virgl: use the new parent/child pools for transfers
[mesa.git] / src / gallium / drivers / virgl / virgl_screen.c
1 /*
2 * Copyright 2014, 2015 Red Hat.
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * on the rights to use, copy, modify, merge, publish, distribute, sub
8 * license, and/or sell copies of the Software, and to permit persons to whom
9 * the Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHOR(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM,
19 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
20 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
21 * USE OR OTHER DEALINGS IN THE SOFTWARE.
22 */
23 #include "util/u_memory.h"
24 #include "util/u_format.h"
25 #include "util/u_format_s3tc.h"
26 #include "util/u_video.h"
27 #include "os/os_time.h"
28 #include "pipe/p_defines.h"
29 #include "pipe/p_screen.h"
30 #include "draw/draw_context.h"
31
32 #include "tgsi/tgsi_exec.h"
33
34 #include "virgl_screen.h"
35 #include "virgl_resource.h"
36 #include "virgl_public.h"
37 #include "virgl_context.h"
38
39 #define SP_MAX_TEXTURE_2D_LEVELS 15 /* 16K x 16K */
40 #define SP_MAX_TEXTURE_3D_LEVELS 9 /* 512 x 512 x 512 */
41 #define SP_MAX_TEXTURE_CUBE_LEVELS 13 /* 4K x 4K */
42
43 static const char *
44 virgl_get_vendor(struct pipe_screen *screen)
45 {
46 return "Red Hat";
47 }
48
49
50 static const char *
51 virgl_get_name(struct pipe_screen *screen)
52 {
53 return "virgl";
54 }
55
56 static int
57 virgl_get_param(struct pipe_screen *screen, enum pipe_cap param)
58 {
59 struct virgl_screen *vscreen = virgl_screen(screen);
60 switch (param) {
61 case PIPE_CAP_NPOT_TEXTURES:
62 return 1;
63 case PIPE_CAP_TWO_SIDED_STENCIL:
64 return 1;
65 case PIPE_CAP_SM3:
66 return 1;
67 case PIPE_CAP_ANISOTROPIC_FILTER:
68 return 1;
69 case PIPE_CAP_POINT_SPRITE:
70 return 1;
71 case PIPE_CAP_MAX_RENDER_TARGETS:
72 return vscreen->caps.caps.v1.max_render_targets;
73 case PIPE_CAP_MAX_DUAL_SOURCE_RENDER_TARGETS:
74 return vscreen->caps.caps.v1.max_dual_source_render_targets;
75 case PIPE_CAP_OCCLUSION_QUERY:
76 return vscreen->caps.caps.v1.bset.occlusion_query;
77 case PIPE_CAP_TEXTURE_MIRROR_CLAMP:
78 return vscreen->caps.caps.v1.bset.mirror_clamp;
79 case PIPE_CAP_TEXTURE_SHADOW_MAP:
80 return 1;
81 case PIPE_CAP_TEXTURE_SWIZZLE:
82 return 1;
83 case PIPE_CAP_MAX_TEXTURE_2D_LEVELS:
84 return SP_MAX_TEXTURE_2D_LEVELS;
85 case PIPE_CAP_MAX_TEXTURE_3D_LEVELS:
86 return SP_MAX_TEXTURE_3D_LEVELS;
87 case PIPE_CAP_MAX_TEXTURE_CUBE_LEVELS:
88 return SP_MAX_TEXTURE_CUBE_LEVELS;
89 case PIPE_CAP_BLEND_EQUATION_SEPARATE:
90 return 1;
91 case PIPE_CAP_INDEP_BLEND_ENABLE:
92 return vscreen->caps.caps.v1.bset.indep_blend_enable;
93 case PIPE_CAP_INDEP_BLEND_FUNC:
94 return vscreen->caps.caps.v1.bset.indep_blend_func;
95 case PIPE_CAP_TGSI_FS_COORD_ORIGIN_UPPER_LEFT:
96 case PIPE_CAP_TGSI_FS_COORD_ORIGIN_LOWER_LEFT:
97 case PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_HALF_INTEGER:
98 case PIPE_CAP_TGSI_FS_COORD_PIXEL_CENTER_INTEGER:
99 return vscreen->caps.caps.v1.bset.fragment_coord_conventions;
100 case PIPE_CAP_DEPTH_CLIP_DISABLE:
101 return vscreen->caps.caps.v1.bset.depth_clip_disable;
102 case PIPE_CAP_MAX_STREAM_OUTPUT_BUFFERS:
103 return vscreen->caps.caps.v1.max_streamout_buffers;
104 case PIPE_CAP_MAX_STREAM_OUTPUT_SEPARATE_COMPONENTS:
105 case PIPE_CAP_MAX_STREAM_OUTPUT_INTERLEAVED_COMPONENTS:
106 return 16*4;
107 case PIPE_CAP_PRIMITIVE_RESTART:
108 return vscreen->caps.caps.v1.bset.primitive_restart;
109 case PIPE_CAP_SHADER_STENCIL_EXPORT:
110 return vscreen->caps.caps.v1.bset.shader_stencil_export;
111 case PIPE_CAP_TGSI_INSTANCEID:
112 case PIPE_CAP_VERTEX_ELEMENT_INSTANCE_DIVISOR:
113 return 1;
114 case PIPE_CAP_SEAMLESS_CUBE_MAP:
115 return vscreen->caps.caps.v1.bset.seamless_cube_map;
116 case PIPE_CAP_SEAMLESS_CUBE_MAP_PER_TEXTURE:
117 return vscreen->caps.caps.v1.bset.seamless_cube_map_per_texture;
118 case PIPE_CAP_MAX_TEXTURE_ARRAY_LAYERS:
119 return vscreen->caps.caps.v1.max_texture_array_layers;
120 case PIPE_CAP_MIN_TEXEL_OFFSET:
121 case PIPE_CAP_MIN_TEXTURE_GATHER_OFFSET:
122 return -8;
123 case PIPE_CAP_MAX_TEXEL_OFFSET:
124 case PIPE_CAP_MAX_TEXTURE_GATHER_OFFSET:
125 return 7;
126 case PIPE_CAP_CONDITIONAL_RENDER:
127 return vscreen->caps.caps.v1.bset.conditional_render;
128 case PIPE_CAP_TEXTURE_BARRIER:
129 return 0;
130 case PIPE_CAP_VERTEX_COLOR_UNCLAMPED:
131 return 1;
132 case PIPE_CAP_FRAGMENT_COLOR_CLAMPED:
133 case PIPE_CAP_VERTEX_COLOR_CLAMPED:
134 return vscreen->caps.caps.v1.bset.color_clamping;
135 case PIPE_CAP_MIXED_COLORBUFFER_FORMATS:
136 return 1;
137 case PIPE_CAP_GLSL_FEATURE_LEVEL:
138 return vscreen->caps.caps.v1.glsl_level;
139 case PIPE_CAP_QUADS_FOLLOW_PROVOKING_VERTEX_CONVENTION:
140 return 0;
141 case PIPE_CAP_COMPUTE:
142 return 0;
143 case PIPE_CAP_USER_VERTEX_BUFFERS:
144 return 0;
145 case PIPE_CAP_USER_INDEX_BUFFERS:
146 case PIPE_CAP_USER_CONSTANT_BUFFERS:
147 return 1;
148 case PIPE_CAP_CONSTANT_BUFFER_OFFSET_ALIGNMENT:
149 return 16;
150 case PIPE_CAP_STREAM_OUTPUT_PAUSE_RESUME:
151 return vscreen->caps.caps.v1.bset.streamout_pause_resume;
152 case PIPE_CAP_START_INSTANCE:
153 return vscreen->caps.caps.v1.bset.start_instance;
154 case PIPE_CAP_TGSI_CAN_COMPACT_CONSTANTS:
155 case PIPE_CAP_VERTEX_BUFFER_OFFSET_4BYTE_ALIGNED_ONLY:
156 case PIPE_CAP_VERTEX_BUFFER_STRIDE_4BYTE_ALIGNED_ONLY:
157 case PIPE_CAP_VERTEX_ELEMENT_SRC_OFFSET_4BYTE_ALIGNED_ONLY:
158 case PIPE_CAP_PREFER_BLIT_BASED_TEXTURE_TRANSFER:
159 return 0;
160 case PIPE_CAP_QUERY_TIMESTAMP:
161 return 1;
162 case PIPE_CAP_QUERY_TIME_ELAPSED:
163 return 0;
164 case PIPE_CAP_TGSI_TEXCOORD:
165 return 0;
166 case PIPE_CAP_MIN_MAP_BUFFER_ALIGNMENT:
167 return VIRGL_MAP_BUFFER_ALIGNMENT;
168 case PIPE_CAP_TEXTURE_BUFFER_OBJECTS:
169 return vscreen->caps.caps.v1.max_tbo_size > 0;
170 case PIPE_CAP_TEXTURE_BUFFER_OFFSET_ALIGNMENT:
171 return 0;
172 case PIPE_CAP_BUFFER_SAMPLER_VIEW_RGBA_ONLY:
173 return 0;
174 case PIPE_CAP_CUBE_MAP_ARRAY:
175 return vscreen->caps.caps.v1.bset.cube_map_array;
176 case PIPE_CAP_TEXTURE_MULTISAMPLE:
177 return vscreen->caps.caps.v1.bset.texture_multisample;
178 case PIPE_CAP_MAX_VIEWPORTS:
179 return vscreen->caps.caps.v1.max_viewports;
180 case PIPE_CAP_MAX_TEXTURE_BUFFER_SIZE:
181 return vscreen->caps.caps.v1.max_tbo_size;
182 case PIPE_CAP_TEXTURE_BORDER_COLOR_QUIRK:
183 case PIPE_CAP_QUERY_PIPELINE_STATISTICS:
184 case PIPE_CAP_ENDIANNESS:
185 return 0;
186 case PIPE_CAP_MIXED_FRAMEBUFFER_SIZES:
187 case PIPE_CAP_MIXED_COLOR_DEPTH_BITS:
188 return 1;
189 case PIPE_CAP_TGSI_VS_LAYER_VIEWPORT:
190 return 0;
191 case PIPE_CAP_MAX_GEOMETRY_OUTPUT_VERTICES:
192 return 256;
193 case PIPE_CAP_MAX_GEOMETRY_TOTAL_OUTPUT_COMPONENTS:
194 return 16384;
195 case PIPE_CAP_TEXTURE_QUERY_LOD:
196 return vscreen->caps.caps.v1.bset.texture_query_lod;
197 case PIPE_CAP_MAX_TEXTURE_GATHER_COMPONENTS:
198 return vscreen->caps.caps.v1.max_texture_gather_components;
199 case PIPE_CAP_TEXTURE_GATHER_SM5:
200 case PIPE_CAP_BUFFER_MAP_PERSISTENT_COHERENT:
201 case PIPE_CAP_SAMPLE_SHADING:
202 case PIPE_CAP_FAKE_SW_MSAA:
203 case PIPE_CAP_TEXTURE_GATHER_OFFSETS:
204 case PIPE_CAP_TGSI_VS_WINDOW_SPACE_POSITION:
205 case PIPE_CAP_MAX_VERTEX_STREAMS:
206 case PIPE_CAP_DRAW_INDIRECT:
207 case PIPE_CAP_MULTI_DRAW_INDIRECT:
208 case PIPE_CAP_MULTI_DRAW_INDIRECT_PARAMS:
209 case PIPE_CAP_TGSI_FS_FINE_DERIVATIVE:
210 case PIPE_CAP_CONDITIONAL_RENDER_INVERTED:
211 case PIPE_CAP_MAX_VERTEX_ATTRIB_STRIDE:
212 case PIPE_CAP_SAMPLER_VIEW_TARGET:
213 case PIPE_CAP_CLIP_HALFZ:
214 case PIPE_CAP_VERTEXID_NOBASE:
215 case PIPE_CAP_POLYGON_OFFSET_CLAMP:
216 case PIPE_CAP_MULTISAMPLE_Z_RESOLVE:
217 case PIPE_CAP_RESOURCE_FROM_USER_MEMORY:
218 case PIPE_CAP_DEVICE_RESET_STATUS_QUERY:
219 case PIPE_CAP_MAX_SHADER_PATCH_VARYINGS:
220 case PIPE_CAP_TEXTURE_FLOAT_LINEAR:
221 case PIPE_CAP_TEXTURE_HALF_FLOAT_LINEAR:
222 case PIPE_CAP_DEPTH_BOUNDS_TEST:
223 case PIPE_CAP_TGSI_TXQS:
224 case PIPE_CAP_FORCE_PERSAMPLE_INTERP:
225 case PIPE_CAP_SHAREABLE_SHADERS:
226 case PIPE_CAP_CLEAR_TEXTURE:
227 case PIPE_CAP_DRAW_PARAMETERS:
228 case PIPE_CAP_TGSI_PACK_HALF_FLOAT:
229 case PIPE_CAP_TGSI_FS_POSITION_IS_SYSVAL:
230 case PIPE_CAP_TGSI_FS_FACE_IS_INTEGER_SYSVAL:
231 case PIPE_CAP_SHADER_BUFFER_OFFSET_ALIGNMENT:
232 case PIPE_CAP_INVALIDATE_BUFFER:
233 case PIPE_CAP_GENERATE_MIPMAP:
234 case PIPE_CAP_SURFACE_REINTERPRET_BLOCKS:
235 case PIPE_CAP_QUERY_BUFFER_OBJECT:
236 case PIPE_CAP_COPY_BETWEEN_COMPRESSED_AND_PLAIN_FORMATS:
237 case PIPE_CAP_STRING_MARKER:
238 case PIPE_CAP_QUERY_MEMORY_INFO:
239 case PIPE_CAP_PCI_GROUP:
240 case PIPE_CAP_PCI_BUS:
241 case PIPE_CAP_PCI_DEVICE:
242 case PIPE_CAP_PCI_FUNCTION:
243 case PIPE_CAP_FRAMEBUFFER_NO_ATTACHMENT:
244 case PIPE_CAP_ROBUST_BUFFER_ACCESS_BEHAVIOR:
245 case PIPE_CAP_CULL_DISTANCE:
246 case PIPE_CAP_PRIMITIVE_RESTART_FOR_PATCHES:
247 case PIPE_CAP_TGSI_VOTE:
248 case PIPE_CAP_MAX_WINDOW_RECTANGLES:
249 case PIPE_CAP_POLYGON_OFFSET_UNITS_UNSCALED:
250 case PIPE_CAP_VIEWPORT_SUBPIXEL_BITS:
251 return 0;
252 case PIPE_CAP_VENDOR_ID:
253 return 0x1af4;
254 case PIPE_CAP_DEVICE_ID:
255 return 0x1010;
256 case PIPE_CAP_ACCELERATED:
257 return 1;
258 case PIPE_CAP_UMA:
259 case PIPE_CAP_VIDEO_MEMORY:
260 return 0;
261 }
262 /* should only get here on unhandled cases */
263 debug_printf("Unexpected PIPE_CAP %d query\n", param);
264 return 0;
265 }
266
267 static int
268 virgl_get_shader_param(struct pipe_screen *screen, unsigned shader, enum pipe_shader_cap param)
269 {
270 struct virgl_screen *vscreen = virgl_screen(screen);
271 switch(shader)
272 {
273 case PIPE_SHADER_FRAGMENT:
274 case PIPE_SHADER_VERTEX:
275 case PIPE_SHADER_GEOMETRY:
276 switch (param) {
277 case PIPE_SHADER_CAP_MAX_INSTRUCTIONS:
278 case PIPE_SHADER_CAP_MAX_ALU_INSTRUCTIONS:
279 case PIPE_SHADER_CAP_MAX_TEX_INSTRUCTIONS:
280 case PIPE_SHADER_CAP_MAX_TEX_INDIRECTIONS:
281 return INT_MAX;
282 case PIPE_SHADER_CAP_INDIRECT_OUTPUT_ADDR:
283 case PIPE_SHADER_CAP_INDIRECT_TEMP_ADDR:
284 case PIPE_SHADER_CAP_INDIRECT_CONST_ADDR:
285 return 1;
286 case PIPE_SHADER_CAP_MAX_INPUTS:
287 if (vscreen->caps.caps.v1.glsl_level < 150)
288 return 16;
289 return (shader == PIPE_SHADER_VERTEX ||
290 shader == PIPE_SHADER_GEOMETRY) ? 16 : 32;
291 case PIPE_SHADER_CAP_MAX_OUTPUTS:
292 return 32;
293 // case PIPE_SHADER_CAP_MAX_CONSTS:
294 // return 4096;
295 case PIPE_SHADER_CAP_MAX_TEMPS:
296 return 256;
297 case PIPE_SHADER_CAP_MAX_CONST_BUFFERS:
298 return vscreen->caps.caps.v1.max_uniform_blocks;
299 // case PIPE_SHADER_CAP_MAX_ADDRS:
300 // return 1;
301 case PIPE_SHADER_CAP_MAX_PREDS:
302 return 0;
303 case PIPE_SHADER_CAP_SUBROUTINES:
304 return 1;
305 case PIPE_SHADER_CAP_MAX_TEXTURE_SAMPLERS:
306 return 16;
307 case PIPE_SHADER_CAP_INTEGERS:
308 return vscreen->caps.caps.v1.glsl_level >= 130;
309 case PIPE_SHADER_CAP_MAX_CONTROL_FLOW_DEPTH:
310 return 32;
311 case PIPE_SHADER_CAP_MAX_CONST_BUFFER_SIZE:
312 return 4096 * sizeof(float[4]);
313 default:
314 return 0;
315 }
316 default:
317 return 0;
318 }
319 }
320
321 static float
322 virgl_get_paramf(struct pipe_screen *screen, enum pipe_capf param)
323 {
324 switch (param) {
325 case PIPE_CAPF_MAX_LINE_WIDTH:
326 /* fall-through */
327 case PIPE_CAPF_MAX_LINE_WIDTH_AA:
328 return 255.0; /* arbitrary */
329 case PIPE_CAPF_MAX_POINT_WIDTH:
330 /* fall-through */
331 case PIPE_CAPF_MAX_POINT_WIDTH_AA:
332 return 255.0; /* arbitrary */
333 case PIPE_CAPF_MAX_TEXTURE_ANISOTROPY:
334 return 16.0;
335 case PIPE_CAPF_MAX_TEXTURE_LOD_BIAS:
336 return 16.0; /* arbitrary */
337 case PIPE_CAPF_GUARD_BAND_LEFT:
338 case PIPE_CAPF_GUARD_BAND_TOP:
339 case PIPE_CAPF_GUARD_BAND_RIGHT:
340 case PIPE_CAPF_GUARD_BAND_BOTTOM:
341 return 0.0;
342 }
343 /* should only get here on unhandled cases */
344 debug_printf("Unexpected PIPE_CAPF %d query\n", param);
345 return 0.0;
346 }
347
348 static boolean
349 virgl_is_vertex_format_supported(struct pipe_screen *screen,
350 enum pipe_format format)
351 {
352 struct virgl_screen *vscreen = virgl_screen(screen);
353 const struct util_format_description *format_desc;
354 int i;
355
356 format_desc = util_format_description(format);
357 if (!format_desc)
358 return FALSE;
359
360 if (format == PIPE_FORMAT_R11G11B10_FLOAT) {
361 int vformat = VIRGL_FORMAT_R11G11B10_FLOAT;
362 int big = vformat / 32;
363 int small = vformat % 32;
364 if (!(vscreen->caps.caps.v1.vertexbuffer.bitmask[big] & (1 << small)))
365 return FALSE;
366 return TRUE;
367 }
368
369 /* Find the first non-VOID channel. */
370 for (i = 0; i < 4; i++) {
371 if (format_desc->channel[i].type != UTIL_FORMAT_TYPE_VOID) {
372 break;
373 }
374 }
375
376 if (i == 4)
377 return FALSE;
378
379 if (format_desc->layout != UTIL_FORMAT_LAYOUT_PLAIN)
380 return FALSE;
381
382 if (format_desc->channel[i].type == UTIL_FORMAT_TYPE_FIXED)
383 return FALSE;
384 return TRUE;
385 }
386
387 /**
388 * Query format support for creating a texture, drawing surface, etc.
389 * \param format the format to test
390 * \param type one of PIPE_TEXTURE, PIPE_SURFACE
391 */
392 static boolean
393 virgl_is_format_supported( struct pipe_screen *screen,
394 enum pipe_format format,
395 enum pipe_texture_target target,
396 unsigned sample_count,
397 unsigned bind)
398 {
399 struct virgl_screen *vscreen = virgl_screen(screen);
400 const struct util_format_description *format_desc;
401 int i;
402
403 assert(target == PIPE_BUFFER ||
404 target == PIPE_TEXTURE_1D ||
405 target == PIPE_TEXTURE_1D_ARRAY ||
406 target == PIPE_TEXTURE_2D ||
407 target == PIPE_TEXTURE_2D_ARRAY ||
408 target == PIPE_TEXTURE_RECT ||
409 target == PIPE_TEXTURE_3D ||
410 target == PIPE_TEXTURE_CUBE ||
411 target == PIPE_TEXTURE_CUBE_ARRAY);
412
413 format_desc = util_format_description(format);
414 if (!format_desc)
415 return FALSE;
416
417 if (util_format_is_intensity(format))
418 return FALSE;
419
420 if (sample_count > 1) {
421 if (!vscreen->caps.caps.v1.bset.texture_multisample)
422 return FALSE;
423 if (sample_count > vscreen->caps.caps.v1.max_samples)
424 return FALSE;
425 }
426
427 if (bind & PIPE_BIND_VERTEX_BUFFER) {
428 return virgl_is_vertex_format_supported(screen, format);
429 }
430
431 if (bind & PIPE_BIND_RENDER_TARGET) {
432 if (format_desc->colorspace == UTIL_FORMAT_COLORSPACE_ZS)
433 return FALSE;
434
435 /*
436 * Although possible, it is unnatural to render into compressed or YUV
437 * surfaces. So disable these here to avoid going into weird paths
438 * inside the state trackers.
439 */
440 if (format_desc->block.width != 1 ||
441 format_desc->block.height != 1)
442 return FALSE;
443
444 {
445 int big = format / 32;
446 int small = format % 32;
447 if (!(vscreen->caps.caps.v1.render.bitmask[big] & (1 << small)))
448 return FALSE;
449 }
450 }
451
452 if (bind & PIPE_BIND_DEPTH_STENCIL) {
453 if (format_desc->colorspace != UTIL_FORMAT_COLORSPACE_ZS)
454 return FALSE;
455 }
456
457 /*
458 * All other operations (sampling, transfer, etc).
459 */
460
461 if (format_desc->layout == UTIL_FORMAT_LAYOUT_S3TC) {
462 if (util_format_s3tc_enabled)
463 goto out_lookup;
464 return FALSE;
465 }
466 if (format_desc->layout == UTIL_FORMAT_LAYOUT_RGTC) {
467 goto out_lookup;
468 }
469
470 if (format == PIPE_FORMAT_R11G11B10_FLOAT) {
471 goto out_lookup;
472 } else if (format == PIPE_FORMAT_R9G9B9E5_FLOAT) {
473 goto out_lookup;
474 }
475
476 /* Find the first non-VOID channel. */
477 for (i = 0; i < 4; i++) {
478 if (format_desc->channel[i].type != UTIL_FORMAT_TYPE_VOID) {
479 break;
480 }
481 }
482
483 if (i == 4)
484 return FALSE;
485
486 /* no L4A4 */
487 if (format_desc->nr_channels < 4 && format_desc->channel[i].size == 4)
488 return FALSE;
489
490 out_lookup:
491 {
492 int big = format / 32;
493 int small = format % 32;
494 if (!(vscreen->caps.caps.v1.sampler.bitmask[big] & (1 << small)))
495 return FALSE;
496 }
497 /*
498 * Everything else should be supported by u_format.
499 */
500 return TRUE;
501 }
502
503 static void virgl_flush_frontbuffer(struct pipe_screen *screen,
504 struct pipe_resource *res,
505 unsigned level, unsigned layer,
506 void *winsys_drawable_handle, struct pipe_box *sub_box)
507 {
508 struct virgl_screen *vscreen = virgl_screen(screen);
509 struct virgl_winsys *vws = vscreen->vws;
510 struct virgl_resource *vres = virgl_resource(res);
511
512 if (vws->flush_frontbuffer)
513 vws->flush_frontbuffer(vws, vres->hw_res, level, layer, winsys_drawable_handle,
514 sub_box);
515 }
516
517 static void virgl_fence_reference(struct pipe_screen *screen,
518 struct pipe_fence_handle **ptr,
519 struct pipe_fence_handle *fence)
520 {
521 struct virgl_screen *vscreen = virgl_screen(screen);
522 struct virgl_winsys *vws = vscreen->vws;
523
524 vws->fence_reference(vws, ptr, fence);
525 }
526
527 static boolean virgl_fence_finish(struct pipe_screen *screen,
528 struct pipe_context *ctx,
529 struct pipe_fence_handle *fence,
530 uint64_t timeout)
531 {
532 struct virgl_screen *vscreen = virgl_screen(screen);
533 struct virgl_winsys *vws = vscreen->vws;
534
535 return vws->fence_wait(vws, fence, timeout);
536 }
537
538 static uint64_t
539 virgl_get_timestamp(struct pipe_screen *_screen)
540 {
541 return os_time_get_nano();
542 }
543
544 static void
545 virgl_destroy_screen(struct pipe_screen *screen)
546 {
547 struct virgl_screen *vscreen = virgl_screen(screen);
548 struct virgl_winsys *vws = vscreen->vws;
549
550 slab_destroy_parent(&vscreen->texture_transfer_pool);
551
552 if (vws)
553 vws->destroy(vws);
554 FREE(vscreen);
555 }
556
557 struct pipe_screen *
558 virgl_create_screen(struct virgl_winsys *vws)
559 {
560 struct virgl_screen *screen = CALLOC_STRUCT(virgl_screen);
561
562 if (!screen)
563 return NULL;
564
565 screen->vws = vws;
566 screen->base.get_name = virgl_get_name;
567 screen->base.get_vendor = virgl_get_vendor;
568 screen->base.get_param = virgl_get_param;
569 screen->base.get_shader_param = virgl_get_shader_param;
570 screen->base.get_paramf = virgl_get_paramf;
571 screen->base.is_format_supported = virgl_is_format_supported;
572 screen->base.destroy = virgl_destroy_screen;
573 screen->base.context_create = virgl_context_create;
574 screen->base.flush_frontbuffer = virgl_flush_frontbuffer;
575 screen->base.get_timestamp = virgl_get_timestamp;
576 screen->base.fence_reference = virgl_fence_reference;
577 //screen->base.fence_signalled = virgl_fence_signalled;
578 screen->base.fence_finish = virgl_fence_finish;
579
580 virgl_init_screen_resource_functions(&screen->base);
581
582 vws->get_caps(vws, &screen->caps);
583
584 screen->refcnt = 1;
585
586 slab_create_parent(&screen->texture_transfer_pool, sizeof(struct virgl_transfer), 16);
587
588 util_format_s3tc_init();
589 return &screen->base;
590 }