gcse.c (set_hash_table_size): Now unsigned.
[gcc.git] / gcc / sdbout.c
1 /* Output sdb-format symbol table information from GNU compiler.
2 Copyright (C) 1988, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000
3 Free Software Foundation, Inc.
4
5 This file is part of GNU CC.
6
7 GNU CC is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU CC is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU CC; see the file COPYING. If not, write to
19 the Free Software Foundation, 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22 /* mike@tredysvr.Tredydev.Unisys.COM says:
23 I modified the struct.c example and have a nm of a .o resulting from the
24 AT&T C compiler. From the example below I would conclude the following:
25
26 1. All .defs from structures are emitted as scanned. The example below
27 clearly shows the symbol table entries for BoxRec2 are after the first
28 function.
29
30 2. All functions and their locals (including statics) are emitted as scanned.
31
32 3. All nested unnamed union and structure .defs must be emitted before
33 the structure in which they are nested. The AT&T assembler is a
34 one pass beast as far as symbolics are concerned.
35
36 4. All structure .defs are emitted before the typedefs that refer to them.
37
38 5. All top level static and external variable definitions are moved to the
39 end of file with all top level statics occurring first before externs.
40
41 6. All undefined references are at the end of the file.
42 */
43
44 #include "config.h"
45
46 #ifdef SDB_DEBUGGING_INFO
47
48 #include "system.h"
49 #include "tree.h"
50 #include "rtl.h"
51 #include "regs.h"
52 #include "defaults.h"
53 #include "flags.h"
54 #include "insn-config.h"
55 #include "reload.h"
56 #include "output.h"
57 #include "toplev.h"
58 #include "tm_p.h"
59
60 /* Mips systems use the SDB functions to dump out symbols, but do not
61 supply usable syms.h include files. Which syms.h file to use is a
62 target parameter so don't use the native one if we're cross compiling. */
63
64 #if defined(USG) && !defined(MIPS) && !defined (hpux) && !defined(_WIN32) && !defined(__linux__) && !defined(__INTERIX) && !defined(CROSS_COMPILE)
65 #include <syms.h>
66 /* Use T_INT if we don't have T_VOID. */
67 #ifndef T_VOID
68 #define T_VOID T_INT
69 #endif
70 #else
71 #include "gsyms.h"
72 #endif
73
74 /* #include <storclass.h> used to be this instead of syms.h. */
75
76 /* 1 if PARM is passed to this function in memory. */
77
78 #define PARM_PASSED_IN_MEMORY(PARM) \
79 (GET_CODE (DECL_INCOMING_RTL (PARM)) == MEM)
80
81 /* A C expression for the integer offset value of an automatic variable
82 (C_AUTO) having address X (an RTX). */
83 #ifndef DEBUGGER_AUTO_OFFSET
84 #define DEBUGGER_AUTO_OFFSET(X) \
85 (GET_CODE (X) == PLUS ? INTVAL (XEXP (X, 1)) : 0)
86 #endif
87
88 /* A C expression for the integer offset value of an argument (C_ARG)
89 having address X (an RTX). The nominal offset is OFFSET. */
90 #ifndef DEBUGGER_ARG_OFFSET
91 #define DEBUGGER_ARG_OFFSET(OFFSET, X) (OFFSET)
92 #endif
93
94 /* Line number of beginning of current function, minus one.
95 Negative means not in a function or not using sdb. */
96
97 int sdb_begin_function_line = -1;
98
99 /* Counter to generate unique "names" for nameless struct members. */
100
101 static int unnamed_struct_number = 0;
102
103 extern FILE *asm_out_file;
104
105 extern tree current_function_decl;
106
107 #include "sdbout.h"
108
109 static char *gen_fake_label PARAMS ((void));
110 static int plain_type PARAMS ((tree));
111 static int template_name_p PARAMS ((tree));
112 static void sdbout_record_type_name PARAMS ((tree));
113 static int plain_type_1 PARAMS ((tree, int));
114 static void sdbout_block PARAMS ((tree));
115 static void sdbout_syms PARAMS ((tree));
116 #ifdef SDB_ALLOW_FORWARD_REFERENCES
117 static void sdbout_queue_anonymous_type PARAMS ((tree));
118 static void sdbout_dequeue_anonymous_types PARAMS ((void));
119 #endif
120 static void sdbout_type PARAMS ((tree));
121 static void sdbout_field_types PARAMS ((tree));
122 static void sdbout_one_type PARAMS ((tree));
123 static void sdbout_parms PARAMS ((tree));
124 static void sdbout_reg_parms PARAMS ((tree));
125 \f
126 /* Random macros describing parts of SDB data. */
127
128 /* Put something here if lines get too long */
129 #define CONTIN
130
131 /* Default value of delimiter is ";". */
132 #ifndef SDB_DELIM
133 #define SDB_DELIM ";"
134 #endif
135
136 /* Maximum number of dimensions the assembler will allow. */
137 #ifndef SDB_MAX_DIM
138 #define SDB_MAX_DIM 4
139 #endif
140
141 #ifndef PUT_SDB_SCL
142 #define PUT_SDB_SCL(a) fprintf(asm_out_file, "\t.scl\t%d%s", (a), SDB_DELIM)
143 #endif
144
145 #ifndef PUT_SDB_INT_VAL
146 #define PUT_SDB_INT_VAL(a) \
147 do { \
148 fputs ("\t.val\t", asm_out_file); \
149 fprintf (asm_out_file, HOST_WIDE_INT_PRINT_DEC, (HOST_WIDE_INT)(a)); \
150 fprintf (asm_out_file, "%s", SDB_DELIM); \
151 } while (0)
152
153 #endif
154
155 #ifndef PUT_SDB_VAL
156 #define PUT_SDB_VAL(a) \
157 ( fputs ("\t.val\t", asm_out_file), \
158 output_addr_const (asm_out_file, (a)), \
159 fprintf (asm_out_file, SDB_DELIM))
160 #endif
161
162 #ifndef PUT_SDB_DEF
163 #define PUT_SDB_DEF(a) \
164
165 #undef PUT_SDB_DEF
166 PUT_SDB_DEF(a) \
167 char *a; {
168 do { fprintf (asm_out_file, "\t.def\t"); \
169 assemble_name (asm_out_file, a); \
170 fprintf (asm_out_file, SDB_DELIM); } while (0)
171 ; }
172 #endif
173
174 #ifndef PUT_SDB_PLAIN_DEF
175 #define PUT_SDB_PLAIN_DEF(a) fprintf(asm_out_file,"\t.def\t.%s%s",a, SDB_DELIM)
176 #endif
177
178 #ifndef PUT_SDB_ENDEF
179 #define PUT_SDB_ENDEF fputs("\t.endef\n", asm_out_file)
180 #endif
181
182 #ifndef PUT_SDB_TYPE
183 #define PUT_SDB_TYPE(a) fprintf(asm_out_file, "\t.type\t0%o%s", a, SDB_DELIM)
184 #endif
185
186 #ifndef PUT_SDB_SIZE
187 #define PUT_SDB_SIZE(a) \
188 do { \
189 fputs ("\t.size\t", asm_out_file); \
190 fprintf (asm_out_file, HOST_WIDE_INT_PRINT_DEC, (HOST_WIDE_INT)(a)); \
191 fprintf (asm_out_file, "%s", SDB_DELIM); \
192 } while(0)
193 #endif
194
195 #ifndef PUT_SDB_START_DIM
196 #define PUT_SDB_START_DIM fprintf(asm_out_file, "\t.dim\t")
197 #endif
198
199 #ifndef PUT_SDB_NEXT_DIM
200 #define PUT_SDB_NEXT_DIM(a) fprintf(asm_out_file, "%d,", a)
201 #endif
202
203 #ifndef PUT_SDB_LAST_DIM
204 #define PUT_SDB_LAST_DIM(a) fprintf(asm_out_file, "%d%s", a, SDB_DELIM)
205 #endif
206
207 #ifndef PUT_SDB_TAG
208 #define PUT_SDB_TAG(a) \
209 do { fprintf (asm_out_file, "\t.tag\t"); \
210 assemble_name (asm_out_file, a); \
211 fprintf (asm_out_file, SDB_DELIM); } while (0)
212 #endif
213
214 #ifndef PUT_SDB_BLOCK_START
215 #define PUT_SDB_BLOCK_START(LINE) \
216 fprintf (asm_out_file, \
217 "\t.def\t.bb%s\t.val\t.%s\t.scl\t100%s\t.line\t%d%s\t.endef\n", \
218 SDB_DELIM, SDB_DELIM, SDB_DELIM, (LINE), SDB_DELIM)
219 #endif
220
221 #ifndef PUT_SDB_BLOCK_END
222 #define PUT_SDB_BLOCK_END(LINE) \
223 fprintf (asm_out_file, \
224 "\t.def\t.eb%s\t.val\t.%s\t.scl\t100%s\t.line\t%d%s\t.endef\n", \
225 SDB_DELIM, SDB_DELIM, SDB_DELIM, (LINE), SDB_DELIM)
226 #endif
227
228 #ifndef PUT_SDB_FUNCTION_START
229 #define PUT_SDB_FUNCTION_START(LINE) \
230 fprintf (asm_out_file, \
231 "\t.def\t.bf%s\t.val\t.%s\t.scl\t101%s\t.line\t%d%s\t.endef\n", \
232 SDB_DELIM, SDB_DELIM, SDB_DELIM, (LINE), SDB_DELIM)
233 #endif
234
235 #ifndef PUT_SDB_FUNCTION_END
236 #define PUT_SDB_FUNCTION_END(LINE) \
237 fprintf (asm_out_file, \
238 "\t.def\t.ef%s\t.val\t.%s\t.scl\t101%s\t.line\t%d%s\t.endef\n", \
239 SDB_DELIM, SDB_DELIM, SDB_DELIM, (LINE), SDB_DELIM)
240 #endif
241
242 #ifndef PUT_SDB_EPILOGUE_END
243 #define PUT_SDB_EPILOGUE_END(NAME) \
244 do { fprintf (asm_out_file, "\t.def\t"); \
245 assemble_name (asm_out_file, NAME); \
246 fprintf (asm_out_file, \
247 "%s\t.val\t.%s\t.scl\t-1%s\t.endef\n", \
248 SDB_DELIM, SDB_DELIM, SDB_DELIM); } while (0)
249 #endif
250
251 #ifndef SDB_GENERATE_FAKE
252 #define SDB_GENERATE_FAKE(BUFFER, NUMBER) \
253 sprintf ((BUFFER), ".%dfake", (NUMBER));
254 #endif
255
256 /* Return the sdb tag identifier string for TYPE
257 if TYPE has already been defined; otherwise return a null pointer. */
258
259 #define KNOWN_TYPE_TAG(type) TYPE_SYMTAB_POINTER (type)
260
261 /* Set the sdb tag identifier string for TYPE to NAME. */
262
263 #define SET_KNOWN_TYPE_TAG(TYPE, NAME) \
264 TYPE_SYMTAB_POINTER (TYPE) = (NAME)
265
266 /* Return the name (a string) of the struct, union or enum tag
267 described by the TREE_LIST node LINK. This is 0 for an anonymous one. */
268
269 #define TAG_NAME(link) \
270 (((link) && TREE_PURPOSE ((link)) \
271 && IDENTIFIER_POINTER (TREE_PURPOSE ((link)))) \
272 ? IDENTIFIER_POINTER (TREE_PURPOSE ((link))) : (char *) 0)
273
274 /* Ensure we don't output a negative line number. */
275 #define MAKE_LINE_SAFE(line) \
276 if (line <= sdb_begin_function_line) line = sdb_begin_function_line + 1
277
278 /* Perform linker optimization of merging header file definitions together
279 for targets with MIPS_DEBUGGING_INFO defined. This won't work without a
280 post 960826 version of GAS. Nothing breaks with earlier versions of GAS,
281 the optimization just won't be done. The native assembler already has the
282 necessary support. */
283
284 #ifdef MIPS_DEBUGGING_INFO
285
286 #ifndef PUT_SDB_SRC_FILE
287 #define PUT_SDB_SRC_FILE(FILENAME) \
288 output_file_directive (asm_out_file, (FILENAME))
289 #endif
290
291 /* ECOFF linkers have an optimization that does the same kind of thing as
292 N_BINCL/E_INCL in stabs: eliminate duplicate debug information in the
293 executable. To achieve this, GCC must output a .file for each file
294 name change. */
295
296 /* This is a stack of input files. */
297
298 struct sdb_file
299 {
300 struct sdb_file *next;
301 const char *name;
302 };
303
304 /* This is the top of the stack. */
305
306 static struct sdb_file *current_file;
307
308 #endif /* MIPS_DEBUGGING_INFO */
309 \f
310 /* Set up for SDB output at the start of compilation. */
311
312 void
313 sdbout_init (asm_file, input_file_name, syms)
314 FILE *asm_file ATTRIBUTE_UNUSED;
315 const char *input_file_name ATTRIBUTE_UNUSED;
316 tree syms ATTRIBUTE_UNUSED;
317 {
318 #ifdef MIPS_DEBUGGING_INFO
319 current_file = (struct sdb_file *) xmalloc (sizeof *current_file);
320 current_file->next = NULL;
321 current_file->name = input_file_name;
322 #endif
323
324 #ifdef RMS_QUICK_HACK_1
325 tree t;
326 for (t = syms; t; t = TREE_CHAIN (t))
327 if (DECL_NAME (t) && IDENTIFIER_POINTER (DECL_NAME (t)) != 0
328 && !strcmp (IDENTIFIER_POINTER (DECL_NAME (t)), "__vtbl_ptr_type"))
329 sdbout_symbol (t, 0);
330 #endif
331 }
332
333 #if 0
334
335 /* return the tag identifier for type
336 */
337
338 char *
339 tag_of_ru_type (type,link)
340 tree type,link;
341 {
342 if (TYPE_SYMTAB_ADDRESS (type))
343 return TYPE_SYMTAB_ADDRESS (type);
344 if (link && TREE_PURPOSE (link)
345 && IDENTIFIER_POINTER (TREE_PURPOSE (link)))
346 TYPE_SYMTAB_ADDRESS (type) = IDENTIFIER_POINTER (TREE_PURPOSE (link));
347 else
348 return (char *) TYPE_SYMTAB_ADDRESS (type);
349 }
350 #endif
351
352 /* Return a unique string to name an anonymous type. */
353
354 static char *
355 gen_fake_label ()
356 {
357 char label[10];
358 char *labelstr;
359 SDB_GENERATE_FAKE (label, unnamed_struct_number);
360 unnamed_struct_number++;
361 labelstr = (char *) permalloc (strlen (label) + 1);
362 strcpy (labelstr, label);
363 return labelstr;
364 }
365 \f
366 /* Return the number which describes TYPE for SDB.
367 For pointers, etc., this function is recursive.
368 Each record, union or enumeral type must already have had a
369 tag number output. */
370
371 /* The number is given by d6d5d4d3d2d1bbbb
372 where bbbb is 4 bit basic type, and di indicate one of notype,ptr,fn,array.
373 Thus, char *foo () has bbbb=T_CHAR
374 d1=D_FCN
375 d2=D_PTR
376 N_BTMASK= 017 1111 basic type field.
377 N_TSHIFT= 2 derived type shift
378 N_BTSHFT= 4 Basic type shift */
379
380 /* Produce the number that describes a pointer, function or array type.
381 PREV is the number describing the target, value or element type.
382 DT_type describes how to transform that type. */
383 #define PUSH_DERIVED_LEVEL(DT_type,PREV) \
384 ((((PREV) & ~(int)N_BTMASK) << (int)N_TSHIFT) \
385 | ((int)DT_type << (int)N_BTSHFT) \
386 | ((PREV) & (int)N_BTMASK))
387
388 /* Number of elements used in sdb_dims. */
389 static int sdb_n_dims = 0;
390
391 /* Table of array dimensions of current type. */
392 static int sdb_dims[SDB_MAX_DIM];
393
394 /* Size of outermost array currently being processed. */
395 static int sdb_type_size = -1;
396
397 static int
398 plain_type (type)
399 tree type;
400 {
401 int val = plain_type_1 (type, 0);
402
403 /* If we have already saved up some array dimensions, print them now. */
404 if (sdb_n_dims > 0)
405 {
406 int i;
407 PUT_SDB_START_DIM;
408 for (i = sdb_n_dims - 1; i > 0; i--)
409 PUT_SDB_NEXT_DIM (sdb_dims[i]);
410 PUT_SDB_LAST_DIM (sdb_dims[0]);
411 sdb_n_dims = 0;
412
413 sdb_type_size = int_size_in_bytes (type);
414 /* Don't kill sdb if type is not laid out or has variable size. */
415 if (sdb_type_size < 0)
416 sdb_type_size = 0;
417 }
418 /* If we have computed the size of an array containing this type,
419 print it now. */
420 if (sdb_type_size >= 0)
421 {
422 PUT_SDB_SIZE (sdb_type_size);
423 sdb_type_size = -1;
424 }
425 return val;
426 }
427
428 static int
429 template_name_p (name)
430 tree name;
431 {
432 register const char *ptr = IDENTIFIER_POINTER (name);
433 while (*ptr && *ptr != '<')
434 ptr++;
435
436 return *ptr != '\0';
437 }
438
439 static void
440 sdbout_record_type_name (type)
441 tree type;
442 {
443 const char *name = 0;
444 int no_name;
445
446 if (KNOWN_TYPE_TAG (type))
447 return;
448
449 if (TYPE_NAME (type) != 0)
450 {
451 tree t = 0;
452 /* Find the IDENTIFIER_NODE for the type name. */
453 if (TREE_CODE (TYPE_NAME (type)) == IDENTIFIER_NODE)
454 t = TYPE_NAME (type);
455 else if (TREE_CODE (TYPE_NAME (type)) == TYPE_DECL)
456 {
457 t = DECL_NAME (TYPE_NAME (type));
458 /* The DECL_NAME for templates includes "<>", which breaks
459 most assemblers. Use its assembler name instead, which
460 has been mangled into being safe. */
461 if (t && template_name_p (t))
462 t = DECL_ASSEMBLER_NAME (TYPE_NAME (type));
463 }
464
465 /* Now get the name as a string, or invent one. */
466 if (t != NULL_TREE)
467 name = IDENTIFIER_POINTER (t);
468 }
469
470 no_name = (name == 0 || *name == 0);
471 if (no_name)
472 name = gen_fake_label ();
473
474 SET_KNOWN_TYPE_TAG (type, name);
475 #ifdef SDB_ALLOW_FORWARD_REFERENCES
476 if (no_name)
477 sdbout_queue_anonymous_type (type);
478 #endif
479 }
480
481 /* Return the .type value for type TYPE.
482
483 LEVEL indicates how many levels deep we have recursed into the type.
484 The SDB debug format can only represent 6 derived levels of types.
485 After that, we must output inaccurate debug info. We deliberately
486 stop before the 7th level, so that ADA recursive types will not give an
487 infinite loop. */
488
489 static int
490 plain_type_1 (type, level)
491 tree type;
492 int level;
493 {
494 if (type == 0)
495 type = void_type_node;
496 else if (type == error_mark_node)
497 type = integer_type_node;
498 else
499 type = TYPE_MAIN_VARIANT (type);
500
501 switch (TREE_CODE (type))
502 {
503 case VOID_TYPE:
504 return T_VOID;
505 case BOOLEAN_TYPE:
506 case INTEGER_TYPE:
507 {
508 int size = int_size_in_bytes (type) * BITS_PER_UNIT;
509
510 /* Carefully distinguish all the standard types of C,
511 without messing up if the language is not C.
512 Note that we check only for the names that contain spaces;
513 other names might occur by coincidence in other languages. */
514 if (TYPE_NAME (type) != 0
515 && TREE_CODE (TYPE_NAME (type)) == TYPE_DECL
516 && DECL_NAME (TYPE_NAME (type)) != 0
517 && TREE_CODE (DECL_NAME (TYPE_NAME (type))) == IDENTIFIER_NODE)
518 {
519 const char *name
520 = IDENTIFIER_POINTER (DECL_NAME (TYPE_NAME (type)));
521
522 if (!strcmp (name, "char"))
523 return T_CHAR;
524 if (!strcmp (name, "unsigned char"))
525 return T_UCHAR;
526 if (!strcmp (name, "signed char"))
527 return T_CHAR;
528 if (!strcmp (name, "int"))
529 return T_INT;
530 if (!strcmp (name, "unsigned int"))
531 return T_UINT;
532 if (!strcmp (name, "short int"))
533 return T_SHORT;
534 if (!strcmp (name, "short unsigned int"))
535 return T_USHORT;
536 if (!strcmp (name, "long int"))
537 return T_LONG;
538 if (!strcmp (name, "long unsigned int"))
539 return T_ULONG;
540 }
541
542 if (size == INT_TYPE_SIZE)
543 return (TREE_UNSIGNED (type) ? T_UINT : T_INT);
544 if (size == CHAR_TYPE_SIZE)
545 return (TREE_UNSIGNED (type) ? T_UCHAR : T_CHAR);
546 if (size == SHORT_TYPE_SIZE)
547 return (TREE_UNSIGNED (type) ? T_USHORT : T_SHORT);
548 if (size == LONG_TYPE_SIZE)
549 return (TREE_UNSIGNED (type) ? T_ULONG : T_LONG);
550 if (size == LONG_LONG_TYPE_SIZE) /* better than nothing */
551 return (TREE_UNSIGNED (type) ? T_ULONG : T_LONG);
552 return 0;
553 }
554
555 case REAL_TYPE:
556 {
557 int precision = TYPE_PRECISION (type);
558 if (precision == FLOAT_TYPE_SIZE)
559 return T_FLOAT;
560 if (precision == DOUBLE_TYPE_SIZE)
561 return T_DOUBLE;
562 #ifdef EXTENDED_SDB_BASIC_TYPES
563 if (precision == LONG_DOUBLE_TYPE_SIZE)
564 return T_LNGDBL;
565 #else
566 if (precision == LONG_DOUBLE_TYPE_SIZE)
567 return T_DOUBLE; /* better than nothing */
568 #endif
569 return 0;
570 }
571
572 case ARRAY_TYPE:
573 {
574 int m;
575 if (level >= 6)
576 return T_VOID;
577 else
578 m = plain_type_1 (TREE_TYPE (type), level+1);
579 if (sdb_n_dims < SDB_MAX_DIM)
580 sdb_dims[sdb_n_dims++]
581 = (TYPE_DOMAIN (type)
582 && TYPE_MIN_VALUE (TYPE_DOMAIN (type)) != 0
583 && TYPE_MAX_VALUE (TYPE_DOMAIN (type)) != 0
584 && host_integerp (TYPE_MAX_VALUE (TYPE_DOMAIN (type)), 0)
585 && host_integerp (TYPE_MIN_VALUE (TYPE_DOMAIN (type)), 0)
586 ? (tree_low_cst (TYPE_MAX_VALUE (TYPE_DOMAIN (type)), 0)
587 - tree_low_cst (TYPE_MIN_VALUE (TYPE_DOMAIN (type)), 0) + 1)
588 : 0);
589
590 return PUSH_DERIVED_LEVEL (DT_ARY, m);
591 }
592
593 case RECORD_TYPE:
594 case UNION_TYPE:
595 case QUAL_UNION_TYPE:
596 case ENUMERAL_TYPE:
597 {
598 char *tag;
599 #ifdef SDB_ALLOW_FORWARD_REFERENCES
600 sdbout_record_type_name (type);
601 #endif
602 #ifndef SDB_ALLOW_UNKNOWN_REFERENCES
603 if ((TREE_ASM_WRITTEN (type) && KNOWN_TYPE_TAG (type) != 0)
604 #ifdef SDB_ALLOW_FORWARD_REFERENCES
605 || TYPE_MODE (type) != VOIDmode
606 #endif
607 )
608 #endif
609 {
610 /* Output the referenced structure tag name
611 only if the .def has already been finished.
612 At least on 386, the Unix assembler
613 cannot handle forward references to tags. */
614 /* But the 88100, it requires them, sigh... */
615 /* And the MIPS requires unknown refs as well... */
616 tag = KNOWN_TYPE_TAG (type);
617 PUT_SDB_TAG (tag);
618 /* These 3 lines used to follow the close brace.
619 However, a size of 0 without a tag implies a tag of 0,
620 so if we don't know a tag, we can't mention the size. */
621 sdb_type_size = int_size_in_bytes (type);
622 if (sdb_type_size < 0)
623 sdb_type_size = 0;
624 }
625 return ((TREE_CODE (type) == RECORD_TYPE) ? T_STRUCT
626 : (TREE_CODE (type) == UNION_TYPE) ? T_UNION
627 : (TREE_CODE (type) == QUAL_UNION_TYPE) ? T_UNION
628 : T_ENUM);
629 }
630 case POINTER_TYPE:
631 case REFERENCE_TYPE:
632 {
633 int m;
634 if (level >= 6)
635 return T_VOID;
636 else
637 m = plain_type_1 (TREE_TYPE (type), level+1);
638 return PUSH_DERIVED_LEVEL (DT_PTR, m);
639 }
640 case FUNCTION_TYPE:
641 case METHOD_TYPE:
642 {
643 int m;
644 if (level >= 6)
645 return T_VOID;
646 else
647 m = plain_type_1 (TREE_TYPE (type), level+1);
648 return PUSH_DERIVED_LEVEL (DT_FCN, m);
649 }
650 default:
651 return 0;
652 }
653 }
654 \f
655 /* Output the symbols defined in block number DO_BLOCK.
656
657 This function works by walking the tree structure of blocks,
658 counting blocks until it finds the desired block. */
659
660 static int do_block = 0;
661
662 static void
663 sdbout_block (block)
664 register tree block;
665 {
666 while (block)
667 {
668 /* Ignore blocks never expanded or otherwise marked as real. */
669 if (TREE_USED (block))
670 {
671 /* When we reach the specified block, output its symbols. */
672 if (BLOCK_NUMBER (block) == do_block)
673 sdbout_syms (BLOCK_VARS (block));
674
675 /* If we are past the specified block, stop the scan. */
676 if (BLOCK_NUMBER (block) > do_block)
677 return;
678
679 /* Scan the blocks within this block. */
680 sdbout_block (BLOCK_SUBBLOCKS (block));
681 }
682
683 block = BLOCK_CHAIN (block);
684 }
685 }
686 \f
687 /* Call sdbout_symbol on each decl in the chain SYMS. */
688
689 static void
690 sdbout_syms (syms)
691 tree syms;
692 {
693 while (syms)
694 {
695 if (TREE_CODE (syms) != LABEL_DECL)
696 sdbout_symbol (syms, 1);
697 syms = TREE_CHAIN (syms);
698 }
699 }
700
701 /* Output SDB information for a symbol described by DECL.
702 LOCAL is nonzero if the symbol is not file-scope. */
703
704 void
705 sdbout_symbol (decl, local)
706 tree decl;
707 int local;
708 {
709 tree type = TREE_TYPE (decl);
710 tree context = NULL_TREE;
711 rtx value;
712 int regno = -1;
713 const char *name;
714
715 sdbout_one_type (type);
716
717 #if 0 /* This loses when functions are marked to be ignored,
718 which happens in the C++ front end. */
719 if (DECL_IGNORED_P (decl))
720 return;
721 #endif
722
723 switch (TREE_CODE (decl))
724 {
725 case CONST_DECL:
726 /* Enum values are defined by defining the enum type. */
727 return;
728
729 case FUNCTION_DECL:
730 /* Don't mention a nested function under its parent. */
731 context = decl_function_context (decl);
732 if (context == current_function_decl)
733 return;
734 /* Check DECL_INITIAL to distinguish declarations from definitions.
735 Don't output debug info here for declarations; they will have
736 a DECL_INITIAL value of 0. */
737 if (! DECL_INITIAL (decl))
738 return;
739 if (GET_CODE (DECL_RTL (decl)) != MEM
740 || GET_CODE (XEXP (DECL_RTL (decl), 0)) != SYMBOL_REF)
741 return;
742 PUT_SDB_DEF (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)));
743 PUT_SDB_VAL (XEXP (DECL_RTL (decl), 0));
744 PUT_SDB_SCL (TREE_PUBLIC (decl) ? C_EXT : C_STAT);
745 break;
746
747 case TYPE_DECL:
748 /* Done with tagged types. */
749 if (DECL_NAME (decl) == 0)
750 return;
751 if (DECL_IGNORED_P (decl))
752 return;
753
754 /* Output typedef name. */
755 if (template_name_p (DECL_NAME (decl)))
756 PUT_SDB_DEF (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)));
757 else
758 PUT_SDB_DEF (IDENTIFIER_POINTER (DECL_NAME (decl)));
759 PUT_SDB_SCL (C_TPDEF);
760 break;
761
762 case PARM_DECL:
763 /* Parm decls go in their own separate chains
764 and are output by sdbout_reg_parms and sdbout_parms. */
765 abort ();
766
767 case VAR_DECL:
768 /* Don't mention a variable that is external.
769 Let the file that defines it describe it. */
770 if (DECL_EXTERNAL (decl))
771 return;
772
773 /* Ignore __FUNCTION__, etc. */
774 if (DECL_IGNORED_P (decl))
775 return;
776
777 /* If there was an error in the declaration, don't dump core
778 if there is no RTL associated with the variable doesn't
779 exist. */
780 if (DECL_RTL (decl) == 0)
781 return;
782
783 DECL_RTL (decl) = eliminate_regs (DECL_RTL (decl), 0, NULL_RTX);
784 #ifdef LEAF_REG_REMAP
785 if (current_function_uses_only_leaf_regs)
786 leaf_renumber_regs_insn (DECL_RTL (decl));
787 #endif
788 value = DECL_RTL (decl);
789
790 /* Don't mention a variable at all
791 if it was completely optimized into nothingness.
792
793 If DECL was from an inline function, then its rtl
794 is not identically the rtl that was used in this
795 particular compilation. */
796 if (GET_CODE (value) == REG)
797 {
798 regno = REGNO (DECL_RTL (decl));
799 if (regno >= FIRST_PSEUDO_REGISTER)
800 return;
801 }
802 else if (GET_CODE (value) == SUBREG)
803 {
804 int offset = 0;
805 while (GET_CODE (value) == SUBREG)
806 {
807 offset += SUBREG_WORD (value);
808 value = SUBREG_REG (value);
809 }
810 if (GET_CODE (value) == REG)
811 {
812 regno = REGNO (value);
813 if (regno >= FIRST_PSEUDO_REGISTER)
814 return;
815 regno += offset;
816 }
817 alter_subreg (DECL_RTL (decl));
818 value = DECL_RTL (decl);
819 }
820 /* Don't output anything if an auto variable
821 gets RTL that is static.
822 GAS version 2.2 can't handle such output. */
823 else if (GET_CODE (value) == MEM && CONSTANT_P (XEXP (value, 0))
824 && ! TREE_STATIC (decl))
825 return;
826
827 /* Emit any structure, union, or enum type that has not been output.
828 This occurs for tag-less structs (et al) used to declare variables
829 within functions. */
830 if (TREE_CODE (type) == ENUMERAL_TYPE
831 || TREE_CODE (type) == RECORD_TYPE
832 || TREE_CODE (type) == UNION_TYPE
833 || TREE_CODE (type) == QUAL_UNION_TYPE)
834 {
835 if (COMPLETE_TYPE_P (type) /* not a forward reference */
836 && KNOWN_TYPE_TAG (type) == 0) /* not yet declared */
837 sdbout_one_type (type);
838 }
839
840 /* Defer SDB information for top-level initialized variables! */
841 if (! local
842 && GET_CODE (value) == MEM
843 && DECL_INITIAL (decl))
844 return;
845
846 /* C++ in 2.3 makes nameless symbols. That will be fixed later.
847 For now, avoid crashing. */
848 if (DECL_NAME (decl) == NULL_TREE)
849 return;
850
851 /* Record the name for, starting a symtab entry. */
852 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl));
853
854 if (GET_CODE (value) == MEM
855 && GET_CODE (XEXP (value, 0)) == SYMBOL_REF)
856 {
857 PUT_SDB_DEF (name);
858 if (TREE_PUBLIC (decl))
859 {
860 PUT_SDB_VAL (XEXP (value, 0));
861 PUT_SDB_SCL (C_EXT);
862 }
863 else
864 {
865 PUT_SDB_VAL (XEXP (value, 0));
866 PUT_SDB_SCL (C_STAT);
867 }
868 }
869 else if (regno >= 0)
870 {
871 PUT_SDB_DEF (name);
872 PUT_SDB_INT_VAL (DBX_REGISTER_NUMBER (regno));
873 PUT_SDB_SCL (C_REG);
874 }
875 else if (GET_CODE (value) == MEM
876 && (GET_CODE (XEXP (value, 0)) == MEM
877 || (GET_CODE (XEXP (value, 0)) == REG
878 && REGNO (XEXP (value, 0)) != HARD_FRAME_POINTER_REGNUM
879 && REGNO (XEXP (value, 0)) != STACK_POINTER_REGNUM)))
880 /* If the value is indirect by memory or by a register
881 that isn't the frame pointer
882 then it means the object is variable-sized and address through
883 that register or stack slot. COFF has no way to represent this
884 so all we can do is output the variable as a pointer. */
885 {
886 PUT_SDB_DEF (name);
887 if (GET_CODE (XEXP (value, 0)) == REG)
888 {
889 PUT_SDB_INT_VAL (DBX_REGISTER_NUMBER (REGNO (XEXP (value, 0))));
890 PUT_SDB_SCL (C_REG);
891 }
892 else
893 {
894 /* DECL_RTL looks like (MEM (MEM (PLUS (REG...)
895 (CONST_INT...)))).
896 We want the value of that CONST_INT. */
897 /* Encore compiler hates a newline in a macro arg, it seems. */
898 PUT_SDB_INT_VAL (DEBUGGER_AUTO_OFFSET
899 (XEXP (XEXP (value, 0), 0)));
900 PUT_SDB_SCL (C_AUTO);
901 }
902
903 /* Effectively do build_pointer_type, but don't cache this type,
904 since it might be temporary whereas the type it points to
905 might have been saved for inlining. */
906 /* Don't use REFERENCE_TYPE because dbx can't handle that. */
907 type = make_node (POINTER_TYPE);
908 TREE_TYPE (type) = TREE_TYPE (decl);
909 }
910 else if (GET_CODE (value) == MEM
911 && ((GET_CODE (XEXP (value, 0)) == PLUS
912 && GET_CODE (XEXP (XEXP (value, 0), 0)) == REG
913 && GET_CODE (XEXP (XEXP (value, 0), 1)) == CONST_INT)
914 /* This is for variables which are at offset zero from
915 the frame pointer. This happens on the Alpha.
916 Non-frame pointer registers are excluded above. */
917 || (GET_CODE (XEXP (value, 0)) == REG)))
918 {
919 /* DECL_RTL looks like (MEM (PLUS (REG...) (CONST_INT...)))
920 or (MEM (REG...)). We want the value of that CONST_INT
921 or zero. */
922 PUT_SDB_DEF (name);
923 PUT_SDB_INT_VAL (DEBUGGER_AUTO_OFFSET (XEXP (value, 0)));
924 PUT_SDB_SCL (C_AUTO);
925 }
926 else if (GET_CODE (value) == MEM && GET_CODE (XEXP (value, 0)) == CONST)
927 {
928 /* Handle an obscure case which can arise when optimizing and
929 when there are few available registers. (This is *always*
930 the case for i386/i486 targets). The DECL_RTL looks like
931 (MEM (CONST ...)) even though this variable is a local `auto'
932 or a local `register' variable. In effect, what has happened
933 is that the reload pass has seen that all assignments and
934 references for one such a local variable can be replaced by
935 equivalent assignments and references to some static storage
936 variable, thereby avoiding the need for a register. In such
937 cases we're forced to lie to debuggers and tell them that
938 this variable was itself `static'. */
939 PUT_SDB_DEF (name);
940 PUT_SDB_VAL (XEXP (XEXP (value, 0), 0));
941 PUT_SDB_SCL (C_STAT);
942 }
943 else
944 {
945 /* It is something we don't know how to represent for SDB. */
946 return;
947 }
948 break;
949
950 default:
951 break;
952 }
953 PUT_SDB_TYPE (plain_type (type));
954 PUT_SDB_ENDEF;
955 }
956 \f
957 /* Output SDB information for a top-level initialized variable
958 that has been delayed. */
959
960 void
961 sdbout_toplevel_data (decl)
962 tree decl;
963 {
964 tree type = TREE_TYPE (decl);
965
966 if (DECL_IGNORED_P (decl))
967 return;
968
969 if (! (TREE_CODE (decl) == VAR_DECL
970 && GET_CODE (DECL_RTL (decl)) == MEM
971 && DECL_INITIAL (decl)))
972 abort ();
973
974 PUT_SDB_DEF (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (decl)));
975 PUT_SDB_VAL (XEXP (DECL_RTL (decl), 0));
976 if (TREE_PUBLIC (decl))
977 {
978 PUT_SDB_SCL (C_EXT);
979 }
980 else
981 {
982 PUT_SDB_SCL (C_STAT);
983 }
984 PUT_SDB_TYPE (plain_type (type));
985 PUT_SDB_ENDEF;
986 }
987 \f
988 #ifdef SDB_ALLOW_FORWARD_REFERENCES
989
990 /* Machinery to record and output anonymous types. */
991
992 static tree anonymous_types;
993
994 static void
995 sdbout_queue_anonymous_type (type)
996 tree type;
997 {
998 anonymous_types = tree_cons (NULL_TREE, type, anonymous_types);
999 }
1000
1001 static void
1002 sdbout_dequeue_anonymous_types ()
1003 {
1004 register tree types, link;
1005
1006 while (anonymous_types)
1007 {
1008 types = nreverse (anonymous_types);
1009 anonymous_types = NULL_TREE;
1010
1011 for (link = types; link; link = TREE_CHAIN (link))
1012 {
1013 register tree type = TREE_VALUE (link);
1014
1015 if (type && ! TREE_ASM_WRITTEN (type))
1016 sdbout_one_type (type);
1017 }
1018 }
1019 }
1020
1021 #endif
1022 \f
1023 /* Given a chain of ..._TYPE nodes, all of which have names,
1024 output definitions of those names, as typedefs. */
1025
1026 void
1027 sdbout_types (types)
1028 register tree types;
1029 {
1030 register tree link;
1031
1032 for (link = types; link; link = TREE_CHAIN (link))
1033 sdbout_one_type (link);
1034
1035 #ifdef SDB_ALLOW_FORWARD_REFERENCES
1036 sdbout_dequeue_anonymous_types ();
1037 #endif
1038 }
1039
1040 static void
1041 sdbout_type (type)
1042 tree type;
1043 {
1044 if (type == error_mark_node)
1045 type = integer_type_node;
1046 PUT_SDB_TYPE (plain_type (type));
1047 }
1048
1049 /* Output types of the fields of type TYPE, if they are structs.
1050
1051 Formerly did not chase through pointer types, since that could be circular.
1052 They must come before TYPE, since forward refs are not allowed.
1053 Now james@bigtex.cactus.org says to try them. */
1054
1055 static void
1056 sdbout_field_types (type)
1057 tree type;
1058 {
1059 tree tail;
1060
1061 for (tail = TYPE_FIELDS (type); tail; tail = TREE_CHAIN (tail))
1062 /* This condition should match the one for emitting the actual members
1063 below. */
1064 if (TREE_CODE (tail) == FIELD_DECL
1065 && DECL_NAME (tail) != 0
1066 && ! host_integerp (DECL_SIZE (tail), 1)
1067 && ! host_integerp (bit_position (tail), 0))
1068 {
1069 if (POINTER_TYPE_P (TREE_TYPE (tail)))
1070 sdbout_one_type (TREE_TYPE (TREE_TYPE (tail)));
1071 else
1072 sdbout_one_type (TREE_TYPE (tail));
1073 }
1074 }
1075
1076 /* Use this to put out the top level defined record and union types
1077 for later reference. If this is a struct with a name, then put that
1078 name out. Other unnamed structs will have .xxfake labels generated so
1079 that they may be referred to later.
1080 The label will be stored in the KNOWN_TYPE_TAG slot of a type.
1081 It may NOT be called recursively. */
1082
1083 static void
1084 sdbout_one_type (type)
1085 tree type;
1086 {
1087 if (current_function_decl != NULL_TREE
1088 && DECL_SECTION_NAME (current_function_decl) != NULL_TREE)
1089 ; /* Don't change section amid function. */
1090 else
1091 text_section ();
1092
1093 switch (TREE_CODE (type))
1094 {
1095 case RECORD_TYPE:
1096 case UNION_TYPE:
1097 case QUAL_UNION_TYPE:
1098 case ENUMERAL_TYPE:
1099 type = TYPE_MAIN_VARIANT (type);
1100 /* Don't output a type twice. */
1101 if (TREE_ASM_WRITTEN (type))
1102 /* James said test TREE_ASM_BEING_WRITTEN here. */
1103 return;
1104
1105 /* Output nothing if type is not yet defined. */
1106 if (!COMPLETE_TYPE_P (type))
1107 return;
1108
1109 TREE_ASM_WRITTEN (type) = 1;
1110 #if 1
1111 /* This is reputed to cause trouble with the following case,
1112 but perhaps checking TYPE_SIZE above will fix it. */
1113
1114 /* Here is a test case:
1115
1116 struct foo {
1117 struct badstr *bbb;
1118 } forwardref;
1119
1120 typedef struct intermediate {
1121 int aaaa;
1122 } intermediate_ref;
1123
1124 typedef struct badstr {
1125 int ccccc;
1126 } badtype; */
1127
1128 #if 0
1129 TREE_ASM_BEING_WRITTEN (type) = 1;
1130 #endif
1131 /* This change, which ought to make better output,
1132 used to make the COFF assembler unhappy.
1133 Changes involving KNOWN_TYPE_TAG may fix the problem. */
1134 /* Before really doing anything, output types we want to refer to. */
1135 /* Note that in version 1 the following two lines
1136 are not used if forward references are in use. */
1137 if (TREE_CODE (type) != ENUMERAL_TYPE)
1138 sdbout_field_types (type);
1139 #if 0
1140 TREE_ASM_WRITTEN (type) = 1;
1141 #endif
1142 #endif
1143
1144 /* Output a structure type. */
1145 {
1146 int size = int_size_in_bytes (type);
1147 int member_scl = 0;
1148 tree tem;
1149 int i, n_baseclasses = 0;
1150
1151 /* Record the type tag, but not in its permanent place just yet. */
1152 sdbout_record_type_name (type);
1153
1154 PUT_SDB_DEF (KNOWN_TYPE_TAG (type));
1155
1156 switch (TREE_CODE (type))
1157 {
1158 case UNION_TYPE:
1159 case QUAL_UNION_TYPE:
1160 PUT_SDB_SCL (C_UNTAG);
1161 PUT_SDB_TYPE (T_UNION);
1162 member_scl = C_MOU;
1163 break;
1164
1165 case RECORD_TYPE:
1166 PUT_SDB_SCL (C_STRTAG);
1167 PUT_SDB_TYPE (T_STRUCT);
1168 member_scl = C_MOS;
1169 break;
1170
1171 case ENUMERAL_TYPE:
1172 PUT_SDB_SCL (C_ENTAG);
1173 PUT_SDB_TYPE (T_ENUM);
1174 member_scl = C_MOE;
1175 break;
1176
1177 default:
1178 break;
1179 }
1180
1181 PUT_SDB_SIZE (size);
1182 PUT_SDB_ENDEF;
1183
1184 /* Print out the base class information with fields
1185 named after the types they hold. */
1186 /* This is only relevent to aggregate types. TYPE_BINFO is used
1187 for other purposes in an ENUMERAL_TYPE, so we must exclude that
1188 case. */
1189 if (TREE_CODE (type) != ENUMERAL_TYPE)
1190 {
1191 if (TYPE_BINFO (type)
1192 && TYPE_BINFO_BASETYPES (type))
1193 n_baseclasses = TREE_VEC_LENGTH (TYPE_BINFO_BASETYPES (type));
1194 for (i = 0; i < n_baseclasses; i++)
1195 {
1196 tree child = TREE_VEC_ELT (BINFO_BASETYPES (TYPE_BINFO (type)),
1197 i);
1198 tree child_type = BINFO_TYPE (child);
1199 tree child_type_name;
1200 if (TYPE_NAME (child_type) == 0)
1201 continue;
1202 if (TREE_CODE (TYPE_NAME (child_type)) == IDENTIFIER_NODE)
1203 child_type_name = TYPE_NAME (child_type);
1204 else if (TREE_CODE (TYPE_NAME (child_type)) == TYPE_DECL)
1205 {
1206 child_type_name = DECL_NAME (TYPE_NAME (child_type));
1207 if (child_type_name && template_name_p (child_type_name))
1208 child_type_name
1209 = DECL_ASSEMBLER_NAME (TYPE_NAME (child_type));
1210 }
1211 else
1212 continue;
1213
1214 CONTIN;
1215 PUT_SDB_DEF (IDENTIFIER_POINTER (child_type_name));
1216 PUT_SDB_INT_VAL (tree_low_cst (BINFO_OFFSET (child), 0));
1217 PUT_SDB_SCL (member_scl);
1218 sdbout_type (BINFO_TYPE (child));
1219 PUT_SDB_ENDEF;
1220 }
1221 }
1222
1223 /* output the individual fields */
1224
1225 if (TREE_CODE (type) == ENUMERAL_TYPE)
1226 {
1227 for (tem = TYPE_FIELDS (type); tem; tem = TREE_CHAIN (tem))
1228 if (host_integerp (TREE_VALUE (tem), 0))
1229 {
1230 PUT_SDB_DEF (IDENTIFIER_POINTER (TREE_PURPOSE (tem)));
1231 PUT_SDB_INT_VAL (tree_low_cst (TREE_VALUE (tem), 0));
1232 PUT_SDB_SCL (C_MOE);
1233 PUT_SDB_TYPE (T_MOE);
1234 PUT_SDB_ENDEF;
1235 }
1236 }
1237 else /* record or union type */
1238 for (tem = TYPE_FIELDS (type); tem; tem = TREE_CHAIN (tem))
1239 /* Output the name, type, position (in bits), size (in bits)
1240 of each field. */
1241
1242 /* Omit here the nameless fields that are used to skip bits.
1243 Also omit fields with variable size or position.
1244 Also omit non FIELD_DECL nodes that GNU C++ may put here. */
1245 if (TREE_CODE (tem) == FIELD_DECL
1246 && DECL_NAME (tem) != 0
1247 && host_integerp (DECL_SIZE (tem), 1)
1248 && host_integerp (bit_position (tem), 0))
1249 {
1250 const char *name;
1251
1252 CONTIN;
1253 name = IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (tem));
1254 PUT_SDB_DEF (name);
1255 if (DECL_BIT_FIELD_TYPE (tem))
1256 {
1257 PUT_SDB_INT_VAL (int_bit_position (tem));
1258 PUT_SDB_SCL (C_FIELD);
1259 sdbout_type (DECL_BIT_FIELD_TYPE (tem));
1260 PUT_SDB_SIZE (tree_low_cst (DECL_SIZE (tem), 1));
1261 }
1262 else
1263 {
1264 PUT_SDB_INT_VAL (int_bit_position (tem) / BITS_PER_UNIT);
1265 PUT_SDB_SCL (member_scl);
1266 sdbout_type (TREE_TYPE (tem));
1267 }
1268 PUT_SDB_ENDEF;
1269 }
1270 /* output end of a structure,union, or enumeral definition */
1271
1272 PUT_SDB_PLAIN_DEF ("eos");
1273 PUT_SDB_INT_VAL (size);
1274 PUT_SDB_SCL (C_EOS);
1275 PUT_SDB_TAG (KNOWN_TYPE_TAG (type));
1276 PUT_SDB_SIZE (size);
1277 PUT_SDB_ENDEF;
1278 break;
1279
1280 default:
1281 break;
1282 }
1283 }
1284 }
1285 \f
1286 /* The following two functions output definitions of function parameters.
1287 Each parameter gets a definition locating it in the parameter list.
1288 Each parameter that is a register variable gets a second definition
1289 locating it in the register.
1290
1291 Printing or argument lists in gdb uses the definitions that
1292 locate in the parameter list. But reference to the variable in
1293 expressions uses preferentially the definition as a register. */
1294
1295 /* Output definitions, referring to storage in the parmlist,
1296 of all the parms in PARMS, which is a chain of PARM_DECL nodes. */
1297
1298 static void
1299 sdbout_parms (parms)
1300 tree parms;
1301 {
1302 for (; parms; parms = TREE_CHAIN (parms))
1303 if (DECL_NAME (parms))
1304 {
1305 int current_sym_value = 0;
1306 const char *name = IDENTIFIER_POINTER (DECL_NAME (parms));
1307
1308 if (name == 0 || *name == 0)
1309 name = gen_fake_label ();
1310
1311 /* Perform any necessary register eliminations on the parameter's rtl,
1312 so that the debugging output will be accurate. */
1313 DECL_INCOMING_RTL (parms)
1314 = eliminate_regs (DECL_INCOMING_RTL (parms), 0, NULL_RTX);
1315 DECL_RTL (parms) = eliminate_regs (DECL_RTL (parms), 0, NULL_RTX);
1316
1317 if (PARM_PASSED_IN_MEMORY (parms))
1318 {
1319 rtx addr = XEXP (DECL_INCOMING_RTL (parms), 0);
1320 tree type;
1321
1322 /* ??? Here we assume that the parm address is indexed
1323 off the frame pointer or arg pointer.
1324 If that is not true, we produce meaningless results,
1325 but do not crash. */
1326 if (GET_CODE (addr) == PLUS
1327 && GET_CODE (XEXP (addr, 1)) == CONST_INT)
1328 current_sym_value = INTVAL (XEXP (addr, 1));
1329 else
1330 current_sym_value = 0;
1331
1332 if (GET_CODE (DECL_RTL (parms)) == REG
1333 && REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
1334 type = DECL_ARG_TYPE (parms);
1335 else
1336 {
1337 int original_sym_value = current_sym_value;
1338
1339 /* This is the case where the parm is passed as an int or
1340 double and it is converted to a char, short or float
1341 and stored back in the parmlist. In this case, describe
1342 the parm with the variable's declared type, and adjust
1343 the address if the least significant bytes (which we are
1344 using) are not the first ones. */
1345 if (BYTES_BIG_ENDIAN
1346 && TREE_TYPE (parms) != DECL_ARG_TYPE (parms))
1347 current_sym_value +=
1348 (GET_MODE_SIZE (TYPE_MODE (DECL_ARG_TYPE (parms)))
1349 - GET_MODE_SIZE (GET_MODE (DECL_RTL (parms))));
1350
1351 if (GET_CODE (DECL_RTL (parms)) == MEM
1352 && GET_CODE (XEXP (DECL_RTL (parms), 0)) == PLUS
1353 && (GET_CODE (XEXP (XEXP (DECL_RTL (parms), 0), 1))
1354 == CONST_INT)
1355 && (INTVAL (XEXP (XEXP (DECL_RTL (parms), 0), 1))
1356 == current_sym_value))
1357 type = TREE_TYPE (parms);
1358 else
1359 {
1360 current_sym_value = original_sym_value;
1361 type = DECL_ARG_TYPE (parms);
1362 }
1363 }
1364
1365 PUT_SDB_DEF (name);
1366 PUT_SDB_INT_VAL (DEBUGGER_ARG_OFFSET (current_sym_value, addr));
1367 PUT_SDB_SCL (C_ARG);
1368 PUT_SDB_TYPE (plain_type (type));
1369 PUT_SDB_ENDEF;
1370 }
1371 else if (GET_CODE (DECL_RTL (parms)) == REG)
1372 {
1373 rtx best_rtl;
1374 /* Parm passed in registers and lives in registers or nowhere. */
1375
1376 /* If parm lives in a register, use that register;
1377 pretend the parm was passed there. It would be more consistent
1378 to describe the register where the parm was passed,
1379 but in practice that register usually holds something else. */
1380 if (REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER)
1381 best_rtl = DECL_RTL (parms);
1382 /* If the parm lives nowhere,
1383 use the register where it was passed. */
1384 else
1385 best_rtl = DECL_INCOMING_RTL (parms);
1386
1387 PUT_SDB_DEF (name);
1388 PUT_SDB_INT_VAL (DBX_REGISTER_NUMBER (REGNO (best_rtl)));
1389 PUT_SDB_SCL (C_REGPARM);
1390 PUT_SDB_TYPE (plain_type (TREE_TYPE (parms)));
1391 PUT_SDB_ENDEF;
1392 }
1393 else if (GET_CODE (DECL_RTL (parms)) == MEM
1394 && XEXP (DECL_RTL (parms), 0) != const0_rtx)
1395 {
1396 /* Parm was passed in registers but lives on the stack. */
1397
1398 /* DECL_RTL looks like (MEM (PLUS (REG...) (CONST_INT...))),
1399 in which case we want the value of that CONST_INT,
1400 or (MEM (REG ...)) or (MEM (MEM ...)),
1401 in which case we use a value of zero. */
1402 if (GET_CODE (XEXP (DECL_RTL (parms), 0)) == REG
1403 || GET_CODE (XEXP (DECL_RTL (parms), 0)) == MEM)
1404 current_sym_value = 0;
1405 else
1406 current_sym_value = INTVAL (XEXP (XEXP (DECL_RTL (parms), 0), 1));
1407
1408 /* Again, this assumes the offset is based on the arg pointer. */
1409 PUT_SDB_DEF (name);
1410 PUT_SDB_INT_VAL (DEBUGGER_ARG_OFFSET (current_sym_value,
1411 XEXP (DECL_RTL (parms), 0)));
1412 PUT_SDB_SCL (C_ARG);
1413 PUT_SDB_TYPE (plain_type (TREE_TYPE (parms)));
1414 PUT_SDB_ENDEF;
1415 }
1416 }
1417 }
1418
1419 /* Output definitions for the places where parms live during the function,
1420 when different from where they were passed, when the parms were passed
1421 in memory.
1422
1423 It is not useful to do this for parms passed in registers
1424 that live during the function in different registers, because it is
1425 impossible to look in the passed register for the passed value,
1426 so we use the within-the-function register to begin with.
1427
1428 PARMS is a chain of PARM_DECL nodes. */
1429
1430 static void
1431 sdbout_reg_parms (parms)
1432 tree parms;
1433 {
1434 for (; parms; parms = TREE_CHAIN (parms))
1435 if (DECL_NAME (parms))
1436 {
1437 const char *name = IDENTIFIER_POINTER (DECL_NAME (parms));
1438
1439 /* Report parms that live in registers during the function
1440 but were passed in memory. */
1441 if (GET_CODE (DECL_RTL (parms)) == REG
1442 && REGNO (DECL_RTL (parms)) < FIRST_PSEUDO_REGISTER
1443 && PARM_PASSED_IN_MEMORY (parms))
1444 {
1445 if (name == 0 || *name == 0)
1446 name = gen_fake_label ();
1447 PUT_SDB_DEF (name);
1448 PUT_SDB_INT_VAL (DBX_REGISTER_NUMBER (REGNO (DECL_RTL (parms))));
1449 PUT_SDB_SCL (C_REG);
1450 PUT_SDB_TYPE (plain_type (TREE_TYPE (parms)));
1451 PUT_SDB_ENDEF;
1452 }
1453 /* Report parms that live in memory but not where they were passed. */
1454 else if (GET_CODE (DECL_RTL (parms)) == MEM
1455 && GET_CODE (XEXP (DECL_RTL (parms), 0)) == PLUS
1456 && GET_CODE (XEXP (XEXP (DECL_RTL (parms), 0), 1)) == CONST_INT
1457 && PARM_PASSED_IN_MEMORY (parms)
1458 && ! rtx_equal_p (DECL_RTL (parms), DECL_INCOMING_RTL (parms)))
1459 {
1460 #if 0 /* ??? It is not clear yet what should replace this. */
1461 int offset = DECL_OFFSET (parms) / BITS_PER_UNIT;
1462 /* A parm declared char is really passed as an int,
1463 so it occupies the least significant bytes.
1464 On a big-endian machine those are not the low-numbered ones. */
1465 if (BYTES_BIG_ENDIAN
1466 && offset != -1
1467 && TREE_TYPE (parms) != DECL_ARG_TYPE (parms))
1468 offset += (GET_MODE_SIZE (TYPE_MODE (DECL_ARG_TYPE (parms)))
1469 - GET_MODE_SIZE (GET_MODE (DECL_RTL (parms))));
1470 if (INTVAL (XEXP (XEXP (DECL_RTL (parms), 0), 1)) != offset) {...}
1471 #endif
1472 {
1473 if (name == 0 || *name == 0)
1474 name = gen_fake_label ();
1475 PUT_SDB_DEF (name);
1476 PUT_SDB_INT_VAL (DEBUGGER_AUTO_OFFSET
1477 (XEXP (DECL_RTL (parms), 0)));
1478 PUT_SDB_SCL (C_AUTO);
1479 PUT_SDB_TYPE (plain_type (TREE_TYPE (parms)));
1480 PUT_SDB_ENDEF;
1481 }
1482 }
1483 }
1484 }
1485 \f
1486 /* Describe the beginning of an internal block within a function.
1487 Also output descriptions of variables defined in this block.
1488
1489 N is the number of the block, by order of beginning, counting from 1,
1490 and not counting the outermost (function top-level) block.
1491 The blocks match the BLOCKs in DECL_INITIAL (current_function_decl),
1492 if the count starts at 0 for the outermost one. */
1493
1494 void
1495 sdbout_begin_block (file, line, n)
1496 FILE *file ATTRIBUTE_UNUSED;
1497 int line;
1498 int n;
1499 {
1500 tree decl = current_function_decl;
1501 MAKE_LINE_SAFE (line);
1502
1503 /* The SCO compiler does not emit a separate block for the function level
1504 scope, so we avoid it here also. However, mips ECOFF compilers do emit
1505 a separate block, so we retain it when MIPS_DEBUGGING_INFO is defined. */
1506 #ifndef MIPS_DEBUGGING_INFO
1507 if (n != 1)
1508 #endif
1509 PUT_SDB_BLOCK_START (line - sdb_begin_function_line);
1510
1511 if (n == 1)
1512 {
1513 /* Include the outermost BLOCK's variables in block 1. */
1514 do_block = BLOCK_NUMBER (DECL_INITIAL (decl));
1515 sdbout_block (DECL_INITIAL (decl));
1516 }
1517 /* If -g1, suppress all the internal symbols of functions
1518 except for arguments. */
1519 if (debug_info_level != DINFO_LEVEL_TERSE)
1520 {
1521 do_block = n;
1522 sdbout_block (DECL_INITIAL (decl));
1523 }
1524
1525 #ifdef SDB_ALLOW_FORWARD_REFERENCES
1526 sdbout_dequeue_anonymous_types ();
1527 #endif
1528 }
1529
1530 /* Describe the end line-number of an internal block within a function. */
1531
1532 void
1533 sdbout_end_block (file, line, n)
1534 FILE *file ATTRIBUTE_UNUSED;
1535 int line;
1536 int n ATTRIBUTE_UNUSED;
1537 {
1538 MAKE_LINE_SAFE (line);
1539
1540 /* The SCO compiler does not emit a separate block for the function level
1541 scope, so we avoid it here also. However, mips ECOFF compilers do emit
1542 a separate block, so we retain it when MIPS_DEBUGGING_INFO is defined. */
1543 #ifndef MIPS_DEBUGGING_INFO
1544 if (n != 1)
1545 #endif
1546 PUT_SDB_BLOCK_END (line - sdb_begin_function_line);
1547 }
1548
1549 /* Output sdb info for the current function name.
1550 Called from assemble_start_function. */
1551
1552 void
1553 sdbout_mark_begin_function ()
1554 {
1555 sdbout_symbol (current_function_decl, 0);
1556 }
1557
1558 /* Called at beginning of function body (after prologue).
1559 Record the function's starting line number, so we can output
1560 relative line numbers for the other lines.
1561 Describe beginning of outermost block.
1562 Also describe the parameter list. */
1563
1564 void
1565 sdbout_begin_function (line)
1566 int line;
1567 {
1568 sdb_begin_function_line = line - 1;
1569 PUT_SDB_FUNCTION_START (line);
1570 sdbout_parms (DECL_ARGUMENTS (current_function_decl));
1571 sdbout_reg_parms (DECL_ARGUMENTS (current_function_decl));
1572 }
1573
1574 /* Called at end of function (before epilogue).
1575 Describe end of outermost block. */
1576
1577 void
1578 sdbout_end_function (line)
1579 int line;
1580 {
1581 #ifdef SDB_ALLOW_FORWARD_REFERENCES
1582 sdbout_dequeue_anonymous_types ();
1583 #endif
1584
1585 MAKE_LINE_SAFE (line);
1586 PUT_SDB_FUNCTION_END (line - sdb_begin_function_line);
1587
1588 /* Indicate we are between functions, for line-number output. */
1589 sdb_begin_function_line = -1;
1590 }
1591
1592 /* Output sdb info for the absolute end of a function.
1593 Called after the epilogue is output. */
1594
1595 void
1596 sdbout_end_epilogue ()
1597 {
1598 PUT_SDB_EPILOGUE_END
1599 (IDENTIFIER_POINTER (DECL_ASSEMBLER_NAME (current_function_decl)));
1600 }
1601
1602 /* Output sdb info for the given label. Called only if LABEL_NAME (insn)
1603 is present. */
1604
1605 void
1606 sdbout_label (insn)
1607 register rtx insn;
1608 {
1609 PUT_SDB_DEF (LABEL_NAME (insn));
1610 PUT_SDB_VAL (insn);
1611 PUT_SDB_SCL (C_LABEL);
1612 PUT_SDB_TYPE (T_NULL);
1613 PUT_SDB_ENDEF;
1614 }
1615
1616 /* Change to reading from a new source file. */
1617
1618 void
1619 sdbout_start_new_source_file (filename)
1620 const char *filename ATTRIBUTE_UNUSED;
1621 {
1622 #ifdef MIPS_DEBUGGING_INFO
1623 struct sdb_file *n = (struct sdb_file *) xmalloc (sizeof *n);
1624
1625 n->next = current_file;
1626 n->name = filename;
1627 current_file = n;
1628 PUT_SDB_SRC_FILE (filename);
1629 #endif
1630 }
1631
1632 /* Revert to reading a previous source file. */
1633
1634 void
1635 sdbout_resume_previous_source_file ()
1636 {
1637 #ifdef MIPS_DEBUGGING_INFO
1638 struct sdb_file *next;
1639
1640 next = current_file->next;
1641 free (current_file);
1642 current_file = next;
1643 PUT_SDB_SRC_FILE (current_file->name);
1644 #endif
1645 }
1646
1647 #endif /* SDB_DEBUGGING_INFO */