intel: Remove the last spans code!
[mesa.git] / src / mesa / drivers / dri / intel / intel_fbo.c
1 /**************************************************************************
2 *
3 * Copyright 2006 Tungsten Graphics, Inc., Cedar Park, Texas.
4 * All Rights Reserved.
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a
7 * copy of this software and associated documentation files (the
8 * "Software"), to deal in the Software without restriction, including
9 * without limitation the rights to use, copy, modify, merge, publish,
10 * distribute, sub license, and/or sell copies of the Software, and to
11 * permit persons to whom the Software is furnished to do so, subject to
12 * the following conditions:
13 *
14 * The above copyright notice and this permission notice (including the
15 * next paragraph) shall be included in all copies or substantial portions
16 * of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
20 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
21 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
22 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
23 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
24 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
25 *
26 **************************************************************************/
27
28
29 #include "main/enums.h"
30 #include "main/imports.h"
31 #include "main/macros.h"
32 #include "main/mtypes.h"
33 #include "main/fbobject.h"
34 #include "main/framebuffer.h"
35 #include "main/renderbuffer.h"
36 #include "main/context.h"
37 #include "main/teximage.h"
38 #include "main/image.h"
39
40 #include "swrast/swrast.h"
41 #include "drivers/common/meta.h"
42
43 #include "intel_context.h"
44 #include "intel_batchbuffer.h"
45 #include "intel_buffers.h"
46 #include "intel_blit.h"
47 #include "intel_fbo.h"
48 #include "intel_mipmap_tree.h"
49 #include "intel_regions.h"
50 #include "intel_tex.h"
51 #ifndef I915
52 #include "brw_context.h"
53 #endif
54
55 #define FILE_DEBUG_FLAG DEBUG_FBO
56
57 static struct gl_renderbuffer *
58 intel_new_renderbuffer(struct gl_context * ctx, GLuint name);
59
60 struct intel_region*
61 intel_get_rb_region(struct gl_framebuffer *fb, GLuint attIndex)
62 {
63 struct intel_renderbuffer *irb = intel_get_renderbuffer(fb, attIndex);
64 if (irb && irb->mt) {
65 if (attIndex == BUFFER_STENCIL && irb->mt->stencil_mt)
66 return irb->mt->stencil_mt->region;
67 else
68 return irb->mt->region;
69 } else
70 return NULL;
71 }
72
73 /**
74 * Create a new framebuffer object.
75 */
76 static struct gl_framebuffer *
77 intel_new_framebuffer(struct gl_context * ctx, GLuint name)
78 {
79 /* Only drawable state in intel_framebuffer at this time, just use Mesa's
80 * class
81 */
82 return _mesa_new_framebuffer(ctx, name);
83 }
84
85
86 /** Called by gl_renderbuffer::Delete() */
87 static void
88 intel_delete_renderbuffer(struct gl_context *ctx, struct gl_renderbuffer *rb)
89 {
90 struct intel_renderbuffer *irb = intel_renderbuffer(rb);
91
92 ASSERT(irb);
93
94 intel_miptree_release(&irb->mt);
95
96 _mesa_delete_renderbuffer(ctx, rb);
97 }
98
99 /**
100 * \see dd_function_table::MapRenderbuffer
101 */
102 static void
103 intel_map_renderbuffer(struct gl_context *ctx,
104 struct gl_renderbuffer *rb,
105 GLuint x, GLuint y, GLuint w, GLuint h,
106 GLbitfield mode,
107 GLubyte **out_map,
108 GLint *out_stride)
109 {
110 struct intel_context *intel = intel_context(ctx);
111 struct swrast_renderbuffer *srb = (struct swrast_renderbuffer *)rb;
112 struct intel_renderbuffer *irb = intel_renderbuffer(rb);
113 void *map;
114 int stride;
115
116 if (srb->Buffer) {
117 /* this is a malloc'd renderbuffer (accum buffer), not an irb */
118 GLint bpp = _mesa_get_format_bytes(rb->Format);
119 GLint rowStride = srb->RowStride;
120 *out_map = (GLubyte *) srb->Buffer + y * rowStride + x * bpp;
121 *out_stride = rowStride;
122 return;
123 }
124
125 intel_prepare_render(intel);
126
127 /* For a window-system renderbuffer, we need to flip the mapping we receive
128 * upside-down. So we need to ask for a rectangle on flipped vertically, and
129 * we then return a pointer to the bottom of it with a negative stride.
130 */
131 if (rb->Name == 0) {
132 y = rb->Height - y - h;
133 }
134
135 intel_miptree_map(intel, irb->mt, irb->mt_level, irb->mt_layer,
136 x, y, w, h, mode, &map, &stride);
137
138 if (rb->Name == 0) {
139 map += (h - 1) * stride;
140 stride = -stride;
141 }
142
143 DBG("%s: rb %d (%s) mt mapped: (%d, %d) (%dx%d) -> %p/%d\n",
144 __FUNCTION__, rb->Name, _mesa_get_format_name(rb->Format),
145 x, y, w, h, map, stride);
146
147 *out_map = map;
148 *out_stride = stride;
149 }
150
151 /**
152 * \see dd_function_table::UnmapRenderbuffer
153 */
154 static void
155 intel_unmap_renderbuffer(struct gl_context *ctx,
156 struct gl_renderbuffer *rb)
157 {
158 struct intel_context *intel = intel_context(ctx);
159 struct swrast_renderbuffer *srb = (struct swrast_renderbuffer *)rb;
160 struct intel_renderbuffer *irb = intel_renderbuffer(rb);
161
162 DBG("%s: rb %d (%s)\n", __FUNCTION__,
163 rb->Name, _mesa_get_format_name(rb->Format));
164
165 if (srb->Buffer) {
166 /* this is a malloc'd renderbuffer (accum buffer) */
167 /* nothing to do */
168 return;
169 }
170
171 intel_miptree_unmap(intel, irb->mt, irb->mt_level, irb->mt_layer);
172 }
173
174
175 /**
176 * Round up the requested multisample count to the next supported sample size.
177 */
178 unsigned
179 intel_quantize_num_samples(struct intel_screen *intel, unsigned num_samples)
180 {
181 switch (intel->gen) {
182 case 6:
183 /* Gen6 supports only 4x multisampling. */
184 if (num_samples > 0)
185 return 4;
186 else
187 return 0;
188 case 7:
189 /* Gen7 supports 4x and 8x multisampling. */
190 if (num_samples > 4)
191 return 8;
192 else if (num_samples > 0)
193 return 4;
194 else
195 return 0;
196 return 0;
197 default:
198 /* MSAA unsupported. */
199 return 0;
200 }
201 }
202
203
204 /**
205 * Called via glRenderbufferStorageEXT() to set the format and allocate
206 * storage for a user-created renderbuffer.
207 */
208 static GLboolean
209 intel_alloc_renderbuffer_storage(struct gl_context * ctx, struct gl_renderbuffer *rb,
210 GLenum internalFormat,
211 GLuint width, GLuint height)
212 {
213 struct intel_context *intel = intel_context(ctx);
214 struct intel_screen *screen = intel->intelScreen;
215 struct intel_renderbuffer *irb = intel_renderbuffer(rb);
216 rb->NumSamples = intel_quantize_num_samples(screen, rb->NumSamples);
217
218 switch (internalFormat) {
219 default:
220 /* Use the same format-choice logic as for textures.
221 * Renderbuffers aren't any different from textures for us,
222 * except they're less useful because you can't texture with
223 * them.
224 */
225 rb->Format = intel->ctx.Driver.ChooseTextureFormat(ctx, GL_TEXTURE_2D,
226 internalFormat,
227 GL_NONE, GL_NONE);
228 break;
229 case GL_STENCIL_INDEX:
230 case GL_STENCIL_INDEX1_EXT:
231 case GL_STENCIL_INDEX4_EXT:
232 case GL_STENCIL_INDEX8_EXT:
233 case GL_STENCIL_INDEX16_EXT:
234 /* These aren't actual texture formats, so force them here. */
235 if (intel->has_separate_stencil) {
236 rb->Format = MESA_FORMAT_S8;
237 } else {
238 assert(!intel->must_use_separate_stencil);
239 rb->Format = MESA_FORMAT_S8_Z24;
240 }
241 break;
242 }
243
244 rb->Width = width;
245 rb->Height = height;
246 rb->_BaseFormat = _mesa_base_fbo_format(ctx, internalFormat);
247
248 intel_miptree_release(&irb->mt);
249
250 DBG("%s: %s: %s (%dx%d)\n", __FUNCTION__,
251 _mesa_lookup_enum_by_nr(internalFormat),
252 _mesa_get_format_name(rb->Format), width, height);
253
254 if (width == 0 || height == 0)
255 return true;
256
257 irb->mt = intel_miptree_create_for_renderbuffer(intel, rb->Format,
258 width, height,
259 rb->NumSamples);
260 if (!irb->mt)
261 return false;
262
263 return true;
264 }
265
266
267 static void
268 intel_image_target_renderbuffer_storage(struct gl_context *ctx,
269 struct gl_renderbuffer *rb,
270 void *image_handle)
271 {
272 struct intel_context *intel = intel_context(ctx);
273 struct intel_renderbuffer *irb;
274 __DRIscreen *screen;
275 __DRIimage *image;
276
277 screen = intel->intelScreen->driScrnPriv;
278 image = screen->dri2.image->lookupEGLImage(screen, image_handle,
279 screen->loaderPrivate);
280 if (image == NULL)
281 return;
282
283 /* __DRIimage is opaque to the core so it has to be checked here */
284 switch (image->format) {
285 case MESA_FORMAT_RGBA8888_REV:
286 _mesa_error(&intel->ctx, GL_INVALID_OPERATION,
287 "glEGLImageTargetRenderbufferStorage(unsupported image format");
288 return;
289 break;
290 default:
291 break;
292 }
293
294 irb = intel_renderbuffer(rb);
295 intel_miptree_release(&irb->mt);
296 irb->mt = intel_miptree_create_for_region(intel,
297 GL_TEXTURE_2D,
298 image->format,
299 image->region);
300 if (!irb->mt)
301 return;
302
303 rb->InternalFormat = image->internal_format;
304 rb->Width = image->region->width;
305 rb->Height = image->region->height;
306 rb->Format = image->format;
307 rb->_BaseFormat = _mesa_base_fbo_format(&intel->ctx,
308 image->internal_format);
309 }
310
311 /**
312 * Called for each hardware renderbuffer when a _window_ is resized.
313 * Just update fields.
314 * Not used for user-created renderbuffers!
315 */
316 static GLboolean
317 intel_alloc_window_storage(struct gl_context * ctx, struct gl_renderbuffer *rb,
318 GLenum internalFormat, GLuint width, GLuint height)
319 {
320 ASSERT(rb->Name == 0);
321 rb->Width = width;
322 rb->Height = height;
323 rb->InternalFormat = internalFormat;
324
325 return true;
326 }
327
328
329 static void
330 intel_resize_buffers(struct gl_context *ctx, struct gl_framebuffer *fb,
331 GLuint width, GLuint height)
332 {
333 int i;
334
335 _mesa_resize_framebuffer(ctx, fb, width, height);
336
337 fb->Initialized = true; /* XXX remove someday */
338
339 if (_mesa_is_user_fbo(fb)) {
340 return;
341 }
342
343
344 /* Make sure all window system renderbuffers are up to date */
345 for (i = BUFFER_FRONT_LEFT; i <= BUFFER_BACK_RIGHT; i++) {
346 struct gl_renderbuffer *rb = fb->Attachment[i].Renderbuffer;
347
348 /* only resize if size is changing */
349 if (rb && (rb->Width != width || rb->Height != height)) {
350 rb->AllocStorage(ctx, rb, rb->InternalFormat, width, height);
351 }
352 }
353 }
354
355
356 /** Dummy function for gl_renderbuffer::AllocStorage() */
357 static GLboolean
358 intel_nop_alloc_storage(struct gl_context * ctx, struct gl_renderbuffer *rb,
359 GLenum internalFormat, GLuint width, GLuint height)
360 {
361 _mesa_problem(ctx, "intel_op_alloc_storage should never be called.");
362 return false;
363 }
364
365 /**
366 * Create a new intel_renderbuffer which corresponds to an on-screen window,
367 * not a user-created renderbuffer.
368 *
369 * \param num_samples must be quantized.
370 */
371 struct intel_renderbuffer *
372 intel_create_renderbuffer(gl_format format, unsigned num_samples)
373 {
374 struct intel_renderbuffer *irb;
375 struct gl_renderbuffer *rb;
376
377 GET_CURRENT_CONTEXT(ctx);
378
379 irb = CALLOC_STRUCT(intel_renderbuffer);
380 if (!irb) {
381 _mesa_error(ctx, GL_OUT_OF_MEMORY, "creating renderbuffer");
382 return NULL;
383 }
384
385 rb = &irb->Base.Base;
386
387 _mesa_init_renderbuffer(rb, 0);
388 rb->ClassID = INTEL_RB_CLASS;
389 rb->_BaseFormat = _mesa_get_format_base_format(format);
390 rb->Format = format;
391 rb->InternalFormat = rb->_BaseFormat;
392 rb->NumSamples = num_samples;
393
394 /* intel-specific methods */
395 rb->Delete = intel_delete_renderbuffer;
396 rb->AllocStorage = intel_alloc_window_storage;
397
398 return irb;
399 }
400
401 /**
402 * Private window-system buffers (as opposed to ones shared with the display
403 * server created with intel_create_renderbuffer()) are most similar in their
404 * handling to user-created renderbuffers, but they have a resize handler that
405 * may be called at intel_update_renderbuffers() time.
406 *
407 * \param num_samples must be quantized.
408 */
409 struct intel_renderbuffer *
410 intel_create_private_renderbuffer(gl_format format, unsigned num_samples)
411 {
412 struct intel_renderbuffer *irb;
413
414 irb = intel_create_renderbuffer(format, num_samples);
415 irb->Base.Base.AllocStorage = intel_alloc_renderbuffer_storage;
416
417 return irb;
418 }
419
420 /**
421 * Create a new renderbuffer object.
422 * Typically called via glBindRenderbufferEXT().
423 */
424 static struct gl_renderbuffer *
425 intel_new_renderbuffer(struct gl_context * ctx, GLuint name)
426 {
427 /*struct intel_context *intel = intel_context(ctx); */
428 struct intel_renderbuffer *irb;
429 struct gl_renderbuffer *rb;
430
431 irb = CALLOC_STRUCT(intel_renderbuffer);
432 if (!irb) {
433 _mesa_error(ctx, GL_OUT_OF_MEMORY, "creating renderbuffer");
434 return NULL;
435 }
436
437 rb = &irb->Base.Base;
438
439 _mesa_init_renderbuffer(rb, name);
440 rb->ClassID = INTEL_RB_CLASS;
441
442 /* intel-specific methods */
443 rb->Delete = intel_delete_renderbuffer;
444 rb->AllocStorage = intel_alloc_renderbuffer_storage;
445 /* span routines set in alloc_storage function */
446
447 return rb;
448 }
449
450
451 /**
452 * Called via glBindFramebufferEXT().
453 */
454 static void
455 intel_bind_framebuffer(struct gl_context * ctx, GLenum target,
456 struct gl_framebuffer *fb, struct gl_framebuffer *fbread)
457 {
458 if (target == GL_FRAMEBUFFER_EXT || target == GL_DRAW_FRAMEBUFFER_EXT) {
459 intel_draw_buffer(ctx);
460 }
461 else {
462 /* don't need to do anything if target == GL_READ_FRAMEBUFFER_EXT */
463 }
464 }
465
466
467 /**
468 * Called via glFramebufferRenderbufferEXT().
469 */
470 static void
471 intel_framebuffer_renderbuffer(struct gl_context * ctx,
472 struct gl_framebuffer *fb,
473 GLenum attachment, struct gl_renderbuffer *rb)
474 {
475 DBG("Intel FramebufferRenderbuffer %u %u\n", fb->Name, rb ? rb->Name : 0);
476
477 _mesa_framebuffer_renderbuffer(ctx, fb, attachment, rb);
478 intel_draw_buffer(ctx);
479 }
480
481 static bool
482 intel_renderbuffer_update_wrapper(struct intel_context *intel,
483 struct intel_renderbuffer *irb,
484 struct gl_texture_image *image,
485 uint32_t layer)
486 {
487 struct gl_renderbuffer *rb = &irb->Base.Base;
488 struct intel_texture_image *intel_image = intel_texture_image(image);
489 struct intel_mipmap_tree *mt = intel_image->mt;
490 int level = image->Level;
491
492 rb->Format = image->TexFormat;
493 rb->InternalFormat = image->InternalFormat;
494 rb->_BaseFormat = image->_BaseFormat;
495 rb->NumSamples = mt->num_samples;
496
497 if (mt->msaa_layout != INTEL_MSAA_LAYOUT_NONE) {
498 assert(level == 0);
499 rb->Width = mt->logical_width0;
500 rb->Height = mt->logical_height0;
501 }
502 else {
503 rb->Width = mt->level[level].width;
504 rb->Height = mt->level[level].height;
505 }
506
507 rb->Delete = intel_delete_renderbuffer;
508 rb->AllocStorage = intel_nop_alloc_storage;
509
510 intel_miptree_check_level_layer(mt, level, layer);
511 irb->mt_level = level;
512
513 switch (mt->msaa_layout) {
514 case INTEL_MSAA_LAYOUT_UMS:
515 case INTEL_MSAA_LAYOUT_CMS:
516 irb->mt_layer = layer * mt->num_samples;
517 break;
518
519 default:
520 irb->mt_layer = layer;
521 }
522
523 intel_miptree_reference(&irb->mt, mt);
524
525 intel_renderbuffer_set_draw_offset(irb);
526
527 if (mt->hiz_mt == NULL &&
528 intel->vtbl.is_hiz_depth_format(intel, rb->Format)) {
529 intel_miptree_alloc_hiz(intel, mt, 0 /* num_samples */);
530 if (!mt->hiz_mt)
531 return false;
532 }
533
534 return true;
535 }
536
537 /**
538 * Create a fake intel_renderbuffer that wraps a gl_texture_image.
539 */
540 struct intel_renderbuffer *
541 intel_create_fake_renderbuffer_wrapper(struct intel_context *intel,
542 struct gl_texture_image *image)
543 {
544 struct gl_context *ctx = &intel->ctx;
545 struct intel_renderbuffer *irb;
546 struct gl_renderbuffer *rb;
547
548 irb = CALLOC_STRUCT(intel_renderbuffer);
549 if (!irb) {
550 _mesa_error(ctx, GL_OUT_OF_MEMORY, "creating renderbuffer");
551 return NULL;
552 }
553
554 rb = &irb->Base.Base;
555
556 _mesa_init_renderbuffer(rb, 0);
557 rb->ClassID = INTEL_RB_CLASS;
558
559 if (!intel_renderbuffer_update_wrapper(intel, irb, image, image->Face)) {
560 intel_delete_renderbuffer(ctx, rb);
561 return NULL;
562 }
563
564 return irb;
565 }
566
567 void
568 intel_renderbuffer_set_draw_offset(struct intel_renderbuffer *irb)
569 {
570 unsigned int dst_x, dst_y;
571
572 /* compute offset of the particular 2D image within the texture region */
573 intel_miptree_get_image_offset(irb->mt,
574 irb->mt_level,
575 irb->mt_layer,
576 &dst_x, &dst_y);
577
578 irb->draw_x = dst_x;
579 irb->draw_y = dst_y;
580 }
581
582 /**
583 * Rendering to tiled buffers requires that the base address of the
584 * buffer be aligned to a page boundary. We generally render to
585 * textures by pointing the surface at the mipmap image level, which
586 * may not be aligned to a tile boundary.
587 *
588 * This function returns an appropriately-aligned base offset
589 * according to the tiling restrictions, plus any required x/y offset
590 * from there.
591 */
592 uint32_t
593 intel_renderbuffer_tile_offsets(struct intel_renderbuffer *irb,
594 uint32_t *tile_x,
595 uint32_t *tile_y)
596 {
597 struct intel_region *region = irb->mt->region;
598 uint32_t mask_x, mask_y;
599
600 intel_region_get_tile_masks(region, &mask_x, &mask_y, false);
601
602 *tile_x = irb->draw_x & mask_x;
603 *tile_y = irb->draw_y & mask_y;
604 return intel_region_get_aligned_offset(region, irb->draw_x & ~mask_x,
605 irb->draw_y & ~mask_y, false);
606 }
607
608 /**
609 * Called by glFramebufferTexture[123]DEXT() (and other places) to
610 * prepare for rendering into texture memory. This might be called
611 * many times to choose different texture levels, cube faces, etc
612 * before intel_finish_render_texture() is ever called.
613 */
614 static void
615 intel_render_texture(struct gl_context * ctx,
616 struct gl_framebuffer *fb,
617 struct gl_renderbuffer_attachment *att)
618 {
619 struct intel_context *intel = intel_context(ctx);
620 struct gl_texture_image *image = _mesa_get_attachment_teximage(att);
621 struct intel_renderbuffer *irb = intel_renderbuffer(att->Renderbuffer);
622 struct intel_texture_image *intel_image = intel_texture_image(image);
623 struct intel_mipmap_tree *mt = intel_image->mt;
624 int layer;
625
626 (void) fb;
627
628 if (att->CubeMapFace > 0) {
629 assert(att->Zoffset == 0);
630 layer = att->CubeMapFace;
631 } else {
632 layer = att->Zoffset;
633 }
634
635 if (!intel_image->mt) {
636 /* Fallback on drawing to a texture that doesn't have a miptree
637 * (has a border, width/height 0, etc.)
638 */
639 _mesa_reference_renderbuffer(&att->Renderbuffer, NULL);
640 _swrast_render_texture(ctx, fb, att);
641 return;
642 }
643 else if (!irb) {
644 intel_miptree_check_level_layer(mt, att->TextureLevel, layer);
645
646 irb = (struct intel_renderbuffer *)intel_new_renderbuffer(ctx, ~0);
647
648 if (irb) {
649 /* bind the wrapper to the attachment point */
650 _mesa_reference_renderbuffer(&att->Renderbuffer, &irb->Base.Base);
651 }
652 else {
653 /* fallback to software rendering */
654 _swrast_render_texture(ctx, fb, att);
655 return;
656 }
657 }
658
659 if (!intel_renderbuffer_update_wrapper(intel, irb, image, layer)) {
660 _mesa_reference_renderbuffer(&att->Renderbuffer, NULL);
661 _swrast_render_texture(ctx, fb, att);
662 return;
663 }
664
665 irb->tex_image = image;
666
667 DBG("Begin render %s texture tex=%u w=%d h=%d refcount=%d\n",
668 _mesa_get_format_name(image->TexFormat),
669 att->Texture->Name, image->Width, image->Height,
670 irb->Base.Base.RefCount);
671
672 /* update drawing region, etc */
673 intel_draw_buffer(ctx);
674 }
675
676
677 /**
678 * Called by Mesa when rendering to a texture is done.
679 */
680 static void
681 intel_finish_render_texture(struct gl_context * ctx,
682 struct gl_renderbuffer_attachment *att)
683 {
684 struct intel_context *intel = intel_context(ctx);
685 struct gl_texture_object *tex_obj = att->Texture;
686 struct gl_texture_image *image =
687 tex_obj->Image[att->CubeMapFace][att->TextureLevel];
688 struct intel_renderbuffer *irb = intel_renderbuffer(att->Renderbuffer);
689
690 DBG("Finish render %s texture tex=%u\n",
691 _mesa_get_format_name(image->TexFormat), att->Texture->Name);
692
693 if (irb)
694 irb->tex_image = NULL;
695
696 /* Since we've (probably) rendered to the texture and will (likely) use
697 * it in the texture domain later on in this batchbuffer, flush the
698 * batch. Once again, we wish for a domain tracker in libdrm to cover
699 * usage inside of a batchbuffer like GEM does in the kernel.
700 */
701 intel_batchbuffer_emit_mi_flush(intel);
702 }
703
704 #define fbo_incomplete(fb, ...) do { \
705 static GLuint msg_id = 0; \
706 if (unlikely(ctx->Const.ContextFlags & GL_CONTEXT_FLAG_DEBUG_BIT)) { \
707 _mesa_gl_debug(ctx, &msg_id, \
708 MESA_DEBUG_TYPE_OTHER, \
709 MESA_DEBUG_SEVERITY_MEDIUM, \
710 __VA_ARGS__); \
711 } \
712 DBG(__VA_ARGS__); \
713 fb->_Status = GL_FRAMEBUFFER_UNSUPPORTED; \
714 } while (0)
715
716 /**
717 * Do additional "completeness" testing of a framebuffer object.
718 */
719 static void
720 intel_validate_framebuffer(struct gl_context *ctx, struct gl_framebuffer *fb)
721 {
722 struct intel_context *intel = intel_context(ctx);
723 struct intel_renderbuffer *depthRb =
724 intel_get_renderbuffer(fb, BUFFER_DEPTH);
725 struct intel_renderbuffer *stencilRb =
726 intel_get_renderbuffer(fb, BUFFER_STENCIL);
727 struct intel_mipmap_tree *depth_mt = NULL, *stencil_mt = NULL;
728 int i;
729
730 DBG("%s() on fb %p (%s)\n", __FUNCTION__,
731 fb, (fb == ctx->DrawBuffer ? "drawbuffer" :
732 (fb == ctx->ReadBuffer ? "readbuffer" : "other buffer")));
733
734 if (depthRb)
735 depth_mt = depthRb->mt;
736 if (stencilRb) {
737 stencil_mt = stencilRb->mt;
738 if (stencil_mt->stencil_mt)
739 stencil_mt = stencil_mt->stencil_mt;
740 }
741
742 if (depth_mt && stencil_mt) {
743 if (depth_mt == stencil_mt) {
744 /* For true packed depth/stencil (not faked on prefers-separate-stencil
745 * hardware) we need to be sure they're the same level/layer, since
746 * we'll be emitting a single packet describing the packed setup.
747 */
748 if (depthRb->mt_level != stencilRb->mt_level ||
749 depthRb->mt_layer != stencilRb->mt_layer) {
750 fbo_incomplete(fb,
751 "FBO incomplete: depth image level/layer %d/%d != "
752 "stencil image %d/%d\n",
753 depthRb->mt_level,
754 depthRb->mt_layer,
755 stencilRb->mt_level,
756 stencilRb->mt_layer);
757 }
758 } else {
759 if (!intel->has_separate_stencil) {
760 fbo_incomplete(fb, "FBO incomplete: separate stencil "
761 "unsupported\n");
762 }
763 if (stencil_mt->format != MESA_FORMAT_S8) {
764 fbo_incomplete(fb, "FBO incomplete: separate stencil is %s "
765 "instead of S8\n",
766 _mesa_get_format_name(stencil_mt->format));
767 }
768 if (intel->gen < 7 && !intel_renderbuffer_has_hiz(depthRb)) {
769 /* Before Gen7, separate depth and stencil buffers can be used
770 * only if HiZ is enabled. From the Sandybridge PRM, Volume 2,
771 * Part 1, Bit 3DSTATE_DEPTH_BUFFER.SeparateStencilBufferEnable:
772 * [DevSNB]: This field must be set to the same value (enabled
773 * or disabled) as Hierarchical Depth Buffer Enable.
774 */
775 fbo_incomplete(fb, "FBO incomplete: separate stencil "
776 "without HiZ\n");
777 }
778 }
779 }
780
781 for (i = 0; i < Elements(fb->Attachment); i++) {
782 struct gl_renderbuffer *rb;
783 struct intel_renderbuffer *irb;
784
785 if (fb->Attachment[i].Type == GL_NONE)
786 continue;
787
788 /* A supported attachment will have a Renderbuffer set either
789 * from being a Renderbuffer or being a texture that got the
790 * intel_wrap_texture() treatment.
791 */
792 rb = fb->Attachment[i].Renderbuffer;
793 if (rb == NULL) {
794 fbo_incomplete(fb, "FBO incomplete: attachment without "
795 "renderbuffer\n");
796 continue;
797 }
798
799 if (fb->Attachment[i].Type == GL_TEXTURE) {
800 const struct gl_texture_image *img =
801 _mesa_get_attachment_teximage_const(&fb->Attachment[i]);
802
803 if (img->Border) {
804 fbo_incomplete(fb, "FBO incomplete: texture with border\n");
805 continue;
806 }
807 }
808
809 irb = intel_renderbuffer(rb);
810 if (irb == NULL) {
811 fbo_incomplete(fb, "FBO incomplete: software rendering "
812 "renderbuffer\n");
813 continue;
814 }
815
816 if (!intel->vtbl.render_target_supported(intel, rb)) {
817 fbo_incomplete(fb, "FBO incomplete: Unsupported HW "
818 "texture/renderbuffer format attached: %s\n",
819 _mesa_get_format_name(intel_rb_format(irb)));
820 }
821 }
822 }
823
824 /**
825 * Try to do a glBlitFramebuffer using glCopyTexSubImage2D
826 * We can do this when the dst renderbuffer is actually a texture and
827 * there is no scaling, mirroring or scissoring.
828 *
829 * \return new buffer mask indicating the buffers left to blit using the
830 * normal path.
831 */
832 static GLbitfield
833 intel_blit_framebuffer_copy_tex_sub_image(struct gl_context *ctx,
834 GLint srcX0, GLint srcY0,
835 GLint srcX1, GLint srcY1,
836 GLint dstX0, GLint dstY0,
837 GLint dstX1, GLint dstY1,
838 GLbitfield mask, GLenum filter)
839 {
840 if (mask & GL_COLOR_BUFFER_BIT) {
841 GLint i;
842 const struct gl_framebuffer *drawFb = ctx->DrawBuffer;
843 const struct gl_framebuffer *readFb = ctx->ReadBuffer;
844 const struct gl_renderbuffer_attachment *drawAtt;
845 struct intel_renderbuffer *srcRb =
846 intel_renderbuffer(readFb->_ColorReadBuffer);
847
848 /* If the source and destination are the same size with no mirroring,
849 * the rectangles are within the size of the texture and there is no
850 * scissor then we can use glCopyTexSubimage2D to implement the blit.
851 * This will end up as a fast hardware blit on some drivers.
852 */
853 const GLboolean use_intel_copy_texsubimage =
854 srcX0 - srcX1 == dstX0 - dstX1 &&
855 srcY0 - srcY1 == dstY0 - dstY1 &&
856 srcX1 >= srcX0 &&
857 srcY1 >= srcY0 &&
858 srcX0 >= 0 && srcX1 <= readFb->Width &&
859 srcY0 >= 0 && srcY1 <= readFb->Height &&
860 dstX0 >= 0 && dstX1 <= drawFb->Width &&
861 dstY0 >= 0 && dstY1 <= drawFb->Height &&
862 !ctx->Scissor.Enabled;
863
864 /* Verify that all the draw buffers can be blitted using
865 * intel_copy_texsubimage().
866 */
867 for (i = 0; i < ctx->DrawBuffer->_NumColorDrawBuffers; i++) {
868 int idx = ctx->DrawBuffer->_ColorDrawBufferIndexes[i];
869 if (idx == -1)
870 continue;
871 drawAtt = &drawFb->Attachment[idx];
872
873 if (srcRb && drawAtt && drawAtt->Texture &&
874 use_intel_copy_texsubimage)
875 continue;
876 else
877 return mask;
878 }
879
880 /* Blit to all active draw buffers */
881 for (i = 0; i < ctx->DrawBuffer->_NumColorDrawBuffers; i++) {
882 int idx = ctx->DrawBuffer->_ColorDrawBufferIndexes[i];
883 if (idx == -1)
884 continue;
885 drawAtt = &drawFb->Attachment[idx];
886
887 {
888 const struct gl_texture_object *texObj = drawAtt->Texture;
889 const GLuint dstLevel = drawAtt->TextureLevel;
890 const GLenum target = texObj->Target;
891
892 struct gl_texture_image *texImage =
893 _mesa_select_tex_image(ctx, texObj, target, dstLevel);
894
895 if (!intel_copy_texsubimage(intel_context(ctx),
896 intel_texture_image(texImage),
897 dstX0, dstY0,
898 srcRb,
899 srcX0, srcY0,
900 srcX1 - srcX0, /* width */
901 srcY1 - srcY0))
902 return mask;
903 }
904 }
905
906 mask &= ~GL_COLOR_BUFFER_BIT;
907 }
908
909 return mask;
910 }
911
912 static void
913 intel_blit_framebuffer(struct gl_context *ctx,
914 GLint srcX0, GLint srcY0, GLint srcX1, GLint srcY1,
915 GLint dstX0, GLint dstY0, GLint dstX1, GLint dstY1,
916 GLbitfield mask, GLenum filter)
917 {
918 /* Try faster, glCopyTexSubImage2D approach first which uses the BLT. */
919 mask = intel_blit_framebuffer_copy_tex_sub_image(ctx,
920 srcX0, srcY0, srcX1, srcY1,
921 dstX0, dstY0, dstX1, dstY1,
922 mask, filter);
923 if (mask == 0x0)
924 return;
925
926 #ifndef I915
927 mask = brw_blorp_framebuffer(intel_context(ctx),
928 srcX0, srcY0, srcX1, srcY1,
929 dstX0, dstY0, dstX1, dstY1,
930 mask, filter);
931 if (mask == 0x0)
932 return;
933 #endif
934
935 _mesa_meta_BlitFramebuffer(ctx,
936 srcX0, srcY0, srcX1, srcY1,
937 dstX0, dstY0, dstX1, dstY1,
938 mask, filter);
939 }
940
941 /**
942 * This is a no-op except on multisample buffers shared with DRI2.
943 */
944 void
945 intel_renderbuffer_set_needs_downsample(struct intel_renderbuffer *irb)
946 {
947 if (irb->mt && irb->mt->singlesample_mt)
948 irb->mt->need_downsample = true;
949 }
950
951 /**
952 * Does the renderbuffer have hiz enabled?
953 */
954 bool
955 intel_renderbuffer_has_hiz(struct intel_renderbuffer *irb)
956 {
957 return intel_miptree_slice_has_hiz(irb->mt, irb->mt_level, irb->mt_layer);
958 }
959
960 void
961 intel_renderbuffer_set_needs_hiz_resolve(struct intel_renderbuffer *irb)
962 {
963 if (irb->mt) {
964 intel_miptree_slice_set_needs_hiz_resolve(irb->mt,
965 irb->mt_level,
966 irb->mt_layer);
967 }
968 }
969
970 void
971 intel_renderbuffer_set_needs_depth_resolve(struct intel_renderbuffer *irb)
972 {
973 if (irb->mt) {
974 intel_miptree_slice_set_needs_depth_resolve(irb->mt,
975 irb->mt_level,
976 irb->mt_layer);
977 }
978 }
979
980 bool
981 intel_renderbuffer_resolve_hiz(struct intel_context *intel,
982 struct intel_renderbuffer *irb)
983 {
984 if (irb->mt)
985 return intel_miptree_slice_resolve_hiz(intel,
986 irb->mt,
987 irb->mt_level,
988 irb->mt_layer);
989
990 return false;
991 }
992
993 bool
994 intel_renderbuffer_resolve_depth(struct intel_context *intel,
995 struct intel_renderbuffer *irb)
996 {
997 if (irb->mt)
998 return intel_miptree_slice_resolve_depth(intel,
999 irb->mt,
1000 irb->mt_level,
1001 irb->mt_layer);
1002
1003 return false;
1004 }
1005
1006 void
1007 intel_renderbuffer_move_to_temp(struct intel_context *intel,
1008 struct intel_renderbuffer *irb,
1009 bool invalidate)
1010 {
1011 struct intel_texture_image *intel_image =
1012 intel_texture_image(irb->tex_image);
1013 struct intel_mipmap_tree *new_mt;
1014 int width, height, depth;
1015
1016 intel_miptree_get_dimensions_for_image(irb->tex_image, &width, &height, &depth);
1017
1018 new_mt = intel_miptree_create(intel, irb->tex_image->TexObject->Target,
1019 intel_image->base.Base.TexFormat,
1020 intel_image->base.Base.Level,
1021 intel_image->base.Base.Level,
1022 width, height, depth,
1023 true,
1024 irb->mt->num_samples,
1025 false /* force_y_tiling */);
1026
1027 if (intel->vtbl.is_hiz_depth_format(intel, new_mt->format)) {
1028 intel_miptree_alloc_hiz(intel, new_mt, irb->mt->num_samples);
1029 }
1030
1031 intel_miptree_copy_teximage(intel, intel_image, new_mt, invalidate);
1032
1033 intel_miptree_reference(&irb->mt, intel_image->mt);
1034 intel_renderbuffer_set_draw_offset(irb);
1035 intel_miptree_release(&new_mt);
1036 }
1037
1038 /**
1039 * Do one-time context initializations related to GL_EXT_framebuffer_object.
1040 * Hook in device driver functions.
1041 */
1042 void
1043 intel_fbo_init(struct intel_context *intel)
1044 {
1045 intel->ctx.Driver.NewFramebuffer = intel_new_framebuffer;
1046 intel->ctx.Driver.NewRenderbuffer = intel_new_renderbuffer;
1047 intel->ctx.Driver.MapRenderbuffer = intel_map_renderbuffer;
1048 intel->ctx.Driver.UnmapRenderbuffer = intel_unmap_renderbuffer;
1049 intel->ctx.Driver.BindFramebuffer = intel_bind_framebuffer;
1050 intel->ctx.Driver.FramebufferRenderbuffer = intel_framebuffer_renderbuffer;
1051 intel->ctx.Driver.RenderTexture = intel_render_texture;
1052 intel->ctx.Driver.FinishRenderTexture = intel_finish_render_texture;
1053 intel->ctx.Driver.ResizeBuffers = intel_resize_buffers;
1054 intel->ctx.Driver.ValidateFramebuffer = intel_validate_framebuffer;
1055 intel->ctx.Driver.BlitFramebuffer = intel_blit_framebuffer;
1056 intel->ctx.Driver.EGLImageTargetRenderbufferStorage =
1057 intel_image_target_renderbuffer_storage;
1058 }