gallivm: add a version of log2 which handles edge cases
[mesa.git] / src / gallium / auxiliary / gallivm / lp_bld_tgsi_action.c
1 /**************************************************************************
2 *
3 * Copyright 2011-2012 Advanced Micro Devices, Inc.
4 * Copyright 2009 VMware, Inc.
5 * Copyright 2007-2008 Tungsten Graphics, Inc., Cedar Park, Texas.
6 * All Rights Reserved.
7 *
8 * Permission is hereby granted, free of charge, to any person obtaining a
9 * copy of this software and associated documentation files (the
10 * "Software"), to deal in the Software without restriction, including
11 * without limitation the rights to use, copy, modify, merge, publish,
12 * distribute, sub license, and/or sell copies of the Software, and to
13 * permit persons to whom the Software is furnished to do so, subject to
14 * the following conditions:
15 *
16 * The above copyright notice and this permission notice (including the
17 * next paragraph) shall be included in all copies or substantial portions
18 * of the Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
21 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
22 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
23 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
24 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
25 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
26 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
27 *
28 **************************************************************************/
29
30 /**
31 * @file
32 * TGSI to LLVM IR translation.
33 *
34 * @author Jose Fonseca <jfonseca@vmware.com>
35 * @author Tom Stellard <thomas.stellard@amd.com>
36 *
37 * Based on tgsi_sse2.c code written by Michal Krol, Keith Whitwell,
38 * Brian Paul, and others.
39 */
40
41
42 #include "lp_bld_tgsi_action.h"
43
44 #include "lp_bld_tgsi.h"
45 #include "lp_bld_arit.h"
46 #include "lp_bld_bitarit.h"
47 #include "lp_bld_const.h"
48 #include "lp_bld_gather.h"
49 #include "lp_bld_logic.h"
50
51 #include "tgsi/tgsi_exec.h"
52
53 /* XXX: The CPU only defaults should be repaced by generic ones. In most
54 * cases, the CPU defaults are just wrappers around a function in
55 * lp_build_arit.c and these functions should be inlined here and the CPU
56 * generic code should be removed and placed elsewhere.
57 */
58
59 /* Default actions */
60
61 /* Generic fetch_arg functions */
62
63 static void scalar_unary_fetch_args(
64 struct lp_build_tgsi_context * bld_base,
65 struct lp_build_emit_data * emit_data)
66 {
67 /* src0.x */
68 emit_data->args[0] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, 0);
69 emit_data->arg_count = 1;
70 emit_data->dst_type = LLVMTypeOf(emit_data->args[0]);
71 }
72
73 static void scalar_binary_fetch_args(
74 struct lp_build_tgsi_context * bld_base,
75 struct lp_build_emit_data * emit_data)
76 {
77 /* src0.x */
78 emit_data->args[0] = lp_build_emit_fetch(bld_base, emit_data->inst,
79 0, TGSI_CHAN_X);
80 /* src1.x */
81 emit_data->args[1] = lp_build_emit_fetch(bld_base, emit_data->inst,
82 1, TGSI_CHAN_X);
83 emit_data->arg_count = 2;
84 emit_data->dst_type = LLVMTypeOf(emit_data->args[0]);
85 }
86
87 /* TGSI_OPCODE_ADD */
88 static void
89 add_emit(
90 const struct lp_build_tgsi_action * action,
91 struct lp_build_tgsi_context * bld_base,
92 struct lp_build_emit_data * emit_data)
93 {
94 emit_data->output[emit_data->chan] = LLVMBuildFAdd(
95 bld_base->base.gallivm->builder,
96 emit_data->args[0], emit_data->args[1], "");
97 }
98
99 /* TGSI_OPCODE_ARR */
100 static void
101 arr_emit(
102 const struct lp_build_tgsi_action * action,
103 struct lp_build_tgsi_context * bld_base,
104 struct lp_build_emit_data * emit_data)
105 {
106 LLVMValueRef tmp = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_ROUND, emit_data->args[0]);
107 emit_data->output[emit_data->chan] = LLVMBuildFPToSI(bld_base->base.gallivm->builder, tmp,
108 bld_base->uint_bld.vec_type, "");
109 }
110
111 /* TGSI_OPCODE_CLAMP */
112 static void
113 clamp_emit(
114 const struct lp_build_tgsi_action * action,
115 struct lp_build_tgsi_context * bld_base,
116 struct lp_build_emit_data * emit_data)
117 {
118 LLVMValueRef tmp;
119 tmp = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MAX,
120 emit_data->args[0],
121 emit_data->args[1]);
122 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
123 TGSI_OPCODE_MIN, tmp, emit_data->args[2]);
124 }
125
126 /* DP* Helper */
127
128 static void
129 dp_fetch_args(
130 struct lp_build_tgsi_context * bld_base,
131 struct lp_build_emit_data * emit_data,
132 unsigned dp_components)
133 {
134 unsigned chan, src;
135 for (src = 0; src < 2; src++) {
136 for (chan = 0; chan < dp_components; chan++) {
137 emit_data->args[(src * dp_components) + chan] =
138 lp_build_emit_fetch(bld_base, emit_data->inst, src, chan);
139 }
140 }
141 emit_data->dst_type = bld_base->base.elem_type;
142 }
143
144 /* TGSI_OPCODE_DP2 */
145 static void
146 dp2_fetch_args(
147 struct lp_build_tgsi_context * bld_base,
148 struct lp_build_emit_data * emit_data)
149 {
150 dp_fetch_args(bld_base, emit_data, 2);
151 }
152
153 static void
154 dp2_emit(
155 const struct lp_build_tgsi_action * action,
156 struct lp_build_tgsi_context * bld_base,
157 struct lp_build_emit_data * emit_data)
158 {
159 LLVMValueRef tmp0, tmp1;
160 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
161 emit_data->args[0] /* src0.x */,
162 emit_data->args[2] /* src1.x */);
163 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
164 emit_data->args[1] /* src0.y */,
165 emit_data->args[3] /* src1.y */);
166 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
167 TGSI_OPCODE_ADD, tmp0, tmp1);
168 }
169
170 static struct lp_build_tgsi_action dp2_action = {
171 dp2_fetch_args, /* fetch_args */
172 dp2_emit /* emit */
173 };
174
175 /* TGSI_OPCODE_DP2A */
176 static void
177 dp2a_fetch_args(
178 struct lp_build_tgsi_context * bld_base,
179 struct lp_build_emit_data * emit_data)
180 {
181 dp_fetch_args(bld_base, emit_data, 2);
182 emit_data->args[5] = lp_build_emit_fetch(bld_base, emit_data->inst,
183 2, TGSI_CHAN_X);
184 }
185
186 static void
187 dp2a_emit(
188 const struct lp_build_tgsi_action * action,
189 struct lp_build_tgsi_context * bld_base,
190 struct lp_build_emit_data * emit_data)
191 {
192 LLVMValueRef tmp;
193 tmp = lp_build_emit_llvm(bld_base, TGSI_OPCODE_DP2, emit_data);
194 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_ADD,
195 emit_data->args[5], tmp);
196 }
197
198 static struct lp_build_tgsi_action dp2a_action = {
199 dp2a_fetch_args, /* fetch_args */
200 dp2a_emit /* emit */
201 };
202
203 /* TGSI_OPCODE_DP3 */
204 static void
205 dp3_fetch_args(
206 struct lp_build_tgsi_context * bld_base,
207 struct lp_build_emit_data * emit_data)
208 {
209 dp_fetch_args(bld_base, emit_data, 3);
210 }
211
212 static void
213 dp3_emit(
214 const struct lp_build_tgsi_action * action,
215 struct lp_build_tgsi_context * bld_base,
216 struct lp_build_emit_data * emit_data)
217 {
218 LLVMValueRef tmp0, tmp1;
219 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
220 emit_data->args[0] /* src0.x */,
221 emit_data->args[3] /* src1.x */);
222 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
223 emit_data->args[1] /* src0.y */,
224 emit_data->args[4] /* src1.y */);
225 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_ADD, tmp1, tmp0);
226 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
227 emit_data->args[2] /* src0.z */,
228 emit_data->args[5] /* src1.z */);
229 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
230 TGSI_OPCODE_ADD, tmp0, tmp1);
231 }
232
233 static struct lp_build_tgsi_action dp3_action = {
234 dp3_fetch_args, /* fetch_args */
235 dp3_emit /* emit */
236 };
237
238 /* TGSI_OPCODDE_DP4 */
239
240 static void
241 dp4_fetch_args(
242 struct lp_build_tgsi_context * bld_base,
243 struct lp_build_emit_data * emit_data)
244 {
245 dp_fetch_args(bld_base, emit_data, 4);
246 }
247
248 static void
249 dp4_emit(
250 const struct lp_build_tgsi_action * action,
251 struct lp_build_tgsi_context * bld_base,
252 struct lp_build_emit_data * emit_data)
253 {
254 LLVMValueRef tmp0, tmp1;
255 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
256 emit_data->args[0] /* src0.x */,
257 emit_data->args[4] /* src1.x */);
258 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
259 emit_data->args[1] /* src0.y */,
260 emit_data->args[5] /* src1.y */);
261 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_ADD, tmp0, tmp1);
262 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
263 emit_data->args[2] /* src0.z */,
264 emit_data->args[6] /* src1.z */);
265 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_ADD, tmp0, tmp1);
266 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
267 emit_data->args[3] /* src0.w */,
268 emit_data->args[7] /* src1.w */);
269 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
270 TGSI_OPCODE_ADD, tmp0, tmp1);
271 }
272
273 static struct lp_build_tgsi_action dp4_action = {
274 dp4_fetch_args, /* fetch_args */
275 dp4_emit /* emit */
276 };
277
278 /* TGSI_OPCODE_DPH */
279 static void
280 dph_fetch_args(
281 struct lp_build_tgsi_context * bld_base,
282 struct lp_build_emit_data * emit_data)
283 {
284 dp_fetch_args(bld_base, emit_data, 4);
285 /* src0.w */
286 emit_data->args[3] = bld_base->base.one;
287 }
288
289 const struct lp_build_tgsi_action dph_action = {
290 dph_fetch_args, /* fetch_args */
291 dp4_emit /* emit */
292 };
293
294 /* TGSI_OPCODE_DST */
295 static void
296 dst_fetch_args(
297 struct lp_build_tgsi_context * bld_base,
298 struct lp_build_emit_data * emit_data)
299 {
300 /* src0.y */
301 emit_data->args[0] = lp_build_emit_fetch(bld_base, emit_data->inst,
302 0, TGSI_CHAN_Y);
303 /* src0.z */
304 emit_data->args[1] = lp_build_emit_fetch(bld_base, emit_data->inst,
305 0, TGSI_CHAN_Z);
306 /* src1.y */
307 emit_data->args[2] = lp_build_emit_fetch(bld_base, emit_data->inst,
308 1, TGSI_CHAN_Y);
309 /* src1.w */
310 emit_data->args[3] = lp_build_emit_fetch(bld_base, emit_data->inst,
311 1, TGSI_CHAN_W);
312 }
313
314 static void
315 dst_emit(
316 const struct lp_build_tgsi_action * action,
317 struct lp_build_tgsi_context * bld_base,
318 struct lp_build_emit_data * emit_data)
319 {
320 /* dst.x */
321 emit_data->output[TGSI_CHAN_X] = bld_base->base.one;
322
323 /* dst.y */
324 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_binary(bld_base,
325 TGSI_OPCODE_MUL,
326 emit_data->args[0] /* src0.y */,
327 emit_data->args[2] /* src1.y */);
328 /* dst.z */
329 emit_data->output[TGSI_CHAN_Z] = emit_data->args[1]; /* src0.z */
330
331 /* dst.w */
332 emit_data->output[TGSI_CHAN_W] = emit_data->args[3]; /* src1.w */
333 }
334
335 static struct lp_build_tgsi_action dst_action = {
336 dst_fetch_args, /* fetch_args */
337 dst_emit /* emit */
338 };
339
340 /* TGSI_OPCODE_END */
341 static void
342 end_emit(
343 const struct lp_build_tgsi_action * action,
344 struct lp_build_tgsi_context * bld_base,
345 struct lp_build_emit_data * emit_data)
346 {
347 bld_base->pc = -1;
348 }
349
350 /* TGSI_OPCODE_EXP */
351
352 static void
353 exp_emit(
354 const struct lp_build_tgsi_action * action,
355 struct lp_build_tgsi_context * bld_base,
356 struct lp_build_emit_data * emit_data)
357 {
358 LLVMValueRef floor_x;
359
360 /* floor( src0.x ) */
361 floor_x = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_FLR,
362 emit_data->args[0]);
363
364 /* 2 ^ floor( src0.x ) */
365 emit_data->output[TGSI_CHAN_X] = lp_build_emit_llvm_unary(bld_base,
366 TGSI_OPCODE_EX2, floor_x);
367
368 /* src0.x - floor( src0.x ) */
369 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_binary(bld_base,
370 TGSI_OPCODE_SUB, emit_data->args[0] /* src0.x */, floor_x);
371
372 /* 2 ^ src0.x */
373 emit_data->output[TGSI_CHAN_Z] = lp_build_emit_llvm_unary(bld_base,
374 TGSI_OPCODE_EX2, emit_data->args[0] /* src0.x */);
375
376 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
377 }
378
379 const struct lp_build_tgsi_action exp_action = {
380 scalar_unary_fetch_args, /* fetch_args */
381 exp_emit /* emit */
382 };
383
384 /* TGSI_OPCODE_FRC */
385
386 static void
387 frc_emit(
388 const struct lp_build_tgsi_action * action,
389 struct lp_build_tgsi_context * bld_base,
390 struct lp_build_emit_data * emit_data)
391 {
392 LLVMValueRef tmp;
393 tmp = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_FLR,
394 emit_data->args[0]);
395 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
396 TGSI_OPCODE_SUB, emit_data->args[0], tmp);
397 }
398
399 /* TGSI_OPCODE_KILL_IF */
400
401 static void
402 kil_fetch_args(
403 struct lp_build_tgsi_context * bld_base,
404 struct lp_build_emit_data * emit_data)
405 {
406 /* src0.x */
407 emit_data->args[0] = lp_build_emit_fetch(bld_base, emit_data->inst,
408 0, TGSI_CHAN_X);
409 /* src0.y */
410 emit_data->args[1] = lp_build_emit_fetch(bld_base, emit_data->inst,
411 0, TGSI_CHAN_Y);
412 /* src0.z */
413 emit_data->args[2] = lp_build_emit_fetch(bld_base, emit_data->inst,
414 0, TGSI_CHAN_Z);
415 /* src0.w */
416 emit_data->args[3] = lp_build_emit_fetch(bld_base, emit_data->inst,
417 0, TGSI_CHAN_W);
418 emit_data->arg_count = 4;
419 emit_data->dst_type = LLVMVoidTypeInContext(bld_base->base.gallivm->context);
420 }
421
422 /* TGSI_OPCODE_KILL */
423
424 static void
425 kilp_fetch_args(
426 struct lp_build_tgsi_context * bld_base,
427 struct lp_build_emit_data * emit_data)
428 {
429 emit_data->dst_type = LLVMVoidTypeInContext(bld_base->base.gallivm->context);
430 }
431
432 /* TGSI_OPCODE_LIT */
433
434 static void
435 lit_fetch_args(
436 struct lp_build_tgsi_context * bld_base,
437 struct lp_build_emit_data * emit_data)
438 {
439 /* src0.x */
440 emit_data->args[0] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, TGSI_CHAN_X);
441 /* src0.y */
442 emit_data->args[1] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, TGSI_CHAN_Y);
443 /* src0.w */
444 emit_data->args[2] = lp_build_emit_fetch(bld_base, emit_data->inst, 0, TGSI_CHAN_W);
445 emit_data->arg_count = 3;
446 }
447
448 static void
449 lit_emit(
450 const struct lp_build_tgsi_action * action,
451 struct lp_build_tgsi_context * bld_base,
452 struct lp_build_emit_data * emit_data)
453 {
454 LLVMValueRef tmp0, tmp1, tmp2;
455
456 /* dst.x */
457 emit_data->output[TGSI_CHAN_X] = bld_base->base.one;
458
459 /* dst. y */
460 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_binary(bld_base,
461 TGSI_OPCODE_MAX,
462 emit_data->args[0] /* src0.x */,
463 bld_base->base.zero);
464
465 /* dst.z */
466 /* XMM[1] = SrcReg[0].yyyy */
467 tmp1 = emit_data->args[1];
468 /* XMM[1] = max(XMM[1], 0) */
469 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MAX,
470 tmp1, bld_base->base.zero);
471 /* XMM[2] = SrcReg[0].wwww */
472 tmp2 = emit_data->args[2];
473 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_POW,
474 tmp1, tmp2);
475 tmp0 = emit_data->args[0];
476 emit_data->output[TGSI_CHAN_Z] = lp_build_emit_llvm_ternary(bld_base,
477 TGSI_OPCODE_CMP,
478 tmp0, bld_base->base.zero, tmp1);
479 /* dst.w */
480 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
481 }
482
483 static struct lp_build_tgsi_action lit_action = {
484 lit_fetch_args, /* fetch_args */
485 lit_emit /* emit */
486 };
487
488 /* TGSI_OPCODE_LOG */
489
490 static void
491 log_emit(
492 const struct lp_build_tgsi_action * action,
493 struct lp_build_tgsi_context * bld_base,
494 struct lp_build_emit_data * emit_data)
495 {
496
497 LLVMValueRef abs_x, log_abs_x, flr_log_abs_x, ex2_flr_log_abs_x;
498
499 /* abs( src0.x) */
500 abs_x = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_ABS,
501 emit_data->args[0] /* src0.x */);
502
503 /* log( abs( src0.x ) ) */
504 log_abs_x = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_LG2,
505 abs_x);
506
507 /* floor( log( abs( src0.x ) ) ) */
508 flr_log_abs_x = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_FLR,
509 log_abs_x);
510 /* dst.x */
511 emit_data->output[TGSI_CHAN_X] = flr_log_abs_x;
512
513 /* dst.y */
514 ex2_flr_log_abs_x = lp_build_emit_llvm_unary(bld_base, TGSI_OPCODE_EX2,
515 flr_log_abs_x);
516
517 /* abs( src0.x ) / 2^( floor( lg2( abs( src0.x ) ) ) ) */
518 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_binary(bld_base,
519 TGSI_OPCODE_DIV, abs_x, ex2_flr_log_abs_x);
520
521 /* dst.x */
522 emit_data->output[TGSI_CHAN_Z] = log_abs_x;
523
524 /* dst.w */
525 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
526 }
527
528 static struct lp_build_tgsi_action log_action = {
529 scalar_unary_fetch_args, /* fetch_args */
530 log_emit /* emit */
531 };
532
533 /* TGSI_OPCODE_LRP */
534
535 static void
536 lrp_emit(
537 const struct lp_build_tgsi_action * action,
538 struct lp_build_tgsi_context * bld_base,
539 struct lp_build_emit_data * emit_data)
540 {
541 LLVMValueRef tmp;
542 tmp = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_SUB,
543 emit_data->args[1],
544 emit_data->args[2]);
545 emit_data->output[emit_data->chan] = lp_build_emit_llvm_ternary(bld_base,
546 TGSI_OPCODE_MAD, emit_data->args[0], tmp, emit_data->args[2]);
547 }
548
549 /* TGSI_OPCODE_MAD */
550
551 static void
552 mad_emit(
553 const struct lp_build_tgsi_action * action,
554 struct lp_build_tgsi_context * bld_base,
555 struct lp_build_emit_data * emit_data)
556 {
557 LLVMValueRef tmp;
558 tmp = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL,
559 emit_data->args[0],
560 emit_data->args[1]);
561 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
562 TGSI_OPCODE_ADD, tmp, emit_data->args[2]);
563 }
564
565 /* TGSI_OPCODE_MOV */
566
567 static void
568 mov_emit(
569 const struct lp_build_tgsi_action * action,
570 struct lp_build_tgsi_context * bld_base,
571 struct lp_build_emit_data * emit_data)
572 {
573 emit_data->output[emit_data->chan] = emit_data->args[0];
574 }
575
576 /* TGSI_OPCODE_MUL */
577 static void
578 mul_emit(
579 const struct lp_build_tgsi_action * action,
580 struct lp_build_tgsi_context * bld_base,
581 struct lp_build_emit_data * emit_data)
582 {
583 emit_data->output[emit_data->chan] = LLVMBuildFMul(
584 bld_base->base.gallivm->builder,
585 emit_data->args[0], emit_data->args[1], "");
586 }
587
588 /*.TGSI_OPCODE_DIV.*/
589 static void fdiv_emit(
590 const struct lp_build_tgsi_action * action,
591 struct lp_build_tgsi_context * bld_base,
592 struct lp_build_emit_data * emit_data)
593 {
594 emit_data->output[emit_data->chan] = LLVMBuildFDiv(
595 bld_base->base.gallivm->builder,
596 emit_data->args[0], emit_data->args[1], "");
597 }
598
599 /*.TGSI_OPCODE_RCP.*/
600 static void rcp_emit(
601 const struct lp_build_tgsi_action * action,
602 struct lp_build_tgsi_context * bld_base,
603 struct lp_build_emit_data * emit_data)
604 {
605 LLVMValueRef one;
606 one = lp_build_const_float(bld_base->base.gallivm, 1.0f);
607 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
608 TGSI_OPCODE_DIV, one, emit_data->args[0]);
609 }
610
611 /* TGSI_OPCODE_POW */
612
613 static void
614 pow_emit(
615 const struct lp_build_tgsi_action * action,
616 struct lp_build_tgsi_context * bld_base,
617 struct lp_build_emit_data * emit_data)
618 {
619 emit_data->output[emit_data->chan] = lp_build_pow(&bld_base->base,
620 emit_data->args[0], emit_data->args[1]);
621 }
622
623 static struct lp_build_tgsi_action pow_action = {
624 scalar_binary_fetch_args, /* fetch_args */
625 pow_emit /* emit */
626 };
627
628 /* TGSI_OPCODE_RSQ */
629
630 static void
631 rsq_emit(
632 const struct lp_build_tgsi_action * action,
633 struct lp_build_tgsi_context * bld_base,
634 struct lp_build_emit_data * emit_data)
635 {
636 if (bld_base->rsq_action.emit) {
637 bld_base->rsq_action.emit(&bld_base->rsq_action, bld_base, emit_data);
638 } else {
639 emit_data->output[emit_data->chan] = bld_base->base.undef;
640 }
641 }
642
643 const struct lp_build_tgsi_action rsq_action = {
644 scalar_unary_fetch_args, /* fetch_args */
645 rsq_emit /* emit */
646
647 };
648
649 /* TGSI_OPCODE_SQRT */
650
651 static void
652 sqrt_emit(
653 const struct lp_build_tgsi_action * action,
654 struct lp_build_tgsi_context * bld_base,
655 struct lp_build_emit_data * emit_data)
656 {
657 if (bld_base->sqrt_action.emit) {
658 bld_base->sqrt_action.emit(&bld_base->sqrt_action, bld_base, emit_data);
659 } else {
660 emit_data->output[emit_data->chan] = bld_base->base.undef;
661 }
662 }
663
664 const struct lp_build_tgsi_action sqrt_action = {
665 scalar_unary_fetch_args, /* fetch_args */
666 sqrt_emit /* emit */
667 };
668
669 /* TGSI_OPCODE_SCS */
670 static void
671 scs_emit(
672 const struct lp_build_tgsi_action * action,
673 struct lp_build_tgsi_context * bld_base,
674 struct lp_build_emit_data * emit_data)
675 {
676 /* dst.x */
677 emit_data->output[TGSI_CHAN_X] = lp_build_emit_llvm_unary(bld_base,
678 TGSI_OPCODE_COS, emit_data->args[0]);
679 /* dst.y */
680 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_unary(bld_base,
681 TGSI_OPCODE_SIN, emit_data->args[0]);
682 /* dst.z */
683 emit_data->output[TGSI_CHAN_Z] = bld_base->base.zero;
684
685 /* dst.w */
686 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
687 }
688
689 const struct lp_build_tgsi_action scs_action = {
690 scalar_unary_fetch_args, /* fetch_args */
691 scs_emit /* emit */
692 };
693
694 /* TGSI_OPCODE_SFL */
695
696 static void
697 sfl_emit(
698 const struct lp_build_tgsi_action * action,
699 struct lp_build_tgsi_context * bld_base,
700 struct lp_build_emit_data * emit_data)
701 {
702 emit_data->output[emit_data->chan] = bld_base->base.zero;
703 }
704
705 /* TGSI_OPCODE_STR */
706
707 static void
708 str_emit(
709 const struct lp_build_tgsi_action * action,
710 struct lp_build_tgsi_context * bld_base,
711 struct lp_build_emit_data * emit_data)
712 {
713 emit_data->output[emit_data->chan] = bld_base->base.one;
714 }
715
716 /* TGSI_OPCODE_SUB */
717 static void
718 sub_emit(
719 const struct lp_build_tgsi_action * action,
720 struct lp_build_tgsi_context * bld_base,
721 struct lp_build_emit_data * emit_data)
722 {
723 emit_data->output[emit_data->chan] = LLVMBuildFSub(
724 bld_base->base.gallivm->builder,
725 emit_data->args[0],
726 emit_data->args[1], "");
727 }
728
729 /* TGSI_OPCODE_U2F */
730 static void
731 u2f_emit(
732 const struct lp_build_tgsi_action * action,
733 struct lp_build_tgsi_context * bld_base,
734 struct lp_build_emit_data * emit_data)
735 {
736 emit_data->output[emit_data->chan] = LLVMBuildUIToFP(bld_base->base.gallivm->builder,
737 emit_data->args[0],
738 bld_base->base.vec_type, "");
739 }
740
741 static void
742 umad_emit(
743 const struct lp_build_tgsi_action * action,
744 struct lp_build_tgsi_context * bld_base,
745 struct lp_build_emit_data * emit_data)
746 {
747 LLVMValueRef tmp;
748 tmp = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_UMUL,
749 emit_data->args[0],
750 emit_data->args[1]);
751 emit_data->output[emit_data->chan] = lp_build_emit_llvm_binary(bld_base,
752 TGSI_OPCODE_UADD, tmp, emit_data->args[2]);
753 }
754
755 /* TGSI_OPCODE_UMUL */
756 static void
757 umul_emit(
758 const struct lp_build_tgsi_action * action,
759 struct lp_build_tgsi_context * bld_base,
760 struct lp_build_emit_data * emit_data)
761 {
762 emit_data->output[emit_data->chan] = lp_build_mul(&bld_base->uint_bld,
763 emit_data->args[0], emit_data->args[1]);
764 }
765
766 /* TGSI_OPCODE_MAX */
767 static void fmax_emit(
768 const struct lp_build_tgsi_action * action,
769 struct lp_build_tgsi_context * bld_base,
770 struct lp_build_emit_data * emit_data)
771 {
772 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
773 emit_data->output[emit_data->chan] = LLVMBuildSelect(builder,
774 LLVMBuildFCmp(builder, LLVMRealUGE,
775 emit_data->args[0], emit_data->args[1], ""),
776 emit_data->args[0], emit_data->args[1], "");
777 }
778
779 /* TGSI_OPCODE_MIN */
780 static void fmin_emit(
781 const struct lp_build_tgsi_action * action,
782 struct lp_build_tgsi_context * bld_base,
783 struct lp_build_emit_data * emit_data)
784 {
785 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
786 emit_data->output[emit_data->chan] = LLVMBuildSelect(builder,
787 LLVMBuildFCmp(builder, LLVMRealUGE,
788 emit_data->args[0], emit_data->args[1], ""),
789 emit_data->args[1], emit_data->args[0], "");
790 }
791
792 /* TGSI_OPCODE_XPD */
793
794 static void
795 xpd_fetch_args(
796 struct lp_build_tgsi_context * bld_base,
797 struct lp_build_emit_data * emit_data)
798 {
799 dp_fetch_args(bld_base, emit_data, 3);
800 }
801
802 /**
803 * (a * b) - (c * d)
804 */
805 static LLVMValueRef
806 xpd_helper(
807 struct lp_build_tgsi_context * bld_base,
808 LLVMValueRef a,
809 LLVMValueRef b,
810 LLVMValueRef c,
811 LLVMValueRef d)
812 {
813 LLVMValueRef tmp0, tmp1;
814
815 tmp0 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL, a, b);
816 tmp1 = lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_MUL, c, d);
817
818 return lp_build_emit_llvm_binary(bld_base, TGSI_OPCODE_SUB, tmp0, tmp1);
819 }
820
821 static void
822 xpd_emit(
823 const struct lp_build_tgsi_action * action,
824 struct lp_build_tgsi_context * bld_base,
825 struct lp_build_emit_data * emit_data)
826 {
827 emit_data->output[TGSI_CHAN_X] = xpd_helper(bld_base,
828 emit_data->args[1] /* src0.y */, emit_data->args[5] /* src1.z */,
829 emit_data->args[4] /* src1.y */, emit_data->args[2] /* src0.z */);
830
831 emit_data->output[TGSI_CHAN_Y] = xpd_helper(bld_base,
832 emit_data->args[2] /* src0.z */, emit_data->args[3] /* src1.x */,
833 emit_data->args[5] /* src1.z */, emit_data->args[0] /* src0.x */);
834
835 emit_data->output[TGSI_CHAN_Z] = xpd_helper(bld_base,
836 emit_data->args[0] /* src0.x */, emit_data->args[4] /* src1.y */,
837 emit_data->args[3] /* src1.x */, emit_data->args[1] /* src0.y */);
838
839 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
840 }
841
842 const struct lp_build_tgsi_action xpd_action = {
843 xpd_fetch_args, /* fetch_args */
844 xpd_emit /* emit */
845 };
846
847 void
848 lp_set_default_actions(struct lp_build_tgsi_context * bld_base)
849 {
850 bld_base->op_actions[TGSI_OPCODE_DP2] = dp2_action;
851 bld_base->op_actions[TGSI_OPCODE_DP3] = dp3_action;
852 bld_base->op_actions[TGSI_OPCODE_DP4] = dp4_action;
853 bld_base->op_actions[TGSI_OPCODE_DP2A] = dp2a_action;
854 bld_base->op_actions[TGSI_OPCODE_DPH] = dph_action;
855 bld_base->op_actions[TGSI_OPCODE_DST] = dst_action;
856 bld_base->op_actions[TGSI_OPCODE_EXP] = exp_action;
857 bld_base->op_actions[TGSI_OPCODE_LIT] = lit_action;
858 bld_base->op_actions[TGSI_OPCODE_LOG] = log_action;
859 bld_base->op_actions[TGSI_OPCODE_RSQ] = rsq_action;
860 bld_base->op_actions[TGSI_OPCODE_SQRT] = sqrt_action;
861 bld_base->op_actions[TGSI_OPCODE_POW] = pow_action;
862 bld_base->op_actions[TGSI_OPCODE_SCS] = scs_action;
863 bld_base->op_actions[TGSI_OPCODE_XPD] = xpd_action;
864
865 bld_base->op_actions[TGSI_OPCODE_BREAKC].fetch_args = scalar_unary_fetch_args;
866 bld_base->op_actions[TGSI_OPCODE_SWITCH].fetch_args = scalar_unary_fetch_args;
867 bld_base->op_actions[TGSI_OPCODE_CASE].fetch_args = scalar_unary_fetch_args;
868 bld_base->op_actions[TGSI_OPCODE_COS].fetch_args = scalar_unary_fetch_args;
869 bld_base->op_actions[TGSI_OPCODE_EX2].fetch_args = scalar_unary_fetch_args;
870 bld_base->op_actions[TGSI_OPCODE_IF].fetch_args = scalar_unary_fetch_args;
871 bld_base->op_actions[TGSI_OPCODE_UIF].fetch_args = scalar_unary_fetch_args;
872 bld_base->op_actions[TGSI_OPCODE_KILL_IF].fetch_args = kil_fetch_args;
873 bld_base->op_actions[TGSI_OPCODE_KILL].fetch_args = kilp_fetch_args;
874 bld_base->op_actions[TGSI_OPCODE_RCP].fetch_args = scalar_unary_fetch_args;
875 bld_base->op_actions[TGSI_OPCODE_SIN].fetch_args = scalar_unary_fetch_args;
876 bld_base->op_actions[TGSI_OPCODE_LG2].fetch_args = scalar_unary_fetch_args;
877
878 bld_base->op_actions[TGSI_OPCODE_ADD].emit = add_emit;
879 bld_base->op_actions[TGSI_OPCODE_ARR].emit = arr_emit;
880 bld_base->op_actions[TGSI_OPCODE_CLAMP].emit = clamp_emit;
881 bld_base->op_actions[TGSI_OPCODE_END].emit = end_emit;
882 bld_base->op_actions[TGSI_OPCODE_FRC].emit = frc_emit;
883 bld_base->op_actions[TGSI_OPCODE_LRP].emit = lrp_emit;
884 bld_base->op_actions[TGSI_OPCODE_MAD].emit = mad_emit;
885 bld_base->op_actions[TGSI_OPCODE_MOV].emit = mov_emit;
886 bld_base->op_actions[TGSI_OPCODE_MUL].emit = mul_emit;
887 bld_base->op_actions[TGSI_OPCODE_DIV].emit = fdiv_emit;
888 bld_base->op_actions[TGSI_OPCODE_RCP].emit = rcp_emit;
889 bld_base->op_actions[TGSI_OPCODE_SFL].emit = sfl_emit;
890 bld_base->op_actions[TGSI_OPCODE_STR].emit = str_emit;
891 bld_base->op_actions[TGSI_OPCODE_SUB].emit = sub_emit;
892
893 bld_base->op_actions[TGSI_OPCODE_UARL].emit = mov_emit;
894 bld_base->op_actions[TGSI_OPCODE_U2F].emit = u2f_emit;
895 bld_base->op_actions[TGSI_OPCODE_UMAD].emit = umad_emit;
896 bld_base->op_actions[TGSI_OPCODE_UMUL].emit = umul_emit;
897
898 bld_base->op_actions[TGSI_OPCODE_MAX].emit = fmax_emit;
899 bld_base->op_actions[TGSI_OPCODE_MIN].emit = fmin_emit;
900 }
901
902 /* CPU Only default actions */
903
904 /* These actions are CPU only, because they could potentially output SSE
905 * intrinsics.
906 */
907
908 /* TGSI_OPCODE_ABS (CPU Only)*/
909
910 static void
911 abs_emit_cpu(
912 const struct lp_build_tgsi_action * action,
913 struct lp_build_tgsi_context * bld_base,
914 struct lp_build_emit_data * emit_data)
915 {
916 emit_data->output[emit_data->chan] = lp_build_abs(&bld_base->base,
917 emit_data->args[0]);
918 }
919
920 /* TGSI_OPCODE_ADD (CPU Only) */
921 static void
922 add_emit_cpu(
923 const struct lp_build_tgsi_action * action,
924 struct lp_build_tgsi_context * bld_base,
925 struct lp_build_emit_data * emit_data)
926 {
927 emit_data->output[emit_data->chan] = lp_build_add(&bld_base->base,
928 emit_data->args[0], emit_data->args[1]);
929 }
930
931 /* TGSI_OPCODE_AND (CPU Only) */
932 static void
933 and_emit_cpu(
934 const struct lp_build_tgsi_action * action,
935 struct lp_build_tgsi_context * bld_base,
936 struct lp_build_emit_data * emit_data)
937 {
938 emit_data->output[emit_data->chan] = lp_build_and(&bld_base->uint_bld,
939 emit_data->args[0], emit_data->args[1]);
940 }
941
942 /* TGSI_OPCODE_ARL (CPU Only) */
943 static void
944 arl_emit_cpu(
945 const struct lp_build_tgsi_action * action,
946 struct lp_build_tgsi_context * bld_base,
947 struct lp_build_emit_data * emit_data)
948 {
949 LLVMValueRef tmp;
950 tmp = lp_build_floor(&bld_base->base,
951 emit_data->args[0]);
952 emit_data->output[emit_data->chan] = LLVMBuildFPToSI(bld_base->base.gallivm->builder, tmp,
953 bld_base->uint_bld.vec_type, "");
954 }
955
956 /* TGSI_OPCODE_ARR (CPU Only) */
957 static void
958 arr_emit_cpu(
959 const struct lp_build_tgsi_action * action,
960 struct lp_build_tgsi_context * bld_base,
961 struct lp_build_emit_data * emit_data)
962 {
963 emit_data->output[emit_data->chan] = lp_build_iround(&bld_base->base, emit_data->args[0]);
964 }
965
966 /* TGSI_OPCODE_CEIL (CPU Only) */
967 static void
968 ceil_emit_cpu(
969 const struct lp_build_tgsi_action * action,
970 struct lp_build_tgsi_context * bld_base,
971 struct lp_build_emit_data * emit_data)
972 {
973 emit_data->output[emit_data->chan] = lp_build_ceil(&bld_base->base,
974 emit_data->args[0]);
975 }
976
977 /* TGSI_OPCODE_CMP (CPU Only) */
978 static void
979 cmp_emit_cpu(
980 const struct lp_build_tgsi_action * action,
981 struct lp_build_tgsi_context * bld_base,
982 struct lp_build_emit_data * emit_data)
983 {
984 LLVMValueRef cond = lp_build_cmp(&bld_base->base, PIPE_FUNC_LESS,
985 emit_data->args[0], bld_base->base.zero);
986 emit_data->output[emit_data->chan] = lp_build_select(&bld_base->base,
987 cond, emit_data->args[1], emit_data->args[2]);
988 }
989
990 /* TGSI_OPCODE_UCMP (CPU Only) */
991 static void
992 ucmp_emit_cpu(
993 const struct lp_build_tgsi_action * action,
994 struct lp_build_tgsi_context * bld_base,
995 struct lp_build_emit_data * emit_data)
996 {
997 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
998 struct lp_build_context *uint_bld = &bld_base->uint_bld;
999 LLVMValueRef unsigned_cond =
1000 LLVMBuildBitCast(builder, emit_data->args[0], uint_bld->vec_type, "");
1001 LLVMValueRef cond = lp_build_cmp(uint_bld, PIPE_FUNC_NOTEQUAL,
1002 unsigned_cond,
1003 uint_bld->zero);
1004 emit_data->output[emit_data->chan] =
1005 lp_build_select(&bld_base->base,
1006 cond, emit_data->args[1], emit_data->args[2]);
1007 }
1008
1009
1010 /* TGSI_OPCODE_CND (CPU Only) */
1011 static void
1012 cnd_emit_cpu(
1013 const struct lp_build_tgsi_action * action,
1014 struct lp_build_tgsi_context * bld_base,
1015 struct lp_build_emit_data * emit_data)
1016 {
1017 LLVMValueRef half, tmp;
1018 half = lp_build_const_vec(bld_base->base.gallivm, bld_base->base.type, 0.5);
1019 tmp = lp_build_cmp(&bld_base->base, PIPE_FUNC_GREATER,
1020 emit_data->args[2], half);
1021 emit_data->output[emit_data->chan] = lp_build_select(&bld_base->base,
1022 tmp,
1023 emit_data->args[0],
1024 emit_data->args[1]);
1025 }
1026
1027 /* TGSI_OPCODE_COS (CPU Only) */
1028 static void
1029 cos_emit_cpu(
1030 const struct lp_build_tgsi_action * action,
1031 struct lp_build_tgsi_context * bld_base,
1032 struct lp_build_emit_data * emit_data)
1033 {
1034 emit_data->output[emit_data->chan] = lp_build_cos(&bld_base->base,
1035 emit_data->args[0]);
1036 }
1037
1038 /* TGSI_OPCODE_DIV (CPU Only) */
1039 static void
1040 div_emit_cpu(
1041 const struct lp_build_tgsi_action * action,
1042 struct lp_build_tgsi_context * bld_base,
1043 struct lp_build_emit_data * emit_data)
1044 {
1045 emit_data->output[emit_data->chan] = lp_build_div(&bld_base->base,
1046 emit_data->args[0], emit_data->args[1]);
1047 }
1048
1049 /* TGSI_OPCODE_EX2 (CPU Only) */
1050 static void
1051 ex2_emit_cpu(
1052 const struct lp_build_tgsi_action * action,
1053 struct lp_build_tgsi_context * bld_base,
1054 struct lp_build_emit_data * emit_data)
1055 {
1056 emit_data->output[emit_data->chan] = lp_build_exp2(&bld_base->base,
1057 emit_data->args[0]);
1058 }
1059
1060 /* TGSI_OPCODE_EXP (CPU Only) */
1061 static void
1062 exp_emit_cpu(
1063 const struct lp_build_tgsi_action * action,
1064 struct lp_build_tgsi_context * bld_base,
1065 struct lp_build_emit_data * emit_data)
1066 {
1067 lp_build_exp2_approx(&bld_base->base, emit_data->args[0],
1068 &emit_data->output[TGSI_CHAN_X],
1069 &emit_data->output[TGSI_CHAN_Y],
1070 &emit_data->output[TGSI_CHAN_Z]);
1071 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
1072 }
1073
1074 /* TGSI_OPCODE_F2I (CPU Only) */
1075 static void
1076 f2i_emit_cpu(
1077 const struct lp_build_tgsi_action * action,
1078 struct lp_build_tgsi_context * bld_base,
1079 struct lp_build_emit_data * emit_data)
1080 {
1081 emit_data->output[emit_data->chan] = lp_build_itrunc(&bld_base->base,
1082 emit_data->args[0]);
1083 }
1084
1085 /* TGSI_OPCODE_F2U (CPU Only) */
1086 static void
1087 f2u_emit_cpu(
1088 const struct lp_build_tgsi_action * action,
1089 struct lp_build_tgsi_context * bld_base,
1090 struct lp_build_emit_data * emit_data)
1091 {
1092 /* FIXME: implement and use lp_build_utrunc() */
1093 emit_data->output[emit_data->chan] = lp_build_itrunc(&bld_base->base,
1094 emit_data->args[0]);
1095 }
1096
1097 /* TGSI_OPCODE_FLR (CPU Only) */
1098
1099 static void
1100 flr_emit_cpu(
1101 const struct lp_build_tgsi_action * action,
1102 struct lp_build_tgsi_context * bld_base,
1103 struct lp_build_emit_data * emit_data)
1104 {
1105 emit_data->output[emit_data->chan] = lp_build_floor(&bld_base->base,
1106 emit_data->args[0]);
1107 }
1108
1109 /* TGSI_OPCODE_I2F (CPU Only) */
1110 static void
1111 i2f_emit_cpu(
1112 const struct lp_build_tgsi_action * action,
1113 struct lp_build_tgsi_context * bld_base,
1114 struct lp_build_emit_data * emit_data)
1115 {
1116 emit_data->output[emit_data->chan] = lp_build_int_to_float(&bld_base->base,
1117 emit_data->args[0]);
1118 }
1119
1120 /* TGSI_OPCODE_IABS (CPU Only) */
1121 static void
1122 iabs_emit_cpu(
1123 const struct lp_build_tgsi_action * action,
1124 struct lp_build_tgsi_context * bld_base,
1125 struct lp_build_emit_data * emit_data)
1126 {
1127 emit_data->output[emit_data->chan] = lp_build_abs(&bld_base->int_bld,
1128 emit_data->args[0]);
1129 }
1130
1131 /* TGSI_OPCODE_IDIV (CPU Only) */
1132 static void
1133 idiv_emit_cpu(
1134 const struct lp_build_tgsi_action * action,
1135 struct lp_build_tgsi_context * bld_base,
1136 struct lp_build_emit_data * emit_data)
1137 {
1138 emit_data->output[emit_data->chan] = lp_build_div(&bld_base->int_bld,
1139 emit_data->args[0], emit_data->args[1]);
1140 }
1141
1142 /* TGSI_OPCODE_INEG (CPU Only) */
1143 static void
1144 ineg_emit_cpu(
1145 const struct lp_build_tgsi_action * action,
1146 struct lp_build_tgsi_context * bld_base,
1147 struct lp_build_emit_data * emit_data)
1148 {
1149 emit_data->output[emit_data->chan] = lp_build_sub(&bld_base->int_bld,
1150 bld_base->int_bld.zero,
1151 emit_data->args[0]);
1152 }
1153
1154 /* TGSI_OPCODE_ISET Helper (CPU Only) */
1155 static void
1156 iset_emit_cpu(
1157 const struct lp_build_tgsi_action * action,
1158 struct lp_build_tgsi_context * bld_base,
1159 struct lp_build_emit_data * emit_data,
1160 unsigned pipe_func)
1161 {
1162 LLVMValueRef cond = lp_build_cmp(&bld_base->int_bld, pipe_func,
1163 emit_data->args[0], emit_data->args[1]);
1164 emit_data->output[emit_data->chan] = cond;
1165 }
1166
1167 /* TGSI_OPCODE_IMAX (CPU Only) */
1168 static void
1169 imax_emit_cpu(
1170 const struct lp_build_tgsi_action * action,
1171 struct lp_build_tgsi_context * bld_base,
1172 struct lp_build_emit_data * emit_data)
1173 {
1174 emit_data->output[emit_data->chan] = lp_build_max(&bld_base->int_bld,
1175 emit_data->args[0], emit_data->args[1]);
1176 }
1177
1178 /* TGSI_OPCODE_IMIN (CPU Only) */
1179 static void
1180 imin_emit_cpu(
1181 const struct lp_build_tgsi_action * action,
1182 struct lp_build_tgsi_context * bld_base,
1183 struct lp_build_emit_data * emit_data)
1184 {
1185 emit_data->output[emit_data->chan] = lp_build_min(&bld_base->int_bld,
1186 emit_data->args[0], emit_data->args[1]);
1187 }
1188
1189 /* TGSI_OPCODE_ISGE (CPU Only) */
1190 static void
1191 isge_emit_cpu(
1192 const struct lp_build_tgsi_action * action,
1193 struct lp_build_tgsi_context * bld_base,
1194 struct lp_build_emit_data * emit_data)
1195 {
1196 iset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_GEQUAL);
1197 }
1198
1199 /* TGSI_OPCODE_ISHR (CPU Only) */
1200 static void
1201 ishr_emit_cpu(
1202 const struct lp_build_tgsi_action * action,
1203 struct lp_build_tgsi_context * bld_base,
1204 struct lp_build_emit_data * emit_data)
1205 {
1206 emit_data->output[emit_data->chan] = lp_build_shr(&bld_base->int_bld,
1207 emit_data->args[0], emit_data->args[1]);
1208 }
1209
1210 /* TGSI_OPCODE_ISLT (CPU Only) */
1211 static void
1212 islt_emit_cpu(
1213 const struct lp_build_tgsi_action * action,
1214 struct lp_build_tgsi_context * bld_base,
1215 struct lp_build_emit_data * emit_data)
1216 {
1217 iset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_LESS);
1218 }
1219
1220
1221 /* TGSI_OPCODE_ISSG (CPU Only) */
1222 static void
1223 issg_emit_cpu(
1224 const struct lp_build_tgsi_action * action,
1225 struct lp_build_tgsi_context * bld_base,
1226 struct lp_build_emit_data * emit_data)
1227 {
1228 emit_data->output[emit_data->chan] = lp_build_sgn(&bld_base->int_bld,
1229 emit_data->args[0]);
1230 }
1231
1232 /* TGSI_OPCODE_LG2 (CPU Only) */
1233 static void
1234 lg2_emit_cpu(
1235 const struct lp_build_tgsi_action * action,
1236 struct lp_build_tgsi_context * bld_base,
1237 struct lp_build_emit_data * emit_data)
1238 {
1239 emit_data->output[emit_data->chan] = lp_build_log2_safe(&bld_base->base,
1240 emit_data->args[0]);
1241 }
1242
1243 /* TGSI_OPCODE_LOG (CPU Only) */
1244 static void
1245 log_emit_cpu(
1246 const struct lp_build_tgsi_action * action,
1247 struct lp_build_tgsi_context * bld_base,
1248 struct lp_build_emit_data * emit_data)
1249 {
1250 LLVMValueRef p_floor_log2;
1251 LLVMValueRef p_exp;
1252 LLVMValueRef p_log2;
1253 LLVMValueRef src0 = emit_data->args[0];
1254
1255 lp_build_log2_approx(&bld_base->base, src0,
1256 &p_exp, &p_floor_log2, &p_log2, FALSE);
1257
1258 emit_data->output[TGSI_CHAN_X] = p_floor_log2;
1259
1260 emit_data->output[TGSI_CHAN_Y] = lp_build_emit_llvm_binary(bld_base,
1261 TGSI_OPCODE_DIV,
1262 src0, p_exp);
1263 emit_data->output[TGSI_CHAN_Z] = p_log2;
1264
1265 emit_data->output[TGSI_CHAN_W] = bld_base->base.one;
1266
1267 }
1268
1269 /* TGSI_OPCODE_MAX (CPU Only) */
1270
1271 static void
1272 max_emit_cpu(
1273 const struct lp_build_tgsi_action * action,
1274 struct lp_build_tgsi_context * bld_base,
1275 struct lp_build_emit_data * emit_data)
1276 {
1277 emit_data->output[emit_data->chan] =
1278 lp_build_max_ext(&bld_base->base,
1279 emit_data->args[0], emit_data->args[1],
1280 GALLIVM_NAN_RETURN_OTHER);
1281 }
1282
1283 /* TGSI_OPCODE_MIN (CPU Only) */
1284 static void
1285 min_emit_cpu(
1286 const struct lp_build_tgsi_action * action,
1287 struct lp_build_tgsi_context * bld_base,
1288 struct lp_build_emit_data * emit_data)
1289 {
1290 emit_data->output[emit_data->chan] =
1291 lp_build_min_ext(&bld_base->base,
1292 emit_data->args[0], emit_data->args[1],
1293 GALLIVM_NAN_RETURN_OTHER);
1294 }
1295
1296 /* TGSI_OPCODE_MOD (CPU Only) */
1297 static void
1298 mod_emit_cpu(
1299 const struct lp_build_tgsi_action * action,
1300 struct lp_build_tgsi_context * bld_base,
1301 struct lp_build_emit_data * emit_data)
1302 {
1303 emit_data->output[emit_data->chan] = lp_build_mod(&bld_base->int_bld,
1304 emit_data->args[0], emit_data->args[1]);
1305 }
1306
1307 /* TGSI_OPCODE_NOT */
1308 static void
1309 not_emit_cpu(
1310 const struct lp_build_tgsi_action * action,
1311 struct lp_build_tgsi_context * bld_base,
1312 struct lp_build_emit_data * emit_data)
1313 {
1314 emit_data->output[emit_data->chan] = lp_build_not(&bld_base->uint_bld,
1315 emit_data->args[0]);
1316 }
1317
1318 /* TGSI_OPCODE_OR (CPU Only) */
1319 static void
1320 or_emit_cpu(
1321 const struct lp_build_tgsi_action * action,
1322 struct lp_build_tgsi_context * bld_base,
1323 struct lp_build_emit_data * emit_data)
1324 {
1325 emit_data->output[emit_data->chan] = lp_build_or(&bld_base->uint_bld,
1326 emit_data->args[0], emit_data->args[1]);
1327 }
1328
1329 /* TGSI_OPCODE_POW (CPU Only) */
1330 static void
1331 pow_emit_cpu(
1332 const struct lp_build_tgsi_action * action,
1333 struct lp_build_tgsi_context * bld_base,
1334 struct lp_build_emit_data * emit_data)
1335 {
1336 emit_data->output[emit_data->chan] = lp_build_pow(&bld_base->base,
1337 emit_data->args[0], emit_data->args[1]);
1338 }
1339
1340
1341 /* TGSI_OPCODE_RCP (CPU Only) */
1342
1343 static void
1344 rcp_emit_cpu(
1345 const struct lp_build_tgsi_action * action,
1346 struct lp_build_tgsi_context * bld_base,
1347 struct lp_build_emit_data * emit_data)
1348 {
1349 emit_data->output[emit_data->chan] = lp_build_rcp(&bld_base->base,
1350 emit_data->args[0]);
1351 }
1352
1353 /* Reciprical squareroot (CPU Only) */
1354 static void
1355 recip_sqrt_emit_cpu(
1356 const struct lp_build_tgsi_action * action,
1357 struct lp_build_tgsi_context * bld_base,
1358 struct lp_build_emit_data * emit_data)
1359 {
1360 emit_data->output[emit_data->chan] = lp_build_rsqrt(&bld_base->base,
1361 emit_data->args[0]);
1362 }
1363
1364 static void
1365 sqrt_emit_cpu(
1366 const struct lp_build_tgsi_action * action,
1367 struct lp_build_tgsi_context * bld_base,
1368 struct lp_build_emit_data * emit_data)
1369 {
1370 emit_data->output[emit_data->chan] = lp_build_sqrt(&bld_base->base,
1371 emit_data->args[0]);
1372 }
1373
1374
1375 /* TGSI_OPCODE_ROUND (CPU Only) */
1376 static void
1377 round_emit_cpu(
1378 const struct lp_build_tgsi_action * action,
1379 struct lp_build_tgsi_context * bld_base,
1380 struct lp_build_emit_data * emit_data)
1381 {
1382 emit_data->output[emit_data->chan] = lp_build_round(&bld_base->base,
1383 emit_data->args[0]);
1384 }
1385
1386 /* TGSI_OPCODE_SET Helper (CPU Only) */
1387
1388 static void
1389 set_emit_cpu(
1390 const struct lp_build_tgsi_action * action,
1391 struct lp_build_tgsi_context * bld_base,
1392 struct lp_build_emit_data * emit_data,
1393 unsigned pipe_func)
1394 {
1395 LLVMValueRef cond = lp_build_cmp(&bld_base->base, pipe_func,
1396 emit_data->args[0], emit_data->args[1]);
1397 emit_data->output[emit_data->chan] = lp_build_select(&bld_base->base,
1398 cond,
1399 bld_base->base.one,
1400 bld_base->base.zero);
1401 }
1402
1403 /* TGSI_OPCODE_SEQ (CPU Only) */
1404
1405 static void
1406 seq_emit_cpu(
1407 const struct lp_build_tgsi_action * action,
1408 struct lp_build_tgsi_context * bld_base,
1409 struct lp_build_emit_data * emit_data)
1410 {
1411 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_EQUAL);
1412 }
1413
1414 /* TGSI_OPCODE_SGE (CPU Only) */
1415 static void
1416 sge_emit_cpu(
1417 const struct lp_build_tgsi_action * action,
1418 struct lp_build_tgsi_context * bld_base,
1419 struct lp_build_emit_data * emit_data)
1420 {
1421 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_GEQUAL);
1422 }
1423
1424 /* TGSI_OPCODE_SGT (CPU Only)*/
1425
1426 static void
1427 sgt_emit_cpu(
1428 const struct lp_build_tgsi_action * action,
1429 struct lp_build_tgsi_context * bld_base,
1430 struct lp_build_emit_data * emit_data)
1431 {
1432 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_GREATER);
1433 }
1434
1435 /* TGSI_OPCODE_SHL (CPU Only) */
1436 static void
1437 shl_emit_cpu(
1438 const struct lp_build_tgsi_action * action,
1439 struct lp_build_tgsi_context * bld_base,
1440 struct lp_build_emit_data * emit_data)
1441 {
1442 emit_data->output[emit_data->chan] = lp_build_shl(&bld_base->uint_bld,
1443 emit_data->args[0], emit_data->args[1]);
1444 }
1445
1446 /* TGSI_OPCODE_SIN (CPU Only) */
1447 static void
1448 sin_emit_cpu(
1449 const struct lp_build_tgsi_action * action,
1450 struct lp_build_tgsi_context * bld_base,
1451 struct lp_build_emit_data * emit_data)
1452 {
1453 emit_data->output[emit_data->chan] = lp_build_sin(&bld_base->base,
1454 emit_data->args[0]);
1455 }
1456
1457 /* TGSI_OPCODE_SLE (CPU Only) */
1458 static void
1459 sle_emit_cpu(
1460 const struct lp_build_tgsi_action * action,
1461 struct lp_build_tgsi_context * bld_base,
1462 struct lp_build_emit_data * emit_data)
1463 {
1464 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_LEQUAL);
1465 }
1466
1467 /* TGSI_OPCODE_SLT (CPU Only) */
1468 static void
1469 slt_emit_cpu(
1470 const struct lp_build_tgsi_action * action,
1471 struct lp_build_tgsi_context * bld_base,
1472 struct lp_build_emit_data * emit_data)
1473 {
1474 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_LESS);
1475 }
1476
1477 /* TGSI_OPCODE_SNE (CPU Only) */
1478
1479 static void
1480 sne_emit_cpu(
1481 const struct lp_build_tgsi_action * action,
1482 struct lp_build_tgsi_context * bld_base,
1483 struct lp_build_emit_data * emit_data)
1484 {
1485 set_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_NOTEQUAL);
1486 }
1487
1488 /* TGSI_OPCODE_SSG (CPU Only) */
1489
1490 static void
1491 ssg_emit_cpu(
1492 const struct lp_build_tgsi_action * action,
1493 struct lp_build_tgsi_context * bld_base,
1494 struct lp_build_emit_data * emit_data)
1495 {
1496 emit_data->output[emit_data->chan] = lp_build_sgn(&bld_base->base,
1497 emit_data->args[0]);
1498 }
1499
1500 /* TGSI_OPCODE_SUB (CPU Only) */
1501
1502 static void
1503 sub_emit_cpu(
1504 const struct lp_build_tgsi_action * action,
1505 struct lp_build_tgsi_context * bld_base,
1506 struct lp_build_emit_data * emit_data)
1507 {
1508 emit_data->output[emit_data->chan] = lp_build_sub(&bld_base->base,
1509 emit_data->args[0],
1510 emit_data->args[1]);
1511 }
1512
1513 /* TGSI_OPCODE_TRUNC (CPU Only) */
1514
1515 static void
1516 trunc_emit_cpu(
1517 const struct lp_build_tgsi_action * action,
1518 struct lp_build_tgsi_context * bld_base,
1519 struct lp_build_emit_data * emit_data)
1520 {
1521 emit_data->output[emit_data->chan] = lp_build_trunc(&bld_base->base,
1522 emit_data->args[0]);
1523 }
1524
1525 /* TGSI_OPCODE_UADD (CPU Only) */
1526 static void
1527 uadd_emit_cpu(
1528 const struct lp_build_tgsi_action * action,
1529 struct lp_build_tgsi_context * bld_base,
1530 struct lp_build_emit_data * emit_data)
1531 {
1532 emit_data->output[emit_data->chan] = lp_build_add(&bld_base->uint_bld,
1533 emit_data->args[0], emit_data->args[1]);
1534 }
1535
1536 /* TGSI_OPCODE_UDIV (CPU Only) */
1537 static void
1538 udiv_emit_cpu(
1539 const struct lp_build_tgsi_action * action,
1540 struct lp_build_tgsi_context * bld_base,
1541 struct lp_build_emit_data * emit_data)
1542 {
1543
1544 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
1545 LLVMValueRef div_mask = lp_build_cmp(&bld_base->uint_bld,
1546 PIPE_FUNC_EQUAL, emit_data->args[1],
1547 bld_base->uint_bld.zero);
1548 /* We want to make sure that we never divide/mod by zero to not
1549 * generate sigfpe. We don't want to crash just because the
1550 * shader is doing something weird. */
1551 LLVMValueRef divisor = LLVMBuildOr(builder,
1552 div_mask,
1553 emit_data->args[1], "");
1554 LLVMValueRef result = lp_build_div(&bld_base->uint_bld,
1555 emit_data->args[0], divisor);
1556 /* udiv by zero is guaranteed to return 0xffffffff */
1557 emit_data->output[emit_data->chan] = LLVMBuildOr(builder,
1558 div_mask,
1559 result, "");
1560 }
1561
1562 /* TGSI_OPCODE_UMAX (CPU Only) */
1563 static void
1564 umax_emit_cpu(
1565 const struct lp_build_tgsi_action * action,
1566 struct lp_build_tgsi_context * bld_base,
1567 struct lp_build_emit_data * emit_data)
1568 {
1569 emit_data->output[emit_data->chan] = lp_build_max(&bld_base->uint_bld,
1570 emit_data->args[0], emit_data->args[1]);
1571 }
1572
1573 /* TGSI_OPCODE_UMIN (CPU Only) */
1574 static void
1575 umin_emit_cpu(
1576 const struct lp_build_tgsi_action * action,
1577 struct lp_build_tgsi_context * bld_base,
1578 struct lp_build_emit_data * emit_data)
1579 {
1580 emit_data->output[emit_data->chan] = lp_build_min(&bld_base->uint_bld,
1581 emit_data->args[0], emit_data->args[1]);
1582 }
1583
1584 /* TGSI_OPCODE_UMOD (CPU Only) */
1585 static void
1586 umod_emit_cpu(
1587 const struct lp_build_tgsi_action * action,
1588 struct lp_build_tgsi_context * bld_base,
1589 struct lp_build_emit_data * emit_data)
1590 {
1591 LLVMBuilderRef builder = bld_base->base.gallivm->builder;
1592 LLVMValueRef div_mask = lp_build_cmp(&bld_base->uint_bld,
1593 PIPE_FUNC_EQUAL, emit_data->args[1],
1594 bld_base->uint_bld.zero);
1595 /* We want to make sure that we never divide/mod by zero to not
1596 * generate sigfpe. We don't want to crash just because the
1597 * shader is doing something weird. */
1598 LLVMValueRef divisor = LLVMBuildOr(builder,
1599 div_mask,
1600 emit_data->args[1], "");
1601 LLVMValueRef result = lp_build_mod(&bld_base->uint_bld,
1602 emit_data->args[0], divisor);
1603 /* umod by zero is guaranteed to return 0xffffffff */
1604 emit_data->output[emit_data->chan] = LLVMBuildOr(builder,
1605 div_mask,
1606 result, "");
1607 }
1608
1609 /* TGSI_OPCODE_USET Helper (CPU Only) */
1610 static void
1611 uset_emit_cpu(
1612 const struct lp_build_tgsi_action * action,
1613 struct lp_build_tgsi_context * bld_base,
1614 struct lp_build_emit_data * emit_data,
1615 unsigned pipe_func)
1616 {
1617 LLVMValueRef cond = lp_build_cmp(&bld_base->uint_bld, pipe_func,
1618 emit_data->args[0], emit_data->args[1]);
1619 emit_data->output[emit_data->chan] = cond;
1620 }
1621
1622
1623 /* TGSI_OPCODE_USEQ (CPU Only) */
1624 static void
1625 useq_emit_cpu(
1626 const struct lp_build_tgsi_action * action,
1627 struct lp_build_tgsi_context * bld_base,
1628 struct lp_build_emit_data * emit_data)
1629 {
1630 uset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_EQUAL);
1631 }
1632
1633 /* TGSI_OPCODE_ISGE (CPU Only) */
1634 static void
1635 usge_emit_cpu(
1636 const struct lp_build_tgsi_action * action,
1637 struct lp_build_tgsi_context * bld_base,
1638 struct lp_build_emit_data * emit_data)
1639 {
1640 uset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_GEQUAL);
1641 }
1642
1643 /* TGSI_OPCODE_USHR (CPU Only) */
1644 static void
1645 ushr_emit_cpu(
1646 const struct lp_build_tgsi_action * action,
1647 struct lp_build_tgsi_context * bld_base,
1648 struct lp_build_emit_data * emit_data)
1649 {
1650 emit_data->output[emit_data->chan] = lp_build_shr(&bld_base->uint_bld,
1651 emit_data->args[0], emit_data->args[1]);
1652 }
1653
1654 /* TGSI_OPCODE_ISLT (CPU Only) */
1655 static void
1656 uslt_emit_cpu(
1657 const struct lp_build_tgsi_action * action,
1658 struct lp_build_tgsi_context * bld_base,
1659 struct lp_build_emit_data * emit_data)
1660 {
1661 uset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_LESS);
1662 }
1663
1664 /* TGSI_OPCODE_USNE (CPU Only) */
1665
1666 static void
1667 usne_emit_cpu(
1668 const struct lp_build_tgsi_action * action,
1669 struct lp_build_tgsi_context * bld_base,
1670 struct lp_build_emit_data * emit_data)
1671 {
1672 uset_emit_cpu(action, bld_base, emit_data, PIPE_FUNC_NOTEQUAL);
1673 }
1674
1675 /* TGSI_OPCODE_XOR */
1676 static void
1677 xor_emit_cpu(
1678 const struct lp_build_tgsi_action * action,
1679 struct lp_build_tgsi_context * bld_base,
1680 struct lp_build_emit_data * emit_data)
1681 {
1682 emit_data->output[emit_data->chan] = lp_build_xor(&bld_base->uint_bld,
1683 emit_data->args[0],
1684 emit_data->args[1]);
1685 }
1686
1687 void
1688 lp_set_default_actions_cpu(
1689 struct lp_build_tgsi_context * bld_base)
1690 {
1691 lp_set_default_actions(bld_base);
1692 bld_base->op_actions[TGSI_OPCODE_ABS].emit = abs_emit_cpu;
1693 bld_base->op_actions[TGSI_OPCODE_ADD].emit = add_emit_cpu;
1694 bld_base->op_actions[TGSI_OPCODE_AND].emit = and_emit_cpu;
1695 bld_base->op_actions[TGSI_OPCODE_ARL].emit = arl_emit_cpu;
1696 bld_base->op_actions[TGSI_OPCODE_ARR].emit = arr_emit_cpu;
1697 bld_base->op_actions[TGSI_OPCODE_CEIL].emit = ceil_emit_cpu;
1698 bld_base->op_actions[TGSI_OPCODE_CND].emit = cnd_emit_cpu;
1699 bld_base->op_actions[TGSI_OPCODE_COS].emit = cos_emit_cpu;
1700 bld_base->op_actions[TGSI_OPCODE_CMP].emit = cmp_emit_cpu;
1701 bld_base->op_actions[TGSI_OPCODE_DIV].emit = div_emit_cpu;
1702 bld_base->op_actions[TGSI_OPCODE_EX2].emit = ex2_emit_cpu;
1703 bld_base->op_actions[TGSI_OPCODE_EXP].emit = exp_emit_cpu;
1704 bld_base->op_actions[TGSI_OPCODE_F2I].emit = f2i_emit_cpu;
1705 bld_base->op_actions[TGSI_OPCODE_F2U].emit = f2u_emit_cpu;
1706 bld_base->op_actions[TGSI_OPCODE_FLR].emit = flr_emit_cpu;
1707
1708 bld_base->op_actions[TGSI_OPCODE_I2F].emit = i2f_emit_cpu;
1709 bld_base->op_actions[TGSI_OPCODE_IABS].emit = iabs_emit_cpu;
1710 bld_base->op_actions[TGSI_OPCODE_IDIV].emit = idiv_emit_cpu;
1711 bld_base->op_actions[TGSI_OPCODE_INEG].emit = ineg_emit_cpu;
1712 bld_base->op_actions[TGSI_OPCODE_IMAX].emit = imax_emit_cpu;
1713 bld_base->op_actions[TGSI_OPCODE_IMIN].emit = imin_emit_cpu;
1714 bld_base->op_actions[TGSI_OPCODE_ISGE].emit = isge_emit_cpu;
1715 bld_base->op_actions[TGSI_OPCODE_ISHR].emit = ishr_emit_cpu;
1716 bld_base->op_actions[TGSI_OPCODE_ISLT].emit = islt_emit_cpu;
1717 bld_base->op_actions[TGSI_OPCODE_ISSG].emit = issg_emit_cpu;
1718
1719 bld_base->op_actions[TGSI_OPCODE_LG2].emit = lg2_emit_cpu;
1720 bld_base->op_actions[TGSI_OPCODE_LOG].emit = log_emit_cpu;
1721 bld_base->op_actions[TGSI_OPCODE_MAX].emit = max_emit_cpu;
1722 bld_base->op_actions[TGSI_OPCODE_MIN].emit = min_emit_cpu;
1723 bld_base->op_actions[TGSI_OPCODE_MOD].emit = mod_emit_cpu;
1724 bld_base->op_actions[TGSI_OPCODE_NOT].emit = not_emit_cpu;
1725 bld_base->op_actions[TGSI_OPCODE_OR].emit = or_emit_cpu;
1726 bld_base->op_actions[TGSI_OPCODE_POW].emit = pow_emit_cpu;
1727 bld_base->op_actions[TGSI_OPCODE_RCP].emit = rcp_emit_cpu;
1728 bld_base->op_actions[TGSI_OPCODE_ROUND].emit = round_emit_cpu;
1729 bld_base->op_actions[TGSI_OPCODE_SEQ].emit = seq_emit_cpu;
1730 bld_base->op_actions[TGSI_OPCODE_SGE].emit = sge_emit_cpu;
1731 bld_base->op_actions[TGSI_OPCODE_SGT].emit = sgt_emit_cpu;
1732 bld_base->op_actions[TGSI_OPCODE_SIN].emit = sin_emit_cpu;
1733 bld_base->op_actions[TGSI_OPCODE_SHL].emit = shl_emit_cpu;
1734 bld_base->op_actions[TGSI_OPCODE_SLE].emit = sle_emit_cpu;
1735 bld_base->op_actions[TGSI_OPCODE_SLT].emit = slt_emit_cpu;
1736 bld_base->op_actions[TGSI_OPCODE_SNE].emit = sne_emit_cpu;
1737 bld_base->op_actions[TGSI_OPCODE_SSG].emit = ssg_emit_cpu;
1738 bld_base->op_actions[TGSI_OPCODE_SUB].emit = sub_emit_cpu;
1739 bld_base->op_actions[TGSI_OPCODE_TRUNC].emit = trunc_emit_cpu;
1740
1741 bld_base->rsq_action.emit = recip_sqrt_emit_cpu;
1742 bld_base->sqrt_action.emit = sqrt_emit_cpu;
1743
1744 bld_base->op_actions[TGSI_OPCODE_UADD].emit = uadd_emit_cpu;
1745 bld_base->op_actions[TGSI_OPCODE_UCMP].emit = ucmp_emit_cpu;
1746 bld_base->op_actions[TGSI_OPCODE_UDIV].emit = udiv_emit_cpu;
1747 bld_base->op_actions[TGSI_OPCODE_UMAX].emit = umax_emit_cpu;
1748 bld_base->op_actions[TGSI_OPCODE_UMIN].emit = umin_emit_cpu;
1749 bld_base->op_actions[TGSI_OPCODE_UMOD].emit = umod_emit_cpu;
1750 bld_base->op_actions[TGSI_OPCODE_USEQ].emit = useq_emit_cpu;
1751 bld_base->op_actions[TGSI_OPCODE_USGE].emit = usge_emit_cpu;
1752 bld_base->op_actions[TGSI_OPCODE_USHR].emit = ushr_emit_cpu;
1753 bld_base->op_actions[TGSI_OPCODE_USLT].emit = uslt_emit_cpu;
1754 bld_base->op_actions[TGSI_OPCODE_USNE].emit = usne_emit_cpu;
1755
1756 bld_base->op_actions[TGSI_OPCODE_XOR].emit = xor_emit_cpu;
1757
1758 }