intel/tools: Manually set ARF register file/nr/subnr
[mesa.git] / src / intel / tools / i965_gram.y
1 %{
2 /*
3 * Copyright © 2018 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 DEALINGS
22 * IN THE SOFTWARE.
23 */
24
25 #include <stdio.h>
26 #include <stdlib.h>
27 #include <string.h>
28 #include <strings.h>
29 #include "i965_asm.h"
30
31 #define YYLTYPE YYLTYPE
32 typedef struct YYLTYPE
33 {
34 int first_line;
35 int first_column;
36 int last_line;
37 int last_column;
38 } YYLTYPE;
39
40 enum message_level {
41 WARN,
42 ERROR,
43 };
44
45 int yydebug = 1;
46
47 static void
48 message(enum message_level level, YYLTYPE *location,
49 const char *fmt, ...)
50 {
51 static const char *level_str[] = { "warning", "error" };
52 va_list args;
53
54 if (location)
55 fprintf(stderr, "%s:%d:%d: %s: ", input_filename,
56 location->first_line,
57 location->first_column, level_str[level]);
58 else
59 fprintf(stderr, "%s:%s: ", input_filename, level_str[level]);
60
61 va_start(args, fmt);
62 vfprintf(stderr, fmt, args);
63 va_end(args);
64 }
65
66 #define warn(flag, l, fmt, ...) \
67 do { \
68 if (warning_flags & WARN_ ## flag) \
69 message(WARN, l, fmt, ## __VA_ARGS__); \
70 } while (0)
71
72 #define error(l, fmt, ...) \
73 do { \
74 message(ERROR, l, fmt, ## __VA_ARGS__); \
75 } while (0)
76
77 static bool
78 isPowerofTwo(unsigned int x)
79 {
80 return x && (!(x & (x - 1)));
81 }
82
83 static struct brw_reg
84 set_direct_src_operand(struct brw_reg *reg, int type)
85 {
86 return brw_reg(reg->file,
87 reg->nr,
88 reg->subnr,
89 0, // negate
90 0, // abs
91 type,
92 0, // vstride
93 0, // width
94 0, // hstride
95 BRW_SWIZZLE_NOOP,
96 WRITEMASK_XYZW);
97 }
98
99 static void
100 i965_asm_unary_instruction(int opcode, struct brw_codegen *p,
101 struct brw_reg dest, struct brw_reg src0)
102 {
103 switch (opcode) {
104 case BRW_OPCODE_BFREV:
105 brw_BFREV(p, dest, src0);
106 break;
107 case BRW_OPCODE_CBIT:
108 brw_CBIT(p, dest, src0);
109 break;
110 case BRW_OPCODE_F32TO16:
111 brw_F32TO16(p, dest, src0);
112 break;
113 case BRW_OPCODE_F16TO32:
114 brw_F16TO32(p, dest, src0);
115 break;
116 case BRW_OPCODE_MOV:
117 brw_MOV(p, dest, src0);
118 break;
119 case BRW_OPCODE_FBL:
120 brw_FBL(p, dest, src0);
121 break;
122 case BRW_OPCODE_FRC:
123 brw_FRC(p, dest, src0);
124 break;
125 case BRW_OPCODE_FBH:
126 brw_FBH(p, dest, src0);
127 break;
128 case BRW_OPCODE_NOT:
129 brw_NOT(p, dest, src0);
130 break;
131 case BRW_OPCODE_RNDE:
132 brw_RNDE(p, dest, src0);
133 break;
134 case BRW_OPCODE_RNDZ:
135 brw_RNDZ(p, dest, src0);
136 break;
137 case BRW_OPCODE_RNDD:
138 brw_RNDD(p, dest, src0);
139 break;
140 case BRW_OPCODE_LZD:
141 brw_LZD(p, dest, src0);
142 break;
143 case BRW_OPCODE_DIM:
144 brw_DIM(p, dest, src0);
145 break;
146 case BRW_OPCODE_RNDU:
147 fprintf(stderr, "Opcode BRW_OPCODE_RNDU unhandled\n");
148 break;
149 default:
150 fprintf(stderr, "Unsupported unary opcode\n");
151 }
152 }
153
154 static void
155 i965_asm_binary_instruction(int opcode,
156 struct brw_codegen *p,
157 struct brw_reg dest,
158 struct brw_reg src0,
159 struct brw_reg src1)
160 {
161 switch (opcode) {
162 case BRW_OPCODE_ADDC:
163 brw_ADDC(p, dest, src0, src1);
164 break;
165 case BRW_OPCODE_BFI1:
166 brw_BFI1(p, dest, src0, src1);
167 break;
168 case BRW_OPCODE_DP2:
169 brw_DP2(p, dest, src0, src1);
170 break;
171 case BRW_OPCODE_DP3:
172 brw_DP3(p, dest, src0, src1);
173 break;
174 case BRW_OPCODE_DP4:
175 brw_DP4(p, dest, src0, src1);
176 break;
177 case BRW_OPCODE_DPH:
178 brw_DPH(p, dest, src0, src1);
179 break;
180 case BRW_OPCODE_LINE:
181 brw_LINE(p, dest, src0, src1);
182 break;
183 case BRW_OPCODE_MAC:
184 brw_MAC(p, dest, src0, src1);
185 break;
186 case BRW_OPCODE_MACH:
187 brw_MACH(p, dest, src0, src1);
188 break;
189 case BRW_OPCODE_PLN:
190 brw_PLN(p, dest, src0, src1);
191 break;
192 case BRW_OPCODE_ROL:
193 brw_ROL(p, dest, src0, src1);
194 break;
195 case BRW_OPCODE_ROR:
196 brw_ROR(p, dest, src0, src1);
197 break;
198 case BRW_OPCODE_SAD2:
199 fprintf(stderr, "Opcode BRW_OPCODE_SAD2 unhandled\n");
200 break;
201 case BRW_OPCODE_SADA2:
202 fprintf(stderr, "Opcode BRW_OPCODE_SADA2 unhandled\n");
203 break;
204 case BRW_OPCODE_SUBB:
205 brw_SUBB(p, dest, src0, src1);
206 break;
207 case BRW_OPCODE_ADD:
208 brw_ADD(p, dest, src0, src1);
209 break;
210 case BRW_OPCODE_CMP:
211 /* Third parameter is conditional modifier
212 * which gets updated later
213 */
214 brw_CMP(p, dest, 0, src0, src1);
215 break;
216 case BRW_OPCODE_AND:
217 brw_AND(p, dest, src0, src1);
218 break;
219 case BRW_OPCODE_ASR:
220 brw_ASR(p, dest, src0, src1);
221 break;
222 case BRW_OPCODE_AVG:
223 brw_AVG(p, dest, src0, src1);
224 break;
225 case BRW_OPCODE_OR:
226 brw_OR(p, dest, src0, src1);
227 break;
228 case BRW_OPCODE_SEL:
229 brw_SEL(p, dest, src0, src1);
230 break;
231 case BRW_OPCODE_SHL:
232 brw_SHL(p, dest, src0, src1);
233 break;
234 case BRW_OPCODE_SHR:
235 brw_SHR(p, dest, src0, src1);
236 break;
237 case BRW_OPCODE_XOR:
238 brw_XOR(p, dest, src0, src1);
239 break;
240 case BRW_OPCODE_MUL:
241 brw_MUL(p, dest, src0, src1);
242 break;
243 default:
244 fprintf(stderr, "Unsupported binary opcode\n");
245 }
246 }
247
248 static void
249 i965_asm_ternary_instruction(int opcode,
250 struct brw_codegen *p,
251 struct brw_reg dest,
252 struct brw_reg src0,
253 struct brw_reg src1,
254 struct brw_reg src2)
255 {
256 switch (opcode) {
257 case BRW_OPCODE_MAD:
258 brw_MAD(p, dest, src0, src1, src2);
259 break;
260 case BRW_OPCODE_CSEL:
261 brw_CSEL(p, dest, src0, src1, src2);
262 break;
263 case BRW_OPCODE_LRP:
264 brw_LRP(p, dest, src0, src1, src2);
265 break;
266 case BRW_OPCODE_BFE:
267 brw_BFE(p, dest, src0, src1, src2);
268 break;
269 case BRW_OPCODE_BFI2:
270 brw_BFI2(p, dest, src0, src1, src2);
271 break;
272 default:
273 fprintf(stderr, "Unsupported ternary opcode\n");
274 }
275 }
276
277 static void
278 i965_asm_set_instruction_options(struct brw_codegen *p,
279 struct options options)
280 {
281 brw_inst_set_access_mode(p->devinfo, brw_last_inst,
282 options.access_mode);
283 brw_inst_set_mask_control(p->devinfo, brw_last_inst,
284 options.mask_control);
285 brw_inst_set_thread_control(p->devinfo, brw_last_inst,
286 options.thread_control);
287 brw_inst_set_no_dd_check(p->devinfo, brw_last_inst,
288 options.no_dd_check);
289 brw_inst_set_no_dd_clear(p->devinfo, brw_last_inst,
290 options.no_dd_clear);
291 brw_inst_set_debug_control(p->devinfo, brw_last_inst,
292 options.debug_control);
293 if (p->devinfo->gen >= 6)
294 brw_inst_set_acc_wr_control(p->devinfo, brw_last_inst,
295 options.acc_wr_control);
296 brw_inst_set_cmpt_control(p->devinfo, brw_last_inst,
297 options.compaction);
298 }
299
300 static void
301 i965_asm_set_dst_nr(struct brw_codegen *p,
302 struct brw_reg *reg,
303 struct options options)
304 {
305 if (p->devinfo->gen <= 6) {
306 if (reg->file == BRW_MESSAGE_REGISTER_FILE &&
307 options.qtr_ctrl == BRW_COMPRESSION_COMPRESSED &&
308 !options.is_compr)
309 reg->nr |= BRW_MRF_COMPR4;
310 }
311 }
312
313 %}
314
315 %locations
316
317 %start ROOT
318
319 %union {
320 double number;
321 int integer;
322 unsigned long long int llint;
323 struct brw_reg reg;
324 enum brw_reg_type reg_type;
325 struct brw_codegen *program;
326 struct predicate predicate;
327 struct condition condition;
328 struct options options;
329 brw_inst *instruction;
330 }
331
332 %token ABS
333 %token COLON
334 %token COMMA
335 %token DOT
336 %token LANGLE RANGLE
337 %token LCURLY RCURLY
338 %token LPAREN RPAREN
339 %token LSQUARE RSQUARE
340 %token PLUS MINUS
341 %token SEMICOLON
342
343 /* datatypes */
344 %token <integer> TYPE_B TYPE_UB
345 %token <integer> TYPE_W TYPE_UW
346 %token <integer> TYPE_D TYPE_UD
347 %token <integer> TYPE_Q TYPE_UQ
348 %token <integer> TYPE_V TYPE_UV
349 %token <integer> TYPE_F TYPE_HF
350 %token <integer> TYPE_DF TYPE_NF
351 %token <integer> TYPE_VF
352
353 /* opcodes */
354 %token <integer> ADD ADD3 ADDC AND ASR AVG
355 %token <integer> BFE BFI1 BFI2 BFB BFREV BRC BRD BREAK
356 %token <integer> CALL CALLA CASE CBIT CMP CMPN CONT CSEL
357 %token <integer> DIM DO DPAS DPASW DP2 DP3 DP4 DP4A DPH
358 %token <integer> ELSE ENDIF F16TO32 F32TO16 FBH FBL FORK FRC
359 %token <integer> GOTO
360 %token <integer> HALT
361 %token <integer> IF IFF ILLEGAL
362 %token <integer> JMPI JOIN
363 %token <integer> LINE LRP LZD
364 %token <integer> MAC MACH MAD MADM MOV MOVI MUL MREST MSAVE
365 %token <integer> NENOP NOP NOT
366 %token <integer> OR
367 %token <integer> PLN POP PUSH
368 %token <integer> RET RNDD RNDE RNDU RNDZ ROL ROR
369 %token <integer> SAD2 SADA2 SEL SEND SENDC SENDS SENDSC SHL SHR SMOV SUBB SYNC
370 %token <integer> WAIT WHILE
371 %token <integer> XOR
372
373 /* extended math functions */
374 %token <integer> COS EXP FDIV INV INVM INTDIV INTDIVMOD INTMOD LOG POW RSQ
375 %token <integer> RSQRTM SIN SINCOS SQRT
376
377 /* shared functions for send */
378 %token CONST CRE DATA DP_DATA_1 GATEWAY MATH PIXEL_INTERP READ RENDER SAMPLER
379 %token THREAD_SPAWNER URB VME WRITE DP_SAMPLER
380
381 /* Conditional modifiers */
382 %token <integer> EQUAL GREATER GREATER_EQUAL LESS LESS_EQUAL NOT_EQUAL
383 %token <integer> NOT_ZERO OVERFLOW UNORDERED ZERO
384
385 /* register Access Modes */
386 %token ALIGN1 ALIGN16
387
388 /* accumulator write control */
389 %token ACCWREN
390
391 /* compaction control */
392 %token CMPTCTRL
393
394 /* compression control */
395 %token COMPR COMPR4 SECHALF
396
397 /* mask control (WeCtrl) */
398 %token WECTRL
399
400 /* debug control */
401 %token BREAKPOINT
402
403 /* dependency control */
404 %token NODDCLR NODDCHK
405
406 /* end of thread */
407 %token EOT
408
409 /* mask control */
410 %token MASK_DISABLE;
411
412 /* predicate control */
413 %token <integer> ANYV ALLV ANY2H ALL2H ANY4H ALL4H ANY8H ALL8H ANY16H ALL16H
414 %token <integer> ANY32H ALL32H
415
416 /* round instructions */
417 %token <integer> ROUND_INCREMENT
418
419 /* staturation */
420 %token SATURATE
421
422 /* thread control */
423 %token ATOMIC SWITCH
424
425 /* quater control */
426 %token QTR_2Q QTR_3Q QTR_4Q QTR_2H QTR_2N QTR_3N QTR_4N QTR_5N
427 %token QTR_6N QTR_7N QTR_8N
428
429 /* channels */
430 %token <integer> X Y Z W
431
432 /* reg files */
433 %token GENREGFILE MSGREGFILE
434
435 /* vertical stride in register region */
436 %token VxH
437
438 /* register type */
439 %token <integer> GENREG MSGREG ADDRREG ACCREG FLAGREG NOTIFYREG STATEREG
440 %token <integer> CONTROLREG IPREG PERFORMANCEREG THREADREG CHANNELENABLEREG
441 %token <integer> MASKREG
442
443 %token <integer> INTEGER
444 %token <llint> LONG
445 %token NULL_TOKEN
446
447 %precedence SUBREGNUM
448 %left PLUS MINUS
449 %precedence DOT
450 %precedence EMPTYEXECSIZE
451 %precedence LPAREN
452
453 %type <integer> execsize simple_int exp
454 %type <llint> exp2
455
456 /* predicate control */
457 %type <integer> predctrl predstate
458 %type <predicate> predicate
459
460 /* conditional modifier */
461 %type <condition> cond_mod
462 %type <integer> condModifiers
463
464 /* instruction options */
465 %type <options> instoptions instoption_list
466 %type <integer> instoption
467
468 /* writemask */
469 %type <integer> writemask_x writemask_y writemask_z writemask_w
470 %type <integer> writemask
471
472 /* dst operand */
473 %type <reg> dst dstoperand dstoperandex dstoperandex_typed dstreg
474 %type <integer> dstregion
475
476 %type <integer> saturate relativelocation rellocation
477 %type <reg> relativelocation2
478
479 /* src operand */
480 %type <reg> directsrcoperand directsrcaccoperand indirectsrcoperand srcacc
481 %type <reg> srcarcoperandex srcaccimm srcarcoperandex_typed srcimm
482 %type <reg> indirectgenreg indirectregion
483 %type <reg> immreg src reg32 payload directgenreg_list addrparam region
484 %type <reg> region_wh directgenreg directmsgreg indirectmsgreg
485 %type <integer> swizzle
486
487 /* registers */
488 %type <reg> accreg addrreg channelenablereg controlreg flagreg ipreg
489 %type <reg> notifyreg nullreg performancereg threadcontrolreg statereg maskreg
490 %type <integer> subregnum
491
492 /* register types */
493 %type <reg_type> reg_type imm_type
494
495 /* immediate values */
496 %type <llint> immval
497
498 /* instruction opcodes */
499 %type <integer> unaryopcodes binaryopcodes binaryaccopcodes ternaryopcodes
500 %type <integer> sendop
501 %type <instruction> sendopcode
502
503 %type <integer> negate abs chansel math_function sharedfunction
504
505 %code {
506
507 static void
508 add_instruction_option(struct options *options, int option)
509 {
510 switch (option) {
511 case ALIGN1:
512 options->access_mode = BRW_ALIGN_1;
513 break;
514 case ALIGN16:
515 options->access_mode = BRW_ALIGN_16;
516 break;
517 case SECHALF:
518 options->qtr_ctrl |= BRW_COMPRESSION_2NDHALF;
519 break;
520 case COMPR:
521 options->qtr_ctrl |= BRW_COMPRESSION_COMPRESSED;
522 options->is_compr = true;
523 break;
524 case COMPR4:
525 options->qtr_ctrl |= BRW_COMPRESSION_COMPRESSED;
526 break;
527 case SWITCH:
528 options->thread_control |= BRW_THREAD_SWITCH;
529 break;
530 case ATOMIC:
531 options->thread_control |= BRW_THREAD_ATOMIC;
532 break;
533 case NODDCHK:
534 options->no_dd_check = true;
535 break;
536 case NODDCLR:
537 options->no_dd_clear = BRW_DEPENDENCY_NOTCLEARED;
538 break;
539 case MASK_DISABLE:
540 options->mask_control |= BRW_MASK_DISABLE;
541 break;
542 case BREAKPOINT:
543 options->debug_control = BRW_DEBUG_BREAKPOINT;
544 break;
545 case WECTRL:
546 options->mask_control |= BRW_WE_ALL;
547 break;
548 case CMPTCTRL:
549 options->compaction = true;
550 break;
551 case ACCWREN:
552 options->acc_wr_control = true;
553 break;
554 case EOT:
555 options->end_of_thread = true;
556 break;
557 /* TODO : Figure out how to set instruction group and get rid of
558 * code below
559 */
560 case QTR_2Q:
561 options->qtr_ctrl = BRW_COMPRESSION_2NDHALF;
562 break;
563 case QTR_3Q:
564 options->qtr_ctrl = BRW_COMPRESSION_COMPRESSED;
565 break;
566 case QTR_4Q:
567 options->qtr_ctrl = 3;
568 break;
569 case QTR_2H:
570 options->qtr_ctrl = BRW_COMPRESSION_COMPRESSED;
571 break;
572 case QTR_2N:
573 options->qtr_ctrl = BRW_COMPRESSION_NONE;
574 options->nib_ctrl = true;
575 break;
576 case QTR_3N:
577 options->qtr_ctrl = BRW_COMPRESSION_2NDHALF;
578 break;
579 case QTR_4N:
580 options->qtr_ctrl = BRW_COMPRESSION_2NDHALF;
581 options->nib_ctrl = true;
582 break;
583 case QTR_5N:
584 options->qtr_ctrl = BRW_COMPRESSION_COMPRESSED;
585 break;
586 case QTR_6N:
587 options->qtr_ctrl = BRW_COMPRESSION_COMPRESSED;
588 options->nib_ctrl = true;
589 break;
590 case QTR_7N:
591 options->qtr_ctrl = 3;
592 break;
593 case QTR_8N:
594 options->qtr_ctrl = 3;
595 options->nib_ctrl = true;
596 break;
597 }
598 }
599 }
600 %%
601
602 ROOT:
603 instrseq
604 ;
605
606 instrseq:
607 instrseq instruction SEMICOLON
608 | instrseq relocatableinstruction SEMICOLON
609 | instruction SEMICOLON
610 | relocatableinstruction SEMICOLON
611 ;
612
613 /* Instruction Group */
614 instruction:
615 unaryinstruction
616 | binaryinstruction
617 | binaryaccinstruction
618 | mathinstruction
619 | nopinstruction
620 | syncinstruction
621 | ternaryinstruction
622 | sendinstruction
623 | illegalinstruction
624 ;
625
626 relocatableinstruction:
627 jumpinstruction
628 | branchinstruction
629 | breakinstruction
630 | loopinstruction
631 ;
632
633 illegalinstruction:
634 ILLEGAL execsize instoptions
635 {
636 brw_next_insn(p, $1);
637 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $2);
638 i965_asm_set_instruction_options(p, $3);
639 }
640 ;
641
642 /* Unary instruction */
643 unaryinstruction:
644 predicate unaryopcodes saturate cond_mod execsize dst srcaccimm instoptions
645 {
646 i965_asm_set_dst_nr(p, &$6, $8);
647 brw_set_default_access_mode(p, $8.access_mode);
648 i965_asm_unary_instruction($2, p, $6, $7);
649 brw_pop_insn_state(p);
650 i965_asm_set_instruction_options(p, $8);
651 brw_inst_set_cond_modifier(p->devinfo, brw_last_inst,
652 $4.cond_modifier);
653
654 if (p->devinfo->gen >= 7) {
655 if ($2 != BRW_OPCODE_DIM) {
656 brw_inst_set_flag_reg_nr(p->devinfo,
657 brw_last_inst,
658 $4.flag_reg_nr);
659 brw_inst_set_flag_subreg_nr(p->devinfo,
660 brw_last_inst,
661 $4.flag_subreg_nr);
662 }
663 }
664
665 if ($7.file != BRW_IMMEDIATE_VALUE) {
666 brw_inst_set_src0_vstride(p->devinfo, brw_last_inst,
667 $7.vstride);
668 }
669 brw_inst_set_saturate(p->devinfo, brw_last_inst, $3);
670 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $5);
671 // TODO: set instruction group instead of qtr and nib ctrl
672 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
673 $8.qtr_ctrl);
674
675 if (p->devinfo->gen >= 7)
676 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
677 $8.nib_ctrl);
678 }
679 ;
680
681 unaryopcodes:
682 BFREV
683 | CBIT
684 | DIM
685 | F16TO32
686 | F32TO16
687 | FBH
688 | FBL
689 | FRC
690 | LZD
691 | MOV
692 | NOT
693 | RNDD
694 | RNDE
695 | RNDU
696 | RNDZ
697 ;
698
699 /* Binary instruction */
700 binaryinstruction:
701 predicate binaryopcodes saturate cond_mod execsize dst srcimm srcimm instoptions
702 {
703 i965_asm_set_dst_nr(p, &$6, $9);
704 brw_set_default_access_mode(p, $9.access_mode);
705 i965_asm_binary_instruction($2, p, $6, $7, $8);
706 i965_asm_set_instruction_options(p, $9);
707 brw_inst_set_cond_modifier(p->devinfo, brw_last_inst,
708 $4.cond_modifier);
709
710 if (p->devinfo->gen >= 7) {
711 brw_inst_set_flag_reg_nr(p->devinfo, brw_last_inst,
712 $4.flag_reg_nr);
713 brw_inst_set_flag_subreg_nr(p->devinfo, brw_last_inst,
714 $4.flag_subreg_nr);
715 }
716
717 brw_inst_set_saturate(p->devinfo, brw_last_inst, $3);
718 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $5);
719 // TODO: set instruction group instead of qtr and nib ctrl
720 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
721 $9.qtr_ctrl);
722
723 if (p->devinfo->gen >= 7)
724 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
725 $9.nib_ctrl);
726
727 brw_pop_insn_state(p);
728 }
729 ;
730
731 binaryopcodes:
732 ADDC
733 | BFI1
734 | DP2
735 | DP3
736 | DP4
737 | DPH
738 | LINE
739 | MAC
740 | MACH
741 | MUL
742 | PLN
743 | ROL
744 | ROR
745 | SAD2
746 | SADA2
747 | SUBB
748 ;
749
750 /* Binary acc instruction */
751 binaryaccinstruction:
752 predicate binaryaccopcodes saturate cond_mod execsize dst srcacc srcimm instoptions
753 {
754 i965_asm_set_dst_nr(p, &$6, $9);
755 brw_set_default_access_mode(p, $9.access_mode);
756 i965_asm_binary_instruction($2, p, $6, $7, $8);
757 brw_pop_insn_state(p);
758 i965_asm_set_instruction_options(p, $9);
759 brw_inst_set_cond_modifier(p->devinfo, brw_last_inst,
760 $4.cond_modifier);
761
762 if (p->devinfo->gen >= 7) {
763 if (!brw_inst_flag_reg_nr(p->devinfo, brw_last_inst)) {
764 brw_inst_set_flag_reg_nr(p->devinfo,
765 brw_last_inst,
766 $4.flag_reg_nr);
767 brw_inst_set_flag_subreg_nr(p->devinfo,
768 brw_last_inst,
769 $4.flag_subreg_nr);
770 }
771 }
772
773 brw_inst_set_saturate(p->devinfo, brw_last_inst, $3);
774 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $5);
775 // TODO: set instruction group instead of qtr and nib ctrl
776 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
777 $9.qtr_ctrl);
778
779 if (p->devinfo->gen >= 7)
780 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
781 $9.nib_ctrl);
782 }
783 ;
784
785 binaryaccopcodes:
786 ADD
787 | AND
788 | ASR
789 | AVG
790 | CMP
791 | CMPN
792 | OR
793 | SEL
794 | SHL
795 | SHR
796 | XOR
797 ;
798
799 /* Math instruction */
800 mathinstruction:
801 predicate MATH saturate math_function execsize dst src srcimm instoptions
802 {
803 brw_set_default_access_mode(p, $9.access_mode);
804 gen6_math(p, $6, $4, $7, $8);
805 i965_asm_set_instruction_options(p, $9);
806 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $5);
807 brw_inst_set_saturate(p->devinfo, brw_last_inst, $3);
808 // TODO: set instruction group instead
809 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
810 $9.qtr_ctrl);
811
812 if (p->devinfo->gen >= 7)
813 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
814 $9.nib_ctrl);
815
816 brw_pop_insn_state(p);
817 }
818 ;
819
820 math_function:
821 COS
822 | EXP
823 | FDIV
824 | INV
825 | INVM
826 | INTDIV
827 | INTDIVMOD
828 | INTMOD
829 | LOG
830 | POW
831 | RSQ
832 | RSQRTM
833 | SIN
834 | SQRT
835 | SINCOS
836 ;
837
838 /* NOP instruction */
839 nopinstruction:
840 NOP
841 {
842 brw_NOP(p);
843 }
844 ;
845
846 /* Ternary operand instruction */
847 ternaryinstruction:
848 predicate ternaryopcodes saturate cond_mod execsize dst src src src instoptions
849 {
850 brw_set_default_access_mode(p, $10.access_mode);
851 i965_asm_ternary_instruction($2, p, $6, $7, $8, $9);
852 brw_pop_insn_state(p);
853 i965_asm_set_instruction_options(p, $10);
854 brw_inst_set_cond_modifier(p->devinfo, brw_last_inst,
855 $4.cond_modifier);
856
857 if (p->devinfo->gen >= 7) {
858 brw_inst_set_3src_a16_flag_reg_nr(p->devinfo, brw_last_inst,
859 $4.flag_reg_nr);
860 brw_inst_set_3src_a16_flag_subreg_nr(p->devinfo, brw_last_inst,
861 $4.flag_subreg_nr);
862 }
863
864 brw_inst_set_saturate(p->devinfo, brw_last_inst, $3);
865 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $5);
866 // TODO: set instruction group instead of qtr and nib ctrl
867 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
868 $10.qtr_ctrl);
869
870 if (p->devinfo->gen >= 7)
871 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
872 $10.nib_ctrl);
873 }
874 ;
875
876 ternaryopcodes:
877 CSEL
878 | BFE
879 | BFI2
880 | LRP
881 | MAD
882 ;
883
884 /* Sync instruction */
885 syncinstruction:
886 WAIT execsize src instoptions
887 {
888 brw_next_insn(p, $1);
889 i965_asm_set_instruction_options(p, $4);
890 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $2);
891 brw_set_default_access_mode(p, $4.access_mode);
892 struct brw_reg src = brw_notification_reg();
893 brw_set_dest(p, brw_last_inst, src);
894 brw_set_src0(p, brw_last_inst, src);
895 brw_set_src1(p, brw_last_inst, brw_null_reg());
896 brw_inst_set_mask_control(p->devinfo, brw_last_inst, BRW_MASK_DISABLE);
897 }
898 ;
899
900 /* Send instruction */
901 sendinstruction:
902 predicate sendopcode execsize dst payload exp2 sharedfunction instoptions
903 {
904 i965_asm_set_instruction_options(p, $8);
905 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
906 brw_set_dest(p, brw_last_inst, $4);
907 brw_set_src0(p, brw_last_inst, $5);
908 brw_inst_set_bits(brw_last_inst, 127, 96, $6);
909 brw_inst_set_src1_file_type(p->devinfo, brw_last_inst,
910 BRW_IMMEDIATE_VALUE,
911 BRW_REGISTER_TYPE_UD);
912 brw_inst_set_sfid(p->devinfo, brw_last_inst, $7);
913 brw_inst_set_eot(p->devinfo, brw_last_inst, $8.end_of_thread);
914 // TODO: set instruction group instead of qtr and nib ctrl
915 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
916 $8.qtr_ctrl);
917
918 if (p->devinfo->gen >= 7)
919 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
920 $8.nib_ctrl);
921
922 brw_pop_insn_state(p);
923 }
924 | predicate sendopcode execsize exp dst payload exp2 sharedfunction instoptions
925 {
926 i965_asm_set_instruction_options(p, $9);
927 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
928 brw_inst_set_base_mrf(p->devinfo, brw_last_inst, $4);
929 brw_set_dest(p, brw_last_inst, $5);
930 brw_set_src0(p, brw_last_inst, $6);
931 brw_inst_set_bits(brw_last_inst, 127, 96, $7);
932 brw_inst_set_src1_file_type(p->devinfo, brw_last_inst,
933 BRW_IMMEDIATE_VALUE,
934 BRW_REGISTER_TYPE_UD);
935 brw_inst_set_sfid(p->devinfo, brw_last_inst, $8);
936 brw_inst_set_eot(p->devinfo, brw_last_inst, $9.end_of_thread);
937 // TODO: set instruction group instead of qtr and nib ctrl
938 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
939 $9.qtr_ctrl);
940
941 if (p->devinfo->gen >= 7)
942 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
943 $9.nib_ctrl);
944
945 brw_pop_insn_state(p);
946 }
947 | predicate sendopcode execsize dst payload payload exp2 sharedfunction instoptions
948 {
949 i965_asm_set_instruction_options(p, $9);
950 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
951 brw_set_dest(p, brw_last_inst, $4);
952 brw_set_src0(p, brw_last_inst, $5);
953 brw_inst_set_bits(brw_last_inst, 127, 96, $7);
954 brw_inst_set_sfid(p->devinfo, brw_last_inst, $8);
955 brw_inst_set_eot(p->devinfo, brw_last_inst, $9.end_of_thread);
956 // TODO: set instruction group instead of qtr and nib ctrl
957 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
958 $9.qtr_ctrl);
959
960 if (p->devinfo->gen >= 7)
961 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
962 $9.nib_ctrl);
963
964 brw_pop_insn_state(p);
965 }
966 | predicate SENDS execsize dst payload payload exp2 exp2 sharedfunction instoptions
967 {
968 brw_next_insn(p, $2);
969 i965_asm_set_instruction_options(p, $10);
970 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
971 brw_set_dest(p, brw_last_inst, $4);
972 brw_set_src0(p, brw_last_inst, $5);
973 brw_set_src1(p, brw_last_inst, $6);
974
975 if (brw_inst_send_sel_reg32_ex_desc(p->devinfo, brw_last_inst)) {
976 brw_inst_set_send_ex_desc_ia_subreg_nr(p->devinfo, brw_last_inst, $5.subnr);
977 } else {
978 brw_inst_set_sends_ex_desc(p->devinfo, brw_last_inst, $8);
979 }
980
981 brw_inst_set_bits(brw_last_inst, 127, 96, $7);
982 brw_inst_set_sfid(p->devinfo, brw_last_inst, $9);
983 brw_inst_set_eot(p->devinfo, brw_last_inst, $10.end_of_thread);
984 // TODO: set instruction group instead of qtr and nib ctrl
985 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
986 $10.qtr_ctrl);
987
988 if (p->devinfo->gen >= 7)
989 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
990 $10.nib_ctrl);
991
992 brw_pop_insn_state(p);
993 }
994 | predicate SENDS execsize dst payload payload src exp2 sharedfunction instoptions
995 {
996 brw_next_insn(p, $2);
997 i965_asm_set_instruction_options(p, $10);
998 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
999 brw_set_dest(p, brw_last_inst, $4);
1000 brw_set_src0(p, brw_last_inst, $5);
1001 brw_set_src1(p, brw_last_inst, $6);
1002
1003 brw_inst_set_send_sel_reg32_desc(p->devinfo, brw_last_inst, 1);
1004 brw_inst_set_sends_ex_desc(p->devinfo, brw_last_inst, $8);
1005
1006 brw_inst_set_sfid(p->devinfo, brw_last_inst, $9);
1007 brw_inst_set_eot(p->devinfo, brw_last_inst, $10.end_of_thread);
1008 // TODO: set instruction group instead of qtr and nib ctrl
1009 brw_inst_set_qtr_control(p->devinfo, brw_last_inst,
1010 $10.qtr_ctrl);
1011
1012 if (p->devinfo->gen >= 7)
1013 brw_inst_set_nib_control(p->devinfo, brw_last_inst,
1014 $10.nib_ctrl);
1015
1016 brw_pop_insn_state(p);
1017 }
1018 ;
1019
1020 sendop:
1021 SEND
1022 | SENDC
1023 ;
1024
1025 sendopcode:
1026 sendop { $$ = brw_next_insn(p, $1); }
1027 ;
1028
1029 sharedfunction:
1030 NULL_TOKEN { $$ = BRW_SFID_NULL; }
1031 | MATH { $$ = BRW_SFID_MATH; }
1032 | GATEWAY { $$ = BRW_SFID_MESSAGE_GATEWAY; }
1033 | READ { $$ = BRW_SFID_DATAPORT_READ; }
1034 | WRITE { $$ = BRW_SFID_DATAPORT_WRITE; }
1035 | URB { $$ = BRW_SFID_URB; }
1036 | THREAD_SPAWNER { $$ = BRW_SFID_THREAD_SPAWNER; }
1037 | VME { $$ = BRW_SFID_VME; }
1038 | RENDER { $$ = GEN6_SFID_DATAPORT_RENDER_CACHE; }
1039 | CONST { $$ = GEN6_SFID_DATAPORT_CONSTANT_CACHE; }
1040 | DATA { $$ = GEN7_SFID_DATAPORT_DATA_CACHE; }
1041 | PIXEL_INTERP { $$ = GEN7_SFID_PIXEL_INTERPOLATOR; }
1042 | DP_DATA_1 { $$ = HSW_SFID_DATAPORT_DATA_CACHE_1; }
1043 | CRE { $$ = HSW_SFID_CRE; }
1044 | SAMPLER { $$ = BRW_SFID_SAMPLER; }
1045 | DP_SAMPLER { $$ = GEN6_SFID_DATAPORT_SAMPLER_CACHE; }
1046 ;
1047
1048 exp2:
1049 LONG { $$ = $1; }
1050 | MINUS LONG { $$ = -$2; }
1051 ;
1052
1053 /* Jump instruction */
1054 jumpinstruction:
1055 predicate JMPI execsize relativelocation2 instoptions
1056 {
1057 brw_next_insn(p, $2);
1058 i965_asm_set_instruction_options(p, $5);
1059 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1060 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1061 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1062 brw_set_src1(p, brw_last_inst, $4);
1063 brw_inst_set_pred_control(p->devinfo, brw_last_inst,
1064 brw_inst_pred_control(p->devinfo,
1065 brw_last_inst));
1066 brw_pop_insn_state(p);
1067 }
1068 ;
1069
1070 /* branch instruction */
1071 branchinstruction:
1072 predicate ENDIF execsize relativelocation instoptions
1073 {
1074 brw_next_insn(p, $2);
1075 i965_asm_set_instruction_options(p, $5);
1076 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1077
1078 if (p->devinfo->gen < 6) {
1079 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1080 BRW_REGISTER_TYPE_D));
1081 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1082 BRW_REGISTER_TYPE_D));
1083 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1084 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1085 $4);
1086 } else if (p->devinfo->gen == 6) {
1087 brw_set_dest(p, brw_last_inst, brw_imm_w(0x0));
1088 brw_inst_set_gen6_jump_count(p->devinfo, brw_last_inst,
1089 $4);
1090 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1091 BRW_REGISTER_TYPE_D));
1092 brw_set_src1(p, brw_last_inst, retype(brw_null_reg(),
1093 BRW_REGISTER_TYPE_D));
1094 } else if (p->devinfo->gen == 7) {
1095 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1096 BRW_REGISTER_TYPE_D));
1097 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1098 BRW_REGISTER_TYPE_D));
1099 brw_set_src1(p, brw_last_inst, brw_imm_w(0x0));
1100 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1101 } else {
1102 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1103 }
1104
1105 if (p->devinfo->gen < 6)
1106 brw_inst_set_thread_control(p->devinfo, brw_last_inst,
1107 BRW_THREAD_SWITCH);
1108 brw_pop_insn_state(p);
1109 }
1110 | ELSE execsize relativelocation rellocation instoptions
1111 {
1112 brw_next_insn(p, $1);
1113 i965_asm_set_instruction_options(p, $5);
1114 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $2);
1115
1116 if (p->devinfo->gen < 6) {
1117 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1118 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1119 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1120 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1121 $3);
1122 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1123 $4);
1124 } else if (p->devinfo->gen == 6) {
1125 brw_set_dest(p, brw_last_inst, brw_imm_w(0x0));
1126 brw_inst_set_gen6_jump_count(p->devinfo, brw_last_inst,
1127 $3);
1128 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1129 BRW_REGISTER_TYPE_D));
1130 brw_set_src1(p, brw_last_inst, retype(brw_null_reg(),
1131 BRW_REGISTER_TYPE_D));
1132 } else if (p->devinfo->gen == 7) {
1133 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1134 BRW_REGISTER_TYPE_D));
1135 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1136 BRW_REGISTER_TYPE_D));
1137 brw_set_src1(p, brw_last_inst, brw_imm_w($3));
1138 brw_inst_set_jip(p->devinfo, brw_last_inst, $3);
1139 brw_inst_set_uip(p->devinfo, brw_last_inst, $4);
1140 } else {
1141 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1142 BRW_REGISTER_TYPE_D));
1143 brw_set_src0(p, brw_last_inst, brw_imm_d($3));
1144 brw_inst_set_jip(p->devinfo, brw_last_inst, $3);
1145 brw_inst_set_uip(p->devinfo, brw_last_inst, $4);
1146 }
1147
1148 if (!p->single_program_flow && p->devinfo->gen < 6)
1149 brw_inst_set_thread_control(p->devinfo, brw_last_inst,
1150 BRW_THREAD_SWITCH);
1151 }
1152 | predicate IF execsize relativelocation rellocation instoptions
1153 {
1154 brw_next_insn(p, $2);
1155 i965_asm_set_instruction_options(p, $6);
1156 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1157
1158 if (p->devinfo->gen < 6) {
1159 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1160 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1161 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1162 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1163 $4);
1164 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1165 $5);
1166 } else if (p->devinfo->gen == 6) {
1167 brw_set_dest(p, brw_last_inst, brw_imm_w(0x0));
1168 brw_inst_set_gen6_jump_count(p->devinfo, brw_last_inst,
1169 $4);
1170 brw_set_src0(p, brw_last_inst,
1171 vec1(retype(brw_null_reg(),
1172 BRW_REGISTER_TYPE_D)));
1173 brw_set_src1(p, brw_last_inst,
1174 vec1(retype(brw_null_reg(),
1175 BRW_REGISTER_TYPE_D)));
1176 } else if (p->devinfo->gen == 7) {
1177 brw_set_dest(p, brw_last_inst,
1178 vec1(retype(brw_null_reg(),
1179 BRW_REGISTER_TYPE_D)));
1180 brw_set_src0(p, brw_last_inst,
1181 vec1(retype(brw_null_reg(),
1182 BRW_REGISTER_TYPE_D)));
1183 brw_set_src1(p, brw_last_inst, brw_imm_w($4));
1184 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1185 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1186 } else {
1187 brw_set_dest(p, brw_last_inst,
1188 vec1(retype(brw_null_reg(),
1189 BRW_REGISTER_TYPE_D)));
1190 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1191 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1192 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1193 }
1194
1195 if (!p->single_program_flow && p->devinfo->gen < 6)
1196 brw_inst_set_thread_control(p->devinfo, brw_last_inst,
1197 BRW_THREAD_SWITCH);
1198
1199 brw_pop_insn_state(p);
1200 }
1201 | predicate IFF execsize relativelocation instoptions
1202 {
1203 brw_next_insn(p, $2);
1204 i965_asm_set_instruction_options(p, $5);
1205 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1206
1207 if (p->devinfo->gen < 6) {
1208 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1209 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1210 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1211 $4);
1212 brw_set_src1(p, brw_last_inst, brw_imm_d($4));
1213 } else if (p->devinfo->gen == 6) {
1214 brw_set_dest(p, brw_last_inst, brw_imm_w($4));
1215 brw_inst_set_gen6_jump_count(p->devinfo, brw_last_inst,
1216 $4);
1217 brw_set_src0(p, brw_last_inst,
1218 vec1(retype(brw_null_reg(),
1219 BRW_REGISTER_TYPE_D)));
1220 brw_set_src1(p, brw_last_inst,
1221 vec1(retype(brw_null_reg(),
1222 BRW_REGISTER_TYPE_D)));
1223 } else if (p->devinfo->gen == 7) {
1224 brw_set_dest(p, brw_last_inst,
1225 vec1(retype(brw_null_reg(),
1226 BRW_REGISTER_TYPE_D)));
1227 brw_set_src0(p, brw_last_inst,
1228 vec1(retype(brw_null_reg(),
1229 BRW_REGISTER_TYPE_D)));
1230 brw_set_src1(p, brw_last_inst, brw_imm_w($4));
1231 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1232 } else {
1233 brw_set_dest(p, brw_last_inst,
1234 vec1(retype(brw_null_reg(),
1235 BRW_REGISTER_TYPE_D)));
1236 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1237 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1238 }
1239
1240 if (!p->single_program_flow && p->devinfo->gen < 6)
1241 brw_inst_set_thread_control(p->devinfo, brw_last_inst,
1242 BRW_THREAD_SWITCH);
1243
1244 brw_pop_insn_state(p);
1245 }
1246 ;
1247
1248 /* break instruction */
1249 breakinstruction:
1250 predicate BREAK execsize relativelocation relativelocation instoptions
1251 {
1252 brw_next_insn(p, $2);
1253 i965_asm_set_instruction_options(p, $6);
1254 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1255
1256 if (p->devinfo->gen >= 8) {
1257 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1258 BRW_REGISTER_TYPE_D));
1259 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1260 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1261 } else if (p->devinfo->gen >= 6) {
1262 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1263 BRW_REGISTER_TYPE_D));
1264 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1265 BRW_REGISTER_TYPE_D));
1266 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1267 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1268 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1269 } else {
1270 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1271 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1272 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1273 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1274 $4);
1275 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1276 $5);
1277 }
1278
1279 brw_pop_insn_state(p);
1280 }
1281 | predicate HALT execsize relativelocation relativelocation instoptions
1282 {
1283 brw_next_insn(p, $2);
1284 i965_asm_set_instruction_options(p, $6);
1285 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1286 brw_set_dest(p, brw_last_inst, retype(brw_null_reg(),
1287 BRW_REGISTER_TYPE_D));
1288
1289 if (p->devinfo->gen >= 8) {
1290 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1291 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1292 } else {
1293 brw_set_src0(p, brw_last_inst, retype(brw_null_reg(),
1294 BRW_REGISTER_TYPE_D));
1295 brw_set_src1(p, brw_last_inst, brw_imm_d($5));
1296 }
1297
1298 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1299 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1300 brw_pop_insn_state(p);
1301 }
1302 | predicate CONT execsize relativelocation relativelocation instoptions
1303 {
1304 brw_next_insn(p, $2);
1305 i965_asm_set_instruction_options(p, $6);
1306 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1307 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1308
1309 if (p->devinfo->gen >= 8) {
1310 brw_set_src0(p, brw_last_inst, brw_imm_d(0x0));
1311 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1312 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1313 } else {
1314 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1315 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1316 if (p->devinfo->gen >= 6) {
1317 brw_inst_set_jip(p->devinfo, brw_last_inst, $4);
1318 brw_inst_set_uip(p->devinfo, brw_last_inst, $5);
1319 } else {
1320 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1321 $4);
1322 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1323 $5);
1324 }
1325 }
1326
1327 brw_pop_insn_state(p);
1328 }
1329 ;
1330
1331 /* loop instruction */
1332 loopinstruction:
1333 predicate WHILE execsize relativelocation instoptions
1334 {
1335 brw_next_insn(p, $2);
1336 i965_asm_set_instruction_options(p, $5);
1337 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $3);
1338
1339 if (p->devinfo->gen >= 6) {
1340 if (p->devinfo->gen >= 8) {
1341 brw_set_dest(p, brw_last_inst,
1342 retype(brw_null_reg(),
1343 BRW_REGISTER_TYPE_D));
1344 brw_set_src0(p, brw_last_inst, brw_imm_d($4));
1345 } else if (p->devinfo->gen == 7) {
1346 brw_set_dest(p, brw_last_inst,
1347 retype(brw_null_reg(),
1348 BRW_REGISTER_TYPE_D));
1349 brw_set_src0(p, brw_last_inst,
1350 retype(brw_null_reg(),
1351 BRW_REGISTER_TYPE_D));
1352 brw_set_src1(p, brw_last_inst,
1353 brw_imm_w(0x0));
1354 brw_inst_set_jip(p->devinfo, brw_last_inst,
1355 $4);
1356 } else {
1357 brw_set_dest(p, brw_last_inst, brw_imm_w(0x0));
1358 brw_inst_set_gen6_jump_count(p->devinfo,
1359 brw_last_inst,
1360 $4);
1361 brw_set_src0(p, brw_last_inst,
1362 retype(brw_null_reg(),
1363 BRW_REGISTER_TYPE_D));
1364 brw_set_src1(p, brw_last_inst,
1365 retype(brw_null_reg(),
1366 BRW_REGISTER_TYPE_D));
1367 }
1368 } else {
1369 brw_set_dest(p, brw_last_inst, brw_ip_reg());
1370 brw_set_src0(p, brw_last_inst, brw_ip_reg());
1371 brw_set_src1(p, brw_last_inst, brw_imm_d(0x0));
1372 brw_inst_set_gen4_jump_count(p->devinfo, brw_last_inst,
1373 $4);
1374 brw_inst_set_gen4_pop_count(p->devinfo, brw_last_inst,
1375 0);
1376 }
1377 brw_pop_insn_state(p);
1378 }
1379 | DO execsize instoptions
1380 {
1381 brw_next_insn(p, $1);
1382 if (p->devinfo->gen < 6) {
1383 brw_inst_set_exec_size(p->devinfo, brw_last_inst, $2);
1384 i965_asm_set_instruction_options(p, $3);
1385 brw_set_dest(p, brw_last_inst, brw_null_reg());
1386 brw_set_src0(p, brw_last_inst, brw_null_reg());
1387 brw_set_src1(p, brw_last_inst, brw_null_reg());
1388
1389 brw_inst_set_qtr_control(p->devinfo, brw_last_inst, BRW_COMPRESSION_NONE);
1390 }
1391 }
1392 ;
1393
1394 /* Relative location */
1395 relativelocation2:
1396 immreg
1397 | reg32
1398 ;
1399
1400 simple_int:
1401 INTEGER { $$ = $1; }
1402 | MINUS INTEGER { $$ = -$2; }
1403 | LONG { $$ = $1; }
1404 | MINUS LONG { $$ = -$2; }
1405 ;
1406
1407 rellocation:
1408 relativelocation
1409 | %empty { $$ = 0; }
1410 ;
1411
1412 relativelocation:
1413 simple_int
1414 {
1415 $$ = $1;
1416 }
1417 ;
1418
1419 /* Destination register */
1420 dst:
1421 dstoperand
1422 | dstoperandex
1423 ;
1424
1425 dstoperand:
1426 dstreg dstregion writemask reg_type
1427 {
1428 $$ = $1;
1429 $$.vstride = BRW_VERTICAL_STRIDE_1;
1430 $$.width = BRW_WIDTH_1;
1431 $$.hstride = $2;
1432 $$.type = $4;
1433 $$.writemask = $3;
1434 $$.swizzle = BRW_SWIZZLE_NOOP;
1435 $$.subnr = $$.subnr * brw_reg_type_to_size($4);
1436 }
1437 ;
1438
1439 dstoperandex:
1440 dstoperandex_typed dstregion writemask reg_type
1441 {
1442 $$ = $1;
1443 $$.hstride = $2;
1444 $$.type = $4;
1445 $$.writemask = $3;
1446 $$.subnr = $$.subnr * brw_reg_type_to_size($4);
1447 }
1448 /* BSpec says "When the conditional modifier is present, updates
1449 * to the selected flag register also occur. In this case, the
1450 * register region fields of the ‘null’ operand are valid."
1451 */
1452 | nullreg dstregion writemask reg_type
1453 {
1454 $$ = $1;
1455 $$.vstride = BRW_VERTICAL_STRIDE_1;
1456 $$.width = BRW_WIDTH_1;
1457 $$.hstride = $2;
1458 $$.writemask = $3;
1459 $$.type = $4;
1460 }
1461 | threadcontrolreg
1462 {
1463 $$ = $1;
1464 $$.hstride = 1;
1465 $$.type = BRW_REGISTER_TYPE_UW;
1466 }
1467 ;
1468
1469 dstoperandex_typed:
1470 accreg
1471 | addrreg
1472 | channelenablereg
1473 | controlreg
1474 | flagreg
1475 | ipreg
1476 | maskreg
1477 | performancereg
1478 | statereg
1479 ;
1480
1481 dstreg:
1482 directgenreg
1483 {
1484 $$ = $1;
1485 $$.address_mode = BRW_ADDRESS_DIRECT;
1486 }
1487 | indirectgenreg
1488 {
1489 $$ = $1;
1490 $$.address_mode = BRW_ADDRESS_REGISTER_INDIRECT_REGISTER;
1491 }
1492 | directmsgreg
1493 {
1494 $$ = $1;
1495 $$.address_mode = BRW_ADDRESS_DIRECT;
1496 }
1497 | indirectmsgreg
1498 {
1499 $$ = $1;
1500 $$.address_mode = BRW_ADDRESS_REGISTER_INDIRECT_REGISTER;
1501 }
1502 ;
1503
1504 /* Source register */
1505 srcaccimm:
1506 srcacc
1507 | immreg
1508 ;
1509
1510 immreg:
1511 immval imm_type
1512 {
1513 switch ($2) {
1514 case BRW_REGISTER_TYPE_UD:
1515 $$ = brw_imm_ud($1);
1516 break;
1517 case BRW_REGISTER_TYPE_D:
1518 $$ = brw_imm_d($1);
1519 break;
1520 case BRW_REGISTER_TYPE_UW:
1521 $$ = brw_imm_uw($1 | ($1 << 16));
1522 break;
1523 case BRW_REGISTER_TYPE_W:
1524 $$ = brw_imm_w($1);
1525 break;
1526 case BRW_REGISTER_TYPE_F:
1527 $$ = brw_imm_reg(BRW_REGISTER_TYPE_F);
1528 /* Set u64 instead of ud since DIM uses a 64-bit F-typed imm */
1529 $$.u64 = $1;
1530 break;
1531 case BRW_REGISTER_TYPE_V:
1532 $$ = brw_imm_v($1);
1533 break;
1534 case BRW_REGISTER_TYPE_UV:
1535 $$ = brw_imm_uv($1);
1536 break;
1537 case BRW_REGISTER_TYPE_VF:
1538 $$ = brw_imm_vf($1);
1539 break;
1540 case BRW_REGISTER_TYPE_Q:
1541 $$ = brw_imm_q($1);
1542 break;
1543 case BRW_REGISTER_TYPE_UQ:
1544 $$ = brw_imm_uq($1);
1545 break;
1546 case BRW_REGISTER_TYPE_DF:
1547 $$ = brw_imm_reg(BRW_REGISTER_TYPE_DF);
1548 $$.d64 = $1;
1549 break;
1550 default:
1551 error(&@2, "Unknown immediate type %s\n",
1552 brw_reg_type_to_letters($2));
1553 }
1554 }
1555 ;
1556
1557 reg32:
1558 directgenreg region reg_type
1559 {
1560 $$ = set_direct_src_operand(&$1, $3);
1561 $$ = stride($$, $2.vstride, $2.width, $2.hstride);
1562 }
1563 ;
1564
1565 payload:
1566 directsrcoperand
1567 ;
1568
1569 src:
1570 directsrcoperand
1571 | indirectsrcoperand
1572 ;
1573
1574 srcacc:
1575 directsrcaccoperand
1576 | indirectsrcoperand
1577 ;
1578
1579 srcimm:
1580 directsrcoperand
1581 | indirectsrcoperand
1582 | immreg
1583 ;
1584
1585 directsrcaccoperand:
1586 directsrcoperand
1587 | accreg region reg_type
1588 {
1589 $$ = set_direct_src_operand(&$1, $3);
1590 $$.vstride = $2.vstride;
1591 $$.width = $2.width;
1592 $$.hstride = $2.hstride;
1593 }
1594 ;
1595
1596 srcarcoperandex:
1597 srcarcoperandex_typed region reg_type
1598 {
1599 $$ = brw_reg($1.file,
1600 $1.nr,
1601 $1.subnr,
1602 0,
1603 0,
1604 $3,
1605 $2.vstride,
1606 $2.width,
1607 $2.hstride,
1608 BRW_SWIZZLE_NOOP,
1609 WRITEMASK_XYZW);
1610 }
1611 | nullreg region reg_type
1612 {
1613 $$ = set_direct_src_operand(&$1, $3);
1614 $$.vstride = $2.vstride;
1615 $$.width = $2.width;
1616 $$.hstride = $2.hstride;
1617 }
1618 | threadcontrolreg
1619 {
1620 $$ = set_direct_src_operand(&$1, BRW_REGISTER_TYPE_UW);
1621 }
1622 ;
1623
1624 srcarcoperandex_typed:
1625 channelenablereg
1626 | controlreg
1627 | flagreg
1628 | ipreg
1629 | maskreg
1630 | statereg
1631 ;
1632
1633 indirectsrcoperand:
1634 negate abs indirectgenreg indirectregion swizzle reg_type
1635 {
1636 $$ = brw_reg($3.file,
1637 0,
1638 $3.subnr,
1639 $1, // negate
1640 $2, // abs
1641 $6,
1642 $4.vstride,
1643 $4.width,
1644 $4.hstride,
1645 $5,
1646 WRITEMASK_X);
1647
1648 $$.address_mode = BRW_ADDRESS_REGISTER_INDIRECT_REGISTER;
1649 // brw_reg set indirect_offset to 0 so set it to valid value
1650 $$.indirect_offset = $3.indirect_offset;
1651 }
1652 ;
1653
1654 directgenreg_list:
1655 directgenreg
1656 | directmsgreg
1657 | notifyreg
1658 | addrreg
1659 | performancereg
1660 ;
1661
1662 directsrcoperand:
1663 negate abs directgenreg_list region swizzle reg_type
1664 {
1665 $$ = brw_reg($3.file,
1666 $3.nr,
1667 $3.subnr,
1668 $1,
1669 $2,
1670 $6,
1671 $4.vstride,
1672 $4.width,
1673 $4.hstride,
1674 $5,
1675 WRITEMASK_X);
1676 }
1677 | srcarcoperandex
1678 ;
1679
1680 /* Address register */
1681 addrparam:
1682 addrreg exp
1683 {
1684 memset(&$$, '\0', sizeof($$));
1685 $$.subnr = $1.subnr;
1686 $$.indirect_offset = $2;
1687 }
1688 | addrreg
1689 ;
1690
1691 /* Register files and register numbers */
1692 exp:
1693 INTEGER { $$ = $1; }
1694 | LONG { $$ = $1; }
1695 ;
1696
1697 subregnum:
1698 DOT exp { $$ = $2; }
1699 | %empty %prec SUBREGNUM { $$ = 0; }
1700 ;
1701
1702 directgenreg:
1703 GENREG subregnum
1704 {
1705 memset(&$$, '\0', sizeof($$));
1706 $$.file = BRW_GENERAL_REGISTER_FILE;
1707 $$.nr = $1;
1708 $$.subnr = $2;
1709 }
1710 ;
1711
1712 indirectgenreg:
1713 GENREGFILE LSQUARE addrparam RSQUARE
1714 {
1715 memset(&$$, '\0', sizeof($$));
1716 $$.file = BRW_GENERAL_REGISTER_FILE;
1717 $$.subnr = $3.subnr;
1718 $$.indirect_offset = $3.indirect_offset;
1719 }
1720 ;
1721
1722 directmsgreg:
1723 MSGREG subregnum
1724 {
1725 $$.file = BRW_MESSAGE_REGISTER_FILE;
1726 $$.nr = $1;
1727 $$.subnr = $2;
1728 }
1729 ;
1730
1731 indirectmsgreg:
1732 MSGREGFILE LSQUARE addrparam RSQUARE
1733 {
1734 memset(&$$, '\0', sizeof($$));
1735 $$.file = BRW_MESSAGE_REGISTER_FILE;
1736 $$.subnr = $3.subnr;
1737 $$.indirect_offset = $3.indirect_offset;
1738 }
1739 ;
1740
1741 addrreg:
1742 ADDRREG subregnum
1743 {
1744 int subnr = (p->devinfo->gen >= 8) ? 16 : 8;
1745
1746 if ($2 > subnr)
1747 error(&@2, "Address sub register number %d"
1748 "out of range\n", $2);
1749
1750 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1751 $$.nr = BRW_ARF_ADDRESS;
1752 $$.subnr = $2;
1753 }
1754 ;
1755
1756 accreg:
1757 ACCREG subregnum
1758 {
1759 int nr_reg;
1760 if (p->devinfo->gen < 8)
1761 nr_reg = 2;
1762 else
1763 nr_reg = 10;
1764
1765 if ($1 > nr_reg)
1766 error(&@1, "Accumulator register number %d"
1767 " out of range\n", $1);
1768
1769 memset(&$$, '\0', sizeof($$));
1770 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1771 $$.nr = BRW_ARF_ACCUMULATOR;
1772 $$.subnr = $2;
1773 }
1774 ;
1775
1776 flagreg:
1777 FLAGREG subregnum
1778 {
1779 // SNB = 1 flag reg and IVB+ = 2 flag reg
1780 int nr_reg = (p->devinfo->gen >= 7) ? 2 : 1;
1781 int subnr = nr_reg;
1782
1783 if ($1 > nr_reg)
1784 error(&@1, "Flag register number %d"
1785 " out of range \n", $1);
1786 if ($2 > subnr)
1787 error(&@2, "Flag subregister number %d"
1788 " out of range\n", $2);
1789
1790 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1791 $$.nr = BRW_ARF_FLAG | $1;
1792 $$.subnr = $2;
1793 }
1794 ;
1795
1796 maskreg:
1797 MASKREG subregnum
1798 {
1799 if ($1 > 0)
1800 error(&@1, "Mask register number %d"
1801 " out of range\n", $1);
1802
1803 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1804 $$.nr = BRW_ARF_MASK;
1805 $$.subnr = $2;
1806 }
1807 ;
1808
1809 notifyreg:
1810 NOTIFYREG subregnum
1811 {
1812 if ($1 > 0)
1813 error(&@1, "Notification register number %d"
1814 " out of range\n", $1);
1815
1816 int subnr = (p->devinfo->gen >= 11) ? 2 : 3;
1817 if ($2 > subnr)
1818 error(&@2, "Notification sub register number %d"
1819 " out of range\n", $2);
1820
1821 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1822 $$.nr = BRW_ARF_NOTIFICATION_COUNT;
1823 $$.subnr = $2;
1824 }
1825 ;
1826
1827 statereg:
1828 STATEREG subregnum
1829 {
1830 if ($1 > 2)
1831 error(&@1, "State register number %d"
1832 " out of range\n", $1);
1833
1834 if ($2 > 4)
1835 error(&@2, "State sub register number %d"
1836 " out of range\n", $2);
1837
1838 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1839 $$.nr = BRW_ARF_STATE;
1840 $$.subnr = $2;
1841 }
1842 ;
1843
1844 controlreg:
1845 CONTROLREG subregnum
1846 {
1847 if ($2 > 3)
1848 error(&@2, "control sub register number %d"
1849 " out of range\n", $2);
1850
1851 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1852 $$.nr = BRW_ARF_CONTROL;
1853 $$.subnr = $2;
1854 }
1855 ;
1856
1857 ipreg:
1858 IPREG { $$ = brw_ip_reg(); }
1859 ;
1860
1861 nullreg:
1862 NULL_TOKEN { $$ = brw_null_reg(); }
1863 ;
1864
1865 threadcontrolreg:
1866 THREADREG subregnum
1867 {
1868 if ($2 > 7)
1869 error(&@2, "Thread control sub register number %d"
1870 " out of range\n", $2);
1871
1872 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1873 $$.nr = BRW_ARF_TDR;
1874 $$.subnr = $2;
1875 }
1876 ;
1877
1878 performancereg:
1879 PERFORMANCEREG subregnum
1880 {
1881 int subnr;
1882 if (p->devinfo->gen >= 10)
1883 subnr = 5;
1884 else if (p->devinfo->gen <= 8)
1885 subnr = 3;
1886 else
1887 subnr = 4;
1888
1889 if ($2 > subnr)
1890 error(&@2, "Performance sub register number %d"
1891 " out of range\n", $2);
1892
1893 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1894 $$.nr = BRW_ARF_TIMESTAMP;
1895 $$.subnr = $2;
1896 }
1897 ;
1898
1899 channelenablereg:
1900 CHANNELENABLEREG subregnum
1901 {
1902 if ($1 > 0)
1903 error(&@1, "Channel enable register number %d"
1904 " out of range\n", $1);
1905
1906 $$.file = BRW_ARCHITECTURE_REGISTER_FILE;
1907 $$.nr = BRW_ARF_MASK;
1908 $$.subnr = $2;
1909 }
1910 ;
1911
1912 /* Immediate values */
1913 immval:
1914 exp2
1915 {
1916 $$ = $1;
1917 }
1918 | LSQUARE exp2 COMMA exp2 COMMA exp2 COMMA exp2 RSQUARE
1919 {
1920 $$ = ($2 << 0) | ($4 << 8) | ($6 << 16) | ($8 << 24);
1921 }
1922 ;
1923
1924 /* Regions */
1925 dstregion:
1926 %empty
1927 {
1928 $$ = BRW_HORIZONTAL_STRIDE_1;
1929 }
1930 | LANGLE exp RANGLE
1931 {
1932 if ($2 != 0 && ($2 > 4 || !isPowerofTwo($2)))
1933 error(&@2, "Invalid Horizontal stride %d\n", $2);
1934
1935 $$ = ffs($2);
1936 }
1937 ;
1938
1939 indirectregion:
1940 region
1941 | region_wh
1942 ;
1943
1944 region:
1945 %empty
1946 {
1947 $$ = stride($$, 0, 1, 0);
1948 }
1949 | LANGLE exp RANGLE
1950 {
1951 if ($2 != 0 && ($2 > 32 || !isPowerofTwo($2)))
1952 error(&@2, "Invalid VertStride %d\n", $2);
1953
1954 $$ = stride($$, $2, 1, 0);
1955 }
1956 | LANGLE exp COMMA exp COMMA exp RANGLE
1957 {
1958
1959 if ($2 != 0 && ($2 > 32 || !isPowerofTwo($2)))
1960 error(&@2, "Invalid VertStride %d\n", $2);
1961
1962 if ($4 > 16 || !isPowerofTwo($4))
1963 error(&@4, "Invalid width %d\n", $4);
1964
1965 if ($6 != 0 && ($6 > 4 || !isPowerofTwo($6)))
1966 error(&@6, "Invalid Horizontal stride in"
1967 " region_wh %d\n", $6);
1968
1969 $$ = stride($$, $2, $4, $6);
1970 }
1971 | LANGLE exp SEMICOLON exp COMMA exp RANGLE
1972 {
1973 if ($2 != 0 && ($2 > 32 || !isPowerofTwo($2)))
1974 error(&@2, "Invalid VertStride %d\n", $2);
1975
1976 if ($4 > 16 || !isPowerofTwo($4))
1977 error(&@4, "Invalid width %d\n", $4);
1978
1979 if ($6 != 0 && ($6 > 4 || !isPowerofTwo($6)))
1980 error(&@6, "Invalid Horizontal stride in"
1981 " region_wh %d\n", $6);
1982
1983 $$ = stride($$, $2, $4, $6);
1984 }
1985 | LANGLE VxH COMMA exp COMMA exp RANGLE
1986 {
1987 if ($4 > 16 || !isPowerofTwo($4))
1988 error(&@4, "Invalid width %d\n", $4);
1989
1990 if ($6 != 0 && ($6 > 4 || !isPowerofTwo($6)))
1991 error(&@6, "Invalid Horizontal stride in"
1992 " region_wh %d\n", $6);
1993
1994 $$ = brw_VxH_indirect(0, 0);
1995 }
1996 ;
1997
1998 region_wh:
1999 LANGLE exp COMMA exp RANGLE
2000 {
2001 if ($2 > 16 || !isPowerofTwo($2))
2002 error(&@2, "Invalid width %d\n", $2);
2003
2004 if ($4 != 0 && ($4 > 4 || !isPowerofTwo($4)))
2005 error(&@4, "Invalid Horizontal stride in"
2006 " region_wh %d\n", $4);
2007
2008 $$ = stride($$, 0, $2, $4);
2009 $$.vstride = BRW_VERTICAL_STRIDE_ONE_DIMENSIONAL;
2010 }
2011 ;
2012
2013 reg_type:
2014 TYPE_F { $$ = BRW_REGISTER_TYPE_F; }
2015 | TYPE_UD { $$ = BRW_REGISTER_TYPE_UD; }
2016 | TYPE_D { $$ = BRW_REGISTER_TYPE_D; }
2017 | TYPE_UW { $$ = BRW_REGISTER_TYPE_UW; }
2018 | TYPE_W { $$ = BRW_REGISTER_TYPE_W; }
2019 | TYPE_UB { $$ = BRW_REGISTER_TYPE_UB; }
2020 | TYPE_B { $$ = BRW_REGISTER_TYPE_B; }
2021 | TYPE_DF { $$ = BRW_REGISTER_TYPE_DF; }
2022 | TYPE_UQ { $$ = BRW_REGISTER_TYPE_UQ; }
2023 | TYPE_Q { $$ = BRW_REGISTER_TYPE_Q; }
2024 | TYPE_HF { $$ = BRW_REGISTER_TYPE_HF; }
2025 | TYPE_NF { $$ = BRW_REGISTER_TYPE_NF; }
2026 ;
2027
2028 imm_type:
2029 reg_type { $$ = $1; }
2030 | TYPE_V { $$ = BRW_REGISTER_TYPE_V; }
2031 | TYPE_VF { $$ = BRW_REGISTER_TYPE_VF; }
2032 | TYPE_UV { $$ = BRW_REGISTER_TYPE_UV; }
2033 ;
2034
2035 writemask:
2036 %empty
2037 {
2038 $$ = WRITEMASK_XYZW;
2039 }
2040 | DOT writemask_x writemask_y writemask_z writemask_w
2041 {
2042 $$ = $2 | $3 | $4 | $5;
2043 }
2044 ;
2045
2046 writemask_x:
2047 %empty { $$ = 0; }
2048 | X { $$ = 1 << BRW_CHANNEL_X; }
2049 ;
2050
2051 writemask_y:
2052 %empty { $$ = 0; }
2053 | Y { $$ = 1 << BRW_CHANNEL_Y; }
2054 ;
2055
2056 writemask_z:
2057 %empty { $$ = 0; }
2058 | Z { $$ = 1 << BRW_CHANNEL_Z; }
2059 ;
2060
2061 writemask_w:
2062 %empty { $$ = 0; }
2063 | W { $$ = 1 << BRW_CHANNEL_W; }
2064 ;
2065
2066 swizzle:
2067 %empty
2068 {
2069 $$ = BRW_SWIZZLE_NOOP;
2070 }
2071 | DOT chansel
2072 {
2073 $$ = BRW_SWIZZLE4($2, $2, $2, $2);
2074 }
2075 | DOT chansel chansel chansel chansel
2076 {
2077 $$ = BRW_SWIZZLE4($2, $3, $4, $5);
2078 }
2079 ;
2080
2081 chansel:
2082 X
2083 | Y
2084 | Z
2085 | W
2086 ;
2087
2088 /* Instruction prediction and modifiers */
2089 predicate:
2090 %empty
2091 {
2092 brw_push_insn_state(p);
2093 brw_set_default_predicate_control(p, BRW_PREDICATE_NONE);
2094 brw_set_default_flag_reg(p, 0, 0);
2095 brw_set_default_predicate_inverse(p, false);
2096 }
2097 | LPAREN predstate flagreg predctrl RPAREN
2098 {
2099 brw_push_insn_state(p);
2100 brw_set_default_predicate_inverse(p, $2);
2101 brw_set_default_flag_reg(p, $3.nr, $3.subnr);
2102 brw_set_default_predicate_control(p, $4);
2103 }
2104 ;
2105
2106 predstate:
2107 %empty { $$ = 0; }
2108 | PLUS { $$ = 0; }
2109 | MINUS { $$ = 1; }
2110 ;
2111
2112 predctrl:
2113 %empty { $$ = BRW_PREDICATE_NORMAL; }
2114 | DOT X { $$ = BRW_PREDICATE_ALIGN16_REPLICATE_X; }
2115 | DOT Y { $$ = BRW_PREDICATE_ALIGN16_REPLICATE_Y; }
2116 | DOT Z { $$ = BRW_PREDICATE_ALIGN16_REPLICATE_Z; }
2117 | DOT W { $$ = BRW_PREDICATE_ALIGN16_REPLICATE_W; }
2118 | ANYV
2119 | ALLV
2120 | ANY2H
2121 | ALL2H
2122 | ANY4H
2123 | ALL4H
2124 | ANY8H
2125 | ALL8H
2126 | ANY16H
2127 | ALL16H
2128 | ANY32H
2129 | ALL32H
2130 ;
2131
2132 /* Source Modification */
2133 negate:
2134 %empty { $$ = 0; }
2135 | MINUS { $$ = 1; }
2136 ;
2137
2138 abs:
2139 %empty { $$ = 0; }
2140 | ABS { $$ = 1; }
2141 ;
2142
2143 /* Flag (Conditional) Modifier */
2144 cond_mod:
2145 condModifiers
2146 {
2147 $$.cond_modifier = $1;
2148 $$.flag_reg_nr = 0;
2149 $$.flag_subreg_nr = 0;
2150 }
2151 | condModifiers DOT flagreg
2152 {
2153 $$.cond_modifier = $1;
2154 $$.flag_reg_nr = $3.nr;
2155 $$.flag_subreg_nr = $3.subnr;
2156 }
2157 ;
2158
2159 condModifiers:
2160 %empty { $$ = BRW_CONDITIONAL_NONE; }
2161 | ZERO
2162 | EQUAL
2163 | NOT_ZERO
2164 | NOT_EQUAL
2165 | GREATER
2166 | GREATER_EQUAL
2167 | LESS
2168 | LESS_EQUAL
2169 | OVERFLOW
2170 | ROUND_INCREMENT
2171 | UNORDERED
2172 ;
2173
2174 saturate:
2175 %empty { $$ = BRW_INSTRUCTION_NORMAL; }
2176 | SATURATE { $$ = BRW_INSTRUCTION_SATURATE; }
2177 ;
2178
2179 /* Execution size */
2180 execsize:
2181 %empty %prec EMPTYEXECSIZE
2182 {
2183 $$ = 0;
2184 }
2185 | LPAREN exp2 RPAREN
2186 {
2187 if ($2 > 32 || !isPowerofTwo($2))
2188 error(&@2, "Invalid execution size %d\n", $2);
2189
2190 $$ = cvt($2) - 1;
2191 }
2192 ;
2193
2194 /* Instruction options */
2195 instoptions:
2196 %empty
2197 {
2198 memset(&$$, 0, sizeof($$));
2199 }
2200 | LCURLY instoption_list RCURLY
2201 {
2202 memset(&$$, 0, sizeof($$));
2203 $$ = $2;
2204 }
2205 ;
2206
2207 instoption_list:
2208 instoption_list COMMA instoption
2209 {
2210 memset(&$$, 0, sizeof($$));
2211 $$ = $1;
2212 add_instruction_option(&$$, $3);
2213 }
2214 | instoption_list instoption
2215 {
2216 memset(&$$, 0, sizeof($$));
2217 $$ = $1;
2218 add_instruction_option(&$$, $2);
2219 }
2220 | %empty
2221 {
2222 memset(&$$, 0, sizeof($$));
2223 }
2224 ;
2225
2226 instoption:
2227 ALIGN1 { $$ = ALIGN1;}
2228 | ALIGN16 { $$ = ALIGN16; }
2229 | ACCWREN { $$ = ACCWREN; }
2230 | SECHALF { $$ = SECHALF; }
2231 | COMPR { $$ = COMPR; }
2232 | COMPR4 { $$ = COMPR4; }
2233 | BREAKPOINT { $$ = BREAKPOINT; }
2234 | NODDCLR { $$ = NODDCLR; }
2235 | NODDCHK { $$ = NODDCHK; }
2236 | MASK_DISABLE { $$ = MASK_DISABLE; }
2237 | EOT { $$ = EOT; }
2238 | SWITCH { $$ = SWITCH; }
2239 | ATOMIC { $$ = ATOMIC; }
2240 | CMPTCTRL { $$ = CMPTCTRL; }
2241 | WECTRL { $$ = WECTRL; }
2242 | QTR_2Q { $$ = QTR_2Q; }
2243 | QTR_3Q { $$ = QTR_3Q; }
2244 | QTR_4Q { $$ = QTR_4Q; }
2245 | QTR_2H { $$ = QTR_2H; }
2246 | QTR_2N { $$ = QTR_2N; }
2247 | QTR_3N { $$ = QTR_3N; }
2248 | QTR_4N { $$ = QTR_4N; }
2249 | QTR_5N { $$ = QTR_5N; }
2250 | QTR_6N { $$ = QTR_6N; }
2251 | QTR_7N { $$ = QTR_7N; }
2252 | QTR_8N { $$ = QTR_8N; }
2253 ;
2254
2255 %%
2256
2257 extern int yylineno;
2258
2259 void
2260 yyerror(char *msg)
2261 {
2262 fprintf(stderr, "%s: %d: %s at \"%s\"\n",
2263 input_filename, yylineno, msg, lex_text());
2264 ++errors;
2265 }