1 /* Subroutines shared by all languages that are variants of C.
2 Copyright (C) 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001
3 Free Software Foundation, Inc.
5 This file is part of GNU CC.
7 GNU CC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
12 GNU CC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GNU CC; see the file COPYING. If not, write to
19 the Free Software Foundation, 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
37 cpp_reader
*parse_in
; /* Declared in c-lex.h. */
39 #undef WCHAR_TYPE_SIZE
40 #define WCHAR_TYPE_SIZE TYPE_PRECISION (wchar_type_node)
42 /* We let tm.h override the types used here, to handle trivial differences
43 such as the choice of unsigned int or long unsigned int for size_t.
44 When machines start needing nontrivial differences in the size type,
45 it would be best to do something here to figure out automatically
46 from other information what type to use. */
49 #define SIZE_TYPE "long unsigned int"
53 #define WCHAR_TYPE "int"
57 #define PTRDIFF_TYPE "long int"
61 #define WINT_TYPE "unsigned int"
65 #define INTMAX_TYPE ((INT_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
67 : ((LONG_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
73 #define UINTMAX_TYPE ((INT_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
75 : ((LONG_TYPE_SIZE == LONG_LONG_TYPE_SIZE) \
76 ? "long unsigned int" \
77 : "long long unsigned int"))
80 /* The following symbols are subsumed in the c_global_trees array, and
81 listed here individually for documentation purposes.
83 INTEGER_TYPE and REAL_TYPE nodes for the standard data types.
85 tree short_integer_type_node;
86 tree long_integer_type_node;
87 tree long_long_integer_type_node;
89 tree short_unsigned_type_node;
90 tree long_unsigned_type_node;
91 tree long_long_unsigned_type_node;
93 tree boolean_type_node;
94 tree boolean_false_node;
95 tree boolean_true_node;
97 tree ptrdiff_type_node;
99 tree unsigned_char_type_node;
100 tree signed_char_type_node;
101 tree wchar_type_node;
102 tree signed_wchar_type_node;
103 tree unsigned_wchar_type_node;
105 tree float_type_node;
106 tree double_type_node;
107 tree long_double_type_node;
109 tree complex_integer_type_node;
110 tree complex_float_type_node;
111 tree complex_double_type_node;
112 tree complex_long_double_type_node;
114 tree intQI_type_node;
115 tree intHI_type_node;
116 tree intSI_type_node;
117 tree intDI_type_node;
118 tree intTI_type_node;
120 tree unsigned_intQI_type_node;
121 tree unsigned_intHI_type_node;
122 tree unsigned_intSI_type_node;
123 tree unsigned_intDI_type_node;
124 tree unsigned_intTI_type_node;
126 tree widest_integer_literal_type_node;
127 tree widest_unsigned_literal_type_node;
129 Nodes for types `void *' and `const void *'.
131 tree ptr_type_node, const_ptr_type_node;
133 Nodes for types `char *' and `const char *'.
135 tree string_type_node, const_string_type_node;
137 Type `char[SOMENUMBER]'.
138 Used when an array of char is needed and the size is irrelevant.
140 tree char_array_type_node;
142 Type `int[SOMENUMBER]' or something like it.
143 Used when an array of int needed and the size is irrelevant.
145 tree int_array_type_node;
147 Type `wchar_t[SOMENUMBER]' or something like it.
148 Used when a wide string literal is created.
150 tree wchar_array_type_node;
152 Type `int ()' -- used for implicit declaration of functions.
154 tree default_function_type;
156 A VOID_TYPE node, packaged in a TREE_LIST.
160 The lazily created VAR_DECLS for __FUNCTION__, __PRETTY_FUNCTION__,
161 and __func__. (C doesn't generate __FUNCTION__ and__PRETTY_FUNCTION__
162 VAR_DECLS, but C++ does.)
164 tree function_name_decl_node;
165 tree pretty_function_name_declnode;
166 tree c99_function_name_decl_node;
168 Stack of nested function name VAR_DECLs.
170 tree saved_function_name_decls;
174 tree c_global_trees
[CTI_MAX
];
176 /* Nonzero means don't recognize the non-ANSI builtin functions. */
180 /* Nonzero means don't recognize the non-ANSI builtin functions.
183 int flag_no_nonansi_builtin
;
185 /* Nonzero means give `double' the same size as `float'. */
187 int flag_short_double
;
189 /* Nonzero means give `wchar_t' the same size as `short'. */
191 int flag_short_wchar
;
193 /* Nonzero means warn about possible violations of sequence point rules. */
195 int warn_sequence_point
;
197 /* The elements of `ridpointers' are identifier nodes for the reserved
198 type names and storage classes. It is indexed by a RID_... value. */
201 tree (*make_fname_decl
) PARAMS ((tree
, int));
203 /* If non-NULL, the address of a language-specific function that
204 returns 1 for language-specific statement codes. */
205 int (*lang_statement_code_p
) PARAMS ((enum tree_code
));
207 /* If non-NULL, the address of a language-specific function that takes
208 any action required right before expand_function_end is called. */
209 void (*lang_expand_function_end
) PARAMS ((void));
211 /* If this variable is defined to a non-NULL value, it will be called
212 after the file has been completely parsed. */
213 void (*back_end_hook
) PARAMS ((tree
));
215 /* Nonzero means the expression being parsed will never be evaluated.
216 This is a count, since unevaluated expressions can nest. */
219 enum attrs
{A_PACKED
, A_NOCOMMON
, A_COMMON
, A_NORETURN
, A_CONST
, A_T_UNION
,
220 A_NO_CHECK_MEMORY_USAGE
, A_NO_INSTRUMENT_FUNCTION
,
221 A_CONSTRUCTOR
, A_DESTRUCTOR
, A_MODE
, A_SECTION
, A_ALIGNED
,
222 A_UNUSED
, A_FORMAT
, A_FORMAT_ARG
, A_WEAK
, A_ALIAS
, A_MALLOC
,
223 A_NO_LIMIT_STACK
, A_PURE
};
225 /* Information about how a function name is generated. */
228 tree
*decl
; /* pointer to the VAR_DECL. */
229 unsigned rid
; /* RID number for the identifier. */
230 int pretty
; /* How pretty is it? */
233 /* The three ways of getting then name of the current function. */
235 const struct fname_var_t fname_vars
[] =
237 /* C99 compliant __func__, must be first. */
238 {&c99_function_name_decl_node
, RID_C99_FUNCTION_NAME
, 0},
239 /* GCC __FUNCTION__ compliant. */
240 {&function_name_decl_node
, RID_FUNCTION_NAME
, 0},
241 /* GCC __PRETTY_FUNCTION__ compliant. */
242 {&pretty_function_name_decl_node
, RID_PRETTY_FUNCTION_NAME
, 1},
246 static void add_attribute
PARAMS ((enum attrs
, const char *,
248 static void init_attributes
PARAMS ((void));
249 static int default_valid_lang_attribute
PARAMS ((tree
, tree
, tree
, tree
));
250 static int constant_fits_type_p
PARAMS ((tree
, tree
));
252 /* Keep a stack of if statements. We record the number of compound
253 statements seen up to the if keyword, as well as the line number
254 and file of the if. If a potentially ambiguous else is seen, that
255 fact is recorded; the warning is issued when we can be sure that
256 the enclosing if statement does not have an else branch. */
266 static if_elt
*if_stack
;
268 /* Amount of space in the if statement stack. */
269 static int if_stack_space
= 0;
272 static int if_stack_pointer
= 0;
274 /* Record the start of an if-then, and record the start of it
275 for ambiguous else detection. */
278 c_expand_start_cond (cond
, compstmt_count
)
284 /* Make sure there is enough space on the stack. */
285 if (if_stack_space
== 0)
288 if_stack
= (if_elt
*)xmalloc (10 * sizeof (if_elt
));
290 else if (if_stack_space
== if_stack_pointer
)
292 if_stack_space
+= 10;
293 if_stack
= (if_elt
*)xrealloc (if_stack
, if_stack_space
* sizeof (if_elt
));
296 if_stmt
= build_stmt (IF_STMT
, NULL_TREE
, NULL_TREE
, NULL_TREE
);
297 IF_COND (if_stmt
) = cond
;
300 /* Record this if statement. */
301 if_stack
[if_stack_pointer
].compstmt_count
= compstmt_count
;
302 if_stack
[if_stack_pointer
].file
= input_filename
;
303 if_stack
[if_stack_pointer
].line
= lineno
;
304 if_stack
[if_stack_pointer
].needs_warning
= 0;
305 if_stack
[if_stack_pointer
].if_stmt
= if_stmt
;
309 /* Called after the then-clause for an if-statement is processed. */
314 tree if_stmt
= if_stack
[if_stack_pointer
- 1].if_stmt
;
315 RECHAIN_STMTS (if_stmt
, THEN_CLAUSE (if_stmt
));
318 /* Record the end of an if-then. Optionally warn if a nested
319 if statement had an ambiguous else clause. */
325 if (if_stack
[if_stack_pointer
].needs_warning
)
326 warning_with_file_and_line (if_stack
[if_stack_pointer
].file
,
327 if_stack
[if_stack_pointer
].line
,
328 "suggest explicit braces to avoid ambiguous `else'");
329 last_expr_type
= NULL_TREE
;
332 /* Called between the then-clause and the else-clause
333 of an if-then-else. */
336 c_expand_start_else ()
338 /* An ambiguous else warning must be generated for the enclosing if
339 statement, unless we see an else branch for that one, too. */
341 && if_stack_pointer
> 1
342 && (if_stack
[if_stack_pointer
- 1].compstmt_count
343 == if_stack
[if_stack_pointer
- 2].compstmt_count
))
344 if_stack
[if_stack_pointer
- 2].needs_warning
= 1;
346 /* Even if a nested if statement had an else branch, it can't be
347 ambiguous if this one also has an else. So don't warn in that
348 case. Also don't warn for any if statements nested in this else. */
349 if_stack
[if_stack_pointer
- 1].needs_warning
= 0;
350 if_stack
[if_stack_pointer
- 1].compstmt_count
--;
353 /* Called after the else-clause for an if-statement is processed. */
358 tree if_stmt
= if_stack
[if_stack_pointer
- 1].if_stmt
;
359 RECHAIN_STMTS (if_stmt
, ELSE_CLAUSE (if_stmt
));
362 /* Push current bindings for the function name VAR_DECLS. */
368 tree saved
= NULL_TREE
;
370 for (ix
= 0; fname_vars
[ix
].decl
; ix
++)
372 tree decl
= *fname_vars
[ix
].decl
;
376 saved
= tree_cons (decl
, build_int_2 (ix
, 0), saved
);
377 *fname_vars
[ix
].decl
= NULL_TREE
;
380 if (saved
|| saved_function_name_decls
)
381 /* Normally they'll have been NULL, so only push if we've got a
382 stack, or they are non-NULL. */
383 saved_function_name_decls
= tree_cons (saved
, NULL_TREE
,
384 saved_function_name_decls
);
387 /* Finish up the current bindings, adding them into the
388 current function's statement tree. This is done by wrapping the
389 function's body in a COMPOUND_STMT containing these decls too. This
390 must be done _before_ finish_stmt_tree is called. If there is no
391 current function, we must be at file scope and no statements are
392 involved. Pop the previous bindings. */
395 finish_fname_decls ()
398 tree body
= NULL_TREE
;
399 tree stack
= saved_function_name_decls
;
401 for (; stack
&& TREE_VALUE (stack
); stack
= TREE_CHAIN (stack
))
402 body
= chainon (TREE_VALUE (stack
), body
);
406 /* They were called into existance, so add to statement tree. */
407 body
= chainon (body
,
408 TREE_CHAIN (DECL_SAVED_TREE (current_function_decl
)));
409 body
= build_stmt (COMPOUND_STMT
, body
);
411 COMPOUND_STMT_NO_SCOPE (body
) = 1;
412 TREE_CHAIN (DECL_SAVED_TREE (current_function_decl
)) = body
;
415 for (ix
= 0; fname_vars
[ix
].decl
; ix
++)
416 *fname_vars
[ix
].decl
= NULL_TREE
;
420 /* We had saved values, restore them. */
423 for (saved
= TREE_PURPOSE (stack
); saved
; saved
= TREE_CHAIN (saved
))
425 tree decl
= TREE_PURPOSE (saved
);
426 unsigned ix
= TREE_INT_CST_LOW (TREE_VALUE (saved
));
428 *fname_vars
[ix
].decl
= decl
;
430 stack
= TREE_CHAIN (stack
);
432 saved_function_name_decls
= stack
;
435 /* Return the text name of the current function, suitable prettified
439 fname_as_string (pretty_p
)
442 const char *name
= NULL
;
445 name
= (current_function_decl
446 ? (*decl_printable_name
) (current_function_decl
, 2)
448 else if (current_function_decl
&& DECL_NAME (current_function_decl
))
449 name
= IDENTIFIER_POINTER (DECL_NAME (current_function_decl
));
455 /* Return the text name of the current function, formatted as
456 required by the supplied RID value. */
464 for (ix
= 0; fname_vars
[ix
].decl
; ix
++)
465 if (fname_vars
[ix
].rid
== rid
)
467 return fname_as_string (fname_vars
[ix
].pretty
);
470 /* Return the VAR_DECL for a const char array naming the current
471 function. If the VAR_DECL has not yet been created, create it
472 now. RID indicates how it should be formatted and IDENTIFIER_NODE
473 ID is its name (unfortunately C and C++ hold the RID values of
474 keywords in different places, so we can't derive RID from ID in
475 this language independant code. */
483 tree decl
= NULL_TREE
;
485 for (ix
= 0; fname_vars
[ix
].decl
; ix
++)
486 if (fname_vars
[ix
].rid
== rid
)
489 decl
= *fname_vars
[ix
].decl
;
492 tree saved_last_tree
= last_tree
;
494 decl
= (*make_fname_decl
) (id
, fname_vars
[ix
].pretty
);
495 if (last_tree
!= saved_last_tree
)
497 /* We created some statement tree for the decl. This belongs
498 at the start of the function, so remove it now and reinsert
499 it after the function is complete. */
500 tree stmts
= TREE_CHAIN (saved_last_tree
);
502 TREE_CHAIN (saved_last_tree
) = NULL_TREE
;
503 last_tree
= saved_last_tree
;
504 saved_function_name_decls
= tree_cons (decl
, stmts
,
505 saved_function_name_decls
);
507 *fname_vars
[ix
].decl
= decl
;
509 if (!ix
&& !current_function_decl
)
510 pedwarn_with_decl (decl
, "`%s' is not defined outside of function scope");
515 /* Given a chain of STRING_CST nodes,
516 concatenate them into one STRING_CST
517 and give it a suitable array-of-chars data type. */
520 combine_strings (strings
)
523 register tree value
, t
;
524 register int length
= 1;
527 int wchar_bytes
= TYPE_PRECISION (wchar_type_node
) / BITS_PER_UNIT
;
529 const int nchars_max
= flag_isoc99
? 4095 : 509;
531 if (TREE_CHAIN (strings
))
533 /* More than one in the chain, so concatenate. */
534 register char *p
, *q
;
536 /* Don't include the \0 at the end of each substring,
537 except for the last one.
538 Count wide strings and ordinary strings separately. */
539 for (t
= strings
; t
; t
= TREE_CHAIN (t
))
541 if (TREE_TYPE (t
) == wchar_array_type_node
)
543 wide_length
+= (TREE_STRING_LENGTH (t
) - wchar_bytes
);
547 length
+= (TREE_STRING_LENGTH (t
) - 1);
550 /* If anything is wide, the non-wides will be converted,
551 which makes them take more space. */
553 length
= length
* wchar_bytes
+ wide_length
;
557 /* Copy the individual strings into the new combined string.
558 If the combined string is wide, convert the chars to ints
559 for any individual strings that are not wide. */
562 for (t
= strings
; t
; t
= TREE_CHAIN (t
))
564 int len
= (TREE_STRING_LENGTH (t
)
565 - ((TREE_TYPE (t
) == wchar_array_type_node
)
567 if ((TREE_TYPE (t
) == wchar_array_type_node
) == wide_flag
)
569 memcpy (q
, TREE_STRING_POINTER (t
), len
);
575 for (i
= 0; i
< len
; i
++)
577 if (BYTES_BIG_ENDIAN
)
579 for (j
=0; j
<(WCHAR_TYPE_SIZE
/ BITS_PER_UNIT
)-1; j
++)
581 *q
++ = TREE_STRING_POINTER (t
)[i
];
585 *q
++ = TREE_STRING_POINTER (t
)[i
];
586 for (j
=0; j
<(WCHAR_TYPE_SIZE
/ BITS_PER_UNIT
)-1; j
++)
595 for (i
= 0; i
< wchar_bytes
; i
++)
601 value
= build_string (length
, p
);
606 length
= TREE_STRING_LENGTH (value
);
607 if (TREE_TYPE (value
) == wchar_array_type_node
)
611 /* Compute the number of elements, for the array type. */
612 nchars
= wide_flag
? length
/ wchar_bytes
: length
;
614 if (pedantic
&& nchars
- 1 > nchars_max
&& c_language
== clk_c
)
615 pedwarn ("string length `%d' is greater than the length `%d' ISO C%d compilers are required to support",
616 nchars
- 1, nchars_max
, flag_isoc99
? 99 : 89);
618 /* Create the array type for the string constant.
619 -Wwrite-strings says make the string constant an array of const char
620 so that copying it to a non-const pointer will get a warning.
621 For C++, this is the standard behavior. */
622 if (flag_const_strings
623 && (! flag_traditional
&& ! flag_writable_strings
))
626 = build_type_variant (wide_flag
? wchar_type_node
: char_type_node
,
629 = build_array_type (elements
,
630 build_index_type (build_int_2 (nchars
- 1, 0)));
634 = build_array_type (wide_flag
? wchar_type_node
: char_type_node
,
635 build_index_type (build_int_2 (nchars
- 1, 0)));
637 TREE_CONSTANT (value
) = 1;
638 TREE_READONLY (value
) = ! flag_writable_strings
;
639 TREE_STATIC (value
) = 1;
643 /* To speed up processing of attributes, we maintain an array of
644 IDENTIFIER_NODES and the corresponding attribute types. */
646 /* Array to hold attribute information. */
648 static struct {enum attrs id
; tree name
; int min
, max
, decl_req
;} attrtab
[50];
650 static int attrtab_idx
= 0;
652 /* Add an entry to the attribute table above. */
655 add_attribute (id
, string
, min_len
, max_len
, decl_req
)
658 int min_len
, max_len
;
663 attrtab
[attrtab_idx
].id
= id
;
664 attrtab
[attrtab_idx
].name
= get_identifier (string
);
665 attrtab
[attrtab_idx
].min
= min_len
;
666 attrtab
[attrtab_idx
].max
= max_len
;
667 attrtab
[attrtab_idx
++].decl_req
= decl_req
;
669 sprintf (buf
, "__%s__", string
);
671 attrtab
[attrtab_idx
].id
= id
;
672 attrtab
[attrtab_idx
].name
= get_identifier (buf
);
673 attrtab
[attrtab_idx
].min
= min_len
;
674 attrtab
[attrtab_idx
].max
= max_len
;
675 attrtab
[attrtab_idx
++].decl_req
= decl_req
;
678 /* Initialize attribute table. */
683 add_attribute (A_PACKED
, "packed", 0, 0, 0);
684 add_attribute (A_NOCOMMON
, "nocommon", 0, 0, 1);
685 add_attribute (A_COMMON
, "common", 0, 0, 1);
686 add_attribute (A_NORETURN
, "noreturn", 0, 0, 1);
687 add_attribute (A_NORETURN
, "volatile", 0, 0, 1);
688 add_attribute (A_UNUSED
, "unused", 0, 0, 0);
689 add_attribute (A_CONST
, "const", 0, 0, 1);
690 add_attribute (A_T_UNION
, "transparent_union", 0, 0, 0);
691 add_attribute (A_CONSTRUCTOR
, "constructor", 0, 0, 1);
692 add_attribute (A_DESTRUCTOR
, "destructor", 0, 0, 1);
693 add_attribute (A_MODE
, "mode", 1, 1, 1);
694 add_attribute (A_SECTION
, "section", 1, 1, 1);
695 add_attribute (A_ALIGNED
, "aligned", 0, 1, 0);
696 add_attribute (A_FORMAT
, "format", 3, 3, 1);
697 add_attribute (A_FORMAT_ARG
, "format_arg", 1, 1, 1);
698 add_attribute (A_WEAK
, "weak", 0, 0, 1);
699 add_attribute (A_ALIAS
, "alias", 1, 1, 1);
700 add_attribute (A_NO_INSTRUMENT_FUNCTION
, "no_instrument_function", 0, 0, 1);
701 add_attribute (A_NO_CHECK_MEMORY_USAGE
, "no_check_memory_usage", 0, 0, 1);
702 add_attribute (A_MALLOC
, "malloc", 0, 0, 1);
703 add_attribute (A_NO_LIMIT_STACK
, "no_stack_limit", 0, 0, 1);
704 add_attribute (A_PURE
, "pure", 0, 0, 1);
707 /* Default implementation of valid_lang_attribute, below. By default, there
708 are no language-specific attributes. */
711 default_valid_lang_attribute (attr_name
, attr_args
, decl
, type
)
712 tree attr_name ATTRIBUTE_UNUSED
;
713 tree attr_args ATTRIBUTE_UNUSED
;
714 tree decl ATTRIBUTE_UNUSED
;
715 tree type ATTRIBUTE_UNUSED
;
720 /* Return a 1 if ATTR_NAME and ATTR_ARGS denote a valid language-specific
721 attribute for either declaration DECL or type TYPE and 0 otherwise. */
723 int (*valid_lang_attribute
) PARAMS ((tree
, tree
, tree
, tree
))
724 = default_valid_lang_attribute
;
726 /* Process the attributes listed in ATTRIBUTES and install them in *NODE,
727 which is either a DECL (including a TYPE_DECL) or a TYPE. If a DECL,
728 it should be modified in place; if a TYPE, a copy should be created.
729 FLAGS gives further information, in the form of a bitwise OR of flags
730 in enum attribute_flags from c-common.h. Depending on these flags,
731 some attributes may be returned to be applied at a later stage (for
732 example, to apply a decl attribute to the declaration rather than to
736 decl_attributes (node
, attributes
, flags
)
737 tree
*node
, attributes
;
738 int flags ATTRIBUTE_UNUSED
;
740 tree decl
= 0, type
= 0;
744 if (attrtab_idx
== 0)
750 type
= TREE_TYPE (decl
);
751 is_type
= TREE_CODE (*node
) == TYPE_DECL
;
753 else if (TYPE_P (*node
))
754 type
= *node
, is_type
= 1;
756 (*targetm
.insert_attributes
) (*node
, &attributes
);
758 for (a
= attributes
; a
; a
= TREE_CHAIN (a
))
760 tree name
= TREE_PURPOSE (a
);
761 tree args
= TREE_VALUE (a
);
765 for (i
= 0; i
< attrtab_idx
; i
++)
766 if (attrtab
[i
].name
== name
)
769 if (i
== attrtab_idx
)
771 if (! valid_machine_attribute (name
, args
, decl
, type
)
772 && ! (* valid_lang_attribute
) (name
, args
, decl
, type
))
773 warning ("`%s' attribute directive ignored",
774 IDENTIFIER_POINTER (name
));
776 type
= TREE_TYPE (decl
);
779 else if (attrtab
[i
].decl_req
&& decl
== 0)
781 warning ("`%s' attribute does not apply to types",
782 IDENTIFIER_POINTER (name
));
785 else if (list_length (args
) < attrtab
[i
].min
786 || list_length (args
) > attrtab
[i
].max
)
788 error ("wrong number of arguments specified for `%s' attribute",
789 IDENTIFIER_POINTER (name
));
798 TYPE_PACKED (type
) = 1;
799 else if (TREE_CODE (decl
) == FIELD_DECL
)
800 DECL_PACKED (decl
) = 1;
801 /* We can't set DECL_PACKED for a VAR_DECL, because the bit is
802 used for DECL_REGISTER. It wouldn't mean anything anyway. */
804 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
808 if (TREE_CODE (decl
) == VAR_DECL
)
809 DECL_COMMON (decl
) = 0;
811 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
815 if (TREE_CODE (decl
) == VAR_DECL
)
816 DECL_COMMON (decl
) = 1;
818 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
822 if (TREE_CODE (decl
) == FUNCTION_DECL
)
823 TREE_THIS_VOLATILE (decl
) = 1;
824 else if (TREE_CODE (type
) == POINTER_TYPE
825 && TREE_CODE (TREE_TYPE (type
)) == FUNCTION_TYPE
)
826 TREE_TYPE (decl
) = type
828 (build_type_variant (TREE_TYPE (type
),
829 TREE_READONLY (TREE_TYPE (type
)), 1));
831 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
835 if (TREE_CODE (decl
) == FUNCTION_DECL
)
836 DECL_IS_MALLOC (decl
) = 1;
837 /* ??? TODO: Support types. */
839 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
845 TREE_USED (decl
) = 1;
847 TREE_USED (type
) = 1;
848 else if (TREE_CODE (decl
) == PARM_DECL
849 || TREE_CODE (decl
) == VAR_DECL
850 || TREE_CODE (decl
) == FUNCTION_DECL
851 || TREE_CODE (decl
) == LABEL_DECL
)
852 TREE_USED (decl
) = 1;
854 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
858 if (TREE_CODE (decl
) == FUNCTION_DECL
)
859 TREE_READONLY (decl
) = 1;
860 else if (TREE_CODE (type
) == POINTER_TYPE
861 && TREE_CODE (TREE_TYPE (type
)) == FUNCTION_TYPE
)
862 TREE_TYPE (decl
) = type
864 (build_type_variant (TREE_TYPE (type
), 1,
865 TREE_THIS_VOLATILE (TREE_TYPE (type
))));
867 warning ( "`%s' attribute ignored", IDENTIFIER_POINTER (name
));
871 if (TREE_CODE (decl
) == FUNCTION_DECL
)
872 DECL_IS_PURE (decl
) = 1;
873 /* ??? TODO: Support types. */
875 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
881 && TREE_CODE (type
) == UNION_TYPE
883 || (TYPE_FIELDS (type
) != 0
884 && TYPE_MODE (type
) == DECL_MODE (TYPE_FIELDS (type
)))))
885 TYPE_TRANSPARENT_UNION (type
) = 1;
886 else if (decl
!= 0 && TREE_CODE (decl
) == PARM_DECL
887 && TREE_CODE (type
) == UNION_TYPE
888 && TYPE_MODE (type
) == DECL_MODE (TYPE_FIELDS (type
)))
889 DECL_TRANSPARENT_UNION (decl
) = 1;
891 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
895 if (TREE_CODE (decl
) == FUNCTION_DECL
896 && TREE_CODE (type
) == FUNCTION_TYPE
897 && decl_function_context (decl
) == 0)
899 DECL_STATIC_CONSTRUCTOR (decl
) = 1;
900 TREE_USED (decl
) = 1;
903 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
907 if (TREE_CODE (decl
) == FUNCTION_DECL
908 && TREE_CODE (type
) == FUNCTION_TYPE
909 && decl_function_context (decl
) == 0)
911 DECL_STATIC_DESTRUCTOR (decl
) = 1;
912 TREE_USED (decl
) = 1;
915 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
919 if (TREE_CODE (TREE_VALUE (args
)) != IDENTIFIER_NODE
)
920 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
924 const char *p
= IDENTIFIER_POINTER (TREE_VALUE (args
));
925 int len
= strlen (p
);
926 enum machine_mode mode
= VOIDmode
;
929 if (len
> 4 && p
[0] == '_' && p
[1] == '_'
930 && p
[len
- 1] == '_' && p
[len
- 2] == '_')
932 char *newp
= (char *) alloca (len
- 1);
934 strcpy (newp
, &p
[2]);
935 newp
[len
- 4] = '\0';
939 /* Give this decl a type with the specified mode.
940 First check for the special modes. */
941 if (! strcmp (p
, "byte"))
943 else if (!strcmp (p
, "word"))
945 else if (! strcmp (p
, "pointer"))
948 for (j
= 0; j
< NUM_MACHINE_MODES
; j
++)
949 if (!strcmp (p
, GET_MODE_NAME (j
)))
950 mode
= (enum machine_mode
) j
;
952 if (mode
== VOIDmode
)
953 error ("unknown machine mode `%s'", p
);
954 else if (0 == (typefm
= type_for_mode (mode
,
955 TREE_UNSIGNED (type
))))
956 error ("no data type for mode `%s'", p
);
959 if (TYPE_PRECISION (typefm
) > (TREE_UNSIGNED (type
)
960 ? TYPE_PRECISION(uintmax_type_node
)
961 : TYPE_PRECISION(intmax_type_node
))
963 pedwarn ("type with more precision than %s",
964 TREE_UNSIGNED (type
) ? "uintmax_t" : "intmax_t");
965 TREE_TYPE (decl
) = type
= typefm
;
966 DECL_SIZE (decl
) = DECL_SIZE_UNIT (decl
) = 0;
967 if (TREE_CODE (decl
) != FIELD_DECL
)
968 layout_decl (decl
, 0);
974 #ifdef ASM_OUTPUT_SECTION_NAME
975 if ((TREE_CODE (decl
) == FUNCTION_DECL
976 || TREE_CODE (decl
) == VAR_DECL
)
977 && TREE_CODE (TREE_VALUE (args
)) == STRING_CST
)
979 if (TREE_CODE (decl
) == VAR_DECL
980 && current_function_decl
!= NULL_TREE
981 && ! TREE_STATIC (decl
))
982 error_with_decl (decl
,
983 "section attribute cannot be specified for local variables");
984 /* The decl may have already been given a section attribute from
985 a previous declaration. Ensure they match. */
986 else if (DECL_SECTION_NAME (decl
) != NULL_TREE
987 && strcmp (TREE_STRING_POINTER (DECL_SECTION_NAME (decl
)),
988 TREE_STRING_POINTER (TREE_VALUE (args
))) != 0)
989 error_with_decl (*node
,
990 "section of `%s' conflicts with previous declaration");
992 DECL_SECTION_NAME (decl
) = TREE_VALUE (args
);
995 error_with_decl (*node
,
996 "section attribute not allowed for `%s'");
998 error_with_decl (*node
,
999 "section attributes are not supported for this target");
1006 = (args
? TREE_VALUE (args
)
1007 : size_int (BIGGEST_ALIGNMENT
/ BITS_PER_UNIT
));
1010 /* Strip any NOPs of any kind. */
1011 while (TREE_CODE (align_expr
) == NOP_EXPR
1012 || TREE_CODE (align_expr
) == CONVERT_EXPR
1013 || TREE_CODE (align_expr
) == NON_LVALUE_EXPR
)
1014 align_expr
= TREE_OPERAND (align_expr
, 0);
1016 if (TREE_CODE (align_expr
) != INTEGER_CST
)
1018 error ("requested alignment is not a constant");
1022 if ((i
= tree_log2 (align_expr
)) == -1)
1023 error ("requested alignment is not a power of 2");
1024 else if (i
> HOST_BITS_PER_INT
- 2)
1025 error ("requested alignment is too large");
1028 /* If we have a TYPE_DECL, then copy the type, so that we
1029 don't accidentally modify a builtin type. See pushdecl. */
1030 if (decl
&& TREE_TYPE (decl
) != error_mark_node
1031 && DECL_ORIGINAL_TYPE (decl
) == NULL_TREE
)
1033 tree tt
= TREE_TYPE (decl
);
1034 DECL_ORIGINAL_TYPE (decl
) = tt
;
1035 tt
= build_type_copy (tt
);
1036 TYPE_NAME (tt
) = decl
;
1037 TREE_USED (tt
) = TREE_USED (decl
);
1038 TREE_TYPE (decl
) = tt
;
1042 TYPE_ALIGN (type
) = (1 << i
) * BITS_PER_UNIT
;
1043 TYPE_USER_ALIGN (type
) = 1;
1045 else if (TREE_CODE (decl
) != VAR_DECL
1046 && TREE_CODE (decl
) != FIELD_DECL
)
1047 error_with_decl (decl
,
1048 "alignment may not be specified for `%s'");
1051 DECL_ALIGN (decl
) = (1 << i
) * BITS_PER_UNIT
;
1052 DECL_USER_ALIGN (decl
) = 1;
1058 decl_handle_format_attribute (decl
, args
);
1062 decl_handle_format_arg_attribute (decl
, args
);
1066 declare_weak (decl
);
1070 if ((TREE_CODE (decl
) == FUNCTION_DECL
&& DECL_INITIAL (decl
))
1071 || (TREE_CODE (decl
) != FUNCTION_DECL
&& ! DECL_EXTERNAL (decl
)))
1072 error_with_decl (decl
,
1073 "`%s' defined both normally and as an alias");
1074 else if (decl_function_context (decl
) == 0)
1078 id
= TREE_VALUE (args
);
1079 if (TREE_CODE (id
) != STRING_CST
)
1081 error ("alias arg not a string");
1084 id
= get_identifier (TREE_STRING_POINTER (id
));
1085 /* This counts as a use of the object pointed to. */
1088 if (TREE_CODE (decl
) == FUNCTION_DECL
)
1089 DECL_INITIAL (decl
) = error_mark_node
;
1091 DECL_EXTERNAL (decl
) = 0;
1092 assemble_alias (decl
, id
);
1095 warning ("`%s' attribute ignored", IDENTIFIER_POINTER (name
));
1098 case A_NO_CHECK_MEMORY_USAGE
:
1099 if (TREE_CODE (decl
) != FUNCTION_DECL
)
1101 error_with_decl (decl
,
1102 "`%s' attribute applies only to functions",
1103 IDENTIFIER_POINTER (name
));
1105 else if (DECL_INITIAL (decl
))
1107 error_with_decl (decl
,
1108 "can't set `%s' attribute after definition",
1109 IDENTIFIER_POINTER (name
));
1112 DECL_NO_CHECK_MEMORY_USAGE (decl
) = 1;
1115 case A_NO_INSTRUMENT_FUNCTION
:
1116 if (TREE_CODE (decl
) != FUNCTION_DECL
)
1118 error_with_decl (decl
,
1119 "`%s' attribute applies only to functions",
1120 IDENTIFIER_POINTER (name
));
1122 else if (DECL_INITIAL (decl
))
1124 error_with_decl (decl
,
1125 "can't set `%s' attribute after definition",
1126 IDENTIFIER_POINTER (name
));
1129 DECL_NO_INSTRUMENT_FUNCTION_ENTRY_EXIT (decl
) = 1;
1132 case A_NO_LIMIT_STACK
:
1133 if (TREE_CODE (decl
) != FUNCTION_DECL
)
1135 error_with_decl (decl
,
1136 "`%s' attribute applies only to functions",
1137 IDENTIFIER_POINTER (name
));
1139 else if (DECL_INITIAL (decl
))
1141 error_with_decl (decl
,
1142 "can't set `%s' attribute after definition",
1143 IDENTIFIER_POINTER (name
));
1146 DECL_NO_LIMIT_STACK (decl
) = 1;
1153 /* Split SPECS_ATTRS, a list of declspecs and prefix attributes, into two
1154 lists. SPECS_ATTRS may also be just a typespec (eg: RECORD_TYPE).
1156 The head of the declspec list is stored in DECLSPECS.
1157 The head of the attribute list is stored in PREFIX_ATTRIBUTES.
1159 Note that attributes in SPECS_ATTRS are stored in the TREE_PURPOSE of
1160 the list elements. We drop the containing TREE_LIST nodes and link the
1161 resulting attributes together the way decl_attributes expects them. */
1164 split_specs_attrs (specs_attrs
, declspecs
, prefix_attributes
)
1166 tree
*declspecs
, *prefix_attributes
;
1168 tree t
, s
, a
, next
, specs
, attrs
;
1170 /* This can happen after an __extension__ in pedantic mode. */
1171 if (specs_attrs
!= NULL_TREE
1172 && TREE_CODE (specs_attrs
) == INTEGER_CST
)
1174 *declspecs
= NULL_TREE
;
1175 *prefix_attributes
= NULL_TREE
;
1179 /* This can happen in c++ (eg: decl: typespec initdecls ';'). */
1180 if (specs_attrs
!= NULL_TREE
1181 && TREE_CODE (specs_attrs
) != TREE_LIST
)
1183 *declspecs
= specs_attrs
;
1184 *prefix_attributes
= NULL_TREE
;
1188 /* Remember to keep the lists in the same order, element-wise. */
1190 specs
= s
= NULL_TREE
;
1191 attrs
= a
= NULL_TREE
;
1192 for (t
= specs_attrs
; t
; t
= next
)
1194 next
= TREE_CHAIN (t
);
1195 /* Declspecs have a non-NULL TREE_VALUE. */
1196 if (TREE_VALUE (t
) != NULL_TREE
)
1198 if (specs
== NULL_TREE
)
1208 if (attrs
== NULL_TREE
)
1209 attrs
= a
= TREE_PURPOSE (t
);
1212 TREE_CHAIN (a
) = TREE_PURPOSE (t
);
1213 a
= TREE_PURPOSE (t
);
1215 /* More attrs can be linked here, move A to the end. */
1216 while (TREE_CHAIN (a
) != NULL_TREE
)
1221 /* Terminate the lists. */
1223 TREE_CHAIN (s
) = NULL_TREE
;
1225 TREE_CHAIN (a
) = NULL_TREE
;
1229 *prefix_attributes
= attrs
;
1232 /* Strip attributes from SPECS_ATTRS, a list of declspecs and attributes.
1233 This function is used by the parser when a rule will accept attributes
1234 in a particular position, but we don't want to support that just yet.
1236 A warning is issued for every ignored attribute. */
1239 strip_attrs (specs_attrs
)
1244 split_specs_attrs (specs_attrs
, &specs
, &attrs
);
1248 warning ("`%s' attribute ignored",
1249 IDENTIFIER_POINTER (TREE_PURPOSE (attrs
)));
1250 attrs
= TREE_CHAIN (attrs
);
1256 static int is_valid_printf_arglist
PARAMS ((tree
));
1257 static rtx c_expand_builtin
PARAMS ((tree
, rtx
, enum machine_mode
, enum expand_modifier
));
1258 static rtx c_expand_builtin_printf
PARAMS ((tree
, rtx
, enum machine_mode
,
1259 enum expand_modifier
, int));
1260 static rtx c_expand_builtin_fprintf
PARAMS ((tree
, rtx
, enum machine_mode
,
1261 enum expand_modifier
, int));
1263 /* Print a warning if a constant expression had overflow in folding.
1264 Invoke this function on every expression that the language
1265 requires to be a constant expression.
1266 Note the ANSI C standard says it is erroneous for a
1267 constant expression to overflow. */
1270 constant_expression_warning (value
)
1273 if ((TREE_CODE (value
) == INTEGER_CST
|| TREE_CODE (value
) == REAL_CST
1274 || TREE_CODE (value
) == COMPLEX_CST
)
1275 && TREE_CONSTANT_OVERFLOW (value
) && pedantic
)
1276 pedwarn ("overflow in constant expression");
1279 /* Print a warning if an expression had overflow in folding.
1280 Invoke this function on every expression that
1281 (1) appears in the source code, and
1282 (2) might be a constant expression that overflowed, and
1283 (3) is not already checked by convert_and_check;
1284 however, do not invoke this function on operands of explicit casts. */
1287 overflow_warning (value
)
1290 if ((TREE_CODE (value
) == INTEGER_CST
1291 || (TREE_CODE (value
) == COMPLEX_CST
1292 && TREE_CODE (TREE_REALPART (value
)) == INTEGER_CST
))
1293 && TREE_OVERFLOW (value
))
1295 TREE_OVERFLOW (value
) = 0;
1296 if (skip_evaluation
== 0)
1297 warning ("integer overflow in expression");
1299 else if ((TREE_CODE (value
) == REAL_CST
1300 || (TREE_CODE (value
) == COMPLEX_CST
1301 && TREE_CODE (TREE_REALPART (value
)) == REAL_CST
))
1302 && TREE_OVERFLOW (value
))
1304 TREE_OVERFLOW (value
) = 0;
1305 if (skip_evaluation
== 0)
1306 warning ("floating point overflow in expression");
1310 /* Print a warning if a large constant is truncated to unsigned,
1311 or if -Wconversion is used and a constant < 0 is converted to unsigned.
1312 Invoke this function on every expression that might be implicitly
1313 converted to an unsigned type. */
1316 unsigned_conversion_warning (result
, operand
)
1317 tree result
, operand
;
1319 if (TREE_CODE (operand
) == INTEGER_CST
1320 && TREE_CODE (TREE_TYPE (result
)) == INTEGER_TYPE
1321 && TREE_UNSIGNED (TREE_TYPE (result
))
1322 && skip_evaluation
== 0
1323 && !int_fits_type_p (operand
, TREE_TYPE (result
)))
1325 if (!int_fits_type_p (operand
, signed_type (TREE_TYPE (result
))))
1326 /* This detects cases like converting -129 or 256 to unsigned char. */
1327 warning ("large integer implicitly truncated to unsigned type");
1328 else if (warn_conversion
)
1329 warning ("negative integer implicitly converted to unsigned type");
1333 /* Nonzero if constant C has a value that is permissible
1334 for type TYPE (an INTEGER_TYPE). */
1337 constant_fits_type_p (c
, type
)
1340 if (TREE_CODE (c
) == INTEGER_CST
)
1341 return int_fits_type_p (c
, type
);
1343 c
= convert (type
, c
);
1344 return !TREE_OVERFLOW (c
);
1347 /* Convert EXPR to TYPE, warning about conversion problems with constants.
1348 Invoke this function on every expression that is converted implicitly,
1349 i.e. because of language rules and not because of an explicit cast. */
1352 convert_and_check (type
, expr
)
1355 tree t
= convert (type
, expr
);
1356 if (TREE_CODE (t
) == INTEGER_CST
)
1358 if (TREE_OVERFLOW (t
))
1360 TREE_OVERFLOW (t
) = 0;
1362 /* Do not diagnose overflow in a constant expression merely
1363 because a conversion overflowed. */
1364 TREE_CONSTANT_OVERFLOW (t
) = TREE_CONSTANT_OVERFLOW (expr
);
1366 /* No warning for converting 0x80000000 to int. */
1367 if (!(TREE_UNSIGNED (type
) < TREE_UNSIGNED (TREE_TYPE (expr
))
1368 && TREE_CODE (TREE_TYPE (expr
)) == INTEGER_TYPE
1369 && TYPE_PRECISION (type
) == TYPE_PRECISION (TREE_TYPE (expr
))))
1370 /* If EXPR fits in the unsigned version of TYPE,
1371 don't warn unless pedantic. */
1373 || TREE_UNSIGNED (type
)
1374 || ! constant_fits_type_p (expr
, unsigned_type (type
)))
1375 && skip_evaluation
== 0)
1376 warning ("overflow in implicit constant conversion");
1379 unsigned_conversion_warning (t
, expr
);
1384 /* A node in a list that describes references to variables (EXPR), which are
1385 either read accesses if WRITER is zero, or write accesses, in which case
1386 WRITER is the parent of EXPR. */
1393 /* Used to implement a cache the results of a call to verify_tree. We only
1394 use this for SAVE_EXPRs. */
1397 struct tlist_cache
*next
;
1398 struct tlist
*cache_before_sp
;
1399 struct tlist
*cache_after_sp
;
1403 /* Obstack to use when allocating tlist structures, and corresponding
1405 static struct obstack tlist_obstack
;
1406 static char *tlist_firstobj
= 0;
1408 /* Keep track of the identifiers we've warned about, so we can avoid duplicate
1410 static struct tlist
*warned_ids
;
1411 /* SAVE_EXPRs need special treatment. We process them only once and then
1412 cache the results. */
1413 static struct tlist_cache
*save_expr_cache
;
1415 static void add_tlist
PARAMS ((struct tlist
**, struct tlist
*, tree
, int));
1416 static void merge_tlist
PARAMS ((struct tlist
**, struct tlist
*, int));
1417 static void verify_tree
PARAMS ((tree
, struct tlist
**, struct tlist
**, tree
));
1418 static int warning_candidate_p
PARAMS ((tree
));
1419 static void warn_for_collisions
PARAMS ((struct tlist
*));
1420 static void warn_for_collisions_1
PARAMS ((tree
, tree
, struct tlist
*, int));
1421 static struct tlist
*new_tlist
PARAMS ((struct tlist
*, tree
, tree
));
1422 static void verify_sequence_points
PARAMS ((tree
));
1424 /* Create a new struct tlist and fill in its fields. */
1425 static struct tlist
*
1426 new_tlist (next
, t
, writer
)
1432 l
= (struct tlist
*) obstack_alloc (&tlist_obstack
, sizeof *l
);
1439 /* Add duplicates of the nodes found in ADD to the list *TO. If EXCLUDE_WRITER
1440 is nonnull, we ignore any node we find which has a writer equal to it. */
1443 add_tlist (to
, add
, exclude_writer
, copy
)
1446 tree exclude_writer
;
1451 struct tlist
*next
= add
->next
;
1454 if (! exclude_writer
|| add
->writer
!= exclude_writer
)
1455 *to
= copy
? new_tlist (*to
, add
->expr
, add
->writer
) : add
;
1460 /* Merge the nodes of ADD into TO. This merging process is done so that for
1461 each variable that already exists in TO, no new node is added; however if
1462 there is a write access recorded in ADD, and an occurrence on TO is only
1463 a read access, then the occurrence in TO will be modified to record the
1467 merge_tlist (to
, add
, copy
)
1472 struct tlist
**end
= to
;
1475 end
= &(*end
)->next
;
1481 struct tlist
*next
= add
->next
;
1483 for (tmp2
= *to
; tmp2
; tmp2
= tmp2
->next
)
1484 if (tmp2
->expr
== add
->expr
)
1488 tmp2
->writer
= add
->writer
;
1492 *end
= copy
? add
: new_tlist (NULL
, add
->expr
, add
->writer
);
1493 end
= &(*end
)->next
;
1500 /* WRITTEN is a variable, WRITER is its parent. Warn if any of the variable
1501 references in list LIST conflict with it, excluding reads if ONLY writers
1505 warn_for_collisions_1 (written
, writer
, list
, only_writes
)
1506 tree written
, writer
;
1512 /* Avoid duplicate warnings. */
1513 for (tmp
= warned_ids
; tmp
; tmp
= tmp
->next
)
1514 if (tmp
->expr
== written
)
1519 if (list
->expr
== written
1520 && list
->writer
!= writer
1521 && (! only_writes
|| list
->writer
))
1523 warned_ids
= new_tlist (warned_ids
, written
, NULL_TREE
);
1524 warning ("operation on `%s' may be undefined",
1525 IDENTIFIER_POINTER (DECL_NAME (list
->expr
)));
1531 /* Given a list LIST of references to variables, find whether any of these
1532 can cause conflicts due to missing sequence points. */
1535 warn_for_collisions (list
)
1540 for (tmp
= list
; tmp
; tmp
= tmp
->next
)
1543 warn_for_collisions_1 (tmp
->expr
, tmp
->writer
, list
, 0);
1547 /* Return nonzero if X is a tree that can be verified by the sequence poitn
1550 warning_candidate_p (x
)
1553 return TREE_CODE (x
) == VAR_DECL
|| TREE_CODE (x
) == PARM_DECL
;
1556 /* Walk the tree X, and record accesses to variables. If X is written by the
1557 parent tree, WRITER is the parent.
1558 We store accesses in one of the two lists: PBEFORE_SP, and PNO_SP. If this
1559 expression or its only operand forces a sequence point, then everything up
1560 to the sequence point is stored in PBEFORE_SP. Everything else gets stored
1562 Once we return, we will have emitted warnings if any subexpression before
1563 such a sequence point could be undefined. On a higher level, however, the
1564 sequence point may not be relevant, and we'll merge the two lists.
1566 Example: (b++, a) + b;
1567 The call that processes the COMPOUND_EXPR will store the increment of B
1568 in PBEFORE_SP, and the use of A in PNO_SP. The higher-level call that
1569 processes the PLUS_EXPR will need to merge the two lists so that
1570 eventually, all accesses end up on the same list (and we'll warn about the
1571 unordered subexpressions b++ and b.
1573 A note on merging. If we modify the former example so that our expression
1576 care must be taken not simply to add all three expressions into the final
1577 PNO_SP list. The function merge_tlist takes care of that by merging the
1578 before-SP list of the COMPOUND_EXPR into its after-SP list in a special
1579 way, so that no more than one access to B is recorded. */
1582 verify_tree (x
, pbefore_sp
, pno_sp
, writer
)
1584 struct tlist
**pbefore_sp
, **pno_sp
;
1587 struct tlist
*tmp_before
, *tmp_nosp
, *tmp_list2
, *tmp_list3
;
1588 enum tree_code code
;
1591 /* X may be NULL if it is the operand of an empty statement expression
1597 code
= TREE_CODE (x
);
1598 class = TREE_CODE_CLASS (code
);
1600 if (warning_candidate_p (x
))
1602 *pno_sp
= new_tlist (*pno_sp
, x
, writer
);
1612 case TRUTH_ANDIF_EXPR
:
1613 case TRUTH_ORIF_EXPR
:
1614 tmp_before
= tmp_nosp
= tmp_list3
= 0;
1615 verify_tree (TREE_OPERAND (x
, 0), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1616 warn_for_collisions (tmp_nosp
);
1617 merge_tlist (pbefore_sp
, tmp_before
, 0);
1618 merge_tlist (pbefore_sp
, tmp_nosp
, 0);
1619 verify_tree (TREE_OPERAND (x
, 1), &tmp_list3
, pno_sp
, NULL_TREE
);
1620 merge_tlist (pbefore_sp
, tmp_list3
, 0);
1624 tmp_before
= tmp_list2
= 0;
1625 verify_tree (TREE_OPERAND (x
, 0), &tmp_before
, &tmp_list2
, NULL_TREE
);
1626 warn_for_collisions (tmp_list2
);
1627 merge_tlist (pbefore_sp
, tmp_before
, 0);
1628 merge_tlist (pbefore_sp
, tmp_list2
, 1);
1630 tmp_list3
= tmp_nosp
= 0;
1631 verify_tree (TREE_OPERAND (x
, 1), &tmp_list3
, &tmp_nosp
, NULL_TREE
);
1632 warn_for_collisions (tmp_nosp
);
1633 merge_tlist (pbefore_sp
, tmp_list3
, 0);
1635 tmp_list3
= tmp_list2
= 0;
1636 verify_tree (TREE_OPERAND (x
, 2), &tmp_list3
, &tmp_list2
, NULL_TREE
);
1637 warn_for_collisions (tmp_list2
);
1638 merge_tlist (pbefore_sp
, tmp_list3
, 0);
1639 /* Rather than add both tmp_nosp and tmp_list2, we have to merge the
1640 two first, to avoid warning for (a ? b++ : b++). */
1641 merge_tlist (&tmp_nosp
, tmp_list2
, 0);
1642 add_tlist (pno_sp
, tmp_nosp
, NULL_TREE
, 0);
1645 case PREDECREMENT_EXPR
:
1646 case PREINCREMENT_EXPR
:
1647 case POSTDECREMENT_EXPR
:
1648 case POSTINCREMENT_EXPR
:
1649 verify_tree (TREE_OPERAND (x
, 0), pno_sp
, pno_sp
, x
);
1653 tmp_before
= tmp_nosp
= tmp_list3
= 0;
1654 verify_tree (TREE_OPERAND (x
, 1), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1655 verify_tree (TREE_OPERAND (x
, 0), &tmp_list3
, &tmp_list3
, x
);
1656 /* Expressions inside the LHS are not ordered wrt. the sequence points
1657 in the RHS. Example:
1659 Despite the fact that the modification of "a" is in the before_sp
1660 list (tmp_before), it conflicts with the use of "a" in the LHS.
1661 We can handle this by adding the contents of tmp_list3
1662 to those of tmp_before, and redoing the collision warnings for that
1664 add_tlist (&tmp_before
, tmp_list3
, x
, 1);
1665 warn_for_collisions (tmp_before
);
1666 /* Exclude the LHS itself here; we first have to merge it into the
1667 tmp_nosp list. This is done to avoid warning for "a = a"; if we
1668 didn't exclude the LHS, we'd get it twice, once as a read and once
1670 add_tlist (pno_sp
, tmp_list3
, x
, 0);
1671 warn_for_collisions_1 (TREE_OPERAND (x
, 0), x
, tmp_nosp
, 1);
1673 merge_tlist (pbefore_sp
, tmp_before
, 0);
1674 if (warning_candidate_p (TREE_OPERAND (x
, 0)))
1675 merge_tlist (&tmp_nosp
, new_tlist (NULL
, TREE_OPERAND (x
, 0), x
), 0);
1676 add_tlist (pno_sp
, tmp_nosp
, NULL_TREE
, 1);
1680 /* We need to warn about conflicts among arguments and conflicts between
1681 args and the function address. Side effects of the function address,
1682 however, are not ordered by the sequence point of the call. */
1683 tmp_before
= tmp_nosp
= tmp_list2
= tmp_list3
= 0;
1684 verify_tree (TREE_OPERAND (x
, 0), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1685 if (TREE_OPERAND (x
, 1))
1686 verify_tree (TREE_OPERAND (x
, 1), &tmp_list2
, &tmp_list3
, NULL_TREE
);
1687 merge_tlist (&tmp_list3
, tmp_list2
, 0);
1688 add_tlist (&tmp_before
, tmp_list3
, NULL_TREE
, 0);
1689 add_tlist (&tmp_before
, tmp_nosp
, NULL_TREE
, 0);
1690 warn_for_collisions (tmp_before
);
1691 add_tlist (pbefore_sp
, tmp_before
, NULL_TREE
, 0);
1695 /* Scan all the list, e.g. indices of multi dimensional array. */
1698 tmp_before
= tmp_nosp
= 0;
1699 verify_tree (TREE_VALUE (x
), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1700 merge_tlist (&tmp_nosp
, tmp_before
, 0);
1701 add_tlist (pno_sp
, tmp_nosp
, NULL_TREE
, 0);
1708 struct tlist_cache
*t
;
1709 for (t
= save_expr_cache
; t
; t
= t
->next
)
1715 t
= (struct tlist_cache
*) obstack_alloc (&tlist_obstack
,
1717 t
->next
= save_expr_cache
;
1719 save_expr_cache
= t
;
1721 tmp_before
= tmp_nosp
= 0;
1722 verify_tree (TREE_OPERAND (x
, 0), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1723 warn_for_collisions (tmp_nosp
);
1728 struct tlist
*t
= tmp_nosp
;
1730 merge_tlist (&tmp_list3
, t
, 0);
1732 t
->cache_before_sp
= tmp_before
;
1733 t
->cache_after_sp
= tmp_list3
;
1735 merge_tlist (pbefore_sp
, t
->cache_before_sp
, 1);
1736 add_tlist (pno_sp
, t
->cache_after_sp
, NULL_TREE
, 1);
1745 if (first_rtl_op (code
) == 0)
1747 x
= TREE_OPERAND (x
, 0);
1763 int max
= first_rtl_op (TREE_CODE (x
));
1764 for (lp
= 0; lp
< max
; lp
++)
1766 tmp_before
= tmp_nosp
= 0;
1767 verify_tree (TREE_OPERAND (x
, lp
), &tmp_before
, &tmp_nosp
, NULL_TREE
);
1768 merge_tlist (&tmp_nosp
, tmp_before
, 0);
1769 add_tlist (pno_sp
, tmp_nosp
, NULL_TREE
, 0);
1776 /* Try to warn for undefined behaviour in EXPR due to missing sequence
1780 verify_sequence_points (expr
)
1783 struct tlist
*before_sp
= 0, *after_sp
= 0;
1786 save_expr_cache
= 0;
1787 if (tlist_firstobj
== 0)
1789 gcc_obstack_init (&tlist_obstack
);
1790 tlist_firstobj
= obstack_alloc (&tlist_obstack
, 0);
1793 verify_tree (expr
, &before_sp
, &after_sp
, 0);
1794 warn_for_collisions (after_sp
);
1795 obstack_free (&tlist_obstack
, tlist_firstobj
);
1799 c_expand_expr_stmt (expr
)
1802 /* Do default conversion if safe and possibly important,
1803 in case within ({...}). */
1804 if ((TREE_CODE (TREE_TYPE (expr
)) == ARRAY_TYPE
&& lvalue_p (expr
))
1805 || TREE_CODE (TREE_TYPE (expr
)) == FUNCTION_TYPE
)
1806 expr
= default_conversion (expr
);
1808 if (warn_sequence_point
)
1809 verify_sequence_points (expr
);
1811 if (TREE_TYPE (expr
) != error_mark_node
1812 && !COMPLETE_OR_VOID_TYPE_P (TREE_TYPE (expr
))
1813 && TREE_CODE (TREE_TYPE (expr
)) != ARRAY_TYPE
)
1814 error ("expression statement has incomplete type");
1816 last_expr_type
= TREE_TYPE (expr
);
1817 return add_stmt (build_stmt (EXPR_STMT
, expr
));
1820 /* Validate the expression after `case' and apply default promotions. */
1823 check_case_value (value
)
1826 if (value
== NULL_TREE
)
1829 /* Strip NON_LVALUE_EXPRs since we aren't using as an lvalue. */
1830 STRIP_TYPE_NOPS (value
);
1831 /* In C++, the following is allowed:
1834 switch (...) { case i: ... }
1836 So, we try to reduce the VALUE to a constant that way. */
1837 if (c_language
== clk_cplusplus
)
1839 value
= decl_constant_value (value
);
1840 STRIP_TYPE_NOPS (value
);
1841 value
= fold (value
);
1844 if (TREE_CODE (value
) != INTEGER_CST
1845 && value
!= error_mark_node
)
1847 error ("case label does not reduce to an integer constant");
1848 value
= error_mark_node
;
1851 /* Promote char or short to int. */
1852 value
= default_conversion (value
);
1854 constant_expression_warning (value
);
1859 /* Return an integer type with BITS bits of precision,
1860 that is unsigned if UNSIGNEDP is nonzero, otherwise signed. */
1863 type_for_size (bits
, unsignedp
)
1867 if (bits
== TYPE_PRECISION (integer_type_node
))
1868 return unsignedp
? unsigned_type_node
: integer_type_node
;
1870 if (bits
== TYPE_PRECISION (signed_char_type_node
))
1871 return unsignedp
? unsigned_char_type_node
: signed_char_type_node
;
1873 if (bits
== TYPE_PRECISION (short_integer_type_node
))
1874 return unsignedp
? short_unsigned_type_node
: short_integer_type_node
;
1876 if (bits
== TYPE_PRECISION (long_integer_type_node
))
1877 return unsignedp
? long_unsigned_type_node
: long_integer_type_node
;
1879 if (bits
== TYPE_PRECISION (long_long_integer_type_node
))
1880 return (unsignedp
? long_long_unsigned_type_node
1881 : long_long_integer_type_node
);
1883 if (bits
== TYPE_PRECISION (widest_integer_literal_type_node
))
1884 return (unsignedp
? widest_unsigned_literal_type_node
1885 : widest_integer_literal_type_node
);
1887 if (bits
<= TYPE_PRECISION (intQI_type_node
))
1888 return unsignedp
? unsigned_intQI_type_node
: intQI_type_node
;
1890 if (bits
<= TYPE_PRECISION (intHI_type_node
))
1891 return unsignedp
? unsigned_intHI_type_node
: intHI_type_node
;
1893 if (bits
<= TYPE_PRECISION (intSI_type_node
))
1894 return unsignedp
? unsigned_intSI_type_node
: intSI_type_node
;
1896 if (bits
<= TYPE_PRECISION (intDI_type_node
))
1897 return unsignedp
? unsigned_intDI_type_node
: intDI_type_node
;
1902 /* Return a data type that has machine mode MODE.
1903 If the mode is an integer,
1904 then UNSIGNEDP selects between signed and unsigned types. */
1907 type_for_mode (mode
, unsignedp
)
1908 enum machine_mode mode
;
1911 if (mode
== TYPE_MODE (integer_type_node
))
1912 return unsignedp
? unsigned_type_node
: integer_type_node
;
1914 if (mode
== TYPE_MODE (signed_char_type_node
))
1915 return unsignedp
? unsigned_char_type_node
: signed_char_type_node
;
1917 if (mode
== TYPE_MODE (short_integer_type_node
))
1918 return unsignedp
? short_unsigned_type_node
: short_integer_type_node
;
1920 if (mode
== TYPE_MODE (long_integer_type_node
))
1921 return unsignedp
? long_unsigned_type_node
: long_integer_type_node
;
1923 if (mode
== TYPE_MODE (long_long_integer_type_node
))
1924 return unsignedp
? long_long_unsigned_type_node
: long_long_integer_type_node
;
1926 if (mode
== TYPE_MODE (widest_integer_literal_type_node
))
1927 return unsignedp
? widest_unsigned_literal_type_node
1928 : widest_integer_literal_type_node
;
1930 if (mode
== TYPE_MODE (intQI_type_node
))
1931 return unsignedp
? unsigned_intQI_type_node
: intQI_type_node
;
1933 if (mode
== TYPE_MODE (intHI_type_node
))
1934 return unsignedp
? unsigned_intHI_type_node
: intHI_type_node
;
1936 if (mode
== TYPE_MODE (intSI_type_node
))
1937 return unsignedp
? unsigned_intSI_type_node
: intSI_type_node
;
1939 if (mode
== TYPE_MODE (intDI_type_node
))
1940 return unsignedp
? unsigned_intDI_type_node
: intDI_type_node
;
1942 #if HOST_BITS_PER_WIDE_INT >= 64
1943 if (mode
== TYPE_MODE (intTI_type_node
))
1944 return unsignedp
? unsigned_intTI_type_node
: intTI_type_node
;
1947 if (mode
== TYPE_MODE (float_type_node
))
1948 return float_type_node
;
1950 if (mode
== TYPE_MODE (double_type_node
))
1951 return double_type_node
;
1953 if (mode
== TYPE_MODE (long_double_type_node
))
1954 return long_double_type_node
;
1956 if (mode
== TYPE_MODE (build_pointer_type (char_type_node
)))
1957 return build_pointer_type (char_type_node
);
1959 if (mode
== TYPE_MODE (build_pointer_type (integer_type_node
)))
1960 return build_pointer_type (integer_type_node
);
1962 #ifdef VECTOR_MODE_SUPPORTED_P
1963 if (mode
== TYPE_MODE (V4SF_type_node
) && VECTOR_MODE_SUPPORTED_P (mode
))
1964 return V4SF_type_node
;
1965 if (mode
== TYPE_MODE (V4SI_type_node
) && VECTOR_MODE_SUPPORTED_P (mode
))
1966 return V4SI_type_node
;
1967 if (mode
== TYPE_MODE (V2SI_type_node
) && VECTOR_MODE_SUPPORTED_P (mode
))
1968 return V2SI_type_node
;
1969 if (mode
== TYPE_MODE (V4HI_type_node
) && VECTOR_MODE_SUPPORTED_P (mode
))
1970 return V4HI_type_node
;
1971 if (mode
== TYPE_MODE (V8QI_type_node
) && VECTOR_MODE_SUPPORTED_P (mode
))
1972 return V8QI_type_node
;
1978 /* Return an unsigned type the same as TYPE in other respects. */
1980 unsigned_type (type
)
1983 tree type1
= TYPE_MAIN_VARIANT (type
);
1984 if (type1
== signed_char_type_node
|| type1
== char_type_node
)
1985 return unsigned_char_type_node
;
1986 if (type1
== integer_type_node
)
1987 return unsigned_type_node
;
1988 if (type1
== short_integer_type_node
)
1989 return short_unsigned_type_node
;
1990 if (type1
== long_integer_type_node
)
1991 return long_unsigned_type_node
;
1992 if (type1
== long_long_integer_type_node
)
1993 return long_long_unsigned_type_node
;
1994 if (type1
== widest_integer_literal_type_node
)
1995 return widest_unsigned_literal_type_node
;
1996 #if HOST_BITS_PER_WIDE_INT >= 64
1997 if (type1
== intTI_type_node
)
1998 return unsigned_intTI_type_node
;
2000 if (type1
== intDI_type_node
)
2001 return unsigned_intDI_type_node
;
2002 if (type1
== intSI_type_node
)
2003 return unsigned_intSI_type_node
;
2004 if (type1
== intHI_type_node
)
2005 return unsigned_intHI_type_node
;
2006 if (type1
== intQI_type_node
)
2007 return unsigned_intQI_type_node
;
2009 return signed_or_unsigned_type (1, type
);
2012 /* Return a signed type the same as TYPE in other respects. */
2018 tree type1
= TYPE_MAIN_VARIANT (type
);
2019 if (type1
== unsigned_char_type_node
|| type1
== char_type_node
)
2020 return signed_char_type_node
;
2021 if (type1
== unsigned_type_node
)
2022 return integer_type_node
;
2023 if (type1
== short_unsigned_type_node
)
2024 return short_integer_type_node
;
2025 if (type1
== long_unsigned_type_node
)
2026 return long_integer_type_node
;
2027 if (type1
== long_long_unsigned_type_node
)
2028 return long_long_integer_type_node
;
2029 if (type1
== widest_unsigned_literal_type_node
)
2030 return widest_integer_literal_type_node
;
2031 #if HOST_BITS_PER_WIDE_INT >= 64
2032 if (type1
== unsigned_intTI_type_node
)
2033 return intTI_type_node
;
2035 if (type1
== unsigned_intDI_type_node
)
2036 return intDI_type_node
;
2037 if (type1
== unsigned_intSI_type_node
)
2038 return intSI_type_node
;
2039 if (type1
== unsigned_intHI_type_node
)
2040 return intHI_type_node
;
2041 if (type1
== unsigned_intQI_type_node
)
2042 return intQI_type_node
;
2044 return signed_or_unsigned_type (0, type
);
2047 /* Return a type the same as TYPE except unsigned or
2048 signed according to UNSIGNEDP. */
2051 signed_or_unsigned_type (unsignedp
, type
)
2055 if (! INTEGRAL_TYPE_P (type
)
2056 || TREE_UNSIGNED (type
) == unsignedp
)
2059 if (TYPE_PRECISION (type
) == TYPE_PRECISION (signed_char_type_node
))
2060 return unsignedp
? unsigned_char_type_node
: signed_char_type_node
;
2061 if (TYPE_PRECISION (type
) == TYPE_PRECISION (integer_type_node
))
2062 return unsignedp
? unsigned_type_node
: integer_type_node
;
2063 if (TYPE_PRECISION (type
) == TYPE_PRECISION (short_integer_type_node
))
2064 return unsignedp
? short_unsigned_type_node
: short_integer_type_node
;
2065 if (TYPE_PRECISION (type
) == TYPE_PRECISION (long_integer_type_node
))
2066 return unsignedp
? long_unsigned_type_node
: long_integer_type_node
;
2067 if (TYPE_PRECISION (type
) == TYPE_PRECISION (long_long_integer_type_node
))
2068 return (unsignedp
? long_long_unsigned_type_node
2069 : long_long_integer_type_node
);
2070 if (TYPE_PRECISION (type
) == TYPE_PRECISION (widest_integer_literal_type_node
))
2071 return (unsignedp
? widest_unsigned_literal_type_node
2072 : widest_integer_literal_type_node
);
2076 /* Return the minimum number of bits needed to represent VALUE in a
2077 signed or unsigned type, UNSIGNEDP says which. */
2080 min_precision (value
, unsignedp
)
2086 /* If the value is negative, compute its negative minus 1. The latter
2087 adjustment is because the absolute value of the largest negative value
2088 is one larger than the largest positive value. This is equivalent to
2089 a bit-wise negation, so use that operation instead. */
2091 if (tree_int_cst_sgn (value
) < 0)
2092 value
= fold (build1 (BIT_NOT_EXPR
, TREE_TYPE (value
), value
));
2094 /* Return the number of bits needed, taking into account the fact
2095 that we need one more bit for a signed than unsigned type. */
2097 if (integer_zerop (value
))
2100 log
= tree_floor_log2 (value
);
2102 return log
+ 1 + ! unsignedp
;
2105 /* Print an error message for invalid operands to arith operation CODE.
2106 NOP_EXPR is used as a special case (see truthvalue_conversion). */
2109 binary_op_error (code
)
2110 enum tree_code code
;
2112 register const char *opname
;
2117 error ("invalid truth-value expression");
2121 opname
= "+"; break;
2123 opname
= "-"; break;
2125 opname
= "*"; break;
2127 opname
= "max"; break;
2129 opname
= "min"; break;
2131 opname
= "=="; break;
2133 opname
= "!="; break;
2135 opname
= "<="; break;
2137 opname
= ">="; break;
2139 opname
= "<"; break;
2141 opname
= ">"; break;
2143 opname
= "<<"; break;
2145 opname
= ">>"; break;
2146 case TRUNC_MOD_EXPR
:
2147 case FLOOR_MOD_EXPR
:
2148 opname
= "%"; break;
2149 case TRUNC_DIV_EXPR
:
2150 case FLOOR_DIV_EXPR
:
2151 opname
= "/"; break;
2153 opname
= "&"; break;
2155 opname
= "|"; break;
2156 case TRUTH_ANDIF_EXPR
:
2157 opname
= "&&"; break;
2158 case TRUTH_ORIF_EXPR
:
2159 opname
= "||"; break;
2161 opname
= "^"; break;
2164 opname
= "rotate"; break;
2166 opname
= "unknown"; break;
2168 error ("invalid operands to binary %s", opname
);
2171 /* Subroutine of build_binary_op, used for comparison operations.
2172 See if the operands have both been converted from subword integer types
2173 and, if so, perhaps change them both back to their original type.
2174 This function is also responsible for converting the two operands
2175 to the proper common type for comparison.
2177 The arguments of this function are all pointers to local variables
2178 of build_binary_op: OP0_PTR is &OP0, OP1_PTR is &OP1,
2179 RESTYPE_PTR is &RESULT_TYPE and RESCODE_PTR is &RESULTCODE.
2181 If this function returns nonzero, it means that the comparison has
2182 a constant value. What this function returns is an expression for
2186 shorten_compare (op0_ptr
, op1_ptr
, restype_ptr
, rescode_ptr
)
2187 tree
*op0_ptr
, *op1_ptr
;
2189 enum tree_code
*rescode_ptr
;
2192 tree op0
= *op0_ptr
;
2193 tree op1
= *op1_ptr
;
2194 int unsignedp0
, unsignedp1
;
2196 tree primop0
, primop1
;
2197 enum tree_code code
= *rescode_ptr
;
2199 /* Throw away any conversions to wider types
2200 already present in the operands. */
2202 primop0
= get_narrower (op0
, &unsignedp0
);
2203 primop1
= get_narrower (op1
, &unsignedp1
);
2205 /* Handle the case that OP0 does not *contain* a conversion
2206 but it *requires* conversion to FINAL_TYPE. */
2208 if (op0
== primop0
&& TREE_TYPE (op0
) != *restype_ptr
)
2209 unsignedp0
= TREE_UNSIGNED (TREE_TYPE (op0
));
2210 if (op1
== primop1
&& TREE_TYPE (op1
) != *restype_ptr
)
2211 unsignedp1
= TREE_UNSIGNED (TREE_TYPE (op1
));
2213 /* If one of the operands must be floated, we cannot optimize. */
2214 real1
= TREE_CODE (TREE_TYPE (primop0
)) == REAL_TYPE
;
2215 real2
= TREE_CODE (TREE_TYPE (primop1
)) == REAL_TYPE
;
2217 /* If first arg is constant, swap the args (changing operation
2218 so value is preserved), for canonicalization. Don't do this if
2219 the second arg is 0. */
2221 if (TREE_CONSTANT (primop0
)
2222 && ! integer_zerop (primop1
) && ! real_zerop (primop1
))
2224 register tree tem
= primop0
;
2225 register int temi
= unsignedp0
;
2233 unsignedp0
= unsignedp1
;
2256 *rescode_ptr
= code
;
2259 /* If comparing an integer against a constant more bits wide,
2260 maybe we can deduce a value of 1 or 0 independent of the data.
2261 Or else truncate the constant now
2262 rather than extend the variable at run time.
2264 This is only interesting if the constant is the wider arg.
2265 Also, it is not safe if the constant is unsigned and the
2266 variable arg is signed, since in this case the variable
2267 would be sign-extended and then regarded as unsigned.
2268 Our technique fails in this case because the lowest/highest
2269 possible unsigned results don't follow naturally from the
2270 lowest/highest possible values of the variable operand.
2271 For just EQ_EXPR and NE_EXPR there is another technique that
2272 could be used: see if the constant can be faithfully represented
2273 in the other operand's type, by truncating it and reextending it
2274 and see if that preserves the constant's value. */
2276 if (!real1
&& !real2
2277 && TREE_CODE (primop1
) == INTEGER_CST
2278 && TYPE_PRECISION (TREE_TYPE (primop0
)) < TYPE_PRECISION (*restype_ptr
))
2280 int min_gt
, max_gt
, min_lt
, max_lt
;
2281 tree maxval
, minval
;
2282 /* 1 if comparison is nominally unsigned. */
2283 int unsignedp
= TREE_UNSIGNED (*restype_ptr
);
2286 type
= signed_or_unsigned_type (unsignedp0
, TREE_TYPE (primop0
));
2288 /* If TYPE is an enumeration, then we need to get its min/max
2289 values from it's underlying integral type, not the enumerated
2291 if (TREE_CODE (type
) == ENUMERAL_TYPE
)
2292 type
= type_for_size (TYPE_PRECISION (type
), unsignedp0
);
2294 maxval
= TYPE_MAX_VALUE (type
);
2295 minval
= TYPE_MIN_VALUE (type
);
2297 if (unsignedp
&& !unsignedp0
)
2298 *restype_ptr
= signed_type (*restype_ptr
);
2300 if (TREE_TYPE (primop1
) != *restype_ptr
)
2301 primop1
= convert (*restype_ptr
, primop1
);
2302 if (type
!= *restype_ptr
)
2304 minval
= convert (*restype_ptr
, minval
);
2305 maxval
= convert (*restype_ptr
, maxval
);
2308 if (unsignedp
&& unsignedp0
)
2310 min_gt
= INT_CST_LT_UNSIGNED (primop1
, minval
);
2311 max_gt
= INT_CST_LT_UNSIGNED (primop1
, maxval
);
2312 min_lt
= INT_CST_LT_UNSIGNED (minval
, primop1
);
2313 max_lt
= INT_CST_LT_UNSIGNED (maxval
, primop1
);
2317 min_gt
= INT_CST_LT (primop1
, minval
);
2318 max_gt
= INT_CST_LT (primop1
, maxval
);
2319 min_lt
= INT_CST_LT (minval
, primop1
);
2320 max_lt
= INT_CST_LT (maxval
, primop1
);
2324 /* This used to be a switch, but Genix compiler can't handle that. */
2325 if (code
== NE_EXPR
)
2327 if (max_lt
|| min_gt
)
2328 val
= boolean_true_node
;
2330 else if (code
== EQ_EXPR
)
2332 if (max_lt
|| min_gt
)
2333 val
= boolean_false_node
;
2335 else if (code
== LT_EXPR
)
2338 val
= boolean_true_node
;
2340 val
= boolean_false_node
;
2342 else if (code
== GT_EXPR
)
2345 val
= boolean_true_node
;
2347 val
= boolean_false_node
;
2349 else if (code
== LE_EXPR
)
2352 val
= boolean_true_node
;
2354 val
= boolean_false_node
;
2356 else if (code
== GE_EXPR
)
2359 val
= boolean_true_node
;
2361 val
= boolean_false_node
;
2364 /* If primop0 was sign-extended and unsigned comparison specd,
2365 we did a signed comparison above using the signed type bounds.
2366 But the comparison we output must be unsigned.
2368 Also, for inequalities, VAL is no good; but if the signed
2369 comparison had *any* fixed result, it follows that the
2370 unsigned comparison just tests the sign in reverse
2371 (positive values are LE, negative ones GE).
2372 So we can generate an unsigned comparison
2373 against an extreme value of the signed type. */
2375 if (unsignedp
&& !unsignedp0
)
2382 primop1
= TYPE_MIN_VALUE (type
);
2388 primop1
= TYPE_MAX_VALUE (type
);
2395 type
= unsigned_type (type
);
2398 if (!max_gt
&& !unsignedp0
&& TREE_CODE (primop0
) != INTEGER_CST
)
2400 /* This is the case of (char)x >?< 0x80, which people used to use
2401 expecting old C compilers to change the 0x80 into -0x80. */
2402 if (val
== boolean_false_node
)
2403 warning ("comparison is always false due to limited range of data type");
2404 if (val
== boolean_true_node
)
2405 warning ("comparison is always true due to limited range of data type");
2408 if (!min_lt
&& unsignedp0
&& TREE_CODE (primop0
) != INTEGER_CST
)
2410 /* This is the case of (unsigned char)x >?< -1 or < 0. */
2411 if (val
== boolean_false_node
)
2412 warning ("comparison is always false due to limited range of data type");
2413 if (val
== boolean_true_node
)
2414 warning ("comparison is always true due to limited range of data type");
2419 /* Don't forget to evaluate PRIMOP0 if it has side effects. */
2420 if (TREE_SIDE_EFFECTS (primop0
))
2421 return build (COMPOUND_EXPR
, TREE_TYPE (val
), primop0
, val
);
2425 /* Value is not predetermined, but do the comparison
2426 in the type of the operand that is not constant.
2427 TYPE is already properly set. */
2429 else if (real1
&& real2
2430 && (TYPE_PRECISION (TREE_TYPE (primop0
))
2431 == TYPE_PRECISION (TREE_TYPE (primop1
))))
2432 type
= TREE_TYPE (primop0
);
2434 /* If args' natural types are both narrower than nominal type
2435 and both extend in the same manner, compare them
2436 in the type of the wider arg.
2437 Otherwise must actually extend both to the nominal
2438 common type lest different ways of extending
2440 (eg, (short)-1 == (unsigned short)-1 should be 0.) */
2442 else if (unsignedp0
== unsignedp1
&& real1
== real2
2443 && TYPE_PRECISION (TREE_TYPE (primop0
)) < TYPE_PRECISION (*restype_ptr
)
2444 && TYPE_PRECISION (TREE_TYPE (primop1
)) < TYPE_PRECISION (*restype_ptr
))
2446 type
= common_type (TREE_TYPE (primop0
), TREE_TYPE (primop1
));
2447 type
= signed_or_unsigned_type (unsignedp0
2448 || TREE_UNSIGNED (*restype_ptr
),
2450 /* Make sure shorter operand is extended the right way
2451 to match the longer operand. */
2452 primop0
= convert (signed_or_unsigned_type (unsignedp0
, TREE_TYPE (primop0
)),
2454 primop1
= convert (signed_or_unsigned_type (unsignedp1
, TREE_TYPE (primop1
)),
2459 /* Here we must do the comparison on the nominal type
2460 using the args exactly as we received them. */
2461 type
= *restype_ptr
;
2465 if (!real1
&& !real2
&& integer_zerop (primop1
)
2466 && TREE_UNSIGNED (*restype_ptr
))
2472 /* All unsigned values are >= 0, so we warn if extra warnings
2473 are requested. However, if OP0 is a constant that is
2474 >= 0, the signedness of the comparison isn't an issue,
2475 so suppress the warning. */
2476 if (extra_warnings
&& !in_system_header
2477 && ! (TREE_CODE (primop0
) == INTEGER_CST
2478 && ! TREE_OVERFLOW (convert (signed_type (type
),
2480 warning ("comparison of unsigned expression >= 0 is always true");
2481 value
= boolean_true_node
;
2485 if (extra_warnings
&& !in_system_header
2486 && ! (TREE_CODE (primop0
) == INTEGER_CST
2487 && ! TREE_OVERFLOW (convert (signed_type (type
),
2489 warning ("comparison of unsigned expression < 0 is always false");
2490 value
= boolean_false_node
;
2499 /* Don't forget to evaluate PRIMOP0 if it has side effects. */
2500 if (TREE_SIDE_EFFECTS (primop0
))
2501 return build (COMPOUND_EXPR
, TREE_TYPE (value
),
2508 *op0_ptr
= convert (type
, primop0
);
2509 *op1_ptr
= convert (type
, primop1
);
2511 *restype_ptr
= boolean_type_node
;
2516 /* Prepare expr to be an argument of a TRUTH_NOT_EXPR,
2517 or validate its data type for an `if' or `while' statement or ?..: exp.
2519 This preparation consists of taking the ordinary
2520 representation of an expression expr and producing a valid tree
2521 boolean expression describing whether expr is nonzero. We could
2522 simply always do build_binary_op (NE_EXPR, expr, boolean_false_node, 1),
2523 but we optimize comparisons, &&, ||, and !.
2525 The resulting type should always be `boolean_type_node'. */
2528 truthvalue_conversion (expr
)
2531 if (TREE_CODE (expr
) == ERROR_MARK
)
2534 #if 0 /* This appears to be wrong for C++. */
2535 /* These really should return error_mark_node after 2.4 is stable.
2536 But not all callers handle ERROR_MARK properly. */
2537 switch (TREE_CODE (TREE_TYPE (expr
)))
2540 error ("struct type value used where scalar is required");
2541 return boolean_false_node
;
2544 error ("union type value used where scalar is required");
2545 return boolean_false_node
;
2548 error ("array type value used where scalar is required");
2549 return boolean_false_node
;
2556 switch (TREE_CODE (expr
))
2559 case NE_EXPR
: case LE_EXPR
: case GE_EXPR
: case LT_EXPR
: case GT_EXPR
:
2560 case TRUTH_ANDIF_EXPR
:
2561 case TRUTH_ORIF_EXPR
:
2562 case TRUTH_AND_EXPR
:
2564 case TRUTH_XOR_EXPR
:
2565 case TRUTH_NOT_EXPR
:
2566 TREE_TYPE (expr
) = boolean_type_node
;
2573 return integer_zerop (expr
) ? boolean_false_node
: boolean_true_node
;
2576 return real_zerop (expr
) ? boolean_false_node
: boolean_true_node
;
2579 /* If we are taking the address of a external decl, it might be zero
2580 if it is weak, so we cannot optimize. */
2581 if (DECL_P (TREE_OPERAND (expr
, 0))
2582 && DECL_EXTERNAL (TREE_OPERAND (expr
, 0)))
2585 if (TREE_SIDE_EFFECTS (TREE_OPERAND (expr
, 0)))
2586 return build (COMPOUND_EXPR
, boolean_type_node
,
2587 TREE_OPERAND (expr
, 0), boolean_true_node
);
2589 return boolean_true_node
;
2592 return build_binary_op ((TREE_SIDE_EFFECTS (TREE_OPERAND (expr
, 1))
2593 ? TRUTH_OR_EXPR
: TRUTH_ORIF_EXPR
),
2594 truthvalue_conversion (TREE_OPERAND (expr
, 0)),
2595 truthvalue_conversion (TREE_OPERAND (expr
, 1)),
2602 /* These don't change whether an object is non-zero or zero. */
2603 return truthvalue_conversion (TREE_OPERAND (expr
, 0));
2607 /* These don't change whether an object is zero or non-zero, but
2608 we can't ignore them if their second arg has side-effects. */
2609 if (TREE_SIDE_EFFECTS (TREE_OPERAND (expr
, 1)))
2610 return build (COMPOUND_EXPR
, boolean_type_node
, TREE_OPERAND (expr
, 1),
2611 truthvalue_conversion (TREE_OPERAND (expr
, 0)));
2613 return truthvalue_conversion (TREE_OPERAND (expr
, 0));
2616 /* Distribute the conversion into the arms of a COND_EXPR. */
2617 return fold (build (COND_EXPR
, boolean_type_node
, TREE_OPERAND (expr
, 0),
2618 truthvalue_conversion (TREE_OPERAND (expr
, 1)),
2619 truthvalue_conversion (TREE_OPERAND (expr
, 2))));
2622 /* Don't cancel the effect of a CONVERT_EXPR from a REFERENCE_TYPE,
2623 since that affects how `default_conversion' will behave. */
2624 if (TREE_CODE (TREE_TYPE (expr
)) == REFERENCE_TYPE
2625 || TREE_CODE (TREE_TYPE (TREE_OPERAND (expr
, 0))) == REFERENCE_TYPE
)
2627 /* fall through... */
2629 /* If this is widening the argument, we can ignore it. */
2630 if (TYPE_PRECISION (TREE_TYPE (expr
))
2631 >= TYPE_PRECISION (TREE_TYPE (TREE_OPERAND (expr
, 0))))
2632 return truthvalue_conversion (TREE_OPERAND (expr
, 0));
2636 /* With IEEE arithmetic, x - x may not equal 0, so we can't optimize
2638 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
2639 && TREE_CODE (TREE_TYPE (expr
)) == REAL_TYPE
)
2641 /* fall through... */
2643 /* This and MINUS_EXPR can be changed into a comparison of the
2645 if (TREE_TYPE (TREE_OPERAND (expr
, 0))
2646 == TREE_TYPE (TREE_OPERAND (expr
, 1)))
2647 return build_binary_op (NE_EXPR
, TREE_OPERAND (expr
, 0),
2648 TREE_OPERAND (expr
, 1), 1);
2649 return build_binary_op (NE_EXPR
, TREE_OPERAND (expr
, 0),
2650 fold (build1 (NOP_EXPR
,
2651 TREE_TYPE (TREE_OPERAND (expr
, 0)),
2652 TREE_OPERAND (expr
, 1))), 1);
2655 if (integer_onep (TREE_OPERAND (expr
, 1))
2656 && TREE_TYPE (expr
) != boolean_type_node
)
2657 /* Using convert here would cause infinite recursion. */
2658 return build1 (NOP_EXPR
, boolean_type_node
, expr
);
2662 if (warn_parentheses
&& C_EXP_ORIGINAL_CODE (expr
) == MODIFY_EXPR
)
2663 warning ("suggest parentheses around assignment used as truth value");
2670 if (TREE_CODE (TREE_TYPE (expr
)) == COMPLEX_TYPE
)
2672 tree tem
= save_expr (expr
);
2673 return (build_binary_op
2674 ((TREE_SIDE_EFFECTS (expr
)
2675 ? TRUTH_OR_EXPR
: TRUTH_ORIF_EXPR
),
2676 truthvalue_conversion (build_unary_op (REALPART_EXPR
, tem
, 0)),
2677 truthvalue_conversion (build_unary_op (IMAGPART_EXPR
, tem
, 0)),
2681 return build_binary_op (NE_EXPR
, expr
, integer_zero_node
, 1);
2684 static tree builtin_function_2
PARAMS ((const char *, const char *, tree
, tree
,
2685 int, enum built_in_class
, int, int,
2688 /* Make a variant type in the proper way for C/C++, propagating qualifiers
2689 down to the element type of an array. */
2692 c_build_qualified_type (type
, type_quals
)
2696 /* A restrict-qualified pointer type must be a pointer to object or
2697 incomplete type. Note that the use of POINTER_TYPE_P also allows
2698 REFERENCE_TYPEs, which is appropriate for C++. Unfortunately,
2699 the C++ front-end also use POINTER_TYPE for pointer-to-member
2700 values, so even though it should be illegal to use `restrict'
2701 with such an entity we don't flag that here. Thus, special case
2702 code for that case is required in the C++ front-end. */
2703 if ((type_quals
& TYPE_QUAL_RESTRICT
)
2704 && (!POINTER_TYPE_P (type
)
2705 || !C_TYPE_OBJECT_OR_INCOMPLETE_P (TREE_TYPE (type
))))
2707 error ("invalid use of `restrict'");
2708 type_quals
&= ~TYPE_QUAL_RESTRICT
;
2711 if (TREE_CODE (type
) == ARRAY_TYPE
)
2712 return build_array_type (c_build_qualified_type (TREE_TYPE (type
),
2714 TYPE_DOMAIN (type
));
2715 return build_qualified_type (type
, type_quals
);
2718 /* Apply the TYPE_QUALS to the new DECL. */
2721 c_apply_type_quals_to_decl (type_quals
, decl
)
2725 if ((type_quals
& TYPE_QUAL_CONST
)
2726 || (TREE_TYPE (decl
)
2727 && TREE_CODE (TREE_TYPE (decl
)) == REFERENCE_TYPE
))
2728 TREE_READONLY (decl
) = 1;
2729 if (type_quals
& TYPE_QUAL_VOLATILE
)
2731 TREE_SIDE_EFFECTS (decl
) = 1;
2732 TREE_THIS_VOLATILE (decl
) = 1;
2734 if (type_quals
& TYPE_QUAL_RESTRICT
)
2736 if (!TREE_TYPE (decl
)
2737 || !POINTER_TYPE_P (TREE_TYPE (decl
))
2738 || !C_TYPE_OBJECT_OR_INCOMPLETE_P (TREE_TYPE (TREE_TYPE (decl
))))
2739 error ("invalid use of `restrict'");
2740 else if (flag_strict_aliasing
)
2742 /* No two restricted pointers can point at the same thing.
2743 However, a restricted pointer can point at the same thing
2744 as an unrestricted pointer, if that unrestricted pointer
2745 is based on the restricted pointer. So, we make the
2746 alias set for the restricted pointer a subset of the
2747 alias set for the type pointed to by the type of the
2750 HOST_WIDE_INT pointed_to_alias_set
2751 = get_alias_set (TREE_TYPE (TREE_TYPE (decl
)));
2753 if (pointed_to_alias_set
== 0)
2754 /* It's not legal to make a subset of alias set zero. */
2758 DECL_POINTER_ALIAS_SET (decl
) = new_alias_set ();
2759 record_alias_subset (pointed_to_alias_set
,
2760 DECL_POINTER_ALIAS_SET (decl
));
2767 /* Return the typed-based alias set for T, which may be an expression
2768 or a type. Return -1 if we don't do anything special. */
2771 lang_get_alias_set (t
)
2776 /* We know nothing about vector types */
2777 if (TREE_CODE (t
) == VECTOR_TYPE
)
2780 /* Permit type-punning when accessing a union, provided the access
2781 is directly through the union. For example, this code does not
2782 permit taking the address of a union member and then storing
2783 through it. Even the type-punning allowed here is a GCC
2784 extension, albeit a common and useful one; the C standard says
2785 that such accesses have implementation-defined behavior. */
2787 TREE_CODE (u
) == COMPONENT_REF
|| TREE_CODE (u
) == ARRAY_REF
;
2788 u
= TREE_OPERAND (u
, 0))
2789 if (TREE_CODE (u
) == COMPONENT_REF
2790 && TREE_CODE (TREE_TYPE (TREE_OPERAND (u
, 0))) == UNION_TYPE
)
2793 /* If this is a char *, the ANSI C standard says it can alias
2794 anything. Note that all references need do this. */
2795 if (TREE_CODE_CLASS (TREE_CODE (t
)) == 'r'
2796 && TREE_CODE (TREE_TYPE (t
)) == INTEGER_TYPE
2797 && TYPE_PRECISION (TREE_TYPE (t
)) == TYPE_PRECISION (char_type_node
))
2800 /* That's all the expressions we handle specially. */
2804 /* The C standard specifically allows aliasing between signed and
2805 unsigned variants of the same type. We treat the signed
2806 variant as canonical. */
2807 if (TREE_CODE (t
) == INTEGER_TYPE
&& TREE_UNSIGNED (t
))
2809 tree t1
= signed_type (t
);
2811 /* t1 == t can happen for boolean nodes which are always unsigned. */
2813 return get_alias_set (t1
);
2815 else if (POINTER_TYPE_P (t
))
2819 /* Unfortunately, there is no canonical form of a pointer type.
2820 In particular, if we have `typedef int I', then `int *', and
2821 `I *' are different types. So, we have to pick a canonical
2822 representative. We do this below.
2824 Technically, this approach is actually more conservative that
2825 it needs to be. In particular, `const int *' and `int *'
2826 chould be in different alias sets, according to the C and C++
2827 standard, since their types are not the same, and so,
2828 technically, an `int **' and `const int **' cannot point at
2831 But, the standard is wrong. In particular, this code is
2836 const int* const* cipp = &ipp;
2838 And, it doesn't make sense for that to be legal unless you
2839 can dereference IPP and CIPP. So, we ignore cv-qualifiers on
2840 the pointed-to types. This issue has been reported to the
2842 t1
= build_type_no_quals (t
);
2844 return get_alias_set (t1
);
2846 /* It's not yet safe to use alias sets for classes in C++ because
2847 the TYPE_FIELDs list for a class doesn't mention base classes. */
2848 else if (c_language
== clk_cplusplus
&& AGGREGATE_TYPE_P (t
))
2854 /* Build tree nodes and builtin functions common to both C and C++ language
2858 c_common_nodes_and_builtins ()
2862 #define DEF_PRIMITIVE_TYPE(NAME, VALUE) NAME,
2863 #define DEF_FUNCTION_TYPE_0(NAME, RETURN) NAME,
2864 #define DEF_FUNCTION_TYPE_1(NAME, RETURN, ARG1) NAME,
2865 #define DEF_FUNCTION_TYPE_2(NAME, RETURN, ARG1, ARG2) NAME,
2866 #define DEF_FUNCTION_TYPE_3(NAME, RETURN, ARG1, ARG2, ARG3) NAME,
2867 #define DEF_FUNCTION_TYPE_4(NAME, RETURN, ARG1, ARG2, ARG3, ARG4) NAME,
2868 #define DEF_FUNCTION_TYPE_VAR_0(NAME, RETURN) NAME,
2869 #define DEF_FUNCTION_TYPE_VAR_1(NAME, RETURN, ARG1) NAME,
2870 #define DEF_FUNCTION_TYPE_VAR_2(NAME, RETURN, ARG1, ARG2) NAME,
2871 #define DEF_POINTER_TYPE(NAME, TYPE) NAME,
2872 #include "builtin-types.def"
2873 #undef DEF_PRIMITIVE_TYPE
2874 #undef DEF_FUNCTION_TYPE_0
2875 #undef DEF_FUNCTION_TYPE_1
2876 #undef DEF_FUNCTION_TYPE_2
2877 #undef DEF_FUNCTION_TYPE_3
2878 #undef DEF_FUNCTION_TYPE_4
2879 #undef DEF_FUNCTION_TYPE_VAR_0
2880 #undef DEF_FUNCTION_TYPE_VAR_1
2881 #undef DEF_FUNCTION_TYPE_VAR_2
2882 #undef DEF_POINTER_TYPE
2886 typedef enum builtin_type builtin_type
;
2888 tree builtin_types
[(int)BT_LAST
];
2889 int wchar_type_size
;
2890 tree array_domain_type
;
2891 /* Either char* or void*. */
2892 tree traditional_ptr_type_node
;
2893 /* Either const char* or const void*. */
2894 tree traditional_cptr_type_node
;
2895 tree traditional_len_type_node
;
2896 tree va_list_ref_type_node
;
2897 tree va_list_arg_type_node
;
2899 /* Define `int' and `char' first so that dbx will output them first. */
2900 record_builtin_type (RID_INT
, NULL
, integer_type_node
);
2901 record_builtin_type (RID_CHAR
, "char", char_type_node
);
2903 /* `signed' is the same as `int'. FIXME: the declarations of "signed",
2904 "unsigned long", "long long unsigned" and "unsigned short" were in C++
2905 but not C. Are the conditionals here needed? */
2906 if (c_language
== clk_cplusplus
)
2907 record_builtin_type (RID_SIGNED
, NULL
, integer_type_node
);
2908 record_builtin_type (RID_LONG
, "long int", long_integer_type_node
);
2909 record_builtin_type (RID_UNSIGNED
, "unsigned int", unsigned_type_node
);
2910 record_builtin_type (RID_MAX
, "long unsigned int",
2911 long_unsigned_type_node
);
2912 if (c_language
== clk_cplusplus
)
2913 record_builtin_type (RID_MAX
, "unsigned long", long_unsigned_type_node
);
2914 record_builtin_type (RID_MAX
, "long long int",
2915 long_long_integer_type_node
);
2916 record_builtin_type (RID_MAX
, "long long unsigned int",
2917 long_long_unsigned_type_node
);
2918 if (c_language
== clk_cplusplus
)
2919 record_builtin_type (RID_MAX
, "long long unsigned",
2920 long_long_unsigned_type_node
);
2921 record_builtin_type (RID_SHORT
, "short int", short_integer_type_node
);
2922 record_builtin_type (RID_MAX
, "short unsigned int",
2923 short_unsigned_type_node
);
2924 if (c_language
== clk_cplusplus
)
2925 record_builtin_type (RID_MAX
, "unsigned short",
2926 short_unsigned_type_node
);
2928 /* Define both `signed char' and `unsigned char'. */
2929 record_builtin_type (RID_MAX
, "signed char", signed_char_type_node
);
2930 record_builtin_type (RID_MAX
, "unsigned char", unsigned_char_type_node
);
2932 /* These are types that type_for_size and type_for_mode use. */
2933 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, intQI_type_node
));
2934 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, intHI_type_node
));
2935 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, intSI_type_node
));
2936 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, intDI_type_node
));
2937 #if HOST_BITS_PER_WIDE_INT >= 64
2938 pushdecl (build_decl (TYPE_DECL
, get_identifier ("__int128_t"), intTI_type_node
));
2940 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, unsigned_intQI_type_node
));
2941 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, unsigned_intHI_type_node
));
2942 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, unsigned_intSI_type_node
));
2943 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
, unsigned_intDI_type_node
));
2944 #if HOST_BITS_PER_WIDE_INT >= 64
2945 pushdecl (build_decl (TYPE_DECL
, get_identifier ("__uint128_t"), unsigned_intTI_type_node
));
2948 /* Create the widest literal types. */
2949 widest_integer_literal_type_node
2950 = make_signed_type (HOST_BITS_PER_WIDE_INT
* 2);
2951 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
,
2952 widest_integer_literal_type_node
));
2954 widest_unsigned_literal_type_node
2955 = make_unsigned_type (HOST_BITS_PER_WIDE_INT
* 2);
2956 pushdecl (build_decl (TYPE_DECL
, NULL_TREE
,
2957 widest_unsigned_literal_type_node
));
2959 /* `unsigned long' is the standard type for sizeof.
2960 Note that stddef.h uses `unsigned long',
2961 and this must agree, even if long and int are the same size. */
2963 TREE_TYPE (identifier_global_value (get_identifier (SIZE_TYPE
)));
2964 signed_size_type_node
= signed_type (c_size_type_node
);
2965 if (flag_traditional
)
2966 c_size_type_node
= signed_size_type_node
;
2967 set_sizetype (c_size_type_node
);
2969 build_common_tree_nodes_2 (flag_short_double
);
2971 record_builtin_type (RID_FLOAT
, NULL
, float_type_node
);
2972 record_builtin_type (RID_DOUBLE
, NULL
, double_type_node
);
2973 record_builtin_type (RID_MAX
, "long double", long_double_type_node
);
2975 pushdecl (build_decl (TYPE_DECL
, get_identifier ("complex int"),
2976 complex_integer_type_node
));
2977 pushdecl (build_decl (TYPE_DECL
, get_identifier ("complex float"),
2978 complex_float_type_node
));
2979 pushdecl (build_decl (TYPE_DECL
, get_identifier ("complex double"),
2980 complex_double_type_node
));
2981 pushdecl (build_decl (TYPE_DECL
, get_identifier ("complex long double"),
2982 complex_long_double_type_node
));
2984 record_builtin_type (RID_VOID
, NULL
, void_type_node
);
2986 void_zero_node
= build_int_2 (0, 0);
2987 TREE_TYPE (void_zero_node
) = void_type_node
;
2989 void_list_node
= build_void_list_node ();
2991 /* Make a type to be the domain of a few array types
2992 whose domains don't really matter.
2993 200 is small enough that it always fits in size_t
2994 and large enough that it can hold most function names for the
2995 initializations of __FUNCTION__ and __PRETTY_FUNCTION__. */
2996 array_domain_type
= build_index_type (size_int (200));
2998 /* Make a type for arrays of characters.
2999 With luck nothing will ever really depend on the length of this
3001 char_array_type_node
3002 = build_array_type (char_type_node
, array_domain_type
);
3004 /* Likewise for arrays of ints. */
3006 = build_array_type (integer_type_node
, array_domain_type
);
3008 string_type_node
= build_pointer_type (char_type_node
);
3009 const_string_type_node
3010 = build_pointer_type (build_qualified_type
3011 (char_type_node
, TYPE_QUAL_CONST
));
3013 traditional_ptr_type_node
= ((flag_traditional
&&
3014 c_language
!= clk_cplusplus
)
3015 ? string_type_node
: ptr_type_node
);
3016 traditional_cptr_type_node
= ((flag_traditional
&&
3017 c_language
!= clk_cplusplus
)
3018 ? const_string_type_node
: const_ptr_type_node
);
3020 (*targetm
.init_builtins
) ();
3022 /* This is special for C++ so functions can be overloaded. */
3023 wchar_type_node
= get_identifier (flag_short_wchar
3024 ? "short unsigned int"
3026 wchar_type_node
= TREE_TYPE (identifier_global_value (wchar_type_node
));
3027 wchar_type_size
= TYPE_PRECISION (wchar_type_node
);
3028 if (c_language
== clk_cplusplus
)
3030 if (TREE_UNSIGNED (wchar_type_node
))
3031 wchar_type_node
= make_unsigned_type (wchar_type_size
);
3033 wchar_type_node
= make_signed_type (wchar_type_size
);
3034 record_builtin_type (RID_WCHAR
, "wchar_t", wchar_type_node
);
3038 signed_wchar_type_node
= signed_type (wchar_type_node
);
3039 unsigned_wchar_type_node
= unsigned_type (wchar_type_node
);
3042 /* This is for wide string constants. */
3043 wchar_array_type_node
3044 = build_array_type (wchar_type_node
, array_domain_type
);
3047 TREE_TYPE (identifier_global_value (get_identifier (WINT_TYPE
)));
3050 TREE_TYPE (identifier_global_value (get_identifier (INTMAX_TYPE
)));
3052 TREE_TYPE (identifier_global_value (get_identifier (UINTMAX_TYPE
)));
3054 default_function_type
= build_function_type (integer_type_node
, NULL_TREE
);
3056 = TREE_TYPE (identifier_global_value (get_identifier (PTRDIFF_TYPE
)));
3057 unsigned_ptrdiff_type_node
= unsigned_type (ptrdiff_type_node
);
3059 pushdecl (build_decl (TYPE_DECL
, get_identifier ("__builtin_va_list"),
3060 va_list_type_node
));
3062 pushdecl (build_decl (TYPE_DECL
, get_identifier ("__builtin_ptrdiff_t"),
3063 ptrdiff_type_node
));
3065 pushdecl (build_decl (TYPE_DECL
, get_identifier ("__builtin_size_t"),
3068 if (TREE_CODE (va_list_type_node
) == ARRAY_TYPE
)
3070 va_list_arg_type_node
= va_list_ref_type_node
=
3071 build_pointer_type (TREE_TYPE (va_list_type_node
));
3075 va_list_arg_type_node
= va_list_type_node
;
3076 va_list_ref_type_node
= build_reference_type (va_list_type_node
);
3079 traditional_len_type_node
= ((flag_traditional
&&
3080 c_language
!= clk_cplusplus
)
3081 ? integer_type_node
: sizetype
);
3083 #define DEF_PRIMITIVE_TYPE(ENUM, VALUE) \
3084 builtin_types[(int) ENUM] = VALUE;
3085 #define DEF_FUNCTION_TYPE_0(ENUM, RETURN) \
3086 builtin_types[(int) ENUM] \
3087 = build_function_type (builtin_types[(int) RETURN], \
3089 #define DEF_FUNCTION_TYPE_1(ENUM, RETURN, ARG1) \
3090 builtin_types[(int) ENUM] \
3091 = build_function_type (builtin_types[(int) RETURN], \
3092 tree_cons (NULL_TREE, \
3093 builtin_types[(int) ARG1], \
3095 #define DEF_FUNCTION_TYPE_2(ENUM, RETURN, ARG1, ARG2) \
3096 builtin_types[(int) ENUM] \
3097 = build_function_type \
3098 (builtin_types[(int) RETURN], \
3099 tree_cons (NULL_TREE, \
3100 builtin_types[(int) ARG1], \
3101 tree_cons (NULL_TREE, \
3102 builtin_types[(int) ARG2], \
3104 #define DEF_FUNCTION_TYPE_3(ENUM, RETURN, ARG1, ARG2, ARG3) \
3105 builtin_types[(int) ENUM] \
3106 = build_function_type \
3107 (builtin_types[(int) RETURN], \
3108 tree_cons (NULL_TREE, \
3109 builtin_types[(int) ARG1], \
3110 tree_cons (NULL_TREE, \
3111 builtin_types[(int) ARG2], \
3112 tree_cons (NULL_TREE, \
3113 builtin_types[(int) ARG3], \
3115 #define DEF_FUNCTION_TYPE_4(ENUM, RETURN, ARG1, ARG2, ARG3, ARG4) \
3116 builtin_types[(int) ENUM] \
3117 = build_function_type \
3118 (builtin_types[(int) RETURN], \
3119 tree_cons (NULL_TREE, \
3120 builtin_types[(int) ARG1], \
3121 tree_cons (NULL_TREE, \
3122 builtin_types[(int) ARG2], \
3125 builtin_types[(int) ARG3], \
3126 tree_cons (NULL_TREE, \
3127 builtin_types[(int) ARG4], \
3128 void_list_node)))));
3129 #define DEF_FUNCTION_TYPE_VAR_0(ENUM, RETURN) \
3130 builtin_types[(int) ENUM] \
3131 = build_function_type (builtin_types[(int) RETURN], NULL_TREE);
3132 #define DEF_FUNCTION_TYPE_VAR_1(ENUM, RETURN, ARG1) \
3133 builtin_types[(int) ENUM] \
3134 = build_function_type (builtin_types[(int) RETURN], \
3135 tree_cons (NULL_TREE, \
3136 builtin_types[(int) ARG1], \
3139 #define DEF_FUNCTION_TYPE_VAR_2(ENUM, RETURN, ARG1, ARG2) \
3140 builtin_types[(int) ENUM] \
3141 = build_function_type \
3142 (builtin_types[(int) RETURN], \
3143 tree_cons (NULL_TREE, \
3144 builtin_types[(int) ARG1], \
3145 tree_cons (NULL_TREE, \
3146 builtin_types[(int) ARG2], \
3148 #define DEF_POINTER_TYPE(ENUM, TYPE) \
3149 builtin_types[(int) ENUM] \
3150 = build_pointer_type (builtin_types[(int) TYPE]);
3151 #include "builtin-types.def"
3152 #undef DEF_PRIMITIVE_TYPE
3153 #undef DEF_FUNCTION_TYPE_1
3154 #undef DEF_FUNCTION_TYPE_2
3155 #undef DEF_FUNCTION_TYPE_3
3156 #undef DEF_FUNCTION_TYPE_4
3157 #undef DEF_FUNCTION_TYPE_VAR_0
3158 #undef DEF_FUNCTION_TYPE_VAR_1
3159 #undef DEF_POINTER_TYPE
3161 #define DEF_BUILTIN(ENUM, NAME, CLASS, \
3162 TYPE, LIBTYPE, BOTH_P, FALLBACK_P, NONANSI_P) \
3167 if (strncmp (NAME, "__builtin_", strlen ("__builtin_")) != 0) \
3171 decl = builtin_function (NAME, builtin_types[TYPE], ENUM, \
3174 ? (NAME + strlen ("__builtin_")) \
3177 decl = builtin_function_2 (NAME, \
3178 NAME + strlen ("__builtin_"), \
3179 builtin_types[TYPE], \
3180 builtin_types[LIBTYPE], \
3185 /*noreturn_p=*/0); \
3187 built_in_decls[(int) ENUM] = decl; \
3189 #include "builtins.def"
3192 /* Declare _exit and _Exit just to mark them as non-returning. */
3193 builtin_function_2 (NULL
, "_exit", NULL_TREE
,
3194 builtin_types
[BT_FN_VOID_INT
],
3195 0, NOT_BUILT_IN
, 0, 1, 1);
3196 builtin_function_2 (NULL
, "_Exit", NULL_TREE
,
3197 builtin_types
[BT_FN_VOID_INT
],
3198 0, NOT_BUILT_IN
, 0, !flag_isoc99
, 1);
3200 /* Declare these functions non-returning
3201 to avoid spurious "control drops through" warnings. */
3202 builtin_function_2 (NULL
, "abort",
3203 NULL_TREE
, ((c_language
== clk_cplusplus
)
3204 ? builtin_types
[BT_FN_VOID
]
3205 : builtin_types
[BT_FN_VOID_VAR
]),
3206 0, NOT_BUILT_IN
, 0, 0, 1);
3208 builtin_function_2 (NULL
, "exit",
3209 NULL_TREE
, ((c_language
== clk_cplusplus
)
3210 ? builtin_types
[BT_FN_VOID_INT
]
3211 : builtin_types
[BT_FN_VOID_VAR
]),
3212 0, NOT_BUILT_IN
, 0, 0, 1);
3214 main_identifier_node
= get_identifier ("main");
3216 /* ??? Perhaps there's a better place to do this. But it is related
3217 to __builtin_va_arg, so it isn't that off-the-wall. */
3218 lang_type_promotes_to
= simple_type_promotes_to
;
3222 build_va_arg (expr
, type
)
3225 return build1 (VA_ARG_EXPR
, type
, expr
);
3229 /* Possibly define a builtin function with one or two names. BUILTIN_NAME
3230 is an __builtin_-prefixed name; NAME is the ordinary name; one or both
3231 of these may be NULL (though both being NULL is useless).
3232 BUILTIN_TYPE is the type of the __builtin_-prefixed function;
3233 TYPE is the type of the function with the ordinary name. These
3234 may differ if the ordinary name is declared with a looser type to avoid
3235 conflicts with headers. FUNCTION_CODE and CLASS are as for
3236 builtin_function. If LIBRARY_NAME_P is nonzero, NAME is passed as
3237 the LIBRARY_NAME parameter to builtin_function when declaring BUILTIN_NAME.
3238 If NONANSI_P is nonzero, the name NAME is treated as a non-ANSI name; if
3239 NORETURN_P is nonzero, the function is marked as non-returning.
3240 Returns the declaration of BUILTIN_NAME, if any, otherwise
3241 the declaration of NAME. Does not declare NAME if flag_no_builtin,
3242 or if NONANSI_P and flag_no_nonansi_builtin. */
3245 builtin_function_2 (builtin_name
, name
, builtin_type
, type
, function_code
,
3246 class, library_name_p
, nonansi_p
, noreturn_p
)
3247 const char *builtin_name
;
3252 enum built_in_class
class;
3257 tree bdecl
= NULL_TREE
;
3258 tree decl
= NULL_TREE
;
3259 if (builtin_name
!= 0)
3261 bdecl
= builtin_function (builtin_name
, builtin_type
, function_code
,
3262 class, library_name_p
? name
: NULL
);
3265 TREE_THIS_VOLATILE (bdecl
) = 1;
3266 TREE_SIDE_EFFECTS (bdecl
) = 1;
3269 if (name
!= 0 && !flag_no_builtin
&& !(nonansi_p
&& flag_no_nonansi_builtin
))
3271 decl
= builtin_function (name
, type
, function_code
, class, NULL
);
3273 DECL_BUILT_IN_NONANSI (decl
) = 1;
3276 TREE_THIS_VOLATILE (decl
) = 1;
3277 TREE_SIDE_EFFECTS (decl
) = 1;
3280 return (bdecl
!= 0 ? bdecl
: decl
);
3283 /* Nonzero if the type T promotes to int. This is (nearly) the
3284 integral promotions defined in ISO C99 6.3.1.1/2. */
3287 c_promoting_integer_type_p (t
)
3290 switch (TREE_CODE (t
))
3293 return (TYPE_MAIN_VARIANT (t
) == char_type_node
3294 || TYPE_MAIN_VARIANT (t
) == signed_char_type_node
3295 || TYPE_MAIN_VARIANT (t
) == unsigned_char_type_node
3296 || TYPE_MAIN_VARIANT (t
) == short_integer_type_node
3297 || TYPE_MAIN_VARIANT (t
) == short_unsigned_type_node
);
3300 /* ??? Technically all enumerations not larger than an int
3301 promote to an int. But this is used along code paths
3302 that only want to notice a size change. */
3303 return TYPE_PRECISION (t
) < TYPE_PRECISION (integer_type_node
);
3313 /* Given a type, apply default promotions wrt unnamed function arguments
3314 and return the new type. Return NULL_TREE if no change. */
3315 /* ??? There is a function of the same name in the C++ front end that
3316 does something similar, but is more thorough and does not return NULL
3317 if no change. We could perhaps share code, but it would make the
3318 self_promoting_type property harder to identify. */
3321 simple_type_promotes_to (type
)
3324 if (TYPE_MAIN_VARIANT (type
) == float_type_node
)
3325 return double_type_node
;
3327 if (c_promoting_integer_type_p (type
))
3329 /* Traditionally, unsignedness is preserved in default promotions.
3330 Also preserve unsignedness if not really getting any wider. */
3331 if (TREE_UNSIGNED (type
)
3332 && (flag_traditional
3333 || TYPE_PRECISION (type
) == TYPE_PRECISION (integer_type_node
)))
3334 return unsigned_type_node
;
3335 return integer_type_node
;
3341 /* Return 1 if PARMS specifies a fixed number of parameters
3342 and none of their types is affected by default promotions. */
3345 self_promoting_args_p (parms
)
3349 for (t
= parms
; t
; t
= TREE_CHAIN (t
))
3351 register tree type
= TREE_VALUE (t
);
3353 if (TREE_CHAIN (t
) == 0 && type
!= void_type_node
)
3359 if (TYPE_MAIN_VARIANT (type
) == float_type_node
)
3362 if (c_promoting_integer_type_p (type
))
3368 /* Recursively examines the array elements of TYPE, until a non-array
3369 element type is found. */
3372 strip_array_types (type
)
3375 while (TREE_CODE (type
) == ARRAY_TYPE
)
3376 type
= TREE_TYPE (type
);
3381 /* Recognize certain built-in functions so we can make tree-codes
3382 other than CALL_EXPR. We do this when it enables fold-const.c
3383 to do something useful. */
3384 /* ??? By rights this should go in builtins.c, but only C and C++
3385 implement build_{binary,unary}_op. Not exactly sure what bits
3386 of functionality are actually needed from those functions, or
3387 where the similar functionality exists in the other front ends. */
3390 expand_tree_builtin (function
, params
, coerced_params
)
3391 tree function
, params
, coerced_params
;
3393 enum tree_code code
;
3395 if (DECL_BUILT_IN_CLASS (function
) != BUILT_IN_NORMAL
)
3398 switch (DECL_FUNCTION_CODE (function
))
3402 case BUILT_IN_LLABS
:
3403 case BUILT_IN_IMAXABS
:
3405 case BUILT_IN_FABSL
:
3406 case BUILT_IN_FABSF
:
3407 if (coerced_params
== 0)
3408 return integer_zero_node
;
3409 return build_unary_op (ABS_EXPR
, TREE_VALUE (coerced_params
), 0);
3412 case BUILT_IN_CONJF
:
3413 case BUILT_IN_CONJL
:
3414 if (coerced_params
== 0)
3415 return integer_zero_node
;
3416 return build_unary_op (CONJ_EXPR
, TREE_VALUE (coerced_params
), 0);
3418 case BUILT_IN_CREAL
:
3419 case BUILT_IN_CREALF
:
3420 case BUILT_IN_CREALL
:
3421 if (coerced_params
== 0)
3422 return integer_zero_node
;
3423 return build_unary_op (REALPART_EXPR
, TREE_VALUE (coerced_params
), 0);
3425 case BUILT_IN_CIMAG
:
3426 case BUILT_IN_CIMAGF
:
3427 case BUILT_IN_CIMAGL
:
3428 if (coerced_params
== 0)
3429 return integer_zero_node
;
3430 return build_unary_op (IMAGPART_EXPR
, TREE_VALUE (coerced_params
), 0);
3432 case BUILT_IN_ISGREATER
:
3433 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
)
3439 case BUILT_IN_ISGREATEREQUAL
:
3440 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
)
3446 case BUILT_IN_ISLESS
:
3447 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
)
3453 case BUILT_IN_ISLESSEQUAL
:
3454 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
)
3460 case BUILT_IN_ISLESSGREATER
:
3461 if (TARGET_FLOAT_FORMAT
== IEEE_FLOAT_FORMAT
)
3467 case BUILT_IN_ISUNORDERED
:
3468 if (TARGET_FLOAT_FORMAT
!= IEEE_FLOAT_FORMAT
)
3469 return integer_zero_node
;
3470 code
= UNORDERED_EXPR
;
3478 || TREE_CHAIN (params
) == 0)
3480 error ("too few arguments to function `%s'",
3481 IDENTIFIER_POINTER (DECL_NAME (function
)));
3482 return error_mark_node
;
3484 else if (TREE_CHAIN (TREE_CHAIN (params
)) != 0)
3486 error ("too many arguments to function `%s'",
3487 IDENTIFIER_POINTER (DECL_NAME (function
)));
3488 return error_mark_node
;
3491 arg0
= TREE_VALUE (params
);
3492 arg1
= TREE_VALUE (TREE_CHAIN (params
));
3493 arg0
= build_binary_op (code
, arg0
, arg1
, 0);
3494 if (code
!= UNORDERED_EXPR
)
3495 arg0
= build_unary_op (TRUTH_NOT_EXPR
, arg0
, 0);
3507 /* Returns non-zero if CODE is the code for a statement. */
3510 statement_code_p (code
)
3511 enum tree_code code
;
3534 if (lang_statement_code_p
)
3535 return (*lang_statement_code_p
) (code
);
3540 /* Walk the statement tree, rooted at *tp. Apply FUNC to all the
3541 sub-trees of *TP in a pre-order traversal. FUNC is called with the
3542 DATA and the address of each sub-tree. If FUNC returns a non-NULL
3543 value, the traversal is aborted, and the value returned by FUNC is
3544 returned. If FUNC sets WALK_SUBTREES to zero, then the subtrees of
3545 the node being visited are not walked.
3547 We don't need a without_duplicates variant of this one because the
3548 statement tree is a tree, not a graph. */
3551 walk_stmt_tree (tp
, func
, data
)
3556 enum tree_code code
;
3561 #define WALK_SUBTREE(NODE) \
3564 result = walk_stmt_tree (&(NODE), func, data); \
3570 /* Skip empty subtrees. */
3574 /* Skip subtrees below non-statement nodes. */
3575 if (!statement_code_p (TREE_CODE (*tp
)))
3578 /* Call the function. */
3580 result
= (*func
) (tp
, &walk_subtrees
, data
);
3582 /* If we found something, return it. */
3586 /* FUNC may have modified the tree, recheck that we're looking at a
3588 code
= TREE_CODE (*tp
);
3589 if (!statement_code_p (code
))
3592 /* Visit the subtrees unless FUNC decided that there was nothing
3593 interesting below this point in the tree. */
3596 /* Walk over all the sub-trees of this operand. Statement nodes
3597 never contain RTL, and we needn't worry about TARGET_EXPRs. */
3598 len
= TREE_CODE_LENGTH (code
);
3600 /* Go through the subtrees. We need to do this in forward order so
3601 that the scope of a FOR_EXPR is handled properly. */
3602 for (i
= 0; i
< len
; ++i
)
3603 WALK_SUBTREE (TREE_OPERAND (*tp
, i
));
3606 /* Finally visit the chain. This can be tail-recursion optimized if
3607 we write it this way. */
3608 return walk_stmt_tree (&TREE_CHAIN (*tp
), func
, data
);
3613 /* Used to compare case labels. K1 and K2 are actually tree nodes
3614 representing case labels, or NULL_TREE for a `default' label.
3615 Returns -1 if K1 is ordered before K2, -1 if K1 is ordered after
3616 K2, and 0 if K1 and K2 are equal. */
3619 case_compare (k1
, k2
)
3623 /* Consider a NULL key (such as arises with a `default' label) to be
3624 smaller than anything else. */
3630 return tree_int_cst_compare ((tree
) k1
, (tree
) k2
);
3633 /* Process a case label for the range LOW_VALUE ... HIGH_VALUE. If
3634 LOW_VALUE and HIGH_VALUE are both NULL_TREE then this case label is
3635 actually a `default' label. If only HIGH_VALUE is NULL_TREE, then
3636 case label was declared using the usual C/C++ syntax, rather than
3637 the GNU case range extension. CASES is a tree containing all the
3638 case ranges processed so far; COND is the condition for the
3639 switch-statement itself. Returns the CASE_LABEL created, or
3640 ERROR_MARK_NODE if no CASE_LABEL is created. */
3643 c_add_case_label (cases
, cond
, low_value
, high_value
)
3652 splay_tree_node node
;
3654 /* Create the LABEL_DECL itself. */
3655 label
= build_decl (LABEL_DECL
, NULL_TREE
, NULL_TREE
);
3656 DECL_CONTEXT (label
) = current_function_decl
;
3658 /* If there was an error processing the switch condition, bail now
3659 before we get more confused. */
3660 if (!cond
|| cond
== error_mark_node
)
3662 /* Add a label anyhow so that the back-end doesn't think that
3663 the beginning of the switch is unreachable. */
3665 add_stmt (build_case_label (NULL_TREE
, NULL_TREE
, label
));
3666 return error_mark_node
;
3669 if ((low_value
&& TREE_TYPE (low_value
)
3670 && POINTER_TYPE_P (TREE_TYPE (low_value
)))
3671 || (high_value
&& TREE_TYPE (high_value
)
3672 && POINTER_TYPE_P (TREE_TYPE (high_value
))))
3673 error ("pointers are not permitted as case values");
3675 /* Case ranges are a GNU extension. */
3676 if (high_value
&& pedantic
)
3678 if (c_language
== clk_cplusplus
)
3679 pedwarn ("ISO C++ forbids range expressions in switch statements");
3681 pedwarn ("ISO C forbids range expressions in switch statements");
3684 type
= TREE_TYPE (cond
);
3687 low_value
= check_case_value (low_value
);
3688 low_value
= convert_and_check (type
, low_value
);
3692 high_value
= check_case_value (high_value
);
3693 high_value
= convert_and_check (type
, high_value
);
3696 /* If an error has occurred, bail out now. */
3697 if (low_value
== error_mark_node
|| high_value
== error_mark_node
)
3700 add_stmt (build_case_label (NULL_TREE
, NULL_TREE
, label
));
3701 return error_mark_node
;
3704 /* If the LOW_VALUE and HIGH_VALUE are the same, then this isn't
3705 really a case range, even though it was written that way. Remove
3706 the HIGH_VALUE to simplify later processing. */
3707 if (tree_int_cst_equal (low_value
, high_value
))
3708 high_value
= NULL_TREE
;
3709 if (low_value
&& high_value
3710 && !tree_int_cst_lt (low_value
, high_value
))
3711 warning ("empty range specified");
3713 /* Look up the LOW_VALUE in the table of case labels we already
3715 node
= splay_tree_lookup (cases
, (splay_tree_key
) low_value
);
3716 /* If there was not an exact match, check for overlapping ranges.
3717 There's no need to do this if there's no LOW_VALUE or HIGH_VALUE;
3718 that's a `default' label and the only overlap is an exact match. */
3719 if (!node
&& (low_value
|| high_value
))
3721 splay_tree_node low_bound
;
3722 splay_tree_node high_bound
;
3724 /* Even though there wasn't an exact match, there might be an
3725 overlap between this case range and another case range.
3726 Since we've (inductively) not allowed any overlapping case
3727 ranges, we simply need to find the greatest low case label
3728 that is smaller that LOW_VALUE, and the smallest low case
3729 label that is greater than LOW_VALUE. If there is an overlap
3730 it will occur in one of these two ranges. */
3731 low_bound
= splay_tree_predecessor (cases
,
3732 (splay_tree_key
) low_value
);
3733 high_bound
= splay_tree_successor (cases
,
3734 (splay_tree_key
) low_value
);
3736 /* Check to see if the LOW_BOUND overlaps. It is smaller than
3737 the LOW_VALUE, so there is no need to check unless the
3738 LOW_BOUND is in fact itself a case range. */
3740 && CASE_HIGH ((tree
) low_bound
->value
)
3741 && tree_int_cst_compare (CASE_HIGH ((tree
) low_bound
->value
),
3744 /* Check to see if the HIGH_BOUND overlaps. The low end of that
3745 range is bigger than the low end of the current range, so we
3746 are only interested if the current range is a real range, and
3747 not an ordinary case label. */
3750 && (tree_int_cst_compare ((tree
) high_bound
->key
,
3755 /* If there was an overlap, issue an error. */
3758 tree duplicate
= CASE_LABEL_DECL ((tree
) node
->value
);
3762 error ("duplicate (or overlapping) case value");
3763 error_with_decl (duplicate
,
3764 "this is the first entry overlapping that value");
3768 error ("duplicate case value") ;
3769 error_with_decl (duplicate
, "previously used here");
3773 error ("multiple default labels in one switch");
3774 error_with_decl (duplicate
, "this is the first default label");
3777 add_stmt (build_case_label (NULL_TREE
, NULL_TREE
, label
));
3780 /* Add a CASE_LABEL to the statement-tree. */
3781 case_label
= add_stmt (build_case_label (low_value
, high_value
, label
));
3782 /* Register this case label in the splay tree. */
3783 splay_tree_insert (cases
,
3784 (splay_tree_key
) low_value
,
3785 (splay_tree_value
) case_label
);
3790 /* Finish an expression taking the address of LABEL. Returns an
3791 expression for the address. */
3794 finish_label_address_expr (label
)
3801 if (c_language
== clk_cplusplus
)
3802 pedwarn ("ISO C++ forbids taking the address of a label");
3804 pedwarn ("ISO C forbids taking the address of a label");
3807 label
= lookup_label (label
);
3808 if (label
== NULL_TREE
)
3809 result
= null_pointer_node
;
3812 TREE_USED (label
) = 1;
3813 result
= build1 (ADDR_EXPR
, ptr_type_node
, label
);
3814 TREE_CONSTANT (result
) = 1;
3815 /* The current function in not necessarily uninlinable.
3816 Computed gotos are incompatible with inlining, but the value
3817 here could be used only in a diagnostic, for example. */
3823 /* Mark P (a stmt_tree) for GC. The use of a `void *' for the
3824 parameter allows this function to be used as a GC-marking
3831 stmt_tree st
= (stmt_tree
) p
;
3833 ggc_mark_tree (st
->x_last_stmt
);
3834 ggc_mark_tree (st
->x_last_expr_type
);
3837 /* Mark LD for GC. */
3840 c_mark_lang_decl (c
)
3841 struct c_lang_decl
*c
;
3843 ggc_mark_tree (c
->saved_tree
);
3846 /* Mark F for GC. */
3849 mark_c_language_function (f
)
3850 struct language_function
*f
;
3855 mark_stmt_tree (&f
->x_stmt_tree
);
3856 ggc_mark_tree (f
->x_scope_stmt_stack
);
3859 /* Hook used by expand_expr to expand language-specific tree codes. */
3862 c_expand_expr (exp
, target
, tmode
, modifier
)
3865 enum machine_mode tmode
;
3866 enum expand_modifier modifier
;
3868 switch (TREE_CODE (exp
))
3875 /* Since expand_expr_stmt calls free_temp_slots after every
3876 expression statement, we must call push_temp_slots here.
3877 Otherwise, any temporaries in use now would be considered
3878 out-of-scope after the first EXPR_STMT from within the
3881 rtl_expr
= expand_start_stmt_expr ();
3882 expand_stmt (STMT_EXPR_STMT (exp
));
3883 expand_end_stmt_expr (rtl_expr
);
3884 result
= expand_expr (rtl_expr
, target
, tmode
, modifier
);
3892 if (TREE_CODE (TREE_OPERAND (exp
, 0)) == ADDR_EXPR
3893 && (TREE_CODE (TREE_OPERAND (TREE_OPERAND (exp
, 0), 0))
3895 && DECL_BUILT_IN (TREE_OPERAND (TREE_OPERAND (exp
, 0), 0))
3896 && (DECL_BUILT_IN_CLASS (TREE_OPERAND (TREE_OPERAND (exp
, 0), 0))
3897 == BUILT_IN_FRONTEND
))
3898 return c_expand_builtin (exp
, target
, tmode
, modifier
);
3912 /* Hook used by safe_from_p to handle language-specific tree codes. */
3915 c_safe_from_p (target
, exp
)
3919 /* We can see statements here when processing the body of a
3920 statement-expression. For a declaration statement declaring a
3921 variable, look at the variable's initializer. */
3922 if (TREE_CODE (exp
) == DECL_STMT
)
3924 tree decl
= DECL_STMT_DECL (exp
);
3926 if (TREE_CODE (decl
) == VAR_DECL
3927 && DECL_INITIAL (decl
)
3928 && !safe_from_p (target
, DECL_INITIAL (decl
), /*top_p=*/0))
3932 /* For any statement, we must follow the statement-chain. */
3933 if (statement_code_p (TREE_CODE (exp
)) && TREE_CHAIN (exp
))
3934 return safe_from_p (target
, TREE_CHAIN (exp
), /*top_p=*/0);
3936 /* Assume everything else is safe. */
3940 /* Hook used by unsafe_for_reeval to handle language-specific tree codes. */
3943 c_unsafe_for_reeval (exp
)
3946 /* Statement expressions may not be reevaluated. */
3947 if (TREE_CODE (exp
) == STMT_EXPR
)
3950 /* Walk all other expressions. */
3954 /* Tree code classes. */
3956 #define DEFTREECODE(SYM, NAME, TYPE, LENGTH) TYPE,
3958 static char c_tree_code_type
[] = {
3960 #include "c-common.def"
3964 /* Table indexed by tree code giving number of expression
3965 operands beyond the fixed part of the node structure.
3966 Not used for types or decls. */
3968 #define DEFTREECODE(SYM, NAME, TYPE, LENGTH) LENGTH,
3970 static int c_tree_code_length
[] = {
3972 #include "c-common.def"
3976 /* Names of tree components.
3977 Used for printing out the tree and error messages. */
3978 #define DEFTREECODE(SYM, NAME, TYPE, LEN) NAME,
3980 static const char *c_tree_code_name
[] = {
3982 #include "c-common.def"
3986 /* Adds the tree codes specific to the C front end to the list of all
3992 memcpy (tree_code_type
+ (int) LAST_AND_UNUSED_TREE_CODE
,
3994 (int)LAST_C_TREE_CODE
- (int)LAST_AND_UNUSED_TREE_CODE
);
3995 memcpy (tree_code_length
+ (int) LAST_AND_UNUSED_TREE_CODE
,
3997 (LAST_C_TREE_CODE
- (int)LAST_AND_UNUSED_TREE_CODE
) * sizeof (int));
3998 memcpy (tree_code_name
+ (int) LAST_AND_UNUSED_TREE_CODE
,
4000 (LAST_C_TREE_CODE
- (int)LAST_AND_UNUSED_TREE_CODE
) * sizeof (char *));
4001 lang_unsafe_for_reeval
= c_unsafe_for_reeval
;
4004 #define CALLED_AS_BUILT_IN(NODE) \
4005 (!strncmp (IDENTIFIER_POINTER (DECL_NAME (NODE)), "__builtin_", 10))
4008 c_expand_builtin (exp
, target
, tmode
, modifier
)
4011 enum machine_mode tmode
;
4012 enum expand_modifier modifier
;
4014 tree type
= TREE_TYPE (exp
);
4015 tree fndecl
= TREE_OPERAND (TREE_OPERAND (exp
, 0), 0);
4016 tree arglist
= TREE_OPERAND (exp
, 1);
4017 enum built_in_function fcode
= DECL_FUNCTION_CODE (fndecl
);
4018 enum tree_code code
= TREE_CODE (exp
);
4019 const int ignore
= (target
== const0_rtx
4020 || ((code
== NON_LVALUE_EXPR
|| code
== NOP_EXPR
4021 || code
== CONVERT_EXPR
|| code
== REFERENCE_EXPR
4022 || code
== COND_EXPR
)
4023 && TREE_CODE (type
) == VOID_TYPE
));
4025 if (! optimize
&& ! CALLED_AS_BUILT_IN (fndecl
))
4026 return expand_call (exp
, target
, ignore
);
4030 case BUILT_IN_PRINTF
:
4031 target
= c_expand_builtin_printf (arglist
, target
, tmode
,
4037 case BUILT_IN_FPRINTF
:
4038 target
= c_expand_builtin_fprintf (arglist
, target
, tmode
,
4044 default: /* just do library call, if unknown builtin */
4045 error ("built-in function `%s' not currently supported",
4046 IDENTIFIER_POINTER (DECL_NAME (fndecl
)));
4049 /* The switch statement above can drop through to cause the function
4050 to be called normally. */
4051 return expand_call (exp
, target
, ignore
);
4054 /* Check an arglist to *printf for problems. The arglist should start
4055 at the format specifier, with the remaining arguments immediately
4058 is_valid_printf_arglist (arglist
)
4061 /* Save this value so we can restore it later. */
4062 const int SAVE_pedantic
= pedantic
;
4063 int diagnostic_occurred
= 0;
4065 /* Set this to a known value so the user setting won't affect code
4068 /* Check to make sure there are no format specifier errors. */
4069 check_function_format (&diagnostic_occurred
,
4070 maybe_get_identifier("printf"),
4071 NULL_TREE
, arglist
);
4073 /* Restore the value of `pedantic'. */
4074 pedantic
= SAVE_pedantic
;
4076 /* If calling `check_function_format_ptr' produces a warning, we
4077 return false, otherwise we return true. */
4078 return ! diagnostic_occurred
;
4081 /* If the arguments passed to printf are suitable for optimizations,
4082 we attempt to transform the call. */
4084 c_expand_builtin_printf (arglist
, target
, tmode
, modifier
, ignore
)
4087 enum machine_mode tmode
;
4088 enum expand_modifier modifier
;
4091 tree fn_putchar
= built_in_decls
[BUILT_IN_PUTCHAR
],
4092 fn_puts
= built_in_decls
[BUILT_IN_PUTS
];
4093 tree fn
, format_arg
, stripped_string
;
4095 /* If the return value is used, or the replacement _DECL isn't
4096 initialized, don't do the transformation. */
4097 if (!ignore
|| !fn_putchar
|| !fn_puts
)
4100 /* Verify the required arguments in the original call. */
4102 || (TREE_CODE (TREE_TYPE (TREE_VALUE (arglist
))) != POINTER_TYPE
))
4105 /* Check the specifier vs. the parameters. */
4106 if (!is_valid_printf_arglist (arglist
))
4109 format_arg
= TREE_VALUE (arglist
);
4110 stripped_string
= format_arg
;
4111 STRIP_NOPS (stripped_string
);
4112 if (stripped_string
&& TREE_CODE (stripped_string
) == ADDR_EXPR
)
4113 stripped_string
= TREE_OPERAND (stripped_string
, 0);
4115 /* If the format specifier isn't a STRING_CST, punt. */
4116 if (TREE_CODE (stripped_string
) != STRING_CST
)
4119 /* OK! We can attempt optimization. */
4121 /* If the format specifier was "%s\n", call __builtin_puts(arg2). */
4122 if (strcmp (TREE_STRING_POINTER (stripped_string
), "%s\n") == 0)
4124 arglist
= TREE_CHAIN (arglist
);
4127 /* If the format specifier was "%c", call __builtin_putchar (arg2). */
4128 else if (strcmp (TREE_STRING_POINTER (stripped_string
), "%c") == 0)
4130 arglist
= TREE_CHAIN (arglist
);
4135 /* We can't handle anything else with % args or %% ... yet. */
4136 if (strchr (TREE_STRING_POINTER (stripped_string
), '%'))
4139 /* If the resulting constant string has a length of 1, call
4140 putchar. Note, TREE_STRING_LENGTH includes the terminating
4141 NULL in its count. */
4142 if (TREE_STRING_LENGTH (stripped_string
) == 2)
4144 /* Given printf("c"), (where c is any one character,)
4145 convert "c"[0] to an int and pass that to the replacement
4147 arglist
= build_int_2 (TREE_STRING_POINTER (stripped_string
)[0], 0);
4148 arglist
= build_tree_list (NULL_TREE
, arglist
);
4152 /* If the resulting constant was "string\n", call
4153 __builtin_puts("string"). Ensure "string" has at least one
4154 character besides the trailing \n. Note, TREE_STRING_LENGTH
4155 includes the terminating NULL in its count. */
4156 else if (TREE_STRING_LENGTH (stripped_string
) > 2
4157 && TREE_STRING_POINTER (stripped_string
)
4158 [TREE_STRING_LENGTH (stripped_string
) - 2] == '\n')
4160 /* Create a NULL-terminated string that's one char shorter
4161 than the original, stripping off the trailing '\n'. */
4162 const int newlen
= TREE_STRING_LENGTH (stripped_string
) - 1;
4163 char *newstr
= (char *) alloca (newlen
);
4164 memcpy (newstr
, TREE_STRING_POINTER (stripped_string
), newlen
- 1);
4165 newstr
[newlen
- 1] = 0;
4167 arglist
= combine_strings (build_string (newlen
, newstr
));
4168 arglist
= build_tree_list (NULL_TREE
, arglist
);
4172 /* We'd like to arrange to call fputs(string) here, but we
4173 need stdout and don't have a way to get it ... yet. */
4177 return expand_expr (build_function_call (fn
, arglist
),
4178 (ignore
? const0_rtx
: target
),
4182 /* If the arguments passed to fprintf are suitable for optimizations,
4183 we attempt to transform the call. */
4185 c_expand_builtin_fprintf (arglist
, target
, tmode
, modifier
, ignore
)
4188 enum machine_mode tmode
;
4189 enum expand_modifier modifier
;
4192 tree fn_fputc
= built_in_decls
[BUILT_IN_FPUTC
],
4193 fn_fputs
= built_in_decls
[BUILT_IN_FPUTS
];
4194 tree fn
, format_arg
, stripped_string
;
4196 /* If the return value is used, or the replacement _DECL isn't
4197 initialized, don't do the transformation. */
4198 if (!ignore
|| !fn_fputc
|| !fn_fputs
)
4201 /* Verify the required arguments in the original call. */
4203 || (TREE_CODE (TREE_TYPE (TREE_VALUE (arglist
))) != POINTER_TYPE
)
4204 || (TREE_CHAIN (arglist
) == 0)
4205 || (TREE_CODE (TREE_TYPE (TREE_VALUE (TREE_CHAIN (arglist
)))) !=
4209 /* Check the specifier vs. the parameters. */
4210 if (!is_valid_printf_arglist (TREE_CHAIN (arglist
)))
4213 format_arg
= TREE_VALUE (TREE_CHAIN (arglist
));
4214 stripped_string
= format_arg
;
4215 STRIP_NOPS (stripped_string
);
4216 if (stripped_string
&& TREE_CODE (stripped_string
) == ADDR_EXPR
)
4217 stripped_string
= TREE_OPERAND (stripped_string
, 0);
4219 /* If the format specifier isn't a STRING_CST, punt. */
4220 if (TREE_CODE (stripped_string
) != STRING_CST
)
4223 /* OK! We can attempt optimization. */
4225 /* If the format specifier was "%s", call __builtin_fputs(arg3, arg1). */
4226 if (strcmp (TREE_STRING_POINTER (stripped_string
), "%s") == 0)
4228 tree newarglist
= build_tree_list (NULL_TREE
, TREE_VALUE (arglist
));
4229 arglist
= tree_cons (NULL_TREE
,
4230 TREE_VALUE (TREE_CHAIN (TREE_CHAIN (arglist
))),
4234 /* If the format specifier was "%c", call __builtin_fputc (arg3, arg1). */
4235 else if (strcmp (TREE_STRING_POINTER (stripped_string
), "%c") == 0)
4237 tree newarglist
= build_tree_list (NULL_TREE
, TREE_VALUE (arglist
));
4238 arglist
= tree_cons (NULL_TREE
,
4239 TREE_VALUE (TREE_CHAIN (TREE_CHAIN (arglist
))),
4245 /* We can't handle anything else with % args or %% ... yet. */
4246 if (strchr (TREE_STRING_POINTER (stripped_string
), '%'))
4249 /* When "string" doesn't contain %, replace all cases of
4250 fprintf(stream,string) with fputs(string,stream). The fputs
4251 builtin will take take of special cases like length==1. */
4252 arglist
= tree_cons (NULL_TREE
, TREE_VALUE (TREE_CHAIN (arglist
)),
4253 build_tree_list (NULL_TREE
, TREE_VALUE (arglist
)));
4257 return expand_expr (build_function_call (fn
, arglist
),
4258 (ignore
? const0_rtx
: target
),
4263 /* Given a boolean expression ARG, return a tree representing an increment
4264 or decrement (as indicated by CODE) of ARG. The front end must check for
4265 invalid cases (e.g., decrement in C++). */
4267 boolean_increment (code
, arg
)
4268 enum tree_code code
;
4272 tree true_res
= (c_language
== clk_cplusplus
4274 : c_bool_true_node
);
4275 arg
= stabilize_reference (arg
);
4278 case PREINCREMENT_EXPR
:
4279 val
= build (MODIFY_EXPR
, TREE_TYPE (arg
), arg
, true_res
);
4281 case POSTINCREMENT_EXPR
:
4282 val
= build (MODIFY_EXPR
, TREE_TYPE (arg
), arg
, true_res
);
4283 arg
= save_expr (arg
);
4284 val
= build (COMPOUND_EXPR
, TREE_TYPE (arg
), val
, arg
);
4285 val
= build (COMPOUND_EXPR
, TREE_TYPE (arg
), arg
, val
);
4287 case PREDECREMENT_EXPR
:
4288 val
= build (MODIFY_EXPR
, TREE_TYPE (arg
), arg
, invert_truthvalue (arg
));
4290 case POSTDECREMENT_EXPR
:
4291 val
= build (MODIFY_EXPR
, TREE_TYPE (arg
), arg
, invert_truthvalue (arg
));
4292 arg
= save_expr (arg
);
4293 val
= build (COMPOUND_EXPR
, TREE_TYPE (arg
), val
, arg
);
4294 val
= build (COMPOUND_EXPR
, TREE_TYPE (arg
), arg
, val
);
4299 TREE_SIDE_EFFECTS (val
) = 1;
4304 /* Do the parts of lang_init common to C and C++. */
4306 c_common_lang_init ()
4308 /* If still "unspecified", make it match -fbounded-pointers. */
4309 if (flag_bounds_check
< 0)
4310 flag_bounds_check
= flag_bounded_pointers
;
4312 /* Special format checking options don't work without -Wformat; warn if
4314 if (warn_format_y2k
&& !warn_format
)
4315 warning ("-Wformat-y2k ignored without -Wformat");
4316 if (warn_format_extra_args
&& !warn_format
)
4317 warning ("-Wformat-extra-args ignored without -Wformat");
4318 if (warn_format_nonliteral
&& !warn_format
)
4319 warning ("-Wformat-nonliteral ignored without -Wformat");
4320 if (warn_format_security
&& !warn_format
)
4321 warning ("-Wformat-security ignored without -Wformat");
4322 if (warn_missing_format_attribute
&& !warn_format
)
4323 warning ("-Wmissing-format-attribute ignored without -Wformat");