blob: 292461e5eb7bd8843292355beac7a466ba792884 [file] [log] [blame]
Ian Romanick1cf43a42010-03-30 16:56:50 -07001/*
2 * Copyright © 2010 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
18 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21 * DEALINGS IN THE SOFTWARE.
22 */
23
24/**
25 * \file ir_constant_expression.cpp
26 * Evaluate and process constant valued expressions
27 *
28 * In GLSL, constant valued expressions are used in several places. These
29 * must be processed and evaluated very early in the compilation process.
30 *
31 * * Sizes of arrays
32 * * Initializers for uniforms
33 * * Initializers for \c const variables
34 */
35
Eric Anholt43ad37a2010-05-12 14:42:21 -070036#include <math.h>
Ian Romanick1cf43a42010-03-30 16:56:50 -070037#include "ir.h"
38#include "ir_visitor.h"
Eric Anholta576f9d2010-03-31 16:25:12 -100039#include "glsl_types.h"
Ian Romanick1cf43a42010-03-30 16:56:50 -070040
41/**
42 * Visitor class for evaluating constant expressions
43 */
44class ir_constant_visitor : public ir_visitor {
45public:
46 ir_constant_visitor()
47 : value(NULL)
48 {
49 /* empty */
50 }
51
52 virtual ~ir_constant_visitor()
53 {
54 /* empty */
55 }
56
57 /**
58 * \name Visit methods
59 *
60 * As typical for the visitor pattern, there must be one \c visit method for
61 * each concrete subclass of \c ir_instruction. Virtual base classes within
62 * the hierarchy should not have \c visit methods.
63 */
64 /*@{*/
65 virtual void visit(ir_variable *);
Ian Romanick1cf43a42010-03-30 16:56:50 -070066 virtual void visit(ir_function_signature *);
67 virtual void visit(ir_function *);
68 virtual void visit(ir_expression *);
Kenneth Graunke26d74cd2010-05-26 17:42:03 -070069 virtual void visit(ir_texture *);
Ian Romanick1cf43a42010-03-30 16:56:50 -070070 virtual void visit(ir_swizzle *);
Ian Romanickc7b10462010-05-19 13:20:12 +020071 virtual void visit(ir_dereference_variable *);
72 virtual void visit(ir_dereference_array *);
73 virtual void visit(ir_dereference_record *);
Ian Romanick1cf43a42010-03-30 16:56:50 -070074 virtual void visit(ir_assignment *);
75 virtual void visit(ir_constant *);
76 virtual void visit(ir_call *);
77 virtual void visit(ir_return *);
Kenneth Graunke16efab12010-06-30 10:47:34 -070078 virtual void visit(ir_discard *);
Ian Romanick1cf43a42010-03-30 16:56:50 -070079 virtual void visit(ir_if *);
Ian Romanickfad607a2010-04-05 16:16:07 -070080 virtual void visit(ir_loop *);
Ian Romanickf8e31e02010-04-05 16:28:15 -070081 virtual void visit(ir_loop_jump *);
Ian Romanick1cf43a42010-03-30 16:56:50 -070082 /*@}*/
83
84 /**
85 * Value of the constant expression.
86 *
87 * \note
88 * This field will be \c NULL if the expression is not constant valued.
89 */
90 /* FINIHSME: This cannot hold values for constant arrays or structures. */
91 ir_constant *value;
92};
93
94
95ir_constant *
96ir_instruction::constant_expression_value()
97{
98 ir_constant_visitor visitor;
99
100 this->accept(& visitor);
101 return visitor.value;
102}
103
104
105void
106ir_constant_visitor::visit(ir_variable *ir)
107{
108 (void) ir;
109 value = NULL;
110}
111
112
113void
Ian Romanick1cf43a42010-03-30 16:56:50 -0700114ir_constant_visitor::visit(ir_function_signature *ir)
115{
116 (void) ir;
117 value = NULL;
118}
119
120
121void
122ir_constant_visitor::visit(ir_function *ir)
123{
124 (void) ir;
125 value = NULL;
126}
127
Ian Romanick1cf43a42010-03-30 16:56:50 -0700128void
129ir_constant_visitor::visit(ir_expression *ir)
130{
Ian Romanick1cf43a42010-03-30 16:56:50 -0700131 value = NULL;
Kenneth Graunke6bc432e2010-07-02 17:12:23 -0700132 ir_constant *op[2] = { NULL, NULL };
Ian Romanick4daaab62010-06-11 16:08:47 -0700133 ir_constant_data data;
Eric Anholt160d0922010-04-01 18:07:08 -1000134
Kenneth Graunkec63a1db2010-07-05 22:33:35 -0700135 memset(&data, 0, sizeof(data));
136
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700137 for (unsigned operand = 0; operand < ir->get_num_operands(); operand++) {
Eric Anholtd98da972010-04-01 18:25:11 -1000138 op[operand] = ir->operands[operand]->constant_expression_value();
139 if (!op[operand])
Eric Anholt160d0922010-04-01 18:07:08 -1000140 return;
141 }
Eric Anholta576f9d2010-03-31 16:25:12 -1000142
Kenneth Graunke6fc983b2010-07-06 02:39:57 -0700143 if (op[1] != NULL)
144 assert(op[0]->type->base_type == op[1]->type->base_type);
145
Kenneth Graunkee74dcd72010-07-06 02:48:16 -0700146 bool op0_scalar = op[0]->type->is_scalar();
147 bool op1_scalar = op[1] != NULL && op[1]->type->is_scalar();
148
149 /* When iterating over a vector or matrix's components, we want to increase
150 * the loop counter. However, for scalars, we want to stay at 0.
151 */
Kenneth Graunkeacf88f22010-07-07 12:08:23 -0700152 unsigned c0_inc = op0_scalar ? 0 : 1;
153 unsigned c1_inc = op1_scalar ? 0 : 1;
Eric Anholt570dc0d2010-07-07 09:07:09 -0700154 unsigned components;
155 if (op1_scalar || !op[1]) {
156 components = op[0]->type->components();
157 } else {
158 components = op[1]->type->components();
159 }
Kenneth Graunkee74dcd72010-07-06 02:48:16 -0700160
Eric Anholta576f9d2010-03-31 16:25:12 -1000161 switch (ir->operation) {
Eric Anholt528bb852010-03-31 21:09:02 -1000162 case ir_unop_logic_not:
Ian Romanickf8b88be2010-06-11 16:23:52 -0700163 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700164 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++)
Ian Romanick4daaab62010-06-11 16:08:47 -0700165 data.b[c] = !op[0]->value.b[c];
Eric Anholt528bb852010-03-31 21:09:02 -1000166 break;
Eric Anholtaf186412010-04-06 10:53:57 -0700167
168 case ir_unop_f2i:
169 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700170 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700171 data.i[c] = op[0]->value.f[c];
Eric Anholtaf186412010-04-06 10:53:57 -0700172 }
173 break;
174 case ir_unop_i2f:
175 assert(op[0]->type->base_type == GLSL_TYPE_UINT ||
176 op[0]->type->base_type == GLSL_TYPE_INT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700177 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Eric Anholtaf186412010-04-06 10:53:57 -0700178 if (op[0]->type->base_type == GLSL_TYPE_INT)
Ian Romanick4daaab62010-06-11 16:08:47 -0700179 data.f[c] = op[0]->value.i[c];
Eric Anholtaf186412010-04-06 10:53:57 -0700180 else
Ian Romanick4daaab62010-06-11 16:08:47 -0700181 data.f[c] = op[0]->value.u[c];
Eric Anholtaf186412010-04-06 10:53:57 -0700182 }
183 break;
Ian Romanick7dc2b712010-06-07 15:10:14 -0700184 case ir_unop_b2f:
185 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700186 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700187 data.f[c] = op[0]->value.b[c] ? 1.0 : 0.0;
Ian Romanick7dc2b712010-06-07 15:10:14 -0700188 }
189 break;
190 case ir_unop_f2b:
191 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700192 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700193 data.b[c] = bool(op[0]->value.f[c]);
Ian Romanick7dc2b712010-06-07 15:10:14 -0700194 }
195 break;
Ian Romanick39d6dd32010-06-11 13:46:30 -0700196 case ir_unop_b2i:
197 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700198 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700199 data.u[c] = op[0]->value.b[c] ? 1 : 0;
Ian Romanick39d6dd32010-06-11 13:46:30 -0700200 }
201 break;
202 case ir_unop_i2b:
203 assert(op[0]->type->is_integer());
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700204 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700205 data.b[c] = bool(op[0]->value.u[c]);
Ian Romanick39d6dd32010-06-11 13:46:30 -0700206 }
207 break;
Eric Anholtaf186412010-04-06 10:53:57 -0700208
Eric Anholtd925c912010-07-01 10:37:11 -0700209 case ir_unop_fract:
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700210 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Eric Anholtd925c912010-07-01 10:37:11 -0700211 switch (ir->type->base_type) {
212 case GLSL_TYPE_UINT:
213 data.u[c] = 0;
214 break;
215 case GLSL_TYPE_INT:
216 data.i[c] = 0;
217 break;
218 case GLSL_TYPE_FLOAT:
219 data.f[c] = op[0]->value.f[c] - floor(op[0]->value.f[c]);
220 break;
221 default:
222 assert(0);
223 }
224 }
225 break;
226
Eric Anholt43ad37a2010-05-12 14:42:21 -0700227 case ir_unop_neg:
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700228 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanickf8b88be2010-06-11 16:23:52 -0700229 switch (ir->type->base_type) {
Eric Anholt43ad37a2010-05-12 14:42:21 -0700230 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700231 data.u[c] = -op[0]->value.u[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700232 break;
233 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700234 data.i[c] = -op[0]->value.i[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700235 break;
236 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700237 data.f[c] = -op[0]->value.f[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700238 break;
239 default:
240 assert(0);
241 }
242 }
243 break;
244
245 case ir_unop_abs:
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700246 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanickf8b88be2010-06-11 16:23:52 -0700247 switch (ir->type->base_type) {
Eric Anholt43ad37a2010-05-12 14:42:21 -0700248 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700249 data.u[c] = op[0]->value.u[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700250 break;
251 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700252 data.i[c] = op[0]->value.i[c];
253 if (data.i[c] < 0)
254 data.i[c] = -data.i[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700255 break;
256 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700257 data.f[c] = fabs(op[0]->value.f[c]);
Eric Anholt43ad37a2010-05-12 14:42:21 -0700258 break;
259 default:
260 assert(0);
261 }
262 }
263 break;
264
Kenneth Graunke14b7b262010-07-08 23:11:14 -0700265 case ir_unop_sign:
266 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
267 switch (ir->type->base_type) {
268 case GLSL_TYPE_UINT:
269 data.u[c] = op[0]->value.i[c] > 0;
270 break;
271 case GLSL_TYPE_INT:
272 data.i[c] = (op[0]->value.i[c] > 0) - (op[0]->value.i[c] < 0);
273 break;
274 case GLSL_TYPE_FLOAT:
275 data.f[c] = float((op[0]->value.f[c] > 0)-(op[0]->value.f[c] < 0));
276 break;
277 default:
278 assert(0);
279 }
280 }
281 break;
282
Eric Anholt43ad37a2010-05-12 14:42:21 -0700283 case ir_unop_rcp:
284 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700285 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanickf8b88be2010-06-11 16:23:52 -0700286 switch (ir->type->base_type) {
Eric Anholt43ad37a2010-05-12 14:42:21 -0700287 case GLSL_TYPE_UINT:
288 if (op[0]->value.u[c] != 0.0)
Ian Romanick4daaab62010-06-11 16:08:47 -0700289 data.u[c] = 1 / op[0]->value.u[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700290 break;
291 case GLSL_TYPE_INT:
292 if (op[0]->value.i[c] != 0.0)
Ian Romanick4daaab62010-06-11 16:08:47 -0700293 data.i[c] = 1 / op[0]->value.i[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700294 break;
295 case GLSL_TYPE_FLOAT:
296 if (op[0]->value.f[c] != 0.0)
Ian Romanick4daaab62010-06-11 16:08:47 -0700297 data.f[c] = 1.0 / op[0]->value.f[c];
Eric Anholt43ad37a2010-05-12 14:42:21 -0700298 break;
299 default:
300 assert(0);
301 }
302 }
303 break;
304
305 case ir_unop_rsq:
306 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700307 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700308 data.f[c] = 1.0 / sqrtf(op[0]->value.f[c]);
Eric Anholt43ad37a2010-05-12 14:42:21 -0700309 }
310 break;
311
312 case ir_unop_sqrt:
313 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700314 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700315 data.f[c] = sqrtf(op[0]->value.f[c]);
Eric Anholt43ad37a2010-05-12 14:42:21 -0700316 }
317 break;
318
319 case ir_unop_exp:
320 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700321 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700322 data.f[c] = expf(op[0]->value.f[c]);
Eric Anholt43ad37a2010-05-12 14:42:21 -0700323 }
324 break;
325
Kenneth Graunkeaca01ed2010-07-08 23:14:32 -0700326 case ir_unop_exp2:
327 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
328 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
329 data.f[c] = exp2f(op[0]->value.f[c]);
330 }
331 break;
332
Eric Anholt43ad37a2010-05-12 14:42:21 -0700333 case ir_unop_log:
334 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700335 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700336 data.f[c] = logf(op[0]->value.f[c]);
Eric Anholt43ad37a2010-05-12 14:42:21 -0700337 }
338 break;
339
Kenneth Graunkecb639292010-07-08 23:18:09 -0700340 case ir_unop_log2:
341 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
342 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
343 data.f[c] = log2f(op[0]->value.f[c]);
344 }
345 break;
346
Kenneth Graunked6a32d42010-06-09 15:22:35 -0700347 case ir_unop_dFdx:
348 case ir_unop_dFdy:
349 assert(op[0]->type->base_type == GLSL_TYPE_FLOAT);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700350 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick4daaab62010-06-11 16:08:47 -0700351 data.f[c] = 0.0;
Kenneth Graunked6a32d42010-06-09 15:22:35 -0700352 }
353 break;
354
Kenneth Graunke3f4a0b82010-07-05 21:15:32 -0700355 case ir_binop_dot:
356 assert(op[0]->type->is_vector() && op[1]->type->is_vector());
357 data.f[0] = 0;
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700358 for (unsigned c = 0; c < op[0]->type->components(); c++) {
Kenneth Graunke3f4a0b82010-07-05 21:15:32 -0700359 switch (ir->operands[0]->type->base_type) {
360 case GLSL_TYPE_UINT:
361 data.u[0] += op[0]->value.u[c] * op[1]->value.u[c];
362 break;
363 case GLSL_TYPE_INT:
364 data.i[0] += op[0]->value.i[c] * op[1]->value.i[c];
365 break;
366 case GLSL_TYPE_FLOAT:
367 data.f[0] += op[0]->value.f[c] * op[1]->value.f[c];
368 break;
369 default:
370 assert(0);
371 }
372 }
373
374 break;
Eric Anholtd251b922010-04-01 18:35:42 -1000375 case ir_binop_add:
Kenneth Graunkee74dcd72010-07-06 02:48:16 -0700376 assert(op[0]->type == op[1]->type || op0_scalar || op1_scalar);
377 for (unsigned c = 0, c0 = 0, c1 = 0;
378 c < components;
379 c0 += c0_inc, c1 += c1_inc, c++) {
380
381 switch (ir->operands[0]->type->base_type) {
382 case GLSL_TYPE_UINT:
383 data.u[c] = op[0]->value.u[c0] + op[1]->value.u[c1];
384 break;
385 case GLSL_TYPE_INT:
386 data.i[c] = op[0]->value.i[c0] + op[1]->value.i[c1];
387 break;
388 case GLSL_TYPE_FLOAT:
389 data.f[c] = op[0]->value.f[c0] + op[1]->value.f[c1];
390 break;
391 default:
392 assert(0);
Eric Anholtd251b922010-04-01 18:35:42 -1000393 }
Kenneth Graunkee74dcd72010-07-06 02:48:16 -0700394 }
Ian Romanickf8b88be2010-06-11 16:23:52 -0700395
Eric Anholtd251b922010-04-01 18:35:42 -1000396 break;
397 case ir_binop_sub:
Kenneth Graunke97b44f02010-07-06 02:53:29 -0700398 assert(op[0]->type == op[1]->type || op0_scalar || op1_scalar);
399 for (unsigned c = 0, c0 = 0, c1 = 0;
400 c < components;
401 c0 += c0_inc, c1 += c1_inc, c++) {
402
403 switch (ir->operands[0]->type->base_type) {
404 case GLSL_TYPE_UINT:
405 data.u[c] = op[0]->value.u[c0] - op[1]->value.u[c1];
406 break;
407 case GLSL_TYPE_INT:
408 data.i[c] = op[0]->value.i[c0] - op[1]->value.i[c1];
409 break;
410 case GLSL_TYPE_FLOAT:
411 data.f[c] = op[0]->value.f[c0] - op[1]->value.f[c1];
412 break;
413 default:
414 assert(0);
Eric Anholtd251b922010-04-01 18:35:42 -1000415 }
Kenneth Graunke97b44f02010-07-06 02:53:29 -0700416 }
Ian Romanickf8b88be2010-06-11 16:23:52 -0700417
Eric Anholtd251b922010-04-01 18:35:42 -1000418 break;
Eric Anholta576f9d2010-03-31 16:25:12 -1000419 case ir_binop_mul:
Kenneth Graunkecf80a4d2010-07-05 23:19:56 -0700420 /* Check for equal types, or unequal types involving scalars */
Kenneth Graunke37b3f9d2010-07-06 03:01:15 -0700421 if ((op[0]->type == op[1]->type && !op[0]->type->is_matrix())
422 || op0_scalar || op1_scalar) {
423 for (unsigned c = 0, c0 = 0, c1 = 0;
424 c < components;
425 c0 += c0_inc, c1 += c1_inc, c++) {
426
Eric Anholtd98da972010-04-01 18:25:11 -1000427 switch (ir->operands[0]->type->base_type) {
428 case GLSL_TYPE_UINT:
Kenneth Graunke37b3f9d2010-07-06 03:01:15 -0700429 data.u[c] = op[0]->value.u[c0] * op[1]->value.u[c1];
Eric Anholtd98da972010-04-01 18:25:11 -1000430 break;
431 case GLSL_TYPE_INT:
Kenneth Graunke37b3f9d2010-07-06 03:01:15 -0700432 data.i[c] = op[0]->value.i[c0] * op[1]->value.i[c1];
Eric Anholtd98da972010-04-01 18:25:11 -1000433 break;
434 case GLSL_TYPE_FLOAT:
Kenneth Graunke37b3f9d2010-07-06 03:01:15 -0700435 data.f[c] = op[0]->value.f[c0] * op[1]->value.f[c1];
Eric Anholtd98da972010-04-01 18:25:11 -1000436 break;
437 default:
438 assert(0);
439 }
Eric Anholta576f9d2010-03-31 16:25:12 -1000440 }
Kenneth Graunkecf80a4d2010-07-05 23:19:56 -0700441 } else {
442 assert(op[0]->type->is_matrix() || op[1]->type->is_matrix());
443
444 /* Multiply an N-by-M matrix with an M-by-P matrix. Since either
445 * matrix can be a GLSL vector, either N or P can be 1.
446 *
447 * For vec*mat, the vector is treated as a row vector. This
448 * means the vector is a 1-row x M-column matrix.
449 *
450 * For mat*vec, the vector is treated as a column vector. Since
451 * matrix_columns is 1 for vectors, this just works.
452 */
453 const unsigned n = op[0]->type->is_vector()
454 ? 1 : op[0]->type->vector_elements;
455 const unsigned m = op[1]->type->vector_elements;
456 const unsigned p = op[1]->type->matrix_columns;
457 for (unsigned j = 0; j < p; j++) {
458 for (unsigned i = 0; i < n; i++) {
459 for (unsigned k = 0; k < m; k++) {
460 data.f[i+n*j] += op[0]->value.f[i+n*k]*op[1]->value.f[k+m*j];
461 }
462 }
463 }
464 }
Ian Romanickf8b88be2010-06-11 16:23:52 -0700465
Eric Anholta576f9d2010-03-31 16:25:12 -1000466 break;
Eric Anholtd251b922010-04-01 18:35:42 -1000467 case ir_binop_div:
Kenneth Graunkedad35eb2010-07-06 02:56:36 -0700468 assert(op[0]->type == op[1]->type || op0_scalar || op1_scalar);
469 for (unsigned c = 0, c0 = 0, c1 = 0;
470 c < components;
471 c0 += c0_inc, c1 += c1_inc, c++) {
472
473 switch (ir->operands[0]->type->base_type) {
474 case GLSL_TYPE_UINT:
475 data.u[c] = op[0]->value.u[c0] / op[1]->value.u[c1];
476 break;
477 case GLSL_TYPE_INT:
478 data.i[c] = op[0]->value.i[c0] / op[1]->value.i[c1];
479 break;
480 case GLSL_TYPE_FLOAT:
481 data.f[c] = op[0]->value.f[c0] / op[1]->value.f[c1];
482 break;
483 default:
484 assert(0);
Eric Anholtd251b922010-04-01 18:35:42 -1000485 }
Kenneth Graunkedad35eb2010-07-06 02:56:36 -0700486 }
Ian Romanickf8b88be2010-06-11 16:23:52 -0700487
Eric Anholtd251b922010-04-01 18:35:42 -1000488 break;
Eric Anholta576f9d2010-03-31 16:25:12 -1000489 case ir_binop_logic_and:
Ian Romanickf8b88be2010-06-11 16:23:52 -0700490 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700491 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++)
Ian Romanick4daaab62010-06-11 16:08:47 -0700492 data.b[c] = op[0]->value.b[c] && op[1]->value.b[c];
Eric Anholta576f9d2010-03-31 16:25:12 -1000493 break;
Eric Anholtd251b922010-04-01 18:35:42 -1000494 case ir_binop_logic_xor:
Ian Romanickf8b88be2010-06-11 16:23:52 -0700495 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700496 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++)
Ian Romanick4daaab62010-06-11 16:08:47 -0700497 data.b[c] = op[0]->value.b[c] ^ op[1]->value.b[c];
Eric Anholtd251b922010-04-01 18:35:42 -1000498 break;
Eric Anholta576f9d2010-03-31 16:25:12 -1000499 case ir_binop_logic_or:
Ian Romanickf8b88be2010-06-11 16:23:52 -0700500 assert(op[0]->type->base_type == GLSL_TYPE_BOOL);
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700501 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++)
Ian Romanick4daaab62010-06-11 16:08:47 -0700502 data.b[c] = op[0]->value.b[c] || op[1]->value.b[c];
Eric Anholta576f9d2010-03-31 16:25:12 -1000503 break;
Eric Anholt85171c22010-04-06 09:55:45 -0700504
505 case ir_binop_less:
Eric Anholt85171c22010-04-06 09:55:45 -0700506 switch (ir->operands[0]->type->base_type) {
507 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700508 data.b[0] = op[0]->value.u[0] < op[1]->value.u[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700509 break;
510 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700511 data.b[0] = op[0]->value.i[0] < op[1]->value.i[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700512 break;
513 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700514 data.b[0] = op[0]->value.f[0] < op[1]->value.f[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700515 break;
516 default:
517 assert(0);
518 }
519 break;
520 case ir_binop_greater:
Eric Anholt85171c22010-04-06 09:55:45 -0700521 switch (ir->operands[0]->type->base_type) {
522 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700523 data.b[0] = op[0]->value.u[0] > op[1]->value.u[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700524 break;
525 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700526 data.b[0] = op[0]->value.i[0] > op[1]->value.i[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700527 break;
528 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700529 data.b[0] = op[0]->value.f[0] > op[1]->value.f[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700530 break;
531 default:
532 assert(0);
533 }
534 break;
535 case ir_binop_lequal:
Eric Anholt85171c22010-04-06 09:55:45 -0700536 switch (ir->operands[0]->type->base_type) {
537 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700538 data.b[0] = op[0]->value.u[0] <= op[1]->value.u[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700539 break;
540 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700541 data.b[0] = op[0]->value.i[0] <= op[1]->value.i[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700542 break;
543 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700544 data.b[0] = op[0]->value.f[0] <= op[1]->value.f[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700545 break;
546 default:
547 assert(0);
548 }
549 break;
550 case ir_binop_gequal:
Eric Anholt85171c22010-04-06 09:55:45 -0700551 switch (ir->operands[0]->type->base_type) {
552 case GLSL_TYPE_UINT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700553 data.b[0] = op[0]->value.u[0] >= op[1]->value.u[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700554 break;
555 case GLSL_TYPE_INT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700556 data.b[0] = op[0]->value.i[0] >= op[1]->value.i[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700557 break;
558 case GLSL_TYPE_FLOAT:
Ian Romanick4daaab62010-06-11 16:08:47 -0700559 data.b[0] = op[0]->value.f[0] >= op[1]->value.f[0];
Eric Anholt85171c22010-04-06 09:55:45 -0700560 break;
561 default:
562 assert(0);
563 }
564 break;
565
Eric Anholtec1949e2010-04-06 10:02:27 -0700566 case ir_binop_equal:
Ian Romanick083d75a2010-06-11 16:20:43 -0700567 data.b[0] = true;
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700568 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick083d75a2010-06-11 16:20:43 -0700569 switch (ir->operands[0]->type->base_type) {
570 case GLSL_TYPE_UINT:
571 data.b[0] = data.b[0] && op[0]->value.u[c] == op[1]->value.u[c];
572 break;
573 case GLSL_TYPE_INT:
574 data.b[0] = data.b[0] && op[0]->value.i[c] == op[1]->value.i[c];
575 break;
576 case GLSL_TYPE_FLOAT:
577 data.b[0] = data.b[0] && op[0]->value.f[c] == op[1]->value.f[c];
578 break;
579 case GLSL_TYPE_BOOL:
580 data.b[0] = data.b[0] && op[0]->value.b[c] == op[1]->value.b[c];
581 break;
582 default:
583 assert(0);
Eric Anholtec1949e2010-04-06 10:02:27 -0700584 }
585 }
586 break;
587 case ir_binop_nequal:
Ian Romanick083d75a2010-06-11 16:20:43 -0700588 data.b[0] = false;
Kenneth Graunkef14e5962010-07-06 16:26:11 -0700589 for (unsigned c = 0; c < ir->operands[0]->type->components(); c++) {
Ian Romanick083d75a2010-06-11 16:20:43 -0700590 switch (ir->operands[0]->type->base_type) {
591 case GLSL_TYPE_UINT:
592 data.b[0] = data.b[0] || op[0]->value.u[c] != op[1]->value.u[c];
593 break;
594 case GLSL_TYPE_INT:
595 data.b[0] = data.b[0] || op[0]->value.i[c] != op[1]->value.i[c];
596 break;
597 case GLSL_TYPE_FLOAT:
598 data.b[0] = data.b[0] || op[0]->value.f[c] != op[1]->value.f[c];
599 break;
600 case GLSL_TYPE_BOOL:
601 data.b[0] = data.b[0] || op[0]->value.b[c] != op[1]->value.b[c];
602 break;
603 default:
604 assert(0);
Eric Anholtec1949e2010-04-06 10:02:27 -0700605 }
606 }
607 break;
608
Eric Anholta576f9d2010-03-31 16:25:12 -1000609 default:
Ian Romanickf8b88be2010-06-11 16:23:52 -0700610 /* FINISHME: Should handle all expression types. */
611 return;
Eric Anholta576f9d2010-03-31 16:25:12 -1000612 }
Eric Anholtd98da972010-04-01 18:25:11 -1000613
Eric Anholt6b01b502010-06-24 15:18:39 -0700614 void *ctx = talloc_parent(ir);
Carl Worth1660a292010-06-23 18:11:51 -0700615 this->value = new(ctx) ir_constant(ir->type, &data);
Ian Romanick1cf43a42010-03-30 16:56:50 -0700616}
617
618
619void
Kenneth Graunke26d74cd2010-05-26 17:42:03 -0700620ir_constant_visitor::visit(ir_texture *ir)
621{
622 // FINISHME: Do stuff with texture lookups
623 (void) ir;
624 value = NULL;
625}
626
627
628void
Ian Romanick1cf43a42010-03-30 16:56:50 -0700629ir_constant_visitor::visit(ir_swizzle *ir)
630{
Ian Romanickc2ba6192010-06-11 12:30:28 -0700631 ir_constant *v = ir->val->constant_expression_value();
632
633 this->value = NULL;
634
635 if (v != NULL) {
Ian Romanick0bb70a32010-06-11 15:49:49 -0700636 ir_constant_data data;
Ian Romanickc2ba6192010-06-11 12:30:28 -0700637
638 const unsigned swiz_idx[4] = {
639 ir->mask.x, ir->mask.y, ir->mask.z, ir->mask.w
640 };
641
642 for (unsigned i = 0; i < ir->mask.num_components; i++) {
643 switch (v->type->base_type) {
644 case GLSL_TYPE_UINT:
645 case GLSL_TYPE_INT: data.u[i] = v->value.u[swiz_idx[i]]; break;
646 case GLSL_TYPE_FLOAT: data.f[i] = v->value.f[swiz_idx[i]]; break;
647 case GLSL_TYPE_BOOL: data.b[i] = v->value.b[swiz_idx[i]]; break;
648 default: assert(!"Should not get here."); break;
649 }
650 }
651
Eric Anholt6b01b502010-06-24 15:18:39 -0700652 void *ctx = talloc_parent(ir);
Carl Worth1660a292010-06-23 18:11:51 -0700653 this->value = new(ctx) ir_constant(ir->type, &data);
Ian Romanickc2ba6192010-06-11 12:30:28 -0700654 }
Ian Romanick1cf43a42010-03-30 16:56:50 -0700655}
656
657
658void
Ian Romanickc7b10462010-05-19 13:20:12 +0200659ir_constant_visitor::visit(ir_dereference_variable *ir)
Ian Romanick1cf43a42010-03-30 16:56:50 -0700660{
Ian Romanick1cf43a42010-03-30 16:56:50 -0700661 value = NULL;
Eric Anholt326c6762010-04-06 10:30:54 -0700662
Ian Romanickc7b10462010-05-19 13:20:12 +0200663 ir_variable *var = ir->variable_referenced();
664 if (var && var->constant_value)
Ian Romanickca088cc2010-07-06 17:41:02 -0700665 value = var->constant_value->clone(NULL);
Ian Romanickc7b10462010-05-19 13:20:12 +0200666}
667
668
669void
670ir_constant_visitor::visit(ir_dereference_array *ir)
671{
Carl Worth1660a292010-06-23 18:11:51 -0700672 void *ctx = talloc_parent(ir);
Ian Romanick9b92af92010-06-11 12:20:12 -0700673 ir_constant *array = ir->array->constant_expression_value();
674 ir_constant *idx = ir->array_index->constant_expression_value();
675
676 this->value = NULL;
677
678 if ((array != NULL) && (idx != NULL)) {
679 if (array->type->is_matrix()) {
680 /* Array access of a matrix results in a vector.
681 */
682 const unsigned column = idx->value.u[0];
683
684 const glsl_type *const column_type = array->type->column_type();
685
686 /* Offset in the constant matrix to the first element of the column
687 * to be extracted.
688 */
689 const unsigned mat_idx = column * column_type->vector_elements;
690
Ian Romanick0bb70a32010-06-11 15:49:49 -0700691 ir_constant_data data;
Ian Romanick9b92af92010-06-11 12:20:12 -0700692
693 switch (column_type->base_type) {
694 case GLSL_TYPE_UINT:
695 case GLSL_TYPE_INT:
696 for (unsigned i = 0; i < column_type->vector_elements; i++)
697 data.u[i] = array->value.u[mat_idx + i];
698
699 break;
700
701 case GLSL_TYPE_FLOAT:
702 for (unsigned i = 0; i < column_type->vector_elements; i++)
703 data.f[i] = array->value.f[mat_idx + i];
704
705 break;
706
707 default:
708 assert(!"Should not get here.");
709 break;
710 }
711
Carl Worth1660a292010-06-23 18:11:51 -0700712 this->value = new(ctx) ir_constant(column_type, &data);
Ian Romanick9b92af92010-06-11 12:20:12 -0700713 } else if (array->type->is_vector()) {
714 const unsigned component = idx->value.u[0];
715
Carl Worth1660a292010-06-23 18:11:51 -0700716 this->value = new(ctx) ir_constant(array, component);
Ian Romanick9b92af92010-06-11 12:20:12 -0700717 } else {
718 /* FINISHME: Handle access of constant arrays. */
719 }
720 }
Ian Romanickc7b10462010-05-19 13:20:12 +0200721}
722
723
724void
725ir_constant_visitor::visit(ir_dereference_record *ir)
726{
Ian Romanick253dede2010-06-09 17:30:19 -0700727 ir_constant *v = ir->record->constant_expression_value();
728
729 this->value = (v != NULL) ? v->get_record_field(ir->field) : NULL;
Ian Romanick1cf43a42010-03-30 16:56:50 -0700730}
731
732
733void
734ir_constant_visitor::visit(ir_assignment *ir)
735{
736 (void) ir;
737 value = NULL;
738}
739
740
741void
742ir_constant_visitor::visit(ir_constant *ir)
743{
744 value = ir;
745}
746
747
748void
749ir_constant_visitor::visit(ir_call *ir)
750{
751 (void) ir;
752 value = NULL;
753}
754
755
756void
757ir_constant_visitor::visit(ir_return *ir)
758{
759 (void) ir;
760 value = NULL;
761}
762
763
764void
Kenneth Graunke16efab12010-06-30 10:47:34 -0700765ir_constant_visitor::visit(ir_discard *ir)
766{
767 (void) ir;
768 value = NULL;
769}
770
771
772void
Ian Romanick1cf43a42010-03-30 16:56:50 -0700773ir_constant_visitor::visit(ir_if *ir)
774{
775 (void) ir;
776 value = NULL;
777}
Ian Romanickfad607a2010-04-05 16:16:07 -0700778
779
780void
781ir_constant_visitor::visit(ir_loop *ir)
782{
783 (void) ir;
784 value = NULL;
785}
Ian Romanickf8e31e02010-04-05 16:28:15 -0700786
787
788void
789ir_constant_visitor::visit(ir_loop_jump *ir)
790{
791 (void) ir;
792 value = NULL;
793}