Support AMD64/Intel ISAs in assembler/disassembler
[binutils-gdb.git] / binutils / dwarf.c
1 /* dwarf.c -- display DWARF contents of a BFD binary file
2 Copyright (C) 2005-2015 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 static const char *regname (unsigned int regno, int row);
33
34 static int have_frame_base;
35 static int need_base_address;
36
37 static unsigned int last_pointer_size = 0;
38 static int warned_about_missing_comp_units = FALSE;
39
40 static unsigned int num_debug_info_entries = 0;
41 static unsigned int alloc_num_debug_info_entries = 0;
42 static debug_info *debug_information = NULL;
43 /* Special value for num_debug_info_entries to indicate
44 that the .debug_info section could not be loaded/parsed. */
45 #define DEBUG_INFO_UNAVAILABLE (unsigned int) -1
46
47 unsigned int eh_addr_size;
48
49 int do_debug_info;
50 int do_debug_abbrevs;
51 int do_debug_lines;
52 int do_debug_pubnames;
53 int do_debug_pubtypes;
54 int do_debug_aranges;
55 int do_debug_ranges;
56 int do_debug_frames;
57 int do_debug_frames_interp;
58 int do_debug_macinfo;
59 int do_debug_str;
60 int do_debug_loc;
61 int do_gdb_index;
62 int do_trace_info;
63 int do_trace_abbrevs;
64 int do_trace_aranges;
65 int do_debug_addr;
66 int do_debug_cu_index;
67 int do_wide;
68
69 int dwarf_cutoff_level = -1;
70 unsigned long dwarf_start_die;
71
72 int dwarf_check = 0;
73
74 /* Collection of CU/TU section sets from .debug_cu_index and .debug_tu_index
75 sections. For version 1 package files, each set is stored in SHNDX_POOL
76 as a zero-terminated list of section indexes comprising one set of debug
77 sections from a .dwo file. */
78
79 static int cu_tu_indexes_read = 0;
80 static unsigned int *shndx_pool = NULL;
81 static unsigned int shndx_pool_size = 0;
82 static unsigned int shndx_pool_used = 0;
83
84 /* For version 2 package files, each set contains an array of section offsets
85 and an array of section sizes, giving the offset and size of the
86 contribution from a CU or TU within one of the debug sections.
87 When displaying debug info from a package file, we need to use these
88 tables to locate the corresponding contributions to each section. */
89
90 struct cu_tu_set
91 {
92 uint64_t signature;
93 dwarf_vma section_offsets[DW_SECT_MAX];
94 size_t section_sizes[DW_SECT_MAX];
95 };
96
97 static int cu_count = 0;
98 static int tu_count = 0;
99 static struct cu_tu_set *cu_sets = NULL;
100 static struct cu_tu_set *tu_sets = NULL;
101
102 static void load_cu_tu_indexes (void *file);
103
104 /* Values for do_debug_lines. */
105 #define FLAG_DEBUG_LINES_RAW 1
106 #define FLAG_DEBUG_LINES_DECODED 2
107
108 static unsigned int
109 size_of_encoded_value (int encoding)
110 {
111 switch (encoding & 0x7)
112 {
113 default: /* ??? */
114 case 0: return eh_addr_size;
115 case 2: return 2;
116 case 3: return 4;
117 case 4: return 8;
118 }
119 }
120
121 static dwarf_vma
122 get_encoded_value (unsigned char **pdata,
123 int encoding,
124 struct dwarf_section *section,
125 unsigned char * end)
126 {
127 unsigned char * data = * pdata;
128 unsigned int size = size_of_encoded_value (encoding);
129 dwarf_vma val;
130
131 if (data + size >= end)
132 {
133 warn (_("Encoded value extends past end of section\n"));
134 * pdata = end;
135 return 0;
136 }
137
138 /* PR 17512: file: 002-829853-0.004. */
139 if (size > 8)
140 {
141 warn (_("Encoded size of %d is too large to read\n"), size);
142 * pdata = end;
143 return 0;
144 }
145
146 /* PR 17512: file: 1085-5603-0.004. */
147 if (size == 0)
148 {
149 warn (_("Encoded size of 0 is too small to read\n"));
150 * pdata = end;
151 return 0;
152 }
153
154 if (encoding & DW_EH_PE_signed)
155 val = byte_get_signed (data, size);
156 else
157 val = byte_get (data, size);
158
159 if ((encoding & 0x70) == DW_EH_PE_pcrel)
160 val += section->address + (data - section->start);
161
162 * pdata = data + size;
163 return val;
164 }
165
166 #if defined HAVE_LONG_LONG && SIZEOF_LONG_LONG > SIZEOF_LONG
167 # ifndef __MINGW32__
168 # define DWARF_VMA_FMT "ll"
169 # define DWARF_VMA_FMT_LONG "%16.16llx"
170 # else
171 # define DWARF_VMA_FMT "I64"
172 # define DWARF_VMA_FMT_LONG "%016I64x"
173 # endif
174 #else
175 # define DWARF_VMA_FMT "l"
176 # define DWARF_VMA_FMT_LONG "%16.16lx"
177 #endif
178
179 /* Convert a dwarf vma value into a string. Returns a pointer to a static
180 buffer containing the converted VALUE. The value is converted according
181 to the printf formating character FMTCH. If NUM_BYTES is non-zero then
182 it specifies the maximum number of bytes to be displayed in the converted
183 value and FMTCH is ignored - hex is always used. */
184
185 static const char *
186 dwarf_vmatoa_1 (const char *fmtch, dwarf_vma value, unsigned num_bytes)
187 {
188 /* As dwarf_vmatoa is used more then once in a printf call
189 for output, we are cycling through an fixed array of pointers
190 for return address. */
191 static int buf_pos = 0;
192 static struct dwarf_vmatoa_buf
193 {
194 char place[64];
195 } buf[16];
196 char *ret;
197
198 ret = buf[buf_pos++].place;
199 buf_pos %= ARRAY_SIZE (buf);
200
201 if (num_bytes)
202 {
203 /* Printf does not have a way of specifiying a maximum field width for an
204 integer value, so we print the full value into a buffer and then select
205 the precision we need. */
206 snprintf (ret, sizeof (buf[0].place), DWARF_VMA_FMT_LONG, value);
207 if (num_bytes > 8)
208 num_bytes = 8;
209 return ret + (16 - 2 * num_bytes);
210 }
211 else
212 {
213 char fmt[32];
214
215 sprintf (fmt, "%%%s%s", DWARF_VMA_FMT, fmtch);
216 snprintf (ret, sizeof (buf[0].place), fmt, value);
217 return ret;
218 }
219 }
220
221 static inline const char *
222 dwarf_vmatoa (const char * fmtch, dwarf_vma value)
223 {
224 return dwarf_vmatoa_1 (fmtch, value, 0);
225 }
226
227 /* Print a dwarf_vma value (typically an address, offset or length) in
228 hexadecimal format, followed by a space. The length of the VALUE (and
229 hence the precision displayed) is determined by the NUM_BYTES parameter. */
230
231 static void
232 print_dwarf_vma (dwarf_vma value, unsigned num_bytes)
233 {
234 printf ("%s ", dwarf_vmatoa_1 (NULL, value, num_bytes));
235 }
236
237 /* Format a 64-bit value, given as two 32-bit values, in hex.
238 For reentrancy, this uses a buffer provided by the caller. */
239
240 static const char *
241 dwarf_vmatoa64 (dwarf_vma hvalue, dwarf_vma lvalue, char *buf,
242 unsigned int buf_len)
243 {
244 int len = 0;
245
246 if (hvalue == 0)
247 snprintf (buf, buf_len, "%" DWARF_VMA_FMT "x", lvalue);
248 else
249 {
250 len = snprintf (buf, buf_len, "%" DWARF_VMA_FMT "x", hvalue);
251 snprintf (buf + len, buf_len - len,
252 "%08" DWARF_VMA_FMT "x", lvalue);
253 }
254
255 return buf;
256 }
257
258 /* Read in a LEB128 encoded value starting at address DATA.
259 If SIGN is true, return a signed LEB128 value.
260 If LENGTH_RETURN is not NULL, return in it the number of bytes read.
261 No bytes will be read at address END or beyond. */
262
263 dwarf_vma
264 read_leb128 (unsigned char *data,
265 unsigned int *length_return,
266 bfd_boolean sign,
267 const unsigned char * const end)
268 {
269 dwarf_vma result = 0;
270 unsigned int num_read = 0;
271 unsigned int shift = 0;
272 unsigned char byte = 0;
273
274 while (data < end)
275 {
276 byte = *data++;
277 num_read++;
278
279 result |= ((dwarf_vma) (byte & 0x7f)) << shift;
280
281 shift += 7;
282 if ((byte & 0x80) == 0)
283 break;
284
285 /* PR 17512: file: 0ca183b8.
286 FIXME: Should we signal this error somehow ? */
287 if (shift >= sizeof (result) * 8)
288 break;
289 }
290
291 if (length_return != NULL)
292 *length_return = num_read;
293
294 if (sign && (shift < 8 * sizeof (result)) && (byte & 0x40))
295 result |= (dwarf_vma) -1 << shift;
296
297 return result;
298 }
299
300 /* Create a signed version to avoid painful typecasts. */
301 static inline dwarf_signed_vma
302 read_sleb128 (unsigned char * data,
303 unsigned int * length_return,
304 const unsigned char * const end)
305 {
306 return (dwarf_signed_vma) read_leb128 (data, length_return, TRUE, end);
307 }
308
309 static inline dwarf_vma
310 read_uleb128 (unsigned char * data,
311 unsigned int * length_return,
312 const unsigned char * const end)
313 {
314 return read_leb128 (data, length_return, FALSE, end);
315 }
316
317 #define SAFE_BYTE_GET(VAL, PTR, AMOUNT, END) \
318 do \
319 { \
320 int dummy [sizeof (VAL) < (AMOUNT) ? -1 : 1] ATTRIBUTE_UNUSED ; \
321 unsigned int amount = (AMOUNT); \
322 if (((PTR) + amount) >= (END)) \
323 { \
324 if ((PTR) < (END)) \
325 amount = (END) - (PTR); \
326 else \
327 amount = 0; \
328 } \
329 if (amount == 0 || amount > 8) \
330 VAL = 0; \
331 else \
332 VAL = byte_get ((PTR), amount); \
333 } \
334 while (0)
335
336 #define SAFE_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
337 do \
338 { \
339 SAFE_BYTE_GET (VAL, PTR, AMOUNT, END); \
340 PTR += AMOUNT; \
341 } \
342 while (0)
343
344 #define SAFE_SIGNED_BYTE_GET(VAL, PTR, AMOUNT, END) \
345 do \
346 { \
347 unsigned int amount = (AMOUNT); \
348 if (((PTR) + amount) >= (END)) \
349 { \
350 if ((PTR) < (END)) \
351 amount = (END) - (PTR); \
352 else \
353 amount = 0; \
354 } \
355 if (amount) \
356 VAL = byte_get_signed ((PTR), amount); \
357 else \
358 VAL = 0; \
359 } \
360 while (0)
361
362 #define SAFE_SIGNED_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
363 do \
364 { \
365 SAFE_SIGNED_BYTE_GET (VAL, PTR, AMOUNT, END); \
366 PTR += AMOUNT; \
367 } \
368 while (0)
369
370 #define SAFE_BYTE_GET64(PTR, HIGH, LOW, END) \
371 do \
372 { \
373 if (((PTR) + 8) <= (END)) \
374 { \
375 byte_get_64 ((PTR), (HIGH), (LOW)); \
376 } \
377 else \
378 { \
379 * (LOW) = * (HIGH) = 0; \
380 } \
381 } \
382 while (0)
383
384 typedef struct State_Machine_Registers
385 {
386 dwarf_vma address;
387 unsigned int file;
388 unsigned int line;
389 unsigned int column;
390 int is_stmt;
391 int basic_block;
392 unsigned char op_index;
393 unsigned char end_sequence;
394 /* This variable hold the number of the last entry seen
395 in the File Table. */
396 unsigned int last_file_entry;
397 } SMR;
398
399 static SMR state_machine_regs;
400
401 static void
402 reset_state_machine (int is_stmt)
403 {
404 state_machine_regs.address = 0;
405 state_machine_regs.op_index = 0;
406 state_machine_regs.file = 1;
407 state_machine_regs.line = 1;
408 state_machine_regs.column = 0;
409 state_machine_regs.is_stmt = is_stmt;
410 state_machine_regs.basic_block = 0;
411 state_machine_regs.end_sequence = 0;
412 state_machine_regs.last_file_entry = 0;
413 }
414
415 /* Handled an extend line op.
416 Returns the number of bytes read. */
417
418 static int
419 process_extended_line_op (unsigned char * data,
420 int is_stmt,
421 unsigned char * end)
422 {
423 unsigned char op_code;
424 unsigned int bytes_read;
425 unsigned int len;
426 unsigned char *name;
427 unsigned char *orig_data = data;
428 dwarf_vma adr;
429
430 len = read_uleb128 (data, & bytes_read, end);
431 data += bytes_read;
432
433 if (len == 0 || data == end || len > (uintptr_t) (end - data))
434 {
435 warn (_("Badly formed extended line op encountered!\n"));
436 return bytes_read;
437 }
438
439 len += bytes_read;
440 op_code = *data++;
441
442 printf (_(" Extended opcode %d: "), op_code);
443
444 switch (op_code)
445 {
446 case DW_LNE_end_sequence:
447 printf (_("End of Sequence\n\n"));
448 reset_state_machine (is_stmt);
449 break;
450
451 case DW_LNE_set_address:
452 /* PR 17512: file: 002-100480-0.004. */
453 if (len - bytes_read - 1 > 8)
454 {
455 warn (_("Length (%d) of DW_LNE_set_address op is too long\n"),
456 len - bytes_read - 1);
457 adr = 0;
458 }
459 else
460 SAFE_BYTE_GET (adr, data, len - bytes_read - 1, end);
461 printf (_("set Address to 0x%s\n"), dwarf_vmatoa ("x", adr));
462 state_machine_regs.address = adr;
463 state_machine_regs.op_index = 0;
464 break;
465
466 case DW_LNE_define_file:
467 printf (_("define new File Table entry\n"));
468 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
469 printf (" %d\t", ++state_machine_regs.last_file_entry);
470
471 name = data;
472 data += strnlen ((char *) data, end - data) + 1;
473 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
474 data += bytes_read;
475 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
476 data += bytes_read;
477 printf ("%s\t", dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
478 data += bytes_read;
479 printf ("%s\n\n", name);
480
481 if (((unsigned int) (data - orig_data) != len) || data == end)
482 warn (_("DW_LNE_define_file: Bad opcode length\n"));
483 break;
484
485 case DW_LNE_set_discriminator:
486 printf (_("set Discriminator to %s\n"),
487 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
488 break;
489
490 /* HP extensions. */
491 case DW_LNE_HP_negate_is_UV_update:
492 printf ("DW_LNE_HP_negate_is_UV_update\n");
493 break;
494 case DW_LNE_HP_push_context:
495 printf ("DW_LNE_HP_push_context\n");
496 break;
497 case DW_LNE_HP_pop_context:
498 printf ("DW_LNE_HP_pop_context\n");
499 break;
500 case DW_LNE_HP_set_file_line_column:
501 printf ("DW_LNE_HP_set_file_line_column\n");
502 break;
503 case DW_LNE_HP_set_routine_name:
504 printf ("DW_LNE_HP_set_routine_name\n");
505 break;
506 case DW_LNE_HP_set_sequence:
507 printf ("DW_LNE_HP_set_sequence\n");
508 break;
509 case DW_LNE_HP_negate_post_semantics:
510 printf ("DW_LNE_HP_negate_post_semantics\n");
511 break;
512 case DW_LNE_HP_negate_function_exit:
513 printf ("DW_LNE_HP_negate_function_exit\n");
514 break;
515 case DW_LNE_HP_negate_front_end_logical:
516 printf ("DW_LNE_HP_negate_front_end_logical\n");
517 break;
518 case DW_LNE_HP_define_proc:
519 printf ("DW_LNE_HP_define_proc\n");
520 break;
521 case DW_LNE_HP_source_file_correlation:
522 {
523 unsigned char *edata = data + len - bytes_read - 1;
524
525 printf ("DW_LNE_HP_source_file_correlation\n");
526
527 while (data < edata)
528 {
529 unsigned int opc;
530
531 opc = read_uleb128 (data, & bytes_read, edata);
532 data += bytes_read;
533
534 switch (opc)
535 {
536 case DW_LNE_HP_SFC_formfeed:
537 printf (" DW_LNE_HP_SFC_formfeed\n");
538 break;
539 case DW_LNE_HP_SFC_set_listing_line:
540 printf (" DW_LNE_HP_SFC_set_listing_line (%s)\n",
541 dwarf_vmatoa ("u",
542 read_uleb128 (data, & bytes_read, edata)));
543 data += bytes_read;
544 break;
545 case DW_LNE_HP_SFC_associate:
546 printf (" DW_LNE_HP_SFC_associate ");
547 printf ("(%s",
548 dwarf_vmatoa ("u",
549 read_uleb128 (data, & bytes_read, edata)));
550 data += bytes_read;
551 printf (",%s",
552 dwarf_vmatoa ("u",
553 read_uleb128 (data, & bytes_read, edata)));
554 data += bytes_read;
555 printf (",%s)\n",
556 dwarf_vmatoa ("u",
557 read_uleb128 (data, & bytes_read, edata)));
558 data += bytes_read;
559 break;
560 default:
561 printf (_(" UNKNOWN DW_LNE_HP_SFC opcode (%u)\n"), opc);
562 data = edata;
563 break;
564 }
565 }
566 }
567 break;
568
569 default:
570 {
571 unsigned int rlen = len - bytes_read - 1;
572
573 if (op_code >= DW_LNE_lo_user
574 /* The test against DW_LNW_hi_user is redundant due to
575 the limited range of the unsigned char data type used
576 for op_code. */
577 /*&& op_code <= DW_LNE_hi_user*/)
578 printf (_("user defined: "));
579 else
580 printf (_("UNKNOWN: "));
581 printf (_("length %d ["), rlen);
582 for (; rlen; rlen--)
583 printf (" %02x", *data++);
584 printf ("]\n");
585 }
586 break;
587 }
588
589 return len;
590 }
591
592 static const unsigned char *
593 fetch_indirect_string (dwarf_vma offset)
594 {
595 struct dwarf_section *section = &debug_displays [str].section;
596
597 if (section->start == NULL)
598 return (const unsigned char *) _("<no .debug_str section>");
599
600 if (offset > section->size)
601 {
602 warn (_("DW_FORM_strp offset too big: %s\n"),
603 dwarf_vmatoa ("x", offset));
604 return (const unsigned char *) _("<offset is too big>");
605 }
606
607 return (const unsigned char *) section->start + offset;
608 }
609
610 static const char *
611 fetch_indexed_string (dwarf_vma idx, struct cu_tu_set *this_set,
612 dwarf_vma offset_size, int dwo)
613 {
614 enum dwarf_section_display_enum str_sec_idx = dwo ? str_dwo : str;
615 enum dwarf_section_display_enum idx_sec_idx = dwo ? str_index_dwo : str_index;
616 struct dwarf_section *index_section = &debug_displays [idx_sec_idx].section;
617 struct dwarf_section *str_section = &debug_displays [str_sec_idx].section;
618 dwarf_vma index_offset = idx * offset_size;
619 dwarf_vma str_offset;
620
621 if (index_section->start == NULL)
622 return (dwo ? _("<no .debug_str_offsets.dwo section>")
623 : _("<no .debug_str_offsets section>"));
624
625 if (this_set != NULL)
626 index_offset += this_set->section_offsets [DW_SECT_STR_OFFSETS];
627 if (index_offset > index_section->size)
628 {
629 warn (_("DW_FORM_GNU_str_index offset too big: %s\n"),
630 dwarf_vmatoa ("x", index_offset));
631 return _("<index offset is too big>");
632 }
633
634 if (str_section->start == NULL)
635 return (dwo ? _("<no .debug_str.dwo section>")
636 : _("<no .debug_str section>"));
637
638 str_offset = byte_get (index_section->start + index_offset, offset_size);
639 str_offset -= str_section->address;
640 if (str_offset > str_section->size)
641 {
642 warn (_("DW_FORM_GNU_str_index indirect offset too big: %s\n"),
643 dwarf_vmatoa ("x", str_offset));
644 return _("<indirect index offset is too big>");
645 }
646
647 return (const char *) str_section->start + str_offset;
648 }
649
650 static const char *
651 fetch_indexed_value (dwarf_vma offset, dwarf_vma bytes)
652 {
653 struct dwarf_section *section = &debug_displays [debug_addr].section;
654
655 if (section->start == NULL)
656 return (_("<no .debug_addr section>"));
657
658 if (offset + bytes > section->size)
659 {
660 warn (_("Offset into section %s too big: %s\n"),
661 section->name, dwarf_vmatoa ("x", offset));
662 return "<offset too big>";
663 }
664
665 return dwarf_vmatoa ("x", byte_get (section->start + offset, bytes));
666 }
667
668
669 /* FIXME: There are better and more efficient ways to handle
670 these structures. For now though, I just want something that
671 is simple to implement. */
672 typedef struct abbrev_attr
673 {
674 unsigned long attribute;
675 unsigned long form;
676 struct abbrev_attr *next;
677 }
678 abbrev_attr;
679
680 typedef struct abbrev_entry
681 {
682 unsigned long entry;
683 unsigned long tag;
684 int children;
685 struct abbrev_attr *first_attr;
686 struct abbrev_attr *last_attr;
687 struct abbrev_entry *next;
688 }
689 abbrev_entry;
690
691 static abbrev_entry *first_abbrev = NULL;
692 static abbrev_entry *last_abbrev = NULL;
693
694 static void
695 free_abbrevs (void)
696 {
697 abbrev_entry *abbrv;
698
699 for (abbrv = first_abbrev; abbrv;)
700 {
701 abbrev_entry *next_abbrev = abbrv->next;
702 abbrev_attr *attr;
703
704 for (attr = abbrv->first_attr; attr;)
705 {
706 abbrev_attr *next_attr = attr->next;
707
708 free (attr);
709 attr = next_attr;
710 }
711
712 free (abbrv);
713 abbrv = next_abbrev;
714 }
715
716 last_abbrev = first_abbrev = NULL;
717 }
718
719 static void
720 add_abbrev (unsigned long number, unsigned long tag, int children)
721 {
722 abbrev_entry *entry;
723
724 entry = (abbrev_entry *) malloc (sizeof (*entry));
725 if (entry == NULL)
726 /* ugg */
727 return;
728
729 entry->entry = number;
730 entry->tag = tag;
731 entry->children = children;
732 entry->first_attr = NULL;
733 entry->last_attr = NULL;
734 entry->next = NULL;
735
736 if (first_abbrev == NULL)
737 first_abbrev = entry;
738 else
739 last_abbrev->next = entry;
740
741 last_abbrev = entry;
742 }
743
744 static void
745 add_abbrev_attr (unsigned long attribute, unsigned long form)
746 {
747 abbrev_attr *attr;
748
749 attr = (abbrev_attr *) malloc (sizeof (*attr));
750 if (attr == NULL)
751 /* ugg */
752 return;
753
754 attr->attribute = attribute;
755 attr->form = form;
756 attr->next = NULL;
757
758 if (last_abbrev->first_attr == NULL)
759 last_abbrev->first_attr = attr;
760 else
761 last_abbrev->last_attr->next = attr;
762
763 last_abbrev->last_attr = attr;
764 }
765
766 /* Processes the (partial) contents of a .debug_abbrev section.
767 Returns NULL if the end of the section was encountered.
768 Returns the address after the last byte read if the end of
769 an abbreviation set was found. */
770
771 static unsigned char *
772 process_abbrev_section (unsigned char *start, unsigned char *end)
773 {
774 if (first_abbrev != NULL)
775 return NULL;
776
777 while (start < end)
778 {
779 unsigned int bytes_read;
780 unsigned long entry;
781 unsigned long tag;
782 unsigned long attribute;
783 int children;
784
785 entry = read_uleb128 (start, & bytes_read, end);
786 start += bytes_read;
787
788 /* A single zero is supposed to end the section according
789 to the standard. If there's more, then signal that to
790 the caller. */
791 if (start == end)
792 return NULL;
793 if (entry == 0)
794 return start;
795
796 tag = read_uleb128 (start, & bytes_read, end);
797 start += bytes_read;
798 if (start == end)
799 return NULL;
800
801 children = *start++;
802
803 add_abbrev (entry, tag, children);
804
805 do
806 {
807 unsigned long form;
808
809 attribute = read_uleb128 (start, & bytes_read, end);
810 start += bytes_read;
811 if (start == end)
812 break;
813
814 form = read_uleb128 (start, & bytes_read, end);
815 start += bytes_read;
816 if (start == end)
817 break;
818
819 add_abbrev_attr (attribute, form);
820 }
821 while (attribute != 0);
822 }
823
824 /* Report the missing single zero which ends the section. */
825 error (_(".debug_abbrev section not zero terminated\n"));
826
827 return NULL;
828 }
829
830 static const char *
831 get_TAG_name (unsigned long tag)
832 {
833 const char *name = get_DW_TAG_name ((unsigned int)tag);
834
835 if (name == NULL)
836 {
837 static char buffer[100];
838
839 snprintf (buffer, sizeof (buffer), _("Unknown TAG value: %lx"), tag);
840 return buffer;
841 }
842
843 return name;
844 }
845
846 static const char *
847 get_FORM_name (unsigned long form)
848 {
849 const char *name;
850
851 if (form == 0)
852 return "DW_FORM value: 0";
853
854 name = get_DW_FORM_name (form);
855 if (name == NULL)
856 {
857 static char buffer[100];
858
859 snprintf (buffer, sizeof (buffer), _("Unknown FORM value: %lx"), form);
860 return buffer;
861 }
862
863 return name;
864 }
865
866 static unsigned char *
867 display_block (unsigned char *data,
868 dwarf_vma length,
869 const unsigned char * const end)
870 {
871 dwarf_vma maxlen;
872
873 printf (_(" %s byte block: "), dwarf_vmatoa ("u", length));
874 if (data > end)
875 return (unsigned char *) end;
876
877 maxlen = (dwarf_vma) (end - data);
878 length = length > maxlen ? maxlen : length;
879
880 while (length --)
881 printf ("%lx ", (unsigned long) byte_get (data++, 1));
882
883 return data;
884 }
885
886 static int
887 decode_location_expression (unsigned char * data,
888 unsigned int pointer_size,
889 unsigned int offset_size,
890 int dwarf_version,
891 dwarf_vma length,
892 dwarf_vma cu_offset,
893 struct dwarf_section * section)
894 {
895 unsigned op;
896 unsigned int bytes_read;
897 dwarf_vma uvalue;
898 dwarf_signed_vma svalue;
899 unsigned char *end = data + length;
900 int need_frame_base = 0;
901
902 while (data < end)
903 {
904 op = *data++;
905
906 switch (op)
907 {
908 case DW_OP_addr:
909 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
910 printf ("DW_OP_addr: %s", dwarf_vmatoa ("x", uvalue));
911 break;
912 case DW_OP_deref:
913 printf ("DW_OP_deref");
914 break;
915 case DW_OP_const1u:
916 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
917 printf ("DW_OP_const1u: %lu", (unsigned long) uvalue);
918 break;
919 case DW_OP_const1s:
920 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 1, end);
921 printf ("DW_OP_const1s: %ld", (long) svalue);
922 break;
923 case DW_OP_const2u:
924 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
925 printf ("DW_OP_const2u: %lu", (unsigned long) uvalue);
926 break;
927 case DW_OP_const2s:
928 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
929 printf ("DW_OP_const2s: %ld", (long) svalue);
930 break;
931 case DW_OP_const4u:
932 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
933 printf ("DW_OP_const4u: %lu", (unsigned long) uvalue);
934 break;
935 case DW_OP_const4s:
936 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
937 printf ("DW_OP_const4s: %ld", (long) svalue);
938 break;
939 case DW_OP_const8u:
940 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
941 printf ("DW_OP_const8u: %lu ", (unsigned long) uvalue);
942 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
943 printf ("%lu", (unsigned long) uvalue);
944 break;
945 case DW_OP_const8s:
946 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
947 printf ("DW_OP_const8s: %ld ", (long) svalue);
948 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
949 printf ("%ld", (long) svalue);
950 break;
951 case DW_OP_constu:
952 printf ("DW_OP_constu: %s",
953 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
954 data += bytes_read;
955 break;
956 case DW_OP_consts:
957 printf ("DW_OP_consts: %s",
958 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
959 data += bytes_read;
960 break;
961 case DW_OP_dup:
962 printf ("DW_OP_dup");
963 break;
964 case DW_OP_drop:
965 printf ("DW_OP_drop");
966 break;
967 case DW_OP_over:
968 printf ("DW_OP_over");
969 break;
970 case DW_OP_pick:
971 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
972 printf ("DW_OP_pick: %ld", (unsigned long) uvalue);
973 break;
974 case DW_OP_swap:
975 printf ("DW_OP_swap");
976 break;
977 case DW_OP_rot:
978 printf ("DW_OP_rot");
979 break;
980 case DW_OP_xderef:
981 printf ("DW_OP_xderef");
982 break;
983 case DW_OP_abs:
984 printf ("DW_OP_abs");
985 break;
986 case DW_OP_and:
987 printf ("DW_OP_and");
988 break;
989 case DW_OP_div:
990 printf ("DW_OP_div");
991 break;
992 case DW_OP_minus:
993 printf ("DW_OP_minus");
994 break;
995 case DW_OP_mod:
996 printf ("DW_OP_mod");
997 break;
998 case DW_OP_mul:
999 printf ("DW_OP_mul");
1000 break;
1001 case DW_OP_neg:
1002 printf ("DW_OP_neg");
1003 break;
1004 case DW_OP_not:
1005 printf ("DW_OP_not");
1006 break;
1007 case DW_OP_or:
1008 printf ("DW_OP_or");
1009 break;
1010 case DW_OP_plus:
1011 printf ("DW_OP_plus");
1012 break;
1013 case DW_OP_plus_uconst:
1014 printf ("DW_OP_plus_uconst: %s",
1015 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1016 data += bytes_read;
1017 break;
1018 case DW_OP_shl:
1019 printf ("DW_OP_shl");
1020 break;
1021 case DW_OP_shr:
1022 printf ("DW_OP_shr");
1023 break;
1024 case DW_OP_shra:
1025 printf ("DW_OP_shra");
1026 break;
1027 case DW_OP_xor:
1028 printf ("DW_OP_xor");
1029 break;
1030 case DW_OP_bra:
1031 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1032 printf ("DW_OP_bra: %ld", (long) svalue);
1033 break;
1034 case DW_OP_eq:
1035 printf ("DW_OP_eq");
1036 break;
1037 case DW_OP_ge:
1038 printf ("DW_OP_ge");
1039 break;
1040 case DW_OP_gt:
1041 printf ("DW_OP_gt");
1042 break;
1043 case DW_OP_le:
1044 printf ("DW_OP_le");
1045 break;
1046 case DW_OP_lt:
1047 printf ("DW_OP_lt");
1048 break;
1049 case DW_OP_ne:
1050 printf ("DW_OP_ne");
1051 break;
1052 case DW_OP_skip:
1053 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1054 printf ("DW_OP_skip: %ld", (long) svalue);
1055 break;
1056
1057 case DW_OP_lit0:
1058 case DW_OP_lit1:
1059 case DW_OP_lit2:
1060 case DW_OP_lit3:
1061 case DW_OP_lit4:
1062 case DW_OP_lit5:
1063 case DW_OP_lit6:
1064 case DW_OP_lit7:
1065 case DW_OP_lit8:
1066 case DW_OP_lit9:
1067 case DW_OP_lit10:
1068 case DW_OP_lit11:
1069 case DW_OP_lit12:
1070 case DW_OP_lit13:
1071 case DW_OP_lit14:
1072 case DW_OP_lit15:
1073 case DW_OP_lit16:
1074 case DW_OP_lit17:
1075 case DW_OP_lit18:
1076 case DW_OP_lit19:
1077 case DW_OP_lit20:
1078 case DW_OP_lit21:
1079 case DW_OP_lit22:
1080 case DW_OP_lit23:
1081 case DW_OP_lit24:
1082 case DW_OP_lit25:
1083 case DW_OP_lit26:
1084 case DW_OP_lit27:
1085 case DW_OP_lit28:
1086 case DW_OP_lit29:
1087 case DW_OP_lit30:
1088 case DW_OP_lit31:
1089 printf ("DW_OP_lit%d", op - DW_OP_lit0);
1090 break;
1091
1092 case DW_OP_reg0:
1093 case DW_OP_reg1:
1094 case DW_OP_reg2:
1095 case DW_OP_reg3:
1096 case DW_OP_reg4:
1097 case DW_OP_reg5:
1098 case DW_OP_reg6:
1099 case DW_OP_reg7:
1100 case DW_OP_reg8:
1101 case DW_OP_reg9:
1102 case DW_OP_reg10:
1103 case DW_OP_reg11:
1104 case DW_OP_reg12:
1105 case DW_OP_reg13:
1106 case DW_OP_reg14:
1107 case DW_OP_reg15:
1108 case DW_OP_reg16:
1109 case DW_OP_reg17:
1110 case DW_OP_reg18:
1111 case DW_OP_reg19:
1112 case DW_OP_reg20:
1113 case DW_OP_reg21:
1114 case DW_OP_reg22:
1115 case DW_OP_reg23:
1116 case DW_OP_reg24:
1117 case DW_OP_reg25:
1118 case DW_OP_reg26:
1119 case DW_OP_reg27:
1120 case DW_OP_reg28:
1121 case DW_OP_reg29:
1122 case DW_OP_reg30:
1123 case DW_OP_reg31:
1124 printf ("DW_OP_reg%d (%s)", op - DW_OP_reg0,
1125 regname (op - DW_OP_reg0, 1));
1126 break;
1127
1128 case DW_OP_breg0:
1129 case DW_OP_breg1:
1130 case DW_OP_breg2:
1131 case DW_OP_breg3:
1132 case DW_OP_breg4:
1133 case DW_OP_breg5:
1134 case DW_OP_breg6:
1135 case DW_OP_breg7:
1136 case DW_OP_breg8:
1137 case DW_OP_breg9:
1138 case DW_OP_breg10:
1139 case DW_OP_breg11:
1140 case DW_OP_breg12:
1141 case DW_OP_breg13:
1142 case DW_OP_breg14:
1143 case DW_OP_breg15:
1144 case DW_OP_breg16:
1145 case DW_OP_breg17:
1146 case DW_OP_breg18:
1147 case DW_OP_breg19:
1148 case DW_OP_breg20:
1149 case DW_OP_breg21:
1150 case DW_OP_breg22:
1151 case DW_OP_breg23:
1152 case DW_OP_breg24:
1153 case DW_OP_breg25:
1154 case DW_OP_breg26:
1155 case DW_OP_breg27:
1156 case DW_OP_breg28:
1157 case DW_OP_breg29:
1158 case DW_OP_breg30:
1159 case DW_OP_breg31:
1160 printf ("DW_OP_breg%d (%s): %s",
1161 op - DW_OP_breg0,
1162 regname (op - DW_OP_breg0, 1),
1163 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1164 data += bytes_read;
1165 break;
1166
1167 case DW_OP_regx:
1168 uvalue = read_uleb128 (data, &bytes_read, end);
1169 data += bytes_read;
1170 printf ("DW_OP_regx: %s (%s)",
1171 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1172 break;
1173 case DW_OP_fbreg:
1174 need_frame_base = 1;
1175 printf ("DW_OP_fbreg: %s",
1176 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1177 data += bytes_read;
1178 break;
1179 case DW_OP_bregx:
1180 uvalue = read_uleb128 (data, &bytes_read, end);
1181 data += bytes_read;
1182 printf ("DW_OP_bregx: %s (%s) %s",
1183 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1),
1184 dwarf_vmatoa ("d", read_sleb128 (data, &bytes_read, end)));
1185 data += bytes_read;
1186 break;
1187 case DW_OP_piece:
1188 printf ("DW_OP_piece: %s",
1189 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1190 data += bytes_read;
1191 break;
1192 case DW_OP_deref_size:
1193 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1194 printf ("DW_OP_deref_size: %ld", (long) uvalue);
1195 break;
1196 case DW_OP_xderef_size:
1197 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1198 printf ("DW_OP_xderef_size: %ld", (long) uvalue);
1199 break;
1200 case DW_OP_nop:
1201 printf ("DW_OP_nop");
1202 break;
1203
1204 /* DWARF 3 extensions. */
1205 case DW_OP_push_object_address:
1206 printf ("DW_OP_push_object_address");
1207 break;
1208 case DW_OP_call2:
1209 /* XXX: Strictly speaking for 64-bit DWARF3 files
1210 this ought to be an 8-byte wide computation. */
1211 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1212 printf ("DW_OP_call2: <0x%s>",
1213 dwarf_vmatoa ("x", svalue + cu_offset));
1214 break;
1215 case DW_OP_call4:
1216 /* XXX: Strictly speaking for 64-bit DWARF3 files
1217 this ought to be an 8-byte wide computation. */
1218 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1219 printf ("DW_OP_call4: <0x%s>",
1220 dwarf_vmatoa ("x", svalue + cu_offset));
1221 break;
1222 case DW_OP_call_ref:
1223 /* XXX: Strictly speaking for 64-bit DWARF3 files
1224 this ought to be an 8-byte wide computation. */
1225 if (dwarf_version == -1)
1226 {
1227 printf (_("(DW_OP_call_ref in frame info)"));
1228 /* No way to tell where the next op is, so just bail. */
1229 return need_frame_base;
1230 }
1231 if (dwarf_version == 2)
1232 {
1233 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1234 }
1235 else
1236 {
1237 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1238 }
1239 printf ("DW_OP_call_ref: <0x%s>", dwarf_vmatoa ("x", uvalue));
1240 break;
1241 case DW_OP_form_tls_address:
1242 printf ("DW_OP_form_tls_address");
1243 break;
1244 case DW_OP_call_frame_cfa:
1245 printf ("DW_OP_call_frame_cfa");
1246 break;
1247 case DW_OP_bit_piece:
1248 printf ("DW_OP_bit_piece: ");
1249 printf (_("size: %s "),
1250 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1251 data += bytes_read;
1252 printf (_("offset: %s "),
1253 dwarf_vmatoa ("u", read_uleb128 (data, &bytes_read, end)));
1254 data += bytes_read;
1255 break;
1256
1257 /* DWARF 4 extensions. */
1258 case DW_OP_stack_value:
1259 printf ("DW_OP_stack_value");
1260 break;
1261
1262 case DW_OP_implicit_value:
1263 printf ("DW_OP_implicit_value");
1264 uvalue = read_uleb128 (data, &bytes_read, end);
1265 data += bytes_read;
1266 data = display_block (data, uvalue, end);
1267 break;
1268
1269 /* GNU extensions. */
1270 case DW_OP_GNU_push_tls_address:
1271 printf (_("DW_OP_GNU_push_tls_address or DW_OP_HP_unknown"));
1272 break;
1273 case DW_OP_GNU_uninit:
1274 printf ("DW_OP_GNU_uninit");
1275 /* FIXME: Is there data associated with this OP ? */
1276 break;
1277 case DW_OP_GNU_encoded_addr:
1278 {
1279 int encoding = 0;
1280 dwarf_vma addr;
1281
1282 if (data < end)
1283 encoding = *data++;
1284 addr = get_encoded_value (&data, encoding, section, end);
1285
1286 printf ("DW_OP_GNU_encoded_addr: fmt:%02x addr:", encoding);
1287 print_dwarf_vma (addr, pointer_size);
1288 }
1289 break;
1290 case DW_OP_GNU_implicit_pointer:
1291 /* XXX: Strictly speaking for 64-bit DWARF3 files
1292 this ought to be an 8-byte wide computation. */
1293 if (dwarf_version == -1)
1294 {
1295 printf (_("(DW_OP_GNU_implicit_pointer in frame info)"));
1296 /* No way to tell where the next op is, so just bail. */
1297 return need_frame_base;
1298 }
1299 if (dwarf_version == 2)
1300 {
1301 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1302 }
1303 else
1304 {
1305 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1306 }
1307 printf ("DW_OP_GNU_implicit_pointer: <0x%s> %s",
1308 dwarf_vmatoa ("x", uvalue),
1309 dwarf_vmatoa ("d", read_sleb128 (data,
1310 &bytes_read, end)));
1311 data += bytes_read;
1312 break;
1313 case DW_OP_GNU_entry_value:
1314 uvalue = read_uleb128 (data, &bytes_read, end);
1315 data += bytes_read;
1316 /* PR 17531: file: 0cc9cd00. */
1317 if (uvalue > (dwarf_vma) (end - data))
1318 uvalue = end - data;
1319 printf ("DW_OP_GNU_entry_value: (");
1320 if (decode_location_expression (data, pointer_size, offset_size,
1321 dwarf_version, uvalue,
1322 cu_offset, section))
1323 need_frame_base = 1;
1324 putchar (')');
1325 data += uvalue;
1326 if (data > end)
1327 data = end;
1328 break;
1329 case DW_OP_GNU_const_type:
1330 uvalue = read_uleb128 (data, &bytes_read, end);
1331 data += bytes_read;
1332 printf ("DW_OP_GNU_const_type: <0x%s> ",
1333 dwarf_vmatoa ("x", cu_offset + uvalue));
1334 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1335 data = display_block (data, uvalue, end);
1336 break;
1337 case DW_OP_GNU_regval_type:
1338 uvalue = read_uleb128 (data, &bytes_read, end);
1339 data += bytes_read;
1340 printf ("DW_OP_GNU_regval_type: %s (%s)",
1341 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1342 uvalue = read_uleb128 (data, &bytes_read, end);
1343 data += bytes_read;
1344 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1345 break;
1346 case DW_OP_GNU_deref_type:
1347 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1348 printf ("DW_OP_GNU_deref_type: %ld", (long) uvalue);
1349 uvalue = read_uleb128 (data, &bytes_read, end);
1350 data += bytes_read;
1351 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1352 break;
1353 case DW_OP_GNU_convert:
1354 uvalue = read_uleb128 (data, &bytes_read, end);
1355 data += bytes_read;
1356 printf ("DW_OP_GNU_convert <0x%s>",
1357 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1358 break;
1359 case DW_OP_GNU_reinterpret:
1360 uvalue = read_uleb128 (data, &bytes_read, end);
1361 data += bytes_read;
1362 printf ("DW_OP_GNU_reinterpret <0x%s>",
1363 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1364 break;
1365 case DW_OP_GNU_parameter_ref:
1366 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1367 printf ("DW_OP_GNU_parameter_ref: <0x%s>",
1368 dwarf_vmatoa ("x", cu_offset + uvalue));
1369 break;
1370 case DW_OP_GNU_addr_index:
1371 uvalue = read_uleb128 (data, &bytes_read, end);
1372 data += bytes_read;
1373 printf ("DW_OP_GNU_addr_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1374 break;
1375 case DW_OP_GNU_const_index:
1376 uvalue = read_uleb128 (data, &bytes_read, end);
1377 data += bytes_read;
1378 printf ("DW_OP_GNU_const_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1379 break;
1380
1381 /* HP extensions. */
1382 case DW_OP_HP_is_value:
1383 printf ("DW_OP_HP_is_value");
1384 /* FIXME: Is there data associated with this OP ? */
1385 break;
1386 case DW_OP_HP_fltconst4:
1387 printf ("DW_OP_HP_fltconst4");
1388 /* FIXME: Is there data associated with this OP ? */
1389 break;
1390 case DW_OP_HP_fltconst8:
1391 printf ("DW_OP_HP_fltconst8");
1392 /* FIXME: Is there data associated with this OP ? */
1393 break;
1394 case DW_OP_HP_mod_range:
1395 printf ("DW_OP_HP_mod_range");
1396 /* FIXME: Is there data associated with this OP ? */
1397 break;
1398 case DW_OP_HP_unmod_range:
1399 printf ("DW_OP_HP_unmod_range");
1400 /* FIXME: Is there data associated with this OP ? */
1401 break;
1402 case DW_OP_HP_tls:
1403 printf ("DW_OP_HP_tls");
1404 /* FIXME: Is there data associated with this OP ? */
1405 break;
1406
1407 /* PGI (STMicroelectronics) extensions. */
1408 case DW_OP_PGI_omp_thread_num:
1409 /* Pushes the thread number for the current thread as it would be
1410 returned by the standard OpenMP library function:
1411 omp_get_thread_num(). The "current thread" is the thread for
1412 which the expression is being evaluated. */
1413 printf ("DW_OP_PGI_omp_thread_num");
1414 break;
1415
1416 default:
1417 if (op >= DW_OP_lo_user
1418 && op <= DW_OP_hi_user)
1419 printf (_("(User defined location op)"));
1420 else
1421 printf (_("(Unknown location op)"));
1422 /* No way to tell where the next op is, so just bail. */
1423 return need_frame_base;
1424 }
1425
1426 /* Separate the ops. */
1427 if (data < end)
1428 printf ("; ");
1429 }
1430
1431 return need_frame_base;
1432 }
1433
1434 /* Find the CU or TU set corresponding to the given CU_OFFSET.
1435 This is used for DWARF package files. */
1436
1437 static struct cu_tu_set *
1438 find_cu_tu_set_v2 (dwarf_vma cu_offset, int do_types)
1439 {
1440 struct cu_tu_set *p;
1441 unsigned int nsets;
1442 unsigned int dw_sect;
1443
1444 if (do_types)
1445 {
1446 p = tu_sets;
1447 nsets = tu_count;
1448 dw_sect = DW_SECT_TYPES;
1449 }
1450 else
1451 {
1452 p = cu_sets;
1453 nsets = cu_count;
1454 dw_sect = DW_SECT_INFO;
1455 }
1456 while (nsets > 0)
1457 {
1458 if (p->section_offsets [dw_sect] == cu_offset)
1459 return p;
1460 p++;
1461 nsets--;
1462 }
1463 return NULL;
1464 }
1465
1466 /* Add INC to HIGH_BITS:LOW_BITS. */
1467 static void
1468 add64 (dwarf_vma * high_bits, dwarf_vma * low_bits, dwarf_vma inc)
1469 {
1470 dwarf_vma tmp = * low_bits;
1471
1472 tmp += inc;
1473
1474 /* FIXME: There is probably a better way of handling this:
1475
1476 We need to cope with dwarf_vma being a 32-bit or 64-bit
1477 type. Plus regardless of its size LOW_BITS is meant to
1478 only hold 32-bits, so if there is overflow or wrap around
1479 we must propagate into HIGH_BITS. */
1480 if (tmp < * low_bits)
1481 {
1482 ++ * high_bits;
1483 }
1484 else if (sizeof (tmp) > 8
1485 && (tmp >> 31) > 1)
1486 {
1487 ++ * high_bits;
1488 tmp &= 0xFFFFFFFF;
1489 }
1490
1491 * low_bits = tmp;
1492 }
1493
1494 static unsigned char *
1495 read_and_display_attr_value (unsigned long attribute,
1496 unsigned long form,
1497 unsigned char * data,
1498 unsigned char * end,
1499 dwarf_vma cu_offset,
1500 dwarf_vma pointer_size,
1501 dwarf_vma offset_size,
1502 int dwarf_version,
1503 debug_info * debug_info_p,
1504 int do_loc,
1505 struct dwarf_section * section,
1506 struct cu_tu_set * this_set)
1507 {
1508 dwarf_vma uvalue = 0;
1509 unsigned char *block_start = NULL;
1510 unsigned char * orig_data = data;
1511 unsigned int bytes_read;
1512
1513 if (data > end || (data == end && form != DW_FORM_flag_present))
1514 {
1515 warn (_("Corrupt attribute\n"));
1516 return data;
1517 }
1518
1519 switch (form)
1520 {
1521 default:
1522 break;
1523
1524 case DW_FORM_ref_addr:
1525 if (dwarf_version == 2)
1526 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1527 else if (dwarf_version == 3 || dwarf_version == 4)
1528 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1529 else
1530 error (_("Internal error: DWARF version is not 2, 3 or 4.\n"));
1531
1532 break;
1533
1534 case DW_FORM_addr:
1535 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1536 break;
1537
1538 case DW_FORM_strp:
1539 case DW_FORM_sec_offset:
1540 case DW_FORM_GNU_ref_alt:
1541 case DW_FORM_GNU_strp_alt:
1542 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1543 break;
1544
1545 case DW_FORM_flag_present:
1546 uvalue = 1;
1547 break;
1548
1549 case DW_FORM_ref1:
1550 case DW_FORM_flag:
1551 case DW_FORM_data1:
1552 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1553 break;
1554
1555 case DW_FORM_ref2:
1556 case DW_FORM_data2:
1557 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
1558 break;
1559
1560 case DW_FORM_ref4:
1561 case DW_FORM_data4:
1562 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1563 break;
1564
1565 case DW_FORM_sdata:
1566 uvalue = read_sleb128 (data, & bytes_read, end);
1567 data += bytes_read;
1568 break;
1569
1570 case DW_FORM_GNU_str_index:
1571 uvalue = read_uleb128 (data, & bytes_read, end);
1572 data += bytes_read;
1573 break;
1574
1575 case DW_FORM_ref_udata:
1576 case DW_FORM_udata:
1577 uvalue = read_uleb128 (data, & bytes_read, end);
1578 data += bytes_read;
1579 break;
1580
1581 case DW_FORM_indirect:
1582 form = read_uleb128 (data, & bytes_read, end);
1583 data += bytes_read;
1584 if (!do_loc)
1585 printf (" %s", get_FORM_name (form));
1586 return read_and_display_attr_value (attribute, form, data, end,
1587 cu_offset, pointer_size,
1588 offset_size, dwarf_version,
1589 debug_info_p, do_loc,
1590 section, this_set);
1591 case DW_FORM_GNU_addr_index:
1592 uvalue = read_uleb128 (data, & bytes_read, end);
1593 data += bytes_read;
1594 break;
1595 }
1596
1597 switch (form)
1598 {
1599 case DW_FORM_ref_addr:
1600 if (!do_loc)
1601 printf (" <0x%s>", dwarf_vmatoa ("x",uvalue));
1602 break;
1603
1604 case DW_FORM_GNU_ref_alt:
1605 if (!do_loc)
1606 printf (" <alt 0x%s>", dwarf_vmatoa ("x",uvalue));
1607 break;
1608
1609 case DW_FORM_ref1:
1610 case DW_FORM_ref2:
1611 case DW_FORM_ref4:
1612 case DW_FORM_ref_udata:
1613 if (!do_loc)
1614 printf (" <0x%s>", dwarf_vmatoa ("x", uvalue + cu_offset));
1615 break;
1616
1617 case DW_FORM_data4:
1618 case DW_FORM_addr:
1619 case DW_FORM_sec_offset:
1620 if (!do_loc)
1621 printf (" 0x%s", dwarf_vmatoa ("x", uvalue));
1622 break;
1623
1624 case DW_FORM_flag_present:
1625 case DW_FORM_flag:
1626 case DW_FORM_data1:
1627 case DW_FORM_data2:
1628 case DW_FORM_sdata:
1629 case DW_FORM_udata:
1630 if (!do_loc)
1631 printf (" %s", dwarf_vmatoa ("d", uvalue));
1632 break;
1633
1634 case DW_FORM_ref8:
1635 case DW_FORM_data8:
1636 if (!do_loc)
1637 {
1638 dwarf_vma high_bits;
1639 dwarf_vma utmp;
1640 char buf[64];
1641
1642 SAFE_BYTE_GET64 (data, &high_bits, &uvalue, end);
1643 utmp = uvalue;
1644 if (form == DW_FORM_ref8)
1645 add64 (& high_bits, & utmp, cu_offset);
1646 printf (" 0x%s",
1647 dwarf_vmatoa64 (high_bits, utmp, buf, sizeof (buf)));
1648 }
1649
1650 if ((do_loc || do_debug_loc || do_debug_ranges)
1651 && num_debug_info_entries == 0)
1652 {
1653 if (sizeof (uvalue) == 8)
1654 SAFE_BYTE_GET (uvalue, data, 8, end);
1655 else
1656 error (_("DW_FORM_data8 is unsupported when sizeof (dwarf_vma) != 8\n"));
1657 }
1658
1659 data += 8;
1660 break;
1661
1662 case DW_FORM_string:
1663 if (!do_loc)
1664 printf (" %.*s", (int) (end - data), data);
1665 data += strnlen ((char *) data, end - data) + 1;
1666 break;
1667
1668 case DW_FORM_block:
1669 case DW_FORM_exprloc:
1670 uvalue = read_uleb128 (data, & bytes_read, end);
1671 block_start = data + bytes_read;
1672 if (block_start >= end)
1673 {
1674 warn (_("Block ends prematurely\n"));
1675 uvalue = 0;
1676 block_start = end;
1677 }
1678 /* FIXME: Testing "(block_start + uvalue) < block_start" miscompiles with
1679 gcc 4.8.3 running on an x86_64 host in 32-bit mode. So we pre-compute
1680 block_start + uvalue here. */
1681 data = block_start + uvalue;
1682 /* PR 17512: file: 008-103549-0.001:0.1. */
1683 if (block_start + uvalue > end || data < block_start)
1684 {
1685 warn (_("Corrupt attribute block length: %lx\n"), (long) uvalue);
1686 uvalue = end - block_start;
1687 }
1688 if (do_loc)
1689 data = block_start + uvalue;
1690 else
1691 data = display_block (block_start, uvalue, end);
1692 break;
1693
1694 case DW_FORM_block1:
1695 SAFE_BYTE_GET (uvalue, data, 1, end);
1696 block_start = data + 1;
1697 if (block_start >= end)
1698 {
1699 warn (_("Block ends prematurely\n"));
1700 uvalue = 0;
1701 block_start = end;
1702 }
1703 data = block_start + uvalue;
1704 if (block_start + uvalue > end || data < block_start)
1705 {
1706 warn (_("Corrupt attribute block length: %lx\n"), (long) uvalue);
1707 uvalue = end - block_start;
1708 }
1709 if (do_loc)
1710 data = block_start + uvalue;
1711 else
1712 data = display_block (block_start, uvalue, end);
1713 break;
1714
1715 case DW_FORM_block2:
1716 SAFE_BYTE_GET (uvalue, data, 2, end);
1717 block_start = data + 2;
1718 if (block_start >= end)
1719 {
1720 warn (_("Block ends prematurely\n"));
1721 uvalue = 0;
1722 block_start = end;
1723 }
1724 data = block_start + uvalue;
1725 if (block_start + uvalue > end || data < block_start)
1726 {
1727 warn (_("Corrupt attribute block length: %lx\n"), (long) uvalue);
1728 uvalue = end - block_start;
1729 }
1730 if (do_loc)
1731 data = block_start + uvalue;
1732 else
1733 data = display_block (block_start, uvalue, end);
1734 break;
1735
1736 case DW_FORM_block4:
1737 SAFE_BYTE_GET (uvalue, data, 4, end);
1738 block_start = data + 4;
1739 /* PR 17512: file: 3371-3907-0.004. */
1740 if (block_start >= end)
1741 {
1742 warn (_("Block ends prematurely\n"));
1743 uvalue = 0;
1744 block_start = end;
1745 }
1746 data = block_start + uvalue;
1747 if (block_start + uvalue > end
1748 /* PR 17531: file: 5b5f0592. */
1749 || data < block_start)
1750 {
1751 warn (_("Corrupt attribute block length: %lx\n"), (long) uvalue);
1752 uvalue = end - block_start;
1753 }
1754 if (do_loc)
1755 data = block_start + uvalue;
1756 else
1757 data = display_block (block_start, uvalue, end);
1758 break;
1759
1760 case DW_FORM_strp:
1761 if (!do_loc)
1762 printf (_(" (indirect string, offset: 0x%s): %s"),
1763 dwarf_vmatoa ("x", uvalue),
1764 fetch_indirect_string (uvalue));
1765 break;
1766
1767 case DW_FORM_GNU_str_index:
1768 if (!do_loc)
1769 {
1770 const char *suffix = strrchr (section->name, '.');
1771 int dwo = (suffix && strcmp (suffix, ".dwo") == 0) ? 1 : 0;
1772
1773 printf (_(" (indexed string: 0x%s): %s"),
1774 dwarf_vmatoa ("x", uvalue),
1775 fetch_indexed_string (uvalue, this_set, offset_size, dwo));
1776 }
1777 break;
1778
1779 case DW_FORM_GNU_strp_alt:
1780 if (!do_loc)
1781 printf (_(" (alt indirect string, offset: 0x%s)"),
1782 dwarf_vmatoa ("x", uvalue));
1783 break;
1784
1785 case DW_FORM_indirect:
1786 /* Handled above. */
1787 break;
1788
1789 case DW_FORM_ref_sig8:
1790 if (!do_loc)
1791 {
1792 dwarf_vma high_bits;
1793 char buf[64];
1794
1795 SAFE_BYTE_GET64 (data, &high_bits, &uvalue, end);
1796 printf (" signature: 0x%s",
1797 dwarf_vmatoa64 (high_bits, uvalue, buf, sizeof (buf)));
1798 }
1799 data += 8;
1800 break;
1801
1802 case DW_FORM_GNU_addr_index:
1803 if (!do_loc)
1804 printf (_(" (addr_index: 0x%s): %s"),
1805 dwarf_vmatoa ("x", uvalue),
1806 fetch_indexed_value (uvalue * pointer_size, pointer_size));
1807 break;
1808
1809 default:
1810 warn (_("Unrecognized form: %lu\n"), form);
1811 break;
1812 }
1813
1814 if ((do_loc || do_debug_loc || do_debug_ranges)
1815 && num_debug_info_entries == 0
1816 && debug_info_p != NULL)
1817 {
1818 switch (attribute)
1819 {
1820 case DW_AT_frame_base:
1821 have_frame_base = 1;
1822 case DW_AT_location:
1823 case DW_AT_string_length:
1824 case DW_AT_return_addr:
1825 case DW_AT_data_member_location:
1826 case DW_AT_vtable_elem_location:
1827 case DW_AT_segment:
1828 case DW_AT_static_link:
1829 case DW_AT_use_location:
1830 case DW_AT_GNU_call_site_value:
1831 case DW_AT_GNU_call_site_data_value:
1832 case DW_AT_GNU_call_site_target:
1833 case DW_AT_GNU_call_site_target_clobbered:
1834 if ((dwarf_version < 4
1835 && (form == DW_FORM_data4 || form == DW_FORM_data8))
1836 || form == DW_FORM_sec_offset)
1837 {
1838 /* Process location list. */
1839 unsigned int lmax = debug_info_p->max_loc_offsets;
1840 unsigned int num = debug_info_p->num_loc_offsets;
1841
1842 if (lmax == 0 || num >= lmax)
1843 {
1844 lmax += 1024;
1845 debug_info_p->loc_offsets = (dwarf_vma *)
1846 xcrealloc (debug_info_p->loc_offsets,
1847 lmax, sizeof (*debug_info_p->loc_offsets));
1848 debug_info_p->have_frame_base = (int *)
1849 xcrealloc (debug_info_p->have_frame_base,
1850 lmax, sizeof (*debug_info_p->have_frame_base));
1851 debug_info_p->max_loc_offsets = lmax;
1852 }
1853 if (this_set != NULL)
1854 uvalue += this_set->section_offsets [DW_SECT_LOC];
1855 debug_info_p->loc_offsets [num] = uvalue;
1856 debug_info_p->have_frame_base [num] = have_frame_base;
1857 debug_info_p->num_loc_offsets++;
1858 }
1859 break;
1860
1861 case DW_AT_low_pc:
1862 if (need_base_address)
1863 debug_info_p->base_address = uvalue;
1864 break;
1865
1866 case DW_AT_GNU_addr_base:
1867 debug_info_p->addr_base = uvalue;
1868 break;
1869
1870 case DW_AT_GNU_ranges_base:
1871 debug_info_p->ranges_base = uvalue;
1872 break;
1873
1874 case DW_AT_ranges:
1875 if ((dwarf_version < 4
1876 && (form == DW_FORM_data4 || form == DW_FORM_data8))
1877 || form == DW_FORM_sec_offset)
1878 {
1879 /* Process range list. */
1880 unsigned int lmax = debug_info_p->max_range_lists;
1881 unsigned int num = debug_info_p->num_range_lists;
1882
1883 if (lmax == 0 || num >= lmax)
1884 {
1885 lmax += 1024;
1886 debug_info_p->range_lists = (dwarf_vma *)
1887 xcrealloc (debug_info_p->range_lists,
1888 lmax, sizeof (*debug_info_p->range_lists));
1889 debug_info_p->max_range_lists = lmax;
1890 }
1891 debug_info_p->range_lists [num] = uvalue;
1892 debug_info_p->num_range_lists++;
1893 }
1894 break;
1895
1896 default:
1897 break;
1898 }
1899 }
1900
1901 if (do_loc || attribute == 0)
1902 return data;
1903
1904 /* For some attributes we can display further information. */
1905 switch (attribute)
1906 {
1907 case DW_AT_inline:
1908 printf ("\t");
1909 switch (uvalue)
1910 {
1911 case DW_INL_not_inlined:
1912 printf (_("(not inlined)"));
1913 break;
1914 case DW_INL_inlined:
1915 printf (_("(inlined)"));
1916 break;
1917 case DW_INL_declared_not_inlined:
1918 printf (_("(declared as inline but ignored)"));
1919 break;
1920 case DW_INL_declared_inlined:
1921 printf (_("(declared as inline and inlined)"));
1922 break;
1923 default:
1924 printf (_(" (Unknown inline attribute value: %s)"),
1925 dwarf_vmatoa ("x", uvalue));
1926 break;
1927 }
1928 break;
1929
1930 case DW_AT_language:
1931 printf ("\t");
1932 switch (uvalue)
1933 {
1934 /* Ordered by the numeric value of these constants. */
1935 case DW_LANG_C89: printf ("(ANSI C)"); break;
1936 case DW_LANG_C: printf ("(non-ANSI C)"); break;
1937 case DW_LANG_Ada83: printf ("(Ada)"); break;
1938 case DW_LANG_C_plus_plus: printf ("(C++)"); break;
1939 case DW_LANG_Cobol74: printf ("(Cobol 74)"); break;
1940 case DW_LANG_Cobol85: printf ("(Cobol 85)"); break;
1941 case DW_LANG_Fortran77: printf ("(FORTRAN 77)"); break;
1942 case DW_LANG_Fortran90: printf ("(Fortran 90)"); break;
1943 case DW_LANG_Pascal83: printf ("(ANSI Pascal)"); break;
1944 case DW_LANG_Modula2: printf ("(Modula 2)"); break;
1945 /* DWARF 2.1 values. */
1946 case DW_LANG_Java: printf ("(Java)"); break;
1947 case DW_LANG_C99: printf ("(ANSI C99)"); break;
1948 case DW_LANG_Ada95: printf ("(ADA 95)"); break;
1949 case DW_LANG_Fortran95: printf ("(Fortran 95)"); break;
1950 /* DWARF 3 values. */
1951 case DW_LANG_PLI: printf ("(PLI)"); break;
1952 case DW_LANG_ObjC: printf ("(Objective C)"); break;
1953 case DW_LANG_ObjC_plus_plus: printf ("(Objective C++)"); break;
1954 case DW_LANG_UPC: printf ("(Unified Parallel C)"); break;
1955 case DW_LANG_D: printf ("(D)"); break;
1956 /* DWARF 4 values. */
1957 case DW_LANG_Python: printf ("(Python)"); break;
1958 /* DWARF 5 values. */
1959 case DW_LANG_Go: printf ("(Go)"); break;
1960 case DW_LANG_C_plus_plus_11: printf ("(C++11)"); break;
1961 case DW_LANG_C11: printf ("(C11)"); break;
1962 case DW_LANG_C_plus_plus_14: printf ("(C++14)"); break;
1963 case DW_LANG_Fortran03: printf ("(Fortran 03)"); break;
1964 case DW_LANG_Fortran08: printf ("(Fortran 08)"); break;
1965 /* MIPS extension. */
1966 case DW_LANG_Mips_Assembler: printf ("(MIPS assembler)"); break;
1967 /* UPC extension. */
1968 case DW_LANG_Upc: printf ("(Unified Parallel C)"); break;
1969 default:
1970 if (uvalue >= DW_LANG_lo_user && uvalue <= DW_LANG_hi_user)
1971 printf (_("(implementation defined: %s)"),
1972 dwarf_vmatoa ("x", uvalue));
1973 else
1974 printf (_("(Unknown: %s)"), dwarf_vmatoa ("x", uvalue));
1975 break;
1976 }
1977 break;
1978
1979 case DW_AT_encoding:
1980 printf ("\t");
1981 switch (uvalue)
1982 {
1983 case DW_ATE_void: printf ("(void)"); break;
1984 case DW_ATE_address: printf ("(machine address)"); break;
1985 case DW_ATE_boolean: printf ("(boolean)"); break;
1986 case DW_ATE_complex_float: printf ("(complex float)"); break;
1987 case DW_ATE_float: printf ("(float)"); break;
1988 case DW_ATE_signed: printf ("(signed)"); break;
1989 case DW_ATE_signed_char: printf ("(signed char)"); break;
1990 case DW_ATE_unsigned: printf ("(unsigned)"); break;
1991 case DW_ATE_unsigned_char: printf ("(unsigned char)"); break;
1992 /* DWARF 2.1 values: */
1993 case DW_ATE_imaginary_float: printf ("(imaginary float)"); break;
1994 case DW_ATE_decimal_float: printf ("(decimal float)"); break;
1995 /* DWARF 3 values: */
1996 case DW_ATE_packed_decimal: printf ("(packed_decimal)"); break;
1997 case DW_ATE_numeric_string: printf ("(numeric_string)"); break;
1998 case DW_ATE_edited: printf ("(edited)"); break;
1999 case DW_ATE_signed_fixed: printf ("(signed_fixed)"); break;
2000 case DW_ATE_unsigned_fixed: printf ("(unsigned_fixed)"); break;
2001 /* HP extensions: */
2002 case DW_ATE_HP_float80: printf ("(HP_float80)"); break;
2003 case DW_ATE_HP_complex_float80: printf ("(HP_complex_float80)"); break;
2004 case DW_ATE_HP_float128: printf ("(HP_float128)"); break;
2005 case DW_ATE_HP_complex_float128:printf ("(HP_complex_float128)"); break;
2006 case DW_ATE_HP_floathpintel: printf ("(HP_floathpintel)"); break;
2007 case DW_ATE_HP_imaginary_float80: printf ("(HP_imaginary_float80)"); break;
2008 case DW_ATE_HP_imaginary_float128: printf ("(HP_imaginary_float128)"); break;
2009 /* DWARF 4 values: */
2010 case DW_ATE_UTF: printf ("(unicode string)"); break;
2011
2012 default:
2013 if (uvalue >= DW_ATE_lo_user
2014 && uvalue <= DW_ATE_hi_user)
2015 printf (_("(user defined type)"));
2016 else
2017 printf (_("(unknown type)"));
2018 break;
2019 }
2020 break;
2021
2022 case DW_AT_accessibility:
2023 printf ("\t");
2024 switch (uvalue)
2025 {
2026 case DW_ACCESS_public: printf ("(public)"); break;
2027 case DW_ACCESS_protected: printf ("(protected)"); break;
2028 case DW_ACCESS_private: printf ("(private)"); break;
2029 default:
2030 printf (_("(unknown accessibility)"));
2031 break;
2032 }
2033 break;
2034
2035 case DW_AT_visibility:
2036 printf ("\t");
2037 switch (uvalue)
2038 {
2039 case DW_VIS_local: printf ("(local)"); break;
2040 case DW_VIS_exported: printf ("(exported)"); break;
2041 case DW_VIS_qualified: printf ("(qualified)"); break;
2042 default: printf (_("(unknown visibility)")); break;
2043 }
2044 break;
2045
2046 case DW_AT_virtuality:
2047 printf ("\t");
2048 switch (uvalue)
2049 {
2050 case DW_VIRTUALITY_none: printf ("(none)"); break;
2051 case DW_VIRTUALITY_virtual: printf ("(virtual)"); break;
2052 case DW_VIRTUALITY_pure_virtual:printf ("(pure_virtual)"); break;
2053 default: printf (_("(unknown virtuality)")); break;
2054 }
2055 break;
2056
2057 case DW_AT_identifier_case:
2058 printf ("\t");
2059 switch (uvalue)
2060 {
2061 case DW_ID_case_sensitive: printf ("(case_sensitive)"); break;
2062 case DW_ID_up_case: printf ("(up_case)"); break;
2063 case DW_ID_down_case: printf ("(down_case)"); break;
2064 case DW_ID_case_insensitive: printf ("(case_insensitive)"); break;
2065 default: printf (_("(unknown case)")); break;
2066 }
2067 break;
2068
2069 case DW_AT_calling_convention:
2070 printf ("\t");
2071 switch (uvalue)
2072 {
2073 case DW_CC_normal: printf ("(normal)"); break;
2074 case DW_CC_program: printf ("(program)"); break;
2075 case DW_CC_nocall: printf ("(nocall)"); break;
2076 default:
2077 if (uvalue >= DW_CC_lo_user
2078 && uvalue <= DW_CC_hi_user)
2079 printf (_("(user defined)"));
2080 else
2081 printf (_("(unknown convention)"));
2082 }
2083 break;
2084
2085 case DW_AT_ordering:
2086 printf ("\t");
2087 switch (uvalue)
2088 {
2089 case -1: printf (_("(undefined)")); break;
2090 case 0: printf ("(row major)"); break;
2091 case 1: printf ("(column major)"); break;
2092 }
2093 break;
2094
2095 case DW_AT_frame_base:
2096 have_frame_base = 1;
2097 case DW_AT_location:
2098 case DW_AT_string_length:
2099 case DW_AT_return_addr:
2100 case DW_AT_data_member_location:
2101 case DW_AT_vtable_elem_location:
2102 case DW_AT_segment:
2103 case DW_AT_static_link:
2104 case DW_AT_use_location:
2105 case DW_AT_GNU_call_site_value:
2106 case DW_AT_GNU_call_site_data_value:
2107 case DW_AT_GNU_call_site_target:
2108 case DW_AT_GNU_call_site_target_clobbered:
2109 if ((dwarf_version < 4
2110 && (form == DW_FORM_data4 || form == DW_FORM_data8))
2111 || form == DW_FORM_sec_offset)
2112 printf (_(" (location list)"));
2113 /* Fall through. */
2114 case DW_AT_allocated:
2115 case DW_AT_associated:
2116 case DW_AT_data_location:
2117 case DW_AT_stride:
2118 case DW_AT_upper_bound:
2119 case DW_AT_lower_bound:
2120 if (block_start)
2121 {
2122 int need_frame_base;
2123
2124 printf ("\t(");
2125 need_frame_base = decode_location_expression (block_start,
2126 pointer_size,
2127 offset_size,
2128 dwarf_version,
2129 uvalue,
2130 cu_offset, section);
2131 printf (")");
2132 if (need_frame_base && !have_frame_base)
2133 printf (_(" [without DW_AT_frame_base]"));
2134 }
2135 break;
2136
2137 case DW_AT_import:
2138 {
2139 if (form == DW_FORM_ref_sig8
2140 || form == DW_FORM_GNU_ref_alt)
2141 break;
2142
2143 if (form == DW_FORM_ref1
2144 || form == DW_FORM_ref2
2145 || form == DW_FORM_ref4
2146 || form == DW_FORM_ref_udata)
2147 uvalue += cu_offset;
2148
2149 if (uvalue >= section->size)
2150 warn (_("Offset %s used as value for DW_AT_import attribute of DIE at offset 0x%lx is too big.\n"),
2151 dwarf_vmatoa ("x", uvalue),
2152 (unsigned long) (orig_data - section->start));
2153 else
2154 {
2155 unsigned long abbrev_number;
2156 abbrev_entry * entry;
2157
2158 abbrev_number = read_uleb128 (section->start + uvalue, NULL, end);
2159
2160 printf (_("\t[Abbrev Number: %ld"), abbrev_number);
2161 /* Don't look up abbrev for DW_FORM_ref_addr, as it very often will
2162 use different abbrev table, and we don't track .debug_info chunks
2163 yet. */
2164 if (form != DW_FORM_ref_addr)
2165 {
2166 for (entry = first_abbrev; entry != NULL; entry = entry->next)
2167 if (entry->entry == abbrev_number)
2168 break;
2169 if (entry != NULL)
2170 printf (" (%s)", get_TAG_name (entry->tag));
2171 }
2172 printf ("]");
2173 }
2174 }
2175 break;
2176
2177 default:
2178 break;
2179 }
2180
2181 return data;
2182 }
2183
2184 static const char *
2185 get_AT_name (unsigned long attribute)
2186 {
2187 const char *name;
2188
2189 if (attribute == 0)
2190 return "DW_AT value: 0";
2191
2192 /* One value is shared by the MIPS and HP extensions: */
2193 if (attribute == DW_AT_MIPS_fde)
2194 return "DW_AT_MIPS_fde or DW_AT_HP_unmodifiable";
2195
2196 name = get_DW_AT_name (attribute);
2197
2198 if (name == NULL)
2199 {
2200 static char buffer[100];
2201
2202 snprintf (buffer, sizeof (buffer), _("Unknown AT value: %lx"),
2203 attribute);
2204 return buffer;
2205 }
2206
2207 return name;
2208 }
2209
2210 static unsigned char *
2211 read_and_display_attr (unsigned long attribute,
2212 unsigned long form,
2213 unsigned char * data,
2214 unsigned char * end,
2215 dwarf_vma cu_offset,
2216 dwarf_vma pointer_size,
2217 dwarf_vma offset_size,
2218 int dwarf_version,
2219 debug_info * debug_info_p,
2220 int do_loc,
2221 struct dwarf_section * section,
2222 struct cu_tu_set * this_set)
2223 {
2224 if (!do_loc)
2225 printf (" %-18s:", get_AT_name (attribute));
2226 data = read_and_display_attr_value (attribute, form, data, end,
2227 cu_offset, pointer_size, offset_size,
2228 dwarf_version, debug_info_p,
2229 do_loc, section, this_set);
2230 if (!do_loc)
2231 printf ("\n");
2232 return data;
2233 }
2234
2235 /* Process the contents of a .debug_info section. If do_loc is non-zero
2236 then we are scanning for location lists and we do not want to display
2237 anything to the user. If do_types is non-zero, we are processing
2238 a .debug_types section instead of a .debug_info section. */
2239
2240 static int
2241 process_debug_info (struct dwarf_section *section,
2242 void *file,
2243 enum dwarf_section_display_enum abbrev_sec,
2244 int do_loc,
2245 int do_types)
2246 {
2247 unsigned char *start = section->start;
2248 unsigned char *end = start + section->size;
2249 unsigned char *section_begin;
2250 unsigned int unit;
2251 unsigned int num_units = 0;
2252
2253 if ((do_loc || do_debug_loc || do_debug_ranges)
2254 && num_debug_info_entries == 0
2255 && ! do_types)
2256 {
2257 dwarf_vma length;
2258
2259 /* First scan the section to get the number of comp units. */
2260 for (section_begin = start, num_units = 0; section_begin < end;
2261 num_units ++)
2262 {
2263 /* Read the first 4 bytes. For a 32-bit DWARF section, this
2264 will be the length. For a 64-bit DWARF section, it'll be
2265 the escape code 0xffffffff followed by an 8 byte length. */
2266 SAFE_BYTE_GET (length, section_begin, 4, end);
2267
2268 if (length == 0xffffffff)
2269 {
2270 SAFE_BYTE_GET (length, section_begin + 4, 8, end);
2271 section_begin += length + 12;
2272 }
2273 else if (length >= 0xfffffff0 && length < 0xffffffff)
2274 {
2275 warn (_("Reserved length value (0x%s) found in section %s\n"),
2276 dwarf_vmatoa ("x", length), section->name);
2277 return 0;
2278 }
2279 else
2280 section_begin += length + 4;
2281
2282 /* Negative values are illegal, they may even cause infinite
2283 looping. This can happen if we can't accurately apply
2284 relocations to an object file, or if the file is corrupt. */
2285 if ((signed long) length <= 0 || section_begin < start)
2286 {
2287 warn (_("Corrupt unit length (0x%s) found in section %s\n"),
2288 dwarf_vmatoa ("x", length), section->name);
2289 return 0;
2290 }
2291 }
2292
2293 if (num_units == 0)
2294 {
2295 error (_("No comp units in %s section ?\n"), section->name);
2296 return 0;
2297 }
2298
2299 /* Then allocate an array to hold the information. */
2300 debug_information = (debug_info *) cmalloc (num_units,
2301 sizeof (* debug_information));
2302 if (debug_information == NULL)
2303 {
2304 error (_("Not enough memory for a debug info array of %u entries\n"),
2305 num_units);
2306 alloc_num_debug_info_entries = num_debug_info_entries = 0;
2307 return 0;
2308 }
2309 /* PR 17531: file: 92ca3797.
2310 We cannot rely upon the debug_information array being initialised
2311 before it is used. A corrupt file could easily contain references
2312 to a unit for which information has not been made available. So
2313 we ensure that the array is zeroed here. */
2314 memset (debug_information, 0, num_units * sizeof (*debug_information));
2315
2316 alloc_num_debug_info_entries = num_units;
2317 }
2318
2319 if (!do_loc)
2320 {
2321 if (dwarf_start_die == 0)
2322 printf (_("Contents of the %s section:\n\n"), section->name);
2323
2324 load_debug_section (str, file);
2325 load_debug_section (str_dwo, file);
2326 load_debug_section (str_index, file);
2327 load_debug_section (str_index_dwo, file);
2328 load_debug_section (debug_addr, file);
2329 }
2330
2331 load_debug_section (abbrev_sec, file);
2332 if (debug_displays [abbrev_sec].section.start == NULL)
2333 {
2334 warn (_("Unable to locate %s section!\n"),
2335 debug_displays [abbrev_sec].section.name);
2336 return 0;
2337 }
2338
2339 for (section_begin = start, unit = 0; start < end; unit++)
2340 {
2341 DWARF2_Internal_CompUnit compunit;
2342 unsigned char *hdrptr;
2343 unsigned char *tags;
2344 int level, last_level, saved_level;
2345 dwarf_vma cu_offset;
2346 unsigned int offset_size;
2347 int initial_length_size;
2348 dwarf_vma signature_high = 0;
2349 dwarf_vma signature_low = 0;
2350 dwarf_vma type_offset = 0;
2351 struct cu_tu_set *this_set;
2352 dwarf_vma abbrev_base;
2353 size_t abbrev_size;
2354
2355 hdrptr = start;
2356
2357 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 4, end);
2358
2359 if (compunit.cu_length == 0xffffffff)
2360 {
2361 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 8, end);
2362 offset_size = 8;
2363 initial_length_size = 12;
2364 }
2365 else
2366 {
2367 offset_size = 4;
2368 initial_length_size = 4;
2369 }
2370
2371 SAFE_BYTE_GET_AND_INC (compunit.cu_version, hdrptr, 2, end);
2372
2373 cu_offset = start - section_begin;
2374
2375 this_set = find_cu_tu_set_v2 (cu_offset, do_types);
2376
2377 SAFE_BYTE_GET_AND_INC (compunit.cu_abbrev_offset, hdrptr, offset_size, end);
2378
2379 if (this_set == NULL)
2380 {
2381 abbrev_base = 0;
2382 abbrev_size = debug_displays [abbrev_sec].section.size;
2383 }
2384 else
2385 {
2386 abbrev_base = this_set->section_offsets [DW_SECT_ABBREV];
2387 abbrev_size = this_set->section_sizes [DW_SECT_ABBREV];
2388 }
2389
2390 SAFE_BYTE_GET_AND_INC (compunit.cu_pointer_size, hdrptr, 1, end);
2391 /* PR 17512: file: 001-108546-0.001:0.1. */
2392 if (compunit.cu_pointer_size < 2 || compunit.cu_pointer_size > 8)
2393 {
2394 warn (_("Invalid pointer size (%d) in compunit header, using %d instead\n"),
2395 compunit.cu_pointer_size, offset_size);
2396 compunit.cu_pointer_size = offset_size;
2397 }
2398
2399 if (do_types)
2400 {
2401 SAFE_BYTE_GET64 (hdrptr, &signature_high, &signature_low, end);
2402 hdrptr += 8;
2403 SAFE_BYTE_GET_AND_INC (type_offset, hdrptr, offset_size, end);
2404 }
2405
2406 if ((do_loc || do_debug_loc || do_debug_ranges)
2407 && num_debug_info_entries == 0
2408 && ! do_types)
2409 {
2410 debug_information [unit].cu_offset = cu_offset;
2411 debug_information [unit].pointer_size
2412 = compunit.cu_pointer_size;
2413 debug_information [unit].offset_size = offset_size;
2414 debug_information [unit].dwarf_version = compunit.cu_version;
2415 debug_information [unit].base_address = 0;
2416 debug_information [unit].addr_base = DEBUG_INFO_UNAVAILABLE;
2417 debug_information [unit].ranges_base = DEBUG_INFO_UNAVAILABLE;
2418 debug_information [unit].loc_offsets = NULL;
2419 debug_information [unit].have_frame_base = NULL;
2420 debug_information [unit].max_loc_offsets = 0;
2421 debug_information [unit].num_loc_offsets = 0;
2422 debug_information [unit].range_lists = NULL;
2423 debug_information [unit].max_range_lists= 0;
2424 debug_information [unit].num_range_lists = 0;
2425 }
2426
2427 if (!do_loc && dwarf_start_die == 0)
2428 {
2429 printf (_(" Compilation Unit @ offset 0x%s:\n"),
2430 dwarf_vmatoa ("x", cu_offset));
2431 printf (_(" Length: 0x%s (%s)\n"),
2432 dwarf_vmatoa ("x", compunit.cu_length),
2433 offset_size == 8 ? "64-bit" : "32-bit");
2434 printf (_(" Version: %d\n"), compunit.cu_version);
2435 printf (_(" Abbrev Offset: 0x%s\n"),
2436 dwarf_vmatoa ("x", compunit.cu_abbrev_offset));
2437 printf (_(" Pointer Size: %d\n"), compunit.cu_pointer_size);
2438 if (do_types)
2439 {
2440 char buf[64];
2441
2442 printf (_(" Signature: 0x%s\n"),
2443 dwarf_vmatoa64 (signature_high, signature_low,
2444 buf, sizeof (buf)));
2445 printf (_(" Type Offset: 0x%s\n"),
2446 dwarf_vmatoa ("x", type_offset));
2447 }
2448 if (this_set != NULL)
2449 {
2450 dwarf_vma *offsets = this_set->section_offsets;
2451 size_t *sizes = this_set->section_sizes;
2452
2453 printf (_(" Section contributions:\n"));
2454 printf (_(" .debug_abbrev.dwo: 0x%s 0x%s\n"),
2455 dwarf_vmatoa ("x", offsets [DW_SECT_ABBREV]),
2456 dwarf_vmatoa ("x", sizes [DW_SECT_ABBREV]));
2457 printf (_(" .debug_line.dwo: 0x%s 0x%s\n"),
2458 dwarf_vmatoa ("x", offsets [DW_SECT_LINE]),
2459 dwarf_vmatoa ("x", sizes [DW_SECT_LINE]));
2460 printf (_(" .debug_loc.dwo: 0x%s 0x%s\n"),
2461 dwarf_vmatoa ("x", offsets [DW_SECT_LOC]),
2462 dwarf_vmatoa ("x", sizes [DW_SECT_LOC]));
2463 printf (_(" .debug_str_offsets.dwo: 0x%s 0x%s\n"),
2464 dwarf_vmatoa ("x", offsets [DW_SECT_STR_OFFSETS]),
2465 dwarf_vmatoa ("x", sizes [DW_SECT_STR_OFFSETS]));
2466 }
2467 }
2468
2469 if (cu_offset + compunit.cu_length + initial_length_size
2470 > section->size)
2471 {
2472 warn (_("Debug info is corrupted, length of CU at %s"
2473 " extends beyond end of section (length = %s)\n"),
2474 dwarf_vmatoa ("x", cu_offset),
2475 dwarf_vmatoa ("x", compunit.cu_length));
2476 num_units = unit;
2477 break;
2478 }
2479 tags = hdrptr;
2480 start += compunit.cu_length + initial_length_size;
2481
2482 if (start > end)
2483 {
2484 warn (_("Debug info is corrupt. CU at %s extends beyond end of section"),
2485 dwarf_vmatoa ("x", cu_offset));
2486 start = end;
2487 }
2488
2489 if (compunit.cu_version != 2
2490 && compunit.cu_version != 3
2491 && compunit.cu_version != 4)
2492 {
2493 warn (_("CU at offset %s contains corrupt or "
2494 "unsupported version number: %d.\n"),
2495 dwarf_vmatoa ("x", cu_offset), compunit.cu_version);
2496 continue;
2497 }
2498
2499 free_abbrevs ();
2500
2501 /* Process the abbrevs used by this compilation unit. */
2502 if (compunit.cu_abbrev_offset >= abbrev_size)
2503 warn (_("Debug info is corrupted, abbrev offset (%lx) is larger than abbrev section size (%lx)\n"),
2504 (unsigned long) compunit.cu_abbrev_offset,
2505 (unsigned long) abbrev_size);
2506 /* PR 17531: file:4bcd9ce9. */
2507 else if ((abbrev_base + abbrev_size)
2508 > debug_displays [abbrev_sec].section.size)
2509 warn (_("Debug info is corrupted, abbrev size (%lx) is larger than abbrev section size (%lx)\n"),
2510 (unsigned long) abbrev_base + abbrev_size,
2511 (unsigned long) debug_displays [abbrev_sec].section.size);
2512 else
2513 process_abbrev_section
2514 (((unsigned char *) debug_displays [abbrev_sec].section.start
2515 + abbrev_base + compunit.cu_abbrev_offset),
2516 ((unsigned char *) debug_displays [abbrev_sec].section.start
2517 + abbrev_base + abbrev_size));
2518
2519 level = 0;
2520 last_level = level;
2521 saved_level = -1;
2522 while (tags < start)
2523 {
2524 unsigned int bytes_read;
2525 unsigned long abbrev_number;
2526 unsigned long die_offset;
2527 abbrev_entry *entry;
2528 abbrev_attr *attr;
2529 int do_printing = 1;
2530
2531 die_offset = tags - section_begin;
2532
2533 abbrev_number = read_uleb128 (tags, & bytes_read, start);
2534 tags += bytes_read;
2535
2536 /* A null DIE marks the end of a list of siblings or it may also be
2537 a section padding. */
2538 if (abbrev_number == 0)
2539 {
2540 /* Check if it can be a section padding for the last CU. */
2541 if (level == 0 && start == end)
2542 {
2543 unsigned char *chk;
2544
2545 for (chk = tags; chk < start; chk++)
2546 if (*chk != 0)
2547 break;
2548 if (chk == start)
2549 break;
2550 }
2551
2552 if (!do_loc && die_offset >= dwarf_start_die
2553 && (dwarf_cutoff_level == -1
2554 || level < dwarf_cutoff_level))
2555 printf (_(" <%d><%lx>: Abbrev Number: 0\n"),
2556 level, die_offset);
2557
2558 --level;
2559 if (level < 0)
2560 {
2561 static unsigned num_bogus_warns = 0;
2562
2563 if (num_bogus_warns < 3)
2564 {
2565 warn (_("Bogus end-of-siblings marker detected at offset %lx in %s section\n"),
2566 die_offset, section->name);
2567 num_bogus_warns ++;
2568 if (num_bogus_warns == 3)
2569 warn (_("Further warnings about bogus end-of-sibling markers suppressed\n"));
2570 }
2571 }
2572 if (dwarf_start_die != 0 && level < saved_level)
2573 return 1;
2574 continue;
2575 }
2576
2577 if (!do_loc)
2578 {
2579 if (dwarf_start_die != 0 && die_offset < dwarf_start_die)
2580 do_printing = 0;
2581 else
2582 {
2583 if (dwarf_start_die != 0 && die_offset == dwarf_start_die)
2584 saved_level = level;
2585 do_printing = (dwarf_cutoff_level == -1
2586 || level < dwarf_cutoff_level);
2587 if (do_printing)
2588 printf (_(" <%d><%lx>: Abbrev Number: %lu"),
2589 level, die_offset, abbrev_number);
2590 else if (dwarf_cutoff_level == -1
2591 || last_level < dwarf_cutoff_level)
2592 printf (_(" <%d><%lx>: ...\n"), level, die_offset);
2593 last_level = level;
2594 }
2595 }
2596
2597 /* Scan through the abbreviation list until we reach the
2598 correct entry. */
2599 for (entry = first_abbrev;
2600 entry && entry->entry != abbrev_number;
2601 entry = entry->next)
2602 continue;
2603
2604 if (entry == NULL)
2605 {
2606 if (!do_loc && do_printing)
2607 {
2608 printf ("\n");
2609 fflush (stdout);
2610 }
2611 warn (_("DIE at offset 0x%lx refers to abbreviation number %lu which does not exist\n"),
2612 die_offset, abbrev_number);
2613 return 0;
2614 }
2615
2616 if (!do_loc && do_printing)
2617 printf (" (%s)\n", get_TAG_name (entry->tag));
2618
2619 switch (entry->tag)
2620 {
2621 default:
2622 need_base_address = 0;
2623 break;
2624 case DW_TAG_compile_unit:
2625 need_base_address = 1;
2626 break;
2627 case DW_TAG_entry_point:
2628 case DW_TAG_subprogram:
2629 need_base_address = 0;
2630 /* Assuming that there is no DW_AT_frame_base. */
2631 have_frame_base = 0;
2632 break;
2633 }
2634
2635 for (attr = entry->first_attr;
2636 attr && attr->attribute;
2637 attr = attr->next)
2638 {
2639 debug_info *arg;
2640
2641 if (! do_loc && do_printing)
2642 /* Show the offset from where the tag was extracted. */
2643 printf (" <%lx>", (unsigned long)(tags - section_begin));
2644
2645 if (debug_information && unit < alloc_num_debug_info_entries)
2646 arg = debug_information + unit;
2647 else
2648 arg = NULL;
2649
2650 tags = read_and_display_attr (attr->attribute,
2651 attr->form,
2652 tags,
2653 end,
2654 cu_offset,
2655 compunit.cu_pointer_size,
2656 offset_size,
2657 compunit.cu_version,
2658 arg,
2659 do_loc || ! do_printing,
2660 section,
2661 this_set);
2662 }
2663
2664 if (entry->children)
2665 ++level;
2666 }
2667 }
2668
2669 /* Set num_debug_info_entries here so that it can be used to check if
2670 we need to process .debug_loc and .debug_ranges sections. */
2671 if ((do_loc || do_debug_loc || do_debug_ranges)
2672 && num_debug_info_entries == 0
2673 && ! do_types)
2674 {
2675 if (num_units > alloc_num_debug_info_entries)
2676 num_debug_info_entries = alloc_num_debug_info_entries;
2677 else
2678 num_debug_info_entries = num_units;
2679 }
2680
2681 if (!do_loc)
2682 printf ("\n");
2683
2684 return 1;
2685 }
2686
2687 /* Locate and scan the .debug_info section in the file and record the pointer
2688 sizes and offsets for the compilation units in it. Usually an executable
2689 will have just one pointer size, but this is not guaranteed, and so we try
2690 not to make any assumptions. Returns zero upon failure, or the number of
2691 compilation units upon success. */
2692
2693 static unsigned int
2694 load_debug_info (void * file)
2695 {
2696 /* Reset the last pointer size so that we can issue correct error
2697 messages if we are displaying the contents of more than one section. */
2698 last_pointer_size = 0;
2699 warned_about_missing_comp_units = FALSE;
2700
2701 /* If we have already tried and failed to load the .debug_info
2702 section then do not bother to repeat the task. */
2703 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
2704 return 0;
2705
2706 /* If we already have the information there is nothing else to do. */
2707 if (num_debug_info_entries > 0)
2708 return num_debug_info_entries;
2709
2710 /* If this is a DWARF package file, load the CU and TU indexes. */
2711 load_cu_tu_indexes (file);
2712
2713 if (load_debug_section (info, file)
2714 && process_debug_info (&debug_displays [info].section, file, abbrev, 1, 0))
2715 return num_debug_info_entries;
2716
2717 if (load_debug_section (info_dwo, file)
2718 && process_debug_info (&debug_displays [info_dwo].section, file,
2719 abbrev_dwo, 1, 0))
2720 return num_debug_info_entries;
2721
2722 num_debug_info_entries = DEBUG_INFO_UNAVAILABLE;
2723 return 0;
2724 }
2725
2726 /* Read a DWARF .debug_line section header starting at DATA.
2727 Upon success returns an updated DATA pointer and the LINFO
2728 structure and the END_OF_SEQUENCE pointer will be filled in.
2729 Otherwise returns NULL. */
2730
2731 static unsigned char *
2732 read_debug_line_header (struct dwarf_section * section,
2733 unsigned char * data,
2734 unsigned char * end,
2735 DWARF2_Internal_LineInfo * linfo,
2736 unsigned char ** end_of_sequence)
2737 {
2738 unsigned char *hdrptr;
2739 unsigned int offset_size;
2740 unsigned int initial_length_size;
2741
2742 /* Extract information from the Line Number Program Header.
2743 (section 6.2.4 in the Dwarf3 doc). */
2744 hdrptr = data;
2745
2746 /* Get and check the length of the block. */
2747 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 4, end);
2748
2749 if (linfo->li_length == 0xffffffff)
2750 {
2751 /* This section is 64-bit DWARF 3. */
2752 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 8, end);
2753 offset_size = 8;
2754 initial_length_size = 12;
2755 }
2756 else
2757 {
2758 offset_size = 4;
2759 initial_length_size = 4;
2760 }
2761
2762 if (linfo->li_length + initial_length_size > section->size)
2763 {
2764 /* If the length is just a bias against the initial_length_size then
2765 this means that the field has a relocation against it which has not
2766 been applied. (Ie we are dealing with an object file, not a linked
2767 binary). Do not complain but instead assume that the rest of the
2768 section applies to this particular header. */
2769 if (linfo->li_length == - initial_length_size)
2770 {
2771 linfo->li_length = section->size - initial_length_size;
2772 }
2773 else
2774 {
2775 warn (_("The line info appears to be corrupt - the section is too small\n"));
2776 return NULL;
2777 }
2778 }
2779
2780 /* Get and check the version number. */
2781 SAFE_BYTE_GET_AND_INC (linfo->li_version, hdrptr, 2, end);
2782
2783 if (linfo->li_version != 2
2784 && linfo->li_version != 3
2785 && linfo->li_version != 4)
2786 {
2787 warn (_("Only DWARF version 2, 3 and 4 line info is currently supported.\n"));
2788 return NULL;
2789 }
2790
2791 SAFE_BYTE_GET_AND_INC (linfo->li_prologue_length, hdrptr, offset_size, end);
2792 SAFE_BYTE_GET_AND_INC (linfo->li_min_insn_length, hdrptr, 1, end);
2793
2794 if (linfo->li_version >= 4)
2795 {
2796 SAFE_BYTE_GET_AND_INC (linfo->li_max_ops_per_insn, hdrptr, 1, end);
2797
2798 if (linfo->li_max_ops_per_insn == 0)
2799 {
2800 warn (_("Invalid maximum operations per insn.\n"));
2801 return NULL;
2802 }
2803 }
2804 else
2805 linfo->li_max_ops_per_insn = 1;
2806
2807 SAFE_BYTE_GET_AND_INC (linfo->li_default_is_stmt, hdrptr, 1, end);
2808 SAFE_SIGNED_BYTE_GET_AND_INC (linfo->li_line_base, hdrptr, 1, end);
2809 SAFE_BYTE_GET_AND_INC (linfo->li_line_range, hdrptr, 1, end);
2810 SAFE_BYTE_GET_AND_INC (linfo->li_opcode_base, hdrptr, 1, end);
2811
2812 * end_of_sequence = data + linfo->li_length + initial_length_size;
2813 /* PR 17512: file:002-117414-0.004. */
2814 if (* end_of_sequence > end)
2815 {
2816 warn (_("Line length %s extends beyond end of section\n"),
2817 dwarf_vmatoa ("u", linfo->li_length));
2818 * end_of_sequence = end;
2819 return NULL;
2820 }
2821
2822 return hdrptr;
2823 }
2824
2825 static int
2826 display_debug_lines_raw (struct dwarf_section *section,
2827 unsigned char *data,
2828 unsigned char *end)
2829 {
2830 unsigned char *start = section->start;
2831
2832 printf (_("Raw dump of debug contents of section %s:\n\n"),
2833 section->name);
2834
2835 while (data < end)
2836 {
2837 static DWARF2_Internal_LineInfo saved_linfo;
2838 DWARF2_Internal_LineInfo linfo;
2839 unsigned char *standard_opcodes;
2840 unsigned char *end_of_sequence;
2841 unsigned int last_dir_entry = 0;
2842 int i;
2843
2844 if (const_strneq (section->name, ".debug_line.")
2845 /* Note: the following does not apply to .debug_line.dwo sections.
2846 These are full debug_line sections. */
2847 && strcmp (section->name, ".debug_line.dwo") != 0)
2848 {
2849 /* Sections named .debug_line.<foo> are fragments of a .debug_line
2850 section containing just the Line Number Statements. They are
2851 created by the assembler and intended to be used alongside gcc's
2852 -ffunction-sections command line option. When the linker's
2853 garbage collection decides to discard a .text.<foo> section it
2854 can then also discard the line number information in .debug_line.<foo>.
2855
2856 Since the section is a fragment it does not have the details
2857 needed to fill out a LineInfo structure, so instead we use the
2858 details from the last full debug_line section that we processed. */
2859 end_of_sequence = end;
2860 standard_opcodes = NULL;
2861 linfo = saved_linfo;
2862 /* PR 17531: file: 0522b371. */
2863 if (linfo.li_line_range == 0)
2864 {
2865 warn (_("Partial .debug_line. section encountered without a prior full .debug_line section\n"));
2866 return 0;
2867 }
2868 reset_state_machine (linfo.li_default_is_stmt);
2869 }
2870 else
2871 {
2872 unsigned char * hdrptr;
2873
2874 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
2875 & end_of_sequence)) == NULL)
2876 return 0;
2877
2878 printf (_(" Offset: 0x%lx\n"), (long)(data - start));
2879 printf (_(" Length: %ld\n"), (long) linfo.li_length);
2880 printf (_(" DWARF Version: %d\n"), linfo.li_version);
2881 printf (_(" Prologue Length: %d\n"), (int) linfo.li_prologue_length);
2882 printf (_(" Minimum Instruction Length: %d\n"), linfo.li_min_insn_length);
2883 if (linfo.li_version >= 4)
2884 printf (_(" Maximum Ops per Instruction: %d\n"), linfo.li_max_ops_per_insn);
2885 printf (_(" Initial value of 'is_stmt': %d\n"), linfo.li_default_is_stmt);
2886 printf (_(" Line Base: %d\n"), linfo.li_line_base);
2887 printf (_(" Line Range: %d\n"), linfo.li_line_range);
2888 printf (_(" Opcode Base: %d\n"), linfo.li_opcode_base);
2889
2890 /* PR 17512: file: 1665-6428-0.004. */
2891 if (linfo.li_line_range == 0)
2892 {
2893 warn (_("Line range of 0 is invalid, using 1 instead\n"));
2894 linfo.li_line_range = 1;
2895 }
2896
2897 reset_state_machine (linfo.li_default_is_stmt);
2898
2899 /* Display the contents of the Opcodes table. */
2900 standard_opcodes = hdrptr;
2901
2902 /* PR 17512: file: 002-417945-0.004. */
2903 if (standard_opcodes + linfo.li_opcode_base >= end)
2904 {
2905 warn (_("Line Base extends beyond end of section\n"));
2906 return 0;
2907 }
2908
2909 printf (_("\n Opcodes:\n"));
2910
2911 for (i = 1; i < linfo.li_opcode_base; i++)
2912 printf (_(" Opcode %d has %d args\n"), i, standard_opcodes[i - 1]);
2913
2914 /* Display the contents of the Directory table. */
2915 data = standard_opcodes + linfo.li_opcode_base - 1;
2916
2917 if (*data == 0)
2918 printf (_("\n The Directory Table is empty.\n"));
2919 else
2920 {
2921 printf (_("\n The Directory Table (offset 0x%lx):\n"),
2922 (long)(data - start));
2923
2924 while (data < end && *data != 0)
2925 {
2926 printf (" %d\t%.*s\n", ++last_dir_entry, (int) (end - data), data);
2927
2928 data += strnlen ((char *) data, end - data) + 1;
2929 }
2930
2931 /* PR 17512: file: 002-132094-0.004. */
2932 if (data >= end - 1)
2933 break;
2934 }
2935
2936 /* Skip the NUL at the end of the table. */
2937 data++;
2938
2939 /* Display the contents of the File Name table. */
2940 if (*data == 0)
2941 printf (_("\n The File Name Table is empty.\n"));
2942 else
2943 {
2944 printf (_("\n The File Name Table (offset 0x%lx):\n"),
2945 (long)(data - start));
2946 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
2947
2948 while (data < end && *data != 0)
2949 {
2950 unsigned char *name;
2951 unsigned int bytes_read;
2952
2953 printf (" %d\t", ++state_machine_regs.last_file_entry);
2954 name = data;
2955 data += strnlen ((char *) data, end - data) + 1;
2956
2957 printf ("%s\t",
2958 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2959 data += bytes_read;
2960 printf ("%s\t",
2961 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2962 data += bytes_read;
2963 printf ("%s\t",
2964 dwarf_vmatoa ("u", read_uleb128 (data, & bytes_read, end)));
2965 data += bytes_read;
2966 printf ("%.*s\n", (int)(end - name), name);
2967
2968 if (data == end)
2969 {
2970 warn (_("Corrupt file name table entry\n"));
2971 break;
2972 }
2973 }
2974 }
2975
2976 /* Skip the NUL at the end of the table. */
2977 data++;
2978 putchar ('\n');
2979 saved_linfo = linfo;
2980 }
2981
2982 /* Now display the statements. */
2983 if (data >= end_of_sequence)
2984 printf (_(" No Line Number Statements.\n"));
2985 else
2986 {
2987 printf (_(" Line Number Statements:\n"));
2988
2989 while (data < end_of_sequence)
2990 {
2991 unsigned char op_code;
2992 dwarf_signed_vma adv;
2993 dwarf_vma uladv;
2994 unsigned int bytes_read;
2995
2996 printf (" [0x%08lx]", (long)(data - start));
2997
2998 op_code = *data++;
2999
3000 if (op_code >= linfo.li_opcode_base)
3001 {
3002 op_code -= linfo.li_opcode_base;
3003 uladv = (op_code / linfo.li_line_range);
3004 if (linfo.li_max_ops_per_insn == 1)
3005 {
3006 uladv *= linfo.li_min_insn_length;
3007 state_machine_regs.address += uladv;
3008 printf (_(" Special opcode %d: "
3009 "advance Address by %s to 0x%s"),
3010 op_code, dwarf_vmatoa ("u", uladv),
3011 dwarf_vmatoa ("x", state_machine_regs.address));
3012 }
3013 else
3014 {
3015 state_machine_regs.address
3016 += ((state_machine_regs.op_index + uladv)
3017 / linfo.li_max_ops_per_insn)
3018 * linfo.li_min_insn_length;
3019 state_machine_regs.op_index
3020 = (state_machine_regs.op_index + uladv)
3021 % linfo.li_max_ops_per_insn;
3022 printf (_(" Special opcode %d: "
3023 "advance Address by %s to 0x%s[%d]"),
3024 op_code, dwarf_vmatoa ("u", uladv),
3025 dwarf_vmatoa ("x", state_machine_regs.address),
3026 state_machine_regs.op_index);
3027 }
3028 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
3029 state_machine_regs.line += adv;
3030 printf (_(" and Line by %s to %d\n"),
3031 dwarf_vmatoa ("d", adv), state_machine_regs.line);
3032 }
3033 else switch (op_code)
3034 {
3035 case DW_LNS_extended_op:
3036 data += process_extended_line_op (data, linfo.li_default_is_stmt, end);
3037 break;
3038
3039 case DW_LNS_copy:
3040 printf (_(" Copy\n"));
3041 break;
3042
3043 case DW_LNS_advance_pc:
3044 uladv = read_uleb128 (data, & bytes_read, end);
3045 data += bytes_read;
3046 if (linfo.li_max_ops_per_insn == 1)
3047 {
3048 uladv *= linfo.li_min_insn_length;
3049 state_machine_regs.address += uladv;
3050 printf (_(" Advance PC by %s to 0x%s\n"),
3051 dwarf_vmatoa ("u", uladv),
3052 dwarf_vmatoa ("x", state_machine_regs.address));
3053 }
3054 else
3055 {
3056 state_machine_regs.address
3057 += ((state_machine_regs.op_index + uladv)
3058 / linfo.li_max_ops_per_insn)
3059 * linfo.li_min_insn_length;
3060 state_machine_regs.op_index
3061 = (state_machine_regs.op_index + uladv)
3062 % linfo.li_max_ops_per_insn;
3063 printf (_(" Advance PC by %s to 0x%s[%d]\n"),
3064 dwarf_vmatoa ("u", uladv),
3065 dwarf_vmatoa ("x", state_machine_regs.address),
3066 state_machine_regs.op_index);
3067 }
3068 break;
3069
3070 case DW_LNS_advance_line:
3071 adv = read_sleb128 (data, & bytes_read, end);
3072 data += bytes_read;
3073 state_machine_regs.line += adv;
3074 printf (_(" Advance Line by %s to %d\n"),
3075 dwarf_vmatoa ("d", adv),
3076 state_machine_regs.line);
3077 break;
3078
3079 case DW_LNS_set_file:
3080 adv = read_uleb128 (data, & bytes_read, end);
3081 data += bytes_read;
3082 printf (_(" Set File Name to entry %s in the File Name Table\n"),
3083 dwarf_vmatoa ("d", adv));
3084 state_machine_regs.file = adv;
3085 break;
3086
3087 case DW_LNS_set_column:
3088 uladv = read_uleb128 (data, & bytes_read, end);
3089 data += bytes_read;
3090 printf (_(" Set column to %s\n"),
3091 dwarf_vmatoa ("u", uladv));
3092 state_machine_regs.column = uladv;
3093 break;
3094
3095 case DW_LNS_negate_stmt:
3096 adv = state_machine_regs.is_stmt;
3097 adv = ! adv;
3098 printf (_(" Set is_stmt to %s\n"), dwarf_vmatoa ("d", adv));
3099 state_machine_regs.is_stmt = adv;
3100 break;
3101
3102 case DW_LNS_set_basic_block:
3103 printf (_(" Set basic block\n"));
3104 state_machine_regs.basic_block = 1;
3105 break;
3106
3107 case DW_LNS_const_add_pc:
3108 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
3109 if (linfo.li_max_ops_per_insn)
3110 {
3111 uladv *= linfo.li_min_insn_length;
3112 state_machine_regs.address += uladv;
3113 printf (_(" Advance PC by constant %s to 0x%s\n"),
3114 dwarf_vmatoa ("u", uladv),
3115 dwarf_vmatoa ("x", state_machine_regs.address));
3116 }
3117 else
3118 {
3119 state_machine_regs.address
3120 += ((state_machine_regs.op_index + uladv)
3121 / linfo.li_max_ops_per_insn)
3122 * linfo.li_min_insn_length;
3123 state_machine_regs.op_index
3124 = (state_machine_regs.op_index + uladv)
3125 % linfo.li_max_ops_per_insn;
3126 printf (_(" Advance PC by constant %s to 0x%s[%d]\n"),
3127 dwarf_vmatoa ("u", uladv),
3128 dwarf_vmatoa ("x", state_machine_regs.address),
3129 state_machine_regs.op_index);
3130 }
3131 break;
3132
3133 case DW_LNS_fixed_advance_pc:
3134 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
3135 state_machine_regs.address += uladv;
3136 state_machine_regs.op_index = 0;
3137 printf (_(" Advance PC by fixed size amount %s to 0x%s\n"),
3138 dwarf_vmatoa ("u", uladv),
3139 dwarf_vmatoa ("x", state_machine_regs.address));
3140 break;
3141
3142 case DW_LNS_set_prologue_end:
3143 printf (_(" Set prologue_end to true\n"));
3144 break;
3145
3146 case DW_LNS_set_epilogue_begin:
3147 printf (_(" Set epilogue_begin to true\n"));
3148 break;
3149
3150 case DW_LNS_set_isa:
3151 uladv = read_uleb128 (data, & bytes_read, end);
3152 data += bytes_read;
3153 printf (_(" Set ISA to %s\n"), dwarf_vmatoa ("u", uladv));
3154 break;
3155
3156 default:
3157 printf (_(" Unknown opcode %d with operands: "), op_code);
3158
3159 if (standard_opcodes != NULL)
3160 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
3161 {
3162 printf ("0x%s%s", dwarf_vmatoa ("x", read_uleb128 (data,
3163 &bytes_read, end)),
3164 i == 1 ? "" : ", ");
3165 data += bytes_read;
3166 }
3167 putchar ('\n');
3168 break;
3169 }
3170 }
3171 putchar ('\n');
3172 }
3173 }
3174
3175 return 1;
3176 }
3177
3178 typedef struct
3179 {
3180 unsigned char *name;
3181 unsigned int directory_index;
3182 unsigned int modification_date;
3183 unsigned int length;
3184 } File_Entry;
3185
3186 /* Output a decoded representation of the .debug_line section. */
3187
3188 static int
3189 display_debug_lines_decoded (struct dwarf_section *section,
3190 unsigned char *data,
3191 unsigned char *end)
3192 {
3193 static DWARF2_Internal_LineInfo saved_linfo;
3194
3195 printf (_("Decoded dump of debug contents of section %s:\n\n"),
3196 section->name);
3197
3198 while (data < end)
3199 {
3200 /* This loop amounts to one iteration per compilation unit. */
3201 DWARF2_Internal_LineInfo linfo;
3202 unsigned char *standard_opcodes;
3203 unsigned char *end_of_sequence;
3204 int i;
3205 File_Entry *file_table = NULL;
3206 unsigned int n_files = 0;
3207 unsigned char **directory_table = NULL;
3208 unsigned int n_directories = 0;
3209
3210 if (const_strneq (section->name, ".debug_line.")
3211 /* Note: the following does not apply to .debug_line.dwo sections.
3212 These are full debug_line sections. */
3213 && strcmp (section->name, ".debug_line.dwo") != 0)
3214 {
3215 /* See comment in display_debug_lines_raw(). */
3216 end_of_sequence = end;
3217 standard_opcodes = NULL;
3218 linfo = saved_linfo;
3219 /* PR 17531: file: 0522b371. */
3220 if (linfo.li_line_range == 0)
3221 {
3222 warn (_("Partial .debug_line. section encountered without a prior full .debug_line section\n"));
3223 return 0;
3224 }
3225 reset_state_machine (linfo.li_default_is_stmt);
3226 }
3227 else
3228 {
3229 unsigned char *hdrptr;
3230
3231 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
3232 & end_of_sequence)) == NULL)
3233 return 0;
3234
3235 /* PR 17531: file: 0522b371. */
3236 if (linfo.li_line_range == 0)
3237 {
3238 warn (_("Line range of 0 is invalid, using 1 instead\n"));
3239 linfo.li_line_range = 1;
3240 }
3241 reset_state_machine (linfo.li_default_is_stmt);
3242
3243 /* Save a pointer to the contents of the Opcodes table. */
3244 standard_opcodes = hdrptr;
3245
3246 /* Traverse the Directory table just to count entries. */
3247 data = standard_opcodes + linfo.li_opcode_base - 1;
3248 if (*data != 0)
3249 {
3250 unsigned char *ptr_directory_table = data;
3251
3252 while (*data != 0)
3253 {
3254 data += strnlen ((char *) data, end - data) + 1;
3255 n_directories++;
3256 }
3257
3258 /* Go through the directory table again to save the directories. */
3259 directory_table = (unsigned char **)
3260 xmalloc (n_directories * sizeof (unsigned char *));
3261
3262 i = 0;
3263 while (*ptr_directory_table != 0)
3264 {
3265 directory_table[i] = ptr_directory_table;
3266 ptr_directory_table += strnlen ((char *) ptr_directory_table,
3267 ptr_directory_table - end) + 1;
3268 i++;
3269 }
3270 }
3271 /* Skip the NUL at the end of the table. */
3272 data++;
3273
3274 /* Traverse the File Name table just to count the entries. */
3275 if (*data != 0)
3276 {
3277 unsigned char *ptr_file_name_table = data;
3278
3279 while (*data != 0)
3280 {
3281 unsigned int bytes_read;
3282
3283 /* Skip Name, directory index, last modification time and length
3284 of file. */
3285 data += strnlen ((char *) data, end - data) + 1;
3286 read_uleb128 (data, & bytes_read, end);
3287 data += bytes_read;
3288 read_uleb128 (data, & bytes_read, end);
3289 data += bytes_read;
3290 read_uleb128 (data, & bytes_read, end);
3291 data += bytes_read;
3292
3293 n_files++;
3294 }
3295
3296 /* Go through the file table again to save the strings. */
3297 file_table = (File_Entry *) xmalloc (n_files * sizeof (File_Entry));
3298
3299 i = 0;
3300 while (*ptr_file_name_table != 0)
3301 {
3302 unsigned int bytes_read;
3303
3304 file_table[i].name = ptr_file_name_table;
3305 ptr_file_name_table += strnlen ((char *) ptr_file_name_table,
3306 end - ptr_file_name_table) + 1;
3307
3308 /* We are not interested in directory, time or size. */
3309 file_table[i].directory_index = read_uleb128 (ptr_file_name_table,
3310 & bytes_read, end);
3311 ptr_file_name_table += bytes_read;
3312 file_table[i].modification_date = read_uleb128 (ptr_file_name_table,
3313 & bytes_read, end);
3314 ptr_file_name_table += bytes_read;
3315 file_table[i].length = read_uleb128 (ptr_file_name_table, & bytes_read, end);
3316 ptr_file_name_table += bytes_read;
3317 i++;
3318 }
3319 i = 0;
3320
3321 /* Print the Compilation Unit's name and a header. */
3322 if (directory_table == NULL)
3323 {
3324 printf (_("CU: %s:\n"), file_table[0].name);
3325 printf (_("File name Line number Starting address\n"));
3326 }
3327 else
3328 {
3329 unsigned int ix = file_table[0].directory_index;
3330 const char *directory = ix ? (char *)directory_table[ix - 1] : ".";
3331
3332 if (do_wide || strlen (directory) < 76)
3333 printf (_("CU: %s/%s:\n"), directory, file_table[0].name);
3334 else
3335 printf ("%s:\n", file_table[0].name);
3336
3337 printf (_("File name Line number Starting address\n"));
3338 }
3339 }
3340
3341 /* Skip the NUL at the end of the table. */
3342 data++;
3343
3344 saved_linfo = linfo;
3345 }
3346
3347 /* This loop iterates through the Dwarf Line Number Program. */
3348 while (data < end_of_sequence)
3349 {
3350 unsigned char op_code;
3351 int adv;
3352 unsigned long int uladv;
3353 unsigned int bytes_read;
3354 int is_special_opcode = 0;
3355
3356 op_code = *data++;
3357
3358 if (op_code >= linfo.li_opcode_base)
3359 {
3360 op_code -= linfo.li_opcode_base;
3361 uladv = (op_code / linfo.li_line_range);
3362 if (linfo.li_max_ops_per_insn == 1)
3363 {
3364 uladv *= linfo.li_min_insn_length;
3365 state_machine_regs.address += uladv;
3366 }
3367 else
3368 {
3369 state_machine_regs.address
3370 += ((state_machine_regs.op_index + uladv)
3371 / linfo.li_max_ops_per_insn)
3372 * linfo.li_min_insn_length;
3373 state_machine_regs.op_index
3374 = (state_machine_regs.op_index + uladv)
3375 % linfo.li_max_ops_per_insn;
3376 }
3377
3378 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
3379 state_machine_regs.line += adv;
3380 is_special_opcode = 1;
3381 }
3382 else switch (op_code)
3383 {
3384 case DW_LNS_extended_op:
3385 {
3386 unsigned int ext_op_code_len;
3387 unsigned char ext_op_code;
3388 unsigned char *op_code_data = data;
3389
3390 ext_op_code_len = read_uleb128 (op_code_data, &bytes_read,
3391 end_of_sequence);
3392 op_code_data += bytes_read;
3393
3394 if (ext_op_code_len == 0)
3395 {
3396 warn (_("Badly formed extended line op encountered!\n"));
3397 break;
3398 }
3399 ext_op_code_len += bytes_read;
3400 ext_op_code = *op_code_data++;
3401
3402 switch (ext_op_code)
3403 {
3404 case DW_LNE_end_sequence:
3405 reset_state_machine (linfo.li_default_is_stmt);
3406 break;
3407 case DW_LNE_set_address:
3408 SAFE_BYTE_GET_AND_INC (state_machine_regs.address,
3409 op_code_data,
3410 ext_op_code_len - bytes_read - 1,
3411 end);
3412 state_machine_regs.op_index = 0;
3413 break;
3414 case DW_LNE_define_file:
3415 {
3416 file_table = (File_Entry *) xrealloc
3417 (file_table, (n_files + 1) * sizeof (File_Entry));
3418
3419 ++state_machine_regs.last_file_entry;
3420 /* Source file name. */
3421 file_table[n_files].name = op_code_data;
3422 op_code_data += strlen ((char *) op_code_data) + 1;
3423 /* Directory index. */
3424 file_table[n_files].directory_index =
3425 read_uleb128 (op_code_data, & bytes_read,
3426 end_of_sequence);
3427 op_code_data += bytes_read;
3428 /* Last modification time. */
3429 file_table[n_files].modification_date =
3430 read_uleb128 (op_code_data, & bytes_read,
3431 end_of_sequence);
3432 op_code_data += bytes_read;
3433 /* File length. */
3434 file_table[n_files].length =
3435 read_uleb128 (op_code_data, & bytes_read,
3436 end_of_sequence);
3437
3438 n_files++;
3439 break;
3440 }
3441 case DW_LNE_set_discriminator:
3442 case DW_LNE_HP_set_sequence:
3443 /* Simply ignored. */
3444 break;
3445
3446 default:
3447 printf (_("UNKNOWN (%u): length %d\n"),
3448 ext_op_code, ext_op_code_len - bytes_read);
3449 break;
3450 }
3451 data += ext_op_code_len;
3452 break;
3453 }
3454 case DW_LNS_copy:
3455 break;
3456
3457 case DW_LNS_advance_pc:
3458 uladv = read_uleb128 (data, & bytes_read, end);
3459 data += bytes_read;
3460 if (linfo.li_max_ops_per_insn == 1)
3461 {
3462 uladv *= linfo.li_min_insn_length;
3463 state_machine_regs.address += uladv;
3464 }
3465 else
3466 {
3467 state_machine_regs.address
3468 += ((state_machine_regs.op_index + uladv)
3469 / linfo.li_max_ops_per_insn)
3470 * linfo.li_min_insn_length;
3471 state_machine_regs.op_index
3472 = (state_machine_regs.op_index + uladv)
3473 % linfo.li_max_ops_per_insn;
3474 }
3475 break;
3476
3477 case DW_LNS_advance_line:
3478 adv = read_sleb128 (data, & bytes_read, end);
3479 data += bytes_read;
3480 state_machine_regs.line += adv;
3481 break;
3482
3483 case DW_LNS_set_file:
3484 adv = read_uleb128 (data, & bytes_read, end);
3485 data += bytes_read;
3486 state_machine_regs.file = adv;
3487
3488 if (file_table == NULL)
3489 printf (_("\n [Use file table entry %d]\n"), state_machine_regs.file - 1);
3490 else if (file_table[state_machine_regs.file - 1].directory_index == 0)
3491 /* If directory index is 0, that means current directory. */
3492 printf ("\n./%s:[++]\n",
3493 file_table[state_machine_regs.file - 1].name);
3494 else if (directory_table == NULL)
3495 printf (_("\n [Use directory table entry %d]\n"),
3496 file_table[state_machine_regs.file - 1].directory_index - 1);
3497 else
3498 /* The directory index starts counting at 1. */
3499 printf ("\n%s/%s:\n",
3500 directory_table[file_table[state_machine_regs.file - 1].directory_index - 1],
3501 file_table[state_machine_regs.file - 1].name);
3502 break;
3503
3504 case DW_LNS_set_column:
3505 uladv = read_uleb128 (data, & bytes_read, end);
3506 data += bytes_read;
3507 state_machine_regs.column = uladv;
3508 break;
3509
3510 case DW_LNS_negate_stmt:
3511 adv = state_machine_regs.is_stmt;
3512 adv = ! adv;
3513 state_machine_regs.is_stmt = adv;
3514 break;
3515
3516 case DW_LNS_set_basic_block:
3517 state_machine_regs.basic_block = 1;
3518 break;
3519
3520 case DW_LNS_const_add_pc:
3521 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
3522 if (linfo.li_max_ops_per_insn == 1)
3523 {
3524 uladv *= linfo.li_min_insn_length;
3525 state_machine_regs.address += uladv;
3526 }
3527 else
3528 {
3529 state_machine_regs.address
3530 += ((state_machine_regs.op_index + uladv)
3531 / linfo.li_max_ops_per_insn)
3532 * linfo.li_min_insn_length;
3533 state_machine_regs.op_index
3534 = (state_machine_regs.op_index + uladv)
3535 % linfo.li_max_ops_per_insn;
3536 }
3537 break;
3538
3539 case DW_LNS_fixed_advance_pc:
3540 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
3541 state_machine_regs.address += uladv;
3542 state_machine_regs.op_index = 0;
3543 break;
3544
3545 case DW_LNS_set_prologue_end:
3546 break;
3547
3548 case DW_LNS_set_epilogue_begin:
3549 break;
3550
3551 case DW_LNS_set_isa:
3552 uladv = read_uleb128 (data, & bytes_read, end);
3553 data += bytes_read;
3554 printf (_(" Set ISA to %lu\n"), uladv);
3555 break;
3556
3557 default:
3558 printf (_(" Unknown opcode %d with operands: "), op_code);
3559
3560 if (standard_opcodes != NULL)
3561 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
3562 {
3563 printf ("0x%s%s", dwarf_vmatoa ("x", read_uleb128 (data,
3564 &bytes_read, end)),
3565 i == 1 ? "" : ", ");
3566 data += bytes_read;
3567 }
3568 putchar ('\n');
3569 break;
3570 }
3571
3572 /* Only Special opcodes, DW_LNS_copy and DW_LNE_end_sequence adds a row
3573 to the DWARF address/line matrix. */
3574 if ((is_special_opcode) || (op_code == DW_LNE_end_sequence)
3575 || (op_code == DW_LNS_copy))
3576 {
3577 const unsigned int MAX_FILENAME_LENGTH = 35;
3578 char *fileName;
3579 char *newFileName = NULL;
3580 size_t fileNameLength;
3581
3582 if (file_table)
3583 fileName = (char *) file_table[state_machine_regs.file - 1].name;
3584 else
3585 fileName = "<unknown>";
3586
3587 fileNameLength = strlen (fileName);
3588
3589 if ((fileNameLength > MAX_FILENAME_LENGTH) && (!do_wide))
3590 {
3591 newFileName = (char *) xmalloc (MAX_FILENAME_LENGTH + 1);
3592 /* Truncate file name */
3593 strncpy (newFileName,
3594 fileName + fileNameLength - MAX_FILENAME_LENGTH,
3595 MAX_FILENAME_LENGTH + 1);
3596 }
3597 else
3598 {
3599 newFileName = (char *) xmalloc (fileNameLength + 1);
3600 strncpy (newFileName, fileName, fileNameLength + 1);
3601 }
3602
3603 if (!do_wide || (fileNameLength <= MAX_FILENAME_LENGTH))
3604 {
3605 if (linfo.li_max_ops_per_insn == 1)
3606 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x\n",
3607 newFileName, state_machine_regs.line,
3608 state_machine_regs.address);
3609 else
3610 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x[%d]\n",
3611 newFileName, state_machine_regs.line,
3612 state_machine_regs.address,
3613 state_machine_regs.op_index);
3614 }
3615 else
3616 {
3617 if (linfo.li_max_ops_per_insn == 1)
3618 printf ("%s %11d %#18" DWARF_VMA_FMT "x\n",
3619 newFileName, state_machine_regs.line,
3620 state_machine_regs.address);
3621 else
3622 printf ("%s %11d %#18" DWARF_VMA_FMT "x[%d]\n",
3623 newFileName, state_machine_regs.line,
3624 state_machine_regs.address,
3625 state_machine_regs.op_index);
3626 }
3627
3628 if (op_code == DW_LNE_end_sequence)
3629 printf ("\n");
3630
3631 free (newFileName);
3632 }
3633 }
3634
3635 if (file_table)
3636 {
3637 free (file_table);
3638 file_table = NULL;
3639 n_files = 0;
3640 }
3641
3642 if (directory_table)
3643 {
3644 free (directory_table);
3645 directory_table = NULL;
3646 n_directories = 0;
3647 }
3648
3649 putchar ('\n');
3650 }
3651
3652 return 1;
3653 }
3654
3655 static int
3656 display_debug_lines (struct dwarf_section *section, void *file ATTRIBUTE_UNUSED)
3657 {
3658 unsigned char *data = section->start;
3659 unsigned char *end = data + section->size;
3660 int retValRaw = 1;
3661 int retValDecoded = 1;
3662
3663 if (do_debug_lines == 0)
3664 do_debug_lines |= FLAG_DEBUG_LINES_RAW;
3665
3666 if (do_debug_lines & FLAG_DEBUG_LINES_RAW)
3667 retValRaw = display_debug_lines_raw (section, data, end);
3668
3669 if (do_debug_lines & FLAG_DEBUG_LINES_DECODED)
3670 retValDecoded = display_debug_lines_decoded (section, data, end);
3671
3672 if (!retValRaw || !retValDecoded)
3673 return 0;
3674
3675 return 1;
3676 }
3677
3678 static debug_info *
3679 find_debug_info_for_offset (unsigned long offset)
3680 {
3681 unsigned int i;
3682
3683 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
3684 return NULL;
3685
3686 for (i = 0; i < num_debug_info_entries; i++)
3687 if (debug_information[i].cu_offset == offset)
3688 return debug_information + i;
3689
3690 return NULL;
3691 }
3692
3693 static const char *
3694 get_gdb_index_symbol_kind_name (gdb_index_symbol_kind kind)
3695 {
3696 /* See gdb/gdb-index.h. */
3697 static const char * const kinds[] =
3698 {
3699 N_ ("no info"),
3700 N_ ("type"),
3701 N_ ("variable"),
3702 N_ ("function"),
3703 N_ ("other"),
3704 N_ ("unused5"),
3705 N_ ("unused6"),
3706 N_ ("unused7")
3707 };
3708
3709 return _ (kinds[kind]);
3710 }
3711
3712 static int
3713 display_debug_pubnames_worker (struct dwarf_section *section,
3714 void *file ATTRIBUTE_UNUSED,
3715 int is_gnu)
3716 {
3717 DWARF2_Internal_PubNames names;
3718 unsigned char *start = section->start;
3719 unsigned char *end = start + section->size;
3720
3721 /* It does not matter if this load fails,
3722 we test for that later on. */
3723 load_debug_info (file);
3724
3725 printf (_("Contents of the %s section:\n\n"), section->name);
3726
3727 while (start < end)
3728 {
3729 unsigned char *data;
3730 unsigned char *adr;
3731 dwarf_vma offset;
3732 unsigned int offset_size, initial_length_size;
3733
3734 data = start;
3735
3736 SAFE_BYTE_GET_AND_INC (names.pn_length, data, 4, end);
3737 if (names.pn_length == 0xffffffff)
3738 {
3739 SAFE_BYTE_GET_AND_INC (names.pn_length, data, 8, end);
3740 offset_size = 8;
3741 initial_length_size = 12;
3742 }
3743 else
3744 {
3745 offset_size = 4;
3746 initial_length_size = 4;
3747 }
3748
3749 SAFE_BYTE_GET_AND_INC (names.pn_version, data, 2, end);
3750 SAFE_BYTE_GET_AND_INC (names.pn_offset, data, offset_size, end);
3751
3752 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
3753 && num_debug_info_entries > 0
3754 && find_debug_info_for_offset (names.pn_offset) == NULL)
3755 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
3756 (unsigned long) names.pn_offset, section->name);
3757
3758 SAFE_BYTE_GET_AND_INC (names.pn_size, data, offset_size, end);
3759
3760 adr = start + names.pn_length + initial_length_size;
3761 /* PR 17531: file: 7615b6b2. */
3762 if ((dwarf_signed_vma) names.pn_length < 0
3763 /* PR 17531: file: a5dbeaa7. */
3764 || adr < start)
3765 {
3766 warn (_("Negative length for public name: 0x%lx\n"), (long) names.pn_length);
3767 start = end;
3768 }
3769 else
3770 start = adr;
3771
3772 printf (_(" Length: %ld\n"),
3773 (long) names.pn_length);
3774 printf (_(" Version: %d\n"),
3775 names.pn_version);
3776 printf (_(" Offset into .debug_info section: 0x%lx\n"),
3777 (unsigned long) names.pn_offset);
3778 printf (_(" Size of area in .debug_info section: %ld\n"),
3779 (long) names.pn_size);
3780
3781 if (names.pn_version != 2 && names.pn_version != 3)
3782 {
3783 static int warned = 0;
3784
3785 if (! warned)
3786 {
3787 warn (_("Only DWARF 2 and 3 pubnames are currently supported\n"));
3788 warned = 1;
3789 }
3790
3791 continue;
3792 }
3793
3794 if (is_gnu)
3795 printf (_("\n Offset Kind Name\n"));
3796 else
3797 printf (_("\n Offset\tName\n"));
3798
3799 do
3800 {
3801 bfd_size_type maxprint;
3802
3803 SAFE_BYTE_GET (offset, data, offset_size, end);
3804
3805 if (offset != 0)
3806 {
3807 data += offset_size;
3808 if (data >= end)
3809 break;
3810 maxprint = (end - data) - 1;
3811
3812 if (is_gnu)
3813 {
3814 unsigned int kind_data;
3815 gdb_index_symbol_kind kind;
3816 const char *kind_name;
3817 int is_static;
3818
3819 SAFE_BYTE_GET (kind_data, data, 1, end);
3820 data++;
3821 maxprint --;
3822 /* GCC computes the kind as the upper byte in the CU index
3823 word, and then right shifts it by the CU index size.
3824 Left shift KIND to where the gdb-index.h accessor macros
3825 can use it. */
3826 kind_data <<= GDB_INDEX_CU_BITSIZE;
3827 kind = GDB_INDEX_SYMBOL_KIND_VALUE (kind_data);
3828 kind_name = get_gdb_index_symbol_kind_name (kind);
3829 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (kind_data);
3830 printf (" %-6lx %s,%-10s %.*s\n",
3831 (unsigned long) offset, is_static ? _("s") : _("g"),
3832 kind_name, (int) maxprint, data);
3833 }
3834 else
3835 printf (" %-6lx\t%.*s\n",
3836 (unsigned long) offset, (int) maxprint, data);
3837
3838 data += strnlen ((char *) data, maxprint) + 1;
3839 if (data >= end)
3840 break;
3841 }
3842 }
3843 while (offset != 0);
3844 }
3845
3846 printf ("\n");
3847 return 1;
3848 }
3849
3850 static int
3851 display_debug_pubnames (struct dwarf_section *section, void *file)
3852 {
3853 return display_debug_pubnames_worker (section, file, 0);
3854 }
3855
3856 static int
3857 display_debug_gnu_pubnames (struct dwarf_section *section, void *file)
3858 {
3859 return display_debug_pubnames_worker (section, file, 1);
3860 }
3861
3862 static int
3863 display_debug_macinfo (struct dwarf_section *section,
3864 void *file ATTRIBUTE_UNUSED)
3865 {
3866 unsigned char *start = section->start;
3867 unsigned char *end = start + section->size;
3868 unsigned char *curr = start;
3869 unsigned int bytes_read;
3870 enum dwarf_macinfo_record_type op;
3871
3872 printf (_("Contents of the %s section:\n\n"), section->name);
3873
3874 while (curr < end)
3875 {
3876 unsigned int lineno;
3877 const unsigned char *string;
3878
3879 op = (enum dwarf_macinfo_record_type) *curr;
3880 curr++;
3881
3882 switch (op)
3883 {
3884 case DW_MACINFO_start_file:
3885 {
3886 unsigned int filenum;
3887
3888 lineno = read_uleb128 (curr, & bytes_read, end);
3889 curr += bytes_read;
3890 filenum = read_uleb128 (curr, & bytes_read, end);
3891 curr += bytes_read;
3892
3893 printf (_(" DW_MACINFO_start_file - lineno: %d filenum: %d\n"),
3894 lineno, filenum);
3895 }
3896 break;
3897
3898 case DW_MACINFO_end_file:
3899 printf (_(" DW_MACINFO_end_file\n"));
3900 break;
3901
3902 case DW_MACINFO_define:
3903 lineno = read_uleb128 (curr, & bytes_read, end);
3904 curr += bytes_read;
3905 string = curr;
3906 curr += strnlen ((char *) string, end - string) + 1;
3907 printf (_(" DW_MACINFO_define - lineno : %d macro : %s\n"),
3908 lineno, string);
3909 break;
3910
3911 case DW_MACINFO_undef:
3912 lineno = read_uleb128 (curr, & bytes_read, end);
3913 curr += bytes_read;
3914 string = curr;
3915 curr += strnlen ((char *) string, end - string) + 1;
3916 printf (_(" DW_MACINFO_undef - lineno : %d macro : %s\n"),
3917 lineno, string);
3918 break;
3919
3920 case DW_MACINFO_vendor_ext:
3921 {
3922 unsigned int constant;
3923
3924 constant = read_uleb128 (curr, & bytes_read, end);
3925 curr += bytes_read;
3926 string = curr;
3927 curr += strnlen ((char *) string, end - string) + 1;
3928 printf (_(" DW_MACINFO_vendor_ext - constant : %d string : %s\n"),
3929 constant, string);
3930 }
3931 break;
3932 }
3933 }
3934
3935 return 1;
3936 }
3937
3938 /* Given LINE_OFFSET into the .debug_line section, attempt to return
3939 filename and dirname corresponding to file name table entry with index
3940 FILEIDX. Return NULL on failure. */
3941
3942 static unsigned char *
3943 get_line_filename_and_dirname (dwarf_vma line_offset,
3944 dwarf_vma fileidx,
3945 unsigned char **dir_name)
3946 {
3947 struct dwarf_section *section = &debug_displays [line].section;
3948 unsigned char *hdrptr, *dirtable, *file_name;
3949 unsigned int offset_size, initial_length_size;
3950 unsigned int version, opcode_base, bytes_read;
3951 dwarf_vma length, diridx;
3952 const unsigned char * end;
3953
3954 *dir_name = NULL;
3955 if (section->start == NULL
3956 || line_offset >= section->size
3957 || fileidx == 0)
3958 return NULL;
3959
3960 hdrptr = section->start + line_offset;
3961 end = section->start + section->size;
3962
3963 SAFE_BYTE_GET_AND_INC (length, hdrptr, 4, end);
3964 if (length == 0xffffffff)
3965 {
3966 /* This section is 64-bit DWARF 3. */
3967 SAFE_BYTE_GET_AND_INC (length, hdrptr, 8, end);
3968 offset_size = 8;
3969 initial_length_size = 12;
3970 }
3971 else
3972 {
3973 offset_size = 4;
3974 initial_length_size = 4;
3975 }
3976 if (length + initial_length_size > section->size)
3977 return NULL;
3978
3979 SAFE_BYTE_GET_AND_INC (version, hdrptr, 2, end);
3980 if (version != 2 && version != 3 && version != 4)
3981 return NULL;
3982 hdrptr += offset_size + 1;/* Skip prologue_length and min_insn_length. */
3983 if (version >= 4)
3984 hdrptr++; /* Skip max_ops_per_insn. */
3985 hdrptr += 3; /* Skip default_is_stmt, line_base, line_range. */
3986
3987 SAFE_BYTE_GET_AND_INC (opcode_base, hdrptr, 1, end);
3988 if (opcode_base == 0)
3989 return NULL;
3990
3991 hdrptr += opcode_base - 1;
3992 dirtable = hdrptr;
3993 /* Skip over dirname table. */
3994 while (*hdrptr != '\0')
3995 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
3996 hdrptr++; /* Skip the NUL at the end of the table. */
3997 /* Now skip over preceding filename table entries. */
3998 for (; *hdrptr != '\0' && fileidx > 1; fileidx--)
3999 {
4000 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
4001 read_uleb128 (hdrptr, &bytes_read, end);
4002 hdrptr += bytes_read;
4003 read_uleb128 (hdrptr, &bytes_read, end);
4004 hdrptr += bytes_read;
4005 read_uleb128 (hdrptr, &bytes_read, end);
4006 hdrptr += bytes_read;
4007 }
4008 if (hdrptr == end || *hdrptr == '\0')
4009 return NULL;
4010 file_name = hdrptr;
4011 hdrptr += strnlen ((char *) hdrptr, end - hdrptr) + 1;
4012 diridx = read_uleb128 (hdrptr, &bytes_read, end);
4013 if (diridx == 0)
4014 return file_name;
4015 for (; *dirtable != '\0' && diridx > 1; diridx--)
4016 dirtable += strnlen ((char *) dirtable, end - dirtable) + 1;
4017 if (*dirtable == '\0')
4018 return NULL;
4019 *dir_name = dirtable;
4020 return file_name;
4021 }
4022
4023 static int
4024 display_debug_macro (struct dwarf_section *section,
4025 void *file)
4026 {
4027 unsigned char *start = section->start;
4028 unsigned char *end = start + section->size;
4029 unsigned char *curr = start;
4030 unsigned char *extended_op_buf[256];
4031 unsigned int bytes_read;
4032
4033 load_debug_section (str, file);
4034 load_debug_section (line, file);
4035
4036 printf (_("Contents of the %s section:\n\n"), section->name);
4037
4038 while (curr < end)
4039 {
4040 unsigned int lineno, version, flags;
4041 unsigned int offset_size = 4;
4042 const unsigned char *string;
4043 dwarf_vma line_offset = 0, sec_offset = curr - start, offset;
4044 unsigned char **extended_ops = NULL;
4045
4046 SAFE_BYTE_GET_AND_INC (version, curr, 2, end);
4047 if (version != 4)
4048 {
4049 error (_("Only GNU extension to DWARF 4 of %s is currently supported.\n"),
4050 section->name);
4051 return 0;
4052 }
4053
4054 SAFE_BYTE_GET_AND_INC (flags, curr, 1, end);
4055 if (flags & 1)
4056 offset_size = 8;
4057 printf (_(" Offset: 0x%lx\n"),
4058 (unsigned long) sec_offset);
4059 printf (_(" Version: %d\n"), version);
4060 printf (_(" Offset size: %d\n"), offset_size);
4061 if (flags & 2)
4062 {
4063 SAFE_BYTE_GET_AND_INC (line_offset, curr, offset_size, end);
4064 printf (_(" Offset into .debug_line: 0x%lx\n"),
4065 (unsigned long) line_offset);
4066 }
4067 if (flags & 4)
4068 {
4069 unsigned int i, count, op;
4070 dwarf_vma nargs, n;
4071
4072 SAFE_BYTE_GET_AND_INC (count, curr, 1, end);
4073
4074 memset (extended_op_buf, 0, sizeof (extended_op_buf));
4075 extended_ops = extended_op_buf;
4076 if (count)
4077 {
4078 printf (_(" Extension opcode arguments:\n"));
4079 for (i = 0; i < count; i++)
4080 {
4081 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
4082 extended_ops[op] = curr;
4083 nargs = read_uleb128 (curr, &bytes_read, end);
4084 curr += bytes_read;
4085 if (nargs == 0)
4086 printf (_(" DW_MACRO_GNU_%02x has no arguments\n"), op);
4087 else
4088 {
4089 printf (_(" DW_MACRO_GNU_%02x arguments: "), op);
4090 for (n = 0; n < nargs; n++)
4091 {
4092 unsigned int form;
4093
4094 SAFE_BYTE_GET_AND_INC (form, curr, 1, end);
4095 printf ("%s%s", get_FORM_name (form),
4096 n == nargs - 1 ? "\n" : ", ");
4097 switch (form)
4098 {
4099 case DW_FORM_data1:
4100 case DW_FORM_data2:
4101 case DW_FORM_data4:
4102 case DW_FORM_data8:
4103 case DW_FORM_sdata:
4104 case DW_FORM_udata:
4105 case DW_FORM_block:
4106 case DW_FORM_block1:
4107 case DW_FORM_block2:
4108 case DW_FORM_block4:
4109 case DW_FORM_flag:
4110 case DW_FORM_string:
4111 case DW_FORM_strp:
4112 case DW_FORM_sec_offset:
4113 break;
4114 default:
4115 error (_("Invalid extension opcode form %s\n"),
4116 get_FORM_name (form));
4117 return 0;
4118 }
4119 }
4120 }
4121 }
4122 }
4123 }
4124 printf ("\n");
4125
4126 while (1)
4127 {
4128 unsigned int op;
4129
4130 if (curr >= end)
4131 {
4132 error (_(".debug_macro section not zero terminated\n"));
4133 return 0;
4134 }
4135
4136 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
4137 if (op == 0)
4138 break;
4139
4140 switch (op)
4141 {
4142 case DW_MACRO_GNU_start_file:
4143 {
4144 unsigned int filenum;
4145 unsigned char *file_name = NULL, *dir_name = NULL;
4146
4147 lineno = read_uleb128 (curr, &bytes_read, end);
4148 curr += bytes_read;
4149 filenum = read_uleb128 (curr, &bytes_read, end);
4150 curr += bytes_read;
4151
4152 if ((flags & 2) == 0)
4153 error (_("DW_MACRO_GNU_start_file used, but no .debug_line offset provided.\n"));
4154 else
4155 file_name
4156 = get_line_filename_and_dirname (line_offset, filenum,
4157 &dir_name);
4158 if (file_name == NULL)
4159 printf (_(" DW_MACRO_GNU_start_file - lineno: %d filenum: %d\n"),
4160 lineno, filenum);
4161 else
4162 printf (_(" DW_MACRO_GNU_start_file - lineno: %d filenum: %d filename: %s%s%s\n"),
4163 lineno, filenum,
4164 dir_name != NULL ? (const char *) dir_name : "",
4165 dir_name != NULL ? "/" : "", file_name);
4166 }
4167 break;
4168
4169 case DW_MACRO_GNU_end_file:
4170 printf (_(" DW_MACRO_GNU_end_file\n"));
4171 break;
4172
4173 case DW_MACRO_GNU_define:
4174 lineno = read_uleb128 (curr, &bytes_read, end);
4175 curr += bytes_read;
4176 string = curr;
4177 curr += strnlen ((char *) string, end - string) + 1;
4178 printf (_(" DW_MACRO_GNU_define - lineno : %d macro : %s\n"),
4179 lineno, string);
4180 break;
4181
4182 case DW_MACRO_GNU_undef:
4183 lineno = read_uleb128 (curr, &bytes_read, end);
4184 curr += bytes_read;
4185 string = curr;
4186 curr += strnlen ((char *) string, end - string) + 1;
4187 printf (_(" DW_MACRO_GNU_undef - lineno : %d macro : %s\n"),
4188 lineno, string);
4189 break;
4190
4191 case DW_MACRO_GNU_define_indirect:
4192 lineno = read_uleb128 (curr, &bytes_read, end);
4193 curr += bytes_read;
4194 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4195 string = fetch_indirect_string (offset);
4196 printf (_(" DW_MACRO_GNU_define_indirect - lineno : %d macro : %s\n"),
4197 lineno, string);
4198 break;
4199
4200 case DW_MACRO_GNU_undef_indirect:
4201 lineno = read_uleb128 (curr, &bytes_read, end);
4202 curr += bytes_read;
4203 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4204 string = fetch_indirect_string (offset);
4205 printf (_(" DW_MACRO_GNU_undef_indirect - lineno : %d macro : %s\n"),
4206 lineno, string);
4207 break;
4208
4209 case DW_MACRO_GNU_transparent_include:
4210 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4211 printf (_(" DW_MACRO_GNU_transparent_include - offset : 0x%lx\n"),
4212 (unsigned long) offset);
4213 break;
4214
4215 case DW_MACRO_GNU_define_indirect_alt:
4216 lineno = read_uleb128 (curr, &bytes_read, end);
4217 curr += bytes_read;
4218 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4219 printf (_(" DW_MACRO_GNU_define_indirect_alt - lineno : %d macro offset : 0x%lx\n"),
4220 lineno, (unsigned long) offset);
4221 break;
4222
4223 case DW_MACRO_GNU_undef_indirect_alt:
4224 lineno = read_uleb128 (curr, &bytes_read, end);
4225 curr += bytes_read;
4226 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4227 printf (_(" DW_MACRO_GNU_undef_indirect_alt - lineno : %d macro offset : 0x%lx\n"),
4228 lineno, (unsigned long) offset);
4229 break;
4230
4231 case DW_MACRO_GNU_transparent_include_alt:
4232 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
4233 printf (_(" DW_MACRO_GNU_transparent_include_alt - offset : 0x%lx\n"),
4234 (unsigned long) offset);
4235 break;
4236
4237 default:
4238 if (extended_ops == NULL || extended_ops[op] == NULL)
4239 {
4240 error (_(" Unknown macro opcode %02x seen\n"), op);
4241 return 0;
4242 }
4243 else
4244 {
4245 /* Skip over unhandled opcodes. */
4246 dwarf_vma nargs, n;
4247 unsigned char *desc = extended_ops[op];
4248 nargs = read_uleb128 (desc, &bytes_read, end);
4249 desc += bytes_read;
4250 if (nargs == 0)
4251 {
4252 printf (_(" DW_MACRO_GNU_%02x\n"), op);
4253 break;
4254 }
4255 printf (_(" DW_MACRO_GNU_%02x -"), op);
4256 for (n = 0; n < nargs; n++)
4257 {
4258 int val;
4259
4260 SAFE_BYTE_GET_AND_INC (val, desc, 1, end);
4261 curr
4262 = read_and_display_attr_value (0, val,
4263 curr, end, 0, 0, offset_size,
4264 version, NULL, 0, NULL,
4265 NULL);
4266 if (n != nargs - 1)
4267 printf (",");
4268 }
4269 printf ("\n");
4270 }
4271 break;
4272 }
4273 }
4274
4275 printf ("\n");
4276 }
4277
4278 return 1;
4279 }
4280
4281 static int
4282 display_debug_abbrev (struct dwarf_section *section,
4283 void *file ATTRIBUTE_UNUSED)
4284 {
4285 abbrev_entry *entry;
4286 unsigned char *start = section->start;
4287 unsigned char *end = start + section->size;
4288
4289 printf (_("Contents of the %s section:\n\n"), section->name);
4290
4291 do
4292 {
4293 unsigned char *last;
4294
4295 free_abbrevs ();
4296
4297 last = start;
4298 start = process_abbrev_section (start, end);
4299
4300 if (first_abbrev == NULL)
4301 continue;
4302
4303 printf (_(" Number TAG (0x%lx)\n"), (long) (last - section->start));
4304
4305 for (entry = first_abbrev; entry; entry = entry->next)
4306 {
4307 abbrev_attr *attr;
4308
4309 printf (" %ld %s [%s]\n",
4310 entry->entry,
4311 get_TAG_name (entry->tag),
4312 entry->children ? _("has children") : _("no children"));
4313
4314 for (attr = entry->first_attr; attr; attr = attr->next)
4315 printf (" %-18s %s\n",
4316 get_AT_name (attr->attribute),
4317 get_FORM_name (attr->form));
4318 }
4319 }
4320 while (start);
4321
4322 printf ("\n");
4323
4324 return 1;
4325 }
4326
4327 /* Display a location list from a normal (ie, non-dwo) .debug_loc section. */
4328
4329 static void
4330 display_loc_list (struct dwarf_section *section,
4331 unsigned char **start_ptr,
4332 unsigned int debug_info_entry,
4333 unsigned long offset,
4334 unsigned long base_address,
4335 int has_frame_base)
4336 {
4337 unsigned char *start = *start_ptr;
4338 unsigned char *section_end = section->start + section->size;
4339 unsigned long cu_offset;
4340 unsigned int pointer_size;
4341 unsigned int offset_size;
4342 int dwarf_version;
4343
4344 dwarf_vma begin;
4345 dwarf_vma end;
4346 unsigned short length;
4347 int need_frame_base;
4348
4349 if (debug_info_entry >= num_debug_info_entries)
4350 {
4351 warn (_("No debug information available for loc lists of entry: %u\n"),
4352 debug_info_entry);
4353 return;
4354 }
4355
4356 cu_offset = debug_information [debug_info_entry].cu_offset;
4357 pointer_size = debug_information [debug_info_entry].pointer_size;
4358 offset_size = debug_information [debug_info_entry].offset_size;
4359 dwarf_version = debug_information [debug_info_entry].dwarf_version;
4360
4361 if (pointer_size < 2 || pointer_size > 8)
4362 {
4363 warn (_("Invalid pointer size (%d) in debug info for entry %d\n"),
4364 pointer_size, debug_info_entry);
4365 return;
4366 }
4367
4368 while (1)
4369 {
4370 unsigned long off = offset + (start - *start_ptr);
4371
4372 if (start + 2 * pointer_size > section_end)
4373 {
4374 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4375 offset);
4376 break;
4377 }
4378
4379 printf (" %8.8lx ", off);
4380
4381 /* Note: we use sign extension here in order to be sure that we can detect
4382 the -1 escape value. Sign extension into the top 32 bits of a 32-bit
4383 address will not affect the values that we display since we always show
4384 hex values, and always the bottom 32-bits. */
4385 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, section_end);
4386 SAFE_BYTE_GET_AND_INC (end, start, pointer_size, section_end);
4387
4388 if (begin == 0 && end == 0)
4389 {
4390 /* PR 18374: In a object file we can have a location list that
4391 starts with a begin and end of 0 because there are relocations
4392 that need to be applied to the addresses. Actually applying
4393 the relocations now does not help as they will probably resolve
4394 to 0, since the object file has not been fully linked. Real
4395 end of list markers will not have any relocations against them. */
4396 if (! reloc_at (section, off)
4397 && ! reloc_at (section, off + pointer_size))
4398 {
4399 printf (_("<End of list>\n"));
4400 break;
4401 }
4402 }
4403
4404 /* Check base address specifiers. */
4405 if (begin == (dwarf_vma) -1 && end != (dwarf_vma) -1)
4406 {
4407 base_address = end;
4408 print_dwarf_vma (begin, pointer_size);
4409 print_dwarf_vma (end, pointer_size);
4410 printf (_("(base address)\n"));
4411 continue;
4412 }
4413
4414 if (start + 2 > section_end)
4415 {
4416 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4417 offset);
4418 break;
4419 }
4420
4421 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
4422
4423 if (start + length > section_end)
4424 {
4425 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4426 offset);
4427 break;
4428 }
4429
4430 print_dwarf_vma (begin + base_address, pointer_size);
4431 print_dwarf_vma (end + base_address, pointer_size);
4432
4433 putchar ('(');
4434 need_frame_base = decode_location_expression (start,
4435 pointer_size,
4436 offset_size,
4437 dwarf_version,
4438 length,
4439 cu_offset, section);
4440 putchar (')');
4441
4442 if (need_frame_base && !has_frame_base)
4443 printf (_(" [without DW_AT_frame_base]"));
4444
4445 if (begin == end)
4446 fputs (_(" (start == end)"), stdout);
4447 else if (begin > end)
4448 fputs (_(" (start > end)"), stdout);
4449
4450 putchar ('\n');
4451
4452 start += length;
4453 }
4454
4455 *start_ptr = start;
4456 }
4457
4458 /* Print a .debug_addr table index in decimal, surrounded by square brackets,
4459 right-adjusted in a field of length LEN, and followed by a space. */
4460
4461 static void
4462 print_addr_index (unsigned int idx, unsigned int len)
4463 {
4464 static char buf[15];
4465 snprintf (buf, sizeof (buf), "[%d]", idx);
4466 printf ("%*s ", len, buf);
4467 }
4468
4469 /* Display a location list from a .dwo section. It uses address indexes rather
4470 than embedded addresses. This code closely follows display_loc_list, but the
4471 two are sufficiently different that combining things is very ugly. */
4472
4473 static void
4474 display_loc_list_dwo (struct dwarf_section *section,
4475 unsigned char **start_ptr,
4476 unsigned int debug_info_entry,
4477 unsigned long offset,
4478 int has_frame_base)
4479 {
4480 unsigned char *start = *start_ptr;
4481 unsigned char *section_end = section->start + section->size;
4482 unsigned long cu_offset;
4483 unsigned int pointer_size;
4484 unsigned int offset_size;
4485 int dwarf_version;
4486 int entry_type;
4487 unsigned short length;
4488 int need_frame_base;
4489 unsigned int idx;
4490 unsigned int bytes_read;
4491
4492 if (debug_info_entry >= num_debug_info_entries)
4493 {
4494 warn (_("No debug information for loc lists of entry: %u\n"),
4495 debug_info_entry);
4496 return;
4497 }
4498
4499 cu_offset = debug_information [debug_info_entry].cu_offset;
4500 pointer_size = debug_information [debug_info_entry].pointer_size;
4501 offset_size = debug_information [debug_info_entry].offset_size;
4502 dwarf_version = debug_information [debug_info_entry].dwarf_version;
4503
4504 if (pointer_size < 2 || pointer_size > 8)
4505 {
4506 warn (_("Invalid pointer size (%d) in debug info for entry %d\n"),
4507 pointer_size, debug_info_entry);
4508 return;
4509 }
4510
4511 while (1)
4512 {
4513 printf (" %8.8lx ", offset + (start - *start_ptr));
4514
4515 if (start >= section_end)
4516 {
4517 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4518 offset);
4519 break;
4520 }
4521
4522 SAFE_BYTE_GET_AND_INC (entry_type, start, 1, section_end);
4523 switch (entry_type)
4524 {
4525 case 0: /* A terminating entry. */
4526 *start_ptr = start;
4527 printf (_("<End of list>\n"));
4528 return;
4529 case 1: /* A base-address entry. */
4530 idx = read_uleb128 (start, &bytes_read, section_end);
4531 start += bytes_read;
4532 print_addr_index (idx, 8);
4533 printf (" ");
4534 printf (_("(base address selection entry)\n"));
4535 continue;
4536 case 2: /* A start/end entry. */
4537 idx = read_uleb128 (start, &bytes_read, section_end);
4538 start += bytes_read;
4539 print_addr_index (idx, 8);
4540 idx = read_uleb128 (start, &bytes_read, section_end);
4541 start += bytes_read;
4542 print_addr_index (idx, 8);
4543 break;
4544 case 3: /* A start/length entry. */
4545 idx = read_uleb128 (start, &bytes_read, section_end);
4546 start += bytes_read;
4547 print_addr_index (idx, 8);
4548 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4549 printf ("%08x ", idx);
4550 break;
4551 case 4: /* An offset pair entry. */
4552 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4553 printf ("%08x ", idx);
4554 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
4555 printf ("%08x ", idx);
4556 break;
4557 default:
4558 warn (_("Unknown location list entry type 0x%x.\n"), entry_type);
4559 *start_ptr = start;
4560 return;
4561 }
4562
4563 if (start + 2 > section_end)
4564 {
4565 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4566 offset);
4567 break;
4568 }
4569
4570 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
4571 if (start + length > section_end)
4572 {
4573 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
4574 offset);
4575 break;
4576 }
4577
4578 putchar ('(');
4579 need_frame_base = decode_location_expression (start,
4580 pointer_size,
4581 offset_size,
4582 dwarf_version,
4583 length,
4584 cu_offset, section);
4585 putchar (')');
4586
4587 if (need_frame_base && !has_frame_base)
4588 printf (_(" [without DW_AT_frame_base]"));
4589
4590 putchar ('\n');
4591
4592 start += length;
4593 }
4594
4595 *start_ptr = start;
4596 }
4597
4598 /* Sort array of indexes in ascending order of loc_offsets[idx]. */
4599
4600 static dwarf_vma *loc_offsets;
4601
4602 static int
4603 loc_offsets_compar (const void *ap, const void *bp)
4604 {
4605 dwarf_vma a = loc_offsets[*(const unsigned int *) ap];
4606 dwarf_vma b = loc_offsets[*(const unsigned int *) bp];
4607
4608 return (a > b) - (b > a);
4609 }
4610
4611 static int
4612 display_debug_loc (struct dwarf_section *section, void *file)
4613 {
4614 unsigned char *start = section->start;
4615 unsigned long bytes;
4616 unsigned char *section_begin = start;
4617 unsigned int num_loc_list = 0;
4618 unsigned long last_offset = 0;
4619 unsigned int first = 0;
4620 unsigned int i;
4621 unsigned int j;
4622 int seen_first_offset = 0;
4623 int locs_sorted = 1;
4624 unsigned char *next;
4625 unsigned int *array = NULL;
4626 const char *suffix = strrchr (section->name, '.');
4627 int is_dwo = 0;
4628
4629 if (suffix && strcmp (suffix, ".dwo") == 0)
4630 is_dwo = 1;
4631
4632 bytes = section->size;
4633
4634 if (bytes == 0)
4635 {
4636 printf (_("\nThe %s section is empty.\n"), section->name);
4637 return 0;
4638 }
4639
4640 if (load_debug_info (file) == 0)
4641 {
4642 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
4643 section->name);
4644 return 0;
4645 }
4646
4647 /* Check the order of location list in .debug_info section. If
4648 offsets of location lists are in the ascending order, we can
4649 use `debug_information' directly. */
4650 for (i = 0; i < num_debug_info_entries; i++)
4651 {
4652 unsigned int num;
4653
4654 num = debug_information [i].num_loc_offsets;
4655 if (num > num_loc_list)
4656 num_loc_list = num;
4657
4658 /* Check if we can use `debug_information' directly. */
4659 if (locs_sorted && num != 0)
4660 {
4661 if (!seen_first_offset)
4662 {
4663 /* This is the first location list. */
4664 last_offset = debug_information [i].loc_offsets [0];
4665 first = i;
4666 seen_first_offset = 1;
4667 j = 1;
4668 }
4669 else
4670 j = 0;
4671
4672 for (; j < num; j++)
4673 {
4674 if (last_offset >
4675 debug_information [i].loc_offsets [j])
4676 {
4677 locs_sorted = 0;
4678 break;
4679 }
4680 last_offset = debug_information [i].loc_offsets [j];
4681 }
4682 }
4683 }
4684
4685 if (!seen_first_offset)
4686 error (_("No location lists in .debug_info section!\n"));
4687
4688 if (debug_information [first].num_loc_offsets > 0
4689 && debug_information [first].loc_offsets [0] != 0)
4690 warn (_("Location lists in %s section start at 0x%s\n"),
4691 section->name,
4692 dwarf_vmatoa ("x", debug_information [first].loc_offsets [0]));
4693
4694 if (!locs_sorted)
4695 array = (unsigned int *) xcmalloc (num_loc_list, sizeof (unsigned int));
4696 printf (_("Contents of the %s section:\n\n"), section->name);
4697 if (reloc_at (section, 0))
4698 printf (_(" Warning: This section has relocations - addresses seen here may not be accurate.\n\n"));
4699 printf (_(" Offset Begin End Expression\n"));
4700
4701 seen_first_offset = 0;
4702 for (i = first; i < num_debug_info_entries; i++)
4703 {
4704 unsigned long offset;
4705 unsigned long base_address;
4706 unsigned int k;
4707 int has_frame_base;
4708
4709 if (!locs_sorted)
4710 {
4711 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
4712 array[k] = k;
4713 loc_offsets = debug_information [i].loc_offsets;
4714 qsort (array, debug_information [i].num_loc_offsets,
4715 sizeof (*array), loc_offsets_compar);
4716 }
4717
4718 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
4719 {
4720 j = locs_sorted ? k : array[k];
4721 if (k
4722 && debug_information [i].loc_offsets [locs_sorted
4723 ? k - 1 : array [k - 1]]
4724 == debug_information [i].loc_offsets [j])
4725 continue;
4726 has_frame_base = debug_information [i].have_frame_base [j];
4727 offset = debug_information [i].loc_offsets [j];
4728 next = section_begin + offset;
4729 base_address = debug_information [i].base_address;
4730
4731 if (!seen_first_offset)
4732 seen_first_offset = 1;
4733 else
4734 {
4735 if (start < next)
4736 warn (_("There is a hole [0x%lx - 0x%lx] in .debug_loc section.\n"),
4737 (unsigned long) (start - section_begin),
4738 (unsigned long) offset);
4739 else if (start > next)
4740 warn (_("There is an overlap [0x%lx - 0x%lx] in .debug_loc section.\n"),
4741 (unsigned long) (start - section_begin),
4742 (unsigned long) offset);
4743 }
4744 start = next;
4745
4746 if (offset >= bytes)
4747 {
4748 warn (_("Offset 0x%lx is bigger than .debug_loc section size.\n"),
4749 offset);
4750 continue;
4751 }
4752
4753 if (is_dwo)
4754 display_loc_list_dwo (section, &start, i, offset, has_frame_base);
4755 else
4756 display_loc_list (section, &start, i, offset, base_address,
4757 has_frame_base);
4758 }
4759 }
4760
4761 if (start < section->start + section->size)
4762 warn (_("There are %ld unused bytes at the end of section %s\n"),
4763 (long) (section->start + section->size - start), section->name);
4764 putchar ('\n');
4765 free (array);
4766 return 1;
4767 }
4768
4769 static int
4770 display_debug_str (struct dwarf_section *section,
4771 void *file ATTRIBUTE_UNUSED)
4772 {
4773 unsigned char *start = section->start;
4774 unsigned long bytes = section->size;
4775 dwarf_vma addr = section->address;
4776
4777 if (bytes == 0)
4778 {
4779 printf (_("\nThe %s section is empty.\n"), section->name);
4780 return 0;
4781 }
4782
4783 printf (_("Contents of the %s section:\n\n"), section->name);
4784
4785 while (bytes)
4786 {
4787 int j;
4788 int k;
4789 int lbytes;
4790
4791 lbytes = (bytes > 16 ? 16 : bytes);
4792
4793 printf (" 0x%8.8lx ", (unsigned long) addr);
4794
4795 for (j = 0; j < 16; j++)
4796 {
4797 if (j < lbytes)
4798 printf ("%2.2x", start[j]);
4799 else
4800 printf (" ");
4801
4802 if ((j & 3) == 3)
4803 printf (" ");
4804 }
4805
4806 for (j = 0; j < lbytes; j++)
4807 {
4808 k = start[j];
4809 if (k >= ' ' && k < 0x80)
4810 printf ("%c", k);
4811 else
4812 printf (".");
4813 }
4814
4815 putchar ('\n');
4816
4817 start += lbytes;
4818 addr += lbytes;
4819 bytes -= lbytes;
4820 }
4821
4822 putchar ('\n');
4823
4824 return 1;
4825 }
4826
4827 static int
4828 display_debug_info (struct dwarf_section *section, void *file)
4829 {
4830 return process_debug_info (section, file, section->abbrev_sec, 0, 0);
4831 }
4832
4833 static int
4834 display_debug_types (struct dwarf_section *section, void *file)
4835 {
4836 return process_debug_info (section, file, section->abbrev_sec, 0, 1);
4837 }
4838
4839 static int
4840 display_trace_info (struct dwarf_section *section, void *file)
4841 {
4842 return process_debug_info (section, file, section->abbrev_sec, 0, 0);
4843 }
4844
4845 static int
4846 display_debug_aranges (struct dwarf_section *section,
4847 void *file ATTRIBUTE_UNUSED)
4848 {
4849 unsigned char *start = section->start;
4850 unsigned char *end = start + section->size;
4851
4852 printf (_("Contents of the %s section:\n\n"), section->name);
4853
4854 /* It does not matter if this load fails,
4855 we test for that later on. */
4856 load_debug_info (file);
4857
4858 while (start < end)
4859 {
4860 unsigned char *hdrptr;
4861 DWARF2_Internal_ARange arange;
4862 unsigned char *addr_ranges;
4863 dwarf_vma length;
4864 dwarf_vma address;
4865 unsigned char address_size;
4866 int excess;
4867 unsigned int offset_size;
4868 unsigned int initial_length_size;
4869
4870 hdrptr = start;
4871
4872 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 4, end);
4873 if (arange.ar_length == 0xffffffff)
4874 {
4875 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 8, end);
4876 offset_size = 8;
4877 initial_length_size = 12;
4878 }
4879 else
4880 {
4881 offset_size = 4;
4882 initial_length_size = 4;
4883 }
4884
4885 SAFE_BYTE_GET_AND_INC (arange.ar_version, hdrptr, 2, end);
4886 SAFE_BYTE_GET_AND_INC (arange.ar_info_offset, hdrptr, offset_size, end);
4887
4888 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
4889 && num_debug_info_entries > 0
4890 && find_debug_info_for_offset (arange.ar_info_offset) == NULL)
4891 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
4892 (unsigned long) arange.ar_info_offset, section->name);
4893
4894 SAFE_BYTE_GET_AND_INC (arange.ar_pointer_size, hdrptr, 1, end);
4895 SAFE_BYTE_GET_AND_INC (arange.ar_segment_size, hdrptr, 1, end);
4896
4897 if (arange.ar_version != 2 && arange.ar_version != 3)
4898 {
4899 warn (_("Only DWARF 2 and 3 aranges are currently supported.\n"));
4900 break;
4901 }
4902
4903 printf (_(" Length: %ld\n"),
4904 (long) arange.ar_length);
4905 printf (_(" Version: %d\n"), arange.ar_version);
4906 printf (_(" Offset into .debug_info: 0x%lx\n"),
4907 (unsigned long) arange.ar_info_offset);
4908 printf (_(" Pointer Size: %d\n"), arange.ar_pointer_size);
4909 printf (_(" Segment Size: %d\n"), arange.ar_segment_size);
4910
4911 address_size = arange.ar_pointer_size + arange.ar_segment_size;
4912
4913 /* PR 17512: file: 001-108546-0.001:0.1. */
4914 if (address_size == 0 || address_size > 8)
4915 {
4916 error (_("Invalid address size in %s section!\n"),
4917 section->name);
4918 break;
4919 }
4920
4921 /* The DWARF spec does not require that the address size be a power
4922 of two, but we do. This will have to change if we ever encounter
4923 an uneven architecture. */
4924 if ((address_size & (address_size - 1)) != 0)
4925 {
4926 warn (_("Pointer size + Segment size is not a power of two.\n"));
4927 break;
4928 }
4929
4930 if (address_size > 4)
4931 printf (_("\n Address Length\n"));
4932 else
4933 printf (_("\n Address Length\n"));
4934
4935 addr_ranges = hdrptr;
4936
4937 /* Must pad to an alignment boundary that is twice the address size. */
4938 excess = (hdrptr - start) % (2 * address_size);
4939 if (excess)
4940 addr_ranges += (2 * address_size) - excess;
4941
4942 hdrptr = start + arange.ar_length + initial_length_size;
4943 if (hdrptr < start || hdrptr > end)
4944 {
4945 error (_("Excessive header length: %lx\n"), (long) arange.ar_length);
4946 break;
4947 }
4948 start = hdrptr;
4949
4950 while (addr_ranges + 2 * address_size <= start)
4951 {
4952 SAFE_BYTE_GET_AND_INC (address, addr_ranges, address_size, end);
4953 SAFE_BYTE_GET_AND_INC (length, addr_ranges, address_size, end);
4954
4955 printf (" ");
4956 print_dwarf_vma (address, address_size);
4957 print_dwarf_vma (length, address_size);
4958 putchar ('\n');
4959 }
4960 }
4961
4962 printf ("\n");
4963
4964 return 1;
4965 }
4966
4967 /* Comparison function for qsort. */
4968 static int
4969 comp_addr_base (const void * v0, const void * v1)
4970 {
4971 debug_info * info0 = (debug_info *) v0;
4972 debug_info * info1 = (debug_info *) v1;
4973 return info0->addr_base - info1->addr_base;
4974 }
4975
4976 /* Display the debug_addr section. */
4977 static int
4978 display_debug_addr (struct dwarf_section *section,
4979 void *file)
4980 {
4981 debug_info **debug_addr_info;
4982 unsigned char *entry;
4983 unsigned char *end;
4984 unsigned int i;
4985 unsigned int count;
4986
4987 if (section->size == 0)
4988 {
4989 printf (_("\nThe %s section is empty.\n"), section->name);
4990 return 0;
4991 }
4992
4993 if (load_debug_info (file) == 0)
4994 {
4995 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
4996 section->name);
4997 return 0;
4998 }
4999
5000 printf (_("Contents of the %s section:\n\n"), section->name);
5001
5002 /* PR 17531: file: cf38d01b.
5003 We use xcalloc because a corrupt file may not have initialised all of the
5004 fields in the debug_info structure, which means that the sort below might
5005 try to move uninitialised data. */
5006 debug_addr_info = (debug_info **) xcalloc ((num_debug_info_entries + 1),
5007 sizeof (debug_info *));
5008
5009 count = 0;
5010 for (i = 0; i < num_debug_info_entries; i++)
5011 if (debug_information [i].addr_base != DEBUG_INFO_UNAVAILABLE)
5012 {
5013 /* PR 17531: file: cf38d01b. */
5014 if (debug_information[i].addr_base >= section->size)
5015 warn (_("Corrupt address base (%lx) found in debug section %u\n"),
5016 (unsigned long) debug_information[i].addr_base, i);
5017 else
5018 debug_addr_info [count++] = debug_information + i;
5019 }
5020
5021 /* Add a sentinel to make iteration convenient. */
5022 debug_addr_info [count] = (debug_info *) xmalloc (sizeof (debug_info));
5023 debug_addr_info [count]->addr_base = section->size;
5024 qsort (debug_addr_info, count, sizeof (debug_info *), comp_addr_base);
5025
5026 for (i = 0; i < count; i++)
5027 {
5028 unsigned int idx;
5029 unsigned int address_size = debug_addr_info [i]->pointer_size;
5030
5031 printf (_(" For compilation unit at offset 0x%s:\n"),
5032 dwarf_vmatoa ("x", debug_addr_info [i]->cu_offset));
5033
5034 printf (_("\tIndex\tAddress\n"));
5035 entry = section->start + debug_addr_info [i]->addr_base;
5036 end = section->start + debug_addr_info [i + 1]->addr_base;
5037 idx = 0;
5038 while (entry < end)
5039 {
5040 dwarf_vma base = byte_get (entry, address_size);
5041 printf (_("\t%d:\t"), idx);
5042 print_dwarf_vma (base, address_size);
5043 printf ("\n");
5044 entry += address_size;
5045 idx++;
5046 }
5047 }
5048 printf ("\n");
5049
5050 free (debug_addr_info);
5051 return 1;
5052 }
5053
5054 /* Display the .debug_str_offsets and .debug_str_offsets.dwo sections. */
5055 static int
5056 display_debug_str_offsets (struct dwarf_section *section,
5057 void *file ATTRIBUTE_UNUSED)
5058 {
5059 if (section->size == 0)
5060 {
5061 printf (_("\nThe %s section is empty.\n"), section->name);
5062 return 0;
5063 }
5064 /* TODO: Dump the contents. This is made somewhat difficult by not knowing
5065 what the offset size is for this section. */
5066 return 1;
5067 }
5068
5069 /* Each debug_information[x].range_lists[y] gets this representation for
5070 sorting purposes. */
5071
5072 struct range_entry
5073 {
5074 /* The debug_information[x].range_lists[y] value. */
5075 unsigned long ranges_offset;
5076
5077 /* Original debug_information to find parameters of the data. */
5078 debug_info *debug_info_p;
5079 };
5080
5081 /* Sort struct range_entry in ascending order of its RANGES_OFFSET. */
5082
5083 static int
5084 range_entry_compar (const void *ap, const void *bp)
5085 {
5086 const struct range_entry *a_re = (const struct range_entry *) ap;
5087 const struct range_entry *b_re = (const struct range_entry *) bp;
5088 const unsigned long a = a_re->ranges_offset;
5089 const unsigned long b = b_re->ranges_offset;
5090
5091 return (a > b) - (b > a);
5092 }
5093
5094 static int
5095 display_debug_ranges (struct dwarf_section *section,
5096 void *file ATTRIBUTE_UNUSED)
5097 {
5098 unsigned char *start = section->start;
5099 unsigned char *last_start = start;
5100 unsigned long bytes = section->size;
5101 unsigned char *section_begin = start;
5102 unsigned char *finish = start + bytes;
5103 unsigned int num_range_list, i;
5104 struct range_entry *range_entries, *range_entry_fill;
5105
5106 if (bytes == 0)
5107 {
5108 printf (_("\nThe %s section is empty.\n"), section->name);
5109 return 0;
5110 }
5111
5112 if (load_debug_info (file) == 0)
5113 {
5114 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
5115 section->name);
5116 return 0;
5117 }
5118
5119 num_range_list = 0;
5120 for (i = 0; i < num_debug_info_entries; i++)
5121 num_range_list += debug_information [i].num_range_lists;
5122
5123 if (num_range_list == 0)
5124 {
5125 /* This can happen when the file was compiled with -gsplit-debug
5126 which removes references to range lists from the primary .o file. */
5127 printf (_("No range lists in .debug_info section.\n"));
5128 return 1;
5129 }
5130
5131 range_entries = (struct range_entry *)
5132 xmalloc (sizeof (*range_entries) * num_range_list);
5133 range_entry_fill = range_entries;
5134
5135 for (i = 0; i < num_debug_info_entries; i++)
5136 {
5137 debug_info *debug_info_p = &debug_information[i];
5138 unsigned int j;
5139
5140 for (j = 0; j < debug_info_p->num_range_lists; j++)
5141 {
5142 range_entry_fill->ranges_offset = debug_info_p->range_lists[j];
5143 range_entry_fill->debug_info_p = debug_info_p;
5144 range_entry_fill++;
5145 }
5146 }
5147
5148 qsort (range_entries, num_range_list, sizeof (*range_entries),
5149 range_entry_compar);
5150
5151 if (dwarf_check != 0 && range_entries[0].ranges_offset != 0)
5152 warn (_("Range lists in %s section start at 0x%lx\n"),
5153 section->name, range_entries[0].ranges_offset);
5154
5155 printf (_("Contents of the %s section:\n\n"), section->name);
5156 printf (_(" Offset Begin End\n"));
5157
5158 for (i = 0; i < num_range_list; i++)
5159 {
5160 struct range_entry *range_entry = &range_entries[i];
5161 debug_info *debug_info_p = range_entry->debug_info_p;
5162 unsigned int pointer_size;
5163 unsigned long offset;
5164 unsigned char *next;
5165 unsigned long base_address;
5166
5167 pointer_size = debug_info_p->pointer_size;
5168 offset = range_entry->ranges_offset;
5169 next = section_begin + offset;
5170 base_address = debug_info_p->base_address;
5171
5172 /* PR 17512: file: 001-101485-0.001:0.1. */
5173 if (pointer_size < 2 || pointer_size > 8)
5174 {
5175 warn (_("Corrupt pointer size (%d) in debug entry at offset %8.8lx\n"),
5176 pointer_size, offset);
5177 continue;
5178 }
5179
5180 if (dwarf_check != 0 && i > 0)
5181 {
5182 if (start < next)
5183 warn (_("There is a hole [0x%lx - 0x%lx] in %s section.\n"),
5184 (unsigned long) (start - section_begin),
5185 (unsigned long) (next - section_begin), section->name);
5186 else if (start > next)
5187 {
5188 if (next == last_start)
5189 continue;
5190 warn (_("There is an overlap [0x%lx - 0x%lx] in %s section.\n"),
5191 (unsigned long) (start - section_begin),
5192 (unsigned long) (next - section_begin), section->name);
5193 }
5194 }
5195 start = next;
5196 last_start = next;
5197
5198 while (start < finish)
5199 {
5200 dwarf_vma begin;
5201 dwarf_vma end;
5202
5203 /* Note: we use sign extension here in order to be sure that
5204 we can detect the -1 escape value. Sign extension into the
5205 top 32 bits of a 32-bit address will not affect the values
5206 that we display since we always show hex values, and always
5207 the bottom 32-bits. */
5208 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, finish);
5209 if (start >= finish)
5210 break;
5211 SAFE_SIGNED_BYTE_GET_AND_INC (end, start, pointer_size, finish);
5212
5213 printf (" %8.8lx ", offset);
5214
5215 if (begin == 0 && end == 0)
5216 {
5217 printf (_("<End of list>\n"));
5218 break;
5219 }
5220
5221 /* Check base address specifiers. */
5222 if (begin == (dwarf_vma) -1 && end != (dwarf_vma) -1)
5223 {
5224 base_address = end;
5225 print_dwarf_vma (begin, pointer_size);
5226 print_dwarf_vma (end, pointer_size);
5227 printf ("(base address)\n");
5228 continue;
5229 }
5230
5231 print_dwarf_vma (begin + base_address, pointer_size);
5232 print_dwarf_vma (end + base_address, pointer_size);
5233
5234 if (begin == end)
5235 fputs (_("(start == end)"), stdout);
5236 else if (begin > end)
5237 fputs (_("(start > end)"), stdout);
5238
5239 putchar ('\n');
5240 }
5241 }
5242 putchar ('\n');
5243
5244 free (range_entries);
5245
5246 return 1;
5247 }
5248
5249 typedef struct Frame_Chunk
5250 {
5251 struct Frame_Chunk *next;
5252 unsigned char *chunk_start;
5253 unsigned int ncols;
5254 /* DW_CFA_{undefined,same_value,offset,register,unreferenced} */
5255 short int *col_type;
5256 int *col_offset;
5257 char *augmentation;
5258 unsigned int code_factor;
5259 int data_factor;
5260 dwarf_vma pc_begin;
5261 dwarf_vma pc_range;
5262 int cfa_reg;
5263 dwarf_vma cfa_offset;
5264 unsigned int ra;
5265 unsigned char fde_encoding;
5266 unsigned char cfa_exp;
5267 unsigned char ptr_size;
5268 unsigned char segment_size;
5269 }
5270 Frame_Chunk;
5271
5272 static const char *const *dwarf_regnames;
5273 static unsigned int dwarf_regnames_count;
5274
5275 /* A marker for a col_type that means this column was never referenced
5276 in the frame info. */
5277 #define DW_CFA_unreferenced (-1)
5278
5279 /* Return 0 if no more space is needed, 1 if more space is needed,
5280 -1 for invalid reg. */
5281
5282 static int
5283 frame_need_space (Frame_Chunk *fc, unsigned int reg)
5284 {
5285 unsigned int prev = fc->ncols;
5286
5287 if (reg < (unsigned int) fc->ncols)
5288 return 0;
5289
5290 if (dwarf_regnames_count
5291 && reg > dwarf_regnames_count)
5292 return -1;
5293
5294 fc->ncols = reg + 1;
5295 /* PR 17512: file: 10450-2643-0.004.
5296 If reg == -1 then this can happen... */
5297 if (fc->ncols == 0)
5298 return -1;
5299
5300 /* PR 17512: file: 2844a11d. */
5301 if (fc->ncols > 1024)
5302 {
5303 error (_("Unfeasibly large register number: %u\n"), reg);
5304 fc->ncols = 0;
5305 /* FIXME: 1024 is an arbitrary limit. Increase it if
5306 we ever encounter a valid binary that exceeds it. */
5307 return -1;
5308 }
5309
5310 fc->col_type = (short int *) xcrealloc (fc->col_type, fc->ncols,
5311 sizeof (short int));
5312 fc->col_offset = (int *) xcrealloc (fc->col_offset, fc->ncols, sizeof (int));
5313 /* PR 17512: file:002-10025-0.005. */
5314 if (fc->col_type == NULL || fc->col_offset == NULL)
5315 {
5316 error (_("Out of memory allocating %u columns in dwarf frame arrays\n"),
5317 fc->ncols);
5318 fc->ncols = 0;
5319 return -1;
5320 }
5321
5322 while (prev < fc->ncols)
5323 {
5324 fc->col_type[prev] = DW_CFA_unreferenced;
5325 fc->col_offset[prev] = 0;
5326 prev++;
5327 }
5328 return 1;
5329 }
5330
5331 static const char *const dwarf_regnames_i386[] =
5332 {
5333 "eax", "ecx", "edx", "ebx", /* 0 - 3 */
5334 "esp", "ebp", "esi", "edi", /* 4 - 7 */
5335 "eip", "eflags", NULL, /* 8 - 10 */
5336 "st0", "st1", "st2", "st3", /* 11 - 14 */
5337 "st4", "st5", "st6", "st7", /* 15 - 18 */
5338 NULL, NULL, /* 19 - 20 */
5339 "xmm0", "xmm1", "xmm2", "xmm3", /* 21 - 24 */
5340 "xmm4", "xmm5", "xmm6", "xmm7", /* 25 - 28 */
5341 "mm0", "mm1", "mm2", "mm3", /* 29 - 32 */
5342 "mm4", "mm5", "mm6", "mm7", /* 33 - 36 */
5343 "fcw", "fsw", "mxcsr", /* 37 - 39 */
5344 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL, /* 40 - 47 */
5345 "tr", "ldtr", /* 48 - 49 */
5346 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 50 - 57 */
5347 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 58 - 65 */
5348 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 66 - 73 */
5349 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 74 - 81 */
5350 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 82 - 89 */
5351 NULL, NULL, NULL, /* 90 - 92 */
5352 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7" /* 93 - 100 */
5353 };
5354
5355 static const char *const dwarf_regnames_iamcu[] =
5356 {
5357 "eax", "ecx", "edx", "ebx", /* 0 - 3 */
5358 "esp", "ebp", "esi", "edi", /* 4 - 7 */
5359 "eip", "eflags", NULL, /* 8 - 10 */
5360 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 11 - 18 */
5361 NULL, NULL, /* 19 - 20 */
5362 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 21 - 28 */
5363 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 29 - 36 */
5364 NULL, NULL, NULL, /* 37 - 39 */
5365 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL, /* 40 - 47 */
5366 "tr", "ldtr", /* 48 - 49 */
5367 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 50 - 57 */
5368 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 58 - 65 */
5369 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 66 - 73 */
5370 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 74 - 81 */
5371 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 82 - 89 */
5372 NULL, NULL, NULL, /* 90 - 92 */
5373 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL /* 93 - 100 */
5374 };
5375
5376 void
5377 init_dwarf_regnames_i386 (void)
5378 {
5379 dwarf_regnames = dwarf_regnames_i386;
5380 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_i386);
5381 }
5382
5383 void
5384 init_dwarf_regnames_iamcu (void)
5385 {
5386 dwarf_regnames = dwarf_regnames_iamcu;
5387 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_iamcu);
5388 }
5389
5390 static const char *const dwarf_regnames_x86_64[] =
5391 {
5392 "rax", "rdx", "rcx", "rbx",
5393 "rsi", "rdi", "rbp", "rsp",
5394 "r8", "r9", "r10", "r11",
5395 "r12", "r13", "r14", "r15",
5396 "rip",
5397 "xmm0", "xmm1", "xmm2", "xmm3",
5398 "xmm4", "xmm5", "xmm6", "xmm7",
5399 "xmm8", "xmm9", "xmm10", "xmm11",
5400 "xmm12", "xmm13", "xmm14", "xmm15",
5401 "st0", "st1", "st2", "st3",
5402 "st4", "st5", "st6", "st7",
5403 "mm0", "mm1", "mm2", "mm3",
5404 "mm4", "mm5", "mm6", "mm7",
5405 "rflags",
5406 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL,
5407 "fs.base", "gs.base", NULL, NULL,
5408 "tr", "ldtr",
5409 "mxcsr", "fcw", "fsw",
5410 "xmm16", "xmm17", "xmm18", "xmm19",
5411 "xmm20", "xmm21", "xmm22", "xmm23",
5412 "xmm24", "xmm25", "xmm26", "xmm27",
5413 "xmm28", "xmm29", "xmm30", "xmm31",
5414 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 83 - 90 */
5415 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 91 - 98 */
5416 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 99 - 106 */
5417 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 107 - 114 */
5418 NULL, NULL, NULL, /* 115 - 117 */
5419 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7"
5420 };
5421
5422 void
5423 init_dwarf_regnames_x86_64 (void)
5424 {
5425 dwarf_regnames = dwarf_regnames_x86_64;
5426 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_x86_64);
5427 }
5428
5429 static const char *const dwarf_regnames_aarch64[] =
5430 {
5431 "x0", "x1", "x2", "x3", "x4", "x5", "x6", "x7",
5432 "x8", "x9", "x10", "x11", "x12", "x13", "x14", "x15",
5433 "x16", "x17", "x18", "x19", "x20", "x21", "x22", "x23",
5434 "x24", "x25", "x26", "x27", "x28", "x29", "x30", "sp",
5435 NULL, "elr", NULL, NULL, NULL, NULL, NULL, NULL,
5436 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
5437 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
5438 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
5439 "v0", "v1", "v2", "v3", "v4", "v5", "v6", "v7",
5440 "v8", "v9", "v10", "v11", "v12", "v13", "v14", "v15",
5441 "v16", "v17", "v18", "v19", "v20", "v21", "v22", "v23",
5442 "v24", "v25", "v26", "v27", "v28", "v29", "v30", "v31",
5443 };
5444
5445 void
5446 init_dwarf_regnames_aarch64 (void)
5447 {
5448 dwarf_regnames = dwarf_regnames_aarch64;
5449 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_aarch64);
5450 }
5451
5452 void
5453 init_dwarf_regnames (unsigned int e_machine)
5454 {
5455 switch (e_machine)
5456 {
5457 case EM_386:
5458 init_dwarf_regnames_i386 ();
5459 break;
5460
5461 case EM_IAMCU:
5462 init_dwarf_regnames_iamcu ();
5463 break;
5464
5465 case EM_X86_64:
5466 case EM_L1OM:
5467 case EM_K1OM:
5468 init_dwarf_regnames_x86_64 ();
5469 break;
5470
5471 case EM_AARCH64:
5472 init_dwarf_regnames_aarch64 ();
5473 break;
5474
5475 default:
5476 break;
5477 }
5478 }
5479
5480 static const char *
5481 regname (unsigned int regno, int row)
5482 {
5483 static char reg[64];
5484 if (dwarf_regnames
5485 && regno < dwarf_regnames_count
5486 && dwarf_regnames [regno] != NULL)
5487 {
5488 if (row)
5489 return dwarf_regnames [regno];
5490 snprintf (reg, sizeof (reg), "r%d (%s)", regno,
5491 dwarf_regnames [regno]);
5492 }
5493 else
5494 snprintf (reg, sizeof (reg), "r%d", regno);
5495 return reg;
5496 }
5497
5498 static void
5499 frame_display_row (Frame_Chunk *fc, int *need_col_headers, unsigned int *max_regs)
5500 {
5501 unsigned int r;
5502 char tmp[100];
5503
5504 if (*max_regs < fc->ncols)
5505 *max_regs = fc->ncols;
5506
5507 if (*need_col_headers)
5508 {
5509 static const char *sloc = " LOC";
5510
5511 *need_col_headers = 0;
5512
5513 printf ("%-*s CFA ", eh_addr_size * 2, sloc);
5514
5515 for (r = 0; r < *max_regs; r++)
5516 if (fc->col_type[r] != DW_CFA_unreferenced)
5517 {
5518 if (r == fc->ra)
5519 printf ("ra ");
5520 else
5521 printf ("%-5s ", regname (r, 1));
5522 }
5523
5524 printf ("\n");
5525 }
5526
5527 print_dwarf_vma (fc->pc_begin, eh_addr_size);
5528 if (fc->cfa_exp)
5529 strcpy (tmp, "exp");
5530 else
5531 sprintf (tmp, "%s%+d", regname (fc->cfa_reg, 1), (int) fc->cfa_offset);
5532 printf ("%-8s ", tmp);
5533
5534 for (r = 0; r < fc->ncols; r++)
5535 {
5536 if (fc->col_type[r] != DW_CFA_unreferenced)
5537 {
5538 switch (fc->col_type[r])
5539 {
5540 case DW_CFA_undefined:
5541 strcpy (tmp, "u");
5542 break;
5543 case DW_CFA_same_value:
5544 strcpy (tmp, "s");
5545 break;
5546 case DW_CFA_offset:
5547 sprintf (tmp, "c%+d", fc->col_offset[r]);
5548 break;
5549 case DW_CFA_val_offset:
5550 sprintf (tmp, "v%+d", fc->col_offset[r]);
5551 break;
5552 case DW_CFA_register:
5553 sprintf (tmp, "%s", regname (fc->col_offset[r], 0));
5554 break;
5555 case DW_CFA_expression:
5556 strcpy (tmp, "exp");
5557 break;
5558 case DW_CFA_val_expression:
5559 strcpy (tmp, "vexp");
5560 break;
5561 default:
5562 strcpy (tmp, "n/a");
5563 break;
5564 }
5565 printf ("%-5s ", tmp);
5566 }
5567 }
5568 printf ("\n");
5569 }
5570
5571 #define GET(VAR, N) SAFE_BYTE_GET_AND_INC (VAR, start, N, end)
5572 #define LEB() read_uleb128 (start, & length_return, end); start += length_return
5573 #define SLEB() read_sleb128 (start, & length_return, end); start += length_return
5574
5575 static unsigned char *
5576 read_cie (unsigned char *start, unsigned char *end,
5577 Frame_Chunk **p_cie, int *p_version,
5578 unsigned long *p_aug_len, unsigned char **p_aug)
5579 {
5580 int version;
5581 Frame_Chunk *fc;
5582 unsigned int length_return;
5583 unsigned char *augmentation_data = NULL;
5584 unsigned long augmentation_data_len = 0;
5585
5586 * p_cie = NULL;
5587 /* PR 17512: file: 001-228113-0.004. */
5588 if (start >= end)
5589 return end;
5590
5591 fc = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
5592 memset (fc, 0, sizeof (Frame_Chunk));
5593
5594 fc->col_type = (short int *) xmalloc (sizeof (short int));
5595 fc->col_offset = (int *) xmalloc (sizeof (int));
5596
5597 version = *start++;
5598
5599 fc->augmentation = (char *) start;
5600 /* PR 17512: file: 001-228113-0.004.
5601 Skip past augmentation name, but avoid running off the end of the data. */
5602 while (start < end)
5603 if (* start ++ == '\0')
5604 break;
5605 if (start == end)
5606 {
5607 warn (_("No terminator for augmentation name\n"));
5608 return start;
5609 }
5610
5611 if (strcmp (fc->augmentation, "eh") == 0)
5612 start += eh_addr_size;
5613
5614 if (version >= 4)
5615 {
5616 GET (fc->ptr_size, 1);
5617 if (fc->ptr_size < 1 || fc->ptr_size > 8)
5618 {
5619 warn (_("Invalid pointer size (%d) in CIE data\n"), fc->ptr_size);
5620 return end;
5621 }
5622
5623 GET (fc->segment_size, 1);
5624 /* PR 17512: file: e99d2804. */
5625 if (fc->segment_size > 8 || fc->segment_size + fc->ptr_size > 8)
5626 {
5627 warn (_("Invalid segment size (%d) in CIE data\n"), fc->segment_size);
5628 return end;
5629 }
5630
5631 eh_addr_size = fc->ptr_size;
5632 }
5633 else
5634 {
5635 fc->ptr_size = eh_addr_size;
5636 fc->segment_size = 0;
5637 }
5638 fc->code_factor = LEB ();
5639 fc->data_factor = SLEB ();
5640 if (version == 1)
5641 {
5642 GET (fc->ra, 1);
5643 }
5644 else
5645 {
5646 fc->ra = LEB ();
5647 }
5648
5649 if (fc->augmentation[0] == 'z')
5650 {
5651 augmentation_data_len = LEB ();
5652 augmentation_data = start;
5653 start += augmentation_data_len;
5654 /* PR 17512: file: 11042-2589-0.004. */
5655 if (start > end)
5656 {
5657 warn (_("Augmentation data too long: 0x%lx\n"), augmentation_data_len);
5658 return end;
5659 }
5660 }
5661
5662 if (augmentation_data_len)
5663 {
5664 unsigned char *p;
5665 unsigned char *q;
5666 unsigned char *qend;
5667
5668 p = (unsigned char *) fc->augmentation + 1;
5669 q = augmentation_data;
5670 qend = q + augmentation_data_len;
5671
5672 /* PR 17531: file: 015adfaa. */
5673 if (qend < q)
5674 {
5675 warn (_("Negative augmentation data length: 0x%lx"), augmentation_data_len);
5676 augmentation_data_len = 0;
5677 }
5678
5679 while (p < end && q < augmentation_data + augmentation_data_len)
5680 {
5681 if (*p == 'L')
5682 q++;
5683 else if (*p == 'P')
5684 q += 1 + size_of_encoded_value (*q);
5685 else if (*p == 'R')
5686 fc->fde_encoding = *q++;
5687 else if (*p == 'S')
5688 ;
5689 else
5690 break;
5691 p++;
5692 }
5693 /* Note - it is OK if this loop terminates with q < qend.
5694 Padding may have been inserted to align the end of the CIE. */
5695 }
5696
5697 *p_cie = fc;
5698 if (p_version)
5699 *p_version = version;
5700 if (p_aug_len)
5701 {
5702 *p_aug_len = augmentation_data_len;
5703 *p_aug = augmentation_data;
5704 }
5705 return start;
5706 }
5707
5708 static int
5709 display_debug_frames (struct dwarf_section *section,
5710 void *file ATTRIBUTE_UNUSED)
5711 {
5712 unsigned char *start = section->start;
5713 unsigned char *end = start + section->size;
5714 unsigned char *section_start = start;
5715 Frame_Chunk *chunks = 0, *forward_refs = 0;
5716 Frame_Chunk *remembered_state = 0;
5717 Frame_Chunk *rs;
5718 int is_eh = strcmp (section->name, ".eh_frame") == 0;
5719 unsigned int length_return;
5720 unsigned int max_regs = 0;
5721 const char *bad_reg = _("bad register: ");
5722 unsigned int saved_eh_addr_size = eh_addr_size;
5723
5724 printf (_("Contents of the %s section:\n"), section->name);
5725
5726 while (start < end)
5727 {
5728 unsigned char *saved_start;
5729 unsigned char *block_end;
5730 dwarf_vma length;
5731 dwarf_vma cie_id;
5732 Frame_Chunk *fc;
5733 Frame_Chunk *cie;
5734 int need_col_headers = 1;
5735 unsigned char *augmentation_data = NULL;
5736 unsigned long augmentation_data_len = 0;
5737 unsigned int encoded_ptr_size = saved_eh_addr_size;
5738 unsigned int offset_size;
5739 unsigned int initial_length_size;
5740
5741 saved_start = start;
5742
5743 SAFE_BYTE_GET_AND_INC (length, start, 4, end);
5744
5745 if (length == 0)
5746 {
5747 printf ("\n%08lx ZERO terminator\n\n",
5748 (unsigned long)(saved_start - section_start));
5749 /* Skip any zero terminators that directly follow.
5750 A corrupt section size could have loaded a whole
5751 slew of zero filled memory bytes. eg
5752 PR 17512: file: 070-19381-0.004. */
5753 while (start < end && * start == 0)
5754 ++ start;
5755 continue;
5756 }
5757
5758 if (length == 0xffffffff)
5759 {
5760 SAFE_BYTE_GET_AND_INC (length, start, 8, end);
5761 offset_size = 8;
5762 initial_length_size = 12;
5763 }
5764 else
5765 {
5766 offset_size = 4;
5767 initial_length_size = 4;
5768 }
5769
5770 block_end = saved_start + length + initial_length_size;
5771 if (block_end > end || block_end < start)
5772 {
5773 warn ("Invalid length 0x%s in FDE at %#08lx\n",
5774 dwarf_vmatoa_1 (NULL, length, offset_size),
5775 (unsigned long) (saved_start - section_start));
5776 block_end = end;
5777 }
5778
5779 SAFE_BYTE_GET_AND_INC (cie_id, start, offset_size, end);
5780
5781 if (is_eh ? (cie_id == 0) : ((offset_size == 4 && cie_id == DW_CIE_ID)
5782 || (offset_size == 8 && cie_id == DW64_CIE_ID)))
5783 {
5784 int version;
5785 unsigned int mreg;
5786
5787 start = read_cie (start, end, &cie, &version,
5788 &augmentation_data_len, &augmentation_data);
5789 /* PR 17512: file: 027-135133-0.005. */
5790 if (cie == NULL)
5791 break;
5792
5793 fc = cie;
5794 fc->next = chunks;
5795 chunks = fc;
5796 fc->chunk_start = saved_start;
5797 mreg = max_regs > 0 ? max_regs - 1 : 0;
5798 if (mreg < fc->ra)
5799 mreg = fc->ra;
5800 if (frame_need_space (fc, mreg) < 0)
5801 break;
5802 if (fc->fde_encoding)
5803 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
5804
5805 printf ("\n%08lx ", (unsigned long) (saved_start - section_start));
5806 print_dwarf_vma (length, fc->ptr_size);
5807 print_dwarf_vma (cie_id, offset_size);
5808
5809 if (do_debug_frames_interp)
5810 {
5811 printf ("CIE \"%s\" cf=%d df=%d ra=%d\n", fc->augmentation,
5812 fc->code_factor, fc->data_factor, fc->ra);
5813 }
5814 else
5815 {
5816 printf ("CIE\n");
5817 printf (" Version: %d\n", version);
5818 printf (" Augmentation: \"%s\"\n", fc->augmentation);
5819 if (version >= 4)
5820 {
5821 printf (" Pointer Size: %u\n", fc->ptr_size);
5822 printf (" Segment Size: %u\n", fc->segment_size);
5823 }
5824 printf (" Code alignment factor: %u\n", fc->code_factor);
5825 printf (" Data alignment factor: %d\n", fc->data_factor);
5826 printf (" Return address column: %d\n", fc->ra);
5827
5828 if (augmentation_data_len)
5829 {
5830 unsigned long i;
5831
5832 printf (" Augmentation data: ");
5833 for (i = 0; i < augmentation_data_len; ++i)
5834 /* FIXME: If do_wide is FALSE, then we should
5835 add carriage returns at 80 columns... */
5836 printf (" %02x", augmentation_data[i]);
5837 putchar ('\n');
5838 }
5839 putchar ('\n');
5840 }
5841 }
5842 else
5843 {
5844 unsigned char *look_for;
5845 static Frame_Chunk fde_fc;
5846 unsigned long segment_selector;
5847
5848 if (is_eh)
5849 {
5850 dwarf_vma sign = (dwarf_vma) 1 << (offset_size * 8 - 1);
5851 look_for = start - 4 - ((cie_id ^ sign) - sign);
5852 }
5853 else
5854 look_for = section_start + cie_id;
5855
5856 if (look_for <= saved_start)
5857 {
5858 for (cie = chunks; cie ; cie = cie->next)
5859 if (cie->chunk_start == look_for)
5860 break;
5861 }
5862 else
5863 {
5864 for (cie = forward_refs; cie ; cie = cie->next)
5865 if (cie->chunk_start == look_for)
5866 break;
5867 if (!cie)
5868 {
5869 unsigned int off_size;
5870 unsigned char *cie_scan;
5871
5872 cie_scan = look_for;
5873 off_size = 4;
5874 SAFE_BYTE_GET_AND_INC (length, cie_scan, 4, end);
5875 if (length == 0xffffffff)
5876 {
5877 SAFE_BYTE_GET_AND_INC (length, cie_scan, 8, end);
5878 off_size = 8;
5879 }
5880 if (length != 0)
5881 {
5882 dwarf_vma c_id;
5883
5884 SAFE_BYTE_GET_AND_INC (c_id, cie_scan, off_size, end);
5885 if (is_eh
5886 ? c_id == 0
5887 : ((off_size == 4 && c_id == DW_CIE_ID)
5888 || (off_size == 8 && c_id == DW64_CIE_ID)))
5889 {
5890 int version;
5891 unsigned int mreg;
5892
5893 read_cie (cie_scan, end, &cie, &version,
5894 &augmentation_data_len, &augmentation_data);
5895 /* PR 17512: file: 3450-2098-0.004. */
5896 if (cie == NULL)
5897 {
5898 warn (_("Failed to read CIE information\n"));
5899 break;
5900 }
5901 cie->next = forward_refs;
5902 forward_refs = cie;
5903 cie->chunk_start = look_for;
5904 mreg = max_regs > 0 ? max_regs - 1 : 0;
5905 if (mreg < cie->ra)
5906 mreg = cie->ra;
5907 if (frame_need_space (cie, mreg) < 0)
5908 {
5909 warn (_("Invalid max register\n"));
5910 break;
5911 }
5912 if (cie->fde_encoding)
5913 encoded_ptr_size
5914 = size_of_encoded_value (cie->fde_encoding);
5915 }
5916 }
5917 }
5918 }
5919
5920 fc = &fde_fc;
5921 memset (fc, 0, sizeof (Frame_Chunk));
5922
5923 if (!cie)
5924 {
5925 warn ("Invalid CIE pointer 0x%s in FDE at %#08lx\n",
5926 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
5927 (unsigned long) (saved_start - section_start));
5928 fc->ncols = 0;
5929 fc->col_type = (short int *) xmalloc (sizeof (short int));
5930 fc->col_offset = (int *) xmalloc (sizeof (int));
5931 if (frame_need_space (fc, max_regs > 0 ? max_regs - 1 : 0) < 0)
5932 {
5933 warn (_("Invalid max register\n"));
5934 break;
5935 }
5936 cie = fc;
5937 fc->augmentation = "";
5938 fc->fde_encoding = 0;
5939 fc->ptr_size = eh_addr_size;
5940 fc->segment_size = 0;
5941 }
5942 else
5943 {
5944 fc->ncols = cie->ncols;
5945 fc->col_type = (short int *) xcmalloc (fc->ncols, sizeof (short int));
5946 fc->col_offset = (int *) xcmalloc (fc->ncols, sizeof (int));
5947 memcpy (fc->col_type, cie->col_type, fc->ncols * sizeof (short int));
5948 memcpy (fc->col_offset, cie->col_offset, fc->ncols * sizeof (int));
5949 fc->augmentation = cie->augmentation;
5950 fc->ptr_size = cie->ptr_size;
5951 eh_addr_size = cie->ptr_size;
5952 fc->segment_size = cie->segment_size;
5953 fc->code_factor = cie->code_factor;
5954 fc->data_factor = cie->data_factor;
5955 fc->cfa_reg = cie->cfa_reg;
5956 fc->cfa_offset = cie->cfa_offset;
5957 fc->ra = cie->ra;
5958 if (frame_need_space (fc, max_regs > 0 ? max_regs - 1: 0) < 0)
5959 {
5960 warn (_("Invalid max register\n"));
5961 break;
5962 }
5963 fc->fde_encoding = cie->fde_encoding;
5964 }
5965
5966 if (fc->fde_encoding)
5967 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
5968
5969 segment_selector = 0;
5970 if (fc->segment_size)
5971 {
5972 if (fc->segment_size > sizeof (segment_selector))
5973 {
5974 /* PR 17512: file: 9e196b3e. */
5975 warn (_("Probably corrupt segment size: %d - using 4 instead\n"), fc->segment_size);
5976 fc->segment_size = 4;
5977 }
5978 SAFE_BYTE_GET_AND_INC (segment_selector, start, fc->segment_size, end);
5979 }
5980
5981 fc->pc_begin = get_encoded_value (&start, fc->fde_encoding, section, end);
5982
5983 /* FIXME: It appears that sometimes the final pc_range value is
5984 encoded in less than encoded_ptr_size bytes. See the x86_64
5985 run of the "objcopy on compressed debug sections" test for an
5986 example of this. */
5987 SAFE_BYTE_GET_AND_INC (fc->pc_range, start, encoded_ptr_size, end);
5988
5989 if (cie->augmentation[0] == 'z')
5990 {
5991 augmentation_data_len = LEB ();
5992 augmentation_data = start;
5993 start += augmentation_data_len;
5994 /* PR 17512: file: 722-8446-0.004. */
5995 if (start >= end || ((signed long) augmentation_data_len) < 0)
5996 {
5997 warn (_("Corrupt augmentation data length: %lx\n"),
5998 augmentation_data_len);
5999 start = end;
6000 augmentation_data = NULL;
6001 augmentation_data_len = 0;
6002 }
6003 }
6004
6005 printf ("\n%08lx %s %s FDE cie=%08lx pc=",
6006 (unsigned long)(saved_start - section_start),
6007 dwarf_vmatoa_1 (NULL, length, fc->ptr_size),
6008 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
6009 (unsigned long)(cie->chunk_start - section_start));
6010
6011 if (fc->segment_size)
6012 printf ("%04lx:", segment_selector);
6013
6014 printf ("%s..%s\n",
6015 dwarf_vmatoa_1 (NULL, fc->pc_begin, fc->ptr_size),
6016 dwarf_vmatoa_1 (NULL, fc->pc_begin + fc->pc_range, fc->ptr_size));
6017
6018 if (! do_debug_frames_interp && augmentation_data_len)
6019 {
6020 unsigned long i;
6021
6022 printf (" Augmentation data: ");
6023 for (i = 0; i < augmentation_data_len; ++i)
6024 printf (" %02x", augmentation_data[i]);
6025 putchar ('\n');
6026 putchar ('\n');
6027 }
6028 }
6029
6030 /* At this point, fc is the current chunk, cie (if any) is set, and
6031 we're about to interpret instructions for the chunk. */
6032 /* ??? At present we need to do this always, since this sizes the
6033 fc->col_type and fc->col_offset arrays, which we write into always.
6034 We should probably split the interpreted and non-interpreted bits
6035 into two different routines, since there's so much that doesn't
6036 really overlap between them. */
6037 if (1 || do_debug_frames_interp)
6038 {
6039 /* Start by making a pass over the chunk, allocating storage
6040 and taking note of what registers are used. */
6041 unsigned char *tmp = start;
6042
6043 while (start < block_end)
6044 {
6045 unsigned int reg, op, opa;
6046 unsigned long temp;
6047 unsigned char * new_start;
6048
6049 op = *start++;
6050 opa = op & 0x3f;
6051 if (op & 0xc0)
6052 op &= 0xc0;
6053
6054 /* Warning: if you add any more cases to this switch, be
6055 sure to add them to the corresponding switch below. */
6056 switch (op)
6057 {
6058 case DW_CFA_advance_loc:
6059 break;
6060 case DW_CFA_offset:
6061 LEB ();
6062 if (frame_need_space (fc, opa) >= 0)
6063 fc->col_type[opa] = DW_CFA_undefined;
6064 break;
6065 case DW_CFA_restore:
6066 if (frame_need_space (fc, opa) >= 0)
6067 fc->col_type[opa] = DW_CFA_undefined;
6068 break;
6069 case DW_CFA_set_loc:
6070 start += encoded_ptr_size;
6071 break;
6072 case DW_CFA_advance_loc1:
6073 start += 1;
6074 break;
6075 case DW_CFA_advance_loc2:
6076 start += 2;
6077 break;
6078 case DW_CFA_advance_loc4:
6079 start += 4;
6080 break;
6081 case DW_CFA_offset_extended:
6082 case DW_CFA_val_offset:
6083 reg = LEB (); LEB ();
6084 if (frame_need_space (fc, reg) >= 0)
6085 fc->col_type[reg] = DW_CFA_undefined;
6086 break;
6087 case DW_CFA_restore_extended:
6088 reg = LEB ();
6089 if (frame_need_space (fc, reg) >= 0)
6090 fc->col_type[reg] = DW_CFA_undefined;
6091 break;
6092 case DW_CFA_undefined:
6093 reg = LEB ();
6094 if (frame_need_space (fc, reg) >= 0)
6095 fc->col_type[reg] = DW_CFA_undefined;
6096 break;
6097 case DW_CFA_same_value:
6098 reg = LEB ();
6099 if (frame_need_space (fc, reg) >= 0)
6100 fc->col_type[reg] = DW_CFA_undefined;
6101 break;
6102 case DW_CFA_register:
6103 reg = LEB (); LEB ();
6104 if (frame_need_space (fc, reg) >= 0)
6105 fc->col_type[reg] = DW_CFA_undefined;
6106 break;
6107 case DW_CFA_def_cfa:
6108 LEB (); LEB ();
6109 break;
6110 case DW_CFA_def_cfa_register:
6111 LEB ();
6112 break;
6113 case DW_CFA_def_cfa_offset:
6114 LEB ();
6115 break;
6116 case DW_CFA_def_cfa_expression:
6117 temp = LEB ();
6118 new_start = start + temp;
6119 if (new_start < start)
6120 {
6121 warn (_("Corrupt CFA_def expression value: %lu\n"), temp);
6122 start = block_end;
6123 }
6124 else
6125 start = new_start;
6126 break;
6127 case DW_CFA_expression:
6128 case DW_CFA_val_expression:
6129 reg = LEB ();
6130 temp = LEB ();
6131 new_start = start + temp;
6132 if (new_start < start)
6133 {
6134 /* PR 17512: file:306-192417-0.005. */
6135 warn (_("Corrupt CFA expression value: %lu\n"), temp);
6136 start = block_end;
6137 }
6138 else
6139 start = new_start;
6140 if (frame_need_space (fc, reg) >= 0)
6141 fc->col_type[reg] = DW_CFA_undefined;
6142 break;
6143 case DW_CFA_offset_extended_sf:
6144 case DW_CFA_val_offset_sf:
6145 reg = LEB (); SLEB ();
6146 if (frame_need_space (fc, reg) >= 0)
6147 fc->col_type[reg] = DW_CFA_undefined;
6148 break;
6149 case DW_CFA_def_cfa_sf:
6150 LEB (); SLEB ();
6151 break;
6152 case DW_CFA_def_cfa_offset_sf:
6153 SLEB ();
6154 break;
6155 case DW_CFA_MIPS_advance_loc8:
6156 start += 8;
6157 break;
6158 case DW_CFA_GNU_args_size:
6159 LEB ();
6160 break;
6161 case DW_CFA_GNU_negative_offset_extended:
6162 reg = LEB (); LEB ();
6163 if (frame_need_space (fc, reg) >= 0)
6164 fc->col_type[reg] = DW_CFA_undefined;
6165 break;
6166 default:
6167 break;
6168 }
6169 }
6170 start = tmp;
6171 }
6172
6173 /* Now we know what registers are used, make a second pass over
6174 the chunk, this time actually printing out the info. */
6175
6176 while (start < block_end)
6177 {
6178 unsigned char * tmp;
6179 unsigned op, opa;
6180 unsigned long ul, reg, roffs;
6181 dwarf_vma l;
6182 dwarf_vma ofs;
6183 dwarf_vma vma;
6184 const char *reg_prefix = "";
6185
6186 op = *start++;
6187 opa = op & 0x3f;
6188 if (op & 0xc0)
6189 op &= 0xc0;
6190
6191 /* Warning: if you add any more cases to this switch, be
6192 sure to add them to the corresponding switch above. */
6193 switch (op)
6194 {
6195 case DW_CFA_advance_loc:
6196 if (do_debug_frames_interp)
6197 frame_display_row (fc, &need_col_headers, &max_regs);
6198 else
6199 printf (" DW_CFA_advance_loc: %d to %s\n",
6200 opa * fc->code_factor,
6201 dwarf_vmatoa_1 (NULL,
6202 fc->pc_begin + opa * fc->code_factor,
6203 fc->ptr_size));
6204 fc->pc_begin += opa * fc->code_factor;
6205 break;
6206
6207 case DW_CFA_offset:
6208 roffs = LEB ();
6209 if (opa >= (unsigned int) fc->ncols)
6210 reg_prefix = bad_reg;
6211 if (! do_debug_frames_interp || *reg_prefix != '\0')
6212 printf (" DW_CFA_offset: %s%s at cfa%+ld\n",
6213 reg_prefix, regname (opa, 0),
6214 roffs * fc->data_factor);
6215 if (*reg_prefix == '\0')
6216 {
6217 fc->col_type[opa] = DW_CFA_offset;
6218 fc->col_offset[opa] = roffs * fc->data_factor;
6219 }
6220 break;
6221
6222 case DW_CFA_restore:
6223 if (opa >= (unsigned int) cie->ncols
6224 || opa >= (unsigned int) fc->ncols)
6225 reg_prefix = bad_reg;
6226 if (! do_debug_frames_interp || *reg_prefix != '\0')
6227 printf (" DW_CFA_restore: %s%s\n",
6228 reg_prefix, regname (opa, 0));
6229 if (*reg_prefix == '\0')
6230 {
6231 fc->col_type[opa] = cie->col_type[opa];
6232 fc->col_offset[opa] = cie->col_offset[opa];
6233 if (do_debug_frames_interp
6234 && fc->col_type[opa] == DW_CFA_unreferenced)
6235 fc->col_type[opa] = DW_CFA_undefined;
6236 }
6237 break;
6238
6239 case DW_CFA_set_loc:
6240 vma = get_encoded_value (&start, fc->fde_encoding, section, block_end);
6241 if (do_debug_frames_interp)
6242 frame_display_row (fc, &need_col_headers, &max_regs);
6243 else
6244 printf (" DW_CFA_set_loc: %s\n",
6245 dwarf_vmatoa_1 (NULL, vma, fc->ptr_size));
6246 fc->pc_begin = vma;
6247 break;
6248
6249 case DW_CFA_advance_loc1:
6250 SAFE_BYTE_GET_AND_INC (ofs, start, 1, end);
6251 if (do_debug_frames_interp)
6252 frame_display_row (fc, &need_col_headers, &max_regs);
6253 else
6254 printf (" DW_CFA_advance_loc1: %ld to %s\n",
6255 (unsigned long) (ofs * fc->code_factor),
6256 dwarf_vmatoa_1 (NULL,
6257 fc->pc_begin + ofs * fc->code_factor,
6258 fc->ptr_size));
6259 fc->pc_begin += ofs * fc->code_factor;
6260 break;
6261
6262 case DW_CFA_advance_loc2:
6263 SAFE_BYTE_GET_AND_INC (ofs, start, 2, block_end);
6264 if (do_debug_frames_interp)
6265 frame_display_row (fc, &need_col_headers, &max_regs);
6266 else
6267 printf (" DW_CFA_advance_loc2: %ld to %s\n",
6268 (unsigned long) (ofs * fc->code_factor),
6269 dwarf_vmatoa_1 (NULL,
6270 fc->pc_begin + ofs * fc->code_factor,
6271 fc->ptr_size));
6272 fc->pc_begin += ofs * fc->code_factor;
6273 break;
6274
6275 case DW_CFA_advance_loc4:
6276 SAFE_BYTE_GET_AND_INC (ofs, start, 4, block_end);
6277 if (do_debug_frames_interp)
6278 frame_display_row (fc, &need_col_headers, &max_regs);
6279 else
6280 printf (" DW_CFA_advance_loc4: %ld to %s\n",
6281 (unsigned long) (ofs * fc->code_factor),
6282 dwarf_vmatoa_1 (NULL,
6283 fc->pc_begin + ofs * fc->code_factor,
6284 fc->ptr_size));
6285 fc->pc_begin += ofs * fc->code_factor;
6286 break;
6287
6288 case DW_CFA_offset_extended:
6289 reg = LEB ();
6290 roffs = LEB ();
6291 if (reg >= (unsigned int) fc->ncols)
6292 reg_prefix = bad_reg;
6293 if (! do_debug_frames_interp || *reg_prefix != '\0')
6294 printf (" DW_CFA_offset_extended: %s%s at cfa%+ld\n",
6295 reg_prefix, regname (reg, 0),
6296 roffs * fc->data_factor);
6297 if (*reg_prefix == '\0')
6298 {
6299 fc->col_type[reg] = DW_CFA_offset;
6300 fc->col_offset[reg] = roffs * fc->data_factor;
6301 }
6302 break;
6303
6304 case DW_CFA_val_offset:
6305 reg = LEB ();
6306 roffs = LEB ();
6307 if (reg >= (unsigned int) fc->ncols)
6308 reg_prefix = bad_reg;
6309 if (! do_debug_frames_interp || *reg_prefix != '\0')
6310 printf (" DW_CFA_val_offset: %s%s at cfa%+ld\n",
6311 reg_prefix, regname (reg, 0),
6312 roffs * fc->data_factor);
6313 if (*reg_prefix == '\0')
6314 {
6315 fc->col_type[reg] = DW_CFA_val_offset;
6316 fc->col_offset[reg] = roffs * fc->data_factor;
6317 }
6318 break;
6319
6320 case DW_CFA_restore_extended:
6321 reg = LEB ();
6322 if (reg >= (unsigned int) cie->ncols
6323 || reg >= (unsigned int) fc->ncols)
6324 reg_prefix = bad_reg;
6325 if (! do_debug_frames_interp || *reg_prefix != '\0')
6326 printf (" DW_CFA_restore_extended: %s%s\n",
6327 reg_prefix, regname (reg, 0));
6328 if (*reg_prefix == '\0')
6329 {
6330 fc->col_type[reg] = cie->col_type[reg];
6331 fc->col_offset[reg] = cie->col_offset[reg];
6332 }
6333 break;
6334
6335 case DW_CFA_undefined:
6336 reg = LEB ();
6337 if (reg >= (unsigned int) fc->ncols)
6338 reg_prefix = bad_reg;
6339 if (! do_debug_frames_interp || *reg_prefix != '\0')
6340 printf (" DW_CFA_undefined: %s%s\n",
6341 reg_prefix, regname (reg, 0));
6342 if (*reg_prefix == '\0')
6343 {
6344 fc->col_type[reg] = DW_CFA_undefined;
6345 fc->col_offset[reg] = 0;
6346 }
6347 break;
6348
6349 case DW_CFA_same_value:
6350 reg = LEB ();
6351 if (reg >= (unsigned int) fc->ncols)
6352 reg_prefix = bad_reg;
6353 if (! do_debug_frames_interp || *reg_prefix != '\0')
6354 printf (" DW_CFA_same_value: %s%s\n",
6355 reg_prefix, regname (reg, 0));
6356 if (*reg_prefix == '\0')
6357 {
6358 fc->col_type[reg] = DW_CFA_same_value;
6359 fc->col_offset[reg] = 0;
6360 }
6361 break;
6362
6363 case DW_CFA_register:
6364 reg = LEB ();
6365 roffs = LEB ();
6366 if (reg >= (unsigned int) fc->ncols)
6367 reg_prefix = bad_reg;
6368 if (! do_debug_frames_interp || *reg_prefix != '\0')
6369 {
6370 printf (" DW_CFA_register: %s%s in ",
6371 reg_prefix, regname (reg, 0));
6372 puts (regname (roffs, 0));
6373 }
6374 if (*reg_prefix == '\0')
6375 {
6376 fc->col_type[reg] = DW_CFA_register;
6377 fc->col_offset[reg] = roffs;
6378 }
6379 break;
6380
6381 case DW_CFA_remember_state:
6382 if (! do_debug_frames_interp)
6383 printf (" DW_CFA_remember_state\n");
6384 rs = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
6385 rs->cfa_offset = fc->cfa_offset;
6386 rs->cfa_reg = fc->cfa_reg;
6387 rs->ra = fc->ra;
6388 rs->cfa_exp = fc->cfa_exp;
6389 rs->ncols = fc->ncols;
6390 rs->col_type = (short int *) xcmalloc (rs->ncols,
6391 sizeof (* rs->col_type));
6392 rs->col_offset = (int *) xcmalloc (rs->ncols, sizeof (* rs->col_offset));
6393 memcpy (rs->col_type, fc->col_type, rs->ncols * sizeof (* fc->col_type));
6394 memcpy (rs->col_offset, fc->col_offset, rs->ncols * sizeof (* fc->col_offset));
6395 rs->next = remembered_state;
6396 remembered_state = rs;
6397 break;
6398
6399 case DW_CFA_restore_state:
6400 if (! do_debug_frames_interp)
6401 printf (" DW_CFA_restore_state\n");
6402 rs = remembered_state;
6403 if (rs)
6404 {
6405 remembered_state = rs->next;
6406 fc->cfa_offset = rs->cfa_offset;
6407 fc->cfa_reg = rs->cfa_reg;
6408 fc->ra = rs->ra;
6409 fc->cfa_exp = rs->cfa_exp;
6410 if (frame_need_space (fc, rs->ncols - 1) < 0)
6411 {
6412 warn (_("Invalid column number in saved frame state\n"));
6413 fc->ncols = 0;
6414 break;
6415 }
6416 memcpy (fc->col_type, rs->col_type, rs->ncols * sizeof (* rs->col_type));
6417 memcpy (fc->col_offset, rs->col_offset,
6418 rs->ncols * sizeof (* rs->col_offset));
6419 free (rs->col_type);
6420 free (rs->col_offset);
6421 free (rs);
6422 }
6423 else if (do_debug_frames_interp)
6424 printf ("Mismatched DW_CFA_restore_state\n");
6425 break;
6426
6427 case DW_CFA_def_cfa:
6428 fc->cfa_reg = LEB ();
6429 fc->cfa_offset = LEB ();
6430 fc->cfa_exp = 0;
6431 if (! do_debug_frames_interp)
6432 printf (" DW_CFA_def_cfa: %s ofs %d\n",
6433 regname (fc->cfa_reg, 0), (int) fc->cfa_offset);
6434 break;
6435
6436 case DW_CFA_def_cfa_register:
6437 fc->cfa_reg = LEB ();
6438 fc->cfa_exp = 0;
6439 if (! do_debug_frames_interp)
6440 printf (" DW_CFA_def_cfa_register: %s\n",
6441 regname (fc->cfa_reg, 0));
6442 break;
6443
6444 case DW_CFA_def_cfa_offset:
6445 fc->cfa_offset = LEB ();
6446 if (! do_debug_frames_interp)
6447 printf (" DW_CFA_def_cfa_offset: %d\n", (int) fc->cfa_offset);
6448 break;
6449
6450 case DW_CFA_nop:
6451 if (! do_debug_frames_interp)
6452 printf (" DW_CFA_nop\n");
6453 break;
6454
6455 case DW_CFA_def_cfa_expression:
6456 ul = LEB ();
6457 if (start >= block_end || start + ul > block_end || start + ul < start)
6458 {
6459 printf (_(" DW_CFA_def_cfa_expression: <corrupt len %lu>\n"), ul);
6460 break;
6461 }
6462 if (! do_debug_frames_interp)
6463 {
6464 printf (" DW_CFA_def_cfa_expression (");
6465 decode_location_expression (start, eh_addr_size, 0, -1,
6466 ul, 0, section);
6467 printf (")\n");
6468 }
6469 fc->cfa_exp = 1;
6470 start += ul;
6471 break;
6472
6473 case DW_CFA_expression:
6474 reg = LEB ();
6475 ul = LEB ();
6476 if (reg >= (unsigned int) fc->ncols)
6477 reg_prefix = bad_reg;
6478 /* PR 17512: file: 069-133014-0.006. */
6479 /* PR 17512: file: 98c02eb4. */
6480 tmp = start + ul;
6481 if (start >= block_end || tmp > block_end || tmp < start)
6482 {
6483 printf (_(" DW_CFA_expression: <corrupt len %lu>\n"), ul);
6484 break;
6485 }
6486 if (! do_debug_frames_interp || *reg_prefix != '\0')
6487 {
6488 printf (" DW_CFA_expression: %s%s (",
6489 reg_prefix, regname (reg, 0));
6490 decode_location_expression (start, eh_addr_size, 0, -1,
6491 ul, 0, section);
6492 printf (")\n");
6493 }
6494 if (*reg_prefix == '\0')
6495 fc->col_type[reg] = DW_CFA_expression;
6496 start = tmp;
6497 break;
6498
6499 case DW_CFA_val_expression:
6500 reg = LEB ();
6501 ul = LEB ();
6502 if (reg >= (unsigned int) fc->ncols)
6503 reg_prefix = bad_reg;
6504 tmp = start + ul;
6505 if (start >= block_end || tmp > block_end || tmp < start)
6506 {
6507 printf (" DW_CFA_val_expression: <corrupt len %lu>\n", ul);
6508 break;
6509 }
6510 if (! do_debug_frames_interp || *reg_prefix != '\0')
6511 {
6512 printf (" DW_CFA_val_expression: %s%s (",
6513 reg_prefix, regname (reg, 0));
6514 decode_location_expression (start, eh_addr_size, 0, -1,
6515 ul, 0, section);
6516 printf (")\n");
6517 }
6518 if (*reg_prefix == '\0')
6519 fc->col_type[reg] = DW_CFA_val_expression;
6520 start = tmp;
6521 break;
6522
6523 case DW_CFA_offset_extended_sf:
6524 reg = LEB ();
6525 l = SLEB ();
6526 if (frame_need_space (fc, reg) < 0)
6527 reg_prefix = bad_reg;
6528 if (! do_debug_frames_interp || *reg_prefix != '\0')
6529 printf (" DW_CFA_offset_extended_sf: %s%s at cfa%+ld\n",
6530 reg_prefix, regname (reg, 0),
6531 (long)(l * fc->data_factor));
6532 if (*reg_prefix == '\0')
6533 {
6534 fc->col_type[reg] = DW_CFA_offset;
6535 fc->col_offset[reg] = l * fc->data_factor;
6536 }
6537 break;
6538
6539 case DW_CFA_val_offset_sf:
6540 reg = LEB ();
6541 l = SLEB ();
6542 if (frame_need_space (fc, reg) < 0)
6543 reg_prefix = bad_reg;
6544 if (! do_debug_frames_interp || *reg_prefix != '\0')
6545 printf (" DW_CFA_val_offset_sf: %s%s at cfa%+ld\n",
6546 reg_prefix, regname (reg, 0),
6547 (long)(l * fc->data_factor));
6548 if (*reg_prefix == '\0')
6549 {
6550 fc->col_type[reg] = DW_CFA_val_offset;
6551 fc->col_offset[reg] = l * fc->data_factor;
6552 }
6553 break;
6554
6555 case DW_CFA_def_cfa_sf:
6556 fc->cfa_reg = LEB ();
6557 fc->cfa_offset = SLEB ();
6558 fc->cfa_offset = fc->cfa_offset * fc->data_factor;
6559 fc->cfa_exp = 0;
6560 if (! do_debug_frames_interp)
6561 printf (" DW_CFA_def_cfa_sf: %s ofs %d\n",
6562 regname (fc->cfa_reg, 0), (int) fc->cfa_offset);
6563 break;
6564
6565 case DW_CFA_def_cfa_offset_sf:
6566 fc->cfa_offset = SLEB ();
6567 fc->cfa_offset *= fc->data_factor;
6568 if (! do_debug_frames_interp)
6569 printf (" DW_CFA_def_cfa_offset_sf: %d\n", (int) fc->cfa_offset);
6570 break;
6571
6572 case DW_CFA_MIPS_advance_loc8:
6573 SAFE_BYTE_GET_AND_INC (ofs, start, 8, block_end);
6574 if (do_debug_frames_interp)
6575 frame_display_row (fc, &need_col_headers, &max_regs);
6576 else
6577 printf (" DW_CFA_MIPS_advance_loc8: %ld to %s\n",
6578 (unsigned long) (ofs * fc->code_factor),
6579 dwarf_vmatoa_1 (NULL,
6580 fc->pc_begin + ofs * fc->code_factor,
6581 fc->ptr_size));
6582 fc->pc_begin += ofs * fc->code_factor;
6583 break;
6584
6585 case DW_CFA_GNU_window_save:
6586 if (! do_debug_frames_interp)
6587 printf (" DW_CFA_GNU_window_save\n");
6588 break;
6589
6590 case DW_CFA_GNU_args_size:
6591 ul = LEB ();
6592 if (! do_debug_frames_interp)
6593 printf (" DW_CFA_GNU_args_size: %ld\n", ul);
6594 break;
6595
6596 case DW_CFA_GNU_negative_offset_extended:
6597 reg = LEB ();
6598 l = - LEB ();
6599 if (frame_need_space (fc, reg) < 0)
6600 reg_prefix = bad_reg;
6601 if (! do_debug_frames_interp || *reg_prefix != '\0')
6602 printf (" DW_CFA_GNU_negative_offset_extended: %s%s at cfa%+ld\n",
6603 reg_prefix, regname (reg, 0),
6604 (long)(l * fc->data_factor));
6605 if (*reg_prefix == '\0')
6606 {
6607 fc->col_type[reg] = DW_CFA_offset;
6608 fc->col_offset[reg] = l * fc->data_factor;
6609 }
6610 break;
6611
6612 default:
6613 if (op >= DW_CFA_lo_user && op <= DW_CFA_hi_user)
6614 printf (_(" DW_CFA_??? (User defined call frame op: %#x)\n"), op);
6615 else
6616 warn (_("Unsupported or unknown Dwarf Call Frame Instruction number: %#x\n"), op);
6617 start = block_end;
6618 }
6619 }
6620
6621 if (do_debug_frames_interp)
6622 frame_display_row (fc, &need_col_headers, &max_regs);
6623
6624 start = block_end;
6625 eh_addr_size = saved_eh_addr_size;
6626 }
6627
6628 printf ("\n");
6629
6630 return 1;
6631 }
6632
6633 #undef GET
6634 #undef LEB
6635 #undef SLEB
6636
6637 static int
6638 display_gdb_index (struct dwarf_section *section,
6639 void *file ATTRIBUTE_UNUSED)
6640 {
6641 unsigned char *start = section->start;
6642 uint32_t version;
6643 uint32_t cu_list_offset, tu_list_offset;
6644 uint32_t address_table_offset, symbol_table_offset, constant_pool_offset;
6645 unsigned int cu_list_elements, tu_list_elements;
6646 unsigned int address_table_size, symbol_table_slots;
6647 unsigned char *cu_list, *tu_list;
6648 unsigned char *address_table, *symbol_table, *constant_pool;
6649 unsigned int i;
6650
6651 /* The documentation for the format of this file is in gdb/dwarf2read.c. */
6652
6653 printf (_("Contents of the %s section:\n"), section->name);
6654
6655 if (section->size < 6 * sizeof (uint32_t))
6656 {
6657 warn (_("Truncated header in the %s section.\n"), section->name);
6658 return 0;
6659 }
6660
6661 version = byte_get_little_endian (start, 4);
6662 printf (_("Version %ld\n"), (long) version);
6663
6664 /* Prior versions are obsolete, and future versions may not be
6665 backwards compatible. */
6666 if (version < 3 || version > 8)
6667 {
6668 warn (_("Unsupported version %lu.\n"), (unsigned long) version);
6669 return 0;
6670 }
6671 if (version < 4)
6672 warn (_("The address table data in version 3 may be wrong.\n"));
6673 if (version < 5)
6674 warn (_("Version 4 does not support case insensitive lookups.\n"));
6675 if (version < 6)
6676 warn (_("Version 5 does not include inlined functions.\n"));
6677 if (version < 7)
6678 warn (_("Version 6 does not include symbol attributes.\n"));
6679 /* Version 7 indices generated by Gold have bad type unit references,
6680 PR binutils/15021. But we don't know if the index was generated by
6681 Gold or not, so to avoid worrying users with gdb-generated indices
6682 we say nothing for version 7 here. */
6683
6684 cu_list_offset = byte_get_little_endian (start + 4, 4);
6685 tu_list_offset = byte_get_little_endian (start + 8, 4);
6686 address_table_offset = byte_get_little_endian (start + 12, 4);
6687 symbol_table_offset = byte_get_little_endian (start + 16, 4);
6688 constant_pool_offset = byte_get_little_endian (start + 20, 4);
6689
6690 if (cu_list_offset > section->size
6691 || tu_list_offset > section->size
6692 || address_table_offset > section->size
6693 || symbol_table_offset > section->size
6694 || constant_pool_offset > section->size)
6695 {
6696 warn (_("Corrupt header in the %s section.\n"), section->name);
6697 return 0;
6698 }
6699
6700 /* PR 17531: file: 418d0a8a. */
6701 if (tu_list_offset < cu_list_offset)
6702 {
6703 warn (_("TU offset (%x) is less than CU offset (%x)\n"),
6704 tu_list_offset, cu_list_offset);
6705 return 0;
6706 }
6707
6708 cu_list_elements = (tu_list_offset - cu_list_offset) / 8;
6709
6710 if (address_table_offset < tu_list_offset)
6711 {
6712 warn (_("Address table offset (%x) is less than TU offset (%x)\n"),
6713 address_table_offset, tu_list_offset);
6714 return 0;
6715 }
6716
6717 tu_list_elements = (address_table_offset - tu_list_offset) / 8;
6718
6719 /* PR 17531: file: 18a47d3d. */
6720 if (symbol_table_offset < address_table_offset)
6721 {
6722 warn (_("Symbol table offset (%xl) is less then Address table offset (%x)\n"),
6723 symbol_table_offset, address_table_offset);
6724 return 0;
6725 }
6726
6727 address_table_size = symbol_table_offset - address_table_offset;
6728
6729 if (constant_pool_offset < symbol_table_offset)
6730 {
6731 warn (_("Constant pool offset (%x) is less than symbol table offset (%x)\n"),
6732 constant_pool_offset, symbol_table_offset);
6733 return 0;
6734 }
6735
6736 symbol_table_slots = (constant_pool_offset - symbol_table_offset) / 8;
6737
6738 cu_list = start + cu_list_offset;
6739 tu_list = start + tu_list_offset;
6740 address_table = start + address_table_offset;
6741 symbol_table = start + symbol_table_offset;
6742 constant_pool = start + constant_pool_offset;
6743
6744 if (address_table + address_table_size * (2 + 8 + 4) > section->start + section->size)
6745 {
6746 warn (_("Address table extends beyond end of section.\n"));
6747 return 0;
6748 }
6749
6750 printf (_("\nCU table:\n"));
6751 for (i = 0; i < cu_list_elements; i += 2)
6752 {
6753 uint64_t cu_offset = byte_get_little_endian (cu_list + i * 8, 8);
6754 uint64_t cu_length = byte_get_little_endian (cu_list + i * 8 + 8, 8);
6755
6756 printf (_("[%3u] 0x%lx - 0x%lx\n"), i / 2,
6757 (unsigned long) cu_offset,
6758 (unsigned long) (cu_offset + cu_length - 1));
6759 }
6760
6761 printf (_("\nTU table:\n"));
6762 for (i = 0; i < tu_list_elements; i += 3)
6763 {
6764 uint64_t tu_offset = byte_get_little_endian (tu_list + i * 8, 8);
6765 uint64_t type_offset = byte_get_little_endian (tu_list + i * 8 + 8, 8);
6766 uint64_t signature = byte_get_little_endian (tu_list + i * 8 + 16, 8);
6767
6768 printf (_("[%3u] 0x%lx 0x%lx "), i / 3,
6769 (unsigned long) tu_offset,
6770 (unsigned long) type_offset);
6771 print_dwarf_vma (signature, 8);
6772 printf ("\n");
6773 }
6774
6775 printf (_("\nAddress table:\n"));
6776 for (i = 0; i < address_table_size && i <= address_table_size - (2 * 8 + 4);
6777 i += 2 * 8 + 4)
6778 {
6779 uint64_t low = byte_get_little_endian (address_table + i, 8);
6780 uint64_t high = byte_get_little_endian (address_table + i + 8, 8);
6781 uint32_t cu_index = byte_get_little_endian (address_table + i + 16, 4);
6782
6783 print_dwarf_vma (low, 8);
6784 print_dwarf_vma (high, 8);
6785 printf (_("%lu\n"), (unsigned long) cu_index);
6786 }
6787
6788 printf (_("\nSymbol table:\n"));
6789 for (i = 0; i < symbol_table_slots; ++i)
6790 {
6791 uint32_t name_offset = byte_get_little_endian (symbol_table + i * 8, 4);
6792 uint32_t cu_vector_offset = byte_get_little_endian (symbol_table + i * 8 + 4, 4);
6793 uint32_t num_cus, cu;
6794
6795 if (name_offset != 0
6796 || cu_vector_offset != 0)
6797 {
6798 unsigned int j;
6799 unsigned char * adr;
6800
6801 adr = constant_pool + name_offset;
6802 /* PR 17531: file: 5b7b07ad. */
6803 if (adr < constant_pool || adr >= section->start + section->size)
6804 {
6805 printf (_("[%3u] <corrupt offset: %x>"), i, name_offset);
6806 warn (_("Corrupt name offset of 0x%x found for symbol table slot %d\n"),
6807 name_offset, i);
6808 }
6809 else
6810 printf ("[%3u] %.*s:", i,
6811 (int) (section->size - (constant_pool_offset + name_offset)),
6812 constant_pool + name_offset);
6813
6814 adr = constant_pool + cu_vector_offset;
6815 if (adr < constant_pool || adr >= section->start + section->size - 3)
6816 {
6817 printf (_("<invalid CU vector offset: %x>\n"), cu_vector_offset);
6818 warn (_("Corrupt CU vector offset of 0x%x found for symbol table slot %d\n"),
6819 cu_vector_offset, i);
6820 continue;
6821 }
6822
6823 num_cus = byte_get_little_endian (adr, 4);
6824
6825 adr = constant_pool + cu_vector_offset + 4 + num_cus * 4;
6826 if (num_cus * 4 < num_cus
6827 || adr >= section->start + section->size
6828 || adr < constant_pool)
6829 {
6830 printf ("<invalid number of CUs: %d>\n", num_cus);
6831 warn (_("Invalid number of CUs (0x%x) for symbol table slot %d\n"),
6832 num_cus, i);
6833 continue;
6834 }
6835
6836 if (num_cus > 1)
6837 printf ("\n");
6838
6839 for (j = 0; j < num_cus; ++j)
6840 {
6841 int is_static;
6842 gdb_index_symbol_kind kind;
6843
6844 cu = byte_get_little_endian (constant_pool + cu_vector_offset + 4 + j * 4, 4);
6845 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (cu);
6846 kind = GDB_INDEX_SYMBOL_KIND_VALUE (cu);
6847 cu = GDB_INDEX_CU_VALUE (cu);
6848 /* Convert to TU number if it's for a type unit. */
6849 if (cu >= cu_list_elements / 2)
6850 printf ("%cT%lu", num_cus > 1 ? '\t' : ' ',
6851 (unsigned long) (cu - cu_list_elements / 2));
6852 else
6853 printf ("%c%lu", num_cus > 1 ? '\t' : ' ', (unsigned long) cu);
6854
6855 printf (" [%s, %s]",
6856 is_static ? _("static") : _("global"),
6857 get_gdb_index_symbol_kind_name (kind));
6858 if (num_cus > 1)
6859 printf ("\n");
6860 }
6861 if (num_cus <= 1)
6862 printf ("\n");
6863 }
6864 }
6865
6866 return 1;
6867 }
6868
6869 /* Pre-allocate enough space for the CU/TU sets needed. */
6870
6871 static void
6872 prealloc_cu_tu_list (unsigned int nshndx)
6873 {
6874 if (shndx_pool == NULL)
6875 {
6876 shndx_pool_size = nshndx;
6877 shndx_pool_used = 0;
6878 shndx_pool = (unsigned int *) xcmalloc (shndx_pool_size,
6879 sizeof (unsigned int));
6880 }
6881 else
6882 {
6883 shndx_pool_size = shndx_pool_used + nshndx;
6884 shndx_pool = (unsigned int *) xcrealloc (shndx_pool, shndx_pool_size,
6885 sizeof (unsigned int));
6886 }
6887 }
6888
6889 static void
6890 add_shndx_to_cu_tu_entry (unsigned int shndx)
6891 {
6892 if (shndx_pool_used >= shndx_pool_size)
6893 {
6894 error (_("Internal error: out of space in the shndx pool.\n"));
6895 return;
6896 }
6897 shndx_pool [shndx_pool_used++] = shndx;
6898 }
6899
6900 static void
6901 end_cu_tu_entry (void)
6902 {
6903 if (shndx_pool_used >= shndx_pool_size)
6904 {
6905 error (_("Internal error: out of space in the shndx pool.\n"));
6906 return;
6907 }
6908 shndx_pool [shndx_pool_used++] = 0;
6909 }
6910
6911 /* Return the short name of a DWARF section given by a DW_SECT enumerator. */
6912
6913 static const char *
6914 get_DW_SECT_short_name (unsigned int dw_sect)
6915 {
6916 static char buf[16];
6917
6918 switch (dw_sect)
6919 {
6920 case DW_SECT_INFO:
6921 return "info";
6922 case DW_SECT_TYPES:
6923 return "types";
6924 case DW_SECT_ABBREV:
6925 return "abbrev";
6926 case DW_SECT_LINE:
6927 return "line";
6928 case DW_SECT_LOC:
6929 return "loc";
6930 case DW_SECT_STR_OFFSETS:
6931 return "str_off";
6932 case DW_SECT_MACINFO:
6933 return "macinfo";
6934 case DW_SECT_MACRO:
6935 return "macro";
6936 default:
6937 break;
6938 }
6939
6940 snprintf (buf, sizeof (buf), "%d", dw_sect);
6941 return buf;
6942 }
6943
6944 /* Process a CU or TU index. If DO_DISPLAY is true, print the contents.
6945 These sections are extensions for Fission.
6946 See http://gcc.gnu.org/wiki/DebugFissionDWP. */
6947
6948 static int
6949 process_cu_tu_index (struct dwarf_section *section, int do_display)
6950 {
6951 unsigned char *phdr = section->start;
6952 unsigned char *limit = phdr + section->size;
6953 unsigned char *phash;
6954 unsigned char *pindex;
6955 unsigned char *ppool;
6956 unsigned int version;
6957 unsigned int ncols = 0;
6958 unsigned int nused;
6959 unsigned int nslots;
6960 unsigned int i;
6961 unsigned int j;
6962 dwarf_vma signature_high;
6963 dwarf_vma signature_low;
6964 char buf[64];
6965
6966 /* PR 17512: file: 002-168123-0.004. */
6967 if (phdr == NULL)
6968 {
6969 warn (_("Section %s is empty\n"), section->name);
6970 return 0;
6971 }
6972 /* PR 17512: file: 002-376-0.004. */
6973 if (section->size < 24)
6974 {
6975 warn (_("Section %s is too small to contain a CU/TU header\n"),
6976 section->name);
6977 return 0;
6978 }
6979
6980 SAFE_BYTE_GET (version, phdr, 4, limit);
6981 if (version >= 2)
6982 SAFE_BYTE_GET (ncols, phdr + 4, 4, limit);
6983 SAFE_BYTE_GET (nused, phdr + 8, 4, limit);
6984 SAFE_BYTE_GET (nslots, phdr + 12, 4, limit);
6985
6986 phash = phdr + 16;
6987 pindex = phash + nslots * 8;
6988 ppool = pindex + nslots * 4;
6989
6990 /* PR 17531: file: 45d69832. */
6991 if (pindex < phash || ppool < phdr || (pindex == phash && nslots != 0))
6992 {
6993 warn (_("Section %s is too small for %d slots\n"),
6994 section->name, nslots);
6995 return 0;
6996 }
6997
6998 if (do_display)
6999 {
7000 printf (_("Contents of the %s section:\n\n"), section->name);
7001 printf (_(" Version: %d\n"), version);
7002 if (version >= 2)
7003 printf (_(" Number of columns: %d\n"), ncols);
7004 printf (_(" Number of used entries: %d\n"), nused);
7005 printf (_(" Number of slots: %d\n\n"), nslots);
7006 }
7007
7008 if (ppool > limit || ppool < phdr)
7009 {
7010 warn (_("Section %s too small for %d hash table entries\n"),
7011 section->name, nslots);
7012 return 0;
7013 }
7014
7015 if (version == 1)
7016 {
7017 if (!do_display)
7018 prealloc_cu_tu_list ((limit - ppool) / 4);
7019 for (i = 0; i < nslots; i++)
7020 {
7021 unsigned char *shndx_list;
7022 unsigned int shndx;
7023
7024 SAFE_BYTE_GET64 (phash, &signature_high, &signature_low, limit);
7025 if (signature_high != 0 || signature_low != 0)
7026 {
7027 SAFE_BYTE_GET (j, pindex, 4, limit);
7028 shndx_list = ppool + j * 4;
7029 /* PR 17531: file: 705e010d. */
7030 if (shndx_list < ppool)
7031 {
7032 warn (_("Section index pool located before start of section\n"));
7033 return 0;
7034 }
7035
7036 if (do_display)
7037 printf (_(" [%3d] Signature: 0x%s Sections: "),
7038 i, dwarf_vmatoa64 (signature_high, signature_low,
7039 buf, sizeof (buf)));
7040 for (;;)
7041 {
7042 if (shndx_list >= limit)
7043 {
7044 warn (_("Section %s too small for shndx pool\n"),
7045 section->name);
7046 return 0;
7047 }
7048 SAFE_BYTE_GET (shndx, shndx_list, 4, limit);
7049 if (shndx == 0)
7050 break;
7051 if (do_display)
7052 printf (" %d", shndx);
7053 else
7054 add_shndx_to_cu_tu_entry (shndx);
7055 shndx_list += 4;
7056 }
7057 if (do_display)
7058 printf ("\n");
7059 else
7060 end_cu_tu_entry ();
7061 }
7062 phash += 8;
7063 pindex += 4;
7064 }
7065 }
7066 else if (version == 2)
7067 {
7068 unsigned int val;
7069 unsigned int dw_sect;
7070 unsigned char *ph = phash;
7071 unsigned char *pi = pindex;
7072 unsigned char *poffsets = ppool + ncols * 4;
7073 unsigned char *psizes = poffsets + nused * ncols * 4;
7074 unsigned char *pend = psizes + nused * ncols * 4;
7075 bfd_boolean is_tu_index;
7076 struct cu_tu_set *this_set = NULL;
7077 unsigned int row;
7078 unsigned char *prow;
7079
7080 is_tu_index = strcmp (section->name, ".debug_tu_index") == 0;
7081
7082 /* PR 17531: file: 0dd159bf.
7083 Check for wraparound with an overlarge ncols value. */
7084 if (poffsets < ppool || (unsigned int) ((poffsets - ppool) / 4) != ncols)
7085 {
7086 warn (_("Overlarge number of columns: %x\n"), ncols);
7087 return 0;
7088 }
7089
7090 if (pend > limit)
7091 {
7092 warn (_("Section %s too small for offset and size tables\n"),
7093 section->name);
7094 return 0;
7095 }
7096
7097 if (do_display)
7098 {
7099 printf (_(" Offset table\n"));
7100 printf (" slot %-16s ",
7101 is_tu_index ? _("signature") : _("dwo_id"));
7102 }
7103 else
7104 {
7105 if (is_tu_index)
7106 {
7107 tu_count = nused;
7108 tu_sets = xcalloc2 (nused, sizeof (struct cu_tu_set));
7109 this_set = tu_sets;
7110 }
7111 else
7112 {
7113 cu_count = nused;
7114 cu_sets = xcalloc2 (nused, sizeof (struct cu_tu_set));
7115 this_set = cu_sets;
7116 }
7117 }
7118
7119 if (do_display)
7120 {
7121 for (j = 0; j < ncols; j++)
7122 {
7123 SAFE_BYTE_GET (dw_sect, ppool + j * 4, 4, limit);
7124 printf (" %8s", get_DW_SECT_short_name (dw_sect));
7125 }
7126 printf ("\n");
7127 }
7128
7129 for (i = 0; i < nslots; i++)
7130 {
7131 SAFE_BYTE_GET64 (ph, &signature_high, &signature_low, limit);
7132
7133 SAFE_BYTE_GET (row, pi, 4, limit);
7134 if (row != 0)
7135 {
7136 /* PR 17531: file: a05f6ab3. */
7137 if (row > nused)
7138 {
7139 warn (_("Row index (%u) is larger than number of used entries (%u)\n"),
7140 row, nused);
7141 return 0;
7142 }
7143
7144 if (!do_display)
7145 memcpy (&this_set[row - 1].signature, ph, sizeof (uint64_t));
7146
7147 prow = poffsets + (row - 1) * ncols * 4;
7148 /* PR 17531: file: b8ce60a8. */
7149 if (prow < poffsets || prow > limit)
7150 {
7151 warn (_("Row index (%u) * num columns (%u) > space remaining in section\n"),
7152 row, ncols);
7153 return 0;
7154 }
7155
7156 if (do_display)
7157 printf (_(" [%3d] 0x%s"),
7158 i, dwarf_vmatoa64 (signature_high, signature_low,
7159 buf, sizeof (buf)));
7160 for (j = 0; j < ncols; j++)
7161 {
7162 SAFE_BYTE_GET (val, prow + j * 4, 4, limit);
7163 if (do_display)
7164 printf (" %8d", val);
7165 else
7166 {
7167 SAFE_BYTE_GET (dw_sect, ppool + j * 4, 4, limit);
7168
7169 /* PR 17531: file: 10796eb3. */
7170 if (dw_sect >= DW_SECT_MAX)
7171 warn (_("Overlarge Dwarf section index detected: %u\n"), dw_sect);
7172 else
7173 this_set [row - 1].section_offsets [dw_sect] = val;
7174 }
7175 }
7176
7177 if (do_display)
7178 printf ("\n");
7179 }
7180 ph += 8;
7181 pi += 4;
7182 }
7183
7184 ph = phash;
7185 pi = pindex;
7186 if (do_display)
7187 {
7188 printf ("\n");
7189 printf (_(" Size table\n"));
7190 printf (" slot %-16s ",
7191 is_tu_index ? _("signature") : _("dwo_id"));
7192 }
7193
7194 for (j = 0; j < ncols; j++)
7195 {
7196 SAFE_BYTE_GET (val, ppool + j * 4, 4, limit);
7197 if (do_display)
7198 printf (" %8s", get_DW_SECT_short_name (val));
7199 }
7200
7201 if (do_display)
7202 printf ("\n");
7203
7204 for (i = 0; i < nslots; i++)
7205 {
7206 SAFE_BYTE_GET64 (ph, &signature_high, &signature_low, limit);
7207
7208 SAFE_BYTE_GET (row, pi, 4, limit);
7209 if (row != 0)
7210 {
7211 prow = psizes + (row - 1) * ncols * 4;
7212
7213 if (do_display)
7214 printf (_(" [%3d] 0x%s"),
7215 i, dwarf_vmatoa64 (signature_high, signature_low,
7216 buf, sizeof (buf)));
7217
7218 for (j = 0; j < ncols; j++)
7219 {
7220 SAFE_BYTE_GET (val, prow + j * 4, 4, limit);
7221 if (do_display)
7222 printf (" %8d", val);
7223 else
7224 {
7225 SAFE_BYTE_GET (dw_sect, ppool + j * 4, 4, limit);
7226 if (dw_sect >= DW_SECT_MAX)
7227 warn (_("Overlarge Dwarf section index detected: %u\n"), dw_sect);
7228 else
7229 this_set [row - 1].section_sizes [dw_sect] = val;
7230 }
7231 }
7232
7233 if (do_display)
7234 printf ("\n");
7235 }
7236
7237 ph += 8;
7238 pi += 4;
7239 }
7240 }
7241 else if (do_display)
7242 printf (_(" Unsupported version (%d)\n"), version);
7243
7244 if (do_display)
7245 printf ("\n");
7246
7247 return 1;
7248 }
7249
7250 /* Load the CU and TU indexes if present. This will build a list of
7251 section sets that we can use to associate a .debug_info.dwo section
7252 with its associated .debug_abbrev.dwo section in a .dwp file. */
7253
7254 static void
7255 load_cu_tu_indexes (void *file)
7256 {
7257 /* If we have already loaded (or tried to load) the CU and TU indexes
7258 then do not bother to repeat the task. */
7259 if (cu_tu_indexes_read)
7260 return;
7261
7262 if (load_debug_section (dwp_cu_index, file))
7263 process_cu_tu_index (&debug_displays [dwp_cu_index].section, 0);
7264
7265 if (load_debug_section (dwp_tu_index, file))
7266 process_cu_tu_index (&debug_displays [dwp_tu_index].section, 0);
7267
7268 cu_tu_indexes_read = 1;
7269 }
7270
7271 /* Find the set of sections that includes section SHNDX. */
7272
7273 unsigned int *
7274 find_cu_tu_set (void *file, unsigned int shndx)
7275 {
7276 unsigned int i;
7277
7278 load_cu_tu_indexes (file);
7279
7280 /* Find SHNDX in the shndx pool. */
7281 for (i = 0; i < shndx_pool_used; i++)
7282 if (shndx_pool [i] == shndx)
7283 break;
7284
7285 if (i >= shndx_pool_used)
7286 return NULL;
7287
7288 /* Now backup to find the first entry in the set. */
7289 while (i > 0 && shndx_pool [i - 1] != 0)
7290 i--;
7291
7292 return shndx_pool + i;
7293 }
7294
7295 /* Display a .debug_cu_index or .debug_tu_index section. */
7296
7297 static int
7298 display_cu_index (struct dwarf_section *section, void *file ATTRIBUTE_UNUSED)
7299 {
7300 return process_cu_tu_index (section, 1);
7301 }
7302
7303 static int
7304 display_debug_not_supported (struct dwarf_section *section,
7305 void *file ATTRIBUTE_UNUSED)
7306 {
7307 printf (_("Displaying the debug contents of section %s is not yet supported.\n"),
7308 section->name);
7309
7310 return 1;
7311 }
7312
7313 /* Like malloc, but takes two parameters like calloc.
7314 Verifies that the first parameter is not too large.
7315 Note: does *not* initialise the allocated memory to zero. */
7316 void *
7317 cmalloc (size_t nmemb, size_t size)
7318 {
7319 /* Check for overflow. */
7320 if (nmemb >= ~(size_t) 0 / size)
7321 return NULL;
7322
7323 return xmalloc (nmemb * size);
7324 }
7325
7326 /* Like xmalloc, but takes two parameters like calloc.
7327 Verifies that the first parameter is not too large.
7328 Note: does *not* initialise the allocated memory to zero. */
7329 void *
7330 xcmalloc (size_t nmemb, size_t size)
7331 {
7332 /* Check for overflow. */
7333 if (nmemb >= ~(size_t) 0 / size)
7334 {
7335 fprintf (stderr,
7336 _("Attempt to allocate an array with an excessive number of elements: 0x%lx\n"),
7337 (long) nmemb);
7338 xexit (1);
7339 }
7340
7341 return xmalloc (nmemb * size);
7342 }
7343
7344 /* Like xrealloc, but takes three parameters.
7345 Verifies that the second parameter is not too large.
7346 Note: does *not* initialise any new memory to zero. */
7347 void *
7348 xcrealloc (void *ptr, size_t nmemb, size_t size)
7349 {
7350 /* Check for overflow. */
7351 if (nmemb >= ~(size_t) 0 / size)
7352 {
7353 fprintf (stderr,
7354 _("Attempt to re-allocate an array with an excessive number of elements: 0x%lx\n"),
7355 (long) nmemb);
7356 xexit (1);
7357 }
7358
7359 return xrealloc (ptr, nmemb * size);
7360 }
7361
7362 /* Like xcalloc, but verifies that the first parameter is not too large. */
7363 void *
7364 xcalloc2 (size_t nmemb, size_t size)
7365 {
7366 /* Check for overflow. */
7367 if (nmemb >= ~(size_t) 0 / size)
7368 {
7369 fprintf (stderr,
7370 _("Attempt to allocate a zero'ed array with an excessive number of elements: 0x%lx\n"),
7371 (long) nmemb);
7372 xexit (1);
7373 }
7374
7375 return xcalloc (nmemb, size);
7376 }
7377
7378 void
7379 free_debug_memory (void)
7380 {
7381 unsigned int i;
7382
7383 free_abbrevs ();
7384
7385 for (i = 0; i < max; i++)
7386 free_debug_section ((enum dwarf_section_display_enum) i);
7387
7388 if (debug_information != NULL)
7389 {
7390 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE)
7391 {
7392 for (i = 0; i < num_debug_info_entries; i++)
7393 {
7394 if (!debug_information [i].max_loc_offsets)
7395 {
7396 free (debug_information [i].loc_offsets);
7397 free (debug_information [i].have_frame_base);
7398 }
7399 if (!debug_information [i].max_range_lists)
7400 free (debug_information [i].range_lists);
7401 }
7402 }
7403 free (debug_information);
7404 debug_information = NULL;
7405 alloc_num_debug_info_entries = num_debug_info_entries = 0;
7406 }
7407 }
7408
7409 void
7410 dwarf_select_sections_by_names (const char *names)
7411 {
7412 typedef struct
7413 {
7414 const char * option;
7415 int * variable;
7416 int val;
7417 }
7418 debug_dump_long_opts;
7419
7420 static const debug_dump_long_opts opts_table [] =
7421 {
7422 /* Please keep this table alpha- sorted. */
7423 { "Ranges", & do_debug_ranges, 1 },
7424 { "abbrev", & do_debug_abbrevs, 1 },
7425 { "addr", & do_debug_addr, 1 },
7426 { "aranges", & do_debug_aranges, 1 },
7427 { "cu_index", & do_debug_cu_index, 1 },
7428 { "decodedline", & do_debug_lines, FLAG_DEBUG_LINES_DECODED },
7429 { "frames", & do_debug_frames, 1 },
7430 { "frames-interp", & do_debug_frames_interp, 1 },
7431 /* The special .gdb_index section. */
7432 { "gdb_index", & do_gdb_index, 1 },
7433 { "info", & do_debug_info, 1 },
7434 { "line", & do_debug_lines, FLAG_DEBUG_LINES_RAW }, /* For backwards compatibility. */
7435 { "loc", & do_debug_loc, 1 },
7436 { "macro", & do_debug_macinfo, 1 },
7437 { "pubnames", & do_debug_pubnames, 1 },
7438 { "pubtypes", & do_debug_pubtypes, 1 },
7439 /* This entry is for compatability
7440 with earlier versions of readelf. */
7441 { "ranges", & do_debug_aranges, 1 },
7442 { "rawline", & do_debug_lines, FLAG_DEBUG_LINES_RAW },
7443 { "str", & do_debug_str, 1 },
7444 /* These trace_* sections are used by Itanium VMS. */
7445 { "trace_abbrev", & do_trace_abbrevs, 1 },
7446 { "trace_aranges", & do_trace_aranges, 1 },
7447 { "trace_info", & do_trace_info, 1 },
7448 { NULL, NULL, 0 }
7449 };
7450
7451 const char *p;
7452
7453 p = names;
7454 while (*p)
7455 {
7456 const debug_dump_long_opts * entry;
7457
7458 for (entry = opts_table; entry->option; entry++)
7459 {
7460 size_t len = strlen (entry->option);
7461
7462 if (strncmp (p, entry->option, len) == 0
7463 && (p[len] == ',' || p[len] == '\0'))
7464 {
7465 * entry->variable |= entry->val;
7466
7467 /* The --debug-dump=frames-interp option also
7468 enables the --debug-dump=frames option. */
7469 if (do_debug_frames_interp)
7470 do_debug_frames = 1;
7471
7472 p += len;
7473 break;
7474 }
7475 }
7476
7477 if (entry->option == NULL)
7478 {
7479 warn (_("Unrecognized debug option '%s'\n"), p);
7480 p = strchr (p, ',');
7481 if (p == NULL)
7482 break;
7483 }
7484
7485 if (*p == ',')
7486 p++;
7487 }
7488 }
7489
7490 void
7491 dwarf_select_sections_by_letters (const char *letters)
7492 {
7493 unsigned int lindex = 0;
7494
7495 while (letters[lindex])
7496 switch (letters[lindex++])
7497 {
7498 case 'i':
7499 do_debug_info = 1;
7500 break;
7501
7502 case 'a':
7503 do_debug_abbrevs = 1;
7504 break;
7505
7506 case 'l':
7507 do_debug_lines |= FLAG_DEBUG_LINES_RAW;
7508 break;
7509
7510 case 'L':
7511 do_debug_lines |= FLAG_DEBUG_LINES_DECODED;
7512 break;
7513
7514 case 'p':
7515 do_debug_pubnames = 1;
7516 break;
7517
7518 case 't':
7519 do_debug_pubtypes = 1;
7520 break;
7521
7522 case 'r':
7523 do_debug_aranges = 1;
7524 break;
7525
7526 case 'R':
7527 do_debug_ranges = 1;
7528 break;
7529
7530 case 'F':
7531 do_debug_frames_interp = 1;
7532 case 'f':
7533 do_debug_frames = 1;
7534 break;
7535
7536 case 'm':
7537 do_debug_macinfo = 1;
7538 break;
7539
7540 case 's':
7541 do_debug_str = 1;
7542 break;
7543
7544 case 'o':
7545 do_debug_loc = 1;
7546 break;
7547
7548 default:
7549 warn (_("Unrecognized debug option '%s'\n"), letters);
7550 break;
7551 }
7552 }
7553
7554 void
7555 dwarf_select_sections_all (void)
7556 {
7557 do_debug_info = 1;
7558 do_debug_abbrevs = 1;
7559 do_debug_lines = FLAG_DEBUG_LINES_RAW;
7560 do_debug_pubnames = 1;
7561 do_debug_pubtypes = 1;
7562 do_debug_aranges = 1;
7563 do_debug_ranges = 1;
7564 do_debug_frames = 1;
7565 do_debug_macinfo = 1;
7566 do_debug_str = 1;
7567 do_debug_loc = 1;
7568 do_gdb_index = 1;
7569 do_trace_info = 1;
7570 do_trace_abbrevs = 1;
7571 do_trace_aranges = 1;
7572 do_debug_addr = 1;
7573 do_debug_cu_index = 1;
7574 }
7575
7576 struct dwarf_section_display debug_displays[] =
7577 {
7578 { { ".debug_abbrev", ".zdebug_abbrev", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7579 display_debug_abbrev, &do_debug_abbrevs, FALSE },
7580 { { ".debug_aranges", ".zdebug_aranges", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7581 display_debug_aranges, &do_debug_aranges, TRUE },
7582 { { ".debug_frame", ".zdebug_frame", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7583 display_debug_frames, &do_debug_frames, TRUE },
7584 { { ".debug_info", ".zdebug_info", NULL, NULL, 0, 0, abbrev, NULL, 0, NULL },
7585 display_debug_info, &do_debug_info, TRUE },
7586 { { ".debug_line", ".zdebug_line", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7587 display_debug_lines, &do_debug_lines, TRUE },
7588 { { ".debug_pubnames", ".zdebug_pubnames", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7589 display_debug_pubnames, &do_debug_pubnames, FALSE },
7590 { { ".debug_gnu_pubnames", ".zdebug_gnu_pubnames", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7591 display_debug_gnu_pubnames, &do_debug_pubnames, FALSE },
7592 { { ".eh_frame", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7593 display_debug_frames, &do_debug_frames, TRUE },
7594 { { ".debug_macinfo", ".zdebug_macinfo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7595 display_debug_macinfo, &do_debug_macinfo, FALSE },
7596 { { ".debug_macro", ".zdebug_macro", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7597 display_debug_macro, &do_debug_macinfo, TRUE },
7598 { { ".debug_str", ".zdebug_str", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7599 display_debug_str, &do_debug_str, FALSE },
7600 { { ".debug_loc", ".zdebug_loc", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7601 display_debug_loc, &do_debug_loc, TRUE },
7602 { { ".debug_pubtypes", ".zdebug_pubtypes", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7603 display_debug_pubnames, &do_debug_pubtypes, FALSE },
7604 { { ".debug_gnu_pubtypes", ".zdebug_gnu_pubtypes", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7605 display_debug_gnu_pubnames, &do_debug_pubtypes, FALSE },
7606 { { ".debug_ranges", ".zdebug_ranges", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7607 display_debug_ranges, &do_debug_ranges, TRUE },
7608 { { ".debug_static_func", ".zdebug_static_func", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7609 display_debug_not_supported, NULL, FALSE },
7610 { { ".debug_static_vars", ".zdebug_static_vars", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7611 display_debug_not_supported, NULL, FALSE },
7612 { { ".debug_types", ".zdebug_types", NULL, NULL, 0, 0, abbrev, NULL, 0, NULL },
7613 display_debug_types, &do_debug_info, TRUE },
7614 { { ".debug_weaknames", ".zdebug_weaknames", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7615 display_debug_not_supported, NULL, FALSE },
7616 { { ".gdb_index", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7617 display_gdb_index, &do_gdb_index, FALSE },
7618 { { ".trace_info", "", NULL, NULL, 0, 0, trace_abbrev, NULL, 0, NULL },
7619 display_trace_info, &do_trace_info, TRUE },
7620 { { ".trace_abbrev", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7621 display_debug_abbrev, &do_trace_abbrevs, FALSE },
7622 { { ".trace_aranges", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7623 display_debug_aranges, &do_trace_aranges, FALSE },
7624 { { ".debug_info.dwo", ".zdebug_info.dwo", NULL, NULL, 0, 0, abbrev_dwo, NULL, 0, NULL },
7625 display_debug_info, &do_debug_info, TRUE },
7626 { { ".debug_abbrev.dwo", ".zdebug_abbrev.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7627 display_debug_abbrev, &do_debug_abbrevs, FALSE },
7628 { { ".debug_types.dwo", ".zdebug_types.dwo", NULL, NULL, 0, 0, abbrev_dwo, NULL, 0, NULL },
7629 display_debug_types, &do_debug_info, TRUE },
7630 { { ".debug_line.dwo", ".zdebug_line.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7631 display_debug_lines, &do_debug_lines, TRUE },
7632 { { ".debug_loc.dwo", ".zdebug_loc.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7633 display_debug_loc, &do_debug_loc, TRUE },
7634 { { ".debug_macro.dwo", ".zdebug_macro.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7635 display_debug_macro, &do_debug_macinfo, TRUE },
7636 { { ".debug_macinfo.dwo", ".zdebug_macinfo.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7637 display_debug_macinfo, &do_debug_macinfo, FALSE },
7638 { { ".debug_str.dwo", ".zdebug_str.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7639 display_debug_str, &do_debug_str, TRUE },
7640 { { ".debug_str_offsets", ".zdebug_str_offsets", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7641 display_debug_str_offsets, NULL, FALSE },
7642 { { ".debug_str_offsets.dwo", ".zdebug_str_offsets.dwo", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7643 display_debug_str_offsets, NULL, FALSE },
7644 { { ".debug_addr", ".zdebug_addr", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7645 display_debug_addr, &do_debug_addr, TRUE },
7646 { { ".debug_cu_index", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7647 display_cu_index, &do_debug_cu_index, FALSE },
7648 { { ".debug_tu_index", "", NULL, NULL, 0, 0, 0, NULL, 0, NULL },
7649 display_cu_index, &do_debug_cu_index, FALSE },
7650 };