blob: 385ce9ef6d79dc9192336034cdb69b3edb140d5f [file] [log] [blame]
Eric Anholtcad97662010-04-07 11:46:26 -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_function_inlining.cpp
26 *
27 * Replaces calls to functions with the body of the function.
28 */
29
30#define NULL 0
31#include "ir.h"
32#include "ir_visitor.h"
33#include "ir_function_inlining.h"
Eric Anholt0d423212010-04-16 12:53:46 -070034#include "ir_expression_flattening.h"
Eric Anholtcad97662010-04-07 11:46:26 -070035#include "glsl_types.h"
36
37class variable_remap : public exec_node {
38public:
39 variable_remap(const ir_variable *old_var, ir_variable *new_var)
40 : old_var(old_var), new_var(new_var)
41 {
42 /* empty */
43 }
44 const ir_variable *old_var;
45 ir_variable *new_var;
46};
47
48class ir_function_cloning_visitor : public ir_visitor {
49public:
50 ir_function_cloning_visitor(ir_variable *retval)
51 : retval(retval)
52 {
53 /* empty */
54 }
55
56 virtual ~ir_function_cloning_visitor()
57 {
58 /* empty */
59 }
60
61 void remap_variable(const ir_variable *old_var, ir_variable *new_var) {
62 variable_remap *remap = new variable_remap(old_var, new_var);
63 this->remap_list.push_tail(remap);
64 }
65
66 ir_variable *get_remapped_variable(ir_variable *var) {
67 foreach_iter(exec_list_iterator, iter, this->remap_list) {
68 variable_remap *remap = (variable_remap *)iter.get();
69
70 if (var == remap->old_var)
71 return remap->new_var;
72 }
73
74 /* Not a reapped variable, so a global scoped reference, for example. */
75 return var;
76 }
77
78 /* List of variable_remap for mapping from original function body variables
79 * to inlined function body variables.
80 */
81 exec_list remap_list;
82
83 /* Return value for the inlined function. */
84 ir_variable *retval;
85
86 /**
87 * \name Visit methods
88 *
89 * As typical for the visitor pattern, there must be one \c visit method for
90 * each concrete subclass of \c ir_instruction. Virtual base classes within
91 * the hierarchy should not have \c visit methods.
92 */
93 /*@{*/
94 virtual void visit(ir_variable *);
Eric Anholtcad97662010-04-07 11:46:26 -070095 virtual void visit(ir_loop *);
96 virtual void visit(ir_loop_jump *);
97 virtual void visit(ir_function_signature *);
98 virtual void visit(ir_function *);
99 virtual void visit(ir_expression *);
100 virtual void visit(ir_swizzle *);
101 virtual void visit(ir_dereference *);
102 virtual void visit(ir_assignment *);
103 virtual void visit(ir_constant *);
104 virtual void visit(ir_call *);
105 virtual void visit(ir_return *);
106 virtual void visit(ir_if *);
107 /*@}*/
108
109 ir_instruction *result;
110};
111
112void
113ir_function_cloning_visitor::visit(ir_variable *ir)
114{
115 ir_variable *new_var = ir->clone();
116
117 this->result = new_var;
118
119 this->remap_variable(ir, new_var);
120}
121
122void
Eric Anholtcad97662010-04-07 11:46:26 -0700123ir_function_cloning_visitor::visit(ir_loop *ir)
124{
Eric Anholte8e97482010-04-22 17:52:59 -0700125 /* FINISHME: Implement loop cloning. */
126 assert(0);
127
Eric Anholtcad97662010-04-07 11:46:26 -0700128 (void)ir;
129 this->result = NULL;
130}
131
132void
133ir_function_cloning_visitor::visit(ir_loop_jump *ir)
134{
Eric Anholte8e97482010-04-22 17:52:59 -0700135 /* FINISHME: Implement loop cloning. */
136 assert(0);
137
Eric Anholtcad97662010-04-07 11:46:26 -0700138 (void) ir;
139 this->result = NULL;
140}
141
142
143void
144ir_function_cloning_visitor::visit(ir_function_signature *ir)
145{
Eric Anholte8e97482010-04-22 17:52:59 -0700146 assert(0);
Eric Anholtcad97662010-04-07 11:46:26 -0700147 (void)ir;
148 this->result = NULL;
149}
150
151
152void
153ir_function_cloning_visitor::visit(ir_function *ir)
154{
Eric Anholte8e97482010-04-22 17:52:59 -0700155 assert(0);
Eric Anholtcad97662010-04-07 11:46:26 -0700156 (void) ir;
157 this->result = NULL;
158}
159
160void
161ir_function_cloning_visitor::visit(ir_expression *ir)
162{
163 unsigned int operand;
164 ir_rvalue *op[2] = {NULL, NULL};
165
166 for (operand = 0; operand < ir->get_num_operands(); operand++) {
167 ir->operands[operand]->accept(this);
168 op[operand] = this->result->as_rvalue();
169 assert(op[operand]);
170 }
171
172 this->result = new ir_expression(ir->operation, ir->type, op[0], op[1]);
173}
174
175
176void
177ir_function_cloning_visitor::visit(ir_swizzle *ir)
178{
179 ir->val->accept(this);
180
181 this->result = new ir_swizzle(this->result->as_rvalue(), ir->mask);
182}
183
184void
185ir_function_cloning_visitor::visit(ir_dereference *ir)
186{
Eric Anholtc0bfe872010-04-26 15:01:50 -0700187 ir_variable *old_var = ir->var->as_variable();
188 ir_instruction *var;
Eric Anholtcad97662010-04-07 11:46:26 -0700189
Eric Anholtc0bfe872010-04-26 15:01:50 -0700190 if (old_var)
191 var = this->get_remapped_variable(old_var);
192 else {
Eric Anholt61924342010-04-08 13:40:52 -0700193 ir->var->accept(this);
Eric Anholtc0bfe872010-04-26 15:01:50 -0700194 var = this->result;
195 }
196
197 if (ir->mode == ir_dereference::ir_reference_variable) {
198 this->result = new ir_dereference(var);
199 } else if (ir->mode == ir_dereference::ir_reference_array) {
200 ir_rvalue *index;
Eric Anholt61924342010-04-08 13:40:52 -0700201
202 ir->selector.array_index->accept(this);
203 index = this->result->as_rvalue();
204
Eric Anholtc0bfe872010-04-26 15:01:50 -0700205 this->result = new ir_dereference(var, index);
Eric Anholtcad97662010-04-07 11:46:26 -0700206 } else {
Eric Anholt61924342010-04-08 13:40:52 -0700207 assert(ir->mode == ir_dereference::ir_reference_record);
Eric Anholt35e8e462010-04-26 15:02:40 -0700208 this->result = new ir_dereference(var, strdup(ir->selector.field));
Eric Anholtcad97662010-04-07 11:46:26 -0700209 }
210}
211
212void
213ir_function_cloning_visitor::visit(ir_assignment *ir)
214{
Eric Anholt22147be2010-04-22 18:41:32 -0700215 ir_rvalue *lhs, *rhs, *condition = NULL;
Eric Anholtcad97662010-04-07 11:46:26 -0700216
217 ir->lhs->accept(this);
218 lhs = this->result->as_rvalue();
219
220 ir->rhs->accept(this);
221 rhs = this->result->as_rvalue();
222
Eric Anholt22147be2010-04-22 18:41:32 -0700223 if (ir->condition) {
224 ir->condition->accept(this);
225 condition = this->result->as_rvalue();
226 }
Eric Anholtcad97662010-04-07 11:46:26 -0700227
228 this->result = new ir_assignment(lhs, rhs, condition);
229}
230
231
232void
233ir_function_cloning_visitor::visit(ir_constant *ir)
234{
235 this->result = ir->clone();
236}
237
238
239void
240ir_function_cloning_visitor::visit(ir_call *ir)
241{
242 exec_list parameters;
243
244 foreach_iter(exec_list_iterator, iter, *ir) {
245 ir_rvalue *param = (ir_rvalue *)iter.get();
246
247 param->accept(this);
248 parameters.push_tail(this->result);
249 }
250
251 this->result = new ir_call(ir->get_callee(), &parameters);
252}
253
254
255void
256ir_function_cloning_visitor::visit(ir_return *ir)
257{
258 ir_rvalue *rval;
259
260 assert(this->retval);
261
262 rval = ir->get_value();
263 rval->accept(this);
264 rval = this->result->as_rvalue();
265 assert(rval);
266
267 result = new ir_assignment(new ir_dereference(this->retval),
268 ir->get_value(), NULL);
269}
270
271
272void
273ir_function_cloning_visitor::visit(ir_if *ir)
274{
Eric Anholte8e97482010-04-22 17:52:59 -0700275 /* FINISHME: Implement if cloning. */
276 assert(0);
277
Eric Anholtcad97662010-04-07 11:46:26 -0700278 (void) ir;
279 result = NULL;
280}
281
282bool
Eric Anholt0d423212010-04-16 12:53:46 -0700283automatic_inlining_predicate(ir_instruction *ir)
284{
285 ir_call *call = ir->as_call();
286
287 if (call && can_inline(call))
288 return true;
289
290 return false;
291}
292
293bool
Eric Anholtcad97662010-04-07 11:46:26 -0700294do_function_inlining(exec_list *instructions)
295{
Eric Anholt2a7b2b22010-04-08 13:42:48 -0700296 bool progress = false;
Eric Anholtcad97662010-04-07 11:46:26 -0700297
Eric Anholt0d423212010-04-16 12:53:46 -0700298 do_expression_flattening(instructions, automatic_inlining_predicate);
299
Eric Anholtcad97662010-04-07 11:46:26 -0700300 foreach_iter(exec_list_iterator, iter, *instructions) {
301 ir_instruction *ir = (ir_instruction *)iter.get();
302 ir_assignment *assign = ir->as_assignment();
303 ir_call *call;
304
305 if (assign) {
306 call = assign->rhs->as_call();
307 if (!call || !can_inline(call))
308 continue;
309
310 /* generates the parameter setup, function body, and returns the return
311 * value of the function
312 */
313 ir_rvalue *rhs = call->generate_inline(ir);
314 assert(rhs);
315
316 assign->rhs = rhs;
317 progress = true;
318 } else if ((call = ir->as_call()) && can_inline(call)) {
319 (void)call->generate_inline(ir);
320 ir->remove();
321 progress = true;
322 } else {
323 ir_function_inlining_visitor v;
324 ir->accept(&v);
325 }
326 }
327
328 return progress;
329}
330
331ir_rvalue *
332ir_call::generate_inline(ir_instruction *next_ir)
333{
334 ir_variable **parameters;
335 int num_parameters;
336 int i;
337 ir_variable *retval = NULL;
338
339 num_parameters = 0;
340 foreach_iter(exec_list_iterator, iter_sig, this->callee->parameters)
341 num_parameters++;
342
343 parameters = new ir_variable *[num_parameters];
344
345 /* Generate storage for the return value. */
346 if (this->callee->return_type) {
347 retval = new ir_variable(this->callee->return_type, "__retval");
348 next_ir->insert_before(retval);
349 }
350
351 ir_function_cloning_visitor v = ir_function_cloning_visitor(retval);
352
353 /* Generate the declarations for the parameters to our inlined code,
354 * and set up the mapping of real function body variables to ours.
355 */
356 i = 0;
357 exec_list_iterator sig_param_iter = this->callee->parameters.iterator();
358 exec_list_iterator param_iter = this->actual_parameters.iterator();
359 for (i = 0; i < num_parameters; i++) {
360 const ir_variable *const sig_param = (ir_variable *) sig_param_iter.get();
361 ir_rvalue *param = (ir_rvalue *) param_iter.get();
362
363 /* Generate a new variable for the parameter. */
364 parameters[i] = sig_param->clone();
365 next_ir->insert_before(parameters[i]);
366
367 v.remap_variable(sig_param, parameters[i]);
368
369 /* Move the actual param into our param variable if it's an 'in' type. */
370 if (parameters[i]->mode == ir_var_in ||
371 parameters[i]->mode == ir_var_inout) {
372 ir_assignment *assign;
373
374 assign = new ir_assignment(new ir_dereference(parameters[i]),
375 param, NULL);
376 next_ir->insert_before(assign);
377 }
378
379 sig_param_iter.next();
380 param_iter.next();
381 }
382
383 /* Generate the inlined body of the function. */
384 foreach_iter(exec_list_iterator, iter, callee->body) {
385 ir_instruction *ir = (ir_instruction *)iter.get();
386
387 ir->accept(&v);
388 assert(v.result);
389 next_ir->insert_before(v.result);
390 }
391
392 /* Generate the declarations for the parameters to our inlined code,
393 * and set up the mapping of real function body variables to ours.
394 */
395 i = 0;
396 param_iter = this->actual_parameters.iterator();
397 for (i = 0; i < num_parameters; i++) {
398 ir_instruction *const param = (ir_instruction *) param_iter.get();
399
400 /* Move the actual param into our param variable if it's an 'in' type. */
401 if (parameters[i]->mode == ir_var_out ||
402 parameters[i]->mode == ir_var_inout) {
403 ir_assignment *assign;
404
405 assign = new ir_assignment(param->as_rvalue(),
406 new ir_dereference(parameters[i]),
407 NULL);
408 next_ir->insert_before(assign);
409 }
410
411 param_iter.next();
412 }
413
414 delete(parameters);
415
416 if (retval)
417 return new ir_dereference(retval);
418 else
419 return NULL;
420}
421
422void
423ir_function_inlining_visitor::visit(ir_variable *ir)
424{
425 (void) ir;
426}
427
428
429void
Eric Anholtcad97662010-04-07 11:46:26 -0700430ir_function_inlining_visitor::visit(ir_loop *ir)
431{
432 do_function_inlining(&ir->body_instructions);
433}
434
435void
436ir_function_inlining_visitor::visit(ir_loop_jump *ir)
437{
438 (void) ir;
439}
440
441
442void
443ir_function_inlining_visitor::visit(ir_function_signature *ir)
444{
445 do_function_inlining(&ir->body);
446}
447
448
449void
450ir_function_inlining_visitor::visit(ir_function *ir)
451{
Kenneth Graunke9fa99f32010-04-21 12:30:22 -0700452 foreach_iter(exec_list_iterator, iter, *ir) {
453 ir_function_signature *const sig = (ir_function_signature *) iter.get();
454 sig->accept(this);
455 }
Eric Anholtcad97662010-04-07 11:46:26 -0700456}
457
458void
459ir_function_inlining_visitor::visit(ir_expression *ir)
460{
461 unsigned int operand;
462
463 for (operand = 0; operand < ir->get_num_operands(); operand++) {
464 ir->operands[operand]->accept(this);
465 }
466}
467
468
469void
470ir_function_inlining_visitor::visit(ir_swizzle *ir)
471{
472 ir->val->accept(this);
473}
474
475
476void
477ir_function_inlining_visitor::visit(ir_dereference *ir)
478{
479 if (ir->mode == ir_dereference::ir_reference_array) {
480 ir->selector.array_index->accept(this);
481 }
482 ir->var->accept(this);
483}
484
485void
486ir_function_inlining_visitor::visit(ir_assignment *ir)
487{
488 ir->rhs->accept(this);
489}
490
491
492void
493ir_function_inlining_visitor::visit(ir_constant *ir)
494{
495 (void) ir;
496}
497
498
499void
500ir_function_inlining_visitor::visit(ir_call *ir)
501{
502 (void) ir;
503}
504
505
506void
507ir_function_inlining_visitor::visit(ir_return *ir)
508{
509 (void) ir;
510}
511
512
513void
514ir_function_inlining_visitor::visit(ir_if *ir)
515{
516 ir->condition->accept(this);
517
518 do_function_inlining(&ir->then_instructions);
519 do_function_inlining(&ir->else_instructions);
520}