1 /*
2 * Copyright (C) 2015 Red Hat, Inc.
3 * All Rights Reserved.
4 *
5 * Authors:
6 * Dave Airlie <airlied@redhat.com>
7 * Gerd Hoffmann <kraxel@redhat.com>
8 *
9 * Permission is hereby granted, free of charge, to any person obtaining a
10 * copy of this software and associated documentation files (the "Software"),
11 * to deal in the Software without restriction, including without limitation
12 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
13 * and/or sell copies of the Software, and to permit persons to whom the
14 * Software is furnished to do so, subject to the following conditions:
15 *
16 * The above copyright notice and this permission notice (including the next
17 * paragraph) shall be included in all copies or substantial portions of the
18 * Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
24 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
25 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
26 * OTHER DEALINGS IN THE SOFTWARE.
27 */
28
29 #include <linux/dma-mapping.h>
30 #include <linux/virtio.h>
31 #include <linux/virtio_config.h>
32 #include <linux/virtio_ring.h>
33
34 #include <drm/drm_edid.h>
35 #include <drm/drm_print.h>
36
37 #include "virtgpu_drv.h"
38 #include "virtgpu_trace.h"
39
40 #define MAX_INLINE_CMD_SIZE 96
41 #define MAX_INLINE_RESP_SIZE 24
42 #define VBUFFER_SIZE (sizeof(struct virtio_gpu_vbuffer) \
43 + MAX_INLINE_CMD_SIZE \
44 + MAX_INLINE_RESP_SIZE)
45
convert_to_hw_box(struct virtio_gpu_box * dst,const struct drm_virtgpu_3d_box * src)46 static void convert_to_hw_box(struct virtio_gpu_box *dst,
47 const struct drm_virtgpu_3d_box *src)
48 {
49 dst->x = cpu_to_le32(src->x);
50 dst->y = cpu_to_le32(src->y);
51 dst->z = cpu_to_le32(src->z);
52 dst->w = cpu_to_le32(src->w);
53 dst->h = cpu_to_le32(src->h);
54 dst->d = cpu_to_le32(src->d);
55 }
56
virtio_gpu_ctrl_ack(struct virtqueue * vq)57 void virtio_gpu_ctrl_ack(struct virtqueue *vq)
58 {
59 struct drm_device *dev = vq->vdev->priv;
60 struct virtio_gpu_device *vgdev = dev->dev_private;
61
62 schedule_work(&vgdev->ctrlq.dequeue_work);
63 }
64
virtio_gpu_cursor_ack(struct virtqueue * vq)65 void virtio_gpu_cursor_ack(struct virtqueue *vq)
66 {
67 struct drm_device *dev = vq->vdev->priv;
68 struct virtio_gpu_device *vgdev = dev->dev_private;
69
70 schedule_work(&vgdev->cursorq.dequeue_work);
71 }
72
virtio_gpu_alloc_vbufs(struct virtio_gpu_device * vgdev)73 int virtio_gpu_alloc_vbufs(struct virtio_gpu_device *vgdev)
74 {
75 vgdev->vbufs = kmem_cache_create("virtio-gpu-vbufs",
76 VBUFFER_SIZE,
77 __alignof__(struct virtio_gpu_vbuffer),
78 0, NULL);
79 if (!vgdev->vbufs)
80 return -ENOMEM;
81 return 0;
82 }
83
virtio_gpu_free_vbufs(struct virtio_gpu_device * vgdev)84 void virtio_gpu_free_vbufs(struct virtio_gpu_device *vgdev)
85 {
86 kmem_cache_destroy(vgdev->vbufs);
87 vgdev->vbufs = NULL;
88 }
89
90 /* For drm_panic */
91 static struct virtio_gpu_vbuffer*
virtio_gpu_panic_get_vbuf(struct virtio_gpu_device * vgdev,int size)92 virtio_gpu_panic_get_vbuf(struct virtio_gpu_device *vgdev, int size)
93 {
94 struct virtio_gpu_vbuffer *vbuf;
95
96 vbuf = kmem_cache_zalloc(vgdev->vbufs, GFP_ATOMIC);
97
98 vbuf->buf = (void *)vbuf + sizeof(*vbuf);
99 vbuf->size = size;
100 vbuf->resp_cb = NULL;
101 vbuf->resp_size = sizeof(struct virtio_gpu_ctrl_hdr);
102 vbuf->resp_buf = (void *)vbuf->buf + size;
103 return vbuf;
104 }
105
106 static struct virtio_gpu_vbuffer*
virtio_gpu_get_vbuf(struct virtio_gpu_device * vgdev,int size,int resp_size,void * resp_buf,virtio_gpu_resp_cb resp_cb)107 virtio_gpu_get_vbuf(struct virtio_gpu_device *vgdev,
108 int size, int resp_size, void *resp_buf,
109 virtio_gpu_resp_cb resp_cb)
110 {
111 struct virtio_gpu_vbuffer *vbuf;
112
113 vbuf = kmem_cache_zalloc(vgdev->vbufs, GFP_KERNEL | __GFP_NOFAIL);
114
115 BUG_ON(size > MAX_INLINE_CMD_SIZE ||
116 size < sizeof(struct virtio_gpu_ctrl_hdr));
117 vbuf->buf = (void *)vbuf + sizeof(*vbuf);
118 vbuf->size = size;
119
120 vbuf->resp_cb = resp_cb;
121 vbuf->resp_size = resp_size;
122 if (resp_size <= MAX_INLINE_RESP_SIZE)
123 vbuf->resp_buf = (void *)vbuf->buf + size;
124 else
125 vbuf->resp_buf = resp_buf;
126 BUG_ON(!vbuf->resp_buf);
127 return vbuf;
128 }
129
130 static struct virtio_gpu_ctrl_hdr *
virtio_gpu_vbuf_ctrl_hdr(struct virtio_gpu_vbuffer * vbuf)131 virtio_gpu_vbuf_ctrl_hdr(struct virtio_gpu_vbuffer *vbuf)
132 {
133 /* this assumes a vbuf contains a command that starts with a
134 * virtio_gpu_ctrl_hdr, which is true for both ctrl and cursor
135 * virtqueues.
136 */
137 return (struct virtio_gpu_ctrl_hdr *)vbuf->buf;
138 }
139
140 static struct virtio_gpu_update_cursor*
virtio_gpu_alloc_cursor(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer ** vbuffer_p)141 virtio_gpu_alloc_cursor(struct virtio_gpu_device *vgdev,
142 struct virtio_gpu_vbuffer **vbuffer_p)
143 {
144 struct virtio_gpu_vbuffer *vbuf;
145
146 vbuf = virtio_gpu_get_vbuf
147 (vgdev, sizeof(struct virtio_gpu_update_cursor),
148 0, NULL, NULL);
149 if (IS_ERR(vbuf)) {
150 *vbuffer_p = NULL;
151 return ERR_CAST(vbuf);
152 }
153 *vbuffer_p = vbuf;
154 return (struct virtio_gpu_update_cursor *)vbuf->buf;
155 }
156
157 /* For drm_panic */
virtio_gpu_panic_alloc_cmd_resp(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer ** vbuffer_p,int cmd_size)158 static void *virtio_gpu_panic_alloc_cmd_resp(struct virtio_gpu_device *vgdev,
159 struct virtio_gpu_vbuffer **vbuffer_p,
160 int cmd_size)
161 {
162 struct virtio_gpu_vbuffer *vbuf;
163
164 vbuf = virtio_gpu_panic_get_vbuf(vgdev, cmd_size);
165 *vbuffer_p = vbuf;
166 return (struct virtio_gpu_command *)vbuf->buf;
167 }
168
virtio_gpu_alloc_cmd_resp(struct virtio_gpu_device * vgdev,virtio_gpu_resp_cb cb,struct virtio_gpu_vbuffer ** vbuffer_p,int cmd_size,int resp_size,void * resp_buf)169 static void *virtio_gpu_alloc_cmd_resp(struct virtio_gpu_device *vgdev,
170 virtio_gpu_resp_cb cb,
171 struct virtio_gpu_vbuffer **vbuffer_p,
172 int cmd_size, int resp_size,
173 void *resp_buf)
174 {
175 struct virtio_gpu_vbuffer *vbuf;
176
177 vbuf = virtio_gpu_get_vbuf(vgdev, cmd_size,
178 resp_size, resp_buf, cb);
179 *vbuffer_p = vbuf;
180 return (struct virtio_gpu_command *)vbuf->buf;
181 }
182
virtio_gpu_alloc_cmd(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer ** vbuffer_p,int size)183 static void *virtio_gpu_alloc_cmd(struct virtio_gpu_device *vgdev,
184 struct virtio_gpu_vbuffer **vbuffer_p,
185 int size)
186 {
187 return virtio_gpu_alloc_cmd_resp(vgdev, NULL, vbuffer_p, size,
188 sizeof(struct virtio_gpu_ctrl_hdr),
189 NULL);
190 }
191
virtio_gpu_alloc_cmd_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer ** vbuffer_p,int size,virtio_gpu_resp_cb cb)192 static void *virtio_gpu_alloc_cmd_cb(struct virtio_gpu_device *vgdev,
193 struct virtio_gpu_vbuffer **vbuffer_p,
194 int size,
195 virtio_gpu_resp_cb cb)
196 {
197 return virtio_gpu_alloc_cmd_resp(vgdev, cb, vbuffer_p, size,
198 sizeof(struct virtio_gpu_ctrl_hdr),
199 NULL);
200 }
201
free_vbuf(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)202 static void free_vbuf(struct virtio_gpu_device *vgdev,
203 struct virtio_gpu_vbuffer *vbuf)
204 {
205 if (vbuf->resp_size > MAX_INLINE_RESP_SIZE)
206 kfree(vbuf->resp_buf);
207 kvfree(vbuf->data_buf);
208 kmem_cache_free(vgdev->vbufs, vbuf);
209 }
210
virtio_gpu_reclaim_vbufs(struct virtio_gpu_device * vgdev)211 void virtio_gpu_reclaim_vbufs(struct virtio_gpu_device *vgdev)
212 {
213 struct virtio_gpu_vbuffer *vbuf;
214
215 while ((vbuf = virtqueue_detach_unused_buf(vgdev->ctrlq.vq))) {
216 if (vbuf->objs)
217 virtio_gpu_array_put_free(vbuf->objs);
218 if (vbuf->resp_cb_data)
219 virtio_gpu_cleanup_object(vbuf->resp_cb_data);
220 free_vbuf(vgdev, vbuf);
221 }
222 while ((vbuf = virtqueue_detach_unused_buf(vgdev->cursorq.vq)))
223 free_vbuf(vgdev, vbuf);
224 }
225
reclaim_vbufs(struct virtqueue * vq,struct list_head * reclaim_list)226 static void reclaim_vbufs(struct virtqueue *vq, struct list_head *reclaim_list)
227 {
228 struct virtio_gpu_vbuffer *vbuf;
229 unsigned int len;
230 int freed = 0;
231
232 while ((vbuf = virtqueue_get_buf(vq, &len))) {
233 list_add_tail(&vbuf->list, reclaim_list);
234 freed++;
235 }
236 if (freed == 0)
237 DRM_DEBUG("Huh? zero vbufs reclaimed");
238 }
239
virtio_gpu_dequeue_ctrl_func(struct work_struct * work)240 void virtio_gpu_dequeue_ctrl_func(struct work_struct *work)
241 {
242 struct virtio_gpu_device *vgdev =
243 container_of(work, struct virtio_gpu_device,
244 ctrlq.dequeue_work);
245 struct list_head reclaim_list;
246 struct virtio_gpu_vbuffer *entry, *tmp;
247 struct virtio_gpu_ctrl_hdr *resp;
248 u64 fence_id;
249
250 INIT_LIST_HEAD(&reclaim_list);
251 spin_lock(&vgdev->ctrlq.qlock);
252 do {
253 virtqueue_disable_cb(vgdev->ctrlq.vq);
254 reclaim_vbufs(vgdev->ctrlq.vq, &reclaim_list);
255
256 } while (!virtqueue_enable_cb(vgdev->ctrlq.vq));
257 spin_unlock(&vgdev->ctrlq.qlock);
258
259 list_for_each_entry(entry, &reclaim_list, list) {
260 resp = (struct virtio_gpu_ctrl_hdr *)entry->resp_buf;
261
262 trace_virtio_gpu_cmd_response(vgdev->ctrlq.vq, resp, entry->seqno);
263
264 if (resp->type != cpu_to_le32(VIRTIO_GPU_RESP_OK_NODATA)) {
265 if (le32_to_cpu(resp->type) >= VIRTIO_GPU_RESP_ERR_UNSPEC) {
266 struct virtio_gpu_ctrl_hdr *cmd;
267
268 cmd = virtio_gpu_vbuf_ctrl_hdr(entry);
269 DRM_ERROR_RATELIMITED("response 0x%x (command 0x%x)\n",
270 le32_to_cpu(resp->type),
271 le32_to_cpu(cmd->type));
272 } else
273 DRM_DEBUG("response 0x%x\n", le32_to_cpu(resp->type));
274 }
275 if (resp->flags & cpu_to_le32(VIRTIO_GPU_FLAG_FENCE)) {
276 fence_id = le64_to_cpu(resp->fence_id);
277 virtio_gpu_fence_event_process(vgdev, fence_id);
278 }
279 if (entry->resp_cb)
280 entry->resp_cb(vgdev, entry);
281 }
282 wake_up(&vgdev->ctrlq.ack_queue);
283
284 list_for_each_entry_safe(entry, tmp, &reclaim_list, list) {
285 if (entry->objs)
286 virtio_gpu_array_put_free_delayed(vgdev, entry->objs);
287 list_del(&entry->list);
288 free_vbuf(vgdev, entry);
289 }
290 }
291
virtio_gpu_dequeue_cursor_func(struct work_struct * work)292 void virtio_gpu_dequeue_cursor_func(struct work_struct *work)
293 {
294 struct virtio_gpu_device *vgdev =
295 container_of(work, struct virtio_gpu_device,
296 cursorq.dequeue_work);
297 struct list_head reclaim_list;
298 struct virtio_gpu_vbuffer *entry, *tmp;
299
300 INIT_LIST_HEAD(&reclaim_list);
301 spin_lock(&vgdev->cursorq.qlock);
302 do {
303 virtqueue_disable_cb(vgdev->cursorq.vq);
304 reclaim_vbufs(vgdev->cursorq.vq, &reclaim_list);
305 } while (!virtqueue_enable_cb(vgdev->cursorq.vq));
306 spin_unlock(&vgdev->cursorq.qlock);
307
308 list_for_each_entry_safe(entry, tmp, &reclaim_list, list) {
309 struct virtio_gpu_ctrl_hdr *resp =
310 (struct virtio_gpu_ctrl_hdr *)entry->resp_buf;
311
312 trace_virtio_gpu_cmd_response(vgdev->cursorq.vq, resp, entry->seqno);
313 list_del(&entry->list);
314 free_vbuf(vgdev, entry);
315 }
316 wake_up(&vgdev->cursorq.ack_queue);
317 }
318
319 /* Create sg_table from a vmalloc'd buffer. */
vmalloc_to_sgt(char * data,uint32_t size,int * sg_ents)320 static struct sg_table *vmalloc_to_sgt(char *data, uint32_t size, int *sg_ents)
321 {
322 int ret, s, i;
323 struct sg_table *sgt;
324 struct scatterlist *sg;
325 struct page *pg;
326
327 if (WARN_ON(!PAGE_ALIGNED(data)))
328 return NULL;
329
330 sgt = kmalloc_obj(*sgt);
331 if (!sgt)
332 return NULL;
333
334 *sg_ents = DIV_ROUND_UP(size, PAGE_SIZE);
335 ret = sg_alloc_table(sgt, *sg_ents, GFP_KERNEL);
336 if (ret) {
337 kfree(sgt);
338 return NULL;
339 }
340
341 for_each_sgtable_sg(sgt, sg, i) {
342 pg = vmalloc_to_page(data);
343 if (!pg) {
344 sg_free_table(sgt);
345 kfree(sgt);
346 return NULL;
347 }
348
349 s = min_t(int, PAGE_SIZE, size);
350 sg_set_page(sg, pg, s, 0);
351
352 size -= s;
353 data += s;
354 }
355
356 return sgt;
357 }
358
359 /* For drm_panic */
virtio_gpu_panic_queue_ctrl_sgs(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf,int elemcnt,struct scatterlist ** sgs,int outcnt,int incnt)360 static int virtio_gpu_panic_queue_ctrl_sgs(struct virtio_gpu_device *vgdev,
361 struct virtio_gpu_vbuffer *vbuf,
362 int elemcnt,
363 struct scatterlist **sgs,
364 int outcnt,
365 int incnt)
366 {
367 struct virtqueue *vq = vgdev->ctrlq.vq;
368 int ret;
369
370 if (vgdev->has_indirect)
371 elemcnt = 1;
372
373 if (vq->num_free < elemcnt)
374 return -ENOMEM;
375
376 ret = virtqueue_add_sgs(vq, sgs, outcnt, incnt, vbuf, GFP_ATOMIC);
377 WARN_ON(ret);
378
379 vbuf->seqno = ++vgdev->ctrlq.seqno;
380 trace_virtio_gpu_cmd_queue(vq, virtio_gpu_vbuf_ctrl_hdr(vbuf), vbuf->seqno);
381
382 atomic_inc(&vgdev->pending_commands);
383
384 return 0;
385 }
386
virtio_gpu_wait_queue(struct virtio_gpu_queue * vgvq,unsigned int num_elem)387 int virtio_gpu_wait_queue(struct virtio_gpu_queue *vgvq, unsigned int num_elem)
388 {
389 int ret;
390
391 /* Wait up to 5 seconds for enough free slots to become available */
392 ret = wait_event_timeout(vgvq->ack_queue,
393 vgvq->vq->num_free >= num_elem,
394 5 * HZ);
395 if (ret == 0)
396 return -ETIMEDOUT;
397
398 return 0;
399 }
400
virtio_gpu_queue_ctrl_sgs(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf,struct virtio_gpu_fence * fence,int elemcnt,struct scatterlist ** sgs,int outcnt,int incnt)401 static int virtio_gpu_queue_ctrl_sgs(struct virtio_gpu_device *vgdev,
402 struct virtio_gpu_vbuffer *vbuf,
403 struct virtio_gpu_fence *fence,
404 int elemcnt,
405 struct scatterlist **sgs,
406 int outcnt,
407 int incnt)
408 {
409 struct virtqueue *vq = vgdev->ctrlq.vq;
410 int ret, idx;
411
412 if (!drm_dev_enter(vgdev->ddev, &idx)) {
413 if (fence && vbuf->objs)
414 virtio_gpu_array_unlock_resv(vbuf->objs);
415 free_vbuf(vgdev, vbuf);
416 return -ENODEV;
417 }
418
419 if (vgdev->has_indirect)
420 elemcnt = 1;
421
422 again:
423 spin_lock(&vgdev->ctrlq.qlock);
424
425 if (vq->num_free < elemcnt) {
426 spin_unlock(&vgdev->ctrlq.qlock);
427 virtio_gpu_notify(vgdev);
428 wait_event(vgdev->ctrlq.ack_queue,
429 vq->num_free >= elemcnt || vgdev->vqs_released);
430 /*
431 * Set by virtio_gpu_release_vqs() to unblock
432 * synchronize_srcu() wait in drm_dev_unplug().
433 */
434 if (vgdev->vqs_released) {
435 if (fence && vbuf->objs)
436 virtio_gpu_array_unlock_resv(vbuf->objs);
437 free_vbuf(vgdev, vbuf);
438 drm_dev_exit(idx);
439 return -ENODEV;
440 }
441 goto again;
442 }
443
444 /* now that the position of the vbuf in the virtqueue is known, we can
445 * finally set the fence id
446 */
447 if (fence) {
448 virtio_gpu_fence_emit(vgdev, virtio_gpu_vbuf_ctrl_hdr(vbuf),
449 fence);
450 if (vbuf->objs) {
451 virtio_gpu_array_add_fence(vbuf->objs, &fence->f);
452 virtio_gpu_array_unlock_resv(vbuf->objs);
453 }
454 }
455
456 ret = virtqueue_add_sgs(vq, sgs, outcnt, incnt, vbuf, GFP_ATOMIC);
457 WARN_ON(ret);
458
459 vbuf->seqno = ++vgdev->ctrlq.seqno;
460 trace_virtio_gpu_cmd_queue(vq, virtio_gpu_vbuf_ctrl_hdr(vbuf), vbuf->seqno);
461
462 atomic_inc(&vgdev->pending_commands);
463
464 spin_unlock(&vgdev->ctrlq.qlock);
465
466 drm_dev_exit(idx);
467 return 0;
468 }
469
470 /* For drm_panic */
virtio_gpu_panic_queue_ctrl_buffer(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)471 static int virtio_gpu_panic_queue_ctrl_buffer(struct virtio_gpu_device *vgdev,
472 struct virtio_gpu_vbuffer *vbuf)
473 {
474 struct scatterlist *sgs[3], vcmd, vresp;
475 int elemcnt = 0, outcnt = 0, incnt = 0;
476
477 /* set up vcmd */
478 sg_init_one(&vcmd, vbuf->buf, vbuf->size);
479 elemcnt++;
480 sgs[outcnt] = &vcmd;
481 outcnt++;
482
483 /* set up vresp */
484 if (vbuf->resp_size) {
485 sg_init_one(&vresp, vbuf->resp_buf, vbuf->resp_size);
486 elemcnt++;
487 sgs[outcnt + incnt] = &vresp;
488 incnt++;
489 }
490
491 return virtio_gpu_panic_queue_ctrl_sgs(vgdev, vbuf,
492 elemcnt, sgs,
493 outcnt, incnt);
494 }
495
virtio_gpu_queue_fenced_ctrl_buffer(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf,struct virtio_gpu_fence * fence)496 static int virtio_gpu_queue_fenced_ctrl_buffer(struct virtio_gpu_device *vgdev,
497 struct virtio_gpu_vbuffer *vbuf,
498 struct virtio_gpu_fence *fence)
499 {
500 struct scatterlist *sgs[3], vcmd, vout, vresp;
501 struct sg_table *sgt = NULL;
502 int elemcnt = 0, outcnt = 0, incnt = 0, ret;
503
504 /* set up vcmd */
505 sg_init_one(&vcmd, vbuf->buf, vbuf->size);
506 elemcnt++;
507 sgs[outcnt] = &vcmd;
508 outcnt++;
509
510 /* set up vout */
511 if (vbuf->data_size) {
512 if (is_vmalloc_addr(vbuf->data_buf)) {
513 int sg_ents;
514
515 sgt = vmalloc_to_sgt(vbuf->data_buf, vbuf->data_size,
516 &sg_ents);
517 if (!sgt) {
518 if (fence && vbuf->objs)
519 virtio_gpu_array_unlock_resv(vbuf->objs);
520 return -ENOMEM;
521 }
522
523 elemcnt += sg_ents;
524 sgs[outcnt] = sgt->sgl;
525 } else {
526 sg_init_one(&vout, vbuf->data_buf, vbuf->data_size);
527 elemcnt++;
528 sgs[outcnt] = &vout;
529 }
530 outcnt++;
531 }
532
533 /* set up vresp */
534 if (vbuf->resp_size) {
535 sg_init_one(&vresp, vbuf->resp_buf, vbuf->resp_size);
536 elemcnt++;
537 sgs[outcnt + incnt] = &vresp;
538 incnt++;
539 }
540
541 ret = virtio_gpu_queue_ctrl_sgs(vgdev, vbuf, fence, elemcnt, sgs, outcnt,
542 incnt);
543
544 if (sgt) {
545 sg_free_table(sgt);
546 kfree(sgt);
547 }
548 return ret;
549 }
550
551 /* For drm_panic */
virtio_gpu_panic_notify(struct virtio_gpu_device * vgdev)552 void virtio_gpu_panic_notify(struct virtio_gpu_device *vgdev)
553 {
554 bool notify;
555
556 if (!atomic_read(&vgdev->pending_commands))
557 return;
558
559 atomic_set(&vgdev->pending_commands, 0);
560 notify = virtqueue_kick_prepare(vgdev->ctrlq.vq);
561
562 if (notify)
563 virtqueue_notify(vgdev->ctrlq.vq);
564 }
565
virtio_gpu_notify(struct virtio_gpu_device * vgdev)566 void virtio_gpu_notify(struct virtio_gpu_device *vgdev)
567 {
568 bool notify;
569
570 if (!atomic_read(&vgdev->pending_commands))
571 return;
572
573 spin_lock(&vgdev->ctrlq.qlock);
574 atomic_set(&vgdev->pending_commands, 0);
575 notify = virtqueue_kick_prepare(vgdev->ctrlq.vq);
576 spin_unlock(&vgdev->ctrlq.qlock);
577
578 if (notify)
579 virtqueue_notify(vgdev->ctrlq.vq);
580 }
581
virtio_gpu_queue_ctrl_buffer(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)582 static int virtio_gpu_queue_ctrl_buffer(struct virtio_gpu_device *vgdev,
583 struct virtio_gpu_vbuffer *vbuf)
584 {
585 return virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, NULL);
586 }
587
virtio_gpu_queue_cursor(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)588 static void virtio_gpu_queue_cursor(struct virtio_gpu_device *vgdev,
589 struct virtio_gpu_vbuffer *vbuf)
590 {
591 struct virtqueue *vq = vgdev->cursorq.vq;
592 struct scatterlist *sgs[1], ccmd;
593 int idx, ret, outcnt;
594 bool notify;
595
596 if (!drm_dev_enter(vgdev->ddev, &idx)) {
597 free_vbuf(vgdev, vbuf);
598 return;
599 }
600
601 sg_init_one(&ccmd, vbuf->buf, vbuf->size);
602 sgs[0] = &ccmd;
603 outcnt = 1;
604
605 spin_lock(&vgdev->cursorq.qlock);
606 retry:
607 ret = virtqueue_add_sgs(vq, sgs, outcnt, 0, vbuf, GFP_ATOMIC);
608 if (ret == -ENOSPC) {
609 spin_unlock(&vgdev->cursorq.qlock);
610 wait_event(vgdev->cursorq.ack_queue,
611 vq->num_free >= outcnt || vgdev->vqs_released);
612 /* See comment in virtio_gpu_queue_ctrl_sgs(). */
613 if (vgdev->vqs_released) {
614 free_vbuf(vgdev, vbuf);
615 drm_dev_exit(idx);
616 return;
617 }
618 spin_lock(&vgdev->cursorq.qlock);
619 goto retry;
620 } else {
621 vbuf->seqno = ++vgdev->cursorq.seqno;
622 trace_virtio_gpu_cmd_queue(vq,
623 virtio_gpu_vbuf_ctrl_hdr(vbuf),
624 vbuf->seqno);
625
626 notify = virtqueue_kick_prepare(vq);
627 }
628
629 spin_unlock(&vgdev->cursorq.qlock);
630
631 if (notify)
632 virtqueue_notify(vq);
633
634 drm_dev_exit(idx);
635 }
636
637 /* just create gem objects for userspace and long lived objects,
638 * just use dma_alloced pages for the queue objects?
639 */
640
641 /* create a basic resource */
virtio_gpu_cmd_create_resource(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * bo,struct virtio_gpu_object_params * params,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)642 void virtio_gpu_cmd_create_resource(struct virtio_gpu_device *vgdev,
643 struct virtio_gpu_object *bo,
644 struct virtio_gpu_object_params *params,
645 struct virtio_gpu_object_array *objs,
646 struct virtio_gpu_fence *fence)
647 {
648 struct virtio_gpu_resource_create_2d *cmd_p;
649 struct virtio_gpu_vbuffer *vbuf;
650
651 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
652 memset(cmd_p, 0, sizeof(*cmd_p));
653 vbuf->objs = objs;
654
655 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_CREATE_2D);
656 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
657 cmd_p->format = cpu_to_le32(params->format);
658 cmd_p->width = cpu_to_le32(params->width);
659 cmd_p->height = cpu_to_le32(params->height);
660
661 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
662 bo->created = true;
663 }
664
virtio_gpu_cmd_unref_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)665 static void virtio_gpu_cmd_unref_cb(struct virtio_gpu_device *vgdev,
666 struct virtio_gpu_vbuffer *vbuf)
667 {
668 struct virtio_gpu_object *bo;
669
670 bo = vbuf->resp_cb_data;
671 vbuf->resp_cb_data = NULL;
672
673 virtio_gpu_cleanup_object(bo);
674 }
675
virtio_gpu_cmd_unref_resource(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * bo,bool no_cb)676 void virtio_gpu_cmd_unref_resource(struct virtio_gpu_device *vgdev,
677 struct virtio_gpu_object *bo,
678 bool no_cb)
679 {
680 struct virtio_gpu_resource_unref *cmd_p;
681 struct virtio_gpu_vbuffer *vbuf;
682 int ret;
683
684 if (no_cb) {
685 cmd_p = virtio_gpu_alloc_cmd_cb(vgdev, &vbuf, sizeof(*cmd_p),
686 NULL);
687 } else {
688 cmd_p = virtio_gpu_alloc_cmd_cb(vgdev, &vbuf, sizeof(*cmd_p),
689 virtio_gpu_cmd_unref_cb);
690 }
691
692 memset(cmd_p, 0, sizeof(*cmd_p));
693
694 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_UNREF);
695 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
696
697 vbuf->resp_cb_data = bo;
698 ret = virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
699 if (ret < 0)
700 virtio_gpu_cleanup_object(bo);
701 }
702
virtio_gpu_cmd_set_scanout(struct virtio_gpu_device * vgdev,uint32_t scanout_id,uint32_t resource_id,uint32_t width,uint32_t height,uint32_t x,uint32_t y)703 void virtio_gpu_cmd_set_scanout(struct virtio_gpu_device *vgdev,
704 uint32_t scanout_id, uint32_t resource_id,
705 uint32_t width, uint32_t height,
706 uint32_t x, uint32_t y)
707 {
708 struct virtio_gpu_set_scanout *cmd_p;
709 struct virtio_gpu_vbuffer *vbuf;
710
711 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
712 memset(cmd_p, 0, sizeof(*cmd_p));
713
714 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_SET_SCANOUT);
715 cmd_p->resource_id = cpu_to_le32(resource_id);
716 cmd_p->scanout_id = cpu_to_le32(scanout_id);
717 cmd_p->r.width = cpu_to_le32(width);
718 cmd_p->r.height = cpu_to_le32(height);
719 cmd_p->r.x = cpu_to_le32(x);
720 cmd_p->r.y = cpu_to_le32(y);
721
722 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
723 }
724
725 /* For drm_panic */
virtio_gpu_panic_cmd_resource_flush(struct virtio_gpu_device * vgdev,uint32_t resource_id,uint32_t x,uint32_t y,uint32_t width,uint32_t height)726 void virtio_gpu_panic_cmd_resource_flush(struct virtio_gpu_device *vgdev,
727 uint32_t resource_id,
728 uint32_t x, uint32_t y,
729 uint32_t width, uint32_t height)
730 {
731 struct virtio_gpu_resource_flush *cmd_p;
732 struct virtio_gpu_vbuffer *vbuf;
733
734 cmd_p = virtio_gpu_panic_alloc_cmd_resp(vgdev, &vbuf, sizeof(*cmd_p));
735 memset(cmd_p, 0, sizeof(*cmd_p));
736 vbuf->objs = NULL;
737
738 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_FLUSH);
739 cmd_p->resource_id = cpu_to_le32(resource_id);
740 cmd_p->r.width = cpu_to_le32(width);
741 cmd_p->r.height = cpu_to_le32(height);
742 cmd_p->r.x = cpu_to_le32(x);
743 cmd_p->r.y = cpu_to_le32(y);
744
745 virtio_gpu_panic_queue_ctrl_buffer(vgdev, vbuf);
746 }
747
virtio_gpu_cmd_resource_flush(struct virtio_gpu_device * vgdev,uint32_t resource_id,uint32_t x,uint32_t y,uint32_t width,uint32_t height,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)748 void virtio_gpu_cmd_resource_flush(struct virtio_gpu_device *vgdev,
749 uint32_t resource_id,
750 uint32_t x, uint32_t y,
751 uint32_t width, uint32_t height,
752 struct virtio_gpu_object_array *objs,
753 struct virtio_gpu_fence *fence)
754 {
755 struct virtio_gpu_resource_flush *cmd_p;
756 struct virtio_gpu_vbuffer *vbuf;
757
758 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
759 memset(cmd_p, 0, sizeof(*cmd_p));
760 vbuf->objs = objs;
761
762 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_FLUSH);
763 cmd_p->resource_id = cpu_to_le32(resource_id);
764 cmd_p->r.width = cpu_to_le32(width);
765 cmd_p->r.height = cpu_to_le32(height);
766 cmd_p->r.x = cpu_to_le32(x);
767 cmd_p->r.y = cpu_to_le32(y);
768
769 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
770 }
771
772 /* For drm_panic */
virtio_gpu_panic_cmd_transfer_to_host_2d(struct virtio_gpu_device * vgdev,uint64_t offset,uint32_t width,uint32_t height,uint32_t x,uint32_t y,struct virtio_gpu_object_array * objs)773 int virtio_gpu_panic_cmd_transfer_to_host_2d(struct virtio_gpu_device *vgdev,
774 uint64_t offset,
775 uint32_t width, uint32_t height,
776 uint32_t x, uint32_t y,
777 struct virtio_gpu_object_array *objs)
778 {
779 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
780 struct virtio_gpu_transfer_to_host_2d *cmd_p;
781 struct virtio_gpu_vbuffer *vbuf;
782 bool use_dma_api = virtio_gpu_use_dma_api(vgdev->vdev);
783
784 if (virtio_gpu_is_shmem(bo) && use_dma_api)
785 dma_sync_sgtable_for_device(vgdev->vdev->dev.parent,
786 bo->base.sgt, DMA_TO_DEVICE);
787
788 cmd_p = virtio_gpu_panic_alloc_cmd_resp(vgdev, &vbuf, sizeof(*cmd_p));
789 memset(cmd_p, 0, sizeof(*cmd_p));
790 vbuf->objs = objs;
791
792 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_TRANSFER_TO_HOST_2D);
793 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
794 cmd_p->offset = cpu_to_le64(offset);
795 cmd_p->r.width = cpu_to_le32(width);
796 cmd_p->r.height = cpu_to_le32(height);
797 cmd_p->r.x = cpu_to_le32(x);
798 cmd_p->r.y = cpu_to_le32(y);
799
800 return virtio_gpu_panic_queue_ctrl_buffer(vgdev, vbuf);
801 }
802
virtio_gpu_cmd_transfer_to_host_2d(struct virtio_gpu_device * vgdev,uint64_t offset,uint32_t width,uint32_t height,uint32_t x,uint32_t y,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)803 void virtio_gpu_cmd_transfer_to_host_2d(struct virtio_gpu_device *vgdev,
804 uint64_t offset,
805 uint32_t width, uint32_t height,
806 uint32_t x, uint32_t y,
807 struct virtio_gpu_object_array *objs,
808 struct virtio_gpu_fence *fence)
809 {
810 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
811 struct virtio_gpu_transfer_to_host_2d *cmd_p;
812 struct virtio_gpu_vbuffer *vbuf;
813 bool use_dma_api = virtio_gpu_use_dma_api(vgdev->vdev);
814
815 if (virtio_gpu_is_shmem(bo) && use_dma_api)
816 dma_sync_sgtable_for_device(vgdev->vdev->dev.parent,
817 bo->base.sgt, DMA_TO_DEVICE);
818
819 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
820 memset(cmd_p, 0, sizeof(*cmd_p));
821 vbuf->objs = objs;
822
823 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_TRANSFER_TO_HOST_2D);
824 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
825 cmd_p->offset = cpu_to_le64(offset);
826 cmd_p->r.width = cpu_to_le32(width);
827 cmd_p->r.height = cpu_to_le32(height);
828 cmd_p->r.x = cpu_to_le32(x);
829 cmd_p->r.y = cpu_to_le32(y);
830
831 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
832 }
833
834 static void
virtio_gpu_cmd_resource_attach_backing(struct virtio_gpu_device * vgdev,uint32_t resource_id,struct virtio_gpu_mem_entry * ents,uint32_t nents,struct virtio_gpu_fence * fence)835 virtio_gpu_cmd_resource_attach_backing(struct virtio_gpu_device *vgdev,
836 uint32_t resource_id,
837 struct virtio_gpu_mem_entry *ents,
838 uint32_t nents,
839 struct virtio_gpu_fence *fence)
840 {
841 struct virtio_gpu_resource_attach_backing *cmd_p;
842 struct virtio_gpu_vbuffer *vbuf;
843
844 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
845 memset(cmd_p, 0, sizeof(*cmd_p));
846
847 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_ATTACH_BACKING);
848 cmd_p->resource_id = cpu_to_le32(resource_id);
849 cmd_p->nr_entries = cpu_to_le32(nents);
850
851 vbuf->data_buf = ents;
852 vbuf->data_size = sizeof(*ents) * nents;
853
854 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
855 }
856
857 static void
virtio_gpu_cmd_resource_detach_backing(struct virtio_gpu_device * vgdev,uint32_t resource_id,struct virtio_gpu_fence * fence)858 virtio_gpu_cmd_resource_detach_backing(struct virtio_gpu_device *vgdev,
859 uint32_t resource_id,
860 struct virtio_gpu_fence *fence)
861 {
862 struct virtio_gpu_resource_detach_backing *cmd_p;
863 struct virtio_gpu_vbuffer *vbuf;
864
865 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
866 memset(cmd_p, 0, sizeof(*cmd_p));
867
868 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_DETACH_BACKING);
869 cmd_p->resource_id = cpu_to_le32(resource_id);
870
871 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
872 }
873
virtio_gpu_cmd_get_display_info_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)874 static void virtio_gpu_cmd_get_display_info_cb(struct virtio_gpu_device *vgdev,
875 struct virtio_gpu_vbuffer *vbuf)
876 {
877 struct virtio_gpu_resp_display_info *resp =
878 (struct virtio_gpu_resp_display_info *)vbuf->resp_buf;
879 int i;
880
881 spin_lock(&vgdev->display_info_lock);
882 for (i = 0; i < vgdev->num_scanouts; i++) {
883 vgdev->outputs[i].info = resp->pmodes[i];
884 if (resp->pmodes[i].enabled) {
885 DRM_DEBUG("output %d: %dx%d+%d+%d", i,
886 le32_to_cpu(resp->pmodes[i].r.width),
887 le32_to_cpu(resp->pmodes[i].r.height),
888 le32_to_cpu(resp->pmodes[i].r.x),
889 le32_to_cpu(resp->pmodes[i].r.y));
890 } else {
891 DRM_DEBUG("output %d: disabled", i);
892 }
893 }
894
895 vgdev->display_info_pending = false;
896 spin_unlock(&vgdev->display_info_lock);
897 wake_up(&vgdev->resp_wq);
898 }
899
virtio_gpu_cmd_get_capset_info_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)900 static void virtio_gpu_cmd_get_capset_info_cb(struct virtio_gpu_device *vgdev,
901 struct virtio_gpu_vbuffer *vbuf)
902 {
903 struct virtio_gpu_get_capset_info *cmd =
904 (struct virtio_gpu_get_capset_info *)vbuf->buf;
905 struct virtio_gpu_resp_capset_info *resp =
906 (struct virtio_gpu_resp_capset_info *)vbuf->resp_buf;
907 int i = le32_to_cpu(cmd->capset_index);
908
909 spin_lock(&vgdev->display_info_lock);
910 if (vgdev->capsets) {
911 vgdev->capsets[i].id = le32_to_cpu(resp->capset_id);
912 vgdev->capsets[i].max_version = le32_to_cpu(resp->capset_max_version);
913 vgdev->capsets[i].max_size = le32_to_cpu(resp->capset_max_size);
914 } else {
915 DRM_ERROR("invalid capset memory.");
916 }
917 spin_unlock(&vgdev->display_info_lock);
918 wake_up(&vgdev->resp_wq);
919 }
920
virtio_gpu_cmd_capset_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)921 static void virtio_gpu_cmd_capset_cb(struct virtio_gpu_device *vgdev,
922 struct virtio_gpu_vbuffer *vbuf)
923 {
924 struct virtio_gpu_get_capset *cmd =
925 (struct virtio_gpu_get_capset *)vbuf->buf;
926 struct virtio_gpu_resp_capset *resp =
927 (struct virtio_gpu_resp_capset *)vbuf->resp_buf;
928 struct virtio_gpu_drv_cap_cache *cache_ent;
929
930 spin_lock(&vgdev->display_info_lock);
931 list_for_each_entry(cache_ent, &vgdev->cap_cache, head) {
932 if (cache_ent->version == le32_to_cpu(cmd->capset_version) &&
933 cache_ent->id == le32_to_cpu(cmd->capset_id)) {
934 memcpy(cache_ent->caps_cache, resp->capset_data,
935 cache_ent->size);
936 /* Copy must occur before is_valid is signalled. */
937 smp_wmb();
938 atomic_set(&cache_ent->is_valid, 1);
939 break;
940 }
941 }
942 spin_unlock(&vgdev->display_info_lock);
943 wake_up_all(&vgdev->resp_wq);
944 }
945
virtio_get_edid_block(void * data,u8 * buf,unsigned int block,size_t len)946 static int virtio_get_edid_block(void *data, u8 *buf,
947 unsigned int block, size_t len)
948 {
949 struct virtio_gpu_resp_edid *resp = data;
950 size_t start = block * EDID_LENGTH;
951
952 if (start + len > le32_to_cpu(resp->size) ||
953 start + len > sizeof(resp->edid))
954 return -EINVAL;
955 memcpy(buf, resp->edid + start, len);
956 return 0;
957 }
958
virtio_gpu_cmd_get_edid_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)959 static void virtio_gpu_cmd_get_edid_cb(struct virtio_gpu_device *vgdev,
960 struct virtio_gpu_vbuffer *vbuf)
961 {
962 struct virtio_gpu_cmd_get_edid *cmd =
963 (struct virtio_gpu_cmd_get_edid *)vbuf->buf;
964 struct virtio_gpu_resp_edid *resp =
965 (struct virtio_gpu_resp_edid *)vbuf->resp_buf;
966 uint32_t scanout = le32_to_cpu(cmd->scanout);
967 struct virtio_gpu_output *output;
968 const struct drm_edid *new_edid, *old_edid;
969
970 if (scanout >= vgdev->num_scanouts)
971 return;
972 output = vgdev->outputs + scanout;
973
974 new_edid = drm_edid_read_custom(&output->conn, virtio_get_edid_block, resp);
975 drm_edid_connector_update(&output->conn, new_edid);
976
977 spin_lock(&vgdev->display_info_lock);
978 old_edid = output->drm_edid;
979 output->drm_edid = new_edid;
980 spin_unlock(&vgdev->display_info_lock);
981
982 drm_edid_free(old_edid);
983 wake_up(&vgdev->resp_wq);
984 }
985
virtio_gpu_cmd_get_display_info(struct virtio_gpu_device * vgdev)986 int virtio_gpu_cmd_get_display_info(struct virtio_gpu_device *vgdev)
987 {
988 struct virtio_gpu_ctrl_hdr *cmd_p;
989 struct virtio_gpu_vbuffer *vbuf;
990 void *resp_buf;
991
992 resp_buf = kzalloc_obj(struct virtio_gpu_resp_display_info);
993 if (!resp_buf)
994 return -ENOMEM;
995
996 cmd_p = virtio_gpu_alloc_cmd_resp
997 (vgdev, &virtio_gpu_cmd_get_display_info_cb, &vbuf,
998 sizeof(*cmd_p), sizeof(struct virtio_gpu_resp_display_info),
999 resp_buf);
1000 memset(cmd_p, 0, sizeof(*cmd_p));
1001
1002 vgdev->display_info_pending = true;
1003 cmd_p->type = cpu_to_le32(VIRTIO_GPU_CMD_GET_DISPLAY_INFO);
1004 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1005 return 0;
1006 }
1007
virtio_gpu_cmd_get_capset_info(struct virtio_gpu_device * vgdev,int idx)1008 int virtio_gpu_cmd_get_capset_info(struct virtio_gpu_device *vgdev, int idx)
1009 {
1010 struct virtio_gpu_get_capset_info *cmd_p;
1011 struct virtio_gpu_vbuffer *vbuf;
1012 void *resp_buf;
1013
1014 resp_buf = kzalloc_obj(struct virtio_gpu_resp_capset_info);
1015 if (!resp_buf)
1016 return -ENOMEM;
1017
1018 cmd_p = virtio_gpu_alloc_cmd_resp
1019 (vgdev, &virtio_gpu_cmd_get_capset_info_cb, &vbuf,
1020 sizeof(*cmd_p), sizeof(struct virtio_gpu_resp_capset_info),
1021 resp_buf);
1022 memset(cmd_p, 0, sizeof(*cmd_p));
1023
1024 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_GET_CAPSET_INFO);
1025 cmd_p->capset_index = cpu_to_le32(idx);
1026 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1027 return 0;
1028 }
1029
virtio_gpu_cmd_get_capset(struct virtio_gpu_device * vgdev,int idx,int version,struct virtio_gpu_drv_cap_cache ** cache_p)1030 int virtio_gpu_cmd_get_capset(struct virtio_gpu_device *vgdev,
1031 int idx, int version,
1032 struct virtio_gpu_drv_cap_cache **cache_p)
1033 {
1034 struct virtio_gpu_get_capset *cmd_p;
1035 struct virtio_gpu_vbuffer *vbuf;
1036 int max_size;
1037 struct virtio_gpu_drv_cap_cache *cache_ent;
1038 struct virtio_gpu_drv_cap_cache *search_ent;
1039 void *resp_buf;
1040
1041 *cache_p = NULL;
1042
1043 if (idx >= vgdev->num_capsets)
1044 return -EINVAL;
1045
1046 if (version > vgdev->capsets[idx].max_version)
1047 return -EINVAL;
1048
1049 cache_ent = kzalloc_obj(*cache_ent);
1050 if (!cache_ent)
1051 return -ENOMEM;
1052
1053 max_size = vgdev->capsets[idx].max_size;
1054 cache_ent->caps_cache = kmalloc(max_size, GFP_KERNEL);
1055 if (!cache_ent->caps_cache) {
1056 kfree(cache_ent);
1057 return -ENOMEM;
1058 }
1059
1060 resp_buf = kzalloc(sizeof(struct virtio_gpu_resp_capset) + max_size,
1061 GFP_KERNEL);
1062 if (!resp_buf) {
1063 kfree(cache_ent->caps_cache);
1064 kfree(cache_ent);
1065 return -ENOMEM;
1066 }
1067
1068 cache_ent->version = version;
1069 cache_ent->id = vgdev->capsets[idx].id;
1070 atomic_set(&cache_ent->is_valid, 0);
1071 cache_ent->size = max_size;
1072 spin_lock(&vgdev->display_info_lock);
1073 /* Search while under lock in case it was added by another task. */
1074 list_for_each_entry(search_ent, &vgdev->cap_cache, head) {
1075 if (search_ent->id == vgdev->capsets[idx].id &&
1076 search_ent->version == version) {
1077 *cache_p = search_ent;
1078 break;
1079 }
1080 }
1081 if (!*cache_p)
1082 list_add_tail(&cache_ent->head, &vgdev->cap_cache);
1083 spin_unlock(&vgdev->display_info_lock);
1084
1085 if (*cache_p) {
1086 /* Entry was found, so free everything that was just created. */
1087 kfree(resp_buf);
1088 kfree(cache_ent->caps_cache);
1089 kfree(cache_ent);
1090 return 0;
1091 }
1092
1093 cmd_p = virtio_gpu_alloc_cmd_resp
1094 (vgdev, &virtio_gpu_cmd_capset_cb, &vbuf, sizeof(*cmd_p),
1095 sizeof(struct virtio_gpu_resp_capset) + max_size,
1096 resp_buf);
1097 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_GET_CAPSET);
1098 cmd_p->capset_id = cpu_to_le32(vgdev->capsets[idx].id);
1099 cmd_p->capset_version = cpu_to_le32(version);
1100 *cache_p = cache_ent;
1101 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1102
1103 return 0;
1104 }
1105
virtio_gpu_cmd_get_edids(struct virtio_gpu_device * vgdev)1106 int virtio_gpu_cmd_get_edids(struct virtio_gpu_device *vgdev)
1107 {
1108 struct virtio_gpu_cmd_get_edid *cmd_p;
1109 struct virtio_gpu_vbuffer *vbuf;
1110 void *resp_buf;
1111 int scanout;
1112
1113 if (WARN_ON(!vgdev->has_edid))
1114 return -EINVAL;
1115
1116 for (scanout = 0; scanout < vgdev->num_scanouts; scanout++) {
1117 resp_buf = kzalloc_obj(struct virtio_gpu_resp_edid);
1118 if (!resp_buf)
1119 return -ENOMEM;
1120
1121 cmd_p = virtio_gpu_alloc_cmd_resp
1122 (vgdev, &virtio_gpu_cmd_get_edid_cb, &vbuf,
1123 sizeof(*cmd_p), sizeof(struct virtio_gpu_resp_edid),
1124 resp_buf);
1125 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_GET_EDID);
1126 cmd_p->scanout = cpu_to_le32(scanout);
1127 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1128 }
1129
1130 return 0;
1131 }
1132
virtio_gpu_cmd_context_create(struct virtio_gpu_device * vgdev,uint32_t id,uint32_t context_init,uint32_t nlen,const char * name)1133 void virtio_gpu_cmd_context_create(struct virtio_gpu_device *vgdev, uint32_t id,
1134 uint32_t context_init, uint32_t nlen,
1135 const char *name)
1136 {
1137 struct virtio_gpu_ctx_create *cmd_p;
1138 struct virtio_gpu_vbuffer *vbuf;
1139
1140 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1141 memset(cmd_p, 0, sizeof(*cmd_p));
1142
1143 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_CTX_CREATE);
1144 cmd_p->hdr.ctx_id = cpu_to_le32(id);
1145 cmd_p->nlen = cpu_to_le32(nlen);
1146 cmd_p->context_init = cpu_to_le32(context_init);
1147 strscpy(cmd_p->debug_name, name, sizeof(cmd_p->debug_name));
1148 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1149 }
1150
virtio_gpu_cmd_context_destroy(struct virtio_gpu_device * vgdev,uint32_t id)1151 void virtio_gpu_cmd_context_destroy(struct virtio_gpu_device *vgdev,
1152 uint32_t id)
1153 {
1154 struct virtio_gpu_ctx_destroy *cmd_p;
1155 struct virtio_gpu_vbuffer *vbuf;
1156
1157 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1158 memset(cmd_p, 0, sizeof(*cmd_p));
1159
1160 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_CTX_DESTROY);
1161 cmd_p->hdr.ctx_id = cpu_to_le32(id);
1162 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1163 }
1164
virtio_gpu_cmd_context_attach_resource(struct virtio_gpu_device * vgdev,uint32_t ctx_id,struct virtio_gpu_object_array * objs)1165 void virtio_gpu_cmd_context_attach_resource(struct virtio_gpu_device *vgdev,
1166 uint32_t ctx_id,
1167 struct virtio_gpu_object_array *objs)
1168 {
1169 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1170 struct virtio_gpu_ctx_resource *cmd_p;
1171 struct virtio_gpu_vbuffer *vbuf;
1172
1173 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1174 memset(cmd_p, 0, sizeof(*cmd_p));
1175 vbuf->objs = objs;
1176
1177 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_CTX_ATTACH_RESOURCE);
1178 cmd_p->hdr.ctx_id = cpu_to_le32(ctx_id);
1179 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1180 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1181 }
1182
virtio_gpu_cmd_context_detach_resource(struct virtio_gpu_device * vgdev,uint32_t ctx_id,struct virtio_gpu_object_array * objs)1183 void virtio_gpu_cmd_context_detach_resource(struct virtio_gpu_device *vgdev,
1184 uint32_t ctx_id,
1185 struct virtio_gpu_object_array *objs)
1186 {
1187 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1188 struct virtio_gpu_ctx_resource *cmd_p;
1189 struct virtio_gpu_vbuffer *vbuf;
1190
1191 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1192 memset(cmd_p, 0, sizeof(*cmd_p));
1193 vbuf->objs = objs;
1194
1195 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_CTX_DETACH_RESOURCE);
1196 cmd_p->hdr.ctx_id = cpu_to_le32(ctx_id);
1197 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1198 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1199 }
1200
1201 void
virtio_gpu_cmd_resource_create_3d(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * bo,struct virtio_gpu_object_params * params,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)1202 virtio_gpu_cmd_resource_create_3d(struct virtio_gpu_device *vgdev,
1203 struct virtio_gpu_object *bo,
1204 struct virtio_gpu_object_params *params,
1205 struct virtio_gpu_object_array *objs,
1206 struct virtio_gpu_fence *fence)
1207 {
1208 struct virtio_gpu_resource_create_3d *cmd_p;
1209 struct virtio_gpu_vbuffer *vbuf;
1210
1211 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1212 memset(cmd_p, 0, sizeof(*cmd_p));
1213 vbuf->objs = objs;
1214
1215 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_CREATE_3D);
1216 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1217 cmd_p->format = cpu_to_le32(params->format);
1218 cmd_p->width = cpu_to_le32(params->width);
1219 cmd_p->height = cpu_to_le32(params->height);
1220
1221 cmd_p->target = cpu_to_le32(params->target);
1222 cmd_p->bind = cpu_to_le32(params->bind);
1223 cmd_p->depth = cpu_to_le32(params->depth);
1224 cmd_p->array_size = cpu_to_le32(params->array_size);
1225 cmd_p->last_level = cpu_to_le32(params->last_level);
1226 cmd_p->nr_samples = cpu_to_le32(params->nr_samples);
1227 cmd_p->flags = cpu_to_le32(params->flags);
1228
1229 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
1230
1231 bo->created = true;
1232 }
1233
virtio_gpu_cmd_transfer_to_host_3d(struct virtio_gpu_device * vgdev,uint32_t ctx_id,uint64_t offset,uint32_t level,uint32_t stride,uint32_t layer_stride,struct drm_virtgpu_3d_box * box,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)1234 void virtio_gpu_cmd_transfer_to_host_3d(struct virtio_gpu_device *vgdev,
1235 uint32_t ctx_id,
1236 uint64_t offset, uint32_t level,
1237 uint32_t stride,
1238 uint32_t layer_stride,
1239 struct drm_virtgpu_3d_box *box,
1240 struct virtio_gpu_object_array *objs,
1241 struct virtio_gpu_fence *fence)
1242 {
1243 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1244 struct virtio_gpu_transfer_host_3d *cmd_p;
1245 struct virtio_gpu_vbuffer *vbuf;
1246 bool use_dma_api = virtio_gpu_use_dma_api(vgdev->vdev);
1247
1248 if (virtio_gpu_is_shmem(bo) && use_dma_api)
1249 dma_sync_sgtable_for_device(vgdev->vdev->dev.parent,
1250 bo->base.sgt, DMA_TO_DEVICE);
1251
1252 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1253 memset(cmd_p, 0, sizeof(*cmd_p));
1254
1255 vbuf->objs = objs;
1256
1257 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_TRANSFER_TO_HOST_3D);
1258 cmd_p->hdr.ctx_id = cpu_to_le32(ctx_id);
1259 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1260 convert_to_hw_box(&cmd_p->box, box);
1261 cmd_p->offset = cpu_to_le64(offset);
1262 cmd_p->level = cpu_to_le32(level);
1263 cmd_p->stride = cpu_to_le32(stride);
1264 cmd_p->layer_stride = cpu_to_le32(layer_stride);
1265
1266 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
1267 }
1268
virtio_gpu_cmd_transfer_from_host_3d(struct virtio_gpu_device * vgdev,uint32_t ctx_id,uint64_t offset,uint32_t level,uint32_t stride,uint32_t layer_stride,struct drm_virtgpu_3d_box * box,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)1269 void virtio_gpu_cmd_transfer_from_host_3d(struct virtio_gpu_device *vgdev,
1270 uint32_t ctx_id,
1271 uint64_t offset, uint32_t level,
1272 uint32_t stride,
1273 uint32_t layer_stride,
1274 struct drm_virtgpu_3d_box *box,
1275 struct virtio_gpu_object_array *objs,
1276 struct virtio_gpu_fence *fence)
1277 {
1278 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1279 struct virtio_gpu_transfer_host_3d *cmd_p;
1280 struct virtio_gpu_vbuffer *vbuf;
1281
1282 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1283 memset(cmd_p, 0, sizeof(*cmd_p));
1284
1285 vbuf->objs = objs;
1286
1287 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_TRANSFER_FROM_HOST_3D);
1288 cmd_p->hdr.ctx_id = cpu_to_le32(ctx_id);
1289 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1290 convert_to_hw_box(&cmd_p->box, box);
1291 cmd_p->offset = cpu_to_le64(offset);
1292 cmd_p->level = cpu_to_le32(level);
1293 cmd_p->stride = cpu_to_le32(stride);
1294 cmd_p->layer_stride = cpu_to_le32(layer_stride);
1295
1296 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
1297 }
1298
virtio_gpu_cmd_submit(struct virtio_gpu_device * vgdev,void * data,uint32_t data_size,uint32_t ctx_id,struct virtio_gpu_object_array * objs,struct virtio_gpu_fence * fence)1299 void virtio_gpu_cmd_submit(struct virtio_gpu_device *vgdev,
1300 void *data, uint32_t data_size,
1301 uint32_t ctx_id,
1302 struct virtio_gpu_object_array *objs,
1303 struct virtio_gpu_fence *fence)
1304 {
1305 struct virtio_gpu_cmd_submit *cmd_p;
1306 struct virtio_gpu_vbuffer *vbuf;
1307
1308 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1309 memset(cmd_p, 0, sizeof(*cmd_p));
1310
1311 vbuf->data_buf = data;
1312 vbuf->data_size = data_size;
1313 vbuf->objs = objs;
1314
1315 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_SUBMIT_3D);
1316 cmd_p->hdr.ctx_id = cpu_to_le32(ctx_id);
1317 cmd_p->size = cpu_to_le32(data_size);
1318
1319 virtio_gpu_queue_fenced_ctrl_buffer(vgdev, vbuf, fence);
1320 }
1321
virtio_gpu_object_attach(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * obj,struct virtio_gpu_mem_entry * ents,unsigned int nents)1322 void virtio_gpu_object_attach(struct virtio_gpu_device *vgdev,
1323 struct virtio_gpu_object *obj,
1324 struct virtio_gpu_mem_entry *ents,
1325 unsigned int nents)
1326 {
1327 if (obj->attached)
1328 return;
1329
1330 virtio_gpu_cmd_resource_attach_backing(vgdev, obj->hw_res_handle,
1331 ents, nents, NULL);
1332
1333 obj->attached = true;
1334 }
1335
virtio_gpu_object_detach(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * obj,struct virtio_gpu_fence * fence)1336 void virtio_gpu_object_detach(struct virtio_gpu_device *vgdev,
1337 struct virtio_gpu_object *obj,
1338 struct virtio_gpu_fence *fence)
1339 {
1340 if (!obj->attached)
1341 return;
1342
1343 virtio_gpu_cmd_resource_detach_backing(vgdev, obj->hw_res_handle,
1344 fence);
1345
1346 obj->attached = false;
1347 }
1348
virtio_gpu_cursor_ping(struct virtio_gpu_device * vgdev,struct virtio_gpu_output * output)1349 void virtio_gpu_cursor_ping(struct virtio_gpu_device *vgdev,
1350 struct virtio_gpu_output *output)
1351 {
1352 struct virtio_gpu_vbuffer *vbuf;
1353 struct virtio_gpu_update_cursor *cur_p;
1354
1355 output->cursor.pos.scanout_id = cpu_to_le32(output->index);
1356 cur_p = virtio_gpu_alloc_cursor(vgdev, &vbuf);
1357 memcpy(cur_p, &output->cursor, sizeof(output->cursor));
1358 virtio_gpu_queue_cursor(vgdev, vbuf);
1359 }
1360
virtio_gpu_cmd_resource_uuid_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)1361 static void virtio_gpu_cmd_resource_uuid_cb(struct virtio_gpu_device *vgdev,
1362 struct virtio_gpu_vbuffer *vbuf)
1363 {
1364 struct virtio_gpu_object *obj =
1365 gem_to_virtio_gpu_obj(vbuf->objs->objs[0]);
1366 struct virtio_gpu_resp_resource_uuid *resp =
1367 (struct virtio_gpu_resp_resource_uuid *)vbuf->resp_buf;
1368 uint32_t resp_type = le32_to_cpu(resp->hdr.type);
1369
1370 spin_lock(&vgdev->resource_export_lock);
1371 WARN_ON(obj->uuid_state != STATE_INITIALIZING);
1372
1373 if (resp_type == VIRTIO_GPU_RESP_OK_RESOURCE_UUID &&
1374 obj->uuid_state == STATE_INITIALIZING) {
1375 import_uuid(&obj->uuid, resp->uuid);
1376 obj->uuid_state = STATE_OK;
1377 } else {
1378 obj->uuid_state = STATE_ERR;
1379 }
1380 spin_unlock(&vgdev->resource_export_lock);
1381
1382 wake_up_all(&vgdev->resp_wq);
1383 }
1384
1385 int
virtio_gpu_cmd_resource_assign_uuid(struct virtio_gpu_device * vgdev,struct virtio_gpu_object_array * objs)1386 virtio_gpu_cmd_resource_assign_uuid(struct virtio_gpu_device *vgdev,
1387 struct virtio_gpu_object_array *objs)
1388 {
1389 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1390 struct virtio_gpu_resource_assign_uuid *cmd_p;
1391 struct virtio_gpu_vbuffer *vbuf;
1392 struct virtio_gpu_resp_resource_uuid *resp_buf;
1393
1394 resp_buf = kzalloc_obj(*resp_buf);
1395 if (!resp_buf) {
1396 spin_lock(&vgdev->resource_export_lock);
1397 bo->uuid_state = STATE_ERR;
1398 spin_unlock(&vgdev->resource_export_lock);
1399 virtio_gpu_array_put_free(objs);
1400 return -ENOMEM;
1401 }
1402
1403 cmd_p = virtio_gpu_alloc_cmd_resp
1404 (vgdev, virtio_gpu_cmd_resource_uuid_cb, &vbuf, sizeof(*cmd_p),
1405 sizeof(struct virtio_gpu_resp_resource_uuid), resp_buf);
1406 memset(cmd_p, 0, sizeof(*cmd_p));
1407
1408 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_ASSIGN_UUID);
1409 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1410
1411 vbuf->objs = objs;
1412 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1413 return 0;
1414 }
1415
virtio_gpu_cmd_resource_map_cb(struct virtio_gpu_device * vgdev,struct virtio_gpu_vbuffer * vbuf)1416 static void virtio_gpu_cmd_resource_map_cb(struct virtio_gpu_device *vgdev,
1417 struct virtio_gpu_vbuffer *vbuf)
1418 {
1419 struct virtio_gpu_object *bo =
1420 gem_to_virtio_gpu_obj(vbuf->objs->objs[0]);
1421 struct virtio_gpu_resp_map_info *resp =
1422 (struct virtio_gpu_resp_map_info *)vbuf->resp_buf;
1423 struct virtio_gpu_object_vram *vram = to_virtio_gpu_vram(bo);
1424 uint32_t resp_type = le32_to_cpu(resp->hdr.type);
1425
1426 spin_lock(&vgdev->host_visible_lock);
1427
1428 if (resp_type == VIRTIO_GPU_RESP_OK_MAP_INFO) {
1429 vram->map_info = resp->map_info;
1430 vram->map_state = STATE_OK;
1431 } else {
1432 vram->map_state = STATE_ERR;
1433 }
1434
1435 spin_unlock(&vgdev->host_visible_lock);
1436 wake_up_all(&vgdev->resp_wq);
1437 }
1438
virtio_gpu_cmd_map(struct virtio_gpu_device * vgdev,struct virtio_gpu_object_array * objs,uint64_t offset)1439 int virtio_gpu_cmd_map(struct virtio_gpu_device *vgdev,
1440 struct virtio_gpu_object_array *objs, uint64_t offset)
1441 {
1442 struct virtio_gpu_resource_map_blob *cmd_p;
1443 struct virtio_gpu_object *bo = gem_to_virtio_gpu_obj(objs->objs[0]);
1444 struct virtio_gpu_vbuffer *vbuf;
1445 struct virtio_gpu_resp_map_info *resp_buf;
1446
1447 resp_buf = kzalloc_obj(*resp_buf);
1448 if (!resp_buf)
1449 return -ENOMEM;
1450
1451 cmd_p = virtio_gpu_alloc_cmd_resp
1452 (vgdev, virtio_gpu_cmd_resource_map_cb, &vbuf, sizeof(*cmd_p),
1453 sizeof(struct virtio_gpu_resp_map_info), resp_buf);
1454 memset(cmd_p, 0, sizeof(*cmd_p));
1455
1456 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_MAP_BLOB);
1457 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1458 cmd_p->offset = cpu_to_le64(offset);
1459 vbuf->objs = objs;
1460
1461 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1462 return 0;
1463 }
1464
virtio_gpu_cmd_unmap(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * bo)1465 void virtio_gpu_cmd_unmap(struct virtio_gpu_device *vgdev,
1466 struct virtio_gpu_object *bo)
1467 {
1468 struct virtio_gpu_resource_unmap_blob *cmd_p;
1469 struct virtio_gpu_vbuffer *vbuf;
1470
1471 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1472 memset(cmd_p, 0, sizeof(*cmd_p));
1473
1474 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_UNMAP_BLOB);
1475 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1476
1477 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1478 }
1479
1480 void
virtio_gpu_cmd_resource_create_blob(struct virtio_gpu_device * vgdev,struct virtio_gpu_object * bo,struct virtio_gpu_object_params * params,struct virtio_gpu_mem_entry * ents,uint32_t nents)1481 virtio_gpu_cmd_resource_create_blob(struct virtio_gpu_device *vgdev,
1482 struct virtio_gpu_object *bo,
1483 struct virtio_gpu_object_params *params,
1484 struct virtio_gpu_mem_entry *ents,
1485 uint32_t nents)
1486 {
1487 struct virtio_gpu_resource_create_blob *cmd_p;
1488 struct virtio_gpu_vbuffer *vbuf;
1489
1490 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1491 memset(cmd_p, 0, sizeof(*cmd_p));
1492
1493 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_RESOURCE_CREATE_BLOB);
1494 cmd_p->hdr.ctx_id = cpu_to_le32(params->ctx_id);
1495 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1496 cmd_p->blob_mem = cpu_to_le32(params->blob_mem);
1497 cmd_p->blob_flags = cpu_to_le32(params->blob_flags);
1498 cmd_p->blob_id = cpu_to_le64(params->blob_id);
1499 cmd_p->size = cpu_to_le64(params->size);
1500 cmd_p->nr_entries = cpu_to_le32(nents);
1501
1502 vbuf->data_buf = ents;
1503 vbuf->data_size = sizeof(*ents) * nents;
1504
1505 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1506 bo->created = true;
1507
1508 if (nents)
1509 bo->attached = true;
1510 }
1511
virtio_gpu_cmd_set_scanout_blob(struct virtio_gpu_device * vgdev,uint32_t scanout_id,struct virtio_gpu_object * bo,struct drm_framebuffer * fb,uint32_t width,uint32_t height,uint32_t x,uint32_t y)1512 void virtio_gpu_cmd_set_scanout_blob(struct virtio_gpu_device *vgdev,
1513 uint32_t scanout_id,
1514 struct virtio_gpu_object *bo,
1515 struct drm_framebuffer *fb,
1516 uint32_t width, uint32_t height,
1517 uint32_t x, uint32_t y)
1518 {
1519 uint32_t i;
1520 struct virtio_gpu_set_scanout_blob *cmd_p;
1521 struct virtio_gpu_vbuffer *vbuf;
1522 uint32_t format = virtio_gpu_translate_format(fb->format->format);
1523
1524 cmd_p = virtio_gpu_alloc_cmd(vgdev, &vbuf, sizeof(*cmd_p));
1525 memset(cmd_p, 0, sizeof(*cmd_p));
1526
1527 cmd_p->hdr.type = cpu_to_le32(VIRTIO_GPU_CMD_SET_SCANOUT_BLOB);
1528 cmd_p->resource_id = cpu_to_le32(bo->hw_res_handle);
1529 cmd_p->scanout_id = cpu_to_le32(scanout_id);
1530
1531 cmd_p->format = cpu_to_le32(format);
1532 cmd_p->width = cpu_to_le32(fb->width);
1533 cmd_p->height = cpu_to_le32(fb->height);
1534
1535 for (i = 0; i < 4; i++) {
1536 cmd_p->strides[i] = cpu_to_le32(fb->pitches[i]);
1537 cmd_p->offsets[i] = cpu_to_le32(fb->offsets[i]);
1538 }
1539
1540 cmd_p->r.width = cpu_to_le32(width);
1541 cmd_p->r.height = cpu_to_le32(height);
1542 cmd_p->r.x = cpu_to_le32(x);
1543 cmd_p->r.y = cpu_to_le32(y);
1544
1545 virtio_gpu_queue_ctrl_buffer(vgdev, vbuf);
1546 }
1547