_chunks, ++found);
447 /*
448 * If next free chunk is not contiguous than we need to
449 * restart our search from the last free chunk we found (which
450 * wasn't contiguous to the previous ones
451 */
452 if ((*mem_obj)->range_end != found) {
453 start_search = found;
454 goto kfd_gtt_restart_search;
455 }
456
457 /*
458 * If we reached end of buffer, bail out with error
459 */
460 if (found == kfd->gtt_sa_num_of_chunks)
461 goto kfd_gtt_no_free_chunk;
462
463 /* Check if we don't need another chunk */
464 if (cur_size <= kfd->gtt_sa_chunk_size)
465 cur_size = 0;
466 else
467 cur_size -= kfd->gtt_sa_chunk_size;
468
469 } while (cur_size > 0);
470
471 pr_debug("kfd: range_start = %d, range_end = %d\n",
472 (*mem_obj)->range_start, (*mem_obj)->range_end);
473
474 /* Mark the chunks as allocated */
475 for (found = (*mem_obj)->range_start;
476 found <= (*mem_obj)->range_end;
477 found++)
478 set_bit(found, kfd->gtt_sa_bitmap);
479
480kfd_gtt_out:
481 mutex_unlock(&kfd->gtt_sa_lock);
482 return 0;
483
484kfd_gtt_no_free_chunk:
485 pr_debug("kfd: allocation failed with mem_obj = %p\n", mem_obj);
486 mutex_unlock(&kfd->gtt_sa_lock);
487 kfree(mem_obj);
488 return -ENOMEM;
489}
490
491int kfd_gtt_sa_free(struct kfd_dev *kfd, struct kfd_mem_obj *mem_obj)
492{
493 unsigned int bit;
494
495 BUG_ON(!kfd);
Oded Gabbay9216ed22015-01-12 22:34:21 +0200496
497 /* Act like kfree when trying to free a NULL object */
498 if (!mem_obj)
499 return 0;
Oded Gabbay6e810902014-10-27 14:36:07 +0200500
501 pr_debug("kfd: free mem_obj = %p, range_start = %d, range_end = %d\n",
502 mem_obj, mem_obj->range_start, mem_obj->range_end);
503
504 mutex_lock(&kfd->gtt_sa_lock);
505
506 /* Mark the chunks as free */
507 for (bit = mem_obj->range_start;
508 bit <= mem_obj->range_end;
509 bit++)
510 clear_bit(bit, kfd->gtt_sa_bitmap);
511
512 mutex_unlock(&kfd->gtt_sa_lock);
513
514 kfree(mem_obj);
515 return 0;
516}