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Commit | Line | Data |
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c906108c | 1 | /* DWARF 2 debugging format support for GDB. |
b44e9041 EZ |
2 | Copyright 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003, |
3 | 2004 | |
8e65ff28 | 4 | Free Software Foundation, Inc. |
c906108c SS |
5 | |
6 | Adapted by Gary Funck ([email protected]), Intrepid Technology, | |
7 | Inc. with support from Florida State University (under contract | |
8 | with the Ada Joint Program Office), and Silicon Graphics, Inc. | |
9 | Initial contribution by Brent Benson, Harris Computer Systems, Inc., | |
10 | based on Fred Fish's (Cygnus Support) implementation of DWARF 1 | |
11 | support in dwarfread.c | |
12 | ||
c5aa993b | 13 | This file is part of GDB. |
c906108c | 14 | |
c5aa993b JM |
15 | This program is free software; you can redistribute it and/or modify |
16 | it under the terms of the GNU General Public License as published by | |
17 | the Free Software Foundation; either version 2 of the License, or (at | |
18 | your option) any later version. | |
c906108c | 19 | |
c5aa993b JM |
20 | This program is distributed in the hope that it will be useful, but |
21 | WITHOUT ANY WARRANTY; without even the implied warranty of | |
22 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
23 | General Public License for more details. | |
c906108c | 24 | |
c5aa993b JM |
25 | You should have received a copy of the GNU General Public License |
26 | along with this program; if not, write to the Free Software | |
27 | Foundation, Inc., 59 Temple Place - Suite 330, | |
28 | Boston, MA 02111-1307, USA. */ | |
c906108c SS |
29 | |
30 | #include "defs.h" | |
31 | #include "bfd.h" | |
c906108c SS |
32 | #include "symtab.h" |
33 | #include "gdbtypes.h" | |
c906108c SS |
34 | #include "objfiles.h" |
35 | #include "elf/dwarf2.h" | |
36 | #include "buildsym.h" | |
37 | #include "demangle.h" | |
38 | #include "expression.h" | |
d5166ae1 | 39 | #include "filenames.h" /* for DOSish file names */ |
2e276125 | 40 | #include "macrotab.h" |
c906108c SS |
41 | #include "language.h" |
42 | #include "complaints.h" | |
357e46e7 | 43 | #include "bcache.h" |
4c2df51b DJ |
44 | #include "dwarf2expr.h" |
45 | #include "dwarf2loc.h" | |
9219021c | 46 | #include "cp-support.h" |
72bf9492 | 47 | #include "hashtab.h" |
4c2df51b | 48 | |
c906108c SS |
49 | #include <fcntl.h> |
50 | #include "gdb_string.h" | |
4bdf3d34 | 51 | #include "gdb_assert.h" |
c906108c SS |
52 | #include <sys/types.h> |
53 | ||
d8151005 DJ |
54 | /* A note on memory usage for this file. |
55 | ||
56 | At the present time, this code reads the debug info sections into | |
57 | the objfile's objfile_obstack. A definite improvement for startup | |
58 | time, on platforms which do not emit relocations for debug | |
59 | sections, would be to use mmap instead. The object's complete | |
60 | debug information is loaded into memory, partly to simplify | |
61 | absolute DIE references. | |
62 | ||
63 | Whether using obstacks or mmap, the sections should remain loaded | |
64 | until the objfile is released, and pointers into the section data | |
65 | can be used for any other data associated to the objfile (symbol | |
66 | names, type names, location expressions to name a few). */ | |
67 | ||
88496bb5 MS |
68 | #ifndef DWARF2_REG_TO_REGNUM |
69 | #define DWARF2_REG_TO_REGNUM(REG) (REG) | |
70 | #endif | |
71 | ||
107d2387 | 72 | #if 0 |
357e46e7 | 73 | /* .debug_info header for a compilation unit |
c906108c SS |
74 | Because of alignment constraints, this structure has padding and cannot |
75 | be mapped directly onto the beginning of the .debug_info section. */ | |
76 | typedef struct comp_unit_header | |
77 | { | |
78 | unsigned int length; /* length of the .debug_info | |
79 | contribution */ | |
80 | unsigned short version; /* version number -- 2 for DWARF | |
81 | version 2 */ | |
82 | unsigned int abbrev_offset; /* offset into .debug_abbrev section */ | |
83 | unsigned char addr_size; /* byte size of an address -- 4 */ | |
84 | } | |
85 | _COMP_UNIT_HEADER; | |
86 | #define _ACTUAL_COMP_UNIT_HEADER_SIZE 11 | |
107d2387 | 87 | #endif |
c906108c SS |
88 | |
89 | /* .debug_pubnames header | |
90 | Because of alignment constraints, this structure has padding and cannot | |
91 | be mapped directly onto the beginning of the .debug_info section. */ | |
92 | typedef struct pubnames_header | |
93 | { | |
94 | unsigned int length; /* length of the .debug_pubnames | |
95 | contribution */ | |
96 | unsigned char version; /* version number -- 2 for DWARF | |
97 | version 2 */ | |
98 | unsigned int info_offset; /* offset into .debug_info section */ | |
99 | unsigned int info_size; /* byte size of .debug_info section | |
100 | portion */ | |
101 | } | |
102 | _PUBNAMES_HEADER; | |
103 | #define _ACTUAL_PUBNAMES_HEADER_SIZE 13 | |
104 | ||
105 | /* .debug_pubnames header | |
106 | Because of alignment constraints, this structure has padding and cannot | |
107 | be mapped directly onto the beginning of the .debug_info section. */ | |
108 | typedef struct aranges_header | |
109 | { | |
110 | unsigned int length; /* byte len of the .debug_aranges | |
111 | contribution */ | |
112 | unsigned short version; /* version number -- 2 for DWARF | |
113 | version 2 */ | |
114 | unsigned int info_offset; /* offset into .debug_info section */ | |
115 | unsigned char addr_size; /* byte size of an address */ | |
116 | unsigned char seg_size; /* byte size of segment descriptor */ | |
117 | } | |
118 | _ARANGES_HEADER; | |
119 | #define _ACTUAL_ARANGES_HEADER_SIZE 12 | |
120 | ||
121 | /* .debug_line statement program prologue | |
122 | Because of alignment constraints, this structure has padding and cannot | |
123 | be mapped directly onto the beginning of the .debug_info section. */ | |
124 | typedef struct statement_prologue | |
125 | { | |
126 | unsigned int total_length; /* byte length of the statement | |
127 | information */ | |
128 | unsigned short version; /* version number -- 2 for DWARF | |
129 | version 2 */ | |
130 | unsigned int prologue_length; /* # bytes between prologue & | |
131 | stmt program */ | |
132 | unsigned char minimum_instruction_length; /* byte size of | |
133 | smallest instr */ | |
134 | unsigned char default_is_stmt; /* initial value of is_stmt | |
135 | register */ | |
136 | char line_base; | |
137 | unsigned char line_range; | |
138 | unsigned char opcode_base; /* number assigned to first special | |
139 | opcode */ | |
140 | unsigned char *standard_opcode_lengths; | |
141 | } | |
142 | _STATEMENT_PROLOGUE; | |
143 | ||
6502dd73 DJ |
144 | static const struct objfile_data *dwarf2_objfile_data_key; |
145 | ||
146 | struct dwarf2_per_objfile | |
147 | { | |
148 | /* Sizes of debugging sections. */ | |
149 | unsigned int info_size; | |
150 | unsigned int abbrev_size; | |
151 | unsigned int line_size; | |
152 | unsigned int pubnames_size; | |
153 | unsigned int aranges_size; | |
154 | unsigned int loc_size; | |
155 | unsigned int macinfo_size; | |
156 | unsigned int str_size; | |
157 | unsigned int ranges_size; | |
158 | unsigned int frame_size; | |
159 | unsigned int eh_frame_size; | |
160 | ||
161 | /* Loaded data from the sections. */ | |
162 | char *info_buffer; | |
163 | char *abbrev_buffer; | |
164 | char *line_buffer; | |
165 | char *str_buffer; | |
166 | char *macinfo_buffer; | |
167 | char *ranges_buffer; | |
168 | char *loc_buffer; | |
169 | }; | |
170 | ||
171 | static struct dwarf2_per_objfile *dwarf2_per_objfile; | |
c906108c | 172 | |
086df311 DJ |
173 | static asection *dwarf_info_section; |
174 | static asection *dwarf_abbrev_section; | |
175 | static asection *dwarf_line_section; | |
176 | static asection *dwarf_pubnames_section; | |
177 | static asection *dwarf_aranges_section; | |
178 | static asection *dwarf_loc_section; | |
179 | static asection *dwarf_macinfo_section; | |
180 | static asection *dwarf_str_section; | |
181 | static asection *dwarf_ranges_section; | |
182 | asection *dwarf_frame_section; | |
183 | asection *dwarf_eh_frame_section; | |
184 | ||
c906108c SS |
185 | /* names of the debugging sections */ |
186 | ||
187 | #define INFO_SECTION ".debug_info" | |
188 | #define ABBREV_SECTION ".debug_abbrev" | |
189 | #define LINE_SECTION ".debug_line" | |
190 | #define PUBNAMES_SECTION ".debug_pubnames" | |
191 | #define ARANGES_SECTION ".debug_aranges" | |
192 | #define LOC_SECTION ".debug_loc" | |
193 | #define MACINFO_SECTION ".debug_macinfo" | |
194 | #define STR_SECTION ".debug_str" | |
af34e669 | 195 | #define RANGES_SECTION ".debug_ranges" |
b6af0555 JS |
196 | #define FRAME_SECTION ".debug_frame" |
197 | #define EH_FRAME_SECTION ".eh_frame" | |
c906108c SS |
198 | |
199 | /* local data types */ | |
200 | ||
57349743 JB |
201 | /* We hold several abbreviation tables in memory at the same time. */ |
202 | #ifndef ABBREV_HASH_SIZE | |
203 | #define ABBREV_HASH_SIZE 121 | |
204 | #endif | |
205 | ||
107d2387 AC |
206 | /* The data in a compilation unit header, after target2host |
207 | translation, looks like this. */ | |
c906108c SS |
208 | struct comp_unit_head |
209 | { | |
613e1657 | 210 | unsigned long length; |
c906108c SS |
211 | short version; |
212 | unsigned int abbrev_offset; | |
213 | unsigned char addr_size; | |
107d2387 | 214 | unsigned char signed_addr_p; |
613e1657 KB |
215 | unsigned int offset_size; /* size of file offsets; either 4 or 8 */ |
216 | unsigned int initial_length_size; /* size of the length field; either | |
217 | 4 or 12 */ | |
57349743 JB |
218 | |
219 | /* Offset to the first byte of this compilation unit header in the | |
220 | * .debug_info section, for resolving relative reference dies. */ | |
221 | ||
222 | unsigned int offset; | |
223 | ||
224 | /* Pointer to this compilation unit header in the .debug_info | |
225 | * section */ | |
226 | ||
227 | char *cu_head_ptr; | |
228 | ||
229 | /* Pointer to the first die of this compilatio unit. This will | |
230 | * be the first byte following the compilation unit header. */ | |
231 | ||
232 | char *first_die_ptr; | |
233 | ||
234 | /* Pointer to the next compilation unit header in the program. */ | |
235 | ||
236 | struct comp_unit_head *next; | |
237 | ||
0d53c4c4 | 238 | /* Base address of this compilation unit. */ |
af34e669 | 239 | |
0d53c4c4 DJ |
240 | CORE_ADDR base_address; |
241 | ||
242 | /* Non-zero if base_address has been set. */ | |
243 | ||
244 | int base_known; | |
c906108c SS |
245 | }; |
246 | ||
e7c27a73 DJ |
247 | /* Internal state when decoding a particular compilation unit. */ |
248 | struct dwarf2_cu | |
249 | { | |
250 | /* The objfile containing this compilation unit. */ | |
251 | struct objfile *objfile; | |
252 | ||
253 | /* The header of the compilation unit. | |
254 | ||
255 | FIXME drow/2003-11-10: Some of the things from the comp_unit_head | |
f3dd6933 | 256 | should logically be moved to the dwarf2_cu structure. */ |
e7c27a73 | 257 | struct comp_unit_head header; |
e142c38c DJ |
258 | |
259 | struct function_range *first_fn, *last_fn, *cached_fn; | |
260 | ||
261 | /* The language we are debugging. */ | |
262 | enum language language; | |
263 | const struct language_defn *language_defn; | |
264 | ||
b0f35d58 DL |
265 | const char *producer; |
266 | ||
e142c38c DJ |
267 | /* The generic symbol table building routines have separate lists for |
268 | file scope symbols and all all other scopes (local scopes). So | |
269 | we need to select the right one to pass to add_symbol_to_list(). | |
270 | We do it by keeping a pointer to the correct list in list_in_scope. | |
271 | ||
272 | FIXME: The original dwarf code just treated the file scope as the | |
273 | first local scope, and all other local scopes as nested local | |
274 | scopes, and worked fine. Check to see if we really need to | |
275 | distinguish these in buildsym.c. */ | |
276 | struct pending **list_in_scope; | |
277 | ||
278 | /* Maintain an array of referenced fundamental types for the current | |
279 | compilation unit being read. For DWARF version 1, we have to construct | |
280 | the fundamental types on the fly, since no information about the | |
281 | fundamental types is supplied. Each such fundamental type is created by | |
282 | calling a language dependent routine to create the type, and then a | |
283 | pointer to that type is then placed in the array at the index specified | |
284 | by it's FT_<TYPENAME> value. The array has a fixed size set by the | |
285 | FT_NUM_MEMBERS compile time constant, which is the number of predefined | |
286 | fundamental types gdb knows how to construct. */ | |
287 | struct type *ftypes[FT_NUM_MEMBERS]; /* Fundamental types */ | |
f3dd6933 DJ |
288 | |
289 | /* DWARF abbreviation table associated with this compilation unit. */ | |
290 | struct abbrev_info **dwarf2_abbrevs; | |
291 | ||
292 | /* Storage for the abbrev table. */ | |
293 | struct obstack abbrev_obstack; | |
72bf9492 DJ |
294 | |
295 | /* Hash table holding all the loaded partial DIEs. */ | |
296 | htab_t partial_dies; | |
297 | ||
298 | /* Storage for things with the same lifetime as this read-in compilation | |
299 | unit, including partial DIEs. */ | |
300 | struct obstack comp_unit_obstack; | |
301 | ||
302 | /* This flag will be set if this compilation unit includes any | |
303 | DW_TAG_namespace DIEs. If we know that there are explicit | |
304 | DIEs for namespaces, we don't need to try to infer them | |
305 | from mangled names. */ | |
306 | unsigned int has_namespace_info : 1; | |
e7c27a73 DJ |
307 | }; |
308 | ||
debd256d JB |
309 | /* The line number information for a compilation unit (found in the |
310 | .debug_line section) begins with a "statement program header", | |
311 | which contains the following information. */ | |
312 | struct line_header | |
313 | { | |
314 | unsigned int total_length; | |
315 | unsigned short version; | |
316 | unsigned int header_length; | |
317 | unsigned char minimum_instruction_length; | |
318 | unsigned char default_is_stmt; | |
319 | int line_base; | |
320 | unsigned char line_range; | |
321 | unsigned char opcode_base; | |
322 | ||
323 | /* standard_opcode_lengths[i] is the number of operands for the | |
324 | standard opcode whose value is i. This means that | |
325 | standard_opcode_lengths[0] is unused, and the last meaningful | |
326 | element is standard_opcode_lengths[opcode_base - 1]. */ | |
327 | unsigned char *standard_opcode_lengths; | |
328 | ||
329 | /* The include_directories table. NOTE! These strings are not | |
330 | allocated with xmalloc; instead, they are pointers into | |
331 | debug_line_buffer. If you try to free them, `free' will get | |
332 | indigestion. */ | |
333 | unsigned int num_include_dirs, include_dirs_size; | |
334 | char **include_dirs; | |
335 | ||
336 | /* The file_names table. NOTE! These strings are not allocated | |
337 | with xmalloc; instead, they are pointers into debug_line_buffer. | |
338 | Don't try to free them directly. */ | |
339 | unsigned int num_file_names, file_names_size; | |
340 | struct file_entry | |
c906108c | 341 | { |
debd256d JB |
342 | char *name; |
343 | unsigned int dir_index; | |
344 | unsigned int mod_time; | |
345 | unsigned int length; | |
aaa75496 | 346 | int included_p; /* Non-zero if referenced by the Line Number Program. */ |
debd256d JB |
347 | } *file_names; |
348 | ||
349 | /* The start and end of the statement program following this | |
6502dd73 | 350 | header. These point into dwarf2_per_objfile->line_buffer. */ |
debd256d JB |
351 | char *statement_program_start, *statement_program_end; |
352 | }; | |
c906108c SS |
353 | |
354 | /* When we construct a partial symbol table entry we only | |
355 | need this much information. */ | |
356 | struct partial_die_info | |
357 | { | |
72bf9492 | 358 | /* Offset of this DIE. */ |
c906108c | 359 | unsigned int offset; |
72bf9492 DJ |
360 | |
361 | /* DWARF-2 tag for this DIE. */ | |
362 | ENUM_BITFIELD(dwarf_tag) tag : 16; | |
363 | ||
364 | /* Language code associated with this DIE. This is only used | |
365 | for the compilation unit DIE. */ | |
366 | unsigned int language : 8; | |
367 | ||
368 | /* Assorted flags describing the data found in this DIE. */ | |
369 | unsigned int has_children : 1; | |
370 | unsigned int is_external : 1; | |
371 | unsigned int is_declaration : 1; | |
372 | unsigned int has_type : 1; | |
373 | unsigned int has_specification : 1; | |
aaa75496 | 374 | unsigned int has_stmt_list : 1; |
72bf9492 DJ |
375 | unsigned int has_pc_info : 1; |
376 | ||
377 | /* Flag set if the SCOPE field of this structure has been | |
378 | computed. */ | |
379 | unsigned int scope_set : 1; | |
380 | ||
381 | /* The name of this DIE. Normally the value of DW_AT_name, but | |
382 | sometimes DW_TAG_MIPS_linkage_name or a string computed in some | |
383 | other fashion. */ | |
c906108c | 384 | char *name; |
57c22c6c | 385 | char *dirname; |
72bf9492 DJ |
386 | |
387 | /* The scope to prepend to our children. This is generally | |
388 | allocated on the comp_unit_obstack, so will disappear | |
389 | when this compilation unit leaves the cache. */ | |
390 | char *scope; | |
391 | ||
392 | /* The location description associated with this DIE, if any. */ | |
393 | struct dwarf_block *locdesc; | |
394 | ||
395 | /* If HAS_PC_INFO, the PC range associated with this DIE. */ | |
c906108c SS |
396 | CORE_ADDR lowpc; |
397 | CORE_ADDR highpc; | |
72bf9492 DJ |
398 | |
399 | /* Pointer into the info_buffer pointing at the target of | |
400 | DW_AT_sibling, if any. */ | |
c906108c | 401 | char *sibling; |
72bf9492 DJ |
402 | |
403 | /* If HAS_SPECIFICATION, the offset of the DIE referred to by | |
404 | DW_AT_specification (or DW_AT_abstract_origin or | |
405 | DW_AT_extension). */ | |
406 | unsigned int spec_offset; | |
407 | ||
aaa75496 JB |
408 | /* If HAS_STMT_LIST, the offset of the Line Number Information data. */ |
409 | unsigned int line_offset; | |
410 | ||
72bf9492 DJ |
411 | /* Pointers to this DIE's parent, first child, and next sibling, |
412 | if any. */ | |
413 | struct partial_die_info *die_parent, *die_child, *die_sibling; | |
c906108c SS |
414 | }; |
415 | ||
416 | /* This data structure holds the information of an abbrev. */ | |
417 | struct abbrev_info | |
418 | { | |
419 | unsigned int number; /* number identifying abbrev */ | |
420 | enum dwarf_tag tag; /* dwarf tag */ | |
f3dd6933 DJ |
421 | unsigned short has_children; /* boolean */ |
422 | unsigned short num_attrs; /* number of attributes */ | |
c906108c SS |
423 | struct attr_abbrev *attrs; /* an array of attribute descriptions */ |
424 | struct abbrev_info *next; /* next in chain */ | |
425 | }; | |
426 | ||
427 | struct attr_abbrev | |
428 | { | |
429 | enum dwarf_attribute name; | |
430 | enum dwarf_form form; | |
431 | }; | |
432 | ||
433 | /* This data structure holds a complete die structure. */ | |
434 | struct die_info | |
435 | { | |
c5aa993b | 436 | enum dwarf_tag tag; /* Tag indicating type of die */ |
c5aa993b JM |
437 | unsigned int abbrev; /* Abbrev number */ |
438 | unsigned int offset; /* Offset in .debug_info section */ | |
439 | unsigned int num_attrs; /* Number of attributes */ | |
440 | struct attribute *attrs; /* An array of attributes */ | |
441 | struct die_info *next_ref; /* Next die in ref hash table */ | |
78ba4af6 JB |
442 | |
443 | /* The dies in a compilation unit form an n-ary tree. PARENT | |
444 | points to this die's parent; CHILD points to the first child of | |
445 | this node; and all the children of a given node are chained | |
446 | together via their SIBLING fields, terminated by a die whose | |
447 | tag is zero. */ | |
639d11d3 DC |
448 | struct die_info *child; /* Its first child, if any. */ |
449 | struct die_info *sibling; /* Its next sibling, if any. */ | |
450 | struct die_info *parent; /* Its parent, if any. */ | |
78ba4af6 | 451 | |
c5aa993b | 452 | struct type *type; /* Cached type information */ |
c906108c SS |
453 | }; |
454 | ||
455 | /* Attributes have a name and a value */ | |
456 | struct attribute | |
457 | { | |
458 | enum dwarf_attribute name; | |
459 | enum dwarf_form form; | |
460 | union | |
461 | { | |
462 | char *str; | |
463 | struct dwarf_block *blk; | |
ce5d95e1 JB |
464 | unsigned long unsnd; |
465 | long int snd; | |
c906108c SS |
466 | CORE_ADDR addr; |
467 | } | |
468 | u; | |
469 | }; | |
470 | ||
5fb290d7 DJ |
471 | struct function_range |
472 | { | |
473 | const char *name; | |
474 | CORE_ADDR lowpc, highpc; | |
475 | int seen_line; | |
476 | struct function_range *next; | |
477 | }; | |
478 | ||
c906108c SS |
479 | /* Get at parts of an attribute structure */ |
480 | ||
481 | #define DW_STRING(attr) ((attr)->u.str) | |
482 | #define DW_UNSND(attr) ((attr)->u.unsnd) | |
483 | #define DW_BLOCK(attr) ((attr)->u.blk) | |
484 | #define DW_SND(attr) ((attr)->u.snd) | |
485 | #define DW_ADDR(attr) ((attr)->u.addr) | |
486 | ||
487 | /* Blocks are a bunch of untyped bytes. */ | |
488 | struct dwarf_block | |
489 | { | |
490 | unsigned int size; | |
491 | char *data; | |
492 | }; | |
493 | ||
c906108c SS |
494 | #ifndef ATTR_ALLOC_CHUNK |
495 | #define ATTR_ALLOC_CHUNK 4 | |
496 | #endif | |
497 | ||
c906108c SS |
498 | /* A hash table of die offsets for following references. */ |
499 | #ifndef REF_HASH_SIZE | |
500 | #define REF_HASH_SIZE 1021 | |
501 | #endif | |
502 | ||
503 | static struct die_info *die_ref_table[REF_HASH_SIZE]; | |
504 | ||
c906108c SS |
505 | /* Allocate fields for structs, unions and enums in this size. */ |
506 | #ifndef DW_FIELD_ALLOC_CHUNK | |
507 | #define DW_FIELD_ALLOC_CHUNK 4 | |
508 | #endif | |
509 | ||
c906108c SS |
510 | /* A zeroed version of a partial die for initialization purposes. */ |
511 | static struct partial_die_info zeroed_partial_die; | |
512 | ||
7a292a7a SS |
513 | /* FIXME: decode_locdesc sets these variables to describe the location |
514 | to the caller. These ought to be a structure or something. If | |
515 | none of the flags are set, the object lives at the address returned | |
516 | by decode_locdesc. */ | |
517 | ||
7a292a7a SS |
518 | static int isreg; /* Object lives in register. |
519 | decode_locdesc's return value is | |
520 | the register number. */ | |
c906108c | 521 | |
c906108c | 522 | /* We put a pointer to this structure in the read_symtab_private field |
6502dd73 | 523 | of the psymtab. */ |
c906108c SS |
524 | |
525 | struct dwarf2_pinfo | |
c5aa993b | 526 | { |
6502dd73 | 527 | /* Offset in .debug_info for this compilation unit. */ |
c906108c | 528 | |
c5aa993b | 529 | unsigned long dwarf_info_offset; |
c5aa993b | 530 | }; |
c906108c SS |
531 | |
532 | #define PST_PRIVATE(p) ((struct dwarf2_pinfo *)(p)->read_symtab_private) | |
c906108c | 533 | #define DWARF_INFO_OFFSET(p) (PST_PRIVATE(p)->dwarf_info_offset) |
c906108c | 534 | |
c906108c SS |
535 | /* FIXME: We might want to set this from BFD via bfd_arch_bits_per_byte, |
536 | but this would require a corresponding change in unpack_field_as_long | |
537 | and friends. */ | |
538 | static int bits_per_byte = 8; | |
539 | ||
540 | /* The routines that read and process dies for a C struct or C++ class | |
541 | pass lists of data member fields and lists of member function fields | |
542 | in an instance of a field_info structure, as defined below. */ | |
543 | struct field_info | |
c5aa993b JM |
544 | { |
545 | /* List of data member and baseclasses fields. */ | |
546 | struct nextfield | |
547 | { | |
548 | struct nextfield *next; | |
549 | int accessibility; | |
550 | int virtuality; | |
551 | struct field field; | |
552 | } | |
553 | *fields; | |
c906108c | 554 | |
c5aa993b JM |
555 | /* Number of fields. */ |
556 | int nfields; | |
c906108c | 557 | |
c5aa993b JM |
558 | /* Number of baseclasses. */ |
559 | int nbaseclasses; | |
c906108c | 560 | |
c5aa993b JM |
561 | /* Set if the accesibility of one of the fields is not public. */ |
562 | int non_public_fields; | |
c906108c | 563 | |
c5aa993b JM |
564 | /* Member function fields array, entries are allocated in the order they |
565 | are encountered in the object file. */ | |
566 | struct nextfnfield | |
567 | { | |
568 | struct nextfnfield *next; | |
569 | struct fn_field fnfield; | |
570 | } | |
571 | *fnfields; | |
c906108c | 572 | |
c5aa993b JM |
573 | /* Member function fieldlist array, contains name of possibly overloaded |
574 | member function, number of overloaded member functions and a pointer | |
575 | to the head of the member function field chain. */ | |
576 | struct fnfieldlist | |
577 | { | |
578 | char *name; | |
579 | int length; | |
580 | struct nextfnfield *head; | |
581 | } | |
582 | *fnfieldlists; | |
c906108c | 583 | |
c5aa993b JM |
584 | /* Number of entries in the fnfieldlists array. */ |
585 | int nfnfields; | |
586 | }; | |
c906108c | 587 | |
c906108c SS |
588 | /* Various complaints about symbol reading that don't abort the process */ |
589 | ||
4d3c2250 KB |
590 | static void |
591 | dwarf2_statement_list_fits_in_line_number_section_complaint (void) | |
2e276125 | 592 | { |
4d3c2250 KB |
593 | complaint (&symfile_complaints, |
594 | "statement list doesn't fit in .debug_line section"); | |
595 | } | |
596 | ||
597 | static void | |
598 | dwarf2_complex_location_expr_complaint (void) | |
2e276125 | 599 | { |
4d3c2250 KB |
600 | complaint (&symfile_complaints, "location expression too complex"); |
601 | } | |
602 | ||
4d3c2250 KB |
603 | static void |
604 | dwarf2_const_value_length_mismatch_complaint (const char *arg1, int arg2, | |
605 | int arg3) | |
2e276125 | 606 | { |
4d3c2250 KB |
607 | complaint (&symfile_complaints, |
608 | "const value length mismatch for '%s', got %d, expected %d", arg1, | |
609 | arg2, arg3); | |
610 | } | |
611 | ||
612 | static void | |
613 | dwarf2_macros_too_long_complaint (void) | |
2e276125 | 614 | { |
4d3c2250 KB |
615 | complaint (&symfile_complaints, |
616 | "macro info runs off end of `.debug_macinfo' section"); | |
617 | } | |
618 | ||
619 | static void | |
620 | dwarf2_macro_malformed_definition_complaint (const char *arg1) | |
8e19ed76 | 621 | { |
4d3c2250 KB |
622 | complaint (&symfile_complaints, |
623 | "macro debug info contains a malformed macro definition:\n`%s'", | |
624 | arg1); | |
625 | } | |
626 | ||
627 | static void | |
628 | dwarf2_invalid_attrib_class_complaint (const char *arg1, const char *arg2) | |
8b2dbe47 | 629 | { |
4d3c2250 KB |
630 | complaint (&symfile_complaints, |
631 | "invalid attribute class or form for '%s' in '%s'", arg1, arg2); | |
632 | } | |
c906108c | 633 | |
c906108c SS |
634 | /* local function prototypes */ |
635 | ||
4efb68b1 | 636 | static void dwarf2_locate_sections (bfd *, asection *, void *); |
c906108c SS |
637 | |
638 | #if 0 | |
a14ed312 | 639 | static void dwarf2_build_psymtabs_easy (struct objfile *, int); |
c906108c SS |
640 | #endif |
641 | ||
aaa75496 JB |
642 | static void dwarf2_create_include_psymtab (char *, struct partial_symtab *, |
643 | struct objfile *); | |
644 | ||
645 | static void dwarf2_build_include_psymtabs (struct dwarf2_cu *, | |
646 | struct partial_die_info *, | |
647 | struct partial_symtab *); | |
648 | ||
a14ed312 | 649 | static void dwarf2_build_psymtabs_hard (struct objfile *, int); |
c906108c | 650 | |
72bf9492 DJ |
651 | static void scan_partial_symbols (struct partial_die_info *, |
652 | CORE_ADDR *, CORE_ADDR *, | |
653 | struct dwarf2_cu *); | |
c906108c | 654 | |
72bf9492 DJ |
655 | static void add_partial_symbol (struct partial_die_info *, |
656 | struct dwarf2_cu *); | |
63d06c5c | 657 | |
72bf9492 | 658 | static int pdi_needs_namespace (enum dwarf_tag tag); |
91c24f0a | 659 | |
72bf9492 DJ |
660 | static void add_partial_namespace (struct partial_die_info *pdi, |
661 | CORE_ADDR *lowpc, CORE_ADDR *highpc, | |
662 | struct dwarf2_cu *cu); | |
63d06c5c | 663 | |
72bf9492 DJ |
664 | static void add_partial_enumeration (struct partial_die_info *enum_pdi, |
665 | struct dwarf2_cu *cu); | |
91c24f0a DC |
666 | |
667 | static char *locate_pdi_sibling (struct partial_die_info *orig_pdi, | |
668 | char *info_ptr, | |
669 | bfd *abfd, | |
e7c27a73 | 670 | struct dwarf2_cu *cu); |
91c24f0a | 671 | |
a14ed312 | 672 | static void dwarf2_psymtab_to_symtab (struct partial_symtab *); |
c906108c | 673 | |
a14ed312 | 674 | static void psymtab_to_symtab_1 (struct partial_symtab *); |
c906108c | 675 | |
188dd5d6 | 676 | char *dwarf2_read_section (struct objfile *, asection *); |
c906108c | 677 | |
e7c27a73 | 678 | static void dwarf2_read_abbrevs (bfd *abfd, struct dwarf2_cu *cu); |
c906108c | 679 | |
f3dd6933 | 680 | static void dwarf2_free_abbrev_table (void *); |
c906108c | 681 | |
72bf9492 DJ |
682 | static struct abbrev_info *peek_die_abbrev (char *, int *, struct dwarf2_cu *); |
683 | ||
57349743 | 684 | static struct abbrev_info *dwarf2_lookup_abbrev (unsigned int, |
e7c27a73 | 685 | struct dwarf2_cu *); |
c906108c | 686 | |
72bf9492 DJ |
687 | static struct partial_die_info *load_partial_dies (bfd *, char *, int, |
688 | struct dwarf2_cu *); | |
689 | ||
a14ed312 | 690 | static char *read_partial_die (struct partial_die_info *, |
72bf9492 | 691 | struct abbrev_info *abbrev, unsigned int, |
e7c27a73 | 692 | bfd *, char *, struct dwarf2_cu *); |
c906108c | 693 | |
72bf9492 DJ |
694 | static struct partial_die_info *find_partial_die (unsigned long, |
695 | struct dwarf2_cu *, | |
696 | struct dwarf2_cu **); | |
697 | ||
698 | static void fixup_partial_die (struct partial_die_info *, | |
699 | struct dwarf2_cu *); | |
700 | ||
107d2387 | 701 | static char *read_full_die (struct die_info **, bfd *, char *, |
e7c27a73 | 702 | struct dwarf2_cu *, int *); |
c906108c | 703 | |
a14ed312 | 704 | static char *read_attribute (struct attribute *, struct attr_abbrev *, |
e7c27a73 | 705 | bfd *, char *, struct dwarf2_cu *); |
c906108c | 706 | |
a8329558 | 707 | static char *read_attribute_value (struct attribute *, unsigned, |
e7c27a73 | 708 | bfd *, char *, struct dwarf2_cu *); |
a8329558 | 709 | |
a14ed312 | 710 | static unsigned int read_1_byte (bfd *, char *); |
c906108c | 711 | |
a14ed312 | 712 | static int read_1_signed_byte (bfd *, char *); |
c906108c | 713 | |
a14ed312 | 714 | static unsigned int read_2_bytes (bfd *, char *); |
c906108c | 715 | |
a14ed312 | 716 | static unsigned int read_4_bytes (bfd *, char *); |
c906108c | 717 | |
ce5d95e1 | 718 | static unsigned long read_8_bytes (bfd *, char *); |
c906108c | 719 | |
e7c27a73 | 720 | static CORE_ADDR read_address (bfd *, char *ptr, struct dwarf2_cu *, |
107d2387 | 721 | int *bytes_read); |
c906108c | 722 | |
613e1657 KB |
723 | static LONGEST read_initial_length (bfd *, char *, |
724 | struct comp_unit_head *, int *bytes_read); | |
725 | ||
726 | static LONGEST read_offset (bfd *, char *, const struct comp_unit_head *, | |
727 | int *bytes_read); | |
728 | ||
a14ed312 | 729 | static char *read_n_bytes (bfd *, char *, unsigned int); |
c906108c | 730 | |
a14ed312 | 731 | static char *read_string (bfd *, char *, unsigned int *); |
c906108c | 732 | |
4bdf3d34 JJ |
733 | static char *read_indirect_string (bfd *, char *, const struct comp_unit_head *, |
734 | unsigned int *); | |
735 | ||
ce5d95e1 | 736 | static unsigned long read_unsigned_leb128 (bfd *, char *, unsigned int *); |
c906108c | 737 | |
ce5d95e1 | 738 | static long read_signed_leb128 (bfd *, char *, unsigned int *); |
c906108c | 739 | |
4bb7a0a7 DJ |
740 | static char *skip_leb128 (bfd *, char *); |
741 | ||
e142c38c | 742 | static void set_cu_language (unsigned int, struct dwarf2_cu *); |
c906108c | 743 | |
e142c38c DJ |
744 | static struct attribute *dwarf2_attr (struct die_info *, unsigned int, |
745 | struct dwarf2_cu *); | |
c906108c | 746 | |
05cf31d1 JB |
747 | static int dwarf2_flag_true_p (struct die_info *die, unsigned name, |
748 | struct dwarf2_cu *cu); | |
749 | ||
e142c38c | 750 | static int die_is_declaration (struct die_info *, struct dwarf2_cu *cu); |
3ca72b44 | 751 | |
e142c38c DJ |
752 | static struct die_info *die_specification (struct die_info *die, |
753 | struct dwarf2_cu *); | |
63d06c5c | 754 | |
debd256d JB |
755 | static void free_line_header (struct line_header *lh); |
756 | ||
aaa75496 JB |
757 | static void add_file_name (struct line_header *, char *, unsigned int, |
758 | unsigned int, unsigned int); | |
759 | ||
debd256d JB |
760 | static struct line_header *(dwarf_decode_line_header |
761 | (unsigned int offset, | |
e7c27a73 | 762 | bfd *abfd, struct dwarf2_cu *cu)); |
debd256d JB |
763 | |
764 | static void dwarf_decode_lines (struct line_header *, char *, bfd *, | |
aaa75496 | 765 | struct dwarf2_cu *, struct partial_symtab *); |
c906108c | 766 | |
a14ed312 | 767 | static void dwarf2_start_subfile (char *, char *); |
c906108c | 768 | |
a14ed312 | 769 | static struct symbol *new_symbol (struct die_info *, struct type *, |
e7c27a73 | 770 | struct dwarf2_cu *); |
c906108c | 771 | |
a14ed312 | 772 | static void dwarf2_const_value (struct attribute *, struct symbol *, |
e7c27a73 | 773 | struct dwarf2_cu *); |
c906108c | 774 | |
2df3850c JM |
775 | static void dwarf2_const_value_data (struct attribute *attr, |
776 | struct symbol *sym, | |
777 | int bits); | |
778 | ||
e7c27a73 | 779 | static struct type *die_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 780 | |
e7c27a73 DJ |
781 | static struct type *die_containing_type (struct die_info *, |
782 | struct dwarf2_cu *); | |
c906108c SS |
783 | |
784 | #if 0 | |
a14ed312 | 785 | static struct type *type_at_offset (unsigned int, struct objfile *); |
c906108c SS |
786 | #endif |
787 | ||
e7c27a73 | 788 | static struct type *tag_type_to_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 789 | |
e7c27a73 | 790 | static void read_type_die (struct die_info *, struct dwarf2_cu *); |
c906108c | 791 | |
086ed43d | 792 | static char *determine_prefix (struct die_info *die, struct dwarf2_cu *); |
63d06c5c DC |
793 | |
794 | static char *typename_concat (const char *prefix, const char *suffix); | |
795 | ||
e7c27a73 | 796 | static void read_typedef (struct die_info *, struct dwarf2_cu *); |
c906108c | 797 | |
e7c27a73 | 798 | static void read_base_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 799 | |
a02abb62 JB |
800 | static void read_subrange_type (struct die_info *die, struct dwarf2_cu *cu); |
801 | ||
e7c27a73 | 802 | static void read_file_scope (struct die_info *, struct dwarf2_cu *); |
c906108c | 803 | |
e7c27a73 | 804 | static void read_func_scope (struct die_info *, struct dwarf2_cu *); |
c906108c | 805 | |
e7c27a73 | 806 | static void read_lexical_block_scope (struct die_info *, struct dwarf2_cu *); |
c906108c | 807 | |
a14ed312 | 808 | static int dwarf2_get_pc_bounds (struct die_info *, |
e7c27a73 | 809 | CORE_ADDR *, CORE_ADDR *, struct dwarf2_cu *); |
c906108c | 810 | |
fae299cd DC |
811 | static void get_scope_pc_bounds (struct die_info *, |
812 | CORE_ADDR *, CORE_ADDR *, | |
813 | struct dwarf2_cu *); | |
814 | ||
a14ed312 | 815 | static void dwarf2_add_field (struct field_info *, struct die_info *, |
e7c27a73 | 816 | struct dwarf2_cu *); |
c906108c | 817 | |
a14ed312 | 818 | static void dwarf2_attach_fields_to_type (struct field_info *, |
e7c27a73 | 819 | struct type *, struct dwarf2_cu *); |
c906108c | 820 | |
a14ed312 | 821 | static void dwarf2_add_member_fn (struct field_info *, |
e26fb1d7 | 822 | struct die_info *, struct type *, |
e7c27a73 | 823 | struct dwarf2_cu *); |
c906108c | 824 | |
a14ed312 | 825 | static void dwarf2_attach_fn_fields_to_type (struct field_info *, |
e7c27a73 | 826 | struct type *, struct dwarf2_cu *); |
c906108c | 827 | |
134d01f1 DJ |
828 | static void read_structure_type (struct die_info *, struct dwarf2_cu *); |
829 | ||
830 | static void process_structure_scope (struct die_info *, struct dwarf2_cu *); | |
c906108c | 831 | |
8176b9b8 DC |
832 | static char *determine_class_name (struct die_info *die, struct dwarf2_cu *cu); |
833 | ||
e7c27a73 | 834 | static void read_common_block (struct die_info *, struct dwarf2_cu *); |
c906108c | 835 | |
e7c27a73 | 836 | static void read_namespace (struct die_info *die, struct dwarf2_cu *); |
d9fa45fe | 837 | |
38d518c9 | 838 | static const char *namespace_name (struct die_info *die, |
e142c38c | 839 | int *is_anonymous, struct dwarf2_cu *); |
38d518c9 | 840 | |
134d01f1 DJ |
841 | static void read_enumeration_type (struct die_info *, struct dwarf2_cu *); |
842 | ||
843 | static void process_enumeration_scope (struct die_info *, struct dwarf2_cu *); | |
c906108c | 844 | |
e7c27a73 | 845 | static struct type *dwarf_base_type (int, int, struct dwarf2_cu *); |
c906108c | 846 | |
e7c27a73 | 847 | static CORE_ADDR decode_locdesc (struct dwarf_block *, struct dwarf2_cu *); |
c906108c | 848 | |
e7c27a73 | 849 | static void read_array_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 850 | |
e7c27a73 | 851 | static void read_tag_pointer_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 852 | |
e7c27a73 DJ |
853 | static void read_tag_ptr_to_member_type (struct die_info *, |
854 | struct dwarf2_cu *); | |
c906108c | 855 | |
e7c27a73 | 856 | static void read_tag_reference_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 857 | |
e7c27a73 | 858 | static void read_tag_const_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 859 | |
e7c27a73 | 860 | static void read_tag_volatile_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 861 | |
e7c27a73 | 862 | static void read_tag_string_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 863 | |
e7c27a73 | 864 | static void read_subroutine_type (struct die_info *, struct dwarf2_cu *); |
c906108c | 865 | |
e7c27a73 | 866 | static struct die_info *read_comp_unit (char *, bfd *, struct dwarf2_cu *); |
c906108c | 867 | |
639d11d3 | 868 | static struct die_info *read_die_and_children (char *info_ptr, bfd *abfd, |
e7c27a73 | 869 | struct dwarf2_cu *, |
639d11d3 DC |
870 | char **new_info_ptr, |
871 | struct die_info *parent); | |
872 | ||
873 | static struct die_info *read_die_and_siblings (char *info_ptr, bfd *abfd, | |
e7c27a73 | 874 | struct dwarf2_cu *, |
639d11d3 DC |
875 | char **new_info_ptr, |
876 | struct die_info *parent); | |
877 | ||
a14ed312 | 878 | static void free_die_list (struct die_info *); |
c906108c | 879 | |
74b7792f AC |
880 | static struct cleanup *make_cleanup_free_die_list (struct die_info *); |
881 | ||
e7c27a73 | 882 | static void process_die (struct die_info *, struct dwarf2_cu *); |
c906108c | 883 | |
e142c38c | 884 | static char *dwarf2_linkage_name (struct die_info *, struct dwarf2_cu *); |
c906108c | 885 | |
e142c38c | 886 | static char *dwarf2_name (struct die_info *die, struct dwarf2_cu *); |
9219021c | 887 | |
e142c38c DJ |
888 | static struct die_info *dwarf2_extension (struct die_info *die, |
889 | struct dwarf2_cu *); | |
9219021c | 890 | |
a14ed312 | 891 | static char *dwarf_tag_name (unsigned int); |
c906108c | 892 | |
a14ed312 | 893 | static char *dwarf_attr_name (unsigned int); |
c906108c | 894 | |
a14ed312 | 895 | static char *dwarf_form_name (unsigned int); |
c906108c | 896 | |
a14ed312 | 897 | static char *dwarf_stack_op_name (unsigned int); |
c906108c | 898 | |
a14ed312 | 899 | static char *dwarf_bool_name (unsigned int); |
c906108c | 900 | |
a14ed312 | 901 | static char *dwarf_type_encoding_name (unsigned int); |
c906108c SS |
902 | |
903 | #if 0 | |
a14ed312 | 904 | static char *dwarf_cfi_name (unsigned int); |
c906108c | 905 | |
a14ed312 | 906 | struct die_info *copy_die (struct die_info *); |
c906108c SS |
907 | #endif |
908 | ||
f9aca02d | 909 | static struct die_info *sibling_die (struct die_info *); |
c906108c | 910 | |
f9aca02d | 911 | static void dump_die (struct die_info *); |
c906108c | 912 | |
f9aca02d | 913 | static void dump_die_list (struct die_info *); |
c906108c | 914 | |
f9aca02d | 915 | static void store_in_ref_table (unsigned int, struct die_info *); |
c906108c | 916 | |
7f0e3f52 | 917 | static void dwarf2_empty_hash_tables (void); |
c906108c | 918 | |
e142c38c DJ |
919 | static unsigned int dwarf2_get_ref_die_offset (struct attribute *, |
920 | struct dwarf2_cu *); | |
c906108c | 921 | |
a02abb62 JB |
922 | static int dwarf2_get_attr_constant_value (struct attribute *, int); |
923 | ||
f9aca02d | 924 | static struct die_info *follow_die_ref (unsigned int); |
c906108c | 925 | |
e142c38c DJ |
926 | static struct type *dwarf2_fundamental_type (struct objfile *, int, |
927 | struct dwarf2_cu *); | |
c906108c SS |
928 | |
929 | /* memory allocation interface */ | |
930 | ||
7b5a2f43 | 931 | static struct dwarf_block *dwarf_alloc_block (struct dwarf2_cu *); |
c906108c | 932 | |
f3dd6933 | 933 | static struct abbrev_info *dwarf_alloc_abbrev (struct dwarf2_cu *); |
c906108c | 934 | |
a14ed312 | 935 | static struct die_info *dwarf_alloc_die (void); |
c906108c | 936 | |
e142c38c | 937 | static void initialize_cu_func_list (struct dwarf2_cu *); |
5fb290d7 | 938 | |
e142c38c DJ |
939 | static void add_to_cu_func_list (const char *, CORE_ADDR, CORE_ADDR, |
940 | struct dwarf2_cu *); | |
5fb290d7 | 941 | |
2e276125 | 942 | static void dwarf_decode_macros (struct line_header *, unsigned int, |
e7c27a73 | 943 | char *, bfd *, struct dwarf2_cu *); |
2e276125 | 944 | |
8e19ed76 PS |
945 | static int attr_form_is_block (struct attribute *); |
946 | ||
4c2df51b DJ |
947 | static void |
948 | dwarf2_symbol_mark_computed (struct attribute *attr, struct symbol *sym, | |
e7c27a73 | 949 | struct dwarf2_cu *cu); |
4c2df51b | 950 | |
4bb7a0a7 DJ |
951 | static char *skip_one_die (char *info_ptr, struct abbrev_info *abbrev, |
952 | struct dwarf2_cu *cu); | |
953 | ||
72bf9492 DJ |
954 | static void free_stack_comp_unit (void *); |
955 | ||
956 | static void *hashtab_obstack_allocate (void *data, size_t size, size_t count); | |
957 | ||
958 | static void dummy_obstack_deallocate (void *object, void *data); | |
959 | ||
960 | static hashval_t partial_die_hash (const void *item); | |
961 | ||
962 | static int partial_die_eq (const void *item_lhs, const void *item_rhs); | |
963 | ||
c906108c SS |
964 | /* Try to locate the sections we need for DWARF 2 debugging |
965 | information and return true if we have enough to do something. */ | |
966 | ||
967 | int | |
6502dd73 | 968 | dwarf2_has_info (struct objfile *objfile) |
c906108c | 969 | { |
6502dd73 DJ |
970 | struct dwarf2_per_objfile *data; |
971 | ||
972 | /* Initialize per-objfile state. */ | |
973 | data = obstack_alloc (&objfile->objfile_obstack, sizeof (*data)); | |
974 | memset (data, 0, sizeof (*data)); | |
975 | set_objfile_data (objfile, dwarf2_objfile_data_key, data); | |
976 | dwarf2_per_objfile = data; | |
977 | ||
188dd5d6 DJ |
978 | dwarf_info_section = 0; |
979 | dwarf_abbrev_section = 0; | |
980 | dwarf_line_section = 0; | |
981 | dwarf_str_section = 0; | |
982 | dwarf_macinfo_section = 0; | |
983 | dwarf_frame_section = 0; | |
984 | dwarf_eh_frame_section = 0; | |
985 | dwarf_ranges_section = 0; | |
986 | dwarf_loc_section = 0; | |
af34e669 | 987 | |
6502dd73 | 988 | bfd_map_over_sections (objfile->obfd, dwarf2_locate_sections, NULL); |
188dd5d6 | 989 | return (dwarf_info_section != NULL && dwarf_abbrev_section != NULL); |
c906108c SS |
990 | } |
991 | ||
992 | /* This function is mapped across the sections and remembers the | |
993 | offset and size of each of the debugging sections we are interested | |
994 | in. */ | |
995 | ||
996 | static void | |
4efb68b1 | 997 | dwarf2_locate_sections (bfd *ignore_abfd, asection *sectp, void *ignore_ptr) |
c906108c | 998 | { |
6314a349 | 999 | if (strcmp (sectp->name, INFO_SECTION) == 0) |
c906108c | 1000 | { |
2c500098 | 1001 | dwarf2_per_objfile->info_size = bfd_get_section_size (sectp); |
086df311 | 1002 | dwarf_info_section = sectp; |
c906108c | 1003 | } |
6314a349 | 1004 | else if (strcmp (sectp->name, ABBREV_SECTION) == 0) |
c906108c | 1005 | { |
2c500098 | 1006 | dwarf2_per_objfile->abbrev_size = bfd_get_section_size (sectp); |
086df311 | 1007 | dwarf_abbrev_section = sectp; |
c906108c | 1008 | } |
6314a349 | 1009 | else if (strcmp (sectp->name, LINE_SECTION) == 0) |
c906108c | 1010 | { |
2c500098 | 1011 | dwarf2_per_objfile->line_size = bfd_get_section_size (sectp); |
086df311 | 1012 | dwarf_line_section = sectp; |
c906108c | 1013 | } |
6314a349 | 1014 | else if (strcmp (sectp->name, PUBNAMES_SECTION) == 0) |
c906108c | 1015 | { |
2c500098 | 1016 | dwarf2_per_objfile->pubnames_size = bfd_get_section_size (sectp); |
086df311 | 1017 | dwarf_pubnames_section = sectp; |
c906108c | 1018 | } |
6314a349 | 1019 | else if (strcmp (sectp->name, ARANGES_SECTION) == 0) |
c906108c | 1020 | { |
2c500098 | 1021 | dwarf2_per_objfile->aranges_size = bfd_get_section_size (sectp); |
086df311 | 1022 | dwarf_aranges_section = sectp; |
c906108c | 1023 | } |
6314a349 | 1024 | else if (strcmp (sectp->name, LOC_SECTION) == 0) |
c906108c | 1025 | { |
2c500098 | 1026 | dwarf2_per_objfile->loc_size = bfd_get_section_size (sectp); |
086df311 | 1027 | dwarf_loc_section = sectp; |
c906108c | 1028 | } |
6314a349 | 1029 | else if (strcmp (sectp->name, MACINFO_SECTION) == 0) |
c906108c | 1030 | { |
2c500098 | 1031 | dwarf2_per_objfile->macinfo_size = bfd_get_section_size (sectp); |
0cf824c9 | 1032 | dwarf_macinfo_section = sectp; |
c906108c | 1033 | } |
6314a349 | 1034 | else if (strcmp (sectp->name, STR_SECTION) == 0) |
c906108c | 1035 | { |
2c500098 | 1036 | dwarf2_per_objfile->str_size = bfd_get_section_size (sectp); |
086df311 | 1037 | dwarf_str_section = sectp; |
c906108c | 1038 | } |
6314a349 | 1039 | else if (strcmp (sectp->name, FRAME_SECTION) == 0) |
b6af0555 | 1040 | { |
2c500098 | 1041 | dwarf2_per_objfile->frame_size = bfd_get_section_size (sectp); |
086df311 | 1042 | dwarf_frame_section = sectp; |
b6af0555 | 1043 | } |
6314a349 | 1044 | else if (strcmp (sectp->name, EH_FRAME_SECTION) == 0) |
b6af0555 | 1045 | { |
3799ccc6 EZ |
1046 | flagword aflag = bfd_get_section_flags (ignore_abfd, sectp); |
1047 | if (aflag & SEC_HAS_CONTENTS) | |
1048 | { | |
2c500098 | 1049 | dwarf2_per_objfile->eh_frame_size = bfd_get_section_size (sectp); |
3799ccc6 EZ |
1050 | dwarf_eh_frame_section = sectp; |
1051 | } | |
b6af0555 | 1052 | } |
6314a349 | 1053 | else if (strcmp (sectp->name, RANGES_SECTION) == 0) |
af34e669 | 1054 | { |
2c500098 | 1055 | dwarf2_per_objfile->ranges_size = bfd_get_section_size (sectp); |
6f10aeb1 | 1056 | dwarf_ranges_section = sectp; |
af34e669 | 1057 | } |
c906108c SS |
1058 | } |
1059 | ||
1060 | /* Build a partial symbol table. */ | |
1061 | ||
1062 | void | |
fba45db2 | 1063 | dwarf2_build_psymtabs (struct objfile *objfile, int mainline) |
c906108c | 1064 | { |
c906108c SS |
1065 | /* We definitely need the .debug_info and .debug_abbrev sections */ |
1066 | ||
6502dd73 DJ |
1067 | dwarf2_per_objfile->info_buffer = dwarf2_read_section (objfile, dwarf_info_section); |
1068 | dwarf2_per_objfile->abbrev_buffer = dwarf2_read_section (objfile, dwarf_abbrev_section); | |
188dd5d6 DJ |
1069 | |
1070 | if (dwarf_line_section) | |
6502dd73 | 1071 | dwarf2_per_objfile->line_buffer = dwarf2_read_section (objfile, dwarf_line_section); |
41ff2da1 | 1072 | else |
6502dd73 | 1073 | dwarf2_per_objfile->line_buffer = NULL; |
c906108c | 1074 | |
188dd5d6 | 1075 | if (dwarf_str_section) |
6502dd73 | 1076 | dwarf2_per_objfile->str_buffer = dwarf2_read_section (objfile, dwarf_str_section); |
4bdf3d34 | 1077 | else |
6502dd73 | 1078 | dwarf2_per_objfile->str_buffer = NULL; |
4bdf3d34 | 1079 | |
188dd5d6 | 1080 | if (dwarf_macinfo_section) |
6502dd73 | 1081 | dwarf2_per_objfile->macinfo_buffer = dwarf2_read_section (objfile, |
086df311 | 1082 | dwarf_macinfo_section); |
2e276125 | 1083 | else |
6502dd73 | 1084 | dwarf2_per_objfile->macinfo_buffer = NULL; |
2e276125 | 1085 | |
188dd5d6 | 1086 | if (dwarf_ranges_section) |
6502dd73 | 1087 | dwarf2_per_objfile->ranges_buffer = dwarf2_read_section (objfile, dwarf_ranges_section); |
af34e669 | 1088 | else |
6502dd73 | 1089 | dwarf2_per_objfile->ranges_buffer = NULL; |
af34e669 | 1090 | |
188dd5d6 | 1091 | if (dwarf_loc_section) |
6502dd73 | 1092 | dwarf2_per_objfile->loc_buffer = dwarf2_read_section (objfile, dwarf_loc_section); |
0d53c4c4 | 1093 | else |
6502dd73 | 1094 | dwarf2_per_objfile->loc_buffer = NULL; |
0d53c4c4 | 1095 | |
ef96bde8 EZ |
1096 | if (mainline |
1097 | || (objfile->global_psymbols.size == 0 | |
1098 | && objfile->static_psymbols.size == 0)) | |
c906108c SS |
1099 | { |
1100 | init_psymbol_list (objfile, 1024); | |
1101 | } | |
1102 | ||
1103 | #if 0 | |
1104 | if (dwarf_aranges_offset && dwarf_pubnames_offset) | |
1105 | { | |
d4f3574e | 1106 | /* Things are significantly easier if we have .debug_aranges and |
c906108c SS |
1107 | .debug_pubnames sections */ |
1108 | ||
d4f3574e | 1109 | dwarf2_build_psymtabs_easy (objfile, mainline); |
c906108c SS |
1110 | } |
1111 | else | |
1112 | #endif | |
1113 | /* only test this case for now */ | |
c5aa993b | 1114 | { |
c906108c | 1115 | /* In this case we have to work a bit harder */ |
d4f3574e | 1116 | dwarf2_build_psymtabs_hard (objfile, mainline); |
c906108c SS |
1117 | } |
1118 | } | |
1119 | ||
1120 | #if 0 | |
1121 | /* Build the partial symbol table from the information in the | |
1122 | .debug_pubnames and .debug_aranges sections. */ | |
1123 | ||
1124 | static void | |
fba45db2 | 1125 | dwarf2_build_psymtabs_easy (struct objfile *objfile, int mainline) |
c906108c SS |
1126 | { |
1127 | bfd *abfd = objfile->obfd; | |
1128 | char *aranges_buffer, *pubnames_buffer; | |
1129 | char *aranges_ptr, *pubnames_ptr; | |
1130 | unsigned int entry_length, version, info_offset, info_size; | |
1131 | ||
1132 | pubnames_buffer = dwarf2_read_section (objfile, | |
086df311 | 1133 | dwarf_pubnames_section); |
c906108c | 1134 | pubnames_ptr = pubnames_buffer; |
6502dd73 | 1135 | while ((pubnames_ptr - pubnames_buffer) < dwarf2_per_objfile->pubnames_size) |
c906108c | 1136 | { |
613e1657 KB |
1137 | struct comp_unit_head cu_header; |
1138 | int bytes_read; | |
1139 | ||
1140 | entry_length = read_initial_length (abfd, pubnames_ptr, &cu_header, | |
1141 | &bytes_read); | |
1142 | pubnames_ptr += bytes_read; | |
c906108c SS |
1143 | version = read_1_byte (abfd, pubnames_ptr); |
1144 | pubnames_ptr += 1; | |
1145 | info_offset = read_4_bytes (abfd, pubnames_ptr); | |
1146 | pubnames_ptr += 4; | |
1147 | info_size = read_4_bytes (abfd, pubnames_ptr); | |
1148 | pubnames_ptr += 4; | |
1149 | } | |
1150 | ||
1151 | aranges_buffer = dwarf2_read_section (objfile, | |
086df311 | 1152 | dwarf_aranges_section); |
c906108c SS |
1153 | |
1154 | } | |
1155 | #endif | |
1156 | ||
107d2387 AC |
1157 | /* Read in the comp unit header information from the debug_info at |
1158 | info_ptr. */ | |
1159 | ||
1160 | static char * | |
1161 | read_comp_unit_head (struct comp_unit_head *cu_header, | |
1162 | char *info_ptr, bfd *abfd) | |
1163 | { | |
1164 | int signed_addr; | |
613e1657 KB |
1165 | int bytes_read; |
1166 | cu_header->length = read_initial_length (abfd, info_ptr, cu_header, | |
1167 | &bytes_read); | |
1168 | info_ptr += bytes_read; | |
107d2387 AC |
1169 | cu_header->version = read_2_bytes (abfd, info_ptr); |
1170 | info_ptr += 2; | |
613e1657 KB |
1171 | cu_header->abbrev_offset = read_offset (abfd, info_ptr, cu_header, |
1172 | &bytes_read); | |
1173 | info_ptr += bytes_read; | |
107d2387 AC |
1174 | cu_header->addr_size = read_1_byte (abfd, info_ptr); |
1175 | info_ptr += 1; | |
1176 | signed_addr = bfd_get_sign_extend_vma (abfd); | |
1177 | if (signed_addr < 0) | |
8e65ff28 AC |
1178 | internal_error (__FILE__, __LINE__, |
1179 | "read_comp_unit_head: dwarf from non elf file"); | |
107d2387 AC |
1180 | cu_header->signed_addr_p = signed_addr; |
1181 | return info_ptr; | |
1182 | } | |
1183 | ||
72bf9492 DJ |
1184 | static char * |
1185 | partial_read_comp_unit_head (struct comp_unit_head *header, char *info_ptr, | |
1186 | bfd *abfd) | |
1187 | { | |
1188 | char *beg_of_comp_unit = info_ptr; | |
1189 | ||
1190 | info_ptr = read_comp_unit_head (header, info_ptr, abfd); | |
1191 | ||
1192 | if (header->version != 2) | |
1193 | error ("Dwarf Error: wrong version in compilation unit header " | |
1194 | "(is %d, should be %d) [in module %s]", header->version, | |
1195 | 2, bfd_get_filename (abfd)); | |
1196 | ||
1197 | if (header->abbrev_offset >= dwarf2_per_objfile->abbrev_size) | |
1198 | error ("Dwarf Error: bad offset (0x%lx) in compilation unit header " | |
1199 | "(offset 0x%lx + 6) [in module %s]", | |
1200 | (long) header->abbrev_offset, | |
1201 | (long) (beg_of_comp_unit - dwarf2_per_objfile->info_buffer), | |
1202 | bfd_get_filename (abfd)); | |
1203 | ||
1204 | if (beg_of_comp_unit + header->length + header->initial_length_size | |
1205 | > dwarf2_per_objfile->info_buffer + dwarf2_per_objfile->info_size) | |
1206 | error ("Dwarf Error: bad length (0x%lx) in compilation unit header " | |
1207 | "(offset 0x%lx + 0) [in module %s]", | |
1208 | (long) header->length, | |
1209 | (long) (beg_of_comp_unit - dwarf2_per_objfile->info_buffer), | |
1210 | bfd_get_filename (abfd)); | |
1211 | ||
1212 | return info_ptr; | |
1213 | } | |
1214 | ||
aaa75496 JB |
1215 | /* Allocate a new partial symtab for file named NAME and mark this new |
1216 | partial symtab as being an include of PST. */ | |
1217 | ||
1218 | static void | |
1219 | dwarf2_create_include_psymtab (char *name, struct partial_symtab *pst, | |
1220 | struct objfile *objfile) | |
1221 | { | |
1222 | struct partial_symtab *subpst = allocate_psymtab (name, objfile); | |
1223 | ||
1224 | subpst->section_offsets = pst->section_offsets; | |
1225 | subpst->textlow = 0; | |
1226 | subpst->texthigh = 0; | |
1227 | ||
1228 | subpst->dependencies = (struct partial_symtab **) | |
1229 | obstack_alloc (&objfile->objfile_obstack, | |
1230 | sizeof (struct partial_symtab *)); | |
1231 | subpst->dependencies[0] = pst; | |
1232 | subpst->number_of_dependencies = 1; | |
1233 | ||
1234 | subpst->globals_offset = 0; | |
1235 | subpst->n_global_syms = 0; | |
1236 | subpst->statics_offset = 0; | |
1237 | subpst->n_static_syms = 0; | |
1238 | subpst->symtab = NULL; | |
1239 | subpst->read_symtab = pst->read_symtab; | |
1240 | subpst->readin = 0; | |
1241 | ||
1242 | /* No private part is necessary for include psymtabs. This property | |
1243 | can be used to differentiate between such include psymtabs and | |
1244 | the regular ones. If it ever happens that a regular psymtab can | |
58a9656e | 1245 | legitimally have a NULL private part, then we'll have to add a |
aaa75496 | 1246 | dedicated field for that in the dwarf2_pinfo structure. */ |
58a9656e | 1247 | subpst->read_symtab_private = NULL; |
aaa75496 JB |
1248 | } |
1249 | ||
1250 | /* Read the Line Number Program data and extract the list of files | |
1251 | included by the source file represented by PST. Build an include | |
1252 | partial symtab for each of these included files. | |
1253 | ||
1254 | This procedure assumes that there *is* a Line Number Program in | |
1255 | the given CU. Callers should check that PDI->HAS_STMT_LIST is set | |
1256 | before calling this procedure. */ | |
1257 | ||
1258 | static void | |
1259 | dwarf2_build_include_psymtabs (struct dwarf2_cu *cu, | |
1260 | struct partial_die_info *pdi, | |
1261 | struct partial_symtab *pst) | |
1262 | { | |
1263 | struct objfile *objfile = cu->objfile; | |
1264 | bfd *abfd = objfile->obfd; | |
1265 | struct line_header *lh; | |
1266 | ||
1267 | lh = dwarf_decode_line_header (pdi->line_offset, abfd, cu); | |
1268 | if (lh == NULL) | |
1269 | return; /* No linetable, so no includes. */ | |
1270 | ||
1271 | dwarf_decode_lines (lh, NULL, abfd, cu, pst); | |
1272 | ||
1273 | free_line_header (lh); | |
1274 | } | |
1275 | ||
1276 | ||
c906108c SS |
1277 | /* Build the partial symbol table by doing a quick pass through the |
1278 | .debug_info and .debug_abbrev sections. */ | |
1279 | ||
1280 | static void | |
fba45db2 | 1281 | dwarf2_build_psymtabs_hard (struct objfile *objfile, int mainline) |
c906108c SS |
1282 | { |
1283 | /* Instead of reading this into a big buffer, we should probably use | |
1284 | mmap() on architectures that support it. (FIXME) */ | |
1285 | bfd *abfd = objfile->obfd; | |
72bf9492 | 1286 | char *info_ptr; |
c906108c | 1287 | char *beg_of_comp_unit; |
c906108c SS |
1288 | struct partial_die_info comp_unit_die; |
1289 | struct partial_symtab *pst; | |
e142c38c | 1290 | CORE_ADDR lowpc, highpc, baseaddr; |
c906108c | 1291 | |
6502dd73 | 1292 | info_ptr = dwarf2_per_objfile->info_buffer; |
c906108c | 1293 | |
6502dd73 | 1294 | /* Since the objects we're extracting from .debug_info vary in |
af703f96 | 1295 | length, only the individual functions to extract them (like |
72bf9492 | 1296 | read_comp_unit_head and load_partial_die) can really know whether |
af703f96 JB |
1297 | the buffer is large enough to hold another complete object. |
1298 | ||
6502dd73 DJ |
1299 | At the moment, they don't actually check that. If .debug_info |
1300 | holds just one extra byte after the last compilation unit's dies, | |
1301 | then read_comp_unit_head will happily read off the end of the | |
1302 | buffer. read_partial_die is similarly casual. Those functions | |
1303 | should be fixed. | |
af703f96 JB |
1304 | |
1305 | For this loop condition, simply checking whether there's any data | |
1306 | left at all should be sufficient. */ | |
6502dd73 DJ |
1307 | while (info_ptr < (dwarf2_per_objfile->info_buffer |
1308 | + dwarf2_per_objfile->info_size)) | |
c906108c | 1309 | { |
f3dd6933 | 1310 | struct cleanup *back_to_inner; |
e7c27a73 | 1311 | struct dwarf2_cu cu; |
72bf9492 DJ |
1312 | struct abbrev_info *abbrev; |
1313 | unsigned int bytes_read; | |
1314 | struct dwarf2_per_cu_data *this_cu; | |
1315 | ||
c906108c | 1316 | beg_of_comp_unit = info_ptr; |
c906108c | 1317 | |
72bf9492 DJ |
1318 | memset (&cu, 0, sizeof (cu)); |
1319 | ||
1320 | obstack_init (&cu.comp_unit_obstack); | |
1321 | ||
1322 | back_to_inner = make_cleanup (free_stack_comp_unit, &cu); | |
1323 | ||
e7c27a73 | 1324 | cu.objfile = objfile; |
72bf9492 | 1325 | info_ptr = partial_read_comp_unit_head (&cu.header, info_ptr, abfd); |
e7c27a73 | 1326 | |
57349743 | 1327 | /* Complete the cu_header */ |
6502dd73 | 1328 | cu.header.offset = beg_of_comp_unit - dwarf2_per_objfile->info_buffer; |
e7c27a73 DJ |
1329 | cu.header.first_die_ptr = info_ptr; |
1330 | cu.header.cu_head_ptr = beg_of_comp_unit; | |
57349743 | 1331 | |
e142c38c DJ |
1332 | cu.list_in_scope = &file_symbols; |
1333 | ||
72bf9492 DJ |
1334 | cu.partial_dies = NULL; |
1335 | ||
c906108c | 1336 | /* Read the abbrevs for this compilation unit into a table */ |
e7c27a73 | 1337 | dwarf2_read_abbrevs (abfd, &cu); |
72bf9492 | 1338 | make_cleanup (dwarf2_free_abbrev_table, &cu); |
c906108c SS |
1339 | |
1340 | /* Read the compilation unit die */ | |
72bf9492 DJ |
1341 | abbrev = peek_die_abbrev (info_ptr, &bytes_read, &cu); |
1342 | info_ptr = read_partial_die (&comp_unit_die, abbrev, bytes_read, | |
1343 | abfd, info_ptr, &cu); | |
c906108c SS |
1344 | |
1345 | /* Set the language we're debugging */ | |
e142c38c | 1346 | set_cu_language (comp_unit_die.language, &cu); |
c906108c SS |
1347 | |
1348 | /* Allocate a new partial symbol table structure */ | |
d4f3574e | 1349 | pst = start_psymtab_common (objfile, objfile->section_offsets, |
96baa820 | 1350 | comp_unit_die.name ? comp_unit_die.name : "", |
c906108c SS |
1351 | comp_unit_die.lowpc, |
1352 | objfile->global_psymbols.next, | |
1353 | objfile->static_psymbols.next); | |
1354 | ||
57c22c6c BR |
1355 | if (comp_unit_die.dirname) |
1356 | pst->dirname = xstrdup (comp_unit_die.dirname); | |
1357 | ||
c906108c | 1358 | pst->read_symtab_private = (char *) |
8b92e4d5 | 1359 | obstack_alloc (&objfile->objfile_obstack, sizeof (struct dwarf2_pinfo)); |
6502dd73 | 1360 | DWARF_INFO_OFFSET (pst) = beg_of_comp_unit - dwarf2_per_objfile->info_buffer; |
613e1657 | 1361 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); |
c906108c SS |
1362 | |
1363 | /* Store the function that reads in the rest of the symbol table */ | |
1364 | pst->read_symtab = dwarf2_psymtab_to_symtab; | |
1365 | ||
1366 | /* Check if comp unit has_children. | |
1367 | If so, read the rest of the partial symbols from this comp unit. | |
1368 | If not, there's no more debug_info for this comp unit. */ | |
1369 | if (comp_unit_die.has_children) | |
1370 | { | |
72bf9492 DJ |
1371 | struct partial_die_info *first_die; |
1372 | ||
91c24f0a DC |
1373 | lowpc = ((CORE_ADDR) -1); |
1374 | highpc = ((CORE_ADDR) 0); | |
1375 | ||
72bf9492 DJ |
1376 | first_die = load_partial_dies (abfd, info_ptr, 1, &cu); |
1377 | ||
1378 | scan_partial_symbols (first_die, &lowpc, &highpc, &cu); | |
c906108c | 1379 | |
91c24f0a DC |
1380 | /* If we didn't find a lowpc, set it to highpc to avoid |
1381 | complaints from `maint check'. */ | |
1382 | if (lowpc == ((CORE_ADDR) -1)) | |
1383 | lowpc = highpc; | |
72bf9492 | 1384 | |
c906108c SS |
1385 | /* If the compilation unit didn't have an explicit address range, |
1386 | then use the information extracted from its child dies. */ | |
0b010bcc | 1387 | if (! comp_unit_die.has_pc_info) |
c906108c | 1388 | { |
c5aa993b | 1389 | comp_unit_die.lowpc = lowpc; |
c906108c SS |
1390 | comp_unit_die.highpc = highpc; |
1391 | } | |
1392 | } | |
c5aa993b | 1393 | pst->textlow = comp_unit_die.lowpc + baseaddr; |
c906108c SS |
1394 | pst->texthigh = comp_unit_die.highpc + baseaddr; |
1395 | ||
1396 | pst->n_global_syms = objfile->global_psymbols.next - | |
1397 | (objfile->global_psymbols.list + pst->globals_offset); | |
1398 | pst->n_static_syms = objfile->static_psymbols.next - | |
1399 | (objfile->static_psymbols.list + pst->statics_offset); | |
1400 | sort_pst_symbols (pst); | |
1401 | ||
1402 | /* If there is already a psymtab or symtab for a file of this | |
1403 | name, remove it. (If there is a symtab, more drastic things | |
1404 | also happen.) This happens in VxWorks. */ | |
1405 | free_named_symtabs (pst->filename); | |
1406 | ||
aaa75496 JB |
1407 | if (comp_unit_die.has_stmt_list) |
1408 | { | |
1409 | /* Get the list of files included in the current compilation unit, | |
1410 | and build a psymtab for each of them. */ | |
1411 | dwarf2_build_include_psymtabs (&cu, &comp_unit_die, pst); | |
1412 | } | |
1413 | ||
72bf9492 | 1414 | info_ptr = beg_of_comp_unit + cu.header.length |
e7c27a73 | 1415 | + cu.header.initial_length_size; |
f3dd6933 DJ |
1416 | |
1417 | do_cleanups (back_to_inner); | |
c906108c | 1418 | } |
c906108c SS |
1419 | } |
1420 | ||
72bf9492 DJ |
1421 | /* Process all loaded DIEs for compilation unit CU, starting at FIRST_DIE. |
1422 | Also set *LOWPC and *HIGHPC to the lowest and highest PC values found | |
1423 | in CU. */ | |
c906108c | 1424 | |
72bf9492 DJ |
1425 | static void |
1426 | scan_partial_symbols (struct partial_die_info *first_die, CORE_ADDR *lowpc, | |
1427 | CORE_ADDR *highpc, struct dwarf2_cu *cu) | |
c906108c | 1428 | { |
e7c27a73 | 1429 | struct objfile *objfile = cu->objfile; |
c906108c | 1430 | bfd *abfd = objfile->obfd; |
72bf9492 | 1431 | struct partial_die_info *pdi; |
c906108c | 1432 | |
91c24f0a DC |
1433 | /* Now, march along the PDI's, descending into ones which have |
1434 | interesting children but skipping the children of the other ones, | |
1435 | until we reach the end of the compilation unit. */ | |
c906108c | 1436 | |
72bf9492 | 1437 | pdi = first_die; |
91c24f0a | 1438 | |
72bf9492 DJ |
1439 | while (pdi != NULL) |
1440 | { | |
1441 | fixup_partial_die (pdi, cu); | |
c906108c | 1442 | |
91c24f0a DC |
1443 | /* Anonymous namespaces have no name but have interesting |
1444 | children, so we need to look at them. Ditto for anonymous | |
1445 | enums. */ | |
933c6fe4 | 1446 | |
72bf9492 DJ |
1447 | if (pdi->name != NULL || pdi->tag == DW_TAG_namespace |
1448 | || pdi->tag == DW_TAG_enumeration_type) | |
c906108c | 1449 | { |
72bf9492 | 1450 | switch (pdi->tag) |
c906108c SS |
1451 | { |
1452 | case DW_TAG_subprogram: | |
72bf9492 | 1453 | if (pdi->has_pc_info) |
c906108c | 1454 | { |
72bf9492 | 1455 | if (pdi->lowpc < *lowpc) |
c906108c | 1456 | { |
72bf9492 | 1457 | *lowpc = pdi->lowpc; |
c906108c | 1458 | } |
72bf9492 | 1459 | if (pdi->highpc > *highpc) |
c906108c | 1460 | { |
72bf9492 | 1461 | *highpc = pdi->highpc; |
c906108c | 1462 | } |
72bf9492 | 1463 | if (!pdi->is_declaration) |
c906108c | 1464 | { |
72bf9492 | 1465 | add_partial_symbol (pdi, cu); |
c906108c SS |
1466 | } |
1467 | } | |
1468 | break; | |
1469 | case DW_TAG_variable: | |
1470 | case DW_TAG_typedef: | |
91c24f0a | 1471 | case DW_TAG_union_type: |
72bf9492 | 1472 | if (!pdi->is_declaration) |
63d06c5c | 1473 | { |
72bf9492 | 1474 | add_partial_symbol (pdi, cu); |
63d06c5c DC |
1475 | } |
1476 | break; | |
c906108c SS |
1477 | case DW_TAG_class_type: |
1478 | case DW_TAG_structure_type: | |
72bf9492 | 1479 | if (!pdi->is_declaration) |
c906108c | 1480 | { |
72bf9492 | 1481 | add_partial_symbol (pdi, cu); |
c906108c SS |
1482 | } |
1483 | break; | |
91c24f0a | 1484 | case DW_TAG_enumeration_type: |
72bf9492 DJ |
1485 | if (!pdi->is_declaration) |
1486 | add_partial_enumeration (pdi, cu); | |
c906108c SS |
1487 | break; |
1488 | case DW_TAG_base_type: | |
a02abb62 | 1489 | case DW_TAG_subrange_type: |
c906108c | 1490 | /* File scope base type definitions are added to the partial |
c5aa993b | 1491 | symbol table. */ |
72bf9492 | 1492 | add_partial_symbol (pdi, cu); |
c906108c | 1493 | break; |
d9fa45fe | 1494 | case DW_TAG_namespace: |
72bf9492 | 1495 | add_partial_namespace (pdi, lowpc, highpc, cu); |
91c24f0a | 1496 | break; |
c906108c SS |
1497 | default: |
1498 | break; | |
1499 | } | |
1500 | } | |
1501 | ||
72bf9492 DJ |
1502 | /* If the die has a sibling, skip to the sibling. */ |
1503 | ||
1504 | pdi = pdi->die_sibling; | |
1505 | } | |
1506 | } | |
1507 | ||
1508 | /* Functions used to compute the fully scoped name of a partial DIE. | |
91c24f0a | 1509 | |
72bf9492 DJ |
1510 | Normally, this is simple. For C++, the parent DIE's fully scoped |
1511 | name is concatenated with "::" and the partial DIE's name. | |
1512 | Enumerators are an exception; they use the scope of their parent | |
1513 | enumeration type, i.e. the name of the enumeration type is not | |
1514 | prepended to the enumerator. | |
91c24f0a | 1515 | |
72bf9492 DJ |
1516 | There are two complexities. One is DW_AT_specification; in this |
1517 | case "parent" means the parent of the target of the specification, | |
1518 | instead of the direct parent of the DIE. The other is compilers | |
1519 | which do not emit DW_TAG_namespace; in this case we try to guess | |
1520 | the fully qualified name of structure types from their members' | |
1521 | linkage names. This must be done using the DIE's children rather | |
1522 | than the children of any DW_AT_specification target. We only need | |
1523 | to do this for structures at the top level, i.e. if the target of | |
1524 | any DW_AT_specification (if any; otherwise the DIE itself) does not | |
1525 | have a parent. */ | |
1526 | ||
1527 | /* Compute the scope prefix associated with PDI's parent, in | |
1528 | compilation unit CU. The result will be allocated on CU's | |
1529 | comp_unit_obstack, or a copy of the already allocated PDI->NAME | |
1530 | field. NULL is returned if no prefix is necessary. */ | |
1531 | static char * | |
1532 | partial_die_parent_scope (struct partial_die_info *pdi, | |
1533 | struct dwarf2_cu *cu) | |
1534 | { | |
1535 | char *grandparent_scope; | |
1536 | struct partial_die_info *parent, *real_pdi; | |
1537 | struct dwarf2_cu *spec_cu; | |
91c24f0a | 1538 | |
72bf9492 DJ |
1539 | /* We need to look at our parent DIE; if we have a DW_AT_specification, |
1540 | then this means the parent of the specification DIE. */ | |
1541 | ||
1542 | real_pdi = pdi; | |
1543 | spec_cu = cu; | |
1544 | while (real_pdi->has_specification) | |
1545 | real_pdi = find_partial_die (real_pdi->spec_offset, spec_cu, &spec_cu); | |
1546 | ||
1547 | parent = real_pdi->die_parent; | |
1548 | if (parent == NULL) | |
1549 | return NULL; | |
1550 | ||
1551 | if (parent->scope_set) | |
1552 | return parent->scope; | |
1553 | ||
1554 | fixup_partial_die (parent, cu); | |
1555 | ||
1556 | grandparent_scope = partial_die_parent_scope (parent, spec_cu); | |
1557 | ||
1558 | if (parent->tag == DW_TAG_namespace | |
1559 | || parent->tag == DW_TAG_structure_type | |
1560 | || parent->tag == DW_TAG_class_type | |
1561 | || parent->tag == DW_TAG_union_type) | |
1562 | { | |
1563 | if (grandparent_scope == NULL) | |
1564 | parent->scope = parent->name; | |
1565 | else | |
1566 | parent->scope = obconcat (&cu->comp_unit_obstack, grandparent_scope, | |
1567 | "::", parent->name); | |
1568 | } | |
1569 | else if (parent->tag == DW_TAG_enumeration_type) | |
1570 | /* Enumerators should not get the name of the enumeration as a prefix. */ | |
1571 | parent->scope = grandparent_scope; | |
1572 | else | |
1573 | { | |
1574 | /* FIXME drow/2004-04-01: What should we be doing with | |
1575 | function-local names? For partial symbols, we should probably be | |
1576 | ignoring them. */ | |
1577 | complaint (&symfile_complaints, | |
1578 | "unhandled containing DIE tag %d for DIE at %d", | |
1579 | parent->tag, pdi->offset); | |
1580 | parent->scope = grandparent_scope; | |
c906108c SS |
1581 | } |
1582 | ||
72bf9492 DJ |
1583 | parent->scope_set = 1; |
1584 | return parent->scope; | |
1585 | } | |
1586 | ||
1587 | /* Return the fully scoped name associated with PDI, from compilation unit | |
1588 | CU. The result will be allocated with malloc. */ | |
1589 | static char * | |
1590 | partial_die_full_name (struct partial_die_info *pdi, | |
1591 | struct dwarf2_cu *cu) | |
1592 | { | |
1593 | char *parent_scope; | |
1594 | ||
1595 | parent_scope = partial_die_parent_scope (pdi, cu); | |
1596 | if (parent_scope == NULL) | |
1597 | return NULL; | |
1598 | else | |
1599 | return concat (parent_scope, "::", pdi->name, NULL); | |
c906108c SS |
1600 | } |
1601 | ||
1602 | static void | |
72bf9492 | 1603 | add_partial_symbol (struct partial_die_info *pdi, struct dwarf2_cu *cu) |
c906108c | 1604 | { |
e7c27a73 | 1605 | struct objfile *objfile = cu->objfile; |
c906108c | 1606 | CORE_ADDR addr = 0; |
72bf9492 DJ |
1607 | char *actual_name; |
1608 | const char *my_prefix; | |
5c4e30ca | 1609 | const struct partial_symbol *psym = NULL; |
e142c38c | 1610 | CORE_ADDR baseaddr; |
72bf9492 | 1611 | int built_actual_name = 0; |
e142c38c DJ |
1612 | |
1613 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); | |
c906108c | 1614 | |
72bf9492 DJ |
1615 | actual_name = NULL; |
1616 | ||
1617 | if (pdi_needs_namespace (pdi->tag)) | |
63d06c5c | 1618 | { |
72bf9492 DJ |
1619 | actual_name = partial_die_full_name (pdi, cu); |
1620 | if (actual_name) | |
1621 | built_actual_name = 1; | |
63d06c5c DC |
1622 | } |
1623 | ||
72bf9492 DJ |
1624 | if (actual_name == NULL) |
1625 | actual_name = pdi->name; | |
1626 | ||
c906108c SS |
1627 | switch (pdi->tag) |
1628 | { | |
1629 | case DW_TAG_subprogram: | |
1630 | if (pdi->is_external) | |
1631 | { | |
38d518c9 | 1632 | /*prim_record_minimal_symbol (actual_name, pdi->lowpc + baseaddr, |
c5aa993b | 1633 | mst_text, objfile); */ |
38d518c9 | 1634 | psym = add_psymbol_to_list (actual_name, strlen (actual_name), |
5c4e30ca DC |
1635 | VAR_DOMAIN, LOC_BLOCK, |
1636 | &objfile->global_psymbols, | |
1637 | 0, pdi->lowpc + baseaddr, | |
e142c38c | 1638 | cu->language, objfile); |
c906108c SS |
1639 | } |
1640 | else | |
1641 | { | |
38d518c9 | 1642 | /*prim_record_minimal_symbol (actual_name, pdi->lowpc + baseaddr, |
c5aa993b | 1643 | mst_file_text, objfile); */ |
38d518c9 | 1644 | psym = add_psymbol_to_list (actual_name, strlen (actual_name), |
5c4e30ca DC |
1645 | VAR_DOMAIN, LOC_BLOCK, |
1646 | &objfile->static_psymbols, | |
1647 | 0, pdi->lowpc + baseaddr, | |
e142c38c | 1648 | cu->language, objfile); |
c906108c SS |
1649 | } |
1650 | break; | |
1651 | case DW_TAG_variable: | |
1652 | if (pdi->is_external) | |
1653 | { | |
1654 | /* Global Variable. | |
1655 | Don't enter into the minimal symbol tables as there is | |
1656 | a minimal symbol table entry from the ELF symbols already. | |
1657 | Enter into partial symbol table if it has a location | |
1658 | descriptor or a type. | |
1659 | If the location descriptor is missing, new_symbol will create | |
1660 | a LOC_UNRESOLVED symbol, the address of the variable will then | |
1661 | be determined from the minimal symbol table whenever the variable | |
1662 | is referenced. | |
1663 | The address for the partial symbol table entry is not | |
1664 | used by GDB, but it comes in handy for debugging partial symbol | |
1665 | table building. */ | |
1666 | ||
1667 | if (pdi->locdesc) | |
e7c27a73 | 1668 | addr = decode_locdesc (pdi->locdesc, cu); |
c906108c | 1669 | if (pdi->locdesc || pdi->has_type) |
38d518c9 | 1670 | psym = add_psymbol_to_list (actual_name, strlen (actual_name), |
5c4e30ca DC |
1671 | VAR_DOMAIN, LOC_STATIC, |
1672 | &objfile->global_psymbols, | |
1673 | 0, addr + baseaddr, | |
e142c38c | 1674 | cu->language, objfile); |
c906108c SS |
1675 | } |
1676 | else | |
1677 | { | |
1678 | /* Static Variable. Skip symbols without location descriptors. */ | |
1679 | if (pdi->locdesc == NULL) | |
1680 | return; | |
e7c27a73 | 1681 | addr = decode_locdesc (pdi->locdesc, cu); |
38d518c9 | 1682 | /*prim_record_minimal_symbol (actual_name, addr + baseaddr, |
c5aa993b | 1683 | mst_file_data, objfile); */ |
38d518c9 | 1684 | psym = add_psymbol_to_list (actual_name, strlen (actual_name), |
5c4e30ca DC |
1685 | VAR_DOMAIN, LOC_STATIC, |
1686 | &objfile->static_psymbols, | |
1687 | 0, addr + baseaddr, | |
e142c38c | 1688 | cu->language, objfile); |
c906108c SS |
1689 | } |
1690 | break; | |
1691 | case DW_TAG_typedef: | |
1692 | case DW_TAG_base_type: | |
a02abb62 | 1693 | case DW_TAG_subrange_type: |
38d518c9 | 1694 | add_psymbol_to_list (actual_name, strlen (actual_name), |
176620f1 | 1695 | VAR_DOMAIN, LOC_TYPEDEF, |
c906108c | 1696 | &objfile->static_psymbols, |
e142c38c | 1697 | 0, (CORE_ADDR) 0, cu->language, objfile); |
c906108c | 1698 | break; |
72bf9492 DJ |
1699 | case DW_TAG_namespace: |
1700 | add_psymbol_to_list (actual_name, strlen (actual_name), | |
1701 | VAR_DOMAIN, LOC_TYPEDEF, | |
1702 | &objfile->global_psymbols, | |
1703 | 0, (CORE_ADDR) 0, cu->language, objfile); | |
1704 | break; | |
c906108c SS |
1705 | case DW_TAG_class_type: |
1706 | case DW_TAG_structure_type: | |
1707 | case DW_TAG_union_type: | |
1708 | case DW_TAG_enumeration_type: | |
1709 | /* Skip aggregate types without children, these are external | |
c5aa993b | 1710 | references. */ |
63d06c5c DC |
1711 | /* NOTE: carlton/2003-10-07: See comment in new_symbol about |
1712 | static vs. global. */ | |
c906108c SS |
1713 | if (pdi->has_children == 0) |
1714 | return; | |
38d518c9 | 1715 | add_psymbol_to_list (actual_name, strlen (actual_name), |
176620f1 | 1716 | STRUCT_DOMAIN, LOC_TYPEDEF, |
e142c38c | 1717 | cu->language == language_cplus |
63d06c5c DC |
1718 | ? &objfile->global_psymbols |
1719 | : &objfile->static_psymbols, | |
e142c38c | 1720 | 0, (CORE_ADDR) 0, cu->language, objfile); |
c906108c | 1721 | |
e142c38c | 1722 | if (cu->language == language_cplus) |
c906108c SS |
1723 | { |
1724 | /* For C++, these implicitly act as typedefs as well. */ | |
38d518c9 | 1725 | add_psymbol_to_list (actual_name, strlen (actual_name), |
176620f1 | 1726 | VAR_DOMAIN, LOC_TYPEDEF, |
63d06c5c | 1727 | &objfile->global_psymbols, |
e142c38c | 1728 | 0, (CORE_ADDR) 0, cu->language, objfile); |
c906108c SS |
1729 | } |
1730 | break; | |
1731 | case DW_TAG_enumerator: | |
38d518c9 | 1732 | add_psymbol_to_list (actual_name, strlen (actual_name), |
176620f1 | 1733 | VAR_DOMAIN, LOC_CONST, |
e142c38c | 1734 | cu->language == language_cplus |
f6fe98ef DJ |
1735 | ? &objfile->global_psymbols |
1736 | : &objfile->static_psymbols, | |
e142c38c | 1737 | 0, (CORE_ADDR) 0, cu->language, objfile); |
c906108c SS |
1738 | break; |
1739 | default: | |
1740 | break; | |
1741 | } | |
5c4e30ca DC |
1742 | |
1743 | /* Check to see if we should scan the name for possible namespace | |
1744 | info. Only do this if this is C++, if we don't have namespace | |
1745 | debugging info in the file, if the psym is of an appropriate type | |
1746 | (otherwise we'll have psym == NULL), and if we actually had a | |
1747 | mangled name to begin with. */ | |
1748 | ||
72bf9492 DJ |
1749 | /* FIXME drow/2004-02-22: Why don't we do this for classes, i.e. the |
1750 | cases which do not set PSYM above? */ | |
1751 | ||
e142c38c | 1752 | if (cu->language == language_cplus |
72bf9492 | 1753 | && cu->has_namespace_info == 0 |
5c4e30ca DC |
1754 | && psym != NULL |
1755 | && SYMBOL_CPLUS_DEMANGLED_NAME (psym) != NULL) | |
1756 | cp_check_possible_namespace_symbols (SYMBOL_CPLUS_DEMANGLED_NAME (psym), | |
1757 | objfile); | |
72bf9492 DJ |
1758 | |
1759 | if (built_actual_name) | |
1760 | xfree (actual_name); | |
c906108c SS |
1761 | } |
1762 | ||
72bf9492 DJ |
1763 | /* Determine whether a die of type TAG living in a C++ class or |
1764 | namespace needs to have the name of the scope prepended to the | |
63d06c5c DC |
1765 | name listed in the die. */ |
1766 | ||
1767 | static int | |
72bf9492 | 1768 | pdi_needs_namespace (enum dwarf_tag tag) |
63d06c5c | 1769 | { |
63d06c5c DC |
1770 | switch (tag) |
1771 | { | |
72bf9492 | 1772 | case DW_TAG_namespace: |
63d06c5c DC |
1773 | case DW_TAG_typedef: |
1774 | case DW_TAG_class_type: | |
1775 | case DW_TAG_structure_type: | |
1776 | case DW_TAG_union_type: | |
1777 | case DW_TAG_enumeration_type: | |
1778 | case DW_TAG_enumerator: | |
1779 | return 1; | |
1780 | default: | |
1781 | return 0; | |
1782 | } | |
1783 | } | |
1784 | ||
5c4e30ca DC |
1785 | /* Read a partial die corresponding to a namespace; also, add a symbol |
1786 | corresponding to that namespace to the symbol table. NAMESPACE is | |
1787 | the name of the enclosing namespace. */ | |
91c24f0a | 1788 | |
72bf9492 DJ |
1789 | static void |
1790 | add_partial_namespace (struct partial_die_info *pdi, | |
91c24f0a | 1791 | CORE_ADDR *lowpc, CORE_ADDR *highpc, |
72bf9492 | 1792 | struct dwarf2_cu *cu) |
91c24f0a | 1793 | { |
e7c27a73 | 1794 | struct objfile *objfile = cu->objfile; |
5c4e30ca | 1795 | |
72bf9492 | 1796 | /* Add a symbol for the namespace. */ |
e7c27a73 | 1797 | |
72bf9492 | 1798 | add_partial_symbol (pdi, cu); |
5c4e30ca DC |
1799 | |
1800 | /* Now scan partial symbols in that namespace. */ | |
1801 | ||
91c24f0a | 1802 | if (pdi->has_children) |
72bf9492 | 1803 | scan_partial_symbols (pdi->die_child, lowpc, highpc, cu); |
91c24f0a DC |
1804 | } |
1805 | ||
72bf9492 DJ |
1806 | /* See if we can figure out if the class lives in a namespace. We do |
1807 | this by looking for a member function; its demangled name will | |
1808 | contain namespace info, if there is any. */ | |
63d06c5c | 1809 | |
72bf9492 DJ |
1810 | static void |
1811 | guess_structure_name (struct partial_die_info *struct_pdi, | |
1812 | struct dwarf2_cu *cu) | |
63d06c5c | 1813 | { |
e142c38c | 1814 | if (cu->language == language_cplus |
72bf9492 | 1815 | && cu->has_namespace_info == 0 |
63d06c5c DC |
1816 | && struct_pdi->has_children) |
1817 | { | |
63d06c5c DC |
1818 | /* NOTE: carlton/2003-10-07: Getting the info this way changes |
1819 | what template types look like, because the demangler | |
1820 | frequently doesn't give the same name as the debug info. We | |
1821 | could fix this by only using the demangled name to get the | |
134d01f1 | 1822 | prefix (but see comment in read_structure_type). */ |
63d06c5c | 1823 | |
72bf9492 DJ |
1824 | struct partial_die_info *child_pdi = struct_pdi->die_child; |
1825 | struct partial_die_info *real_pdi; | |
1826 | struct dwarf2_cu *spec_cu; | |
5d51ca54 | 1827 | |
72bf9492 DJ |
1828 | /* If this DIE (this DIE's specification, if any) has a parent, then |
1829 | we should not do this. We'll prepend the parent's fully qualified | |
1830 | name when we create the partial symbol. */ | |
5d51ca54 | 1831 | |
72bf9492 DJ |
1832 | real_pdi = struct_pdi; |
1833 | spec_cu = cu; | |
1834 | while (real_pdi->has_specification) | |
1835 | real_pdi = find_partial_die (real_pdi->spec_offset, spec_cu, &spec_cu); | |
63d06c5c | 1836 | |
72bf9492 DJ |
1837 | if (real_pdi->die_parent != NULL) |
1838 | return; | |
63d06c5c | 1839 | |
72bf9492 DJ |
1840 | while (child_pdi != NULL) |
1841 | { | |
1842 | if (child_pdi->tag == DW_TAG_subprogram) | |
63d06c5c | 1843 | { |
72bf9492 | 1844 | char *actual_class_name |
31c27f77 JJ |
1845 | = language_class_name_from_physname (cu->language_defn, |
1846 | child_pdi->name); | |
63d06c5c | 1847 | if (actual_class_name != NULL) |
72bf9492 DJ |
1848 | { |
1849 | struct_pdi->name | |
1850 | = obsavestring (actual_class_name, | |
1851 | strlen (actual_class_name), | |
1852 | &cu->comp_unit_obstack); | |
1853 | xfree (actual_class_name); | |
1854 | } | |
63d06c5c DC |
1855 | break; |
1856 | } | |
72bf9492 DJ |
1857 | |
1858 | child_pdi = child_pdi->die_sibling; | |
63d06c5c DC |
1859 | } |
1860 | } | |
63d06c5c DC |
1861 | } |
1862 | ||
91c24f0a DC |
1863 | /* Read a partial die corresponding to an enumeration type. */ |
1864 | ||
72bf9492 DJ |
1865 | static void |
1866 | add_partial_enumeration (struct partial_die_info *enum_pdi, | |
1867 | struct dwarf2_cu *cu) | |
91c24f0a | 1868 | { |
e7c27a73 | 1869 | struct objfile *objfile = cu->objfile; |
91c24f0a | 1870 | bfd *abfd = objfile->obfd; |
72bf9492 | 1871 | struct partial_die_info *pdi; |
91c24f0a DC |
1872 | |
1873 | if (enum_pdi->name != NULL) | |
72bf9492 DJ |
1874 | add_partial_symbol (enum_pdi, cu); |
1875 | ||
1876 | pdi = enum_pdi->die_child; | |
1877 | while (pdi) | |
91c24f0a | 1878 | { |
72bf9492 | 1879 | if (pdi->tag != DW_TAG_enumerator || pdi->name == NULL) |
91c24f0a DC |
1880 | complaint (&symfile_complaints, "malformed enumerator DIE ignored"); |
1881 | else | |
72bf9492 DJ |
1882 | add_partial_symbol (pdi, cu); |
1883 | pdi = pdi->die_sibling; | |
91c24f0a | 1884 | } |
91c24f0a DC |
1885 | } |
1886 | ||
4bb7a0a7 DJ |
1887 | /* Read the initial uleb128 in the die at INFO_PTR in compilation unit CU. |
1888 | Return the corresponding abbrev, or NULL if the number is zero (indicating | |
1889 | an empty DIE). In either case *BYTES_READ will be set to the length of | |
1890 | the initial number. */ | |
1891 | ||
1892 | static struct abbrev_info * | |
1893 | peek_die_abbrev (char *info_ptr, int *bytes_read, struct dwarf2_cu *cu) | |
1894 | { | |
1895 | bfd *abfd = cu->objfile->obfd; | |
1896 | unsigned int abbrev_number; | |
1897 | struct abbrev_info *abbrev; | |
1898 | ||
1899 | abbrev_number = read_unsigned_leb128 (abfd, info_ptr, bytes_read); | |
1900 | ||
1901 | if (abbrev_number == 0) | |
1902 | return NULL; | |
1903 | ||
1904 | abbrev = dwarf2_lookup_abbrev (abbrev_number, cu); | |
1905 | if (!abbrev) | |
1906 | { | |
1907 | error ("Dwarf Error: Could not find abbrev number %d [in module %s]", abbrev_number, | |
1908 | bfd_get_filename (abfd)); | |
1909 | } | |
1910 | ||
1911 | return abbrev; | |
1912 | } | |
1913 | ||
1914 | /* Scan the debug information for CU starting at INFO_PTR. Returns a | |
1915 | pointer to the end of a series of DIEs, terminated by an empty | |
1916 | DIE. Any children of the skipped DIEs will also be skipped. */ | |
1917 | ||
1918 | static char * | |
1919 | skip_children (char *info_ptr, struct dwarf2_cu *cu) | |
1920 | { | |
1921 | struct abbrev_info *abbrev; | |
1922 | unsigned int bytes_read; | |
1923 | ||
1924 | while (1) | |
1925 | { | |
1926 | abbrev = peek_die_abbrev (info_ptr, &bytes_read, cu); | |
1927 | if (abbrev == NULL) | |
1928 | return info_ptr + bytes_read; | |
1929 | else | |
1930 | info_ptr = skip_one_die (info_ptr + bytes_read, abbrev, cu); | |
1931 | } | |
1932 | } | |
1933 | ||
1934 | /* Scan the debug information for CU starting at INFO_PTR. INFO_PTR | |
1935 | should point just after the initial uleb128 of a DIE, and the | |
1936 | abbrev corresponding to that skipped uleb128 should be passed in | |
1937 | ABBREV. Returns a pointer to this DIE's sibling, skipping any | |
1938 | children. */ | |
1939 | ||
1940 | static char * | |
1941 | skip_one_die (char *info_ptr, struct abbrev_info *abbrev, | |
1942 | struct dwarf2_cu *cu) | |
1943 | { | |
1944 | unsigned int bytes_read; | |
1945 | struct attribute attr; | |
1946 | bfd *abfd = cu->objfile->obfd; | |
1947 | unsigned int form, i; | |
1948 | ||
1949 | for (i = 0; i < abbrev->num_attrs; i++) | |
1950 | { | |
1951 | /* The only abbrev we care about is DW_AT_sibling. */ | |
1952 | if (abbrev->attrs[i].name == DW_AT_sibling) | |
1953 | { | |
1954 | read_attribute (&attr, &abbrev->attrs[i], | |
1955 | abfd, info_ptr, cu); | |
1956 | if (attr.form == DW_FORM_ref_addr) | |
1957 | complaint (&symfile_complaints, "ignoring absolute DW_AT_sibling"); | |
1958 | else | |
6502dd73 DJ |
1959 | return dwarf2_per_objfile->info_buffer |
1960 | + dwarf2_get_ref_die_offset (&attr, cu); | |
4bb7a0a7 DJ |
1961 | } |
1962 | ||
1963 | /* If it isn't DW_AT_sibling, skip this attribute. */ | |
1964 | form = abbrev->attrs[i].form; | |
1965 | skip_attribute: | |
1966 | switch (form) | |
1967 | { | |
1968 | case DW_FORM_addr: | |
1969 | case DW_FORM_ref_addr: | |
1970 | info_ptr += cu->header.addr_size; | |
1971 | break; | |
1972 | case DW_FORM_data1: | |
1973 | case DW_FORM_ref1: | |
1974 | case DW_FORM_flag: | |
1975 | info_ptr += 1; | |
1976 | break; | |
1977 | case DW_FORM_data2: | |
1978 | case DW_FORM_ref2: | |
1979 | info_ptr += 2; | |
1980 | break; | |
1981 | case DW_FORM_data4: | |
1982 | case DW_FORM_ref4: | |
1983 | info_ptr += 4; | |
1984 | break; | |
1985 | case DW_FORM_data8: | |
1986 | case DW_FORM_ref8: | |
1987 | info_ptr += 8; | |
1988 | break; | |
1989 | case DW_FORM_string: | |
1990 | read_string (abfd, info_ptr, &bytes_read); | |
1991 | info_ptr += bytes_read; | |
1992 | break; | |
1993 | case DW_FORM_strp: | |
1994 | info_ptr += cu->header.offset_size; | |
1995 | break; | |
1996 | case DW_FORM_block: | |
1997 | info_ptr += read_unsigned_leb128 (abfd, info_ptr, &bytes_read); | |
1998 | info_ptr += bytes_read; | |
1999 | break; | |
2000 | case DW_FORM_block1: | |
2001 | info_ptr += 1 + read_1_byte (abfd, info_ptr); | |
2002 | break; | |
2003 | case DW_FORM_block2: | |
2004 | info_ptr += 2 + read_2_bytes (abfd, info_ptr); | |
2005 | break; | |
2006 | case DW_FORM_block4: | |
2007 | info_ptr += 4 + read_4_bytes (abfd, info_ptr); | |
2008 | break; | |
2009 | case DW_FORM_sdata: | |
2010 | case DW_FORM_udata: | |
2011 | case DW_FORM_ref_udata: | |
2012 | info_ptr = skip_leb128 (abfd, info_ptr); | |
2013 | break; | |
2014 | case DW_FORM_indirect: | |
2015 | form = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); | |
2016 | info_ptr += bytes_read; | |
2017 | /* We need to continue parsing from here, so just go back to | |
2018 | the top. */ | |
2019 | goto skip_attribute; | |
2020 | ||
2021 | default: | |
2022 | error ("Dwarf Error: Cannot handle %s in DWARF reader [in module %s]", | |
2023 | dwarf_form_name (form), | |
2024 | bfd_get_filename (abfd)); | |
2025 | } | |
2026 | } | |
2027 | ||
2028 | if (abbrev->has_children) | |
2029 | return skip_children (info_ptr, cu); | |
2030 | else | |
2031 | return info_ptr; | |
2032 | } | |
2033 | ||
2034 | /* Locate ORIG_PDI's sibling; INFO_PTR should point to the start of | |
2035 | the next DIE after ORIG_PDI. */ | |
91c24f0a DC |
2036 | |
2037 | static char * | |
2038 | locate_pdi_sibling (struct partial_die_info *orig_pdi, char *info_ptr, | |
e7c27a73 | 2039 | bfd *abfd, struct dwarf2_cu *cu) |
91c24f0a DC |
2040 | { |
2041 | /* Do we know the sibling already? */ | |
72bf9492 | 2042 | |
91c24f0a DC |
2043 | if (orig_pdi->sibling) |
2044 | return orig_pdi->sibling; | |
2045 | ||
2046 | /* Are there any children to deal with? */ | |
2047 | ||
2048 | if (!orig_pdi->has_children) | |
2049 | return info_ptr; | |
2050 | ||
4bb7a0a7 | 2051 | /* Skip the children the long way. */ |
91c24f0a | 2052 | |
4bb7a0a7 | 2053 | return skip_children (info_ptr, cu); |
91c24f0a DC |
2054 | } |
2055 | ||
c906108c SS |
2056 | /* Expand this partial symbol table into a full symbol table. */ |
2057 | ||
2058 | static void | |
fba45db2 | 2059 | dwarf2_psymtab_to_symtab (struct partial_symtab *pst) |
c906108c SS |
2060 | { |
2061 | /* FIXME: This is barely more than a stub. */ | |
2062 | if (pst != NULL) | |
2063 | { | |
2064 | if (pst->readin) | |
2065 | { | |
2066 | warning ("bug: psymtab for %s is already read in.", pst->filename); | |
2067 | } | |
2068 | else | |
2069 | { | |
2070 | if (info_verbose) | |
2071 | { | |
2072 | printf_filtered ("Reading in symbols for %s...", pst->filename); | |
2073 | gdb_flush (gdb_stdout); | |
2074 | } | |
2075 | ||
2076 | psymtab_to_symtab_1 (pst); | |
2077 | ||
2078 | /* Finish up the debug error message. */ | |
2079 | if (info_verbose) | |
2080 | printf_filtered ("done.\n"); | |
2081 | } | |
2082 | } | |
2083 | } | |
2084 | ||
2085 | static void | |
fba45db2 | 2086 | psymtab_to_symtab_1 (struct partial_symtab *pst) |
c906108c SS |
2087 | { |
2088 | struct objfile *objfile = pst->objfile; | |
2089 | bfd *abfd = objfile->obfd; | |
e7c27a73 | 2090 | struct dwarf2_cu cu; |
c906108c SS |
2091 | struct die_info *dies; |
2092 | unsigned long offset; | |
2093 | CORE_ADDR lowpc, highpc; | |
2094 | struct die_info *child_die; | |
2095 | char *info_ptr; | |
2096 | struct symtab *symtab; | |
2097 | struct cleanup *back_to; | |
0d53c4c4 | 2098 | struct attribute *attr; |
e142c38c | 2099 | CORE_ADDR baseaddr; |
aaa75496 JB |
2100 | int i; |
2101 | ||
2102 | for (i = 0; i < pst->number_of_dependencies; i++) | |
2103 | if (!pst->dependencies[i]->readin) | |
2104 | { | |
2105 | /* Inform about additional files that need to be read in. */ | |
2106 | if (info_verbose) | |
2107 | { | |
2108 | fputs_filtered (" ", gdb_stdout); | |
2109 | wrap_here (""); | |
2110 | fputs_filtered ("and ", gdb_stdout); | |
2111 | wrap_here (""); | |
2112 | printf_filtered ("%s...", pst->dependencies[i]->filename); | |
2113 | wrap_here (""); /* Flush output */ | |
2114 | gdb_flush (gdb_stdout); | |
2115 | } | |
2116 | psymtab_to_symtab_1 (pst->dependencies[i]); | |
2117 | } | |
2118 | ||
58a9656e | 2119 | if (pst->read_symtab_private == NULL) |
aaa75496 JB |
2120 | { |
2121 | /* It's an include file, no symbols to read for it. | |
2122 | Everything is in the parent symtab. */ | |
2123 | pst->readin = 1; | |
2124 | return; | |
2125 | } | |
c906108c | 2126 | |
6502dd73 DJ |
2127 | dwarf2_per_objfile = objfile_data (pst->objfile, dwarf2_objfile_data_key); |
2128 | ||
c906108c | 2129 | /* Set local variables from the partial symbol table info. */ |
c5aa993b | 2130 | offset = DWARF_INFO_OFFSET (pst); |
6502dd73 DJ |
2131 | |
2132 | info_ptr = dwarf2_per_objfile->info_buffer + offset; | |
e142c38c | 2133 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); |
c906108c | 2134 | |
63d06c5c DC |
2135 | /* We're in the global namespace. */ |
2136 | processing_current_prefix = ""; | |
2137 | ||
7b5a2f43 DJ |
2138 | obstack_init (&cu.comp_unit_obstack); |
2139 | back_to = make_cleanup (free_stack_comp_unit, &cu); | |
c906108c SS |
2140 | |
2141 | buildsym_init (); | |
a0b3c4fd | 2142 | make_cleanup (really_free_pendings, NULL); |
c906108c | 2143 | |
e7c27a73 DJ |
2144 | cu.objfile = objfile; |
2145 | ||
c906108c | 2146 | /* read in the comp_unit header */ |
e7c27a73 | 2147 | info_ptr = read_comp_unit_head (&cu.header, info_ptr, abfd); |
c906108c SS |
2148 | |
2149 | /* Read the abbrevs for this compilation unit */ | |
e7c27a73 | 2150 | dwarf2_read_abbrevs (abfd, &cu); |
f3dd6933 | 2151 | make_cleanup (dwarf2_free_abbrev_table, &cu); |
c906108c | 2152 | |
e142c38c DJ |
2153 | cu.header.offset = offset; |
2154 | ||
2155 | cu.list_in_scope = &file_symbols; | |
2156 | ||
e7c27a73 | 2157 | dies = read_comp_unit (info_ptr, abfd, &cu); |
c906108c | 2158 | |
74b7792f | 2159 | make_cleanup_free_die_list (dies); |
c906108c | 2160 | |
0d53c4c4 DJ |
2161 | /* Find the base address of the compilation unit for range lists and |
2162 | location lists. It will normally be specified by DW_AT_low_pc. | |
2163 | In DWARF-3 draft 4, the base address could be overridden by | |
2164 | DW_AT_entry_pc. It's been removed, but GCC still uses this for | |
2165 | compilation units with discontinuous ranges. */ | |
2166 | ||
e7c27a73 DJ |
2167 | cu.header.base_known = 0; |
2168 | cu.header.base_address = 0; | |
0d53c4c4 | 2169 | |
e142c38c | 2170 | attr = dwarf2_attr (dies, DW_AT_entry_pc, &cu); |
0d53c4c4 DJ |
2171 | if (attr) |
2172 | { | |
e7c27a73 DJ |
2173 | cu.header.base_address = DW_ADDR (attr); |
2174 | cu.header.base_known = 1; | |
0d53c4c4 DJ |
2175 | } |
2176 | else | |
2177 | { | |
e142c38c | 2178 | attr = dwarf2_attr (dies, DW_AT_low_pc, &cu); |
0d53c4c4 DJ |
2179 | if (attr) |
2180 | { | |
e7c27a73 DJ |
2181 | cu.header.base_address = DW_ADDR (attr); |
2182 | cu.header.base_known = 1; | |
0d53c4c4 DJ |
2183 | } |
2184 | } | |
2185 | ||
c906108c | 2186 | /* Do line number decoding in read_file_scope () */ |
e7c27a73 | 2187 | process_die (dies, &cu); |
c906108c | 2188 | |
fae299cd DC |
2189 | /* Some compilers don't define a DW_AT_high_pc attribute for the |
2190 | compilation unit. If the DW_AT_high_pc is missing, synthesize | |
2191 | it, by scanning the DIE's below the compilation unit. */ | |
2192 | get_scope_pc_bounds (dies, &lowpc, &highpc, &cu); | |
c906108c | 2193 | |
613e1657 | 2194 | symtab = end_symtab (highpc + baseaddr, objfile, SECT_OFF_TEXT (objfile)); |
c906108c SS |
2195 | |
2196 | /* Set symtab language to language from DW_AT_language. | |
2197 | If the compilation is from a C file generated by language preprocessors, | |
2198 | do not set the language if it was already deduced by start_subfile. */ | |
2199 | if (symtab != NULL | |
e142c38c | 2200 | && !(cu.language == language_c && symtab->language != language_c)) |
c906108c | 2201 | { |
e142c38c | 2202 | symtab->language = cu.language; |
c906108c SS |
2203 | } |
2204 | pst->symtab = symtab; | |
2205 | pst->readin = 1; | |
c906108c SS |
2206 | |
2207 | do_cleanups (back_to); | |
2208 | } | |
2209 | ||
2210 | /* Process a die and its children. */ | |
2211 | ||
2212 | static void | |
e7c27a73 | 2213 | process_die (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
2214 | { |
2215 | switch (die->tag) | |
2216 | { | |
2217 | case DW_TAG_padding: | |
2218 | break; | |
2219 | case DW_TAG_compile_unit: | |
e7c27a73 | 2220 | read_file_scope (die, cu); |
c906108c SS |
2221 | break; |
2222 | case DW_TAG_subprogram: | |
e7c27a73 DJ |
2223 | read_subroutine_type (die, cu); |
2224 | read_func_scope (die, cu); | |
c906108c SS |
2225 | break; |
2226 | case DW_TAG_inlined_subroutine: | |
2227 | /* FIXME: These are ignored for now. | |
c5aa993b JM |
2228 | They could be used to set breakpoints on all inlined instances |
2229 | of a function and make GDB `next' properly over inlined functions. */ | |
c906108c SS |
2230 | break; |
2231 | case DW_TAG_lexical_block: | |
14898363 L |
2232 | case DW_TAG_try_block: |
2233 | case DW_TAG_catch_block: | |
e7c27a73 | 2234 | read_lexical_block_scope (die, cu); |
c906108c SS |
2235 | break; |
2236 | case DW_TAG_class_type: | |
2237 | case DW_TAG_structure_type: | |
2238 | case DW_TAG_union_type: | |
134d01f1 DJ |
2239 | read_structure_type (die, cu); |
2240 | process_structure_scope (die, cu); | |
c906108c SS |
2241 | break; |
2242 | case DW_TAG_enumeration_type: | |
134d01f1 DJ |
2243 | read_enumeration_type (die, cu); |
2244 | process_enumeration_scope (die, cu); | |
c906108c | 2245 | break; |
134d01f1 DJ |
2246 | |
2247 | /* FIXME drow/2004-03-14: These initialize die->type, but do not create | |
2248 | a symbol or process any children. Therefore it doesn't do anything | |
2249 | that won't be done on-demand by read_type_die. */ | |
c906108c | 2250 | case DW_TAG_subroutine_type: |
e7c27a73 | 2251 | read_subroutine_type (die, cu); |
c906108c SS |
2252 | break; |
2253 | case DW_TAG_array_type: | |
e7c27a73 | 2254 | read_array_type (die, cu); |
c906108c SS |
2255 | break; |
2256 | case DW_TAG_pointer_type: | |
e7c27a73 | 2257 | read_tag_pointer_type (die, cu); |
c906108c SS |
2258 | break; |
2259 | case DW_TAG_ptr_to_member_type: | |
e7c27a73 | 2260 | read_tag_ptr_to_member_type (die, cu); |
c906108c SS |
2261 | break; |
2262 | case DW_TAG_reference_type: | |
e7c27a73 | 2263 | read_tag_reference_type (die, cu); |
c906108c SS |
2264 | break; |
2265 | case DW_TAG_string_type: | |
e7c27a73 | 2266 | read_tag_string_type (die, cu); |
c906108c | 2267 | break; |
134d01f1 DJ |
2268 | /* END FIXME */ |
2269 | ||
c906108c | 2270 | case DW_TAG_base_type: |
e7c27a73 | 2271 | read_base_type (die, cu); |
134d01f1 DJ |
2272 | /* Add a typedef symbol for the type definition, if it has a |
2273 | DW_AT_name. */ | |
2274 | new_symbol (die, die->type, cu); | |
c906108c | 2275 | break; |
a02abb62 JB |
2276 | case DW_TAG_subrange_type: |
2277 | read_subrange_type (die, cu); | |
134d01f1 DJ |
2278 | /* Add a typedef symbol for the type definition, if it has a |
2279 | DW_AT_name. */ | |
2280 | new_symbol (die, die->type, cu); | |
a02abb62 | 2281 | break; |
c906108c | 2282 | case DW_TAG_common_block: |
e7c27a73 | 2283 | read_common_block (die, cu); |
c906108c SS |
2284 | break; |
2285 | case DW_TAG_common_inclusion: | |
2286 | break; | |
d9fa45fe | 2287 | case DW_TAG_namespace: |
63d06c5c | 2288 | processing_has_namespace_info = 1; |
e7c27a73 | 2289 | read_namespace (die, cu); |
d9fa45fe DC |
2290 | break; |
2291 | case DW_TAG_imported_declaration: | |
2292 | case DW_TAG_imported_module: | |
2293 | /* FIXME: carlton/2002-10-16: Eventually, we should use the | |
2294 | information contained in these. DW_TAG_imported_declaration | |
2295 | dies shouldn't have children; DW_TAG_imported_module dies | |
2296 | shouldn't in the C++ case, but conceivably could in the | |
2297 | Fortran case, so we'll have to replace this gdb_assert if | |
2298 | Fortran compilers start generating that info. */ | |
63d06c5c | 2299 | processing_has_namespace_info = 1; |
639d11d3 | 2300 | gdb_assert (die->child == NULL); |
d9fa45fe | 2301 | break; |
c906108c | 2302 | default: |
e7c27a73 | 2303 | new_symbol (die, NULL, cu); |
c906108c SS |
2304 | break; |
2305 | } | |
2306 | } | |
2307 | ||
5fb290d7 | 2308 | static void |
e142c38c | 2309 | initialize_cu_func_list (struct dwarf2_cu *cu) |
5fb290d7 | 2310 | { |
e142c38c | 2311 | cu->first_fn = cu->last_fn = cu->cached_fn = NULL; |
5fb290d7 DJ |
2312 | } |
2313 | ||
c906108c | 2314 | static void |
e7c27a73 | 2315 | read_file_scope (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 2316 | { |
e7c27a73 DJ |
2317 | struct objfile *objfile = cu->objfile; |
2318 | struct comp_unit_head *cu_header = &cu->header; | |
debd256d | 2319 | struct cleanup *back_to = make_cleanup (null_cleanup, 0); |
2acceee2 | 2320 | CORE_ADDR lowpc = ((CORE_ADDR) -1); |
c906108c SS |
2321 | CORE_ADDR highpc = ((CORE_ADDR) 0); |
2322 | struct attribute *attr; | |
2323 | char *name = "<unknown>"; | |
2324 | char *comp_dir = NULL; | |
2325 | struct die_info *child_die; | |
2326 | bfd *abfd = objfile->obfd; | |
debd256d | 2327 | struct line_header *line_header = 0; |
e142c38c DJ |
2328 | CORE_ADDR baseaddr; |
2329 | ||
2330 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); | |
c906108c | 2331 | |
fae299cd | 2332 | get_scope_pc_bounds (die, &lowpc, &highpc, cu); |
c906108c SS |
2333 | |
2334 | /* If we didn't find a lowpc, set it to highpc to avoid complaints | |
2335 | from finish_block. */ | |
2acceee2 | 2336 | if (lowpc == ((CORE_ADDR) -1)) |
c906108c SS |
2337 | lowpc = highpc; |
2338 | lowpc += baseaddr; | |
2339 | highpc += baseaddr; | |
2340 | ||
e142c38c | 2341 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
2342 | if (attr) |
2343 | { | |
2344 | name = DW_STRING (attr); | |
2345 | } | |
e142c38c | 2346 | attr = dwarf2_attr (die, DW_AT_comp_dir, cu); |
c906108c SS |
2347 | if (attr) |
2348 | { | |
2349 | comp_dir = DW_STRING (attr); | |
2350 | if (comp_dir) | |
2351 | { | |
2352 | /* Irix 6.2 native cc prepends <machine>.: to the compilation | |
2353 | directory, get rid of it. */ | |
2354 | char *cp = strchr (comp_dir, ':'); | |
2355 | ||
2356 | if (cp && cp != comp_dir && cp[-1] == '.' && cp[1] == '/') | |
2357 | comp_dir = cp + 1; | |
2358 | } | |
2359 | } | |
2360 | ||
e142c38c | 2361 | attr = dwarf2_attr (die, DW_AT_language, cu); |
c906108c SS |
2362 | if (attr) |
2363 | { | |
e142c38c | 2364 | set_cu_language (DW_UNSND (attr), cu); |
c906108c SS |
2365 | } |
2366 | ||
b0f35d58 DL |
2367 | attr = dwarf2_attr (die, DW_AT_producer, cu); |
2368 | if (attr) | |
2369 | cu->producer = DW_STRING (attr); | |
2370 | ||
c906108c SS |
2371 | /* We assume that we're processing GCC output. */ |
2372 | processing_gcc_compilation = 2; | |
2373 | #if 0 | |
c5aa993b JM |
2374 | /* FIXME:Do something here. */ |
2375 | if (dip->at_producer != NULL) | |
c906108c SS |
2376 | { |
2377 | handle_producer (dip->at_producer); | |
2378 | } | |
2379 | #endif | |
2380 | ||
2381 | /* The compilation unit may be in a different language or objfile, | |
2382 | zero out all remembered fundamental types. */ | |
e142c38c | 2383 | memset (cu->ftypes, 0, FT_NUM_MEMBERS * sizeof (struct type *)); |
c906108c SS |
2384 | |
2385 | start_symtab (name, comp_dir, lowpc); | |
2386 | record_debugformat ("DWARF 2"); | |
2387 | ||
e142c38c | 2388 | initialize_cu_func_list (cu); |
c906108c SS |
2389 | |
2390 | /* Process all dies in compilation unit. */ | |
639d11d3 | 2391 | if (die->child != NULL) |
c906108c | 2392 | { |
639d11d3 | 2393 | child_die = die->child; |
c906108c SS |
2394 | while (child_die && child_die->tag) |
2395 | { | |
e7c27a73 | 2396 | process_die (child_die, cu); |
c906108c SS |
2397 | child_die = sibling_die (child_die); |
2398 | } | |
2399 | } | |
5fb290d7 DJ |
2400 | |
2401 | /* Decode line number information if present. */ | |
e142c38c | 2402 | attr = dwarf2_attr (die, DW_AT_stmt_list, cu); |
5fb290d7 DJ |
2403 | if (attr) |
2404 | { | |
debd256d | 2405 | unsigned int line_offset = DW_UNSND (attr); |
e7c27a73 | 2406 | line_header = dwarf_decode_line_header (line_offset, abfd, cu); |
debd256d JB |
2407 | if (line_header) |
2408 | { | |
2409 | make_cleanup ((make_cleanup_ftype *) free_line_header, | |
2410 | (void *) line_header); | |
aaa75496 | 2411 | dwarf_decode_lines (line_header, comp_dir, abfd, cu, NULL); |
debd256d | 2412 | } |
5fb290d7 | 2413 | } |
debd256d | 2414 | |
2e276125 JB |
2415 | /* Decode macro information, if present. Dwarf 2 macro information |
2416 | refers to information in the line number info statement program | |
2417 | header, so we can only read it if we've read the header | |
2418 | successfully. */ | |
e142c38c | 2419 | attr = dwarf2_attr (die, DW_AT_macro_info, cu); |
41ff2da1 | 2420 | if (attr && line_header) |
2e276125 JB |
2421 | { |
2422 | unsigned int macro_offset = DW_UNSND (attr); | |
2423 | dwarf_decode_macros (line_header, macro_offset, | |
e7c27a73 | 2424 | comp_dir, abfd, cu); |
2e276125 | 2425 | } |
debd256d | 2426 | do_cleanups (back_to); |
5fb290d7 DJ |
2427 | } |
2428 | ||
2429 | static void | |
e142c38c DJ |
2430 | add_to_cu_func_list (const char *name, CORE_ADDR lowpc, CORE_ADDR highpc, |
2431 | struct dwarf2_cu *cu) | |
5fb290d7 DJ |
2432 | { |
2433 | struct function_range *thisfn; | |
2434 | ||
2435 | thisfn = (struct function_range *) | |
7b5a2f43 | 2436 | obstack_alloc (&cu->comp_unit_obstack, sizeof (struct function_range)); |
5fb290d7 DJ |
2437 | thisfn->name = name; |
2438 | thisfn->lowpc = lowpc; | |
2439 | thisfn->highpc = highpc; | |
2440 | thisfn->seen_line = 0; | |
2441 | thisfn->next = NULL; | |
2442 | ||
e142c38c DJ |
2443 | if (cu->last_fn == NULL) |
2444 | cu->first_fn = thisfn; | |
5fb290d7 | 2445 | else |
e142c38c | 2446 | cu->last_fn->next = thisfn; |
5fb290d7 | 2447 | |
e142c38c | 2448 | cu->last_fn = thisfn; |
c906108c SS |
2449 | } |
2450 | ||
2451 | static void | |
e7c27a73 | 2452 | read_func_scope (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 2453 | { |
e7c27a73 | 2454 | struct objfile *objfile = cu->objfile; |
52f0bd74 | 2455 | struct context_stack *new; |
c906108c SS |
2456 | CORE_ADDR lowpc; |
2457 | CORE_ADDR highpc; | |
2458 | struct die_info *child_die; | |
2459 | struct attribute *attr; | |
2460 | char *name; | |
fdde2d81 DC |
2461 | const char *previous_prefix = processing_current_prefix; |
2462 | struct cleanup *back_to = NULL; | |
e142c38c | 2463 | CORE_ADDR baseaddr; |
c906108c | 2464 | |
e142c38c DJ |
2465 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); |
2466 | ||
2467 | name = dwarf2_linkage_name (die, cu); | |
c906108c SS |
2468 | |
2469 | /* Ignore functions with missing or empty names and functions with | |
2470 | missing or invalid low and high pc attributes. */ | |
e7c27a73 | 2471 | if (name == NULL || !dwarf2_get_pc_bounds (die, &lowpc, &highpc, cu)) |
c906108c SS |
2472 | return; |
2473 | ||
086ed43d | 2474 | if (cu->language == language_cplus) |
fdde2d81 | 2475 | { |
086ed43d | 2476 | struct die_info *spec_die = die_specification (die, cu); |
fdde2d81 | 2477 | |
2a35147e JB |
2478 | /* NOTE: carlton/2004-01-23: We have to be careful in the |
2479 | presence of DW_AT_specification. For example, with GCC 3.4, | |
2480 | given the code | |
2481 | ||
2482 | namespace N { | |
2483 | void foo() { | |
2484 | // Definition of N::foo. | |
2485 | } | |
2486 | } | |
2487 | ||
2488 | then we'll have a tree of DIEs like this: | |
2489 | ||
2490 | 1: DW_TAG_compile_unit | |
2491 | 2: DW_TAG_namespace // N | |
2492 | 3: DW_TAG_subprogram // declaration of N::foo | |
2493 | 4: DW_TAG_subprogram // definition of N::foo | |
2494 | DW_AT_specification // refers to die #3 | |
2495 | ||
2496 | Thus, when processing die #4, we have to pretend that we're | |
2497 | in the context of its DW_AT_specification, namely the contex | |
2498 | of die #3. */ | |
fdde2d81 DC |
2499 | |
2500 | if (spec_die != NULL) | |
2501 | { | |
e142c38c | 2502 | char *specification_prefix = determine_prefix (spec_die, cu); |
fdde2d81 DC |
2503 | processing_current_prefix = specification_prefix; |
2504 | back_to = make_cleanup (xfree, specification_prefix); | |
2505 | } | |
2506 | } | |
2507 | ||
c906108c SS |
2508 | lowpc += baseaddr; |
2509 | highpc += baseaddr; | |
2510 | ||
5fb290d7 | 2511 | /* Record the function range for dwarf_decode_lines. */ |
e142c38c | 2512 | add_to_cu_func_list (name, lowpc, highpc, cu); |
5fb290d7 | 2513 | |
c906108c | 2514 | new = push_context (0, lowpc); |
e7c27a73 | 2515 | new->name = new_symbol (die, die->type, cu); |
4c2df51b | 2516 | |
4cecd739 DJ |
2517 | /* If there is a location expression for DW_AT_frame_base, record |
2518 | it. */ | |
e142c38c | 2519 | attr = dwarf2_attr (die, DW_AT_frame_base, cu); |
4c2df51b | 2520 | if (attr) |
c034e007 AC |
2521 | /* FIXME: cagney/2004-01-26: The DW_AT_frame_base's location |
2522 | expression is being recorded directly in the function's symbol | |
2523 | and not in a separate frame-base object. I guess this hack is | |
2524 | to avoid adding some sort of frame-base adjunct/annex to the | |
2525 | function's symbol :-(. The problem with doing this is that it | |
2526 | results in a function symbol with a location expression that | |
2527 | has nothing to do with the location of the function, ouch! The | |
2528 | relationship should be: a function's symbol has-a frame base; a | |
2529 | frame-base has-a location expression. */ | |
e7c27a73 | 2530 | dwarf2_symbol_mark_computed (attr, new->name, cu); |
4c2df51b | 2531 | |
e142c38c | 2532 | cu->list_in_scope = &local_symbols; |
c906108c | 2533 | |
639d11d3 | 2534 | if (die->child != NULL) |
c906108c | 2535 | { |
639d11d3 | 2536 | child_die = die->child; |
c906108c SS |
2537 | while (child_die && child_die->tag) |
2538 | { | |
e7c27a73 | 2539 | process_die (child_die, cu); |
c906108c SS |
2540 | child_die = sibling_die (child_die); |
2541 | } | |
2542 | } | |
2543 | ||
2544 | new = pop_context (); | |
2545 | /* Make a block for the local symbols within. */ | |
2546 | finish_block (new->name, &local_symbols, new->old_blocks, | |
2547 | lowpc, highpc, objfile); | |
208d8187 JB |
2548 | |
2549 | /* In C++, we can have functions nested inside functions (e.g., when | |
2550 | a function declares a class that has methods). This means that | |
2551 | when we finish processing a function scope, we may need to go | |
2552 | back to building a containing block's symbol lists. */ | |
2553 | local_symbols = new->locals; | |
2554 | param_symbols = new->params; | |
2555 | ||
921e78cf JB |
2556 | /* If we've finished processing a top-level function, subsequent |
2557 | symbols go in the file symbol list. */ | |
2558 | if (outermost_context_p ()) | |
e142c38c | 2559 | cu->list_in_scope = &file_symbols; |
fdde2d81 DC |
2560 | |
2561 | processing_current_prefix = previous_prefix; | |
2562 | if (back_to != NULL) | |
2563 | do_cleanups (back_to); | |
c906108c SS |
2564 | } |
2565 | ||
2566 | /* Process all the DIES contained within a lexical block scope. Start | |
2567 | a new scope, process the dies, and then close the scope. */ | |
2568 | ||
2569 | static void | |
e7c27a73 | 2570 | read_lexical_block_scope (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 2571 | { |
e7c27a73 | 2572 | struct objfile *objfile = cu->objfile; |
52f0bd74 | 2573 | struct context_stack *new; |
c906108c SS |
2574 | CORE_ADDR lowpc, highpc; |
2575 | struct die_info *child_die; | |
e142c38c DJ |
2576 | CORE_ADDR baseaddr; |
2577 | ||
2578 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); | |
c906108c SS |
2579 | |
2580 | /* Ignore blocks with missing or invalid low and high pc attributes. */ | |
af34e669 DJ |
2581 | /* ??? Perhaps consider discontiguous blocks defined by DW_AT_ranges |
2582 | as multiple lexical blocks? Handling children in a sane way would | |
2583 | be nasty. Might be easier to properly extend generic blocks to | |
2584 | describe ranges. */ | |
e7c27a73 | 2585 | if (!dwarf2_get_pc_bounds (die, &lowpc, &highpc, cu)) |
c906108c SS |
2586 | return; |
2587 | lowpc += baseaddr; | |
2588 | highpc += baseaddr; | |
2589 | ||
2590 | push_context (0, lowpc); | |
639d11d3 | 2591 | if (die->child != NULL) |
c906108c | 2592 | { |
639d11d3 | 2593 | child_die = die->child; |
c906108c SS |
2594 | while (child_die && child_die->tag) |
2595 | { | |
e7c27a73 | 2596 | process_die (child_die, cu); |
c906108c SS |
2597 | child_die = sibling_die (child_die); |
2598 | } | |
2599 | } | |
2600 | new = pop_context (); | |
2601 | ||
2602 | if (local_symbols != NULL) | |
2603 | { | |
2604 | finish_block (0, &local_symbols, new->old_blocks, new->start_addr, | |
2605 | highpc, objfile); | |
2606 | } | |
2607 | local_symbols = new->locals; | |
2608 | } | |
2609 | ||
af34e669 DJ |
2610 | /* Get low and high pc attributes from a die. Return 1 if the attributes |
2611 | are present and valid, otherwise, return 0. Return -1 if the range is | |
2612 | discontinuous, i.e. derived from DW_AT_ranges information. */ | |
c906108c | 2613 | static int |
af34e669 | 2614 | dwarf2_get_pc_bounds (struct die_info *die, CORE_ADDR *lowpc, |
e7c27a73 | 2615 | CORE_ADDR *highpc, struct dwarf2_cu *cu) |
c906108c | 2616 | { |
e7c27a73 DJ |
2617 | struct objfile *objfile = cu->objfile; |
2618 | struct comp_unit_head *cu_header = &cu->header; | |
c906108c | 2619 | struct attribute *attr; |
af34e669 DJ |
2620 | bfd *obfd = objfile->obfd; |
2621 | CORE_ADDR low = 0; | |
2622 | CORE_ADDR high = 0; | |
2623 | int ret = 0; | |
c906108c | 2624 | |
e142c38c | 2625 | attr = dwarf2_attr (die, DW_AT_high_pc, cu); |
c906108c | 2626 | if (attr) |
af34e669 DJ |
2627 | { |
2628 | high = DW_ADDR (attr); | |
e142c38c | 2629 | attr = dwarf2_attr (die, DW_AT_low_pc, cu); |
af34e669 DJ |
2630 | if (attr) |
2631 | low = DW_ADDR (attr); | |
2632 | else | |
2633 | /* Found high w/o low attribute. */ | |
2634 | return 0; | |
2635 | ||
2636 | /* Found consecutive range of addresses. */ | |
2637 | ret = 1; | |
2638 | } | |
c906108c | 2639 | else |
af34e669 | 2640 | { |
e142c38c | 2641 | attr = dwarf2_attr (die, DW_AT_ranges, cu); |
af34e669 DJ |
2642 | if (attr != NULL) |
2643 | { | |
2644 | unsigned int addr_size = cu_header->addr_size; | |
2645 | CORE_ADDR mask = ~(~(CORE_ADDR)1 << (addr_size * 8 - 1)); | |
2646 | /* Value of the DW_AT_ranges attribute is the offset in the | |
a604369a | 2647 | .debug_ranges section. */ |
af34e669 DJ |
2648 | unsigned int offset = DW_UNSND (attr); |
2649 | /* Base address selection entry. */ | |
0d53c4c4 DJ |
2650 | CORE_ADDR base; |
2651 | int found_base; | |
af34e669 | 2652 | int dummy; |
af34e669 DJ |
2653 | char *buffer; |
2654 | CORE_ADDR marker; | |
2655 | int low_set; | |
2656 | ||
0d53c4c4 DJ |
2657 | found_base = cu_header->base_known; |
2658 | base = cu_header->base_address; | |
a604369a | 2659 | |
6502dd73 | 2660 | if (offset >= dwarf2_per_objfile->ranges_size) |
a604369a KB |
2661 | { |
2662 | complaint (&symfile_complaints, | |
2663 | "Offset %d out of bounds for DW_AT_ranges attribute", | |
2664 | offset); | |
2665 | return 0; | |
2666 | } | |
6502dd73 | 2667 | buffer = dwarf2_per_objfile->ranges_buffer + offset; |
af34e669 | 2668 | |
af34e669 | 2669 | /* Read in the largest possible address. */ |
e7c27a73 | 2670 | marker = read_address (obfd, buffer, cu, &dummy); |
af34e669 DJ |
2671 | if ((marker & mask) == mask) |
2672 | { | |
2673 | /* If we found the largest possible address, then | |
2674 | read the base address. */ | |
e7c27a73 | 2675 | base = read_address (obfd, buffer + addr_size, cu, &dummy); |
af34e669 DJ |
2676 | buffer += 2 * addr_size; |
2677 | offset += 2 * addr_size; | |
2678 | found_base = 1; | |
2679 | } | |
2680 | ||
2681 | low_set = 0; | |
2682 | ||
2683 | while (1) | |
2684 | { | |
2685 | CORE_ADDR range_beginning, range_end; | |
2686 | ||
e7c27a73 | 2687 | range_beginning = read_address (obfd, buffer, cu, &dummy); |
af34e669 | 2688 | buffer += addr_size; |
e7c27a73 | 2689 | range_end = read_address (obfd, buffer, cu, &dummy); |
af34e669 DJ |
2690 | buffer += addr_size; |
2691 | offset += 2 * addr_size; | |
2692 | ||
2693 | /* An end of list marker is a pair of zero addresses. */ | |
2694 | if (range_beginning == 0 && range_end == 0) | |
2695 | /* Found the end of list entry. */ | |
2696 | break; | |
2697 | ||
2698 | /* Each base address selection entry is a pair of 2 values. | |
2699 | The first is the largest possible address, the second is | |
2700 | the base address. Check for a base address here. */ | |
2701 | if ((range_beginning & mask) == mask) | |
2702 | { | |
2703 | /* If we found the largest possible address, then | |
2704 | read the base address. */ | |
e7c27a73 | 2705 | base = read_address (obfd, buffer + addr_size, cu, &dummy); |
af34e669 DJ |
2706 | found_base = 1; |
2707 | continue; | |
2708 | } | |
2709 | ||
2710 | if (!found_base) | |
2711 | { | |
2712 | /* We have no valid base address for the ranges | |
2713 | data. */ | |
2714 | complaint (&symfile_complaints, | |
2715 | "Invalid .debug_ranges data (no base address)"); | |
2716 | return 0; | |
2717 | } | |
2718 | ||
8f05cde5 DJ |
2719 | range_beginning += base; |
2720 | range_end += base; | |
2721 | ||
af34e669 DJ |
2722 | /* FIXME: This is recording everything as a low-high |
2723 | segment of consecutive addresses. We should have a | |
2724 | data structure for discontiguous block ranges | |
2725 | instead. */ | |
2726 | if (! low_set) | |
2727 | { | |
2728 | low = range_beginning; | |
2729 | high = range_end; | |
2730 | low_set = 1; | |
2731 | } | |
2732 | else | |
2733 | { | |
2734 | if (range_beginning < low) | |
2735 | low = range_beginning; | |
2736 | if (range_end > high) | |
2737 | high = range_end; | |
2738 | } | |
2739 | } | |
2740 | ||
2741 | if (! low_set) | |
2742 | /* If the first entry is an end-of-list marker, the range | |
2743 | describes an empty scope, i.e. no instructions. */ | |
2744 | return 0; | |
2745 | ||
2746 | ret = -1; | |
2747 | } | |
2748 | } | |
c906108c SS |
2749 | |
2750 | if (high < low) | |
2751 | return 0; | |
2752 | ||
2753 | /* When using the GNU linker, .gnu.linkonce. sections are used to | |
2754 | eliminate duplicate copies of functions and vtables and such. | |
2755 | The linker will arbitrarily choose one and discard the others. | |
2756 | The AT_*_pc values for such functions refer to local labels in | |
2757 | these sections. If the section from that file was discarded, the | |
2758 | labels are not in the output, so the relocs get a value of 0. | |
2759 | If this is a discarded function, mark the pc bounds as invalid, | |
2760 | so that GDB will ignore it. */ | |
af34e669 | 2761 | if (low == 0 && (bfd_get_file_flags (obfd) & HAS_RELOC) == 0) |
c906108c SS |
2762 | return 0; |
2763 | ||
2764 | *lowpc = low; | |
2765 | *highpc = high; | |
af34e669 | 2766 | return ret; |
c906108c SS |
2767 | } |
2768 | ||
fae299cd DC |
2769 | /* Get the low and high pc's represented by the scope DIE, and store |
2770 | them in *LOWPC and *HIGHPC. If the correct values can't be | |
2771 | determined, set *LOWPC to -1 and *HIGHPC to 0. */ | |
2772 | ||
2773 | static void | |
2774 | get_scope_pc_bounds (struct die_info *die, | |
2775 | CORE_ADDR *lowpc, CORE_ADDR *highpc, | |
2776 | struct dwarf2_cu *cu) | |
2777 | { | |
2778 | CORE_ADDR best_low = (CORE_ADDR) -1; | |
2779 | CORE_ADDR best_high = (CORE_ADDR) 0; | |
2780 | CORE_ADDR current_low, current_high; | |
2781 | ||
2782 | if (dwarf2_get_pc_bounds (die, ¤t_low, ¤t_high, cu)) | |
2783 | { | |
2784 | best_low = current_low; | |
2785 | best_high = current_high; | |
2786 | } | |
2787 | else | |
2788 | { | |
2789 | struct die_info *child = die->child; | |
2790 | ||
2791 | while (child && child->tag) | |
2792 | { | |
2793 | switch (child->tag) { | |
2794 | case DW_TAG_subprogram: | |
2795 | if (dwarf2_get_pc_bounds (child, ¤t_low, ¤t_high, cu)) | |
2796 | { | |
2797 | best_low = min (best_low, current_low); | |
2798 | best_high = max (best_high, current_high); | |
2799 | } | |
2800 | break; | |
2801 | case DW_TAG_namespace: | |
2802 | /* FIXME: carlton/2004-01-16: Should we do this for | |
2803 | DW_TAG_class_type/DW_TAG_structure_type, too? I think | |
2804 | that current GCC's always emit the DIEs corresponding | |
2805 | to definitions of methods of classes as children of a | |
2806 | DW_TAG_compile_unit or DW_TAG_namespace (as opposed to | |
2807 | the DIEs giving the declarations, which could be | |
2808 | anywhere). But I don't see any reason why the | |
2809 | standards says that they have to be there. */ | |
2810 | get_scope_pc_bounds (child, ¤t_low, ¤t_high, cu); | |
2811 | ||
2812 | if (current_low != ((CORE_ADDR) -1)) | |
2813 | { | |
2814 | best_low = min (best_low, current_low); | |
2815 | best_high = max (best_high, current_high); | |
2816 | } | |
2817 | break; | |
2818 | default: | |
2819 | /* Ignore. */ | |
2820 | break; | |
2821 | } | |
2822 | ||
2823 | child = sibling_die (child); | |
2824 | } | |
2825 | } | |
2826 | ||
2827 | *lowpc = best_low; | |
2828 | *highpc = best_high; | |
2829 | } | |
2830 | ||
c906108c SS |
2831 | /* Add an aggregate field to the field list. */ |
2832 | ||
2833 | static void | |
107d2387 | 2834 | dwarf2_add_field (struct field_info *fip, struct die_info *die, |
e7c27a73 DJ |
2835 | struct dwarf2_cu *cu) |
2836 | { | |
2837 | struct objfile *objfile = cu->objfile; | |
c906108c SS |
2838 | struct nextfield *new_field; |
2839 | struct attribute *attr; | |
2840 | struct field *fp; | |
2841 | char *fieldname = ""; | |
2842 | ||
2843 | /* Allocate a new field list entry and link it in. */ | |
2844 | new_field = (struct nextfield *) xmalloc (sizeof (struct nextfield)); | |
b8c9b27d | 2845 | make_cleanup (xfree, new_field); |
c906108c SS |
2846 | memset (new_field, 0, sizeof (struct nextfield)); |
2847 | new_field->next = fip->fields; | |
2848 | fip->fields = new_field; | |
2849 | fip->nfields++; | |
2850 | ||
2851 | /* Handle accessibility and virtuality of field. | |
2852 | The default accessibility for members is public, the default | |
2853 | accessibility for inheritance is private. */ | |
2854 | if (die->tag != DW_TAG_inheritance) | |
2855 | new_field->accessibility = DW_ACCESS_public; | |
2856 | else | |
2857 | new_field->accessibility = DW_ACCESS_private; | |
2858 | new_field->virtuality = DW_VIRTUALITY_none; | |
2859 | ||
e142c38c | 2860 | attr = dwarf2_attr (die, DW_AT_accessibility, cu); |
c906108c SS |
2861 | if (attr) |
2862 | new_field->accessibility = DW_UNSND (attr); | |
2863 | if (new_field->accessibility != DW_ACCESS_public) | |
2864 | fip->non_public_fields = 1; | |
e142c38c | 2865 | attr = dwarf2_attr (die, DW_AT_virtuality, cu); |
c906108c SS |
2866 | if (attr) |
2867 | new_field->virtuality = DW_UNSND (attr); | |
2868 | ||
2869 | fp = &new_field->field; | |
a9a9bd0f | 2870 | |
e142c38c | 2871 | if (die->tag == DW_TAG_member && ! die_is_declaration (die, cu)) |
c906108c | 2872 | { |
a9a9bd0f DC |
2873 | /* Data member other than a C++ static data member. */ |
2874 | ||
c906108c | 2875 | /* Get type of field. */ |
e7c27a73 | 2876 | fp->type = die_type (die, cu); |
c906108c | 2877 | |
01ad7f36 DJ |
2878 | FIELD_STATIC_KIND (*fp) = 0; |
2879 | ||
c906108c | 2880 | /* Get bit size of field (zero if none). */ |
e142c38c | 2881 | attr = dwarf2_attr (die, DW_AT_bit_size, cu); |
c906108c SS |
2882 | if (attr) |
2883 | { | |
2884 | FIELD_BITSIZE (*fp) = DW_UNSND (attr); | |
2885 | } | |
2886 | else | |
2887 | { | |
2888 | FIELD_BITSIZE (*fp) = 0; | |
2889 | } | |
2890 | ||
2891 | /* Get bit offset of field. */ | |
e142c38c | 2892 | attr = dwarf2_attr (die, DW_AT_data_member_location, cu); |
c906108c SS |
2893 | if (attr) |
2894 | { | |
2895 | FIELD_BITPOS (*fp) = | |
e7c27a73 | 2896 | decode_locdesc (DW_BLOCK (attr), cu) * bits_per_byte; |
c906108c SS |
2897 | } |
2898 | else | |
2899 | FIELD_BITPOS (*fp) = 0; | |
e142c38c | 2900 | attr = dwarf2_attr (die, DW_AT_bit_offset, cu); |
c906108c SS |
2901 | if (attr) |
2902 | { | |
2903 | if (BITS_BIG_ENDIAN) | |
2904 | { | |
2905 | /* For big endian bits, the DW_AT_bit_offset gives the | |
c5aa993b JM |
2906 | additional bit offset from the MSB of the containing |
2907 | anonymous object to the MSB of the field. We don't | |
2908 | have to do anything special since we don't need to | |
2909 | know the size of the anonymous object. */ | |
c906108c SS |
2910 | FIELD_BITPOS (*fp) += DW_UNSND (attr); |
2911 | } | |
2912 | else | |
2913 | { | |
2914 | /* For little endian bits, compute the bit offset to the | |
c5aa993b JM |
2915 | MSB of the anonymous object, subtract off the number of |
2916 | bits from the MSB of the field to the MSB of the | |
2917 | object, and then subtract off the number of bits of | |
2918 | the field itself. The result is the bit offset of | |
2919 | the LSB of the field. */ | |
c906108c SS |
2920 | int anonymous_size; |
2921 | int bit_offset = DW_UNSND (attr); | |
2922 | ||
e142c38c | 2923 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
c906108c SS |
2924 | if (attr) |
2925 | { | |
2926 | /* The size of the anonymous object containing | |
2927 | the bit field is explicit, so use the | |
2928 | indicated size (in bytes). */ | |
2929 | anonymous_size = DW_UNSND (attr); | |
2930 | } | |
2931 | else | |
2932 | { | |
2933 | /* The size of the anonymous object containing | |
2934 | the bit field must be inferred from the type | |
2935 | attribute of the data member containing the | |
2936 | bit field. */ | |
2937 | anonymous_size = TYPE_LENGTH (fp->type); | |
2938 | } | |
2939 | FIELD_BITPOS (*fp) += anonymous_size * bits_per_byte | |
2940 | - bit_offset - FIELD_BITSIZE (*fp); | |
2941 | } | |
2942 | } | |
2943 | ||
2944 | /* Get name of field. */ | |
e142c38c | 2945 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
2946 | if (attr && DW_STRING (attr)) |
2947 | fieldname = DW_STRING (attr); | |
d8151005 DJ |
2948 | |
2949 | /* The name is already allocated along with this objfile, so we don't | |
2950 | need to duplicate it for the type. */ | |
2951 | fp->name = fieldname; | |
c906108c SS |
2952 | |
2953 | /* Change accessibility for artificial fields (e.g. virtual table | |
c5aa993b | 2954 | pointer or virtual base class pointer) to private. */ |
e142c38c | 2955 | if (dwarf2_attr (die, DW_AT_artificial, cu)) |
c906108c SS |
2956 | { |
2957 | new_field->accessibility = DW_ACCESS_private; | |
2958 | fip->non_public_fields = 1; | |
2959 | } | |
2960 | } | |
a9a9bd0f | 2961 | else if (die->tag == DW_TAG_member || die->tag == DW_TAG_variable) |
c906108c | 2962 | { |
a9a9bd0f DC |
2963 | /* C++ static member. */ |
2964 | ||
2965 | /* NOTE: carlton/2002-11-05: It should be a DW_TAG_member that | |
2966 | is a declaration, but all versions of G++ as of this writing | |
2967 | (so through at least 3.2.1) incorrectly generate | |
2968 | DW_TAG_variable tags. */ | |
2969 | ||
c906108c | 2970 | char *physname; |
c906108c | 2971 | |
a9a9bd0f | 2972 | /* Get name of field. */ |
e142c38c | 2973 | attr = dwarf2_attr (die, DW_AT_name, cu); |
2df3850c JM |
2974 | if (attr && DW_STRING (attr)) |
2975 | fieldname = DW_STRING (attr); | |
2976 | else | |
c906108c SS |
2977 | return; |
2978 | ||
2df3850c | 2979 | /* Get physical name. */ |
e142c38c | 2980 | physname = dwarf2_linkage_name (die, cu); |
c906108c | 2981 | |
d8151005 DJ |
2982 | /* The name is already allocated along with this objfile, so we don't |
2983 | need to duplicate it for the type. */ | |
2984 | SET_FIELD_PHYSNAME (*fp, physname ? physname : ""); | |
e7c27a73 | 2985 | FIELD_TYPE (*fp) = die_type (die, cu); |
d8151005 | 2986 | FIELD_NAME (*fp) = fieldname; |
c906108c SS |
2987 | } |
2988 | else if (die->tag == DW_TAG_inheritance) | |
2989 | { | |
2990 | /* C++ base class field. */ | |
e142c38c | 2991 | attr = dwarf2_attr (die, DW_AT_data_member_location, cu); |
c906108c | 2992 | if (attr) |
e7c27a73 | 2993 | FIELD_BITPOS (*fp) = (decode_locdesc (DW_BLOCK (attr), cu) |
107d2387 | 2994 | * bits_per_byte); |
c906108c | 2995 | FIELD_BITSIZE (*fp) = 0; |
01ad7f36 | 2996 | FIELD_STATIC_KIND (*fp) = 0; |
e7c27a73 | 2997 | FIELD_TYPE (*fp) = die_type (die, cu); |
c906108c SS |
2998 | FIELD_NAME (*fp) = type_name_no_tag (fp->type); |
2999 | fip->nbaseclasses++; | |
3000 | } | |
3001 | } | |
3002 | ||
3003 | /* Create the vector of fields, and attach it to the type. */ | |
3004 | ||
3005 | static void | |
fba45db2 | 3006 | dwarf2_attach_fields_to_type (struct field_info *fip, struct type *type, |
e7c27a73 | 3007 | struct dwarf2_cu *cu) |
c906108c SS |
3008 | { |
3009 | int nfields = fip->nfields; | |
3010 | ||
3011 | /* Record the field count, allocate space for the array of fields, | |
3012 | and create blank accessibility bitfields if necessary. */ | |
3013 | TYPE_NFIELDS (type) = nfields; | |
3014 | TYPE_FIELDS (type) = (struct field *) | |
3015 | TYPE_ALLOC (type, sizeof (struct field) * nfields); | |
3016 | memset (TYPE_FIELDS (type), 0, sizeof (struct field) * nfields); | |
3017 | ||
3018 | if (fip->non_public_fields) | |
3019 | { | |
3020 | ALLOCATE_CPLUS_STRUCT_TYPE (type); | |
3021 | ||
3022 | TYPE_FIELD_PRIVATE_BITS (type) = | |
3023 | (B_TYPE *) TYPE_ALLOC (type, B_BYTES (nfields)); | |
3024 | B_CLRALL (TYPE_FIELD_PRIVATE_BITS (type), nfields); | |
3025 | ||
3026 | TYPE_FIELD_PROTECTED_BITS (type) = | |
3027 | (B_TYPE *) TYPE_ALLOC (type, B_BYTES (nfields)); | |
3028 | B_CLRALL (TYPE_FIELD_PROTECTED_BITS (type), nfields); | |
3029 | ||
3030 | TYPE_FIELD_IGNORE_BITS (type) = | |
3031 | (B_TYPE *) TYPE_ALLOC (type, B_BYTES (nfields)); | |
3032 | B_CLRALL (TYPE_FIELD_IGNORE_BITS (type), nfields); | |
3033 | } | |
3034 | ||
3035 | /* If the type has baseclasses, allocate and clear a bit vector for | |
3036 | TYPE_FIELD_VIRTUAL_BITS. */ | |
3037 | if (fip->nbaseclasses) | |
3038 | { | |
3039 | int num_bytes = B_BYTES (fip->nbaseclasses); | |
3040 | char *pointer; | |
3041 | ||
3042 | ALLOCATE_CPLUS_STRUCT_TYPE (type); | |
3043 | pointer = (char *) TYPE_ALLOC (type, num_bytes); | |
3044 | TYPE_FIELD_VIRTUAL_BITS (type) = (B_TYPE *) pointer; | |
3045 | B_CLRALL (TYPE_FIELD_VIRTUAL_BITS (type), fip->nbaseclasses); | |
3046 | TYPE_N_BASECLASSES (type) = fip->nbaseclasses; | |
3047 | } | |
3048 | ||
3049 | /* Copy the saved-up fields into the field vector. Start from the head | |
3050 | of the list, adding to the tail of the field array, so that they end | |
3051 | up in the same order in the array in which they were added to the list. */ | |
3052 | while (nfields-- > 0) | |
3053 | { | |
3054 | TYPE_FIELD (type, nfields) = fip->fields->field; | |
3055 | switch (fip->fields->accessibility) | |
3056 | { | |
c5aa993b JM |
3057 | case DW_ACCESS_private: |
3058 | SET_TYPE_FIELD_PRIVATE (type, nfields); | |
3059 | break; | |
c906108c | 3060 | |
c5aa993b JM |
3061 | case DW_ACCESS_protected: |
3062 | SET_TYPE_FIELD_PROTECTED (type, nfields); | |
3063 | break; | |
c906108c | 3064 | |
c5aa993b JM |
3065 | case DW_ACCESS_public: |
3066 | break; | |
c906108c | 3067 | |
c5aa993b JM |
3068 | default: |
3069 | /* Unknown accessibility. Complain and treat it as public. */ | |
3070 | { | |
4d3c2250 KB |
3071 | complaint (&symfile_complaints, "unsupported accessibility %d", |
3072 | fip->fields->accessibility); | |
c5aa993b JM |
3073 | } |
3074 | break; | |
c906108c SS |
3075 | } |
3076 | if (nfields < fip->nbaseclasses) | |
3077 | { | |
3078 | switch (fip->fields->virtuality) | |
3079 | { | |
c5aa993b JM |
3080 | case DW_VIRTUALITY_virtual: |
3081 | case DW_VIRTUALITY_pure_virtual: | |
3082 | SET_TYPE_FIELD_VIRTUAL (type, nfields); | |
3083 | break; | |
c906108c SS |
3084 | } |
3085 | } | |
3086 | fip->fields = fip->fields->next; | |
3087 | } | |
3088 | } | |
3089 | ||
c906108c SS |
3090 | /* Add a member function to the proper fieldlist. */ |
3091 | ||
3092 | static void | |
107d2387 | 3093 | dwarf2_add_member_fn (struct field_info *fip, struct die_info *die, |
e7c27a73 | 3094 | struct type *type, struct dwarf2_cu *cu) |
c906108c | 3095 | { |
e7c27a73 | 3096 | struct objfile *objfile = cu->objfile; |
c906108c SS |
3097 | struct attribute *attr; |
3098 | struct fnfieldlist *flp; | |
3099 | int i; | |
3100 | struct fn_field *fnp; | |
3101 | char *fieldname; | |
3102 | char *physname; | |
3103 | struct nextfnfield *new_fnfield; | |
3104 | ||
2df3850c | 3105 | /* Get name of member function. */ |
e142c38c | 3106 | attr = dwarf2_attr (die, DW_AT_name, cu); |
2df3850c JM |
3107 | if (attr && DW_STRING (attr)) |
3108 | fieldname = DW_STRING (attr); | |
c906108c | 3109 | else |
2df3850c | 3110 | return; |
c906108c | 3111 | |
2df3850c | 3112 | /* Get the mangled name. */ |
e142c38c | 3113 | physname = dwarf2_linkage_name (die, cu); |
c906108c SS |
3114 | |
3115 | /* Look up member function name in fieldlist. */ | |
3116 | for (i = 0; i < fip->nfnfields; i++) | |
3117 | { | |
27bfe10e | 3118 | if (strcmp (fip->fnfieldlists[i].name, fieldname) == 0) |
c906108c SS |
3119 | break; |
3120 | } | |
3121 | ||
3122 | /* Create new list element if necessary. */ | |
3123 | if (i < fip->nfnfields) | |
3124 | flp = &fip->fnfieldlists[i]; | |
3125 | else | |
3126 | { | |
3127 | if ((fip->nfnfields % DW_FIELD_ALLOC_CHUNK) == 0) | |
3128 | { | |
3129 | fip->fnfieldlists = (struct fnfieldlist *) | |
3130 | xrealloc (fip->fnfieldlists, | |
3131 | (fip->nfnfields + DW_FIELD_ALLOC_CHUNK) | |
c5aa993b | 3132 | * sizeof (struct fnfieldlist)); |
c906108c | 3133 | if (fip->nfnfields == 0) |
c13c43fd | 3134 | make_cleanup (free_current_contents, &fip->fnfieldlists); |
c906108c SS |
3135 | } |
3136 | flp = &fip->fnfieldlists[fip->nfnfields]; | |
3137 | flp->name = fieldname; | |
3138 | flp->length = 0; | |
3139 | flp->head = NULL; | |
3140 | fip->nfnfields++; | |
3141 | } | |
3142 | ||
3143 | /* Create a new member function field and chain it to the field list | |
3144 | entry. */ | |
3145 | new_fnfield = (struct nextfnfield *) xmalloc (sizeof (struct nextfnfield)); | |
b8c9b27d | 3146 | make_cleanup (xfree, new_fnfield); |
c906108c SS |
3147 | memset (new_fnfield, 0, sizeof (struct nextfnfield)); |
3148 | new_fnfield->next = flp->head; | |
3149 | flp->head = new_fnfield; | |
3150 | flp->length++; | |
3151 | ||
3152 | /* Fill in the member function field info. */ | |
3153 | fnp = &new_fnfield->fnfield; | |
d8151005 DJ |
3154 | /* The name is already allocated along with this objfile, so we don't |
3155 | need to duplicate it for the type. */ | |
3156 | fnp->physname = physname ? physname : ""; | |
c906108c SS |
3157 | fnp->type = alloc_type (objfile); |
3158 | if (die->type && TYPE_CODE (die->type) == TYPE_CODE_FUNC) | |
3159 | { | |
c906108c | 3160 | int nparams = TYPE_NFIELDS (die->type); |
c906108c | 3161 | |
e26fb1d7 DC |
3162 | /* TYPE is the domain of this method, and DIE->TYPE is the type |
3163 | of the method itself (TYPE_CODE_METHOD). */ | |
3164 | smash_to_method_type (fnp->type, type, | |
ad2f7632 DJ |
3165 | TYPE_TARGET_TYPE (die->type), |
3166 | TYPE_FIELDS (die->type), | |
3167 | TYPE_NFIELDS (die->type), | |
3168 | TYPE_VARARGS (die->type)); | |
c906108c SS |
3169 | |
3170 | /* Handle static member functions. | |
c5aa993b JM |
3171 | Dwarf2 has no clean way to discern C++ static and non-static |
3172 | member functions. G++ helps GDB by marking the first | |
3173 | parameter for non-static member functions (which is the | |
3174 | this pointer) as artificial. We obtain this information | |
3175 | from read_subroutine_type via TYPE_FIELD_ARTIFICIAL. */ | |
c906108c SS |
3176 | if (nparams == 0 || TYPE_FIELD_ARTIFICIAL (die->type, 0) == 0) |
3177 | fnp->voffset = VOFFSET_STATIC; | |
3178 | } | |
3179 | else | |
4d3c2250 KB |
3180 | complaint (&symfile_complaints, "member function type missing for '%s'", |
3181 | physname); | |
c906108c SS |
3182 | |
3183 | /* Get fcontext from DW_AT_containing_type if present. */ | |
e142c38c | 3184 | if (dwarf2_attr (die, DW_AT_containing_type, cu) != NULL) |
e7c27a73 | 3185 | fnp->fcontext = die_containing_type (die, cu); |
c906108c SS |
3186 | |
3187 | /* dwarf2 doesn't have stubbed physical names, so the setting of is_const | |
3188 | and is_volatile is irrelevant, as it is needed by gdb_mangle_name only. */ | |
3189 | ||
3190 | /* Get accessibility. */ | |
e142c38c | 3191 | attr = dwarf2_attr (die, DW_AT_accessibility, cu); |
c906108c SS |
3192 | if (attr) |
3193 | { | |
3194 | switch (DW_UNSND (attr)) | |
3195 | { | |
c5aa993b JM |
3196 | case DW_ACCESS_private: |
3197 | fnp->is_private = 1; | |
3198 | break; | |
3199 | case DW_ACCESS_protected: | |
3200 | fnp->is_protected = 1; | |
3201 | break; | |
c906108c SS |
3202 | } |
3203 | } | |
3204 | ||
b02dede2 | 3205 | /* Check for artificial methods. */ |
e142c38c | 3206 | attr = dwarf2_attr (die, DW_AT_artificial, cu); |
b02dede2 DJ |
3207 | if (attr && DW_UNSND (attr) != 0) |
3208 | fnp->is_artificial = 1; | |
3209 | ||
c906108c | 3210 | /* Get index in virtual function table if it is a virtual member function. */ |
e142c38c | 3211 | attr = dwarf2_attr (die, DW_AT_vtable_elem_location, cu); |
c906108c | 3212 | if (attr) |
8e19ed76 PS |
3213 | { |
3214 | /* Support the .debug_loc offsets */ | |
3215 | if (attr_form_is_block (attr)) | |
3216 | { | |
e7c27a73 | 3217 | fnp->voffset = decode_locdesc (DW_BLOCK (attr), cu) + 2; |
8e19ed76 PS |
3218 | } |
3219 | else if (attr->form == DW_FORM_data4 || attr->form == DW_FORM_data8) | |
3220 | { | |
4d3c2250 | 3221 | dwarf2_complex_location_expr_complaint (); |
8e19ed76 PS |
3222 | } |
3223 | else | |
3224 | { | |
4d3c2250 KB |
3225 | dwarf2_invalid_attrib_class_complaint ("DW_AT_vtable_elem_location", |
3226 | fieldname); | |
8e19ed76 PS |
3227 | } |
3228 | } | |
c906108c SS |
3229 | } |
3230 | ||
3231 | /* Create the vector of member function fields, and attach it to the type. */ | |
3232 | ||
3233 | static void | |
fba45db2 | 3234 | dwarf2_attach_fn_fields_to_type (struct field_info *fip, struct type *type, |
e7c27a73 | 3235 | struct dwarf2_cu *cu) |
c906108c SS |
3236 | { |
3237 | struct fnfieldlist *flp; | |
3238 | int total_length = 0; | |
3239 | int i; | |
3240 | ||
3241 | ALLOCATE_CPLUS_STRUCT_TYPE (type); | |
3242 | TYPE_FN_FIELDLISTS (type) = (struct fn_fieldlist *) | |
3243 | TYPE_ALLOC (type, sizeof (struct fn_fieldlist) * fip->nfnfields); | |
3244 | ||
3245 | for (i = 0, flp = fip->fnfieldlists; i < fip->nfnfields; i++, flp++) | |
3246 | { | |
3247 | struct nextfnfield *nfp = flp->head; | |
3248 | struct fn_fieldlist *fn_flp = &TYPE_FN_FIELDLIST (type, i); | |
3249 | int k; | |
3250 | ||
3251 | TYPE_FN_FIELDLIST_NAME (type, i) = flp->name; | |
3252 | TYPE_FN_FIELDLIST_LENGTH (type, i) = flp->length; | |
3253 | fn_flp->fn_fields = (struct fn_field *) | |
3254 | TYPE_ALLOC (type, sizeof (struct fn_field) * flp->length); | |
3255 | for (k = flp->length; (k--, nfp); nfp = nfp->next) | |
c5aa993b | 3256 | fn_flp->fn_fields[k] = nfp->fnfield; |
c906108c SS |
3257 | |
3258 | total_length += flp->length; | |
3259 | } | |
3260 | ||
3261 | TYPE_NFN_FIELDS (type) = fip->nfnfields; | |
3262 | TYPE_NFN_FIELDS_TOTAL (type) = total_length; | |
3263 | } | |
3264 | ||
3265 | /* Called when we find the DIE that starts a structure or union scope | |
3266 | (definition) to process all dies that define the members of the | |
3267 | structure or union. | |
3268 | ||
3269 | NOTE: we need to call struct_type regardless of whether or not the | |
3270 | DIE has an at_name attribute, since it might be an anonymous | |
3271 | structure or union. This gets the type entered into our set of | |
3272 | user defined types. | |
3273 | ||
3274 | However, if the structure is incomplete (an opaque struct/union) | |
3275 | then suppress creating a symbol table entry for it since gdb only | |
3276 | wants to find the one with the complete definition. Note that if | |
3277 | it is complete, we just call new_symbol, which does it's own | |
3278 | checking about whether the struct/union is anonymous or not (and | |
3279 | suppresses creating a symbol table entry itself). */ | |
3280 | ||
3281 | static void | |
134d01f1 | 3282 | read_structure_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3283 | { |
e7c27a73 | 3284 | struct objfile *objfile = cu->objfile; |
c906108c SS |
3285 | struct type *type; |
3286 | struct attribute *attr; | |
63d06c5c DC |
3287 | const char *previous_prefix = processing_current_prefix; |
3288 | struct cleanup *back_to = NULL; | |
c906108c | 3289 | |
134d01f1 DJ |
3290 | if (die->type) |
3291 | return; | |
3292 | ||
c906108c SS |
3293 | type = alloc_type (objfile); |
3294 | ||
3295 | INIT_CPLUS_SPECIFIC (type); | |
e142c38c | 3296 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
3297 | if (attr && DW_STRING (attr)) |
3298 | { | |
e142c38c | 3299 | if (cu->language == language_cplus) |
63d06c5c | 3300 | { |
8176b9b8 DC |
3301 | char *new_prefix = determine_class_name (die, cu); |
3302 | TYPE_TAG_NAME (type) = obsavestring (new_prefix, | |
3303 | strlen (new_prefix), | |
3304 | &objfile->objfile_obstack); | |
3305 | back_to = make_cleanup (xfree, new_prefix); | |
63d06c5c DC |
3306 | processing_current_prefix = new_prefix; |
3307 | } | |
3308 | else | |
3309 | { | |
d8151005 DJ |
3310 | /* The name is already allocated along with this objfile, so |
3311 | we don't need to duplicate it for the type. */ | |
8176b9b8 | 3312 | TYPE_TAG_NAME (type) = DW_STRING (attr); |
63d06c5c | 3313 | } |
c906108c SS |
3314 | } |
3315 | ||
3316 | if (die->tag == DW_TAG_structure_type) | |
3317 | { | |
3318 | TYPE_CODE (type) = TYPE_CODE_STRUCT; | |
3319 | } | |
3320 | else if (die->tag == DW_TAG_union_type) | |
3321 | { | |
3322 | TYPE_CODE (type) = TYPE_CODE_UNION; | |
3323 | } | |
3324 | else | |
3325 | { | |
3326 | /* FIXME: TYPE_CODE_CLASS is currently defined to TYPE_CODE_STRUCT | |
c5aa993b | 3327 | in gdbtypes.h. */ |
c906108c SS |
3328 | TYPE_CODE (type) = TYPE_CODE_CLASS; |
3329 | } | |
3330 | ||
e142c38c | 3331 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
c906108c SS |
3332 | if (attr) |
3333 | { | |
3334 | TYPE_LENGTH (type) = DW_UNSND (attr); | |
3335 | } | |
3336 | else | |
3337 | { | |
3338 | TYPE_LENGTH (type) = 0; | |
3339 | } | |
3340 | ||
dc718098 JB |
3341 | if (die_is_declaration (die, cu)) |
3342 | TYPE_FLAGS (type) |= TYPE_FLAG_STUB; | |
3343 | ||
c906108c SS |
3344 | /* We need to add the type field to the die immediately so we don't |
3345 | infinitely recurse when dealing with pointers to the structure | |
3346 | type within the structure itself. */ | |
3347 | die->type = type; | |
3348 | ||
e142c38c | 3349 | if (die->child != NULL && ! die_is_declaration (die, cu)) |
c906108c SS |
3350 | { |
3351 | struct field_info fi; | |
3352 | struct die_info *child_die; | |
3353 | struct cleanup *back_to = make_cleanup (null_cleanup, NULL); | |
3354 | ||
3355 | memset (&fi, 0, sizeof (struct field_info)); | |
3356 | ||
639d11d3 | 3357 | child_die = die->child; |
c906108c SS |
3358 | |
3359 | while (child_die && child_die->tag) | |
3360 | { | |
a9a9bd0f DC |
3361 | if (child_die->tag == DW_TAG_member |
3362 | || child_die->tag == DW_TAG_variable) | |
c906108c | 3363 | { |
a9a9bd0f DC |
3364 | /* NOTE: carlton/2002-11-05: A C++ static data member |
3365 | should be a DW_TAG_member that is a declaration, but | |
3366 | all versions of G++ as of this writing (so through at | |
3367 | least 3.2.1) incorrectly generate DW_TAG_variable | |
3368 | tags for them instead. */ | |
e7c27a73 | 3369 | dwarf2_add_field (&fi, child_die, cu); |
c906108c | 3370 | } |
8713b1b1 | 3371 | else if (child_die->tag == DW_TAG_subprogram) |
c906108c SS |
3372 | { |
3373 | /* C++ member function. */ | |
134d01f1 | 3374 | read_type_die (child_die, cu); |
e7c27a73 | 3375 | dwarf2_add_member_fn (&fi, child_die, type, cu); |
c906108c SS |
3376 | } |
3377 | else if (child_die->tag == DW_TAG_inheritance) | |
3378 | { | |
3379 | /* C++ base class field. */ | |
e7c27a73 | 3380 | dwarf2_add_field (&fi, child_die, cu); |
c906108c | 3381 | } |
c906108c SS |
3382 | child_die = sibling_die (child_die); |
3383 | } | |
3384 | ||
3385 | /* Attach fields and member functions to the type. */ | |
3386 | if (fi.nfields) | |
e7c27a73 | 3387 | dwarf2_attach_fields_to_type (&fi, type, cu); |
c906108c SS |
3388 | if (fi.nfnfields) |
3389 | { | |
e7c27a73 | 3390 | dwarf2_attach_fn_fields_to_type (&fi, type, cu); |
c906108c | 3391 | |
c5aa993b | 3392 | /* Get the type which refers to the base class (possibly this |
c906108c SS |
3393 | class itself) which contains the vtable pointer for the current |
3394 | class from the DW_AT_containing_type attribute. */ | |
3395 | ||
e142c38c | 3396 | if (dwarf2_attr (die, DW_AT_containing_type, cu) != NULL) |
c906108c | 3397 | { |
e7c27a73 | 3398 | struct type *t = die_containing_type (die, cu); |
c906108c SS |
3399 | |
3400 | TYPE_VPTR_BASETYPE (type) = t; | |
3401 | if (type == t) | |
3402 | { | |
c5aa993b JM |
3403 | static const char vptr_name[] = |
3404 | {'_', 'v', 'p', 't', 'r', '\0'}; | |
c906108c SS |
3405 | int i; |
3406 | ||
3407 | /* Our own class provides vtbl ptr. */ | |
3408 | for (i = TYPE_NFIELDS (t) - 1; | |
3409 | i >= TYPE_N_BASECLASSES (t); | |
3410 | --i) | |
3411 | { | |
3412 | char *fieldname = TYPE_FIELD_NAME (t, i); | |
3413 | ||
27bfe10e JB |
3414 | if ((strncmp (fieldname, vptr_name, |
3415 | strlen (vptr_name) - 1) | |
3416 | == 0) | |
c906108c SS |
3417 | && is_cplus_marker (fieldname[strlen (vptr_name)])) |
3418 | { | |
3419 | TYPE_VPTR_FIELDNO (type) = i; | |
3420 | break; | |
3421 | } | |
3422 | } | |
3423 | ||
3424 | /* Complain if virtual function table field not found. */ | |
3425 | if (i < TYPE_N_BASECLASSES (t)) | |
4d3c2250 KB |
3426 | complaint (&symfile_complaints, |
3427 | "virtual function table pointer not found when defining class '%s'", | |
3428 | TYPE_TAG_NAME (type) ? TYPE_TAG_NAME (type) : | |
3429 | ""); | |
c906108c SS |
3430 | } |
3431 | else | |
3432 | { | |
3433 | TYPE_VPTR_FIELDNO (type) = TYPE_VPTR_FIELDNO (t); | |
3434 | } | |
3435 | } | |
3436 | } | |
3437 | ||
c906108c SS |
3438 | do_cleanups (back_to); |
3439 | } | |
63d06c5c DC |
3440 | |
3441 | processing_current_prefix = previous_prefix; | |
3442 | if (back_to != NULL) | |
3443 | do_cleanups (back_to); | |
c906108c SS |
3444 | } |
3445 | ||
134d01f1 DJ |
3446 | static void |
3447 | process_structure_scope (struct die_info *die, struct dwarf2_cu *cu) | |
3448 | { | |
3449 | struct objfile *objfile = cu->objfile; | |
3450 | const char *previous_prefix = processing_current_prefix; | |
90aeadfc | 3451 | struct die_info *child_die = die->child; |
c906108c | 3452 | |
134d01f1 DJ |
3453 | if (TYPE_TAG_NAME (die->type) != NULL) |
3454 | processing_current_prefix = TYPE_TAG_NAME (die->type); | |
c906108c | 3455 | |
90aeadfc DC |
3456 | /* NOTE: carlton/2004-03-16: GCC 3.4 (or at least one of its |
3457 | snapshots) has been known to create a die giving a declaration | |
3458 | for a class that has, as a child, a die giving a definition for a | |
3459 | nested class. So we have to process our children even if the | |
3460 | current die is a declaration. Normally, of course, a declaration | |
3461 | won't have any children at all. */ | |
134d01f1 | 3462 | |
90aeadfc DC |
3463 | while (child_die != NULL && child_die->tag) |
3464 | { | |
3465 | if (child_die->tag == DW_TAG_member | |
3466 | || child_die->tag == DW_TAG_variable | |
3467 | || child_die->tag == DW_TAG_inheritance) | |
134d01f1 | 3468 | { |
90aeadfc | 3469 | /* Do nothing. */ |
134d01f1 | 3470 | } |
90aeadfc DC |
3471 | else |
3472 | process_die (child_die, cu); | |
134d01f1 | 3473 | |
90aeadfc | 3474 | child_die = sibling_die (child_die); |
134d01f1 DJ |
3475 | } |
3476 | ||
90aeadfc DC |
3477 | if (die->child != NULL && ! die_is_declaration (die, cu)) |
3478 | new_symbol (die, die->type, cu); | |
3479 | ||
134d01f1 DJ |
3480 | processing_current_prefix = previous_prefix; |
3481 | } | |
3482 | ||
3483 | /* Given a DW_AT_enumeration_type die, set its type. We do not | |
3484 | complete the type's fields yet, or create any symbols. */ | |
c906108c SS |
3485 | |
3486 | static void | |
134d01f1 | 3487 | read_enumeration_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3488 | { |
e7c27a73 | 3489 | struct objfile *objfile = cu->objfile; |
c906108c | 3490 | struct type *type; |
c906108c | 3491 | struct attribute *attr; |
134d01f1 DJ |
3492 | |
3493 | if (die->type) | |
3494 | return; | |
c906108c SS |
3495 | |
3496 | type = alloc_type (objfile); | |
3497 | ||
3498 | TYPE_CODE (type) = TYPE_CODE_ENUM; | |
e142c38c | 3499 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
3500 | if (attr && DW_STRING (attr)) |
3501 | { | |
d8151005 | 3502 | char *name = DW_STRING (attr); |
63d06c5c DC |
3503 | |
3504 | if (processing_has_namespace_info) | |
3505 | { | |
b99607ea | 3506 | TYPE_TAG_NAME (type) = obconcat (&objfile->objfile_obstack, |
63d06c5c DC |
3507 | processing_current_prefix, |
3508 | processing_current_prefix[0] == '\0' | |
3509 | ? "" : "::", | |
3510 | name); | |
3511 | } | |
3512 | else | |
3513 | { | |
d8151005 DJ |
3514 | /* The name is already allocated along with this objfile, so |
3515 | we don't need to duplicate it for the type. */ | |
3516 | TYPE_TAG_NAME (type) = name; | |
63d06c5c | 3517 | } |
c906108c SS |
3518 | } |
3519 | ||
e142c38c | 3520 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
c906108c SS |
3521 | if (attr) |
3522 | { | |
3523 | TYPE_LENGTH (type) = DW_UNSND (attr); | |
3524 | } | |
3525 | else | |
3526 | { | |
3527 | TYPE_LENGTH (type) = 0; | |
3528 | } | |
3529 | ||
134d01f1 DJ |
3530 | die->type = type; |
3531 | } | |
3532 | ||
8176b9b8 DC |
3533 | /* Determine the name of the type represented by DIE, which should be |
3534 | a named C++ compound type. Return the name in question; the caller | |
3535 | is responsible for xfree()'ing it. */ | |
3536 | ||
3537 | static char * | |
3538 | determine_class_name (struct die_info *die, struct dwarf2_cu *cu) | |
3539 | { | |
3540 | struct cleanup *back_to = NULL; | |
3541 | struct die_info *spec_die = die_specification (die, cu); | |
3542 | char *new_prefix = NULL; | |
3543 | ||
3544 | /* If this is the definition of a class that is declared by another | |
3545 | die, then processing_current_prefix may not be accurate; see | |
3546 | read_func_scope for a similar example. */ | |
3547 | if (spec_die != NULL) | |
3548 | { | |
3549 | char *specification_prefix = determine_prefix (spec_die, cu); | |
3550 | processing_current_prefix = specification_prefix; | |
3551 | back_to = make_cleanup (xfree, specification_prefix); | |
3552 | } | |
3553 | ||
3554 | /* If we don't have namespace debug info, guess the name by trying | |
3555 | to demangle the names of members, just like we did in | |
72bf9492 | 3556 | guess_structure_name. */ |
8176b9b8 DC |
3557 | if (!processing_has_namespace_info) |
3558 | { | |
3559 | struct die_info *child; | |
3560 | ||
3561 | for (child = die->child; | |
3562 | child != NULL && child->tag != 0; | |
3563 | child = sibling_die (child)) | |
3564 | { | |
3565 | if (child->tag == DW_TAG_subprogram) | |
3566 | { | |
31c27f77 JJ |
3567 | new_prefix |
3568 | = language_class_name_from_physname (cu->language_defn, | |
3569 | dwarf2_linkage_name | |
8176b9b8 DC |
3570 | (child, cu)); |
3571 | ||
3572 | if (new_prefix != NULL) | |
3573 | break; | |
3574 | } | |
3575 | } | |
3576 | } | |
3577 | ||
3578 | if (new_prefix == NULL) | |
3579 | { | |
3580 | const char *name = dwarf2_name (die, cu); | |
3581 | new_prefix = typename_concat (processing_current_prefix, | |
3582 | name ? name : "<<anonymous>>"); | |
3583 | } | |
3584 | ||
3585 | if (back_to != NULL) | |
3586 | do_cleanups (back_to); | |
3587 | ||
3588 | return new_prefix; | |
3589 | } | |
3590 | ||
134d01f1 DJ |
3591 | /* Given a pointer to a die which begins an enumeration, process all |
3592 | the dies that define the members of the enumeration, and create the | |
3593 | symbol for the enumeration type. | |
3594 | ||
3595 | NOTE: We reverse the order of the element list. */ | |
3596 | ||
3597 | static void | |
3598 | process_enumeration_scope (struct die_info *die, struct dwarf2_cu *cu) | |
3599 | { | |
3600 | struct objfile *objfile = cu->objfile; | |
3601 | struct die_info *child_die; | |
3602 | struct field *fields; | |
3603 | struct attribute *attr; | |
3604 | struct symbol *sym; | |
3605 | int num_fields; | |
3606 | int unsigned_enum = 1; | |
3607 | ||
c906108c SS |
3608 | num_fields = 0; |
3609 | fields = NULL; | |
639d11d3 | 3610 | if (die->child != NULL) |
c906108c | 3611 | { |
639d11d3 | 3612 | child_die = die->child; |
c906108c SS |
3613 | while (child_die && child_die->tag) |
3614 | { | |
3615 | if (child_die->tag != DW_TAG_enumerator) | |
3616 | { | |
e7c27a73 | 3617 | process_die (child_die, cu); |
c906108c SS |
3618 | } |
3619 | else | |
3620 | { | |
e142c38c | 3621 | attr = dwarf2_attr (child_die, DW_AT_name, cu); |
c906108c SS |
3622 | if (attr) |
3623 | { | |
134d01f1 | 3624 | sym = new_symbol (child_die, die->type, cu); |
c906108c SS |
3625 | if (SYMBOL_VALUE (sym) < 0) |
3626 | unsigned_enum = 0; | |
3627 | ||
3628 | if ((num_fields % DW_FIELD_ALLOC_CHUNK) == 0) | |
3629 | { | |
3630 | fields = (struct field *) | |
3631 | xrealloc (fields, | |
3632 | (num_fields + DW_FIELD_ALLOC_CHUNK) | |
c5aa993b | 3633 | * sizeof (struct field)); |
c906108c SS |
3634 | } |
3635 | ||
22abf04a | 3636 | FIELD_NAME (fields[num_fields]) = DEPRECATED_SYMBOL_NAME (sym); |
c906108c SS |
3637 | FIELD_TYPE (fields[num_fields]) = NULL; |
3638 | FIELD_BITPOS (fields[num_fields]) = SYMBOL_VALUE (sym); | |
3639 | FIELD_BITSIZE (fields[num_fields]) = 0; | |
01ad7f36 | 3640 | FIELD_STATIC_KIND (fields[num_fields]) = 0; |
c906108c SS |
3641 | |
3642 | num_fields++; | |
3643 | } | |
3644 | } | |
3645 | ||
3646 | child_die = sibling_die (child_die); | |
3647 | } | |
3648 | ||
3649 | if (num_fields) | |
3650 | { | |
134d01f1 DJ |
3651 | TYPE_NFIELDS (die->type) = num_fields; |
3652 | TYPE_FIELDS (die->type) = (struct field *) | |
3653 | TYPE_ALLOC (die->type, sizeof (struct field) * num_fields); | |
3654 | memcpy (TYPE_FIELDS (die->type), fields, | |
c906108c | 3655 | sizeof (struct field) * num_fields); |
b8c9b27d | 3656 | xfree (fields); |
c906108c SS |
3657 | } |
3658 | if (unsigned_enum) | |
134d01f1 | 3659 | TYPE_FLAGS (die->type) |= TYPE_FLAG_UNSIGNED; |
c906108c | 3660 | } |
134d01f1 DJ |
3661 | |
3662 | new_symbol (die, die->type, cu); | |
c906108c SS |
3663 | } |
3664 | ||
3665 | /* Extract all information from a DW_TAG_array_type DIE and put it in | |
3666 | the DIE's type field. For now, this only handles one dimensional | |
3667 | arrays. */ | |
3668 | ||
3669 | static void | |
e7c27a73 | 3670 | read_array_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3671 | { |
e7c27a73 | 3672 | struct objfile *objfile = cu->objfile; |
c906108c SS |
3673 | struct die_info *child_die; |
3674 | struct type *type = NULL; | |
3675 | struct type *element_type, *range_type, *index_type; | |
3676 | struct type **range_types = NULL; | |
3677 | struct attribute *attr; | |
3678 | int ndim = 0; | |
3679 | struct cleanup *back_to; | |
3680 | ||
3681 | /* Return if we've already decoded this type. */ | |
3682 | if (die->type) | |
3683 | { | |
3684 | return; | |
3685 | } | |
3686 | ||
e7c27a73 | 3687 | element_type = die_type (die, cu); |
c906108c SS |
3688 | |
3689 | /* Irix 6.2 native cc creates array types without children for | |
3690 | arrays with unspecified length. */ | |
639d11d3 | 3691 | if (die->child == NULL) |
c906108c | 3692 | { |
e142c38c | 3693 | index_type = dwarf2_fundamental_type (objfile, FT_INTEGER, cu); |
c906108c SS |
3694 | range_type = create_range_type (NULL, index_type, 0, -1); |
3695 | die->type = create_array_type (NULL, element_type, range_type); | |
3696 | return; | |
3697 | } | |
3698 | ||
3699 | back_to = make_cleanup (null_cleanup, NULL); | |
639d11d3 | 3700 | child_die = die->child; |
c906108c SS |
3701 | while (child_die && child_die->tag) |
3702 | { | |
3703 | if (child_die->tag == DW_TAG_subrange_type) | |
3704 | { | |
a02abb62 | 3705 | read_subrange_type (child_die, cu); |
c906108c | 3706 | |
a02abb62 JB |
3707 | if (child_die->type != NULL) |
3708 | { | |
3709 | /* The range type was succesfully read. Save it for | |
3710 | the array type creation. */ | |
3711 | if ((ndim % DW_FIELD_ALLOC_CHUNK) == 0) | |
3712 | { | |
3713 | range_types = (struct type **) | |
3714 | xrealloc (range_types, (ndim + DW_FIELD_ALLOC_CHUNK) | |
3715 | * sizeof (struct type *)); | |
3716 | if (ndim == 0) | |
3717 | make_cleanup (free_current_contents, &range_types); | |
3718 | } | |
3719 | range_types[ndim++] = child_die->type; | |
3720 | } | |
c906108c SS |
3721 | } |
3722 | child_die = sibling_die (child_die); | |
3723 | } | |
3724 | ||
3725 | /* Dwarf2 dimensions are output from left to right, create the | |
3726 | necessary array types in backwards order. */ | |
3727 | type = element_type; | |
3728 | while (ndim-- > 0) | |
3729 | type = create_array_type (NULL, type, range_types[ndim]); | |
3730 | ||
f5f8a009 EZ |
3731 | /* Understand Dwarf2 support for vector types (like they occur on |
3732 | the PowerPC w/ AltiVec). Gcc just adds another attribute to the | |
3733 | array type. This is not part of the Dwarf2/3 standard yet, but a | |
3734 | custom vendor extension. The main difference between a regular | |
3735 | array and the vector variant is that vectors are passed by value | |
3736 | to functions. */ | |
e142c38c | 3737 | attr = dwarf2_attr (die, DW_AT_GNU_vector, cu); |
f5f8a009 EZ |
3738 | if (attr) |
3739 | TYPE_FLAGS (type) |= TYPE_FLAG_VECTOR; | |
3740 | ||
c906108c SS |
3741 | do_cleanups (back_to); |
3742 | ||
3743 | /* Install the type in the die. */ | |
3744 | die->type = type; | |
3745 | } | |
3746 | ||
3747 | /* First cut: install each common block member as a global variable. */ | |
3748 | ||
3749 | static void | |
e7c27a73 | 3750 | read_common_block (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
3751 | { |
3752 | struct die_info *child_die; | |
3753 | struct attribute *attr; | |
3754 | struct symbol *sym; | |
3755 | CORE_ADDR base = (CORE_ADDR) 0; | |
3756 | ||
e142c38c | 3757 | attr = dwarf2_attr (die, DW_AT_location, cu); |
c906108c SS |
3758 | if (attr) |
3759 | { | |
8e19ed76 PS |
3760 | /* Support the .debug_loc offsets */ |
3761 | if (attr_form_is_block (attr)) | |
3762 | { | |
e7c27a73 | 3763 | base = decode_locdesc (DW_BLOCK (attr), cu); |
8e19ed76 PS |
3764 | } |
3765 | else if (attr->form == DW_FORM_data4 || attr->form == DW_FORM_data8) | |
3766 | { | |
4d3c2250 | 3767 | dwarf2_complex_location_expr_complaint (); |
8e19ed76 PS |
3768 | } |
3769 | else | |
3770 | { | |
4d3c2250 KB |
3771 | dwarf2_invalid_attrib_class_complaint ("DW_AT_location", |
3772 | "common block member"); | |
8e19ed76 | 3773 | } |
c906108c | 3774 | } |
639d11d3 | 3775 | if (die->child != NULL) |
c906108c | 3776 | { |
639d11d3 | 3777 | child_die = die->child; |
c906108c SS |
3778 | while (child_die && child_die->tag) |
3779 | { | |
e7c27a73 | 3780 | sym = new_symbol (child_die, NULL, cu); |
e142c38c | 3781 | attr = dwarf2_attr (child_die, DW_AT_data_member_location, cu); |
c906108c SS |
3782 | if (attr) |
3783 | { | |
3784 | SYMBOL_VALUE_ADDRESS (sym) = | |
e7c27a73 | 3785 | base + decode_locdesc (DW_BLOCK (attr), cu); |
c906108c SS |
3786 | add_symbol_to_list (sym, &global_symbols); |
3787 | } | |
3788 | child_die = sibling_die (child_die); | |
3789 | } | |
3790 | } | |
3791 | } | |
3792 | ||
d9fa45fe DC |
3793 | /* Read a C++ namespace. */ |
3794 | ||
d9fa45fe | 3795 | static void |
e7c27a73 | 3796 | read_namespace (struct die_info *die, struct dwarf2_cu *cu) |
d9fa45fe | 3797 | { |
e7c27a73 | 3798 | struct objfile *objfile = cu->objfile; |
38d518c9 | 3799 | const char *previous_prefix = processing_current_prefix; |
63d06c5c | 3800 | const char *name; |
9219021c DC |
3801 | int is_anonymous; |
3802 | struct die_info *current_die; | |
3803 | ||
e142c38c | 3804 | name = namespace_name (die, &is_anonymous, cu); |
9219021c DC |
3805 | |
3806 | /* Now build the name of the current namespace. */ | |
3807 | ||
38d518c9 | 3808 | if (previous_prefix[0] == '\0') |
9219021c | 3809 | { |
38d518c9 | 3810 | processing_current_prefix = name; |
9219021c DC |
3811 | } |
3812 | else | |
3813 | { | |
38d518c9 | 3814 | /* We need temp_name around because processing_current_prefix |
9219021c | 3815 | is a const char *. */ |
38d518c9 | 3816 | char *temp_name = alloca (strlen (previous_prefix) |
9219021c | 3817 | + 2 + strlen(name) + 1); |
38d518c9 | 3818 | strcpy (temp_name, previous_prefix); |
9219021c DC |
3819 | strcat (temp_name, "::"); |
3820 | strcat (temp_name, name); | |
3821 | ||
38d518c9 | 3822 | processing_current_prefix = temp_name; |
9219021c DC |
3823 | } |
3824 | ||
5c4e30ca DC |
3825 | /* Add a symbol associated to this if we haven't seen the namespace |
3826 | before. Also, add a using directive if it's an anonymous | |
3827 | namespace. */ | |
9219021c | 3828 | |
e142c38c | 3829 | if (dwarf2_extension (die, cu) == NULL) |
5c4e30ca DC |
3830 | { |
3831 | struct type *type; | |
3832 | ||
3833 | /* FIXME: carlton/2003-06-27: Once GDB is more const-correct, | |
3834 | this cast will hopefully become unnecessary. */ | |
3835 | type = init_type (TYPE_CODE_NAMESPACE, 0, 0, | |
38d518c9 | 3836 | (char *) processing_current_prefix, |
5c4e30ca DC |
3837 | objfile); |
3838 | TYPE_TAG_NAME (type) = TYPE_NAME (type); | |
3839 | ||
e7c27a73 | 3840 | new_symbol (die, type, cu); |
8176b9b8 | 3841 | die->type = type; |
5c4e30ca DC |
3842 | |
3843 | if (is_anonymous) | |
38d518c9 EZ |
3844 | cp_add_using_directive (processing_current_prefix, |
3845 | strlen (previous_prefix), | |
3846 | strlen (processing_current_prefix)); | |
5c4e30ca | 3847 | } |
9219021c | 3848 | |
639d11d3 | 3849 | if (die->child != NULL) |
d9fa45fe | 3850 | { |
639d11d3 | 3851 | struct die_info *child_die = die->child; |
d9fa45fe DC |
3852 | |
3853 | while (child_die && child_die->tag) | |
3854 | { | |
e7c27a73 | 3855 | process_die (child_die, cu); |
d9fa45fe DC |
3856 | child_die = sibling_die (child_die); |
3857 | } | |
3858 | } | |
9219021c | 3859 | |
38d518c9 EZ |
3860 | processing_current_prefix = previous_prefix; |
3861 | } | |
3862 | ||
3863 | /* Return the name of the namespace represented by DIE. Set | |
3864 | *IS_ANONYMOUS to tell whether or not the namespace is an anonymous | |
3865 | namespace. */ | |
3866 | ||
3867 | static const char * | |
e142c38c | 3868 | namespace_name (struct die_info *die, int *is_anonymous, struct dwarf2_cu *cu) |
38d518c9 EZ |
3869 | { |
3870 | struct die_info *current_die; | |
3871 | const char *name = NULL; | |
3872 | ||
3873 | /* Loop through the extensions until we find a name. */ | |
3874 | ||
3875 | for (current_die = die; | |
3876 | current_die != NULL; | |
e142c38c | 3877 | current_die = dwarf2_extension (die, cu)) |
38d518c9 | 3878 | { |
e142c38c | 3879 | name = dwarf2_name (current_die, cu); |
38d518c9 EZ |
3880 | if (name != NULL) |
3881 | break; | |
3882 | } | |
3883 | ||
3884 | /* Is it an anonymous namespace? */ | |
3885 | ||
3886 | *is_anonymous = (name == NULL); | |
3887 | if (*is_anonymous) | |
3888 | name = "(anonymous namespace)"; | |
3889 | ||
3890 | return name; | |
d9fa45fe DC |
3891 | } |
3892 | ||
c906108c SS |
3893 | /* Extract all information from a DW_TAG_pointer_type DIE and add to |
3894 | the user defined type vector. */ | |
3895 | ||
3896 | static void | |
e7c27a73 | 3897 | read_tag_pointer_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3898 | { |
e7c27a73 | 3899 | struct comp_unit_head *cu_header = &cu->header; |
c906108c | 3900 | struct type *type; |
8b2dbe47 KB |
3901 | struct attribute *attr_byte_size; |
3902 | struct attribute *attr_address_class; | |
3903 | int byte_size, addr_class; | |
c906108c SS |
3904 | |
3905 | if (die->type) | |
3906 | { | |
3907 | return; | |
3908 | } | |
3909 | ||
e7c27a73 | 3910 | type = lookup_pointer_type (die_type (die, cu)); |
8b2dbe47 | 3911 | |
e142c38c | 3912 | attr_byte_size = dwarf2_attr (die, DW_AT_byte_size, cu); |
8b2dbe47 KB |
3913 | if (attr_byte_size) |
3914 | byte_size = DW_UNSND (attr_byte_size); | |
c906108c | 3915 | else |
8b2dbe47 KB |
3916 | byte_size = cu_header->addr_size; |
3917 | ||
e142c38c | 3918 | attr_address_class = dwarf2_attr (die, DW_AT_address_class, cu); |
8b2dbe47 KB |
3919 | if (attr_address_class) |
3920 | addr_class = DW_UNSND (attr_address_class); | |
3921 | else | |
3922 | addr_class = DW_ADDR_none; | |
3923 | ||
3924 | /* If the pointer size or address class is different than the | |
3925 | default, create a type variant marked as such and set the | |
3926 | length accordingly. */ | |
3927 | if (TYPE_LENGTH (type) != byte_size || addr_class != DW_ADDR_none) | |
c906108c | 3928 | { |
8b2dbe47 KB |
3929 | if (ADDRESS_CLASS_TYPE_FLAGS_P ()) |
3930 | { | |
3931 | int type_flags; | |
3932 | ||
3933 | type_flags = ADDRESS_CLASS_TYPE_FLAGS (byte_size, addr_class); | |
3934 | gdb_assert ((type_flags & ~TYPE_FLAG_ADDRESS_CLASS_ALL) == 0); | |
3935 | type = make_type_with_address_space (type, type_flags); | |
3936 | } | |
3937 | else if (TYPE_LENGTH (type) != byte_size) | |
3938 | { | |
4d3c2250 | 3939 | complaint (&symfile_complaints, "invalid pointer size %d", byte_size); |
8b2dbe47 KB |
3940 | } |
3941 | else { | |
3942 | /* Should we also complain about unhandled address classes? */ | |
3943 | } | |
c906108c | 3944 | } |
8b2dbe47 KB |
3945 | |
3946 | TYPE_LENGTH (type) = byte_size; | |
c906108c SS |
3947 | die->type = type; |
3948 | } | |
3949 | ||
3950 | /* Extract all information from a DW_TAG_ptr_to_member_type DIE and add to | |
3951 | the user defined type vector. */ | |
3952 | ||
3953 | static void | |
e7c27a73 | 3954 | read_tag_ptr_to_member_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3955 | { |
e7c27a73 | 3956 | struct objfile *objfile = cu->objfile; |
c906108c SS |
3957 | struct type *type; |
3958 | struct type *to_type; | |
3959 | struct type *domain; | |
3960 | ||
3961 | if (die->type) | |
3962 | { | |
3963 | return; | |
3964 | } | |
3965 | ||
3966 | type = alloc_type (objfile); | |
e7c27a73 DJ |
3967 | to_type = die_type (die, cu); |
3968 | domain = die_containing_type (die, cu); | |
c906108c SS |
3969 | smash_to_member_type (type, domain, to_type); |
3970 | ||
3971 | die->type = type; | |
3972 | } | |
3973 | ||
3974 | /* Extract all information from a DW_TAG_reference_type DIE and add to | |
3975 | the user defined type vector. */ | |
3976 | ||
3977 | static void | |
e7c27a73 | 3978 | read_tag_reference_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 3979 | { |
e7c27a73 | 3980 | struct comp_unit_head *cu_header = &cu->header; |
c906108c SS |
3981 | struct type *type; |
3982 | struct attribute *attr; | |
3983 | ||
3984 | if (die->type) | |
3985 | { | |
3986 | return; | |
3987 | } | |
3988 | ||
e7c27a73 | 3989 | type = lookup_reference_type (die_type (die, cu)); |
e142c38c | 3990 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
c906108c SS |
3991 | if (attr) |
3992 | { | |
3993 | TYPE_LENGTH (type) = DW_UNSND (attr); | |
3994 | } | |
3995 | else | |
3996 | { | |
107d2387 | 3997 | TYPE_LENGTH (type) = cu_header->addr_size; |
c906108c SS |
3998 | } |
3999 | die->type = type; | |
4000 | } | |
4001 | ||
4002 | static void | |
e7c27a73 | 4003 | read_tag_const_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 4004 | { |
090c42a4 JB |
4005 | struct type *base_type; |
4006 | ||
c906108c SS |
4007 | if (die->type) |
4008 | { | |
4009 | return; | |
4010 | } | |
4011 | ||
e7c27a73 | 4012 | base_type = die_type (die, cu); |
090c42a4 | 4013 | die->type = make_cv_type (1, TYPE_VOLATILE (base_type), base_type, 0); |
c906108c SS |
4014 | } |
4015 | ||
4016 | static void | |
e7c27a73 | 4017 | read_tag_volatile_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 4018 | { |
090c42a4 JB |
4019 | struct type *base_type; |
4020 | ||
c906108c SS |
4021 | if (die->type) |
4022 | { | |
4023 | return; | |
4024 | } | |
4025 | ||
e7c27a73 | 4026 | base_type = die_type (die, cu); |
090c42a4 | 4027 | die->type = make_cv_type (TYPE_CONST (base_type), 1, base_type, 0); |
c906108c SS |
4028 | } |
4029 | ||
4030 | /* Extract all information from a DW_TAG_string_type DIE and add to | |
4031 | the user defined type vector. It isn't really a user defined type, | |
4032 | but it behaves like one, with other DIE's using an AT_user_def_type | |
4033 | attribute to reference it. */ | |
4034 | ||
4035 | static void | |
e7c27a73 | 4036 | read_tag_string_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 4037 | { |
e7c27a73 | 4038 | struct objfile *objfile = cu->objfile; |
c906108c SS |
4039 | struct type *type, *range_type, *index_type, *char_type; |
4040 | struct attribute *attr; | |
4041 | unsigned int length; | |
4042 | ||
4043 | if (die->type) | |
4044 | { | |
4045 | return; | |
4046 | } | |
4047 | ||
e142c38c | 4048 | attr = dwarf2_attr (die, DW_AT_string_length, cu); |
c906108c SS |
4049 | if (attr) |
4050 | { | |
4051 | length = DW_UNSND (attr); | |
4052 | } | |
4053 | else | |
4054 | { | |
b21b22e0 | 4055 | /* check for the DW_AT_byte_size attribute */ |
e142c38c | 4056 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
b21b22e0 PS |
4057 | if (attr) |
4058 | { | |
4059 | length = DW_UNSND (attr); | |
4060 | } | |
4061 | else | |
4062 | { | |
4063 | length = 1; | |
4064 | } | |
c906108c | 4065 | } |
e142c38c | 4066 | index_type = dwarf2_fundamental_type (objfile, FT_INTEGER, cu); |
c906108c | 4067 | range_type = create_range_type (NULL, index_type, 1, length); |
e142c38c | 4068 | if (cu->language == language_fortran) |
b21b22e0 PS |
4069 | { |
4070 | /* Need to create a unique string type for bounds | |
4071 | information */ | |
4072 | type = create_string_type (0, range_type); | |
4073 | } | |
4074 | else | |
4075 | { | |
e142c38c | 4076 | char_type = dwarf2_fundamental_type (objfile, FT_CHAR, cu); |
b21b22e0 PS |
4077 | type = create_string_type (char_type, range_type); |
4078 | } | |
c906108c SS |
4079 | die->type = type; |
4080 | } | |
4081 | ||
4082 | /* Handle DIES due to C code like: | |
4083 | ||
4084 | struct foo | |
c5aa993b JM |
4085 | { |
4086 | int (*funcp)(int a, long l); | |
4087 | int b; | |
4088 | }; | |
c906108c SS |
4089 | |
4090 | ('funcp' generates a DW_TAG_subroutine_type DIE) | |
c5aa993b | 4091 | */ |
c906108c SS |
4092 | |
4093 | static void | |
e7c27a73 | 4094 | read_subroutine_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
4095 | { |
4096 | struct type *type; /* Type that this function returns */ | |
4097 | struct type *ftype; /* Function that returns above type */ | |
4098 | struct attribute *attr; | |
4099 | ||
4100 | /* Decode the type that this subroutine returns */ | |
4101 | if (die->type) | |
4102 | { | |
4103 | return; | |
4104 | } | |
e7c27a73 | 4105 | type = die_type (die, cu); |
c906108c SS |
4106 | ftype = lookup_function_type (type); |
4107 | ||
4108 | /* All functions in C++ have prototypes. */ | |
e142c38c | 4109 | attr = dwarf2_attr (die, DW_AT_prototyped, cu); |
c906108c | 4110 | if ((attr && (DW_UNSND (attr) != 0)) |
e142c38c | 4111 | || cu->language == language_cplus) |
c906108c SS |
4112 | TYPE_FLAGS (ftype) |= TYPE_FLAG_PROTOTYPED; |
4113 | ||
639d11d3 | 4114 | if (die->child != NULL) |
c906108c SS |
4115 | { |
4116 | struct die_info *child_die; | |
4117 | int nparams = 0; | |
4118 | int iparams = 0; | |
4119 | ||
4120 | /* Count the number of parameters. | |
4121 | FIXME: GDB currently ignores vararg functions, but knows about | |
4122 | vararg member functions. */ | |
639d11d3 | 4123 | child_die = die->child; |
c906108c SS |
4124 | while (child_die && child_die->tag) |
4125 | { | |
4126 | if (child_die->tag == DW_TAG_formal_parameter) | |
4127 | nparams++; | |
4128 | else if (child_die->tag == DW_TAG_unspecified_parameters) | |
4129 | TYPE_FLAGS (ftype) |= TYPE_FLAG_VARARGS; | |
4130 | child_die = sibling_die (child_die); | |
4131 | } | |
4132 | ||
4133 | /* Allocate storage for parameters and fill them in. */ | |
4134 | TYPE_NFIELDS (ftype) = nparams; | |
4135 | TYPE_FIELDS (ftype) = (struct field *) | |
4136 | TYPE_ALLOC (ftype, nparams * sizeof (struct field)); | |
4137 | ||
639d11d3 | 4138 | child_die = die->child; |
c906108c SS |
4139 | while (child_die && child_die->tag) |
4140 | { | |
4141 | if (child_die->tag == DW_TAG_formal_parameter) | |
4142 | { | |
4143 | /* Dwarf2 has no clean way to discern C++ static and non-static | |
c5aa993b JM |
4144 | member functions. G++ helps GDB by marking the first |
4145 | parameter for non-static member functions (which is the | |
4146 | this pointer) as artificial. We pass this information | |
4147 | to dwarf2_add_member_fn via TYPE_FIELD_ARTIFICIAL. */ | |
e142c38c | 4148 | attr = dwarf2_attr (child_die, DW_AT_artificial, cu); |
c906108c SS |
4149 | if (attr) |
4150 | TYPE_FIELD_ARTIFICIAL (ftype, iparams) = DW_UNSND (attr); | |
4151 | else | |
4152 | TYPE_FIELD_ARTIFICIAL (ftype, iparams) = 0; | |
e7c27a73 | 4153 | TYPE_FIELD_TYPE (ftype, iparams) = die_type (child_die, cu); |
c906108c SS |
4154 | iparams++; |
4155 | } | |
4156 | child_die = sibling_die (child_die); | |
4157 | } | |
4158 | } | |
4159 | ||
4160 | die->type = ftype; | |
4161 | } | |
4162 | ||
4163 | static void | |
e7c27a73 | 4164 | read_typedef (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 4165 | { |
e7c27a73 | 4166 | struct objfile *objfile = cu->objfile; |
2f038fcb FF |
4167 | struct attribute *attr; |
4168 | char *name = NULL; | |
c906108c SS |
4169 | |
4170 | if (!die->type) | |
4171 | { | |
e142c38c | 4172 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c | 4173 | if (attr && DW_STRING (attr)) |
2f038fcb FF |
4174 | { |
4175 | name = DW_STRING (attr); | |
4176 | } | |
4177 | die->type = init_type (TYPE_CODE_TYPEDEF, 0, TYPE_FLAG_TARGET_STUB, name, objfile); | |
e7c27a73 | 4178 | TYPE_TARGET_TYPE (die->type) = die_type (die, cu); |
c906108c SS |
4179 | } |
4180 | } | |
4181 | ||
4182 | /* Find a representation of a given base type and install | |
4183 | it in the TYPE field of the die. */ | |
4184 | ||
4185 | static void | |
e7c27a73 | 4186 | read_base_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 4187 | { |
e7c27a73 | 4188 | struct objfile *objfile = cu->objfile; |
c906108c SS |
4189 | struct type *type; |
4190 | struct attribute *attr; | |
4191 | int encoding = 0, size = 0; | |
4192 | ||
4193 | /* If we've already decoded this die, this is a no-op. */ | |
4194 | if (die->type) | |
4195 | { | |
4196 | return; | |
4197 | } | |
4198 | ||
e142c38c | 4199 | attr = dwarf2_attr (die, DW_AT_encoding, cu); |
c906108c SS |
4200 | if (attr) |
4201 | { | |
4202 | encoding = DW_UNSND (attr); | |
4203 | } | |
e142c38c | 4204 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
c906108c SS |
4205 | if (attr) |
4206 | { | |
4207 | size = DW_UNSND (attr); | |
4208 | } | |
e142c38c | 4209 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
4210 | if (attr && DW_STRING (attr)) |
4211 | { | |
4212 | enum type_code code = TYPE_CODE_INT; | |
f5ef7c67 | 4213 | int type_flags = 0; |
c906108c SS |
4214 | |
4215 | switch (encoding) | |
4216 | { | |
4217 | case DW_ATE_address: | |
4218 | /* Turn DW_ATE_address into a void * pointer. */ | |
4219 | code = TYPE_CODE_PTR; | |
f5ef7c67 | 4220 | type_flags |= TYPE_FLAG_UNSIGNED; |
c906108c SS |
4221 | break; |
4222 | case DW_ATE_boolean: | |
4223 | code = TYPE_CODE_BOOL; | |
f5ef7c67 | 4224 | type_flags |= TYPE_FLAG_UNSIGNED; |
c906108c SS |
4225 | break; |
4226 | case DW_ATE_complex_float: | |
4227 | code = TYPE_CODE_COMPLEX; | |
4228 | break; | |
4229 | case DW_ATE_float: | |
4230 | code = TYPE_CODE_FLT; | |
4231 | break; | |
4232 | case DW_ATE_signed: | |
4233 | case DW_ATE_signed_char: | |
4234 | break; | |
4235 | case DW_ATE_unsigned: | |
4236 | case DW_ATE_unsigned_char: | |
f5ef7c67 | 4237 | type_flags |= TYPE_FLAG_UNSIGNED; |
c906108c SS |
4238 | break; |
4239 | default: | |
4d3c2250 KB |
4240 | complaint (&symfile_complaints, "unsupported DW_AT_encoding: '%s'", |
4241 | dwarf_type_encoding_name (encoding)); | |
c906108c SS |
4242 | break; |
4243 | } | |
f5ef7c67 | 4244 | type = init_type (code, size, type_flags, DW_STRING (attr), objfile); |
c906108c | 4245 | if (encoding == DW_ATE_address) |
e142c38c DJ |
4246 | TYPE_TARGET_TYPE (type) = dwarf2_fundamental_type (objfile, FT_VOID, |
4247 | cu); | |
f65ca430 DJ |
4248 | else if (encoding == DW_ATE_complex_float) |
4249 | { | |
4250 | if (size == 32) | |
4251 | TYPE_TARGET_TYPE (type) | |
e142c38c | 4252 | = dwarf2_fundamental_type (objfile, FT_EXT_PREC_FLOAT, cu); |
f65ca430 DJ |
4253 | else if (size == 16) |
4254 | TYPE_TARGET_TYPE (type) | |
e142c38c | 4255 | = dwarf2_fundamental_type (objfile, FT_DBL_PREC_FLOAT, cu); |
f65ca430 DJ |
4256 | else if (size == 8) |
4257 | TYPE_TARGET_TYPE (type) | |
e142c38c | 4258 | = dwarf2_fundamental_type (objfile, FT_FLOAT, cu); |
f65ca430 | 4259 | } |
c906108c SS |
4260 | } |
4261 | else | |
4262 | { | |
e7c27a73 | 4263 | type = dwarf_base_type (encoding, size, cu); |
c906108c SS |
4264 | } |
4265 | die->type = type; | |
4266 | } | |
4267 | ||
a02abb62 JB |
4268 | /* Read the given DW_AT_subrange DIE. */ |
4269 | ||
4270 | static void | |
4271 | read_subrange_type (struct die_info *die, struct dwarf2_cu *cu) | |
4272 | { | |
4273 | struct type *base_type; | |
4274 | struct type *range_type; | |
4275 | struct attribute *attr; | |
4276 | int low = 0; | |
4277 | int high = -1; | |
4278 | ||
4279 | /* If we have already decoded this die, then nothing more to do. */ | |
4280 | if (die->type) | |
4281 | return; | |
4282 | ||
4283 | base_type = die_type (die, cu); | |
4284 | if (base_type == NULL) | |
4285 | { | |
4286 | complaint (&symfile_complaints, | |
4287 | "DW_AT_type missing from DW_TAG_subrange_type"); | |
4288 | return; | |
4289 | } | |
4290 | ||
4291 | if (TYPE_CODE (base_type) == TYPE_CODE_VOID) | |
4292 | base_type = alloc_type (NULL); | |
4293 | ||
e142c38c | 4294 | if (cu->language == language_fortran) |
a02abb62 JB |
4295 | { |
4296 | /* FORTRAN implies a lower bound of 1, if not given. */ | |
4297 | low = 1; | |
4298 | } | |
4299 | ||
e142c38c | 4300 | attr = dwarf2_attr (die, DW_AT_lower_bound, cu); |
a02abb62 JB |
4301 | if (attr) |
4302 | low = dwarf2_get_attr_constant_value (attr, 0); | |
4303 | ||
e142c38c | 4304 | attr = dwarf2_attr (die, DW_AT_upper_bound, cu); |
a02abb62 JB |
4305 | if (attr) |
4306 | { | |
4307 | if (attr->form == DW_FORM_block1) | |
4308 | { | |
4309 | /* GCC encodes arrays with unspecified or dynamic length | |
4310 | with a DW_FORM_block1 attribute. | |
4311 | FIXME: GDB does not yet know how to handle dynamic | |
4312 | arrays properly, treat them as arrays with unspecified | |
4313 | length for now. | |
4314 | ||
4315 | FIXME: jimb/2003-09-22: GDB does not really know | |
4316 | how to handle arrays of unspecified length | |
4317 | either; we just represent them as zero-length | |
4318 | arrays. Choose an appropriate upper bound given | |
4319 | the lower bound we've computed above. */ | |
4320 | high = low - 1; | |
4321 | } | |
4322 | else | |
4323 | high = dwarf2_get_attr_constant_value (attr, 1); | |
4324 | } | |
4325 | ||
4326 | range_type = create_range_type (NULL, base_type, low, high); | |
4327 | ||
e142c38c | 4328 | attr = dwarf2_attr (die, DW_AT_name, cu); |
a02abb62 JB |
4329 | if (attr && DW_STRING (attr)) |
4330 | TYPE_NAME (range_type) = DW_STRING (attr); | |
4331 | ||
e142c38c | 4332 | attr = dwarf2_attr (die, DW_AT_byte_size, cu); |
a02abb62 JB |
4333 | if (attr) |
4334 | TYPE_LENGTH (range_type) = DW_UNSND (attr); | |
4335 | ||
4336 | die->type = range_type; | |
4337 | } | |
4338 | ||
4339 | ||
c906108c SS |
4340 | /* Read a whole compilation unit into a linked list of dies. */ |
4341 | ||
f9aca02d | 4342 | static struct die_info * |
e7c27a73 | 4343 | read_comp_unit (char *info_ptr, bfd *abfd, struct dwarf2_cu *cu) |
c906108c | 4344 | { |
b3810801 | 4345 | /* Reset die reference table; we are |
7f0e3f52 AC |
4346 | building new ones now. */ |
4347 | dwarf2_empty_hash_tables (); | |
c906108c | 4348 | |
e7c27a73 | 4349 | return read_die_and_children (info_ptr, abfd, cu, &info_ptr, NULL); |
639d11d3 DC |
4350 | } |
4351 | ||
4352 | /* Read a single die and all its descendents. Set the die's sibling | |
4353 | field to NULL; set other fields in the die correctly, and set all | |
4354 | of the descendents' fields correctly. Set *NEW_INFO_PTR to the | |
4355 | location of the info_ptr after reading all of those dies. PARENT | |
4356 | is the parent of the die in question. */ | |
4357 | ||
4358 | static struct die_info * | |
4359 | read_die_and_children (char *info_ptr, bfd *abfd, | |
e7c27a73 | 4360 | struct dwarf2_cu *cu, |
639d11d3 DC |
4361 | char **new_info_ptr, |
4362 | struct die_info *parent) | |
4363 | { | |
4364 | struct die_info *die; | |
4365 | char *cur_ptr; | |
4366 | int has_children; | |
4367 | ||
e7c27a73 | 4368 | cur_ptr = read_full_die (&die, abfd, info_ptr, cu, &has_children); |
639d11d3 DC |
4369 | store_in_ref_table (die->offset, die); |
4370 | ||
4371 | if (has_children) | |
4372 | { | |
e7c27a73 | 4373 | die->child = read_die_and_siblings (cur_ptr, abfd, cu, |
639d11d3 DC |
4374 | new_info_ptr, die); |
4375 | } | |
4376 | else | |
4377 | { | |
4378 | die->child = NULL; | |
4379 | *new_info_ptr = cur_ptr; | |
4380 | } | |
4381 | ||
4382 | die->sibling = NULL; | |
4383 | die->parent = parent; | |
4384 | return die; | |
4385 | } | |
4386 | ||
4387 | /* Read a die, all of its descendents, and all of its siblings; set | |
4388 | all of the fields of all of the dies correctly. Arguments are as | |
4389 | in read_die_and_children. */ | |
4390 | ||
4391 | static struct die_info * | |
4392 | read_die_and_siblings (char *info_ptr, bfd *abfd, | |
e7c27a73 | 4393 | struct dwarf2_cu *cu, |
639d11d3 DC |
4394 | char **new_info_ptr, |
4395 | struct die_info *parent) | |
4396 | { | |
4397 | struct die_info *first_die, *last_sibling; | |
4398 | char *cur_ptr; | |
4399 | ||
c906108c | 4400 | cur_ptr = info_ptr; |
639d11d3 DC |
4401 | first_die = last_sibling = NULL; |
4402 | ||
4403 | while (1) | |
c906108c | 4404 | { |
639d11d3 | 4405 | struct die_info *die |
e7c27a73 | 4406 | = read_die_and_children (cur_ptr, abfd, cu, &cur_ptr, parent); |
639d11d3 DC |
4407 | |
4408 | if (!first_die) | |
c906108c | 4409 | { |
639d11d3 | 4410 | first_die = die; |
c906108c | 4411 | } |
639d11d3 | 4412 | else |
c906108c | 4413 | { |
639d11d3 | 4414 | last_sibling->sibling = die; |
c906108c SS |
4415 | } |
4416 | ||
639d11d3 | 4417 | if (die->tag == 0) |
c906108c | 4418 | { |
639d11d3 DC |
4419 | *new_info_ptr = cur_ptr; |
4420 | return first_die; | |
c906108c SS |
4421 | } |
4422 | else | |
4423 | { | |
639d11d3 | 4424 | last_sibling = die; |
c906108c SS |
4425 | } |
4426 | } | |
c906108c SS |
4427 | } |
4428 | ||
4429 | /* Free a linked list of dies. */ | |
4430 | ||
4431 | static void | |
fba45db2 | 4432 | free_die_list (struct die_info *dies) |
c906108c SS |
4433 | { |
4434 | struct die_info *die, *next; | |
4435 | ||
4436 | die = dies; | |
4437 | while (die) | |
4438 | { | |
639d11d3 DC |
4439 | if (die->child != NULL) |
4440 | free_die_list (die->child); | |
4441 | next = die->sibling; | |
b8c9b27d KB |
4442 | xfree (die->attrs); |
4443 | xfree (die); | |
c906108c SS |
4444 | die = next; |
4445 | } | |
4446 | } | |
4447 | ||
74b7792f AC |
4448 | static void |
4449 | do_free_die_list_cleanup (void *dies) | |
4450 | { | |
4451 | free_die_list (dies); | |
4452 | } | |
4453 | ||
4454 | static struct cleanup * | |
4455 | make_cleanup_free_die_list (struct die_info *dies) | |
4456 | { | |
4457 | return make_cleanup (do_free_die_list_cleanup, dies); | |
4458 | } | |
4459 | ||
4460 | ||
c906108c | 4461 | /* Read the contents of the section at OFFSET and of size SIZE from the |
8b92e4d5 | 4462 | object file specified by OBJFILE into the objfile_obstack and return it. */ |
c906108c | 4463 | |
b6af0555 | 4464 | char * |
188dd5d6 | 4465 | dwarf2_read_section (struct objfile *objfile, asection *sectp) |
c906108c SS |
4466 | { |
4467 | bfd *abfd = objfile->obfd; | |
086df311 | 4468 | char *buf, *retbuf; |
2c500098 | 4469 | bfd_size_type size = bfd_get_section_size (sectp); |
c906108c SS |
4470 | |
4471 | if (size == 0) | |
4472 | return NULL; | |
4473 | ||
8b92e4d5 | 4474 | buf = (char *) obstack_alloc (&objfile->objfile_obstack, size); |
086df311 DJ |
4475 | retbuf |
4476 | = (char *) symfile_relocate_debug_section (abfd, sectp, (bfd_byte *) buf); | |
4477 | if (retbuf != NULL) | |
4478 | return retbuf; | |
4479 | ||
188dd5d6 DJ |
4480 | if (bfd_seek (abfd, sectp->filepos, SEEK_SET) != 0 |
4481 | || bfd_bread (buf, size, abfd) != size) | |
4482 | error ("Dwarf Error: Can't read DWARF data from '%s'", | |
4483 | bfd_get_filename (abfd)); | |
4484 | ||
c906108c SS |
4485 | return buf; |
4486 | } | |
4487 | ||
4488 | /* In DWARF version 2, the description of the debugging information is | |
4489 | stored in a separate .debug_abbrev section. Before we read any | |
4490 | dies from a section we read in all abbreviations and install them | |
72bf9492 DJ |
4491 | in a hash table. This function also sets flags in CU describing |
4492 | the data found in the abbrev table. */ | |
c906108c SS |
4493 | |
4494 | static void | |
e7c27a73 | 4495 | dwarf2_read_abbrevs (bfd *abfd, struct dwarf2_cu *cu) |
c906108c | 4496 | { |
e7c27a73 | 4497 | struct comp_unit_head *cu_header = &cu->header; |
c906108c SS |
4498 | char *abbrev_ptr; |
4499 | struct abbrev_info *cur_abbrev; | |
4500 | unsigned int abbrev_number, bytes_read, abbrev_name; | |
4501 | unsigned int abbrev_form, hash_number; | |
f3dd6933 DJ |
4502 | struct attr_abbrev *cur_attrs; |
4503 | unsigned int allocated_attrs; | |
c906108c | 4504 | |
57349743 | 4505 | /* Initialize dwarf2 abbrevs */ |
f3dd6933 DJ |
4506 | obstack_init (&cu->abbrev_obstack); |
4507 | cu->dwarf2_abbrevs = obstack_alloc (&cu->abbrev_obstack, | |
4508 | (ABBREV_HASH_SIZE | |
4509 | * sizeof (struct abbrev_info *))); | |
4510 | memset (cu->dwarf2_abbrevs, 0, | |
4511 | ABBREV_HASH_SIZE * sizeof (struct abbrev_info *)); | |
c906108c | 4512 | |
6502dd73 | 4513 | abbrev_ptr = dwarf2_per_objfile->abbrev_buffer + cu_header->abbrev_offset; |
c906108c SS |
4514 | abbrev_number = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); |
4515 | abbrev_ptr += bytes_read; | |
4516 | ||
f3dd6933 DJ |
4517 | allocated_attrs = ATTR_ALLOC_CHUNK; |
4518 | cur_attrs = xmalloc (allocated_attrs * sizeof (struct attr_abbrev)); | |
4519 | ||
c906108c SS |
4520 | /* loop until we reach an abbrev number of 0 */ |
4521 | while (abbrev_number) | |
4522 | { | |
f3dd6933 | 4523 | cur_abbrev = dwarf_alloc_abbrev (cu); |
c906108c SS |
4524 | |
4525 | /* read in abbrev header */ | |
4526 | cur_abbrev->number = abbrev_number; | |
4527 | cur_abbrev->tag = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); | |
4528 | abbrev_ptr += bytes_read; | |
4529 | cur_abbrev->has_children = read_1_byte (abfd, abbrev_ptr); | |
4530 | abbrev_ptr += 1; | |
4531 | ||
72bf9492 DJ |
4532 | if (cur_abbrev->tag == DW_TAG_namespace) |
4533 | cu->has_namespace_info = 1; | |
4534 | ||
c906108c SS |
4535 | /* now read in declarations */ |
4536 | abbrev_name = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); | |
4537 | abbrev_ptr += bytes_read; | |
4538 | abbrev_form = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); | |
4539 | abbrev_ptr += bytes_read; | |
4540 | while (abbrev_name) | |
4541 | { | |
f3dd6933 | 4542 | if (cur_abbrev->num_attrs == allocated_attrs) |
c906108c | 4543 | { |
f3dd6933 DJ |
4544 | allocated_attrs += ATTR_ALLOC_CHUNK; |
4545 | cur_attrs | |
4546 | = xrealloc (cur_attrs, (allocated_attrs | |
4547 | * sizeof (struct attr_abbrev))); | |
c906108c | 4548 | } |
f3dd6933 DJ |
4549 | cur_attrs[cur_abbrev->num_attrs].name = abbrev_name; |
4550 | cur_attrs[cur_abbrev->num_attrs++].form = abbrev_form; | |
c906108c SS |
4551 | abbrev_name = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); |
4552 | abbrev_ptr += bytes_read; | |
4553 | abbrev_form = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); | |
4554 | abbrev_ptr += bytes_read; | |
4555 | } | |
4556 | ||
f3dd6933 DJ |
4557 | cur_abbrev->attrs = obstack_alloc (&cu->abbrev_obstack, |
4558 | (cur_abbrev->num_attrs | |
4559 | * sizeof (struct attr_abbrev))); | |
4560 | memcpy (cur_abbrev->attrs, cur_attrs, | |
4561 | cur_abbrev->num_attrs * sizeof (struct attr_abbrev)); | |
4562 | ||
c906108c | 4563 | hash_number = abbrev_number % ABBREV_HASH_SIZE; |
f3dd6933 DJ |
4564 | cur_abbrev->next = cu->dwarf2_abbrevs[hash_number]; |
4565 | cu->dwarf2_abbrevs[hash_number] = cur_abbrev; | |
c906108c SS |
4566 | |
4567 | /* Get next abbreviation. | |
4568 | Under Irix6 the abbreviations for a compilation unit are not | |
c5aa993b JM |
4569 | always properly terminated with an abbrev number of 0. |
4570 | Exit loop if we encounter an abbreviation which we have | |
4571 | already read (which means we are about to read the abbreviations | |
4572 | for the next compile unit) or if the end of the abbreviation | |
4573 | table is reached. */ | |
6502dd73 DJ |
4574 | if ((unsigned int) (abbrev_ptr - dwarf2_per_objfile->abbrev_buffer) |
4575 | >= dwarf2_per_objfile->abbrev_size) | |
c906108c SS |
4576 | break; |
4577 | abbrev_number = read_unsigned_leb128 (abfd, abbrev_ptr, &bytes_read); | |
4578 | abbrev_ptr += bytes_read; | |
e7c27a73 | 4579 | if (dwarf2_lookup_abbrev (abbrev_number, cu) != NULL) |
c906108c SS |
4580 | break; |
4581 | } | |
f3dd6933 DJ |
4582 | |
4583 | xfree (cur_attrs); | |
c906108c SS |
4584 | } |
4585 | ||
f3dd6933 | 4586 | /* Release the memory used by the abbrev table for a compilation unit. */ |
c906108c | 4587 | |
c906108c | 4588 | static void |
f3dd6933 | 4589 | dwarf2_free_abbrev_table (void *ptr_to_cu) |
c906108c | 4590 | { |
f3dd6933 | 4591 | struct dwarf2_cu *cu = ptr_to_cu; |
c906108c | 4592 | |
f3dd6933 DJ |
4593 | obstack_free (&cu->abbrev_obstack, NULL); |
4594 | cu->dwarf2_abbrevs = NULL; | |
c906108c SS |
4595 | } |
4596 | ||
4597 | /* Lookup an abbrev_info structure in the abbrev hash table. */ | |
4598 | ||
4599 | static struct abbrev_info * | |
e7c27a73 | 4600 | dwarf2_lookup_abbrev (unsigned int number, struct dwarf2_cu *cu) |
c906108c SS |
4601 | { |
4602 | unsigned int hash_number; | |
4603 | struct abbrev_info *abbrev; | |
4604 | ||
4605 | hash_number = number % ABBREV_HASH_SIZE; | |
f3dd6933 | 4606 | abbrev = cu->dwarf2_abbrevs[hash_number]; |
c906108c SS |
4607 | |
4608 | while (abbrev) | |
4609 | { | |
4610 | if (abbrev->number == number) | |
4611 | return abbrev; | |
4612 | else | |
4613 | abbrev = abbrev->next; | |
4614 | } | |
4615 | return NULL; | |
4616 | } | |
4617 | ||
72bf9492 DJ |
4618 | /* Returns nonzero if TAG represents a type that we might generate a partial |
4619 | symbol for. */ | |
4620 | ||
4621 | static int | |
4622 | is_type_tag_for_partial (int tag) | |
4623 | { | |
4624 | switch (tag) | |
4625 | { | |
4626 | #if 0 | |
4627 | /* Some types that would be reasonable to generate partial symbols for, | |
4628 | that we don't at present. */ | |
4629 | case DW_TAG_array_type: | |
4630 | case DW_TAG_file_type: | |
4631 | case DW_TAG_ptr_to_member_type: | |
4632 | case DW_TAG_set_type: | |
4633 | case DW_TAG_string_type: | |
4634 | case DW_TAG_subroutine_type: | |
4635 | #endif | |
4636 | case DW_TAG_base_type: | |
4637 | case DW_TAG_class_type: | |
4638 | case DW_TAG_enumeration_type: | |
4639 | case DW_TAG_structure_type: | |
4640 | case DW_TAG_subrange_type: | |
4641 | case DW_TAG_typedef: | |
4642 | case DW_TAG_union_type: | |
4643 | return 1; | |
4644 | default: | |
4645 | return 0; | |
4646 | } | |
4647 | } | |
4648 | ||
4649 | /* Load all DIEs that are interesting for partial symbols into memory. */ | |
4650 | ||
4651 | static struct partial_die_info * | |
4652 | load_partial_dies (bfd *abfd, char *info_ptr, int building_psymtab, | |
4653 | struct dwarf2_cu *cu) | |
4654 | { | |
4655 | struct partial_die_info *part_die; | |
4656 | struct partial_die_info *parent_die, *last_die, *first_die = NULL; | |
4657 | struct abbrev_info *abbrev; | |
4658 | unsigned int bytes_read; | |
4659 | ||
4660 | int nesting_level = 1; | |
4661 | ||
4662 | parent_die = NULL; | |
4663 | last_die = NULL; | |
4664 | ||
4665 | cu->partial_dies | |
4666 | = htab_create_alloc_ex (cu->header.length / 12, | |
4667 | partial_die_hash, | |
4668 | partial_die_eq, | |
4669 | NULL, | |
4670 | &cu->comp_unit_obstack, | |
4671 | hashtab_obstack_allocate, | |
4672 | dummy_obstack_deallocate); | |
4673 | ||
4674 | part_die = obstack_alloc (&cu->comp_unit_obstack, | |
4675 | sizeof (struct partial_die_info)); | |
4676 | ||
4677 | while (1) | |
4678 | { | |
4679 | abbrev = peek_die_abbrev (info_ptr, &bytes_read, cu); | |
4680 | ||
4681 | /* A NULL abbrev means the end of a series of children. */ | |
4682 | if (abbrev == NULL) | |
4683 | { | |
4684 | if (--nesting_level == 0) | |
4685 | { | |
4686 | /* PART_DIE was probably the last thing allocated on the | |
4687 | comp_unit_obstack, so we could call obstack_free | |
4688 | here. We don't do that because the waste is small, | |
4689 | and will be cleaned up when we're done with this | |
4690 | compilation unit. This way, we're also more robust | |
4691 | against other users of the comp_unit_obstack. */ | |
4692 | return first_die; | |
4693 | } | |
4694 | info_ptr += bytes_read; | |
4695 | last_die = parent_die; | |
4696 | parent_die = parent_die->die_parent; | |
4697 | continue; | |
4698 | } | |
4699 | ||
4700 | /* Check whether this DIE is interesting enough to save. */ | |
4701 | if (!is_type_tag_for_partial (abbrev->tag) | |
4702 | && abbrev->tag != DW_TAG_enumerator | |
4703 | && abbrev->tag != DW_TAG_subprogram | |
4704 | && abbrev->tag != DW_TAG_variable | |
4705 | && abbrev->tag != DW_TAG_namespace) | |
4706 | { | |
4707 | /* Otherwise we skip to the next sibling, if any. */ | |
4708 | info_ptr = skip_one_die (info_ptr + bytes_read, abbrev, cu); | |
4709 | continue; | |
4710 | } | |
4711 | ||
4712 | info_ptr = read_partial_die (part_die, abbrev, bytes_read, | |
4713 | abfd, info_ptr, cu); | |
4714 | ||
4715 | /* This two-pass algorithm for processing partial symbols has a | |
4716 | high cost in cache pressure. Thus, handle some simple cases | |
4717 | here which cover the majority of C partial symbols. DIEs | |
4718 | which neither have specification tags in them, nor could have | |
4719 | specification tags elsewhere pointing at them, can simply be | |
4720 | processed and discarded. | |
4721 | ||
4722 | This segment is also optional; scan_partial_symbols and | |
4723 | add_partial_symbol will handle these DIEs if we chain | |
4724 | them in normally. When compilers which do not emit large | |
4725 | quantities of duplicate debug information are more common, | |
4726 | this code can probably be removed. */ | |
4727 | ||
4728 | /* Any complete simple types at the top level (pretty much all | |
4729 | of them, for a language without namespaces), can be processed | |
4730 | directly. */ | |
4731 | if (parent_die == NULL | |
4732 | && part_die->has_specification == 0 | |
4733 | && part_die->is_declaration == 0 | |
4734 | && (part_die->tag == DW_TAG_typedef | |
4735 | || part_die->tag == DW_TAG_base_type | |
4736 | || part_die->tag == DW_TAG_subrange_type)) | |
4737 | { | |
4738 | if (building_psymtab && part_die->name != NULL) | |
4739 | add_psymbol_to_list (part_die->name, strlen (part_die->name), | |
4740 | VAR_DOMAIN, LOC_TYPEDEF, | |
4741 | &cu->objfile->static_psymbols, | |
4742 | 0, (CORE_ADDR) 0, cu->language, cu->objfile); | |
4743 | info_ptr = locate_pdi_sibling (part_die, info_ptr, abfd, cu); | |
4744 | continue; | |
4745 | } | |
4746 | ||
4747 | /* If we're at the second level, and we're an enumerator, and | |
4748 | our parent has no specification (meaning possibly lives in a | |
4749 | namespace elsewhere), then we can add the partial symbol now | |
4750 | instead of queueing it. */ | |
4751 | if (part_die->tag == DW_TAG_enumerator | |
4752 | && parent_die != NULL | |
4753 | && parent_die->die_parent == NULL | |
4754 | && parent_die->tag == DW_TAG_enumeration_type | |
4755 | && parent_die->has_specification == 0) | |
4756 | { | |
4757 | if (part_die->name == NULL) | |
4758 | complaint (&symfile_complaints, "malformed enumerator DIE ignored"); | |
4759 | else if (building_psymtab) | |
4760 | add_psymbol_to_list (part_die->name, strlen (part_die->name), | |
4761 | VAR_DOMAIN, LOC_CONST, | |
4762 | cu->language == language_cplus | |
4763 | ? &cu->objfile->global_psymbols | |
4764 | : &cu->objfile->static_psymbols, | |
4765 | 0, (CORE_ADDR) 0, cu->language, cu->objfile); | |
4766 | ||
4767 | info_ptr = locate_pdi_sibling (part_die, info_ptr, abfd, cu); | |
4768 | continue; | |
4769 | } | |
4770 | ||
4771 | /* We'll save this DIE so link it in. */ | |
4772 | part_die->die_parent = parent_die; | |
4773 | part_die->die_sibling = NULL; | |
4774 | part_die->die_child = NULL; | |
4775 | ||
4776 | if (last_die && last_die == parent_die) | |
4777 | last_die->die_child = part_die; | |
4778 | else if (last_die) | |
4779 | last_die->die_sibling = part_die; | |
4780 | ||
4781 | last_die = part_die; | |
4782 | ||
4783 | if (first_die == NULL) | |
4784 | first_die = part_die; | |
4785 | ||
4786 | /* Maybe add the DIE to the hash table. Not all DIEs that we | |
4787 | find interesting need to be in the hash table, because we | |
4788 | also have the parent/sibling/child chains; only those that we | |
4789 | might refer to by offset later during partial symbol reading. | |
4790 | ||
4791 | For now this means things that might have be the target of a | |
4792 | DW_AT_specification, DW_AT_abstract_origin, or | |
4793 | DW_AT_extension. DW_AT_extension will refer only to | |
4794 | namespaces; DW_AT_abstract_origin refers to functions (and | |
4795 | many things under the function DIE, but we do not recurse | |
4796 | into function DIEs during partial symbol reading) and | |
4797 | possibly variables as well; DW_AT_specification refers to | |
4798 | declarations. Declarations ought to have the DW_AT_declaration | |
4799 | flag. It happens that GCC forgets to put it in sometimes, but | |
4800 | only for functions, not for types. | |
4801 | ||
4802 | Adding more things than necessary to the hash table is harmless | |
4803 | except for the performance cost. Adding too few will result in | |
4804 | internal errors in find_partial_die. */ | |
4805 | ||
4806 | if (abbrev->tag == DW_TAG_subprogram | |
4807 | || abbrev->tag == DW_TAG_variable | |
4808 | || abbrev->tag == DW_TAG_namespace | |
4809 | || part_die->is_declaration) | |
4810 | { | |
4811 | void **slot; | |
4812 | ||
4813 | slot = htab_find_slot_with_hash (cu->partial_dies, part_die, | |
4814 | part_die->offset, INSERT); | |
4815 | *slot = part_die; | |
4816 | } | |
4817 | ||
4818 | part_die = obstack_alloc (&cu->comp_unit_obstack, | |
4819 | sizeof (struct partial_die_info)); | |
4820 | ||
4821 | /* For some DIEs we want to follow their children (if any). For C | |
4822 | we have no reason to follow the children of structures; for other | |
4823 | languages we have to, both so that we can get at method physnames | |
4824 | to infer fully qualified class names, and for DW_AT_specification. */ | |
4825 | if (last_die->has_children | |
4826 | && (last_die->tag == DW_TAG_namespace | |
4827 | || last_die->tag == DW_TAG_enumeration_type | |
4828 | || (cu->language != language_c | |
4829 | && (last_die->tag == DW_TAG_class_type | |
4830 | || last_die->tag == DW_TAG_structure_type | |
4831 | || last_die->tag == DW_TAG_union_type)))) | |
4832 | { | |
4833 | nesting_level++; | |
4834 | parent_die = last_die; | |
4835 | continue; | |
4836 | } | |
4837 | ||
4838 | /* Otherwise we skip to the next sibling, if any. */ | |
4839 | info_ptr = locate_pdi_sibling (last_die, info_ptr, abfd, cu); | |
4840 | ||
4841 | /* Back to the top, do it again. */ | |
4842 | } | |
4843 | } | |
4844 | ||
c906108c SS |
4845 | /* Read a minimal amount of information into the minimal die structure. */ |
4846 | ||
4847 | static char * | |
72bf9492 DJ |
4848 | read_partial_die (struct partial_die_info *part_die, |
4849 | struct abbrev_info *abbrev, | |
4850 | unsigned int abbrev_len, bfd *abfd, | |
e7c27a73 | 4851 | char *info_ptr, struct dwarf2_cu *cu) |
c906108c | 4852 | { |
72bf9492 | 4853 | unsigned int bytes_read, i; |
c906108c | 4854 | struct attribute attr; |
c5aa993b | 4855 | int has_low_pc_attr = 0; |
c906108c SS |
4856 | int has_high_pc_attr = 0; |
4857 | ||
72bf9492 | 4858 | memset (part_die, 0, sizeof (struct partial_die_info)); |
c906108c | 4859 | |
6502dd73 | 4860 | part_die->offset = info_ptr - dwarf2_per_objfile->info_buffer; |
72bf9492 DJ |
4861 | |
4862 | info_ptr += abbrev_len; | |
4863 | ||
4864 | if (abbrev == NULL) | |
4865 | return info_ptr; | |
4866 | ||
c906108c SS |
4867 | part_die->tag = abbrev->tag; |
4868 | part_die->has_children = abbrev->has_children; | |
c906108c SS |
4869 | |
4870 | for (i = 0; i < abbrev->num_attrs; ++i) | |
4871 | { | |
e7c27a73 | 4872 | info_ptr = read_attribute (&attr, &abbrev->attrs[i], abfd, info_ptr, cu); |
c906108c SS |
4873 | |
4874 | /* Store the data if it is of an attribute we want to keep in a | |
c5aa993b | 4875 | partial symbol table. */ |
c906108c SS |
4876 | switch (attr.name) |
4877 | { | |
4878 | case DW_AT_name: | |
4879 | ||
4880 | /* Prefer DW_AT_MIPS_linkage_name over DW_AT_name. */ | |
4881 | if (part_die->name == NULL) | |
4882 | part_die->name = DW_STRING (&attr); | |
4883 | break; | |
57c22c6c BR |
4884 | case DW_AT_comp_dir: |
4885 | if (part_die->dirname == NULL) | |
4886 | part_die->dirname = DW_STRING (&attr); | |
4887 | break; | |
c906108c SS |
4888 | case DW_AT_MIPS_linkage_name: |
4889 | part_die->name = DW_STRING (&attr); | |
4890 | break; | |
4891 | case DW_AT_low_pc: | |
4892 | has_low_pc_attr = 1; | |
4893 | part_die->lowpc = DW_ADDR (&attr); | |
4894 | break; | |
4895 | case DW_AT_high_pc: | |
4896 | has_high_pc_attr = 1; | |
4897 | part_die->highpc = DW_ADDR (&attr); | |
4898 | break; | |
4899 | case DW_AT_location: | |
8e19ed76 PS |
4900 | /* Support the .debug_loc offsets */ |
4901 | if (attr_form_is_block (&attr)) | |
4902 | { | |
4903 | part_die->locdesc = DW_BLOCK (&attr); | |
4904 | } | |
4905 | else if (attr.form == DW_FORM_data4 || attr.form == DW_FORM_data8) | |
4906 | { | |
4d3c2250 | 4907 | dwarf2_complex_location_expr_complaint (); |
8e19ed76 PS |
4908 | } |
4909 | else | |
4910 | { | |
4d3c2250 KB |
4911 | dwarf2_invalid_attrib_class_complaint ("DW_AT_location", |
4912 | "partial symbol information"); | |
8e19ed76 | 4913 | } |
c906108c SS |
4914 | break; |
4915 | case DW_AT_language: | |
4916 | part_die->language = DW_UNSND (&attr); | |
4917 | break; | |
4918 | case DW_AT_external: | |
4919 | part_die->is_external = DW_UNSND (&attr); | |
4920 | break; | |
4921 | case DW_AT_declaration: | |
4922 | part_die->is_declaration = DW_UNSND (&attr); | |
4923 | break; | |
4924 | case DW_AT_type: | |
4925 | part_die->has_type = 1; | |
4926 | break; | |
4927 | case DW_AT_abstract_origin: | |
4928 | case DW_AT_specification: | |
72bf9492 DJ |
4929 | case DW_AT_extension: |
4930 | part_die->has_specification = 1; | |
4931 | part_die->spec_offset = dwarf2_get_ref_die_offset (&attr, cu); | |
c906108c SS |
4932 | break; |
4933 | case DW_AT_sibling: | |
4934 | /* Ignore absolute siblings, they might point outside of | |
4935 | the current compile unit. */ | |
4936 | if (attr.form == DW_FORM_ref_addr) | |
4d3c2250 | 4937 | complaint (&symfile_complaints, "ignoring absolute DW_AT_sibling"); |
c906108c | 4938 | else |
6502dd73 DJ |
4939 | part_die->sibling = dwarf2_per_objfile->info_buffer |
4940 | + dwarf2_get_ref_die_offset (&attr, cu); | |
c906108c | 4941 | break; |
aaa75496 JB |
4942 | case DW_AT_stmt_list: |
4943 | part_die->has_stmt_list = 1; | |
4944 | part_die->line_offset = DW_UNSND (&attr); | |
4945 | break; | |
c906108c SS |
4946 | default: |
4947 | break; | |
4948 | } | |
4949 | } | |
4950 | ||
c906108c SS |
4951 | /* When using the GNU linker, .gnu.linkonce. sections are used to |
4952 | eliminate duplicate copies of functions and vtables and such. | |
4953 | The linker will arbitrarily choose one and discard the others. | |
4954 | The AT_*_pc values for such functions refer to local labels in | |
4955 | these sections. If the section from that file was discarded, the | |
4956 | labels are not in the output, so the relocs get a value of 0. | |
4957 | If this is a discarded function, mark the pc bounds as invalid, | |
4958 | so that GDB will ignore it. */ | |
4959 | if (has_low_pc_attr && has_high_pc_attr | |
4960 | && part_die->lowpc < part_die->highpc | |
4961 | && (part_die->lowpc != 0 | |
4962 | || (bfd_get_file_flags (abfd) & HAS_RELOC))) | |
0b010bcc | 4963 | part_die->has_pc_info = 1; |
c906108c SS |
4964 | return info_ptr; |
4965 | } | |
4966 | ||
72bf9492 DJ |
4967 | /* Find a cached partial DIE at OFFSET in CU. */ |
4968 | ||
4969 | static struct partial_die_info * | |
4970 | find_partial_die_in_comp_unit (unsigned long offset, struct dwarf2_cu *cu) | |
4971 | { | |
4972 | struct partial_die_info *lookup_die = NULL; | |
4973 | struct partial_die_info part_die; | |
4974 | ||
4975 | part_die.offset = offset; | |
4976 | lookup_die = htab_find_with_hash (cu->partial_dies, &part_die, offset); | |
4977 | ||
4978 | if (lookup_die == NULL) | |
4979 | internal_error (__FILE__, __LINE__, | |
4980 | "could not find partial DIE in cache\n"); | |
4981 | ||
4982 | return lookup_die; | |
4983 | } | |
4984 | ||
4985 | /* Find a partial DIE at OFFSET, which may or may not be in CU. */ | |
4986 | ||
4987 | static struct partial_die_info * | |
4988 | find_partial_die (unsigned long offset, struct dwarf2_cu *cu, | |
4989 | struct dwarf2_cu **target_cu) | |
4990 | { | |
4991 | struct dwarf2_per_cu_data *per_cu; | |
4992 | ||
4993 | if (offset >= cu->header.offset | |
4994 | && offset < cu->header.offset + cu->header.length) | |
4995 | { | |
4996 | *target_cu = cu; | |
4997 | return find_partial_die_in_comp_unit (offset, cu); | |
4998 | } | |
4999 | ||
5000 | internal_error (__FILE__, __LINE__, | |
5001 | "unsupported inter-compilation-unit reference"); | |
5002 | } | |
5003 | ||
5004 | /* Adjust PART_DIE before generating a symbol for it. This function | |
5005 | may set the is_external flag or change the DIE's name. */ | |
5006 | ||
5007 | static void | |
5008 | fixup_partial_die (struct partial_die_info *part_die, | |
5009 | struct dwarf2_cu *cu) | |
5010 | { | |
5011 | /* If we found a reference attribute and the DIE has no name, try | |
5012 | to find a name in the referred to DIE. */ | |
5013 | ||
5014 | if (part_die->name == NULL && part_die->has_specification) | |
5015 | { | |
5016 | struct partial_die_info *spec_die; | |
5017 | struct dwarf2_cu *spec_cu; | |
5018 | ||
5019 | spec_die = find_partial_die (part_die->spec_offset, cu, &spec_cu); | |
5020 | ||
5021 | fixup_partial_die (spec_die, spec_cu); | |
5022 | ||
5023 | if (spec_die->name) | |
5024 | { | |
5025 | part_die->name = spec_die->name; | |
5026 | ||
5027 | /* Copy DW_AT_external attribute if it is set. */ | |
5028 | if (spec_die->is_external) | |
5029 | part_die->is_external = spec_die->is_external; | |
5030 | } | |
5031 | } | |
5032 | ||
5033 | /* Set default names for some unnamed DIEs. */ | |
5034 | if (part_die->name == NULL && (part_die->tag == DW_TAG_structure_type | |
5035 | || part_die->tag == DW_TAG_class_type)) | |
5036 | part_die->name = "(anonymous class)"; | |
5037 | ||
5038 | if (part_die->name == NULL && part_die->tag == DW_TAG_namespace) | |
5039 | part_die->name = "(anonymous namespace)"; | |
5040 | ||
5041 | if (part_die->tag == DW_TAG_structure_type | |
5042 | || part_die->tag == DW_TAG_class_type | |
5043 | || part_die->tag == DW_TAG_union_type) | |
5044 | guess_structure_name (part_die, cu); | |
5045 | } | |
5046 | ||
639d11d3 DC |
5047 | /* Read the die from the .debug_info section buffer. Set DIEP to |
5048 | point to a newly allocated die with its information, except for its | |
5049 | child, sibling, and parent fields. Set HAS_CHILDREN to tell | |
5050 | whether the die has children or not. */ | |
c906108c SS |
5051 | |
5052 | static char * | |
107d2387 | 5053 | read_full_die (struct die_info **diep, bfd *abfd, char *info_ptr, |
e7c27a73 | 5054 | struct dwarf2_cu *cu, int *has_children) |
c906108c SS |
5055 | { |
5056 | unsigned int abbrev_number, bytes_read, i, offset; | |
5057 | struct abbrev_info *abbrev; | |
5058 | struct die_info *die; | |
5059 | ||
6502dd73 | 5060 | offset = info_ptr - dwarf2_per_objfile->info_buffer; |
c906108c SS |
5061 | abbrev_number = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); |
5062 | info_ptr += bytes_read; | |
5063 | if (!abbrev_number) | |
5064 | { | |
5065 | die = dwarf_alloc_die (); | |
5066 | die->tag = 0; | |
5067 | die->abbrev = abbrev_number; | |
5068 | die->type = NULL; | |
5069 | *diep = die; | |
639d11d3 | 5070 | *has_children = 0; |
c906108c SS |
5071 | return info_ptr; |
5072 | } | |
5073 | ||
e7c27a73 | 5074 | abbrev = dwarf2_lookup_abbrev (abbrev_number, cu); |
c906108c SS |
5075 | if (!abbrev) |
5076 | { | |
639d11d3 | 5077 | error ("Dwarf Error: could not find abbrev number %d [in module %s]", |
72bf9492 | 5078 | abbrev_number, |
639d11d3 | 5079 | bfd_get_filename (abfd)); |
c906108c SS |
5080 | } |
5081 | die = dwarf_alloc_die (); | |
5082 | die->offset = offset; | |
5083 | die->tag = abbrev->tag; | |
c906108c SS |
5084 | die->abbrev = abbrev_number; |
5085 | die->type = NULL; | |
5086 | ||
5087 | die->num_attrs = abbrev->num_attrs; | |
5088 | die->attrs = (struct attribute *) | |
5089 | xmalloc (die->num_attrs * sizeof (struct attribute)); | |
5090 | ||
5091 | for (i = 0; i < abbrev->num_attrs; ++i) | |
5092 | { | |
5093 | info_ptr = read_attribute (&die->attrs[i], &abbrev->attrs[i], | |
e7c27a73 | 5094 | abfd, info_ptr, cu); |
c906108c SS |
5095 | } |
5096 | ||
5097 | *diep = die; | |
639d11d3 | 5098 | *has_children = abbrev->has_children; |
c906108c SS |
5099 | return info_ptr; |
5100 | } | |
5101 | ||
a8329558 | 5102 | /* Read an attribute value described by an attribute form. */ |
c906108c SS |
5103 | |
5104 | static char * | |
a8329558 | 5105 | read_attribute_value (struct attribute *attr, unsigned form, |
e7c27a73 DJ |
5106 | bfd *abfd, char *info_ptr, |
5107 | struct dwarf2_cu *cu) | |
c906108c | 5108 | { |
e7c27a73 | 5109 | struct comp_unit_head *cu_header = &cu->header; |
c906108c SS |
5110 | unsigned int bytes_read; |
5111 | struct dwarf_block *blk; | |
5112 | ||
a8329558 KW |
5113 | attr->form = form; |
5114 | switch (form) | |
c906108c SS |
5115 | { |
5116 | case DW_FORM_addr: | |
5117 | case DW_FORM_ref_addr: | |
e7c27a73 | 5118 | DW_ADDR (attr) = read_address (abfd, info_ptr, cu, &bytes_read); |
107d2387 | 5119 | info_ptr += bytes_read; |
c906108c SS |
5120 | break; |
5121 | case DW_FORM_block2: | |
7b5a2f43 | 5122 | blk = dwarf_alloc_block (cu); |
c906108c SS |
5123 | blk->size = read_2_bytes (abfd, info_ptr); |
5124 | info_ptr += 2; | |
5125 | blk->data = read_n_bytes (abfd, info_ptr, blk->size); | |
5126 | info_ptr += blk->size; | |
5127 | DW_BLOCK (attr) = blk; | |
5128 | break; | |
5129 | case DW_FORM_block4: | |
7b5a2f43 | 5130 | blk = dwarf_alloc_block (cu); |
c906108c SS |
5131 | blk->size = read_4_bytes (abfd, info_ptr); |
5132 | info_ptr += 4; | |
5133 | blk->data = read_n_bytes (abfd, info_ptr, blk->size); | |
5134 | info_ptr += blk->size; | |
5135 | DW_BLOCK (attr) = blk; | |
5136 | break; | |
5137 | case DW_FORM_data2: | |
5138 | DW_UNSND (attr) = read_2_bytes (abfd, info_ptr); | |
5139 | info_ptr += 2; | |
5140 | break; | |
5141 | case DW_FORM_data4: | |
5142 | DW_UNSND (attr) = read_4_bytes (abfd, info_ptr); | |
5143 | info_ptr += 4; | |
5144 | break; | |
5145 | case DW_FORM_data8: | |
5146 | DW_UNSND (attr) = read_8_bytes (abfd, info_ptr); | |
5147 | info_ptr += 8; | |
5148 | break; | |
5149 | case DW_FORM_string: | |
5150 | DW_STRING (attr) = read_string (abfd, info_ptr, &bytes_read); | |
5151 | info_ptr += bytes_read; | |
5152 | break; | |
4bdf3d34 JJ |
5153 | case DW_FORM_strp: |
5154 | DW_STRING (attr) = read_indirect_string (abfd, info_ptr, cu_header, | |
5155 | &bytes_read); | |
5156 | info_ptr += bytes_read; | |
5157 | break; | |
c906108c | 5158 | case DW_FORM_block: |
7b5a2f43 | 5159 | blk = dwarf_alloc_block (cu); |
c906108c SS |
5160 | blk->size = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); |
5161 | info_ptr += bytes_read; | |
5162 | blk->data = read_n_bytes (abfd, info_ptr, blk->size); | |
5163 | info_ptr += blk->size; | |
5164 | DW_BLOCK (attr) = blk; | |
5165 | break; | |
5166 | case DW_FORM_block1: | |
7b5a2f43 | 5167 | blk = dwarf_alloc_block (cu); |
c906108c SS |
5168 | blk->size = read_1_byte (abfd, info_ptr); |
5169 | info_ptr += 1; | |
5170 | blk->data = read_n_bytes (abfd, info_ptr, blk->size); | |
5171 | info_ptr += blk->size; | |
5172 | DW_BLOCK (attr) = blk; | |
5173 | break; | |
5174 | case DW_FORM_data1: | |
5175 | DW_UNSND (attr) = read_1_byte (abfd, info_ptr); | |
5176 | info_ptr += 1; | |
5177 | break; | |
5178 | case DW_FORM_flag: | |
5179 | DW_UNSND (attr) = read_1_byte (abfd, info_ptr); | |
5180 | info_ptr += 1; | |
5181 | break; | |
5182 | case DW_FORM_sdata: | |
5183 | DW_SND (attr) = read_signed_leb128 (abfd, info_ptr, &bytes_read); | |
5184 | info_ptr += bytes_read; | |
5185 | break; | |
5186 | case DW_FORM_udata: | |
5187 | DW_UNSND (attr) = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); | |
5188 | info_ptr += bytes_read; | |
5189 | break; | |
5190 | case DW_FORM_ref1: | |
5191 | DW_UNSND (attr) = read_1_byte (abfd, info_ptr); | |
5192 | info_ptr += 1; | |
5193 | break; | |
5194 | case DW_FORM_ref2: | |
5195 | DW_UNSND (attr) = read_2_bytes (abfd, info_ptr); | |
5196 | info_ptr += 2; | |
5197 | break; | |
5198 | case DW_FORM_ref4: | |
5199 | DW_UNSND (attr) = read_4_bytes (abfd, info_ptr); | |
5200 | info_ptr += 4; | |
5201 | break; | |
613e1657 KB |
5202 | case DW_FORM_ref8: |
5203 | DW_UNSND (attr) = read_8_bytes (abfd, info_ptr); | |
5204 | info_ptr += 8; | |
5205 | break; | |
c906108c SS |
5206 | case DW_FORM_ref_udata: |
5207 | DW_UNSND (attr) = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); | |
5208 | info_ptr += bytes_read; | |
5209 | break; | |
c906108c | 5210 | case DW_FORM_indirect: |
a8329558 KW |
5211 | form = read_unsigned_leb128 (abfd, info_ptr, &bytes_read); |
5212 | info_ptr += bytes_read; | |
e7c27a73 | 5213 | info_ptr = read_attribute_value (attr, form, abfd, info_ptr, cu); |
a8329558 | 5214 | break; |
c906108c | 5215 | default: |
659b0389 ML |
5216 | error ("Dwarf Error: Cannot handle %s in DWARF reader [in module %s]", |
5217 | dwarf_form_name (form), | |
5218 | bfd_get_filename (abfd)); | |
c906108c SS |
5219 | } |
5220 | return info_ptr; | |
5221 | } | |
5222 | ||
a8329558 KW |
5223 | /* Read an attribute described by an abbreviated attribute. */ |
5224 | ||
5225 | static char * | |
5226 | read_attribute (struct attribute *attr, struct attr_abbrev *abbrev, | |
e7c27a73 | 5227 | bfd *abfd, char *info_ptr, struct dwarf2_cu *cu) |
a8329558 KW |
5228 | { |
5229 | attr->name = abbrev->name; | |
e7c27a73 | 5230 | return read_attribute_value (attr, abbrev->form, abfd, info_ptr, cu); |
a8329558 KW |
5231 | } |
5232 | ||
c906108c SS |
5233 | /* read dwarf information from a buffer */ |
5234 | ||
5235 | static unsigned int | |
fba45db2 | 5236 | read_1_byte (bfd *abfd, char *buf) |
c906108c SS |
5237 | { |
5238 | return bfd_get_8 (abfd, (bfd_byte *) buf); | |
5239 | } | |
5240 | ||
5241 | static int | |
fba45db2 | 5242 | read_1_signed_byte (bfd *abfd, char *buf) |
c906108c SS |
5243 | { |
5244 | return bfd_get_signed_8 (abfd, (bfd_byte *) buf); | |
5245 | } | |
5246 | ||
5247 | static unsigned int | |
fba45db2 | 5248 | read_2_bytes (bfd *abfd, char *buf) |
c906108c SS |
5249 | { |
5250 | return bfd_get_16 (abfd, (bfd_byte *) buf); | |
5251 | } | |
5252 | ||
5253 | static int | |
fba45db2 | 5254 | read_2_signed_bytes (bfd *abfd, char *buf) |
c906108c SS |
5255 | { |
5256 | return bfd_get_signed_16 (abfd, (bfd_byte *) buf); | |
5257 | } | |
5258 | ||
5259 | static unsigned int | |
fba45db2 | 5260 | read_4_bytes (bfd *abfd, char *buf) |
c906108c SS |
5261 | { |
5262 | return bfd_get_32 (abfd, (bfd_byte *) buf); | |
5263 | } | |
5264 | ||
5265 | static int | |
fba45db2 | 5266 | read_4_signed_bytes (bfd *abfd, char *buf) |
c906108c SS |
5267 | { |
5268 | return bfd_get_signed_32 (abfd, (bfd_byte *) buf); | |
5269 | } | |
5270 | ||
ce5d95e1 | 5271 | static unsigned long |
fba45db2 | 5272 | read_8_bytes (bfd *abfd, char *buf) |
c906108c SS |
5273 | { |
5274 | return bfd_get_64 (abfd, (bfd_byte *) buf); | |
5275 | } | |
5276 | ||
5277 | static CORE_ADDR | |
e7c27a73 | 5278 | read_address (bfd *abfd, char *buf, struct dwarf2_cu *cu, int *bytes_read) |
c906108c | 5279 | { |
e7c27a73 | 5280 | struct comp_unit_head *cu_header = &cu->header; |
c906108c SS |
5281 | CORE_ADDR retval = 0; |
5282 | ||
107d2387 | 5283 | if (cu_header->signed_addr_p) |
c906108c | 5284 | { |
107d2387 AC |
5285 | switch (cu_header->addr_size) |
5286 | { | |
5287 | case 2: | |
5288 | retval = bfd_get_signed_16 (abfd, (bfd_byte *) buf); | |
5289 | break; | |
5290 | case 4: | |
5291 | retval = bfd_get_signed_32 (abfd, (bfd_byte *) buf); | |
5292 | break; | |
5293 | case 8: | |
5294 | retval = bfd_get_signed_64 (abfd, (bfd_byte *) buf); | |
5295 | break; | |
5296 | default: | |
8e65ff28 | 5297 | internal_error (__FILE__, __LINE__, |
659b0389 ML |
5298 | "read_address: bad switch, signed [in module %s]", |
5299 | bfd_get_filename (abfd)); | |
107d2387 AC |
5300 | } |
5301 | } | |
5302 | else | |
5303 | { | |
5304 | switch (cu_header->addr_size) | |
5305 | { | |
5306 | case 2: | |
5307 | retval = bfd_get_16 (abfd, (bfd_byte *) buf); | |
5308 | break; | |
5309 | case 4: | |
5310 | retval = bfd_get_32 (abfd, (bfd_byte *) buf); | |
5311 | break; | |
5312 | case 8: | |
5313 | retval = bfd_get_64 (abfd, (bfd_byte *) buf); | |
5314 | break; | |
5315 | default: | |
8e65ff28 | 5316 | internal_error (__FILE__, __LINE__, |
659b0389 ML |
5317 | "read_address: bad switch, unsigned [in module %s]", |
5318 | bfd_get_filename (abfd)); | |
107d2387 | 5319 | } |
c906108c | 5320 | } |
64367e0a | 5321 | |
107d2387 AC |
5322 | *bytes_read = cu_header->addr_size; |
5323 | return retval; | |
c906108c SS |
5324 | } |
5325 | ||
f7ef9339 | 5326 | /* Read the initial length from a section. The (draft) DWARF 3 |
613e1657 KB |
5327 | specification allows the initial length to take up either 4 bytes |
5328 | or 12 bytes. If the first 4 bytes are 0xffffffff, then the next 8 | |
5329 | bytes describe the length and all offsets will be 8 bytes in length | |
5330 | instead of 4. | |
5331 | ||
f7ef9339 KB |
5332 | An older, non-standard 64-bit format is also handled by this |
5333 | function. The older format in question stores the initial length | |
5334 | as an 8-byte quantity without an escape value. Lengths greater | |
5335 | than 2^32 aren't very common which means that the initial 4 bytes | |
5336 | is almost always zero. Since a length value of zero doesn't make | |
5337 | sense for the 32-bit format, this initial zero can be considered to | |
5338 | be an escape value which indicates the presence of the older 64-bit | |
5339 | format. As written, the code can't detect (old format) lengths | |
5340 | greater than 4GB. If it becomes necessary to handle lengths somewhat | |
5341 | larger than 4GB, we could allow other small values (such as the | |
5342 | non-sensical values of 1, 2, and 3) to also be used as escape values | |
5343 | indicating the presence of the old format. | |
5344 | ||
613e1657 KB |
5345 | The value returned via bytes_read should be used to increment |
5346 | the relevant pointer after calling read_initial_length(). | |
5347 | ||
5348 | As a side effect, this function sets the fields initial_length_size | |
5349 | and offset_size in cu_header to the values appropriate for the | |
5350 | length field. (The format of the initial length field determines | |
5351 | the width of file offsets to be fetched later with fetch_offset().) | |
5352 | ||
5353 | [ Note: read_initial_length() and read_offset() are based on the | |
5354 | document entitled "DWARF Debugging Information Format", revision | |
f7ef9339 | 5355 | 3, draft 8, dated November 19, 2001. This document was obtained |
613e1657 KB |
5356 | from: |
5357 | ||
f7ef9339 | 5358 | http://reality.sgiweb.org/davea/dwarf3-draft8-011125.pdf |
613e1657 KB |
5359 | |
5360 | This document is only a draft and is subject to change. (So beware.) | |
5361 | ||
f7ef9339 KB |
5362 | Details regarding the older, non-standard 64-bit format were |
5363 | determined empirically by examining 64-bit ELF files produced | |
5364 | by the SGI toolchain on an IRIX 6.5 machine. | |
5365 | ||
5366 | - Kevin, July 16, 2002 | |
613e1657 KB |
5367 | ] */ |
5368 | ||
5369 | static LONGEST | |
5370 | read_initial_length (bfd *abfd, char *buf, struct comp_unit_head *cu_header, | |
5371 | int *bytes_read) | |
5372 | { | |
5373 | LONGEST retval = 0; | |
5374 | ||
5375 | retval = bfd_get_32 (abfd, (bfd_byte *) buf); | |
5376 | ||
5377 | if (retval == 0xffffffff) | |
5378 | { | |
5379 | retval = bfd_get_64 (abfd, (bfd_byte *) buf + 4); | |
5380 | *bytes_read = 12; | |
5381 | if (cu_header != NULL) | |
5382 | { | |
5383 | cu_header->initial_length_size = 12; | |
5384 | cu_header->offset_size = 8; | |
5385 | } | |
5386 | } | |
f7ef9339 KB |
5387 | else if (retval == 0) |
5388 | { | |
5389 | /* Handle (non-standard) 64-bit DWARF2 formats such as that used | |
5390 | by IRIX. */ | |
5391 | retval = bfd_get_64 (abfd, (bfd_byte *) buf); | |
5392 | *bytes_read = 8; | |
5393 | if (cu_header != NULL) | |
5394 | { | |
5395 | cu_header->initial_length_size = 8; | |
5396 | cu_header->offset_size = 8; | |
5397 | } | |
5398 | } | |
613e1657 KB |
5399 | else |
5400 | { | |
5401 | *bytes_read = 4; | |
5402 | if (cu_header != NULL) | |
5403 | { | |
5404 | cu_header->initial_length_size = 4; | |
5405 | cu_header->offset_size = 4; | |
5406 | } | |
5407 | } | |
5408 | ||
5409 | return retval; | |
5410 | } | |
5411 | ||
5412 | /* Read an offset from the data stream. The size of the offset is | |
5413 | given by cu_header->offset_size. */ | |
5414 | ||
5415 | static LONGEST | |
5416 | read_offset (bfd *abfd, char *buf, const struct comp_unit_head *cu_header, | |
5417 | int *bytes_read) | |
5418 | { | |
5419 | LONGEST retval = 0; | |
5420 | ||
5421 | switch (cu_header->offset_size) | |
5422 | { | |
5423 | case 4: | |
5424 | retval = bfd_get_32 (abfd, (bfd_byte *) buf); | |
5425 | *bytes_read = 4; | |
5426 | break; | |
5427 | case 8: | |
5428 | retval = bfd_get_64 (abfd, (bfd_byte *) buf); | |
5429 | *bytes_read = 8; | |
5430 | break; | |
5431 | default: | |
8e65ff28 | 5432 | internal_error (__FILE__, __LINE__, |
659b0389 ML |
5433 | "read_offset: bad switch [in module %s]", |
5434 | bfd_get_filename (abfd)); | |
613e1657 KB |
5435 | } |
5436 | ||
5437 | return retval; | |
5438 | } | |
5439 | ||
c906108c | 5440 | static char * |
fba45db2 | 5441 | read_n_bytes (bfd *abfd, char *buf, unsigned int size) |
c906108c SS |
5442 | { |
5443 | /* If the size of a host char is 8 bits, we can return a pointer | |
5444 | to the buffer, otherwise we have to copy the data to a buffer | |
5445 | allocated on the temporary obstack. */ | |
4bdf3d34 | 5446 | gdb_assert (HOST_CHAR_BIT == 8); |
c906108c | 5447 | return buf; |
c906108c SS |
5448 | } |
5449 | ||
5450 | static char * | |
fba45db2 | 5451 | read_string (bfd *abfd, char *buf, unsigned int *bytes_read_ptr) |
c906108c SS |
5452 | { |
5453 | /* If the size of a host char is 8 bits, we can return a pointer | |
5454 | to the string, otherwise we have to copy the string to a buffer | |
5455 | allocated on the temporary obstack. */ | |
4bdf3d34 | 5456 | gdb_assert (HOST_CHAR_BIT == 8); |
c906108c SS |
5457 | if (*buf == '\0') |
5458 | { | |
5459 | *bytes_read_ptr = 1; | |
5460 | return NULL; | |
5461 | } | |
5462 | *bytes_read_ptr = strlen (buf) + 1; | |
5463 | return buf; | |
4bdf3d34 JJ |
5464 | } |
5465 | ||
5466 | static char * | |
5467 | read_indirect_string (bfd *abfd, char *buf, | |
5468 | const struct comp_unit_head *cu_header, | |
5469 | unsigned int *bytes_read_ptr) | |
5470 | { | |
5471 | LONGEST str_offset = read_offset (abfd, buf, cu_header, | |
5472 | (int *) bytes_read_ptr); | |
c906108c | 5473 | |
6502dd73 | 5474 | if (dwarf2_per_objfile->str_buffer == NULL) |
c906108c | 5475 | { |
659b0389 ML |
5476 | error ("DW_FORM_strp used without .debug_str section [in module %s]", |
5477 | bfd_get_filename (abfd)); | |
4bdf3d34 | 5478 | return NULL; |
c906108c | 5479 | } |
6502dd73 | 5480 | if (str_offset >= dwarf2_per_objfile->str_size) |
c906108c | 5481 | { |
659b0389 ML |
5482 | error ("DW_FORM_strp pointing outside of .debug_str section [in module %s]", |
5483 | bfd_get_filename (abfd)); | |
c906108c SS |
5484 | return NULL; |
5485 | } | |
4bdf3d34 | 5486 | gdb_assert (HOST_CHAR_BIT == 8); |
6502dd73 | 5487 | if (dwarf2_per_objfile->str_buffer[str_offset] == '\0') |
4bdf3d34 | 5488 | return NULL; |
6502dd73 | 5489 | return dwarf2_per_objfile->str_buffer + str_offset; |
c906108c SS |
5490 | } |
5491 | ||
ce5d95e1 | 5492 | static unsigned long |
fba45db2 | 5493 | read_unsigned_leb128 (bfd *abfd, char *buf, unsigned int *bytes_read_ptr) |
c906108c | 5494 | { |
ce5d95e1 JB |
5495 | unsigned long result; |
5496 | unsigned int num_read; | |
c906108c SS |
5497 | int i, shift; |
5498 | unsigned char byte; | |
5499 | ||
5500 | result = 0; | |
5501 | shift = 0; | |
5502 | num_read = 0; | |
5503 | i = 0; | |
5504 | while (1) | |
5505 | { | |
5506 | byte = bfd_get_8 (abfd, (bfd_byte *) buf); | |
5507 | buf++; | |
5508 | num_read++; | |
ce5d95e1 | 5509 | result |= ((unsigned long)(byte & 127) << shift); |
c906108c SS |
5510 | if ((byte & 128) == 0) |
5511 | { | |
5512 | break; | |
5513 | } | |
5514 | shift += 7; | |
5515 | } | |
5516 | *bytes_read_ptr = num_read; | |
5517 | return result; | |
5518 | } | |
5519 | ||
ce5d95e1 | 5520 | static long |
fba45db2 | 5521 | read_signed_leb128 (bfd *abfd, char *buf, unsigned int *bytes_read_ptr) |
c906108c | 5522 | { |
ce5d95e1 | 5523 | long result; |
c906108c SS |
5524 | int i, shift, size, num_read; |
5525 | unsigned char byte; | |
5526 | ||
5527 | result = 0; | |
5528 | shift = 0; | |
5529 | size = 32; | |
5530 | num_read = 0; | |
5531 | i = 0; | |
5532 | while (1) | |
5533 | { | |
5534 | byte = bfd_get_8 (abfd, (bfd_byte *) buf); | |
5535 | buf++; | |
5536 | num_read++; | |
ce5d95e1 | 5537 | result |= ((long)(byte & 127) << shift); |
c906108c SS |
5538 | shift += 7; |
5539 | if ((byte & 128) == 0) | |
5540 | { | |
5541 | break; | |
5542 | } | |
5543 | } | |
5544 | if ((shift < size) && (byte & 0x40)) | |
5545 | { | |
5546 | result |= -(1 << shift); | |
5547 | } | |
5548 | *bytes_read_ptr = num_read; | |
5549 | return result; | |
5550 | } | |
5551 | ||
4bb7a0a7 DJ |
5552 | /* Return a pointer to just past the end of an LEB128 number in BUF. */ |
5553 | ||
5554 | static char * | |
5555 | skip_leb128 (bfd *abfd, char *buf) | |
5556 | { | |
5557 | int byte; | |
5558 | ||
5559 | while (1) | |
5560 | { | |
5561 | byte = bfd_get_8 (abfd, (bfd_byte *) buf); | |
5562 | buf++; | |
5563 | if ((byte & 128) == 0) | |
5564 | return buf; | |
5565 | } | |
5566 | } | |
5567 | ||
c906108c | 5568 | static void |
e142c38c | 5569 | set_cu_language (unsigned int lang, struct dwarf2_cu *cu) |
c906108c SS |
5570 | { |
5571 | switch (lang) | |
5572 | { | |
5573 | case DW_LANG_C89: | |
5574 | case DW_LANG_C: | |
e142c38c | 5575 | cu->language = language_c; |
c906108c SS |
5576 | break; |
5577 | case DW_LANG_C_plus_plus: | |
e142c38c | 5578 | cu->language = language_cplus; |
c906108c SS |
5579 | break; |
5580 | case DW_LANG_Fortran77: | |
5581 | case DW_LANG_Fortran90: | |
b21b22e0 | 5582 | case DW_LANG_Fortran95: |
e142c38c | 5583 | cu->language = language_fortran; |
c906108c SS |
5584 | break; |
5585 | case DW_LANG_Mips_Assembler: | |
e142c38c | 5586 | cu->language = language_asm; |
c906108c | 5587 | break; |
bebd888e | 5588 | case DW_LANG_Java: |
e142c38c | 5589 | cu->language = language_java; |
bebd888e | 5590 | break; |
c906108c | 5591 | case DW_LANG_Ada83: |
8aaf0b47 | 5592 | case DW_LANG_Ada95: |
c906108c SS |
5593 | case DW_LANG_Cobol74: |
5594 | case DW_LANG_Cobol85: | |
5595 | case DW_LANG_Pascal83: | |
5596 | case DW_LANG_Modula2: | |
5597 | default: | |
e142c38c | 5598 | cu->language = language_minimal; |
c906108c SS |
5599 | break; |
5600 | } | |
e142c38c | 5601 | cu->language_defn = language_def (cu->language); |
c906108c SS |
5602 | } |
5603 | ||
5604 | /* Return the named attribute or NULL if not there. */ | |
5605 | ||
5606 | static struct attribute * | |
e142c38c | 5607 | dwarf2_attr (struct die_info *die, unsigned int name, struct dwarf2_cu *cu) |
c906108c SS |
5608 | { |
5609 | unsigned int i; | |
5610 | struct attribute *spec = NULL; | |
5611 | ||
5612 | for (i = 0; i < die->num_attrs; ++i) | |
5613 | { | |
5614 | if (die->attrs[i].name == name) | |
5615 | { | |
5616 | return &die->attrs[i]; | |
5617 | } | |
5618 | if (die->attrs[i].name == DW_AT_specification | |
5619 | || die->attrs[i].name == DW_AT_abstract_origin) | |
5620 | spec = &die->attrs[i]; | |
5621 | } | |
5622 | if (spec) | |
5623 | { | |
5624 | struct die_info *ref_die = | |
e142c38c | 5625 | follow_die_ref (dwarf2_get_ref_die_offset (spec, cu)); |
c906108c SS |
5626 | |
5627 | if (ref_die) | |
e142c38c | 5628 | return dwarf2_attr (ref_die, name, cu); |
c906108c | 5629 | } |
c5aa993b | 5630 | |
c906108c SS |
5631 | return NULL; |
5632 | } | |
5633 | ||
05cf31d1 JB |
5634 | /* Return non-zero iff the attribute NAME is defined for the given DIE, |
5635 | and holds a non-zero value. This function should only be used for | |
5636 | DW_FORM_flag attributes. */ | |
5637 | ||
5638 | static int | |
5639 | dwarf2_flag_true_p (struct die_info *die, unsigned name, struct dwarf2_cu *cu) | |
5640 | { | |
5641 | struct attribute *attr = dwarf2_attr (die, name, cu); | |
5642 | ||
5643 | return (attr && DW_UNSND (attr)); | |
5644 | } | |
5645 | ||
3ca72b44 | 5646 | static int |
e142c38c | 5647 | die_is_declaration (struct die_info *die, struct dwarf2_cu *cu) |
3ca72b44 | 5648 | { |
05cf31d1 JB |
5649 | /* A DIE is a declaration if it has a DW_AT_declaration attribute |
5650 | which value is non-zero. However, we have to be careful with | |
5651 | DIEs having a DW_AT_specification attribute, because dwarf2_attr() | |
5652 | (via dwarf2_flag_true_p) follows this attribute. So we may | |
5653 | end up accidently finding a declaration attribute that belongs | |
5654 | to a different DIE referenced by the specification attribute, | |
5655 | even though the given DIE does not have a declaration attribute. */ | |
5656 | return (dwarf2_flag_true_p (die, DW_AT_declaration, cu) | |
5657 | && dwarf2_attr (die, DW_AT_specification, cu) == NULL); | |
3ca72b44 AC |
5658 | } |
5659 | ||
63d06c5c DC |
5660 | /* Return the die giving the specification for DIE, if there is |
5661 | one. */ | |
5662 | ||
5663 | static struct die_info * | |
e142c38c | 5664 | die_specification (struct die_info *die, struct dwarf2_cu *cu) |
63d06c5c | 5665 | { |
e142c38c | 5666 | struct attribute *spec_attr = dwarf2_attr (die, DW_AT_specification, cu); |
63d06c5c DC |
5667 | |
5668 | if (spec_attr == NULL) | |
5669 | return NULL; | |
5670 | else | |
e142c38c | 5671 | return follow_die_ref (dwarf2_get_ref_die_offset (spec_attr, cu)); |
63d06c5c | 5672 | } |
c906108c | 5673 | |
debd256d JB |
5674 | /* Free the line_header structure *LH, and any arrays and strings it |
5675 | refers to. */ | |
5676 | static void | |
5677 | free_line_header (struct line_header *lh) | |
5678 | { | |
5679 | if (lh->standard_opcode_lengths) | |
a8bc7b56 | 5680 | xfree (lh->standard_opcode_lengths); |
debd256d JB |
5681 | |
5682 | /* Remember that all the lh->file_names[i].name pointers are | |
5683 | pointers into debug_line_buffer, and don't need to be freed. */ | |
5684 | if (lh->file_names) | |
a8bc7b56 | 5685 | xfree (lh->file_names); |
debd256d JB |
5686 | |
5687 | /* Similarly for the include directory names. */ | |
5688 | if (lh->include_dirs) | |
a8bc7b56 | 5689 | xfree (lh->include_dirs); |
debd256d | 5690 | |
a8bc7b56 | 5691 | xfree (lh); |
debd256d JB |
5692 | } |
5693 | ||
5694 | ||
5695 | /* Add an entry to LH's include directory table. */ | |
5696 | static void | |
5697 | add_include_dir (struct line_header *lh, char *include_dir) | |
c906108c | 5698 | { |
debd256d JB |
5699 | /* Grow the array if necessary. */ |
5700 | if (lh->include_dirs_size == 0) | |
c5aa993b | 5701 | { |
debd256d JB |
5702 | lh->include_dirs_size = 1; /* for testing */ |
5703 | lh->include_dirs = xmalloc (lh->include_dirs_size | |
5704 | * sizeof (*lh->include_dirs)); | |
5705 | } | |
5706 | else if (lh->num_include_dirs >= lh->include_dirs_size) | |
5707 | { | |
5708 | lh->include_dirs_size *= 2; | |
5709 | lh->include_dirs = xrealloc (lh->include_dirs, | |
5710 | (lh->include_dirs_size | |
5711 | * sizeof (*lh->include_dirs))); | |
c5aa993b | 5712 | } |
c906108c | 5713 | |
debd256d JB |
5714 | lh->include_dirs[lh->num_include_dirs++] = include_dir; |
5715 | } | |
5716 | ||
5717 | ||
5718 | /* Add an entry to LH's file name table. */ | |
5719 | static void | |
5720 | add_file_name (struct line_header *lh, | |
5721 | char *name, | |
5722 | unsigned int dir_index, | |
5723 | unsigned int mod_time, | |
5724 | unsigned int length) | |
5725 | { | |
5726 | struct file_entry *fe; | |
5727 | ||
5728 | /* Grow the array if necessary. */ | |
5729 | if (lh->file_names_size == 0) | |
5730 | { | |
5731 | lh->file_names_size = 1; /* for testing */ | |
5732 | lh->file_names = xmalloc (lh->file_names_size | |
5733 | * sizeof (*lh->file_names)); | |
5734 | } | |
5735 | else if (lh->num_file_names >= lh->file_names_size) | |
5736 | { | |
5737 | lh->file_names_size *= 2; | |
5738 | lh->file_names = xrealloc (lh->file_names, | |
5739 | (lh->file_names_size | |
5740 | * sizeof (*lh->file_names))); | |
5741 | } | |
5742 | ||
5743 | fe = &lh->file_names[lh->num_file_names++]; | |
5744 | fe->name = name; | |
5745 | fe->dir_index = dir_index; | |
5746 | fe->mod_time = mod_time; | |
5747 | fe->length = length; | |
aaa75496 | 5748 | fe->included_p = 0; |
debd256d JB |
5749 | } |
5750 | ||
5751 | ||
5752 | /* Read the statement program header starting at OFFSET in | |
6502dd73 DJ |
5753 | .debug_line, according to the endianness of ABFD. Return a pointer |
5754 | to a struct line_header, allocated using xmalloc. | |
debd256d JB |
5755 | |
5756 | NOTE: the strings in the include directory and file name tables of | |
5757 | the returned object point into debug_line_buffer, and must not be | |
5758 | freed. */ | |
5759 | static struct line_header * | |
5760 | dwarf_decode_line_header (unsigned int offset, bfd *abfd, | |
e7c27a73 | 5761 | struct dwarf2_cu *cu) |
debd256d JB |
5762 | { |
5763 | struct cleanup *back_to; | |
5764 | struct line_header *lh; | |
5765 | char *line_ptr; | |
5766 | int bytes_read; | |
5767 | int i; | |
5768 | char *cur_dir, *cur_file; | |
5769 | ||
6502dd73 | 5770 | if (dwarf2_per_objfile->line_buffer == NULL) |
debd256d | 5771 | { |
4d3c2250 | 5772 | complaint (&symfile_complaints, "missing .debug_line section"); |
debd256d JB |
5773 | return 0; |
5774 | } | |
5775 | ||
5776 | /* Make sure that at least there's room for the total_length field. That | |
5777 | could be 12 bytes long, but we're just going to fudge that. */ | |
6502dd73 | 5778 | if (offset + 4 >= dwarf2_per_objfile->line_size) |
debd256d | 5779 | { |
4d3c2250 | 5780 | dwarf2_statement_list_fits_in_line_number_section_complaint (); |
debd256d JB |
5781 | return 0; |
5782 | } | |
5783 | ||
5784 | lh = xmalloc (sizeof (*lh)); | |
5785 | memset (lh, 0, sizeof (*lh)); | |
5786 | back_to = make_cleanup ((make_cleanup_ftype *) free_line_header, | |
5787 | (void *) lh); | |
5788 | ||
6502dd73 | 5789 | line_ptr = dwarf2_per_objfile->line_buffer + offset; |
debd256d JB |
5790 | |
5791 | /* read in the header */ | |
5792 | lh->total_length = read_initial_length (abfd, line_ptr, NULL, &bytes_read); | |
5793 | line_ptr += bytes_read; | |
6502dd73 DJ |
5794 | if (line_ptr + lh->total_length > (dwarf2_per_objfile->line_buffer |
5795 | + dwarf2_per_objfile->line_size)) | |
debd256d | 5796 | { |
4d3c2250 | 5797 | dwarf2_statement_list_fits_in_line_number_section_complaint (); |
debd256d JB |
5798 | return 0; |
5799 | } | |
5800 | lh->statement_program_end = line_ptr + lh->total_length; | |
5801 | lh->version = read_2_bytes (abfd, line_ptr); | |
5802 | line_ptr += 2; | |
e7c27a73 | 5803 | lh->header_length = read_offset (abfd, line_ptr, &cu->header, &bytes_read); |
debd256d JB |
5804 | line_ptr += bytes_read; |
5805 | lh->minimum_instruction_length = read_1_byte (abfd, line_ptr); | |
5806 | line_ptr += 1; | |
5807 | lh->default_is_stmt = read_1_byte (abfd, line_ptr); | |
5808 | line_ptr += 1; | |
5809 | lh->line_base = read_1_signed_byte (abfd, line_ptr); | |
5810 | line_ptr += 1; | |
5811 | lh->line_range = read_1_byte (abfd, line_ptr); | |
5812 | line_ptr += 1; | |
5813 | lh->opcode_base = read_1_byte (abfd, line_ptr); | |
5814 | line_ptr += 1; | |
5815 | lh->standard_opcode_lengths | |
5816 | = (unsigned char *) xmalloc (lh->opcode_base * sizeof (unsigned char)); | |
5817 | ||
5818 | lh->standard_opcode_lengths[0] = 1; /* This should never be used anyway. */ | |
5819 | for (i = 1; i < lh->opcode_base; ++i) | |
5820 | { | |
5821 | lh->standard_opcode_lengths[i] = read_1_byte (abfd, line_ptr); | |
5822 | line_ptr += 1; | |
5823 | } | |
5824 | ||
5825 | /* Read directory table */ | |
5826 | while ((cur_dir = read_string (abfd, line_ptr, &bytes_read)) != NULL) | |
5827 | { | |
5828 | line_ptr += bytes_read; | |
5829 | add_include_dir (lh, cur_dir); | |
5830 | } | |
5831 | line_ptr += bytes_read; | |
5832 | ||
5833 | /* Read file name table */ | |
5834 | while ((cur_file = read_string (abfd, line_ptr, &bytes_read)) != NULL) | |
5835 | { | |
5836 | unsigned int dir_index, mod_time, length; | |
5837 | ||
5838 | line_ptr += bytes_read; | |
5839 | dir_index = read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
5840 | line_ptr += bytes_read; | |
5841 | mod_time = read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
5842 | line_ptr += bytes_read; | |
5843 | length = read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
5844 | line_ptr += bytes_read; | |
5845 | ||
5846 | add_file_name (lh, cur_file, dir_index, mod_time, length); | |
5847 | } | |
5848 | line_ptr += bytes_read; | |
5849 | lh->statement_program_start = line_ptr; | |
5850 | ||
6502dd73 DJ |
5851 | if (line_ptr > (dwarf2_per_objfile->line_buffer |
5852 | + dwarf2_per_objfile->line_size)) | |
4d3c2250 KB |
5853 | complaint (&symfile_complaints, |
5854 | "line number info header doesn't fit in `.debug_line' section"); | |
debd256d JB |
5855 | |
5856 | discard_cleanups (back_to); | |
5857 | return lh; | |
5858 | } | |
c906108c | 5859 | |
5fb290d7 DJ |
5860 | /* This function exists to work around a bug in certain compilers |
5861 | (particularly GCC 2.95), in which the first line number marker of a | |
5862 | function does not show up until after the prologue, right before | |
5863 | the second line number marker. This function shifts ADDRESS down | |
5864 | to the beginning of the function if necessary, and is called on | |
5865 | addresses passed to record_line. */ | |
5866 | ||
5867 | static CORE_ADDR | |
e142c38c | 5868 | check_cu_functions (CORE_ADDR address, struct dwarf2_cu *cu) |
5fb290d7 DJ |
5869 | { |
5870 | struct function_range *fn; | |
5871 | ||
5872 | /* Find the function_range containing address. */ | |
e142c38c | 5873 | if (!cu->first_fn) |
5fb290d7 DJ |
5874 | return address; |
5875 | ||
e142c38c DJ |
5876 | if (!cu->cached_fn) |
5877 | cu->cached_fn = cu->first_fn; | |
5fb290d7 | 5878 | |
e142c38c | 5879 | fn = cu->cached_fn; |
5fb290d7 DJ |
5880 | while (fn) |
5881 | if (fn->lowpc <= address && fn->highpc > address) | |
5882 | goto found; | |
5883 | else | |
5884 | fn = fn->next; | |
5885 | ||
e142c38c DJ |
5886 | fn = cu->first_fn; |
5887 | while (fn && fn != cu->cached_fn) | |
5fb290d7 DJ |
5888 | if (fn->lowpc <= address && fn->highpc > address) |
5889 | goto found; | |
5890 | else | |
5891 | fn = fn->next; | |
5892 | ||
5893 | return address; | |
5894 | ||
5895 | found: | |
5896 | if (fn->seen_line) | |
5897 | return address; | |
5898 | if (address != fn->lowpc) | |
4d3c2250 KB |
5899 | complaint (&symfile_complaints, |
5900 | "misplaced first line number at 0x%lx for '%s'", | |
5901 | (unsigned long) address, fn->name); | |
5fb290d7 DJ |
5902 | fn->seen_line = 1; |
5903 | return fn->lowpc; | |
5904 | } | |
5905 | ||
aaa75496 JB |
5906 | /* Decode the Line Number Program (LNP) for the given line_header |
5907 | structure and CU. The actual information extracted and the type | |
5908 | of structures created from the LNP depends on the value of PST. | |
5909 | ||
5910 | 1. If PST is NULL, then this procedure uses the data from the program | |
5911 | to create all necessary symbol tables, and their linetables. | |
5912 | The compilation directory of the file is passed in COMP_DIR, | |
5913 | and must not be NULL. | |
5914 | ||
5915 | 2. If PST is not NULL, this procedure reads the program to determine | |
5916 | the list of files included by the unit represented by PST, and | |
5917 | builds all the associated partial symbol tables. In this case, | |
5918 | the value of COMP_DIR is ignored, and can thus be NULL (the COMP_DIR | |
5919 | is not used to compute the full name of the symtab, and therefore | |
5920 | omitting it when building the partial symtab does not introduce | |
5921 | the potential for inconsistency - a partial symtab and its associated | |
5922 | symbtab having a different fullname -). */ | |
debd256d | 5923 | |
c906108c | 5924 | static void |
debd256d | 5925 | dwarf_decode_lines (struct line_header *lh, char *comp_dir, bfd *abfd, |
aaa75496 | 5926 | struct dwarf2_cu *cu, struct partial_symtab *pst) |
c906108c SS |
5927 | { |
5928 | char *line_ptr; | |
5929 | char *line_end; | |
e7c27a73 | 5930 | unsigned int bytes_read; |
c906108c | 5931 | unsigned char op_code, extended_op, adj_opcode; |
e142c38c DJ |
5932 | CORE_ADDR baseaddr; |
5933 | struct objfile *objfile = cu->objfile; | |
aaa75496 | 5934 | const int decode_for_pst_p = (pst != NULL); |
e142c38c DJ |
5935 | |
5936 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); | |
c906108c | 5937 | |
debd256d JB |
5938 | line_ptr = lh->statement_program_start; |
5939 | line_end = lh->statement_program_end; | |
c906108c SS |
5940 | |
5941 | /* Read the statement sequences until there's nothing left. */ | |
5942 | while (line_ptr < line_end) | |
5943 | { | |
5944 | /* state machine registers */ | |
5945 | CORE_ADDR address = 0; | |
5946 | unsigned int file = 1; | |
5947 | unsigned int line = 1; | |
5948 | unsigned int column = 0; | |
debd256d | 5949 | int is_stmt = lh->default_is_stmt; |
c906108c SS |
5950 | int basic_block = 0; |
5951 | int end_sequence = 0; | |
5952 | ||
aaa75496 | 5953 | if (!decode_for_pst_p && lh->num_file_names >= file) |
c906108c | 5954 | { |
aaa75496 | 5955 | /* Start a subfile for the current file of the state machine. */ |
debd256d JB |
5956 | /* lh->include_dirs and lh->file_names are 0-based, but the |
5957 | directory and file name numbers in the statement program | |
5958 | are 1-based. */ | |
5959 | struct file_entry *fe = &lh->file_names[file - 1]; | |
5960 | char *dir; | |
5961 | if (fe->dir_index) | |
5962 | dir = lh->include_dirs[fe->dir_index - 1]; | |
5963 | else | |
5964 | dir = comp_dir; | |
5965 | dwarf2_start_subfile (fe->name, dir); | |
c906108c SS |
5966 | } |
5967 | ||
5968 | /* Decode the table. */ | |
c5aa993b | 5969 | while (!end_sequence) |
c906108c SS |
5970 | { |
5971 | op_code = read_1_byte (abfd, line_ptr); | |
5972 | line_ptr += 1; | |
9aa1fe7e | 5973 | |
debd256d | 5974 | if (op_code >= lh->opcode_base) |
9aa1fe7e | 5975 | { /* Special operand. */ |
debd256d JB |
5976 | adj_opcode = op_code - lh->opcode_base; |
5977 | address += (adj_opcode / lh->line_range) | |
5978 | * lh->minimum_instruction_length; | |
5979 | line += lh->line_base + (adj_opcode % lh->line_range); | |
aa495d11 | 5980 | lh->file_names[file - 1].included_p = 1; |
aaa75496 JB |
5981 | if (!decode_for_pst_p) |
5982 | { | |
5983 | /* append row to matrix using current values */ | |
5984 | record_line (current_subfile, line, | |
5985 | check_cu_functions (address, cu)); | |
5986 | } | |
9aa1fe7e GK |
5987 | basic_block = 1; |
5988 | } | |
5989 | else switch (op_code) | |
c906108c SS |
5990 | { |
5991 | case DW_LNS_extended_op: | |
473b7be6 DJ |
5992 | read_unsigned_leb128 (abfd, line_ptr, &bytes_read); |
5993 | line_ptr += bytes_read; | |
c906108c SS |
5994 | extended_op = read_1_byte (abfd, line_ptr); |
5995 | line_ptr += 1; | |
5996 | switch (extended_op) | |
5997 | { | |
5998 | case DW_LNE_end_sequence: | |
5999 | end_sequence = 1; | |
aa495d11 | 6000 | lh->file_names[file - 1].included_p = 1; |
aaa75496 JB |
6001 | if (!decode_for_pst_p) |
6002 | record_line (current_subfile, 0, address); | |
c906108c SS |
6003 | break; |
6004 | case DW_LNE_set_address: | |
e7c27a73 | 6005 | address = read_address (abfd, line_ptr, cu, &bytes_read); |
107d2387 AC |
6006 | line_ptr += bytes_read; |
6007 | address += baseaddr; | |
c906108c SS |
6008 | break; |
6009 | case DW_LNE_define_file: | |
debd256d JB |
6010 | { |
6011 | char *cur_file; | |
6012 | unsigned int dir_index, mod_time, length; | |
6013 | ||
6014 | cur_file = read_string (abfd, line_ptr, &bytes_read); | |
6015 | line_ptr += bytes_read; | |
6016 | dir_index = | |
6017 | read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6018 | line_ptr += bytes_read; | |
6019 | mod_time = | |
6020 | read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6021 | line_ptr += bytes_read; | |
6022 | length = | |
6023 | read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6024 | line_ptr += bytes_read; | |
6025 | add_file_name (lh, cur_file, dir_index, mod_time, length); | |
6026 | } | |
c906108c SS |
6027 | break; |
6028 | default: | |
4d3c2250 KB |
6029 | complaint (&symfile_complaints, |
6030 | "mangled .debug_line section"); | |
debd256d | 6031 | return; |
c906108c SS |
6032 | } |
6033 | break; | |
6034 | case DW_LNS_copy: | |
aa495d11 | 6035 | lh->file_names[file - 1].included_p = 1; |
aaa75496 JB |
6036 | if (!decode_for_pst_p) |
6037 | record_line (current_subfile, line, | |
6038 | check_cu_functions (address, cu)); | |
c906108c SS |
6039 | basic_block = 0; |
6040 | break; | |
6041 | case DW_LNS_advance_pc: | |
debd256d | 6042 | address += lh->minimum_instruction_length |
c906108c SS |
6043 | * read_unsigned_leb128 (abfd, line_ptr, &bytes_read); |
6044 | line_ptr += bytes_read; | |
6045 | break; | |
6046 | case DW_LNS_advance_line: | |
6047 | line += read_signed_leb128 (abfd, line_ptr, &bytes_read); | |
6048 | line_ptr += bytes_read; | |
6049 | break; | |
6050 | case DW_LNS_set_file: | |
debd256d JB |
6051 | { |
6052 | /* lh->include_dirs and lh->file_names are 0-based, | |
6053 | but the directory and file name numbers in the | |
6054 | statement program are 1-based. */ | |
6055 | struct file_entry *fe; | |
6056 | char *dir; | |
6057 | file = read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6058 | line_ptr += bytes_read; | |
6059 | fe = &lh->file_names[file - 1]; | |
6060 | if (fe->dir_index) | |
6061 | dir = lh->include_dirs[fe->dir_index - 1]; | |
6062 | else | |
6063 | dir = comp_dir; | |
aaa75496 JB |
6064 | if (!decode_for_pst_p) |
6065 | dwarf2_start_subfile (fe->name, dir); | |
debd256d | 6066 | } |
c906108c SS |
6067 | break; |
6068 | case DW_LNS_set_column: | |
6069 | column = read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6070 | line_ptr += bytes_read; | |
6071 | break; | |
6072 | case DW_LNS_negate_stmt: | |
6073 | is_stmt = (!is_stmt); | |
6074 | break; | |
6075 | case DW_LNS_set_basic_block: | |
6076 | basic_block = 1; | |
6077 | break; | |
c2c6d25f JM |
6078 | /* Add to the address register of the state machine the |
6079 | address increment value corresponding to special opcode | |
6080 | 255. Ie, this value is scaled by the minimum instruction | |
6081 | length since special opcode 255 would have scaled the | |
6082 | the increment. */ | |
c906108c | 6083 | case DW_LNS_const_add_pc: |
debd256d JB |
6084 | address += (lh->minimum_instruction_length |
6085 | * ((255 - lh->opcode_base) / lh->line_range)); | |
c906108c SS |
6086 | break; |
6087 | case DW_LNS_fixed_advance_pc: | |
6088 | address += read_2_bytes (abfd, line_ptr); | |
6089 | line_ptr += 2; | |
6090 | break; | |
9aa1fe7e GK |
6091 | default: |
6092 | { /* Unknown standard opcode, ignore it. */ | |
6093 | int i; | |
debd256d | 6094 | for (i = 0; i < lh->standard_opcode_lengths[op_code]; i++) |
9aa1fe7e GK |
6095 | { |
6096 | (void) read_unsigned_leb128 (abfd, line_ptr, &bytes_read); | |
6097 | line_ptr += bytes_read; | |
6098 | } | |
6099 | } | |
c906108c SS |
6100 | } |
6101 | } | |
6102 | } | |
aaa75496 JB |
6103 | |
6104 | if (decode_for_pst_p) | |
6105 | { | |
6106 | int file_index; | |
6107 | ||
6108 | /* Now that we're done scanning the Line Header Program, we can | |
6109 | create the psymtab of each included file. */ | |
6110 | for (file_index = 0; file_index < lh->num_file_names; file_index++) | |
6111 | if (lh->file_names[file_index].included_p == 1) | |
6112 | { | |
6113 | char *include_name = lh->file_names [file_index].name; | |
6114 | ||
6115 | if (strcmp (include_name, pst->filename) != 0) | |
6116 | dwarf2_create_include_psymtab (include_name, pst, objfile); | |
6117 | } | |
6118 | } | |
c906108c SS |
6119 | } |
6120 | ||
6121 | /* Start a subfile for DWARF. FILENAME is the name of the file and | |
6122 | DIRNAME the name of the source directory which contains FILENAME | |
6123 | or NULL if not known. | |
6124 | This routine tries to keep line numbers from identical absolute and | |
6125 | relative file names in a common subfile. | |
6126 | ||
6127 | Using the `list' example from the GDB testsuite, which resides in | |
6128 | /srcdir and compiling it with Irix6.2 cc in /compdir using a filename | |
6129 | of /srcdir/list0.c yields the following debugging information for list0.c: | |
6130 | ||
c5aa993b JM |
6131 | DW_AT_name: /srcdir/list0.c |
6132 | DW_AT_comp_dir: /compdir | |
357e46e7 | 6133 | files.files[0].name: list0.h |
c5aa993b | 6134 | files.files[0].dir: /srcdir |
357e46e7 | 6135 | files.files[1].name: list0.c |
c5aa993b | 6136 | files.files[1].dir: /srcdir |
c906108c SS |
6137 | |
6138 | The line number information for list0.c has to end up in a single | |
6139 | subfile, so that `break /srcdir/list0.c:1' works as expected. */ | |
6140 | ||
6141 | static void | |
fba45db2 | 6142 | dwarf2_start_subfile (char *filename, char *dirname) |
c906108c SS |
6143 | { |
6144 | /* If the filename isn't absolute, try to match an existing subfile | |
6145 | with the full pathname. */ | |
6146 | ||
d5166ae1 | 6147 | if (!IS_ABSOLUTE_PATH (filename) && dirname != NULL) |
c906108c SS |
6148 | { |
6149 | struct subfile *subfile; | |
6150 | char *fullname = concat (dirname, "/", filename, NULL); | |
6151 | ||
6152 | for (subfile = subfiles; subfile; subfile = subfile->next) | |
6153 | { | |
d5166ae1 | 6154 | if (FILENAME_CMP (subfile->name, fullname) == 0) |
c906108c SS |
6155 | { |
6156 | current_subfile = subfile; | |
b8c9b27d | 6157 | xfree (fullname); |
c906108c SS |
6158 | return; |
6159 | } | |
6160 | } | |
b8c9b27d | 6161 | xfree (fullname); |
c906108c SS |
6162 | } |
6163 | start_subfile (filename, dirname); | |
6164 | } | |
6165 | ||
4c2df51b DJ |
6166 | static void |
6167 | var_decode_location (struct attribute *attr, struct symbol *sym, | |
e7c27a73 | 6168 | struct dwarf2_cu *cu) |
4c2df51b | 6169 | { |
e7c27a73 DJ |
6170 | struct objfile *objfile = cu->objfile; |
6171 | struct comp_unit_head *cu_header = &cu->header; | |
6172 | ||
4c2df51b DJ |
6173 | /* NOTE drow/2003-01-30: There used to be a comment and some special |
6174 | code here to turn a symbol with DW_AT_external and a | |
6175 | SYMBOL_VALUE_ADDRESS of 0 into a LOC_UNRESOLVED symbol. This was | |
6176 | necessary for platforms (maybe Alpha, certainly PowerPC GNU/Linux | |
6177 | with some versions of binutils) where shared libraries could have | |
6178 | relocations against symbols in their debug information - the | |
6179 | minimal symbol would have the right address, but the debug info | |
6180 | would not. It's no longer necessary, because we will explicitly | |
6181 | apply relocations when we read in the debug information now. */ | |
6182 | ||
6183 | /* A DW_AT_location attribute with no contents indicates that a | |
6184 | variable has been optimized away. */ | |
6185 | if (attr_form_is_block (attr) && DW_BLOCK (attr)->size == 0) | |
6186 | { | |
6187 | SYMBOL_CLASS (sym) = LOC_OPTIMIZED_OUT; | |
6188 | return; | |
6189 | } | |
6190 | ||
6191 | /* Handle one degenerate form of location expression specially, to | |
6192 | preserve GDB's previous behavior when section offsets are | |
6193 | specified. If this is just a DW_OP_addr then mark this symbol | |
6194 | as LOC_STATIC. */ | |
6195 | ||
6196 | if (attr_form_is_block (attr) | |
6197 | && DW_BLOCK (attr)->size == 1 + cu_header->addr_size | |
6198 | && DW_BLOCK (attr)->data[0] == DW_OP_addr) | |
6199 | { | |
6200 | int dummy; | |
6201 | ||
6202 | SYMBOL_VALUE_ADDRESS (sym) = | |
e7c27a73 | 6203 | read_address (objfile->obfd, DW_BLOCK (attr)->data + 1, cu, &dummy); |
4c2df51b DJ |
6204 | fixup_symbol_section (sym, objfile); |
6205 | SYMBOL_VALUE_ADDRESS (sym) += ANOFFSET (objfile->section_offsets, | |
6206 | SYMBOL_SECTION (sym)); | |
6207 | SYMBOL_CLASS (sym) = LOC_STATIC; | |
6208 | return; | |
6209 | } | |
6210 | ||
6211 | /* NOTE drow/2002-01-30: It might be worthwhile to have a static | |
6212 | expression evaluator, and use LOC_COMPUTED only when necessary | |
6213 | (i.e. when the value of a register or memory location is | |
6214 | referenced, or a thread-local block, etc.). Then again, it might | |
6215 | not be worthwhile. I'm assuming that it isn't unless performance | |
6216 | or memory numbers show me otherwise. */ | |
6217 | ||
e7c27a73 | 6218 | dwarf2_symbol_mark_computed (attr, sym, cu); |
4c2df51b DJ |
6219 | SYMBOL_CLASS (sym) = LOC_COMPUTED; |
6220 | } | |
6221 | ||
c906108c SS |
6222 | /* Given a pointer to a DWARF information entry, figure out if we need |
6223 | to make a symbol table entry for it, and if so, create a new entry | |
6224 | and return a pointer to it. | |
6225 | If TYPE is NULL, determine symbol type from the die, otherwise | |
2df3850c | 6226 | used the passed type. */ |
c906108c SS |
6227 | |
6228 | static struct symbol * | |
e7c27a73 | 6229 | new_symbol (struct die_info *die, struct type *type, struct dwarf2_cu *cu) |
c906108c | 6230 | { |
e7c27a73 | 6231 | struct objfile *objfile = cu->objfile; |
c906108c SS |
6232 | struct symbol *sym = NULL; |
6233 | char *name; | |
6234 | struct attribute *attr = NULL; | |
6235 | struct attribute *attr2 = NULL; | |
e142c38c DJ |
6236 | CORE_ADDR baseaddr; |
6237 | ||
6238 | baseaddr = ANOFFSET (objfile->section_offsets, SECT_OFF_TEXT (objfile)); | |
c906108c | 6239 | |
5c4e30ca | 6240 | if (die->tag != DW_TAG_namespace) |
e142c38c | 6241 | name = dwarf2_linkage_name (die, cu); |
5c4e30ca DC |
6242 | else |
6243 | name = TYPE_NAME (type); | |
6244 | ||
c906108c SS |
6245 | if (name) |
6246 | { | |
4a146b47 | 6247 | sym = (struct symbol *) obstack_alloc (&objfile->objfile_obstack, |
c906108c SS |
6248 | sizeof (struct symbol)); |
6249 | OBJSTAT (objfile, n_syms++); | |
6250 | memset (sym, 0, sizeof (struct symbol)); | |
2de7ced7 DJ |
6251 | |
6252 | /* Cache this symbol's name and the name's demangled form (if any). */ | |
e142c38c | 6253 | SYMBOL_LANGUAGE (sym) = cu->language; |
2de7ced7 | 6254 | SYMBOL_SET_NAMES (sym, name, strlen (name), objfile); |
c906108c SS |
6255 | |
6256 | /* Default assumptions. | |
c5aa993b | 6257 | Use the passed type or decode it from the die. */ |
176620f1 | 6258 | SYMBOL_DOMAIN (sym) = VAR_DOMAIN; |
c906108c SS |
6259 | SYMBOL_CLASS (sym) = LOC_STATIC; |
6260 | if (type != NULL) | |
6261 | SYMBOL_TYPE (sym) = type; | |
6262 | else | |
e7c27a73 | 6263 | SYMBOL_TYPE (sym) = die_type (die, cu); |
e142c38c | 6264 | attr = dwarf2_attr (die, DW_AT_decl_line, cu); |
c906108c SS |
6265 | if (attr) |
6266 | { | |
6267 | SYMBOL_LINE (sym) = DW_UNSND (attr); | |
6268 | } | |
c906108c SS |
6269 | switch (die->tag) |
6270 | { | |
6271 | case DW_TAG_label: | |
e142c38c | 6272 | attr = dwarf2_attr (die, DW_AT_low_pc, cu); |
c906108c SS |
6273 | if (attr) |
6274 | { | |
6275 | SYMBOL_VALUE_ADDRESS (sym) = DW_ADDR (attr) + baseaddr; | |
6276 | } | |
6277 | SYMBOL_CLASS (sym) = LOC_LABEL; | |
6278 | break; | |
6279 | case DW_TAG_subprogram: | |
6280 | /* SYMBOL_BLOCK_VALUE (sym) will be filled in later by | |
6281 | finish_block. */ | |
6282 | SYMBOL_CLASS (sym) = LOC_BLOCK; | |
e142c38c | 6283 | attr2 = dwarf2_attr (die, DW_AT_external, cu); |
c906108c SS |
6284 | if (attr2 && (DW_UNSND (attr2) != 0)) |
6285 | { | |
6286 | add_symbol_to_list (sym, &global_symbols); | |
6287 | } | |
6288 | else | |
6289 | { | |
e142c38c | 6290 | add_symbol_to_list (sym, cu->list_in_scope); |
c906108c SS |
6291 | } |
6292 | break; | |
6293 | case DW_TAG_variable: | |
6294 | /* Compilation with minimal debug info may result in variables | |
6295 | with missing type entries. Change the misleading `void' type | |
6296 | to something sensible. */ | |
6297 | if (TYPE_CODE (SYMBOL_TYPE (sym)) == TYPE_CODE_VOID) | |
6298 | SYMBOL_TYPE (sym) = init_type (TYPE_CODE_INT, | |
6299 | TARGET_INT_BIT / HOST_CHAR_BIT, 0, | |
6300 | "<variable, no debug info>", | |
6301 | objfile); | |
e142c38c | 6302 | attr = dwarf2_attr (die, DW_AT_const_value, cu); |
c906108c SS |
6303 | if (attr) |
6304 | { | |
e7c27a73 | 6305 | dwarf2_const_value (attr, sym, cu); |
e142c38c | 6306 | attr2 = dwarf2_attr (die, DW_AT_external, cu); |
c906108c SS |
6307 | if (attr2 && (DW_UNSND (attr2) != 0)) |
6308 | add_symbol_to_list (sym, &global_symbols); | |
6309 | else | |
e142c38c | 6310 | add_symbol_to_list (sym, cu->list_in_scope); |
c906108c SS |
6311 | break; |
6312 | } | |
e142c38c | 6313 | attr = dwarf2_attr (die, DW_AT_location, cu); |
c906108c SS |
6314 | if (attr) |
6315 | { | |
e7c27a73 | 6316 | var_decode_location (attr, sym, cu); |
e142c38c | 6317 | attr2 = dwarf2_attr (die, DW_AT_external, cu); |
c906108c | 6318 | if (attr2 && (DW_UNSND (attr2) != 0)) |
4c2df51b | 6319 | add_symbol_to_list (sym, &global_symbols); |
c906108c | 6320 | else |
e142c38c | 6321 | add_symbol_to_list (sym, cu->list_in_scope); |
c906108c SS |
6322 | } |
6323 | else | |
6324 | { | |
6325 | /* We do not know the address of this symbol. | |
c5aa993b JM |
6326 | If it is an external symbol and we have type information |
6327 | for it, enter the symbol as a LOC_UNRESOLVED symbol. | |
6328 | The address of the variable will then be determined from | |
6329 | the minimal symbol table whenever the variable is | |
6330 | referenced. */ | |
e142c38c | 6331 | attr2 = dwarf2_attr (die, DW_AT_external, cu); |
c906108c | 6332 | if (attr2 && (DW_UNSND (attr2) != 0) |
e142c38c | 6333 | && dwarf2_attr (die, DW_AT_type, cu) != NULL) |
c906108c SS |
6334 | { |
6335 | SYMBOL_CLASS (sym) = LOC_UNRESOLVED; | |
6336 | add_symbol_to_list (sym, &global_symbols); | |
6337 | } | |
6338 | } | |
6339 | break; | |
6340 | case DW_TAG_formal_parameter: | |
e142c38c | 6341 | attr = dwarf2_attr (die, DW_AT_location, cu); |
c906108c SS |
6342 | if (attr) |
6343 | { | |
e7c27a73 | 6344 | var_decode_location (attr, sym, cu); |
7cf6e574 DJ |
6345 | /* FIXME drow/2003-07-31: Is LOC_COMPUTED_ARG necessary? */ |
6346 | if (SYMBOL_CLASS (sym) == LOC_COMPUTED) | |
6347 | SYMBOL_CLASS (sym) = LOC_COMPUTED_ARG; | |
c906108c | 6348 | } |
e142c38c | 6349 | attr = dwarf2_attr (die, DW_AT_const_value, cu); |
c906108c SS |
6350 | if (attr) |
6351 | { | |
e7c27a73 | 6352 | dwarf2_const_value (attr, sym, cu); |
c906108c | 6353 | } |
e142c38c | 6354 | add_symbol_to_list (sym, cu->list_in_scope); |
c906108c SS |
6355 | break; |
6356 | case DW_TAG_unspecified_parameters: | |
6357 | /* From varargs functions; gdb doesn't seem to have any | |
6358 | interest in this information, so just ignore it for now. | |
6359 | (FIXME?) */ | |
6360 | break; | |
6361 | case DW_TAG_class_type: | |
6362 | case DW_TAG_structure_type: | |
6363 | case DW_TAG_union_type: | |
6364 | case DW_TAG_enumeration_type: | |
6365 | SYMBOL_CLASS (sym) = LOC_TYPEDEF; | |
176620f1 | 6366 | SYMBOL_DOMAIN (sym) = STRUCT_DOMAIN; |
c906108c | 6367 | |
63d06c5c DC |
6368 | /* Make sure that the symbol includes appropriate enclosing |
6369 | classes/namespaces in its name. These are calculated in | |
134d01f1 | 6370 | read_structure_type, and the correct name is saved in |
63d06c5c DC |
6371 | the type. */ |
6372 | ||
e142c38c | 6373 | if (cu->language == language_cplus) |
c906108c | 6374 | { |
63d06c5c DC |
6375 | struct type *type = SYMBOL_TYPE (sym); |
6376 | ||
6377 | if (TYPE_TAG_NAME (type) != NULL) | |
6378 | { | |
6379 | /* FIXME: carlton/2003-11-10: Should this use | |
6380 | SYMBOL_SET_NAMES instead? (The same problem also | |
d8151005 DJ |
6381 | arises further down in this function.) */ |
6382 | /* The type's name is already allocated along with | |
6383 | this objfile, so we don't need to duplicate it | |
6384 | for the symbol. */ | |
6385 | SYMBOL_LINKAGE_NAME (sym) = TYPE_TAG_NAME (type); | |
63d06c5c | 6386 | } |
c906108c | 6387 | } |
63d06c5c DC |
6388 | |
6389 | { | |
6390 | /* NOTE: carlton/2003-11-10: C++ class symbols shouldn't | |
6391 | really ever be static objects: otherwise, if you try | |
6392 | to, say, break of a class's method and you're in a file | |
6393 | which doesn't mention that class, it won't work unless | |
6394 | the check for all static symbols in lookup_symbol_aux | |
6395 | saves you. See the OtherFileClass tests in | |
6396 | gdb.c++/namespace.exp. */ | |
6397 | ||
6398 | struct pending **list_to_add; | |
6399 | ||
e142c38c DJ |
6400 | list_to_add = (cu->list_in_scope == &file_symbols |
6401 | && cu->language == language_cplus | |
6402 | ? &global_symbols : cu->list_in_scope); | |
63d06c5c DC |
6403 | |
6404 | add_symbol_to_list (sym, list_to_add); | |
6405 | ||
6406 | /* The semantics of C++ state that "struct foo { ... }" also | |
6407 | defines a typedef for "foo". Synthesize a typedef symbol so | |
6408 | that "ptype foo" works as expected. */ | |
e142c38c | 6409 | if (cu->language == language_cplus) |
63d06c5c DC |
6410 | { |
6411 | struct symbol *typedef_sym = (struct symbol *) | |
4a146b47 | 6412 | obstack_alloc (&objfile->objfile_obstack, |
63d06c5c DC |
6413 | sizeof (struct symbol)); |
6414 | *typedef_sym = *sym; | |
6415 | SYMBOL_DOMAIN (typedef_sym) = VAR_DOMAIN; | |
d8151005 DJ |
6416 | /* The symbol's name is already allocated along with |
6417 | this objfile, so we don't need to duplicate it for | |
6418 | the type. */ | |
63d06c5c | 6419 | if (TYPE_NAME (SYMBOL_TYPE (sym)) == 0) |
d8151005 | 6420 | TYPE_NAME (SYMBOL_TYPE (sym)) = SYMBOL_NATURAL_NAME (sym); |
63d06c5c DC |
6421 | add_symbol_to_list (typedef_sym, list_to_add); |
6422 | } | |
6423 | } | |
c906108c SS |
6424 | break; |
6425 | case DW_TAG_typedef: | |
63d06c5c DC |
6426 | if (processing_has_namespace_info |
6427 | && processing_current_prefix[0] != '\0') | |
6428 | { | |
4a146b47 | 6429 | SYMBOL_LINKAGE_NAME (sym) = obconcat (&objfile->objfile_obstack, |
63d06c5c DC |
6430 | processing_current_prefix, |
6431 | "::", | |
6432 | name); | |
6433 | } | |
6434 | SYMBOL_CLASS (sym) = LOC_TYPEDEF; | |
6435 | SYMBOL_DOMAIN (sym) = VAR_DOMAIN; | |
e142c38c | 6436 | add_symbol_to_list (sym, cu->list_in_scope); |
63d06c5c | 6437 | break; |
c906108c | 6438 | case DW_TAG_base_type: |
a02abb62 | 6439 | case DW_TAG_subrange_type: |
c906108c | 6440 | SYMBOL_CLASS (sym) = LOC_TYPEDEF; |
176620f1 | 6441 | SYMBOL_DOMAIN (sym) = VAR_DOMAIN; |
e142c38c | 6442 | add_symbol_to_list (sym, cu->list_in_scope); |
c906108c SS |
6443 | break; |
6444 | case DW_TAG_enumerator: | |
63d06c5c DC |
6445 | if (processing_has_namespace_info |
6446 | && processing_current_prefix[0] != '\0') | |
6447 | { | |
4a146b47 | 6448 | SYMBOL_LINKAGE_NAME (sym) = obconcat (&objfile->objfile_obstack, |
63d06c5c DC |
6449 | processing_current_prefix, |
6450 | "::", | |
6451 | name); | |
6452 | } | |
e142c38c | 6453 | attr = dwarf2_attr (die, DW_AT_const_value, cu); |
c906108c SS |
6454 | if (attr) |
6455 | { | |
e7c27a73 | 6456 | dwarf2_const_value (attr, sym, cu); |
c906108c | 6457 | } |
63d06c5c DC |
6458 | { |
6459 | /* NOTE: carlton/2003-11-10: See comment above in the | |
6460 | DW_TAG_class_type, etc. block. */ | |
6461 | ||
6462 | struct pending **list_to_add; | |
6463 | ||
e142c38c DJ |
6464 | list_to_add = (cu->list_in_scope == &file_symbols |
6465 | && cu->language == language_cplus | |
6466 | ? &global_symbols : cu->list_in_scope); | |
63d06c5c DC |
6467 | |
6468 | add_symbol_to_list (sym, list_to_add); | |
6469 | } | |
c906108c | 6470 | break; |
5c4e30ca DC |
6471 | case DW_TAG_namespace: |
6472 | SYMBOL_CLASS (sym) = LOC_TYPEDEF; | |
6473 | add_symbol_to_list (sym, &global_symbols); | |
6474 | break; | |
c906108c SS |
6475 | default: |
6476 | /* Not a tag we recognize. Hopefully we aren't processing | |
6477 | trash data, but since we must specifically ignore things | |
6478 | we don't recognize, there is nothing else we should do at | |
6479 | this point. */ | |
4d3c2250 KB |
6480 | complaint (&symfile_complaints, "unsupported tag: '%s'", |
6481 | dwarf_tag_name (die->tag)); | |
c906108c SS |
6482 | break; |
6483 | } | |
6484 | } | |
6485 | return (sym); | |
6486 | } | |
6487 | ||
6488 | /* Copy constant value from an attribute to a symbol. */ | |
6489 | ||
6490 | static void | |
107d2387 | 6491 | dwarf2_const_value (struct attribute *attr, struct symbol *sym, |
e7c27a73 | 6492 | struct dwarf2_cu *cu) |
c906108c | 6493 | { |
e7c27a73 DJ |
6494 | struct objfile *objfile = cu->objfile; |
6495 | struct comp_unit_head *cu_header = &cu->header; | |
c906108c SS |
6496 | struct dwarf_block *blk; |
6497 | ||
6498 | switch (attr->form) | |
6499 | { | |
6500 | case DW_FORM_addr: | |
107d2387 | 6501 | if (TYPE_LENGTH (SYMBOL_TYPE (sym)) != cu_header->addr_size) |
22abf04a | 6502 | dwarf2_const_value_length_mismatch_complaint (DEPRECATED_SYMBOL_NAME (sym), |
4d3c2250 KB |
6503 | cu_header->addr_size, |
6504 | TYPE_LENGTH (SYMBOL_TYPE | |
6505 | (sym))); | |
c906108c | 6506 | SYMBOL_VALUE_BYTES (sym) = (char *) |
4a146b47 | 6507 | obstack_alloc (&objfile->objfile_obstack, cu_header->addr_size); |
fbd9dcd3 AC |
6508 | /* NOTE: cagney/2003-05-09: In-lined store_address call with |
6509 | it's body - store_unsigned_integer. */ | |
6510 | store_unsigned_integer (SYMBOL_VALUE_BYTES (sym), cu_header->addr_size, | |
6511 | DW_ADDR (attr)); | |
c906108c SS |
6512 | SYMBOL_CLASS (sym) = LOC_CONST_BYTES; |
6513 | break; | |
6514 | case DW_FORM_block1: | |
6515 | case DW_FORM_block2: | |
6516 | case DW_FORM_block4: | |
6517 | case DW_FORM_block: | |
6518 | blk = DW_BLOCK (attr); | |
6519 | if (TYPE_LENGTH (SYMBOL_TYPE (sym)) != blk->size) | |
22abf04a | 6520 | dwarf2_const_value_length_mismatch_complaint (DEPRECATED_SYMBOL_NAME (sym), |
4d3c2250 KB |
6521 | blk->size, |
6522 | TYPE_LENGTH (SYMBOL_TYPE | |
6523 | (sym))); | |
c906108c | 6524 | SYMBOL_VALUE_BYTES (sym) = (char *) |
4a146b47 | 6525 | obstack_alloc (&objfile->objfile_obstack, blk->size); |
c906108c SS |
6526 | memcpy (SYMBOL_VALUE_BYTES (sym), blk->data, blk->size); |
6527 | SYMBOL_CLASS (sym) = LOC_CONST_BYTES; | |
6528 | break; | |
2df3850c JM |
6529 | |
6530 | /* The DW_AT_const_value attributes are supposed to carry the | |
6531 | symbol's value "represented as it would be on the target | |
6532 | architecture." By the time we get here, it's already been | |
6533 | converted to host endianness, so we just need to sign- or | |
6534 | zero-extend it as appropriate. */ | |
6535 | case DW_FORM_data1: | |
6536 | dwarf2_const_value_data (attr, sym, 8); | |
6537 | break; | |
c906108c | 6538 | case DW_FORM_data2: |
2df3850c JM |
6539 | dwarf2_const_value_data (attr, sym, 16); |
6540 | break; | |
c906108c | 6541 | case DW_FORM_data4: |
2df3850c JM |
6542 | dwarf2_const_value_data (attr, sym, 32); |
6543 | break; | |
c906108c | 6544 | case DW_FORM_data8: |
2df3850c JM |
6545 | dwarf2_const_value_data (attr, sym, 64); |
6546 | break; | |
6547 | ||
c906108c | 6548 | case DW_FORM_sdata: |
2df3850c JM |
6549 | SYMBOL_VALUE (sym) = DW_SND (attr); |
6550 | SYMBOL_CLASS (sym) = LOC_CONST; | |
6551 | break; | |
6552 | ||
c906108c SS |
6553 | case DW_FORM_udata: |
6554 | SYMBOL_VALUE (sym) = DW_UNSND (attr); | |
6555 | SYMBOL_CLASS (sym) = LOC_CONST; | |
6556 | break; | |
2df3850c | 6557 | |
c906108c | 6558 | default: |
4d3c2250 KB |
6559 | complaint (&symfile_complaints, |
6560 | "unsupported const value attribute form: '%s'", | |
6561 | dwarf_form_name (attr->form)); | |
c906108c SS |
6562 | SYMBOL_VALUE (sym) = 0; |
6563 | SYMBOL_CLASS (sym) = LOC_CONST; | |
6564 | break; | |
6565 | } | |
6566 | } | |
6567 | ||
2df3850c JM |
6568 | |
6569 | /* Given an attr with a DW_FORM_dataN value in host byte order, sign- | |
6570 | or zero-extend it as appropriate for the symbol's type. */ | |
6571 | static void | |
6572 | dwarf2_const_value_data (struct attribute *attr, | |
6573 | struct symbol *sym, | |
6574 | int bits) | |
6575 | { | |
6576 | LONGEST l = DW_UNSND (attr); | |
6577 | ||
6578 | if (bits < sizeof (l) * 8) | |
6579 | { | |
6580 | if (TYPE_UNSIGNED (SYMBOL_TYPE (sym))) | |
6581 | l &= ((LONGEST) 1 << bits) - 1; | |
6582 | else | |
bf9198f1 | 6583 | l = (l << (sizeof (l) * 8 - bits)) >> (sizeof (l) * 8 - bits); |
2df3850c JM |
6584 | } |
6585 | ||
6586 | SYMBOL_VALUE (sym) = l; | |
6587 | SYMBOL_CLASS (sym) = LOC_CONST; | |
6588 | } | |
6589 | ||
6590 | ||
c906108c SS |
6591 | /* Return the type of the die in question using its DW_AT_type attribute. */ |
6592 | ||
6593 | static struct type * | |
e7c27a73 | 6594 | die_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
6595 | { |
6596 | struct type *type; | |
6597 | struct attribute *type_attr; | |
6598 | struct die_info *type_die; | |
6599 | unsigned int ref; | |
6600 | ||
e142c38c | 6601 | type_attr = dwarf2_attr (die, DW_AT_type, cu); |
c906108c SS |
6602 | if (!type_attr) |
6603 | { | |
6604 | /* A missing DW_AT_type represents a void type. */ | |
e142c38c | 6605 | return dwarf2_fundamental_type (cu->objfile, FT_VOID, cu); |
c906108c SS |
6606 | } |
6607 | else | |
6608 | { | |
e142c38c | 6609 | ref = dwarf2_get_ref_die_offset (type_attr, cu); |
c906108c SS |
6610 | type_die = follow_die_ref (ref); |
6611 | if (!type_die) | |
6612 | { | |
659b0389 | 6613 | error ("Dwarf Error: Cannot find referent at offset %d [in module %s]", |
e7c27a73 | 6614 | ref, cu->objfile->name); |
c906108c SS |
6615 | return NULL; |
6616 | } | |
6617 | } | |
e7c27a73 | 6618 | type = tag_type_to_type (type_die, cu); |
c906108c SS |
6619 | if (!type) |
6620 | { | |
6621 | dump_die (type_die); | |
659b0389 | 6622 | error ("Dwarf Error: Problem turning type die at offset into gdb type [in module %s]", |
e7c27a73 | 6623 | cu->objfile->name); |
c906108c SS |
6624 | } |
6625 | return type; | |
6626 | } | |
6627 | ||
6628 | /* Return the containing type of the die in question using its | |
6629 | DW_AT_containing_type attribute. */ | |
6630 | ||
6631 | static struct type * | |
e7c27a73 | 6632 | die_containing_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
6633 | { |
6634 | struct type *type = NULL; | |
6635 | struct attribute *type_attr; | |
6636 | struct die_info *type_die = NULL; | |
6637 | unsigned int ref; | |
6638 | ||
e142c38c | 6639 | type_attr = dwarf2_attr (die, DW_AT_containing_type, cu); |
c906108c SS |
6640 | if (type_attr) |
6641 | { | |
e142c38c | 6642 | ref = dwarf2_get_ref_die_offset (type_attr, cu); |
c906108c SS |
6643 | type_die = follow_die_ref (ref); |
6644 | if (!type_die) | |
6645 | { | |
659b0389 | 6646 | error ("Dwarf Error: Cannot find referent at offset %d [in module %s]", ref, |
e7c27a73 | 6647 | cu->objfile->name); |
c906108c SS |
6648 | return NULL; |
6649 | } | |
e7c27a73 | 6650 | type = tag_type_to_type (type_die, cu); |
c906108c SS |
6651 | } |
6652 | if (!type) | |
6653 | { | |
6654 | if (type_die) | |
6655 | dump_die (type_die); | |
659b0389 | 6656 | error ("Dwarf Error: Problem turning containing type into gdb type [in module %s]", |
e7c27a73 | 6657 | cu->objfile->name); |
c906108c SS |
6658 | } |
6659 | return type; | |
6660 | } | |
6661 | ||
6662 | #if 0 | |
6663 | static struct type * | |
e7c27a73 | 6664 | type_at_offset (unsigned int offset, struct dwarf2_cu *cu) |
c906108c SS |
6665 | { |
6666 | struct die_info *die; | |
6667 | struct type *type; | |
6668 | ||
6669 | die = follow_die_ref (offset); | |
6670 | if (!die) | |
6671 | { | |
6672 | error ("Dwarf Error: Cannot find type referent at offset %d.", offset); | |
6673 | return NULL; | |
6674 | } | |
e7c27a73 | 6675 | type = tag_type_to_type (die, cu); |
c906108c SS |
6676 | return type; |
6677 | } | |
6678 | #endif | |
6679 | ||
6680 | static struct type * | |
e7c27a73 | 6681 | tag_type_to_type (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
6682 | { |
6683 | if (die->type) | |
6684 | { | |
6685 | return die->type; | |
6686 | } | |
6687 | else | |
6688 | { | |
e7c27a73 | 6689 | read_type_die (die, cu); |
c906108c SS |
6690 | if (!die->type) |
6691 | { | |
6692 | dump_die (die); | |
659b0389 | 6693 | error ("Dwarf Error: Cannot find type of die [in module %s]", |
e7c27a73 | 6694 | cu->objfile->name); |
c906108c SS |
6695 | } |
6696 | return die->type; | |
6697 | } | |
6698 | } | |
6699 | ||
6700 | static void | |
e7c27a73 | 6701 | read_type_die (struct die_info *die, struct dwarf2_cu *cu) |
c906108c | 6702 | { |
e142c38c | 6703 | char *prefix = determine_prefix (die, cu); |
63d06c5c DC |
6704 | const char *old_prefix = processing_current_prefix; |
6705 | struct cleanup *back_to = make_cleanup (xfree, prefix); | |
6706 | processing_current_prefix = prefix; | |
6707 | ||
c906108c SS |
6708 | switch (die->tag) |
6709 | { | |
6710 | case DW_TAG_class_type: | |
6711 | case DW_TAG_structure_type: | |
6712 | case DW_TAG_union_type: | |
134d01f1 | 6713 | read_structure_type (die, cu); |
c906108c SS |
6714 | break; |
6715 | case DW_TAG_enumeration_type: | |
134d01f1 | 6716 | read_enumeration_type (die, cu); |
c906108c SS |
6717 | break; |
6718 | case DW_TAG_subprogram: | |
6719 | case DW_TAG_subroutine_type: | |
e7c27a73 | 6720 | read_subroutine_type (die, cu); |
c906108c SS |
6721 | break; |
6722 | case DW_TAG_array_type: | |
e7c27a73 | 6723 | read_array_type (die, cu); |
c906108c SS |
6724 | break; |
6725 | case DW_TAG_pointer_type: | |
e7c27a73 | 6726 | read_tag_pointer_type (die, cu); |
c906108c SS |
6727 | break; |
6728 | case DW_TAG_ptr_to_member_type: | |
e7c27a73 | 6729 | read_tag_ptr_to_member_type (die, cu); |
c906108c SS |
6730 | break; |
6731 | case DW_TAG_reference_type: | |
e7c27a73 | 6732 | read_tag_reference_type (die, cu); |
c906108c SS |
6733 | break; |
6734 | case DW_TAG_const_type: | |
e7c27a73 | 6735 | read_tag_const_type (die, cu); |
c906108c SS |
6736 | break; |
6737 | case DW_TAG_volatile_type: | |
e7c27a73 | 6738 | read_tag_volatile_type (die, cu); |
c906108c SS |
6739 | break; |
6740 | case DW_TAG_string_type: | |
e7c27a73 | 6741 | read_tag_string_type (die, cu); |
c906108c SS |
6742 | break; |
6743 | case DW_TAG_typedef: | |
e7c27a73 | 6744 | read_typedef (die, cu); |
c906108c | 6745 | break; |
a02abb62 JB |
6746 | case DW_TAG_subrange_type: |
6747 | read_subrange_type (die, cu); | |
6748 | break; | |
c906108c | 6749 | case DW_TAG_base_type: |
e7c27a73 | 6750 | read_base_type (die, cu); |
c906108c SS |
6751 | break; |
6752 | default: | |
4d3c2250 KB |
6753 | complaint (&symfile_complaints, "unexepected tag in read_type_die: '%s'", |
6754 | dwarf_tag_name (die->tag)); | |
c906108c SS |
6755 | break; |
6756 | } | |
63d06c5c DC |
6757 | |
6758 | processing_current_prefix = old_prefix; | |
6759 | do_cleanups (back_to); | |
6760 | } | |
6761 | ||
fdde2d81 DC |
6762 | /* Return the name of the namespace/class that DIE is defined within, |
6763 | or "" if we can't tell. The caller should xfree the result. */ | |
6764 | ||
6765 | /* NOTE: carlton/2004-01-23: See read_func_scope (and the comment | |
6766 | therein) for an example of how to use this function to deal with | |
6767 | DW_AT_specification. */ | |
6768 | ||
6769 | static char * | |
e142c38c | 6770 | determine_prefix (struct die_info *die, struct dwarf2_cu *cu) |
63d06c5c DC |
6771 | { |
6772 | struct die_info *parent; | |
6773 | ||
e142c38c | 6774 | if (cu->language != language_cplus) |
63d06c5c DC |
6775 | return NULL; |
6776 | ||
6777 | parent = die->parent; | |
6778 | ||
6779 | if (parent == NULL) | |
6780 | { | |
8176b9b8 | 6781 | return xstrdup (""); |
63d06c5c DC |
6782 | } |
6783 | else | |
6784 | { | |
63d06c5c DC |
6785 | switch (parent->tag) { |
6786 | case DW_TAG_namespace: | |
6787 | { | |
8176b9b8 DC |
6788 | /* FIXME: carlton/2004-03-05: Should I follow extension dies |
6789 | before doing this check? */ | |
6790 | if (parent->type != NULL && TYPE_TAG_NAME (parent->type) != NULL) | |
6791 | { | |
6792 | return xstrdup (TYPE_TAG_NAME (parent->type)); | |
6793 | } | |
6794 | else | |
6795 | { | |
6796 | int dummy; | |
6797 | char *parent_prefix = determine_prefix (parent, cu); | |
6798 | char *retval = typename_concat (parent_prefix, | |
6799 | namespace_name (parent, &dummy, | |
6800 | cu)); | |
6801 | xfree (parent_prefix); | |
6802 | return retval; | |
6803 | } | |
63d06c5c DC |
6804 | } |
6805 | break; | |
6806 | case DW_TAG_class_type: | |
6807 | case DW_TAG_structure_type: | |
6808 | { | |
8176b9b8 | 6809 | if (parent->type != NULL && TYPE_TAG_NAME (parent->type) != NULL) |
63d06c5c | 6810 | { |
8176b9b8 | 6811 | return xstrdup (TYPE_TAG_NAME (parent->type)); |
63d06c5c DC |
6812 | } |
6813 | else | |
8176b9b8 DC |
6814 | { |
6815 | const char *old_prefix = processing_current_prefix; | |
6816 | char *new_prefix = determine_prefix (parent, cu); | |
6817 | char *retval; | |
6818 | ||
6819 | processing_current_prefix = new_prefix; | |
6820 | retval = determine_class_name (parent, cu); | |
6821 | processing_current_prefix = old_prefix; | |
6822 | ||
6823 | xfree (new_prefix); | |
6824 | return retval; | |
6825 | } | |
63d06c5c | 6826 | } |
63d06c5c | 6827 | default: |
8176b9b8 | 6828 | return determine_prefix (parent, cu); |
63d06c5c | 6829 | } |
63d06c5c DC |
6830 | } |
6831 | } | |
6832 | ||
6833 | /* Return a newly-allocated string formed by concatenating PREFIX, | |
6834 | "::", and SUFFIX, except that if PREFIX is NULL or the empty | |
6835 | string, just return a copy of SUFFIX. */ | |
6836 | ||
6837 | static char * | |
6838 | typename_concat (const char *prefix, const char *suffix) | |
6839 | { | |
6840 | if (prefix == NULL || prefix[0] == '\0') | |
6841 | return xstrdup (suffix); | |
6842 | else | |
6843 | { | |
6844 | char *retval = xmalloc (strlen (prefix) + 2 + strlen (suffix) + 1); | |
6845 | ||
6846 | strcpy (retval, prefix); | |
6847 | strcat (retval, "::"); | |
6848 | strcat (retval, suffix); | |
6849 | ||
6850 | return retval; | |
6851 | } | |
6852 | } | |
6853 | ||
c906108c | 6854 | static struct type * |
e7c27a73 | 6855 | dwarf_base_type (int encoding, int size, struct dwarf2_cu *cu) |
c906108c | 6856 | { |
e7c27a73 DJ |
6857 | struct objfile *objfile = cu->objfile; |
6858 | ||
c906108c SS |
6859 | /* FIXME - this should not produce a new (struct type *) |
6860 | every time. It should cache base types. */ | |
6861 | struct type *type; | |
6862 | switch (encoding) | |
6863 | { | |
6864 | case DW_ATE_address: | |
e142c38c | 6865 | type = dwarf2_fundamental_type (objfile, FT_VOID, cu); |
c906108c SS |
6866 | return type; |
6867 | case DW_ATE_boolean: | |
e142c38c | 6868 | type = dwarf2_fundamental_type (objfile, FT_BOOLEAN, cu); |
c906108c SS |
6869 | return type; |
6870 | case DW_ATE_complex_float: | |
6871 | if (size == 16) | |
6872 | { | |
e142c38c | 6873 | type = dwarf2_fundamental_type (objfile, FT_DBL_PREC_COMPLEX, cu); |
c906108c SS |
6874 | } |
6875 | else | |
6876 | { | |
e142c38c | 6877 | type = dwarf2_fundamental_type (objfile, FT_COMPLEX, cu); |
c906108c SS |
6878 | } |
6879 | return type; | |
6880 | case DW_ATE_float: | |
6881 | if (size == 8) | |
6882 | { | |
e142c38c | 6883 | type = dwarf2_fundamental_type (objfile, FT_DBL_PREC_FLOAT, cu); |
c906108c SS |
6884 | } |
6885 | else | |
6886 | { | |
e142c38c | 6887 | type = dwarf2_fundamental_type (objfile, FT_FLOAT, cu); |
c906108c SS |
6888 | } |
6889 | return type; | |
6890 | case DW_ATE_signed: | |
6891 | switch (size) | |
6892 | { | |
6893 | case 1: | |
e142c38c | 6894 | type = dwarf2_fundamental_type (objfile, FT_SIGNED_CHAR, cu); |
c906108c SS |
6895 | break; |
6896 | case 2: | |
e142c38c | 6897 | type = dwarf2_fundamental_type (objfile, FT_SIGNED_SHORT, cu); |
c906108c SS |
6898 | break; |
6899 | default: | |
6900 | case 4: | |
e142c38c | 6901 | type = dwarf2_fundamental_type (objfile, FT_SIGNED_INTEGER, cu); |
c906108c SS |
6902 | break; |
6903 | } | |
6904 | return type; | |
6905 | case DW_ATE_signed_char: | |
e142c38c | 6906 | type = dwarf2_fundamental_type (objfile, FT_SIGNED_CHAR, cu); |
c906108c SS |
6907 | return type; |
6908 | case DW_ATE_unsigned: | |
6909 | switch (size) | |
6910 | { | |
6911 | case 1: | |
e142c38c | 6912 | type = dwarf2_fundamental_type (objfile, FT_UNSIGNED_CHAR, cu); |
c906108c SS |
6913 | break; |
6914 | case 2: | |
e142c38c | 6915 | type = dwarf2_fundamental_type (objfile, FT_UNSIGNED_SHORT, cu); |
c906108c SS |
6916 | break; |
6917 | default: | |
6918 | case 4: | |
e142c38c | 6919 | type = dwarf2_fundamental_type (objfile, FT_UNSIGNED_INTEGER, cu); |
c906108c SS |
6920 | break; |
6921 | } | |
6922 | return type; | |
6923 | case DW_ATE_unsigned_char: | |
e142c38c | 6924 | type = dwarf2_fundamental_type (objfile, FT_UNSIGNED_CHAR, cu); |
c906108c SS |
6925 | return type; |
6926 | default: | |
e142c38c | 6927 | type = dwarf2_fundamental_type (objfile, FT_SIGNED_INTEGER, cu); |
c906108c SS |
6928 | return type; |
6929 | } | |
6930 | } | |
6931 | ||
6932 | #if 0 | |
6933 | struct die_info * | |
fba45db2 | 6934 | copy_die (struct die_info *old_die) |
c906108c SS |
6935 | { |
6936 | struct die_info *new_die; | |
6937 | int i, num_attrs; | |
6938 | ||
6939 | new_die = (struct die_info *) xmalloc (sizeof (struct die_info)); | |
6940 | memset (new_die, 0, sizeof (struct die_info)); | |
6941 | ||
6942 | new_die->tag = old_die->tag; | |
6943 | new_die->has_children = old_die->has_children; | |
6944 | new_die->abbrev = old_die->abbrev; | |
6945 | new_die->offset = old_die->offset; | |
6946 | new_die->type = NULL; | |
6947 | ||
6948 | num_attrs = old_die->num_attrs; | |
6949 | new_die->num_attrs = num_attrs; | |
6950 | new_die->attrs = (struct attribute *) | |
6951 | xmalloc (num_attrs * sizeof (struct attribute)); | |
6952 | ||
6953 | for (i = 0; i < old_die->num_attrs; ++i) | |
6954 | { | |
6955 | new_die->attrs[i].name = old_die->attrs[i].name; | |
6956 | new_die->attrs[i].form = old_die->attrs[i].form; | |
6957 | new_die->attrs[i].u.addr = old_die->attrs[i].u.addr; | |
6958 | } | |
6959 | ||
6960 | new_die->next = NULL; | |
6961 | return new_die; | |
6962 | } | |
6963 | #endif | |
6964 | ||
6965 | /* Return sibling of die, NULL if no sibling. */ | |
6966 | ||
f9aca02d | 6967 | static struct die_info * |
fba45db2 | 6968 | sibling_die (struct die_info *die) |
c906108c | 6969 | { |
639d11d3 | 6970 | return die->sibling; |
c906108c SS |
6971 | } |
6972 | ||
6973 | /* Get linkage name of a die, return NULL if not found. */ | |
6974 | ||
6975 | static char * | |
e142c38c | 6976 | dwarf2_linkage_name (struct die_info *die, struct dwarf2_cu *cu) |
c906108c SS |
6977 | { |
6978 | struct attribute *attr; | |
6979 | ||
e142c38c | 6980 | attr = dwarf2_attr (die, DW_AT_MIPS_linkage_name, cu); |
c906108c SS |
6981 | if (attr && DW_STRING (attr)) |
6982 | return DW_STRING (attr); | |
e142c38c | 6983 | attr = dwarf2_attr (die, DW_AT_name, cu); |
c906108c SS |
6984 | if (attr && DW_STRING (attr)) |
6985 | return DW_STRING (attr); | |
6986 | return NULL; | |
6987 | } | |
6988 | ||
9219021c DC |
6989 | /* Get name of a die, return NULL if not found. */ |
6990 | ||
6991 | static char * | |
e142c38c | 6992 | dwarf2_name (struct die_info *die, struct dwarf2_cu *cu) |
9219021c DC |
6993 | { |
6994 | struct attribute *attr; | |
6995 | ||
e142c38c | 6996 | attr = dwarf2_attr (die, DW_AT_name, cu); |
9219021c DC |
6997 | if (attr && DW_STRING (attr)) |
6998 | return DW_STRING (attr); | |
6999 | return NULL; | |
7000 | } | |
7001 | ||
7002 | /* Return the die that this die in an extension of, or NULL if there | |
7003 | is none. */ | |
7004 | ||
7005 | static struct die_info * | |
e142c38c | 7006 | dwarf2_extension (struct die_info *die, struct dwarf2_cu *cu) |
9219021c DC |
7007 | { |
7008 | struct attribute *attr; | |
7009 | struct die_info *extension_die; | |
7010 | unsigned int ref; | |
7011 | ||
e142c38c | 7012 | attr = dwarf2_attr (die, DW_AT_extension, cu); |
9219021c DC |
7013 | if (attr == NULL) |
7014 | return NULL; | |
7015 | ||
e142c38c | 7016 | ref = dwarf2_get_ref_die_offset (attr, cu); |
9219021c DC |
7017 | extension_die = follow_die_ref (ref); |
7018 | if (!extension_die) | |
7019 | { | |
7020 | error ("Dwarf Error: Cannot find referent at offset %d.", ref); | |
7021 | } | |
7022 | ||
7023 | return extension_die; | |
7024 | } | |
7025 | ||
c906108c SS |
7026 | /* Convert a DIE tag into its string name. */ |
7027 | ||
7028 | static char * | |
aa1ee363 | 7029 | dwarf_tag_name (unsigned tag) |
c906108c SS |
7030 | { |
7031 | switch (tag) | |
7032 | { | |
7033 | case DW_TAG_padding: | |
7034 | return "DW_TAG_padding"; | |
7035 | case DW_TAG_array_type: | |
7036 | return "DW_TAG_array_type"; | |
7037 | case DW_TAG_class_type: | |
7038 | return "DW_TAG_class_type"; | |
7039 | case DW_TAG_entry_point: | |
7040 | return "DW_TAG_entry_point"; | |
7041 | case DW_TAG_enumeration_type: | |
7042 | return "DW_TAG_enumeration_type"; | |
7043 | case DW_TAG_formal_parameter: | |
7044 | return "DW_TAG_formal_parameter"; | |
7045 | case DW_TAG_imported_declaration: | |
7046 | return "DW_TAG_imported_declaration"; | |
7047 | case DW_TAG_label: | |
7048 | return "DW_TAG_label"; | |
7049 | case DW_TAG_lexical_block: | |
7050 | return "DW_TAG_lexical_block"; | |
7051 | case DW_TAG_member: | |
7052 | return "DW_TAG_member"; | |
7053 | case DW_TAG_pointer_type: | |
7054 | return "DW_TAG_pointer_type"; | |
7055 | case DW_TAG_reference_type: | |
7056 | return "DW_TAG_reference_type"; | |
7057 | case DW_TAG_compile_unit: | |
7058 | return "DW_TAG_compile_unit"; | |
7059 | case DW_TAG_string_type: | |
7060 | return "DW_TAG_string_type"; | |
7061 | case DW_TAG_structure_type: | |
7062 | return "DW_TAG_structure_type"; | |
7063 | case DW_TAG_subroutine_type: | |
7064 | return "DW_TAG_subroutine_type"; | |
7065 | case DW_TAG_typedef: | |
7066 | return "DW_TAG_typedef"; | |
7067 | case DW_TAG_union_type: | |
7068 | return "DW_TAG_union_type"; | |
7069 | case DW_TAG_unspecified_parameters: | |
7070 | return "DW_TAG_unspecified_parameters"; | |
7071 | case DW_TAG_variant: | |
7072 | return "DW_TAG_variant"; | |
7073 | case DW_TAG_common_block: | |
7074 | return "DW_TAG_common_block"; | |
7075 | case DW_TAG_common_inclusion: | |
7076 | return "DW_TAG_common_inclusion"; | |
7077 | case DW_TAG_inheritance: | |
7078 | return "DW_TAG_inheritance"; | |
7079 | case DW_TAG_inlined_subroutine: | |
7080 | return "DW_TAG_inlined_subroutine"; | |
7081 | case DW_TAG_module: | |
7082 | return "DW_TAG_module"; | |
7083 | case DW_TAG_ptr_to_member_type: | |
7084 | return "DW_TAG_ptr_to_member_type"; | |
7085 | case DW_TAG_set_type: | |
7086 | return "DW_TAG_set_type"; | |
7087 | case DW_TAG_subrange_type: | |
7088 | return "DW_TAG_subrange_type"; | |
7089 | case DW_TAG_with_stmt: | |
7090 | return "DW_TAG_with_stmt"; | |
7091 | case DW_TAG_access_declaration: | |
7092 | return "DW_TAG_access_declaration"; | |
7093 | case DW_TAG_base_type: | |
7094 | return "DW_TAG_base_type"; | |
7095 | case DW_TAG_catch_block: | |
7096 | return "DW_TAG_catch_block"; | |
7097 | case DW_TAG_const_type: | |
7098 | return "DW_TAG_const_type"; | |
7099 | case DW_TAG_constant: | |
7100 | return "DW_TAG_constant"; | |
7101 | case DW_TAG_enumerator: | |
7102 | return "DW_TAG_enumerator"; | |
7103 | case DW_TAG_file_type: | |
7104 | return "DW_TAG_file_type"; | |
7105 | case DW_TAG_friend: | |
7106 | return "DW_TAG_friend"; | |
7107 | case DW_TAG_namelist: | |
7108 | return "DW_TAG_namelist"; | |
7109 | case DW_TAG_namelist_item: | |
7110 | return "DW_TAG_namelist_item"; | |
7111 | case DW_TAG_packed_type: | |
7112 | return "DW_TAG_packed_type"; | |
7113 | case DW_TAG_subprogram: | |
7114 | return "DW_TAG_subprogram"; | |
7115 | case DW_TAG_template_type_param: | |
7116 | return "DW_TAG_template_type_param"; | |
7117 | case DW_TAG_template_value_param: | |
7118 | return "DW_TAG_template_value_param"; | |
7119 | case DW_TAG_thrown_type: | |
7120 | return "DW_TAG_thrown_type"; | |
7121 | case DW_TAG_try_block: | |
7122 | return "DW_TAG_try_block"; | |
7123 | case DW_TAG_variant_part: | |
7124 | return "DW_TAG_variant_part"; | |
7125 | case DW_TAG_variable: | |
7126 | return "DW_TAG_variable"; | |
7127 | case DW_TAG_volatile_type: | |
7128 | return "DW_TAG_volatile_type"; | |
d9fa45fe DC |
7129 | case DW_TAG_dwarf_procedure: |
7130 | return "DW_TAG_dwarf_procedure"; | |
7131 | case DW_TAG_restrict_type: | |
7132 | return "DW_TAG_restrict_type"; | |
7133 | case DW_TAG_interface_type: | |
7134 | return "DW_TAG_interface_type"; | |
7135 | case DW_TAG_namespace: | |
7136 | return "DW_TAG_namespace"; | |
7137 | case DW_TAG_imported_module: | |
7138 | return "DW_TAG_imported_module"; | |
7139 | case DW_TAG_unspecified_type: | |
7140 | return "DW_TAG_unspecified_type"; | |
7141 | case DW_TAG_partial_unit: | |
7142 | return "DW_TAG_partial_unit"; | |
7143 | case DW_TAG_imported_unit: | |
7144 | return "DW_TAG_imported_unit"; | |
c906108c SS |
7145 | case DW_TAG_MIPS_loop: |
7146 | return "DW_TAG_MIPS_loop"; | |
7147 | case DW_TAG_format_label: | |
7148 | return "DW_TAG_format_label"; | |
7149 | case DW_TAG_function_template: | |
7150 | return "DW_TAG_function_template"; | |
7151 | case DW_TAG_class_template: | |
7152 | return "DW_TAG_class_template"; | |
7153 | default: | |
7154 | return "DW_TAG_<unknown>"; | |
7155 | } | |
7156 | } | |
7157 | ||
7158 | /* Convert a DWARF attribute code into its string name. */ | |
7159 | ||
7160 | static char * | |
aa1ee363 | 7161 | dwarf_attr_name (unsigned attr) |
c906108c SS |
7162 | { |
7163 | switch (attr) | |
7164 | { | |
7165 | case DW_AT_sibling: | |
7166 | return "DW_AT_sibling"; | |
7167 | case DW_AT_location: | |
7168 | return "DW_AT_location"; | |
7169 | case DW_AT_name: | |
7170 | return "DW_AT_name"; | |
7171 | case DW_AT_ordering: | |
7172 | return "DW_AT_ordering"; | |
7173 | case DW_AT_subscr_data: | |
7174 | return "DW_AT_subscr_data"; | |
7175 | case DW_AT_byte_size: | |
7176 | return "DW_AT_byte_size"; | |
7177 | case DW_AT_bit_offset: | |
7178 | return "DW_AT_bit_offset"; | |
7179 | case DW_AT_bit_size: | |
7180 | return "DW_AT_bit_size"; | |
7181 | case DW_AT_element_list: | |
7182 | return "DW_AT_element_list"; | |
7183 | case DW_AT_stmt_list: | |
7184 | return "DW_AT_stmt_list"; | |
7185 | case DW_AT_low_pc: | |
7186 | return "DW_AT_low_pc"; | |
7187 | case DW_AT_high_pc: | |
7188 | return "DW_AT_high_pc"; | |
7189 | case DW_AT_language: | |
7190 | return "DW_AT_language"; | |
7191 | case DW_AT_member: | |
7192 | return "DW_AT_member"; | |
7193 | case DW_AT_discr: | |
7194 | return "DW_AT_discr"; | |
7195 | case DW_AT_discr_value: | |
7196 | return "DW_AT_discr_value"; | |
7197 | case DW_AT_visibility: | |
7198 | return "DW_AT_visibility"; | |
7199 | case DW_AT_import: | |
7200 | return "DW_AT_import"; | |
7201 | case DW_AT_string_length: | |
7202 | return "DW_AT_string_length"; | |
7203 | case DW_AT_common_reference: | |
7204 | return "DW_AT_common_reference"; | |
7205 | case DW_AT_comp_dir: | |
7206 | return "DW_AT_comp_dir"; | |
7207 | case DW_AT_const_value: | |
7208 | return "DW_AT_const_value"; | |
7209 | case DW_AT_containing_type: | |
7210 | return "DW_AT_containing_type"; | |
7211 | case DW_AT_default_value: | |
7212 | return "DW_AT_default_value"; | |
7213 | case DW_AT_inline: | |
7214 | return "DW_AT_inline"; | |
7215 | case DW_AT_is_optional: | |
7216 | return "DW_AT_is_optional"; | |
7217 | case DW_AT_lower_bound: | |
7218 | return "DW_AT_lower_bound"; | |
7219 | case DW_AT_producer: | |
7220 | return "DW_AT_producer"; | |
7221 | case DW_AT_prototyped: | |
7222 | return "DW_AT_prototyped"; | |
7223 | case DW_AT_return_addr: | |
7224 | return "DW_AT_return_addr"; | |
7225 | case DW_AT_start_scope: | |
7226 | return "DW_AT_start_scope"; | |
7227 | case DW_AT_stride_size: | |
7228 | return "DW_AT_stride_size"; | |
7229 | case DW_AT_upper_bound: | |
7230 | return "DW_AT_upper_bound"; | |
7231 | case DW_AT_abstract_origin: | |
7232 | return "DW_AT_abstract_origin"; | |
7233 | case DW_AT_accessibility: | |
7234 | return "DW_AT_accessibility"; | |
7235 | case DW_AT_address_class: | |
7236 | return "DW_AT_address_class"; | |
7237 | case DW_AT_artificial: | |
7238 | return "DW_AT_artificial"; | |
7239 | case DW_AT_base_types: | |
7240 | return "DW_AT_base_types"; | |
7241 | case DW_AT_calling_convention: | |
7242 | return "DW_AT_calling_convention"; | |
7243 | case DW_AT_count: | |
7244 | return "DW_AT_count"; | |
7245 | case DW_AT_data_member_location: | |
7246 | return "DW_AT_data_member_location"; | |
7247 | case DW_AT_decl_column: | |
7248 | return "DW_AT_decl_column"; | |
7249 | case DW_AT_decl_file: | |
7250 | return "DW_AT_decl_file"; | |
7251 | case DW_AT_decl_line: | |
7252 | return "DW_AT_decl_line"; | |
7253 | case DW_AT_declaration: | |
7254 | return "DW_AT_declaration"; | |
7255 | case DW_AT_discr_list: | |
7256 | return "DW_AT_discr_list"; | |
7257 | case DW_AT_encoding: | |
7258 | return "DW_AT_encoding"; | |
7259 | case DW_AT_external: | |
7260 | return "DW_AT_external"; | |
7261 | case DW_AT_frame_base: | |
7262 | return "DW_AT_frame_base"; | |
7263 | case DW_AT_friend: | |
7264 | return "DW_AT_friend"; | |
7265 | case DW_AT_identifier_case: | |
7266 | return "DW_AT_identifier_case"; | |
7267 | case DW_AT_macro_info: | |
7268 | return "DW_AT_macro_info"; | |
7269 | case DW_AT_namelist_items: | |
7270 | return "DW_AT_namelist_items"; | |
7271 | case DW_AT_priority: | |
7272 | return "DW_AT_priority"; | |
7273 | case DW_AT_segment: | |
7274 | return "DW_AT_segment"; | |
7275 | case DW_AT_specification: | |
7276 | return "DW_AT_specification"; | |
7277 | case DW_AT_static_link: | |
7278 | return "DW_AT_static_link"; | |
7279 | case DW_AT_type: | |
7280 | return "DW_AT_type"; | |
7281 | case DW_AT_use_location: | |
7282 | return "DW_AT_use_location"; | |
7283 | case DW_AT_variable_parameter: | |
7284 | return "DW_AT_variable_parameter"; | |
7285 | case DW_AT_virtuality: | |
7286 | return "DW_AT_virtuality"; | |
7287 | case DW_AT_vtable_elem_location: | |
7288 | return "DW_AT_vtable_elem_location"; | |
d9fa45fe DC |
7289 | case DW_AT_allocated: |
7290 | return "DW_AT_allocated"; | |
7291 | case DW_AT_associated: | |
7292 | return "DW_AT_associated"; | |
7293 | case DW_AT_data_location: | |
7294 | return "DW_AT_data_location"; | |
7295 | case DW_AT_stride: | |
7296 | return "DW_AT_stride"; | |
7297 | case DW_AT_entry_pc: | |
7298 | return "DW_AT_entry_pc"; | |
7299 | case DW_AT_use_UTF8: | |
7300 | return "DW_AT_use_UTF8"; | |
7301 | case DW_AT_extension: | |
7302 | return "DW_AT_extension"; | |
7303 | case DW_AT_ranges: | |
7304 | return "DW_AT_ranges"; | |
7305 | case DW_AT_trampoline: | |
7306 | return "DW_AT_trampoline"; | |
7307 | case DW_AT_call_column: | |
7308 | return "DW_AT_call_column"; | |
7309 | case DW_AT_call_file: | |
7310 | return "DW_AT_call_file"; | |
7311 | case DW_AT_call_line: | |
7312 | return "DW_AT_call_line"; | |
c906108c SS |
7313 | #ifdef MIPS |
7314 | case DW_AT_MIPS_fde: | |
7315 | return "DW_AT_MIPS_fde"; | |
7316 | case DW_AT_MIPS_loop_begin: | |
7317 | return "DW_AT_MIPS_loop_begin"; | |
7318 | case DW_AT_MIPS_tail_loop_begin: | |
7319 | return "DW_AT_MIPS_tail_loop_begin"; | |
7320 | case DW_AT_MIPS_epilog_begin: | |
7321 | return "DW_AT_MIPS_epilog_begin"; | |
7322 | case DW_AT_MIPS_loop_unroll_factor: | |
7323 | return "DW_AT_MIPS_loop_unroll_factor"; | |
7324 | case DW_AT_MIPS_software_pipeline_depth: | |
7325 | return "DW_AT_MIPS_software_pipeline_depth"; | |
e0a4f5a1 | 7326 | #endif |
c906108c SS |
7327 | case DW_AT_MIPS_linkage_name: |
7328 | return "DW_AT_MIPS_linkage_name"; | |
c906108c SS |
7329 | |
7330 | case DW_AT_sf_names: | |
7331 | return "DW_AT_sf_names"; | |
7332 | case DW_AT_src_info: | |
7333 | return "DW_AT_src_info"; | |
7334 | case DW_AT_mac_info: | |
7335 | return "DW_AT_mac_info"; | |
7336 | case DW_AT_src_coords: | |
7337 | return "DW_AT_src_coords"; | |
7338 | case DW_AT_body_begin: | |
7339 | return "DW_AT_body_begin"; | |
7340 | case DW_AT_body_end: | |
7341 | return "DW_AT_body_end"; | |
f5f8a009 EZ |
7342 | case DW_AT_GNU_vector: |
7343 | return "DW_AT_GNU_vector"; | |
c906108c SS |
7344 | default: |
7345 | return "DW_AT_<unknown>"; | |
7346 | } | |
7347 | } | |
7348 | ||
7349 | /* Convert a DWARF value form code into its string name. */ | |
7350 | ||
7351 | static char * | |
aa1ee363 | 7352 | dwarf_form_name (unsigned form) |
c906108c SS |
7353 | { |
7354 | switch (form) | |
7355 | { | |
7356 | case DW_FORM_addr: | |
7357 | return "DW_FORM_addr"; | |
7358 | case DW_FORM_block2: | |
7359 | return "DW_FORM_block2"; | |
7360 | case DW_FORM_block4: | |
7361 | return "DW_FORM_block4"; | |
7362 | case DW_FORM_data2: | |
7363 | return "DW_FORM_data2"; | |
7364 | case DW_FORM_data4: | |
7365 | return "DW_FORM_data4"; | |
7366 | case DW_FORM_data8: | |
7367 | return "DW_FORM_data8"; | |
7368 | case DW_FORM_string: | |
7369 | return "DW_FORM_string"; | |
7370 | case DW_FORM_block: | |
7371 | return "DW_FORM_block"; | |
7372 | case DW_FORM_block1: | |
7373 | return "DW_FORM_block1"; | |
7374 | case DW_FORM_data1: | |
7375 | return "DW_FORM_data1"; | |
7376 | case DW_FORM_flag: | |
7377 | return "DW_FORM_flag"; | |
7378 | case DW_FORM_sdata: | |
7379 | return "DW_FORM_sdata"; | |
7380 | case DW_FORM_strp: | |
7381 | return "DW_FORM_strp"; | |
7382 | case DW_FORM_udata: | |
7383 | return "DW_FORM_udata"; | |
7384 | case DW_FORM_ref_addr: | |
7385 | return "DW_FORM_ref_addr"; | |
7386 | case DW_FORM_ref1: | |
7387 | return "DW_FORM_ref1"; | |
7388 | case DW_FORM_ref2: | |
7389 | return "DW_FORM_ref2"; | |
7390 | case DW_FORM_ref4: | |
7391 | return "DW_FORM_ref4"; | |
7392 | case DW_FORM_ref8: | |
7393 | return "DW_FORM_ref8"; | |
7394 | case DW_FORM_ref_udata: | |
7395 | return "DW_FORM_ref_udata"; | |
7396 | case DW_FORM_indirect: | |
7397 | return "DW_FORM_indirect"; | |
7398 | default: | |
7399 | return "DW_FORM_<unknown>"; | |
7400 | } | |
7401 | } | |
7402 | ||
7403 | /* Convert a DWARF stack opcode into its string name. */ | |
7404 | ||
7405 | static char * | |
aa1ee363 | 7406 | dwarf_stack_op_name (unsigned op) |
c906108c SS |
7407 | { |
7408 | switch (op) | |
7409 | { | |
7410 | case DW_OP_addr: | |
7411 | return "DW_OP_addr"; | |
7412 | case DW_OP_deref: | |
7413 | return "DW_OP_deref"; | |
7414 | case DW_OP_const1u: | |
7415 | return "DW_OP_const1u"; | |
7416 | case DW_OP_const1s: | |
7417 | return "DW_OP_const1s"; | |
7418 | case DW_OP_const2u: | |
7419 | return "DW_OP_const2u"; | |
7420 | case DW_OP_const2s: | |
7421 | return "DW_OP_const2s"; | |
7422 | case DW_OP_const4u: | |
7423 | return "DW_OP_const4u"; | |
7424 | case DW_OP_const4s: | |
7425 | return "DW_OP_const4s"; | |
7426 | case DW_OP_const8u: | |
7427 | return "DW_OP_const8u"; | |
7428 | case DW_OP_const8s: | |
7429 | return "DW_OP_const8s"; | |
7430 | case DW_OP_constu: | |
7431 | return "DW_OP_constu"; | |
7432 | case DW_OP_consts: | |
7433 | return "DW_OP_consts"; | |
7434 | case DW_OP_dup: | |
7435 | return "DW_OP_dup"; | |
7436 | case DW_OP_drop: | |
7437 | return "DW_OP_drop"; | |
7438 | case DW_OP_over: | |
7439 | return "DW_OP_over"; | |
7440 | case DW_OP_pick: | |
7441 | return "DW_OP_pick"; | |
7442 | case DW_OP_swap: | |
7443 | return "DW_OP_swap"; | |
7444 | case DW_OP_rot: | |
7445 | return "DW_OP_rot"; | |
7446 | case DW_OP_xderef: | |
7447 | return "DW_OP_xderef"; | |
7448 | case DW_OP_abs: | |
7449 | return "DW_OP_abs"; | |
7450 | case DW_OP_and: | |
7451 | return "DW_OP_and"; | |
7452 | case DW_OP_div: | |
7453 | return "DW_OP_div"; | |
7454 | case DW_OP_minus: | |
7455 | return "DW_OP_minus"; | |
7456 | case DW_OP_mod: | |
7457 | return "DW_OP_mod"; | |
7458 | case DW_OP_mul: | |
7459 | return "DW_OP_mul"; | |
7460 | case DW_OP_neg: | |
7461 | return "DW_OP_neg"; | |
7462 | case DW_OP_not: | |
7463 | return "DW_OP_not"; | |
7464 | case DW_OP_or: | |
7465 | return "DW_OP_or"; | |
7466 | case DW_OP_plus: | |
7467 | return "DW_OP_plus"; | |
7468 | case DW_OP_plus_uconst: | |
7469 | return "DW_OP_plus_uconst"; | |
7470 | case DW_OP_shl: | |
7471 | return "DW_OP_shl"; | |
7472 | case DW_OP_shr: | |
7473 | return "DW_OP_shr"; | |
7474 | case DW_OP_shra: | |
7475 | return "DW_OP_shra"; | |
7476 | case DW_OP_xor: | |
7477 | return "DW_OP_xor"; | |
7478 | case DW_OP_bra: | |
7479 | return "DW_OP_bra"; | |
7480 | case DW_OP_eq: | |
7481 | return "DW_OP_eq"; | |
7482 | case DW_OP_ge: | |
7483 | return "DW_OP_ge"; | |
7484 | case DW_OP_gt: | |
7485 | return "DW_OP_gt"; | |
7486 | case DW_OP_le: | |
7487 | return "DW_OP_le"; | |
7488 | case DW_OP_lt: | |
7489 | return "DW_OP_lt"; | |
7490 | case DW_OP_ne: | |
7491 | return "DW_OP_ne"; | |
7492 | case DW_OP_skip: | |
7493 | return "DW_OP_skip"; | |
7494 | case DW_OP_lit0: | |
7495 | return "DW_OP_lit0"; | |
7496 | case DW_OP_lit1: | |
7497 | return "DW_OP_lit1"; | |
7498 | case DW_OP_lit2: | |
7499 | return "DW_OP_lit2"; | |
7500 | case DW_OP_lit3: | |
7501 | return "DW_OP_lit3"; | |
7502 | case DW_OP_lit4: | |
7503 | return "DW_OP_lit4"; | |
7504 | case DW_OP_lit5: | |
7505 | return "DW_OP_lit5"; | |
7506 | case DW_OP_lit6: | |
7507 | return "DW_OP_lit6"; | |
7508 | case DW_OP_lit7: | |
7509 | return "DW_OP_lit7"; | |
7510 | case DW_OP_lit8: | |
7511 | return "DW_OP_lit8"; | |
7512 | case DW_OP_lit9: | |
7513 | return "DW_OP_lit9"; | |
7514 | case DW_OP_lit10: | |
7515 | return "DW_OP_lit10"; | |
7516 | case DW_OP_lit11: | |
7517 | return "DW_OP_lit11"; | |
7518 | case DW_OP_lit12: | |
7519 | return "DW_OP_lit12"; | |
7520 | case DW_OP_lit13: | |
7521 | return "DW_OP_lit13"; | |
7522 | case DW_OP_lit14: | |
7523 | return "DW_OP_lit14"; | |
7524 | case DW_OP_lit15: | |
7525 | return "DW_OP_lit15"; | |
7526 | case DW_OP_lit16: | |
7527 | return "DW_OP_lit16"; | |
7528 | case DW_OP_lit17: | |
7529 | return "DW_OP_lit17"; | |
7530 | case DW_OP_lit18: | |
7531 | return "DW_OP_lit18"; | |
7532 | case DW_OP_lit19: | |
7533 | return "DW_OP_lit19"; | |
7534 | case DW_OP_lit20: | |
7535 | return "DW_OP_lit20"; | |
7536 | case DW_OP_lit21: | |
7537 | return "DW_OP_lit21"; | |
7538 | case DW_OP_lit22: | |
7539 | return "DW_OP_lit22"; | |
7540 | case DW_OP_lit23: | |
7541 | return "DW_OP_lit23"; | |
7542 | case DW_OP_lit24: | |
7543 | return "DW_OP_lit24"; | |
7544 | case DW_OP_lit25: | |
7545 | return "DW_OP_lit25"; | |
7546 | case DW_OP_lit26: | |
7547 | return "DW_OP_lit26"; | |
7548 | case DW_OP_lit27: | |
7549 | return "DW_OP_lit27"; | |
7550 | case DW_OP_lit28: | |
7551 | return "DW_OP_lit28"; | |
7552 | case DW_OP_lit29: | |
7553 | return "DW_OP_lit29"; | |
7554 | case DW_OP_lit30: | |
7555 | return "DW_OP_lit30"; | |
7556 | case DW_OP_lit31: | |
7557 | return "DW_OP_lit31"; | |
7558 | case DW_OP_reg0: | |
7559 | return "DW_OP_reg0"; | |
7560 | case DW_OP_reg1: | |
7561 | return "DW_OP_reg1"; | |
7562 | case DW_OP_reg2: | |
7563 | return "DW_OP_reg2"; | |
7564 | case DW_OP_reg3: | |
7565 | return "DW_OP_reg3"; | |
7566 | case DW_OP_reg4: | |
7567 | return "DW_OP_reg4"; | |
7568 | case DW_OP_reg5: | |
7569 | return "DW_OP_reg5"; | |
7570 | case DW_OP_reg6: | |
7571 | return "DW_OP_reg6"; | |
7572 | case DW_OP_reg7: | |
7573 | return "DW_OP_reg7"; | |
7574 | case DW_OP_reg8: | |
7575 | return "DW_OP_reg8"; | |
7576 | case DW_OP_reg9: | |
7577 | return "DW_OP_reg9"; | |
7578 | case DW_OP_reg10: | |
7579 | return "DW_OP_reg10"; | |
7580 | case DW_OP_reg11: | |
7581 | return "DW_OP_reg11"; | |
7582 | case DW_OP_reg12: | |
7583 | return "DW_OP_reg12"; | |
7584 | case DW_OP_reg13: | |
7585 | return "DW_OP_reg13"; | |
7586 | case DW_OP_reg14: | |
7587 | return "DW_OP_reg14"; | |
7588 | case DW_OP_reg15: | |
7589 | return "DW_OP_reg15"; | |
7590 | case DW_OP_reg16: | |
7591 | return "DW_OP_reg16"; | |
7592 | case DW_OP_reg17: | |
7593 | return "DW_OP_reg17"; | |
7594 | case DW_OP_reg18: | |
7595 | return "DW_OP_reg18"; | |
7596 | case DW_OP_reg19: | |
7597 | return "DW_OP_reg19"; | |
7598 | case DW_OP_reg20: | |
7599 | return "DW_OP_reg20"; | |
7600 | case DW_OP_reg21: | |
7601 | return "DW_OP_reg21"; | |
7602 | case DW_OP_reg22: | |
7603 | return "DW_OP_reg22"; | |
7604 | case DW_OP_reg23: | |
7605 | return "DW_OP_reg23"; | |
7606 | case DW_OP_reg24: | |
7607 | return "DW_OP_reg24"; | |
7608 | case DW_OP_reg25: | |
7609 | return "DW_OP_reg25"; | |
7610 | case DW_OP_reg26: | |
7611 | return "DW_OP_reg26"; | |
7612 | case DW_OP_reg27: | |
7613 | return "DW_OP_reg27"; | |
7614 | case DW_OP_reg28: | |
7615 | return "DW_OP_reg28"; | |
7616 | case DW_OP_reg29: | |
7617 | return "DW_OP_reg29"; | |
7618 | case DW_OP_reg30: | |
7619 | return "DW_OP_reg30"; | |
7620 | case DW_OP_reg31: | |
7621 | return "DW_OP_reg31"; | |
7622 | case DW_OP_breg0: | |
7623 | return "DW_OP_breg0"; | |
7624 | case DW_OP_breg1: | |
7625 | return "DW_OP_breg1"; | |
7626 | case DW_OP_breg2: | |
7627 | return "DW_OP_breg2"; | |
7628 | case DW_OP_breg3: | |
7629 | return "DW_OP_breg3"; | |
7630 | case DW_OP_breg4: | |
7631 | return "DW_OP_breg4"; | |
7632 | case DW_OP_breg5: | |
7633 | return "DW_OP_breg5"; | |
7634 | case DW_OP_breg6: | |
7635 | return "DW_OP_breg6"; | |
7636 | case DW_OP_breg7: | |
7637 | return "DW_OP_breg7"; | |
7638 | case DW_OP_breg8: | |
7639 | return "DW_OP_breg8"; | |
7640 | case DW_OP_breg9: | |
7641 | return "DW_OP_breg9"; | |
7642 | case DW_OP_breg10: | |
7643 | return "DW_OP_breg10"; | |
7644 | case DW_OP_breg11: | |
7645 | return "DW_OP_breg11"; | |
7646 | case DW_OP_breg12: | |
7647 | return "DW_OP_breg12"; | |
7648 | case DW_OP_breg13: | |
7649 | return "DW_OP_breg13"; | |
7650 | case DW_OP_breg14: | |
7651 | return "DW_OP_breg14"; | |
7652 | case DW_OP_breg15: | |
7653 | return "DW_OP_breg15"; | |
7654 | case DW_OP_breg16: | |
7655 | return "DW_OP_breg16"; | |
7656 | case DW_OP_breg17: | |
7657 | return "DW_OP_breg17"; | |
7658 | case DW_OP_breg18: | |
7659 | return "DW_OP_breg18"; | |
7660 | case DW_OP_breg19: | |
7661 | return "DW_OP_breg19"; | |
7662 | case DW_OP_breg20: | |
7663 | return "DW_OP_breg20"; | |
7664 | case DW_OP_breg21: | |
7665 | return "DW_OP_breg21"; | |
7666 | case DW_OP_breg22: | |
7667 | return "DW_OP_breg22"; | |
7668 | case DW_OP_breg23: | |
7669 | return "DW_OP_breg23"; | |
7670 | case DW_OP_breg24: | |
7671 | return "DW_OP_breg24"; | |
7672 | case DW_OP_breg25: | |
7673 | return "DW_OP_breg25"; | |
7674 | case DW_OP_breg26: | |
7675 | return "DW_OP_breg26"; | |
7676 | case DW_OP_breg27: | |
7677 | return "DW_OP_breg27"; | |
7678 | case DW_OP_breg28: | |
7679 | return "DW_OP_breg28"; | |
7680 | case DW_OP_breg29: | |
7681 | return "DW_OP_breg29"; | |
7682 | case DW_OP_breg30: | |
7683 | return "DW_OP_breg30"; | |
7684 | case DW_OP_breg31: | |
7685 | return "DW_OP_breg31"; | |
7686 | case DW_OP_regx: | |
7687 | return "DW_OP_regx"; | |
7688 | case DW_OP_fbreg: | |
7689 | return "DW_OP_fbreg"; | |
7690 | case DW_OP_bregx: | |
7691 | return "DW_OP_bregx"; | |
7692 | case DW_OP_piece: | |
7693 | return "DW_OP_piece"; | |
7694 | case DW_OP_deref_size: | |
7695 | return "DW_OP_deref_size"; | |
7696 | case DW_OP_xderef_size: | |
7697 | return "DW_OP_xderef_size"; | |
7698 | case DW_OP_nop: | |
7699 | return "DW_OP_nop"; | |
ed348acc EZ |
7700 | /* DWARF 3 extensions. */ |
7701 | case DW_OP_push_object_address: | |
7702 | return "DW_OP_push_object_address"; | |
7703 | case DW_OP_call2: | |
7704 | return "DW_OP_call2"; | |
7705 | case DW_OP_call4: | |
7706 | return "DW_OP_call4"; | |
7707 | case DW_OP_call_ref: | |
7708 | return "DW_OP_call_ref"; | |
7709 | /* GNU extensions. */ | |
7710 | case DW_OP_GNU_push_tls_address: | |
7711 | return "DW_OP_GNU_push_tls_address"; | |
c906108c SS |
7712 | default: |
7713 | return "OP_<unknown>"; | |
7714 | } | |
7715 | } | |
7716 | ||
7717 | static char * | |
fba45db2 | 7718 | dwarf_bool_name (unsigned mybool) |
c906108c SS |
7719 | { |
7720 | if (mybool) | |
7721 | return "TRUE"; | |
7722 | else | |
7723 | return "FALSE"; | |
7724 | } | |
7725 | ||
7726 | /* Convert a DWARF type code into its string name. */ | |
7727 | ||
7728 | static char * | |
aa1ee363 | 7729 | dwarf_type_encoding_name (unsigned enc) |
c906108c SS |
7730 | { |
7731 | switch (enc) | |
7732 | { | |
7733 | case DW_ATE_address: | |
7734 | return "DW_ATE_address"; | |
7735 | case DW_ATE_boolean: | |
7736 | return "DW_ATE_boolean"; | |
7737 | case DW_ATE_complex_float: | |
7738 | return "DW_ATE_complex_float"; | |
7739 | case DW_ATE_float: | |
7740 | return "DW_ATE_float"; | |
7741 | case DW_ATE_signed: | |
7742 | return "DW_ATE_signed"; | |
7743 | case DW_ATE_signed_char: | |
7744 | return "DW_ATE_signed_char"; | |
7745 | case DW_ATE_unsigned: | |
7746 | return "DW_ATE_unsigned"; | |
7747 | case DW_ATE_unsigned_char: | |
7748 | return "DW_ATE_unsigned_char"; | |
d9fa45fe DC |
7749 | case DW_ATE_imaginary_float: |
7750 | return "DW_ATE_imaginary_float"; | |
c906108c SS |
7751 | default: |
7752 | return "DW_ATE_<unknown>"; | |
7753 | } | |
7754 | } | |
7755 | ||
7756 | /* Convert a DWARF call frame info operation to its string name. */ | |
7757 | ||
7758 | #if 0 | |
7759 | static char * | |
aa1ee363 | 7760 | dwarf_cfi_name (unsigned cfi_opc) |
c906108c SS |
7761 | { |
7762 | switch (cfi_opc) | |
7763 | { | |
7764 | case DW_CFA_advance_loc: | |
7765 | return "DW_CFA_advance_loc"; | |
7766 | case DW_CFA_offset: | |
7767 | return "DW_CFA_offset"; | |
7768 | case DW_CFA_restore: | |
7769 | return "DW_CFA_restore"; | |
7770 | case DW_CFA_nop: | |
7771 | return "DW_CFA_nop"; | |
7772 | case DW_CFA_set_loc: | |
7773 | return "DW_CFA_set_loc"; | |
7774 | case DW_CFA_advance_loc1: | |
7775 | return "DW_CFA_advance_loc1"; | |
7776 | case DW_CFA_advance_loc2: | |
7777 | return "DW_CFA_advance_loc2"; | |
7778 | case DW_CFA_advance_loc4: | |
7779 | return "DW_CFA_advance_loc4"; | |
7780 | case DW_CFA_offset_extended: | |
7781 | return "DW_CFA_offset_extended"; | |
7782 | case DW_CFA_restore_extended: | |
7783 | return "DW_CFA_restore_extended"; | |
7784 | case DW_CFA_undefined: | |
7785 | return "DW_CFA_undefined"; | |
7786 | case DW_CFA_same_value: | |
7787 | return "DW_CFA_same_value"; | |
7788 | case DW_CFA_register: | |
7789 | return "DW_CFA_register"; | |
7790 | case DW_CFA_remember_state: | |
7791 | return "DW_CFA_remember_state"; | |
7792 | case DW_CFA_restore_state: | |
7793 | return "DW_CFA_restore_state"; | |
7794 | case DW_CFA_def_cfa: | |
7795 | return "DW_CFA_def_cfa"; | |
7796 | case DW_CFA_def_cfa_register: | |
7797 | return "DW_CFA_def_cfa_register"; | |
7798 | case DW_CFA_def_cfa_offset: | |
7799 | return "DW_CFA_def_cfa_offset"; | |
985cb1a3 JM |
7800 | |
7801 | /* DWARF 3 */ | |
7802 | case DW_CFA_def_cfa_expression: | |
7803 | return "DW_CFA_def_cfa_expression"; | |
7804 | case DW_CFA_expression: | |
7805 | return "DW_CFA_expression"; | |
7806 | case DW_CFA_offset_extended_sf: | |
7807 | return "DW_CFA_offset_extended_sf"; | |
7808 | case DW_CFA_def_cfa_sf: | |
7809 | return "DW_CFA_def_cfa_sf"; | |
7810 | case DW_CFA_def_cfa_offset_sf: | |
7811 | return "DW_CFA_def_cfa_offset_sf"; | |
7812 | ||
c906108c SS |
7813 | /* SGI/MIPS specific */ |
7814 | case DW_CFA_MIPS_advance_loc8: | |
7815 | return "DW_CFA_MIPS_advance_loc8"; | |
985cb1a3 JM |
7816 | |
7817 | /* GNU extensions */ | |
7818 | case DW_CFA_GNU_window_save: | |
7819 | return "DW_CFA_GNU_window_save"; | |
7820 | case DW_CFA_GNU_args_size: | |
7821 | return "DW_CFA_GNU_args_size"; | |
7822 | case DW_CFA_GNU_negative_offset_extended: | |
7823 | return "DW_CFA_GNU_negative_offset_extended"; | |
7824 | ||
c906108c SS |
7825 | default: |
7826 | return "DW_CFA_<unknown>"; | |
7827 | } | |
7828 | } | |
7829 | #endif | |
7830 | ||
f9aca02d | 7831 | static void |
fba45db2 | 7832 | dump_die (struct die_info *die) |
c906108c SS |
7833 | { |
7834 | unsigned int i; | |
7835 | ||
48cd0caa | 7836 | fprintf_unfiltered (gdb_stderr, "Die: %s (abbrev = %d, offset = %d)\n", |
c906108c | 7837 | dwarf_tag_name (die->tag), die->abbrev, die->offset); |
48cd0caa | 7838 | fprintf_unfiltered (gdb_stderr, "\thas children: %s\n", |
639d11d3 | 7839 | dwarf_bool_name (die->child != NULL)); |
c906108c | 7840 | |
48cd0caa | 7841 | fprintf_unfiltered (gdb_stderr, "\tattributes:\n"); |
c906108c SS |
7842 | for (i = 0; i < die->num_attrs; ++i) |
7843 | { | |
48cd0caa | 7844 | fprintf_unfiltered (gdb_stderr, "\t\t%s (%s) ", |
c906108c SS |
7845 | dwarf_attr_name (die->attrs[i].name), |
7846 | dwarf_form_name (die->attrs[i].form)); | |
7847 | switch (die->attrs[i].form) | |
7848 | { | |
7849 | case DW_FORM_ref_addr: | |
7850 | case DW_FORM_addr: | |
48cd0caa | 7851 | fprintf_unfiltered (gdb_stderr, "address: "); |
c906108c SS |
7852 | print_address_numeric (DW_ADDR (&die->attrs[i]), 1, gdb_stderr); |
7853 | break; | |
7854 | case DW_FORM_block2: | |
7855 | case DW_FORM_block4: | |
7856 | case DW_FORM_block: | |
7857 | case DW_FORM_block1: | |
48cd0caa | 7858 | fprintf_unfiltered (gdb_stderr, "block: size %d", DW_BLOCK (&die->attrs[i])->size); |
c906108c SS |
7859 | break; |
7860 | case DW_FORM_data1: | |
7861 | case DW_FORM_data2: | |
7862 | case DW_FORM_data4: | |
ce5d95e1 | 7863 | case DW_FORM_data8: |
c906108c SS |
7864 | case DW_FORM_ref1: |
7865 | case DW_FORM_ref2: | |
7866 | case DW_FORM_ref4: | |
7867 | case DW_FORM_udata: | |
7868 | case DW_FORM_sdata: | |
48cd0caa | 7869 | fprintf_unfiltered (gdb_stderr, "constant: %ld", DW_UNSND (&die->attrs[i])); |
c906108c SS |
7870 | break; |
7871 | case DW_FORM_string: | |
4bdf3d34 | 7872 | case DW_FORM_strp: |
48cd0caa | 7873 | fprintf_unfiltered (gdb_stderr, "string: \"%s\"", |
c906108c | 7874 | DW_STRING (&die->attrs[i]) |
c5aa993b | 7875 | ? DW_STRING (&die->attrs[i]) : ""); |
c906108c SS |
7876 | break; |
7877 | case DW_FORM_flag: | |
7878 | if (DW_UNSND (&die->attrs[i])) | |
48cd0caa | 7879 | fprintf_unfiltered (gdb_stderr, "flag: TRUE"); |
c906108c | 7880 | else |
48cd0caa | 7881 | fprintf_unfiltered (gdb_stderr, "flag: FALSE"); |
c906108c | 7882 | break; |
a8329558 KW |
7883 | case DW_FORM_indirect: |
7884 | /* the reader will have reduced the indirect form to | |
7885 | the "base form" so this form should not occur */ | |
48cd0caa | 7886 | fprintf_unfiltered (gdb_stderr, "unexpected attribute form: DW_FORM_indirect"); |
a8329558 | 7887 | break; |
c906108c | 7888 | default: |
48cd0caa | 7889 | fprintf_unfiltered (gdb_stderr, "unsupported attribute form: %d.", |
c5aa993b | 7890 | die->attrs[i].form); |
c906108c | 7891 | } |
48cd0caa | 7892 | fprintf_unfiltered (gdb_stderr, "\n"); |
c906108c SS |
7893 | } |
7894 | } | |
7895 | ||
f9aca02d | 7896 | static void |
fba45db2 | 7897 | dump_die_list (struct die_info *die) |
c906108c SS |
7898 | { |
7899 | while (die) | |
7900 | { | |
7901 | dump_die (die); | |
639d11d3 DC |
7902 | if (die->child != NULL) |
7903 | dump_die_list (die->child); | |
7904 | if (die->sibling != NULL) | |
7905 | dump_die_list (die->sibling); | |
c906108c SS |
7906 | } |
7907 | } | |
7908 | ||
f9aca02d | 7909 | static void |
fba45db2 | 7910 | store_in_ref_table (unsigned int offset, struct die_info *die) |
c906108c SS |
7911 | { |
7912 | int h; | |
7913 | struct die_info *old; | |
7914 | ||
7915 | h = (offset % REF_HASH_SIZE); | |
7916 | old = die_ref_table[h]; | |
7917 | die->next_ref = old; | |
7918 | die_ref_table[h] = die; | |
7919 | } | |
7920 | ||
7921 | ||
7922 | static void | |
fba45db2 | 7923 | dwarf2_empty_hash_tables (void) |
c906108c SS |
7924 | { |
7925 | memset (die_ref_table, 0, sizeof (die_ref_table)); | |
7926 | } | |
7927 | ||
7928 | static unsigned int | |
e142c38c | 7929 | dwarf2_get_ref_die_offset (struct attribute *attr, struct dwarf2_cu *cu) |
c906108c SS |
7930 | { |
7931 | unsigned int result = 0; | |
7932 | ||
7933 | switch (attr->form) | |
7934 | { | |
7935 | case DW_FORM_ref_addr: | |
7936 | result = DW_ADDR (attr); | |
7937 | break; | |
7938 | case DW_FORM_ref1: | |
7939 | case DW_FORM_ref2: | |
7940 | case DW_FORM_ref4: | |
613e1657 | 7941 | case DW_FORM_ref8: |
c906108c | 7942 | case DW_FORM_ref_udata: |
e142c38c | 7943 | result = cu->header.offset + DW_UNSND (attr); |
c906108c SS |
7944 | break; |
7945 | default: | |
4d3c2250 KB |
7946 | complaint (&symfile_complaints, |
7947 | "unsupported die ref attribute form: '%s'", | |
7948 | dwarf_form_name (attr->form)); | |
c906108c SS |
7949 | } |
7950 | return result; | |
7951 | } | |
7952 | ||
a02abb62 JB |
7953 | /* Return the constant value held by the given attribute. Return -1 |
7954 | if the value held by the attribute is not constant. */ | |
7955 | ||
7956 | static int | |
7957 | dwarf2_get_attr_constant_value (struct attribute *attr, int default_value) | |
7958 | { | |
7959 | if (attr->form == DW_FORM_sdata) | |
7960 | return DW_SND (attr); | |
7961 | else if (attr->form == DW_FORM_udata | |
7962 | || attr->form == DW_FORM_data1 | |
7963 | || attr->form == DW_FORM_data2 | |
7964 | || attr->form == DW_FORM_data4 | |
7965 | || attr->form == DW_FORM_data8) | |
7966 | return DW_UNSND (attr); | |
7967 | else | |
7968 | { | |
7969 | complaint (&symfile_complaints, "Attribute value is not a constant (%s)", | |
7970 | dwarf_form_name (attr->form)); | |
7971 | return default_value; | |
7972 | } | |
7973 | } | |
7974 | ||
f9aca02d | 7975 | static struct die_info * |
fba45db2 | 7976 | follow_die_ref (unsigned int offset) |
c906108c SS |
7977 | { |
7978 | struct die_info *die; | |
7979 | int h; | |
7980 | ||
7981 | h = (offset % REF_HASH_SIZE); | |
7982 | die = die_ref_table[h]; | |
7983 | while (die) | |
7984 | { | |
7985 | if (die->offset == offset) | |
7986 | { | |
7987 | return die; | |
7988 | } | |
7989 | die = die->next_ref; | |
7990 | } | |
7991 | return NULL; | |
7992 | } | |
7993 | ||
7994 | static struct type * | |
e142c38c DJ |
7995 | dwarf2_fundamental_type (struct objfile *objfile, int typeid, |
7996 | struct dwarf2_cu *cu) | |
c906108c SS |
7997 | { |
7998 | if (typeid < 0 || typeid >= FT_NUM_MEMBERS) | |
7999 | { | |
659b0389 ML |
8000 | error ("Dwarf Error: internal error - invalid fundamental type id %d [in module %s]", |
8001 | typeid, objfile->name); | |
c906108c SS |
8002 | } |
8003 | ||
8004 | /* Look for this particular type in the fundamental type vector. If | |
8005 | one is not found, create and install one appropriate for the | |
8006 | current language and the current target machine. */ | |
8007 | ||
e142c38c | 8008 | if (cu->ftypes[typeid] == NULL) |
c906108c | 8009 | { |
e142c38c | 8010 | cu->ftypes[typeid] = cu->language_defn->la_fund_type (objfile, typeid); |
c906108c SS |
8011 | } |
8012 | ||
e142c38c | 8013 | return (cu->ftypes[typeid]); |
c906108c SS |
8014 | } |
8015 | ||
8016 | /* Decode simple location descriptions. | |
8017 | Given a pointer to a dwarf block that defines a location, compute | |
8018 | the location and return the value. | |
8019 | ||
4cecd739 DJ |
8020 | NOTE drow/2003-11-18: This function is called in two situations |
8021 | now: for the address of static or global variables (partial symbols | |
8022 | only) and for offsets into structures which are expected to be | |
8023 | (more or less) constant. The partial symbol case should go away, | |
8024 | and only the constant case should remain. That will let this | |
8025 | function complain more accurately. A few special modes are allowed | |
8026 | without complaint for global variables (for instance, global | |
8027 | register values and thread-local values). | |
c906108c SS |
8028 | |
8029 | A location description containing no operations indicates that the | |
4cecd739 | 8030 | object is optimized out. The return value is 0 for that case. |
6b992462 DJ |
8031 | FIXME drow/2003-11-16: No callers check for this case any more; soon all |
8032 | callers will only want a very basic result and this can become a | |
8033 | complaint. | |
c906108c SS |
8034 | |
8035 | When the result is a register number, the global isreg flag is set, | |
8036 | otherwise it is cleared. | |
8037 | ||
c906108c SS |
8038 | Note that stack[0] is unused except as a default error return. |
8039 | Note that stack overflow is not yet handled. */ | |
8040 | ||
8041 | static CORE_ADDR | |
e7c27a73 | 8042 | decode_locdesc (struct dwarf_block *blk, struct dwarf2_cu *cu) |
c906108c | 8043 | { |
e7c27a73 DJ |
8044 | struct objfile *objfile = cu->objfile; |
8045 | struct comp_unit_head *cu_header = &cu->header; | |
c906108c SS |
8046 | int i; |
8047 | int size = blk->size; | |
8048 | char *data = blk->data; | |
8049 | CORE_ADDR stack[64]; | |
8050 | int stacki; | |
8051 | unsigned int bytes_read, unsnd; | |
8052 | unsigned char op; | |
8053 | ||
8054 | i = 0; | |
8055 | stacki = 0; | |
8056 | stack[stacki] = 0; | |
8057 | isreg = 0; | |
c906108c SS |
8058 | |
8059 | while (i < size) | |
8060 | { | |
c906108c SS |
8061 | op = data[i++]; |
8062 | switch (op) | |
8063 | { | |
f1bea926 JM |
8064 | case DW_OP_lit0: |
8065 | case DW_OP_lit1: | |
8066 | case DW_OP_lit2: | |
8067 | case DW_OP_lit3: | |
8068 | case DW_OP_lit4: | |
8069 | case DW_OP_lit5: | |
8070 | case DW_OP_lit6: | |
8071 | case DW_OP_lit7: | |
8072 | case DW_OP_lit8: | |
8073 | case DW_OP_lit9: | |
8074 | case DW_OP_lit10: | |
8075 | case DW_OP_lit11: | |
8076 | case DW_OP_lit12: | |
8077 | case DW_OP_lit13: | |
8078 | case DW_OP_lit14: | |
8079 | case DW_OP_lit15: | |
8080 | case DW_OP_lit16: | |
8081 | case DW_OP_lit17: | |
8082 | case DW_OP_lit18: | |
8083 | case DW_OP_lit19: | |
8084 | case DW_OP_lit20: | |
8085 | case DW_OP_lit21: | |
8086 | case DW_OP_lit22: | |
8087 | case DW_OP_lit23: | |
8088 | case DW_OP_lit24: | |
8089 | case DW_OP_lit25: | |
8090 | case DW_OP_lit26: | |
8091 | case DW_OP_lit27: | |
8092 | case DW_OP_lit28: | |
8093 | case DW_OP_lit29: | |
8094 | case DW_OP_lit30: | |
8095 | case DW_OP_lit31: | |
8096 | stack[++stacki] = op - DW_OP_lit0; | |
8097 | break; | |
8098 | ||
c906108c SS |
8099 | case DW_OP_reg0: |
8100 | case DW_OP_reg1: | |
8101 | case DW_OP_reg2: | |
8102 | case DW_OP_reg3: | |
8103 | case DW_OP_reg4: | |
8104 | case DW_OP_reg5: | |
8105 | case DW_OP_reg6: | |
8106 | case DW_OP_reg7: | |
8107 | case DW_OP_reg8: | |
8108 | case DW_OP_reg9: | |
8109 | case DW_OP_reg10: | |
8110 | case DW_OP_reg11: | |
8111 | case DW_OP_reg12: | |
8112 | case DW_OP_reg13: | |
8113 | case DW_OP_reg14: | |
8114 | case DW_OP_reg15: | |
8115 | case DW_OP_reg16: | |
8116 | case DW_OP_reg17: | |
8117 | case DW_OP_reg18: | |
8118 | case DW_OP_reg19: | |
8119 | case DW_OP_reg20: | |
8120 | case DW_OP_reg21: | |
8121 | case DW_OP_reg22: | |
8122 | case DW_OP_reg23: | |
8123 | case DW_OP_reg24: | |
8124 | case DW_OP_reg25: | |
8125 | case DW_OP_reg26: | |
8126 | case DW_OP_reg27: | |
8127 | case DW_OP_reg28: | |
8128 | case DW_OP_reg29: | |
8129 | case DW_OP_reg30: | |
8130 | case DW_OP_reg31: | |
8131 | isreg = 1; | |
8132 | stack[++stacki] = op - DW_OP_reg0; | |
4cecd739 DJ |
8133 | if (i < size) |
8134 | dwarf2_complex_location_expr_complaint (); | |
c906108c SS |
8135 | break; |
8136 | ||
8137 | case DW_OP_regx: | |
8138 | isreg = 1; | |
8139 | unsnd = read_unsigned_leb128 (NULL, (data + i), &bytes_read); | |
8140 | i += bytes_read; | |
c906108c | 8141 | stack[++stacki] = unsnd; |
4cecd739 DJ |
8142 | if (i < size) |
8143 | dwarf2_complex_location_expr_complaint (); | |
c906108c SS |
8144 | break; |
8145 | ||
8146 | case DW_OP_addr: | |
107d2387 | 8147 | stack[++stacki] = read_address (objfile->obfd, &data[i], |
e7c27a73 | 8148 | cu, &bytes_read); |
107d2387 | 8149 | i += bytes_read; |
c906108c SS |
8150 | break; |
8151 | ||
8152 | case DW_OP_const1u: | |
8153 | stack[++stacki] = read_1_byte (objfile->obfd, &data[i]); | |
8154 | i += 1; | |
8155 | break; | |
8156 | ||
8157 | case DW_OP_const1s: | |
8158 | stack[++stacki] = read_1_signed_byte (objfile->obfd, &data[i]); | |
8159 | i += 1; | |
8160 | break; | |
8161 | ||
8162 | case DW_OP_const2u: | |
8163 | stack[++stacki] = read_2_bytes (objfile->obfd, &data[i]); | |
8164 | i += 2; | |
8165 | break; | |
8166 | ||
8167 | case DW_OP_const2s: | |
8168 | stack[++stacki] = read_2_signed_bytes (objfile->obfd, &data[i]); | |
8169 | i += 2; | |
8170 | break; | |
8171 | ||
8172 | case DW_OP_const4u: | |
8173 | stack[++stacki] = read_4_bytes (objfile->obfd, &data[i]); | |
8174 | i += 4; | |
8175 | break; | |
8176 | ||
8177 | case DW_OP_const4s: | |
8178 | stack[++stacki] = read_4_signed_bytes (objfile->obfd, &data[i]); | |
8179 | i += 4; | |
8180 | break; | |
8181 | ||
8182 | case DW_OP_constu: | |
8183 | stack[++stacki] = read_unsigned_leb128 (NULL, (data + i), | |
c5aa993b | 8184 | &bytes_read); |
c906108c SS |
8185 | i += bytes_read; |
8186 | break; | |
8187 | ||
8188 | case DW_OP_consts: | |
8189 | stack[++stacki] = read_signed_leb128 (NULL, (data + i), &bytes_read); | |
8190 | i += bytes_read; | |
8191 | break; | |
8192 | ||
f1bea926 JM |
8193 | case DW_OP_dup: |
8194 | stack[stacki + 1] = stack[stacki]; | |
8195 | stacki++; | |
8196 | break; | |
8197 | ||
c906108c SS |
8198 | case DW_OP_plus: |
8199 | stack[stacki - 1] += stack[stacki]; | |
8200 | stacki--; | |
8201 | break; | |
8202 | ||
8203 | case DW_OP_plus_uconst: | |
8204 | stack[stacki] += read_unsigned_leb128 (NULL, (data + i), &bytes_read); | |
8205 | i += bytes_read; | |
8206 | break; | |
8207 | ||
8208 | case DW_OP_minus: | |
f1bea926 | 8209 | stack[stacki - 1] -= stack[stacki]; |
c906108c SS |
8210 | stacki--; |
8211 | break; | |
8212 | ||
7a292a7a | 8213 | case DW_OP_deref: |
7a292a7a | 8214 | /* If we're not the last op, then we definitely can't encode |
4cecd739 DJ |
8215 | this using GDB's address_class enum. This is valid for partial |
8216 | global symbols, although the variable's address will be bogus | |
8217 | in the psymtab. */ | |
7a292a7a | 8218 | if (i < size) |
4d3c2250 | 8219 | dwarf2_complex_location_expr_complaint (); |
7a292a7a SS |
8220 | break; |
8221 | ||
9d774e44 | 8222 | case DW_OP_GNU_push_tls_address: |
9d774e44 EZ |
8223 | /* The top of the stack has the offset from the beginning |
8224 | of the thread control block at which the variable is located. */ | |
8225 | /* Nothing should follow this operator, so the top of stack would | |
8226 | be returned. */ | |
4cecd739 DJ |
8227 | /* This is valid for partial global symbols, but the variable's |
8228 | address will be bogus in the psymtab. */ | |
9d774e44 | 8229 | if (i < size) |
4d3c2250 | 8230 | dwarf2_complex_location_expr_complaint (); |
9d774e44 EZ |
8231 | break; |
8232 | ||
c906108c | 8233 | default: |
4d3c2250 KB |
8234 | complaint (&symfile_complaints, "unsupported stack op: '%s'", |
8235 | dwarf_stack_op_name (op)); | |
c906108c SS |
8236 | return (stack[stacki]); |
8237 | } | |
8238 | } | |
8239 | return (stack[stacki]); | |
8240 | } | |
8241 | ||
8242 | /* memory allocation interface */ | |
8243 | ||
c906108c | 8244 | static struct dwarf_block * |
7b5a2f43 | 8245 | dwarf_alloc_block (struct dwarf2_cu *cu) |
c906108c SS |
8246 | { |
8247 | struct dwarf_block *blk; | |
8248 | ||
8249 | blk = (struct dwarf_block *) | |
7b5a2f43 | 8250 | obstack_alloc (&cu->comp_unit_obstack, sizeof (struct dwarf_block)); |
c906108c SS |
8251 | return (blk); |
8252 | } | |
8253 | ||
8254 | static struct abbrev_info * | |
f3dd6933 | 8255 | dwarf_alloc_abbrev (struct dwarf2_cu *cu) |
c906108c SS |
8256 | { |
8257 | struct abbrev_info *abbrev; | |
8258 | ||
f3dd6933 DJ |
8259 | abbrev = (struct abbrev_info *) |
8260 | obstack_alloc (&cu->abbrev_obstack, sizeof (struct abbrev_info)); | |
c906108c SS |
8261 | memset (abbrev, 0, sizeof (struct abbrev_info)); |
8262 | return (abbrev); | |
8263 | } | |
8264 | ||
8265 | static struct die_info * | |
fba45db2 | 8266 | dwarf_alloc_die (void) |
c906108c SS |
8267 | { |
8268 | struct die_info *die; | |
8269 | ||
8270 | die = (struct die_info *) xmalloc (sizeof (struct die_info)); | |
8271 | memset (die, 0, sizeof (struct die_info)); | |
8272 | return (die); | |
8273 | } | |
2e276125 JB |
8274 | |
8275 | \f | |
8276 | /* Macro support. */ | |
8277 | ||
8278 | ||
8279 | /* Return the full name of file number I in *LH's file name table. | |
8280 | Use COMP_DIR as the name of the current directory of the | |
8281 | compilation. The result is allocated using xmalloc; the caller is | |
8282 | responsible for freeing it. */ | |
8283 | static char * | |
8284 | file_full_name (int file, struct line_header *lh, const char *comp_dir) | |
8285 | { | |
8286 | struct file_entry *fe = &lh->file_names[file - 1]; | |
8287 | ||
8288 | if (IS_ABSOLUTE_PATH (fe->name)) | |
8289 | return xstrdup (fe->name); | |
8290 | else | |
8291 | { | |
8292 | const char *dir; | |
8293 | int dir_len; | |
8294 | char *full_name; | |
8295 | ||
8296 | if (fe->dir_index) | |
8297 | dir = lh->include_dirs[fe->dir_index - 1]; | |
8298 | else | |
8299 | dir = comp_dir; | |
8300 | ||
8301 | if (dir) | |
8302 | { | |
8303 | dir_len = strlen (dir); | |
8304 | full_name = xmalloc (dir_len + 1 + strlen (fe->name) + 1); | |
8305 | strcpy (full_name, dir); | |
8306 | full_name[dir_len] = '/'; | |
8307 | strcpy (full_name + dir_len + 1, fe->name); | |
8308 | return full_name; | |
8309 | } | |
8310 | else | |
8311 | return xstrdup (fe->name); | |
8312 | } | |
8313 | } | |
8314 | ||
8315 | ||
8316 | static struct macro_source_file * | |
8317 | macro_start_file (int file, int line, | |
8318 | struct macro_source_file *current_file, | |
8319 | const char *comp_dir, | |
8320 | struct line_header *lh, struct objfile *objfile) | |
8321 | { | |
8322 | /* The full name of this source file. */ | |
8323 | char *full_name = file_full_name (file, lh, comp_dir); | |
8324 | ||
8325 | /* We don't create a macro table for this compilation unit | |
8326 | at all until we actually get a filename. */ | |
8327 | if (! pending_macros) | |
4a146b47 | 8328 | pending_macros = new_macro_table (&objfile->objfile_obstack, |
af5f3db6 | 8329 | objfile->macro_cache); |
2e276125 JB |
8330 | |
8331 | if (! current_file) | |
8332 | /* If we have no current file, then this must be the start_file | |
8333 | directive for the compilation unit's main source file. */ | |
8334 | current_file = macro_set_main (pending_macros, full_name); | |
8335 | else | |
8336 | current_file = macro_include (current_file, line, full_name); | |
8337 | ||
8338 | xfree (full_name); | |
8339 | ||
8340 | return current_file; | |
8341 | } | |
8342 | ||
8343 | ||
8344 | /* Copy the LEN characters at BUF to a xmalloc'ed block of memory, | |
8345 | followed by a null byte. */ | |
8346 | static char * | |
8347 | copy_string (const char *buf, int len) | |
8348 | { | |
8349 | char *s = xmalloc (len + 1); | |
8350 | memcpy (s, buf, len); | |
8351 | s[len] = '\0'; | |
8352 | ||
8353 | return s; | |
8354 | } | |
8355 | ||
8356 | ||
8357 | static const char * | |
8358 | consume_improper_spaces (const char *p, const char *body) | |
8359 | { | |
8360 | if (*p == ' ') | |
8361 | { | |
4d3c2250 KB |
8362 | complaint (&symfile_complaints, |
8363 | "macro definition contains spaces in formal argument list:\n`%s'", | |
8364 | body); | |
2e276125 JB |
8365 | |
8366 | while (*p == ' ') | |
8367 | p++; | |
8368 | } | |
8369 | ||
8370 | return p; | |
8371 | } | |
8372 | ||
8373 | ||
8374 | static void | |
8375 | parse_macro_definition (struct macro_source_file *file, int line, | |
8376 | const char *body) | |
8377 | { | |
8378 | const char *p; | |
8379 | ||
8380 | /* The body string takes one of two forms. For object-like macro | |
8381 | definitions, it should be: | |
8382 | ||
8383 | <macro name> " " <definition> | |
8384 | ||
8385 | For function-like macro definitions, it should be: | |
8386 | ||
8387 | <macro name> "() " <definition> | |
8388 | or | |
8389 | <macro name> "(" <arg name> ( "," <arg name> ) * ") " <definition> | |
8390 | ||
8391 | Spaces may appear only where explicitly indicated, and in the | |
8392 | <definition>. | |
8393 | ||
8394 | The Dwarf 2 spec says that an object-like macro's name is always | |
8395 | followed by a space, but versions of GCC around March 2002 omit | |
8396 | the space when the macro's definition is the empty string. | |
8397 | ||
8398 | The Dwarf 2 spec says that there should be no spaces between the | |
8399 | formal arguments in a function-like macro's formal argument list, | |
8400 | but versions of GCC around March 2002 include spaces after the | |
8401 | commas. */ | |
8402 | ||
8403 | ||
8404 | /* Find the extent of the macro name. The macro name is terminated | |
8405 | by either a space or null character (for an object-like macro) or | |
8406 | an opening paren (for a function-like macro). */ | |
8407 | for (p = body; *p; p++) | |
8408 | if (*p == ' ' || *p == '(') | |
8409 | break; | |
8410 | ||
8411 | if (*p == ' ' || *p == '\0') | |
8412 | { | |
8413 | /* It's an object-like macro. */ | |
8414 | int name_len = p - body; | |
8415 | char *name = copy_string (body, name_len); | |
8416 | const char *replacement; | |
8417 | ||
8418 | if (*p == ' ') | |
8419 | replacement = body + name_len + 1; | |
8420 | else | |
8421 | { | |
4d3c2250 | 8422 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8423 | replacement = body + name_len; |
8424 | } | |
8425 | ||
8426 | macro_define_object (file, line, name, replacement); | |
8427 | ||
8428 | xfree (name); | |
8429 | } | |
8430 | else if (*p == '(') | |
8431 | { | |
8432 | /* It's a function-like macro. */ | |
8433 | char *name = copy_string (body, p - body); | |
8434 | int argc = 0; | |
8435 | int argv_size = 1; | |
8436 | char **argv = xmalloc (argv_size * sizeof (*argv)); | |
8437 | ||
8438 | p++; | |
8439 | ||
8440 | p = consume_improper_spaces (p, body); | |
8441 | ||
8442 | /* Parse the formal argument list. */ | |
8443 | while (*p && *p != ')') | |
8444 | { | |
8445 | /* Find the extent of the current argument name. */ | |
8446 | const char *arg_start = p; | |
8447 | ||
8448 | while (*p && *p != ',' && *p != ')' && *p != ' ') | |
8449 | p++; | |
8450 | ||
8451 | if (! *p || p == arg_start) | |
4d3c2250 | 8452 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8453 | else |
8454 | { | |
8455 | /* Make sure argv has room for the new argument. */ | |
8456 | if (argc >= argv_size) | |
8457 | { | |
8458 | argv_size *= 2; | |
8459 | argv = xrealloc (argv, argv_size * sizeof (*argv)); | |
8460 | } | |
8461 | ||
8462 | argv[argc++] = copy_string (arg_start, p - arg_start); | |
8463 | } | |
8464 | ||
8465 | p = consume_improper_spaces (p, body); | |
8466 | ||
8467 | /* Consume the comma, if present. */ | |
8468 | if (*p == ',') | |
8469 | { | |
8470 | p++; | |
8471 | ||
8472 | p = consume_improper_spaces (p, body); | |
8473 | } | |
8474 | } | |
8475 | ||
8476 | if (*p == ')') | |
8477 | { | |
8478 | p++; | |
8479 | ||
8480 | if (*p == ' ') | |
8481 | /* Perfectly formed definition, no complaints. */ | |
8482 | macro_define_function (file, line, name, | |
8483 | argc, (const char **) argv, | |
8484 | p + 1); | |
8485 | else if (*p == '\0') | |
8486 | { | |
8487 | /* Complain, but do define it. */ | |
4d3c2250 | 8488 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8489 | macro_define_function (file, line, name, |
8490 | argc, (const char **) argv, | |
8491 | p); | |
8492 | } | |
8493 | else | |
8494 | /* Just complain. */ | |
4d3c2250 | 8495 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8496 | } |
8497 | else | |
8498 | /* Just complain. */ | |
4d3c2250 | 8499 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8500 | |
8501 | xfree (name); | |
8502 | { | |
8503 | int i; | |
8504 | ||
8505 | for (i = 0; i < argc; i++) | |
8506 | xfree (argv[i]); | |
8507 | } | |
8508 | xfree (argv); | |
8509 | } | |
8510 | else | |
4d3c2250 | 8511 | dwarf2_macro_malformed_definition_complaint (body); |
2e276125 JB |
8512 | } |
8513 | ||
8514 | ||
8515 | static void | |
8516 | dwarf_decode_macros (struct line_header *lh, unsigned int offset, | |
8517 | char *comp_dir, bfd *abfd, | |
e7c27a73 | 8518 | struct dwarf2_cu *cu) |
2e276125 JB |
8519 | { |
8520 | char *mac_ptr, *mac_end; | |
8521 | struct macro_source_file *current_file = 0; | |
8522 | ||
6502dd73 | 8523 | if (dwarf2_per_objfile->macinfo_buffer == NULL) |
2e276125 | 8524 | { |
4d3c2250 | 8525 | complaint (&symfile_complaints, "missing .debug_macinfo section"); |
2e276125 JB |
8526 | return; |
8527 | } | |
8528 | ||
6502dd73 DJ |
8529 | mac_ptr = dwarf2_per_objfile->macinfo_buffer + offset; |
8530 | mac_end = dwarf2_per_objfile->macinfo_buffer | |
8531 | + dwarf2_per_objfile->macinfo_size; | |
2e276125 JB |
8532 | |
8533 | for (;;) | |
8534 | { | |
8535 | enum dwarf_macinfo_record_type macinfo_type; | |
8536 | ||
8537 | /* Do we at least have room for a macinfo type byte? */ | |
8538 | if (mac_ptr >= mac_end) | |
8539 | { | |
4d3c2250 | 8540 | dwarf2_macros_too_long_complaint (); |
2e276125 JB |
8541 | return; |
8542 | } | |
8543 | ||
8544 | macinfo_type = read_1_byte (abfd, mac_ptr); | |
8545 | mac_ptr++; | |
8546 | ||
8547 | switch (macinfo_type) | |
8548 | { | |
8549 | /* A zero macinfo type indicates the end of the macro | |
8550 | information. */ | |
8551 | case 0: | |
8552 | return; | |
8553 | ||
8554 | case DW_MACINFO_define: | |
8555 | case DW_MACINFO_undef: | |
8556 | { | |
8557 | int bytes_read; | |
8558 | int line; | |
8559 | char *body; | |
8560 | ||
8561 | line = read_unsigned_leb128 (abfd, mac_ptr, &bytes_read); | |
8562 | mac_ptr += bytes_read; | |
8563 | body = read_string (abfd, mac_ptr, &bytes_read); | |
8564 | mac_ptr += bytes_read; | |
8565 | ||
8566 | if (! current_file) | |
4d3c2250 KB |
8567 | complaint (&symfile_complaints, |
8568 | "debug info gives macro %s outside of any file: %s", | |
8569 | macinfo_type == | |
8570 | DW_MACINFO_define ? "definition" : macinfo_type == | |
8571 | DW_MACINFO_undef ? "undefinition" : | |
8572 | "something-or-other", body); | |
2e276125 JB |
8573 | else |
8574 | { | |
8575 | if (macinfo_type == DW_MACINFO_define) | |
8576 | parse_macro_definition (current_file, line, body); | |
8577 | else if (macinfo_type == DW_MACINFO_undef) | |
8578 | macro_undef (current_file, line, body); | |
8579 | } | |
8580 | } | |
8581 | break; | |
8582 | ||
8583 | case DW_MACINFO_start_file: | |
8584 | { | |
8585 | int bytes_read; | |
8586 | int line, file; | |
8587 | ||
8588 | line = read_unsigned_leb128 (abfd, mac_ptr, &bytes_read); | |
8589 | mac_ptr += bytes_read; | |
8590 | file = read_unsigned_leb128 (abfd, mac_ptr, &bytes_read); | |
8591 | mac_ptr += bytes_read; | |
8592 | ||
8593 | current_file = macro_start_file (file, line, | |
8594 | current_file, comp_dir, | |
e7c27a73 | 8595 | lh, cu->objfile); |
2e276125 JB |
8596 | } |
8597 | break; | |
8598 | ||
8599 | case DW_MACINFO_end_file: | |
8600 | if (! current_file) | |
4d3c2250 KB |
8601 | complaint (&symfile_complaints, |
8602 | "macro debug info has an unmatched `close_file' directive"); | |
2e276125 JB |
8603 | else |
8604 | { | |
8605 | current_file = current_file->included_by; | |
8606 | if (! current_file) | |
8607 | { | |
8608 | enum dwarf_macinfo_record_type next_type; | |
8609 | ||
8610 | /* GCC circa March 2002 doesn't produce the zero | |
8611 | type byte marking the end of the compilation | |
8612 | unit. Complain if it's not there, but exit no | |
8613 | matter what. */ | |
8614 | ||
8615 | /* Do we at least have room for a macinfo type byte? */ | |
8616 | if (mac_ptr >= mac_end) | |
8617 | { | |
4d3c2250 | 8618 | dwarf2_macros_too_long_complaint (); |
2e276125 JB |
8619 | return; |
8620 | } | |
8621 | ||
8622 | /* We don't increment mac_ptr here, so this is just | |
8623 | a look-ahead. */ | |
8624 | next_type = read_1_byte (abfd, mac_ptr); | |
8625 | if (next_type != 0) | |
4d3c2250 KB |
8626 | complaint (&symfile_complaints, |
8627 | "no terminating 0-type entry for macros in `.debug_macinfo' section"); | |
2e276125 JB |
8628 | |
8629 | return; | |
8630 | } | |
8631 | } | |
8632 | break; | |
8633 | ||
8634 | case DW_MACINFO_vendor_ext: | |
8635 | { | |
8636 | int bytes_read; | |
8637 | int constant; | |
8638 | char *string; | |
8639 | ||
8640 | constant = read_unsigned_leb128 (abfd, mac_ptr, &bytes_read); | |
8641 | mac_ptr += bytes_read; | |
8642 | string = read_string (abfd, mac_ptr, &bytes_read); | |
8643 | mac_ptr += bytes_read; | |
8644 | ||
8645 | /* We don't recognize any vendor extensions. */ | |
8646 | } | |
8647 | break; | |
8648 | } | |
8649 | } | |
8650 | } | |
8e19ed76 PS |
8651 | |
8652 | /* Check if the attribute's form is a DW_FORM_block* | |
8653 | if so return true else false. */ | |
8654 | static int | |
8655 | attr_form_is_block (struct attribute *attr) | |
8656 | { | |
8657 | return (attr == NULL ? 0 : | |
8658 | attr->form == DW_FORM_block1 | |
8659 | || attr->form == DW_FORM_block2 | |
8660 | || attr->form == DW_FORM_block4 | |
8661 | || attr->form == DW_FORM_block); | |
8662 | } | |
4c2df51b DJ |
8663 | |
8664 | static void | |
8665 | dwarf2_symbol_mark_computed (struct attribute *attr, struct symbol *sym, | |
e7c27a73 | 8666 | struct dwarf2_cu *cu) |
4c2df51b | 8667 | { |
0d53c4c4 | 8668 | if (attr->form == DW_FORM_data4 || attr->form == DW_FORM_data8) |
4c2df51b | 8669 | { |
0d53c4c4 | 8670 | struct dwarf2_loclist_baton *baton; |
4c2df51b | 8671 | |
4a146b47 | 8672 | baton = obstack_alloc (&cu->objfile->objfile_obstack, |
0d53c4c4 | 8673 | sizeof (struct dwarf2_loclist_baton)); |
e7c27a73 | 8674 | baton->objfile = cu->objfile; |
4c2df51b | 8675 | |
0d53c4c4 DJ |
8676 | /* We don't know how long the location list is, but make sure we |
8677 | don't run off the edge of the section. */ | |
6502dd73 DJ |
8678 | baton->size = dwarf2_per_objfile->loc_size - DW_UNSND (attr); |
8679 | baton->data = dwarf2_per_objfile->loc_buffer + DW_UNSND (attr); | |
e7c27a73 DJ |
8680 | baton->base_address = cu->header.base_address; |
8681 | if (cu->header.base_known == 0) | |
0d53c4c4 DJ |
8682 | complaint (&symfile_complaints, |
8683 | "Location list used without specifying the CU base address."); | |
4c2df51b | 8684 | |
a67af2b9 | 8685 | SYMBOL_OPS (sym) = &dwarf2_loclist_funcs; |
0d53c4c4 DJ |
8686 | SYMBOL_LOCATION_BATON (sym) = baton; |
8687 | } | |
8688 | else | |
8689 | { | |
8690 | struct dwarf2_locexpr_baton *baton; | |
8691 | ||
4a146b47 | 8692 | baton = obstack_alloc (&cu->objfile->objfile_obstack, |
0d53c4c4 | 8693 | sizeof (struct dwarf2_locexpr_baton)); |
e7c27a73 | 8694 | baton->objfile = cu->objfile; |
0d53c4c4 DJ |
8695 | |
8696 | if (attr_form_is_block (attr)) | |
8697 | { | |
8698 | /* Note that we're just copying the block's data pointer | |
8699 | here, not the actual data. We're still pointing into the | |
6502dd73 DJ |
8700 | info_buffer for SYM's objfile; right now we never release |
8701 | that buffer, but when we do clean up properly this may | |
8702 | need to change. */ | |
0d53c4c4 DJ |
8703 | baton->size = DW_BLOCK (attr)->size; |
8704 | baton->data = DW_BLOCK (attr)->data; | |
8705 | } | |
8706 | else | |
8707 | { | |
8708 | dwarf2_invalid_attrib_class_complaint ("location description", | |
8709 | SYMBOL_NATURAL_NAME (sym)); | |
8710 | baton->size = 0; | |
8711 | baton->data = NULL; | |
8712 | } | |
8713 | ||
a67af2b9 | 8714 | SYMBOL_OPS (sym) = &dwarf2_locexpr_funcs; |
0d53c4c4 DJ |
8715 | SYMBOL_LOCATION_BATON (sym) = baton; |
8716 | } | |
4c2df51b | 8717 | } |
6502dd73 | 8718 | |
72bf9492 DJ |
8719 | /* This cleanup function is passed the address of a dwarf2_cu on the stack |
8720 | when we're finished with it. We can't free the pointer itself, but | |
8721 | release any associated storage. | |
8722 | ||
8723 | Only used during partial symbol parsing. */ | |
8724 | ||
8725 | static void | |
8726 | free_stack_comp_unit (void *data) | |
8727 | { | |
8728 | struct dwarf2_cu *cu = data; | |
8729 | ||
8730 | obstack_free (&cu->comp_unit_obstack, NULL); | |
8731 | cu->partial_dies = NULL; | |
8732 | } | |
8733 | ||
8734 | /* Allocation function for the libiberty hash table which uses an | |
8735 | obstack. */ | |
8736 | ||
8737 | static void * | |
8738 | hashtab_obstack_allocate (void *data, size_t size, size_t count) | |
8739 | { | |
8740 | unsigned int total = size * count; | |
8741 | void *ptr = obstack_alloc ((struct obstack *) data, total); | |
8742 | memset (ptr, 0, total); | |
8743 | return ptr; | |
8744 | } | |
8745 | ||
8746 | /* Trivial deallocation function for the libiberty splay tree and hash | |
8747 | table - don't deallocate anything. Rely on later deletion of the | |
8748 | obstack. */ | |
8749 | ||
8750 | static void | |
8751 | dummy_obstack_deallocate (void *object, void *data) | |
8752 | { | |
8753 | return; | |
8754 | } | |
8755 | ||
8756 | /* Trivial hash function for partial_die_info: the hash value of a DIE | |
8757 | is its offset in .debug_info for this objfile. */ | |
8758 | ||
8759 | static hashval_t | |
8760 | partial_die_hash (const void *item) | |
8761 | { | |
8762 | const struct partial_die_info *part_die = item; | |
8763 | return part_die->offset; | |
8764 | } | |
8765 | ||
8766 | /* Trivial comparison function for partial_die_info structures: two DIEs | |
8767 | are equal if they have the same offset. */ | |
8768 | ||
8769 | static int | |
8770 | partial_die_eq (const void *item_lhs, const void *item_rhs) | |
8771 | { | |
8772 | const struct partial_die_info *part_die_lhs = item_lhs; | |
8773 | const struct partial_die_info *part_die_rhs = item_rhs; | |
8774 | return part_die_lhs->offset == part_die_rhs->offset; | |
8775 | } | |
8776 | ||
6502dd73 DJ |
8777 | void _initialize_dwarf2_read (void); |
8778 | ||
8779 | void | |
8780 | _initialize_dwarf2_read (void) | |
8781 | { | |
8782 | dwarf2_objfile_data_key = register_objfile_data (); | |
8783 | } |