mesa/glsl: move subroutine metadata to gl_program
[mesa.git] / src / mesa / main / mtypes.h
1 /*
2 * Mesa 3-D graphics library
3 *
4 * Copyright (C) 1999-2008 Brian Paul All Rights Reserved.
5 * Copyright (C) 2009 VMware, Inc. All Rights Reserved.
6 *
7 * Permission is hereby granted, free of charge, to any person obtaining a
8 * copy of this software and associated documentation files (the "Software"),
9 * to deal in the Software without restriction, including without limitation
10 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
11 * and/or sell copies of the Software, and to permit persons to whom the
12 * Software is furnished to do so, subject to the following conditions:
13 *
14 * The above copyright notice and this permission notice shall be included
15 * in all copies or substantial portions of the Software.
16 *
17 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
18 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
19 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
20 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
21 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
22 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
23 * OTHER DEALINGS IN THE SOFTWARE.
24 */
25
26 /**
27 * \file mtypes.h
28 * Main Mesa data structures.
29 *
30 * Please try to mark derived values with a leading underscore ('_').
31 */
32
33 #ifndef MTYPES_H
34 #define MTYPES_H
35
36
37 #include <stdint.h> /* uint32_t */
38 #include <stdbool.h>
39 #include "c11/threads.h"
40
41 #include "main/glheader.h"
42 #include "main/config.h"
43 #include "glapi/glapi.h"
44 #include "math/m_matrix.h" /* GLmatrix */
45 #include "compiler/shader_enums.h"
46 #include "compiler/shader_info.h"
47 #include "main/formats.h" /* MESA_FORMAT_COUNT */
48 #include "compiler/glsl/list.h"
49 #include "util/bitscan.h"
50
51
52 #ifdef __cplusplus
53 extern "C" {
54 #endif
55
56
57 /**
58 * \name 64-bit extension of GLbitfield.
59 */
60 /*@{*/
61 typedef GLuint64 GLbitfield64;
62
63 /** Set a single bit */
64 #define BITFIELD64_BIT(b) ((GLbitfield64)1 << (b))
65 /** Set all bits up to excluding bit b */
66 #define BITFIELD64_MASK(b) \
67 ((b) == 64 ? (~(GLbitfield64)0) : BITFIELD64_BIT(b) - 1)
68 /** Set count bits starting from bit b */
69 #define BITFIELD64_RANGE(b, count) \
70 (BITFIELD64_MASK((b) + (count)) & ~BITFIELD64_MASK(b))
71
72
73 /**
74 * \name Some forward type declarations
75 */
76 /*@{*/
77 struct _mesa_HashTable;
78 struct gl_attrib_node;
79 struct gl_list_extensions;
80 struct gl_meta_state;
81 struct gl_program_cache;
82 struct gl_texture_object;
83 struct gl_debug_state;
84 struct gl_context;
85 struct st_context;
86 struct gl_uniform_storage;
87 struct prog_instruction;
88 struct gl_program_parameter_list;
89 struct set;
90 struct set_entry;
91 struct vbo_context;
92 /*@}*/
93
94
95 /** Extra draw modes beyond GL_POINTS, GL_TRIANGLE_FAN, etc */
96 #define PRIM_MAX GL_PATCHES
97 #define PRIM_OUTSIDE_BEGIN_END (PRIM_MAX + 1)
98 #define PRIM_UNKNOWN (PRIM_MAX + 2)
99
100 /**
101 * Determine if the given gl_varying_slot appears in the fragment shader.
102 */
103 static inline GLboolean
104 _mesa_varying_slot_in_fs(gl_varying_slot slot)
105 {
106 switch (slot) {
107 case VARYING_SLOT_PSIZ:
108 case VARYING_SLOT_BFC0:
109 case VARYING_SLOT_BFC1:
110 case VARYING_SLOT_EDGE:
111 case VARYING_SLOT_CLIP_VERTEX:
112 case VARYING_SLOT_LAYER:
113 case VARYING_SLOT_TESS_LEVEL_OUTER:
114 case VARYING_SLOT_TESS_LEVEL_INNER:
115 case VARYING_SLOT_BOUNDING_BOX0:
116 case VARYING_SLOT_BOUNDING_BOX1:
117 return GL_FALSE;
118 default:
119 return GL_TRUE;
120 }
121 }
122
123 /**
124 * Indexes for all renderbuffers
125 */
126 typedef enum
127 {
128 /* the four standard color buffers */
129 BUFFER_FRONT_LEFT,
130 BUFFER_BACK_LEFT,
131 BUFFER_FRONT_RIGHT,
132 BUFFER_BACK_RIGHT,
133 BUFFER_DEPTH,
134 BUFFER_STENCIL,
135 BUFFER_ACCUM,
136 /* optional aux buffer */
137 BUFFER_AUX0,
138 /* generic renderbuffers */
139 BUFFER_COLOR0,
140 BUFFER_COLOR1,
141 BUFFER_COLOR2,
142 BUFFER_COLOR3,
143 BUFFER_COLOR4,
144 BUFFER_COLOR5,
145 BUFFER_COLOR6,
146 BUFFER_COLOR7,
147 BUFFER_COUNT
148 } gl_buffer_index;
149
150 /**
151 * Bit flags for all renderbuffers
152 */
153 #define BUFFER_BIT_FRONT_LEFT (1 << BUFFER_FRONT_LEFT)
154 #define BUFFER_BIT_BACK_LEFT (1 << BUFFER_BACK_LEFT)
155 #define BUFFER_BIT_FRONT_RIGHT (1 << BUFFER_FRONT_RIGHT)
156 #define BUFFER_BIT_BACK_RIGHT (1 << BUFFER_BACK_RIGHT)
157 #define BUFFER_BIT_AUX0 (1 << BUFFER_AUX0)
158 #define BUFFER_BIT_AUX1 (1 << BUFFER_AUX1)
159 #define BUFFER_BIT_AUX2 (1 << BUFFER_AUX2)
160 #define BUFFER_BIT_AUX3 (1 << BUFFER_AUX3)
161 #define BUFFER_BIT_DEPTH (1 << BUFFER_DEPTH)
162 #define BUFFER_BIT_STENCIL (1 << BUFFER_STENCIL)
163 #define BUFFER_BIT_ACCUM (1 << BUFFER_ACCUM)
164 #define BUFFER_BIT_COLOR0 (1 << BUFFER_COLOR0)
165 #define BUFFER_BIT_COLOR1 (1 << BUFFER_COLOR1)
166 #define BUFFER_BIT_COLOR2 (1 << BUFFER_COLOR2)
167 #define BUFFER_BIT_COLOR3 (1 << BUFFER_COLOR3)
168 #define BUFFER_BIT_COLOR4 (1 << BUFFER_COLOR4)
169 #define BUFFER_BIT_COLOR5 (1 << BUFFER_COLOR5)
170 #define BUFFER_BIT_COLOR6 (1 << BUFFER_COLOR6)
171 #define BUFFER_BIT_COLOR7 (1 << BUFFER_COLOR7)
172
173 /**
174 * Mask of all the color buffer bits (but not accum).
175 */
176 #define BUFFER_BITS_COLOR (BUFFER_BIT_FRONT_LEFT | \
177 BUFFER_BIT_BACK_LEFT | \
178 BUFFER_BIT_FRONT_RIGHT | \
179 BUFFER_BIT_BACK_RIGHT | \
180 BUFFER_BIT_AUX0 | \
181 BUFFER_BIT_COLOR0 | \
182 BUFFER_BIT_COLOR1 | \
183 BUFFER_BIT_COLOR2 | \
184 BUFFER_BIT_COLOR3 | \
185 BUFFER_BIT_COLOR4 | \
186 BUFFER_BIT_COLOR5 | \
187 BUFFER_BIT_COLOR6 | \
188 BUFFER_BIT_COLOR7)
189
190 /**
191 * Framebuffer configuration (aka visual / pixelformat)
192 * Note: some of these fields should be boolean, but it appears that
193 * code in drivers/dri/common/util.c requires int-sized fields.
194 */
195 struct gl_config
196 {
197 GLboolean rgbMode;
198 GLboolean floatMode;
199 GLuint doubleBufferMode;
200 GLuint stereoMode;
201
202 GLboolean haveAccumBuffer;
203 GLboolean haveDepthBuffer;
204 GLboolean haveStencilBuffer;
205
206 GLint redBits, greenBits, blueBits, alphaBits; /* bits per comp */
207 GLuint redMask, greenMask, blueMask, alphaMask;
208 GLint rgbBits; /* total bits for rgb */
209 GLint indexBits; /* total bits for colorindex */
210
211 GLint accumRedBits, accumGreenBits, accumBlueBits, accumAlphaBits;
212 GLint depthBits;
213 GLint stencilBits;
214
215 GLint numAuxBuffers;
216
217 GLint level;
218
219 /* EXT_visual_rating / GLX 1.2 */
220 GLint visualRating;
221
222 /* EXT_visual_info / GLX 1.2 */
223 GLint transparentPixel;
224 /* colors are floats scaled to ints */
225 GLint transparentRed, transparentGreen, transparentBlue, transparentAlpha;
226 GLint transparentIndex;
227
228 /* ARB_multisample / SGIS_multisample */
229 GLint sampleBuffers;
230 GLint samples;
231
232 /* SGIX_pbuffer / GLX 1.3 */
233 GLint maxPbufferWidth;
234 GLint maxPbufferHeight;
235 GLint maxPbufferPixels;
236 GLint optimalPbufferWidth; /* Only for SGIX_pbuffer. */
237 GLint optimalPbufferHeight; /* Only for SGIX_pbuffer. */
238
239 /* OML_swap_method */
240 GLint swapMethod;
241
242 /* EXT_texture_from_pixmap */
243 GLint bindToTextureRgb;
244 GLint bindToTextureRgba;
245 GLint bindToMipmapTexture;
246 GLint bindToTextureTargets;
247 GLint yInverted;
248
249 /* EXT_framebuffer_sRGB */
250 GLint sRGBCapable;
251 };
252
253
254 /**
255 * \name Bit flags used for updating material values.
256 */
257 /*@{*/
258 #define MAT_ATTRIB_FRONT_AMBIENT 0
259 #define MAT_ATTRIB_BACK_AMBIENT 1
260 #define MAT_ATTRIB_FRONT_DIFFUSE 2
261 #define MAT_ATTRIB_BACK_DIFFUSE 3
262 #define MAT_ATTRIB_FRONT_SPECULAR 4
263 #define MAT_ATTRIB_BACK_SPECULAR 5
264 #define MAT_ATTRIB_FRONT_EMISSION 6
265 #define MAT_ATTRIB_BACK_EMISSION 7
266 #define MAT_ATTRIB_FRONT_SHININESS 8
267 #define MAT_ATTRIB_BACK_SHININESS 9
268 #define MAT_ATTRIB_FRONT_INDEXES 10
269 #define MAT_ATTRIB_BACK_INDEXES 11
270 #define MAT_ATTRIB_MAX 12
271
272 #define MAT_ATTRIB_AMBIENT(f) (MAT_ATTRIB_FRONT_AMBIENT+(f))
273 #define MAT_ATTRIB_DIFFUSE(f) (MAT_ATTRIB_FRONT_DIFFUSE+(f))
274 #define MAT_ATTRIB_SPECULAR(f) (MAT_ATTRIB_FRONT_SPECULAR+(f))
275 #define MAT_ATTRIB_EMISSION(f) (MAT_ATTRIB_FRONT_EMISSION+(f))
276 #define MAT_ATTRIB_SHININESS(f)(MAT_ATTRIB_FRONT_SHININESS+(f))
277 #define MAT_ATTRIB_INDEXES(f) (MAT_ATTRIB_FRONT_INDEXES+(f))
278
279 #define MAT_INDEX_AMBIENT 0
280 #define MAT_INDEX_DIFFUSE 1
281 #define MAT_INDEX_SPECULAR 2
282
283 #define MAT_BIT_FRONT_AMBIENT (1<<MAT_ATTRIB_FRONT_AMBIENT)
284 #define MAT_BIT_BACK_AMBIENT (1<<MAT_ATTRIB_BACK_AMBIENT)
285 #define MAT_BIT_FRONT_DIFFUSE (1<<MAT_ATTRIB_FRONT_DIFFUSE)
286 #define MAT_BIT_BACK_DIFFUSE (1<<MAT_ATTRIB_BACK_DIFFUSE)
287 #define MAT_BIT_FRONT_SPECULAR (1<<MAT_ATTRIB_FRONT_SPECULAR)
288 #define MAT_BIT_BACK_SPECULAR (1<<MAT_ATTRIB_BACK_SPECULAR)
289 #define MAT_BIT_FRONT_EMISSION (1<<MAT_ATTRIB_FRONT_EMISSION)
290 #define MAT_BIT_BACK_EMISSION (1<<MAT_ATTRIB_BACK_EMISSION)
291 #define MAT_BIT_FRONT_SHININESS (1<<MAT_ATTRIB_FRONT_SHININESS)
292 #define MAT_BIT_BACK_SHININESS (1<<MAT_ATTRIB_BACK_SHININESS)
293 #define MAT_BIT_FRONT_INDEXES (1<<MAT_ATTRIB_FRONT_INDEXES)
294 #define MAT_BIT_BACK_INDEXES (1<<MAT_ATTRIB_BACK_INDEXES)
295
296
297 #define FRONT_MATERIAL_BITS (MAT_BIT_FRONT_EMISSION | \
298 MAT_BIT_FRONT_AMBIENT | \
299 MAT_BIT_FRONT_DIFFUSE | \
300 MAT_BIT_FRONT_SPECULAR | \
301 MAT_BIT_FRONT_SHININESS | \
302 MAT_BIT_FRONT_INDEXES)
303
304 #define BACK_MATERIAL_BITS (MAT_BIT_BACK_EMISSION | \
305 MAT_BIT_BACK_AMBIENT | \
306 MAT_BIT_BACK_DIFFUSE | \
307 MAT_BIT_BACK_SPECULAR | \
308 MAT_BIT_BACK_SHININESS | \
309 MAT_BIT_BACK_INDEXES)
310
311 #define ALL_MATERIAL_BITS (FRONT_MATERIAL_BITS | BACK_MATERIAL_BITS)
312 /*@}*/
313
314
315 /**
316 * Material state.
317 */
318 struct gl_material
319 {
320 GLfloat Attrib[MAT_ATTRIB_MAX][4];
321 };
322
323
324 /**
325 * Light state flags.
326 */
327 /*@{*/
328 #define LIGHT_SPOT 0x1
329 #define LIGHT_LOCAL_VIEWER 0x2
330 #define LIGHT_POSITIONAL 0x4
331 #define LIGHT_NEED_VERTICES (LIGHT_POSITIONAL|LIGHT_LOCAL_VIEWER)
332 /*@}*/
333
334
335 /**
336 * Light source state.
337 */
338 struct gl_light
339 {
340 GLfloat Ambient[4]; /**< ambient color */
341 GLfloat Diffuse[4]; /**< diffuse color */
342 GLfloat Specular[4]; /**< specular color */
343 GLfloat EyePosition[4]; /**< position in eye coordinates */
344 GLfloat SpotDirection[4]; /**< spotlight direction in eye coordinates */
345 GLfloat SpotExponent;
346 GLfloat SpotCutoff; /**< in degrees */
347 GLfloat _CosCutoff; /**< = MAX(0, cos(SpotCutoff)) */
348 GLfloat ConstantAttenuation;
349 GLfloat LinearAttenuation;
350 GLfloat QuadraticAttenuation;
351 GLboolean Enabled; /**< On/off flag */
352
353 /**
354 * \name Derived fields
355 */
356 /*@{*/
357 GLbitfield _Flags; /**< Mask of LIGHT_x bits defined above */
358
359 GLfloat _Position[4]; /**< position in eye/obj coordinates */
360 GLfloat _VP_inf_norm[3]; /**< Norm direction to infinite light */
361 GLfloat _h_inf_norm[3]; /**< Norm( _VP_inf_norm + <0,0,1> ) */
362 GLfloat _NormSpotDirection[4]; /**< normalized spotlight direction */
363 GLfloat _VP_inf_spot_attenuation;
364
365 GLfloat _MatAmbient[2][3]; /**< material ambient * light ambient */
366 GLfloat _MatDiffuse[2][3]; /**< material diffuse * light diffuse */
367 GLfloat _MatSpecular[2][3]; /**< material spec * light specular */
368 /*@}*/
369 };
370
371
372 /**
373 * Light model state.
374 */
375 struct gl_lightmodel
376 {
377 GLfloat Ambient[4]; /**< ambient color */
378 GLboolean LocalViewer; /**< Local (or infinite) view point? */
379 GLboolean TwoSide; /**< Two (or one) sided lighting? */
380 GLenum ColorControl; /**< either GL_SINGLE_COLOR
381 * or GL_SEPARATE_SPECULAR_COLOR */
382 };
383
384
385 /**
386 * Accumulation buffer attribute group (GL_ACCUM_BUFFER_BIT)
387 */
388 struct gl_accum_attrib
389 {
390 GLfloat ClearColor[4]; /**< Accumulation buffer clear color */
391 };
392
393
394 /**
395 * Used for storing clear color, texture border color, etc.
396 * The float values are typically unclamped.
397 */
398 union gl_color_union
399 {
400 GLfloat f[4];
401 GLint i[4];
402 GLuint ui[4];
403 };
404
405
406 /**
407 * Color buffer attribute group (GL_COLOR_BUFFER_BIT).
408 */
409 struct gl_colorbuffer_attrib
410 {
411 GLuint ClearIndex; /**< Index for glClear */
412 union gl_color_union ClearColor; /**< Color for glClear, unclamped */
413 GLuint IndexMask; /**< Color index write mask */
414 GLubyte ColorMask[MAX_DRAW_BUFFERS][4]; /**< Each flag is 0xff or 0x0 */
415
416 GLenum DrawBuffer[MAX_DRAW_BUFFERS]; /**< Which buffer to draw into */
417
418 /**
419 * \name alpha testing
420 */
421 /*@{*/
422 GLboolean AlphaEnabled; /**< Alpha test enabled flag */
423 GLenum AlphaFunc; /**< Alpha test function */
424 GLfloat AlphaRefUnclamped;
425 GLclampf AlphaRef; /**< Alpha reference value */
426 /*@}*/
427
428 /**
429 * \name Blending
430 */
431 /*@{*/
432 GLbitfield BlendEnabled; /**< Per-buffer blend enable flags */
433
434 /* NOTE: this does _not_ depend on fragment clamping or any other clamping
435 * control, only on the fixed-pointness of the render target.
436 * The query does however depend on fragment color clamping.
437 */
438 GLfloat BlendColorUnclamped[4]; /**< Blending color */
439 GLfloat BlendColor[4]; /**< Blending color */
440
441 struct
442 {
443 GLenum SrcRGB; /**< RGB blend source term */
444 GLenum DstRGB; /**< RGB blend dest term */
445 GLenum SrcA; /**< Alpha blend source term */
446 GLenum DstA; /**< Alpha blend dest term */
447 GLenum EquationRGB; /**< GL_ADD, GL_SUBTRACT, etc. */
448 GLenum EquationA; /**< GL_ADD, GL_SUBTRACT, etc. */
449 /**
450 * Set if any blend factor uses SRC1. Computed at the time blend factors
451 * get set.
452 */
453 GLboolean _UsesDualSrc;
454 } Blend[MAX_DRAW_BUFFERS];
455 /** Are the blend func terms currently different for each buffer/target? */
456 GLboolean _BlendFuncPerBuffer;
457 /** Are the blend equations currently different for each buffer/target? */
458 GLboolean _BlendEquationPerBuffer;
459
460 /**
461 * Which advanced blending mode is in use (or BLEND_NONE).
462 *
463 * KHR_blend_equation_advanced only allows advanced blending with a single
464 * draw buffer, and NVX_blend_equation_advanced_multi_draw_buffer still
465 * requires all draw buffers to match, so we only need a single value.
466 */
467 enum gl_advanced_blend_mode _AdvancedBlendMode;
468
469 /** Coherency requested via glEnable(GL_BLEND_ADVANCED_COHERENT_KHR)? */
470 bool BlendCoherent;
471 /*@}*/
472
473 /**
474 * \name Logic op
475 */
476 /*@{*/
477 GLboolean IndexLogicOpEnabled; /**< Color index logic op enabled flag */
478 GLboolean ColorLogicOpEnabled; /**< RGBA logic op enabled flag */
479 GLenum LogicOp; /**< Logic operator */
480
481 /*@}*/
482
483 GLboolean DitherFlag; /**< Dither enable flag */
484
485 GLboolean _ClampFragmentColor; /** < with GL_FIXED_ONLY_ARB resolved */
486 GLenum ClampFragmentColor; /**< GL_TRUE, GL_FALSE or GL_FIXED_ONLY_ARB */
487 GLenum ClampReadColor; /**< GL_TRUE, GL_FALSE or GL_FIXED_ONLY_ARB */
488
489 GLboolean sRGBEnabled; /**< Framebuffer sRGB blending/updating requested */
490 };
491
492
493 /**
494 * Current attribute group (GL_CURRENT_BIT).
495 */
496 struct gl_current_attrib
497 {
498 /**
499 * \name Current vertex attributes (color, texcoords, etc).
500 * \note Values are valid only after FLUSH_VERTICES has been called.
501 * \note Index and Edgeflag current values are stored as floats in the
502 * SIX and SEVEN attribute slots.
503 * \note We need double storage for 64-bit vertex attributes
504 */
505 GLfloat Attrib[VERT_ATTRIB_MAX][4*2];
506
507 /**
508 * \name Current raster position attributes (always up to date after a
509 * glRasterPos call).
510 */
511 GLfloat RasterPos[4];
512 GLfloat RasterDistance;
513 GLfloat RasterColor[4];
514 GLfloat RasterSecondaryColor[4];
515 GLfloat RasterTexCoords[MAX_TEXTURE_COORD_UNITS][4];
516 GLboolean RasterPosValid;
517 };
518
519
520 /**
521 * Depth buffer attribute group (GL_DEPTH_BUFFER_BIT).
522 */
523 struct gl_depthbuffer_attrib
524 {
525 GLenum Func; /**< Function for depth buffer compare */
526 GLclampd Clear; /**< Value to clear depth buffer to */
527 GLboolean Test; /**< Depth buffering enabled flag */
528 GLboolean Mask; /**< Depth buffer writable? */
529 GLboolean BoundsTest; /**< GL_EXT_depth_bounds_test */
530 GLfloat BoundsMin, BoundsMax;/**< GL_EXT_depth_bounds_test */
531 };
532
533
534 /**
535 * Evaluator attribute group (GL_EVAL_BIT).
536 */
537 struct gl_eval_attrib
538 {
539 /**
540 * \name Enable bits
541 */
542 /*@{*/
543 GLboolean Map1Color4;
544 GLboolean Map1Index;
545 GLboolean Map1Normal;
546 GLboolean Map1TextureCoord1;
547 GLboolean Map1TextureCoord2;
548 GLboolean Map1TextureCoord3;
549 GLboolean Map1TextureCoord4;
550 GLboolean Map1Vertex3;
551 GLboolean Map1Vertex4;
552 GLboolean Map2Color4;
553 GLboolean Map2Index;
554 GLboolean Map2Normal;
555 GLboolean Map2TextureCoord1;
556 GLboolean Map2TextureCoord2;
557 GLboolean Map2TextureCoord3;
558 GLboolean Map2TextureCoord4;
559 GLboolean Map2Vertex3;
560 GLboolean Map2Vertex4;
561 GLboolean AutoNormal;
562 /*@}*/
563
564 /**
565 * \name Map Grid endpoints and divisions and calculated du values
566 */
567 /*@{*/
568 GLint MapGrid1un;
569 GLfloat MapGrid1u1, MapGrid1u2, MapGrid1du;
570 GLint MapGrid2un, MapGrid2vn;
571 GLfloat MapGrid2u1, MapGrid2u2, MapGrid2du;
572 GLfloat MapGrid2v1, MapGrid2v2, MapGrid2dv;
573 /*@}*/
574 };
575
576
577 /**
578 * Fog attribute group (GL_FOG_BIT).
579 */
580 struct gl_fog_attrib
581 {
582 GLboolean Enabled; /**< Fog enabled flag */
583 GLboolean ColorSumEnabled;
584 GLfloat ColorUnclamped[4]; /**< Fog color */
585 GLfloat Color[4]; /**< Fog color */
586 GLfloat Density; /**< Density >= 0.0 */
587 GLfloat Start; /**< Start distance in eye coords */
588 GLfloat End; /**< End distance in eye coords */
589 GLfloat Index; /**< Fog index */
590 GLenum Mode; /**< Fog mode */
591 GLenum FogCoordinateSource; /**< GL_EXT_fog_coord */
592 GLfloat _Scale; /**< (End == Start) ? 1.0 : 1.0 / (End - Start) */
593 GLenum FogDistanceMode; /**< GL_NV_fog_distance */
594 };
595
596
597 /**
598 * Hint attribute group (GL_HINT_BIT).
599 *
600 * Values are always one of GL_FASTEST, GL_NICEST, or GL_DONT_CARE.
601 */
602 struct gl_hint_attrib
603 {
604 GLenum PerspectiveCorrection;
605 GLenum PointSmooth;
606 GLenum LineSmooth;
607 GLenum PolygonSmooth;
608 GLenum Fog;
609 GLenum TextureCompression; /**< GL_ARB_texture_compression */
610 GLenum GenerateMipmap; /**< GL_SGIS_generate_mipmap */
611 GLenum FragmentShaderDerivative; /**< GL_ARB_fragment_shader */
612 };
613
614
615 /**
616 * Lighting attribute group (GL_LIGHT_BIT).
617 */
618 struct gl_light_attrib
619 {
620 struct gl_light Light[MAX_LIGHTS]; /**< Array of light sources */
621 struct gl_lightmodel Model; /**< Lighting model */
622
623 /**
624 * Front and back material values.
625 * Note: must call FLUSH_VERTICES() before using.
626 */
627 struct gl_material Material;
628
629 GLboolean Enabled; /**< Lighting enabled flag */
630 GLboolean ColorMaterialEnabled;
631
632 GLenum ShadeModel; /**< GL_FLAT or GL_SMOOTH */
633 GLenum ProvokingVertex; /**< GL_EXT_provoking_vertex */
634 GLenum ColorMaterialFace; /**< GL_FRONT, BACK or FRONT_AND_BACK */
635 GLenum ColorMaterialMode; /**< GL_AMBIENT, GL_DIFFUSE, etc */
636 GLbitfield _ColorMaterialBitmask; /**< bitmask formed from Face and Mode */
637
638
639 GLboolean _ClampVertexColor;
640 GLenum ClampVertexColor; /**< GL_TRUE, GL_FALSE, GL_FIXED_ONLY */
641
642 /**
643 * Derived state for optimizations:
644 */
645 /*@{*/
646 GLbitfield _EnabledLights; /**< bitmask containing enabled lights */
647
648 GLboolean _NeedEyeCoords;
649 GLboolean _NeedVertices; /**< Use fast shader? */
650
651 GLfloat _BaseColor[2][3];
652 /*@}*/
653 };
654
655
656 /**
657 * Line attribute group (GL_LINE_BIT).
658 */
659 struct gl_line_attrib
660 {
661 GLboolean SmoothFlag; /**< GL_LINE_SMOOTH enabled? */
662 GLboolean StippleFlag; /**< GL_LINE_STIPPLE enabled? */
663 GLushort StipplePattern; /**< Stipple pattern */
664 GLint StippleFactor; /**< Stipple repeat factor */
665 GLfloat Width; /**< Line width */
666 };
667
668
669 /**
670 * Display list attribute group (GL_LIST_BIT).
671 */
672 struct gl_list_attrib
673 {
674 GLuint ListBase;
675 };
676
677
678 /**
679 * Multisample attribute group (GL_MULTISAMPLE_BIT).
680 */
681 struct gl_multisample_attrib
682 {
683 GLboolean Enabled;
684 GLboolean SampleAlphaToCoverage;
685 GLboolean SampleAlphaToOne;
686 GLboolean SampleCoverage;
687 GLboolean SampleCoverageInvert;
688 GLboolean SampleShading;
689
690 /* ARB_texture_multisample / GL3.2 additions */
691 GLboolean SampleMask;
692
693 GLfloat SampleCoverageValue;
694 GLfloat MinSampleShadingValue;
695
696 /** The GL spec defines this as an array but >32x MSAA is madness */
697 GLbitfield SampleMaskValue;
698 };
699
700
701 /**
702 * A pixelmap (see glPixelMap)
703 */
704 struct gl_pixelmap
705 {
706 GLint Size;
707 GLfloat Map[MAX_PIXEL_MAP_TABLE];
708 };
709
710
711 /**
712 * Collection of all pixelmaps
713 */
714 struct gl_pixelmaps
715 {
716 struct gl_pixelmap RtoR; /**< i.e. GL_PIXEL_MAP_R_TO_R */
717 struct gl_pixelmap GtoG;
718 struct gl_pixelmap BtoB;
719 struct gl_pixelmap AtoA;
720 struct gl_pixelmap ItoR;
721 struct gl_pixelmap ItoG;
722 struct gl_pixelmap ItoB;
723 struct gl_pixelmap ItoA;
724 struct gl_pixelmap ItoI;
725 struct gl_pixelmap StoS;
726 };
727
728
729 /**
730 * Pixel attribute group (GL_PIXEL_MODE_BIT).
731 */
732 struct gl_pixel_attrib
733 {
734 GLenum ReadBuffer; /**< source buffer for glRead/CopyPixels() */
735
736 /*--- Begin Pixel Transfer State ---*/
737 /* Fields are in the order in which they're applied... */
738
739 /** Scale & Bias (index shift, offset) */
740 /*@{*/
741 GLfloat RedBias, RedScale;
742 GLfloat GreenBias, GreenScale;
743 GLfloat BlueBias, BlueScale;
744 GLfloat AlphaBias, AlphaScale;
745 GLfloat DepthBias, DepthScale;
746 GLint IndexShift, IndexOffset;
747 /*@}*/
748
749 /* Pixel Maps */
750 /* Note: actual pixel maps are not part of this attrib group */
751 GLboolean MapColorFlag;
752 GLboolean MapStencilFlag;
753
754 /*--- End Pixel Transfer State ---*/
755
756 /** glPixelZoom */
757 GLfloat ZoomX, ZoomY;
758 };
759
760
761 /**
762 * Point attribute group (GL_POINT_BIT).
763 */
764 struct gl_point_attrib
765 {
766 GLfloat Size; /**< User-specified point size */
767 GLfloat Params[3]; /**< GL_EXT_point_parameters */
768 GLfloat MinSize, MaxSize; /**< GL_EXT_point_parameters */
769 GLfloat Threshold; /**< GL_EXT_point_parameters */
770 GLboolean SmoothFlag; /**< True if GL_POINT_SMOOTH is enabled */
771 GLboolean _Attenuated; /**< True if Params != [1, 0, 0] */
772 GLboolean PointSprite; /**< GL_NV/ARB_point_sprite */
773 GLbitfield CoordReplace; /**< GL_ARB_point_sprite*/
774 GLenum SpriteRMode; /**< GL_NV_point_sprite (only!) */
775 GLenum SpriteOrigin; /**< GL_ARB_point_sprite */
776 };
777
778
779 /**
780 * Polygon attribute group (GL_POLYGON_BIT).
781 */
782 struct gl_polygon_attrib
783 {
784 GLenum FrontFace; /**< Either GL_CW or GL_CCW */
785 GLenum FrontMode; /**< Either GL_POINT, GL_LINE or GL_FILL */
786 GLenum BackMode; /**< Either GL_POINT, GL_LINE or GL_FILL */
787 GLboolean _FrontBit; /**< 0=GL_CCW, 1=GL_CW */
788 GLboolean CullFlag; /**< Culling on/off flag */
789 GLboolean SmoothFlag; /**< True if GL_POLYGON_SMOOTH is enabled */
790 GLboolean StippleFlag; /**< True if GL_POLYGON_STIPPLE is enabled */
791 GLenum CullFaceMode; /**< Culling mode GL_FRONT or GL_BACK */
792 GLfloat OffsetFactor; /**< Polygon offset factor, from user */
793 GLfloat OffsetUnits; /**< Polygon offset units, from user */
794 GLfloat OffsetClamp; /**< Polygon offset clamp, from user */
795 GLboolean OffsetPoint; /**< Offset in GL_POINT mode */
796 GLboolean OffsetLine; /**< Offset in GL_LINE mode */
797 GLboolean OffsetFill; /**< Offset in GL_FILL mode */
798 };
799
800
801 /**
802 * Scissor attributes (GL_SCISSOR_BIT).
803 */
804 struct gl_scissor_rect
805 {
806 GLint X, Y; /**< Lower left corner of box */
807 GLsizei Width, Height; /**< Size of box */
808 };
809 struct gl_scissor_attrib
810 {
811 GLbitfield EnableFlags; /**< Scissor test enabled? */
812 struct gl_scissor_rect ScissorArray[MAX_VIEWPORTS];
813 GLint NumWindowRects; /**< Count of enabled window rectangles */
814 GLenum WindowRectMode; /**< Whether to include or exclude the rects */
815 struct gl_scissor_rect WindowRects[MAX_WINDOW_RECTANGLES];
816 };
817
818
819 /**
820 * Stencil attribute group (GL_STENCIL_BUFFER_BIT).
821 *
822 * Three sets of stencil data are tracked so that OpenGL 2.0,
823 * GL_EXT_stencil_two_side, and GL_ATI_separate_stencil can all be supported
824 * simultaneously. In each of the stencil state arrays, element 0 corresponds
825 * to GL_FRONT. Element 1 corresponds to the OpenGL 2.0 /
826 * GL_ATI_separate_stencil GL_BACK state. Element 2 corresponds to the
827 * GL_EXT_stencil_two_side GL_BACK state.
828 *
829 * The derived value \c _BackFace is either 1 or 2 depending on whether or
830 * not GL_STENCIL_TEST_TWO_SIDE_EXT is enabled.
831 *
832 * The derived value \c _TestTwoSide is set when the front-face and back-face
833 * stencil state are different.
834 */
835 struct gl_stencil_attrib
836 {
837 GLboolean Enabled; /**< Enabled flag */
838 GLboolean TestTwoSide; /**< GL_EXT_stencil_two_side */
839 GLubyte ActiveFace; /**< GL_EXT_stencil_two_side (0 or 2) */
840 GLboolean _Enabled; /**< Enabled and stencil buffer present */
841 GLboolean _WriteEnabled; /**< _Enabled and non-zero writemasks */
842 GLboolean _TestTwoSide;
843 GLubyte _BackFace; /**< Current back stencil state (1 or 2) */
844 GLenum Function[3]; /**< Stencil function */
845 GLenum FailFunc[3]; /**< Fail function */
846 GLenum ZPassFunc[3]; /**< Depth buffer pass function */
847 GLenum ZFailFunc[3]; /**< Depth buffer fail function */
848 GLint Ref[3]; /**< Reference value */
849 GLuint ValueMask[3]; /**< Value mask */
850 GLuint WriteMask[3]; /**< Write mask */
851 GLuint Clear; /**< Clear value */
852 };
853
854
855 /**
856 * An index for each type of texture object. These correspond to the GL
857 * texture target enums, such as GL_TEXTURE_2D, GL_TEXTURE_CUBE_MAP, etc.
858 * Note: the order is from highest priority to lowest priority.
859 */
860 typedef enum
861 {
862 TEXTURE_2D_MULTISAMPLE_INDEX,
863 TEXTURE_2D_MULTISAMPLE_ARRAY_INDEX,
864 TEXTURE_CUBE_ARRAY_INDEX,
865 TEXTURE_BUFFER_INDEX,
866 TEXTURE_2D_ARRAY_INDEX,
867 TEXTURE_1D_ARRAY_INDEX,
868 TEXTURE_EXTERNAL_INDEX,
869 TEXTURE_CUBE_INDEX,
870 TEXTURE_3D_INDEX,
871 TEXTURE_RECT_INDEX,
872 TEXTURE_2D_INDEX,
873 TEXTURE_1D_INDEX,
874 NUM_TEXTURE_TARGETS
875 } gl_texture_index;
876
877
878 /**
879 * Bit flags for each type of texture object
880 */
881 /*@{*/
882 #define TEXTURE_2D_MULTISAMPLE_BIT (1 << TEXTURE_2D_MULTISAMPLE_INDEX)
883 #define TEXTURE_2D_MULTISAMPLE_ARRAY_BIT (1 << TEXTURE_2D_MULTISAMPLE_ARRAY_INDEX)
884 #define TEXTURE_CUBE_ARRAY_BIT (1 << TEXTURE_CUBE_ARRAY_INDEX)
885 #define TEXTURE_BUFFER_BIT (1 << TEXTURE_BUFFER_INDEX)
886 #define TEXTURE_2D_ARRAY_BIT (1 << TEXTURE_2D_ARRAY_INDEX)
887 #define TEXTURE_1D_ARRAY_BIT (1 << TEXTURE_1D_ARRAY_INDEX)
888 #define TEXTURE_EXTERNAL_BIT (1 << TEXTURE_EXTERNAL_INDEX)
889 #define TEXTURE_CUBE_BIT (1 << TEXTURE_CUBE_INDEX)
890 #define TEXTURE_3D_BIT (1 << TEXTURE_3D_INDEX)
891 #define TEXTURE_RECT_BIT (1 << TEXTURE_RECT_INDEX)
892 #define TEXTURE_2D_BIT (1 << TEXTURE_2D_INDEX)
893 #define TEXTURE_1D_BIT (1 << TEXTURE_1D_INDEX)
894 /*@}*/
895
896
897 /**
898 * Texture image state. Drivers will typically create a subclass of this
899 * with extra fields for memory buffers, etc.
900 */
901 struct gl_texture_image
902 {
903 GLint InternalFormat; /**< Internal format as given by the user */
904 GLenum _BaseFormat; /**< Either GL_RGB, GL_RGBA, GL_ALPHA,
905 * GL_LUMINANCE, GL_LUMINANCE_ALPHA,
906 * GL_INTENSITY, GL_DEPTH_COMPONENT or
907 * GL_DEPTH_STENCIL_EXT only. Used for
908 * choosing TexEnv arithmetic.
909 */
910 mesa_format TexFormat; /**< The actual texture memory format */
911
912 GLuint Border; /**< 0 or 1 */
913 GLuint Width; /**< = 2^WidthLog2 + 2*Border */
914 GLuint Height; /**< = 2^HeightLog2 + 2*Border */
915 GLuint Depth; /**< = 2^DepthLog2 + 2*Border */
916 GLuint Width2; /**< = Width - 2*Border */
917 GLuint Height2; /**< = Height - 2*Border */
918 GLuint Depth2; /**< = Depth - 2*Border */
919 GLuint WidthLog2; /**< = log2(Width2) */
920 GLuint HeightLog2; /**< = log2(Height2) */
921 GLuint DepthLog2; /**< = log2(Depth2) */
922 GLuint MaxNumLevels; /**< = maximum possible number of mipmap
923 levels, computed from the dimensions */
924
925 struct gl_texture_object *TexObject; /**< Pointer back to parent object */
926 GLuint Level; /**< Which mipmap level am I? */
927 /** Cube map face: index into gl_texture_object::Image[] array */
928 GLuint Face;
929
930 /** GL_ARB_texture_multisample */
931 GLuint NumSamples; /**< Sample count, or 0 for non-multisample */
932 GLboolean FixedSampleLocations; /**< Same sample locations for all pixels? */
933 };
934
935
936 /**
937 * Indexes for cube map faces.
938 */
939 typedef enum
940 {
941 FACE_POS_X = 0,
942 FACE_NEG_X = 1,
943 FACE_POS_Y = 2,
944 FACE_NEG_Y = 3,
945 FACE_POS_Z = 4,
946 FACE_NEG_Z = 5,
947 MAX_FACES = 6
948 } gl_face_index;
949
950
951 /**
952 * Sampler object state. These objects are new with GL_ARB_sampler_objects
953 * and OpenGL 3.3. Legacy texture objects also contain a sampler object.
954 */
955 struct gl_sampler_object
956 {
957 mtx_t Mutex;
958 GLuint Name;
959 GLint RefCount;
960 GLchar *Label; /**< GL_KHR_debug */
961
962 GLenum WrapS; /**< S-axis texture image wrap mode */
963 GLenum WrapT; /**< T-axis texture image wrap mode */
964 GLenum WrapR; /**< R-axis texture image wrap mode */
965 GLenum MinFilter; /**< minification filter */
966 GLenum MagFilter; /**< magnification filter */
967 union gl_color_union BorderColor; /**< Interpreted according to texture format */
968 GLfloat MinLod; /**< min lambda, OpenGL 1.2 */
969 GLfloat MaxLod; /**< max lambda, OpenGL 1.2 */
970 GLfloat LodBias; /**< OpenGL 1.4 */
971 GLfloat MaxAnisotropy; /**< GL_EXT_texture_filter_anisotropic */
972 GLenum CompareMode; /**< GL_ARB_shadow */
973 GLenum CompareFunc; /**< GL_ARB_shadow */
974 GLenum sRGBDecode; /**< GL_DECODE_EXT or GL_SKIP_DECODE_EXT */
975 GLboolean CubeMapSeamless; /**< GL_AMD_seamless_cubemap_per_texture */
976 };
977
978
979 /**
980 * Texture object state. Contains the array of mipmap images, border color,
981 * wrap modes, filter modes, and shadow/texcompare state.
982 */
983 struct gl_texture_object
984 {
985 mtx_t Mutex; /**< for thread safety */
986 GLint RefCount; /**< reference count */
987 GLuint Name; /**< the user-visible texture object ID */
988 GLchar *Label; /**< GL_KHR_debug */
989 GLenum Target; /**< GL_TEXTURE_1D, GL_TEXTURE_2D, etc. */
990 gl_texture_index TargetIndex; /**< The gl_texture_unit::CurrentTex index.
991 Only valid when Target is valid. */
992
993 struct gl_sampler_object Sampler;
994
995 GLenum DepthMode; /**< GL_ARB_depth_texture */
996 bool StencilSampling; /**< Should we sample stencil instead of depth? */
997
998 GLfloat Priority; /**< in [0,1] */
999 GLint BaseLevel; /**< min mipmap level, OpenGL 1.2 */
1000 GLint MaxLevel; /**< max mipmap level, OpenGL 1.2 */
1001 GLint ImmutableLevels; /**< ES 3.0 / ARB_texture_view */
1002 GLint _MaxLevel; /**< actual max mipmap level (q in the spec) */
1003 GLfloat _MaxLambda; /**< = _MaxLevel - BaseLevel (q - p in spec) */
1004 GLint CropRect[4]; /**< GL_OES_draw_texture */
1005 GLenum Swizzle[4]; /**< GL_EXT_texture_swizzle */
1006 GLuint _Swizzle; /**< same as Swizzle, but SWIZZLE_* format */
1007 GLboolean GenerateMipmap; /**< GL_SGIS_generate_mipmap */
1008 GLboolean _BaseComplete; /**< Is the base texture level valid? */
1009 GLboolean _MipmapComplete; /**< Is the whole mipmap valid? */
1010 GLboolean _IsIntegerFormat; /**< Does the texture store integer values? */
1011 GLboolean _RenderToTexture; /**< Any rendering to this texture? */
1012 GLboolean Purgeable; /**< Is the buffer purgeable under memory
1013 pressure? */
1014 GLboolean Immutable; /**< GL_ARB_texture_storage */
1015 GLboolean _IsFloat; /**< GL_OES_float_texture */
1016 GLboolean _IsHalfFloat; /**< GL_OES_half_float_texture */
1017
1018 GLuint MinLevel; /**< GL_ARB_texture_view */
1019 GLuint MinLayer; /**< GL_ARB_texture_view */
1020 GLuint NumLevels; /**< GL_ARB_texture_view */
1021 GLuint NumLayers; /**< GL_ARB_texture_view */
1022
1023 /** Actual texture images, indexed by [cube face] and [mipmap level] */
1024 struct gl_texture_image *Image[MAX_FACES][MAX_TEXTURE_LEVELS];
1025
1026 /** GL_ARB_texture_buffer_object */
1027 struct gl_buffer_object *BufferObject;
1028 GLenum BufferObjectFormat;
1029 /** Equivalent Mesa format for BufferObjectFormat. */
1030 mesa_format _BufferObjectFormat;
1031 /** GL_ARB_texture_buffer_range */
1032 GLintptr BufferOffset;
1033 GLsizeiptr BufferSize; /**< if this is -1, use BufferObject->Size instead */
1034
1035 /** GL_OES_EGL_image_external */
1036 GLint RequiredTextureImageUnits;
1037
1038 /** GL_ARB_shader_image_load_store */
1039 GLenum ImageFormatCompatibilityType;
1040 };
1041
1042
1043 /** Up to four combiner sources are possible with GL_NV_texture_env_combine4 */
1044 #define MAX_COMBINER_TERMS 4
1045
1046
1047 /**
1048 * Texture combine environment state.
1049 */
1050 struct gl_tex_env_combine_state
1051 {
1052 GLenum ModeRGB; /**< GL_REPLACE, GL_DECAL, GL_ADD, etc. */
1053 GLenum ModeA; /**< GL_REPLACE, GL_DECAL, GL_ADD, etc. */
1054 /** Source terms: GL_PRIMARY_COLOR, GL_TEXTURE, etc */
1055 GLenum SourceRGB[MAX_COMBINER_TERMS];
1056 GLenum SourceA[MAX_COMBINER_TERMS];
1057 /** Source operands: GL_SRC_COLOR, GL_ONE_MINUS_SRC_COLOR, etc */
1058 GLenum OperandRGB[MAX_COMBINER_TERMS];
1059 GLenum OperandA[MAX_COMBINER_TERMS];
1060 GLuint ScaleShiftRGB; /**< 0, 1 or 2 */
1061 GLuint ScaleShiftA; /**< 0, 1 or 2 */
1062 GLuint _NumArgsRGB; /**< Number of inputs used for the RGB combiner */
1063 GLuint _NumArgsA; /**< Number of inputs used for the A combiner */
1064 };
1065
1066
1067 /**
1068 * TexGenEnabled flags.
1069 */
1070 /*@{*/
1071 #define S_BIT 1
1072 #define T_BIT 2
1073 #define R_BIT 4
1074 #define Q_BIT 8
1075 #define STR_BITS (S_BIT | T_BIT | R_BIT)
1076 /*@}*/
1077
1078
1079 /**
1080 * Bit flag versions of the corresponding GL_ constants.
1081 */
1082 /*@{*/
1083 #define TEXGEN_SPHERE_MAP 0x1
1084 #define TEXGEN_OBJ_LINEAR 0x2
1085 #define TEXGEN_EYE_LINEAR 0x4
1086 #define TEXGEN_REFLECTION_MAP_NV 0x8
1087 #define TEXGEN_NORMAL_MAP_NV 0x10
1088
1089 #define TEXGEN_NEED_NORMALS (TEXGEN_SPHERE_MAP | \
1090 TEXGEN_REFLECTION_MAP_NV | \
1091 TEXGEN_NORMAL_MAP_NV)
1092 #define TEXGEN_NEED_EYE_COORD (TEXGEN_SPHERE_MAP | \
1093 TEXGEN_REFLECTION_MAP_NV | \
1094 TEXGEN_NORMAL_MAP_NV | \
1095 TEXGEN_EYE_LINEAR)
1096 /*@}*/
1097
1098
1099
1100 /** Tex-gen enabled for texture unit? */
1101 #define ENABLE_TEXGEN(unit) (1 << (unit))
1102
1103 /** Non-identity texture matrix for texture unit? */
1104 #define ENABLE_TEXMAT(unit) (1 << (unit))
1105
1106
1107 /**
1108 * Texture coord generation state.
1109 */
1110 struct gl_texgen
1111 {
1112 GLenum Mode; /**< GL_EYE_LINEAR, GL_SPHERE_MAP, etc */
1113 GLbitfield _ModeBit; /**< TEXGEN_x bit corresponding to Mode */
1114 GLfloat ObjectPlane[4];
1115 GLfloat EyePlane[4];
1116 };
1117
1118
1119 /**
1120 * Texture unit state. Contains enable flags, texture environment/function/
1121 * combiners, texgen state, and pointers to current texture objects.
1122 */
1123 struct gl_texture_unit
1124 {
1125 GLbitfield Enabled; /**< bitmask of TEXTURE_*_BIT flags */
1126
1127 GLenum EnvMode; /**< GL_MODULATE, GL_DECAL, GL_BLEND, etc. */
1128 GLclampf EnvColor[4];
1129 GLfloat EnvColorUnclamped[4];
1130
1131 struct gl_texgen GenS;
1132 struct gl_texgen GenT;
1133 struct gl_texgen GenR;
1134 struct gl_texgen GenQ;
1135 GLbitfield TexGenEnabled; /**< Bitwise-OR of [STRQ]_BIT values */
1136 GLbitfield _GenFlags; /**< Bitwise-OR of Gen[STRQ]._ModeBit */
1137
1138 GLfloat LodBias; /**< for biasing mipmap levels */
1139
1140 /** Texture targets that have a non-default texture bound */
1141 GLbitfield _BoundTextures;
1142
1143 /** Current sampler object (GL_ARB_sampler_objects) */
1144 struct gl_sampler_object *Sampler;
1145
1146 /**
1147 * \name GL_EXT_texture_env_combine
1148 */
1149 struct gl_tex_env_combine_state Combine;
1150
1151 /**
1152 * Derived state based on \c EnvMode and the \c BaseFormat of the
1153 * currently enabled texture.
1154 */
1155 struct gl_tex_env_combine_state _EnvMode;
1156
1157 /**
1158 * Currently enabled combiner state. This will point to either
1159 * \c Combine or \c _EnvMode.
1160 */
1161 struct gl_tex_env_combine_state *_CurrentCombine;
1162
1163 /** Current texture object pointers */
1164 struct gl_texture_object *CurrentTex[NUM_TEXTURE_TARGETS];
1165
1166 /** Points to highest priority, complete and enabled texture object */
1167 struct gl_texture_object *_Current;
1168
1169 };
1170
1171
1172 /**
1173 * Texture attribute group (GL_TEXTURE_BIT).
1174 */
1175 struct gl_texture_attrib
1176 {
1177 GLuint CurrentUnit; /**< GL_ACTIVE_TEXTURE */
1178
1179 /** GL_ARB_seamless_cubemap */
1180 GLboolean CubeMapSeamless;
1181
1182 struct gl_texture_object *ProxyTex[NUM_TEXTURE_TARGETS];
1183
1184 /** GL_ARB_texture_buffer_object */
1185 struct gl_buffer_object *BufferObject;
1186
1187 /** Texture coord units/sets used for fragment texturing */
1188 GLbitfield _EnabledCoordUnits;
1189
1190 /** Texture coord units that have texgen enabled */
1191 GLbitfield _TexGenEnabled;
1192
1193 /** Texture coord units that have non-identity matrices */
1194 GLbitfield _TexMatEnabled;
1195
1196 /** Bitwise-OR of all Texture.Unit[i]._GenFlags */
1197 GLbitfield _GenFlags;
1198
1199 /** Largest index of a texture unit with _Current != NULL. */
1200 GLint _MaxEnabledTexImageUnit;
1201
1202 /** Largest index + 1 of texture units that have had any CurrentTex set. */
1203 GLint NumCurrentTexUsed;
1204
1205 struct gl_texture_unit Unit[MAX_COMBINED_TEXTURE_IMAGE_UNITS];
1206 };
1207
1208
1209 /**
1210 * Data structure representing a single clip plane (e.g. one of the elements
1211 * of the ctx->Transform.EyeUserPlane or ctx->Transform._ClipUserPlane array).
1212 */
1213 typedef GLfloat gl_clip_plane[4];
1214
1215
1216 /**
1217 * Transformation attribute group (GL_TRANSFORM_BIT).
1218 */
1219 struct gl_transform_attrib
1220 {
1221 GLenum MatrixMode; /**< Matrix mode */
1222 gl_clip_plane EyeUserPlane[MAX_CLIP_PLANES]; /**< User clip planes */
1223 gl_clip_plane _ClipUserPlane[MAX_CLIP_PLANES]; /**< derived */
1224 GLbitfield ClipPlanesEnabled; /**< on/off bitmask */
1225 GLboolean Normalize; /**< Normalize all normals? */
1226 GLboolean RescaleNormals; /**< GL_EXT_rescale_normal */
1227 GLboolean RasterPositionUnclipped; /**< GL_IBM_rasterpos_clip */
1228 GLboolean DepthClamp; /**< GL_ARB_depth_clamp */
1229 /** GL_ARB_clip_control */
1230 GLenum ClipOrigin; /**< GL_LOWER_LEFT or GL_UPPER_LEFT */
1231 GLenum ClipDepthMode; /**< GL_NEGATIVE_ONE_TO_ONE or GL_ZERO_TO_ONE */
1232 };
1233
1234
1235 /**
1236 * Viewport attribute group (GL_VIEWPORT_BIT).
1237 */
1238 struct gl_viewport_attrib
1239 {
1240 GLfloat X, Y; /**< position */
1241 GLfloat Width, Height; /**< size */
1242 GLdouble Near, Far; /**< Depth buffer range */
1243 };
1244
1245
1246 typedef enum {
1247 MAP_USER,
1248 MAP_INTERNAL,
1249
1250 MAP_COUNT
1251 } gl_map_buffer_index;
1252
1253
1254 /**
1255 * Fields describing a mapped buffer range.
1256 */
1257 struct gl_buffer_mapping {
1258 GLbitfield AccessFlags; /**< Mask of GL_MAP_x_BIT flags */
1259 GLvoid *Pointer; /**< User-space address of mapping */
1260 GLintptr Offset; /**< Mapped offset */
1261 GLsizeiptr Length; /**< Mapped length */
1262 };
1263
1264
1265 /**
1266 * Usages we've seen for a buffer object.
1267 */
1268 typedef enum {
1269 USAGE_UNIFORM_BUFFER = 0x1,
1270 USAGE_TEXTURE_BUFFER = 0x2,
1271 USAGE_ATOMIC_COUNTER_BUFFER = 0x4,
1272 USAGE_SHADER_STORAGE_BUFFER = 0x8,
1273 USAGE_TRANSFORM_FEEDBACK_BUFFER = 0x10,
1274 USAGE_PIXEL_PACK_BUFFER = 0x20,
1275 USAGE_DISABLE_MINMAX_CACHE = 0x40,
1276 } gl_buffer_usage;
1277
1278
1279 /**
1280 * GL_ARB_vertex/pixel_buffer_object buffer object
1281 */
1282 struct gl_buffer_object
1283 {
1284 mtx_t Mutex;
1285 GLint RefCount;
1286 GLuint Name;
1287 GLchar *Label; /**< GL_KHR_debug */
1288 GLenum Usage; /**< GL_STREAM_DRAW_ARB, GL_STREAM_READ_ARB, etc. */
1289 GLbitfield StorageFlags; /**< GL_MAP_PERSISTENT_BIT, etc. */
1290 GLsizeiptrARB Size; /**< Size of buffer storage in bytes */
1291 GLubyte *Data; /**< Location of storage either in RAM or VRAM. */
1292 GLboolean DeletePending; /**< true if buffer object is removed from the hash */
1293 GLboolean Written; /**< Ever written to? (for debugging) */
1294 GLboolean Purgeable; /**< Is the buffer purgeable under memory pressure? */
1295 GLboolean Immutable; /**< GL_ARB_buffer_storage */
1296 gl_buffer_usage UsageHistory; /**< How has this buffer been used so far? */
1297
1298 /** Counters used for buffer usage warnings */
1299 GLuint NumSubDataCalls;
1300 GLuint NumMapBufferWriteCalls;
1301
1302 struct gl_buffer_mapping Mappings[MAP_COUNT];
1303
1304 /** Memoization of min/max index computations for static index buffers */
1305 struct hash_table *MinMaxCache;
1306 unsigned MinMaxCacheHitIndices;
1307 unsigned MinMaxCacheMissIndices;
1308 bool MinMaxCacheDirty;
1309 };
1310
1311
1312 /**
1313 * Client pixel packing/unpacking attributes
1314 */
1315 struct gl_pixelstore_attrib
1316 {
1317 GLint Alignment;
1318 GLint RowLength;
1319 GLint SkipPixels;
1320 GLint SkipRows;
1321 GLint ImageHeight;
1322 GLint SkipImages;
1323 GLboolean SwapBytes;
1324 GLboolean LsbFirst;
1325 GLboolean Invert; /**< GL_MESA_pack_invert */
1326 GLint CompressedBlockWidth; /**< GL_ARB_compressed_texture_pixel_storage */
1327 GLint CompressedBlockHeight;
1328 GLint CompressedBlockDepth;
1329 GLint CompressedBlockSize;
1330 struct gl_buffer_object *BufferObj; /**< GL_ARB_pixel_buffer_object */
1331 };
1332
1333
1334 /**
1335 * Vertex array information which is derived from gl_array_attributes
1336 * and gl_vertex_buffer_binding information. Used by the VBO module and
1337 * device drivers.
1338 */
1339 struct gl_vertex_array
1340 {
1341 GLint Size; /**< components per element (1,2,3,4) */
1342 GLenum Type; /**< datatype: GL_FLOAT, GL_INT, etc */
1343 GLenum Format; /**< default: GL_RGBA, but may be GL_BGRA */
1344 GLsizei StrideB; /**< actual stride in bytes */
1345 GLuint _ElementSize; /**< size of each element in bytes */
1346 const GLubyte *Ptr; /**< Points to array data */
1347 GLboolean Normalized; /**< GL_ARB_vertex_program */
1348 GLboolean Integer; /**< Integer-valued? */
1349 GLboolean Doubles; /**< double precision values are not converted to floats */
1350 GLuint InstanceDivisor; /**< GL_ARB_instanced_arrays */
1351
1352 struct gl_buffer_object *BufferObj;/**< GL_ARB_vertex_buffer_object */
1353 };
1354
1355
1356 /**
1357 * Attributes to describe a vertex array.
1358 *
1359 * Contains the size, type, format and normalization flag,
1360 * along with the index of a vertex buffer binding point.
1361 *
1362 * Note that the Stride field corresponds to VERTEX_ATTRIB_ARRAY_STRIDE
1363 * and is only present for backwards compatibility reasons.
1364 * Rendering always uses VERTEX_BINDING_STRIDE.
1365 * The gl*Pointer() functions will set VERTEX_ATTRIB_ARRAY_STRIDE
1366 * and VERTEX_BINDING_STRIDE to the same value, while
1367 * glBindVertexBuffer() will only set VERTEX_BINDING_STRIDE.
1368 */
1369 struct gl_array_attributes
1370 {
1371 GLint Size; /**< Components per element (1,2,3,4) */
1372 GLenum Type; /**< Datatype: GL_FLOAT, GL_INT, etc */
1373 GLenum Format; /**< Default: GL_RGBA, but may be GL_BGRA */
1374 GLsizei Stride; /**< Stride as specified with gl*Pointer() */
1375 const GLubyte *Ptr; /**< Points to client array data. Not used when a VBO is bound */
1376 GLintptr RelativeOffset; /**< Offset of the first element relative to the binding offset */
1377 GLboolean Enabled; /**< Whether the array is enabled */
1378 GLboolean Normalized; /**< Fixed-point values are normalized when converted to floats */
1379 GLboolean Integer; /**< Fixed-point values are not converted to floats */
1380 GLboolean Doubles; /**< double precision values are not converted to floats */
1381 GLuint _ElementSize; /**< Size of each element in bytes */
1382 GLuint BufferBindingIndex; /**< Vertex buffer binding */
1383 };
1384
1385
1386 /**
1387 * This describes the buffer object used for a vertex array (or
1388 * multiple vertex arrays). If BufferObj points to the default/null
1389 * buffer object, then the vertex array lives in user memory and not a VBO.
1390 */
1391 struct gl_vertex_buffer_binding
1392 {
1393 GLintptr Offset; /**< User-specified offset */
1394 GLsizei Stride; /**< User-specified stride */
1395 GLuint InstanceDivisor; /**< GL_ARB_instanced_arrays */
1396 struct gl_buffer_object *BufferObj; /**< GL_ARB_vertex_buffer_object */
1397 GLbitfield64 _BoundArrays; /**< Arrays bound to this binding point */
1398 };
1399
1400
1401 /**
1402 * A representation of "Vertex Array Objects" (VAOs) from OpenGL 3.1+,
1403 * GL_ARB_vertex_array_object, or the original GL_APPLE_vertex_array_object
1404 * extension.
1405 */
1406 struct gl_vertex_array_object
1407 {
1408 /** Name of the VAO as received from glGenVertexArray. */
1409 GLuint Name;
1410
1411 GLint RefCount;
1412
1413 GLchar *Label; /**< GL_KHR_debug */
1414
1415 mtx_t Mutex;
1416
1417 /**
1418 * Does the VAO use ARB semantics or Apple semantics?
1419 *
1420 * There are several ways in which ARB_vertex_array_object and
1421 * APPLE_vertex_array_object VAOs have differing semantics. At the very
1422 * least,
1423 *
1424 * - ARB VAOs require that all array data be sourced from vertex buffer
1425 * objects, but Apple VAOs do not.
1426 *
1427 * - ARB VAOs require that names come from GenVertexArrays.
1428 *
1429 * This flag notes which behavior governs this VAO.
1430 */
1431 GLboolean ARBsemantics;
1432
1433 /**
1434 * Has this array object been bound?
1435 */
1436 GLboolean EverBound;
1437
1438 /**
1439 * Derived vertex attribute arrays
1440 *
1441 * This is a legacy data structure created from gl_vertex_attrib_array and
1442 * gl_vertex_buffer_binding, for compatibility with existing driver code.
1443 */
1444 struct gl_vertex_array _VertexAttrib[VERT_ATTRIB_MAX];
1445
1446 /** Vertex attribute arrays */
1447 struct gl_array_attributes VertexAttrib[VERT_ATTRIB_MAX];
1448
1449 /** Vertex buffer bindings */
1450 struct gl_vertex_buffer_binding BufferBinding[VERT_ATTRIB_MAX];
1451
1452 /** Mask indicating which vertex arrays have vertex buffer associated. */
1453 GLbitfield64 VertexAttribBufferMask;
1454
1455 /** Mask of VERT_BIT_* values indicating which arrays are enabled */
1456 GLbitfield64 _Enabled;
1457
1458 /** Mask of VERT_BIT_* values indicating changed/dirty arrays */
1459 GLbitfield64 NewArrays;
1460
1461 /** The index buffer (also known as the element array buffer in OpenGL). */
1462 struct gl_buffer_object *IndexBufferObj;
1463 };
1464
1465
1466 /** Used to signal when transitioning from one kind of drawing method
1467 * to another.
1468 */
1469 typedef enum {
1470 DRAW_NONE, /**< Initial value only */
1471 DRAW_BEGIN_END,
1472 DRAW_DISPLAY_LIST,
1473 DRAW_ARRAYS
1474 } gl_draw_method;
1475
1476 /**
1477 * Enum for the OpenGL APIs we know about and may support.
1478 *
1479 * NOTE: This must match the api_enum table in
1480 * src/mesa/main/get_hash_generator.py
1481 */
1482 typedef enum
1483 {
1484 API_OPENGL_COMPAT, /* legacy / compatibility contexts */
1485 API_OPENGLES,
1486 API_OPENGLES2,
1487 API_OPENGL_CORE,
1488 API_OPENGL_LAST = API_OPENGL_CORE
1489 } gl_api;
1490
1491 /**
1492 * Vertex array state
1493 */
1494 struct gl_array_attrib
1495 {
1496 /** Currently bound array object. See _mesa_BindVertexArrayAPPLE() */
1497 struct gl_vertex_array_object *VAO;
1498
1499 /** The default vertex array object */
1500 struct gl_vertex_array_object *DefaultVAO;
1501
1502 /** The last VAO accessed by a DSA function */
1503 struct gl_vertex_array_object *LastLookedUpVAO;
1504
1505 /** Array objects (GL_ARB/APPLE_vertex_array_object) */
1506 struct _mesa_HashTable *Objects;
1507
1508 GLint ActiveTexture; /**< Client Active Texture */
1509 GLuint LockFirst; /**< GL_EXT_compiled_vertex_array */
1510 GLuint LockCount; /**< GL_EXT_compiled_vertex_array */
1511
1512 /**
1513 * \name Primitive restart controls
1514 *
1515 * Primitive restart is enabled if either \c PrimitiveRestart or
1516 * \c PrimitiveRestartFixedIndex is set.
1517 */
1518 /*@{*/
1519 GLboolean PrimitiveRestart;
1520 GLboolean PrimitiveRestartFixedIndex;
1521 GLboolean _PrimitiveRestart;
1522 GLuint RestartIndex;
1523 /*@}*/
1524
1525 /** One of the DRAW_xxx flags, not consumed by drivers */
1526 gl_draw_method DrawMethod;
1527
1528 /* GL_ARB_vertex_buffer_object */
1529 struct gl_buffer_object *ArrayBufferObj;
1530
1531 /**
1532 * Vertex arrays as consumed by a driver.
1533 * The array pointer is set up only by the VBO module.
1534 */
1535 const struct gl_vertex_array **_DrawArrays; /**< 0..VERT_ATTRIB_MAX-1 */
1536
1537 /** Legal array datatypes and the API for which they have been computed */
1538 GLbitfield LegalTypesMask;
1539 gl_api LegalTypesMaskAPI;
1540 };
1541
1542
1543 /**
1544 * Feedback buffer state
1545 */
1546 struct gl_feedback
1547 {
1548 GLenum Type;
1549 GLbitfield _Mask; /**< FB_* bits */
1550 GLfloat *Buffer;
1551 GLuint BufferSize;
1552 GLuint Count;
1553 };
1554
1555
1556 /**
1557 * Selection buffer state
1558 */
1559 struct gl_selection
1560 {
1561 GLuint *Buffer; /**< selection buffer */
1562 GLuint BufferSize; /**< size of the selection buffer */
1563 GLuint BufferCount; /**< number of values in the selection buffer */
1564 GLuint Hits; /**< number of records in the selection buffer */
1565 GLuint NameStackDepth; /**< name stack depth */
1566 GLuint NameStack[MAX_NAME_STACK_DEPTH]; /**< name stack */
1567 GLboolean HitFlag; /**< hit flag */
1568 GLfloat HitMinZ; /**< minimum hit depth */
1569 GLfloat HitMaxZ; /**< maximum hit depth */
1570 };
1571
1572
1573 /**
1574 * 1-D Evaluator control points
1575 */
1576 struct gl_1d_map
1577 {
1578 GLuint Order; /**< Number of control points */
1579 GLfloat u1, u2, du; /**< u1, u2, 1.0/(u2-u1) */
1580 GLfloat *Points; /**< Points to contiguous control points */
1581 };
1582
1583
1584 /**
1585 * 2-D Evaluator control points
1586 */
1587 struct gl_2d_map
1588 {
1589 GLuint Uorder; /**< Number of control points in U dimension */
1590 GLuint Vorder; /**< Number of control points in V dimension */
1591 GLfloat u1, u2, du;
1592 GLfloat v1, v2, dv;
1593 GLfloat *Points; /**< Points to contiguous control points */
1594 };
1595
1596
1597 /**
1598 * All evaluator control point state
1599 */
1600 struct gl_evaluators
1601 {
1602 /**
1603 * \name 1-D maps
1604 */
1605 /*@{*/
1606 struct gl_1d_map Map1Vertex3;
1607 struct gl_1d_map Map1Vertex4;
1608 struct gl_1d_map Map1Index;
1609 struct gl_1d_map Map1Color4;
1610 struct gl_1d_map Map1Normal;
1611 struct gl_1d_map Map1Texture1;
1612 struct gl_1d_map Map1Texture2;
1613 struct gl_1d_map Map1Texture3;
1614 struct gl_1d_map Map1Texture4;
1615 /*@}*/
1616
1617 /**
1618 * \name 2-D maps
1619 */
1620 /*@{*/
1621 struct gl_2d_map Map2Vertex3;
1622 struct gl_2d_map Map2Vertex4;
1623 struct gl_2d_map Map2Index;
1624 struct gl_2d_map Map2Color4;
1625 struct gl_2d_map Map2Normal;
1626 struct gl_2d_map Map2Texture1;
1627 struct gl_2d_map Map2Texture2;
1628 struct gl_2d_map Map2Texture3;
1629 struct gl_2d_map Map2Texture4;
1630 /*@}*/
1631 };
1632
1633
1634 struct gl_transform_feedback_varying_info
1635 {
1636 char *Name;
1637 GLenum Type;
1638 GLint BufferIndex;
1639 GLint Size;
1640 GLint Offset;
1641 };
1642
1643
1644 /**
1645 * Per-output info vertex shaders for transform feedback.
1646 */
1647 struct gl_transform_feedback_output
1648 {
1649 uint32_t OutputRegister;
1650 uint32_t OutputBuffer;
1651 uint32_t NumComponents;
1652 uint32_t StreamId;
1653
1654 /** offset (in DWORDs) of this output within the interleaved structure */
1655 uint32_t DstOffset;
1656
1657 /**
1658 * Offset into the output register of the data to output. For example,
1659 * if NumComponents is 2 and ComponentOffset is 1, then the data to
1660 * offset is in the y and z components of the output register.
1661 */
1662 uint32_t ComponentOffset;
1663 };
1664
1665
1666 struct gl_transform_feedback_buffer
1667 {
1668 uint32_t Binding;
1669
1670 uint32_t NumVaryings;
1671
1672 /**
1673 * Total number of components stored in each buffer. This may be used by
1674 * hardware back-ends to determine the correct stride when interleaving
1675 * multiple transform feedback outputs in the same buffer.
1676 */
1677 uint32_t Stride;
1678
1679 /**
1680 * Which transform feedback stream this buffer binding is associated with.
1681 */
1682 uint32_t Stream;
1683 };
1684
1685
1686 /** Post-link transform feedback info. */
1687 struct gl_transform_feedback_info
1688 {
1689 unsigned NumOutputs;
1690
1691 /* Bitmask of active buffer indices. */
1692 unsigned ActiveBuffers;
1693
1694 struct gl_transform_feedback_output *Outputs;
1695
1696 /** Transform feedback varyings used for the linking of this shader program.
1697 *
1698 * Use for glGetTransformFeedbackVarying().
1699 */
1700 struct gl_transform_feedback_varying_info *Varyings;
1701 GLint NumVarying;
1702
1703 struct gl_transform_feedback_buffer Buffers[MAX_FEEDBACK_BUFFERS];
1704 };
1705
1706
1707 /**
1708 * Transform feedback object state
1709 */
1710 struct gl_transform_feedback_object
1711 {
1712 GLuint Name; /**< AKA the object ID */
1713 GLint RefCount;
1714 GLchar *Label; /**< GL_KHR_debug */
1715 GLboolean Active; /**< Is transform feedback enabled? */
1716 GLboolean Paused; /**< Is transform feedback paused? */
1717 GLboolean EndedAnytime; /**< Has EndTransformFeedback been called
1718 at least once? */
1719 GLboolean EverBound; /**< Has this object been bound? */
1720
1721 /**
1722 * GLES: if Active is true, remaining number of primitives which can be
1723 * rendered without overflow. This is necessary to track because GLES
1724 * requires us to generate INVALID_OPERATION if a call to glDrawArrays or
1725 * glDrawArraysInstanced would overflow transform feedback buffers.
1726 * Undefined if Active is false.
1727 *
1728 * Not tracked for desktop GL since it's unnecessary.
1729 */
1730 unsigned GlesRemainingPrims;
1731
1732 /**
1733 * The shader program active when BeginTransformFeedback() was called.
1734 * When active and unpaused, this equals ctx->Shader.CurrentProgram[stage],
1735 * where stage is the pipeline stage that is the source of data for
1736 * transform feedback.
1737 */
1738 struct gl_shader_program *shader_program;
1739
1740 /** The feedback buffers */
1741 GLuint BufferNames[MAX_FEEDBACK_BUFFERS];
1742 struct gl_buffer_object *Buffers[MAX_FEEDBACK_BUFFERS];
1743
1744 /** Start of feedback data in dest buffer */
1745 GLintptr Offset[MAX_FEEDBACK_BUFFERS];
1746
1747 /**
1748 * Max data to put into dest buffer (in bytes). Computed based on
1749 * RequestedSize and the actual size of the buffer.
1750 */
1751 GLsizeiptr Size[MAX_FEEDBACK_BUFFERS];
1752
1753 /**
1754 * Size that was specified when the buffer was bound. If the buffer was
1755 * bound with glBindBufferBase() or glBindBufferOffsetEXT(), this value is
1756 * zero.
1757 */
1758 GLsizeiptr RequestedSize[MAX_FEEDBACK_BUFFERS];
1759 };
1760
1761
1762 /**
1763 * Context state for transform feedback.
1764 */
1765 struct gl_transform_feedback_state
1766 {
1767 GLenum Mode; /**< GL_POINTS, GL_LINES or GL_TRIANGLES */
1768
1769 /** The general binding point (GL_TRANSFORM_FEEDBACK_BUFFER) */
1770 struct gl_buffer_object *CurrentBuffer;
1771
1772 /** The table of all transform feedback objects */
1773 struct _mesa_HashTable *Objects;
1774
1775 /** The current xform-fb object (GL_TRANSFORM_FEEDBACK_BINDING) */
1776 struct gl_transform_feedback_object *CurrentObject;
1777
1778 /** The default xform-fb object (Name==0) */
1779 struct gl_transform_feedback_object *DefaultObject;
1780 };
1781
1782
1783 /**
1784 * A "performance monitor" as described in AMD_performance_monitor.
1785 */
1786 struct gl_perf_monitor_object
1787 {
1788 GLuint Name;
1789
1790 /** True if the monitor is currently active (Begin called but not End). */
1791 GLboolean Active;
1792
1793 /**
1794 * True if the monitor has ended.
1795 *
1796 * This is distinct from !Active because it may never have began.
1797 */
1798 GLboolean Ended;
1799
1800 /**
1801 * A list of groups with currently active counters.
1802 *
1803 * ActiveGroups[g] == n if there are n counters active from group 'g'.
1804 */
1805 unsigned *ActiveGroups;
1806
1807 /**
1808 * An array of bitsets, subscripted by group ID, then indexed by counter ID.
1809 *
1810 * Checking whether counter 'c' in group 'g' is active can be done via:
1811 *
1812 * BITSET_TEST(ActiveCounters[g], c)
1813 */
1814 GLuint **ActiveCounters;
1815 };
1816
1817
1818 union gl_perf_monitor_counter_value
1819 {
1820 float f;
1821 uint64_t u64;
1822 uint32_t u32;
1823 };
1824
1825
1826 struct gl_perf_monitor_counter
1827 {
1828 /** Human readable name for the counter. */
1829 const char *Name;
1830
1831 /**
1832 * Data type of the counter. Valid values are FLOAT, UNSIGNED_INT,
1833 * UNSIGNED_INT64_AMD, and PERCENTAGE_AMD.
1834 */
1835 GLenum Type;
1836
1837 /** Minimum counter value. */
1838 union gl_perf_monitor_counter_value Minimum;
1839
1840 /** Maximum counter value. */
1841 union gl_perf_monitor_counter_value Maximum;
1842 };
1843
1844
1845 struct gl_perf_monitor_group
1846 {
1847 /** Human readable name for the group. */
1848 const char *Name;
1849
1850 /**
1851 * Maximum number of counters in this group which can be active at the
1852 * same time.
1853 */
1854 GLuint MaxActiveCounters;
1855
1856 /** Array of counters within this group. */
1857 const struct gl_perf_monitor_counter *Counters;
1858 GLuint NumCounters;
1859 };
1860
1861
1862 /**
1863 * Context state for AMD_performance_monitor.
1864 */
1865 struct gl_perf_monitor_state
1866 {
1867 /** Array of performance monitor groups (indexed by group ID) */
1868 const struct gl_perf_monitor_group *Groups;
1869 GLuint NumGroups;
1870
1871 /** The table of all performance monitors. */
1872 struct _mesa_HashTable *Monitors;
1873 };
1874
1875
1876 /**
1877 * Names of the various vertex/fragment program register files, etc.
1878 *
1879 * NOTE: first four tokens must fit into 2 bits (see t_vb_arbprogram.c)
1880 * All values should fit in a 4-bit field.
1881 *
1882 * NOTE: PROGRAM_STATE_VAR, PROGRAM_CONSTANT, and PROGRAM_UNIFORM can all be
1883 * considered to be "uniform" variables since they can only be set outside
1884 * glBegin/End. They're also all stored in the same Parameters array.
1885 */
1886 typedef enum
1887 {
1888 PROGRAM_TEMPORARY, /**< machine->Temporary[] */
1889 PROGRAM_ARRAY, /**< Arrays & Matrixes */
1890 PROGRAM_INPUT, /**< machine->Inputs[] */
1891 PROGRAM_OUTPUT, /**< machine->Outputs[] */
1892 PROGRAM_STATE_VAR, /**< gl_program->Parameters[] */
1893 PROGRAM_CONSTANT, /**< gl_program->Parameters[] */
1894 PROGRAM_UNIFORM, /**< gl_program->Parameters[] */
1895 PROGRAM_WRITE_ONLY, /**< A dummy, write-only register */
1896 PROGRAM_ADDRESS, /**< machine->AddressReg */
1897 PROGRAM_SAMPLER, /**< for shader samplers, compile-time only */
1898 PROGRAM_SYSTEM_VALUE,/**< InstanceId, PrimitiveID, etc. */
1899 PROGRAM_UNDEFINED, /**< Invalid/TBD value */
1900 PROGRAM_IMMEDIATE, /**< Immediate value, used by TGSI */
1901 PROGRAM_BUFFER, /**< for shader buffers, compile-time only */
1902 PROGRAM_MEMORY, /**< for shared, global and local memory */
1903 PROGRAM_IMAGE, /**< for shader images, compile-time only */
1904 PROGRAM_FILE_MAX
1905 } gl_register_file;
1906
1907
1908 /**
1909 * Base class for any kind of program object
1910 */
1911 struct gl_program
1912 {
1913 /** FIXME: This must be first until we split shader_info from nir_shader */
1914 struct shader_info info;
1915
1916 mtx_t Mutex;
1917 GLuint Id;
1918 GLint RefCount;
1919 GLubyte *String; /**< Null-terminated program text */
1920
1921 GLenum Target; /**< GL_VERTEX/FRAGMENT_PROGRAM_ARB, GL_GEOMETRY_PROGRAM_NV */
1922 GLenum Format; /**< String encoding format */
1923
1924 struct nir_shader *nir;
1925
1926 GLbitfield64 SecondaryOutputsWritten; /**< Subset of OutputsWritten outputs written with non-zero index. */
1927 GLbitfield TexturesUsed[MAX_COMBINED_TEXTURE_IMAGE_UNITS]; /**< TEXTURE_x_BIT bitmask */
1928 GLbitfield SamplersUsed; /**< Bitfield of which samplers are used */
1929 GLbitfield ShadowSamplers; /**< Texture units used for shadow sampling. */
1930 GLbitfield ExternalSamplersUsed; /**< Texture units used for samplerExternalOES */
1931
1932 /* Vertex and geometry shaders fields */
1933 unsigned ClipDistanceArraySize;
1934 unsigned CullDistanceArraySize;
1935
1936 /* Fragement shader only fields */
1937 GLboolean OriginUpperLeft;
1938 GLboolean PixelCenterInteger;
1939
1940 /** Named parameters, constants, etc. from program text */
1941 struct gl_program_parameter_list *Parameters;
1942
1943 /** Map from sampler unit to texture unit (set by glUniform1i()) */
1944 GLubyte SamplerUnits[MAX_SAMPLERS];
1945
1946 union {
1947 /** Fields used by GLSL programs */
1948 struct {
1949 struct gl_active_atomic_buffer **AtomicBuffers;
1950
1951 /**
1952 * Number of types for subroutine uniforms.
1953 */
1954 GLuint NumSubroutineUniformTypes;
1955
1956 /**
1957 * Subroutine uniform remap table
1958 * based on the program level uniform remap table.
1959 */
1960 GLuint NumSubroutineUniforms; /* non-sparse total */
1961 GLuint NumSubroutineUniformRemapTable;
1962 struct gl_uniform_storage **SubroutineUniformRemapTable;
1963
1964 /**
1965 * Num of subroutine functions for this stage and storage for them.
1966 */
1967 GLuint NumSubroutineFunctions;
1968 GLuint MaxSubroutineFunctionIndex;
1969 struct gl_subroutine_function *SubroutineFunctions;
1970 } sh;
1971
1972 /** ARB assembly-style program fields */
1973 struct {
1974 struct prog_instruction *Instructions;
1975
1976 /**
1977 * Local parameters used by the program.
1978 *
1979 * It's dynamically allocated because it is rarely used (just
1980 * assembly-style programs), and MAX_PROGRAM_LOCAL_PARAMS entries
1981 * once it's allocated.
1982 */
1983 GLfloat (*LocalParams)[4];
1984
1985 /** Bitmask of which register files are read/written with indirect
1986 * addressing. Mask of (1 << PROGRAM_x) bits.
1987 */
1988 GLbitfield IndirectRegisterFiles;
1989
1990 /** Logical counts */
1991 /*@{*/
1992 GLuint NumInstructions;
1993 GLuint NumTemporaries;
1994 GLuint NumParameters;
1995 GLuint NumAttributes;
1996 GLuint NumAddressRegs;
1997 GLuint NumAluInstructions;
1998 GLuint NumTexInstructions;
1999 GLuint NumTexIndirections;
2000 /*@}*/
2001 /** Native, actual h/w counts */
2002 /*@{*/
2003 GLuint NumNativeInstructions;
2004 GLuint NumNativeTemporaries;
2005 GLuint NumNativeParameters;
2006 GLuint NumNativeAttributes;
2007 GLuint NumNativeAddressRegs;
2008 GLuint NumNativeAluInstructions;
2009 GLuint NumNativeTexInstructions;
2010 GLuint NumNativeTexIndirections;
2011 /*@}*/
2012
2013 /** Used by ARB assembly-style programs. Can only be true for vertex
2014 * programs.
2015 */
2016 GLboolean IsPositionInvariant;
2017 } arb;
2018 };
2019 };
2020
2021
2022 /**
2023 * State common to vertex and fragment programs.
2024 */
2025 struct gl_program_state
2026 {
2027 GLint ErrorPos; /* GL_PROGRAM_ERROR_POSITION_ARB/NV */
2028 const char *ErrorString; /* GL_PROGRAM_ERROR_STRING_ARB/NV */
2029 };
2030
2031
2032 /**
2033 * Context state for vertex programs.
2034 */
2035 struct gl_vertex_program_state
2036 {
2037 GLboolean Enabled; /**< User-set GL_VERTEX_PROGRAM_ARB/NV flag */
2038 GLboolean _Enabled; /**< Enabled and _valid_ user program? */
2039 GLboolean PointSizeEnabled; /**< GL_VERTEX_PROGRAM_POINT_SIZE_ARB/NV */
2040 GLboolean TwoSideEnabled; /**< GL_VERTEX_PROGRAM_TWO_SIDE_ARB/NV */
2041 /** Computed two sided lighting for fixed function/programs. */
2042 GLboolean _TwoSideEnabled;
2043 struct gl_program *Current; /**< User-bound vertex program */
2044
2045 /** Currently enabled and valid vertex program (including internal
2046 * programs, user-defined vertex programs and GLSL vertex shaders).
2047 * This is the program we must use when rendering.
2048 */
2049 struct gl_program *_Current;
2050
2051 GLfloat Parameters[MAX_PROGRAM_ENV_PARAMS][4]; /**< Env params */
2052
2053 /** Should fixed-function T&L be implemented with a vertex prog? */
2054 GLboolean _MaintainTnlProgram;
2055
2056 /** Program to emulate fixed-function T&L (see above) */
2057 struct gl_program *_TnlProgram;
2058
2059 /** Cache of fixed-function programs */
2060 struct gl_program_cache *Cache;
2061
2062 GLboolean _Overriden;
2063 };
2064
2065 /**
2066 * Context state for tessellation control programs.
2067 */
2068 struct gl_tess_ctrl_program_state
2069 {
2070 /** Currently bound and valid shader. */
2071 struct gl_program *_Current;
2072
2073 GLint patch_vertices;
2074 GLfloat patch_default_outer_level[4];
2075 GLfloat patch_default_inner_level[2];
2076 };
2077
2078 /**
2079 * Context state for tessellation evaluation programs.
2080 */
2081 struct gl_tess_eval_program_state
2082 {
2083 /** Currently bound and valid shader. */
2084 struct gl_program *_Current;
2085 };
2086
2087 /**
2088 * Context state for geometry programs.
2089 */
2090 struct gl_geometry_program_state
2091 {
2092 /** Currently enabled and valid program (including internal programs
2093 * and compiled shader programs).
2094 */
2095 struct gl_program *_Current;
2096 };
2097
2098 /**
2099 * Context state for fragment programs.
2100 */
2101 struct gl_fragment_program_state
2102 {
2103 GLboolean Enabled; /**< User-set fragment program enable flag */
2104 GLboolean _Enabled; /**< Enabled and _valid_ user program? */
2105 struct gl_program *Current; /**< User-bound fragment program */
2106
2107 /** Currently enabled and valid fragment program (including internal
2108 * programs, user-defined fragment programs and GLSL fragment shaders).
2109 * This is the program we must use when rendering.
2110 */
2111 struct gl_program *_Current;
2112
2113 GLfloat Parameters[MAX_PROGRAM_ENV_PARAMS][4]; /**< Env params */
2114
2115 /** Should fixed-function texturing be implemented with a fragment prog? */
2116 GLboolean _MaintainTexEnvProgram;
2117
2118 /** Program to emulate fixed-function texture env/combine (see above) */
2119 struct gl_program *_TexEnvProgram;
2120
2121 /** Cache of fixed-function programs */
2122 struct gl_program_cache *Cache;
2123 };
2124
2125
2126 /**
2127 * Context state for compute programs.
2128 */
2129 struct gl_compute_program_state
2130 {
2131 /** Currently enabled and valid program (including internal programs
2132 * and compiled shader programs).
2133 */
2134 struct gl_program *_Current;
2135 };
2136
2137
2138 /**
2139 * ATI_fragment_shader runtime state
2140 */
2141
2142 struct atifs_instruction;
2143 struct atifs_setupinst;
2144
2145 /**
2146 * ATI fragment shader
2147 */
2148 struct ati_fragment_shader
2149 {
2150 GLuint Id;
2151 GLint RefCount;
2152 struct atifs_instruction *Instructions[2];
2153 struct atifs_setupinst *SetupInst[2];
2154 GLfloat Constants[8][4];
2155 GLbitfield LocalConstDef; /**< Indicates which constants have been set */
2156 GLubyte numArithInstr[2];
2157 GLubyte regsAssigned[2];
2158 GLubyte NumPasses; /**< 1 or 2 */
2159 GLubyte cur_pass;
2160 GLubyte last_optype;
2161 GLboolean interpinp1;
2162 GLboolean isValid;
2163 GLuint swizzlerq;
2164 struct gl_program *Program;
2165 };
2166
2167 /**
2168 * Context state for GL_ATI_fragment_shader
2169 */
2170 struct gl_ati_fragment_shader_state
2171 {
2172 GLboolean Enabled;
2173 GLboolean _Enabled; /**< enabled and valid shader? */
2174 GLboolean Compiling;
2175 GLfloat GlobalConstants[8][4];
2176 struct ati_fragment_shader *Current;
2177 };
2178
2179 /**
2180 * Shader subroutine function definition
2181 */
2182 struct gl_subroutine_function
2183 {
2184 char *name;
2185 int index;
2186 int num_compat_types;
2187 const struct glsl_type **types;
2188 };
2189
2190 /**
2191 * Shader information needed by both gl_shader and gl_linked shader.
2192 */
2193 struct gl_shader_info
2194 {
2195 bool uses_gl_fragcoord;
2196 bool redeclares_gl_fragcoord;
2197 bool PostDepthCoverage;
2198 bool InnerCoverage;
2199 bool ARB_fragment_coord_conventions_enable;
2200
2201 /**
2202 * Fragment shader state from GLSL 1.50 layout qualifiers.
2203 */
2204 bool origin_upper_left;
2205 bool pixel_center_integer;
2206
2207 struct {
2208 /** Global xfb_stride out qualifier if any */
2209 GLuint BufferStride[MAX_FEEDBACK_BUFFERS];
2210 } TransformFeedback;
2211
2212 /**
2213 * Tessellation Control shader state from layout qualifiers.
2214 */
2215 struct {
2216 /**
2217 * 0 - vertices not declared in shader, or
2218 * 1 .. GL_MAX_PATCH_VERTICES
2219 */
2220 GLint VerticesOut;
2221 } TessCtrl;
2222
2223 /**
2224 * Tessellation Evaluation shader state from layout qualifiers.
2225 */
2226 struct {
2227 /**
2228 * GL_TRIANGLES, GL_QUADS, GL_ISOLINES or PRIM_UNKNOWN if it's not set
2229 * in this shader.
2230 */
2231 GLenum PrimitiveMode;
2232 /**
2233 * GL_EQUAL, GL_FRACTIONAL_ODD, GL_FRACTIONAL_EVEN, or 0 if it's not set
2234 * in this shader.
2235 */
2236 GLenum Spacing;
2237 /**
2238 * GL_CW, GL_CCW, or 0 if it's not set in this shader.
2239 */
2240 GLenum VertexOrder;
2241 /**
2242 * 1, 0, or -1 if it's not set in this shader.
2243 */
2244 int PointMode;
2245 } TessEval;
2246
2247 /**
2248 * Geometry shader state from GLSL 1.50 layout qualifiers.
2249 */
2250 struct {
2251 GLint VerticesOut;
2252 /**
2253 * 0 - Invocations count not declared in shader, or
2254 * 1 .. MAX_GEOMETRY_SHADER_INVOCATIONS
2255 */
2256 GLint Invocations;
2257 /**
2258 * GL_POINTS, GL_LINES, GL_LINES_ADJACENCY, GL_TRIANGLES, or
2259 * GL_TRIANGLES_ADJACENCY, or PRIM_UNKNOWN if it's not set in this
2260 * shader.
2261 */
2262 GLenum InputType;
2263 /**
2264 * GL_POINTS, GL_LINE_STRIP or GL_TRIANGLE_STRIP, or PRIM_UNKNOWN if
2265 * it's not set in this shader.
2266 */
2267 GLenum OutputType;
2268 } Geom;
2269
2270 /**
2271 * Whether early fragment tests are enabled as defined by
2272 * ARB_shader_image_load_store.
2273 */
2274 bool EarlyFragmentTests;
2275
2276 /**
2277 * A bitmask of gl_advanced_blend_mode values
2278 */
2279 GLbitfield BlendSupport;
2280
2281 /**
2282 * Compute shader state from ARB_compute_shader and
2283 * ARB_compute_variable_group_size layout qualifiers.
2284 */
2285 struct {
2286 /**
2287 * Size specified using local_size_{x,y,z}, or all 0's to indicate that
2288 * it's not set in this shader.
2289 */
2290 unsigned LocalSize[3];
2291
2292 /**
2293 * Whether a variable work group size has been specified as defined by
2294 * ARB_compute_variable_group_size.
2295 */
2296 bool LocalSizeVariable;
2297 } Comp;
2298 };
2299
2300 /**
2301 * A linked GLSL shader object.
2302 */
2303 struct gl_linked_shader
2304 {
2305 gl_shader_stage Stage;
2306
2307 #ifdef DEBUG
2308 unsigned SourceChecksum;
2309 #endif
2310
2311 struct gl_program *Program; /**< Post-compile assembly code */
2312
2313 /**
2314 * \name Sampler tracking
2315 *
2316 * \note Each of these fields is only set post-linking.
2317 */
2318 /*@{*/
2319 unsigned num_samplers; /**< Number of samplers used by this shader. */
2320 GLbitfield active_samplers; /**< Bitfield of which samplers are used */
2321 GLbitfield shadow_samplers; /**< Samplers used for shadow sampling. */
2322 /*@}*/
2323
2324 /**
2325 * Map from sampler unit to texture unit (set by glUniform1i())
2326 *
2327 * A sampler unit is associated with each sampler uniform by the linker.
2328 * The sampler unit associated with each uniform is stored in the
2329 * \c gl_uniform_storage::sampler field.
2330 */
2331 GLubyte SamplerUnits[MAX_SAMPLERS];
2332 /** Which texture target is being sampled (TEXTURE_1D/2D/3D/etc_INDEX) */
2333 gl_texture_index SamplerTargets[MAX_SAMPLERS];
2334
2335 /**
2336 * Number of default uniform block components used by this shader.
2337 *
2338 * This field is only set post-linking.
2339 */
2340 unsigned num_uniform_components;
2341
2342 /**
2343 * Number of combined uniform components used by this shader.
2344 *
2345 * This field is only set post-linking. It is the sum of the uniform block
2346 * sizes divided by sizeof(float), and num_uniform_compoennts.
2347 */
2348 unsigned num_combined_uniform_components;
2349
2350 unsigned NumUniformBlocks;
2351 struct gl_uniform_block **UniformBlocks;
2352
2353 unsigned NumShaderStorageBlocks;
2354 struct gl_uniform_block **ShaderStorageBlocks;
2355
2356 struct exec_list *ir;
2357 struct exec_list *packed_varyings;
2358 struct exec_list *fragdata_arrays;
2359 struct glsl_symbol_table *symbols;
2360
2361 /**
2362 * Map from image uniform index to image unit (set by glUniform1i())
2363 *
2364 * An image uniform index is associated with each image uniform by
2365 * the linker. The image index associated with each uniform is
2366 * stored in the \c gl_uniform_storage::image field.
2367 */
2368 GLubyte ImageUnits[MAX_IMAGE_UNIFORMS];
2369
2370 /**
2371 * Access qualifier specified in the shader for each image uniform
2372 * index. Either \c GL_READ_ONLY, \c GL_WRITE_ONLY or \c
2373 * GL_READ_WRITE.
2374 *
2375 * It may be different, though only more strict than the value of
2376 * \c gl_image_unit::Access for the corresponding image unit.
2377 */
2378 GLenum ImageAccess[MAX_IMAGE_UNIFORMS];
2379
2380 /**
2381 * Number of image uniforms defined in the shader. It specifies
2382 * the number of valid elements in the \c ImageUnits and \c
2383 * ImageAccess arrays above.
2384 */
2385 GLuint NumImages;
2386
2387 struct gl_shader_info info;
2388 };
2389
2390 static inline GLbitfield gl_external_samplers(struct gl_linked_shader *shader)
2391 {
2392 GLbitfield external_samplers = 0;
2393 GLbitfield mask = shader->active_samplers;
2394
2395 while (mask) {
2396 int idx = u_bit_scan(&mask);
2397 if (shader->SamplerTargets[idx] == TEXTURE_EXTERNAL_INDEX)
2398 external_samplers |= (1 << idx);
2399 }
2400
2401 return external_samplers;
2402 }
2403
2404 /**
2405 * A GLSL shader object.
2406 */
2407 struct gl_shader
2408 {
2409 /** GL_FRAGMENT_SHADER || GL_VERTEX_SHADER || GL_GEOMETRY_SHADER_ARB ||
2410 * GL_TESS_CONTROL_SHADER || GL_TESS_EVALUATION_SHADER.
2411 * Must be the first field.
2412 */
2413 GLenum Type;
2414 gl_shader_stage Stage;
2415 GLuint Name; /**< AKA the handle */
2416 GLint RefCount; /**< Reference count */
2417 GLchar *Label; /**< GL_KHR_debug */
2418 GLboolean DeletePending;
2419 GLboolean CompileStatus;
2420 bool IsES; /**< True if this shader uses GLSL ES */
2421
2422 #ifdef DEBUG
2423 unsigned SourceChecksum; /**< for debug/logging purposes */
2424 #endif
2425 const GLchar *Source; /**< Source code string */
2426
2427 GLchar *InfoLog;
2428
2429 unsigned Version; /**< GLSL version used for linking */
2430
2431 struct exec_list *ir;
2432 struct glsl_symbol_table *symbols;
2433
2434 struct gl_shader_info info;
2435 };
2436
2437
2438 struct gl_uniform_buffer_variable
2439 {
2440 char *Name;
2441
2442 /**
2443 * Name of the uniform as seen by glGetUniformIndices.
2444 *
2445 * glGetUniformIndices requires that the block instance index \b not be
2446 * present in the name of queried uniforms.
2447 *
2448 * \note
2449 * \c gl_uniform_buffer_variable::IndexName and
2450 * \c gl_uniform_buffer_variable::Name may point to identical storage.
2451 */
2452 char *IndexName;
2453
2454 const struct glsl_type *Type;
2455 unsigned int Offset;
2456 GLboolean RowMajor;
2457 };
2458
2459
2460 enum gl_uniform_block_packing
2461 {
2462 ubo_packing_std140,
2463 ubo_packing_shared,
2464 ubo_packing_packed,
2465 ubo_packing_std430
2466 };
2467
2468
2469 struct gl_uniform_block
2470 {
2471 /** Declared name of the uniform block */
2472 char *Name;
2473
2474 /** Array of supplemental information about UBO ir_variables. */
2475 struct gl_uniform_buffer_variable *Uniforms;
2476 GLuint NumUniforms;
2477
2478 /**
2479 * Index (GL_UNIFORM_BLOCK_BINDING) into ctx->UniformBufferBindings[] to use
2480 * with glBindBufferBase to bind a buffer object to this uniform block. When
2481 * updated in the program, _NEW_BUFFER_OBJECT will be set.
2482 */
2483 GLuint Binding;
2484
2485 /**
2486 * Minimum size (in bytes) of a buffer object to back this uniform buffer
2487 * (GL_UNIFORM_BLOCK_DATA_SIZE).
2488 */
2489 GLuint UniformBufferSize;
2490
2491 /** Stages that reference this block */
2492 uint8_t stageref;
2493
2494 /**
2495 * Linearized array index for uniform block instance arrays
2496 *
2497 * Given a uniform block instance array declared with size
2498 * blk[s_0][s_1]..[s_m], the block referenced by blk[i_0][i_1]..[i_m] will
2499 * have the linearized array index
2500 *
2501 * m-1 m
2502 * i_m + ∑ i_j * ∏ s_k
2503 * j=0 k=j+1
2504 *
2505 * For a uniform block instance that is not an array, this is always 0.
2506 */
2507 uint8_t linearized_array_index;
2508
2509 /**
2510 * Layout specified in the shader
2511 *
2512 * This isn't accessible through the API, but it is used while
2513 * cross-validating uniform blocks.
2514 */
2515 enum gl_uniform_block_packing _Packing;
2516 GLboolean _RowMajor;
2517 };
2518
2519 /**
2520 * Structure that represents a reference to an atomic buffer from some
2521 * shader program.
2522 */
2523 struct gl_active_atomic_buffer
2524 {
2525 /** Uniform indices of the atomic counters declared within it. */
2526 GLuint *Uniforms;
2527 GLuint NumUniforms;
2528
2529 /** Binding point index associated with it. */
2530 GLuint Binding;
2531
2532 /** Minimum reasonable size it is expected to have. */
2533 GLuint MinimumSize;
2534
2535 /** Shader stages making use of it. */
2536 GLboolean StageReferences[MESA_SHADER_STAGES];
2537 };
2538
2539 /**
2540 * Data container for shader queries. This holds only the minimal
2541 * amount of required information for resource queries to work.
2542 */
2543 struct gl_shader_variable
2544 {
2545 /**
2546 * Declared type of the variable
2547 */
2548 const struct glsl_type *type;
2549
2550 /**
2551 * If the variable is in an interface block, this is the type of the block.
2552 */
2553 const struct glsl_type *interface_type;
2554
2555 /**
2556 * For variables inside structs (possibly recursively), this is the
2557 * outermost struct type.
2558 */
2559 const struct glsl_type *outermost_struct_type;
2560
2561 /**
2562 * Declared name of the variable
2563 */
2564 char *name;
2565
2566 /**
2567 * Storage location of the base of this variable
2568 *
2569 * The precise meaning of this field depends on the nature of the variable.
2570 *
2571 * - Vertex shader input: one of the values from \c gl_vert_attrib.
2572 * - Vertex shader output: one of the values from \c gl_varying_slot.
2573 * - Geometry shader input: one of the values from \c gl_varying_slot.
2574 * - Geometry shader output: one of the values from \c gl_varying_slot.
2575 * - Fragment shader input: one of the values from \c gl_varying_slot.
2576 * - Fragment shader output: one of the values from \c gl_frag_result.
2577 * - Uniforms: Per-stage uniform slot number for default uniform block.
2578 * - Uniforms: Index within the uniform block definition for UBO members.
2579 * - Non-UBO Uniforms: explicit location until linking then reused to
2580 * store uniform slot number.
2581 * - Other: This field is not currently used.
2582 *
2583 * If the variable is a uniform, shader input, or shader output, and the
2584 * slot has not been assigned, the value will be -1.
2585 */
2586 int location;
2587
2588 /**
2589 * Specifies the first component the variable is stored in as per
2590 * ARB_enhanced_layouts.
2591 */
2592 unsigned component:2;
2593
2594 /**
2595 * Output index for dual source blending.
2596 *
2597 * \note
2598 * The GLSL spec only allows the values 0 or 1 for the index in \b dual
2599 * source blending.
2600 */
2601 unsigned index:1;
2602
2603 /**
2604 * Specifies whether a shader input/output is per-patch in tessellation
2605 * shader stages.
2606 */
2607 unsigned patch:1;
2608
2609 /**
2610 * Storage class of the variable.
2611 *
2612 * \sa (n)ir_variable_mode
2613 */
2614 unsigned mode:4;
2615
2616 /**
2617 * Interpolation mode for shader inputs / outputs
2618 *
2619 * \sa glsl_interp_mode
2620 */
2621 unsigned interpolation:2;
2622
2623 /**
2624 * Was the location explicitly set in the shader?
2625 *
2626 * If the location is explicitly set in the shader, it \b cannot be changed
2627 * by the linker or by the API (e.g., calls to \c glBindAttribLocation have
2628 * no effect).
2629 */
2630 unsigned explicit_location:1;
2631
2632 /**
2633 * Precision qualifier.
2634 */
2635 unsigned precision:2;
2636 };
2637
2638 /**
2639 * Active resource in a gl_shader_program
2640 */
2641 struct gl_program_resource
2642 {
2643 GLenum Type; /** Program interface type. */
2644 const void *Data; /** Pointer to resource associated data structure. */
2645 uint8_t StageReferences; /** Bitmask of shader stage references. */
2646 };
2647
2648 /**
2649 * A data structure to be shared by gl_shader_program and gl_program.
2650 */
2651 struct gl_shader_program_data
2652 {
2653 GLint RefCount; /**< Reference count */
2654
2655 unsigned NumUniformStorage;
2656 unsigned NumHiddenUniforms;
2657 struct gl_uniform_storage *UniformStorage;
2658
2659 unsigned NumUniformBlocks;
2660 struct gl_uniform_block *UniformBlocks;
2661
2662 unsigned NumShaderStorageBlocks;
2663 struct gl_uniform_block *ShaderStorageBlocks;
2664
2665 struct gl_active_atomic_buffer *AtomicBuffers;
2666 unsigned NumAtomicBuffers;
2667
2668 GLboolean LinkStatus; /**< GL_LINK_STATUS */
2669 GLboolean Validated;
2670 GLchar *InfoLog;
2671
2672 unsigned Version; /**< GLSL version used for linking */
2673
2674 /* Mask of stages this program was linked against */
2675 unsigned linked_stages;
2676 };
2677
2678 /**
2679 * A GLSL program object.
2680 * Basically a linked collection of vertex and fragment shaders.
2681 */
2682 struct gl_shader_program
2683 {
2684 GLenum Type; /**< Always GL_SHADER_PROGRAM (internal token) */
2685 GLuint Name; /**< aka handle or ID */
2686 GLchar *Label; /**< GL_KHR_debug */
2687 GLint RefCount; /**< Reference count */
2688 GLboolean DeletePending;
2689
2690 /**
2691 * Is the application intending to glGetProgramBinary this program?
2692 */
2693 GLboolean BinaryRetreivableHint;
2694
2695 /**
2696 * Indicates whether program can be bound for individual pipeline stages
2697 * using UseProgramStages after it is next linked.
2698 */
2699 GLboolean SeparateShader;
2700
2701 GLuint NumShaders; /**< number of attached shaders */
2702 struct gl_shader **Shaders; /**< List of attached the shaders */
2703
2704 /**
2705 * User-defined attribute bindings
2706 *
2707 * These are set via \c glBindAttribLocation and are used to direct the
2708 * GLSL linker. These are \b not the values used in the compiled shader,
2709 * and they are \b not the values returned by \c glGetAttribLocation.
2710 */
2711 struct string_to_uint_map *AttributeBindings;
2712
2713 /**
2714 * User-defined fragment data bindings
2715 *
2716 * These are set via \c glBindFragDataLocation and are used to direct the
2717 * GLSL linker. These are \b not the values used in the compiled shader,
2718 * and they are \b not the values returned by \c glGetFragDataLocation.
2719 */
2720 struct string_to_uint_map *FragDataBindings;
2721 struct string_to_uint_map *FragDataIndexBindings;
2722
2723 /**
2724 * Transform feedback varyings last specified by
2725 * glTransformFeedbackVaryings().
2726 *
2727 * For the current set of transform feedback varyings used for transform
2728 * feedback output, see LinkedTransformFeedback.
2729 */
2730 struct {
2731 GLenum BufferMode;
2732 /** Global xfb_stride out qualifier if any */
2733 GLuint BufferStride[MAX_FEEDBACK_BUFFERS];
2734 GLuint NumVarying;
2735 GLchar **VaryingNames; /**< Array [NumVarying] of char * */
2736 } TransformFeedback;
2737
2738 /** Post-link transform feedback info. */
2739 struct gl_transform_feedback_info LinkedTransformFeedback;
2740
2741 /** Post-link gl_FragDepth layout for ARB_conservative_depth. */
2742 enum gl_frag_depth_layout FragDepthLayout;
2743
2744 /**
2745 * Tessellation Evaluation shader state from layout qualifiers.
2746 */
2747 struct {
2748 /**
2749 * True if gl_ClipDistance is written to. Copied into
2750 * gl_program by _mesa_copy_linked_program_data().
2751 */
2752 GLuint ClipDistanceArraySize; /**< Size of the gl_ClipDistance array, or
2753 0 if not present. */
2754 GLuint CullDistanceArraySize; /**< Size of the gl_CullDistance array, or
2755 0 if not present. */
2756 } TessEval;
2757
2758 /**
2759 * Geometry shader state - copied into gl_program by
2760 * _mesa_copy_linked_program_data().
2761 */
2762 struct {
2763 GLint VerticesIn;
2764
2765 /**
2766 * True if gl_ClipDistance is written to. Copied into
2767 * gl_program by _mesa_copy_linked_program_data().
2768 */
2769 GLuint ClipDistanceArraySize; /**< Size of the gl_ClipDistance array, or
2770 0 if not present. */
2771 GLuint CullDistanceArraySize; /**< Size of the gl_CullDistance array, or
2772 0 if not present. */
2773 bool UsesEndPrimitive;
2774 bool UsesStreams;
2775 } Geom;
2776
2777 /** Vertex shader state */
2778 struct {
2779 /**
2780 * True if gl_ClipDistance is written to. Copied into gl_program
2781 * by _mesa_copy_linked_program_data().
2782 */
2783 GLuint ClipDistanceArraySize; /**< Size of the gl_ClipDistance array, or
2784 0 if not present. */
2785 GLuint CullDistanceArraySize; /**< Size of the gl_CullDistance array, or
2786 0 if not present. */
2787 } Vert;
2788
2789 /**
2790 * Compute shader state - copied into gl_program by
2791 * _mesa_copy_linked_program_data().
2792 */
2793 struct {
2794 /**
2795 * If this shader contains a compute stage, size specified using
2796 * local_size_{x,y,z}. Otherwise undefined.
2797 */
2798 unsigned LocalSize[3];
2799 /**
2800 * Size of shared variables accessed by the compute shader.
2801 */
2802 unsigned SharedSize;
2803
2804 /**
2805 * Whether a variable work group size has been specified.
2806 */
2807 bool LocalSizeVariable;
2808 } Comp;
2809
2810 /** Data shared by gl_program and gl_shader_program */
2811 struct gl_shader_program_data *data;
2812
2813 /**
2814 * Mapping from GL uniform locations returned by \c glUniformLocation to
2815 * UniformStorage entries. Arrays will have multiple contiguous slots
2816 * in the UniformRemapTable, all pointing to the same UniformStorage entry.
2817 */
2818 unsigned NumUniformRemapTable;
2819 struct gl_uniform_storage **UniformRemapTable;
2820
2821 /**
2822 * Sometimes there are empty slots left over in UniformRemapTable after we
2823 * allocate slots to explicit locations. This list stores the blocks of
2824 * continuous empty slots inside UniformRemapTable.
2825 */
2826 struct exec_list EmptyUniformLocations;
2827
2828 /**
2829 * Size of the gl_ClipDistance array that is output from the last pipeline
2830 * stage before the fragment shader.
2831 */
2832 unsigned LastClipDistanceArraySize;
2833 unsigned LastCullDistanceArraySize;
2834
2835 /**
2836 * Map of active uniform names to locations
2837 *
2838 * Maps any active uniform that is not an array element to a location.
2839 * Each active uniform, including individual structure members will appear
2840 * in this map. This roughly corresponds to the set of names that would be
2841 * enumerated by \c glGetActiveUniform.
2842 */
2843 struct string_to_uint_map *UniformHash;
2844
2845 GLboolean _Used; /**< Ever used for drawing? */
2846 GLboolean SamplersValidated; /**< Samplers validated against texture units? */
2847
2848 bool IsES; /**< True if this program uses GLSL ES */
2849
2850 /**
2851 * Per-stage shaders resulting from the first stage of linking.
2852 *
2853 * Set of linked shaders for this program. The array is accessed using the
2854 * \c MESA_SHADER_* defines. Entries for non-existent stages will be
2855 * \c NULL.
2856 */
2857 struct gl_linked_shader *_LinkedShaders[MESA_SHADER_STAGES];
2858
2859 /** List of all active resources after linking. */
2860 struct gl_program_resource *ProgramResourceList;
2861 unsigned NumProgramResourceList;
2862
2863 /* True if any of the fragment shaders attached to this program use:
2864 * #extension ARB_fragment_coord_conventions: enable
2865 */
2866 GLboolean ARB_fragment_coord_conventions_enable;
2867 };
2868
2869
2870 #define GLSL_DUMP 0x1 /**< Dump shaders to stdout */
2871 #define GLSL_LOG 0x2 /**< Write shaders to files */
2872 #define GLSL_OPT 0x4 /**< Force optimizations (override pragmas) */
2873 #define GLSL_NO_OPT 0x8 /**< Force no optimizations (override pragmas) */
2874 #define GLSL_UNIFORMS 0x10 /**< Print glUniform calls */
2875 #define GLSL_NOP_VERT 0x20 /**< Force no-op vertex shaders */
2876 #define GLSL_NOP_FRAG 0x40 /**< Force no-op fragment shaders */
2877 #define GLSL_USE_PROG 0x80 /**< Log glUseProgram calls */
2878 #define GLSL_REPORT_ERRORS 0x100 /**< Print compilation errors */
2879 #define GLSL_DUMP_ON_ERROR 0x200 /**< Dump shaders to stderr on compile error */
2880
2881
2882 /**
2883 * Context state for GLSL vertex/fragment shaders.
2884 * Extended to support pipeline object
2885 */
2886 struct gl_pipeline_object
2887 {
2888 /** Name of the pipeline object as received from glGenProgramPipelines.
2889 * It would be 0 for shaders without separate shader objects.
2890 */
2891 GLuint Name;
2892
2893 GLint RefCount;
2894
2895 mtx_t Mutex;
2896
2897 GLchar *Label; /**< GL_KHR_debug */
2898
2899 /**
2900 * Programs used for rendering
2901 *
2902 * There is a separate program set for each shader stage.
2903 */
2904 struct gl_shader_program *CurrentProgram[MESA_SHADER_STAGES];
2905
2906 struct gl_shader_program *_CurrentFragmentProgram;
2907
2908 /**
2909 * Program used by glUniform calls.
2910 *
2911 * Explicitly set by \c glUseProgram and \c glActiveProgramEXT.
2912 */
2913 struct gl_shader_program *ActiveProgram;
2914
2915 GLbitfield Flags; /**< Mask of GLSL_x flags */
2916
2917 GLboolean EverBound; /**< Has the pipeline object been created */
2918
2919 GLboolean Validated; /**< Pipeline Validation status */
2920
2921 GLchar *InfoLog;
2922 };
2923
2924 /**
2925 * Context state for GLSL pipeline shaders.
2926 */
2927 struct gl_pipeline_shader_state
2928 {
2929 /** Currently bound pipeline object. See _mesa_BindProgramPipeline() */
2930 struct gl_pipeline_object *Current;
2931
2932 /* Default Object to ensure that _Shader is never NULL */
2933 struct gl_pipeline_object *Default;
2934
2935 /** Pipeline objects */
2936 struct _mesa_HashTable *Objects;
2937 };
2938
2939 /**
2940 * Compiler options for a single GLSL shaders type
2941 */
2942 struct gl_shader_compiler_options
2943 {
2944 /** Driver-selectable options: */
2945 GLboolean EmitNoLoops;
2946 GLboolean EmitNoFunctions;
2947 GLboolean EmitNoCont; /**< Emit CONT opcode? */
2948 GLboolean EmitNoMainReturn; /**< Emit CONT/RET opcodes? */
2949 GLboolean EmitNoPow; /**< Emit POW opcodes? */
2950 GLboolean EmitNoSat; /**< Emit SAT opcodes? */
2951 GLboolean LowerCombinedClipCullDistance; /** Lower gl_ClipDistance and
2952 * gl_CullDistance together from
2953 * float[8] to vec4[2]
2954 **/
2955
2956 /**
2957 * \name Forms of indirect addressing the driver cannot do.
2958 */
2959 /*@{*/
2960 GLboolean EmitNoIndirectInput; /**< No indirect addressing of inputs */
2961 GLboolean EmitNoIndirectOutput; /**< No indirect addressing of outputs */
2962 GLboolean EmitNoIndirectTemp; /**< No indirect addressing of temps */
2963 GLboolean EmitNoIndirectUniform; /**< No indirect addressing of constants */
2964 GLboolean EmitNoIndirectSampler; /**< No indirect addressing of samplers */
2965 /*@}*/
2966
2967 GLuint MaxIfDepth; /**< Maximum nested IF blocks */
2968 GLuint MaxUnrollIterations;
2969
2970 /**
2971 * Optimize code for array of structures backends.
2972 *
2973 * This is a proxy for:
2974 * - preferring DP4 instructions (rather than MUL/MAD) for
2975 * matrix * vector operations, such as position transformation.
2976 */
2977 GLboolean OptimizeForAOS;
2978
2979 GLboolean LowerBufferInterfaceBlocks; /**< Lower UBO and SSBO access to intrinsics. */
2980
2981 /** Clamp UBO and SSBO block indices so they don't go out-of-bounds. */
2982 GLboolean ClampBlockIndicesToArrayBounds;
2983
2984 const struct nir_shader_compiler_options *NirOptions;
2985 };
2986
2987
2988 /**
2989 * Occlusion/timer query object.
2990 */
2991 struct gl_query_object
2992 {
2993 GLenum Target; /**< The query target, when active */
2994 GLuint Id; /**< hash table ID/name */
2995 GLchar *Label; /**< GL_KHR_debug */
2996 GLuint64EXT Result; /**< the counter */
2997 GLboolean Active; /**< inside Begin/EndQuery */
2998 GLboolean Ready; /**< result is ready? */
2999 GLboolean EverBound;/**< has query object ever been bound */
3000 GLuint Stream; /**< The stream */
3001 };
3002
3003
3004 /**
3005 * Context state for query objects.
3006 */
3007 struct gl_query_state
3008 {
3009 struct _mesa_HashTable *QueryObjects;
3010 struct gl_query_object *CurrentOcclusionObject; /* GL_ARB_occlusion_query */
3011 struct gl_query_object *CurrentTimerObject; /* GL_EXT_timer_query */
3012
3013 /** GL_NV_conditional_render */
3014 struct gl_query_object *CondRenderQuery;
3015
3016 /** GL_EXT_transform_feedback */
3017 struct gl_query_object *PrimitivesGenerated[MAX_VERTEX_STREAMS];
3018 struct gl_query_object *PrimitivesWritten[MAX_VERTEX_STREAMS];
3019
3020 /** GL_ARB_timer_query */
3021 struct gl_query_object *TimeElapsed;
3022
3023 /** GL_ARB_pipeline_statistics_query */
3024 struct gl_query_object *pipeline_stats[MAX_PIPELINE_STATISTICS];
3025
3026 GLenum CondRenderMode;
3027 };
3028
3029
3030 /** Sync object state */
3031 struct gl_sync_object
3032 {
3033 GLenum Type; /**< GL_SYNC_FENCE */
3034 GLuint Name; /**< Fence name */
3035 GLchar *Label; /**< GL_KHR_debug */
3036 GLint RefCount; /**< Reference count */
3037 GLboolean DeletePending; /**< Object was deleted while there were still
3038 * live references (e.g., sync not yet finished)
3039 */
3040 GLenum SyncCondition;
3041 GLbitfield Flags; /**< Flags passed to glFenceSync */
3042 GLuint StatusFlag:1; /**< Has the sync object been signaled? */
3043 };
3044
3045
3046 /**
3047 * State which can be shared by multiple contexts:
3048 */
3049 struct gl_shared_state
3050 {
3051 mtx_t Mutex; /**< for thread safety */
3052 GLint RefCount; /**< Reference count */
3053 struct _mesa_HashTable *DisplayList; /**< Display lists hash table */
3054 struct _mesa_HashTable *BitmapAtlas; /**< For optimized glBitmap text */
3055 struct _mesa_HashTable *TexObjects; /**< Texture objects hash table */
3056
3057 /** Default texture objects (shared by all texture units) */
3058 struct gl_texture_object *DefaultTex[NUM_TEXTURE_TARGETS];
3059
3060 /** Fallback texture used when a bound texture is incomplete */
3061 struct gl_texture_object *FallbackTex[NUM_TEXTURE_TARGETS];
3062
3063 /**
3064 * \name Thread safety and statechange notification for texture
3065 * objects.
3066 *
3067 * \todo Improve the granularity of locking.
3068 */
3069 /*@{*/
3070 mtx_t TexMutex; /**< texobj thread safety */
3071 GLuint TextureStateStamp; /**< state notification for shared tex */
3072 /*@}*/
3073
3074 /** Default buffer object for vertex arrays that aren't in VBOs */
3075 struct gl_buffer_object *NullBufferObj;
3076
3077 /**
3078 * \name Vertex/geometry/fragment programs
3079 */
3080 /*@{*/
3081 struct _mesa_HashTable *Programs; /**< All vertex/fragment programs */
3082 struct gl_program *DefaultVertexProgram;
3083 struct gl_program *DefaultFragmentProgram;
3084 /*@}*/
3085
3086 /* GL_ATI_fragment_shader */
3087 struct _mesa_HashTable *ATIShaders;
3088 struct ati_fragment_shader *DefaultFragmentShader;
3089
3090 struct _mesa_HashTable *BufferObjects;
3091
3092 /** Table of both gl_shader and gl_shader_program objects */
3093 struct _mesa_HashTable *ShaderObjects;
3094
3095 /* GL_EXT_framebuffer_object */
3096 struct _mesa_HashTable *RenderBuffers;
3097 struct _mesa_HashTable *FrameBuffers;
3098
3099 /* GL_ARB_sync */
3100 struct set *SyncObjects;
3101
3102 /** GL_ARB_sampler_objects */
3103 struct _mesa_HashTable *SamplerObjects;
3104
3105 /**
3106 * Some context in this share group was affected by a GPU reset
3107 *
3108 * On the next call to \c glGetGraphicsResetStatus, contexts that have not
3109 * been affected by a GPU reset must also return
3110 * \c GL_INNOCENT_CONTEXT_RESET_ARB.
3111 *
3112 * Once this field becomes true, it is never reset to false.
3113 */
3114 bool ShareGroupReset;
3115 };
3116
3117
3118
3119 /**
3120 * Renderbuffers represent drawing surfaces such as color, depth and/or
3121 * stencil. A framebuffer object has a set of renderbuffers.
3122 * Drivers will typically derive subclasses of this type.
3123 */
3124 struct gl_renderbuffer
3125 {
3126 mtx_t Mutex; /**< for thread safety */
3127 GLuint ClassID; /**< Useful for drivers */
3128 GLuint Name;
3129 GLchar *Label; /**< GL_KHR_debug */
3130 GLint RefCount;
3131 GLuint Width, Height;
3132 GLuint Depth;
3133 GLboolean Purgeable; /**< Is the buffer purgeable under memory pressure? */
3134 GLboolean AttachedAnytime; /**< TRUE if it was attached to a framebuffer */
3135 /**
3136 * True for renderbuffers that wrap textures, giving the driver a chance to
3137 * flush render caches through the FinishRenderTexture hook.
3138 *
3139 * Drivers may also set this on renderbuffers other than those generated by
3140 * glFramebufferTexture(), though it means FinishRenderTexture() would be
3141 * called without a rb->TexImage.
3142 */
3143 GLboolean NeedsFinishRenderTexture;
3144 GLubyte NumSamples;
3145 GLenum InternalFormat; /**< The user-specified format */
3146 GLenum _BaseFormat; /**< Either GL_RGB, GL_RGBA, GL_DEPTH_COMPONENT or
3147 GL_STENCIL_INDEX. */
3148 mesa_format Format; /**< The actual renderbuffer memory format */
3149 /**
3150 * Pointer to the texture image if this renderbuffer wraps a texture,
3151 * otherwise NULL.
3152 *
3153 * Note that the reference on the gl_texture_object containing this
3154 * TexImage is held by the gl_renderbuffer_attachment.
3155 */
3156 struct gl_texture_image *TexImage;
3157
3158 /** Delete this renderbuffer */
3159 void (*Delete)(struct gl_context *ctx, struct gl_renderbuffer *rb);
3160
3161 /** Allocate new storage for this renderbuffer */
3162 GLboolean (*AllocStorage)(struct gl_context *ctx,
3163 struct gl_renderbuffer *rb,
3164 GLenum internalFormat,
3165 GLuint width, GLuint height);
3166 };
3167
3168
3169 /**
3170 * A renderbuffer attachment points to either a texture object (and specifies
3171 * a mipmap level, cube face or 3D texture slice) or points to a renderbuffer.
3172 */
3173 struct gl_renderbuffer_attachment
3174 {
3175 GLenum Type; /**< \c GL_NONE or \c GL_TEXTURE or \c GL_RENDERBUFFER_EXT */
3176 GLboolean Complete;
3177
3178 /**
3179 * If \c Type is \c GL_RENDERBUFFER_EXT, this stores a pointer to the
3180 * application supplied renderbuffer object.
3181 */
3182 struct gl_renderbuffer *Renderbuffer;
3183
3184 /**
3185 * If \c Type is \c GL_TEXTURE, this stores a pointer to the application
3186 * supplied texture object.
3187 */
3188 struct gl_texture_object *Texture;
3189 GLuint TextureLevel; /**< Attached mipmap level. */
3190 GLuint CubeMapFace; /**< 0 .. 5, for cube map textures. */
3191 GLuint Zoffset; /**< Slice for 3D textures, or layer for both 1D
3192 * and 2D array textures */
3193 GLboolean Layered;
3194 };
3195
3196
3197 /**
3198 * A framebuffer is a collection of renderbuffers (color, depth, stencil, etc).
3199 * In C++ terms, think of this as a base class from which device drivers
3200 * will make derived classes.
3201 */
3202 struct gl_framebuffer
3203 {
3204 mtx_t Mutex; /**< for thread safety */
3205 /**
3206 * If zero, this is a window system framebuffer. If non-zero, this
3207 * is a FBO framebuffer; note that for some devices (i.e. those with
3208 * a natural pixel coordinate system for FBOs that differs from the
3209 * OpenGL/Mesa coordinate system), this means that the viewport,
3210 * polygon face orientation, and polygon stipple will have to be inverted.
3211 */
3212 GLuint Name;
3213 GLint RefCount;
3214
3215 GLchar *Label; /**< GL_KHR_debug */
3216
3217 GLboolean DeletePending;
3218
3219 /**
3220 * The framebuffer's visual. Immutable if this is a window system buffer.
3221 * Computed from attachments if user-made FBO.
3222 */
3223 struct gl_config Visual;
3224
3225 /**
3226 * Size of frame buffer in pixels. If there are no attachments, then both
3227 * of these are 0.
3228 */
3229 GLuint Width, Height;
3230
3231 /**
3232 * In the case that the framebuffer has no attachment (i.e.
3233 * GL_ARB_framebuffer_no_attachments) then the geometry of
3234 * the framebuffer is specified by the default values.
3235 */
3236 struct {
3237 GLuint Width, Height, Layers, NumSamples;
3238 GLboolean FixedSampleLocations;
3239 /* Derived from NumSamples by the driver so that it can choose a valid
3240 * value for the hardware.
3241 */
3242 GLuint _NumSamples;
3243 } DefaultGeometry;
3244
3245 /** \name Drawing bounds (Intersection of buffer size and scissor box)
3246 * The drawing region is given by [_Xmin, _Xmax) x [_Ymin, _Ymax),
3247 * (inclusive for _Xmin and _Ymin while exclusive for _Xmax and _Ymax)
3248 */
3249 /*@{*/
3250 GLint _Xmin, _Xmax;
3251 GLint _Ymin, _Ymax;
3252 /*@}*/
3253
3254 /** \name Derived Z buffer stuff */
3255 /*@{*/
3256 GLuint _DepthMax; /**< Max depth buffer value */
3257 GLfloat _DepthMaxF; /**< Float max depth buffer value */
3258 GLfloat _MRD; /**< minimum resolvable difference in Z values */
3259 /*@}*/
3260
3261 /** One of the GL_FRAMEBUFFER_(IN)COMPLETE_* tokens */
3262 GLenum _Status;
3263
3264 /** Whether one of Attachment has Type != GL_NONE
3265 * NOTE: the values for Width and Height are set to 0 in case of having
3266 * no attachments, a backend driver supporting the extension
3267 * GL_ARB_framebuffer_no_attachments must check for the flag _HasAttachments
3268 * and if GL_FALSE, must then use the values in DefaultGeometry to initialize
3269 * its viewport, scissor and so on (in particular _Xmin, _Xmax, _Ymin and
3270 * _Ymax do NOT take into account _HasAttachments being false). To get the
3271 * geometry of the framebuffer, the helper functions
3272 * _mesa_geometric_width(),
3273 * _mesa_geometric_height(),
3274 * _mesa_geometric_samples() and
3275 * _mesa_geometric_layers()
3276 * are available that check _HasAttachments.
3277 */
3278 bool _HasAttachments;
3279
3280 GLbitfield _IntegerBuffers; /**< Which color buffers are integer valued */
3281
3282 /* ARB_color_buffer_float */
3283 GLboolean _AllColorBuffersFixedPoint; /* no integer, no float */
3284 GLboolean _HasSNormOrFloatColorBuffer;
3285
3286 /**
3287 * The maximum number of layers in the framebuffer, or 0 if the framebuffer
3288 * is not layered. For cube maps and cube map arrays, each cube face
3289 * counts as a layer. As the case for Width, Height a backend driver
3290 * supporting GL_ARB_framebuffer_no_attachments must use DefaultGeometry
3291 * in the case that _HasAttachments is false
3292 */
3293 GLuint MaxNumLayers;
3294
3295 /** Array of all renderbuffer attachments, indexed by BUFFER_* tokens. */
3296 struct gl_renderbuffer_attachment Attachment[BUFFER_COUNT];
3297
3298 /* In unextended OpenGL these vars are part of the GL_COLOR_BUFFER
3299 * attribute group and GL_PIXEL attribute group, respectively.
3300 */
3301 GLenum ColorDrawBuffer[MAX_DRAW_BUFFERS];
3302 GLenum ColorReadBuffer;
3303
3304 /** Computed from ColorDraw/ReadBuffer above */
3305 GLuint _NumColorDrawBuffers;
3306 GLint _ColorDrawBufferIndexes[MAX_DRAW_BUFFERS]; /**< BUFFER_x or -1 */
3307 GLint _ColorReadBufferIndex; /* -1 = None */
3308 struct gl_renderbuffer *_ColorDrawBuffers[MAX_DRAW_BUFFERS];
3309 struct gl_renderbuffer *_ColorReadBuffer;
3310
3311 /** Delete this framebuffer */
3312 void (*Delete)(struct gl_framebuffer *fb);
3313 };
3314
3315
3316 /**
3317 * Precision info for shader datatypes. See glGetShaderPrecisionFormat().
3318 */
3319 struct gl_precision
3320 {
3321 GLushort RangeMin; /**< min value exponent */
3322 GLushort RangeMax; /**< max value exponent */
3323 GLushort Precision; /**< number of mantissa bits */
3324 };
3325
3326
3327 /**
3328 * Limits for vertex, geometry and fragment programs/shaders.
3329 */
3330 struct gl_program_constants
3331 {
3332 /* logical limits */
3333 GLuint MaxInstructions;
3334 GLuint MaxAluInstructions;
3335 GLuint MaxTexInstructions;
3336 GLuint MaxTexIndirections;
3337 GLuint MaxAttribs;
3338 GLuint MaxTemps;
3339 GLuint MaxAddressRegs;
3340 GLuint MaxAddressOffset; /**< [-MaxAddressOffset, MaxAddressOffset-1] */
3341 GLuint MaxParameters;
3342 GLuint MaxLocalParams;
3343 GLuint MaxEnvParams;
3344 /* native/hardware limits */
3345 GLuint MaxNativeInstructions;
3346 GLuint MaxNativeAluInstructions;
3347 GLuint MaxNativeTexInstructions;
3348 GLuint MaxNativeTexIndirections;
3349 GLuint MaxNativeAttribs;
3350 GLuint MaxNativeTemps;
3351 GLuint MaxNativeAddressRegs;
3352 GLuint MaxNativeParameters;
3353 /* For shaders */
3354 GLuint MaxUniformComponents; /**< Usually == MaxParameters * 4 */
3355
3356 /**
3357 * \name Per-stage input / output limits
3358 *
3359 * Previous to OpenGL 3.2, the intrastage data limits were advertised with
3360 * a single value: GL_MAX_VARYING_COMPONENTS (GL_MAX_VARYING_VECTORS in
3361 * ES). This is stored as \c gl_constants::MaxVarying.
3362 *
3363 * Starting with OpenGL 3.2, the limits are advertised with per-stage
3364 * variables. Each stage as a certain number of outputs that it can feed
3365 * to the next stage and a certain number inputs that it can consume from
3366 * the previous stage.
3367 *
3368 * Vertex shader inputs do not participate this in this accounting.
3369 * These are tracked exclusively by \c gl_program_constants::MaxAttribs.
3370 *
3371 * Fragment shader outputs do not participate this in this accounting.
3372 * These are tracked exclusively by \c gl_constants::MaxDrawBuffers.
3373 */
3374 /*@{*/
3375 GLuint MaxInputComponents;
3376 GLuint MaxOutputComponents;
3377 /*@}*/
3378
3379 /* ES 2.0 and GL_ARB_ES2_compatibility */
3380 struct gl_precision LowFloat, MediumFloat, HighFloat;
3381 struct gl_precision LowInt, MediumInt, HighInt;
3382 /* GL_ARB_uniform_buffer_object */
3383 GLuint MaxUniformBlocks;
3384 GLuint MaxCombinedUniformComponents;
3385 GLuint MaxTextureImageUnits;
3386
3387 /* GL_ARB_shader_atomic_counters */
3388 GLuint MaxAtomicBuffers;
3389 GLuint MaxAtomicCounters;
3390
3391 /* GL_ARB_shader_image_load_store */
3392 GLuint MaxImageUniforms;
3393
3394 /* GL_ARB_shader_storage_buffer_object */
3395 GLuint MaxShaderStorageBlocks;
3396 };
3397
3398
3399 /**
3400 * Constants which may be overridden by device driver during context creation
3401 * but are never changed after that.
3402 */
3403 struct gl_constants
3404 {
3405 GLuint MaxTextureMbytes; /**< Max memory per image, in MB */
3406 GLuint MaxTextureLevels; /**< Max mipmap levels. */
3407 GLuint Max3DTextureLevels; /**< Max mipmap levels for 3D textures */
3408 GLuint MaxCubeTextureLevels; /**< Max mipmap levels for cube textures */
3409 GLuint MaxArrayTextureLayers; /**< Max layers in array textures */
3410 GLuint MaxTextureRectSize; /**< Max rectangle texture size, in pixes */
3411 GLuint MaxTextureCoordUnits;
3412 GLuint MaxCombinedTextureImageUnits;
3413 GLuint MaxTextureUnits; /**< = MIN(CoordUnits, FragmentProgram.ImageUnits) */
3414 GLfloat MaxTextureMaxAnisotropy; /**< GL_EXT_texture_filter_anisotropic */
3415 GLfloat MaxTextureLodBias; /**< GL_EXT_texture_lod_bias */
3416 GLuint MaxTextureBufferSize; /**< GL_ARB_texture_buffer_object */
3417
3418 GLuint TextureBufferOffsetAlignment; /**< GL_ARB_texture_buffer_range */
3419
3420 GLuint MaxArrayLockSize;
3421
3422 GLint SubPixelBits;
3423
3424 GLfloat MinPointSize, MaxPointSize; /**< aliased */
3425 GLfloat MinPointSizeAA, MaxPointSizeAA; /**< antialiased */
3426 GLfloat PointSizeGranularity;
3427 GLfloat MinLineWidth, MaxLineWidth; /**< aliased */
3428 GLfloat MinLineWidthAA, MaxLineWidthAA; /**< antialiased */
3429 GLfloat LineWidthGranularity;
3430
3431 GLuint MaxClipPlanes;
3432 GLuint MaxLights;
3433 GLfloat MaxShininess; /**< GL_NV_light_max_exponent */
3434 GLfloat MaxSpotExponent; /**< GL_NV_light_max_exponent */
3435
3436 GLuint MaxViewportWidth, MaxViewportHeight;
3437 GLuint MaxViewports; /**< GL_ARB_viewport_array */
3438 GLuint ViewportSubpixelBits; /**< GL_ARB_viewport_array */
3439 struct {
3440 GLfloat Min;
3441 GLfloat Max;
3442 } ViewportBounds; /**< GL_ARB_viewport_array */
3443 GLuint MaxWindowRectangles; /**< GL_EXT_window_rectangles */
3444
3445 struct gl_program_constants Program[MESA_SHADER_STAGES];
3446 GLuint MaxProgramMatrices;
3447 GLuint MaxProgramMatrixStackDepth;
3448
3449 struct {
3450 GLuint SamplesPassed;
3451 GLuint TimeElapsed;
3452 GLuint Timestamp;
3453 GLuint PrimitivesGenerated;
3454 GLuint PrimitivesWritten;
3455 GLuint VerticesSubmitted;
3456 GLuint PrimitivesSubmitted;
3457 GLuint VsInvocations;
3458 GLuint TessPatches;
3459 GLuint TessInvocations;
3460 GLuint GsInvocations;
3461 GLuint GsPrimitives;
3462 GLuint FsInvocations;
3463 GLuint ComputeInvocations;
3464 GLuint ClInPrimitives;
3465 GLuint ClOutPrimitives;
3466 } QueryCounterBits;
3467
3468 GLuint MaxDrawBuffers; /**< GL_ARB_draw_buffers */
3469
3470 GLuint MaxColorAttachments; /**< GL_EXT_framebuffer_object */
3471 GLuint MaxRenderbufferSize; /**< GL_EXT_framebuffer_object */
3472 GLuint MaxSamples; /**< GL_ARB_framebuffer_object */
3473
3474 /**
3475 * GL_ARB_framebuffer_no_attachments
3476 */
3477 GLuint MaxFramebufferWidth;
3478 GLuint MaxFramebufferHeight;
3479 GLuint MaxFramebufferLayers;
3480 GLuint MaxFramebufferSamples;
3481
3482 /** Number of varying vectors between any two shader stages. */
3483 GLuint MaxVarying;
3484
3485 /** @{
3486 * GL_ARB_uniform_buffer_object
3487 */
3488 GLuint MaxCombinedUniformBlocks;
3489 GLuint MaxUniformBufferBindings;
3490 GLuint MaxUniformBlockSize;
3491 GLuint UniformBufferOffsetAlignment;
3492 /** @} */
3493
3494 /** @{
3495 * GL_ARB_shader_storage_buffer_object
3496 */
3497 GLuint MaxCombinedShaderStorageBlocks;
3498 GLuint MaxShaderStorageBufferBindings;
3499 GLuint MaxShaderStorageBlockSize;
3500 GLuint ShaderStorageBufferOffsetAlignment;
3501 /** @} */
3502
3503 /**
3504 * GL_ARB_explicit_uniform_location
3505 */
3506 GLuint MaxUserAssignableUniformLocations;
3507
3508 /** geometry shader */
3509 GLuint MaxGeometryOutputVertices;
3510 GLuint MaxGeometryTotalOutputComponents;
3511
3512 GLuint GLSLVersion; /**< Desktop GLSL version supported (ex: 120 = 1.20) */
3513
3514 /**
3515 * Changes default GLSL extension behavior from "error" to "warn". It's out
3516 * of spec, but it can make some apps work that otherwise wouldn't.
3517 */
3518 GLboolean ForceGLSLExtensionsWarn;
3519
3520 /**
3521 * If non-zero, forces GLSL shaders to behave as if they began
3522 * with "#version ForceGLSLVersion".
3523 */
3524 GLuint ForceGLSLVersion;
3525
3526 /**
3527 * Allow GLSL #extension directives in the middle of shaders.
3528 */
3529 GLboolean AllowGLSLExtensionDirectiveMidShader;
3530
3531 /**
3532 * Force uninitialized variables to default to zero.
3533 */
3534 GLboolean GLSLZeroInit;
3535
3536 /**
3537 * Does the driver support real 32-bit integers? (Otherwise, integers are
3538 * simulated via floats.)
3539 */
3540 GLboolean NativeIntegers;
3541
3542 /**
3543 * Does VertexID count from zero or from base vertex?
3544 *
3545 * \note
3546 * If desktop GLSL 1.30 or GLSL ES 3.00 are not supported, this field is
3547 * ignored and need not be set.
3548 */
3549 bool VertexID_is_zero_based;
3550
3551 /**
3552 * If the driver supports real 32-bit integers, what integer value should be
3553 * used for boolean true in uniform uploads? (Usually 1 or ~0.)
3554 */
3555 GLuint UniformBooleanTrue;
3556
3557 /**
3558 * Maximum amount of time, measured in nanseconds, that the server can wait.
3559 */
3560 GLuint64 MaxServerWaitTimeout;
3561
3562 /** GL_EXT_provoking_vertex */
3563 GLboolean QuadsFollowProvokingVertexConvention;
3564
3565 /** GL_ARB_viewport_array */
3566 GLenum LayerAndVPIndexProvokingVertex;
3567
3568 /** OpenGL version 3.0 */
3569 GLbitfield ContextFlags; /**< Ex: GL_CONTEXT_FLAG_FORWARD_COMPATIBLE_BIT */
3570
3571 /** OpenGL version 3.2 */
3572 GLbitfield ProfileMask; /**< Mask of CONTEXT_x_PROFILE_BIT */
3573
3574 /** OpenGL version 4.4 */
3575 GLuint MaxVertexAttribStride;
3576
3577 /** GL_EXT_transform_feedback */
3578 GLuint MaxTransformFeedbackBuffers;
3579 GLuint MaxTransformFeedbackSeparateComponents;
3580 GLuint MaxTransformFeedbackInterleavedComponents;
3581 GLuint MaxVertexStreams;
3582
3583 /** GL_EXT_gpu_shader4 */
3584 GLint MinProgramTexelOffset, MaxProgramTexelOffset;
3585
3586 /** GL_ARB_texture_gather */
3587 GLuint MinProgramTextureGatherOffset;
3588 GLuint MaxProgramTextureGatherOffset;
3589 GLuint MaxProgramTextureGatherComponents;
3590
3591 /* GL_ARB_robustness */
3592 GLenum ResetStrategy;
3593
3594 /* GL_KHR_robustness */
3595 GLboolean RobustAccess;
3596
3597 /* GL_ARB_blend_func_extended */
3598 GLuint MaxDualSourceDrawBuffers;
3599
3600 /**
3601 * Whether the implementation strips out and ignores texture borders.
3602 *
3603 * Many GPU hardware implementations don't support rendering with texture
3604 * borders and mipmapped textures. (Note: not static border color, but the
3605 * old 1-pixel border around each edge). Implementations then have to do
3606 * slow fallbacks to be correct, or just ignore the border and be fast but
3607 * wrong. Setting the flag strips the border off of TexImage calls,
3608 * providing "fast but wrong" at significantly reduced driver complexity.
3609 *
3610 * Texture borders are deprecated in GL 3.0.
3611 **/
3612 GLboolean StripTextureBorder;
3613
3614 /**
3615 * For drivers which can do a better job at eliminating unused uniforms
3616 * than the GLSL compiler.
3617 *
3618 * XXX Remove these as soon as a better solution is available.
3619 */
3620 GLboolean GLSLSkipStrictMaxUniformLimitCheck;
3621
3622 /** Whether gl_FragCoord and gl_FrontFacing are system values. */
3623 bool GLSLFragCoordIsSysVal;
3624 bool GLSLFrontFacingIsSysVal;
3625
3626 /**
3627 * Always use the GetTransformFeedbackVertexCount() driver hook, rather
3628 * than passing the transform feedback object to the drawing function.
3629 */
3630 GLboolean AlwaysUseGetTransformFeedbackVertexCount;
3631
3632 /** GL_ARB_map_buffer_alignment */
3633 GLuint MinMapBufferAlignment;
3634
3635 /**
3636 * Disable varying packing. This is out of spec, but potentially useful
3637 * for older platforms that supports a limited number of texture
3638 * indirections--on these platforms, unpacking the varyings in the fragment
3639 * shader increases the number of texture indirections by 1, which might
3640 * make some shaders not executable at all.
3641 *
3642 * Drivers that support transform feedback must set this value to GL_FALSE.
3643 */
3644 GLboolean DisableVaryingPacking;
3645
3646 /**
3647 * Should meaningful names be generated for compiler temporary variables?
3648 *
3649 * Generally, it is not useful to have the compiler generate "meaningful"
3650 * names for temporary variables that it creates. This can, however, be a
3651 * useful debugging aid. In Mesa debug builds or release builds when
3652 * MESA_GLSL is set at run-time, meaningful names will be generated.
3653 * Drivers can also force names to be generated by setting this field.
3654 * For example, the i965 driver may set it when INTEL_DEBUG=vs (to dump
3655 * vertex shader assembly) is set at run-time.
3656 */
3657 bool GenerateTemporaryNames;
3658
3659 /*
3660 * Maximum value supported for an index in DrawElements and friends.
3661 *
3662 * This must be at least (1ull<<24)-1. The default value is
3663 * (1ull<<32)-1.
3664 *
3665 * \since ES 3.0 or GL_ARB_ES3_compatibility
3666 * \sa _mesa_init_constants
3667 */
3668 GLuint64 MaxElementIndex;
3669
3670 /**
3671 * Disable interpretation of line continuations (lines ending with a
3672 * backslash character ('\') in GLSL source.
3673 */
3674 GLboolean DisableGLSLLineContinuations;
3675
3676 /** GL_ARB_texture_multisample */
3677 GLint MaxColorTextureSamples;
3678 GLint MaxDepthTextureSamples;
3679 GLint MaxIntegerSamples;
3680
3681 /**
3682 * GL_EXT_texture_multisample_blit_scaled implementation assumes that
3683 * samples are laid out in a rectangular grid roughly corresponding to
3684 * sample locations within a pixel. Below SampleMap{2,4,8}x variables
3685 * are used to map indices of rectangular grid to sample numbers within
3686 * a pixel. This mapping of indices to sample numbers must be initialized
3687 * by the driver for the target hardware. For example, if we have the 8X
3688 * MSAA sample number layout (sample positions) for XYZ hardware:
3689 *
3690 * sample indices layout sample number layout
3691 * --------- ---------
3692 * | 0 | 1 | | a | b |
3693 * --------- ---------
3694 * | 2 | 3 | | c | d |
3695 * --------- ---------
3696 * | 4 | 5 | | e | f |
3697 * --------- ---------
3698 * | 6 | 7 | | g | h |
3699 * --------- ---------
3700 *
3701 * Where a,b,c,d,e,f,g,h are integers between [0-7].
3702 *
3703 * Then, initialize the SampleMap8x variable for XYZ hardware as shown
3704 * below:
3705 * SampleMap8x = {a, b, c, d, e, f, g, h};
3706 *
3707 * Follow the logic for sample counts 2-8.
3708 *
3709 * For 16x the sample indices layout as a 4x4 grid as follows:
3710 *
3711 * -----------------
3712 * | 0 | 1 | 2 | 3 |
3713 * -----------------
3714 * | 4 | 5 | 6 | 7 |
3715 * -----------------
3716 * | 8 | 9 |10 |11 |
3717 * -----------------
3718 * |12 |13 |14 |15 |
3719 * -----------------
3720 */
3721 uint8_t SampleMap2x[2];
3722 uint8_t SampleMap4x[4];
3723 uint8_t SampleMap8x[8];
3724 uint8_t SampleMap16x[16];
3725
3726 /** GL_ARB_shader_atomic_counters */
3727 GLuint MaxAtomicBufferBindings;
3728 GLuint MaxAtomicBufferSize;
3729 GLuint MaxCombinedAtomicBuffers;
3730 GLuint MaxCombinedAtomicCounters;
3731
3732 /** GL_ARB_vertex_attrib_binding */
3733 GLint MaxVertexAttribRelativeOffset;
3734 GLint MaxVertexAttribBindings;
3735
3736 /* GL_ARB_shader_image_load_store */
3737 GLuint MaxImageUnits;
3738 GLuint MaxCombinedShaderOutputResources;
3739 GLuint MaxImageSamples;
3740 GLuint MaxCombinedImageUniforms;
3741
3742 /** GL_ARB_compute_shader */
3743 GLuint MaxComputeWorkGroupCount[3]; /* Array of x, y, z dimensions */
3744 GLuint MaxComputeWorkGroupSize[3]; /* Array of x, y, z dimensions */
3745 GLuint MaxComputeWorkGroupInvocations;
3746 GLuint MaxComputeSharedMemorySize;
3747
3748 /** GL_ARB_compute_variable_group_size */
3749 GLuint MaxComputeVariableGroupSize[3]; /* Array of x, y, z dimensions */
3750 GLuint MaxComputeVariableGroupInvocations;
3751
3752 /** GL_ARB_gpu_shader5 */
3753 GLfloat MinFragmentInterpolationOffset;
3754 GLfloat MaxFragmentInterpolationOffset;
3755
3756 GLboolean FakeSWMSAA;
3757
3758 /** GL_KHR_context_flush_control */
3759 GLenum ContextReleaseBehavior;
3760
3761 struct gl_shader_compiler_options ShaderCompilerOptions[MESA_SHADER_STAGES];
3762
3763 /** GL_ARB_tessellation_shader */
3764 GLuint MaxPatchVertices;
3765 GLuint MaxTessGenLevel;
3766 GLuint MaxTessPatchComponents;
3767 GLuint MaxTessControlTotalOutputComponents;
3768 bool LowerTessLevel; /**< Lower gl_TessLevel* from float[n] to vecn? */
3769 bool LowerTCSPatchVerticesIn; /**< Lower gl_PatchVerticesIn to a uniform */
3770 bool LowerTESPatchVerticesIn; /**< Lower gl_PatchVerticesIn to a uniform */
3771 bool PrimitiveRestartForPatches;
3772 bool LowerCsDerivedVariables; /**< Lower gl_GlobalInvocationID and
3773 * gl_LocalInvocationIndex based on
3774 * other builtin variables. */
3775
3776 /** GL_OES_primitive_bounding_box */
3777 bool NoPrimitiveBoundingBoxOutput;
3778 };
3779
3780
3781 /**
3782 * Enable flag for each OpenGL extension. Different device drivers will
3783 * enable different extensions at runtime.
3784 */
3785 struct gl_extensions
3786 {
3787 GLboolean dummy; /* don't remove this! */
3788 GLboolean dummy_true; /* Set true by _mesa_init_extensions(). */
3789 GLboolean dummy_false; /* Set false by _mesa_init_extensions(). */
3790 GLboolean ANGLE_texture_compression_dxt;
3791 GLboolean ARB_ES2_compatibility;
3792 GLboolean ARB_ES3_compatibility;
3793 GLboolean ARB_ES3_1_compatibility;
3794 GLboolean ARB_ES3_2_compatibility;
3795 GLboolean ARB_arrays_of_arrays;
3796 GLboolean ARB_base_instance;
3797 GLboolean ARB_blend_func_extended;
3798 GLboolean ARB_buffer_storage;
3799 GLboolean ARB_clear_texture;
3800 GLboolean ARB_clip_control;
3801 GLboolean ARB_color_buffer_float;
3802 GLboolean ARB_compute_shader;
3803 GLboolean ARB_compute_variable_group_size;
3804 GLboolean ARB_conditional_render_inverted;
3805 GLboolean ARB_conservative_depth;
3806 GLboolean ARB_copy_image;
3807 GLboolean ARB_cull_distance;
3808 GLboolean ARB_depth_buffer_float;
3809 GLboolean ARB_depth_clamp;
3810 GLboolean ARB_depth_texture;
3811 GLboolean ARB_derivative_control;
3812 GLboolean ARB_draw_buffers_blend;
3813 GLboolean ARB_draw_elements_base_vertex;
3814 GLboolean ARB_draw_indirect;
3815 GLboolean ARB_draw_instanced;
3816 GLboolean ARB_fragment_coord_conventions;
3817 GLboolean ARB_fragment_layer_viewport;
3818 GLboolean ARB_fragment_program;
3819 GLboolean ARB_fragment_program_shadow;
3820 GLboolean ARB_fragment_shader;
3821 GLboolean ARB_framebuffer_no_attachments;
3822 GLboolean ARB_framebuffer_object;
3823 GLboolean ARB_enhanced_layouts;
3824 GLboolean ARB_explicit_attrib_location;
3825 GLboolean ARB_explicit_uniform_location;
3826 GLboolean ARB_gpu_shader5;
3827 GLboolean ARB_gpu_shader_fp64;
3828 GLboolean ARB_half_float_vertex;
3829 GLboolean ARB_indirect_parameters;
3830 GLboolean ARB_instanced_arrays;
3831 GLboolean ARB_internalformat_query;
3832 GLboolean ARB_internalformat_query2;
3833 GLboolean ARB_map_buffer_range;
3834 GLboolean ARB_occlusion_query;
3835 GLboolean ARB_occlusion_query2;
3836 GLboolean ARB_pipeline_statistics_query;
3837 GLboolean ARB_point_sprite;
3838 GLboolean ARB_post_depth_coverage;
3839 GLboolean ARB_query_buffer_object;
3840 GLboolean ARB_robust_buffer_access_behavior;
3841 GLboolean ARB_sample_shading;
3842 GLboolean ARB_seamless_cube_map;
3843 GLboolean ARB_shader_atomic_counter_ops;
3844 GLboolean ARB_shader_atomic_counters;
3845 GLboolean ARB_shader_bit_encoding;
3846 GLboolean ARB_shader_clock;
3847 GLboolean ARB_shader_draw_parameters;
3848 GLboolean ARB_shader_group_vote;
3849 GLboolean ARB_shader_image_load_store;
3850 GLboolean ARB_shader_image_size;
3851 GLboolean ARB_shader_precision;
3852 GLboolean ARB_shader_stencil_export;
3853 GLboolean ARB_shader_storage_buffer_object;
3854 GLboolean ARB_shader_subroutine;
3855 GLboolean ARB_shader_texture_image_samples;
3856 GLboolean ARB_shader_texture_lod;
3857 GLboolean ARB_shader_viewport_layer_array;
3858 GLboolean ARB_shading_language_packing;
3859 GLboolean ARB_shading_language_420pack;
3860 GLboolean ARB_shadow;
3861 GLboolean ARB_stencil_texturing;
3862 GLboolean ARB_sync;
3863 GLboolean ARB_tessellation_shader;
3864 GLboolean ARB_texture_border_clamp;
3865 GLboolean ARB_texture_buffer_object;
3866 GLboolean ARB_texture_buffer_object_rgb32;
3867 GLboolean ARB_texture_buffer_range;
3868 GLboolean ARB_texture_compression_bptc;
3869 GLboolean ARB_texture_compression_rgtc;
3870 GLboolean ARB_texture_cube_map;
3871 GLboolean ARB_texture_cube_map_array;
3872 GLboolean ARB_texture_env_combine;
3873 GLboolean ARB_texture_env_crossbar;
3874 GLboolean ARB_texture_env_dot3;
3875 GLboolean ARB_texture_float;
3876 GLboolean ARB_texture_gather;
3877 GLboolean ARB_texture_mirror_clamp_to_edge;
3878 GLboolean ARB_texture_multisample;
3879 GLboolean ARB_texture_non_power_of_two;
3880 GLboolean ARB_texture_stencil8;
3881 GLboolean ARB_texture_query_levels;
3882 GLboolean ARB_texture_query_lod;
3883 GLboolean ARB_texture_rg;
3884 GLboolean ARB_texture_rgb10_a2ui;
3885 GLboolean ARB_texture_view;
3886 GLboolean ARB_timer_query;
3887 GLboolean ARB_transform_feedback2;
3888 GLboolean ARB_transform_feedback3;
3889 GLboolean ARB_transform_feedback_instanced;
3890 GLboolean ARB_uniform_buffer_object;
3891 GLboolean ARB_vertex_attrib_64bit;
3892 GLboolean ARB_vertex_program;
3893 GLboolean ARB_vertex_shader;
3894 GLboolean ARB_vertex_type_10f_11f_11f_rev;
3895 GLboolean ARB_vertex_type_2_10_10_10_rev;
3896 GLboolean ARB_viewport_array;
3897 GLboolean EXT_blend_color;
3898 GLboolean EXT_blend_equation_separate;
3899 GLboolean EXT_blend_func_separate;
3900 GLboolean EXT_blend_minmax;
3901 GLboolean EXT_depth_bounds_test;
3902 GLboolean EXT_draw_buffers2;
3903 GLboolean EXT_framebuffer_multisample;
3904 GLboolean EXT_framebuffer_multisample_blit_scaled;
3905 GLboolean EXT_framebuffer_sRGB;
3906 GLboolean EXT_gpu_program_parameters;
3907 GLboolean EXT_gpu_shader4;
3908 GLboolean EXT_packed_float;
3909 GLboolean EXT_pixel_buffer_object;
3910 GLboolean EXT_point_parameters;
3911 GLboolean EXT_polygon_offset_clamp;
3912 GLboolean EXT_provoking_vertex;
3913 GLboolean EXT_shader_integer_mix;
3914 GLboolean EXT_shader_samples_identical;
3915 GLboolean EXT_stencil_two_side;
3916 GLboolean EXT_texture_array;
3917 GLboolean EXT_texture_compression_latc;
3918 GLboolean EXT_texture_compression_s3tc;
3919 GLboolean EXT_texture_env_dot3;
3920 GLboolean EXT_texture_filter_anisotropic;
3921 GLboolean EXT_texture_integer;
3922 GLboolean EXT_texture_mirror_clamp;
3923 GLboolean EXT_texture_shared_exponent;
3924 GLboolean EXT_texture_snorm;
3925 GLboolean EXT_texture_sRGB;
3926 GLboolean EXT_texture_sRGB_decode;
3927 GLboolean EXT_texture_swizzle;
3928 GLboolean EXT_transform_feedback;
3929 GLboolean EXT_timer_query;
3930 GLboolean EXT_vertex_array_bgra;
3931 GLboolean EXT_window_rectangles;
3932 GLboolean OES_copy_image;
3933 GLboolean OES_primitive_bounding_box;
3934 GLboolean OES_sample_variables;
3935 GLboolean OES_standard_derivatives;
3936 GLboolean OES_texture_buffer;
3937 GLboolean OES_texture_cube_map_array;
3938 GLboolean OES_viewport_array;
3939 /* vendor extensions */
3940 GLboolean AMD_performance_monitor;
3941 GLboolean AMD_pinned_memory;
3942 GLboolean AMD_seamless_cubemap_per_texture;
3943 GLboolean AMD_vertex_shader_layer;
3944 GLboolean AMD_vertex_shader_viewport_index;
3945 GLboolean ANDROID_extension_pack_es31a;
3946 GLboolean APPLE_object_purgeable;
3947 GLboolean ATI_meminfo;
3948 GLboolean ATI_texture_compression_3dc;
3949 GLboolean ATI_texture_mirror_once;
3950 GLboolean ATI_texture_env_combine3;
3951 GLboolean ATI_fragment_shader;
3952 GLboolean ATI_separate_stencil;
3953 GLboolean GREMEDY_string_marker;
3954 GLboolean INTEL_conservative_rasterization;
3955 GLboolean INTEL_performance_query;
3956 GLboolean KHR_blend_equation_advanced;
3957 GLboolean KHR_blend_equation_advanced_coherent;
3958 GLboolean KHR_robustness;
3959 GLboolean KHR_texture_compression_astc_hdr;
3960 GLboolean KHR_texture_compression_astc_ldr;
3961 GLboolean KHR_texture_compression_astc_sliced_3d;
3962 GLboolean MESA_pack_invert;
3963 GLboolean MESA_shader_framebuffer_fetch;
3964 GLboolean MESA_shader_framebuffer_fetch_non_coherent;
3965 GLboolean MESA_shader_integer_functions;
3966 GLboolean MESA_ycbcr_texture;
3967 GLboolean NV_conditional_render;
3968 GLboolean NV_fog_distance;
3969 GLboolean NV_point_sprite;
3970 GLboolean NV_primitive_restart;
3971 GLboolean NV_texture_barrier;
3972 GLboolean NV_texture_env_combine4;
3973 GLboolean NV_texture_rectangle;
3974 GLboolean NV_vdpau_interop;
3975 GLboolean NVX_gpu_memory_info;
3976 GLboolean TDFX_texture_compression_FXT1;
3977 GLboolean OES_EGL_image;
3978 GLboolean OES_draw_texture;
3979 GLboolean OES_depth_texture_cube_map;
3980 GLboolean OES_EGL_image_external;
3981 GLboolean OES_texture_float;
3982 GLboolean OES_texture_float_linear;
3983 GLboolean OES_texture_half_float;
3984 GLboolean OES_texture_half_float_linear;
3985 GLboolean OES_compressed_ETC1_RGB8_texture;
3986 GLboolean OES_geometry_shader;
3987 GLboolean OES_texture_compression_astc;
3988 GLboolean extension_sentinel;
3989 /** The extension string */
3990 const GLubyte *String;
3991 /** Number of supported extensions */
3992 GLuint Count;
3993 /**
3994 * The context version which extension helper functions compare against.
3995 * By default, the value is equal to ctx->Version. This changes to ~0
3996 * while meta is in progress.
3997 */
3998 GLubyte Version;
3999 };
4000
4001
4002 /**
4003 * A stack of matrices (projection, modelview, color, texture, etc).
4004 */
4005 struct gl_matrix_stack
4006 {
4007 GLmatrix *Top; /**< points into Stack */
4008 GLmatrix *Stack; /**< array [MaxDepth] of GLmatrix */
4009 unsigned StackSize; /**< Number of elements in Stack */
4010 GLuint Depth; /**< 0 <= Depth < MaxDepth */
4011 GLuint MaxDepth; /**< size of Stack[] array */
4012 GLuint DirtyFlag; /**< _NEW_MODELVIEW or _NEW_PROJECTION, for example */
4013 };
4014
4015
4016 /**
4017 * \name Bits for image transfer operations
4018 * \sa __struct gl_contextRec::ImageTransferState.
4019 */
4020 /*@{*/
4021 #define IMAGE_SCALE_BIAS_BIT 0x1
4022 #define IMAGE_SHIFT_OFFSET_BIT 0x2
4023 #define IMAGE_MAP_COLOR_BIT 0x4
4024 #define IMAGE_CLAMP_BIT 0x800
4025
4026
4027 /** Pixel Transfer ops */
4028 #define IMAGE_BITS (IMAGE_SCALE_BIAS_BIT | \
4029 IMAGE_SHIFT_OFFSET_BIT | \
4030 IMAGE_MAP_COLOR_BIT)
4031
4032 /**
4033 * \name Bits to indicate what state has changed.
4034 */
4035 /*@{*/
4036 #define _NEW_MODELVIEW (1u << 0) /**< gl_context::ModelView */
4037 #define _NEW_PROJECTION (1u << 1) /**< gl_context::Projection */
4038 #define _NEW_TEXTURE_MATRIX (1u << 2) /**< gl_context::TextureMatrix */
4039 #define _NEW_COLOR (1u << 3) /**< gl_context::Color */
4040 #define _NEW_DEPTH (1u << 4) /**< gl_context::Depth */
4041 #define _NEW_EVAL (1u << 5) /**< gl_context::Eval, EvalMap */
4042 #define _NEW_FOG (1u << 6) /**< gl_context::Fog */
4043 #define _NEW_HINT (1u << 7) /**< gl_context::Hint */
4044 #define _NEW_LIGHT (1u << 8) /**< gl_context::Light */
4045 #define _NEW_LINE (1u << 9) /**< gl_context::Line */
4046 #define _NEW_PIXEL (1u << 10) /**< gl_context::Pixel */
4047 #define _NEW_POINT (1u << 11) /**< gl_context::Point */
4048 #define _NEW_POLYGON (1u << 12) /**< gl_context::Polygon */
4049 #define _NEW_POLYGONSTIPPLE (1u << 13) /**< gl_context::PolygonStipple */
4050 #define _NEW_SCISSOR (1u << 14) /**< gl_context::Scissor */
4051 #define _NEW_STENCIL (1u << 15) /**< gl_context::Stencil */
4052 #define _NEW_TEXTURE (1u << 16) /**< gl_context::Texture */
4053 #define _NEW_TRANSFORM (1u << 17) /**< gl_context::Transform */
4054 #define _NEW_VIEWPORT (1u << 18) /**< gl_context::Viewport */
4055 /* gap, re-use for core Mesa state only; use ctx->DriverFlags otherwise */
4056 #define _NEW_ARRAY (1u << 20) /**< gl_context::Array */
4057 #define _NEW_RENDERMODE (1u << 21) /**< gl_context::RenderMode, etc */
4058 #define _NEW_BUFFERS (1u << 22) /**< gl_context::Visual, DrawBuffer, */
4059 #define _NEW_CURRENT_ATTRIB (1u << 23) /**< gl_context::Current */
4060 #define _NEW_MULTISAMPLE (1u << 24) /**< gl_context::Multisample */
4061 #define _NEW_TRACK_MATRIX (1u << 25) /**< gl_context::VertexProgram */
4062 #define _NEW_PROGRAM (1u << 26) /**< New program/shader state */
4063 #define _NEW_PROGRAM_CONSTANTS (1u << 27)
4064 #define _NEW_BUFFER_OBJECT (1u << 28)
4065 #define _NEW_FRAG_CLAMP (1u << 29)
4066 /* gap, re-use for core Mesa state only; use ctx->DriverFlags otherwise */
4067 #define _NEW_VARYING_VP_INPUTS (1u << 31) /**< gl_context::varying_vp_inputs */
4068 #define _NEW_ALL ~0
4069 /*@}*/
4070
4071
4072 /**
4073 * Composite state flags
4074 */
4075 /*@{*/
4076 #define _MESA_NEW_NEED_EYE_COORDS (_NEW_LIGHT | \
4077 _NEW_TEXTURE | \
4078 _NEW_POINT | \
4079 _NEW_PROGRAM | \
4080 _NEW_MODELVIEW)
4081
4082 #define _MESA_NEW_SEPARATE_SPECULAR (_NEW_LIGHT | \
4083 _NEW_FOG | \
4084 _NEW_PROGRAM)
4085
4086
4087 /*@}*/
4088
4089
4090
4091
4092 /* This has to be included here. */
4093 #include "dd.h"
4094
4095
4096 /**
4097 * Display list flags.
4098 * Strictly this is a tnl-private concept, but it doesn't seem
4099 * worthwhile adding a tnl private structure just to hold this one bit
4100 * of information:
4101 */
4102 #define DLIST_DANGLING_REFS 0x1
4103
4104
4105 /** Opaque declaration of display list payload data type */
4106 union gl_dlist_node;
4107
4108
4109 /**
4110 * Provide a location where information about a display list can be
4111 * collected. Could be extended with driverPrivate structures,
4112 * etc. in the future.
4113 */
4114 struct gl_display_list
4115 {
4116 GLuint Name;
4117 GLchar *Label; /**< GL_KHR_debug */
4118 GLbitfield Flags; /**< DLIST_x flags */
4119 /** The dlist commands are in a linked list of nodes */
4120 union gl_dlist_node *Head;
4121 };
4122
4123
4124 /**
4125 * State used during display list compilation and execution.
4126 */
4127 struct gl_dlist_state
4128 {
4129 GLuint CallDepth; /**< Current recursion calling depth */
4130
4131 struct gl_display_list *CurrentList; /**< List currently being compiled */
4132 union gl_dlist_node *CurrentBlock; /**< Pointer to current block of nodes */
4133 GLuint CurrentPos; /**< Index into current block of nodes */
4134
4135 GLvertexformat ListVtxfmt;
4136
4137 GLubyte ActiveAttribSize[VERT_ATTRIB_MAX];
4138 GLfloat CurrentAttrib[VERT_ATTRIB_MAX][4];
4139
4140 GLubyte ActiveMaterialSize[MAT_ATTRIB_MAX];
4141 GLfloat CurrentMaterial[MAT_ATTRIB_MAX][4];
4142
4143 struct {
4144 /* State known to have been set by the currently-compiling display
4145 * list. Used to eliminate some redundant state changes.
4146 */
4147 GLenum ShadeModel;
4148 } Current;
4149 };
4150
4151 /** @{
4152 *
4153 * These are a mapping of the GL_ARB_debug_output/GL_KHR_debug enums
4154 * to small enums suitable for use as an array index.
4155 */
4156
4157 enum mesa_debug_source {
4158 MESA_DEBUG_SOURCE_API,
4159 MESA_DEBUG_SOURCE_WINDOW_SYSTEM,
4160 MESA_DEBUG_SOURCE_SHADER_COMPILER,
4161 MESA_DEBUG_SOURCE_THIRD_PARTY,
4162 MESA_DEBUG_SOURCE_APPLICATION,
4163 MESA_DEBUG_SOURCE_OTHER,
4164 MESA_DEBUG_SOURCE_COUNT
4165 };
4166
4167 enum mesa_debug_type {
4168 MESA_DEBUG_TYPE_ERROR,
4169 MESA_DEBUG_TYPE_DEPRECATED,
4170 MESA_DEBUG_TYPE_UNDEFINED,
4171 MESA_DEBUG_TYPE_PORTABILITY,
4172 MESA_DEBUG_TYPE_PERFORMANCE,
4173 MESA_DEBUG_TYPE_OTHER,
4174 MESA_DEBUG_TYPE_MARKER,
4175 MESA_DEBUG_TYPE_PUSH_GROUP,
4176 MESA_DEBUG_TYPE_POP_GROUP,
4177 MESA_DEBUG_TYPE_COUNT
4178 };
4179
4180 enum mesa_debug_severity {
4181 MESA_DEBUG_SEVERITY_LOW,
4182 MESA_DEBUG_SEVERITY_MEDIUM,
4183 MESA_DEBUG_SEVERITY_HIGH,
4184 MESA_DEBUG_SEVERITY_NOTIFICATION,
4185 MESA_DEBUG_SEVERITY_COUNT
4186 };
4187
4188 /** @} */
4189
4190 /**
4191 * Driver-specific state flags.
4192 *
4193 * These are or'd with gl_context::NewDriverState to notify a driver about
4194 * a state change. The driver sets the flags at context creation and
4195 * the meaning of the bits set is opaque to core Mesa.
4196 */
4197 struct gl_driver_flags
4198 {
4199 /** gl_context::Array::_DrawArrays (vertex array state) */
4200 uint64_t NewArray;
4201
4202 /** gl_context::TransformFeedback::CurrentObject */
4203 uint64_t NewTransformFeedback;
4204
4205 /** gl_context::TransformFeedback::CurrentObject::shader_program */
4206 uint64_t NewTransformFeedbackProg;
4207
4208 /** gl_context::RasterDiscard */
4209 uint64_t NewRasterizerDiscard;
4210
4211 /**
4212 * gl_context::UniformBufferBindings
4213 * gl_shader_program::UniformBlocks
4214 */
4215 uint64_t NewUniformBuffer;
4216
4217 /**
4218 * gl_context::ShaderStorageBufferBindings
4219 * gl_shader_program::ShaderStorageBlocks
4220 */
4221 uint64_t NewShaderStorageBuffer;
4222
4223 uint64_t NewTextureBuffer;
4224
4225 /**
4226 * gl_context::AtomicBufferBindings
4227 */
4228 uint64_t NewAtomicBuffer;
4229
4230 /**
4231 * gl_context::ImageUnits
4232 */
4233 uint64_t NewImageUnits;
4234
4235 /**
4236 * gl_context::TessCtrlProgram::patch_default_*
4237 */
4238 uint64_t NewDefaultTessLevels;
4239
4240 /**
4241 * gl_context::IntelConservativeRasterization
4242 */
4243 uint64_t NewIntelConservativeRasterization;
4244 };
4245
4246 struct gl_uniform_buffer_binding
4247 {
4248 struct gl_buffer_object *BufferObject;
4249 /** Start of uniform block data in the buffer */
4250 GLintptr Offset;
4251 /** Size of data allowed to be referenced from the buffer (in bytes) */
4252 GLsizeiptr Size;
4253 /**
4254 * glBindBufferBase() indicates that the Size should be ignored and only
4255 * limited by the current size of the BufferObject.
4256 */
4257 GLboolean AutomaticSize;
4258 };
4259
4260 struct gl_shader_storage_buffer_binding
4261 {
4262 struct gl_buffer_object *BufferObject;
4263 /** Start of shader storage block data in the buffer */
4264 GLintptr Offset;
4265 /** Size of data allowed to be referenced from the buffer (in bytes) */
4266 GLsizeiptr Size;
4267 /**
4268 * glBindBufferBase() indicates that the Size should be ignored and only
4269 * limited by the current size of the BufferObject.
4270 */
4271 GLboolean AutomaticSize;
4272 };
4273
4274 /**
4275 * ARB_shader_image_load_store image unit.
4276 */
4277 struct gl_image_unit
4278 {
4279 /**
4280 * Texture object bound to this unit.
4281 */
4282 struct gl_texture_object *TexObj;
4283
4284 /**
4285 * Level of the texture object bound to this unit.
4286 */
4287 GLuint Level;
4288
4289 /**
4290 * \c GL_TRUE if the whole level is bound as an array of layers, \c
4291 * GL_FALSE if only some specific layer of the texture is bound.
4292 * \sa Layer
4293 */
4294 GLboolean Layered;
4295
4296 /**
4297 * Layer of the texture object bound to this unit as specified by the
4298 * application.
4299 */
4300 GLuint Layer;
4301
4302 /**
4303 * Layer of the texture object bound to this unit, or zero if the
4304 * whole level is bound.
4305 */
4306 GLuint _Layer;
4307
4308 /**
4309 * Access allowed to this texture image. Either \c GL_READ_ONLY,
4310 * \c GL_WRITE_ONLY or \c GL_READ_WRITE.
4311 */
4312 GLenum Access;
4313
4314 /**
4315 * GL internal format that determines the interpretation of the
4316 * image memory when shader image operations are performed through
4317 * this unit.
4318 */
4319 GLenum Format;
4320
4321 /**
4322 * Mesa format corresponding to \c Format.
4323 */
4324 mesa_format _ActualFormat;
4325
4326 };
4327
4328 /**
4329 * Binding point for an atomic counter buffer object.
4330 */
4331 struct gl_atomic_buffer_binding
4332 {
4333 struct gl_buffer_object *BufferObject;
4334 GLintptr Offset;
4335 GLsizeiptr Size;
4336 };
4337
4338 /**
4339 * Shader subroutines storage
4340 */
4341 struct gl_subroutine_index_binding
4342 {
4343 GLuint NumIndex;
4344 GLuint *IndexPtr;
4345 };
4346
4347 /**
4348 * Mesa rendering context.
4349 *
4350 * This is the central context data structure for Mesa. Almost all
4351 * OpenGL state is contained in this structure.
4352 * Think of this as a base class from which device drivers will derive
4353 * sub classes.
4354 */
4355 struct gl_context
4356 {
4357 /** State possibly shared with other contexts in the address space */
4358 struct gl_shared_state *Shared;
4359
4360 /** \name API function pointer tables */
4361 /*@{*/
4362 gl_api API;
4363 /**
4364 * The current dispatch table for non-displaylist-saving execution, either
4365 * BeginEnd or OutsideBeginEnd
4366 */
4367 struct _glapi_table *Exec;
4368 /**
4369 * The normal dispatch table for non-displaylist-saving, non-begin/end
4370 */
4371 struct _glapi_table *OutsideBeginEnd;
4372 /** The dispatch table used between glNewList() and glEndList() */
4373 struct _glapi_table *Save;
4374 /**
4375 * The dispatch table used between glBegin() and glEnd() (outside of a
4376 * display list). Only valid functions between those two are set, which is
4377 * mostly just the set in a GLvertexformat struct.
4378 */
4379 struct _glapi_table *BeginEnd;
4380 /**
4381 * Dispatch table for when a graphics reset has happened.
4382 */
4383 struct _glapi_table *ContextLost;
4384 /**
4385 * Tracks the current dispatch table out of the 4 above, so that it can be
4386 * re-set on glXMakeCurrent().
4387 */
4388 struct _glapi_table *CurrentDispatch;
4389 /*@}*/
4390
4391 struct gl_config Visual;
4392 struct gl_framebuffer *DrawBuffer; /**< buffer for writing */
4393 struct gl_framebuffer *ReadBuffer; /**< buffer for reading */
4394 struct gl_framebuffer *WinSysDrawBuffer; /**< set with MakeCurrent */
4395 struct gl_framebuffer *WinSysReadBuffer; /**< set with MakeCurrent */
4396
4397 /**
4398 * Device driver function pointer table
4399 */
4400 struct dd_function_table Driver;
4401
4402 /** Core/Driver constants */
4403 struct gl_constants Const;
4404
4405 /** \name The various 4x4 matrix stacks */
4406 /*@{*/
4407 struct gl_matrix_stack ModelviewMatrixStack;
4408 struct gl_matrix_stack ProjectionMatrixStack;
4409 struct gl_matrix_stack TextureMatrixStack[MAX_TEXTURE_UNITS];
4410 struct gl_matrix_stack ProgramMatrixStack[MAX_PROGRAM_MATRICES];
4411 struct gl_matrix_stack *CurrentStack; /**< Points to one of the above stacks */
4412 /*@}*/
4413
4414 /** Combined modelview and projection matrix */
4415 GLmatrix _ModelProjectMatrix;
4416
4417 /** \name Display lists */
4418 struct gl_dlist_state ListState;
4419
4420 GLboolean ExecuteFlag; /**< Execute GL commands? */
4421 GLboolean CompileFlag; /**< Compile GL commands into display list? */
4422
4423 /** Extension information */
4424 struct gl_extensions Extensions;
4425
4426 /** GL version integer, for example 31 for GL 3.1, or 20 for GLES 2.0. */
4427 GLuint Version;
4428 char *VersionString;
4429
4430 /** \name State attribute stack (for glPush/PopAttrib) */
4431 /*@{*/
4432 GLuint AttribStackDepth;
4433 struct gl_attrib_node *AttribStack[MAX_ATTRIB_STACK_DEPTH];
4434 /*@}*/
4435
4436 /** \name Renderer attribute groups
4437 *
4438 * We define a struct for each attribute group to make pushing and popping
4439 * attributes easy. Also it's a good organization.
4440 */
4441 /*@{*/
4442 struct gl_accum_attrib Accum; /**< Accum buffer attributes */
4443 struct gl_colorbuffer_attrib Color; /**< Color buffer attributes */
4444 struct gl_current_attrib Current; /**< Current attributes */
4445 struct gl_depthbuffer_attrib Depth; /**< Depth buffer attributes */
4446 struct gl_eval_attrib Eval; /**< Eval attributes */
4447 struct gl_fog_attrib Fog; /**< Fog attributes */
4448 struct gl_hint_attrib Hint; /**< Hint attributes */
4449 struct gl_light_attrib Light; /**< Light attributes */
4450 struct gl_line_attrib Line; /**< Line attributes */
4451 struct gl_list_attrib List; /**< List attributes */
4452 struct gl_multisample_attrib Multisample;
4453 struct gl_pixel_attrib Pixel; /**< Pixel attributes */
4454 struct gl_point_attrib Point; /**< Point attributes */
4455 struct gl_polygon_attrib Polygon; /**< Polygon attributes */
4456 GLuint PolygonStipple[32]; /**< Polygon stipple */
4457 struct gl_scissor_attrib Scissor; /**< Scissor attributes */
4458 struct gl_stencil_attrib Stencil; /**< Stencil buffer attributes */
4459 struct gl_texture_attrib Texture; /**< Texture attributes */
4460 struct gl_transform_attrib Transform; /**< Transformation attributes */
4461 struct gl_viewport_attrib ViewportArray[MAX_VIEWPORTS]; /**< Viewport attributes */
4462 /*@}*/
4463
4464 /** \name Client attribute stack */
4465 /*@{*/
4466 GLuint ClientAttribStackDepth;
4467 struct gl_attrib_node *ClientAttribStack[MAX_CLIENT_ATTRIB_STACK_DEPTH];
4468 /*@}*/
4469
4470 /** \name Client attribute groups */
4471 /*@{*/
4472 struct gl_array_attrib Array; /**< Vertex arrays */
4473 struct gl_pixelstore_attrib Pack; /**< Pixel packing */
4474 struct gl_pixelstore_attrib Unpack; /**< Pixel unpacking */
4475 struct gl_pixelstore_attrib DefaultPacking; /**< Default params */
4476 /*@}*/
4477
4478 /** \name Other assorted state (not pushed/popped on attribute stack) */
4479 /*@{*/
4480 struct gl_pixelmaps PixelMaps;
4481
4482 struct gl_evaluators EvalMap; /**< All evaluators */
4483 struct gl_feedback Feedback; /**< Feedback */
4484 struct gl_selection Select; /**< Selection */
4485
4486 struct gl_program_state Program; /**< general program state */
4487 struct gl_vertex_program_state VertexProgram;
4488 struct gl_fragment_program_state FragmentProgram;
4489 struct gl_geometry_program_state GeometryProgram;
4490 struct gl_compute_program_state ComputeProgram;
4491 struct gl_tess_ctrl_program_state TessCtrlProgram;
4492 struct gl_tess_eval_program_state TessEvalProgram;
4493 struct gl_ati_fragment_shader_state ATIFragmentShader;
4494
4495 struct gl_pipeline_shader_state Pipeline; /**< GLSL pipeline shader object state */
4496 struct gl_pipeline_object Shader; /**< GLSL shader object state */
4497
4498 /**
4499 * Current active shader pipeline state
4500 *
4501 * Almost all internal users want ::_Shader instead of ::Shader. The
4502 * exceptions are bits of legacy GLSL API that do not know about separate
4503 * shader objects.
4504 *
4505 * If a program is active via \c glUseProgram, this will point to
4506 * \c ::Shader.
4507 *
4508 * If a program pipeline is active via \c glBindProgramPipeline, this will
4509 * point to \c ::Pipeline.Current.
4510 *
4511 * If neither a program nor a program pipeline is active, this will point to
4512 * \c ::Pipeline.Default. This ensures that \c ::_Shader will never be
4513 * \c NULL.
4514 */
4515 struct gl_pipeline_object *_Shader;
4516
4517 struct gl_query_state Query; /**< occlusion, timer queries */
4518
4519 struct gl_transform_feedback_state TransformFeedback;
4520
4521 struct gl_perf_monitor_state PerfMonitor;
4522
4523 struct gl_buffer_object *DrawIndirectBuffer; /** < GL_ARB_draw_indirect */
4524 struct gl_buffer_object *ParameterBuffer; /** < GL_ARB_indirect_parameters */
4525 struct gl_buffer_object *DispatchIndirectBuffer; /** < GL_ARB_compute_shader */
4526
4527 struct gl_buffer_object *CopyReadBuffer; /**< GL_ARB_copy_buffer */
4528 struct gl_buffer_object *CopyWriteBuffer; /**< GL_ARB_copy_buffer */
4529
4530 struct gl_buffer_object *QueryBuffer; /**< GL_ARB_query_buffer_object */
4531
4532 /**
4533 * Current GL_ARB_uniform_buffer_object binding referenced by
4534 * GL_UNIFORM_BUFFER target for glBufferData, glMapBuffer, etc.
4535 */
4536 struct gl_buffer_object *UniformBuffer;
4537
4538 /**
4539 * Current GL_ARB_shader_storage_buffer_object binding referenced by
4540 * GL_SHADER_STORAGE_BUFFER target for glBufferData, glMapBuffer, etc.
4541 */
4542 struct gl_buffer_object *ShaderStorageBuffer;
4543
4544 /**
4545 * Array of uniform buffers for GL_ARB_uniform_buffer_object and GL 3.1.
4546 * This is set up using glBindBufferRange() or glBindBufferBase(). They are
4547 * associated with uniform blocks by glUniformBlockBinding()'s state in the
4548 * shader program.
4549 */
4550 struct gl_uniform_buffer_binding
4551 UniformBufferBindings[MAX_COMBINED_UNIFORM_BUFFERS];
4552
4553 /**
4554 * Array of shader storage buffers for ARB_shader_storage_buffer_object
4555 * and GL 4.3. This is set up using glBindBufferRange() or
4556 * glBindBufferBase(). They are associated with shader storage blocks by
4557 * glShaderStorageBlockBinding()'s state in the shader program.
4558 */
4559 struct gl_shader_storage_buffer_binding
4560 ShaderStorageBufferBindings[MAX_COMBINED_SHADER_STORAGE_BUFFERS];
4561
4562 /**
4563 * Object currently associated with the GL_ATOMIC_COUNTER_BUFFER
4564 * target.
4565 */
4566 struct gl_buffer_object *AtomicBuffer;
4567
4568 /**
4569 * Object currently associated w/ the GL_EXTERNAL_VIRTUAL_MEMORY_BUFFER_AMD
4570 * target.
4571 */
4572 struct gl_buffer_object *ExternalVirtualMemoryBuffer;
4573
4574 /**
4575 * Array of atomic counter buffer binding points.
4576 */
4577 struct gl_atomic_buffer_binding
4578 AtomicBufferBindings[MAX_COMBINED_ATOMIC_BUFFERS];
4579
4580 /**
4581 * Array of image units for ARB_shader_image_load_store.
4582 */
4583 struct gl_image_unit ImageUnits[MAX_IMAGE_UNITS];
4584
4585 struct gl_subroutine_index_binding SubroutineIndex[MESA_SHADER_STAGES];
4586 /*@}*/
4587
4588 struct gl_meta_state *Meta; /**< for "meta" operations */
4589
4590 /* GL_EXT_framebuffer_object */
4591 struct gl_renderbuffer *CurrentRenderbuffer;
4592
4593 GLenum ErrorValue; /**< Last error code */
4594
4595 /**
4596 * Recognize and silence repeated error debug messages in buggy apps.
4597 */
4598 const char *ErrorDebugFmtString;
4599 GLuint ErrorDebugCount;
4600
4601 /* GL_ARB_debug_output/GL_KHR_debug */
4602 mtx_t DebugMutex;
4603 struct gl_debug_state *Debug;
4604
4605 GLenum RenderMode; /**< either GL_RENDER, GL_SELECT, GL_FEEDBACK */
4606 GLbitfield NewState; /**< bitwise-or of _NEW_* flags */
4607 uint64_t NewDriverState; /**< bitwise-or of flags from DriverFlags */
4608
4609 struct gl_driver_flags DriverFlags;
4610
4611 GLboolean ViewportInitialized; /**< has viewport size been initialized? */
4612
4613 GLbitfield64 varying_vp_inputs; /**< mask of VERT_BIT_* flags */
4614
4615 /** \name Derived state */
4616 GLbitfield _ImageTransferState;/**< bitwise-or of IMAGE_*_BIT flags */
4617 GLfloat _EyeZDir[3];
4618 GLfloat _ModelViewInvScale;
4619 GLboolean _NeedEyeCoords;
4620 GLboolean _ForceEyeCoords;
4621
4622 GLuint TextureStateTimestamp; /**< detect changes to shared state */
4623
4624 struct gl_list_extensions *ListExt; /**< driver dlist extensions */
4625
4626 /** \name For debugging/development only */
4627 /*@{*/
4628 GLboolean FirstTimeCurrent;
4629 /*@}*/
4630
4631 /**
4632 * False if this context was created without a config. This is needed
4633 * because the initial state of glDrawBuffers depends on this
4634 */
4635 GLboolean HasConfig;
4636
4637 /** software compression/decompression supported or not */
4638 GLboolean Mesa_DXTn;
4639
4640 GLboolean TextureFormatSupported[MESA_FORMAT_COUNT];
4641
4642 GLboolean RasterDiscard; /**< GL_RASTERIZER_DISCARD */
4643 GLboolean IntelConservativeRasterization; /**< GL_INTEL_CONSERVATIVE_RASTERIZATION */
4644
4645 /**
4646 * \name Hooks for module contexts.
4647 *
4648 * These will eventually live in the driver or elsewhere.
4649 */
4650 /*@{*/
4651 void *swrast_context;
4652 void *swsetup_context;
4653 void *swtnl_context;
4654 struct vbo_context *vbo_context;
4655 struct st_context *st;
4656 void *aelt_context;
4657 /*@}*/
4658
4659 /**
4660 * \name NV_vdpau_interop
4661 */
4662 /*@{*/
4663 const void *vdpDevice;
4664 const void *vdpGetProcAddress;
4665 struct set *vdpSurfaces;
4666 /*@}*/
4667
4668 /**
4669 * Has this context observed a GPU reset in any context in the share group?
4670 *
4671 * Once this field becomes true, it is never reset to false.
4672 */
4673 GLboolean ShareGroupReset;
4674
4675 /**
4676 * \name OES_primitive_bounding_box
4677 *
4678 * Stores the arguments to glPrimitiveBoundingBox
4679 */
4680 GLfloat PrimitiveBoundingBox[8];
4681 };
4682
4683 /**
4684 * Information about memory usage. All sizes are in kilobytes.
4685 */
4686 struct gl_memory_info
4687 {
4688 unsigned total_device_memory; /**< size of device memory, e.g. VRAM */
4689 unsigned avail_device_memory; /**< free device memory at the moment */
4690 unsigned total_staging_memory; /**< size of staging memory, e.g. GART */
4691 unsigned avail_staging_memory; /**< free staging memory at the moment */
4692 unsigned device_memory_evicted; /**< size of memory evicted (monotonic counter) */
4693 unsigned nr_device_memory_evictions; /**< # of evictions (monotonic counter) */
4694 };
4695
4696 #ifdef DEBUG
4697 extern int MESA_VERBOSE;
4698 extern int MESA_DEBUG_FLAGS;
4699 # define MESA_FUNCTION __func__
4700 #else
4701 # define MESA_VERBOSE 0
4702 # define MESA_DEBUG_FLAGS 0
4703 # define MESA_FUNCTION "a function"
4704 #endif
4705
4706
4707 /** The MESA_VERBOSE var is a bitmask of these flags */
4708 enum _verbose
4709 {
4710 VERBOSE_VARRAY = 0x0001,
4711 VERBOSE_TEXTURE = 0x0002,
4712 VERBOSE_MATERIAL = 0x0004,
4713 VERBOSE_PIPELINE = 0x0008,
4714 VERBOSE_DRIVER = 0x0010,
4715 VERBOSE_STATE = 0x0020,
4716 VERBOSE_API = 0x0040,
4717 VERBOSE_DISPLAY_LIST = 0x0100,
4718 VERBOSE_LIGHTING = 0x0200,
4719 VERBOSE_PRIMS = 0x0400,
4720 VERBOSE_VERTS = 0x0800,
4721 VERBOSE_DISASSEM = 0x1000,
4722 VERBOSE_DRAW = 0x2000,
4723 VERBOSE_SWAPBUFFERS = 0x4000
4724 };
4725
4726
4727 /** The MESA_DEBUG_FLAGS var is a bitmask of these flags */
4728 enum _debug
4729 {
4730 DEBUG_SILENT = (1 << 0),
4731 DEBUG_ALWAYS_FLUSH = (1 << 1),
4732 DEBUG_INCOMPLETE_TEXTURE = (1 << 2),
4733 DEBUG_INCOMPLETE_FBO = (1 << 3),
4734 DEBUG_CONTEXT = (1 << 4)
4735 };
4736
4737 #ifdef __cplusplus
4738 }
4739 #endif
4740
4741 #endif /* MTYPES_H */