process_cu_tu_index
[deliverable/binutils-gdb.git] / binutils / dwarf.c
1 /* dwarf.c -- display DWARF contents of a BFD binary file
2 Copyright (C) 2005-2021 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 <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 #include "filenames.h"
32 #include "safe-ctype.h"
33 #include <assert.h>
34
35 #ifdef HAVE_LIBDEBUGINFOD
36 #include <elfutils/debuginfod.h>
37 #endif
38
39 #include <limits.h>
40 #ifndef CHAR_BIT
41 #define CHAR_BIT 8
42 #endif
43
44 #undef MAX
45 #undef MIN
46 #define MAX(a, b) ((a) > (b) ? (a) : (b))
47 #define MIN(a, b) ((a) < (b) ? (a) : (b))
48
49 static const char *regname (unsigned int regno, int row);
50 static const char *regname_internal_by_table_only (unsigned int regno);
51
52 static int have_frame_base;
53 static int need_base_address;
54
55 static unsigned int num_debug_info_entries = 0;
56 static unsigned int alloc_num_debug_info_entries = 0;
57 static debug_info *debug_information = NULL;
58 /* Special value for num_debug_info_entries to indicate
59 that the .debug_info section could not be loaded/parsed. */
60 #define DEBUG_INFO_UNAVAILABLE (unsigned int) -1
61
62 /* A .debug_info section can contain multiple links to separate
63 DWO object files. We use these structures to record these links. */
64 typedef enum dwo_type
65 {
66 DWO_NAME,
67 DWO_DIR,
68 DWO_ID
69 } dwo_type;
70
71 typedef struct dwo_info
72 {
73 dwo_type type;
74 const char * value;
75 dwarf_vma cu_offset;
76 struct dwo_info * next;
77 } dwo_info;
78
79 static dwo_info *first_dwo_info = NULL;
80 static bool need_dwo_info;
81
82 separate_info * first_separate_info = NULL;
83
84 unsigned int eh_addr_size;
85
86 int do_debug_info;
87 int do_debug_abbrevs;
88 int do_debug_lines;
89 int do_debug_pubnames;
90 int do_debug_pubtypes;
91 int do_debug_aranges;
92 int do_debug_ranges;
93 int do_debug_frames;
94 int do_debug_frames_interp;
95 int do_debug_macinfo;
96 int do_debug_str;
97 int do_debug_str_offsets;
98 int do_debug_loc;
99 int do_gdb_index;
100 int do_trace_info;
101 int do_trace_abbrevs;
102 int do_trace_aranges;
103 int do_debug_addr;
104 int do_debug_cu_index;
105 int do_wide;
106 int do_debug_links;
107 int do_follow_links = DEFAULT_FOR_FOLLOW_LINKS;
108 bool do_checks;
109
110 int dwarf_cutoff_level = -1;
111 unsigned long dwarf_start_die;
112
113 int dwarf_check = 0;
114
115 /* Convenient constant, to avoid having to cast -1 to dwarf_vma when
116 testing whether e.g. a locview list is present. */
117 static const dwarf_vma vm1 = -1;
118
119 /* Collection of CU/TU section sets from .debug_cu_index and .debug_tu_index
120 sections. For version 1 package files, each set is stored in SHNDX_POOL
121 as a zero-terminated list of section indexes comprising one set of debug
122 sections from a .dwo file. */
123
124 static unsigned int *shndx_pool = NULL;
125 static unsigned int shndx_pool_size = 0;
126 static unsigned int shndx_pool_used = 0;
127
128 /* For version 2 package files, each set contains an array of section offsets
129 and an array of section sizes, giving the offset and size of the
130 contribution from a CU or TU within one of the debug sections.
131 When displaying debug info from a package file, we need to use these
132 tables to locate the corresponding contributions to each section. */
133
134 struct cu_tu_set
135 {
136 uint64_t signature;
137 dwarf_vma section_offsets[DW_SECT_MAX];
138 size_t section_sizes[DW_SECT_MAX];
139 };
140
141 static int cu_count = 0;
142 static int tu_count = 0;
143 static struct cu_tu_set *cu_sets = NULL;
144 static struct cu_tu_set *tu_sets = NULL;
145
146 static bool load_cu_tu_indexes (void *);
147
148 /* An array that indicates for a given level of CU nesting whether
149 the latest DW_AT_type seen for that level was a signed type or
150 an unsigned type. */
151 #define MAX_CU_NESTING (1 << 8)
152 static bool level_type_signed[MAX_CU_NESTING];
153
154 /* Values for do_debug_lines. */
155 #define FLAG_DEBUG_LINES_RAW 1
156 #define FLAG_DEBUG_LINES_DECODED 2
157
158 static unsigned int
159 size_of_encoded_value (int encoding)
160 {
161 switch (encoding & 0x7)
162 {
163 default: /* ??? */
164 case 0: return eh_addr_size;
165 case 2: return 2;
166 case 3: return 4;
167 case 4: return 8;
168 }
169 }
170
171 static dwarf_vma
172 get_encoded_value (unsigned char **pdata,
173 int encoding,
174 struct dwarf_section *section,
175 unsigned char * end)
176 {
177 unsigned char * data = * pdata;
178 unsigned int size = size_of_encoded_value (encoding);
179 dwarf_vma val;
180
181 if (data >= end || size > (size_t) (end - data))
182 {
183 warn (_("Encoded value extends past end of section\n"));
184 * pdata = end;
185 return 0;
186 }
187
188 /* PR 17512: file: 002-829853-0.004. */
189 if (size > 8)
190 {
191 warn (_("Encoded size of %d is too large to read\n"), size);
192 * pdata = end;
193 return 0;
194 }
195
196 /* PR 17512: file: 1085-5603-0.004. */
197 if (size == 0)
198 {
199 warn (_("Encoded size of 0 is too small to read\n"));
200 * pdata = end;
201 return 0;
202 }
203
204 if (encoding & DW_EH_PE_signed)
205 val = byte_get_signed (data, size);
206 else
207 val = byte_get (data, size);
208
209 if ((encoding & 0x70) == DW_EH_PE_pcrel)
210 val += section->address + (data - section->start);
211
212 * pdata = data + size;
213 return val;
214 }
215
216 #if SIZEOF_LONG_LONG > SIZEOF_LONG
217 # ifndef __MINGW32__
218 # define DWARF_VMA_FMT "ll"
219 # define DWARF_VMA_FMT_LONG "%16.16llx"
220 # else
221 # define DWARF_VMA_FMT "I64"
222 # define DWARF_VMA_FMT_LONG "%016I64x"
223 # endif
224 #else
225 # define DWARF_VMA_FMT "l"
226 # define DWARF_VMA_FMT_LONG "%16.16lx"
227 #endif
228
229 /* Convert a dwarf vma value into a string. Returns a pointer to a static
230 buffer containing the converted VALUE. The value is converted according
231 to the printf formating character FMTCH. If NUM_BYTES is non-zero then
232 it specifies the maximum number of bytes to be displayed in the converted
233 value and FMTCH is ignored - hex is always used. */
234
235 static const char *
236 dwarf_vmatoa_1 (const char *fmtch, dwarf_vma value, unsigned num_bytes)
237 {
238 /* As dwarf_vmatoa is used more then once in a printf call
239 for output, we are cycling through an fixed array of pointers
240 for return address. */
241 static int buf_pos = 0;
242 static struct dwarf_vmatoa_buf
243 {
244 char place[64];
245 } buf[16];
246 char *ret;
247
248 ret = buf[buf_pos++].place;
249 buf_pos %= ARRAY_SIZE (buf);
250
251 if (num_bytes)
252 {
253 /* Printf does not have a way of specifying a maximum field width for an
254 integer value, so we print the full value into a buffer and then select
255 the precision we need. */
256 snprintf (ret, sizeof (buf[0].place), DWARF_VMA_FMT_LONG, value);
257 if (num_bytes > 8)
258 num_bytes = 8;
259 return ret + (16 - 2 * num_bytes);
260 }
261 else
262 {
263 char fmt[32];
264
265 if (fmtch)
266 sprintf (fmt, "%%%s%s", DWARF_VMA_FMT, fmtch);
267 else
268 sprintf (fmt, "%%%s", DWARF_VMA_FMT);
269 snprintf (ret, sizeof (buf[0].place), fmt, value);
270 return ret;
271 }
272 }
273
274 static inline const char *
275 dwarf_vmatoa (const char * fmtch, dwarf_vma value)
276 {
277 return dwarf_vmatoa_1 (fmtch, value, 0);
278 }
279
280 /* Print a dwarf_vma value (typically an address, offset or length) in
281 hexadecimal format, followed by a space. The length of the VALUE (and
282 hence the precision displayed) is determined by the NUM_BYTES parameter. */
283
284 static void
285 print_dwarf_vma (dwarf_vma value, unsigned num_bytes)
286 {
287 printf ("%s ", dwarf_vmatoa_1 (NULL, value, num_bytes));
288 }
289
290 /* Print a view number in hexadecimal value, with the same width
291 print_dwarf_vma would have printed it with the same num_bytes.
292 Print blanks for zero view, unless force is nonzero. */
293
294 static void
295 print_dwarf_view (dwarf_vma value, unsigned num_bytes, int force)
296 {
297 int len;
298 if (!num_bytes)
299 len = 4;
300 else
301 len = num_bytes * 2;
302
303 assert (value == (unsigned long) value);
304 if (value || force)
305 printf ("v%0*lx ", len - 1, (unsigned long) value);
306 else
307 printf ("%*s", len + 1, "");
308 }
309
310 /* Read in a LEB128 encoded value starting at address DATA.
311 If SIGN is true, return a signed LEB128 value.
312 If LENGTH_RETURN is not NULL, return in it the number of bytes read.
313 If STATUS_RETURN is not NULL, return with bit 0 (LSB) set if the
314 terminating byte was not found and with bit 1 set if the value
315 overflows a dwarf_vma.
316 No bytes will be read at address END or beyond. */
317
318 dwarf_vma
319 read_leb128 (unsigned char *data,
320 const unsigned char *const end,
321 bool sign,
322 unsigned int *length_return,
323 int *status_return)
324 {
325 dwarf_vma result = 0;
326 unsigned int num_read = 0;
327 unsigned int shift = 0;
328 int status = 1;
329
330 while (data < end)
331 {
332 unsigned char byte = *data++;
333 unsigned char lost, mask;
334
335 num_read++;
336
337 if (shift < CHAR_BIT * sizeof (result))
338 {
339 result |= ((dwarf_vma) (byte & 0x7f)) << shift;
340 /* These bits overflowed. */
341 lost = byte ^ (result >> shift);
342 /* And this is the mask of possible overflow bits. */
343 mask = 0x7f ^ ((dwarf_vma) 0x7f << shift >> shift);
344 shift += 7;
345 }
346 else
347 {
348 lost = byte;
349 mask = 0x7f;
350 }
351 if ((lost & mask) != (sign && (dwarf_signed_vma) result < 0 ? mask : 0))
352 status |= 2;
353
354 if ((byte & 0x80) == 0)
355 {
356 status &= ~1;
357 if (sign && shift < CHAR_BIT * sizeof (result) && (byte & 0x40))
358 result |= -((dwarf_vma) 1 << shift);
359 break;
360 }
361 }
362
363 if (length_return != NULL)
364 *length_return = num_read;
365 if (status_return != NULL)
366 *status_return = status;
367
368 return result;
369 }
370
371 /* Read AMOUNT bytes from PTR and store them in VAL.
372 Checks to make sure that the read will not reach or pass END.
373 FUNC chooses whether the value read is unsigned or signed, and may
374 be either byte_get or byte_get_signed. If INC is true, PTR is
375 incremented after reading the value.
376 This macro cannot protect against PTR values derived from user input.
377 The C standard sections 6.5.6 and 6.5.8 say attempts to do so using
378 pointers is undefined behaviour. */
379 #define SAFE_BYTE_GET_INTERNAL(VAL, PTR, AMOUNT, END, FUNC, INC) \
380 do \
381 { \
382 size_t amount = (AMOUNT); \
383 if (sizeof (VAL) < amount) \
384 { \
385 error (ngettext ("internal error: attempt to read %d byte " \
386 "of data in to %d sized variable", \
387 "internal error: attempt to read %d bytes " \
388 "of data in to %d sized variable", \
389 amount), \
390 (int) amount, (int) sizeof (VAL)); \
391 amount = sizeof (VAL); \
392 } \
393 if (ENABLE_CHECKING) \
394 assert ((PTR) <= (END)); \
395 size_t avail = (END) - (PTR); \
396 if ((PTR) > (END)) \
397 avail = 0; \
398 if (amount > avail) \
399 amount = avail; \
400 if (amount == 0) \
401 (VAL) = 0; \
402 else \
403 (VAL) = (FUNC) ((PTR), amount); \
404 if (INC) \
405 (PTR) += amount; \
406 } \
407 while (0)
408
409 #define SAFE_BYTE_GET(VAL, PTR, AMOUNT, END) \
410 SAFE_BYTE_GET_INTERNAL (VAL, PTR, AMOUNT, END, byte_get, false)
411
412 #define SAFE_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
413 SAFE_BYTE_GET_INTERNAL (VAL, PTR, AMOUNT, END, byte_get, true)
414
415 #define SAFE_SIGNED_BYTE_GET(VAL, PTR, AMOUNT, END) \
416 SAFE_BYTE_GET_INTERNAL (VAL, PTR, AMOUNT, END, byte_get_signed, false)
417
418 #define SAFE_SIGNED_BYTE_GET_AND_INC(VAL, PTR, AMOUNT, END) \
419 SAFE_BYTE_GET_INTERNAL (VAL, PTR, AMOUNT, END, byte_get_signed, true)
420
421 typedef struct State_Machine_Registers
422 {
423 dwarf_vma address;
424 unsigned int view;
425 unsigned int file;
426 unsigned int line;
427 unsigned int column;
428 int is_stmt;
429 int basic_block;
430 unsigned char op_index;
431 unsigned char end_sequence;
432 /* This variable hold the number of the last entry seen
433 in the File Table. */
434 unsigned int last_file_entry;
435 } SMR;
436
437 static SMR state_machine_regs;
438
439 static void
440 reset_state_machine (int is_stmt)
441 {
442 state_machine_regs.address = 0;
443 state_machine_regs.view = 0;
444 state_machine_regs.op_index = 0;
445 state_machine_regs.file = 1;
446 state_machine_regs.line = 1;
447 state_machine_regs.column = 0;
448 state_machine_regs.is_stmt = is_stmt;
449 state_machine_regs.basic_block = 0;
450 state_machine_regs.end_sequence = 0;
451 state_machine_regs.last_file_entry = 0;
452 }
453
454 /* Handled an extend line op.
455 Returns the number of bytes read. */
456
457 static size_t
458 process_extended_line_op (unsigned char * data,
459 int is_stmt,
460 unsigned char * end)
461 {
462 unsigned char op_code;
463 size_t len, header_len;
464 unsigned char *name;
465 unsigned char *orig_data = data;
466 dwarf_vma adr, val;
467
468 READ_ULEB (len, data, end);
469 header_len = data - orig_data;
470
471 if (len == 0 || data >= end || len > (size_t) (end - data))
472 {
473 warn (_("Badly formed extended line op encountered!\n"));
474 return header_len;
475 }
476
477 op_code = *data++;
478
479 printf (_(" Extended opcode %d: "), op_code);
480
481 switch (op_code)
482 {
483 case DW_LNE_end_sequence:
484 printf (_("End of Sequence\n\n"));
485 reset_state_machine (is_stmt);
486 break;
487
488 case DW_LNE_set_address:
489 /* PR 17512: file: 002-100480-0.004. */
490 if (len - 1 > 8)
491 {
492 warn (_("Length (%lu) of DW_LNE_set_address op is too long\n"),
493 (unsigned long) len - 1);
494 adr = 0;
495 }
496 else
497 SAFE_BYTE_GET (adr, data, len - 1, end);
498 printf (_("set Address to 0x%s\n"), dwarf_vmatoa ("x", adr));
499 state_machine_regs.address = adr;
500 state_machine_regs.view = 0;
501 state_machine_regs.op_index = 0;
502 break;
503
504 case DW_LNE_define_file:
505 printf (_("define new File Table entry\n"));
506 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
507 printf (" %d\t", ++state_machine_regs.last_file_entry);
508
509 {
510 size_t l;
511
512 name = data;
513 l = strnlen ((char *) data, end - data);
514 data += l;
515 if (data < end)
516 data++;
517 READ_ULEB (val, data, end);
518 printf ("%s\t", dwarf_vmatoa ("u", val));
519 READ_ULEB (val, data, end);
520 printf ("%s\t", dwarf_vmatoa ("u", val));
521 READ_ULEB (val, data, end);
522 printf ("%s\t", dwarf_vmatoa ("u", val));
523 printf ("%.*s\n\n", (int) l, name);
524 }
525
526 if (((size_t) (data - orig_data) != len + header_len) || data >= end)
527 warn (_("DW_LNE_define_file: Bad opcode length\n"));
528 break;
529
530 case DW_LNE_set_discriminator:
531 READ_ULEB (val, data, end);
532 printf (_("set Discriminator to %s\n"), dwarf_vmatoa ("u", val));
533 break;
534
535 /* HP extensions. */
536 case DW_LNE_HP_negate_is_UV_update:
537 printf ("DW_LNE_HP_negate_is_UV_update\n");
538 break;
539 case DW_LNE_HP_push_context:
540 printf ("DW_LNE_HP_push_context\n");
541 break;
542 case DW_LNE_HP_pop_context:
543 printf ("DW_LNE_HP_pop_context\n");
544 break;
545 case DW_LNE_HP_set_file_line_column:
546 printf ("DW_LNE_HP_set_file_line_column\n");
547 break;
548 case DW_LNE_HP_set_routine_name:
549 printf ("DW_LNE_HP_set_routine_name\n");
550 break;
551 case DW_LNE_HP_set_sequence:
552 printf ("DW_LNE_HP_set_sequence\n");
553 break;
554 case DW_LNE_HP_negate_post_semantics:
555 printf ("DW_LNE_HP_negate_post_semantics\n");
556 break;
557 case DW_LNE_HP_negate_function_exit:
558 printf ("DW_LNE_HP_negate_function_exit\n");
559 break;
560 case DW_LNE_HP_negate_front_end_logical:
561 printf ("DW_LNE_HP_negate_front_end_logical\n");
562 break;
563 case DW_LNE_HP_define_proc:
564 printf ("DW_LNE_HP_define_proc\n");
565 break;
566 case DW_LNE_HP_source_file_correlation:
567 {
568 unsigned char *edata = data + len - 1;
569
570 printf ("DW_LNE_HP_source_file_correlation\n");
571
572 while (data < edata)
573 {
574 unsigned int opc;
575
576 READ_ULEB (opc, data, edata);
577
578 switch (opc)
579 {
580 case DW_LNE_HP_SFC_formfeed:
581 printf (" DW_LNE_HP_SFC_formfeed\n");
582 break;
583 case DW_LNE_HP_SFC_set_listing_line:
584 READ_ULEB (val, data, edata);
585 printf (" DW_LNE_HP_SFC_set_listing_line (%s)\n",
586 dwarf_vmatoa ("u", val));
587 break;
588 case DW_LNE_HP_SFC_associate:
589 printf (" DW_LNE_HP_SFC_associate ");
590 READ_ULEB (val, data, edata);
591 printf ("(%s", dwarf_vmatoa ("u", val));
592 READ_ULEB (val, data, edata);
593 printf (",%s", dwarf_vmatoa ("u", val));
594 READ_ULEB (val, data, edata);
595 printf (",%s)\n", dwarf_vmatoa ("u", val));
596 break;
597 default:
598 printf (_(" UNKNOWN DW_LNE_HP_SFC opcode (%u)\n"), opc);
599 data = edata;
600 break;
601 }
602 }
603 }
604 break;
605
606 default:
607 {
608 unsigned int rlen = len - 1;
609
610 if (op_code >= DW_LNE_lo_user
611 /* The test against DW_LNW_hi_user is redundant due to
612 the limited range of the unsigned char data type used
613 for op_code. */
614 /*&& op_code <= DW_LNE_hi_user*/)
615 printf (_("user defined: "));
616 else
617 printf (_("UNKNOWN: "));
618 printf (_("length %d ["), rlen);
619 for (; rlen; rlen--)
620 printf (" %02x", *data++);
621 printf ("]\n");
622 }
623 break;
624 }
625
626 return len + header_len;
627 }
628
629 static const unsigned char *
630 fetch_indirect_string (dwarf_vma offset)
631 {
632 struct dwarf_section *section = &debug_displays [str].section;
633 const unsigned char * ret;
634
635 if (section->start == NULL)
636 return (const unsigned char *) _("<no .debug_str section>");
637
638 if (offset >= section->size)
639 {
640 warn (_("DW_FORM_strp offset too big: 0x%s\n"),
641 dwarf_vmatoa ("x", offset));
642 return (const unsigned char *) _("<offset is too big>");
643 }
644
645 ret = section->start + offset;
646 /* Unfortunately we cannot rely upon the .debug_str section ending with a
647 NUL byte. Since our caller is expecting to receive a well formed C
648 string we test for the lack of a terminating byte here. */
649 if (strnlen ((const char *) ret, section->size - offset)
650 == section->size - offset)
651 ret = (const unsigned char *)
652 _("<no NUL byte at end of .debug_str section>");
653
654 return ret;
655 }
656
657 static const unsigned char *
658 fetch_indirect_line_string (dwarf_vma offset)
659 {
660 struct dwarf_section *section = &debug_displays [line_str].section;
661 const unsigned char * ret;
662
663 if (section->start == NULL)
664 return (const unsigned char *) _("<no .debug_line_str section>");
665
666 if (offset >= section->size)
667 {
668 warn (_("DW_FORM_line_strp offset too big: 0x%s\n"),
669 dwarf_vmatoa ("x", offset));
670 return (const unsigned char *) _("<offset is too big>");
671 }
672
673 ret = section->start + offset;
674 /* Unfortunately we cannot rely upon the .debug_line_str section ending
675 with a NUL byte. Since our caller is expecting to receive a well formed
676 C string we test for the lack of a terminating byte here. */
677 if (strnlen ((const char *) ret, section->size - offset)
678 == section->size - offset)
679 ret = (const unsigned char *)
680 _("<no NUL byte at end of .debug_line_str section>");
681
682 return ret;
683 }
684
685 static const char *
686 fetch_indexed_string (dwarf_vma idx, struct cu_tu_set *this_set,
687 dwarf_vma offset_size, bool dwo)
688 {
689 enum dwarf_section_display_enum str_sec_idx = dwo ? str_dwo : str;
690 enum dwarf_section_display_enum idx_sec_idx = dwo ? str_index_dwo : str_index;
691 struct dwarf_section *index_section = &debug_displays [idx_sec_idx].section;
692 struct dwarf_section *str_section = &debug_displays [str_sec_idx].section;
693 dwarf_vma index_offset;
694 dwarf_vma str_offset;
695 const char * ret;
696 unsigned char *curr = index_section->start;
697 unsigned char *end = curr + index_section->size;
698 dwarf_vma length;
699
700 if (index_section->start == NULL)
701 return (dwo ? _("<no .debug_str_offsets.dwo section>")
702 : _("<no .debug_str_offsets section>"));
703
704 if (str_section->start == NULL)
705 return (dwo ? _("<no .debug_str.dwo section>")
706 : _("<no .debug_str section>"));
707
708 /* FIXME: We should cache the length... */
709 SAFE_BYTE_GET_AND_INC (length, curr, 4, end);
710 if (length == 0xffffffff)
711 {
712 if (offset_size != 8)
713 warn (_("Expected offset size of 8 but given %s"), dwarf_vmatoa ("x", offset_size));
714 SAFE_BYTE_GET_AND_INC (length, curr, 8, end);
715 }
716 else if (offset_size != 4)
717 {
718 warn (_("Expected offset size of 4 but given %s"), dwarf_vmatoa ("x", offset_size));
719 }
720
721 if (length == 0)
722 {
723 /* This is probably an old style .debug_str_offset section which
724 just contains offsets and no header (and the first offset is 0). */
725 curr = index_section->start;
726 length = index_section->size;
727 }
728 else
729 {
730 /* Skip the version and padding bytes.
731 We assume that they are correct. */
732 if (end - curr >= 4)
733 curr += 4;
734 else
735 curr = end;
736 if (length >= 4)
737 length -= 4;
738 else
739 length = 0;
740
741 if (this_set != NULL
742 && this_set->section_sizes[DW_SECT_STR_OFFSETS] < length)
743 length = this_set->section_sizes[DW_SECT_STR_OFFSETS];
744
745 if (length > (dwarf_vma) (end - curr))
746 {
747 warn (_("index table size too large for section %s vs %s\n"),
748 dwarf_vmatoa ("x", length),
749 dwarf_vmatoa ("x", index_section->size));
750 length = end - curr;
751 }
752
753 if (length < offset_size)
754 {
755 warn (_("index table size %s is too small\n"),
756 dwarf_vmatoa ("x", length));
757 return _("<table too small>");
758 }
759 }
760
761 index_offset = idx * offset_size;
762
763 if (this_set != NULL)
764 index_offset += this_set->section_offsets [DW_SECT_STR_OFFSETS];
765
766 if (index_offset >= length
767 || length - index_offset < offset_size)
768 {
769 warn (_("DW_FORM_GNU_str_index offset too big: 0x%s vs 0x%s\n"),
770 dwarf_vmatoa ("x", index_offset),
771 dwarf_vmatoa ("x", length));
772 return _("<index offset is too big>");
773 }
774
775 str_offset = byte_get (curr + index_offset, offset_size);
776 str_offset -= str_section->address;
777 if (str_offset >= str_section->size)
778 {
779 warn (_("DW_FORM_GNU_str_index indirect offset too big: 0x%s\n"),
780 dwarf_vmatoa ("x", str_offset));
781 return _("<indirect index offset is too big>");
782 }
783
784 ret = (const char *) str_section->start + str_offset;
785 /* Unfortunately we cannot rely upon str_section ending with a NUL byte.
786 Since our caller is expecting to receive a well formed C string we test
787 for the lack of a terminating byte here. */
788 if (strnlen (ret, str_section->size - str_offset)
789 == str_section->size - str_offset)
790 ret = (const char *) _("<no NUL byte at end of section>");
791
792 return ret;
793 }
794
795 static const char *
796 fetch_indexed_value (dwarf_vma offset, dwarf_vma bytes)
797 {
798 struct dwarf_section *section = &debug_displays [debug_addr].section;
799
800 if (section->start == NULL)
801 return (_("<no .debug_addr section>"));
802
803 if (offset + bytes > section->size)
804 {
805 warn (_("Offset into section %s too big: 0x%s\n"),
806 section->name, dwarf_vmatoa ("x", offset));
807 return "<offset too big>";
808 }
809
810 return dwarf_vmatoa ("x", byte_get (section->start + offset, bytes));
811 }
812
813
814 /* FIXME: There are better and more efficient ways to handle
815 these structures. For now though, I just want something that
816 is simple to implement. */
817 /* Records a single attribute in an abbrev. */
818 typedef struct abbrev_attr
819 {
820 unsigned long attribute;
821 unsigned long form;
822 bfd_signed_vma implicit_const;
823 struct abbrev_attr * next;
824 }
825 abbrev_attr;
826
827 /* Records a single abbrev. */
828 typedef struct abbrev_entry
829 {
830 unsigned long number;
831 unsigned long tag;
832 int children;
833 struct abbrev_attr * first_attr;
834 struct abbrev_attr * last_attr;
835 struct abbrev_entry * next;
836 }
837 abbrev_entry;
838
839 /* Records a set of abbreviations. */
840 typedef struct abbrev_list
841 {
842 abbrev_entry * first_abbrev;
843 abbrev_entry * last_abbrev;
844 dwarf_vma abbrev_base;
845 dwarf_vma abbrev_offset;
846 struct abbrev_list * next;
847 unsigned char * start_of_next_abbrevs;
848 }
849 abbrev_list;
850
851 /* Records all the abbrevs found so far. */
852 static struct abbrev_list * abbrev_lists = NULL;
853
854 typedef struct abbrev_map
855 {
856 dwarf_vma start;
857 dwarf_vma end;
858 abbrev_list * list;
859 } abbrev_map;
860
861 /* Maps between CU offsets and abbrev sets. */
862 static abbrev_map * cu_abbrev_map = NULL;
863 static unsigned long num_abbrev_map_entries = 0;
864 static unsigned long next_free_abbrev_map_entry = 0;
865
866 #define INITIAL_NUM_ABBREV_MAP_ENTRIES 8
867 #define ABBREV_MAP_ENTRIES_INCREMENT 8
868
869 static void
870 record_abbrev_list_for_cu (dwarf_vma start, dwarf_vma end, abbrev_list * list)
871 {
872 if (cu_abbrev_map == NULL)
873 {
874 num_abbrev_map_entries = INITIAL_NUM_ABBREV_MAP_ENTRIES;
875 cu_abbrev_map = xmalloc (num_abbrev_map_entries * sizeof (* cu_abbrev_map));
876 }
877 else if (next_free_abbrev_map_entry == num_abbrev_map_entries)
878 {
879 num_abbrev_map_entries += ABBREV_MAP_ENTRIES_INCREMENT;
880 cu_abbrev_map = xrealloc (cu_abbrev_map, num_abbrev_map_entries * sizeof (* cu_abbrev_map));
881 }
882
883 cu_abbrev_map[next_free_abbrev_map_entry].start = start;
884 cu_abbrev_map[next_free_abbrev_map_entry].end = end;
885 cu_abbrev_map[next_free_abbrev_map_entry].list = list;
886 next_free_abbrev_map_entry ++;
887 }
888
889 static void
890 free_all_abbrevs (void)
891 {
892 abbrev_list * list;
893
894 for (list = abbrev_lists; list != NULL;)
895 {
896 abbrev_list * next = list->next;
897 abbrev_entry * abbrv;
898
899 for (abbrv = list->first_abbrev; abbrv != NULL;)
900 {
901 abbrev_entry * next_abbrev = abbrv->next;
902 abbrev_attr * attr;
903
904 for (attr = abbrv->first_attr; attr;)
905 {
906 abbrev_attr *next_attr = attr->next;
907
908 free (attr);
909 attr = next_attr;
910 }
911
912 free (abbrv);
913 abbrv = next_abbrev;
914 }
915
916 free (list);
917 list = next;
918 }
919
920 abbrev_lists = NULL;
921 }
922
923 static abbrev_list *
924 new_abbrev_list (dwarf_vma abbrev_base, dwarf_vma abbrev_offset)
925 {
926 abbrev_list * list = (abbrev_list *) xcalloc (sizeof * list, 1);
927
928 list->abbrev_base = abbrev_base;
929 list->abbrev_offset = abbrev_offset;
930
931 list->next = abbrev_lists;
932 abbrev_lists = list;
933
934 return list;
935 }
936
937 static abbrev_list *
938 find_abbrev_list_by_abbrev_offset (dwarf_vma abbrev_base,
939 dwarf_vma abbrev_offset)
940 {
941 abbrev_list * list;
942
943 for (list = abbrev_lists; list != NULL; list = list->next)
944 if (list->abbrev_base == abbrev_base
945 && list->abbrev_offset == abbrev_offset)
946 return list;
947
948 return NULL;
949 }
950
951 /* Find the abbreviation map for the CU that includes OFFSET.
952 OFFSET is an absolute offset from the start of the .debug_info section. */
953 /* FIXME: This function is going to slow down readelf & objdump.
954 Consider using a better algorithm to mitigate this effect. */
955
956 static abbrev_map *
957 find_abbrev_map_by_offset (dwarf_vma offset)
958 {
959 unsigned long i;
960
961 for (i = 0; i < next_free_abbrev_map_entry; i++)
962 if (cu_abbrev_map[i].start <= offset
963 && cu_abbrev_map[i].end > offset)
964 return cu_abbrev_map + i;
965
966 return NULL;
967 }
968
969 static void
970 add_abbrev (unsigned long number,
971 unsigned long tag,
972 int children,
973 abbrev_list * list)
974 {
975 abbrev_entry * entry;
976
977 entry = (abbrev_entry *) xmalloc (sizeof (*entry));
978
979 entry->number = number;
980 entry->tag = tag;
981 entry->children = children;
982 entry->first_attr = NULL;
983 entry->last_attr = NULL;
984 entry->next = NULL;
985
986 assert (list != NULL);
987
988 if (list->first_abbrev == NULL)
989 list->first_abbrev = entry;
990 else
991 list->last_abbrev->next = entry;
992
993 list->last_abbrev = entry;
994 }
995
996 static void
997 add_abbrev_attr (unsigned long attribute,
998 unsigned long form,
999 bfd_signed_vma implicit_const,
1000 abbrev_list * list)
1001 {
1002 abbrev_attr *attr;
1003
1004 attr = (abbrev_attr *) xmalloc (sizeof (*attr));
1005
1006 attr->attribute = attribute;
1007 attr->form = form;
1008 attr->implicit_const = implicit_const;
1009 attr->next = NULL;
1010
1011 assert (list != NULL && list->last_abbrev != NULL);
1012
1013 if (list->last_abbrev->first_attr == NULL)
1014 list->last_abbrev->first_attr = attr;
1015 else
1016 list->last_abbrev->last_attr->next = attr;
1017
1018 list->last_abbrev->last_attr = attr;
1019 }
1020
1021 /* Processes the (partial) contents of a .debug_abbrev section.
1022 Returns NULL if the end of the section was encountered.
1023 Returns the address after the last byte read if the end of
1024 an abbreviation set was found. */
1025
1026 static unsigned char *
1027 process_abbrev_set (struct dwarf_section *section,
1028 dwarf_vma abbrev_base,
1029 dwarf_vma abbrev_size,
1030 dwarf_vma abbrev_offset,
1031 abbrev_list *list)
1032 {
1033 if (abbrev_base >= section->size
1034 || abbrev_size > section->size - abbrev_base)
1035 {
1036 /* PR 17531: file:4bcd9ce9. */
1037 warn (_("Debug info is corrupted, abbrev size (%lx) is larger than "
1038 "abbrev section size (%lx)\n"),
1039 (unsigned long) (abbrev_base + abbrev_size),
1040 (unsigned long) section->size);
1041 return NULL;
1042 }
1043 if (abbrev_offset >= abbrev_size)
1044 {
1045 warn (_("Debug info is corrupted, abbrev offset (%lx) is larger than "
1046 "abbrev section size (%lx)\n"),
1047 (unsigned long) abbrev_offset,
1048 (unsigned long) abbrev_size);
1049 return NULL;
1050 }
1051
1052 unsigned char *start = section->start + abbrev_base;
1053 unsigned char *end = start + abbrev_size;
1054 start += abbrev_offset;
1055 while (start < end)
1056 {
1057 unsigned long entry;
1058 unsigned long tag;
1059 unsigned long attribute;
1060 int children;
1061
1062 READ_ULEB (entry, start, end);
1063
1064 /* A single zero is supposed to end the set according
1065 to the standard. If there's more, then signal that to
1066 the caller. */
1067 if (start == end)
1068 return NULL;
1069 if (entry == 0)
1070 return start;
1071
1072 READ_ULEB (tag, start, end);
1073 if (start == end)
1074 return NULL;
1075
1076 children = *start++;
1077
1078 add_abbrev (entry, tag, children, list);
1079
1080 do
1081 {
1082 unsigned long form;
1083 /* Initialize it due to a false compiler warning. */
1084 bfd_signed_vma implicit_const = -1;
1085
1086 READ_ULEB (attribute, start, end);
1087 if (start == end)
1088 break;
1089
1090 READ_ULEB (form, start, end);
1091 if (start == end)
1092 break;
1093
1094 if (form == DW_FORM_implicit_const)
1095 {
1096 READ_SLEB (implicit_const, start, end);
1097 if (start == end)
1098 break;
1099 }
1100
1101 add_abbrev_attr (attribute, form, implicit_const, list);
1102 }
1103 while (attribute != 0);
1104 }
1105
1106 /* Report the missing single zero which ends the section. */
1107 error (_(".debug_abbrev section not zero terminated\n"));
1108
1109 return NULL;
1110 }
1111
1112 static const char *
1113 get_TAG_name (unsigned long tag)
1114 {
1115 const char *name = get_DW_TAG_name ((unsigned int) tag);
1116
1117 if (name == NULL)
1118 {
1119 static char buffer[100];
1120
1121 if (tag >= DW_TAG_lo_user && tag <= DW_TAG_hi_user)
1122 snprintf (buffer, sizeof (buffer), _("User TAG value: %#lx"), tag);
1123 else
1124 snprintf (buffer, sizeof (buffer), _("Unknown TAG value: %#lx"), tag);
1125 return buffer;
1126 }
1127
1128 return name;
1129 }
1130
1131 static const char *
1132 get_FORM_name (unsigned long form)
1133 {
1134 const char *name;
1135
1136 if (form == 0)
1137 return "DW_FORM value: 0";
1138
1139 name = get_DW_FORM_name (form);
1140 if (name == NULL)
1141 {
1142 static char buffer[100];
1143
1144 snprintf (buffer, sizeof (buffer), _("Unknown FORM value: %lx"), form);
1145 return buffer;
1146 }
1147
1148 return name;
1149 }
1150
1151 static const char *
1152 get_IDX_name (unsigned long idx)
1153 {
1154 const char *name = get_DW_IDX_name ((unsigned int) idx);
1155
1156 if (name == NULL)
1157 {
1158 static char buffer[100];
1159
1160 snprintf (buffer, sizeof (buffer), _("Unknown IDX value: %lx"), idx);
1161 return buffer;
1162 }
1163
1164 return name;
1165 }
1166
1167 static unsigned char *
1168 display_block (unsigned char *data,
1169 dwarf_vma length,
1170 const unsigned char * const end, char delimiter)
1171 {
1172 dwarf_vma maxlen;
1173
1174 printf (_("%c%s byte block: "), delimiter, dwarf_vmatoa ("u", length));
1175 if (data > end)
1176 return (unsigned char *) end;
1177
1178 maxlen = (dwarf_vma) (end - data);
1179 length = length > maxlen ? maxlen : length;
1180
1181 while (length --)
1182 printf ("%lx ", (unsigned long) byte_get (data++, 1));
1183
1184 return data;
1185 }
1186
1187 static int
1188 decode_location_expression (unsigned char * data,
1189 unsigned int pointer_size,
1190 unsigned int offset_size,
1191 int dwarf_version,
1192 dwarf_vma length,
1193 dwarf_vma cu_offset,
1194 struct dwarf_section * section)
1195 {
1196 unsigned op;
1197 dwarf_vma uvalue;
1198 dwarf_signed_vma svalue;
1199 unsigned char *end = data + length;
1200 int need_frame_base = 0;
1201
1202 while (data < end)
1203 {
1204 op = *data++;
1205
1206 switch (op)
1207 {
1208 case DW_OP_addr:
1209 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1210 printf ("DW_OP_addr: %s", dwarf_vmatoa ("x", uvalue));
1211 break;
1212 case DW_OP_deref:
1213 printf ("DW_OP_deref");
1214 break;
1215 case DW_OP_const1u:
1216 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1217 printf ("DW_OP_const1u: %lu", (unsigned long) uvalue);
1218 break;
1219 case DW_OP_const1s:
1220 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 1, end);
1221 printf ("DW_OP_const1s: %ld", (long) svalue);
1222 break;
1223 case DW_OP_const2u:
1224 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
1225 printf ("DW_OP_const2u: %lu", (unsigned long) uvalue);
1226 break;
1227 case DW_OP_const2s:
1228 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1229 printf ("DW_OP_const2s: %ld", (long) svalue);
1230 break;
1231 case DW_OP_const4u:
1232 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1233 printf ("DW_OP_const4u: %lu", (unsigned long) uvalue);
1234 break;
1235 case DW_OP_const4s:
1236 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1237 printf ("DW_OP_const4s: %ld", (long) svalue);
1238 break;
1239 case DW_OP_const8u:
1240 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1241 printf ("DW_OP_const8u: %lu ", (unsigned long) uvalue);
1242 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1243 printf ("%lu", (unsigned long) uvalue);
1244 break;
1245 case DW_OP_const8s:
1246 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1247 printf ("DW_OP_const8s: %ld ", (long) svalue);
1248 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1249 printf ("%ld", (long) svalue);
1250 break;
1251 case DW_OP_constu:
1252 READ_ULEB (uvalue, data, end);
1253 printf ("DW_OP_constu: %s", dwarf_vmatoa ("u", uvalue));
1254 break;
1255 case DW_OP_consts:
1256 READ_SLEB (svalue, data, end);
1257 printf ("DW_OP_consts: %s", dwarf_vmatoa ("d", svalue));
1258 break;
1259 case DW_OP_dup:
1260 printf ("DW_OP_dup");
1261 break;
1262 case DW_OP_drop:
1263 printf ("DW_OP_drop");
1264 break;
1265 case DW_OP_over:
1266 printf ("DW_OP_over");
1267 break;
1268 case DW_OP_pick:
1269 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1270 printf ("DW_OP_pick: %ld", (unsigned long) uvalue);
1271 break;
1272 case DW_OP_swap:
1273 printf ("DW_OP_swap");
1274 break;
1275 case DW_OP_rot:
1276 printf ("DW_OP_rot");
1277 break;
1278 case DW_OP_xderef:
1279 printf ("DW_OP_xderef");
1280 break;
1281 case DW_OP_abs:
1282 printf ("DW_OP_abs");
1283 break;
1284 case DW_OP_and:
1285 printf ("DW_OP_and");
1286 break;
1287 case DW_OP_div:
1288 printf ("DW_OP_div");
1289 break;
1290 case DW_OP_minus:
1291 printf ("DW_OP_minus");
1292 break;
1293 case DW_OP_mod:
1294 printf ("DW_OP_mod");
1295 break;
1296 case DW_OP_mul:
1297 printf ("DW_OP_mul");
1298 break;
1299 case DW_OP_neg:
1300 printf ("DW_OP_neg");
1301 break;
1302 case DW_OP_not:
1303 printf ("DW_OP_not");
1304 break;
1305 case DW_OP_or:
1306 printf ("DW_OP_or");
1307 break;
1308 case DW_OP_plus:
1309 printf ("DW_OP_plus");
1310 break;
1311 case DW_OP_plus_uconst:
1312 READ_ULEB (uvalue, data, end);
1313 printf ("DW_OP_plus_uconst: %s", dwarf_vmatoa ("u", uvalue));
1314 break;
1315 case DW_OP_shl:
1316 printf ("DW_OP_shl");
1317 break;
1318 case DW_OP_shr:
1319 printf ("DW_OP_shr");
1320 break;
1321 case DW_OP_shra:
1322 printf ("DW_OP_shra");
1323 break;
1324 case DW_OP_xor:
1325 printf ("DW_OP_xor");
1326 break;
1327 case DW_OP_bra:
1328 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1329 printf ("DW_OP_bra: %ld", (long) svalue);
1330 break;
1331 case DW_OP_eq:
1332 printf ("DW_OP_eq");
1333 break;
1334 case DW_OP_ge:
1335 printf ("DW_OP_ge");
1336 break;
1337 case DW_OP_gt:
1338 printf ("DW_OP_gt");
1339 break;
1340 case DW_OP_le:
1341 printf ("DW_OP_le");
1342 break;
1343 case DW_OP_lt:
1344 printf ("DW_OP_lt");
1345 break;
1346 case DW_OP_ne:
1347 printf ("DW_OP_ne");
1348 break;
1349 case DW_OP_skip:
1350 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1351 printf ("DW_OP_skip: %ld", (long) svalue);
1352 break;
1353
1354 case DW_OP_lit0:
1355 case DW_OP_lit1:
1356 case DW_OP_lit2:
1357 case DW_OP_lit3:
1358 case DW_OP_lit4:
1359 case DW_OP_lit5:
1360 case DW_OP_lit6:
1361 case DW_OP_lit7:
1362 case DW_OP_lit8:
1363 case DW_OP_lit9:
1364 case DW_OP_lit10:
1365 case DW_OP_lit11:
1366 case DW_OP_lit12:
1367 case DW_OP_lit13:
1368 case DW_OP_lit14:
1369 case DW_OP_lit15:
1370 case DW_OP_lit16:
1371 case DW_OP_lit17:
1372 case DW_OP_lit18:
1373 case DW_OP_lit19:
1374 case DW_OP_lit20:
1375 case DW_OP_lit21:
1376 case DW_OP_lit22:
1377 case DW_OP_lit23:
1378 case DW_OP_lit24:
1379 case DW_OP_lit25:
1380 case DW_OP_lit26:
1381 case DW_OP_lit27:
1382 case DW_OP_lit28:
1383 case DW_OP_lit29:
1384 case DW_OP_lit30:
1385 case DW_OP_lit31:
1386 printf ("DW_OP_lit%d", op - DW_OP_lit0);
1387 break;
1388
1389 case DW_OP_reg0:
1390 case DW_OP_reg1:
1391 case DW_OP_reg2:
1392 case DW_OP_reg3:
1393 case DW_OP_reg4:
1394 case DW_OP_reg5:
1395 case DW_OP_reg6:
1396 case DW_OP_reg7:
1397 case DW_OP_reg8:
1398 case DW_OP_reg9:
1399 case DW_OP_reg10:
1400 case DW_OP_reg11:
1401 case DW_OP_reg12:
1402 case DW_OP_reg13:
1403 case DW_OP_reg14:
1404 case DW_OP_reg15:
1405 case DW_OP_reg16:
1406 case DW_OP_reg17:
1407 case DW_OP_reg18:
1408 case DW_OP_reg19:
1409 case DW_OP_reg20:
1410 case DW_OP_reg21:
1411 case DW_OP_reg22:
1412 case DW_OP_reg23:
1413 case DW_OP_reg24:
1414 case DW_OP_reg25:
1415 case DW_OP_reg26:
1416 case DW_OP_reg27:
1417 case DW_OP_reg28:
1418 case DW_OP_reg29:
1419 case DW_OP_reg30:
1420 case DW_OP_reg31:
1421 printf ("DW_OP_reg%d (%s)", op - DW_OP_reg0,
1422 regname (op - DW_OP_reg0, 1));
1423 break;
1424
1425 case DW_OP_breg0:
1426 case DW_OP_breg1:
1427 case DW_OP_breg2:
1428 case DW_OP_breg3:
1429 case DW_OP_breg4:
1430 case DW_OP_breg5:
1431 case DW_OP_breg6:
1432 case DW_OP_breg7:
1433 case DW_OP_breg8:
1434 case DW_OP_breg9:
1435 case DW_OP_breg10:
1436 case DW_OP_breg11:
1437 case DW_OP_breg12:
1438 case DW_OP_breg13:
1439 case DW_OP_breg14:
1440 case DW_OP_breg15:
1441 case DW_OP_breg16:
1442 case DW_OP_breg17:
1443 case DW_OP_breg18:
1444 case DW_OP_breg19:
1445 case DW_OP_breg20:
1446 case DW_OP_breg21:
1447 case DW_OP_breg22:
1448 case DW_OP_breg23:
1449 case DW_OP_breg24:
1450 case DW_OP_breg25:
1451 case DW_OP_breg26:
1452 case DW_OP_breg27:
1453 case DW_OP_breg28:
1454 case DW_OP_breg29:
1455 case DW_OP_breg30:
1456 case DW_OP_breg31:
1457 READ_SLEB (svalue, data, end);
1458 printf ("DW_OP_breg%d (%s): %s", op - DW_OP_breg0,
1459 regname (op - DW_OP_breg0, 1), dwarf_vmatoa ("d", svalue));
1460 break;
1461
1462 case DW_OP_regx:
1463 READ_ULEB (uvalue, data, end);
1464 printf ("DW_OP_regx: %s (%s)",
1465 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1466 break;
1467 case DW_OP_fbreg:
1468 need_frame_base = 1;
1469 READ_SLEB (svalue, data, end);
1470 printf ("DW_OP_fbreg: %s", dwarf_vmatoa ("d", svalue));
1471 break;
1472 case DW_OP_bregx:
1473 READ_ULEB (uvalue, data, end);
1474 READ_SLEB (svalue, data, end);
1475 printf ("DW_OP_bregx: %s (%s) %s",
1476 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1),
1477 dwarf_vmatoa ("d", svalue));
1478 break;
1479 case DW_OP_piece:
1480 READ_ULEB (uvalue, data, end);
1481 printf ("DW_OP_piece: %s", dwarf_vmatoa ("u", uvalue));
1482 break;
1483 case DW_OP_deref_size:
1484 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1485 printf ("DW_OP_deref_size: %ld", (long) uvalue);
1486 break;
1487 case DW_OP_xderef_size:
1488 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1489 printf ("DW_OP_xderef_size: %ld", (long) uvalue);
1490 break;
1491 case DW_OP_nop:
1492 printf ("DW_OP_nop");
1493 break;
1494
1495 /* DWARF 3 extensions. */
1496 case DW_OP_push_object_address:
1497 printf ("DW_OP_push_object_address");
1498 break;
1499 case DW_OP_call2:
1500 /* FIXME: Strictly speaking for 64-bit DWARF3 files
1501 this ought to be an 8-byte wide computation. */
1502 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 2, end);
1503 printf ("DW_OP_call2: <0x%s>",
1504 dwarf_vmatoa ("x", svalue + cu_offset));
1505 break;
1506 case DW_OP_call4:
1507 /* FIXME: Strictly speaking for 64-bit DWARF3 files
1508 this ought to be an 8-byte wide computation. */
1509 SAFE_SIGNED_BYTE_GET_AND_INC (svalue, data, 4, end);
1510 printf ("DW_OP_call4: <0x%s>",
1511 dwarf_vmatoa ("x", svalue + cu_offset));
1512 break;
1513 case DW_OP_call_ref:
1514 /* FIXME: Strictly speaking for 64-bit DWARF3 files
1515 this ought to be an 8-byte wide computation. */
1516 if (dwarf_version == -1)
1517 {
1518 printf (_("(DW_OP_call_ref in frame info)"));
1519 /* No way to tell where the next op is, so just bail. */
1520 return need_frame_base;
1521 }
1522 if (dwarf_version == 2)
1523 {
1524 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1525 }
1526 else
1527 {
1528 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1529 }
1530 printf ("DW_OP_call_ref: <0x%s>", dwarf_vmatoa ("x", uvalue));
1531 break;
1532 case DW_OP_form_tls_address:
1533 printf ("DW_OP_form_tls_address");
1534 break;
1535 case DW_OP_call_frame_cfa:
1536 printf ("DW_OP_call_frame_cfa");
1537 break;
1538 case DW_OP_bit_piece:
1539 printf ("DW_OP_bit_piece: ");
1540 READ_ULEB (uvalue, data, end);
1541 printf (_("size: %s "), dwarf_vmatoa ("u", uvalue));
1542 READ_ULEB (uvalue, data, end);
1543 printf (_("offset: %s "), dwarf_vmatoa ("u", uvalue));
1544 break;
1545
1546 /* DWARF 4 extensions. */
1547 case DW_OP_stack_value:
1548 printf ("DW_OP_stack_value");
1549 break;
1550
1551 case DW_OP_implicit_value:
1552 printf ("DW_OP_implicit_value");
1553 READ_ULEB (uvalue, data, end);
1554 data = display_block (data, uvalue, end, ' ');
1555 break;
1556
1557 /* GNU extensions. */
1558 case DW_OP_GNU_push_tls_address:
1559 printf (_("DW_OP_GNU_push_tls_address or DW_OP_HP_unknown"));
1560 break;
1561 case DW_OP_GNU_uninit:
1562 printf ("DW_OP_GNU_uninit");
1563 /* FIXME: Is there data associated with this OP ? */
1564 break;
1565 case DW_OP_GNU_encoded_addr:
1566 {
1567 int encoding = 0;
1568 dwarf_vma addr;
1569
1570 if (data < end)
1571 encoding = *data++;
1572 addr = get_encoded_value (&data, encoding, section, end);
1573
1574 printf ("DW_OP_GNU_encoded_addr: fmt:%02x addr:", encoding);
1575 print_dwarf_vma (addr, pointer_size);
1576 }
1577 break;
1578 case DW_OP_implicit_pointer:
1579 case DW_OP_GNU_implicit_pointer:
1580 /* FIXME: Strictly speaking for 64-bit DWARF3 files
1581 this ought to be an 8-byte wide computation. */
1582 if (dwarf_version == -1)
1583 {
1584 printf (_("(%s in frame info)"),
1585 (op == DW_OP_implicit_pointer
1586 ? "DW_OP_implicit_pointer"
1587 : "DW_OP_GNU_implicit_pointer"));
1588 /* No way to tell where the next op is, so just bail. */
1589 return need_frame_base;
1590 }
1591 if (dwarf_version == 2)
1592 {
1593 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1594 }
1595 else
1596 {
1597 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1598 }
1599 READ_SLEB (svalue, data, end);
1600 printf ("%s: <0x%s> %s",
1601 (op == DW_OP_implicit_pointer
1602 ? "DW_OP_implicit_pointer" : "DW_OP_GNU_implicit_pointer"),
1603 dwarf_vmatoa ("x", uvalue),
1604 dwarf_vmatoa ("d", svalue));
1605 break;
1606 case DW_OP_entry_value:
1607 case DW_OP_GNU_entry_value:
1608 READ_ULEB (uvalue, data, end);
1609 /* PR 17531: file: 0cc9cd00. */
1610 if (uvalue > (dwarf_vma) (end - data))
1611 uvalue = end - data;
1612 printf ("%s: (", (op == DW_OP_entry_value ? "DW_OP_entry_value"
1613 : "DW_OP_GNU_entry_value"));
1614 if (decode_location_expression (data, pointer_size, offset_size,
1615 dwarf_version, uvalue,
1616 cu_offset, section))
1617 need_frame_base = 1;
1618 putchar (')');
1619 data += uvalue;
1620 break;
1621 case DW_OP_const_type:
1622 case DW_OP_GNU_const_type:
1623 READ_ULEB (uvalue, data, end);
1624 printf ("%s: <0x%s> ",
1625 (op == DW_OP_const_type ? "DW_OP_const_type"
1626 : "DW_OP_GNU_const_type"),
1627 dwarf_vmatoa ("x", cu_offset + uvalue));
1628 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1629 data = display_block (data, uvalue, end, ' ');
1630 break;
1631 case DW_OP_regval_type:
1632 case DW_OP_GNU_regval_type:
1633 READ_ULEB (uvalue, data, end);
1634 printf ("%s: %s (%s)",
1635 (op == DW_OP_regval_type ? "DW_OP_regval_type"
1636 : "DW_OP_GNU_regval_type"),
1637 dwarf_vmatoa ("u", uvalue), regname (uvalue, 1));
1638 READ_ULEB (uvalue, data, end);
1639 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1640 break;
1641 case DW_OP_deref_type:
1642 case DW_OP_GNU_deref_type:
1643 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1644 printf ("%s: %ld",
1645 (op == DW_OP_deref_type ? "DW_OP_deref_type"
1646 : "DW_OP_GNU_deref_type"),
1647 (long) uvalue);
1648 READ_ULEB (uvalue, data, end);
1649 printf (" <0x%s>", dwarf_vmatoa ("x", cu_offset + uvalue));
1650 break;
1651 case DW_OP_convert:
1652 case DW_OP_GNU_convert:
1653 READ_ULEB (uvalue, data, end);
1654 printf ("%s <0x%s>",
1655 (op == DW_OP_convert ? "DW_OP_convert" : "DW_OP_GNU_convert"),
1656 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1657 break;
1658 case DW_OP_reinterpret:
1659 case DW_OP_GNU_reinterpret:
1660 READ_ULEB (uvalue, data, end);
1661 printf ("%s <0x%s>",
1662 (op == DW_OP_reinterpret ? "DW_OP_reinterpret"
1663 : "DW_OP_GNU_reinterpret"),
1664 dwarf_vmatoa ("x", uvalue ? cu_offset + uvalue : 0));
1665 break;
1666 case DW_OP_GNU_parameter_ref:
1667 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1668 printf ("DW_OP_GNU_parameter_ref: <0x%s>",
1669 dwarf_vmatoa ("x", cu_offset + uvalue));
1670 break;
1671 case DW_OP_GNU_addr_index:
1672 READ_ULEB (uvalue, data, end);
1673 printf ("DW_OP_GNU_addr_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1674 break;
1675 case DW_OP_GNU_const_index:
1676 READ_ULEB (uvalue, data, end);
1677 printf ("DW_OP_GNU_const_index <0x%s>", dwarf_vmatoa ("x", uvalue));
1678 break;
1679 case DW_OP_GNU_variable_value:
1680 /* FIXME: Strictly speaking for 64-bit DWARF3 files
1681 this ought to be an 8-byte wide computation. */
1682 if (dwarf_version == -1)
1683 {
1684 printf (_("(DW_OP_GNU_variable_value in frame info)"));
1685 /* No way to tell where the next op is, so just bail. */
1686 return need_frame_base;
1687 }
1688 if (dwarf_version == 2)
1689 {
1690 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1691 }
1692 else
1693 {
1694 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1695 }
1696 printf ("DW_OP_GNU_variable_value: <0x%s>", dwarf_vmatoa ("x", uvalue));
1697 break;
1698
1699 /* HP extensions. */
1700 case DW_OP_HP_is_value:
1701 printf ("DW_OP_HP_is_value");
1702 /* FIXME: Is there data associated with this OP ? */
1703 break;
1704 case DW_OP_HP_fltconst4:
1705 printf ("DW_OP_HP_fltconst4");
1706 /* FIXME: Is there data associated with this OP ? */
1707 break;
1708 case DW_OP_HP_fltconst8:
1709 printf ("DW_OP_HP_fltconst8");
1710 /* FIXME: Is there data associated with this OP ? */
1711 break;
1712 case DW_OP_HP_mod_range:
1713 printf ("DW_OP_HP_mod_range");
1714 /* FIXME: Is there data associated with this OP ? */
1715 break;
1716 case DW_OP_HP_unmod_range:
1717 printf ("DW_OP_HP_unmod_range");
1718 /* FIXME: Is there data associated with this OP ? */
1719 break;
1720 case DW_OP_HP_tls:
1721 printf ("DW_OP_HP_tls");
1722 /* FIXME: Is there data associated with this OP ? */
1723 break;
1724
1725 /* PGI (STMicroelectronics) extensions. */
1726 case DW_OP_PGI_omp_thread_num:
1727 /* Pushes the thread number for the current thread as it would be
1728 returned by the standard OpenMP library function:
1729 omp_get_thread_num(). The "current thread" is the thread for
1730 which the expression is being evaluated. */
1731 printf ("DW_OP_PGI_omp_thread_num");
1732 break;
1733
1734 default:
1735 if (op >= DW_OP_lo_user
1736 && op <= DW_OP_hi_user)
1737 printf (_("(User defined location op 0x%x)"), op);
1738 else
1739 printf (_("(Unknown location op 0x%x)"), op);
1740 /* No way to tell where the next op is, so just bail. */
1741 return need_frame_base;
1742 }
1743
1744 /* Separate the ops. */
1745 if (data < end)
1746 printf ("; ");
1747 }
1748
1749 return need_frame_base;
1750 }
1751
1752 /* Find the CU or TU set corresponding to the given CU_OFFSET.
1753 This is used for DWARF package files. */
1754
1755 static struct cu_tu_set *
1756 find_cu_tu_set_v2 (dwarf_vma cu_offset, int do_types)
1757 {
1758 struct cu_tu_set *p;
1759 unsigned int nsets;
1760 unsigned int dw_sect;
1761
1762 if (do_types)
1763 {
1764 p = tu_sets;
1765 nsets = tu_count;
1766 dw_sect = DW_SECT_TYPES;
1767 }
1768 else
1769 {
1770 p = cu_sets;
1771 nsets = cu_count;
1772 dw_sect = DW_SECT_INFO;
1773 }
1774 while (nsets > 0)
1775 {
1776 if (p->section_offsets [dw_sect] == cu_offset)
1777 return p;
1778 p++;
1779 nsets--;
1780 }
1781 return NULL;
1782 }
1783
1784 static const char *
1785 fetch_alt_indirect_string (dwarf_vma offset)
1786 {
1787 separate_info * i;
1788
1789 if (! do_follow_links)
1790 return "";
1791
1792 if (first_separate_info == NULL)
1793 return _("<no links available>");
1794
1795 for (i = first_separate_info; i != NULL; i = i->next)
1796 {
1797 struct dwarf_section * section;
1798 const char * ret;
1799
1800 if (! load_debug_section (separate_debug_str, i->handle))
1801 continue;
1802
1803 section = &debug_displays [separate_debug_str].section;
1804
1805 if (section->start == NULL)
1806 continue;
1807
1808 if (offset >= section->size)
1809 continue;
1810
1811 ret = (const char *) (section->start + offset);
1812 /* Unfortunately we cannot rely upon the .debug_str section ending with a
1813 NUL byte. Since our caller is expecting to receive a well formed C
1814 string we test for the lack of a terminating byte here. */
1815 if (strnlen ((const char *) ret, section->size - offset)
1816 == section->size - offset)
1817 return _("<no NUL byte at end of alt .debug_str section>");
1818
1819 return ret;
1820 }
1821
1822 warn (_("DW_FORM_GNU_strp_alt offset (%s) too big or no string sections available\n"),
1823 dwarf_vmatoa ("x", offset));
1824 return _("<offset is too big>");
1825 }
1826
1827 static const char *
1828 get_AT_name (unsigned long attribute)
1829 {
1830 const char *name;
1831
1832 if (attribute == 0)
1833 return "DW_AT value: 0";
1834
1835 /* One value is shared by the MIPS and HP extensions: */
1836 if (attribute == DW_AT_MIPS_fde)
1837 return "DW_AT_MIPS_fde or DW_AT_HP_unmodifiable";
1838
1839 name = get_DW_AT_name (attribute);
1840
1841 if (name == NULL)
1842 {
1843 static char buffer[100];
1844
1845 snprintf (buffer, sizeof (buffer), _("Unknown AT value: %lx"),
1846 attribute);
1847 return buffer;
1848 }
1849
1850 return name;
1851 }
1852
1853 static void
1854 add_dwo_info (const char * value, dwarf_vma cu_offset, dwo_type type)
1855 {
1856 dwo_info * dwinfo = xmalloc (sizeof * dwinfo);
1857
1858 dwinfo->type = type;
1859 dwinfo->value = value;
1860 dwinfo->cu_offset = cu_offset;
1861 dwinfo->next = first_dwo_info;
1862 first_dwo_info = dwinfo;
1863 }
1864
1865 static void
1866 add_dwo_name (const char * name, dwarf_vma cu_offset)
1867 {
1868 add_dwo_info (name, cu_offset, DWO_NAME);
1869 }
1870
1871 static void
1872 add_dwo_dir (const char * dir, dwarf_vma cu_offset)
1873 {
1874 add_dwo_info (dir, cu_offset, DWO_DIR);
1875 }
1876
1877 static void
1878 add_dwo_id (const char * id, dwarf_vma cu_offset)
1879 {
1880 add_dwo_info (id, cu_offset, DWO_ID);
1881 }
1882
1883 static void
1884 free_dwo_info (void)
1885 {
1886 dwo_info * dwinfo;
1887 dwo_info * next;
1888
1889 for (dwinfo = first_dwo_info; dwinfo != NULL; dwinfo = next)
1890 {
1891 next = dwinfo->next;
1892 free (dwinfo);
1893 }
1894 first_dwo_info = NULL;
1895 }
1896
1897 /* Ensure that START + UVALUE is less than END.
1898 Return an adjusted UVALUE if necessary to ensure this relationship. */
1899
1900 static inline dwarf_vma
1901 check_uvalue (const unsigned char * start,
1902 dwarf_vma uvalue,
1903 const unsigned char * end)
1904 {
1905 dwarf_vma max_uvalue = end - start;
1906
1907 /* See PR 17512: file: 008-103549-0.001:0.1.
1908 and PR 24829 for examples of where these tests are triggered. */
1909 if (uvalue > max_uvalue)
1910 {
1911 warn (_("Corrupt attribute block length: %lx\n"), (long) uvalue);
1912 uvalue = max_uvalue;
1913 }
1914
1915 return uvalue;
1916 }
1917
1918 static unsigned char *
1919 skip_attr_bytes (unsigned long form,
1920 unsigned char *data,
1921 unsigned char *end,
1922 dwarf_vma pointer_size,
1923 dwarf_vma offset_size,
1924 int dwarf_version,
1925 dwarf_vma *value_return)
1926 {
1927 dwarf_signed_vma svalue;
1928 dwarf_vma uvalue = 0;
1929 dwarf_vma inc = 0;
1930
1931 * value_return = 0;
1932
1933 switch (form)
1934 {
1935 case DW_FORM_ref_addr:
1936 if (dwarf_version == 2)
1937 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1938 else if (dwarf_version > 2)
1939 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1940 else
1941 return NULL;
1942 break;
1943
1944 case DW_FORM_addr:
1945 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
1946 break;
1947
1948 case DW_FORM_strp:
1949 case DW_FORM_line_strp:
1950 case DW_FORM_sec_offset:
1951 case DW_FORM_GNU_ref_alt:
1952 case DW_FORM_GNU_strp_alt:
1953 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
1954 break;
1955
1956 case DW_FORM_flag_present:
1957 uvalue = 1;
1958 break;
1959
1960 case DW_FORM_ref1:
1961 case DW_FORM_flag:
1962 case DW_FORM_data1:
1963 case DW_FORM_strx1:
1964 case DW_FORM_addrx1:
1965 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
1966 break;
1967
1968 case DW_FORM_strx3:
1969 case DW_FORM_addrx3:
1970 SAFE_BYTE_GET_AND_INC (uvalue, data, 3, end);
1971 break;
1972
1973 case DW_FORM_ref2:
1974 case DW_FORM_data2:
1975 case DW_FORM_strx2:
1976 case DW_FORM_addrx2:
1977 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
1978 break;
1979
1980 case DW_FORM_ref4:
1981 case DW_FORM_data4:
1982 case DW_FORM_strx4:
1983 case DW_FORM_addrx4:
1984 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
1985 break;
1986
1987 case DW_FORM_sdata:
1988 READ_SLEB (svalue, data, end);
1989 uvalue = svalue;
1990 break;
1991
1992 case DW_FORM_ref_udata:
1993 case DW_FORM_udata:
1994 case DW_FORM_GNU_str_index:
1995 case DW_FORM_strx:
1996 case DW_FORM_GNU_addr_index:
1997 case DW_FORM_addrx:
1998 READ_ULEB (uvalue, data, end);
1999 break;
2000
2001 case DW_FORM_ref8:
2002 SAFE_BYTE_GET_AND_INC (uvalue, data, 8, end);
2003 break;
2004
2005 case DW_FORM_data8:
2006 case DW_FORM_ref_sig8:
2007 inc = 8;
2008 break;
2009
2010 case DW_FORM_data16:
2011 inc = 16;
2012 break;
2013
2014 case DW_FORM_string:
2015 inc = strnlen ((char *) data, end - data) + 1;
2016 break;
2017
2018 case DW_FORM_block:
2019 case DW_FORM_exprloc:
2020 READ_ULEB (uvalue, data, end);
2021 inc = uvalue;
2022 break;
2023
2024 case DW_FORM_block1:
2025 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
2026 inc = uvalue;
2027 break;
2028
2029 case DW_FORM_block2:
2030 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
2031 inc = uvalue;
2032 break;
2033
2034 case DW_FORM_block4:
2035 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
2036 inc = uvalue;
2037 break;
2038
2039 case DW_FORM_indirect:
2040 READ_ULEB (form, data, end);
2041 if (form == DW_FORM_implicit_const)
2042 SKIP_ULEB (data, end);
2043 return skip_attr_bytes (form, data, end, pointer_size, offset_size,
2044 dwarf_version, value_return);
2045
2046 default:
2047 return NULL;
2048 }
2049
2050 * value_return = uvalue;
2051 if (inc <= (dwarf_vma) (end - data))
2052 data += inc;
2053 else
2054 data = end;
2055 return data;
2056 }
2057
2058 /* Given form FORM with value UVALUE, locate and return the abbreviation
2059 associated with it. */
2060
2061 static abbrev_entry *
2062 get_type_abbrev_from_form (unsigned long form,
2063 unsigned long uvalue,
2064 dwarf_vma cu_offset,
2065 const struct dwarf_section * section,
2066 unsigned long * abbrev_num_return,
2067 unsigned char ** data_return,
2068 unsigned long * cu_offset_return)
2069 {
2070 unsigned long abbrev_number;
2071 abbrev_map * map;
2072 abbrev_entry * entry;
2073 unsigned char * data;
2074
2075 if (abbrev_num_return != NULL)
2076 * abbrev_num_return = 0;
2077 if (data_return != NULL)
2078 * data_return = NULL;
2079
2080 switch (form)
2081 {
2082 case DW_FORM_GNU_ref_alt:
2083 case DW_FORM_ref_sig8:
2084 /* FIXME: We are unable to handle this form at the moment. */
2085 return NULL;
2086
2087 case DW_FORM_ref_addr:
2088 if (uvalue >= section->size)
2089 {
2090 warn (_("Unable to resolve ref_addr form: uvalue %lx > section size %lx (%s)\n"),
2091 uvalue, (long) section->size, section->name);
2092 return NULL;
2093 }
2094 break;
2095
2096 case DW_FORM_ref_sup4:
2097 case DW_FORM_ref_sup8:
2098 break;
2099
2100 case DW_FORM_ref1:
2101 case DW_FORM_ref2:
2102 case DW_FORM_ref4:
2103 case DW_FORM_ref8:
2104 case DW_FORM_ref_udata:
2105 if (uvalue + cu_offset > section->size)
2106 {
2107 warn (_("Unable to resolve ref form: uvalue %lx + cu_offset %lx > section size %lx\n"),
2108 uvalue, (long) cu_offset, (long) section->size);
2109 return NULL;
2110 }
2111 uvalue += cu_offset;
2112 break;
2113
2114 /* FIXME: Are there other DW_FORMs that can be used by types ? */
2115
2116 default:
2117 warn (_("Unexpected form %lx encountered whilst finding abbreviation for type\n"), form);
2118 return NULL;
2119 }
2120
2121 data = (unsigned char *) section->start + uvalue;
2122 map = find_abbrev_map_by_offset (uvalue);
2123
2124 if (map == NULL)
2125 {
2126 warn (_("Unable to find abbreviations for CU offset %#lx\n"), uvalue);
2127 return NULL;
2128 }
2129 if (map->list == NULL)
2130 {
2131 warn (_("Empty abbreviation list encountered for CU offset %lx\n"), uvalue);
2132 return NULL;
2133 }
2134
2135 if (cu_offset_return != NULL)
2136 {
2137 if (form == DW_FORM_ref_addr)
2138 * cu_offset_return = map->start;
2139 else
2140 * cu_offset_return = cu_offset;
2141 }
2142
2143 READ_ULEB (abbrev_number, data, section->start + section->size);
2144
2145 for (entry = map->list->first_abbrev; entry != NULL; entry = entry->next)
2146 if (entry->number == abbrev_number)
2147 break;
2148
2149 if (abbrev_num_return != NULL)
2150 * abbrev_num_return = abbrev_number;
2151
2152 if (data_return != NULL)
2153 * data_return = data;
2154
2155 if (entry == NULL)
2156 warn (_("Unable to find entry for abbreviation %lu\n"), abbrev_number);
2157
2158 return entry;
2159 }
2160
2161 /* Return IS_SIGNED set to TRUE if the type using abbreviation ENTRY
2162 can be determined to be a signed type. The data for ENTRY can be
2163 found starting at DATA. */
2164
2165 static void
2166 get_type_signedness (abbrev_entry *entry,
2167 const struct dwarf_section *section,
2168 unsigned char *data,
2169 unsigned char *end,
2170 dwarf_vma cu_offset,
2171 dwarf_vma pointer_size,
2172 dwarf_vma offset_size,
2173 int dwarf_version,
2174 bool *is_signed,
2175 unsigned int nesting)
2176 {
2177 abbrev_attr * attr;
2178
2179 * is_signed = false;
2180
2181 #define MAX_NESTING 20
2182 if (nesting > MAX_NESTING)
2183 {
2184 /* FIXME: Warn - or is this expected ?
2185 NB/ We need to avoid infinite recursion. */
2186 return;
2187 }
2188
2189 for (attr = entry->first_attr;
2190 attr != NULL && attr->attribute;
2191 attr = attr->next)
2192 {
2193 unsigned char * orig_data = data;
2194 dwarf_vma uvalue = 0;
2195
2196 data = skip_attr_bytes (attr->form, data, end, pointer_size,
2197 offset_size, dwarf_version, & uvalue);
2198 if (data == NULL)
2199 return;
2200
2201 switch (attr->attribute)
2202 {
2203 case DW_AT_linkage_name:
2204 case DW_AT_name:
2205 if (do_wide)
2206 {
2207 if (attr->form == DW_FORM_strp)
2208 printf (", %s", fetch_indirect_string (uvalue));
2209 else if (attr->form == DW_FORM_string)
2210 printf (", %s", orig_data);
2211 }
2212 break;
2213
2214 case DW_AT_type:
2215 /* Recurse. */
2216 {
2217 abbrev_entry * type_abbrev;
2218 unsigned char * type_data;
2219 unsigned long type_cu_offset;
2220
2221 type_abbrev = get_type_abbrev_from_form (attr->form,
2222 uvalue,
2223 cu_offset,
2224 section,
2225 NULL /* abbrev num return */,
2226 & type_data,
2227 & type_cu_offset);
2228 if (type_abbrev == NULL)
2229 break;
2230
2231 get_type_signedness (type_abbrev, section, type_data, end, type_cu_offset,
2232 pointer_size, offset_size, dwarf_version,
2233 is_signed, nesting + 1);
2234 }
2235 break;
2236
2237 case DW_AT_encoding:
2238 /* Determine signness. */
2239 switch (uvalue)
2240 {
2241 case DW_ATE_address:
2242 /* FIXME - some architectures have signed addresses. */
2243 case DW_ATE_boolean:
2244 case DW_ATE_unsigned:
2245 case DW_ATE_unsigned_char:
2246 case DW_ATE_unsigned_fixed:
2247 * is_signed = false;
2248 break;
2249
2250 default:
2251 case DW_ATE_complex_float:
2252 case DW_ATE_float:
2253 case DW_ATE_signed:
2254 case DW_ATE_signed_char:
2255 case DW_ATE_imaginary_float:
2256 case DW_ATE_decimal_float:
2257 case DW_ATE_signed_fixed:
2258 * is_signed = true;
2259 break;
2260 }
2261 break;
2262 }
2263 }
2264 }
2265
2266 static void
2267 read_and_print_leb128 (unsigned char *data,
2268 unsigned int *bytes_read,
2269 unsigned const char *end,
2270 bool is_signed)
2271 {
2272 int status;
2273 dwarf_vma val = read_leb128 (data, end, is_signed, bytes_read, &status);
2274 if (status != 0)
2275 report_leb_status (status, __FILE__, __LINE__);
2276 else
2277 printf ("%s", dwarf_vmatoa (is_signed ? "d" : "u", val));
2278 }
2279
2280 static void
2281 display_discr_list (unsigned long form,
2282 dwarf_vma uvalue,
2283 unsigned char * data,
2284 unsigned const char * end,
2285 int level)
2286 {
2287 if (uvalue == 0)
2288 {
2289 printf ("[default]");
2290 return;
2291 }
2292
2293 switch (form)
2294 {
2295 case DW_FORM_block:
2296 case DW_FORM_block1:
2297 case DW_FORM_block2:
2298 case DW_FORM_block4:
2299 /* Move data pointer back to the start of the byte array. */
2300 data -= uvalue;
2301 break;
2302 default:
2303 printf ("<corrupt>\n");
2304 warn (_("corrupt discr_list - not using a block form\n"));
2305 return;
2306 }
2307
2308 if (uvalue < 2)
2309 {
2310 printf ("<corrupt>\n");
2311 warn (_("corrupt discr_list - block not long enough\n"));
2312 return;
2313 }
2314
2315 bool is_signed =
2316 (level > 0 && level <= MAX_CU_NESTING)
2317 ? level_type_signed [level - 1] : false;
2318
2319 printf ("(");
2320 while (uvalue)
2321 {
2322 unsigned char discriminant;
2323 unsigned int bytes_read;
2324
2325 SAFE_BYTE_GET_AND_INC (discriminant, data, 1, end);
2326 -- uvalue;
2327
2328 assert (uvalue > 0);
2329 switch (discriminant)
2330 {
2331 case DW_DSC_label:
2332 printf ("label ");
2333 read_and_print_leb128 (data, & bytes_read, end, is_signed);
2334 assert (bytes_read <= uvalue && bytes_read > 0);
2335 uvalue -= bytes_read;
2336 data += bytes_read;
2337 break;
2338
2339 case DW_DSC_range:
2340 printf ("range ");
2341 read_and_print_leb128 (data, & bytes_read, end, is_signed);
2342 assert (bytes_read <= uvalue && bytes_read > 0);
2343 uvalue -= bytes_read;
2344 data += bytes_read;
2345
2346 printf ("..");
2347 read_and_print_leb128 (data, & bytes_read, end, is_signed);
2348 assert (bytes_read <= uvalue && bytes_read > 0);
2349 uvalue -= bytes_read;
2350 data += bytes_read;
2351 break;
2352
2353 default:
2354 printf ("<corrupt>\n");
2355 warn (_("corrupt discr_list - unrecognized discriminant byte %#x\n"),
2356 discriminant);
2357 return;
2358 }
2359
2360 if (uvalue)
2361 printf (", ");
2362 }
2363
2364 if (is_signed)
2365 printf (")(signed)");
2366 else
2367 printf (")(unsigned)");
2368 }
2369
2370 static unsigned char *
2371 read_and_display_attr_value (unsigned long attribute,
2372 unsigned long form,
2373 dwarf_signed_vma implicit_const,
2374 unsigned char * start,
2375 unsigned char * data,
2376 unsigned char * end,
2377 dwarf_vma cu_offset,
2378 dwarf_vma pointer_size,
2379 dwarf_vma offset_size,
2380 int dwarf_version,
2381 debug_info * debug_info_p,
2382 int do_loc,
2383 struct dwarf_section * section,
2384 struct cu_tu_set * this_set,
2385 char delimiter,
2386 int level)
2387 {
2388 dwarf_signed_vma svalue;
2389 dwarf_vma uvalue = 0;
2390 dwarf_vma uvalue_hi = 0;
2391 unsigned char *block_start = NULL;
2392 unsigned char *orig_data = data;
2393
2394 if (data > end || (data == end && form != DW_FORM_flag_present))
2395 {
2396 warn (_("Corrupt attribute\n"));
2397 return data;
2398 }
2399
2400 if (do_wide && ! do_loc)
2401 {
2402 /* PR 26847: Display the name of the form. */
2403 const char * name = get_FORM_name (form);
2404
2405 /* For convenience we skip the DW_FORM_ prefix to the name. */
2406 if (name[0] == 'D')
2407 name += 8; /* strlen ("DW_FORM_") */
2408 printf ("%c(%s)", delimiter, name);
2409 }
2410
2411 switch (form)
2412 {
2413 default:
2414 break;
2415
2416 case DW_FORM_ref_addr:
2417 if (dwarf_version == 2)
2418 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
2419 else if (dwarf_version > 2)
2420 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
2421 else
2422 error (_("Internal error: DW_FORM_ref_addr is not supported in DWARF version 1.\n"));
2423 break;
2424
2425 case DW_FORM_addr:
2426 SAFE_BYTE_GET_AND_INC (uvalue, data, pointer_size, end);
2427 break;
2428
2429 case DW_FORM_strp_sup:
2430 case DW_FORM_strp:
2431 case DW_FORM_line_strp:
2432 case DW_FORM_sec_offset:
2433 case DW_FORM_GNU_ref_alt:
2434 case DW_FORM_GNU_strp_alt:
2435 SAFE_BYTE_GET_AND_INC (uvalue, data, offset_size, end);
2436 break;
2437
2438 case DW_FORM_flag_present:
2439 uvalue = 1;
2440 break;
2441
2442 case DW_FORM_ref1:
2443 case DW_FORM_flag:
2444 case DW_FORM_data1:
2445 case DW_FORM_strx1:
2446 case DW_FORM_addrx1:
2447 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
2448 break;
2449
2450 case DW_FORM_ref2:
2451 case DW_FORM_data2:
2452 case DW_FORM_strx2:
2453 case DW_FORM_addrx2:
2454 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
2455 break;
2456
2457 case DW_FORM_strx3:
2458 case DW_FORM_addrx3:
2459 SAFE_BYTE_GET_AND_INC (uvalue, data, 3, end);
2460 break;
2461
2462 case DW_FORM_ref_sup4:
2463 case DW_FORM_ref4:
2464 case DW_FORM_data4:
2465 case DW_FORM_strx4:
2466 case DW_FORM_addrx4:
2467 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
2468 break;
2469
2470 case DW_FORM_ref_sup8:
2471 case DW_FORM_ref8:
2472 case DW_FORM_data8:
2473 case DW_FORM_ref_sig8:
2474 SAFE_BYTE_GET_AND_INC (uvalue, data, 8, end);
2475 break;
2476
2477 case DW_FORM_data16:
2478 SAFE_BYTE_GET_AND_INC (uvalue, data, 8, end);
2479 SAFE_BYTE_GET_AND_INC (uvalue_hi, data, 8, end);
2480 if (byte_get != byte_get_little_endian)
2481 {
2482 dwarf_vma utmp = uvalue;
2483 uvalue = uvalue_hi;
2484 uvalue_hi = utmp;
2485 }
2486 break;
2487
2488 case DW_FORM_sdata:
2489 READ_SLEB (svalue, data, end);
2490 uvalue = svalue;
2491 break;
2492
2493 case DW_FORM_GNU_str_index:
2494 case DW_FORM_strx:
2495 case DW_FORM_ref_udata:
2496 case DW_FORM_udata:
2497 case DW_FORM_GNU_addr_index:
2498 case DW_FORM_addrx:
2499 READ_ULEB (uvalue, data, end);
2500 break;
2501
2502 case DW_FORM_indirect:
2503 READ_ULEB (form, data, end);
2504 if (!do_loc)
2505 printf ("%c%s", delimiter, get_FORM_name (form));
2506 if (form == DW_FORM_implicit_const)
2507 READ_SLEB (implicit_const, data, end);
2508 return read_and_display_attr_value (attribute, form, implicit_const,
2509 start, data, end,
2510 cu_offset, pointer_size,
2511 offset_size, dwarf_version,
2512 debug_info_p, do_loc,
2513 section, this_set, delimiter, level);
2514 }
2515
2516 switch (form)
2517 {
2518 case DW_FORM_ref_addr:
2519 if (!do_loc)
2520 printf ("%c<0x%s>", delimiter, dwarf_vmatoa ("x", uvalue));
2521 break;
2522
2523 case DW_FORM_GNU_ref_alt:
2524 if (!do_loc)
2525 {
2526 if (do_wide)
2527 /* We have already printed the form name. */
2528 printf ("%c<0x%s>", delimiter, dwarf_vmatoa ("x", uvalue));
2529 else
2530 printf ("%c<alt 0x%s>", delimiter, dwarf_vmatoa ("x", uvalue));
2531 }
2532 /* FIXME: Follow the reference... */
2533 break;
2534
2535 case DW_FORM_ref1:
2536 case DW_FORM_ref2:
2537 case DW_FORM_ref4:
2538 case DW_FORM_ref_sup4:
2539 case DW_FORM_ref_udata:
2540 if (!do_loc)
2541 printf ("%c<0x%s>", delimiter, dwarf_vmatoa ("x", uvalue + cu_offset));
2542 break;
2543
2544 case DW_FORM_data4:
2545 case DW_FORM_addr:
2546 case DW_FORM_sec_offset:
2547 if (!do_loc)
2548 printf ("%c0x%s", delimiter, dwarf_vmatoa ("x", uvalue));
2549 break;
2550
2551 case DW_FORM_flag_present:
2552 case DW_FORM_flag:
2553 case DW_FORM_data1:
2554 case DW_FORM_data2:
2555 case DW_FORM_sdata:
2556 case DW_FORM_udata:
2557 if (!do_loc)
2558 printf ("%c%s", delimiter, dwarf_vmatoa ("d", uvalue));
2559 break;
2560
2561 case DW_FORM_implicit_const:
2562 if (!do_loc)
2563 printf ("%c%s", delimiter, dwarf_vmatoa ("d", implicit_const));
2564 break;
2565
2566 case DW_FORM_ref_sup8:
2567 case DW_FORM_ref8:
2568 case DW_FORM_data8:
2569 if (!do_loc)
2570 {
2571 dwarf_vma utmp = uvalue;
2572 if (form == DW_FORM_ref8)
2573 utmp += cu_offset;
2574 printf ("%c0x%s", delimiter, dwarf_vmatoa ("x", utmp));
2575 }
2576 break;
2577
2578 case DW_FORM_data16:
2579 if (!do_loc)
2580 printf (" 0x%s%s",
2581 uvalue_hi == 0 ? "" : dwarf_vmatoa ("x", uvalue_hi),
2582 dwarf_vmatoa_1 ("x", uvalue, uvalue_hi == 0 ? 0 : 8));
2583 break;
2584
2585 case DW_FORM_string:
2586 if (!do_loc)
2587 printf ("%c%.*s", delimiter, (int) (end - data), data);
2588 data += strnlen ((char *) data, end - data);
2589 if (data < end)
2590 data++;
2591 break;
2592
2593 case DW_FORM_block:
2594 case DW_FORM_exprloc:
2595 READ_ULEB (uvalue, data, end);
2596 do_block:
2597 block_start = data;
2598 if (block_start >= end)
2599 {
2600 warn (_("Block ends prematurely\n"));
2601 uvalue = 0;
2602 block_start = end;
2603 }
2604
2605 uvalue = check_uvalue (block_start, uvalue, end);
2606
2607 if (do_loc)
2608 data = block_start + uvalue;
2609 else
2610 data = display_block (block_start, uvalue, end, delimiter);
2611 break;
2612
2613 case DW_FORM_block1:
2614 SAFE_BYTE_GET_AND_INC (uvalue, data, 1, end);
2615 goto do_block;
2616
2617 case DW_FORM_block2:
2618 SAFE_BYTE_GET_AND_INC (uvalue, data, 2, end);
2619 goto do_block;
2620
2621 case DW_FORM_block4:
2622 SAFE_BYTE_GET_AND_INC (uvalue, data, 4, end);
2623 goto do_block;
2624
2625 case DW_FORM_strp:
2626 if (!do_loc)
2627 {
2628 if (do_wide)
2629 /* We have already displayed the form name. */
2630 printf (_("%c(offset: 0x%s): %s"), delimiter,
2631 dwarf_vmatoa ("x", uvalue),
2632 fetch_indirect_string (uvalue));
2633 else
2634 printf (_("%c(indirect string, offset: 0x%s): %s"), delimiter,
2635 dwarf_vmatoa ("x", uvalue),
2636 fetch_indirect_string (uvalue));
2637 }
2638 break;
2639
2640 case DW_FORM_line_strp:
2641 if (!do_loc)
2642 {
2643 if (do_wide)
2644 /* We have already displayed the form name. */
2645 printf (_("%c(offset: 0x%s): %s"), delimiter,
2646 dwarf_vmatoa ("x", uvalue),
2647 fetch_indirect_line_string (uvalue));
2648 else
2649 printf (_("%c(indirect line string, offset: 0x%s): %s"), delimiter,
2650 dwarf_vmatoa ("x", uvalue),
2651 fetch_indirect_line_string (uvalue));
2652 }
2653 break;
2654
2655 case DW_FORM_GNU_str_index:
2656 case DW_FORM_strx:
2657 case DW_FORM_strx1:
2658 case DW_FORM_strx2:
2659 case DW_FORM_strx3:
2660 case DW_FORM_strx4:
2661 if (!do_loc)
2662 {
2663 const char *suffix = strrchr (section->name, '.');
2664 bool dwo = suffix && strcmp (suffix, ".dwo") == 0;
2665
2666 if (do_wide)
2667 /* We have already displayed the form name. */
2668 printf (_("%c(offset: 0x%s): %s"), delimiter,
2669 dwarf_vmatoa ("x", uvalue),
2670 fetch_indexed_string (uvalue, this_set, offset_size, dwo));
2671 else
2672 printf (_("%c(indexed string: 0x%s): %s"), delimiter,
2673 dwarf_vmatoa ("x", uvalue),
2674 fetch_indexed_string (uvalue, this_set, offset_size, dwo));
2675 }
2676 break;
2677
2678 case DW_FORM_GNU_strp_alt:
2679 if (!do_loc)
2680 {
2681 if (do_wide)
2682 /* We have already displayed the form name. */
2683 printf (_("%c(offset: 0x%s) %s"), delimiter,
2684 dwarf_vmatoa ("x", uvalue),
2685 fetch_alt_indirect_string (uvalue));
2686 else
2687 printf (_("%c(alt indirect string, offset: 0x%s) %s"), delimiter,
2688 dwarf_vmatoa ("x", uvalue),
2689 fetch_alt_indirect_string (uvalue));
2690 }
2691 break;
2692
2693 case DW_FORM_indirect:
2694 /* Handled above. */
2695 break;
2696
2697 case DW_FORM_ref_sig8:
2698 if (!do_loc)
2699 printf ("%c%s: 0x%s", delimiter, do_wide ? "" : "signature",
2700 dwarf_vmatoa ("x", uvalue));
2701 break;
2702
2703 case DW_FORM_GNU_addr_index:
2704 case DW_FORM_addrx:
2705 case DW_FORM_addrx1:
2706 case DW_FORM_addrx2:
2707 case DW_FORM_addrx3:
2708 case DW_FORM_addrx4:
2709 if (!do_loc)
2710 {
2711 dwarf_vma base;
2712 dwarf_vma offset;
2713
2714 if (debug_info_p == NULL)
2715 base = 0;
2716 else if (debug_info_p->addr_base == DEBUG_INFO_UNAVAILABLE)
2717 base = 0;
2718 else
2719 base = debug_info_p->addr_base;
2720
2721 offset = base + uvalue * pointer_size;
2722
2723 if (do_wide)
2724 /* We have already displayed the form name. */
2725 printf (_("%c(index: 0x%s): %s"), delimiter,
2726 dwarf_vmatoa ("x", uvalue),
2727 fetch_indexed_value (offset, pointer_size));
2728 else
2729 printf (_("%c(addr_index: 0x%s): %s"), delimiter,
2730 dwarf_vmatoa ("x", uvalue),
2731 fetch_indexed_value (offset, pointer_size));
2732 }
2733 break;
2734
2735 case DW_FORM_strp_sup:
2736 if (!do_loc)
2737 printf ("%c<0x%s>", delimiter, dwarf_vmatoa ("x", uvalue + cu_offset));
2738 break;
2739
2740 default:
2741 warn (_("Unrecognized form: 0x%lx\n"), form);
2742 break;
2743 }
2744
2745 if ((do_loc || do_debug_loc || do_debug_ranges)
2746 && num_debug_info_entries == 0
2747 && debug_info_p != NULL)
2748 {
2749 switch (attribute)
2750 {
2751 case DW_AT_frame_base:
2752 have_frame_base = 1;
2753 /* Fall through. */
2754 case DW_AT_location:
2755 case DW_AT_GNU_locviews:
2756 case DW_AT_string_length:
2757 case DW_AT_return_addr:
2758 case DW_AT_data_member_location:
2759 case DW_AT_vtable_elem_location:
2760 case DW_AT_segment:
2761 case DW_AT_static_link:
2762 case DW_AT_use_location:
2763 case DW_AT_call_value:
2764 case DW_AT_GNU_call_site_value:
2765 case DW_AT_call_data_value:
2766 case DW_AT_GNU_call_site_data_value:
2767 case DW_AT_call_target:
2768 case DW_AT_GNU_call_site_target:
2769 case DW_AT_call_target_clobbered:
2770 case DW_AT_GNU_call_site_target_clobbered:
2771 if ((dwarf_version < 4
2772 && (form == DW_FORM_data4 || form == DW_FORM_data8))
2773 || form == DW_FORM_sec_offset)
2774 {
2775 /* Process location list. */
2776 unsigned int lmax = debug_info_p->max_loc_offsets;
2777 unsigned int num = debug_info_p->num_loc_offsets;
2778
2779 if (lmax == 0 || num >= lmax)
2780 {
2781 lmax += 1024;
2782 debug_info_p->loc_offsets = (dwarf_vma *)
2783 xcrealloc (debug_info_p->loc_offsets,
2784 lmax, sizeof (*debug_info_p->loc_offsets));
2785 debug_info_p->loc_views = (dwarf_vma *)
2786 xcrealloc (debug_info_p->loc_views,
2787 lmax, sizeof (*debug_info_p->loc_views));
2788 debug_info_p->have_frame_base = (int *)
2789 xcrealloc (debug_info_p->have_frame_base,
2790 lmax, sizeof (*debug_info_p->have_frame_base));
2791 debug_info_p->max_loc_offsets = lmax;
2792 }
2793 if (this_set != NULL)
2794 uvalue += this_set->section_offsets [DW_SECT_LOC];
2795 debug_info_p->have_frame_base [num] = have_frame_base;
2796 if (attribute != DW_AT_GNU_locviews)
2797 {
2798 /* Corrupt DWARF info can produce more offsets than views.
2799 See PR 23062 for an example. */
2800 if (debug_info_p->num_loc_offsets
2801 > debug_info_p->num_loc_views)
2802 warn (_("More location offset attributes than DW_AT_GNU_locview attributes\n"));
2803 else
2804 {
2805 debug_info_p->loc_offsets [num] = uvalue;
2806 debug_info_p->num_loc_offsets++;
2807 }
2808 }
2809 else
2810 {
2811 assert (debug_info_p->num_loc_views <= num);
2812 num = debug_info_p->num_loc_views;
2813 if (num > debug_info_p->num_loc_offsets)
2814 warn (_("More DW_AT_GNU_locview attributes than location offset attributes\n"));
2815 else
2816 {
2817 debug_info_p->loc_views [num] = uvalue;
2818 debug_info_p->num_loc_views++;
2819 }
2820 }
2821 }
2822 break;
2823
2824 case DW_AT_low_pc:
2825 if (need_base_address)
2826 debug_info_p->base_address = uvalue;
2827 break;
2828
2829 case DW_AT_GNU_addr_base:
2830 case DW_AT_addr_base:
2831 debug_info_p->addr_base = uvalue;
2832 break;
2833
2834 case DW_AT_GNU_ranges_base:
2835 debug_info_p->ranges_base = uvalue;
2836 break;
2837
2838 case DW_AT_ranges:
2839 if ((dwarf_version < 4
2840 && (form == DW_FORM_data4 || form == DW_FORM_data8))
2841 || form == DW_FORM_sec_offset)
2842 {
2843 /* Process range list. */
2844 unsigned int lmax = debug_info_p->max_range_lists;
2845 unsigned int num = debug_info_p->num_range_lists;
2846
2847 if (lmax == 0 || num >= lmax)
2848 {
2849 lmax += 1024;
2850 debug_info_p->range_lists = (dwarf_vma *)
2851 xcrealloc (debug_info_p->range_lists,
2852 lmax, sizeof (*debug_info_p->range_lists));
2853 debug_info_p->max_range_lists = lmax;
2854 }
2855 debug_info_p->range_lists [num] = uvalue;
2856 debug_info_p->num_range_lists++;
2857 }
2858 break;
2859
2860 case DW_AT_GNU_dwo_name:
2861 case DW_AT_dwo_name:
2862 if (need_dwo_info)
2863 switch (form)
2864 {
2865 case DW_FORM_strp:
2866 add_dwo_name ((const char *) fetch_indirect_string (uvalue), cu_offset);
2867 break;
2868 case DW_FORM_GNU_strp_alt:
2869 add_dwo_name ((const char *) fetch_alt_indirect_string (uvalue), cu_offset);
2870 break;
2871 case DW_FORM_GNU_str_index:
2872 case DW_FORM_strx:
2873 case DW_FORM_strx1:
2874 case DW_FORM_strx2:
2875 case DW_FORM_strx3:
2876 case DW_FORM_strx4:
2877 add_dwo_name (fetch_indexed_string (uvalue, this_set, offset_size, false), cu_offset);
2878 break;
2879 case DW_FORM_string:
2880 add_dwo_name ((const char *) orig_data, cu_offset);
2881 break;
2882 default:
2883 warn (_("Unsupported form (%s) for attribute %s\n"),
2884 get_FORM_name (form), get_AT_name (attribute));
2885 break;
2886 }
2887 break;
2888
2889 case DW_AT_comp_dir:
2890 /* FIXME: Also extract a build-id in a CU/TU. */
2891 if (need_dwo_info)
2892 switch (form)
2893 {
2894 case DW_FORM_strp:
2895 add_dwo_dir ((const char *) fetch_indirect_string (uvalue), cu_offset);
2896 break;
2897 case DW_FORM_GNU_strp_alt:
2898 add_dwo_dir (fetch_alt_indirect_string (uvalue), cu_offset);
2899 break;
2900 case DW_FORM_line_strp:
2901 add_dwo_dir ((const char *) fetch_indirect_line_string (uvalue), cu_offset);
2902 break;
2903 case DW_FORM_GNU_str_index:
2904 case DW_FORM_strx:
2905 case DW_FORM_strx1:
2906 case DW_FORM_strx2:
2907 case DW_FORM_strx3:
2908 case DW_FORM_strx4:
2909 add_dwo_dir (fetch_indexed_string (uvalue, this_set, offset_size, false), cu_offset);
2910 break;
2911 case DW_FORM_string:
2912 add_dwo_dir ((const char *) orig_data, cu_offset);
2913 break;
2914 default:
2915 warn (_("Unsupported form (%s) for attribute %s\n"),
2916 get_FORM_name (form), get_AT_name (attribute));
2917 break;
2918 }
2919 break;
2920
2921 case DW_AT_GNU_dwo_id:
2922 if (need_dwo_info)
2923 switch (form)
2924 {
2925 case DW_FORM_data8:
2926 /* FIXME: Record the length of the ID as well ? */
2927 add_dwo_id ((const char *) (data - 8), cu_offset);
2928 break;
2929 default:
2930 warn (_("Unsupported form (%s) for attribute %s\n"),
2931 get_FORM_name (form), get_AT_name (attribute));
2932 break;
2933 }
2934 break;
2935
2936 default:
2937 break;
2938 }
2939 }
2940
2941 if (do_loc || attribute == 0)
2942 return data;
2943
2944 /* For some attributes we can display further information. */
2945 switch (attribute)
2946 {
2947 case DW_AT_type:
2948 if (level >= 0 && level < MAX_CU_NESTING
2949 && uvalue < (size_t) (end - start))
2950 {
2951 bool is_signed = false;
2952 abbrev_entry *type_abbrev;
2953 unsigned char *type_data;
2954 unsigned long type_cu_offset;
2955
2956 type_abbrev = get_type_abbrev_from_form (form, uvalue, cu_offset,
2957 section, NULL, & type_data, & type_cu_offset);
2958 if (type_abbrev != NULL)
2959 {
2960 get_type_signedness (type_abbrev, section, type_data, end, type_cu_offset,
2961 pointer_size, offset_size, dwarf_version,
2962 & is_signed, 0);
2963 }
2964 level_type_signed[level] = is_signed;
2965 }
2966 break;
2967
2968 case DW_AT_inline:
2969 printf ("\t");
2970 switch (uvalue)
2971 {
2972 case DW_INL_not_inlined:
2973 printf (_("(not inlined)"));
2974 break;
2975 case DW_INL_inlined:
2976 printf (_("(inlined)"));
2977 break;
2978 case DW_INL_declared_not_inlined:
2979 printf (_("(declared as inline but ignored)"));
2980 break;
2981 case DW_INL_declared_inlined:
2982 printf (_("(declared as inline and inlined)"));
2983 break;
2984 default:
2985 printf (_(" (Unknown inline attribute value: %s)"),
2986 dwarf_vmatoa ("x", uvalue));
2987 break;
2988 }
2989 break;
2990
2991 case DW_AT_language:
2992 printf ("\t");
2993 switch (uvalue)
2994 {
2995 /* Ordered by the numeric value of these constants. */
2996 case DW_LANG_C89: printf ("(ANSI C)"); break;
2997 case DW_LANG_C: printf ("(non-ANSI C)"); break;
2998 case DW_LANG_Ada83: printf ("(Ada)"); break;
2999 case DW_LANG_C_plus_plus: printf ("(C++)"); break;
3000 case DW_LANG_Cobol74: printf ("(Cobol 74)"); break;
3001 case DW_LANG_Cobol85: printf ("(Cobol 85)"); break;
3002 case DW_LANG_Fortran77: printf ("(FORTRAN 77)"); break;
3003 case DW_LANG_Fortran90: printf ("(Fortran 90)"); break;
3004 case DW_LANG_Pascal83: printf ("(ANSI Pascal)"); break;
3005 case DW_LANG_Modula2: printf ("(Modula 2)"); break;
3006 /* DWARF 2.1 values. */
3007 case DW_LANG_Java: printf ("(Java)"); break;
3008 case DW_LANG_C99: printf ("(ANSI C99)"); break;
3009 case DW_LANG_Ada95: printf ("(ADA 95)"); break;
3010 case DW_LANG_Fortran95: printf ("(Fortran 95)"); break;
3011 /* DWARF 3 values. */
3012 case DW_LANG_PLI: printf ("(PLI)"); break;
3013 case DW_LANG_ObjC: printf ("(Objective C)"); break;
3014 case DW_LANG_ObjC_plus_plus: printf ("(Objective C++)"); break;
3015 case DW_LANG_UPC: printf ("(Unified Parallel C)"); break;
3016 case DW_LANG_D: printf ("(D)"); break;
3017 /* DWARF 4 values. */
3018 case DW_LANG_Python: printf ("(Python)"); break;
3019 /* DWARF 5 values. */
3020 case DW_LANG_OpenCL: printf ("(OpenCL)"); break;
3021 case DW_LANG_Go: printf ("(Go)"); break;
3022 case DW_LANG_Modula3: printf ("(Modula 3)"); break;
3023 case DW_LANG_Haskell: printf ("(Haskell)"); break;
3024 case DW_LANG_C_plus_plus_03: printf ("(C++03)"); break;
3025 case DW_LANG_C_plus_plus_11: printf ("(C++11)"); break;
3026 case DW_LANG_OCaml: printf ("(OCaml)"); break;
3027 case DW_LANG_Rust: printf ("(Rust)"); break;
3028 case DW_LANG_C11: printf ("(C11)"); break;
3029 case DW_LANG_Swift: printf ("(Swift)"); break;
3030 case DW_LANG_Julia: printf ("(Julia)"); break;
3031 case DW_LANG_Dylan: printf ("(Dylan)"); break;
3032 case DW_LANG_C_plus_plus_14: printf ("(C++14)"); break;
3033 case DW_LANG_Fortran03: printf ("(Fortran 03)"); break;
3034 case DW_LANG_Fortran08: printf ("(Fortran 08)"); break;
3035 case DW_LANG_RenderScript: printf ("(RenderScript)"); break;
3036 /* MIPS extension. */
3037 case DW_LANG_Mips_Assembler: printf ("(MIPS assembler)"); break;
3038 /* UPC extension. */
3039 case DW_LANG_Upc: printf ("(Unified Parallel C)"); break;
3040 default:
3041 if (uvalue >= DW_LANG_lo_user && uvalue <= DW_LANG_hi_user)
3042 printf (_("(implementation defined: %s)"),
3043 dwarf_vmatoa ("x", uvalue));
3044 else
3045 printf (_("(Unknown: %s)"), dwarf_vmatoa ("x", uvalue));
3046 break;
3047 }
3048 break;
3049
3050 case DW_AT_encoding:
3051 printf ("\t");
3052 switch (uvalue)
3053 {
3054 case DW_ATE_void: printf ("(void)"); break;
3055 case DW_ATE_address: printf ("(machine address)"); break;
3056 case DW_ATE_boolean: printf ("(boolean)"); break;
3057 case DW_ATE_complex_float: printf ("(complex float)"); break;
3058 case DW_ATE_float: printf ("(float)"); break;
3059 case DW_ATE_signed: printf ("(signed)"); break;
3060 case DW_ATE_signed_char: printf ("(signed char)"); break;
3061 case DW_ATE_unsigned: printf ("(unsigned)"); break;
3062 case DW_ATE_unsigned_char: printf ("(unsigned char)"); break;
3063 /* DWARF 2.1 values: */
3064 case DW_ATE_imaginary_float: printf ("(imaginary float)"); break;
3065 case DW_ATE_decimal_float: printf ("(decimal float)"); break;
3066 /* DWARF 3 values: */
3067 case DW_ATE_packed_decimal: printf ("(packed_decimal)"); break;
3068 case DW_ATE_numeric_string: printf ("(numeric_string)"); break;
3069 case DW_ATE_edited: printf ("(edited)"); break;
3070 case DW_ATE_signed_fixed: printf ("(signed_fixed)"); break;
3071 case DW_ATE_unsigned_fixed: printf ("(unsigned_fixed)"); break;
3072 /* DWARF 4 values: */
3073 case DW_ATE_UTF: printf ("(unicode string)"); break;
3074 /* DWARF 5 values: */
3075 case DW_ATE_UCS: printf ("(UCS)"); break;
3076 case DW_ATE_ASCII: printf ("(ASCII)"); break;
3077
3078 /* HP extensions: */
3079 case DW_ATE_HP_float80: printf ("(HP_float80)"); break;
3080 case DW_ATE_HP_complex_float80: printf ("(HP_complex_float80)"); break;
3081 case DW_ATE_HP_float128: printf ("(HP_float128)"); break;
3082 case DW_ATE_HP_complex_float128:printf ("(HP_complex_float128)"); break;
3083 case DW_ATE_HP_floathpintel: printf ("(HP_floathpintel)"); break;
3084 case DW_ATE_HP_imaginary_float80: printf ("(HP_imaginary_float80)"); break;
3085 case DW_ATE_HP_imaginary_float128: printf ("(HP_imaginary_float128)"); break;
3086
3087 default:
3088 if (uvalue >= DW_ATE_lo_user
3089 && uvalue <= DW_ATE_hi_user)
3090 printf (_("(user defined type)"));
3091 else
3092 printf (_("(unknown type)"));
3093 break;
3094 }
3095 break;
3096
3097 case DW_AT_accessibility:
3098 printf ("\t");
3099 switch (uvalue)
3100 {
3101 case DW_ACCESS_public: printf ("(public)"); break;
3102 case DW_ACCESS_protected: printf ("(protected)"); break;
3103 case DW_ACCESS_private: printf ("(private)"); break;
3104 default:
3105 printf (_("(unknown accessibility)"));
3106 break;
3107 }
3108 break;
3109
3110 case DW_AT_visibility:
3111 printf ("\t");
3112 switch (uvalue)
3113 {
3114 case DW_VIS_local: printf ("(local)"); break;
3115 case DW_VIS_exported: printf ("(exported)"); break;
3116 case DW_VIS_qualified: printf ("(qualified)"); break;
3117 default: printf (_("(unknown visibility)")); break;
3118 }
3119 break;
3120
3121 case DW_AT_endianity:
3122 printf ("\t");
3123 switch (uvalue)
3124 {
3125 case DW_END_default: printf ("(default)"); break;
3126 case DW_END_big: printf ("(big)"); break;
3127 case DW_END_little: printf ("(little)"); break;
3128 default:
3129 if (uvalue >= DW_END_lo_user && uvalue <= DW_END_hi_user)
3130 printf (_("(user specified)"));
3131 else
3132 printf (_("(unknown endianity)"));
3133 break;
3134 }
3135 break;
3136
3137 case DW_AT_virtuality:
3138 printf ("\t");
3139 switch (uvalue)
3140 {
3141 case DW_VIRTUALITY_none: printf ("(none)"); break;
3142 case DW_VIRTUALITY_virtual: printf ("(virtual)"); break;
3143 case DW_VIRTUALITY_pure_virtual:printf ("(pure_virtual)"); break;
3144 default: printf (_("(unknown virtuality)")); break;
3145 }
3146 break;
3147
3148 case DW_AT_identifier_case:
3149 printf ("\t");
3150 switch (uvalue)
3151 {
3152 case DW_ID_case_sensitive: printf ("(case_sensitive)"); break;
3153 case DW_ID_up_case: printf ("(up_case)"); break;
3154 case DW_ID_down_case: printf ("(down_case)"); break;
3155 case DW_ID_case_insensitive: printf ("(case_insensitive)"); break;
3156 default: printf (_("(unknown case)")); break;
3157 }
3158 break;
3159
3160 case DW_AT_calling_convention:
3161 printf ("\t");
3162 switch (uvalue)
3163 {
3164 case DW_CC_normal: printf ("(normal)"); break;
3165 case DW_CC_program: printf ("(program)"); break;
3166 case DW_CC_nocall: printf ("(nocall)"); break;
3167 case DW_CC_pass_by_reference: printf ("(pass by ref)"); break;
3168 case DW_CC_pass_by_value: printf ("(pass by value)"); break;
3169 case DW_CC_GNU_renesas_sh: printf ("(Rensas SH)"); break;
3170 case DW_CC_GNU_borland_fastcall_i386: printf ("(Borland fastcall i386)"); break;
3171 default:
3172 if (uvalue >= DW_CC_lo_user
3173 && uvalue <= DW_CC_hi_user)
3174 printf (_("(user defined)"));
3175 else
3176 printf (_("(unknown convention)"));
3177 }
3178 break;
3179
3180 case DW_AT_ordering:
3181 printf ("\t");
3182 switch (uvalue)
3183 {
3184 case 255:
3185 case -1: printf (_("(undefined)")); break;
3186 case 0: printf ("(row major)"); break;
3187 case 1: printf ("(column major)"); break;
3188 }
3189 break;
3190
3191 case DW_AT_decimal_sign:
3192 printf ("\t");
3193 switch (uvalue)
3194 {
3195 case DW_DS_unsigned: printf (_("(unsigned)")); break;
3196 case DW_DS_leading_overpunch: printf (_("(leading overpunch)")); break;
3197 case DW_DS_trailing_overpunch: printf (_("(trailing overpunch)")); break;
3198 case DW_DS_leading_separate: printf (_("(leading separate)")); break;
3199 case DW_DS_trailing_separate: printf (_("(trailing separate)")); break;
3200 default: printf (_("(unrecognised)")); break;
3201 }
3202 break;
3203
3204 case DW_AT_defaulted:
3205 printf ("\t");
3206 switch (uvalue)
3207 {
3208 case DW_DEFAULTED_no: printf (_("(no)")); break;
3209 case DW_DEFAULTED_in_class: printf (_("(in class)")); break;
3210 case DW_DEFAULTED_out_of_class: printf (_("(out of class)")); break;
3211 default: printf (_("(unrecognised)")); break;
3212 }
3213 break;
3214
3215 case DW_AT_discr_list:
3216 printf ("\t");
3217 display_discr_list (form, uvalue, data, end, level);
3218 break;
3219
3220 case DW_AT_frame_base:
3221 have_frame_base = 1;
3222 /* Fall through. */
3223 case DW_AT_location:
3224 case DW_AT_string_length:
3225 case DW_AT_return_addr:
3226 case DW_AT_data_member_location:
3227 case DW_AT_vtable_elem_location:
3228 case DW_AT_segment:
3229 case DW_AT_static_link:
3230 case DW_AT_use_location:
3231 case DW_AT_call_value:
3232 case DW_AT_GNU_call_site_value:
3233 case DW_AT_call_data_value:
3234 case DW_AT_GNU_call_site_data_value:
3235 case DW_AT_call_target:
3236 case DW_AT_GNU_call_site_target:
3237 case DW_AT_call_target_clobbered:
3238 case DW_AT_GNU_call_site_target_clobbered:
3239 if ((dwarf_version < 4
3240 && (form == DW_FORM_data4 || form == DW_FORM_data8))
3241 || form == DW_FORM_sec_offset)
3242 printf (_(" (location list)"));
3243 /* Fall through. */
3244 case DW_AT_allocated:
3245 case DW_AT_associated:
3246 case DW_AT_data_location:
3247 case DW_AT_stride:
3248 case DW_AT_upper_bound:
3249 case DW_AT_lower_bound:
3250 if (block_start)
3251 {
3252 int need_frame_base;
3253
3254 printf ("\t(");
3255 need_frame_base = decode_location_expression (block_start,
3256 pointer_size,
3257 offset_size,
3258 dwarf_version,
3259 uvalue,
3260 cu_offset, section);
3261 printf (")");
3262 if (need_frame_base && !have_frame_base)
3263 printf (_(" [without DW_AT_frame_base]"));
3264 }
3265 break;
3266
3267 case DW_AT_data_bit_offset:
3268 case DW_AT_byte_size:
3269 case DW_AT_bit_size:
3270 case DW_AT_string_length_byte_size:
3271 case DW_AT_string_length_bit_size:
3272 case DW_AT_bit_stride:
3273 if (form == DW_FORM_exprloc)
3274 {
3275 printf ("\t(");
3276 (void) decode_location_expression (block_start, pointer_size,
3277 offset_size, dwarf_version,
3278 uvalue, cu_offset, section);
3279 printf (")");
3280 }
3281 break;
3282
3283 case DW_AT_import:
3284 {
3285 unsigned long abbrev_number;
3286 abbrev_entry *entry;
3287
3288 entry = get_type_abbrev_from_form (form, uvalue, cu_offset,
3289 section, & abbrev_number, NULL, NULL);
3290 if (entry == NULL)
3291 {
3292 if (form != DW_FORM_GNU_ref_alt)
3293 warn (_("Offset %s used as value for DW_AT_import attribute of DIE at offset 0x%lx is too big.\n"),
3294 dwarf_vmatoa ("x", uvalue),
3295 (unsigned long) (orig_data - section->start));
3296 }
3297 else
3298 {
3299 printf (_("\t[Abbrev Number: %ld"), abbrev_number);
3300 printf (" (%s)", get_TAG_name (entry->tag));
3301 printf ("]");
3302 }
3303 }
3304 break;
3305
3306 default:
3307 break;
3308 }
3309
3310 return data;
3311 }
3312
3313 static unsigned char *
3314 read_and_display_attr (unsigned long attribute,
3315 unsigned long form,
3316 dwarf_signed_vma implicit_const,
3317 unsigned char * start,
3318 unsigned char * data,
3319 unsigned char * end,
3320 dwarf_vma cu_offset,
3321 dwarf_vma pointer_size,
3322 dwarf_vma offset_size,
3323 int dwarf_version,
3324 debug_info * debug_info_p,
3325 int do_loc,
3326 struct dwarf_section * section,
3327 struct cu_tu_set * this_set,
3328 int level)
3329 {
3330 if (!do_loc)
3331 printf (" %-18s:", get_AT_name (attribute));
3332 data = read_and_display_attr_value (attribute, form, implicit_const,
3333 start, data, end,
3334 cu_offset, pointer_size, offset_size,
3335 dwarf_version, debug_info_p,
3336 do_loc, section, this_set, ' ', level);
3337 if (!do_loc)
3338 printf ("\n");
3339 return data;
3340 }
3341
3342 /* Like load_debug_section, but if the ordinary call fails, and we are
3343 following debug links, then attempt to load the requested section
3344 from one of the separate debug info files. */
3345
3346 static bool
3347 load_debug_section_with_follow (enum dwarf_section_display_enum sec_enum,
3348 void * handle)
3349 {
3350 if (load_debug_section (sec_enum, handle))
3351 {
3352 if (debug_displays[sec_enum].section.filename == NULL)
3353 {
3354 /* See if we can associate a filename with this section. */
3355 separate_info * i;
3356
3357 for (i = first_separate_info; i != NULL; i = i->next)
3358 if (i->handle == handle)
3359 {
3360 debug_displays[sec_enum].section.filename = i->filename;
3361 break;
3362 }
3363 }
3364
3365 return true;
3366 }
3367
3368 if (do_follow_links)
3369 {
3370 separate_info * i;
3371
3372 for (i = first_separate_info; i != NULL; i = i->next)
3373 {
3374 if (load_debug_section (sec_enum, i->handle))
3375 {
3376 debug_displays[sec_enum].section.filename = i->filename;
3377
3378 /* FIXME: We should check to see if any of the remaining debug info
3379 files also contain this section, and, umm, do something about it. */
3380 return true;
3381 }
3382 }
3383 }
3384
3385 return false;
3386 }
3387
3388 static void
3389 introduce (struct dwarf_section * section, bool raw)
3390 {
3391 if (raw)
3392 {
3393 if (do_follow_links && section->filename)
3394 printf (_("Raw dump of debug contents of section %s (loaded from %s):\n\n"),
3395 section->name, section->filename);
3396 else
3397 printf (_("Raw dump of debug contents of section %s:\n\n"), section->name);
3398 }
3399 else
3400 {
3401 if (do_follow_links && section->filename)
3402 printf (_("Contents of the %s section (loaded from %s):\n\n"),
3403 section->name, section->filename);
3404 else
3405 printf (_("Contents of the %s section:\n\n"), section->name);
3406 }
3407 }
3408
3409 /* Process the contents of a .debug_info section.
3410 If do_loc is TRUE then we are scanning for location lists and dwo tags
3411 and we do not want to display anything to the user.
3412 If do_types is TRUE, we are processing a .debug_types section instead of
3413 a .debug_info section.
3414 The information displayed is restricted by the values in DWARF_START_DIE
3415 and DWARF_CUTOFF_LEVEL.
3416 Returns TRUE upon success. Otherwise an error or warning message is
3417 printed and FALSE is returned. */
3418
3419 static bool
3420 process_debug_info (struct dwarf_section * section,
3421 void *file,
3422 enum dwarf_section_display_enum abbrev_sec,
3423 bool do_loc,
3424 bool do_types)
3425 {
3426 unsigned char *start = section->start;
3427 unsigned char *end = start + section->size;
3428 unsigned char *section_begin;
3429 unsigned int unit;
3430 unsigned int num_units = 0;
3431
3432 /* First scan the section to get the number of comp units.
3433 Length sanity checks are done here. */
3434 for (section_begin = start, num_units = 0; section_begin < end;
3435 num_units ++)
3436 {
3437 dwarf_vma length;
3438
3439 /* Read the first 4 bytes. For a 32-bit DWARF section, this
3440 will be the length. For a 64-bit DWARF section, it'll be
3441 the escape code 0xffffffff followed by an 8 byte length. */
3442 SAFE_BYTE_GET_AND_INC (length, section_begin, 4, end);
3443
3444 if (length == 0xffffffff)
3445 SAFE_BYTE_GET_AND_INC (length, section_begin, 8, end);
3446 else if (length >= 0xfffffff0 && length < 0xffffffff)
3447 {
3448 warn (_("Reserved length value (0x%s) found in section %s\n"),
3449 dwarf_vmatoa ("x", length), section->name);
3450 return false;
3451 }
3452
3453 /* Negative values are illegal, they may even cause infinite
3454 looping. This can happen if we can't accurately apply
3455 relocations to an object file, or if the file is corrupt. */
3456 if (length > (size_t) (end - section_begin))
3457 {
3458 warn (_("Corrupt unit length (0x%s) found in section %s\n"),
3459 dwarf_vmatoa ("x", length), section->name);
3460 return false;
3461 }
3462 section_begin += length;
3463 }
3464
3465 if (num_units == 0)
3466 {
3467 error (_("No comp units in %s section ?\n"), section->name);
3468 return false;
3469 }
3470
3471 if ((do_loc || do_debug_loc || do_debug_ranges)
3472 && num_debug_info_entries == 0
3473 && ! do_types)
3474 {
3475
3476 /* Then allocate an array to hold the information. */
3477 debug_information = (debug_info *) cmalloc (num_units,
3478 sizeof (* debug_information));
3479 if (debug_information == NULL)
3480 {
3481 error (_("Not enough memory for a debug info array of %u entries\n"),
3482 num_units);
3483 alloc_num_debug_info_entries = num_debug_info_entries = 0;
3484 return false;
3485 }
3486
3487 /* PR 17531: file: 92ca3797.
3488 We cannot rely upon the debug_information array being initialised
3489 before it is used. A corrupt file could easily contain references
3490 to a unit for which information has not been made available. So
3491 we ensure that the array is zeroed here. */
3492 memset (debug_information, 0, num_units * sizeof (*debug_information));
3493
3494 alloc_num_debug_info_entries = num_units;
3495 }
3496
3497 if (!do_loc)
3498 {
3499 load_debug_section_with_follow (str, file);
3500 load_debug_section_with_follow (line_str, file);
3501 load_debug_section_with_follow (str_dwo, file);
3502 load_debug_section_with_follow (str_index, file);
3503 load_debug_section_with_follow (str_index_dwo, file);
3504 load_debug_section_with_follow (debug_addr, file);
3505 }
3506
3507 load_debug_section_with_follow (abbrev_sec, file);
3508 if (debug_displays [abbrev_sec].section.start == NULL)
3509 {
3510 warn (_("Unable to locate %s section!\n"),
3511 debug_displays [abbrev_sec].section.uncompressed_name);
3512 return false;
3513 }
3514
3515 if (!do_loc && dwarf_start_die == 0)
3516 introduce (section, false);
3517
3518 free_all_abbrevs ();
3519 free (cu_abbrev_map);
3520 cu_abbrev_map = NULL;
3521 next_free_abbrev_map_entry = 0;
3522
3523 /* In order to be able to resolve DW_FORM_ref_attr forms we need
3524 to load *all* of the abbrevs for all CUs in this .debug_info
3525 section. This does effectively mean that we (partially) read
3526 every CU header twice. */
3527 for (section_begin = start; start < end;)
3528 {
3529 DWARF2_Internal_CompUnit compunit;
3530 unsigned char * hdrptr;
3531 dwarf_vma abbrev_base;
3532 size_t abbrev_size;
3533 dwarf_vma cu_offset;
3534 unsigned int offset_size;
3535 struct cu_tu_set * this_set;
3536 abbrev_list * list;
3537 unsigned char *end_cu;
3538
3539 hdrptr = start;
3540 cu_offset = start - section_begin;
3541
3542 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 4, end);
3543
3544 if (compunit.cu_length == 0xffffffff)
3545 {
3546 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 8, end);
3547 offset_size = 8;
3548 }
3549 else
3550 offset_size = 4;
3551 end_cu = hdrptr + compunit.cu_length;
3552
3553 SAFE_BYTE_GET_AND_INC (compunit.cu_version, hdrptr, 2, end_cu);
3554
3555 this_set = find_cu_tu_set_v2 (cu_offset, do_types);
3556
3557 if (compunit.cu_version < 5)
3558 {
3559 compunit.cu_unit_type = DW_UT_compile;
3560 /* Initialize it due to a false compiler warning. */
3561 compunit.cu_pointer_size = -1;
3562 }
3563 else
3564 {
3565 SAFE_BYTE_GET_AND_INC (compunit.cu_unit_type, hdrptr, 1, end_cu);
3566 do_types = (compunit.cu_unit_type == DW_UT_type);
3567
3568 SAFE_BYTE_GET_AND_INC (compunit.cu_pointer_size, hdrptr, 1, end_cu);
3569 }
3570
3571 SAFE_BYTE_GET_AND_INC (compunit.cu_abbrev_offset, hdrptr, offset_size,
3572 end_cu);
3573
3574 if (compunit.cu_unit_type == DW_UT_split_compile
3575 || compunit.cu_unit_type == DW_UT_skeleton)
3576 {
3577 uint64_t dwo_id;
3578 SAFE_BYTE_GET_AND_INC (dwo_id, hdrptr, 8, end_cu);
3579 }
3580
3581 if (this_set == NULL)
3582 {
3583 abbrev_base = 0;
3584 abbrev_size = debug_displays [abbrev_sec].section.size;
3585 }
3586 else
3587 {
3588 abbrev_base = this_set->section_offsets [DW_SECT_ABBREV];
3589 abbrev_size = this_set->section_sizes [DW_SECT_ABBREV];
3590 }
3591
3592 list = find_abbrev_list_by_abbrev_offset (abbrev_base,
3593 compunit.cu_abbrev_offset);
3594 if (list == NULL)
3595 {
3596 unsigned char * next;
3597
3598 list = new_abbrev_list (abbrev_base,
3599 compunit.cu_abbrev_offset);
3600 next = process_abbrev_set (&debug_displays[abbrev_sec].section,
3601 abbrev_base, abbrev_size,
3602 compunit.cu_abbrev_offset, list);
3603 list->start_of_next_abbrevs = next;
3604 }
3605
3606 start = end_cu;
3607 record_abbrev_list_for_cu (cu_offset, start - section_begin, list);
3608 }
3609
3610 for (start = section_begin, unit = 0; start < end; unit++)
3611 {
3612 DWARF2_Internal_CompUnit compunit;
3613 unsigned char *hdrptr;
3614 unsigned char *tags;
3615 int level, last_level, saved_level;
3616 dwarf_vma cu_offset;
3617 unsigned int offset_size;
3618 dwarf_vma signature = 0;
3619 dwarf_vma type_offset = 0;
3620 struct cu_tu_set *this_set;
3621 dwarf_vma abbrev_base;
3622 size_t abbrev_size;
3623 abbrev_list * list = NULL;
3624 unsigned char *end_cu;
3625
3626 hdrptr = start;
3627 cu_offset = start - section_begin;
3628
3629 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 4, end);
3630
3631 if (compunit.cu_length == 0xffffffff)
3632 {
3633 SAFE_BYTE_GET_AND_INC (compunit.cu_length, hdrptr, 8, end);
3634 offset_size = 8;
3635 }
3636 else
3637 offset_size = 4;
3638 end_cu = hdrptr + compunit.cu_length;
3639
3640 SAFE_BYTE_GET_AND_INC (compunit.cu_version, hdrptr, 2, end_cu);
3641
3642 this_set = find_cu_tu_set_v2 (cu_offset, do_types);
3643
3644 if (compunit.cu_version < 5)
3645 {
3646 compunit.cu_unit_type = DW_UT_compile;
3647 /* Initialize it due to a false compiler warning. */
3648 compunit.cu_pointer_size = -1;
3649 }
3650 else
3651 {
3652 SAFE_BYTE_GET_AND_INC (compunit.cu_unit_type, hdrptr, 1, end_cu);
3653 do_types = (compunit.cu_unit_type == DW_UT_type);
3654
3655 SAFE_BYTE_GET_AND_INC (compunit.cu_pointer_size, hdrptr, 1, end_cu);
3656 }
3657
3658 SAFE_BYTE_GET_AND_INC (compunit.cu_abbrev_offset, hdrptr, offset_size, end_cu);
3659
3660 if (this_set == NULL)
3661 {
3662 abbrev_base = 0;
3663 abbrev_size = debug_displays [abbrev_sec].section.size;
3664 }
3665 else
3666 {
3667 abbrev_base = this_set->section_offsets [DW_SECT_ABBREV];
3668 abbrev_size = this_set->section_sizes [DW_SECT_ABBREV];
3669 }
3670
3671 if (compunit.cu_version < 5)
3672 SAFE_BYTE_GET_AND_INC (compunit.cu_pointer_size, hdrptr, 1, end_cu);
3673
3674 bool do_dwo_id = false;
3675 uint64_t dwo_id = 0;
3676 if (compunit.cu_unit_type == DW_UT_split_compile
3677 || compunit.cu_unit_type == DW_UT_skeleton)
3678 {
3679 SAFE_BYTE_GET_AND_INC (dwo_id, hdrptr, 8, end_cu);
3680 do_dwo_id = true;
3681 }
3682
3683 /* PR 17512: file: 001-108546-0.001:0.1. */
3684 if (compunit.cu_pointer_size < 2 || compunit.cu_pointer_size > 8)
3685 {
3686 warn (_("Invalid pointer size (%d) in compunit header, using %d instead\n"),
3687 compunit.cu_pointer_size, offset_size);
3688 compunit.cu_pointer_size = offset_size;
3689 }
3690
3691 if (do_types)
3692 {
3693 SAFE_BYTE_GET_AND_INC (signature, hdrptr, 8, end_cu);
3694 SAFE_BYTE_GET_AND_INC (type_offset, hdrptr, offset_size, end_cu);
3695 }
3696
3697 if (dwarf_start_die >= (size_t) (end_cu - section_begin))
3698 {
3699 start = end_cu;
3700 continue;
3701 }
3702
3703 if ((do_loc || do_debug_loc || do_debug_ranges)
3704 && num_debug_info_entries == 0
3705 && alloc_num_debug_info_entries > unit
3706 && ! do_types)
3707 {
3708 debug_information [unit].cu_offset = cu_offset;
3709 debug_information [unit].pointer_size
3710 = compunit.cu_pointer_size;
3711 debug_information [unit].offset_size = offset_size;
3712 debug_information [unit].dwarf_version = compunit.cu_version;
3713 debug_information [unit].base_address = 0;
3714 debug_information [unit].addr_base = DEBUG_INFO_UNAVAILABLE;
3715 debug_information [unit].ranges_base = DEBUG_INFO_UNAVAILABLE;
3716 debug_information [unit].loc_offsets = NULL;
3717 debug_information [unit].have_frame_base = NULL;
3718 debug_information [unit].max_loc_offsets = 0;
3719 debug_information [unit].num_loc_offsets = 0;
3720 debug_information [unit].range_lists = NULL;
3721 debug_information [unit].max_range_lists= 0;
3722 debug_information [unit].num_range_lists = 0;
3723 }
3724
3725 if (!do_loc && dwarf_start_die == 0)
3726 {
3727 printf (_(" Compilation Unit @ offset 0x%s:\n"),
3728 dwarf_vmatoa ("x", cu_offset));
3729 printf (_(" Length: 0x%s (%s)\n"),
3730 dwarf_vmatoa ("x", compunit.cu_length),
3731 offset_size == 8 ? "64-bit" : "32-bit");
3732 printf (_(" Version: %d\n"), compunit.cu_version);
3733 if (compunit.cu_version >= 5)
3734 {
3735 const char *name = get_DW_UT_name (compunit.cu_unit_type);
3736
3737 printf (_(" Unit Type: %s (%x)\n"),
3738 name ? name : "???",
3739 compunit.cu_unit_type);
3740 }
3741 printf (_(" Abbrev Offset: 0x%s\n"),
3742 dwarf_vmatoa ("x", compunit.cu_abbrev_offset));
3743 printf (_(" Pointer Size: %d\n"), compunit.cu_pointer_size);
3744 if (do_types)
3745 {
3746 printf (_(" Signature: 0x%s\n"),
3747 dwarf_vmatoa ("x", signature));
3748 printf (_(" Type Offset: 0x%s\n"),
3749 dwarf_vmatoa ("x", type_offset));
3750 }
3751 if (do_dwo_id)
3752 printf (_(" DWO ID: 0x%s\n"), dwarf_vmatoa ("x", dwo_id));
3753 if (this_set != NULL)
3754 {
3755 dwarf_vma *offsets = this_set->section_offsets;
3756 size_t *sizes = this_set->section_sizes;
3757
3758 printf (_(" Section contributions:\n"));
3759 printf (_(" .debug_abbrev.dwo: 0x%s 0x%s\n"),
3760 dwarf_vmatoa ("x", offsets [DW_SECT_ABBREV]),
3761 dwarf_vmatoa ("x", sizes [DW_SECT_ABBREV]));
3762 printf (_(" .debug_line.dwo: 0x%s 0x%s\n"),
3763 dwarf_vmatoa ("x", offsets [DW_SECT_LINE]),
3764 dwarf_vmatoa ("x", sizes [DW_SECT_LINE]));
3765 printf (_(" .debug_loc.dwo: 0x%s 0x%s\n"),
3766 dwarf_vmatoa ("x", offsets [DW_SECT_LOC]),
3767 dwarf_vmatoa ("x", sizes [DW_SECT_LOC]));
3768 printf (_(" .debug_str_offsets.dwo: 0x%s 0x%s\n"),
3769 dwarf_vmatoa ("x", offsets [DW_SECT_STR_OFFSETS]),
3770 dwarf_vmatoa ("x", sizes [DW_SECT_STR_OFFSETS]));
3771 }
3772 }
3773
3774 tags = hdrptr;
3775 start = end_cu;
3776
3777 if (compunit.cu_version < 2 || compunit.cu_version > 5)
3778 {
3779 warn (_("CU at offset %s contains corrupt or "
3780 "unsupported version number: %d.\n"),
3781 dwarf_vmatoa ("x", cu_offset), compunit.cu_version);
3782 continue;
3783 }
3784
3785 if (compunit.cu_unit_type != DW_UT_compile
3786 && compunit.cu_unit_type != DW_UT_partial
3787 && compunit.cu_unit_type != DW_UT_type
3788 && compunit.cu_unit_type != DW_UT_split_compile
3789 && compunit.cu_unit_type != DW_UT_skeleton)
3790 {
3791 warn (_("CU at offset %s contains corrupt or "
3792 "unsupported unit type: %d.\n"),
3793 dwarf_vmatoa ("x", cu_offset), compunit.cu_unit_type);
3794 continue;
3795 }
3796
3797 /* Process the abbrevs used by this compilation unit. */
3798 list = find_abbrev_list_by_abbrev_offset (abbrev_base,
3799 compunit.cu_abbrev_offset);
3800 if (list == NULL)
3801 {
3802 unsigned char *next;
3803
3804 list = new_abbrev_list (abbrev_base,
3805 compunit.cu_abbrev_offset);
3806 next = process_abbrev_set (&debug_displays[abbrev_sec].section,
3807 abbrev_base, abbrev_size,
3808 compunit.cu_abbrev_offset, list);
3809 list->start_of_next_abbrevs = next;
3810 }
3811
3812 level = 0;
3813 last_level = level;
3814 saved_level = -1;
3815 while (tags < start)
3816 {
3817 unsigned long abbrev_number;
3818 unsigned long die_offset;
3819 abbrev_entry *entry;
3820 abbrev_attr *attr;
3821 int do_printing = 1;
3822
3823 die_offset = tags - section_begin;
3824
3825 READ_ULEB (abbrev_number, tags, start);
3826
3827 /* A null DIE marks the end of a list of siblings or it may also be
3828 a section padding. */
3829 if (abbrev_number == 0)
3830 {
3831 /* Check if it can be a section padding for the last CU. */
3832 if (level == 0 && start == end)
3833 {
3834 unsigned char *chk;
3835
3836 for (chk = tags; chk < start; chk++)
3837 if (*chk != 0)
3838 break;
3839 if (chk == start)
3840 break;
3841 }
3842
3843 if (!do_loc && die_offset >= dwarf_start_die
3844 && (dwarf_cutoff_level == -1
3845 || level < dwarf_cutoff_level))
3846 printf (_(" <%d><%lx>: Abbrev Number: 0\n"),
3847 level, die_offset);
3848
3849 --level;
3850 if (level < 0)
3851 {
3852 static unsigned num_bogus_warns = 0;
3853
3854 if (num_bogus_warns < 3)
3855 {
3856 warn (_("Bogus end-of-siblings marker detected at offset %lx in %s section\n"),
3857 die_offset, section->name);
3858 num_bogus_warns ++;
3859 if (num_bogus_warns == 3)
3860 warn (_("Further warnings about bogus end-of-sibling markers suppressed\n"));
3861 }
3862 }
3863 if (dwarf_start_die != 0 && level < saved_level)
3864 return true;
3865 continue;
3866 }
3867
3868 if (!do_loc)
3869 {
3870 if (dwarf_start_die != 0 && die_offset < dwarf_start_die)
3871 do_printing = 0;
3872 else
3873 {
3874 if (dwarf_start_die != 0 && die_offset == dwarf_start_die)
3875 saved_level = level;
3876 do_printing = (dwarf_cutoff_level == -1
3877 || level < dwarf_cutoff_level);
3878 if (do_printing)
3879 printf (_(" <%d><%lx>: Abbrev Number: %lu"),
3880 level, die_offset, abbrev_number);
3881 else if (dwarf_cutoff_level == -1
3882 || last_level < dwarf_cutoff_level)
3883 printf (_(" <%d><%lx>: ...\n"), level, die_offset);
3884 last_level = level;
3885 }
3886 }
3887
3888 /* Scan through the abbreviation list until we reach the
3889 correct entry. */
3890 if (list == NULL)
3891 continue;
3892
3893 for (entry = list->first_abbrev; entry != NULL; entry = entry->next)
3894 if (entry->number == abbrev_number)
3895 break;
3896
3897 if (entry == NULL)
3898 {
3899 if (!do_loc && do_printing)
3900 {
3901 printf ("\n");
3902 fflush (stdout);
3903 }
3904 warn (_("DIE at offset 0x%lx refers to abbreviation number %lu which does not exist\n"),
3905 die_offset, abbrev_number);
3906 return false;
3907 }
3908
3909 if (!do_loc && do_printing)
3910 printf (" (%s)\n", get_TAG_name (entry->tag));
3911
3912 switch (entry->tag)
3913 {
3914 default:
3915 need_base_address = 0;
3916 break;
3917 case DW_TAG_compile_unit:
3918 need_base_address = 1;
3919 need_dwo_info = do_loc;
3920 break;
3921 case DW_TAG_entry_point:
3922 case DW_TAG_subprogram:
3923 need_base_address = 0;
3924 /* Assuming that there is no DW_AT_frame_base. */
3925 have_frame_base = 0;
3926 break;
3927 }
3928
3929 debug_info *debug_info_p =
3930 (debug_information && unit < alloc_num_debug_info_entries)
3931 ? debug_information + unit : NULL;
3932
3933 assert (!debug_info_p
3934 || (debug_info_p->num_loc_offsets
3935 == debug_info_p->num_loc_views));
3936
3937 for (attr = entry->first_attr;
3938 attr && attr->attribute;
3939 attr = attr->next)
3940 {
3941 if (! do_loc && do_printing)
3942 /* Show the offset from where the tag was extracted. */
3943 printf (" <%lx>", (unsigned long)(tags - section_begin));
3944 tags = read_and_display_attr (attr->attribute,
3945 attr->form,
3946 attr->implicit_const,
3947 section_begin,
3948 tags,
3949 start,
3950 cu_offset,
3951 compunit.cu_pointer_size,
3952 offset_size,
3953 compunit.cu_version,
3954 debug_info_p,
3955 do_loc || ! do_printing,
3956 section,
3957 this_set,
3958 level);
3959 }
3960
3961 /* If a locview attribute appears before a location one,
3962 make sure we don't associate it with an earlier
3963 loclist. */
3964 if (debug_info_p)
3965 switch (debug_info_p->num_loc_offsets - debug_info_p->num_loc_views)
3966 {
3967 case 1:
3968 debug_info_p->loc_views [debug_info_p->num_loc_views] = vm1;
3969 debug_info_p->num_loc_views++;
3970 assert (debug_info_p->num_loc_views
3971 == debug_info_p->num_loc_offsets);
3972 break;
3973
3974 case 0:
3975 break;
3976
3977 case -1:
3978 warn(_("DIE has locviews without loclist\n"));
3979 debug_info_p->num_loc_views--;
3980 break;
3981
3982 default:
3983 assert (0);
3984 }
3985
3986 if (entry->children)
3987 ++level;
3988 }
3989 }
3990
3991 /* Set num_debug_info_entries here so that it can be used to check if
3992 we need to process .debug_loc and .debug_ranges sections. */
3993 if ((do_loc || do_debug_loc || do_debug_ranges)
3994 && num_debug_info_entries == 0
3995 && ! do_types)
3996 {
3997 if (num_units > alloc_num_debug_info_entries)
3998 num_debug_info_entries = alloc_num_debug_info_entries;
3999 else
4000 num_debug_info_entries = num_units;
4001 }
4002
4003 if (!do_loc)
4004 printf ("\n");
4005
4006 return true;
4007 }
4008
4009 /* Locate and scan the .debug_info section in the file and record the pointer
4010 sizes and offsets for the compilation units in it. Usually an executable
4011 will have just one pointer size, but this is not guaranteed, and so we try
4012 not to make any assumptions. Returns zero upon failure, or the number of
4013 compilation units upon success. */
4014
4015 static unsigned int
4016 load_debug_info (void * file)
4017 {
4018 /* If we have already tried and failed to load the .debug_info
4019 section then do not bother to repeat the task. */
4020 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
4021 return 0;
4022
4023 /* If we already have the information there is nothing else to do. */
4024 if (num_debug_info_entries > 0)
4025 return num_debug_info_entries;
4026
4027 /* If this is a DWARF package file, load the CU and TU indexes. */
4028 (void) load_cu_tu_indexes (file);
4029
4030 if (load_debug_section_with_follow (info, file)
4031 && process_debug_info (&debug_displays [info].section, file, abbrev, true, false))
4032 return num_debug_info_entries;
4033
4034 if (load_debug_section_with_follow (info_dwo, file)
4035 && process_debug_info (&debug_displays [info_dwo].section, file,
4036 abbrev_dwo, true, false))
4037 return num_debug_info_entries;
4038
4039 num_debug_info_entries = DEBUG_INFO_UNAVAILABLE;
4040 return 0;
4041 }
4042
4043 /* Read a DWARF .debug_line section header starting at DATA.
4044 Upon success returns an updated DATA pointer and the LINFO
4045 structure and the END_OF_SEQUENCE pointer will be filled in.
4046 Otherwise returns NULL. */
4047
4048 static unsigned char *
4049 read_debug_line_header (struct dwarf_section * section,
4050 unsigned char * data,
4051 unsigned char * end,
4052 DWARF2_Internal_LineInfo * linfo,
4053 unsigned char ** end_of_sequence)
4054 {
4055 unsigned char *hdrptr;
4056
4057 /* Extract information from the Line Number Program Header.
4058 (section 6.2.4 in the Dwarf3 doc). */
4059 hdrptr = data;
4060
4061 /* Get and check the length of the block. */
4062 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 4, end);
4063
4064 if (linfo->li_length == 0xffffffff)
4065 {
4066 /* This section is 64-bit DWARF 3. */
4067 SAFE_BYTE_GET_AND_INC (linfo->li_length, hdrptr, 8, end);
4068 linfo->li_offset_size = 8;
4069 }
4070 else
4071 linfo->li_offset_size = 4;
4072
4073 if (linfo->li_length > (size_t) (end - hdrptr))
4074 {
4075 /* If the length field has a relocation against it, then we should
4076 not complain if it is inaccurate (and probably negative). This
4077 happens in object files when the .debug_line section is actually
4078 comprised of several different .debug_line.* sections, (some of
4079 which may be removed by linker garbage collection), and a relocation
4080 is used to compute the correct length once that is done. */
4081 if (reloc_at (section, (hdrptr - section->start) - linfo->li_offset_size))
4082 {
4083 linfo->li_length = end - hdrptr;
4084 }
4085 else
4086 {
4087 warn (_("The length field (0x%lx) in the debug_line header is wrong - the section is too small\n"),
4088 (long) linfo->li_length);
4089 return NULL;
4090 }
4091 }
4092 end = hdrptr + linfo->li_length;
4093
4094 /* Get and check the version number. */
4095 SAFE_BYTE_GET_AND_INC (linfo->li_version, hdrptr, 2, end);
4096
4097 if (linfo->li_version != 2
4098 && linfo->li_version != 3
4099 && linfo->li_version != 4
4100 && linfo->li_version != 5)
4101 {
4102 warn (_("Only DWARF version 2, 3, 4 and 5 line info "
4103 "is currently supported.\n"));
4104 return NULL;
4105 }
4106
4107 if (linfo->li_version >= 5)
4108 {
4109 SAFE_BYTE_GET_AND_INC (linfo->li_address_size, hdrptr, 1, end);
4110
4111 SAFE_BYTE_GET_AND_INC (linfo->li_segment_size, hdrptr, 1, end);
4112 if (linfo->li_segment_size != 0)
4113 {
4114 warn (_("The %s section contains "
4115 "unsupported segment selector size: %d.\n"),
4116 section->name, linfo->li_segment_size);
4117 return NULL;
4118 }
4119 }
4120
4121 SAFE_BYTE_GET_AND_INC (linfo->li_prologue_length, hdrptr,
4122 linfo->li_offset_size, end);
4123 SAFE_BYTE_GET_AND_INC (linfo->li_min_insn_length, hdrptr, 1, end);
4124
4125 if (linfo->li_version >= 4)
4126 {
4127 SAFE_BYTE_GET_AND_INC (linfo->li_max_ops_per_insn, hdrptr, 1, end);
4128
4129 if (linfo->li_max_ops_per_insn == 0)
4130 {
4131 warn (_("Invalid maximum operations per insn.\n"));
4132 return NULL;
4133 }
4134 }
4135 else
4136 linfo->li_max_ops_per_insn = 1;
4137
4138 SAFE_BYTE_GET_AND_INC (linfo->li_default_is_stmt, hdrptr, 1, end);
4139 SAFE_SIGNED_BYTE_GET_AND_INC (linfo->li_line_base, hdrptr, 1, end);
4140 SAFE_BYTE_GET_AND_INC (linfo->li_line_range, hdrptr, 1, end);
4141 SAFE_BYTE_GET_AND_INC (linfo->li_opcode_base, hdrptr, 1, end);
4142
4143 *end_of_sequence = end;
4144 return hdrptr;
4145 }
4146
4147 static unsigned char *
4148 display_formatted_table (unsigned char *data,
4149 unsigned char *start,
4150 unsigned char *end,
4151 const DWARF2_Internal_LineInfo *linfo,
4152 struct dwarf_section *section,
4153 bool is_dir)
4154 {
4155 unsigned char *format_start, format_count, *format, formati;
4156 dwarf_vma data_count, datai;
4157 unsigned int namepass, last_entry = 0;
4158 const char * table_name = is_dir ? N_("Directory Table") : N_("File Name Table");
4159
4160 SAFE_BYTE_GET_AND_INC (format_count, data, 1, end);
4161 if (do_checks && format_count > 5)
4162 warn (_("Unexpectedly large number of columns in the %s (%u)\n"),
4163 table_name, format_count);
4164
4165 format_start = data;
4166 for (formati = 0; formati < format_count; formati++)
4167 {
4168 SKIP_ULEB (data, end);
4169 SKIP_ULEB (data, end);
4170 if (data >= end)
4171 {
4172 warn (_("%s: Corrupt format description entry\n"), table_name);
4173 return data;
4174 }
4175 }
4176
4177 READ_ULEB (data_count, data, end);
4178 if (data_count == 0)
4179 {
4180 printf (_("\n The %s is empty.\n"), table_name);
4181 return data;
4182 }
4183 else if (data >= end)
4184 {
4185 warn (_("%s: Corrupt entry count - expected %s but none found\n"),
4186 table_name, dwarf_vmatoa ("x", data_count));
4187 return data;
4188 }
4189
4190 else if (format_count == 0)
4191 {
4192 warn (_("%s: format count is zero, but the table is not empty\n"),
4193 table_name);
4194 return end;
4195 }
4196
4197 printf (_("\n The %s (offset 0x%lx, lines %s, columns %u):\n"),
4198 table_name, (long) (data - start), dwarf_vmatoa ("u", data_count),
4199 format_count);
4200
4201 printf (_(" Entry"));
4202 /* Delay displaying name as the last entry for better screen layout. */
4203 for (namepass = 0; namepass < 2; namepass++)
4204 {
4205 format = format_start;
4206 for (formati = 0; formati < format_count; formati++)
4207 {
4208 dwarf_vma content_type;
4209
4210 READ_ULEB (content_type, format, end);
4211 if ((content_type == DW_LNCT_path) == (namepass == 1))
4212 switch (content_type)
4213 {
4214 case DW_LNCT_path:
4215 printf (_("\tName"));
4216 break;
4217 case DW_LNCT_directory_index:
4218 printf (_("\tDir"));
4219 break;
4220 case DW_LNCT_timestamp:
4221 printf (_("\tTime"));
4222 break;
4223 case DW_LNCT_size:
4224 printf (_("\tSize"));
4225 break;
4226 case DW_LNCT_MD5:
4227 printf (_("\tMD5\t\t\t"));
4228 break;
4229 default:
4230 printf (_("\t(Unknown format content type %s)"),
4231 dwarf_vmatoa ("u", content_type));
4232 }
4233 SKIP_ULEB (format, end);
4234 }
4235 }
4236 putchar ('\n');
4237
4238 for (datai = 0; datai < data_count; datai++)
4239 {
4240 unsigned char *datapass = data;
4241
4242 printf (" %d", last_entry++);
4243 /* Delay displaying name as the last entry for better screen layout. */
4244 for (namepass = 0; namepass < 2; namepass++)
4245 {
4246 format = format_start;
4247 data = datapass;
4248 for (formati = 0; formati < format_count; formati++)
4249 {
4250 dwarf_vma content_type, form;
4251
4252 READ_ULEB (content_type, format, end);
4253 READ_ULEB (form, format, end);
4254 data = read_and_display_attr_value (0, form, 0, start, data, end,
4255 0, 0, linfo->li_offset_size,
4256 linfo->li_version, NULL,
4257 ((content_type == DW_LNCT_path) != (namepass == 1)),
4258 section, NULL, '\t', -1);
4259 }
4260 }
4261
4262 if (data >= end && (datai < data_count - 1))
4263 {
4264 warn (_("\n%s: Corrupt entries list\n"), table_name);
4265 return data;
4266 }
4267 putchar ('\n');
4268 }
4269 return data;
4270 }
4271
4272 static int
4273 display_debug_sup (struct dwarf_section * section,
4274 void * file ATTRIBUTE_UNUSED)
4275 {
4276 unsigned char * start = section->start;
4277 unsigned char * end = section->start + section->size;
4278 unsigned int version;
4279 char is_supplementary;
4280 const unsigned char * sup_filename;
4281 size_t sup_filename_len;
4282 unsigned int num_read;
4283 int status;
4284 dwarf_vma checksum_len;
4285
4286
4287 introduce (section, true);
4288 if (section->size < 4)
4289 {
4290 error (_("corrupt .debug_sup section: size is too small\n"));
4291 return 0;
4292 }
4293
4294 /* Read the data. */
4295 SAFE_BYTE_GET_AND_INC (version, start, 2, end);
4296 if (version < 5)
4297 warn (_("corrupt .debug_sup section: version < 5"));
4298
4299 SAFE_BYTE_GET_AND_INC (is_supplementary, start, 1, end);
4300 if (is_supplementary != 0 && is_supplementary != 1)
4301 warn (_("corrupt .debug_sup section: is_supplementary not 0 or 1\n"));
4302
4303 sup_filename = start;
4304 if (is_supplementary && sup_filename[0] != 0)
4305 warn (_("corrupt .debug_sup section: filename not empty in supplementary section\n"));
4306
4307 sup_filename_len = strnlen ((const char *) start, end - start);
4308 if (sup_filename_len == (size_t) (end - start))
4309 {
4310 error (_("corrupt .debug_sup section: filename is not NUL terminated\n"));
4311 return 0;
4312 }
4313 start += sup_filename_len + 1;
4314
4315 checksum_len = read_leb128 (start, end, false /* unsigned */, & num_read, & status);
4316 if (status)
4317 {
4318 error (_("corrupt .debug_sup section: bad LEB128 field for checksum length\n"));
4319 checksum_len = 0;
4320 }
4321 start += num_read;
4322 if (checksum_len > (dwarf_vma) (end - start))
4323 {
4324 error (_("corrupt .debug_sup section: checksum length is longer than the remaining section length\n"));
4325 checksum_len = end - start;
4326 }
4327 else if (checksum_len < (dwarf_vma) (end - start))
4328 {
4329 warn (_("corrupt .debug_sup section: there are 0x%lx extra, unused bytes at the end of the section\n"),
4330 (long) ((end - start) - checksum_len));
4331 }
4332
4333 printf (_(" Version: %u\n"), version);
4334 printf (_(" Is Supp: %u\n"), is_supplementary);
4335 printf (_(" Filename: %s\n"), sup_filename);
4336 printf (_(" Checksum Len: %lu\n"), (long) checksum_len);
4337 if (checksum_len > 0)
4338 {
4339 printf (_(" Checksum: "));
4340 while (checksum_len--)
4341 printf ("0x%x ", * start++ );
4342 printf ("\n");
4343 }
4344 return 1;
4345 }
4346
4347 static int
4348 display_debug_lines_raw (struct dwarf_section * section,
4349 unsigned char * data,
4350 unsigned char * end,
4351 void * file)
4352 {
4353 unsigned char *start = section->start;
4354 int verbose_view = 0;
4355
4356 introduce (section, true);
4357
4358 while (data < end)
4359 {
4360 static DWARF2_Internal_LineInfo saved_linfo;
4361 DWARF2_Internal_LineInfo linfo;
4362 unsigned char *standard_opcodes;
4363 unsigned char *end_of_sequence;
4364 int i;
4365
4366 if (startswith (section->name, ".debug_line.")
4367 /* Note: the following does not apply to .debug_line.dwo sections.
4368 These are full debug_line sections. */
4369 && strcmp (section->name, ".debug_line.dwo") != 0)
4370 {
4371 /* Sections named .debug_line.<foo> are fragments of a .debug_line
4372 section containing just the Line Number Statements. They are
4373 created by the assembler and intended to be used alongside gcc's
4374 -ffunction-sections command line option. When the linker's
4375 garbage collection decides to discard a .text.<foo> section it
4376 can then also discard the line number information in .debug_line.<foo>.
4377
4378 Since the section is a fragment it does not have the details
4379 needed to fill out a LineInfo structure, so instead we use the
4380 details from the last full debug_line section that we processed. */
4381 end_of_sequence = end;
4382 standard_opcodes = NULL;
4383 linfo = saved_linfo;
4384 /* PR 17531: file: 0522b371. */
4385 if (linfo.li_line_range == 0)
4386 {
4387 warn (_("Partial .debug_line. section encountered without a prior full .debug_line section\n"));
4388 return 0;
4389 }
4390 reset_state_machine (linfo.li_default_is_stmt);
4391 }
4392 else
4393 {
4394 unsigned char * hdrptr;
4395
4396 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
4397 & end_of_sequence)) == NULL)
4398 return 0;
4399
4400 printf (_(" Offset: 0x%lx\n"), (long)(data - start));
4401 printf (_(" Length: %ld\n"), (long) linfo.li_length);
4402 printf (_(" DWARF Version: %d\n"), linfo.li_version);
4403 if (linfo.li_version >= 5)
4404 {
4405 printf (_(" Address size (bytes): %d\n"), linfo.li_address_size);
4406 printf (_(" Segment selector (bytes): %d\n"), linfo.li_segment_size);
4407 }
4408 printf (_(" Prologue Length: %d\n"), (int) linfo.li_prologue_length);
4409 printf (_(" Minimum Instruction Length: %d\n"), linfo.li_min_insn_length);
4410 if (linfo.li_version >= 4)
4411 printf (_(" Maximum Ops per Instruction: %d\n"), linfo.li_max_ops_per_insn);
4412 printf (_(" Initial value of 'is_stmt': %d\n"), linfo.li_default_is_stmt);
4413 printf (_(" Line Base: %d\n"), linfo.li_line_base);
4414 printf (_(" Line Range: %d\n"), linfo.li_line_range);
4415 printf (_(" Opcode Base: %d\n"), linfo.li_opcode_base);
4416
4417 /* PR 17512: file: 1665-6428-0.004. */
4418 if (linfo.li_line_range == 0)
4419 {
4420 warn (_("Line range of 0 is invalid, using 1 instead\n"));
4421 linfo.li_line_range = 1;
4422 }
4423
4424 reset_state_machine (linfo.li_default_is_stmt);
4425
4426 /* Display the contents of the Opcodes table. */
4427 standard_opcodes = hdrptr;
4428
4429 /* PR 17512: file: 002-417945-0.004. */
4430 if (standard_opcodes + linfo.li_opcode_base >= end)
4431 {
4432 warn (_("Line Base extends beyond end of section\n"));
4433 return 0;
4434 }
4435
4436 printf (_("\n Opcodes:\n"));
4437
4438 for (i = 1; i < linfo.li_opcode_base; i++)
4439 printf (ngettext (" Opcode %d has %d arg\n",
4440 " Opcode %d has %d args\n",
4441 standard_opcodes[i - 1]),
4442 i, standard_opcodes[i - 1]);
4443
4444 /* Display the contents of the Directory table. */
4445 data = standard_opcodes + linfo.li_opcode_base - 1;
4446
4447 if (linfo.li_version >= 5)
4448 {
4449 load_debug_section_with_follow (line_str, file);
4450
4451 data = display_formatted_table (data, start, end, &linfo, section,
4452 true);
4453 data = display_formatted_table (data, start, end, &linfo, section,
4454 false);
4455 }
4456 else
4457 {
4458 if (*data == 0)
4459 printf (_("\n The Directory Table is empty.\n"));
4460 else
4461 {
4462 unsigned int last_dir_entry = 0;
4463
4464 printf (_("\n The Directory Table (offset 0x%lx):\n"),
4465 (long)(data - start));
4466
4467 while (data < end && *data != 0)
4468 {
4469 printf (" %d\t%.*s\n", ++last_dir_entry, (int) (end - data), data);
4470
4471 data += strnlen ((char *) data, end - data);
4472 if (data < end)
4473 data++;
4474 }
4475
4476 /* PR 17512: file: 002-132094-0.004. */
4477 if (data >= end - 1)
4478 break;
4479 }
4480
4481 /* Skip the NUL at the end of the table. */
4482 if (data < end)
4483 data++;
4484
4485 /* Display the contents of the File Name table. */
4486 if (data >= end || *data == 0)
4487 printf (_("\n The File Name Table is empty.\n"));
4488 else
4489 {
4490 printf (_("\n The File Name Table (offset 0x%lx):\n"),
4491 (long)(data - start));
4492 printf (_(" Entry\tDir\tTime\tSize\tName\n"));
4493
4494 while (data < end && *data != 0)
4495 {
4496 unsigned char *name;
4497 dwarf_vma val;
4498
4499 printf (" %d\t", ++state_machine_regs.last_file_entry);
4500 name = data;
4501 data += strnlen ((char *) data, end - data);
4502 if (data < end)
4503 data++;
4504
4505 READ_ULEB (val, data, end);
4506 printf ("%s\t", dwarf_vmatoa ("u", val));
4507 READ_ULEB (val, data, end);
4508 printf ("%s\t", dwarf_vmatoa ("u", val));
4509 READ_ULEB (val, data, end);
4510 printf ("%s\t", dwarf_vmatoa ("u", val));
4511 printf ("%.*s\n", (int)(end - name), name);
4512
4513 if (data >= end)
4514 {
4515 warn (_("Corrupt file name table entry\n"));
4516 break;
4517 }
4518 }
4519 }
4520
4521 /* Skip the NUL at the end of the table. */
4522 if (data < end)
4523 data++;
4524 }
4525
4526 putchar ('\n');
4527 saved_linfo = linfo;
4528 }
4529
4530 /* Now display the statements. */
4531 if (data >= end_of_sequence)
4532 printf (_(" No Line Number Statements.\n"));
4533 else
4534 {
4535 printf (_(" Line Number Statements:\n"));
4536
4537 while (data < end_of_sequence)
4538 {
4539 unsigned char op_code;
4540 dwarf_signed_vma adv;
4541 dwarf_vma uladv;
4542
4543 printf (" [0x%08lx]", (long)(data - start));
4544
4545 op_code = *data++;
4546
4547 if (op_code >= linfo.li_opcode_base)
4548 {
4549 op_code -= linfo.li_opcode_base;
4550 uladv = (op_code / linfo.li_line_range);
4551 if (linfo.li_max_ops_per_insn == 1)
4552 {
4553 uladv *= linfo.li_min_insn_length;
4554 state_machine_regs.address += uladv;
4555 if (uladv)
4556 state_machine_regs.view = 0;
4557 printf (_(" Special opcode %d: "
4558 "advance Address by %s to 0x%s%s"),
4559 op_code, dwarf_vmatoa ("u", uladv),
4560 dwarf_vmatoa ("x", state_machine_regs.address),
4561 verbose_view && uladv
4562 ? _(" (reset view)") : "");
4563 }
4564 else
4565 {
4566 unsigned addrdelta
4567 = ((state_machine_regs.op_index + uladv)
4568 / linfo.li_max_ops_per_insn)
4569 * linfo.li_min_insn_length;
4570
4571 state_machine_regs.address += addrdelta;
4572 state_machine_regs.op_index
4573 = (state_machine_regs.op_index + uladv)
4574 % linfo.li_max_ops_per_insn;
4575 if (addrdelta)
4576 state_machine_regs.view = 0;
4577 printf (_(" Special opcode %d: "
4578 "advance Address by %s to 0x%s[%d]%s"),
4579 op_code, dwarf_vmatoa ("u", uladv),
4580 dwarf_vmatoa ("x", state_machine_regs.address),
4581 state_machine_regs.op_index,
4582 verbose_view && addrdelta
4583 ? _(" (reset view)") : "");
4584 }
4585 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
4586 state_machine_regs.line += adv;
4587 printf (_(" and Line by %s to %d"),
4588 dwarf_vmatoa ("d", adv), state_machine_regs.line);
4589 if (verbose_view || state_machine_regs.view)
4590 printf (_(" (view %u)\n"), state_machine_regs.view);
4591 else
4592 putchar ('\n');
4593 state_machine_regs.view++;
4594 }
4595 else
4596 switch (op_code)
4597 {
4598 case DW_LNS_extended_op:
4599 data += process_extended_line_op (data,
4600 linfo.li_default_is_stmt,
4601 end);
4602 break;
4603
4604 case DW_LNS_copy:
4605 printf (_(" Copy"));
4606 if (verbose_view || state_machine_regs.view)
4607 printf (_(" (view %u)\n"), state_machine_regs.view);
4608 else
4609 putchar ('\n');
4610 state_machine_regs.view++;
4611 break;
4612
4613 case DW_LNS_advance_pc:
4614 READ_ULEB (uladv, data, end);
4615 if (linfo.li_max_ops_per_insn == 1)
4616 {
4617 uladv *= linfo.li_min_insn_length;
4618 state_machine_regs.address += uladv;
4619 if (uladv)
4620 state_machine_regs.view = 0;
4621 printf (_(" Advance PC by %s to 0x%s%s\n"),
4622 dwarf_vmatoa ("u", uladv),
4623 dwarf_vmatoa ("x", state_machine_regs.address),
4624 verbose_view && uladv
4625 ? _(" (reset view)") : "");
4626 }
4627 else
4628 {
4629 unsigned addrdelta
4630 = ((state_machine_regs.op_index + uladv)
4631 / linfo.li_max_ops_per_insn)
4632 * linfo.li_min_insn_length;
4633 state_machine_regs.address
4634 += addrdelta;
4635 state_machine_regs.op_index
4636 = (state_machine_regs.op_index + uladv)
4637 % linfo.li_max_ops_per_insn;
4638 if (addrdelta)
4639 state_machine_regs.view = 0;
4640 printf (_(" Advance PC by %s to 0x%s[%d]%s\n"),
4641 dwarf_vmatoa ("u", uladv),
4642 dwarf_vmatoa ("x", state_machine_regs.address),
4643 state_machine_regs.op_index,
4644 verbose_view && addrdelta
4645 ? _(" (reset view)") : "");
4646 }
4647 break;
4648
4649 case DW_LNS_advance_line:
4650 READ_SLEB (adv, data, end);
4651 state_machine_regs.line += adv;
4652 printf (_(" Advance Line by %s to %d\n"),
4653 dwarf_vmatoa ("d", adv),
4654 state_machine_regs.line);
4655 break;
4656
4657 case DW_LNS_set_file:
4658 READ_ULEB (uladv, data, end);
4659 printf (_(" Set File Name to entry %s in the File Name Table\n"),
4660 dwarf_vmatoa ("u", uladv));
4661 state_machine_regs.file = uladv;
4662 break;
4663
4664 case DW_LNS_set_column:
4665 READ_ULEB (uladv, data, end);
4666 printf (_(" Set column to %s\n"),
4667 dwarf_vmatoa ("u", uladv));
4668 state_machine_regs.column = uladv;
4669 break;
4670
4671 case DW_LNS_negate_stmt:
4672 adv = state_machine_regs.is_stmt;
4673 adv = ! adv;
4674 printf (_(" Set is_stmt to %s\n"), dwarf_vmatoa ("d", adv));
4675 state_machine_regs.is_stmt = adv;
4676 break;
4677
4678 case DW_LNS_set_basic_block:
4679 printf (_(" Set basic block\n"));
4680 state_machine_regs.basic_block = 1;
4681 break;
4682
4683 case DW_LNS_const_add_pc:
4684 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
4685 if (linfo.li_max_ops_per_insn)
4686 {
4687 uladv *= linfo.li_min_insn_length;
4688 state_machine_regs.address += uladv;
4689 if (uladv)
4690 state_machine_regs.view = 0;
4691 printf (_(" Advance PC by constant %s to 0x%s%s\n"),
4692 dwarf_vmatoa ("u", uladv),
4693 dwarf_vmatoa ("x", state_machine_regs.address),
4694 verbose_view && uladv
4695 ? _(" (reset view)") : "");
4696 }
4697 else
4698 {
4699 unsigned addrdelta
4700 = ((state_machine_regs.op_index + uladv)
4701 / linfo.li_max_ops_per_insn)
4702 * linfo.li_min_insn_length;
4703 state_machine_regs.address
4704 += addrdelta;
4705 state_machine_regs.op_index
4706 = (state_machine_regs.op_index + uladv)
4707 % linfo.li_max_ops_per_insn;
4708 if (addrdelta)
4709 state_machine_regs.view = 0;
4710 printf (_(" Advance PC by constant %s to 0x%s[%d]%s\n"),
4711 dwarf_vmatoa ("u", uladv),
4712 dwarf_vmatoa ("x", state_machine_regs.address),
4713 state_machine_regs.op_index,
4714 verbose_view && addrdelta
4715 ? _(" (reset view)") : "");
4716 }
4717 break;
4718
4719 case DW_LNS_fixed_advance_pc:
4720 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
4721 state_machine_regs.address += uladv;
4722 state_machine_regs.op_index = 0;
4723 printf (_(" Advance PC by fixed size amount %s to 0x%s\n"),
4724 dwarf_vmatoa ("u", uladv),
4725 dwarf_vmatoa ("x", state_machine_regs.address));
4726 /* Do NOT reset view. */
4727 break;
4728
4729 case DW_LNS_set_prologue_end:
4730 printf (_(" Set prologue_end to true\n"));
4731 break;
4732
4733 case DW_LNS_set_epilogue_begin:
4734 printf (_(" Set epilogue_begin to true\n"));
4735 break;
4736
4737 case DW_LNS_set_isa:
4738 READ_ULEB (uladv, data, end);
4739 printf (_(" Set ISA to %s\n"), dwarf_vmatoa ("u", uladv));
4740 break;
4741
4742 default:
4743 printf (_(" Unknown opcode %d with operands: "), op_code);
4744
4745 if (standard_opcodes != NULL)
4746 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
4747 {
4748 READ_ULEB (uladv, data, end);
4749 printf ("0x%s%s", dwarf_vmatoa ("x", uladv),
4750 i == 1 ? "" : ", ");
4751 }
4752 putchar ('\n');
4753 break;
4754 }
4755 }
4756 putchar ('\n');
4757 }
4758 }
4759
4760 return 1;
4761 }
4762
4763 typedef struct
4764 {
4765 unsigned char *name;
4766 unsigned int directory_index;
4767 unsigned int modification_date;
4768 unsigned int length;
4769 } File_Entry;
4770
4771 /* Output a decoded representation of the .debug_line section. */
4772
4773 static int
4774 display_debug_lines_decoded (struct dwarf_section * section,
4775 unsigned char * start,
4776 unsigned char * data,
4777 unsigned char * end,
4778 void * fileptr)
4779 {
4780 static DWARF2_Internal_LineInfo saved_linfo;
4781
4782 introduce (section, false);
4783
4784 while (data < end)
4785 {
4786 /* This loop amounts to one iteration per compilation unit. */
4787 DWARF2_Internal_LineInfo linfo;
4788 unsigned char *standard_opcodes;
4789 unsigned char *end_of_sequence;
4790 int i;
4791 File_Entry *file_table = NULL;
4792 unsigned int n_files = 0;
4793 unsigned char **directory_table = NULL;
4794 dwarf_vma n_directories = 0;
4795
4796 if (startswith (section->name, ".debug_line.")
4797 /* Note: the following does not apply to .debug_line.dwo sections.
4798 These are full debug_line sections. */
4799 && strcmp (section->name, ".debug_line.dwo") != 0)
4800 {
4801 /* See comment in display_debug_lines_raw(). */
4802 end_of_sequence = end;
4803 standard_opcodes = NULL;
4804 linfo = saved_linfo;
4805 /* PR 17531: file: 0522b371. */
4806 if (linfo.li_line_range == 0)
4807 {
4808 warn (_("Partial .debug_line. section encountered without a prior full .debug_line section\n"));
4809 return 0;
4810 }
4811 reset_state_machine (linfo.li_default_is_stmt);
4812 }
4813 else
4814 {
4815 unsigned char *hdrptr;
4816
4817 if ((hdrptr = read_debug_line_header (section, data, end, & linfo,
4818 & end_of_sequence)) == NULL)
4819 return 0;
4820
4821 /* PR 17531: file: 0522b371. */
4822 if (linfo.li_line_range == 0)
4823 {
4824 warn (_("Line range of 0 is invalid, using 1 instead\n"));
4825 linfo.li_line_range = 1;
4826 }
4827 reset_state_machine (linfo.li_default_is_stmt);
4828
4829 /* Save a pointer to the contents of the Opcodes table. */
4830 standard_opcodes = hdrptr;
4831
4832 /* Traverse the Directory table just to count entries. */
4833 data = standard_opcodes + linfo.li_opcode_base - 1;
4834 /* PR 20440 */
4835 if (data >= end)
4836 {
4837 warn (_("opcode base of %d extends beyond end of section\n"),
4838 linfo.li_opcode_base);
4839 return 0;
4840 }
4841
4842 if (linfo.li_version >= 5)
4843 {
4844 unsigned char *format_start, format_count, *format;
4845 dwarf_vma formati, entryi;
4846
4847 load_debug_section_with_follow (line_str, fileptr);
4848
4849 /* Skip directories format. */
4850 SAFE_BYTE_GET_AND_INC (format_count, data, 1, end);
4851 if (do_checks && format_count > 1)
4852 warn (_("Unexpectedly large number of columns in the directory name table (%u)\n"),
4853 format_count);
4854 format_start = data;
4855 for (formati = 0; formati < format_count; formati++)
4856 {
4857 SKIP_ULEB (data, end);
4858 SKIP_ULEB (data, end);
4859 }
4860
4861 READ_ULEB (n_directories, data, end);
4862 if (data >= end)
4863 {
4864 warn (_("Corrupt directories list\n"));
4865 break;
4866 }
4867
4868 if (n_directories == 0)
4869 directory_table = NULL;
4870 else
4871 directory_table = (unsigned char **)
4872 xmalloc (n_directories * sizeof (unsigned char *));
4873
4874 for (entryi = 0; entryi < n_directories; entryi++)
4875 {
4876 unsigned char **pathp = &directory_table[entryi];
4877
4878 format = format_start;
4879 for (formati = 0; formati < format_count; formati++)
4880 {
4881 dwarf_vma content_type, form;
4882 dwarf_vma uvalue;
4883
4884 READ_ULEB (content_type, format, end);
4885 READ_ULEB (form, format, end);
4886 if (data >= end)
4887 {
4888 warn (_("Corrupt directories list\n"));
4889 break;
4890 }
4891 switch (content_type)
4892 {
4893 case DW_LNCT_path:
4894 switch (form)
4895 {
4896 case DW_FORM_string:
4897 *pathp = data;
4898 break;
4899 case DW_FORM_line_strp:
4900 SAFE_BYTE_GET (uvalue, data, linfo.li_offset_size,
4901 end);
4902 /* Remove const by the cast. */
4903 *pathp = (unsigned char *)
4904 fetch_indirect_line_string (uvalue);
4905 break;
4906 }
4907 break;
4908 }
4909 data = read_and_display_attr_value (0, form, 0, start,
4910 data, end, 0, 0,
4911 linfo.li_offset_size,
4912 linfo.li_version,
4913 NULL, 1, section,
4914 NULL, '\t', -1);
4915 }
4916 if (data >= end)
4917 {
4918 warn (_("Corrupt directories list\n"));
4919 break;
4920 }
4921 }
4922
4923 /* Skip files format. */
4924 SAFE_BYTE_GET_AND_INC (format_count, data, 1, end);
4925 if (do_checks && format_count > 5)
4926 warn (_("Unexpectedly large number of columns in the file name table (%u)\n"),
4927 format_count);
4928 format_start = data;
4929 for (formati = 0; formati < format_count; formati++)
4930 {
4931 SKIP_ULEB (data, end);
4932 SKIP_ULEB (data, end);
4933 }
4934
4935 READ_ULEB (n_files, data, end);
4936 if (data >= end && n_files > 0)
4937 {
4938 warn (_("Corrupt file name list\n"));
4939 break;
4940 }
4941
4942 if (n_files == 0)
4943 file_table = NULL;
4944 else
4945 file_table = (File_Entry *) xcalloc (1, n_files
4946 * sizeof (File_Entry));
4947
4948 for (entryi = 0; entryi < n_files; entryi++)
4949 {
4950 File_Entry *file = &file_table[entryi];
4951
4952 format = format_start;
4953 for (formati = 0; formati < format_count; formati++)
4954 {
4955 dwarf_vma content_type, form;
4956 dwarf_vma uvalue;
4957 unsigned char *tmp;
4958
4959 READ_ULEB (content_type, format, end);
4960 READ_ULEB (form, format, end);
4961 if (data >= end)
4962 {
4963 warn (_("Corrupt file name list\n"));
4964 break;
4965 }
4966 switch (content_type)
4967 {
4968 case DW_LNCT_path:
4969 switch (form)
4970 {
4971 case DW_FORM_string:
4972 file->name = data;
4973 break;
4974 case DW_FORM_line_strp:
4975 SAFE_BYTE_GET (uvalue, data, linfo.li_offset_size,
4976 end);
4977 /* Remove const by the cast. */
4978 file->name = (unsigned char *)
4979 fetch_indirect_line_string (uvalue);
4980 break;
4981 }
4982 break;
4983 case DW_LNCT_directory_index:
4984 switch (form)
4985 {
4986 case DW_FORM_data1:
4987 SAFE_BYTE_GET (file->directory_index, data, 1,
4988 end);
4989 break;
4990 case DW_FORM_data2:
4991 SAFE_BYTE_GET (file->directory_index, data, 2,
4992 end);
4993 break;
4994 case DW_FORM_udata:
4995 tmp = data;
4996 READ_ULEB (file->directory_index, tmp, end);
4997 break;
4998 }
4999 break;
5000 }
5001 data = read_and_display_attr_value (0, form, 0, start,
5002 data, end, 0, 0,
5003 linfo.li_offset_size,
5004 linfo.li_version,
5005 NULL, 1, section,
5006 NULL, '\t', -1);
5007 }
5008 if (data >= end)
5009 {
5010 warn (_("Corrupt file name list\n"));
5011 break;
5012 }
5013 }
5014 }
5015 else
5016 {
5017 if (*data != 0)
5018 {
5019 unsigned char *ptr_directory_table = data;
5020
5021 while (data < end && *data != 0)
5022 {
5023 data += strnlen ((char *) data, end - data);
5024 if (data < end)
5025 data++;
5026 n_directories++;
5027 }
5028
5029 /* PR 20440 */
5030 if (data >= end)
5031 {
5032 warn (_("directory table ends unexpectedly\n"));
5033 n_directories = 0;
5034 break;
5035 }
5036
5037 /* Go through the directory table again to save the directories. */
5038 directory_table = (unsigned char **)
5039 xmalloc (n_directories * sizeof (unsigned char *));
5040
5041 i = 0;
5042 while (*ptr_directory_table != 0)
5043 {
5044 directory_table[i] = ptr_directory_table;
5045 ptr_directory_table
5046 += strlen ((char *) ptr_directory_table) + 1;
5047 i++;
5048 }
5049 }
5050 /* Skip the NUL at the end of the table. */
5051 data++;
5052
5053 /* Traverse the File Name table just to count the entries. */
5054 if (data < end && *data != 0)
5055 {
5056 unsigned char *ptr_file_name_table = data;
5057
5058 while (data < end && *data != 0)
5059 {
5060 /* Skip Name, directory index, last modification
5061 time and length of file. */
5062 data += strnlen ((char *) data, end - data);
5063 if (data < end)
5064 data++;
5065 SKIP_ULEB (data, end);
5066 SKIP_ULEB (data, end);
5067 SKIP_ULEB (data, end);
5068 n_files++;
5069 }
5070
5071 if (data >= end)
5072 {
5073 warn (_("file table ends unexpectedly\n"));
5074 n_files = 0;
5075 break;
5076 }
5077
5078 /* Go through the file table again to save the strings. */
5079 file_table = (File_Entry *) xmalloc (n_files * sizeof (File_Entry));
5080
5081 i = 0;
5082 while (*ptr_file_name_table != 0)
5083 {
5084 file_table[i].name = ptr_file_name_table;
5085 ptr_file_name_table
5086 += strlen ((char *) ptr_file_name_table) + 1;
5087
5088 /* We are not interested in directory, time or size. */
5089 READ_ULEB (file_table[i].directory_index,
5090 ptr_file_name_table, end);
5091 READ_ULEB (file_table[i].modification_date,
5092 ptr_file_name_table, end);
5093 READ_ULEB (file_table[i].length,
5094 ptr_file_name_table, end);
5095 i++;
5096 }
5097 i = 0;
5098 }
5099
5100 /* Skip the NUL at the end of the table. */
5101 data++;
5102 }
5103
5104 /* Print the Compilation Unit's name and a header. */
5105 if (file_table == NULL)
5106 printf (_("CU: No directory table\n"));
5107 else if (directory_table == NULL)
5108 printf (_("CU: %s:\n"), file_table[0].name);
5109 else
5110 {
5111 unsigned int ix = file_table[0].directory_index;
5112 const char *directory;
5113
5114 if (ix == 0)
5115 directory = ".";
5116 /* PR 20439 */
5117 else if (n_directories == 0)
5118 directory = _("<unknown>");
5119 else if (ix > n_directories)
5120 {
5121 warn (_("directory index %u > number of directories %s\n"),
5122 ix, dwarf_vmatoa ("u", n_directories));
5123 directory = _("<corrupt>");
5124 }
5125 else
5126 directory = (char *) directory_table[ix - 1];
5127
5128 if (do_wide || strlen (directory) < 76)
5129 printf (_("CU: %s/%s:\n"), directory, file_table[0].name);
5130 else
5131 printf ("%s:\n", file_table[0].name);
5132 }
5133
5134 if (n_files > 0)
5135 printf (_("File name Line number Starting address View Stmt\n"));
5136 else
5137 printf (_("CU: Empty file name table\n"));
5138 saved_linfo = linfo;
5139 }
5140
5141 /* This loop iterates through the Dwarf Line Number Program. */
5142 while (data < end_of_sequence)
5143 {
5144 unsigned char op_code;
5145 int xop;
5146 int adv;
5147 unsigned long int uladv;
5148 int is_special_opcode = 0;
5149
5150 op_code = *data++;
5151 xop = op_code;
5152
5153 if (op_code >= linfo.li_opcode_base)
5154 {
5155 op_code -= linfo.li_opcode_base;
5156 uladv = (op_code / linfo.li_line_range);
5157 if (linfo.li_max_ops_per_insn == 1)
5158 {
5159 uladv *= linfo.li_min_insn_length;
5160 state_machine_regs.address += uladv;
5161 if (uladv)
5162 state_machine_regs.view = 0;
5163 }
5164 else
5165 {
5166 unsigned addrdelta
5167 = ((state_machine_regs.op_index + uladv)
5168 / linfo.li_max_ops_per_insn)
5169 * linfo.li_min_insn_length;
5170 state_machine_regs.address
5171 += addrdelta;
5172 state_machine_regs.op_index
5173 = (state_machine_regs.op_index + uladv)
5174 % linfo.li_max_ops_per_insn;
5175 if (addrdelta)
5176 state_machine_regs.view = 0;
5177 }
5178
5179 adv = (op_code % linfo.li_line_range) + linfo.li_line_base;
5180 state_machine_regs.line += adv;
5181 is_special_opcode = 1;
5182 /* Increment view after printing this row. */
5183 }
5184 else
5185 switch (op_code)
5186 {
5187 case DW_LNS_extended_op:
5188 {
5189 unsigned int ext_op_code_len;
5190 unsigned char ext_op_code;
5191 unsigned char *op_code_end;
5192 unsigned char *op_code_data = data;
5193
5194 READ_ULEB (ext_op_code_len, op_code_data, end_of_sequence);
5195 op_code_end = op_code_data + ext_op_code_len;
5196 if (ext_op_code_len == 0 || op_code_end > end_of_sequence)
5197 {
5198 warn (_("Badly formed extended line op encountered!\n"));
5199 break;
5200 }
5201 ext_op_code = *op_code_data++;
5202 xop = ext_op_code;
5203 xop = -xop;
5204
5205 switch (ext_op_code)
5206 {
5207 case DW_LNE_end_sequence:
5208 /* Reset stuff after printing this row. */
5209 break;
5210 case DW_LNE_set_address:
5211 SAFE_BYTE_GET_AND_INC (state_machine_regs.address,
5212 op_code_data,
5213 op_code_end - op_code_data,
5214 op_code_end);
5215 state_machine_regs.op_index = 0;
5216 state_machine_regs.view = 0;
5217 break;
5218 case DW_LNE_define_file:
5219 file_table = (File_Entry *) xrealloc
5220 (file_table, (n_files + 1) * sizeof (File_Entry));
5221
5222 ++state_machine_regs.last_file_entry;
5223 /* Source file name. */
5224 file_table[n_files].name = op_code_data;
5225 op_code_data += strlen ((char *) op_code_data) + 1;
5226 /* Directory index. */
5227 READ_ULEB (file_table[n_files].directory_index,
5228 op_code_data, op_code_end);
5229 /* Last modification time. */
5230 READ_ULEB (file_table[n_files].modification_date,
5231 op_code_data, op_code_end);
5232 /* File length. */
5233 READ_ULEB (file_table[n_files].length,
5234 op_code_data, op_code_end);
5235 n_files++;
5236 break;
5237
5238 case DW_LNE_set_discriminator:
5239 case DW_LNE_HP_set_sequence:
5240 /* Simply ignored. */
5241 break;
5242
5243 default:
5244 printf (_("UNKNOWN (%u): length %ld\n"),
5245 ext_op_code, (long int) (op_code_data - data));
5246 break;
5247 }
5248 data = op_code_end;
5249 break;
5250 }
5251 case DW_LNS_copy:
5252 /* Increment view after printing this row. */
5253 break;
5254
5255 case DW_LNS_advance_pc:
5256 READ_ULEB (uladv, data, end);
5257 if (linfo.li_max_ops_per_insn == 1)
5258 {
5259 uladv *= linfo.li_min_insn_length;
5260 state_machine_regs.address += uladv;
5261 if (uladv)
5262 state_machine_regs.view = 0;
5263 }
5264 else
5265 {
5266 unsigned addrdelta
5267 = ((state_machine_regs.op_index + uladv)
5268 / linfo.li_max_ops_per_insn)
5269 * linfo.li_min_insn_length;
5270 state_machine_regs.address
5271 += addrdelta;
5272 state_machine_regs.op_index
5273 = (state_machine_regs.op_index + uladv)
5274 % linfo.li_max_ops_per_insn;
5275 if (addrdelta)
5276 state_machine_regs.view = 0;
5277 }
5278 break;
5279
5280 case DW_LNS_advance_line:
5281 READ_SLEB (adv, data, end);
5282 state_machine_regs.line += adv;
5283 break;
5284
5285 case DW_LNS_set_file:
5286 READ_ULEB (uladv, data, end);
5287 state_machine_regs.file = uladv;
5288
5289 {
5290 unsigned file = state_machine_regs.file - 1;
5291 unsigned dir;
5292
5293 if (file_table == NULL || n_files == 0)
5294 printf (_("\n [Use file table entry %d]\n"), file);
5295 /* PR 20439 */
5296 else if (file >= n_files)
5297 {
5298 warn (_("file index %u > number of files %u\n"), file + 1, n_files);
5299 printf (_("\n <over large file table index %u>"), file);
5300 }
5301 else if ((dir = file_table[file].directory_index) == 0)
5302 /* If directory index is 0, that means current directory. */
5303 printf ("\n./%s:[++]\n", file_table[file].name);
5304 else if (directory_table == NULL || n_directories == 0)
5305 printf (_("\n [Use file %s in directory table entry %d]\n"),
5306 file_table[file].name, dir);
5307 /* PR 20439 */
5308 else if (dir > n_directories)
5309 {
5310 warn (_("directory index %u > number of directories %s\n"),
5311 dir, dwarf_vmatoa ("u", n_directories));
5312 printf (_("\n <over large directory table entry %u>\n"), dir);
5313 }
5314 else
5315 printf ("\n%s/%s:\n",
5316 /* The directory index starts counting at 1. */
5317 directory_table[dir - 1], file_table[file].name);
5318 }
5319 break;
5320
5321 case DW_LNS_set_column:
5322 READ_ULEB (uladv, data, end);
5323 state_machine_regs.column = uladv;
5324 break;
5325
5326 case DW_LNS_negate_stmt:
5327 adv = state_machine_regs.is_stmt;
5328 adv = ! adv;
5329 state_machine_regs.is_stmt = adv;
5330 break;
5331
5332 case DW_LNS_set_basic_block:
5333 state_machine_regs.basic_block = 1;
5334 break;
5335
5336 case DW_LNS_const_add_pc:
5337 uladv = ((255 - linfo.li_opcode_base) / linfo.li_line_range);
5338 if (linfo.li_max_ops_per_insn == 1)
5339 {
5340 uladv *= linfo.li_min_insn_length;
5341 state_machine_regs.address += uladv;
5342 if (uladv)
5343 state_machine_regs.view = 0;
5344 }
5345 else
5346 {
5347 unsigned addrdelta
5348 = ((state_machine_regs.op_index + uladv)
5349 / linfo.li_max_ops_per_insn)
5350 * linfo.li_min_insn_length;
5351 state_machine_regs.address
5352 += addrdelta;
5353 state_machine_regs.op_index
5354 = (state_machine_regs.op_index + uladv)
5355 % linfo.li_max_ops_per_insn;
5356 if (addrdelta)
5357 state_machine_regs.view = 0;
5358 }
5359 break;
5360
5361 case DW_LNS_fixed_advance_pc:
5362 SAFE_BYTE_GET_AND_INC (uladv, data, 2, end);
5363 state_machine_regs.address += uladv;
5364 state_machine_regs.op_index = 0;
5365 /* Do NOT reset view. */
5366 break;
5367
5368 case DW_LNS_set_prologue_end:
5369 break;
5370
5371 case DW_LNS_set_epilogue_begin:
5372 break;
5373
5374 case DW_LNS_set_isa:
5375 READ_ULEB (uladv, data, end);
5376 printf (_(" Set ISA to %lu\n"), uladv);
5377 break;
5378
5379 default:
5380 printf (_(" Unknown opcode %d with operands: "), op_code);
5381
5382 if (standard_opcodes != NULL)
5383 for (i = standard_opcodes[op_code - 1]; i > 0 ; --i)
5384 {
5385 dwarf_vma val;
5386
5387 READ_ULEB (val, data, end);
5388 printf ("0x%s%s", dwarf_vmatoa ("x", val),
5389 i == 1 ? "" : ", ");
5390 }
5391 putchar ('\n');
5392 break;
5393 }
5394
5395 /* Only Special opcodes, DW_LNS_copy and DW_LNE_end_sequence adds a row
5396 to the DWARF address/line matrix. */
5397 if ((is_special_opcode) || (xop == -DW_LNE_end_sequence)
5398 || (xop == DW_LNS_copy))
5399 {
5400 const unsigned int MAX_FILENAME_LENGTH = 35;
5401 char *fileName;
5402 char *newFileName = NULL;
5403 size_t fileNameLength;
5404
5405 if (file_table)
5406 {
5407 unsigned indx = state_machine_regs.file - 1;
5408 /* PR 20439 */
5409 if (indx >= n_files)
5410 {
5411 warn (_("corrupt file index %u encountered\n"), indx);
5412 fileName = _("<corrupt>");
5413 }
5414 else
5415 fileName = (char *) file_table[indx].name;
5416 }
5417 else
5418 fileName = _("<unknown>");
5419
5420 fileNameLength = strlen (fileName);
5421
5422 if ((fileNameLength > MAX_FILENAME_LENGTH) && (!do_wide))
5423 {
5424 newFileName = (char *) xmalloc (MAX_FILENAME_LENGTH + 1);
5425 /* Truncate file name */
5426 strncpy (newFileName,
5427 fileName + fileNameLength - MAX_FILENAME_LENGTH,
5428 MAX_FILENAME_LENGTH + 1);
5429 /* FIXME: This is to pacify gcc-10 which can warn that the
5430 strncpy above might leave a non-NUL terminated string
5431 in newFileName. It won't, but gcc's analysis doesn't
5432 quite go far enough to discover this. */
5433 newFileName[MAX_FILENAME_LENGTH] = 0;
5434 }
5435 else
5436 {
5437 newFileName = (char *) xmalloc (fileNameLength + 1);
5438 strncpy (newFileName, fileName, fileNameLength + 1);
5439 }
5440
5441 /* A row with end_seq set to true has a meaningful address, but
5442 the other information in the same row is not significant.
5443 In such a row, print line as "-", and don't print
5444 view/is_stmt. */
5445 if (!do_wide || (fileNameLength <= MAX_FILENAME_LENGTH))
5446 {
5447 if (linfo.li_max_ops_per_insn == 1)
5448 {
5449 if (xop == -DW_LNE_end_sequence)
5450 printf ("%-35s %11s %#18" DWARF_VMA_FMT "x",
5451 newFileName, "-",
5452 state_machine_regs.address);
5453 else
5454 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x",
5455 newFileName, state_machine_regs.line,
5456 state_machine_regs.address);
5457 }
5458 else
5459 {
5460 if (xop == -DW_LNE_end_sequence)
5461 printf ("%-35s %11s %#18" DWARF_VMA_FMT "x[%d]",
5462 newFileName, "-",
5463 state_machine_regs.address,
5464 state_machine_regs.op_index);
5465 else
5466 printf ("%-35s %11d %#18" DWARF_VMA_FMT "x[%d]",
5467 newFileName, state_machine_regs.line,
5468 state_machine_regs.address,
5469 state_machine_regs.op_index);
5470 }
5471 }
5472 else
5473 {
5474 if (linfo.li_max_ops_per_insn == 1)
5475 {
5476 if (xop == -DW_LNE_end_sequence)
5477 printf ("%s %11s %#18" DWARF_VMA_FMT "x",
5478 newFileName, "-",
5479 state_machine_regs.address);
5480 else
5481 printf ("%s %11d %#18" DWARF_VMA_FMT "x",
5482 newFileName, state_machine_regs.line,
5483 state_machine_regs.address);
5484 }
5485 else
5486 {
5487 if (xop == -DW_LNE_end_sequence)
5488 printf ("%s %11s %#18" DWARF_VMA_FMT "x[%d]",
5489 newFileName, "-",
5490 state_machine_regs.address,
5491 state_machine_regs.op_index);
5492 else
5493 printf ("%s %11d %#18" DWARF_VMA_FMT "x[%d]",
5494 newFileName, state_machine_regs.line,
5495 state_machine_regs.address,
5496 state_machine_regs.op_index);
5497 }
5498 }
5499
5500 if (xop != -DW_LNE_end_sequence)
5501 {
5502 if (state_machine_regs.view)
5503 printf (" %6u", state_machine_regs.view);
5504 else
5505 printf (" ");
5506
5507 if (state_machine_regs.is_stmt)
5508 printf (" x");
5509 }
5510
5511 putchar ('\n');
5512 state_machine_regs.view++;
5513
5514 if (xop == -DW_LNE_end_sequence)
5515 {
5516 reset_state_machine (linfo.li_default_is_stmt);
5517 putchar ('\n');
5518 }
5519
5520 free (newFileName);
5521 }
5522 }
5523
5524 if (file_table)
5525 {
5526 free (file_table);
5527 file_table = NULL;
5528 n_files = 0;
5529 }
5530
5531 if (directory_table)
5532 {
5533 free (directory_table);
5534 directory_table = NULL;
5535 n_directories = 0;
5536 }
5537
5538 putchar ('\n');
5539 }
5540
5541 return 1;
5542 }
5543
5544 static int
5545 display_debug_lines (struct dwarf_section *section, void *file)
5546 {
5547 unsigned char *data = section->start;
5548 unsigned char *end = data + section->size;
5549 int retValRaw = 1;
5550 int retValDecoded = 1;
5551
5552 if (do_debug_lines == 0)
5553 do_debug_lines |= FLAG_DEBUG_LINES_RAW;
5554
5555 if (do_debug_lines & FLAG_DEBUG_LINES_RAW)
5556 retValRaw = display_debug_lines_raw (section, data, end, file);
5557
5558 if (do_debug_lines & FLAG_DEBUG_LINES_DECODED)
5559 retValDecoded = display_debug_lines_decoded (section, data, data, end, file);
5560
5561 if (!retValRaw || !retValDecoded)
5562 return 0;
5563
5564 return 1;
5565 }
5566
5567 static debug_info *
5568 find_debug_info_for_offset (unsigned long offset)
5569 {
5570 unsigned int i;
5571
5572 if (num_debug_info_entries == DEBUG_INFO_UNAVAILABLE)
5573 return NULL;
5574
5575 for (i = 0; i < num_debug_info_entries; i++)
5576 if (debug_information[i].cu_offset == offset)
5577 return debug_information + i;
5578
5579 return NULL;
5580 }
5581
5582 static const char *
5583 get_gdb_index_symbol_kind_name (gdb_index_symbol_kind kind)
5584 {
5585 /* See gdb/gdb-index.h. */
5586 static const char * const kinds[] =
5587 {
5588 N_ ("no info"),
5589 N_ ("type"),
5590 N_ ("variable"),
5591 N_ ("function"),
5592 N_ ("other"),
5593 N_ ("unused5"),
5594 N_ ("unused6"),
5595 N_ ("unused7")
5596 };
5597
5598 return _ (kinds[kind]);
5599 }
5600
5601 static int
5602 display_debug_pubnames_worker (struct dwarf_section *section,
5603 void *file ATTRIBUTE_UNUSED,
5604 int is_gnu)
5605 {
5606 DWARF2_Internal_PubNames names;
5607 unsigned char *start = section->start;
5608 unsigned char *end = start + section->size;
5609
5610 /* It does not matter if this load fails,
5611 we test for that later on. */
5612 load_debug_info (file);
5613
5614 introduce (section, false);
5615
5616 while (start < end)
5617 {
5618 unsigned char *data;
5619 unsigned long sec_off = start - section->start;
5620 unsigned int offset_size;
5621
5622 SAFE_BYTE_GET_AND_INC (names.pn_length, start, 4, end);
5623 if (names.pn_length == 0xffffffff)
5624 {
5625 SAFE_BYTE_GET_AND_INC (names.pn_length, start, 8, end);
5626 offset_size = 8;
5627 }
5628 else
5629 offset_size = 4;
5630
5631 if (names.pn_length > (size_t) (end - start))
5632 {
5633 warn (_("Debug info is corrupted, %s header at %#lx has length %s\n"),
5634 section->name,
5635 sec_off,
5636 dwarf_vmatoa ("x", names.pn_length));
5637 break;
5638 }
5639
5640 data = start;
5641 start += names.pn_length;
5642
5643 SAFE_BYTE_GET_AND_INC (names.pn_version, data, 2, start);
5644 SAFE_BYTE_GET_AND_INC (names.pn_offset, data, offset_size, start);
5645
5646 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
5647 && num_debug_info_entries > 0
5648 && find_debug_info_for_offset (names.pn_offset) == NULL)
5649 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
5650 (unsigned long) names.pn_offset, section->name);
5651
5652 SAFE_BYTE_GET_AND_INC (names.pn_size, data, offset_size, start);
5653
5654 printf (_(" Length: %ld\n"),
5655 (long) names.pn_length);
5656 printf (_(" Version: %d\n"),
5657 names.pn_version);
5658 printf (_(" Offset into .debug_info section: 0x%lx\n"),
5659 (unsigned long) names.pn_offset);
5660 printf (_(" Size of area in .debug_info section: %ld\n"),
5661 (long) names.pn_size);
5662
5663 if (names.pn_version != 2 && names.pn_version != 3)
5664 {
5665 static int warned = 0;
5666
5667 if (! warned)
5668 {
5669 warn (_("Only DWARF 2 and 3 pubnames are currently supported\n"));
5670 warned = 1;
5671 }
5672
5673 continue;
5674 }
5675
5676 if (is_gnu)
5677 printf (_("\n Offset Kind Name\n"));
5678 else
5679 printf (_("\n Offset\tName\n"));
5680
5681 while (1)
5682 {
5683 bfd_size_type maxprint;
5684 dwarf_vma offset;
5685
5686 SAFE_BYTE_GET_AND_INC (offset, data, offset_size, start);
5687
5688 if (offset == 0)
5689 break;
5690
5691 if (data >= start)
5692 break;
5693 maxprint = (start - data) - 1;
5694
5695 if (is_gnu)
5696 {
5697 unsigned int kind_data;
5698 gdb_index_symbol_kind kind;
5699 const char *kind_name;
5700 int is_static;
5701
5702 SAFE_BYTE_GET_AND_INC (kind_data, data, 1, start);
5703 maxprint --;
5704 /* GCC computes the kind as the upper byte in the CU index
5705 word, and then right shifts it by the CU index size.
5706 Left shift KIND to where the gdb-index.h accessor macros
5707 can use it. */
5708 kind_data <<= GDB_INDEX_CU_BITSIZE;
5709 kind = GDB_INDEX_SYMBOL_KIND_VALUE (kind_data);
5710 kind_name = get_gdb_index_symbol_kind_name (kind);
5711 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (kind_data);
5712 printf (" %-6lx %s,%-10s %.*s\n",
5713 (unsigned long) offset, is_static ? _("s") : _("g"),
5714 kind_name, (int) maxprint, data);
5715 }
5716 else
5717 printf (" %-6lx\t%.*s\n",
5718 (unsigned long) offset, (int) maxprint, data);
5719
5720 data += strnlen ((char *) data, maxprint);
5721 if (data < start)
5722 data++;
5723 if (data >= start)
5724 break;
5725 }
5726 }
5727
5728 printf ("\n");
5729 return 1;
5730 }
5731
5732 static int
5733 display_debug_pubnames (struct dwarf_section *section, void *file)
5734 {
5735 return display_debug_pubnames_worker (section, file, 0);
5736 }
5737
5738 static int
5739 display_debug_gnu_pubnames (struct dwarf_section *section, void *file)
5740 {
5741 return display_debug_pubnames_worker (section, file, 1);
5742 }
5743
5744 static int
5745 display_debug_macinfo (struct dwarf_section *section,
5746 void *file ATTRIBUTE_UNUSED)
5747 {
5748 unsigned char *start = section->start;
5749 unsigned char *end = start + section->size;
5750 unsigned char *curr = start;
5751 enum dwarf_macinfo_record_type op;
5752
5753 introduce (section, false);
5754
5755 while (curr < end)
5756 {
5757 unsigned int lineno;
5758 const unsigned char *string;
5759
5760 op = (enum dwarf_macinfo_record_type) *curr;
5761 curr++;
5762
5763 switch (op)
5764 {
5765 case DW_MACINFO_start_file:
5766 {
5767 unsigned int filenum;
5768
5769 READ_ULEB (lineno, curr, end);
5770 READ_ULEB (filenum, curr, end);
5771 printf (_(" DW_MACINFO_start_file - lineno: %d filenum: %d\n"),
5772 lineno, filenum);
5773 }
5774 break;
5775
5776 case DW_MACINFO_end_file:
5777 printf (_(" DW_MACINFO_end_file\n"));
5778 break;
5779
5780 case DW_MACINFO_define:
5781 READ_ULEB (lineno, curr, end);
5782 string = curr;
5783 curr += strnlen ((char *) string, end - string);
5784 printf (_(" DW_MACINFO_define - lineno : %d macro : %*s\n"),
5785 lineno, (int) (curr - string), string);
5786 if (curr < end)
5787 curr++;
5788 break;
5789
5790 case DW_MACINFO_undef:
5791 READ_ULEB (lineno, curr, end);
5792 string = curr;
5793 curr += strnlen ((char *) string, end - string);
5794 printf (_(" DW_MACINFO_undef - lineno : %d macro : %*s\n"),
5795 lineno, (int) (curr - string), string);
5796 if (curr < end)
5797 curr++;
5798 break;
5799
5800 case DW_MACINFO_vendor_ext:
5801 {
5802 unsigned int constant;
5803
5804 READ_ULEB (constant, curr, end);
5805 string = curr;
5806 curr += strnlen ((char *) string, end - string);
5807 printf (_(" DW_MACINFO_vendor_ext - constant : %d string : %*s\n"),
5808 constant, (int) (curr - string), string);
5809 if (curr < end)
5810 curr++;
5811 }
5812 break;
5813 }
5814 }
5815
5816 return 1;
5817 }
5818
5819 /* Given LINE_OFFSET into the .debug_line section, attempt to return
5820 filename and dirname corresponding to file name table entry with index
5821 FILEIDX. Return NULL on failure. */
5822
5823 static unsigned char *
5824 get_line_filename_and_dirname (dwarf_vma line_offset,
5825 dwarf_vma fileidx,
5826 unsigned char **dir_name)
5827 {
5828 struct dwarf_section *section = &debug_displays [line].section;
5829 unsigned char *hdrptr, *dirtable, *file_name;
5830 unsigned int offset_size;
5831 unsigned int version, opcode_base;
5832 dwarf_vma length, diridx;
5833 const unsigned char * end;
5834
5835 *dir_name = NULL;
5836 if (section->start == NULL
5837 || line_offset >= section->size
5838 || fileidx == 0)
5839 return NULL;
5840
5841 hdrptr = section->start + line_offset;
5842 end = section->start + section->size;
5843
5844 SAFE_BYTE_GET_AND_INC (length, hdrptr, 4, end);
5845 if (length == 0xffffffff)
5846 {
5847 /* This section is 64-bit DWARF 3. */
5848 SAFE_BYTE_GET_AND_INC (length, hdrptr, 8, end);
5849 offset_size = 8;
5850 }
5851 else
5852 offset_size = 4;
5853
5854 if (length > (size_t) (end - hdrptr)
5855 || length < 2 + offset_size + 1 + 3 + 1)
5856 return NULL;
5857 end = hdrptr + length;
5858
5859 SAFE_BYTE_GET_AND_INC (version, hdrptr, 2, end);
5860 if (version != 2 && version != 3 && version != 4)
5861 return NULL;
5862 hdrptr += offset_size + 1;/* Skip prologue_length and min_insn_length. */
5863 if (version >= 4)
5864 hdrptr++; /* Skip max_ops_per_insn. */
5865 hdrptr += 3; /* Skip default_is_stmt, line_base, line_range. */
5866
5867 SAFE_BYTE_GET_AND_INC (opcode_base, hdrptr, 1, end);
5868 if (opcode_base == 0
5869 || opcode_base - 1 >= (size_t) (end - hdrptr))
5870 return NULL;
5871
5872 hdrptr += opcode_base - 1;
5873
5874 dirtable = hdrptr;
5875 /* Skip over dirname table. */
5876 while (*hdrptr != '\0')
5877 {
5878 hdrptr += strnlen ((char *) hdrptr, end - hdrptr);
5879 if (hdrptr < end)
5880 hdrptr++;
5881 if (hdrptr >= end)
5882 return NULL;
5883 }
5884 hdrptr++; /* Skip the NUL at the end of the table. */
5885
5886 /* Now skip over preceding filename table entries. */
5887 for (; hdrptr < end && *hdrptr != '\0' && fileidx > 1; fileidx--)
5888 {
5889 hdrptr += strnlen ((char *) hdrptr, end - hdrptr);
5890 if (hdrptr < end)
5891 hdrptr++;
5892 SKIP_ULEB (hdrptr, end);
5893 SKIP_ULEB (hdrptr, end);
5894 SKIP_ULEB (hdrptr, end);
5895 }
5896 if (hdrptr >= end || *hdrptr == '\0')
5897 return NULL;
5898
5899 file_name = hdrptr;
5900 hdrptr += strnlen ((char *) hdrptr, end - hdrptr);
5901 if (hdrptr < end)
5902 hdrptr++;
5903 if (hdrptr >= end)
5904 return NULL;
5905 READ_ULEB (diridx, hdrptr, end);
5906 if (diridx == 0)
5907 return file_name;
5908 for (; dirtable < end && *dirtable != '\0' && diridx > 1; diridx--)
5909 {
5910 dirtable += strnlen ((char *) dirtable, end - dirtable);
5911 if (dirtable < end)
5912 dirtable++;
5913 }
5914 if (dirtable >= end || *dirtable == '\0')
5915 return NULL;
5916 *dir_name = dirtable;
5917 return file_name;
5918 }
5919
5920 static int
5921 display_debug_macro (struct dwarf_section *section,
5922 void *file)
5923 {
5924 unsigned char *start = section->start;
5925 unsigned char *end = start + section->size;
5926 unsigned char *curr = start;
5927 unsigned char *extended_op_buf[256];
5928 bool is_dwo = false;
5929 const char *suffix = strrchr (section->name, '.');
5930
5931 if (suffix && strcmp (suffix, ".dwo") == 0)
5932 is_dwo = true;
5933
5934 load_debug_section_with_follow (str, file);
5935 load_debug_section_with_follow (line, file);
5936 load_debug_section_with_follow (str_index, file);
5937
5938 introduce (section, false);
5939
5940 while (curr < end)
5941 {
5942 unsigned int lineno, version, flags;
5943 unsigned int offset_size;
5944 const unsigned char *string;
5945 dwarf_vma line_offset = 0, sec_offset = curr - start, offset;
5946 unsigned char **extended_ops = NULL;
5947
5948 SAFE_BYTE_GET_AND_INC (version, curr, 2, end);
5949 if (version != 4 && version != 5)
5950 {
5951 error (_("Expected to find a version number of 4 or 5 in section %s but found %d instead\n"),
5952 section->name, version);
5953 return 0;
5954 }
5955
5956 SAFE_BYTE_GET_AND_INC (flags, curr, 1, end);
5957 offset_size = (flags & 1) ? 8 : 4;
5958 printf (_(" Offset: 0x%lx\n"),
5959 (unsigned long) sec_offset);
5960 printf (_(" Version: %d\n"), version);
5961 printf (_(" Offset size: %d\n"), offset_size);
5962 if (flags & 2)
5963 {
5964 SAFE_BYTE_GET_AND_INC (line_offset, curr, offset_size, end);
5965 printf (_(" Offset into .debug_line: 0x%lx\n"),
5966 (unsigned long) line_offset);
5967 }
5968 if (flags & 4)
5969 {
5970 unsigned int i, count, op;
5971 dwarf_vma nargs, n;
5972
5973 SAFE_BYTE_GET_AND_INC (count, curr, 1, end);
5974
5975 memset (extended_op_buf, 0, sizeof (extended_op_buf));
5976 extended_ops = extended_op_buf;
5977 if (count)
5978 {
5979 printf (_(" Extension opcode arguments:\n"));
5980 for (i = 0; i < count; i++)
5981 {
5982 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
5983 extended_ops[op] = curr;
5984 READ_ULEB (nargs, curr, end);
5985 if (nargs == 0)
5986 printf (_(" DW_MACRO_%02x has no arguments\n"), op);
5987 else
5988 {
5989 printf (_(" DW_MACRO_%02x arguments: "), op);
5990 for (n = 0; n < nargs; n++)
5991 {
5992 unsigned int form;
5993
5994 SAFE_BYTE_GET_AND_INC (form, curr, 1, end);
5995 printf ("%s%s", get_FORM_name (form),
5996 n == nargs - 1 ? "\n" : ", ");
5997 switch (form)
5998 {
5999 case DW_FORM_data1:
6000 case DW_FORM_data2:
6001 case DW_FORM_data4:
6002 case DW_FORM_data8:
6003 case DW_FORM_sdata:
6004 case DW_FORM_udata:
6005 case DW_FORM_block:
6006 case DW_FORM_block1:
6007 case DW_FORM_block2:
6008 case DW_FORM_block4:
6009 case DW_FORM_flag:
6010 case DW_FORM_string:
6011 case DW_FORM_strp:
6012 case DW_FORM_sec_offset:
6013 break;
6014 default:
6015 error (_("Invalid extension opcode form %s\n"),
6016 get_FORM_name (form));
6017 return 0;
6018 }
6019 }
6020 }
6021 }
6022 }
6023 }
6024 printf ("\n");
6025
6026 while (1)
6027 {
6028 unsigned int op;
6029
6030 if (curr >= end)
6031 {
6032 error (_(".debug_macro section not zero terminated\n"));
6033 return 0;
6034 }
6035
6036 SAFE_BYTE_GET_AND_INC (op, curr, 1, end);
6037 if (op == 0)
6038 break;
6039
6040 switch (op)
6041 {
6042 case DW_MACRO_define:
6043 READ_ULEB (lineno, curr, end);
6044 string = curr;
6045 curr += strnlen ((char *) string, end - string);
6046 printf (_(" DW_MACRO_define - lineno : %d macro : %*s\n"),
6047 lineno, (int) (curr - string), string);
6048 if (curr < end)
6049 curr++;
6050 break;
6051
6052 case DW_MACRO_undef:
6053 READ_ULEB (lineno, curr, end);
6054 string = curr;
6055 curr += strnlen ((char *) string, end - string);
6056 printf (_(" DW_MACRO_undef - lineno : %d macro : %*s\n"),
6057 lineno, (int) (curr - string), string);
6058 if (curr < end)
6059 curr++;
6060 break;
6061
6062 case DW_MACRO_start_file:
6063 {
6064 unsigned int filenum;
6065 unsigned char *file_name = NULL, *dir_name = NULL;
6066
6067 READ_ULEB (lineno, curr, end);
6068 READ_ULEB (filenum, curr, end);
6069
6070 if ((flags & 2) == 0)
6071 error (_("DW_MACRO_start_file used, but no .debug_line offset provided.\n"));
6072 else
6073 file_name
6074 = get_line_filename_and_dirname (line_offset, filenum,
6075 &dir_name);
6076 if (file_name == NULL)
6077 printf (_(" DW_MACRO_start_file - lineno: %d filenum: %d\n"),
6078 lineno, filenum);
6079 else
6080 printf (_(" DW_MACRO_start_file - lineno: %d filenum: %d filename: %s%s%s\n"),
6081 lineno, filenum,
6082 dir_name != NULL ? (const char *) dir_name : "",
6083 dir_name != NULL ? "/" : "", file_name);
6084 }
6085 break;
6086
6087 case DW_MACRO_end_file:
6088 printf (_(" DW_MACRO_end_file\n"));
6089 break;
6090
6091 case DW_MACRO_define_strp:
6092 READ_ULEB (lineno, curr, end);
6093 if (version == 4 && is_dwo)
6094 READ_ULEB (offset, curr, end);
6095 else
6096 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6097 string = fetch_indirect_string (offset);
6098 printf (_(" DW_MACRO_define_strp - lineno : %d macro : %s\n"),
6099 lineno, string);
6100 break;
6101
6102 case DW_MACRO_undef_strp:
6103 READ_ULEB (lineno, curr, end);
6104 if (version == 4 && is_dwo)
6105 READ_ULEB (offset, curr, end);
6106 else
6107 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6108 string = fetch_indirect_string (offset);
6109 printf (_(" DW_MACRO_undef_strp - lineno : %d macro : %s\n"),
6110 lineno, string);
6111 break;
6112
6113 case DW_MACRO_import:
6114 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6115 printf (_(" DW_MACRO_import - offset : 0x%lx\n"),
6116 (unsigned long) offset);
6117 break;
6118
6119 case DW_MACRO_define_sup:
6120 READ_ULEB (lineno, curr, end);
6121 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6122 printf (_(" DW_MACRO_define_sup - lineno : %d macro offset : 0x%lx\n"),
6123 lineno, (unsigned long) offset);
6124 break;
6125
6126 case DW_MACRO_undef_sup:
6127 READ_ULEB (lineno, curr, end);
6128 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6129 printf (_(" DW_MACRO_undef_sup - lineno : %d macro offset : 0x%lx\n"),
6130 lineno, (unsigned long) offset);
6131 break;
6132
6133 case DW_MACRO_import_sup:
6134 SAFE_BYTE_GET_AND_INC (offset, curr, offset_size, end);
6135 printf (_(" DW_MACRO_import_sup - offset : 0x%lx\n"),
6136 (unsigned long) offset);
6137 break;
6138
6139 case DW_MACRO_define_strx:
6140 case DW_MACRO_undef_strx:
6141 READ_ULEB (lineno, curr, end);
6142 READ_ULEB (offset, curr, end);
6143 string = (const unsigned char *)
6144 fetch_indexed_string (offset, NULL, offset_size, false);
6145 if (op == DW_MACRO_define_strx)
6146 printf (" DW_MACRO_define_strx ");
6147 else
6148 printf (" DW_MACRO_undef_strx ");
6149 if (do_wide)
6150 printf (_("(with offset %s) "), dwarf_vmatoa ("x", offset));
6151 printf (_("lineno : %d macro : %s\n"),
6152 lineno, string);
6153 break;
6154
6155 default:
6156 if (op >= DW_MACRO_lo_user && op <= DW_MACRO_hi_user)
6157 {
6158 printf (_(" <Target Specific macro op: %#x - UNHANDLED"), op);
6159 break;
6160 }
6161
6162 if (extended_ops == NULL || extended_ops[op] == NULL)
6163 {
6164 error (_(" Unknown macro opcode %02x seen\n"), op);
6165 return 0;
6166 }
6167 else
6168 {
6169 /* Skip over unhandled opcodes. */
6170 dwarf_vma nargs, n;
6171 unsigned char *desc = extended_ops[op];
6172 READ_ULEB (nargs, desc, end);
6173 if (nargs == 0)
6174 {
6175 printf (_(" DW_MACRO_%02x\n"), op);
6176 break;
6177 }
6178 printf (_(" DW_MACRO_%02x -"), op);
6179 for (n = 0; n < nargs; n++)
6180 {
6181 int val;
6182
6183 /* DW_FORM_implicit_const is not expected here. */
6184 SAFE_BYTE_GET_AND_INC (val, desc, 1, end);
6185 curr
6186 = read_and_display_attr_value (0, val, 0,
6187 start, curr, end, 0, 0, offset_size,
6188 version, NULL, 0, NULL,
6189 NULL, ' ', -1);
6190 if (n != nargs - 1)
6191 printf (",");
6192 }
6193 printf ("\n");
6194 }
6195 break;
6196 }
6197 }
6198
6199 printf ("\n");
6200 }
6201
6202 return 1;
6203 }
6204
6205 static int
6206 display_debug_abbrev (struct dwarf_section *section,
6207 void *file ATTRIBUTE_UNUSED)
6208 {
6209 abbrev_entry *entry;
6210 unsigned char *start = section->start;
6211
6212 introduce (section, false);
6213
6214 do
6215 {
6216 abbrev_list * list;
6217 dwarf_vma offset;
6218
6219 offset = start - section->start;
6220 list = find_abbrev_list_by_abbrev_offset (0, offset);
6221 if (list == NULL)
6222 {
6223 list = new_abbrev_list (0, offset);
6224 start = process_abbrev_set (section, 0, section->size, offset, list);
6225 list->start_of_next_abbrevs = start;
6226 }
6227 else
6228 start = list->start_of_next_abbrevs;
6229
6230 if (list->first_abbrev == NULL)
6231 continue;
6232
6233 printf (_(" Number TAG (0x%lx)\n"), (long) offset);
6234
6235 for (entry = list->first_abbrev; entry; entry = entry->next)
6236 {
6237 abbrev_attr *attr;
6238
6239 printf (" %ld %s [%s]\n",
6240 entry->number,
6241 get_TAG_name (entry->tag),
6242 entry->children ? _("has children") : _("no children"));
6243
6244 for (attr = entry->first_attr; attr; attr = attr->next)
6245 {
6246 printf (" %-18s %s",
6247 get_AT_name (attr->attribute),
6248 get_FORM_name (attr->form));
6249 if (attr->form == DW_FORM_implicit_const)
6250 printf (": %" BFD_VMA_FMT "d", attr->implicit_const);
6251 putchar ('\n');
6252 }
6253 }
6254 }
6255 while (start);
6256
6257 printf ("\n");
6258
6259 return 1;
6260 }
6261
6262 /* Return true when ADDR is the maximum address, when addresses are
6263 POINTER_SIZE bytes long. */
6264
6265 static bool
6266 is_max_address (dwarf_vma addr, unsigned int pointer_size)
6267 {
6268 dwarf_vma mask = ~(~(dwarf_vma) 1 << (pointer_size * 8 - 1));
6269 return ((addr & mask) == mask);
6270 }
6271
6272 /* Display a view pair list starting at *VSTART_PTR and ending at
6273 VLISTEND within SECTION. */
6274
6275 static void
6276 display_view_pair_list (struct dwarf_section *section,
6277 unsigned char **vstart_ptr,
6278 unsigned int debug_info_entry,
6279 unsigned char *vlistend)
6280 {
6281 unsigned char *vstart = *vstart_ptr;
6282 unsigned char *section_end = section->start + section->size;
6283 unsigned int pointer_size = debug_information [debug_info_entry].pointer_size;
6284
6285 if (vlistend < section_end)
6286 section_end = vlistend;
6287
6288 putchar ('\n');
6289
6290 while (vstart < section_end)
6291 {
6292 dwarf_vma off = vstart - section->start;
6293 dwarf_vma vbegin, vend;
6294
6295 READ_ULEB (vbegin, vstart, section_end);
6296 if (vstart == section_end)
6297 break;
6298
6299 READ_ULEB (vend, vstart, section_end);
6300 printf (" %8.8lx ", (unsigned long) off);
6301
6302 print_dwarf_view (vbegin, pointer_size, 1);
6303 print_dwarf_view (vend, pointer_size, 1);
6304 printf (_("location view pair\n"));
6305 }
6306
6307 putchar ('\n');
6308 *vstart_ptr = vstart;
6309 }
6310
6311 /* Display a location list from a normal (ie, non-dwo) .debug_loc section. */
6312
6313 static void
6314 display_loc_list (struct dwarf_section *section,
6315 unsigned char **start_ptr,
6316 unsigned int debug_info_entry,
6317 dwarf_vma offset,
6318 dwarf_vma base_address,
6319 unsigned char **vstart_ptr,
6320 int has_frame_base)
6321 {
6322 unsigned char *start = *start_ptr, *vstart = *vstart_ptr;
6323 unsigned char *section_end = section->start + section->size;
6324 unsigned long cu_offset;
6325 unsigned int pointer_size;
6326 unsigned int offset_size;
6327 int dwarf_version;
6328
6329 dwarf_vma begin;
6330 dwarf_vma end;
6331 unsigned short length;
6332 int need_frame_base;
6333
6334 if (debug_info_entry >= num_debug_info_entries)
6335 {
6336 warn (_("No debug information available for loc lists of entry: %u\n"),
6337 debug_info_entry);
6338 return;
6339 }
6340
6341 cu_offset = debug_information [debug_info_entry].cu_offset;
6342 pointer_size = debug_information [debug_info_entry].pointer_size;
6343 offset_size = debug_information [debug_info_entry].offset_size;
6344 dwarf_version = debug_information [debug_info_entry].dwarf_version;
6345
6346 if (pointer_size < 2 || pointer_size > 8)
6347 {
6348 warn (_("Invalid pointer size (%d) in debug info for entry %d\n"),
6349 pointer_size, debug_info_entry);
6350 return;
6351 }
6352
6353 while (1)
6354 {
6355 dwarf_vma off = offset + (start - *start_ptr);
6356 dwarf_vma vbegin = vm1, vend = vm1;
6357
6358 if (2 * pointer_size > (size_t) (section_end - start))
6359 {
6360 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6361 (unsigned long) offset);
6362 break;
6363 }
6364
6365 printf (" %8.8lx ", (unsigned long) off);
6366
6367 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, section_end);
6368 SAFE_BYTE_GET_AND_INC (end, start, pointer_size, section_end);
6369
6370 if (begin == 0 && end == 0)
6371 {
6372 /* PR 18374: In a object file we can have a location list that
6373 starts with a begin and end of 0 because there are relocations
6374 that need to be applied to the addresses. Actually applying
6375 the relocations now does not help as they will probably resolve
6376 to 0, since the object file has not been fully linked. Real
6377 end of list markers will not have any relocations against them. */
6378 if (! reloc_at (section, off)
6379 && ! reloc_at (section, off + pointer_size))
6380 {
6381 printf (_("<End of list>\n"));
6382 break;
6383 }
6384 }
6385
6386 /* Check base address specifiers. */
6387 if (is_max_address (begin, pointer_size)
6388 && !is_max_address (end, pointer_size))
6389 {
6390 base_address = end;
6391 print_dwarf_vma (begin, pointer_size);
6392 print_dwarf_vma (end, pointer_size);
6393 printf (_("(base address)\n"));
6394 continue;
6395 }
6396
6397 if (vstart)
6398 {
6399 off = offset + (vstart - *start_ptr);
6400
6401 READ_ULEB (vbegin, vstart, section_end);
6402 print_dwarf_view (vbegin, pointer_size, 1);
6403
6404 READ_ULEB (vend, vstart, section_end);
6405 print_dwarf_view (vend, pointer_size, 1);
6406
6407 printf (_("views at %8.8lx for:\n %*s "),
6408 (unsigned long) off, 8, "");
6409 }
6410
6411 if (2 > (size_t) (section_end - start))
6412 {
6413 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6414 (unsigned long) offset);
6415 break;
6416 }
6417
6418 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
6419
6420 if (length > (size_t) (section_end - start))
6421 {
6422 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6423 (unsigned long) offset);
6424 break;
6425 }
6426
6427 print_dwarf_vma (begin + base_address, pointer_size);
6428 print_dwarf_vma (end + base_address, pointer_size);
6429
6430 putchar ('(');
6431 need_frame_base = decode_location_expression (start,
6432 pointer_size,
6433 offset_size,
6434 dwarf_version,
6435 length,
6436 cu_offset, section);
6437 putchar (')');
6438
6439 if (need_frame_base && !has_frame_base)
6440 printf (_(" [without DW_AT_frame_base]"));
6441
6442 if (begin == end && vbegin == vend)
6443 fputs (_(" (start == end)"), stdout);
6444 else if (begin > end || (begin == end && vbegin > vend))
6445 fputs (_(" (start > end)"), stdout);
6446
6447 putchar ('\n');
6448
6449 start += length;
6450 }
6451
6452 *start_ptr = start;
6453 *vstart_ptr = vstart;
6454 }
6455
6456 /* Display a location list from a normal (ie, non-dwo) .debug_loclists section. */
6457
6458 static void
6459 display_loclists_list (struct dwarf_section *section,
6460 unsigned char **start_ptr,
6461 unsigned int debug_info_entry,
6462 dwarf_vma offset,
6463 dwarf_vma base_address,
6464 unsigned char **vstart_ptr,
6465 int has_frame_base)
6466 {
6467 unsigned char *start = *start_ptr, *vstart = *vstart_ptr;
6468 unsigned char *section_end = section->start + section->size;
6469 unsigned long cu_offset;
6470 unsigned int pointer_size;
6471 unsigned int offset_size;
6472 int dwarf_version;
6473
6474 /* Initialize it due to a false compiler warning. */
6475 dwarf_vma begin = -1, vbegin = -1;
6476 dwarf_vma end = -1, vend = -1;
6477 dwarf_vma length;
6478 int need_frame_base;
6479
6480 if (debug_info_entry >= num_debug_info_entries)
6481 {
6482 warn (_("No debug information available for "
6483 "loclists lists of entry: %u\n"),
6484 debug_info_entry);
6485 return;
6486 }
6487
6488 cu_offset = debug_information [debug_info_entry].cu_offset;
6489 pointer_size = debug_information [debug_info_entry].pointer_size;
6490 offset_size = debug_information [debug_info_entry].offset_size;
6491 dwarf_version = debug_information [debug_info_entry].dwarf_version;
6492
6493 if (pointer_size < 2 || pointer_size > 8)
6494 {
6495 warn (_("Invalid pointer size (%d) in debug info for entry %d\n"),
6496 pointer_size, debug_info_entry);
6497 return;
6498 }
6499
6500 while (1)
6501 {
6502 dwarf_vma off = offset + (start - *start_ptr);
6503 enum dwarf_location_list_entry_type llet;
6504
6505 if (start + 1 > section_end)
6506 {
6507 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6508 (unsigned long) offset);
6509 break;
6510 }
6511
6512 printf (" %8.8lx ", (unsigned long) off);
6513
6514 SAFE_BYTE_GET_AND_INC (llet, start, 1, section_end);
6515
6516 if (vstart && (llet == DW_LLE_offset_pair
6517 || llet == DW_LLE_start_end
6518 || llet == DW_LLE_start_length))
6519 {
6520 off = offset + (vstart - *start_ptr);
6521
6522 READ_ULEB (vbegin, vstart, section_end);
6523 print_dwarf_view (vbegin, pointer_size, 1);
6524
6525 READ_ULEB (vend, vstart, section_end);
6526 print_dwarf_view (vend, pointer_size, 1);
6527
6528 printf (_("views at %8.8lx for:\n %*s "),
6529 (unsigned long) off, 8, "");
6530 }
6531
6532 switch (llet)
6533 {
6534 case DW_LLE_end_of_list:
6535 printf (_("<End of list>\n"));
6536 break;
6537 case DW_LLE_offset_pair:
6538 READ_ULEB (begin, start, section_end);
6539 begin += base_address;
6540 READ_ULEB (end, start, section_end);
6541 end += base_address;
6542 break;
6543 case DW_LLE_start_end:
6544 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, section_end);
6545 SAFE_BYTE_GET_AND_INC (end, start, pointer_size, section_end);
6546 break;
6547 case DW_LLE_start_length:
6548 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, section_end);
6549 READ_ULEB (end, start, section_end);
6550 end += begin;
6551 break;
6552 case DW_LLE_base_address:
6553 SAFE_BYTE_GET_AND_INC (base_address, start, pointer_size,
6554 section_end);
6555 print_dwarf_vma (base_address, pointer_size);
6556 printf (_("(base address)\n"));
6557 break;
6558 #ifdef DW_LLE_view_pair
6559 case DW_LLE_view_pair:
6560 if (vstart)
6561 printf (_("View pair entry in loclist with locviews attribute\n"));
6562 READ_ULEB (vbegin, start, section_end);
6563 print_dwarf_view (vbegin, pointer_size, 1);
6564
6565 READ_ULEB (vend, start, section_end);
6566 print_dwarf_view (vend, pointer_size, 1);
6567
6568 printf (_("views for:\n"));
6569 continue;
6570 #endif
6571 default:
6572 error (_("Invalid location list entry type %d\n"), llet);
6573 return;
6574 }
6575 if (llet == DW_LLE_end_of_list)
6576 break;
6577 if (llet != DW_LLE_offset_pair
6578 && llet != DW_LLE_start_end
6579 && llet != DW_LLE_start_length)
6580 continue;
6581
6582 if (start == section_end)
6583 {
6584 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6585 (unsigned long) offset);
6586 break;
6587 }
6588 READ_ULEB (length, start, section_end);
6589
6590 if (length > (size_t) (section_end - start))
6591 {
6592 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6593 (unsigned long) offset);
6594 break;
6595 }
6596
6597 print_dwarf_vma (begin, pointer_size);
6598 print_dwarf_vma (end, pointer_size);
6599
6600 putchar ('(');
6601 need_frame_base = decode_location_expression (start,
6602 pointer_size,
6603 offset_size,
6604 dwarf_version,
6605 length,
6606 cu_offset, section);
6607 putchar (')');
6608
6609 if (need_frame_base && !has_frame_base)
6610 printf (_(" [without DW_AT_frame_base]"));
6611
6612 if (begin == end && vbegin == vend)
6613 fputs (_(" (start == end)"), stdout);
6614 else if (begin > end || (begin == end && vbegin > vend))
6615 fputs (_(" (start > end)"), stdout);
6616
6617 putchar ('\n');
6618
6619 start += length;
6620 vbegin = vend = -1;
6621 }
6622
6623 if (vbegin != vm1 || vend != vm1)
6624 printf (_("Trailing view pair not used in a range"));
6625
6626 *start_ptr = start;
6627 *vstart_ptr = vstart;
6628 }
6629
6630 /* Print a .debug_addr table index in decimal, surrounded by square brackets,
6631 right-adjusted in a field of length LEN, and followed by a space. */
6632
6633 static void
6634 print_addr_index (unsigned int idx, unsigned int len)
6635 {
6636 static char buf[15];
6637 snprintf (buf, sizeof (buf), "[%d]", idx);
6638 printf ("%*s ", len, buf);
6639 }
6640
6641 /* Display a location list from a .dwo section. It uses address indexes rather
6642 than embedded addresses. This code closely follows display_loc_list, but the
6643 two are sufficiently different that combining things is very ugly. */
6644
6645 static void
6646 display_loc_list_dwo (struct dwarf_section *section,
6647 unsigned char **start_ptr,
6648 unsigned int debug_info_entry,
6649 dwarf_vma offset,
6650 unsigned char **vstart_ptr,
6651 int has_frame_base)
6652 {
6653 unsigned char *start = *start_ptr, *vstart = *vstart_ptr;
6654 unsigned char *section_end = section->start + section->size;
6655 unsigned long cu_offset;
6656 unsigned int pointer_size;
6657 unsigned int offset_size;
6658 int dwarf_version;
6659 int entry_type;
6660 unsigned short length;
6661 int need_frame_base;
6662 unsigned int idx;
6663
6664 if (debug_info_entry >= num_debug_info_entries)
6665 {
6666 warn (_("No debug information for loc lists of entry: %u\n"),
6667 debug_info_entry);
6668 return;
6669 }
6670
6671 cu_offset = debug_information [debug_info_entry].cu_offset;
6672 pointer_size = debug_information [debug_info_entry].pointer_size;
6673 offset_size = debug_information [debug_info_entry].offset_size;
6674 dwarf_version = debug_information [debug_info_entry].dwarf_version;
6675
6676 if (pointer_size < 2 || pointer_size > 8)
6677 {
6678 warn (_("Invalid pointer size (%d) in debug info for entry %d\n"),
6679 pointer_size, debug_info_entry);
6680 return;
6681 }
6682
6683 while (1)
6684 {
6685 printf (" %8.8lx ", (unsigned long) (offset + (start - *start_ptr)));
6686
6687 if (start >= section_end)
6688 {
6689 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6690 (unsigned long) offset);
6691 break;
6692 }
6693
6694 SAFE_BYTE_GET_AND_INC (entry_type, start, 1, section_end);
6695
6696 if (vstart)
6697 switch (entry_type)
6698 {
6699 default:
6700 break;
6701
6702 case 2:
6703 case 3:
6704 case 4:
6705 {
6706 dwarf_vma view;
6707 dwarf_vma off = offset + (vstart - *start_ptr);
6708
6709 READ_ULEB (view, vstart, section_end);
6710 print_dwarf_view (view, 8, 1);
6711
6712 READ_ULEB (view, vstart, section_end);
6713 print_dwarf_view (view, 8, 1);
6714
6715 printf (_("views at %8.8lx for:\n %*s "),
6716 (unsigned long) off, 8, "");
6717
6718 }
6719 break;
6720 }
6721
6722 switch (entry_type)
6723 {
6724 case 0: /* A terminating entry. */
6725 *start_ptr = start;
6726 *vstart_ptr = vstart;
6727 printf (_("<End of list>\n"));
6728 return;
6729 case 1: /* A base-address entry. */
6730 READ_ULEB (idx, start, section_end);
6731 print_addr_index (idx, 8);
6732 printf ("%*s", 9 + (vstart ? 2 * 6 : 0), "");
6733 printf (_("(base address selection entry)\n"));
6734 continue;
6735 case 2: /* A start/end entry. */
6736 READ_ULEB (idx, start, section_end);
6737 print_addr_index (idx, 8);
6738 READ_ULEB (idx, start, section_end);
6739 print_addr_index (idx, 8);
6740 break;
6741 case 3: /* A start/length entry. */
6742 READ_ULEB (idx, start, section_end);
6743 print_addr_index (idx, 8);
6744 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
6745 printf ("%08x ", idx);
6746 break;
6747 case 4: /* An offset pair entry. */
6748 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
6749 printf ("%08x ", idx);
6750 SAFE_BYTE_GET_AND_INC (idx, start, 4, section_end);
6751 printf ("%08x ", idx);
6752 break;
6753 default:
6754 warn (_("Unknown location list entry type 0x%x.\n"), entry_type);
6755 *start_ptr = start;
6756 *vstart_ptr = vstart;
6757 return;
6758 }
6759
6760 if (2 > (size_t) (section_end - start))
6761 {
6762 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6763 (unsigned long) offset);
6764 break;
6765 }
6766
6767 SAFE_BYTE_GET_AND_INC (length, start, 2, section_end);
6768 if (length > (size_t) (section_end - start))
6769 {
6770 warn (_("Location list starting at offset 0x%lx is not terminated.\n"),
6771 (unsigned long) offset);
6772 break;
6773 }
6774
6775 putchar ('(');
6776 need_frame_base = decode_location_expression (start,
6777 pointer_size,
6778 offset_size,
6779 dwarf_version,
6780 length,
6781 cu_offset, section);
6782 putchar (')');
6783
6784 if (need_frame_base && !has_frame_base)
6785 printf (_(" [without DW_AT_frame_base]"));
6786
6787 putchar ('\n');
6788
6789 start += length;
6790 }
6791
6792 *start_ptr = start;
6793 *vstart_ptr = vstart;
6794 }
6795
6796 /* Sort array of indexes in ascending order of loc_offsets[idx] and
6797 loc_views. */
6798
6799 static dwarf_vma *loc_offsets, *loc_views;
6800
6801 static int
6802 loc_offsets_compar (const void *ap, const void *bp)
6803 {
6804 dwarf_vma a = loc_offsets[*(const unsigned int *) ap];
6805 dwarf_vma b = loc_offsets[*(const unsigned int *) bp];
6806
6807 int ret = (a > b) - (b > a);
6808 if (ret)
6809 return ret;
6810
6811 a = loc_views[*(const unsigned int *) ap];
6812 b = loc_views[*(const unsigned int *) bp];
6813
6814 ret = (a > b) - (b > a);
6815
6816 return ret;
6817 }
6818
6819 static int
6820 display_debug_loc (struct dwarf_section *section, void *file)
6821 {
6822 unsigned char *start = section->start, *vstart = NULL;
6823 unsigned long bytes;
6824 unsigned char *section_begin = start;
6825 unsigned int num_loc_list = 0;
6826 unsigned long last_offset = 0;
6827 unsigned long last_view = 0;
6828 unsigned int first = 0;
6829 unsigned int i;
6830 unsigned int j;
6831 int seen_first_offset = 0;
6832 int locs_sorted = 1;
6833 unsigned char *next = start, *vnext = vstart;
6834 unsigned int *array = NULL;
6835 const char *suffix = strrchr (section->name, '.');
6836 bool is_dwo = false;
6837 int is_loclists = strstr (section->name, "debug_loclists") != NULL;
6838 dwarf_vma expected_start = 0;
6839
6840 if (suffix && strcmp (suffix, ".dwo") == 0)
6841 is_dwo = true;
6842
6843 bytes = section->size;
6844
6845 if (bytes == 0)
6846 {
6847 printf (_("\nThe %s section is empty.\n"), section->name);
6848 return 0;
6849 }
6850
6851 if (is_loclists)
6852 {
6853 unsigned char *hdrptr = section_begin;
6854 dwarf_vma ll_length;
6855 unsigned short ll_version;
6856 unsigned char *end = section_begin + section->size;
6857 unsigned char address_size, segment_selector_size;
6858 uint32_t offset_entry_count;
6859
6860 SAFE_BYTE_GET_AND_INC (ll_length, hdrptr, 4, end);
6861 if (ll_length == 0xffffffff)
6862 SAFE_BYTE_GET_AND_INC (ll_length, hdrptr, 8, end);
6863
6864 SAFE_BYTE_GET_AND_INC (ll_version, hdrptr, 2, end);
6865 if (ll_version != 5)
6866 {
6867 warn (_("The %s section contains corrupt or "
6868 "unsupported version number: %d.\n"),
6869 section->name, ll_version);
6870 return 0;
6871 }
6872
6873 SAFE_BYTE_GET_AND_INC (address_size, hdrptr, 1, end);
6874
6875 SAFE_BYTE_GET_AND_INC (segment_selector_size, hdrptr, 1, end);
6876 if (segment_selector_size != 0)
6877 {
6878 warn (_("The %s section contains "
6879 "unsupported segment selector size: %d.\n"),
6880 section->name, segment_selector_size);
6881 return 0;
6882 }
6883
6884 SAFE_BYTE_GET_AND_INC (offset_entry_count, hdrptr, 4, end);
6885 if (offset_entry_count != 0)
6886 {
6887 warn (_("The %s section contains "
6888 "unsupported offset entry count: %d.\n"),
6889 section->name, offset_entry_count);
6890 return 0;
6891 }
6892
6893 expected_start = hdrptr - section_begin;
6894 }
6895
6896 if (load_debug_info (file) == 0)
6897 {
6898 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
6899 section->name);
6900 return 0;
6901 }
6902
6903 /* Check the order of location list in .debug_info section. If
6904 offsets of location lists are in the ascending order, we can
6905 use `debug_information' directly. */
6906 for (i = 0; i < num_debug_info_entries; i++)
6907 {
6908 unsigned int num;
6909
6910 num = debug_information [i].num_loc_offsets;
6911 if (num > num_loc_list)
6912 num_loc_list = num;
6913
6914 /* Check if we can use `debug_information' directly. */
6915 if (locs_sorted && num != 0)
6916 {
6917 if (!seen_first_offset)
6918 {
6919 /* This is the first location list. */
6920 last_offset = debug_information [i].loc_offsets [0];
6921 last_view = debug_information [i].loc_views [0];
6922 first = i;
6923 seen_first_offset = 1;
6924 j = 1;
6925 }
6926 else
6927 j = 0;
6928
6929 for (; j < num; j++)
6930 {
6931 if (last_offset >
6932 debug_information [i].loc_offsets [j]
6933 || (last_offset == debug_information [i].loc_offsets [j]
6934 && last_view > debug_information [i].loc_views [j]))
6935 {
6936 locs_sorted = 0;
6937 break;
6938 }
6939 last_offset = debug_information [i].loc_offsets [j];
6940 last_view = debug_information [i].loc_views [j];
6941 }
6942 }
6943 }
6944
6945 if (!seen_first_offset)
6946 error (_("No location lists in .debug_info section!\n"));
6947
6948 if (debug_information [first].num_loc_offsets > 0
6949 && debug_information [first].loc_offsets [0] != expected_start
6950 && debug_information [first].loc_views [0] != expected_start)
6951 warn (_("Location lists in %s section start at 0x%s\n"),
6952 section->name,
6953 dwarf_vmatoa ("x", debug_information [first].loc_offsets [0]));
6954
6955 if (!locs_sorted)
6956 array = (unsigned int *) xcmalloc (num_loc_list, sizeof (unsigned int));
6957
6958 introduce (section, false);
6959
6960 if (reloc_at (section, 0))
6961 printf (_(" Warning: This section has relocations - addresses seen here may not be accurate.\n\n"));
6962
6963 printf (_(" Offset Begin End Expression\n"));
6964
6965 seen_first_offset = 0;
6966 for (i = first; i < num_debug_info_entries; i++)
6967 {
6968 dwarf_vma offset, voffset;
6969 dwarf_vma base_address;
6970 unsigned int k;
6971 int has_frame_base;
6972
6973 if (!locs_sorted)
6974 {
6975 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
6976 array[k] = k;
6977 loc_offsets = debug_information [i].loc_offsets;
6978 loc_views = debug_information [i].loc_views;
6979 qsort (array, debug_information [i].num_loc_offsets,
6980 sizeof (*array), loc_offsets_compar);
6981 }
6982
6983 int adjacent_view_loclists = 1;
6984 for (k = 0; k < debug_information [i].num_loc_offsets; k++)
6985 {
6986 j = locs_sorted ? k : array[k];
6987 if (k
6988 && (debug_information [i].loc_offsets [locs_sorted
6989 ? k - 1 : array [k - 1]]
6990 == debug_information [i].loc_offsets [j])
6991 && (debug_information [i].loc_views [locs_sorted
6992 ? k - 1 : array [k - 1]]
6993 == debug_information [i].loc_views [j]))
6994 continue;
6995 has_frame_base = debug_information [i].have_frame_base [j];
6996 offset = debug_information [i].loc_offsets [j];
6997 next = section_begin + offset;
6998 voffset = debug_information [i].loc_views [j];
6999 if (voffset != vm1)
7000 vnext = section_begin + voffset;
7001 else
7002 vnext = NULL;
7003 base_address = debug_information [i].base_address;
7004
7005 if (vnext && vnext < next)
7006 {
7007 vstart = vnext;
7008 display_view_pair_list (section, &vstart, i, next);
7009 if (start == vnext)
7010 start = vstart;
7011 }
7012
7013 if (!seen_first_offset || !adjacent_view_loclists)
7014 seen_first_offset = 1;
7015 else
7016 {
7017 if (start < next)
7018 warn (_("There is a hole [0x%lx - 0x%lx] in .debug_loc section.\n"),
7019 (unsigned long) (start - section_begin),
7020 (unsigned long) offset);
7021 else if (start > next)
7022 warn (_("There is an overlap [0x%lx - 0x%lx] in .debug_loc section.\n"),
7023 (unsigned long) (start - section_begin),
7024 (unsigned long) offset);
7025 }
7026 start = next;
7027 vstart = vnext;
7028
7029 if (offset >= bytes)
7030 {
7031 warn (_("Offset 0x%lx is bigger than .debug_loc section size.\n"),
7032 (unsigned long) offset);
7033 continue;
7034 }
7035
7036 if (vnext && voffset >= bytes)
7037 {
7038 warn (_("View Offset 0x%lx is bigger than .debug_loc section size.\n"),
7039 (unsigned long) voffset);
7040 continue;
7041 }
7042
7043 if (!is_loclists)
7044 {
7045 if (is_dwo)
7046 display_loc_list_dwo (section, &start, i, offset,
7047 &vstart, has_frame_base);
7048 else
7049 display_loc_list (section, &start, i, offset, base_address,
7050 &vstart, has_frame_base);
7051 }
7052 else
7053 {
7054 if (is_dwo)
7055 warn (_("DWO is not yet supported.\n"));
7056 else
7057 display_loclists_list (section, &start, i, offset, base_address,
7058 &vstart, has_frame_base);
7059 }
7060
7061 /* FIXME: this arrangement is quite simplistic. Nothing
7062 requires locview lists to be adjacent to corresponding
7063 loclists, and a single loclist could be augmented by
7064 different locview lists, and vice-versa, unlikely as it
7065 is that it would make sense to do so. Hopefully we'll
7066 have view pair support built into loclists before we ever
7067 need to address all these possibilities. */
7068 if (adjacent_view_loclists && vnext
7069 && vnext != start && vstart != next)
7070 {
7071 adjacent_view_loclists = 0;
7072 warn (_("Hole and overlap detection requires adjacent view lists and loclists.\n"));
7073 }
7074
7075 if (vnext && vnext == start)
7076 display_view_pair_list (section, &start, i, vstart);
7077 }
7078 }
7079
7080 if (start < section->start + section->size)
7081 warn (ngettext ("There is %ld unused byte at the end of section %s\n",
7082 "There are %ld unused bytes at the end of section %s\n",
7083 (long) (section->start + section->size - start)),
7084 (long) (section->start + section->size - start), section->name);
7085 putchar ('\n');
7086 free (array);
7087 return 1;
7088 }
7089
7090 static int
7091 display_debug_str (struct dwarf_section *section,
7092 void *file ATTRIBUTE_UNUSED)
7093 {
7094 unsigned char *start = section->start;
7095 unsigned long bytes = section->size;
7096 dwarf_vma addr = section->address;
7097
7098 if (bytes == 0)
7099 {
7100 printf (_("\nThe %s section is empty.\n"), section->name);
7101 return 0;
7102 }
7103
7104 introduce (section, false);
7105
7106 while (bytes)
7107 {
7108 int j;
7109 int k;
7110 int lbytes;
7111
7112 lbytes = (bytes > 16 ? 16 : bytes);
7113
7114 printf (" 0x%8.8lx ", (unsigned long) addr);
7115
7116 for (j = 0; j < 16; j++)
7117 {
7118 if (j < lbytes)
7119 printf ("%2.2x", start[j]);
7120 else
7121 printf (" ");
7122
7123 if ((j & 3) == 3)
7124 printf (" ");
7125 }
7126
7127 for (j = 0; j < lbytes; j++)
7128 {
7129 k = start[j];
7130 if (k >= ' ' && k < 0x80)
7131 printf ("%c", k);
7132 else
7133 printf (".");
7134 }
7135
7136 putchar ('\n');
7137
7138 start += lbytes;
7139 addr += lbytes;
7140 bytes -= lbytes;
7141 }
7142
7143 putchar ('\n');
7144
7145 return 1;
7146 }
7147
7148 static int
7149 display_debug_info (struct dwarf_section *section, void *file)
7150 {
7151 return process_debug_info (section, file, section->abbrev_sec, false, false);
7152 }
7153
7154 static int
7155 display_debug_types (struct dwarf_section *section, void *file)
7156 {
7157 return process_debug_info (section, file, section->abbrev_sec, false, true);
7158 }
7159
7160 static int
7161 display_trace_info (struct dwarf_section *section, void *file)
7162 {
7163 return process_debug_info (section, file, section->abbrev_sec, false, true);
7164 }
7165
7166 static int
7167 display_debug_aranges (struct dwarf_section *section,
7168 void *file ATTRIBUTE_UNUSED)
7169 {
7170 unsigned char *start = section->start;
7171 unsigned char *end = start + section->size;
7172
7173 introduce (section, false);
7174
7175 /* It does not matter if this load fails,
7176 we test for that later on. */
7177 load_debug_info (file);
7178
7179 while (start < end)
7180 {
7181 unsigned char *hdrptr;
7182 DWARF2_Internal_ARange arange;
7183 unsigned char *addr_ranges;
7184 dwarf_vma length;
7185 dwarf_vma address;
7186 unsigned long sec_off;
7187 unsigned char address_size;
7188 int excess;
7189 unsigned int offset_size;
7190 unsigned char *end_ranges;
7191
7192 hdrptr = start;
7193 sec_off = hdrptr - section->start;
7194
7195 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 4, end);
7196 if (arange.ar_length == 0xffffffff)
7197 {
7198 SAFE_BYTE_GET_AND_INC (arange.ar_length, hdrptr, 8, end);
7199 offset_size = 8;
7200 }
7201 else
7202 offset_size = 4;
7203
7204 if (arange.ar_length > (size_t) (end - hdrptr))
7205 {
7206 warn (_("Debug info is corrupted, %s header at %#lx has length %s\n"),
7207 section->name,
7208 sec_off,
7209 dwarf_vmatoa ("x", arange.ar_length));
7210 break;
7211 }
7212 end_ranges = hdrptr + arange.ar_length;
7213
7214 SAFE_BYTE_GET_AND_INC (arange.ar_version, hdrptr, 2, end_ranges);
7215 SAFE_BYTE_GET_AND_INC (arange.ar_info_offset, hdrptr, offset_size,
7216 end_ranges);
7217
7218 if (num_debug_info_entries != DEBUG_INFO_UNAVAILABLE
7219 && num_debug_info_entries > 0
7220 && find_debug_info_for_offset (arange.ar_info_offset) == NULL)
7221 warn (_(".debug_info offset of 0x%lx in %s section does not point to a CU header.\n"),
7222 (unsigned long) arange.ar_info_offset, section->name);
7223
7224 SAFE_BYTE_GET_AND_INC (arange.ar_pointer_size, hdrptr, 1, end_ranges);
7225 SAFE_BYTE_GET_AND_INC (arange.ar_segment_size, hdrptr, 1, end_ranges);
7226
7227 if (arange.ar_version != 2 && arange.ar_version != 3)
7228 {
7229 /* PR 19872: A version number of 0 probably means that there is
7230 padding at the end of the .debug_aranges section. Gold puts
7231 it there when performing an incremental link, for example.
7232 So do not generate a warning in this case. */
7233 if (arange.ar_version)
7234 warn (_("Only DWARF 2 and 3 aranges are currently supported.\n"));
7235 break;
7236 }
7237
7238 printf (_(" Length: %ld\n"),
7239 (long) arange.ar_length);
7240 printf (_(" Version: %d\n"), arange.ar_version);
7241 printf (_(" Offset into .debug_info: 0x%lx\n"),
7242 (unsigned long) arange.ar_info_offset);
7243 printf (_(" Pointer Size: %d\n"), arange.ar_pointer_size);
7244 printf (_(" Segment Size: %d\n"), arange.ar_segment_size);
7245
7246 address_size = arange.ar_pointer_size + arange.ar_segment_size;
7247
7248 /* PR 17512: file: 001-108546-0.001:0.1. */
7249 if (address_size == 0 || address_size > 8)
7250 {
7251 error (_("Invalid address size in %s section!\n"),
7252 section->name);
7253 break;
7254 }
7255
7256 /* The DWARF spec does not require that the address size be a power
7257 of two, but we do. This will have to change if we ever encounter
7258 an uneven architecture. */
7259 if ((address_size & (address_size - 1)) != 0)
7260 {
7261 warn (_("Pointer size + Segment size is not a power of two.\n"));
7262 break;
7263 }
7264
7265 if (address_size > 4)
7266 printf (_("\n Address Length\n"));
7267 else
7268 printf (_("\n Address Length\n"));
7269
7270 addr_ranges = hdrptr;
7271
7272 /* Must pad to an alignment boundary that is twice the address size. */
7273 excess = (hdrptr - start) % (2 * address_size);
7274 if (excess)
7275 addr_ranges += (2 * address_size) - excess;
7276
7277 start = end_ranges;
7278
7279 while (2 * address_size <= (size_t) (start - addr_ranges))
7280 {
7281 SAFE_BYTE_GET_AND_INC (address, addr_ranges, address_size, start);
7282 SAFE_BYTE_GET_AND_INC (length, addr_ranges, address_size, start);
7283
7284 printf (" ");
7285 print_dwarf_vma (address, address_size);
7286 print_dwarf_vma (length, address_size);
7287 putchar ('\n');
7288 }
7289 }
7290
7291 printf ("\n");
7292
7293 return 1;
7294 }
7295
7296 /* Comparison function for qsort. */
7297 static int
7298 comp_addr_base (const void * v0, const void * v1)
7299 {
7300 debug_info *info0 = *(debug_info **) v0;
7301 debug_info *info1 = *(debug_info **) v1;
7302 return info0->addr_base - info1->addr_base;
7303 }
7304
7305 /* Display the debug_addr section. */
7306 static int
7307 display_debug_addr (struct dwarf_section *section,
7308 void *file)
7309 {
7310 debug_info **debug_addr_info;
7311 unsigned char *entry;
7312 unsigned char *end;
7313 unsigned int i;
7314 unsigned int count;
7315 unsigned char * header;
7316
7317 if (section->size == 0)
7318 {
7319 printf (_("\nThe %s section is empty.\n"), section->name);
7320 return 0;
7321 }
7322
7323 if (load_debug_info (file) == 0)
7324 {
7325 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
7326 section->name);
7327 return 0;
7328 }
7329
7330 introduce (section, false);
7331
7332 /* PR 17531: file: cf38d01b.
7333 We use xcalloc because a corrupt file may not have initialised all of the
7334 fields in the debug_info structure, which means that the sort below might
7335 try to move uninitialised data. */
7336 debug_addr_info = (debug_info **) xcalloc ((num_debug_info_entries + 1),
7337 sizeof (debug_info *));
7338
7339 count = 0;
7340 for (i = 0; i < num_debug_info_entries; i++)
7341 if (debug_information [i].addr_base != DEBUG_INFO_UNAVAILABLE)
7342 {
7343 /* PR 17531: file: cf38d01b. */
7344 if (debug_information[i].addr_base >= section->size)
7345 warn (_("Corrupt address base (%lx) found in debug section %u\n"),
7346 (unsigned long) debug_information[i].addr_base, i);
7347 else
7348 debug_addr_info [count++] = debug_information + i;
7349 }
7350
7351 /* Add a sentinel to make iteration convenient. */
7352 debug_addr_info [count] = (debug_info *) xmalloc (sizeof (debug_info));
7353 debug_addr_info [count]->addr_base = section->size;
7354 qsort (debug_addr_info, count, sizeof (debug_info *), comp_addr_base);
7355
7356 header = section->start;
7357 for (i = 0; i < count; i++)
7358 {
7359 unsigned int idx;
7360 unsigned int address_size = debug_addr_info [i]->pointer_size;
7361
7362 printf (_(" For compilation unit at offset 0x%s:\n"),
7363 dwarf_vmatoa ("x", debug_addr_info [i]->cu_offset));
7364
7365 printf (_("\tIndex\tAddress\n"));
7366 entry = section->start + debug_addr_info [i]->addr_base;
7367 if (debug_addr_info [i]->dwarf_version >= 5)
7368 {
7369 size_t header_size = entry - header;
7370 unsigned char * curr_header = header;
7371 dwarf_vma length;
7372 int version;
7373 int segment_selector_size;
7374
7375 if (header_size != 8 && header_size != 16)
7376 {
7377 warn (_("Corrupt %s section: expecting header size of 8 or 16, but found %ld instead\n"),
7378 section->name, (long) header_size);
7379 return 0;
7380 }
7381
7382 SAFE_BYTE_GET_AND_INC (length, curr_header, 4, entry);
7383 if (length == 0xffffffff)
7384 SAFE_BYTE_GET_AND_INC (length, curr_header, 8, entry);
7385 end = curr_header + length;
7386
7387 SAFE_BYTE_GET_AND_INC (version, curr_header, 2, entry);
7388 if (version != 5)
7389 warn (_("Corrupt %s section: expecting version number 5 in header but found %d instead\n"),
7390 section->name, version);
7391
7392 SAFE_BYTE_GET_AND_INC (address_size, curr_header, 1, entry);
7393 SAFE_BYTE_GET_AND_INC (segment_selector_size, curr_header, 1, entry);
7394 address_size += segment_selector_size;
7395 }
7396 else
7397 end = section->start + debug_addr_info [i + 1]->addr_base;
7398 header = end;
7399 idx = 0;
7400 while (entry < end)
7401 {
7402 dwarf_vma base = byte_get (entry, address_size);
7403 printf (_("\t%d:\t"), idx);
7404 print_dwarf_vma (base, address_size);
7405 printf ("\n");
7406 entry += address_size;
7407 idx++;
7408 }
7409 }
7410 printf ("\n");
7411
7412 free (debug_addr_info);
7413 return 1;
7414 }
7415
7416 /* Display the .debug_str_offsets and .debug_str_offsets.dwo sections. */
7417
7418 static int
7419 display_debug_str_offsets (struct dwarf_section *section,
7420 void *file ATTRIBUTE_UNUSED)
7421 {
7422 unsigned long idx;
7423
7424 if (section->size == 0)
7425 {
7426 printf (_("\nThe %s section is empty.\n"), section->name);
7427 return 0;
7428 }
7429
7430 unsigned char *start = section->start;
7431 unsigned char *end = start + section->size;
7432 unsigned char *curr = start;
7433
7434 const char *suffix = strrchr (section->name, '.');
7435 bool dwo = suffix && strcmp (suffix, ".dwo") == 0;
7436
7437 if (dwo)
7438 load_debug_section_with_follow (str_dwo, file);
7439 else
7440 load_debug_section_with_follow (str, file);
7441
7442 introduce (section, false);
7443
7444 while (curr < end)
7445 {
7446 dwarf_vma length;
7447 dwarf_vma entry_length;
7448
7449 SAFE_BYTE_GET_AND_INC (length, curr, 4, end);
7450 /* FIXME: We assume that this means 64-bit DWARF is being used. */
7451 if (length == 0xffffffff)
7452 {
7453 SAFE_BYTE_GET_AND_INC (length, curr, 8, end);
7454 entry_length = 8;
7455 }
7456 else
7457 entry_length = 4;
7458
7459 unsigned char *entries_end;
7460 if (length == 0)
7461 {
7462 /* This is probably an old style .debug_str_offset section which
7463 just contains offsets and no header (and the first offset is 0). */
7464 length = section->size;
7465 curr = section->start;
7466 entries_end = end;
7467
7468 printf (_(" Length: %#lx\n"), (unsigned long) length);
7469 printf (_(" Index Offset [String]\n"));
7470 }
7471 else
7472 {
7473 if (length <= (dwarf_vma) (end - curr))
7474 entries_end = curr + length;
7475 else
7476 {
7477 warn (_("Section %s is too small %#lx\n"),
7478 section->name, (unsigned long) section->size);
7479 entries_end = end;
7480 }
7481
7482 int version;
7483 SAFE_BYTE_GET_AND_INC (version, curr, 2, entries_end);
7484 if (version != 5)
7485 warn (_("Unexpected version number in str_offset header: %#x\n"), version);
7486
7487 int padding;
7488 SAFE_BYTE_GET_AND_INC (padding, curr, 2, entries_end);
7489 if (padding != 0)
7490 warn (_("Unexpected value in str_offset header's padding field: %#x\n"), padding);
7491
7492 printf (_(" Length: %#lx\n"), (unsigned long) length);
7493 printf (_(" Version: %#lx\n"), (unsigned long) version);
7494 printf (_(" Index Offset [String]\n"));
7495 }
7496
7497 for (idx = 0; curr < entries_end; idx++)
7498 {
7499 dwarf_vma offset;
7500 const unsigned char * string;
7501
7502 if ((dwarf_vma) (entries_end - curr) < entry_length)
7503 /* Not enough space to read one entry_length, give up. */
7504 return 0;
7505
7506 SAFE_BYTE_GET_AND_INC (offset, curr, entry_length, entries_end);
7507 if (dwo)
7508 string = (const unsigned char *)
7509 fetch_indexed_string (idx, NULL, entry_length, dwo);
7510 else
7511 string = fetch_indirect_string (offset);
7512
7513 printf (" %8lu %8s %s\n", idx, dwarf_vmatoa ("x", offset),
7514 string);
7515 }
7516 }
7517
7518 return 1;
7519 }
7520
7521 /* Each debug_information[x].range_lists[y] gets this representation for
7522 sorting purposes. */
7523
7524 struct range_entry
7525 {
7526 /* The debug_information[x].range_lists[y] value. */
7527 dwarf_vma ranges_offset;
7528
7529 /* Original debug_information to find parameters of the data. */
7530 debug_info *debug_info_p;
7531 };
7532
7533 /* Sort struct range_entry in ascending order of its RANGES_OFFSET. */
7534
7535 static int
7536 range_entry_compar (const void *ap, const void *bp)
7537 {
7538 const struct range_entry *a_re = (const struct range_entry *) ap;
7539 const struct range_entry *b_re = (const struct range_entry *) bp;
7540 const dwarf_vma a = a_re->ranges_offset;
7541 const dwarf_vma b = b_re->ranges_offset;
7542
7543 return (a > b) - (b > a);
7544 }
7545
7546 static void
7547 display_debug_ranges_list (unsigned char *start, unsigned char *finish,
7548 unsigned int pointer_size, unsigned long offset,
7549 unsigned long base_address)
7550 {
7551 while (start < finish)
7552 {
7553 dwarf_vma begin;
7554 dwarf_vma end;
7555
7556 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, finish);
7557 if (start >= finish)
7558 break;
7559 SAFE_SIGNED_BYTE_GET_AND_INC (end, start, pointer_size, finish);
7560
7561 printf (" %8.8lx ", offset);
7562
7563 if (begin == 0 && end == 0)
7564 {
7565 printf (_("<End of list>\n"));
7566 break;
7567 }
7568
7569 /* Check base address specifiers. */
7570 if (is_max_address (begin, pointer_size)
7571 && !is_max_address (end, pointer_size))
7572 {
7573 base_address = end;
7574 print_dwarf_vma (begin, pointer_size);
7575 print_dwarf_vma (end, pointer_size);
7576 printf ("(base address)\n");
7577 continue;
7578 }
7579
7580 print_dwarf_vma (begin + base_address, pointer_size);
7581 print_dwarf_vma (end + base_address, pointer_size);
7582
7583 if (begin == end)
7584 fputs (_("(start == end)"), stdout);
7585 else if (begin > end)
7586 fputs (_("(start > end)"), stdout);
7587
7588 putchar ('\n');
7589 }
7590 }
7591
7592 static void
7593 display_debug_rnglists_list (unsigned char *start, unsigned char *finish,
7594 unsigned int pointer_size, unsigned long offset,
7595 unsigned long base_address)
7596 {
7597 unsigned char *next = start;
7598
7599 while (1)
7600 {
7601 unsigned long off = offset + (start - next);
7602 enum dwarf_range_list_entry rlet;
7603 /* Initialize it due to a false compiler warning. */
7604 dwarf_vma begin = -1, length, end = -1;
7605
7606 if (start >= finish)
7607 {
7608 warn (_("Range list starting at offset 0x%lx is not terminated.\n"),
7609 offset);
7610 break;
7611 }
7612
7613 printf (" %8.8lx ", off);
7614
7615 SAFE_BYTE_GET_AND_INC (rlet, start, 1, finish);
7616
7617 switch (rlet)
7618 {
7619 case DW_RLE_end_of_list:
7620 printf (_("<End of list>\n"));
7621 break;
7622 case DW_RLE_base_address:
7623 SAFE_BYTE_GET_AND_INC (base_address, start, pointer_size, finish);
7624 print_dwarf_vma (base_address, pointer_size);
7625 printf (_("(base address)\n"));
7626 break;
7627 case DW_RLE_start_length:
7628 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, finish);
7629 READ_ULEB (length, start, finish);
7630 end = begin + length;
7631 break;
7632 case DW_RLE_offset_pair:
7633 READ_ULEB (begin, start, finish);
7634 READ_ULEB (end, start, finish);
7635 break;
7636 case DW_RLE_start_end:
7637 SAFE_BYTE_GET_AND_INC (begin, start, pointer_size, finish);
7638 SAFE_BYTE_GET_AND_INC (end, start, pointer_size, finish);
7639 break;
7640 default:
7641 error (_("Invalid range list entry type %d\n"), rlet);
7642 rlet = DW_RLE_end_of_list;
7643 break;
7644 }
7645 if (rlet == DW_RLE_end_of_list)
7646 break;
7647 if (rlet == DW_RLE_base_address)
7648 continue;
7649
7650 /* Only a DW_RLE_offset_pair needs the base address added. */
7651 if (rlet == DW_RLE_offset_pair)
7652 {
7653 begin += base_address;
7654 end += base_address;
7655 }
7656
7657 print_dwarf_vma (begin, pointer_size);
7658 print_dwarf_vma (end, pointer_size);
7659
7660 if (begin == end)
7661 fputs (_("(start == end)"), stdout);
7662 else if (begin > end)
7663 fputs (_("(start > end)"), stdout);
7664
7665 putchar ('\n');
7666 }
7667 }
7668
7669 static int
7670 display_debug_ranges (struct dwarf_section *section,
7671 void *file ATTRIBUTE_UNUSED)
7672 {
7673 unsigned char *start = section->start;
7674 unsigned char *last_start = start;
7675 unsigned long bytes = section->size;
7676 unsigned char *section_begin = start;
7677 unsigned char *finish = start + bytes;
7678 unsigned int num_range_list, i;
7679 struct range_entry *range_entries, *range_entry_fill;
7680 int is_rnglists = strstr (section->name, "debug_rnglists") != NULL;
7681 /* Initialize it due to a false compiler warning. */
7682 unsigned char address_size = 0;
7683 dwarf_vma last_offset = 0;
7684
7685 if (bytes == 0)
7686 {
7687 printf (_("\nThe %s section is empty.\n"), section->name);
7688 return 0;
7689 }
7690
7691 if (is_rnglists)
7692 {
7693 dwarf_vma initial_length;
7694 unsigned char segment_selector_size;
7695 unsigned int offset_size, offset_entry_count;
7696 unsigned short version;
7697
7698 /* Get and check the length of the block. */
7699 SAFE_BYTE_GET_AND_INC (initial_length, start, 4, finish);
7700
7701 if (initial_length == 0xffffffff)
7702 {
7703 /* This section is 64-bit DWARF 3. */
7704 SAFE_BYTE_GET_AND_INC (initial_length, start, 8, finish);
7705 offset_size = 8;
7706 }
7707 else
7708 offset_size = 4;
7709
7710 if (initial_length > (size_t) (finish - start))
7711 {
7712 /* If the length field has a relocation against it, then we should
7713 not complain if it is inaccurate (and probably negative).
7714 It is copied from .debug_line handling code. */
7715 if (reloc_at (section, (start - section->start) - offset_size))
7716 {
7717 initial_length = finish - start;
7718 }
7719 else
7720 {
7721 warn (_("The length field (0x%lx) in the debug_rnglists header is wrong - the section is too small\n"),
7722 (long) initial_length);
7723 return 0;
7724 }
7725 }
7726 finish = start + initial_length;
7727
7728 /* Get and check the version number. */
7729 SAFE_BYTE_GET_AND_INC (version, start, 2, finish);
7730
7731 if (version != 5)
7732 {
7733 warn (_("Only DWARF version 5 debug_rnglists info "
7734 "is currently supported.\n"));
7735 return 0;
7736 }
7737
7738 SAFE_BYTE_GET_AND_INC (address_size, start, 1, finish);
7739
7740 SAFE_BYTE_GET_AND_INC (segment_selector_size, start, 1, finish);
7741 if (segment_selector_size != 0)
7742 {
7743 warn (_("The %s section contains "
7744 "unsupported segment selector size: %d.\n"),
7745 section->name, segment_selector_size);
7746 return 0;
7747 }
7748
7749 SAFE_BYTE_GET_AND_INC (offset_entry_count, start, 4, finish);
7750 if (offset_entry_count != 0)
7751 {
7752 warn (_("The %s section contains "
7753 "unsupported offset entry count: %u.\n"),
7754 section->name, offset_entry_count);
7755 return 0;
7756 }
7757 }
7758
7759 if (load_debug_info (file) == 0)
7760 {
7761 warn (_("Unable to load/parse the .debug_info section, so cannot interpret the %s section.\n"),
7762 section->name);
7763 return 0;
7764 }
7765
7766 num_range_list = 0;
7767 for (i = 0; i < num_debug_info_entries; i++)
7768 {
7769 if (debug_information [i].dwarf_version < 5 && is_rnglists)
7770 /* Skip .debug_rnglists reference. */
7771 continue;
7772 if (debug_information [i].dwarf_version >= 5 && !is_rnglists)
7773 /* Skip .debug_range reference. */
7774 continue;
7775 num_range_list += debug_information [i].num_range_lists;
7776 }
7777
7778 if (num_range_list == 0)
7779 {
7780 /* This can happen when the file was compiled with -gsplit-debug
7781 which removes references to range lists from the primary .o file. */
7782 printf (_("No range lists in .debug_info section.\n"));
7783 return 1;
7784 }
7785
7786 range_entries = (struct range_entry *)
7787 xmalloc (sizeof (*range_entries) * num_range_list);
7788 range_entry_fill = range_entries;
7789
7790 for (i = 0; i < num_debug_info_entries; i++)
7791 {
7792 debug_info *debug_info_p = &debug_information[i];
7793 unsigned int j;
7794
7795 if (debug_information [i].dwarf_version < 5 && is_rnglists)
7796 /* Skip .debug_rnglists reference. */
7797 continue;
7798 if (debug_information [i].dwarf_version >= 5 && !is_rnglists)
7799 /* Skip .debug_range reference. */
7800 continue;
7801
7802 for (j = 0; j < debug_info_p->num_range_lists; j++)
7803 {
7804 range_entry_fill->ranges_offset = debug_info_p->range_lists[j];
7805 range_entry_fill->debug_info_p = debug_info_p;
7806 range_entry_fill++;
7807 }
7808 }
7809
7810 qsort (range_entries, num_range_list, sizeof (*range_entries),
7811 range_entry_compar);
7812
7813 if (dwarf_check != 0 && range_entries[0].ranges_offset != 0)
7814 warn (_("Range lists in %s section start at 0x%lx\n"),
7815 section->name, (unsigned long) range_entries[0].ranges_offset);
7816
7817 introduce (section, false);
7818
7819 printf (_(" Offset Begin End\n"));
7820
7821 for (i = 0; i < num_range_list; i++)
7822 {
7823 struct range_entry *range_entry = &range_entries[i];
7824 debug_info *debug_info_p = range_entry->debug_info_p;
7825 unsigned int pointer_size;
7826 dwarf_vma offset;
7827 unsigned char *next;
7828 dwarf_vma base_address;
7829
7830 pointer_size = (is_rnglists ? address_size : debug_info_p->pointer_size);
7831 offset = range_entry->ranges_offset;
7832 base_address = debug_info_p->base_address;
7833
7834 /* PR 17512: file: 001-101485-0.001:0.1. */
7835 if (pointer_size < 2 || pointer_size > 8)
7836 {
7837 warn (_("Corrupt pointer size (%d) in debug entry at offset %8.8lx\n"),
7838 pointer_size, (unsigned long) offset);
7839 continue;
7840 }
7841
7842 if (offset > (size_t) (finish - section_begin))
7843 {
7844 warn (_("Corrupt offset (%#8.8lx) in range entry %u\n"),
7845 (unsigned long) offset, i);
7846 continue;
7847 }
7848 next = section_begin + offset;
7849
7850 /* If multiple DWARF entities reference the same range then we will
7851 have multiple entries in the `range_entries' list for the same
7852 offset. Thanks to the sort above these will all be consecutive in
7853 the `range_entries' list, so we can easily ignore duplicates
7854 here. */
7855 if (i > 0 && last_offset == offset)
7856 continue;
7857 last_offset = offset;
7858
7859 if (dwarf_check != 0 && i > 0)
7860 {
7861 if (start < next)
7862 warn (_("There is a hole [0x%lx - 0x%lx] in %s section.\n"),
7863 (unsigned long) (start - section_begin),
7864 (unsigned long) (next - section_begin), section->name);
7865 else if (start > next)
7866 {
7867 if (next == last_start)
7868 continue;
7869 warn (_("There is an overlap [0x%lx - 0x%lx] in %s section.\n"),
7870 (unsigned long) (start - section_begin),
7871 (unsigned long) (next - section_begin), section->name);
7872 }
7873 }
7874
7875 start = next;
7876 last_start = next;
7877
7878 (is_rnglists ? display_debug_rnglists_list : display_debug_ranges_list)
7879 (start, finish, pointer_size, offset, base_address);
7880 }
7881 putchar ('\n');
7882
7883 free (range_entries);
7884
7885 return 1;
7886 }
7887
7888 typedef struct Frame_Chunk
7889 {
7890 struct Frame_Chunk *next;
7891 unsigned char *chunk_start;
7892 unsigned int ncols;
7893 /* DW_CFA_{undefined,same_value,offset,register,unreferenced} */
7894 short int *col_type;
7895 int *col_offset;
7896 char *augmentation;
7897 unsigned int code_factor;
7898 int data_factor;
7899 dwarf_vma pc_begin;
7900 dwarf_vma pc_range;
7901 unsigned int cfa_reg;
7902 dwarf_vma cfa_offset;
7903 unsigned int ra;
7904 unsigned char fde_encoding;
7905 unsigned char cfa_exp;
7906 unsigned char ptr_size;
7907 unsigned char segment_size;
7908 }
7909 Frame_Chunk;
7910
7911 typedef const char *(*dwarf_regname_lookup_ftype) (unsigned int);
7912 static dwarf_regname_lookup_ftype dwarf_regnames_lookup_func;
7913 static const char *const *dwarf_regnames;
7914 static unsigned int dwarf_regnames_count;
7915
7916
7917 /* A marker for a col_type that means this column was never referenced
7918 in the frame info. */
7919 #define DW_CFA_unreferenced (-1)
7920
7921 /* Return 0 if no more space is needed, 1 if more space is needed,
7922 -1 for invalid reg. */
7923
7924 static int
7925 frame_need_space (Frame_Chunk *fc, unsigned int reg)
7926 {
7927 unsigned int prev = fc->ncols;
7928
7929 if (reg < (unsigned int) fc->ncols)
7930 return 0;
7931
7932 if (dwarf_regnames_count > 0
7933 && reg > dwarf_regnames_count)
7934 return -1;
7935
7936 fc->ncols = reg + 1;
7937 /* PR 17512: file: 10450-2643-0.004.
7938 If reg == -1 then this can happen... */
7939 if (fc->ncols == 0)
7940 return -1;
7941
7942 /* PR 17512: file: 2844a11d. */
7943 if (fc->ncols > 1024 && dwarf_regnames_count == 0)
7944 {
7945 error (_("Unfeasibly large register number: %u\n"), reg);
7946 fc->ncols = 0;
7947 /* FIXME: 1024 is an arbitrary limit. Increase it if
7948 we ever encounter a valid binary that exceeds it. */
7949 return -1;
7950 }
7951
7952 fc->col_type = (short int *) xcrealloc (fc->col_type, fc->ncols,
7953 sizeof (short int));
7954 fc->col_offset = (int *) xcrealloc (fc->col_offset, fc->ncols, sizeof (int));
7955 /* PR 17512: file:002-10025-0.005. */
7956 if (fc->col_type == NULL || fc->col_offset == NULL)
7957 {
7958 error (_("Out of memory allocating %u columns in dwarf frame arrays\n"),
7959 fc->ncols);
7960 fc->ncols = 0;
7961 return -1;
7962 }
7963
7964 while (prev < fc->ncols)
7965 {
7966 fc->col_type[prev] = DW_CFA_unreferenced;
7967 fc->col_offset[prev] = 0;
7968 prev++;
7969 }
7970 return 1;
7971 }
7972
7973 static const char *const dwarf_regnames_i386[] =
7974 {
7975 "eax", "ecx", "edx", "ebx", /* 0 - 3 */
7976 "esp", "ebp", "esi", "edi", /* 4 - 7 */
7977 "eip", "eflags", NULL, /* 8 - 10 */
7978 "st0", "st1", "st2", "st3", /* 11 - 14 */
7979 "st4", "st5", "st6", "st7", /* 15 - 18 */
7980 NULL, NULL, /* 19 - 20 */
7981 "xmm0", "xmm1", "xmm2", "xmm3", /* 21 - 24 */
7982 "xmm4", "xmm5", "xmm6", "xmm7", /* 25 - 28 */
7983 "mm0", "mm1", "mm2", "mm3", /* 29 - 32 */
7984 "mm4", "mm5", "mm6", "mm7", /* 33 - 36 */
7985 "fcw", "fsw", "mxcsr", /* 37 - 39 */
7986 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL, /* 40 - 47 */
7987 "tr", "ldtr", /* 48 - 49 */
7988 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 50 - 57 */
7989 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 58 - 65 */
7990 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 66 - 73 */
7991 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 74 - 81 */
7992 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 82 - 89 */
7993 NULL, NULL, NULL, /* 90 - 92 */
7994 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7" /* 93 - 100 */
7995 };
7996
7997 static const char *const dwarf_regnames_iamcu[] =
7998 {
7999 "eax", "ecx", "edx", "ebx", /* 0 - 3 */
8000 "esp", "ebp", "esi", "edi", /* 4 - 7 */
8001 "eip", "eflags", NULL, /* 8 - 10 */
8002 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 11 - 18 */
8003 NULL, NULL, /* 19 - 20 */
8004 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 21 - 28 */
8005 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 29 - 36 */
8006 NULL, NULL, NULL, /* 37 - 39 */
8007 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL, /* 40 - 47 */
8008 "tr", "ldtr", /* 48 - 49 */
8009 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 50 - 57 */
8010 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 58 - 65 */
8011 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 66 - 73 */
8012 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 74 - 81 */
8013 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 82 - 89 */
8014 NULL, NULL, NULL, /* 90 - 92 */
8015 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL /* 93 - 100 */
8016 };
8017
8018 static void
8019 init_dwarf_regnames_i386 (void)
8020 {
8021 dwarf_regnames = dwarf_regnames_i386;
8022 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_i386);
8023 dwarf_regnames_lookup_func = regname_internal_by_table_only;
8024 }
8025
8026 static void
8027 init_dwarf_regnames_iamcu (void)
8028 {
8029 dwarf_regnames = dwarf_regnames_iamcu;
8030 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_iamcu);
8031 dwarf_regnames_lookup_func = regname_internal_by_table_only;
8032 }
8033
8034 static const char *const dwarf_regnames_x86_64[] =
8035 {
8036 "rax", "rdx", "rcx", "rbx",
8037 "rsi", "rdi", "rbp", "rsp",
8038 "r8", "r9", "r10", "r11",
8039 "r12", "r13", "r14", "r15",
8040 "rip",
8041 "xmm0", "xmm1", "xmm2", "xmm3",
8042 "xmm4", "xmm5", "xmm6", "xmm7",
8043 "xmm8", "xmm9", "xmm10", "xmm11",
8044 "xmm12", "xmm13", "xmm14", "xmm15",
8045 "st0", "st1", "st2", "st3",
8046 "st4", "st5", "st6", "st7",
8047 "mm0", "mm1", "mm2", "mm3",
8048 "mm4", "mm5", "mm6", "mm7",
8049 "rflags",
8050 "es", "cs", "ss", "ds", "fs", "gs", NULL, NULL,
8051 "fs.base", "gs.base", NULL, NULL,
8052 "tr", "ldtr",
8053 "mxcsr", "fcw", "fsw",
8054 "xmm16", "xmm17", "xmm18", "xmm19",
8055 "xmm20", "xmm21", "xmm22", "xmm23",
8056 "xmm24", "xmm25", "xmm26", "xmm27",
8057 "xmm28", "xmm29", "xmm30", "xmm31",
8058 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 83 - 90 */
8059 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 91 - 98 */
8060 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 99 - 106 */
8061 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, /* 107 - 114 */
8062 NULL, NULL, NULL, /* 115 - 117 */
8063 "k0", "k1", "k2", "k3", "k4", "k5", "k6", "k7"
8064 };
8065
8066 static void
8067 init_dwarf_regnames_x86_64 (void)
8068 {
8069 dwarf_regnames = dwarf_regnames_x86_64;
8070 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_x86_64);
8071 dwarf_regnames_lookup_func = regname_internal_by_table_only;
8072 }
8073
8074 static const char *const dwarf_regnames_aarch64[] =
8075 {
8076 "x0", "x1", "x2", "x3", "x4", "x5", "x6", "x7",
8077 "x8", "x9", "x10", "x11", "x12", "x13", "x14", "x15",
8078 "x16", "x17", "x18", "x19", "x20", "x21", "x22", "x23",
8079 "x24", "x25", "x26", "x27", "x28", "x29", "x30", "sp",
8080 NULL, "elr", NULL, NULL, NULL, NULL, NULL, NULL,
8081 NULL, NULL, NULL, NULL, NULL, NULL, "vg", "ffr",
8082 "p0", "p1", "p2", "p3", "p4", "p5", "p6", "p7",
8083 "p8", "p9", "p10", "p11", "p12", "p13", "p14", "p15",
8084 "v0", "v1", "v2", "v3", "v4", "v5", "v6", "v7",
8085 "v8", "v9", "v10", "v11", "v12", "v13", "v14", "v15",
8086 "v16", "v17", "v18", "v19", "v20", "v21", "v22", "v23",
8087 "v24", "v25", "v26", "v27", "v28", "v29", "v30", "v31",
8088 "z0", "z1", "z2", "z3", "z4", "z5", "z6", "z7",
8089 "z8", "z9", "z10", "z11", "z12", "z13", "z14", "z15",
8090 "z16", "z17", "z18", "z19", "z20", "z21", "z22", "z23",
8091 "z24", "z25", "z26", "z27", "z28", "z29", "z30", "z31",
8092 };
8093
8094 static void
8095 init_dwarf_regnames_aarch64 (void)
8096 {
8097 dwarf_regnames = dwarf_regnames_aarch64;
8098 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_aarch64);
8099 dwarf_regnames_lookup_func = regname_internal_by_table_only;
8100 }
8101
8102 static const char *const dwarf_regnames_s390[] =
8103 {
8104 /* Avoid saying "r5 (r5)", so omit the names of r0-r15. */
8105 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
8106 NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
8107 "f0", "f2", "f4", "f6", "f1", "f3", "f5", "f7",
8108 "f8", "f10", "f12", "f14", "f9", "f11", "f13", "f15",
8109 "cr0", "cr1", "cr2", "cr3", "cr4", "cr5", "cr6", "cr7",
8110 "cr8", "cr9", "cr10", "cr11", "cr12", "cr13", "cr14", "cr15",
8111 "a0", "a1", "a2", "a3", "a4", "a5", "a6", "a7",
8112 "a8", "a9", "a10", "a11", "a12", "a13", "a14", "a15",
8113 "pswm", "pswa",
8114 NULL, NULL,
8115 "v16", "v18", "v20", "v22", "v17", "v19", "v21", "v23",
8116 "v24", "v26", "v28", "v30", "v25", "v27", "v29", "v31",
8117 };
8118
8119 static void
8120 init_dwarf_regnames_s390 (void)
8121 {
8122 dwarf_regnames = dwarf_regnames_s390;
8123 dwarf_regnames_count = ARRAY_SIZE (dwarf_regnames_s390);
8124 dwarf_regnames_lookup_func = regname_internal_by_table_only;
8125 }
8126
8127 static const char *const dwarf_regnames_riscv[] =
8128 {
8129 "zero", "ra", "sp", "gp", "tp", "t0", "t1", "t2", /* 0 - 7 */
8130 "s0", "s1", "a0", "a1", "a2", "a3", "a4", "a5", /* 8 - 15 */
8131 "a6", "a7", "s2", "s3", "s4", "s5", "s6", "s7", /* 16 - 23 */
8132 "s8", "s9", "s10", "s11", "t3", "t4", "t5", "t6", /* 24 - 31 */
8133 "ft0", "ft1", "ft2", "ft3", "ft4", "ft5", "ft6", "ft7", /* 32 - 39 */
8134 "fs0", "fs1", /* 40 - 41 */
8135 "fa0", "fa1", "fa2", "fa3", "fa4", "fa5", "fa6", "fa7", /* 42 - 49 */
8136 "fs2", "fs3", "fs4", "fs5", "fs6", "fs7", "fs8", "fs9", /* 50 - 57 */
8137 "fs10", "fs11", /* 58 - 59 */
8138 "ft8", "ft9", "ft10", "ft11" /* 60 - 63 */
8139 };
8140
8141 /* A RISC-V replacement for REGNAME_INTERNAL_BY_TABLE_ONLY which handles
8142 the large number of CSRs. */
8143
8144 static const char *
8145 regname_internal_riscv (unsigned int regno)
8146 {
8147 const char *name = NULL;
8148
8149 /* Lookup in the table first, this covers GPR and FPR. */
8150 if (regno < ARRAY_SIZE (dwarf_regnames_riscv))
8151 name = dwarf_regnames_riscv [regno];
8152 else if (regno >= 4096 && regno <= 8191)
8153 {
8154 /* This might be a CSR, these live in a sparse number space from 4096
8155 to 8191 These numbers are defined in the RISC-V ELF ABI
8156 document. */
8157 switch (regno)
8158 {
8159 #define DECLARE_CSR(NAME,VALUE,CLASS,DEFINE_VER,ABORT_VER) \
8160 case VALUE + 4096: name = #NAME; break;
8161 #include "opcode/riscv-opc.h"
8162 #undef DECLARE_CSR
8163
8164 default:
8165 {
8166 static char csr_name[10];
8167 snprintf (csr_name, sizeof (csr_name), "csr%d", (regno - 4096));
8168 name = csr_name;
8169 }
8170 break;
8171 }
8172 }
8173
8174 return name;
8175 }
8176
8177 static void
8178 init_dwarf_regnames_riscv (void)
8179 {
8180 dwarf_regnames = NULL;
8181 dwarf_regnames_count = 8192;
8182 dwarf_regnames_lookup_func = regname_internal_riscv;
8183 }
8184
8185 void
8186 init_dwarf_regnames_by_elf_machine_code (unsigned int e_machine)
8187 {
8188 dwarf_regnames_lookup_func = NULL;
8189
8190 switch (e_machine)
8191 {
8192 case EM_386:
8193 init_dwarf_regnames_i386 ();
8194 break;
8195
8196 case EM_IAMCU:
8197 init_dwarf_regnames_iamcu ();
8198 break;
8199
8200 case EM_X86_64:
8201 case EM_L1OM:
8202 case EM_K1OM:
8203 init_dwarf_regnames_x86_64 ();
8204 break;
8205
8206 case EM_AARCH64:
8207 init_dwarf_regnames_aarch64 ();
8208 break;
8209
8210 case EM_S390:
8211 init_dwarf_regnames_s390 ();
8212 break;
8213
8214 case EM_RISCV:
8215 init_dwarf_regnames_riscv ();
8216 break;
8217
8218 default:
8219 break;
8220 }
8221 }
8222
8223 /* Initialize the DWARF register name lookup state based on the
8224 architecture and specific machine type of a BFD. */
8225
8226 void
8227 init_dwarf_regnames_by_bfd_arch_and_mach (enum bfd_architecture arch,
8228 unsigned long mach)
8229 {
8230 dwarf_regnames_lookup_func = NULL;
8231
8232 switch (arch)
8233 {
8234 case bfd_arch_i386:
8235 switch (mach)
8236 {
8237 case bfd_mach_x86_64:
8238 case bfd_mach_x86_64_intel_syntax:
8239 case bfd_mach_x64_32:
8240 case bfd_mach_x64_32_intel_syntax:
8241 init_dwarf_regnames_x86_64 ();
8242 break;
8243
8244 default:
8245 init_dwarf_regnames_i386 ();
8246 break;
8247 }
8248 break;
8249
8250 case bfd_arch_iamcu:
8251 init_dwarf_regnames_iamcu ();
8252 break;
8253
8254 case bfd_arch_aarch64:
8255 init_dwarf_regnames_aarch64();
8256 break;
8257
8258 case bfd_arch_s390:
8259 init_dwarf_regnames_s390 ();
8260 break;
8261
8262 case bfd_arch_riscv:
8263 init_dwarf_regnames_riscv ();
8264 break;
8265
8266 default:
8267 break;
8268 }
8269 }
8270
8271 static const char *
8272 regname_internal_by_table_only (unsigned int regno)
8273 {
8274 if (dwarf_regnames != NULL
8275 && regno < dwarf_regnames_count
8276 && dwarf_regnames [regno] != NULL)
8277 return dwarf_regnames [regno];
8278
8279 return NULL;
8280 }
8281
8282 static const char *
8283 regname (unsigned int regno, int name_only_p)
8284 {
8285 static char reg[64];
8286
8287 const char *name = NULL;
8288
8289 if (dwarf_regnames_lookup_func != NULL)
8290 name = dwarf_regnames_lookup_func (regno);
8291
8292 if (name != NULL)
8293 {
8294 if (name_only_p)
8295 return name;
8296 snprintf (reg, sizeof (reg), "r%d (%s)", regno, name);
8297 }
8298 else
8299 snprintf (reg, sizeof (reg), "r%d", regno);
8300 return reg;
8301 }
8302
8303 static void
8304 frame_display_row (Frame_Chunk *fc, int *need_col_headers, unsigned int *max_regs)
8305 {
8306 unsigned int r;
8307 char tmp[100];
8308
8309 if (*max_regs != fc->ncols)
8310 *max_regs = fc->ncols;
8311
8312 if (*need_col_headers)
8313 {
8314 *need_col_headers = 0;
8315
8316 printf ("%-*s CFA ", eh_addr_size * 2, " LOC");
8317
8318 for (r = 0; r < *max_regs; r++)
8319 if (fc->col_type[r] != DW_CFA_unreferenced)
8320 {
8321 if (r == fc->ra)
8322 printf ("ra ");
8323 else
8324 printf ("%-5s ", regname (r, 1));
8325 }
8326
8327 printf ("\n");
8328 }
8329
8330 print_dwarf_vma (fc->pc_begin, eh_addr_size);
8331 if (fc->cfa_exp)
8332 strcpy (tmp, "exp");
8333 else
8334 sprintf (tmp, "%s%+d", regname (fc->cfa_reg, 1), (int) fc->cfa_offset);
8335 printf ("%-8s ", tmp);
8336
8337 for (r = 0; r < fc->ncols; r++)
8338 {
8339 if (fc->col_type[r] != DW_CFA_unreferenced)
8340 {
8341 switch (fc->col_type[r])
8342 {
8343 case DW_CFA_undefined:
8344 strcpy (tmp, "u");
8345 break;
8346 case DW_CFA_same_value:
8347 strcpy (tmp, "s");
8348 break;
8349 case DW_CFA_offset:
8350 sprintf (tmp, "c%+d", fc->col_offset[r]);
8351 break;
8352 case DW_CFA_val_offset:
8353 sprintf (tmp, "v%+d", fc->col_offset[r]);
8354 break;
8355 case DW_CFA_register:
8356 sprintf (tmp, "%s", regname (fc->col_offset[r], 0));
8357 break;
8358 case DW_CFA_expression:
8359 strcpy (tmp, "exp");
8360 break;
8361 case DW_CFA_val_expression:
8362 strcpy (tmp, "vexp");
8363 break;
8364 default:
8365 strcpy (tmp, "n/a");
8366 break;
8367 }
8368 printf ("%-5s ", tmp);
8369 }
8370 }
8371 printf ("\n");
8372 }
8373
8374 #define GET(VAR, N) SAFE_BYTE_GET_AND_INC (VAR, start, N, end)
8375
8376 static unsigned char *
8377 read_cie (unsigned char *start, unsigned char *end,
8378 Frame_Chunk **p_cie, int *p_version,
8379 bfd_size_type *p_aug_len, unsigned char **p_aug)
8380 {
8381 int version;
8382 Frame_Chunk *fc;
8383 unsigned char *augmentation_data = NULL;
8384 bfd_size_type augmentation_data_len = 0;
8385
8386 * p_cie = NULL;
8387 /* PR 17512: file: 001-228113-0.004. */
8388 if (start >= end)
8389 return end;
8390
8391 fc = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
8392 memset (fc, 0, sizeof (Frame_Chunk));
8393
8394 fc->col_type = (short int *) xmalloc (sizeof (short int));
8395 fc->col_offset = (int *) xmalloc (sizeof (int));
8396
8397 version = *start++;
8398
8399 fc->augmentation = (char *) start;
8400 /* PR 17512: file: 001-228113-0.004.
8401 Skip past augmentation name, but avoid running off the end of the data. */
8402 while (start < end)
8403 if (* start ++ == '\0')
8404 break;
8405 if (start == end)
8406 {
8407 warn (_("No terminator for augmentation name\n"));
8408 goto fail;
8409 }
8410
8411 if (strcmp (fc->augmentation, "eh") == 0)
8412 {
8413 if (eh_addr_size > (size_t) (end - start))
8414 goto fail;
8415 start += eh_addr_size;
8416 }
8417
8418 if (version >= 4)
8419 {
8420 if (2 > (size_t) (end - start))
8421 goto fail;
8422 GET (fc->ptr_size, 1);
8423 if (fc->ptr_size < 1 || fc->ptr_size > 8)
8424 {
8425 warn (_("Invalid pointer size (%d) in CIE data\n"), fc->ptr_size);
8426 goto fail;
8427 }
8428
8429 GET (fc->segment_size, 1);
8430 /* PR 17512: file: e99d2804. */
8431 if (fc->segment_size > 8 || fc->segment_size + fc->ptr_size > 8)
8432 {
8433 warn (_("Invalid segment size (%d) in CIE data\n"), fc->segment_size);
8434 goto fail;
8435 }
8436
8437 eh_addr_size = fc->ptr_size;
8438 }
8439 else
8440 {
8441 fc->ptr_size = eh_addr_size;
8442 fc->segment_size = 0;
8443 }
8444
8445 READ_ULEB (fc->code_factor, start, end);
8446 READ_SLEB (fc->data_factor, start, end);
8447
8448 if (start >= end)
8449 goto fail;
8450
8451 if (version == 1)
8452 {
8453 GET (fc->ra, 1);
8454 }
8455 else
8456 {
8457 READ_ULEB (fc->ra, start, end);
8458 }
8459
8460 if (fc->augmentation[0] == 'z')
8461 {
8462 if (start >= end)
8463 goto fail;
8464 READ_ULEB (augmentation_data_len, start, end);
8465 augmentation_data = start;
8466 /* PR 17512: file: 11042-2589-0.004. */
8467 if (augmentation_data_len > (bfd_size_type) (end - start))
8468 {
8469 warn (_("Augmentation data too long: 0x%s, expected at most %#lx\n"),
8470 dwarf_vmatoa ("x", augmentation_data_len),
8471 (unsigned long) (end - start));
8472 goto fail;
8473 }
8474 start += augmentation_data_len;
8475 }
8476
8477 if (augmentation_data_len)
8478 {
8479 unsigned char *p;
8480 unsigned char *q;
8481 unsigned char *qend;
8482
8483 p = (unsigned char *) fc->augmentation + 1;
8484 q = augmentation_data;
8485 qend = q + augmentation_data_len;
8486
8487 while (p < end && q < qend)
8488 {
8489 if (*p == 'L')
8490 q++;
8491 else if (*p == 'P')
8492 q += 1 + size_of_encoded_value (*q);
8493 else if (*p == 'R')
8494 fc->fde_encoding = *q++;
8495 else if (*p == 'S')
8496 ;
8497 else if (*p == 'B')
8498 ;
8499 else
8500 break;
8501 p++;
8502 }
8503 /* Note - it is OK if this loop terminates with q < qend.
8504 Padding may have been inserted to align the end of the CIE. */
8505 }
8506
8507 *p_cie = fc;
8508 if (p_version)
8509 *p_version = version;
8510 if (p_aug_len)
8511 {
8512 *p_aug_len = augmentation_data_len;
8513 *p_aug = augmentation_data;
8514 }
8515 return start;
8516
8517 fail:
8518 free (fc->col_offset);
8519 free (fc->col_type);
8520 free (fc);
8521 return end;
8522 }
8523
8524 /* Prints out the contents on the DATA array formatted as unsigned bytes.
8525 If do_wide is not enabled, then formats the output to fit into 80 columns.
8526 PRINTED contains the number of characters already written to the current
8527 output line. */
8528
8529 static void
8530 display_data (bfd_size_type printed,
8531 const unsigned char * data,
8532 const bfd_size_type len)
8533 {
8534 if (do_wide || len < ((80 - printed) / 3))
8535 for (printed = 0; printed < len; ++printed)
8536 printf (" %02x", data[printed]);
8537 else
8538 {
8539 for (printed = 0; printed < len; ++printed)
8540 {
8541 if (printed % (80 / 3) == 0)
8542 putchar ('\n');
8543 printf (" %02x", data[printed]);
8544 }
8545 }
8546 }
8547
8548 /* Prints out the contents on the augmentation data array.
8549 If do_wide is not enabled, then formats the output to fit into 80 columns. */
8550
8551 static void
8552 display_augmentation_data (const unsigned char * data, const bfd_size_type len)
8553 {
8554 bfd_size_type i;
8555
8556 i = printf (_(" Augmentation data: "));
8557 display_data (i, data, len);
8558 }
8559
8560 static int
8561 display_debug_frames (struct dwarf_section *section,
8562 void *file ATTRIBUTE_UNUSED)
8563 {
8564 unsigned char *start = section->start;
8565 unsigned char *end = start + section->size;
8566 unsigned char *section_start = start;
8567 Frame_Chunk *chunks = NULL, *forward_refs = NULL;
8568 Frame_Chunk *remembered_state = NULL;
8569 Frame_Chunk *rs;
8570 bool is_eh = strcmp (section->name, ".eh_frame") == 0;
8571 unsigned int max_regs = 0;
8572 const char *bad_reg = _("bad register: ");
8573 unsigned int saved_eh_addr_size = eh_addr_size;
8574
8575 introduce (section, false);
8576
8577 while (start < end)
8578 {
8579 unsigned char *saved_start;
8580 unsigned char *block_end;
8581 dwarf_vma length;
8582 dwarf_vma cie_id;
8583 Frame_Chunk *fc;
8584 Frame_Chunk *cie;
8585 int need_col_headers = 1;
8586 unsigned char *augmentation_data = NULL;
8587 bfd_size_type augmentation_data_len = 0;
8588 unsigned int encoded_ptr_size = saved_eh_addr_size;
8589 unsigned int offset_size;
8590 bool all_nops;
8591 static Frame_Chunk fde_fc;
8592
8593 saved_start = start;
8594
8595 SAFE_BYTE_GET_AND_INC (length, start, 4, end);
8596
8597 if (length == 0)
8598 {
8599 printf ("\n%08lx ZERO terminator\n\n",
8600 (unsigned long)(saved_start - section_start));
8601 /* Skip any zero terminators that directly follow.
8602 A corrupt section size could have loaded a whole
8603 slew of zero filled memory bytes. eg
8604 PR 17512: file: 070-19381-0.004. */
8605 while (start < end && * start == 0)
8606 ++ start;
8607 continue;
8608 }
8609
8610 if (length == 0xffffffff)
8611 {
8612 SAFE_BYTE_GET_AND_INC (length, start, 8, end);
8613 offset_size = 8;
8614 }
8615 else
8616 offset_size = 4;
8617
8618 if (length > (size_t) (end - start))
8619 {
8620 warn ("Invalid length 0x%s in FDE at %#08lx\n",
8621 dwarf_vmatoa_1 (NULL, length, offset_size),
8622 (unsigned long) (saved_start - section_start));
8623 block_end = end;
8624 }
8625 else
8626 block_end = start + length;
8627
8628 SAFE_BYTE_GET_AND_INC (cie_id, start, offset_size, block_end);
8629
8630 if (is_eh ? (cie_id == 0) : ((offset_size == 4 && cie_id == DW_CIE_ID)
8631 || (offset_size == 8 && cie_id == DW64_CIE_ID)))
8632 {
8633 int version;
8634 unsigned int mreg;
8635
8636 start = read_cie (start, block_end, &cie, &version,
8637 &augmentation_data_len, &augmentation_data);
8638 /* PR 17512: file: 027-135133-0.005. */
8639 if (cie == NULL)
8640 break;
8641
8642 fc = cie;
8643 fc->next = chunks;
8644 chunks = fc;
8645 fc->chunk_start = saved_start;
8646 mreg = max_regs > 0 ? max_regs - 1 : 0;
8647 if (mreg < fc->ra)
8648 mreg = fc->ra;
8649 if (frame_need_space (fc, mreg) < 0)
8650 break;
8651 if (fc->fde_encoding)
8652 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
8653
8654 printf ("\n%08lx ", (unsigned long) (saved_start - section_start));
8655 print_dwarf_vma (length, fc->ptr_size);
8656 print_dwarf_vma (cie_id, offset_size);
8657
8658 if (do_debug_frames_interp)
8659 {
8660 printf ("CIE \"%s\" cf=%d df=%d ra=%d\n", fc->augmentation,
8661 fc->code_factor, fc->data_factor, fc->ra);
8662 }
8663 else
8664 {
8665 printf ("CIE\n");
8666 printf (" Version: %d\n", version);
8667 printf (" Augmentation: \"%s\"\n", fc->augmentation);
8668 if (version >= 4)
8669 {
8670 printf (" Pointer Size: %u\n", fc->ptr_size);
8671 printf (" Segment Size: %u\n", fc->segment_size);
8672 }
8673 printf (" Code alignment factor: %u\n", fc->code_factor);
8674 printf (" Data alignment factor: %d\n", fc->data_factor);
8675 printf (" Return address column: %d\n", fc->ra);
8676
8677 if (augmentation_data_len)
8678 display_augmentation_data (augmentation_data, augmentation_data_len);
8679
8680 putchar ('\n');
8681 }
8682 }
8683 else
8684 {
8685 unsigned char *look_for;
8686 unsigned long segment_selector;
8687 dwarf_vma cie_off;
8688
8689 cie_off = cie_id;
8690 if (is_eh)
8691 {
8692 dwarf_vma sign = (dwarf_vma) 1 << (offset_size * 8 - 1);
8693 cie_off = (cie_off ^ sign) - sign;
8694 cie_off = start - 4 - section_start - cie_off;
8695 }
8696
8697 look_for = section_start + cie_off;
8698 if (cie_off <= (dwarf_vma) (saved_start - section_start))
8699 {
8700 for (cie = chunks; cie ; cie = cie->next)
8701 if (cie->chunk_start == look_for)
8702 break;
8703 }
8704 else if (cie_off >= section->size)
8705 cie = NULL;
8706 else
8707 {
8708 for (cie = forward_refs; cie ; cie = cie->next)
8709 if (cie->chunk_start == look_for)
8710 break;
8711 if (!cie)
8712 {
8713 unsigned int off_size;
8714 unsigned char *cie_scan;
8715
8716 cie_scan = look_for;
8717 off_size = 4;
8718 SAFE_BYTE_GET_AND_INC (length, cie_scan, 4, end);
8719 if (length == 0xffffffff)
8720 {
8721 SAFE_BYTE_GET_AND_INC (length, cie_scan, 8, end);
8722 off_size = 8;
8723 }
8724 if (length != 0 && length <= (size_t) (end - cie_scan))
8725 {
8726 dwarf_vma c_id;
8727 unsigned char *cie_end = cie_scan + length;
8728
8729 SAFE_BYTE_GET_AND_INC (c_id, cie_scan, off_size,
8730 cie_end);
8731 if (is_eh
8732 ? c_id == 0
8733 : ((off_size == 4 && c_id == DW_CIE_ID)
8734 || (off_size == 8 && c_id == DW64_CIE_ID)))
8735 {
8736 int version;
8737 unsigned int mreg;
8738
8739 read_cie (cie_scan, cie_end, &cie, &version,
8740 &augmentation_data_len, &augmentation_data);
8741 /* PR 17512: file: 3450-2098-0.004. */
8742 if (cie == NULL)
8743 {
8744 warn (_("Failed to read CIE information\n"));
8745 break;
8746 }
8747 cie->next = forward_refs;
8748 forward_refs = cie;
8749 cie->chunk_start = look_for;
8750 mreg = max_regs > 0 ? max_regs - 1 : 0;
8751 if (mreg < cie->ra)
8752 mreg = cie->ra;
8753 if (frame_need_space (cie, mreg) < 0)
8754 {
8755 warn (_("Invalid max register\n"));
8756 break;
8757 }
8758 if (cie->fde_encoding)
8759 encoded_ptr_size
8760 = size_of_encoded_value (cie->fde_encoding);
8761 }
8762 }
8763 }
8764 }
8765
8766 fc = &fde_fc;
8767 memset (fc, 0, sizeof (Frame_Chunk));
8768
8769 if (!cie)
8770 {
8771 warn ("Invalid CIE pointer 0x%s in FDE at %#08lx\n",
8772 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
8773 (unsigned long) (saved_start - section_start));
8774 fc->ncols = 0;
8775 fc->col_type = (short int *) xmalloc (sizeof (short int));
8776 fc->col_offset = (int *) xmalloc (sizeof (int));
8777 if (frame_need_space (fc, max_regs > 0 ? max_regs - 1 : 0) < 0)
8778 {
8779 warn (_("Invalid max register\n"));
8780 break;
8781 }
8782 cie = fc;
8783 fc->augmentation = "";
8784 fc->fde_encoding = 0;
8785 fc->ptr_size = eh_addr_size;
8786 fc->segment_size = 0;
8787 }
8788 else
8789 {
8790 fc->ncols = cie->ncols;
8791 fc->col_type = (short int *) xcmalloc (fc->ncols, sizeof (short int));
8792 fc->col_offset = (int *) xcmalloc (fc->ncols, sizeof (int));
8793 memcpy (fc->col_type, cie->col_type, fc->ncols * sizeof (short int));
8794 memcpy (fc->col_offset, cie->col_offset, fc->ncols * sizeof (int));
8795 fc->augmentation = cie->augmentation;
8796 fc->ptr_size = cie->ptr_size;
8797 eh_addr_size = cie->ptr_size;
8798 fc->segment_size = cie->segment_size;
8799 fc->code_factor = cie->code_factor;
8800 fc->data_factor = cie->data_factor;
8801 fc->cfa_reg = cie->cfa_reg;
8802 fc->cfa_offset = cie->cfa_offset;
8803 fc->ra = cie->ra;
8804 if (frame_need_space (fc, max_regs > 0 ? max_regs - 1: 0) < 0)
8805 {
8806 warn (_("Invalid max register\n"));
8807 break;
8808 }
8809 fc->fde_encoding = cie->fde_encoding;
8810 }
8811
8812 if (fc->fde_encoding)
8813 encoded_ptr_size = size_of_encoded_value (fc->fde_encoding);
8814
8815 segment_selector = 0;
8816 if (fc->segment_size)
8817 {
8818 if (fc->segment_size > sizeof (segment_selector))
8819 {
8820 /* PR 17512: file: 9e196b3e. */
8821 warn (_("Probably corrupt segment size: %d - using 4 instead\n"), fc->segment_size);
8822 fc->segment_size = 4;
8823 }
8824 SAFE_BYTE_GET_AND_INC (segment_selector, start,
8825 fc->segment_size, block_end);
8826 }
8827
8828 fc->pc_begin = get_encoded_value (&start, fc->fde_encoding, section,
8829 block_end);
8830
8831 /* FIXME: It appears that sometimes the final pc_range value is
8832 encoded in less than encoded_ptr_size bytes. See the x86_64
8833 run of the "objcopy on compressed debug sections" test for an
8834 example of this. */
8835 SAFE_BYTE_GET_AND_INC (fc->pc_range, start, encoded_ptr_size,
8836 block_end);
8837
8838 if (cie->augmentation[0] == 'z')
8839 {
8840 READ_ULEB (augmentation_data_len, start, block_end);
8841 augmentation_data = start;
8842 /* PR 17512 file: 722-8446-0.004 and PR 22386. */
8843 if (augmentation_data_len > (bfd_size_type) (block_end - start))
8844 {
8845 warn (_("Augmentation data too long: 0x%s, "
8846 "expected at most %#lx\n"),
8847 dwarf_vmatoa ("x", augmentation_data_len),
8848 (unsigned long) (block_end - start));
8849 start = block_end;
8850 augmentation_data = NULL;
8851 augmentation_data_len = 0;
8852 }
8853 start += augmentation_data_len;
8854 }
8855
8856 printf ("\n%08lx %s %s FDE cie=%08lx pc=",
8857 (unsigned long)(saved_start - section_start),
8858 dwarf_vmatoa_1 (NULL, length, fc->ptr_size),
8859 dwarf_vmatoa_1 (NULL, cie_id, offset_size),
8860 (unsigned long)(cie->chunk_start - section_start));
8861
8862 if (fc->segment_size)
8863 printf ("%04lx:", segment_selector);
8864
8865 printf ("%s..%s\n",
8866 dwarf_vmatoa_1 (NULL, fc->pc_begin, fc->ptr_size),
8867 dwarf_vmatoa_1 (NULL, fc->pc_begin + fc->pc_range, fc->ptr_size));
8868
8869 if (! do_debug_frames_interp && augmentation_data_len)
8870 {
8871 display_augmentation_data (augmentation_data, augmentation_data_len);
8872 putchar ('\n');
8873 }
8874 }
8875
8876 /* At this point, fc is the current chunk, cie (if any) is set, and
8877 we're about to interpret instructions for the chunk. */
8878 /* ??? At present we need to do this always, since this sizes the
8879 fc->col_type and fc->col_offset arrays, which we write into always.
8880 We should probably split the interpreted and non-interpreted bits
8881 into two different routines, since there's so much that doesn't
8882 really overlap between them. */
8883 if (1 || do_debug_frames_interp)
8884 {
8885 /* Start by making a pass over the chunk, allocating storage
8886 and taking note of what registers are used. */
8887 unsigned char *tmp = start;
8888
8889 while (start < block_end)
8890 {
8891 unsigned int reg, op, opa;
8892 unsigned long temp;
8893
8894 op = *start++;
8895 opa = op & 0x3f;
8896 if (op & 0xc0)
8897 op &= 0xc0;
8898
8899 /* Warning: if you add any more cases to this switch, be
8900 sure to add them to the corresponding switch below. */
8901 switch (op)
8902 {
8903 case DW_CFA_advance_loc:
8904 break;
8905 case DW_CFA_offset:
8906 SKIP_ULEB (start, block_end);
8907 if (frame_need_space (fc, opa) >= 0)
8908 fc->col_type[opa] = DW_CFA_undefined;
8909 break;
8910 case DW_CFA_restore:
8911 if (frame_need_space (fc, opa) >= 0)
8912 fc->col_type[opa] = DW_CFA_undefined;
8913 break;
8914 case DW_CFA_set_loc:
8915 if ((size_t) (block_end - start) < encoded_ptr_size)
8916 start = block_end;
8917 else
8918 start += encoded_ptr_size;
8919 break;
8920 case DW_CFA_advance_loc1:
8921 if ((size_t) (block_end - start) < 1)
8922 start = block_end;
8923 else
8924 start += 1;
8925 break;
8926 case DW_CFA_advance_loc2:
8927 if ((size_t) (block_end - start) < 2)
8928 start = block_end;
8929 else
8930 start += 2;
8931 break;
8932 case DW_CFA_advance_loc4:
8933 if ((size_t) (block_end - start) < 4)
8934 start = block_end;
8935 else
8936 start += 4;
8937 break;
8938 case DW_CFA_offset_extended:
8939 case DW_CFA_val_offset:
8940 READ_ULEB (reg, start, block_end);
8941 SKIP_ULEB (start, block_end);
8942 if (frame_need_space (fc, reg) >= 0)
8943 fc->col_type[reg] = DW_CFA_undefined;
8944 break;
8945 case DW_CFA_restore_extended:
8946 READ_ULEB (reg, start, block_end);
8947 if (frame_need_space (fc, reg) >= 0)
8948 fc->col_type[reg] = DW_CFA_undefined;
8949 break;
8950 case DW_CFA_undefined:
8951 READ_ULEB (reg, start, block_end);
8952 if (frame_need_space (fc, reg) >= 0)
8953 fc->col_type[reg] = DW_CFA_undefined;
8954 break;
8955 case DW_CFA_same_value:
8956 READ_ULEB (reg, start, block_end);
8957 if (frame_need_space (fc, reg) >= 0)
8958 fc->col_type[reg] = DW_CFA_undefined;
8959 break;
8960 case DW_CFA_register:
8961 READ_ULEB (reg, start, block_end);
8962 SKIP_ULEB (start, block_end);
8963 if (frame_need_space (fc, reg) >= 0)
8964 fc->col_type[reg] = DW_CFA_undefined;
8965 break;
8966 case DW_CFA_def_cfa:
8967 SKIP_ULEB (start, block_end);
8968 SKIP_ULEB (start, block_end);
8969 break;
8970 case DW_CFA_def_cfa_register:
8971 SKIP_ULEB (start, block_end);
8972 break;
8973 case DW_CFA_def_cfa_offset:
8974 SKIP_ULEB (start, block_end);
8975 break;
8976 case DW_CFA_def_cfa_expression:
8977 READ_ULEB (temp, start, block_end);
8978 if ((size_t) (block_end - start) < temp)
8979 start = block_end;
8980 else
8981 start += temp;
8982 break;
8983 case DW_CFA_expression:
8984 case DW_CFA_val_expression:
8985 READ_ULEB (reg, start, block_end);
8986 READ_ULEB (temp, start, block_end);
8987 if ((size_t) (block_end - start) < temp)
8988 start = block_end;
8989 else
8990 start += temp;
8991 if (frame_need_space (fc, reg) >= 0)
8992 fc->col_type[reg] = DW_CFA_undefined;
8993 break;
8994 case DW_CFA_offset_extended_sf:
8995 case DW_CFA_val_offset_sf:
8996 READ_ULEB (reg, start, block_end);
8997 SKIP_SLEB (start, block_end);
8998 if (frame_need_space (fc, reg) >= 0)
8999 fc->col_type[reg] = DW_CFA_undefined;
9000 break;
9001 case DW_CFA_def_cfa_sf:
9002 SKIP_ULEB (start, block_end);
9003 SKIP_SLEB (start, block_end);
9004 break;
9005 case DW_CFA_def_cfa_offset_sf:
9006 SKIP_SLEB (start, block_end);
9007 break;
9008 case DW_CFA_MIPS_advance_loc8:
9009 if ((size_t) (block_end - start) < 8)
9010 start = block_end;
9011 else
9012 start += 8;
9013 break;
9014 case DW_CFA_GNU_args_size:
9015 SKIP_ULEB (start, block_end);
9016 break;
9017 case DW_CFA_GNU_negative_offset_extended:
9018 READ_ULEB (reg, start, block_end);
9019 SKIP_ULEB (start, block_end);
9020 if (frame_need_space (fc, reg) >= 0)
9021 fc->col_type[reg] = DW_CFA_undefined;
9022 break;
9023 default:
9024 break;
9025 }
9026 }
9027 start = tmp;
9028 }
9029
9030 all_nops = true;
9031
9032 /* Now we know what registers are used, make a second pass over
9033 the chunk, this time actually printing out the info. */
9034
9035 while (start < block_end)
9036 {
9037 unsigned op, opa;
9038 unsigned long ul, roffs;
9039 /* Note: It is tempting to use an unsigned long for 'reg' but there
9040 are various functions, notably frame_space_needed() that assume that
9041 reg is an unsigned int. */
9042 unsigned int reg;
9043 dwarf_signed_vma l;
9044 dwarf_vma ofs;
9045 dwarf_vma vma;
9046 const char *reg_prefix = "";
9047
9048 op = *start++;
9049 opa = op & 0x3f;
9050 if (op & 0xc0)
9051 op &= 0xc0;
9052
9053 /* Make a note if something other than DW_CFA_nop happens. */
9054 if (op != DW_CFA_nop)
9055 all_nops = false;
9056
9057 /* Warning: if you add any more cases to this switch, be
9058 sure to add them to the corresponding switch above. */
9059 switch (op)
9060 {
9061 case DW_CFA_advance_loc:
9062 if (do_debug_frames_interp)
9063 frame_display_row (fc, &need_col_headers, &max_regs);
9064 else
9065 printf (" DW_CFA_advance_loc: %d to %s\n",
9066 opa * fc->code_factor,
9067 dwarf_vmatoa_1 (NULL,
9068 fc->pc_begin + opa * fc->code_factor,
9069 fc->ptr_size));
9070 fc->pc_begin += opa * fc->code_factor;
9071 break;
9072
9073 case DW_CFA_offset:
9074 READ_ULEB (roffs, start, block_end);
9075 if (opa >= (unsigned int) fc->ncols)
9076 reg_prefix = bad_reg;
9077 if (! do_debug_frames_interp || *reg_prefix != '\0')
9078 printf (" DW_CFA_offset: %s%s at cfa%+ld\n",
9079 reg_prefix, regname (opa, 0),
9080 roffs * fc->data_factor);
9081 if (*reg_prefix == '\0')
9082 {
9083 fc->col_type[opa] = DW_CFA_offset;
9084 fc->col_offset[opa] = roffs * fc->data_factor;
9085 }
9086 break;
9087
9088 case DW_CFA_restore:
9089 if (opa >= (unsigned int) fc->ncols)
9090 reg_prefix = bad_reg;
9091 if (! do_debug_frames_interp || *reg_prefix != '\0')
9092 printf (" DW_CFA_restore: %s%s\n",
9093 reg_prefix, regname (opa, 0));
9094 if (*reg_prefix != '\0')
9095 break;
9096
9097 if (opa >= (unsigned int) cie->ncols
9098 || (do_debug_frames_interp
9099 && cie->col_type[opa] == DW_CFA_unreferenced))
9100 {
9101 fc->col_type[opa] = DW_CFA_undefined;
9102 fc->col_offset[opa] = 0;
9103 }
9104 else
9105 {
9106 fc->col_type[opa] = cie->col_type[opa];
9107 fc->col_offset[opa] = cie->col_offset[opa];
9108 }
9109 break;
9110
9111 case DW_CFA_set_loc:
9112 vma = get_encoded_value (&start, fc->fde_encoding, section,
9113 block_end);
9114 if (do_debug_frames_interp)
9115 frame_display_row (fc, &need_col_headers, &max_regs);
9116 else
9117 printf (" DW_CFA_set_loc: %s\n",
9118 dwarf_vmatoa_1 (NULL, vma, fc->ptr_size));
9119 fc->pc_begin = vma;
9120 break;
9121
9122 case DW_CFA_advance_loc1:
9123 SAFE_BYTE_GET_AND_INC (ofs, start, 1, block_end);
9124 if (do_debug_frames_interp)
9125 frame_display_row (fc, &need_col_headers, &max_regs);
9126 else
9127 printf (" DW_CFA_advance_loc1: %ld to %s\n",
9128 (unsigned long) (ofs * fc->code_factor),
9129 dwarf_vmatoa_1 (NULL,
9130 fc->pc_begin + ofs * fc->code_factor,
9131 fc->ptr_size));
9132 fc->pc_begin += ofs * fc->code_factor;
9133 break;
9134
9135 case DW_CFA_advance_loc2:
9136 SAFE_BYTE_GET_AND_INC (ofs, start, 2, block_end);
9137 if (do_debug_frames_interp)
9138 frame_display_row (fc, &need_col_headers, &max_regs);
9139 else
9140 printf (" DW_CFA_advance_loc2: %ld to %s\n",
9141 (unsigned long) (ofs * fc->code_factor),
9142 dwarf_vmatoa_1 (NULL,
9143 fc->pc_begin + ofs * fc->code_factor,
9144 fc->ptr_size));
9145 fc->pc_begin += ofs * fc->code_factor;
9146 break;
9147
9148 case DW_CFA_advance_loc4:
9149 SAFE_BYTE_GET_AND_INC (ofs, start, 4, block_end);
9150 if (do_debug_frames_interp)
9151 frame_display_row (fc, &need_col_headers, &max_regs);
9152 else
9153 printf (" DW_CFA_advance_loc4: %ld to %s\n",
9154 (unsigned long) (ofs * fc->code_factor),
9155 dwarf_vmatoa_1 (NULL,
9156 fc->pc_begin + ofs * fc->code_factor,
9157 fc->ptr_size));
9158 fc->pc_begin += ofs * fc->code_factor;
9159 break;
9160
9161 case DW_CFA_offset_extended:
9162 READ_ULEB (reg, start, block_end);
9163 READ_ULEB (roffs, start, block_end);
9164 if (reg >= (unsigned int) fc->ncols)
9165 reg_prefix = bad_reg;
9166 if (! do_debug_frames_interp || *reg_prefix != '\0')
9167 printf (" DW_CFA_offset_extended: %s%s at cfa%+ld\n",
9168 reg_prefix, regname (reg, 0),
9169 roffs * fc->data_factor);
9170 if (*reg_prefix == '\0')
9171 {
9172 fc->col_type[reg] = DW_CFA_offset;
9173 fc->col_offset[reg] = roffs * fc->data_factor;
9174 }
9175 break;
9176
9177 case DW_CFA_val_offset:
9178 READ_ULEB (reg, start, block_end);
9179 READ_ULEB (roffs, start, block_end);
9180 if (reg >= (unsigned int) fc->ncols)
9181 reg_prefix = bad_reg;
9182 if (! do_debug_frames_interp || *reg_prefix != '\0')
9183 printf (" DW_CFA_val_offset: %s%s is cfa%+ld\n",
9184 reg_prefix, regname (reg, 0),
9185 roffs * fc->data_factor);
9186 if (*reg_prefix == '\0')
9187 {
9188 fc->col_type[reg] = DW_CFA_val_offset;
9189 fc->col_offset[reg] = roffs * fc->data_factor;
9190 }
9191 break;
9192
9193 case DW_CFA_restore_extended:
9194 READ_ULEB (reg, start, block_end);
9195 if (reg >= (unsigned int) fc->ncols)
9196 reg_prefix = bad_reg;
9197 if (! do_debug_frames_interp || *reg_prefix != '\0')
9198 printf (" DW_CFA_restore_extended: %s%s\n",
9199 reg_prefix, regname (reg, 0));
9200 if (*reg_prefix != '\0')
9201 break;
9202
9203 if (reg >= (unsigned int) cie->ncols)
9204 {
9205 fc->col_type[reg] = DW_CFA_undefined;
9206 fc->col_offset[reg] = 0;
9207 }
9208 else
9209 {
9210 fc->col_type[reg] = cie->col_type[reg];
9211 fc->col_offset[reg] = cie->col_offset[reg];
9212 }
9213 break;
9214
9215 case DW_CFA_undefined:
9216 READ_ULEB (reg, start, block_end);
9217 if (reg >= (unsigned int) fc->ncols)
9218 reg_prefix = bad_reg;
9219 if (! do_debug_frames_interp || *reg_prefix != '\0')
9220 printf (" DW_CFA_undefined: %s%s\n",
9221 reg_prefix, regname (reg, 0));
9222 if (*reg_prefix == '\0')
9223 {
9224 fc->col_type[reg] = DW_CFA_undefined;
9225 fc->col_offset[reg] = 0;
9226 }
9227 break;
9228
9229 case DW_CFA_same_value:
9230 READ_ULEB (reg, start, block_end);
9231 if (reg >= (unsigned int) fc->ncols)
9232 reg_prefix = bad_reg;
9233 if (! do_debug_frames_interp || *reg_prefix != '\0')
9234 printf (" DW_CFA_same_value: %s%s\n",
9235 reg_prefix, regname (reg, 0));
9236 if (*reg_prefix == '\0')
9237 {
9238 fc->col_type[reg] = DW_CFA_same_value;
9239 fc->col_offset[reg] = 0;
9240 }
9241 break;
9242
9243 case DW_CFA_register:
9244 READ_ULEB (reg, start, block_end);
9245 READ_ULEB (roffs, start, block_end);
9246 if (reg >= (unsigned int) fc->ncols)
9247 reg_prefix = bad_reg;
9248 if (! do_debug_frames_interp || *reg_prefix != '\0')
9249 {
9250 printf (" DW_CFA_register: %s%s in ",
9251 reg_prefix, regname (reg, 0));
9252 puts (regname (roffs, 0));
9253 }
9254 if (*reg_prefix == '\0')
9255 {
9256 fc->col_type[reg] = DW_CFA_register;
9257 fc->col_offset[reg] = roffs;
9258 }
9259 break;
9260
9261 case DW_CFA_remember_state:
9262 if (! do_debug_frames_interp)
9263 printf (" DW_CFA_remember_state\n");
9264 rs = (Frame_Chunk *) xmalloc (sizeof (Frame_Chunk));
9265 rs->cfa_offset = fc->cfa_offset;
9266 rs->cfa_reg = fc->cfa_reg;
9267 rs->ra = fc->ra;
9268 rs->cfa_exp = fc->cfa_exp;
9269 rs->ncols = fc->ncols;
9270 rs->col_type = (short int *) xcmalloc (rs->ncols,
9271 sizeof (* rs->col_type));
9272 rs->col_offset = (int *) xcmalloc (rs->ncols, sizeof (* rs->col_offset));
9273 memcpy (rs->col_type, fc->col_type, rs->ncols * sizeof (* fc->col_type));
9274 memcpy (rs->col_offset, fc->col_offset, rs->ncols * sizeof (* fc->col_offset));
9275 rs->next = remembered_state;
9276 remembered_state = rs;
9277 break;
9278
9279 case DW_CFA_restore_state:
9280 if (! do_debug_frames_interp)
9281 printf (" DW_CFA_restore_state\n");
9282 rs = remembered_state;
9283 if (rs)
9284 {
9285 remembered_state = rs->next;
9286 fc->cfa_offset = rs->cfa_offset;
9287 fc->cfa_reg = rs->cfa_reg;
9288 fc->ra = rs->ra;
9289 fc->cfa_exp = rs->cfa_exp;
9290 if (frame_need_space (fc, rs->ncols - 1) < 0)
9291 {
9292 warn (_("Invalid column number in saved frame state\n"));
9293 fc->ncols = 0;
9294 break;
9295 }
9296 memcpy (fc->col_type, rs->col_type, rs->ncols * sizeof (* rs->col_type));
9297 memcpy (fc->col_offset, rs->col_offset,
9298 rs->ncols * sizeof (* rs->col_offset));
9299 free (rs->col_type);
9300 free (rs->col_offset);
9301 free (rs);
9302 }
9303 else if (do_debug_frames_interp)
9304 printf ("Mismatched DW_CFA_restore_state\n");
9305 break;
9306
9307 case DW_CFA_def_cfa:
9308 READ_ULEB (fc->cfa_reg, start, block_end);
9309 READ_ULEB (fc->cfa_offset, start, block_end);
9310 fc->cfa_exp = 0;
9311 if (! do_debug_frames_interp)
9312 printf (" DW_CFA_def_cfa: %s ofs %d\n",
9313 regname (fc->cfa_reg, 0), (int) fc->cfa_offset);
9314 break;
9315
9316 case DW_CFA_def_cfa_register:
9317 READ_ULEB (fc->cfa_reg, start, block_end);
9318 fc->cfa_exp = 0;
9319 if (! do_debug_frames_interp)
9320 printf (" DW_CFA_def_cfa_register: %s\n",
9321 regname (fc->cfa_reg, 0));
9322 break;
9323
9324 case DW_CFA_def_cfa_offset:
9325 READ_ULEB (fc->cfa_offset, start, block_end);
9326 if (! do_debug_frames_interp)
9327 printf (" DW_CFA_def_cfa_offset: %d\n", (int) fc->cfa_offset);
9328 break;
9329
9330 case DW_CFA_nop:
9331 if (! do_debug_frames_interp)
9332 printf (" DW_CFA_nop\n");
9333 break;
9334
9335 case DW_CFA_def_cfa_expression:
9336 READ_ULEB (ul, start, block_end);
9337 if (ul > (size_t) (block_end - start))
9338 {
9339 printf (_(" DW_CFA_def_cfa_expression: <corrupt len %lu>\n"), ul);
9340 break;
9341 }
9342 if (! do_debug_frames_interp)
9343 {
9344 printf (" DW_CFA_def_cfa_expression (");
9345 decode_location_expression (start, eh_addr_size, 0, -1,
9346 ul, 0, section);
9347 printf (")\n");
9348 }
9349 fc->cfa_exp = 1;
9350 start += ul;
9351 break;
9352
9353 case DW_CFA_expression:
9354 READ_ULEB (reg, start, block_end);
9355 READ_ULEB (ul, start, block_end);
9356 if (reg >= (unsigned int) fc->ncols)
9357 reg_prefix = bad_reg;
9358 /* PR 17512: file: 069-133014-0.006. */
9359 /* PR 17512: file: 98c02eb4. */
9360 if (ul > (size_t) (block_end - start))
9361 {
9362 printf (_(" DW_CFA_expression: <corrupt len %lu>\n"), ul);
9363 break;
9364 }
9365 if (! do_debug_frames_interp || *reg_prefix != '\0')
9366 {
9367 printf (" DW_CFA_expression: %s%s (",
9368 reg_prefix, regname (reg, 0));
9369 decode_location_expression (start, eh_addr_size, 0, -1,
9370 ul, 0, section);
9371 printf (")\n");
9372 }
9373 if (*reg_prefix == '\0')
9374 fc->col_type[reg] = DW_CFA_expression;
9375 start += ul;
9376 break;
9377
9378 case DW_CFA_val_expression:
9379 READ_ULEB (reg, start, block_end);
9380 READ_ULEB (ul, start, block_end);
9381 if (reg >= (unsigned int) fc->ncols)
9382 reg_prefix = bad_reg;
9383 if (ul > (size_t) (block_end - start))
9384 {
9385 printf (" DW_CFA_val_expression: <corrupt len %lu>\n", ul);
9386 break;
9387 }
9388 if (! do_debug_frames_interp || *reg_prefix != '\0')
9389 {
9390 printf (" DW_CFA_val_expression: %s%s (",
9391 reg_prefix, regname (reg, 0));
9392 decode_location_expression (start, eh_addr_size, 0, -1,
9393 ul, 0, section);
9394 printf (")\n");
9395 }
9396 if (*reg_prefix == '\0')
9397 fc->col_type[reg] = DW_CFA_val_expression;
9398 start += ul;
9399 break;
9400
9401 case DW_CFA_offset_extended_sf:
9402 READ_ULEB (reg, start, block_end);
9403 READ_SLEB (l, start, block_end);
9404 if (frame_need_space (fc, reg) < 0)
9405 reg_prefix = bad_reg;
9406 if (! do_debug_frames_interp || *reg_prefix != '\0')
9407 printf (" DW_CFA_offset_extended_sf: %s%s at cfa%+ld\n",
9408 reg_prefix, regname (reg, 0),
9409 (long)(l * fc->data_factor));
9410 if (*reg_prefix == '\0')
9411 {
9412 fc->col_type[reg] = DW_CFA_offset;
9413 fc->col_offset[reg] = l * fc->data_factor;
9414 }
9415 break;
9416
9417 case DW_CFA_val_offset_sf:
9418 READ_ULEB (reg, start, block_end);
9419 READ_SLEB (l, start, block_end);
9420 if (frame_need_space (fc, reg) < 0)
9421 reg_prefix = bad_reg;
9422 if (! do_debug_frames_interp || *reg_prefix != '\0')
9423 printf (" DW_CFA_val_offset_sf: %s%s is cfa%+ld\n",
9424 reg_prefix, regname (reg, 0),
9425 (long)(l * fc->data_factor));
9426 if (*reg_prefix == '\0')
9427 {
9428 fc->col_type[reg] = DW_CFA_val_offset;
9429 fc->col_offset[reg] = l * fc->data_factor;
9430 }
9431 break;
9432
9433 case DW_CFA_def_cfa_sf:
9434 READ_ULEB (fc->cfa_reg, start, block_end);
9435 READ_ULEB (fc->cfa_offset, start, block_end);
9436 fc->cfa_offset = fc->cfa_offset * fc->data_factor;
9437 fc->cfa_exp = 0;
9438 if (! do_debug_frames_interp)
9439 printf (" DW_CFA_def_cfa_sf: %s ofs %d\n",
9440 regname (fc->cfa_reg, 0), (int) fc->cfa_offset);
9441 break;
9442
9443 case DW_CFA_def_cfa_offset_sf:
9444 READ_ULEB (fc->cfa_offset, start, block_end);
9445 fc->cfa_offset *= fc->data_factor;
9446 if (! do_debug_frames_interp)
9447 printf (" DW_CFA_def_cfa_offset_sf: %d\n", (int) fc->cfa_offset);
9448 break;
9449
9450 case DW_CFA_MIPS_advance_loc8:
9451 SAFE_BYTE_GET_AND_INC (ofs, start, 8, block_end);
9452 if (do_debug_frames_interp)
9453 frame_display_row (fc, &need_col_headers, &max_regs);
9454 else
9455 printf (" DW_CFA_MIPS_advance_loc8: %ld to %s\n",
9456 (unsigned long) (ofs * fc->code_factor),
9457 dwarf_vmatoa_1 (NULL,
9458 fc->pc_begin + ofs * fc->code_factor,
9459 fc->ptr_size));
9460 fc->pc_begin += ofs * fc->code_factor;
9461 break;
9462
9463 case DW_CFA_GNU_window_save:
9464 if (! do_debug_frames_interp)
9465 printf (" DW_CFA_GNU_window_save\n");
9466 break;
9467
9468 case DW_CFA_GNU_args_size:
9469 READ_ULEB (ul, start, block_end);
9470 if (! do_debug_frames_interp)
9471 printf (" DW_CFA_GNU_args_size: %ld\n", ul);
9472 break;
9473
9474 case DW_CFA_GNU_negative_offset_extended:
9475 READ_ULEB (reg, start, block_end);
9476 READ_SLEB (l, start, block_end);
9477 l = - l;
9478 if (frame_need_space (fc, reg) < 0)
9479 reg_prefix = bad_reg;
9480 if (! do_debug_frames_interp || *reg_prefix != '\0')
9481 printf (" DW_CFA_GNU_negative_offset_extended: %s%s at cfa%+ld\n",
9482 reg_prefix, regname (reg, 0),
9483 (long)(l * fc->data_factor));
9484 if (*reg_prefix == '\0')
9485 {
9486 fc->col_type[reg] = DW_CFA_offset;
9487 fc->col_offset[reg] = l * fc->data_factor;
9488 }
9489 break;
9490
9491 default:
9492 if (op >= DW_CFA_lo_user && op <= DW_CFA_hi_user)
9493 printf (_(" DW_CFA_??? (User defined call frame op: %#x)\n"), op);
9494 else
9495 warn (_("Unsupported or unknown Dwarf Call Frame Instruction number: %#x\n"), op);
9496 start = block_end;
9497 }
9498 }
9499
9500 /* Interpret the CFA - as long as it is not completely full of NOPs. */
9501 if (do_debug_frames_interp && ! all_nops)
9502 frame_display_row (fc, &need_col_headers, &max_regs);
9503
9504 if (fde_fc.col_type != NULL)
9505 {
9506 free (fde_fc.col_type);
9507 fde_fc.col_type = NULL;
9508 }
9509 if (fde_fc.col_offset != NULL)
9510 {
9511 free (fde_fc.col_offset);
9512 fde_fc.col_offset = NULL;
9513 }
9514
9515 start = block_end;
9516 eh_addr_size = saved_eh_addr_size;
9517 }
9518
9519 printf ("\n");
9520
9521 while (remembered_state != NULL)
9522 {
9523 rs = remembered_state;
9524 remembered_state = rs->next;
9525 free (rs->col_type);
9526 free (rs->col_offset);
9527 rs->next = NULL; /* Paranoia. */
9528 free (rs);
9529 }
9530
9531 while (chunks != NULL)
9532 {
9533 rs = chunks;
9534 chunks = rs->next;
9535 free (rs->col_type);
9536 free (rs->col_offset);
9537 rs->next = NULL; /* Paranoia. */
9538 free (rs);
9539 }
9540
9541 while (forward_refs != NULL)
9542 {
9543 rs = forward_refs;
9544 forward_refs = rs->next;
9545 free (rs->col_type);
9546 free (rs->col_offset);
9547 rs->next = NULL; /* Paranoia. */
9548 free (rs);
9549 }
9550
9551 return 1;
9552 }
9553
9554 #undef GET
9555
9556 static int
9557 display_debug_names (struct dwarf_section *section, void *file)
9558 {
9559 unsigned char *hdrptr = section->start;
9560 dwarf_vma unit_length;
9561 unsigned char *unit_start;
9562 const unsigned char *const section_end = section->start + section->size;
9563 unsigned char *unit_end;
9564
9565 introduce (section, false);
9566
9567 load_debug_section_with_follow (str, file);
9568
9569 for (; hdrptr < section_end; hdrptr = unit_end)
9570 {
9571 unsigned int offset_size;
9572 uint16_t dwarf_version, padding;
9573 uint32_t comp_unit_count, local_type_unit_count, foreign_type_unit_count;
9574 uint64_t bucket_count, name_count, abbrev_table_size;
9575 uint32_t augmentation_string_size;
9576 unsigned int i;
9577 bool augmentation_printable;
9578 const char *augmentation_string;
9579 size_t total;
9580
9581 unit_start = hdrptr;
9582
9583 /* Get and check the length of the block. */
9584 SAFE_BYTE_GET_AND_INC (unit_length, hdrptr, 4, section_end);
9585
9586 if (unit_length == 0xffffffff)
9587 {
9588 /* This section is 64-bit DWARF. */
9589 SAFE_BYTE_GET_AND_INC (unit_length, hdrptr, 8, section_end);
9590 offset_size = 8;
9591 }
9592 else
9593 offset_size = 4;
9594
9595 if (unit_length > (size_t) (section_end - hdrptr)
9596 || unit_length < 2 + 2 + 4 * 7)
9597 {
9598 too_short:
9599 warn (_("Debug info is corrupted, %s header at %#lx has length %s\n"),
9600 section->name,
9601 (unsigned long) (unit_start - section->start),
9602 dwarf_vmatoa ("x", unit_length));
9603 return 0;
9604 }
9605 unit_end = hdrptr + unit_length;
9606
9607 /* Get and check the version number. */
9608 SAFE_BYTE_GET_AND_INC (dwarf_version, hdrptr, 2, unit_end);
9609 printf (_("Version %ld\n"), (long) dwarf_version);
9610
9611 /* Prior versions did not exist, and future versions may not be
9612 backwards compatible. */
9613 if (dwarf_version != 5)
9614 {
9615 warn (_("Only DWARF version 5 .debug_names "
9616 "is currently supported.\n"));
9617 return 0;
9618 }
9619
9620 SAFE_BYTE_GET_AND_INC (padding, hdrptr, 2, unit_end);
9621 if (padding != 0)
9622 warn (_("Padding field of .debug_names must be 0 (found 0x%x)\n"),
9623 padding);
9624
9625 SAFE_BYTE_GET_AND_INC (comp_unit_count, hdrptr, 4, unit_end);
9626 if (comp_unit_count == 0)
9627 warn (_("Compilation unit count must be >= 1 in .debug_names\n"));
9628
9629 SAFE_BYTE_GET_AND_INC (local_type_unit_count, hdrptr, 4, unit_end);
9630 SAFE_BYTE_GET_AND_INC (foreign_type_unit_count, hdrptr, 4, unit_end);
9631 SAFE_BYTE_GET_AND_INC (bucket_count, hdrptr, 4, unit_end);
9632 SAFE_BYTE_GET_AND_INC (name_count, hdrptr, 4, unit_end);
9633 SAFE_BYTE_GET_AND_INC (abbrev_table_size, hdrptr, 4, unit_end);
9634
9635 SAFE_BYTE_GET_AND_INC (augmentation_string_size, hdrptr, 4, unit_end);
9636 if (augmentation_string_size % 4 != 0)
9637 {
9638 warn (_("Augmentation string length %u must be rounded up "
9639 "to a multiple of 4 in .debug_names.\n"),
9640 augmentation_string_size);
9641 augmentation_string_size += (-augmentation_string_size) & 3;
9642 }
9643 if (augmentation_string_size > (size_t) (unit_end - hdrptr))
9644 goto too_short;
9645
9646 printf (_("Augmentation string:"));
9647
9648 augmentation_printable = true;
9649 augmentation_string = (const char *) hdrptr;
9650
9651 for (i = 0; i < augmentation_string_size; i++)
9652 {
9653 unsigned char uc;
9654
9655 SAFE_BYTE_GET_AND_INC (uc, hdrptr, 1, unit_end);
9656 printf (" %02x", uc);
9657
9658 if (uc != 0 && !ISPRINT (uc))
9659 augmentation_printable = false;
9660 }
9661
9662 if (augmentation_printable)
9663 {
9664 printf (" (\"");
9665 for (i = 0;
9666 i < augmentation_string_size && augmentation_string[i];
9667 ++i)
9668 putchar (augmentation_string[i]);
9669 printf ("\")");
9670 }
9671 putchar ('\n');
9672
9673 printf (_("CU table:\n"));
9674 if (_mul_overflow (comp_unit_count, offset_size, &total)
9675 || total > (size_t) (unit_end - hdrptr))
9676 goto too_short;
9677 for (i = 0; i < comp_unit_count; i++)
9678 {
9679 uint64_t cu_offset;
9680
9681 SAFE_BYTE_GET_AND_INC (cu_offset, hdrptr, offset_size, unit_end);
9682 printf (_("[%3u] 0x%lx\n"), i, (unsigned long) cu_offset);
9683 }
9684 putchar ('\n');
9685
9686 printf (_("TU table:\n"));
9687 if (_mul_overflow (local_type_unit_count, offset_size, &total)
9688 || total > (size_t) (unit_end - hdrptr))
9689 goto too_short;
9690 for (i = 0; i < local_type_unit_count; i++)
9691 {
9692 uint64_t tu_offset;
9693
9694 SAFE_BYTE_GET_AND_INC (tu_offset, hdrptr, offset_size, unit_end);
9695 printf (_("[%3u] 0x%lx\n"), i, (unsigned long) tu_offset);
9696 }
9697 putchar ('\n');
9698
9699 printf (_("Foreign TU table:\n"));
9700 if (_mul_overflow (foreign_type_unit_count, 8, &total)
9701 || total > (size_t) (unit_end - hdrptr))
9702 goto too_short;
9703 for (i = 0; i < foreign_type_unit_count; i++)
9704 {
9705 uint64_t signature;
9706
9707 SAFE_BYTE_GET_AND_INC (signature, hdrptr, 8, unit_end);
9708 printf (_("[%3u] "), i);
9709 print_dwarf_vma (signature, 8);
9710 putchar ('\n');
9711 }
9712 putchar ('\n');
9713
9714 uint64_t xtra = (bucket_count * sizeof (uint32_t)
9715 + name_count * (sizeof (uint32_t) + 2 * offset_size)
9716 + abbrev_table_size);
9717 if (xtra > (size_t) (unit_end - hdrptr))
9718 {
9719 warn (_("Entry pool offset (0x%lx) exceeds unit size 0x%lx "
9720 "for unit 0x%lx in the debug_names\n"),
9721 (long) xtra,
9722 (long) (unit_end - unit_start),
9723 (long) (unit_start - section->start));
9724 return 0;
9725 }
9726 const uint32_t *const hash_table_buckets = (uint32_t *) hdrptr;
9727 hdrptr += bucket_count * sizeof (uint32_t);
9728 const uint32_t *const hash_table_hashes = (uint32_t *) hdrptr;
9729 hdrptr += name_count * sizeof (uint32_t);
9730 unsigned char *const name_table_string_offsets = hdrptr;
9731 hdrptr += name_count * offset_size;
9732 unsigned char *const name_table_entry_offsets = hdrptr;
9733 hdrptr += name_count * offset_size;
9734 unsigned char *const abbrev_table = hdrptr;
9735 hdrptr += abbrev_table_size;
9736 const unsigned char *const abbrev_table_end = hdrptr;
9737 unsigned char *const entry_pool = hdrptr;
9738
9739 size_t buckets_filled = 0;
9740 size_t bucketi;
9741 for (bucketi = 0; bucketi < bucket_count; bucketi++)
9742 {
9743 const uint32_t bucket = hash_table_buckets[bucketi];
9744
9745 if (bucket != 0)
9746 ++buckets_filled;
9747 }
9748 printf (ngettext ("Used %zu of %lu bucket.\n",
9749 "Used %zu of %lu buckets.\n",
9750 bucket_count),
9751 buckets_filled, (unsigned long) bucket_count);
9752
9753 uint32_t hash_prev = 0;
9754 size_t hash_clash_count = 0;
9755 size_t longest_clash = 0;
9756 size_t this_length = 0;
9757 size_t hashi;
9758 for (hashi = 0; hashi < name_count; hashi++)
9759 {
9760 const uint32_t hash_this = hash_table_hashes[hashi];
9761
9762 if (hashi > 0)
9763 {
9764 if (hash_prev % bucket_count == hash_this % bucket_count)
9765 {
9766 ++hash_clash_count;
9767 ++this_length;
9768 longest_clash = MAX (longest_clash, this_length);
9769 }
9770 else
9771 this_length = 0;
9772 }
9773 hash_prev = hash_this;
9774 }
9775 printf (_("Out of %lu items there are %zu bucket clashes"
9776 " (longest of %zu entries).\n"),
9777 (unsigned long) name_count, hash_clash_count, longest_clash);
9778 assert (name_count == buckets_filled + hash_clash_count);
9779
9780 struct abbrev_lookup_entry
9781 {
9782 dwarf_vma abbrev_tag;
9783 unsigned char *abbrev_lookup_ptr;
9784 };
9785 struct abbrev_lookup_entry *abbrev_lookup = NULL;
9786 size_t abbrev_lookup_used = 0;
9787 size_t abbrev_lookup_allocated = 0;
9788
9789 unsigned char *abbrevptr = abbrev_table;
9790 for (;;)
9791 {
9792 dwarf_vma abbrev_tag;
9793
9794 READ_ULEB (abbrev_tag, abbrevptr, abbrev_table_end);
9795 if (abbrev_tag == 0)
9796 break;
9797 if (abbrev_lookup_used == abbrev_lookup_allocated)
9798 {
9799 abbrev_lookup_allocated = MAX (0x100,
9800 abbrev_lookup_allocated * 2);
9801 abbrev_lookup = xrealloc (abbrev_lookup,
9802 (abbrev_lookup_allocated
9803 * sizeof (*abbrev_lookup)));
9804 }
9805 assert (abbrev_lookup_used < abbrev_lookup_allocated);
9806 struct abbrev_lookup_entry *entry;
9807 for (entry = abbrev_lookup;
9808 entry < abbrev_lookup + abbrev_lookup_used;
9809 entry++)
9810 if (entry->abbrev_tag == abbrev_tag)
9811 {
9812 warn (_("Duplicate abbreviation tag %lu "
9813 "in unit 0x%lx in the debug_names\n"),
9814 (long) abbrev_tag, (long) (unit_start - section->start));
9815 break;
9816 }
9817 entry = &abbrev_lookup[abbrev_lookup_used++];
9818 entry->abbrev_tag = abbrev_tag;
9819 entry->abbrev_lookup_ptr = abbrevptr;
9820
9821 /* Skip DWARF tag. */
9822 SKIP_ULEB (abbrevptr, abbrev_table_end);
9823 for (;;)
9824 {
9825 dwarf_vma xindex, form;
9826
9827 READ_ULEB (xindex, abbrevptr, abbrev_table_end);
9828 READ_ULEB (form, abbrevptr, abbrev_table_end);
9829 if (xindex == 0 && form == 0)
9830 break;
9831 }
9832 }
9833
9834 printf (_("\nSymbol table:\n"));
9835 uint32_t namei;
9836 for (namei = 0; namei < name_count; ++namei)
9837 {
9838 uint64_t string_offset, entry_offset;
9839 unsigned char *p;
9840
9841 p = name_table_string_offsets + namei * offset_size;
9842 SAFE_BYTE_GET (string_offset, p, offset_size, unit_end);
9843 p = name_table_entry_offsets + namei * offset_size;
9844 SAFE_BYTE_GET (entry_offset, p, offset_size, unit_end);
9845
9846 printf ("[%3u] #%08x %s:", namei, hash_table_hashes[namei],
9847 fetch_indirect_string (string_offset));
9848
9849 unsigned char *entryptr = entry_pool + entry_offset;
9850
9851 /* We need to scan first whether there is a single or multiple
9852 entries. TAGNO is -2 for the first entry, it is -1 for the
9853 initial tag read of the second entry, then it becomes 0 for the
9854 first entry for real printing etc. */
9855 int tagno = -2;
9856 /* Initialize it due to a false compiler warning. */
9857 dwarf_vma second_abbrev_tag = -1;
9858 for (;;)
9859 {
9860 dwarf_vma abbrev_tag;
9861 dwarf_vma dwarf_tag;
9862 const struct abbrev_lookup_entry *entry;
9863
9864 READ_ULEB (abbrev_tag, entryptr, unit_end);
9865 if (tagno == -1)
9866 {
9867 second_abbrev_tag = abbrev_tag;
9868 tagno = 0;
9869 entryptr = entry_pool + entry_offset;
9870 continue;
9871 }
9872 if (abbrev_tag == 0)
9873 break;
9874 if (tagno >= 0)
9875 printf ("%s<%lu>",
9876 (tagno == 0 && second_abbrev_tag == 0 ? " " : "\n\t"),
9877 (unsigned long) abbrev_tag);
9878
9879 for (entry = abbrev_lookup;
9880 entry < abbrev_lookup + abbrev_lookup_used;
9881 entry++)
9882 if (entry->abbrev_tag == abbrev_tag)
9883 break;
9884 if (entry >= abbrev_lookup + abbrev_lookup_used)
9885 {
9886 warn (_("Undefined abbreviation tag %lu "
9887 "in unit 0x%lx in the debug_names\n"),
9888 (long) abbrev_tag,
9889 (long) (unit_start - section->start));
9890 break;
9891 }
9892 abbrevptr = entry->abbrev_lookup_ptr;
9893 READ_ULEB (dwarf_tag, abbrevptr, abbrev_table_end);
9894 if (tagno >= 0)
9895 printf (" %s", get_TAG_name (dwarf_tag));
9896 for (;;)
9897 {
9898 dwarf_vma xindex, form;
9899
9900 READ_ULEB (xindex, abbrevptr, abbrev_table_end);
9901 READ_ULEB (form, abbrevptr, abbrev_table_end);
9902 if (xindex == 0 && form == 0)
9903 break;
9904
9905 if (tagno >= 0)
9906 printf (" %s", get_IDX_name (xindex));
9907 entryptr = read_and_display_attr_value (0, form, 0,
9908 unit_start, entryptr, unit_end,
9909 0, 0, offset_size,
9910 dwarf_version, NULL,
9911 (tagno < 0), NULL,
9912 NULL, '=', -1);
9913 }
9914 ++tagno;
9915 }
9916 if (tagno <= 0)
9917 printf (_(" <no entries>"));
9918 putchar ('\n');
9919 }
9920
9921 free (abbrev_lookup);
9922 }
9923
9924 return 1;
9925 }
9926
9927 static int
9928 display_debug_links (struct dwarf_section * section,
9929 void * file ATTRIBUTE_UNUSED)
9930 {
9931 const unsigned char * filename;
9932 unsigned int filelen;
9933
9934 introduce (section, false);
9935
9936 /* The .gnu_debuglink section is formatted as:
9937 (c-string) Filename.
9938 (padding) If needed to reach a 4 byte boundary.
9939 (uint32_t) CRC32 value.
9940
9941 The .gun_debugaltlink section is formatted as:
9942 (c-string) Filename.
9943 (binary) Build-ID. */
9944
9945 filename = section->start;
9946 filelen = strnlen ((const char *) filename, section->size);
9947 if (filelen == section->size)
9948 {
9949 warn (_("The debuglink filename is corrupt/missing\n"));
9950 return 0;
9951 }
9952
9953 printf (_(" Separate debug info file: %s\n"), filename);
9954
9955 if (startswith (section->name, ".gnu_debuglink"))
9956 {
9957 unsigned int crc32;
9958 unsigned int crc_offset;
9959
9960 crc_offset = filelen + 1;
9961 crc_offset = (crc_offset + 3) & ~3;
9962 if (crc_offset + 4 > section->size)
9963 {
9964 warn (_("CRC offset missing/truncated\n"));
9965 return 0;
9966 }
9967
9968 crc32 = byte_get (filename + crc_offset, 4);
9969
9970 printf (_(" CRC value: %#x\n"), crc32);
9971
9972 if (crc_offset + 4 < section->size)
9973 {
9974 warn (_("There are %#lx extraneous bytes at the end of the section\n"),
9975 (long)(section->size - (crc_offset + 4)));
9976 return 0;
9977 }
9978 }
9979 else /* startswith (section->name, ".gnu_debugaltlink") */
9980 {
9981 const unsigned char * build_id = section->start + filelen + 1;
9982 bfd_size_type build_id_len = section->size - (filelen + 1);
9983 bfd_size_type printed;
9984
9985 /* FIXME: Should we support smaller build-id notes ? */
9986 if (build_id_len < 0x14)
9987 {
9988 warn (_("Build-ID is too short (%#lx bytes)\n"), (long) build_id_len);
9989 return 0;
9990 }
9991
9992 printed = printf (_(" Build-ID (%#lx bytes):"), (long) build_id_len);
9993 display_data (printed, build_id, build_id_len);
9994 putchar ('\n');
9995 }
9996
9997 putchar ('\n');
9998 return 1;
9999 }
10000
10001 static int
10002 display_gdb_index (struct dwarf_section *section,
10003 void *file ATTRIBUTE_UNUSED)
10004 {
10005 unsigned char *start = section->start;
10006 uint32_t version;
10007 uint32_t cu_list_offset, tu_list_offset;
10008 uint32_t address_table_offset, symbol_table_offset, constant_pool_offset;
10009 unsigned int cu_list_elements, tu_list_elements;
10010 unsigned int address_table_size, symbol_table_slots;
10011 unsigned char *cu_list, *tu_list;
10012 unsigned char *address_table, *symbol_table, *constant_pool;
10013 unsigned int i;
10014
10015 /* The documentation for the format of this file is in gdb/dwarf2read.c. */
10016
10017 introduce (section, false);
10018
10019 if (section->size < 6 * sizeof (uint32_t))
10020 {
10021 warn (_("Truncated header in the %s section.\n"), section->name);
10022 return 0;
10023 }
10024
10025 version = byte_get_little_endian (start, 4);
10026 printf (_("Version %ld\n"), (long) version);
10027
10028 /* Prior versions are obsolete, and future versions may not be
10029 backwards compatible. */
10030 if (version < 3 || version > 8)
10031 {
10032 warn (_("Unsupported version %lu.\n"), (unsigned long) version);
10033 return 0;
10034 }
10035 if (version < 4)
10036 warn (_("The address table data in version 3 may be wrong.\n"));
10037 if (version < 5)
10038 warn (_("Version 4 does not support case insensitive lookups.\n"));
10039 if (version < 6)
10040 warn (_("Version 5 does not include inlined functions.\n"));
10041 if (version < 7)
10042 warn (_("Version 6 does not include symbol attributes.\n"));
10043 /* Version 7 indices generated by Gold have bad type unit references,
10044 PR binutils/15021. But we don't know if the index was generated by
10045 Gold or not, so to avoid worrying users with gdb-generated indices
10046 we say nothing for version 7 here. */
10047
10048 cu_list_offset = byte_get_little_endian (start + 4, 4);
10049 tu_list_offset = byte_get_little_endian (start + 8, 4);
10050 address_table_offset = byte_get_little_endian (start + 12, 4);
10051 symbol_table_offset = byte_get_little_endian (start + 16, 4);
10052 constant_pool_offset = byte_get_little_endian (start + 20, 4);
10053
10054 if (cu_list_offset > section->size
10055 || tu_list_offset > section->size
10056 || address_table_offset > section->size
10057 || symbol_table_offset > section->size
10058 || constant_pool_offset > section->size)
10059 {
10060 warn (_("Corrupt header in the %s section.\n"), section->name);
10061 return 0;
10062 }
10063
10064 /* PR 17531: file: 418d0a8a. */
10065 if (tu_list_offset < cu_list_offset)
10066 {
10067 warn (_("TU offset (%x) is less than CU offset (%x)\n"),
10068 tu_list_offset, cu_list_offset);
10069 return 0;
10070 }
10071
10072 cu_list_elements = (tu_list_offset - cu_list_offset) / 8;
10073
10074 if (address_table_offset < tu_list_offset)
10075 {
10076 warn (_("Address table offset (%x) is less than TU offset (%x)\n"),
10077 address_table_offset, tu_list_offset);
10078 return 0;
10079 }
10080
10081 tu_list_elements = (address_table_offset - tu_list_offset) / 8;
10082
10083 /* PR 17531: file: 18a47d3d. */
10084 if (symbol_table_offset < address_table_offset)
10085 {
10086 warn (_("Symbol table offset (%x) is less then Address table offset (%x)\n"),
10087 symbol_table_offset, address_table_offset);
10088 return 0;
10089 }
10090
10091 address_table_size = symbol_table_offset - address_table_offset;
10092
10093 if (constant_pool_offset < symbol_table_offset)
10094 {
10095 warn (_("Constant pool offset (%x) is less than symbol table offset (%x)\n"),
10096 constant_pool_offset, symbol_table_offset);
10097 return 0;
10098 }
10099
10100 symbol_table_slots = (constant_pool_offset - symbol_table_offset) / 8;
10101
10102 cu_list = start + cu_list_offset;
10103 tu_list = start + tu_list_offset;
10104 address_table = start + address_table_offset;
10105 symbol_table = start + symbol_table_offset;
10106 constant_pool = start + constant_pool_offset;
10107
10108 if (address_table_offset + address_table_size > section->size)
10109 {
10110 warn (_("Address table extends beyond end of section.\n"));
10111 return 0;
10112 }
10113
10114 printf (_("\nCU table:\n"));
10115 for (i = 0; i < cu_list_elements; i += 2)
10116 {
10117 uint64_t cu_offset = byte_get_little_endian (cu_list + i * 8, 8);
10118 uint64_t cu_length = byte_get_little_endian (cu_list + i * 8 + 8, 8);
10119
10120 printf (_("[%3u] 0x%lx - 0x%lx\n"), i / 2,
10121 (unsigned long) cu_offset,
10122 (unsigned long) (cu_offset + cu_length - 1));
10123 }
10124
10125 printf (_("\nTU table:\n"));
10126 for (i = 0; i < tu_list_elements; i += 3)
10127 {
10128 uint64_t tu_offset = byte_get_little_endian (tu_list + i * 8, 8);
10129 uint64_t type_offset = byte_get_little_endian (tu_list + i * 8 + 8, 8);
10130 uint64_t signature = byte_get_little_endian (tu_list + i * 8 + 16, 8);
10131
10132 printf (_("[%3u] 0x%lx 0x%lx "), i / 3,
10133 (unsigned long) tu_offset,
10134 (unsigned long) type_offset);
10135 print_dwarf_vma (signature, 8);
10136 printf ("\n");
10137 }
10138
10139 printf (_("\nAddress table:\n"));
10140 for (i = 0; i < address_table_size && i <= address_table_size - (2 * 8 + 4);
10141 i += 2 * 8 + 4)
10142 {
10143 uint64_t low = byte_get_little_endian (address_table + i, 8);
10144 uint64_t high = byte_get_little_endian (address_table + i + 8, 8);
10145 uint32_t cu_index = byte_get_little_endian (address_table + i + 16, 4);
10146
10147 print_dwarf_vma (low, 8);
10148 print_dwarf_vma (high, 8);
10149 printf (_("%lu\n"), (unsigned long) cu_index);
10150 }
10151
10152 printf (_("\nSymbol table:\n"));
10153 for (i = 0; i < symbol_table_slots; ++i)
10154 {
10155 uint32_t name_offset = byte_get_little_endian (symbol_table + i * 8, 4);
10156 uint32_t cu_vector_offset = byte_get_little_endian (symbol_table + i * 8 + 4, 4);
10157 uint32_t num_cus, cu;
10158
10159 if (name_offset != 0
10160 || cu_vector_offset != 0)
10161 {
10162 unsigned int j;
10163
10164 /* PR 17531: file: 5b7b07ad. */
10165 if (name_offset >= section->size - constant_pool_offset)
10166 {
10167 printf (_("[%3u] <corrupt offset: %x>"), i, name_offset);
10168 warn (_("Corrupt name offset of 0x%x found for symbol table slot %d\n"),
10169 name_offset, i);
10170 }
10171 else
10172 printf ("[%3u] %.*s:", i,
10173 (int) (section->size - (constant_pool_offset + name_offset)),
10174 constant_pool + name_offset);
10175
10176 if (section->size - constant_pool_offset < 4
10177 || cu_vector_offset > section->size - constant_pool_offset - 4)
10178 {
10179 printf (_("<invalid CU vector offset: %x>\n"), cu_vector_offset);
10180 warn (_("Corrupt CU vector offset of 0x%x found for symbol table slot %d\n"),
10181 cu_vector_offset, i);
10182 continue;
10183 }
10184
10185 num_cus = byte_get_little_endian (constant_pool + cu_vector_offset, 4);
10186
10187 if ((uint64_t) num_cus * 4 > section->size - (constant_pool_offset
10188 + cu_vector_offset + 4))
10189 {
10190 printf ("<invalid number of CUs: %d>\n", num_cus);
10191 warn (_("Invalid number of CUs (0x%x) for symbol table slot %d\n"),
10192 num_cus, i);
10193 continue;
10194 }
10195
10196 if (num_cus > 1)
10197 printf ("\n");
10198
10199 for (j = 0; j < num_cus; ++j)
10200 {
10201 int is_static;
10202 gdb_index_symbol_kind kind;
10203
10204 cu = byte_get_little_endian (constant_pool + cu_vector_offset + 4 + j * 4, 4);
10205 is_static = GDB_INDEX_SYMBOL_STATIC_VALUE (cu);
10206 kind = GDB_INDEX_SYMBOL_KIND_VALUE (cu);
10207 cu = GDB_INDEX_CU_VALUE (cu);
10208 /* Convert to TU number if it's for a type unit. */
10209 if (cu >= cu_list_elements / 2)
10210 printf ("%cT%lu", num_cus > 1 ? '\t' : ' ',
10211 (unsigned long) (cu - cu_list_elements / 2));
10212 else
10213 printf ("%c%lu", num_cus > 1 ? '\t' : ' ', (unsigned long) cu);
10214
10215 printf (" [%s, %s]",
10216 is_static ? _("static") : _("global"),
10217 get_gdb_index_symbol_kind_name (kind));
10218 if (num_cus > 1)
10219 printf ("\n");
10220 }
10221 if (num_cus <= 1)
10222 printf ("\n");
10223 }
10224 }
10225
10226 return 1;
10227 }
10228
10229 /* Pre-allocate enough space for the CU/TU sets needed. */
10230
10231 static void
10232 prealloc_cu_tu_list (unsigned int nshndx)
10233 {
10234 if (shndx_pool == NULL)
10235 {
10236 shndx_pool_size = nshndx;
10237 shndx_pool_used = 0;
10238 shndx_pool = (unsigned int *) xcmalloc (shndx_pool_size,
10239 sizeof (unsigned int));
10240 }
10241 else
10242 {
10243 shndx_pool_size = shndx_pool_used + nshndx;
10244 shndx_pool = (unsigned int *) xcrealloc (shndx_pool, shndx_pool_size,
10245 sizeof (unsigned int));
10246 }
10247 }
10248
10249 static void
10250 add_shndx_to_cu_tu_entry (unsigned int shndx)
10251 {
10252 if (shndx_pool_used >= shndx_pool_size)
10253 {
10254 error (_("Internal error: out of space in the shndx pool.\n"));
10255 return;
10256 }
10257 shndx_pool [shndx_pool_used++] = shndx;
10258 }
10259
10260 static void
10261 end_cu_tu_entry (void)
10262 {
10263 if (shndx_pool_used >= shndx_pool_size)
10264 {
10265 error (_("Internal error: out of space in the shndx pool.\n"));
10266 return;
10267 }
10268 shndx_pool [shndx_pool_used++] = 0;
10269 }
10270
10271 /* Return the short name of a DWARF section given by a DW_SECT enumerator. */
10272
10273 static const char *
10274 get_DW_SECT_short_name (unsigned int dw_sect)
10275 {
10276 static char buf[16];
10277
10278 switch (dw_sect)
10279 {
10280 case DW_SECT_INFO:
10281 return "info";
10282 case DW_SECT_TYPES:
10283 return "types";
10284 case DW_SECT_ABBREV:
10285 return "abbrev";
10286 case DW_SECT_LINE:
10287 return "line";
10288 case DW_SECT_LOC:
10289 return "loc";
10290 case DW_SECT_STR_OFFSETS:
10291 return "str_off";
10292 case DW_SECT_MACINFO:
10293 return "macinfo";
10294 case DW_SECT_MACRO:
10295 return "macro";
10296 default:
10297 break;
10298 }
10299
10300 snprintf (buf, sizeof (buf), "%d", dw_sect);
10301 return buf;
10302 }
10303
10304 /* Process a CU or TU index. If DO_DISPLAY is true, print the contents.
10305 These sections are extensions for Fission.
10306 See http://gcc.gnu.org/wiki/DebugFissionDWP. */
10307
10308 static int
10309 process_cu_tu_index (struct dwarf_section *section, int do_display)
10310 {
10311 unsigned char *phdr = section->start;
10312 unsigned char *limit = phdr + section->size;
10313 unsigned char *phash;
10314 unsigned char *pindex;
10315 unsigned char *ppool;
10316 unsigned int version;
10317 unsigned int ncols = 0;
10318 unsigned int nused;
10319 unsigned int nslots;
10320 unsigned int i;
10321 unsigned int j;
10322 dwarf_vma signature;
10323 size_t total;
10324
10325 /* PR 17512: file: 002-168123-0.004. */
10326 if (phdr == NULL)
10327 {
10328 warn (_("Section %s is empty\n"), section->name);
10329 return 0;
10330 }
10331 /* PR 17512: file: 002-376-0.004. */
10332 if (section->size < 24)
10333 {
10334 warn (_("Section %s is too small to contain a CU/TU header\n"),
10335 section->name);
10336 return 0;
10337 }
10338
10339 phash = phdr;
10340 SAFE_BYTE_GET_AND_INC (version, phash, 4, limit);
10341 if (version >= 2)
10342 SAFE_BYTE_GET_AND_INC (ncols, phash, 4, limit);
10343 SAFE_BYTE_GET_AND_INC (nused, phash, 4, limit);
10344 SAFE_BYTE_GET_AND_INC (nslots, phash, 4, limit);
10345
10346 pindex = phash + (size_t) nslots * 8;
10347 ppool = pindex + (size_t) nslots * 4;
10348
10349 if (do_display)
10350 {
10351 introduce (section, false);
10352
10353 printf (_(" Version: %u\n"), version);
10354 if (version >= 2)
10355 printf (_(" Number of columns: %u\n"), ncols);
10356 printf (_(" Number of used entries: %u\n"), nused);
10357 printf (_(" Number of slots: %u\n\n"), nslots);
10358 }
10359
10360 /* PR 17531: file: 45d69832. */
10361 if (_mul_overflow ((size_t) nslots, 12, &total)
10362 || total > (size_t) (limit - phash))
10363 {
10364 warn (ngettext ("Section %s is too small for %u slot\n",
10365 "Section %s is too small for %u slots\n",
10366 nslots),
10367 section->name, nslots);
10368 return 0;
10369 }
10370
10371 if (version == 1)
10372 {
10373 if (!do_display)
10374 prealloc_cu_tu_list ((limit - ppool) / 4);
10375 for (i = 0; i < nslots; i++)
10376 {
10377 unsigned char *shndx_list;
10378 unsigned int shndx;
10379
10380 SAFE_BYTE_GET (signature, phash, 8, limit);
10381 if (signature != 0)
10382 {
10383 SAFE_BYTE_GET (j, pindex, 4, limit);
10384 shndx_list = ppool + j * 4;
10385 /* PR 17531: file: 705e010d. */
10386 if (shndx_list < ppool)
10387 {
10388 warn (_("Section index pool located before start of section\n"));
10389 return 0;
10390 }
10391
10392 if (do_display)
10393 printf (_(" [%3d] Signature: 0x%s Sections: "),
10394 i, dwarf_vmatoa ("x", signature));
10395 for (;;)
10396 {
10397 if (shndx_list >= limit)
10398 {
10399 warn (_("Section %s too small for shndx pool\n"),
10400 section->name);
10401 return 0;
10402 }
10403 SAFE_BYTE_GET (shndx, shndx_list, 4, limit);
10404 if (shndx == 0)
10405 break;
10406 if (do_display)
10407 printf (" %d", shndx);
10408 else
10409 add_shndx_to_cu_tu_entry (shndx);
10410 shndx_list += 4;
10411 }
10412 if (do_display)
10413 printf ("\n");
10414 else
10415 end_cu_tu_entry ();
10416 }
10417 phash += 8;
10418 pindex += 4;
10419 }
10420 }
10421 else if (version == 2)
10422 {
10423 unsigned int val;
10424 unsigned int dw_sect;
10425 unsigned char *ph = phash;
10426 unsigned char *pi = pindex;
10427 unsigned char *poffsets = ppool + (size_t) ncols * 4;
10428 unsigned char *psizes = poffsets + (size_t) nused * ncols * 4;
10429 bool is_tu_index;
10430 struct cu_tu_set *this_set = NULL;
10431 unsigned int row;
10432 unsigned char *prow;
10433 size_t temp;
10434
10435 is_tu_index = strcmp (section->name, ".debug_tu_index") == 0;
10436
10437 /* PR 17531: file: 0dd159bf.
10438 Check for integer overflow (can occur when size_t is 32-bit)
10439 with overlarge ncols or nused values. */
10440 if (nused == -1u
10441 || _mul_overflow ((size_t) ncols, 4, &temp)
10442 || _mul_overflow ((size_t) nused + 1, temp, &total)
10443 || total > (size_t) (limit - ppool))
10444 {
10445 warn (_("Section %s too small for offset and size tables\n"),
10446 section->name);
10447 return 0;
10448 }
10449
10450 if (do_display)
10451 {
10452 printf (_(" Offset table\n"));
10453 printf (" slot %-16s ",
10454 is_tu_index ? _("signature") : _("dwo_id"));
10455 }
10456 else
10457 {
10458 if (is_tu_index)
10459 {
10460 tu_count = nused;
10461 tu_sets = xcalloc2 (nused, sizeof (struct cu_tu_set));
10462 this_set = tu_sets;
10463 }
10464 else
10465 {
10466 cu_count = nused;
10467 cu_sets = xcalloc2 (nused, sizeof (struct cu_tu_set));
10468 this_set = cu_sets;
10469 }
10470 }
10471
10472 if (do_display)
10473 {
10474 for (j = 0; j < ncols; j++)
10475 {
10476 unsigned char *p = ppool + j * 4;
10477 SAFE_BYTE_GET (dw_sect, p, 4, limit);
10478 printf (" %8s", get_DW_SECT_short_name (dw_sect));
10479 }
10480 printf ("\n");
10481 }
10482
10483 for (i = 0; i < nslots; i++)
10484 {
10485 SAFE_BYTE_GET (signature, ph, 8, limit);
10486
10487 SAFE_BYTE_GET (row, pi, 4, limit);
10488 if (row != 0)
10489 {
10490 /* PR 17531: file: a05f6ab3. */
10491 if (row > nused)
10492 {
10493 warn (_("Row index (%u) is larger than number of used entries (%u)\n"),
10494 row, nused);
10495 return 0;
10496 }
10497
10498 if (!do_display)
10499 {
10500 size_t num_copy = sizeof (uint64_t);
10501
10502 memcpy (&this_set[row - 1].signature, ph, num_copy);
10503 }
10504
10505 prow = poffsets + (row - 1) * ncols * 4;
10506 if (do_display)
10507 printf (_(" [%3d] 0x%s"),
10508 i, dwarf_vmatoa ("x", signature));
10509 for (j = 0; j < ncols; j++)
10510 {
10511 unsigned char *p = prow + j * 4;
10512 SAFE_BYTE_GET (val, p, 4, limit);
10513 if (do_display)
10514 printf (" %8d", val);
10515 else
10516 {
10517 p = ppool + j * 4;
10518 SAFE_BYTE_GET (dw_sect, p, 4, limit);
10519
10520 /* PR 17531: file: 10796eb3. */
10521 if (dw_sect >= DW_SECT_MAX)
10522 warn (_("Overlarge Dwarf section index detected: %u\n"), dw_sect);
10523 else
10524 this_set [row - 1].section_offsets [dw_sect] = val;
10525 }
10526 }
10527
10528 if (do_display)
10529 printf ("\n");
10530 }
10531 ph += 8;
10532 pi += 4;
10533 }
10534
10535 ph = phash;
10536 pi = pindex;
10537 if (do_display)
10538 {
10539 printf ("\n");
10540 printf (_(" Size table\n"));
10541 printf (" slot %-16s ",
10542 is_tu_index ? _("signature") : _("dwo_id"));
10543 }
10544
10545 for (j = 0; j < ncols; j++)
10546 {
10547 unsigned char *p = ppool + j * 4;
10548 SAFE_BYTE_GET (val, p, 4, limit);
10549 if (do_display)
10550 printf (" %8s", get_DW_SECT_short_name (val));
10551 }
10552
10553 if (do_display)
10554 printf ("\n");
10555
10556 for (i = 0; i < nslots; i++)
10557 {
10558 SAFE_BYTE_GET (signature, ph, 8, limit);
10559
10560 SAFE_BYTE_GET (row, pi, 4, limit);
10561 if (row != 0)
10562 {
10563 prow = psizes + (row - 1) * ncols * 4;
10564
10565 if (do_display)
10566 printf (_(" [%3d] 0x%s"),
10567 i, dwarf_vmatoa ("x", signature));
10568
10569 for (j = 0; j < ncols; j++)
10570 {
10571 unsigned char *p = prow + j * 4;
10572 SAFE_BYTE_GET (val, p, 4, limit);
10573 if (do_display)
10574 printf (" %8d", val);
10575 else
10576 {
10577 p = ppool + j * 4;
10578 SAFE_BYTE_GET (dw_sect, p, 4, limit);
10579 if (dw_sect >= DW_SECT_MAX)
10580 warn (_("Overlarge Dwarf section index detected: %u\n"), dw_sect);
10581 else
10582 this_set [row - 1].section_sizes [dw_sect] = val;
10583 }
10584 }
10585
10586 if (do_display)
10587 printf ("\n");
10588 }
10589
10590 ph += 8;
10591 pi += 4;
10592 }
10593 }
10594 else if (do_display)
10595 printf (_(" Unsupported version (%d)\n"), version);
10596
10597 if (do_display)
10598 printf ("\n");
10599
10600 return 1;
10601 }
10602
10603 static int cu_tu_indexes_read = -1; /* Tri-state variable. */
10604
10605 /* Load the CU and TU indexes if present. This will build a list of
10606 section sets that we can use to associate a .debug_info.dwo section
10607 with its associated .debug_abbrev.dwo section in a .dwp file. */
10608
10609 static bool
10610 load_cu_tu_indexes (void *file)
10611 {
10612 /* If we have already loaded (or tried to load) the CU and TU indexes
10613 then do not bother to repeat the task. */
10614 if (cu_tu_indexes_read == -1)
10615 {
10616 cu_tu_indexes_read = true;
10617
10618 if (load_debug_section_with_follow (dwp_cu_index, file))
10619 if (! process_cu_tu_index (&debug_displays [dwp_cu_index].section, 0))
10620 cu_tu_indexes_read = false;
10621
10622 if (load_debug_section_with_follow (dwp_tu_index, file))
10623 if (! process_cu_tu_index (&debug_displays [dwp_tu_index].section, 0))
10624 cu_tu_indexes_read = false;
10625 }
10626
10627 return (bool) cu_tu_indexes_read;
10628 }
10629
10630 /* Find the set of sections that includes section SHNDX. */
10631
10632 unsigned int *
10633 find_cu_tu_set (void *file, unsigned int shndx)
10634 {
10635 unsigned int i;
10636
10637 if (! load_cu_tu_indexes (file))
10638 return NULL;
10639
10640 /* Find SHNDX in the shndx pool. */
10641 for (i = 0; i < shndx_pool_used; i++)
10642 if (shndx_pool [i] == shndx)
10643 break;
10644
10645 if (i >= shndx_pool_used)
10646 return NULL;
10647
10648 /* Now backup to find the first entry in the set. */
10649 while (i > 0 && shndx_pool [i - 1] != 0)
10650 i--;
10651
10652 return shndx_pool + i;
10653 }
10654
10655 /* Display a .debug_cu_index or .debug_tu_index section. */
10656
10657 static int
10658 display_cu_index (struct dwarf_section *section, void *file ATTRIBUTE_UNUSED)
10659 {
10660 return process_cu_tu_index (section, 1);
10661 }
10662
10663 static int
10664 display_debug_not_supported (struct dwarf_section *section,
10665 void *file ATTRIBUTE_UNUSED)
10666 {
10667 printf (_("Displaying the debug contents of section %s is not yet supported.\n"),
10668 section->name);
10669
10670 return 1;
10671 }
10672
10673 /* Like malloc, but takes two parameters like calloc.
10674 Verifies that the first parameter is not too large.
10675 Note: does *not* initialise the allocated memory to zero. */
10676
10677 void *
10678 cmalloc (size_t nmemb, size_t size)
10679 {
10680 /* Check for overflow. */
10681 if (nmemb >= ~(size_t) 0 / size)
10682 return NULL;
10683
10684 return xmalloc (nmemb * size);
10685 }
10686
10687 /* Like xmalloc, but takes two parameters like calloc.
10688 Verifies that the first parameter is not too large.
10689 Note: does *not* initialise the allocated memory to zero. */
10690
10691 void *
10692 xcmalloc (size_t nmemb, size_t size)
10693 {
10694 /* Check for overflow. */
10695 if (nmemb >= ~(size_t) 0 / size)
10696 {
10697 fprintf (stderr,
10698 _("Attempt to allocate an array with an excessive number of elements: 0x%lx\n"),
10699 (long) nmemb);
10700 xexit (1);
10701 }
10702
10703 return xmalloc (nmemb * size);
10704 }
10705
10706 /* Like xrealloc, but takes three parameters.
10707 Verifies that the second parameter is not too large.
10708 Note: does *not* initialise any new memory to zero. */
10709
10710 void *
10711 xcrealloc (void *ptr, size_t nmemb, size_t size)
10712 {
10713 /* Check for overflow. */
10714 if (nmemb >= ~(size_t) 0 / size)
10715 {
10716 error (_("Attempt to re-allocate an array with an excessive number of elements: 0x%lx\n"),
10717 (long) nmemb);
10718 xexit (1);
10719 }
10720
10721 return xrealloc (ptr, nmemb * size);
10722 }
10723
10724 /* Like xcalloc, but verifies that the first parameter is not too large. */
10725
10726 void *
10727 xcalloc2 (size_t nmemb, size_t size)
10728 {
10729 /* Check for overflow. */
10730 if (nmemb >= ~(size_t) 0 / size)
10731 {
10732 error (_("Attempt to allocate a zero'ed array with an excessive number of elements: 0x%lx\n"),
10733 (long) nmemb);
10734 xexit (1);
10735 }
10736
10737 return xcalloc (nmemb, size);
10738 }
10739
10740 static unsigned long
10741 calc_gnu_debuglink_crc32 (unsigned long crc,
10742 const unsigned char * buf,
10743 bfd_size_type len)
10744 {
10745 static const unsigned long crc32_table[256] =
10746 {
10747 0x00000000, 0x77073096, 0xee0e612c, 0x990951ba, 0x076dc419,
10748 0x706af48f, 0xe963a535, 0x9e6495a3, 0x0edb8832, 0x79dcb8a4,
10749 0xe0d5e91e, 0x97d2d988, 0x09b64c2b, 0x7eb17cbd, 0xe7b82d07,
10750 0x90bf1d91, 0x1db71064, 0x6ab020f2, 0xf3b97148, 0x84be41de,
10751 0x1adad47d, 0x6ddde4eb, 0xf4d4b551, 0x83d385c7, 0x136c9856,
10752 0x646ba8c0, 0xfd62f97a, 0x8a65c9ec, 0x14015c4f, 0x63066cd9,
10753 0xfa0f3d63, 0x8d080df5, 0x3b6e20c8, 0x4c69105e, 0xd56041e4,
10754 0xa2677172, 0x3c03e4d1, 0x4b04d447, 0xd20d85fd, 0xa50ab56b,
10755 0x35b5a8fa, 0x42b2986c, 0xdbbbc9d6, 0xacbcf940, 0x32d86ce3,
10756 0x45df5c75, 0xdcd60dcf, 0xabd13d59, 0x26d930ac, 0x51de003a,
10757 0xc8d75180, 0xbfd06116, 0x21b4f4b5, 0x56b3c423, 0xcfba9599,
10758 0xb8bda50f, 0x2802b89e, 0x5f058808, 0xc60cd9b2, 0xb10be924,
10759 0x2f6f7c87, 0x58684c11, 0xc1611dab, 0xb6662d3d, 0x76dc4190,
10760 0x01db7106, 0x98d220bc, 0xefd5102a, 0x71b18589, 0x06b6b51f,
10761 0x9fbfe4a5, 0xe8b8d433, 0x7807c9a2, 0x0f00f934, 0x9609a88e,
10762 0xe10e9818, 0x7f6a0dbb, 0x086d3d2d, 0x91646c97, 0xe6635c01,
10763 0x6b6b51f4, 0x1c6c6162, 0x856530d8, 0xf262004e, 0x6c0695ed,
10764 0x1b01a57b, 0x8208f4c1, 0xf50fc457, 0x65b0d9c6, 0x12b7e950,
10765 0x8bbeb8ea, 0xfcb9887c, 0x62dd1ddf, 0x15da2d49, 0x8cd37cf3,
10766 0xfbd44c65, 0x4db26158, 0x3ab551ce, 0xa3bc0074, 0xd4bb30e2,
10767 0x4adfa541, 0x3dd895d7, 0xa4d1c46d, 0xd3d6f4fb, 0x4369e96a,
10768 0x346ed9fc, 0xad678846, 0xda60b8d0, 0x44042d73, 0x33031de5,
10769 0xaa0a4c5f, 0xdd0d7cc9, 0x5005713c, 0x270241aa, 0xbe0b1010,
10770 0xc90c2086, 0x5768b525, 0x206f85b3, 0xb966d409, 0xce61e49f,
10771 0x5edef90e, 0x29d9c998, 0xb0d09822, 0xc7d7a8b4, 0x59b33d17,
10772 0x2eb40d81, 0xb7bd5c3b, 0xc0ba6cad, 0xedb88320, 0x9abfb3b6,
10773 0x03b6e20c, 0x74b1d29a, 0xead54739, 0x9dd277af, 0x04db2615,
10774 0x73dc1683, 0xe3630b12, 0x94643b84, 0x0d6d6a3e, 0x7a6a5aa8,
10775 0xe40ecf0b, 0x9309ff9d, 0x0a00ae27, 0x7d079eb1, 0xf00f9344,
10776 0x8708a3d2, 0x1e01f268, 0x6906c2fe, 0xf762575d, 0x806567cb,
10777 0x196c3671, 0x6e6b06e7, 0xfed41b76, 0x89d32be0, 0x10da7a5a,
10778 0x67dd4acc, 0xf9b9df6f, 0x8ebeeff9, 0x17b7be43, 0x60b08ed5,
10779 0xd6d6a3e8, 0xa1d1937e, 0x38d8c2c4, 0x4fdff252, 0xd1bb67f1,
10780 0xa6bc5767, 0x3fb506dd, 0x48b2364b, 0xd80d2bda, 0xaf0a1b4c,
10781 0x36034af6, 0x41047a60, 0xdf60efc3, 0xa867df55, 0x316e8eef,
10782 0x4669be79, 0xcb61b38c, 0xbc66831a, 0x256fd2a0, 0x5268e236,
10783 0xcc0c7795, 0xbb0b4703, 0x220216b9, 0x5505262f, 0xc5ba3bbe,
10784 0xb2bd0b28, 0x2bb45a92, 0x5cb36a04, 0xc2d7ffa7, 0xb5d0cf31,
10785 0x2cd99e8b, 0x5bdeae1d, 0x9b64c2b0, 0xec63f226, 0x756aa39c,
10786 0x026d930a, 0x9c0906a9, 0xeb0e363f, 0x72076785, 0x05005713,
10787 0x95bf4a82, 0xe2b87a14, 0x7bb12bae, 0x0cb61b38, 0x92d28e9b,
10788 0xe5d5be0d, 0x7cdcefb7, 0x0bdbdf21, 0x86d3d2d4, 0xf1d4e242,
10789 0x68ddb3f8, 0x1fda836e, 0x81be16cd, 0xf6b9265b, 0x6fb077e1,
10790 0x18b74777, 0x88085ae6, 0xff0f6a70, 0x66063bca, 0x11010b5c,
10791 0x8f659eff, 0xf862ae69, 0x616bffd3, 0x166ccf45, 0xa00ae278,
10792 0xd70dd2ee, 0x4e048354, 0x3903b3c2, 0xa7672661, 0xd06016f7,
10793 0x4969474d, 0x3e6e77db, 0xaed16a4a, 0xd9d65adc, 0x40df0b66,
10794 0x37d83bf0, 0xa9bcae53, 0xdebb9ec5, 0x47b2cf7f, 0x30b5ffe9,
10795 0xbdbdf21c, 0xcabac28a, 0x53b39330, 0x24b4a3a6, 0xbad03605,
10796 0xcdd70693, 0x54de5729, 0x23d967bf, 0xb3667a2e, 0xc4614ab8,
10797 0x5d681b02, 0x2a6f2b94, 0xb40bbe37, 0xc30c8ea1, 0x5a05df1b,
10798 0x2d02ef8d
10799 };
10800 const unsigned char *end;
10801
10802 crc = ~crc & 0xffffffff;
10803 for (end = buf + len; buf < end; ++ buf)
10804 crc = crc32_table[(crc ^ *buf) & 0xff] ^ (crc >> 8);
10805 return ~crc & 0xffffffff;
10806 }
10807
10808 typedef bool (*check_func_type) (const char *, void *);
10809 typedef const char *(* parse_func_type) (struct dwarf_section *, void *);
10810
10811 static bool
10812 check_gnu_debuglink (const char * pathname, void * crc_pointer)
10813 {
10814 static unsigned char buffer [8 * 1024];
10815 FILE * f;
10816 bfd_size_type count;
10817 unsigned long crc = 0;
10818 void * sep_data;
10819
10820 sep_data = open_debug_file (pathname);
10821 if (sep_data == NULL)
10822 return false;
10823
10824 /* Yes - we are opening the file twice... */
10825 f = fopen (pathname, "rb");
10826 if (f == NULL)
10827 {
10828 /* Paranoia: This should never happen. */
10829 close_debug_file (sep_data);
10830 warn (_("Unable to reopen separate debug info file: %s\n"), pathname);
10831 return false;
10832 }
10833
10834 while ((count = fread (buffer, 1, sizeof (buffer), f)) > 0)
10835 crc = calc_gnu_debuglink_crc32 (crc, buffer, count);
10836
10837 fclose (f);
10838
10839 if (crc != * (unsigned long *) crc_pointer)
10840 {
10841 close_debug_file (sep_data);
10842 warn (_("Separate debug info file %s found, but CRC does not match - ignoring\n"),
10843 pathname);
10844 return false;
10845 }
10846
10847 return true;
10848 }
10849
10850 static const char *
10851 parse_gnu_debuglink (struct dwarf_section * section, void * data)
10852 {
10853 const char * name;
10854 unsigned int crc_offset;
10855 unsigned long * crc32 = (unsigned long *) data;
10856
10857 /* The name is first.
10858 The CRC value is stored after the filename, aligned up to 4 bytes. */
10859 name = (const char *) section->start;
10860
10861 crc_offset = strnlen (name, section->size) + 1;
10862 if (crc_offset == 1)
10863 return NULL;
10864 crc_offset = (crc_offset + 3) & ~3;
10865 if (crc_offset + 4 > section->size)
10866 return NULL;
10867
10868 * crc32 = byte_get (section->start + crc_offset, 4);
10869 return name;
10870 }
10871
10872 static bool
10873 check_gnu_debugaltlink (const char * filename, void * data ATTRIBUTE_UNUSED)
10874 {
10875 void * sep_data = open_debug_file (filename);
10876
10877 if (sep_data == NULL)
10878 return false;
10879
10880 /* FIXME: We should now extract the build-id in the separate file
10881 and check it... */
10882
10883 return true;
10884 }
10885
10886 typedef struct build_id_data
10887 {
10888 bfd_size_type len;
10889 const unsigned char * data;
10890 } Build_id_data;
10891
10892 static const char *
10893 parse_gnu_debugaltlink (struct dwarf_section * section, void * data)
10894 {
10895 const char * name;
10896 bfd_size_type namelen;
10897 bfd_size_type id_len;
10898 Build_id_data * build_id_data;
10899
10900 /* The name is first.
10901 The build-id follows immediately, with no padding, up to the section's end. */
10902
10903 name = (const char *) section->start;
10904 namelen = strnlen (name, section->size) + 1;
10905 if (namelen == 1)
10906 return NULL;
10907 if (namelen >= section->size)
10908 return NULL;
10909
10910 id_len = section->size - namelen;
10911 if (id_len < 0x14)
10912 return NULL;
10913
10914 build_id_data = (Build_id_data *) data;
10915 build_id_data->len = id_len;
10916 build_id_data->data = section->start + namelen;
10917
10918 return name;
10919 }
10920
10921 static void
10922 add_separate_debug_file (const char * filename, void * handle)
10923 {
10924 separate_info * i = xmalloc (sizeof * i);
10925
10926 i->filename = filename;
10927 i->handle = handle;
10928 i->next = first_separate_info;
10929 first_separate_info = i;
10930 }
10931
10932 #if HAVE_LIBDEBUGINFOD
10933 /* Query debuginfod servers for the target debuglink or debugaltlink
10934 file. If successful, store the path of the file in filename and
10935 return TRUE, otherwise return FALSE. */
10936
10937 static bool
10938 debuginfod_fetch_separate_debug_info (struct dwarf_section * section,
10939 char ** filename,
10940 void * file)
10941 {
10942 size_t build_id_len;
10943 unsigned char * build_id;
10944
10945 if (strcmp (section->uncompressed_name, ".gnu_debuglink") == 0)
10946 {
10947 /* Get the build-id of file. */
10948 build_id = get_build_id (file);
10949 build_id_len = 0;
10950 }
10951 else if (strcmp (section->uncompressed_name, ".gnu_debugaltlink") == 0)
10952 {
10953 /* Get the build-id of the debugaltlink file. */
10954 unsigned int filelen;
10955
10956 filelen = strnlen ((const char *)section->start, section->size);
10957 if (filelen == section->size)
10958 /* Corrupt debugaltlink. */
10959 return false;
10960
10961 build_id = section->start + filelen + 1;
10962 build_id_len = section->size - (filelen + 1);
10963
10964 if (build_id_len == 0)
10965 return false;
10966 }
10967 else
10968 return false;
10969
10970 if (build_id)
10971 {
10972 int fd;
10973 debuginfod_client * client;
10974
10975 client = debuginfod_begin ();
10976 if (client == NULL)
10977 return false;
10978
10979 /* Query debuginfod servers for the target file. If found its path
10980 will be stored in filename. */
10981 fd = debuginfod_find_debuginfo (client, build_id, build_id_len, filename);
10982 debuginfod_end (client);
10983
10984 /* Only free build_id if we allocated space for a hex string
10985 in get_build_id (). */
10986 if (build_id_len == 0)
10987 free (build_id);
10988
10989 if (fd >= 0)
10990 {
10991 /* File successfully retrieved. Close fd since we want to
10992 use open_debug_file () on filename instead. */
10993 close (fd);
10994 return true;
10995 }
10996 }
10997
10998 return false;
10999 }
11000 #endif
11001
11002 static void *
11003 load_separate_debug_info (const char * main_filename,
11004 struct dwarf_section * xlink,
11005 parse_func_type parse_func,
11006 check_func_type check_func,
11007 void * func_data,
11008 void * file ATTRIBUTE_UNUSED)
11009 {
11010 const char * separate_filename;
11011 char * debug_filename;
11012 char * canon_dir;
11013 size_t canon_dirlen;
11014 size_t dirlen;
11015
11016 if ((separate_filename = parse_func (xlink, func_data)) == NULL)
11017 {
11018 warn (_("Corrupt debuglink section: %s\n"),
11019 xlink->name ? xlink->name : xlink->uncompressed_name);
11020 return NULL;
11021 }
11022
11023 /* Attempt to locate the separate file.
11024 This should duplicate the logic in bfd/opncls.c:find_separate_debug_file(). */
11025
11026 canon_dir = lrealpath (main_filename);
11027
11028 for (canon_dirlen = strlen (canon_dir); canon_dirlen > 0; canon_dirlen--)
11029 if (IS_DIR_SEPARATOR (canon_dir[canon_dirlen - 1]))
11030 break;
11031 canon_dir[canon_dirlen] = '\0';
11032
11033 #ifndef DEBUGDIR
11034 #define DEBUGDIR "/lib/debug"
11035 #endif
11036 #ifndef EXTRA_DEBUG_ROOT1
11037 #define EXTRA_DEBUG_ROOT1 "/usr/lib/debug"
11038 #endif
11039 #ifndef EXTRA_DEBUG_ROOT2
11040 #define EXTRA_DEBUG_ROOT2 "/usr/lib/debug/usr"
11041 #endif
11042
11043 debug_filename = (char *) malloc (strlen (DEBUGDIR) + 1
11044 + canon_dirlen
11045 + strlen (".debug/")
11046 #ifdef EXTRA_DEBUG_ROOT1
11047 + strlen (EXTRA_DEBUG_ROOT1)
11048 #endif
11049 #ifdef EXTRA_DEBUG_ROOT2
11050 + strlen (EXTRA_DEBUG_ROOT2)
11051 #endif
11052 + strlen (separate_filename)
11053 + 1);
11054 if (debug_filename == NULL)
11055 {
11056 warn (_("Out of memory"));
11057 free (canon_dir);
11058 return NULL;
11059 }
11060
11061 /* First try in the current directory. */
11062 sprintf (debug_filename, "%s", separate_filename);
11063 if (check_func (debug_filename, func_data))
11064 goto found;
11065
11066 /* Then try in a subdirectory called .debug. */
11067 sprintf (debug_filename, ".debug/%s", separate_filename);
11068 if (check_func (debug_filename, func_data))
11069 goto found;
11070
11071 /* Then try in the same directory as the original file. */
11072 sprintf (debug_filename, "%s%s", canon_dir, separate_filename);
11073 if (check_func (debug_filename, func_data))
11074 goto found;
11075
11076 /* And the .debug subdirectory of that directory. */
11077 sprintf (debug_filename, "%s.debug/%s", canon_dir, separate_filename);
11078 if (check_func (debug_filename, func_data))
11079 goto found;
11080
11081 #ifdef EXTRA_DEBUG_ROOT1
11082 /* Try the first extra debug file root. */
11083 sprintf (debug_filename, "%s/%s", EXTRA_DEBUG_ROOT1, separate_filename);
11084 if (check_func (debug_filename, func_data))
11085 goto found;
11086
11087 /* Try the first extra debug file root. */
11088 sprintf (debug_filename, "%s/%s/%s", EXTRA_DEBUG_ROOT1, canon_dir, separate_filename);
11089 if (check_func (debug_filename, func_data))
11090 goto found;
11091 #endif
11092
11093 #ifdef EXTRA_DEBUG_ROOT2
11094 /* Try the second extra debug file root. */
11095 sprintf (debug_filename, "%s/%s", EXTRA_DEBUG_ROOT2, separate_filename);
11096 if (check_func (debug_filename, func_data))
11097 goto found;
11098 #endif
11099
11100 /* Then try in the global debug_filename directory. */
11101 strcpy (debug_filename, DEBUGDIR);
11102 dirlen = strlen (DEBUGDIR) - 1;
11103 if (dirlen > 0 && DEBUGDIR[dirlen] != '/')
11104 strcat (debug_filename, "/");
11105 strcat (debug_filename, (const char *) separate_filename);
11106
11107 if (check_func (debug_filename, func_data))
11108 goto found;
11109
11110 #if HAVE_LIBDEBUGINFOD
11111 {
11112 char * tmp_filename;
11113
11114 if (debuginfod_fetch_separate_debug_info (xlink,
11115 & tmp_filename,
11116 file))
11117 {
11118 /* File successfully downloaded from server, replace
11119 debug_filename with the file's path. */
11120 free (debug_filename);
11121 debug_filename = tmp_filename;
11122 goto found;
11123 }
11124 }
11125 #endif
11126
11127 if (do_debug_links)
11128 {
11129 /* Failed to find the file. */
11130 warn (_("could not find separate debug file '%s'\n"),
11131 separate_filename);
11132 warn (_("tried: %s\n"), debug_filename);
11133
11134 #ifdef EXTRA_DEBUG_ROOT2
11135 sprintf (debug_filename, "%s/%s", EXTRA_DEBUG_ROOT2,
11136 separate_filename);
11137 warn (_("tried: %s\n"), debug_filename);
11138 #endif
11139
11140 #ifdef EXTRA_DEBUG_ROOT1
11141 sprintf (debug_filename, "%s/%s/%s", EXTRA_DEBUG_ROOT1,
11142 canon_dir, separate_filename);
11143 warn (_("tried: %s\n"), debug_filename);
11144
11145 sprintf (debug_filename, "%s/%s", EXTRA_DEBUG_ROOT1,
11146 separate_filename);
11147 warn (_("tried: %s\n"), debug_filename);
11148 #endif
11149
11150 sprintf (debug_filename, "%s.debug/%s", canon_dir,
11151 separate_filename);
11152 warn (_("tried: %s\n"), debug_filename);
11153
11154 sprintf (debug_filename, "%s%s", canon_dir, separate_filename);
11155 warn (_("tried: %s\n"), debug_filename);
11156
11157 sprintf (debug_filename, ".debug/%s", separate_filename);
11158 warn (_("tried: %s\n"), debug_filename);
11159
11160 sprintf (debug_filename, "%s", separate_filename);
11161 warn (_("tried: %s\n"), debug_filename);
11162
11163 #if HAVE_LIBDEBUGINFOD
11164 {
11165 char *urls = getenv (DEBUGINFOD_URLS_ENV_VAR);
11166 if (urls == NULL)
11167 urls = "";
11168
11169 warn (_("tried: DEBUGINFOD_URLS=%s\n"), urls);
11170 }
11171 #endif
11172 }
11173
11174 free (canon_dir);
11175 free (debug_filename);
11176 return NULL;
11177
11178 found:
11179 free (canon_dir);
11180
11181 void * debug_handle;
11182
11183 /* Now open the file.... */
11184 if ((debug_handle = open_debug_file (debug_filename)) == NULL)
11185 {
11186 warn (_("failed to open separate debug file: %s\n"), debug_filename);
11187 free (debug_filename);
11188 return NULL;
11189 }
11190
11191 /* FIXME: We do not check to see if there are any other separate debug info
11192 files that would also match. */
11193
11194 if (do_debug_links)
11195 printf (_("\n%s: Found separate debug info file: %s\n"), main_filename, debug_filename);
11196 add_separate_debug_file (debug_filename, debug_handle);
11197
11198 /* Do not free debug_filename - it might be referenced inside
11199 the structure returned by open_debug_file(). */
11200 return debug_handle;
11201 }
11202
11203 /* Attempt to load a separate dwarf object file. */
11204
11205 static void *
11206 load_dwo_file (const char * main_filename, const char * name, const char * dir, const char * id ATTRIBUTE_UNUSED)
11207 {
11208 char * separate_filename;
11209 void * separate_handle;
11210
11211 if (IS_ABSOLUTE_PATH (name))
11212 separate_filename = strdup (name);
11213 else
11214 /* FIXME: Skip adding / if dwo_dir ends in /. */
11215 separate_filename = concat (dir, "/", name, NULL);
11216 if (separate_filename == NULL)
11217 {
11218 warn (_("Out of memory allocating dwo filename\n"));
11219 return NULL;
11220 }
11221
11222 if ((separate_handle = open_debug_file (separate_filename)) == NULL)
11223 {
11224 warn (_("Unable to load dwo file: %s\n"), separate_filename);
11225 free (separate_filename);
11226 return NULL;
11227 }
11228
11229 /* FIXME: We should check the dwo_id. */
11230
11231 printf (_("%s: Found separate debug object file: %s\n\n"), main_filename, separate_filename);
11232
11233 add_separate_debug_file (separate_filename, separate_handle);
11234 /* Note - separate_filename will be freed in free_debug_memory(). */
11235 return separate_handle;
11236 }
11237
11238 static void
11239 load_debug_sup_file (const char * main_filename, void * file)
11240 {
11241 if (! load_debug_section (debug_sup, file))
11242 return; /* No .debug_sup section. */
11243
11244 struct dwarf_section * section;
11245 section = & debug_displays [debug_sup].section;
11246 assert (section != NULL);
11247
11248 if (section->start == NULL || section->size < 5)
11249 {
11250 warn (_(".debug_sup section is corrupt/empty\n"));
11251 return;
11252 }
11253
11254 if (section->start[2] != 0)
11255 return; /* This is a supplementary file. */
11256
11257 const char * filename = (const char *) section->start + 3;
11258 if (strnlen (filename, section->size - 3) == section->size - 3)
11259 {
11260 warn (_("filename in .debug_sup section is corrupt\n"));
11261 return;
11262 }
11263
11264 if (filename[0] != '/' && strchr (main_filename, '/'))
11265 {
11266 char * new_name;
11267 int new_len;
11268
11269 new_len = asprintf (& new_name, "%.*s/%s",
11270 (int) (strrchr (main_filename, '/') - main_filename),
11271 main_filename,
11272 filename);
11273 if (new_len < 3)
11274 {
11275 warn (_("unable to construct path for supplementary debug file"));
11276 if (new_len > -1)
11277 free (new_name);
11278 return;
11279 }
11280 filename = new_name;
11281 }
11282 else
11283 {
11284 /* PR 27796: Make sure that we pass a filename that can be free'd to
11285 add_separate_debug_file(). */
11286 filename = strdup (filename);
11287 if (filename == NULL)
11288 {
11289 warn (_("out of memory constructing filename for .debug_sup link\n"));
11290 return;
11291 }
11292 }
11293
11294 void * handle = open_debug_file (filename);
11295 if (handle == NULL)
11296 {
11297 warn (_("unable to open file '%s' referenced from .debug_sup section\n"), filename);
11298 free ((void *) filename);
11299 return;
11300 }
11301
11302 printf (_("%s: Found supplementary debug file: %s\n\n"), main_filename, filename);
11303
11304 /* FIXME: Compare the checksums, if present. */
11305 add_separate_debug_file (filename, handle);
11306 }
11307
11308 /* Load a debuglink section and/or a debugaltlink section, if either are present.
11309 Recursively check the loaded files for more of these sections.
11310 Also follow any links in .debug_sup sections.
11311 FIXME: Should also check for DWO_* entries in the newly loaded files. */
11312
11313 static void
11314 check_for_and_load_links (void * file, const char * filename)
11315 {
11316 void * handle = NULL;
11317
11318 if (load_debug_section (gnu_debugaltlink, file))
11319 {
11320 Build_id_data build_id_data;
11321
11322 handle = load_separate_debug_info (filename,
11323 & debug_displays[gnu_debugaltlink].section,
11324 parse_gnu_debugaltlink,
11325 check_gnu_debugaltlink,
11326 & build_id_data,
11327 file);
11328 if (handle)
11329 {
11330 assert (handle == first_separate_info->handle);
11331 check_for_and_load_links (first_separate_info->handle,
11332 first_separate_info->filename);
11333 }
11334 }
11335
11336 if (load_debug_section (gnu_debuglink, file))
11337 {
11338 unsigned long crc32;
11339
11340 handle = load_separate_debug_info (filename,
11341 & debug_displays[gnu_debuglink].section,
11342 parse_gnu_debuglink,
11343 check_gnu_debuglink,
11344 & crc32,
11345 file);
11346 if (handle)
11347 {
11348 assert (handle == first_separate_info->handle);
11349 check_for_and_load_links (first_separate_info->handle,
11350 first_separate_info->filename);
11351 }
11352 }
11353
11354 load_debug_sup_file (filename, file);
11355 }
11356
11357 /* Load the separate debug info file(s) attached to FILE, if any exist.
11358 Returns TRUE if any were found, FALSE otherwise.
11359 If TRUE is returned then the linked list starting at first_separate_info
11360 will be populated with open file handles. */
11361
11362 bool
11363 load_separate_debug_files (void * file, const char * filename)
11364 {
11365 /* Skip this operation if we are not interested in debug links. */
11366 if (! do_follow_links && ! do_debug_links)
11367 return false;
11368
11369 /* See if there are any dwo links. */
11370 if (load_debug_section (str, file)
11371 && load_debug_section (abbrev, file)
11372 && load_debug_section (info, file))
11373 {
11374 free_dwo_info ();
11375
11376 if (process_debug_info (& debug_displays[info].section, file, abbrev,
11377 true, false))
11378 {
11379 bool introduced = false;
11380 dwo_info *dwinfo;
11381 const char *dir = NULL;
11382 const char *id = NULL;
11383 const char *name = NULL;
11384
11385 for (dwinfo = first_dwo_info; dwinfo != NULL; dwinfo = dwinfo->next)
11386 {
11387 /* Accumulate NAME, DIR and ID fields. */
11388 switch (dwinfo->type)
11389 {
11390 case DWO_NAME:
11391 if (name != NULL)
11392 warn (_("Multiple DWO_NAMEs encountered for the same CU\n"));
11393 name = dwinfo->value;
11394 break;
11395
11396 case DWO_DIR:
11397 /* There can be multiple DW_AT_comp_dir entries in a CU,
11398 so do not complain. */
11399 dir = dwinfo->value;
11400 break;
11401
11402 case DWO_ID:
11403 if (id != NULL)
11404 warn (_("multiple DWO_IDs encountered for the same CU\n"));
11405 id = dwinfo->value;
11406 break;
11407
11408 default:
11409 error (_("Unexpected DWO INFO type"));
11410 break;
11411 }
11412
11413 /* If we have reached the end of our list, or we are changing
11414 CUs, then display the information that we have accumulated
11415 so far. */
11416 if (name != NULL
11417 && (dwinfo->next == NULL
11418 || dwinfo->next->cu_offset != dwinfo->cu_offset))
11419 {
11420 if (do_debug_links)
11421 {
11422 if (! introduced)
11423 {
11424 printf (_("The %s section contains link(s) to dwo file(s):\n\n"),
11425 debug_displays [info].section.uncompressed_name);
11426 introduced = true;
11427 }
11428
11429 printf (_(" Name: %s\n"), name);
11430 printf (_(" Directory: %s\n"), dir ? dir : _("<not-found>"));
11431 if (id != NULL)
11432 display_data (printf (_(" ID: ")), (unsigned char *) id, 8);
11433 else
11434 printf (_(" ID: <not specified>\n"));
11435 printf ("\n\n");
11436 }
11437
11438 if (do_follow_links)
11439 load_dwo_file (filename, name, dir, id);
11440
11441 name = dir = id = NULL;
11442 }
11443 }
11444 }
11445 }
11446
11447 if (! do_follow_links)
11448 /* The other debug links will be displayed by display_debug_links()
11449 so we do not need to do any further processing here. */
11450 return false;
11451
11452 /* FIXME: We do not check for the presence of both link sections in the same file. */
11453 /* FIXME: We do not check for the presence of multiple, same-name debuglink sections. */
11454 /* FIXME: We do not check for the presence of a dwo link as well as a debuglink. */
11455
11456 check_for_and_load_links (file, filename);
11457 if (first_separate_info != NULL)
11458 return true;
11459
11460 do_follow_links = 0;
11461 return false;
11462 }
11463
11464 void
11465 free_debug_memory (void)
11466 {
11467 unsigned int i;
11468
11469 free_all_abbrevs ();
11470
11471 free (cu_abbrev_map);
11472 cu_abbrev_map = NULL;
11473 next_free_abbrev_map_entry = 0;
11474
11475 free (shndx_pool);
11476 shndx_pool = NULL;
11477 shndx_pool_size = 0;
11478 shndx_pool_used = 0;
11479 free (cu_sets);
11480 cu_sets = NULL;
11481 cu_count = 0;
11482 free (tu_sets);
11483 tu_sets = NULL;
11484 tu_count = 0;
11485
11486 memset (level_type_signed, 0, sizeof level_type_signed);
11487 cu_tu_indexes_read = -1;
11488
11489 for (i = 0; i < max; i++)
11490 free_debug_section ((enum dwarf_section_display_enum) i);
11491
11492 if (debug_information != NULL)
11493 {
11494 for (i = 0; i < alloc_num_debug_info_entries; i++)
11495 {
11496 if (debug_information [i].max_loc_offsets)
11497 {
11498 free (debug_information [i].loc_offsets);
11499 free (debug_information [i].have_frame_base);
11500 }
11501 if (debug_information [i].max_range_lists)
11502 free (debug_information [i].range_lists);
11503 }
11504 free (debug_information);
11505 debug_information = NULL;
11506 alloc_num_debug_info_entries = num_debug_info_entries = 0;
11507 }
11508
11509 separate_info * d;
11510 separate_info * next;
11511
11512 for (d = first_separate_info; d != NULL; d = next)
11513 {
11514 close_debug_file (d->handle);
11515 free ((void *) d->filename);
11516 next = d->next;
11517 free ((void *) d);
11518 }
11519 first_separate_info = NULL;
11520
11521 free_dwo_info ();
11522 }
11523
11524 void
11525 dwarf_select_sections_by_names (const char *names)
11526 {
11527 typedef struct
11528 {
11529 const char * option;
11530 int * variable;
11531 int val;
11532 }
11533 debug_dump_long_opts;
11534
11535 static const debug_dump_long_opts opts_table [] =
11536 {
11537 /* Please keep this table alpha- sorted. */
11538 { "Ranges", & do_debug_ranges, 1 },
11539 { "abbrev", & do_debug_abbrevs, 1 },
11540 { "addr", & do_debug_addr, 1 },
11541 { "aranges", & do_debug_aranges, 1 },
11542 { "cu_index", & do_debug_cu_index, 1 },
11543 { "decodedline", & do_debug_lines, FLAG_DEBUG_LINES_DECODED },
11544 { "follow-links", & do_follow_links, 1 },
11545 { "frames", & do_debug_frames, 1 },
11546 { "frames-interp", & do_debug_frames_interp, 1 },
11547 /* The special .gdb_index section. */
11548 { "gdb_index", & do_gdb_index, 1 },
11549 { "info", & do_debug_info, 1 },
11550 { "line", & do_debug_lines, FLAG_DEBUG_LINES_RAW }, /* For backwards compatibility. */
11551 { "links", & do_debug_links, 1 },
11552 { "loc", & do_debug_loc, 1 },
11553 { "macro", & do_debug_macinfo, 1 },
11554 { "no-follow-links", & do_follow_links, 0 },
11555 { "pubnames", & do_debug_pubnames, 1 },
11556 { "pubtypes", & do_debug_pubtypes, 1 },
11557 /* This entry is for compatibility
11558 with earlier versions of readelf. */
11559 { "ranges", & do_debug_aranges, 1 },
11560 { "rawline", & do_debug_lines, FLAG_DEBUG_LINES_RAW },
11561 { "str", & do_debug_str, 1 },
11562 { "str-offsets", & do_debug_str_offsets, 1 },
11563 /* These trace_* sections are used by Itanium VMS. */
11564 { "trace_abbrev", & do_trace_abbrevs, 1 },
11565 { "trace_aranges", & do_trace_aranges, 1 },
11566 { "trace_info", & do_trace_info, 1 },
11567 { NULL, NULL, 0 }
11568 };
11569
11570 const char *p;
11571
11572 p = names;
11573 while (*p)
11574 {
11575 const debug_dump_long_opts * entry;
11576
11577 for (entry = opts_table; entry->option; entry++)
11578 {
11579 size_t len = strlen (entry->option);
11580
11581 if (strncmp (p, entry->option, len) == 0
11582 && (p[len] == ',' || p[len] == '\0'))
11583 {
11584 * entry->variable = entry->val;
11585
11586 /* The --debug-dump=frames-interp option also
11587 enables the --debug-dump=frames option. */
11588 if (do_debug_frames_interp)
11589 do_debug_frames = 1;
11590
11591 p += len;
11592 break;
11593 }
11594 }
11595
11596 if (entry->option == NULL)
11597 {
11598 warn (_("Unrecognized debug option '%s'\n"), p);
11599 p = strchr (p, ',');
11600 if (p == NULL)
11601 break;
11602 }
11603
11604 if (*p == ',')
11605 p++;
11606 }
11607 }
11608
11609 void
11610 dwarf_select_sections_by_letters (const char *letters)
11611 {
11612 unsigned int lindex = 0;
11613
11614 while (letters[lindex])
11615 switch (letters[lindex++])
11616 {
11617 case 'A': do_debug_addr = 1; break;
11618 case 'a': do_debug_abbrevs = 1; break;
11619 case 'c': do_debug_cu_index = 1; break;
11620 case 'F': do_debug_frames_interp = 1; /* Fall through. */
11621 case 'f': do_debug_frames = 1; break;
11622 case 'g': do_gdb_index = 1; break;
11623 case 'i': do_debug_info = 1; break;
11624 case 'K': do_follow_links = 1; break;
11625 case 'N': do_follow_links = 0; break;
11626 case 'k': do_debug_links = 1; break;
11627 case 'l': do_debug_lines |= FLAG_DEBUG_LINES_RAW; break;
11628 case 'L': do_debug_lines |= FLAG_DEBUG_LINES_DECODED; break;
11629 case 'm': do_debug_macinfo = 1; break;
11630 case 'O': do_debug_str_offsets = 1; break;
11631 case 'o': do_debug_loc = 1; break;
11632 case 'p': do_debug_pubnames = 1; break;
11633 case 'R': do_debug_ranges = 1; break;
11634 case 'r': do_debug_aranges = 1; break;
11635 case 's': do_debug_str = 1; break;
11636 case 'T': do_trace_aranges = 1; break;
11637 case 't': do_debug_pubtypes = 1; break;
11638 case 'U': do_trace_info = 1; break;
11639 case 'u': do_trace_abbrevs = 1; break;
11640
11641 default:
11642 warn (_("Unrecognized debug option '%s'\n"), letters);
11643 break;
11644 }
11645 }
11646
11647 void
11648 dwarf_select_sections_all (void)
11649 {
11650 do_debug_info = 1;
11651 do_debug_abbrevs = 1;
11652 do_debug_lines = FLAG_DEBUG_LINES_RAW;
11653 do_debug_pubnames = 1;
11654 do_debug_pubtypes = 1;
11655 do_debug_aranges = 1;
11656 do_debug_ranges = 1;
11657 do_debug_frames = 1;
11658 do_debug_macinfo = 1;
11659 do_debug_str = 1;
11660 do_debug_loc = 1;
11661 do_gdb_index = 1;
11662 do_trace_info = 1;
11663 do_trace_abbrevs = 1;
11664 do_trace_aranges = 1;
11665 do_debug_addr = 1;
11666 do_debug_cu_index = 1;
11667 do_follow_links = 1;
11668 do_debug_links = 1;
11669 do_debug_str_offsets = 1;
11670 }
11671
11672 #define NO_ABBREVS NULL, NULL, NULL, 0, 0, 0, NULL, 0
11673 #define ABBREV(N) NULL, NULL, NULL, 0, 0, N, NULL, 0
11674
11675 /* N.B. The order here must match the order in section_display_enum. */
11676
11677 struct dwarf_section_display debug_displays[] =
11678 {
11679 { { ".debug_abbrev", ".zdebug_abbrev", NO_ABBREVS }, display_debug_abbrev, &do_debug_abbrevs, false },
11680 { { ".debug_aranges", ".zdebug_aranges", NO_ABBREVS }, display_debug_aranges, &do_debug_aranges, true },
11681 { { ".debug_frame", ".zdebug_frame", NO_ABBREVS }, display_debug_frames, &do_debug_frames, true },
11682 { { ".debug_info", ".zdebug_info", ABBREV (abbrev)}, display_debug_info, &do_debug_info, true },
11683 { { ".debug_line", ".zdebug_line", NO_ABBREVS }, display_debug_lines, &do_debug_lines, true },
11684 { { ".debug_pubnames", ".zdebug_pubnames", NO_ABBREVS }, display_debug_pubnames, &do_debug_pubnames, false },
11685 { { ".debug_gnu_pubnames", ".zdebug_gnu_pubnames", NO_ABBREVS }, display_debug_gnu_pubnames, &do_debug_pubnames, false },
11686 { { ".eh_frame", "", NO_ABBREVS }, display_debug_frames, &do_debug_frames, true },
11687 { { ".debug_macinfo", ".zdebug_macinfo", NO_ABBREVS }, display_debug_macinfo, &do_debug_macinfo, false },
11688 { { ".debug_macro", ".zdebug_macro", NO_ABBREVS }, display_debug_macro, &do_debug_macinfo, true },
11689 { { ".debug_str", ".zdebug_str", NO_ABBREVS }, display_debug_str, &do_debug_str, false },
11690 { { ".debug_line_str", ".zdebug_line_str", NO_ABBREVS }, display_debug_str, &do_debug_str, false },
11691 { { ".debug_loc", ".zdebug_loc", NO_ABBREVS }, display_debug_loc, &do_debug_loc, true },
11692 { { ".debug_loclists", ".zdebug_loclists", NO_ABBREVS }, display_debug_loc, &do_debug_loc, true },
11693 { { ".debug_pubtypes", ".zdebug_pubtypes", NO_ABBREVS }, display_debug_pubnames, &do_debug_pubtypes, false },
11694 { { ".debug_gnu_pubtypes", ".zdebug_gnu_pubtypes", NO_ABBREVS }, display_debug_gnu_pubnames, &do_debug_pubtypes, false },
11695 { { ".debug_ranges", ".zdebug_ranges", NO_ABBREVS }, display_debug_ranges, &do_debug_ranges, true },
11696 { { ".debug_rnglists", ".zdebug_rnglists", NO_ABBREVS }, display_debug_ranges, &do_debug_ranges, true },
11697 { { ".debug_static_func", ".zdebug_static_func", NO_ABBREVS }, display_debug_not_supported, NULL, false },
11698 { { ".debug_static_vars", ".zdebug_static_vars", NO_ABBREVS }, display_debug_not_supported, NULL, false },
11699 { { ".debug_types", ".zdebug_types", ABBREV (abbrev) }, display_debug_types, &do_debug_info, true },
11700 { { ".debug_weaknames", ".zdebug_weaknames", NO_ABBREVS }, display_debug_not_supported, NULL, false },
11701 { { ".gdb_index", "", NO_ABBREVS }, display_gdb_index, &do_gdb_index, false },
11702 { { ".debug_names", "", NO_ABBREVS }, display_debug_names, &do_gdb_index, false },
11703 { { ".trace_info", "", ABBREV (trace_abbrev) }, display_trace_info, &do_trace_info, true },
11704 { { ".trace_abbrev", "", NO_ABBREVS }, display_debug_abbrev, &do_trace_abbrevs, false },
11705 { { ".trace_aranges", "", NO_ABBREVS }, display_debug_aranges, &do_trace_aranges, false },
11706 { { ".debug_info.dwo", ".zdebug_info.dwo", ABBREV (abbrev_dwo) }, display_debug_info, &do_debug_info, true },
11707 { { ".debug_abbrev.dwo", ".zdebug_abbrev.dwo", NO_ABBREVS }, display_debug_abbrev, &do_debug_abbrevs, false },
11708 { { ".debug_types.dwo", ".zdebug_types.dwo", ABBREV (abbrev_dwo) }, display_debug_types, &do_debug_info, true },
11709 { { ".debug_line.dwo", ".zdebug_line.dwo", NO_ABBREVS }, display_debug_lines, &do_debug_lines, true },
11710 { { ".debug_loc.dwo", ".zdebug_loc.dwo", NO_ABBREVS }, display_debug_loc, &do_debug_loc, true },
11711 { { ".debug_macro.dwo", ".zdebug_macro.dwo", NO_ABBREVS }, display_debug_macro, &do_debug_macinfo, true },
11712 { { ".debug_macinfo.dwo", ".zdebug_macinfo.dwo", NO_ABBREVS }, display_debug_macinfo, &do_debug_macinfo, false },
11713 { { ".debug_str.dwo", ".zdebug_str.dwo", NO_ABBREVS }, display_debug_str, &do_debug_str, true },
11714 { { ".debug_str_offsets", ".zdebug_str_offsets", NO_ABBREVS }, display_debug_str_offsets, &do_debug_str_offsets, true },
11715 { { ".debug_str_offsets.dwo", ".zdebug_str_offsets.dwo", NO_ABBREVS }, display_debug_str_offsets, &do_debug_str_offsets, true },
11716 { { ".debug_addr", ".zdebug_addr", NO_ABBREVS }, display_debug_addr, &do_debug_addr, true },
11717 { { ".debug_cu_index", "", NO_ABBREVS }, display_cu_index, &do_debug_cu_index, false },
11718 { { ".debug_tu_index", "", NO_ABBREVS }, display_cu_index, &do_debug_cu_index, false },
11719 { { ".gnu_debuglink", "", NO_ABBREVS }, display_debug_links, &do_debug_links, false },
11720 { { ".gnu_debugaltlink", "", NO_ABBREVS }, display_debug_links, &do_debug_links, false },
11721 { { ".debug_sup", "", NO_ABBREVS }, display_debug_sup, &do_debug_links, false },
11722 /* Separate debug info files can containt their own .debug_str section,
11723 and this might be in *addition* to a .debug_str section already present
11724 in the main file. Hence we need to have two entries for .debug_str. */
11725 { { ".debug_str", ".zdebug_str", NO_ABBREVS }, display_debug_str, &do_debug_str, false },
11726 };
11727
11728 /* A static assertion. */
11729 extern int debug_displays_assert[ARRAY_SIZE (debug_displays) == max ? 1 : -1];
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