(high_{block,function}_linenum): New variables.
[official-gcc.git] / gcc / cccp.c
blob4171f4b36b04580a57a59f98db2e8759fd5eb562
1 /* C Compatible Compiler Preprocessor (CCCP)
2 Copyright (C) 1986, 87, 89, 92, 93, 94, 1995 Free Software Foundation, Inc.
3 Written by Paul Rubin, June 1986
4 Adapted to ANSI C, Richard Stallman, Jan 1987
6 This program is free software; you can redistribute it and/or modify it
7 under the terms of the GNU General Public License as published by the
8 Free Software Foundation; either version 2, or (at your option) any
9 later version.
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
20 In other words, you are welcome to use, share and improve this program.
21 You are forbidden to forbid anyone else to use, share and improve
22 what you give them. Help stamp out software-hoarding! */
24 typedef unsigned char U_CHAR;
26 #ifdef EMACS
27 #define NO_SHORTNAMES
28 #include "../src/config.h"
29 #ifdef open
30 #undef open
31 #undef read
32 #undef write
33 #endif /* open */
34 #endif /* EMACS */
36 /* The macro EMACS is defined when cpp is distributed as part of Emacs,
37 for the sake of machines with limited C compilers. */
38 #ifndef EMACS
39 #include "config.h"
40 #endif /* not EMACS */
42 #ifndef STANDARD_INCLUDE_DIR
43 #define STANDARD_INCLUDE_DIR "/usr/include"
44 #endif
46 #ifndef LOCAL_INCLUDE_DIR
47 #define LOCAL_INCLUDE_DIR "/usr/local/include"
48 #endif
50 #if 0 /* We can't get ptrdiff_t, so I arranged not to need PTR_INT_TYPE. */
51 #ifdef __STDC__
52 #define PTR_INT_TYPE ptrdiff_t
53 #else
54 #define PTR_INT_TYPE long
55 #endif
56 #endif /* 0 */
58 #include "pcp.h"
60 #ifndef STDC_VALUE
61 #define STDC_VALUE 1
62 #endif
64 /* By default, colon separates directories in a path. */
65 #ifndef PATH_SEPARATOR
66 #define PATH_SEPARATOR ':'
67 #endif
69 /* In case config.h defines these. */
70 #undef bcopy
71 #undef bzero
72 #undef bcmp
74 #include <sys/types.h>
75 #include <sys/stat.h>
76 #include <ctype.h>
77 #include <stdio.h>
78 #include <signal.h>
80 #ifndef VMS
81 #ifndef USG
82 #include <sys/time.h> /* for __DATE__ and __TIME__ */
83 #include <sys/resource.h>
84 #else
85 #include <time.h>
86 #include <fcntl.h>
87 #endif /* USG */
88 #endif /* not VMS */
90 /* This defines "errno" properly for VMS, and gives us EACCES. */
91 #include <errno.h>
93 /* VMS-specific definitions */
94 #ifdef VMS
95 #include <time.h>
96 #include <descrip.h>
97 #define O_RDONLY 0 /* Open arg for Read/Only */
98 #define O_WRONLY 1 /* Open arg for Write/Only */
99 #define read(fd,buf,size) VMS_read (fd,buf,size)
100 #define write(fd,buf,size) VMS_write (fd,buf,size)
101 #define open(fname,mode,prot) VMS_open (fname,mode,prot)
102 #define fopen(fname,mode) VMS_fopen (fname,mode)
103 #define freopen(fname,mode,ofile) VMS_freopen (fname,mode,ofile)
104 #define strncat(dst,src,cnt) VMS_strncat (dst,src,cnt)
105 static char * VMS_strncat ();
106 static int VMS_read ();
107 static int VMS_write ();
108 static int VMS_open ();
109 static FILE * VMS_fopen ();
110 static FILE * VMS_freopen ();
111 static void hack_vms_include_specification ();
112 typedef struct { unsigned :16, :16, :16; } vms_ino_t;
113 #define ino_t vms_ino_t
114 #define INCLUDE_LEN_FUDGE 10 /* leave room for VMS syntax conversion */
115 #ifdef __GNUC__
116 #define BSTRING /* VMS/GCC supplies the bstring routines */
117 #endif /* __GNUC__ */
118 #endif /* VMS */
120 extern char *index ();
121 extern char *rindex ();
123 #ifndef O_RDONLY
124 #define O_RDONLY 0
125 #endif
127 #undef MIN
128 #undef MAX
129 #define MIN(X,Y) ((X) < (Y) ? (X) : (Y))
130 #define MAX(X,Y) ((X) > (Y) ? (X) : (Y))
132 /* Find the largest host integer type and set its size and type. */
134 #ifndef HOST_BITS_PER_WIDE_INT
136 #if HOST_BITS_PER_LONG > HOST_BITS_PER_INT
137 #define HOST_BITS_PER_WIDE_INT HOST_BITS_PER_LONG
138 #define HOST_WIDE_INT long
139 #else
140 #define HOST_BITS_PER_WIDE_INT HOST_BITS_PER_INT
141 #define HOST_WIDE_INT int
142 #endif
144 #endif
146 #ifndef S_ISREG
147 #define S_ISREG(m) (((m) & S_IFMT) == S_IFREG)
148 #endif
150 #ifndef S_ISDIR
151 #define S_ISDIR(m) (((m) & S_IFMT) == S_IFDIR)
152 #endif
154 /* Define a generic NULL if one hasn't already been defined. */
156 #ifndef NULL
157 #define NULL 0
158 #endif
160 #ifndef GENERIC_PTR
161 #if defined (USE_PROTOTYPES) ? USE_PROTOTYPES : defined (__STDC__)
162 #define GENERIC_PTR void *
163 #else
164 #define GENERIC_PTR char *
165 #endif
166 #endif
168 #ifndef NULL_PTR
169 #define NULL_PTR ((GENERIC_PTR)0)
170 #endif
172 #ifndef INCLUDE_LEN_FUDGE
173 #define INCLUDE_LEN_FUDGE 0
174 #endif
176 /* Forward declarations. */
178 char *xmalloc ();
179 void error ();
180 void warning ();
182 /* External declarations. */
184 extern char *getenv ();
185 extern FILE *fdopen ();
186 extern char *version_string;
187 extern struct tm *localtime ();
188 #ifndef VMS
189 #ifndef HAVE_STRERROR
190 extern int sys_nerr;
191 #if defined(bsd4_4) || defined(__NetBSD__)
192 extern const char *const sys_errlist[];
193 #else
194 extern char *sys_errlist[];
195 #endif
196 #else /* HAVE_STERRROR */
197 char *strerror ();
198 #endif
199 #else /* VMS */
200 char *strerror (int,...);
201 #endif
202 extern int parse_escape ();
203 extern HOST_WIDE_INT parse_c_expression ();
205 #ifndef errno
206 extern int errno;
207 #endif
209 /* Forward declarations. */
211 struct directive;
212 struct file_buf;
213 struct arglist;
214 struct argdata;
216 #if defined(USG) || defined(VMS)
217 #ifndef BSTRING
218 void bcopy ();
219 void bzero ();
220 int bcmp ();
221 #endif
222 #endif
224 /* These functions are declared to return int instead of void since they
225 are going to be placed in a table and some old compilers have trouble with
226 pointers to functions returning void. */
228 static int do_define ();
229 static int do_line ();
230 static int do_include ();
231 static int do_undef ();
232 static int do_error ();
233 static int do_pragma ();
234 static int do_ident ();
235 static int do_if ();
236 static int do_xifdef ();
237 static int do_else ();
238 static int do_elif ();
239 static int do_endif ();
240 static int do_sccs ();
241 static int do_once ();
242 static int do_assert ();
243 static int do_unassert ();
244 static int do_warning ();
246 static void add_import ();
247 static void append_include_chain ();
248 static void deps_output ();
249 static void make_undef ();
250 static void make_definition ();
251 static void make_assertion ();
252 static void path_include ();
253 static void initialize_builtins ();
254 static void initialize_char_syntax ();
255 static void dump_arg_n ();
256 static void dump_defn_1 ();
257 static void delete_macro ();
258 static void trigraph_pcp ();
259 static void rescan ();
260 static void finclude ();
261 static void validate_else ();
262 static int comp_def_part ();
263 static void error_from_errno ();
264 static void error_with_line ();
265 void pedwarn ();
266 void pedwarn_with_line ();
267 static void pedwarn_with_file_and_line ();
268 static void fatal ();
269 void fancy_abort ();
270 static void pfatal_with_name ();
271 static void perror_with_name ();
272 static void pipe_closed ();
273 static void print_containing_files ();
274 static int lookup_import ();
275 static int redundant_include_p ();
276 static is_system_include ();
277 static struct file_name_map *read_name_map ();
278 static char *read_filename_string ();
279 static int open_include_file ();
280 static int check_preconditions ();
281 static void pcfinclude ();
282 static void pcstring_used ();
283 static void write_output ();
284 static int check_macro_name ();
285 static int compare_defs ();
286 static int compare_token_lists ();
287 static HOST_WIDE_INT eval_if_expression ();
288 static int discard_comments ();
289 static int change_newlines ();
290 static int line_for_error ();
291 static int hashf ();
292 static int file_size_and_mode ();
294 static struct arglist *read_token_list ();
295 static void free_token_list ();
297 static struct hashnode *install ();
298 struct hashnode *lookup ();
300 static struct assertion_hashnode *assertion_install ();
301 static struct assertion_hashnode *assertion_lookup ();
303 static char *xrealloc ();
304 static char *xcalloc ();
305 static char *savestring ();
307 static void delete_assertion ();
308 static void macroexpand ();
309 static void dump_all_macros ();
310 static void conditional_skip ();
311 static void skip_if_group ();
312 static void output_line_command ();
314 /* Last arg to output_line_command. */
315 enum file_change_code {same_file, enter_file, leave_file};
317 static int grow_outbuf ();
318 static int handle_directive ();
319 static void memory_full ();
321 static U_CHAR *macarg1 ();
322 static char *macarg ();
324 static U_CHAR *skip_to_end_of_comment ();
325 static U_CHAR *skip_quoted_string ();
326 static U_CHAR *skip_paren_group ();
327 static char *quote_string ();
329 static char *check_precompiled ();
330 /* static struct macrodef create_definition (); [moved below] */
331 static void dump_single_macro ();
332 static void output_dots ();
334 #ifndef FAILURE_EXIT_CODE
335 #define FAILURE_EXIT_CODE 33 /* gnu cc command understands this */
336 #endif
338 #ifndef SUCCESS_EXIT_CODE
339 #define SUCCESS_EXIT_CODE 0 /* 0 means success on Unix. */
340 #endif
342 /* Name under which this program was invoked. */
344 static char *progname;
346 /* Nonzero means use extra default include directories for C++. */
348 static int cplusplus;
350 /* Nonzero means handle cplusplus style comments */
352 static int cplusplus_comments;
354 /* Nonzero means handle #import, for objective C. */
356 static int objc;
358 /* Nonzero means this is an assembly file, and allow
359 unknown directives, which could be comments. */
361 static int lang_asm;
363 /* Current maximum length of directory names in the search path
364 for include files. (Altered as we get more of them.) */
366 static int max_include_len;
368 /* Nonzero means turn NOTREACHED into #pragma NOTREACHED etc */
370 static int for_lint = 0;
372 /* Nonzero means copy comments into the output file. */
374 static int put_out_comments = 0;
376 /* Nonzero means don't process the ANSI trigraph sequences. */
378 static int no_trigraphs = 0;
380 /* Nonzero means print the names of included files rather than
381 the preprocessed output. 1 means just the #include "...",
382 2 means #include <...> as well. */
384 static int print_deps = 0;
386 /* Nonzero if missing .h files in -M output are assumed to be generated
387 files and not errors. */
389 static int print_deps_missing_files = 0;
391 /* Nonzero means print names of header files (-H). */
393 static int print_include_names = 0;
395 /* Nonzero means don't output line number information. */
397 static int no_line_commands;
399 /* Nonzero means output the text in failing conditionals,
400 inside #failed ... #endfailed. */
402 static int output_conditionals;
404 /* dump_only means inhibit output of the preprocessed text
405 and instead output the definitions of all user-defined
406 macros in a form suitable for use as input to cccp.
407 dump_names means pass #define and the macro name through to output.
408 dump_definitions means pass the whole definition (plus #define) through
411 static enum {dump_none, dump_only, dump_names, dump_definitions}
412 dump_macros = dump_none;
414 /* Nonzero means pass all #define and #undef directives which we actually
415 process through to the output stream. This feature is used primarily
416 to allow cc1 to record the #defines and #undefs for the sake of
417 debuggers which understand about preprocessor macros, but it may
418 also be useful with -E to figure out how symbols are defined, and
419 where they are defined. */
420 static int debug_output = 0;
422 /* Nonzero indicates special processing used by the pcp program. The
423 special effects of this mode are:
425 Inhibit all macro expansion, except those inside #if directives.
427 Process #define directives normally, and output their contents
428 to the output file.
430 Output preconditions to pcp_outfile indicating all the relevant
431 preconditions for use of this file in a later cpp run.
433 static FILE *pcp_outfile;
435 /* Nonzero means we are inside an IF during a -pcp run. In this mode
436 macro expansion is done, and preconditions are output for all macro
437 uses requiring them. */
438 static int pcp_inside_if;
440 /* Nonzero means never to include precompiled files.
441 This is 1 since there's no way now to make precompiled files,
442 so it's not worth testing for them. */
443 static int no_precomp = 1;
445 /* Nonzero means give all the error messages the ANSI standard requires. */
447 int pedantic;
449 /* Nonzero means try to make failure to fit ANSI C an error. */
451 static int pedantic_errors;
453 /* Nonzero means don't print warning messages. -w. */
455 static int inhibit_warnings = 0;
457 /* Nonzero means warn if slash-star appears in a comment. */
459 static int warn_comments;
461 /* Nonzero means warn if a macro argument is (or would be)
462 stringified with -traditional. */
464 static int warn_stringify;
466 /* Nonzero means warn if there are any trigraphs. */
468 static int warn_trigraphs;
470 /* Nonzero means warn if #import is used. */
472 static int warn_import = 1;
474 /* Nonzero means turn warnings into errors. */
476 static int warnings_are_errors;
478 /* Nonzero means try to imitate old fashioned non-ANSI preprocessor. */
480 int traditional;
482 /* Nonzero causes output not to be done,
483 but directives such as #define that have side effects
484 are still obeyed. */
486 static int no_output;
488 /* Nonzero means this file was included with a -imacros or -include
489 command line and should not be recorded as an include file. */
491 static int no_record_file;
493 /* Nonzero means that we have finished processing the command line options.
494 This flag is used to decide whether or not to issue certain errors
495 and/or warnings. */
497 static int done_initializing = 0;
499 /* Line where a newline was first seen in a string constant. */
501 static int multiline_string_line = 0;
503 /* I/O buffer structure.
504 The `fname' field is nonzero for source files and #include files
505 and for the dummy text used for -D and -U.
506 It is zero for rescanning results of macro expansion
507 and for expanding macro arguments. */
508 #define INPUT_STACK_MAX 400
509 static struct file_buf {
510 char *fname;
511 /* Filename specified with #line command. */
512 char *nominal_fname;
513 /* Record where in the search path this file was found.
514 For #include_next. */
515 struct file_name_list *dir;
516 int lineno;
517 int length;
518 U_CHAR *buf;
519 U_CHAR *bufp;
520 /* Macro that this level is the expansion of.
521 Included so that we can reenable the macro
522 at the end of this level. */
523 struct hashnode *macro;
524 /* Value of if_stack at start of this file.
525 Used to prohibit unmatched #endif (etc) in an include file. */
526 struct if_stack *if_stack;
527 /* Object to be freed at end of input at this level. */
528 U_CHAR *free_ptr;
529 /* True if this is a header file included using <FILENAME>. */
530 char system_header_p;
531 } instack[INPUT_STACK_MAX];
533 static int last_error_tick; /* Incremented each time we print it. */
534 static int input_file_stack_tick; /* Incremented when the status changes. */
536 /* Current nesting level of input sources.
537 `instack[indepth]' is the level currently being read. */
538 static int indepth = -1;
539 #define CHECK_DEPTH(code) \
540 if (indepth >= (INPUT_STACK_MAX - 1)) \
542 error_with_line (line_for_error (instack[indepth].lineno), \
543 "macro or `#include' recursion too deep"); \
544 code; \
547 /* Current depth in #include directives that use <...>. */
548 static int system_include_depth = 0;
550 typedef struct file_buf FILE_BUF;
552 /* The output buffer. Its LENGTH field is the amount of room allocated
553 for the buffer, not the number of chars actually present. To get
554 that, subtract outbuf.buf from outbuf.bufp. */
556 #define OUTBUF_SIZE 10 /* initial size of output buffer */
557 static FILE_BUF outbuf;
559 /* Grow output buffer OBUF points at
560 so it can hold at least NEEDED more chars. */
562 #define check_expand(OBUF, NEEDED) \
563 (((OBUF)->length - ((OBUF)->bufp - (OBUF)->buf) <= (NEEDED)) \
564 ? grow_outbuf ((OBUF), (NEEDED)) : 0)
566 struct file_name_list
568 struct file_name_list *next;
569 char *fname;
570 /* If the following is nonzero, it is a macro name.
571 Don't include the file again if that macro is defined. */
572 U_CHAR *control_macro;
573 /* If the following is nonzero, it is a C-language system include
574 directory. */
575 int c_system_include_path;
576 /* Mapping of file names for this directory. */
577 struct file_name_map *name_map;
578 /* Non-zero if name_map is valid. */
579 int got_name_map;
582 /* #include "file" looks in source file dir, then stack. */
583 /* #include <file> just looks in the stack. */
584 /* -I directories are added to the end, then the defaults are added. */
585 /* The */
586 static struct default_include {
587 char *fname; /* The name of the directory. */
588 int cplusplus; /* Only look here if we're compiling C++. */
589 int cxx_aware; /* Includes in this directory don't need to
590 be wrapped in extern "C" when compiling
591 C++. */
592 } include_defaults_array[]
593 #ifdef INCLUDE_DEFAULTS
594 = INCLUDE_DEFAULTS;
595 #else
597 /* Pick up GNU C++ specific include files. */
598 { GPLUSPLUS_INCLUDE_DIR, 1, 1 },
599 #ifdef CROSS_COMPILE
600 /* This is the dir for fixincludes. Put it just before
601 the files that we fix. */
602 { GCC_INCLUDE_DIR, 0, 0 },
603 /* For cross-compilation, this dir name is generated
604 automatically in Makefile.in. */
605 { CROSS_INCLUDE_DIR, 0, 0 },
606 /* This is another place that the target system's headers might be. */
607 { TOOL_INCLUDE_DIR, 0, 0 },
608 #else /* not CROSS_COMPILE */
609 /* This should be /usr/local/include and should come before
610 the fixincludes-fixed header files. */
611 { LOCAL_INCLUDE_DIR, 0, 1 },
612 /* This is here ahead of GCC_INCLUDE_DIR because assert.h goes here.
613 Likewise, behind LOCAL_INCLUDE_DIR, where glibc puts its assert.h. */
614 { TOOL_INCLUDE_DIR, 0, 0 },
615 /* This is the dir for fixincludes. Put it just before
616 the files that we fix. */
617 { GCC_INCLUDE_DIR, 0, 0 },
618 /* Some systems have an extra dir of include files. */
619 #ifdef SYSTEM_INCLUDE_DIR
620 { SYSTEM_INCLUDE_DIR, 0, 0 },
621 #endif
622 { STANDARD_INCLUDE_DIR, 0, 0 },
623 #endif /* not CROSS_COMPILE */
624 { 0, 0, 0 }
626 #endif /* no INCLUDE_DEFAULTS */
628 /* The code looks at the defaults through this pointer, rather than through
629 the constant structure above. This pointer gets changed if an environment
630 variable specifies other defaults. */
631 static struct default_include *include_defaults = include_defaults_array;
633 static struct file_name_list *include = 0; /* First dir to search */
634 /* First dir to search for <file> */
635 /* This is the first element to use for #include <...>.
636 If it is 0, use the entire chain for such includes. */
637 static struct file_name_list *first_bracket_include = 0;
638 /* This is the first element in the chain that corresponds to
639 a directory of system header files. */
640 static struct file_name_list *first_system_include = 0;
641 static struct file_name_list *last_include = 0; /* Last in chain */
643 /* Chain of include directories to put at the end of the other chain. */
644 static struct file_name_list *after_include = 0;
645 static struct file_name_list *last_after_include = 0; /* Last in chain */
647 /* Chain to put at the start of the system include files. */
648 static struct file_name_list *before_system = 0;
649 static struct file_name_list *last_before_system = 0; /* Last in chain */
651 /* List of included files that contained #pragma once. */
652 static struct file_name_list *dont_repeat_files = 0;
654 /* List of other included files.
655 If ->control_macro if nonzero, the file had a #ifndef
656 around the entire contents, and ->control_macro gives the macro name. */
657 static struct file_name_list *all_include_files = 0;
659 /* Directory prefix that should replace `/usr' in the standard
660 include file directories. */
661 static char *include_prefix;
663 /* Global list of strings read in from precompiled files. This list
664 is kept in the order the strings are read in, with new strings being
665 added at the end through stringlist_tailp. We use this list to output
666 the strings at the end of the run.
668 static STRINGDEF *stringlist;
669 static STRINGDEF **stringlist_tailp = &stringlist;
672 /* Structure returned by create_definition */
673 typedef struct macrodef MACRODEF;
674 struct macrodef
676 struct definition *defn;
677 U_CHAR *symnam;
678 int symlen;
681 static struct macrodef create_definition ();
684 /* Structure allocated for every #define. For a simple replacement
685 such as
686 #define foo bar ,
687 nargs = -1, the `pattern' list is null, and the expansion is just
688 the replacement text. Nargs = 0 means a functionlike macro with no args,
689 e.g.,
690 #define getchar() getc (stdin) .
691 When there are args, the expansion is the replacement text with the
692 args squashed out, and the reflist is a list describing how to
693 build the output from the input: e.g., "3 chars, then the 1st arg,
694 then 9 chars, then the 3rd arg, then 0 chars, then the 2nd arg".
695 The chars here come from the expansion. Whatever is left of the
696 expansion after the last arg-occurrence is copied after that arg.
697 Note that the reflist can be arbitrarily long---
698 its length depends on the number of times the arguments appear in
699 the replacement text, not how many args there are. Example:
700 #define f(x) x+x+x+x+x+x+x would have replacement text "++++++" and
701 pattern list
702 { (0, 1), (1, 1), (1, 1), ..., (1, 1), NULL }
703 where (x, y) means (nchars, argno). */
705 typedef struct definition DEFINITION;
706 struct definition {
707 int nargs;
708 int length; /* length of expansion string */
709 int predefined; /* True if the macro was builtin or */
710 /* came from the command line */
711 U_CHAR *expansion;
712 int line; /* Line number of definition */
713 char *file; /* File of definition */
714 char rest_args; /* Nonzero if last arg. absorbs the rest */
715 struct reflist {
716 struct reflist *next;
717 char stringify; /* nonzero if this arg was preceded by a
718 # operator. */
719 char raw_before; /* Nonzero if a ## operator before arg. */
720 char raw_after; /* Nonzero if a ## operator after arg. */
721 char rest_args; /* Nonzero if this arg. absorbs the rest */
722 int nchars; /* Number of literal chars to copy before
723 this arg occurrence. */
724 int argno; /* Number of arg to substitute (origin-0) */
725 } *pattern;
726 union {
727 /* Names of macro args, concatenated in reverse order
728 with comma-space between them.
729 The only use of this is that we warn on redefinition
730 if this differs between the old and new definitions. */
731 U_CHAR *argnames;
732 } args;
735 /* different kinds of things that can appear in the value field
736 of a hash node. Actually, this may be useless now. */
737 union hashval {
738 int ival;
739 char *cpval;
740 DEFINITION *defn;
741 KEYDEF *keydef;
745 * special extension string that can be added to the last macro argument to
746 * allow it to absorb the "rest" of the arguments when expanded. Ex:
747 * #define wow(a, b...) process (b, a, b)
748 * { wow (1, 2, 3); } -> { process (2, 3, 1, 2, 3); }
749 * { wow (one, two); } -> { process (two, one, two); }
750 * if this "rest_arg" is used with the concat token '##' and if it is not
751 * supplied then the token attached to with ## will not be outputted. Ex:
752 * #define wow (a, b...) process (b ## , a, ## b)
753 * { wow (1, 2); } -> { process (2, 1, 2); }
754 * { wow (one); } -> { process (one); {
756 static char rest_extension[] = "...";
757 #define REST_EXTENSION_LENGTH (sizeof (rest_extension) - 1)
759 /* The structure of a node in the hash table. The hash table
760 has entries for all tokens defined by #define commands (type T_MACRO),
761 plus some special tokens like __LINE__ (these each have their own
762 type, and the appropriate code is run when that type of node is seen.
763 It does not contain control words like "#define", which are recognized
764 by a separate piece of code. */
766 /* different flavors of hash nodes --- also used in keyword table */
767 enum node_type {
768 T_DEFINE = 1, /* the `#define' keyword */
769 T_INCLUDE, /* the `#include' keyword */
770 T_INCLUDE_NEXT, /* the `#include_next' keyword */
771 T_IMPORT, /* the `#import' keyword */
772 T_IFDEF, /* the `#ifdef' keyword */
773 T_IFNDEF, /* the `#ifndef' keyword */
774 T_IF, /* the `#if' keyword */
775 T_ELSE, /* `#else' */
776 T_PRAGMA, /* `#pragma' */
777 T_ELIF, /* `#elif' */
778 T_UNDEF, /* `#undef' */
779 T_LINE, /* `#line' */
780 T_ERROR, /* `#error' */
781 T_WARNING, /* `#warning' */
782 T_ENDIF, /* `#endif' */
783 T_SCCS, /* `#sccs', used on system V. */
784 T_IDENT, /* `#ident', used on system V. */
785 T_ASSERT, /* `#assert', taken from system V. */
786 T_UNASSERT, /* `#unassert', taken from system V. */
787 T_SPECLINE, /* special symbol `__LINE__' */
788 T_DATE, /* `__DATE__' */
789 T_FILE, /* `__FILE__' */
790 T_BASE_FILE, /* `__BASE_FILE__' */
791 T_INCLUDE_LEVEL, /* `__INCLUDE_LEVEL__' */
792 T_VERSION, /* `__VERSION__' */
793 T_SIZE_TYPE, /* `__SIZE_TYPE__' */
794 T_PTRDIFF_TYPE, /* `__PTRDIFF_TYPE__' */
795 T_WCHAR_TYPE, /* `__WCHAR_TYPE__' */
796 T_USER_LABEL_PREFIX_TYPE, /* `__USER_LABEL_PREFIX__' */
797 T_REGISTER_PREFIX_TYPE, /* `__REGISTER_PREFIX__' */
798 T_TIME, /* `__TIME__' */
799 T_CONST, /* Constant value, used by `__STDC__' */
800 T_MACRO, /* macro defined by `#define' */
801 T_DISABLED, /* macro temporarily turned off for rescan */
802 T_SPEC_DEFINED, /* special `defined' macro for use in #if statements */
803 T_PCSTRING, /* precompiled string (hashval is KEYDEF *) */
804 T_UNUSED /* Used for something not defined. */
807 struct hashnode {
808 struct hashnode *next; /* double links for easy deletion */
809 struct hashnode *prev;
810 struct hashnode **bucket_hdr; /* also, a back pointer to this node's hash
811 chain is kept, in case the node is the head
812 of the chain and gets deleted. */
813 enum node_type type; /* type of special token */
814 int length; /* length of token, for quick comparison */
815 U_CHAR *name; /* the actual name */
816 union hashval value; /* pointer to expansion, or whatever */
819 typedef struct hashnode HASHNODE;
821 /* Some definitions for the hash table. The hash function MUST be
822 computed as shown in hashf () below. That is because the rescan
823 loop computes the hash value `on the fly' for most tokens,
824 in order to avoid the overhead of a lot of procedure calls to
825 the hashf () function. Hashf () only exists for the sake of
826 politeness, for use when speed isn't so important. */
828 #define HASHSIZE 1403
829 static HASHNODE *hashtab[HASHSIZE];
830 #define HASHSTEP(old, c) ((old << 2) + c)
831 #define MAKE_POS(v) (v & 0x7fffffff) /* make number positive */
833 /* Symbols to predefine. */
835 #ifdef CPP_PREDEFINES
836 static char *predefs = CPP_PREDEFINES;
837 #else
838 static char *predefs = "";
839 #endif
841 /* We let tm.h override the types used here, to handle trivial differences
842 such as the choice of unsigned int or long unsigned int for size_t.
843 When machines start needing nontrivial differences in the size type,
844 it would be best to do something here to figure out automatically
845 from other information what type to use. */
847 /* The string value for __SIZE_TYPE__. */
849 #ifndef SIZE_TYPE
850 #define SIZE_TYPE "long unsigned int"
851 #endif
853 /* The string value for __PTRDIFF_TYPE__. */
855 #ifndef PTRDIFF_TYPE
856 #define PTRDIFF_TYPE "long int"
857 #endif
859 /* The string value for __WCHAR_TYPE__. */
861 #ifndef WCHAR_TYPE
862 #define WCHAR_TYPE "int"
863 #endif
864 char * wchar_type = WCHAR_TYPE;
865 #undef WCHAR_TYPE
867 /* The string value for __USER_LABEL_PREFIX__ */
869 #ifndef USER_LABEL_PREFIX
870 #define USER_LABEL_PREFIX ""
871 #endif
873 /* The string value for __REGISTER_PREFIX__ */
875 #ifndef REGISTER_PREFIX
876 #define REGISTER_PREFIX ""
877 #endif
879 /* In the definition of a #assert name, this structure forms
880 a list of the individual values asserted.
881 Each value is itself a list of "tokens".
882 These are strings that are compared by name. */
884 struct tokenlist_list {
885 struct tokenlist_list *next;
886 struct arglist *tokens;
889 struct assertion_hashnode {
890 struct assertion_hashnode *next; /* double links for easy deletion */
891 struct assertion_hashnode *prev;
892 /* also, a back pointer to this node's hash
893 chain is kept, in case the node is the head
894 of the chain and gets deleted. */
895 struct assertion_hashnode **bucket_hdr;
896 int length; /* length of token, for quick comparison */
897 U_CHAR *name; /* the actual name */
898 /* List of token-sequences. */
899 struct tokenlist_list *value;
902 typedef struct assertion_hashnode ASSERTION_HASHNODE;
904 /* Some definitions for the hash table. The hash function MUST be
905 computed as shown in hashf below. That is because the rescan
906 loop computes the hash value `on the fly' for most tokens,
907 in order to avoid the overhead of a lot of procedure calls to
908 the hashf function. hashf only exists for the sake of
909 politeness, for use when speed isn't so important. */
911 #define ASSERTION_HASHSIZE 37
912 static ASSERTION_HASHNODE *assertion_hashtab[ASSERTION_HASHSIZE];
914 /* Nonzero means inhibit macroexpansion of what seem to be
915 assertion tests, in rescan. For #if. */
916 static int assertions_flag;
918 /* `struct directive' defines one #-directive, including how to handle it. */
920 struct directive {
921 int length; /* Length of name */
922 int (*func)(); /* Function to handle directive */
923 char *name; /* Name of directive */
924 enum node_type type; /* Code which describes which directive. */
925 char angle_brackets; /* Nonzero => <...> is special. */
926 char traditional_comments; /* Nonzero: keep comments if -traditional. */
927 char pass_thru; /* Copy preprocessed directive to output file. */
930 /* Here is the actual list of #-directives, most-often-used first. */
932 static struct directive directive_table[] = {
933 { 6, do_define, "define", T_DEFINE, 0, 1},
934 { 2, do_if, "if", T_IF},
935 { 5, do_xifdef, "ifdef", T_IFDEF},
936 { 6, do_xifdef, "ifndef", T_IFNDEF},
937 { 5, do_endif, "endif", T_ENDIF},
938 { 4, do_else, "else", T_ELSE},
939 { 4, do_elif, "elif", T_ELIF},
940 { 4, do_line, "line", T_LINE},
941 { 7, do_include, "include", T_INCLUDE, 1},
942 { 12, do_include, "include_next", T_INCLUDE_NEXT, 1},
943 { 6, do_include, "import", T_IMPORT, 1},
944 { 5, do_undef, "undef", T_UNDEF},
945 { 5, do_error, "error", T_ERROR},
946 { 7, do_warning, "warning", T_WARNING},
947 #ifdef SCCS_DIRECTIVE
948 { 4, do_sccs, "sccs", T_SCCS},
949 #endif
950 { 6, do_pragma, "pragma", T_PRAGMA, 0, 0, 1},
951 { 5, do_ident, "ident", T_IDENT},
952 { 6, do_assert, "assert", T_ASSERT},
953 { 8, do_unassert, "unassert", T_UNASSERT},
954 { -1, 0, "", T_UNUSED},
957 /* When a directive handler is called,
958 this points to the # that started the directive. */
959 U_CHAR *directive_start;
961 /* table to tell if char can be part of a C identifier. */
962 U_CHAR is_idchar[256];
963 /* table to tell if char can be first char of a c identifier. */
964 U_CHAR is_idstart[256];
965 /* table to tell if c is horizontal space. */
966 U_CHAR is_hor_space[256];
967 /* table to tell if c is horizontal or vertical space. */
968 static U_CHAR is_space[256];
969 /* names of some characters */
970 static char *char_name[256];
972 #define SKIP_WHITE_SPACE(p) do { while (is_hor_space[*p]) p++; } while (0)
973 #define SKIP_ALL_WHITE_SPACE(p) do { while (is_space[*p]) p++; } while (0)
975 static int errors = 0; /* Error counter for exit code */
977 /* Name of output file, for error messages. */
978 static char *out_fname;
980 /* Zero means dollar signs are punctuation.
981 -$ stores 0; -traditional may store 1. Default is 1 for VMS, 0 otherwise.
982 This must be 0 for correct processing of this ANSI C program:
983 #define foo(a) #a
984 #define lose(b) foo (b)
985 #define test$
986 lose (test) */
987 static int dollars_in_ident;
988 #ifndef DOLLARS_IN_IDENTIFIERS
989 #define DOLLARS_IN_IDENTIFIERS 1
990 #endif
992 static FILE_BUF expand_to_temp_buffer ();
994 static DEFINITION *collect_expansion ();
996 /* Stack of conditionals currently in progress
997 (including both successful and failing conditionals). */
999 struct if_stack {
1000 struct if_stack *next; /* for chaining to the next stack frame */
1001 char *fname; /* copied from input when frame is made */
1002 int lineno; /* similarly */
1003 int if_succeeded; /* true if a leg of this if-group
1004 has been passed through rescan */
1005 U_CHAR *control_macro; /* For #ifndef at start of file,
1006 this is the macro name tested. */
1007 enum node_type type; /* type of last directive seen in this group */
1009 typedef struct if_stack IF_STACK_FRAME;
1010 static IF_STACK_FRAME *if_stack = NULL;
1012 /* Buffer of -M output. */
1013 static char *deps_buffer;
1015 /* Number of bytes allocated in above. */
1016 static int deps_allocated_size;
1018 /* Number of bytes used. */
1019 static int deps_size;
1021 /* Number of bytes since the last newline. */
1022 static int deps_column;
1024 /* Nonzero means -I- has been seen,
1025 so don't look for #include "foo" the source-file directory. */
1026 static int ignore_srcdir;
1028 /* Read LEN bytes at PTR from descriptor DESC, for file FILENAME,
1029 retrying if necessary. Return a negative value if an error occurs,
1030 otherwise return the actual number of bytes read,
1031 which must be LEN unless end-of-file was reached. */
1033 static int
1034 safe_read (desc, ptr, len)
1035 int desc;
1036 char *ptr;
1037 int len;
1039 int left = len;
1040 while (left > 0) {
1041 int nchars = read (desc, ptr, left);
1042 if (nchars < 0)
1044 #ifdef EINTR
1045 if (errno == EINTR)
1046 continue;
1047 #endif
1048 return nchars;
1050 if (nchars == 0)
1051 break;
1052 ptr += nchars;
1053 left -= nchars;
1055 return len - left;
1058 /* Write LEN bytes at PTR to descriptor DESC,
1059 retrying if necessary, and treating any real error as fatal. */
1061 static void
1062 safe_write (desc, ptr, len)
1063 int desc;
1064 char *ptr;
1065 int len;
1067 while (len > 0) {
1068 int written = write (desc, ptr, len);
1069 if (written < 0)
1071 #ifdef EINTR
1072 if (errno == EINTR)
1073 continue;
1074 #endif
1075 pfatal_with_name (out_fname);
1077 ptr += written;
1078 len -= written;
1083 main (argc, argv)
1084 int argc;
1085 char **argv;
1087 int st_mode;
1088 long st_size;
1089 char *in_fname;
1090 char *p;
1091 int f, i;
1092 FILE_BUF *fp;
1093 char **pend_files = (char **) xmalloc (argc * sizeof (char *));
1094 char **pend_defs = (char **) xmalloc (argc * sizeof (char *));
1095 char **pend_undefs = (char **) xmalloc (argc * sizeof (char *));
1096 char **pend_assertions = (char **) xmalloc (argc * sizeof (char *));
1097 char **pend_includes = (char **) xmalloc (argc * sizeof (char *));
1099 /* Record the option used with each element of pend_assertions.
1100 This is preparation for supporting more than one option for making
1101 an assertion. */
1102 char **pend_assertion_options = (char **) xmalloc (argc * sizeof (char *));
1103 int inhibit_predefs = 0;
1104 int no_standard_includes = 0;
1105 int no_standard_cplusplus_includes = 0;
1106 int missing_newline = 0;
1108 /* Non-0 means don't output the preprocessed program. */
1109 int inhibit_output = 0;
1110 /* Non-0 means -v, so print the full set of include dirs. */
1111 int verbose = 0;
1113 /* File name which deps are being written to.
1114 This is 0 if deps are being written to stdout. */
1115 char *deps_file = 0;
1116 /* Fopen file mode to open deps_file with. */
1117 char *deps_mode = "a";
1118 /* Stream on which to print the dependency information. */
1119 FILE *deps_stream = 0;
1120 /* Target-name to write with the dependency information. */
1121 char *deps_target = 0;
1123 #ifdef RLIMIT_STACK
1124 /* Get rid of any avoidable limit on stack size. */
1126 struct rlimit rlim;
1128 /* Set the stack limit huge so that alloca (particularly stringtab
1129 * in dbxread.c) does not fail. */
1130 getrlimit (RLIMIT_STACK, &rlim);
1131 rlim.rlim_cur = rlim.rlim_max;
1132 setrlimit (RLIMIT_STACK, &rlim);
1134 #endif /* RLIMIT_STACK defined */
1136 #ifdef SIGPIPE
1137 signal (SIGPIPE, pipe_closed);
1138 #endif
1140 p = argv[0] + strlen (argv[0]);
1141 while (p != argv[0] && p[-1] != '/'
1142 #ifdef DIR_SEPARATOR
1143 && p[-1] != DIR_SEPARATOR
1144 #endif
1146 --p;
1147 progname = p;
1149 #ifdef VMS
1151 /* Remove directories from PROGNAME. */
1152 char *s = progname;
1154 if ((p = rindex (s, ':')) != 0) s = p + 1; /* skip device */
1155 if ((p = rindex (s, ']')) != 0) s = p + 1; /* skip directory */
1156 if ((p = rindex (s, '>')) != 0) s = p + 1; /* alternate (int'n'l) dir */
1157 s = progname = savestring (s);
1158 if ((p = rindex (s, ';')) != 0) *p = '\0'; /* strip version number */
1159 if ((p = rindex (s, '.')) != 0 /* strip type iff ".exe" */
1160 && (p[1] == 'e' || p[1] == 'E')
1161 && (p[2] == 'x' || p[2] == 'X')
1162 && (p[3] == 'e' || p[3] == 'E')
1163 && !p[4])
1164 *p = '\0';
1166 #endif
1168 in_fname = NULL;
1169 out_fname = NULL;
1171 /* Initialize is_idchar to allow $. */
1172 dollars_in_ident = 1;
1173 initialize_char_syntax ();
1174 dollars_in_ident = DOLLARS_IN_IDENTIFIERS > 0;
1176 no_line_commands = 0;
1177 no_trigraphs = 1;
1178 dump_macros = dump_none;
1179 no_output = 0;
1180 cplusplus = 0;
1181 cplusplus_comments = 0;
1183 bzero ((char *) pend_files, argc * sizeof (char *));
1184 bzero ((char *) pend_defs, argc * sizeof (char *));
1185 bzero ((char *) pend_undefs, argc * sizeof (char *));
1186 bzero ((char *) pend_assertions, argc * sizeof (char *));
1187 bzero ((char *) pend_includes, argc * sizeof (char *));
1189 /* Process switches and find input file name. */
1191 for (i = 1; i < argc; i++) {
1192 if (argv[i][0] != '-') {
1193 if (out_fname != NULL)
1194 fatal ("Usage: %s [switches] input output", argv[0]);
1195 else if (in_fname != NULL)
1196 out_fname = argv[i];
1197 else
1198 in_fname = argv[i];
1199 } else {
1200 switch (argv[i][1]) {
1202 case 'i':
1203 if (!strcmp (argv[i], "-include")) {
1204 if (i + 1 == argc)
1205 fatal ("Filename missing after `-include' option");
1206 else
1207 pend_includes[i] = argv[i+1], i++;
1209 if (!strcmp (argv[i], "-imacros")) {
1210 if (i + 1 == argc)
1211 fatal ("Filename missing after `-imacros' option");
1212 else
1213 pend_files[i] = argv[i+1], i++;
1215 if (!strcmp (argv[i], "-iprefix")) {
1216 if (i + 1 == argc)
1217 fatal ("Filename missing after `-iprefix' option");
1218 else
1219 include_prefix = argv[++i];
1221 if (!strcmp (argv[i], "-ifoutput")) {
1222 output_conditionals = 1;
1224 if (!strcmp (argv[i], "-isystem")) {
1225 struct file_name_list *dirtmp;
1227 if (i + 1 == argc)
1228 fatal ("Filename missing after `-isystem' option");
1230 dirtmp = (struct file_name_list *)
1231 xmalloc (sizeof (struct file_name_list));
1232 dirtmp->next = 0;
1233 dirtmp->control_macro = 0;
1234 dirtmp->c_system_include_path = 1;
1235 dirtmp->fname = (char *) xmalloc (strlen (argv[i+1]) + 1);
1236 strcpy (dirtmp->fname, argv[++i]);
1237 dirtmp->got_name_map = 0;
1239 if (before_system == 0)
1240 before_system = dirtmp;
1241 else
1242 last_before_system->next = dirtmp;
1243 last_before_system = dirtmp; /* Tail follows the last one */
1245 /* Add directory to end of path for includes,
1246 with the default prefix at the front of its name. */
1247 if (!strcmp (argv[i], "-iwithprefix")) {
1248 struct file_name_list *dirtmp;
1249 char *prefix;
1251 if (include_prefix != 0)
1252 prefix = include_prefix;
1253 else {
1254 prefix = savestring (GCC_INCLUDE_DIR);
1255 /* Remove the `include' from /usr/local/lib/gcc.../include. */
1256 if (!strcmp (prefix + strlen (prefix) - 8, "/include"))
1257 prefix[strlen (prefix) - 7] = 0;
1260 dirtmp = (struct file_name_list *)
1261 xmalloc (sizeof (struct file_name_list));
1262 dirtmp->next = 0; /* New one goes on the end */
1263 dirtmp->control_macro = 0;
1264 dirtmp->c_system_include_path = 0;
1265 if (i + 1 == argc)
1266 fatal ("Directory name missing after `-iwithprefix' option");
1268 dirtmp->fname = (char *) xmalloc (strlen (argv[i+1])
1269 + strlen (prefix) + 1);
1270 strcpy (dirtmp->fname, prefix);
1271 strcat (dirtmp->fname, argv[++i]);
1272 dirtmp->got_name_map = 0;
1274 if (after_include == 0)
1275 after_include = dirtmp;
1276 else
1277 last_after_include->next = dirtmp;
1278 last_after_include = dirtmp; /* Tail follows the last one */
1280 /* Add directory to main path for includes,
1281 with the default prefix at the front of its name. */
1282 if (!strcmp (argv[i], "-iwithprefixbefore")) {
1283 struct file_name_list *dirtmp;
1284 char *prefix;
1286 if (include_prefix != 0)
1287 prefix = include_prefix;
1288 else {
1289 prefix = savestring (GCC_INCLUDE_DIR);
1290 /* Remove the `include' from /usr/local/lib/gcc.../include. */
1291 if (!strcmp (prefix + strlen (prefix) - 8, "/include"))
1292 prefix[strlen (prefix) - 7] = 0;
1295 dirtmp = (struct file_name_list *)
1296 xmalloc (sizeof (struct file_name_list));
1297 dirtmp->next = 0; /* New one goes on the end */
1298 dirtmp->control_macro = 0;
1299 dirtmp->c_system_include_path = 0;
1300 if (i + 1 == argc)
1301 fatal ("Directory name missing after `-iwithprefixbefore' option");
1303 dirtmp->fname = (char *) xmalloc (strlen (argv[i+1])
1304 + strlen (prefix) + 1);
1305 strcpy (dirtmp->fname, prefix);
1306 strcat (dirtmp->fname, argv[++i]);
1307 dirtmp->got_name_map = 0;
1309 append_include_chain (dirtmp, dirtmp);
1311 /* Add directory to end of path for includes. */
1312 if (!strcmp (argv[i], "-idirafter")) {
1313 struct file_name_list *dirtmp;
1315 dirtmp = (struct file_name_list *)
1316 xmalloc (sizeof (struct file_name_list));
1317 dirtmp->next = 0; /* New one goes on the end */
1318 dirtmp->control_macro = 0;
1319 dirtmp->c_system_include_path = 0;
1320 if (i + 1 == argc)
1321 fatal ("Directory name missing after `-idirafter' option");
1322 else
1323 dirtmp->fname = argv[++i];
1324 dirtmp->got_name_map = 0;
1326 if (after_include == 0)
1327 after_include = dirtmp;
1328 else
1329 last_after_include->next = dirtmp;
1330 last_after_include = dirtmp; /* Tail follows the last one */
1332 break;
1334 case 'o':
1335 if (out_fname != NULL)
1336 fatal ("Output filename specified twice");
1337 if (i + 1 == argc)
1338 fatal ("Filename missing after -o option");
1339 out_fname = argv[++i];
1340 if (!strcmp (out_fname, "-"))
1341 out_fname = "";
1342 break;
1344 case 'p':
1345 if (!strcmp (argv[i], "-pedantic"))
1346 pedantic = 1;
1347 else if (!strcmp (argv[i], "-pedantic-errors")) {
1348 pedantic = 1;
1349 pedantic_errors = 1;
1350 } else if (!strcmp (argv[i], "-pcp")) {
1351 char *pcp_fname;
1352 if (i + 1 == argc)
1353 fatal ("Filename missing after -pcp option");
1354 pcp_fname = argv[++i];
1355 pcp_outfile =
1356 ((pcp_fname[0] != '-' || pcp_fname[1] != '\0')
1357 ? fopen (pcp_fname, "w")
1358 : fdopen (dup (fileno (stdout)), "w"));
1359 if (pcp_outfile == 0)
1360 pfatal_with_name (pcp_fname);
1361 no_precomp = 1;
1363 break;
1365 case 't':
1366 if (!strcmp (argv[i], "-traditional")) {
1367 traditional = 1;
1368 if (dollars_in_ident > 0)
1369 dollars_in_ident = 1;
1370 } else if (!strcmp (argv[i], "-trigraphs")) {
1371 no_trigraphs = 0;
1373 break;
1375 case 'l':
1376 if (! strcmp (argv[i], "-lang-c"))
1377 cplusplus = 0, cplusplus_comments = 0, objc = 0;
1378 if (! strcmp (argv[i], "-lang-c++"))
1379 cplusplus = 1, cplusplus_comments = 1, objc = 0;
1380 if (! strcmp (argv[i], "-lang-c-c++-comments"))
1381 cplusplus = 0, cplusplus_comments = 1, objc = 0;
1382 if (! strcmp (argv[i], "-lang-objc"))
1383 objc = 1, cplusplus = 0, cplusplus_comments = 1;
1384 if (! strcmp (argv[i], "-lang-objc++"))
1385 objc = 1, cplusplus = 1, cplusplus_comments = 1;
1386 if (! strcmp (argv[i], "-lang-asm"))
1387 lang_asm = 1;
1388 if (! strcmp (argv[i], "-lint"))
1389 for_lint = 1;
1390 break;
1392 case '+':
1393 cplusplus = 1, cplusplus_comments = 1;
1394 break;
1396 case 'w':
1397 inhibit_warnings = 1;
1398 break;
1400 case 'W':
1401 if (!strcmp (argv[i], "-Wtrigraphs"))
1402 warn_trigraphs = 1;
1403 else if (!strcmp (argv[i], "-Wno-trigraphs"))
1404 warn_trigraphs = 0;
1405 else if (!strcmp (argv[i], "-Wcomment"))
1406 warn_comments = 1;
1407 else if (!strcmp (argv[i], "-Wno-comment"))
1408 warn_comments = 0;
1409 else if (!strcmp (argv[i], "-Wcomments"))
1410 warn_comments = 1;
1411 else if (!strcmp (argv[i], "-Wno-comments"))
1412 warn_comments = 0;
1413 else if (!strcmp (argv[i], "-Wtraditional"))
1414 warn_stringify = 1;
1415 else if (!strcmp (argv[i], "-Wno-traditional"))
1416 warn_stringify = 0;
1417 else if (!strcmp (argv[i], "-Wimport"))
1418 warn_import = 1;
1419 else if (!strcmp (argv[i], "-Wno-import"))
1420 warn_import = 0;
1421 else if (!strcmp (argv[i], "-Werror"))
1422 warnings_are_errors = 1;
1423 else if (!strcmp (argv[i], "-Wno-error"))
1424 warnings_are_errors = 0;
1425 else if (!strcmp (argv[i], "-Wall"))
1427 warn_trigraphs = 1;
1428 warn_comments = 1;
1430 break;
1432 case 'M':
1433 /* The style of the choices here is a bit mixed.
1434 The chosen scheme is a hybrid of keeping all options in one string
1435 and specifying each option in a separate argument:
1436 -M|-MM|-MD file|-MMD file [-MG]. An alternative is:
1437 -M|-MM|-MD file|-MMD file|-MG|-MMG; or more concisely:
1438 -M[M][G][D file]. This is awkward to handle in specs, and is not
1439 as extensible. */
1440 /* ??? -MG must be specified in addition to one of -M or -MM.
1441 This can be relaxed in the future without breaking anything.
1442 The converse isn't true. */
1444 /* -MG isn't valid with -MD or -MMD. This is checked for later. */
1445 if (!strcmp (argv[i], "-MG"))
1447 print_deps_missing_files = 1;
1448 break;
1450 if (!strcmp (argv[i], "-M"))
1451 print_deps = 2;
1452 else if (!strcmp (argv[i], "-MM"))
1453 print_deps = 1;
1454 else if (!strcmp (argv[i], "-MD"))
1455 print_deps = 2;
1456 else if (!strcmp (argv[i], "-MMD"))
1457 print_deps = 1;
1458 /* For -MD and -MMD options, write deps on file named by next arg. */
1459 if (!strcmp (argv[i], "-MD")
1460 || !strcmp (argv[i], "-MMD")) {
1461 if (i + 1 == argc)
1462 fatal ("Filename missing after %s option", argv[i]);
1463 i++;
1464 deps_file = argv[i];
1465 deps_mode = "w";
1466 } else {
1467 /* For -M and -MM, write deps on standard output
1468 and suppress the usual output. */
1469 deps_stream = stdout;
1470 inhibit_output = 1;
1472 break;
1474 case 'd':
1476 char *p = argv[i] + 2;
1477 char c;
1478 while (c = *p++) {
1479 /* Arg to -d specifies what parts of macros to dump */
1480 switch (c) {
1481 case 'M':
1482 dump_macros = dump_only;
1483 no_output = 1;
1484 break;
1485 case 'N':
1486 dump_macros = dump_names;
1487 break;
1488 case 'D':
1489 dump_macros = dump_definitions;
1490 break;
1494 break;
1496 case 'g':
1497 if (argv[i][2] == '3')
1498 debug_output = 1;
1499 break;
1501 case 'v':
1502 fprintf (stderr, "GNU CPP version %s", version_string);
1503 #ifdef TARGET_VERSION
1504 TARGET_VERSION;
1505 #endif
1506 fprintf (stderr, "\n");
1507 verbose = 1;
1508 break;
1510 case 'H':
1511 print_include_names = 1;
1512 break;
1514 case 'D':
1515 if (argv[i][2] != 0)
1516 pend_defs[i] = argv[i] + 2;
1517 else if (i + 1 == argc)
1518 fatal ("Macro name missing after -D option");
1519 else
1520 i++, pend_defs[i] = argv[i];
1521 break;
1523 case 'A':
1525 char *p;
1527 if (argv[i][2] != 0)
1528 p = argv[i] + 2;
1529 else if (i + 1 == argc)
1530 fatal ("Assertion missing after -A option");
1531 else
1532 p = argv[++i];
1534 if (!strcmp (p, "-")) {
1535 /* -A- eliminates all predefined macros and assertions.
1536 Let's include also any that were specified earlier
1537 on the command line. That way we can get rid of any
1538 that were passed automatically in from GCC. */
1539 int j;
1540 inhibit_predefs = 1;
1541 for (j = 0; j < i; j++)
1542 pend_defs[j] = pend_assertions[j] = 0;
1543 } else {
1544 pend_assertions[i] = p;
1545 pend_assertion_options[i] = "-A";
1548 break;
1550 case 'U': /* JF #undef something */
1551 if (argv[i][2] != 0)
1552 pend_undefs[i] = argv[i] + 2;
1553 else if (i + 1 == argc)
1554 fatal ("Macro name missing after -U option");
1555 else
1556 pend_undefs[i] = argv[i+1], i++;
1557 break;
1559 case 'C':
1560 put_out_comments = 1;
1561 break;
1563 case 'E': /* -E comes from cc -E; ignore it. */
1564 break;
1566 case 'P':
1567 no_line_commands = 1;
1568 break;
1570 case '$': /* Don't include $ in identifiers. */
1571 dollars_in_ident = 0;
1572 break;
1574 case 'I': /* Add directory to path for includes. */
1576 struct file_name_list *dirtmp;
1578 if (! ignore_srcdir && !strcmp (argv[i] + 2, "-")) {
1579 ignore_srcdir = 1;
1580 /* Don't use any preceding -I directories for #include <...>. */
1581 first_bracket_include = 0;
1583 else {
1584 dirtmp = (struct file_name_list *)
1585 xmalloc (sizeof (struct file_name_list));
1586 dirtmp->next = 0; /* New one goes on the end */
1587 dirtmp->control_macro = 0;
1588 dirtmp->c_system_include_path = 0;
1589 if (argv[i][2] != 0)
1590 dirtmp->fname = argv[i] + 2;
1591 else if (i + 1 == argc)
1592 fatal ("Directory name missing after -I option");
1593 else
1594 dirtmp->fname = argv[++i];
1595 dirtmp->got_name_map = 0;
1596 append_include_chain (dirtmp, dirtmp);
1599 break;
1601 case 'n':
1602 if (!strcmp (argv[i], "-nostdinc"))
1603 /* -nostdinc causes no default include directories.
1604 You must specify all include-file directories with -I. */
1605 no_standard_includes = 1;
1606 else if (!strcmp (argv[i], "-nostdinc++"))
1607 /* -nostdinc++ causes no default C++-specific include directories. */
1608 no_standard_cplusplus_includes = 1;
1609 else if (!strcmp (argv[i], "-noprecomp"))
1610 no_precomp = 1;
1611 break;
1613 case 'u':
1614 /* Sun compiler passes undocumented switch "-undef".
1615 Let's assume it means to inhibit the predefined symbols. */
1616 inhibit_predefs = 1;
1617 break;
1619 case '\0': /* JF handle '-' as file name meaning stdin or stdout */
1620 if (in_fname == NULL) {
1621 in_fname = "";
1622 break;
1623 } else if (out_fname == NULL) {
1624 out_fname = "";
1625 break;
1626 } /* else fall through into error */
1628 default:
1629 fatal ("Invalid option `%s'", argv[i]);
1634 /* Add dirs from CPATH after dirs from -I. */
1635 /* There seems to be confusion about what CPATH should do,
1636 so for the moment it is not documented. */
1637 /* Some people say that CPATH should replace the standard include dirs,
1638 but that seems pointless: it comes before them, so it overrides them
1639 anyway. */
1640 #ifdef WINNT
1641 p = (char *) getenv ("Include");
1642 #else
1643 p = (char *) getenv ("CPATH");
1644 #endif
1645 if (p != 0 && ! no_standard_includes)
1646 path_include (p);
1648 /* Now that dollars_in_ident is known, initialize is_idchar. */
1649 initialize_char_syntax ();
1651 /* Initialize output buffer */
1653 outbuf.buf = (U_CHAR *) xmalloc (OUTBUF_SIZE);
1654 outbuf.bufp = outbuf.buf;
1655 outbuf.length = OUTBUF_SIZE;
1657 /* Do partial setup of input buffer for the sake of generating
1658 early #line directives (when -g is in effect). */
1660 fp = &instack[++indepth];
1661 if (in_fname == NULL)
1662 in_fname = "";
1663 fp->nominal_fname = fp->fname = in_fname;
1664 fp->lineno = 0;
1666 /* In C++, wchar_t is a distinct basic type, and we can expect
1667 __wchar_t to be defined by cc1plus. */
1668 if (cplusplus)
1669 wchar_type = "__wchar_t";
1671 /* Install __LINE__, etc. Must follow initialize_char_syntax
1672 and option processing. */
1673 initialize_builtins (fp, &outbuf);
1675 /* Do standard #defines and assertions
1676 that identify system and machine type. */
1678 if (!inhibit_predefs) {
1679 char *p = (char *) alloca (strlen (predefs) + 1);
1680 strcpy (p, predefs);
1681 while (*p) {
1682 char *q;
1683 while (*p == ' ' || *p == '\t')
1684 p++;
1685 /* Handle -D options. */
1686 if (p[0] == '-' && p[1] == 'D') {
1687 q = &p[2];
1688 while (*p && *p != ' ' && *p != '\t')
1689 p++;
1690 if (*p != 0)
1691 *p++= 0;
1692 if (debug_output)
1693 output_line_command (fp, &outbuf, 0, same_file);
1694 make_definition (q, &outbuf);
1695 while (*p == ' ' || *p == '\t')
1696 p++;
1697 } else if (p[0] == '-' && p[1] == 'A') {
1698 /* Handle -A options (assertions). */
1699 char *assertion;
1700 char *past_name;
1701 char *value;
1702 char *past_value;
1703 char *termination;
1704 int save_char;
1706 assertion = &p[2];
1707 past_name = assertion;
1708 /* Locate end of name. */
1709 while (*past_name && *past_name != ' '
1710 && *past_name != '\t' && *past_name != '(')
1711 past_name++;
1712 /* Locate `(' at start of value. */
1713 value = past_name;
1714 while (*value && (*value == ' ' || *value == '\t'))
1715 value++;
1716 if (*value++ != '(')
1717 abort ();
1718 while (*value && (*value == ' ' || *value == '\t'))
1719 value++;
1720 past_value = value;
1721 /* Locate end of value. */
1722 while (*past_value && *past_value != ' '
1723 && *past_value != '\t' && *past_value != ')')
1724 past_value++;
1725 termination = past_value;
1726 while (*termination && (*termination == ' ' || *termination == '\t'))
1727 termination++;
1728 if (*termination++ != ')')
1729 abort ();
1730 if (*termination && *termination != ' ' && *termination != '\t')
1731 abort ();
1732 /* Temporarily null-terminate the value. */
1733 save_char = *termination;
1734 *termination = '\0';
1735 /* Install the assertion. */
1736 make_assertion ("-A", assertion);
1737 *termination = (char) save_char;
1738 p = termination;
1739 while (*p == ' ' || *p == '\t')
1740 p++;
1741 } else {
1742 abort ();
1747 /* Now handle the command line options. */
1749 /* Do -U's, -D's and -A's in the order they were seen. */
1750 for (i = 1; i < argc; i++) {
1751 if (pend_undefs[i]) {
1752 if (debug_output)
1753 output_line_command (fp, &outbuf, 0, same_file);
1754 make_undef (pend_undefs[i], &outbuf);
1756 if (pend_defs[i]) {
1757 if (debug_output)
1758 output_line_command (fp, &outbuf, 0, same_file);
1759 make_definition (pend_defs[i], &outbuf);
1761 if (pend_assertions[i])
1762 make_assertion (pend_assertion_options[i], pend_assertions[i]);
1765 done_initializing = 1;
1767 { /* read the appropriate environment variable and if it exists
1768 replace include_defaults with the listed path. */
1769 char *epath = 0;
1770 switch ((objc << 1) + cplusplus)
1772 case 0:
1773 epath = getenv ("C_INCLUDE_PATH");
1774 break;
1775 case 1:
1776 epath = getenv ("CPLUS_INCLUDE_PATH");
1777 break;
1778 case 2:
1779 epath = getenv ("OBJC_INCLUDE_PATH");
1780 break;
1781 case 3:
1782 epath = getenv ("OBJCPLUS_INCLUDE_PATH");
1783 break;
1785 /* If the environment var for this language is set,
1786 add to the default list of include directories. */
1787 if (epath) {
1788 char *nstore = (char *) alloca (strlen (epath) + 2);
1789 int num_dirs;
1790 char *startp, *endp;
1792 for (num_dirs = 1, startp = epath; *startp; startp++)
1793 if (*startp == PATH_SEPARATOR)
1794 num_dirs++;
1795 include_defaults
1796 = (struct default_include *) xmalloc ((num_dirs
1797 * sizeof (struct default_include))
1798 + sizeof (include_defaults_array));
1799 startp = endp = epath;
1800 num_dirs = 0;
1801 while (1) {
1802 /* Handle cases like c:/usr/lib:d:/gcc/lib */
1803 if ((*endp == PATH_SEPARATOR
1804 #if 0 /* Obsolete, now that we use semicolons as the path separator. */
1805 #ifdef __MSDOS__
1806 && (endp-startp != 1 || !isalpha (*startp))
1807 #endif
1808 #endif
1810 || *endp == 0) {
1811 strncpy (nstore, startp, endp-startp);
1812 if (endp == startp)
1813 strcpy (nstore, ".");
1814 else
1815 nstore[endp-startp] = '\0';
1817 include_defaults[num_dirs].fname = savestring (nstore);
1818 include_defaults[num_dirs].cplusplus = cplusplus;
1819 include_defaults[num_dirs].cxx_aware = 1;
1820 num_dirs++;
1821 if (*endp == '\0')
1822 break;
1823 endp = startp = endp + 1;
1824 } else
1825 endp++;
1827 /* Put the usual defaults back in at the end. */
1828 bcopy ((char *) include_defaults_array,
1829 (char *) &include_defaults[num_dirs],
1830 sizeof (include_defaults_array));
1834 append_include_chain (before_system, last_before_system);
1835 first_system_include = before_system;
1837 /* Unless -fnostdinc,
1838 tack on the standard include file dirs to the specified list */
1839 if (!no_standard_includes) {
1840 struct default_include *p = include_defaults;
1841 char *specd_prefix = include_prefix;
1842 char *default_prefix = savestring (GCC_INCLUDE_DIR);
1843 int default_len = 0;
1844 /* Remove the `include' from /usr/local/lib/gcc.../include. */
1845 if (!strcmp (default_prefix + strlen (default_prefix) - 8, "/include")) {
1846 default_len = strlen (default_prefix) - 7;
1847 default_prefix[default_len] = 0;
1849 /* Search "translated" versions of GNU directories.
1850 These have /usr/local/lib/gcc... replaced by specd_prefix. */
1851 if (specd_prefix != 0 && default_len != 0)
1852 for (p = include_defaults; p->fname; p++) {
1853 /* Some standard dirs are only for C++. */
1854 if (!p->cplusplus || (cplusplus && !no_standard_cplusplus_includes)) {
1855 /* Does this dir start with the prefix? */
1856 if (!strncmp (p->fname, default_prefix, default_len)) {
1857 /* Yes; change prefix and add to search list. */
1858 struct file_name_list *new
1859 = (struct file_name_list *) xmalloc (sizeof (struct file_name_list));
1860 int this_len = strlen (specd_prefix) + strlen (p->fname) - default_len;
1861 char *str = (char *) xmalloc (this_len + 1);
1862 strcpy (str, specd_prefix);
1863 strcat (str, p->fname + default_len);
1864 new->fname = str;
1865 new->control_macro = 0;
1866 new->c_system_include_path = !p->cxx_aware;
1867 new->got_name_map = 0;
1868 append_include_chain (new, new);
1869 if (first_system_include == 0)
1870 first_system_include = new;
1874 /* Search ordinary names for GNU include directories. */
1875 for (p = include_defaults; p->fname; p++) {
1876 /* Some standard dirs are only for C++. */
1877 if (!p->cplusplus || (cplusplus && !no_standard_cplusplus_includes)) {
1878 struct file_name_list *new
1879 = (struct file_name_list *) xmalloc (sizeof (struct file_name_list));
1880 new->control_macro = 0;
1881 new->c_system_include_path = !p->cxx_aware;
1882 new->fname = p->fname;
1883 new->got_name_map = 0;
1884 append_include_chain (new, new);
1885 if (first_system_include == 0)
1886 first_system_include = new;
1891 /* Tack the after_include chain at the end of the include chain. */
1892 append_include_chain (after_include, last_after_include);
1893 if (first_system_include == 0)
1894 first_system_include = after_include;
1896 /* With -v, print the list of dirs to search. */
1897 if (verbose) {
1898 struct file_name_list *p;
1899 fprintf (stderr, "#include \"...\" search starts here:\n");
1900 for (p = include; p; p = p->next) {
1901 if (p == first_bracket_include)
1902 fprintf (stderr, "#include <...> search starts here:\n");
1903 fprintf (stderr, " %s\n", p->fname);
1905 fprintf (stderr, "End of search list.\n");
1908 /* Scan the -imacros files before the main input.
1909 Much like #including them, but with no_output set
1910 so that only their macro definitions matter. */
1912 no_output++; no_record_file++;
1913 for (i = 1; i < argc; i++)
1914 if (pend_files[i]) {
1915 int fd = open (pend_files[i], O_RDONLY, 0666);
1916 if (fd < 0) {
1917 perror_with_name (pend_files[i]);
1918 return FAILURE_EXIT_CODE;
1920 finclude (fd, pend_files[i], &outbuf, 0, NULL_PTR);
1922 no_output--; no_record_file--;
1924 /* Copy the entire contents of the main input file into
1925 the stacked input buffer previously allocated for it. */
1927 /* JF check for stdin */
1928 if (in_fname == NULL || *in_fname == 0) {
1929 in_fname = "";
1930 f = 0;
1931 } else if ((f = open (in_fname, O_RDONLY, 0666)) < 0)
1932 goto perror;
1934 /* -MG doesn't select the form of output and must be specified with one of
1935 -M or -MM. -MG doesn't make sense with -MD or -MMD since they don't
1936 inhibit compilation. */
1937 if (print_deps_missing_files && (print_deps == 0 || !inhibit_output))
1938 fatal ("-MG must be specified with one of -M or -MM");
1940 /* Either of two environment variables can specify output of deps.
1941 Its value is either "OUTPUT_FILE" or "OUTPUT_FILE DEPS_TARGET",
1942 where OUTPUT_FILE is the file to write deps info to
1943 and DEPS_TARGET is the target to mention in the deps. */
1945 if (print_deps == 0
1946 && (getenv ("SUNPRO_DEPENDENCIES") != 0
1947 || getenv ("DEPENDENCIES_OUTPUT") != 0)) {
1948 char *spec = getenv ("DEPENDENCIES_OUTPUT");
1949 char *s;
1950 char *output_file;
1952 if (spec == 0) {
1953 spec = getenv ("SUNPRO_DEPENDENCIES");
1954 print_deps = 2;
1956 else
1957 print_deps = 1;
1959 s = spec;
1960 /* Find the space before the DEPS_TARGET, if there is one. */
1961 /* This should use index. (mrs) */
1962 while (*s != 0 && *s != ' ') s++;
1963 if (*s != 0) {
1964 deps_target = s + 1;
1965 output_file = (char *) xmalloc (s - spec + 1);
1966 bcopy (spec, output_file, s - spec);
1967 output_file[s - spec] = 0;
1969 else {
1970 deps_target = 0;
1971 output_file = spec;
1974 deps_file = output_file;
1975 deps_mode = "a";
1978 /* For -M, print the expected object file name
1979 as the target of this Make-rule. */
1980 if (print_deps) {
1981 deps_allocated_size = 200;
1982 deps_buffer = (char *) xmalloc (deps_allocated_size);
1983 deps_buffer[0] = 0;
1984 deps_size = 0;
1985 deps_column = 0;
1987 if (deps_target) {
1988 deps_output (deps_target, ':');
1989 } else if (*in_fname == 0) {
1990 deps_output ("-", ':');
1991 } else {
1992 char *p, *q;
1993 int len;
1995 /* Discard all directory prefixes from filename. */
1996 if ((q = rindex (in_fname, '/')) != NULL
1997 #ifdef DIR_SEPARATOR
1998 && (q = rindex (in_fname, DIR_SEPARATOR)) != NULL
1999 #endif
2001 ++q;
2002 else
2003 q = in_fname;
2005 /* Copy remainder to mungable area. */
2006 p = (char *) alloca (strlen(q) + 8);
2007 strcpy (p, q);
2009 /* Output P, but remove known suffixes. */
2010 len = strlen (p);
2011 q = p + len;
2012 if (len >= 2
2013 && p[len - 2] == '.'
2014 && index("cCsSm", p[len - 1]))
2015 q = p + (len - 2);
2016 else if (len >= 3
2017 && p[len - 3] == '.'
2018 && p[len - 2] == 'c'
2019 && p[len - 1] == 'c')
2020 q = p + (len - 3);
2021 else if (len >= 4
2022 && p[len - 4] == '.'
2023 && p[len - 3] == 'c'
2024 && p[len - 2] == 'x'
2025 && p[len - 1] == 'x')
2026 q = p + (len - 4);
2027 else if (len >= 4
2028 && p[len - 4] == '.'
2029 && p[len - 3] == 'c'
2030 && p[len - 2] == 'p'
2031 && p[len - 1] == 'p')
2032 q = p + (len - 4);
2034 /* Supply our own suffix. */
2035 #ifndef VMS
2036 strcpy (q, ".o");
2037 #else
2038 strcpy (q, ".obj");
2039 #endif
2041 deps_output (p, ':');
2042 deps_output (in_fname, ' ');
2046 file_size_and_mode (f, &st_mode, &st_size);
2047 fp->nominal_fname = fp->fname = in_fname;
2048 fp->lineno = 1;
2049 fp->system_header_p = 0;
2050 /* JF all this is mine about reading pipes and ttys */
2051 if (! S_ISREG (st_mode)) {
2052 /* Read input from a file that is not a normal disk file.
2053 We cannot preallocate a buffer with the correct size,
2054 so we must read in the file a piece at the time and make it bigger. */
2055 int size;
2056 int bsize;
2057 int cnt;
2059 bsize = 2000;
2060 size = 0;
2061 fp->buf = (U_CHAR *) xmalloc (bsize + 2);
2062 for (;;) {
2063 cnt = safe_read (f, fp->buf + size, bsize - size);
2064 if (cnt < 0) goto perror; /* error! */
2065 size += cnt;
2066 if (size != bsize) break; /* End of file */
2067 bsize *= 2;
2068 fp->buf = (U_CHAR *) xrealloc (fp->buf, bsize + 2);
2070 fp->length = size;
2071 } else {
2072 /* Read a file whose size we can determine in advance.
2073 For the sake of VMS, st_size is just an upper bound. */
2074 fp->buf = (U_CHAR *) xmalloc (st_size + 2);
2075 fp->length = safe_read (f, fp->buf, st_size);
2076 if (fp->length < 0) goto perror;
2078 fp->bufp = fp->buf;
2079 fp->if_stack = if_stack;
2081 /* Make sure data ends with a newline. And put a null after it. */
2083 if ((fp->length > 0 && fp->buf[fp->length - 1] != '\n')
2084 /* Backslash-newline at end is not good enough. */
2085 || (fp->length > 1 && fp->buf[fp->length - 2] == '\\')) {
2086 fp->buf[fp->length++] = '\n';
2087 missing_newline = 1;
2089 fp->buf[fp->length] = '\0';
2091 /* Unless inhibited, convert trigraphs in the input. */
2093 if (!no_trigraphs)
2094 trigraph_pcp (fp);
2096 /* Now that we know the input file is valid, open the output. */
2098 if (!out_fname || !strcmp (out_fname, ""))
2099 out_fname = "stdout";
2100 else if (! freopen (out_fname, "w", stdout))
2101 pfatal_with_name (out_fname);
2103 output_line_command (fp, &outbuf, 0, same_file);
2105 /* Scan the -include files before the main input. */
2107 no_record_file++;
2108 for (i = 1; i < argc; i++)
2109 if (pend_includes[i]) {
2110 int fd = open (pend_includes[i], O_RDONLY, 0666);
2111 if (fd < 0) {
2112 perror_with_name (pend_includes[i]);
2113 return FAILURE_EXIT_CODE;
2115 finclude (fd, pend_includes[i], &outbuf, 0, NULL_PTR);
2117 no_record_file--;
2119 /* Scan the input, processing macros and directives. */
2121 rescan (&outbuf, 0);
2123 if (missing_newline)
2124 fp->lineno--;
2126 if (pedantic && missing_newline)
2127 pedwarn ("file does not end in newline");
2129 /* Now we have processed the entire input
2130 Write whichever kind of output has been requested. */
2132 if (dump_macros == dump_only)
2133 dump_all_macros ();
2134 else if (! inhibit_output) {
2135 write_output ();
2138 if (print_deps) {
2139 /* Don't actually write the deps file if compilation has failed. */
2140 if (errors == 0) {
2141 if (deps_file && ! (deps_stream = fopen (deps_file, deps_mode)))
2142 pfatal_with_name (deps_file);
2143 fputs (deps_buffer, deps_stream);
2144 putc ('\n', deps_stream);
2145 if (deps_file) {
2146 if (ferror (deps_stream) || fclose (deps_stream) != 0)
2147 fatal ("I/O error on output");
2152 if (pcp_outfile && pcp_outfile != stdout
2153 && (ferror (pcp_outfile) || fclose (pcp_outfile) != 0))
2154 fatal ("I/O error on `-pcp' output");
2156 if (ferror (stdout) || fclose (stdout) != 0)
2157 fatal ("I/O error on output");
2159 if (errors)
2160 exit (FAILURE_EXIT_CODE);
2161 exit (SUCCESS_EXIT_CODE);
2163 perror:
2164 pfatal_with_name (in_fname);
2165 return 0;
2168 /* Given a colon-separated list of file names PATH,
2169 add all the names to the search path for include files. */
2171 static void
2172 path_include (path)
2173 char *path;
2175 char *p;
2177 p = path;
2179 if (*p)
2180 while (1) {
2181 char *q = p;
2182 char *name;
2183 struct file_name_list *dirtmp;
2185 /* Find the end of this name. */
2186 while (*q != 0 && *q != PATH_SEPARATOR) q++;
2187 if (p == q) {
2188 /* An empty name in the path stands for the current directory. */
2189 name = (char *) xmalloc (2);
2190 name[0] = '.';
2191 name[1] = 0;
2192 } else {
2193 /* Otherwise use the directory that is named. */
2194 name = (char *) xmalloc (q - p + 1);
2195 bcopy (p, name, q - p);
2196 name[q - p] = 0;
2199 dirtmp = (struct file_name_list *)
2200 xmalloc (sizeof (struct file_name_list));
2201 dirtmp->next = 0; /* New one goes on the end */
2202 dirtmp->control_macro = 0;
2203 dirtmp->c_system_include_path = 0;
2204 dirtmp->fname = name;
2205 dirtmp->got_name_map = 0;
2206 append_include_chain (dirtmp, dirtmp);
2208 /* Advance past this name. */
2209 p = q;
2210 if (*p == 0)
2211 break;
2212 /* Skip the colon. */
2213 p++;
2217 /* Return the address of the first character in S that equals C.
2218 S is an array of length N, possibly containing '\0's, and followed by '\0'.
2219 Return 0 if there is no such character. Assume that C itself is not '\0'.
2220 If we knew we could use memchr, we could just invoke memchr (S, C, N),
2221 but unfortunately memchr isn't autoconfigured yet. */
2223 static U_CHAR *
2224 index0 (s, c, n)
2225 U_CHAR *s;
2226 int c;
2227 int n;
2229 for (;;) {
2230 char *q = index (s, c);
2231 if (q)
2232 return (U_CHAR *) q;
2233 else {
2234 int l = strlen (s);
2235 if (l == n)
2236 return 0;
2237 l++;
2238 s += l;
2239 n -= l;
2244 /* Pre-C-Preprocessor to translate ANSI trigraph idiocy in BUF
2245 before main CCCP processing. Name `pcp' is also in honor of the
2246 drugs the trigraph designers must have been on.
2248 Using an extra pass through the buffer takes a little extra time,
2249 but is infinitely less hairy than trying to handle trigraphs inside
2250 strings, etc. everywhere, and also makes sure that trigraphs are
2251 only translated in the top level of processing. */
2253 static void
2254 trigraph_pcp (buf)
2255 FILE_BUF *buf;
2257 register U_CHAR c, *fptr, *bptr, *sptr, *lptr;
2258 int len;
2260 fptr = bptr = sptr = buf->buf;
2261 lptr = fptr + buf->length;
2262 while ((sptr = (U_CHAR *) index0 (sptr, '?', lptr - sptr)) != NULL) {
2263 if (*++sptr != '?')
2264 continue;
2265 switch (*++sptr) {
2266 case '=':
2267 c = '#';
2268 break;
2269 case '(':
2270 c = '[';
2271 break;
2272 case '/':
2273 c = '\\';
2274 break;
2275 case ')':
2276 c = ']';
2277 break;
2278 case '\'':
2279 c = '^';
2280 break;
2281 case '<':
2282 c = '{';
2283 break;
2284 case '!':
2285 c = '|';
2286 break;
2287 case '>':
2288 c = '}';
2289 break;
2290 case '-':
2291 c = '~';
2292 break;
2293 case '?':
2294 sptr--;
2295 continue;
2296 default:
2297 continue;
2299 len = sptr - fptr - 2;
2301 /* BSD doc says bcopy () works right for overlapping strings. In ANSI
2302 C, this will be memmove (). */
2303 if (bptr != fptr && len > 0)
2304 bcopy ((char *) fptr, (char *) bptr, len);
2306 bptr += len;
2307 *bptr++ = c;
2308 fptr = ++sptr;
2310 len = buf->length - (fptr - buf->buf);
2311 if (bptr != fptr && len > 0)
2312 bcopy ((char *) fptr, (char *) bptr, len);
2313 buf->length -= fptr - bptr;
2314 buf->buf[buf->length] = '\0';
2315 if (warn_trigraphs && fptr != bptr)
2316 warning ("%d trigraph(s) encountered", (fptr - bptr) / 2);
2319 /* Move all backslash-newline pairs out of embarrassing places.
2320 Exchange all such pairs following BP
2321 with any potentially-embarrassing characters that follow them.
2322 Potentially-embarrassing characters are / and *
2323 (because a backslash-newline inside a comment delimiter
2324 would cause it not to be recognized). */
2326 static void
2327 newline_fix (bp)
2328 U_CHAR *bp;
2330 register U_CHAR *p = bp;
2332 /* First count the backslash-newline pairs here. */
2334 while (p[0] == '\\' && p[1] == '\n')
2335 p += 2;
2337 /* What follows the backslash-newlines is not embarrassing. */
2339 if (*p != '/' && *p != '*')
2340 return;
2342 /* Copy all potentially embarrassing characters
2343 that follow the backslash-newline pairs
2344 down to where the pairs originally started. */
2346 while (*p == '*' || *p == '/')
2347 *bp++ = *p++;
2349 /* Now write the same number of pairs after the embarrassing chars. */
2350 while (bp < p) {
2351 *bp++ = '\\';
2352 *bp++ = '\n';
2356 /* Like newline_fix but for use within a directive-name.
2357 Move any backslash-newlines up past any following symbol constituents. */
2359 static void
2360 name_newline_fix (bp)
2361 U_CHAR *bp;
2363 register U_CHAR *p = bp;
2365 /* First count the backslash-newline pairs here. */
2366 while (p[0] == '\\' && p[1] == '\n')
2367 p += 2;
2369 /* What follows the backslash-newlines is not embarrassing. */
2371 if (!is_idchar[*p])
2372 return;
2374 /* Copy all potentially embarrassing characters
2375 that follow the backslash-newline pairs
2376 down to where the pairs originally started. */
2378 while (is_idchar[*p])
2379 *bp++ = *p++;
2381 /* Now write the same number of pairs after the embarrassing chars. */
2382 while (bp < p) {
2383 *bp++ = '\\';
2384 *bp++ = '\n';
2388 /* Look for lint commands in comments.
2390 When we come in here, ibp points into a comment. Limit is as one expects.
2391 scan within the comment -- it should start, after lwsp, with a lint command.
2392 If so that command is returned as a (constant) string.
2394 Upon return, any arg will be pointed to with argstart and will be
2395 arglen long. Note that we don't parse that arg since it will just
2396 be printed out again.
2399 static char *
2400 get_lintcmd (ibp, limit, argstart, arglen, cmdlen)
2401 register U_CHAR *ibp;
2402 register U_CHAR *limit;
2403 U_CHAR **argstart; /* point to command arg */
2404 int *arglen, *cmdlen; /* how long they are */
2406 long linsize;
2407 register U_CHAR *numptr; /* temp for arg parsing */
2409 *arglen = 0;
2411 SKIP_WHITE_SPACE (ibp);
2413 if (ibp >= limit) return NULL;
2415 linsize = limit - ibp;
2417 /* Oh, I wish C had lexical functions... hell, I'll just open-code the set */
2418 if ((linsize >= 10) && !strncmp (ibp, "NOTREACHED", 10)) {
2419 *cmdlen = 10;
2420 return "NOTREACHED";
2422 if ((linsize >= 8) && !strncmp (ibp, "ARGSUSED", 8)) {
2423 *cmdlen = 8;
2424 return "ARGSUSED";
2426 if ((linsize >= 11) && !strncmp (ibp, "LINTLIBRARY", 11)) {
2427 *cmdlen = 11;
2428 return "LINTLIBRARY";
2430 if ((linsize >= 7) && !strncmp (ibp, "VARARGS", 7)) {
2431 *cmdlen = 7;
2432 ibp += 7; linsize -= 7;
2433 if ((linsize == 0) || ! isdigit (*ibp)) return "VARARGS";
2435 /* OK, read a number */
2436 for (numptr = *argstart = ibp; (numptr < limit) && isdigit (*numptr);
2437 numptr++);
2438 *arglen = numptr - *argstart;
2439 return "VARARGS";
2441 return NULL;
2445 * The main loop of the program.
2447 * Read characters from the input stack, transferring them to the
2448 * output buffer OP.
2450 * Macros are expanded and push levels on the input stack.
2451 * At the end of such a level it is popped off and we keep reading.
2452 * At the end of any other kind of level, we return.
2453 * #-directives are handled, except within macros.
2455 * If OUTPUT_MARKS is nonzero, keep Newline markers found in the input
2456 * and insert them when appropriate. This is set while scanning macro
2457 * arguments before substitution. It is zero when scanning for final output.
2458 * There are three types of Newline markers:
2459 * * Newline - follows a macro name that was not expanded
2460 * because it appeared inside an expansion of the same macro.
2461 * This marker prevents future expansion of that identifier.
2462 * When the input is rescanned into the final output, these are deleted.
2463 * These are also deleted by ## concatenation.
2464 * * Newline Space (or Newline and any other whitespace character)
2465 * stands for a place that tokens must be separated or whitespace
2466 * is otherwise desirable, but where the ANSI standard specifies there
2467 * is no whitespace. This marker turns into a Space (or whichever other
2468 * whitespace char appears in the marker) in the final output,
2469 * but it turns into nothing in an argument that is stringified with #.
2470 * Such stringified arguments are the only place where the ANSI standard
2471 * specifies with precision that whitespace may not appear.
2473 * During this function, IP->bufp is kept cached in IBP for speed of access.
2474 * Likewise, OP->bufp is kept in OBP. Before calling a subroutine
2475 * IBP, IP and OBP must be copied back to memory. IP and IBP are
2476 * copied back with the RECACHE macro. OBP must be copied back from OP->bufp
2477 * explicitly, and before RECACHE, since RECACHE uses OBP.
2480 static void
2481 rescan (op, output_marks)
2482 FILE_BUF *op;
2483 int output_marks;
2485 /* Character being scanned in main loop. */
2486 register U_CHAR c;
2488 /* Length of pending accumulated identifier. */
2489 register int ident_length = 0;
2491 /* Hash code of pending accumulated identifier. */
2492 register int hash = 0;
2494 /* Current input level (&instack[indepth]). */
2495 FILE_BUF *ip;
2497 /* Pointer for scanning input. */
2498 register U_CHAR *ibp;
2500 /* Pointer to end of input. End of scan is controlled by LIMIT. */
2501 register U_CHAR *limit;
2503 /* Pointer for storing output. */
2504 register U_CHAR *obp;
2506 /* REDO_CHAR is nonzero if we are processing an identifier
2507 after backing up over the terminating character.
2508 Sometimes we process an identifier without backing up over
2509 the terminating character, if the terminating character
2510 is not special. Backing up is done so that the terminating character
2511 will be dispatched on again once the identifier is dealt with. */
2512 int redo_char = 0;
2514 /* 1 if within an identifier inside of which a concatenation
2515 marker (Newline -) has been seen. */
2516 int concatenated = 0;
2518 /* While scanning a comment or a string constant,
2519 this records the line it started on, for error messages. */
2520 int start_line;
2522 /* Record position of last `real' newline. */
2523 U_CHAR *beg_of_line;
2525 /* Pop the innermost input stack level, assuming it is a macro expansion. */
2527 #define POPMACRO \
2528 do { ip->macro->type = T_MACRO; \
2529 if (ip->free_ptr) free (ip->free_ptr); \
2530 --indepth; } while (0)
2532 /* Reload `rescan's local variables that describe the current
2533 level of the input stack. */
2535 #define RECACHE \
2536 do { ip = &instack[indepth]; \
2537 ibp = ip->bufp; \
2538 limit = ip->buf + ip->length; \
2539 op->bufp = obp; \
2540 check_expand (op, limit - ibp); \
2541 beg_of_line = 0; \
2542 obp = op->bufp; } while (0)
2544 if (no_output && instack[indepth].fname != 0)
2545 skip_if_group (&instack[indepth], 1, NULL);
2547 obp = op->bufp;
2548 RECACHE;
2550 beg_of_line = ibp;
2552 /* Our caller must always put a null after the end of
2553 the input at each input stack level. */
2554 if (*limit != 0)
2555 abort ();
2557 while (1) {
2558 c = *ibp++;
2559 *obp++ = c;
2561 switch (c) {
2562 case '\\':
2563 if (*ibp == '\n' && !ip->macro) {
2564 /* At the top level, always merge lines ending with backslash-newline,
2565 even in middle of identifier. But do not merge lines in a macro,
2566 since backslash might be followed by a newline-space marker. */
2567 ++ibp;
2568 ++ip->lineno;
2569 --obp; /* remove backslash from obuf */
2570 break;
2572 /* If ANSI, backslash is just another character outside a string. */
2573 if (!traditional)
2574 goto randomchar;
2575 /* Otherwise, backslash suppresses specialness of following char,
2576 so copy it here to prevent the switch from seeing it.
2577 But first get any pending identifier processed. */
2578 if (ident_length > 0)
2579 goto specialchar;
2580 if (ibp < limit)
2581 *obp++ = *ibp++;
2582 break;
2584 case '#':
2585 if (assertions_flag) {
2586 /* Copy #foo (bar lose) without macro expansion. */
2587 SKIP_WHITE_SPACE (ibp);
2588 while (is_idchar[*ibp])
2589 *obp++ = *ibp++;
2590 SKIP_WHITE_SPACE (ibp);
2591 if (*ibp == '(') {
2592 ip->bufp = ibp;
2593 skip_paren_group (ip);
2594 bcopy ((char *) ibp, (char *) obp, ip->bufp - ibp);
2595 obp += ip->bufp - ibp;
2596 ibp = ip->bufp;
2600 /* If this is expanding a macro definition, don't recognize
2601 preprocessor directives. */
2602 if (ip->macro != 0)
2603 goto randomchar;
2604 /* If this is expand_into_temp_buffer, recognize them
2605 only after an actual newline at this level,
2606 not at the beginning of the input level. */
2607 if (ip->fname == 0 && beg_of_line == ip->buf)
2608 goto randomchar;
2609 if (ident_length)
2610 goto specialchar;
2613 /* # keyword: a # must be first nonblank char on the line */
2614 if (beg_of_line == 0)
2615 goto randomchar;
2617 U_CHAR *bp;
2619 /* Scan from start of line, skipping whitespace, comments
2620 and backslash-newlines, and see if we reach this #.
2621 If not, this # is not special. */
2622 bp = beg_of_line;
2623 /* If -traditional, require # to be at beginning of line. */
2624 if (!traditional)
2625 while (1) {
2626 if (is_hor_space[*bp])
2627 bp++;
2628 else if (*bp == '\\' && bp[1] == '\n')
2629 bp += 2;
2630 else if (*bp == '/' && bp[1] == '*') {
2631 bp += 2;
2632 while (!(*bp == '*' && bp[1] == '/'))
2633 bp++;
2634 bp += 2;
2636 /* There is no point in trying to deal with C++ // comments here,
2637 because if there is one, then this # must be part of the
2638 comment and we would never reach here. */
2639 else break;
2641 if (bp + 1 != ibp)
2642 goto randomchar;
2645 /* This # can start a directive. */
2647 --obp; /* Don't copy the '#' */
2649 ip->bufp = ibp;
2650 op->bufp = obp;
2651 if (! handle_directive (ip, op)) {
2652 #ifdef USE_C_ALLOCA
2653 alloca (0);
2654 #endif
2655 /* Not a known directive: treat it as ordinary text.
2656 IP, OP, IBP, etc. have not been changed. */
2657 if (no_output && instack[indepth].fname) {
2658 /* If not generating expanded output,
2659 what we do with ordinary text is skip it.
2660 Discard everything until next # directive. */
2661 skip_if_group (&instack[indepth], 1, 0);
2662 RECACHE;
2663 beg_of_line = ibp;
2664 break;
2666 ++obp; /* Copy the '#' after all */
2667 /* Don't expand an identifier that could be a macro directive.
2668 (Section 3.8.3 of the ANSI C standard) */
2669 SKIP_WHITE_SPACE (ibp);
2670 if (is_idstart[*ibp])
2672 *obp++ = *ibp++;
2673 while (is_idchar[*ibp])
2674 *obp++ = *ibp++;
2676 goto randomchar;
2678 #ifdef USE_C_ALLOCA
2679 alloca (0);
2680 #endif
2681 /* A # directive has been successfully processed. */
2682 /* If not generating expanded output, ignore everything until
2683 next # directive. */
2684 if (no_output && instack[indepth].fname)
2685 skip_if_group (&instack[indepth], 1, 0);
2686 obp = op->bufp;
2687 RECACHE;
2688 beg_of_line = ibp;
2689 break;
2691 case '\"': /* skip quoted string */
2692 case '\'':
2693 /* A single quoted string is treated like a double -- some
2694 programs (e.g., troff) are perverse this way */
2696 if (ident_length)
2697 goto specialchar;
2699 start_line = ip->lineno;
2701 /* Skip ahead to a matching quote. */
2703 while (1) {
2704 if (ibp >= limit) {
2705 if (ip->macro != 0) {
2706 /* try harder: this string crosses a macro expansion boundary.
2707 This can happen naturally if -traditional.
2708 Otherwise, only -D can make a macro with an unmatched quote. */
2709 POPMACRO;
2710 RECACHE;
2711 continue;
2713 if (!traditional) {
2714 error_with_line (line_for_error (start_line),
2715 "unterminated string or character constant");
2716 error_with_line (multiline_string_line,
2717 "possible real start of unterminated constant");
2718 multiline_string_line = 0;
2720 break;
2722 *obp++ = *ibp;
2723 switch (*ibp++) {
2724 case '\n':
2725 ++ip->lineno;
2726 ++op->lineno;
2727 /* Traditionally, end of line ends a string constant with no error.
2728 So exit the loop and record the new line. */
2729 if (traditional) {
2730 beg_of_line = ibp;
2731 goto while2end;
2733 if (c == '\'') {
2734 error_with_line (line_for_error (start_line),
2735 "unterminated character constant");
2736 goto while2end;
2738 if (pedantic && multiline_string_line == 0) {
2739 pedwarn_with_line (line_for_error (start_line),
2740 "string constant runs past end of line");
2742 if (multiline_string_line == 0)
2743 multiline_string_line = ip->lineno - 1;
2744 break;
2746 case '\\':
2747 if (ibp >= limit)
2748 break;
2749 if (*ibp == '\n') {
2750 /* Backslash newline is replaced by nothing at all,
2751 but keep the line counts correct. */
2752 --obp;
2753 ++ibp;
2754 ++ip->lineno;
2755 } else {
2756 /* ANSI stupidly requires that in \\ the second \
2757 is *not* prevented from combining with a newline. */
2758 while (*ibp == '\\' && ibp[1] == '\n') {
2759 ibp += 2;
2760 ++ip->lineno;
2762 *obp++ = *ibp++;
2764 break;
2766 case '\"':
2767 case '\'':
2768 if (ibp[-1] == c)
2769 goto while2end;
2770 break;
2773 while2end:
2774 break;
2776 case '/':
2777 if (*ibp == '\\' && ibp[1] == '\n')
2778 newline_fix (ibp);
2780 if (*ibp != '*'
2781 && !(cplusplus_comments && *ibp == '/'))
2782 goto randomchar;
2783 if (ip->macro != 0)
2784 goto randomchar;
2785 if (ident_length)
2786 goto specialchar;
2788 if (*ibp == '/') {
2789 /* C++ style comment... */
2790 start_line = ip->lineno;
2792 --ibp; /* Back over the slash */
2793 --obp;
2795 /* Comments are equivalent to spaces. */
2796 if (! put_out_comments)
2797 *obp++ = ' ';
2798 else {
2799 /* must fake up a comment here */
2800 *obp++ = '/';
2801 *obp++ = '/';
2804 U_CHAR *before_bp = ibp+2;
2806 while (ibp < limit) {
2807 if (ibp[-1] != '\\' && *ibp == '\n') {
2808 if (put_out_comments) {
2809 bcopy ((char *) before_bp, (char *) obp, ibp - before_bp);
2810 obp += ibp - before_bp;
2812 break;
2813 } else {
2814 if (*ibp == '\n') {
2815 ++ip->lineno;
2816 /* Copy the newline into the output buffer, in order to
2817 avoid the pain of a #line every time a multiline comment
2818 is seen. */
2819 if (!put_out_comments)
2820 *obp++ = '\n';
2821 ++op->lineno;
2823 ibp++;
2826 break;
2830 /* Ordinary C comment. Skip it, optionally copying it to output. */
2832 start_line = ip->lineno;
2834 ++ibp; /* Skip the star. */
2836 /* If this cpp is for lint, we peek inside the comments: */
2837 if (for_lint) {
2838 U_CHAR *argbp;
2839 int cmdlen, arglen;
2840 char *lintcmd = get_lintcmd (ibp, limit, &argbp, &arglen, &cmdlen);
2842 if (lintcmd != NULL) {
2843 op->bufp = obp;
2844 check_expand (op, cmdlen + arglen + 14);
2845 obp = op->bufp;
2846 /* I believe it is always safe to emit this newline: */
2847 obp[-1] = '\n';
2848 bcopy ("#pragma lint ", (char *) obp, 13);
2849 obp += 13;
2850 bcopy (lintcmd, (char *) obp, cmdlen);
2851 obp += cmdlen;
2853 if (arglen != 0) {
2854 *(obp++) = ' ';
2855 bcopy (argbp, (char *) obp, arglen);
2856 obp += arglen;
2859 /* OK, now bring us back to the state we were in before we entered
2860 this branch. We need #line because the #pragma's newline always
2861 messes up the line count. */
2862 op->bufp = obp;
2863 output_line_command (ip, op, 0, same_file);
2864 check_expand (op, limit - ibp + 2);
2865 obp = op->bufp;
2866 *(obp++) = '/';
2870 /* Comments are equivalent to spaces.
2871 Note that we already output the slash; we might not want it.
2872 For -traditional, a comment is equivalent to nothing. */
2873 if (! put_out_comments) {
2874 if (traditional)
2875 obp--;
2876 else
2877 obp[-1] = ' ';
2879 else
2880 *obp++ = '*';
2883 U_CHAR *before_bp = ibp;
2885 while (ibp < limit) {
2886 switch (*ibp++) {
2887 case '/':
2888 if (warn_comments && *ibp == '*')
2889 warning ("`/*' within comment");
2890 break;
2891 case '*':
2892 if (*ibp == '\\' && ibp[1] == '\n')
2893 newline_fix (ibp);
2894 if (ibp >= limit || *ibp == '/')
2895 goto comment_end;
2896 break;
2897 case '\n':
2898 ++ip->lineno;
2899 /* Copy the newline into the output buffer, in order to
2900 avoid the pain of a #line every time a multiline comment
2901 is seen. */
2902 if (!put_out_comments)
2903 *obp++ = '\n';
2904 ++op->lineno;
2907 comment_end:
2909 if (ibp >= limit)
2910 error_with_line (line_for_error (start_line),
2911 "unterminated comment");
2912 else {
2913 ibp++;
2914 if (put_out_comments) {
2915 bcopy ((char *) before_bp, (char *) obp, ibp - before_bp);
2916 obp += ibp - before_bp;
2920 break;
2922 case '$':
2923 if (!dollars_in_ident)
2924 goto randomchar;
2925 goto letter;
2927 case '0': case '1': case '2': case '3': case '4':
2928 case '5': case '6': case '7': case '8': case '9':
2929 /* If digit is not part of identifier, it starts a number,
2930 which means that following letters are not an identifier.
2931 "0x5" does not refer to an identifier "x5".
2932 So copy all alphanumerics that follow without accumulating
2933 as an identifier. Periods also, for sake of "3.e7". */
2935 if (ident_length == 0) {
2936 for (;;) {
2937 while (ibp[0] == '\\' && ibp[1] == '\n') {
2938 ++ip->lineno;
2939 ibp += 2;
2941 c = *ibp++;
2942 if (!is_idchar[c] && c != '.') {
2943 --ibp;
2944 break;
2946 *obp++ = c;
2947 /* A sign can be part of a preprocessing number
2948 if it follows an e. */
2949 if (c == 'e' || c == 'E') {
2950 while (ibp[0] == '\\' && ibp[1] == '\n') {
2951 ++ip->lineno;
2952 ibp += 2;
2954 if (*ibp == '+' || *ibp == '-') {
2955 *obp++ = *ibp++;
2956 /* But traditional C does not let the token go past the sign. */
2957 if (traditional)
2958 break;
2962 break;
2964 /* fall through */
2966 case '_':
2967 case 'a': case 'b': case 'c': case 'd': case 'e': case 'f':
2968 case 'g': case 'h': case 'i': case 'j': case 'k': case 'l':
2969 case 'm': case 'n': case 'o': case 'p': case 'q': case 'r':
2970 case 's': case 't': case 'u': case 'v': case 'w': case 'x':
2971 case 'y': case 'z':
2972 case 'A': case 'B': case 'C': case 'D': case 'E': case 'F':
2973 case 'G': case 'H': case 'I': case 'J': case 'K': case 'L':
2974 case 'M': case 'N': case 'O': case 'P': case 'Q': case 'R':
2975 case 'S': case 'T': case 'U': case 'V': case 'W': case 'X':
2976 case 'Y': case 'Z':
2977 letter:
2978 ident_length++;
2979 /* Compute step of hash function, to avoid a proc call on every token */
2980 hash = HASHSTEP (hash, c);
2981 break;
2983 case '\n':
2984 if (ip->fname == 0 && *ibp == '-') {
2985 /* Newline - inhibits expansion of preceding token.
2986 If expanding a macro arg, we keep the newline -.
2987 In final output, it is deleted.
2988 We recognize Newline - in macro bodies and macro args. */
2989 if (! concatenated) {
2990 ident_length = 0;
2991 hash = 0;
2993 ibp++;
2994 if (!output_marks) {
2995 obp--;
2996 } else {
2997 /* If expanding a macro arg, keep the newline -. */
2998 *obp++ = '-';
3000 break;
3003 /* If reprocessing a macro expansion, newline is a special marker. */
3004 else if (ip->macro != 0) {
3005 /* Newline White is a "funny space" to separate tokens that are
3006 supposed to be separate but without space between.
3007 Here White means any whitespace character.
3008 Newline - marks a recursive macro use that is not
3009 supposed to be expandable. */
3011 if (is_space[*ibp]) {
3012 /* Newline Space does not prevent expansion of preceding token
3013 so expand the preceding token and then come back. */
3014 if (ident_length > 0)
3015 goto specialchar;
3017 /* If generating final output, newline space makes a space. */
3018 if (!output_marks) {
3019 obp[-1] = *ibp++;
3020 /* And Newline Newline makes a newline, so count it. */
3021 if (obp[-1] == '\n')
3022 op->lineno++;
3023 } else {
3024 /* If expanding a macro arg, keep the newline space.
3025 If the arg gets stringified, newline space makes nothing. */
3026 *obp++ = *ibp++;
3028 } else abort (); /* Newline followed by something random? */
3029 break;
3032 /* If there is a pending identifier, handle it and come back here. */
3033 if (ident_length > 0)
3034 goto specialchar;
3036 beg_of_line = ibp;
3038 /* Update the line counts and output a #line if necessary. */
3039 ++ip->lineno;
3040 ++op->lineno;
3041 if (ip->lineno != op->lineno) {
3042 op->bufp = obp;
3043 output_line_command (ip, op, 1, same_file);
3044 check_expand (op, limit - ibp);
3045 obp = op->bufp;
3047 break;
3049 /* Come here either after (1) a null character that is part of the input
3050 or (2) at the end of the input, because there is a null there. */
3051 case 0:
3052 if (ibp <= limit)
3053 /* Our input really contains a null character. */
3054 goto randomchar;
3056 /* At end of a macro-expansion level, pop it and read next level. */
3057 if (ip->macro != 0) {
3058 obp--;
3059 ibp--;
3060 /* If traditional, and we have an identifier that ends here,
3061 process it now, so we get the right error for recursion. */
3062 if (traditional && ident_length
3063 && ! is_idchar[*instack[indepth - 1].bufp]) {
3064 redo_char = 1;
3065 goto randomchar;
3067 POPMACRO;
3068 RECACHE;
3069 break;
3072 /* If we don't have a pending identifier,
3073 return at end of input. */
3074 if (ident_length == 0) {
3075 obp--;
3076 ibp--;
3077 op->bufp = obp;
3078 ip->bufp = ibp;
3079 goto ending;
3082 /* If we do have a pending identifier, just consider this null
3083 a special character and arrange to dispatch on it again.
3084 The second time, IDENT_LENGTH will be zero so we will return. */
3086 /* Fall through */
3088 specialchar:
3090 /* Handle the case of a character such as /, ', " or null
3091 seen following an identifier. Back over it so that
3092 after the identifier is processed the special char
3093 will be dispatched on again. */
3095 ibp--;
3096 obp--;
3097 redo_char = 1;
3099 default:
3101 randomchar:
3103 if (ident_length > 0) {
3104 register HASHNODE *hp;
3106 /* We have just seen an identifier end. If it's a macro, expand it.
3108 IDENT_LENGTH is the length of the identifier
3109 and HASH is its hash code.
3111 The identifier has already been copied to the output,
3112 so if it is a macro we must remove it.
3114 If REDO_CHAR is 0, the char that terminated the identifier
3115 has been skipped in the output and the input.
3116 OBP-IDENT_LENGTH-1 points to the identifier.
3117 If the identifier is a macro, we must back over the terminator.
3119 If REDO_CHAR is 1, the terminating char has already been
3120 backed over. OBP-IDENT_LENGTH points to the identifier. */
3122 if (!pcp_outfile || pcp_inside_if) {
3123 startagain:
3124 for (hp = hashtab[MAKE_POS (hash) % HASHSIZE]; hp != NULL;
3125 hp = hp->next) {
3127 if (hp->length == ident_length) {
3128 int obufp_before_macroname;
3129 int op_lineno_before_macroname;
3130 register int i = ident_length;
3131 register U_CHAR *p = hp->name;
3132 register U_CHAR *q = obp - i;
3133 int disabled;
3135 if (! redo_char)
3136 q--;
3138 do { /* All this to avoid a strncmp () */
3139 if (*p++ != *q++)
3140 goto hashcollision;
3141 } while (--i);
3143 /* We found a use of a macro name.
3144 see if the context shows it is a macro call. */
3146 /* Back up over terminating character if not already done. */
3147 if (! redo_char) {
3148 ibp--;
3149 obp--;
3152 /* Save this as a displacement from the beginning of the output
3153 buffer. We can not save this as a position in the output
3154 buffer, because it may get realloc'ed by RECACHE. */
3155 obufp_before_macroname = (obp - op->buf) - ident_length;
3156 op_lineno_before_macroname = op->lineno;
3158 if (hp->type == T_PCSTRING) {
3159 pcstring_used (hp); /* Mark the definition of this key
3160 as needed, ensuring that it
3161 will be output. */
3162 break; /* Exit loop, since the key cannot have a
3163 definition any longer. */
3166 /* Record whether the macro is disabled. */
3167 disabled = hp->type == T_DISABLED;
3169 /* This looks like a macro ref, but if the macro was disabled,
3170 just copy its name and put in a marker if requested. */
3172 if (disabled) {
3173 #if 0
3174 /* This error check caught useful cases such as
3175 #define foo(x,y) bar (x (y,0), y)
3176 foo (foo, baz) */
3177 if (traditional)
3178 error ("recursive use of macro `%s'", hp->name);
3179 #endif
3181 if (output_marks) {
3182 check_expand (op, limit - ibp + 2);
3183 *obp++ = '\n';
3184 *obp++ = '-';
3186 break;
3189 /* If macro wants an arglist, verify that a '(' follows.
3190 first skip all whitespace, copying it to the output
3191 after the macro name. Then, if there is no '(',
3192 decide this is not a macro call and leave things that way. */
3193 if ((hp->type == T_MACRO || hp->type == T_DISABLED)
3194 && hp->value.defn->nargs >= 0)
3196 U_CHAR *old_ibp = ibp;
3197 U_CHAR *old_obp = obp;
3198 int old_iln = ip->lineno;
3199 int old_oln = op->lineno;
3201 while (1) {
3202 /* Scan forward over whitespace, copying it to the output. */
3203 if (ibp == limit && ip->macro != 0) {
3204 POPMACRO;
3205 RECACHE;
3206 old_ibp = ibp;
3207 old_obp = obp;
3208 old_iln = ip->lineno;
3209 old_oln = op->lineno;
3211 /* A comment: copy it unchanged or discard it. */
3212 else if (*ibp == '/' && ibp[1] == '*') {
3213 if (put_out_comments) {
3214 *obp++ = '/';
3215 *obp++ = '*';
3216 } else if (! traditional) {
3217 *obp++ = ' ';
3219 ibp += 2;
3220 while (ibp + 1 != limit
3221 && !(ibp[0] == '*' && ibp[1] == '/')) {
3222 /* We need not worry about newline-marks,
3223 since they are never found in comments. */
3224 if (*ibp == '\n') {
3225 /* Newline in a file. Count it. */
3226 ++ip->lineno;
3227 ++op->lineno;
3229 if (put_out_comments)
3230 *obp++ = *ibp++;
3231 else
3232 ibp++;
3234 ibp += 2;
3235 if (put_out_comments) {
3236 *obp++ = '*';
3237 *obp++ = '/';
3240 else if (is_space[*ibp]) {
3241 *obp++ = *ibp++;
3242 if (ibp[-1] == '\n') {
3243 if (ip->macro == 0) {
3244 /* Newline in a file. Count it. */
3245 ++ip->lineno;
3246 ++op->lineno;
3247 } else if (!output_marks) {
3248 /* A newline mark, and we don't want marks
3249 in the output. If it is newline-hyphen,
3250 discard it entirely. Otherwise, it is
3251 newline-whitechar, so keep the whitechar. */
3252 obp--;
3253 if (*ibp == '-')
3254 ibp++;
3255 else {
3256 if (*ibp == '\n')
3257 ++op->lineno;
3258 *obp++ = *ibp++;
3260 } else {
3261 /* A newline mark; copy both chars to the output. */
3262 *obp++ = *ibp++;
3266 else break;
3268 if (*ibp != '(') {
3269 /* It isn't a macro call.
3270 Put back the space that we just skipped. */
3271 ibp = old_ibp;
3272 obp = old_obp;
3273 ip->lineno = old_iln;
3274 op->lineno = old_oln;
3275 /* Exit the for loop. */
3276 break;
3280 /* This is now known to be a macro call.
3281 Discard the macro name from the output,
3282 along with any following whitespace just copied,
3283 but preserve newlines if not outputting marks since this
3284 is more likely to do the right thing with line numbers. */
3285 obp = op->buf + obufp_before_macroname;
3286 if (output_marks)
3287 op->lineno = op_lineno_before_macroname;
3288 else {
3289 int newlines = op->lineno - op_lineno_before_macroname;
3290 while (0 < newlines--)
3291 *obp++ = '\n';
3294 /* Prevent accidental token-pasting with a character
3295 before the macro call. */
3296 if (!traditional && obp != op->buf) {
3297 switch (obp[-1]) {
3298 case '&': case '+': case '-': case '<': case '>': case '|':
3299 /* If we are expanding a macro arg, make a newline marker
3300 to separate the tokens. If we are making real output,
3301 a plain space will do. */
3302 if (output_marks)
3303 *obp++ = '\n';
3304 *obp++ = ' ';
3308 /* Expand the macro, reading arguments as needed,
3309 and push the expansion on the input stack. */
3310 ip->bufp = ibp;
3311 op->bufp = obp;
3312 macroexpand (hp, op);
3314 /* Reexamine input stack, since macroexpand has pushed
3315 a new level on it. */
3316 obp = op->bufp;
3317 RECACHE;
3318 break;
3320 hashcollision:
3322 } /* End hash-table-search loop */
3324 ident_length = hash = 0; /* Stop collecting identifier */
3325 redo_char = 0;
3326 concatenated = 0;
3327 } /* End if (ident_length > 0) */
3328 } /* End switch */
3329 } /* End per-char loop */
3331 /* Come here to return -- but first give an error message
3332 if there was an unterminated successful conditional. */
3333 ending:
3334 if (if_stack != ip->if_stack)
3336 char *str = "unknown";
3338 switch (if_stack->type)
3340 case T_IF:
3341 str = "if";
3342 break;
3343 case T_IFDEF:
3344 str = "ifdef";
3345 break;
3346 case T_IFNDEF:
3347 str = "ifndef";
3348 break;
3349 case T_ELSE:
3350 str = "else";
3351 break;
3352 case T_ELIF:
3353 str = "elif";
3354 break;
3357 error_with_line (line_for_error (if_stack->lineno),
3358 "unterminated `#%s' conditional", str);
3360 if_stack = ip->if_stack;
3364 * Rescan a string into a temporary buffer and return the result
3365 * as a FILE_BUF. Note this function returns a struct, not a pointer.
3367 * OUTPUT_MARKS nonzero means keep Newline markers found in the input
3368 * and insert such markers when appropriate. See `rescan' for details.
3369 * OUTPUT_MARKS is 1 for macroexpanding a macro argument separately
3370 * before substitution; it is 0 for other uses.
3372 static FILE_BUF
3373 expand_to_temp_buffer (buf, limit, output_marks, assertions)
3374 U_CHAR *buf, *limit;
3375 int output_marks, assertions;
3377 register FILE_BUF *ip;
3378 FILE_BUF obuf;
3379 int length = limit - buf;
3380 U_CHAR *buf1;
3381 int odepth = indepth;
3382 int save_assertions_flag = assertions_flag;
3384 assertions_flag = assertions;
3386 if (length < 0)
3387 abort ();
3389 /* Set up the input on the input stack. */
3391 buf1 = (U_CHAR *) alloca (length + 1);
3393 register U_CHAR *p1 = buf;
3394 register U_CHAR *p2 = buf1;
3396 while (p1 != limit)
3397 *p2++ = *p1++;
3399 buf1[length] = 0;
3401 /* Set up to receive the output. */
3403 obuf.length = length * 2 + 100; /* Usually enough. Why be stingy? */
3404 obuf.bufp = obuf.buf = (U_CHAR *) xmalloc (obuf.length);
3405 obuf.fname = 0;
3406 obuf.macro = 0;
3407 obuf.free_ptr = 0;
3409 CHECK_DEPTH ({return obuf;});
3411 ++indepth;
3413 ip = &instack[indepth];
3414 ip->fname = 0;
3415 ip->nominal_fname = 0;
3416 ip->system_header_p = 0;
3417 ip->macro = 0;
3418 ip->free_ptr = 0;
3419 ip->length = length;
3420 ip->buf = ip->bufp = buf1;
3421 ip->if_stack = if_stack;
3423 ip->lineno = obuf.lineno = 1;
3425 /* Scan the input, create the output. */
3426 rescan (&obuf, output_marks);
3428 /* Pop input stack to original state. */
3429 --indepth;
3431 if (indepth != odepth)
3432 abort ();
3434 /* Record the output. */
3435 obuf.length = obuf.bufp - obuf.buf;
3437 assertions_flag = save_assertions_flag;
3438 return obuf;
3442 * Process a # directive. Expects IP->bufp to point after the '#', as in
3443 * `#define foo bar'. Passes to the command handler
3444 * (do_define, do_include, etc.): the addresses of the 1st and
3445 * last chars of the command (starting immediately after the #
3446 * keyword), plus op and the keyword table pointer. If the command
3447 * contains comments it is copied into a temporary buffer sans comments
3448 * and the temporary buffer is passed to the command handler instead.
3449 * Likewise for backslash-newlines.
3451 * Returns nonzero if this was a known # directive.
3452 * Otherwise, returns zero, without advancing the input pointer.
3455 static int
3456 handle_directive (ip, op)
3457 FILE_BUF *ip, *op;
3459 register U_CHAR *bp, *cp;
3460 register struct directive *kt;
3461 register int ident_length;
3462 U_CHAR *resume_p;
3464 /* Nonzero means we must copy the entire command
3465 to get rid of comments or backslash-newlines. */
3466 int copy_command = 0;
3468 U_CHAR *ident, *after_ident;
3470 bp = ip->bufp;
3472 /* Record where the directive started. do_xifdef needs this. */
3473 directive_start = bp - 1;
3475 /* Skip whitespace and \-newline. */
3476 while (1) {
3477 if (is_hor_space[*bp]) {
3478 if (*bp != ' ' && *bp != '\t' && pedantic)
3479 pedwarn ("%s in preprocessing directive", char_name[*bp]);
3480 bp++;
3481 } else if (*bp == '/' && (bp[1] == '*'
3482 || (cplusplus_comments && bp[1] == '/'))) {
3483 ip->bufp = bp + 2;
3484 skip_to_end_of_comment (ip, &ip->lineno, 0);
3485 bp = ip->bufp;
3486 } else if (*bp == '\\' && bp[1] == '\n') {
3487 bp += 2; ip->lineno++;
3488 } else break;
3491 /* Now find end of directive name.
3492 If we encounter a backslash-newline, exchange it with any following
3493 symbol-constituents so that we end up with a contiguous name. */
3495 cp = bp;
3496 while (1) {
3497 if (is_idchar[*cp])
3498 cp++;
3499 else {
3500 if (*cp == '\\' && cp[1] == '\n')
3501 name_newline_fix (cp);
3502 if (is_idchar[*cp])
3503 cp++;
3504 else break;
3507 ident_length = cp - bp;
3508 ident = bp;
3509 after_ident = cp;
3511 /* A line of just `#' becomes blank. */
3513 if (ident_length == 0 && *after_ident == '\n') {
3514 ip->bufp = after_ident;
3515 return 1;
3518 if (ident_length == 0 || !is_idstart[*ident]) {
3519 U_CHAR *p = ident;
3520 while (is_idchar[*p]) {
3521 if (*p < '0' || *p > '9')
3522 break;
3523 p++;
3525 /* Handle # followed by a line number. */
3526 if (p != ident && !is_idchar[*p]) {
3527 static struct directive line_directive_table[] = {
3528 { 4, do_line, "line", T_LINE},
3530 if (pedantic)
3531 pedwarn ("`#' followed by integer");
3532 after_ident = ident;
3533 kt = line_directive_table;
3534 goto old_linenum;
3537 /* Avoid error for `###' and similar cases unless -pedantic. */
3538 if (p == ident) {
3539 while (*p == '#' || is_hor_space[*p]) p++;
3540 if (*p == '\n') {
3541 if (pedantic && !lang_asm)
3542 warning ("invalid preprocessor directive");
3543 return 0;
3547 if (!lang_asm)
3548 error ("invalid preprocessor directive name");
3550 return 0;
3554 * Decode the keyword and call the appropriate expansion
3555 * routine, after moving the input pointer up to the next line.
3557 for (kt = directive_table; kt->length > 0; kt++) {
3558 if (kt->length == ident_length && !strncmp (kt->name, ident, ident_length)) {
3559 register U_CHAR *buf;
3560 register U_CHAR *limit;
3561 int unterminated;
3562 int junk;
3563 int *already_output;
3565 /* Nonzero means do not delete comments within the directive.
3566 #define needs this when -traditional. */
3567 int keep_comments;
3569 old_linenum:
3571 limit = ip->buf + ip->length;
3572 unterminated = 0;
3573 already_output = 0;
3574 keep_comments = traditional && kt->traditional_comments;
3575 /* #import is defined only in Objective C, or when on the NeXT. */
3576 if (kt->type == T_IMPORT && !(objc || lookup ("__NeXT__", -1, -1)))
3577 break;
3579 /* Find the end of this command (first newline not backslashed
3580 and not in a string or comment).
3581 Set COPY_COMMAND if the command must be copied
3582 (it contains a backslash-newline or a comment). */
3584 buf = bp = after_ident;
3585 while (bp < limit) {
3586 register U_CHAR c = *bp++;
3587 switch (c) {
3588 case '\\':
3589 if (bp < limit) {
3590 if (*bp == '\n') {
3591 ip->lineno++;
3592 copy_command = 1;
3593 bp++;
3594 } else if (traditional)
3595 bp++;
3597 break;
3599 case '\'':
3600 case '\"':
3601 bp = skip_quoted_string (bp - 1, limit, ip->lineno, &ip->lineno, &copy_command, &unterminated);
3602 /* Don't bother calling the directive if we already got an error
3603 message due to unterminated string. Skip everything and pretend
3604 we called the directive. */
3605 if (unterminated) {
3606 if (traditional) {
3607 /* Traditional preprocessing permits unterminated strings. */
3608 ip->bufp = bp;
3609 goto endloop1;
3611 ip->bufp = bp;
3612 return 1;
3614 break;
3616 /* <...> is special for #include. */
3617 case '<':
3618 if (!kt->angle_brackets)
3619 break;
3620 while (bp < limit && *bp != '>' && *bp != '\n') {
3621 if (*bp == '\\' && bp[1] == '\n') {
3622 ip->lineno++;
3623 copy_command = 1;
3624 bp++;
3626 bp++;
3628 break;
3630 case '/':
3631 if (*bp == '\\' && bp[1] == '\n')
3632 newline_fix (bp);
3633 if (*bp == '*'
3634 || (cplusplus_comments && *bp == '/')) {
3635 U_CHAR *obp = bp - 1;
3636 ip->bufp = bp + 1;
3637 skip_to_end_of_comment (ip, &ip->lineno, 0);
3638 bp = ip->bufp;
3639 /* No need to copy the command because of a comment at the end;
3640 just don't include the comment in the directive. */
3641 if (bp == limit || *bp == '\n') {
3642 bp = obp;
3643 goto endloop1;
3645 /* Don't remove the comments if -traditional. */
3646 if (! keep_comments)
3647 copy_command++;
3649 break;
3651 case '\f':
3652 case '\r':
3653 case '\v':
3654 if (pedantic)
3655 pedwarn ("%s in preprocessing directive", char_name[c]);
3656 break;
3658 case '\n':
3659 --bp; /* Point to the newline */
3660 ip->bufp = bp;
3661 goto endloop1;
3664 ip->bufp = bp;
3666 endloop1:
3667 resume_p = ip->bufp;
3668 /* BP is the end of the directive.
3669 RESUME_P is the next interesting data after the directive.
3670 A comment may come between. */
3672 /* If a directive should be copied through, and -E was given,
3673 pass it through before removing comments. */
3674 if (!no_output && kt->pass_thru && put_out_comments) {
3675 int len;
3677 /* Output directive name. */
3678 check_expand (op, kt->length + 2);
3679 /* Make sure # is at the start of a line */
3680 if (op->bufp > op->buf && op->bufp[-1] != '\n') {
3681 op->lineno++;
3682 *op->bufp++ = '\n';
3684 *op->bufp++ = '#';
3685 bcopy (kt->name, op->bufp, kt->length);
3686 op->bufp += kt->length;
3688 /* Output arguments. */
3689 len = (bp - buf);
3690 check_expand (op, len);
3691 bcopy (buf, (char *) op->bufp, len);
3692 op->bufp += len;
3693 /* Take account of any (escaped) newlines just output. */
3694 while (--len >= 0)
3695 if (buf[len] == '\n')
3696 op->lineno++;
3698 already_output = &junk;
3699 } /* Don't we need a newline or #line? */
3701 if (copy_command) {
3702 register U_CHAR *xp = buf;
3703 /* Need to copy entire command into temp buffer before dispatching */
3705 cp = (U_CHAR *) alloca (bp - buf + 5); /* room for cmd plus
3706 some slop */
3707 buf = cp;
3709 /* Copy to the new buffer, deleting comments
3710 and backslash-newlines (and whitespace surrounding the latter). */
3712 while (xp < bp) {
3713 register U_CHAR c = *xp++;
3714 *cp++ = c;
3716 switch (c) {
3717 case '\n':
3718 abort (); /* A bare newline should never part of the line. */
3719 break;
3721 /* <...> is special for #include. */
3722 case '<':
3723 if (!kt->angle_brackets)
3724 break;
3725 while (xp < bp && c != '>') {
3726 c = *xp++;
3727 if (c == '\\' && xp < bp && *xp == '\n')
3728 xp++;
3729 else
3730 *cp++ = c;
3732 break;
3734 case '\\':
3735 if (*xp == '\n') {
3736 xp++;
3737 cp--;
3738 if (cp != buf && is_space[cp[-1]]) {
3739 while (cp != buf && is_space[cp[-1]]) cp--;
3740 cp++;
3741 SKIP_WHITE_SPACE (xp);
3742 } else if (is_space[*xp]) {
3743 *cp++ = *xp++;
3744 SKIP_WHITE_SPACE (xp);
3746 } else if (traditional && xp < bp) {
3747 *cp++ = *xp++;
3749 break;
3751 case '\'':
3752 case '\"':
3754 register U_CHAR *bp1
3755 = skip_quoted_string (xp - 1, bp, ip->lineno,
3756 NULL_PTR, NULL_PTR, NULL_PTR);
3757 while (xp != bp1)
3758 if (*xp == '\\') {
3759 if (*++xp != '\n')
3760 *cp++ = '\\';
3761 else
3762 xp++;
3763 } else
3764 *cp++ = *xp++;
3766 break;
3768 case '/':
3769 if (*xp == '*'
3770 || (cplusplus_comments && *xp == '/')) {
3771 ip->bufp = xp + 1;
3772 /* If we already copied the command through,
3773 already_output != 0 prevents outputting comment now. */
3774 skip_to_end_of_comment (ip, already_output, 0);
3775 if (keep_comments)
3776 while (xp != ip->bufp)
3777 *cp++ = *xp++;
3778 /* Delete or replace the slash. */
3779 else if (traditional)
3780 cp--;
3781 else
3782 cp[-1] = ' ';
3783 xp = ip->bufp;
3788 /* Null-terminate the copy. */
3790 *cp = 0;
3791 } else
3792 cp = bp;
3794 ip->bufp = resume_p;
3796 /* Some directives should be written out for cc1 to process,
3797 just as if they were not defined. And sometimes we're copying
3798 definitions through. */
3800 if (!no_output && already_output == 0
3801 && (kt->pass_thru
3802 || (kt->type == T_DEFINE
3803 && (dump_macros == dump_names
3804 || dump_macros == dump_definitions)))) {
3805 int len;
3807 /* Output directive name. */
3808 check_expand (op, kt->length + 1);
3809 *op->bufp++ = '#';
3810 bcopy (kt->name, (char *) op->bufp, kt->length);
3811 op->bufp += kt->length;
3813 if (kt->pass_thru || dump_macros == dump_definitions) {
3814 /* Output arguments. */
3815 len = (cp - buf);
3816 check_expand (op, len);
3817 bcopy (buf, (char *) op->bufp, len);
3818 op->bufp += len;
3819 } else if (kt->type == T_DEFINE && dump_macros == dump_names) {
3820 U_CHAR *xp = buf;
3821 U_CHAR *yp;
3822 SKIP_WHITE_SPACE (xp);
3823 yp = xp;
3824 while (is_idchar[*xp]) xp++;
3825 len = (xp - yp);
3826 check_expand (op, len + 1);
3827 *op->bufp++ = ' ';
3828 bcopy (yp, op->bufp, len);
3829 op->bufp += len;
3831 } /* Don't we need a newline or #line? */
3833 /* Call the appropriate command handler. buf now points to
3834 either the appropriate place in the input buffer, or to
3835 the temp buffer if it was necessary to make one. cp
3836 points to the first char after the contents of the (possibly
3837 copied) command, in either case. */
3838 (*kt->func) (buf, cp, op, kt);
3839 check_expand (op, ip->length - (ip->bufp - ip->buf));
3841 return 1;
3845 /* It is deliberate that we don't warn about undefined directives.
3846 That is the responsibility of cc1. */
3847 return 0;
3850 static struct tm *
3851 timestamp ()
3853 static struct tm *timebuf;
3854 if (!timebuf) {
3855 time_t t = time ((time_t *)0);
3856 timebuf = localtime (&t);
3858 return timebuf;
3861 static char *monthnames[] = {"Jan", "Feb", "Mar", "Apr", "May", "Jun",
3862 "Jul", "Aug", "Sep", "Oct", "Nov", "Dec",
3866 * expand things like __FILE__. Place the expansion into the output
3867 * buffer *without* rescanning.
3870 static void
3871 special_symbol (hp, op)
3872 HASHNODE *hp;
3873 FILE_BUF *op;
3875 char *buf;
3876 int i, len;
3877 int true_indepth;
3878 FILE_BUF *ip = NULL;
3879 struct tm *timebuf;
3881 int paren = 0; /* For special `defined' keyword */
3883 if (pcp_outfile && pcp_inside_if
3884 && hp->type != T_SPEC_DEFINED && hp->type != T_CONST)
3885 error ("Predefined macro `%s' used inside `#if' during precompilation",
3886 hp->name);
3888 for (i = indepth; i >= 0; i--)
3889 if (instack[i].fname != NULL) {
3890 ip = &instack[i];
3891 break;
3893 if (ip == NULL) {
3894 error ("cccp error: not in any file?!");
3895 return; /* the show must go on */
3898 switch (hp->type) {
3899 case T_FILE:
3900 case T_BASE_FILE:
3902 char *string;
3903 if (hp->type == T_FILE)
3904 string = ip->nominal_fname;
3905 else
3906 string = instack[0].nominal_fname;
3908 if (string)
3910 buf = (char *) alloca (3 + 4 * strlen (string));
3911 quote_string (buf, string);
3913 else
3914 buf = "\"\"";
3916 break;
3919 case T_INCLUDE_LEVEL:
3920 true_indepth = 0;
3921 for (i = indepth; i >= 0; i--)
3922 if (instack[i].fname != NULL)
3923 true_indepth++;
3925 buf = (char *) alloca (8); /* Eight bytes ought to be more than enough */
3926 sprintf (buf, "%d", true_indepth - 1);
3927 break;
3929 case T_VERSION:
3930 buf = (char *) alloca (3 + strlen (version_string));
3931 sprintf (buf, "\"%s\"", version_string);
3932 break;
3934 #ifndef NO_BUILTIN_SIZE_TYPE
3935 case T_SIZE_TYPE:
3936 buf = SIZE_TYPE;
3937 break;
3938 #endif
3940 #ifndef NO_BUILTIN_PTRDIFF_TYPE
3941 case T_PTRDIFF_TYPE:
3942 buf = PTRDIFF_TYPE;
3943 break;
3944 #endif
3946 case T_WCHAR_TYPE:
3947 buf = wchar_type;
3948 break;
3950 case T_USER_LABEL_PREFIX_TYPE:
3951 buf = USER_LABEL_PREFIX;
3952 break;
3954 case T_REGISTER_PREFIX_TYPE:
3955 buf = REGISTER_PREFIX;
3956 break;
3958 case T_CONST:
3959 buf = (char *) alloca (4 * sizeof (int));
3960 sprintf (buf, "%d", hp->value.ival);
3961 if (pcp_inside_if && pcp_outfile)
3962 /* Output a precondition for this macro use */
3963 fprintf (pcp_outfile, "#define %s %d\n", hp->name, hp->value.ival);
3964 break;
3966 case T_SPECLINE:
3967 buf = (char *) alloca (10);
3968 sprintf (buf, "%d", ip->lineno);
3969 break;
3971 case T_DATE:
3972 case T_TIME:
3973 buf = (char *) alloca (20);
3974 timebuf = timestamp ();
3975 if (hp->type == T_DATE)
3976 sprintf (buf, "\"%s %2d %4d\"", monthnames[timebuf->tm_mon],
3977 timebuf->tm_mday, timebuf->tm_year + 1900);
3978 else
3979 sprintf (buf, "\"%02d:%02d:%02d\"", timebuf->tm_hour, timebuf->tm_min,
3980 timebuf->tm_sec);
3981 break;
3983 case T_SPEC_DEFINED:
3984 buf = " 0 "; /* Assume symbol is not defined */
3985 ip = &instack[indepth];
3986 SKIP_WHITE_SPACE (ip->bufp);
3987 if (*ip->bufp == '(') {
3988 paren++;
3989 ip->bufp++; /* Skip over the paren */
3990 SKIP_WHITE_SPACE (ip->bufp);
3993 if (!is_idstart[*ip->bufp])
3994 goto oops;
3995 if (hp = lookup (ip->bufp, -1, -1)) {
3996 if (pcp_outfile && pcp_inside_if
3997 && (hp->type == T_CONST
3998 || (hp->type == T_MACRO && hp->value.defn->predefined)))
3999 /* Output a precondition for this macro use. */
4000 fprintf (pcp_outfile, "#define %s\n", hp->name);
4001 buf = " 1 ";
4003 else
4004 if (pcp_outfile && pcp_inside_if) {
4005 /* Output a precondition for this macro use */
4006 U_CHAR *cp = ip->bufp;
4007 fprintf (pcp_outfile, "#undef ");
4008 while (is_idchar[*cp]) /* Ick! */
4009 fputc (*cp++, pcp_outfile);
4010 putc ('\n', pcp_outfile);
4012 while (is_idchar[*ip->bufp])
4013 ++ip->bufp;
4014 SKIP_WHITE_SPACE (ip->bufp);
4015 if (paren) {
4016 if (*ip->bufp != ')')
4017 goto oops;
4018 ++ip->bufp;
4020 break;
4022 oops:
4024 error ("`defined' without an identifier");
4025 break;
4027 default:
4028 error ("cccp error: invalid special hash type"); /* time for gdb */
4029 abort ();
4031 len = strlen (buf);
4032 check_expand (op, len);
4033 bcopy (buf, (char *) op->bufp, len);
4034 op->bufp += len;
4036 return;
4040 /* Routines to handle #directives */
4042 /* Handle #include and #import.
4043 This function expects to see "fname" or <fname> on the input. */
4045 static int
4046 do_include (buf, limit, op, keyword)
4047 U_CHAR *buf, *limit;
4048 FILE_BUF *op;
4049 struct directive *keyword;
4051 int importing = (keyword->type == T_IMPORT);
4052 int skip_dirs = (keyword->type == T_INCLUDE_NEXT);
4053 static int import_warning = 0;
4054 char *fname; /* Dynamically allocated fname buffer */
4055 char *pcftry;
4056 char *pcfname;
4057 U_CHAR *fbeg, *fend; /* Beginning and end of fname */
4059 struct file_name_list *search_start = include; /* Chain of dirs to search */
4060 struct file_name_list dsp[1]; /* First in chain, if #include "..." */
4061 struct file_name_list *searchptr = 0;
4062 int flen;
4064 int f; /* file number */
4066 int retried = 0; /* Have already tried macro
4067 expanding the include line*/
4068 int angle_brackets = 0; /* 0 for "...", 1 for <...> */
4069 int pcf = -1;
4070 char *pcfbuf;
4071 int pcfbuflimit;
4072 int pcfnum;
4073 f= -1; /* JF we iz paranoid! */
4075 if (importing && warn_import && !inhibit_warnings
4076 && !instack[indepth].system_header_p && !import_warning) {
4077 import_warning = 1;
4078 warning ("using `#import' is not recommended");
4079 fprintf (stderr, "The fact that a certain header file need not be processed more than once\n");
4080 fprintf (stderr, "should be indicated in the header file, not where it is used.\n");
4081 fprintf (stderr, "The best way to do this is with a conditional of this form:\n\n");
4082 fprintf (stderr, " #ifndef _FOO_H_INCLUDED\n");
4083 fprintf (stderr, " #define _FOO_H_INCLUDED\n");
4084 fprintf (stderr, " ... <real contents of file> ...\n");
4085 fprintf (stderr, " #endif /* Not _FOO_H_INCLUDED */\n\n");
4086 fprintf (stderr, "Then users can use `#include' any number of times.\n");
4087 fprintf (stderr, "GNU C automatically avoids processing the file more than once\n");
4088 fprintf (stderr, "when it is equipped with such a conditional.\n");
4091 get_filename:
4093 fbeg = buf;
4094 SKIP_WHITE_SPACE (fbeg);
4095 /* Discard trailing whitespace so we can easily see
4096 if we have parsed all the significant chars we were given. */
4097 while (limit != fbeg && is_hor_space[limit[-1]]) limit--;
4099 switch (*fbeg++) {
4100 case '\"':
4102 FILE_BUF *fp;
4103 /* Copy the operand text, concatenating the strings. */
4105 U_CHAR *fin = fbeg;
4106 fbeg = (U_CHAR *) alloca (limit - fbeg + 1);
4107 fend = fbeg;
4108 while (fin != limit) {
4109 while (fin != limit && *fin != '\"')
4110 *fend++ = *fin++;
4111 fin++;
4112 if (fin == limit)
4113 break;
4114 /* If not at the end, there had better be another string. */
4115 /* Skip just horiz space, and don't go past limit. */
4116 while (fin != limit && is_hor_space[*fin]) fin++;
4117 if (fin != limit && *fin == '\"')
4118 fin++;
4119 else
4120 goto fail;
4123 *fend = 0;
4125 /* We have "filename". Figure out directory this source
4126 file is coming from and put it on the front of the list. */
4128 /* If -I- was specified, don't search current dir, only spec'd ones. */
4129 if (ignore_srcdir) break;
4131 for (fp = &instack[indepth]; fp >= instack; fp--)
4133 int n;
4134 char *ep,*nam;
4136 if ((nam = fp->nominal_fname) != NULL) {
4137 /* Found a named file. Figure out dir of the file,
4138 and put it in front of the search list. */
4139 dsp[0].next = search_start;
4140 search_start = dsp;
4141 #ifndef VMS
4142 ep = rindex (nam, '/');
4143 #else /* VMS */
4144 ep = rindex (nam, ']');
4145 if (ep == NULL) ep = rindex (nam, '>');
4146 if (ep == NULL) ep = rindex (nam, ':');
4147 if (ep != NULL) ep++;
4148 #endif /* VMS */
4149 if (ep != NULL) {
4150 n = ep - nam;
4151 dsp[0].fname = (char *) alloca (n + 1);
4152 strncpy (dsp[0].fname, nam, n);
4153 dsp[0].fname[n] = '\0';
4154 if (n + INCLUDE_LEN_FUDGE > max_include_len)
4155 max_include_len = n + INCLUDE_LEN_FUDGE;
4156 } else {
4157 dsp[0].fname = 0; /* Current directory */
4159 dsp[0].got_name_map = 0;
4160 break;
4163 break;
4166 case '<':
4167 fend = fbeg;
4168 while (fend != limit && *fend != '>') fend++;
4169 if (*fend == '>' && fend + 1 == limit) {
4170 angle_brackets = 1;
4171 /* If -I-, start with the first -I dir after the -I-. */
4172 if (first_bracket_include)
4173 search_start = first_bracket_include;
4174 break;
4176 goto fail;
4178 default:
4179 #ifdef VMS
4181 * Support '#include xyz' like VAX-C to allow for easy use of all the
4182 * decwindow include files. It defaults to '#include <xyz.h>' (so the
4183 * code from case '<' is repeated here) and generates a warning.
4184 * (Note: macro expansion of `xyz' takes precedence.)
4186 if (retried && isalpha(*(--fbeg))) {
4187 fend = fbeg;
4188 while (fend != limit && (!isspace(*fend))) fend++;
4189 warning ("VAX-C-style include specification found, use '#include <filename.h>' !");
4190 if (fend == limit) {
4191 angle_brackets = 1;
4192 /* If -I-, start with the first -I dir after the -I-. */
4193 if (first_bracket_include)
4194 search_start = first_bracket_include;
4195 break;
4198 #endif
4200 fail:
4201 if (retried) {
4202 error ("`#%s' expects \"FILENAME\" or <FILENAME>", keyword->name);
4203 return 0;
4204 } else {
4205 /* Expand buffer and then remove any newline markers.
4206 We can't just tell expand_to_temp_buffer to omit the markers,
4207 since it would put extra spaces in include file names. */
4208 FILE_BUF trybuf;
4209 U_CHAR *src;
4210 trybuf = expand_to_temp_buffer (buf, limit, 1, 0);
4211 src = trybuf.buf;
4212 buf = (U_CHAR *) alloca (trybuf.bufp - trybuf.buf + 1);
4213 limit = buf;
4214 while (src != trybuf.bufp) {
4215 switch ((*limit++ = *src++)) {
4216 case '\n':
4217 limit--;
4218 src++;
4219 break;
4221 case '\'':
4222 case '\"':
4224 U_CHAR *src1 = skip_quoted_string (src - 1, trybuf.bufp, 0,
4225 NULL_PTR, NULL_PTR, NULL_PTR);
4226 while (src != src1)
4227 *limit++ = *src++;
4229 break;
4232 *limit = 0;
4233 free (trybuf.buf);
4234 retried++;
4235 goto get_filename;
4239 /* For #include_next, skip in the search path
4240 past the dir in which the containing file was found. */
4241 if (skip_dirs) {
4242 FILE_BUF *fp;
4243 for (fp = &instack[indepth]; fp >= instack; fp--)
4244 if (fp->fname != NULL) {
4245 /* fp->dir is null if the containing file was specified
4246 with an absolute file name. In that case, don't skip anything. */
4247 if (fp->dir)
4248 search_start = fp->dir->next;
4249 break;
4253 flen = fend - fbeg;
4255 if (flen == 0)
4257 error ("empty file name in `#%s'", keyword->name);
4258 return 0;
4261 /* Allocate this permanently, because it gets stored in the definitions
4262 of macros. */
4263 fname = (char *) xmalloc (max_include_len + flen + 4);
4264 /* + 2 above for slash and terminating null. */
4265 /* + 2 added for '.h' on VMS (to support '#include filename') */
4267 /* If specified file name is absolute, just open it. */
4269 if (*fbeg == '/') {
4270 strncpy (fname, fbeg, flen);
4271 fname[flen] = 0;
4272 if (redundant_include_p (fname))
4273 return 0;
4274 if (importing)
4275 f = lookup_import (fname, NULL_PTR);
4276 else
4277 f = open_include_file (fname, NULL_PTR);
4278 if (f == -2)
4279 return 0; /* Already included this file */
4280 } else {
4281 /* Search directory path, trying to open the file.
4282 Copy each filename tried into FNAME. */
4284 for (searchptr = search_start; searchptr; searchptr = searchptr->next) {
4285 if (searchptr->fname) {
4286 /* The empty string in a search path is ignored.
4287 This makes it possible to turn off entirely
4288 a standard piece of the list. */
4289 if (searchptr->fname[0] == 0)
4290 continue;
4291 strcpy (fname, searchptr->fname);
4292 strcat (fname, "/");
4293 fname[strlen (fname) + flen] = 0;
4294 } else {
4295 fname[0] = 0;
4297 strncat (fname, fbeg, flen);
4298 #ifdef VMS
4299 /* Change this 1/2 Unix 1/2 VMS file specification into a
4300 full VMS file specification */
4301 if (searchptr->fname && (searchptr->fname[0] != 0)) {
4302 /* Fix up the filename */
4303 hack_vms_include_specification (fname);
4304 } else {
4305 /* This is a normal VMS filespec, so use it unchanged. */
4306 strncpy (fname, fbeg, flen);
4307 fname[flen] = 0;
4308 /* if it's '#include filename', add the missing .h */
4309 if (index(fname,'.')==NULL) {
4310 strcat (fname, ".h");
4313 #endif /* VMS */
4314 if (importing)
4315 f = lookup_import (fname, searchptr);
4316 else
4317 f = open_include_file (fname, searchptr);
4318 if (f == -2)
4319 return 0; /* Already included this file */
4320 #ifdef EACCES
4321 else if (f == -1 && errno == EACCES)
4322 warning ("Header file %s exists, but is not readable", fname);
4323 #endif
4324 if (redundant_include_p (fname)) {
4325 close (f);
4326 return 0;
4328 if (f >= 0)
4329 break;
4333 if (f < 0) {
4334 /* A file that was not found. */
4336 strncpy (fname, fbeg, flen);
4337 fname[flen] = 0;
4338 /* If generating dependencies and -MG was specified, we assume missing
4339 files are leaf files, living in the same directory as the source file
4340 or other similar place; these missing files may be generated from
4341 other files and may not exist yet (eg: y.tab.h). */
4342 if (print_deps_missing_files
4343 && print_deps > (angle_brackets || (system_include_depth > 0)))
4345 /* If it was requested as a system header file,
4346 then assume it belongs in the first place to look for such. */
4347 if (angle_brackets)
4349 for (searchptr = search_start; searchptr; searchptr = searchptr->next)
4351 if (searchptr->fname)
4353 char *p;
4355 if (searchptr->fname[0] == 0)
4356 continue;
4357 p = xmalloc (strlen (searchptr->fname)
4358 + strlen (fname) + 2);
4359 strcpy (p, searchptr->fname);
4360 strcat (p, "/");
4361 strcat (p, fname);
4362 deps_output (p, ' ');
4363 break;
4367 else
4369 /* Otherwise, omit the directory, as if the file existed
4370 in the directory with the source. */
4371 deps_output (fname, ' ');
4374 /* If -M was specified, and this header file won't be added to the
4375 dependency list, then don't count this as an error, because we can
4376 still produce correct output. Otherwise, we can't produce correct
4377 output, because there may be dependencies we need inside the missing
4378 file, and we don't know what directory this missing file exists in. */
4379 else if (print_deps
4380 && (print_deps <= (angle_brackets || (system_include_depth > 0))))
4381 warning ("No include path in which to find %s", fname);
4382 else if (search_start)
4383 error_from_errno (fname);
4384 else
4385 error ("No include path in which to find %s", fname);
4386 } else {
4387 struct stat stat_f;
4389 /* Check to see if this include file is a once-only include file.
4390 If so, give up. */
4392 struct file_name_list* ptr;
4394 for (ptr = dont_repeat_files; ptr; ptr = ptr->next) {
4395 if (!strcmp (ptr->fname, fname)) {
4396 close (f);
4397 return 0; /* This file was once'd. */
4401 for (ptr = all_include_files; ptr; ptr = ptr->next) {
4402 if (!strcmp (ptr->fname, fname))
4403 break; /* This file was included before. */
4406 if (ptr == 0) {
4407 /* This is the first time for this file. */
4408 /* Add it to list of files included. */
4410 ptr = (struct file_name_list *) xmalloc (sizeof (struct file_name_list));
4411 ptr->control_macro = 0;
4412 ptr->c_system_include_path = 0;
4413 ptr->next = all_include_files;
4414 all_include_files = ptr;
4415 ptr->fname = savestring (fname);
4416 ptr->got_name_map = 0;
4418 /* For -M, add this file to the dependencies. */
4419 if (print_deps > (angle_brackets || (system_include_depth > 0)))
4420 deps_output (fname, ' ');
4423 /* Handle -H option. */
4424 if (print_include_names) {
4425 output_dots (stderr, indepth);
4426 fprintf (stderr, "%s\n", fname);
4429 if (angle_brackets)
4430 system_include_depth++;
4432 /* Actually process the file. */
4433 add_import (f, fname); /* Record file on "seen" list for #import. */
4435 pcftry = (char *) alloca (strlen (fname) + 30);
4436 pcfbuf = 0;
4437 pcfnum = 0;
4439 fstat (f, &stat_f);
4441 if (!no_precomp)
4442 do {
4443 sprintf (pcftry, "%s%d", fname, pcfnum++);
4445 pcf = open (pcftry, O_RDONLY, 0666);
4446 if (pcf != -1)
4448 struct stat s;
4450 fstat (pcf, &s);
4451 if (bcmp ((char *) &stat_f.st_ino, (char *) &s.st_ino,
4452 sizeof (s.st_ino))
4453 || stat_f.st_dev != s.st_dev)
4455 pcfbuf = check_precompiled (pcf, fname, &pcfbuflimit);
4456 /* Don't need it any more. */
4457 close (pcf);
4459 else
4461 /* Don't need it at all. */
4462 close (pcf);
4463 break;
4466 } while (pcf != -1 && !pcfbuf);
4468 /* Actually process the file */
4469 if (pcfbuf) {
4470 pcfname = xmalloc (strlen (pcftry) + 1);
4471 strcpy (pcfname, pcftry);
4472 pcfinclude (pcfbuf, pcfbuflimit, fname, op);
4474 else
4475 finclude (f, fname, op, is_system_include (fname), searchptr);
4477 if (angle_brackets)
4478 system_include_depth--;
4480 return 0;
4483 /* Return nonzero if there is no need to include file NAME
4484 because it has already been included and it contains a conditional
4485 to make a repeated include do nothing. */
4487 static int
4488 redundant_include_p (name)
4489 char *name;
4491 struct file_name_list *l = all_include_files;
4492 for (; l; l = l->next)
4493 if (! strcmp (name, l->fname)
4494 && l->control_macro
4495 && lookup (l->control_macro, -1, -1))
4496 return 1;
4497 return 0;
4500 /* Return nonzero if the given FILENAME is an absolute pathname which
4501 designates a file within one of the known "system" include file
4502 directories. We assume here that if the given FILENAME looks like
4503 it is the name of a file which resides either directly in a "system"
4504 include file directory, or within any subdirectory thereof, then the
4505 given file must be a "system" include file. This function tells us
4506 if we should suppress pedantic errors/warnings for the given FILENAME.
4508 The value is 2 if the file is a C-language system header file
4509 for which C++ should (on most systems) assume `extern "C"'. */
4511 static int
4512 is_system_include (filename)
4513 register char *filename;
4515 struct file_name_list *searchptr;
4517 for (searchptr = first_system_include; searchptr;
4518 searchptr = searchptr->next)
4519 if (searchptr->fname) {
4520 register char *sys_dir = searchptr->fname;
4521 register unsigned length = strlen (sys_dir);
4523 if (! strncmp (sys_dir, filename, length) && filename[length] == '/')
4525 if (searchptr->c_system_include_path)
4526 return 2;
4527 else
4528 return 1;
4531 return 0;
4534 /* The file_name_map structure holds a mapping of file names for a
4535 particular directory. This mapping is read from the file named
4536 FILE_NAME_MAP_FILE in that directory. Such a file can be used to
4537 map filenames on a file system with severe filename restrictions,
4538 such as DOS. The format of the file name map file is just a series
4539 of lines with two tokens on each line. The first token is the name
4540 to map, and the second token is the actual name to use. */
4542 struct file_name_map
4544 struct file_name_map *map_next;
4545 char *map_from;
4546 char *map_to;
4549 #define FILE_NAME_MAP_FILE "header.gcc"
4551 /* Read a space delimited string of unlimited length from a stdio
4552 file. */
4554 static char *
4555 read_filename_string (ch, f)
4556 int ch;
4557 FILE *f;
4559 char *alloc, *set;
4560 int len;
4562 len = 20;
4563 set = alloc = xmalloc (len + 1);
4564 if (! is_space[ch])
4566 *set++ = ch;
4567 while ((ch = getc (f)) != EOF && ! is_space[ch])
4569 if (set - alloc == len)
4571 len *= 2;
4572 alloc = xrealloc (alloc, len + 1);
4573 set = alloc + len / 2;
4575 *set++ = ch;
4578 *set = '\0';
4579 ungetc (ch, f);
4580 return alloc;
4583 /* Read the file name map file for DIRNAME. */
4585 static struct file_name_map *
4586 read_name_map (dirname)
4587 char *dirname;
4589 /* This structure holds a linked list of file name maps, one per
4590 directory. */
4591 struct file_name_map_list
4593 struct file_name_map_list *map_list_next;
4594 char *map_list_name;
4595 struct file_name_map *map_list_map;
4597 static struct file_name_map_list *map_list;
4598 register struct file_name_map_list *map_list_ptr;
4599 char *name;
4600 FILE *f;
4602 for (map_list_ptr = map_list; map_list_ptr;
4603 map_list_ptr = map_list_ptr->map_list_next)
4604 if (! strcmp (map_list_ptr->map_list_name, dirname))
4605 return map_list_ptr->map_list_map;
4607 map_list_ptr = ((struct file_name_map_list *)
4608 xmalloc (sizeof (struct file_name_map_list)));
4609 map_list_ptr->map_list_name = savestring (dirname);
4610 map_list_ptr->map_list_map = NULL;
4612 name = (char *) alloca (strlen (dirname) + strlen (FILE_NAME_MAP_FILE) + 2);
4613 strcpy (name, dirname);
4614 if (*dirname)
4615 strcat (name, "/");
4616 strcat (name, FILE_NAME_MAP_FILE);
4617 f = fopen (name, "r");
4618 if (!f)
4619 map_list_ptr->map_list_map = NULL;
4620 else
4622 int ch;
4623 int dirlen = strlen (dirname);
4625 while ((ch = getc (f)) != EOF)
4627 char *from, *to;
4628 struct file_name_map *ptr;
4630 if (is_space[ch])
4631 continue;
4632 from = read_filename_string (ch, f);
4633 while ((ch = getc (f)) != EOF && is_hor_space[ch])
4635 to = read_filename_string (ch, f);
4637 ptr = ((struct file_name_map *)
4638 xmalloc (sizeof (struct file_name_map)));
4639 ptr->map_from = from;
4641 /* Make the real filename absolute. */
4642 if (*to == '/')
4643 ptr->map_to = to;
4644 else
4646 ptr->map_to = xmalloc (dirlen + strlen (to) + 2);
4647 strcpy (ptr->map_to, dirname);
4648 ptr->map_to[dirlen] = '/';
4649 strcpy (ptr->map_to + dirlen + 1, to);
4650 free (to);
4653 ptr->map_next = map_list_ptr->map_list_map;
4654 map_list_ptr->map_list_map = ptr;
4656 while ((ch = getc (f)) != '\n')
4657 if (ch == EOF)
4658 break;
4660 fclose (f);
4663 map_list_ptr->map_list_next = map_list;
4664 map_list = map_list_ptr;
4666 return map_list_ptr->map_list_map;
4669 /* Try to open include file FILENAME. SEARCHPTR is the directory
4670 being tried from the include file search path. This function maps
4671 filenames on file systems based on information read by
4672 read_name_map. */
4674 static int
4675 open_include_file (filename, searchptr)
4676 char *filename;
4677 struct file_name_list *searchptr;
4679 register struct file_name_map *map;
4680 register char *from;
4681 char *p, *dir;
4683 if (searchptr && ! searchptr->got_name_map)
4685 searchptr->name_map = read_name_map (searchptr->fname
4686 ? searchptr->fname : ".");
4687 searchptr->got_name_map = 1;
4690 /* First check the mapping for the directory we are using. */
4691 if (searchptr && searchptr->name_map)
4693 from = filename;
4694 if (searchptr->fname)
4695 from += strlen (searchptr->fname) + 1;
4696 for (map = searchptr->name_map; map; map = map->map_next)
4698 if (! strcmp (map->map_from, from))
4700 /* Found a match. */
4701 return open (map->map_to, O_RDONLY, 0666);
4706 /* Try to find a mapping file for the particular directory we are
4707 looking in. Thus #include <sys/types.h> will look up sys/types.h
4708 in /usr/include/header.gcc and look up types.h in
4709 /usr/include/sys/header.gcc. */
4710 p = rindex (filename, '/');
4711 if (! p)
4712 p = filename;
4713 if (searchptr
4714 && searchptr->fname
4715 && strlen (searchptr->fname) == p - filename
4716 && ! strncmp (searchptr->fname, filename, p - filename))
4718 /* FILENAME is in SEARCHPTR, which we've already checked. */
4719 return open (filename, O_RDONLY, 0666);
4722 if (p == filename)
4724 dir = ".";
4725 from = filename;
4727 else
4729 dir = (char *) alloca (p - filename + 1);
4730 bcopy (filename, dir, p - filename);
4731 dir[p - filename] = '\0';
4732 from = p + 1;
4734 for (map = read_name_map (dir); map; map = map->map_next)
4735 if (! strcmp (map->map_from, from))
4736 return open (map->map_to, O_RDONLY, 0666);
4738 return open (filename, O_RDONLY, 0666);
4741 /* Process the contents of include file FNAME, already open on descriptor F,
4742 with output to OP.
4743 SYSTEM_HEADER_P is 1 if this file resides in any one of the known
4744 "system" include directories (as decided by the `is_system_include'
4745 function above).
4746 DIRPTR is the link in the dir path through which this file was found,
4747 or 0 if the file name was absolute. */
4749 static void
4750 finclude (f, fname, op, system_header_p, dirptr)
4751 int f;
4752 char *fname;
4753 FILE_BUF *op;
4754 int system_header_p;
4755 struct file_name_list *dirptr;
4757 int st_mode;
4758 long st_size;
4759 long i;
4760 FILE_BUF *fp; /* For input stack frame */
4761 int missing_newline = 0;
4763 CHECK_DEPTH (return;);
4765 if (file_size_and_mode (f, &st_mode, &st_size) < 0)
4767 perror_with_name (fname);
4768 close (f);
4769 return;
4772 fp = &instack[indepth + 1];
4773 bzero ((char *) fp, sizeof (FILE_BUF));
4774 fp->nominal_fname = fp->fname = fname;
4775 fp->length = 0;
4776 fp->lineno = 1;
4777 fp->if_stack = if_stack;
4778 fp->system_header_p = system_header_p;
4779 fp->dir = dirptr;
4781 if (S_ISREG (st_mode)) {
4782 fp->buf = (U_CHAR *) xmalloc (st_size + 2);
4783 fp->bufp = fp->buf;
4785 /* Read the file contents, knowing that st_size is an upper bound
4786 on the number of bytes we can read. */
4787 fp->length = safe_read (f, fp->buf, st_size);
4788 if (fp->length < 0) goto nope;
4790 else if (S_ISDIR (st_mode)) {
4791 error ("directory `%s' specified in #include", fname);
4792 close (f);
4793 return;
4794 } else {
4795 /* Cannot count its file size before reading.
4796 First read the entire file into heap and
4797 copy them into buffer on stack. */
4799 int bsize = 2000;
4801 st_size = 0;
4802 fp->buf = (U_CHAR *) xmalloc (bsize + 2);
4804 for (;;) {
4805 i = safe_read (f, fp->buf + st_size, bsize - st_size);
4806 if (i < 0)
4807 goto nope; /* error! */
4808 st_size += i;
4809 if (st_size != bsize)
4810 break; /* End of file */
4811 bsize *= 2;
4812 fp->buf = (U_CHAR *) xrealloc (fp->buf, bsize + 2);
4814 fp->bufp = fp->buf;
4815 fp->length = st_size;
4818 if ((fp->length > 0 && fp->buf[fp->length - 1] != '\n')
4819 /* Backslash-newline at end is not good enough. */
4820 || (fp->length > 1 && fp->buf[fp->length - 2] == '\\')) {
4821 fp->buf[fp->length++] = '\n';
4822 missing_newline = 1;
4824 fp->buf[fp->length] = '\0';
4826 /* Close descriptor now, so nesting does not use lots of descriptors. */
4827 close (f);
4829 /* Must do this before calling trigraph_pcp, so that the correct file name
4830 will be printed in warning messages. */
4832 indepth++;
4833 input_file_stack_tick++;
4835 if (!no_trigraphs)
4836 trigraph_pcp (fp);
4838 output_line_command (fp, op, 0, enter_file);
4839 rescan (op, 0);
4841 if (missing_newline)
4842 fp->lineno--;
4844 if (pedantic && missing_newline)
4845 pedwarn ("file does not end in newline");
4847 indepth--;
4848 input_file_stack_tick++;
4849 output_line_command (&instack[indepth], op, 0, leave_file);
4850 free (fp->buf);
4851 return;
4853 nope:
4855 perror_with_name (fname);
4856 close (f);
4857 free (fp->buf);
4860 /* Record that inclusion of the file named FILE
4861 should be controlled by the macro named MACRO_NAME.
4862 This means that trying to include the file again
4863 will do something if that macro is defined. */
4865 static void
4866 record_control_macro (file, macro_name)
4867 char *file;
4868 U_CHAR *macro_name;
4870 struct file_name_list *new;
4872 for (new = all_include_files; new; new = new->next) {
4873 if (!strcmp (new->fname, file)) {
4874 new->control_macro = macro_name;
4875 return;
4879 /* If the file is not in all_include_files, something's wrong. */
4880 abort ();
4883 /* Maintain and search list of included files, for #import. */
4885 #define IMPORT_HASH_SIZE 31
4887 struct import_file {
4888 char *name;
4889 ino_t inode;
4890 dev_t dev;
4891 struct import_file *next;
4894 /* Hash table of files already included with #include or #import. */
4896 static struct import_file *import_hash_table[IMPORT_HASH_SIZE];
4898 /* Hash a file name for import_hash_table. */
4900 static int
4901 import_hash (f)
4902 char *f;
4904 int val = 0;
4906 while (*f) val += *f++;
4907 return (val%IMPORT_HASH_SIZE);
4910 /* Search for file FILENAME in import_hash_table.
4911 Return -2 if found, either a matching name or a matching inode.
4912 Otherwise, open the file and return a file descriptor if successful
4913 or -1 if unsuccessful. */
4915 static int
4916 lookup_import (filename, searchptr)
4917 char *filename;
4918 struct file_name_list *searchptr;
4920 struct import_file *i;
4921 int h;
4922 int hashval;
4923 struct stat sb;
4924 int fd;
4926 hashval = import_hash (filename);
4928 /* Attempt to find file in list of already included files */
4929 i = import_hash_table[hashval];
4931 while (i) {
4932 if (!strcmp (filename, i->name))
4933 return -2; /* return found */
4934 i = i->next;
4936 /* Open it and try a match on inode/dev */
4937 fd = open_include_file (filename, searchptr);
4938 if (fd < 0)
4939 return fd;
4940 fstat (fd, &sb);
4941 for (h = 0; h < IMPORT_HASH_SIZE; h++) {
4942 i = import_hash_table[h];
4943 while (i) {
4944 /* Compare the inode and the device.
4945 Supposedly on some systems the inode is not a scalar. */
4946 if (!bcmp ((char *) &i->inode, (char *) &sb.st_ino, sizeof (sb.st_ino))
4947 && i->dev == sb.st_dev) {
4948 close (fd);
4949 return -2; /* return found */
4951 i = i->next;
4954 return fd; /* Not found, return open file */
4957 /* Add the file FNAME, open on descriptor FD, to import_hash_table. */
4959 static void
4960 add_import (fd, fname)
4961 int fd;
4962 char *fname;
4964 struct import_file *i;
4965 int hashval;
4966 struct stat sb;
4968 hashval = import_hash (fname);
4969 fstat (fd, &sb);
4970 i = (struct import_file *)xmalloc (sizeof (struct import_file));
4971 i->name = (char *)xmalloc (strlen (fname)+1);
4972 strcpy (i->name, fname);
4973 bcopy ((char *) &sb.st_ino, (char *) &i->inode, sizeof (sb.st_ino));
4974 i->dev = sb.st_dev;
4975 i->next = import_hash_table[hashval];
4976 import_hash_table[hashval] = i;
4979 /* Load the specified precompiled header into core, and verify its
4980 preconditions. PCF indicates the file descriptor to read, which must
4981 be a regular file. FNAME indicates the file name of the original
4982 header. *LIMIT will be set to an address one past the end of the file.
4983 If the preconditions of the file are not satisfied, the buffer is
4984 freed and we return 0. If the preconditions are satisfied, return
4985 the address of the buffer following the preconditions. The buffer, in
4986 this case, should never be freed because various pieces of it will
4987 be referred to until all precompiled strings are output at the end of
4988 the run.
4990 static char *
4991 check_precompiled (pcf, fname, limit)
4992 int pcf;
4993 char *fname;
4994 char **limit;
4996 int st_mode;
4997 long st_size;
4998 int length = 0;
4999 char *buf;
5000 char *cp;
5002 if (pcp_outfile)
5003 return 0;
5005 if (file_size_and_mode (pcf, &st_mode, &st_size) < 0)
5006 return 0;
5008 if (S_ISREG (st_mode))
5010 buf = xmalloc (st_size + 2);
5011 length = safe_read (pcf, buf, st_size);
5012 if (length < 0)
5013 goto nope;
5015 else
5016 abort ();
5018 if (length > 0 && buf[length-1] != '\n')
5019 buf[length++] = '\n';
5020 buf[length] = '\0';
5022 *limit = buf + length;
5024 /* File is in core. Check the preconditions. */
5025 if (!check_preconditions (buf))
5026 goto nope;
5027 for (cp = buf; *cp; cp++)
5029 #ifdef DEBUG_PCP
5030 fprintf (stderr, "Using preinclude %s\n", fname);
5031 #endif
5032 return cp + 1;
5034 nope:
5035 #ifdef DEBUG_PCP
5036 fprintf (stderr, "Cannot use preinclude %s\n", fname);
5037 #endif
5038 free (buf);
5039 return 0;
5042 /* PREC (null terminated) points to the preconditions of a
5043 precompiled header. These are a series of #define and #undef
5044 lines which must match the current contents of the hash
5045 table. */
5046 static int
5047 check_preconditions (prec)
5048 char *prec;
5050 MACRODEF mdef;
5051 char *lineend;
5053 while (*prec) {
5054 lineend = (char *) index (prec, '\n');
5056 if (*prec++ != '#') {
5057 error ("Bad format encountered while reading precompiled file");
5058 return 0;
5060 if (!strncmp (prec, "define", 6)) {
5061 HASHNODE *hp;
5063 prec += 6;
5064 mdef = create_definition (prec, lineend, NULL_PTR);
5066 if (mdef.defn == 0)
5067 abort ();
5069 if ((hp = lookup (mdef.symnam, mdef.symlen, -1)) == NULL
5070 || (hp->type != T_MACRO && hp->type != T_CONST)
5071 || (hp->type == T_MACRO
5072 && !compare_defs (mdef.defn, hp->value.defn)
5073 && (mdef.defn->length != 2
5074 || mdef.defn->expansion[0] != '\n'
5075 || mdef.defn->expansion[1] != ' ')))
5076 return 0;
5077 } else if (!strncmp (prec, "undef", 5)) {
5078 char *name;
5079 int len;
5081 prec += 5;
5082 while (is_hor_space[(U_CHAR) *prec])
5083 prec++;
5084 name = prec;
5085 while (is_idchar[(U_CHAR) *prec])
5086 prec++;
5087 len = prec - name;
5089 if (lookup (name, len, -1))
5090 return 0;
5091 } else {
5092 error ("Bad format encountered while reading precompiled file");
5093 return 0;
5095 prec = lineend + 1;
5097 /* They all passed successfully */
5098 return 1;
5101 /* Process the main body of a precompiled file. BUF points to the
5102 string section of the file, following the preconditions. LIMIT is one
5103 character past the end. NAME is the name of the file being read
5104 in. OP is the main output buffer */
5105 static void
5106 pcfinclude (buf, limit, name, op)
5107 U_CHAR *buf, *limit, *name;
5108 FILE_BUF *op;
5110 FILE_BUF tmpbuf;
5111 int nstrings;
5112 U_CHAR *cp = buf;
5114 /* First in the file comes 4 bytes indicating the number of strings, */
5115 /* in network byte order. (MSB first). */
5116 nstrings = *cp++;
5117 nstrings = (nstrings << 8) | *cp++;
5118 nstrings = (nstrings << 8) | *cp++;
5119 nstrings = (nstrings << 8) | *cp++;
5121 /* Looping over each string... */
5122 while (nstrings--) {
5123 U_CHAR *string_start;
5124 U_CHAR *endofthiskey;
5125 STRINGDEF *str;
5126 int nkeys;
5128 /* Each string starts with a STRINGDEF structure (str), followed */
5129 /* by the text of the string (string_start) */
5131 /* First skip to a longword boundary */
5132 /* ??? Why a 4-byte boundary? On all machines? */
5133 /* NOTE: This works correctly even if HOST_WIDE_INT
5134 is narrower than a pointer.
5135 Do not try risky measures here to get another type to use!
5136 Do not include stddef.h--it will fail! */
5137 if ((HOST_WIDE_INT) cp & 3)
5138 cp += 4 - ((HOST_WIDE_INT) cp & 3);
5140 /* Now get the string. */
5141 str = (STRINGDEF *) cp;
5142 string_start = cp += sizeof (STRINGDEF);
5144 for (; *cp; cp++) /* skip the string */
5147 /* We need to macro expand the string here to ensure that the
5148 proper definition environment is in place. If it were only
5149 expanded when we find out it is needed, macros necessary for
5150 its proper expansion might have had their definitions changed. */
5151 tmpbuf = expand_to_temp_buffer (string_start, cp++, 0, 0);
5152 /* Lineno is already set in the precompiled file */
5153 str->contents = tmpbuf.buf;
5154 str->len = tmpbuf.length;
5155 str->writeflag = 0;
5156 str->filename = name;
5157 str->output_mark = outbuf.bufp - outbuf.buf;
5159 str->chain = 0;
5160 *stringlist_tailp = str;
5161 stringlist_tailp = &str->chain;
5163 /* Next comes a fourbyte number indicating the number of keys */
5164 /* for this string. */
5165 nkeys = *cp++;
5166 nkeys = (nkeys << 8) | *cp++;
5167 nkeys = (nkeys << 8) | *cp++;
5168 nkeys = (nkeys << 8) | *cp++;
5170 /* If this number is -1, then the string is mandatory. */
5171 if (nkeys == -1)
5172 str->writeflag = 1;
5173 else
5174 /* Otherwise, for each key, */
5175 for (; nkeys--; free (tmpbuf.buf), cp = endofthiskey + 1) {
5176 KEYDEF *kp = (KEYDEF *) cp;
5177 HASHNODE *hp;
5179 /* It starts with a KEYDEF structure */
5180 cp += sizeof (KEYDEF);
5182 /* Find the end of the key. At the end of this for loop we
5183 advance CP to the start of the next key using this variable. */
5184 endofthiskey = cp + strlen (cp);
5185 kp->str = str;
5187 /* Expand the key, and enter it into the hash table. */
5188 tmpbuf = expand_to_temp_buffer (cp, endofthiskey, 0, 0);
5189 tmpbuf.bufp = tmpbuf.buf;
5191 while (is_hor_space[*tmpbuf.bufp])
5192 tmpbuf.bufp++;
5193 if (!is_idstart[*tmpbuf.bufp]
5194 || tmpbuf.bufp == tmpbuf.buf + tmpbuf.length) {
5195 str->writeflag = 1;
5196 continue;
5199 hp = lookup (tmpbuf.bufp, -1, -1);
5200 if (hp == NULL) {
5201 kp->chain = 0;
5202 install (tmpbuf.bufp, -1, T_PCSTRING, 0, (char *) kp, -1);
5204 else if (hp->type == T_PCSTRING) {
5205 kp->chain = hp->value.keydef;
5206 hp->value.keydef = kp;
5208 else
5209 str->writeflag = 1;
5212 /* This output_line_command serves to switch us back to the current
5213 input file in case some of these strings get output (which will
5214 result in line commands for the header file being output). */
5215 output_line_command (&instack[indepth], op, 0, enter_file);
5218 /* Called from rescan when it hits a key for strings. Mark them all */
5219 /* used and clean up. */
5220 static void
5221 pcstring_used (hp)
5222 HASHNODE *hp;
5224 KEYDEF *kp;
5226 for (kp = hp->value.keydef; kp; kp = kp->chain)
5227 kp->str->writeflag = 1;
5228 delete_macro (hp);
5231 /* Write the output, interspersing precompiled strings in their */
5232 /* appropriate places. */
5233 static void
5234 write_output ()
5236 STRINGDEF *next_string;
5237 U_CHAR *cur_buf_loc;
5238 int line_command_len = 80;
5239 char *line_command = xmalloc (line_command_len);
5240 int len;
5242 /* In each run through the loop, either cur_buf_loc == */
5243 /* next_string_loc, in which case we print a series of strings, or */
5244 /* it is less than next_string_loc, in which case we write some of */
5245 /* the buffer. */
5246 cur_buf_loc = outbuf.buf;
5247 next_string = stringlist;
5249 while (cur_buf_loc < outbuf.bufp || next_string) {
5250 if (next_string
5251 && cur_buf_loc - outbuf.buf == next_string->output_mark) {
5252 if (next_string->writeflag) {
5253 len = 4 * strlen (next_string->filename) + 32;
5254 while (len > line_command_len)
5255 line_command = xrealloc (line_command,
5256 line_command_len *= 2);
5257 sprintf (line_command, "\n# %d ", next_string->lineno);
5258 strcpy (quote_string (line_command + strlen (line_command),
5259 next_string->filename),
5260 "\n");
5261 safe_write (fileno (stdout), line_command, strlen (line_command));
5262 safe_write (fileno (stdout), next_string->contents, next_string->len);
5264 next_string = next_string->chain;
5266 else {
5267 len = (next_string
5268 ? (next_string->output_mark
5269 - (cur_buf_loc - outbuf.buf))
5270 : outbuf.bufp - cur_buf_loc);
5272 safe_write (fileno (stdout), cur_buf_loc, len);
5273 cur_buf_loc += len;
5276 free (line_command);
5279 /* Pass a directive through to the output file.
5280 BUF points to the contents of the directive, as a contiguous string.
5281 LIMIT points to the first character past the end of the directive.
5282 KEYWORD is the keyword-table entry for the directive. */
5284 static void
5285 pass_thru_directive (buf, limit, op, keyword)
5286 U_CHAR *buf, *limit;
5287 FILE_BUF *op;
5288 struct directive *keyword;
5290 register unsigned keyword_length = keyword->length;
5292 check_expand (op, 1 + keyword_length + (limit - buf));
5293 *op->bufp++ = '#';
5294 bcopy (keyword->name, (char *) op->bufp, keyword_length);
5295 op->bufp += keyword_length;
5296 if (limit != buf && buf[0] != ' ')
5297 *op->bufp++ = ' ';
5298 bcopy ((char *) buf, (char *) op->bufp, limit - buf);
5299 op->bufp += (limit - buf);
5300 #if 0
5301 *op->bufp++ = '\n';
5302 /* Count the line we have just made in the output,
5303 to get in sync properly. */
5304 op->lineno++;
5305 #endif
5308 /* The arglist structure is built by do_define to tell
5309 collect_definition where the argument names begin. That
5310 is, for a define like "#define f(x,y,z) foo+x-bar*y", the arglist
5311 would contain pointers to the strings x, y, and z.
5312 Collect_definition would then build a DEFINITION node,
5313 with reflist nodes pointing to the places x, y, and z had
5314 appeared. So the arglist is just convenience data passed
5315 between these two routines. It is not kept around after
5316 the current #define has been processed and entered into the
5317 hash table. */
5319 struct arglist {
5320 struct arglist *next;
5321 U_CHAR *name;
5322 int length;
5323 int argno;
5324 char rest_args;
5327 /* Create a DEFINITION node from a #define directive. Arguments are
5328 as for do_define. */
5329 static MACRODEF
5330 create_definition (buf, limit, op)
5331 U_CHAR *buf, *limit;
5332 FILE_BUF *op;
5334 U_CHAR *bp; /* temp ptr into input buffer */
5335 U_CHAR *symname; /* remember where symbol name starts */
5336 int sym_length; /* and how long it is */
5337 int line = instack[indepth].lineno;
5338 char *file = instack[indepth].nominal_fname;
5339 int rest_args = 0;
5341 DEFINITION *defn;
5342 int arglengths = 0; /* Accumulate lengths of arg names
5343 plus number of args. */
5344 MACRODEF mdef;
5346 bp = buf;
5348 while (is_hor_space[*bp])
5349 bp++;
5351 symname = bp; /* remember where it starts */
5352 sym_length = check_macro_name (bp, "macro");
5353 bp += sym_length;
5355 /* Lossage will occur if identifiers or control keywords are broken
5356 across lines using backslash. This is not the right place to take
5357 care of that. */
5359 if (*bp == '(') {
5360 struct arglist *arg_ptrs = NULL;
5361 int argno = 0;
5363 bp++; /* skip '(' */
5364 SKIP_WHITE_SPACE (bp);
5366 /* Loop over macro argument names. */
5367 while (*bp != ')') {
5368 struct arglist *temp;
5370 temp = (struct arglist *) alloca (sizeof (struct arglist));
5371 temp->name = bp;
5372 temp->next = arg_ptrs;
5373 temp->argno = argno++;
5374 temp->rest_args = 0;
5375 arg_ptrs = temp;
5377 if (rest_args)
5378 pedwarn ("another parameter follows `%s'",
5379 rest_extension);
5381 if (!is_idstart[*bp])
5382 pedwarn ("invalid character in macro parameter name");
5384 /* Find the end of the arg name. */
5385 while (is_idchar[*bp]) {
5386 bp++;
5387 /* do we have a "special" rest-args extension here? */
5388 if (limit - bp > REST_EXTENSION_LENGTH &&
5389 strncmp (rest_extension, bp, REST_EXTENSION_LENGTH) == 0) {
5390 rest_args = 1;
5391 temp->rest_args = 1;
5392 break;
5395 temp->length = bp - temp->name;
5396 if (rest_args == 1)
5397 bp += REST_EXTENSION_LENGTH;
5398 arglengths += temp->length + 2;
5399 SKIP_WHITE_SPACE (bp);
5400 if (temp->length == 0 || (*bp != ',' && *bp != ')')) {
5401 error ("badly punctuated parameter list in `#define'");
5402 goto nope;
5404 if (*bp == ',') {
5405 bp++;
5406 SKIP_WHITE_SPACE (bp);
5407 /* A comma at this point can only be followed by an identifier. */
5408 if (!is_idstart[*bp]) {
5409 error ("badly punctuated parameter list in `#define'");
5410 goto nope;
5413 if (bp >= limit) {
5414 error ("unterminated parameter list in `#define'");
5415 goto nope;
5418 struct arglist *otemp;
5420 for (otemp = temp->next; otemp != NULL; otemp = otemp->next)
5421 if (temp->length == otemp->length &&
5422 strncmp (temp->name, otemp->name, temp->length) == 0) {
5423 U_CHAR *name;
5425 name = (U_CHAR *) alloca (temp->length + 1);
5426 (void) strncpy (name, temp->name, temp->length);
5427 name[temp->length] = '\0';
5428 error ("duplicate argument name `%s' in `#define'", name);
5429 goto nope;
5434 ++bp; /* skip paren */
5435 SKIP_WHITE_SPACE (bp);
5436 /* now everything from bp before limit is the definition. */
5437 defn = collect_expansion (bp, limit, argno, arg_ptrs);
5438 defn->rest_args = rest_args;
5440 /* Now set defn->args.argnames to the result of concatenating
5441 the argument names in reverse order
5442 with comma-space between them. */
5443 defn->args.argnames = (U_CHAR *) xmalloc (arglengths + 1);
5445 struct arglist *temp;
5446 int i = 0;
5447 for (temp = arg_ptrs; temp; temp = temp->next) {
5448 bcopy (temp->name, &defn->args.argnames[i], temp->length);
5449 i += temp->length;
5450 if (temp->next != 0) {
5451 defn->args.argnames[i++] = ',';
5452 defn->args.argnames[i++] = ' ';
5455 defn->args.argnames[i] = 0;
5457 } else {
5458 /* Simple expansion or empty definition. */
5460 if (bp < limit)
5462 if (is_hor_space[*bp]) {
5463 bp++;
5464 SKIP_WHITE_SPACE (bp);
5465 } else {
5466 switch (*bp) {
5467 case '!': case '"': case '#': case '%': case '&': case '\'':
5468 case ')': case '*': case '+': case ',': case '-': case '.':
5469 case '/': case ':': case ';': case '<': case '=': case '>':
5470 case '?': case '[': case '\\': case ']': case '^': case '{':
5471 case '|': case '}': case '~':
5472 warning ("missing white space after `#define %.*s'",
5473 sym_length, symname);
5474 break;
5476 default:
5477 pedwarn ("missing white space after `#define %.*s'",
5478 sym_length, symname);
5479 break;
5483 /* Now everything from bp before limit is the definition. */
5484 defn = collect_expansion (bp, limit, -1, NULL_PTR);
5485 defn->args.argnames = (U_CHAR *) "";
5488 defn->line = line;
5489 defn->file = file;
5491 /* OP is null if this is a predefinition */
5492 defn->predefined = !op;
5493 mdef.defn = defn;
5494 mdef.symnam = symname;
5495 mdef.symlen = sym_length;
5497 return mdef;
5499 nope:
5500 mdef.defn = 0;
5501 return mdef;
5504 /* Process a #define command.
5505 BUF points to the contents of the #define command, as a contiguous string.
5506 LIMIT points to the first character past the end of the definition.
5507 KEYWORD is the keyword-table entry for #define. */
5509 static int
5510 do_define (buf, limit, op, keyword)
5511 U_CHAR *buf, *limit;
5512 FILE_BUF *op;
5513 struct directive *keyword;
5515 int hashcode;
5516 MACRODEF mdef;
5518 /* If this is a precompiler run (with -pcp) pass thru #define commands. */
5519 if (pcp_outfile && op)
5520 pass_thru_directive (buf, limit, op, keyword);
5522 mdef = create_definition (buf, limit, op);
5523 if (mdef.defn == 0)
5524 goto nope;
5526 hashcode = hashf (mdef.symnam, mdef.symlen, HASHSIZE);
5529 HASHNODE *hp;
5530 if ((hp = lookup (mdef.symnam, mdef.symlen, hashcode)) != NULL) {
5531 int ok = 0;
5532 /* Redefining a precompiled key is ok. */
5533 if (hp->type == T_PCSTRING)
5534 ok = 1;
5535 /* Redefining a macro is ok if the definitions are the same. */
5536 else if (hp->type == T_MACRO)
5537 ok = ! compare_defs (mdef.defn, hp->value.defn);
5538 /* Redefining a constant is ok with -D. */
5539 else if (hp->type == T_CONST)
5540 ok = ! done_initializing;
5541 /* Print the warning if it's not ok. */
5542 if (!ok) {
5543 U_CHAR *msg; /* what pain... */
5545 /* If we are passing through #define and #undef directives, do
5546 that for this re-definition now. */
5547 if (debug_output && op)
5548 pass_thru_directive (buf, limit, op, keyword);
5550 msg = (U_CHAR *) alloca (mdef.symlen + 22);
5551 *msg = '`';
5552 bcopy ((char *) mdef.symnam, (char *) (msg + 1), mdef.symlen);
5553 strcpy ((char *) (msg + mdef.symlen + 1), "' redefined");
5554 pedwarn (msg);
5555 if (hp->type == T_MACRO)
5556 pedwarn_with_file_and_line (hp->value.defn->file, hp->value.defn->line,
5557 "this is the location of the previous definition");
5559 /* Replace the old definition. */
5560 hp->type = T_MACRO;
5561 hp->value.defn = mdef.defn;
5562 } else {
5563 /* If we are passing through #define and #undef directives, do
5564 that for this new definition now. */
5565 if (debug_output && op)
5566 pass_thru_directive (buf, limit, op, keyword);
5567 install (mdef.symnam, mdef.symlen, T_MACRO, 0,
5568 (char *) mdef.defn, hashcode);
5572 return 0;
5574 nope:
5576 return 1;
5579 /* Check a purported macro name SYMNAME, and yield its length.
5580 USAGE is the kind of name this is intended for. */
5582 static int
5583 check_macro_name (symname, usage)
5584 U_CHAR *symname;
5585 char *usage;
5587 U_CHAR *p;
5588 int sym_length;
5590 for (p = symname; is_idchar[*p]; p++)
5592 sym_length = p - symname;
5593 if (sym_length == 0)
5594 error ("invalid %s name", usage);
5595 else if (!is_idstart[*symname]) {
5596 U_CHAR *msg; /* what pain... */
5597 msg = (U_CHAR *) alloca (sym_length + 1);
5598 bcopy ((char *) symname, (char *) msg, sym_length);
5599 msg[sym_length] = 0;
5600 error ("invalid %s name `%s'", usage, msg);
5601 } else {
5602 if (! strncmp (symname, "defined", 7) && sym_length == 7)
5603 error ("invalid %s name `defined'", usage);
5605 return sym_length;
5609 * return zero if two DEFINITIONs are isomorphic
5611 static int
5612 compare_defs (d1, d2)
5613 DEFINITION *d1, *d2;
5615 register struct reflist *a1, *a2;
5616 register U_CHAR *p1 = d1->expansion;
5617 register U_CHAR *p2 = d2->expansion;
5618 int first = 1;
5620 if (d1->nargs != d2->nargs)
5621 return 1;
5622 if (strcmp ((char *)d1->args.argnames, (char *)d2->args.argnames))
5623 return 1;
5624 for (a1 = d1->pattern, a2 = d2->pattern; a1 && a2;
5625 a1 = a1->next, a2 = a2->next) {
5626 if (!((a1->nchars == a2->nchars && ! strncmp (p1, p2, a1->nchars))
5627 || ! comp_def_part (first, p1, a1->nchars, p2, a2->nchars, 0))
5628 || a1->argno != a2->argno
5629 || a1->stringify != a2->stringify
5630 || a1->raw_before != a2->raw_before
5631 || a1->raw_after != a2->raw_after)
5632 return 1;
5633 first = 0;
5634 p1 += a1->nchars;
5635 p2 += a2->nchars;
5637 if (a1 != a2)
5638 return 1;
5639 if (comp_def_part (first, p1, d1->length - (p1 - d1->expansion),
5640 p2, d2->length - (p2 - d2->expansion), 1))
5641 return 1;
5642 return 0;
5645 /* Return 1 if two parts of two macro definitions are effectively different.
5646 One of the parts starts at BEG1 and has LEN1 chars;
5647 the other has LEN2 chars at BEG2.
5648 Any sequence of whitespace matches any other sequence of whitespace.
5649 FIRST means these parts are the first of a macro definition;
5650 so ignore leading whitespace entirely.
5651 LAST means these parts are the last of a macro definition;
5652 so ignore trailing whitespace entirely. */
5654 static int
5655 comp_def_part (first, beg1, len1, beg2, len2, last)
5656 int first;
5657 U_CHAR *beg1, *beg2;
5658 int len1, len2;
5659 int last;
5661 register U_CHAR *end1 = beg1 + len1;
5662 register U_CHAR *end2 = beg2 + len2;
5663 if (first) {
5664 while (beg1 != end1 && is_space[*beg1]) beg1++;
5665 while (beg2 != end2 && is_space[*beg2]) beg2++;
5667 if (last) {
5668 while (beg1 != end1 && is_space[end1[-1]]) end1--;
5669 while (beg2 != end2 && is_space[end2[-1]]) end2--;
5671 while (beg1 != end1 && beg2 != end2) {
5672 if (is_space[*beg1] && is_space[*beg2]) {
5673 while (beg1 != end1 && is_space[*beg1]) beg1++;
5674 while (beg2 != end2 && is_space[*beg2]) beg2++;
5675 } else if (*beg1 == *beg2) {
5676 beg1++; beg2++;
5677 } else break;
5679 return (beg1 != end1) || (beg2 != end2);
5682 /* Read a replacement list for a macro with parameters.
5683 Build the DEFINITION structure.
5684 Reads characters of text starting at BUF until END.
5685 ARGLIST specifies the formal parameters to look for
5686 in the text of the definition; NARGS is the number of args
5687 in that list, or -1 for a macro name that wants no argument list.
5688 MACRONAME is the macro name itself (so we can avoid recursive expansion)
5689 and NAMELEN is its length in characters.
5691 Note that comments and backslash-newlines have already been deleted
5692 from the argument. */
5694 /* Leading and trailing Space, Tab, etc. are converted to markers
5695 Newline Space, Newline Tab, etc.
5696 Newline Space makes a space in the final output
5697 but is discarded if stringified. (Newline Tab is similar but
5698 makes a Tab instead.)
5700 If there is no trailing whitespace, a Newline Space is added at the end
5701 to prevent concatenation that would be contrary to the standard. */
5703 static DEFINITION *
5704 collect_expansion (buf, end, nargs, arglist)
5705 U_CHAR *buf, *end;
5706 int nargs;
5707 struct arglist *arglist;
5709 DEFINITION *defn;
5710 register U_CHAR *p, *limit, *lastp, *exp_p;
5711 struct reflist *endpat = NULL;
5712 /* Pointer to first nonspace after last ## seen. */
5713 U_CHAR *concat = 0;
5714 /* Pointer to first nonspace after last single-# seen. */
5715 U_CHAR *stringify = 0;
5716 int maxsize;
5717 int expected_delimiter = '\0';
5719 /* Scan thru the replacement list, ignoring comments and quoted
5720 strings, picking up on the macro calls. It does a linear search
5721 thru the arg list on every potential symbol. Profiling might say
5722 that something smarter should happen. */
5724 if (end < buf)
5725 abort ();
5727 /* Find the beginning of the trailing whitespace. */
5728 /* Find end of leading whitespace. */
5729 limit = end;
5730 p = buf;
5731 while (p < limit && is_space[limit[-1]]) limit--;
5732 while (p < limit && is_space[*p]) p++;
5734 /* Allocate space for the text in the macro definition.
5735 Leading and trailing whitespace chars need 2 bytes each.
5736 Each other input char may or may not need 1 byte,
5737 so this is an upper bound.
5738 The extra 2 are for invented trailing newline-marker and final null. */
5739 maxsize = (sizeof (DEFINITION)
5740 + 2 * (end - limit) + 2 * (p - buf)
5741 + (limit - p) + 3);
5742 defn = (DEFINITION *) xcalloc (1, maxsize);
5744 defn->nargs = nargs;
5745 exp_p = defn->expansion = (U_CHAR *) defn + sizeof (DEFINITION);
5746 lastp = exp_p;
5748 p = buf;
5750 /* Convert leading whitespace to Newline-markers. */
5751 while (p < limit && is_space[*p]) {
5752 *exp_p++ = '\n';
5753 *exp_p++ = *p++;
5756 if (limit - p >= 2 && p[0] == '#' && p[1] == '#') {
5757 error ("`##' at start of macro definition");
5758 p += 2;
5761 /* Process the main body of the definition. */
5762 while (p < limit) {
5763 int skipped_arg = 0;
5764 register U_CHAR c = *p++;
5766 *exp_p++ = c;
5768 if (!traditional) {
5769 switch (c) {
5770 case '\'':
5771 case '\"':
5772 if (expected_delimiter != '\0') {
5773 if (c == expected_delimiter)
5774 expected_delimiter = '\0';
5775 } else
5776 expected_delimiter = c;
5777 break;
5779 case '\\':
5780 if (p < limit && expected_delimiter) {
5781 /* In a string, backslash goes through
5782 and makes next char ordinary. */
5783 *exp_p++ = *p++;
5785 break;
5787 case '#':
5788 /* # is ordinary inside a string. */
5789 if (expected_delimiter)
5790 break;
5791 if (p < limit && *p == '#') {
5792 /* ##: concatenate preceding and following tokens. */
5793 /* Take out the first #, discard preceding whitespace. */
5794 exp_p--;
5795 while (exp_p > lastp && is_hor_space[exp_p[-1]])
5796 --exp_p;
5797 /* Skip the second #. */
5798 p++;
5799 /* Discard following whitespace. */
5800 SKIP_WHITE_SPACE (p);
5801 concat = p;
5802 if (p == limit)
5803 error ("`##' at end of macro definition");
5804 } else if (nargs >= 0) {
5805 /* Single #: stringify following argument ref.
5806 Don't leave the # in the expansion. */
5807 exp_p--;
5808 SKIP_WHITE_SPACE (p);
5809 if (p == limit || ! is_idstart[*p] || nargs == 0)
5810 error ("`#' operator is not followed by a macro argument name");
5811 else
5812 stringify = p;
5814 break;
5816 } else {
5817 /* In -traditional mode, recognize arguments inside strings and
5818 and character constants, and ignore special properties of #.
5819 Arguments inside strings are considered "stringified", but no
5820 extra quote marks are supplied. */
5821 switch (c) {
5822 case '\'':
5823 case '\"':
5824 if (expected_delimiter != '\0') {
5825 if (c == expected_delimiter)
5826 expected_delimiter = '\0';
5827 } else
5828 expected_delimiter = c;
5829 break;
5831 case '\\':
5832 /* Backslash quotes delimiters and itself, but not macro args. */
5833 if (expected_delimiter != 0 && p < limit
5834 && (*p == expected_delimiter || *p == '\\')) {
5835 *exp_p++ = *p++;
5836 continue;
5838 break;
5840 case '/':
5841 if (expected_delimiter != '\0') /* No comments inside strings. */
5842 break;
5843 if (*p == '*') {
5844 /* If we find a comment that wasn't removed by handle_directive,
5845 this must be -traditional. So replace the comment with
5846 nothing at all. */
5847 exp_p--;
5848 p += 1;
5849 while (p < limit && !(p[-2] == '*' && p[-1] == '/'))
5850 p++;
5851 #if 0
5852 /* Mark this as a concatenation-point, as if it had been ##. */
5853 concat = p;
5854 #endif
5856 break;
5860 /* Handle the start of a symbol. */
5861 if (is_idchar[c] && nargs > 0) {
5862 U_CHAR *id_beg = p - 1;
5863 int id_len;
5865 --exp_p;
5866 while (p != limit && is_idchar[*p]) p++;
5867 id_len = p - id_beg;
5869 if (is_idstart[c]) {
5870 register struct arglist *arg;
5872 for (arg = arglist; arg != NULL; arg = arg->next) {
5873 struct reflist *tpat;
5875 if (arg->name[0] == c
5876 && arg->length == id_len
5877 && strncmp (arg->name, id_beg, id_len) == 0) {
5878 if (expected_delimiter && warn_stringify) {
5879 if (traditional) {
5880 warning ("macro argument `%.*s' is stringified.",
5881 id_len, arg->name);
5882 } else {
5883 warning ("macro arg `%.*s' would be stringified with -traditional.",
5884 id_len, arg->name);
5887 /* If ANSI, don't actually substitute inside a string. */
5888 if (!traditional && expected_delimiter)
5889 break;
5890 /* make a pat node for this arg and append it to the end of
5891 the pat list */
5892 tpat = (struct reflist *) xmalloc (sizeof (struct reflist));
5893 tpat->next = NULL;
5894 tpat->raw_before = concat == id_beg;
5895 tpat->raw_after = 0;
5896 tpat->rest_args = arg->rest_args;
5897 tpat->stringify = (traditional ? expected_delimiter != '\0'
5898 : stringify == id_beg);
5900 if (endpat == NULL)
5901 defn->pattern = tpat;
5902 else
5903 endpat->next = tpat;
5904 endpat = tpat;
5906 tpat->argno = arg->argno;
5907 tpat->nchars = exp_p - lastp;
5909 register U_CHAR *p1 = p;
5910 SKIP_WHITE_SPACE (p1);
5911 if (p1 + 2 <= limit && p1[0] == '#' && p1[1] == '#')
5912 tpat->raw_after = 1;
5914 lastp = exp_p; /* place to start copying from next time */
5915 skipped_arg = 1;
5916 break;
5921 /* If this was not a macro arg, copy it into the expansion. */
5922 if (! skipped_arg) {
5923 register U_CHAR *lim1 = p;
5924 p = id_beg;
5925 while (p != lim1)
5926 *exp_p++ = *p++;
5927 if (stringify == id_beg)
5928 error ("`#' operator should be followed by a macro argument name");
5933 if (!traditional && expected_delimiter == 0) {
5934 /* There is no trailing whitespace, so invent some in ANSI mode.
5935 But not if "inside a string" (which in ANSI mode
5936 happens only for -D option). */
5937 *exp_p++ = '\n';
5938 *exp_p++ = ' ';
5941 *exp_p = '\0';
5943 defn->length = exp_p - defn->expansion;
5945 /* Crash now if we overrun the allocated size. */
5946 if (defn->length + 1 > maxsize)
5947 abort ();
5949 #if 0
5950 /* This isn't worth the time it takes. */
5951 /* give back excess storage */
5952 defn->expansion = (U_CHAR *) xrealloc (defn->expansion, defn->length + 1);
5953 #endif
5955 return defn;
5958 static int
5959 do_assert (buf, limit, op, keyword)
5960 U_CHAR *buf, *limit;
5961 FILE_BUF *op;
5962 struct directive *keyword;
5964 U_CHAR *bp; /* temp ptr into input buffer */
5965 U_CHAR *symname; /* remember where symbol name starts */
5966 int sym_length; /* and how long it is */
5967 struct arglist *tokens = NULL;
5969 if (pedantic && done_initializing && !instack[indepth].system_header_p)
5970 pedwarn ("ANSI C does not allow `#assert'");
5972 bp = buf;
5974 while (is_hor_space[*bp])
5975 bp++;
5977 symname = bp; /* remember where it starts */
5978 sym_length = check_macro_name (bp, "assertion");
5979 bp += sym_length;
5980 /* #define doesn't do this, but we should. */
5981 SKIP_WHITE_SPACE (bp);
5983 /* Lossage will occur if identifiers or control tokens are broken
5984 across lines using backslash. This is not the right place to take
5985 care of that. */
5987 if (*bp != '(') {
5988 error ("missing token-sequence in `#assert'");
5989 return 1;
5993 int error_flag = 0;
5995 bp++; /* skip '(' */
5996 SKIP_WHITE_SPACE (bp);
5998 tokens = read_token_list (&bp, limit, &error_flag);
5999 if (error_flag)
6000 return 1;
6001 if (tokens == 0) {
6002 error ("empty token-sequence in `#assert'");
6003 return 1;
6006 ++bp; /* skip paren */
6007 SKIP_WHITE_SPACE (bp);
6010 /* If this name isn't already an assertion name, make it one.
6011 Error if it was already in use in some other way. */
6014 ASSERTION_HASHNODE *hp;
6015 int hashcode = hashf (symname, sym_length, ASSERTION_HASHSIZE);
6016 struct tokenlist_list *value
6017 = (struct tokenlist_list *) xmalloc (sizeof (struct tokenlist_list));
6019 hp = assertion_lookup (symname, sym_length, hashcode);
6020 if (hp == NULL) {
6021 if (sym_length == 7 && ! strncmp (symname, "defined", sym_length))
6022 error ("`defined' redefined as assertion");
6023 hp = assertion_install (symname, sym_length, hashcode);
6026 /* Add the spec'd token-sequence to the list of such. */
6027 value->tokens = tokens;
6028 value->next = hp->value;
6029 hp->value = value;
6032 return 0;
6035 static int
6036 do_unassert (buf, limit, op, keyword)
6037 U_CHAR *buf, *limit;
6038 FILE_BUF *op;
6039 struct directive *keyword;
6041 U_CHAR *bp; /* temp ptr into input buffer */
6042 U_CHAR *symname; /* remember where symbol name starts */
6043 int sym_length; /* and how long it is */
6045 struct arglist *tokens = NULL;
6046 int tokens_specified = 0;
6048 if (pedantic && done_initializing && !instack[indepth].system_header_p)
6049 pedwarn ("ANSI C does not allow `#unassert'");
6051 bp = buf;
6053 while (is_hor_space[*bp])
6054 bp++;
6056 symname = bp; /* remember where it starts */
6057 sym_length = check_macro_name (bp, "assertion");
6058 bp += sym_length;
6059 /* #define doesn't do this, but we should. */
6060 SKIP_WHITE_SPACE (bp);
6062 /* Lossage will occur if identifiers or control tokens are broken
6063 across lines using backslash. This is not the right place to take
6064 care of that. */
6066 if (*bp == '(') {
6067 int error_flag = 0;
6069 bp++; /* skip '(' */
6070 SKIP_WHITE_SPACE (bp);
6072 tokens = read_token_list (&bp, limit, &error_flag);
6073 if (error_flag)
6074 return 1;
6075 if (tokens == 0) {
6076 error ("empty token list in `#unassert'");
6077 return 1;
6080 tokens_specified = 1;
6082 ++bp; /* skip paren */
6083 SKIP_WHITE_SPACE (bp);
6087 ASSERTION_HASHNODE *hp;
6088 int hashcode = hashf (symname, sym_length, ASSERTION_HASHSIZE);
6089 struct tokenlist_list *tail, *prev;
6091 hp = assertion_lookup (symname, sym_length, hashcode);
6092 if (hp == NULL)
6093 return 1;
6095 /* If no token list was specified, then eliminate this assertion
6096 entirely. */
6097 if (! tokens_specified) {
6098 struct tokenlist_list *next;
6099 for (tail = hp->value; tail; tail = next) {
6100 next = tail->next;
6101 free_token_list (tail->tokens);
6102 free (tail);
6104 delete_assertion (hp);
6105 } else {
6106 /* If a list of tokens was given, then delete any matching list. */
6108 tail = hp->value;
6109 prev = 0;
6110 while (tail) {
6111 struct tokenlist_list *next = tail->next;
6112 if (compare_token_lists (tail->tokens, tokens)) {
6113 if (prev)
6114 prev->next = next;
6115 else
6116 hp->value = tail->next;
6117 free_token_list (tail->tokens);
6118 free (tail);
6119 } else {
6120 prev = tail;
6122 tail = next;
6127 return 0;
6130 /* Test whether there is an assertion named NAME
6131 and optionally whether it has an asserted token list TOKENS.
6132 NAME is not null terminated; its length is SYM_LENGTH.
6133 If TOKENS_SPECIFIED is 0, then don't check for any token list. */
6136 check_assertion (name, sym_length, tokens_specified, tokens)
6137 U_CHAR *name;
6138 int sym_length;
6139 int tokens_specified;
6140 struct arglist *tokens;
6142 ASSERTION_HASHNODE *hp;
6143 int hashcode = hashf (name, sym_length, ASSERTION_HASHSIZE);
6145 if (pedantic && !instack[indepth].system_header_p)
6146 pedwarn ("ANSI C does not allow testing assertions");
6148 hp = assertion_lookup (name, sym_length, hashcode);
6149 if (hp == NULL)
6150 /* It is not an assertion; just return false. */
6151 return 0;
6153 /* If no token list was specified, then value is 1. */
6154 if (! tokens_specified)
6155 return 1;
6158 struct tokenlist_list *tail;
6160 tail = hp->value;
6162 /* If a list of tokens was given,
6163 then succeed if the assertion records a matching list. */
6165 while (tail) {
6166 if (compare_token_lists (tail->tokens, tokens))
6167 return 1;
6168 tail = tail->next;
6171 /* Fail if the assertion has no matching list. */
6172 return 0;
6176 /* Compare two lists of tokens for equality including order of tokens. */
6178 static int
6179 compare_token_lists (l1, l2)
6180 struct arglist *l1, *l2;
6182 while (l1 && l2) {
6183 if (l1->length != l2->length)
6184 return 0;
6185 if (strncmp (l1->name, l2->name, l1->length))
6186 return 0;
6187 l1 = l1->next;
6188 l2 = l2->next;
6191 /* Succeed if both lists end at the same time. */
6192 return l1 == l2;
6195 /* Read a space-separated list of tokens ending in a close parenthesis.
6196 Return a list of strings, in the order they were written.
6197 (In case of error, return 0 and store -1 in *ERROR_FLAG.)
6198 Parse the text starting at *BPP, and update *BPP.
6199 Don't parse beyond LIMIT. */
6201 static struct arglist *
6202 read_token_list (bpp, limit, error_flag)
6203 U_CHAR **bpp;
6204 U_CHAR *limit;
6205 int *error_flag;
6207 struct arglist *token_ptrs = 0;
6208 U_CHAR *bp = *bpp;
6209 int depth = 1;
6211 *error_flag = 0;
6213 /* Loop over the assertion value tokens. */
6214 while (depth > 0) {
6215 struct arglist *temp;
6216 int eofp = 0;
6217 U_CHAR *beg = bp;
6219 /* Find the end of the token. */
6220 if (*bp == '(') {
6221 bp++;
6222 depth++;
6223 } else if (*bp == ')') {
6224 depth--;
6225 if (depth == 0)
6226 break;
6227 bp++;
6228 } else if (*bp == '"' || *bp == '\'')
6229 bp = skip_quoted_string (bp, limit, 0, NULL_PTR, NULL_PTR, &eofp);
6230 else
6231 while (! is_hor_space[*bp] && *bp != '(' && *bp != ')'
6232 && *bp != '"' && *bp != '\'' && bp != limit)
6233 bp++;
6235 temp = (struct arglist *) xmalloc (sizeof (struct arglist));
6236 temp->name = (U_CHAR *) xmalloc (bp - beg + 1);
6237 bcopy ((char *) beg, (char *) temp->name, bp - beg);
6238 temp->name[bp - beg] = 0;
6239 temp->next = token_ptrs;
6240 token_ptrs = temp;
6241 temp->length = bp - beg;
6243 SKIP_WHITE_SPACE (bp);
6245 if (bp >= limit) {
6246 error ("unterminated token sequence in `#assert' or `#unassert'");
6247 *error_flag = -1;
6248 return 0;
6251 *bpp = bp;
6253 /* We accumulated the names in reverse order.
6254 Now reverse them to get the proper order. */
6256 register struct arglist *prev = 0, *this, *next;
6257 for (this = token_ptrs; this; this = next) {
6258 next = this->next;
6259 this->next = prev;
6260 prev = this;
6262 return prev;
6266 static void
6267 free_token_list (tokens)
6268 struct arglist *tokens;
6270 while (tokens) {
6271 struct arglist *next = tokens->next;
6272 free (tokens->name);
6273 free (tokens);
6274 tokens = next;
6279 * Install a name in the assertion hash table.
6281 * If LEN is >= 0, it is the length of the name.
6282 * Otherwise, compute the length by scanning the entire name.
6284 * If HASH is >= 0, it is the precomputed hash code.
6285 * Otherwise, compute the hash code.
6287 static ASSERTION_HASHNODE *
6288 assertion_install (name, len, hash)
6289 U_CHAR *name;
6290 int len;
6291 int hash;
6293 register ASSERTION_HASHNODE *hp;
6294 register int i, bucket;
6295 register U_CHAR *p, *q;
6297 i = sizeof (ASSERTION_HASHNODE) + len + 1;
6298 hp = (ASSERTION_HASHNODE *) xmalloc (i);
6299 bucket = hash;
6300 hp->bucket_hdr = &assertion_hashtab[bucket];
6301 hp->next = assertion_hashtab[bucket];
6302 assertion_hashtab[bucket] = hp;
6303 hp->prev = NULL;
6304 if (hp->next != NULL)
6305 hp->next->prev = hp;
6306 hp->length = len;
6307 hp->value = 0;
6308 hp->name = ((U_CHAR *) hp) + sizeof (ASSERTION_HASHNODE);
6309 p = hp->name;
6310 q = name;
6311 for (i = 0; i < len; i++)
6312 *p++ = *q++;
6313 hp->name[len] = 0;
6314 return hp;
6318 * find the most recent hash node for name name (ending with first
6319 * non-identifier char) installed by install
6321 * If LEN is >= 0, it is the length of the name.
6322 * Otherwise, compute the length by scanning the entire name.
6324 * If HASH is >= 0, it is the precomputed hash code.
6325 * Otherwise, compute the hash code.
6327 static ASSERTION_HASHNODE *
6328 assertion_lookup (name, len, hash)
6329 U_CHAR *name;
6330 int len;
6331 int hash;
6333 register ASSERTION_HASHNODE *bucket;
6335 bucket = assertion_hashtab[hash];
6336 while (bucket) {
6337 if (bucket->length == len && strncmp (bucket->name, name, len) == 0)
6338 return bucket;
6339 bucket = bucket->next;
6341 return NULL;
6344 static void
6345 delete_assertion (hp)
6346 ASSERTION_HASHNODE *hp;
6349 if (hp->prev != NULL)
6350 hp->prev->next = hp->next;
6351 if (hp->next != NULL)
6352 hp->next->prev = hp->prev;
6354 /* make sure that the bucket chain header that
6355 the deleted guy was on points to the right thing afterwards. */
6356 if (hp == *hp->bucket_hdr)
6357 *hp->bucket_hdr = hp->next;
6359 free (hp);
6363 * interpret #line command. Remembers previously seen fnames
6364 * in its very own hash table.
6366 #define FNAME_HASHSIZE 37
6368 static int
6369 do_line (buf, limit, op, keyword)
6370 U_CHAR *buf, *limit;
6371 FILE_BUF *op;
6372 struct directive *keyword;
6374 register U_CHAR *bp;
6375 FILE_BUF *ip = &instack[indepth];
6376 FILE_BUF tem;
6377 int new_lineno;
6378 enum file_change_code file_change = same_file;
6380 /* Expand any macros. */
6381 tem = expand_to_temp_buffer (buf, limit, 0, 0);
6383 /* Point to macroexpanded line, which is null-terminated now. */
6384 bp = tem.buf;
6385 SKIP_WHITE_SPACE (bp);
6387 if (!isdigit (*bp)) {
6388 error ("invalid format `#line' command");
6389 return 0;
6392 /* The Newline at the end of this line remains to be processed.
6393 To put the next line at the specified line number,
6394 we must store a line number now that is one less. */
6395 new_lineno = atoi (bp) - 1;
6397 /* NEW_LINENO is one less than the actual line number here. */
6398 if (pedantic && new_lineno < 0)
6399 pedwarn ("line number out of range in `#line' command");
6401 /* skip over the line number. */
6402 while (isdigit (*bp))
6403 bp++;
6405 #if 0 /* #line 10"foo.c" is supposed to be allowed. */
6406 if (*bp && !is_space[*bp]) {
6407 error ("invalid format `#line' command");
6408 return;
6410 #endif
6412 SKIP_WHITE_SPACE (bp);
6414 if (*bp == '\"') {
6415 static HASHNODE *fname_table[FNAME_HASHSIZE];
6416 HASHNODE *hp, **hash_bucket;
6417 U_CHAR *fname, *p;
6418 int fname_length;
6420 fname = ++bp;
6422 /* Turn the file name, which is a character string literal,
6423 into a null-terminated string. Do this in place. */
6424 p = bp;
6425 for (;;)
6426 switch ((*p++ = *bp++)) {
6427 case '\0':
6428 error ("invalid format `#line' command");
6429 return 0;
6431 case '\\':
6433 char *bpc = (char *) bp;
6434 int c = parse_escape (&bpc);
6435 bp = (U_CHAR *) bpc;
6436 if (c < 0)
6437 p--;
6438 else
6439 p[-1] = c;
6441 break;
6443 case '\"':
6444 p[-1] = 0;
6445 goto fname_done;
6447 fname_done:
6448 fname_length = p - fname;
6450 SKIP_WHITE_SPACE (bp);
6451 if (*bp) {
6452 if (pedantic)
6453 pedwarn ("garbage at end of `#line' command");
6454 if (*bp == '1')
6455 file_change = enter_file;
6456 else if (*bp == '2')
6457 file_change = leave_file;
6458 else if (*bp == '3')
6459 ip->system_header_p = 1;
6460 else if (*bp == '4')
6461 ip->system_header_p = 2;
6462 else {
6463 error ("invalid format `#line' command");
6464 return 0;
6467 bp++;
6468 SKIP_WHITE_SPACE (bp);
6469 if (*bp == '3') {
6470 ip->system_header_p = 1;
6471 bp++;
6472 SKIP_WHITE_SPACE (bp);
6474 if (*bp == '4') {
6475 ip->system_header_p = 2;
6476 bp++;
6477 SKIP_WHITE_SPACE (bp);
6479 if (*bp) {
6480 error ("invalid format `#line' command");
6481 return 0;
6485 hash_bucket =
6486 &fname_table[hashf (fname, fname_length, FNAME_HASHSIZE)];
6487 for (hp = *hash_bucket; hp != NULL; hp = hp->next)
6488 if (hp->length == fname_length &&
6489 strncmp (hp->value.cpval, fname, fname_length) == 0) {
6490 ip->nominal_fname = hp->value.cpval;
6491 break;
6493 if (hp == 0) {
6494 /* Didn't find it; cons up a new one. */
6495 hp = (HASHNODE *) xcalloc (1, sizeof (HASHNODE) + fname_length + 1);
6496 hp->next = *hash_bucket;
6497 *hash_bucket = hp;
6499 hp->length = fname_length;
6500 ip->nominal_fname = hp->value.cpval = ((char *) hp) + sizeof (HASHNODE);
6501 bcopy (fname, hp->value.cpval, fname_length);
6503 } else if (*bp) {
6504 error ("invalid format `#line' command");
6505 return 0;
6508 ip->lineno = new_lineno;
6509 output_line_command (ip, op, 0, file_change);
6510 check_expand (op, ip->length - (ip->bufp - ip->buf));
6511 return 0;
6515 * remove the definition of a symbol from the symbol table.
6516 * according to un*x /lib/cpp, it is not an error to undef
6517 * something that has no definitions, so it isn't one here either.
6520 static int
6521 do_undef (buf, limit, op, keyword)
6522 U_CHAR *buf, *limit;
6523 FILE_BUF *op;
6524 struct directive *keyword;
6526 int sym_length;
6527 HASHNODE *hp;
6528 U_CHAR *orig_buf = buf;
6530 /* If this is a precompiler run (with -pcp) pass thru #undef commands. */
6531 if (pcp_outfile && op)
6532 pass_thru_directive (buf, limit, op, keyword);
6534 SKIP_WHITE_SPACE (buf);
6535 sym_length = check_macro_name (buf, "macro");
6537 while ((hp = lookup (buf, sym_length, -1)) != NULL) {
6538 /* If we are generating additional info for debugging (with -g) we
6539 need to pass through all effective #undef commands. */
6540 if (debug_output && op)
6541 pass_thru_directive (orig_buf, limit, op, keyword);
6542 if (hp->type != T_MACRO)
6543 warning ("undefining `%s'", hp->name);
6544 delete_macro (hp);
6547 if (pedantic) {
6548 buf += sym_length;
6549 SKIP_WHITE_SPACE (buf);
6550 if (buf != limit)
6551 pedwarn ("garbage after `#undef' directive");
6553 return 0;
6557 * Report an error detected by the program we are processing.
6558 * Use the text of the line in the error message.
6559 * (We use error because it prints the filename & line#.)
6562 static int
6563 do_error (buf, limit, op, keyword)
6564 U_CHAR *buf, *limit;
6565 FILE_BUF *op;
6566 struct directive *keyword;
6568 int length = limit - buf;
6569 U_CHAR *copy = (U_CHAR *) xmalloc (length + 1);
6570 bcopy ((char *) buf, (char *) copy, length);
6571 copy[length] = 0;
6572 SKIP_WHITE_SPACE (copy);
6573 error ("#error %s", copy);
6574 return 0;
6578 * Report a warning detected by the program we are processing.
6579 * Use the text of the line in the warning message, then continue.
6580 * (We use error because it prints the filename & line#.)
6583 static int
6584 do_warning (buf, limit, op, keyword)
6585 U_CHAR *buf, *limit;
6586 FILE_BUF *op;
6587 struct directive *keyword;
6589 int length = limit - buf;
6590 U_CHAR *copy = (U_CHAR *) xmalloc (length + 1);
6591 bcopy ((char *) buf, (char *) copy, length);
6592 copy[length] = 0;
6593 SKIP_WHITE_SPACE (copy);
6594 warning ("#warning %s", copy);
6595 return 0;
6598 /* Remember the name of the current file being read from so that we can
6599 avoid ever including it again. */
6601 static int
6602 do_once ()
6604 int i;
6605 FILE_BUF *ip = NULL;
6607 for (i = indepth; i >= 0; i--)
6608 if (instack[i].fname != NULL) {
6609 ip = &instack[i];
6610 break;
6613 if (ip != NULL) {
6614 struct file_name_list *new;
6616 new = (struct file_name_list *) xmalloc (sizeof (struct file_name_list));
6617 new->next = dont_repeat_files;
6618 dont_repeat_files = new;
6619 new->fname = savestring (ip->fname);
6620 new->control_macro = 0;
6621 new->got_name_map = 0;
6622 new->c_system_include_path = 0;
6624 return 0;
6627 /* #ident has already been copied to the output file, so just ignore it. */
6629 static int
6630 do_ident (buf, limit)
6631 U_CHAR *buf, *limit;
6633 FILE_BUF trybuf;
6634 int len;
6635 FILE_BUF *op = &outbuf;
6637 /* Allow #ident in system headers, since that's not user's fault. */
6638 if (pedantic && !instack[indepth].system_header_p)
6639 pedwarn ("ANSI C does not allow `#ident'");
6641 trybuf = expand_to_temp_buffer (buf, limit, 0, 0);
6642 buf = (U_CHAR *) alloca (trybuf.bufp - trybuf.buf + 1);
6643 bcopy ((char *) trybuf.buf, (char *) buf, trybuf.bufp - trybuf.buf);
6644 limit = buf + (trybuf.bufp - trybuf.buf);
6645 len = (limit - buf);
6646 free (trybuf.buf);
6648 /* Output directive name. */
6649 check_expand (op, 7);
6650 bcopy ("#ident ", (char *) op->bufp, 7);
6651 op->bufp += 7;
6653 /* Output the expanded argument line. */
6654 check_expand (op, len);
6655 bcopy ((char *) buf, (char *) op->bufp, len);
6656 op->bufp += len;
6658 return 0;
6661 /* #pragma and its argument line have already been copied to the output file.
6662 Just check for some recognized pragmas that need validation here. */
6664 static int
6665 do_pragma (buf, limit)
6666 U_CHAR *buf, *limit;
6668 SKIP_WHITE_SPACE (buf);
6669 if (!strncmp (buf, "once", 4)) {
6670 /* Allow #pragma once in system headers, since that's not the user's
6671 fault. */
6672 if (!instack[indepth].system_header_p)
6673 warning ("`#pragma once' is obsolete");
6674 do_once ();
6677 if (!strncmp (buf, "implementation", 14)) {
6678 /* Be quiet about `#pragma implementation' for a file only if it hasn't
6679 been included yet. */
6680 struct file_name_list *ptr;
6681 U_CHAR *p = buf + 14, *fname, *inc_fname;
6682 SKIP_WHITE_SPACE (p);
6683 if (*p == '\n' || *p != '\"')
6684 return 0;
6686 fname = p + 1;
6687 if (p = (U_CHAR *) index (fname, '\"'))
6688 *p = '\0';
6690 for (ptr = all_include_files; ptr; ptr = ptr->next) {
6691 inc_fname = (U_CHAR *) rindex (ptr->fname, '/');
6692 inc_fname = inc_fname ? inc_fname + 1 : (U_CHAR *) ptr->fname;
6693 if (inc_fname && !strcmp (inc_fname, fname))
6694 warning ("`#pragma implementation' for `%s' appears after file is included",
6695 fname);
6699 return 0;
6702 #if 0
6703 /* This was a fun hack, but #pragma seems to start to be useful.
6704 By failing to recognize it, we pass it through unchanged to cc1. */
6707 * the behavior of the #pragma directive is implementation defined.
6708 * this implementation defines it as follows.
6711 static int
6712 do_pragma ()
6714 close (0);
6715 if (open ("/dev/tty", O_RDONLY, 0666) != 0)
6716 goto nope;
6717 close (1);
6718 if (open ("/dev/tty", O_WRONLY, 0666) != 1)
6719 goto nope;
6720 execl ("/usr/games/hack", "#pragma", 0);
6721 execl ("/usr/games/rogue", "#pragma", 0);
6722 execl ("/usr/new/emacs", "-f", "hanoi", "9", "-kill", 0);
6723 execl ("/usr/local/emacs", "-f", "hanoi", "9", "-kill", 0);
6724 nope:
6725 fatal ("You are in a maze of twisty compiler features, all different");
6727 #endif
6729 /* Just ignore #sccs, on systems where we define it at all. */
6731 static int
6732 do_sccs ()
6734 if (pedantic)
6735 pedwarn ("ANSI C does not allow `#sccs'");
6736 return 0;
6740 * handle #if command by
6741 * 1) inserting special `defined' keyword into the hash table
6742 * that gets turned into 0 or 1 by special_symbol (thus,
6743 * if the luser has a symbol called `defined' already, it won't
6744 * work inside the #if command)
6745 * 2) rescan the input into a temporary output buffer
6746 * 3) pass the output buffer to the yacc parser and collect a value
6747 * 4) clean up the mess left from steps 1 and 2.
6748 * 5) call conditional_skip to skip til the next #endif (etc.),
6749 * or not, depending on the value from step 3.
6752 static int
6753 do_if (buf, limit, op, keyword)
6754 U_CHAR *buf, *limit;
6755 FILE_BUF *op;
6756 struct directive *keyword;
6758 HOST_WIDE_INT value;
6759 FILE_BUF *ip = &instack[indepth];
6761 value = eval_if_expression (buf, limit - buf);
6762 conditional_skip (ip, value == 0, T_IF, NULL_PTR, op);
6763 return 0;
6767 * handle a #elif directive by not changing if_stack either.
6768 * see the comment above do_else.
6771 static int
6772 do_elif (buf, limit, op, keyword)
6773 U_CHAR *buf, *limit;
6774 FILE_BUF *op;
6775 struct directive *keyword;
6777 HOST_WIDE_INT value;
6778 FILE_BUF *ip = &instack[indepth];
6780 if (if_stack == instack[indepth].if_stack) {
6781 error ("`#elif' not within a conditional");
6782 return 0;
6783 } else {
6784 if (if_stack->type != T_IF && if_stack->type != T_ELIF) {
6785 error ("`#elif' after `#else'");
6786 fprintf (stderr, " (matches line %d", if_stack->lineno);
6787 if (if_stack->fname != NULL && ip->fname != NULL &&
6788 strcmp (if_stack->fname, ip->nominal_fname) != 0)
6789 fprintf (stderr, ", file %s", if_stack->fname);
6790 fprintf (stderr, ")\n");
6792 if_stack->type = T_ELIF;
6795 if (if_stack->if_succeeded)
6796 skip_if_group (ip, 0, op);
6797 else {
6798 value = eval_if_expression (buf, limit - buf);
6799 if (value == 0)
6800 skip_if_group (ip, 0, op);
6801 else {
6802 ++if_stack->if_succeeded; /* continue processing input */
6803 output_line_command (ip, op, 1, same_file);
6806 return 0;
6810 * evaluate a #if expression in BUF, of length LENGTH,
6811 * then parse the result as a C expression and return the value as an int.
6813 static HOST_WIDE_INT
6814 eval_if_expression (buf, length)
6815 U_CHAR *buf;
6816 int length;
6818 FILE_BUF temp_obuf;
6819 HASHNODE *save_defined;
6820 HOST_WIDE_INT value;
6822 save_defined = install ("defined", -1, T_SPEC_DEFINED, 0, NULL_PTR, -1);
6823 pcp_inside_if = 1;
6824 temp_obuf = expand_to_temp_buffer (buf, buf + length, 0, 1);
6825 pcp_inside_if = 0;
6826 delete_macro (save_defined); /* clean up special symbol */
6828 value = parse_c_expression (temp_obuf.buf);
6830 free (temp_obuf.buf);
6832 return value;
6836 * routine to handle ifdef/ifndef. Try to look up the symbol,
6837 * then do or don't skip to the #endif/#else/#elif depending
6838 * on what directive is actually being processed.
6841 static int
6842 do_xifdef (buf, limit, op, keyword)
6843 U_CHAR *buf, *limit;
6844 FILE_BUF *op;
6845 struct directive *keyword;
6847 int skip;
6848 FILE_BUF *ip = &instack[indepth];
6849 U_CHAR *end;
6850 int start_of_file = 0;
6851 U_CHAR *control_macro = 0;
6853 /* Detect a #ifndef at start of file (not counting comments). */
6854 if (ip->fname != 0 && keyword->type == T_IFNDEF) {
6855 U_CHAR *p = ip->buf;
6856 while (p != directive_start) {
6857 U_CHAR c = *p++;
6858 if (is_space[c])
6860 else if (c == '/' && p != ip->bufp && *p == '*') {
6861 /* Skip this comment. */
6862 int junk = 0;
6863 U_CHAR *save_bufp = ip->bufp;
6864 ip->bufp = p + 1;
6865 p = skip_to_end_of_comment (ip, &junk, 1);
6866 ip->bufp = save_bufp;
6867 } else {
6868 goto fail;
6871 /* If we get here, this conditional is the beginning of the file. */
6872 start_of_file = 1;
6873 fail: ;
6876 /* Discard leading and trailing whitespace. */
6877 SKIP_WHITE_SPACE (buf);
6878 while (limit != buf && is_hor_space[limit[-1]]) limit--;
6880 /* Find the end of the identifier at the beginning. */
6881 for (end = buf; is_idchar[*end]; end++);
6883 if (end == buf) {
6884 skip = (keyword->type == T_IFDEF);
6885 if (! traditional)
6886 pedwarn (end == limit ? "`#%s' with no argument"
6887 : "`#%s' argument starts with punctuation",
6888 keyword->name);
6889 } else {
6890 HASHNODE *hp;
6892 if (pedantic && buf[0] >= '0' && buf[0] <= '9')
6893 pedwarn ("`#%s' argument starts with a digit", keyword->name);
6894 else if (end != limit && !traditional)
6895 pedwarn ("garbage at end of `#%s' argument", keyword->name);
6897 hp = lookup (buf, end-buf, -1);
6899 if (pcp_outfile) {
6900 /* Output a precondition for this macro. */
6901 if (hp &&
6902 (hp->type == T_CONST
6903 || (hp->type == T_MACRO && hp->value.defn->predefined)))
6904 fprintf (pcp_outfile, "#define %s\n", hp->name);
6905 else {
6906 U_CHAR *cp = buf;
6907 fprintf (pcp_outfile, "#undef ");
6908 while (is_idchar[*cp]) /* Ick! */
6909 fputc (*cp++, pcp_outfile);
6910 putc ('\n', pcp_outfile);
6914 skip = (hp == NULL) ^ (keyword->type == T_IFNDEF);
6915 if (start_of_file && !skip) {
6916 control_macro = (U_CHAR *) xmalloc (end - buf + 1);
6917 bcopy ((char *) buf, (char *) control_macro, end - buf);
6918 control_macro[end - buf] = 0;
6922 conditional_skip (ip, skip, T_IF, control_macro, op);
6923 return 0;
6926 /* Push TYPE on stack; then, if SKIP is nonzero, skip ahead.
6927 If this is a #ifndef starting at the beginning of a file,
6928 CONTROL_MACRO is the macro name tested by the #ifndef.
6929 Otherwise, CONTROL_MACRO is 0. */
6931 static void
6932 conditional_skip (ip, skip, type, control_macro, op)
6933 FILE_BUF *ip;
6934 int skip;
6935 enum node_type type;
6936 U_CHAR *control_macro;
6937 FILE_BUF *op;
6939 IF_STACK_FRAME *temp;
6941 temp = (IF_STACK_FRAME *) xcalloc (1, sizeof (IF_STACK_FRAME));
6942 temp->fname = ip->nominal_fname;
6943 temp->lineno = ip->lineno;
6944 temp->next = if_stack;
6945 temp->control_macro = control_macro;
6946 if_stack = temp;
6948 if_stack->type = type;
6950 if (skip != 0) {
6951 skip_if_group (ip, 0, op);
6952 return;
6953 } else {
6954 ++if_stack->if_succeeded;
6955 output_line_command (ip, &outbuf, 1, same_file);
6960 * skip to #endif, #else, or #elif. adjust line numbers, etc.
6961 * leaves input ptr at the sharp sign found.
6962 * If ANY is nonzero, return at next directive of any sort.
6964 static void
6965 skip_if_group (ip, any, op)
6966 FILE_BUF *ip;
6967 int any;
6968 FILE_BUF *op;
6970 register U_CHAR *bp = ip->bufp, *cp;
6971 register U_CHAR *endb = ip->buf + ip->length;
6972 struct directive *kt;
6973 IF_STACK_FRAME *save_if_stack = if_stack; /* don't pop past here */
6974 U_CHAR *beg_of_line = bp;
6975 register int ident_length;
6976 U_CHAR *ident, *after_ident;
6977 /* Save info about where the group starts. */
6978 U_CHAR *beg_of_group = bp;
6979 int beg_lineno = ip->lineno;
6981 if (output_conditionals && op != 0) {
6982 char *ptr = "#failed\n";
6983 int len = strlen (ptr);
6985 if (op->bufp > op->buf && op->bufp[-1] != '\n')
6987 *op->bufp++ = '\n';
6988 op->lineno++;
6990 check_expand (op, len);
6991 bcopy (ptr, (char *) op->bufp, len);
6992 op->bufp += len;
6993 op->lineno++;
6994 output_line_command (ip, op, 1, 0);
6997 while (bp < endb) {
6998 switch (*bp++) {
6999 case '/': /* possible comment */
7000 if (*bp == '\\' && bp[1] == '\n')
7001 newline_fix (bp);
7002 if (*bp == '*'
7003 || (cplusplus_comments && *bp == '/')) {
7004 ip->bufp = ++bp;
7005 bp = skip_to_end_of_comment (ip, &ip->lineno, 0);
7007 break;
7008 case '\"':
7009 case '\'':
7010 bp = skip_quoted_string (bp - 1, endb, ip->lineno, &ip->lineno,
7011 NULL_PTR, NULL_PTR);
7012 break;
7013 case '\\':
7014 /* Char after backslash loses its special meaning. */
7015 if (bp < endb) {
7016 if (*bp == '\n')
7017 ++ip->lineno; /* But do update the line-count. */
7018 bp++;
7020 break;
7021 case '\n':
7022 ++ip->lineno;
7023 beg_of_line = bp;
7024 break;
7025 case '#':
7026 ip->bufp = bp - 1;
7028 /* # keyword: a # must be first nonblank char on the line */
7029 if (beg_of_line == 0)
7030 break;
7031 /* Scan from start of line, skipping whitespace, comments
7032 and backslash-newlines, and see if we reach this #.
7033 If not, this # is not special. */
7034 bp = beg_of_line;
7035 /* If -traditional, require # to be at beginning of line. */
7036 if (!traditional)
7037 while (1) {
7038 if (is_hor_space[*bp])
7039 bp++;
7040 else if (*bp == '\\' && bp[1] == '\n')
7041 bp += 2;
7042 else if (*bp == '/' && bp[1] == '*') {
7043 bp += 2;
7044 while (!(*bp == '*' && bp[1] == '/'))
7045 bp++;
7046 bp += 2;
7048 /* There is no point in trying to deal with C++ // comments here,
7049 because if there is one, then this # must be part of the
7050 comment and we would never reach here. */
7051 else break;
7053 if (bp != ip->bufp) {
7054 bp = ip->bufp + 1; /* Reset bp to after the #. */
7055 break;
7058 bp = ip->bufp + 1; /* Point after the '#' */
7060 /* Skip whitespace and \-newline. */
7061 while (1) {
7062 if (is_hor_space[*bp])
7063 bp++;
7064 else if (*bp == '\\' && bp[1] == '\n')
7065 bp += 2;
7066 else if (*bp == '/' && bp[1] == '*') {
7067 bp += 2;
7068 while (!(*bp == '*' && bp[1] == '/')) {
7069 if (*bp == '\n')
7070 ip->lineno++;
7071 bp++;
7073 bp += 2;
7074 } else if (cplusplus_comments && *bp == '/' && bp[1] == '/') {
7075 bp += 2;
7076 while (bp[-1] == '\\' || *bp != '\n') {
7077 if (*bp == '\n')
7078 ip->lineno++;
7079 bp++;
7082 else break;
7085 cp = bp;
7087 /* Now find end of directive name.
7088 If we encounter a backslash-newline, exchange it with any following
7089 symbol-constituents so that we end up with a contiguous name. */
7091 while (1) {
7092 if (is_idchar[*bp])
7093 bp++;
7094 else {
7095 if (*bp == '\\' && bp[1] == '\n')
7096 name_newline_fix (bp);
7097 if (is_idchar[*bp])
7098 bp++;
7099 else break;
7102 ident_length = bp - cp;
7103 ident = cp;
7104 after_ident = bp;
7106 /* A line of just `#' becomes blank. */
7108 if (ident_length == 0 && *after_ident == '\n') {
7109 continue;
7112 if (ident_length == 0 || !is_idstart[*ident]) {
7113 U_CHAR *p = ident;
7114 while (is_idchar[*p]) {
7115 if (*p < '0' || *p > '9')
7116 break;
7117 p++;
7119 /* Handle # followed by a line number. */
7120 if (p != ident && !is_idchar[*p]) {
7121 if (pedantic)
7122 pedwarn ("`#' followed by integer");
7123 continue;
7126 /* Avoid error for `###' and similar cases unless -pedantic. */
7127 if (p == ident) {
7128 while (*p == '#' || is_hor_space[*p]) p++;
7129 if (*p == '\n') {
7130 if (pedantic && !lang_asm)
7131 pedwarn ("invalid preprocessor directive");
7132 continue;
7136 if (!lang_asm && pedantic)
7137 pedwarn ("invalid preprocessor directive name");
7138 continue;
7141 for (kt = directive_table; kt->length >= 0; kt++) {
7142 IF_STACK_FRAME *temp;
7143 if (ident_length == kt->length
7144 && strncmp (cp, kt->name, kt->length) == 0) {
7145 /* If we are asked to return on next directive, do so now. */
7146 if (any)
7147 goto done;
7149 switch (kt->type) {
7150 case T_IF:
7151 case T_IFDEF:
7152 case T_IFNDEF:
7153 temp = (IF_STACK_FRAME *) xcalloc (1, sizeof (IF_STACK_FRAME));
7154 temp->next = if_stack;
7155 if_stack = temp;
7156 temp->lineno = ip->lineno;
7157 temp->fname = ip->nominal_fname;
7158 temp->type = kt->type;
7159 break;
7160 case T_ELSE:
7161 case T_ENDIF:
7162 if (pedantic && if_stack != save_if_stack)
7163 validate_else (bp);
7164 case T_ELIF:
7165 if (if_stack == instack[indepth].if_stack) {
7166 error ("`#%s' not within a conditional", kt->name);
7167 break;
7169 else if (if_stack == save_if_stack)
7170 goto done; /* found what we came for */
7172 if (kt->type != T_ENDIF) {
7173 if (if_stack->type == T_ELSE)
7174 error ("`#else' or `#elif' after `#else'");
7175 if_stack->type = kt->type;
7176 break;
7179 temp = if_stack;
7180 if_stack = if_stack->next;
7181 free (temp);
7182 break;
7184 break;
7187 /* Don't let erroneous code go by. */
7188 if (kt->length < 0 && !lang_asm && pedantic)
7189 pedwarn ("invalid preprocessor directive name");
7193 ip->bufp = bp;
7194 /* after this returns, rescan will exit because ip->bufp
7195 now points to the end of the buffer.
7196 rescan is responsible for the error message also. */
7198 done:
7199 if (output_conditionals && op != 0) {
7200 char *ptr = "#endfailed\n";
7201 int len = strlen (ptr);
7203 if (op->bufp > op->buf && op->bufp[-1] != '\n')
7205 *op->bufp++ = '\n';
7206 op->lineno++;
7208 check_expand (op, beg_of_line - beg_of_group);
7209 bcopy ((char *) beg_of_group, (char *) op->bufp,
7210 beg_of_line - beg_of_group);
7211 op->bufp += beg_of_line - beg_of_group;
7212 op->lineno += ip->lineno - beg_lineno;
7213 check_expand (op, len);
7214 bcopy (ptr, (char *) op->bufp, len);
7215 op->bufp += len;
7216 op->lineno++;
7221 * handle a #else directive. Do this by just continuing processing
7222 * without changing if_stack ; this is so that the error message
7223 * for missing #endif's etc. will point to the original #if. It
7224 * is possible that something different would be better.
7227 static int
7228 do_else (buf, limit, op, keyword)
7229 U_CHAR *buf, *limit;
7230 FILE_BUF *op;
7231 struct directive *keyword;
7233 FILE_BUF *ip = &instack[indepth];
7235 if (pedantic) {
7236 SKIP_WHITE_SPACE (buf);
7237 if (buf != limit)
7238 pedwarn ("text following `#else' violates ANSI standard");
7241 if (if_stack == instack[indepth].if_stack) {
7242 error ("`#else' not within a conditional");
7243 return 0;
7244 } else {
7245 /* #ifndef can't have its special treatment for containing the whole file
7246 if it has a #else clause. */
7247 if_stack->control_macro = 0;
7249 if (if_stack->type != T_IF && if_stack->type != T_ELIF) {
7250 error ("`#else' after `#else'");
7251 fprintf (stderr, " (matches line %d", if_stack->lineno);
7252 if (strcmp (if_stack->fname, ip->nominal_fname) != 0)
7253 fprintf (stderr, ", file %s", if_stack->fname);
7254 fprintf (stderr, ")\n");
7256 if_stack->type = T_ELSE;
7259 if (if_stack->if_succeeded)
7260 skip_if_group (ip, 0, op);
7261 else {
7262 ++if_stack->if_succeeded; /* continue processing input */
7263 output_line_command (ip, op, 1, same_file);
7265 return 0;
7269 * unstack after #endif command
7272 static int
7273 do_endif (buf, limit, op, keyword)
7274 U_CHAR *buf, *limit;
7275 FILE_BUF *op;
7276 struct directive *keyword;
7278 if (pedantic) {
7279 SKIP_WHITE_SPACE (buf);
7280 if (buf != limit)
7281 pedwarn ("text following `#endif' violates ANSI standard");
7284 if (if_stack == instack[indepth].if_stack)
7285 error ("unbalanced `#endif'");
7286 else {
7287 IF_STACK_FRAME *temp = if_stack;
7288 if_stack = if_stack->next;
7289 if (temp->control_macro != 0) {
7290 /* This #endif matched a #ifndef at the start of the file.
7291 See if it is at the end of the file. */
7292 FILE_BUF *ip = &instack[indepth];
7293 U_CHAR *p = ip->bufp;
7294 U_CHAR *ep = ip->buf + ip->length;
7296 while (p != ep) {
7297 U_CHAR c = *p++;
7298 if (!is_space[c]) {
7299 if (c == '/' && p != ep && *p == '*') {
7300 /* Skip this comment. */
7301 int junk = 0;
7302 U_CHAR *save_bufp = ip->bufp;
7303 ip->bufp = p + 1;
7304 p = skip_to_end_of_comment (ip, &junk, 1);
7305 ip->bufp = save_bufp;
7306 } else
7307 goto fail;
7310 /* If we get here, this #endif ends a #ifndef
7311 that contains all of the file (aside from whitespace).
7312 Arrange not to include the file again
7313 if the macro that was tested is defined.
7315 Do not do this for the top-level file in a -include or any
7316 file in a -imacros. */
7317 if (indepth != 0
7318 && ! (indepth == 1 && no_record_file)
7319 && ! (no_record_file && no_output))
7320 record_control_macro (ip->fname, temp->control_macro);
7321 fail: ;
7323 free (temp);
7324 output_line_command (&instack[indepth], op, 1, same_file);
7326 return 0;
7329 /* When an #else or #endif is found while skipping failed conditional,
7330 if -pedantic was specified, this is called to warn about text after
7331 the command name. P points to the first char after the command name. */
7333 static void
7334 validate_else (p)
7335 register U_CHAR *p;
7337 /* Advance P over whitespace and comments. */
7338 while (1) {
7339 if (*p == '\\' && p[1] == '\n')
7340 p += 2;
7341 if (is_hor_space[*p])
7342 p++;
7343 else if (*p == '/') {
7344 if (p[1] == '\\' && p[2] == '\n')
7345 newline_fix (p + 1);
7346 if (p[1] == '*') {
7347 p += 2;
7348 /* Don't bother warning about unterminated comments
7349 since that will happen later. Just be sure to exit. */
7350 while (*p) {
7351 if (p[1] == '\\' && p[2] == '\n')
7352 newline_fix (p + 1);
7353 if (*p == '*' && p[1] == '/') {
7354 p += 2;
7355 break;
7357 p++;
7360 else if (cplusplus_comments && p[1] == '/') {
7361 p += 2;
7362 while (*p && (*p != '\n' || p[-1] == '\\'))
7363 p++;
7365 } else break;
7367 if (*p && *p != '\n')
7368 pedwarn ("text following `#else' or `#endif' violates ANSI standard");
7371 /* Skip a comment, assuming the input ptr immediately follows the
7372 initial slash-star. Bump *LINE_COUNTER for each newline.
7373 (The canonical line counter is &ip->lineno.)
7374 Don't use this routine (or the next one) if bumping the line
7375 counter is not sufficient to deal with newlines in the string.
7377 If NOWARN is nonzero, don't warn about slash-star inside a comment.
7378 This feature is useful when processing a comment that is going to be
7379 processed or was processed at another point in the preprocessor,
7380 to avoid a duplicate warning. Likewise for unterminated comment errors. */
7382 static U_CHAR *
7383 skip_to_end_of_comment (ip, line_counter, nowarn)
7384 register FILE_BUF *ip;
7385 int *line_counter; /* place to remember newlines, or NULL */
7386 int nowarn;
7388 register U_CHAR *limit = ip->buf + ip->length;
7389 register U_CHAR *bp = ip->bufp;
7390 FILE_BUF *op = &outbuf; /* JF */
7391 int output = put_out_comments && !line_counter;
7392 int start_line = line_counter ? *line_counter : 0;
7394 /* JF this line_counter stuff is a crock to make sure the
7395 comment is only put out once, no matter how many times
7396 the comment is skipped. It almost works */
7397 if (output) {
7398 *op->bufp++ = '/';
7399 *op->bufp++ = '*';
7401 if (cplusplus_comments && bp[-1] == '/') {
7402 if (output) {
7403 while (bp < limit) {
7404 *op->bufp++ = *bp;
7405 if (*bp == '\n' && bp[-1] != '\\')
7406 break;
7407 if (*bp == '\n') {
7408 ++*line_counter;
7409 ++op->lineno;
7411 bp++;
7413 op->bufp[-1] = '*';
7414 *op->bufp++ = '/';
7415 *op->bufp++ = '\n';
7416 } else {
7417 while (bp < limit) {
7418 if (bp[-1] != '\\' && *bp == '\n') {
7419 break;
7420 } else {
7421 if (*bp == '\n' && line_counter)
7422 ++*line_counter;
7423 bp++;
7427 ip->bufp = bp;
7428 return bp;
7430 while (bp < limit) {
7431 if (output)
7432 *op->bufp++ = *bp;
7433 switch (*bp++) {
7434 case '/':
7435 if (warn_comments && !nowarn && bp < limit && *bp == '*')
7436 warning ("`/*' within comment");
7437 break;
7438 case '\n':
7439 /* If this is the end of the file, we have an unterminated comment.
7440 Don't swallow the newline. We are guaranteed that there will be a
7441 trailing newline and various pieces assume it's there. */
7442 if (bp == limit)
7444 --bp;
7445 --limit;
7446 break;
7448 if (line_counter != NULL)
7449 ++*line_counter;
7450 if (output)
7451 ++op->lineno;
7452 break;
7453 case '*':
7454 if (*bp == '\\' && bp[1] == '\n')
7455 newline_fix (bp);
7456 if (*bp == '/') {
7457 if (output)
7458 *op->bufp++ = '/';
7459 ip->bufp = ++bp;
7460 return bp;
7462 break;
7466 if (!nowarn)
7467 error_with_line (line_for_error (start_line), "unterminated comment");
7468 ip->bufp = bp;
7469 return bp;
7473 * Skip over a quoted string. BP points to the opening quote.
7474 * Returns a pointer after the closing quote. Don't go past LIMIT.
7475 * START_LINE is the line number of the starting point (but it need
7476 * not be valid if the starting point is inside a macro expansion).
7478 * The input stack state is not changed.
7480 * If COUNT_NEWLINES is nonzero, it points to an int to increment
7481 * for each newline passed.
7483 * If BACKSLASH_NEWLINES_P is nonzero, store 1 thru it
7484 * if we pass a backslash-newline.
7486 * If EOFP is nonzero, set *EOFP to 1 if the string is unterminated.
7488 static U_CHAR *
7489 skip_quoted_string (bp, limit, start_line, count_newlines, backslash_newlines_p, eofp)
7490 register U_CHAR *bp;
7491 register U_CHAR *limit;
7492 int start_line;
7493 int *count_newlines;
7494 int *backslash_newlines_p;
7495 int *eofp;
7497 register U_CHAR c, match;
7499 match = *bp++;
7500 while (1) {
7501 if (bp >= limit) {
7502 error_with_line (line_for_error (start_line),
7503 "unterminated string or character constant");
7504 error_with_line (multiline_string_line,
7505 "possible real start of unterminated constant");
7506 multiline_string_line = 0;
7507 if (eofp)
7508 *eofp = 1;
7509 break;
7511 c = *bp++;
7512 if (c == '\\') {
7513 while (*bp == '\\' && bp[1] == '\n') {
7514 if (backslash_newlines_p)
7515 *backslash_newlines_p = 1;
7516 if (count_newlines)
7517 ++*count_newlines;
7518 bp += 2;
7520 if (*bp == '\n' && count_newlines) {
7521 if (backslash_newlines_p)
7522 *backslash_newlines_p = 1;
7523 ++*count_newlines;
7525 bp++;
7526 } else if (c == '\n') {
7527 if (traditional) {
7528 /* Unterminated strings and character constants are 'valid'. */
7529 bp--; /* Don't consume the newline. */
7530 if (eofp)
7531 *eofp = 1;
7532 break;
7534 if (pedantic || match == '\'') {
7535 error_with_line (line_for_error (start_line),
7536 "unterminated string or character constant");
7537 bp--;
7538 if (eofp)
7539 *eofp = 1;
7540 break;
7542 /* If not traditional, then allow newlines inside strings. */
7543 if (count_newlines)
7544 ++*count_newlines;
7545 if (multiline_string_line == 0)
7546 multiline_string_line = start_line;
7547 } else if (c == match)
7548 break;
7550 return bp;
7553 /* Place into DST a quoted string representing the string SRC.
7554 Return the address of DST's terminating null. */
7555 static char *
7556 quote_string (dst, src)
7557 char *dst, *src;
7559 U_CHAR c;
7561 *dst++ = '\"';
7562 for (;;)
7563 switch ((c = *src++))
7565 default:
7566 if (isprint (c))
7567 *dst++ = c;
7568 else
7570 sprintf (dst, "\\%03o", c);
7571 dst += 4;
7573 break;
7575 case '\"':
7576 case '\\':
7577 *dst++ = '\\';
7578 *dst++ = c;
7579 break;
7581 case '\0':
7582 *dst++ = '\"';
7583 *dst = '\0';
7584 return dst;
7588 /* Skip across a group of balanced parens, starting from IP->bufp.
7589 IP->bufp is updated. Use this with IP->bufp pointing at an open-paren.
7591 This does not handle newlines, because it's used for the arg of #if,
7592 where there aren't any newlines. Also, backslash-newline can't appear. */
7594 static U_CHAR *
7595 skip_paren_group (ip)
7596 register FILE_BUF *ip;
7598 U_CHAR *limit = ip->buf + ip->length;
7599 U_CHAR *p = ip->bufp;
7600 int depth = 0;
7601 int lines_dummy = 0;
7603 while (p != limit) {
7604 int c = *p++;
7605 switch (c) {
7606 case '(':
7607 depth++;
7608 break;
7610 case ')':
7611 depth--;
7612 if (depth == 0)
7613 return ip->bufp = p;
7614 break;
7616 case '/':
7617 if (*p == '*') {
7618 ip->bufp = p;
7619 p = skip_to_end_of_comment (ip, &lines_dummy, 0);
7620 p = ip->bufp;
7623 case '"':
7624 case '\'':
7626 int eofp = 0;
7627 p = skip_quoted_string (p - 1, limit, 0, NULL_PTR, NULL_PTR, &eofp);
7628 if (eofp)
7629 return ip->bufp = p;
7631 break;
7635 ip->bufp = p;
7636 return p;
7640 * write out a #line command, for instance, after an #include file.
7641 * If CONDITIONAL is nonzero, we can omit the #line if it would
7642 * appear to be a no-op, and we can output a few newlines instead
7643 * if we want to increase the line number by a small amount.
7644 * FILE_CHANGE says whether we are entering a file, leaving, or neither.
7647 static void
7648 output_line_command (ip, op, conditional, file_change)
7649 FILE_BUF *ip, *op;
7650 int conditional;
7651 enum file_change_code file_change;
7653 int len;
7654 char *line_cmd_buf, *line_end;
7656 if (no_line_commands
7657 || ip->fname == NULL
7658 || no_output) {
7659 op->lineno = ip->lineno;
7660 return;
7663 if (conditional) {
7664 if (ip->lineno == op->lineno)
7665 return;
7667 /* If the inherited line number is a little too small,
7668 output some newlines instead of a #line command. */
7669 if (ip->lineno > op->lineno && ip->lineno < op->lineno + 8) {
7670 check_expand (op, 10);
7671 while (ip->lineno > op->lineno) {
7672 *op->bufp++ = '\n';
7673 op->lineno++;
7675 return;
7679 /* Don't output a line number of 0 if we can help it. */
7680 if (ip->lineno == 0 && ip->bufp - ip->buf < ip->length
7681 && *ip->bufp == '\n') {
7682 ip->lineno++;
7683 ip->bufp++;
7686 line_cmd_buf = (char *) alloca (4 * strlen (ip->nominal_fname) + 100);
7687 #ifdef OUTPUT_LINE_COMMANDS
7688 sprintf (line_cmd_buf, "#line %d ", ip->lineno);
7689 #else
7690 sprintf (line_cmd_buf, "# %d ", ip->lineno);
7691 #endif
7692 line_end = quote_string (line_cmd_buf + strlen (line_cmd_buf),
7693 ip->nominal_fname);
7694 if (file_change != same_file) {
7695 *line_end++ = ' ';
7696 *line_end++ = file_change == enter_file ? '1' : '2';
7698 /* Tell cc1 if following text comes from a system header file. */
7699 if (ip->system_header_p) {
7700 *line_end++ = ' ';
7701 *line_end++ = '3';
7703 #ifndef NO_IMPLICIT_EXTERN_C
7704 /* Tell cc1plus if following text should be treated as C. */
7705 if (ip->system_header_p == 2 && cplusplus) {
7706 *line_end++ = ' ';
7707 *line_end++ = '4';
7709 #endif
7710 *line_end++ = '\n';
7711 len = line_end - line_cmd_buf;
7712 check_expand (op, len + 1);
7713 if (op->bufp > op->buf && op->bufp[-1] != '\n')
7714 *op->bufp++ = '\n';
7715 bcopy ((char *) line_cmd_buf, (char *) op->bufp, len);
7716 op->bufp += len;
7717 op->lineno = ip->lineno;
7720 /* This structure represents one parsed argument in a macro call.
7721 `raw' points to the argument text as written (`raw_length' is its length).
7722 `expanded' points to the argument's macro-expansion
7723 (its length is `expand_length').
7724 `stringified_length' is the length the argument would have
7725 if stringified.
7726 `use_count' is the number of times this macro arg is substituted
7727 into the macro. If the actual use count exceeds 10,
7728 the value stored is 10.
7729 `free1' and `free2', if nonzero, point to blocks to be freed
7730 when the macro argument data is no longer needed. */
7732 struct argdata {
7733 U_CHAR *raw, *expanded;
7734 int raw_length, expand_length;
7735 int stringified_length;
7736 U_CHAR *free1, *free2;
7737 char newlines;
7738 char comments;
7739 char use_count;
7742 /* Expand a macro call.
7743 HP points to the symbol that is the macro being called.
7744 Put the result of expansion onto the input stack
7745 so that subsequent input by our caller will use it.
7747 If macro wants arguments, caller has already verified that
7748 an argument list follows; arguments come from the input stack. */
7750 static void
7751 macroexpand (hp, op)
7752 HASHNODE *hp;
7753 FILE_BUF *op;
7755 int nargs;
7756 DEFINITION *defn = hp->value.defn;
7757 register U_CHAR *xbuf;
7758 int xbuf_len;
7759 int start_line = instack[indepth].lineno;
7760 int rest_args, rest_zero;
7762 CHECK_DEPTH (return;);
7764 /* it might not actually be a macro. */
7765 if (hp->type != T_MACRO) {
7766 special_symbol (hp, op);
7767 return;
7770 /* This macro is being used inside a #if, which means it must be */
7771 /* recorded as a precondition. */
7772 if (pcp_inside_if && pcp_outfile && defn->predefined)
7773 dump_single_macro (hp, pcp_outfile);
7775 nargs = defn->nargs;
7777 if (nargs >= 0) {
7778 register int i;
7779 struct argdata *args;
7780 char *parse_error = 0;
7782 args = (struct argdata *) alloca ((nargs + 1) * sizeof (struct argdata));
7784 for (i = 0; i < nargs; i++) {
7785 args[i].raw = (U_CHAR *) "";
7786 args[i].expanded = 0;
7787 args[i].raw_length = args[i].expand_length
7788 = args[i].stringified_length = 0;
7789 args[i].free1 = args[i].free2 = 0;
7790 args[i].use_count = 0;
7793 /* Parse all the macro args that are supplied. I counts them.
7794 The first NARGS args are stored in ARGS.
7795 The rest are discarded.
7796 If rest_args is set then we assume macarg absorbed the rest of the args.
7798 i = 0;
7799 rest_args = 0;
7800 do {
7801 /* Discard the open-parenthesis or comma before the next arg. */
7802 ++instack[indepth].bufp;
7803 if (rest_args)
7804 continue;
7805 if (i < nargs || (nargs == 0 && i == 0)) {
7806 /* if we are working on last arg which absorbs rest of args... */
7807 if (i == nargs - 1 && defn->rest_args)
7808 rest_args = 1;
7809 parse_error = macarg (&args[i], rest_args);
7811 else
7812 parse_error = macarg (NULL_PTR, 0);
7813 if (parse_error) {
7814 error_with_line (line_for_error (start_line), parse_error);
7815 break;
7817 i++;
7818 } while (*instack[indepth].bufp != ')');
7820 /* If we got one arg but it was just whitespace, call that 0 args. */
7821 if (i == 1) {
7822 register U_CHAR *bp = args[0].raw;
7823 register U_CHAR *lim = bp + args[0].raw_length;
7824 /* cpp.texi says for foo ( ) we provide one argument.
7825 However, if foo wants just 0 arguments, treat this as 0. */
7826 if (nargs == 0)
7827 while (bp != lim && is_space[*bp]) bp++;
7828 if (bp == lim)
7829 i = 0;
7832 /* Don't output an error message if we have already output one for
7833 a parse error above. */
7834 rest_zero = 0;
7835 if (nargs == 0 && i > 0) {
7836 if (! parse_error)
7837 error ("arguments given to macro `%s'", hp->name);
7838 } else if (i < nargs) {
7839 /* traditional C allows foo() if foo wants one argument. */
7840 if (nargs == 1 && i == 0 && traditional)
7842 /* the rest args token is allowed to absorb 0 tokens */
7843 else if (i == nargs - 1 && defn->rest_args)
7844 rest_zero = 1;
7845 else if (parse_error)
7847 else if (i == 0)
7848 error ("macro `%s' used without args", hp->name);
7849 else if (i == 1)
7850 error ("macro `%s' used with just one arg", hp->name);
7851 else
7852 error ("macro `%s' used with only %d args", hp->name, i);
7853 } else if (i > nargs) {
7854 if (! parse_error)
7855 error ("macro `%s' used with too many (%d) args", hp->name, i);
7858 /* Swallow the closeparen. */
7859 ++instack[indepth].bufp;
7861 /* If macro wants zero args, we parsed the arglist for checking only.
7862 Read directly from the macro definition. */
7863 if (nargs == 0) {
7864 xbuf = defn->expansion;
7865 xbuf_len = defn->length;
7866 } else {
7867 register U_CHAR *exp = defn->expansion;
7868 register int offset; /* offset in expansion,
7869 copied a piece at a time */
7870 register int totlen; /* total amount of exp buffer filled so far */
7872 register struct reflist *ap, *last_ap;
7874 /* Macro really takes args. Compute the expansion of this call. */
7876 /* Compute length in characters of the macro's expansion.
7877 Also count number of times each arg is used. */
7878 xbuf_len = defn->length;
7879 for (ap = defn->pattern; ap != NULL; ap = ap->next) {
7880 if (ap->stringify)
7881 xbuf_len += args[ap->argno].stringified_length;
7882 else if (ap->raw_before || ap->raw_after || traditional)
7883 /* Add 4 for two newline-space markers to prevent
7884 token concatenation. */
7885 xbuf_len += args[ap->argno].raw_length + 4;
7886 else {
7887 /* We have an ordinary (expanded) occurrence of the arg.
7888 So compute its expansion, if we have not already. */
7889 if (args[ap->argno].expanded == 0) {
7890 FILE_BUF obuf;
7891 obuf = expand_to_temp_buffer (args[ap->argno].raw,
7892 args[ap->argno].raw + args[ap->argno].raw_length,
7893 1, 0);
7895 args[ap->argno].expanded = obuf.buf;
7896 args[ap->argno].expand_length = obuf.length;
7897 args[ap->argno].free2 = obuf.buf;
7900 /* Add 4 for two newline-space markers to prevent
7901 token concatenation. */
7902 xbuf_len += args[ap->argno].expand_length + 4;
7904 if (args[ap->argno].use_count < 10)
7905 args[ap->argno].use_count++;
7908 xbuf = (U_CHAR *) xmalloc (xbuf_len + 1);
7910 /* Generate in XBUF the complete expansion
7911 with arguments substituted in.
7912 TOTLEN is the total size generated so far.
7913 OFFSET is the index in the definition
7914 of where we are copying from. */
7915 offset = totlen = 0;
7916 for (last_ap = NULL, ap = defn->pattern; ap != NULL;
7917 last_ap = ap, ap = ap->next) {
7918 register struct argdata *arg = &args[ap->argno];
7919 int count_before = totlen;
7921 /* Add chars to XBUF. */
7922 for (i = 0; i < ap->nchars; i++, offset++)
7923 xbuf[totlen++] = exp[offset];
7925 /* If followed by an empty rest arg with concatenation,
7926 delete the last run of nonwhite chars. */
7927 if (rest_zero && totlen > count_before
7928 && ((ap->rest_args && ap->raw_before)
7929 || (last_ap != NULL && last_ap->rest_args
7930 && last_ap->raw_after))) {
7931 /* Delete final whitespace. */
7932 while (totlen > count_before && is_space[xbuf[totlen - 1]]) {
7933 totlen--;
7936 /* Delete the nonwhites before them. */
7937 while (totlen > count_before && ! is_space[xbuf[totlen - 1]]) {
7938 totlen--;
7942 if (ap->stringify != 0) {
7943 int arglen = arg->raw_length;
7944 int escaped = 0;
7945 int in_string = 0;
7946 int c;
7947 i = 0;
7948 while (i < arglen
7949 && (c = arg->raw[i], is_space[c]))
7950 i++;
7951 while (i < arglen
7952 && (c = arg->raw[arglen - 1], is_space[c]))
7953 arglen--;
7954 if (!traditional)
7955 xbuf[totlen++] = '\"'; /* insert beginning quote */
7956 for (; i < arglen; i++) {
7957 c = arg->raw[i];
7959 /* Special markers Newline Space
7960 generate nothing for a stringified argument. */
7961 if (c == '\n' && arg->raw[i+1] != '\n') {
7962 i++;
7963 continue;
7966 /* Internal sequences of whitespace are replaced by one space
7967 except within an string or char token. */
7968 if (! in_string
7969 && (c == '\n' ? arg->raw[i+1] == '\n' : is_space[c])) {
7970 while (1) {
7971 /* Note that Newline Space does occur within whitespace
7972 sequences; consider it part of the sequence. */
7973 if (c == '\n' && is_space[arg->raw[i+1]])
7974 i += 2;
7975 else if (c != '\n' && is_space[c])
7976 i++;
7977 else break;
7978 c = arg->raw[i];
7980 i--;
7981 c = ' ';
7984 if (escaped)
7985 escaped = 0;
7986 else {
7987 if (c == '\\')
7988 escaped = 1;
7989 if (in_string) {
7990 if (c == in_string)
7991 in_string = 0;
7992 } else if (c == '\"' || c == '\'')
7993 in_string = c;
7996 /* Escape these chars */
7997 if (c == '\"' || (in_string && c == '\\'))
7998 xbuf[totlen++] = '\\';
7999 if (isprint (c))
8000 xbuf[totlen++] = c;
8001 else {
8002 sprintf ((char *) &xbuf[totlen], "\\%03o", (unsigned int) c);
8003 totlen += 4;
8006 if (!traditional)
8007 xbuf[totlen++] = '\"'; /* insert ending quote */
8008 } else if (ap->raw_before || ap->raw_after || traditional) {
8009 U_CHAR *p1 = arg->raw;
8010 U_CHAR *l1 = p1 + arg->raw_length;
8011 if (ap->raw_before) {
8012 while (p1 != l1 && is_space[*p1]) p1++;
8013 while (p1 != l1 && is_idchar[*p1])
8014 xbuf[totlen++] = *p1++;
8015 /* Delete any no-reexpansion marker that follows
8016 an identifier at the beginning of the argument
8017 if the argument is concatenated with what precedes it. */
8018 if (p1[0] == '\n' && p1[1] == '-')
8019 p1 += 2;
8020 } else if (!traditional) {
8021 /* Ordinary expanded use of the argument.
8022 Put in newline-space markers to prevent token pasting. */
8023 xbuf[totlen++] = '\n';
8024 xbuf[totlen++] = ' ';
8026 if (ap->raw_after) {
8027 /* Arg is concatenated after: delete trailing whitespace,
8028 whitespace markers, and no-reexpansion markers. */
8029 while (p1 != l1) {
8030 if (is_space[l1[-1]]) l1--;
8031 else if (l1[-1] == '-') {
8032 U_CHAR *p2 = l1 - 1;
8033 /* If a `-' is preceded by an odd number of newlines then it
8034 and the last newline are a no-reexpansion marker. */
8035 while (p2 != p1 && p2[-1] == '\n') p2--;
8036 if ((l1 - 1 - p2) & 1) {
8037 l1 -= 2;
8039 else break;
8041 else break;
8045 bcopy ((char *) p1, (char *) (xbuf + totlen), l1 - p1);
8046 totlen += l1 - p1;
8047 if (!traditional && !ap->raw_after) {
8048 /* Ordinary expanded use of the argument.
8049 Put in newline-space markers to prevent token pasting. */
8050 xbuf[totlen++] = '\n';
8051 xbuf[totlen++] = ' ';
8053 } else {
8054 /* Ordinary expanded use of the argument.
8055 Put in newline-space markers to prevent token pasting. */
8056 if (!traditional) {
8057 xbuf[totlen++] = '\n';
8058 xbuf[totlen++] = ' ';
8060 bcopy ((char *) arg->expanded, (char *) (xbuf + totlen),
8061 arg->expand_length);
8062 totlen += arg->expand_length;
8063 if (!traditional) {
8064 xbuf[totlen++] = '\n';
8065 xbuf[totlen++] = ' ';
8067 /* If a macro argument with newlines is used multiple times,
8068 then only expand the newlines once. This avoids creating output
8069 lines which don't correspond to any input line, which confuses
8070 gdb and gcov. */
8071 if (arg->use_count > 1 && arg->newlines > 0) {
8072 /* Don't bother doing change_newlines for subsequent
8073 uses of arg. */
8074 arg->use_count = 1;
8075 arg->expand_length
8076 = change_newlines (arg->expanded, arg->expand_length);
8080 if (totlen > xbuf_len)
8081 abort ();
8084 /* if there is anything left of the definition
8085 after handling the arg list, copy that in too. */
8087 for (i = offset; i < defn->length; i++) {
8088 /* if we've reached the end of the macro */
8089 if (exp[i] == ')')
8090 rest_zero = 0;
8091 if (! (rest_zero && last_ap != NULL && last_ap->rest_args
8092 && last_ap->raw_after))
8093 xbuf[totlen++] = exp[i];
8096 xbuf[totlen] = 0;
8097 xbuf_len = totlen;
8099 for (i = 0; i < nargs; i++) {
8100 if (args[i].free1 != 0)
8101 free (args[i].free1);
8102 if (args[i].free2 != 0)
8103 free (args[i].free2);
8106 } else {
8107 xbuf = defn->expansion;
8108 xbuf_len = defn->length;
8111 /* Now put the expansion on the input stack
8112 so our caller will commence reading from it. */
8114 register FILE_BUF *ip2;
8116 ip2 = &instack[++indepth];
8118 ip2->fname = 0;
8119 ip2->nominal_fname = 0;
8120 /* This may not be exactly correct, but will give much better error
8121 messages for nested macro calls than using a line number of zero. */
8122 ip2->lineno = start_line;
8123 ip2->buf = xbuf;
8124 ip2->length = xbuf_len;
8125 ip2->bufp = xbuf;
8126 ip2->free_ptr = (nargs > 0) ? xbuf : 0;
8127 ip2->macro = hp;
8128 ip2->if_stack = if_stack;
8129 ip2->system_header_p = 0;
8131 /* Recursive macro use sometimes works traditionally.
8132 #define foo(x,y) bar (x (y,0), y)
8133 foo (foo, baz) */
8135 if (!traditional)
8136 hp->type = T_DISABLED;
8141 * Parse a macro argument and store the info on it into *ARGPTR.
8142 * REST_ARGS is passed to macarg1 to make it absorb the rest of the args.
8143 * Return nonzero to indicate a syntax error.
8146 static char *
8147 macarg (argptr, rest_args)
8148 register struct argdata *argptr;
8149 int rest_args;
8151 FILE_BUF *ip = &instack[indepth];
8152 int paren = 0;
8153 int newlines = 0;
8154 int comments = 0;
8156 /* Try to parse as much of the argument as exists at this
8157 input stack level. */
8158 U_CHAR *bp = macarg1 (ip->bufp, ip->buf + ip->length,
8159 &paren, &newlines, &comments, rest_args);
8161 /* If we find the end of the argument at this level,
8162 set up *ARGPTR to point at it in the input stack. */
8163 if (!(ip->fname != 0 && (newlines != 0 || comments != 0))
8164 && bp != ip->buf + ip->length) {
8165 if (argptr != 0) {
8166 argptr->raw = ip->bufp;
8167 argptr->raw_length = bp - ip->bufp;
8168 argptr->newlines = newlines;
8170 ip->bufp = bp;
8171 } else {
8172 /* This input stack level ends before the macro argument does.
8173 We must pop levels and keep parsing.
8174 Therefore, we must allocate a temporary buffer and copy
8175 the macro argument into it. */
8176 int bufsize = bp - ip->bufp;
8177 int extra = newlines;
8178 U_CHAR *buffer = (U_CHAR *) xmalloc (bufsize + extra + 1);
8179 int final_start = 0;
8181 bcopy ((char *) ip->bufp, (char *) buffer, bufsize);
8182 ip->bufp = bp;
8183 ip->lineno += newlines;
8185 while (bp == ip->buf + ip->length) {
8186 if (instack[indepth].macro == 0) {
8187 free (buffer);
8188 return "unterminated macro call";
8190 ip->macro->type = T_MACRO;
8191 if (ip->free_ptr)
8192 free (ip->free_ptr);
8193 ip = &instack[--indepth];
8194 newlines = 0;
8195 comments = 0;
8196 bp = macarg1 (ip->bufp, ip->buf + ip->length, &paren,
8197 &newlines, &comments, rest_args);
8198 final_start = bufsize;
8199 bufsize += bp - ip->bufp;
8200 extra += newlines;
8201 buffer = (U_CHAR *) xrealloc (buffer, bufsize + extra + 1);
8202 bcopy ((char *) ip->bufp, (char *) (buffer + bufsize - (bp - ip->bufp)),
8203 bp - ip->bufp);
8204 ip->bufp = bp;
8205 ip->lineno += newlines;
8208 /* Now, if arg is actually wanted, record its raw form,
8209 discarding comments and duplicating newlines in whatever
8210 part of it did not come from a macro expansion.
8211 EXTRA space has been preallocated for duplicating the newlines.
8212 FINAL_START is the index of the start of that part. */
8213 if (argptr != 0) {
8214 argptr->raw = buffer;
8215 argptr->raw_length = bufsize;
8216 argptr->free1 = buffer;
8217 argptr->newlines = newlines;
8218 argptr->comments = comments;
8219 if ((newlines || comments) && ip->fname != 0)
8220 argptr->raw_length
8221 = final_start +
8222 discard_comments (argptr->raw + final_start,
8223 argptr->raw_length - final_start,
8224 newlines);
8225 argptr->raw[argptr->raw_length] = 0;
8226 if (argptr->raw_length > bufsize + extra)
8227 abort ();
8231 /* If we are not discarding this argument,
8232 macroexpand it and compute its length as stringified.
8233 All this info goes into *ARGPTR. */
8235 if (argptr != 0) {
8236 register U_CHAR *buf, *lim;
8237 register int totlen;
8239 buf = argptr->raw;
8240 lim = buf + argptr->raw_length;
8242 while (buf != lim && is_space[*buf])
8243 buf++;
8244 while (buf != lim && is_space[lim[-1]])
8245 lim--;
8246 totlen = traditional ? 0 : 2; /* Count opening and closing quote. */
8247 while (buf != lim) {
8248 register U_CHAR c = *buf++;
8249 totlen++;
8250 /* Internal sequences of whitespace are replaced by one space
8251 in most cases, but not always. So count all the whitespace
8252 in case we need to keep it all. */
8253 #if 0
8254 if (is_space[c])
8255 SKIP_ALL_WHITE_SPACE (buf);
8256 else
8257 #endif
8258 if (c == '\"' || c == '\\') /* escape these chars */
8259 totlen++;
8260 else if (!isprint (c))
8261 totlen += 3;
8263 argptr->stringified_length = totlen;
8265 return 0;
8268 /* Scan text from START (inclusive) up to LIMIT (exclusive),
8269 counting parens in *DEPTHPTR,
8270 and return if reach LIMIT
8271 or before a `)' that would make *DEPTHPTR negative
8272 or before a comma when *DEPTHPTR is zero.
8273 Single and double quotes are matched and termination
8274 is inhibited within them. Comments also inhibit it.
8275 Value returned is pointer to stopping place.
8277 Increment *NEWLINES each time a newline is passed.
8278 REST_ARGS notifies macarg1 that it should absorb the rest of the args.
8279 Set *COMMENTS to 1 if a comment is seen. */
8281 static U_CHAR *
8282 macarg1 (start, limit, depthptr, newlines, comments, rest_args)
8283 U_CHAR *start;
8284 register U_CHAR *limit;
8285 int *depthptr, *newlines, *comments;
8286 int rest_args;
8288 register U_CHAR *bp = start;
8290 while (bp < limit) {
8291 switch (*bp) {
8292 case '(':
8293 (*depthptr)++;
8294 break;
8295 case ')':
8296 if (--(*depthptr) < 0)
8297 return bp;
8298 break;
8299 case '\\':
8300 /* Traditionally, backslash makes following char not special. */
8301 if (bp + 1 < limit && traditional)
8303 bp++;
8304 /* But count source lines anyway. */
8305 if (*bp == '\n')
8306 ++*newlines;
8308 break;
8309 case '\n':
8310 ++*newlines;
8311 break;
8312 case '/':
8313 if (bp[1] == '\\' && bp[2] == '\n')
8314 newline_fix (bp + 1);
8315 if (cplusplus_comments && bp[1] == '/') {
8316 *comments = 1;
8317 bp += 2;
8318 while (bp < limit && (*bp != '\n' || bp[-1] == '\\')) {
8319 if (*bp == '\n') ++*newlines;
8320 bp++;
8322 /* Now count the newline that we are about to skip. */
8323 ++*newlines;
8324 break;
8326 if (bp[1] != '*' || bp + 1 >= limit)
8327 break;
8328 *comments = 1;
8329 bp += 2;
8330 while (bp + 1 < limit) {
8331 if (bp[0] == '*'
8332 && bp[1] == '\\' && bp[2] == '\n')
8333 newline_fix (bp + 1);
8334 if (bp[0] == '*' && bp[1] == '/')
8335 break;
8336 if (*bp == '\n') ++*newlines;
8337 bp++;
8339 break;
8340 case '\'':
8341 case '\"':
8343 int quotec;
8344 for (quotec = *bp++; bp + 1 < limit && *bp != quotec; bp++) {
8345 if (*bp == '\\') {
8346 bp++;
8347 if (*bp == '\n')
8348 ++*newlines;
8349 while (*bp == '\\' && bp[1] == '\n') {
8350 bp += 2;
8352 } else if (*bp == '\n') {
8353 ++*newlines;
8354 if (quotec == '\'')
8355 break;
8359 break;
8360 case ',':
8361 /* if we've returned to lowest level and we aren't absorbing all args */
8362 if ((*depthptr) == 0 && rest_args == 0)
8363 return bp;
8364 break;
8366 bp++;
8369 return bp;
8372 /* Discard comments and duplicate newlines
8373 in the string of length LENGTH at START,
8374 except inside of string constants.
8375 The string is copied into itself with its beginning staying fixed.
8377 NEWLINES is the number of newlines that must be duplicated.
8378 We assume that that much extra space is available past the end
8379 of the string. */
8381 static int
8382 discard_comments (start, length, newlines)
8383 U_CHAR *start;
8384 int length;
8385 int newlines;
8387 register U_CHAR *ibp;
8388 register U_CHAR *obp;
8389 register U_CHAR *limit;
8390 register int c;
8392 /* If we have newlines to duplicate, copy everything
8393 that many characters up. Then, in the second part,
8394 we will have room to insert the newlines
8395 while copying down.
8396 NEWLINES may actually be too large, because it counts
8397 newlines in string constants, and we don't duplicate those.
8398 But that does no harm. */
8399 if (newlines > 0) {
8400 ibp = start + length;
8401 obp = ibp + newlines;
8402 limit = start;
8403 while (limit != ibp)
8404 *--obp = *--ibp;
8407 ibp = start + newlines;
8408 limit = start + length + newlines;
8409 obp = start;
8411 while (ibp < limit) {
8412 *obp++ = c = *ibp++;
8413 switch (c) {
8414 case '\n':
8415 /* Duplicate the newline. */
8416 *obp++ = '\n';
8417 break;
8419 case '\\':
8420 if (*ibp == '\n') {
8421 obp--;
8422 ibp++;
8424 break;
8426 case '/':
8427 if (*ibp == '\\' && ibp[1] == '\n')
8428 newline_fix (ibp);
8429 /* Delete any comment. */
8430 if (cplusplus_comments && ibp[0] == '/') {
8431 /* Comments are equivalent to spaces. */
8432 obp[-1] = ' ';
8433 ibp++;
8434 while (ibp < limit && (*ibp != '\n' || ibp[-1] == '\\'))
8435 ibp++;
8436 break;
8438 if (ibp[0] != '*' || ibp + 1 >= limit)
8439 break;
8440 /* Comments are equivalent to spaces.
8441 For -traditional, a comment is equivalent to nothing. */
8442 if (traditional)
8443 obp--;
8444 else
8445 obp[-1] = ' ';
8446 ibp++;
8447 while (ibp + 1 < limit) {
8448 if (ibp[0] == '*'
8449 && ibp[1] == '\\' && ibp[2] == '\n')
8450 newline_fix (ibp + 1);
8451 if (ibp[0] == '*' && ibp[1] == '/')
8452 break;
8453 ibp++;
8455 ibp += 2;
8456 break;
8458 case '\'':
8459 case '\"':
8460 /* Notice and skip strings, so that we don't
8461 think that comments start inside them,
8462 and so we don't duplicate newlines in them. */
8464 int quotec = c;
8465 while (ibp < limit) {
8466 *obp++ = c = *ibp++;
8467 if (c == quotec)
8468 break;
8469 if (c == '\n' && quotec == '\'')
8470 break;
8471 if (c == '\\' && ibp < limit) {
8472 while (*ibp == '\\' && ibp[1] == '\n')
8473 ibp += 2;
8474 *obp++ = *ibp++;
8478 break;
8482 return obp - start;
8485 /* Turn newlines to spaces in the string of length LENGTH at START,
8486 except inside of string constants.
8487 The string is copied into itself with its beginning staying fixed. */
8489 static int
8490 change_newlines (start, length)
8491 U_CHAR *start;
8492 int length;
8494 register U_CHAR *ibp;
8495 register U_CHAR *obp;
8496 register U_CHAR *limit;
8497 register int c;
8499 ibp = start;
8500 limit = start + length;
8501 obp = start;
8503 while (ibp < limit) {
8504 *obp++ = c = *ibp++;
8505 switch (c) {
8506 case '\n':
8507 /* If this is a NEWLINE NEWLINE, then this is a real newline in the
8508 string. Skip past the newline and its duplicate.
8509 Put a space in the output. */
8510 if (*ibp == '\n')
8512 ibp++;
8513 obp--;
8514 *obp++ = ' ';
8516 break;
8518 case '\'':
8519 case '\"':
8520 /* Notice and skip strings, so that we don't delete newlines in them. */
8522 int quotec = c;
8523 while (ibp < limit) {
8524 *obp++ = c = *ibp++;
8525 if (c == quotec)
8526 break;
8527 if (c == '\n' && quotec == '\'')
8528 break;
8531 break;
8535 return obp - start;
8539 * my_strerror - return the descriptive text associated with an `errno' code.
8542 char *
8543 my_strerror (errnum)
8544 int errnum;
8546 char *result;
8548 #ifndef VMS
8549 #ifndef HAVE_STRERROR
8550 result = (char *) ((errnum < sys_nerr) ? sys_errlist[errnum] : 0);
8551 #else
8552 result = strerror (errnum);
8553 #endif
8554 #else /* VMS */
8555 /* VAXCRTL's strerror() takes an optional second argument, which only
8556 matters when the first argument is EVMSERR. However, it's simplest
8557 just to pass it unconditionally. `vaxc$errno' is declared in
8558 <errno.h>, and maintained by the library in parallel with `errno'.
8559 We assume that caller's `errnum' either matches the last setting of
8560 `errno' by the library or else does not have the value `EVMSERR'. */
8562 result = strerror (errnum, vaxc$errno);
8563 #endif
8565 if (!result)
8566 result = "undocumented I/O error";
8568 return result;
8572 * error - print error message and increment count of errors.
8575 void
8576 error (msg, arg1, arg2, arg3)
8577 char *msg;
8578 char *arg1, *arg2, *arg3;
8580 int i;
8581 FILE_BUF *ip = NULL;
8583 print_containing_files ();
8585 for (i = indepth; i >= 0; i--)
8586 if (instack[i].fname != NULL) {
8587 ip = &instack[i];
8588 break;
8591 if (ip != NULL)
8592 fprintf (stderr, "%s:%d: ", ip->nominal_fname, ip->lineno);
8593 fprintf (stderr, msg, arg1, arg2, arg3);
8594 fprintf (stderr, "\n");
8595 errors++;
8598 /* Error including a message from `errno'. */
8600 static void
8601 error_from_errno (name)
8602 char *name;
8604 int i;
8605 FILE_BUF *ip = NULL;
8607 print_containing_files ();
8609 for (i = indepth; i >= 0; i--)
8610 if (instack[i].fname != NULL) {
8611 ip = &instack[i];
8612 break;
8615 if (ip != NULL)
8616 fprintf (stderr, "%s:%d: ", ip->nominal_fname, ip->lineno);
8618 fprintf (stderr, "%s: %s\n", name, my_strerror (errno));
8620 errors++;
8623 /* Print error message but don't count it. */
8625 void
8626 warning (msg, arg1, arg2, arg3)
8627 char *msg;
8628 char *arg1, *arg2, *arg3;
8630 int i;
8631 FILE_BUF *ip = NULL;
8633 if (inhibit_warnings)
8634 return;
8636 if (warnings_are_errors)
8637 errors++;
8639 print_containing_files ();
8641 for (i = indepth; i >= 0; i--)
8642 if (instack[i].fname != NULL) {
8643 ip = &instack[i];
8644 break;
8647 if (ip != NULL)
8648 fprintf (stderr, "%s:%d: ", ip->nominal_fname, ip->lineno);
8649 fprintf (stderr, "warning: ");
8650 fprintf (stderr, msg, arg1, arg2, arg3);
8651 fprintf (stderr, "\n");
8654 static void
8655 error_with_line (line, msg, arg1, arg2, arg3)
8656 int line;
8657 char *msg;
8658 char *arg1, *arg2, *arg3;
8660 int i;
8661 FILE_BUF *ip = NULL;
8663 print_containing_files ();
8665 for (i = indepth; i >= 0; i--)
8666 if (instack[i].fname != NULL) {
8667 ip = &instack[i];
8668 break;
8671 if (ip != NULL)
8672 fprintf (stderr, "%s:%d: ", ip->nominal_fname, line);
8673 fprintf (stderr, msg, arg1, arg2, arg3);
8674 fprintf (stderr, "\n");
8675 errors++;
8678 static void
8679 warning_with_line (line, msg, arg1, arg2, arg3)
8680 int line;
8681 char *msg;
8682 char *arg1, *arg2, *arg3;
8684 int i;
8685 FILE_BUF *ip = NULL;
8687 if (inhibit_warnings)
8688 return;
8690 if (warnings_are_errors)
8691 errors++;
8693 print_containing_files ();
8695 for (i = indepth; i >= 0; i--)
8696 if (instack[i].fname != NULL) {
8697 ip = &instack[i];
8698 break;
8701 if (ip != NULL)
8702 fprintf (stderr, "%s:%d: ", ip->nominal_fname, line);
8703 fprintf (stderr, "warning: ");
8704 fprintf (stderr, msg, arg1, arg2, arg3);
8705 fprintf (stderr, "\n");
8708 /* print an error message and maybe count it. */
8710 void
8711 pedwarn (msg, arg1, arg2, arg3)
8712 char *msg;
8713 char *arg1, *arg2, *arg3;
8715 if (pedantic_errors)
8716 error (msg, arg1, arg2, arg3);
8717 else
8718 warning (msg, arg1, arg2, arg3);
8721 void
8722 pedwarn_with_line (line, msg, arg1, arg2, arg3)
8723 int line;
8724 char *msg;
8725 char *arg1, *arg2, *arg3;
8727 if (pedantic_errors)
8728 error_with_line (line, msg, arg1, arg2, arg3);
8729 else
8730 warning_with_line (line, msg, arg1, arg2, arg3);
8733 /* Report a warning (or an error if pedantic_errors)
8734 giving specified file name and line number, not current. */
8736 static void
8737 pedwarn_with_file_and_line (file, line, msg, arg1, arg2, arg3)
8738 char *file;
8739 int line;
8740 char *msg;
8741 char *arg1, *arg2, *arg3;
8743 if (!pedantic_errors && inhibit_warnings)
8744 return;
8745 if (file != NULL)
8746 fprintf (stderr, "%s:%d: ", file, line);
8747 if (pedantic_errors)
8748 errors++;
8749 if (!pedantic_errors)
8750 fprintf (stderr, "warning: ");
8751 fprintf (stderr, msg, arg1, arg2, arg3);
8752 fprintf (stderr, "\n");
8755 /* Print the file names and line numbers of the #include
8756 commands which led to the current file. */
8758 static void
8759 print_containing_files ()
8761 FILE_BUF *ip = NULL;
8762 int i;
8763 int first = 1;
8765 /* If stack of files hasn't changed since we last printed
8766 this info, don't repeat it. */
8767 if (last_error_tick == input_file_stack_tick)
8768 return;
8770 for (i = indepth; i >= 0; i--)
8771 if (instack[i].fname != NULL) {
8772 ip = &instack[i];
8773 break;
8776 /* Give up if we don't find a source file. */
8777 if (ip == NULL)
8778 return;
8780 /* Find the other, outer source files. */
8781 for (i--; i >= 0; i--)
8782 if (instack[i].fname != NULL) {
8783 ip = &instack[i];
8784 if (first) {
8785 first = 0;
8786 fprintf (stderr, "In file included");
8787 } else {
8788 fprintf (stderr, ",\n ");
8791 fprintf (stderr, " from %s:%d", ip->nominal_fname, ip->lineno);
8793 if (! first)
8794 fprintf (stderr, ":\n");
8796 /* Record we have printed the status as of this time. */
8797 last_error_tick = input_file_stack_tick;
8800 /* Return the line at which an error occurred.
8801 The error is not necessarily associated with the current spot
8802 in the input stack, so LINE says where. LINE will have been
8803 copied from ip->lineno for the current input level.
8804 If the current level is for a file, we return LINE.
8805 But if the current level is not for a file, LINE is meaningless.
8806 In that case, we return the lineno of the innermost file. */
8808 static int
8809 line_for_error (line)
8810 int line;
8812 int i;
8813 int line1 = line;
8815 for (i = indepth; i >= 0; ) {
8816 if (instack[i].fname != 0)
8817 return line1;
8818 i--;
8819 if (i < 0)
8820 return 0;
8821 line1 = instack[i].lineno;
8823 abort ();
8824 /*NOTREACHED*/
8825 return 0;
8829 * If OBUF doesn't have NEEDED bytes after OPTR, make it bigger.
8831 * As things stand, nothing is ever placed in the output buffer to be
8832 * removed again except when it's KNOWN to be part of an identifier,
8833 * so flushing and moving down everything left, instead of expanding,
8834 * should work ok.
8837 /* You might think void was cleaner for the return type,
8838 but that would get type mismatch in check_expand in strict ANSI. */
8839 static int
8840 grow_outbuf (obuf, needed)
8841 register FILE_BUF *obuf;
8842 register int needed;
8844 register U_CHAR *p;
8845 int minsize;
8847 if (obuf->length - (obuf->bufp - obuf->buf) > needed)
8848 return 0;
8850 /* Make it at least twice as big as it is now. */
8851 obuf->length *= 2;
8852 /* Make it have at least 150% of the free space we will need. */
8853 minsize = (3 * needed) / 2 + (obuf->bufp - obuf->buf);
8854 if (minsize > obuf->length)
8855 obuf->length = minsize;
8857 if ((p = (U_CHAR *) xrealloc (obuf->buf, obuf->length)) == NULL)
8858 memory_full ();
8860 obuf->bufp = p + (obuf->bufp - obuf->buf);
8861 obuf->buf = p;
8863 return 0;
8866 /* Symbol table for macro names and special symbols */
8869 * install a name in the main hash table, even if it is already there.
8870 * name stops with first non alphanumeric, except leading '#'.
8871 * caller must check against redefinition if that is desired.
8872 * delete_macro () removes things installed by install () in fifo order.
8873 * this is important because of the `defined' special symbol used
8874 * in #if, and also if pushdef/popdef directives are ever implemented.
8876 * If LEN is >= 0, it is the length of the name.
8877 * Otherwise, compute the length by scanning the entire name.
8879 * If HASH is >= 0, it is the precomputed hash code.
8880 * Otherwise, compute the hash code.
8882 static HASHNODE *
8883 install (name, len, type, ivalue, value, hash)
8884 U_CHAR *name;
8885 int len;
8886 enum node_type type;
8887 int ivalue;
8888 char *value;
8889 int hash;
8891 register HASHNODE *hp;
8892 register int i, bucket;
8893 register U_CHAR *p, *q;
8895 if (len < 0) {
8896 p = name;
8897 while (is_idchar[*p])
8898 p++;
8899 len = p - name;
8902 if (hash < 0)
8903 hash = hashf (name, len, HASHSIZE);
8905 i = sizeof (HASHNODE) + len + 1;
8906 hp = (HASHNODE *) xmalloc (i);
8907 bucket = hash;
8908 hp->bucket_hdr = &hashtab[bucket];
8909 hp->next = hashtab[bucket];
8910 hashtab[bucket] = hp;
8911 hp->prev = NULL;
8912 if (hp->next != NULL)
8913 hp->next->prev = hp;
8914 hp->type = type;
8915 hp->length = len;
8916 if (hp->type == T_CONST)
8917 hp->value.ival = ivalue;
8918 else
8919 hp->value.cpval = value;
8920 hp->name = ((U_CHAR *) hp) + sizeof (HASHNODE);
8921 p = hp->name;
8922 q = name;
8923 for (i = 0; i < len; i++)
8924 *p++ = *q++;
8925 hp->name[len] = 0;
8926 return hp;
8930 * find the most recent hash node for name name (ending with first
8931 * non-identifier char) installed by install
8933 * If LEN is >= 0, it is the length of the name.
8934 * Otherwise, compute the length by scanning the entire name.
8936 * If HASH is >= 0, it is the precomputed hash code.
8937 * Otherwise, compute the hash code.
8939 HASHNODE *
8940 lookup (name, len, hash)
8941 U_CHAR *name;
8942 int len;
8943 int hash;
8945 register U_CHAR *bp;
8946 register HASHNODE *bucket;
8948 if (len < 0) {
8949 for (bp = name; is_idchar[*bp]; bp++) ;
8950 len = bp - name;
8953 if (hash < 0)
8954 hash = hashf (name, len, HASHSIZE);
8956 bucket = hashtab[hash];
8957 while (bucket) {
8958 if (bucket->length == len && strncmp (bucket->name, name, len) == 0)
8959 return bucket;
8960 bucket = bucket->next;
8962 return NULL;
8966 * Delete a hash node. Some weirdness to free junk from macros.
8967 * More such weirdness will have to be added if you define more hash
8968 * types that need it.
8971 /* Note that the DEFINITION of a macro is removed from the hash table
8972 but its storage is not freed. This would be a storage leak
8973 except that it is not reasonable to keep undefining and redefining
8974 large numbers of macros many times.
8975 In any case, this is necessary, because a macro can be #undef'd
8976 in the middle of reading the arguments to a call to it.
8977 If #undef freed the DEFINITION, that would crash. */
8979 static void
8980 delete_macro (hp)
8981 HASHNODE *hp;
8984 if (hp->prev != NULL)
8985 hp->prev->next = hp->next;
8986 if (hp->next != NULL)
8987 hp->next->prev = hp->prev;
8989 /* make sure that the bucket chain header that
8990 the deleted guy was on points to the right thing afterwards. */
8991 if (hp == *hp->bucket_hdr)
8992 *hp->bucket_hdr = hp->next;
8994 #if 0
8995 if (hp->type == T_MACRO) {
8996 DEFINITION *d = hp->value.defn;
8997 struct reflist *ap, *nextap;
8999 for (ap = d->pattern; ap != NULL; ap = nextap) {
9000 nextap = ap->next;
9001 free (ap);
9003 free (d);
9005 #endif
9006 free (hp);
9010 * return hash function on name. must be compatible with the one
9011 * computed a step at a time, elsewhere
9013 static int
9014 hashf (name, len, hashsize)
9015 register U_CHAR *name;
9016 register int len;
9017 int hashsize;
9019 register int r = 0;
9021 while (len--)
9022 r = HASHSTEP (r, *name++);
9024 return MAKE_POS (r) % hashsize;
9028 /* Dump the definition of a single macro HP to OF. */
9029 static void
9030 dump_single_macro (hp, of)
9031 register HASHNODE *hp;
9032 FILE *of;
9034 register DEFINITION *defn = hp->value.defn;
9035 struct reflist *ap;
9036 int offset;
9037 int concat;
9040 /* Print the definition of the macro HP. */
9042 fprintf (of, "#define %s", hp->name);
9044 if (defn->nargs >= 0) {
9045 int i;
9047 fprintf (of, "(");
9048 for (i = 0; i < defn->nargs; i++) {
9049 dump_arg_n (defn, i, of);
9050 if (i + 1 < defn->nargs)
9051 fprintf (of, ", ");
9053 fprintf (of, ")");
9056 fprintf (of, " ");
9058 offset = 0;
9059 concat = 0;
9060 for (ap = defn->pattern; ap != NULL; ap = ap->next) {
9061 dump_defn_1 (defn->expansion, offset, ap->nchars, of);
9062 offset += ap->nchars;
9063 if (!traditional) {
9064 if (ap->nchars != 0)
9065 concat = 0;
9066 if (ap->stringify)
9067 fprintf (of, " #");
9068 if (ap->raw_before && !concat)
9069 fprintf (of, " ## ");
9070 concat = 0;
9072 dump_arg_n (defn, ap->argno, of);
9073 if (!traditional && ap->raw_after) {
9074 fprintf (of, " ## ");
9075 concat = 1;
9078 dump_defn_1 (defn->expansion, offset, defn->length - offset, of);
9079 fprintf (of, "\n");
9082 /* Dump all macro definitions as #defines to stdout. */
9084 static void
9085 dump_all_macros ()
9087 int bucket;
9089 for (bucket = 0; bucket < HASHSIZE; bucket++) {
9090 register HASHNODE *hp;
9092 for (hp = hashtab[bucket]; hp; hp= hp->next) {
9093 if (hp->type == T_MACRO)
9094 dump_single_macro (hp, stdout);
9099 /* Output to OF a substring of a macro definition.
9100 BASE is the beginning of the definition.
9101 Output characters START thru LENGTH.
9102 Unless traditional, discard newlines outside of strings, thus
9103 converting funny-space markers to ordinary spaces. */
9105 static void
9106 dump_defn_1 (base, start, length, of)
9107 U_CHAR *base;
9108 int start;
9109 int length;
9110 FILE *of;
9112 U_CHAR *p = base + start;
9113 U_CHAR *limit = base + start + length;
9115 if (traditional)
9116 fwrite (p, sizeof (*p), length, of);
9117 else {
9118 while (p < limit) {
9119 if (*p == '\"' || *p =='\'') {
9120 U_CHAR *p1 = skip_quoted_string (p, limit, 0, NULL_PTR,
9121 NULL_PTR, NULL_PTR);
9122 fwrite (p, sizeof (*p), p1 - p, of);
9123 p = p1;
9124 } else {
9125 if (*p != '\n')
9126 putc (*p, of);
9127 p++;
9133 /* Print the name of argument number ARGNUM of macro definition DEFN
9134 to OF.
9135 Recall that DEFN->args.argnames contains all the arg names
9136 concatenated in reverse order with comma-space in between. */
9138 static void
9139 dump_arg_n (defn, argnum, of)
9140 DEFINITION *defn;
9141 int argnum;
9142 FILE *of;
9144 register U_CHAR *p = defn->args.argnames;
9145 while (argnum + 1 < defn->nargs) {
9146 p = (U_CHAR *) index (p, ' ') + 1;
9147 argnum++;
9150 while (*p && *p != ',') {
9151 putc (*p, of);
9152 p++;
9156 /* Initialize syntactic classifications of characters. */
9158 static void
9159 initialize_char_syntax ()
9161 register int i;
9164 * Set up is_idchar and is_idstart tables. These should be
9165 * faster than saying (is_alpha (c) || c == '_'), etc.
9166 * Set up these things before calling any routines tthat
9167 * refer to them.
9169 for (i = 'a'; i <= 'z'; i++) {
9170 is_idchar[i - 'a' + 'A'] = 1;
9171 is_idchar[i] = 1;
9172 is_idstart[i - 'a' + 'A'] = 1;
9173 is_idstart[i] = 1;
9175 for (i = '0'; i <= '9'; i++)
9176 is_idchar[i] = 1;
9177 is_idchar['_'] = 1;
9178 is_idstart['_'] = 1;
9179 is_idchar['$'] = dollars_in_ident;
9180 is_idstart['$'] = dollars_in_ident;
9182 /* horizontal space table */
9183 is_hor_space[' '] = 1;
9184 is_hor_space['\t'] = 1;
9185 is_hor_space['\v'] = 1;
9186 is_hor_space['\f'] = 1;
9187 is_hor_space['\r'] = 1;
9189 is_space[' '] = 1;
9190 is_space['\t'] = 1;
9191 is_space['\v'] = 1;
9192 is_space['\f'] = 1;
9193 is_space['\n'] = 1;
9194 is_space['\r'] = 1;
9196 char_name['\v'] = "vertical tab";
9197 char_name['\f'] = "formfeed";
9198 char_name['\r'] = "carriage return";
9201 /* Initialize the built-in macros. */
9203 static void
9204 initialize_builtins (inp, outp)
9205 FILE_BUF *inp;
9206 FILE_BUF *outp;
9208 install ("__LINE__", -1, T_SPECLINE, 0, NULL_PTR, -1);
9209 install ("__DATE__", -1, T_DATE, 0, NULL_PTR, -1);
9210 install ("__FILE__", -1, T_FILE, 0, NULL_PTR, -1);
9211 install ("__BASE_FILE__", -1, T_BASE_FILE, 0, NULL_PTR, -1);
9212 install ("__INCLUDE_LEVEL__", -1, T_INCLUDE_LEVEL, 0, NULL_PTR, -1);
9213 install ("__VERSION__", -1, T_VERSION, 0, NULL_PTR, -1);
9214 #ifndef NO_BUILTIN_SIZE_TYPE
9215 install ("__SIZE_TYPE__", -1, T_SIZE_TYPE, 0, NULL_PTR, -1);
9216 #endif
9217 #ifndef NO_BUILTIN_PTRDIFF_TYPE
9218 install ("__PTRDIFF_TYPE__ ", -1, T_PTRDIFF_TYPE, 0, NULL_PTR, -1);
9219 #endif
9220 install ("__WCHAR_TYPE__", -1, T_WCHAR_TYPE, 0, NULL_PTR, -1);
9221 install ("__USER_LABEL_PREFIX__",-1,T_USER_LABEL_PREFIX_TYPE,0,NULL_PTR, -1);
9222 install ("__REGISTER_PREFIX__", -1, T_REGISTER_PREFIX_TYPE, 0, NULL_PTR, -1);
9223 install ("__TIME__", -1, T_TIME, 0, NULL_PTR, -1);
9224 if (!traditional)
9225 install ("__STDC__", -1, T_CONST, STDC_VALUE, NULL_PTR, -1);
9226 if (objc)
9227 install ("__OBJC__", -1, T_CONST, 1, NULL_PTR, -1);
9228 /* This is supplied using a -D by the compiler driver
9229 so that it is present only when truly compiling with GNU C. */
9230 /* install ("__GNUC__", -1, T_CONST, 2, NULL_PTR, -1); */
9232 if (debug_output)
9234 char directive[2048];
9235 register struct directive *dp = &directive_table[0];
9236 struct tm *timebuf = timestamp ();
9238 sprintf (directive, " __BASE_FILE__ \"%s\"\n",
9239 instack[0].nominal_fname);
9240 output_line_command (inp, outp, 0, same_file);
9241 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9243 sprintf (directive, " __VERSION__ \"%s\"\n", version_string);
9244 output_line_command (inp, outp, 0, same_file);
9245 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9247 #ifndef NO_BUILTIN_SIZE_TYPE
9248 sprintf (directive, " __SIZE_TYPE__ %s\n", SIZE_TYPE);
9249 output_line_command (inp, outp, 0, same_file);
9250 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9251 #endif
9253 #ifndef NO_BUILTIN_PTRDIFF_TYPE
9254 sprintf (directive, " __PTRDIFF_TYPE__ %s\n", PTRDIFF_TYPE);
9255 output_line_command (inp, outp, 0, same_file);
9256 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9257 #endif
9259 sprintf (directive, " __WCHAR_TYPE__ %s\n", wchar_type);
9260 output_line_command (inp, outp, 0, same_file);
9261 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9263 sprintf (directive, " __DATE__ \"%s %2d %4d\"\n",
9264 monthnames[timebuf->tm_mon],
9265 timebuf->tm_mday, timebuf->tm_year + 1900);
9266 output_line_command (inp, outp, 0, same_file);
9267 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9269 sprintf (directive, " __TIME__ \"%02d:%02d:%02d\"\n",
9270 timebuf->tm_hour, timebuf->tm_min, timebuf->tm_sec);
9271 output_line_command (inp, outp, 0, same_file);
9272 pass_thru_directive (directive, &directive[strlen (directive)], outp, dp);
9274 if (!traditional)
9276 sprintf (directive, " __STDC__ 1");
9277 output_line_command (inp, outp, 0, same_file);
9278 pass_thru_directive (directive, &directive[strlen (directive)],
9279 outp, dp);
9281 if (objc)
9283 sprintf (directive, " __OBJC__ 1");
9284 output_line_command (inp, outp, 0, same_file);
9285 pass_thru_directive (directive, &directive[strlen (directive)],
9286 outp, dp);
9292 * process a given definition string, for initialization
9293 * If STR is just an identifier, define it with value 1.
9294 * If STR has anything after the identifier, then it should
9295 * be identifier=definition.
9298 static void
9299 make_definition (str, op)
9300 U_CHAR *str;
9301 FILE_BUF *op;
9303 FILE_BUF *ip;
9304 struct directive *kt;
9305 U_CHAR *buf, *p;
9307 buf = str;
9308 p = str;
9309 if (!is_idstart[*p]) {
9310 error ("malformed option `-D %s'", str);
9311 return;
9313 while (is_idchar[*++p])
9315 if (*p == '(') {
9316 while (is_idchar[*++p] || *p == ',' || is_hor_space[*p])
9318 if (*p++ != ')')
9319 p = str; /* Error */
9321 if (*p == 0) {
9322 buf = (U_CHAR *) alloca (p - buf + 4);
9323 strcpy ((char *)buf, str);
9324 strcat ((char *)buf, " 1");
9325 } else if (*p != '=') {
9326 error ("malformed option `-D %s'", str);
9327 return;
9328 } else {
9329 U_CHAR *q;
9330 /* Copy the entire option so we can modify it. */
9331 buf = (U_CHAR *) alloca (2 * strlen (str) + 1);
9332 strncpy (buf, str, p - str);
9333 /* Change the = to a space. */
9334 buf[p - str] = ' ';
9335 /* Scan for any backslash-newline and remove it. */
9336 p++;
9337 q = &buf[p - str];
9338 while (*p) {
9339 if (*p == '\"' || *p == '\'') {
9340 int unterminated = 0;
9341 U_CHAR *p1 = skip_quoted_string (p, p + strlen (p), 0,
9342 NULL_PTR, NULL_PTR, &unterminated);
9343 if (unterminated)
9344 return;
9345 while (p != p1)
9346 if (*p == '\\' && p[1] == '\n')
9347 p += 2;
9348 else
9349 *q++ = *p++;
9350 } else if (*p == '\\' && p[1] == '\n')
9351 p += 2;
9352 /* Change newline chars into newline-markers. */
9353 else if (*p == '\n')
9355 *q++ = '\n';
9356 *q++ = '\n';
9357 p++;
9359 else
9360 *q++ = *p++;
9362 *q = 0;
9365 ip = &instack[++indepth];
9366 ip->nominal_fname = ip->fname = "*Initialization*";
9368 ip->buf = ip->bufp = buf;
9369 ip->length = strlen (buf);
9370 ip->lineno = 1;
9371 ip->macro = 0;
9372 ip->free_ptr = 0;
9373 ip->if_stack = if_stack;
9374 ip->system_header_p = 0;
9376 for (kt = directive_table; kt->type != T_DEFINE; kt++)
9379 /* Pass NULL instead of OP, since this is a "predefined" macro. */
9380 do_define (buf, buf + strlen (buf), NULL_PTR, kt);
9381 --indepth;
9384 /* JF, this does the work for the -U option */
9386 static void
9387 make_undef (str, op)
9388 U_CHAR *str;
9389 FILE_BUF *op;
9391 FILE_BUF *ip;
9392 struct directive *kt;
9394 ip = &instack[++indepth];
9395 ip->nominal_fname = ip->fname = "*undef*";
9397 ip->buf = ip->bufp = str;
9398 ip->length = strlen (str);
9399 ip->lineno = 1;
9400 ip->macro = 0;
9401 ip->free_ptr = 0;
9402 ip->if_stack = if_stack;
9403 ip->system_header_p = 0;
9405 for (kt = directive_table; kt->type != T_UNDEF; kt++)
9408 do_undef (str, str + strlen (str), op, kt);
9409 --indepth;
9412 /* Process the string STR as if it appeared as the body of a #assert.
9413 OPTION is the option name for which STR was the argument. */
9415 static void
9416 make_assertion (option, str)
9417 char *option;
9418 U_CHAR *str;
9420 FILE_BUF *ip;
9421 struct directive *kt;
9422 U_CHAR *buf, *p, *q;
9424 /* Copy the entire option so we can modify it. */
9425 buf = (U_CHAR *) alloca (strlen (str) + 1);
9426 strcpy ((char *) buf, str);
9427 /* Scan for any backslash-newline and remove it. */
9428 p = q = buf;
9429 while (*p) {
9430 if (*p == '\\' && p[1] == '\n')
9431 p += 2;
9432 else
9433 *q++ = *p++;
9435 *q = 0;
9437 p = buf;
9438 if (!is_idstart[*p]) {
9439 error ("malformed option `%s %s'", option, str);
9440 return;
9442 while (is_idchar[*++p])
9444 SKIP_WHITE_SPACE (p);
9445 if (! (*p == 0 || *p == '(')) {
9446 error ("malformed option `%s %s'", option, str);
9447 return;
9450 ip = &instack[++indepth];
9451 ip->nominal_fname = ip->fname = "*Initialization*";
9453 ip->buf = ip->bufp = buf;
9454 ip->length = strlen (buf);
9455 ip->lineno = 1;
9456 ip->macro = 0;
9457 ip->free_ptr = 0;
9458 ip->if_stack = if_stack;
9459 ip->system_header_p = 0;
9461 for (kt = directive_table; kt->type != T_ASSERT; kt++)
9464 /* pass NULL as output ptr to do_define since we KNOW it never
9465 does any output.... */
9466 do_assert (buf, buf + strlen (buf) , NULL_PTR, kt);
9467 --indepth;
9470 /* Append a chain of `struct file_name_list's
9471 to the end of the main include chain.
9472 FIRST is the beginning of the chain to append, and LAST is the end. */
9474 static void
9475 append_include_chain (first, last)
9476 struct file_name_list *first, *last;
9478 struct file_name_list *dir;
9480 if (!first || !last)
9481 return;
9483 if (include == 0)
9484 include = first;
9485 else
9486 last_include->next = first;
9488 if (first_bracket_include == 0)
9489 first_bracket_include = first;
9491 for (dir = first; ; dir = dir->next) {
9492 int len = strlen (dir->fname) + INCLUDE_LEN_FUDGE;
9493 if (len > max_include_len)
9494 max_include_len = len;
9495 if (dir == last)
9496 break;
9499 last->next = NULL;
9500 last_include = last;
9503 /* Add output to `deps_buffer' for the -M switch.
9504 STRING points to the text to be output.
9505 SPACER is ':' for targets, ' ' for dependencies, zero for text
9506 to be inserted literally. */
9508 static void
9509 deps_output (string, spacer)
9510 char *string;
9511 int spacer;
9513 int size = strlen (string);
9515 if (size == 0)
9516 return;
9518 #ifndef MAX_OUTPUT_COLUMNS
9519 #define MAX_OUTPUT_COLUMNS 72
9520 #endif
9521 if (spacer
9522 && deps_column > 0
9523 && (deps_column + size) > MAX_OUTPUT_COLUMNS)
9525 deps_output (" \\\n ", 0);
9526 deps_column = 0;
9529 if (deps_size + size + 8 > deps_allocated_size) {
9530 deps_allocated_size = (deps_size + size + 50) * 2;
9531 deps_buffer = (char *) xrealloc (deps_buffer, deps_allocated_size);
9533 if (spacer == ' ' && deps_column > 0)
9534 deps_buffer[deps_size++] = ' ';
9535 bcopy (string, &deps_buffer[deps_size], size);
9536 deps_size += size;
9537 deps_column += size;
9538 if (spacer == ':')
9539 deps_buffer[deps_size++] = ':';
9540 deps_buffer[deps_size] = 0;
9543 #if defined(USG) || defined(VMS)
9544 #ifndef BSTRING
9546 void
9547 bzero (b, length)
9548 register char *b;
9549 register unsigned length;
9551 while (length-- > 0)
9552 *b++ = 0;
9555 void
9556 bcopy (b1, b2, length)
9557 register char *b1;
9558 register char *b2;
9559 register unsigned length;
9561 while (length-- > 0)
9562 *b2++ = *b1++;
9566 bcmp (b1, b2, length) /* This could be a macro! */
9567 register char *b1;
9568 register char *b2;
9569 register unsigned length;
9571 while (length-- > 0)
9572 if (*b1++ != *b2++)
9573 return 1;
9575 return 0;
9577 #endif /* not BSTRING */
9578 #endif /* USG or VMS */
9581 static void
9582 fatal (str, arg)
9583 char *str, *arg;
9585 fprintf (stderr, "%s: ", progname);
9586 fprintf (stderr, str, arg);
9587 fprintf (stderr, "\n");
9588 exit (FAILURE_EXIT_CODE);
9591 /* More 'friendly' abort that prints the line and file.
9592 config.h can #define abort fancy_abort if you like that sort of thing. */
9594 void
9595 fancy_abort ()
9597 fatal ("Internal gcc abort.");
9600 static void
9601 perror_with_name (name)
9602 char *name;
9604 fprintf (stderr, "%s: ", progname);
9605 fprintf (stderr, "%s: %s\n", name, my_strerror (errno));
9606 errors++;
9609 static void
9610 pfatal_with_name (name)
9611 char *name;
9613 perror_with_name (name);
9614 #ifdef VMS
9615 exit (vaxc$errno);
9616 #else
9617 exit (FAILURE_EXIT_CODE);
9618 #endif
9621 /* Handler for SIGPIPE. */
9623 static void
9624 pipe_closed (signo)
9625 /* If this is missing, some compilers complain. */
9626 int signo;
9628 fatal ("output pipe has been closed");
9631 static void
9632 memory_full ()
9634 fatal ("Memory exhausted.");
9638 char *
9639 xmalloc (size)
9640 unsigned size;
9642 register char *ptr = (char *) malloc (size);
9643 if (ptr != 0) return (ptr);
9644 memory_full ();
9645 /*NOTREACHED*/
9646 return 0;
9649 static char *
9650 xrealloc (old, size)
9651 char *old;
9652 unsigned size;
9654 register char *ptr = (char *) realloc (old, size);
9655 if (ptr != 0) return (ptr);
9656 memory_full ();
9657 /*NOTREACHED*/
9658 return 0;
9661 static char *
9662 xcalloc (number, size)
9663 unsigned number, size;
9665 register unsigned total = number * size;
9666 register char *ptr = (char *) malloc (total);
9667 if (ptr != 0) {
9668 if (total > 100)
9669 bzero (ptr, total);
9670 else {
9671 /* It's not too long, so loop, zeroing by longs.
9672 It must be safe because malloc values are always well aligned. */
9673 register long *zp = (long *) ptr;
9674 register long *zl = (long *) (ptr + total - 4);
9675 register int i = total - 4;
9676 while (zp < zl)
9677 *zp++ = 0;
9678 if (i < 0)
9679 i = 0;
9680 while (i < total)
9681 ptr[i++] = 0;
9683 return ptr;
9685 memory_full ();
9686 /*NOTREACHED*/
9687 return 0;
9690 static char *
9691 savestring (input)
9692 char *input;
9694 unsigned size = strlen (input);
9695 char *output = xmalloc (size + 1);
9696 strcpy (output, input);
9697 return output;
9700 /* Get the file-mode and data size of the file open on FD
9701 and store them in *MODE_POINTER and *SIZE_POINTER. */
9703 static int
9704 file_size_and_mode (fd, mode_pointer, size_pointer)
9705 int fd;
9706 int *mode_pointer;
9707 long int *size_pointer;
9709 struct stat sbuf;
9711 if (fstat (fd, &sbuf) < 0) return (-1);
9712 if (mode_pointer) *mode_pointer = sbuf.st_mode;
9713 if (size_pointer) *size_pointer = sbuf.st_size;
9714 return 0;
9717 static void
9718 output_dots (fd, depth)
9719 FILE* fd;
9720 int depth;
9722 while (depth > 0) {
9723 putc ('.', fd);
9724 depth--;
9729 #ifdef VMS
9731 /* Under VMS we need to fix up the "include" specification
9732 filename so that everything following the 1st slash is
9733 changed into its correct VMS file specification. */
9735 static void
9736 hack_vms_include_specification (fname)
9737 char *fname;
9739 register char *cp, *cp1, *cp2;
9740 int f, check_filename_before_returning, no_prefix_seen;
9741 char Local[512];
9743 check_filename_before_returning = 0;
9744 no_prefix_seen = 0;
9746 /* Ignore leading "./"s */
9747 while (fname[0] == '.' && fname[1] == '/') {
9748 strcpy (fname, fname+2);
9749 no_prefix_seen = 1; /* mark this for later */
9751 /* Look for the boundary between the VMS and UNIX filespecs */
9752 cp = rindex (fname, ']'); /* Look for end of dirspec. */
9753 if (cp == 0) cp = rindex (fname, '>'); /* ... Ditto */
9754 if (cp == 0) cp = rindex (fname, ':'); /* Look for end of devspec. */
9755 if (cp) {
9756 cp++;
9757 } else {
9758 cp = index (fname, '/'); /* Look for the "/" */
9762 * Check if we have a vax-c style '#include filename'
9763 * and add the missing .h
9765 if (cp == 0) {
9766 if (index(fname,'.') == 0)
9767 strcat(fname, ".h");
9768 } else {
9769 if (index(cp,'.') == 0)
9770 strcat(cp, ".h");
9773 cp2 = Local; /* initialize */
9775 /* We are trying to do a number of things here. First of all, we are
9776 trying to hammer the filenames into a standard format, such that later
9777 processing can handle them.
9779 If the file name contains something like [dir.], then it recognizes this
9780 as a root, and strips the ".]". Later processing will add whatever is
9781 needed to get things working properly.
9783 If no device is specified, then the first directory name is taken to be
9784 a device name (or a rooted logical). */
9786 /* See if we found that 1st slash */
9787 if (cp == 0) return; /* Nothing to do!!! */
9788 if (*cp != '/') return; /* Nothing to do!!! */
9789 /* Point to the UNIX filename part (which needs to be fixed!) */
9790 cp1 = cp+1;
9791 /* If the directory spec is not rooted, we can just copy
9792 the UNIX filename part and we are done */
9793 if (((cp - fname) > 1) && ((cp[-1] == ']') || (cp[-1] == '>'))) {
9794 if (cp[-2] != '.') {
9796 * The VMS part ends in a `]', and the preceding character is not a `.'.
9797 * We strip the `]', and then splice the two parts of the name in the
9798 * usual way. Given the default locations for include files in cccp.c,
9799 * we will only use this code if the user specifies alternate locations
9800 * with the /include (-I) switch on the command line. */
9801 cp -= 1; /* Strip "]" */
9802 cp1--; /* backspace */
9803 } else {
9805 * The VMS part has a ".]" at the end, and this will not do. Later
9806 * processing will add a second directory spec, and this would be a syntax
9807 * error. Thus we strip the ".]", and thus merge the directory specs.
9808 * We also backspace cp1, so that it points to a '/'. This inhibits the
9809 * generation of the 000000 root directory spec (which does not belong here
9810 * in this case).
9812 cp -= 2; /* Strip ".]" */
9813 cp1--; }; /* backspace */
9814 } else {
9816 /* We drop in here if there is no VMS style directory specification yet.
9817 * If there is no device specification either, we make the first dir a
9818 * device and try that. If we do not do this, then we will be essentially
9819 * searching the users default directory (as if they did a #include "asdf.h").
9821 * Then all we need to do is to push a '[' into the output string. Later
9822 * processing will fill this in, and close the bracket.
9824 if (cp[-1] != ':') *cp2++ = ':'; /* dev not in spec. take first dir */
9825 *cp2++ = '['; /* Open the directory specification */
9828 /* at this point we assume that we have the device spec, and (at least
9829 the opening "[" for a directory specification. We may have directories
9830 specified already */
9832 /* If there are no other slashes then the filename will be
9833 in the "root" directory. Otherwise, we need to add
9834 directory specifications. */
9835 if (index (cp1, '/') == 0) {
9836 /* Just add "000000]" as the directory string */
9837 strcpy (cp2, "000000]");
9838 cp2 += strlen (cp2);
9839 check_filename_before_returning = 1; /* we might need to fool with this later */
9840 } else {
9841 /* As long as there are still subdirectories to add, do them. */
9842 while (index (cp1, '/') != 0) {
9843 /* If this token is "." we can ignore it */
9844 if ((cp1[0] == '.') && (cp1[1] == '/')) {
9845 cp1 += 2;
9846 continue;
9848 /* Add a subdirectory spec. Do not duplicate "." */
9849 if (cp2[-1] != '.' && cp2[-1] != '[' && cp2[-1] != '<')
9850 *cp2++ = '.';
9851 /* If this is ".." then the spec becomes "-" */
9852 if ((cp1[0] == '.') && (cp1[1] == '.') && (cp[2] == '/')) {
9853 /* Add "-" and skip the ".." */
9854 *cp2++ = '-';
9855 cp1 += 3;
9856 continue;
9858 /* Copy the subdirectory */
9859 while (*cp1 != '/') *cp2++= *cp1++;
9860 cp1++; /* Skip the "/" */
9862 /* Close the directory specification */
9863 if (cp2[-1] == '.') /* no trailing periods */
9864 cp2--;
9865 *cp2++ = ']';
9867 /* Now add the filename */
9868 while (*cp1) *cp2++ = *cp1++;
9869 *cp2 = 0;
9870 /* Now append it to the original VMS spec. */
9871 strcpy (cp, Local);
9873 /* If we put a [000000] in the filename, try to open it first. If this fails,
9874 remove the [000000], and return that name. This provides flexibility
9875 to the user in that they can use both rooted and non-rooted logical names
9876 to point to the location of the file. */
9878 if (check_filename_before_returning && no_prefix_seen) {
9879 f = open (fname, O_RDONLY, 0666);
9880 if (f >= 0) {
9881 /* The file name is OK as it is, so return it as is. */
9882 close (f);
9883 return;
9885 /* The filename did not work. Try to remove the [000000] from the name,
9886 and return it. */
9887 cp = index (fname, '[');
9888 cp2 = index (fname, ']') + 1;
9889 strcpy (cp, cp2); /* this gets rid of it */
9891 return;
9893 #endif /* VMS */
9895 #ifdef VMS
9897 /* These are the read/write replacement routines for
9898 VAX-11 "C". They make read/write behave enough
9899 like their UNIX counterparts that CCCP will work */
9901 static int
9902 read (fd, buf, size)
9903 int fd;
9904 char *buf;
9905 int size;
9907 #undef read /* Get back the REAL read routine */
9908 register int i;
9909 register int total = 0;
9911 /* Read until the buffer is exhausted */
9912 while (size > 0) {
9913 /* Limit each read to 32KB */
9914 i = (size > (32*1024)) ? (32*1024) : size;
9915 i = read (fd, buf, i);
9916 if (i <= 0) {
9917 if (i == 0) return (total);
9918 return (i);
9920 /* Account for this read */
9921 total += i;
9922 buf += i;
9923 size -= i;
9925 return (total);
9928 static int
9929 write (fd, buf, size)
9930 int fd;
9931 char *buf;
9932 int size;
9934 #undef write /* Get back the REAL write routine */
9935 int i;
9936 int j;
9938 /* Limit individual writes to 32Kb */
9939 i = size;
9940 while (i > 0) {
9941 j = (i > (32*1024)) ? (32*1024) : i;
9942 if (write (fd, buf, j) < 0) return (-1);
9943 /* Account for the data written */
9944 buf += j;
9945 i -= j;
9947 return (size);
9950 /* The following wrapper functions supply additional arguments to the VMS
9951 I/O routines to optimize performance with file handling. The arguments
9952 are:
9953 "mbc=16" - Set multi-block count to 16 (use a 8192 byte buffer).
9954 "deq=64" - When extending the file, extend it in chunks of 32Kbytes.
9955 "fop=tef"- Truncate unused portions of file when closing file.
9956 "shr=nil"- Disallow file sharing while file is open.
9959 static FILE *
9960 freopen (fname, type, oldfile)
9961 char *fname;
9962 char *type;
9963 FILE *oldfile;
9965 #undef freopen /* Get back the REAL fopen routine */
9966 if (strcmp (type, "w") == 0)
9967 return freopen (fname, type, oldfile, "mbc=16", "deq=64", "fop=tef", "shr=nil");
9968 return freopen (fname, type, oldfile, "mbc=16");
9971 static FILE *
9972 fopen (fname, type)
9973 char *fname;
9974 char *type;
9976 #undef fopen /* Get back the REAL fopen routine */
9977 /* The gcc-vms-1.42 distribution's header files prototype fopen with two
9978 fixed arguments, which matches ANSI's specification but not VAXCRTL's
9979 pre-ANSI implmentation. This hack circumvents the mismatch problem. */
9980 FILE *(*vmslib_fopen)() = (FILE *(*)()) fopen;
9982 if (*type == 'w')
9983 return (*vmslib_fopen) (fname, type, "mbc=32",
9984 "deq=64", "fop=tef", "shr=nil");
9985 else
9986 return (*vmslib_fopen) (fname, type, "mbc=32");
9989 static int
9990 open (fname, flags, prot)
9991 char *fname;
9992 int flags;
9993 int prot;
9995 #undef open /* Get back the REAL open routine */
9996 return open (fname, flags, prot, "mbc=16", "deq=64", "fop=tef");
9999 /* Avoid run-time library bug, where copying M out of N+M characters with
10000 N >= 65535 results in VAXCRTL's strncat falling into an infinite loop.
10001 gcc-cpp exercises this particular bug. */
10003 static char *
10004 strncat (dst, src, cnt)
10005 char *dst;
10006 const char *src;
10007 unsigned cnt;
10009 register char *d = dst, *s = (char *) src;
10010 register int n = cnt; /* convert to _signed_ type */
10012 while (*d) d++; /* advance to end */
10013 while (--n >= 0)
10014 if (!(*d++ = *s++)) break;
10015 if (n < 0) *d = '\0';
10016 return dst;
10018 #endif /* VMS */