]> gcc.gnu.org Git - gcc.git/blob - gcc/dbxout.c
* Clean up usages of TREE_INT_CST_LOW.
[gcc.git] / gcc / dbxout.c
1 /* Output dbx-format symbol table information from GNU compiler.
2 Copyright (C) 1987, 1988, 1992, 1993, 1994, 1995, 1996, 1997, 1998,
3 1999, 2000 Free Software Foundation, Inc.
4
5 This file is part of GNU CC.
6
7 GNU CC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU CC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU CC; see the file COPYING. If not, write to
19 the Free Software Foundation, 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22
23 /* Output dbx-format symbol table data.
24 This consists of many symbol table entries, each of them
25 a .stabs assembler pseudo-op with four operands:
26 a "name" which is really a description of one symbol and its type,
27 a "code", which is a symbol defined in stab.h whose name starts with N_,
28 an unused operand always 0,
29 and a "value" which is an address or an offset.
30 The name is enclosed in doublequote characters.
31
32 Each function, variable, typedef, and structure tag
33 has a symbol table entry to define it.
34 The beginning and end of each level of name scoping within
35 a function are also marked by special symbol table entries.
36
37 The "name" consists of the symbol name, a colon, a kind-of-symbol letter,
38 and a data type number. The data type number may be followed by
39 "=" and a type definition; normally this will happen the first time
40 the type number is mentioned. The type definition may refer to
41 other types by number, and those type numbers may be followed
42 by "=" and nested definitions.
43
44 This can make the "name" quite long.
45 When a name is more than 80 characters, we split the .stabs pseudo-op
46 into two .stabs pseudo-ops, both sharing the same "code" and "value".
47 The first one is marked as continued with a double-backslash at the
48 end of its "name".
49
50 The kind-of-symbol letter distinguished function names from global
51 variables from file-scope variables from parameters from auto
52 variables in memory from typedef names from register variables.
53 See `dbxout_symbol'.
54
55 The "code" is mostly redundant with the kind-of-symbol letter
56 that goes in the "name", but not entirely: for symbols located
57 in static storage, the "code" says which segment the address is in,
58 which controls how it is relocated.
59
60 The "value" for a symbol in static storage
61 is the core address of the symbol (actually, the assembler
62 label for the symbol). For a symbol located in a stack slot
63 it is the stack offset; for one in a register, the register number.
64 For a typedef symbol, it is zero.
65
66 If DEBUG_SYMS_TEXT is defined, all debugging symbols must be
67 output while in the text section.
68
69 For more on data type definitions, see `dbxout_type'. */
70
71 #include "config.h"
72 #include "system.h"
73
74 #include "tree.h"
75 #include "rtl.h"
76 #include "flags.h"
77 #include "regs.h"
78 #include "insn-config.h"
79 #include "reload.h"
80 #include "defaults.h"
81 #include "output.h" /* ASM_OUTPUT_SOURCE_LINE may refer to sdb functions. */
82 #include "dbxout.h"
83 #include "toplev.h"
84 #include "tm_p.h"
85 #include "ggc.h"
86
87 #ifdef XCOFF_DEBUGGING_INFO
88 #include "xcoffout.h"
89 #endif
90
91 #ifndef ASM_STABS_OP
92 #define ASM_STABS_OP ".stabs"
93 #endif
94
95 #ifndef ASM_STABN_OP
96 #define ASM_STABN_OP ".stabn"
97 #endif
98
99 #ifndef DBX_TYPE_DECL_STABS_CODE
100 #define DBX_TYPE_DECL_STABS_CODE N_LSYM
101 #endif
102
103 #ifndef DBX_STATIC_CONST_VAR_CODE
104 #define DBX_STATIC_CONST_VAR_CODE N_FUN
105 #endif
106
107 #ifndef DBX_REGPARM_STABS_CODE
108 #define DBX_REGPARM_STABS_CODE N_RSYM
109 #endif
110
111 #ifndef DBX_REGPARM_STABS_LETTER
112 #define DBX_REGPARM_STABS_LETTER 'P'
113 #endif
114
115 /* This is used for parameters passed by invisible reference in a register. */
116 #ifndef GDB_INV_REF_REGPARM_STABS_LETTER
117 #define GDB_INV_REF_REGPARM_STABS_LETTER 'a'
118 #endif
119
120 #ifndef DBX_MEMPARM_STABS_LETTER
121 #define DBX_MEMPARM_STABS_LETTER 'p'
122 #endif
123
124 #ifndef FILE_NAME_JOINER
125 #define FILE_NAME_JOINER "/"
126 #endif
127
128 /* Nonzero means if the type has methods, only output debugging
129 information if methods are actually written to the asm file. This
130 optimization only works if the debugger can detect the special C++
131 marker. */
132
133 #define MINIMAL_DEBUG 1
134
135 #ifdef NO_DOLLAR_IN_LABEL
136 #ifdef NO_DOT_IN_LABEL
137 #undef MINIMAL_DEBUG
138 #define MINIMAL_DEBUG 0
139 #endif
140 #endif
141
142 /* Typical USG systems don't have stab.h, and they also have
143 no use for DBX-format debugging info. */
144
145 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)
146
147 static int flag_minimal_debug = MINIMAL_DEBUG;
148
149 /* Nonzero if we have actually used any of the GDB extensions
150 to the debugging format. The idea is that we use them for the
151 first time only if there's a strong reason, but once we have done that,
152 we use them whenever convenient. */
153
154 static int have_used_extensions = 0;
155
156 /* Number for the next N_SOL filename stabs label. The number 0 is reserved
157 for the N_SO filename stabs label. */
158
159 static int source_label_number = 1;
160
161 #ifdef DEBUG_SYMS_TEXT
162 #define FORCE_TEXT text_section ();
163 #else
164 #define FORCE_TEXT
165 #endif
166
167 /* If there is a system stab.h, use it. Otherwise, use our own. */
168 /* ??? This is supposed to describe the target's stab format, so using
169 the host HAVE_STAB_H appears to be wrong. For now, we use our own file
170 when cross compiling. */
171 #if defined (USG) || !defined (HAVE_STAB_H) || defined (CROSS_COMPILE)
172 #include "gstab.h" /* If doing DBX on sysV, use our own stab.h. */
173 #else
174 #include <stab.h>
175
176 /* This is a GNU extension we need to reference in this file. */
177 #ifndef N_CATCH
178 #define N_CATCH 0x54
179 #endif
180 #endif
181
182 #ifdef __GNU_STAB__
183 #define STAB_CODE_TYPE enum __stab_debug_code
184 #else
185 #define STAB_CODE_TYPE int
186 #endif
187
188 /* 1 if PARM is passed to this function in memory. */
189
190 #define PARM_PASSED_IN_MEMORY(PARM) \
191 (GET_CODE (DECL_INCOMING_RTL (PARM)) == MEM)
192
193 /* A C expression for the integer offset value of an automatic variable
194 (N_LSYM) having address X (an RTX). */
195 #ifndef DEBUGGER_AUTO_OFFSET
196 #define DEBUGGER_AUTO_OFFSET(X) \
197 (GET_CODE (X) == PLUS ? INTVAL (XEXP (X, 1)) : 0)
198 #endif
199
200 /* A C expression for the integer offset value of an argument (N_PSYM)
201 having address X (an RTX). The nominal offset is OFFSET. */
202 #ifndef DEBUGGER_ARG_OFFSET
203 #define DEBUGGER_ARG_OFFSET(OFFSET, X) (OFFSET)
204 #endif
205
206 /* Stream for writing to assembler file. */
207
208 static FILE *asmfile;
209
210 /* Last source file name mentioned in a NOTE insn. */
211
212 static const char *lastfile;
213
214 /* Current working directory. */
215
216 static const char *cwd;
217
218 enum typestatus {TYPE_UNSEEN, TYPE_XREF, TYPE_DEFINED};
219
220 /* Structure recording information about a C data type.
221 The status element says whether we have yet output
222 the definition of the type. TYPE_XREF says we have
223 output it as a cross-reference only.
224 The file_number and type_number elements are used if DBX_USE_BINCL
225 is defined. */
226
227 struct typeinfo
228 {
229 enum typestatus status;
230 #ifdef DBX_USE_BINCL
231 int file_number;
232 int type_number;
233 #endif
234 };
235
236 /* Vector recording information about C data types.
237 When we first notice a data type (a tree node),
238 we assign it a number using next_type_number.
239 That is its index in this vector. */
240
241 struct typeinfo *typevec;
242
243 /* Number of elements of space allocated in `typevec'. */
244
245 static int typevec_len;
246
247 /* In dbx output, each type gets a unique number.
248 This is the number for the next type output.
249 The number, once assigned, is in the TYPE_SYMTAB_ADDRESS field. */
250
251 static int next_type_number;
252
253 #ifdef DBX_USE_BINCL
254
255 /* When using N_BINCL in dbx output, each type number is actually a
256 pair of the file number and the type number within the file.
257 This is a stack of input files. */
258
259 struct dbx_file
260 {
261 struct dbx_file *next;
262 int file_number;
263 int next_type_number;
264 };
265
266 /* This is the top of the stack. */
267
268 static struct dbx_file *current_file;
269
270 /* This is the next file number to use. */
271
272 static int next_file_number;
273
274 #endif /* DBX_USE_BINCL */
275
276 /* These variables are for dbxout_symbol to communicate to
277 dbxout_finish_symbol.
278 current_sym_code is the symbol-type-code, a symbol N_... define in stab.h.
279 current_sym_value and current_sym_addr are two ways to address the
280 value to store in the symtab entry.
281 current_sym_addr if nonzero represents the value as an rtx.
282 If that is zero, current_sym_value is used. This is used
283 when the value is an offset (such as for auto variables,
284 register variables and parms). */
285
286 static STAB_CODE_TYPE current_sym_code;
287 static int current_sym_value;
288 static rtx current_sym_addr;
289
290 /* Number of chars of symbol-description generated so far for the
291 current symbol. Used by CHARS and CONTIN. */
292
293 static int current_sym_nchars;
294
295 /* Report having output N chars of the current symbol-description. */
296
297 #define CHARS(N) (current_sym_nchars += (N))
298
299 /* Break the current symbol-description, generating a continuation,
300 if it has become long. */
301
302 #ifndef DBX_CONTIN_LENGTH
303 #define DBX_CONTIN_LENGTH 80
304 #endif
305
306 #if DBX_CONTIN_LENGTH > 0
307 #define CONTIN \
308 do {if (current_sym_nchars > DBX_CONTIN_LENGTH) dbxout_continue ();} while (0)
309 #else
310 #define CONTIN
311 #endif
312
313 #if defined(ASM_OUTPUT_SECTION_NAME)
314 static void dbxout_function_end PARAMS ((void));
315 #endif
316 static void dbxout_typedefs PARAMS ((tree));
317 static void dbxout_type_index PARAMS ((tree));
318 #if DBX_CONTIN_LENGTH > 0
319 static void dbxout_continue PARAMS ((void));
320 #endif
321 static void dbxout_type_fields PARAMS ((tree));
322 static void dbxout_type_method_1 PARAMS ((tree, const char *));
323 static void dbxout_type_methods PARAMS ((tree));
324 static void dbxout_range_type PARAMS ((tree));
325 static void dbxout_type PARAMS ((tree, int, int));
326 static void print_int_cst_octal PARAMS ((tree));
327 static void print_octal PARAMS ((unsigned HOST_WIDE_INT, int));
328 static void dbxout_type_name PARAMS ((tree));
329 static int dbxout_symbol_location PARAMS ((tree, tree, const char *, rtx));
330 static void dbxout_symbol_name PARAMS ((tree, const char *, int));
331 static void dbxout_prepare_symbol PARAMS ((tree));
332 static void dbxout_finish_symbol PARAMS ((tree));
333 static void dbxout_block PARAMS ((tree, int, tree));
334 static void dbxout_really_begin_function PARAMS ((tree));
335 \f
336 #if defined(ASM_OUTPUT_SECTION_NAME)
337 static void
338 dbxout_function_end ()
339 {
340 static int scope_labelno = 0;
341 char lscope_label_name[100];
342 /* Convert Ltext into the appropriate format for local labels in case
343 the system doesn't insert underscores in front of user generated
344 labels. */
345 ASM_GENERATE_INTERNAL_LABEL (lscope_label_name, "Lscope", scope_labelno);
346 ASM_OUTPUT_INTERNAL_LABEL (asmfile, "Lscope", scope_labelno);
347 scope_labelno++;
348
349 /* By convention, GCC will mark the end of a function with an N_FUN
350 symbol and an empty string. */
351 fprintf (asmfile, "%s \"\",%d,0,0,", ASM_STABS_OP, N_FUN);
352 assemble_name (asmfile, lscope_label_name);
353 fputc ('-', asmfile);
354 assemble_name (asmfile, XSTR (XEXP (DECL_RTL (current_function_decl), 0), 0));
355 fprintf (asmfile, "\n");
356 }
357 #endif /* ! NO_DBX_FUNCTION_END */
358
359 /* At the beginning of compilation, start writing the symbol table.
360 Initialize `typevec' and output the standard data types of C. */
361
362 void
363 dbxout_init (asm_file, input_file_name, syms)
364 FILE *asm_file;
365 const char *input_file_name;
366 tree syms;
367 {
368 char ltext_label_name[100];
369
370 asmfile = asm_file;
371
372 typevec_len = 100;
373 typevec = (struct typeinfo *) xcalloc (typevec_len, sizeof typevec[0]);
374
375 /* Convert Ltext into the appropriate format for local labels in case
376 the system doesn't insert underscores in front of user generated
377 labels. */
378 ASM_GENERATE_INTERNAL_LABEL (ltext_label_name, "Ltext", 0);
379
380 /* Put the current working directory in an N_SO symbol. */
381 #ifndef DBX_WORKING_DIRECTORY /* Only some versions of DBX want this,
382 but GDB always does. */
383 if (use_gnu_debug_info_extensions)
384 #endif
385 {
386 if (!cwd && (cwd = getpwd ()) && (!*cwd || cwd[strlen (cwd) - 1] != '/'))
387 {
388 char *wdslash = xmalloc (strlen (cwd) + sizeof (FILE_NAME_JOINER));
389 sprintf (wdslash, "%s%s", cwd, FILE_NAME_JOINER);
390 cwd = wdslash;
391 }
392 if (cwd)
393 {
394 #ifdef DBX_OUTPUT_MAIN_SOURCE_DIRECTORY
395 DBX_OUTPUT_MAIN_SOURCE_DIRECTORY (asmfile, cwd);
396 #else /* no DBX_OUTPUT_MAIN_SOURCE_DIRECTORY */
397 fprintf (asmfile, "%s ", ASM_STABS_OP);
398 output_quoted_string (asmfile, cwd);
399 fprintf (asmfile, ",%d,0,0,%s\n", N_SO, &ltext_label_name[1]);
400 #endif /* no DBX_OUTPUT_MAIN_SOURCE_DIRECTORY */
401 }
402 }
403
404 #ifdef DBX_OUTPUT_MAIN_SOURCE_FILENAME
405 /* This should NOT be DBX_OUTPUT_SOURCE_FILENAME. That
406 would give us an N_SOL, and we want an N_SO. */
407 DBX_OUTPUT_MAIN_SOURCE_FILENAME (asmfile, input_file_name);
408 #else /* no DBX_OUTPUT_MAIN_SOURCE_FILENAME */
409 /* We include outputting `Ltext:' here,
410 because that gives you a way to override it. */
411 /* Used to put `Ltext:' before the reference, but that loses on sun 4. */
412 fprintf (asmfile, "%s ", ASM_STABS_OP);
413 output_quoted_string (asmfile, input_file_name);
414 fprintf (asmfile, ",%d,0,0,%s\n",
415 N_SO, &ltext_label_name[1]);
416 text_section ();
417 ASM_OUTPUT_INTERNAL_LABEL (asmfile, "Ltext", 0);
418 #endif /* no DBX_OUTPUT_MAIN_SOURCE_FILENAME */
419
420 /* Possibly output something to inform GDB that this compilation was by
421 GCC. It's easier for GDB to parse it when after the N_SO's. This
422 is used in Solaris 2. */
423 #ifdef ASM_IDENTIFY_GCC_AFTER_SOURCE
424 ASM_IDENTIFY_GCC_AFTER_SOURCE (asmfile);
425 #endif
426
427 lastfile = input_file_name;
428
429 next_type_number = 1;
430
431 #ifdef DBX_USE_BINCL
432 current_file = (struct dbx_file *) xmalloc (sizeof *current_file);
433 current_file->next = NULL;
434 current_file->file_number = 0;
435 current_file->next_type_number = 1;
436 next_file_number = 1;
437 #endif
438
439 /* Make sure that types `int' and `char' have numbers 1 and 2.
440 Definitions of other integer types will refer to those numbers.
441 (Actually it should no longer matter what their numbers are.
442 Also, if any types with tags have been defined, dbxout_symbol
443 will output them first, so the numbers won't be 1 and 2. That
444 happens in C++. So it's a good thing it should no longer matter). */
445
446 #ifdef DBX_OUTPUT_STANDARD_TYPES
447 DBX_OUTPUT_STANDARD_TYPES (syms);
448 #else
449 dbxout_symbol (TYPE_NAME (integer_type_node), 0);
450 dbxout_symbol (TYPE_NAME (char_type_node), 0);
451 #endif
452
453 /* Get all permanent types that have typedef names,
454 and output them all, except for those already output. */
455
456 dbxout_typedefs (syms);
457
458 ggc_add_string_root ((char **) &lastfile, 1);
459 }
460
461 /* Output any typedef names for types described by TYPE_DECLs in SYMS,
462 in the reverse order from that which is found in SYMS. */
463
464 static void
465 dbxout_typedefs (syms)
466 tree syms;
467 {
468 if (syms)
469 {
470 dbxout_typedefs (TREE_CHAIN (syms));
471 if (TREE_CODE (syms) == TYPE_DECL)
472 {
473 tree type = TREE_TYPE (syms);
474 if (TYPE_NAME (type)
475 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
476 && TYPE_SIZE (type) != NULL_TREE
477 && ! TREE_ASM_WRITTEN (TYPE_NAME (type)))
478 dbxout_symbol (TYPE_NAME (type), 0);
479 }
480 }
481 }
482
483 /* Change to reading from a new source file. Generate a N_BINCL stab. */
484
485 void
486 dbxout_start_new_source_file (filename)
487 const char *filename ATTRIBUTE_UNUSED;
488 {
489 #ifdef DBX_USE_BINCL
490 struct dbx_file *n = (struct dbx_file *) xmalloc (sizeof *n);
491
492 n->next = current_file;
493 n->file_number = next_file_number++;
494 n->next_type_number = 1;
495 current_file = n;
496 fprintf (asmfile, "%s ", ASM_STABS_OP);
497 output_quoted_string (asmfile, filename);
498 fprintf (asmfile, ",%d,0,0,0\n", N_BINCL);
499 #endif
500 }
501
502 /* Revert to reading a previous source file. Generate a N_EINCL stab. */
503
504 void
505 dbxout_resume_previous_source_file ()
506 {
507 #ifdef DBX_USE_BINCL
508 struct dbx_file *next;
509
510 fprintf (asmfile, "%s %d,0,0,0\n", ASM_STABN_OP, N_EINCL);
511 next = current_file->next;
512 free (current_file);
513 current_file = next;
514 #endif
515 }
516
517 /* Output debugging info to FILE to switch to sourcefile FILENAME. */
518
519 void
520 dbxout_source_file (file, filename)
521 FILE *file;
522 const char *filename;
523 {
524 char ltext_label_name[100];
525
526 if (filename && (lastfile == 0 || strcmp (filename, lastfile)))
527 {
528 #ifdef DBX_OUTPUT_SOURCE_FILENAME
529 DBX_OUTPUT_SOURCE_FILENAME (file, filename);
530 #else
531 ASM_GENERATE_INTERNAL_LABEL (ltext_label_name, "Ltext",
532 source_label_number);
533 fprintf (file, "%s ", ASM_STABS_OP);
534 output_quoted_string (file, filename);
535 fprintf (file, ",%d,0,0,%s\n", N_SOL, &ltext_label_name[1]);
536 if (current_function_decl != NULL_TREE
537 && DECL_SECTION_NAME (current_function_decl) != NULL_TREE)
538 ; /* Don't change section amid function. */
539 else
540 text_section ();
541 ASM_OUTPUT_INTERNAL_LABEL (file, "Ltext", source_label_number);
542 source_label_number++;
543 #endif
544 lastfile = filename;
545 }
546 }
547
548 /* Output a line number symbol entry into output stream FILE,
549 for source file FILENAME and line number LINENO. */
550
551 void
552 dbxout_source_line (file, filename, lineno)
553 FILE *file;
554 const char *filename;
555 int lineno;
556 {
557 dbxout_source_file (file, filename);
558
559 #ifdef ASM_OUTPUT_SOURCE_LINE
560 ASM_OUTPUT_SOURCE_LINE (file, lineno);
561 #else
562 fprintf (file, "\t%s %d,0,%d\n", ASM_STABD_OP, N_SLINE, lineno);
563 #endif
564 }
565
566 /* At the end of compilation, finish writing the symbol table.
567 Unless you define DBX_OUTPUT_MAIN_SOURCE_FILE_END, the default is
568 to do nothing. */
569
570 void
571 dbxout_finish (file, filename)
572 FILE *file ATTRIBUTE_UNUSED;
573 const char *filename ATTRIBUTE_UNUSED;
574 {
575 #ifdef DBX_OUTPUT_MAIN_SOURCE_FILE_END
576 DBX_OUTPUT_MAIN_SOURCE_FILE_END (file, filename);
577 #endif /* DBX_OUTPUT_MAIN_SOURCE_FILE_END */
578 }
579
580 /* Output the index of a type. */
581
582 static void
583 dbxout_type_index (type)
584 tree type;
585 {
586 #ifndef DBX_USE_BINCL
587 fprintf (asmfile, "%d", TYPE_SYMTAB_ADDRESS (type));
588 CHARS (3);
589 #else
590 struct typeinfo *t = &typevec[TYPE_SYMTAB_ADDRESS (type)];
591 fprintf (asmfile, "(%d,%d)", t->file_number, t->type_number);
592 CHARS (7);
593 #endif
594 }
595
596 #if DBX_CONTIN_LENGTH > 0
597 /* Continue a symbol-description that gets too big.
598 End one symbol table entry with a double-backslash
599 and start a new one, eventually producing something like
600 .stabs "start......\\",code,0,value
601 .stabs "...rest",code,0,value */
602
603 static void
604 dbxout_continue ()
605 {
606 #ifdef DBX_CONTIN_CHAR
607 fprintf (asmfile, "%c", DBX_CONTIN_CHAR);
608 #else
609 fprintf (asmfile, "\\\\");
610 #endif
611 dbxout_finish_symbol (NULL_TREE);
612 fprintf (asmfile, "%s \"", ASM_STABS_OP);
613 current_sym_nchars = 0;
614 }
615 #endif /* DBX_CONTIN_LENGTH > 0 */
616 \f
617 /* Subroutine of `dbxout_type'. Output the type fields of TYPE.
618 This must be a separate function because anonymous unions require
619 recursive calls. */
620
621 static void
622 dbxout_type_fields (type)
623 tree type;
624 {
625 tree tem;
626
627 /* Output the name, type, position (in bits), size (in bits) of each
628 field that we can support. */
629 for (tem = TYPE_FIELDS (type); tem; tem = TREE_CHAIN (tem))
630 {
631 /* Omit here local type decls until we know how to support them. */
632 if (TREE_CODE (tem) == TYPE_DECL
633 /* Omit fields whose position or size are variable or too large to
634 represent. */
635 || (TREE_CODE (tem) == FIELD_DECL
636 && (! host_integerp (bit_position (tem), 0)
637 || ! host_integerp (DECL_SIZE (tem), 1)))
638 /* Omit here the nameless fields that are used to skip bits. */
639 || DECL_IGNORED_P (tem))
640 continue;
641
642 else if (TREE_CODE (tem) != CONST_DECL)
643 {
644 /* Continue the line if necessary,
645 but not before the first field. */
646 if (tem != TYPE_FIELDS (type))
647 CONTIN;
648
649 if (use_gnu_debug_info_extensions
650 && flag_minimal_debug
651 && TREE_CODE (tem) == FIELD_DECL
652 && DECL_VIRTUAL_P (tem)
653 && DECL_ASSEMBLER_NAME (tem))
654 {
655 have_used_extensions = 1;
656 CHARS (3 + IDENTIFIER_LENGTH (DECL_ASSEMBLER_NAME (tem)));
657 fputs (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (tem)), asmfile);
658 dbxout_type (DECL_FCONTEXT (tem), 0, 0);
659 fprintf (asmfile, ":");
660 dbxout_type (TREE_TYPE (tem), 0, 0);
661 fputc (',', asmfile);
662 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
663 int_bit_position (tem));
664 fputc (';', asmfile);
665 continue;
666 }
667
668 if (DECL_NAME (tem))
669 {
670 fprintf (asmfile, "%s:", IDENTIFIER_POINTER (DECL_NAME (tem)));
671 CHARS (2 + IDENTIFIER_LENGTH (DECL_NAME (tem)));
672 }
673 else
674 {
675 fprintf (asmfile, ":");
676 CHARS (2);
677 }
678
679 if (use_gnu_debug_info_extensions
680 && (TREE_PRIVATE (tem) || TREE_PROTECTED (tem)
681 || TREE_CODE (tem) != FIELD_DECL))
682 {
683 have_used_extensions = 1;
684 putc ('/', asmfile);
685 putc ((TREE_PRIVATE (tem) ? '0'
686 : TREE_PROTECTED (tem) ? '1' : '2'),
687 asmfile);
688 CHARS (2);
689 }
690
691 dbxout_type ((TREE_CODE (tem) == FIELD_DECL
692 && DECL_BIT_FIELD_TYPE (tem))
693 ? DECL_BIT_FIELD_TYPE (tem) : TREE_TYPE (tem), 0, 0);
694
695 if (TREE_CODE (tem) == VAR_DECL)
696 {
697 if (TREE_STATIC (tem) && use_gnu_debug_info_extensions)
698 {
699 const char *name =
700 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (tem));
701 have_used_extensions = 1;
702 fprintf (asmfile, ":%s;", name);
703 CHARS (strlen (name));
704 }
705 else
706 /* If TEM is non-static, GDB won't understand it. */
707 fprintf (asmfile, ",0,0;");
708 }
709 else
710 {
711 fputc (',', asmfile);
712 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
713 int_bit_position (tem));
714 fputc (',', asmfile);
715 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
716 tree_low_cst (DECL_SIZE (tem), 1));
717 fputc (';', asmfile);
718 CHARS (23);
719 }
720 }
721 }
722 }
723 \f
724 /* Subroutine of `dbxout_type_methods'. Output debug info about the
725 method described DECL. DEBUG_NAME is an encoding of the method's
726 type signature. ??? We may be able to do without DEBUG_NAME altogether
727 now. */
728
729 static void
730 dbxout_type_method_1 (decl, debug_name)
731 tree decl;
732 const char *debug_name;
733 {
734 char c1 = 'A', c2;
735
736 if (TREE_CODE (TREE_TYPE (decl)) == FUNCTION_TYPE)
737 c2 = '?';
738 else /* it's a METHOD_TYPE. */
739 {
740 tree firstarg = TREE_VALUE (TYPE_ARG_TYPES (TREE_TYPE (decl)));
741 /* A for normal functions.
742 B for `const' member functions.
743 C for `volatile' member functions.
744 D for `const volatile' member functions. */
745 if (TYPE_READONLY (TREE_TYPE (firstarg)))
746 c1 += 1;
747 if (TYPE_VOLATILE (TREE_TYPE (firstarg)))
748 c1 += 2;
749
750 if (DECL_VINDEX (decl))
751 c2 = '*';
752 else
753 c2 = '.';
754 }
755
756 fprintf (asmfile, ":%s;%c%c%c", debug_name,
757 TREE_PRIVATE (decl) ? '0'
758 : TREE_PROTECTED (decl) ? '1' : '2', c1, c2);
759 CHARS (IDENTIFIER_LENGTH (DECL_ASSEMBLER_NAME (decl)) + 6
760 - (debug_name - IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl))));
761
762 if (DECL_VINDEX (decl) && host_integerp (DECL_VINDEX (decl), 0))
763 {
764 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
765 tree_low_cst (DECL_VINDEX (decl), 0));
766 fputc (';', asmfile);
767 dbxout_type (DECL_CONTEXT (decl), 0, 0);
768 fprintf (asmfile, ";");
769 CHARS (8);
770 }
771 }
772 \f
773 /* Subroutine of `dbxout_type'. Output debug info about the methods defined
774 in TYPE. */
775
776 static void
777 dbxout_type_methods (type)
778 register tree type;
779 {
780 /* C++: put out the method names and their parameter lists */
781 tree methods = TYPE_METHODS (type);
782 tree type_encoding;
783 register tree fndecl;
784 register tree last;
785 char formatted_type_identifier_length[16];
786 register int type_identifier_length;
787
788 if (methods == NULL_TREE)
789 return;
790
791 type_encoding = DECL_NAME (TYPE_NAME (type));
792
793 #if 0
794 /* C++: Template classes break some assumptions made by this code about
795 the class names, constructor names, and encodings for assembler
796 label names. For now, disable output of dbx info for them. */
797 {
798 const char *ptr = IDENTIFIER_POINTER (type_encoding);
799 /* This should use index. (mrs) */
800 while (*ptr && *ptr != '<') ptr++;
801 if (*ptr != 0)
802 {
803 static int warned;
804 if (!warned)
805 warned = 1;
806 return;
807 }
808 }
809 #endif
810
811 type_identifier_length = IDENTIFIER_LENGTH (type_encoding);
812
813 sprintf(formatted_type_identifier_length, "%d", type_identifier_length);
814
815 if (TREE_CODE (methods) != TREE_VEC)
816 fndecl = methods;
817 else if (TREE_VEC_ELT (methods, 0) != NULL_TREE)
818 fndecl = TREE_VEC_ELT (methods, 0);
819 else
820 fndecl = TREE_VEC_ELT (methods, 1);
821
822 while (fndecl)
823 {
824 tree name = DECL_NAME (fndecl);
825 int need_prefix = 1;
826
827 /* Group together all the methods for the same operation.
828 These differ in the types of the arguments. */
829 for (last = NULL_TREE;
830 fndecl && (last == NULL_TREE || DECL_NAME (fndecl) == DECL_NAME (last));
831 fndecl = TREE_CHAIN (fndecl))
832 /* Output the name of the field (after overloading), as
833 well as the name of the field before overloading, along
834 with its parameter list */
835 {
836 /* This is the "mangled" name of the method.
837 It encodes the argument types. */
838 const char *debug_name =
839 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (fndecl));
840 int show_arg_types = 0;
841
842 CONTIN;
843
844 last = fndecl;
845
846 if (DECL_IGNORED_P (fndecl))
847 continue;
848
849 if (flag_minimal_debug)
850 {
851 char marker;
852
853 /* We can't optimize a method which uses an anonymous
854 class, because the debugger will not be able to
855 associate the arbitrary class name with the actual
856 class. */
857 #ifndef NO_DOLLAR_IN_LABEL
858 marker = '$';
859 #else
860 marker = '.';
861 #endif
862 if (strchr (debug_name, marker))
863 show_arg_types = 1;
864 /* Detect ordinary methods because their mangled names
865 start with the operation name. */
866 else if (!strncmp (IDENTIFIER_POINTER (name), debug_name,
867 IDENTIFIER_LENGTH (name)))
868 {
869 debug_name += IDENTIFIER_LENGTH (name);
870 if (debug_name[0] == '_' && debug_name[1] == '_')
871 {
872 const char *method_name = debug_name + 2;
873 const char *length_ptr =
874 formatted_type_identifier_length;
875 /* Get past const and volatile qualifiers. */
876 while (*method_name == 'C' || *method_name == 'V')
877 method_name++;
878 /* Skip digits for length of type_encoding. */
879 while (*method_name == *length_ptr && *length_ptr)
880 length_ptr++, method_name++;
881 if (! strncmp (method_name,
882 IDENTIFIER_POINTER (type_encoding),
883 type_identifier_length))
884 method_name += type_identifier_length;
885 debug_name = method_name;
886 }
887 }
888 /* Detect constructors by their style of name mangling. */
889 else if (debug_name[0] == '_' && debug_name[1] == '_')
890 {
891 const char *ctor_name = debug_name + 2;
892 const char *length_ptr = formatted_type_identifier_length;
893 while (*ctor_name == 'C' || *ctor_name == 'V')
894 ctor_name++;
895 /* Skip digits for length of type_encoding. */
896 while (*ctor_name == *length_ptr && *length_ptr)
897 length_ptr++, ctor_name++;
898 if (!strncmp (IDENTIFIER_POINTER (type_encoding), ctor_name,
899 type_identifier_length))
900 debug_name = ctor_name + type_identifier_length;
901 }
902 /* The other alternative is a destructor. */
903 else
904 show_arg_types = 1;
905
906 /* Output the operation name just once, for the first method
907 that we output. */
908 if (need_prefix)
909 {
910 fprintf (asmfile, "%s::", IDENTIFIER_POINTER (name));
911 CHARS (IDENTIFIER_LENGTH (name) + 2);
912 need_prefix = 0;
913 }
914 }
915
916 dbxout_type (TREE_TYPE (fndecl), 0, show_arg_types);
917
918 dbxout_type_method_1 (fndecl, debug_name);
919 }
920 if (!need_prefix)
921 {
922 putc (';', asmfile);
923 CHARS (1);
924 }
925 }
926 }
927
928 /* Emit a "range" type specification, which has the form:
929 "r<index type>;<lower bound>;<upper bound>;".
930 TYPE is an INTEGER_TYPE. */
931
932 static void
933 dbxout_range_type (type)
934 tree type;
935 {
936 fprintf (asmfile, "r");
937 if (TREE_TYPE (type))
938 dbxout_type (TREE_TYPE (type), 0, 0);
939 else if (TREE_CODE (type) != INTEGER_TYPE)
940 dbxout_type (type, 0, 0); /* E.g. Pascal's ARRAY [BOOLEAN] of INTEGER */
941 else
942 {
943 /* Traditionally, we made sure 'int' was type 1, and builtin types
944 were defined to be sub-ranges of int. Unfortunately, this
945 does not allow us to distinguish true sub-ranges from integer
946 types. So, instead we define integer (non-sub-range) types as
947 sub-ranges of themselves. This matters for Chill. If this isn't
948 a subrange type, then we want to define it in terms of itself.
949 However, in C, this may be an anonymous integer type, and we don't
950 want to emit debug info referring to it. Just calling
951 dbxout_type_index won't work anyways, because the type hasn't been
952 defined yet. We make this work for both cases by checked to see
953 whether this is a defined type, referring to it if it is, and using
954 'int' otherwise. */
955 if (TYPE_SYMTAB_ADDRESS (type) != 0)
956 dbxout_type_index (type);
957 else
958 dbxout_type_index (integer_type_node);
959 }
960
961 if (TYPE_MIN_VALUE (type) != 0
962 && host_integerp (TYPE_MIN_VALUE (type), 0))
963 {
964 fputc (';', asmfile);
965 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
966 tree_low_cst (TYPE_MIN_VALUE (type), 0));
967 }
968 else
969 fprintf (asmfile, ";0");
970
971 if (TYPE_MAX_VALUE (type) != 0
972 && host_integerp (TYPE_MAX_VALUE (type), 0))
973 {
974 fputc (';', asmfile);
975 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
976 tree_low_cst (TYPE_MAX_VALUE (type), 0));
977 fputc (';', asmfile);
978 }
979 else
980 fprintf (asmfile, ";-1;");
981 }
982 \f
983 /* Output a reference to a type. If the type has not yet been
984 described in the dbx output, output its definition now.
985 For a type already defined, just refer to its definition
986 using the type number.
987
988 If FULL is nonzero, and the type has been described only with
989 a forward-reference, output the definition now.
990 If FULL is zero in this case, just refer to the forward-reference
991 using the number previously allocated.
992
993 If SHOW_ARG_TYPES is nonzero, we output a description of the argument
994 types for a METHOD_TYPE. */
995
996 static void
997 dbxout_type (type, full, show_arg_types)
998 tree type;
999 int full;
1000 int show_arg_types;
1001 {
1002 register tree tem;
1003 static int anonymous_type_number = 0;
1004
1005 /* If there was an input error and we don't really have a type,
1006 avoid crashing and write something that is at least valid
1007 by assuming `int'. */
1008 if (type == error_mark_node)
1009 type = integer_type_node;
1010 else
1011 {
1012 /* Try to find the "main variant" with the same name but not const
1013 or volatile. (Since stabs does not distinguish const and volatile,
1014 there is no need to make them separate types. But types with
1015 different names are usefully distinguished.) */
1016
1017 for (tem = TYPE_MAIN_VARIANT (type); tem; tem = TYPE_NEXT_VARIANT (tem))
1018 if (!TYPE_READONLY (tem) && !TYPE_VOLATILE (tem)
1019 && TYPE_NAME (tem) == TYPE_NAME (type))
1020 {
1021 type = tem;
1022 break;
1023 }
1024 if (TYPE_NAME (type)
1025 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1026 && TYPE_DECL_SUPPRESS_DEBUG (TYPE_NAME (type)))
1027 full = 0;
1028 }
1029
1030 if (TYPE_SYMTAB_ADDRESS (type) == 0)
1031 {
1032 /* Type has no dbx number assigned. Assign next available number. */
1033 TYPE_SYMTAB_ADDRESS (type) = next_type_number++;
1034
1035 /* Make sure type vector is long enough to record about this type. */
1036
1037 if (next_type_number == typevec_len)
1038 {
1039 typevec
1040 = (struct typeinfo *) xrealloc (typevec,
1041 typevec_len * 2 * sizeof typevec[0]);
1042 bzero ((char *) (typevec + typevec_len),
1043 typevec_len * sizeof typevec[0]);
1044 typevec_len *= 2;
1045 }
1046
1047 #ifdef DBX_USE_BINCL
1048 typevec[TYPE_SYMTAB_ADDRESS (type)].file_number
1049 = current_file->file_number;
1050 typevec[TYPE_SYMTAB_ADDRESS (type)].type_number
1051 = current_file->next_type_number++;
1052 #endif
1053 }
1054
1055 /* Output the number of this type, to refer to it. */
1056 dbxout_type_index (type);
1057
1058 #ifdef DBX_TYPE_DEFINED
1059 if (DBX_TYPE_DEFINED (type))
1060 return;
1061 #endif
1062
1063 /* If this type's definition has been output or is now being output,
1064 that is all. */
1065
1066 switch (typevec[TYPE_SYMTAB_ADDRESS (type)].status)
1067 {
1068 case TYPE_UNSEEN:
1069 break;
1070 case TYPE_XREF:
1071 /* If we have already had a cross reference,
1072 and either that's all we want or that's the best we could do,
1073 don't repeat the cross reference.
1074 Sun dbx crashes if we do. */
1075 if (! full || TYPE_SIZE (type) == 0
1076 /* No way in DBX fmt to describe a variable size. */
1077 || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
1078 return;
1079 break;
1080 case TYPE_DEFINED:
1081 return;
1082 }
1083
1084 #ifdef DBX_NO_XREFS
1085 /* For systems where dbx output does not allow the `=xsNAME:' syntax,
1086 leave the type-number completely undefined rather than output
1087 a cross-reference. If we have already used GNU debug info extensions,
1088 then it is OK to output a cross reference. This is necessary to get
1089 proper C++ debug output. */
1090 if ((TREE_CODE (type) == RECORD_TYPE || TREE_CODE (type) == UNION_TYPE
1091 || TREE_CODE (type) == QUAL_UNION_TYPE
1092 || TREE_CODE (type) == ENUMERAL_TYPE)
1093 && ! use_gnu_debug_info_extensions)
1094 /* We must use the same test here as we use twice below when deciding
1095 whether to emit a cross-reference. */
1096 if ((TYPE_NAME (type) != 0
1097 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1098 && DECL_IGNORED_P (TYPE_NAME (type)))
1099 && !full)
1100 || TYPE_SIZE (type) == 0
1101 /* No way in DBX fmt to describe a variable size. */
1102 || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
1103 {
1104 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
1105 return;
1106 }
1107 #endif
1108
1109 /* Output a definition now. */
1110
1111 fprintf (asmfile, "=");
1112 CHARS (1);
1113
1114 /* Mark it as defined, so that if it is self-referent
1115 we will not get into an infinite recursion of definitions. */
1116
1117 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_DEFINED;
1118
1119 if (TYPE_NAME (type) && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1120 && DECL_ORIGINAL_TYPE (TYPE_NAME (type)))
1121 {
1122 dbxout_type (DECL_ORIGINAL_TYPE (TYPE_NAME (type)), 0, 0);
1123 return;
1124 }
1125
1126 switch (TREE_CODE (type))
1127 {
1128 case VOID_TYPE:
1129 case LANG_TYPE:
1130 /* For a void type, just define it as itself; ie, "5=5".
1131 This makes us consider it defined
1132 without saying what it is. The debugger will make it
1133 a void type when the reference is seen, and nothing will
1134 ever override that default. */
1135 dbxout_type_index (type);
1136 break;
1137
1138 case INTEGER_TYPE:
1139 if (type == char_type_node && ! TREE_UNSIGNED (type))
1140 {
1141 /* Output the type `char' as a subrange of itself!
1142 I don't understand this definition, just copied it
1143 from the output of pcc.
1144 This used to use `r2' explicitly and we used to
1145 take care to make sure that `char' was type number 2. */
1146 fprintf (asmfile, "r");
1147 dbxout_type_index (type);
1148 fprintf (asmfile, ";0;127;");
1149 }
1150
1151 /* If this is a subtype of another integer type, always prefer to
1152 write it as a subtype. */
1153 else if (TREE_TYPE (type) != 0
1154 && TREE_CODE (TREE_TYPE (type)) == INTEGER_CST)
1155 dbxout_range_type (type);
1156
1157 else
1158 {
1159 /* If the size is non-standard, say what it is if we can use
1160 GDB extensions. */
1161
1162 if (use_gnu_debug_info_extensions
1163 && TYPE_PRECISION (type) != TYPE_PRECISION (integer_type_node))
1164 fprintf (asmfile, "@s%d;", TYPE_PRECISION (type));
1165
1166 /* If we can use GDB extensions and the size is wider than a
1167 long (the size used by GDB to read them) or we may have
1168 trouble writing the bounds the usual way, write them in
1169 octal. Note the test is for the *target's* size of "long",
1170 not that of the host. The host test is just to make sure we
1171 can write it out in case the host wide int is narrower than the
1172 target "long". */
1173
1174 /* For unsigned types, we use octal if they are the same size or
1175 larger. This is because we print the bounds as signed decimal,
1176 and hence they can't span same size unsigned types. */
1177
1178 if (use_gnu_debug_info_extensions
1179 && (TYPE_PRECISION (type) > TYPE_PRECISION (integer_type_node)
1180 || (TYPE_PRECISION (type) == TYPE_PRECISION (integer_type_node)
1181 && TREE_UNSIGNED (type))
1182 || TYPE_PRECISION (type) > HOST_BITS_PER_WIDE_INT
1183 || (TYPE_PRECISION (type) == HOST_BITS_PER_WIDE_INT
1184 && TREE_UNSIGNED (type))))
1185 {
1186 fprintf (asmfile, "r");
1187 dbxout_type_index (type);
1188 fprintf (asmfile, ";");
1189 print_int_cst_octal (TYPE_MIN_VALUE (type));
1190 fprintf (asmfile, ";");
1191 print_int_cst_octal (TYPE_MAX_VALUE (type));
1192 fprintf (asmfile, ";");
1193 }
1194
1195 else
1196 /* Output other integer types as subranges of `int'. */
1197 dbxout_range_type (type);
1198 }
1199
1200 CHARS (22);
1201 break;
1202
1203 case REAL_TYPE:
1204 /* This used to say `r1' and we used to take care
1205 to make sure that `int' was type number 1. */
1206 fprintf (asmfile, "r");
1207 dbxout_type_index (integer_type_node);
1208 fputc (';', asmfile);
1209 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC, int_size_in_bytes (type));
1210 fputs (";0;", asmfile);
1211 CHARS (13);
1212 break;
1213
1214 case CHAR_TYPE:
1215 if (use_gnu_debug_info_extensions)
1216 {
1217 fputs ("@s", asmfile);
1218 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1219 BITS_PER_UNIT * int_size_in_bytes (type));
1220 fputs (";-20;", asmfile);
1221 }
1222 else
1223 {
1224 /* Output the type `char' as a subrange of itself.
1225 That is what pcc seems to do. */
1226 fprintf (asmfile, "r");
1227 dbxout_type_index (char_type_node);
1228 fprintf (asmfile, ";0;%d;", TREE_UNSIGNED (type) ? 255 : 127);
1229 }
1230 CHARS (9);
1231 break;
1232
1233 case BOOLEAN_TYPE:
1234 if (use_gnu_debug_info_extensions)
1235 {
1236 fputs ("@s", asmfile);
1237 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1238 BITS_PER_UNIT * int_size_in_bytes (type));
1239 fputs (";-16;", asmfile);
1240 }
1241 else /* Define as enumeral type (False, True) */
1242 fprintf (asmfile, "eFalse:0,True:1,;");
1243 CHARS (17);
1244 break;
1245
1246 case FILE_TYPE:
1247 putc ('d', asmfile);
1248 CHARS (1);
1249 dbxout_type (TREE_TYPE (type), 0, 0);
1250 break;
1251
1252 case COMPLEX_TYPE:
1253 /* Differs from the REAL_TYPE by its new data type number */
1254
1255 if (TREE_CODE (TREE_TYPE (type)) == REAL_TYPE)
1256 {
1257 fprintf (asmfile, "r");
1258 dbxout_type_index (type);
1259 fputc (';', asmfile);
1260 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1261 int_size_in_bytes (TREE_TYPE (type)));
1262 fputs (";0;", asmfile);
1263 CHARS (12); /* The number is probably incorrect here. */
1264 }
1265 else
1266 {
1267 /* Output a complex integer type as a structure,
1268 pending some other way to do it. */
1269 fputc ('s', asmfile);
1270 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC, int_size_in_bytes (type));
1271
1272 fprintf (asmfile, "real:");
1273 CHARS (10);
1274 dbxout_type (TREE_TYPE (type), 0, 0);
1275 fprintf (asmfile, ",%d,%d;",
1276 0, TYPE_PRECISION (TREE_TYPE (type)));
1277 CHARS (8);
1278 fprintf (asmfile, "imag:");
1279 CHARS (5);
1280 dbxout_type (TREE_TYPE (type), 0, 0);
1281 fprintf (asmfile, ",%d,%d;;",
1282 TYPE_PRECISION (TREE_TYPE (type)),
1283 TYPE_PRECISION (TREE_TYPE (type)));
1284 CHARS (9);
1285 }
1286 break;
1287
1288 case SET_TYPE:
1289 if (use_gnu_debug_info_extensions)
1290 {
1291 have_used_extensions = 1;
1292 fputs ("@s", asmfile);
1293 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1294 BITS_PER_UNIT * int_size_in_bytes (type));
1295 fputc (';', asmfile);
1296 /* Check if a bitstring type, which in Chill is
1297 different from a [power]set. */
1298 if (TYPE_STRING_FLAG (type))
1299 fprintf (asmfile, "@S;");
1300 }
1301 putc ('S', asmfile);
1302 CHARS (1);
1303 dbxout_type (TYPE_DOMAIN (type), 0, 0);
1304 break;
1305
1306 case ARRAY_TYPE:
1307 /* Make arrays of packed bits look like bitstrings for chill. */
1308 if (TYPE_PACKED (type) && use_gnu_debug_info_extensions)
1309 {
1310 have_used_extensions = 1;
1311 fputs ("@s", asmfile);
1312 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1313 BITS_PER_UNIT * int_size_in_bytes (type));
1314 fputc (';', asmfile);
1315 fprintf (asmfile, "@S;");
1316 putc ('S', asmfile);
1317 CHARS (1);
1318 dbxout_type (TYPE_DOMAIN (type), 0, 0);
1319 break;
1320 }
1321 /* Output "a" followed by a range type definition
1322 for the index type of the array
1323 followed by a reference to the target-type.
1324 ar1;0;N;M for a C array of type M and size N+1. */
1325 /* Check if a character string type, which in Chill is
1326 different from an array of characters. */
1327 if (TYPE_STRING_FLAG (type) && use_gnu_debug_info_extensions)
1328 {
1329 have_used_extensions = 1;
1330 fprintf (asmfile, "@S;");
1331 }
1332 tem = TYPE_DOMAIN (type);
1333 if (tem == NULL)
1334 {
1335 fprintf (asmfile, "ar");
1336 dbxout_type_index (integer_type_node);
1337 fprintf (asmfile, ";0;-1;");
1338 }
1339 else
1340 {
1341 fprintf (asmfile, "a");
1342 dbxout_range_type (tem);
1343 }
1344 CHARS (14);
1345 dbxout_type (TREE_TYPE (type), 0, 0);
1346 break;
1347
1348 case RECORD_TYPE:
1349 case UNION_TYPE:
1350 case QUAL_UNION_TYPE:
1351 {
1352 int i, n_baseclasses = 0;
1353
1354 if (TYPE_BINFO (type) != 0
1355 && TREE_CODE (TYPE_BINFO (type)) == TREE_VEC
1356 && TYPE_BINFO_BASETYPES (type) != 0)
1357 n_baseclasses = TREE_VEC_LENGTH (TYPE_BINFO_BASETYPES (type));
1358
1359 /* Output a structure type. We must use the same test here as we
1360 use in the DBX_NO_XREFS case above. */
1361 if ((TYPE_NAME (type) != 0
1362 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1363 && DECL_IGNORED_P (TYPE_NAME (type)))
1364 && !full)
1365 || TYPE_SIZE (type) == 0
1366 /* No way in DBX fmt to describe a variable size. */
1367 || TREE_CODE (TYPE_SIZE (type)) != INTEGER_CST)
1368 {
1369 /* If the type is just a cross reference, output one
1370 and mark the type as partially described.
1371 If it later becomes defined, we will output
1372 its real definition.
1373 If the type has a name, don't nest its definition within
1374 another type's definition; instead, output an xref
1375 and let the definition come when the name is defined. */
1376 fputs ((TREE_CODE (type) == RECORD_TYPE) ? "xs" : "xu", asmfile);
1377 CHARS (3);
1378 #if 0 /* This assertion is legitimately false in C++. */
1379 /* We shouldn't be outputting a reference to a type before its
1380 definition unless the type has a tag name.
1381 A typedef name without a tag name should be impossible. */
1382 if (TREE_CODE (TYPE_NAME (type)) != IDENTIFIER_NODE)
1383 abort ();
1384 #endif
1385 if (TYPE_NAME (type) != 0)
1386 dbxout_type_name (type);
1387 else
1388 fprintf (asmfile, "$$%d", anonymous_type_number++);
1389 fprintf (asmfile, ":");
1390 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
1391 break;
1392 }
1393
1394 /* Identify record or union, and print its size. */
1395 fputc (((TREE_CODE (type) == RECORD_TYPE) ? 's' : 'u'), asmfile);
1396 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1397 int_size_in_bytes (type));
1398
1399 if (use_gnu_debug_info_extensions)
1400 {
1401 if (n_baseclasses)
1402 {
1403 have_used_extensions = 1;
1404 fprintf (asmfile, "!%d,", n_baseclasses);
1405 CHARS (8);
1406 }
1407 }
1408 for (i = 0; i < n_baseclasses; i++)
1409 {
1410 tree child = TREE_VEC_ELT (BINFO_BASETYPES (TYPE_BINFO (type)), i);
1411
1412 if (use_gnu_debug_info_extensions)
1413 {
1414 have_used_extensions = 1;
1415 putc (TREE_VIA_VIRTUAL (child) ? '1' : '0', asmfile);
1416 putc (TREE_VIA_PUBLIC (child) ? '2' : '0', asmfile);
1417 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1418 (tree_low_cst (BINFO_OFFSET (child), 0)
1419 * BITS_PER_UNIT));
1420 fputc (',', asmfile);
1421 CHARS (15);
1422 dbxout_type (BINFO_TYPE (child), 0, 0);
1423 putc (';', asmfile);
1424 }
1425 else
1426 {
1427 /* Print out the base class information with fields
1428 which have the same names at the types they hold. */
1429 dbxout_type_name (BINFO_TYPE (child));
1430 putc (':', asmfile);
1431 dbxout_type (BINFO_TYPE (child), full, 0);
1432 fputc (',', asmfile);
1433 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1434 tree_low_cst (BINFO_OFFSET (child), 0)
1435 * BITS_PER_UNIT);
1436 fputc (',', asmfile);
1437 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1438 (tree_low_cst (DECL_SIZE (TYPE_NAME
1439 (BINFO_TYPE (child))), 0)
1440 * BITS_PER_UNIT));
1441 fputc (';', asmfile);
1442 CHARS (20);
1443 }
1444 }
1445 }
1446
1447 CHARS (11);
1448
1449 /* Write out the field declarations. */
1450 dbxout_type_fields (type);
1451 if (use_gnu_debug_info_extensions && TYPE_METHODS (type) != NULL_TREE)
1452 {
1453 have_used_extensions = 1;
1454 dbxout_type_methods (type);
1455 }
1456
1457 putc (';', asmfile);
1458
1459 if (use_gnu_debug_info_extensions && TREE_CODE (type) == RECORD_TYPE
1460 /* Avoid the ~ if we don't really need it--it confuses dbx. */
1461 && TYPE_VFIELD (type))
1462 {
1463 have_used_extensions = 1;
1464
1465 /* Tell GDB+ that it may keep reading. */
1466 putc ('~', asmfile);
1467
1468 /* We need to write out info about what field this class
1469 uses as its "main" vtable pointer field, because if this
1470 field is inherited from a base class, GDB cannot necessarily
1471 figure out which field it's using in time. */
1472 if (TYPE_VFIELD (type))
1473 {
1474 putc ('%', asmfile);
1475 dbxout_type (DECL_FCONTEXT (TYPE_VFIELD (type)), 0, 0);
1476 }
1477 putc (';', asmfile);
1478 CHARS (3);
1479 }
1480 break;
1481
1482 case ENUMERAL_TYPE:
1483 /* We must use the same test here as we use in the DBX_NO_XREFS case
1484 above. We simplify it a bit since an enum will never have a variable
1485 size. */
1486 if ((TYPE_NAME (type) != 0
1487 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1488 && DECL_IGNORED_P (TYPE_NAME (type)))
1489 && !full)
1490 || TYPE_SIZE (type) == 0)
1491 {
1492 fprintf (asmfile, "xe");
1493 CHARS (3);
1494 dbxout_type_name (type);
1495 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
1496 fprintf (asmfile, ":");
1497 return;
1498 }
1499 #ifdef DBX_OUTPUT_ENUM
1500 DBX_OUTPUT_ENUM (asmfile, type);
1501 #else
1502 if (use_gnu_debug_info_extensions
1503 && TYPE_PRECISION (type) != TYPE_PRECISION (integer_type_node))
1504 fprintf (asmfile, "@s%d;", TYPE_PRECISION (type));
1505 putc ('e', asmfile);
1506 CHARS (1);
1507 for (tem = TYPE_VALUES (type); tem; tem = TREE_CHAIN (tem))
1508 {
1509 fprintf (asmfile, "%s:", IDENTIFIER_POINTER (TREE_PURPOSE (tem)));
1510 if (TREE_INT_CST_HIGH (TREE_VALUE (tem)) == 0)
1511 fprintf (asmfile, HOST_WIDE_INT_PRINT_UNSIGNED,
1512 TREE_INT_CST_LOW (TREE_VALUE (tem)));
1513 else if (TREE_INT_CST_HIGH (TREE_VALUE (tem)) == -1
1514 && (HOST_WIDE_INT) TREE_INT_CST_LOW (TREE_VALUE (tem)) < 0)
1515 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC,
1516 TREE_INT_CST_LOW (TREE_VALUE (tem)));
1517 else
1518 print_int_cst_octal (TREE_VALUE (tem));
1519 fprintf (asmfile, ",");
1520 CHARS (20 + IDENTIFIER_LENGTH (TREE_PURPOSE (tem)));
1521 if (TREE_CHAIN (tem) != 0)
1522 {
1523 CONTIN;
1524 }
1525 }
1526 putc (';', asmfile);
1527 CHARS (1);
1528 #endif
1529 break;
1530
1531 case POINTER_TYPE:
1532 putc ('*', asmfile);
1533 CHARS (1);
1534 dbxout_type (TREE_TYPE (type), 0, 0);
1535 break;
1536
1537 case METHOD_TYPE:
1538 if (use_gnu_debug_info_extensions)
1539 {
1540 have_used_extensions = 1;
1541 putc ('#', asmfile);
1542 CHARS (1);
1543 if (flag_minimal_debug && !show_arg_types)
1544 {
1545 /* Normally, just output the return type.
1546 The argument types are encoded in the method name. */
1547 putc ('#', asmfile);
1548 CHARS (1);
1549 dbxout_type (TREE_TYPE (type), 0, 0);
1550 putc (';', asmfile);
1551 CHARS (1);
1552 }
1553 else
1554 {
1555 /* When outputting destructors, we need to write
1556 the argument types out longhand. */
1557 dbxout_type (TYPE_METHOD_BASETYPE (type), 0, 0);
1558 putc (',', asmfile);
1559 CHARS (1);
1560 dbxout_type (TREE_TYPE (type), 0, 0);
1561 dbxout_args (TYPE_ARG_TYPES (type));
1562 putc (';', asmfile);
1563 CHARS (1);
1564 }
1565 }
1566 else
1567 {
1568 /* Treat it as a function type. */
1569 dbxout_type (TREE_TYPE (type), 0, 0);
1570 }
1571 break;
1572
1573 case OFFSET_TYPE:
1574 if (use_gnu_debug_info_extensions)
1575 {
1576 have_used_extensions = 1;
1577 putc ('@', asmfile);
1578 CHARS (1);
1579 dbxout_type (TYPE_OFFSET_BASETYPE (type), 0, 0);
1580 putc (',', asmfile);
1581 CHARS (1);
1582 dbxout_type (TREE_TYPE (type), 0, 0);
1583 }
1584 else
1585 {
1586 /* Should print as an int, because it is really
1587 just an offset. */
1588 dbxout_type (integer_type_node, 0, 0);
1589 }
1590 break;
1591
1592 case REFERENCE_TYPE:
1593 if (use_gnu_debug_info_extensions)
1594 have_used_extensions = 1;
1595 putc (use_gnu_debug_info_extensions ? '&' : '*', asmfile);
1596 CHARS (1);
1597 dbxout_type (TREE_TYPE (type), 0, 0);
1598 break;
1599
1600 case FUNCTION_TYPE:
1601 putc ('f', asmfile);
1602 CHARS (1);
1603 dbxout_type (TREE_TYPE (type), 0, 0);
1604 break;
1605
1606 default:
1607 abort ();
1608 }
1609 }
1610
1611 /* Print the value of integer constant C, in octal,
1612 handling double precision. */
1613
1614 static void
1615 print_int_cst_octal (c)
1616 tree c;
1617 {
1618 unsigned HOST_WIDE_INT high = TREE_INT_CST_HIGH (c);
1619 unsigned HOST_WIDE_INT low = TREE_INT_CST_LOW (c);
1620 int excess = (3 - (HOST_BITS_PER_WIDE_INT % 3));
1621 unsigned int width = TYPE_PRECISION (TREE_TYPE (c));
1622
1623 /* GDB wants constants with no extra leading "1" bits, so
1624 we need to remove any sign-extension that might be
1625 present. */
1626 if (width == HOST_BITS_PER_WIDE_INT * 2)
1627 ;
1628 else if (width > HOST_BITS_PER_WIDE_INT)
1629 high &= (((HOST_WIDE_INT) 1 << (width - HOST_BITS_PER_WIDE_INT)) - 1);
1630 else if (width == HOST_BITS_PER_WIDE_INT)
1631 high = 0;
1632 else
1633 high = 0, low &= (((HOST_WIDE_INT) 1 << width) - 1);
1634
1635 fprintf (asmfile, "0");
1636
1637 if (excess == 3)
1638 {
1639 print_octal (high, HOST_BITS_PER_WIDE_INT / 3);
1640 print_octal (low, HOST_BITS_PER_WIDE_INT / 3);
1641 }
1642 else
1643 {
1644 unsigned HOST_WIDE_INT beg = high >> excess;
1645 unsigned HOST_WIDE_INT middle
1646 = ((high & (((HOST_WIDE_INT) 1 << excess) - 1)) << (3 - excess)
1647 | (low >> (HOST_BITS_PER_WIDE_INT / 3 * 3)));
1648 unsigned HOST_WIDE_INT end
1649 = low & (((unsigned HOST_WIDE_INT) 1
1650 << (HOST_BITS_PER_WIDE_INT / 3 * 3))
1651 - 1);
1652
1653 fprintf (asmfile, "%o%01o", (int)beg, (int)middle);
1654 print_octal (end, HOST_BITS_PER_WIDE_INT / 3);
1655 }
1656 }
1657
1658 static void
1659 print_octal (value, digits)
1660 unsigned HOST_WIDE_INT value;
1661 int digits;
1662 {
1663 int i;
1664
1665 for (i = digits - 1; i >= 0; i--)
1666 fprintf (asmfile, "%01o", (int)((value >> (3 * i)) & 7));
1667 }
1668
1669 /* Output the name of type TYPE, with no punctuation.
1670 Such names can be set up either by typedef declarations
1671 or by struct, enum and union tags. */
1672
1673 static void
1674 dbxout_type_name (type)
1675 register tree type;
1676 {
1677 tree t;
1678 if (TYPE_NAME (type) == 0)
1679 abort ();
1680 if (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE)
1681 {
1682 t = TYPE_NAME (type);
1683 }
1684 else if (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL)
1685 {
1686 t = DECL_NAME (TYPE_NAME (type));
1687 }
1688 else
1689 abort ();
1690
1691 fprintf (asmfile, "%s", IDENTIFIER_POINTER (t));
1692 CHARS (IDENTIFIER_LENGTH (t));
1693 }
1694 \f
1695 /* Output a .stabs for the symbol defined by DECL,
1696 which must be a ..._DECL node in the normal namespace.
1697 It may be a CONST_DECL, a FUNCTION_DECL, a PARM_DECL or a VAR_DECL.
1698 LOCAL is nonzero if the scope is less than the entire file.
1699 Return 1 if a stabs might have been emitted. */
1700
1701 int
1702 dbxout_symbol (decl, local)
1703 tree decl;
1704 int local ATTRIBUTE_UNUSED;
1705 {
1706 tree type = TREE_TYPE (decl);
1707 tree context = NULL_TREE;
1708 int result = 0;
1709
1710 /* Cast avoids warning in old compilers. */
1711 current_sym_code = (STAB_CODE_TYPE) 0;
1712 current_sym_value = 0;
1713 current_sym_addr = 0;
1714
1715 /* Ignore nameless syms, but don't ignore type tags. */
1716
1717 if ((DECL_NAME (decl) == 0 && TREE_CODE (decl) != TYPE_DECL)
1718 || DECL_IGNORED_P (decl))
1719 return 0;
1720
1721 dbxout_prepare_symbol (decl);
1722
1723 /* The output will always start with the symbol name,
1724 so always count that in the length-output-so-far. */
1725
1726 if (DECL_NAME (decl) != 0)
1727 current_sym_nchars = 2 + IDENTIFIER_LENGTH (DECL_NAME (decl));
1728
1729 switch (TREE_CODE (decl))
1730 {
1731 case CONST_DECL:
1732 /* Enum values are defined by defining the enum type. */
1733 break;
1734
1735 case FUNCTION_DECL:
1736 if (DECL_RTL (decl) == 0)
1737 return 0;
1738 if (DECL_EXTERNAL (decl))
1739 break;
1740 /* Don't mention a nested function under its parent. */
1741 context = decl_function_context (decl);
1742 if (context == current_function_decl)
1743 break;
1744 if (GET_CODE (DECL_RTL (decl)) != MEM
1745 || GET_CODE (XEXP (DECL_RTL (decl), 0)) != SYMBOL_REF)
1746 break;
1747 FORCE_TEXT;
1748
1749 fprintf (asmfile, "%s \"%s:%c", ASM_STABS_OP,
1750 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)),
1751 TREE_PUBLIC (decl) ? 'F' : 'f');
1752 result = 1;
1753
1754 current_sym_code = N_FUN;
1755 current_sym_addr = XEXP (DECL_RTL (decl), 0);
1756
1757 if (TREE_TYPE (type))
1758 dbxout_type (TREE_TYPE (type), 0, 0);
1759 else
1760 dbxout_type (void_type_node, 0, 0);
1761
1762 /* For a nested function, when that function is compiled,
1763 mention the containing function name
1764 as well as (since dbx wants it) our own assembler-name. */
1765 if (context != 0)
1766 fprintf (asmfile, ",%s,%s",
1767 IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)),
1768 IDENTIFIER_POINTER (DECL_NAME (context)));
1769
1770 dbxout_finish_symbol (decl);
1771 break;
1772
1773 case TYPE_DECL:
1774 #if 0
1775 /* This seems all wrong. Outputting most kinds of types gives no name
1776 at all. A true definition gives no name; a cross-ref for a
1777 structure can give the tag name, but not a type name.
1778 It seems that no typedef name is defined by outputting a type. */
1779
1780 /* If this typedef name was defined by outputting the type,
1781 don't duplicate it. */
1782 if (typevec[TYPE_SYMTAB_ADDRESS (type)].status == TYPE_DEFINED
1783 && TYPE_NAME (TREE_TYPE (decl)) == decl)
1784 return 0;
1785 #endif
1786 /* Don't output the same typedef twice.
1787 And don't output what language-specific stuff doesn't want output. */
1788 if (TREE_ASM_WRITTEN (decl) || TYPE_DECL_SUPPRESS_DEBUG (decl))
1789 return 0;
1790
1791 FORCE_TEXT;
1792 result = 1;
1793 {
1794 int tag_needed = 1;
1795 int did_output = 0;
1796
1797 if (DECL_NAME (decl))
1798 {
1799 /* Nonzero means we must output a tag as well as a typedef. */
1800 tag_needed = 0;
1801
1802 /* Handle the case of a C++ structure or union
1803 where the TYPE_NAME is a TYPE_DECL
1804 which gives both a typedef name and a tag. */
1805 /* dbx requires the tag first and the typedef second. */
1806 if ((TREE_CODE (type) == RECORD_TYPE
1807 || TREE_CODE (type) == UNION_TYPE
1808 || TREE_CODE (type) == QUAL_UNION_TYPE)
1809 && TYPE_NAME (type) == decl
1810 && !(use_gnu_debug_info_extensions && have_used_extensions)
1811 && !TREE_ASM_WRITTEN (TYPE_NAME (type))
1812 /* Distinguish the implicit typedefs of C++
1813 from explicit ones that might be found in C. */
1814 && DECL_ARTIFICIAL (decl))
1815 {
1816 tree name = TYPE_NAME (type);
1817 if (TREE_CODE (name) == TYPE_DECL)
1818 name = DECL_NAME (name);
1819
1820 current_sym_code = DBX_TYPE_DECL_STABS_CODE;
1821 current_sym_value = 0;
1822 current_sym_addr = 0;
1823 current_sym_nchars = 2 + IDENTIFIER_LENGTH (name);
1824
1825 fprintf (asmfile, "%s \"%s:T", ASM_STABS_OP,
1826 IDENTIFIER_POINTER (name));
1827 dbxout_type (type, 1, 0);
1828 dbxout_finish_symbol (NULL_TREE);
1829 }
1830
1831 /* Output typedef name. */
1832 fprintf (asmfile, "%s \"%s:", ASM_STABS_OP,
1833 IDENTIFIER_POINTER (DECL_NAME (decl)));
1834
1835 /* Short cut way to output a tag also. */
1836 if ((TREE_CODE (type) == RECORD_TYPE
1837 || TREE_CODE (type) == UNION_TYPE
1838 || TREE_CODE (type) == QUAL_UNION_TYPE)
1839 && TYPE_NAME (type) == decl
1840 /* Distinguish the implicit typedefs of C++
1841 from explicit ones that might be found in C. */
1842 && DECL_ARTIFICIAL (decl))
1843 {
1844 if (use_gnu_debug_info_extensions && have_used_extensions)
1845 {
1846 putc ('T', asmfile);
1847 TREE_ASM_WRITTEN (TYPE_NAME (type)) = 1;
1848 }
1849 #if 0 /* Now we generate the tag for this case up above. */
1850 else
1851 tag_needed = 1;
1852 #endif
1853 }
1854
1855 putc ('t', asmfile);
1856 current_sym_code = DBX_TYPE_DECL_STABS_CODE;
1857
1858 dbxout_type (type, 1, 0);
1859 dbxout_finish_symbol (decl);
1860 did_output = 1;
1861 }
1862
1863 /* Don't output a tag if this is an incomplete type (TYPE_SIZE is
1864 zero). This prevents the sun4 Sun OS 4.x dbx from crashing. */
1865
1866 if (tag_needed && TYPE_NAME (type) != 0
1867 && (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE
1868 || (DECL_NAME (TYPE_NAME (type)) != 0))
1869 && TYPE_SIZE (type) != 0
1870 && !TREE_ASM_WRITTEN (TYPE_NAME (type)))
1871 {
1872 /* For a TYPE_DECL with no name, but the type has a name,
1873 output a tag.
1874 This is what represents `struct foo' with no typedef. */
1875 /* In C++, the name of a type is the corresponding typedef.
1876 In C, it is an IDENTIFIER_NODE. */
1877 tree name = TYPE_NAME (type);
1878 if (TREE_CODE (name) == TYPE_DECL)
1879 name = DECL_NAME (name);
1880
1881 current_sym_code = DBX_TYPE_DECL_STABS_CODE;
1882 current_sym_value = 0;
1883 current_sym_addr = 0;
1884 current_sym_nchars = 2 + IDENTIFIER_LENGTH (name);
1885
1886 fprintf (asmfile, "%s \"%s:T", ASM_STABS_OP,
1887 IDENTIFIER_POINTER (name));
1888 dbxout_type (type, 1, 0);
1889 dbxout_finish_symbol (NULL_TREE);
1890 did_output = 1;
1891 }
1892
1893 /* If an enum type has no name, it cannot be referred to,
1894 but we must output it anyway, since the enumeration constants
1895 can be referred to. */
1896 if (!did_output && TREE_CODE (type) == ENUMERAL_TYPE)
1897 {
1898 current_sym_code = DBX_TYPE_DECL_STABS_CODE;
1899 current_sym_value = 0;
1900 current_sym_addr = 0;
1901 current_sym_nchars = 2;
1902
1903 /* Some debuggers fail when given NULL names, so give this a
1904 harmless name of ` '. */
1905 fprintf (asmfile, "%s \" :T", ASM_STABS_OP);
1906 dbxout_type (type, 1, 0);
1907 dbxout_finish_symbol (NULL_TREE);
1908 }
1909
1910 /* Prevent duplicate output of a typedef. */
1911 TREE_ASM_WRITTEN (decl) = 1;
1912 break;
1913 }
1914
1915 case PARM_DECL:
1916 /* Parm decls go in their own separate chains
1917 and are output by dbxout_reg_parms and dbxout_parms. */
1918 abort ();
1919
1920 case RESULT_DECL:
1921 /* Named return value, treat like a VAR_DECL. */
1922 case VAR_DECL:
1923 if (DECL_RTL (decl) == 0)
1924 return 0;
1925 /* Don't mention a variable that is external.
1926 Let the file that defines it describe it. */
1927 if (DECL_EXTERNAL (decl))
1928 break;
1929
1930 /* If the variable is really a constant
1931 and not written in memory, inform the debugger. */
1932 if (TREE_STATIC (decl) && TREE_READONLY (decl)
1933 && DECL_INITIAL (decl) != 0
1934 && host_integerp (DECL_INITIAL (decl), 0)
1935 && ! TREE_ASM_WRITTEN (decl)
1936 && (DECL_FIELD_CONTEXT (decl) == NULL_TREE
1937 || TREE_CODE (DECL_FIELD_CONTEXT (decl)) == BLOCK))
1938 {
1939 if (TREE_PUBLIC (decl) == 0)
1940 {
1941 /* The sun4 assembler does not grok this. */
1942 const char *name = IDENTIFIER_POINTER (DECL_NAME (decl));
1943
1944 if (TREE_CODE (TREE_TYPE (decl)) == INTEGER_TYPE
1945 || TREE_CODE (TREE_TYPE (decl)) == ENUMERAL_TYPE)
1946 {
1947 HOST_WIDE_INT ival = tree_low_cst (DECL_INITIAL (decl), 0);
1948 #ifdef DBX_OUTPUT_CONSTANT_SYMBOL
1949 DBX_OUTPUT_CONSTANT_SYMBOL (asmfile, name, ival);
1950 #else
1951 fprintf (asmfile, "%s \"%s:c=i", ASM_STABS_OP, name);
1952
1953 fprintf (asmfile, HOST_WIDE_INT_PRINT_DEC, ival);
1954 fprintf (asmfile, "\",0x%x,0,0,0\n", N_LSYM);
1955 #endif
1956 return 1;
1957 }
1958 else if (TREE_CODE (TREE_TYPE (decl)) == REAL_TYPE)
1959 {
1960 /* don't know how to do this yet. */
1961 }
1962 break;
1963 }
1964 /* else it is something we handle like a normal variable. */
1965 }
1966
1967 DECL_RTL (decl) = eliminate_regs (DECL_RTL (decl), 0, NULL_RTX);
1968 #ifdef LEAF_REG_REMAP
1969 if (current_function_uses_only_leaf_regs)
1970 leaf_renumber_regs_insn (DECL_RTL (decl));
1971 #endif
1972
1973 result = dbxout_symbol_location (decl, type, 0, DECL_RTL (decl));
1974 break;
1975
1976 default:
1977 break;
1978 }
1979 return result;
1980 }
1981 \f
1982 /* Output the stab for DECL, a VAR_DECL, RESULT_DECL or PARM_DECL.
1983 Add SUFFIX to its name, if SUFFIX is not 0.
1984 Describe the variable as residing in HOME
1985 (usually HOME is DECL_RTL (DECL), but not always).
1986 Returns 1 if the stab was really emitted. */
1987
1988 static int
1989 dbxout_symbol_location (decl, type, suffix, home)
1990 tree decl, type;
1991 const char *suffix;
1992 rtx home;
1993 {
1994 int letter = 0;
1995 int regno = -1;
1996
1997 /* Don't mention a variable at all
1998 if it was completely optimized into nothingness.
1999
2000 If the decl was from an inline function, then its rtl
2001 is not identically the rtl that was used in this
2002 particular compilation. */
2003 if (GET_CODE (home) == REG)
2004 {
2005 regno = REGNO (home);
2006 if (regno >= FIRST_PSEUDO_REGISTER)
2007 return 0;
2008 }
2009 else if (GET_CODE (home) == SUBREG)
2010 {
2011 rtx value = home;
2012 int offset = 0;
2013 while (GET_CODE (value) == SUBREG)
2014 {
2015 offset += SUBREG_WORD (value);
2016 value = SUBREG_REG (value);
2017 }
2018 if (GET_CODE (value) == REG)
2019 {
2020 regno = REGNO (value);
2021 if (regno >= FIRST_PSEUDO_REGISTER)
2022 return 0;
2023 regno += offset;
2024 }
2025 alter_subreg (home);
2026 }
2027
2028 /* The kind-of-variable letter depends on where
2029 the variable is and on the scope of its name:
2030 G and N_GSYM for static storage and global scope,
2031 S for static storage and file scope,
2032 V for static storage and local scope,
2033 for those two, use N_LCSYM if data is in bss segment,
2034 N_STSYM if in data segment, N_FUN otherwise.
2035 (We used N_FUN originally, then changed to N_STSYM
2036 to please GDB. However, it seems that confused ld.
2037 Now GDB has been fixed to like N_FUN, says Kingdon.)
2038 no letter at all, and N_LSYM, for auto variable,
2039 r and N_RSYM for register variable. */
2040
2041 if (GET_CODE (home) == MEM
2042 && GET_CODE (XEXP (home, 0)) == SYMBOL_REF)
2043 {
2044 if (TREE_PUBLIC (decl))
2045 {
2046 letter = 'G';
2047 current_sym_code = N_GSYM;
2048 }
2049 else
2050 {
2051 current_sym_addr = XEXP (home, 0);
2052
2053 letter = decl_function_context (decl) ? 'V' : 'S';
2054
2055 /* This should be the same condition as in assemble_variable, but
2056 we don't have access to dont_output_data here. So, instead,
2057 we rely on the fact that error_mark_node initializers always
2058 end up in bss for C++ and never end up in bss for C. */
2059 if (DECL_INITIAL (decl) == 0
2060 || (!strcmp (lang_identify (), "cplusplus")
2061 && DECL_INITIAL (decl) == error_mark_node))
2062 current_sym_code = N_LCSYM;
2063 else if (DECL_IN_TEXT_SECTION (decl))
2064 /* This is not quite right, but it's the closest
2065 of all the codes that Unix defines. */
2066 current_sym_code = DBX_STATIC_CONST_VAR_CODE;
2067 else
2068 {
2069 /* Ultrix `as' seems to need this. */
2070 #ifdef DBX_STATIC_STAB_DATA_SECTION
2071 data_section ();
2072 #endif
2073 current_sym_code = N_STSYM;
2074 }
2075 }
2076 }
2077 else if (regno >= 0)
2078 {
2079 letter = 'r';
2080 current_sym_code = N_RSYM;
2081 current_sym_value = DBX_REGISTER_NUMBER (regno);
2082 }
2083 else if (GET_CODE (home) == MEM
2084 && (GET_CODE (XEXP (home, 0)) == MEM
2085 || (GET_CODE (XEXP (home, 0)) == REG
2086 && REGNO (XEXP (home, 0)) != HARD_FRAME_POINTER_REGNUM
2087 && REGNO (XEXP (home, 0)) != STACK_POINTER_REGNUM
2088 #if ARG_POINTER_REGNUM != HARD_FRAME_POINTER_REGNUM
2089 && REGNO (XEXP (home, 0)) != ARG_POINTER_REGNUM
2090 #endif
2091 )))
2092 /* If the value is indirect by memory or by a register
2093 that isn't the frame pointer
2094 then it means the object is variable-sized and address through
2095 that register or stack slot. DBX has no way to represent this
2096 so all we can do is output the variable as a pointer.
2097 If it's not a parameter, ignore it.
2098 (VAR_DECLs like this can be made by integrate.c.) */
2099 {
2100 if (GET_CODE (XEXP (home, 0)) == REG)
2101 {
2102 letter = 'r';
2103 current_sym_code = N_RSYM;
2104 current_sym_value = DBX_REGISTER_NUMBER (REGNO (XEXP (home, 0)));
2105 }
2106 else
2107 {
2108 current_sym_code = N_LSYM;
2109 /* RTL looks like (MEM (MEM (PLUS (REG...) (CONST_INT...)))).
2110 We want the value of that CONST_INT. */
2111 current_sym_value
2112 = DEBUGGER_AUTO_OFFSET (XEXP (XEXP (home, 0), 0));
2113 }
2114
2115 /* Effectively do build_pointer_type, but don't cache this type,
2116 since it might be temporary whereas the type it points to
2117 might have been saved for inlining. */
2118 /* Don't use REFERENCE_TYPE because dbx can't handle that. */
2119 type = make_node (POINTER_TYPE);
2120 TREE_TYPE (type) = TREE_TYPE (decl);
2121 }
2122 else if (GET_CODE (home) == MEM
2123 && GET_CODE (XEXP (home, 0)) == REG)
2124 {
2125 current_sym_code = N_LSYM;
2126 current_sym_value = DEBUGGER_AUTO_OFFSET (XEXP (home, 0));
2127 }
2128 else if (GET_CODE (home) == MEM
2129 && GET_CODE (XEXP (home, 0)) == PLUS
2130 && GET_CODE (XEXP (XEXP (home, 0), 1)) == CONST_INT)
2131 {
2132 current_sym_code = N_LSYM;
2133 /* RTL looks like (MEM (PLUS (REG...) (CONST_INT...)))
2134 We want the value of that CONST_INT. */
2135 current_sym_value = DEBUGGER_AUTO_OFFSET (XEXP (home, 0));
2136 }
2137 else if (GET_CODE (home) == MEM
2138 && GET_CODE (XEXP (home, 0)) == CONST)
2139 {
2140 /* Handle an obscure case which can arise when optimizing and
2141 when there are few available registers. (This is *always*
2142 the case for i386/i486 targets). The RTL looks like
2143 (MEM (CONST ...)) even though this variable is a local `auto'
2144 or a local `register' variable. In effect, what has happened
2145 is that the reload pass has seen that all assignments and
2146 references for one such a local variable can be replaced by
2147 equivalent assignments and references to some static storage
2148 variable, thereby avoiding the need for a register. In such
2149 cases we're forced to lie to debuggers and tell them that
2150 this variable was itself `static'. */
2151 current_sym_code = N_LCSYM;
2152 letter = 'V';
2153 current_sym_addr = XEXP (XEXP (home, 0), 0);
2154 }
2155 else if (GET_CODE (home) == CONCAT)
2156 {
2157 tree subtype = TREE_TYPE (type);
2158
2159 /* If the variable's storage is in two parts,
2160 output each as a separate stab with a modified name. */
2161 if (WORDS_BIG_ENDIAN)
2162 dbxout_symbol_location (decl, subtype, "$imag", XEXP (home, 0));
2163 else
2164 dbxout_symbol_location (decl, subtype, "$real", XEXP (home, 0));
2165
2166 /* Cast avoids warning in old compilers. */
2167 current_sym_code = (STAB_CODE_TYPE) 0;
2168 current_sym_value = 0;
2169 current_sym_addr = 0;
2170 dbxout_prepare_symbol (decl);
2171
2172 if (WORDS_BIG_ENDIAN)
2173 dbxout_symbol_location (decl, subtype, "$real", XEXP (home, 1));
2174 else
2175 dbxout_symbol_location (decl, subtype, "$imag", XEXP (home, 1));
2176 return 1;
2177 }
2178 else
2179 /* Address might be a MEM, when DECL is a variable-sized object.
2180 Or it might be const0_rtx, meaning previous passes
2181 want us to ignore this variable. */
2182 return 0;
2183
2184 /* Ok, start a symtab entry and output the variable name. */
2185 FORCE_TEXT;
2186
2187 #ifdef DBX_STATIC_BLOCK_START
2188 DBX_STATIC_BLOCK_START (asmfile, current_sym_code);
2189 #endif
2190
2191 dbxout_symbol_name (decl, suffix, letter);
2192 dbxout_type (type, 0, 0);
2193 dbxout_finish_symbol (decl);
2194
2195 #ifdef DBX_STATIC_BLOCK_END
2196 DBX_STATIC_BLOCK_END (asmfile, current_sym_code);
2197 #endif
2198 return 1;
2199 }
2200 \f
2201 /* Output the symbol name of DECL for a stabs, with suffix SUFFIX.
2202 Then output LETTER to indicate the kind of location the symbol has. */
2203
2204 static void
2205 dbxout_symbol_name (decl, suffix, letter)
2206 tree decl;
2207 const char *suffix;
2208 int letter;
2209 {
2210 /* One slight hitch: if this is a VAR_DECL which is a static
2211 class member, we must put out the mangled name instead of the
2212 DECL_NAME. Note also that static member (variable) names DO NOT begin
2213 with underscores in .stabs directives. */
2214 const char *name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
2215 if (name == 0)
2216 name = "(anon)";
2217 fprintf (asmfile, "%s \"%s%s:", ASM_STABS_OP, name,
2218 (suffix ? suffix : ""));
2219
2220 if (letter) putc (letter, asmfile);
2221 }
2222
2223 static void
2224 dbxout_prepare_symbol (decl)
2225 tree decl ATTRIBUTE_UNUSED;
2226 {
2227 #ifdef WINNING_GDB
2228 const char *filename = DECL_SOURCE_FILE (decl);
2229
2230 dbxout_source_file (asmfile, filename);
2231 #endif
2232 }
2233
2234 static void
2235 dbxout_finish_symbol (sym)
2236 tree sym;
2237 {
2238 #ifdef DBX_FINISH_SYMBOL
2239 DBX_FINISH_SYMBOL (sym);
2240 #else
2241 int line = 0;
2242 if (use_gnu_debug_info_extensions && sym != 0)
2243 line = DECL_SOURCE_LINE (sym);
2244
2245 fprintf (asmfile, "\",%d,0,%d,", current_sym_code, line);
2246 if (current_sym_addr)
2247 output_addr_const (asmfile, current_sym_addr);
2248 else
2249 fprintf (asmfile, "%d", current_sym_value);
2250 putc ('\n', asmfile);
2251 #endif
2252 }
2253
2254 /* Output definitions of all the decls in a chain. Return non-zero if
2255 anything was output */
2256
2257 int
2258 dbxout_syms (syms)
2259 tree syms;
2260 {
2261 int result = 0;
2262 while (syms)
2263 {
2264 result += dbxout_symbol (syms, 1);
2265 syms = TREE_CHAIN (syms);
2266 }
2267 return result;
2268 }
2269 \f
2270 /* The following two functions output definitions of function parameters.
2271 Each parameter gets a definition locating it in the parameter list.
2272 Each parameter that is a register variable gets a second definition
2273 locating it in the register.
2274
2275 Printing or argument lists in gdb uses the definitions that
2276 locate in the parameter list. But reference to the variable in
2277 expressions uses preferentially the definition as a register. */
2278
2279 /* Output definitions, referring to storage in the parmlist,
2280 of all the parms in PARMS, which is a chain of PARM_DECL nodes. */
2281
2282 void
2283 dbxout_parms (parms)
2284 tree parms;
2285 {
2286 for (; parms; parms = TREE_CHAIN (parms))
2287 if (DECL_NAME (parms) && TREE_TYPE (parms) != error_mark_node)
2288 {
2289 dbxout_prepare_symbol (parms);
2290
2291 /* Perform any necessary register eliminations on the parameter's rtl,
2292 so that the debugging output will be accurate. */
2293 DECL_INCOMING_RTL (parms)
2294 = eliminate_regs (DECL_INCOMING_RTL (parms), 0, NULL_RTX);
2295 DECL_RTL (parms) = eliminate_regs (DECL_RTL (parms), 0, NULL_RTX);
2296 #ifdef LEAF_REG_REMAP
2297 if (current_function_uses_only_leaf_regs)
2298 {
2299 leaf_renumber_regs_insn (DECL_INCOMING_RTL (parms));
2300 leaf_renumber_regs_insn (DECL_RTL (parms));
2301 }
2302 #endif
2303
2304 if (PARM_PASSED_IN_MEMORY (parms))
2305 {
2306 rtx addr = XEXP (DECL_INCOMING_RTL (parms), 0);
2307
2308 /* ??? Here we assume that the parm address is indexed
2309 off the frame pointer or arg pointer.
2310 If that is not true, we produce meaningless results,
2311 but do not crash. */
2312 if (GET_CODE (addr) == PLUS
2313 && GET_CODE (XEXP (addr, 1)) == CONST_INT)
2314 current_sym_value = INTVAL (XEXP (addr, 1));
2315 else
2316 current_sym_value = 0;
2317
2318 current_sym_code = N_PSYM;
2319 current_sym_addr = 0;
2320
2321 FORCE_TEXT;
2322 if (DECL_NAME (parms))
2323 {
2324 current_sym_nchars = 2 + IDENTIFIER_LENGTH (DECL_NAME (parms));
2325
2326 fprintf (asmfile, "%s \"%s:%c", ASM_STABS_OP,
2327 IDENTIFIER_POINTER (DECL_NAME (parms)),
2328 DBX_MEMPARM_STABS_LETTER);
2329 }
2330 else
2331 {
2332 current_sym_nchars = 8;
2333 fprintf (asmfile, "%s \"(anon):%c", ASM_STABS_OP,
2334 DBX_MEMPARM_STABS_LETTER);
2335 }
2336
2337 /* It is quite tempting to use:
2338
2339 dbxout_type (TREE_TYPE (parms), 0, 0);
2340
2341 as the next statement, rather than using DECL_ARG_TYPE(), so
2342 that gcc reports the actual type of the parameter, rather
2343 than the promoted type. This certainly makes GDB's life
2344 easier, at least for some ports. The change is a bad idea
2345 however, since GDB expects to be able access the type without
2346 performing any conversions. So for example, if we were
2347 passing a float to an unprototyped function, gcc will store a
2348 double on the stack, but if we emit a stab saying the type is a
2349 float, then gdb will only read in a single value, and this will
2350 produce an erropneous value. */
2351 dbxout_type (DECL_ARG_TYPE (parms), 0, 0);
2352 current_sym_value = DEBUGGER_ARG_OFFSET (current_sym_value, addr);
2353 dbxout_finish_symbol (parms);
2354 }
2355 else if (GET_CODE (DECL_RTL (parms)) == REG)
2356 {
2357 rtx best_rtl;
2358 char regparm_letter;
2359 tree parm_type;
2360 /* Parm passed in registers and lives in registers or nowhere. */
2361
2362 current_sym_code = DBX_REGPARM_STABS_CODE;
2363 regparm_letter = DBX_REGPARM_STABS_LETTER;
2364 current_sym_addr = 0;
2365
2366 /* If parm lives in a register, use that register;
2367 pretend the parm was passed there. It would be more consistent
2368 to describe the register where the parm was passed,
2369 but in practice that register usually holds something else.
2370
2371 If we use DECL_RTL, then we must use the declared type of
2372 the variable, not the type that it arrived in. */
2373 if (REGNO (DECL_RTL (parms)) >= 0
2374 && REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
2375 {
2376 best_rtl = DECL_RTL (parms);
2377 parm_type = TREE_TYPE (parms);
2378 }
2379 /* If the parm lives nowhere, use the register where it was
2380 passed. It is also better to use the declared type here. */
2381 else
2382 {
2383 best_rtl = DECL_INCOMING_RTL (parms);
2384 parm_type = TREE_TYPE (parms);
2385 }
2386 current_sym_value = DBX_REGISTER_NUMBER (REGNO (best_rtl));
2387
2388 FORCE_TEXT;
2389 if (DECL_NAME (parms))
2390 {
2391 current_sym_nchars = 2 + IDENTIFIER_LENGTH (DECL_NAME (parms));
2392 fprintf (asmfile, "%s \"%s:%c", ASM_STABS_OP,
2393 IDENTIFIER_POINTER (DECL_NAME (parms)),
2394 regparm_letter);
2395 }
2396 else
2397 {
2398 current_sym_nchars = 8;
2399 fprintf (asmfile, "%s \"(anon):%c", ASM_STABS_OP,
2400 regparm_letter);
2401 }
2402
2403 dbxout_type (parm_type, 0, 0);
2404 dbxout_finish_symbol (parms);
2405 }
2406 else if (GET_CODE (DECL_RTL (parms)) == MEM
2407 && GET_CODE (XEXP (DECL_RTL (parms), 0)) == REG
2408 && REGNO (XEXP (DECL_RTL (parms), 0)) != HARD_FRAME_POINTER_REGNUM
2409 && REGNO (XEXP (DECL_RTL (parms), 0)) != STACK_POINTER_REGNUM
2410 #if ARG_POINTER_REGNUM != HARD_FRAME_POINTER_REGNUM
2411 && REGNO (XEXP (DECL_RTL (parms), 0)) != ARG_POINTER_REGNUM
2412 #endif
2413 )
2414 {
2415 /* Parm was passed via invisible reference.
2416 That is, its address was passed in a register.
2417 Output it as if it lived in that register.
2418 The debugger will know from the type
2419 that it was actually passed by invisible reference. */
2420
2421 char regparm_letter;
2422 /* Parm passed in registers and lives in registers or nowhere. */
2423
2424 current_sym_code = DBX_REGPARM_STABS_CODE;
2425 if (use_gnu_debug_info_extensions)
2426 regparm_letter = GDB_INV_REF_REGPARM_STABS_LETTER;
2427 else
2428 regparm_letter = DBX_REGPARM_STABS_LETTER;
2429
2430 /* DECL_RTL looks like (MEM (REG...). Get the register number.
2431 If it is an unallocated pseudo-reg, then use the register where
2432 it was passed instead. */
2433 if (REGNO (XEXP (DECL_RTL (parms), 0)) >= 0
2434 && REGNO (XEXP (DECL_RTL (parms), 0)) < FIRST_PSEUDO_REGISTER)
2435 current_sym_value = REGNO (XEXP (DECL_RTL (parms), 0));
2436 else
2437 current_sym_value = REGNO (DECL_INCOMING_RTL (parms));
2438
2439 current_sym_addr = 0;
2440
2441 FORCE_TEXT;
2442 if (DECL_NAME (parms))
2443 {
2444 current_sym_nchars = 2 + strlen (IDENTIFIER_POINTER (DECL_NAME (parms)));
2445
2446 fprintf (asmfile, "%s \"%s:%c", ASM_STABS_OP,
2447 IDENTIFIER_POINTER (DECL_NAME (parms)),
2448 regparm_letter);
2449 }
2450 else
2451 {
2452 current_sym_nchars = 8;
2453 fprintf (asmfile, "%s \"(anon):%c", ASM_STABS_OP,
2454 regparm_letter);
2455 }
2456
2457 dbxout_type (TREE_TYPE (parms), 0, 0);
2458 dbxout_finish_symbol (parms);
2459 }
2460 else if (GET_CODE (DECL_RTL (parms)) == MEM
2461 && XEXP (DECL_RTL (parms), 0) != const0_rtx
2462 /* ??? A constant address for a parm can happen
2463 when the reg it lives in is equiv to a constant in memory.
2464 Should make this not happen, after 2.4. */
2465 && ! CONSTANT_P (XEXP (DECL_RTL (parms), 0)))
2466 {
2467 /* Parm was passed in registers but lives on the stack. */
2468 int aux_sym_value = 0;
2469
2470 current_sym_code = N_PSYM;
2471 /* DECL_RTL looks like (MEM (PLUS (REG...) (CONST_INT...))),
2472 in which case we want the value of that CONST_INT,
2473 or (MEM (REG ...)) or (MEM (MEM ...)),
2474 in which case we use a value of zero. */
2475 if (GET_CODE (XEXP (DECL_RTL (parms), 0)) == REG)
2476 current_sym_value = 0;
2477 else if (GET_CODE (XEXP (DECL_RTL (parms), 0)) == MEM)
2478 {
2479 /* Remember the location on the stack the parm is moved to */
2480 aux_sym_value
2481 = INTVAL (XEXP (XEXP (XEXP (DECL_RTL (parms), 0), 0), 1));
2482 current_sym_value = 0;
2483 }
2484 else
2485 current_sym_value
2486 = INTVAL (XEXP (XEXP (DECL_RTL (parms), 0), 1));
2487
2488 current_sym_addr = 0;
2489
2490 /* Make a big endian correction if the mode of the type of the
2491 parameter is not the same as the mode of the rtl. */
2492 if (BYTES_BIG_ENDIAN
2493 && TYPE_MODE (TREE_TYPE (parms)) != GET_MODE (DECL_RTL (parms))
2494 && GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (parms))) < UNITS_PER_WORD)
2495 {
2496 current_sym_value +=
2497 GET_MODE_SIZE (GET_MODE (DECL_RTL (parms)))
2498 - GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (parms)));
2499 }
2500
2501 FORCE_TEXT;
2502 if (DECL_NAME (parms))
2503 {
2504 current_sym_nchars
2505 = 2 + strlen (IDENTIFIER_POINTER (DECL_NAME (parms)));
2506
2507 fprintf (asmfile, "%s \"%s:%c", ASM_STABS_OP,
2508 IDENTIFIER_POINTER (DECL_NAME (parms)),
2509 DBX_MEMPARM_STABS_LETTER);
2510 }
2511 else
2512 {
2513 current_sym_nchars = 8;
2514 fprintf (asmfile, "%s \"(anon):%c", ASM_STABS_OP,
2515 DBX_MEMPARM_STABS_LETTER);
2516 }
2517
2518 current_sym_value
2519 = DEBUGGER_ARG_OFFSET (current_sym_value,
2520 XEXP (DECL_RTL (parms), 0));
2521 dbxout_type (TREE_TYPE (parms), 0, 0);
2522 dbxout_finish_symbol (parms);
2523 if (aux_sym_value != 0)
2524 {
2525 /* Generate an entry for the stack location */
2526
2527 fprintf (asmfile, "%s \"%s:", ASM_STABS_OP,
2528 IDENTIFIER_POINTER (DECL_NAME (parms)));
2529 current_sym_value = aux_sym_value;
2530 current_sym_code = N_LSYM;
2531 dbxout_type (build_reference_type (TREE_TYPE (parms)), 0, 0);
2532 dbxout_finish_symbol (parms);
2533 }
2534 }
2535 }
2536 }
2537
2538 /* Output definitions for the places where parms live during the function,
2539 when different from where they were passed, when the parms were passed
2540 in memory.
2541
2542 It is not useful to do this for parms passed in registers
2543 that live during the function in different registers, because it is
2544 impossible to look in the passed register for the passed value,
2545 so we use the within-the-function register to begin with.
2546
2547 PARMS is a chain of PARM_DECL nodes. */
2548
2549 void
2550 dbxout_reg_parms (parms)
2551 tree parms;
2552 {
2553 for (; parms; parms = TREE_CHAIN (parms))
2554 if (DECL_NAME (parms) && PARM_PASSED_IN_MEMORY (parms))
2555 {
2556 dbxout_prepare_symbol (parms);
2557
2558 /* Report parms that live in registers during the function
2559 but were passed in memory. */
2560 if (GET_CODE (DECL_RTL (parms)) == REG
2561 && REGNO (DECL_RTL (parms)) >= 0
2562 && REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
2563 dbxout_symbol_location (parms, TREE_TYPE (parms),
2564 0, DECL_RTL (parms));
2565 else if (GET_CODE (DECL_RTL (parms)) == CONCAT)
2566 dbxout_symbol_location (parms, TREE_TYPE (parms),
2567 0, DECL_RTL (parms));
2568 /* Report parms that live in memory but not where they were passed. */
2569 else if (GET_CODE (DECL_RTL (parms)) == MEM
2570 && ! rtx_equal_p (DECL_RTL (parms), DECL_INCOMING_RTL (parms)))
2571 dbxout_symbol_location (parms, TREE_TYPE (parms),
2572 0, DECL_RTL (parms));
2573 }
2574 }
2575 \f
2576 /* Given a chain of ..._TYPE nodes (as come in a parameter list),
2577 output definitions of those names, in raw form */
2578
2579 void
2580 dbxout_args (args)
2581 tree args;
2582 {
2583 while (args)
2584 {
2585 putc (',', asmfile);
2586 dbxout_type (TREE_VALUE (args), 0, 0);
2587 CHARS (1);
2588 args = TREE_CHAIN (args);
2589 }
2590 }
2591 \f
2592 /* Given a chain of ..._TYPE nodes,
2593 find those which have typedef names and output those names.
2594 This is to ensure those types get output. */
2595
2596 void
2597 dbxout_types (types)
2598 register tree types;
2599 {
2600 while (types)
2601 {
2602 if (TYPE_NAME (types)
2603 && TREE_CODE (TYPE_NAME (types)) == TYPE_DECL
2604 && ! TREE_ASM_WRITTEN (TYPE_NAME (types)))
2605 dbxout_symbol (TYPE_NAME (types), 1);
2606 types = TREE_CHAIN (types);
2607 }
2608 }
2609 \f
2610 /* Output everything about a symbol block (a BLOCK node
2611 that represents a scope level),
2612 including recursive output of contained blocks.
2613
2614 BLOCK is the BLOCK node.
2615 DEPTH is its depth within containing symbol blocks.
2616 ARGS is usually zero; but for the outermost block of the
2617 body of a function, it is a chain of PARM_DECLs for the function parameters.
2618 We output definitions of all the register parms
2619 as if they were local variables of that block.
2620
2621 If -g1 was used, we count blocks just the same, but output nothing
2622 except for the outermost block.
2623
2624 Actually, BLOCK may be several blocks chained together.
2625 We handle them all in sequence. */
2626
2627 static void
2628 dbxout_block (block, depth, args)
2629 register tree block;
2630 int depth;
2631 tree args;
2632 {
2633 int blocknum = -1;
2634 int ignored;
2635
2636 #if DBX_BLOCKS_FUNCTION_RELATIVE
2637 const char *begin_label;
2638 if (current_function_func_begin_label != NULL_TREE)
2639 begin_label = IDENTIFIER_POINTER (current_function_func_begin_label);
2640 else
2641 begin_label = XSTR (XEXP (DECL_RTL (current_function_decl), 0), 0);
2642 #endif
2643
2644 while (block)
2645 {
2646 /* Ignore blocks never expanded or otherwise marked as real. */
2647 if (TREE_USED (block) && TREE_ASM_WRITTEN (block))
2648 {
2649 #ifndef DBX_LBRAC_FIRST
2650 /* In dbx format, the syms of a block come before the N_LBRAC.
2651 If nothing is output, we don't need the N_LBRAC, either. */
2652 ignored = 1;
2653 if (debug_info_level != DINFO_LEVEL_TERSE || depth == 0)
2654 ignored = dbxout_syms (BLOCK_VARS (block));
2655 if (args)
2656 dbxout_reg_parms (args);
2657 #endif
2658
2659 /* Now output an N_LBRAC symbol to represent the beginning of
2660 the block. Use the block's tree-walk order to generate
2661 the assembler symbols LBBn and LBEn
2662 that final will define around the code in this block. */
2663 if (depth > 0 && !ignored)
2664 {
2665 char buf[20];
2666 blocknum = BLOCK_NUMBER (block);
2667 ASM_GENERATE_INTERNAL_LABEL (buf, "LBB", blocknum);
2668
2669 if (BLOCK_HANDLER_BLOCK (block))
2670 {
2671 /* A catch block. Must precede N_LBRAC. */
2672 tree decl = BLOCK_VARS (block);
2673 while (decl)
2674 {
2675 #ifdef DBX_OUTPUT_CATCH
2676 DBX_OUTPUT_CATCH (asmfile, decl, buf);
2677 #else
2678 fprintf (asmfile, "%s \"%s:C1\",%d,0,0,", ASM_STABS_OP,
2679 IDENTIFIER_POINTER (DECL_NAME (decl)), N_CATCH);
2680 assemble_name (asmfile, buf);
2681 fprintf (asmfile, "\n");
2682 #endif
2683 decl = TREE_CHAIN (decl);
2684 }
2685 }
2686
2687 #ifdef DBX_OUTPUT_LBRAC
2688 DBX_OUTPUT_LBRAC (asmfile, buf);
2689 #else
2690 fprintf (asmfile, "%s %d,0,0,", ASM_STABN_OP, N_LBRAC);
2691 assemble_name (asmfile, buf);
2692 #if DBX_BLOCKS_FUNCTION_RELATIVE
2693 fputc ('-', asmfile);
2694 assemble_name (asmfile, begin_label);
2695 #endif
2696 fprintf (asmfile, "\n");
2697 #endif
2698 }
2699
2700 #ifdef DBX_LBRAC_FIRST
2701 /* On some weird machines, the syms of a block
2702 come after the N_LBRAC. */
2703 if (debug_info_level != DINFO_LEVEL_TERSE || depth == 0)
2704 dbxout_syms (BLOCK_VARS (block));
2705 if (args)
2706 dbxout_reg_parms (args);
2707 #endif
2708
2709 /* Output the subblocks. */
2710 dbxout_block (BLOCK_SUBBLOCKS (block), depth + 1, NULL_TREE);
2711
2712 /* Refer to the marker for the end of the block. */
2713 if (depth > 0 && !ignored)
2714 {
2715 char buf[20];
2716 ASM_GENERATE_INTERNAL_LABEL (buf, "LBE", blocknum);
2717 #ifdef DBX_OUTPUT_RBRAC
2718 DBX_OUTPUT_RBRAC (asmfile, buf);
2719 #else
2720 fprintf (asmfile, "%s %d,0,0,", ASM_STABN_OP, N_RBRAC);
2721 assemble_name (asmfile, buf);
2722 #if DBX_BLOCKS_FUNCTION_RELATIVE
2723 fputc ('-', asmfile);
2724 assemble_name (asmfile, begin_label);
2725 #endif
2726 fprintf (asmfile, "\n");
2727 #endif
2728 }
2729 }
2730 block = BLOCK_CHAIN (block);
2731 }
2732 }
2733
2734 /* Output the information about a function and its arguments and result.
2735 Usually this follows the function's code,
2736 but on some systems, it comes before. */
2737
2738 static void
2739 dbxout_really_begin_function (decl)
2740 tree decl;
2741 {
2742 dbxout_symbol (decl, 0);
2743 dbxout_parms (DECL_ARGUMENTS (decl));
2744 if (DECL_NAME (DECL_RESULT (decl)) != 0)
2745 dbxout_symbol (DECL_RESULT (decl), 1);
2746 }
2747
2748 /* Called at beginning of output of function definition. */
2749
2750 void
2751 dbxout_begin_function (decl)
2752 tree decl ATTRIBUTE_UNUSED;
2753 {
2754 #ifdef DBX_FUNCTION_FIRST
2755 dbxout_really_begin_function (decl);
2756 #endif
2757 }
2758
2759 /* Output dbx data for a function definition.
2760 This includes a definition of the function name itself (a symbol),
2761 definitions of the parameters (locating them in the parameter list)
2762 and then output the block that makes up the function's body
2763 (including all the auto variables of the function). */
2764
2765 void
2766 dbxout_function (decl)
2767 tree decl;
2768 {
2769 #ifndef DBX_FUNCTION_FIRST
2770 dbxout_really_begin_function (decl);
2771 #endif
2772 dbxout_block (DECL_INITIAL (decl), 0, DECL_ARGUMENTS (decl));
2773 #ifdef DBX_OUTPUT_FUNCTION_END
2774 DBX_OUTPUT_FUNCTION_END (asmfile, decl);
2775 #endif
2776 #if defined(ASM_OUTPUT_SECTION_NAME)
2777 if (use_gnu_debug_info_extensions
2778 #if defined(NO_DBX_FUNCTION_END)
2779 && ! NO_DBX_FUNCTION_END
2780 #endif
2781 )
2782 dbxout_function_end ();
2783 #endif
2784 }
2785 #endif /* DBX_DEBUGGING_INFO || XCOFF_DEBUGGING_INFO */
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