1 // SPDX-License-Identifier: GPL-2.0 OR MIT
2 /**************************************************************************
3 *
4 * Copyright (c) 2009-2025 Broadcom. All Rights Reserved. The term
5 * “Broadcom” refers to Broadcom Inc. and/or its subsidiaries.
6 *
7 **************************************************************************/
8
9 #include "vmwgfx_bo.h"
10 #include "vmwgfx_cursor_plane.h"
11 #include "vmwgfx_drv.h"
12 #include "vmwgfx_resource_priv.h"
13 #include "vmwgfx_so.h"
14 #include "vmwgfx_binding.h"
15 #include "vmw_surface_cache.h"
16 #include "device_include/svga3d_surfacedefs.h"
17
18 #include <drm/drm_dumb_buffers.h>
19 #include <drm/ttm/ttm_placement.h>
20
21 #define SVGA3D_FLAGS_64(upper32, lower32) (((uint64_t)upper32 << 32) | lower32)
22
23 /**
24 * struct vmw_user_surface - User-space visible surface resource
25 *
26 * @prime: The TTM prime object.
27 * @srf: The surface metadata.
28 * @master: Master of the creating client. Used for security check.
29 */
30 struct vmw_user_surface {
31 struct ttm_prime_object prime;
32 struct vmw_surface srf;
33 struct drm_master *master;
34 };
35
36 /**
37 * struct vmw_surface_offset - Backing store mip level offset info
38 *
39 * @face: Surface face.
40 * @mip: Mip level.
41 * @bo_offset: Offset into backing store of this mip level.
42 *
43 */
44 struct vmw_surface_offset {
45 uint32_t face;
46 uint32_t mip;
47 uint32_t bo_offset;
48 };
49
50 /**
51 * struct vmw_surface_dirty - Surface dirty-tracker
52 * @cache: Cached layout information of the surface.
53 * @num_subres: Number of subresources.
54 * @boxes: Array of SVGA3dBoxes indicating dirty regions. One per subresource.
55 */
56 struct vmw_surface_dirty {
57 struct vmw_surface_cache cache;
58 u32 num_subres;
59 SVGA3dBox boxes[] __counted_by(num_subres);
60 };
61
62 static void vmw_user_surface_free(struct vmw_resource *res);
63 static struct vmw_resource *
64 vmw_user_surface_base_to_res(struct ttm_base_object *base);
65 static int vmw_legacy_srf_bind(struct vmw_resource *res,
66 struct ttm_validate_buffer *val_buf);
67 static int vmw_legacy_srf_unbind(struct vmw_resource *res,
68 bool readback,
69 struct ttm_validate_buffer *val_buf);
70 static int vmw_legacy_srf_create(struct vmw_resource *res);
71 static int vmw_legacy_srf_destroy(struct vmw_resource *res);
72 static int vmw_gb_surface_create(struct vmw_resource *res);
73 static int vmw_gb_surface_bind(struct vmw_resource *res,
74 struct ttm_validate_buffer *val_buf);
75 static int vmw_gb_surface_unbind(struct vmw_resource *res,
76 bool readback,
77 struct ttm_validate_buffer *val_buf);
78 static int vmw_gb_surface_destroy(struct vmw_resource *res);
79 static int
80 vmw_gb_surface_define_internal(struct drm_device *dev,
81 const struct drm_vmw_gb_surface_create_ext_req *req,
82 struct drm_vmw_gb_surface_create_rep *rep,
83 struct drm_file *file_priv);
84 static int
85 vmw_gb_surface_reference_internal(struct drm_device *dev,
86 struct drm_vmw_surface_arg *req,
87 struct drm_vmw_gb_surface_ref_ext_rep *rep,
88 struct drm_file *file_priv);
89
90 static void vmw_surface_dirty_free(struct vmw_resource *res);
91 static int vmw_surface_dirty_alloc(struct vmw_resource *res);
92 static int vmw_surface_dirty_sync(struct vmw_resource *res);
93 static void vmw_surface_dirty_range_add(struct vmw_resource *res, size_t start,
94 size_t end);
95 static int vmw_surface_clean(struct vmw_resource *res);
96
97 static const struct vmw_user_resource_conv user_surface_conv = {
98 .object_type = VMW_RES_SURFACE,
99 .base_obj_to_res = vmw_user_surface_base_to_res,
100 .res_free = vmw_user_surface_free
101 };
102
103 const struct vmw_user_resource_conv *user_surface_converter =
104 &user_surface_conv;
105
106 static const struct vmw_res_func vmw_legacy_surface_func = {
107 .res_type = vmw_res_surface,
108 .needs_guest_memory = false,
109 .may_evict = true,
110 .prio = 1,
111 .dirty_prio = 1,
112 .type_name = "legacy surfaces",
113 .domain = VMW_BO_DOMAIN_GMR,
114 .busy_domain = VMW_BO_DOMAIN_GMR | VMW_BO_DOMAIN_VRAM,
115 .create = &vmw_legacy_srf_create,
116 .destroy = &vmw_legacy_srf_destroy,
117 .bind = &vmw_legacy_srf_bind,
118 .unbind = &vmw_legacy_srf_unbind
119 };
120
121 static const struct vmw_res_func vmw_gb_surface_func = {
122 .res_type = vmw_res_surface,
123 .needs_guest_memory = true,
124 .may_evict = true,
125 .prio = 1,
126 .dirty_prio = 2,
127 .type_name = "guest backed surfaces",
128 .domain = VMW_BO_DOMAIN_MOB,
129 .busy_domain = VMW_BO_DOMAIN_MOB,
130 .create = vmw_gb_surface_create,
131 .destroy = vmw_gb_surface_destroy,
132 .bind = vmw_gb_surface_bind,
133 .unbind = vmw_gb_surface_unbind,
134 .dirty_alloc = vmw_surface_dirty_alloc,
135 .dirty_free = vmw_surface_dirty_free,
136 .dirty_sync = vmw_surface_dirty_sync,
137 .dirty_range_add = vmw_surface_dirty_range_add,
138 .clean = vmw_surface_clean,
139 };
140
141 /*
142 * struct vmw_surface_dma - SVGA3D DMA command
143 */
144 struct vmw_surface_dma {
145 SVGA3dCmdHeader header;
146 SVGA3dCmdSurfaceDMA body;
147 SVGA3dCopyBox cb;
148 SVGA3dCmdSurfaceDMASuffix suffix;
149 };
150
151 /*
152 * struct vmw_surface_define - SVGA3D Surface Define command
153 */
154 struct vmw_surface_define {
155 SVGA3dCmdHeader header;
156 SVGA3dCmdDefineSurface body;
157 };
158
159 /*
160 * struct vmw_surface_destroy - SVGA3D Surface Destroy command
161 */
162 struct vmw_surface_destroy {
163 SVGA3dCmdHeader header;
164 SVGA3dCmdDestroySurface body;
165 };
166
167
168 /**
169 * vmw_surface_dma_size - Compute fifo size for a dma command.
170 *
171 * @srf: Pointer to a struct vmw_surface
172 *
173 * Computes the required size for a surface dma command for backup or
174 * restoration of the surface represented by @srf.
175 */
vmw_surface_dma_size(const struct vmw_surface * srf)176 static inline uint32_t vmw_surface_dma_size(const struct vmw_surface *srf)
177 {
178 return srf->metadata.num_sizes * sizeof(struct vmw_surface_dma);
179 }
180
181
182 /**
183 * vmw_surface_define_size - Compute fifo size for a surface define command.
184 *
185 * @srf: Pointer to a struct vmw_surface
186 *
187 * Computes the required size for a surface define command for the definition
188 * of the surface represented by @srf.
189 */
vmw_surface_define_size(const struct vmw_surface * srf)190 static inline uint32_t vmw_surface_define_size(const struct vmw_surface *srf)
191 {
192 return sizeof(struct vmw_surface_define) + srf->metadata.num_sizes *
193 sizeof(SVGA3dSize);
194 }
195
196
197 /**
198 * vmw_surface_destroy_size - Compute fifo size for a surface destroy command.
199 *
200 * Computes the required size for a surface destroy command for the destruction
201 * of a hw surface.
202 */
vmw_surface_destroy_size(void)203 static inline uint32_t vmw_surface_destroy_size(void)
204 {
205 return sizeof(struct vmw_surface_destroy);
206 }
207
208 /**
209 * vmw_surface_destroy_encode - Encode a surface_destroy command.
210 *
211 * @id: The surface id
212 * @cmd_space: Pointer to memory area in which the commands should be encoded.
213 */
vmw_surface_destroy_encode(uint32_t id,void * cmd_space)214 static void vmw_surface_destroy_encode(uint32_t id,
215 void *cmd_space)
216 {
217 struct vmw_surface_destroy *cmd = (struct vmw_surface_destroy *)
218 cmd_space;
219
220 cmd->header.id = SVGA_3D_CMD_SURFACE_DESTROY;
221 cmd->header.size = sizeof(cmd->body);
222 cmd->body.sid = id;
223 }
224
225 /**
226 * vmw_surface_define_encode - Encode a surface_define command.
227 *
228 * @srf: Pointer to a struct vmw_surface object.
229 * @cmd_space: Pointer to memory area in which the commands should be encoded.
230 */
vmw_surface_define_encode(const struct vmw_surface * srf,void * cmd_space)231 static void vmw_surface_define_encode(const struct vmw_surface *srf,
232 void *cmd_space)
233 {
234 struct vmw_surface_define *cmd = (struct vmw_surface_define *)
235 cmd_space;
236 struct drm_vmw_size *src_size;
237 SVGA3dSize *cmd_size;
238 uint32_t cmd_len;
239 int i;
240
241 cmd_len = sizeof(cmd->body) + srf->metadata.num_sizes *
242 sizeof(SVGA3dSize);
243
244 cmd->header.id = SVGA_3D_CMD_SURFACE_DEFINE;
245 cmd->header.size = cmd_len;
246 cmd->body.sid = srf->res.id;
247 /*
248 * Downcast of surfaceFlags, was upcasted when received from user-space,
249 * since driver internally stores as 64 bit.
250 * For legacy surface define only 32 bit flag is supported.
251 */
252 cmd->body.surfaceFlags = (SVGA3dSurface1Flags)srf->metadata.flags;
253 cmd->body.format = srf->metadata.format;
254 for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i)
255 cmd->body.face[i].numMipLevels = srf->metadata.mip_levels[i];
256
257 cmd += 1;
258 cmd_size = (SVGA3dSize *) cmd;
259 src_size = srf->metadata.sizes;
260
261 for (i = 0; i < srf->metadata.num_sizes; ++i, cmd_size++, src_size++) {
262 cmd_size->width = src_size->width;
263 cmd_size->height = src_size->height;
264 cmd_size->depth = src_size->depth;
265 }
266 }
267
268 /**
269 * vmw_surface_dma_encode - Encode a surface_dma command.
270 *
271 * @srf: Pointer to a struct vmw_surface object.
272 * @cmd_space: Pointer to memory area in which the commands should be encoded.
273 * @ptr: Pointer to an SVGAGuestPtr indicating where the surface contents
274 * should be placed or read from.
275 * @to_surface: Boolean whether to DMA to the surface or from the surface.
276 */
vmw_surface_dma_encode(struct vmw_surface * srf,void * cmd_space,const SVGAGuestPtr * ptr,bool to_surface)277 static void vmw_surface_dma_encode(struct vmw_surface *srf,
278 void *cmd_space,
279 const SVGAGuestPtr *ptr,
280 bool to_surface)
281 {
282 uint32_t i;
283 struct vmw_surface_dma *cmd = (struct vmw_surface_dma *)cmd_space;
284 const struct SVGA3dSurfaceDesc *desc =
285 vmw_surface_get_desc(srf->metadata.format);
286
287 for (i = 0; i < srf->metadata.num_sizes; ++i) {
288 SVGA3dCmdHeader *header = &cmd->header;
289 SVGA3dCmdSurfaceDMA *body = &cmd->body;
290 SVGA3dCopyBox *cb = &cmd->cb;
291 SVGA3dCmdSurfaceDMASuffix *suffix = &cmd->suffix;
292 const struct vmw_surface_offset *cur_offset = &srf->offsets[i];
293 const struct drm_vmw_size *cur_size = &srf->metadata.sizes[i];
294
295 header->id = SVGA_3D_CMD_SURFACE_DMA;
296 header->size = sizeof(*body) + sizeof(*cb) + sizeof(*suffix);
297
298 body->guest.ptr = *ptr;
299 body->guest.ptr.offset += cur_offset->bo_offset;
300 body->guest.pitch = vmw_surface_calculate_pitch(desc, cur_size);
301 body->host.sid = srf->res.id;
302 body->host.face = cur_offset->face;
303 body->host.mipmap = cur_offset->mip;
304 body->transfer = ((to_surface) ? SVGA3D_WRITE_HOST_VRAM :
305 SVGA3D_READ_HOST_VRAM);
306 cb->x = 0;
307 cb->y = 0;
308 cb->z = 0;
309 cb->srcx = 0;
310 cb->srcy = 0;
311 cb->srcz = 0;
312 cb->w = cur_size->width;
313 cb->h = cur_size->height;
314 cb->d = cur_size->depth;
315
316 suffix->suffixSize = sizeof(*suffix);
317 suffix->maximumOffset =
318 vmw_surface_get_image_buffer_size(desc, cur_size,
319 body->guest.pitch);
320 suffix->flags.discard = 0;
321 suffix->flags.unsynchronized = 0;
322 suffix->flags.reserved = 0;
323 ++cmd;
324 }
325 };
326
327
328 /**
329 * vmw_hw_surface_destroy - destroy a Device surface
330 *
331 * @res: Pointer to a struct vmw_resource embedded in a struct
332 * vmw_surface.
333 *
334 * Destroys a the device surface associated with a struct vmw_surface if
335 * any, and adjusts resource count accordingly.
336 */
vmw_hw_surface_destroy(struct vmw_resource * res)337 static void vmw_hw_surface_destroy(struct vmw_resource *res)
338 {
339
340 struct vmw_private *dev_priv = res->dev_priv;
341 void *cmd;
342
343 if (res->func->destroy == vmw_gb_surface_destroy) {
344 (void) vmw_gb_surface_destroy(res);
345 return;
346 }
347
348 if (res->id != -1) {
349
350 cmd = VMW_CMD_RESERVE(dev_priv, vmw_surface_destroy_size());
351 if (unlikely(!cmd))
352 return;
353
354 vmw_surface_destroy_encode(res->id, cmd);
355 vmw_cmd_commit(dev_priv, vmw_surface_destroy_size());
356
357 /*
358 * used_memory_size_atomic, or separate lock
359 * to avoid taking dev_priv::cmdbuf_mutex in
360 * the destroy path.
361 */
362
363 mutex_lock(&dev_priv->cmdbuf_mutex);
364 dev_priv->used_memory_size -= res->guest_memory_size;
365 mutex_unlock(&dev_priv->cmdbuf_mutex);
366 }
367 }
368
369 /**
370 * vmw_legacy_srf_create - Create a device surface as part of the
371 * resource validation process.
372 *
373 * @res: Pointer to a struct vmw_surface.
374 *
375 * If the surface doesn't have a hw id.
376 *
377 * Returns -EBUSY if there wasn't sufficient device resources to
378 * complete the validation. Retry after freeing up resources.
379 *
380 * May return other errors if the kernel is out of guest resources.
381 */
vmw_legacy_srf_create(struct vmw_resource * res)382 static int vmw_legacy_srf_create(struct vmw_resource *res)
383 {
384 struct vmw_private *dev_priv = res->dev_priv;
385 struct vmw_surface *srf;
386 uint32_t submit_size;
387 uint8_t *cmd;
388 int ret;
389
390 if (likely(res->id != -1))
391 return 0;
392
393 srf = vmw_res_to_srf(res);
394 if (unlikely(dev_priv->used_memory_size + res->guest_memory_size >=
395 dev_priv->memory_size))
396 return -EBUSY;
397
398 /*
399 * Alloc id for the resource.
400 */
401
402 ret = vmw_resource_alloc_id(res);
403 if (unlikely(ret != 0)) {
404 DRM_ERROR("Failed to allocate a surface id.\n");
405 goto out_no_id;
406 }
407
408 if (unlikely(res->id >= SVGA3D_HB_MAX_SURFACE_IDS)) {
409 ret = -EBUSY;
410 goto out_no_fifo;
411 }
412
413 /*
414 * Encode surface define- commands.
415 */
416
417 submit_size = vmw_surface_define_size(srf);
418 cmd = VMW_CMD_RESERVE(dev_priv, submit_size);
419 if (unlikely(!cmd)) {
420 ret = -ENOMEM;
421 goto out_no_fifo;
422 }
423
424 vmw_surface_define_encode(srf, cmd);
425 vmw_cmd_commit(dev_priv, submit_size);
426 vmw_fifo_resource_inc(dev_priv);
427
428 /*
429 * Surface memory usage accounting.
430 */
431
432 dev_priv->used_memory_size += res->guest_memory_size;
433 return 0;
434
435 out_no_fifo:
436 vmw_resource_release_id(res);
437 out_no_id:
438 return ret;
439 }
440
441 /**
442 * vmw_legacy_srf_dma - Copy backup data to or from a legacy surface.
443 *
444 * @res: Pointer to a struct vmw_res embedded in a struct
445 * vmw_surface.
446 * @val_buf: Pointer to a struct ttm_validate_buffer containing
447 * information about the backup buffer.
448 * @bind: Boolean wether to DMA to the surface.
449 *
450 * Transfer backup data to or from a legacy surface as part of the
451 * validation process.
452 * May return other errors if the kernel is out of guest resources.
453 * The backup buffer will be fenced or idle upon successful completion,
454 * and if the surface needs persistent backup storage, the backup buffer
455 * will also be returned reserved iff @bind is true.
456 */
vmw_legacy_srf_dma(struct vmw_resource * res,struct ttm_validate_buffer * val_buf,bool bind)457 static int vmw_legacy_srf_dma(struct vmw_resource *res,
458 struct ttm_validate_buffer *val_buf,
459 bool bind)
460 {
461 SVGAGuestPtr ptr;
462 struct vmw_fence_obj *fence;
463 uint32_t submit_size;
464 struct vmw_surface *srf = vmw_res_to_srf(res);
465 uint8_t *cmd;
466 struct vmw_private *dev_priv = res->dev_priv;
467
468 BUG_ON(!val_buf->bo);
469 submit_size = vmw_surface_dma_size(srf);
470 cmd = VMW_CMD_RESERVE(dev_priv, submit_size);
471 if (unlikely(!cmd))
472 return -ENOMEM;
473
474 vmw_bo_get_guest_ptr(val_buf->bo, &ptr);
475 vmw_surface_dma_encode(srf, cmd, &ptr, bind);
476
477 vmw_cmd_commit(dev_priv, submit_size);
478
479 /*
480 * Create a fence object and fence the backup buffer.
481 */
482
483 (void) vmw_execbuf_fence_commands(NULL, dev_priv,
484 &fence, NULL);
485
486 vmw_bo_fence_single(val_buf->bo, fence);
487
488 if (likely(fence != NULL))
489 vmw_fence_obj_unreference(&fence);
490
491 return 0;
492 }
493
494 /**
495 * vmw_legacy_srf_bind - Perform a legacy surface bind as part of the
496 * surface validation process.
497 *
498 * @res: Pointer to a struct vmw_res embedded in a struct
499 * vmw_surface.
500 * @val_buf: Pointer to a struct ttm_validate_buffer containing
501 * information about the backup buffer.
502 *
503 * This function will copy backup data to the surface if the
504 * backup buffer is dirty.
505 */
vmw_legacy_srf_bind(struct vmw_resource * res,struct ttm_validate_buffer * val_buf)506 static int vmw_legacy_srf_bind(struct vmw_resource *res,
507 struct ttm_validate_buffer *val_buf)
508 {
509 if (!res->guest_memory_dirty)
510 return 0;
511
512 return vmw_legacy_srf_dma(res, val_buf, true);
513 }
514
515
516 /**
517 * vmw_legacy_srf_unbind - Perform a legacy surface unbind as part of the
518 * surface eviction process.
519 *
520 * @res: Pointer to a struct vmw_res embedded in a struct
521 * vmw_surface.
522 * @readback: Readback - only true if dirty
523 * @val_buf: Pointer to a struct ttm_validate_buffer containing
524 * information about the backup buffer.
525 *
526 * This function will copy backup data from the surface.
527 */
vmw_legacy_srf_unbind(struct vmw_resource * res,bool readback,struct ttm_validate_buffer * val_buf)528 static int vmw_legacy_srf_unbind(struct vmw_resource *res,
529 bool readback,
530 struct ttm_validate_buffer *val_buf)
531 {
532 if (unlikely(readback))
533 return vmw_legacy_srf_dma(res, val_buf, false);
534 return 0;
535 }
536
537 /**
538 * vmw_legacy_srf_destroy - Destroy a device surface as part of a
539 * resource eviction process.
540 *
541 * @res: Pointer to a struct vmw_res embedded in a struct
542 * vmw_surface.
543 */
vmw_legacy_srf_destroy(struct vmw_resource * res)544 static int vmw_legacy_srf_destroy(struct vmw_resource *res)
545 {
546 struct vmw_private *dev_priv = res->dev_priv;
547 uint32_t submit_size;
548 uint8_t *cmd;
549
550 BUG_ON(res->id == -1);
551
552 /*
553 * Encode the dma- and surface destroy commands.
554 */
555
556 submit_size = vmw_surface_destroy_size();
557 cmd = VMW_CMD_RESERVE(dev_priv, submit_size);
558 if (unlikely(!cmd))
559 return -ENOMEM;
560
561 vmw_surface_destroy_encode(res->id, cmd);
562 vmw_cmd_commit(dev_priv, submit_size);
563
564 /*
565 * Surface memory usage accounting.
566 */
567
568 dev_priv->used_memory_size -= res->guest_memory_size;
569
570 /*
571 * Release the surface ID.
572 */
573
574 vmw_resource_release_id(res);
575 vmw_fifo_resource_dec(dev_priv);
576
577 return 0;
578 }
579
580
581 /**
582 * vmw_surface_init - initialize a struct vmw_surface
583 *
584 * @dev_priv: Pointer to a device private struct.
585 * @srf: Pointer to the struct vmw_surface to initialize.
586 * @res_free: Pointer to a resource destructor used to free
587 * the object.
588 */
vmw_surface_init(struct vmw_private * dev_priv,struct vmw_surface * srf,void (* res_free)(struct vmw_resource * res))589 static int vmw_surface_init(struct vmw_private *dev_priv,
590 struct vmw_surface *srf,
591 void (*res_free) (struct vmw_resource *res))
592 {
593 int ret;
594 struct vmw_resource *res = &srf->res;
595
596 BUG_ON(!res_free);
597 ret = vmw_resource_init(dev_priv, res, true, res_free,
598 (dev_priv->has_mob) ? &vmw_gb_surface_func :
599 &vmw_legacy_surface_func);
600
601 if (unlikely(ret != 0)) {
602 res_free(res);
603 return ret;
604 }
605
606 /*
607 * The surface won't be visible to hardware until a
608 * surface validate.
609 */
610
611 INIT_LIST_HEAD(&srf->view_list);
612 res->hw_destroy = vmw_hw_surface_destroy;
613 return ret;
614 }
615
616 /**
617 * vmw_user_surface_base_to_res - TTM base object to resource converter for
618 * user visible surfaces
619 *
620 * @base: Pointer to a TTM base object
621 *
622 * Returns the struct vmw_resource embedded in a struct vmw_surface
623 * for the user-visible object identified by the TTM base object @base.
624 */
625 static struct vmw_resource *
vmw_user_surface_base_to_res(struct ttm_base_object * base)626 vmw_user_surface_base_to_res(struct ttm_base_object *base)
627 {
628 return &(container_of(base, struct vmw_user_surface,
629 prime.base)->srf.res);
630 }
631
632 /**
633 * vmw_user_surface_free - User visible surface resource destructor
634 *
635 * @res: A struct vmw_resource embedded in a struct vmw_surface.
636 */
vmw_user_surface_free(struct vmw_resource * res)637 static void vmw_user_surface_free(struct vmw_resource *res)
638 {
639 struct vmw_surface *srf = vmw_res_to_srf(res);
640 struct vmw_user_surface *user_srf =
641 container_of(srf, struct vmw_user_surface, srf);
642
643 WARN_ON(res->dirty);
644 if (user_srf->master)
645 drm_master_put(&user_srf->master);
646 kfree(srf->offsets);
647 kfree(srf->metadata.sizes);
648 kfree(srf->snooper.image);
649 ttm_prime_object_kfree(user_srf, prime);
650 }
651
652 /**
653 * vmw_user_surface_base_release - User visible surface TTM base object destructor
654 *
655 * @p_base: Pointer to a pointer to a TTM base object
656 * embedded in a struct vmw_user_surface.
657 *
658 * Drops the base object's reference on its resource, and the
659 * pointer pointed to by *p_base is set to NULL.
660 */
vmw_user_surface_base_release(struct ttm_base_object ** p_base)661 static void vmw_user_surface_base_release(struct ttm_base_object **p_base)
662 {
663 struct ttm_base_object *base = *p_base;
664 struct vmw_user_surface *user_srf =
665 container_of(base, struct vmw_user_surface, prime.base);
666 struct vmw_resource *res = &user_srf->srf.res;
667
668 *p_base = NULL;
669
670 /*
671 * Dumb buffers own the resource and they'll unref the
672 * resource themselves
673 */
674 WARN_ON(res && res->guest_memory_bo && res->guest_memory_bo->is_dumb);
675
676 vmw_resource_unreference(&res);
677 }
678
679 /**
680 * vmw_surface_destroy_ioctl - Ioctl function implementing
681 * the user surface destroy functionality.
682 *
683 * @dev: Pointer to a struct drm_device.
684 * @data: Pointer to data copied from / to user-space.
685 * @file_priv: Pointer to a drm file private structure.
686 */
vmw_surface_destroy_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)687 int vmw_surface_destroy_ioctl(struct drm_device *dev, void *data,
688 struct drm_file *file_priv)
689 {
690 struct drm_vmw_surface_arg *arg = (struct drm_vmw_surface_arg *)data;
691 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
692
693 return ttm_ref_object_base_unref(tfile, arg->sid);
694 }
695
696 /**
697 * vmw_surface_define_ioctl - Ioctl function implementing
698 * the user surface define functionality.
699 *
700 * @dev: Pointer to a struct drm_device.
701 * @data: Pointer to data copied from / to user-space.
702 * @file_priv: Pointer to a drm file private structure.
703 */
vmw_surface_define_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)704 int vmw_surface_define_ioctl(struct drm_device *dev, void *data,
705 struct drm_file *file_priv)
706 {
707 struct vmw_private *dev_priv = vmw_priv(dev);
708 struct vmw_user_surface *user_srf;
709 struct vmw_surface *srf;
710 struct vmw_surface_metadata *metadata;
711 struct vmw_resource *res;
712 struct vmw_resource *tmp;
713 union drm_vmw_surface_create_arg *arg =
714 (union drm_vmw_surface_create_arg *)data;
715 struct drm_vmw_surface_create_req *req = &arg->req;
716 struct drm_vmw_surface_arg *rep = &arg->rep;
717 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
718 int ret;
719 int i, j;
720 uint32_t cur_bo_offset;
721 struct drm_vmw_size *cur_size;
722 struct vmw_surface_offset *cur_offset;
723 uint32_t num_sizes;
724 const SVGA3dSurfaceDesc *desc;
725
726 num_sizes = 0;
727 for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i) {
728 if (req->mip_levels[i] > DRM_VMW_MAX_MIP_LEVELS)
729 return -EINVAL;
730 num_sizes += req->mip_levels[i];
731 }
732
733 if (num_sizes > DRM_VMW_MAX_SURFACE_FACES * DRM_VMW_MAX_MIP_LEVELS ||
734 num_sizes == 0)
735 return -EINVAL;
736
737 desc = vmw_surface_get_desc(req->format);
738 if (unlikely(desc->blockDesc == SVGA3DBLOCKDESC_NONE)) {
739 VMW_DEBUG_USER("Invalid format %d for surface creation.\n",
740 req->format);
741 return -EINVAL;
742 }
743
744 user_srf = kzalloc_obj(*user_srf);
745 if (unlikely(!user_srf)) {
746 ret = -ENOMEM;
747 goto out_unlock;
748 }
749
750 srf = &user_srf->srf;
751 metadata = &srf->metadata;
752 res = &srf->res;
753
754 /* Driver internally stores as 64-bit flags */
755 metadata->flags = (SVGA3dSurfaceAllFlags)req->flags;
756 metadata->format = req->format;
757 metadata->scanout = req->scanout;
758
759 memcpy(metadata->mip_levels, req->mip_levels,
760 sizeof(metadata->mip_levels));
761 metadata->num_sizes = num_sizes;
762 metadata->sizes =
763 memdup_array_user((struct drm_vmw_size __user *)(unsigned long)
764 req->size_addr,
765 metadata->num_sizes, sizeof(*metadata->sizes));
766 if (IS_ERR(metadata->sizes)) {
767 ret = PTR_ERR(metadata->sizes);
768 goto out_no_sizes;
769 }
770 srf->offsets = kmalloc_objs(*srf->offsets, metadata->num_sizes);
771 if (unlikely(!srf->offsets)) {
772 ret = -ENOMEM;
773 goto out_no_offsets;
774 }
775
776 metadata->base_size = *srf->metadata.sizes;
777 metadata->autogen_filter = SVGA3D_TEX_FILTER_NONE;
778 metadata->multisample_count = 0;
779 metadata->multisample_pattern = SVGA3D_MS_PATTERN_NONE;
780 metadata->quality_level = SVGA3D_MS_QUALITY_NONE;
781
782 cur_bo_offset = 0;
783 cur_offset = srf->offsets;
784 cur_size = metadata->sizes;
785
786 for (i = 0; i < DRM_VMW_MAX_SURFACE_FACES; ++i) {
787 for (j = 0; j < metadata->mip_levels[i]; ++j) {
788 uint32_t stride = vmw_surface_calculate_pitch(
789 desc, cur_size);
790
791 cur_offset->face = i;
792 cur_offset->mip = j;
793 cur_offset->bo_offset = cur_bo_offset;
794 cur_bo_offset += vmw_surface_get_image_buffer_size
795 (desc, cur_size, stride);
796 ++cur_offset;
797 ++cur_size;
798 }
799 }
800 res->guest_memory_size = cur_bo_offset;
801
802 srf->snooper.image = vmw_cursor_snooper_create(file_priv, metadata);
803 if (IS_ERR(srf->snooper.image)) {
804 ret = PTR_ERR(srf->snooper.image);
805 goto out_no_copy;
806 }
807
808 if (drm_is_primary_client(file_priv))
809 user_srf->master = drm_file_get_master(file_priv);
810
811 /**
812 * From this point, the generic resource management functions
813 * destroy the object on failure.
814 */
815
816 ret = vmw_surface_init(dev_priv, srf, vmw_user_surface_free);
817 if (unlikely(ret != 0))
818 goto out_unlock;
819
820 /*
821 * A gb-aware client referencing a surface will expect a backup
822 * buffer to be present.
823 */
824 if (dev_priv->has_mob) {
825 struct vmw_bo_params params = {
826 .domain = VMW_BO_DOMAIN_SYS,
827 .busy_domain = VMW_BO_DOMAIN_SYS,
828 .bo_type = ttm_bo_type_device,
829 .size = res->guest_memory_size,
830 .pin = false
831 };
832
833 ret = vmw_bo_create(dev_priv, ¶ms, &res->guest_memory_bo);
834 if (unlikely(ret != 0)) {
835 vmw_resource_unreference(&res);
836 goto out_unlock;
837 }
838
839 ret = vmw_bo_add_detached_resource(res->guest_memory_bo, res);
840 if (unlikely(ret != 0)) {
841 vmw_resource_unreference(&res);
842 goto out_unlock;
843 }
844 }
845
846 tmp = vmw_resource_reference(&srf->res);
847 ret = ttm_prime_object_init(tfile, res->guest_memory_size,
848 &user_srf->prime,
849 VMW_RES_SURFACE,
850 &vmw_user_surface_base_release);
851
852 if (unlikely(ret != 0)) {
853 vmw_resource_unreference(&tmp);
854 vmw_resource_unreference(&res);
855 goto out_unlock;
856 }
857
858 rep->sid = user_srf->prime.base.handle;
859 vmw_resource_unreference(&res);
860
861 return 0;
862 out_no_copy:
863 kfree(srf->offsets);
864 out_no_offsets:
865 kfree(metadata->sizes);
866 out_no_sizes:
867 ttm_prime_object_kfree(user_srf, prime);
868 out_unlock:
869 return ret;
870 }
871
872 static struct vmw_user_surface *
vmw_lookup_user_surface_for_buffer(struct vmw_private * vmw,struct vmw_bo * bo,u32 handle)873 vmw_lookup_user_surface_for_buffer(struct vmw_private *vmw, struct vmw_bo *bo,
874 u32 handle)
875 {
876 struct vmw_user_surface *user_srf = NULL;
877 struct vmw_surface *surf;
878 struct ttm_base_object *base;
879
880 surf = vmw_bo_surface(bo);
881 if (surf) {
882 rcu_read_lock();
883 user_srf = container_of(surf, struct vmw_user_surface, srf);
884 base = &user_srf->prime.base;
885 if (base && !kref_get_unless_zero(&base->refcount)) {
886 drm_dbg_driver(&vmw->drm,
887 "%s: referencing a stale surface handle %d\n",
888 __func__, handle);
889 base = NULL;
890 user_srf = NULL;
891 }
892 rcu_read_unlock();
893 }
894
895 return user_srf;
896 }
897
vmw_lookup_surface_for_buffer(struct vmw_private * vmw,struct vmw_bo * bo,u32 handle)898 struct vmw_surface *vmw_lookup_surface_for_buffer(struct vmw_private *vmw,
899 struct vmw_bo *bo,
900 u32 handle)
901 {
902 struct vmw_user_surface *user_srf =
903 vmw_lookup_user_surface_for_buffer(vmw, bo, handle);
904 struct vmw_surface *surf = NULL;
905 struct ttm_base_object *base;
906
907 if (user_srf) {
908 surf = vmw_surface_reference(&user_srf->srf);
909 base = &user_srf->prime.base;
910 ttm_base_object_unref(&base);
911 }
912 return surf;
913 }
914
vmw_lookup_surface_handle_for_buffer(struct vmw_private * vmw,struct vmw_bo * bo,u32 handle)915 u32 vmw_lookup_surface_handle_for_buffer(struct vmw_private *vmw,
916 struct vmw_bo *bo,
917 u32 handle)
918 {
919 struct vmw_user_surface *user_srf =
920 vmw_lookup_user_surface_for_buffer(vmw, bo, handle);
921 int surf_handle = 0;
922 struct ttm_base_object *base;
923
924 if (user_srf) {
925 base = &user_srf->prime.base;
926 surf_handle = (u32)base->handle;
927 ttm_base_object_unref(&base);
928 }
929 return surf_handle;
930 }
931
vmw_buffer_prime_to_surface_base(struct vmw_private * dev_priv,struct drm_file * file_priv,u32 fd,u32 * handle,struct ttm_base_object ** base_p)932 static int vmw_buffer_prime_to_surface_base(struct vmw_private *dev_priv,
933 struct drm_file *file_priv,
934 u32 fd, u32 *handle,
935 struct ttm_base_object **base_p)
936 {
937 struct ttm_base_object *base;
938 struct vmw_bo *bo;
939 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
940 struct vmw_user_surface *user_srf;
941 int ret;
942
943 ret = drm_gem_prime_fd_to_handle(&dev_priv->drm, file_priv, fd, handle);
944 if (ret) {
945 drm_warn(&dev_priv->drm,
946 "Wasn't able to find user buffer for fd = %u.\n", fd);
947 return ret;
948 }
949
950 ret = vmw_user_bo_lookup(file_priv, *handle, &bo);
951 if (ret) {
952 drm_warn(&dev_priv->drm,
953 "Wasn't able to lookup user buffer for handle = %u.\n", *handle);
954 return ret;
955 }
956
957 user_srf = vmw_lookup_user_surface_for_buffer(dev_priv, bo, *handle);
958 if (WARN_ON(!user_srf)) {
959 drm_warn(&dev_priv->drm,
960 "User surface fd %d (handle %d) is null.\n", fd, *handle);
961 ret = -EINVAL;
962 goto out;
963 }
964
965 base = &user_srf->prime.base;
966 ret = ttm_ref_object_add(tfile, base, NULL, false);
967 if (ret) {
968 drm_warn(&dev_priv->drm,
969 "Couldn't add an object ref for the buffer (%d).\n", *handle);
970 goto out;
971 }
972
973 *base_p = base;
974 out:
975 vmw_user_bo_unref(&bo);
976
977 return ret;
978 }
979
980 static int
vmw_surface_handle_reference(struct vmw_private * dev_priv,struct drm_file * file_priv,uint32_t u_handle,enum drm_vmw_handle_type handle_type,struct ttm_base_object ** base_p)981 vmw_surface_handle_reference(struct vmw_private *dev_priv,
982 struct drm_file *file_priv,
983 uint32_t u_handle,
984 enum drm_vmw_handle_type handle_type,
985 struct ttm_base_object **base_p)
986 {
987 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
988 struct vmw_user_surface *user_srf = NULL;
989 uint32_t handle;
990 struct ttm_base_object *base;
991 int ret;
992
993 if (handle_type == DRM_VMW_HANDLE_PRIME) {
994 ret = ttm_prime_fd_to_handle(tfile, u_handle, &handle);
995 if (ret)
996 return vmw_buffer_prime_to_surface_base(dev_priv,
997 file_priv,
998 u_handle,
999 &handle,
1000 base_p);
1001 } else {
1002 handle = u_handle;
1003 }
1004
1005 ret = -EINVAL;
1006 base = ttm_base_object_lookup_for_ref(dev_priv->tdev, handle);
1007 if (unlikely(!base)) {
1008 VMW_DEBUG_USER("Could not find surface to reference.\n");
1009 goto out_no_lookup;
1010 }
1011
1012 if (unlikely(ttm_base_object_type(base) != VMW_RES_SURFACE)) {
1013 VMW_DEBUG_USER("Referenced object is not a surface.\n");
1014 goto out_bad_resource;
1015 }
1016 if (handle_type != DRM_VMW_HANDLE_PRIME) {
1017 bool require_exist = false;
1018
1019 user_srf = container_of(base, struct vmw_user_surface,
1020 prime.base);
1021
1022 /* Error out if we are unauthenticated primary */
1023 if (drm_is_primary_client(file_priv) &&
1024 !file_priv->authenticated) {
1025 ret = -EACCES;
1026 goto out_bad_resource;
1027 }
1028
1029 /*
1030 * Make sure the surface creator has the same
1031 * authenticating master, or is already registered with us.
1032 */
1033 if (drm_is_primary_client(file_priv) &&
1034 user_srf->master != file_priv->master)
1035 require_exist = true;
1036
1037 if (unlikely(drm_is_render_client(file_priv)))
1038 require_exist = true;
1039
1040 ret = ttm_ref_object_add(tfile, base, NULL, require_exist);
1041 if (unlikely(ret != 0)) {
1042 DRM_ERROR("Could not add a reference to a surface.\n");
1043 goto out_bad_resource;
1044 }
1045 }
1046
1047 *base_p = base;
1048 return 0;
1049
1050 out_bad_resource:
1051 ttm_base_object_unref(&base);
1052 out_no_lookup:
1053 if (handle_type == DRM_VMW_HANDLE_PRIME)
1054 (void) ttm_ref_object_base_unref(tfile, handle);
1055
1056 return ret;
1057 }
1058
1059 /**
1060 * vmw_surface_reference_ioctl - Ioctl function implementing
1061 * the user surface reference functionality.
1062 *
1063 * @dev: Pointer to a struct drm_device.
1064 * @data: Pointer to data copied from / to user-space.
1065 * @file_priv: Pointer to a drm file private structure.
1066 */
vmw_surface_reference_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1067 int vmw_surface_reference_ioctl(struct drm_device *dev, void *data,
1068 struct drm_file *file_priv)
1069 {
1070 struct vmw_private *dev_priv = vmw_priv(dev);
1071 union drm_vmw_surface_reference_arg *arg =
1072 (union drm_vmw_surface_reference_arg *)data;
1073 struct drm_vmw_surface_arg *req = &arg->req;
1074 struct drm_vmw_surface_create_req *rep = &arg->rep;
1075 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
1076 struct vmw_surface *srf;
1077 struct vmw_user_surface *user_srf;
1078 struct drm_vmw_size __user *user_sizes;
1079 struct ttm_base_object *base;
1080 int ret;
1081
1082 ret = vmw_surface_handle_reference(dev_priv, file_priv, req->sid,
1083 req->handle_type, &base);
1084 if (unlikely(ret != 0))
1085 return ret;
1086
1087 user_srf = container_of(base, struct vmw_user_surface, prime.base);
1088 srf = &user_srf->srf;
1089
1090 /* Downcast of flags when sending back to user space */
1091 rep->flags = (uint32_t)srf->metadata.flags;
1092 rep->format = srf->metadata.format;
1093 memcpy(rep->mip_levels, srf->metadata.mip_levels,
1094 sizeof(srf->metadata.mip_levels));
1095 user_sizes = (struct drm_vmw_size __user *)(unsigned long)
1096 rep->size_addr;
1097
1098 if (user_sizes)
1099 ret = copy_to_user(user_sizes, &srf->metadata.base_size,
1100 sizeof(srf->metadata.base_size));
1101 if (unlikely(ret != 0)) {
1102 VMW_DEBUG_USER("copy_to_user failed %p %u\n", user_sizes,
1103 srf->metadata.num_sizes);
1104 ttm_ref_object_base_unref(tfile, base->handle);
1105 ret = -EFAULT;
1106 }
1107
1108 ttm_base_object_unref(&base);
1109
1110 return ret;
1111 }
1112
1113 /**
1114 * vmw_gb_surface_create - Encode a surface_define command.
1115 *
1116 * @res: Pointer to a struct vmw_resource embedded in a struct
1117 * vmw_surface.
1118 */
vmw_gb_surface_create(struct vmw_resource * res)1119 static int vmw_gb_surface_create(struct vmw_resource *res)
1120 {
1121 struct vmw_private *dev_priv = res->dev_priv;
1122 struct vmw_surface *srf = vmw_res_to_srf(res);
1123 struct vmw_surface_metadata *metadata = &srf->metadata;
1124 uint32_t cmd_len, cmd_id, submit_len;
1125 int ret;
1126 struct {
1127 SVGA3dCmdHeader header;
1128 SVGA3dCmdDefineGBSurface body;
1129 } *cmd;
1130 struct {
1131 SVGA3dCmdHeader header;
1132 SVGA3dCmdDefineGBSurface_v2 body;
1133 } *cmd2;
1134 struct {
1135 SVGA3dCmdHeader header;
1136 SVGA3dCmdDefineGBSurface_v3 body;
1137 } *cmd3;
1138 struct {
1139 SVGA3dCmdHeader header;
1140 SVGA3dCmdDefineGBSurface_v4 body;
1141 } *cmd4;
1142
1143 if (likely(res->id != -1))
1144 return 0;
1145
1146 vmw_fifo_resource_inc(dev_priv);
1147 ret = vmw_resource_alloc_id(res);
1148 if (unlikely(ret != 0)) {
1149 DRM_ERROR("Failed to allocate a surface id.\n");
1150 goto out_no_id;
1151 }
1152
1153 if (unlikely(res->id >= VMWGFX_NUM_GB_SURFACE)) {
1154 ret = -EBUSY;
1155 goto out_no_fifo;
1156 }
1157
1158 if (has_sm5_context(dev_priv) && metadata->array_size > 0) {
1159 cmd_id = SVGA_3D_CMD_DEFINE_GB_SURFACE_V4;
1160 cmd_len = sizeof(cmd4->body);
1161 submit_len = sizeof(*cmd4);
1162 } else if (has_sm4_1_context(dev_priv) && metadata->array_size > 0) {
1163 cmd_id = SVGA_3D_CMD_DEFINE_GB_SURFACE_V3;
1164 cmd_len = sizeof(cmd3->body);
1165 submit_len = sizeof(*cmd3);
1166 } else if (metadata->array_size > 0) {
1167 /* VMW_SM_4 support verified at creation time. */
1168 cmd_id = SVGA_3D_CMD_DEFINE_GB_SURFACE_V2;
1169 cmd_len = sizeof(cmd2->body);
1170 submit_len = sizeof(*cmd2);
1171 } else {
1172 cmd_id = SVGA_3D_CMD_DEFINE_GB_SURFACE;
1173 cmd_len = sizeof(cmd->body);
1174 submit_len = sizeof(*cmd);
1175 }
1176
1177 cmd = VMW_CMD_RESERVE(dev_priv, submit_len);
1178 cmd2 = (typeof(cmd2))cmd;
1179 cmd3 = (typeof(cmd3))cmd;
1180 cmd4 = (typeof(cmd4))cmd;
1181 if (unlikely(!cmd)) {
1182 ret = -ENOMEM;
1183 goto out_no_fifo;
1184 }
1185
1186 if (has_sm5_context(dev_priv) && metadata->array_size > 0) {
1187 cmd4->header.id = cmd_id;
1188 cmd4->header.size = cmd_len;
1189 cmd4->body.sid = srf->res.id;
1190 cmd4->body.surfaceFlags = metadata->flags;
1191 cmd4->body.format = metadata->format;
1192 cmd4->body.numMipLevels = metadata->mip_levels[0];
1193 cmd4->body.multisampleCount = metadata->multisample_count;
1194 cmd4->body.multisamplePattern = metadata->multisample_pattern;
1195 cmd4->body.qualityLevel = metadata->quality_level;
1196 cmd4->body.autogenFilter = metadata->autogen_filter;
1197 cmd4->body.size.width = metadata->base_size.width;
1198 cmd4->body.size.height = metadata->base_size.height;
1199 cmd4->body.size.depth = metadata->base_size.depth;
1200 cmd4->body.arraySize = metadata->array_size;
1201 cmd4->body.bufferByteStride = metadata->buffer_byte_stride;
1202 } else if (has_sm4_1_context(dev_priv) && metadata->array_size > 0) {
1203 cmd3->header.id = cmd_id;
1204 cmd3->header.size = cmd_len;
1205 cmd3->body.sid = srf->res.id;
1206 cmd3->body.surfaceFlags = metadata->flags;
1207 cmd3->body.format = metadata->format;
1208 cmd3->body.numMipLevels = metadata->mip_levels[0];
1209 cmd3->body.multisampleCount = metadata->multisample_count;
1210 cmd3->body.multisamplePattern = metadata->multisample_pattern;
1211 cmd3->body.qualityLevel = metadata->quality_level;
1212 cmd3->body.autogenFilter = metadata->autogen_filter;
1213 cmd3->body.size.width = metadata->base_size.width;
1214 cmd3->body.size.height = metadata->base_size.height;
1215 cmd3->body.size.depth = metadata->base_size.depth;
1216 cmd3->body.arraySize = metadata->array_size;
1217 } else if (metadata->array_size > 0) {
1218 cmd2->header.id = cmd_id;
1219 cmd2->header.size = cmd_len;
1220 cmd2->body.sid = srf->res.id;
1221 cmd2->body.surfaceFlags = metadata->flags;
1222 cmd2->body.format = metadata->format;
1223 cmd2->body.numMipLevels = metadata->mip_levels[0];
1224 cmd2->body.multisampleCount = metadata->multisample_count;
1225 cmd2->body.autogenFilter = metadata->autogen_filter;
1226 cmd2->body.size.width = metadata->base_size.width;
1227 cmd2->body.size.height = metadata->base_size.height;
1228 cmd2->body.size.depth = metadata->base_size.depth;
1229 cmd2->body.arraySize = metadata->array_size;
1230 } else {
1231 cmd->header.id = cmd_id;
1232 cmd->header.size = cmd_len;
1233 cmd->body.sid = srf->res.id;
1234 cmd->body.surfaceFlags = metadata->flags;
1235 cmd->body.format = metadata->format;
1236 cmd->body.numMipLevels = metadata->mip_levels[0];
1237 cmd->body.multisampleCount = metadata->multisample_count;
1238 cmd->body.autogenFilter = metadata->autogen_filter;
1239 cmd->body.size.width = metadata->base_size.width;
1240 cmd->body.size.height = metadata->base_size.height;
1241 cmd->body.size.depth = metadata->base_size.depth;
1242 }
1243
1244 vmw_cmd_commit(dev_priv, submit_len);
1245
1246 return 0;
1247
1248 out_no_fifo:
1249 vmw_resource_release_id(res);
1250 out_no_id:
1251 vmw_fifo_resource_dec(dev_priv);
1252 return ret;
1253 }
1254
1255
vmw_gb_surface_bind(struct vmw_resource * res,struct ttm_validate_buffer * val_buf)1256 static int vmw_gb_surface_bind(struct vmw_resource *res,
1257 struct ttm_validate_buffer *val_buf)
1258 {
1259 struct vmw_private *dev_priv = res->dev_priv;
1260 struct {
1261 SVGA3dCmdHeader header;
1262 SVGA3dCmdBindGBSurface body;
1263 } *cmd1;
1264 struct {
1265 SVGA3dCmdHeader header;
1266 SVGA3dCmdUpdateGBSurface body;
1267 } *cmd2;
1268 uint32_t submit_size;
1269 struct ttm_buffer_object *bo = val_buf->bo;
1270
1271 BUG_ON(bo->resource->mem_type != VMW_PL_MOB);
1272
1273 submit_size = sizeof(*cmd1) + (res->guest_memory_dirty ? sizeof(*cmd2) : 0);
1274
1275 cmd1 = VMW_CMD_RESERVE(dev_priv, submit_size);
1276 if (unlikely(!cmd1))
1277 return -ENOMEM;
1278
1279 cmd1->header.id = SVGA_3D_CMD_BIND_GB_SURFACE;
1280 cmd1->header.size = sizeof(cmd1->body);
1281 cmd1->body.sid = res->id;
1282 cmd1->body.mobid = bo->resource->start;
1283 if (res->guest_memory_dirty) {
1284 cmd2 = (void *) &cmd1[1];
1285 cmd2->header.id = SVGA_3D_CMD_UPDATE_GB_SURFACE;
1286 cmd2->header.size = sizeof(cmd2->body);
1287 cmd2->body.sid = res->id;
1288 }
1289 vmw_cmd_commit(dev_priv, submit_size);
1290
1291 if (res->guest_memory_bo->dirty && res->guest_memory_dirty) {
1292 /* We've just made a full upload. Cear dirty regions. */
1293 vmw_bo_dirty_clear_res(res);
1294 }
1295
1296 res->guest_memory_dirty = false;
1297
1298 return 0;
1299 }
1300
vmw_gb_surface_unbind(struct vmw_resource * res,bool readback,struct ttm_validate_buffer * val_buf)1301 static int vmw_gb_surface_unbind(struct vmw_resource *res,
1302 bool readback,
1303 struct ttm_validate_buffer *val_buf)
1304 {
1305 struct vmw_private *dev_priv = res->dev_priv;
1306 struct ttm_buffer_object *bo = val_buf->bo;
1307 struct vmw_fence_obj *fence;
1308
1309 struct {
1310 SVGA3dCmdHeader header;
1311 SVGA3dCmdReadbackGBSurface body;
1312 } *cmd1;
1313 struct {
1314 SVGA3dCmdHeader header;
1315 SVGA3dCmdInvalidateGBSurface body;
1316 } *cmd2;
1317 struct {
1318 SVGA3dCmdHeader header;
1319 SVGA3dCmdBindGBSurface body;
1320 } *cmd3;
1321 uint32_t submit_size;
1322 uint8_t *cmd;
1323
1324
1325 BUG_ON(bo->resource->mem_type != VMW_PL_MOB);
1326
1327 submit_size = sizeof(*cmd3) + (readback ? sizeof(*cmd1) : sizeof(*cmd2));
1328 cmd = VMW_CMD_RESERVE(dev_priv, submit_size);
1329 if (unlikely(!cmd))
1330 return -ENOMEM;
1331
1332 if (readback) {
1333 cmd1 = (void *) cmd;
1334 cmd1->header.id = SVGA_3D_CMD_READBACK_GB_SURFACE;
1335 cmd1->header.size = sizeof(cmd1->body);
1336 cmd1->body.sid = res->id;
1337 cmd3 = (void *) &cmd1[1];
1338 } else {
1339 cmd2 = (void *) cmd;
1340 cmd2->header.id = SVGA_3D_CMD_INVALIDATE_GB_SURFACE;
1341 cmd2->header.size = sizeof(cmd2->body);
1342 cmd2->body.sid = res->id;
1343 cmd3 = (void *) &cmd2[1];
1344 }
1345
1346 cmd3->header.id = SVGA_3D_CMD_BIND_GB_SURFACE;
1347 cmd3->header.size = sizeof(cmd3->body);
1348 cmd3->body.sid = res->id;
1349 cmd3->body.mobid = SVGA3D_INVALID_ID;
1350
1351 vmw_cmd_commit(dev_priv, submit_size);
1352
1353 /*
1354 * Create a fence object and fence the backup buffer.
1355 */
1356
1357 (void) vmw_execbuf_fence_commands(NULL, dev_priv,
1358 &fence, NULL);
1359
1360 vmw_bo_fence_single(val_buf->bo, fence);
1361
1362 if (likely(fence != NULL))
1363 vmw_fence_obj_unreference(&fence);
1364
1365 return 0;
1366 }
1367
vmw_gb_surface_destroy(struct vmw_resource * res)1368 static int vmw_gb_surface_destroy(struct vmw_resource *res)
1369 {
1370 struct vmw_private *dev_priv = res->dev_priv;
1371 struct vmw_surface *srf = vmw_res_to_srf(res);
1372 struct {
1373 SVGA3dCmdHeader header;
1374 SVGA3dCmdDestroyGBSurface body;
1375 } *cmd;
1376
1377 if (likely(res->id == -1))
1378 return 0;
1379
1380 mutex_lock(&dev_priv->binding_mutex);
1381 vmw_view_surface_list_destroy(dev_priv, &srf->view_list);
1382 vmw_binding_res_list_scrub(&res->binding_head);
1383
1384 cmd = VMW_CMD_RESERVE(dev_priv, sizeof(*cmd));
1385 if (unlikely(!cmd)) {
1386 mutex_unlock(&dev_priv->binding_mutex);
1387 return -ENOMEM;
1388 }
1389
1390 cmd->header.id = SVGA_3D_CMD_DESTROY_GB_SURFACE;
1391 cmd->header.size = sizeof(cmd->body);
1392 cmd->body.sid = res->id;
1393 vmw_cmd_commit(dev_priv, sizeof(*cmd));
1394 mutex_unlock(&dev_priv->binding_mutex);
1395 vmw_resource_release_id(res);
1396 vmw_fifo_resource_dec(dev_priv);
1397
1398 return 0;
1399 }
1400
1401 /**
1402 * vmw_gb_surface_define_ioctl - Ioctl function implementing
1403 * the user surface define functionality.
1404 *
1405 * @dev: Pointer to a struct drm_device.
1406 * @data: Pointer to data copied from / to user-space.
1407 * @file_priv: Pointer to a drm file private structure.
1408 */
vmw_gb_surface_define_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1409 int vmw_gb_surface_define_ioctl(struct drm_device *dev, void *data,
1410 struct drm_file *file_priv)
1411 {
1412 union drm_vmw_gb_surface_create_arg *arg =
1413 (union drm_vmw_gb_surface_create_arg *)data;
1414 struct drm_vmw_gb_surface_create_rep *rep = &arg->rep;
1415 struct drm_vmw_gb_surface_create_ext_req req_ext;
1416
1417 req_ext.base = arg->req;
1418 req_ext.version = drm_vmw_gb_surface_v1;
1419 req_ext.svga3d_flags_upper_32_bits = 0;
1420 req_ext.multisample_pattern = SVGA3D_MS_PATTERN_NONE;
1421 req_ext.quality_level = SVGA3D_MS_QUALITY_NONE;
1422 req_ext.buffer_byte_stride = 0;
1423 req_ext.must_be_zero = 0;
1424
1425 return vmw_gb_surface_define_internal(dev, &req_ext, rep, file_priv);
1426 }
1427
1428 /**
1429 * vmw_gb_surface_reference_ioctl - Ioctl function implementing
1430 * the user surface reference functionality.
1431 *
1432 * @dev: Pointer to a struct drm_device.
1433 * @data: Pointer to data copied from / to user-space.
1434 * @file_priv: Pointer to a drm file private structure.
1435 */
vmw_gb_surface_reference_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1436 int vmw_gb_surface_reference_ioctl(struct drm_device *dev, void *data,
1437 struct drm_file *file_priv)
1438 {
1439 union drm_vmw_gb_surface_reference_arg *arg =
1440 (union drm_vmw_gb_surface_reference_arg *)data;
1441 struct drm_vmw_surface_arg *req = &arg->req;
1442 struct drm_vmw_gb_surface_ref_rep *rep = &arg->rep;
1443 struct drm_vmw_gb_surface_ref_ext_rep rep_ext;
1444 int ret;
1445
1446 ret = vmw_gb_surface_reference_internal(dev, req, &rep_ext, file_priv);
1447
1448 if (unlikely(ret != 0))
1449 return ret;
1450
1451 rep->creq = rep_ext.creq.base;
1452 rep->crep = rep_ext.crep;
1453
1454 return ret;
1455 }
1456
1457 /**
1458 * vmw_gb_surface_define_ext_ioctl - Ioctl function implementing
1459 * the user surface define functionality.
1460 *
1461 * @dev: Pointer to a struct drm_device.
1462 * @data: Pointer to data copied from / to user-space.
1463 * @file_priv: Pointer to a drm file private structure.
1464 */
vmw_gb_surface_define_ext_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1465 int vmw_gb_surface_define_ext_ioctl(struct drm_device *dev, void *data,
1466 struct drm_file *file_priv)
1467 {
1468 union drm_vmw_gb_surface_create_ext_arg *arg =
1469 (union drm_vmw_gb_surface_create_ext_arg *)data;
1470 struct drm_vmw_gb_surface_create_ext_req *req = &arg->req;
1471 struct drm_vmw_gb_surface_create_rep *rep = &arg->rep;
1472
1473 return vmw_gb_surface_define_internal(dev, req, rep, file_priv);
1474 }
1475
1476 /**
1477 * vmw_gb_surface_reference_ext_ioctl - Ioctl function implementing
1478 * the user surface reference functionality.
1479 *
1480 * @dev: Pointer to a struct drm_device.
1481 * @data: Pointer to data copied from / to user-space.
1482 * @file_priv: Pointer to a drm file private structure.
1483 */
vmw_gb_surface_reference_ext_ioctl(struct drm_device * dev,void * data,struct drm_file * file_priv)1484 int vmw_gb_surface_reference_ext_ioctl(struct drm_device *dev, void *data,
1485 struct drm_file *file_priv)
1486 {
1487 union drm_vmw_gb_surface_reference_ext_arg *arg =
1488 (union drm_vmw_gb_surface_reference_ext_arg *)data;
1489 struct drm_vmw_surface_arg *req = &arg->req;
1490 struct drm_vmw_gb_surface_ref_ext_rep *rep = &arg->rep;
1491
1492 return vmw_gb_surface_reference_internal(dev, req, rep, file_priv);
1493 }
1494
1495 /**
1496 * vmw_gb_surface_define_internal - Ioctl function implementing
1497 * the user surface define functionality.
1498 *
1499 * @dev: Pointer to a struct drm_device.
1500 * @req: Request argument from user-space.
1501 * @rep: Response argument to user-space.
1502 * @file_priv: Pointer to a drm file private structure.
1503 */
1504 static int
vmw_gb_surface_define_internal(struct drm_device * dev,const struct drm_vmw_gb_surface_create_ext_req * req,struct drm_vmw_gb_surface_create_rep * rep,struct drm_file * file_priv)1505 vmw_gb_surface_define_internal(struct drm_device *dev,
1506 const struct drm_vmw_gb_surface_create_ext_req *req,
1507 struct drm_vmw_gb_surface_create_rep *rep,
1508 struct drm_file *file_priv)
1509 {
1510 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
1511 struct vmw_private *dev_priv = vmw_priv(dev);
1512 struct vmw_user_surface *user_srf;
1513 struct vmw_surface_metadata metadata = {0};
1514 struct vmw_surface *srf;
1515 struct vmw_resource *res;
1516 struct vmw_resource *tmp;
1517 int ret = 0;
1518 uint32_t backup_handle = 0;
1519 SVGA3dSurfaceAllFlags svga3d_flags_64 =
1520 SVGA3D_FLAGS_64(req->svga3d_flags_upper_32_bits,
1521 req->base.svga3d_flags);
1522
1523 /* array_size must be null for non-GL3 host. */
1524 if (req->base.array_size > 0) {
1525 if (has_sm5_context(dev_priv)) {
1526 if (req->base.array_size > SVGA3D_SM5_MAX_SURFACE_ARRAYSIZE) {
1527 VMW_DEBUG_USER("Invalid Surface Array Size.\n");
1528 return -EINVAL;
1529 }
1530 } else if (has_sm4_context(dev_priv)) {
1531 if (req->base.array_size > SVGA3D_SM4_MAX_SURFACE_ARRAYSIZE) {
1532 VMW_DEBUG_USER("Invalid Surface Array Size.\n");
1533 return -EINVAL;
1534 }
1535 } else {
1536 VMW_DEBUG_USER("SM4+ surface not supported.\n");
1537 return -EINVAL;
1538 }
1539 }
1540
1541 if (!has_sm4_1_context(dev_priv)) {
1542 if (req->svga3d_flags_upper_32_bits != 0)
1543 ret = -EINVAL;
1544
1545 if (req->base.multisample_count != 0)
1546 ret = -EINVAL;
1547
1548 if (req->multisample_pattern != SVGA3D_MS_PATTERN_NONE)
1549 ret = -EINVAL;
1550
1551 if (req->quality_level != SVGA3D_MS_QUALITY_NONE)
1552 ret = -EINVAL;
1553
1554 if (ret) {
1555 VMW_DEBUG_USER("SM4.1 surface not supported.\n");
1556 return ret;
1557 }
1558 }
1559
1560 if (req->buffer_byte_stride > 0 && !has_sm5_context(dev_priv)) {
1561 VMW_DEBUG_USER("SM5 surface not supported.\n");
1562 return -EINVAL;
1563 }
1564
1565 if ((svga3d_flags_64 & SVGA3D_SURFACE_MULTISAMPLE) &&
1566 req->base.multisample_count == 0) {
1567 VMW_DEBUG_USER("Invalid sample count.\n");
1568 return -EINVAL;
1569 }
1570
1571 if (req->base.mip_levels > DRM_VMW_MAX_MIP_LEVELS) {
1572 VMW_DEBUG_USER("Invalid mip level.\n");
1573 return -EINVAL;
1574 }
1575
1576 metadata.flags = svga3d_flags_64;
1577 metadata.format = req->base.format;
1578 metadata.mip_levels[0] = req->base.mip_levels;
1579 metadata.multisample_count = req->base.multisample_count;
1580 metadata.multisample_pattern = req->multisample_pattern;
1581 metadata.quality_level = req->quality_level;
1582 metadata.array_size = req->base.array_size;
1583 metadata.buffer_byte_stride = req->buffer_byte_stride;
1584 metadata.num_sizes = 1;
1585 metadata.base_size = req->base.base_size;
1586 metadata.scanout = req->base.drm_surface_flags &
1587 drm_vmw_surface_flag_scanout;
1588
1589 /* Define a surface based on the parameters. */
1590 ret = vmw_gb_surface_define(dev_priv, &metadata, &srf);
1591 if (ret != 0) {
1592 VMW_DEBUG_USER("Failed to define surface.\n");
1593 return ret;
1594 }
1595
1596 user_srf = container_of(srf, struct vmw_user_surface, srf);
1597 if (drm_is_primary_client(file_priv))
1598 user_srf->master = drm_file_get_master(file_priv);
1599
1600 res = &user_srf->srf.res;
1601
1602 if (req->base.buffer_handle != SVGA3D_INVALID_ID) {
1603 ret = vmw_user_bo_lookup(file_priv, req->base.buffer_handle,
1604 &res->guest_memory_bo);
1605 if (ret == 0) {
1606 if (res->guest_memory_bo->is_dumb) {
1607 VMW_DEBUG_USER("Can't backup surface with a dumb buffer.\n");
1608 vmw_user_bo_unref(&res->guest_memory_bo);
1609 ret = -EINVAL;
1610 goto out_unlock;
1611 } else if (res->guest_memory_bo->tbo.base.size < res->guest_memory_size) {
1612 VMW_DEBUG_USER("Surface backup buffer too small.\n");
1613 vmw_user_bo_unref(&res->guest_memory_bo);
1614 ret = -EINVAL;
1615 goto out_unlock;
1616 } else {
1617 backup_handle = req->base.buffer_handle;
1618 }
1619 }
1620 } else if (req->base.drm_surface_flags &
1621 (drm_vmw_surface_flag_create_buffer |
1622 drm_vmw_surface_flag_coherent)) {
1623 ret = vmw_gem_object_create_with_handle(dev_priv, file_priv,
1624 res->guest_memory_size,
1625 &backup_handle,
1626 &res->guest_memory_bo);
1627 }
1628
1629 if (unlikely(ret != 0)) {
1630 vmw_resource_unreference(&res);
1631 goto out_unlock;
1632 }
1633
1634 if (req->base.drm_surface_flags & drm_vmw_surface_flag_coherent) {
1635 struct vmw_bo *backup = res->guest_memory_bo;
1636
1637 ttm_bo_reserve(&backup->tbo, false, false, NULL);
1638 if (!res->func->dirty_alloc)
1639 ret = -EINVAL;
1640 if (!ret)
1641 ret = vmw_bo_dirty_add(backup);
1642 if (!ret) {
1643 res->coherent = true;
1644 ret = res->func->dirty_alloc(res);
1645 }
1646 ttm_bo_unreserve(&backup->tbo);
1647 if (ret) {
1648 vmw_resource_unreference(&res);
1649 goto out_unlock;
1650 }
1651
1652 }
1653
1654 if (res->guest_memory_bo) {
1655 ret = vmw_bo_add_detached_resource(res->guest_memory_bo, res);
1656 if (unlikely(ret != 0)) {
1657 vmw_resource_unreference(&res);
1658 goto out_unlock;
1659 }
1660 }
1661
1662 tmp = vmw_resource_reference(res);
1663 ret = ttm_prime_object_init(tfile, res->guest_memory_size, &user_srf->prime,
1664 VMW_RES_SURFACE,
1665 &vmw_user_surface_base_release);
1666
1667 if (unlikely(ret != 0)) {
1668 vmw_resource_unreference(&tmp);
1669 vmw_resource_unreference(&res);
1670 goto out_unlock;
1671 }
1672
1673 rep->handle = user_srf->prime.base.handle;
1674 rep->backup_size = res->guest_memory_size;
1675 if (res->guest_memory_bo) {
1676 rep->buffer_map_handle =
1677 drm_vma_node_offset_addr(&res->guest_memory_bo->tbo.base.vma_node);
1678 rep->buffer_size = res->guest_memory_bo->tbo.base.size;
1679 rep->buffer_handle = backup_handle;
1680 } else {
1681 rep->buffer_map_handle = 0;
1682 rep->buffer_size = 0;
1683 rep->buffer_handle = SVGA3D_INVALID_ID;
1684 }
1685 vmw_resource_unreference(&res);
1686
1687 out_unlock:
1688 return ret;
1689 }
1690
1691 /**
1692 * vmw_gb_surface_reference_internal - Ioctl function implementing
1693 * the user surface reference functionality.
1694 *
1695 * @dev: Pointer to a struct drm_device.
1696 * @req: Pointer to user-space request surface arg.
1697 * @rep: Pointer to response to user-space.
1698 * @file_priv: Pointer to a drm file private structure.
1699 */
1700 static int
vmw_gb_surface_reference_internal(struct drm_device * dev,struct drm_vmw_surface_arg * req,struct drm_vmw_gb_surface_ref_ext_rep * rep,struct drm_file * file_priv)1701 vmw_gb_surface_reference_internal(struct drm_device *dev,
1702 struct drm_vmw_surface_arg *req,
1703 struct drm_vmw_gb_surface_ref_ext_rep *rep,
1704 struct drm_file *file_priv)
1705 {
1706 struct vmw_private *dev_priv = vmw_priv(dev);
1707 struct vmw_surface *srf;
1708 struct vmw_user_surface *user_srf;
1709 struct vmw_surface_metadata *metadata;
1710 struct ttm_base_object *base;
1711 u32 backup_handle;
1712 int ret;
1713
1714 ret = vmw_surface_handle_reference(dev_priv, file_priv, req->sid,
1715 req->handle_type, &base);
1716 if (unlikely(ret != 0))
1717 return ret;
1718
1719 user_srf = container_of(base, struct vmw_user_surface, prime.base);
1720 srf = &user_srf->srf;
1721 if (!srf->res.guest_memory_bo) {
1722 DRM_ERROR("Shared GB surface is missing a backup buffer.\n");
1723 goto out_bad_resource;
1724 }
1725 metadata = &srf->metadata;
1726
1727 mutex_lock(&dev_priv->cmdbuf_mutex); /* Protect res->backup */
1728 ret = drm_gem_handle_create(file_priv, &srf->res.guest_memory_bo->tbo.base,
1729 &backup_handle);
1730 mutex_unlock(&dev_priv->cmdbuf_mutex);
1731 if (ret != 0) {
1732 drm_err(dev, "Wasn't able to create a backing handle for surface sid = %u.\n",
1733 req->sid);
1734 goto out_bad_resource;
1735 }
1736
1737 rep->creq.base.svga3d_flags = SVGA3D_FLAGS_LOWER_32(metadata->flags);
1738 rep->creq.base.format = metadata->format;
1739 rep->creq.base.mip_levels = metadata->mip_levels[0];
1740 rep->creq.base.drm_surface_flags = 0;
1741 rep->creq.base.multisample_count = metadata->multisample_count;
1742 rep->creq.base.autogen_filter = metadata->autogen_filter;
1743 rep->creq.base.array_size = metadata->array_size;
1744 rep->creq.base.buffer_handle = backup_handle;
1745 rep->creq.base.base_size = metadata->base_size;
1746 rep->crep.handle = user_srf->prime.base.handle;
1747 rep->crep.backup_size = srf->res.guest_memory_size;
1748 rep->crep.buffer_handle = backup_handle;
1749 rep->crep.buffer_map_handle =
1750 drm_vma_node_offset_addr(&srf->res.guest_memory_bo->tbo.base.vma_node);
1751 rep->crep.buffer_size = srf->res.guest_memory_bo->tbo.base.size;
1752
1753 rep->creq.version = drm_vmw_gb_surface_v1;
1754 rep->creq.svga3d_flags_upper_32_bits =
1755 SVGA3D_FLAGS_UPPER_32(metadata->flags);
1756 rep->creq.multisample_pattern = metadata->multisample_pattern;
1757 rep->creq.quality_level = metadata->quality_level;
1758 rep->creq.must_be_zero = 0;
1759
1760 out_bad_resource:
1761 ttm_base_object_unref(&base);
1762
1763 return ret;
1764 }
1765
1766 /**
1767 * vmw_subres_dirty_add - Add a dirty region to a subresource
1768 * @dirty: The surfaces's dirty tracker.
1769 * @loc_start: The location corresponding to the start of the region.
1770 * @loc_end: The location corresponding to the end of the region.
1771 *
1772 * As we are assuming that @loc_start and @loc_end represent a sequential
1773 * range of backing store memory, if the region spans multiple lines then
1774 * regardless of the x coordinate, the full lines are dirtied.
1775 * Correspondingly if the region spans multiple z slices, then full rather
1776 * than partial z slices are dirtied.
1777 */
vmw_subres_dirty_add(struct vmw_surface_dirty * dirty,const struct vmw_surface_loc * loc_start,const struct vmw_surface_loc * loc_end)1778 static void vmw_subres_dirty_add(struct vmw_surface_dirty *dirty,
1779 const struct vmw_surface_loc *loc_start,
1780 const struct vmw_surface_loc *loc_end)
1781 {
1782 const struct vmw_surface_cache *cache = &dirty->cache;
1783 SVGA3dBox *box = &dirty->boxes[loc_start->sub_resource];
1784 u32 mip = loc_start->sub_resource % cache->num_mip_levels;
1785 const struct drm_vmw_size *size = &cache->mip[mip].size;
1786 u32 box_c2 = box->z + box->d;
1787
1788 if (WARN_ON(loc_start->sub_resource >= dirty->num_subres))
1789 return;
1790
1791 if (box->d == 0 || box->z > loc_start->z)
1792 box->z = loc_start->z;
1793 if (box_c2 < loc_end->z)
1794 box->d = loc_end->z - box->z;
1795
1796 if (loc_start->z + 1 == loc_end->z) {
1797 box_c2 = box->y + box->h;
1798 if (box->h == 0 || box->y > loc_start->y)
1799 box->y = loc_start->y;
1800 if (box_c2 < loc_end->y)
1801 box->h = loc_end->y - box->y;
1802
1803 if (loc_start->y + 1 == loc_end->y) {
1804 box_c2 = box->x + box->w;
1805 if (box->w == 0 || box->x > loc_start->x)
1806 box->x = loc_start->x;
1807 if (box_c2 < loc_end->x)
1808 box->w = loc_end->x - box->x;
1809 } else {
1810 box->x = 0;
1811 box->w = size->width;
1812 }
1813 } else {
1814 box->y = 0;
1815 box->h = size->height;
1816 box->x = 0;
1817 box->w = size->width;
1818 }
1819 }
1820
1821 /**
1822 * vmw_subres_dirty_full - Mark a full subresource as dirty
1823 * @dirty: The surface's dirty tracker.
1824 * @subres: The subresource
1825 */
vmw_subres_dirty_full(struct vmw_surface_dirty * dirty,u32 subres)1826 static void vmw_subres_dirty_full(struct vmw_surface_dirty *dirty, u32 subres)
1827 {
1828 const struct vmw_surface_cache *cache = &dirty->cache;
1829 u32 mip = subres % cache->num_mip_levels;
1830 const struct drm_vmw_size *size = &cache->mip[mip].size;
1831 SVGA3dBox *box = &dirty->boxes[subres];
1832
1833 box->x = 0;
1834 box->y = 0;
1835 box->z = 0;
1836 box->w = size->width;
1837 box->h = size->height;
1838 box->d = size->depth;
1839 }
1840
1841 /*
1842 * vmw_surface_tex_dirty_add_range - The dirty_add_range callback for texture
1843 * surfaces.
1844 */
vmw_surface_tex_dirty_range_add(struct vmw_resource * res,size_t start,size_t end)1845 static void vmw_surface_tex_dirty_range_add(struct vmw_resource *res,
1846 size_t start, size_t end)
1847 {
1848 struct vmw_surface_dirty *dirty =
1849 (struct vmw_surface_dirty *) res->dirty;
1850 size_t backup_end = res->guest_memory_offset + res->guest_memory_size;
1851 struct vmw_surface_loc loc1, loc2;
1852 const struct vmw_surface_cache *cache;
1853
1854 start = max_t(size_t, start, res->guest_memory_offset) - res->guest_memory_offset;
1855 end = min(end, backup_end) - res->guest_memory_offset;
1856 cache = &dirty->cache;
1857 vmw_surface_get_loc(cache, &loc1, start);
1858 vmw_surface_get_loc(cache, &loc2, end - 1);
1859 vmw_surface_inc_loc(cache, &loc2);
1860
1861 if (loc1.sheet != loc2.sheet) {
1862 u32 sub_res;
1863
1864 /*
1865 * Multiple multisample sheets. To do this in an optimized
1866 * fashion, compute the dirty region for each sheet and the
1867 * resulting union. Since this is not a common case, just dirty
1868 * the whole surface.
1869 */
1870 for (sub_res = 0; sub_res < dirty->num_subres; ++sub_res)
1871 vmw_subres_dirty_full(dirty, sub_res);
1872 return;
1873 }
1874 if (loc1.sub_resource + 1 == loc2.sub_resource) {
1875 /* Dirty range covers a single sub-resource */
1876 vmw_subres_dirty_add(dirty, &loc1, &loc2);
1877 } else {
1878 /* Dirty range covers multiple sub-resources */
1879 struct vmw_surface_loc loc_min, loc_max;
1880 u32 sub_res;
1881
1882 vmw_surface_max_loc(cache, loc1.sub_resource, &loc_max);
1883 vmw_subres_dirty_add(dirty, &loc1, &loc_max);
1884 vmw_surface_min_loc(cache, loc2.sub_resource - 1, &loc_min);
1885 vmw_subres_dirty_add(dirty, &loc_min, &loc2);
1886 for (sub_res = loc1.sub_resource + 1;
1887 sub_res < loc2.sub_resource - 1; ++sub_res)
1888 vmw_subres_dirty_full(dirty, sub_res);
1889 }
1890 }
1891
1892 /*
1893 * vmw_surface_tex_dirty_add_range - The dirty_add_range callback for buffer
1894 * surfaces.
1895 */
vmw_surface_buf_dirty_range_add(struct vmw_resource * res,size_t start,size_t end)1896 static void vmw_surface_buf_dirty_range_add(struct vmw_resource *res,
1897 size_t start, size_t end)
1898 {
1899 struct vmw_surface_dirty *dirty =
1900 (struct vmw_surface_dirty *) res->dirty;
1901 const struct vmw_surface_cache *cache = &dirty->cache;
1902 size_t backup_end = res->guest_memory_offset + cache->mip_chain_bytes;
1903 SVGA3dBox *box = &dirty->boxes[0];
1904 u32 box_c2;
1905
1906 box->h = box->d = 1;
1907 start = max_t(size_t, start, res->guest_memory_offset) - res->guest_memory_offset;
1908 end = min(end, backup_end) - res->guest_memory_offset;
1909 box_c2 = box->x + box->w;
1910 if (box->w == 0 || box->x > start)
1911 box->x = start;
1912 if (box_c2 < end)
1913 box->w = end - box->x;
1914 }
1915
1916 /*
1917 * vmw_surface_tex_dirty_add_range - The dirty_add_range callback for surfaces
1918 */
vmw_surface_dirty_range_add(struct vmw_resource * res,size_t start,size_t end)1919 static void vmw_surface_dirty_range_add(struct vmw_resource *res, size_t start,
1920 size_t end)
1921 {
1922 struct vmw_surface *srf = vmw_res_to_srf(res);
1923
1924 if (WARN_ON(end <= res->guest_memory_offset ||
1925 start >= res->guest_memory_offset + res->guest_memory_size))
1926 return;
1927
1928 if (srf->metadata.format == SVGA3D_BUFFER)
1929 vmw_surface_buf_dirty_range_add(res, start, end);
1930 else
1931 vmw_surface_tex_dirty_range_add(res, start, end);
1932 }
1933
1934 /*
1935 * vmw_surface_dirty_sync - The surface's dirty_sync callback.
1936 */
vmw_surface_dirty_sync(struct vmw_resource * res)1937 static int vmw_surface_dirty_sync(struct vmw_resource *res)
1938 {
1939 struct vmw_private *dev_priv = res->dev_priv;
1940 u32 i, num_dirty;
1941 struct vmw_surface_dirty *dirty =
1942 (struct vmw_surface_dirty *) res->dirty;
1943 size_t alloc_size;
1944 const struct vmw_surface_cache *cache = &dirty->cache;
1945 struct {
1946 SVGA3dCmdHeader header;
1947 SVGA3dCmdDXUpdateSubResource body;
1948 } *cmd1;
1949 struct {
1950 SVGA3dCmdHeader header;
1951 SVGA3dCmdUpdateGBImage body;
1952 } *cmd2;
1953 void *cmd;
1954
1955 num_dirty = 0;
1956 for (i = 0; i < dirty->num_subres; ++i) {
1957 const SVGA3dBox *box = &dirty->boxes[i];
1958
1959 if (box->d)
1960 num_dirty++;
1961 }
1962
1963 if (!num_dirty)
1964 goto out;
1965
1966 alloc_size = num_dirty * ((has_sm4_context(dev_priv)) ? sizeof(*cmd1) : sizeof(*cmd2));
1967 cmd = VMW_CMD_RESERVE(dev_priv, alloc_size);
1968 if (!cmd)
1969 return -ENOMEM;
1970
1971 cmd1 = cmd;
1972 cmd2 = cmd;
1973
1974 for (i = 0; i < dirty->num_subres; ++i) {
1975 const SVGA3dBox *box = &dirty->boxes[i];
1976
1977 if (!box->d)
1978 continue;
1979
1980 /*
1981 * DX_UPDATE_SUBRESOURCE is aware of array surfaces.
1982 * UPDATE_GB_IMAGE is not.
1983 */
1984 if (has_sm4_context(dev_priv)) {
1985 cmd1->header.id = SVGA_3D_CMD_DX_UPDATE_SUBRESOURCE;
1986 cmd1->header.size = sizeof(cmd1->body);
1987 cmd1->body.sid = res->id;
1988 cmd1->body.subResource = i;
1989 cmd1->body.box = *box;
1990 cmd1++;
1991 } else {
1992 cmd2->header.id = SVGA_3D_CMD_UPDATE_GB_IMAGE;
1993 cmd2->header.size = sizeof(cmd2->body);
1994 cmd2->body.image.sid = res->id;
1995 cmd2->body.image.face = i / cache->num_mip_levels;
1996 cmd2->body.image.mipmap = i -
1997 (cache->num_mip_levels * cmd2->body.image.face);
1998 cmd2->body.box = *box;
1999 cmd2++;
2000 }
2001
2002 }
2003 vmw_cmd_commit(dev_priv, alloc_size);
2004 out:
2005 memset(&dirty->boxes[0], 0, sizeof(dirty->boxes[0]) *
2006 dirty->num_subres);
2007
2008 return 0;
2009 }
2010
2011 /*
2012 * vmw_surface_dirty_alloc - The surface's dirty_alloc callback.
2013 */
vmw_surface_dirty_alloc(struct vmw_resource * res)2014 static int vmw_surface_dirty_alloc(struct vmw_resource *res)
2015 {
2016 struct vmw_surface *srf = vmw_res_to_srf(res);
2017 const struct vmw_surface_metadata *metadata = &srf->metadata;
2018 struct vmw_surface_dirty *dirty;
2019 u32 num_layers = 1;
2020 u32 num_mip;
2021 u32 num_subres;
2022 u32 num_samples;
2023 size_t dirty_size;
2024 int ret;
2025
2026 if (metadata->array_size)
2027 num_layers = metadata->array_size;
2028 else if (metadata->flags & SVGA3D_SURFACE_CUBEMAP)
2029 num_layers *= SVGA3D_MAX_SURFACE_FACES;
2030
2031 num_mip = metadata->mip_levels[0];
2032 if (!num_mip)
2033 num_mip = 1;
2034
2035 num_subres = num_layers * num_mip;
2036 dirty_size = struct_size(dirty, boxes, num_subres);
2037
2038 dirty = kvzalloc(dirty_size, GFP_KERNEL);
2039 if (!dirty) {
2040 ret = -ENOMEM;
2041 goto out_no_dirty;
2042 }
2043
2044 num_samples = max_t(u32, 1, metadata->multisample_count);
2045 ret = vmw_surface_setup_cache(&metadata->base_size, metadata->format,
2046 num_mip, num_layers, num_samples,
2047 &dirty->cache);
2048 if (ret)
2049 goto out_no_cache;
2050
2051 dirty->num_subres = num_subres;
2052 res->dirty = (struct vmw_resource_dirty *) dirty;
2053
2054 return 0;
2055
2056 out_no_cache:
2057 kvfree(dirty);
2058 out_no_dirty:
2059 return ret;
2060 }
2061
2062 /*
2063 * vmw_surface_dirty_free - The surface's dirty_free callback
2064 */
vmw_surface_dirty_free(struct vmw_resource * res)2065 static void vmw_surface_dirty_free(struct vmw_resource *res)
2066 {
2067 struct vmw_surface_dirty *dirty =
2068 (struct vmw_surface_dirty *) res->dirty;
2069
2070 kvfree(dirty);
2071 res->dirty = NULL;
2072 }
2073
2074 /*
2075 * vmw_surface_clean - The surface's clean callback
2076 */
vmw_surface_clean(struct vmw_resource * res)2077 static int vmw_surface_clean(struct vmw_resource *res)
2078 {
2079 struct vmw_private *dev_priv = res->dev_priv;
2080 size_t alloc_size;
2081 struct {
2082 SVGA3dCmdHeader header;
2083 SVGA3dCmdReadbackGBSurface body;
2084 } *cmd;
2085
2086 alloc_size = sizeof(*cmd);
2087 cmd = VMW_CMD_RESERVE(dev_priv, alloc_size);
2088 if (!cmd)
2089 return -ENOMEM;
2090
2091 cmd->header.id = SVGA_3D_CMD_READBACK_GB_SURFACE;
2092 cmd->header.size = sizeof(cmd->body);
2093 cmd->body.sid = res->id;
2094 vmw_cmd_commit(dev_priv, alloc_size);
2095
2096 return 0;
2097 }
2098
2099 /*
2100 * vmw_gb_surface_define - Define a private GB surface
2101 *
2102 * @dev_priv: Pointer to a device private.
2103 * @metadata: Metadata representing the surface to create.
2104 * @user_srf_out: allocated user_srf. Set to NULL on failure.
2105 *
2106 * GB surfaces allocated by this function will not have a user mode handle, and
2107 * thus will only be visible to vmwgfx. For optimization reasons the
2108 * surface may later be given a user mode handle by another function to make
2109 * it available to user mode drivers.
2110 */
vmw_gb_surface_define(struct vmw_private * dev_priv,const struct vmw_surface_metadata * req,struct vmw_surface ** srf_out)2111 int vmw_gb_surface_define(struct vmw_private *dev_priv,
2112 const struct vmw_surface_metadata *req,
2113 struct vmw_surface **srf_out)
2114 {
2115 struct vmw_surface_metadata *metadata;
2116 struct vmw_user_surface *user_srf;
2117 struct vmw_surface *srf;
2118 u32 sample_count = 1;
2119 u32 num_layers = 1;
2120 int ret;
2121
2122 *srf_out = NULL;
2123
2124 if (req->scanout) {
2125 if (!vmw_surface_is_screen_target_format(req->format)) {
2126 VMW_DEBUG_USER("Invalid Screen Target surface format.");
2127 return -EINVAL;
2128 }
2129
2130 if (req->base_size.width > dev_priv->texture_max_width ||
2131 req->base_size.height > dev_priv->texture_max_height) {
2132 VMW_DEBUG_USER("%ux%u\n, exceed max surface size %ux%u",
2133 req->base_size.width,
2134 req->base_size.height,
2135 dev_priv->texture_max_width,
2136 dev_priv->texture_max_height);
2137 return -EINVAL;
2138 }
2139 } else {
2140 const SVGA3dSurfaceDesc *desc =
2141 vmw_surface_get_desc(req->format);
2142
2143 if (desc->blockDesc == SVGA3DBLOCKDESC_NONE) {
2144 VMW_DEBUG_USER("Invalid surface format.\n");
2145 return -EINVAL;
2146 }
2147 }
2148
2149 if (req->autogen_filter != SVGA3D_TEX_FILTER_NONE)
2150 return -EINVAL;
2151
2152 if (req->num_sizes != 1)
2153 return -EINVAL;
2154
2155 if (req->sizes != NULL)
2156 return -EINVAL;
2157
2158 user_srf = kzalloc_obj(*user_srf);
2159 if (unlikely(!user_srf)) {
2160 ret = -ENOMEM;
2161 goto out_unlock;
2162 }
2163
2164 *srf_out = &user_srf->srf;
2165
2166 srf = &user_srf->srf;
2167 srf->metadata = *req;
2168 srf->offsets = NULL;
2169
2170 metadata = &srf->metadata;
2171
2172 if (metadata->array_size)
2173 num_layers = req->array_size;
2174 else if (metadata->flags & SVGA3D_SURFACE_CUBEMAP)
2175 num_layers = SVGA3D_MAX_SURFACE_FACES;
2176
2177 if (metadata->flags & SVGA3D_SURFACE_MULTISAMPLE)
2178 sample_count = metadata->multisample_count;
2179
2180 srf->res.guest_memory_size =
2181 vmw_surface_get_serialized_size_extended(
2182 metadata->format,
2183 metadata->base_size,
2184 metadata->mip_levels[0],
2185 num_layers,
2186 sample_count);
2187
2188 if (metadata->flags & SVGA3D_SURFACE_BIND_STREAM_OUTPUT)
2189 srf->res.guest_memory_size += sizeof(SVGA3dDXSOState);
2190
2191 /*
2192 * Don't set SVGA3D_SURFACE_SCREENTARGET flag for a scanout surface with
2193 * size greater than STDU max width/height. This is really a workaround
2194 * to support creation of big framebuffer requested by some user-space
2195 * for whole topology. That big framebuffer won't really be used for
2196 * binding with screen target as during prepare_fb a separate surface is
2197 * created so it's safe to ignore SVGA3D_SURFACE_SCREENTARGET flag.
2198 */
2199 if (dev_priv->active_display_unit == vmw_du_screen_target &&
2200 metadata->scanout &&
2201 metadata->base_size.width <= dev_priv->stdu_max_width &&
2202 metadata->base_size.height <= dev_priv->stdu_max_height)
2203 metadata->flags |= SVGA3D_SURFACE_SCREENTARGET;
2204
2205 /*
2206 * From this point, the generic resource management functions
2207 * destroy the object on failure.
2208 */
2209 ret = vmw_surface_init(dev_priv, srf, vmw_user_surface_free);
2210
2211 return ret;
2212
2213 out_unlock:
2214 return ret;
2215 }
2216
vmw_format_bpp_to_svga(struct vmw_private * vmw,int bpp)2217 static SVGA3dSurfaceFormat vmw_format_bpp_to_svga(struct vmw_private *vmw,
2218 int bpp)
2219 {
2220 switch (bpp) {
2221 case 8: /* DRM_FORMAT_C8 */
2222 return SVGA3D_P8;
2223 case 16: /* DRM_FORMAT_RGB565 */
2224 return SVGA3D_R5G6B5;
2225 case 32: /* DRM_FORMAT_XRGB8888 */
2226 if (has_sm4_context(vmw))
2227 return SVGA3D_B8G8R8X8_UNORM;
2228 return SVGA3D_X8R8G8B8;
2229 default:
2230 drm_warn(&vmw->drm, "Unsupported format bpp: %d\n", bpp);
2231 return SVGA3D_X8R8G8B8;
2232 }
2233 }
2234
2235 /**
2236 * vmw_dumb_create - Create a dumb kms buffer
2237 *
2238 * @file_priv: Pointer to a struct drm_file identifying the caller.
2239 * @dev: Pointer to the drm device.
2240 * @args: Pointer to a struct drm_mode_create_dumb structure
2241 * Return: Zero on success, negative error code on failure.
2242 *
2243 * This is a driver callback for the core drm create_dumb functionality.
2244 * Note that this is very similar to the vmw_bo_alloc ioctl, except
2245 * that the arguments have a different format.
2246 */
vmw_dumb_create(struct drm_file * file_priv,struct drm_device * dev,struct drm_mode_create_dumb * args)2247 int vmw_dumb_create(struct drm_file *file_priv,
2248 struct drm_device *dev,
2249 struct drm_mode_create_dumb *args)
2250 {
2251 struct vmw_private *dev_priv = vmw_priv(dev);
2252 struct ttm_object_file *tfile = vmw_fpriv(file_priv)->tfile;
2253 struct vmw_bo *vbo = NULL;
2254 struct vmw_resource *res = NULL;
2255 union drm_vmw_gb_surface_create_ext_arg arg = { 0 };
2256 struct drm_vmw_gb_surface_create_ext_req *req = &arg.req;
2257 int ret;
2258 struct drm_vmw_size drm_size = {
2259 .width = args->width,
2260 .height = args->height,
2261 .depth = 1,
2262 };
2263 SVGA3dSurfaceFormat format = vmw_format_bpp_to_svga(dev_priv, args->bpp);
2264 const struct SVGA3dSurfaceDesc *desc = vmw_surface_get_desc(format);
2265 SVGA3dSurfaceAllFlags flags = SVGA3D_SURFACE_HINT_TEXTURE |
2266 SVGA3D_SURFACE_HINT_RENDERTARGET |
2267 SVGA3D_SURFACE_SCREENTARGET;
2268
2269 if (vmw_surface_is_dx_screen_target_format(format)) {
2270 flags |= SVGA3D_SURFACE_BIND_SHADER_RESOURCE |
2271 SVGA3D_SURFACE_BIND_RENDER_TARGET;
2272 }
2273
2274 /*
2275 * Without mob support we're just going to use raw memory buffer
2276 * because we wouldn't be able to support full surface coherency
2277 * without mobs. There also no reason to support surface coherency
2278 * without 3d (i.e. gpu usage on the host) because then all the
2279 * contents is going to be rendered guest side.
2280 */
2281 if (!dev_priv->has_mob || !vmw_supports_3d(dev_priv)) {
2282 ret = drm_mode_size_dumb(dev, args, 0, 0);
2283 if (ret)
2284 return ret;
2285
2286 ret = vmw_gem_object_create_with_handle(dev_priv, file_priv,
2287 args->size, &args->handle,
2288 &vbo);
2289 /* drop reference from allocate - handle holds it now */
2290 drm_gem_object_put(&vbo->tbo.base);
2291 return ret;
2292 }
2293
2294 req->version = drm_vmw_gb_surface_v1;
2295 req->multisample_pattern = SVGA3D_MS_PATTERN_NONE;
2296 req->quality_level = SVGA3D_MS_QUALITY_NONE;
2297 req->buffer_byte_stride = 0;
2298 req->must_be_zero = 0;
2299 req->base.svga3d_flags = SVGA3D_FLAGS_LOWER_32(flags);
2300 req->svga3d_flags_upper_32_bits = SVGA3D_FLAGS_UPPER_32(flags);
2301 req->base.format = (uint32_t)format;
2302 req->base.drm_surface_flags = drm_vmw_surface_flag_scanout;
2303 req->base.drm_surface_flags |= drm_vmw_surface_flag_shareable;
2304 req->base.drm_surface_flags |= drm_vmw_surface_flag_create_buffer;
2305 req->base.drm_surface_flags |= drm_vmw_surface_flag_coherent;
2306 req->base.base_size.width = args->width;
2307 req->base.base_size.height = args->height;
2308 req->base.base_size.depth = 1;
2309 req->base.array_size = 0;
2310 req->base.mip_levels = 1;
2311 req->base.multisample_count = 0;
2312 req->base.buffer_handle = SVGA3D_INVALID_ID;
2313 req->base.autogen_filter = SVGA3D_TEX_FILTER_NONE;
2314 ret = vmw_gb_surface_define_ext_ioctl(dev, &arg, file_priv);
2315 if (ret) {
2316 drm_warn(dev, "Unable to create a dumb buffer\n");
2317 return ret;
2318 }
2319
2320 args->handle = arg.rep.buffer_handle;
2321 args->size = arg.rep.buffer_size;
2322 args->pitch = vmw_surface_calculate_pitch(desc, &drm_size);
2323
2324 ret = vmw_user_resource_lookup_handle(dev_priv, tfile, arg.rep.handle,
2325 user_surface_converter,
2326 &res);
2327 if (ret) {
2328 drm_err(dev, "Created resource handle doesn't exist!\n");
2329 goto err;
2330 }
2331
2332 vbo = res->guest_memory_bo;
2333 vbo->is_dumb = true;
2334 vbo->dumb_surface = vmw_res_to_srf(res);
2335 drm_gem_object_put(&vbo->tbo.base);
2336 /*
2337 * Unset the user surface dtor since this in not actually exposed
2338 * to userspace. The suface is owned via the dumb_buffer's GEM handle
2339 */
2340 struct vmw_user_surface *usurf = container_of(vbo->dumb_surface,
2341 struct vmw_user_surface, srf);
2342 usurf->prime.base.refcount_release = NULL;
2343 err:
2344 if (res)
2345 vmw_resource_unreference(&res);
2346
2347 ttm_ref_object_base_unref(tfile, arg.rep.handle);
2348
2349 return ret;
2350 }
2351