Replace gl_frag_attrib enum with gl_varying_slot.
[mesa.git] / src / mesa / main / context.c
1 /*
2 * Mesa 3-D graphics library
3 * Version: 7.3
4 *
5 * Copyright (C) 1999-2007 Brian Paul All Rights Reserved.
6 * Copyright (C) 2008 VMware, Inc. All Rights Reserved.
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a
9 * copy of this software and associated documentation files (the "Software"),
10 * to deal in the Software without restriction, including without limitation
11 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
12 * and/or sell copies of the Software, and to permit persons to whom the
13 * Software is furnished to do so, subject to the following conditions:
14 *
15 * The above copyright notice and this permission notice shall be included
16 * in all copies or substantial portions of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
21 * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
22 * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
23 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
24 */
25
26 /**
27 * \file context.c
28 * Mesa context/visual/framebuffer management functions.
29 * \author Brian Paul
30 */
31
32 /**
33 * \mainpage Mesa Main Module
34 *
35 * \section MainIntroduction Introduction
36 *
37 * The Mesa Main module consists of all the files in the main/ directory.
38 * Among the features of this module are:
39 * <UL>
40 * <LI> Structures to represent most GL state </LI>
41 * <LI> State set/get functions </LI>
42 * <LI> Display lists </LI>
43 * <LI> Texture unit, object and image handling </LI>
44 * <LI> Matrix and attribute stacks </LI>
45 * </UL>
46 *
47 * Other modules are responsible for API dispatch, vertex transformation,
48 * point/line/triangle setup, rasterization, vertex array caching,
49 * vertex/fragment programs/shaders, etc.
50 *
51 *
52 * \section AboutDoxygen About Doxygen
53 *
54 * If you're viewing this information as Doxygen-generated HTML you'll
55 * see the documentation index at the top of this page.
56 *
57 * The first line lists the Mesa source code modules.
58 * The second line lists the indexes available for viewing the documentation
59 * for each module.
60 *
61 * Selecting the <b>Main page</b> link will display a summary of the module
62 * (this page).
63 *
64 * Selecting <b>Data Structures</b> will list all C structures.
65 *
66 * Selecting the <b>File List</b> link will list all the source files in
67 * the module.
68 * Selecting a filename will show a list of all functions defined in that file.
69 *
70 * Selecting the <b>Data Fields</b> link will display a list of all
71 * documented structure members.
72 *
73 * Selecting the <b>Globals</b> link will display a list
74 * of all functions, structures, global variables and macros in the module.
75 *
76 */
77
78
79 #include "glheader.h"
80 #include "mfeatures.h"
81 #include "imports.h"
82 #include "accum.h"
83 #include "api_exec.h"
84 #include "api_loopback.h"
85 #include "arrayobj.h"
86 #include "attrib.h"
87 #include "blend.h"
88 #include "buffers.h"
89 #include "bufferobj.h"
90 #include "context.h"
91 #include "cpuinfo.h"
92 #include "debug.h"
93 #include "depth.h"
94 #include "dlist.h"
95 #include "eval.h"
96 #include "extensions.h"
97 #include "fbobject.h"
98 #include "feedback.h"
99 #include "fog.h"
100 #include "formats.h"
101 #include "framebuffer.h"
102 #include "hint.h"
103 #include "hash.h"
104 #include "light.h"
105 #include "lines.h"
106 #include "macros.h"
107 #include "matrix.h"
108 #include "multisample.h"
109 #include "pixel.h"
110 #include "pixelstore.h"
111 #include "points.h"
112 #include "polygon.h"
113 #include "queryobj.h"
114 #include "syncobj.h"
115 #include "rastpos.h"
116 #include "remap.h"
117 #include "scissor.h"
118 #include "shared.h"
119 #include "shaderobj.h"
120 #include "simple_list.h"
121 #include "state.h"
122 #include "stencil.h"
123 #include "texcompress_s3tc.h"
124 #include "texstate.h"
125 #include "transformfeedback.h"
126 #include "mtypes.h"
127 #include "varray.h"
128 #include "version.h"
129 #include "viewport.h"
130 #include "vtxfmt.h"
131 #include "program/program.h"
132 #include "program/prog_print.h"
133 #include "math/m_matrix.h"
134 #include "main/dispatch.h" /* for _gloffset_COUNT */
135
136 #ifdef USE_SPARC_ASM
137 #include "sparc/sparc.h"
138 #endif
139
140 #include "glsl_parser_extras.h"
141 #include <stdbool.h>
142
143
144 #ifndef MESA_VERBOSE
145 int MESA_VERBOSE = 0;
146 #endif
147
148 #ifndef MESA_DEBUG_FLAGS
149 int MESA_DEBUG_FLAGS = 0;
150 #endif
151
152
153 /* ubyte -> float conversion */
154 GLfloat _mesa_ubyte_to_float_color_tab[256];
155
156
157
158 /**
159 * Swap buffers notification callback.
160 *
161 * \param ctx GL context.
162 *
163 * Called by window system just before swapping buffers.
164 * We have to finish any pending rendering.
165 */
166 void
167 _mesa_notifySwapBuffers(struct gl_context *ctx)
168 {
169 if (MESA_VERBOSE & VERBOSE_SWAPBUFFERS)
170 _mesa_debug(ctx, "SwapBuffers\n");
171 FLUSH_CURRENT( ctx, 0 );
172 if (ctx->Driver.Flush) {
173 ctx->Driver.Flush(ctx);
174 }
175 }
176
177
178 /**********************************************************************/
179 /** \name GL Visual allocation/destruction */
180 /**********************************************************************/
181 /*@{*/
182
183 /**
184 * Allocates a struct gl_config structure and initializes it via
185 * _mesa_initialize_visual().
186 *
187 * \param dbFlag double buffering
188 * \param stereoFlag stereo buffer
189 * \param depthBits requested bits per depth buffer value. Any value in [0, 32]
190 * is acceptable but the actual depth type will be GLushort or GLuint as
191 * needed.
192 * \param stencilBits requested minimum bits per stencil buffer value
193 * \param accumRedBits, accumGreenBits, accumBlueBits, accumAlphaBits number
194 * of bits per color component in accum buffer.
195 * \param indexBits number of bits per pixel if \p rgbFlag is GL_FALSE
196 * \param redBits number of bits per color component in frame buffer for RGB(A)
197 * mode. We always use 8 in core Mesa though.
198 * \param greenBits same as above.
199 * \param blueBits same as above.
200 * \param alphaBits same as above.
201 * \param numSamples not really used.
202 *
203 * \return pointer to new struct gl_config or NULL if requested parameters
204 * can't be met.
205 *
206 * \note Need to add params for level and numAuxBuffers (at least)
207 */
208 struct gl_config *
209 _mesa_create_visual( GLboolean dbFlag,
210 GLboolean stereoFlag,
211 GLint redBits,
212 GLint greenBits,
213 GLint blueBits,
214 GLint alphaBits,
215 GLint depthBits,
216 GLint stencilBits,
217 GLint accumRedBits,
218 GLint accumGreenBits,
219 GLint accumBlueBits,
220 GLint accumAlphaBits,
221 GLint numSamples )
222 {
223 struct gl_config *vis = CALLOC_STRUCT(gl_config);
224 if (vis) {
225 if (!_mesa_initialize_visual(vis, dbFlag, stereoFlag,
226 redBits, greenBits, blueBits, alphaBits,
227 depthBits, stencilBits,
228 accumRedBits, accumGreenBits,
229 accumBlueBits, accumAlphaBits,
230 numSamples)) {
231 free(vis);
232 return NULL;
233 }
234 }
235 return vis;
236 }
237
238
239 /**
240 * Makes some sanity checks and fills in the fields of the struct
241 * gl_config object with the given parameters. If the caller needs to
242 * set additional fields, he should just probably init the whole
243 * gl_config object himself.
244 *
245 * \return GL_TRUE on success, or GL_FALSE on failure.
246 *
247 * \sa _mesa_create_visual() above for the parameter description.
248 */
249 GLboolean
250 _mesa_initialize_visual( struct gl_config *vis,
251 GLboolean dbFlag,
252 GLboolean stereoFlag,
253 GLint redBits,
254 GLint greenBits,
255 GLint blueBits,
256 GLint alphaBits,
257 GLint depthBits,
258 GLint stencilBits,
259 GLint accumRedBits,
260 GLint accumGreenBits,
261 GLint accumBlueBits,
262 GLint accumAlphaBits,
263 GLint numSamples )
264 {
265 assert(vis);
266
267 if (depthBits < 0 || depthBits > 32) {
268 return GL_FALSE;
269 }
270 if (stencilBits < 0 || stencilBits > 8) {
271 return GL_FALSE;
272 }
273 assert(accumRedBits >= 0);
274 assert(accumGreenBits >= 0);
275 assert(accumBlueBits >= 0);
276 assert(accumAlphaBits >= 0);
277
278 vis->rgbMode = GL_TRUE;
279 vis->doubleBufferMode = dbFlag;
280 vis->stereoMode = stereoFlag;
281
282 vis->redBits = redBits;
283 vis->greenBits = greenBits;
284 vis->blueBits = blueBits;
285 vis->alphaBits = alphaBits;
286 vis->rgbBits = redBits + greenBits + blueBits;
287
288 vis->indexBits = 0;
289 vis->depthBits = depthBits;
290 vis->stencilBits = stencilBits;
291
292 vis->accumRedBits = accumRedBits;
293 vis->accumGreenBits = accumGreenBits;
294 vis->accumBlueBits = accumBlueBits;
295 vis->accumAlphaBits = accumAlphaBits;
296
297 vis->haveAccumBuffer = accumRedBits > 0;
298 vis->haveDepthBuffer = depthBits > 0;
299 vis->haveStencilBuffer = stencilBits > 0;
300
301 vis->numAuxBuffers = 0;
302 vis->level = 0;
303 vis->sampleBuffers = numSamples > 0 ? 1 : 0;
304 vis->samples = numSamples;
305
306 return GL_TRUE;
307 }
308
309
310 /**
311 * Destroy a visual and free its memory.
312 *
313 * \param vis visual.
314 *
315 * Frees the visual structure.
316 */
317 void
318 _mesa_destroy_visual( struct gl_config *vis )
319 {
320 free(vis);
321 }
322
323 /*@}*/
324
325
326 /**********************************************************************/
327 /** \name Context allocation, initialization, destroying
328 *
329 * The purpose of the most initialization functions here is to provide the
330 * default state values according to the OpenGL specification.
331 */
332 /**********************************************************************/
333 /*@{*/
334
335
336 /**
337 * This is lame. gdb only seems to recognize enum types that are
338 * actually used somewhere. We want to be able to print/use enum
339 * values such as TEXTURE_2D_INDEX in gdb. But we don't actually use
340 * the gl_texture_index type anywhere. Thus, this lame function.
341 */
342 static void
343 dummy_enum_func(void)
344 {
345 gl_buffer_index bi = BUFFER_FRONT_LEFT;
346 gl_face_index fi = FACE_POS_X;
347 gl_frag_result fr = FRAG_RESULT_DEPTH;
348 gl_texture_index ti = TEXTURE_2D_ARRAY_INDEX;
349 gl_vert_attrib va = VERT_ATTRIB_POS;
350 gl_varying_slot vs = VARYING_SLOT_POS;
351
352 (void) bi;
353 (void) fi;
354 (void) fr;
355 (void) ti;
356 (void) va;
357 (void) vs;
358 }
359
360
361 /**
362 * One-time initialization mutex lock.
363 *
364 * \sa Used by one_time_init().
365 */
366 _glthread_DECLARE_STATIC_MUTEX(OneTimeLock);
367
368
369
370 /**
371 * Calls all the various one-time-init functions in Mesa.
372 *
373 * While holding a global mutex lock, calls several initialization functions,
374 * and sets the glapi callbacks if the \c MESA_DEBUG environment variable is
375 * defined.
376 *
377 * \sa _math_init().
378 */
379 static void
380 one_time_init( struct gl_context *ctx )
381 {
382 static GLbitfield api_init_mask = 0x0;
383
384 _glthread_LOCK_MUTEX(OneTimeLock);
385
386 /* truly one-time init */
387 if (!api_init_mask) {
388 GLuint i;
389
390 /* do some implementation tests */
391 assert( sizeof(GLbyte) == 1 );
392 assert( sizeof(GLubyte) == 1 );
393 assert( sizeof(GLshort) == 2 );
394 assert( sizeof(GLushort) == 2 );
395 assert( sizeof(GLint) == 4 );
396 assert( sizeof(GLuint) == 4 );
397
398 _mesa_get_cpu_features();
399
400 for (i = 0; i < 256; i++) {
401 _mesa_ubyte_to_float_color_tab[i] = (float) i / 255.0F;
402 }
403
404 #if defined(DEBUG) && defined(__DATE__) && defined(__TIME__)
405 if (MESA_VERBOSE != 0) {
406 _mesa_debug(ctx, "Mesa %s DEBUG build %s %s\n",
407 PACKAGE_VERSION, __DATE__, __TIME__);
408 }
409 #endif
410
411 #ifdef DEBUG
412 _mesa_test_formats();
413 #endif
414 }
415
416 /* per-API one-time init */
417 if (!(api_init_mask & (1 << ctx->API))) {
418 _mesa_init_get_hash(ctx);
419
420 _mesa_init_remap_table();
421 }
422
423 api_init_mask |= 1 << ctx->API;
424
425 _glthread_UNLOCK_MUTEX(OneTimeLock);
426
427 /* Hopefully atexit() is widely available. If not, we may need some
428 * #ifdef tests here.
429 */
430 atexit(_mesa_destroy_shader_compiler);
431
432 dummy_enum_func();
433 }
434
435
436 /**
437 * Initialize fields of gl_current_attrib (aka ctx->Current.*)
438 */
439 static void
440 _mesa_init_current(struct gl_context *ctx)
441 {
442 GLuint i;
443
444 /* Init all to (0,0,0,1) */
445 for (i = 0; i < Elements(ctx->Current.Attrib); i++) {
446 ASSIGN_4V( ctx->Current.Attrib[i], 0.0, 0.0, 0.0, 1.0 );
447 }
448
449 /* redo special cases: */
450 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_WEIGHT], 1.0, 0.0, 0.0, 0.0 );
451 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_NORMAL], 0.0, 0.0, 1.0, 1.0 );
452 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_COLOR0], 1.0, 1.0, 1.0, 1.0 );
453 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_COLOR1], 0.0, 0.0, 0.0, 1.0 );
454 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_COLOR_INDEX], 1.0, 0.0, 0.0, 1.0 );
455 ASSIGN_4V( ctx->Current.Attrib[VERT_ATTRIB_EDGEFLAG], 1.0, 0.0, 0.0, 1.0 );
456 }
457
458
459 /**
460 * Init vertex/fragment/geometry program limits.
461 * Important: drivers should override these with actual limits.
462 */
463 static void
464 init_program_limits(struct gl_context *ctx, GLenum type,
465 struct gl_program_constants *prog)
466 {
467 prog->MaxInstructions = MAX_PROGRAM_INSTRUCTIONS;
468 prog->MaxAluInstructions = MAX_PROGRAM_INSTRUCTIONS;
469 prog->MaxTexInstructions = MAX_PROGRAM_INSTRUCTIONS;
470 prog->MaxTexIndirections = MAX_PROGRAM_INSTRUCTIONS;
471 prog->MaxTemps = MAX_PROGRAM_TEMPS;
472 prog->MaxEnvParams = MAX_PROGRAM_ENV_PARAMS;
473 prog->MaxLocalParams = MAX_PROGRAM_LOCAL_PARAMS;
474 prog->MaxAddressOffset = MAX_PROGRAM_LOCAL_PARAMS;
475
476 switch (type) {
477 case GL_VERTEX_PROGRAM_ARB:
478 prog->MaxParameters = MAX_VERTEX_PROGRAM_PARAMS;
479 prog->MaxAttribs = MAX_VERTEX_GENERIC_ATTRIBS;
480 prog->MaxAddressRegs = MAX_VERTEX_PROGRAM_ADDRESS_REGS;
481 prog->MaxUniformComponents = 4 * MAX_UNIFORMS;
482 break;
483 case GL_FRAGMENT_PROGRAM_ARB:
484 prog->MaxParameters = MAX_NV_FRAGMENT_PROGRAM_PARAMS;
485 prog->MaxAttribs = MAX_NV_FRAGMENT_PROGRAM_INPUTS;
486 prog->MaxAddressRegs = MAX_FRAGMENT_PROGRAM_ADDRESS_REGS;
487 prog->MaxUniformComponents = 4 * MAX_UNIFORMS;
488 break;
489 case MESA_GEOMETRY_PROGRAM:
490 prog->MaxParameters = MAX_VERTEX_PROGRAM_PARAMS;
491 prog->MaxAttribs = MAX_VERTEX_GENERIC_ATTRIBS;
492 prog->MaxAddressRegs = MAX_VERTEX_PROGRAM_ADDRESS_REGS;
493 prog->MaxUniformComponents = MAX_GEOMETRY_UNIFORM_COMPONENTS;
494 break;
495 default:
496 assert(0 && "Bad program type in init_program_limits()");
497 }
498
499 /* Set the native limits to zero. This implies that there is no native
500 * support for shaders. Let the drivers fill in the actual values.
501 */
502 prog->MaxNativeInstructions = 0;
503 prog->MaxNativeAluInstructions = 0;
504 prog->MaxNativeTexInstructions = 0;
505 prog->MaxNativeTexIndirections = 0;
506 prog->MaxNativeAttribs = 0;
507 prog->MaxNativeTemps = 0;
508 prog->MaxNativeAddressRegs = 0;
509 prog->MaxNativeParameters = 0;
510
511 /* Set GLSL datatype range/precision info assuming IEEE float values.
512 * Drivers should override these defaults as needed.
513 */
514 prog->MediumFloat.RangeMin = 127;
515 prog->MediumFloat.RangeMax = 127;
516 prog->MediumFloat.Precision = 23;
517 prog->LowFloat = prog->HighFloat = prog->MediumFloat;
518
519 /* Assume ints are stored as floats for now, since this is the least-common
520 * denominator. The OpenGL ES spec implies (page 132) that the precision
521 * of integer types should be 0. Practically speaking, IEEE
522 * single-precision floating point values can only store integers in the
523 * range [-0x01000000, 0x01000000] without loss of precision.
524 */
525 prog->MediumInt.RangeMin = 24;
526 prog->MediumInt.RangeMax = 24;
527 prog->MediumInt.Precision = 0;
528 prog->LowInt = prog->HighInt = prog->MediumInt;
529
530 prog->MaxUniformBlocks = 12;
531 prog->MaxCombinedUniformComponents = (prog->MaxUniformComponents +
532 ctx->Const.MaxUniformBlockSize / 4 *
533 prog->MaxUniformBlocks);
534 }
535
536
537 /**
538 * Initialize fields of gl_constants (aka ctx->Const.*).
539 * Use defaults from config.h. The device drivers will often override
540 * some of these values (such as number of texture units).
541 */
542 static void
543 _mesa_init_constants(struct gl_context *ctx)
544 {
545 assert(ctx);
546
547 /* Constants, may be overriden (usually only reduced) by device drivers */
548 ctx->Const.MaxTextureMbytes = MAX_TEXTURE_MBYTES;
549 ctx->Const.MaxTextureLevels = MAX_TEXTURE_LEVELS;
550 ctx->Const.Max3DTextureLevels = MAX_3D_TEXTURE_LEVELS;
551 ctx->Const.MaxCubeTextureLevels = MAX_CUBE_TEXTURE_LEVELS;
552 ctx->Const.MaxTextureRectSize = MAX_TEXTURE_RECT_SIZE;
553 ctx->Const.MaxArrayTextureLayers = MAX_ARRAY_TEXTURE_LAYERS;
554 ctx->Const.MaxTextureCoordUnits = MAX_TEXTURE_COORD_UNITS;
555 ctx->Const.MaxTextureImageUnits = MAX_TEXTURE_IMAGE_UNITS;
556 ctx->Const.MaxTextureUnits = MIN2(ctx->Const.MaxTextureCoordUnits,
557 ctx->Const.MaxTextureImageUnits);
558 ctx->Const.MaxTextureMaxAnisotropy = MAX_TEXTURE_MAX_ANISOTROPY;
559 ctx->Const.MaxTextureLodBias = MAX_TEXTURE_LOD_BIAS;
560 ctx->Const.MaxTextureBufferSize = 65536;
561 ctx->Const.TextureBufferOffsetAlignment = 1;
562 ctx->Const.MaxArrayLockSize = MAX_ARRAY_LOCK_SIZE;
563 ctx->Const.SubPixelBits = SUB_PIXEL_BITS;
564 ctx->Const.MinPointSize = MIN_POINT_SIZE;
565 ctx->Const.MaxPointSize = MAX_POINT_SIZE;
566 ctx->Const.MinPointSizeAA = MIN_POINT_SIZE;
567 ctx->Const.MaxPointSizeAA = MAX_POINT_SIZE;
568 ctx->Const.PointSizeGranularity = (GLfloat) POINT_SIZE_GRANULARITY;
569 ctx->Const.MinLineWidth = MIN_LINE_WIDTH;
570 ctx->Const.MaxLineWidth = MAX_LINE_WIDTH;
571 ctx->Const.MinLineWidthAA = MIN_LINE_WIDTH;
572 ctx->Const.MaxLineWidthAA = MAX_LINE_WIDTH;
573 ctx->Const.LineWidthGranularity = (GLfloat) LINE_WIDTH_GRANULARITY;
574 ctx->Const.MaxColorTableSize = MAX_COLOR_TABLE_SIZE;
575 ctx->Const.MaxClipPlanes = 6;
576 ctx->Const.MaxLights = MAX_LIGHTS;
577 ctx->Const.MaxShininess = 128.0;
578 ctx->Const.MaxSpotExponent = 128.0;
579 ctx->Const.MaxViewportWidth = MAX_VIEWPORT_WIDTH;
580 ctx->Const.MaxViewportHeight = MAX_VIEWPORT_HEIGHT;
581
582 /** GL_ARB_uniform_buffer_object */
583 ctx->Const.MaxCombinedUniformBlocks = 36;
584 ctx->Const.MaxUniformBufferBindings = 36;
585 ctx->Const.MaxUniformBlockSize = 16384;
586 ctx->Const.UniformBufferOffsetAlignment = 1;
587
588 init_program_limits(ctx, GL_VERTEX_PROGRAM_ARB, &ctx->Const.VertexProgram);
589 init_program_limits(ctx, GL_FRAGMENT_PROGRAM_ARB, &ctx->Const.FragmentProgram);
590 init_program_limits(ctx, MESA_GEOMETRY_PROGRAM, &ctx->Const.GeometryProgram);
591
592 ctx->Const.MaxProgramMatrices = MAX_PROGRAM_MATRICES;
593 ctx->Const.MaxProgramMatrixStackDepth = MAX_PROGRAM_MATRIX_STACK_DEPTH;
594
595 /* CheckArrayBounds is overriden by drivers/x11 for X server */
596 ctx->Const.CheckArrayBounds = GL_FALSE;
597
598 /* GL_ARB_draw_buffers */
599 ctx->Const.MaxDrawBuffers = MAX_DRAW_BUFFERS;
600
601 ctx->Const.MaxColorAttachments = MAX_COLOR_ATTACHMENTS;
602 ctx->Const.MaxRenderbufferSize = MAX_RENDERBUFFER_SIZE;
603
604 ctx->Const.MaxVertexTextureImageUnits = MAX_VERTEX_TEXTURE_IMAGE_UNITS;
605 ctx->Const.MaxCombinedTextureImageUnits = MAX_COMBINED_TEXTURE_IMAGE_UNITS;
606 ctx->Const.MaxVarying = 16; /* old limit not to break tnl and swrast */
607 ctx->Const.MaxGeometryTextureImageUnits = MAX_GEOMETRY_TEXTURE_IMAGE_UNITS;
608 ctx->Const.MaxVertexVaryingComponents = MAX_VERTEX_VARYING_COMPONENTS;
609 ctx->Const.MaxGeometryVaryingComponents = MAX_GEOMETRY_VARYING_COMPONENTS;
610 ctx->Const.MaxGeometryOutputVertices = MAX_GEOMETRY_OUTPUT_VERTICES;
611 ctx->Const.MaxGeometryTotalOutputComponents = MAX_GEOMETRY_TOTAL_OUTPUT_COMPONENTS;
612
613 /* Shading language version */
614 if (_mesa_is_desktop_gl(ctx)) {
615 ctx->Const.GLSLVersion = 120;
616 _mesa_override_glsl_version(ctx);
617 }
618 else if (ctx->API == API_OPENGLES2) {
619 ctx->Const.GLSLVersion = 100;
620 }
621 else if (ctx->API == API_OPENGLES) {
622 ctx->Const.GLSLVersion = 0; /* GLSL not supported */
623 }
624
625 /* GL_ARB_framebuffer_object */
626 ctx->Const.MaxSamples = 0;
627
628 /* GL_ARB_sync */
629 ctx->Const.MaxServerWaitTimeout = (GLuint64) ~0;
630
631 /* GL_ATI_envmap_bumpmap */
632 ctx->Const.SupportedBumpUnits = SUPPORTED_ATI_BUMP_UNITS;
633
634 /* GL_EXT_provoking_vertex */
635 ctx->Const.QuadsFollowProvokingVertexConvention = GL_TRUE;
636
637 /* GL_EXT_transform_feedback */
638 ctx->Const.MaxTransformFeedbackBuffers = MAX_FEEDBACK_BUFFERS;
639 ctx->Const.MaxTransformFeedbackSeparateComponents = 4 * MAX_FEEDBACK_ATTRIBS;
640 ctx->Const.MaxTransformFeedbackInterleavedComponents = 4 * MAX_FEEDBACK_ATTRIBS;
641 ctx->Const.MaxVertexStreams = 1;
642
643 /* GL 3.2: hard-coded for now: */
644 ctx->Const.ProfileMask = GL_CONTEXT_COMPATIBILITY_PROFILE_BIT;
645
646 /** GL_EXT_gpu_shader4 */
647 ctx->Const.MinProgramTexelOffset = -8;
648 ctx->Const.MaxProgramTexelOffset = 7;
649
650 /* GL_ARB_robustness */
651 ctx->Const.ResetStrategy = GL_NO_RESET_NOTIFICATION_ARB;
652
653 /* PrimitiveRestart */
654 ctx->Const.PrimitiveRestartInSoftware = GL_FALSE;
655
656 /* ES 3.0 or ARB_ES3_compatibility */
657 ctx->Const.MaxElementIndex = 0xffffffffu;
658
659 /* GL_ARB_texture_multisample */
660 ctx->Const.MaxColorTextureSamples = 1;
661 ctx->Const.MaxDepthTextureSamples = 1;
662 ctx->Const.MaxIntegerSamples = 1;
663 }
664
665
666 /**
667 * Do some sanity checks on the limits/constants for the given context.
668 * Only called the first time a context is bound.
669 */
670 static void
671 check_context_limits(struct gl_context *ctx)
672 {
673 /* check that we don't exceed the size of various bitfields */
674 assert(VARYING_SLOT_MAX <=
675 (8 * sizeof(ctx->VertexProgram._Current->Base.OutputsWritten)));
676 assert(VARYING_SLOT_MAX <=
677 (8 * sizeof(ctx->FragmentProgram._Current->Base.InputsRead)));
678
679 assert(MAX_COMBINED_TEXTURE_IMAGE_UNITS <= 8 * sizeof(GLbitfield));
680
681 /* shader-related checks */
682 assert(ctx->Const.FragmentProgram.MaxLocalParams <= MAX_PROGRAM_LOCAL_PARAMS);
683 assert(ctx->Const.VertexProgram.MaxLocalParams <= MAX_PROGRAM_LOCAL_PARAMS);
684
685 /* Texture unit checks */
686 assert(ctx->Const.MaxTextureImageUnits > 0);
687 assert(ctx->Const.MaxTextureImageUnits <= MAX_TEXTURE_IMAGE_UNITS);
688 assert(ctx->Const.MaxTextureCoordUnits > 0);
689 assert(ctx->Const.MaxTextureCoordUnits <= MAX_TEXTURE_COORD_UNITS);
690 assert(ctx->Const.MaxTextureUnits > 0);
691 assert(ctx->Const.MaxTextureUnits <= MAX_TEXTURE_IMAGE_UNITS);
692 assert(ctx->Const.MaxTextureUnits <= MAX_TEXTURE_COORD_UNITS);
693 assert(ctx->Const.MaxTextureUnits == MIN2(ctx->Const.MaxTextureImageUnits,
694 ctx->Const.MaxTextureCoordUnits));
695 assert(ctx->Const.MaxCombinedTextureImageUnits > 0);
696 assert(ctx->Const.MaxCombinedTextureImageUnits <= MAX_COMBINED_TEXTURE_IMAGE_UNITS);
697 assert(ctx->Const.MaxTextureCoordUnits <= MAX_COMBINED_TEXTURE_IMAGE_UNITS);
698 /* number of coord units cannot be greater than number of image units */
699 assert(ctx->Const.MaxTextureCoordUnits <= ctx->Const.MaxTextureImageUnits);
700
701
702 /* Texture size checks */
703 assert(ctx->Const.MaxTextureLevels <= MAX_TEXTURE_LEVELS);
704 assert(ctx->Const.Max3DTextureLevels <= MAX_3D_TEXTURE_LEVELS);
705 assert(ctx->Const.MaxCubeTextureLevels <= MAX_CUBE_TEXTURE_LEVELS);
706 assert(ctx->Const.MaxTextureRectSize <= MAX_TEXTURE_RECT_SIZE);
707
708 /* Texture level checks */
709 assert(MAX_TEXTURE_LEVELS >= MAX_3D_TEXTURE_LEVELS);
710 assert(MAX_TEXTURE_LEVELS >= MAX_CUBE_TEXTURE_LEVELS);
711
712 /* Max texture size should be <= max viewport size (render to texture) */
713 assert((1U << (ctx->Const.MaxTextureLevels - 1))
714 <= ctx->Const.MaxViewportWidth);
715 assert((1U << (ctx->Const.MaxTextureLevels - 1))
716 <= ctx->Const.MaxViewportHeight);
717
718 assert(ctx->Const.MaxDrawBuffers <= MAX_DRAW_BUFFERS);
719
720 /* if this fails, add more enum values to gl_buffer_index */
721 assert(BUFFER_COLOR0 + MAX_DRAW_BUFFERS <= BUFFER_COUNT);
722
723 /* XXX probably add more tests */
724 }
725
726
727 /**
728 * Initialize the attribute groups in a GL context.
729 *
730 * \param ctx GL context.
731 *
732 * Initializes all the attributes, calling the respective <tt>init*</tt>
733 * functions for the more complex data structures.
734 */
735 static GLboolean
736 init_attrib_groups(struct gl_context *ctx)
737 {
738 assert(ctx);
739
740 /* Constants */
741 _mesa_init_constants( ctx );
742
743 /* Extensions */
744 _mesa_init_extensions( ctx );
745
746 /* Attribute Groups */
747 _mesa_init_accum( ctx );
748 _mesa_init_attrib( ctx );
749 _mesa_init_buffer_objects( ctx );
750 _mesa_init_color( ctx );
751 _mesa_init_current( ctx );
752 _mesa_init_depth( ctx );
753 _mesa_init_debug( ctx );
754 _mesa_init_display_list( ctx );
755 _mesa_init_errors( ctx );
756 _mesa_init_eval( ctx );
757 _mesa_init_fbobjects( ctx );
758 _mesa_init_feedback( ctx );
759 _mesa_init_fog( ctx );
760 _mesa_init_hint( ctx );
761 _mesa_init_line( ctx );
762 _mesa_init_lighting( ctx );
763 _mesa_init_matrix( ctx );
764 _mesa_init_multisample( ctx );
765 _mesa_init_pixel( ctx );
766 _mesa_init_pixelstore( ctx );
767 _mesa_init_point( ctx );
768 _mesa_init_polygon( ctx );
769 _mesa_init_program( ctx );
770 _mesa_init_queryobj( ctx );
771 _mesa_init_sync( ctx );
772 _mesa_init_rastpos( ctx );
773 _mesa_init_scissor( ctx );
774 _mesa_init_shader_state( ctx );
775 _mesa_init_stencil( ctx );
776 _mesa_init_transform( ctx );
777 _mesa_init_transform_feedback( ctx );
778 _mesa_init_varray( ctx );
779 _mesa_init_viewport( ctx );
780
781 if (!_mesa_init_texture( ctx ))
782 return GL_FALSE;
783
784 _mesa_init_texture_s3tc( ctx );
785
786 /* Miscellaneous */
787 ctx->NewState = _NEW_ALL;
788 ctx->NewDriverState = ~0;
789 ctx->ErrorValue = GL_NO_ERROR;
790 ctx->ResetStatus = GL_NO_ERROR;
791 ctx->varying_vp_inputs = VERT_BIT_ALL;
792
793 return GL_TRUE;
794 }
795
796
797 /**
798 * Update default objects in a GL context with respect to shared state.
799 *
800 * \param ctx GL context.
801 *
802 * Removes references to old default objects, (texture objects, program
803 * objects, etc.) and changes to reference those from the current shared
804 * state.
805 */
806 static GLboolean
807 update_default_objects(struct gl_context *ctx)
808 {
809 assert(ctx);
810
811 _mesa_update_default_objects_program(ctx);
812 _mesa_update_default_objects_texture(ctx);
813 _mesa_update_default_objects_buffer_objects(ctx);
814
815 return GL_TRUE;
816 }
817
818
819 /**
820 * This is the default function we plug into all dispatch table slots
821 * This helps prevents a segfault when someone calls a GL function without
822 * first checking if the extension's supported.
823 */
824 int
825 _mesa_generic_nop(void)
826 {
827 GET_CURRENT_CONTEXT(ctx);
828 _mesa_error(ctx, GL_INVALID_OPERATION,
829 "unsupported function called "
830 "(unsupported extension or deprecated function?)");
831 return 0;
832 }
833
834
835 /**
836 * Allocate and initialize a new dispatch table.
837 */
838 struct _glapi_table *
839 _mesa_alloc_dispatch_table()
840 {
841 /* Find the larger of Mesa's dispatch table and libGL's dispatch table.
842 * In practice, this'll be the same for stand-alone Mesa. But for DRI
843 * Mesa we do this to accomodate different versions of libGL and various
844 * DRI drivers.
845 */
846 GLint numEntries = MAX2(_glapi_get_dispatch_table_size(), _gloffset_COUNT);
847 struct _glapi_table *table;
848
849 table = malloc(numEntries * sizeof(_glapi_proc));
850 if (table) {
851 _glapi_proc *entry = (_glapi_proc *) table;
852 GLint i;
853 for (i = 0; i < numEntries; i++) {
854 entry[i] = (_glapi_proc) _mesa_generic_nop;
855 }
856 }
857 return table;
858 }
859
860 /**
861 * Creates a minimal dispatch table for use within glBegin()/glEnd().
862 *
863 * This ensures that we generate GL_INVALID_OPERATION errors from most
864 * functions, since the set of functions that are valid within Begin/End is
865 * very small.
866 *
867 * From the GL 1.0 specification section 2.6.3, "GL Commands within
868 * Begin/End"
869 *
870 * "The only GL commands that are allowed within any Begin/End pairs are
871 * the commands for specifying vertex coordinates, vertex color, normal
872 * coordinates, and texture coordinates (Vertex, Color, Index, Normal,
873 * TexCoord), EvalCoord and EvalPoint commands (see section 5.1),
874 * commands for specifying lighting material parameters (Material
875 * commands see section 2.12.2), display list invocation commands
876 * (CallList and CallLists see section 5.4), and the EdgeFlag
877 * command. Executing Begin after Begin has already been executed but
878 * before an End is issued generates the INVALID OPERATION error, as does
879 * executing End without a previous corresponding Begin. Executing any
880 * other GL command within Begin/End results in the error INVALID
881 * OPERATION."
882 *
883 * The table entries for specifying vertex attributes are set up by
884 * install_vtxfmt() and _mesa_loopback_init_api_table(), and End() and dlists
885 * are set by install_vtxfmt() as well.
886 */
887 static struct _glapi_table *
888 create_beginend_table(const struct gl_context *ctx)
889 {
890 struct _glapi_table *table;
891
892 table = _mesa_alloc_dispatch_table();
893 if (!table)
894 return NULL;
895
896 /* Fill in functions which return a value, since they should return some
897 * specific value even if they emit a GL_INVALID_OPERATION error from them
898 * being called within glBegin()/glEnd().
899 */
900 #define COPY_DISPATCH(func) SET_##func(table, GET_##func(ctx->Exec))
901
902 COPY_DISPATCH(GenLists);
903 COPY_DISPATCH(IsProgram);
904 COPY_DISPATCH(IsVertexArray);
905 COPY_DISPATCH(IsBuffer);
906 COPY_DISPATCH(IsEnabled);
907 COPY_DISPATCH(IsEnabledi);
908 COPY_DISPATCH(IsRenderbuffer);
909 COPY_DISPATCH(IsFramebuffer);
910 COPY_DISPATCH(CheckFramebufferStatus);
911 COPY_DISPATCH(RenderMode);
912 COPY_DISPATCH(GetString);
913 COPY_DISPATCH(GetStringi);
914 COPY_DISPATCH(GetPointerv);
915 COPY_DISPATCH(IsQuery);
916 COPY_DISPATCH(IsSampler);
917 COPY_DISPATCH(IsSync);
918 COPY_DISPATCH(IsTexture);
919 COPY_DISPATCH(IsTransformFeedback);
920 COPY_DISPATCH(DeleteQueries);
921 COPY_DISPATCH(AreTexturesResident);
922 COPY_DISPATCH(FenceSync);
923 COPY_DISPATCH(ClientWaitSync);
924 COPY_DISPATCH(MapBuffer);
925 COPY_DISPATCH(UnmapBuffer);
926 COPY_DISPATCH(MapBufferRange);
927 COPY_DISPATCH(MapBufferRange);
928 COPY_DISPATCH(ObjectPurgeableAPPLE);
929 COPY_DISPATCH(ObjectUnpurgeableAPPLE);
930
931 _mesa_loopback_init_api_table(ctx, table);
932
933 return table;
934 }
935
936 void
937 _mesa_initialize_dispatch_tables(struct gl_context *ctx)
938 {
939 /* Do the code-generated setup of the exec table in api_exec.c. */
940 _mesa_initialize_exec_table(ctx);
941
942 if (ctx->Save)
943 _mesa_initialize_save_table(ctx);
944 }
945
946 /**
947 * Initialize a struct gl_context struct (rendering context).
948 *
949 * This includes allocating all the other structs and arrays which hang off of
950 * the context by pointers.
951 * Note that the driver needs to pass in its dd_function_table here since
952 * we need to at least call driverFunctions->NewTextureObject to create the
953 * default texture objects.
954 *
955 * Called by _mesa_create_context().
956 *
957 * Performs the imports and exports callback tables initialization, and
958 * miscellaneous one-time initializations. If no shared context is supplied one
959 * is allocated, and increase its reference count. Setups the GL API dispatch
960 * tables. Initialize the TNL module. Sets the maximum Z buffer depth.
961 * Finally queries the \c MESA_DEBUG and \c MESA_VERBOSE environment variables
962 * for debug flags.
963 *
964 * \param ctx the context to initialize
965 * \param api the GL API type to create the context for
966 * \param visual describes the visual attributes for this context
967 * \param share_list points to context to share textures, display lists,
968 * etc with, or NULL
969 * \param driverFunctions table of device driver functions for this context
970 * to use
971 */
972 GLboolean
973 _mesa_initialize_context(struct gl_context *ctx,
974 gl_api api,
975 const struct gl_config *visual,
976 struct gl_context *share_list,
977 const struct dd_function_table *driverFunctions)
978 {
979 struct gl_shared_state *shared;
980 int i;
981
982 assert(driverFunctions->NewTextureObject);
983 assert(driverFunctions->FreeTextureImageBuffer);
984
985 ctx->API = api;
986 ctx->Visual = *visual;
987 ctx->DrawBuffer = NULL;
988 ctx->ReadBuffer = NULL;
989 ctx->WinSysDrawBuffer = NULL;
990 ctx->WinSysReadBuffer = NULL;
991
992 if (_mesa_is_desktop_gl(ctx)) {
993 _mesa_override_gl_version(ctx);
994 }
995
996 /* misc one-time initializations */
997 one_time_init(ctx);
998
999 /* Plug in driver functions and context pointer here.
1000 * This is important because when we call alloc_shared_state() below
1001 * we'll call ctx->Driver.NewTextureObject() to create the default
1002 * textures.
1003 */
1004 ctx->Driver = *driverFunctions;
1005
1006 if (share_list) {
1007 /* share state with another context */
1008 shared = share_list->Shared;
1009 }
1010 else {
1011 /* allocate new, unshared state */
1012 shared = _mesa_alloc_shared_state(ctx);
1013 if (!shared)
1014 return GL_FALSE;
1015 }
1016
1017 _mesa_reference_shared_state(ctx, &ctx->Shared, shared);
1018
1019 if (!init_attrib_groups( ctx ))
1020 goto fail;
1021
1022 /* setup the API dispatch tables with all nop functions */
1023 ctx->OutsideBeginEnd = _mesa_alloc_dispatch_table();
1024 if (!ctx->OutsideBeginEnd)
1025 goto fail;
1026 ctx->Exec = ctx->OutsideBeginEnd;
1027 ctx->CurrentDispatch = ctx->OutsideBeginEnd;
1028
1029 ctx->FragmentProgram._MaintainTexEnvProgram
1030 = (_mesa_getenv("MESA_TEX_PROG") != NULL);
1031
1032 ctx->VertexProgram._MaintainTnlProgram
1033 = (_mesa_getenv("MESA_TNL_PROG") != NULL);
1034 if (ctx->VertexProgram._MaintainTnlProgram) {
1035 /* this is required... */
1036 ctx->FragmentProgram._MaintainTexEnvProgram = GL_TRUE;
1037 }
1038
1039 /* Mesa core handles all the formats that mesa core knows about.
1040 * Drivers will want to override this list with just the formats
1041 * they can handle, and confirm that appropriate fallbacks exist in
1042 * _mesa_choose_tex_format().
1043 */
1044 memset(&ctx->TextureFormatSupported, GL_TRUE,
1045 sizeof(ctx->TextureFormatSupported));
1046
1047 switch (ctx->API) {
1048 case API_OPENGL_COMPAT:
1049 ctx->BeginEnd = create_beginend_table(ctx);
1050 ctx->Save = _mesa_alloc_dispatch_table();
1051 if (!ctx->BeginEnd || !ctx->Save)
1052 goto fail;
1053
1054 /* fall-through */
1055 case API_OPENGL_CORE:
1056 break;
1057 case API_OPENGLES:
1058 /**
1059 * GL_OES_texture_cube_map says
1060 * "Initially all texture generation modes are set to REFLECTION_MAP_OES"
1061 */
1062 for (i = 0; i < MAX_TEXTURE_UNITS; i++) {
1063 struct gl_texture_unit *texUnit = &ctx->Texture.Unit[i];
1064 texUnit->GenS.Mode = GL_REFLECTION_MAP_NV;
1065 texUnit->GenT.Mode = GL_REFLECTION_MAP_NV;
1066 texUnit->GenR.Mode = GL_REFLECTION_MAP_NV;
1067 texUnit->GenS._ModeBit = TEXGEN_REFLECTION_MAP_NV;
1068 texUnit->GenT._ModeBit = TEXGEN_REFLECTION_MAP_NV;
1069 texUnit->GenR._ModeBit = TEXGEN_REFLECTION_MAP_NV;
1070 }
1071 break;
1072 case API_OPENGLES2:
1073 ctx->FragmentProgram._MaintainTexEnvProgram = GL_TRUE;
1074 ctx->VertexProgram._MaintainTnlProgram = GL_TRUE;
1075 break;
1076 }
1077
1078 ctx->FirstTimeCurrent = GL_TRUE;
1079
1080 return GL_TRUE;
1081
1082 fail:
1083 free(ctx->BeginEnd);
1084 free(ctx->Exec);
1085 free(ctx->Save);
1086 return GL_FALSE;
1087 }
1088
1089
1090 /**
1091 * Allocate and initialize a struct gl_context structure.
1092 * Note that the driver needs to pass in its dd_function_table here since
1093 * we need to at least call driverFunctions->NewTextureObject to initialize
1094 * the rendering context.
1095 *
1096 * \param api the GL API type to create the context for
1097 * \param visual a struct gl_config pointer (we copy the struct contents)
1098 * \param share_list another context to share display lists with or NULL
1099 * \param driverFunctions points to the dd_function_table into which the
1100 * driver has plugged in all its special functions.
1101 *
1102 * \return pointer to a new __struct gl_contextRec or NULL if error.
1103 */
1104 struct gl_context *
1105 _mesa_create_context(gl_api api,
1106 const struct gl_config *visual,
1107 struct gl_context *share_list,
1108 const struct dd_function_table *driverFunctions)
1109 {
1110 struct gl_context *ctx;
1111
1112 ASSERT(visual);
1113
1114 ctx = calloc(1, sizeof(struct gl_context));
1115 if (!ctx)
1116 return NULL;
1117
1118 if (_mesa_initialize_context(ctx, api, visual, share_list,
1119 driverFunctions)) {
1120 return ctx;
1121 }
1122 else {
1123 free(ctx);
1124 return NULL;
1125 }
1126 }
1127
1128
1129 /**
1130 * Free the data associated with the given context.
1131 *
1132 * But doesn't free the struct gl_context struct itself.
1133 *
1134 * \sa _mesa_initialize_context() and init_attrib_groups().
1135 */
1136 void
1137 _mesa_free_context_data( struct gl_context *ctx )
1138 {
1139 if (!_mesa_get_current_context()){
1140 /* No current context, but we may need one in order to delete
1141 * texture objs, etc. So temporarily bind the context now.
1142 */
1143 _mesa_make_current(ctx, NULL, NULL);
1144 }
1145
1146 /* unreference WinSysDraw/Read buffers */
1147 _mesa_reference_framebuffer(&ctx->WinSysDrawBuffer, NULL);
1148 _mesa_reference_framebuffer(&ctx->WinSysReadBuffer, NULL);
1149 _mesa_reference_framebuffer(&ctx->DrawBuffer, NULL);
1150 _mesa_reference_framebuffer(&ctx->ReadBuffer, NULL);
1151
1152 _mesa_reference_vertprog(ctx, &ctx->VertexProgram.Current, NULL);
1153 _mesa_reference_vertprog(ctx, &ctx->VertexProgram._Current, NULL);
1154 _mesa_reference_vertprog(ctx, &ctx->VertexProgram._TnlProgram, NULL);
1155
1156 _mesa_reference_fragprog(ctx, &ctx->FragmentProgram.Current, NULL);
1157 _mesa_reference_fragprog(ctx, &ctx->FragmentProgram._Current, NULL);
1158 _mesa_reference_fragprog(ctx, &ctx->FragmentProgram._TexEnvProgram, NULL);
1159
1160 _mesa_reference_array_object(ctx, &ctx->Array.ArrayObj, NULL);
1161 _mesa_reference_array_object(ctx, &ctx->Array.DefaultArrayObj, NULL);
1162
1163 _mesa_free_attrib_data(ctx);
1164 _mesa_free_buffer_objects(ctx);
1165 _mesa_free_lighting_data( ctx );
1166 _mesa_free_eval_data( ctx );
1167 _mesa_free_texture_data( ctx );
1168 _mesa_free_matrix_data( ctx );
1169 _mesa_free_viewport_data( ctx );
1170 _mesa_free_program_data(ctx);
1171 _mesa_free_shader_state(ctx);
1172 _mesa_free_queryobj_data(ctx);
1173 _mesa_free_sync_data(ctx);
1174 _mesa_free_varray_data(ctx);
1175 _mesa_free_transform_feedback(ctx);
1176
1177 _mesa_reference_buffer_object(ctx, &ctx->Pack.BufferObj, NULL);
1178 _mesa_reference_buffer_object(ctx, &ctx->Unpack.BufferObj, NULL);
1179 _mesa_reference_buffer_object(ctx, &ctx->DefaultPacking.BufferObj, NULL);
1180 _mesa_reference_buffer_object(ctx, &ctx->Array.ArrayBufferObj, NULL);
1181
1182 /* free dispatch tables */
1183 free(ctx->Exec);
1184 free(ctx->Save);
1185
1186 /* Shared context state (display lists, textures, etc) */
1187 _mesa_reference_shared_state(ctx, &ctx->Shared, NULL);
1188
1189 /* needs to be after freeing shared state */
1190 _mesa_free_display_list_data(ctx);
1191
1192 _mesa_free_errors_data(ctx);
1193
1194 free((void *)ctx->Extensions.String);
1195
1196 free(ctx->VersionString);
1197
1198 /* unbind the context if it's currently bound */
1199 if (ctx == _mesa_get_current_context()) {
1200 _mesa_make_current(NULL, NULL, NULL);
1201 }
1202 }
1203
1204
1205 /**
1206 * Destroy a struct gl_context structure.
1207 *
1208 * \param ctx GL context.
1209 *
1210 * Calls _mesa_free_context_data() and frees the gl_context object itself.
1211 */
1212 void
1213 _mesa_destroy_context( struct gl_context *ctx )
1214 {
1215 if (ctx) {
1216 _mesa_free_context_data(ctx);
1217 free( (void *) ctx );
1218 }
1219 }
1220
1221
1222 /**
1223 * Copy attribute groups from one context to another.
1224 *
1225 * \param src source context
1226 * \param dst destination context
1227 * \param mask bitwise OR of GL_*_BIT flags
1228 *
1229 * According to the bits specified in \p mask, copies the corresponding
1230 * attributes from \p src into \p dst. For many of the attributes a simple \c
1231 * memcpy is not enough due to the existence of internal pointers in their data
1232 * structures.
1233 */
1234 void
1235 _mesa_copy_context( const struct gl_context *src, struct gl_context *dst,
1236 GLuint mask )
1237 {
1238 if (mask & GL_ACCUM_BUFFER_BIT) {
1239 /* OK to memcpy */
1240 dst->Accum = src->Accum;
1241 }
1242 if (mask & GL_COLOR_BUFFER_BIT) {
1243 /* OK to memcpy */
1244 dst->Color = src->Color;
1245 }
1246 if (mask & GL_CURRENT_BIT) {
1247 /* OK to memcpy */
1248 dst->Current = src->Current;
1249 }
1250 if (mask & GL_DEPTH_BUFFER_BIT) {
1251 /* OK to memcpy */
1252 dst->Depth = src->Depth;
1253 }
1254 if (mask & GL_ENABLE_BIT) {
1255 /* no op */
1256 }
1257 if (mask & GL_EVAL_BIT) {
1258 /* OK to memcpy */
1259 dst->Eval = src->Eval;
1260 }
1261 if (mask & GL_FOG_BIT) {
1262 /* OK to memcpy */
1263 dst->Fog = src->Fog;
1264 }
1265 if (mask & GL_HINT_BIT) {
1266 /* OK to memcpy */
1267 dst->Hint = src->Hint;
1268 }
1269 if (mask & GL_LIGHTING_BIT) {
1270 GLuint i;
1271 /* begin with memcpy */
1272 dst->Light = src->Light;
1273 /* fixup linked lists to prevent pointer insanity */
1274 make_empty_list( &(dst->Light.EnabledList) );
1275 for (i = 0; i < MAX_LIGHTS; i++) {
1276 if (dst->Light.Light[i].Enabled) {
1277 insert_at_tail(&(dst->Light.EnabledList), &(dst->Light.Light[i]));
1278 }
1279 }
1280 }
1281 if (mask & GL_LINE_BIT) {
1282 /* OK to memcpy */
1283 dst->Line = src->Line;
1284 }
1285 if (mask & GL_LIST_BIT) {
1286 /* OK to memcpy */
1287 dst->List = src->List;
1288 }
1289 if (mask & GL_PIXEL_MODE_BIT) {
1290 /* OK to memcpy */
1291 dst->Pixel = src->Pixel;
1292 }
1293 if (mask & GL_POINT_BIT) {
1294 /* OK to memcpy */
1295 dst->Point = src->Point;
1296 }
1297 if (mask & GL_POLYGON_BIT) {
1298 /* OK to memcpy */
1299 dst->Polygon = src->Polygon;
1300 }
1301 if (mask & GL_POLYGON_STIPPLE_BIT) {
1302 /* Use loop instead of memcpy due to problem with Portland Group's
1303 * C compiler. Reported by John Stone.
1304 */
1305 GLuint i;
1306 for (i = 0; i < 32; i++) {
1307 dst->PolygonStipple[i] = src->PolygonStipple[i];
1308 }
1309 }
1310 if (mask & GL_SCISSOR_BIT) {
1311 /* OK to memcpy */
1312 dst->Scissor = src->Scissor;
1313 }
1314 if (mask & GL_STENCIL_BUFFER_BIT) {
1315 /* OK to memcpy */
1316 dst->Stencil = src->Stencil;
1317 }
1318 if (mask & GL_TEXTURE_BIT) {
1319 /* Cannot memcpy because of pointers */
1320 _mesa_copy_texture_state(src, dst);
1321 }
1322 if (mask & GL_TRANSFORM_BIT) {
1323 /* OK to memcpy */
1324 dst->Transform = src->Transform;
1325 }
1326 if (mask & GL_VIEWPORT_BIT) {
1327 /* Cannot use memcpy, because of pointers in GLmatrix _WindowMap */
1328 dst->Viewport.X = src->Viewport.X;
1329 dst->Viewport.Y = src->Viewport.Y;
1330 dst->Viewport.Width = src->Viewport.Width;
1331 dst->Viewport.Height = src->Viewport.Height;
1332 dst->Viewport.Near = src->Viewport.Near;
1333 dst->Viewport.Far = src->Viewport.Far;
1334 _math_matrix_copy(&dst->Viewport._WindowMap, &src->Viewport._WindowMap);
1335 }
1336
1337 /* XXX FIXME: Call callbacks?
1338 */
1339 dst->NewState = _NEW_ALL;
1340 dst->NewDriverState = ~0;
1341 }
1342
1343
1344 /**
1345 * Check if the given context can render into the given framebuffer
1346 * by checking visual attributes.
1347 *
1348 * Most of these tests could go away because Mesa is now pretty flexible
1349 * in terms of mixing rendering contexts with framebuffers. As long
1350 * as RGB vs. CI mode agree, we're probably good.
1351 *
1352 * \return GL_TRUE if compatible, GL_FALSE otherwise.
1353 */
1354 static GLboolean
1355 check_compatible(const struct gl_context *ctx,
1356 const struct gl_framebuffer *buffer)
1357 {
1358 const struct gl_config *ctxvis = &ctx->Visual;
1359 const struct gl_config *bufvis = &buffer->Visual;
1360
1361 if (buffer == _mesa_get_incomplete_framebuffer())
1362 return GL_TRUE;
1363
1364 #if 0
1365 /* disabling this fixes the fgl_glxgears pbuffer demo */
1366 if (ctxvis->doubleBufferMode && !bufvis->doubleBufferMode)
1367 return GL_FALSE;
1368 #endif
1369 if (ctxvis->stereoMode && !bufvis->stereoMode)
1370 return GL_FALSE;
1371 if (ctxvis->haveAccumBuffer && !bufvis->haveAccumBuffer)
1372 return GL_FALSE;
1373 if (ctxvis->haveDepthBuffer && !bufvis->haveDepthBuffer)
1374 return GL_FALSE;
1375 if (ctxvis->haveStencilBuffer && !bufvis->haveStencilBuffer)
1376 return GL_FALSE;
1377 if (ctxvis->redMask && ctxvis->redMask != bufvis->redMask)
1378 return GL_FALSE;
1379 if (ctxvis->greenMask && ctxvis->greenMask != bufvis->greenMask)
1380 return GL_FALSE;
1381 if (ctxvis->blueMask && ctxvis->blueMask != bufvis->blueMask)
1382 return GL_FALSE;
1383 #if 0
1384 /* disabled (see bug 11161) */
1385 if (ctxvis->depthBits && ctxvis->depthBits != bufvis->depthBits)
1386 return GL_FALSE;
1387 #endif
1388 if (ctxvis->stencilBits && ctxvis->stencilBits != bufvis->stencilBits)
1389 return GL_FALSE;
1390
1391 return GL_TRUE;
1392 }
1393
1394
1395 /**
1396 * Do one-time initialization for the given framebuffer. Specifically,
1397 * ask the driver for the window's current size and update the framebuffer
1398 * object to match.
1399 * Really, the device driver should totally take care of this.
1400 */
1401 static void
1402 initialize_framebuffer_size(struct gl_context *ctx, struct gl_framebuffer *fb)
1403 {
1404 GLuint width, height;
1405 if (ctx->Driver.GetBufferSize) {
1406 ctx->Driver.GetBufferSize(fb, &width, &height);
1407 if (ctx->Driver.ResizeBuffers)
1408 ctx->Driver.ResizeBuffers(ctx, fb, width, height);
1409 fb->Initialized = GL_TRUE;
1410 }
1411 }
1412
1413
1414 /**
1415 * Check if the viewport/scissor size has not yet been initialized.
1416 * Initialize the size if the given width and height are non-zero.
1417 */
1418 void
1419 _mesa_check_init_viewport(struct gl_context *ctx, GLuint width, GLuint height)
1420 {
1421 if (!ctx->ViewportInitialized && width > 0 && height > 0) {
1422 /* Note: set flag here, before calling _mesa_set_viewport(), to prevent
1423 * potential infinite recursion.
1424 */
1425 ctx->ViewportInitialized = GL_TRUE;
1426 _mesa_set_viewport(ctx, 0, 0, width, height);
1427 _mesa_set_scissor(ctx, 0, 0, width, height);
1428 }
1429 }
1430
1431
1432 /**
1433 * Bind the given context to the given drawBuffer and readBuffer and
1434 * make it the current context for the calling thread.
1435 * We'll render into the drawBuffer and read pixels from the
1436 * readBuffer (i.e. glRead/CopyPixels, glCopyTexImage, etc).
1437 *
1438 * We check that the context's and framebuffer's visuals are compatible
1439 * and return immediately if they're not.
1440 *
1441 * \param newCtx the new GL context. If NULL then there will be no current GL
1442 * context.
1443 * \param drawBuffer the drawing framebuffer
1444 * \param readBuffer the reading framebuffer
1445 */
1446 GLboolean
1447 _mesa_make_current( struct gl_context *newCtx,
1448 struct gl_framebuffer *drawBuffer,
1449 struct gl_framebuffer *readBuffer )
1450 {
1451 GET_CURRENT_CONTEXT(curCtx);
1452
1453 if (MESA_VERBOSE & VERBOSE_API)
1454 _mesa_debug(newCtx, "_mesa_make_current()\n");
1455
1456 /* Check that the context's and framebuffer's visuals are compatible.
1457 */
1458 if (newCtx && drawBuffer && newCtx->WinSysDrawBuffer != drawBuffer) {
1459 if (!check_compatible(newCtx, drawBuffer)) {
1460 _mesa_warning(newCtx,
1461 "MakeCurrent: incompatible visuals for context and drawbuffer");
1462 return GL_FALSE;
1463 }
1464 }
1465 if (newCtx && readBuffer && newCtx->WinSysReadBuffer != readBuffer) {
1466 if (!check_compatible(newCtx, readBuffer)) {
1467 _mesa_warning(newCtx,
1468 "MakeCurrent: incompatible visuals for context and readbuffer");
1469 return GL_FALSE;
1470 }
1471 }
1472
1473 if (curCtx &&
1474 (curCtx->WinSysDrawBuffer || curCtx->WinSysReadBuffer) &&
1475 /* make sure this context is valid for flushing */
1476 curCtx != newCtx)
1477 _mesa_flush(curCtx);
1478
1479 /* We used to call _glapi_check_multithread() here. Now do it in drivers */
1480 _glapi_set_context((void *) newCtx);
1481 ASSERT(_mesa_get_current_context() == newCtx);
1482
1483 if (!newCtx) {
1484 _glapi_set_dispatch(NULL); /* none current */
1485 }
1486 else {
1487 _glapi_set_dispatch(newCtx->CurrentDispatch);
1488
1489 if (drawBuffer && readBuffer) {
1490 ASSERT(_mesa_is_winsys_fbo(drawBuffer));
1491 ASSERT(_mesa_is_winsys_fbo(readBuffer));
1492 _mesa_reference_framebuffer(&newCtx->WinSysDrawBuffer, drawBuffer);
1493 _mesa_reference_framebuffer(&newCtx->WinSysReadBuffer, readBuffer);
1494
1495 /*
1496 * Only set the context's Draw/ReadBuffer fields if they're NULL
1497 * or not bound to a user-created FBO.
1498 */
1499 if (!newCtx->DrawBuffer || _mesa_is_winsys_fbo(newCtx->DrawBuffer)) {
1500 _mesa_reference_framebuffer(&newCtx->DrawBuffer, drawBuffer);
1501 /* Update the FBO's list of drawbuffers/renderbuffers.
1502 * For winsys FBOs this comes from the GL state (which may have
1503 * changed since the last time this FBO was bound).
1504 */
1505 _mesa_update_draw_buffers(newCtx);
1506 }
1507 if (!newCtx->ReadBuffer || _mesa_is_winsys_fbo(newCtx->ReadBuffer)) {
1508 _mesa_reference_framebuffer(&newCtx->ReadBuffer, readBuffer);
1509 }
1510
1511 /* XXX only set this flag if we're really changing the draw/read
1512 * framebuffer bindings.
1513 */
1514 newCtx->NewState |= _NEW_BUFFERS;
1515
1516 #if 1
1517 /* We want to get rid of these lines: */
1518 if (!drawBuffer->Initialized) {
1519 initialize_framebuffer_size(newCtx, drawBuffer);
1520 }
1521 if (readBuffer != drawBuffer && !readBuffer->Initialized) {
1522 initialize_framebuffer_size(newCtx, readBuffer);
1523 }
1524
1525 _mesa_resizebuffers(newCtx);
1526 #else
1527 /* We want the drawBuffer and readBuffer to be initialized by
1528 * the driver.
1529 * This generally means the Width and Height match the actual
1530 * window size and the renderbuffers (both hardware and software
1531 * based) are allocated to match. The later can generally be
1532 * done with a call to _mesa_resize_framebuffer().
1533 *
1534 * It's theoretically possible for a buffer to have zero width
1535 * or height, but for now, assert check that the driver did what's
1536 * expected of it.
1537 */
1538 ASSERT(drawBuffer->Width > 0);
1539 ASSERT(drawBuffer->Height > 0);
1540 #endif
1541
1542 if (drawBuffer) {
1543 _mesa_check_init_viewport(newCtx,
1544 drawBuffer->Width, drawBuffer->Height);
1545 }
1546 }
1547
1548 if (newCtx->FirstTimeCurrent) {
1549 assert(newCtx->Version > 0);
1550
1551 newCtx->Extensions.String = _mesa_make_extension_string(newCtx);
1552
1553 check_context_limits(newCtx);
1554
1555 /* We can use this to help debug user's problems. Tell them to set
1556 * the MESA_INFO env variable before running their app. Then the
1557 * first time each context is made current we'll print some useful
1558 * information.
1559 */
1560 if (_mesa_getenv("MESA_INFO")) {
1561 _mesa_print_info();
1562 }
1563
1564 newCtx->FirstTimeCurrent = GL_FALSE;
1565 }
1566 }
1567
1568 return GL_TRUE;
1569 }
1570
1571
1572 /**
1573 * Make context 'ctx' share the display lists, textures and programs
1574 * that are associated with 'ctxToShare'.
1575 * Any display lists, textures or programs associated with 'ctx' will
1576 * be deleted if nobody else is sharing them.
1577 */
1578 GLboolean
1579 _mesa_share_state(struct gl_context *ctx, struct gl_context *ctxToShare)
1580 {
1581 if (ctx && ctxToShare && ctx->Shared && ctxToShare->Shared) {
1582 struct gl_shared_state *oldShared = NULL;
1583
1584 /* save ref to old state to prevent it from being deleted immediately */
1585 _mesa_reference_shared_state(ctx, &oldShared, ctx->Shared);
1586
1587 /* update ctx's Shared pointer */
1588 _mesa_reference_shared_state(ctx, &ctx->Shared, ctxToShare->Shared);
1589
1590 update_default_objects(ctx);
1591
1592 /* release the old shared state */
1593 _mesa_reference_shared_state(ctx, &oldShared, NULL);
1594
1595 return GL_TRUE;
1596 }
1597 else {
1598 return GL_FALSE;
1599 }
1600 }
1601
1602
1603
1604 /**
1605 * \return pointer to the current GL context for this thread.
1606 *
1607 * Calls _glapi_get_context(). This isn't the fastest way to get the current
1608 * context. If you need speed, see the #GET_CURRENT_CONTEXT macro in
1609 * context.h.
1610 */
1611 struct gl_context *
1612 _mesa_get_current_context( void )
1613 {
1614 return (struct gl_context *) _glapi_get_context();
1615 }
1616
1617
1618 /**
1619 * Get context's current API dispatch table.
1620 *
1621 * It'll either be the immediate-mode execute dispatcher or the display list
1622 * compile dispatcher.
1623 *
1624 * \param ctx GL context.
1625 *
1626 * \return pointer to dispatch_table.
1627 *
1628 * Simply returns __struct gl_contextRec::CurrentDispatch.
1629 */
1630 struct _glapi_table *
1631 _mesa_get_dispatch(struct gl_context *ctx)
1632 {
1633 return ctx->CurrentDispatch;
1634 }
1635
1636 /*@}*/
1637
1638
1639 /**********************************************************************/
1640 /** \name Miscellaneous functions */
1641 /**********************************************************************/
1642 /*@{*/
1643
1644 /**
1645 * Record an error.
1646 *
1647 * \param ctx GL context.
1648 * \param error error code.
1649 *
1650 * Records the given error code and call the driver's dd_function_table::Error
1651 * function if defined.
1652 *
1653 * \sa
1654 * This is called via _mesa_error().
1655 */
1656 void
1657 _mesa_record_error(struct gl_context *ctx, GLenum error)
1658 {
1659 if (!ctx)
1660 return;
1661
1662 if (ctx->ErrorValue == GL_NO_ERROR) {
1663 ctx->ErrorValue = error;
1664 }
1665 }
1666
1667
1668 /**
1669 * Flush commands and wait for completion.
1670 */
1671 void
1672 _mesa_finish(struct gl_context *ctx)
1673 {
1674 FLUSH_VERTICES( ctx, 0 );
1675 FLUSH_CURRENT( ctx, 0 );
1676 if (ctx->Driver.Finish) {
1677 ctx->Driver.Finish(ctx);
1678 }
1679 }
1680
1681
1682 /**
1683 * Flush commands.
1684 */
1685 void
1686 _mesa_flush(struct gl_context *ctx)
1687 {
1688 FLUSH_VERTICES( ctx, 0 );
1689 FLUSH_CURRENT( ctx, 0 );
1690 if (ctx->Driver.Flush) {
1691 ctx->Driver.Flush(ctx);
1692 }
1693 }
1694
1695
1696
1697 /**
1698 * Execute glFinish().
1699 *
1700 * Calls the #ASSERT_OUTSIDE_BEGIN_END_AND_FLUSH macro and the
1701 * dd_function_table::Finish driver callback, if not NULL.
1702 */
1703 void GLAPIENTRY
1704 _mesa_Finish(void)
1705 {
1706 GET_CURRENT_CONTEXT(ctx);
1707 ASSERT_OUTSIDE_BEGIN_END(ctx);
1708 _mesa_finish(ctx);
1709 }
1710
1711
1712 /**
1713 * Execute glFlush().
1714 *
1715 * Calls the #ASSERT_OUTSIDE_BEGIN_END_AND_FLUSH macro and the
1716 * dd_function_table::Flush driver callback, if not NULL.
1717 */
1718 void GLAPIENTRY
1719 _mesa_Flush(void)
1720 {
1721 GET_CURRENT_CONTEXT(ctx);
1722 ASSERT_OUTSIDE_BEGIN_END(ctx);
1723 _mesa_flush(ctx);
1724 }
1725
1726
1727 /**
1728 * Set mvp_with_dp4 flag. If a driver has a preference for DP4 over
1729 * MUL/MAD, or vice versa, call this function to register that.
1730 * Otherwise we default to MUL/MAD.
1731 */
1732 void
1733 _mesa_set_mvp_with_dp4( struct gl_context *ctx,
1734 GLboolean flag )
1735 {
1736 ctx->mvp_with_dp4 = flag;
1737 }
1738
1739 /*
1740 * ARB_blend_func_extended - ERRORS section
1741 * "The error INVALID_OPERATION is generated by Begin or any procedure that
1742 * implicitly calls Begin if any draw buffer has a blend function requiring the
1743 * second color input (SRC1_COLOR, ONE_MINUS_SRC1_COLOR, SRC1_ALPHA or
1744 * ONE_MINUS_SRC1_ALPHA), and a framebuffer is bound that has more than
1745 * the value of MAX_DUAL_SOURCE_DRAW_BUFFERS-1 active color attachements."
1746 */
1747 static GLboolean
1748 _mesa_check_blend_func_error(struct gl_context *ctx)
1749 {
1750 GLuint i;
1751 for (i = ctx->Const.MaxDualSourceDrawBuffers;
1752 i < ctx->DrawBuffer->_NumColorDrawBuffers;
1753 i++) {
1754 if (ctx->Color.Blend[i]._UsesDualSrc) {
1755 _mesa_error(ctx, GL_INVALID_OPERATION,
1756 "dual source blend on illegal attachment");
1757 return GL_FALSE;
1758 }
1759 }
1760 return GL_TRUE;
1761 }
1762
1763 /**
1764 * Prior to drawing anything with glBegin, glDrawArrays, etc. this function
1765 * is called to see if it's valid to render. This involves checking that
1766 * the current shader is valid and the framebuffer is complete.
1767 * If an error is detected it'll be recorded here.
1768 * \return GL_TRUE if OK to render, GL_FALSE if not
1769 */
1770 GLboolean
1771 _mesa_valid_to_render(struct gl_context *ctx, const char *where)
1772 {
1773 bool vert_from_glsl_shader = false;
1774 bool geom_from_glsl_shader = false;
1775 bool frag_from_glsl_shader = false;
1776
1777 /* This depends on having up to date derived state (shaders) */
1778 if (ctx->NewState)
1779 _mesa_update_state(ctx);
1780
1781 if (ctx->Shader.CurrentVertexProgram) {
1782 vert_from_glsl_shader = true;
1783
1784 if (!ctx->Shader.CurrentVertexProgram->LinkStatus) {
1785 _mesa_error(ctx, GL_INVALID_OPERATION,
1786 "%s(shader not linked)", where);
1787 return GL_FALSE;
1788 }
1789 #if 0 /* not normally enabled */
1790 {
1791 char errMsg[100];
1792 if (!_mesa_validate_shader_program(ctx,
1793 ctx->Shader.CurrentVertexProgram,
1794 errMsg)) {
1795 _mesa_warning(ctx, "Shader program %u is invalid: %s",
1796 ctx->Shader.CurrentVertexProgram->Name, errMsg);
1797 }
1798 }
1799 #endif
1800 }
1801
1802 if (ctx->Shader.CurrentGeometryProgram) {
1803 geom_from_glsl_shader = true;
1804
1805 if (!ctx->Shader.CurrentGeometryProgram->LinkStatus) {
1806 _mesa_error(ctx, GL_INVALID_OPERATION,
1807 "%s(shader not linked)", where);
1808 return GL_FALSE;
1809 }
1810 #if 0 /* not normally enabled */
1811 {
1812 char errMsg[100];
1813 if (!_mesa_validate_shader_program(ctx,
1814 ctx->Shader.CurrentGeometryProgram,
1815 errMsg)) {
1816 _mesa_warning(ctx, "Shader program %u is invalid: %s",
1817 ctx->Shader.CurrentGeometryProgram->Name, errMsg);
1818 }
1819 }
1820 #endif
1821 }
1822
1823 if (ctx->Shader.CurrentFragmentProgram) {
1824 frag_from_glsl_shader = true;
1825
1826 if (!ctx->Shader.CurrentFragmentProgram->LinkStatus) {
1827 _mesa_error(ctx, GL_INVALID_OPERATION,
1828 "%s(shader not linked)", where);
1829 return GL_FALSE;
1830 }
1831 #if 0 /* not normally enabled */
1832 {
1833 char errMsg[100];
1834 if (!_mesa_validate_shader_program(ctx,
1835 ctx->Shader.CurrentFragmentProgram,
1836 errMsg)) {
1837 _mesa_warning(ctx, "Shader program %u is invalid: %s",
1838 ctx->Shader.CurrentFragmentProgram->Name, errMsg);
1839 }
1840 }
1841 #endif
1842 }
1843
1844 /* Any shader stages that are not supplied by the GLSL shader and have
1845 * assembly shaders enabled must now be validated.
1846 */
1847 if (!vert_from_glsl_shader
1848 && ctx->VertexProgram.Enabled && !ctx->VertexProgram._Enabled) {
1849 _mesa_error(ctx, GL_INVALID_OPERATION,
1850 "%s(vertex program not valid)", where);
1851 return GL_FALSE;
1852 }
1853
1854 /* FINISHME: If GL_NV_geometry_program4 is ever supported, the current
1855 * FINISHME: geometry program should validated here.
1856 */
1857 (void) geom_from_glsl_shader;
1858
1859 if (!frag_from_glsl_shader) {
1860 if (ctx->FragmentProgram.Enabled && !ctx->FragmentProgram._Enabled) {
1861 _mesa_error(ctx, GL_INVALID_OPERATION,
1862 "%s(fragment program not valid)", where);
1863 return GL_FALSE;
1864 }
1865
1866 /* If drawing to integer-valued color buffers, there must be an
1867 * active fragment shader (GL_EXT_texture_integer).
1868 */
1869 if (ctx->DrawBuffer && ctx->DrawBuffer->_IntegerColor) {
1870 _mesa_error(ctx, GL_INVALID_OPERATION,
1871 "%s(integer format but no fragment shader)", where);
1872 return GL_FALSE;
1873 }
1874 }
1875
1876 if (ctx->DrawBuffer->_Status != GL_FRAMEBUFFER_COMPLETE_EXT) {
1877 _mesa_error(ctx, GL_INVALID_FRAMEBUFFER_OPERATION_EXT,
1878 "%s(incomplete framebuffer)", where);
1879 return GL_FALSE;
1880 }
1881
1882 if (_mesa_check_blend_func_error(ctx) == GL_FALSE) {
1883 return GL_FALSE;
1884 }
1885
1886 #ifdef DEBUG
1887 if (ctx->Shader.Flags & GLSL_LOG) {
1888 struct gl_shader_program *shProg[MESA_SHADER_TYPES];
1889 gl_shader_type i;
1890
1891 shProg[MESA_SHADER_VERTEX] = ctx->Shader.CurrentVertexProgram;
1892 shProg[MESA_SHADER_GEOMETRY] = ctx->Shader.CurrentGeometryProgram;
1893 shProg[MESA_SHADER_FRAGMENT] = ctx->Shader.CurrentFragmentProgram;
1894
1895 for (i = 0; i < MESA_SHADER_TYPES; i++) {
1896 if (shProg[i] == NULL || shProg[i]->_Used
1897 || shProg[i]->_LinkedShaders[i] == NULL)
1898 continue;
1899
1900 /* This is the first time this shader is being used.
1901 * Append shader's constants/uniforms to log file.
1902 *
1903 * Only log data for the program target that matches the shader
1904 * target. It's possible to have a program bound to the vertex
1905 * shader target that also supplied a fragment shader. If that
1906 * program isn't also bound to the fragment shader target we don't
1907 * want to log its fragment data.
1908 */
1909 _mesa_append_uniforms_to_file(shProg[i]->_LinkedShaders[i]);
1910 }
1911
1912 for (i = 0; i < MESA_SHADER_TYPES; i++) {
1913 if (shProg[i] != NULL)
1914 shProg[i]->_Used = GL_TRUE;
1915 }
1916 }
1917 #endif
1918
1919 return GL_TRUE;
1920 }
1921
1922
1923 /*@}*/