glsl: Rework reserved word/keyword handling in the lexer.
[mesa.git] / src / glsl / ast.h
1 /* -*- c++ -*- */
2 /*
3 * Copyright © 2009 Intel Corporation
4 *
5 * Permission is hereby granted, free of charge, to any person obtaining a
6 * copy of this software and associated documentation files (the "Software"),
7 * to deal in the Software without restriction, including without limitation
8 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
9 * and/or sell copies of the Software, and to permit persons to whom the
10 * Software is furnished to do so, subject to the following conditions:
11 *
12 * The above copyright notice and this permission notice (including the next
13 * paragraph) shall be included in all copies or substantial portions of the
14 * Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
19 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
21 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
22 * DEALINGS IN THE SOFTWARE.
23 */
24
25 #pragma once
26 #ifndef AST_H
27 #define AST_H
28
29 #include "list.h"
30 #include "glsl_parser_extras.h"
31
32 struct _mesa_glsl_parse_state;
33
34 struct YYLTYPE;
35
36 /**
37 * \defgroup AST Abstract syntax tree node definitions
38 *
39 * An abstract syntax tree is generated by the parser. This is a fairly
40 * direct representation of the gramma derivation for the source program.
41 * No symantic checking is done during the generation of the AST. Only
42 * syntactic checking is done. Symantic checking is performed by a later
43 * stage that converts the AST to a more generic intermediate representation.
44 *
45 *@{
46 */
47 /**
48 * Base class of all abstract syntax tree nodes
49 */
50 class ast_node {
51 public:
52 /* Callers of this talloc-based new need not call delete. It's
53 * easier to just talloc_free 'ctx' (or any of its ancestors). */
54 static void* operator new(size_t size, void *ctx)
55 {
56 void *node;
57
58 node = talloc_zero_size(ctx, size);
59 assert(node != NULL);
60
61 return node;
62 }
63
64 /* If the user *does* call delete, that's OK, we will just
65 * talloc_free in that case. */
66 static void operator delete(void *table)
67 {
68 talloc_free(table);
69 }
70
71 /**
72 * Print an AST node in something approximating the original GLSL code
73 */
74 virtual void print(void) const;
75
76 /**
77 * Convert the AST node to the high-level intermediate representation
78 */
79 virtual ir_rvalue *hir(exec_list *instructions,
80 struct _mesa_glsl_parse_state *state);
81
82 /**
83 * Retrieve the source location of an AST node
84 *
85 * This function is primarily used to get the source position of an AST node
86 * into a form that can be passed to \c _mesa_glsl_error.
87 *
88 * \sa _mesa_glsl_error, ast_node::set_location
89 */
90 struct YYLTYPE get_location(void) const
91 {
92 struct YYLTYPE locp;
93
94 locp.source = this->location.source;
95 locp.first_line = this->location.line;
96 locp.first_column = this->location.column;
97 locp.last_line = locp.first_line;
98 locp.last_column = locp.first_column;
99
100 return locp;
101 }
102
103 /**
104 * Set the source location of an AST node from a parser location
105 *
106 * \sa ast_node::get_location
107 */
108 void set_location(const struct YYLTYPE &locp)
109 {
110 this->location.source = locp.source;
111 this->location.line = locp.first_line;
112 this->location.column = locp.first_column;
113 }
114
115 /**
116 * Source location of the AST node.
117 */
118 struct {
119 unsigned source; /**< GLSL source number. */
120 unsigned line; /**< Line number within the source string. */
121 unsigned column; /**< Column in the line. */
122 } location;
123
124 exec_node link;
125
126 protected:
127 /**
128 * The only constructor is protected so that only derived class objects can
129 * be created.
130 */
131 ast_node(void);
132 };
133
134
135 /**
136 * Operators for AST expression nodes.
137 */
138 enum ast_operators {
139 ast_assign,
140 ast_plus, /**< Unary + operator. */
141 ast_neg,
142 ast_add,
143 ast_sub,
144 ast_mul,
145 ast_div,
146 ast_mod,
147 ast_lshift,
148 ast_rshift,
149 ast_less,
150 ast_greater,
151 ast_lequal,
152 ast_gequal,
153 ast_equal,
154 ast_nequal,
155 ast_bit_and,
156 ast_bit_xor,
157 ast_bit_or,
158 ast_bit_not,
159 ast_logic_and,
160 ast_logic_xor,
161 ast_logic_or,
162 ast_logic_not,
163
164 ast_mul_assign,
165 ast_div_assign,
166 ast_mod_assign,
167 ast_add_assign,
168 ast_sub_assign,
169 ast_ls_assign,
170 ast_rs_assign,
171 ast_and_assign,
172 ast_xor_assign,
173 ast_or_assign,
174
175 ast_conditional,
176
177 ast_pre_inc,
178 ast_pre_dec,
179 ast_post_inc,
180 ast_post_dec,
181 ast_field_selection,
182 ast_array_index,
183
184 ast_function_call,
185
186 ast_identifier,
187 ast_int_constant,
188 ast_uint_constant,
189 ast_float_constant,
190 ast_bool_constant,
191
192 ast_sequence
193 };
194
195 /**
196 * Representation of any sort of expression.
197 */
198 class ast_expression : public ast_node {
199 public:
200 ast_expression(int oper, ast_expression *,
201 ast_expression *, ast_expression *);
202
203 ast_expression(const char *identifier) :
204 oper(ast_identifier)
205 {
206 subexpressions[0] = NULL;
207 subexpressions[1] = NULL;
208 subexpressions[2] = NULL;
209 primary_expression.identifier = (char *) identifier;
210 }
211
212 static const char *operator_string(enum ast_operators op);
213
214 virtual ir_rvalue *hir(exec_list *instructions,
215 struct _mesa_glsl_parse_state *state);
216
217 virtual void print(void) const;
218
219 enum ast_operators oper;
220
221 ast_expression *subexpressions[3];
222
223 union {
224 char *identifier;
225 int int_constant;
226 float float_constant;
227 unsigned uint_constant;
228 int bool_constant;
229 } primary_expression;
230
231
232 /**
233 * List of expressions for an \c ast_sequence or parameters for an
234 * \c ast_function_call
235 */
236 exec_list expressions;
237 };
238
239 class ast_expression_bin : public ast_expression {
240 public:
241 ast_expression_bin(int oper, ast_expression *, ast_expression *);
242
243 virtual void print(void) const;
244 };
245
246 /**
247 * Subclass of expressions for function calls
248 */
249 class ast_function_expression : public ast_expression {
250 public:
251 ast_function_expression(ast_expression *callee)
252 : ast_expression(ast_function_call, callee,
253 NULL, NULL),
254 cons(false)
255 {
256 /* empty */
257 }
258
259 ast_function_expression(class ast_type_specifier *type)
260 : ast_expression(ast_function_call, (ast_expression *) type,
261 NULL, NULL),
262 cons(true)
263 {
264 /* empty */
265 }
266
267 bool is_constructor() const
268 {
269 return cons;
270 }
271
272 virtual ir_rvalue *hir(exec_list *instructions,
273 struct _mesa_glsl_parse_state *state);
274
275 private:
276 /**
277 * Is this function call actually a constructor?
278 */
279 bool cons;
280 };
281
282
283 /**
284 * Number of possible operators for an ast_expression
285 *
286 * This is done as a define instead of as an additional value in the enum so
287 * that the compiler won't generate spurious messages like "warning:
288 * enumeration value ‘ast_num_operators’ not handled in switch"
289 */
290 #define AST_NUM_OPERATORS (ast_sequence + 1)
291
292
293 class ast_compound_statement : public ast_node {
294 public:
295 ast_compound_statement(int new_scope, ast_node *statements);
296 virtual void print(void) const;
297
298 virtual ir_rvalue *hir(exec_list *instructions,
299 struct _mesa_glsl_parse_state *state);
300
301 int new_scope;
302 exec_list statements;
303 };
304
305 class ast_declaration : public ast_node {
306 public:
307 ast_declaration(char *identifier, int is_array, ast_expression *array_size,
308 ast_expression *initializer);
309 virtual void print(void) const;
310
311 char *identifier;
312
313 int is_array;
314 ast_expression *array_size;
315
316 ast_expression *initializer;
317 };
318
319
320 enum {
321 ast_precision_high = 0, /**< Default precision. */
322 ast_precision_medium,
323 ast_precision_low
324 };
325
326 struct ast_type_qualifier {
327 union {
328 struct {
329 unsigned invariant:1;
330 unsigned constant:1;
331 unsigned attribute:1;
332 unsigned varying:1;
333 unsigned in:1;
334 unsigned out:1;
335 unsigned centroid:1;
336 unsigned uniform:1;
337 unsigned smooth:1;
338 unsigned flat:1;
339 unsigned noperspective:1;
340
341 /** \name Layout qualifiers for GL_ARB_fragment_coord_conventions */
342 /*@{*/
343 unsigned origin_upper_left:1;
344 unsigned pixel_center_integer:1;
345 /*@}*/
346
347 /**
348 * Flag set if GL_ARB_explicit_attrib_location "location" layout
349 * qualifier is used.
350 */
351 unsigned explicit_location:1;
352 } q;
353 unsigned i;
354 } flags;
355
356 /**
357 * Location specified via GL_ARB_explicit_attrib_location layout
358 *
359 * \note
360 * This field is only valid if \c explicit_location is set.
361 */
362 unsigned location;
363 };
364
365 class ast_struct_specifier : public ast_node {
366 public:
367 ast_struct_specifier(char *identifier, ast_node *declarator_list);
368 virtual void print(void) const;
369
370 virtual ir_rvalue *hir(exec_list *instructions,
371 struct _mesa_glsl_parse_state *state);
372
373 char *name;
374 exec_list declarations;
375 };
376
377
378 enum ast_types {
379 ast_void,
380 ast_float,
381 ast_int,
382 ast_uint,
383 ast_bool,
384 ast_vec2,
385 ast_vec3,
386 ast_vec4,
387 ast_bvec2,
388 ast_bvec3,
389 ast_bvec4,
390 ast_ivec2,
391 ast_ivec3,
392 ast_ivec4,
393 ast_uvec2,
394 ast_uvec3,
395 ast_uvec4,
396 ast_mat2,
397 ast_mat2x3,
398 ast_mat2x4,
399 ast_mat3x2,
400 ast_mat3,
401 ast_mat3x4,
402 ast_mat4x2,
403 ast_mat4x3,
404 ast_mat4,
405 ast_sampler1d,
406 ast_sampler2d,
407 ast_sampler2drect,
408 ast_sampler3d,
409 ast_samplercube,
410 ast_sampler1dshadow,
411 ast_sampler2dshadow,
412 ast_sampler2drectshadow,
413 ast_samplercubeshadow,
414 ast_sampler1darray,
415 ast_sampler2darray,
416 ast_sampler1darrayshadow,
417 ast_sampler2darrayshadow,
418 ast_isampler1d,
419 ast_isampler2d,
420 ast_isampler3d,
421 ast_isamplercube,
422 ast_isampler1darray,
423 ast_isampler2darray,
424 ast_usampler1d,
425 ast_usampler2d,
426 ast_usampler3d,
427 ast_usamplercube,
428 ast_usampler1darray,
429 ast_usampler2darray,
430
431 ast_struct,
432 ast_type_name
433 };
434
435
436 class ast_type_specifier : public ast_node {
437 public:
438 ast_type_specifier(int specifier);
439
440 /** Construct a type specifier from a type name */
441 ast_type_specifier(const char *name)
442 : type_specifier(ast_type_name), type_name(name), structure(NULL),
443 is_array(false), array_size(NULL), precision(ast_precision_high)
444 {
445 /* empty */
446 }
447
448 /** Construct a type specifier from a structure definition */
449 ast_type_specifier(ast_struct_specifier *s)
450 : type_specifier(ast_struct), type_name(s->name), structure(s),
451 is_array(false), array_size(NULL), precision(ast_precision_high)
452 {
453 /* empty */
454 }
455
456 const struct glsl_type *glsl_type(const char **name,
457 struct _mesa_glsl_parse_state *state)
458 const;
459
460 virtual void print(void) const;
461
462 ir_rvalue *hir(exec_list *, struct _mesa_glsl_parse_state *);
463
464 enum ast_types type_specifier;
465
466 const char *type_name;
467 ast_struct_specifier *structure;
468
469 int is_array;
470 ast_expression *array_size;
471
472 unsigned precision:2;
473 };
474
475
476 class ast_fully_specified_type : public ast_node {
477 public:
478 virtual void print(void) const;
479 bool has_qualifiers() const;
480
481 ast_type_qualifier qualifier;
482 ast_type_specifier *specifier;
483 };
484
485
486 class ast_declarator_list : public ast_node {
487 public:
488 ast_declarator_list(ast_fully_specified_type *);
489 virtual void print(void) const;
490
491 virtual ir_rvalue *hir(exec_list *instructions,
492 struct _mesa_glsl_parse_state *state);
493
494 ast_fully_specified_type *type;
495 exec_list declarations;
496
497 /**
498 * Special flag for vertex shader "invariant" declarations.
499 *
500 * Vertex shaders can contain "invariant" variable redeclarations that do
501 * not include a type. For example, "invariant gl_Position;". This flag
502 * is used to note these cases when no type is specified.
503 */
504 int invariant;
505 };
506
507
508 class ast_parameter_declarator : public ast_node {
509 public:
510 ast_parameter_declarator()
511 {
512 this->identifier = NULL;
513 this->is_array = false;
514 this->array_size = 0;
515 }
516
517 virtual void print(void) const;
518
519 virtual ir_rvalue *hir(exec_list *instructions,
520 struct _mesa_glsl_parse_state *state);
521
522 ast_fully_specified_type *type;
523 char *identifier;
524 int is_array;
525 ast_expression *array_size;
526
527 static void parameters_to_hir(exec_list *ast_parameters,
528 bool formal, exec_list *ir_parameters,
529 struct _mesa_glsl_parse_state *state);
530
531 private:
532 /** Is this parameter declaration part of a formal parameter list? */
533 bool formal_parameter;
534
535 /**
536 * Is this parameter 'void' type?
537 *
538 * This field is set by \c ::hir.
539 */
540 bool is_void;
541 };
542
543
544 class ast_function : public ast_node {
545 public:
546 ast_function(void);
547
548 virtual void print(void) const;
549
550 virtual ir_rvalue *hir(exec_list *instructions,
551 struct _mesa_glsl_parse_state *state);
552
553 ast_fully_specified_type *return_type;
554 char *identifier;
555
556 exec_list parameters;
557
558 private:
559 /**
560 * Is this prototype part of the function definition?
561 *
562 * Used by ast_function_definition::hir to process the parameters, etc.
563 * of the function.
564 *
565 * \sa ::hir
566 */
567 bool is_definition;
568
569 /**
570 * Function signature corresponding to this function prototype instance
571 *
572 * Used by ast_function_definition::hir to process the parameters, etc.
573 * of the function.
574 *
575 * \sa ::hir
576 */
577 class ir_function_signature *signature;
578
579 friend class ast_function_definition;
580 };
581
582
583 class ast_declaration_statement : public ast_node {
584 public:
585 ast_declaration_statement(void);
586
587 enum {
588 ast_function,
589 ast_declaration,
590 ast_precision
591 } mode;
592
593 union {
594 class ast_function *function;
595 ast_declarator_list *declarator;
596 ast_type_specifier *type;
597 ast_node *node;
598 } declaration;
599 };
600
601
602 class ast_expression_statement : public ast_node {
603 public:
604 ast_expression_statement(ast_expression *);
605 virtual void print(void) const;
606
607 virtual ir_rvalue *hir(exec_list *instructions,
608 struct _mesa_glsl_parse_state *state);
609
610 ast_expression *expression;
611 };
612
613
614 class ast_case_label : public ast_node {
615 public:
616
617 /**
618 * An expression of NULL means 'default'.
619 */
620 ast_expression *expression;
621 };
622
623 class ast_selection_statement : public ast_node {
624 public:
625 ast_selection_statement(ast_expression *condition,
626 ast_node *then_statement,
627 ast_node *else_statement);
628 virtual void print(void) const;
629
630 virtual ir_rvalue *hir(exec_list *instructions,
631 struct _mesa_glsl_parse_state *state);
632
633 ast_expression *condition;
634 ast_node *then_statement;
635 ast_node *else_statement;
636 };
637
638
639 class ast_switch_statement : public ast_node {
640 public:
641 ast_expression *expression;
642 exec_list statements;
643 };
644
645 class ast_iteration_statement : public ast_node {
646 public:
647 ast_iteration_statement(int mode, ast_node *init, ast_node *condition,
648 ast_expression *rest_expression, ast_node *body);
649
650 virtual void print(void) const;
651
652 virtual ir_rvalue *hir(exec_list *, struct _mesa_glsl_parse_state *);
653
654 enum ast_iteration_modes {
655 ast_for,
656 ast_while,
657 ast_do_while
658 } mode;
659
660
661 ast_node *init_statement;
662 ast_node *condition;
663 ast_expression *rest_expression;
664
665 ast_node *body;
666
667 private:
668 /**
669 * Generate IR from the condition of a loop
670 *
671 * This is factored out of ::hir because some loops have the condition
672 * test at the top (for and while), and others have it at the end (do-while).
673 */
674 void condition_to_hir(class ir_loop *, struct _mesa_glsl_parse_state *);
675 };
676
677
678 class ast_jump_statement : public ast_node {
679 public:
680 ast_jump_statement(int mode, ast_expression *return_value);
681 virtual void print(void) const;
682
683 virtual ir_rvalue *hir(exec_list *instructions,
684 struct _mesa_glsl_parse_state *state);
685
686 enum ast_jump_modes {
687 ast_continue,
688 ast_break,
689 ast_return,
690 ast_discard
691 } mode;
692
693 ast_expression *opt_return_value;
694 };
695
696
697 class ast_function_definition : public ast_node {
698 public:
699 virtual void print(void) const;
700
701 virtual ir_rvalue *hir(exec_list *instructions,
702 struct _mesa_glsl_parse_state *state);
703
704 ast_function *prototype;
705 ast_compound_statement *body;
706 };
707 /*@}*/
708
709 extern void
710 _mesa_ast_to_hir(exec_list *instructions, struct _mesa_glsl_parse_state *state);
711
712 extern ir_rvalue *
713 _mesa_ast_field_selection_to_hir(const ast_expression *expr,
714 exec_list *instructions,
715 struct _mesa_glsl_parse_state *state);
716
717 #endif /* AST_H */