0b74b7e5aa3c1eb1b980dce45dcbf6cb87009455
[mesa.git] / src / compiler / glsl / glsl_to_nir.cpp
1 /*
2 * Copyright © 2014 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 DEALINGS
21 * IN THE SOFTWARE.
22 *
23 * Authors:
24 * Connor Abbott (cwabbott0@gmail.com)
25 *
26 */
27
28 #include "glsl_to_nir.h"
29 #include "ir_visitor.h"
30 #include "ir_hierarchical_visitor.h"
31 #include "ir.h"
32 #include "compiler/nir/nir_control_flow.h"
33 #include "compiler/nir/nir_builder.h"
34 #include "main/imports.h"
35
36 /*
37 * pass to lower GLSL IR to NIR
38 *
39 * This will lower variable dereferences to loads/stores of corresponding
40 * variables in NIR - the variables will be converted to registers in a later
41 * pass.
42 */
43
44 namespace {
45
46 class nir_visitor : public ir_visitor
47 {
48 public:
49 nir_visitor(nir_shader *shader);
50 ~nir_visitor();
51
52 virtual void visit(ir_variable *);
53 virtual void visit(ir_function *);
54 virtual void visit(ir_function_signature *);
55 virtual void visit(ir_loop *);
56 virtual void visit(ir_if *);
57 virtual void visit(ir_discard *);
58 virtual void visit(ir_loop_jump *);
59 virtual void visit(ir_return *);
60 virtual void visit(ir_call *);
61 virtual void visit(ir_assignment *);
62 virtual void visit(ir_emit_vertex *);
63 virtual void visit(ir_end_primitive *);
64 virtual void visit(ir_expression *);
65 virtual void visit(ir_swizzle *);
66 virtual void visit(ir_texture *);
67 virtual void visit(ir_constant *);
68 virtual void visit(ir_dereference_variable *);
69 virtual void visit(ir_dereference_record *);
70 virtual void visit(ir_dereference_array *);
71 virtual void visit(ir_barrier *);
72
73 void create_function(ir_function_signature *ir);
74
75 private:
76 void add_instr(nir_instr *instr, unsigned num_components, unsigned bit_size);
77 nir_ssa_def *evaluate_rvalue(ir_rvalue *ir);
78
79 nir_alu_instr *emit(nir_op op, unsigned dest_size, nir_ssa_def **srcs);
80 nir_alu_instr *emit(nir_op op, unsigned dest_size, nir_ssa_def *src1);
81 nir_alu_instr *emit(nir_op op, unsigned dest_size, nir_ssa_def *src1,
82 nir_ssa_def *src2);
83 nir_alu_instr *emit(nir_op op, unsigned dest_size, nir_ssa_def *src1,
84 nir_ssa_def *src2, nir_ssa_def *src3);
85
86 bool supports_ints;
87
88 nir_shader *shader;
89 nir_function_impl *impl;
90 nir_builder b;
91 nir_ssa_def *result; /* result of the expression tree last visited */
92
93 nir_deref_var *evaluate_deref(nir_instr *mem_ctx, ir_instruction *ir);
94
95 /* the head of the dereference chain we're creating */
96 nir_deref_var *deref_head;
97 /* the tail of the dereference chain we're creating */
98 nir_deref *deref_tail;
99
100 nir_variable *var; /* variable created by ir_variable visitor */
101
102 /* whether the IR we're operating on is per-function or global */
103 bool is_global;
104
105 /* map of ir_variable -> nir_variable */
106 struct hash_table *var_table;
107
108 /* map of ir_function_signature -> nir_function_overload */
109 struct hash_table *overload_table;
110 };
111
112 /*
113 * This visitor runs before the main visitor, calling create_function() for
114 * each function so that the main visitor can resolve forward references in
115 * calls.
116 */
117
118 class nir_function_visitor : public ir_hierarchical_visitor
119 {
120 public:
121 nir_function_visitor(nir_visitor *v) : visitor(v)
122 {
123 }
124 virtual ir_visitor_status visit_enter(ir_function *);
125
126 private:
127 nir_visitor *visitor;
128 };
129
130 } /* end of anonymous namespace */
131
132 nir_shader *
133 glsl_to_nir(const struct gl_shader_program *shader_prog,
134 gl_shader_stage stage,
135 const nir_shader_compiler_options *options)
136 {
137 struct gl_linked_shader *sh = shader_prog->_LinkedShaders[stage];
138
139 nir_shader *shader = nir_shader_create(NULL, stage, options,
140 &sh->Program->info);
141
142 nir_visitor v1(shader);
143 nir_function_visitor v2(&v1);
144 v2.run(sh->ir);
145 visit_exec_list(sh->ir, &v1);
146
147 shader->info->name = ralloc_asprintf(shader, "GLSL%d", shader_prog->Name);
148 if (shader_prog->Label)
149 shader->info->label = ralloc_strdup(shader, shader_prog->Label);
150 shader->info->num_textures = util_last_bit(sh->Program->SamplersUsed);
151 shader->info->num_ubos = sh->NumUniformBlocks;
152 shader->info->num_ssbos = sh->NumShaderStorageBlocks;
153 shader->info->clip_distance_array_size = sh->Program->ClipDistanceArraySize;
154 shader->info->cull_distance_array_size = sh->Program->CullDistanceArraySize;
155 shader->info->separate_shader = shader_prog->SeparateShader;
156 shader->info->has_transform_feedback_varyings =
157 shader_prog->TransformFeedback.NumVarying > 0;
158
159 return shader;
160 }
161
162 nir_visitor::nir_visitor(nir_shader *shader)
163 {
164 this->supports_ints = shader->options->native_integers;
165 this->shader = shader;
166 this->is_global = true;
167 this->var_table = _mesa_hash_table_create(NULL, _mesa_hash_pointer,
168 _mesa_key_pointer_equal);
169 this->overload_table = _mesa_hash_table_create(NULL, _mesa_hash_pointer,
170 _mesa_key_pointer_equal);
171 this->result = NULL;
172 this->impl = NULL;
173 this->var = NULL;
174 this->deref_head = NULL;
175 this->deref_tail = NULL;
176 memset(&this->b, 0, sizeof(this->b));
177 }
178
179 nir_visitor::~nir_visitor()
180 {
181 _mesa_hash_table_destroy(this->var_table, NULL);
182 _mesa_hash_table_destroy(this->overload_table, NULL);
183 }
184
185 nir_deref_var *
186 nir_visitor::evaluate_deref(nir_instr *mem_ctx, ir_instruction *ir)
187 {
188 ir->accept(this);
189 ralloc_steal(mem_ctx, this->deref_head);
190 return this->deref_head;
191 }
192
193 static nir_constant *
194 constant_copy(ir_constant *ir, void *mem_ctx)
195 {
196 if (ir == NULL)
197 return NULL;
198
199 nir_constant *ret = ralloc(mem_ctx, nir_constant);
200
201 const unsigned rows = ir->type->vector_elements;
202 const unsigned cols = ir->type->matrix_columns;
203 unsigned i;
204
205 ret->num_elements = 0;
206 switch (ir->type->base_type) {
207 case GLSL_TYPE_UINT:
208 for (unsigned c = 0; c < cols; c++) {
209 for (unsigned r = 0; r < rows; r++)
210 ret->values[c].u32[r] = ir->value.u[c * rows + r];
211 }
212 break;
213
214 case GLSL_TYPE_INT:
215 for (unsigned c = 0; c < cols; c++) {
216 for (unsigned r = 0; r < rows; r++)
217 ret->values[c].i32[r] = ir->value.i[c * rows + r];
218 }
219 break;
220
221 case GLSL_TYPE_FLOAT:
222 for (unsigned c = 0; c < cols; c++) {
223 for (unsigned r = 0; r < rows; r++)
224 ret->values[c].f32[r] = ir->value.f[c * rows + r];
225 }
226 break;
227
228 case GLSL_TYPE_DOUBLE:
229 for (unsigned c = 0; c < cols; c++) {
230 for (unsigned r = 0; r < rows; r++)
231 ret->values[c].f64[r] = ir->value.d[c * rows + r];
232 }
233 break;
234
235 case GLSL_TYPE_BOOL:
236 for (unsigned c = 0; c < cols; c++) {
237 for (unsigned r = 0; r < rows; r++) {
238 ret->values[c].u32[r] = ir->value.b[c * rows + r] ?
239 NIR_TRUE : NIR_FALSE;
240 }
241 }
242 break;
243
244 case GLSL_TYPE_STRUCT:
245 ret->elements = ralloc_array(mem_ctx, nir_constant *,
246 ir->type->length);
247 ret->num_elements = ir->type->length;
248
249 i = 0;
250 foreach_in_list(ir_constant, field, &ir->components) {
251 ret->elements[i] = constant_copy(field, mem_ctx);
252 i++;
253 }
254 break;
255
256 case GLSL_TYPE_ARRAY:
257 ret->elements = ralloc_array(mem_ctx, nir_constant *,
258 ir->type->length);
259 ret->num_elements = ir->type->length;
260
261 for (i = 0; i < ir->type->length; i++)
262 ret->elements[i] = constant_copy(ir->array_elements[i], mem_ctx);
263 break;
264
265 default:
266 unreachable("not reached");
267 }
268
269 return ret;
270 }
271
272 void
273 nir_visitor::visit(ir_variable *ir)
274 {
275 nir_variable *var = ralloc(shader, nir_variable);
276 var->type = ir->type;
277 var->name = ralloc_strdup(var, ir->name);
278
279 var->data.read_only = ir->data.read_only;
280 var->data.centroid = ir->data.centroid;
281 var->data.sample = ir->data.sample;
282 var->data.patch = ir->data.patch;
283 var->data.invariant = ir->data.invariant;
284 var->data.location = ir->data.location;
285
286 switch(ir->data.mode) {
287 case ir_var_auto:
288 case ir_var_temporary:
289 if (is_global)
290 var->data.mode = nir_var_global;
291 else
292 var->data.mode = nir_var_local;
293 break;
294
295 case ir_var_function_in:
296 case ir_var_function_out:
297 case ir_var_function_inout:
298 case ir_var_const_in:
299 var->data.mode = nir_var_local;
300 break;
301
302 case ir_var_shader_in:
303 if (shader->stage == MESA_SHADER_FRAGMENT &&
304 ir->data.location == VARYING_SLOT_FACE) {
305 /* For whatever reason, GLSL IR makes gl_FrontFacing an input */
306 var->data.location = SYSTEM_VALUE_FRONT_FACE;
307 var->data.mode = nir_var_system_value;
308 } else if (shader->stage == MESA_SHADER_GEOMETRY &&
309 ir->data.location == VARYING_SLOT_PRIMITIVE_ID) {
310 /* For whatever reason, GLSL IR makes gl_PrimitiveIDIn an input */
311 var->data.location = SYSTEM_VALUE_PRIMITIVE_ID;
312 var->data.mode = nir_var_system_value;
313 } else {
314 var->data.mode = nir_var_shader_in;
315 }
316 break;
317
318 case ir_var_shader_out:
319 var->data.mode = nir_var_shader_out;
320 break;
321
322 case ir_var_uniform:
323 var->data.mode = nir_var_uniform;
324 break;
325
326 case ir_var_shader_storage:
327 var->data.mode = nir_var_shader_storage;
328 break;
329
330 case ir_var_system_value:
331 var->data.mode = nir_var_system_value;
332 break;
333
334 default:
335 unreachable("not reached");
336 }
337
338 var->data.interpolation = ir->data.interpolation;
339 var->data.origin_upper_left = ir->data.origin_upper_left;
340 var->data.pixel_center_integer = ir->data.pixel_center_integer;
341 var->data.explicit_location = ir->data.explicit_location;
342 var->data.explicit_index = ir->data.explicit_index;
343 var->data.explicit_binding = ir->data.explicit_binding;
344 var->data.has_initializer = ir->data.has_initializer;
345 var->data.compact = false;
346 var->data.location_frac = ir->data.location_frac;
347
348 switch (ir->data.depth_layout) {
349 case ir_depth_layout_none:
350 var->data.depth_layout = nir_depth_layout_none;
351 break;
352 case ir_depth_layout_any:
353 var->data.depth_layout = nir_depth_layout_any;
354 break;
355 case ir_depth_layout_greater:
356 var->data.depth_layout = nir_depth_layout_greater;
357 break;
358 case ir_depth_layout_less:
359 var->data.depth_layout = nir_depth_layout_less;
360 break;
361 case ir_depth_layout_unchanged:
362 var->data.depth_layout = nir_depth_layout_unchanged;
363 break;
364 default:
365 unreachable("not reached");
366 }
367
368 var->data.index = ir->data.index;
369 var->data.binding = ir->data.binding;
370 var->data.offset = ir->data.offset;
371 var->data.image.read_only = ir->data.image_read_only;
372 var->data.image.write_only = ir->data.image_write_only;
373 var->data.image.coherent = ir->data.image_coherent;
374 var->data.image._volatile = ir->data.image_volatile;
375 var->data.image.restrict_flag = ir->data.image_restrict;
376 var->data.image.format = ir->data.image_format;
377 var->data.max_array_access = ir->data.max_array_access;
378 var->data.fb_fetch_output = ir->data.fb_fetch_output;
379
380 var->num_state_slots = ir->get_num_state_slots();
381 if (var->num_state_slots > 0) {
382 var->state_slots = ralloc_array(var, nir_state_slot,
383 var->num_state_slots);
384
385 ir_state_slot *state_slots = ir->get_state_slots();
386 for (unsigned i = 0; i < var->num_state_slots; i++) {
387 for (unsigned j = 0; j < 5; j++)
388 var->state_slots[i].tokens[j] = state_slots[i].tokens[j];
389 var->state_slots[i].swizzle = state_slots[i].swizzle;
390 }
391 } else {
392 var->state_slots = NULL;
393 }
394
395 var->constant_initializer = constant_copy(ir->constant_initializer, var);
396
397 var->interface_type = ir->get_interface_type();
398
399 if (var->data.mode == nir_var_local)
400 nir_function_impl_add_variable(impl, var);
401 else
402 nir_shader_add_variable(shader, var);
403
404 _mesa_hash_table_insert(var_table, ir, var);
405 this->var = var;
406 }
407
408 ir_visitor_status
409 nir_function_visitor::visit_enter(ir_function *ir)
410 {
411 foreach_in_list(ir_function_signature, sig, &ir->signatures) {
412 visitor->create_function(sig);
413 }
414 return visit_continue_with_parent;
415 }
416
417 void
418 nir_visitor::create_function(ir_function_signature *ir)
419 {
420 if (ir->is_intrinsic())
421 return;
422
423 nir_function *func = nir_function_create(shader, ir->function_name());
424
425 assert(ir->parameters.is_empty());
426 assert(ir->return_type == glsl_type::void_type);
427
428 _mesa_hash_table_insert(this->overload_table, ir, func);
429 }
430
431 void
432 nir_visitor::visit(ir_function *ir)
433 {
434 foreach_in_list(ir_function_signature, sig, &ir->signatures)
435 sig->accept(this);
436 }
437
438 void
439 nir_visitor::visit(ir_function_signature *ir)
440 {
441 if (ir->is_intrinsic())
442 return;
443
444 struct hash_entry *entry =
445 _mesa_hash_table_search(this->overload_table, ir);
446
447 assert(entry);
448 nir_function *func = (nir_function *) entry->data;
449
450 if (ir->is_defined) {
451 nir_function_impl *impl = nir_function_impl_create(func);
452 this->impl = impl;
453
454 assert(strcmp(func->name, "main") == 0);
455 assert(ir->parameters.is_empty());
456 assert(func->return_type == glsl_type::void_type);
457
458 this->is_global = false;
459
460 nir_builder_init(&b, impl);
461 b.cursor = nir_after_cf_list(&impl->body);
462 visit_exec_list(&ir->body, this);
463
464 this->is_global = true;
465 } else {
466 func->impl = NULL;
467 }
468 }
469
470 void
471 nir_visitor::visit(ir_loop *ir)
472 {
473 nir_loop *loop = nir_loop_create(this->shader);
474 nir_builder_cf_insert(&b, &loop->cf_node);
475
476 b.cursor = nir_after_cf_list(&loop->body);
477 visit_exec_list(&ir->body_instructions, this);
478 b.cursor = nir_after_cf_node(&loop->cf_node);
479 }
480
481 void
482 nir_visitor::visit(ir_if *ir)
483 {
484 nir_src condition =
485 nir_src_for_ssa(evaluate_rvalue(ir->condition));
486
487 nir_if *if_stmt = nir_if_create(this->shader);
488 if_stmt->condition = condition;
489 nir_builder_cf_insert(&b, &if_stmt->cf_node);
490
491 b.cursor = nir_after_cf_list(&if_stmt->then_list);
492 visit_exec_list(&ir->then_instructions, this);
493
494 b.cursor = nir_after_cf_list(&if_stmt->else_list);
495 visit_exec_list(&ir->else_instructions, this);
496
497 b.cursor = nir_after_cf_node(&if_stmt->cf_node);
498 }
499
500 void
501 nir_visitor::visit(ir_discard *ir)
502 {
503 /*
504 * discards aren't treated as control flow, because before we lower them
505 * they can appear anywhere in the shader and the stuff after them may still
506 * be executed (yay, crazy GLSL rules!). However, after lowering, all the
507 * discards will be immediately followed by a return.
508 */
509
510 nir_intrinsic_instr *discard;
511 if (ir->condition) {
512 discard = nir_intrinsic_instr_create(this->shader,
513 nir_intrinsic_discard_if);
514 discard->src[0] =
515 nir_src_for_ssa(evaluate_rvalue(ir->condition));
516 } else {
517 discard = nir_intrinsic_instr_create(this->shader, nir_intrinsic_discard);
518 }
519
520 nir_builder_instr_insert(&b, &discard->instr);
521 }
522
523 void
524 nir_visitor::visit(ir_emit_vertex *ir)
525 {
526 nir_intrinsic_instr *instr =
527 nir_intrinsic_instr_create(this->shader, nir_intrinsic_emit_vertex);
528 nir_intrinsic_set_stream_id(instr, ir->stream_id());
529 nir_builder_instr_insert(&b, &instr->instr);
530 }
531
532 void
533 nir_visitor::visit(ir_end_primitive *ir)
534 {
535 nir_intrinsic_instr *instr =
536 nir_intrinsic_instr_create(this->shader, nir_intrinsic_end_primitive);
537 nir_intrinsic_set_stream_id(instr, ir->stream_id());
538 nir_builder_instr_insert(&b, &instr->instr);
539 }
540
541 void
542 nir_visitor::visit(ir_loop_jump *ir)
543 {
544 nir_jump_type type;
545 switch (ir->mode) {
546 case ir_loop_jump::jump_break:
547 type = nir_jump_break;
548 break;
549 case ir_loop_jump::jump_continue:
550 type = nir_jump_continue;
551 break;
552 default:
553 unreachable("not reached");
554 }
555
556 nir_jump_instr *instr = nir_jump_instr_create(this->shader, type);
557 nir_builder_instr_insert(&b, &instr->instr);
558 }
559
560 void
561 nir_visitor::visit(ir_return *ir)
562 {
563 if (ir->value != NULL) {
564 nir_intrinsic_instr *copy =
565 nir_intrinsic_instr_create(this->shader, nir_intrinsic_copy_var);
566
567 copy->variables[0] = nir_deref_var_create(copy, this->impl->return_var);
568 copy->variables[1] = evaluate_deref(&copy->instr, ir->value);
569 }
570
571 nir_jump_instr *instr = nir_jump_instr_create(this->shader, nir_jump_return);
572 nir_builder_instr_insert(&b, &instr->instr);
573 }
574
575 void
576 nir_visitor::visit(ir_call *ir)
577 {
578 if (ir->callee->is_intrinsic()) {
579 nir_intrinsic_op op;
580
581 switch (ir->callee->intrinsic_id) {
582 case ir_intrinsic_atomic_counter_read:
583 op = nir_intrinsic_atomic_counter_read_var;
584 break;
585 case ir_intrinsic_atomic_counter_increment:
586 op = nir_intrinsic_atomic_counter_inc_var;
587 break;
588 case ir_intrinsic_atomic_counter_predecrement:
589 op = nir_intrinsic_atomic_counter_dec_var;
590 break;
591 case ir_intrinsic_atomic_counter_add:
592 op = nir_intrinsic_atomic_counter_add_var;
593 break;
594 case ir_intrinsic_atomic_counter_and:
595 op = nir_intrinsic_atomic_counter_and_var;
596 break;
597 case ir_intrinsic_atomic_counter_or:
598 op = nir_intrinsic_atomic_counter_or_var;
599 break;
600 case ir_intrinsic_atomic_counter_xor:
601 op = nir_intrinsic_atomic_counter_xor_var;
602 break;
603 case ir_intrinsic_atomic_counter_min:
604 op = nir_intrinsic_atomic_counter_min_var;
605 break;
606 case ir_intrinsic_atomic_counter_max:
607 op = nir_intrinsic_atomic_counter_max_var;
608 break;
609 case ir_intrinsic_atomic_counter_exchange:
610 op = nir_intrinsic_atomic_counter_exchange_var;
611 break;
612 case ir_intrinsic_atomic_counter_comp_swap:
613 op = nir_intrinsic_atomic_counter_comp_swap_var;
614 break;
615 case ir_intrinsic_image_load:
616 op = nir_intrinsic_image_load;
617 break;
618 case ir_intrinsic_image_store:
619 op = nir_intrinsic_image_store;
620 break;
621 case ir_intrinsic_image_atomic_add:
622 op = nir_intrinsic_image_atomic_add;
623 break;
624 case ir_intrinsic_image_atomic_min:
625 op = nir_intrinsic_image_atomic_min;
626 break;
627 case ir_intrinsic_image_atomic_max:
628 op = nir_intrinsic_image_atomic_max;
629 break;
630 case ir_intrinsic_image_atomic_and:
631 op = nir_intrinsic_image_atomic_and;
632 break;
633 case ir_intrinsic_image_atomic_or:
634 op = nir_intrinsic_image_atomic_or;
635 break;
636 case ir_intrinsic_image_atomic_xor:
637 op = nir_intrinsic_image_atomic_xor;
638 break;
639 case ir_intrinsic_image_atomic_exchange:
640 op = nir_intrinsic_image_atomic_exchange;
641 break;
642 case ir_intrinsic_image_atomic_comp_swap:
643 op = nir_intrinsic_image_atomic_comp_swap;
644 break;
645 case ir_intrinsic_memory_barrier:
646 op = nir_intrinsic_memory_barrier;
647 break;
648 case ir_intrinsic_image_size:
649 op = nir_intrinsic_image_size;
650 break;
651 case ir_intrinsic_image_samples:
652 op = nir_intrinsic_image_samples;
653 break;
654 case ir_intrinsic_ssbo_store:
655 op = nir_intrinsic_store_ssbo;
656 break;
657 case ir_intrinsic_ssbo_load:
658 op = nir_intrinsic_load_ssbo;
659 break;
660 case ir_intrinsic_ssbo_atomic_add:
661 op = nir_intrinsic_ssbo_atomic_add;
662 break;
663 case ir_intrinsic_ssbo_atomic_and:
664 op = nir_intrinsic_ssbo_atomic_and;
665 break;
666 case ir_intrinsic_ssbo_atomic_or:
667 op = nir_intrinsic_ssbo_atomic_or;
668 break;
669 case ir_intrinsic_ssbo_atomic_xor:
670 op = nir_intrinsic_ssbo_atomic_xor;
671 break;
672 case ir_intrinsic_ssbo_atomic_min:
673 assert(ir->return_deref);
674 if (ir->return_deref->type == glsl_type::int_type)
675 op = nir_intrinsic_ssbo_atomic_imin;
676 else if (ir->return_deref->type == glsl_type::uint_type)
677 op = nir_intrinsic_ssbo_atomic_umin;
678 else
679 unreachable("Invalid type");
680 break;
681 case ir_intrinsic_ssbo_atomic_max:
682 assert(ir->return_deref);
683 if (ir->return_deref->type == glsl_type::int_type)
684 op = nir_intrinsic_ssbo_atomic_imax;
685 else if (ir->return_deref->type == glsl_type::uint_type)
686 op = nir_intrinsic_ssbo_atomic_umax;
687 else
688 unreachable("Invalid type");
689 break;
690 case ir_intrinsic_ssbo_atomic_exchange:
691 op = nir_intrinsic_ssbo_atomic_exchange;
692 break;
693 case ir_intrinsic_ssbo_atomic_comp_swap:
694 op = nir_intrinsic_ssbo_atomic_comp_swap;
695 break;
696 case ir_intrinsic_shader_clock:
697 op = nir_intrinsic_shader_clock;
698 break;
699 case ir_intrinsic_group_memory_barrier:
700 op = nir_intrinsic_group_memory_barrier;
701 break;
702 case ir_intrinsic_memory_barrier_atomic_counter:
703 op = nir_intrinsic_memory_barrier_atomic_counter;
704 break;
705 case ir_intrinsic_memory_barrier_buffer:
706 op = nir_intrinsic_memory_barrier_buffer;
707 break;
708 case ir_intrinsic_memory_barrier_image:
709 op = nir_intrinsic_memory_barrier_image;
710 break;
711 case ir_intrinsic_memory_barrier_shared:
712 op = nir_intrinsic_memory_barrier_shared;
713 break;
714 case ir_intrinsic_shared_load:
715 op = nir_intrinsic_load_shared;
716 break;
717 case ir_intrinsic_shared_store:
718 op = nir_intrinsic_store_shared;
719 break;
720 case ir_intrinsic_shared_atomic_add:
721 op = nir_intrinsic_shared_atomic_add;
722 break;
723 case ir_intrinsic_shared_atomic_and:
724 op = nir_intrinsic_shared_atomic_and;
725 break;
726 case ir_intrinsic_shared_atomic_or:
727 op = nir_intrinsic_shared_atomic_or;
728 break;
729 case ir_intrinsic_shared_atomic_xor:
730 op = nir_intrinsic_shared_atomic_xor;
731 break;
732 case ir_intrinsic_shared_atomic_min:
733 assert(ir->return_deref);
734 if (ir->return_deref->type == glsl_type::int_type)
735 op = nir_intrinsic_shared_atomic_imin;
736 else if (ir->return_deref->type == glsl_type::uint_type)
737 op = nir_intrinsic_shared_atomic_umin;
738 else
739 unreachable("Invalid type");
740 break;
741 case ir_intrinsic_shared_atomic_max:
742 assert(ir->return_deref);
743 if (ir->return_deref->type == glsl_type::int_type)
744 op = nir_intrinsic_shared_atomic_imax;
745 else if (ir->return_deref->type == glsl_type::uint_type)
746 op = nir_intrinsic_shared_atomic_umax;
747 else
748 unreachable("Invalid type");
749 break;
750 case ir_intrinsic_shared_atomic_exchange:
751 op = nir_intrinsic_shared_atomic_exchange;
752 break;
753 case ir_intrinsic_shared_atomic_comp_swap:
754 op = nir_intrinsic_shared_atomic_comp_swap;
755 break;
756 default:
757 unreachable("not reached");
758 }
759
760 nir_intrinsic_instr *instr = nir_intrinsic_instr_create(shader, op);
761 nir_dest *dest = &instr->dest;
762
763 switch (op) {
764 case nir_intrinsic_atomic_counter_read_var:
765 case nir_intrinsic_atomic_counter_inc_var:
766 case nir_intrinsic_atomic_counter_dec_var:
767 case nir_intrinsic_atomic_counter_add_var:
768 case nir_intrinsic_atomic_counter_min_var:
769 case nir_intrinsic_atomic_counter_max_var:
770 case nir_intrinsic_atomic_counter_and_var:
771 case nir_intrinsic_atomic_counter_or_var:
772 case nir_intrinsic_atomic_counter_xor_var:
773 case nir_intrinsic_atomic_counter_exchange_var:
774 case nir_intrinsic_atomic_counter_comp_swap_var: {
775 /* Set the counter variable dereference. */
776 exec_node *param = ir->actual_parameters.get_head();
777 ir_dereference *counter = (ir_dereference *)param;
778
779 instr->variables[0] = evaluate_deref(&instr->instr, counter);
780 param = param->get_next();
781
782 /* Set the intrinsic destination. */
783 if (ir->return_deref) {
784 nir_ssa_dest_init(&instr->instr, &instr->dest, 1, 32, NULL);
785 }
786
787 /* Set the intrinsic parameters. */
788 if (!param->is_tail_sentinel()) {
789 instr->src[0] =
790 nir_src_for_ssa(evaluate_rvalue((ir_dereference *)param));
791 param = param->get_next();
792 }
793
794 if (!param->is_tail_sentinel()) {
795 instr->src[1] =
796 nir_src_for_ssa(evaluate_rvalue((ir_dereference *)param));
797 param = param->get_next();
798 }
799
800 nir_builder_instr_insert(&b, &instr->instr);
801 break;
802 }
803 case nir_intrinsic_image_load:
804 case nir_intrinsic_image_store:
805 case nir_intrinsic_image_atomic_add:
806 case nir_intrinsic_image_atomic_min:
807 case nir_intrinsic_image_atomic_max:
808 case nir_intrinsic_image_atomic_and:
809 case nir_intrinsic_image_atomic_or:
810 case nir_intrinsic_image_atomic_xor:
811 case nir_intrinsic_image_atomic_exchange:
812 case nir_intrinsic_image_atomic_comp_swap:
813 case nir_intrinsic_image_samples:
814 case nir_intrinsic_image_size: {
815 nir_ssa_undef_instr *instr_undef =
816 nir_ssa_undef_instr_create(shader, 1, 32);
817 nir_builder_instr_insert(&b, &instr_undef->instr);
818
819 /* Set the image variable dereference. */
820 exec_node *param = ir->actual_parameters.get_head();
821 ir_dereference *image = (ir_dereference *)param;
822 const glsl_type *type =
823 image->variable_referenced()->type->without_array();
824
825 instr->variables[0] = evaluate_deref(&instr->instr, image);
826 param = param->get_next();
827
828 /* Set the intrinsic destination. */
829 if (ir->return_deref) {
830 const nir_intrinsic_info *info =
831 &nir_intrinsic_infos[instr->intrinsic];
832 nir_ssa_dest_init(&instr->instr, &instr->dest,
833 info->dest_components, 32, NULL);
834 }
835
836 if (op == nir_intrinsic_image_size ||
837 op == nir_intrinsic_image_samples) {
838 nir_builder_instr_insert(&b, &instr->instr);
839 break;
840 }
841
842 /* Set the address argument, extending the coordinate vector to four
843 * components.
844 */
845 nir_ssa_def *src_addr =
846 evaluate_rvalue((ir_dereference *)param);
847 nir_ssa_def *srcs[4];
848
849 for (int i = 0; i < 4; i++) {
850 if (i < type->coordinate_components())
851 srcs[i] = nir_channel(&b, src_addr, i);
852 else
853 srcs[i] = &instr_undef->def;
854 }
855
856 instr->src[0] = nir_src_for_ssa(nir_vec(&b, srcs, 4));
857 param = param->get_next();
858
859 /* Set the sample argument, which is undefined for single-sample
860 * images.
861 */
862 if (type->sampler_dimensionality == GLSL_SAMPLER_DIM_MS) {
863 instr->src[1] =
864 nir_src_for_ssa(evaluate_rvalue((ir_dereference *)param));
865 param = param->get_next();
866 } else {
867 instr->src[1] = nir_src_for_ssa(&instr_undef->def);
868 }
869
870 /* Set the intrinsic parameters. */
871 if (!param->is_tail_sentinel()) {
872 instr->src[2] =
873 nir_src_for_ssa(evaluate_rvalue((ir_dereference *)param));
874 param = param->get_next();
875 }
876
877 if (!param->is_tail_sentinel()) {
878 instr->src[3] =
879 nir_src_for_ssa(evaluate_rvalue((ir_dereference *)param));
880 param = param->get_next();
881 }
882 nir_builder_instr_insert(&b, &instr->instr);
883 break;
884 }
885 case nir_intrinsic_memory_barrier:
886 case nir_intrinsic_group_memory_barrier:
887 case nir_intrinsic_memory_barrier_atomic_counter:
888 case nir_intrinsic_memory_barrier_buffer:
889 case nir_intrinsic_memory_barrier_image:
890 case nir_intrinsic_memory_barrier_shared:
891 nir_builder_instr_insert(&b, &instr->instr);
892 break;
893 case nir_intrinsic_shader_clock:
894 nir_ssa_dest_init(&instr->instr, &instr->dest, 1, 32, NULL);
895 nir_builder_instr_insert(&b, &instr->instr);
896 break;
897 case nir_intrinsic_store_ssbo: {
898 exec_node *param = ir->actual_parameters.get_head();
899 ir_rvalue *block = ((ir_instruction *)param)->as_rvalue();
900
901 param = param->get_next();
902 ir_rvalue *offset = ((ir_instruction *)param)->as_rvalue();
903
904 param = param->get_next();
905 ir_rvalue *val = ((ir_instruction *)param)->as_rvalue();
906
907 param = param->get_next();
908 ir_constant *write_mask = ((ir_instruction *)param)->as_constant();
909 assert(write_mask);
910
911 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(val));
912 instr->src[1] = nir_src_for_ssa(evaluate_rvalue(block));
913 instr->src[2] = nir_src_for_ssa(evaluate_rvalue(offset));
914 nir_intrinsic_set_write_mask(instr, write_mask->value.u[0]);
915 instr->num_components = val->type->vector_elements;
916
917 nir_builder_instr_insert(&b, &instr->instr);
918 break;
919 }
920 case nir_intrinsic_load_ssbo: {
921 exec_node *param = ir->actual_parameters.get_head();
922 ir_rvalue *block = ((ir_instruction *)param)->as_rvalue();
923
924 param = param->get_next();
925 ir_rvalue *offset = ((ir_instruction *)param)->as_rvalue();
926
927 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(block));
928 instr->src[1] = nir_src_for_ssa(evaluate_rvalue(offset));
929
930 const glsl_type *type = ir->return_deref->var->type;
931 instr->num_components = type->vector_elements;
932
933 /* Setup destination register */
934 unsigned bit_size = glsl_get_bit_size(type);
935 nir_ssa_dest_init(&instr->instr, &instr->dest,
936 type->vector_elements, bit_size, NULL);
937
938 /* Insert the created nir instruction now since in the case of boolean
939 * result we will need to emit another instruction after it
940 */
941 nir_builder_instr_insert(&b, &instr->instr);
942
943 /*
944 * In SSBO/UBO's, a true boolean value is any non-zero value, but we
945 * consider a true boolean to be ~0. Fix this up with a != 0
946 * comparison.
947 */
948 if (type->base_type == GLSL_TYPE_BOOL) {
949 nir_alu_instr *load_ssbo_compare =
950 nir_alu_instr_create(shader, nir_op_ine);
951 load_ssbo_compare->src[0].src.is_ssa = true;
952 load_ssbo_compare->src[0].src.ssa = &instr->dest.ssa;
953 load_ssbo_compare->src[1].src =
954 nir_src_for_ssa(nir_imm_int(&b, 0));
955 for (unsigned i = 0; i < type->vector_elements; i++)
956 load_ssbo_compare->src[1].swizzle[i] = 0;
957 nir_ssa_dest_init(&load_ssbo_compare->instr,
958 &load_ssbo_compare->dest.dest,
959 type->vector_elements, bit_size, NULL);
960 load_ssbo_compare->dest.write_mask = (1 << type->vector_elements) - 1;
961 nir_builder_instr_insert(&b, &load_ssbo_compare->instr);
962 dest = &load_ssbo_compare->dest.dest;
963 }
964 break;
965 }
966 case nir_intrinsic_ssbo_atomic_add:
967 case nir_intrinsic_ssbo_atomic_imin:
968 case nir_intrinsic_ssbo_atomic_umin:
969 case nir_intrinsic_ssbo_atomic_imax:
970 case nir_intrinsic_ssbo_atomic_umax:
971 case nir_intrinsic_ssbo_atomic_and:
972 case nir_intrinsic_ssbo_atomic_or:
973 case nir_intrinsic_ssbo_atomic_xor:
974 case nir_intrinsic_ssbo_atomic_exchange:
975 case nir_intrinsic_ssbo_atomic_comp_swap: {
976 int param_count = ir->actual_parameters.length();
977 assert(param_count == 3 || param_count == 4);
978
979 /* Block index */
980 exec_node *param = ir->actual_parameters.get_head();
981 ir_instruction *inst = (ir_instruction *) param;
982 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
983
984 /* Offset */
985 param = param->get_next();
986 inst = (ir_instruction *) param;
987 instr->src[1] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
988
989 /* data1 parameter (this is always present) */
990 param = param->get_next();
991 inst = (ir_instruction *) param;
992 instr->src[2] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
993
994 /* data2 parameter (only with atomic_comp_swap) */
995 if (param_count == 4) {
996 assert(op == nir_intrinsic_ssbo_atomic_comp_swap);
997 param = param->get_next();
998 inst = (ir_instruction *) param;
999 instr->src[3] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
1000 }
1001
1002 /* Atomic result */
1003 assert(ir->return_deref);
1004 nir_ssa_dest_init(&instr->instr, &instr->dest,
1005 ir->return_deref->type->vector_elements, 32, NULL);
1006 nir_builder_instr_insert(&b, &instr->instr);
1007 break;
1008 }
1009 case nir_intrinsic_load_shared: {
1010 exec_node *param = ir->actual_parameters.get_head();
1011 ir_rvalue *offset = ((ir_instruction *)param)->as_rvalue();
1012
1013 nir_intrinsic_set_base(instr, 0);
1014 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(offset));
1015
1016 const glsl_type *type = ir->return_deref->var->type;
1017 instr->num_components = type->vector_elements;
1018
1019 /* Setup destination register */
1020 unsigned bit_size = glsl_get_bit_size(type);
1021 nir_ssa_dest_init(&instr->instr, &instr->dest,
1022 type->vector_elements, bit_size, NULL);
1023
1024 nir_builder_instr_insert(&b, &instr->instr);
1025 break;
1026 }
1027 case nir_intrinsic_store_shared: {
1028 exec_node *param = ir->actual_parameters.get_head();
1029 ir_rvalue *offset = ((ir_instruction *)param)->as_rvalue();
1030
1031 param = param->get_next();
1032 ir_rvalue *val = ((ir_instruction *)param)->as_rvalue();
1033
1034 param = param->get_next();
1035 ir_constant *write_mask = ((ir_instruction *)param)->as_constant();
1036 assert(write_mask);
1037
1038 nir_intrinsic_set_base(instr, 0);
1039 instr->src[1] = nir_src_for_ssa(evaluate_rvalue(offset));
1040
1041 nir_intrinsic_set_write_mask(instr, write_mask->value.u[0]);
1042
1043 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(val));
1044 instr->num_components = val->type->vector_elements;
1045
1046 nir_builder_instr_insert(&b, &instr->instr);
1047 break;
1048 }
1049 case nir_intrinsic_shared_atomic_add:
1050 case nir_intrinsic_shared_atomic_imin:
1051 case nir_intrinsic_shared_atomic_umin:
1052 case nir_intrinsic_shared_atomic_imax:
1053 case nir_intrinsic_shared_atomic_umax:
1054 case nir_intrinsic_shared_atomic_and:
1055 case nir_intrinsic_shared_atomic_or:
1056 case nir_intrinsic_shared_atomic_xor:
1057 case nir_intrinsic_shared_atomic_exchange:
1058 case nir_intrinsic_shared_atomic_comp_swap: {
1059 int param_count = ir->actual_parameters.length();
1060 assert(param_count == 2 || param_count == 3);
1061
1062 /* Offset */
1063 exec_node *param = ir->actual_parameters.get_head();
1064 ir_instruction *inst = (ir_instruction *) param;
1065 instr->src[0] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
1066
1067 /* data1 parameter (this is always present) */
1068 param = param->get_next();
1069 inst = (ir_instruction *) param;
1070 instr->src[1] = nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
1071
1072 /* data2 parameter (only with atomic_comp_swap) */
1073 if (param_count == 3) {
1074 assert(op == nir_intrinsic_shared_atomic_comp_swap);
1075 param = param->get_next();
1076 inst = (ir_instruction *) param;
1077 instr->src[2] =
1078 nir_src_for_ssa(evaluate_rvalue(inst->as_rvalue()));
1079 }
1080
1081 /* Atomic result */
1082 assert(ir->return_deref);
1083 unsigned bit_size = glsl_get_bit_size(ir->return_deref->type);
1084 nir_ssa_dest_init(&instr->instr, &instr->dest,
1085 ir->return_deref->type->vector_elements,
1086 bit_size, NULL);
1087 nir_builder_instr_insert(&b, &instr->instr);
1088 break;
1089 }
1090 default:
1091 unreachable("not reached");
1092 }
1093
1094 if (ir->return_deref) {
1095 nir_intrinsic_instr *store_instr =
1096 nir_intrinsic_instr_create(shader, nir_intrinsic_store_var);
1097 store_instr->num_components = ir->return_deref->type->vector_elements;
1098 nir_intrinsic_set_write_mask(store_instr,
1099 (1 << store_instr->num_components) - 1);
1100
1101 store_instr->variables[0] =
1102 evaluate_deref(&store_instr->instr, ir->return_deref);
1103 store_instr->src[0] = nir_src_for_ssa(&dest->ssa);
1104
1105 nir_builder_instr_insert(&b, &store_instr->instr);
1106 }
1107
1108 return;
1109 }
1110
1111 struct hash_entry *entry =
1112 _mesa_hash_table_search(this->overload_table, ir->callee);
1113 assert(entry);
1114 nir_function *callee = (nir_function *) entry->data;
1115
1116 nir_call_instr *instr = nir_call_instr_create(this->shader, callee);
1117
1118 unsigned i = 0;
1119 foreach_in_list(ir_dereference, param, &ir->actual_parameters) {
1120 instr->params[i] = evaluate_deref(&instr->instr, param);
1121 i++;
1122 }
1123
1124 instr->return_deref = evaluate_deref(&instr->instr, ir->return_deref);
1125 nir_builder_instr_insert(&b, &instr->instr);
1126 }
1127
1128 void
1129 nir_visitor::visit(ir_assignment *ir)
1130 {
1131 unsigned num_components = ir->lhs->type->vector_elements;
1132
1133 b.exact = ir->lhs->variable_referenced()->data.invariant ||
1134 ir->lhs->variable_referenced()->data.precise;
1135
1136 if ((ir->rhs->as_dereference() || ir->rhs->as_constant()) &&
1137 (ir->write_mask == (1 << num_components) - 1 || ir->write_mask == 0)) {
1138 /* We're doing a plain-as-can-be copy, so emit a copy_var */
1139 nir_intrinsic_instr *copy =
1140 nir_intrinsic_instr_create(this->shader, nir_intrinsic_copy_var);
1141
1142 copy->variables[0] = evaluate_deref(&copy->instr, ir->lhs);
1143 copy->variables[1] = evaluate_deref(&copy->instr, ir->rhs);
1144
1145 if (ir->condition) {
1146 nir_if *if_stmt = nir_if_create(this->shader);
1147 if_stmt->condition = nir_src_for_ssa(evaluate_rvalue(ir->condition));
1148 nir_builder_cf_insert(&b, &if_stmt->cf_node);
1149 nir_instr_insert_after_cf_list(&if_stmt->then_list, &copy->instr);
1150 b.cursor = nir_after_cf_node(&if_stmt->cf_node);
1151 } else {
1152 nir_builder_instr_insert(&b, &copy->instr);
1153 }
1154 return;
1155 }
1156
1157 assert(ir->rhs->type->is_scalar() || ir->rhs->type->is_vector());
1158
1159 ir->lhs->accept(this);
1160 nir_deref_var *lhs_deref = this->deref_head;
1161 nir_ssa_def *src = evaluate_rvalue(ir->rhs);
1162
1163 if (ir->write_mask != (1 << num_components) - 1 && ir->write_mask != 0) {
1164 /* GLSL IR will give us the input to the write-masked assignment in a
1165 * single packed vector. So, for example, if the writemask is xzw, then
1166 * we have to swizzle x -> x, y -> z, and z -> w and get the y component
1167 * from the load.
1168 */
1169 unsigned swiz[4];
1170 unsigned component = 0;
1171 for (unsigned i = 0; i < 4; i++) {
1172 swiz[i] = ir->write_mask & (1 << i) ? component++ : 0;
1173 }
1174 src = nir_swizzle(&b, src, swiz, num_components, !supports_ints);
1175 }
1176
1177 nir_intrinsic_instr *store =
1178 nir_intrinsic_instr_create(this->shader, nir_intrinsic_store_var);
1179 store->num_components = ir->lhs->type->vector_elements;
1180 nir_intrinsic_set_write_mask(store, ir->write_mask);
1181 nir_deref *store_deref = nir_copy_deref(store, &lhs_deref->deref);
1182 store->variables[0] = nir_deref_as_var(store_deref);
1183 store->src[0] = nir_src_for_ssa(src);
1184
1185 if (ir->condition) {
1186 nir_if *if_stmt = nir_if_create(this->shader);
1187 if_stmt->condition = nir_src_for_ssa(evaluate_rvalue(ir->condition));
1188 nir_builder_cf_insert(&b, &if_stmt->cf_node);
1189 nir_instr_insert_after_cf_list(&if_stmt->then_list, &store->instr);
1190 b.cursor = nir_after_cf_node(&if_stmt->cf_node);
1191 } else {
1192 nir_builder_instr_insert(&b, &store->instr);
1193 }
1194 }
1195
1196 /*
1197 * Given an instruction, returns a pointer to its destination or NULL if there
1198 * is no destination.
1199 *
1200 * Note that this only handles instructions we generate at this level.
1201 */
1202 static nir_dest *
1203 get_instr_dest(nir_instr *instr)
1204 {
1205 nir_alu_instr *alu_instr;
1206 nir_intrinsic_instr *intrinsic_instr;
1207 nir_tex_instr *tex_instr;
1208
1209 switch (instr->type) {
1210 case nir_instr_type_alu:
1211 alu_instr = nir_instr_as_alu(instr);
1212 return &alu_instr->dest.dest;
1213
1214 case nir_instr_type_intrinsic:
1215 intrinsic_instr = nir_instr_as_intrinsic(instr);
1216 if (nir_intrinsic_infos[intrinsic_instr->intrinsic].has_dest)
1217 return &intrinsic_instr->dest;
1218 else
1219 return NULL;
1220
1221 case nir_instr_type_tex:
1222 tex_instr = nir_instr_as_tex(instr);
1223 return &tex_instr->dest;
1224
1225 default:
1226 unreachable("not reached");
1227 }
1228
1229 return NULL;
1230 }
1231
1232 void
1233 nir_visitor::add_instr(nir_instr *instr, unsigned num_components,
1234 unsigned bit_size)
1235 {
1236 nir_dest *dest = get_instr_dest(instr);
1237
1238 if (dest)
1239 nir_ssa_dest_init(instr, dest, num_components, bit_size, NULL);
1240
1241 nir_builder_instr_insert(&b, instr);
1242
1243 if (dest) {
1244 assert(dest->is_ssa);
1245 this->result = &dest->ssa;
1246 }
1247 }
1248
1249 nir_ssa_def *
1250 nir_visitor::evaluate_rvalue(ir_rvalue* ir)
1251 {
1252 ir->accept(this);
1253 if (ir->as_dereference() || ir->as_constant()) {
1254 /*
1255 * A dereference is being used on the right hand side, which means we
1256 * must emit a variable load.
1257 */
1258
1259 nir_intrinsic_instr *load_instr =
1260 nir_intrinsic_instr_create(this->shader, nir_intrinsic_load_var);
1261 load_instr->num_components = ir->type->vector_elements;
1262 load_instr->variables[0] = this->deref_head;
1263 ralloc_steal(load_instr, load_instr->variables[0]);
1264 unsigned bit_size = glsl_get_bit_size(ir->type);
1265 add_instr(&load_instr->instr, ir->type->vector_elements, bit_size);
1266 }
1267
1268 return this->result;
1269 }
1270
1271 static bool
1272 type_is_float(glsl_base_type type)
1273 {
1274 return type == GLSL_TYPE_FLOAT || type == GLSL_TYPE_DOUBLE;
1275 }
1276
1277 void
1278 nir_visitor::visit(ir_expression *ir)
1279 {
1280 /* Some special cases */
1281 switch (ir->operation) {
1282 case ir_binop_ubo_load: {
1283 nir_intrinsic_instr *load =
1284 nir_intrinsic_instr_create(this->shader, nir_intrinsic_load_ubo);
1285 unsigned bit_size = glsl_get_bit_size(ir->type);
1286 load->num_components = ir->type->vector_elements;
1287 load->src[0] = nir_src_for_ssa(evaluate_rvalue(ir->operands[0]));
1288 load->src[1] = nir_src_for_ssa(evaluate_rvalue(ir->operands[1]));
1289 add_instr(&load->instr, ir->type->vector_elements, bit_size);
1290
1291 /*
1292 * In UBO's, a true boolean value is any non-zero value, but we consider
1293 * a true boolean to be ~0. Fix this up with a != 0 comparison.
1294 */
1295
1296 if (ir->type->base_type == GLSL_TYPE_BOOL)
1297 this->result = nir_ine(&b, &load->dest.ssa, nir_imm_int(&b, 0));
1298
1299 return;
1300 }
1301
1302 case ir_unop_interpolate_at_centroid:
1303 case ir_binop_interpolate_at_offset:
1304 case ir_binop_interpolate_at_sample: {
1305 ir_dereference *deref = ir->operands[0]->as_dereference();
1306 ir_swizzle *swizzle = NULL;
1307 if (!deref) {
1308 /* the api does not allow a swizzle here, but the varying packing code
1309 * may have pushed one into here.
1310 */
1311 swizzle = ir->operands[0]->as_swizzle();
1312 assert(swizzle);
1313 deref = swizzle->val->as_dereference();
1314 assert(deref);
1315 }
1316
1317 deref->accept(this);
1318
1319 nir_intrinsic_op op;
1320 if (this->deref_head->var->data.mode == nir_var_shader_in) {
1321 switch (ir->operation) {
1322 case ir_unop_interpolate_at_centroid:
1323 op = nir_intrinsic_interp_var_at_centroid;
1324 break;
1325 case ir_binop_interpolate_at_offset:
1326 op = nir_intrinsic_interp_var_at_offset;
1327 break;
1328 case ir_binop_interpolate_at_sample:
1329 op = nir_intrinsic_interp_var_at_sample;
1330 break;
1331 default:
1332 unreachable("Invalid interpolation intrinsic");
1333 }
1334 } else {
1335 /* This case can happen if the vertex shader does not write the
1336 * given varying. In this case, the linker will lower it to a
1337 * global variable. Since interpolating a variable makes no
1338 * sense, we'll just turn it into a load which will probably
1339 * eventually end up as an SSA definition.
1340 */
1341 assert(this->deref_head->var->data.mode == nir_var_global);
1342 op = nir_intrinsic_load_var;
1343 }
1344
1345 nir_intrinsic_instr *intrin = nir_intrinsic_instr_create(shader, op);
1346 intrin->num_components = deref->type->vector_elements;
1347 intrin->variables[0] = this->deref_head;
1348 ralloc_steal(intrin, intrin->variables[0]);
1349
1350 if (intrin->intrinsic == nir_intrinsic_interp_var_at_offset ||
1351 intrin->intrinsic == nir_intrinsic_interp_var_at_sample)
1352 intrin->src[0] = nir_src_for_ssa(evaluate_rvalue(ir->operands[1]));
1353
1354 unsigned bit_size = glsl_get_bit_size(deref->type);
1355 add_instr(&intrin->instr, deref->type->vector_elements, bit_size);
1356
1357 if (swizzle) {
1358 unsigned swiz[4] = {
1359 swizzle->mask.x, swizzle->mask.y, swizzle->mask.z, swizzle->mask.w
1360 };
1361
1362 result = nir_swizzle(&b, result, swiz,
1363 swizzle->type->vector_elements, false);
1364 }
1365
1366 return;
1367 }
1368
1369 default:
1370 break;
1371 }
1372
1373 nir_ssa_def *srcs[4];
1374 for (unsigned i = 0; i < ir->get_num_operands(); i++)
1375 srcs[i] = evaluate_rvalue(ir->operands[i]);
1376
1377 glsl_base_type types[4];
1378 for (unsigned i = 0; i < ir->get_num_operands(); i++)
1379 if (supports_ints)
1380 types[i] = ir->operands[i]->type->base_type;
1381 else
1382 types[i] = GLSL_TYPE_FLOAT;
1383
1384 glsl_base_type out_type;
1385 if (supports_ints)
1386 out_type = ir->type->base_type;
1387 else
1388 out_type = GLSL_TYPE_FLOAT;
1389
1390 switch (ir->operation) {
1391 case ir_unop_bit_not: result = nir_inot(&b, srcs[0]); break;
1392 case ir_unop_logic_not:
1393 result = supports_ints ? nir_inot(&b, srcs[0]) : nir_fnot(&b, srcs[0]);
1394 break;
1395 case ir_unop_neg:
1396 result = type_is_float(types[0]) ? nir_fneg(&b, srcs[0])
1397 : nir_ineg(&b, srcs[0]);
1398 break;
1399 case ir_unop_abs:
1400 result = type_is_float(types[0]) ? nir_fabs(&b, srcs[0])
1401 : nir_iabs(&b, srcs[0]);
1402 break;
1403 case ir_unop_saturate:
1404 assert(type_is_float(types[0]));
1405 result = nir_fsat(&b, srcs[0]);
1406 break;
1407 case ir_unop_sign:
1408 result = type_is_float(types[0]) ? nir_fsign(&b, srcs[0])
1409 : nir_isign(&b, srcs[0]);
1410 break;
1411 case ir_unop_rcp: result = nir_frcp(&b, srcs[0]); break;
1412 case ir_unop_rsq: result = nir_frsq(&b, srcs[0]); break;
1413 case ir_unop_sqrt: result = nir_fsqrt(&b, srcs[0]); break;
1414 case ir_unop_exp: unreachable("ir_unop_exp should have been lowered");
1415 case ir_unop_log: unreachable("ir_unop_log should have been lowered");
1416 case ir_unop_exp2: result = nir_fexp2(&b, srcs[0]); break;
1417 case ir_unop_log2: result = nir_flog2(&b, srcs[0]); break;
1418 case ir_unop_i2f:
1419 result = supports_ints ? nir_i2f(&b, srcs[0]) : nir_fmov(&b, srcs[0]);
1420 break;
1421 case ir_unop_u2f:
1422 result = supports_ints ? nir_u2f(&b, srcs[0]) : nir_fmov(&b, srcs[0]);
1423 break;
1424 case ir_unop_b2f:
1425 result = supports_ints ? nir_b2f(&b, srcs[0]) : nir_fmov(&b, srcs[0]);
1426 break;
1427 case ir_unop_f2i: result = nir_f2i(&b, srcs[0]); break;
1428 case ir_unop_f2u: result = nir_f2u(&b, srcs[0]); break;
1429 case ir_unop_f2b: result = nir_f2b(&b, srcs[0]); break;
1430 case ir_unop_i2b: result = nir_i2b(&b, srcs[0]); break;
1431 case ir_unop_b2i: result = nir_b2i(&b, srcs[0]); break;
1432 case ir_unop_d2f: result = nir_d2f(&b, srcs[0]); break;
1433 case ir_unop_f2d: result = nir_f2d(&b, srcs[0]); break;
1434 case ir_unop_d2i: result = nir_d2i(&b, srcs[0]); break;
1435 case ir_unop_d2u: result = nir_d2u(&b, srcs[0]); break;
1436 case ir_unop_d2b: result = nir_d2b(&b, srcs[0]); break;
1437 case ir_unop_i2d:
1438 assert(supports_ints);
1439 result = nir_i2d(&b, srcs[0]);
1440 break;
1441 case ir_unop_u2d:
1442 assert(supports_ints);
1443 result = nir_u2d(&b, srcs[0]);
1444 break;
1445 case ir_unop_i2u:
1446 case ir_unop_u2i:
1447 case ir_unop_bitcast_i2f:
1448 case ir_unop_bitcast_f2i:
1449 case ir_unop_bitcast_u2f:
1450 case ir_unop_bitcast_f2u:
1451 case ir_unop_subroutine_to_int:
1452 /* no-op */
1453 result = nir_imov(&b, srcs[0]);
1454 break;
1455 case ir_unop_trunc: result = nir_ftrunc(&b, srcs[0]); break;
1456 case ir_unop_ceil: result = nir_fceil(&b, srcs[0]); break;
1457 case ir_unop_floor: result = nir_ffloor(&b, srcs[0]); break;
1458 case ir_unop_fract: result = nir_ffract(&b, srcs[0]); break;
1459 case ir_unop_round_even: result = nir_fround_even(&b, srcs[0]); break;
1460 case ir_unop_sin: result = nir_fsin(&b, srcs[0]); break;
1461 case ir_unop_cos: result = nir_fcos(&b, srcs[0]); break;
1462 case ir_unop_dFdx: result = nir_fddx(&b, srcs[0]); break;
1463 case ir_unop_dFdy: result = nir_fddy(&b, srcs[0]); break;
1464 case ir_unop_dFdx_fine: result = nir_fddx_fine(&b, srcs[0]); break;
1465 case ir_unop_dFdy_fine: result = nir_fddy_fine(&b, srcs[0]); break;
1466 case ir_unop_dFdx_coarse: result = nir_fddx_coarse(&b, srcs[0]); break;
1467 case ir_unop_dFdy_coarse: result = nir_fddy_coarse(&b, srcs[0]); break;
1468 case ir_unop_pack_snorm_2x16:
1469 result = nir_pack_snorm_2x16(&b, srcs[0]);
1470 break;
1471 case ir_unop_pack_snorm_4x8:
1472 result = nir_pack_snorm_4x8(&b, srcs[0]);
1473 break;
1474 case ir_unop_pack_unorm_2x16:
1475 result = nir_pack_unorm_2x16(&b, srcs[0]);
1476 break;
1477 case ir_unop_pack_unorm_4x8:
1478 result = nir_pack_unorm_4x8(&b, srcs[0]);
1479 break;
1480 case ir_unop_pack_half_2x16:
1481 result = nir_pack_half_2x16(&b, srcs[0]);
1482 break;
1483 case ir_unop_unpack_snorm_2x16:
1484 result = nir_unpack_snorm_2x16(&b, srcs[0]);
1485 break;
1486 case ir_unop_unpack_snorm_4x8:
1487 result = nir_unpack_snorm_4x8(&b, srcs[0]);
1488 break;
1489 case ir_unop_unpack_unorm_2x16:
1490 result = nir_unpack_unorm_2x16(&b, srcs[0]);
1491 break;
1492 case ir_unop_unpack_unorm_4x8:
1493 result = nir_unpack_unorm_4x8(&b, srcs[0]);
1494 break;
1495 case ir_unop_unpack_half_2x16:
1496 result = nir_unpack_half_2x16(&b, srcs[0]);
1497 break;
1498 case ir_unop_pack_double_2x32:
1499 result = nir_pack_double_2x32(&b, srcs[0]);
1500 break;
1501 case ir_unop_unpack_double_2x32:
1502 result = nir_unpack_double_2x32(&b, srcs[0]);
1503 break;
1504 case ir_unop_bitfield_reverse:
1505 result = nir_bitfield_reverse(&b, srcs[0]);
1506 break;
1507 case ir_unop_bit_count:
1508 result = nir_bit_count(&b, srcs[0]);
1509 break;
1510 case ir_unop_find_msb:
1511 switch (types[0]) {
1512 case GLSL_TYPE_UINT:
1513 result = nir_ufind_msb(&b, srcs[0]);
1514 break;
1515 case GLSL_TYPE_INT:
1516 result = nir_ifind_msb(&b, srcs[0]);
1517 break;
1518 default:
1519 unreachable("Invalid type for findMSB()");
1520 }
1521 break;
1522 case ir_unop_find_lsb:
1523 result = nir_find_lsb(&b, srcs[0]);
1524 break;
1525
1526 case ir_unop_noise:
1527 switch (ir->type->vector_elements) {
1528 case 1:
1529 switch (ir->operands[0]->type->vector_elements) {
1530 case 1: result = nir_fnoise1_1(&b, srcs[0]); break;
1531 case 2: result = nir_fnoise1_2(&b, srcs[0]); break;
1532 case 3: result = nir_fnoise1_3(&b, srcs[0]); break;
1533 case 4: result = nir_fnoise1_4(&b, srcs[0]); break;
1534 default: unreachable("not reached");
1535 }
1536 break;
1537 case 2:
1538 switch (ir->operands[0]->type->vector_elements) {
1539 case 1: result = nir_fnoise2_1(&b, srcs[0]); break;
1540 case 2: result = nir_fnoise2_2(&b, srcs[0]); break;
1541 case 3: result = nir_fnoise2_3(&b, srcs[0]); break;
1542 case 4: result = nir_fnoise2_4(&b, srcs[0]); break;
1543 default: unreachable("not reached");
1544 }
1545 break;
1546 case 3:
1547 switch (ir->operands[0]->type->vector_elements) {
1548 case 1: result = nir_fnoise3_1(&b, srcs[0]); break;
1549 case 2: result = nir_fnoise3_2(&b, srcs[0]); break;
1550 case 3: result = nir_fnoise3_3(&b, srcs[0]); break;
1551 case 4: result = nir_fnoise3_4(&b, srcs[0]); break;
1552 default: unreachable("not reached");
1553 }
1554 break;
1555 case 4:
1556 switch (ir->operands[0]->type->vector_elements) {
1557 case 1: result = nir_fnoise4_1(&b, srcs[0]); break;
1558 case 2: result = nir_fnoise4_2(&b, srcs[0]); break;
1559 case 3: result = nir_fnoise4_3(&b, srcs[0]); break;
1560 case 4: result = nir_fnoise4_4(&b, srcs[0]); break;
1561 default: unreachable("not reached");
1562 }
1563 break;
1564 default:
1565 unreachable("not reached");
1566 }
1567 break;
1568 case ir_unop_get_buffer_size: {
1569 nir_intrinsic_instr *load = nir_intrinsic_instr_create(
1570 this->shader,
1571 nir_intrinsic_get_buffer_size);
1572 load->num_components = ir->type->vector_elements;
1573 load->src[0] = nir_src_for_ssa(evaluate_rvalue(ir->operands[0]));
1574 unsigned bit_size = glsl_get_bit_size(ir->type);
1575 add_instr(&load->instr, ir->type->vector_elements, bit_size);
1576 return;
1577 }
1578
1579 case ir_binop_add:
1580 result = type_is_float(out_type) ? nir_fadd(&b, srcs[0], srcs[1])
1581 : nir_iadd(&b, srcs[0], srcs[1]);
1582 break;
1583 case ir_binop_sub:
1584 result = type_is_float(out_type) ? nir_fsub(&b, srcs[0], srcs[1])
1585 : nir_isub(&b, srcs[0], srcs[1]);
1586 break;
1587 case ir_binop_mul:
1588 result = type_is_float(out_type) ? nir_fmul(&b, srcs[0], srcs[1])
1589 : nir_imul(&b, srcs[0], srcs[1]);
1590 break;
1591 case ir_binop_div:
1592 if (type_is_float(out_type))
1593 result = nir_fdiv(&b, srcs[0], srcs[1]);
1594 else if (out_type == GLSL_TYPE_INT)
1595 result = nir_idiv(&b, srcs[0], srcs[1]);
1596 else
1597 result = nir_udiv(&b, srcs[0], srcs[1]);
1598 break;
1599 case ir_binop_mod:
1600 result = type_is_float(out_type) ? nir_fmod(&b, srcs[0], srcs[1])
1601 : nir_umod(&b, srcs[0], srcs[1]);
1602 break;
1603 case ir_binop_min:
1604 if (type_is_float(out_type))
1605 result = nir_fmin(&b, srcs[0], srcs[1]);
1606 else if (out_type == GLSL_TYPE_INT)
1607 result = nir_imin(&b, srcs[0], srcs[1]);
1608 else
1609 result = nir_umin(&b, srcs[0], srcs[1]);
1610 break;
1611 case ir_binop_max:
1612 if (type_is_float(out_type))
1613 result = nir_fmax(&b, srcs[0], srcs[1]);
1614 else if (out_type == GLSL_TYPE_INT)
1615 result = nir_imax(&b, srcs[0], srcs[1]);
1616 else
1617 result = nir_umax(&b, srcs[0], srcs[1]);
1618 break;
1619 case ir_binop_pow: result = nir_fpow(&b, srcs[0], srcs[1]); break;
1620 case ir_binop_bit_and: result = nir_iand(&b, srcs[0], srcs[1]); break;
1621 case ir_binop_bit_or: result = nir_ior(&b, srcs[0], srcs[1]); break;
1622 case ir_binop_bit_xor: result = nir_ixor(&b, srcs[0], srcs[1]); break;
1623 case ir_binop_logic_and:
1624 result = supports_ints ? nir_iand(&b, srcs[0], srcs[1])
1625 : nir_fand(&b, srcs[0], srcs[1]);
1626 break;
1627 case ir_binop_logic_or:
1628 result = supports_ints ? nir_ior(&b, srcs[0], srcs[1])
1629 : nir_for(&b, srcs[0], srcs[1]);
1630 break;
1631 case ir_binop_logic_xor:
1632 result = supports_ints ? nir_ixor(&b, srcs[0], srcs[1])
1633 : nir_fxor(&b, srcs[0], srcs[1]);
1634 break;
1635 case ir_binop_lshift: result = nir_ishl(&b, srcs[0], srcs[1]); break;
1636 case ir_binop_rshift:
1637 result = (out_type == GLSL_TYPE_INT) ? nir_ishr(&b, srcs[0], srcs[1])
1638 : nir_ushr(&b, srcs[0], srcs[1]);
1639 break;
1640 case ir_binop_imul_high:
1641 result = (out_type == GLSL_TYPE_INT) ? nir_imul_high(&b, srcs[0], srcs[1])
1642 : nir_umul_high(&b, srcs[0], srcs[1]);
1643 break;
1644 case ir_binop_carry: result = nir_uadd_carry(&b, srcs[0], srcs[1]); break;
1645 case ir_binop_borrow: result = nir_usub_borrow(&b, srcs[0], srcs[1]); break;
1646 case ir_binop_less:
1647 if (supports_ints) {
1648 if (type_is_float(types[0]))
1649 result = nir_flt(&b, srcs[0], srcs[1]);
1650 else if (types[0] == GLSL_TYPE_INT)
1651 result = nir_ilt(&b, srcs[0], srcs[1]);
1652 else
1653 result = nir_ult(&b, srcs[0], srcs[1]);
1654 } else {
1655 result = nir_slt(&b, srcs[0], srcs[1]);
1656 }
1657 break;
1658 case ir_binop_greater:
1659 if (supports_ints) {
1660 if (type_is_float(types[0]))
1661 result = nir_flt(&b, srcs[1], srcs[0]);
1662 else if (types[0] == GLSL_TYPE_INT)
1663 result = nir_ilt(&b, srcs[1], srcs[0]);
1664 else
1665 result = nir_ult(&b, srcs[1], srcs[0]);
1666 } else {
1667 result = nir_slt(&b, srcs[1], srcs[0]);
1668 }
1669 break;
1670 case ir_binop_lequal:
1671 if (supports_ints) {
1672 if (type_is_float(types[0]))
1673 result = nir_fge(&b, srcs[1], srcs[0]);
1674 else if (types[0] == GLSL_TYPE_INT)
1675 result = nir_ige(&b, srcs[1], srcs[0]);
1676 else
1677 result = nir_uge(&b, srcs[1], srcs[0]);
1678 } else {
1679 result = nir_slt(&b, srcs[1], srcs[0]);
1680 }
1681 break;
1682 case ir_binop_gequal:
1683 if (supports_ints) {
1684 if (type_is_float(types[0]))
1685 result = nir_fge(&b, srcs[0], srcs[1]);
1686 else if (types[0] == GLSL_TYPE_INT)
1687 result = nir_ige(&b, srcs[0], srcs[1]);
1688 else
1689 result = nir_uge(&b, srcs[0], srcs[1]);
1690 } else {
1691 result = nir_slt(&b, srcs[0], srcs[1]);
1692 }
1693 break;
1694 case ir_binop_equal:
1695 if (supports_ints) {
1696 if (type_is_float(types[0]))
1697 result = nir_feq(&b, srcs[0], srcs[1]);
1698 else
1699 result = nir_ieq(&b, srcs[0], srcs[1]);
1700 } else {
1701 result = nir_seq(&b, srcs[0], srcs[1]);
1702 }
1703 break;
1704 case ir_binop_nequal:
1705 if (supports_ints) {
1706 if (type_is_float(types[0]))
1707 result = nir_fne(&b, srcs[0], srcs[1]);
1708 else
1709 result = nir_ine(&b, srcs[0], srcs[1]);
1710 } else {
1711 result = nir_sne(&b, srcs[0], srcs[1]);
1712 }
1713 break;
1714 case ir_binop_all_equal:
1715 if (supports_ints) {
1716 if (type_is_float(types[0])) {
1717 switch (ir->operands[0]->type->vector_elements) {
1718 case 1: result = nir_feq(&b, srcs[0], srcs[1]); break;
1719 case 2: result = nir_ball_fequal2(&b, srcs[0], srcs[1]); break;
1720 case 3: result = nir_ball_fequal3(&b, srcs[0], srcs[1]); break;
1721 case 4: result = nir_ball_fequal4(&b, srcs[0], srcs[1]); break;
1722 default:
1723 unreachable("not reached");
1724 }
1725 } else {
1726 switch (ir->operands[0]->type->vector_elements) {
1727 case 1: result = nir_ieq(&b, srcs[0], srcs[1]); break;
1728 case 2: result = nir_ball_iequal2(&b, srcs[0], srcs[1]); break;
1729 case 3: result = nir_ball_iequal3(&b, srcs[0], srcs[1]); break;
1730 case 4: result = nir_ball_iequal4(&b, srcs[0], srcs[1]); break;
1731 default:
1732 unreachable("not reached");
1733 }
1734 }
1735 } else {
1736 switch (ir->operands[0]->type->vector_elements) {
1737 case 1: result = nir_seq(&b, srcs[0], srcs[1]); break;
1738 case 2: result = nir_fall_equal2(&b, srcs[0], srcs[1]); break;
1739 case 3: result = nir_fall_equal3(&b, srcs[0], srcs[1]); break;
1740 case 4: result = nir_fall_equal4(&b, srcs[0], srcs[1]); break;
1741 default:
1742 unreachable("not reached");
1743 }
1744 }
1745 break;
1746 case ir_binop_any_nequal:
1747 if (supports_ints) {
1748 if (type_is_float(types[0])) {
1749 switch (ir->operands[0]->type->vector_elements) {
1750 case 1: result = nir_fne(&b, srcs[0], srcs[1]); break;
1751 case 2: result = nir_bany_fnequal2(&b, srcs[0], srcs[1]); break;
1752 case 3: result = nir_bany_fnequal3(&b, srcs[0], srcs[1]); break;
1753 case 4: result = nir_bany_fnequal4(&b, srcs[0], srcs[1]); break;
1754 default:
1755 unreachable("not reached");
1756 }
1757 } else {
1758 switch (ir->operands[0]->type->vector_elements) {
1759 case 1: result = nir_ine(&b, srcs[0], srcs[1]); break;
1760 case 2: result = nir_bany_inequal2(&b, srcs[0], srcs[1]); break;
1761 case 3: result = nir_bany_inequal3(&b, srcs[0], srcs[1]); break;
1762 case 4: result = nir_bany_inequal4(&b, srcs[0], srcs[1]); break;
1763 default:
1764 unreachable("not reached");
1765 }
1766 }
1767 } else {
1768 switch (ir->operands[0]->type->vector_elements) {
1769 case 1: result = nir_sne(&b, srcs[0], srcs[1]); break;
1770 case 2: result = nir_fany_nequal2(&b, srcs[0], srcs[1]); break;
1771 case 3: result = nir_fany_nequal3(&b, srcs[0], srcs[1]); break;
1772 case 4: result = nir_fany_nequal4(&b, srcs[0], srcs[1]); break;
1773 default:
1774 unreachable("not reached");
1775 }
1776 }
1777 break;
1778 case ir_binop_dot:
1779 switch (ir->operands[0]->type->vector_elements) {
1780 case 2: result = nir_fdot2(&b, srcs[0], srcs[1]); break;
1781 case 3: result = nir_fdot3(&b, srcs[0], srcs[1]); break;
1782 case 4: result = nir_fdot4(&b, srcs[0], srcs[1]); break;
1783 default:
1784 unreachable("not reached");
1785 }
1786 break;
1787
1788 case ir_binop_ldexp: result = nir_ldexp(&b, srcs[0], srcs[1]); break;
1789 case ir_triop_fma:
1790 result = nir_ffma(&b, srcs[0], srcs[1], srcs[2]);
1791 break;
1792 case ir_triop_lrp:
1793 result = nir_flrp(&b, srcs[0], srcs[1], srcs[2]);
1794 break;
1795 case ir_triop_csel:
1796 if (supports_ints)
1797 result = nir_bcsel(&b, srcs[0], srcs[1], srcs[2]);
1798 else
1799 result = nir_fcsel(&b, srcs[0], srcs[1], srcs[2]);
1800 break;
1801 case ir_triop_bitfield_extract:
1802 result = (out_type == GLSL_TYPE_INT) ?
1803 nir_ibitfield_extract(&b, srcs[0], srcs[1], srcs[2]) :
1804 nir_ubitfield_extract(&b, srcs[0], srcs[1], srcs[2]);
1805 break;
1806 case ir_quadop_bitfield_insert:
1807 result = nir_bitfield_insert(&b, srcs[0], srcs[1], srcs[2], srcs[3]);
1808 break;
1809 case ir_quadop_vector:
1810 result = nir_vec(&b, srcs, ir->type->vector_elements);
1811 break;
1812
1813 default:
1814 unreachable("not reached");
1815 }
1816 }
1817
1818 void
1819 nir_visitor::visit(ir_swizzle *ir)
1820 {
1821 unsigned swizzle[4] = { ir->mask.x, ir->mask.y, ir->mask.z, ir->mask.w };
1822 result = nir_swizzle(&b, evaluate_rvalue(ir->val), swizzle,
1823 ir->type->vector_elements, !supports_ints);
1824 }
1825
1826 void
1827 nir_visitor::visit(ir_texture *ir)
1828 {
1829 unsigned num_srcs;
1830 nir_texop op;
1831 switch (ir->op) {
1832 case ir_tex:
1833 op = nir_texop_tex;
1834 num_srcs = 1; /* coordinate */
1835 break;
1836
1837 case ir_txb:
1838 case ir_txl:
1839 op = (ir->op == ir_txb) ? nir_texop_txb : nir_texop_txl;
1840 num_srcs = 2; /* coordinate, bias/lod */
1841 break;
1842
1843 case ir_txd:
1844 op = nir_texop_txd; /* coordinate, dPdx, dPdy */
1845 num_srcs = 3;
1846 break;
1847
1848 case ir_txf:
1849 op = nir_texop_txf;
1850 if (ir->lod_info.lod != NULL)
1851 num_srcs = 2; /* coordinate, lod */
1852 else
1853 num_srcs = 1; /* coordinate */
1854 break;
1855
1856 case ir_txf_ms:
1857 op = nir_texop_txf_ms;
1858 num_srcs = 2; /* coordinate, sample_index */
1859 break;
1860
1861 case ir_txs:
1862 op = nir_texop_txs;
1863 if (ir->lod_info.lod != NULL)
1864 num_srcs = 1; /* lod */
1865 else
1866 num_srcs = 0;
1867 break;
1868
1869 case ir_lod:
1870 op = nir_texop_lod;
1871 num_srcs = 1; /* coordinate */
1872 break;
1873
1874 case ir_tg4:
1875 op = nir_texop_tg4;
1876 num_srcs = 1; /* coordinate */
1877 break;
1878
1879 case ir_query_levels:
1880 op = nir_texop_query_levels;
1881 num_srcs = 0;
1882 break;
1883
1884 case ir_texture_samples:
1885 op = nir_texop_texture_samples;
1886 num_srcs = 0;
1887 break;
1888
1889 case ir_samples_identical:
1890 op = nir_texop_samples_identical;
1891 num_srcs = 1; /* coordinate */
1892 break;
1893
1894 default:
1895 unreachable("not reached");
1896 }
1897
1898 if (ir->projector != NULL)
1899 num_srcs++;
1900 if (ir->shadow_comparitor != NULL)
1901 num_srcs++;
1902 if (ir->offset != NULL)
1903 num_srcs++;
1904
1905 nir_tex_instr *instr = nir_tex_instr_create(this->shader, num_srcs);
1906
1907 instr->op = op;
1908 instr->sampler_dim =
1909 (glsl_sampler_dim) ir->sampler->type->sampler_dimensionality;
1910 instr->is_array = ir->sampler->type->sampler_array;
1911 instr->is_shadow = ir->sampler->type->sampler_shadow;
1912 if (instr->is_shadow)
1913 instr->is_new_style_shadow = (ir->type->vector_elements == 1);
1914 switch (ir->type->base_type) {
1915 case GLSL_TYPE_FLOAT:
1916 instr->dest_type = nir_type_float;
1917 break;
1918 case GLSL_TYPE_INT:
1919 instr->dest_type = nir_type_int;
1920 break;
1921 case GLSL_TYPE_BOOL:
1922 case GLSL_TYPE_UINT:
1923 instr->dest_type = nir_type_uint;
1924 break;
1925 default:
1926 unreachable("not reached");
1927 }
1928
1929 instr->texture = evaluate_deref(&instr->instr, ir->sampler);
1930
1931 unsigned src_number = 0;
1932
1933 if (ir->coordinate != NULL) {
1934 instr->coord_components = ir->coordinate->type->vector_elements;
1935 instr->src[src_number].src =
1936 nir_src_for_ssa(evaluate_rvalue(ir->coordinate));
1937 instr->src[src_number].src_type = nir_tex_src_coord;
1938 src_number++;
1939 }
1940
1941 if (ir->projector != NULL) {
1942 instr->src[src_number].src =
1943 nir_src_for_ssa(evaluate_rvalue(ir->projector));
1944 instr->src[src_number].src_type = nir_tex_src_projector;
1945 src_number++;
1946 }
1947
1948 if (ir->shadow_comparitor != NULL) {
1949 instr->src[src_number].src =
1950 nir_src_for_ssa(evaluate_rvalue(ir->shadow_comparitor));
1951 instr->src[src_number].src_type = nir_tex_src_comparitor;
1952 src_number++;
1953 }
1954
1955 if (ir->offset != NULL) {
1956 /* we don't support multiple offsets yet */
1957 assert(ir->offset->type->is_vector() || ir->offset->type->is_scalar());
1958
1959 instr->src[src_number].src =
1960 nir_src_for_ssa(evaluate_rvalue(ir->offset));
1961 instr->src[src_number].src_type = nir_tex_src_offset;
1962 src_number++;
1963 }
1964
1965 switch (ir->op) {
1966 case ir_txb:
1967 instr->src[src_number].src =
1968 nir_src_for_ssa(evaluate_rvalue(ir->lod_info.bias));
1969 instr->src[src_number].src_type = nir_tex_src_bias;
1970 src_number++;
1971 break;
1972
1973 case ir_txl:
1974 case ir_txf:
1975 case ir_txs:
1976 if (ir->lod_info.lod != NULL) {
1977 instr->src[src_number].src =
1978 nir_src_for_ssa(evaluate_rvalue(ir->lod_info.lod));
1979 instr->src[src_number].src_type = nir_tex_src_lod;
1980 src_number++;
1981 }
1982 break;
1983
1984 case ir_txd:
1985 instr->src[src_number].src =
1986 nir_src_for_ssa(evaluate_rvalue(ir->lod_info.grad.dPdx));
1987 instr->src[src_number].src_type = nir_tex_src_ddx;
1988 src_number++;
1989 instr->src[src_number].src =
1990 nir_src_for_ssa(evaluate_rvalue(ir->lod_info.grad.dPdy));
1991 instr->src[src_number].src_type = nir_tex_src_ddy;
1992 src_number++;
1993 break;
1994
1995 case ir_txf_ms:
1996 instr->src[src_number].src =
1997 nir_src_for_ssa(evaluate_rvalue(ir->lod_info.sample_index));
1998 instr->src[src_number].src_type = nir_tex_src_ms_index;
1999 src_number++;
2000 break;
2001
2002 case ir_tg4:
2003 instr->component = ir->lod_info.component->as_constant()->value.u[0];
2004 break;
2005
2006 default:
2007 break;
2008 }
2009
2010 assert(src_number == num_srcs);
2011
2012 unsigned bit_size = glsl_get_bit_size(ir->type);
2013 add_instr(&instr->instr, nir_tex_instr_dest_size(instr), bit_size);
2014 }
2015
2016 void
2017 nir_visitor::visit(ir_constant *ir)
2018 {
2019 /*
2020 * We don't know if this variable is an array or struct that gets
2021 * dereferenced, so do the safe thing an make it a variable with a
2022 * constant initializer and return a dereference.
2023 */
2024
2025 nir_variable *var =
2026 nir_local_variable_create(this->impl, ir->type, "const_temp");
2027 var->data.read_only = true;
2028 var->constant_initializer = constant_copy(ir, var);
2029
2030 this->deref_head = nir_deref_var_create(this->shader, var);
2031 this->deref_tail = &this->deref_head->deref;
2032 }
2033
2034 void
2035 nir_visitor::visit(ir_dereference_variable *ir)
2036 {
2037 struct hash_entry *entry =
2038 _mesa_hash_table_search(this->var_table, ir->var);
2039 assert(entry);
2040 nir_variable *var = (nir_variable *) entry->data;
2041
2042 nir_deref_var *deref = nir_deref_var_create(this->shader, var);
2043 this->deref_head = deref;
2044 this->deref_tail = &deref->deref;
2045 }
2046
2047 void
2048 nir_visitor::visit(ir_dereference_record *ir)
2049 {
2050 ir->record->accept(this);
2051
2052 int field_index = this->deref_tail->type->field_index(ir->field);
2053 assert(field_index >= 0);
2054
2055 nir_deref_struct *deref = nir_deref_struct_create(this->deref_tail, field_index);
2056 deref->deref.type = ir->type;
2057 this->deref_tail->child = &deref->deref;
2058 this->deref_tail = &deref->deref;
2059 }
2060
2061 void
2062 nir_visitor::visit(ir_dereference_array *ir)
2063 {
2064 nir_deref_array *deref = nir_deref_array_create(this->shader);
2065 deref->deref.type = ir->type;
2066
2067 ir_constant *const_index = ir->array_index->as_constant();
2068 if (const_index != NULL) {
2069 deref->deref_array_type = nir_deref_array_type_direct;
2070 deref->base_offset = const_index->value.u[0];
2071 } else {
2072 deref->deref_array_type = nir_deref_array_type_indirect;
2073 deref->indirect =
2074 nir_src_for_ssa(evaluate_rvalue(ir->array_index));
2075 }
2076
2077 ir->array->accept(this);
2078
2079 this->deref_tail->child = &deref->deref;
2080 ralloc_steal(this->deref_tail, deref);
2081 this->deref_tail = &deref->deref;
2082 }
2083
2084 void
2085 nir_visitor::visit(ir_barrier *)
2086 {
2087 nir_intrinsic_instr *instr =
2088 nir_intrinsic_instr_create(this->shader, nir_intrinsic_barrier);
2089 nir_builder_instr_insert(&b, &instr->instr);
2090 }