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[official-gcc.git] / gcc / dbxout.c
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1 /* Output dbx-format symbol table information from GNU compiler.
2 Copyright (C) 1987-2014 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
9 version.
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING3. If not see
18 <http://www.gnu.org/licenses/>. */
21 /* Output dbx-format symbol table data.
22 This consists of many symbol table entries, each of them
23 a .stabs assembler pseudo-op with four operands:
24 a "name" which is really a description of one symbol and its type,
25 a "code", which is a symbol defined in stab.h whose name starts with N_,
26 an unused operand always 0,
27 and a "value" which is an address or an offset.
28 The name is enclosed in doublequote characters.
30 Each function, variable, typedef, and structure tag
31 has a symbol table entry to define it.
32 The beginning and end of each level of name scoping within
33 a function are also marked by special symbol table entries.
35 The "name" consists of the symbol name, a colon, a kind-of-symbol letter,
36 and a data type number. The data type number may be followed by
37 "=" and a type definition; normally this will happen the first time
38 the type number is mentioned. The type definition may refer to
39 other types by number, and those type numbers may be followed
40 by "=" and nested definitions.
42 This can make the "name" quite long.
43 When a name is more than 80 characters, we split the .stabs pseudo-op
44 into two .stabs pseudo-ops, both sharing the same "code" and "value".
45 The first one is marked as continued with a double-backslash at the
46 end of its "name".
48 The kind-of-symbol letter distinguished function names from global
49 variables from file-scope variables from parameters from auto
50 variables in memory from typedef names from register variables.
51 See `dbxout_symbol'.
53 The "code" is mostly redundant with the kind-of-symbol letter
54 that goes in the "name", but not entirely: for symbols located
55 in static storage, the "code" says which segment the address is in,
56 which controls how it is relocated.
58 The "value" for a symbol in static storage
59 is the core address of the symbol (actually, the assembler
60 label for the symbol). For a symbol located in a stack slot
61 it is the stack offset; for one in a register, the register number.
62 For a typedef symbol, it is zero.
64 If DEBUG_SYMS_TEXT is defined, all debugging symbols must be
65 output while in the text section.
67 For more on data type definitions, see `dbxout_type'. */
69 #include "config.h"
70 #include "system.h"
71 #include "coretypes.h"
72 #include "tm.h"
74 #include "tree.h"
75 #include "varasm.h"
76 #include "stor-layout.h"
77 #include "rtl.h"
78 #include "flags.h"
79 #include "regs.h"
80 #include "insn-config.h"
81 #include "reload.h"
82 #include "output.h"
83 #include "dbxout.h"
84 #include "diagnostic-core.h"
85 #include "toplev.h"
86 #include "tm_p.h"
87 #include "ggc.h"
88 #include "debug.h"
89 #include "hashtab.h"
90 #include "hash-set.h"
91 #include "vec.h"
92 #include "machmode.h"
93 #include "hard-reg-set.h"
94 #include "input.h"
95 #include "function.h"
96 #include "target.h"
97 #include "common/common-target.h"
98 #include "langhooks.h"
99 #include "obstack.h"
100 #include "expr.h"
101 #include "hash-map.h"
102 #include "is-a.h"
103 #include "plugin-api.h"
104 #include "ipa-ref.h"
105 #include "cgraph.h"
107 #ifdef XCOFF_DEBUGGING_INFO
108 #include "xcoffout.h"
109 #endif
111 #ifndef ASM_STABS_OP
112 # ifdef XCOFF_DEBUGGING_INFO
113 # define ASM_STABS_OP "\t.stabx\t"
114 # else
115 # define ASM_STABS_OP "\t.stabs\t"
116 # endif
117 #endif
119 #ifndef ASM_STABN_OP
120 #define ASM_STABN_OP "\t.stabn\t"
121 #endif
123 #ifndef ASM_STABD_OP
124 #define ASM_STABD_OP "\t.stabd\t"
125 #endif
127 #ifndef DBX_TYPE_DECL_STABS_CODE
128 #define DBX_TYPE_DECL_STABS_CODE N_LSYM
129 #endif
131 #ifndef DBX_STATIC_CONST_VAR_CODE
132 #define DBX_STATIC_CONST_VAR_CODE N_FUN
133 #endif
135 #ifndef DBX_REGPARM_STABS_CODE
136 #define DBX_REGPARM_STABS_CODE N_RSYM
137 #endif
139 #ifndef DBX_REGPARM_STABS_LETTER
140 #define DBX_REGPARM_STABS_LETTER 'P'
141 #endif
143 #ifndef NO_DBX_FUNCTION_END
144 #define NO_DBX_FUNCTION_END 0
145 #endif
147 #ifndef NO_DBX_BNSYM_ENSYM
148 #define NO_DBX_BNSYM_ENSYM 0
149 #endif
151 #ifndef NO_DBX_MAIN_SOURCE_DIRECTORY
152 #define NO_DBX_MAIN_SOURCE_DIRECTORY 0
153 #endif
155 #ifndef DBX_BLOCKS_FUNCTION_RELATIVE
156 #define DBX_BLOCKS_FUNCTION_RELATIVE 0
157 #endif
159 #ifndef DBX_LINES_FUNCTION_RELATIVE
160 #define DBX_LINES_FUNCTION_RELATIVE 0
161 #endif
163 #ifndef DBX_CONTIN_LENGTH
164 #define DBX_CONTIN_LENGTH 80
165 #endif
167 #ifndef DBX_CONTIN_CHAR
168 #define DBX_CONTIN_CHAR '\\'
169 #endif
171 enum typestatus {TYPE_UNSEEN, TYPE_XREF, TYPE_DEFINED};
173 /* Structure recording information about a C data type.
174 The status element says whether we have yet output
175 the definition of the type. TYPE_XREF says we have
176 output it as a cross-reference only.
177 The file_number and type_number elements are used if DBX_USE_BINCL
178 is defined. */
180 struct GTY(()) typeinfo {
181 enum typestatus status;
182 int file_number;
183 int type_number;
186 /* Vector recording information about C data types.
187 When we first notice a data type (a tree node),
188 we assign it a number using next_type_number.
189 That is its index in this vector. */
191 static GTY ((length ("typevec_len"))) struct typeinfo *typevec;
193 /* Number of elements of space allocated in `typevec'. */
195 static GTY(()) int typevec_len;
197 /* In dbx output, each type gets a unique number.
198 This is the number for the next type output.
199 The number, once assigned, is in the TYPE_SYMTAB_ADDRESS field. */
201 static GTY(()) int next_type_number;
203 /* The C front end may call dbxout_symbol before dbxout_init runs.
204 We save all such decls in this list and output them when we get
205 to dbxout_init. */
207 static GTY(()) tree preinit_symbols;
209 enum binclstatus {BINCL_NOT_REQUIRED, BINCL_PENDING, BINCL_PROCESSED};
211 /* When using N_BINCL in dbx output, each type number is actually a
212 pair of the file number and the type number within the file.
213 This is a stack of input files. */
215 struct dbx_file
217 struct dbx_file *next;
218 int file_number;
219 int next_type_number;
220 enum binclstatus bincl_status; /* Keep track of lazy bincl. */
221 const char *pending_bincl_name; /* Name of bincl. */
222 struct dbx_file *prev; /* Chain to traverse all pending bincls. */
225 /* This is the top of the stack.
227 This is not saved for PCH, because restoring a PCH should not change it.
228 next_file_number does have to be saved, because the PCH may use some
229 file numbers; however, just before restoring a PCH, next_file_number
230 should always be 0 because we should not have needed any file numbers
231 yet. */
233 #if (defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)) \
234 && defined (DBX_USE_BINCL)
235 static struct dbx_file *current_file;
236 #endif
238 /* This is the next file number to use. */
240 static GTY(()) int next_file_number;
242 /* A counter for dbxout_function_end. */
244 static GTY(()) int scope_labelno;
246 /* A counter for dbxout_source_line. */
248 static GTY(()) int dbxout_source_line_counter;
250 /* Number for the next N_SOL filename stabs label. The number 0 is reserved
251 for the N_SO filename stabs label. */
253 static GTY(()) int source_label_number = 1;
255 /* Last source file name mentioned in a NOTE insn. */
257 static GTY(()) const char *lastfile;
259 /* Used by PCH machinery to detect if 'lastfile' should be reset to
260 base_input_file. */
261 static GTY(()) int lastfile_is_base;
263 /* Typical USG systems don't have stab.h, and they also have
264 no use for DBX-format debugging info. */
266 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)
268 #ifdef DBX_USE_BINCL
269 /* If zero then there is no pending BINCL. */
270 static int pending_bincls = 0;
271 #endif
273 /* The original input file name. */
274 static const char *base_input_file;
276 #ifdef DEBUG_SYMS_TEXT
277 #define FORCE_TEXT switch_to_section (current_function_section ())
278 #else
279 #define FORCE_TEXT
280 #endif
282 #include "gstab.h"
284 /* 1 if PARM is passed to this function in memory. */
286 #define PARM_PASSED_IN_MEMORY(PARM) \
287 (MEM_P (DECL_INCOMING_RTL (PARM)))
289 /* A C expression for the integer offset value of an automatic variable
290 (N_LSYM) having address X (an RTX). */
291 #ifndef DEBUGGER_AUTO_OFFSET
292 #define DEBUGGER_AUTO_OFFSET(X) \
293 (GET_CODE (X) == PLUS ? INTVAL (XEXP (X, 1)) : 0)
294 #endif
296 /* A C expression for the integer offset value of an argument (N_PSYM)
297 having address X (an RTX). The nominal offset is OFFSET.
298 Note that we use OFFSET + 0 here to avoid the self-assign warning
299 when the macro is called in a context like
300 number = DEBUGGER_ARG_OFFSET(number, X) */
301 #ifndef DEBUGGER_ARG_OFFSET
302 #define DEBUGGER_ARG_OFFSET(OFFSET, X) (OFFSET + 0)
303 #endif
305 /* This obstack holds the stab string currently being constructed. We
306 build it up here, then write it out, so we can split long lines up
307 properly (see dbxout_finish_complex_stabs). */
308 static struct obstack stabstr_ob;
309 static size_t stabstr_last_contin_point;
311 #ifdef DBX_USE_BINCL
312 static void emit_bincl_stab (const char *c);
313 static void emit_pending_bincls (void);
314 #endif
315 static inline void emit_pending_bincls_if_required (void);
317 static void dbxout_init (const char *);
319 static void dbxout_finish (const char *);
320 static void dbxout_start_source_file (unsigned, const char *);
321 static void dbxout_end_source_file (unsigned);
322 static void dbxout_typedefs (tree);
323 static void dbxout_type_index (tree);
324 static void dbxout_args (tree);
325 static void dbxout_type_fields (tree);
326 static void dbxout_type_method_1 (tree);
327 static void dbxout_type_methods (tree);
328 static void dbxout_range_type (tree, tree, tree);
329 static void dbxout_type (tree, int);
330 static bool print_int_cst_bounds_in_octal_p (tree, tree, tree);
331 static bool is_fortran (void);
332 static void dbxout_type_name (tree);
333 static void dbxout_class_name_qualifiers (tree);
334 static int dbxout_symbol_location (tree, tree, const char *, rtx);
335 static void dbxout_symbol_name (tree, const char *, int);
336 static void dbxout_common_name (tree, const char *, stab_code_type);
337 static const char *dbxout_common_check (tree, int *);
338 static void dbxout_global_decl (tree);
339 static void dbxout_type_decl (tree, int);
340 static void dbxout_handle_pch (unsigned);
341 static void debug_free_queue (void);
343 /* The debug hooks structure. */
344 #if defined (DBX_DEBUGGING_INFO)
346 static void dbxout_source_line (unsigned int, const char *, int, bool);
347 static void dbxout_begin_prologue (unsigned int, const char *);
348 static void dbxout_source_file (const char *);
349 static void dbxout_function_end (tree);
350 static void dbxout_begin_function (tree);
351 static void dbxout_begin_block (unsigned, unsigned);
352 static void dbxout_end_block (unsigned, unsigned);
353 static void dbxout_function_decl (tree);
355 const struct gcc_debug_hooks dbx_debug_hooks =
357 dbxout_init,
358 dbxout_finish,
359 debug_nothing_void,
360 debug_nothing_int_charstar,
361 debug_nothing_int_charstar,
362 dbxout_start_source_file,
363 dbxout_end_source_file,
364 dbxout_begin_block,
365 dbxout_end_block,
366 debug_true_const_tree, /* ignore_block */
367 dbxout_source_line, /* source_line */
368 dbxout_begin_prologue, /* begin_prologue */
369 debug_nothing_int_charstar, /* end_prologue */
370 debug_nothing_int_charstar, /* begin_epilogue */
371 debug_nothing_int_charstar, /* end_epilogue */
372 #ifdef DBX_FUNCTION_FIRST
373 dbxout_begin_function,
374 #else
375 debug_nothing_tree, /* begin_function */
376 #endif
377 debug_nothing_int, /* end_function */
378 dbxout_function_decl,
379 dbxout_global_decl, /* global_decl */
380 dbxout_type_decl, /* type_decl */
381 debug_nothing_tree_tree_tree_bool, /* imported_module_or_decl */
382 debug_nothing_tree, /* deferred_inline_function */
383 debug_nothing_tree, /* outlining_inline_function */
384 debug_nothing_rtx_code_label, /* label */
385 dbxout_handle_pch, /* handle_pch */
386 debug_nothing_rtx_insn, /* var_location */
387 debug_nothing_void, /* switch_text_section */
388 debug_nothing_tree_tree, /* set_name */
389 0, /* start_end_main_source_file */
390 TYPE_SYMTAB_IS_ADDRESS /* tree_type_symtab_field */
392 #endif /* DBX_DEBUGGING_INFO */
394 #if defined (XCOFF_DEBUGGING_INFO)
395 const struct gcc_debug_hooks xcoff_debug_hooks =
397 dbxout_init,
398 dbxout_finish,
399 debug_nothing_void,
400 debug_nothing_int_charstar,
401 debug_nothing_int_charstar,
402 dbxout_start_source_file,
403 dbxout_end_source_file,
404 xcoffout_begin_block,
405 xcoffout_end_block,
406 debug_true_const_tree, /* ignore_block */
407 xcoffout_source_line,
408 xcoffout_begin_prologue, /* begin_prologue */
409 debug_nothing_int_charstar, /* end_prologue */
410 debug_nothing_int_charstar, /* begin_epilogue */
411 xcoffout_end_epilogue,
412 debug_nothing_tree, /* begin_function */
413 xcoffout_end_function,
414 debug_nothing_tree, /* function_decl */
415 dbxout_global_decl, /* global_decl */
416 dbxout_type_decl, /* type_decl */
417 debug_nothing_tree_tree_tree_bool, /* imported_module_or_decl */
418 debug_nothing_tree, /* deferred_inline_function */
419 debug_nothing_tree, /* outlining_inline_function */
420 debug_nothing_rtx_code_label, /* label */
421 dbxout_handle_pch, /* handle_pch */
422 debug_nothing_rtx_insn, /* var_location */
423 debug_nothing_void, /* switch_text_section */
424 debug_nothing_tree_tree, /* set_name */
425 0, /* start_end_main_source_file */
426 TYPE_SYMTAB_IS_ADDRESS /* tree_type_symtab_field */
428 #endif /* XCOFF_DEBUGGING_INFO */
430 /* Numeric formatting helper macro. Note that this does not handle
431 hexadecimal. */
432 #define NUMBER_FMT_LOOP(P, NUM, BASE) \
433 do \
435 int digit = NUM % BASE; \
436 NUM /= BASE; \
437 *--P = digit + '0'; \
439 while (NUM > 0)
441 /* Utility: write a decimal integer NUM to asm_out_file. */
442 void
443 dbxout_int (int num)
445 char buf[64];
446 char *p = buf + sizeof buf;
447 unsigned int unum;
449 if (num == 0)
451 putc ('0', asm_out_file);
452 return;
454 if (num < 0)
456 putc ('-', asm_out_file);
457 unum = -num;
459 else
460 unum = num;
462 NUMBER_FMT_LOOP (p, unum, 10);
464 while (p < buf + sizeof buf)
466 putc (*p, asm_out_file);
467 p++;
472 /* Primitives for emitting simple stabs directives. All other stabs
473 routines should use these functions instead of directly emitting
474 stabs. They are exported because machine-dependent code may need
475 to invoke them, e.g. in a DBX_OUTPUT_* macro whose definition
476 forwards to code in CPU.c. */
478 /* The following functions should all be called immediately after one
479 of the dbxout_begin_stab* functions (below). They write out
480 various things as the value of a stab. */
482 /* Write out a literal zero as the value of a stab. */
483 void
484 dbxout_stab_value_zero (void)
486 fputs ("0\n", asm_out_file);
489 /* Write out the label LABEL as the value of a stab. */
490 void
491 dbxout_stab_value_label (const char *label)
493 assemble_name (asm_out_file, label);
494 putc ('\n', asm_out_file);
497 /* Write out the difference of two labels, LABEL - BASE, as the value
498 of a stab. */
499 void
500 dbxout_stab_value_label_diff (const char *label, const char *base)
502 assemble_name (asm_out_file, label);
503 putc ('-', asm_out_file);
504 assemble_name (asm_out_file, base);
505 putc ('\n', asm_out_file);
508 /* Write out an internal label as the value of a stab, and immediately
509 emit that internal label. This should be used only when
510 dbxout_stabd will not work. STEM is the name stem of the label,
511 COUNTERP is a pointer to a counter variable which will be used to
512 guarantee label uniqueness. */
513 void
514 dbxout_stab_value_internal_label (const char *stem, int *counterp)
516 char label[100];
517 int counter = counterp ? (*counterp)++ : 0;
519 ASM_GENERATE_INTERNAL_LABEL (label, stem, counter);
520 dbxout_stab_value_label (label);
521 targetm.asm_out.internal_label (asm_out_file, stem, counter);
524 /* Write out the difference between BASE and an internal label as the
525 value of a stab, and immediately emit that internal label. STEM and
526 COUNTERP are as for dbxout_stab_value_internal_label. */
527 void
528 dbxout_stab_value_internal_label_diff (const char *stem, int *counterp,
529 const char *base)
531 char label[100];
532 int counter = counterp ? (*counterp)++ : 0;
534 ASM_GENERATE_INTERNAL_LABEL (label, stem, counter);
535 dbxout_stab_value_label_diff (label, base);
536 targetm.asm_out.internal_label (asm_out_file, stem, counter);
539 /* The following functions produce specific kinds of stab directives. */
541 /* Write a .stabd directive with type STYPE and desc SDESC to asm_out_file. */
542 void
543 dbxout_stabd (int stype, int sdesc)
545 fputs (ASM_STABD_OP, asm_out_file);
546 dbxout_int (stype);
547 fputs (",0,", asm_out_file);
548 dbxout_int (sdesc);
549 putc ('\n', asm_out_file);
552 /* Write a .stabn directive with type STYPE. This function stops
553 short of emitting the value field, which is the responsibility of
554 the caller (normally it will be either a symbol or the difference
555 of two symbols). */
557 void
558 dbxout_begin_stabn (int stype)
560 fputs (ASM_STABN_OP, asm_out_file);
561 dbxout_int (stype);
562 fputs (",0,0,", asm_out_file);
565 /* Write a .stabn directive with type N_SLINE and desc LINE. As above,
566 the value field is the responsibility of the caller. */
567 void
568 dbxout_begin_stabn_sline (int lineno)
570 fputs (ASM_STABN_OP, asm_out_file);
571 dbxout_int (N_SLINE);
572 fputs (",0,", asm_out_file);
573 dbxout_int (lineno);
574 putc (',', asm_out_file);
577 /* Begin a .stabs directive with string "", type STYPE, and desc and
578 other fields 0. The value field is the responsibility of the
579 caller. This function cannot be used for .stabx directives. */
580 void
581 dbxout_begin_empty_stabs (int stype)
583 fputs (ASM_STABS_OP, asm_out_file);
584 fputs ("\"\",", asm_out_file);
585 dbxout_int (stype);
586 fputs (",0,0,", asm_out_file);
589 /* Begin a .stabs directive with string STR, type STYPE, and desc 0.
590 The value field is the responsibility of the caller. */
591 void
592 dbxout_begin_simple_stabs (const char *str, int stype)
594 fputs (ASM_STABS_OP, asm_out_file);
595 output_quoted_string (asm_out_file, str);
596 putc (',', asm_out_file);
597 dbxout_int (stype);
598 fputs (",0,0,", asm_out_file);
601 /* As above but use SDESC for the desc field. */
602 void
603 dbxout_begin_simple_stabs_desc (const char *str, int stype, int sdesc)
605 fputs (ASM_STABS_OP, asm_out_file);
606 output_quoted_string (asm_out_file, str);
607 putc (',', asm_out_file);
608 dbxout_int (stype);
609 fputs (",0,", asm_out_file);
610 dbxout_int (sdesc);
611 putc (',', asm_out_file);
614 /* The next set of functions are entirely concerned with production of
615 "complex" .stabs directives: that is, .stabs directives whose
616 strings have to be constructed piecemeal. dbxout_type,
617 dbxout_symbol, etc. use these routines heavily. The string is queued
618 up in an obstack, then written out by dbxout_finish_complex_stabs, which
619 is also responsible for splitting it up if it exceeds DBX_CONTIN_LENGTH.
620 (You might think it would be more efficient to go straight to stdio
621 when DBX_CONTIN_LENGTH is 0 (i.e. no length limit) but that turns
622 out not to be the case, and anyway this needs fewer #ifdefs.) */
624 /* Begin a complex .stabs directive. If we can, write the initial
625 ASM_STABS_OP to the asm_out_file. */
627 static void
628 dbxout_begin_complex_stabs (void)
630 emit_pending_bincls_if_required ();
631 FORCE_TEXT;
632 fputs (ASM_STABS_OP, asm_out_file);
633 putc ('"', asm_out_file);
634 gcc_assert (stabstr_last_contin_point == 0);
637 /* As above, but do not force text or emit pending bincls. This is
638 used by dbxout_symbol_location, which needs to do something else. */
639 static void
640 dbxout_begin_complex_stabs_noforcetext (void)
642 fputs (ASM_STABS_OP, asm_out_file);
643 putc ('"', asm_out_file);
644 gcc_assert (stabstr_last_contin_point == 0);
647 /* Add CHR, a single character, to the string being built. */
648 #define stabstr_C(chr) obstack_1grow (&stabstr_ob, chr)
650 /* Add STR, a normal C string, to the string being built. */
651 #define stabstr_S(str) obstack_grow (&stabstr_ob, str, strlen (str))
653 /* Add the text of ID, an IDENTIFIER_NODE, to the string being built. */
654 #define stabstr_I(id) obstack_grow (&stabstr_ob, \
655 IDENTIFIER_POINTER (id), \
656 IDENTIFIER_LENGTH (id))
658 /* Add NUM, a signed decimal number, to the string being built. */
659 static void
660 stabstr_D (HOST_WIDE_INT num)
662 char buf[64];
663 char *p = buf + sizeof buf;
664 unsigned int unum;
666 if (num == 0)
668 stabstr_C ('0');
669 return;
671 if (num < 0)
673 stabstr_C ('-');
674 unum = -num;
676 else
677 unum = num;
679 NUMBER_FMT_LOOP (p, unum, 10);
681 obstack_grow (&stabstr_ob, p, (buf + sizeof buf) - p);
684 /* Add NUM, an unsigned decimal number, to the string being built. */
685 static void
686 stabstr_U (unsigned HOST_WIDE_INT num)
688 char buf[64];
689 char *p = buf + sizeof buf;
690 if (num == 0)
692 stabstr_C ('0');
693 return;
695 NUMBER_FMT_LOOP (p, num, 10);
696 obstack_grow (&stabstr_ob, p, (buf + sizeof buf) - p);
699 /* Add CST, an INTEGER_CST tree, to the string being built as an
700 unsigned octal number. This routine handles values which are
701 larger than a single HOST_WIDE_INT. */
702 static void
703 stabstr_O (tree cst)
705 int prec = TYPE_PRECISION (TREE_TYPE (cst));
706 int res_pres = prec % 3;
707 int i;
708 unsigned int digit;
710 /* Leading zero for base indicator. */
711 stabstr_C ('0');
713 /* If the value is zero, the base indicator will serve as the value
714 all by itself. */
715 if (wi::eq_p (cst, 0))
716 return;
718 /* GDB wants constants with no extra leading "1" bits, so
719 we need to remove any sign-extension that might be
720 present. */
721 if (res_pres == 1)
723 digit = wi::extract_uhwi (cst, prec - 1, 1);
724 stabstr_C ('0' + digit);
726 else if (res_pres == 2)
728 digit = wi::extract_uhwi (cst, prec - 2, 2);
729 stabstr_C ('0' + digit);
732 prec -= res_pres;
733 for (i = prec - 3; i >= 0; i = i - 3)
735 digit = wi::extract_uhwi (cst, i, 3);
736 stabstr_C ('0' + digit);
740 /* Called whenever it is safe to break a stabs string into multiple
741 .stabs directives. If the current string has exceeded the limit
742 set by DBX_CONTIN_LENGTH, mark the current position in the buffer
743 as a continuation point by inserting DBX_CONTIN_CHAR (doubled if
744 it is a backslash) and a null character. */
745 static inline void
746 stabstr_continue (void)
748 if (DBX_CONTIN_LENGTH > 0
749 && obstack_object_size (&stabstr_ob) - stabstr_last_contin_point
750 > DBX_CONTIN_LENGTH)
752 if (DBX_CONTIN_CHAR == '\\')
753 obstack_1grow (&stabstr_ob, '\\');
754 obstack_1grow (&stabstr_ob, DBX_CONTIN_CHAR);
755 obstack_1grow (&stabstr_ob, '\0');
756 stabstr_last_contin_point = obstack_object_size (&stabstr_ob);
759 #define CONTIN stabstr_continue ()
761 /* Macro subroutine of dbxout_finish_complex_stabs, which emits
762 all of the arguments to the .stabs directive after the string.
763 Overridden by xcoffout.h. CODE is the stabs code for this symbol;
764 LINE is the source line to write into the desc field (in extended
765 mode); SYM is the symbol itself.
767 ADDR, LABEL, and NUMBER are three different ways to represent the
768 stabs value field. At most one of these should be nonzero.
770 ADDR is used most of the time; it represents the value as an
771 RTL address constant.
773 LABEL is used (currently) only for N_CATCH stabs; it represents
774 the value as a string suitable for assemble_name.
776 NUMBER is used when the value is an offset from an implicit base
777 pointer (e.g. for a stack variable), or an index (e.g. for a
778 register variable). It represents the value as a decimal integer. */
780 #ifndef DBX_FINISH_STABS
781 #define DBX_FINISH_STABS(SYM, CODE, LINE, ADDR, LABEL, NUMBER) \
782 do { \
783 int line_ = use_gnu_debug_info_extensions ? LINE : 0; \
785 dbxout_int (CODE); \
786 fputs (",0,", asm_out_file); \
787 dbxout_int (line_); \
788 putc (',', asm_out_file); \
789 if (ADDR) \
790 output_addr_const (asm_out_file, ADDR); \
791 else if (LABEL) \
792 assemble_name (asm_out_file, LABEL); \
793 else \
794 dbxout_int (NUMBER); \
795 putc ('\n', asm_out_file); \
796 } while (0)
797 #endif
799 /* Finish the emission of a complex .stabs directive. When DBX_CONTIN_LENGTH
800 is zero, this has only to emit the close quote and the remainder of
801 the arguments. When it is nonzero, the string has been marshalled in
802 stabstr_ob, and this routine is responsible for breaking it up into
803 DBX_CONTIN_LENGTH-sized chunks.
805 SYM is the DECL of the symbol under consideration; it is used only
806 for its DECL_SOURCE_LINE. The other arguments are all passed directly
807 to DBX_FINISH_STABS; see above for details. */
809 static void
810 dbxout_finish_complex_stabs (tree sym, stab_code_type code,
811 rtx addr, const char *label, int number)
813 int line ATTRIBUTE_UNUSED;
814 char *str;
815 size_t len;
817 line = sym ? DECL_SOURCE_LINE (sym) : 0;
818 if (DBX_CONTIN_LENGTH > 0)
820 char *chunk;
821 size_t chunklen;
823 /* Nul-terminate the growing string, then get its size and
824 address. */
825 obstack_1grow (&stabstr_ob, '\0');
827 len = obstack_object_size (&stabstr_ob);
828 chunk = str = XOBFINISH (&stabstr_ob, char *);
830 /* Within the buffer are a sequence of NUL-separated strings,
831 each of which is to be written out as a separate stab
832 directive. */
833 for (;;)
835 chunklen = strlen (chunk);
836 fwrite (chunk, 1, chunklen, asm_out_file);
837 fputs ("\",", asm_out_file);
839 /* Must add an extra byte to account for the NUL separator. */
840 chunk += chunklen + 1;
841 len -= chunklen + 1;
843 /* Only put a line number on the last stab in the sequence. */
844 DBX_FINISH_STABS (sym, code, len == 0 ? line : 0,
845 addr, label, number);
846 if (len == 0)
847 break;
849 fputs (ASM_STABS_OP, asm_out_file);
850 putc ('"', asm_out_file);
852 stabstr_last_contin_point = 0;
854 else
856 /* No continuations - we can put the whole string out at once.
857 It is faster to augment the string with the close quote and
858 comma than to do a two-character fputs. */
859 obstack_grow (&stabstr_ob, "\",", 2);
860 len = obstack_object_size (&stabstr_ob);
861 str = XOBFINISH (&stabstr_ob, char *);
863 fwrite (str, 1, len, asm_out_file);
864 DBX_FINISH_STABS (sym, code, line, addr, label, number);
866 obstack_free (&stabstr_ob, str);
869 #if defined (DBX_DEBUGGING_INFO) || defined (XCOFF_DEBUGGING_INFO)
871 /* When -gused is used, emit debug info for only used symbols. But in
872 addition to the standard intercepted debug_hooks there are some
873 direct calls into this file, i.e., dbxout_symbol, dbxout_parms, and
874 dbxout_reg_params. Those routines may also be called from a higher
875 level intercepted routine. So to prevent recording data for an inner
876 call to one of these for an intercept, we maintain an intercept
877 nesting counter (debug_nesting). We only save the intercepted
878 arguments if the nesting is 1. */
879 static int debug_nesting = 0;
881 static tree *symbol_queue;
882 static int symbol_queue_index = 0;
883 static int symbol_queue_size = 0;
885 #define DBXOUT_DECR_NESTING \
886 if (--debug_nesting == 0 && symbol_queue_index > 0) \
887 { emit_pending_bincls_if_required (); debug_flush_symbol_queue (); }
889 #define DBXOUT_DECR_NESTING_AND_RETURN(x) \
890 do {--debug_nesting; return (x);} while (0)
892 #endif /* DBX_DEBUGGING_INFO || XCOFF_DEBUGGING_INFO */
894 #if defined (DBX_DEBUGGING_INFO)
896 static void
897 dbxout_function_end (tree decl ATTRIBUTE_UNUSED)
899 char lscope_label_name[100];
901 /* The Lscope label must be emitted even if we aren't doing anything
902 else; dbxout_block needs it. */
903 switch_to_section (function_section (current_function_decl));
905 /* Convert Lscope into the appropriate format for local labels in case
906 the system doesn't insert underscores in front of user generated
907 labels. */
908 ASM_GENERATE_INTERNAL_LABEL (lscope_label_name, "Lscope", scope_labelno);
909 targetm.asm_out.internal_label (asm_out_file, "Lscope", scope_labelno);
911 /* The N_FUN tag at the end of the function is a GNU extension,
912 which may be undesirable, and is unnecessary if we do not have
913 named sections. */
914 if (!use_gnu_debug_info_extensions
915 || NO_DBX_FUNCTION_END
916 || !targetm_common.have_named_sections)
917 return;
919 /* By convention, GCC will mark the end of a function with an N_FUN
920 symbol and an empty string. */
921 if (flag_reorder_blocks_and_partition)
923 dbxout_begin_empty_stabs (N_FUN);
924 dbxout_stab_value_label_diff (crtl->subsections.hot_section_end_label,
925 crtl->subsections.hot_section_label);
926 dbxout_begin_empty_stabs (N_FUN);
927 dbxout_stab_value_label_diff (crtl->subsections.cold_section_end_label,
928 crtl->subsections.cold_section_label);
930 else
932 char begin_label[20];
933 /* Reference current function start using LFBB. */
934 ASM_GENERATE_INTERNAL_LABEL (begin_label, "LFBB", scope_labelno);
935 dbxout_begin_empty_stabs (N_FUN);
936 dbxout_stab_value_label_diff (lscope_label_name, begin_label);
939 if (!NO_DBX_BNSYM_ENSYM && !flag_debug_only_used_symbols)
940 dbxout_stabd (N_ENSYM, 0);
942 #endif /* DBX_DEBUGGING_INFO */
944 /* Get lang description for N_SO stab. */
945 static unsigned int ATTRIBUTE_UNUSED
946 get_lang_number (void)
948 const char *language_string = lang_hooks.name;
949 if (lang_GNU_C ())
950 return N_SO_C;
951 else if (lang_GNU_CXX ())
952 return N_SO_CC;
953 else if (strcmp (language_string, "GNU F77") == 0)
954 return N_SO_FORTRAN;
955 else if (strcmp (language_string, "GNU Fortran") == 0)
956 return N_SO_FORTRAN90; /* CHECKME */
957 else if (strcmp (language_string, "GNU Pascal") == 0)
958 return N_SO_PASCAL;
959 else if (strcmp (language_string, "GNU Objective-C") == 0)
960 return N_SO_OBJC;
961 else if (strcmp (language_string, "GNU Objective-C++") == 0)
962 return N_SO_OBJCPLUS;
963 else
964 return 0;
968 static bool
969 is_fortran (void)
971 unsigned int lang = get_lang_number ();
973 return (lang == N_SO_FORTRAN) || (lang == N_SO_FORTRAN90);
976 /* At the beginning of compilation, start writing the symbol table.
977 Initialize `typevec' and output the standard data types of C. */
979 static void
980 dbxout_init (const char *input_file_name)
982 char ltext_label_name[100];
983 bool used_ltext_label_name = false;
984 tree syms = lang_hooks.decls.getdecls ();
985 const char *mapped_name;
987 typevec_len = 100;
988 typevec = ggc_cleared_vec_alloc<typeinfo> (typevec_len);
990 /* stabstr_ob contains one string, which will be just fine with
991 1-byte alignment. */
992 obstack_specify_allocation (&stabstr_ob, 0, 1, xmalloc, free);
994 /* Convert Ltext into the appropriate format for local labels in case
995 the system doesn't insert underscores in front of user generated
996 labels. */
997 ASM_GENERATE_INTERNAL_LABEL (ltext_label_name, "Ltext", 0);
999 /* Put the current working directory in an N_SO symbol. */
1000 if (use_gnu_debug_info_extensions && !NO_DBX_MAIN_SOURCE_DIRECTORY)
1002 static const char *cwd;
1004 if (!cwd)
1006 cwd = get_src_pwd ();
1007 if (cwd[0] == '\0')
1008 cwd = "/";
1009 else if (!IS_DIR_SEPARATOR (cwd[strlen (cwd) - 1]))
1010 cwd = concat (cwd, "/", NULL);
1011 cwd = remap_debug_filename (cwd);
1013 #ifdef DBX_OUTPUT_MAIN_SOURCE_DIRECTORY
1014 DBX_OUTPUT_MAIN_SOURCE_DIRECTORY (asm_out_file, cwd);
1015 #else /* no DBX_OUTPUT_MAIN_SOURCE_DIRECTORY */
1016 dbxout_begin_simple_stabs_desc (cwd, N_SO, get_lang_number ());
1017 dbxout_stab_value_label (ltext_label_name);
1018 used_ltext_label_name = true;
1019 #endif /* no DBX_OUTPUT_MAIN_SOURCE_DIRECTORY */
1022 mapped_name = remap_debug_filename (input_file_name);
1023 #ifdef DBX_OUTPUT_MAIN_SOURCE_FILENAME
1024 DBX_OUTPUT_MAIN_SOURCE_FILENAME (asm_out_file, mapped_name);
1025 #else
1026 dbxout_begin_simple_stabs_desc (mapped_name, N_SO, get_lang_number ());
1027 dbxout_stab_value_label (ltext_label_name);
1028 used_ltext_label_name = true;
1029 #endif
1031 if (used_ltext_label_name)
1033 switch_to_section (text_section);
1034 targetm.asm_out.internal_label (asm_out_file, "Ltext", 0);
1037 /* Emit an N_OPT stab to indicate that this file was compiled by GCC.
1038 The string used is historical. */
1039 #ifndef NO_DBX_GCC_MARKER
1040 dbxout_begin_simple_stabs ("gcc2_compiled.", N_OPT);
1041 dbxout_stab_value_zero ();
1042 #endif
1044 base_input_file = lastfile = input_file_name;
1046 next_type_number = 1;
1048 #ifdef DBX_USE_BINCL
1049 current_file = XNEW (struct dbx_file);
1050 current_file->next = NULL;
1051 current_file->file_number = 0;
1052 current_file->next_type_number = 1;
1053 next_file_number = 1;
1054 current_file->prev = NULL;
1055 current_file->bincl_status = BINCL_NOT_REQUIRED;
1056 current_file->pending_bincl_name = NULL;
1057 #endif
1059 /* Get all permanent types that have typedef names, and output them
1060 all, except for those already output. Some language front ends
1061 put these declarations in the top-level scope; some do not;
1062 the latter are responsible for calling debug_hooks->type_decl from
1063 their record_builtin_type function. */
1064 dbxout_typedefs (syms);
1066 if (preinit_symbols)
1068 tree t;
1069 for (t = nreverse (preinit_symbols); t; t = TREE_CHAIN (t))
1070 dbxout_symbol (TREE_VALUE (t), 0);
1071 preinit_symbols = 0;
1075 /* Output any typedef names for types described by TYPE_DECLs in SYMS. */
1077 static void
1078 dbxout_typedefs (tree syms)
1080 for (; syms != NULL_TREE; syms = DECL_CHAIN (syms))
1082 if (TREE_CODE (syms) == TYPE_DECL)
1084 tree type = TREE_TYPE (syms);
1085 if (TYPE_NAME (type)
1086 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1087 && COMPLETE_OR_VOID_TYPE_P (type)
1088 && ! TREE_ASM_WRITTEN (TYPE_NAME (type)))
1089 dbxout_symbol (TYPE_NAME (type), 0);
1094 #ifdef DBX_USE_BINCL
1095 /* Emit BINCL stab using given name. */
1096 static void
1097 emit_bincl_stab (const char *name)
1099 dbxout_begin_simple_stabs (name, N_BINCL);
1100 dbxout_stab_value_zero ();
1103 /* If there are pending bincls then it is time to emit all of them. */
1105 static inline void
1106 emit_pending_bincls_if_required (void)
1108 if (pending_bincls)
1109 emit_pending_bincls ();
1112 /* Emit all pending bincls. */
1114 static void
1115 emit_pending_bincls (void)
1117 struct dbx_file *f = current_file;
1119 /* Find first pending bincl. */
1120 while (f->bincl_status == BINCL_PENDING)
1121 f = f->next;
1123 /* Now emit all bincls. */
1124 f = f->prev;
1126 while (f)
1128 if (f->bincl_status == BINCL_PENDING)
1130 emit_bincl_stab (f->pending_bincl_name);
1132 /* Update file number and status. */
1133 f->file_number = next_file_number++;
1134 f->bincl_status = BINCL_PROCESSED;
1136 if (f == current_file)
1137 break;
1138 f = f->prev;
1141 /* All pending bincls have been emitted. */
1142 pending_bincls = 0;
1145 #else
1147 static inline void
1148 emit_pending_bincls_if_required (void) {}
1149 #endif
1151 /* Change to reading from a new source file. Generate a N_BINCL stab. */
1153 static void
1154 dbxout_start_source_file (unsigned int line ATTRIBUTE_UNUSED,
1155 const char *filename ATTRIBUTE_UNUSED)
1157 #ifdef DBX_USE_BINCL
1158 struct dbx_file *n = XNEW (struct dbx_file);
1160 n->next = current_file;
1161 n->next_type_number = 1;
1162 /* Do not assign file number now.
1163 Delay it until we actually emit BINCL. */
1164 n->file_number = 0;
1165 n->prev = NULL;
1166 current_file->prev = n;
1167 n->bincl_status = BINCL_PENDING;
1168 n->pending_bincl_name = remap_debug_filename (filename);
1169 pending_bincls = 1;
1170 current_file = n;
1171 #endif
1174 /* Revert to reading a previous source file. Generate a N_EINCL stab. */
1176 static void
1177 dbxout_end_source_file (unsigned int line ATTRIBUTE_UNUSED)
1179 #ifdef DBX_USE_BINCL
1180 /* Emit EINCL stab only if BINCL is not pending. */
1181 if (current_file->bincl_status == BINCL_PROCESSED)
1183 dbxout_begin_stabn (N_EINCL);
1184 dbxout_stab_value_zero ();
1186 current_file->bincl_status = BINCL_NOT_REQUIRED;
1187 current_file = current_file->next;
1188 #endif
1191 /* Handle a few odd cases that occur when trying to make PCH files work. */
1193 static void
1194 dbxout_handle_pch (unsigned at_end)
1196 if (! at_end)
1198 /* When using the PCH, this file will be included, so we need to output
1199 a BINCL. */
1200 dbxout_start_source_file (0, lastfile);
1202 /* The base file when using the PCH won't be the same as
1203 the base file when it's being generated. */
1204 lastfile = NULL;
1206 else
1208 /* ... and an EINCL. */
1209 dbxout_end_source_file (0);
1211 /* Deal with cases where 'lastfile' was never actually changed. */
1212 lastfile_is_base = lastfile == NULL;
1216 #if defined (DBX_DEBUGGING_INFO)
1218 static void dbxout_block (tree, int, tree);
1220 /* Output debugging info to FILE to switch to sourcefile FILENAME. */
1222 static void
1223 dbxout_source_file (const char *filename)
1225 if (lastfile == 0 && lastfile_is_base)
1227 lastfile = base_input_file;
1228 lastfile_is_base = 0;
1231 if (filename && (lastfile == 0 || strcmp (filename, lastfile)))
1233 /* Don't change section amid function. */
1234 if (current_function_decl == NULL_TREE)
1235 switch_to_section (text_section);
1237 dbxout_begin_simple_stabs (remap_debug_filename (filename), N_SOL);
1238 dbxout_stab_value_internal_label ("Ltext", &source_label_number);
1239 lastfile = filename;
1243 /* Output N_BNSYM, line number symbol entry, and local symbol at
1244 function scope */
1246 static void
1247 dbxout_begin_prologue (unsigned int lineno, const char *filename)
1249 if (use_gnu_debug_info_extensions
1250 && !NO_DBX_FUNCTION_END
1251 && !NO_DBX_BNSYM_ENSYM
1252 && !flag_debug_only_used_symbols)
1253 dbxout_stabd (N_BNSYM, 0);
1255 /* pre-increment the scope counter */
1256 scope_labelno++;
1258 dbxout_source_line (lineno, filename, 0, true);
1259 /* Output function begin block at function scope, referenced
1260 by dbxout_block, dbxout_source_line and dbxout_function_end. */
1261 emit_pending_bincls_if_required ();
1262 targetm.asm_out.internal_label (asm_out_file, "LFBB", scope_labelno);
1265 /* Output a line number symbol entry for source file FILENAME and line
1266 number LINENO. */
1268 static void
1269 dbxout_source_line (unsigned int lineno, const char *filename,
1270 int discriminator ATTRIBUTE_UNUSED,
1271 bool is_stmt ATTRIBUTE_UNUSED)
1273 dbxout_source_file (filename);
1275 #ifdef DBX_OUTPUT_SOURCE_LINE
1276 DBX_OUTPUT_SOURCE_LINE (asm_out_file, lineno, dbxout_source_line_counter);
1277 #else
1278 if (DBX_LINES_FUNCTION_RELATIVE)
1280 char begin_label[20];
1281 dbxout_begin_stabn_sline (lineno);
1282 /* Reference current function start using LFBB. */
1283 ASM_GENERATE_INTERNAL_LABEL (begin_label, "LFBB", scope_labelno);
1284 dbxout_stab_value_internal_label_diff ("LM", &dbxout_source_line_counter,
1285 begin_label);
1287 else
1288 dbxout_stabd (N_SLINE, lineno);
1289 #endif
1292 /* Describe the beginning of an internal block within a function. */
1294 static void
1295 dbxout_begin_block (unsigned int line ATTRIBUTE_UNUSED, unsigned int n)
1297 emit_pending_bincls_if_required ();
1298 targetm.asm_out.internal_label (asm_out_file, "LBB", n);
1301 /* Describe the end line-number of an internal block within a function. */
1303 static void
1304 dbxout_end_block (unsigned int line ATTRIBUTE_UNUSED, unsigned int n)
1306 emit_pending_bincls_if_required ();
1307 targetm.asm_out.internal_label (asm_out_file, "LBE", n);
1310 /* Output dbx data for a function definition.
1311 This includes a definition of the function name itself (a symbol),
1312 definitions of the parameters (locating them in the parameter list)
1313 and then output the block that makes up the function's body
1314 (including all the auto variables of the function). */
1316 static void
1317 dbxout_function_decl (tree decl)
1319 emit_pending_bincls_if_required ();
1320 #ifndef DBX_FUNCTION_FIRST
1321 dbxout_begin_function (decl);
1322 #endif
1323 dbxout_block (DECL_INITIAL (decl), 0, DECL_ARGUMENTS (decl));
1324 dbxout_function_end (decl);
1327 #endif /* DBX_DEBUGGING_INFO */
1329 /* Debug information for a global DECL. Called from toplev.c after
1330 compilation proper has finished. */
1331 static void
1332 dbxout_global_decl (tree decl)
1334 if (TREE_CODE (decl) == VAR_DECL && !DECL_EXTERNAL (decl))
1336 int saved_tree_used = TREE_USED (decl);
1337 TREE_USED (decl) = 1;
1338 dbxout_symbol (decl, 0);
1339 TREE_USED (decl) = saved_tree_used;
1343 /* This is just a function-type adapter; dbxout_symbol does exactly
1344 what we want but returns an int. */
1345 static void
1346 dbxout_type_decl (tree decl, int local)
1348 dbxout_symbol (decl, local);
1351 /* At the end of compilation, finish writing the symbol table.
1352 The default is to call debug_free_queue but do nothing else. */
1354 static void
1355 dbxout_finish (const char *filename ATTRIBUTE_UNUSED)
1357 #ifdef DBX_OUTPUT_MAIN_SOURCE_FILE_END
1358 DBX_OUTPUT_MAIN_SOURCE_FILE_END (asm_out_file, filename);
1359 #elif defined DBX_OUTPUT_NULL_N_SO_AT_MAIN_SOURCE_FILE_END
1361 switch_to_section (text_section);
1362 dbxout_begin_empty_stabs (N_SO);
1363 dbxout_stab_value_internal_label ("Letext", 0);
1365 #endif
1366 debug_free_queue ();
1369 /* Output the index of a type. */
1371 static void
1372 dbxout_type_index (tree type)
1374 #ifndef DBX_USE_BINCL
1375 stabstr_D (TYPE_SYMTAB_ADDRESS (type));
1376 #else
1377 struct typeinfo *t = &typevec[TYPE_SYMTAB_ADDRESS (type)];
1378 stabstr_C ('(');
1379 stabstr_D (t->file_number);
1380 stabstr_C (',');
1381 stabstr_D (t->type_number);
1382 stabstr_C (')');
1383 #endif
1387 /* Generate the symbols for any queued up type symbols we encountered
1388 while generating the type info for some originally used symbol.
1389 This might generate additional entries in the queue. Only when
1390 the nesting depth goes to 0 is this routine called. */
1392 static void
1393 debug_flush_symbol_queue (void)
1395 int i;
1397 /* Make sure that additionally queued items are not flushed
1398 prematurely. */
1400 ++debug_nesting;
1402 for (i = 0; i < symbol_queue_index; ++i)
1404 /* If we pushed queued symbols then such symbols must be
1405 output no matter what anyone else says. Specifically,
1406 we need to make sure dbxout_symbol() thinks the symbol was
1407 used and also we need to override TYPE_DECL_SUPPRESS_DEBUG
1408 which may be set for outside reasons. */
1409 int saved_tree_used = TREE_USED (symbol_queue[i]);
1410 int saved_suppress_debug = TYPE_DECL_SUPPRESS_DEBUG (symbol_queue[i]);
1411 TREE_USED (symbol_queue[i]) = 1;
1412 TYPE_DECL_SUPPRESS_DEBUG (symbol_queue[i]) = 0;
1414 #ifdef DBX_DEBUGGING_INFO
1415 dbxout_symbol (symbol_queue[i], 0);
1416 #endif
1418 TREE_USED (symbol_queue[i]) = saved_tree_used;
1419 TYPE_DECL_SUPPRESS_DEBUG (symbol_queue[i]) = saved_suppress_debug;
1422 symbol_queue_index = 0;
1423 --debug_nesting;
1426 /* Queue a type symbol needed as part of the definition of a decl
1427 symbol. These symbols are generated when debug_flush_symbol_queue()
1428 is called. */
1430 static void
1431 debug_queue_symbol (tree decl)
1433 if (symbol_queue_index >= symbol_queue_size)
1435 symbol_queue_size += 10;
1436 symbol_queue = XRESIZEVEC (tree, symbol_queue, symbol_queue_size);
1439 symbol_queue[symbol_queue_index++] = decl;
1442 /* Free symbol queue. */
1443 static void
1444 debug_free_queue (void)
1446 if (symbol_queue)
1448 free (symbol_queue);
1449 symbol_queue = NULL;
1450 symbol_queue_size = 0;
1454 /* Used in several places: evaluates to '0' for a private decl,
1455 '1' for a protected decl, '2' for a public decl. */
1456 #define DECL_ACCESSIBILITY_CHAR(DECL) \
1457 (TREE_PRIVATE (DECL) ? '0' : TREE_PROTECTED (DECL) ? '1' : '2')
1459 /* Subroutine of `dbxout_type'. Output the type fields of TYPE.
1460 This must be a separate function because anonymous unions require
1461 recursive calls. */
1463 static void
1464 dbxout_type_fields (tree type)
1466 tree tem;
1468 /* Output the name, type, position (in bits), size (in bits) of each
1469 field that we can support. */
1470 for (tem = TYPE_FIELDS (type); tem; tem = DECL_CHAIN (tem))
1472 /* If one of the nodes is an error_mark or its type is then
1473 return early. */
1474 if (error_operand_p (tem))
1475 return;
1477 /* Omit here local type decls until we know how to support them. */
1478 if (TREE_CODE (tem) == TYPE_DECL
1479 /* Omit here the nameless fields that are used to skip bits. */
1480 || DECL_IGNORED_P (tem)
1481 /* Omit fields whose position or size are variable or too large to
1482 represent. */
1483 || (TREE_CODE (tem) == FIELD_DECL
1484 && (! tree_fits_shwi_p (bit_position (tem))
1485 || ! DECL_SIZE (tem)
1486 || ! tree_fits_uhwi_p (DECL_SIZE (tem)))))
1487 continue;
1489 else if (TREE_CODE (tem) != CONST_DECL)
1491 /* Continue the line if necessary,
1492 but not before the first field. */
1493 if (tem != TYPE_FIELDS (type))
1494 CONTIN;
1496 if (DECL_NAME (tem))
1497 stabstr_I (DECL_NAME (tem));
1498 stabstr_C (':');
1500 if (use_gnu_debug_info_extensions
1501 && (TREE_PRIVATE (tem) || TREE_PROTECTED (tem)
1502 || TREE_CODE (tem) != FIELD_DECL))
1504 stabstr_C ('/');
1505 stabstr_C (DECL_ACCESSIBILITY_CHAR (tem));
1508 dbxout_type ((TREE_CODE (tem) == FIELD_DECL
1509 && DECL_BIT_FIELD_TYPE (tem))
1510 ? DECL_BIT_FIELD_TYPE (tem) : TREE_TYPE (tem), 0);
1512 if (TREE_CODE (tem) == VAR_DECL)
1514 if (TREE_STATIC (tem) && use_gnu_debug_info_extensions)
1516 tree name = DECL_ASSEMBLER_NAME (tem);
1518 stabstr_C (':');
1519 stabstr_I (name);
1520 stabstr_C (';');
1522 else
1523 /* If TEM is non-static, GDB won't understand it. */
1524 stabstr_S (",0,0;");
1526 else
1528 stabstr_C (',');
1529 stabstr_D (int_bit_position (tem));
1530 stabstr_C (',');
1531 stabstr_D (tree_to_uhwi (DECL_SIZE (tem)));
1532 stabstr_C (';');
1538 /* Subroutine of `dbxout_type_methods'. Output debug info about the
1539 method described DECL. */
1541 static void
1542 dbxout_type_method_1 (tree decl)
1544 char c1 = 'A', c2;
1546 if (TREE_CODE (TREE_TYPE (decl)) == FUNCTION_TYPE)
1547 c2 = '?';
1548 else /* it's a METHOD_TYPE. */
1550 tree firstarg = TREE_VALUE (TYPE_ARG_TYPES (TREE_TYPE (decl)));
1551 /* A for normal functions.
1552 B for `const' member functions.
1553 C for `volatile' member functions.
1554 D for `const volatile' member functions. */
1555 if (TYPE_READONLY (TREE_TYPE (firstarg)))
1556 c1 += 1;
1557 if (TYPE_VOLATILE (TREE_TYPE (firstarg)))
1558 c1 += 2;
1560 if (DECL_VINDEX (decl))
1561 c2 = '*';
1562 else
1563 c2 = '.';
1566 /* ??? Output the mangled name, which contains an encoding of the
1567 method's type signature. May not be necessary anymore. */
1568 stabstr_C (':');
1569 stabstr_I (DECL_ASSEMBLER_NAME (decl));
1570 stabstr_C (';');
1571 stabstr_C (DECL_ACCESSIBILITY_CHAR (decl));
1572 stabstr_C (c1);
1573 stabstr_C (c2);
1575 if (DECL_VINDEX (decl) && tree_fits_shwi_p (DECL_VINDEX (decl)))
1577 stabstr_D (tree_to_shwi (DECL_VINDEX (decl)));
1578 stabstr_C (';');
1579 dbxout_type (DECL_CONTEXT (decl), 0);
1580 stabstr_C (';');
1584 /* Subroutine of `dbxout_type'. Output debug info about the methods defined
1585 in TYPE. */
1587 static void
1588 dbxout_type_methods (tree type)
1590 /* C++: put out the method names and their parameter lists */
1591 tree methods = TYPE_METHODS (type);
1592 tree fndecl;
1593 tree last;
1595 if (methods == NULL_TREE)
1596 return;
1598 if (TREE_CODE (methods) != TREE_VEC)
1599 fndecl = methods;
1600 else if (TREE_VEC_ELT (methods, 0) != NULL_TREE)
1601 fndecl = TREE_VEC_ELT (methods, 0);
1602 else
1603 fndecl = TREE_VEC_ELT (methods, 1);
1605 while (fndecl)
1607 int need_prefix = 1;
1609 /* Group together all the methods for the same operation.
1610 These differ in the types of the arguments. */
1611 for (last = NULL_TREE;
1612 fndecl && (last == NULL_TREE || DECL_NAME (fndecl) == DECL_NAME (last));
1613 fndecl = DECL_CHAIN (fndecl))
1614 /* Output the name of the field (after overloading), as
1615 well as the name of the field before overloading, along
1616 with its parameter list */
1618 /* Skip methods that aren't FUNCTION_DECLs. (In C++, these
1619 include TEMPLATE_DECLs.) The debugger doesn't know what
1620 to do with such entities anyhow. */
1621 if (TREE_CODE (fndecl) != FUNCTION_DECL)
1622 continue;
1624 CONTIN;
1626 last = fndecl;
1628 /* Also ignore abstract methods; those are only interesting to
1629 the DWARF backends. */
1630 if (DECL_IGNORED_P (fndecl) || DECL_ABSTRACT_P (fndecl))
1631 continue;
1633 /* Redundantly output the plain name, since that's what gdb
1634 expects. */
1635 if (need_prefix)
1637 stabstr_I (DECL_NAME (fndecl));
1638 stabstr_S ("::");
1639 need_prefix = 0;
1642 dbxout_type (TREE_TYPE (fndecl), 0);
1643 dbxout_type_method_1 (fndecl);
1645 if (!need_prefix)
1646 stabstr_C (';');
1650 /* Emit a "range" type specification, which has the form:
1651 "r<index type>;<lower bound>;<upper bound>;".
1652 TYPE is an INTEGER_TYPE, LOW and HIGH are the bounds. */
1654 static void
1655 dbxout_range_type (tree type, tree low, tree high)
1657 stabstr_C ('r');
1658 if (TREE_TYPE (type))
1659 dbxout_type (TREE_TYPE (type), 0);
1660 else if (TREE_CODE (type) != INTEGER_TYPE)
1661 dbxout_type (type, 0); /* E.g. Pascal's ARRAY [BOOLEAN] of INTEGER */
1662 else
1664 /* Traditionally, we made sure 'int' was type 1, and builtin types
1665 were defined to be sub-ranges of int. Unfortunately, this
1666 does not allow us to distinguish true sub-ranges from integer
1667 types. So, instead we define integer (non-sub-range) types as
1668 sub-ranges of themselves. This matters for Chill. If this isn't
1669 a subrange type, then we want to define it in terms of itself.
1670 However, in C, this may be an anonymous integer type, and we don't
1671 want to emit debug info referring to it. Just calling
1672 dbxout_type_index won't work anyways, because the type hasn't been
1673 defined yet. We make this work for both cases by checked to see
1674 whether this is a defined type, referring to it if it is, and using
1675 'int' otherwise. */
1676 if (TYPE_SYMTAB_ADDRESS (type) != 0)
1677 dbxout_type_index (type);
1678 else
1679 dbxout_type_index (integer_type_node);
1682 stabstr_C (';');
1683 if (low && tree_fits_shwi_p (low))
1685 if (print_int_cst_bounds_in_octal_p (type, low, high))
1686 stabstr_O (low);
1687 else
1688 stabstr_D (tree_to_shwi (low));
1690 else
1691 stabstr_C ('0');
1693 stabstr_C (';');
1694 if (high && tree_fits_shwi_p (high))
1696 if (print_int_cst_bounds_in_octal_p (type, low, high))
1697 stabstr_O (high);
1698 else
1699 stabstr_D (tree_to_shwi (high));
1700 stabstr_C (';');
1702 else
1703 stabstr_S ("-1;");
1707 /* Output a reference to a type. If the type has not yet been
1708 described in the dbx output, output its definition now.
1709 For a type already defined, just refer to its definition
1710 using the type number.
1712 If FULL is nonzero, and the type has been described only with
1713 a forward-reference, output the definition now.
1714 If FULL is zero in this case, just refer to the forward-reference
1715 using the number previously allocated. */
1717 static void
1718 dbxout_type (tree type, int full)
1720 static int anonymous_type_number = 0;
1721 tree tem, main_variant, low, high;
1723 if (TREE_CODE (type) == INTEGER_TYPE)
1725 if (TREE_TYPE (type) == 0)
1727 low = TYPE_MIN_VALUE (type);
1728 high = TYPE_MAX_VALUE (type);
1731 else if (subrange_type_for_debug_p (type, &low, &high))
1734 /* If this is a subtype that should not be emitted as a subrange type,
1735 use the base type. */
1736 else
1738 type = TREE_TYPE (type);
1739 low = TYPE_MIN_VALUE (type);
1740 high = TYPE_MAX_VALUE (type);
1744 /* If there was an input error and we don't really have a type,
1745 avoid crashing and write something that is at least valid
1746 by assuming `int'. */
1747 if (type == error_mark_node)
1748 type = integer_type_node;
1749 else
1751 if (TYPE_NAME (type)
1752 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1753 && TYPE_DECL_SUPPRESS_DEBUG (TYPE_NAME (type)))
1754 full = 0;
1757 /* Try to find the "main variant" with the same name. */
1758 if (TYPE_NAME (type) && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1759 && DECL_ORIGINAL_TYPE (TYPE_NAME (type)))
1760 main_variant = TREE_TYPE (TYPE_NAME (type));
1761 else
1762 main_variant = TYPE_MAIN_VARIANT (type);
1764 /* If we are not using extensions, stabs does not distinguish const and
1765 volatile, so there is no need to make them separate types. */
1766 if (!use_gnu_debug_info_extensions)
1767 type = main_variant;
1769 if (TYPE_SYMTAB_ADDRESS (type) == 0)
1771 /* Type has no dbx number assigned. Assign next available number. */
1772 TYPE_SYMTAB_ADDRESS (type) = next_type_number++;
1774 /* Make sure type vector is long enough to record about this type. */
1776 if (next_type_number == typevec_len)
1778 typevec = GGC_RESIZEVEC (struct typeinfo, typevec, typevec_len * 2);
1779 memset (typevec + typevec_len, 0, typevec_len * sizeof typevec[0]);
1780 typevec_len *= 2;
1783 #ifdef DBX_USE_BINCL
1784 emit_pending_bincls_if_required ();
1785 typevec[TYPE_SYMTAB_ADDRESS (type)].file_number
1786 = current_file->file_number;
1787 typevec[TYPE_SYMTAB_ADDRESS (type)].type_number
1788 = current_file->next_type_number++;
1789 #endif
1792 if (flag_debug_only_used_symbols)
1794 if ((TREE_CODE (type) == RECORD_TYPE
1795 || TREE_CODE (type) == UNION_TYPE
1796 || TREE_CODE (type) == QUAL_UNION_TYPE
1797 || TREE_CODE (type) == ENUMERAL_TYPE)
1798 && TYPE_STUB_DECL (type)
1799 && DECL_P (TYPE_STUB_DECL (type))
1800 && ! DECL_IGNORED_P (TYPE_STUB_DECL (type)))
1801 debug_queue_symbol (TYPE_STUB_DECL (type));
1802 else if (TYPE_NAME (type)
1803 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL)
1804 debug_queue_symbol (TYPE_NAME (type));
1807 /* Output the number of this type, to refer to it. */
1808 dbxout_type_index (type);
1810 #ifdef DBX_TYPE_DEFINED
1811 if (DBX_TYPE_DEFINED (type))
1812 return;
1813 #endif
1815 /* If this type's definition has been output or is now being output,
1816 that is all. */
1818 switch (typevec[TYPE_SYMTAB_ADDRESS (type)].status)
1820 case TYPE_UNSEEN:
1821 break;
1822 case TYPE_XREF:
1823 /* If we have already had a cross reference,
1824 and either that's all we want or that's the best we could do,
1825 don't repeat the cross reference.
1826 Sun dbx crashes if we do. */
1827 if (! full || !COMPLETE_TYPE_P (type)
1828 /* No way in DBX fmt to describe a variable size. */
1829 || ! tree_fits_uhwi_p (TYPE_SIZE (type)))
1830 return;
1831 break;
1832 case TYPE_DEFINED:
1833 return;
1836 #ifdef DBX_NO_XREFS
1837 /* For systems where dbx output does not allow the `=xsNAME:' syntax,
1838 leave the type-number completely undefined rather than output
1839 a cross-reference. If we have already used GNU debug info extensions,
1840 then it is OK to output a cross reference. This is necessary to get
1841 proper C++ debug output. */
1842 if ((TREE_CODE (type) == RECORD_TYPE || TREE_CODE (type) == UNION_TYPE
1843 || TREE_CODE (type) == QUAL_UNION_TYPE
1844 || TREE_CODE (type) == ENUMERAL_TYPE)
1845 && ! use_gnu_debug_info_extensions)
1846 /* We must use the same test here as we use twice below when deciding
1847 whether to emit a cross-reference. */
1848 if ((TYPE_NAME (type) != 0
1849 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
1850 && DECL_IGNORED_P (TYPE_NAME (type)))
1851 && !full)
1852 || !COMPLETE_TYPE_P (type)
1853 /* No way in DBX fmt to describe a variable size. */
1854 || ! tree_fits_uhwi_p (TYPE_SIZE (type)))
1856 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
1857 return;
1859 #endif
1861 /* Output a definition now. */
1862 stabstr_C ('=');
1864 /* Mark it as defined, so that if it is self-referent
1865 we will not get into an infinite recursion of definitions. */
1867 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_DEFINED;
1869 /* If this type is a variant of some other, hand off. Types with
1870 different names are usefully distinguished. We only distinguish
1871 cv-qualified types if we're using extensions. */
1872 if (TYPE_READONLY (type) > TYPE_READONLY (main_variant))
1874 stabstr_C ('k');
1875 dbxout_type (build_type_variant (type, 0, TYPE_VOLATILE (type)), 0);
1876 return;
1878 else if (TYPE_VOLATILE (type) > TYPE_VOLATILE (main_variant))
1880 stabstr_C ('B');
1881 dbxout_type (build_type_variant (type, TYPE_READONLY (type), 0), 0);
1882 return;
1884 else if (main_variant != TYPE_MAIN_VARIANT (type))
1886 if (flag_debug_only_used_symbols)
1888 tree orig_type = DECL_ORIGINAL_TYPE (TYPE_NAME (type));
1890 if ((TREE_CODE (orig_type) == RECORD_TYPE
1891 || TREE_CODE (orig_type) == UNION_TYPE
1892 || TREE_CODE (orig_type) == QUAL_UNION_TYPE
1893 || TREE_CODE (orig_type) == ENUMERAL_TYPE)
1894 && TYPE_STUB_DECL (orig_type)
1895 && ! DECL_IGNORED_P (TYPE_STUB_DECL (orig_type)))
1896 debug_queue_symbol (TYPE_STUB_DECL (orig_type));
1898 /* 'type' is a typedef; output the type it refers to. */
1899 dbxout_type (DECL_ORIGINAL_TYPE (TYPE_NAME (type)), 0);
1900 return;
1902 /* else continue. */
1904 switch (TREE_CODE (type))
1906 case VOID_TYPE:
1907 case NULLPTR_TYPE:
1908 case LANG_TYPE:
1909 /* For a void type, just define it as itself; i.e., "5=5".
1910 This makes us consider it defined
1911 without saying what it is. The debugger will make it
1912 a void type when the reference is seen, and nothing will
1913 ever override that default. */
1914 dbxout_type_index (type);
1915 break;
1917 case INTEGER_TYPE:
1918 if (type == char_type_node && ! TYPE_UNSIGNED (type))
1920 /* Output the type `char' as a subrange of itself!
1921 I don't understand this definition, just copied it
1922 from the output of pcc.
1923 This used to use `r2' explicitly and we used to
1924 take care to make sure that `char' was type number 2. */
1925 stabstr_C ('r');
1926 dbxout_type_index (type);
1927 stabstr_S (";0;127;");
1930 /* If this is a subtype of another integer type, always prefer to
1931 write it as a subtype. */
1932 else if (TREE_TYPE (type) != 0
1933 && TREE_CODE (TREE_TYPE (type)) == INTEGER_TYPE)
1935 /* If the size is non-standard, say what it is if we can use
1936 GDB extensions. */
1938 if (use_gnu_debug_info_extensions
1939 && TYPE_PRECISION (type) != TYPE_PRECISION (integer_type_node))
1941 stabstr_S ("@s");
1942 stabstr_D (TYPE_PRECISION (type));
1943 stabstr_C (';');
1946 dbxout_range_type (type, low, high);
1949 else
1951 /* If the size is non-standard, say what it is if we can use
1952 GDB extensions. */
1954 if (use_gnu_debug_info_extensions
1955 && TYPE_PRECISION (type) != TYPE_PRECISION (integer_type_node))
1957 stabstr_S ("@s");
1958 stabstr_D (TYPE_PRECISION (type));
1959 stabstr_C (';');
1962 if (print_int_cst_bounds_in_octal_p (type, low, high))
1964 stabstr_C ('r');
1966 /* If this type derives from another type, output type index of
1967 parent type. This is particularly important when parent type
1968 is an enumerated type, because not generating the parent type
1969 index would transform the definition of this enumerated type
1970 into a plain unsigned type. */
1971 if (TREE_TYPE (type) != 0)
1972 dbxout_type_index (TREE_TYPE (type));
1973 else
1974 dbxout_type_index (type);
1976 stabstr_C (';');
1977 stabstr_O (low);
1978 stabstr_C (';');
1979 stabstr_O (high);
1980 stabstr_C (';');
1983 else
1984 /* Output other integer types as subranges of `int'. */
1985 dbxout_range_type (type, low, high);
1988 break;
1990 case REAL_TYPE:
1991 case FIXED_POINT_TYPE:
1992 /* This used to say `r1' and we used to take care
1993 to make sure that `int' was type number 1. */
1994 stabstr_C ('r');
1995 dbxout_type_index (integer_type_node);
1996 stabstr_C (';');
1997 stabstr_D (int_size_in_bytes (type));
1998 stabstr_S (";0;");
1999 break;
2001 case BOOLEAN_TYPE:
2002 if (use_gnu_debug_info_extensions)
2004 stabstr_S ("@s");
2005 stabstr_D (BITS_PER_UNIT * int_size_in_bytes (type));
2006 stabstr_S (";-16;");
2008 else /* Define as enumeral type (False, True) */
2009 stabstr_S ("eFalse:0,True:1,;");
2010 break;
2012 case COMPLEX_TYPE:
2013 /* Differs from the REAL_TYPE by its new data type number.
2014 R3 is NF_COMPLEX. We don't try to use any of the other NF_*
2015 codes since gdb doesn't care anyway. */
2017 if (TREE_CODE (TREE_TYPE (type)) == REAL_TYPE)
2019 stabstr_S ("R3;");
2020 stabstr_D (2 * int_size_in_bytes (TREE_TYPE (type)));
2021 stabstr_S (";0;");
2023 else
2025 /* Output a complex integer type as a structure,
2026 pending some other way to do it. */
2027 stabstr_C ('s');
2028 stabstr_D (int_size_in_bytes (type));
2030 stabstr_S ("real:");
2031 dbxout_type (TREE_TYPE (type), 0);
2032 stabstr_S (",0,");
2033 stabstr_D (TYPE_PRECISION (TREE_TYPE (type)));
2035 stabstr_S (";imag:");
2036 dbxout_type (TREE_TYPE (type), 0);
2037 stabstr_C (',');
2038 stabstr_D (TYPE_PRECISION (TREE_TYPE (type)));
2039 stabstr_C (',');
2040 stabstr_D (TYPE_PRECISION (TREE_TYPE (type)));
2041 stabstr_S (";;");
2043 break;
2045 case ARRAY_TYPE:
2046 /* Make arrays of packed bits look like bitstrings for chill. */
2047 if (TYPE_PACKED (type) && use_gnu_debug_info_extensions)
2049 stabstr_S ("@s");
2050 stabstr_D (BITS_PER_UNIT * int_size_in_bytes (type));
2051 stabstr_S (";@S;S");
2052 dbxout_type (TYPE_DOMAIN (type), 0);
2053 break;
2056 /* Output "a" followed by a range type definition
2057 for the index type of the array
2058 followed by a reference to the target-type.
2059 ar1;0;N;M for a C array of type M and size N+1. */
2060 /* Check if a character string type, which in Chill is
2061 different from an array of characters. */
2062 if (TYPE_STRING_FLAG (type) && use_gnu_debug_info_extensions)
2064 stabstr_S ("@S;");
2066 tem = TYPE_DOMAIN (type);
2067 if (tem == NULL)
2069 stabstr_S ("ar");
2070 dbxout_type_index (integer_type_node);
2071 stabstr_S (";0;-1;");
2073 else
2075 stabstr_C ('a');
2076 dbxout_range_type (tem, TYPE_MIN_VALUE (tem), TYPE_MAX_VALUE (tem));
2079 dbxout_type (TREE_TYPE (type), 0);
2080 break;
2082 case VECTOR_TYPE:
2083 /* Make vectors look like an array. */
2084 if (use_gnu_debug_info_extensions)
2085 stabstr_S ("@V;");
2087 /* Output "a" followed by a range type definition
2088 for the index type of the array
2089 followed by a reference to the target-type.
2090 ar1;0;N;M for a C array of type M and size N+1. */
2091 stabstr_C ('a');
2092 dbxout_range_type (integer_type_node, size_zero_node,
2093 size_int (TYPE_VECTOR_SUBPARTS (type) - 1));
2095 dbxout_type (TREE_TYPE (type), 0);
2096 break;
2098 case RECORD_TYPE:
2099 case UNION_TYPE:
2100 case QUAL_UNION_TYPE:
2102 tree binfo = TYPE_BINFO (type);
2104 /* Output a structure type. We must use the same test here as we
2105 use in the DBX_NO_XREFS case above. */
2106 if ((TYPE_NAME (type) != 0
2107 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
2108 && DECL_IGNORED_P (TYPE_NAME (type)))
2109 && !full)
2110 || !COMPLETE_TYPE_P (type)
2111 /* No way in DBX fmt to describe a variable size. */
2112 || ! tree_fits_uhwi_p (TYPE_SIZE (type)))
2114 /* If the type is just a cross reference, output one
2115 and mark the type as partially described.
2116 If it later becomes defined, we will output
2117 its real definition.
2118 If the type has a name, don't nest its definition within
2119 another type's definition; instead, output an xref
2120 and let the definition come when the name is defined. */
2121 stabstr_S ((TREE_CODE (type) == RECORD_TYPE) ? "xs" : "xu");
2122 if (TYPE_IDENTIFIER (type))
2124 /* Note that the C frontend creates for anonymous variable
2125 length records/unions TYPE_NAME with DECL_NAME NULL. */
2126 dbxout_type_name (type);
2128 else
2130 stabstr_S ("$$");
2131 stabstr_D (anonymous_type_number++);
2134 stabstr_C (':');
2135 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
2136 break;
2139 /* Identify record or union, and print its size. */
2140 stabstr_C ((TREE_CODE (type) == RECORD_TYPE) ? 's' : 'u');
2141 stabstr_D (int_size_in_bytes (type));
2143 if (binfo)
2145 int i;
2146 tree child;
2147 vec<tree, va_gc> *accesses = BINFO_BASE_ACCESSES (binfo);
2149 if (use_gnu_debug_info_extensions)
2151 if (BINFO_N_BASE_BINFOS (binfo))
2153 stabstr_C ('!');
2154 stabstr_U (BINFO_N_BASE_BINFOS (binfo));
2155 stabstr_C (',');
2158 for (i = 0; BINFO_BASE_ITERATE (binfo, i, child); i++)
2160 tree access = (accesses ? (*accesses)[i] : access_public_node);
2162 if (use_gnu_debug_info_extensions)
2164 stabstr_C (BINFO_VIRTUAL_P (child) ? '1' : '0');
2165 stabstr_C (access == access_public_node ? '2' :
2166 access == access_protected_node
2167 ? '1' :'0');
2168 if (BINFO_VIRTUAL_P (child)
2169 && (lang_GNU_CXX ()
2170 || strcmp (lang_hooks.name, "GNU Objective-C++") == 0))
2171 /* For a virtual base, print the (negative)
2172 offset within the vtable where we must look
2173 to find the necessary adjustment. */
2174 stabstr_D
2175 (tree_to_shwi (BINFO_VPTR_FIELD (child))
2176 * BITS_PER_UNIT);
2177 else
2178 stabstr_D (tree_to_shwi (BINFO_OFFSET (child))
2179 * BITS_PER_UNIT);
2180 stabstr_C (',');
2181 dbxout_type (BINFO_TYPE (child), 0);
2182 stabstr_C (';');
2184 else
2186 /* Print out the base class information with
2187 fields which have the same names at the types
2188 they hold. */
2189 dbxout_type_name (BINFO_TYPE (child));
2190 stabstr_C (':');
2191 dbxout_type (BINFO_TYPE (child), full);
2192 stabstr_C (',');
2193 stabstr_D (tree_to_shwi (BINFO_OFFSET (child))
2194 * BITS_PER_UNIT);
2195 stabstr_C (',');
2196 stabstr_D
2197 (tree_to_shwi (TYPE_SIZE (BINFO_TYPE (child)))
2198 * BITS_PER_UNIT);
2199 stabstr_C (';');
2205 /* Write out the field declarations. */
2206 dbxout_type_fields (type);
2207 if (use_gnu_debug_info_extensions && TYPE_METHODS (type) != NULL_TREE)
2209 dbxout_type_methods (type);
2212 stabstr_C (';');
2214 if (use_gnu_debug_info_extensions && TREE_CODE (type) == RECORD_TYPE
2215 /* Avoid the ~ if we don't really need it--it confuses dbx. */
2216 && TYPE_VFIELD (type))
2219 /* We need to write out info about what field this class
2220 uses as its "main" vtable pointer field, because if this
2221 field is inherited from a base class, GDB cannot necessarily
2222 figure out which field it's using in time. */
2223 stabstr_S ("~%");
2224 dbxout_type (DECL_FCONTEXT (TYPE_VFIELD (type)), 0);
2225 stabstr_C (';');
2227 break;
2229 case ENUMERAL_TYPE:
2230 /* We must use the same test here as we use in the DBX_NO_XREFS case
2231 above. We simplify it a bit since an enum will never have a variable
2232 size. */
2233 if ((TYPE_NAME (type) != 0
2234 && ! (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
2235 && DECL_IGNORED_P (TYPE_NAME (type)))
2236 && !full)
2237 || !COMPLETE_TYPE_P (type))
2239 stabstr_S ("xe");
2240 dbxout_type_name (type);
2241 typevec[TYPE_SYMTAB_ADDRESS (type)].status = TYPE_XREF;
2242 stabstr_C (':');
2243 return;
2245 if (use_gnu_debug_info_extensions
2246 && TYPE_PRECISION (type) != TYPE_PRECISION (integer_type_node))
2248 stabstr_S ("@s");
2249 stabstr_D (TYPE_PRECISION (type));
2250 stabstr_C (';');
2253 stabstr_C ('e');
2254 for (tem = TYPE_VALUES (type); tem; tem = TREE_CHAIN (tem))
2256 tree value = TREE_VALUE (tem);
2258 stabstr_I (TREE_PURPOSE (tem));
2259 stabstr_C (':');
2261 if (TREE_CODE (value) == CONST_DECL)
2262 value = DECL_INITIAL (value);
2264 if (cst_and_fits_in_hwi (value))
2265 stabstr_D (TREE_INT_CST_LOW (value));
2266 else
2267 stabstr_O (value);
2269 stabstr_C (',');
2270 if (TREE_CHAIN (tem) != 0)
2271 CONTIN;
2274 stabstr_C (';');
2275 break;
2277 case POINTER_TYPE:
2278 stabstr_C ('*');
2279 dbxout_type (TREE_TYPE (type), 0);
2280 break;
2282 case METHOD_TYPE:
2283 if (use_gnu_debug_info_extensions)
2285 stabstr_C ('#');
2287 /* Write the argument types out longhand. */
2288 dbxout_type (TYPE_METHOD_BASETYPE (type), 0);
2289 stabstr_C (',');
2290 dbxout_type (TREE_TYPE (type), 0);
2291 dbxout_args (TYPE_ARG_TYPES (type));
2292 stabstr_C (';');
2294 else
2295 /* Treat it as a function type. */
2296 dbxout_type (TREE_TYPE (type), 0);
2297 break;
2299 case OFFSET_TYPE:
2300 if (use_gnu_debug_info_extensions)
2302 stabstr_C ('@');
2303 dbxout_type (TYPE_OFFSET_BASETYPE (type), 0);
2304 stabstr_C (',');
2305 dbxout_type (TREE_TYPE (type), 0);
2307 else
2308 /* Should print as an int, because it is really just an offset. */
2309 dbxout_type (integer_type_node, 0);
2310 break;
2312 case REFERENCE_TYPE:
2313 if (use_gnu_debug_info_extensions)
2315 stabstr_C ('&');
2317 else
2318 stabstr_C ('*');
2319 dbxout_type (TREE_TYPE (type), 0);
2320 break;
2322 case FUNCTION_TYPE:
2323 stabstr_C ('f');
2324 dbxout_type (TREE_TYPE (type), 0);
2325 break;
2327 case POINTER_BOUNDS_TYPE:
2328 /* No debug info for pointer bounds type supported yet. */
2329 break;
2331 default:
2332 gcc_unreachable ();
2336 /* Return nonzero if the given type represents an integer whose bounds
2337 should be printed in octal format. */
2339 static bool
2340 print_int_cst_bounds_in_octal_p (tree type, tree low, tree high)
2342 /* If we can use GDB extensions and the size is wider than a long
2343 (the size used by GDB to read them) or we may have trouble writing
2344 the bounds the usual way, write them in octal. Note the test is for
2345 the *target's* size of "long", not that of the host. The host test
2346 is just to make sure we can write it out in case the host wide int
2347 is narrower than the target "long".
2349 For unsigned types, we use octal if they are the same size or larger.
2350 This is because we print the bounds as signed decimal, and hence they
2351 can't span same size unsigned types. */
2353 if (use_gnu_debug_info_extensions
2354 && low && TREE_CODE (low) == INTEGER_CST
2355 && high && TREE_CODE (high) == INTEGER_CST
2356 && (TYPE_PRECISION (type) > TYPE_PRECISION (integer_type_node)
2357 || ((TYPE_PRECISION (type) == TYPE_PRECISION (integer_type_node))
2358 && TYPE_UNSIGNED (type))
2359 || TYPE_PRECISION (type) > HOST_BITS_PER_WIDE_INT
2360 || (TYPE_PRECISION (type) == HOST_BITS_PER_WIDE_INT
2361 && TYPE_UNSIGNED (type))))
2362 return TRUE;
2363 else
2364 return FALSE;
2367 /* Output the name of type TYPE, with no punctuation.
2368 Such names can be set up either by typedef declarations
2369 or by struct, enum and union tags. */
2371 static void
2372 dbxout_type_name (tree type)
2374 tree t = TYPE_NAME (type);
2376 gcc_assert (t);
2377 switch (TREE_CODE (t))
2379 case IDENTIFIER_NODE:
2380 break;
2381 case TYPE_DECL:
2382 t = DECL_NAME (t);
2383 break;
2384 default:
2385 gcc_unreachable ();
2388 stabstr_I (t);
2391 /* Output leading leading struct or class names needed for qualifying
2392 type whose scope is limited to a struct or class. */
2394 static void
2395 dbxout_class_name_qualifiers (tree decl)
2397 tree context = decl_type_context (decl);
2399 if (context != NULL_TREE
2400 && TREE_CODE (context) == RECORD_TYPE
2401 && TYPE_NAME (context) != 0
2402 && (TREE_CODE (TYPE_NAME (context)) == IDENTIFIER_NODE
2403 || (DECL_NAME (TYPE_NAME (context)) != 0)))
2405 tree name = TYPE_NAME (context);
2407 if (TREE_CODE (name) == TYPE_DECL)
2409 dbxout_class_name_qualifiers (name);
2410 name = DECL_NAME (name);
2412 stabstr_I (name);
2413 stabstr_S ("::");
2417 /* This is a specialized subset of expand_expr for use by dbxout_symbol in
2418 evaluating DECL_VALUE_EXPR. In particular, we stop if we find decls that
2419 haven't been expanded, or if the expression is getting so complex we won't
2420 be able to represent it in stabs anyway. Returns NULL on failure. */
2422 static rtx
2423 dbxout_expand_expr (tree expr)
2425 switch (TREE_CODE (expr))
2427 case VAR_DECL:
2428 /* We can't handle emulated tls variables, because the address is an
2429 offset to the return value of __emutls_get_address, and there is no
2430 way to express that in stabs. Also, there are name mangling issues
2431 here. We end up with references to undefined symbols if we don't
2432 disable debug info for these variables. */
2433 if (!targetm.have_tls && DECL_THREAD_LOCAL_P (expr))
2434 return NULL;
2435 if (TREE_STATIC (expr)
2436 && !TREE_ASM_WRITTEN (expr)
2437 && !DECL_HAS_VALUE_EXPR_P (expr)
2438 && !TREE_PUBLIC (expr)
2439 && DECL_RTL_SET_P (expr)
2440 && MEM_P (DECL_RTL (expr)))
2442 /* If this is a var that might not be actually output,
2443 return NULL, otherwise stabs might reference an undefined
2444 symbol. */
2445 varpool_node *node = varpool_node::get (expr);
2446 if (!node || !node->definition)
2447 return NULL;
2449 /* FALLTHRU */
2451 case PARM_DECL:
2452 case RESULT_DECL:
2453 if (DECL_HAS_VALUE_EXPR_P (expr))
2454 return dbxout_expand_expr (DECL_VALUE_EXPR (expr));
2455 /* FALLTHRU */
2457 case CONST_DECL:
2458 return DECL_RTL_IF_SET (expr);
2460 case INTEGER_CST:
2461 return expand_expr (expr, NULL_RTX, VOIDmode, EXPAND_INITIALIZER);
2463 case COMPONENT_REF:
2464 case ARRAY_REF:
2465 case ARRAY_RANGE_REF:
2466 case BIT_FIELD_REF:
2468 machine_mode mode;
2469 HOST_WIDE_INT bitsize, bitpos;
2470 tree offset, tem;
2471 int volatilep = 0, unsignedp = 0;
2472 rtx x;
2474 tem = get_inner_reference (expr, &bitsize, &bitpos, &offset,
2475 &mode, &unsignedp, &volatilep, true);
2477 x = dbxout_expand_expr (tem);
2478 if (x == NULL || !MEM_P (x))
2479 return NULL;
2480 if (offset != NULL)
2482 if (!tree_fits_shwi_p (offset))
2483 return NULL;
2484 x = adjust_address_nv (x, mode, tree_to_shwi (offset));
2486 if (bitpos != 0)
2487 x = adjust_address_nv (x, mode, bitpos / BITS_PER_UNIT);
2489 return x;
2492 default:
2493 return NULL;
2497 /* Helper function for output_used_types. Queue one entry from the
2498 used types hash to be output. */
2500 bool
2501 output_used_types_helper (tree const &type, vec<tree> *types_p)
2503 if ((TREE_CODE (type) == RECORD_TYPE
2504 || TREE_CODE (type) == UNION_TYPE
2505 || TREE_CODE (type) == QUAL_UNION_TYPE
2506 || TREE_CODE (type) == ENUMERAL_TYPE)
2507 && TYPE_STUB_DECL (type)
2508 && DECL_P (TYPE_STUB_DECL (type))
2509 && ! DECL_IGNORED_P (TYPE_STUB_DECL (type)))
2510 types_p->quick_push (TYPE_STUB_DECL (type));
2511 else if (TYPE_NAME (type)
2512 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL)
2513 types_p->quick_push (TYPE_NAME (type));
2515 return true;
2518 /* This is a qsort callback which sorts types and declarations into a
2519 predictable order (types, then declarations, sorted by UID
2520 within). */
2522 static int
2523 output_types_sort (const void *pa, const void *pb)
2525 const tree lhs = *((const tree *)pa);
2526 const tree rhs = *((const tree *)pb);
2528 if (TYPE_P (lhs))
2530 if (TYPE_P (rhs))
2531 return TYPE_UID (lhs) - TYPE_UID (rhs);
2532 else
2533 return 1;
2535 else
2537 if (TYPE_P (rhs))
2538 return -1;
2539 else
2540 return DECL_UID (lhs) - DECL_UID (rhs);
2545 /* Force all types used by this function to be output in debug
2546 information. */
2548 static void
2549 output_used_types (void)
2551 if (cfun && cfun->used_types_hash)
2553 vec<tree> types;
2554 int i;
2555 tree type;
2557 types.create (cfun->used_types_hash->elements ());
2558 cfun->used_types_hash->traverse<vec<tree> *, output_used_types_helper>
2559 (&types);
2561 /* Sort by UID to prevent dependence on hash table ordering. */
2562 types.qsort (output_types_sort);
2564 FOR_EACH_VEC_ELT (types, i, type)
2565 debug_queue_symbol (type);
2567 types.release ();
2571 /* Output a .stabs for the symbol defined by DECL,
2572 which must be a ..._DECL node in the normal namespace.
2573 It may be a CONST_DECL, a FUNCTION_DECL, a PARM_DECL or a VAR_DECL.
2574 LOCAL is nonzero if the scope is less than the entire file.
2575 Return 1 if a stabs might have been emitted. */
2578 dbxout_symbol (tree decl, int local ATTRIBUTE_UNUSED)
2580 tree type = TREE_TYPE (decl);
2581 tree context = NULL_TREE;
2582 int result = 0;
2583 rtx decl_rtl;
2585 /* "Intercept" dbxout_symbol() calls like we do all debug_hooks. */
2586 ++debug_nesting;
2588 /* Ignore nameless syms, but don't ignore type tags. */
2590 if ((DECL_NAME (decl) == 0 && TREE_CODE (decl) != TYPE_DECL)
2591 || DECL_IGNORED_P (decl))
2592 DBXOUT_DECR_NESTING_AND_RETURN (0);
2594 /* If we are to generate only the symbols actually used then such
2595 symbol nodes are flagged with TREE_USED. Ignore any that
2596 aren't flagged as TREE_USED. */
2598 if (flag_debug_only_used_symbols
2599 && (!TREE_USED (decl)
2600 && (TREE_CODE (decl) != VAR_DECL || !DECL_INITIAL (decl))))
2601 DBXOUT_DECR_NESTING_AND_RETURN (0);
2603 /* If dbxout_init has not yet run, queue this symbol for later. */
2604 if (!typevec)
2606 preinit_symbols = tree_cons (0, decl, preinit_symbols);
2607 DBXOUT_DECR_NESTING_AND_RETURN (0);
2610 if (flag_debug_only_used_symbols)
2612 tree t;
2614 /* We now have a used symbol. We need to generate the info for
2615 the symbol's type in addition to the symbol itself. These
2616 type symbols are queued to be generated after were done with
2617 the symbol itself (otherwise they would fight over the
2618 stabstr obstack).
2620 Note, because the TREE_TYPE(type) might be something like a
2621 pointer to a named type we need to look for the first name
2622 we see following the TREE_TYPE chain. */
2624 t = type;
2625 while (POINTER_TYPE_P (t))
2626 t = TREE_TYPE (t);
2628 /* RECORD_TYPE, UNION_TYPE, QUAL_UNION_TYPE, and ENUMERAL_TYPE
2629 need special treatment. The TYPE_STUB_DECL field in these
2630 types generally represents the tag name type we want to
2631 output. In addition there could be a typedef type with
2632 a different name. In that case we also want to output
2633 that. */
2635 if (TREE_CODE (t) == RECORD_TYPE
2636 || TREE_CODE (t) == UNION_TYPE
2637 || TREE_CODE (t) == QUAL_UNION_TYPE
2638 || TREE_CODE (t) == ENUMERAL_TYPE)
2640 if (TYPE_STUB_DECL (t)
2641 && TYPE_STUB_DECL (t) != decl
2642 && DECL_P (TYPE_STUB_DECL (t))
2643 && ! DECL_IGNORED_P (TYPE_STUB_DECL (t)))
2645 debug_queue_symbol (TYPE_STUB_DECL (t));
2646 if (TYPE_NAME (t)
2647 && TYPE_NAME (t) != TYPE_STUB_DECL (t)
2648 && TYPE_NAME (t) != decl
2649 && DECL_P (TYPE_NAME (t)))
2650 debug_queue_symbol (TYPE_NAME (t));
2653 else if (TYPE_NAME (t)
2654 && TYPE_NAME (t) != decl
2655 && DECL_P (TYPE_NAME (t)))
2656 debug_queue_symbol (TYPE_NAME (t));
2659 emit_pending_bincls_if_required ();
2661 switch (TREE_CODE (decl))
2663 case CONST_DECL:
2664 /* Enum values are defined by defining the enum type. */
2665 break;
2667 case FUNCTION_DECL:
2668 decl_rtl = DECL_RTL_IF_SET (decl);
2669 if (!decl_rtl)
2670 DBXOUT_DECR_NESTING_AND_RETURN (0);
2671 if (DECL_EXTERNAL (decl))
2672 break;
2673 /* Don't mention a nested function under its parent. */
2674 context = decl_function_context (decl);
2675 if (context == current_function_decl)
2676 break;
2677 /* Don't mention an inline instance of a nested function. */
2678 if (context && DECL_FROM_INLINE (decl))
2679 break;
2680 if (!MEM_P (decl_rtl)
2681 || GET_CODE (XEXP (decl_rtl, 0)) != SYMBOL_REF)
2682 break;
2684 if (flag_debug_only_used_symbols)
2685 output_used_types ();
2687 dbxout_begin_complex_stabs ();
2688 stabstr_I (DECL_ASSEMBLER_NAME (decl));
2689 stabstr_S (TREE_PUBLIC (decl) ? ":F" : ":f");
2690 result = 1;
2692 if (TREE_TYPE (type))
2693 dbxout_type (TREE_TYPE (type), 0);
2694 else
2695 dbxout_type (void_type_node, 0);
2697 /* For a nested function, when that function is compiled,
2698 mention the containing function name
2699 as well as (since dbx wants it) our own assembler-name. */
2700 if (context != 0)
2702 stabstr_C (',');
2703 stabstr_I (DECL_ASSEMBLER_NAME (decl));
2704 stabstr_C (',');
2705 stabstr_I (DECL_NAME (context));
2708 dbxout_finish_complex_stabs (decl, N_FUN, XEXP (decl_rtl, 0), 0, 0);
2709 break;
2711 case TYPE_DECL:
2712 /* Don't output the same typedef twice.
2713 And don't output what language-specific stuff doesn't want output. */
2714 if (TREE_ASM_WRITTEN (decl) || TYPE_DECL_SUPPRESS_DEBUG (decl))
2715 DBXOUT_DECR_NESTING_AND_RETURN (0);
2717 /* Don't output typedefs for types with magic type numbers (XCOFF). */
2718 #ifdef DBX_ASSIGN_FUNDAMENTAL_TYPE_NUMBER
2720 int fundamental_type_number =
2721 DBX_ASSIGN_FUNDAMENTAL_TYPE_NUMBER (decl);
2723 if (fundamental_type_number != 0)
2725 TREE_ASM_WRITTEN (decl) = 1;
2726 TYPE_SYMTAB_ADDRESS (TREE_TYPE (decl)) = fundamental_type_number;
2727 DBXOUT_DECR_NESTING_AND_RETURN (0);
2730 #endif
2731 FORCE_TEXT;
2732 result = 1;
2734 int tag_needed = 1;
2735 int did_output = 0;
2737 if (DECL_NAME (decl))
2739 /* Nonzero means we must output a tag as well as a typedef. */
2740 tag_needed = 0;
2742 /* Handle the case of a C++ structure or union
2743 where the TYPE_NAME is a TYPE_DECL
2744 which gives both a typedef name and a tag. */
2745 /* dbx requires the tag first and the typedef second. */
2746 if ((TREE_CODE (type) == RECORD_TYPE
2747 || TREE_CODE (type) == UNION_TYPE
2748 || TREE_CODE (type) == QUAL_UNION_TYPE)
2749 && TYPE_NAME (type) == decl
2750 && !use_gnu_debug_info_extensions
2751 && !TREE_ASM_WRITTEN (TYPE_NAME (type))
2752 /* Distinguish the implicit typedefs of C++
2753 from explicit ones that might be found in C. */
2754 && DECL_ARTIFICIAL (decl)
2755 /* Do not generate a tag for incomplete records. */
2756 && COMPLETE_TYPE_P (type)
2757 /* Do not generate a tag for records of variable size,
2758 since this type can not be properly described in the
2759 DBX format, and it confuses some tools such as objdump. */
2760 && tree_fits_uhwi_p (TYPE_SIZE (type)))
2762 tree name = TYPE_IDENTIFIER (type);
2764 dbxout_begin_complex_stabs ();
2765 stabstr_I (name);
2766 stabstr_S (":T");
2767 dbxout_type (type, 1);
2768 dbxout_finish_complex_stabs (0, DBX_TYPE_DECL_STABS_CODE,
2769 0, 0, 0);
2772 dbxout_begin_complex_stabs ();
2774 /* Output leading class/struct qualifiers. */
2775 if (use_gnu_debug_info_extensions)
2776 dbxout_class_name_qualifiers (decl);
2778 /* Output typedef name. */
2779 stabstr_I (DECL_NAME (decl));
2780 stabstr_C (':');
2782 /* Short cut way to output a tag also. */
2783 if ((TREE_CODE (type) == RECORD_TYPE
2784 || TREE_CODE (type) == UNION_TYPE
2785 || TREE_CODE (type) == QUAL_UNION_TYPE)
2786 && TYPE_NAME (type) == decl
2787 /* Distinguish the implicit typedefs of C++
2788 from explicit ones that might be found in C. */
2789 && DECL_ARTIFICIAL (decl))
2791 if (use_gnu_debug_info_extensions)
2793 stabstr_C ('T');
2794 TREE_ASM_WRITTEN (TYPE_NAME (type)) = 1;
2798 stabstr_C ('t');
2799 dbxout_type (type, 1);
2800 dbxout_finish_complex_stabs (decl, DBX_TYPE_DECL_STABS_CODE,
2801 0, 0, 0);
2802 did_output = 1;
2805 /* Don't output a tag if this is an incomplete type. This prevents
2806 the sun4 Sun OS 4.x dbx from crashing. */
2808 if (tag_needed && TYPE_NAME (type) != 0
2809 && (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE
2810 || (DECL_NAME (TYPE_NAME (type)) != 0))
2811 && COMPLETE_TYPE_P (type)
2812 && !TREE_ASM_WRITTEN (TYPE_NAME (type)))
2814 /* For a TYPE_DECL with no name, but the type has a name,
2815 output a tag.
2816 This is what represents `struct foo' with no typedef. */
2817 /* In C++, the name of a type is the corresponding typedef.
2818 In C, it is an IDENTIFIER_NODE. */
2819 tree name = TYPE_IDENTIFIER (type);
2821 dbxout_begin_complex_stabs ();
2822 stabstr_I (name);
2823 stabstr_S (":T");
2824 dbxout_type (type, 1);
2825 dbxout_finish_complex_stabs (0, DBX_TYPE_DECL_STABS_CODE, 0, 0, 0);
2826 did_output = 1;
2829 /* If an enum type has no name, it cannot be referred to, but
2830 we must output it anyway, to record the enumeration
2831 constants. */
2833 if (!did_output && TREE_CODE (type) == ENUMERAL_TYPE)
2835 dbxout_begin_complex_stabs ();
2836 /* Some debuggers fail when given NULL names, so give this a
2837 harmless name of " " (Why not "(anon)"?). */
2838 stabstr_S (" :T");
2839 dbxout_type (type, 1);
2840 dbxout_finish_complex_stabs (0, DBX_TYPE_DECL_STABS_CODE, 0, 0, 0);
2843 /* Prevent duplicate output of a typedef. */
2844 TREE_ASM_WRITTEN (decl) = 1;
2845 break;
2848 case PARM_DECL:
2849 if (DECL_HAS_VALUE_EXPR_P (decl))
2850 decl = DECL_VALUE_EXPR (decl);
2852 /* PARM_DECLs go in their own separate chain and are output by
2853 dbxout_reg_parms and dbxout_parms, except for those that are
2854 disguised VAR_DECLs like Out parameters in Ada. */
2855 gcc_assert (TREE_CODE (decl) == VAR_DECL);
2857 /* ... fall through ... */
2859 case RESULT_DECL:
2860 case VAR_DECL:
2861 /* Don't mention a variable that is external.
2862 Let the file that defines it describe it. */
2863 if (DECL_EXTERNAL (decl))
2864 break;
2866 /* If the variable is really a constant
2867 and not written in memory, inform the debugger.
2869 ??? Why do we skip emitting the type and location in this case? */
2870 if (TREE_STATIC (decl) && TREE_READONLY (decl)
2871 && DECL_INITIAL (decl) != 0
2872 && tree_fits_shwi_p (DECL_INITIAL (decl))
2873 && ! TREE_ASM_WRITTEN (decl)
2874 && (DECL_FILE_SCOPE_P (decl)
2875 || TREE_CODE (DECL_CONTEXT (decl)) == BLOCK
2876 || TREE_CODE (DECL_CONTEXT (decl)) == NAMESPACE_DECL)
2877 && TREE_PUBLIC (decl) == 0)
2879 /* The sun4 assembler does not grok this. */
2881 if (TREE_CODE (TREE_TYPE (decl)) == INTEGER_TYPE
2882 || TREE_CODE (TREE_TYPE (decl)) == ENUMERAL_TYPE)
2884 HOST_WIDE_INT ival = tree_to_shwi (DECL_INITIAL (decl));
2886 dbxout_begin_complex_stabs ();
2887 dbxout_symbol_name (decl, NULL, 'c');
2888 stabstr_S ("=i");
2889 stabstr_D (ival);
2890 dbxout_finish_complex_stabs (0, N_LSYM, 0, 0, 0);
2891 DBXOUT_DECR_NESTING;
2892 return 1;
2894 else
2895 break;
2897 /* else it is something we handle like a normal variable. */
2899 decl_rtl = dbxout_expand_expr (decl);
2900 if (!decl_rtl)
2901 DBXOUT_DECR_NESTING_AND_RETURN (0);
2903 if (!is_global_var (decl))
2904 decl_rtl = eliminate_regs (decl_rtl, VOIDmode, NULL_RTX);
2905 #ifdef LEAF_REG_REMAP
2906 if (crtl->uses_only_leaf_regs)
2907 leaf_renumber_regs_insn (decl_rtl);
2908 #endif
2910 result = dbxout_symbol_location (decl, type, 0, decl_rtl);
2911 break;
2913 default:
2914 break;
2916 DBXOUT_DECR_NESTING;
2917 return result;
2920 /* Output the stab for DECL, a VAR_DECL, RESULT_DECL or PARM_DECL.
2921 Add SUFFIX to its name, if SUFFIX is not 0.
2922 Describe the variable as residing in HOME
2923 (usually HOME is DECL_RTL (DECL), but not always).
2924 Returns 1 if the stab was really emitted. */
2926 static int
2927 dbxout_symbol_location (tree decl, tree type, const char *suffix, rtx home)
2929 int letter = 0;
2930 stab_code_type code;
2931 rtx addr = 0;
2932 int number = 0;
2933 int regno = -1;
2935 /* Don't mention a variable at all
2936 if it was completely optimized into nothingness.
2938 If the decl was from an inline function, then its rtl
2939 is not identically the rtl that was used in this
2940 particular compilation. */
2941 if (GET_CODE (home) == SUBREG)
2943 rtx value = home;
2945 while (GET_CODE (value) == SUBREG)
2946 value = SUBREG_REG (value);
2947 if (REG_P (value))
2949 if (REGNO (value) >= FIRST_PSEUDO_REGISTER)
2950 return 0;
2952 home = alter_subreg (&home, true);
2954 if (REG_P (home))
2956 regno = REGNO (home);
2957 if (regno >= FIRST_PSEUDO_REGISTER)
2958 return 0;
2961 /* The kind-of-variable letter depends on where
2962 the variable is and on the scope of its name:
2963 G and N_GSYM for static storage and global scope,
2964 S for static storage and file scope,
2965 V for static storage and local scope,
2966 for those two, use N_LCSYM if data is in bss segment,
2967 N_STSYM if in data segment, N_FUN otherwise.
2968 (We used N_FUN originally, then changed to N_STSYM
2969 to please GDB. However, it seems that confused ld.
2970 Now GDB has been fixed to like N_FUN, says Kingdon.)
2971 no letter at all, and N_LSYM, for auto variable,
2972 r and N_RSYM for register variable. */
2974 if (MEM_P (home) && GET_CODE (XEXP (home, 0)) == SYMBOL_REF)
2976 if (TREE_PUBLIC (decl))
2978 int offs;
2979 letter = 'G';
2980 code = N_GSYM;
2981 if (NULL != dbxout_common_check (decl, &offs))
2983 letter = 'V';
2984 addr = 0;
2985 number = offs;
2988 else
2990 addr = XEXP (home, 0);
2992 letter = decl_function_context (decl) ? 'V' : 'S';
2994 /* Some ports can transform a symbol ref into a label ref,
2995 because the symbol ref is too far away and has to be
2996 dumped into a constant pool. Alternatively, the symbol
2997 in the constant pool might be referenced by a different
2998 symbol. */
2999 if (GET_CODE (addr) == SYMBOL_REF
3000 && CONSTANT_POOL_ADDRESS_P (addr))
3002 bool marked;
3003 rtx tmp = get_pool_constant_mark (addr, &marked);
3005 if (GET_CODE (tmp) == SYMBOL_REF)
3007 addr = tmp;
3008 if (CONSTANT_POOL_ADDRESS_P (addr))
3009 get_pool_constant_mark (addr, &marked);
3010 else
3011 marked = true;
3013 else if (GET_CODE (tmp) == LABEL_REF)
3015 addr = tmp;
3016 marked = true;
3019 /* If all references to the constant pool were optimized
3020 out, we just ignore the symbol. */
3021 if (!marked)
3022 return 0;
3025 /* This should be the same condition as in assemble_variable, but
3026 we don't have access to dont_output_data here. So, instead,
3027 we rely on the fact that error_mark_node initializers always
3028 end up in bss for C++ and never end up in bss for C. */
3029 if (DECL_INITIAL (decl) == 0
3030 || (lang_GNU_CXX ()
3031 && DECL_INITIAL (decl) == error_mark_node))
3033 int offs;
3034 code = N_LCSYM;
3035 if (NULL != dbxout_common_check (decl, &offs))
3037 addr = 0;
3038 number = offs;
3039 letter = 'V';
3040 code = N_GSYM;
3043 else if (DECL_IN_TEXT_SECTION (decl))
3044 /* This is not quite right, but it's the closest
3045 of all the codes that Unix defines. */
3046 code = DBX_STATIC_CONST_VAR_CODE;
3047 else
3049 /* Ultrix `as' seems to need this. */
3050 #ifdef DBX_STATIC_STAB_DATA_SECTION
3051 switch_to_section (data_section);
3052 #endif
3053 code = N_STSYM;
3057 else if (regno >= 0)
3059 letter = 'r';
3060 code = N_RSYM;
3061 number = DBX_REGISTER_NUMBER (regno);
3063 else if (MEM_P (home)
3064 && (MEM_P (XEXP (home, 0))
3065 || (REG_P (XEXP (home, 0))
3066 && REGNO (XEXP (home, 0)) != HARD_FRAME_POINTER_REGNUM
3067 && REGNO (XEXP (home, 0)) != STACK_POINTER_REGNUM
3068 #if !HARD_FRAME_POINTER_IS_ARG_POINTER
3069 && REGNO (XEXP (home, 0)) != ARG_POINTER_REGNUM
3070 #endif
3072 /* If the value is indirect by memory or by a register
3073 that isn't the frame pointer
3074 then it means the object is variable-sized and address through
3075 that register or stack slot. DBX has no way to represent this
3076 so all we can do is output the variable as a pointer.
3077 If it's not a parameter, ignore it. */
3079 if (REG_P (XEXP (home, 0)))
3081 letter = 'r';
3082 code = N_RSYM;
3083 if (REGNO (XEXP (home, 0)) >= FIRST_PSEUDO_REGISTER)
3084 return 0;
3085 number = DBX_REGISTER_NUMBER (REGNO (XEXP (home, 0)));
3087 else
3089 code = N_LSYM;
3090 /* RTL looks like (MEM (MEM (PLUS (REG...) (CONST_INT...)))).
3091 We want the value of that CONST_INT. */
3092 number = DEBUGGER_AUTO_OFFSET (XEXP (XEXP (home, 0), 0));
3095 /* Effectively do build_pointer_type, but don't cache this type,
3096 since it might be temporary whereas the type it points to
3097 might have been saved for inlining. */
3098 /* Don't use REFERENCE_TYPE because dbx can't handle that. */
3099 type = make_node (POINTER_TYPE);
3100 TREE_TYPE (type) = TREE_TYPE (decl);
3102 else if (MEM_P (home)
3103 && REG_P (XEXP (home, 0)))
3105 code = N_LSYM;
3106 number = DEBUGGER_AUTO_OFFSET (XEXP (home, 0));
3108 else if (MEM_P (home)
3109 && GET_CODE (XEXP (home, 0)) == PLUS
3110 && CONST_INT_P (XEXP (XEXP (home, 0), 1)))
3112 code = N_LSYM;
3113 /* RTL looks like (MEM (PLUS (REG...) (CONST_INT...)))
3114 We want the value of that CONST_INT. */
3115 number = DEBUGGER_AUTO_OFFSET (XEXP (home, 0));
3117 else if (MEM_P (home)
3118 && GET_CODE (XEXP (home, 0)) == CONST)
3120 /* Handle an obscure case which can arise when optimizing and
3121 when there are few available registers. (This is *always*
3122 the case for i386/i486 targets). The RTL looks like
3123 (MEM (CONST ...)) even though this variable is a local `auto'
3124 or a local `register' variable. In effect, what has happened
3125 is that the reload pass has seen that all assignments and
3126 references for one such a local variable can be replaced by
3127 equivalent assignments and references to some static storage
3128 variable, thereby avoiding the need for a register. In such
3129 cases we're forced to lie to debuggers and tell them that
3130 this variable was itself `static'. */
3131 int offs;
3132 code = N_LCSYM;
3133 letter = 'V';
3134 if (NULL == dbxout_common_check (decl, &offs))
3135 addr = XEXP (XEXP (home, 0), 0);
3136 else
3138 addr = 0;
3139 number = offs;
3140 code = N_GSYM;
3143 else if (GET_CODE (home) == CONCAT)
3145 tree subtype;
3147 /* If TYPE is not a COMPLEX_TYPE (it might be a RECORD_TYPE,
3148 for example), then there is no easy way to figure out
3149 what SUBTYPE should be. So, we give up. */
3150 if (TREE_CODE (type) != COMPLEX_TYPE)
3151 return 0;
3153 subtype = TREE_TYPE (type);
3155 /* If the variable's storage is in two parts,
3156 output each as a separate stab with a modified name. */
3157 if (WORDS_BIG_ENDIAN)
3158 dbxout_symbol_location (decl, subtype, "$imag", XEXP (home, 0));
3159 else
3160 dbxout_symbol_location (decl, subtype, "$real", XEXP (home, 0));
3162 if (WORDS_BIG_ENDIAN)
3163 dbxout_symbol_location (decl, subtype, "$real", XEXP (home, 1));
3164 else
3165 dbxout_symbol_location (decl, subtype, "$imag", XEXP (home, 1));
3166 return 1;
3168 else
3169 /* Address might be a MEM, when DECL is a variable-sized object.
3170 Or it might be const0_rtx, meaning previous passes
3171 want us to ignore this variable. */
3172 return 0;
3174 /* Ok, start a symtab entry and output the variable name. */
3175 emit_pending_bincls_if_required ();
3176 FORCE_TEXT;
3178 #ifdef DBX_STATIC_BLOCK_START
3179 DBX_STATIC_BLOCK_START (asm_out_file, code);
3180 #endif
3182 dbxout_begin_complex_stabs_noforcetext ();
3183 dbxout_symbol_name (decl, suffix, letter);
3184 dbxout_type (type, 0);
3185 dbxout_finish_complex_stabs (decl, code, addr, 0, number);
3187 #ifdef DBX_STATIC_BLOCK_END
3188 DBX_STATIC_BLOCK_END (asm_out_file, code);
3189 #endif
3190 return 1;
3193 /* Output the symbol name of DECL for a stabs, with suffix SUFFIX.
3194 Then output LETTER to indicate the kind of location the symbol has. */
3196 static void
3197 dbxout_symbol_name (tree decl, const char *suffix, int letter)
3199 tree name;
3201 if (DECL_CONTEXT (decl)
3202 && (TYPE_P (DECL_CONTEXT (decl))
3203 || TREE_CODE (DECL_CONTEXT (decl)) == NAMESPACE_DECL))
3204 /* One slight hitch: if this is a VAR_DECL which is a class member
3205 or a namespace member, we must put out the mangled name instead of the
3206 DECL_NAME. Note also that static member (variable) names DO NOT begin
3207 with underscores in .stabs directives. */
3208 name = DECL_ASSEMBLER_NAME (decl);
3209 else
3210 /* ...but if we're function-local, we don't want to include the junk
3211 added by ASM_FORMAT_PRIVATE_NAME. */
3212 name = DECL_NAME (decl);
3214 if (name)
3215 stabstr_I (name);
3216 else
3217 stabstr_S ("(anon)");
3219 if (suffix)
3220 stabstr_S (suffix);
3221 stabstr_C (':');
3222 if (letter)
3223 stabstr_C (letter);
3227 /* Output the common block name for DECL in a stabs.
3229 Symbols in global common (.comm) get wrapped with an N_BCOMM/N_ECOMM pair
3230 around each group of symbols in the same .comm area. The N_GSYM stabs
3231 that are emitted only contain the offset in the common area. This routine
3232 emits the N_BCOMM and N_ECOMM stabs. */
3234 static void
3235 dbxout_common_name (tree decl, const char *name, stab_code_type op)
3237 dbxout_begin_complex_stabs ();
3238 stabstr_S (name);
3239 dbxout_finish_complex_stabs (decl, op, NULL_RTX, NULL, 0);
3242 /* Check decl to determine whether it is a VAR_DECL destined for storage in a
3243 common area. If it is, the return value will be a non-null string giving
3244 the name of the common storage block it will go into. If non-null, the
3245 value is the offset into the common block for that symbol's storage. */
3247 static const char *
3248 dbxout_common_check (tree decl, int *value)
3250 rtx home;
3251 rtx sym_addr;
3252 const char *name = NULL;
3254 /* If the decl isn't a VAR_DECL, or if it isn't static, or if
3255 it does not have a value (the offset into the common area), or if it
3256 is thread local (as opposed to global) then it isn't common, and shouldn't
3257 be handled as such.
3259 ??? DECL_THREAD_LOCAL_P check prevents problems with improper .stabs
3260 for thread-local symbols. Can be handled via same mechanism as used
3261 in dwarf2out.c. */
3262 if (TREE_CODE (decl) != VAR_DECL
3263 || !TREE_STATIC (decl)
3264 || !DECL_HAS_VALUE_EXPR_P (decl)
3265 || DECL_THREAD_LOCAL_P (decl)
3266 || !is_fortran ())
3267 return NULL;
3269 home = DECL_RTL (decl);
3270 if (home == NULL_RTX || GET_CODE (home) != MEM)
3271 return NULL;
3273 sym_addr = dbxout_expand_expr (DECL_VALUE_EXPR (decl));
3274 if (sym_addr == NULL_RTX || GET_CODE (sym_addr) != MEM)
3275 return NULL;
3277 sym_addr = XEXP (sym_addr, 0);
3278 if (GET_CODE (sym_addr) == CONST)
3279 sym_addr = XEXP (sym_addr, 0);
3280 if ((GET_CODE (sym_addr) == SYMBOL_REF || GET_CODE (sym_addr) == PLUS)
3281 && DECL_INITIAL (decl) == 0)
3284 /* We have a sym that will go into a common area, meaning that it
3285 will get storage reserved with a .comm/.lcomm assembler pseudo-op.
3287 Determine name of common area this symbol will be an offset into,
3288 and offset into that area. Also retrieve the decl for the area
3289 that the symbol is offset into. */
3290 tree cdecl = NULL;
3292 switch (GET_CODE (sym_addr))
3294 case PLUS:
3295 if (CONST_INT_P (XEXP (sym_addr, 0)))
3297 name =
3298 targetm.strip_name_encoding (XSTR (XEXP (sym_addr, 1), 0));
3299 *value = INTVAL (XEXP (sym_addr, 0));
3300 cdecl = SYMBOL_REF_DECL (XEXP (sym_addr, 1));
3302 else
3304 name =
3305 targetm.strip_name_encoding (XSTR (XEXP (sym_addr, 0), 0));
3306 *value = INTVAL (XEXP (sym_addr, 1));
3307 cdecl = SYMBOL_REF_DECL (XEXP (sym_addr, 0));
3309 break;
3311 case SYMBOL_REF:
3312 name = targetm.strip_name_encoding (XSTR (sym_addr, 0));
3313 *value = 0;
3314 cdecl = SYMBOL_REF_DECL (sym_addr);
3315 break;
3317 default:
3318 error ("common symbol debug info is not structured as "
3319 "symbol+offset");
3322 /* Check area common symbol is offset into. If this is not public, then
3323 it is not a symbol in a common block. It must be a .lcomm symbol, not
3324 a .comm symbol. */
3325 if (cdecl == NULL || !TREE_PUBLIC (cdecl))
3326 name = NULL;
3328 else
3329 name = NULL;
3331 return name;
3334 /* Output definitions of all the decls in a chain. Return nonzero if
3335 anything was output */
3338 dbxout_syms (tree syms)
3340 int result = 0;
3341 const char *comm_prev = NULL;
3342 tree syms_prev = NULL;
3344 while (syms)
3346 int temp, copen, cclos;
3347 const char *comm_new;
3349 /* Check for common symbol, and then progression into a new/different
3350 block of common symbols. Emit closing/opening common bracket if
3351 necessary. */
3352 comm_new = dbxout_common_check (syms, &temp);
3353 copen = comm_new != NULL
3354 && (comm_prev == NULL || strcmp (comm_new, comm_prev));
3355 cclos = comm_prev != NULL
3356 && (comm_new == NULL || strcmp (comm_new, comm_prev));
3357 if (cclos)
3358 dbxout_common_name (syms_prev, comm_prev, N_ECOMM);
3359 if (copen)
3361 dbxout_common_name (syms, comm_new, N_BCOMM);
3362 syms_prev = syms;
3364 comm_prev = comm_new;
3366 result += dbxout_symbol (syms, 1);
3367 syms = DECL_CHAIN (syms);
3370 if (comm_prev != NULL)
3371 dbxout_common_name (syms_prev, comm_prev, N_ECOMM);
3373 return result;
3376 /* The following two functions output definitions of function parameters.
3377 Each parameter gets a definition locating it in the parameter list.
3378 Each parameter that is a register variable gets a second definition
3379 locating it in the register.
3381 Printing or argument lists in gdb uses the definitions that
3382 locate in the parameter list. But reference to the variable in
3383 expressions uses preferentially the definition as a register. */
3385 /* Output definitions, referring to storage in the parmlist,
3386 of all the parms in PARMS, which is a chain of PARM_DECL nodes. */
3388 void
3389 dbxout_parms (tree parms)
3391 ++debug_nesting;
3392 emit_pending_bincls_if_required ();
3394 for (; parms; parms = DECL_CHAIN (parms))
3395 if (DECL_NAME (parms)
3396 && TREE_TYPE (parms) != error_mark_node
3397 && DECL_RTL_SET_P (parms)
3398 && DECL_INCOMING_RTL (parms))
3400 tree eff_type;
3401 char letter;
3402 stab_code_type code;
3403 int number;
3405 /* Perform any necessary register eliminations on the parameter's rtl,
3406 so that the debugging output will be accurate. */
3407 DECL_INCOMING_RTL (parms)
3408 = eliminate_regs (DECL_INCOMING_RTL (parms), VOIDmode, NULL_RTX);
3409 SET_DECL_RTL (parms,
3410 eliminate_regs (DECL_RTL (parms), VOIDmode, NULL_RTX));
3411 #ifdef LEAF_REG_REMAP
3412 if (crtl->uses_only_leaf_regs)
3414 leaf_renumber_regs_insn (DECL_INCOMING_RTL (parms));
3415 leaf_renumber_regs_insn (DECL_RTL (parms));
3417 #endif
3419 if (PARM_PASSED_IN_MEMORY (parms))
3421 rtx inrtl = XEXP (DECL_INCOMING_RTL (parms), 0);
3423 /* ??? Here we assume that the parm address is indexed
3424 off the frame pointer or arg pointer.
3425 If that is not true, we produce meaningless results,
3426 but do not crash. */
3427 if (GET_CODE (inrtl) == PLUS
3428 && CONST_INT_P (XEXP (inrtl, 1)))
3429 number = INTVAL (XEXP (inrtl, 1));
3430 else
3431 number = 0;
3433 code = N_PSYM;
3434 number = DEBUGGER_ARG_OFFSET (number, inrtl);
3435 letter = 'p';
3437 /* It is quite tempting to use TREE_TYPE (parms) instead
3438 of DECL_ARG_TYPE (parms) for the eff_type, so that gcc
3439 reports the actual type of the parameter, rather than
3440 the promoted type. This certainly makes GDB's life
3441 easier, at least for some ports. The change is a bad
3442 idea however, since GDB expects to be able access the
3443 type without performing any conversions. So for
3444 example, if we were passing a float to an unprototyped
3445 function, gcc will store a double on the stack, but if
3446 we emit a stab saying the type is a float, then gdb
3447 will only read in a single value, and this will produce
3448 an erroneous value. */
3449 eff_type = DECL_ARG_TYPE (parms);
3451 else if (REG_P (DECL_RTL (parms)))
3453 rtx best_rtl;
3455 /* Parm passed in registers and lives in registers or nowhere. */
3456 code = DBX_REGPARM_STABS_CODE;
3457 letter = DBX_REGPARM_STABS_LETTER;
3459 /* For parms passed in registers, it is better to use the
3460 declared type of the variable, not the type it arrived in. */
3461 eff_type = TREE_TYPE (parms);
3463 /* If parm lives in a register, use that register; pretend
3464 the parm was passed there. It would be more consistent
3465 to describe the register where the parm was passed, but
3466 in practice that register usually holds something else.
3467 If the parm lives nowhere, use the register where it
3468 was passed. */
3469 if (REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
3470 best_rtl = DECL_RTL (parms);
3471 else if (GET_CODE (DECL_INCOMING_RTL (parms)) == PARALLEL)
3472 best_rtl = XEXP (XVECEXP (DECL_INCOMING_RTL (parms), 0, 0), 0);
3473 else
3474 best_rtl = DECL_INCOMING_RTL (parms);
3476 number = DBX_REGISTER_NUMBER (REGNO (best_rtl));
3478 else if (MEM_P (DECL_RTL (parms))
3479 && REG_P (XEXP (DECL_RTL (parms), 0))
3480 && REGNO (XEXP (DECL_RTL (parms), 0)) != HARD_FRAME_POINTER_REGNUM
3481 && REGNO (XEXP (DECL_RTL (parms), 0)) != STACK_POINTER_REGNUM
3482 #if !HARD_FRAME_POINTER_IS_ARG_POINTER
3483 && REGNO (XEXP (DECL_RTL (parms), 0)) != ARG_POINTER_REGNUM
3484 #endif
3487 /* Parm was passed via invisible reference.
3488 That is, its address was passed in a register.
3489 Output it as if it lived in that register.
3490 The debugger will know from the type
3491 that it was actually passed by invisible reference. */
3493 code = DBX_REGPARM_STABS_CODE;
3495 /* GDB likes this marked with a special letter. */
3496 letter = (use_gnu_debug_info_extensions
3497 ? 'a' : DBX_REGPARM_STABS_LETTER);
3498 eff_type = TREE_TYPE (parms);
3500 /* DECL_RTL looks like (MEM (REG...). Get the register number.
3501 If it is an unallocated pseudo-reg, then use the register where
3502 it was passed instead.
3503 ??? Why is DBX_REGISTER_NUMBER not used here? */
3505 if (REGNO (XEXP (DECL_RTL (parms), 0)) < FIRST_PSEUDO_REGISTER)
3506 number = REGNO (XEXP (DECL_RTL (parms), 0));
3507 else
3508 number = REGNO (DECL_INCOMING_RTL (parms));
3510 else if (MEM_P (DECL_RTL (parms))
3511 && MEM_P (XEXP (DECL_RTL (parms), 0)))
3513 /* Parm was passed via invisible reference, with the reference
3514 living on the stack. DECL_RTL looks like
3515 (MEM (MEM (PLUS (REG ...) (CONST_INT ...)))) or it
3516 could look like (MEM (MEM (REG))). */
3518 code = N_PSYM;
3519 letter = 'v';
3520 eff_type = TREE_TYPE (parms);
3522 if (!REG_P (XEXP (XEXP (DECL_RTL (parms), 0), 0)))
3523 number = INTVAL (XEXP (XEXP (XEXP (DECL_RTL (parms), 0), 0), 1));
3524 else
3525 number = 0;
3527 number = DEBUGGER_ARG_OFFSET (number,
3528 XEXP (XEXP (DECL_RTL (parms), 0), 0));
3530 else if (MEM_P (DECL_RTL (parms))
3531 && XEXP (DECL_RTL (parms), 0) != const0_rtx
3532 /* ??? A constant address for a parm can happen
3533 when the reg it lives in is equiv to a constant in memory.
3534 Should make this not happen, after 2.4. */
3535 && ! CONSTANT_P (XEXP (DECL_RTL (parms), 0)))
3537 /* Parm was passed in registers but lives on the stack. */
3539 code = N_PSYM;
3540 letter = 'p';
3541 eff_type = TREE_TYPE (parms);
3543 /* DECL_RTL looks like (MEM (PLUS (REG...) (CONST_INT...))),
3544 in which case we want the value of that CONST_INT,
3545 or (MEM (REG ...)),
3546 in which case we use a value of zero. */
3547 if (!REG_P (XEXP (DECL_RTL (parms), 0)))
3548 number = INTVAL (XEXP (XEXP (DECL_RTL (parms), 0), 1));
3549 else
3550 number = 0;
3552 /* Make a big endian correction if the mode of the type of the
3553 parameter is not the same as the mode of the rtl. */
3554 if (BYTES_BIG_ENDIAN
3555 && TYPE_MODE (TREE_TYPE (parms)) != GET_MODE (DECL_RTL (parms))
3556 && GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (parms))) < UNITS_PER_WORD)
3557 number += (GET_MODE_SIZE (GET_MODE (DECL_RTL (parms)))
3558 - GET_MODE_SIZE (TYPE_MODE (TREE_TYPE (parms))));
3560 else
3561 /* ??? We don't know how to represent this argument. */
3562 continue;
3564 dbxout_begin_complex_stabs ();
3566 if (DECL_NAME (parms))
3568 stabstr_I (DECL_NAME (parms));
3569 stabstr_C (':');
3571 else
3572 stabstr_S ("(anon):");
3573 stabstr_C (letter);
3574 dbxout_type (eff_type, 0);
3575 dbxout_finish_complex_stabs (parms, code, 0, 0, number);
3577 DBXOUT_DECR_NESTING;
3580 /* Output definitions for the places where parms live during the function,
3581 when different from where they were passed, when the parms were passed
3582 in memory.
3584 It is not useful to do this for parms passed in registers
3585 that live during the function in different registers, because it is
3586 impossible to look in the passed register for the passed value,
3587 so we use the within-the-function register to begin with.
3589 PARMS is a chain of PARM_DECL nodes. */
3591 void
3592 dbxout_reg_parms (tree parms)
3594 ++debug_nesting;
3596 for (; parms; parms = DECL_CHAIN (parms))
3597 if (DECL_NAME (parms) && PARM_PASSED_IN_MEMORY (parms))
3599 /* Report parms that live in registers during the function
3600 but were passed in memory. */
3601 if (REG_P (DECL_RTL (parms))
3602 && REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
3603 dbxout_symbol_location (parms, TREE_TYPE (parms),
3604 0, DECL_RTL (parms));
3605 else if (GET_CODE (DECL_RTL (parms)) == CONCAT)
3606 dbxout_symbol_location (parms, TREE_TYPE (parms),
3607 0, DECL_RTL (parms));
3608 /* Report parms that live in memory but not where they were passed. */
3609 else if (MEM_P (DECL_RTL (parms))
3610 && ! rtx_equal_p (DECL_RTL (parms), DECL_INCOMING_RTL (parms)))
3611 dbxout_symbol_location (parms, TREE_TYPE (parms),
3612 0, DECL_RTL (parms));
3614 DBXOUT_DECR_NESTING;
3617 /* Given a chain of ..._TYPE nodes (as come in a parameter list),
3618 output definitions of those names, in raw form */
3620 static void
3621 dbxout_args (tree args)
3623 while (args)
3625 stabstr_C (',');
3626 dbxout_type (TREE_VALUE (args), 0);
3627 args = TREE_CHAIN (args);
3631 #if defined (DBX_DEBUGGING_INFO)
3633 /* Subroutine of dbxout_block. Emit an N_LBRAC stab referencing LABEL.
3634 BEGIN_LABEL is the name of the beginning of the function, which may
3635 be required. */
3636 static void
3637 dbx_output_lbrac (const char *label,
3638 const char *begin_label ATTRIBUTE_UNUSED)
3640 dbxout_begin_stabn (N_LBRAC);
3641 if (DBX_BLOCKS_FUNCTION_RELATIVE)
3642 dbxout_stab_value_label_diff (label, begin_label);
3643 else
3644 dbxout_stab_value_label (label);
3647 /* Subroutine of dbxout_block. Emit an N_RBRAC stab referencing LABEL.
3648 BEGIN_LABEL is the name of the beginning of the function, which may
3649 be required. */
3650 static void
3651 dbx_output_rbrac (const char *label,
3652 const char *begin_label ATTRIBUTE_UNUSED)
3654 dbxout_begin_stabn (N_RBRAC);
3655 if (DBX_BLOCKS_FUNCTION_RELATIVE)
3656 dbxout_stab_value_label_diff (label, begin_label);
3657 else
3658 dbxout_stab_value_label (label);
3661 /* Output everything about a symbol block (a BLOCK node
3662 that represents a scope level),
3663 including recursive output of contained blocks.
3665 BLOCK is the BLOCK node.
3666 DEPTH is its depth within containing symbol blocks.
3667 ARGS is usually zero; but for the outermost block of the
3668 body of a function, it is a chain of PARM_DECLs for the function parameters.
3669 We output definitions of all the register parms
3670 as if they were local variables of that block.
3672 If -g1 was used, we count blocks just the same, but output nothing
3673 except for the outermost block.
3675 Actually, BLOCK may be several blocks chained together.
3676 We handle them all in sequence. */
3678 static void
3679 dbxout_block (tree block, int depth, tree args)
3681 char begin_label[20];
3682 /* Reference current function start using LFBB. */
3683 ASM_GENERATE_INTERNAL_LABEL (begin_label, "LFBB", scope_labelno);
3685 while (block)
3687 /* Ignore blocks never expanded or otherwise marked as real. */
3688 if (TREE_USED (block) && TREE_ASM_WRITTEN (block))
3690 int did_output;
3691 int blocknum = BLOCK_NUMBER (block);
3693 /* In dbx format, the syms of a block come before the N_LBRAC.
3694 If nothing is output, we don't need the N_LBRAC, either. */
3695 did_output = 0;
3696 if (debug_info_level != DINFO_LEVEL_TERSE || depth == 0)
3697 did_output = dbxout_syms (BLOCK_VARS (block));
3698 if (args)
3699 dbxout_reg_parms (args);
3701 /* Now output an N_LBRAC symbol to represent the beginning of
3702 the block. Use the block's tree-walk order to generate
3703 the assembler symbols LBBn and LBEn
3704 that final will define around the code in this block. */
3705 if (did_output)
3707 char buf[20];
3708 const char *scope_start;
3710 if (depth == 0)
3711 /* The outermost block doesn't get LBB labels; use
3712 the LFBB local symbol emitted by dbxout_begin_prologue. */
3713 scope_start = begin_label;
3714 else
3716 ASM_GENERATE_INTERNAL_LABEL (buf, "LBB", blocknum);
3717 scope_start = buf;
3720 dbx_output_lbrac (scope_start, begin_label);
3723 /* Output the subblocks. */
3724 dbxout_block (BLOCK_SUBBLOCKS (block), depth + 1, NULL_TREE);
3726 /* Refer to the marker for the end of the block. */
3727 if (did_output)
3729 char buf[100];
3730 if (depth == 0)
3731 /* The outermost block doesn't get LBE labels;
3732 use the "scope" label which will be emitted
3733 by dbxout_function_end. */
3734 ASM_GENERATE_INTERNAL_LABEL (buf, "Lscope", scope_labelno);
3735 else
3736 ASM_GENERATE_INTERNAL_LABEL (buf, "LBE", blocknum);
3738 dbx_output_rbrac (buf, begin_label);
3741 block = BLOCK_CHAIN (block);
3745 /* Output the information about a function and its arguments and result.
3746 Usually this follows the function's code,
3747 but on some systems, it comes before. */
3749 static void
3750 dbxout_begin_function (tree decl)
3752 int saved_tree_used1;
3754 saved_tree_used1 = TREE_USED (decl);
3755 TREE_USED (decl) = 1;
3756 if (DECL_NAME (DECL_RESULT (decl)) != 0)
3758 int saved_tree_used2 = TREE_USED (DECL_RESULT (decl));
3759 TREE_USED (DECL_RESULT (decl)) = 1;
3760 dbxout_symbol (decl, 0);
3761 TREE_USED (DECL_RESULT (decl)) = saved_tree_used2;
3763 else
3764 dbxout_symbol (decl, 0);
3765 TREE_USED (decl) = saved_tree_used1;
3767 dbxout_parms (DECL_ARGUMENTS (decl));
3768 if (DECL_NAME (DECL_RESULT (decl)) != 0)
3769 dbxout_symbol (DECL_RESULT (decl), 1);
3771 #endif /* DBX_DEBUGGING_INFO */
3773 #endif /* DBX_DEBUGGING_INFO || XCOFF_DEBUGGING_INFO */
3775 /* Record an element in the table of global destructors. SYMBOL is
3776 a SYMBOL_REF of the function to be called; PRIORITY is a number
3777 between 0 and MAX_INIT_PRIORITY. */
3779 void
3780 default_stabs_asm_out_destructor (rtx symbol ATTRIBUTE_UNUSED,
3781 int priority ATTRIBUTE_UNUSED)
3783 #if defined DBX_DEBUGGING_INFO || defined XCOFF_DEBUGGING_INFO
3784 /* Tell GNU LD that this is part of the static destructor set.
3785 This will work for any system that uses stabs, most usefully
3786 aout systems. */
3787 dbxout_begin_simple_stabs ("___DTOR_LIST__", 22 /* N_SETT */);
3788 dbxout_stab_value_label (XSTR (symbol, 0));
3789 #else
3790 sorry ("global destructors not supported on this target");
3791 #endif
3794 /* Likewise for global constructors. */
3796 void
3797 default_stabs_asm_out_constructor (rtx symbol ATTRIBUTE_UNUSED,
3798 int priority ATTRIBUTE_UNUSED)
3800 #if defined DBX_DEBUGGING_INFO || defined XCOFF_DEBUGGING_INFO
3801 /* Tell GNU LD that this is part of the static destructor set.
3802 This will work for any system that uses stabs, most usefully
3803 aout systems. */
3804 dbxout_begin_simple_stabs ("___CTOR_LIST__", 22 /* N_SETT */);
3805 dbxout_stab_value_label (XSTR (symbol, 0));
3806 #else
3807 sorry ("global constructors not supported on this target");
3808 #endif
3811 #include "gt-dbxout.h"