blob: e8824426d4ff0f84ea29487f45baa0936abe434a [file] [log] [blame]
Michal Krol2861e732004-03-29 11:09:34 +00001/*
2 * Mesa 3-D graphics library
Brian Paula23e6682006-10-30 00:12:05 +00003 * Version: 6.5.2
Michal Krol2861e732004-03-29 11:09:34 +00004 *
Brian Paul65a51c02006-05-24 03:30:31 +00005 * Copyright (C) 1999-2006 Brian Paul All Rights Reserved.
Michal Krol2861e732004-03-29 11:09:34 +00006 *
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 * BRIAN PAUL BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN
21 * AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
22 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
23 */
24
25/**
26 * \file program.c
27 * Vertex and fragment program support functions.
28 * \author Brian Paul
29 */
30
31
32#include "glheader.h"
33#include "context.h"
34#include "hash.h"
35#include "imports.h"
36#include "macros.h"
37#include "mtypes.h"
38#include "program.h"
39#include "nvfragparse.h"
Brian Paul7e807512005-11-05 17:10:45 +000040#include "program_instruction.h"
Michal Krol2861e732004-03-29 11:09:34 +000041#include "nvvertparse.h"
Roland Scheideggerf519a772005-09-02 01:11:53 +000042#include "atifragshader.h"
Michal Krol2861e732004-03-29 11:09:34 +000043
44
Brian Paul7b98b402005-11-12 23:25:49 +000045static const char *
46make_state_string(const GLint stateTokens[6]);
47
Brian Paulef987aa2006-10-31 19:53:03 +000048static GLbitfield
Keith Whitwellec1ffd92005-11-22 12:12:17 +000049make_state_flags(const GLint state[]);
50
Brian Paul7b98b402005-11-12 23:25:49 +000051
Michal Krol2861e732004-03-29 11:09:34 +000052/**********************************************************************/
53/* Utility functions */
54/**********************************************************************/
55
56
Brian Paul765f1a12004-09-14 22:28:27 +000057/* A pointer to this dummy program is put into the hash table when
58 * glGenPrograms is called.
59 */
Brian Paul122629f2006-07-20 16:49:57 +000060struct gl_program _mesa_DummyProgram;
Brian Paul765f1a12004-09-14 22:28:27 +000061
62
Michal Krol2861e732004-03-29 11:09:34 +000063/**
Brian Paul21841f02004-08-14 14:28:11 +000064 * Init context's vertex/fragment program state
Michal Krol2861e732004-03-29 11:09:34 +000065 */
66void
67_mesa_init_program(GLcontext *ctx)
68{
69 GLuint i;
70
71 ctx->Program.ErrorPos = -1;
72 ctx->Program.ErrorString = _mesa_strdup("");
73
74#if FEATURE_NV_vertex_program || FEATURE_ARB_vertex_program
75 ctx->VertexProgram.Enabled = GL_FALSE;
76 ctx->VertexProgram.PointSizeEnabled = GL_FALSE;
77 ctx->VertexProgram.TwoSideEnabled = GL_FALSE;
Brian Paul122629f2006-07-20 16:49:57 +000078 ctx->VertexProgram.Current = (struct gl_vertex_program *) ctx->Shared->DefaultVertexProgram;
Michal Krol2861e732004-03-29 11:09:34 +000079 assert(ctx->VertexProgram.Current);
80 ctx->VertexProgram.Current->Base.RefCount++;
81 for (i = 0; i < MAX_NV_VERTEX_PROGRAM_PARAMS / 4; i++) {
82 ctx->VertexProgram.TrackMatrix[i] = GL_NONE;
83 ctx->VertexProgram.TrackMatrixTransform[i] = GL_IDENTITY_NV;
84 }
85#endif
86
87#if FEATURE_NV_fragment_program || FEATURE_ARB_fragment_program
88 ctx->FragmentProgram.Enabled = GL_FALSE;
Brian Paul122629f2006-07-20 16:49:57 +000089 ctx->FragmentProgram.Current = (struct gl_fragment_program *) ctx->Shared->DefaultFragmentProgram;
Michal Krol2861e732004-03-29 11:09:34 +000090 assert(ctx->FragmentProgram.Current);
91 ctx->FragmentProgram.Current->Base.RefCount++;
92#endif
Dave Airlie7f752fe2004-12-19 03:06:59 +000093
Brian Paul63d68302005-11-19 16:43:04 +000094 /* XXX probably move this stuff */
Dave Airlie7f752fe2004-12-19 03:06:59 +000095#if FEATURE_ATI_fragment_shader
96 ctx->ATIFragmentShader.Enabled = GL_FALSE;
97 ctx->ATIFragmentShader.Current = (struct ati_fragment_shader *) ctx->Shared->DefaultFragmentShader;
98 assert(ctx->ATIFragmentShader.Current);
Brian Paul63d68302005-11-19 16:43:04 +000099 ctx->ATIFragmentShader.Current->RefCount++;
Dave Airlie7f752fe2004-12-19 03:06:59 +0000100#endif
Michal Krol2861e732004-03-29 11:09:34 +0000101}
102
103
104/**
Brian Paul21841f02004-08-14 14:28:11 +0000105 * Free a context's vertex/fragment program state
106 */
107void
108_mesa_free_program_data(GLcontext *ctx)
109{
Roland Scheidegger93da6732006-03-01 23:11:14 +0000110#if FEATURE_NV_vertex_program || FEATURE_ARB_vertex_program
Brian Paul21841f02004-08-14 14:28:11 +0000111 if (ctx->VertexProgram.Current) {
112 ctx->VertexProgram.Current->Base.RefCount--;
113 if (ctx->VertexProgram.Current->Base.RefCount <= 0)
114 ctx->Driver.DeleteProgram(ctx, &(ctx->VertexProgram.Current->Base));
115 }
116#endif
Roland Scheidegger93da6732006-03-01 23:11:14 +0000117#if FEATURE_NV_fragment_program || FEATURE_ARB_fragment_program
Brian Paul21841f02004-08-14 14:28:11 +0000118 if (ctx->FragmentProgram.Current) {
119 ctx->FragmentProgram.Current->Base.RefCount--;
120 if (ctx->FragmentProgram.Current->Base.RefCount <= 0)
121 ctx->Driver.DeleteProgram(ctx, &(ctx->FragmentProgram.Current->Base));
122 }
123#endif
Brian Paul63d68302005-11-19 16:43:04 +0000124 /* XXX probably move this stuff */
Dave Airlie7f752fe2004-12-19 03:06:59 +0000125#if FEATURE_ATI_fragment_shader
126 if (ctx->ATIFragmentShader.Current) {
Brian Paul63d68302005-11-19 16:43:04 +0000127 ctx->ATIFragmentShader.Current->RefCount--;
128 if (ctx->ATIFragmentShader.Current->RefCount <= 0) {
129 _mesa_free(ctx->ATIFragmentShader.Current);
130 }
Dave Airlie7f752fe2004-12-19 03:06:59 +0000131 }
132#endif
Brian Paul21841f02004-08-14 14:28:11 +0000133 _mesa_free((void *) ctx->Program.ErrorString);
134}
135
136
137
138
139/**
Michal Krol2861e732004-03-29 11:09:34 +0000140 * Set the vertex/fragment program error state (position and error string).
141 * This is generally called from within the parsers.
142 */
143void
144_mesa_set_program_error(GLcontext *ctx, GLint pos, const char *string)
145{
146 ctx->Program.ErrorPos = pos;
147 _mesa_free((void *) ctx->Program.ErrorString);
148 if (!string)
149 string = "";
150 ctx->Program.ErrorString = _mesa_strdup(string);
151}
152
153
154/**
155 * Find the line number and column for 'pos' within 'string'.
156 * Return a copy of the line which contains 'pos'. Free the line with
157 * _mesa_free().
158 * \param string the program string
159 * \param pos the position within the string
160 * \param line returns the line number corresponding to 'pos'.
161 * \param col returns the column number corresponding to 'pos'.
162 * \return copy of the line containing 'pos'.
163 */
164const GLubyte *
165_mesa_find_line_column(const GLubyte *string, const GLubyte *pos,
166 GLint *line, GLint *col)
167{
168 const GLubyte *lineStart = string;
169 const GLubyte *p = string;
170 GLubyte *s;
171 int len;
172
173 *line = 1;
174
175 while (p != pos) {
176 if (*p == (GLubyte) '\n') {
177 (*line)++;
178 lineStart = p + 1;
179 }
180 p++;
181 }
182
183 *col = (pos - lineStart) + 1;
184
185 /* return copy of this line */
186 while (*p != 0 && *p != '\n')
187 p++;
188 len = p - lineStart;
189 s = (GLubyte *) _mesa_malloc(len + 1);
190 _mesa_memcpy(s, lineStart, len);
191 s[len] = 0;
192
193 return s;
194}
195
196
Brian Paul765f1a12004-09-14 22:28:27 +0000197/**
198 * Initialize a new vertex/fragment program object.
199 */
Brian Paul122629f2006-07-20 16:49:57 +0000200static struct gl_program *
201_mesa_init_program_struct( GLcontext *ctx, struct gl_program *prog,
Brian Paul765f1a12004-09-14 22:28:27 +0000202 GLenum target, GLuint id)
Michal Krol2861e732004-03-29 11:09:34 +0000203{
Brian Paula6c423d2004-08-25 15:59:48 +0000204 (void) ctx;
Michal Krol2861e732004-03-29 11:09:34 +0000205 if (prog) {
206 prog->Id = id;
207 prog->Target = target;
208 prog->Resident = GL_TRUE;
209 prog->RefCount = 1;
210 }
211
212 return prog;
213}
214
Brian Paul765f1a12004-09-14 22:28:27 +0000215
216/**
217 * Initialize a new fragment program object.
218 */
Brian Paul122629f2006-07-20 16:49:57 +0000219struct gl_program *
220_mesa_init_fragment_program( GLcontext *ctx, struct gl_fragment_program *prog,
Brian Paul765f1a12004-09-14 22:28:27 +0000221 GLenum target, GLuint id)
Michal Krol2861e732004-03-29 11:09:34 +0000222{
223 if (prog)
224 return _mesa_init_program_struct( ctx, &prog->Base, target, id );
225 else
226 return NULL;
227}
228
Brian Paul765f1a12004-09-14 22:28:27 +0000229
230/**
231 * Initialize a new vertex program object.
232 */
Brian Paul122629f2006-07-20 16:49:57 +0000233struct gl_program *
234_mesa_init_vertex_program( GLcontext *ctx, struct gl_vertex_program *prog,
Brian Paul765f1a12004-09-14 22:28:27 +0000235 GLenum target, GLuint id)
Michal Krol2861e732004-03-29 11:09:34 +0000236{
237 if (prog)
238 return _mesa_init_program_struct( ctx, &prog->Base, target, id );
239 else
240 return NULL;
241}
242
243
244/**
245 * Allocate and initialize a new fragment/vertex program object but
246 * don't put it into the program hash table. Called via
247 * ctx->Driver.NewProgram. May be overridden (ie. replaced) by a
248 * device driver function to implement OO deriviation with additional
249 * types not understood by this function.
250 *
251 * \param ctx context
252 * \param id program id/number
253 * \param target program target/type
254 * \return pointer to new program object
255 */
Brian Paul122629f2006-07-20 16:49:57 +0000256struct gl_program *
Michal Krol2861e732004-03-29 11:09:34 +0000257_mesa_new_program(GLcontext *ctx, GLenum target, GLuint id)
258{
259 switch (target) {
260 case GL_VERTEX_PROGRAM_ARB: /* == GL_VERTEX_PROGRAM_NV */
Brian Paul122629f2006-07-20 16:49:57 +0000261 return _mesa_init_vertex_program(ctx, CALLOC_STRUCT(gl_vertex_program),
262 target, id );
Michal Krol2861e732004-03-29 11:09:34 +0000263 case GL_FRAGMENT_PROGRAM_NV:
264 case GL_FRAGMENT_PROGRAM_ARB:
Brian Paul122629f2006-07-20 16:49:57 +0000265 return _mesa_init_fragment_program(ctx,
266 CALLOC_STRUCT(gl_fragment_program),
267 target, id );
Michal Krol2861e732004-03-29 11:09:34 +0000268 default:
269 _mesa_problem(ctx, "bad target in _mesa_new_program");
270 return NULL;
271 }
272}
273
274
275/**
276 * Delete a program and remove it from the hash table, ignoring the
277 * reference count.
278 * Called via ctx->Driver.DeleteProgram. May be wrapped (OO deriviation)
279 * by a device driver function.
280 */
281void
Brian Paul122629f2006-07-20 16:49:57 +0000282_mesa_delete_program(GLcontext *ctx, struct gl_program *prog)
Michal Krol2861e732004-03-29 11:09:34 +0000283{
Brian Paula6c423d2004-08-25 15:59:48 +0000284 (void) ctx;
Michal Krol2861e732004-03-29 11:09:34 +0000285 ASSERT(prog);
286
287 if (prog->String)
288 _mesa_free(prog->String);
Brian Paulde997602005-11-12 17:53:14 +0000289
290 if (prog->Instructions) {
291 GLuint i;
292 for (i = 0; i < prog->NumInstructions; i++) {
293 if (prog->Instructions[i].Data)
294 _mesa_free(prog->Instructions[i].Data);
Brian Paul575700f2004-12-16 03:07:18 +0000295 }
Brian Paulde997602005-11-12 17:53:14 +0000296 _mesa_free(prog->Instructions);
Michal Krol2861e732004-03-29 11:09:34 +0000297 }
Brian Paulde997602005-11-12 17:53:14 +0000298
Brian Paul65a51c02006-05-24 03:30:31 +0000299 if (prog->Parameters) {
Brian Paulde997602005-11-12 17:53:14 +0000300 _mesa_free_parameter_list(prog->Parameters);
Brian Paul65a51c02006-05-24 03:30:31 +0000301 }
Brian Paulde997602005-11-12 17:53:14 +0000302
Brian Paul58d080b2006-08-25 19:46:31 +0000303 /* XXX this is a little ugly */
304 if (prog->Target == GL_VERTEX_PROGRAM_ARB) {
305 struct gl_vertex_program *vprog = (struct gl_vertex_program *) prog;
306 if (vprog->TnlData)
307 _mesa_free(vprog->TnlData);
308 }
309
Michal Krol2861e732004-03-29 11:09:34 +0000310 _mesa_free(prog);
311}
312
313
Brian Paul4d12a052006-08-23 23:10:14 +0000314/**
315 * Return the gl_program object for a given ID.
316 * Basically just a wrapper for _mesa_HashLookup() to avoid a lot of
317 * casts elsewhere.
318 */
319struct gl_program *
320_mesa_lookup_program(GLcontext *ctx, GLuint id)
321{
322 if (id)
323 return (struct gl_program *) _mesa_HashLookup(ctx->Shared->Programs, id);
324 else
325 return NULL;
326}
327
Michal Krol2861e732004-03-29 11:09:34 +0000328
329/**********************************************************************/
330/* Program parameter functions */
331/**********************************************************************/
332
Brian Paul122629f2006-07-20 16:49:57 +0000333struct gl_program_parameter_list *
Michal Krol2861e732004-03-29 11:09:34 +0000334_mesa_new_parameter_list(void)
335{
Brian Paul122629f2006-07-20 16:49:57 +0000336 return (struct gl_program_parameter_list *)
337 _mesa_calloc(sizeof(struct gl_program_parameter_list));
Michal Krol2861e732004-03-29 11:09:34 +0000338}
339
340
341/**
342 * Free a parameter list and all its parameters
343 */
344void
Brian Paul122629f2006-07-20 16:49:57 +0000345_mesa_free_parameter_list(struct gl_program_parameter_list *paramList)
Michal Krol2861e732004-03-29 11:09:34 +0000346{
Michal Krol2861e732004-03-29 11:09:34 +0000347 GLuint i;
348 for (i = 0; i < paramList->NumParameters; i++) {
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000349 if (paramList->Parameters[i].Name)
350 _mesa_free((void *) paramList->Parameters[i].Name);
Michal Krol2861e732004-03-29 11:09:34 +0000351 }
Brian Paul65a51c02006-05-24 03:30:31 +0000352 _mesa_free(paramList->Parameters);
353 if (paramList->ParameterValues)
354 _mesa_align_free(paramList->ParameterValues);
355 _mesa_free(paramList);
Michal Krol2861e732004-03-29 11:09:34 +0000356}
357
358
359/**
Brian Paul65a51c02006-05-24 03:30:31 +0000360 * Add a new parameter to a parameter list.
361 * \param paramList the list to add the parameter to
362 * \param name the parameter name, will be duplicated/copied!
363 * \param values initial parameter value, 4 GLfloats
364 * \param type type of parameter, such as
Brian Paul16241622005-11-03 02:26:47 +0000365 * \return index of new parameter in the list, or -1 if error (out of mem)
Michal Krol2861e732004-03-29 11:09:34 +0000366 */
367static GLint
Brian Paul122629f2006-07-20 16:49:57 +0000368add_parameter(struct gl_program_parameter_list *paramList,
Michal Krol2861e732004-03-29 11:09:34 +0000369 const char *name, const GLfloat values[4],
Brian Paul613e1ad2005-11-05 02:15:21 +0000370 enum register_file type)
Michal Krol2861e732004-03-29 11:09:34 +0000371{
372 const GLuint n = paramList->NumParameters;
373
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000374 if (n == paramList->Size) {
Brian Paul65a51c02006-05-24 03:30:31 +0000375 /* Need to grow the parameter list array */
376 if (paramList->Size == 0)
Keith Whitwell9899f582005-06-08 21:57:45 +0000377 paramList->Size = 8;
Brian Paul65a51c02006-05-24 03:30:31 +0000378 else
379 paramList->Size *= 2;
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000380
Brian Paul65a51c02006-05-24 03:30:31 +0000381 /* realloc arrays */
Brian Paul122629f2006-07-20 16:49:57 +0000382 paramList->Parameters = (struct gl_program_parameter *)
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000383 _mesa_realloc(paramList->Parameters,
Brian Paul122629f2006-07-20 16:49:57 +0000384 n * sizeof(struct gl_program_parameter),
385 paramList->Size * sizeof(struct gl_program_parameter));
Keith Whitwell9899f582005-06-08 21:57:45 +0000386
Brian Paul65a51c02006-05-24 03:30:31 +0000387 paramList->ParameterValues = (GLfloat (*)[4])
388 _mesa_align_realloc(paramList->ParameterValues, /* old buf */
389 n * 4 * sizeof(GLfloat), /* old size */
390 paramList->Size * 4 *sizeof(GLfloat), /* new sz */
391 16);
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000392 }
Keith Whitwell7c26b612005-04-21 14:46:57 +0000393
394 if (!paramList->Parameters ||
395 !paramList->ParameterValues) {
Michal Krol2861e732004-03-29 11:09:34 +0000396 /* out of memory */
397 paramList->NumParameters = 0;
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000398 paramList->Size = 0;
Michal Krol2861e732004-03-29 11:09:34 +0000399 return -1;
400 }
401 else {
402 paramList->NumParameters = n + 1;
Keith Whitwella42fe192005-05-10 18:22:19 +0000403
404 _mesa_memset(&paramList->Parameters[n], 0,
Brian Paul122629f2006-07-20 16:49:57 +0000405 sizeof(struct gl_program_parameter));
Keith Whitwella42fe192005-05-10 18:22:19 +0000406
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000407 paramList->Parameters[n].Name = name ? _mesa_strdup(name) : NULL;
Michal Krol2861e732004-03-29 11:09:34 +0000408 paramList->Parameters[n].Type = type;
409 if (values)
Keith Whitwell7c26b612005-04-21 14:46:57 +0000410 COPY_4V(paramList->ParameterValues[n], values);
Michal Krol2861e732004-03-29 11:09:34 +0000411 return (GLint) n;
412 }
413}
414
415
416/**
417 * Add a new named program parameter (Ex: NV_fragment_program DEFINE statement)
418 * \return index of the new entry in the parameter list
419 */
420GLint
Brian Paul122629f2006-07-20 16:49:57 +0000421_mesa_add_named_parameter(struct gl_program_parameter_list *paramList,
Michal Krol2861e732004-03-29 11:09:34 +0000422 const char *name, const GLfloat values[4])
423{
Brian Paul613e1ad2005-11-05 02:15:21 +0000424 return add_parameter(paramList, name, values, PROGRAM_NAMED_PARAM);
Michal Krol2861e732004-03-29 11:09:34 +0000425}
426
427
428/**
Brian Paul3b9b8de2006-08-24 21:57:36 +0000429 * Add a new named constant to the parameter list.
430 * This will be used when the program contains something like this:
431 * PARAM myVals = { 0, 1, 2, 3 };
432 *
Brian Paul699a33e2006-11-15 23:19:52 +0000433 * \param paramList the parameter list
434 * \param name the name for the constant
435 * \param values four float values
436 * \return index/position of the new parameter in the parameter list
Michal Krol2861e732004-03-29 11:09:34 +0000437 */
438GLint
Brian Paul122629f2006-07-20 16:49:57 +0000439_mesa_add_named_constant(struct gl_program_parameter_list *paramList,
Brian Paul0c6723a2006-11-15 23:38:02 +0000440 const char *name, const GLfloat values[4],
441 GLuint size)
Michal Krol2861e732004-03-29 11:09:34 +0000442{
Brian Paulfa941e42006-11-16 20:59:11 +0000443#if 0 /* disable this for now -- we need to save the name! */
Brian Paul699a33e2006-11-15 23:19:52 +0000444 GLuint pos, swizzle;
Brian Paul0c6723a2006-11-15 23:38:02 +0000445 ASSERT(size == 4); /* XXX future feature */
Brian Paul699a33e2006-11-15 23:19:52 +0000446 /* check if we already have this constant */
447 if (_mesa_lookup_parameter_constant(paramList, values, 4, &pos, &swizzle)) {
448 return pos;
449 }
Brian Paulfa941e42006-11-16 20:59:11 +0000450#endif
Brian Paul613e1ad2005-11-05 02:15:21 +0000451 return add_parameter(paramList, name, values, PROGRAM_CONSTANT);
Michal Krol2861e732004-03-29 11:09:34 +0000452}
453
454
455/**
456 * Add a new unnamed constant to the parameter list.
Brian Paul3b9b8de2006-08-24 21:57:36 +0000457 * This will be used when the program contains something like this:
458 * MOV r, { 0, 1, 2, 3 };
459 *
Brian Paul699a33e2006-11-15 23:19:52 +0000460 * \param paramList the parameter list
461 * \param values four float values
462 * \return index/position of the new parameter in the parameter list.
Michal Krol2861e732004-03-29 11:09:34 +0000463 */
464GLint
Brian Paul122629f2006-07-20 16:49:57 +0000465_mesa_add_unnamed_constant(struct gl_program_parameter_list *paramList,
Brian Paul0c6723a2006-11-15 23:38:02 +0000466 const GLfloat values[4], GLuint size)
Michal Krol2861e732004-03-29 11:09:34 +0000467{
Brian Paul699a33e2006-11-15 23:19:52 +0000468 GLuint pos, swizzle;
Brian Paul0c6723a2006-11-15 23:38:02 +0000469 ASSERT(size == 4); /* XXX future feature */
Brian Paul699a33e2006-11-15 23:19:52 +0000470 /* check if we already have this constant */
471 if (_mesa_lookup_parameter_constant(paramList, values, 4, &pos, &swizzle)) {
472 return pos;
473 }
Brian Paul613e1ad2005-11-05 02:15:21 +0000474 return add_parameter(paramList, NULL, values, PROGRAM_CONSTANT);
Michal Krol2861e732004-03-29 11:09:34 +0000475}
476
477
478/**
479 * Add a new state reference to the parameter list.
Brian Paul3b9b8de2006-08-24 21:57:36 +0000480 * This will be used when the program contains something like this:
481 * PARAM ambient = state.material.front.ambient;
482 *
Brian Paul699a33e2006-11-15 23:19:52 +0000483 * \param paramList the parameter list
484 * \param state an array of 6 state tokens
Michal Krol2861e732004-03-29 11:09:34 +0000485 * \return index of the new parameter.
486 */
487GLint
Brian Paul122629f2006-07-20 16:49:57 +0000488_mesa_add_state_reference(struct gl_program_parameter_list *paramList,
Brian Paul16241622005-11-03 02:26:47 +0000489 const GLint *stateTokens)
Michal Krol2861e732004-03-29 11:09:34 +0000490{
Brian Paul16241622005-11-03 02:26:47 +0000491 /* XXX we should probably search the current parameter list to see if
492 * the new state reference is already present.
Michal Krol2861e732004-03-29 11:09:34 +0000493 */
Brian Paul16241622005-11-03 02:26:47 +0000494 GLint index;
Brian Paul7b98b402005-11-12 23:25:49 +0000495 const char *name = make_state_string(stateTokens);
Michal Krol2861e732004-03-29 11:09:34 +0000496
Brian Paul7b98b402005-11-12 23:25:49 +0000497 index = add_parameter(paramList, name, NULL, PROGRAM_STATE_VAR);
Brian Paul16241622005-11-03 02:26:47 +0000498 if (index >= 0) {
499 GLuint i;
Brian Paul65a51c02006-05-24 03:30:31 +0000500 for (i = 0; i < 6; i++) {
Brian Paul16241622005-11-03 02:26:47 +0000501 paramList->Parameters[index].StateIndexes[i]
502 = (enum state_index) stateTokens[i];
Brian Paul65a51c02006-05-24 03:30:31 +0000503 }
Brian Paulef987aa2006-10-31 19:53:03 +0000504 paramList->StateFlags |= make_state_flags(stateTokens);
Brian Paul16241622005-11-03 02:26:47 +0000505 }
Michal Krol2861e732004-03-29 11:09:34 +0000506
Brian Paul5a67af92006-05-24 03:25:22 +0000507 /* free name string here since we duplicated it in add_parameter() */
508 _mesa_free((void *) name);
509
Brian Paul16241622005-11-03 02:26:47 +0000510 return index;
Michal Krol2861e732004-03-29 11:09:34 +0000511}
512
513
514/**
515 * Lookup a parameter value by name in the given parameter list.
516 * \return pointer to the float[4] values.
517 */
518GLfloat *
Brian Paul699a33e2006-11-15 23:19:52 +0000519_mesa_lookup_parameter_value(const struct gl_program_parameter_list *paramList,
Michal Krol2861e732004-03-29 11:09:34 +0000520 GLsizei nameLen, const char *name)
521{
522 GLuint i;
523
524 if (!paramList)
525 return NULL;
526
527 if (nameLen == -1) {
528 /* name is null-terminated */
529 for (i = 0; i < paramList->NumParameters; i++) {
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000530 if (paramList->Parameters[i].Name &&
531 _mesa_strcmp(paramList->Parameters[i].Name, name) == 0)
Keith Whitwell7c26b612005-04-21 14:46:57 +0000532 return paramList->ParameterValues[i];
Michal Krol2861e732004-03-29 11:09:34 +0000533 }
534 }
535 else {
536 /* name is not null-terminated, use nameLen */
537 for (i = 0; i < paramList->NumParameters; i++) {
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000538 if (paramList->Parameters[i].Name &&
539 _mesa_strncmp(paramList->Parameters[i].Name, name, nameLen) == 0
Michal Krol2861e732004-03-29 11:09:34 +0000540 && _mesa_strlen(paramList->Parameters[i].Name) == (size_t)nameLen)
Keith Whitwell7c26b612005-04-21 14:46:57 +0000541 return paramList->ParameterValues[i];
Michal Krol2861e732004-03-29 11:09:34 +0000542 }
543 }
544 return NULL;
545}
546
547
548/**
Brian Paul699a33e2006-11-15 23:19:52 +0000549 * Given a program parameter name, find its position in the list of parameters.
550 * \param paramList the parameter list to search
551 * \param nameLen length of name (in chars).
552 * If length is negative, assume that name is null-terminated.
553 * \param name the name to search for
Michal Krol2861e732004-03-29 11:09:34 +0000554 * \return index of parameter in the list.
555 */
556GLint
Brian Paul699a33e2006-11-15 23:19:52 +0000557_mesa_lookup_parameter_index(const struct gl_program_parameter_list *paramList,
Michal Krol2861e732004-03-29 11:09:34 +0000558 GLsizei nameLen, const char *name)
559{
560 GLint i;
561
562 if (!paramList)
563 return -1;
564
565 if (nameLen == -1) {
566 /* name is null-terminated */
567 for (i = 0; i < (GLint) paramList->NumParameters; i++) {
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000568 if (paramList->Parameters[i].Name &&
569 _mesa_strcmp(paramList->Parameters[i].Name, name) == 0)
Michal Krol2861e732004-03-29 11:09:34 +0000570 return i;
571 }
572 }
573 else {
574 /* name is not null-terminated, use nameLen */
575 for (i = 0; i < (GLint) paramList->NumParameters; i++) {
Keith Whitwellf29f2fc2005-05-10 13:56:23 +0000576 if (paramList->Parameters[i].Name &&
577 _mesa_strncmp(paramList->Parameters[i].Name, name, nameLen) == 0
Michal Krol2861e732004-03-29 11:09:34 +0000578 && _mesa_strlen(paramList->Parameters[i].Name) == (size_t)nameLen)
579 return i;
580 }
581 }
582 return -1;
583}
584
585
586/**
Brian Paul699a33e2006-11-15 23:19:52 +0000587 * Look for a float vector in the given parameter list. The float vector
588 * may be of length 1, 2, 3 or 4.
589 * \param paramList the parameter list to search
590 * \param v the float vector to search for
591 * \param size number of element in v
592 * \param posOut returns the position of the constant, if found
593 * \param swizzleOut returns a swizzle mask describing location of the
594 * vector elements if found
595 * \return GL_TRUE if found, GL_FALSE if not found
596 */
597GLboolean
598_mesa_lookup_parameter_constant(const struct gl_program_parameter_list *paramList,
599 const GLfloat v[], GLsizei vSize,
600 GLuint *posOut, GLuint *swizzleOut)
601{
602 GLuint i;
603
604 assert(vSize >= 1);
605 assert(vSize <= 4);
606
607 if (!paramList)
608 return -1;
609
610 for (i = 0; i < paramList->NumParameters; i++) {
611 if (paramList->Parameters[i].Type == PROGRAM_CONSTANT) {
612 const GLint maxShift = 4 - vSize;
613 GLint shift, j;
614 for (shift = 0; shift <= maxShift; shift++) {
615 GLint matched = 0;
616 GLuint swizzle[4];
617 swizzle[0] = swizzle[1] = swizzle[2] = swizzle[3] = 0;
618 /* XXX we could do out-of-order swizzle matches too, someday */
619 for (j = 0; j < vSize; j++) {
620 assert(shift + j < 4);
621 if (paramList->ParameterValues[i][shift + j] == v[j]) {
622 matched++;
623 swizzle[j] = shift + j;
624 }
625 }
626 if (matched == vSize) {
627 /* found! */
628 *posOut = i;
629 *swizzleOut = MAKE_SWIZZLE4(swizzle[0], swizzle[1],
630 swizzle[2], swizzle[3]);
631 return GL_TRUE;
632 }
633 }
634 }
635 }
636
637 return GL_FALSE;
638}
639
640
641/**
Michal Krol2861e732004-03-29 11:09:34 +0000642 * Use the list of tokens in the state[] array to find global GL state
643 * and return it in <value>. Usually, four values are returned in <value>
644 * but matrix queries may return as many as 16 values.
645 * This function is used for ARB vertex/fragment programs.
646 * The program parser will produce the state[] values.
647 */
648static void
649_mesa_fetch_state(GLcontext *ctx, const enum state_index state[],
650 GLfloat *value)
651{
652 switch (state[0]) {
653 case STATE_MATERIAL:
654 {
655 /* state[1] is either 0=front or 1=back side */
656 const GLuint face = (GLuint) state[1];
Brian Paulef987aa2006-10-31 19:53:03 +0000657 const struct gl_material *mat = &ctx->Light.Material;
658 ASSERT(face == 0 || face == 1);
659 /* we rely on tokens numbered so that _BACK_ == _FRONT_+ 1 */
660 ASSERT(MAT_ATTRIB_FRONT_AMBIENT + 1 == MAT_ATTRIB_BACK_AMBIENT);
661 /* XXX we could get rid of this switch entirely with a little
662 * work in arbprogparse.c's parse_state_single_item().
663 */
Michal Krol2861e732004-03-29 11:09:34 +0000664 /* state[2] is the material attribute */
665 switch (state[2]) {
666 case STATE_AMBIENT:
Brian Paulef987aa2006-10-31 19:53:03 +0000667 COPY_4V(value, mat->Attrib[MAT_ATTRIB_FRONT_AMBIENT + face]);
Michal Krol2861e732004-03-29 11:09:34 +0000668 return;
669 case STATE_DIFFUSE:
Brian Paulef987aa2006-10-31 19:53:03 +0000670 COPY_4V(value, mat->Attrib[MAT_ATTRIB_FRONT_DIFFUSE + face]);
Michal Krol2861e732004-03-29 11:09:34 +0000671 return;
672 case STATE_SPECULAR:
Brian Paulef987aa2006-10-31 19:53:03 +0000673 COPY_4V(value, mat->Attrib[MAT_ATTRIB_FRONT_SPECULAR + face]);
Michal Krol2861e732004-03-29 11:09:34 +0000674 return;
675 case STATE_EMISSION:
Brian Paulef987aa2006-10-31 19:53:03 +0000676 COPY_4V(value, mat->Attrib[MAT_ATTRIB_FRONT_EMISSION + face]);
Michal Krol2861e732004-03-29 11:09:34 +0000677 return;
678 case STATE_SHININESS:
Brian Paulef987aa2006-10-31 19:53:03 +0000679 value[0] = mat->Attrib[MAT_ATTRIB_FRONT_SHININESS + face][0];
Michal Krol2861e732004-03-29 11:09:34 +0000680 value[1] = 0.0F;
681 value[2] = 0.0F;
682 value[3] = 1.0F;
683 return;
684 default:
685 _mesa_problem(ctx, "Invalid material state in fetch_state");
686 return;
687 }
Alan Hourihane22ae6332004-12-02 13:29:40 +0000688 }
Michal Krol2861e732004-03-29 11:09:34 +0000689 case STATE_LIGHT:
690 {
691 /* state[1] is the light number */
692 const GLuint ln = (GLuint) state[1];
693 /* state[2] is the light attribute */
694 switch (state[2]) {
695 case STATE_AMBIENT:
696 COPY_4V(value, ctx->Light.Light[ln].Ambient);
697 return;
698 case STATE_DIFFUSE:
699 COPY_4V(value, ctx->Light.Light[ln].Diffuse);
700 return;
701 case STATE_SPECULAR:
702 COPY_4V(value, ctx->Light.Light[ln].Specular);
703 return;
704 case STATE_POSITION:
705 COPY_4V(value, ctx->Light.Light[ln].EyePosition);
706 return;
707 case STATE_ATTENUATION:
708 value[0] = ctx->Light.Light[ln].ConstantAttenuation;
709 value[1] = ctx->Light.Light[ln].LinearAttenuation;
710 value[2] = ctx->Light.Light[ln].QuadraticAttenuation;
711 value[3] = ctx->Light.Light[ln].SpotExponent;
712 return;
713 case STATE_SPOT_DIRECTION:
Brian Paul52bf0052005-04-20 23:47:03 +0000714 COPY_3V(value, ctx->Light.Light[ln].EyeDirection);
715 value[3] = ctx->Light.Light[ln]._CosCutoff;
Michal Krol2861e732004-03-29 11:09:34 +0000716 return;
717 case STATE_HALF:
718 {
719 GLfloat eye_z[] = {0, 0, 1};
720
721 /* Compute infinite half angle vector:
722 * half-vector = light_position + (0, 0, 1)
723 * and then normalize. w = 0
Keith Whitwell7c26b612005-04-21 14:46:57 +0000724 *
725 * light.EyePosition.w should be 0 for infinite lights.
Michal Krol2861e732004-03-29 11:09:34 +0000726 */
Keith Whitwell7c26b612005-04-21 14:46:57 +0000727 ADD_3V(value, eye_z, ctx->Light.Light[ln].EyePosition);
728 NORMALIZE_3FV(value);
729 value[3] = 0;
Michal Krol2861e732004-03-29 11:09:34 +0000730 }
731 return;
Keith Whitwell7c26b612005-04-21 14:46:57 +0000732 case STATE_POSITION_NORMALIZED:
733 COPY_4V(value, ctx->Light.Light[ln].EyePosition);
734 NORMALIZE_3FV( value );
735 return;
Michal Krol2861e732004-03-29 11:09:34 +0000736 default:
737 _mesa_problem(ctx, "Invalid light state in fetch_state");
738 return;
739 }
740 }
Michal Krol2861e732004-03-29 11:09:34 +0000741 case STATE_LIGHTMODEL_AMBIENT:
742 COPY_4V(value, ctx->Light.Model.Ambient);
743 return;
744 case STATE_LIGHTMODEL_SCENECOLOR:
745 if (state[1] == 0) {
746 /* front */
747 GLint i;
Keith Whitwell78803b22005-04-15 12:57:23 +0000748 for (i = 0; i < 3; i++) {
Michal Krol2861e732004-03-29 11:09:34 +0000749 value[i] = ctx->Light.Model.Ambient[i]
750 * ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_AMBIENT][i]
751 + ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_EMISSION][i];
752 }
Keith Whitwell78803b22005-04-15 12:57:23 +0000753 value[3] = ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_DIFFUSE][3];
Michal Krol2861e732004-03-29 11:09:34 +0000754 }
755 else {
756 /* back */
757 GLint i;
Keith Whitwell78803b22005-04-15 12:57:23 +0000758 for (i = 0; i < 3; i++) {
Michal Krol2861e732004-03-29 11:09:34 +0000759 value[i] = ctx->Light.Model.Ambient[i]
760 * ctx->Light.Material.Attrib[MAT_ATTRIB_BACK_AMBIENT][i]
761 + ctx->Light.Material.Attrib[MAT_ATTRIB_BACK_EMISSION][i];
762 }
Keith Whitwell78803b22005-04-15 12:57:23 +0000763 value[3] = ctx->Light.Material.Attrib[MAT_ATTRIB_BACK_DIFFUSE][3];
Michal Krol2861e732004-03-29 11:09:34 +0000764 }
765 return;
766 case STATE_LIGHTPROD:
767 {
768 const GLuint ln = (GLuint) state[1];
769 const GLuint face = (GLuint) state[2];
770 GLint i;
771 ASSERT(face == 0 || face == 1);
772 switch (state[3]) {
773 case STATE_AMBIENT:
774 for (i = 0; i < 3; i++) {
775 value[i] = ctx->Light.Light[ln].Ambient[i] *
776 ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_AMBIENT+face][i];
777 }
778 /* [3] = material alpha */
779 value[3] = ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_DIFFUSE+face][3];
780 return;
781 case STATE_DIFFUSE:
782 for (i = 0; i < 3; i++) {
783 value[i] = ctx->Light.Light[ln].Diffuse[i] *
784 ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_DIFFUSE+face][i];
785 }
786 /* [3] = material alpha */
787 value[3] = ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_DIFFUSE+face][3];
788 return;
789 case STATE_SPECULAR:
790 for (i = 0; i < 3; i++) {
791 value[i] = ctx->Light.Light[ln].Specular[i] *
792 ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_SPECULAR+face][i];
793 }
794 /* [3] = material alpha */
795 value[3] = ctx->Light.Material.Attrib[MAT_ATTRIB_FRONT_DIFFUSE+face][3];
796 return;
797 default:
798 _mesa_problem(ctx, "Invalid lightprod state in fetch_state");
799 return;
800 }
801 }
Michal Krol2861e732004-03-29 11:09:34 +0000802 case STATE_TEXGEN:
803 {
804 /* state[1] is the texture unit */
805 const GLuint unit = (GLuint) state[1];
806 /* state[2] is the texgen attribute */
807 switch (state[2]) {
808 case STATE_TEXGEN_EYE_S:
809 COPY_4V(value, ctx->Texture.Unit[unit].EyePlaneS);
810 return;
811 case STATE_TEXGEN_EYE_T:
812 COPY_4V(value, ctx->Texture.Unit[unit].EyePlaneT);
813 return;
814 case STATE_TEXGEN_EYE_R:
815 COPY_4V(value, ctx->Texture.Unit[unit].EyePlaneR);
816 return;
817 case STATE_TEXGEN_EYE_Q:
818 COPY_4V(value, ctx->Texture.Unit[unit].EyePlaneQ);
819 return;
820 case STATE_TEXGEN_OBJECT_S:
821 COPY_4V(value, ctx->Texture.Unit[unit].ObjectPlaneS);
822 return;
823 case STATE_TEXGEN_OBJECT_T:
824 COPY_4V(value, ctx->Texture.Unit[unit].ObjectPlaneT);
825 return;
826 case STATE_TEXGEN_OBJECT_R:
827 COPY_4V(value, ctx->Texture.Unit[unit].ObjectPlaneR);
828 return;
829 case STATE_TEXGEN_OBJECT_Q:
830 COPY_4V(value, ctx->Texture.Unit[unit].ObjectPlaneQ);
831 return;
832 default:
833 _mesa_problem(ctx, "Invalid texgen state in fetch_state");
834 return;
835 }
836 }
Michal Krol2861e732004-03-29 11:09:34 +0000837 case STATE_TEXENV_COLOR:
838 {
839 /* state[1] is the texture unit */
840 const GLuint unit = (GLuint) state[1];
841 COPY_4V(value, ctx->Texture.Unit[unit].EnvColor);
842 }
843 return;
844 case STATE_FOG_COLOR:
845 COPY_4V(value, ctx->Fog.Color);
846 return;
847 case STATE_FOG_PARAMS:
848 value[0] = ctx->Fog.Density;
849 value[1] = ctx->Fog.Start;
850 value[2] = ctx->Fog.End;
851 value[3] = 1.0F / (ctx->Fog.End - ctx->Fog.Start);
852 return;
853 case STATE_CLIPPLANE:
854 {
855 const GLuint plane = (GLuint) state[1];
856 COPY_4V(value, ctx->Transform.EyeUserPlane[plane]);
857 }
858 return;
859 case STATE_POINT_SIZE:
860 value[0] = ctx->Point.Size;
861 value[1] = ctx->Point.MinSize;
862 value[2] = ctx->Point.MaxSize;
863 value[3] = ctx->Point.Threshold;
864 return;
865 case STATE_POINT_ATTENUATION:
866 value[0] = ctx->Point.Params[0];
867 value[1] = ctx->Point.Params[1];
868 value[2] = ctx->Point.Params[2];
869 value[3] = 1.0F;
870 return;
871 case STATE_MATRIX:
872 {
873 /* state[1] = modelview, projection, texture, etc. */
874 /* state[2] = which texture matrix or program matrix */
875 /* state[3] = first column to fetch */
876 /* state[4] = last column to fetch */
877 /* state[5] = transpose, inverse or invtrans */
878
879 const GLmatrix *matrix;
880 const enum state_index mat = state[1];
881 const GLuint index = (GLuint) state[2];
882 const GLuint first = (GLuint) state[3];
883 const GLuint last = (GLuint) state[4];
884 const enum state_index modifier = state[5];
885 const GLfloat *m;
886 GLuint row, i;
887 if (mat == STATE_MODELVIEW) {
888 matrix = ctx->ModelviewMatrixStack.Top;
889 }
890 else if (mat == STATE_PROJECTION) {
891 matrix = ctx->ProjectionMatrixStack.Top;
892 }
893 else if (mat == STATE_MVP) {
894 matrix = &ctx->_ModelProjectMatrix;
895 }
896 else if (mat == STATE_TEXTURE) {
897 matrix = ctx->TextureMatrixStack[index].Top;
898 }
899 else if (mat == STATE_PROGRAM) {
900 matrix = ctx->ProgramMatrixStack[index].Top;
901 }
902 else {
903 _mesa_problem(ctx, "Bad matrix name in _mesa_fetch_state()");
904 return;
905 }
906 if (modifier == STATE_MATRIX_INVERSE ||
907 modifier == STATE_MATRIX_INVTRANS) {
Keith Whitwell78803b22005-04-15 12:57:23 +0000908 /* Be sure inverse is up to date:
909 */
Brian Paul122629f2006-07-20 16:49:57 +0000910 _math_matrix_alloc_inv( (GLmatrix *) matrix );
Jouk Jansen49b1d952005-04-18 13:05:24 +0000911 _math_matrix_analyse( (GLmatrix*) matrix );
Michal Krol2861e732004-03-29 11:09:34 +0000912 m = matrix->inv;
913 }
914 else {
915 m = matrix->m;
916 }
917 if (modifier == STATE_MATRIX_TRANSPOSE ||
918 modifier == STATE_MATRIX_INVTRANS) {
919 for (i = 0, row = first; row <= last; row++) {
920 value[i++] = m[row * 4 + 0];
921 value[i++] = m[row * 4 + 1];
922 value[i++] = m[row * 4 + 2];
923 value[i++] = m[row * 4 + 3];
924 }
925 }
926 else {
927 for (i = 0, row = first; row <= last; row++) {
928 value[i++] = m[row + 0];
929 value[i++] = m[row + 4];
930 value[i++] = m[row + 8];
931 value[i++] = m[row + 12];
932 }
933 }
934 }
935 return;
936 case STATE_DEPTH_RANGE:
Brian Paul824fdf02004-06-29 00:00:06 +0000937 value[0] = ctx->Viewport.Near; /* near */
938 value[1] = ctx->Viewport.Far; /* far */
939 value[2] = ctx->Viewport.Far - ctx->Viewport.Near; /* far - near */
940 value[3] = 0;
Michal Krol2861e732004-03-29 11:09:34 +0000941 return;
942 case STATE_FRAGMENT_PROGRAM:
943 {
944 /* state[1] = {STATE_ENV, STATE_LOCAL} */
945 /* state[2] = parameter index */
Brian Paul824fdf02004-06-29 00:00:06 +0000946 const int idx = (int) state[2];
Michal Krol2861e732004-03-29 11:09:34 +0000947 switch (state[1]) {
948 case STATE_ENV:
Brian Paul824fdf02004-06-29 00:00:06 +0000949 COPY_4V(value, ctx->FragmentProgram.Parameters[idx]);
Michal Krol2861e732004-03-29 11:09:34 +0000950 break;
Michal Krol2861e732004-03-29 11:09:34 +0000951 case STATE_LOCAL:
952 COPY_4V(value, ctx->FragmentProgram.Current->Base.LocalParams[idx]);
Brian Paul824fdf02004-06-29 00:00:06 +0000953 break;
Michal Krol2861e732004-03-29 11:09:34 +0000954 default:
955 _mesa_problem(ctx, "Bad state switch in _mesa_fetch_state()");
956 return;
Brian Paul824fdf02004-06-29 00:00:06 +0000957 }
958 }
Michal Krol2861e732004-03-29 11:09:34 +0000959 return;
960
961 case STATE_VERTEX_PROGRAM:
Brian Paul824fdf02004-06-29 00:00:06 +0000962 {
Michal Krol2861e732004-03-29 11:09:34 +0000963 /* state[1] = {STATE_ENV, STATE_LOCAL} */
964 /* state[2] = parameter index */
Brian Paul824fdf02004-06-29 00:00:06 +0000965 const int idx = (int) state[2];
Michal Krol2861e732004-03-29 11:09:34 +0000966 switch (state[1]) {
967 case STATE_ENV:
Brian Paul824fdf02004-06-29 00:00:06 +0000968 COPY_4V(value, ctx->VertexProgram.Parameters[idx]);
Michal Krol2861e732004-03-29 11:09:34 +0000969 break;
Michal Krol2861e732004-03-29 11:09:34 +0000970 case STATE_LOCAL:
971 COPY_4V(value, ctx->VertexProgram.Current->Base.LocalParams[idx]);
Brian Paul824fdf02004-06-29 00:00:06 +0000972 break;
Michal Krol2861e732004-03-29 11:09:34 +0000973 default:
974 _mesa_problem(ctx, "Bad state switch in _mesa_fetch_state()");
975 return;
Brian Paul824fdf02004-06-29 00:00:06 +0000976 }
977 }
Michal Krol2861e732004-03-29 11:09:34 +0000978 return;
Keith Whitwell7c26b612005-04-21 14:46:57 +0000979
980 case STATE_INTERNAL:
981 {
982 switch (state[1]) {
983 case STATE_NORMAL_SCALE:
984 ASSIGN_4V(value, ctx->_ModelViewInvScale, 0, 0, 1);
985 break;
Keith Whitwell187f2cf2006-09-20 14:30:22 +0000986 case STATE_TEXRECT_SCALE: {
987 const int unit = (int) state[2];
988 const struct gl_texture_object *texObj = ctx->Texture.Unit[unit]._Current;
989 if (texObj) {
990 struct gl_texture_image *texImage = texObj->Image[0][0];
991 ASSIGN_4V(value, 1.0 / texImage->Width, 1.0 / texImage->Height, 0, 1);
992 }
993 break;
994 }
Keith Whitwell7c26b612005-04-21 14:46:57 +0000995 default:
996 _mesa_problem(ctx, "Bad state switch in _mesa_fetch_state()");
997 return;
998 }
999 }
1000 return;
1001
Michal Krol2861e732004-03-29 11:09:34 +00001002 default:
Brian Paul824fdf02004-06-29 00:00:06 +00001003 _mesa_problem(ctx, "Invalid state in _mesa_fetch_state");
Michal Krol2861e732004-03-29 11:09:34 +00001004 return;
1005 }
1006}
1007
1008
Brian Paul65a51c02006-05-24 03:30:31 +00001009/**
Brian Paulef987aa2006-10-31 19:53:03 +00001010 * Return a bitmask of the Mesa state flags (_NEW_* values) which would
1011 * indicate that the given context state may have changed.
1012 * The bitmask is used during validation to determine if we need to update
1013 * vertex/fragment program parameters (like "state.material.color") when
1014 * some GL state has changed.
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001015 */
Brian Paulef987aa2006-10-31 19:53:03 +00001016static GLbitfield
1017make_state_flags(const GLint state[])
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001018{
1019 switch (state[0]) {
1020 case STATE_MATERIAL:
1021 case STATE_LIGHT:
1022 case STATE_LIGHTMODEL_AMBIENT:
1023 case STATE_LIGHTMODEL_SCENECOLOR:
1024 case STATE_LIGHTPROD:
1025 return _NEW_LIGHT;
1026
1027 case STATE_TEXGEN:
1028 case STATE_TEXENV_COLOR:
1029 return _NEW_TEXTURE;
1030
1031 case STATE_FOG_COLOR:
1032 case STATE_FOG_PARAMS:
1033 return _NEW_FOG;
1034
1035 case STATE_CLIPPLANE:
1036 return _NEW_TRANSFORM;
1037
1038 case STATE_POINT_SIZE:
1039 case STATE_POINT_ATTENUATION:
1040 return _NEW_POINT;
1041
1042 case STATE_MATRIX:
1043 switch (state[1]) {
1044 case STATE_MODELVIEW:
1045 return _NEW_MODELVIEW;
1046 case STATE_PROJECTION:
1047 return _NEW_PROJECTION;
1048 case STATE_MVP:
1049 return _NEW_MODELVIEW | _NEW_PROJECTION;
1050 case STATE_TEXTURE:
1051 return _NEW_TEXTURE_MATRIX;
1052 case STATE_PROGRAM:
1053 return _NEW_TRACK_MATRIX;
1054 default:
Brian Paul65a51c02006-05-24 03:30:31 +00001055 _mesa_problem(NULL, "unexpected matrix in make_state_flags()");
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001056 return 0;
1057 }
1058
1059 case STATE_DEPTH_RANGE:
1060 return _NEW_VIEWPORT;
1061
1062 case STATE_FRAGMENT_PROGRAM:
1063 case STATE_VERTEX_PROGRAM:
1064 return _NEW_PROGRAM;
1065
1066 case STATE_INTERNAL:
1067 switch (state[1]) {
1068 case STATE_NORMAL_SCALE:
1069 return _NEW_MODELVIEW;
Keith Whitwell187f2cf2006-09-20 14:30:22 +00001070 case STATE_TEXRECT_SCALE:
1071 return _NEW_TEXTURE;
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001072 default:
Brian Paul65a51c02006-05-24 03:30:31 +00001073 _mesa_problem(NULL, "unexpected int. state in make_state_flags()");
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001074 return 0;
1075 }
1076
1077 default:
Brian Paul65a51c02006-05-24 03:30:31 +00001078 _mesa_problem(NULL, "unexpected state[0] in make_state_flags()");
Keith Whitwellec1ffd92005-11-22 12:12:17 +00001079 return 0;
1080 }
1081}
1082
1083
Brian Paul7b98b402005-11-12 23:25:49 +00001084static void
1085append(char *dst, const char *src)
1086{
1087 while (*dst)
1088 dst++;
1089 while (*src)
1090 *dst++ = *src++;
1091 *dst = 0;
1092}
1093
Brian Paul65a51c02006-05-24 03:30:31 +00001094
Brian Paul7b98b402005-11-12 23:25:49 +00001095static void
1096append_token(char *dst, enum state_index k)
1097{
1098 switch (k) {
1099 case STATE_MATERIAL:
1100 append(dst, "material.");
1101 break;
1102 case STATE_LIGHT:
1103 append(dst, "light");
1104 break;
1105 case STATE_LIGHTMODEL_AMBIENT:
1106 append(dst, "lightmodel.ambient");
1107 break;
1108 case STATE_LIGHTMODEL_SCENECOLOR:
1109 break;
1110 case STATE_LIGHTPROD:
1111 append(dst, "lightprod");
1112 break;
1113 case STATE_TEXGEN:
1114 append(dst, "texgen");
1115 break;
1116 case STATE_FOG_COLOR:
1117 append(dst, "fog.color");
1118 break;
1119 case STATE_FOG_PARAMS:
1120 append(dst, "fog.params");
1121 break;
1122 case STATE_CLIPPLANE:
1123 append(dst, "clip");
1124 break;
1125 case STATE_POINT_SIZE:
1126 append(dst, "point.size");
1127 break;
1128 case STATE_POINT_ATTENUATION:
1129 append(dst, "point.attenuation");
1130 break;
1131 case STATE_MATRIX:
1132 append(dst, "matrix.");
1133 break;
1134 case STATE_MODELVIEW:
1135 append(dst, "modelview");
1136 break;
1137 case STATE_PROJECTION:
1138 append(dst, "projection");
1139 break;
1140 case STATE_MVP:
1141 append(dst, "mvp");
1142 break;
1143 case STATE_TEXTURE:
1144 append(dst, "texture");
1145 break;
1146 case STATE_PROGRAM:
1147 append(dst, "program");
1148 break;
1149 case STATE_MATRIX_INVERSE:
1150 append(dst, ".inverse");
1151 break;
1152 case STATE_MATRIX_TRANSPOSE:
1153 append(dst, ".transpose");
1154 break;
1155 case STATE_MATRIX_INVTRANS:
1156 append(dst, ".invtrans");
1157 break;
1158 case STATE_AMBIENT:
1159 append(dst, "ambient");
1160 break;
1161 case STATE_DIFFUSE:
1162 append(dst, "diffuse");
1163 break;
1164 case STATE_SPECULAR:
1165 append(dst, "specular");
1166 break;
1167 case STATE_EMISSION:
1168 append(dst, "emission");
1169 break;
1170 case STATE_SHININESS:
1171 append(dst, "shininess");
1172 break;
1173 case STATE_HALF:
1174 append(dst, "half");
1175 break;
1176 case STATE_POSITION:
1177 append(dst, ".position");
1178 break;
1179 case STATE_ATTENUATION:
1180 append(dst, ".attenuation");
1181 break;
1182 case STATE_SPOT_DIRECTION:
1183 append(dst, ".spot.direction");
1184 break;
1185 case STATE_TEXGEN_EYE_S:
1186 append(dst, "eye.s");
1187 break;
1188 case STATE_TEXGEN_EYE_T:
1189 append(dst, "eye.t");
1190 break;
1191 case STATE_TEXGEN_EYE_R:
1192 append(dst, "eye.r");
1193 break;
1194 case STATE_TEXGEN_EYE_Q:
1195 append(dst, "eye.q");
1196 break;
1197 case STATE_TEXGEN_OBJECT_S:
1198 append(dst, "object.s");
1199 break;
1200 case STATE_TEXGEN_OBJECT_T:
1201 append(dst, "object.t");
1202 break;
1203 case STATE_TEXGEN_OBJECT_R:
1204 append(dst, "object.r");
1205 break;
1206 case STATE_TEXGEN_OBJECT_Q:
1207 append(dst, "object.q");
1208 break;
1209 case STATE_TEXENV_COLOR:
1210 append(dst, "texenv");
1211 break;
1212 case STATE_DEPTH_RANGE:
1213 append(dst, "depth.range");
1214 break;
1215 case STATE_VERTEX_PROGRAM:
1216 case STATE_FRAGMENT_PROGRAM:
1217 break;
1218 case STATE_ENV:
1219 append(dst, "env");
1220 break;
1221 case STATE_LOCAL:
1222 append(dst, "local");
1223 break;
1224 case STATE_INTERNAL:
1225 case STATE_NORMAL_SCALE:
1226 case STATE_POSITION_NORMALIZED:
1227 append(dst, "(internal)");
1228 break;
1229 default:
1230 ;
1231 }
1232}
1233
1234static void
1235append_face(char *dst, GLint face)
1236{
1237 if (face == 0)
1238 append(dst, "front.");
1239 else
1240 append(dst, "back.");
1241}
1242
1243static void
1244append_index(char *dst, GLint index)
1245{
1246 char s[20];
1247 _mesa_sprintf(s, "[%d].", index);
1248 append(dst, s);
1249}
1250
1251/**
1252 * Make a string from the given state vector.
1253 * For example, return "state.matrix.texture[2].inverse".
Brian Paul65a51c02006-05-24 03:30:31 +00001254 * Use _mesa_free() to deallocate the string.
Brian Paul7b98b402005-11-12 23:25:49 +00001255 */
1256static const char *
1257make_state_string(const GLint state[6])
1258{
1259 char str[1000] = "";
1260 char tmp[30];
1261
1262 append(str, "state.");
Brian Paul95801792005-12-06 15:41:43 +00001263 append_token(str, (enum state_index) state[0]);
Brian Paul7b98b402005-11-12 23:25:49 +00001264
1265 switch (state[0]) {
1266 case STATE_MATERIAL:
1267 append_face(str, state[1]);
Brian Paul95801792005-12-06 15:41:43 +00001268 append_token(str, (enum state_index) state[2]);
Brian Paul7b98b402005-11-12 23:25:49 +00001269 break;
1270 case STATE_LIGHT:
1271 append(str, "light");
1272 append_index(str, state[1]); /* light number [i]. */
Brian Paul95801792005-12-06 15:41:43 +00001273 append_token(str, (enum state_index) state[2]); /* coefficients */
Brian Paul7b98b402005-11-12 23:25:49 +00001274 break;
1275 case STATE_LIGHTMODEL_AMBIENT:
1276 append(str, "lightmodel.ambient");
1277 break;
1278 case STATE_LIGHTMODEL_SCENECOLOR:
1279 if (state[1] == 0) {
1280 append(str, "lightmodel.front.scenecolor");
1281 }
1282 else {
1283 append(str, "lightmodel.back.scenecolor");
1284 }
1285 break;
1286 case STATE_LIGHTPROD:
1287 append_index(str, state[1]); /* light number [i]. */
1288 append_face(str, state[2]);
Brian Paul95801792005-12-06 15:41:43 +00001289 append_token(str, (enum state_index) state[3]);
Brian Paul7b98b402005-11-12 23:25:49 +00001290 break;
1291 case STATE_TEXGEN:
1292 append_index(str, state[1]); /* tex unit [i] */
Brian Paul95801792005-12-06 15:41:43 +00001293 append_token(str, (enum state_index) state[2]); /* plane coef */
Brian Paul7b98b402005-11-12 23:25:49 +00001294 break;
1295 case STATE_TEXENV_COLOR:
1296 append_index(str, state[1]); /* tex unit [i] */
1297 append(str, "color");
1298 break;
1299 case STATE_FOG_COLOR:
1300 case STATE_FOG_PARAMS:
1301 break;
1302 case STATE_CLIPPLANE:
1303 append_index(str, state[1]); /* plane [i] */
1304 append(str, "plane");
1305 break;
1306 case STATE_POINT_SIZE:
1307 case STATE_POINT_ATTENUATION:
1308 break;
1309 case STATE_MATRIX:
1310 {
1311 /* state[1] = modelview, projection, texture, etc. */
1312 /* state[2] = which texture matrix or program matrix */
1313 /* state[3] = first column to fetch */
1314 /* state[4] = last column to fetch */
1315 /* state[5] = transpose, inverse or invtrans */
Brian Paul95801792005-12-06 15:41:43 +00001316 const enum state_index mat = (enum state_index) state[1];
Brian Paul7b98b402005-11-12 23:25:49 +00001317 const GLuint index = (GLuint) state[2];
1318 const GLuint first = (GLuint) state[3];
1319 const GLuint last = (GLuint) state[4];
Brian Paul95801792005-12-06 15:41:43 +00001320 const enum state_index modifier = (enum state_index) state[5];
Brian Paul7b98b402005-11-12 23:25:49 +00001321 append_token(str, mat);
1322 if (index)
1323 append_index(str, index);
1324 if (modifier)
1325 append_token(str, modifier);
1326 if (first == last)
1327 _mesa_sprintf(tmp, ".row[%d]", first);
1328 else
1329 _mesa_sprintf(tmp, ".row[%d..%d]", first, last);
1330 append(str, tmp);
1331 }
1332 break;
1333 case STATE_DEPTH_RANGE:
1334 break;
1335 case STATE_FRAGMENT_PROGRAM:
1336 case STATE_VERTEX_PROGRAM:
1337 /* state[1] = {STATE_ENV, STATE_LOCAL} */
1338 /* state[2] = parameter index */
Brian Paul95801792005-12-06 15:41:43 +00001339 append_token(str, (enum state_index) state[1]);
Brian Paul7b98b402005-11-12 23:25:49 +00001340 append_index(str, state[2]);
1341 break;
1342 case STATE_INTERNAL:
1343 break;
1344 default:
1345 _mesa_problem(NULL, "Invalid state in maka_state_string");
1346 break;
1347 }
1348
1349 return _mesa_strdup(str);
1350}
1351
1352
Michal Krol2861e732004-03-29 11:09:34 +00001353/**
1354 * Loop over all the parameters in a parameter list. If the parameter
1355 * is a GL state reference, look up the current value of that state
1356 * variable and put it into the parameter's Value[4] array.
1357 * This would be called at glBegin time when using a fragment program.
1358 */
1359void
1360_mesa_load_state_parameters(GLcontext *ctx,
Brian Paul122629f2006-07-20 16:49:57 +00001361 struct gl_program_parameter_list *paramList)
Michal Krol2861e732004-03-29 11:09:34 +00001362{
1363 GLuint i;
1364
1365 if (!paramList)
1366 return;
1367
1368 for (i = 0; i < paramList->NumParameters; i++) {
Brian Paul613e1ad2005-11-05 02:15:21 +00001369 if (paramList->Parameters[i].Type == PROGRAM_STATE_VAR) {
Keith Whitwell7c26b612005-04-21 14:46:57 +00001370 _mesa_fetch_state(ctx,
1371 paramList->Parameters[i].StateIndexes,
1372 paramList->ParameterValues[i]);
Michal Krol2861e732004-03-29 11:09:34 +00001373 }
1374 }
1375}
1376
1377
Brian Paul1fcdaf12005-11-05 19:12:36 +00001378/**
Brian Paulec770b82005-11-20 17:57:22 +00001379 * Initialize program instruction fields to defaults.
Brian Pauld6272e02006-10-29 18:03:16 +00001380 * \param inst first instruction to initialize
1381 * \param count number of instructions to initialize
Brian Paulec770b82005-11-20 17:57:22 +00001382 */
1383void
Brian Pauld6272e02006-10-29 18:03:16 +00001384_mesa_init_instructions(struct prog_instruction *inst, GLuint count)
Brian Paulec770b82005-11-20 17:57:22 +00001385{
Brian Pauld6272e02006-10-29 18:03:16 +00001386 GLuint i;
Brian Paulec770b82005-11-20 17:57:22 +00001387
Brian Pauld6272e02006-10-29 18:03:16 +00001388 _mesa_bzero(inst, count * sizeof(struct prog_instruction));
Brian Paulec770b82005-11-20 17:57:22 +00001389
Brian Pauld6272e02006-10-29 18:03:16 +00001390 for (i = 0; i < count; i++) {
1391 inst[i].SrcReg[0].File = PROGRAM_UNDEFINED;
1392 inst[i].SrcReg[0].Swizzle = SWIZZLE_NOOP;
1393 inst[i].SrcReg[1].File = PROGRAM_UNDEFINED;
1394 inst[i].SrcReg[1].Swizzle = SWIZZLE_NOOP;
1395 inst[i].SrcReg[2].File = PROGRAM_UNDEFINED;
1396 inst[i].SrcReg[2].Swizzle = SWIZZLE_NOOP;
Brian Paulec770b82005-11-20 17:57:22 +00001397
Brian Pauld6272e02006-10-29 18:03:16 +00001398 inst[i].DstReg.File = PROGRAM_UNDEFINED;
1399 inst[i].DstReg.WriteMask = WRITEMASK_XYZW;
1400 inst[i].DstReg.CondMask = COND_TR;
1401 inst[i].DstReg.CondSwizzle = SWIZZLE_NOOP;
1402
1403 inst[i].SaturateMode = SATURATE_OFF;
1404 inst[i].Precision = FLOAT32;
1405 }
Brian Paulec770b82005-11-20 17:57:22 +00001406}
1407
1408
1409/**
Brian Paul9983a272006-08-25 15:13:25 +00001410 * Allocate an array of program instructions.
1411 * \param numInst number of instructions
1412 * \return pointer to instruction memory
1413 */
1414struct prog_instruction *
1415_mesa_alloc_instructions(GLuint numInst)
1416{
1417 return (struct prog_instruction *)
1418 _mesa_calloc(numInst * sizeof(struct prog_instruction));
1419}
1420
1421
1422/**
Brian Paul3b9b8de2006-08-24 21:57:36 +00001423 * Reallocate memory storing an array of program instructions.
1424 * This is used when we need to append additional instructions onto an
1425 * program.
1426 * \param oldInst pointer to first of old/src instructions
1427 * \param numOldInst number of instructions at <oldInst>
1428 * \param numNewInst desired size of new instruction array.
1429 * \return pointer to start of new instruction array.
1430 */
1431struct prog_instruction *
1432_mesa_realloc_instructions(struct prog_instruction *oldInst,
1433 GLuint numOldInst, GLuint numNewInst)
1434{
1435 struct prog_instruction *newInst;
1436
1437 newInst = (struct prog_instruction *)
1438 _mesa_realloc(oldInst,
1439 numOldInst * sizeof(struct prog_instruction),
1440 numNewInst * sizeof(struct prog_instruction));
1441
1442 return newInst;
1443}
1444
1445
1446/**
Brian Paul1fcdaf12005-11-05 19:12:36 +00001447 * Basic info about each instruction
1448 */
1449struct instruction_info
1450{
1451 enum prog_opcode Opcode;
1452 const char *Name;
1453 GLuint NumSrcRegs;
1454};
1455
1456/**
1457 * Instruction info
1458 * \note Opcode should equal array index!
1459 */
1460static const struct instruction_info InstInfo[MAX_OPCODE] = {
1461 { OPCODE_ABS, "ABS", 1 },
1462 { OPCODE_ADD, "ADD", 2 },
Ian Romanick4884db62005-11-08 22:40:26 +00001463 { OPCODE_ARA, "ARA", 1 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001464 { OPCODE_ARL, "ARL", 1 },
Ian Romanick4884db62005-11-08 22:40:26 +00001465 { OPCODE_ARL_NV, "ARL", 1 },
1466 { OPCODE_ARR, "ARL", 1 },
1467 { OPCODE_BRA, "BRA", 1 },
1468 { OPCODE_CAL, "CAL", 1 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001469 { OPCODE_CMP, "CMP", 3 },
1470 { OPCODE_COS, "COS", 1 },
1471 { OPCODE_DDX, "DDX", 1 },
1472 { OPCODE_DDY, "DDY", 1 },
1473 { OPCODE_DP3, "DP3", 2 },
1474 { OPCODE_DP4, "DP4", 2 },
1475 { OPCODE_DPH, "DPH", 2 },
1476 { OPCODE_DST, "DST", 2 },
1477 { OPCODE_END, "END", 0 },
1478 { OPCODE_EX2, "EX2", 1 },
1479 { OPCODE_EXP, "EXP", 1 },
1480 { OPCODE_FLR, "FLR", 1 },
1481 { OPCODE_FRC, "FRC", 1 },
1482 { OPCODE_KIL, "KIL", 1 },
1483 { OPCODE_KIL_NV, "KIL", 0 },
1484 { OPCODE_LG2, "LG2", 1 },
1485 { OPCODE_LIT, "LIT", 1 },
1486 { OPCODE_LOG, "LOG", 1 },
1487 { OPCODE_LRP, "LRP", 3 },
1488 { OPCODE_MAD, "MAD", 3 },
1489 { OPCODE_MAX, "MAX", 2 },
1490 { OPCODE_MIN, "MIN", 2 },
1491 { OPCODE_MOV, "MOV", 1 },
1492 { OPCODE_MUL, "MUL", 2 },
1493 { OPCODE_PK2H, "PK2H", 1 },
1494 { OPCODE_PK2US, "PK2US", 1 },
1495 { OPCODE_PK4B, "PK4B", 1 },
1496 { OPCODE_PK4UB, "PK4UB", 1 },
1497 { OPCODE_POW, "POW", 2 },
Ian Romanick4884db62005-11-08 22:40:26 +00001498 { OPCODE_POPA, "POPA", 0 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001499 { OPCODE_PRINT, "PRINT", 1 },
Ian Romanick4884db62005-11-08 22:40:26 +00001500 { OPCODE_PUSHA, "PUSHA", 0 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001501 { OPCODE_RCC, "RCC", 1 },
1502 { OPCODE_RCP, "RCP", 1 },
Ian Romanick4884db62005-11-08 22:40:26 +00001503 { OPCODE_RET, "RET", 1 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001504 { OPCODE_RFL, "RFL", 1 },
1505 { OPCODE_RSQ, "RSQ", 1 },
1506 { OPCODE_SCS, "SCS", 1 },
1507 { OPCODE_SEQ, "SEQ", 2 },
1508 { OPCODE_SFL, "SFL", 0 },
1509 { OPCODE_SGE, "SGE", 2 },
1510 { OPCODE_SGT, "SGT", 2 },
1511 { OPCODE_SIN, "SIN", 1 },
1512 { OPCODE_SLE, "SLE", 2 },
1513 { OPCODE_SLT, "SLT", 2 },
1514 { OPCODE_SNE, "SNE", 2 },
Ian Romanick4884db62005-11-08 22:40:26 +00001515 { OPCODE_SSG, "SSG", 1 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001516 { OPCODE_STR, "STR", 0 },
1517 { OPCODE_SUB, "SUB", 2 },
1518 { OPCODE_SWZ, "SWZ", 1 },
1519 { OPCODE_TEX, "TEX", 1 },
1520 { OPCODE_TXB, "TXB", 1 },
1521 { OPCODE_TXD, "TXD", 3 },
Ian Romanick4884db62005-11-08 22:40:26 +00001522 { OPCODE_TXL, "TXL", 1 },
Brian Paul1fcdaf12005-11-05 19:12:36 +00001523 { OPCODE_TXP, "TXP", 1 },
1524 { OPCODE_TXP_NV, "TXP", 1 },
1525 { OPCODE_UP2H, "UP2H", 1 },
1526 { OPCODE_UP2US, "UP2US", 1 },
1527 { OPCODE_UP4B, "UP4B", 1 },
1528 { OPCODE_UP4UB, "UP4UB", 1 },
1529 { OPCODE_X2D, "X2D", 3 },
1530 { OPCODE_XPD, "XPD", 2 }
1531};
1532
1533
1534/**
1535 * Return the number of src registers for the given instruction/opcode.
1536 */
1537GLuint
1538_mesa_num_inst_src_regs(enum prog_opcode opcode)
1539{
Keith Whitwell56588102006-09-20 12:57:54 +00001540 ASSERT(opcode == InstInfo[opcode].Opcode);
1541 return InstInfo[opcode].NumSrcRegs;
Brian Paul1fcdaf12005-11-05 19:12:36 +00001542}
1543
1544
1545/**
1546 * Return string name for given program opcode.
1547 */
1548const char *
1549_mesa_opcode_string(enum prog_opcode opcode)
1550{
1551 ASSERT(opcode < MAX_OPCODE);
1552 return InstInfo[opcode].Name;
1553}
1554
Brian Paulbf41bc02005-11-05 19:32:36 +00001555/**
1556 * Return string name for given program/register file.
1557 */
Brian Paul30d6a4b2005-11-05 20:18:18 +00001558static const char *
1559program_file_string(enum register_file f)
Brian Paulbf41bc02005-11-05 19:32:36 +00001560{
1561 switch (f) {
1562 case PROGRAM_TEMPORARY:
1563 return "TEMP";
1564 case PROGRAM_LOCAL_PARAM:
1565 return "LOCAL";
1566 case PROGRAM_ENV_PARAM:
1567 return "ENV";
1568 case PROGRAM_STATE_VAR:
1569 return "STATE";
1570 case PROGRAM_INPUT:
1571 return "INPUT";
1572 case PROGRAM_OUTPUT:
1573 return "OUTPUT";
1574 case PROGRAM_NAMED_PARAM:
1575 return "NAMED";
1576 case PROGRAM_CONSTANT:
1577 return "CONST";
1578 case PROGRAM_WRITE_ONLY:
1579 return "WRITE_ONLY";
1580 case PROGRAM_ADDRESS:
1581 return "ADDR";
1582 default:
1583 return "!unkown!";
1584 }
1585}
1586
Michal Krol2861e732004-03-29 11:09:34 +00001587
Brian Paul30d6a4b2005-11-05 20:18:18 +00001588/**
1589 * Return a string representation of the given swizzle word.
Brian Paul7b98b402005-11-12 23:25:49 +00001590 * If extended is true, use extended (comma-separated) format.
Brian Paul30d6a4b2005-11-05 20:18:18 +00001591 */
1592static const char *
Brian Paul7b98b402005-11-12 23:25:49 +00001593swizzle_string(GLuint swizzle, GLuint negateBase, GLboolean extended)
Brian Paul30d6a4b2005-11-05 20:18:18 +00001594{
1595 static const char swz[] = "xyzw01";
1596 static char s[20];
1597 GLuint i = 0;
1598
Brian Paul7b98b402005-11-12 23:25:49 +00001599 if (!extended && swizzle == SWIZZLE_NOOP && negateBase == 0)
Brian Paul30d6a4b2005-11-05 20:18:18 +00001600 return ""; /* no swizzle/negation */
1601
Brian Paul7b98b402005-11-12 23:25:49 +00001602 if (!extended)
1603 s[i++] = '.';
Brian Paul30d6a4b2005-11-05 20:18:18 +00001604
1605 if (negateBase & 0x1)
1606 s[i++] = '-';
1607 s[i++] = swz[GET_SWZ(swizzle, 0)];
1608
Brian Paul7b98b402005-11-12 23:25:49 +00001609 if (extended) {
1610 s[i++] = ',';
1611 }
1612
Brian Paul30d6a4b2005-11-05 20:18:18 +00001613 if (negateBase & 0x2)
1614 s[i++] = '-';
1615 s[i++] = swz[GET_SWZ(swizzle, 1)];
1616
Brian Paul7b98b402005-11-12 23:25:49 +00001617 if (extended) {
1618 s[i++] = ',';
1619 }
1620
Brian Paul30d6a4b2005-11-05 20:18:18 +00001621 if (negateBase & 0x4)
1622 s[i++] = '-';
1623 s[i++] = swz[GET_SWZ(swizzle, 2)];
1624
Brian Paul7b98b402005-11-12 23:25:49 +00001625 if (extended) {
1626 s[i++] = ',';
1627 }
1628
Brian Paul30d6a4b2005-11-05 20:18:18 +00001629 if (negateBase & 0x8)
1630 s[i++] = '-';
1631 s[i++] = swz[GET_SWZ(swizzle, 3)];
1632
1633 s[i] = 0;
1634 return s;
1635}
1636
1637
1638static const char *
1639writemask_string(GLuint writeMask)
1640{
1641 static char s[10];
1642 GLuint i = 0;
1643
1644 if (writeMask == WRITEMASK_XYZW)
1645 return "";
1646
1647 s[i++] = '.';
1648 if (writeMask & WRITEMASK_X)
1649 s[i++] = 'x';
1650 if (writeMask & WRITEMASK_Y)
1651 s[i++] = 'y';
1652 if (writeMask & WRITEMASK_Z)
1653 s[i++] = 'z';
1654 if (writeMask & WRITEMASK_W)
1655 s[i++] = 'w';
1656
1657 s[i] = 0;
1658 return s;
1659}
1660
Brian Paul7b98b402005-11-12 23:25:49 +00001661static void
1662print_dst_reg(const struct prog_dst_register *dstReg)
1663{
1664 _mesa_printf(" %s[%d]%s",
Brian Paul95801792005-12-06 15:41:43 +00001665 program_file_string((enum register_file) dstReg->File),
Brian Paul7b98b402005-11-12 23:25:49 +00001666 dstReg->Index,
1667 writemask_string(dstReg->WriteMask));
1668}
1669
1670static void
1671print_src_reg(const struct prog_src_register *srcReg)
1672{
1673 _mesa_printf("%s[%d]%s",
Brian Paul95801792005-12-06 15:41:43 +00001674 program_file_string((enum register_file) srcReg->File),
Brian Paul7b98b402005-11-12 23:25:49 +00001675 srcReg->Index,
1676 swizzle_string(srcReg->Swizzle,
1677 srcReg->NegateBase, GL_FALSE));
1678}
1679
Keith Whitwell56588102006-09-20 12:57:54 +00001680void
1681_mesa_print_alu_instruction(const struct prog_instruction *inst,
1682 const char *opcode_string,
1683 GLuint numRegs)
1684{
1685 GLuint j;
1686
1687 _mesa_printf("%s", opcode_string);
1688
1689 /* frag prog only */
1690 if (inst->SaturateMode == SATURATE_ZERO_ONE)
1691 _mesa_printf("_SAT");
1692
1693 if (inst->DstReg.File != PROGRAM_UNDEFINED) {
1694 _mesa_printf(" %s[%d]%s",
1695 program_file_string((enum register_file) inst->DstReg.File),
1696 inst->DstReg.Index,
1697 writemask_string(inst->DstReg.WriteMask));
1698 }
1699
1700 if (numRegs > 0)
1701 _mesa_printf(", ");
1702
1703 for (j = 0; j < numRegs; j++) {
1704 print_src_reg(inst->SrcReg + j);
1705 if (j + 1 < numRegs)
1706 _mesa_printf(", ");
1707 }
1708
1709 _mesa_printf(";\n");
1710}
1711
Brian Paul30d6a4b2005-11-05 20:18:18 +00001712
1713/**
Brian Paulde997602005-11-12 17:53:14 +00001714 * Print a single vertex/fragment program instruction.
Brian Paul30d6a4b2005-11-05 20:18:18 +00001715 */
1716void
Brian Paulde997602005-11-12 17:53:14 +00001717_mesa_print_instruction(const struct prog_instruction *inst)
Brian Paul30d6a4b2005-11-05 20:18:18 +00001718{
Brian Paulde997602005-11-12 17:53:14 +00001719 switch (inst->Opcode) {
1720 case OPCODE_PRINT:
1721 _mesa_printf("PRINT '%s'", inst->Data);
1722 if (inst->SrcReg[0].File != PROGRAM_UNDEFINED) {
1723 _mesa_printf(", ");
1724 _mesa_printf("%s[%d]%s",
Brian Paul95801792005-12-06 15:41:43 +00001725 program_file_string((enum register_file) inst->SrcReg[0].File),
Brian Paulde997602005-11-12 17:53:14 +00001726 inst->SrcReg[0].Index,
1727 swizzle_string(inst->SrcReg[0].Swizzle,
Brian Paul7b98b402005-11-12 23:25:49 +00001728 inst->SrcReg[0].NegateBase, GL_FALSE));
Brian Paulde997602005-11-12 17:53:14 +00001729 }
1730 _mesa_printf(";\n");
1731 break;
Brian Paul7b98b402005-11-12 23:25:49 +00001732 case OPCODE_SWZ:
1733 _mesa_printf("SWZ");
Brian Paule31ac052005-11-20 17:52:40 +00001734 if (inst->SaturateMode == SATURATE_ZERO_ONE)
Brian Paul7b98b402005-11-12 23:25:49 +00001735 _mesa_printf("_SAT");
1736 print_dst_reg(&inst->DstReg);
1737 _mesa_printf("%s[%d], %s;\n",
Brian Paul95801792005-12-06 15:41:43 +00001738 program_file_string((enum register_file) inst->SrcReg[0].File),
Brian Paul7b98b402005-11-12 23:25:49 +00001739 inst->SrcReg[0].Index,
1740 swizzle_string(inst->SrcReg[0].Swizzle,
1741 inst->SrcReg[0].NegateBase, GL_TRUE));
1742 break;
1743 case OPCODE_TEX:
1744 case OPCODE_TXP:
1745 case OPCODE_TXB:
1746 _mesa_printf("%s", _mesa_opcode_string(inst->Opcode));
Brian Paule31ac052005-11-20 17:52:40 +00001747 if (inst->SaturateMode == SATURATE_ZERO_ONE)
Brian Paul7b98b402005-11-12 23:25:49 +00001748 _mesa_printf("_SAT");
1749 _mesa_printf(" ");
1750 print_dst_reg(&inst->DstReg);
1751 _mesa_printf(", ");
1752 print_src_reg(&inst->SrcReg[0]);
1753 _mesa_printf(", texture[%d], ", inst->TexSrcUnit);
1754 switch (inst->TexSrcTarget) {
1755 case TEXTURE_1D_INDEX: _mesa_printf("1D"); break;
1756 case TEXTURE_2D_INDEX: _mesa_printf("2D"); break;
1757 case TEXTURE_3D_INDEX: _mesa_printf("3D"); break;
1758 case TEXTURE_CUBE_INDEX: _mesa_printf("CUBE"); break;
1759 case TEXTURE_RECT_INDEX: _mesa_printf("RECT"); break;
1760 default:
1761 ;
1762 }
1763 _mesa_printf("\n");
1764 break;
1765 case OPCODE_ARL:
1766 _mesa_printf("ARL addr.x, ");
1767 print_src_reg(&inst->SrcReg[0]);
1768 _mesa_printf(";\n");
1769 break;
Brian Paul8ed31972006-10-28 23:08:07 +00001770 case OPCODE_END:
1771 _mesa_printf("END;\n");
1772 break;
Brian Paul7b98b402005-11-12 23:25:49 +00001773 /* XXX may need for other special-case instructions */
Brian Paulde997602005-11-12 17:53:14 +00001774 default:
1775 /* typical alu instruction */
Keith Whitwell56588102006-09-20 12:57:54 +00001776 _mesa_print_alu_instruction(inst,
1777 _mesa_opcode_string(inst->Opcode),
1778 _mesa_num_inst_src_regs(inst->Opcode));
1779 break;
Brian Paul30d6a4b2005-11-05 20:18:18 +00001780 }
1781}
1782
1783
Brian Paulde997602005-11-12 17:53:14 +00001784/**
1785 * Print a vertx/fragment program to stdout.
1786 * XXX this function could be greatly improved.
1787 */
1788void
Brian Paul122629f2006-07-20 16:49:57 +00001789_mesa_print_program(const struct gl_program *prog)
Brian Paulde997602005-11-12 17:53:14 +00001790{
1791 GLuint i;
1792 for (i = 0; i < prog->NumInstructions; i++) {
1793 _mesa_printf("%3d: ", i);
1794 _mesa_print_instruction(prog->Instructions + i);
1795 }
1796}
1797
1798
1799/**
1800 * Print all of a program's parameters.
1801 */
1802void
Brian Paul122629f2006-07-20 16:49:57 +00001803_mesa_print_program_parameters(GLcontext *ctx, const struct gl_program *prog)
Brian Paulde997602005-11-12 17:53:14 +00001804{
1805 GLint i;
1806
1807 _mesa_printf("NumInstructions=%d\n", prog->NumInstructions);
1808 _mesa_printf("NumTemporaries=%d\n", prog->NumTemporaries);
1809 _mesa_printf("NumParameters=%d\n", prog->NumParameters);
1810 _mesa_printf("NumAttributes=%d\n", prog->NumAttributes);
1811 _mesa_printf("NumAddressRegs=%d\n", prog->NumAddressRegs);
1812
1813 _mesa_load_state_parameters(ctx, prog->Parameters);
1814
1815#if 0
1816 _mesa_printf("Local Params:\n");
1817 for (i = 0; i < MAX_PROGRAM_LOCAL_PARAMS; i++){
1818 const GLfloat *p = prog->LocalParams[i];
1819 _mesa_printf("%2d: %f, %f, %f, %f\n", i, p[0], p[1], p[2], p[3]);
1820 }
1821#endif
1822
1823 for (i = 0; i < prog->Parameters->NumParameters; i++){
Brian Paul122629f2006-07-20 16:49:57 +00001824 struct gl_program_parameter *param = prog->Parameters->Parameters + i;
Brian Paul7b98b402005-11-12 23:25:49 +00001825 const GLfloat *v = prog->Parameters->ParameterValues[i];
1826 _mesa_printf("param[%d] %s = {%.3f, %.3f, %.3f, %.3f};\n",
1827 i, param->Name, v[0], v[1], v[2], v[3]);
Brian Paulde997602005-11-12 17:53:14 +00001828 }
1829}
1830
Brian Paul30d6a4b2005-11-05 20:18:18 +00001831
Brian Paul77427a12006-08-24 23:11:39 +00001832/**
1833 * Mixing ARB and NV vertex/fragment programs can be tricky.
1834 * Note: GL_VERTEX_PROGRAM_ARB == GL_VERTEX_PROGRAM_NV
1835 * but, GL_FRAGMENT_PROGRAM_ARB != GL_FRAGMENT_PROGRAM_NV
1836 * The two different fragment program targets are supposed to be compatible
1837 * to some extent (see GL_ARB_fragment_program spec).
1838 * This function does the compatibility check.
1839 */
1840static GLboolean
1841compatible_program_targets(GLenum t1, GLenum t2)
1842{
1843 if (t1 == t2)
1844 return GL_TRUE;
1845 if (t1 == GL_FRAGMENT_PROGRAM_ARB && t2 == GL_FRAGMENT_PROGRAM_NV)
1846 return GL_TRUE;
1847 if (t1 == GL_FRAGMENT_PROGRAM_NV && t2 == GL_FRAGMENT_PROGRAM_ARB)
1848 return GL_TRUE;
1849 return GL_FALSE;
1850}
1851
1852
Brian Paul30d6a4b2005-11-05 20:18:18 +00001853
Michal Krol2861e732004-03-29 11:09:34 +00001854/**********************************************************************/
1855/* API functions */
1856/**********************************************************************/
1857
1858
1859/**
1860 * Bind a program (make it current)
1861 * \note Called from the GL API dispatcher by both glBindProgramNV
1862 * and glBindProgramARB.
1863 */
1864void GLAPIENTRY
1865_mesa_BindProgram(GLenum target, GLuint id)
1866{
Brian Paula360bc32006-08-25 17:18:56 +00001867 struct gl_program *curProg, *newProg;
Michal Krol2861e732004-03-29 11:09:34 +00001868 GET_CURRENT_CONTEXT(ctx);
1869 ASSERT_OUTSIDE_BEGIN_END(ctx);
1870
1871 FLUSH_VERTICES(ctx, _NEW_PROGRAM);
1872
Brian Paula360bc32006-08-25 17:18:56 +00001873 /* Error-check target and get curProg */
Roland Scheideggere1e03b32006-03-03 15:03:04 +00001874 if ((target == GL_VERTEX_PROGRAM_ARB) && /* == GL_VERTEX_PROGRAM_NV */
1875 (ctx->Extensions.NV_vertex_program ||
1876 ctx->Extensions.ARB_vertex_program)) {
Brian Paula360bc32006-08-25 17:18:56 +00001877 curProg = &ctx->VertexProgram.Current->Base;
Michal Krol2861e732004-03-29 11:09:34 +00001878 }
1879 else if ((target == GL_FRAGMENT_PROGRAM_NV
1880 && ctx->Extensions.NV_fragment_program) ||
1881 (target == GL_FRAGMENT_PROGRAM_ARB
1882 && ctx->Extensions.ARB_fragment_program)) {
Brian Paula360bc32006-08-25 17:18:56 +00001883 curProg = &ctx->FragmentProgram.Current->Base;
Michal Krol2861e732004-03-29 11:09:34 +00001884 }
1885 else {
1886 _mesa_error(ctx, GL_INVALID_ENUM, "glBindProgramNV/ARB(target)");
1887 return;
1888 }
1889
Brian Paula360bc32006-08-25 17:18:56 +00001890 /*
1891 * Get pointer to new program to bind.
1892 * NOTE: binding to a non-existant program is not an error.
Michal Krol2861e732004-03-29 11:09:34 +00001893 * That's supposed to be caught in glBegin.
1894 */
1895 if (id == 0) {
Brian Paula360bc32006-08-25 17:18:56 +00001896 /* Bind a default program */
1897 newProg = NULL;
Roland Scheideggere1e03b32006-03-03 15:03:04 +00001898 if (target == GL_VERTEX_PROGRAM_ARB) /* == GL_VERTEX_PROGRAM_NV */
Brian Paula360bc32006-08-25 17:18:56 +00001899 newProg = ctx->Shared->DefaultVertexProgram;
Michal Krol2861e732004-03-29 11:09:34 +00001900 else
Brian Paula360bc32006-08-25 17:18:56 +00001901 newProg = ctx->Shared->DefaultFragmentProgram;
Michal Krol2861e732004-03-29 11:09:34 +00001902 }
1903 else {
Brian Paula360bc32006-08-25 17:18:56 +00001904 /* Bind a user program */
1905 newProg = _mesa_lookup_program(ctx, id);
1906 if (!newProg || newProg == &_mesa_DummyProgram) {
Michal Krol2861e732004-03-29 11:09:34 +00001907 /* allocate a new program now */
Brian Paula360bc32006-08-25 17:18:56 +00001908 newProg = ctx->Driver.NewProgram(ctx, target, id);
1909 if (!newProg) {
Michal Krol2861e732004-03-29 11:09:34 +00001910 _mesa_error(ctx, GL_OUT_OF_MEMORY, "glBindProgramNV/ARB");
1911 return;
1912 }
Brian Paula360bc32006-08-25 17:18:56 +00001913 _mesa_HashInsert(ctx->Shared->Programs, id, newProg);
Michal Krol2861e732004-03-29 11:09:34 +00001914 }
Brian Paula360bc32006-08-25 17:18:56 +00001915 else if (!compatible_program_targets(newProg->Target, target)) {
Brian Paul765f1a12004-09-14 22:28:27 +00001916 _mesa_error(ctx, GL_INVALID_OPERATION,
1917 "glBindProgramNV/ARB(target mismatch)");
1918 return;
1919 }
Michal Krol2861e732004-03-29 11:09:34 +00001920 }
1921
Brian Paula360bc32006-08-25 17:18:56 +00001922 /** All error checking is complete now **/
1923
1924 if (curProg->Id == id) {
1925 /* binding same program - no change */
1926 return;
1927 }
1928
1929 /* unbind/delete oldProg */
1930 if (curProg->Id != 0) {
1931 /* decrement refcount on previously bound fragment program */
1932 curProg->RefCount--;
1933 /* and delete if refcount goes below one */
1934 if (curProg->RefCount <= 0) {
1935 /* the program ID was already removed from the hash table */
1936 ctx->Driver.DeleteProgram(ctx, curProg);
1937 }
1938 }
1939
1940 /* bind newProg */
Roland Scheideggere1e03b32006-03-03 15:03:04 +00001941 if (target == GL_VERTEX_PROGRAM_ARB) { /* == GL_VERTEX_PROGRAM_NV */
Brian Paula360bc32006-08-25 17:18:56 +00001942 ctx->VertexProgram.Current = (struct gl_vertex_program *) newProg;
Michal Krol2861e732004-03-29 11:09:34 +00001943 }
Brian Paula360bc32006-08-25 17:18:56 +00001944 else if (target == GL_FRAGMENT_PROGRAM_NV ||
1945 target == GL_FRAGMENT_PROGRAM_ARB) {
1946 ctx->FragmentProgram.Current = (struct gl_fragment_program *) newProg;
Michal Krol2861e732004-03-29 11:09:34 +00001947 }
Brian Paula360bc32006-08-25 17:18:56 +00001948 newProg->RefCount++;
Michal Krol2861e732004-03-29 11:09:34 +00001949
Brian Paul765f1a12004-09-14 22:28:27 +00001950 /* Never null pointers */
1951 ASSERT(ctx->VertexProgram.Current);
1952 ASSERT(ctx->FragmentProgram.Current);
1953
Michal Krol2861e732004-03-29 11:09:34 +00001954 if (ctx->Driver.BindProgram)
Brian Paula360bc32006-08-25 17:18:56 +00001955 ctx->Driver.BindProgram(ctx, target, newProg);
Michal Krol2861e732004-03-29 11:09:34 +00001956}
1957
1958
1959/**
1960 * Delete a list of programs.
1961 * \note Not compiled into display lists.
1962 * \note Called by both glDeleteProgramsNV and glDeleteProgramsARB.
1963 */
1964void GLAPIENTRY
1965_mesa_DeletePrograms(GLsizei n, const GLuint *ids)
1966{
1967 GLint i;
1968 GET_CURRENT_CONTEXT(ctx);
1969 ASSERT_OUTSIDE_BEGIN_END_AND_FLUSH(ctx);
1970
1971 if (n < 0) {
1972 _mesa_error( ctx, GL_INVALID_VALUE, "glDeleteProgramsNV" );
1973 return;
1974 }
1975
1976 for (i = 0; i < n; i++) {
1977 if (ids[i] != 0) {
Brian Paul4d12a052006-08-23 23:10:14 +00001978 struct gl_program *prog = _mesa_lookup_program(ctx, ids[i]);
Brian Paul9ca83922004-10-02 15:16:59 +00001979 if (prog == &_mesa_DummyProgram) {
Brian Paul765f1a12004-09-14 22:28:27 +00001980 _mesa_HashRemove(ctx->Shared->Programs, ids[i]);
1981 }
1982 else if (prog) {
1983 /* Unbind program if necessary */
Roland Scheideggere1e03b32006-03-03 15:03:04 +00001984 if (prog->Target == GL_VERTEX_PROGRAM_ARB || /* == GL_VERTEX_PROGRAM_NV */
Michal Krol2861e732004-03-29 11:09:34 +00001985 prog->Target == GL_VERTEX_STATE_PROGRAM_NV) {
1986 if (ctx->VertexProgram.Current &&
1987 ctx->VertexProgram.Current->Base.Id == ids[i]) {
1988 /* unbind this currently bound program */
1989 _mesa_BindProgram(prog->Target, 0);
1990 }
1991 }
1992 else if (prog->Target == GL_FRAGMENT_PROGRAM_NV ||
1993 prog->Target == GL_FRAGMENT_PROGRAM_ARB) {
1994 if (ctx->FragmentProgram.Current &&
1995 ctx->FragmentProgram.Current->Base.Id == ids[i]) {
1996 /* unbind this currently bound program */
1997 _mesa_BindProgram(prog->Target, 0);
1998 }
1999 }
2000 else {
2001 _mesa_problem(ctx, "bad target in glDeleteProgramsNV");
2002 return;
2003 }
Brian Paulea2943e2005-01-20 04:02:02 +00002004 /* The ID is immediately available for re-use now */
2005 _mesa_HashRemove(ctx->Shared->Programs, ids[i]);
2006 prog->RefCount--;
Michal Krol2861e732004-03-29 11:09:34 +00002007 if (prog->RefCount <= 0) {
2008 ctx->Driver.DeleteProgram(ctx, prog);
2009 }
2010 }
Michal Krol2861e732004-03-29 11:09:34 +00002011 }
2012 }
2013}
2014
2015
2016/**
2017 * Generate a list of new program identifiers.
2018 * \note Not compiled into display lists.
2019 * \note Called by both glGenProgramsNV and glGenProgramsARB.
2020 */
2021void GLAPIENTRY
2022_mesa_GenPrograms(GLsizei n, GLuint *ids)
2023{
2024 GLuint first;
2025 GLuint i;
2026 GET_CURRENT_CONTEXT(ctx);
2027 ASSERT_OUTSIDE_BEGIN_END(ctx);
2028
2029 if (n < 0) {
2030 _mesa_error(ctx, GL_INVALID_VALUE, "glGenPrograms");
2031 return;
2032 }
2033
2034 if (!ids)
2035 return;
2036
2037 first = _mesa_HashFindFreeKeyBlock(ctx->Shared->Programs, n);
2038
Brian Paul765f1a12004-09-14 22:28:27 +00002039 /* Insert pointer to dummy program as placeholder */
Michal Krol2861e732004-03-29 11:09:34 +00002040 for (i = 0; i < (GLuint) n; i++) {
Brian Paul9ca83922004-10-02 15:16:59 +00002041 _mesa_HashInsert(ctx->Shared->Programs, first + i, &_mesa_DummyProgram);
Michal Krol2861e732004-03-29 11:09:34 +00002042 }
2043
2044 /* Return the program names */
2045 for (i = 0; i < (GLuint) n; i++) {
2046 ids[i] = first + i;
2047 }
2048}
2049
2050
Michal Krol2861e732004-03-29 11:09:34 +00002051/**********************************************************************/
2052/* GL_MESA_program_debug extension */
2053/**********************************************************************/
2054
2055
2056/* XXX temporary */
Daniel Borca0a13ceb2005-02-14 08:01:59 +00002057GLAPI void GLAPIENTRY
Michal Krol2861e732004-03-29 11:09:34 +00002058glProgramCallbackMESA(GLenum target, GLprogramcallbackMESA callback,
2059 GLvoid *data)
2060{
2061 _mesa_ProgramCallbackMESA(target, callback, data);
2062}
2063
2064
2065void
2066_mesa_ProgramCallbackMESA(GLenum target, GLprogramcallbackMESA callback,
2067 GLvoid *data)
2068{
2069 GET_CURRENT_CONTEXT(ctx);
2070
2071 switch (target) {
2072 case GL_FRAGMENT_PROGRAM_ARB:
2073 if (!ctx->Extensions.ARB_fragment_program) {
2074 _mesa_error(ctx, GL_INVALID_ENUM, "glProgramCallbackMESA(target)");
2075 return;
2076 }
2077 ctx->FragmentProgram.Callback = callback;
2078 ctx->FragmentProgram.CallbackData = data;
2079 break;
2080 case GL_FRAGMENT_PROGRAM_NV:
2081 if (!ctx->Extensions.NV_fragment_program) {
2082 _mesa_error(ctx, GL_INVALID_ENUM, "glProgramCallbackMESA(target)");
2083 return;
2084 }
2085 ctx->FragmentProgram.Callback = callback;
2086 ctx->FragmentProgram.CallbackData = data;
2087 break;
2088 case GL_VERTEX_PROGRAM_ARB: /* == GL_VERTEX_PROGRAM_NV */
2089 if (!ctx->Extensions.ARB_vertex_program &&
2090 !ctx->Extensions.NV_vertex_program) {
2091 _mesa_error(ctx, GL_INVALID_ENUM, "glProgramCallbackMESA(target)");
2092 return;
2093 }
2094 ctx->VertexProgram.Callback = callback;
2095 ctx->VertexProgram.CallbackData = data;
2096 break;
2097 default:
2098 _mesa_error(ctx, GL_INVALID_ENUM, "glProgramCallbackMESA(target)");
2099 return;
2100 }
2101}
2102
2103
2104/* XXX temporary */
Daniel Borca0a13ceb2005-02-14 08:01:59 +00002105GLAPI void GLAPIENTRY
Michal Krol2861e732004-03-29 11:09:34 +00002106glGetProgramRegisterfvMESA(GLenum target,
2107 GLsizei len, const GLubyte *registerName,
2108 GLfloat *v)
2109{
2110 _mesa_GetProgramRegisterfvMESA(target, len, registerName, v);
2111}
2112
2113
2114void
2115_mesa_GetProgramRegisterfvMESA(GLenum target,
2116 GLsizei len, const GLubyte *registerName,
2117 GLfloat *v)
2118{
2119 char reg[1000];
2120 GET_CURRENT_CONTEXT(ctx);
2121
2122 /* We _should_ be inside glBegin/glEnd */
2123#if 0
2124 if (ctx->Driver.CurrentExecPrimitive == PRIM_OUTSIDE_BEGIN_END) {
2125 _mesa_error(ctx, GL_INVALID_OPERATION, "glGetProgramRegisterfvMESA");
2126 return;
2127 }
2128#endif
2129
2130 /* make null-terminated copy of registerName */
2131 len = MIN2((unsigned int) len, sizeof(reg) - 1);
2132 _mesa_memcpy(reg, registerName, len);
2133 reg[len] = 0;
2134
2135 switch (target) {
Roland Scheideggere1e03b32006-03-03 15:03:04 +00002136 case GL_VERTEX_PROGRAM_ARB: /* == GL_VERTEX_PROGRAM_NV */
Michal Krol2861e732004-03-29 11:09:34 +00002137 if (!ctx->Extensions.ARB_vertex_program &&
2138 !ctx->Extensions.NV_vertex_program) {
2139 _mesa_error(ctx, GL_INVALID_ENUM,
2140 "glGetProgramRegisterfvMESA(target)");
2141 return;
2142 }
Brian Paul6d460af2004-04-23 14:16:46 +00002143 if (!ctx->VertexProgram._Enabled) {
Michal Krol2861e732004-03-29 11:09:34 +00002144 _mesa_error(ctx, GL_INVALID_OPERATION,
2145 "glGetProgramRegisterfvMESA");
2146 return;
2147 }
2148 /* GL_NV_vertex_program */
2149 if (reg[0] == 'R') {
2150 /* Temp register */
2151 GLint i = _mesa_atoi(reg + 1);
Brian Paul05051032005-11-01 04:36:33 +00002152 if (i >= (GLint)ctx->Const.VertexProgram.MaxTemps) {
Michal Krol2861e732004-03-29 11:09:34 +00002153 _mesa_error(ctx, GL_INVALID_VALUE,
2154 "glGetProgramRegisterfvMESA(registerName)");
2155 return;
2156 }
Brian Paula23e6682006-10-30 00:12:05 +00002157#if 0 /* FIX ME */
2158 ctx->Driver.GetVertexProgramRegister(ctx, PROGRAM_TEMPORARY, i, v);
2159#endif
Michal Krol2861e732004-03-29 11:09:34 +00002160 }
2161 else if (reg[0] == 'v' && reg[1] == '[') {
2162 /* Vertex Input attribute */
2163 GLuint i;
Brian Paul05051032005-11-01 04:36:33 +00002164 for (i = 0; i < ctx->Const.VertexProgram.MaxAttribs; i++) {
Michal Krol2861e732004-03-29 11:09:34 +00002165 const char *name = _mesa_nv_vertex_input_register_name(i);
2166 char number[10];
Brian Paulaa206952005-09-16 18:14:24 +00002167 _mesa_sprintf(number, "%d", i);
Michal Krol2861e732004-03-29 11:09:34 +00002168 if (_mesa_strncmp(reg + 2, name, 4) == 0 ||
2169 _mesa_strncmp(reg + 2, number, _mesa_strlen(number)) == 0) {
Brian Paula23e6682006-10-30 00:12:05 +00002170#if 0 /* FIX ME */
2171 ctx->Driver.GetVertexProgramRegister(ctx, PROGRAM_INPUT,
2172 i, v);
2173#endif
Michal Krol2861e732004-03-29 11:09:34 +00002174 return;
2175 }
2176 }
2177 _mesa_error(ctx, GL_INVALID_VALUE,
2178 "glGetProgramRegisterfvMESA(registerName)");
2179 return;
2180 }
2181 else if (reg[0] == 'o' && reg[1] == '[') {
2182 /* Vertex output attribute */
2183 }
2184 /* GL_ARB_vertex_program */
2185 else if (_mesa_strncmp(reg, "vertex.", 7) == 0) {
2186
2187 }
2188 else {
2189 _mesa_error(ctx, GL_INVALID_VALUE,
2190 "glGetProgramRegisterfvMESA(registerName)");
2191 return;
2192 }
2193 break;
2194 case GL_FRAGMENT_PROGRAM_ARB:
2195 if (!ctx->Extensions.ARB_fragment_program) {
2196 _mesa_error(ctx, GL_INVALID_ENUM,
2197 "glGetProgramRegisterfvMESA(target)");
2198 return;
2199 }
Brian Paul6d460af2004-04-23 14:16:46 +00002200 if (!ctx->FragmentProgram._Enabled) {
Michal Krol2861e732004-03-29 11:09:34 +00002201 _mesa_error(ctx, GL_INVALID_OPERATION,
2202 "glGetProgramRegisterfvMESA");
2203 return;
2204 }
2205 /* XXX to do */
2206 break;
2207 case GL_FRAGMENT_PROGRAM_NV:
2208 if (!ctx->Extensions.NV_fragment_program) {
2209 _mesa_error(ctx, GL_INVALID_ENUM,
2210 "glGetProgramRegisterfvMESA(target)");
2211 return;
2212 }
Brian Paul6d460af2004-04-23 14:16:46 +00002213 if (!ctx->FragmentProgram._Enabled) {
Michal Krol2861e732004-03-29 11:09:34 +00002214 _mesa_error(ctx, GL_INVALID_OPERATION,
2215 "glGetProgramRegisterfvMESA");
2216 return;
2217 }
2218 if (reg[0] == 'R') {
2219 /* Temp register */
2220 GLint i = _mesa_atoi(reg + 1);
Brian Paul05051032005-11-01 04:36:33 +00002221 if (i >= (GLint)ctx->Const.FragmentProgram.MaxTemps) {
Michal Krol2861e732004-03-29 11:09:34 +00002222 _mesa_error(ctx, GL_INVALID_VALUE,
2223 "glGetProgramRegisterfvMESA(registerName)");
2224 return;
2225 }
Brian Paul39c4daa2006-10-10 21:43:31 +00002226 ctx->Driver.GetFragmentProgramRegister(ctx, PROGRAM_TEMPORARY,
2227 i, v);
Michal Krol2861e732004-03-29 11:09:34 +00002228 }
2229 else if (reg[0] == 'f' && reg[1] == '[') {
2230 /* Fragment input attribute */
2231 GLuint i;
Brian Paul05051032005-11-01 04:36:33 +00002232 for (i = 0; i < ctx->Const.FragmentProgram.MaxAttribs; i++) {
Michal Krol2861e732004-03-29 11:09:34 +00002233 const char *name = _mesa_nv_fragment_input_register_name(i);
2234 if (_mesa_strncmp(reg + 2, name, 4) == 0) {
Brian Paul39c4daa2006-10-10 21:43:31 +00002235 ctx->Driver.GetFragmentProgramRegister(ctx,
2236 PROGRAM_INPUT, i, v);
Michal Krol2861e732004-03-29 11:09:34 +00002237 return;
2238 }
2239 }
2240 _mesa_error(ctx, GL_INVALID_VALUE,
2241 "glGetProgramRegisterfvMESA(registerName)");
2242 return;
2243 }
2244 else if (_mesa_strcmp(reg, "o[COLR]") == 0) {
2245 /* Fragment output color */
Brian Paul39c4daa2006-10-10 21:43:31 +00002246 ctx->Driver.GetFragmentProgramRegister(ctx, PROGRAM_OUTPUT,
2247 FRAG_RESULT_COLR, v);
Michal Krol2861e732004-03-29 11:09:34 +00002248 }
2249 else if (_mesa_strcmp(reg, "o[COLH]") == 0) {
2250 /* Fragment output color */
Brian Paul39c4daa2006-10-10 21:43:31 +00002251 ctx->Driver.GetFragmentProgramRegister(ctx, PROGRAM_OUTPUT,
2252 FRAG_RESULT_COLH, v);
Michal Krol2861e732004-03-29 11:09:34 +00002253 }
2254 else if (_mesa_strcmp(reg, "o[DEPR]") == 0) {
2255 /* Fragment output depth */
Brian Paul39c4daa2006-10-10 21:43:31 +00002256 ctx->Driver.GetFragmentProgramRegister(ctx, PROGRAM_OUTPUT,
2257 FRAG_RESULT_DEPR, v);
Michal Krol2861e732004-03-29 11:09:34 +00002258 }
2259 else {
2260 /* try user-defined identifiers */
2261 const GLfloat *value = _mesa_lookup_parameter_value(
Brian Paulde997602005-11-12 17:53:14 +00002262 ctx->FragmentProgram.Current->Base.Parameters, -1, reg);
Michal Krol2861e732004-03-29 11:09:34 +00002263 if (value) {
2264 COPY_4V(v, value);
2265 }
2266 else {
2267 _mesa_error(ctx, GL_INVALID_VALUE,
2268 "glGetProgramRegisterfvMESA(registerName)");
2269 return;
2270 }
2271 }
2272 break;
2273 default:
2274 _mesa_error(ctx, GL_INVALID_ENUM,
2275 "glGetProgramRegisterfvMESA(target)");
2276 return;
2277 }
Michal Krol2861e732004-03-29 11:09:34 +00002278}