1 // SPDX-License-Identifier: GPL-2.0-only
2 /* Copyright (c) 2017 The Linux Foundation. All rights reserved.
3 */
4
5 #include <linux/kref.h>
6 #include <linux/uaccess.h>
7
8 #include "msm_gpu.h"
9
msm_context_set_sysprof(struct msm_context * ctx,struct msm_gpu * gpu,int sysprof)10 int msm_context_set_sysprof(struct msm_context *ctx, struct msm_gpu *gpu, int sysprof)
11 {
12 guard(rwsem_write)(&ctx->ctxlock);
13
14 /*
15 * Since pm_runtime and sysprof_active are both refcounts, we
16 * call apply the new value first, and then unwind the previous
17 * value
18 */
19
20 switch (sysprof) {
21 default:
22 return UERR(EINVAL, gpu->dev, "Invalid sysprof: %d", sysprof);
23 case 2:
24 pm_runtime_get_sync(&gpu->pdev->dev);
25 fallthrough;
26 case 1:
27 refcount_inc(&gpu->sysprof_active);
28 fallthrough;
29 case 0:
30 break;
31 }
32
33 /* unwind old value: */
34 switch (ctx->sysprof) {
35 case 2:
36 pm_runtime_put_autosuspend(&gpu->pdev->dev);
37 fallthrough;
38 case 1:
39 refcount_dec(&gpu->sysprof_active);
40 fallthrough;
41 case 0:
42 break;
43 }
44
45 /* Some gpu families require additional setup for sysprof */
46 if (gpu->funcs->sysprof_setup)
47 gpu->funcs->sysprof_setup(gpu, false);
48
49 ctx->sysprof = sysprof;
50
51 return 0;
52 }
53
__msm_context_destroy(struct kref * kref)54 void __msm_context_destroy(struct kref *kref)
55 {
56 struct msm_context *ctx = container_of(kref,
57 struct msm_context, ref);
58 int i;
59
60 for (i = 0; i < ARRAY_SIZE(ctx->entities); i++) {
61 if (!ctx->entities[i])
62 continue;
63
64 drm_sched_entity_destroy(ctx->entities[i]);
65 kfree(ctx->entities[i]);
66 }
67
68 drm_gpuvm_put(ctx->vm);
69 kfree(ctx->comm);
70 kfree(ctx->cmdline);
71 kfree(ctx->perfctx);
72 kfree(ctx);
73 }
74
msm_submitqueue_destroy(struct kref * kref)75 void msm_submitqueue_destroy(struct kref *kref)
76 {
77 struct msm_gpu_submitqueue *queue = container_of(kref,
78 struct msm_gpu_submitqueue, ref);
79
80 idr_destroy(&queue->fence_idr);
81
82 if (queue->entity == &queue->_vm_bind_entity[0])
83 drm_sched_entity_destroy(queue->entity);
84
85 msm_context_put(queue->ctx);
86
87 kfree(queue);
88 }
89
msm_submitqueue_get(struct msm_context * ctx,u32 id)90 struct msm_gpu_submitqueue *msm_submitqueue_get(struct msm_context *ctx,
91 u32 id)
92 {
93 struct msm_gpu_submitqueue *entry;
94
95 if (!ctx)
96 return NULL;
97
98 guard(rwsem_read)(&ctx->ctxlock);
99
100 list_for_each_entry(entry, &ctx->submitqueues, node) {
101 if (entry->id == id) {
102 kref_get(&entry->ref);
103 return entry;
104 }
105 }
106
107 return NULL;
108 }
109
msm_submitqueue_close(struct msm_context * ctx)110 void msm_submitqueue_close(struct msm_context *ctx)
111 {
112 struct msm_gpu_submitqueue *queue, *tmp;
113
114 if (!ctx)
115 return;
116
117 /*
118 * No lock needed in close and there won't
119 * be any more user ioctls coming our way
120 */
121 list_for_each_entry_safe(queue, tmp, &ctx->submitqueues, node) {
122 if (queue->entity == &queue->_vm_bind_entity[0])
123 drm_sched_entity_flush(queue->entity, MAX_WAIT_SCHED_ENTITY_Q_EMPTY);
124 list_del(&queue->node);
125 msm_submitqueue_put(queue);
126 }
127
128 if (!ctx->vm)
129 return;
130
131 msm_gem_vm_close(ctx->vm);
132 }
133
134 static struct drm_sched_entity *
get_sched_entity(struct msm_context * ctx,struct msm_ringbuffer * ring,unsigned ring_nr,enum drm_sched_priority sched_prio)135 get_sched_entity(struct msm_context *ctx, struct msm_ringbuffer *ring,
136 unsigned ring_nr, enum drm_sched_priority sched_prio)
137 {
138 static DEFINE_MUTEX(entity_lock);
139 unsigned idx = (ring_nr * NR_SCHED_PRIORITIES) + sched_prio;
140
141 /* We should have already validated that the requested priority is
142 * valid by the time we get here.
143 */
144 if (WARN_ON(idx >= ARRAY_SIZE(ctx->entities)))
145 return ERR_PTR(-EINVAL);
146
147 mutex_lock(&entity_lock);
148
149 if (!ctx->entities[idx]) {
150 struct drm_sched_entity *entity;
151 struct drm_gpu_scheduler *sched = &ring->sched;
152 int ret;
153
154 entity = kzalloc_obj(*ctx->entities[idx]);
155
156 ret = drm_sched_entity_init(entity, sched_prio, &sched, 1, NULL);
157 if (ret) {
158 mutex_unlock(&entity_lock);
159 kfree(entity);
160 return ERR_PTR(ret);
161 }
162
163 ctx->entities[idx] = entity;
164 }
165
166 mutex_unlock(&entity_lock);
167
168 return ctx->entities[idx];
169 }
170
msm_submitqueue_create(struct drm_device * drm,struct msm_context * ctx,u32 prio,u32 flags,u32 * id)171 int msm_submitqueue_create(struct drm_device *drm, struct msm_context *ctx,
172 u32 prio, u32 flags, u32 *id)
173 {
174 struct msm_drm_private *priv = drm->dev_private;
175 struct msm_gpu_submitqueue *queue;
176 enum drm_sched_priority sched_prio;
177 struct drm_gpuvm *vm = NULL;
178 unsigned ring_nr;
179 int ret;
180
181 if (!ctx)
182 return -ENODEV;
183
184 if (!priv->gpu)
185 return -ENODEV;
186
187 if (flags & MSM_SUBMITQUEUE_VM_BIND) {
188 unsigned sz;
189
190 vm = msm_context_vm(drm, ctx);
191
192 if (!vm)
193 return UERR(ENOMEM, drm, "no VM");
194
195 /* Not allowed for kernel managed VMs (ie. kernel allocs VA) */
196 if (!msm_context_is_vmbind(ctx))
197 return -EINVAL;
198
199 if (prio)
200 return -EINVAL;
201
202 sz = struct_size(queue, _vm_bind_entity, 1);
203 queue = kzalloc(sz, GFP_KERNEL);
204 } else {
205 extern int enable_preemption;
206 bool preemption_supported =
207 priv->gpu->nr_rings == 1 && enable_preemption != 0;
208
209 if (flags & MSM_SUBMITQUEUE_ALLOW_PREEMPT && preemption_supported)
210 return -EINVAL;
211
212 ret = msm_gpu_convert_priority(priv->gpu, prio, &ring_nr, &sched_prio);
213 if (ret)
214 return ret;
215
216 queue = kzalloc_obj(*queue);
217 }
218
219 if (!queue)
220 return -ENOMEM;
221
222 kref_init(&queue->ref);
223 queue->flags = flags;
224
225 if (flags & MSM_SUBMITQUEUE_VM_BIND) {
226 struct drm_gpu_scheduler *sched = &to_msm_vm(vm)->sched;
227
228 queue->entity = &queue->_vm_bind_entity[0];
229
230 drm_sched_entity_init(queue->entity, DRM_SCHED_PRIORITY_KERNEL,
231 &sched, 1, NULL);
232 } else {
233 queue->ring_nr = ring_nr;
234
235 queue->entity = get_sched_entity(ctx, priv->gpu->rb[ring_nr],
236 ring_nr, sched_prio);
237 }
238
239 if (IS_ERR(queue->entity)) {
240 ret = PTR_ERR(queue->entity);
241 kfree(queue);
242 return ret;
243 }
244
245 guard(rwsem_write)(&ctx->ctxlock);
246
247 queue->ctx = msm_context_get(ctx);
248 queue->id = ctx->queueid++;
249
250 if (id)
251 *id = queue->id;
252
253 idr_init(&queue->fence_idr);
254 spin_lock_init(&queue->idr_lock);
255 mutex_init(&queue->lock);
256
257 list_add_tail(&queue->node, &ctx->submitqueues);
258
259 return 0;
260 }
261
262 /*
263 * Create the default submit-queue (id==0), used for backwards compatibility
264 * for userspace that pre-dates the introduction of submitqueues.
265 */
msm_submitqueue_init(struct drm_device * drm,struct msm_context * ctx)266 int msm_submitqueue_init(struct drm_device *drm, struct msm_context *ctx)
267 {
268 struct msm_drm_private *priv = drm->dev_private;
269 int default_prio, max_priority;
270
271 if (!priv->gpu)
272 return -ENODEV;
273
274 max_priority = (priv->gpu->nr_rings * NR_SCHED_PRIORITIES) - 1;
275
276 /*
277 * Pick a medium priority level as default. Lower numeric value is
278 * higher priority, so round-up to pick a priority that is not higher
279 * than the middle priority level.
280 */
281 default_prio = DIV_ROUND_UP(max_priority, 2);
282
283 return msm_submitqueue_create(drm, ctx, default_prio, 0, NULL);
284 }
285
msm_submitqueue_query_faults(struct msm_gpu_submitqueue * queue,struct drm_msm_submitqueue_query * args)286 static int msm_submitqueue_query_faults(struct msm_gpu_submitqueue *queue,
287 struct drm_msm_submitqueue_query *args)
288 {
289 size_t size = min_t(size_t, args->len, sizeof(queue->faults));
290 int ret;
291
292 /* If a zero length was passed in, return the data size we expect */
293 if (!args->len) {
294 args->len = sizeof(queue->faults);
295 return 0;
296 }
297
298 /* Set the length to the actual size of the data */
299 args->len = size;
300
301 ret = copy_to_user(u64_to_user_ptr(args->data), &queue->faults, size);
302
303 return ret ? -EFAULT : 0;
304 }
305
msm_submitqueue_query(struct drm_device * drm,struct msm_context * ctx,struct drm_msm_submitqueue_query * args)306 int msm_submitqueue_query(struct drm_device *drm, struct msm_context *ctx,
307 struct drm_msm_submitqueue_query *args)
308 {
309 struct msm_gpu_submitqueue *queue;
310 int ret = -EINVAL;
311
312 if (args->pad)
313 return -EINVAL;
314
315 queue = msm_submitqueue_get(ctx, args->id);
316 if (!queue)
317 return -ENOENT;
318
319 if (args->param == MSM_SUBMITQUEUE_PARAM_FAULTS)
320 ret = msm_submitqueue_query_faults(queue, args);
321
322 msm_submitqueue_put(queue);
323
324 return ret;
325 }
326
msm_submitqueue_remove(struct msm_context * ctx,u32 id)327 int msm_submitqueue_remove(struct msm_context *ctx, u32 id)
328 {
329 struct msm_gpu_submitqueue *entry;
330
331 if (!ctx)
332 return 0;
333
334 /*
335 * id 0 is the "default" queue and can't be destroyed
336 * by the user
337 */
338 if (!id)
339 return -ENOENT;
340
341 guard(rwsem_write)(&ctx->ctxlock);
342
343 list_for_each_entry(entry, &ctx->submitqueues, node) {
344 if (entry->id == id) {
345 list_del(&entry->node);
346 msm_submitqueue_put(entry);
347 return 0;
348 }
349 }
350
351 return -ENOENT;
352 }
353
354