Update copyright year to 2014
[binutils-gdb.git] / binutils / dwarf.c
1 /* dwarf.c -- display DWARF contents of a BFD binary file
2 Copyright 2005-2013 Free Software Foundation, Inc.
3
4 This file is part of GNU Binutils.
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3 of the License, or
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
19 02110-1301, USA. */
20
21 #include "sysdep.h"
22 #include "libiberty.h"
23 #include "bfd.h"
24 #include "bfd_stdint.h"
25 #include "bucomm.h"
26 #include "elfcomm.h"
27 #include "elf/common.h"
28 #include "dwarf2.h"
29 #include "dwarf.h"
30 #include "gdb/gdb-index.h"
31
32 #if !HAVE_DECL_STRNLEN
33 size_t strnlen (const char *, size_t);
34 #endif
35
36 static const char *regname (unsigned int regno, int row);
37
38 static int have_frame_base;
39 static int need_base_address;
40
41 static unsigned int last_pointer_size = 0;
42 static int warned_about_missing_comp_units = FALSE;
43
44 static unsigned int num_debug_info_entries = 0;
45 static debug_info *debug_information = NULL;
46 /* Special value for num_debug_info_entries to indicate
47 that the .debug_info section could not be loaded/parsed. */
48 #define DEBUG_INFO_UNAVAILABLE (unsigned int) -1
49
50 int eh_addr_size;
51
52 int do_debug_info;
53 int do_debug_abbrevs;
54 int do_debug_lines;
55 int do_debug_pubnames;
56 int do_debug_pubtypes;
57 int do_debug_aranges;
58 int do_debug_ranges;
59 int do_debug_frames;
60 int do_debug_frames_interp;
61 int do_debug_macinfo;
62 int do_debug_str;
63 int do_debug_loc;
64 int do_gdb_index;
65 int do_trace_info;
66 int do_trace_abbrevs;
67 int do_trace_aranges;
68 int do_debug_addr;
69 int do_debug_cu_index;
70 int do_wide;
71
72 int dwarf_cutoff_level = -1;
73 unsigned long dwarf_start_die;
74
75 int dwarf_check = 0;
76
77 /* Collection of CU/TU section sets from .debug_cu_index and .debug_tu_index
78 sections. For version 1 package files, each set is stored in SHNDX_POOL
79 as a zero-terminated list of section indexes comprising one set of debug
80 sections from a .dwo file. */
81
82 static int cu_tu_indexes_read = 0;
83 static unsigned int *shndx_pool = NULL;
84 static unsigned int shndx_pool_size = 0;
85 static unsigned int shndx_pool_used = 0;
86
87 /* For version 2 package files, each set contains an array of section offsets
88 and an array of section sizes, giving the offset and size of the
89 contribution from a CU or TU within one of the debug sections.
90 When displaying debug info from a package file, we need to use these
91 tables to locate the corresponding contributions to each section. */
92
93 struct cu_tu_set
94 {
95 uint64_t signature;
96 dwarf_vma section_offsets[DW_SECT_MAX];
97 size_t section_sizes[DW_SECT_MAX];
98 };
99
100 static int cu_count = 0;
101 static int tu_count = 0;
102 static struct cu_tu_set *cu_sets = NULL;
103 static struct cu_tu_set *tu_sets = NULL;
104
105 static void load_cu_tu_indexes (void *file);
106
107 /* Values for do_debug_lines. */
108 #define FLAG_DEBUG_LINES_RAW 1
109 #define FLAG_DEBUG_LINES_DECODED 2
110
111 static int
112 size_of_encoded_value (int encoding)
113 {
114 switch (encoding & 0x7)
115 {
116 default: /* ??? */
117 case 0: return eh_addr_size;
118 case 2: return 2;
119 case 3: return 4;
120 case 4: return 8;
121 }
122 }
123
124 static dwarf_vma
125 get_encoded_value (unsigned char *data,
126 int encoding,
127 struct dwarf_section *section)
128 {
129 int size = size_of_encoded_value (encoding);
130 dwarf_vma val;
131
132 if (encoding & DW_EH_PE_signed)
133 val = byte_get_signed (data, size);
134 else
135 val = byte_get (data, size);
136
137 if ((encoding & 0x70) == DW_EH_PE_pcrel)
138 val += section->address + (data - section->start);
139 return val;
140 }
141
142 #if __STDC_VERSION__ >= 199901L || (defined(__GNUC__) && __GNUC__ >= 2)
143 #ifndef __MINGW32__
144 #define DWARF_VMA_FMT "ll"
145 #define DWARF_VMA_FMT_LONG "%16.16llx"
146 #else
147 #define DWARF_VMA_FMT "I64"
148 #define DWARF_VMA_FMT_LONG "%016I64x"
149 #endif
150 #else
151 #define DWARF_VMA_FMT "l"
152 #define DWARF_VMA_FMT_LONG "%16.16lx"
153 #endif
154
155 /* Convert a dwarf vma value into a string. Returns a pointer to a static
156 buffer containing the converted VALUE. The value is converted according
157 to the printf formating character FMTCH. If NUM_BYTES is non-zero then
158 it specifies the maximum number of bytes to be displayed in the converted
159 value and FMTCH is ignored - hex is always used. */
160
161 static const char *
162 dwarf_vmatoa_1 (const char *fmtch, dwarf_vma value, unsigned num_bytes)
163 {
164 /* As dwarf_vmatoa is used more then once in a printf call
165 for output, we are cycling through an fixed array of pointers
166 for return address. */
167 static int buf_pos = 0;
168 static struct dwarf_vmatoa_buf
169 {
170 char place[64];
171 } buf[16];
172 char *ret;
173
174 ret = buf[buf_pos++].place;
175 buf_pos %= ARRAY_SIZE (buf);
176
177 if (num_bytes)
178 {
179 /* Printf does not have a way of specifiying a maximum field width for an
180 integer value, so we print the full value into a buffer and then select
181 the precision we need. */
182 snprintf (ret, sizeof (buf[0].place), DWARF_VMA_FMT_LONG, value);
183 if (num_bytes > 8)
184 num_bytes = 8;
185 return ret + (16 - 2 * num_bytes);
186 }
187 else
188 {
189 char fmt[32];
190
191 sprintf (fmt, "%%%s%s", DWARF_VMA_FMT, fmtch);
192 snprintf (ret, sizeof (buf[0].place), fmt, value);
193 return ret;
194 }
195 }
196
197 static inline const char *
198 dwarf_vmatoa (const char * fmtch, dwarf_vma value)
199 {
200 return dwarf_vmatoa_1 (fmtch, value, 0);
201 }
202
203 /* Print a dwarf_vma value (typically an address, offset or length) in
204 hexadecimal format, followed by a space. The length of the VALUE (and
205 hence the precision displayed) is determined by the NUM_BYTES parameter. */
206
207 static void
208 print_dwarf_vma (dwarf_vma value, unsigned num_bytes)
209 {
210 printf ("%s ", dwarf_vmatoa_1 (NULL, value, num_bytes));
211 }
212
213 /* Format a 64-bit value, given as two 32-bit values, in hex.
214 For reentrancy, this uses a buffer provided by the caller. */
215
216 static const char *
217 dwarf_vmatoa64 (dwarf_vma hvalue, dwarf_vma lvalue, char *buf,
218 unsigned int buf_len)
219 {
220 int len = 0;
221
222 if (hvalue == 0)
223 snprintf (buf, buf_len, "%" DWARF_VMA_FMT "x", lvalue);
224 else
225 {
226 len = snprintf (buf, buf_len, "%" DWARF_VMA_FMT "x", hvalue);
227 snprintf (buf + len, buf_len - len,
228 "%08" DWARF_VMA_FMT "x", lvalue);
229 }
230
231 return buf;
232 }
233
234 /* Read in a LEB128 encoded value starting at address DATA.
235 If SIGN is true, return a signed LEB128 value.
236 If LENGTH_RETURN is not NULL, return in it the number of bytes read.
237 No bytes will be read at address END or beyond. */
238
239 dwarf_vma
240 read_leb128 (unsigned char *data,
241 unsigned int *length_return,
242 bfd_boolean sign,
243 const unsigned char * const end)
244 {
245 dwarf_vma result = 0;
246 unsigned int num_read = 0;
247 unsigned int shift = 0;
248 unsigned char byte = 0;
249
250 while (data < end)
251 {
252 byte = *data++;
253 num_read++;
254
255 result |= ((dwarf_vma) (byte & 0x7f)) << shift;
256
257 shift += 7;
258 if ((byte & 0x80) == 0)
259 break;
260 }
261
262 if (length_return != NULL)
263 *length_return = num_read;
264
265 if (sign && (shift < 8 * sizeof (result)) && (byte & 0x40))
266 result |= -1L << shift;
267
268 return result;
269 }
270
271 /* Create a signed version to avoid painful typecasts. */
272 static inline dwarf_signed_vma
273 read_sleb128 (unsigned char * data,
274 unsigned int * length_return,
275 const unsigned char * const end)
276 {
277 return (dwarf_signed_vma) read_leb128 (data, length_return, TRUE, end);
278 }
279
280 static inline dwarf_vma
281 read_uleb128 (unsigned char * data,
282 unsigned int * length_return,
283 const unsigned char * const end)
284 {
285 return read_leb128 (data, length_return, FALSE, end);
286 }
287
288 #define SAFE_BYTE_GET(VAL, PTR, AMOUNT, END) \
289 do \
290 { \
291 int dummy [sizeof (VAL) < (AMOUNT) ? -1 : 1] ATTRIBUTE_UNUSED ; \
292 unsigned int amount = (AMOUNT); \
293 if (((PTR) + amount) >= (END)) \
294 { \
295 if ((PTR) < (END)) \
296 amount = (END) - (PTR); \
297 else \
298 amount = 0; \
299 } \
300 if (amount) \
301 VAL = byte_get ((PTR), amount); \
302 else \
303 VAL = 0; \
304 } \
305 while (0)
306
307 #define SAFE_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
308 do \
309 { \
310 SAFE_BYTE_GET (VAL, PTR, AMOUNT, END); \
311 PTR += AMOUNT; \
312 } \
313 while (0)
314
315 #define SAFE_SIGNED_BYTE_GET(VAL, PTR, AMOUNT, END) \
316 do \
317 { \
318 unsigned int amount = (AMOUNT); \
319 if (((PTR) + amount) >= (END)) \
320 { \
321 if ((PTR) < (END)) \
322 amount = (END) - (PTR); \
323 else \
324 amount = 0; \
325 } \
326 if (amount) \
327 VAL = byte_get_signed ((PTR), amount); \
328 else \
329 VAL = 0; \
330 } \
331 while (0)
332
333 #define SAFE_SIGNED_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
334 do \
335 { \
336 SAFE_SIGNED_BYTE_GET (VAL, PTR, AMOUNT, END); \
337 PTR += AMOUNT; \
338 } \
339 while (0)
340
341 #define SAFE_BYTE_GET64(PTR, HIGH, LOW, END) \
342 do \
343 { \
344 if (((PTR) + 8) <= (END)) \
345 { \
346 byte_get_64 ((PTR), (HIGH), (LOW)); \
347 } \
348 else \
349 { \
350 * (LOW) = * (HIGH) = 0; \
351 } \
352 } \
353 while (0)
354
355 typedef struct State_Machine_Registers
356 {
357 dwarf_vma address;
358 unsigned int file;
359 unsigned int line;
360 unsigned int column;
361 int is_stmt;
362 int basic_block;
363 unsigned char op_index;
364 unsigned char end_sequence;
365 /* This variable hold the number of the last entry seen
366 in the File Table. */
367 unsigned int last_file_entry;
368 } SMR;
369
370 static SMR state_machine_regs;
371
372 static void
373 reset_state_machine (int is_stmt)
374 {
375 state_machine_regs.address = 0;
376 state_machine_regs.op_index = 0;
377 state_machine_regs.file = 1;
378 state_machine_regs.line = 1;
379 state_machine_regs.column = 0;
380 state_machine_regs.is_stmt = is_stmt;
381 state_machine_regs.basic_block = 0;
382 state_machine_regs.end_sequence = 0;
383 state_machine_regs.last_file_entry = 0;
384 }
385
386 /* Handled an extend line op.
387 Returns the number of bytes read. */
388
389 static int
390 process_extended_line_op (unsigned char * data,
391 int is_stmt,
392 unsigned char * end)
393 {
394 unsigned char op_code;
395 unsigned int bytes_read;
396 unsigned int len;
397 unsigned char *name;
398 unsigned char *orig_data = data;
399 dwarf_vma adr;
400
401 len = read_uleb128 (data, & bytes_read, end);
402 data += bytes_read;
403
404 if (len == 0 || data == end)
405 {
406 warn (_("badly formed extended line op encountered!\n"));
407 return bytes_read;
408 }
409
410 len += bytes_read;
411 op_code = *data++;
412
413 printf (_(" Extended opcode %d: "), op_code);
414
415 switch (op_code)
416 {
417 case DW_LNE_end_sequence:
418 printf (_("End of Sequence\n\n"));
419 reset_state_machine (is_stmt);
420 break;
421
422 case DW_LNE_set_address:
423 SAFE_BYTE_GET (adr, data, len - bytes_read - 1, end);
424 printf (_("set Address to 0x%s\n"), dwarf_vmatoa ("x", adr));
425 state_machine_regs.address = adr;
426 state_machine_regs.op_index = 0;
427 break;
428
429 case DW_LNE_define_file:
430 printf (_("define new File Table entry\n"));
431 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
432 printf (" %d\t", ++state_machine_regs.last_file_entry);
433
434 name = data;
435 data += strnlen ((char *) data, end - data) + 1;
436 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
437 data += bytes_read;
438 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
439 data += bytes_read;
440 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
441 data += bytes_read;
442 printf ("%s\n\n", name);
443
444 if (((unsigned int) (data - orig_data) != len) || data == end)
445 warn (_("DW_LNE_define_file: Bad opcode length\n"));
446 break;
447
448 case DW_LNE_set_discriminator:
449 printf (_("set Discriminator to %s\n"),
450 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
451 break;
452
453 /* HP extensions. */
454 case DW_LNE_HP_negate_is_UV_update:
455 printf ("DW_LNE_HP_negate_is_UV_update\n");
456 break;
457 case DW_LNE_HP_push_context:
458 printf ("DW_LNE_HP_push_context\n");
459 break;
460 case DW_LNE_HP_pop_context:
461 printf ("DW_LNE_HP_pop_context\n");
462 break;
463 case DW_LNE_HP_set_file_line_column:
464 printf ("DW_LNE_HP_set_file_line_column\n");
465 break;
466 case DW_LNE_HP_set_routine_name:
467 printf ("DW_LNE_HP_set_routine_name\n");
468 break;
469 case DW_LNE_HP_set_sequence:
470 printf ("DW_LNE_HP_set_sequence\n");
471 break;
472 case DW_LNE_HP_negate_post_semantics:
473 printf ("DW_LNE_HP_negate_post_semantics\n");
474 break;
475 case DW_LNE_HP_negate_function_exit:
476 printf ("DW_LNE_HP_negate_function_exit\n");
477 break;
478 case DW_LNE_HP_negate_front_end_logical:
479 printf ("DW_LNE_HP_negate_front_end_logical\n");
480 break;
481 case DW_LNE_HP_define_proc:
482 printf ("DW_LNE_HP_define_proc\n");
483 break;
484 case DW_LNE_HP_source_file_correlation:
485 {
486 unsigned char *edata = data + len - bytes_read - 1;
487
488 printf ("DW_LNE_HP_source_file_correlation\n");
489
490 while (data < edata)
491 {
492 unsigned int opc;
493
494 opc = read_uleb128 (data, & bytes_read, edata);
495 data += bytes_read;
496
497 switch (opc)
498 {
499 case DW_LNE_HP_SFC_formfeed:
500 printf (" DW_LNE_HP_SFC_formfeed\n");
501 break;
502 case DW_LNE_HP_SFC_set_listing_line:
503 printf (" DW_LNE_HP_SFC_set_listing_line (%s)\n",
504 dwarf_vmatoa ("u",
505 read_uleb128 (data, & bytes_read, edata)));
506 data += bytes_read;
507 break;
508 case DW_LNE_HP_SFC_associate:
509 printf (" DW_LNE_HP_SFC_associate ");
510 printf ("(%s",
511 dwarf_vmatoa ("u",
512 read_uleb128 (data, & bytes_read, edata)));
513 data += bytes_read;
514 printf (",%s",
515 dwarf_vmatoa ("u",
516 read_uleb128 (data, & bytes_read, edata)));
517 data += bytes_read;
518 printf (",%s)\n",
519 dwarf_vmatoa ("u",
520 read_uleb128 (data, & bytes_read, edata)));
521 data += bytes_read;
522 break;
523 default:
524 printf (_(" UNKNOWN DW_LNE_HP_SFC opcode (%u)\n"), opc);
525 data = edata;
526 break;
527 }
528 }
529 }
530 break;
531
532 default:
533 {
534 unsigned int rlen = len - bytes_read - 1;
535
536 if (op_code >= DW_LNE_lo_user
537 /* The test against DW_LNW_hi_user is redundant due to
538 the limited range of the unsigned char data type used
539 for op_code. */
540 /*&& op_code <= DW_LNE_hi_user*/)
541 printf (_("user defined: "));
542 else
543 printf (_("UNKNOWN: "));
544 printf (_("length %d ["), rlen);
545 for (; rlen; rlen--)
546 printf (" %02x", *data++);
547 printf ("]\n");
548 }
549 break;
550 }
551
552 return len;
553 }
554
555 static const unsigned char *
556 fetch_indirect_string (dwarf_vma offset)
557 {
558 struct dwarf_section *section = &debug_displays [str].section;
559
560 if (section->start == NULL)
561 return (const unsigned char *) _("<no .debug_str section>");
562
563 if (offset > section->size)
564 {
565 warn (_("DW_FORM_strp offset too big: %s\n"),
566 dwarf_vmatoa ("x", offset));
567 return (const unsigned char *) _("<offset is too big>");
568 }
569
570 return (const unsigned char *) section->start + offset;
571 }
572
573 static const char *
574 fetch_indexed_string (dwarf_vma idx, struct cu_tu_set *this_set,
575 dwarf_vma offset_size, int dwo)
576 {
577 enum dwarf_section_display_enum str_sec_idx = dwo ? str_dwo : str;
578 enum dwarf_section_display_enum idx_sec_idx = dwo ? str_index_dwo : str_index;
579 struct dwarf_section *index_section = &debug_displays [idx_sec_idx].section;
580 struct dwarf_section *str_section = &debug_displays [str_sec_idx].section;
581 dwarf_vma index_offset = idx * offset_size;
582 dwarf_vma str_offset;
583
584 if (index_section->start == NULL)
585 return (dwo ? _("<no .debug_str_offsets.dwo section>")
586 : _("<no .debug_str_offsets section>"));
587
588 if (this_set != NULL)
589 index_offset += this_set->section_offsets [DW_SECT_STR_OFFSETS];
590 if (index_offset > index_section->size)
591 {
592 warn (_("DW_FORM_GNU_str_index offset too big: %s\n"),
593 dwarf_vmatoa ("x", index_offset));
594 return _("<index offset is too big>");
595 }
596
597 if (str_section->start == NULL)
598 return (dwo ? _("<no .debug_str.dwo section>")
599 : _("<no .debug_str section>"));
600
601 str_offset = byte_get (index_section->start + index_offset, offset_size);
602 str_offset -= str_section->address;
603 if (str_offset > str_section->size)
604 {
605 warn (_("DW_FORM_GNU_str_index indirect offset too big: %s\n"),
606 dwarf_vmatoa ("x", str_offset));
607 return _("<indirect index offset is too big>");
608 }
609
610 return (const char *) str_section->start + str_offset;
611 }
612
613 static const char *
614 fetch_indexed_value (dwarf_vma offset, dwarf_vma bytes)
615 {
616 struct dwarf_section *section = &debug_displays [debug_addr].section;
617
618 if (section->start == NULL)
619 return (_("<no .debug_addr section>"));
620
621 if (offset + bytes > section->size)
622 {
623 warn (_("Offset into section %s too big: %s\n"),
624 section->name, dwarf_vmatoa ("x", offset));
625 return "<offset too big>";
626 }
627
628 return dwarf_vmatoa ("x", byte_get (section->start + offset, bytes));
629 }
630
631
632 /* FIXME: There are better and more efficient ways to handle
633 these structures. For now though, I just want something that
634 is simple to implement. */
635 typedef struct abbrev_attr
636 {
637 unsigned long attribute;
638 unsigned long form;
639 struct abbrev_attr *next;
640 }
641 abbrev_attr;
642
643 typedef struct abbrev_entry
644 {
645 unsigned long entry;
646 unsigned long tag;
647 int children;
648 struct abbrev_attr *first_attr;
649 struct abbrev_attr *last_attr;
650 struct abbrev_entry *next;
651 }
652 abbrev_entry;
653
654 static abbrev_entry *first_abbrev = NULL;
655 static abbrev_entry *last_abbrev = NULL;
656
657 static void
658 free_abbrevs (void)
659 {
660 abbrev_entry *abbrv;
661
662 for (abbrv = first_abbrev; abbrv;)
663 {
664 abbrev_entry *next_abbrev = abbrv->next;
665 abbrev_attr *attr;
666
667 for (attr = abbrv->first_attr; attr;)
668 {
669 abbrev_attr *next_attr = attr->next;
670
671 free (attr);
672 attr = next_attr;
673 }
674
675 free (abbrv);
676 abbrv = next_abbrev;
677 }
678
679 last_abbrev = first_abbrev = NULL;
680 }
681
682 static void
683 add_abbrev (unsigned long number, unsigned long tag, int children)
684 {
685 abbrev_entry *entry;
686
687 entry = (abbrev_entry *) malloc (sizeof (*entry));
688 if (entry == NULL)
689 /* ugg */
690 return;
691
692 entry->entry = number;
693 entry->tag = tag;
694 entry->children = children;
695 entry->first_attr = NULL;
696 entry->last_attr = NULL;
697 entry->next = NULL;
698
699 if (first_abbrev == NULL)
700 first_abbrev = entry;
701 else
702 last_abbrev->next = entry;
703
704 last_abbrev = entry;
705 }
706
707 static void
708 add_abbrev_attr (unsigned long attribute, unsigned long form)
709 {
710 abbrev_attr *attr;
711
712 attr = (abbrev_attr *) malloc (sizeof (*attr));
713 if (attr == NULL)
714 /* ugg */
715 return;
716
717 attr->attribute = attribute;
718 attr->form = form;
719 attr->next = NULL;
720
721 if (last_abbrev->first_attr == NULL)
722 last_abbrev->first_attr = attr;
723 else
724 last_abbrev->last_attr->next = attr;
725
726 last_abbrev->last_attr = attr;
727 }
728
729 /* Processes the (partial) contents of a .debug_abbrev section.
730 Returns NULL if the end of the section was encountered.
731 Returns the address after the last byte read if the end of
732 an abbreviation set was found. */
733
734 static unsigned char *
735 process_abbrev_section (unsigned char *start, unsigned char *end)
736 {
737 if (first_abbrev != NULL)
738 return NULL;
739
740 while (start < end)
741 {
742 unsigned int bytes_read;
743 unsigned long entry;
744 unsigned long tag;
745 unsigned long attribute;
746 int children;
747
748 entry = read_uleb128 (start, & bytes_read, end);
749 start += bytes_read;
750
751 /* A single zero is supposed to end the section according
752 to the standard. If there's more, then signal that to
753 the caller. */
754 if (start == end)
755 return NULL;
756 if (entry == 0)
757 return start;
758
759 tag = read_uleb128 (start, & bytes_read, end);
760 start += bytes_read;
761 if (start == end)
762 return NULL;
763
764 children = *start++;
765
766 add_abbrev (entry, tag, children);
767
768 do
769 {
770 unsigned long form;
771
772 attribute = read_uleb128 (start, & bytes_read, end);
773 start += bytes_read;
774 if (start == end)
775 break;
776
777 form = read_uleb128 (start, & bytes_read, end);
778 start += bytes_read;
779 if (start == end)
780 break;
781
782 add_abbrev_attr (attribute, form);
783 }
784 while (attribute != 0);
785 }
786
787 /* Report the missing single zero which ends the section. */
788 error (_(".debug_abbrev section not zero terminated\n"));
789
790 return NULL;
791 }
792
793 static const char *
794 get_TAG_name (unsigned long tag)
795 {
796 const char *name = get_DW_TAG_name ((unsigned int)tag);
797
798 if (name == NULL)
799 {
800 static char buffer[100];
801
802 snprintf (buffer, sizeof (buffer), _("Unknown TAG value: %lx"), tag);
803 return buffer;
804 }
805
806 return name;
807 }
808
809 static const char *
810 get_FORM_name (unsigned long form)
811 {
812 const char *name;
813
814 if (form == 0)
815 return "DW_FORM value: 0";
816
817 name = get_DW_FORM_name (form);
818 if (name == NULL)
819 {
820 static char buffer[100];
821
822 snprintf (buffer, sizeof (buffer), _("Unknown FORM value: %lx"), form);
823 return buffer;
824 }
825
826 return name;
827 }
828
829 static unsigned char *
830 display_block (unsigned char *data,
831 dwarf_vma length,
832 const unsigned char * const end)
833 {
834 dwarf_vma maxlen;
835
836 printf (_(" %s byte block: "), dwarf_vmatoa ("u", length));
837
838 maxlen = (dwarf_vma) (end - data);
839 length = length > maxlen ? maxlen : length;
840
841 while (length --)
842 printf ("%lx ", (unsigned long) byte_get (data++, 1));
843
844 return data;
845 }
846
847 static int
848 decode_location_expression (unsigned char * data,
849 unsigned int pointer_size,
850 unsigned int offset_size,
851 int dwarf_version,
852 dwarf_vma length,
853 dwarf_vma cu_offset,
854 struct dwarf_section * section)
855 {
856 unsigned op;
857 unsigned int bytes_read;
858 dwarf_vma uvalue;
859 dwarf_signed_vma svalue;
860 unsigned char *end = data + length;
861 int need_frame_base = 0;
862
863 while (data < end)
864 {
865 op = *data++;
866
867 switch (op)
868 {
869 case DW_OP_addr:
870 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
871 printf ("DW_OP_addr: %s", dwarf_vmatoa ("x", uvalue));
872 break;
873 case DW_OP_deref:
874 printf ("DW_OP_deref");
875 break;
876 case DW_OP_const1u:
877 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
878 printf ("DW_OP_const1u: %lu", (unsigned long) uvalue);
879 break;
880 case DW_OP_const1s:
881 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 1, end);
882 printf ("DW_OP_const1s: %ld", (long) svalue);
883 break;
884 case DW_OP_const2u:
885 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
886 printf ("DW_OP_const2u: %lu", (unsigned long) uvalue);
887 break;
888 case DW_OP_const2s:
889 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
890 printf ("DW_OP_const2s: %ld", (long) svalue);
891 break;
892 case DW_OP_const4u:
893 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
894 printf ("DW_OP_const4u: %lu", (unsigned long) uvalue);
895 break;
896 case DW_OP_const4s:
897 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
898 printf ("DW_OP_const4s: %ld", (long) svalue);
899 break;
900 case DW_OP_const8u:
901 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
902 printf ("DW_OP_const8u: %lu ", (unsigned long) uvalue);
903 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
904 printf ("%lu", (unsigned long) uvalue);
905 break;
906 case DW_OP_const8s:
907 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
908 printf ("DW_OP_const8s: %ld ", (long) svalue);
909 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
910 printf ("%ld", (long) svalue);
911 break;
912 case DW_OP_constu:
913 printf ("DW_OP_constu: %s",
914 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
915 data += bytes_read;
916 break;
917 case DW_OP_consts:
918 printf ("DW_OP_consts: %s",
919 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
920 data += bytes_read;
921 break;
922 case DW_OP_dup:
923 printf ("DW_OP_dup");
924 break;
925 case DW_OP_drop:
926 printf ("DW_OP_drop");
927 break;
928 case DW_OP_over:
929 printf ("DW_OP_over");
930 break;
931 case DW_OP_pick:
932 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
933 printf ("DW_OP_pick: %ld", (unsigned long) uvalue);
934 break;
935 case DW_OP_swap:
936 printf ("DW_OP_swap");
937 break;
938 case DW_OP_rot:
939 printf ("DW_OP_rot");
940 break;
941 case DW_OP_xderef:
942 printf ("DW_OP_xderef");
943 break;
944 case DW_OP_abs:
945 printf ("DW_OP_abs");
946 break;
947 case DW_OP_and:
948 printf ("DW_OP_and");
949 break;
950 case DW_OP_div:
951 printf ("DW_OP_div");
952 break;
953 case DW_OP_minus:
954 printf ("DW_OP_minus");
955 break;
956 case DW_OP_mod:
957 printf ("DW_OP_mod");
958 break;
959 case DW_OP_mul:
960 printf ("DW_OP_mul");
961 break;
962 case DW_OP_neg:
963 printf ("DW_OP_neg");
964 break;
965 case DW_OP_not:
966 printf ("DW_OP_not");
967 break;
968 case DW_OP_or:
969 printf ("DW_OP_or");
970 break;
971 case DW_OP_plus:
972 printf ("DW_OP_plus");
973 break;
974 case DW_OP_plus_uconst:
975 printf ("DW_OP_plus_uconst: %s",
976 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
977 data += bytes_read;
978 break;
979 case DW_OP_shl:
980 printf ("DW_OP_shl");
981 break;
982 case DW_OP_shr:
983 printf ("DW_OP_shr");
984 break;
985 case DW_OP_shra:
986 printf ("DW_OP_shra");
987 break;
988 case DW_OP_xor:
989 printf ("DW_OP_xor");
990 break;
991 case DW_OP_bra:
992 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
993 printf ("DW_OP_bra: %ld", (long) svalue);
994 break;
995 case DW_OP_eq:
996 printf ("DW_OP_eq");
997 break;
998 case DW_OP_ge:
999 printf ("DW_OP_ge");
1000 break;
1001 case DW_OP_gt:
1002 printf ("DW_OP_gt");
1003 break;
1004 case DW_OP_le:
1005 printf ("DW_OP_le");
1006 break;
1007 case DW_OP_lt:
1008 printf ("DW_OP_lt");
1009 break;
1010 case DW_OP_ne:
1011 printf ("DW_OP_ne");
1012 break;
1013 case DW_OP_skip:
1014 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1015 printf ("DW_OP_skip: %ld", (long) svalue);
1016 break;
1017
1018 case DW_OP_lit0:
1019 case DW_OP_lit1:
1020 case DW_OP_lit2:
1021 case DW_OP_lit3:
1022 case DW_OP_lit4:
1023 case DW_OP_lit5:
1024 case DW_OP_lit6:
1025 case DW_OP_lit7:
1026 case DW_OP_lit8:
1027 case DW_OP_lit9:
1028 case DW_OP_lit10:
1029 case DW_OP_lit11:
1030 case DW_OP_lit12:
1031 case DW_OP_lit13:
1032 case DW_OP_lit14:
1033 case DW_OP_lit15:
1034 case DW_OP_lit16:
1035 case DW_OP_lit17:
1036 case DW_OP_lit18:
1037 case DW_OP_lit19:
1038 case DW_OP_lit20:
1039 case DW_OP_lit21:
1040 case DW_OP_lit22:
1041 case DW_OP_lit23:
1042 case DW_OP_lit24:
1043 case DW_OP_lit25:
1044 case DW_OP_lit26:
1045 case DW_OP_lit27:
1046 case DW_OP_lit28:
1047 case DW_OP_lit29:
1048 case DW_OP_lit30:
1049 case DW_OP_lit31:
1050 printf ("DW_OP_lit%d", op - DW_OP_lit0);
1051 break;
1052
1053 case DW_OP_reg0:
1054 case DW_OP_reg1:
1055 case DW_OP_reg2:
1056 case DW_OP_reg3:
1057 case DW_OP_reg4:
1058 case DW_OP_reg5:
1059 case DW_OP_reg6:
1060 case DW_OP_reg7:
1061 case DW_OP_reg8:
1062 case DW_OP_reg9:
1063 case DW_OP_reg10:
1064 case DW_OP_reg11:
1065 case DW_OP_reg12:
1066 case DW_OP_reg13:
1067 case DW_OP_reg14:
1068 case DW_OP_reg15:
1069 case DW_OP_reg16:
1070 case DW_OP_reg17:
1071 case DW_OP_reg18:
1072 case DW_OP_reg19:
1073 case DW_OP_reg20:
1074 case DW_OP_reg21:
1075 case DW_OP_reg22:
1076 case DW_OP_reg23:
1077 case DW_OP_reg24:
1078 case DW_OP_reg25:
1079 case DW_OP_reg26:
1080 case DW_OP_reg27:
1081 case DW_OP_reg28:
1082 case DW_OP_reg29:
1083 case DW_OP_reg30:
1084 case DW_OP_reg31:
1085 printf ("DW_OP_reg%d (%s)", op - DW_OP_reg0,
1086 regname (op - DW_OP_reg0, 1));
1087 break;
1088
1089 case DW_OP_breg0:
1090 case DW_OP_breg1:
1091 case DW_OP_breg2:
1092 case DW_OP_breg3:
1093 case DW_OP_breg4:
1094 case DW_OP_breg5:
1095 case DW_OP_breg6:
1096 case DW_OP_breg7:
1097 case DW_OP_breg8:
1098 case DW_OP_breg9:
1099 case DW_OP_breg10:
1100 case DW_OP_breg11:
1101 case DW_OP_breg12:
1102 case DW_OP_breg13:
1103 case DW_OP_breg14:
1104 case DW_OP_breg15:
1105 case DW_OP_breg16:
1106 case DW_OP_breg17:
1107 case DW_OP_breg18:
1108 case DW_OP_breg19:
1109 case DW_OP_breg20:
1110 case DW_OP_breg21:
1111 case DW_OP_breg22:
1112 case DW_OP_breg23:
1113 case DW_OP_breg24:
1114 case DW_OP_breg25:
1115 case DW_OP_breg26:
1116 case DW_OP_breg27:
1117 case DW_OP_breg28:
1118 case DW_OP_breg29:
1119 case DW_OP_breg30:
1120 case DW_OP_breg31:
1121 printf ("DW_OP_breg%d (%s): %s",
1122 op - DW_OP_breg0,
1123 regname (op - DW_OP_breg0, 1),
1124 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1125 data += bytes_read;
1126 break;
1127
1128 case DW_OP_regx:
1129 uvalue = read_uleb128 (data, &bytes_read, end);
1130 data += bytes_read;
1131 printf ("DW_OP_regx: %s (%s)",
1132 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1133 break;
1134 case DW_OP_fbreg:
1135 need_frame_base = 1;
1136 printf ("DW_OP_fbreg: %s",
1137 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1138 data += bytes_read;
1139 break;
1140 case DW_OP_bregx:
1141 uvalue = read_uleb128 (data, &bytes_read, end);
1142 data += bytes_read;
1143 printf ("DW_OP_bregx: %s (%s) %s",
1144 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1),
1145 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1146 data += bytes_read;
1147 break;
1148 case DW_OP_piece:
1149 printf ("DW_OP_piece: %s",
1150 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1151 data += bytes_read;
1152 break;
1153 case DW_OP_deref_size:
1154 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1155 printf ("DW_OP_deref_size: %ld", (long) uvalue);
1156 break;
1157 case DW_OP_xderef_size:
1158 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1159 printf ("DW_OP_xderef_size: %ld", (long) uvalue);
1160 break;
1161 case DW_OP_nop:
1162 printf ("DW_OP_nop");
1163 break;
1164
1165 /* DWARF 3 extensions. */
1166 case DW_OP_push_object_address:
1167 printf ("DW_OP_push_object_address");
1168 break;
1169 case DW_OP_call2:
1170 /* XXX: Strictly speaking for 64-bit DWARF3 files
1171 this ought to be an 8-byte wide computation. */
1172 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1173 printf ("DW_OP_call2: <0x%s>",
1174 dwarf_vmatoa ("x", svalue + cu_offset));
1175 break;
1176 case DW_OP_call4:
1177 /* XXX: Strictly speaking for 64-bit DWARF3 files
1178 this ought to be an 8-byte wide computation. */
1179 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1180 printf ("DW_OP_call4: <0x%s>",
1181 dwarf_vmatoa ("x", svalue + cu_offset));
1182 break;
1183 case DW_OP_call_ref:
1184 /* XXX: Strictly speaking for 64-bit DWARF3 files
1185 this ought to be an 8-byte wide computation. */
1186 if (dwarf_version == -1)
1187 {
1188 printf (_("(DW_OP_call_ref in frame info)"));
1189 /* No way to tell where the next op is, so just bail. */
1190 return need_frame_base;
1191 }
1192 if (dwarf_version == 2)
1193 {
1194 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1195 }
1196 else
1197 {
1198 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1199 }
1200 printf ("DW_OP_call_ref: <0x%s>", dwarf_vmatoa ("x", uvalue));
1201 break;
1202 case DW_OP_form_tls_address:
1203 printf ("DW_OP_form_tls_address");
1204 break;
1205 case DW_OP_call_frame_cfa:
1206 printf ("DW_OP_call_frame_cfa");
1207 break;
1208 case DW_OP_bit_piece:
1209 printf ("DW_OP_bit_piece: ");
1210 printf (_("size: %s "),
1211 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1212 data += bytes_read;
1213 printf (_("offset: %s "),
1214 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1215 data += bytes_read;
1216 break;
1217
1218 /* DWARF 4 extensions. */
1219 case DW_OP_stack_value:
1220 printf ("DW_OP_stack_value");
1221 break;
1222
1223 case DW_OP_implicit_value:
1224 printf ("DW_OP_implicit_value");
1225 uvalue = read_uleb128 (data, &bytes_read, end);
1226 data += bytes_read;
1227 display_block (data, uvalue, end);
1228 data += uvalue;
1229 break;
1230
1231 /* GNU extensions. */
1232 case DW_OP_GNU_push_tls_address:
1233 printf (_("DW_OP_GNU_push_tls_address or DW_OP_HP_unknown"));
1234 break;
1235 case DW_OP_GNU_uninit:
1236 printf ("DW_OP_GNU_uninit");
1237 /* FIXME: Is there data associated with this OP ? */
1238 break;
1239 case DW_OP_GNU_encoded_addr:
1240 {
1241 int encoding;
1242 dwarf_vma addr;
1243
1244 encoding = *data++;
1245 addr = get_encoded_value (data, encoding, section);
1246 data += size_of_encoded_value (encoding);
1247
1248 printf ("DW_OP_GNU_encoded_addr: fmt:%02x addr:", encoding);
1249 print_dwarf_vma (addr, pointer_size);
1250 }
1251 break;
1252 case DW_OP_GNU_implicit_pointer:
1253 /* XXX: Strictly speaking for 64-bit DWARF3 files
1254 this ought to be an 8-byte wide computation. */
1255 if (dwarf_version == -1)
1256 {
1257 printf (_("(DW_OP_GNU_implicit_pointer in frame info)"));
1258 /* No way to tell where the next op is, so just bail. */
1259 return need_frame_base;
1260 }
1261 if (dwarf_version == 2)
1262 {
1263 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1264 }
1265 else
1266 {
1267 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1268 }
1269 printf ("DW_OP_GNU_implicit_pointer: <0x%s> %s",
1270 dwarf_vmatoa ("x", uvalue),
1271 dwarf_vmatoa ("d", read_sleb128 (data,
1272 &bytes_read, end)));
1273 data += bytes_read;
1274 break;
1275 case DW_OP_GNU_entry_value:
1276 uvalue = read_uleb128 (data, &bytes_read, end);
1277 data += bytes_read;
1278 printf ("DW_OP_GNU_entry_value: (");
1279 if (decode_location_expression (data, pointer_size, offset_size,
1280 dwarf_version, uvalue,
1281 cu_offset, section))
1282 need_frame_base = 1;
1283 putchar (')');
1284 data += uvalue;
1285 break;
1286 case DW_OP_GNU_const_type:
1287 uvalue = read_uleb128 (data, &bytes_read, end);
1288 data += bytes_read;
1289 printf ("DW_OP_GNU_const_type: <0x%s> ",
1290 dwarf_vmatoa ("x", cu_offset + uvalue));
1291 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1292 display_block (data, uvalue, end);
1293 data += uvalue;
1294 break;
1295 case DW_OP_GNU_regval_type:
1296 uvalue = read_uleb128 (data, &bytes_read, end);
1297 data += bytes_read;
1298 printf ("DW_OP_GNU_regval_type: %s (%s)",
1299 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1300 uvalue = read_uleb128 (data, &bytes_read, end);
1301 data += bytes_read;
1302 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1303 break;
1304 case DW_OP_GNU_deref_type:
1305 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1306 printf ("DW_OP_GNU_deref_type: %ld", (long) uvalue);
1307 uvalue = read_uleb128 (data, &bytes_read, end);
1308 data += bytes_read;
1309 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1310 break;
1311 case DW_OP_GNU_convert:
1312 uvalue = read_uleb128 (data, &bytes_read, end);
1313 data += bytes_read;
1314 printf ("DW_OP_GNU_convert <0x%s>",
1315 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1316 break;
1317 case DW_OP_GNU_reinterpret:
1318 uvalue = read_uleb128 (data, &bytes_read, end);
1319 data += bytes_read;
1320 printf ("DW_OP_GNU_reinterpret <0x%s>",
1321 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1322 break;
1323 case DW_OP_GNU_parameter_ref:
1324 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1325 printf ("DW_OP_GNU_parameter_ref: <0x%s>",
1326 dwarf_vmatoa ("x", cu_offset + uvalue));
1327 break;
1328 case DW_OP_GNU_addr_index:
1329 uvalue = read_uleb128 (data, &bytes_read, end);
1330 data += bytes_read;
1331 printf ("DW_OP_GNU_addr_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1332 break;
1333 case DW_OP_GNU_const_index:
1334 uvalue = read_uleb128 (data, &bytes_read, end);
1335 data += bytes_read;
1336 printf ("DW_OP_GNU_const_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1337 break;
1338
1339 /* HP extensions. */
1340 case DW_OP_HP_is_value:
1341 printf ("DW_OP_HP_is_value");
1342 /* FIXME: Is there data associated with this OP ? */
1343 break;
1344 case DW_OP_HP_fltconst4:
1345 printf ("DW_OP_HP_fltconst4");
1346 /* FIXME: Is there data associated with this OP ? */
1347 break;
1348 case DW_OP_HP_fltconst8:
1349 printf ("DW_OP_HP_fltconst8");
1350 /* FIXME: Is there data associated with this OP ? */
1351 break;
1352 case DW_OP_HP_mod_range:
1353 printf ("DW_OP_HP_mod_range");
1354 /* FIXME: Is there data associated with this OP ? */
1355 break;
1356 case DW_OP_HP_unmod_range:
1357 printf ("DW_OP_HP_unmod_range");
1358 /* FIXME: Is there data associated with this OP ? */
1359 break;
1360 case DW_OP_HP_tls:
1361 printf ("DW_OP_HP_tls");
1362 /* FIXME: Is there data associated with this OP ? */
1363 break;
1364
1365 /* PGI (STMicroelectronics) extensions. */
1366 case DW_OP_PGI_omp_thread_num:
1367 /* Pushes the thread number for the current thread as it would be
1368 returned by the standard OpenMP library function:
1369 omp_get_thread_num(). The "current thread" is the thread for
1370 which the expression is being evaluated. */
1371 printf ("DW_OP_PGI_omp_thread_num");
1372 break;
1373
1374 default:
1375 if (op >= DW_OP_lo_user
1376 && op <= DW_OP_hi_user)
1377 printf (_("(User defined location op)"));
1378 else
1379 printf (_("(Unknown location op)"));
1380 /* No way to tell where the next op is, so just bail. */
1381 return need_frame_base;
1382 }
1383
1384 /* Separate the ops. */
1385 if (data < end)
1386 printf ("; ");
1387 }
1388
1389 return need_frame_base;
1390 }
1391
1392 /* Find the CU or TU set corresponding to the given CU_OFFSET.
1393 This is used for DWARF package files. */
1394
1395 static struct cu_tu_set *
1396 find_cu_tu_set_v2 (dwarf_vma cu_offset, int do_types)
1397 {
1398 struct cu_tu_set *p;
1399 unsigned int nsets;
1400 unsigned int dw_sect;
1401
1402 if (do_types)
1403 {
1404 p = tu_sets;
1405 nsets = tu_count;
1406 dw_sect = DW_SECT_TYPES;
1407 }
1408 else
1409 {
1410 p = cu_sets;
1411 nsets = cu_count;
1412 dw_sect = DW_SECT_INFO;
1413 }
1414 while (nsets > 0)
1415 {
1416 if (p->section_offsets [dw_sect] == cu_offset)
1417 return p;
1418 p++;
1419 nsets--;
1420 }
1421 return NULL;
1422 }
1423
1424 /* Add INC to HIGH_BITS:LOW_BITS. */
1425 static void
1426 add64 (dwarf_vma * high_bits, dwarf_vma * low_bits, dwarf_vma inc)
1427 {
1428 dwarf_vma tmp = * low_bits;
1429
1430 tmp += inc;
1431
1432 /* FIXME: There is probably a better way of handling this:
1433
1434 We need to cope with dwarf_vma being a 32-bit or 64-bit
1435 type. Plus regardless of its size LOW_BITS is meant to
1436 only hold 32-bits, so if there is overflow or wrap around
1437 we must propagate into HIGH_BITS. */
1438 if (tmp < * low_bits)
1439 {
1440 ++ * high_bits;
1441 }
1442 else if (sizeof (tmp) > 8
1443 && (tmp >> 31) > 1)
1444 {
1445 ++ * high_bits;
1446 tmp &= 0xFFFFFFFF;
1447 }
1448
1449 * low_bits = tmp;
1450 }
1451
1452 static unsigned char *
1453 read_and_display_attr_value (unsigned long attribute,
1454 unsigned long form,
1455 unsigned char * data,
1456 unsigned char * end,
1457 dwarf_vma cu_offset,
1458 dwarf_vma pointer_size,
1459 dwarf_vma offset_size,
1460 int dwarf_version,
1461 debug_info * debug_info_p,
1462 int do_loc,
1463 struct dwarf_section * section,
1464 struct cu_tu_set * this_set)
1465 {
1466 dwarf_vma uvalue = 0;
1467 unsigned char *block_start = NULL;
1468 unsigned char * orig_data = data;
1469 unsigned int bytes_read;
1470
1471 if (data == end)
1472 {
1473 warn (_("corrupt attribute\n"));
1474 return data;
1475 }
1476
1477 switch (form)
1478 {
1479 default:
1480 break;
1481
1482 case DW_FORM_ref_addr:
1483 if (dwarf_version == 2)
1484 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1485 else if (dwarf_version == 3 || dwarf_version == 4)
1486 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1487 else
1488 error (_("Internal error: DWARF version is not 2, 3 or 4.\n"));
1489
1490 break;
1491
1492 case DW_FORM_addr:
1493 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1494 break;
1495
1496 case DW_FORM_strp:
1497 case DW_FORM_sec_offset:
1498 case DW_FORM_GNU_ref_alt:
1499 case DW_FORM_GNU_strp_alt:
1500 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1501 break;
1502
1503 case DW_FORM_flag_present:
1504 uvalue = 1;
1505 break;
1506
1507 case DW_FORM_ref1:
1508 case DW_FORM_flag:
1509 case DW_FORM_data1:
1510 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1511 break;
1512
1513 case DW_FORM_ref2:
1514 case DW_FORM_data2:
1515 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
1516 break;
1517
1518 case DW_FORM_ref4:
1519 case DW_FORM_data4:
1520 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1521 break;
1522
1523 case DW_FORM_sdata:
1524 uvalue = read_sleb128 (data, & bytes_read, end);
1525 data += bytes_read;
1526 break;
1527
1528 case DW_FORM_GNU_str_index:
1529 uvalue = read_uleb128 (data, & bytes_read, end);
1530 data += bytes_read;
1531 break;
1532
1533 case DW_FORM_ref_udata:
1534 case DW_FORM_udata:
1535 uvalue = read_uleb128 (data, & bytes_read, end);
1536 data += bytes_read;
1537 break;
1538
1539 case DW_FORM_indirect:
1540 form = read_uleb128 (data, & bytes_read, end);
1541 data += bytes_read;
1542 if (!do_loc)
1543 printf (" %s", get_FORM_name (form));
1544 return read_and_display_attr_value (attribute, form, data, end,
1545 cu_offset, pointer_size,
1546 offset_size, dwarf_version,
1547 debug_info_p, do_loc,
1548 section, this_set);
1549 case DW_FORM_GNU_addr_index:
1550 uvalue = read_uleb128 (data, & bytes_read, end);
1551 data += bytes_read;
1552 break;
1553 }
1554
1555 switch (form)
1556 {
1557 case DW_FORM_ref_addr:
1558 if (!do_loc)
1559 printf (" <0x%s>", dwarf_vmatoa ("x",uvalue));
1560 break;
1561
1562 case DW_FORM_GNU_ref_alt:
1563 if (!do_loc)
1564 printf (" <alt 0x%s>", dwarf_vmatoa ("x",uvalue));
1565 break;
1566
1567 case DW_FORM_ref1:
1568 case DW_FORM_ref2:
1569 case DW_FORM_ref4:
1570 case DW_FORM_ref_udata:
1571 if (!do_loc)
1572 printf (" <0x%s>", dwarf_vmatoa ("x", uvalue + cu_offset));
1573 break;
1574
1575 case DW_FORM_data4:
1576 case DW_FORM_addr:
1577 case DW_FORM_sec_offset:
1578 if (!do_loc)
1579 printf (" 0x%s", dwarf_vmatoa ("x", uvalue));
1580 break;
1581
1582 case DW_FORM_flag_present:
1583 case DW_FORM_flag:
1584 case DW_FORM_data1:
1585 case DW_FORM_data2:
1586 case DW_FORM_sdata:
1587 case DW_FORM_udata:
1588 if (!do_loc)
1589 printf (" %s", dwarf_vmatoa ("d", uvalue));
1590 break;
1591
1592 case DW_FORM_ref8:
1593 case DW_FORM_data8:
1594 if (!do_loc)
1595 {
1596 dwarf_vma high_bits;
1597 dwarf_vma utmp;
1598 char buf[64];
1599
1600 SAFE_BYTE_GET64 (data, &high_bits, &uvalue, end);
1601 utmp = uvalue;
1602 if (form == DW_FORM_ref8)
1603 add64 (& high_bits, & utmp, cu_offset);
1604 printf (" 0x%s",
1605 dwarf_vmatoa64 (high_bits, utmp, buf, sizeof (buf)));
1606 }
1607
1608 if ((do_loc || do_debug_loc || do_debug_ranges)
1609 && num_debug_info_entries == 0)
1610 {
1611 if (sizeof (uvalue) == 8)
1612 SAFE_BYTE_GET (uvalue, data, 8, end);
1613 else
1614 error (_("DW_FORM_data8 is unsupported when sizeof (dwarf_vma) != 8\n"));
1615 }
1616
1617 data += 8;
1618 break;
1619
1620 case DW_FORM_string:
1621 if (!do_loc)
1622 printf (" %.*s", (int) (end - data), data);
1623 data += strnlen ((char *) data, end - data) + 1;
1624 break;
1625
1626 case DW_FORM_block:
1627 case DW_FORM_exprloc:
1628 uvalue = read_uleb128 (data, & bytes_read, end);
1629 block_start = data + bytes_read;
1630 if (do_loc)
1631 data = block_start + uvalue;
1632 else
1633 data = display_block (block_start, uvalue, end);
1634 break;
1635
1636 case DW_FORM_block1:
1637 SAFE_BYTE_GET (uvalue, data, 1, end);
1638 block_start = data + 1;
1639 if (do_loc)
1640 data = block_start + uvalue;
1641 else
1642 data = display_block (block_start, uvalue, end);
1643 break;
1644
1645 case DW_FORM_block2:
1646 SAFE_BYTE_GET (uvalue, data, 2, end);
1647 block_start = data + 2;
1648 if (do_loc)
1649 data = block_start + uvalue;
1650 else
1651 data = display_block (block_start, uvalue, end);
1652 break;
1653
1654 case DW_FORM_block4:
1655 SAFE_BYTE_GET (uvalue, data, 4, end);
1656 block_start = data + 4;
1657 if (do_loc)
1658 data = block_start + uvalue;
1659 else
1660 data = display_block (block_start, uvalue, end);
1661 break;
1662
1663 case DW_FORM_strp:
1664 if (!do_loc)
1665 printf (_(" (indirect string, offset: 0x%s): %s"),
1666 dwarf_vmatoa ("x", uvalue),
1667 fetch_indirect_string (uvalue));
1668 break;
1669
1670 case DW_FORM_GNU_str_index:
1671 if (!do_loc)
1672 {
1673 const char *suffix = strrchr (section->name, '.');
1674 int dwo = (suffix && strcmp (suffix, ".dwo") == 0) ? 1 : 0;
1675
1676 printf (_(" (indexed string: 0x%s): %s"),
1677 dwarf_vmatoa ("x", uvalue),
1678 fetch_indexed_string (uvalue, this_set, offset_size, dwo));
1679 }
1680 break;
1681
1682 case DW_FORM_GNU_strp_alt:
1683 if (!do_loc)
1684 printf (_(" (alt indirect string, offset: 0x%s)"),
1685 dwarf_vmatoa ("x", uvalue));
1686 break;
1687
1688 case DW_FORM_indirect:
1689 /* Handled above. */
1690 break;
1691
1692 case DW_FORM_ref_sig8:
1693 if (!do_loc)
1694 {
1695 dwarf_vma high_bits;
1696 char buf[64];
1697
1698 SAFE_BYTE_GET64 (data, &high_bits, &uvalue, end);
1699 printf (" signature: 0x%s",
1700 dwarf_vmatoa64 (high_bits, uvalue, buf, sizeof (buf)));
1701 }
1702 data += 8;
1703 break;
1704
1705 case DW_FORM_GNU_addr_index:
1706 if (!do_loc)
1707 printf (_(" (addr_index: 0x%s): %s"),
1708 dwarf_vmatoa ("x", uvalue),
1709 fetch_indexed_value (uvalue * pointer_size, pointer_size));
1710 break;
1711
1712 default:
1713 warn (_("Unrecognized form: %lu\n"), form);
1714 break;
1715 }
1716
1717 if ((do_loc || do_debug_loc || do_debug_ranges)
1718 && num_debug_info_entries == 0
1719 && debug_info_p != NULL)
1720 {
1721 switch (attribute)
1722 {
1723 case DW_AT_frame_base:
1724 have_frame_base = 1;
1725 case DW_AT_location:
1726 case DW_AT_string_length:
1727 case DW_AT_return_addr:
1728 case DW_AT_data_member_location:
1729 case DW_AT_vtable_elem_location:
1730 case DW_AT_segment:
1731 case DW_AT_static_link:
1732 case DW_AT_use_location:
1733 case DW_AT_GNU_call_site_value:
1734 case DW_AT_GNU_call_site_data_value:
1735 case DW_AT_GNU_call_site_target:
1736 case DW_AT_GNU_call_site_target_clobbered:
1737 if ((dwarf_version < 4
1738 && (form == DW_FORM_data4 || form == DW_FORM_data8))
1739 || form == DW_FORM_sec_offset)
1740 {
1741 /* Process location list. */
1742 unsigned int lmax = debug_info_p->max_loc_offsets;
1743 unsigned int num = debug_info_p->num_loc_offsets;
1744
1745 if (lmax == 0 || num >= lmax)
1746 {
1747 lmax += 1024;
1748 debug_info_p->loc_offsets = (dwarf_vma *)
1749 xcrealloc (debug_info_p->loc_offsets,
1750 lmax, sizeof (*debug_info_p->loc_offsets));
1751 debug_info_p->have_frame_base = (int *)
1752 xcrealloc (debug_info_p->have_frame_base,
1753 lmax, sizeof (*debug_info_p->have_frame_base));
1754 debug_info_p->max_loc_offsets = lmax;
1755 }
1756 if (this_set != NULL)
1757 uvalue += this_set->section_offsets [DW_SECT_LOC];
1758 debug_info_p->loc_offsets [num] = uvalue;
1759 debug_info_p->have_frame_base [num] = have_frame_base;
1760 debug_info_p->num_loc_offsets++;
1761 }
1762 break;
1763
1764 case DW_AT_low_pc:
1765 if (need_base_address)
1766 debug_info_p->base_address = uvalue;
1767 break;
1768
1769 case DW_AT_GNU_addr_base:
1770 debug_info_p->addr_base = uvalue;
1771 break;
1772
1773 case DW_AT_GNU_ranges_base:
1774 debug_info_p->ranges_base = uvalue;
1775 break;
1776
1777 case DW_AT_ranges:
1778 if ((dwarf_version < 4
1779 && (form == DW_FORM_data4 || form == DW_FORM_data8))
1780 || form == DW_FORM_sec_offset)
1781 {
1782 /* Process range list. */
1783 unsigned int lmax = debug_info_p->max_range_lists;
1784 unsigned int num = debug_info_p->num_range_lists;
1785
1786 if (lmax == 0 || num >= lmax)
1787 {
1788 lmax += 1024;
1789 debug_info_p->range_lists = (dwarf_vma *)
1790 xcrealloc (debug_info_p->range_lists,
1791 lmax, sizeof (*debug_info_p->range_lists));
1792 debug_info_p->max_range_lists = lmax;
1793 }
1794 debug_info_p->range_lists [num] = uvalue;
1795 debug_info_p->num_range_lists++;
1796 }
1797 break;
1798
1799 default:
1800 break;
1801 }
1802 }
1803
1804 if (do_loc || attribute == 0)
1805 return data;
1806
1807 /* For some attributes we can display further information. */
1808 switch (attribute)
1809 {
1810 case DW_AT_inline:
1811 printf ("\t");
1812 switch (uvalue)
1813 {
1814 case DW_INL_not_inlined:
1815 printf (_("(not inlined)"));
1816 break;
1817 case DW_INL_inlined:
1818 printf (_("(inlined)"));
1819 break;
1820 case DW_INL_declared_not_inlined:
1821 printf (_("(declared as inline but ignored)"));
1822 break;
1823 case DW_INL_declared_inlined:
1824 printf (_("(declared as inline and inlined)"));
1825 break;
1826 default:
1827 printf (_(" (Unknown inline attribute value: %s)"),
1828 dwarf_vmatoa ("x", uvalue));
1829 break;
1830 }
1831 break;
1832
1833 case DW_AT_language:
1834 printf ("\t");
1835 switch (uvalue)
1836 {
1837 /* Ordered by the numeric value of these constants. */
1838 case DW_LANG_C89: printf ("(ANSI C)"); break;
1839 case DW_LANG_C: printf ("(non-ANSI C)"); break;
1840 case DW_LANG_Ada83: printf ("(Ada)"); break;
1841 case DW_LANG_C_plus_plus: printf ("(C++)"); break;
1842 case DW_LANG_Cobol74: printf ("(Cobol 74)"); break;
1843 case DW_LANG_Cobol85: printf ("(Cobol 85)"); break;
1844 case DW_LANG_Fortran77: printf ("(FORTRAN 77)"); break;
1845 case DW_LANG_Fortran90: printf ("(Fortran 90)"); break;
1846 case DW_LANG_Pascal83: printf ("(ANSI Pascal)"); break;
1847 case DW_LANG_Modula2: printf ("(Modula 2)"); break;
1848 /* DWARF 2.1 values. */
1849 case DW_LANG_Java: printf ("(Java)"); break;
1850 case DW_LANG_C99: printf ("(ANSI C99)"); break;
1851 case DW_LANG_Ada95: printf ("(ADA 95)"); break;
1852 case DW_LANG_Fortran95: printf ("(Fortran 95)"); break;
1853 /* DWARF 3 values. */
1854 case DW_LANG_PLI: printf ("(PLI)"); break;
1855 case DW_LANG_ObjC: printf ("(Objective C)"); break;
1856 case DW_LANG_ObjC_plus_plus: printf ("(Objective C++)"); break;
1857 case DW_LANG_UPC: printf ("(Unified Parallel C)"); break;
1858 case DW_LANG_D: printf ("(D)"); break;
1859 /* DWARF 4 values. */
1860 case DW_LANG_Python: printf ("(Python)"); break;
1861 /* DWARF 5 values. */
1862 case DW_LANG_Go: printf ("(Go)"); break;
1863 /* MIPS extension. */
1864 case DW_LANG_Mips_Assembler: printf ("(MIPS assembler)"); break;
1865 /* UPC extension. */
1866 case DW_LANG_Upc: printf ("(Unified Parallel C)"); break;
1867 default:
1868 if (uvalue >= DW_LANG_lo_user && uvalue <= DW_LANG_hi_user)
1869 printf (_("(implementation defined: %s)"),
1870 dwarf_vmatoa ("x", uvalue));
1871 else
1872 printf (_("(Unknown: %s)"), dwarf_vmatoa ("x", uvalue));
1873 break;
1874 }
1875 break;
1876
1877 case DW_AT_encoding:
1878 printf ("\t");
1879 switch (uvalue)
1880 {
1881 case DW_ATE_void: printf ("(void)"); break;
1882 case DW_ATE_address: printf ("(machine address)"); break;
1883 case DW_ATE_boolean: printf ("(boolean)"); break;
1884 case DW_ATE_complex_float: printf ("(complex float)"); break;
1885 case DW_ATE_float: printf ("(float)"); break;
1886 case DW_ATE_signed: printf ("(signed)"); break;
1887 case DW_ATE_signed_char: printf ("(signed char)"); break;
1888 case DW_ATE_unsigned: printf ("(unsigned)"); break;
1889 case DW_ATE_unsigned_char: printf ("(unsigned char)"); break;
1890 /* DWARF 2.1 values: */
1891 case DW_ATE_imaginary_float: printf ("(imaginary float)"); break;
1892 case DW_ATE_decimal_float: printf ("(decimal float)"); break;
1893 /* DWARF 3 values: */
1894 case DW_ATE_packed_decimal: printf ("(packed_decimal)"); break;
1895 case DW_ATE_numeric_string: printf ("(numeric_string)"); break;
1896 case DW_ATE_edited: printf ("(edited)"); break;
1897 case DW_ATE_signed_fixed: printf ("(signed_fixed)"); break;
1898 case DW_ATE_unsigned_fixed: printf ("(unsigned_fixed)"); break;
1899 /* HP extensions: */
1900 case DW_ATE_HP_float80: printf ("(HP_float80)"); break;
1901 case DW_ATE_HP_complex_float80: printf ("(HP_complex_float80)"); break;
1902 case DW_ATE_HP_float128: printf ("(HP_float128)"); break;
1903 case DW_ATE_HP_complex_float128:printf ("(HP_complex_float128)"); break;
1904 case DW_ATE_HP_floathpintel: printf ("(HP_floathpintel)"); break;
1905 case DW_ATE_HP_imaginary_float80: printf ("(HP_imaginary_float80)"); break;
1906 case DW_ATE_HP_imaginary_float128: printf ("(HP_imaginary_float128)"); break;
1907
1908 default:
1909 if (uvalue >= DW_ATE_lo_user
1910 && uvalue <= DW_ATE_hi_user)
1911 printf (_("(user defined type)"));
1912 else
1913 printf (_("(unknown type)"));
1914 break;
1915 }
1916 break;
1917
1918 case DW_AT_accessibility:
1919 printf ("\t");
1920 switch (uvalue)
1921 {
1922 case DW_ACCESS_public: printf ("(public)"); break;
1923 case DW_ACCESS_protected: printf ("(protected)"); break;
1924 case DW_ACCESS_private: printf ("(private)"); break;
1925 default:
1926 printf (_("(unknown accessibility)"));
1927 break;
1928 }
1929 break;
1930
1931 case DW_AT_visibility:
1932 printf ("\t");
1933 switch (uvalue)
1934 {
1935 case DW_VIS_local: printf ("(local)"); break;
1936 case DW_VIS_exported: printf ("(exported)"); break;
1937 case DW_VIS_qualified: printf ("(qualified)"); break;
1938 default: printf (_("(unknown visibility)")); break;
1939 }
1940 break;
1941
1942 case DW_AT_virtuality:
1943 printf ("\t");
1944 switch (uvalue)
1945 {
1946 case DW_VIRTUALITY_none: printf ("(none)"); break;
1947 case DW_VIRTUALITY_virtual: printf ("(virtual)"); break;
1948 case DW_VIRTUALITY_pure_virtual:printf ("(pure_virtual)"); break;
1949 default: printf (_("(unknown virtuality)")); break;
1950 }
1951 break;
1952
1953 case DW_AT_identifier_case:
1954 printf ("\t");
1955 switch (uvalue)
1956 {
1957 case DW_ID_case_sensitive: printf ("(case_sensitive)"); break;
1958 case DW_ID_up_case: printf ("(up_case)"); break;
1959 case DW_ID_down_case: printf ("(down_case)"); break;
1960 case DW_ID_case_insensitive: printf ("(case_insensitive)"); break;
1961 default: printf (_("(unknown case)")); break;
1962 }
1963 break;
1964
1965 case DW_AT_calling_convention:
1966 printf ("\t");
1967 switch (uvalue)
1968 {
1969 case DW_CC_normal: printf ("(normal)"); break;
1970 case DW_CC_program: printf ("(program)"); break;
1971 case DW_CC_nocall: printf ("(nocall)"); break;
1972 default:
1973 if (uvalue >= DW_CC_lo_user
1974 && uvalue <= DW_CC_hi_user)
1975 printf (_("(user defined)"));
1976 else
1977 printf (_("(unknown convention)"));
1978 }
1979 break;
1980
1981 case DW_AT_ordering:
1982 printf ("\t");
1983 switch (uvalue)
1984 {
1985 case -1: printf (_("(undefined)")); break;
1986 case 0: printf ("(row major)"); break;
1987 case 1: printf ("(column major)"); break;
1988 }
1989 break;
1990
1991 case DW_AT_frame_base:
1992 have_frame_base = 1;
1993 case DW_AT_location:
1994 case DW_AT_string_length:
1995 case DW_AT_return_addr:
1996 case DW_AT_data_member_location:
1997 case DW_AT_vtable_elem_location:
1998 case DW_AT_segment:
1999 case DW_AT_static_link:
2000 case DW_AT_use_location:
2001 case DW_AT_GNU_call_site_value:
2002 case DW_AT_GNU_call_site_data_value:
2003 case DW_AT_GNU_call_site_target:
2004 case DW_AT_GNU_call_site_target_clobbered:
2005 if ((dwarf_version < 4
2006 && (form == DW_FORM_data4 || form == DW_FORM_data8))
2007 || form == DW_FORM_sec_offset)
2008 printf (_(" (location list)"));
2009 /* Fall through. */
2010 case DW_AT_allocated:
2011 case DW_AT_associated:
2012 case DW_AT_data_location:
2013 case DW_AT_stride:
2014 case DW_AT_upper_bound:
2015 case DW_AT_lower_bound:
2016 if (block_start)
2017 {
2018 int need_frame_base;
2019
2020 printf ("\t(");
2021 need_frame_base = decode_location_expression (block_start,
2022 pointer_size,
2023 offset_size,
2024 dwarf_version,
2025 uvalue,
2026 cu_offset, section);
2027 printf (")");
2028 if (need_frame_base && !have_frame_base)
2029 printf (_(" [without DW_AT_frame_base]"));
2030 }
2031 break;
2032
2033 case DW_AT_import:
2034 {
2035 if (form == DW_FORM_ref_sig8
2036 || form == DW_FORM_GNU_ref_alt)
2037 break;
2038
2039 if (form == DW_FORM_ref1
2040 || form == DW_FORM_ref2
2041 || form == DW_FORM_ref4
2042 || form == DW_FORM_ref_udata)
2043 uvalue += cu_offset;
2044
2045 if (uvalue >= section->size)
2046 warn (_("Offset %s used as value for DW_AT_import attribute of DIE at offset %lx is too big.\n"),
2047 dwarf_vmatoa ("x", uvalue),
2048 (unsigned long) (orig_data - section->start));
2049 else
2050 {
2051 unsigned long abbrev_number;
2052 abbrev_entry * entry;
2053
2054 abbrev_number = read_uleb128 (section->start + uvalue, NULL, end);
2055
2056 printf (_("\t[Abbrev Number: %ld"), abbrev_number);
2057 /* Don't look up abbrev for DW_FORM_ref_addr, as it very often will
2058 use different abbrev table, and we don't track .debug_info chunks
2059 yet. */
2060 if (form != DW_FORM_ref_addr)
2061 {
2062 for (entry = first_abbrev; entry != NULL; entry = entry->next)
2063 if (entry->entry == abbrev_number)
2064 break;
2065 if (entry != NULL)
2066 printf (" (%s)", get_TAG_name (entry->tag));
2067 }
2068 printf ("]");
2069 }
2070 }
2071 break;
2072
2073 default:
2074 break;
2075 }
2076
2077 return data;
2078 }
2079
2080 static const char *
2081 get_AT_name (unsigned long attribute)
2082 {
2083 const char *name;
2084
2085 if (attribute == 0)
2086 return "DW_AT value: 0";
2087
2088 /* One value is shared by the MIPS and HP extensions: */
2089 if (attribute == DW_AT_MIPS_fde)
2090 return "DW_AT_MIPS_fde or DW_AT_HP_unmodifiable";
2091
2092 name = get_DW_AT_name (attribute);
2093
2094 if (name == NULL)
2095 {
2096 static char buffer[100];
2097
2098 snprintf (buffer, sizeof (buffer), _("Unknown AT value: %lx"),
2099 attribute);
2100 return buffer;
2101 }
2102
2103 return name;
2104 }
2105
2106 static unsigned char *
2107 read_and_display_attr (unsigned long attribute,
2108 unsigned long form,
2109 unsigned char * data,
2110 unsigned char * end,
2111 dwarf_vma cu_offset,
2112 dwarf_vma pointer_size,
2113 dwarf_vma offset_size,
2114 int dwarf_version,
2115 debug_info * debug_info_p,
2116 int do_loc,
2117 struct dwarf_section * section,
2118 struct cu_tu_set * this_set)
2119 {
2120 if (!do_loc)
2121 printf (" %-18s:", get_AT_name (attribute));
2122 data = read_and_display_attr_value (attribute, form, data, end,
2123 cu_offset, pointer_size, offset_size,
2124 dwarf_version, debug_info_p,
2125 do_loc, section, this_set);
2126 if (!do_loc)
2127 printf ("\n");
2128 return data;
2129 }
2130
2131 /* Process the contents of a .debug_info section. If do_loc is non-zero
2132 then we are scanning for location lists and we do not want to display
2133 anything to the user. If do_types is non-zero, we are processing
2134 a .debug_types section instead of a .debug_info section. */
2135
2136 static int
2137 process_debug_info (struct dwarf_section *section,
2138 void *file,
2139 enum dwarf_section_display_enum abbrev_sec,
2140 int do_loc,
2141 int do_types)
2142 {
2143 unsigned char *start = section->start;
2144 unsigned char *end = start + section->size;
2145 unsigned char *section_begin;
2146 unsigned int unit;
2147 unsigned int num_units = 0;
2148
2149 if ((do_loc || do_debug_loc || do_debug_ranges)
2150 && num_debug_info_entries == 0
2151 && ! do_types)
2152 {
2153 dwarf_vma length;
2154
2155 /* First scan the section to get the number of comp units. */
2156 for (section_begin = start, num_units = 0; section_begin < end;
2157 num_units ++)
2158 {
2159 /* Read the first 4 bytes. For a 32-bit DWARF section, this
2160 will be the length. For a 64-bit DWARF section, it'll be
2161 the escape code 0xffffffff followed by an 8 byte length. */
2162 SAFE_BYTE_GET (length, section_begin, 4, end);
2163
2164 if (length == 0xffffffff)
2165 {
2166 SAFE_BYTE_GET (length, section_begin + 4, 8, end);
2167 section_begin += length + 12;
2168 }
2169 else if (length >= 0xfffffff0 && length < 0xffffffff)
2170 {
2171 warn (_("Reserved length value (0x%s) found in section %s\n"),
2172 dwarf_vmatoa ("x", length), section->name);
2173 return 0;
2174 }
2175 else
2176 section_begin += length + 4;
2177
2178 /* Negative values are illegal, they may even cause infinite
2179 looping. This can happen if we can't accurately apply
2180 relocations to an object file. */
2181 if ((signed long) length <= 0)
2182 {
2183 warn (_("Corrupt unit length (0x%s) found in section %s\n"),
2184 dwarf_vmatoa ("x", length), section->name);
2185 return 0;
2186 }
2187 }
2188
2189 if (num_units == 0)
2190 {
2191 error (_("No comp units in %s section ?"), section->name);
2192 return 0;
2193 }
2194
2195 /* Then allocate an array to hold the information. */
2196 debug_information = (debug_info *) cmalloc (num_units,
2197 sizeof (* debug_information));
2198 if (debug_information == NULL)
2199 {
2200 error (_("Not enough memory for a debug info array of %u entries"),
2201 num_units);
2202 return 0;
2203 }
2204 }
2205
2206 if (!do_loc)
2207 {
2208 if (dwarf_start_die == 0)
2209 printf (_("Contents of the %s section:\n\n"), section->name);
2210
2211 load_debug_section (str, file);
2212 load_debug_section (str_dwo, file);
2213 load_debug_section (str_index, file);
2214 load_debug_section (str_index_dwo, file);
2215 load_debug_section (debug_addr, file);
2216 }
2217
2218 load_debug_section (abbrev_sec, file);
2219 if (debug_displays [abbrev_sec].section.start == NULL)
2220 {
2221 warn (_("Unable to locate %s section!\n"),
2222 debug_displays [abbrev_sec].section.name);
2223 return 0;
2224 }
2225
2226 for (section_begin = start, unit = 0; start < end; unit++)
2227 {
2228 DWARF2_Internal_CompUnit compunit;
2229 unsigned char *hdrptr;
2230 unsigned char *tags;
2231 int level, last_level, saved_level;
2232 dwarf_vma cu_offset;
2233 unsigned int offset_size;
2234 int initial_length_size;
2235 dwarf_vma signature_high = 0;
2236 dwarf_vma signature_low = 0;
2237 dwarf_vma type_offset = 0;
2238 struct cu_tu_set *this_set;
2239 dwarf_vma abbrev_base;
2240 size_t abbrev_size;
2241
2242 hdrptr = start;
2243
2244 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 4, end);
2245
2246 if (compunit.cu_length == 0xffffffff)
2247 {
2248 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 8, end);
2249 offset_size = 8;
2250 initial_length_size = 12;
2251 }
2252 else
2253 {
2254 offset_size = 4;
2255 initial_length_size = 4;
2256 }
2257
2258 SAFE_BYTE_GET_AND_INC (compunit.cu_version, hdrptr, 2, end);
2259
2260 cu_offset = start - section_begin;
2261
2262 this_set = find_cu_tu_set_v2 (cu_offset, do_types);
2263
2264 SAFE_BYTE_GET_AND_INC (compunit.cu_abbrev_offset, hdrptr, offset_size, end);
2265
2266 if (this_set == NULL)
2267 {
2268 abbrev_base = 0;
2269 abbrev_size = debug_displays [abbrev_sec].section.size;
2270 }
2271 else
2272 {
2273 abbrev_base = this_set->section_offsets [DW_SECT_ABBREV];
2274 abbrev_size = this_set->section_sizes [DW_SECT_ABBREV];
2275 }
2276
2277 SAFE_BYTE_GET_AND_INC (compunit.cu_pointer_size, hdrptr, 1, end);
2278
2279 if (do_types)
2280 {
2281 SAFE_BYTE_GET64 (hdrptr, &signature_high, &signature_low, end);
2282 hdrptr += 8;
2283 SAFE_BYTE_GET_AND_INC (type_offset, hdrptr, offset_size, end);
2284 }
2285
2286 if ((do_loc || do_debug_loc || do_debug_ranges)
2287 && num_debug_info_entries == 0
2288 && ! do_types)
2289 {
2290 debug_information [unit].cu_offset = cu_offset;
2291 debug_information [unit].pointer_size
2292 = compunit.cu_pointer_size;
2293 debug_information [unit].offset_size = offset_size;
2294 debug_information [unit].dwarf_version = compunit.cu_version;
2295 debug_information [unit].base_address = 0;
2296 debug_information [unit].addr_base = DEBUG_INFO_UNAVAILABLE;
2297 debug_information [unit].ranges_base = DEBUG_INFO_UNAVAILABLE;
2298 debug_information [unit].loc_offsets = NULL;
2299 debug_information [unit].have_frame_base = NULL;
2300 debug_information [unit].max_loc_offsets = 0;
2301 debug_information [unit].num_loc_offsets = 0;
2302 debug_information [unit].range_lists = NULL;
2303 debug_information [unit].max_range_lists= 0;
2304 debug_information [unit].num_range_lists = 0;
2305 }
2306
2307 if (!do_loc && dwarf_start_die == 0)
2308 {
2309 printf (_(" Compilation Unit @ offset 0x%s:\n"),
2310 dwarf_vmatoa ("x", cu_offset));
2311 printf (_(" Length: 0x%s (%s)\n"),
2312 dwarf_vmatoa ("x", compunit.cu_length),
2313 offset_size == 8 ? "64-bit" : "32-bit");
2314 printf (_(" Version: %d\n"), compunit.cu_version);
2315 printf (_(" Abbrev Offset: 0x%s\n"),
2316 dwarf_vmatoa ("x", compunit.cu_abbrev_offset));
2317 printf (_(" Pointer Size: %d\n"), compunit.cu_pointer_size);
2318 if (do_types)
2319 {
2320 char buf[64];
2321
2322 printf (_(" Signature: 0x%s\n"),
2323 dwarf_vmatoa64 (signature_high, signature_low,
2324 buf, sizeof (buf)));
2325 printf (_(" Type Offset: 0x%s\n"),
2326 dwarf_vmatoa ("x", type_offset));
2327 }
2328 if (this_set != NULL)
2329 {
2330 dwarf_vma *offsets = this_set->section_offsets;
2331 size_t *sizes = this_set->section_sizes;
2332
2333 printf (_(" Section contributions:\n"));
2334 printf (_(" .debug_abbrev.dwo: 0x%s 0x%s\n"),
2335 dwarf_vmatoa ("x", offsets [DW_SECT_ABBREV]),
2336 dwarf_vmatoa ("x", sizes [DW_SECT_ABBREV]));
2337 printf (_(" .debug_line.dwo: 0x%s 0x%s\n"),
2338 dwarf_vmatoa ("x", offsets [DW_SECT_LINE]),
2339 dwarf_vmatoa ("x", sizes [DW_SECT_LINE]));
2340 printf (_(" .debug_loc.dwo: 0x%s 0x%s\n"),
2341 dwarf_vmatoa ("x", offsets [DW_SECT_LOC]),
2342 dwarf_vmatoa ("x", sizes [DW_SECT_LOC]));
2343 printf (_(" .debug_str_offsets.dwo: 0x%s 0x%s\n"),
2344 dwarf_vmatoa ("x", offsets [DW_SECT_STR_OFFSETS]),
2345 dwarf_vmatoa ("x", sizes [DW_SECT_STR_OFFSETS]));
2346 }
2347 }
2348
2349 if (cu_offset + compunit.cu_length + initial_length_size
2350 > section->size)
2351 {
2352 warn (_("Debug info is corrupted, length of CU at %s"
2353 " extends beyond end of section (length = %s)\n"),
2354 dwarf_vmatoa ("x", cu_offset),
2355 dwarf_vmatoa ("x", compunit.cu_length));
2356 break;
2357 }
2358 tags = hdrptr;
2359 start += compunit.cu_length + initial_length_size;
2360
2361 if (compunit.cu_version != 2
2362 && compunit.cu_version != 3
2363 && compunit.cu_version != 4)
2364 {
2365 warn (_("CU at offset %s contains corrupt or "
2366 "unsupported version number: %d.\n"),
2367 dwarf_vmatoa ("x", cu_offset), compunit.cu_version);
2368 continue;
2369 }
2370
2371 free_abbrevs ();
2372
2373 /* Process the abbrevs used by this compilation unit. */
2374 if (compunit.cu_abbrev_offset >= abbrev_size)
2375 warn (_("Debug info is corrupted, abbrev offset (%lx) is larger than abbrev section size (%lx)\n"),
2376 (unsigned long) compunit.cu_abbrev_offset,
2377 (unsigned long) abbrev_size);
2378 else
2379 process_abbrev_section
2380 (((unsigned char *) debug_displays [abbrev_sec].section.start
2381 + abbrev_base + compunit.cu_abbrev_offset),
2382 ((unsigned char *) debug_displays [abbrev_sec].section.start
2383 + abbrev_base + abbrev_size));
2384
2385 level = 0;
2386 last_level = level;
2387 saved_level = -1;
2388 while (tags < start)
2389 {
2390 unsigned int bytes_read;
2391 unsigned long abbrev_number;
2392 unsigned long die_offset;
2393 abbrev_entry *entry;
2394 abbrev_attr *attr;
2395 int do_printing = 1;
2396
2397 die_offset = tags - section_begin;
2398
2399 abbrev_number = read_uleb128 (tags, & bytes_read, start);
2400 tags += bytes_read;
2401
2402 /* A null DIE marks the end of a list of siblings or it may also be
2403 a section padding. */
2404 if (abbrev_number == 0)
2405 {
2406 /* Check if it can be a section padding for the last CU. */
2407 if (level == 0 && start == end)
2408 {
2409 unsigned char *chk;
2410
2411 for (chk = tags; chk < start; chk++)
2412 if (*chk != 0)
2413 break;
2414 if (chk == start)
2415 break;
2416 }
2417
2418 if (!do_loc && die_offset >= dwarf_start_die
2419 && (dwarf_cutoff_level == -1
2420 || level < dwarf_cutoff_level))
2421 printf (_(" <%d><%lx>: Abbrev Number: 0\n"),
2422 level, die_offset);
2423
2424 --level;
2425 if (level < 0)
2426 {
2427 static unsigned num_bogus_warns = 0;
2428
2429 if (num_bogus_warns < 3)
2430 {
2431 warn (_("Bogus end-of-siblings marker detected at offset %lx in %s section\n"),
2432 die_offset, section->name);
2433 num_bogus_warns ++;
2434 if (num_bogus_warns == 3)
2435 warn (_("Further warnings about bogus end-of-sibling markers suppressed\n"));
2436 }
2437 }
2438 if (dwarf_start_die != 0 && level < saved_level)
2439 return 1;
2440 continue;
2441 }
2442
2443 if (!do_loc)
2444 {
2445 if (dwarf_start_die != 0 && die_offset < dwarf_start_die)
2446 do_printing = 0;
2447 else
2448 {
2449 if (dwarf_start_die != 0 && die_offset == dwarf_start_die)
2450 saved_level = level;
2451 do_printing = (dwarf_cutoff_level == -1
2452 || level < dwarf_cutoff_level);
2453 if (do_printing)
2454 printf (_(" <%d><%lx>: Abbrev Number: %lu"),
2455 level, die_offset, abbrev_number);
2456 else if (dwarf_cutoff_level == -1
2457 || last_level < dwarf_cutoff_level)
2458 printf (_(" <%d><%lx>: ...\n"), level, die_offset);
2459 last_level = level;
2460 }
2461 }
2462
2463 /* Scan through the abbreviation list until we reach the
2464 correct entry. */
2465 for (entry = first_abbrev;
2466 entry && entry->entry != abbrev_number;
2467 entry = entry->next)
2468 continue;
2469
2470 if (entry == NULL)
2471 {
2472 if (!do_loc && do_printing)
2473 {
2474 printf ("\n");
2475 fflush (stdout);
2476 }
2477 warn (_("DIE at offset %lx refers to abbreviation number %lu which does not exist\n"),
2478 die_offset, abbrev_number);
2479 return 0;
2480 }
2481
2482 if (!do_loc && do_printing)
2483 printf (" (%s)\n", get_TAG_name (entry->tag));
2484
2485 switch (entry->tag)
2486 {
2487 default:
2488 need_base_address = 0;
2489 break;
2490 case DW_TAG_compile_unit:
2491 need_base_address = 1;
2492 break;
2493 case DW_TAG_entry_point:
2494 case DW_TAG_subprogram:
2495 need_base_address = 0;
2496 /* Assuming that there is no DW_AT_frame_base. */
2497 have_frame_base = 0;
2498 break;
2499 }
2500
2501 for (attr = entry->first_attr;
2502 attr && attr->attribute;
2503 attr = attr->next)
2504 {
2505 debug_info *arg;
2506
2507 if (! do_loc && do_printing)
2508 /* Show the offset from where the tag was extracted. */
2509 printf (" <%lx>", (unsigned long)(tags - section_begin));
2510
2511 arg = debug_information;
2512 if (debug_information)
2513 arg += unit;
2514
2515 tags = read_and_display_attr (attr->attribute,
2516 attr->form,
2517 tags,
2518 end,
2519 cu_offset,
2520 compunit.cu_pointer_size,
2521 offset_size,
2522 compunit.cu_version,
2523 arg,
2524 do_loc || ! do_printing,
2525 section,
2526 this_set);
2527 }
2528
2529 if (entry->children)
2530 ++level;
2531 }
2532 }
2533
2534 /* Set num_debug_info_entries here so that it can be used to check if
2535 we need to process .debug_loc and .debug_ranges sections. */
2536 if ((do_loc || do_debug_loc || do_debug_ranges)
2537 && num_debug_info_entries == 0
2538 && ! do_types)
2539 num_debug_info_entries = num_units;
2540
2541 if (!do_loc)
2542 printf ("\n");
2543
2544 return 1;
2545 }
2546
2547 /* Locate and scan the .debug_info section in the file and record the pointer
2548 sizes and offsets for the compilation units in it. Usually an executable
2549 will have just one pointer size, but this is not guaranteed, and so we try
2550 not to make any assumptions. Returns zero upon failure, or the number of
2551 compilation units upon success. */
2552
2553 static unsigned int
2554 load_debug_info (void * file)
2555 {
2556 /* Reset the last pointer size so that we can issue correct error
2557 messages if we are displaying the contents of more than one section. */
2558 last_pointer_size = 0;
2559 warned_about_missing_comp_units = FALSE;
2560
2561 /* If we have already tried and failed to load the .debug_info
2562 section then do not bother to repeat the task. */
2563 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
2564 return 0;
2565
2566 /* If we already have the information there is nothing else to do. */
2567 if (num_debug_info_entries > 0)
2568 return num_debug_info_entries;
2569
2570 /* If this is a DWARF package file, load the CU and TU indexes. */
2571 load_cu_tu_indexes (file);
2572
2573 if (load_debug_section (info, file)
2574 && process_debug_info (&debug_displays [info].section, file, abbrev, 1, 0))
2575 return num_debug_info_entries;
2576 else if (load_debug_section (info_dwo, file)
2577 && process_debug_info (&debug_displays [info_dwo].section, file,
2578 abbrev_dwo, 1, 0))
2579 return num_debug_info_entries;
2580
2581 num_debug_info_entries = DEBUG_INFO_UNAVAILABLE;
2582 return 0;
2583 }
2584
2585 /* Read a DWARF .debug_line section header starting at DATA.
2586 Upon success returns an updated DATA pointer and the LINFO
2587 structure and the END_OF_SEQUENCE pointer will be filled in.
2588 Otherwise returns NULL. */
2589
2590 static unsigned char *
2591 read_debug_line_header (struct dwarf_section * section,
2592 unsigned char * data,
2593 unsigned char * end,
2594 DWARF2_Internal_LineInfo * linfo,
2595 unsigned char ** end_of_sequence)
2596 {
2597 unsigned char *hdrptr;
2598 unsigned int offset_size;
2599 unsigned int initial_length_size;
2600
2601 /* Extract information from the Line Number Program Header.
2602 (section 6.2.4 in the Dwarf3 doc). */
2603 hdrptr = data;
2604
2605 /* Get and check the length of the block. */
2606 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 4, end);
2607
2608 if (linfo->li_length == 0xffffffff)
2609 {
2610 /* This section is 64-bit DWARF 3. */
2611 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 8, end);
2612 offset_size = 8;
2613 initial_length_size = 12;
2614 }
2615 else
2616 {
2617 offset_size = 4;
2618 initial_length_size = 4;
2619 }
2620
2621 if (linfo->li_length + initial_length_size > section->size)
2622 {
2623 /* If the length is just a bias against the initial_length_size then
2624 this means that the field has a relocation against it which has not
2625 been applied. (Ie we are dealing with an object file, not a linked
2626 binary). Do not complain but instead assume that the rest of the
2627 section applies to this particular header. */
2628 if (linfo->li_length == - initial_length_size)
2629 {
2630 linfo->li_length = section->size - initial_length_size;
2631 }
2632 else
2633 {
2634 warn (_("The line info appears to be corrupt - "
2635 "the section is too small\n"));
2636 return NULL;
2637 }
2638 }
2639
2640 /* Get and check the version number. */
2641 SAFE_BYTE_GET_AND_INC (linfo->li_version, hdrptr, 2, end);
2642
2643 if (linfo->li_version != 2
2644 && linfo->li_version != 3
2645 && linfo->li_version != 4)
2646 {
2647 warn (_("Only DWARF version 2, 3 and 4 line info is currently supported.\n"));
2648 return NULL;
2649 }
2650
2651 SAFE_BYTE_GET_AND_INC (linfo->li_prologue_length, hdrptr, offset_size, end);
2652 SAFE_BYTE_GET_AND_INC (linfo->li_min_insn_length, hdrptr, 1, end);
2653
2654 if (linfo->li_version >= 4)
2655 {
2656 SAFE_BYTE_GET_AND_INC (linfo->li_max_ops_per_insn, hdrptr, 1, end);
2657
2658 if (linfo->li_max_ops_per_insn == 0)
2659 {
2660 warn (_("Invalid maximum operations per insn.\n"));
2661 return NULL;
2662 }
2663 }
2664 else
2665 linfo->li_max_ops_per_insn = 1;
2666
2667 SAFE_BYTE_GET_AND_INC (linfo->li_default_is_stmt, hdrptr, 1, end);
2668 SAFE_BYTE_GET_AND_INC (linfo->li_line_base, hdrptr, 1, end);
2669 SAFE_BYTE_GET_AND_INC (linfo->li_line_range, hdrptr, 1, end);
2670 SAFE_BYTE_GET_AND_INC (linfo->li_opcode_base, hdrptr, 1, end);
2671
2672 /* Sign extend the line base field. */
2673 linfo->li_line_base <<= 24;
2674 linfo->li_line_base >>= 24;
2675
2676 * end_of_sequence = data + linfo->li_length + initial_length_size;
2677 return hdrptr;
2678 }
2679
2680 static int
2681 display_debug_lines_raw (struct dwarf_section *section,
2682 unsigned char *data,
2683 unsigned char *end)
2684 {
2685 unsigned char *start = section->start;
2686
2687 printf (_("Raw dump of debug contents of section %s:\n\n"),
2688 section->name);
2689
2690 while (data < end)
2691 {
2692 static DWARF2_Internal_LineInfo saved_linfo;
2693 DWARF2_Internal_LineInfo linfo;
2694 unsigned char *standard_opcodes;
2695 unsigned char *end_of_sequence;
2696 unsigned int last_dir_entry = 0;
2697 int i;
2698
2699 if (const_strneq (section->name, ".debug_line.")
2700 /* Note: the following does not apply to .debug_line.dwo sections.
2701 These are full debug_line sections. */
2702 && strcmp (section->name, ".debug_line.dwo") != 0)
2703 {
2704 /* Sections named .debug_line.<foo> are fragments of a .debug_line
2705 section containing just the Line Number Statements. They are
2706 created by the assembler and intended to be used alongside gcc's
2707 -ffunction-sections command line option. When the linker's
2708 garbage collection decides to discard a .text.<foo> section it
2709 can then also discard the line number information in .debug_line.<foo>.
2710
2711 Since the section is a fragment it does not have the details
2712 needed to fill out a LineInfo structure, so instead we use the
2713 details from the last full debug_line section that we processed. */
2714 end_of_sequence = end;
2715 standard_opcodes = NULL;
2716 linfo = saved_linfo;
2717 reset_state_machine (linfo.li_default_is_stmt);
2718 }
2719 else
2720 {
2721 unsigned char * hdrptr;
2722
2723 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
2724 & end_of_sequence)) == NULL)
2725 return 0;
2726
2727 printf (_(" Offset: 0x%lx\n"), (long)(data - start));
2728 printf (_(" Length: %ld\n"), (long) linfo.li_length);
2729 printf (_(" DWARF Version: %d\n"), linfo.li_version);
2730 printf (_(" Prologue Length: %d\n"), linfo.li_prologue_length);
2731 printf (_(" Minimum Instruction Length: %d\n"), linfo.li_min_insn_length);
2732 if (linfo.li_version >= 4)
2733 printf (_(" Maximum Ops per Instruction: %d\n"), linfo.li_max_ops_per_insn);
2734 printf (_(" Initial value of 'is_stmt': %d\n"), linfo.li_default_is_stmt);
2735 printf (_(" Line Base: %d\n"), linfo.li_line_base);
2736 printf (_(" Line Range: %d\n"), linfo.li_line_range);
2737 printf (_(" Opcode Base: %d\n"), linfo.li_opcode_base);
2738
2739 reset_state_machine (linfo.li_default_is_stmt);
2740
2741 /* Display the contents of the Opcodes table. */
2742 standard_opcodes = hdrptr;
2743
2744 printf (_("\n Opcodes:\n"));
2745
2746 for (i = 1; i < linfo.li_opcode_base; i++)
2747 printf (_(" Opcode %d has %d args\n"), i, standard_opcodes[i - 1]);
2748
2749 /* Display the contents of the Directory table. */
2750 data = standard_opcodes + linfo.li_opcode_base - 1;
2751
2752 if (*data == 0)
2753 printf (_("\n The Directory Table is empty.\n"));
2754 else
2755 {
2756 printf (_("\n The Directory Table (offset 0x%lx):\n"),
2757 (long)(data - start));
2758
2759 while (*data != 0)
2760 {
2761 printf (" %d\t%s\n", ++last_dir_entry, data);
2762
2763 data += strnlen ((char *) data, end - data) + 1;
2764 }
2765 }
2766
2767 /* Skip the NUL at the end of the table. */
2768 data++;
2769
2770 /* Display the contents of the File Name table. */
2771 if (*data == 0)
2772 printf (_("\n The File Name Table is empty.\n"));
2773 else
2774 {
2775 printf (_("\n The File Name Table (offset 0x%lx):\n"),
2776 (long)(data - start));
2777 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
2778
2779 while (*data != 0)
2780 {
2781 unsigned char *name;
2782 unsigned int bytes_read;
2783
2784 printf (" %d\t", ++state_machine_regs.last_file_entry);
2785 name = data;
2786 data += strnlen ((char *) data, end - data) + 1;
2787
2788 printf ("%s\t",
2789 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2790 data += bytes_read;
2791 printf ("%s\t",
2792 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2793 data += bytes_read;
2794 printf ("%s\t",
2795 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2796 data += bytes_read;
2797 printf ("%s\n", name);
2798
2799 if (data == end)
2800 {
2801 warn (_("Corrupt file name table entry\n"));
2802 break;
2803 }
2804 }
2805 }
2806
2807 /* Skip the NUL at the end of the table. */
2808 data++;
2809 putchar ('\n');
2810 saved_linfo = linfo;
2811 }
2812
2813 /* Now display the statements. */
2814 if (data >= end_of_sequence)
2815 printf (_(" No Line Number Statements.\n"));
2816 else
2817 {
2818 printf (_(" Line Number Statements:\n"));
2819
2820 while (data < end_of_sequence)
2821 {
2822 unsigned char op_code;
2823 dwarf_signed_vma adv;
2824 dwarf_vma uladv;
2825 unsigned int bytes_read;
2826
2827 printf (" [0x%08lx]", (long)(data - start));
2828
2829 op_code = *data++;
2830
2831 if (op_code >= linfo.li_opcode_base)
2832 {
2833 op_code -= linfo.li_opcode_base;
2834 uladv = (op_code / linfo.li_line_range);
2835 if (linfo.li_max_ops_per_insn == 1)
2836 {
2837 uladv *= linfo.li_min_insn_length;
2838 state_machine_regs.address += uladv;
2839 printf (_(" Special opcode %d: "
2840 "advance Address by %s to 0x%s"),
2841 op_code, dwarf_vmatoa ("u", uladv),
2842 dwarf_vmatoa ("x", state_machine_regs.address));
2843 }
2844 else
2845 {
2846 state_machine_regs.address
2847 += ((state_machine_regs.op_index + uladv)
2848 / linfo.li_max_ops_per_insn)
2849 * linfo.li_min_insn_length;
2850 state_machine_regs.op_index
2851 = (state_machine_regs.op_index + uladv)
2852 % linfo.li_max_ops_per_insn;
2853 printf (_(" Special opcode %d: "
2854 "advance Address by %s to 0x%s[%d]"),
2855 op_code, dwarf_vmatoa ("u", uladv),
2856 dwarf_vmatoa ("x", state_machine_regs.address),
2857 state_machine_regs.op_index);
2858 }
2859 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
2860 state_machine_regs.line += adv;
2861 printf (_(" and Line by %s to %d\n"),
2862 dwarf_vmatoa ("d", adv), state_machine_regs.line);
2863 }
2864 else switch (op_code)
2865 {
2866 case DW_LNS_extended_op:
2867 data += process_extended_line_op (data, linfo.li_default_is_stmt, end);
2868 break;
2869
2870 case DW_LNS_copy:
2871 printf (_(" Copy\n"));
2872 break;
2873
2874 case DW_LNS_advance_pc:
2875 uladv = read_uleb128 (data, & bytes_read, end);
2876 data += bytes_read;
2877 if (linfo.li_max_ops_per_insn == 1)
2878 {
2879 uladv *= linfo.li_min_insn_length;
2880 state_machine_regs.address += uladv;
2881 printf (_(" Advance PC by %s to 0x%s\n"),
2882 dwarf_vmatoa ("u", uladv),
2883 dwarf_vmatoa ("x", state_machine_regs.address));
2884 }
2885 else
2886 {
2887 state_machine_regs.address
2888 += ((state_machine_regs.op_index + uladv)
2889 / linfo.li_max_ops_per_insn)
2890 * linfo.li_min_insn_length;
2891 state_machine_regs.op_index
2892 = (state_machine_regs.op_index + uladv)
2893 % linfo.li_max_ops_per_insn;
2894 printf (_(" Advance PC by %s to 0x%s[%d]\n"),
2895 dwarf_vmatoa ("u", uladv),
2896 dwarf_vmatoa ("x", state_machine_regs.address),
2897 state_machine_regs.op_index);
2898 }
2899 break;
2900
2901 case DW_LNS_advance_line:
2902 adv = read_sleb128 (data, & bytes_read, end);
2903 data += bytes_read;
2904 state_machine_regs.line += adv;
2905 printf (_(" Advance Line by %s to %d\n"),
2906 dwarf_vmatoa ("d", adv),
2907 state_machine_regs.line);
2908 break;
2909
2910 case DW_LNS_set_file:
2911 adv = read_uleb128 (data, & bytes_read, end);
2912 data += bytes_read;
2913 printf (_(" Set File Name to entry %s in the File Name Table\n"),
2914 dwarf_vmatoa ("d", adv));
2915 state_machine_regs.file = adv;
2916 break;
2917
2918 case DW_LNS_set_column:
2919 uladv = read_uleb128 (data, & bytes_read, end);
2920 data += bytes_read;
2921 printf (_(" Set column to %s\n"),
2922 dwarf_vmatoa ("u", uladv));
2923 state_machine_regs.column = uladv;
2924 break;
2925
2926 case DW_LNS_negate_stmt:
2927 adv = state_machine_regs.is_stmt;
2928 adv = ! adv;
2929 printf (_(" Set is_stmt to %s\n"), dwarf_vmatoa ("d", adv));
2930 state_machine_regs.is_stmt = adv;
2931 break;
2932
2933 case DW_LNS_set_basic_block:
2934 printf (_(" Set basic block\n"));
2935 state_machine_regs.basic_block = 1;
2936 break;
2937
2938 case DW_LNS_const_add_pc:
2939 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
2940 if (linfo.li_max_ops_per_insn)
2941 {
2942 uladv *= linfo.li_min_insn_length;
2943 state_machine_regs.address += uladv;
2944 printf (_(" Advance PC by constant %s to 0x%s\n"),
2945 dwarf_vmatoa ("u", uladv),
2946 dwarf_vmatoa ("x", state_machine_regs.address));
2947 }
2948 else
2949 {
2950 state_machine_regs.address
2951 += ((state_machine_regs.op_index + uladv)
2952 / linfo.li_max_ops_per_insn)
2953 * linfo.li_min_insn_length;
2954 state_machine_regs.op_index
2955 = (state_machine_regs.op_index + uladv)
2956 % linfo.li_max_ops_per_insn;
2957 printf (_(" Advance PC by constant %s to 0x%s[%d]\n"),
2958 dwarf_vmatoa ("u", uladv),
2959 dwarf_vmatoa ("x", state_machine_regs.address),
2960 state_machine_regs.op_index);
2961 }
2962 break;
2963
2964 case DW_LNS_fixed_advance_pc:
2965 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
2966 state_machine_regs.address += uladv;
2967 state_machine_regs.op_index = 0;
2968 printf (_(" Advance PC by fixed size amount %s to 0x%s\n"),
2969 dwarf_vmatoa ("u", uladv),
2970 dwarf_vmatoa ("x", state_machine_regs.address));
2971 break;
2972
2973 case DW_LNS_set_prologue_end:
2974 printf (_(" Set prologue_end to true\n"));
2975 break;
2976
2977 case DW_LNS_set_epilogue_begin:
2978 printf (_(" Set epilogue_begin to true\n"));
2979 break;
2980
2981 case DW_LNS_set_isa:
2982 uladv = read_uleb128 (data, & bytes_read, end);
2983 data += bytes_read;
2984 printf (_(" Set ISA to %s\n"), dwarf_vmatoa ("u", uladv));
2985 break;
2986
2987 default:
2988 printf (_(" Unknown opcode %d with operands: "), op_code);
2989
2990 if (standard_opcodes != NULL)
2991 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
2992 {
2993 printf ("0x%s%s", dwarf_vmatoa ("x", read_uleb128 (data,
2994 &bytes_read, end)),
2995 i == 1 ? "" : ", ");
2996 data += bytes_read;
2997 }
2998 putchar ('\n');
2999 break;
3000 }
3001 }
3002 putchar ('\n');
3003 }
3004 }
3005
3006 return 1;
3007 }
3008
3009 typedef struct
3010 {
3011 unsigned char *name;
3012 unsigned int directory_index;
3013 unsigned int modification_date;
3014 unsigned int length;
3015 } File_Entry;
3016
3017 /* Output a decoded representation of the .debug_line section. */
3018
3019 static int
3020 display_debug_lines_decoded (struct dwarf_section *section,
3021 unsigned char *data,
3022 unsigned char *end)
3023 {
3024 static DWARF2_Internal_LineInfo saved_linfo;
3025
3026 printf (_("Decoded dump of debug contents of section %s:\n\n"),
3027 section->name);
3028
3029 while (data < end)
3030 {
3031 /* This loop amounts to one iteration per compilation unit. */
3032 DWARF2_Internal_LineInfo linfo;
3033 unsigned char *standard_opcodes;
3034 unsigned char *end_of_sequence;
3035 int i;
3036 File_Entry *file_table = NULL;
3037 unsigned int n_files = 0;
3038 unsigned char **directory_table = NULL;
3039 unsigned int n_directories = 0;
3040
3041 if (const_strneq (section->name, ".debug_line.")
3042 /* Note: the following does not apply to .debug_line.dwo sections.
3043 These are full debug_line sections. */
3044 && strcmp (section->name, ".debug_line.dwo") != 0)
3045 {
3046 /* See comment in display_debug_lines_raw(). */
3047 end_of_sequence = end;
3048 standard_opcodes = NULL;
3049 linfo = saved_linfo;
3050 reset_state_machine (linfo.li_default_is_stmt);
3051 }
3052 else
3053 {
3054 unsigned char *hdrptr;
3055
3056 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
3057 & end_of_sequence)) == NULL)
3058 return 0;
3059
3060 reset_state_machine (linfo.li_default_is_stmt);
3061
3062 /* Save a pointer to the contents of the Opcodes table. */
3063 standard_opcodes = hdrptr;
3064
3065 /* Traverse the Directory table just to count entries. */
3066 data = standard_opcodes + linfo.li_opcode_base - 1;
3067 if (*data != 0)
3068 {
3069 unsigned char *ptr_directory_table = data;
3070
3071 while (*data != 0)
3072 {
3073 data += strnlen ((char *) data, end - data) + 1;
3074 n_directories++;
3075 }
3076
3077 /* Go through the directory table again to save the directories. */
3078 directory_table = (unsigned char **)
3079 xmalloc (n_directories * sizeof (unsigned char *));
3080
3081 i = 0;
3082 while (*ptr_directory_table != 0)
3083 {
3084 directory_table[i] = ptr_directory_table;
3085 ptr_directory_table += strnlen ((char *) ptr_directory_table,
3086 ptr_directory_table - end) + 1;
3087 i++;
3088 }
3089 }
3090 /* Skip the NUL at the end of the table. */
3091 data++;
3092
3093 /* Traverse the File Name table just to count the entries. */
3094 if (*data != 0)
3095 {
3096 unsigned char *ptr_file_name_table = data;
3097
3098 while (*data != 0)
3099 {
3100 unsigned int bytes_read;
3101
3102 /* Skip Name, directory index, last modification time and length
3103 of file. */
3104 data += strnlen ((char *) data, end - data) + 1;
3105 read_uleb128 (data, & bytes_read, end);
3106 data += bytes_read;
3107 read_uleb128 (data, & bytes_read, end);
3108 data += bytes_read;
3109 read_uleb128 (data, & bytes_read, end);
3110 data += bytes_read;
3111
3112 n_files++;
3113 }
3114
3115 /* Go through the file table again to save the strings. */
3116 file_table = (File_Entry *) xmalloc (n_files * sizeof (File_Entry));
3117
3118 i = 0;
3119 while (*ptr_file_name_table != 0)
3120 {
3121 unsigned int bytes_read;
3122
3123 file_table[i].name = ptr_file_name_table;
3124 ptr_file_name_table += strnlen ((char *) ptr_file_name_table,
3125 end - ptr_file_name_table) + 1;
3126
3127 /* We are not interested in directory, time or size. */
3128 file_table[i].directory_index = read_uleb128 (ptr_file_name_table,
3129 & bytes_read, end);
3130 ptr_file_name_table += bytes_read;
3131 file_table[i].modification_date = read_uleb128 (ptr_file_name_table,
3132 & bytes_read, end);
3133 ptr_file_name_table += bytes_read;
3134 file_table[i].length = read_uleb128 (ptr_file_name_table, & bytes_read, end);
3135 ptr_file_name_table += bytes_read;
3136 i++;
3137 }
3138 i = 0;
3139
3140 /* Print the Compilation Unit's name and a header. */
3141 if (directory_table == NULL)
3142 {
3143 printf (_("CU: %s:\n"), file_table[0].name);
3144 printf (_("File name Line number Starting address\n"));
3145 }
3146 else
3147 {
3148 unsigned int ix = file_table[0].directory_index;
3149 const char *directory = ix ? (char *)directory_table[ix - 1] : ".";
3150
3151 if (do_wide || strlen (directory) < 76)
3152 printf (_("CU: %s/%s:\n"), directory, file_table[0].name);
3153 else
3154 printf ("%s:\n", file_table[0].name);
3155
3156 printf (_("File name Line number Starting address\n"));
3157 }
3158 }
3159
3160 /* Skip the NUL at the end of the table. */
3161 data++;
3162
3163 saved_linfo = linfo;
3164 }
3165
3166 /* This loop iterates through the Dwarf Line Number Program. */
3167 while (data < end_of_sequence)
3168 {
3169 unsigned char op_code;
3170 int adv;
3171 unsigned long int uladv;
3172 unsigned int bytes_read;
3173 int is_special_opcode = 0;
3174
3175 op_code = *data++;
3176
3177 if (op_code >= linfo.li_opcode_base)
3178 {
3179 op_code -= linfo.li_opcode_base;
3180 uladv = (op_code / linfo.li_line_range);
3181 if (linfo.li_max_ops_per_insn == 1)
3182 {
3183 uladv *= linfo.li_min_insn_length;
3184 state_machine_regs.address += uladv;
3185 }
3186 else
3187 {
3188 state_machine_regs.address
3189 += ((state_machine_regs.op_index + uladv)
3190 / linfo.li_max_ops_per_insn)
3191 * linfo.li_min_insn_length;
3192 state_machine_regs.op_index
3193 = (state_machine_regs.op_index + uladv)
3194 % linfo.li_max_ops_per_insn;
3195 }
3196
3197 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
3198 state_machine_regs.line += adv;
3199 is_special_opcode = 1;
3200 }
3201 else switch (op_code)
3202 {
3203 case DW_LNS_extended_op:
3204 {
3205 unsigned int ext_op_code_len;
3206 unsigned char ext_op_code;
3207 unsigned char *op_code_data = data;
3208
3209 ext_op_code_len = read_uleb128 (op_code_data, &bytes_read,
3210 end_of_sequence);
3211 op_code_data += bytes_read;
3212
3213 if (ext_op_code_len == 0)
3214 {
3215 warn (_("badly formed extended line op encountered!\n"));
3216 break;
3217 }
3218 ext_op_code_len += bytes_read;
3219 ext_op_code = *op_code_data++;
3220
3221 switch (ext_op_code)
3222 {
3223 case DW_LNE_end_sequence:
3224 reset_state_machine (linfo.li_default_is_stmt);
3225 break;
3226 case DW_LNE_set_address:
3227 SAFE_BYTE_GET_AND_INC (state_machine_regs.address,
3228 op_code_data,
3229 ext_op_code_len - bytes_read - 1,
3230 end);
3231 state_machine_regs.op_index = 0;
3232 break;
3233 case DW_LNE_define_file:
3234 {
3235 file_table = (File_Entry *) xrealloc
3236 (file_table, (n_files + 1) * sizeof (File_Entry));
3237
3238 ++state_machine_regs.last_file_entry;
3239 /* Source file name. */
3240 file_table[n_files].name = op_code_data;
3241 op_code_data += strlen ((char *) op_code_data) + 1;
3242 /* Directory index. */
3243 file_table[n_files].directory_index =
3244 read_uleb128 (op_code_data, & bytes_read,
3245 end_of_sequence);
3246 op_code_data += bytes_read;
3247 /* Last modification time. */
3248 file_table[n_files].modification_date =
3249 read_uleb128 (op_code_data, & bytes_read,
3250 end_of_sequence);
3251 op_code_data += bytes_read;
3252 /* File length. */
3253 file_table[n_files].length =
3254 read_uleb128 (op_code_data, & bytes_read,
3255 end_of_sequence);
3256
3257 n_files++;
3258 break;
3259 }
3260 case DW_LNE_set_discriminator:
3261 case DW_LNE_HP_set_sequence:
3262 /* Simply ignored. */
3263 break;
3264
3265 default:
3266 printf (_("UNKNOWN (%u): length %d\n"),
3267 ext_op_code, ext_op_code_len - bytes_read);
3268 break;
3269 }
3270 data += ext_op_code_len;
3271 break;
3272 }
3273 case DW_LNS_copy:
3274 break;
3275
3276 case DW_LNS_advance_pc:
3277 uladv = read_uleb128 (data, & bytes_read, end);
3278 data += bytes_read;
3279 if (linfo.li_max_ops_per_insn == 1)
3280 {
3281 uladv *= linfo.li_min_insn_length;
3282 state_machine_regs.address += uladv;
3283 }
3284 else
3285 {
3286 state_machine_regs.address
3287 += ((state_machine_regs.op_index + uladv)
3288 / linfo.li_max_ops_per_insn)
3289 * linfo.li_min_insn_length;
3290 state_machine_regs.op_index
3291 = (state_machine_regs.op_index + uladv)
3292 % linfo.li_max_ops_per_insn;
3293 }
3294 break;
3295
3296 case DW_LNS_advance_line:
3297 adv = read_sleb128 (data, & bytes_read, end);
3298 data += bytes_read;
3299 state_machine_regs.line += adv;
3300 break;
3301
3302 case DW_LNS_set_file:
3303 adv = read_uleb128 (data, & bytes_read, end);
3304 data += bytes_read;
3305 state_machine_regs.file = adv;
3306
3307 if (file_table == NULL)
3308 printf (_("\n [Use file table entry %d]\n"), state_machine_regs.file - 1);
3309 else if (file_table[state_machine_regs.file - 1].directory_index == 0)
3310 /* If directory index is 0, that means current directory. */
3311 printf ("\n./%s:[++]\n",
3312 file_table[state_machine_regs.file - 1].name);
3313 else if (directory_table == NULL)
3314 printf (_("\n [Use directory table entry %d]\n"),
3315 file_table[state_machine_regs.file - 1].directory_index - 1);
3316 else
3317 /* The directory index starts counting at 1. */
3318 printf ("\n%s/%s:\n",
3319 directory_table[file_table[state_machine_regs.file - 1].directory_index - 1],
3320 file_table[state_machine_regs.file - 1].name);
3321 break;
3322
3323 case DW_LNS_set_column:
3324 uladv = read_uleb128 (data, & bytes_read, end);
3325 data += bytes_read;
3326 state_machine_regs.column = uladv;
3327 break;
3328
3329 case DW_LNS_negate_stmt:
3330 adv = state_machine_regs.is_stmt;
3331 adv = ! adv;
3332 state_machine_regs.is_stmt = adv;
3333 break;
3334
3335 case DW_LNS_set_basic_block:
3336 state_machine_regs.basic_block = 1;
3337 break;
3338
3339 case DW_LNS_const_add_pc:
3340 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
3341 if (linfo.li_max_ops_per_insn == 1)
3342 {
3343 uladv *= linfo.li_min_insn_length;
3344 state_machine_regs.address += uladv;
3345 }
3346 else
3347 {
3348 state_machine_regs.address
3349 += ((state_machine_regs.op_index + uladv)
3350 / linfo.li_max_ops_per_insn)
3351 * linfo.li_min_insn_length;
3352 state_machine_regs.op_index
3353 = (state_machine_regs.op_index + uladv)
3354 % linfo.li_max_ops_per_insn;
3355 }
3356 break;
3357
3358 case DW_LNS_fixed_advance_pc:
3359 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
3360 state_machine_regs.address += uladv;
3361 state_machine_regs.op_index = 0;
3362 break;
3363
3364 case DW_LNS_set_prologue_end:
3365 break;
3366
3367 case DW_LNS_set_epilogue_begin:
3368 break;
3369
3370 case DW_LNS_set_isa:
3371 uladv = read_uleb128 (data, & bytes_read, end);
3372 data += bytes_read;
3373 printf (_(" Set ISA to %lu\n"), uladv);
3374 break;
3375
3376 default:
3377 printf (_(" Unknown opcode %d with operands: "), op_code);
3378
3379 if (standard_opcodes != NULL)
3380 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
3381 {
3382 printf ("0x%s%s", dwarf_vmatoa ("x", read_uleb128 (data,
3383 &bytes_read, end)),
3384 i == 1 ? "" : ", ");
3385 data += bytes_read;
3386 }
3387 putchar ('\n');
3388 break;
3389 }
3390
3391 /* Only Special opcodes, DW_LNS_copy and DW_LNE_end_sequence adds a row
3392 to the DWARF address/line matrix. */
3393 if ((is_special_opcode) || (op_code == DW_LNE_end_sequence)
3394 || (op_code == DW_LNS_copy))
3395 {
3396 const unsigned int MAX_FILENAME_LENGTH = 35;
3397 char *fileName;
3398 char *newFileName = NULL;
3399 size_t fileNameLength;
3400
3401 if (file_table)
3402 fileName = (char *) file_table[state_machine_regs.file - 1].name;
3403 else
3404 fileName = "<unknown>";
3405
3406 fileNameLength = strlen (fileName);
3407
3408 if ((fileNameLength > MAX_FILENAME_LENGTH) && (!do_wide))
3409 {
3410 newFileName = (char *) xmalloc (MAX_FILENAME_LENGTH + 1);
3411 /* Truncate file name */
3412 strncpy (newFileName,
3413 fileName + fileNameLength - MAX_FILENAME_LENGTH,
3414 MAX_FILENAME_LENGTH + 1);
3415 }
3416 else
3417 {
3418 newFileName = (char *) xmalloc (fileNameLength + 1);
3419 strncpy (newFileName, fileName, fileNameLength + 1);
3420 }
3421
3422 if (!do_wide || (fileNameLength <= MAX_FILENAME_LENGTH))
3423 {
3424 if (linfo.li_max_ops_per_insn == 1)
3425 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x\n",
3426 newFileName, state_machine_regs.line,
3427 state_machine_regs.address);
3428 else
3429 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x[%d]\n",
3430 newFileName, state_machine_regs.line,
3431 state_machine_regs.address,
3432 state_machine_regs.op_index);
3433 }
3434 else
3435 {
3436 if (linfo.li_max_ops_per_insn == 1)
3437 printf ("%s %11d %#18" DWARF_VMA_FMT "x\n",
3438 newFileName, state_machine_regs.line,
3439 state_machine_regs.address);
3440 else
3441 printf ("%s %11d %#18" DWARF_VMA_FMT "x[%d]\n",
3442 newFileName, state_machine_regs.line,
3443 state_machine_regs.address,
3444 state_machine_regs.op_index);
3445 }
3446
3447 if (op_code == DW_LNE_end_sequence)
3448 printf ("\n");
3449
3450 free (newFileName);
3451 }
3452 }
3453
3454 if (file_table)
3455 {
3456 free (file_table);
3457 file_table = NULL;
3458 n_files = 0;
3459 }
3460
3461 if (directory_table)
3462 {
3463 free (directory_table);
3464 directory_table = NULL;
3465 n_directories = 0;
3466 }
3467
3468 putchar ('\n');
3469 }
3470
3471 return 1;
3472 }
3473
3474 static int
3475 display_debug_lines (struct dwarf_section *section, void *file ATTRIBUTE_UNUSED)
3476 {
3477 unsigned char *data = section->start;
3478 unsigned char *end = data + section->size;
3479 int retValRaw = 1;
3480 int retValDecoded = 1;
3481
3482 if (do_debug_lines == 0)
3483 do_debug_lines |= FLAG_DEBUG_LINES_RAW;
3484
3485 if (do_debug_lines & FLAG_DEBUG_LINES_RAW)
3486 retValRaw = display_debug_lines_raw (section, data, end);
3487
3488 if (do_debug_lines & FLAG_DEBUG_LINES_DECODED)
3489 retValDecoded = display_debug_lines_decoded (section, data, end);
3490
3491 if (!retValRaw || !retValDecoded)
3492 return 0;
3493
3494 return 1;
3495 }
3496
3497 static debug_info *
3498 find_debug_info_for_offset (unsigned long offset)
3499 {
3500 unsigned int i;
3501
3502 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
3503 return NULL;
3504
3505 for (i = 0; i < num_debug_info_entries; i++)
3506 if (debug_information[i].cu_offset == offset)
3507 return debug_information + i;
3508
3509 return NULL;
3510 }
3511
3512 static const char *
3513 get_gdb_index_symbol_kind_name (gdb_index_symbol_kind kind)
3514 {
3515 /* See gdb/gdb-index.h. */
3516 static const char * const kinds[] =
3517 {
3518 N_ ("no info"),
3519 N_ ("type"),
3520 N_ ("variable"),
3521 N_ ("function"),
3522 N_ ("other"),
3523 N_ ("unused5"),
3524 N_ ("unused6"),
3525 N_ ("unused7")
3526 };
3527
3528 return _ (kinds[kind]);
3529 }
3530
3531 static int
3532 display_debug_pubnames_worker (struct dwarf_section *section,
3533 void *file ATTRIBUTE_UNUSED,
3534 int is_gnu)
3535 {
3536 DWARF2_Internal_PubNames names;
3537 unsigned char *start = section->start;
3538 unsigned char *end = start + section->size;
3539
3540 /* It does not matter if this load fails,
3541 we test for that later on. */
3542 load_debug_info (file);
3543
3544 printf (_("Contents of the %s section:\n\n"), section->name);
3545
3546 while (start < end)
3547 {
3548 unsigned char *data;
3549 unsigned long offset;
3550 unsigned int offset_size, initial_length_size;
3551
3552 data = start;
3553
3554 SAFE_BYTE_GET_AND_INC (names.pn_length, data, 4, end);
3555 if (names.pn_length == 0xffffffff)
3556 {
3557 SAFE_BYTE_GET_AND_INC (names.pn_length, data, 8, end);
3558 offset_size = 8;
3559 initial_length_size = 12;
3560 }
3561 else
3562 {
3563 offset_size = 4;
3564 initial_length_size = 4;
3565 }
3566
3567 SAFE_BYTE_GET_AND_INC (names.pn_version, data, 2, end);
3568 SAFE_BYTE_GET_AND_INC (names.pn_offset, data, offset_size, end);
3569
3570 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
3571 && num_debug_info_entries > 0
3572 && find_debug_info_for_offset (names.pn_offset) == NULL)
3573 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
3574 (unsigned long) names.pn_offset, section->name);
3575
3576 SAFE_BYTE_GET_AND_INC (names.pn_size, data, offset_size, end);
3577
3578 start += names.pn_length + initial_length_size;
3579
3580 if (names.pn_version != 2 && names.pn_version != 3)
3581 {
3582 static int warned = 0;
3583
3584 if (! warned)
3585 {
3586 warn (_("Only DWARF 2 and 3 pubnames are currently supported\n"));
3587 warned = 1;
3588 }
3589
3590 continue;
3591 }
3592
3593 printf (_(" Length: %ld\n"),
3594 (long) names.pn_length);
3595 printf (_(" Version: %d\n"),
3596 names.pn_version);
3597 printf (_(" Offset into .debug_info section: 0x%lx\n"),
3598 (unsigned long) names.pn_offset);
3599 printf (_(" Size of area in .debug_info section: %ld\n"),
3600 (long) names.pn_size);
3601
3602 if (is_gnu)
3603 printf (_("\n Offset Kind Name\n"));
3604 else
3605 printf (_("\n Offset\tName\n"));
3606
3607 do
3608 {
3609 SAFE_BYTE_GET (offset, data, offset_size, end);
3610
3611 if (offset != 0)
3612 {
3613 data += offset_size;
3614 if (is_gnu)
3615 {
3616 unsigned int kind_data;
3617 gdb_index_symbol_kind kind;
3618 const char *kind_name;
3619 int is_static;
3620
3621 SAFE_BYTE_GET (kind_data, data, 1, end);
3622 data++;
3623 /* GCC computes the kind as the upper byte in the CU index
3624 word, and then right shifts it by the CU index size.
3625 Left shift KIND to where the gdb-index.h accessor macros
3626 can use it. */
3627 kind_data <<= GDB_INDEX_CU_BITSIZE;
3628 kind = GDB_INDEX_SYMBOL_KIND_VALUE (kind_data);
3629 kind_name = get_gdb_index_symbol_kind_name (kind);
3630 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (kind_data);
3631 printf (" %-6lx %s,%-10s %s\n",
3632 offset, is_static ? _("s") : _("g"),
3633 kind_name, data);
3634 }
3635 else
3636 printf (" %-6lx\t%s\n", offset, data);
3637 data += strnlen ((char *) data, end - data) + 1;
3638 }
3639 }
3640 while (offset != 0);
3641 }
3642
3643 printf ("\n");
3644 return 1;
3645 }
3646
3647 static int
3648 display_debug_pubnames (struct dwarf_section *section, void *file)
3649 {
3650 return display_debug_pubnames_worker (section, file, 0);
3651 }
3652
3653 static int
3654 display_debug_gnu_pubnames (struct dwarf_section *section, void *file)
3655 {
3656 return display_debug_pubnames_worker (section, file, 1);
3657 }
3658
3659 static int
3660 display_debug_macinfo (struct dwarf_section *section,
3661 void *file ATTRIBUTE_UNUSED)
3662 {
3663 unsigned char *start = section->start;
3664 unsigned char *end = start + section->size;
3665 unsigned char *curr = start;
3666 unsigned int bytes_read;
3667 enum dwarf_macinfo_record_type op;
3668
3669 printf (_("Contents of the %s section:\n\n"), section->name);
3670
3671 while (curr < end)
3672 {
3673 unsigned int lineno;
3674 const unsigned char *string;
3675
3676 op = (enum dwarf_macinfo_record_type) *curr;
3677 curr++;
3678
3679 switch (op)
3680 {
3681 case DW_MACINFO_start_file:
3682 {
3683 unsigned int filenum;
3684
3685 lineno = read_uleb128 (curr, & bytes_read, end);
3686 curr += bytes_read;
3687 filenum = read_uleb128 (curr, & bytes_read, end);
3688 curr += bytes_read;
3689
3690 printf (_(" DW_MACINFO_start_file - lineno: %d filenum: %d\n"),
3691 lineno, filenum);
3692 }
3693 break;
3694
3695 case DW_MACINFO_end_file:
3696 printf (_(" DW_MACINFO_end_file\n"));
3697 break;
3698
3699 case DW_MACINFO_define:
3700 lineno = read_uleb128 (curr, & bytes_read, end);
3701 curr += bytes_read;
3702 string = curr;
3703 curr += strnlen ((char *) string, end - string) + 1;
3704 printf (_(" DW_MACINFO_define - lineno : %d macro : %s\n"),
3705 lineno, string);
3706 break;
3707
3708 case DW_MACINFO_undef:
3709 lineno = read_uleb128 (curr, & bytes_read, end);
3710 curr += bytes_read;
3711 string = curr;
3712 curr += strnlen ((char *) string, end - string) + 1;
3713 printf (_(" DW_MACINFO_undef - lineno : %d macro : %s\n"),
3714 lineno, string);
3715 break;
3716
3717 case DW_MACINFO_vendor_ext:
3718 {
3719 unsigned int constant;
3720
3721 constant = read_uleb128 (curr, & bytes_read, end);
3722 curr += bytes_read;
3723 string = curr;
3724 curr += strnlen ((char *) string, end - string) + 1;
3725 printf (_(" DW_MACINFO_vendor_ext - constant : %d string : %s\n"),
3726 constant, string);
3727 }
3728 break;
3729 }
3730 }
3731
3732 return 1;
3733 }
3734
3735 /* Given LINE_OFFSET into the .debug_line section, attempt to return
3736 filename and dirname corresponding to file name table entry with index
3737 FILEIDX. Return NULL on failure. */
3738
3739 static unsigned char *
3740 get_line_filename_and_dirname (dwarf_vma line_offset,
3741 dwarf_vma fileidx,
3742 unsigned char **dir_name)
3743 {
3744 struct dwarf_section *section = &debug_displays [line].section;
3745 unsigned char *hdrptr, *dirtable, *file_name;
3746 unsigned int offset_size, initial_length_size;
3747 unsigned int version, opcode_base, bytes_read;
3748 dwarf_vma length, diridx;
3749 const unsigned char * end;
3750
3751 *dir_name = NULL;
3752 if (section->start == NULL
3753 || line_offset >= section->size
3754 || fileidx == 0)
3755 return NULL;
3756
3757 hdrptr = section->start + line_offset;
3758 end = section->start + section->size;
3759
3760 SAFE_BYTE_GET_AND_INC (length, hdrptr, 4, end);
3761 if (length == 0xffffffff)
3762 {
3763 /* This section is 64-bit DWARF 3. */
3764 SAFE_BYTE_GET_AND_INC (length, hdrptr, 8, end);
3765 offset_size = 8;
3766 initial_length_size = 12;
3767 }
3768 else
3769 {
3770 offset_size = 4;
3771 initial_length_size = 4;
3772 }
3773 if (length + initial_length_size > section->size)
3774 return NULL;
3775
3776 SAFE_BYTE_GET_AND_INC (version, hdrptr, 2, end);
3777 if (version != 2 && version != 3 && version != 4)
3778 return NULL;
3779 hdrptr += offset_size + 1;/* Skip prologue_length and min_insn_length. */
3780 if (version >= 4)
3781 hdrptr++; /* Skip max_ops_per_insn. */
3782 hdrptr += 3; /* Skip default_is_stmt, line_base, line_range. */
3783
3784 SAFE_BYTE_GET_AND_INC (opcode_base, hdrptr, 1, end);
3785 if (opcode_base == 0)
3786 return NULL;
3787
3788 hdrptr += opcode_base - 1;
3789 dirtable = hdrptr;
3790 /* Skip over dirname table. */
3791 while (*hdrptr != '\0')
3792 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
3793 hdrptr++; /* Skip the NUL at the end of the table. */
3794 /* Now skip over preceding filename table entries. */
3795 for (; *hdrptr != '\0' && fileidx > 1; fileidx--)
3796 {
3797 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
3798 read_uleb128 (hdrptr, &bytes_read, end);
3799 hdrptr += bytes_read;
3800 read_uleb128 (hdrptr, &bytes_read, end);
3801 hdrptr += bytes_read;
3802 read_uleb128 (hdrptr, &bytes_read, end);
3803 hdrptr += bytes_read;
3804 }
3805 if (hdrptr == end || *hdrptr == '\0')
3806 return NULL;
3807 file_name = hdrptr;
3808 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
3809 diridx = read_uleb128 (hdrptr, &bytes_read, end);
3810 if (diridx == 0)
3811 return file_name;
3812 for (; *dirtable != '\0' && diridx > 1; diridx--)
3813 dirtable += strnlen ((char *) dirtable, end - dirtable) + 1;
3814 if (*dirtable == '\0')
3815 return NULL;
3816 *dir_name = dirtable;
3817 return file_name;
3818 }
3819
3820 static int
3821 display_debug_macro (struct dwarf_section *section,
3822 void *file)
3823 {
3824 unsigned char *start = section->start;
3825 unsigned char *end = start + section->size;
3826 unsigned char *curr = start;
3827 unsigned char *extended_op_buf[256];
3828 unsigned int bytes_read;
3829
3830 load_debug_section (str, file);
3831 load_debug_section (line, file);
3832
3833 printf (_("Contents of the %s section:\n\n"), section->name);
3834
3835 while (curr < end)
3836 {
3837 unsigned int lineno, version, flags;
3838 unsigned int offset_size = 4;
3839 const unsigned char *string;
3840 dwarf_vma line_offset = 0, sec_offset = curr - start, offset;
3841 unsigned char **extended_ops = NULL;
3842
3843 SAFE_BYTE_GET_AND_INC (version, curr, 2, end);
3844 if (version != 4)
3845 {
3846 error (_("Only GNU extension to DWARF 4 of %s is currently supported.\n"),
3847 section->name);
3848 return 0;
3849 }
3850
3851 SAFE_BYTE_GET_AND_INC (flags, curr, 1, end);
3852 if (flags & 1)
3853 offset_size = 8;
3854 printf (_(" Offset: 0x%lx\n"),
3855 (unsigned long) sec_offset);
3856 printf (_(" Version: %d\n"), version);
3857 printf (_(" Offset size: %d\n"), offset_size);
3858 if (flags & 2)
3859 {
3860 SAFE_BYTE_GET_AND_INC (line_offset, curr, offset_size, end);
3861 printf (_(" Offset into .debug_line: 0x%lx\n"),
3862 (unsigned long) line_offset);
3863 }
3864 if (flags & 4)
3865 {
3866 unsigned int i, count, op;
3867 dwarf_vma nargs, n;
3868
3869 SAFE_BYTE_GET_AND_INC (count, curr, 1, end);
3870
3871 memset (extended_op_buf, 0, sizeof (extended_op_buf));
3872 extended_ops = extended_op_buf;
3873 if (count)
3874 {
3875 printf (_(" Extension opcode arguments:\n"));
3876 for (i = 0; i < count; i++)
3877 {
3878 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
3879 extended_ops[op] = curr;
3880 nargs = read_uleb128 (curr, &bytes_read, end);
3881 curr += bytes_read;
3882 if (nargs == 0)
3883 printf (_(" DW_MACRO_GNU_%02x has no arguments\n"), op);
3884 else
3885 {
3886 printf (_(" DW_MACRO_GNU_%02x arguments: "), op);
3887 for (n = 0; n < nargs; n++)
3888 {
3889 unsigned int form;
3890
3891 SAFE_BYTE_GET_AND_INC (form, curr, 1, end);
3892 printf ("%s%s", get_FORM_name (form),
3893 n == nargs - 1 ? "\n" : ", ");
3894 switch (form)
3895 {
3896 case DW_FORM_data1:
3897 case DW_FORM_data2:
3898 case DW_FORM_data4:
3899 case DW_FORM_data8:
3900 case DW_FORM_sdata:
3901 case DW_FORM_udata:
3902 case DW_FORM_block:
3903 case DW_FORM_block1:
3904 case DW_FORM_block2:
3905 case DW_FORM_block4:
3906 case DW_FORM_flag:
3907 case DW_FORM_string:
3908 case DW_FORM_strp:
3909 case DW_FORM_sec_offset:
3910 break;
3911 default:
3912 error (_("Invalid extension opcode form %s\n"),
3913 get_FORM_name (form));
3914 return 0;
3915 }
3916 }
3917 }
3918 }
3919 }
3920 }
3921 printf ("\n");
3922
3923 while (1)
3924 {
3925 unsigned int op;
3926
3927 if (curr >= end)
3928 {
3929 error (_(".debug_macro section not zero terminated\n"));
3930 return 0;
3931 }
3932
3933 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
3934 if (op == 0)
3935 break;
3936
3937 switch (op)
3938 {
3939 case DW_MACRO_GNU_start_file:
3940 {
3941 unsigned int filenum;
3942 unsigned char *file_name = NULL, *dir_name = NULL;
3943
3944 lineno = read_uleb128 (curr, &bytes_read, end);
3945 curr += bytes_read;
3946 filenum = read_uleb128 (curr, &bytes_read, end);
3947 curr += bytes_read;
3948
3949 if ((flags & 2) == 0)
3950 error (_("DW_MACRO_GNU_start_file used, but no .debug_line offset provided.\n"));
3951 else
3952 file_name
3953 = get_line_filename_and_dirname (line_offset, filenum,
3954 &dir_name);
3955 if (file_name == NULL)
3956 printf (_(" DW_MACRO_GNU_start_file - lineno: %d filenum: %d\n"),
3957 lineno, filenum);
3958 else
3959 printf (_(" DW_MACRO_GNU_start_file - lineno: %d filenum: %d filename: %s%s%s\n"),
3960 lineno, filenum,
3961 dir_name != NULL ? (const char *) dir_name : "",
3962 dir_name != NULL ? "/" : "", file_name);
3963 }
3964 break;
3965
3966 case DW_MACRO_GNU_end_file:
3967 printf (_(" DW_MACRO_GNU_end_file\n"));
3968 break;
3969
3970 case DW_MACRO_GNU_define:
3971 lineno = read_uleb128 (curr, &bytes_read, end);
3972 curr += bytes_read;
3973 string = curr;
3974 curr += strnlen ((char *) string, end - string) + 1;
3975 printf (_(" DW_MACRO_GNU_define - lineno : %d macro : %s\n"),
3976 lineno, string);
3977 break;
3978
3979 case DW_MACRO_GNU_undef:
3980 lineno = read_uleb128 (curr, &bytes_read, end);
3981 curr += bytes_read;
3982 string = curr;
3983 curr += strnlen ((char *) string, end - string) + 1;
3984 printf (_(" DW_MACRO_GNU_undef - lineno : %d macro : %s\n"),
3985 lineno, string);
3986 break;
3987
3988 case DW_MACRO_GNU_define_indirect:
3989 lineno = read_uleb128 (curr, &bytes_read, end);
3990 curr += bytes_read;
3991 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
3992 string = fetch_indirect_string (offset);
3993 printf (_(" DW_MACRO_GNU_define_indirect - lineno : %d macro : %s\n"),
3994 lineno, string);
3995 break;
3996
3997 case DW_MACRO_GNU_undef_indirect:
3998 lineno = read_uleb128 (curr, &bytes_read, end);
3999 curr += bytes_read;
4000 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4001 string = fetch_indirect_string (offset);
4002 printf (_(" DW_MACRO_GNU_undef_indirect - lineno : %d macro : %s\n"),
4003 lineno, string);
4004 break;
4005
4006 case DW_MACRO_GNU_transparent_include:
4007 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4008 printf (_(" DW_MACRO_GNU_transparent_include - offset : 0x%lx\n"),
4009 (unsigned long) offset);
4010 break;
4011
4012 case DW_MACRO_GNU_define_indirect_alt:
4013 lineno = read_uleb128 (curr, &bytes_read, end);
4014 curr += bytes_read;
4015 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4016 printf (_(" DW_MACRO_GNU_define_indirect_alt - lineno : %d macro offset : 0x%lx\n"),
4017 lineno, (unsigned long) offset);
4018 break;
4019
4020 case DW_MACRO_GNU_undef_indirect_alt:
4021 lineno = read_uleb128 (curr, &bytes_read, end);
4022 curr += bytes_read;
4023 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4024 printf (_(" DW_MACRO_GNU_undef_indirect_alt - lineno : %d macro offset : 0x%lx\n"),
4025 lineno, (unsigned long) offset);
4026 break;
4027
4028 case DW_MACRO_GNU_transparent_include_alt:
4029 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4030 printf (_(" DW_MACRO_GNU_transparent_include_alt - offset : 0x%lx\n"),
4031 (unsigned long) offset);
4032 break;
4033
4034 default:
4035 if (extended_ops == NULL || extended_ops[op] == NULL)
4036 {
4037 error (_(" Unknown macro opcode %02x seen\n"), op);
4038 return 0;
4039 }
4040 else
4041 {
4042 /* Skip over unhandled opcodes. */
4043 dwarf_vma nargs, n;
4044 unsigned char *desc = extended_ops[op];
4045 nargs = read_uleb128 (desc, &bytes_read, end);
4046 desc += bytes_read;
4047 if (nargs == 0)
4048 {
4049 printf (_(" DW_MACRO_GNU_%02x\n"), op);
4050 break;
4051 }
4052 printf (_(" DW_MACRO_GNU_%02x -"), op);
4053 for (n = 0; n < nargs; n++)
4054 {
4055 int val;
4056
4057 SAFE_BYTE_GET_AND_INC (val, desc, 1, end);
4058 curr
4059 = read_and_display_attr_value (0, val,
4060 curr, end, 0, 0, offset_size,
4061 version, NULL, 0, NULL,
4062 NULL);
4063 if (n != nargs - 1)
4064 printf (",");
4065 }
4066 printf ("\n");
4067 }
4068 break;
4069 }
4070 }
4071
4072 printf ("\n");
4073 }
4074
4075 return 1;
4076 }
4077
4078 static int
4079 display_debug_abbrev (struct dwarf_section *section,
4080 void *file ATTRIBUTE_UNUSED)
4081 {
4082 abbrev_entry *entry;
4083 unsigned char *start = section->start;
4084 unsigned char *end = start + section->size;
4085
4086 printf (_("Contents of the %s section:\n\n"), section->name);
4087
4088 do
4089 {
4090 unsigned char *last;
4091
4092 free_abbrevs ();
4093
4094 last = start;
4095 start = process_abbrev_section (start, end);
4096
4097 if (first_abbrev == NULL)
4098 continue;
4099
4100 printf (_(" Number TAG (0x%lx)\n"), (long) (last - section->start));
4101
4102 for (entry = first_abbrev; entry; entry = entry->next)
4103 {
4104 abbrev_attr *attr;
4105
4106 printf (" %ld %s [%s]\n",
4107 entry->entry,
4108 get_TAG_name (entry->tag),
4109 entry->children ? _("has children") : _("no children"));
4110
4111 for (attr = entry->first_attr; attr; attr = attr->next)
4112 printf (" %-18s %s\n",
4113 get_AT_name (attr->attribute),
4114 get_FORM_name (attr->form));
4115 }
4116 }
4117 while (start);
4118
4119 printf ("\n");
4120
4121 return 1;
4122 }
4123
4124 /* Display a location list from a normal (ie, non-dwo) .debug_loc section. */
4125
4126 static void
4127 display_loc_list (struct dwarf_section *section,
4128 unsigned char **start_ptr,
4129 int debug_info_entry,
4130 unsigned long offset,
4131 unsigned long base_address,
4132 int has_frame_base)
4133 {
4134 unsigned char *start = *start_ptr;
4135 unsigned char *section_end = section->start + section->size;
4136 unsigned long cu_offset = debug_information [debug_info_entry].cu_offset;
4137 unsigned int pointer_size = debug_information [debug_info_entry].pointer_size;
4138 unsigned int offset_size = debug_information [debug_info_entry].offset_size;
4139 int dwarf_version = debug_information [debug_info_entry].dwarf_version;
4140
4141 dwarf_vma begin;
4142 dwarf_vma end;
4143 unsigned short length;
4144 int need_frame_base;
4145
4146 while (1)
4147 {
4148 if (start + 2 * pointer_size > section_end)
4149 {
4150 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4151 offset);
4152 break;
4153 }
4154
4155 printf (" %8.8lx ", offset + (start - *start_ptr));
4156
4157 /* Note: we use sign extension here in order to be sure that we can detect
4158 the -1 escape value. Sign extension into the top 32 bits of a 32-bit
4159 address will not affect the values that we display since we always show
4160 hex values, and always the bottom 32-bits. */
4161 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, section_end);
4162 SAFE_BYTE_GET_AND_INC (end, start, pointer_size, section_end);
4163
4164 if (begin == 0 && end == 0)
4165 {
4166 printf (_("<End of list>\n"));
4167 break;
4168 }
4169
4170 /* Check base address specifiers. */
4171 if (begin == (dwarf_vma) -1 && end != (dwarf_vma) -1)
4172 {
4173 base_address = end;
4174 print_dwarf_vma (begin, pointer_size);
4175 print_dwarf_vma (end, pointer_size);
4176 printf (_("(base address)\n"));
4177 continue;
4178 }
4179
4180 if (start + 2 > section_end)
4181 {
4182 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4183 offset);
4184 break;
4185 }
4186
4187 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
4188
4189 if (start + length > section_end)
4190 {
4191 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4192 offset);
4193 break;
4194 }
4195
4196 print_dwarf_vma (begin + base_address, pointer_size);
4197 print_dwarf_vma (end + base_address, pointer_size);
4198
4199 putchar ('(');
4200 need_frame_base = decode_location_expression (start,
4201 pointer_size,
4202 offset_size,
4203 dwarf_version,
4204 length,
4205 cu_offset, section);
4206 putchar (')');
4207
4208 if (need_frame_base && !has_frame_base)
4209 printf (_(" [without DW_AT_frame_base]"));
4210
4211 if (begin == end)
4212 fputs (_(" (start == end)"), stdout);
4213 else if (begin > end)
4214 fputs (_(" (start > end)"), stdout);
4215
4216 putchar ('\n');
4217
4218 start += length;
4219 }
4220
4221 *start_ptr = start;
4222 }
4223
4224 /* Print a .debug_addr table index in decimal, surrounded by square brackets,
4225 right-adjusted in a field of length LEN, and followed by a space. */
4226
4227 static void
4228 print_addr_index (unsigned int idx, unsigned int len)
4229 {
4230 static char buf[15];
4231 snprintf (buf, sizeof (buf), "[%d]", idx);
4232 printf ("%*s ", len, buf);
4233 }
4234
4235 /* Display a location list from a .dwo section. It uses address indexes rather
4236 than embedded addresses. This code closely follows display_loc_list, but the
4237 two are sufficiently different that combining things is very ugly. */
4238
4239 static void
4240 display_loc_list_dwo (struct dwarf_section *section,
4241 unsigned char **start_ptr,
4242 int debug_info_entry,
4243 unsigned long offset,
4244 int has_frame_base)
4245 {
4246 unsigned char *start = *start_ptr;
4247 unsigned char *section_end = section->start + section->size;
4248 unsigned long cu_offset = debug_information [debug_info_entry].cu_offset;
4249 unsigned int pointer_size = debug_information [debug_info_entry].pointer_size;
4250 unsigned int offset_size = debug_information [debug_info_entry].offset_size;
4251 int dwarf_version = debug_information [debug_info_entry].dwarf_version;
4252 int entry_type;
4253 unsigned short length;
4254 int need_frame_base;
4255 unsigned int idx;
4256 unsigned int bytes_read;
4257
4258 while (1)
4259 {
4260 printf (" %8.8lx ", offset + (start - *start_ptr));
4261
4262 if (start >= section_end)
4263 {
4264 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4265 offset);
4266 break;
4267 }
4268
4269 SAFE_BYTE_GET_AND_INC (entry_type, start, 1, section_end);
4270 switch (entry_type)
4271 {
4272 case 0: /* A terminating entry. */
4273 *start_ptr = start;
4274 printf (_("<End of list>\n"));
4275 return;
4276 case 1: /* A base-address entry. */
4277 idx = read_uleb128 (start, &bytes_read, section_end);
4278 start += bytes_read;
4279 print_addr_index (idx, 8);
4280 printf (" ");
4281 printf (_("(base address selection entry)\n"));
4282 continue;
4283 case 2: /* A start/end entry. */
4284 idx = read_uleb128 (start, &bytes_read, section_end);
4285 start += bytes_read;
4286 print_addr_index (idx, 8);
4287 idx = read_uleb128 (start, &bytes_read, section_end);
4288 start += bytes_read;
4289 print_addr_index (idx, 8);
4290 break;
4291 case 3: /* A start/length entry. */
4292 idx = read_uleb128 (start, &bytes_read, section_end);
4293 start += bytes_read;
4294 print_addr_index (idx, 8);
4295 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4296 printf ("%08x ", idx);
4297 break;
4298 case 4: /* An offset pair entry. */
4299 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4300 printf ("%08x ", idx);
4301 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4302 printf ("%08x ", idx);
4303 break;
4304 default:
4305 warn (_("Unknown location list entry type 0x%x.\n"), entry_type);
4306 *start_ptr = start;
4307 return;
4308 }
4309
4310 if (start + 2 > section_end)
4311 {
4312 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4313 offset);
4314 break;
4315 }
4316
4317 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
4318 if (start + length > section_end)
4319 {
4320 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4321 offset);
4322 break;
4323 }
4324
4325 putchar ('(');
4326 need_frame_base = decode_location_expression (start,
4327 pointer_size,
4328 offset_size,
4329 dwarf_version,
4330 length,
4331 cu_offset, section);
4332 putchar (')');
4333
4334 if (need_frame_base && !has_frame_base)
4335 printf (_(" [without DW_AT_frame_base]"));
4336
4337 putchar ('\n');
4338
4339 start += length;
4340 }
4341
4342 *start_ptr = start;
4343 }
4344
4345 /* Sort array of indexes in ascending order of loc_offsets[idx]. */
4346
4347 static dwarf_vma *loc_offsets;
4348
4349 static int
4350 loc_offsets_compar (const void *ap, const void *bp)
4351 {
4352 dwarf_vma a = loc_offsets[*(const unsigned int *) ap];
4353 dwarf_vma b = loc_offsets[*(const unsigned int *) bp];
4354
4355 return (a > b) - (b > a);
4356 }
4357
4358 static int
4359 display_debug_loc (struct dwarf_section *section, void *file)
4360 {
4361 unsigned char *start = section->start;
4362 unsigned long bytes;
4363 unsigned char *section_begin = start;
4364 unsigned int num_loc_list = 0;
4365 unsigned long last_offset = 0;
4366 unsigned int first = 0;
4367 unsigned int i;
4368 unsigned int j;
4369 unsigned int k;
4370 int seen_first_offset = 0;
4371 int locs_sorted = 1;
4372 unsigned char *next;
4373 unsigned int *array = NULL;
4374 const char *suffix = strrchr (section->name, '.');
4375 int is_dwo = 0;
4376
4377 if (suffix && strcmp (suffix, ".dwo") == 0)
4378 is_dwo = 1;
4379
4380 bytes = section->size;
4381
4382 if (bytes == 0)
4383 {
4384 printf (_("\nThe %s section is empty.\n"), section->name);
4385 return 0;
4386 }
4387
4388 if (load_debug_info (file) == 0)
4389 {
4390 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
4391 section->name);
4392 return 0;
4393 }
4394
4395 /* Check the order of location list in .debug_info section. If
4396 offsets of location lists are in the ascending order, we can
4397 use `debug_information' directly. */
4398 for (i = 0; i < num_debug_info_entries; i++)
4399 {
4400 unsigned int num;
4401
4402 num = debug_information [i].num_loc_offsets;
4403 if (num > num_loc_list)
4404 num_loc_list = num;
4405
4406 /* Check if we can use `debug_information' directly. */
4407 if (locs_sorted && num != 0)
4408 {
4409 if (!seen_first_offset)
4410 {
4411 /* This is the first location list. */
4412 last_offset = debug_information [i].loc_offsets [0];
4413 first = i;
4414 seen_first_offset = 1;
4415 j = 1;
4416 }
4417 else
4418 j = 0;
4419
4420 for (; j < num; j++)
4421 {
4422 if (last_offset >
4423 debug_information [i].loc_offsets [j])
4424 {
4425 locs_sorted = 0;
4426 break;
4427 }
4428 last_offset = debug_information [i].loc_offsets [j];
4429 }
4430 }
4431 }
4432
4433 if (!seen_first_offset)
4434 error (_("No location lists in .debug_info section!\n"));
4435
4436 if (debug_information [first].num_loc_offsets > 0
4437 && debug_information [first].loc_offsets [0] != 0)
4438 warn (_("Location lists in %s section start at 0x%s\n"),
4439 section->name,
4440 dwarf_vmatoa ("x", debug_information [first].loc_offsets [0]));
4441
4442 if (!locs_sorted)
4443 array = (unsigned int *) xcmalloc (num_loc_list, sizeof (unsigned int));
4444 printf (_("Contents of the %s section:\n\n"), section->name);
4445 printf (_(" Offset Begin End Expression\n"));
4446
4447 seen_first_offset = 0;
4448 for (i = first; i < num_debug_info_entries; i++)
4449 {
4450 unsigned long offset;
4451 unsigned long base_address;
4452 int has_frame_base;
4453
4454 if (!locs_sorted)
4455 {
4456 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
4457 array[k] = k;
4458 loc_offsets = debug_information [i].loc_offsets;
4459 qsort (array, debug_information [i].num_loc_offsets,
4460 sizeof (*array), loc_offsets_compar);
4461 }
4462
4463 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
4464 {
4465 j = locs_sorted ? k : array[k];
4466 if (k
4467 && debug_information [i].loc_offsets [locs_sorted
4468 ? k - 1 : array [k - 1]]
4469 == debug_information [i].loc_offsets [j])
4470 continue;
4471 has_frame_base = debug_information [i].have_frame_base [j];
4472 offset = debug_information [i].loc_offsets [j];
4473 next = section_begin + offset;
4474 base_address = debug_information [i].base_address;
4475
4476 if (!seen_first_offset)
4477 seen_first_offset = 1;
4478 else
4479 {
4480 if (start < next)
4481 warn (_("There is a hole [0x%lx - 0x%lx] in .debug_loc section.\n"),
4482 (unsigned long) (start - section_begin),
4483 (unsigned long) (next - section_begin));
4484 else if (start > next)
4485 warn (_("There is an overlap [0x%lx - 0x%lx] in .debug_loc section.\n"),
4486 (unsigned long) (start - section_begin),
4487 (unsigned long) (next - section_begin));
4488 }
4489 start = next;
4490
4491 if (offset >= bytes)
4492 {
4493 warn (_("Offset 0x%lx is bigger than .debug_loc section size.\n"),
4494 offset);
4495 continue;
4496 }
4497
4498 if (is_dwo)
4499 display_loc_list_dwo (section, &start, i, offset, has_frame_base);
4500 else
4501 display_loc_list (section, &start, i, offset, base_address,
4502 has_frame_base);
4503 }
4504 }
4505
4506 if (start < section->start + section->size)
4507 warn (_("There are %ld unused bytes at the end of section %s\n"),
4508 (long) (section->start + section->size - start), section->name);
4509 putchar ('\n');
4510 free (array);
4511 return 1;
4512 }
4513
4514 static int
4515 display_debug_str (struct dwarf_section *section,
4516 void *file ATTRIBUTE_UNUSED)
4517 {
4518 unsigned char *start = section->start;
4519 unsigned long bytes = section->size;
4520 dwarf_vma addr = section->address;
4521
4522 if (bytes == 0)
4523 {
4524 printf (_("\nThe %s section is empty.\n"), section->name);
4525 return 0;
4526 }
4527
4528 printf (_("Contents of the %s section:\n\n"), section->name);
4529
4530 while (bytes)
4531 {
4532 int j;
4533 int k;
4534 int lbytes;
4535
4536 lbytes = (bytes > 16 ? 16 : bytes);
4537
4538 printf (" 0x%8.8lx ", (unsigned long) addr);
4539
4540 for (j = 0; j < 16; j++)
4541 {
4542 if (j < lbytes)
4543 printf ("%2.2x", start[j]);
4544 else
4545 printf (" ");
4546
4547 if ((j & 3) == 3)
4548 printf (" ");
4549 }
4550
4551 for (j = 0; j < lbytes; j++)
4552 {
4553 k = start[j];
4554 if (k >= ' ' && k < 0x80)
4555 printf ("%c", k);
4556 else
4557 printf (".");
4558 }
4559
4560 putchar ('\n');
4561
4562 start += lbytes;
4563 addr += lbytes;
4564 bytes -= lbytes;
4565 }
4566
4567 putchar ('\n');
4568
4569 return 1;
4570 }
4571
4572 static int
4573 display_debug_info (struct dwarf_section *section, void *file)
4574 {
4575 return process_debug_info (section, file, section->abbrev_sec, 0, 0);
4576 }
4577
4578 static int
4579 display_debug_types (struct dwarf_section *section, void *file)
4580 {
4581 return process_debug_info (section, file, section->abbrev_sec, 0, 1);
4582 }
4583
4584 static int
4585 display_trace_info (struct dwarf_section *section, void *file)
4586 {
4587 return process_debug_info (section, file, section->abbrev_sec, 0, 0);
4588 }
4589
4590 static int
4591 display_debug_aranges (struct dwarf_section *section,
4592 void *file ATTRIBUTE_UNUSED)
4593 {
4594 unsigned char *start = section->start;
4595 unsigned char *end = start + section->size;
4596
4597 printf (_("Contents of the %s section:\n\n"), section->name);
4598
4599 /* It does not matter if this load fails,
4600 we test for that later on. */
4601 load_debug_info (file);
4602
4603 while (start < end)
4604 {
4605 unsigned char *hdrptr;
4606 DWARF2_Internal_ARange arange;
4607 unsigned char *addr_ranges;
4608 dwarf_vma length;
4609 dwarf_vma address;
4610 unsigned char address_size;
4611 int excess;
4612 unsigned int offset_size;
4613 unsigned int initial_length_size;
4614
4615 hdrptr = start;
4616
4617 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 4, end);
4618 if (arange.ar_length == 0xffffffff)
4619 {
4620 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 8, end);
4621 offset_size = 8;
4622 initial_length_size = 12;
4623 }
4624 else
4625 {
4626 offset_size = 4;
4627 initial_length_size = 4;
4628 }
4629
4630 SAFE_BYTE_GET_AND_INC (arange.ar_version, hdrptr, 2, end);
4631 SAFE_BYTE_GET_AND_INC (arange.ar_info_offset, hdrptr, offset_size, end);
4632
4633 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
4634 && num_debug_info_entries > 0
4635 && find_debug_info_for_offset (arange.ar_info_offset) == NULL)
4636 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
4637 (unsigned long) arange.ar_info_offset, section->name);
4638
4639 SAFE_BYTE_GET_AND_INC (arange.ar_pointer_size, hdrptr, 1, end);
4640 SAFE_BYTE_GET_AND_INC (arange.ar_segment_size, hdrptr, 1, end);
4641
4642 if (arange.ar_version != 2 && arange.ar_version != 3)
4643 {
4644 warn (_("Only DWARF 2 and 3 aranges are currently supported.\n"));
4645 break;
4646 }
4647
4648 printf (_(" Length: %ld\n"),
4649 (long) arange.ar_length);
4650 printf (_(" Version: %d\n"), arange.ar_version);
4651 printf (_(" Offset into .debug_info: 0x%lx\n"),
4652 (unsigned long) arange.ar_info_offset);
4653 printf (_(" Pointer Size: %d\n"), arange.ar_pointer_size);
4654 printf (_(" Segment Size: %d\n"), arange.ar_segment_size);
4655
4656 address_size = arange.ar_pointer_size + arange.ar_segment_size;
4657
4658 if (address_size == 0)
4659 {
4660 error (_("Invalid address size in %s section!\n"),
4661 section->name);
4662 break;
4663 }
4664
4665 /* The DWARF spec does not require that the address size be a power
4666 of two, but we do. This will have to change if we ever encounter
4667 an uneven architecture. */
4668 if ((address_size & (address_size - 1)) != 0)
4669 {
4670 warn (_("Pointer size + Segment size is not a power of two.\n"));
4671 break;
4672 }
4673
4674 if (address_size > 4)
4675 printf (_("\n Address Length\n"));
4676 else
4677 printf (_("\n Address Length\n"));
4678
4679 addr_ranges = hdrptr;
4680
4681 /* Must pad to an alignment boundary that is twice the address size. */
4682 excess = (hdrptr - start) % (2 * address_size);
4683 if (excess)
4684 addr_ranges += (2 * address_size) - excess;
4685
4686 start += arange.ar_length + initial_length_size;
4687
4688 while (addr_ranges + 2 * address_size <= start)
4689 {
4690 SAFE_BYTE_GET_AND_INC (address, addr_ranges, address_size, end);
4691 SAFE_BYTE_GET_AND_INC (length, addr_ranges, address_size, end);
4692
4693 printf (" ");
4694 print_dwarf_vma (address, address_size);
4695 print_dwarf_vma (length, address_size);
4696 putchar ('\n');
4697 }
4698 }
4699
4700 printf ("\n");
4701
4702 return 1;
4703 }
4704
4705 /* Comparison function for qsort. */
4706 static int
4707 comp_addr_base (const void * v0, const void * v1)
4708 {
4709 debug_info * info0 = (debug_info *) v0;
4710 debug_info * info1 = (debug_info *) v1;
4711 return info0->addr_base - info1->addr_base;
4712 }
4713
4714 /* Display the debug_addr section. */
4715 static int
4716 display_debug_addr (struct dwarf_section *section,
4717 void *file)
4718 {
4719 debug_info **debug_addr_info;
4720 unsigned char *entry;
4721 unsigned char *end;
4722 unsigned int i;
4723 unsigned int count;
4724
4725 if (section->size == 0)
4726 {
4727 printf (_("\nThe %s section is empty.\n"), section->name);
4728 return 0;
4729 }
4730
4731 if (load_debug_info (file) == 0)
4732 {
4733 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
4734 section->name);
4735 return 0;
4736 }
4737
4738 printf (_("Contents of the %s section:\n\n"), section->name);
4739
4740 debug_addr_info = (debug_info **) xmalloc ((num_debug_info_entries + 1)
4741 * sizeof (debug_info *));
4742
4743 count = 0;
4744 for (i = 0; i < num_debug_info_entries; i++)
4745 {
4746 if (debug_information [i].addr_base != DEBUG_INFO_UNAVAILABLE)
4747 debug_addr_info [count++] = &debug_information [i];
4748 }
4749
4750 /* Add a sentinel to make iteration convenient. */
4751 debug_addr_info [count] = (debug_info *) xmalloc (sizeof (debug_info));
4752 debug_addr_info [count]->addr_base = section->size;
4753
4754 qsort (debug_addr_info, count, sizeof (debug_info *), comp_addr_base);
4755 for (i = 0; i < count; i++)
4756 {
4757 unsigned int idx;
4758 unsigned int address_size = debug_addr_info [i]->pointer_size;
4759
4760 printf (_(" For compilation unit at offset 0x%s:\n"),
4761 dwarf_vmatoa ("x", debug_addr_info [i]->cu_offset));
4762
4763 printf (_("\tIndex\tAddress\n"));
4764 entry = section->start + debug_addr_info [i]->addr_base;
4765 end = section->start + debug_addr_info [i + 1]->addr_base;
4766 idx = 0;
4767 while (entry < end)
4768 {
4769 dwarf_vma base = byte_get (entry, address_size);
4770 printf (_("\t%d:\t"), idx);
4771 print_dwarf_vma (base, address_size);
4772 printf ("\n");
4773 entry += address_size;
4774 idx++;
4775 }
4776 }
4777 printf ("\n");
4778
4779 free (debug_addr_info);
4780 return 1;
4781 }
4782
4783 /* Display the .debug_str_offsets and .debug_str_offsets.dwo sections. */
4784 static int
4785 display_debug_str_offsets (struct dwarf_section *section,
4786 void *file ATTRIBUTE_UNUSED)
4787 {
4788 if (section->size == 0)
4789 {
4790 printf (_("\nThe %s section is empty.\n"), section->name);
4791 return 0;
4792 }
4793 /* TODO: Dump the contents. This is made somewhat difficult by not knowing
4794 what the offset size is for this section. */
4795 return 1;
4796 }
4797
4798 /* Each debug_information[x].range_lists[y] gets this representation for
4799 sorting purposes. */
4800
4801 struct range_entry
4802 {
4803 /* The debug_information[x].range_lists[y] value. */
4804 unsigned long ranges_offset;
4805
4806 /* Original debug_information to find parameters of the data. */
4807 debug_info *debug_info_p;
4808 };
4809
4810 /* Sort struct range_entry in ascending order of its RANGES_OFFSET. */
4811
4812 static int
4813 range_entry_compar (const void *ap, const void *bp)
4814 {
4815 const struct range_entry *a_re = (const struct range_entry *) ap;
4816 const struct range_entry *b_re = (const struct range_entry *) bp;
4817 const unsigned long a = a_re->ranges_offset;
4818 const unsigned long b = b_re->ranges_offset;
4819
4820 return (a > b) - (b > a);
4821 }
4822
4823 static int
4824 display_debug_ranges (struct dwarf_section *section,
4825 void *file ATTRIBUTE_UNUSED)
4826 {
4827 unsigned char *start = section->start;
4828 unsigned char *last_start = start;
4829 unsigned long bytes = section->size;
4830 unsigned char *section_begin = start;
4831 unsigned char *finish = start + bytes;
4832 unsigned int num_range_list, i;
4833 struct range_entry *range_entries, *range_entry_fill;
4834
4835 if (bytes == 0)
4836 {
4837 printf (_("\nThe %s section is empty.\n"), section->name);
4838 return 0;
4839 }
4840
4841 if (load_debug_info (file) == 0)
4842 {
4843 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
4844 section->name);
4845 return 0;
4846 }
4847
4848 num_range_list = 0;
4849 for (i = 0; i < num_debug_info_entries; i++)
4850 num_range_list += debug_information [i].num_range_lists;
4851
4852 if (num_range_list == 0)
4853 {
4854 /* This can happen when the file was compiled with -gsplit-debug
4855 which removes references to range lists from the primary .o file. */
4856 printf (_("No range lists in .debug_info section.\n"));
4857 return 1;
4858 }
4859
4860 range_entries = (struct range_entry *)
4861 xmalloc (sizeof (*range_entries) * num_range_list);
4862 range_entry_fill = range_entries;
4863
4864 for (i = 0; i < num_debug_info_entries; i++)
4865 {
4866 debug_info *debug_info_p = &debug_information[i];
4867 unsigned int j;
4868
4869 for (j = 0; j < debug_info_p->num_range_lists; j++)
4870 {
4871 range_entry_fill->ranges_offset = debug_info_p->range_lists[j];
4872 range_entry_fill->debug_info_p = debug_info_p;
4873 range_entry_fill++;
4874 }
4875 }
4876
4877 qsort (range_entries, num_range_list, sizeof (*range_entries),
4878 range_entry_compar);
4879
4880 if (dwarf_check != 0 && range_entries[0].ranges_offset != 0)
4881 warn (_("Range lists in %s section start at 0x%lx\n"),
4882 section->name, range_entries[0].ranges_offset);
4883
4884 printf (_("Contents of the %s section:\n\n"), section->name);
4885 printf (_(" Offset Begin End\n"));
4886
4887 for (i = 0; i < num_range_list; i++)
4888 {
4889 struct range_entry *range_entry = &range_entries[i];
4890 debug_info *debug_info_p = range_entry->debug_info_p;
4891 unsigned int pointer_size;
4892 unsigned long offset;
4893 unsigned char *next;
4894 unsigned long base_address;
4895
4896 pointer_size = debug_info_p->pointer_size;
4897
4898 offset = range_entry->ranges_offset;
4899 next = section_begin + offset;
4900 base_address = debug_info_p->base_address;
4901
4902 if (dwarf_check != 0 && i > 0)
4903 {
4904 if (start < next)
4905 warn (_("There is a hole [0x%lx - 0x%lx] in %s section.\n"),
4906 (unsigned long) (start - section_begin),
4907 (unsigned long) (next - section_begin), section->name);
4908 else if (start > next)
4909 {
4910 if (next == last_start)
4911 continue;
4912 warn (_("There is an overlap [0x%lx - 0x%lx] in %s section.\n"),
4913 (unsigned long) (start - section_begin),
4914 (unsigned long) (next - section_begin), section->name);
4915 }
4916 }
4917 start = next;
4918 last_start = next;
4919
4920 while (start < finish)
4921 {
4922 dwarf_vma begin;
4923 dwarf_vma end;
4924
4925 /* Note: we use sign extension here in order to be sure that
4926 we can detect the -1 escape value. Sign extension into the
4927 top 32 bits of a 32-bit address will not affect the values
4928 that we display since we always show hex values, and always
4929 the bottom 32-bits. */
4930 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, finish);
4931 if (start >= finish)
4932 break;
4933 SAFE_SIGNED_BYTE_GET_AND_INC (end, start, pointer_size, finish);
4934
4935 printf (" %8.8lx ", offset);
4936
4937 if (begin == 0 && end == 0)
4938 {
4939 printf (_("<End of list>\n"));
4940 break;
4941 }
4942
4943 /* Check base address specifiers. */
4944 if (begin == (dwarf_vma) -1 && end != (dwarf_vma) -1)
4945 {
4946 base_address = end;
4947 print_dwarf_vma (begin, pointer_size);
4948 print_dwarf_vma (end, pointer_size);
4949 printf ("(base address)\n");
4950 continue;
4951 }
4952
4953 print_dwarf_vma (begin + base_address, pointer_size);
4954 print_dwarf_vma (end + base_address, pointer_size);
4955
4956 if (begin == end)
4957 fputs (_("(start == end)"), stdout);
4958 else if (begin > end)
4959 fputs (_("(start > end)"), stdout);
4960
4961 putchar ('\n');
4962 }
4963 }
4964 putchar ('\n');
4965
4966 free (range_entries);
4967
4968 return 1;
4969 }
4970
4971 typedef struct Frame_Chunk
4972 {
4973 struct Frame_Chunk *next;
4974 unsigned char *chunk_start;
4975 int ncols;
4976 /* DW_CFA_{undefined,same_value,offset,register,unreferenced} */
4977 short int *col_type;
4978 int *col_offset;
4979 char *augmentation;
4980 unsigned int code_factor;
4981 int data_factor;
4982 dwarf_vma pc_begin;
4983 dwarf_vma pc_range;
4984 int cfa_reg;
4985 int cfa_offset;
4986 int ra;
4987 unsigned char fde_encoding;
4988 unsigned char cfa_exp;
4989 unsigned char ptr_size;
4990 unsigned char segment_size;
4991 }
4992 Frame_Chunk;
4993
4994 static const char *const *dwarf_regnames;
4995 static unsigned int dwarf_regnames_count;
4996
4997 /* A marker for a col_type that means this column was never referenced
4998 in the frame info. */
4999 #define DW_CFA_unreferenced (-1)
5000
5001 /* Return 0 if not more space is needed, 1 if more space is needed,
5002 -1 for invalid reg. */
5003
5004 static int
5005 frame_need_space (Frame_Chunk *fc, unsigned int reg)
5006 {
5007 int prev = fc->ncols;
5008
5009 if (reg < (unsigned int) fc->ncols)
5010 return 0;
5011
5012 if (dwarf_regnames_count
5013 && reg > dwarf_regnames_count)
5014 return -1;
5015
5016 fc->ncols = reg + 1;
5017 fc->col_type = (short int *) xcrealloc (fc->col_type, fc->ncols,
5018 sizeof (short int));
5019 fc->col_offset = (int *) xcrealloc (fc->col_offset, fc->ncols, sizeof (int));
5020
5021 while (prev < fc->ncols)
5022 {
5023 fc->col_type[prev] = DW_CFA_unreferenced;
5024 fc->col_offset[prev] = 0;
5025 prev++;
5026 }
5027 return 1;
5028 }
5029
5030 static const char *const dwarf_regnames_i386[] =
5031 {
5032 "eax", "ecx", "edx", "ebx", /* 0 - 3 */
5033 "esp", "ebp", "esi", "edi", /* 4 - 7 */
5034 "eip", "eflags", NULL, /* 8 - 10 */
5035 "st0", "st1", "st2", "st3", /* 11 - 14 */
5036 "st4", "st5", "st6", "st7", /* 15 - 18 */
5037 NULL, NULL, /* 19 - 20 */
5038 "xmm0", "xmm1", "xmm2", "xmm3", /* 21 - 24 */
5039 "xmm4", "xmm5", "xmm6", "xmm7", /* 25 - 28 */
5040 "mm0", "mm1", "mm2", "mm3", /* 29 - 32 */
5041 "mm4", "mm5", "mm6", "mm7", /* 33 - 36 */
5042 "fcw", "fsw", "mxcsr", /* 37 - 39 */
5043 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL, /* 40 - 47 */
5044 "tr", "ldtr", /* 48 - 49 */
5045 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 50 - 57 */
5046 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 58 - 65 */
5047 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 66 - 73 */
5048 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 74 - 81 */
5049 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 82 - 89 */
5050 NULL, NULL, NULL, /* 90 - 92 */
5051 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7" /* 93 - 100 */
5052 };
5053
5054 void
5055 init_dwarf_regnames_i386 (void)
5056 {
5057 dwarf_regnames = dwarf_regnames_i386;
5058 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_i386);
5059 }
5060
5061 static const char *const dwarf_regnames_x86_64[] =
5062 {
5063 "rax", "rdx", "rcx", "rbx",
5064 "rsi", "rdi", "rbp", "rsp",
5065 "r8", "r9", "r10", "r11",
5066 "r12", "r13", "r14", "r15",
5067 "rip",
5068 "xmm0", "xmm1", "xmm2", "xmm3",
5069 "xmm4", "xmm5", "xmm6", "xmm7",
5070 "xmm8", "xmm9", "xmm10", "xmm11",
5071 "xmm12", "xmm13", "xmm14", "xmm15",
5072 "st0", "st1", "st2", "st3",
5073 "st4", "st5", "st6", "st7",
5074 "mm0", "mm1", "mm2", "mm3",
5075 "mm4", "mm5", "mm6", "mm7",
5076 "rflags",
5077 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL,
5078 "fs.base", "gs.base", NULL, NULL,
5079 "tr", "ldtr",
5080 "mxcsr", "fcw", "fsw",
5081 "xmm16", "xmm17", "xmm18", "xmm19",
5082 "xmm20", "xmm21", "xmm22", "xmm23",
5083 "xmm24", "xmm25", "xmm26", "xmm27",
5084 "xmm28", "xmm29", "xmm30", "xmm31",
5085 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 83 - 90 */
5086 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 91 - 98 */
5087 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 99 - 106 */
5088 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 107 - 114 */
5089 NULL, NULL, NULL, /* 115 - 117 */
5090 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7"
5091 };
5092
5093 void
5094 init_dwarf_regnames_x86_64 (void)
5095 {
5096 dwarf_regnames = dwarf_regnames_x86_64;
5097 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_x86_64);
5098 }
5099
5100 void
5101 init_dwarf_regnames (unsigned int e_machine)
5102 {
5103 switch (e_machine)
5104 {
5105 case EM_386:
5106 case EM_486:
5107 init_dwarf_regnames_i386 ();
5108 break;
5109
5110 case EM_X86_64:
5111 case EM_L1OM:
5112 case EM_K1OM:
5113 init_dwarf_regnames_x86_64 ();
5114 break;
5115
5116 default:
5117 break;
5118 }
5119 }
5120
5121 static const char *
5122 regname (unsigned int regno, int row)
5123 {
5124 static char reg[64];
5125 if (dwarf_regnames
5126 && regno < dwarf_regnames_count
5127 && dwarf_regnames [regno] != NULL)
5128 {
5129 if (row)
5130 return dwarf_regnames [regno];
5131 snprintf (reg, sizeof (reg), "r%d (%s)", regno,
5132 dwarf_regnames [regno]);
5133 }
5134 else
5135 snprintf (reg, sizeof (reg), "r%d", regno);
5136 return reg;
5137 }
5138
5139 static void
5140 frame_display_row (Frame_Chunk *fc, int *need_col_headers, int *max_regs)
5141 {
5142 int r;
5143 char tmp[100];
5144
5145 if (*max_regs < fc->ncols)
5146 *max_regs = fc->ncols;
5147
5148 if (*need_col_headers)
5149 {
5150 static const char *sloc = " LOC";
5151
5152 *need_col_headers = 0;
5153
5154 printf ("%-*s CFA ", eh_addr_size * 2, sloc);
5155
5156 for (r = 0; r < *max_regs; r++)
5157 if (fc->col_type[r] != DW_CFA_unreferenced)
5158 {
5159 if (r == fc->ra)
5160 printf ("ra ");
5161 else
5162 printf ("%-5s ", regname (r, 1));
5163 }
5164
5165 printf ("\n");
5166 }
5167
5168 print_dwarf_vma (fc->pc_begin, eh_addr_size);
5169 if (fc->cfa_exp)
5170 strcpy (tmp, "exp");
5171 else
5172 sprintf (tmp, "%s%+d", regname (fc->cfa_reg, 1), fc->cfa_offset);
5173 printf ("%-8s ", tmp);
5174
5175 for (r = 0; r < fc->ncols; r++)
5176 {
5177 if (fc->col_type[r] != DW_CFA_unreferenced)
5178 {
5179 switch (fc->col_type[r])
5180 {
5181 case DW_CFA_undefined:
5182 strcpy (tmp, "u");
5183 break;
5184 case DW_CFA_same_value:
5185 strcpy (tmp, "s");
5186 break;
5187 case DW_CFA_offset:
5188 sprintf (tmp, "c%+d", fc->col_offset[r]);
5189 break;
5190 case DW_CFA_val_offset:
5191 sprintf (tmp, "v%+d", fc->col_offset[r]);
5192 break;
5193 case DW_CFA_register:
5194 sprintf (tmp, "%s", regname (fc->col_offset[r], 0));
5195 break;
5196 case DW_CFA_expression:
5197 strcpy (tmp, "exp");
5198 break;
5199 case DW_CFA_val_expression:
5200 strcpy (tmp, "vexp");
5201 break;
5202 default:
5203 strcpy (tmp, "n/a");
5204 break;
5205 }
5206 printf ("%-5s ", tmp);
5207 }
5208 }
5209 printf ("\n");
5210 }
5211
5212 #define GET(VAR, N) SAFE_BYTE_GET_AND_INC (VAR, start, N, end);
5213 #define LEB() read_uleb128 (start, & length_return, end); start += length_return
5214 #define SLEB() read_sleb128 (start, & length_return, end); start += length_return
5215
5216 static int
5217 display_debug_frames (struct dwarf_section *section,
5218 void *file ATTRIBUTE_UNUSED)
5219 {
5220 unsigned char *start = section->start;
5221 unsigned char *end = start + section->size;
5222 unsigned char *section_start = start;
5223 Frame_Chunk *chunks = 0;
5224 Frame_Chunk *remembered_state = 0;
5225 Frame_Chunk *rs;
5226 int is_eh = strcmp (section->name, ".eh_frame") == 0;
5227 unsigned int length_return;
5228 int max_regs = 0;
5229 const char *bad_reg = _("bad register: ");
5230 int saved_eh_addr_size = eh_addr_size;
5231
5232 printf (_("Contents of the %s section:\n"), section->name);
5233
5234 while (start < end)
5235 {
5236 unsigned char *saved_start;
5237 unsigned char *block_end;
5238 dwarf_vma length;
5239 dwarf_vma cie_id;
5240 Frame_Chunk *fc;
5241 Frame_Chunk *cie;
5242 int need_col_headers = 1;
5243 unsigned char *augmentation_data = NULL;
5244 unsigned long augmentation_data_len = 0;
5245 unsigned int encoded_ptr_size = saved_eh_addr_size;
5246 unsigned int offset_size;
5247 unsigned int initial_length_size;
5248
5249 saved_start = start;
5250
5251 SAFE_BYTE_GET_AND_INC (length, start, 4, end);
5252 if (length == 0)
5253 {
5254 printf ("\n%08lx ZERO terminator\n\n",
5255 (unsigned long)(saved_start - section_start));
5256 continue;
5257 }
5258
5259 if (length == 0xffffffff)
5260 {
5261 SAFE_BYTE_GET_AND_INC (length, start, 8, end);
5262 offset_size = 8;
5263 initial_length_size = 12;
5264 }
5265 else
5266 {
5267 offset_size = 4;
5268 initial_length_size = 4;
5269 }
5270
5271 block_end = saved_start + length + initial_length_size;
5272 if (block_end > end)
5273 {
5274 warn ("Invalid length 0x%s in FDE at %#08lx\n",
5275 dwarf_vmatoa_1 (NULL, length, offset_size),
5276 (unsigned long) (saved_start - section_start));
5277 block_end = end;
5278 }
5279
5280 SAFE_BYTE_GET_AND_INC (cie_id, start, offset_size, end);
5281
5282 if (is_eh ? (cie_id == 0) : ((offset_size == 4 && cie_id == DW_CIE_ID)
5283 || (offset_size == 8 && cie_id == DW64_CIE_ID)))
5284 {
5285 int version;
5286
5287 fc = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
5288 memset (fc, 0, sizeof (Frame_Chunk));
5289
5290 fc->next = chunks;
5291 chunks = fc;
5292 fc->chunk_start = saved_start;
5293 fc->ncols = 0;
5294 fc->col_type = (short int *) xmalloc (sizeof (short int));
5295 fc->col_offset = (int *) xmalloc (sizeof (int));
5296 frame_need_space (fc, max_regs - 1);
5297
5298 version = *start++;
5299
5300 fc->augmentation = (char *) start;
5301 start = (unsigned char *) strchr ((char *) start, '\0') + 1;
5302
5303 if (strcmp (fc->augmentation, "eh") == 0)
5304 start += eh_addr_size;
5305
5306 if (version >= 4)
5307 {
5308 GET (fc->ptr_size, 1);
5309 GET (fc->segment_size, 1);
5310 eh_addr_size = fc->ptr_size;
5311 }
5312 else
5313 {
5314 fc->ptr_size = eh_addr_size;
5315 fc->segment_size = 0;
5316 }
5317 fc->code_factor = LEB ();
5318 fc->data_factor = SLEB ();
5319 if (version == 1)
5320 {
5321 GET (fc->ra, 1);
5322 }
5323 else
5324 {
5325 fc->ra = LEB ();
5326 }
5327
5328 if (fc->augmentation[0] == 'z')
5329 {
5330 augmentation_data_len = LEB ();
5331 augmentation_data = start;
5332 start += augmentation_data_len;
5333 }
5334 cie = fc;
5335
5336 printf ("\n%08lx ", (unsigned long) (saved_start - section_start));
5337 print_dwarf_vma (length, fc->ptr_size);
5338 print_dwarf_vma (cie_id, offset_size);
5339
5340 if (do_debug_frames_interp)
5341 {
5342 printf ("CIE \"%s\" cf=%d df=%d ra=%d\n", fc->augmentation,
5343 fc->code_factor, fc->data_factor, fc->ra);
5344 }
5345 else
5346 {
5347 printf ("CIE\n");
5348 printf (" Version: %d\n", version);
5349 printf (" Augmentation: \"%s\"\n", fc->augmentation);
5350 if (version >= 4)
5351 {
5352 printf (" Pointer Size: %u\n", fc->ptr_size);
5353 printf (" Segment Size: %u\n", fc->segment_size);
5354 }
5355 printf (" Code alignment factor: %u\n", fc->code_factor);
5356 printf (" Data alignment factor: %d\n", fc->data_factor);
5357 printf (" Return address column: %d\n", fc->ra);
5358
5359 if (augmentation_data_len)
5360 {
5361 unsigned long i;
5362 printf (" Augmentation data: ");
5363 for (i = 0; i < augmentation_data_len; ++i)
5364 printf (" %02x", augmentation_data[i]);
5365 putchar ('\n');
5366 }
5367 putchar ('\n');
5368 }
5369
5370 if (augmentation_data_len)
5371 {
5372 unsigned char *p, *q;
5373 p = (unsigned char *) fc->augmentation + 1;
5374 q = augmentation_data;
5375
5376 while (1)
5377 {
5378 if (*p == 'L')
5379 q++;
5380 else if (*p == 'P')
5381 q += 1 + size_of_encoded_value (*q);
5382 else if (*p == 'R')
5383 fc->fde_encoding = *q++;
5384 else if (*p == 'S')
5385 ;
5386 else
5387 break;
5388 p++;
5389 }
5390
5391 if (fc->fde_encoding)
5392 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
5393 }
5394
5395 frame_need_space (fc, fc->ra);
5396 }
5397 else
5398 {
5399 unsigned char *look_for;
5400 static Frame_Chunk fde_fc;
5401 unsigned long segment_selector;
5402
5403 fc = & fde_fc;
5404 memset (fc, 0, sizeof (Frame_Chunk));
5405
5406 look_for = is_eh ? start - 4 - cie_id : section_start + cie_id;
5407
5408 for (cie = chunks; cie ; cie = cie->next)
5409 if (cie->chunk_start == look_for)
5410 break;
5411
5412 if (!cie)
5413 {
5414 warn ("Invalid CIE pointer 0x%s in FDE at %#08lx\n",
5415 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
5416 (unsigned long) (saved_start - section_start));
5417 fc->ncols = 0;
5418 fc->col_type = (short int *) xmalloc (sizeof (short int));
5419 fc->col_offset = (int *) xmalloc (sizeof (int));
5420 frame_need_space (fc, max_regs - 1);
5421 cie = fc;
5422 fc->augmentation = "";
5423 fc->fde_encoding = 0;
5424 fc->ptr_size = eh_addr_size;
5425 fc->segment_size = 0;
5426 }
5427 else
5428 {
5429 fc->ncols = cie->ncols;
5430 fc->col_type = (short int *) xcmalloc (fc->ncols, sizeof (short int));
5431 fc->col_offset = (int *) xcmalloc (fc->ncols, sizeof (int));
5432 memcpy (fc->col_type, cie->col_type, fc->ncols * sizeof (short int));
5433 memcpy (fc->col_offset, cie->col_offset, fc->ncols * sizeof (int));
5434 fc->augmentation = cie->augmentation;
5435 fc->ptr_size = cie->ptr_size;
5436 eh_addr_size = cie->ptr_size;
5437 fc->segment_size = cie->segment_size;
5438 fc->code_factor = cie->code_factor;
5439 fc->data_factor = cie->data_factor;
5440 fc->cfa_reg = cie->cfa_reg;
5441 fc->cfa_offset = cie->cfa_offset;
5442 fc->ra = cie->ra;
5443 frame_need_space (fc, max_regs - 1);
5444 fc->fde_encoding = cie->fde_encoding;
5445 }
5446
5447 if (fc->fde_encoding)
5448 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
5449
5450 segment_selector = 0;
5451 if (fc->segment_size)
5452 {
5453 SAFE_BYTE_GET_AND_INC (segment_selector, start, fc->segment_size, end);
5454 }
5455 fc->pc_begin = get_encoded_value (start, fc->fde_encoding, section);
5456 start += encoded_ptr_size;
5457
5458 /* FIXME: It appears that sometimes the final pc_range value is
5459 encoded in less than encoded_ptr_size bytes. See the x86_64
5460 run of the "objcopy on compressed debug sections" test for an
5461 example of this. */
5462 SAFE_BYTE_GET_AND_INC (fc->pc_range, start, encoded_ptr_size, end);
5463
5464 if (cie->augmentation[0] == 'z')
5465 {
5466 augmentation_data_len = LEB ();
5467 augmentation_data = start;
5468 start += augmentation_data_len;
5469 }
5470
5471 printf ("\n%08lx %s %s FDE cie=%08lx pc=",
5472 (unsigned long)(saved_start - section_start),
5473 dwarf_vmatoa_1 (NULL, length, fc->ptr_size),
5474 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
5475 (unsigned long)(cie->chunk_start - section_start));
5476
5477 if (fc->segment_size)
5478 printf ("%04lx:", segment_selector);
5479
5480 printf ("%s..%s\n",
5481 dwarf_vmatoa_1 (NULL, fc->pc_begin, fc->ptr_size),
5482 dwarf_vmatoa_1 (NULL, fc->pc_begin + fc->pc_range, fc->ptr_size));
5483
5484 if (! do_debug_frames_interp && augmentation_data_len)
5485 {
5486 unsigned long i;
5487
5488 printf (" Augmentation data: ");
5489 for (i = 0; i < augmentation_data_len; ++i)
5490 printf (" %02x", augmentation_data[i]);
5491 putchar ('\n');
5492 putchar ('\n');
5493 }
5494 }
5495
5496 /* At this point, fc is the current chunk, cie (if any) is set, and
5497 we're about to interpret instructions for the chunk. */
5498 /* ??? At present we need to do this always, since this sizes the
5499 fc->col_type and fc->col_offset arrays, which we write into always.
5500 We should probably split the interpreted and non-interpreted bits
5501 into two different routines, since there's so much that doesn't
5502 really overlap between them. */
5503 if (1 || do_debug_frames_interp)
5504 {
5505 /* Start by making a pass over the chunk, allocating storage
5506 and taking note of what registers are used. */
5507 unsigned char *tmp = start;
5508
5509 while (start < block_end)
5510 {
5511 unsigned op, opa;
5512 unsigned long reg, temp;
5513
5514 op = *start++;
5515 opa = op & 0x3f;
5516 if (op & 0xc0)
5517 op &= 0xc0;
5518
5519 /* Warning: if you add any more cases to this switch, be
5520 sure to add them to the corresponding switch below. */
5521 switch (op)
5522 {
5523 case DW_CFA_advance_loc:
5524 break;
5525 case DW_CFA_offset:
5526 LEB ();
5527 if (frame_need_space (fc, opa) >= 0)
5528 fc->col_type[opa] = DW_CFA_undefined;
5529 break;
5530 case DW_CFA_restore:
5531 if (frame_need_space (fc, opa) >= 0)
5532 fc->col_type[opa] = DW_CFA_undefined;
5533 break;
5534 case DW_CFA_set_loc:
5535 start += encoded_ptr_size;
5536 break;
5537 case DW_CFA_advance_loc1:
5538 start += 1;
5539 break;
5540 case DW_CFA_advance_loc2:
5541 start += 2;
5542 break;
5543 case DW_CFA_advance_loc4:
5544 start += 4;
5545 break;
5546 case DW_CFA_offset_extended:
5547 case DW_CFA_val_offset:
5548 reg = LEB (); LEB ();
5549 if (frame_need_space (fc, reg) >= 0)
5550 fc->col_type[reg] = DW_CFA_undefined;
5551 break;
5552 case DW_CFA_restore_extended:
5553 reg = LEB ();
5554 frame_need_space (fc, reg);
5555 if (frame_need_space (fc, reg) >= 0)
5556 fc->col_type[reg] = DW_CFA_undefined;
5557 break;
5558 case DW_CFA_undefined:
5559 reg = LEB ();
5560 if (frame_need_space (fc, reg) >= 0)
5561 fc->col_type[reg] = DW_CFA_undefined;
5562 break;
5563 case DW_CFA_same_value:
5564 reg = LEB ();
5565 if (frame_need_space (fc, reg) >= 0)
5566 fc->col_type[reg] = DW_CFA_undefined;
5567 break;
5568 case DW_CFA_register:
5569 reg = LEB (); LEB ();
5570 if (frame_need_space (fc, reg) >= 0)
5571 fc->col_type[reg] = DW_CFA_undefined;
5572 break;
5573 case DW_CFA_def_cfa:
5574 LEB (); LEB ();
5575 break;
5576 case DW_CFA_def_cfa_register:
5577 LEB ();
5578 break;
5579 case DW_CFA_def_cfa_offset:
5580 LEB ();
5581 break;
5582 case DW_CFA_def_cfa_expression:
5583 temp = LEB ();
5584 start += temp;
5585 break;
5586 case DW_CFA_expression:
5587 case DW_CFA_val_expression:
5588 reg = LEB ();
5589 temp = LEB ();
5590 start += temp;
5591 if (frame_need_space (fc, reg) >= 0)
5592 fc->col_type[reg] = DW_CFA_undefined;
5593 break;
5594 case DW_CFA_offset_extended_sf:
5595 case DW_CFA_val_offset_sf:
5596 reg = LEB (); SLEB ();
5597 if (frame_need_space (fc, reg) >= 0)
5598 fc->col_type[reg] = DW_CFA_undefined;
5599 break;
5600 case DW_CFA_def_cfa_sf:
5601 LEB (); SLEB ();
5602 break;
5603 case DW_CFA_def_cfa_offset_sf:
5604 SLEB ();
5605 break;
5606 case DW_CFA_MIPS_advance_loc8:
5607 start += 8;
5608 break;
5609 case DW_CFA_GNU_args_size:
5610 LEB ();
5611 break;
5612 case DW_CFA_GNU_negative_offset_extended:
5613 reg = LEB (); LEB ();
5614 if (frame_need_space (fc, reg) >= 0)
5615 fc->col_type[reg] = DW_CFA_undefined;
5616 break;
5617 default:
5618 break;
5619 }
5620 }
5621 start = tmp;
5622 }
5623
5624 /* Now we know what registers are used, make a second pass over
5625 the chunk, this time actually printing out the info. */
5626
5627 while (start < block_end)
5628 {
5629 unsigned op, opa;
5630 unsigned long ul, reg, roffs;
5631 long l;
5632 dwarf_vma ofs;
5633 dwarf_vma vma;
5634 const char *reg_prefix = "";
5635
5636 op = *start++;
5637 opa = op & 0x3f;
5638 if (op & 0xc0)
5639 op &= 0xc0;
5640
5641 /* Warning: if you add any more cases to this switch, be
5642 sure to add them to the corresponding switch above. */
5643 switch (op)
5644 {
5645 case DW_CFA_advance_loc:
5646 if (do_debug_frames_interp)
5647 frame_display_row (fc, &need_col_headers, &max_regs);
5648 else
5649 printf (" DW_CFA_advance_loc: %d to %s\n",
5650 opa * fc->code_factor,
5651 dwarf_vmatoa_1 (NULL,
5652 fc->pc_begin + opa * fc->code_factor,
5653 fc->ptr_size));
5654 fc->pc_begin += opa * fc->code_factor;
5655 break;
5656
5657 case DW_CFA_offset:
5658 roffs = LEB ();
5659 if (opa >= (unsigned int) fc->ncols)
5660 reg_prefix = bad_reg;
5661 if (! do_debug_frames_interp || *reg_prefix != '\0')
5662 printf (" DW_CFA_offset: %s%s at cfa%+ld\n",
5663 reg_prefix, regname (opa, 0),
5664 roffs * fc->data_factor);
5665 if (*reg_prefix == '\0')
5666 {
5667 fc->col_type[opa] = DW_CFA_offset;
5668 fc->col_offset[opa] = roffs * fc->data_factor;
5669 }
5670 break;
5671
5672 case DW_CFA_restore:
5673 if (opa >= (unsigned int) cie->ncols
5674 || opa >= (unsigned int) fc->ncols)
5675 reg_prefix = bad_reg;
5676 if (! do_debug_frames_interp || *reg_prefix != '\0')
5677 printf (" DW_CFA_restore: %s%s\n",
5678 reg_prefix, regname (opa, 0));
5679 if (*reg_prefix == '\0')
5680 {
5681 fc->col_type[opa] = cie->col_type[opa];
5682 fc->col_offset[opa] = cie->col_offset[opa];
5683 if (do_debug_frames_interp
5684 && fc->col_type[opa] == DW_CFA_unreferenced)
5685 fc->col_type[opa] = DW_CFA_undefined;
5686 }
5687 break;
5688
5689 case DW_CFA_set_loc:
5690 vma = get_encoded_value (start, fc->fde_encoding, section);
5691 start += encoded_ptr_size;
5692 if (do_debug_frames_interp)
5693 frame_display_row (fc, &need_col_headers, &max_regs);
5694 else
5695 printf (" DW_CFA_set_loc: %s\n",
5696 dwarf_vmatoa_1 (NULL, vma, fc->ptr_size));
5697 fc->pc_begin = vma;
5698 break;
5699
5700 case DW_CFA_advance_loc1:
5701 SAFE_BYTE_GET_AND_INC (ofs, start, 1, end);
5702 if (do_debug_frames_interp)
5703 frame_display_row (fc, &need_col_headers, &max_regs);
5704 else
5705 printf (" DW_CFA_advance_loc1: %ld to %s\n",
5706 (unsigned long) (ofs * fc->code_factor),
5707 dwarf_vmatoa_1 (NULL,
5708 fc->pc_begin + ofs * fc->code_factor,
5709 fc->ptr_size));
5710 fc->pc_begin += ofs * fc->code_factor;
5711 break;
5712
5713 case DW_CFA_advance_loc2:
5714 SAFE_BYTE_GET_AND_INC (ofs, start, 2, end);
5715 if (do_debug_frames_interp)
5716 frame_display_row (fc, &need_col_headers, &max_regs);
5717 else
5718 printf (" DW_CFA_advance_loc2: %ld to %s\n",
5719 (unsigned long) (ofs * fc->code_factor),
5720 dwarf_vmatoa_1 (NULL,
5721 fc->pc_begin + ofs * fc->code_factor,
5722 fc->ptr_size));
5723 fc->pc_begin += ofs * fc->code_factor;
5724 break;
5725
5726 case DW_CFA_advance_loc4:
5727 SAFE_BYTE_GET_AND_INC (ofs, start, 4, end);
5728 if (do_debug_frames_interp)
5729 frame_display_row (fc, &need_col_headers, &max_regs);
5730 else
5731 printf (" DW_CFA_advance_loc4: %ld to %s\n",
5732 (unsigned long) (ofs * fc->code_factor),
5733 dwarf_vmatoa_1 (NULL,
5734 fc->pc_begin + ofs * fc->code_factor,
5735 fc->ptr_size));
5736 fc->pc_begin += ofs * fc->code_factor;
5737 break;
5738
5739 case DW_CFA_offset_extended:
5740 reg = LEB ();
5741 roffs = LEB ();
5742 if (reg >= (unsigned int) fc->ncols)
5743 reg_prefix = bad_reg;
5744 if (! do_debug_frames_interp || *reg_prefix != '\0')
5745 printf (" DW_CFA_offset_extended: %s%s at cfa%+ld\n",
5746 reg_prefix, regname (reg, 0),
5747 roffs * fc->data_factor);
5748 if (*reg_prefix == '\0')
5749 {
5750 fc->col_type[reg] = DW_CFA_offset;
5751 fc->col_offset[reg] = roffs * fc->data_factor;
5752 }
5753 break;
5754
5755 case DW_CFA_val_offset:
5756 reg = LEB ();
5757 roffs = LEB ();
5758 if (reg >= (unsigned int) fc->ncols)
5759 reg_prefix = bad_reg;
5760 if (! do_debug_frames_interp || *reg_prefix != '\0')
5761 printf (" DW_CFA_val_offset: %s%s at cfa%+ld\n",
5762 reg_prefix, regname (reg, 0),
5763 roffs * fc->data_factor);
5764 if (*reg_prefix == '\0')
5765 {
5766 fc->col_type[reg] = DW_CFA_val_offset;
5767 fc->col_offset[reg] = roffs * fc->data_factor;
5768 }
5769 break;
5770
5771 case DW_CFA_restore_extended:
5772 reg = LEB ();
5773 if (reg >= (unsigned int) cie->ncols
5774 || reg >= (unsigned int) fc->ncols)
5775 reg_prefix = bad_reg;
5776 if (! do_debug_frames_interp || *reg_prefix != '\0')
5777 printf (" DW_CFA_restore_extended: %s%s\n",
5778 reg_prefix, regname (reg, 0));
5779 if (*reg_prefix == '\0')
5780 {
5781 fc->col_type[reg] = cie->col_type[reg];
5782 fc->col_offset[reg] = cie->col_offset[reg];
5783 }
5784 break;
5785
5786 case DW_CFA_undefined:
5787 reg = LEB ();
5788 if (reg >= (unsigned int) fc->ncols)
5789 reg_prefix = bad_reg;
5790 if (! do_debug_frames_interp || *reg_prefix != '\0')
5791 printf (" DW_CFA_undefined: %s%s\n",
5792 reg_prefix, regname (reg, 0));
5793 if (*reg_prefix == '\0')
5794 {
5795 fc->col_type[reg] = DW_CFA_undefined;
5796 fc->col_offset[reg] = 0;
5797 }
5798 break;
5799
5800 case DW_CFA_same_value:
5801 reg = LEB ();
5802 if (reg >= (unsigned int) fc->ncols)
5803 reg_prefix = bad_reg;
5804 if (! do_debug_frames_interp || *reg_prefix != '\0')
5805 printf (" DW_CFA_same_value: %s%s\n",
5806 reg_prefix, regname (reg, 0));
5807 if (*reg_prefix == '\0')
5808 {
5809 fc->col_type[reg] = DW_CFA_same_value;
5810 fc->col_offset[reg] = 0;
5811 }
5812 break;
5813
5814 case DW_CFA_register:
5815 reg = LEB ();
5816 roffs = LEB ();
5817 if (reg >= (unsigned int) fc->ncols)
5818 reg_prefix = bad_reg;
5819 if (! do_debug_frames_interp || *reg_prefix != '\0')
5820 {
5821 printf (" DW_CFA_register: %s%s in ",
5822 reg_prefix, regname (reg, 0));
5823 puts (regname (roffs, 0));
5824 }
5825 if (*reg_prefix == '\0')
5826 {
5827 fc->col_type[reg] = DW_CFA_register;
5828 fc->col_offset[reg] = roffs;
5829 }
5830 break;
5831
5832 case DW_CFA_remember_state:
5833 if (! do_debug_frames_interp)
5834 printf (" DW_CFA_remember_state\n");
5835 rs = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
5836 rs->ncols = fc->ncols;
5837 rs->col_type = (short int *) xcmalloc (rs->ncols,
5838 sizeof (short int));
5839 rs->col_offset = (int *) xcmalloc (rs->ncols, sizeof (int));
5840 memcpy (rs->col_type, fc->col_type, rs->ncols);
5841 memcpy (rs->col_offset, fc->col_offset, rs->ncols * sizeof (int));
5842 rs->next = remembered_state;
5843 remembered_state = rs;
5844 break;
5845
5846 case DW_CFA_restore_state:
5847 if (! do_debug_frames_interp)
5848 printf (" DW_CFA_restore_state\n");
5849 rs = remembered_state;
5850 if (rs)
5851 {
5852 remembered_state = rs->next;
5853 frame_need_space (fc, rs->ncols - 1);
5854 memcpy (fc->col_type, rs->col_type, rs->ncols);
5855 memcpy (fc->col_offset, rs->col_offset,
5856 rs->ncols * sizeof (int));
5857 free (rs->col_type);
5858 free (rs->col_offset);
5859 free (rs);
5860 }
5861 else if (do_debug_frames_interp)
5862 printf ("Mismatched DW_CFA_restore_state\n");
5863 break;
5864
5865 case DW_CFA_def_cfa:
5866 fc->cfa_reg = LEB ();
5867 fc->cfa_offset = LEB ();
5868 fc->cfa_exp = 0;
5869 if (! do_debug_frames_interp)
5870 printf (" DW_CFA_def_cfa: %s ofs %d\n",
5871 regname (fc->cfa_reg, 0), fc->cfa_offset);
5872 break;
5873
5874 case DW_CFA_def_cfa_register:
5875 fc->cfa_reg = LEB ();
5876 fc->cfa_exp = 0;
5877 if (! do_debug_frames_interp)
5878 printf (" DW_CFA_def_cfa_register: %s\n",
5879 regname (fc->cfa_reg, 0));
5880 break;
5881
5882 case DW_CFA_def_cfa_offset:
5883 fc->cfa_offset = LEB ();
5884 if (! do_debug_frames_interp)
5885 printf (" DW_CFA_def_cfa_offset: %d\n", fc->cfa_offset);
5886 break;
5887
5888 case DW_CFA_nop:
5889 if (! do_debug_frames_interp)
5890 printf (" DW_CFA_nop\n");
5891 break;
5892
5893 case DW_CFA_def_cfa_expression:
5894 ul = LEB ();
5895 if (! do_debug_frames_interp)
5896 {
5897 printf (" DW_CFA_def_cfa_expression (");
5898 decode_location_expression (start, eh_addr_size, 0, -1,
5899 ul, 0, section);
5900 printf (")\n");
5901 }
5902 fc->cfa_exp = 1;
5903 start += ul;
5904 break;
5905
5906 case DW_CFA_expression:
5907 reg = LEB ();
5908 ul = LEB ();
5909 if (reg >= (unsigned int) fc->ncols)
5910 reg_prefix = bad_reg;
5911 if (! do_debug_frames_interp || *reg_prefix != '\0')
5912 {
5913 printf (" DW_CFA_expression: %s%s (",
5914 reg_prefix, regname (reg, 0));
5915 decode_location_expression (start, eh_addr_size, 0, -1,
5916 ul, 0, section);
5917 printf (")\n");
5918 }
5919 if (*reg_prefix == '\0')
5920 fc->col_type[reg] = DW_CFA_expression;
5921 start += ul;
5922 break;
5923
5924 case DW_CFA_val_expression:
5925 reg = LEB ();
5926 ul = LEB ();
5927 if (reg >= (unsigned int) fc->ncols)
5928 reg_prefix = bad_reg;
5929 if (! do_debug_frames_interp || *reg_prefix != '\0')
5930 {
5931 printf (" DW_CFA_val_expression: %s%s (",
5932 reg_prefix, regname (reg, 0));
5933 decode_location_expression (start, eh_addr_size, 0, -1,
5934 ul, 0, section);
5935 printf (")\n");
5936 }
5937 if (*reg_prefix == '\0')
5938 fc->col_type[reg] = DW_CFA_val_expression;
5939 start += ul;
5940 break;
5941
5942 case DW_CFA_offset_extended_sf:
5943 reg = LEB ();
5944 l = SLEB ();
5945 if (frame_need_space (fc, reg) < 0)
5946 reg_prefix = bad_reg;
5947 if (! do_debug_frames_interp || *reg_prefix != '\0')
5948 printf (" DW_CFA_offset_extended_sf: %s%s at cfa%+ld\n",
5949 reg_prefix, regname (reg, 0),
5950 l * fc->data_factor);
5951 if (*reg_prefix == '\0')
5952 {
5953 fc->col_type[reg] = DW_CFA_offset;
5954 fc->col_offset[reg] = l * fc->data_factor;
5955 }
5956 break;
5957
5958 case DW_CFA_val_offset_sf:
5959 reg = LEB ();
5960 l = SLEB ();
5961 if (frame_need_space (fc, reg) < 0)
5962 reg_prefix = bad_reg;
5963 if (! do_debug_frames_interp || *reg_prefix != '\0')
5964 printf (" DW_CFA_val_offset_sf: %s%s at cfa%+ld\n",
5965 reg_prefix, regname (reg, 0),
5966 l * fc->data_factor);
5967 if (*reg_prefix == '\0')
5968 {
5969 fc->col_type[reg] = DW_CFA_val_offset;
5970 fc->col_offset[reg] = l * fc->data_factor;
5971 }
5972 break;
5973
5974 case DW_CFA_def_cfa_sf:
5975 fc->cfa_reg = LEB ();
5976 fc->cfa_offset = SLEB ();
5977 fc->cfa_offset = fc->cfa_offset * fc->data_factor;
5978 fc->cfa_exp = 0;
5979 if (! do_debug_frames_interp)
5980 printf (" DW_CFA_def_cfa_sf: %s ofs %d\n",
5981 regname (fc->cfa_reg, 0), fc->cfa_offset);
5982 break;
5983
5984 case DW_CFA_def_cfa_offset_sf:
5985 fc->cfa_offset = SLEB ();
5986 fc->cfa_offset = fc->cfa_offset * fc->data_factor;
5987 if (! do_debug_frames_interp)
5988 printf (" DW_CFA_def_cfa_offset_sf: %d\n", fc->cfa_offset);
5989 break;
5990
5991 case DW_CFA_MIPS_advance_loc8:
5992 SAFE_BYTE_GET_AND_INC (ofs, start, 8, end);
5993 if (do_debug_frames_interp)
5994 frame_display_row (fc, &need_col_headers, &max_regs);
5995 else
5996 printf (" DW_CFA_MIPS_advance_loc8: %ld to %s\n",
5997 (unsigned long) (ofs * fc->code_factor),
5998 dwarf_vmatoa_1 (NULL,
5999 fc->pc_begin + ofs * fc->code_factor,
6000 fc->ptr_size));
6001 fc->pc_begin += ofs * fc->code_factor;
6002 break;
6003
6004 case DW_CFA_GNU_window_save:
6005 if (! do_debug_frames_interp)
6006 printf (" DW_CFA_GNU_window_save\n");
6007 break;
6008
6009 case DW_CFA_GNU_args_size:
6010 ul = LEB ();
6011 if (! do_debug_frames_interp)
6012 printf (" DW_CFA_GNU_args_size: %ld\n", ul);
6013 break;
6014
6015 case DW_CFA_GNU_negative_offset_extended:
6016 reg = LEB ();
6017 l = - LEB ();
6018 if (frame_need_space (fc, reg) < 0)
6019 reg_prefix = bad_reg;
6020 if (! do_debug_frames_interp || *reg_prefix != '\0')
6021 printf (" DW_CFA_GNU_negative_offset_extended: %s%s at cfa%+ld\n",
6022 reg_prefix, regname (reg, 0),
6023 l * fc->data_factor);
6024 if (*reg_prefix == '\0')
6025 {
6026 fc->col_type[reg] = DW_CFA_offset;
6027 fc->col_offset[reg] = l * fc->data_factor;
6028 }
6029 break;
6030
6031 default:
6032 if (op >= DW_CFA_lo_user && op <= DW_CFA_hi_user)
6033 printf (_(" DW_CFA_??? (User defined call frame op: %#x)\n"), op);
6034 else
6035 warn (_("unsupported or unknown Dwarf Call Frame Instruction number: %#x\n"), op);
6036 start = block_end;
6037 }
6038 }
6039
6040 if (do_debug_frames_interp)
6041 frame_display_row (fc, &need_col_headers, &max_regs);
6042
6043 start = block_end;
6044 eh_addr_size = saved_eh_addr_size;
6045 }
6046
6047 printf ("\n");
6048
6049 return 1;
6050 }
6051
6052 #undef GET
6053 #undef LEB
6054 #undef SLEB
6055
6056 static int
6057 display_gdb_index (struct dwarf_section *section,
6058 void *file ATTRIBUTE_UNUSED)
6059 {
6060 unsigned char *start = section->start;
6061 uint32_t version;
6062 uint32_t cu_list_offset, tu_list_offset;
6063 uint32_t address_table_offset, symbol_table_offset, constant_pool_offset;
6064 unsigned int cu_list_elements, tu_list_elements;
6065 unsigned int address_table_size, symbol_table_slots;
6066 unsigned char *cu_list, *tu_list;
6067 unsigned char *address_table, *symbol_table, *constant_pool;
6068 unsigned int i;
6069
6070 /* The documentation for the format of this file is in gdb/dwarf2read.c. */
6071
6072 printf (_("Contents of the %s section:\n"), section->name);
6073
6074 if (section->size < 6 * sizeof (uint32_t))
6075 {
6076 warn (_("Truncated header in the %s section.\n"), section->name);
6077 return 0;
6078 }
6079
6080 version = byte_get_little_endian (start, 4);
6081 printf (_("Version %ld\n"), (long) version);
6082
6083 /* Prior versions are obsolete, and future versions may not be
6084 backwards compatible. */
6085 if (version < 3 || version > 8)
6086 {
6087 warn (_("Unsupported version %lu.\n"), (unsigned long) version);
6088 return 0;
6089 }
6090 if (version < 4)
6091 warn (_("The address table data in version 3 may be wrong.\n"));
6092 if (version < 5)
6093 warn (_("Version 4 does not support case insensitive lookups.\n"));
6094 if (version < 6)
6095 warn (_("Version 5 does not include inlined functions.\n"));
6096 if (version < 7)
6097 warn (_("Version 6 does not include symbol attributes.\n"));
6098 /* Version 7 indices generated by Gold have bad type unit references,
6099 PR binutils/15021. But we don't know if the index was generated by
6100 Gold or not, so to avoid worrying users with gdb-generated indices
6101 we say nothing for version 7 here. */
6102
6103 cu_list_offset = byte_get_little_endian (start + 4, 4);
6104 tu_list_offset = byte_get_little_endian (start + 8, 4);
6105 address_table_offset = byte_get_little_endian (start + 12, 4);
6106 symbol_table_offset = byte_get_little_endian (start + 16, 4);
6107 constant_pool_offset = byte_get_little_endian (start + 20, 4);
6108
6109 if (cu_list_offset > section->size
6110 || tu_list_offset > section->size
6111 || address_table_offset > section->size
6112 || symbol_table_offset > section->size
6113 || constant_pool_offset > section->size)
6114 {
6115 warn (_("Corrupt header in the %s section.\n"), section->name);
6116 return 0;
6117 }
6118
6119 cu_list_elements = (tu_list_offset - cu_list_offset) / 8;
6120 tu_list_elements = (address_table_offset - tu_list_offset) / 8;
6121 address_table_size = symbol_table_offset - address_table_offset;
6122 symbol_table_slots = (constant_pool_offset - symbol_table_offset) / 8;
6123
6124 cu_list = start + cu_list_offset;
6125 tu_list = start + tu_list_offset;
6126 address_table = start + address_table_offset;
6127 symbol_table = start + symbol_table_offset;
6128 constant_pool = start + constant_pool_offset;
6129
6130 printf (_("\nCU table:\n"));
6131 for (i = 0; i < cu_list_elements; i += 2)
6132 {
6133 uint64_t cu_offset = byte_get_little_endian (cu_list + i * 8, 8);
6134 uint64_t cu_length = byte_get_little_endian (cu_list + i * 8 + 8, 8);
6135
6136 printf (_("[%3u] 0x%lx - 0x%lx\n"), i / 2,
6137 (unsigned long) cu_offset,
6138 (unsigned long) (cu_offset + cu_length - 1));
6139 }
6140
6141 printf (_("\nTU table:\n"));
6142 for (i = 0; i < tu_list_elements; i += 3)
6143 {
6144 uint64_t tu_offset = byte_get_little_endian (tu_list + i * 8, 8);
6145 uint64_t type_offset = byte_get_little_endian (tu_list + i * 8 + 8, 8);
6146 uint64_t signature = byte_get_little_endian (tu_list + i * 8 + 16, 8);
6147
6148 printf (_("[%3u] 0x%lx 0x%lx "), i / 3,
6149 (unsigned long) tu_offset,
6150 (unsigned long) type_offset);
6151 print_dwarf_vma (signature, 8);
6152 printf ("\n");
6153 }
6154
6155 printf (_("\nAddress table:\n"));
6156 for (i = 0; i < address_table_size; i += 2 * 8 + 4)
6157 {
6158 uint64_t low = byte_get_little_endian (address_table + i, 8);
6159 uint64_t high = byte_get_little_endian (address_table + i + 8, 8);
6160 uint32_t cu_index = byte_get_little_endian (address_table + i + 16, 4);
6161
6162 print_dwarf_vma (low, 8);
6163 print_dwarf_vma (high, 8);
6164 printf (_("%lu\n"), (unsigned long) cu_index);
6165 }
6166
6167 printf (_("\nSymbol table:\n"));
6168 for (i = 0; i < symbol_table_slots; ++i)
6169 {
6170 uint32_t name_offset = byte_get_little_endian (symbol_table + i * 8, 4);
6171 uint32_t cu_vector_offset = byte_get_little_endian (symbol_table + i * 8 + 4, 4);
6172 uint32_t num_cus, cu;
6173
6174 if (name_offset != 0
6175 || cu_vector_offset != 0)
6176 {
6177 unsigned int j;
6178
6179 printf ("[%3u] %s:", i, constant_pool + name_offset);
6180 num_cus = byte_get_little_endian (constant_pool + cu_vector_offset, 4);
6181 if (num_cus > 1)
6182 printf ("\n");
6183 for (j = 0; j < num_cus; ++j)
6184 {
6185 int is_static;
6186 gdb_index_symbol_kind kind;
6187
6188 cu = byte_get_little_endian (constant_pool + cu_vector_offset + 4 + j * 4, 4);
6189 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (cu);
6190 kind = GDB_INDEX_SYMBOL_KIND_VALUE (cu);
6191 cu = GDB_INDEX_CU_VALUE (cu);
6192 /* Convert to TU number if it's for a type unit. */
6193 if (cu >= cu_list_elements / 2)
6194 printf ("%cT%lu", num_cus > 1 ? '\t' : ' ',
6195 (unsigned long) (cu - cu_list_elements / 2));
6196 else
6197 printf ("%c%lu", num_cus > 1 ? '\t' : ' ', (unsigned long) cu);
6198
6199 printf (" [%s, %s]",
6200 is_static ? _("static") : _("global"),
6201 get_gdb_index_symbol_kind_name (kind));
6202 if (num_cus > 1)
6203 printf ("\n");
6204 }
6205 if (num_cus <= 1)
6206 printf ("\n");
6207 }
6208 }
6209
6210 return 1;
6211 }
6212
6213 /* Pre-allocate enough space for the CU/TU sets needed. */
6214
6215 static void
6216 prealloc_cu_tu_list (unsigned int nshndx)
6217 {
6218 if (shndx_pool == NULL)
6219 {
6220 shndx_pool_size = nshndx;
6221 shndx_pool_used = 0;
6222 shndx_pool = (unsigned int *) xcmalloc (shndx_pool_size,
6223 sizeof (unsigned int));
6224 }
6225 else
6226 {
6227 shndx_pool_size = shndx_pool_used + nshndx;
6228 shndx_pool = (unsigned int *) xcrealloc (shndx_pool, shndx_pool_size,
6229 sizeof (unsigned int));
6230 }
6231 }
6232
6233 static void
6234 add_shndx_to_cu_tu_entry (unsigned int shndx)
6235 {
6236 if (shndx_pool_used >= shndx_pool_size)
6237 {
6238 error (_("Internal error: out of space in the shndx pool.\n"));
6239 return;
6240 }
6241 shndx_pool [shndx_pool_used++] = shndx;
6242 }
6243
6244 static void
6245 end_cu_tu_entry (void)
6246 {
6247 if (shndx_pool_used >= shndx_pool_size)
6248 {
6249 error (_("Internal error: out of space in the shndx pool.\n"));
6250 return;
6251 }
6252 shndx_pool [shndx_pool_used++] = 0;
6253 }
6254
6255 /* Return the short name of a DWARF section given by a DW_SECT enumerator. */
6256
6257 static const char *
6258 get_DW_SECT_short_name (unsigned int dw_sect)
6259 {
6260 static char buf[16];
6261
6262 switch (dw_sect)
6263 {
6264 case DW_SECT_INFO:
6265 return "info";
6266 case DW_SECT_TYPES:
6267 return "types";
6268 case DW_SECT_ABBREV:
6269 return "abbrev";
6270 case DW_SECT_LINE:
6271 return "line";
6272 case DW_SECT_LOC:
6273 return "loc";
6274 case DW_SECT_STR_OFFSETS:
6275 return "str_off";
6276 case DW_SECT_MACINFO:
6277 return "macinfo";
6278 case DW_SECT_MACRO:
6279 return "macro";
6280 default:
6281 break;
6282 }
6283
6284 snprintf (buf, sizeof (buf), "%d", dw_sect);
6285 return buf;
6286 }
6287
6288 /* Process a CU or TU index. If DO_DISPLAY is true, print the contents.
6289 These sections are extensions for Fission.
6290 See http://gcc.gnu.org/wiki/DebugFissionDWP. */
6291
6292 static int
6293 process_cu_tu_index (struct dwarf_section *section, int do_display)
6294 {
6295 unsigned char *phdr = section->start;
6296 unsigned char *limit = phdr + section->size;
6297 unsigned char *phash;
6298 unsigned char *pindex;
6299 unsigned char *ppool;
6300 unsigned int version;
6301 unsigned int ncols = 0;
6302 unsigned int nused;
6303 unsigned int nslots;
6304 unsigned int i;
6305 unsigned int j;
6306 dwarf_vma signature_high;
6307 dwarf_vma signature_low;
6308 char buf[64];
6309
6310 version = byte_get (phdr, 4);
6311 if (version >= 2)
6312 ncols = byte_get (phdr + 4, 4);
6313 nused = byte_get (phdr + 8, 4);
6314 nslots = byte_get (phdr + 12, 4);
6315 phash = phdr + 16;
6316 pindex = phash + nslots * 8;
6317 ppool = pindex + nslots * 4;
6318
6319 if (do_display)
6320 {
6321 printf (_("Contents of the %s section:\n\n"), section->name);
6322 printf (_(" Version: %d\n"), version);
6323 if (version >= 2)
6324 printf (_(" Number of columns: %d\n"), ncols);
6325 printf (_(" Number of used entries: %d\n"), nused);
6326 printf (_(" Number of slots: %d\n\n"), nslots);
6327 }
6328
6329 if (ppool > limit)
6330 {
6331 warn (_("Section %s too small for %d hash table entries\n"),
6332 section->name, nslots);
6333 return 0;
6334 }
6335
6336 if (version == 1)
6337 {
6338 if (!do_display)
6339 prealloc_cu_tu_list ((limit - ppool) / 4);
6340 for (i = 0; i < nslots; i++)
6341 {
6342 unsigned char *shndx_list;
6343 unsigned int shndx;
6344
6345 byte_get_64 (phash, &signature_high, &signature_low);
6346 if (signature_high != 0 || signature_low != 0)
6347 {
6348 j = byte_get (pindex, 4);
6349 shndx_list = ppool + j * 4;
6350 if (do_display)
6351 printf (_(" [%3d] Signature: 0x%s Sections: "),
6352 i, dwarf_vmatoa64 (signature_high, signature_low,
6353 buf, sizeof (buf)));
6354 for (;;)
6355 {
6356 if (shndx_list >= limit)
6357 {
6358 warn (_("Section %s too small for shndx pool\n"),
6359 section->name);
6360 return 0;
6361 }
6362 shndx = byte_get (shndx_list, 4);
6363 if (shndx == 0)
6364 break;
6365 if (do_display)
6366 printf (" %d", shndx);
6367 else
6368 add_shndx_to_cu_tu_entry (shndx);
6369 shndx_list += 4;
6370 }
6371 if (do_display)
6372 printf ("\n");
6373 else
6374 end_cu_tu_entry ();
6375 }
6376 phash += 8;
6377 pindex += 4;
6378 }
6379 }
6380 else if (version == 2)
6381 {
6382 unsigned int val;
6383 unsigned int dw_sect;
6384 unsigned char *ph = phash;
6385 unsigned char *pi = pindex;
6386 unsigned char *poffsets = ppool + ncols * 4;
6387 unsigned char *psizes = poffsets + nused * ncols * 4;
6388 unsigned char *pend = psizes + nused * ncols * 4;
6389 bfd_boolean is_tu_index;
6390 struct cu_tu_set *this_set = NULL;
6391 unsigned int row;
6392 unsigned char *prow;
6393
6394 is_tu_index = strcmp (section->name, ".debug_tu_index") == 0;
6395
6396 if (pend > limit)
6397 {
6398 warn (_("Section %s too small for offset and size tables\n"),
6399 section->name);
6400 return 0;
6401 }
6402
6403 if (do_display)
6404 {
6405 printf (_(" Offset table\n"));
6406 printf (" slot %-16s ",
6407 is_tu_index ? _("signature") : _("dwo_id"));
6408 }
6409 else
6410 {
6411 if (is_tu_index)
6412 {
6413 tu_count = nused;
6414 tu_sets = xcmalloc (nused, sizeof (struct cu_tu_set));
6415 this_set = tu_sets;
6416 }
6417 else
6418 {
6419 cu_count = nused;
6420 cu_sets = xcmalloc (nused, sizeof (struct cu_tu_set));
6421 this_set = cu_sets;
6422 }
6423 }
6424 if (do_display)
6425 {
6426 for (j = 0; j < ncols; j++)
6427 {
6428 dw_sect = byte_get (ppool + j * 4, 4);
6429 printf (" %8s", get_DW_SECT_short_name (dw_sect));
6430 }
6431 printf ("\n");
6432 }
6433 for (i = 0; i < nslots; i++)
6434 {
6435 byte_get_64 (ph, &signature_high, &signature_low);
6436 row = byte_get (pi, 4);
6437 if (row != 0)
6438 {
6439 if (!do_display)
6440 memcpy (&this_set[row - 1].signature, ph, sizeof (uint64_t));
6441 prow = poffsets + (row - 1) * ncols * 4;
6442 if (do_display)
6443 printf (_(" [%3d] 0x%s"),
6444 i, dwarf_vmatoa64 (signature_high, signature_low,
6445 buf, sizeof (buf)));
6446 for (j = 0; j < ncols; j++)
6447 {
6448 val = byte_get (prow + j * 4, 4);
6449 if (do_display)
6450 printf (" %8d", val);
6451 else
6452 {
6453 dw_sect = byte_get (ppool + j * 4, 4);
6454 this_set [row - 1].section_offsets [dw_sect] = val;
6455 }
6456 }
6457 if (do_display)
6458 printf ("\n");
6459 }
6460 ph += 8;
6461 pi += 4;
6462 }
6463
6464 ph = phash;
6465 pi = pindex;
6466 if (do_display)
6467 {
6468 printf ("\n");
6469 printf (_(" Size table\n"));
6470 printf (" slot %-16s ",
6471 is_tu_index ? _("signature") : _("dwo_id"));
6472 }
6473 for (j = 0; j < ncols; j++)
6474 {
6475 val = byte_get (ppool + j * 4, 4);
6476 if (do_display)
6477 printf (" %8s", get_DW_SECT_short_name (val));
6478 }
6479 if (do_display)
6480 printf ("\n");
6481 for (i = 0; i < nslots; i++)
6482 {
6483 byte_get_64 (ph, &signature_high, &signature_low);
6484 row = byte_get (pi, 4);
6485 if (row != 0)
6486 {
6487 prow = psizes + (row - 1) * ncols * 4;
6488 if (do_display)
6489 printf (_(" [%3d] 0x%s"),
6490 i, dwarf_vmatoa64 (signature_high, signature_low,
6491 buf, sizeof (buf)));
6492 for (j = 0; j < ncols; j++)
6493 {
6494 val = byte_get (prow + j * 4, 4);
6495 if (do_display)
6496 printf (" %8d", val);
6497 else
6498 {
6499 dw_sect = byte_get (ppool + j * 4, 4);
6500 this_set [row - 1].section_sizes [dw_sect] = val;
6501 }
6502 }
6503 if (do_display)
6504 printf ("\n");
6505 }
6506 ph += 8;
6507 pi += 4;
6508 }
6509 }
6510 else if (do_display)
6511 printf (_(" Unsupported version\n"));
6512
6513 if (do_display)
6514 printf ("\n");
6515
6516 return 1;
6517 }
6518
6519 /* Load the CU and TU indexes if present. This will build a list of
6520 section sets that we can use to associate a .debug_info.dwo section
6521 with its associated .debug_abbrev.dwo section in a .dwp file. */
6522
6523 static void
6524 load_cu_tu_indexes (void *file)
6525 {
6526 /* If we have already loaded (or tried to load) the CU and TU indexes
6527 then do not bother to repeat the task. */
6528 if (cu_tu_indexes_read)
6529 return;
6530
6531 if (load_debug_section (dwp_cu_index, file))
6532 process_cu_tu_index (&debug_displays [dwp_cu_index].section, 0);
6533
6534 if (load_debug_section (dwp_tu_index, file))
6535 process_cu_tu_index (&debug_displays [dwp_tu_index].section, 0);
6536
6537 cu_tu_indexes_read = 1;
6538 }
6539
6540 /* Find the set of sections that includes section SHNDX. */
6541
6542 unsigned int *
6543 find_cu_tu_set (void *file, unsigned int shndx)
6544 {
6545 unsigned int i;
6546
6547 load_cu_tu_indexes (file);
6548
6549 /* Find SHNDX in the shndx pool. */
6550 for (i = 0; i < shndx_pool_used; i++)
6551 if (shndx_pool [i] == shndx)
6552 break;
6553
6554 if (i >= shndx_pool_used)
6555 return NULL;
6556
6557 /* Now backup to find the first entry in the set. */
6558 while (i > 0 && shndx_pool [i - 1] != 0)
6559 i--;
6560
6561 return shndx_pool + i;
6562 }
6563
6564 /* Display a .debug_cu_index or .debug_tu_index section. */
6565
6566 static int
6567 display_cu_index (struct dwarf_section *section, void *file ATTRIBUTE_UNUSED)
6568 {
6569 return process_cu_tu_index (section, 1);
6570 }
6571
6572 static int
6573 display_debug_not_supported (struct dwarf_section *section,
6574 void *file ATTRIBUTE_UNUSED)
6575 {
6576 printf (_("Displaying the debug contents of section %s is not yet supported.\n"),
6577 section->name);
6578
6579 return 1;
6580 }
6581
6582 void *
6583 cmalloc (size_t nmemb, size_t size)
6584 {
6585 /* Check for overflow. */
6586 if (nmemb >= ~(size_t) 0 / size)
6587 return NULL;
6588 else
6589 return malloc (nmemb * size);
6590 }
6591
6592 void *
6593 xcmalloc (size_t nmemb, size_t size)
6594 {
6595 /* Check for overflow. */
6596 if (nmemb >= ~(size_t) 0 / size)
6597 return NULL;
6598 else
6599 return xmalloc (nmemb * size);
6600 }
6601
6602 void *
6603 xcrealloc (void *ptr, size_t nmemb, size_t size)
6604 {
6605 /* Check for overflow. */
6606 if (nmemb >= ~(size_t) 0 / size)
6607 return NULL;
6608 else
6609 return xrealloc (ptr, nmemb * size);
6610 }
6611
6612 void
6613 free_debug_memory (void)
6614 {
6615 unsigned int i;
6616
6617 free_abbrevs ();
6618
6619 for (i = 0; i < max; i++)
6620 free_debug_section ((enum dwarf_section_display_enum) i);
6621
6622 if (debug_information != NULL)
6623 {
6624 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE)
6625 {
6626 for (i = 0; i < num_debug_info_entries; i++)
6627 {
6628 if (!debug_information [i].max_loc_offsets)
6629 {
6630 free (debug_information [i].loc_offsets);
6631 free (debug_information [i].have_frame_base);
6632 }
6633 if (!debug_information [i].max_range_lists)
6634 free (debug_information [i].range_lists);
6635 }
6636 }
6637
6638 free (debug_information);
6639 debug_information = NULL;
6640 num_debug_info_entries = 0;
6641 }
6642 }
6643
6644 void
6645 dwarf_select_sections_by_names (const char *names)
6646 {
6647 typedef struct
6648 {
6649 const char * option;
6650 int * variable;
6651 int val;
6652 }
6653 debug_dump_long_opts;
6654
6655 static const debug_dump_long_opts opts_table [] =
6656 {
6657 /* Please keep this table alpha- sorted. */
6658 { "Ranges", & do_debug_ranges, 1 },
6659 { "abbrev", & do_debug_abbrevs, 1 },
6660 { "addr", & do_debug_addr, 1 },
6661 { "aranges", & do_debug_aranges, 1 },
6662 { "cu_index", & do_debug_cu_index, 1 },
6663 { "decodedline", & do_debug_lines, FLAG_DEBUG_LINES_DECODED },
6664 { "frames", & do_debug_frames, 1 },
6665 { "frames-interp", & do_debug_frames_interp, 1 },
6666 /* The special .gdb_index section. */
6667 { "gdb_index", & do_gdb_index, 1 },
6668 { "info", & do_debug_info, 1 },
6669 { "line", & do_debug_lines, FLAG_DEBUG_LINES_RAW }, /* For backwards compatibility. */
6670 { "loc", & do_debug_loc, 1 },
6671 { "macro", & do_debug_macinfo, 1 },
6672 { "pubnames", & do_debug_pubnames, 1 },
6673 { "pubtypes", & do_debug_pubtypes, 1 },
6674 /* This entry is for compatability
6675 with earlier versions of readelf. */
6676 { "ranges", & do_debug_aranges, 1 },
6677 { "rawline", & do_debug_lines, FLAG_DEBUG_LINES_RAW },
6678 { "str", & do_debug_str, 1 },
6679 /* These trace_* sections are used by Itanium VMS. */
6680 { "trace_abbrev", & do_trace_abbrevs, 1 },
6681 { "trace_aranges", & do_trace_aranges, 1 },
6682 { "trace_info", & do_trace_info, 1 },
6683 { NULL, NULL, 0 }
6684 };
6685
6686 const char *p;
6687
6688 p = names;
6689 while (*p)
6690 {
6691 const debug_dump_long_opts * entry;
6692
6693 for (entry = opts_table; entry->option; entry++)
6694 {
6695 size_t len = strlen (entry->option);
6696
6697 if (strncmp (p, entry->option, len) == 0
6698 && (p[len] == ',' || p[len] == '\0'))
6699 {
6700 * entry->variable |= entry->val;
6701
6702 /* The --debug-dump=frames-interp option also
6703 enables the --debug-dump=frames option. */
6704 if (do_debug_frames_interp)
6705 do_debug_frames = 1;
6706
6707 p += len;
6708 break;
6709 }
6710 }
6711
6712 if (entry->option == NULL)
6713 {
6714 warn (_("Unrecognized debug option '%s'\n"), p);
6715 p = strchr (p, ',');
6716 if (p == NULL)
6717 break;
6718 }
6719
6720 if (*p == ',')
6721 p++;
6722 }
6723 }
6724
6725 void
6726 dwarf_select_sections_by_letters (const char *letters)
6727 {
6728 unsigned int lindex = 0;
6729
6730 while (letters[lindex])
6731 switch (letters[lindex++])
6732 {
6733 case 'i':
6734 do_debug_info = 1;
6735 break;
6736
6737 case 'a':
6738 do_debug_abbrevs = 1;
6739 break;
6740
6741 case 'l':
6742 do_debug_lines |= FLAG_DEBUG_LINES_RAW;
6743 break;
6744
6745 case 'L':
6746 do_debug_lines |= FLAG_DEBUG_LINES_DECODED;
6747 break;
6748
6749 case 'p':
6750 do_debug_pubnames = 1;
6751 break;
6752
6753 case 't':
6754 do_debug_pubtypes = 1;
6755 break;
6756
6757 case 'r':
6758 do_debug_aranges = 1;
6759 break;
6760
6761 case 'R':
6762 do_debug_ranges = 1;
6763 break;
6764
6765 case 'F':
6766 do_debug_frames_interp = 1;
6767 case 'f':
6768 do_debug_frames = 1;
6769 break;
6770
6771 case 'm':
6772 do_debug_macinfo = 1;
6773 break;
6774
6775 case 's':
6776 do_debug_str = 1;
6777 break;
6778
6779 case 'o':
6780 do_debug_loc = 1;
6781 break;
6782
6783 default:
6784 warn (_("Unrecognized debug option '%s'\n"), optarg);
6785 break;
6786 }
6787 }
6788
6789 void
6790 dwarf_select_sections_all (void)
6791 {
6792 do_debug_info = 1;
6793 do_debug_abbrevs = 1;
6794 do_debug_lines = FLAG_DEBUG_LINES_RAW;
6795 do_debug_pubnames = 1;
6796 do_debug_pubtypes = 1;
6797 do_debug_aranges = 1;
6798 do_debug_ranges = 1;
6799 do_debug_frames = 1;
6800 do_debug_macinfo = 1;
6801 do_debug_str = 1;
6802 do_debug_loc = 1;
6803 do_gdb_index = 1;
6804 do_trace_info = 1;
6805 do_trace_abbrevs = 1;
6806 do_trace_aranges = 1;
6807 do_debug_addr = 1;
6808 do_debug_cu_index = 1;
6809 }
6810
6811 struct dwarf_section_display debug_displays[] =
6812 {
6813 { { ".debug_abbrev", ".zdebug_abbrev", NULL, NULL, 0, 0, 0 },
6814 display_debug_abbrev, &do_debug_abbrevs, 0 },
6815 { { ".debug_aranges", ".zdebug_aranges", NULL, NULL, 0, 0, 0 },
6816 display_debug_aranges, &do_debug_aranges, 1 },
6817 { { ".debug_frame", ".zdebug_frame", NULL, NULL, 0, 0, 0 },
6818 display_debug_frames, &do_debug_frames, 1 },
6819 { { ".debug_info", ".zdebug_info", NULL, NULL, 0, 0, abbrev },
6820 display_debug_info, &do_debug_info, 1 },
6821 { { ".debug_line", ".zdebug_line", NULL, NULL, 0, 0, 0 },
6822 display_debug_lines, &do_debug_lines, 1 },
6823 { { ".debug_pubnames", ".zdebug_pubnames", NULL, NULL, 0, 0, 0 },
6824 display_debug_pubnames, &do_debug_pubnames, 0 },
6825 { { ".debug_gnu_pubnames", ".zdebug_gnu_pubnames", NULL, NULL, 0, 0, 0 },
6826 display_debug_gnu_pubnames, &do_debug_pubnames, 0 },
6827 { { ".eh_frame", "", NULL, NULL, 0, 0, 0 },
6828 display_debug_frames, &do_debug_frames, 1 },
6829 { { ".debug_macinfo", ".zdebug_macinfo", NULL, NULL, 0, 0, 0 },
6830 display_debug_macinfo, &do_debug_macinfo, 0 },
6831 { { ".debug_macro", ".zdebug_macro", NULL, NULL, 0, 0, 0 },
6832 display_debug_macro, &do_debug_macinfo, 1 },
6833 { { ".debug_str", ".zdebug_str", NULL, NULL, 0, 0, 0 },
6834 display_debug_str, &do_debug_str, 0 },
6835 { { ".debug_loc", ".zdebug_loc", NULL, NULL, 0, 0, 0 },
6836 display_debug_loc, &do_debug_loc, 1 },
6837 { { ".debug_pubtypes", ".zdebug_pubtypes", NULL, NULL, 0, 0, 0 },
6838 display_debug_pubnames, &do_debug_pubtypes, 0 },
6839 { { ".debug_gnu_pubtypes", ".zdebug_gnu_pubtypes", NULL, NULL, 0, 0, 0 },
6840 display_debug_gnu_pubnames, &do_debug_pubtypes, 0 },
6841 { { ".debug_ranges", ".zdebug_ranges", NULL, NULL, 0, 0, 0 },
6842 display_debug_ranges, &do_debug_ranges, 1 },
6843 { { ".debug_static_func", ".zdebug_static_func", NULL, NULL, 0, 0, 0 },
6844 display_debug_not_supported, NULL, 0 },
6845 { { ".debug_static_vars", ".zdebug_static_vars", NULL, NULL, 0, 0, 0 },
6846 display_debug_not_supported, NULL, 0 },
6847 { { ".debug_types", ".zdebug_types", NULL, NULL, 0, 0, abbrev },
6848 display_debug_types, &do_debug_info, 1 },
6849 { { ".debug_weaknames", ".zdebug_weaknames", NULL, NULL, 0, 0, 0 },
6850 display_debug_not_supported, NULL, 0 },
6851 { { ".gdb_index", "", NULL, NULL, 0, 0, 0 },
6852 display_gdb_index, &do_gdb_index, 0 },
6853 { { ".trace_info", "", NULL, NULL, 0, 0, trace_abbrev },
6854 display_trace_info, &do_trace_info, 1 },
6855 { { ".trace_abbrev", "", NULL, NULL, 0, 0, 0 },
6856 display_debug_abbrev, &do_trace_abbrevs, 0 },
6857 { { ".trace_aranges", "", NULL, NULL, 0, 0, 0 },
6858 display_debug_aranges, &do_trace_aranges, 0 },
6859 { { ".debug_info.dwo", ".zdebug_info.dwo", NULL, NULL, 0, 0, abbrev_dwo },
6860 display_debug_info, &do_debug_info, 1 },
6861 { { ".debug_abbrev.dwo", ".zdebug_abbrev.dwo", NULL, NULL, 0, 0, 0 },
6862 display_debug_abbrev, &do_debug_abbrevs, 0 },
6863 { { ".debug_types.dwo", ".zdebug_types.dwo", NULL, NULL, 0, 0, abbrev_dwo },
6864 display_debug_types, &do_debug_info, 1 },
6865 { { ".debug_line.dwo", ".zdebug_line.dwo", NULL, NULL, 0, 0, 0 },
6866 display_debug_lines, &do_debug_lines, 1 },
6867 { { ".debug_loc.dwo", ".zdebug_loc.dwo", NULL, NULL, 0, 0, 0 },
6868 display_debug_loc, &do_debug_loc, 1 },
6869 { { ".debug_macro.dwo", ".zdebug_macro.dwo", NULL, NULL, 0, 0, 0 },
6870 display_debug_macro, &do_debug_macinfo, 1 },
6871 { { ".debug_macinfo.dwo", ".zdebug_macinfo.dwo", NULL, NULL, 0, 0, 0 },
6872 display_debug_macinfo, &do_debug_macinfo, 0 },
6873 { { ".debug_str.dwo", ".zdebug_str.dwo", NULL, NULL, 0, 0, 0 },
6874 display_debug_str, &do_debug_str, 1 },
6875 { { ".debug_str_offsets", ".zdebug_str_offsets", NULL, NULL, 0, 0, 0 },
6876 display_debug_str_offsets, NULL, 0 },
6877 { { ".debug_str_offsets.dwo", ".zdebug_str_offsets.dwo", NULL, NULL, 0, 0, 0 },
6878 display_debug_str_offsets, NULL, 0 },
6879 { { ".debug_addr", ".zdebug_addr", NULL, NULL, 0, 0, 0 },
6880 display_debug_addr, &do_debug_addr, 1 },
6881 { { ".debug_cu_index", "", NULL, NULL, 0, 0, 0 },
6882 display_cu_index, &do_debug_cu_index, 0 },
6883 { { ".debug_tu_index", "", NULL, NULL, 0, 0, 0 },
6884 display_cu_index, &do_debug_cu_index, 0 },
6885 };