Merge branch 'mesa_7_5_branch' into mesa_7_6_branch
[mesa.git] / src / mesa / shader / program_lexer.l
1 %{
2 /*
3 * Copyright © 2009 Intel Corporation
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
9 * and/or sell copies of the Software, and to permit persons to whom the
10 * Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the next
13 * paragraph) shall be included in all copies or substantial portions of the
14 * Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
21 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
22 * DEALINGS IN THE SOFTWARE.
23 */
24 #include "main/glheader.h"
25 #include "prog_instruction.h"
26 #include "prog_statevars.h"
27
28 #include "program_parser.h"
29 #include "program_parse.tab.h"
30
31 #define require_ARB_vp (yyextra->mode == ARB_vertex)
32 #define require_ARB_fp (yyextra->mode == ARB_fragment)
33 #define require_shadow (yyextra->option.Shadow)
34 #define require_rect (yyextra->option.TexRect)
35 #define require_texarray (yyextra->option.TexArray)
36
37 #define return_token_or_IDENTIFIER(condition, token) \
38 do { \
39 if (condition) { \
40 return token; \
41 } else { \
42 yylval->string = strdup(yytext); \
43 return IDENTIFIER; \
44 } \
45 } while (0)
46
47 #define return_token_or_DOT(condition, token) \
48 do { \
49 if (condition) { \
50 return token; \
51 } else { \
52 yyless(1); \
53 return DOT; \
54 } \
55 } while (0)
56
57
58 #define return_opcode(condition, token, opcode, sat) \
59 do { \
60 if (condition) { \
61 yylval->temp_inst.Opcode = OPCODE_ ## opcode; \
62 yylval->temp_inst.SaturateMode = SATURATE_ ## sat; \
63 return token; \
64 } else { \
65 yylval->string = strdup(yytext); \
66 return IDENTIFIER; \
67 } \
68 } while (0)
69
70 #define SWIZZLE_INVAL MAKE_SWIZZLE4(SWIZZLE_NIL, SWIZZLE_NIL, \
71 SWIZZLE_NIL, SWIZZLE_NIL)
72
73 static unsigned
74 mask_from_char(char c)
75 {
76 switch (c) {
77 case 'x':
78 case 'r':
79 return WRITEMASK_X;
80 case 'y':
81 case 'g':
82 return WRITEMASK_Y;
83 case 'z':
84 case 'b':
85 return WRITEMASK_Z;
86 case 'w':
87 case 'a':
88 return WRITEMASK_W;
89 }
90
91 return 0;
92 }
93
94 static unsigned
95 swiz_from_char(char c)
96 {
97 switch (c) {
98 case 'x':
99 case 'r':
100 return SWIZZLE_X;
101 case 'y':
102 case 'g':
103 return SWIZZLE_Y;
104 case 'z':
105 case 'b':
106 return SWIZZLE_Z;
107 case 'w':
108 case 'a':
109 return SWIZZLE_W;
110 }
111
112 return 0;
113 }
114
115 #define YY_USER_ACTION \
116 do { \
117 yylloc->first_column = yylloc->last_column; \
118 yylloc->last_column += yyleng; \
119 if ((yylloc->first_line == 1) \
120 && (yylloc->first_column == 1)) { \
121 yylloc->position = 1; \
122 } else { \
123 yylloc->position += yylloc->last_column - yylloc->first_column; \
124 } \
125 } while(0);
126
127 #define YY_EXTRA_TYPE struct asm_parser_state *
128 %}
129
130 num [0-9]+
131 exp [Ee][-+]?[0-9]+
132 frac "."[0-9]+
133 dot "."[ \t]*
134
135 %option bison-bridge bison-locations reentrant noyywrap
136 %%
137
138 "!!ARBvp1.0" { return ARBvp_10; }
139 "!!ARBfp1.0" { return ARBfp_10; }
140 ADDRESS {
141 yylval->integer = at_address;
142 return_token_or_IDENTIFIER(require_ARB_vp, ADDRESS);
143 }
144 ALIAS { return ALIAS; }
145 ATTRIB { return ATTRIB; }
146 END { return END; }
147 OPTION { return OPTION; }
148 OUTPUT { return OUTPUT; }
149 PARAM { return PARAM; }
150 TEMP { yylval->integer = at_temp; return TEMP; }
151
152 ABS { return_opcode( 1, VECTOR_OP, ABS, OFF); }
153 ABS_SAT { return_opcode(require_ARB_fp, VECTOR_OP, ABS, ZERO_ONE); }
154 ADD { return_opcode( 1, BIN_OP, ADD, OFF); }
155 ADD_SAT { return_opcode(require_ARB_fp, BIN_OP, ADD, ZERO_ONE); }
156 ARL { return_opcode(require_ARB_vp, ARL, ARL, OFF); }
157
158 CMP { return_opcode(require_ARB_fp, TRI_OP, CMP, OFF); }
159 CMP_SAT { return_opcode(require_ARB_fp, TRI_OP, CMP, ZERO_ONE); }
160 COS { return_opcode(require_ARB_fp, SCALAR_OP, COS, OFF); }
161 COS_SAT { return_opcode(require_ARB_fp, SCALAR_OP, COS, ZERO_ONE); }
162
163 DP3 { return_opcode( 1, BIN_OP, DP3, OFF); }
164 DP3_SAT { return_opcode(require_ARB_fp, BIN_OP, DP3, ZERO_ONE); }
165 DP4 { return_opcode( 1, BIN_OP, DP4, OFF); }
166 DP4_SAT { return_opcode(require_ARB_fp, BIN_OP, DP4, ZERO_ONE); }
167 DPH { return_opcode( 1, BIN_OP, DPH, OFF); }
168 DPH_SAT { return_opcode(require_ARB_fp, BIN_OP, DPH, ZERO_ONE); }
169 DST { return_opcode( 1, BIN_OP, DST, OFF); }
170 DST_SAT { return_opcode(require_ARB_fp, BIN_OP, DST, ZERO_ONE); }
171
172 EX2 { return_opcode( 1, SCALAR_OP, EX2, OFF); }
173 EX2_SAT { return_opcode(require_ARB_fp, SCALAR_OP, EX2, ZERO_ONE); }
174 EXP { return_opcode(require_ARB_vp, SCALAR_OP, EXP, OFF); }
175
176 FLR { return_opcode( 1, VECTOR_OP, FLR, OFF); }
177 FLR_SAT { return_opcode(require_ARB_fp, VECTOR_OP, FLR, ZERO_ONE); }
178 FRC { return_opcode( 1, VECTOR_OP, FRC, OFF); }
179 FRC_SAT { return_opcode(require_ARB_fp, VECTOR_OP, FRC, ZERO_ONE); }
180
181 KIL { return_opcode(require_ARB_fp, KIL, KIL, OFF); }
182
183 LIT { return_opcode( 1, VECTOR_OP, LIT, OFF); }
184 LIT_SAT { return_opcode(require_ARB_fp, VECTOR_OP, LIT, ZERO_ONE); }
185 LG2 { return_opcode( 1, SCALAR_OP, LG2, OFF); }
186 LG2_SAT { return_opcode(require_ARB_fp, SCALAR_OP, LG2, ZERO_ONE); }
187 LOG { return_opcode(require_ARB_vp, SCALAR_OP, LOG, OFF); }
188 LRP { return_opcode(require_ARB_fp, TRI_OP, LRP, OFF); }
189 LRP_SAT { return_opcode(require_ARB_fp, TRI_OP, LRP, ZERO_ONE); }
190
191 MAD { return_opcode( 1, TRI_OP, MAD, OFF); }
192 MAD_SAT { return_opcode(require_ARB_fp, TRI_OP, MAD, ZERO_ONE); }
193 MAX { return_opcode( 1, BIN_OP, MAX, OFF); }
194 MAX_SAT { return_opcode(require_ARB_fp, BIN_OP, MAX, ZERO_ONE); }
195 MIN { return_opcode( 1, BIN_OP, MIN, OFF); }
196 MIN_SAT { return_opcode(require_ARB_fp, BIN_OP, MIN, ZERO_ONE); }
197 MOV { return_opcode( 1, VECTOR_OP, MOV, OFF); }
198 MOV_SAT { return_opcode(require_ARB_fp, VECTOR_OP, MOV, ZERO_ONE); }
199 MUL { return_opcode( 1, BIN_OP, MUL, OFF); }
200 MUL_SAT { return_opcode(require_ARB_fp, BIN_OP, MUL, ZERO_ONE); }
201
202 POW { return_opcode( 1, BINSC_OP, POW, OFF); }
203 POW_SAT { return_opcode(require_ARB_fp, BINSC_OP, POW, ZERO_ONE); }
204
205 RCP { return_opcode( 1, SCALAR_OP, RCP, OFF); }
206 RCP_SAT { return_opcode(require_ARB_fp, SCALAR_OP, RCP, ZERO_ONE); }
207 RSQ { return_opcode( 1, SCALAR_OP, RSQ, OFF); }
208 RSQ_SAT { return_opcode(require_ARB_fp, SCALAR_OP, RSQ, ZERO_ONE); }
209
210 SCS { return_opcode(require_ARB_fp, SCALAR_OP, SCS, OFF); }
211 SCS_SAT { return_opcode(require_ARB_fp, SCALAR_OP, SCS, ZERO_ONE); }
212 SGE { return_opcode( 1, BIN_OP, SGE, OFF); }
213 SGE_SAT { return_opcode(require_ARB_fp, BIN_OP, SGE, ZERO_ONE); }
214 SIN { return_opcode(require_ARB_fp, SCALAR_OP, SIN, OFF); }
215 SIN_SAT { return_opcode(require_ARB_fp, SCALAR_OP, SIN, ZERO_ONE); }
216 SLT { return_opcode( 1, BIN_OP, SLT, OFF); }
217 SLT_SAT { return_opcode(require_ARB_fp, BIN_OP, SLT, ZERO_ONE); }
218 SUB { return_opcode( 1, BIN_OP, SUB, OFF); }
219 SUB_SAT { return_opcode(require_ARB_fp, BIN_OP, SUB, ZERO_ONE); }
220 SWZ { return_opcode( 1, SWZ, SWZ, OFF); }
221 SWZ_SAT { return_opcode(require_ARB_fp, SWZ, SWZ, ZERO_ONE); }
222
223 TEX { return_opcode(require_ARB_fp, SAMPLE_OP, TEX, OFF); }
224 TEX_SAT { return_opcode(require_ARB_fp, SAMPLE_OP, TEX, ZERO_ONE); }
225 TXB { return_opcode(require_ARB_fp, SAMPLE_OP, TXB, OFF); }
226 TXB_SAT { return_opcode(require_ARB_fp, SAMPLE_OP, TXB, ZERO_ONE); }
227 TXP { return_opcode(require_ARB_fp, SAMPLE_OP, TXP, OFF); }
228 TXP_SAT { return_opcode(require_ARB_fp, SAMPLE_OP, TXP, ZERO_ONE); }
229
230 XPD { return_opcode( 1, BIN_OP, XPD, OFF); }
231 XPD_SAT { return_opcode(require_ARB_fp, BIN_OP, XPD, ZERO_ONE); }
232
233 vertex { return_token_or_IDENTIFIER(require_ARB_vp, VERTEX); }
234 fragment { return_token_or_IDENTIFIER(require_ARB_fp, FRAGMENT); }
235 program { return PROGRAM; }
236 state { return STATE; }
237 result { return RESULT; }
238
239 {dot}ambient { return AMBIENT; }
240 {dot}attenuation { return ATTENUATION; }
241 {dot}back { return BACK; }
242 {dot}clip { return_token_or_DOT(require_ARB_vp, CLIP); }
243 {dot}color { return COLOR; }
244 {dot}depth { return_token_or_DOT(require_ARB_fp, DEPTH); }
245 {dot}diffuse { return DIFFUSE; }
246 {dot}direction { return DIRECTION; }
247 {dot}emission { return EMISSION; }
248 {dot}env { return ENV; }
249 {dot}eye { return EYE; }
250 {dot}fogcoord { return FOGCOORD; }
251 {dot}fog { return FOG; }
252 {dot}front { return FRONT; }
253 {dot}half { return HALF; }
254 {dot}inverse { return INVERSE; }
255 {dot}invtrans { return INVTRANS; }
256 {dot}light { return LIGHT; }
257 {dot}lightmodel { return LIGHTMODEL; }
258 {dot}lightprod { return LIGHTPROD; }
259 {dot}local { return LOCAL; }
260 {dot}material { return MATERIAL; }
261 {dot}program { return MAT_PROGRAM; }
262 {dot}matrix { return MATRIX; }
263 {dot}matrixindex { return_token_or_DOT(require_ARB_vp, MATRIXINDEX); }
264 {dot}modelview { return MODELVIEW; }
265 {dot}mvp { return MVP; }
266 {dot}normal { return_token_or_DOT(require_ARB_vp, NORMAL); }
267 {dot}object { return OBJECT; }
268 {dot}palette { return PALETTE; }
269 {dot}params { return PARAMS; }
270 {dot}plane { return PLANE; }
271 {dot}point { return_token_or_DOT(require_ARB_vp, POINT_TOK); }
272 {dot}pointsize { return_token_or_DOT(require_ARB_vp, POINTSIZE); }
273 {dot}position { return POSITION; }
274 {dot}primary { return PRIMARY; }
275 {dot}projection { return PROJECTION; }
276 {dot}range { return_token_or_DOT(require_ARB_fp, RANGE); }
277 {dot}row { return ROW; }
278 {dot}scenecolor { return SCENECOLOR; }
279 {dot}secondary { return SECONDARY; }
280 {dot}shininess { return SHININESS; }
281 {dot}size { return_token_or_DOT(require_ARB_vp, SIZE_TOK); }
282 {dot}specular { return SPECULAR; }
283 {dot}spot { return SPOT; }
284 {dot}texcoord { return TEXCOORD; }
285 {dot}texenv { return_token_or_DOT(require_ARB_fp, TEXENV); }
286 {dot}texgen { return_token_or_DOT(require_ARB_vp, TEXGEN); }
287 {dot}q { return_token_or_DOT(require_ARB_vp, TEXGEN_Q); }
288 {dot}s { return_token_or_DOT(require_ARB_vp, TEXGEN_S); }
289 {dot}t { return_token_or_DOT(require_ARB_vp, TEXGEN_T); }
290 {dot}texture { return TEXTURE; }
291 {dot}transpose { return TRANSPOSE; }
292 {dot}attrib { return_token_or_DOT(require_ARB_vp, VTXATTRIB); }
293 {dot}weight { return_token_or_DOT(require_ARB_vp, WEIGHT); }
294
295 texture { return_token_or_IDENTIFIER(require_ARB_fp, TEXTURE_UNIT); }
296 1D { return_token_or_IDENTIFIER(require_ARB_fp, TEX_1D); }
297 2D { return_token_or_IDENTIFIER(require_ARB_fp, TEX_2D); }
298 3D { return_token_or_IDENTIFIER(require_ARB_fp, TEX_3D); }
299 CUBE { return_token_or_IDENTIFIER(require_ARB_fp, TEX_CUBE); }
300 RECT { return_token_or_IDENTIFIER(require_ARB_fp && require_rect, TEX_RECT); }
301 SHADOW1D { return_token_or_IDENTIFIER(require_ARB_fp && require_shadow, TEX_SHADOW1D); }
302 SHADOW2D { return_token_or_IDENTIFIER(require_ARB_fp && require_shadow, TEX_SHADOW2D); }
303 SHADOWRECT { return_token_or_IDENTIFIER(require_ARB_fp && require_shadow && require_rect, TEX_SHADOWRECT); }
304 ARRAY1D { return_token_or_IDENTIFIER(require_ARB_fp && require_texarray, TEX_ARRAY1D); }
305 ARRAY2D { return_token_or_IDENTIFIER(require_ARB_fp && require_texarray, TEX_ARRAY2D); }
306 ARRAYSHADOW1D { return_token_or_IDENTIFIER(require_ARB_fp && require_shadow && require_texarray, TEX_ARRAYSHADOW1D); }
307 ARRAYSHADOW2D { return_token_or_IDENTIFIER(require_ARB_fp && require_shadow && require_texarray, TEX_ARRAYSHADOW2D); }
308
309 [_a-zA-Z$][_a-zA-Z0-9$]* {
310 yylval->string = strdup(yytext);
311 return IDENTIFIER;
312 }
313
314 ".." { return DOT_DOT; }
315
316 {num} {
317 yylval->integer = strtol(yytext, NULL, 10);
318 return INTEGER;
319 }
320 {num}?{frac}{exp}? {
321 yylval->real = strtod(yytext, NULL);
322 return REAL;
323 }
324 {num}"."/[^.] {
325 yylval->real = strtod(yytext, NULL);
326 return REAL;
327 }
328 {num}{exp} {
329 yylval->real = strtod(yytext, NULL);
330 return REAL;
331 }
332 {num}"."{exp} {
333 yylval->real = strtod(yytext, NULL);
334 return REAL;
335 }
336
337 ".xyzw" {
338 yylval->swiz_mask.swizzle = SWIZZLE_NOOP;
339 yylval->swiz_mask.mask = WRITEMASK_XYZW;
340 return MASK4;
341 }
342
343 ".xy"[zw] {
344 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
345 yylval->swiz_mask.mask = WRITEMASK_XY
346 | mask_from_char(yytext[3]);
347 return MASK3;
348 }
349 ".xzw" {
350 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
351 yylval->swiz_mask.mask = WRITEMASK_XZW;
352 return MASK3;
353 }
354 ".yzw" {
355 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
356 yylval->swiz_mask.mask = WRITEMASK_YZW;
357 return MASK3;
358 }
359
360 ".x"[yzw] {
361 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
362 yylval->swiz_mask.mask = WRITEMASK_X
363 | mask_from_char(yytext[2]);
364 return MASK2;
365 }
366 ".y"[zw] {
367 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
368 yylval->swiz_mask.mask = WRITEMASK_Y
369 | mask_from_char(yytext[2]);
370 return MASK2;
371 }
372 ".zw" {
373 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
374 yylval->swiz_mask.mask = WRITEMASK_ZW;
375 return MASK2;
376 }
377
378 "."[xyzw] {
379 const unsigned s = swiz_from_char(yytext[1]);
380 yylval->swiz_mask.swizzle = MAKE_SWIZZLE4(s, s, s, s);
381 yylval->swiz_mask.mask = mask_from_char(yytext[1]);
382 return MASK1;
383 }
384
385 "."[xyzw]{4} {
386 yylval->swiz_mask.swizzle = MAKE_SWIZZLE4(swiz_from_char(yytext[1]),
387 swiz_from_char(yytext[2]),
388 swiz_from_char(yytext[3]),
389 swiz_from_char(yytext[4]));
390 yylval->swiz_mask.mask = 0;
391 return SWIZZLE;
392 }
393
394 ".rgba" {
395 yylval->swiz_mask.swizzle = SWIZZLE_NOOP;
396 yylval->swiz_mask.mask = WRITEMASK_XYZW;
397 return_token_or_DOT(require_ARB_fp, MASK4);
398 }
399
400 ".rg"[ba] {
401 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
402 yylval->swiz_mask.mask = WRITEMASK_XY
403 | mask_from_char(yytext[3]);
404 return_token_or_DOT(require_ARB_fp, MASK3);
405 }
406 ".rba" {
407 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
408 yylval->swiz_mask.mask = WRITEMASK_XZW;
409 return_token_or_DOT(require_ARB_fp, MASK3);
410 }
411 ".gba" {
412 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
413 yylval->swiz_mask.mask = WRITEMASK_YZW;
414 return_token_or_DOT(require_ARB_fp, MASK3);
415 }
416
417 ".r"[gba] {
418 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
419 yylval->swiz_mask.mask = WRITEMASK_X
420 | mask_from_char(yytext[2]);
421 return_token_or_DOT(require_ARB_fp, MASK2);
422 }
423 ".g"[ba] {
424 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
425 yylval->swiz_mask.mask = WRITEMASK_Y
426 | mask_from_char(yytext[2]);
427 return_token_or_DOT(require_ARB_fp, MASK2);
428 }
429 ".ba" {
430 yylval->swiz_mask.swizzle = SWIZZLE_INVAL;
431 yylval->swiz_mask.mask = WRITEMASK_ZW;
432 return_token_or_DOT(require_ARB_fp, MASK2);
433 }
434
435 "."[gba] {
436 const unsigned s = swiz_from_char(yytext[1]);
437 yylval->swiz_mask.swizzle = MAKE_SWIZZLE4(s, s, s, s);
438 yylval->swiz_mask.mask = mask_from_char(yytext[1]);
439 return_token_or_DOT(require_ARB_fp, MASK1);
440 }
441
442
443 ".r" {
444 if (require_ARB_vp) {
445 return TEXGEN_R;
446 } else {
447 yylval->swiz_mask.swizzle = MAKE_SWIZZLE4(SWIZZLE_X, SWIZZLE_X,
448 SWIZZLE_X, SWIZZLE_X);
449 yylval->swiz_mask.mask = WRITEMASK_X;
450 return MASK1;
451 }
452 }
453
454 "."[rgba]{4} {
455 yylval->swiz_mask.swizzle = MAKE_SWIZZLE4(swiz_from_char(yytext[1]),
456 swiz_from_char(yytext[2]),
457 swiz_from_char(yytext[3]),
458 swiz_from_char(yytext[4]));
459 yylval->swiz_mask.mask = 0;
460 return_token_or_DOT(require_ARB_fp, SWIZZLE);
461 }
462
463 "." { return DOT; }
464
465 \n {
466 yylloc->first_line++;
467 yylloc->first_column = 1;
468 yylloc->last_line++;
469 yylloc->last_column = 1;
470 yylloc->position++;
471 }
472 [ \t\r]+ /* eat whitespace */ ;
473 #.*$ /* eat comments */ ;
474 . { return yytext[0]; }
475 %%
476
477 void
478 _mesa_program_lexer_ctor(void **scanner, struct asm_parser_state *state,
479 const char *string, size_t len)
480 {
481 yylex_init_extra(state, scanner);
482 yy_scan_bytes(string, len, *scanner);
483 }
484
485 void
486 _mesa_program_lexer_dtor(void *scanner)
487 {
488 yylex_destroy(scanner);
489 }