1/* xSYM symbol-file support for BFD.
2   Copyright 1999, 2000, 2001, 2002, 2003, 2005, 2006
3   Free Software Foundation, Inc.
4
5   This file is part of BFD, the Binary File Descriptor library.
6
7   This program is free software; you can redistribute it and/or modify
8   it under the terms of the GNU General Public License as published by
9   the Free Software Foundation; either version 2 of the License, or
10   (at your option) any later version.
11
12   This program is distributed in the hope that it will be useful,
13   but WITHOUT ANY WARRANTY; without even the implied warranty of
14   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15   GNU General Public License for more details.
16
17   You should have received a copy of the GNU General Public License
18   along with this program; if not, write to the Free Software
19   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.  */
20
21#include "bfd.h"
22#include <stdio.h>
23
24#ifndef __xSYM_H__
25#define __xSYM_H__
26
27#define BFD_SYM_VERSION_STR_3_1 	"\013Version 3.1"
28#define BFD_SYM_VERSION_STR_3_2 	"\013Version 3.2"
29#define BFD_SYM_VERSION_STR_3_3 	"\013Version 3.3"
30#define BFD_SYM_VERSION_STR_3_4 	"\013Version 3.4"
31#define BFD_SYM_VERSION_STR_3_5 	"\013Version 3.5"
32#define BFD_SYM_END_OF_LIST_3_2		0xffff
33#define BFD_SYM_END_OF_LIST_3_4		0xffffffff
34#define BFD_SYM_END_OF_LIST 		BFD_SYM_END_OF_LIST_3_4
35#define BFD_SYM_FILE_NAME_INDEX_3_2	0xfffe
36#define BFD_SYM_FILE_NAME_INDEX_3_4	0xfffffffe
37#define BFD_SYM_FILE_NAME_INDEX		BFD_SYM_FILE_NAME_INDEX_3_4
38#define BFD_SYM_SOURCE_FILE_CHANGE_3_2	0xfffe
39#define BFD_SYM_SOURCE_FILE_CHANGE_3_4	0xfffffffe
40#define BFD_SYM_SOURCE_FILE_CHANGE	BFD_SYM_SOURCE_FILE_CHANGE_3_4
41#define BFD_SYM_MAXIMUM_LEGAL_INDEX_3_2 0xfffd
42#define BFD_SYM_MAXIMUM_LEGAL_INDEX_3_4 0xfffffffd
43#define BFD_SYM_MAXIMUM_LEGAL_INDEX	BFD_SYM_MAXIMUM_LEGAL_INDEX_3_4
44
45enum bfd_sym_storage_class
46{
47  BFD_SYM_STORAGE_CLASS_REGISTER = 0,
48  BFD_SYM_STORAGE_CLASS_GLOBAL = 1,
49  BFD_SYM_STORAGE_CLASS_FRAME_RELATIVE = 2,
50  BFD_SYM_STORAGE_CLASS_STACK_RELATIVE = 3,
51  BFD_SYM_STORAGE_CLASS_ABSOLUTE = 4,
52  BFD_SYM_STORAGE_CLASS_CONSTANT = 5,
53  BFD_SYM_STORAGE_CLASS_BIGCONSTANT = 6,
54  BFD_SYM_STORAGE_CLASS_RESOURCE = 99
55};
56typedef enum bfd_sym_storage_class bfd_sym_storage_class;
57
58enum bfd_sym_storage_kind
59{
60  BFD_SYM_STORAGE_KIND_LOCAL = 0,
61  BFD_SYM_STORAGE_KIND_VALUE = 1,
62  BFD_SYM_STORAGE_KIND_REFERENCE = 2,
63  BFD_SYM_STORAGE_KIND_WITH = 3
64};
65typedef enum bfd_sym_storage_kind bfd_sym_storage_kind;
66
67enum bfd_sym_version
68{
69  BFD_SYM_VERSION_3_1,
70  BFD_SYM_VERSION_3_2,
71  BFD_SYM_VERSION_3_3,
72  BFD_SYM_VERSION_3_4,
73  BFD_SYM_VERSION_3_5
74};
75typedef enum bfd_sym_version bfd_sym_version;
76
77enum bfd_sym_module_kind
78{
79  BFD_SYM_MODULE_KIND_NONE = 0,
80  BFD_SYM_MODULE_KIND_PROGRAM = 1,
81  BFD_SYM_MODULE_KIND_UNIT = 2,
82  BFD_SYM_MODULE_KIND_PROCEDURE = 3,
83  BFD_SYM_MODULE_KIND_FUNCTION = 4,
84  BFD_SYM_MODULE_KIND_DATA = 5,
85  BFD_SYM_MODULE_KIND_BLOCK = 6
86};
87typedef enum bfd_sym_module_kind bfd_sym_module_kind;
88
89enum bfd_sym_symbol_scope
90{
91  BFD_SYM_SYMBOL_SCOPE_LOCAL = 0,  /* Object is seen only inside current scope.  */
92  BFD_SYM_SYMBOL_SCOPE_GLOBAL = 1  /* Object has global scope.  */
93};
94typedef enum bfd_sym_symbol_scope bfd_sym_symbol_scope;
95
96struct bfd_sym_file_reference
97{
98  unsigned long fref_frte_index; /* File reference table index.  */
99  unsigned long fref_offset;     /* Absolute offset into source file.  */
100};
101typedef struct bfd_sym_file_reference bfd_sym_file_reference;
102
103/* NAME TABLE (NTE).  */
104
105/* RESOURCES TABLE (RTE)
106
107   All code and data is *defined* to reside in a resource.  Even A5
108   relative data is defined to reside in a dummy resource of ResType
109   'gbld'.  Code always resides in a resource.  Because a code/data
110   is built of many modules, when walking through a resource we must
111   point back to the modules in the order they were defined.  This is
112   done by requiring the entries in the Modules Entry table to be
113   ordered by resource/resource-number and by the location in that
114   resource.  Hence, the resource table entry points to the first
115   module making up that resource.  All modules table entries following
116   that first one with the same restype/resnum are contiguous and offset
117   from that first entry.  */
118
119struct bfd_sym_resources_table_entry
120{
121  unsigned char rte_res_type[4];  /* Resource Type.  */
122  unsigned short rte_res_number;  /* Resource Number.  */
123  unsigned long rte_nte_index;    /* Name of the resource.  */
124  unsigned long rte_mte_first;    /* Index of first module in the resource.  */
125  unsigned long rte_mte_last;     /* Index of the last module in the resource.	*/
126  unsigned long	rte_res_size;     /* Size of the resource.  */
127};
128typedef struct bfd_sym_resources_table_entry bfd_sym_resources_table_entry;
129
130/* MODULES TABLE (MTE)
131
132   Modules table entries are ordered by their appearance in a resource.
133   (Note that having a single module copied into two resources is not
134   possible).  Modules map back to their resource via an index into the
135   resource table and an offset into the resource.  Modules also point
136   to their source files, both the definition module and implementation
137   module.  Because modules can be textually nested within other
138   modules, a link to the parent (containing) module is required.  This
139   module can textually contain other modules.  A link to the contiguous
140   list of child (contained) modules is required.  Variables, statements,
141   and types defined in the module are pointed to by indexing the head of
142   the contiguous lists of contained variables, contained statements,
143   and contained types.  */
144
145struct bfd_sym_modules_table_entry
146{
147  unsigned long mte_rte_index;         /* Which resource it is in.  */
148  unsigned long mte_res_offset;        /* Offset into the resource.  */
149  unsigned long mte_size;              /* Size of module.  */
150  char mte_kind;                       /* What kind of module this is.  */
151  char mte_scope;                      /* How visible is it?  */
152  unsigned long mte_parent;            /* Containing module.  */
153  bfd_sym_file_reference mte_imp_fref; /* Implementation source.  */
154  unsigned long mte_imp_end;           /* End of implementation source.  */
155  unsigned long mte_nte_index;         /* The name of the module.  */
156  unsigned long mte_cmte_index;        /* Modules contained in this.  */
157  unsigned long mte_cvte_index;        /* Variables contained in this.  */
158  unsigned long mte_clte_index;        /* Local labels defined here.  */
159  unsigned long mte_ctte_index;        /* Types contained in this.  */
160  unsigned long mte_csnte_idx_1;       /* CSNTE index of mte_snbr_first.  */
161  unsigned long mte_csnte_idx_2;       /* CSNTE index of mte_snbr_last.  */
162};
163typedef struct bfd_sym_modules_table_entry bfd_sym_modules_table_entry;
164
165/* FILE REFERENCES TABLE (FRTE)
166
167   The FILE REFERENCES TABLE maps from source file to module & offset.
168   The table is ordered by increasing file offset.  Each new offset
169   references a module.
170
171 				FRT	= FILE_SOURCE_START
172 							FILE_SOURCE_INCREMENT*
173 							END_OF_LIST.
174
175	*** THIS MECHANISM IS VERY SLOW FOR FILE+STATEMENT_NUMBER TO
176 	*** MODULE/CODE ADDRESS OPERATIONS.  ANOTHER MECHANISM IS
177 	***	REQUIRED!!  */
178
179union bfd_sym_file_references_table_entry
180{
181  struct
182  {
183    /* END_OF_LIST, FILE_NAME_INDEX, or module table entry.  */
184    unsigned long type;
185  }
186  generic;
187
188  struct
189  {
190    /* FILE_NAME_INDEX.  */
191    unsigned long type;
192    unsigned long nte_index;
193    unsigned long mod_date;
194  }
195  filename;
196
197  struct
198  {
199    /* < FILE_NAME_INDEX.  */
200    unsigned long mte_index;
201    unsigned long file_offset;
202  }
203  entry;
204};
205typedef union bfd_sym_file_references_table_entry bfd_sym_file_references_table_entry;
206
207/* CONTAINED MODULES TABLE (CMTE)
208
209   Contained Modules are lists of indices into the modules table.  The
210   lists are terminated by an END_OF_LIST index.  All entries are of the
211   same size, hence mapping an index into a CMTE list is simple.
212
213   CMT = MTE_INDEX* END_OF_LIST.  */
214
215union bfd_sym_contained_modules_table_entry
216{
217  struct
218  {
219    /* END_OF_LIST, index.  */
220    unsigned long type;
221  }
222  generic;
223
224  struct
225  {
226    unsigned long mte_index; /* Index into the Modules Table.  */
227    unsigned long nte_index; /* The name of the module.  */
228  }
229  entry;
230};
231typedef union bfd_sym_contained_modules_table_entry bfd_sym_contained_modules_table_entry;
232
233/* CONTAINED VARIABLES TABLE (CVTE)
234
235   Contained Variables map into the module table, file table, name table, and type
236   table.  Contained Variables are a contiguous list of source file change record,
237   giving the name of and offset into the source file corresponding to all variables
238   following.  Variable definition records contain an index into the name table (giving
239   the text of the variable as it appears in the source code), an index into the type
240   table giving the type of the variable, an increment added to the source file
241   offset giving the start of the implementation of the variable, and a storage
242   class address, giving information on variable's runtime address.
243
244   CVT = SOURCE_FILE_CHANGE SYMBOL_INFO* END_OF_LIST.
245   SYMBOL_INFO = SYMBOL_DEFINITION | SOURCE_FILE_CHANGE .
246
247   All entries are of the same size, making the fetching of data simple.  The
248   variable entries in the list are in ALPHABETICAL ORDER to simplify the display of
249   available variables for several of the debugger's windows.  */
250
251/* 'la_size' determines the variant used below:
252
253     == BFD_SYM_CVTE_SCA
254     Traditional STORAGE_CLASS_ADDRESS;
255
256     <= BFD_SYM_CVTE_LA_MAX_SIZE
257     That many logical address bytes ("in-situ");
258
259     == BFD_SYM_CVTE_BIG_LA
260     Logical address bytes in constant pool, at offset 'big_la'.  */
261
262#define	BFD_SYM_CVTE_SCA 0          /* Indicate SCA variant of CVTE.  */
263#define	BFD_SYM_CVTE_LA_MAX_SIZE 13 /* Max# of logical address bytes in a CVTE.  */
264#define	BFD_SYM_CVTE_BIG_LA 127     /* Indicates LA redirection to constant pool.  */
265
266union bfd_sym_contained_variables_table_entry
267{
268  struct
269  {
270    /* END_OF_LIST, SOURCE_FILE_CHANGE, or type table entry.  */
271    unsigned long type;
272  }
273  generic;
274
275  struct
276  {
277    /* SOURCE_FILE_CHANGE.  */
278    unsigned long type;
279    bfd_sym_file_reference fref;
280  }
281  file;
282
283  struct
284  {
285    /* < SOURCE_FILE_CHANGE.  */
286    unsigned long tte_index;
287    unsigned long nte_index;
288    unsigned long file_delta;                       /* Increment from previous source.  */
289    unsigned char scope;
290    unsigned char la_size;                          /* #bytes of LAs below.  */
291
292    union
293    {
294      /* la_size == BFD_SYM_CVTE_SCA.  */
295      struct
296      {
297	unsigned char sca_kind;	                    /* Distinguish local from value/var formal.  */
298	unsigned char sca_class;                    /* The storage class itself.  */
299	unsigned long sca_offset;
300      }
301      scstruct;
302
303      /* la_size <= BFD_SYM_CVTE_LA_MAX_SIZE.  */
304      struct {
305	unsigned char la[BFD_SYM_CVTE_LA_MAX_SIZE]; /* Logical address bytes.  */
306	unsigned char la_kind;                      /* Eqv. cvte_location.sca_kind.  */
307      }
308      lastruct;
309
310      /* la_size == BFD_SYM_CVTE_BIG_LA 127.  */
311      struct
312      {
313	unsigned long big_la;                       /* Logical address bytes in constant pool.  */
314	unsigned char big_la_kind;                  /* Eqv. cvte_location.sca_kind.  */
315      }
316      biglastruct;
317    }
318    address;
319  }
320  entry;
321};
322typedef union bfd_sym_contained_variables_table_entry bfd_sym_contained_variables_table_entry;
323
324/* CONTAINED STATEMENTS TABLE (CSNTE)
325
326   Contained Statements table.  This table is similar to the Contained
327   Variables table except that instead of VARIABLE_DEFINITION entries, this
328   module contains STATEMENT_NUMBER_DEFINITION entries.  A statement number
329   definition points back to the containing module (via an index into
330   the module entry table) and contains the file and resource deltas
331   to add to the previous values to get to this statement.
332   All entries are of the same size, making the fetching of data simple.  The
333   entries in the table are in order of increasing statement number within the
334   source file.
335
336   The Contained Statements table is indexed from two places.  An MTE contains
337   an index to the first statement number within the module.  An FRTE contains
338   an index to the first statement in the table (Possibly.  This is slow.)  Or
339   a table of fast statement number to CSNTE entry mappings indexes into the
340   table.  Choice not yet made.  */
341
342union bfd_sym_contained_statements_table_entry
343{
344  struct
345  {
346    /* END_OF_LIST, SOURCE_FILE_CHANGE, or statement table entry.  */
347    unsigned long type;
348  }
349  generic;
350
351  struct
352  {
353    /* SOURCE_FILE_CHANGE.  */
354    unsigned long type;
355    bfd_sym_file_reference fref; /* File name table.  */
356  }
357  file;
358
359  struct
360  {
361    unsigned long mte_index;     /* Which module contains it.  */
362    unsigned long file_delta;    /* Where it is defined.  */
363    unsigned long mte_offset;    /* Where it is in the module.  */
364  }
365  entry;
366};
367typedef union bfd_sym_contained_statements_table_entry bfd_sym_contained_statements_table_entry;
368
369/* CONTAINED LABELS TABLE (CLTE)
370
371   Contained Labels table names those labels local to the module.  It is similar
372   to the Contained Statements table.  */
373
374union bfd_sym_contained_labels_table_entry
375{
376  struct
377  {
378    /* END_OF_LIST, SOURCE_FILE_CHANGE, index.  */
379    unsigned long type;
380  }
381  generic;
382
383  struct
384  {
385    /* SOURCE_FILE_CHANGE.  */
386    unsigned long type;
387    bfd_sym_file_reference fref;
388  }
389  file;
390
391  struct
392  {
393    /* < SOURCE_FILE_CHANGE.  */
394    unsigned long mte_index;   /* Which module contains us.  */
395    unsigned long mte_offset;  /* Where it is in the module.  */
396    unsigned long nte_index;   /* The name of the label.  */
397    unsigned long file_delta;  /* Where it is defined.  */
398    unsigned short scope;      /* How visible the label is.  */
399  }
400  entry;
401};
402typedef union bfd_sym_contained_labels_table_entry bfd_sym_contained_labels_table_entry;
403
404/* CONTAINED TYPES TABLE (CTTE)
405
406   Contained Types define the named types that are in the module.  It is used to
407   map name indices into type indices.  The type entries in the table are in
408   alphabetical order by type name.  */
409
410union bfd_sym_contained_types_table_entry
411{
412  struct
413  {
414    /* END_OF_LIST, SOURCE_FILE_CHANGE, or type table entry.  */
415    unsigned long type;
416  }
417  generic;
418
419  struct
420  {
421    /* SOURCE_FILE_CHANGE.  */
422    unsigned long type;
423    bfd_sym_file_reference fref;
424  }
425  file;
426
427  struct
428  {
429    /* < SOURCE_FILE_CHANGE.  */
430    unsigned long tte_index;
431    unsigned long nte_index;
432    unsigned long file_delta; /* From last file definition.  */
433  }
434  entry;
435};
436typedef union bfd_sym_contained_types_table_entry bfd_sym_contained_types_table_entry;
437
438/* TYPE TABLE (TTE).  */
439
440typedef unsigned long bfd_sym_type_table_entry;
441
442/* TYPE INFORMATION TABLE (TINFO).  */
443
444struct bfd_sym_type_information_table_entry
445{
446  unsigned long nte_index;
447  unsigned long physical_size;
448  unsigned long logical_size;
449  unsigned long offset;
450};
451typedef struct bfd_sym_type_information_table_entry bfd_sym_type_information_table_entry;
452
453/* FILE REFERENCES INDEX TABLE (FITE)
454
455   The FRTE INDEX TABLE indexes into the FILE REFERENCE TABLE above.  The FRTE
456   at that index is the FILE_SOURCE_START for a series of files.  The FRTEs are
457   indexed from 1.  The list is terminated with an END_OF_LIST.  */
458
459union bfd_sym_file_references_index_table_entry
460{
461  struct
462  {
463    unsigned long type;
464  }
465  generic;
466
467  struct
468  {
469    unsigned long frte_index;  /* Index into the FRTE table.  */
470    unsigned long nte_index;   /* Name table index, gives filename.  */
471  }
472  entry;
473};
474typedef union bfd_sym_file_references_index_table_entry bfd_sym_file_references_index_table_entry;
475
476/* CONSTANT POOL (CONST)
477
478   The CONSTANT_POOL consists of entries that start on word boundaries.  The entries
479   are referenced by byte index into the constant pool, not by record number.
480
481   Each entry takes the form:
482
483   <16-bit size>
484   <that many bytes of stuff>
485
486   Entries do not cross page boundaries.  */
487
488typedef short bfd_sym_constant_pool_entry;
489
490/* The DISK_SYMBOL_HEADER_BLOCK is the first record in a .SYM file,
491   defining the physical characteristics of the symbolic information.
492   The remainder of the * .SYM file is stored in fixed block
493   allocations. For the purposes of paging, the * file is considered
494   to be an array of dshb_page_size blocks, with block 0 (and *
495   possibly more) devoted to the DISK_SYMBOL_HEADER_BLOCK.
496
497   The dti_object_count field means that the allowed indices for that
498   type of object are 0 .. dti_object_count. An index of 0, although
499   allowed, is never done.  However, an 0th entry is created in the
500   table.  That entry is filled with all zeroes.  The reason for this
501   is to avoid off-by-one programming errors that would otherwise
502   occur: an index of k *MEANS* k, not k-1 when going to the disk
503   table.  */
504
505struct bfd_sym_table_info
506{
507  unsigned long dti_first_page;   /* First page for this table.  */
508  unsigned long dti_page_count;   /* Number of pages for the table.  */
509  unsigned long dti_object_count; /* Number of objects in the table.  */
510};
511typedef struct bfd_sym_table_info bfd_sym_table_info;
512
513struct bfd_sym_header_block
514{
515  unsigned char dshb_id[32];      /* Version information.  */
516  unsigned short dshb_page_size;  /* Size of the pages/blocks.  */
517  unsigned long dshb_hash_page;   /* Disk page for the hash table.  */
518  unsigned long dshb_root_mte;    /* MTE index of the program root.  */
519  unsigned long dshb_mod_date;    /* modification date of executable.  */
520  bfd_sym_table_info dshb_frte;   /* Per TABLE information.  */
521  bfd_sym_table_info dshb_rte;
522  bfd_sym_table_info dshb_mte;
523  bfd_sym_table_info dshb_cmte;
524  bfd_sym_table_info dshb_cvte;
525  bfd_sym_table_info dshb_csnte;
526  bfd_sym_table_info dshb_clte;
527  bfd_sym_table_info dshb_ctte;
528  bfd_sym_table_info dshb_tte;
529  bfd_sym_table_info dshb_nte;
530  bfd_sym_table_info dshb_tinfo;
531  bfd_sym_table_info dshb_fite;   /* File information.  */
532  bfd_sym_table_info dshb_const;  /* Constant pool.  */
533
534  unsigned char dshb_file_creator[4]; /* Executable's creator.  */
535  unsigned char dshb_file_type[4];    /* Executable's file type.  */
536};
537typedef struct bfd_sym_header_block bfd_sym_header_block;
538
539struct bfd_sym_data_struct
540{
541  unsigned char *name_table;
542  bfd_sym_header_block header;
543  bfd_sym_version version;
544  bfd *sbfd;
545};
546typedef struct bfd_sym_data_struct bfd_sym_data_struct;
547
548extern bfd_boolean bfd_sym_mkobject
549  (bfd *);
550extern void bfd_sym_print_symbol
551  (bfd *, PTR, asymbol *, bfd_print_symbol_type);
552extern bfd_boolean bfd_sym_valid
553  (bfd *);
554extern unsigned char * bfd_sym_read_name_table
555  (bfd *, bfd_sym_header_block *);
556extern void bfd_sym_parse_file_reference_v32
557  (unsigned char *, size_t, bfd_sym_file_reference *);
558extern void bfd_sym_parse_disk_table_v32
559  (unsigned char *, size_t, bfd_sym_table_info *);
560extern void bfd_sym_parse_header_v32
561  (unsigned char *, size_t, bfd_sym_header_block *);
562extern int bfd_sym_read_header_v32
563  (bfd *, bfd_sym_header_block *);
564extern int bfd_sym_read_header_v34
565  (bfd *, bfd_sym_header_block *);
566extern int bfd_sym_read_header
567  (bfd *, bfd_sym_header_block *, bfd_sym_version);
568extern int bfd_sym_read_version
569  (bfd *, bfd_sym_version *);
570extern void bfd_sym_display_table_summary
571  (FILE *, bfd_sym_table_info *, const char *);
572extern void bfd_sym_display_header
573  (FILE *, bfd_sym_header_block *);
574extern void bfd_sym_parse_resources_table_entry_v32
575  (unsigned char *, size_t, bfd_sym_resources_table_entry *);
576extern void bfd_sym_parse_modules_table_entry_v33
577  (unsigned char *, size_t, bfd_sym_modules_table_entry *);
578extern void bfd_sym_parse_file_references_table_entry_v32
579  (unsigned char *, size_t, bfd_sym_file_references_table_entry *);
580extern void bfd_sym_parse_contained_modules_table_entry_v32
581  (unsigned char *, size_t, bfd_sym_contained_modules_table_entry *);
582extern void bfd_sym_parse_contained_variables_table_entry_v32
583  (unsigned char *, size_t, bfd_sym_contained_variables_table_entry *);
584extern void bfd_sym_parse_contained_statements_table_entry_v32
585  (unsigned char *, size_t, bfd_sym_contained_statements_table_entry *);
586extern void bfd_sym_parse_contained_labels_table_entry_v32
587  (unsigned char *, size_t, bfd_sym_contained_labels_table_entry *);
588extern void bfd_sym_parse_type_table_entry_v32
589  (unsigned char *, size_t, bfd_sym_type_table_entry *);
590extern int bfd_sym_fetch_resources_table_entry
591  (bfd *, bfd_sym_resources_table_entry *, unsigned long);
592extern int bfd_sym_fetch_modules_table_entry
593  (bfd *, bfd_sym_modules_table_entry *, unsigned long);
594extern int bfd_sym_fetch_file_references_table_entry
595  (bfd *, bfd_sym_file_references_table_entry *, unsigned long);
596extern int bfd_sym_fetch_contained_modules_table_entry
597  (bfd *, bfd_sym_contained_modules_table_entry *, unsigned long);
598extern int bfd_sym_fetch_contained_variables_table_entry
599  (bfd *, bfd_sym_contained_variables_table_entry *, unsigned long);
600extern int bfd_sym_fetch_contained_statements_table_entry
601  (bfd *, bfd_sym_contained_statements_table_entry *, unsigned long);
602extern int bfd_sym_fetch_contained_labels_table_entry
603  (bfd *, bfd_sym_contained_labels_table_entry *, unsigned long);
604extern int bfd_sym_fetch_contained_types_table_entry
605  (bfd *, bfd_sym_contained_types_table_entry *, unsigned long);
606extern int bfd_sym_fetch_file_references_index_table_entry
607  (bfd *, bfd_sym_file_references_index_table_entry *, unsigned long);
608extern int bfd_sym_fetch_constant_pool_entry
609  (bfd *, bfd_sym_constant_pool_entry *, unsigned long);
610extern int bfd_sym_fetch_type_table_entry
611  (bfd *, bfd_sym_type_table_entry *, unsigned long);
612extern int bfd_sym_fetch_type_information_table_entry
613  (bfd *, bfd_sym_type_information_table_entry *, unsigned long);
614extern int bfd_sym_fetch_type_table_information
615  (bfd *, bfd_sym_type_information_table_entry *, unsigned long);
616extern const unsigned char * bfd_sym_symbol_name
617  (bfd *, unsigned long);
618extern const unsigned char * bfd_sym_module_name
619  (bfd *, unsigned long);
620extern const char * bfd_sym_unparse_storage_kind
621  (enum bfd_sym_storage_kind);
622extern const char * bfd_sym_unparse_storage_class
623  (enum bfd_sym_storage_class);
624extern const char * bfd_sym_unparse_module_kind
625  (enum bfd_sym_module_kind);
626extern const char * bfd_sym_unparse_symbol_scope
627  (enum bfd_sym_symbol_scope);
628extern void bfd_sym_print_file_reference
629  (bfd *, FILE *, bfd_sym_file_reference *);
630extern void bfd_sym_print_resources_table_entry
631  (bfd *, FILE *, bfd_sym_resources_table_entry *);
632extern void bfd_sym_print_modules_table_entry
633  (bfd *, FILE *, bfd_sym_modules_table_entry *);
634extern void bfd_sym_print_file_references_table_entry
635  (bfd *, FILE *, bfd_sym_file_references_table_entry *);
636extern void bfd_sym_print_contained_modules_table_entry
637  (bfd *, FILE *, bfd_sym_contained_modules_table_entry *);
638extern void bfd_sym_print_contained_variables_table_entry
639  (bfd *, FILE *f, bfd_sym_contained_variables_table_entry *);
640extern void bfd_sym_print_contained_statements_table_entry
641  (bfd *, FILE *, bfd_sym_contained_statements_table_entry *);
642extern void bfd_sym_print_contained_labels_table_entry
643  (bfd *, FILE *, bfd_sym_contained_labels_table_entry *);
644extern void bfd_sym_print_contained_types_table_entry
645  (bfd *, FILE *, bfd_sym_contained_types_table_entry *);
646extern const char * bfd_sym_type_operator_name
647  (unsigned char);
648extern const char * bfd_sym_type_basic_name
649  (unsigned char);
650extern int bfd_sym_fetch_long
651  (unsigned char *, unsigned long, unsigned long, unsigned long *, long *);
652extern void bfd_sym_print_type_information
653  (bfd *, FILE *, unsigned char *, unsigned long, unsigned long, unsigned long *);
654extern void bfd_sym_print_type_information_table_entry
655  (bfd *, FILE *, bfd_sym_type_information_table_entry *);
656extern void bfd_sym_print_file_references_index_table_entry
657  (bfd *, FILE *, bfd_sym_file_references_index_table_entry *);
658extern void bfd_sym_print_constant_pool_entry
659  (bfd *, FILE *, bfd_sym_constant_pool_entry *);
660extern unsigned char * bfd_sym_display_name_table_entry
661  (bfd *, FILE *, unsigned char *);
662extern void bfd_sym_display_name_table
663  (bfd *, FILE *);
664extern void bfd_sym_display_resources_table
665  (bfd *, FILE *);
666extern void bfd_sym_display_modules_table
667  (bfd *, FILE *);
668extern void bfd_sym_display_file_references_table
669  (bfd *, FILE *);
670extern void bfd_sym_display_contained_modules_table
671  (bfd *, FILE *);
672extern void bfd_sym_display_contained_variables_table
673  (bfd *, FILE *);
674extern void bfd_sym_display_contained_statements_table
675  (bfd *, FILE *);
676extern void bfd_sym_display_contained_labels_table
677  (bfd *, FILE *);
678extern void bfd_sym_display_contained_types_table
679  (bfd *, FILE *);
680extern void bfd_sym_display_file_references_index_table
681  (bfd *, FILE *);
682extern void bfd_sym_display_constant_pool
683  (bfd *, FILE *);
684extern void bfd_sym_display_type_information_table
685  (bfd *, FILE *);
686extern int bfd_sym_scan
687  (bfd *, bfd_sym_version, bfd_sym_data_struct *);
688extern const bfd_target * bfd_sym_object_p
689  (bfd *);
690extern void bfd_sym_get_symbol_info
691  (bfd *, asymbol *, symbol_info *);
692extern long bfd_sym_get_symtab_upper_bound
693  (bfd *);
694extern long bfd_sym_canonicalize_symtab
695  (bfd *, asymbol **);
696extern int bfd_sym_sizeof_headers
697  (bfd *, struct bfd_link_info *);
698
699#endif /* __xSYM_H__ */
700