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syms.c revision 1.1.1.11
      1       1.1     skrll /* Generic symbol-table support for the BFD library.
      2  1.1.1.11  christos    Copyright (C) 1990-2024 Free Software Foundation, Inc.
      3       1.1     skrll    Written by Cygnus Support.
      4       1.1     skrll 
      5       1.1     skrll    This file is part of BFD, the Binary File Descriptor library.
      6       1.1     skrll 
      7       1.1     skrll    This program is free software; you can redistribute it and/or modify
      8       1.1     skrll    it under the terms of the GNU General Public License as published by
      9       1.1     skrll    the Free Software Foundation; either version 3 of the License, or
     10       1.1     skrll    (at your option) any later version.
     11       1.1     skrll 
     12       1.1     skrll    This program is distributed in the hope that it will be useful,
     13       1.1     skrll    but WITHOUT ANY WARRANTY; without even the implied warranty of
     14       1.1     skrll    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     15       1.1     skrll    GNU General Public License for more details.
     16       1.1     skrll 
     17       1.1     skrll    You should have received a copy of the GNU General Public License
     18       1.1     skrll    along with this program; if not, write to the Free Software
     19       1.1     skrll    Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
     20       1.1     skrll    MA 02110-1301, USA.  */
     21       1.1     skrll 
     22       1.1     skrll /*
     23       1.1     skrll SECTION
     24       1.1     skrll 	Symbols
     25       1.1     skrll 
     26       1.1     skrll 	BFD tries to maintain as much symbol information as it can when
     27       1.1     skrll 	it moves information from file to file. BFD passes information
     28       1.1     skrll 	to applications though the <<asymbol>> structure. When the
     29       1.1     skrll 	application requests the symbol table, BFD reads the table in
     30       1.1     skrll 	the native form and translates parts of it into the internal
     31       1.1     skrll 	format. To maintain more than the information passed to
     32       1.1     skrll 	applications, some targets keep some information ``behind the
     33       1.1     skrll 	scenes'' in a structure only the particular back end knows
     34       1.1     skrll 	about. For example, the coff back end keeps the original
     35       1.1     skrll 	symbol table structure as well as the canonical structure when
     36       1.1     skrll 	a BFD is read in. On output, the coff back end can reconstruct
     37       1.1     skrll 	the output symbol table so that no information is lost, even
     38       1.1     skrll 	information unique to coff which BFD doesn't know or
     39       1.1     skrll 	understand. If a coff symbol table were read, but were written
     40       1.1     skrll 	through an a.out back end, all the coff specific information
     41       1.1     skrll 	would be lost. The symbol table of a BFD
     42       1.1     skrll 	is not necessarily read in until a canonicalize request is
     43       1.1     skrll 	made. Then the BFD back end fills in a table provided by the
     44       1.1     skrll 	application with pointers to the canonical information.  To
     45       1.1     skrll 	output symbols, the application provides BFD with a table of
     46       1.1     skrll 	pointers to pointers to <<asymbol>>s. This allows applications
     47       1.1     skrll 	like the linker to output a symbol as it was read, since the ``behind
     48       1.1     skrll 	the scenes'' information will be still available.
     49       1.1     skrll @menu
     50       1.1     skrll @* Reading Symbols::
     51       1.1     skrll @* Writing Symbols::
     52       1.1     skrll @* Mini Symbols::
     53       1.1     skrll @* typedef asymbol::
     54       1.1     skrll @* symbol handling functions::
     55       1.1     skrll @end menu
     56       1.1     skrll 
     57       1.1     skrll INODE
     58       1.1     skrll Reading Symbols, Writing Symbols, Symbols, Symbols
     59       1.1     skrll SUBSECTION
     60       1.1     skrll 	Reading symbols
     61       1.1     skrll 
     62       1.1     skrll 	There are two stages to reading a symbol table from a BFD:
     63       1.1     skrll 	allocating storage, and the actual reading process. This is an
     64       1.1     skrll 	excerpt from an application which reads the symbol table:
     65       1.1     skrll 
     66   1.1.1.7  christos |         long storage_needed;
     67   1.1.1.7  christos |         asymbol **symbol_table;
     68   1.1.1.7  christos |         long number_of_symbols;
     69   1.1.1.7  christos |         long i;
     70       1.1     skrll |
     71   1.1.1.7  christos |         storage_needed = bfd_get_symtab_upper_bound (abfd);
     72       1.1     skrll |
     73       1.1     skrll |         if (storage_needed < 0)
     74       1.1     skrll |           FAIL
     75       1.1     skrll |
     76   1.1.1.7  christos |         if (storage_needed == 0)
     77   1.1.1.7  christos |           return;
     78   1.1.1.5  christos |
     79   1.1.1.7  christos |         symbol_table = xmalloc (storage_needed);
     80   1.1.1.7  christos |           ...
     81   1.1.1.7  christos |         number_of_symbols =
     82   1.1.1.7  christos |            bfd_canonicalize_symtab (abfd, symbol_table);
     83       1.1     skrll |
     84       1.1     skrll |         if (number_of_symbols < 0)
     85       1.1     skrll |           FAIL
     86       1.1     skrll |
     87   1.1.1.7  christos |         for (i = 0; i < number_of_symbols; i++)
     88   1.1.1.7  christos |           process_symbol (symbol_table[i]);
     89       1.1     skrll 
     90       1.1     skrll 	All storage for the symbols themselves is in an objalloc
     91       1.1     skrll 	connected to the BFD; it is freed when the BFD is closed.
     92       1.1     skrll 
     93       1.1     skrll INODE
     94       1.1     skrll Writing Symbols, Mini Symbols, Reading Symbols, Symbols
     95       1.1     skrll SUBSECTION
     96       1.1     skrll 	Writing symbols
     97       1.1     skrll 
     98       1.1     skrll 	Writing of a symbol table is automatic when a BFD open for
     99       1.1     skrll 	writing is closed. The application attaches a vector of
    100       1.1     skrll 	pointers to pointers to symbols to the BFD being written, and
    101       1.1     skrll 	fills in the symbol count. The close and cleanup code reads
    102       1.1     skrll 	through the table provided and performs all the necessary
    103       1.1     skrll 	operations. The BFD output code must always be provided with an
    104       1.1     skrll 	``owned'' symbol: one which has come from another BFD, or one
    105       1.1     skrll 	which has been created using <<bfd_make_empty_symbol>>.  Here is an
    106       1.1     skrll 	example showing the creation of a symbol table with only one element:
    107       1.1     skrll 
    108   1.1.1.7  christos |       #include "sysdep.h"
    109   1.1.1.7  christos |       #include "bfd.h"
    110   1.1.1.7  christos |       int main (void)
    111   1.1.1.7  christos |       {
    112   1.1.1.7  christos |         bfd *abfd;
    113   1.1.1.7  christos |         asymbol *ptrs[2];
    114   1.1.1.7  christos |         asymbol *new;
    115       1.1     skrll |
    116   1.1.1.7  christos |         abfd = bfd_openw ("foo","a.out-sunos-big");
    117   1.1.1.7  christos |         bfd_set_format (abfd, bfd_object);
    118   1.1.1.7  christos |         new = bfd_make_empty_symbol (abfd);
    119   1.1.1.7  christos |         new->name = "dummy_symbol";
    120   1.1.1.7  christos |         new->section = bfd_make_section_old_way (abfd, ".text");
    121   1.1.1.7  christos |         new->flags = BSF_GLOBAL;
    122   1.1.1.7  christos |         new->value = 0x12345;
    123       1.1     skrll |
    124   1.1.1.7  christos |         ptrs[0] = new;
    125   1.1.1.7  christos |         ptrs[1] = 0;
    126       1.1     skrll |
    127   1.1.1.7  christos |         bfd_set_symtab (abfd, ptrs, 1);
    128   1.1.1.7  christos |         bfd_close (abfd);
    129   1.1.1.7  christos |         return 0;
    130   1.1.1.7  christos |       }
    131       1.1     skrll |
    132   1.1.1.7  christos |       ./makesym
    133   1.1.1.7  christos |       nm foo
    134   1.1.1.7  christos |       00012345 A dummy_symbol
    135       1.1     skrll 
    136       1.1     skrll 	Many formats cannot represent arbitrary symbol information; for
    137   1.1.1.7  christos 	instance, the <<a.out>> object format does not allow an
    138       1.1     skrll 	arbitrary number of sections. A symbol pointing to a section
    139       1.1     skrll 	which is not one  of <<.text>>, <<.data>> or <<.bss>> cannot
    140       1.1     skrll 	be described.
    141       1.1     skrll 
    142       1.1     skrll INODE
    143       1.1     skrll Mini Symbols, typedef asymbol, Writing Symbols, Symbols
    144       1.1     skrll SUBSECTION
    145       1.1     skrll 	Mini Symbols
    146       1.1     skrll 
    147       1.1     skrll 	Mini symbols provide read-only access to the symbol table.
    148       1.1     skrll 	They use less memory space, but require more time to access.
    149       1.1     skrll 	They can be useful for tools like nm or objdump, which may
    150       1.1     skrll 	have to handle symbol tables of extremely large executables.
    151       1.1     skrll 
    152       1.1     skrll 	The <<bfd_read_minisymbols>> function will read the symbols
    153       1.1     skrll 	into memory in an internal form.  It will return a <<void *>>
    154       1.1     skrll 	pointer to a block of memory, a symbol count, and the size of
    155       1.1     skrll 	each symbol.  The pointer is allocated using <<malloc>>, and
    156       1.1     skrll 	should be freed by the caller when it is no longer needed.
    157       1.1     skrll 
    158       1.1     skrll 	The function <<bfd_minisymbol_to_symbol>> will take a pointer
    159       1.1     skrll 	to a minisymbol, and a pointer to a structure returned by
    160       1.1     skrll 	<<bfd_make_empty_symbol>>, and return a <<asymbol>> structure.
    161       1.1     skrll 	The return value may or may not be the same as the value from
    162       1.1     skrll 	<<bfd_make_empty_symbol>> which was passed in.
    163       1.1     skrll 
    164       1.1     skrll */
    165       1.1     skrll 
    166       1.1     skrll /*
    167       1.1     skrll DOCDD
    168       1.1     skrll INODE
    169       1.1     skrll typedef asymbol, symbol handling functions, Mini Symbols, Symbols
    170       1.1     skrll 
    171       1.1     skrll SUBSECTION
    172       1.1     skrll 	typedef asymbol
    173       1.1     skrll 
    174       1.1     skrll 	An <<asymbol>> has the form:
    175       1.1     skrll 
    176       1.1     skrll CODE_FRAGMENT
    177       1.1     skrll .typedef struct bfd_symbol
    178       1.1     skrll .{
    179       1.1     skrll .  {* A pointer to the BFD which owns the symbol. This information
    180       1.1     skrll .     is necessary so that a back end can work out what additional
    181       1.1     skrll .     information (invisible to the application writer) is carried
    182       1.1     skrll .     with the symbol.
    183       1.1     skrll .
    184       1.1     skrll .     This field is *almost* redundant, since you can use section->owner
    185       1.1     skrll .     instead, except that some symbols point to the global sections
    186       1.1     skrll .     bfd_{abs,com,und}_section.  This could be fixed by making
    187       1.1     skrll .     these globals be per-bfd (or per-target-flavor).  FIXME.  *}
    188       1.1     skrll .  struct bfd *the_bfd; {* Use bfd_asymbol_bfd(sym) to access this field.  *}
    189       1.1     skrll .
    190       1.1     skrll .  {* The text of the symbol. The name is left alone, and not copied; the
    191       1.1     skrll .     application may not alter it.  *}
    192       1.1     skrll .  const char *name;
    193       1.1     skrll .
    194       1.1     skrll .  {* The value of the symbol.  This really should be a union of a
    195       1.1     skrll .     numeric value with a pointer, since some flags indicate that
    196       1.1     skrll .     a pointer to another symbol is stored here.  *}
    197       1.1     skrll .  symvalue value;
    198       1.1     skrll .
    199       1.1     skrll .  {* Attributes of a symbol.  *}
    200   1.1.1.7  christos .#define BSF_NO_FLAGS            0
    201       1.1     skrll .
    202       1.1     skrll .  {* The symbol has local scope; <<static>> in <<C>>. The value
    203       1.1     skrll .     is the offset into the section of the data.  *}
    204   1.1.1.7  christos .#define BSF_LOCAL               (1 << 0)
    205       1.1     skrll .
    206       1.1     skrll .  {* The symbol has global scope; initialized data in <<C>>. The
    207       1.1     skrll .     value is the offset into the section of the data.  *}
    208   1.1.1.7  christos .#define BSF_GLOBAL              (1 << 1)
    209       1.1     skrll .
    210       1.1     skrll .  {* The symbol has global scope and is exported. The value is
    211       1.1     skrll .     the offset into the section of the data.  *}
    212   1.1.1.7  christos .#define BSF_EXPORT              BSF_GLOBAL {* No real difference.  *}
    213       1.1     skrll .
    214       1.1     skrll .  {* A normal C symbol would be one of:
    215   1.1.1.6  christos .     <<BSF_LOCAL>>, <<BSF_UNDEFINED>> or <<BSF_GLOBAL>>.  *}
    216       1.1     skrll .
    217       1.1     skrll .  {* The symbol is a debugging record. The value has an arbitrary
    218       1.1     skrll .     meaning, unless BSF_DEBUGGING_RELOC is also set.  *}
    219   1.1.1.7  christos .#define BSF_DEBUGGING           (1 << 2)
    220       1.1     skrll .
    221       1.1     skrll .  {* The symbol denotes a function entry point.  Used in ELF,
    222       1.1     skrll .     perhaps others someday.  *}
    223   1.1.1.7  christos .#define BSF_FUNCTION            (1 << 3)
    224       1.1     skrll .
    225       1.1     skrll .  {* Used by the linker.  *}
    226   1.1.1.7  christos .#define BSF_KEEP                (1 << 5)
    227   1.1.1.6  christos .
    228   1.1.1.6  christos .  {* An ELF common symbol.  *}
    229   1.1.1.7  christos .#define BSF_ELF_COMMON          (1 << 6)
    230       1.1     skrll .
    231       1.1     skrll .  {* A weak global symbol, overridable without warnings by
    232       1.1     skrll .     a regular global symbol of the same name.  *}
    233   1.1.1.7  christos .#define BSF_WEAK                (1 << 7)
    234       1.1     skrll .
    235       1.1     skrll .  {* This symbol was created to point to a section, e.g. ELF's
    236       1.1     skrll .     STT_SECTION symbols.  *}
    237   1.1.1.7  christos .#define BSF_SECTION_SYM         (1 << 8)
    238       1.1     skrll .
    239       1.1     skrll .  {* The symbol used to be a common symbol, but now it is
    240       1.1     skrll .     allocated.  *}
    241   1.1.1.7  christos .#define BSF_OLD_COMMON          (1 << 9)
    242       1.1     skrll .
    243       1.1     skrll .  {* In some files the type of a symbol sometimes alters its
    244       1.1     skrll .     location in an output file - ie in coff a <<ISFCN>> symbol
    245       1.1     skrll .     which is also <<C_EXT>> symbol appears where it was
    246       1.1     skrll .     declared and not at the end of a section.  This bit is set
    247       1.1     skrll .     by the target BFD part to convey this information.  *}
    248   1.1.1.7  christos .#define BSF_NOT_AT_END          (1 << 10)
    249       1.1     skrll .
    250       1.1     skrll .  {* Signal that the symbol is the label of constructor section.  *}
    251   1.1.1.7  christos .#define BSF_CONSTRUCTOR         (1 << 11)
    252       1.1     skrll .
    253       1.1     skrll .  {* Signal that the symbol is a warning symbol.  The name is a
    254       1.1     skrll .     warning.  The name of the next symbol is the one to warn about;
    255       1.1     skrll .     if a reference is made to a symbol with the same name as the next
    256       1.1     skrll .     symbol, a warning is issued by the linker.  *}
    257   1.1.1.7  christos .#define BSF_WARNING             (1 << 12)
    258       1.1     skrll .
    259       1.1     skrll .  {* Signal that the symbol is indirect.  This symbol is an indirect
    260       1.1     skrll .     pointer to the symbol with the same name as the next symbol.  *}
    261   1.1.1.7  christos .#define BSF_INDIRECT            (1 << 13)
    262       1.1     skrll .
    263       1.1     skrll .  {* BSF_FILE marks symbols that contain a file name.  This is used
    264       1.1     skrll .     for ELF STT_FILE symbols.  *}
    265   1.1.1.7  christos .#define BSF_FILE                (1 << 14)
    266       1.1     skrll .
    267       1.1     skrll .  {* Symbol is from dynamic linking information.  *}
    268   1.1.1.7  christos .#define BSF_DYNAMIC             (1 << 15)
    269       1.1     skrll .
    270       1.1     skrll .  {* The symbol denotes a data object.  Used in ELF, and perhaps
    271       1.1     skrll .     others someday.  *}
    272   1.1.1.7  christos .#define BSF_OBJECT              (1 << 16)
    273       1.1     skrll .
    274       1.1     skrll .  {* This symbol is a debugging symbol.  The value is the offset
    275       1.1     skrll .     into the section of the data.  BSF_DEBUGGING should be set
    276       1.1     skrll .     as well.  *}
    277   1.1.1.7  christos .#define BSF_DEBUGGING_RELOC     (1 << 17)
    278       1.1     skrll .
    279       1.1     skrll .  {* This symbol is thread local.  Used in ELF.  *}
    280   1.1.1.7  christos .#define BSF_THREAD_LOCAL        (1 << 18)
    281       1.1     skrll .
    282       1.1     skrll .  {* This symbol represents a complex relocation expression,
    283       1.1     skrll .     with the expression tree serialized in the symbol name.  *}
    284   1.1.1.7  christos .#define BSF_RELC                (1 << 19)
    285       1.1     skrll .
    286       1.1     skrll .  {* This symbol represents a signed complex relocation expression,
    287       1.1     skrll .     with the expression tree serialized in the symbol name.  *}
    288   1.1.1.7  christos .#define BSF_SRELC               (1 << 20)
    289       1.1     skrll .
    290       1.1     skrll .  {* This symbol was created by bfd_get_synthetic_symtab.  *}
    291   1.1.1.7  christos .#define BSF_SYNTHETIC           (1 << 21)
    292   1.1.1.3  christos .
    293   1.1.1.3  christos .  {* This symbol is an indirect code object.  Unrelated to BSF_INDIRECT.
    294   1.1.1.3  christos .     The dynamic linker will compute the value of this symbol by
    295   1.1.1.3  christos .     calling the function that it points to.  BSF_FUNCTION must
    296   1.1.1.3  christos .     also be also set.  *}
    297   1.1.1.3  christos .#define BSF_GNU_INDIRECT_FUNCTION (1 << 22)
    298   1.1.1.3  christos .  {* This symbol is a globally unique data object.  The dynamic linker
    299   1.1.1.3  christos .     will make sure that in the entire process there is just one symbol
    300   1.1.1.3  christos .     with this name and type in use.  BSF_OBJECT must also be set.  *}
    301   1.1.1.7  christos .#define BSF_GNU_UNIQUE          (1 << 23)
    302       1.1     skrll .
    303  1.1.1.10  christos .  {* This section symbol should be included in the symbol table.  *}
    304  1.1.1.10  christos .#define BSF_SECTION_SYM_USED    (1 << 24)
    305  1.1.1.10  christos .
    306       1.1     skrll .  flagword flags;
    307       1.1     skrll .
    308       1.1     skrll .  {* A pointer to the section to which this symbol is
    309       1.1     skrll .     relative.  This will always be non NULL, there are special
    310       1.1     skrll .     sections for undefined and absolute symbols.  *}
    311       1.1     skrll .  struct bfd_section *section;
    312       1.1     skrll .
    313       1.1     skrll .  {* Back end special data.  *}
    314       1.1     skrll .  union
    315       1.1     skrll .    {
    316       1.1     skrll .      void *p;
    317       1.1     skrll .      bfd_vma i;
    318       1.1     skrll .    }
    319       1.1     skrll .  udata;
    320       1.1     skrll .}
    321       1.1     skrll .asymbol;
    322       1.1     skrll .
    323  1.1.1.11  christos 
    324  1.1.1.11  christos EXTERNAL
    325  1.1.1.11  christos .typedef enum bfd_print_symbol
    326  1.1.1.11  christos .{
    327  1.1.1.11  christos .  bfd_print_symbol_name,
    328  1.1.1.11  christos .  bfd_print_symbol_more,
    329  1.1.1.11  christos .  bfd_print_symbol_all
    330  1.1.1.11  christos .} bfd_print_symbol_type;
    331  1.1.1.11  christos .
    332  1.1.1.11  christos .{* Information about a symbol that nm needs.  *}
    333  1.1.1.11  christos .
    334  1.1.1.11  christos .typedef struct _symbol_info
    335  1.1.1.11  christos .{
    336  1.1.1.11  christos .  symvalue value;
    337  1.1.1.11  christos .  char type;
    338  1.1.1.11  christos .  const char *name;		{* Symbol name.  *}
    339  1.1.1.11  christos .  unsigned char stab_type;	{* Stab type.  *}
    340  1.1.1.11  christos .  char stab_other;		{* Stab other.  *}
    341  1.1.1.11  christos .  short stab_desc;		{* Stab desc.  *}
    342  1.1.1.11  christos .  const char *stab_name;	{* String for stab type.  *}
    343  1.1.1.11  christos .} symbol_info;
    344  1.1.1.11  christos .
    345       1.1     skrll */
    346       1.1     skrll 
    347       1.1     skrll #include "sysdep.h"
    348       1.1     skrll #include "bfd.h"
    349       1.1     skrll #include "libbfd.h"
    350       1.1     skrll #include "safe-ctype.h"
    351       1.1     skrll #include "bfdlink.h"
    352       1.1     skrll #include "aout/stab_gnu.h"
    353       1.1     skrll 
    354       1.1     skrll /*
    355       1.1     skrll DOCDD
    356       1.1     skrll INODE
    357       1.1     skrll symbol handling functions,  , typedef asymbol, Symbols
    358       1.1     skrll SUBSECTION
    359       1.1     skrll 	Symbol handling functions
    360       1.1     skrll */
    361       1.1     skrll 
    362       1.1     skrll /*
    363       1.1     skrll FUNCTION
    364       1.1     skrll 	bfd_get_symtab_upper_bound
    365       1.1     skrll 
    366       1.1     skrll DESCRIPTION
    367       1.1     skrll 	Return the number of bytes required to store a vector of pointers
    368       1.1     skrll 	to <<asymbols>> for all the symbols in the BFD @var{abfd},
    369       1.1     skrll 	including a terminal NULL pointer. If there are no symbols in
    370       1.1     skrll 	the BFD, then return 0.  If an error occurs, return -1.
    371       1.1     skrll 
    372       1.1     skrll .#define bfd_get_symtab_upper_bound(abfd) \
    373   1.1.1.7  christos .	BFD_SEND (abfd, _bfd_get_symtab_upper_bound, (abfd))
    374       1.1     skrll .
    375       1.1     skrll */
    376       1.1     skrll 
    377       1.1     skrll /*
    378       1.1     skrll FUNCTION
    379       1.1     skrll 	bfd_is_local_label
    380       1.1     skrll 
    381       1.1     skrll SYNOPSIS
    382  1.1.1.10  christos 	bool bfd_is_local_label (bfd *abfd, asymbol *sym);
    383       1.1     skrll 
    384       1.1     skrll DESCRIPTION
    385       1.1     skrll 	Return TRUE if the given symbol @var{sym} in the BFD @var{abfd} is
    386       1.1     skrll 	a compiler generated local label, else return FALSE.
    387       1.1     skrll */
    388       1.1     skrll 
    389  1.1.1.10  christos bool
    390       1.1     skrll bfd_is_local_label (bfd *abfd, asymbol *sym)
    391       1.1     skrll {
    392       1.1     skrll   /* The BSF_SECTION_SYM check is needed for IA-64, where every label that
    393       1.1     skrll      starts with '.' is local.  This would accidentally catch section names
    394       1.1     skrll      if we didn't reject them here.  */
    395       1.1     skrll   if ((sym->flags & (BSF_GLOBAL | BSF_WEAK | BSF_FILE | BSF_SECTION_SYM)) != 0)
    396  1.1.1.10  christos     return false;
    397       1.1     skrll   if (sym->name == NULL)
    398  1.1.1.10  christos     return false;
    399       1.1     skrll   return bfd_is_local_label_name (abfd, sym->name);
    400       1.1     skrll }
    401       1.1     skrll 
    402       1.1     skrll /*
    403       1.1     skrll FUNCTION
    404       1.1     skrll 	bfd_is_local_label_name
    405       1.1     skrll 
    406       1.1     skrll SYNOPSIS
    407  1.1.1.10  christos 	bool bfd_is_local_label_name (bfd *abfd, const char *name);
    408       1.1     skrll 
    409       1.1     skrll DESCRIPTION
    410       1.1     skrll 	Return TRUE if a symbol with the name @var{name} in the BFD
    411       1.1     skrll 	@var{abfd} is a compiler generated local label, else return
    412       1.1     skrll 	FALSE.  This just checks whether the name has the form of a
    413       1.1     skrll 	local label.
    414       1.1     skrll 
    415       1.1     skrll .#define bfd_is_local_label_name(abfd, name) \
    416   1.1.1.7  christos .	BFD_SEND (abfd, _bfd_is_local_label_name, (abfd, name))
    417       1.1     skrll .
    418       1.1     skrll */
    419       1.1     skrll 
    420       1.1     skrll /*
    421       1.1     skrll FUNCTION
    422       1.1     skrll 	bfd_is_target_special_symbol
    423       1.1     skrll 
    424       1.1     skrll SYNOPSIS
    425  1.1.1.10  christos 	bool bfd_is_target_special_symbol (bfd *abfd, asymbol *sym);
    426       1.1     skrll 
    427       1.1     skrll DESCRIPTION
    428       1.1     skrll 	Return TRUE iff a symbol @var{sym} in the BFD @var{abfd} is something
    429       1.1     skrll 	special to the particular target represented by the BFD.  Such symbols
    430       1.1     skrll 	should normally not be mentioned to the user.
    431       1.1     skrll 
    432       1.1     skrll .#define bfd_is_target_special_symbol(abfd, sym) \
    433   1.1.1.7  christos .	BFD_SEND (abfd, _bfd_is_target_special_symbol, (abfd, sym))
    434       1.1     skrll .
    435       1.1     skrll */
    436       1.1     skrll 
    437       1.1     skrll /*
    438       1.1     skrll FUNCTION
    439       1.1     skrll 	bfd_canonicalize_symtab
    440       1.1     skrll 
    441       1.1     skrll DESCRIPTION
    442       1.1     skrll 	Read the symbols from the BFD @var{abfd}, and fills in
    443       1.1     skrll 	the vector @var{location} with pointers to the symbols and
    444       1.1     skrll 	a trailing NULL.
    445       1.1     skrll 	Return the actual number of symbol pointers, not
    446       1.1     skrll 	including the NULL.
    447       1.1     skrll 
    448       1.1     skrll .#define bfd_canonicalize_symtab(abfd, location) \
    449   1.1.1.7  christos .	BFD_SEND (abfd, _bfd_canonicalize_symtab, (abfd, location))
    450       1.1     skrll .
    451       1.1     skrll */
    452       1.1     skrll 
    453       1.1     skrll /*
    454       1.1     skrll FUNCTION
    455       1.1     skrll 	bfd_set_symtab
    456       1.1     skrll 
    457       1.1     skrll SYNOPSIS
    458  1.1.1.10  christos 	bool bfd_set_symtab
    459       1.1     skrll 	  (bfd *abfd, asymbol **location, unsigned int count);
    460       1.1     skrll 
    461       1.1     skrll DESCRIPTION
    462       1.1     skrll 	Arrange that when the output BFD @var{abfd} is closed,
    463       1.1     skrll 	the table @var{location} of @var{count} pointers to symbols
    464       1.1     skrll 	will be written.
    465       1.1     skrll */
    466       1.1     skrll 
    467  1.1.1.10  christos bool
    468       1.1     skrll bfd_set_symtab (bfd *abfd, asymbol **location, unsigned int symcount)
    469       1.1     skrll {
    470       1.1     skrll   if (abfd->format != bfd_object || bfd_read_p (abfd))
    471       1.1     skrll     {
    472       1.1     skrll       bfd_set_error (bfd_error_invalid_operation);
    473  1.1.1.10  christos       return false;
    474       1.1     skrll     }
    475       1.1     skrll 
    476   1.1.1.9  christos   abfd->outsymbols = location;
    477   1.1.1.9  christos   abfd->symcount = symcount;
    478  1.1.1.10  christos   return true;
    479       1.1     skrll }
    480       1.1     skrll 
    481       1.1     skrll /*
    482       1.1     skrll FUNCTION
    483       1.1     skrll 	bfd_print_symbol_vandf
    484       1.1     skrll 
    485       1.1     skrll SYNOPSIS
    486       1.1     skrll 	void bfd_print_symbol_vandf (bfd *abfd, void *file, asymbol *symbol);
    487       1.1     skrll 
    488       1.1     skrll DESCRIPTION
    489       1.1     skrll 	Print the value and flags of the @var{symbol} supplied to the
    490       1.1     skrll 	stream @var{file}.
    491       1.1     skrll */
    492       1.1     skrll void
    493       1.1     skrll bfd_print_symbol_vandf (bfd *abfd, void *arg, asymbol *symbol)
    494       1.1     skrll {
    495   1.1.1.3  christos   FILE *file = (FILE *) arg;
    496       1.1     skrll 
    497       1.1     skrll   flagword type = symbol->flags;
    498       1.1     skrll 
    499       1.1     skrll   if (symbol->section != NULL)
    500       1.1     skrll     bfd_fprintf_vma (abfd, file, symbol->value + symbol->section->vma);
    501       1.1     skrll   else
    502       1.1     skrll     bfd_fprintf_vma (abfd, file, symbol->value);
    503       1.1     skrll 
    504       1.1     skrll   /* This presumes that a symbol can not be both BSF_DEBUGGING and
    505       1.1     skrll      BSF_DYNAMIC, nor more than one of BSF_FUNCTION, BSF_FILE, and
    506       1.1     skrll      BSF_OBJECT.  */
    507       1.1     skrll   fprintf (file, " %c%c%c%c%c%c%c",
    508       1.1     skrll 	   ((type & BSF_LOCAL)
    509       1.1     skrll 	    ? (type & BSF_GLOBAL) ? '!' : 'l'
    510   1.1.1.3  christos 	    : (type & BSF_GLOBAL) ? 'g'
    511   1.1.1.3  christos 	    : (type & BSF_GNU_UNIQUE) ? 'u' : ' '),
    512       1.1     skrll 	   (type & BSF_WEAK) ? 'w' : ' ',
    513       1.1     skrll 	   (type & BSF_CONSTRUCTOR) ? 'C' : ' ',
    514       1.1     skrll 	   (type & BSF_WARNING) ? 'W' : ' ',
    515   1.1.1.3  christos 	   (type & BSF_INDIRECT) ? 'I' : (type & BSF_GNU_INDIRECT_FUNCTION) ? 'i' : ' ',
    516       1.1     skrll 	   (type & BSF_DEBUGGING) ? 'd' : (type & BSF_DYNAMIC) ? 'D' : ' ',
    517       1.1     skrll 	   ((type & BSF_FUNCTION)
    518       1.1     skrll 	    ? 'F'
    519       1.1     skrll 	    : ((type & BSF_FILE)
    520       1.1     skrll 	       ? 'f'
    521       1.1     skrll 	       : ((type & BSF_OBJECT) ? 'O' : ' '))));
    522       1.1     skrll }
    523       1.1     skrll 
    524       1.1     skrll /*
    525       1.1     skrll FUNCTION
    526       1.1     skrll 	bfd_make_empty_symbol
    527       1.1     skrll 
    528       1.1     skrll DESCRIPTION
    529       1.1     skrll 	Create a new <<asymbol>> structure for the BFD @var{abfd}
    530       1.1     skrll 	and return a pointer to it.
    531       1.1     skrll 
    532       1.1     skrll 	This routine is necessary because each back end has private
    533       1.1     skrll 	information surrounding the <<asymbol>>. Building your own
    534       1.1     skrll 	<<asymbol>> and pointing to it will not create the private
    535       1.1     skrll 	information, and will cause problems later on.
    536       1.1     skrll 
    537       1.1     skrll .#define bfd_make_empty_symbol(abfd) \
    538   1.1.1.7  christos .	BFD_SEND (abfd, _bfd_make_empty_symbol, (abfd))
    539       1.1     skrll .
    540       1.1     skrll */
    541       1.1     skrll 
    542       1.1     skrll /*
    543       1.1     skrll FUNCTION
    544       1.1     skrll 	_bfd_generic_make_empty_symbol
    545       1.1     skrll 
    546       1.1     skrll SYNOPSIS
    547       1.1     skrll 	asymbol *_bfd_generic_make_empty_symbol (bfd *);
    548       1.1     skrll 
    549       1.1     skrll DESCRIPTION
    550       1.1     skrll 	Create a new <<asymbol>> structure for the BFD @var{abfd}
    551       1.1     skrll 	and return a pointer to it.  Used by core file routines,
    552       1.1     skrll 	binary back-end and anywhere else where no private info
    553       1.1     skrll 	is needed.
    554       1.1     skrll */
    555       1.1     skrll 
    556       1.1     skrll asymbol *
    557       1.1     skrll _bfd_generic_make_empty_symbol (bfd *abfd)
    558       1.1     skrll {
    559  1.1.1.10  christos   size_t amt = sizeof (asymbol);
    560   1.1.1.3  christos   asymbol *new_symbol = (asymbol *) bfd_zalloc (abfd, amt);
    561   1.1.1.3  christos   if (new_symbol)
    562   1.1.1.3  christos     new_symbol->the_bfd = abfd;
    563   1.1.1.3  christos   return new_symbol;
    564       1.1     skrll }
    565       1.1     skrll 
    566       1.1     skrll /*
    567       1.1     skrll FUNCTION
    568       1.1     skrll 	bfd_make_debug_symbol
    569       1.1     skrll 
    570       1.1     skrll DESCRIPTION
    571       1.1     skrll 	Create a new <<asymbol>> structure for the BFD @var{abfd},
    572  1.1.1.11  christos 	to be used as a debugging symbol.
    573       1.1     skrll 
    574  1.1.1.11  christos .#define bfd_make_debug_symbol(abfd) \
    575  1.1.1.11  christos .	BFD_SEND (abfd, _bfd_make_debug_symbol, (abfd))
    576       1.1     skrll .
    577       1.1     skrll */
    578       1.1     skrll 
    579       1.1     skrll struct section_to_type
    580       1.1     skrll {
    581       1.1     skrll   const char *section;
    582       1.1     skrll   char type;
    583       1.1     skrll };
    584       1.1     skrll 
    585  1.1.1.10  christos /* Map special section names to POSIX/BSD single-character symbol types.
    586       1.1     skrll    This table is probably incomplete.  It is sorted for convenience of
    587       1.1     skrll    adding entries.  Since it is so short, a linear search is used.  */
    588       1.1     skrll static const struct section_to_type stt[] =
    589       1.1     skrll {
    590   1.1.1.7  christos   {".drectve", 'i'},		/* MSVC's .drective section */
    591   1.1.1.7  christos   {".edata", 'e'},		/* MSVC's .edata (export) section */
    592   1.1.1.7  christos   {".idata", 'i'},		/* MSVC's .idata (import) section */
    593   1.1.1.7  christos   {".pdata", 'p'},		/* MSVC's .pdata (stack unwind) section */
    594       1.1     skrll   {0, 0}
    595       1.1     skrll };
    596       1.1     skrll 
    597       1.1     skrll /* Return the single-character symbol type corresponding to
    598       1.1     skrll    section S, or '?' for an unknown COFF section.
    599       1.1     skrll 
    600   1.1.1.9  christos    Check for leading strings which match, followed by a number, '.',
    601  1.1.1.10  christos    or '$' so .idata5 matches the .idata entry.  */
    602       1.1     skrll 
    603       1.1     skrll static char
    604       1.1     skrll coff_section_type (const char *s)
    605       1.1     skrll {
    606       1.1     skrll   const struct section_to_type *t;
    607       1.1     skrll 
    608       1.1     skrll   for (t = &stt[0]; t->section; t++)
    609   1.1.1.9  christos     {
    610   1.1.1.9  christos       size_t len = strlen (t->section);
    611   1.1.1.9  christos       if (strncmp (s, t->section, len) == 0
    612   1.1.1.9  christos 	  && memchr (".$0123456789", s[len], 13) != 0)
    613   1.1.1.9  christos 	return t->type;
    614   1.1.1.9  christos     }
    615       1.1     skrll 
    616       1.1     skrll   return '?';
    617       1.1     skrll }
    618       1.1     skrll 
    619       1.1     skrll /* Return the single-character symbol type corresponding to section
    620       1.1     skrll    SECTION, or '?' for an unknown section.  This uses section flags to
    621       1.1     skrll    identify sections.
    622       1.1     skrll 
    623  1.1.1.10  christos    FIXME These types are unhandled: e, i, p.  If we handled these also,
    624       1.1     skrll    we could perhaps obsolete coff_section_type.  */
    625       1.1     skrll 
    626       1.1     skrll static char
    627       1.1     skrll decode_section_type (const struct bfd_section *section)
    628       1.1     skrll {
    629       1.1     skrll   if (section->flags & SEC_CODE)
    630       1.1     skrll     return 't';
    631       1.1     skrll   if (section->flags & SEC_DATA)
    632       1.1     skrll     {
    633       1.1     skrll       if (section->flags & SEC_READONLY)
    634       1.1     skrll 	return 'r';
    635       1.1     skrll       else if (section->flags & SEC_SMALL_DATA)
    636       1.1     skrll 	return 'g';
    637       1.1     skrll       else
    638       1.1     skrll 	return 'd';
    639       1.1     skrll     }
    640       1.1     skrll   if ((section->flags & SEC_HAS_CONTENTS) == 0)
    641       1.1     skrll     {
    642       1.1     skrll       if (section->flags & SEC_SMALL_DATA)
    643       1.1     skrll 	return 's';
    644       1.1     skrll       else
    645       1.1     skrll 	return 'b';
    646       1.1     skrll     }
    647       1.1     skrll   if (section->flags & SEC_DEBUGGING)
    648       1.1     skrll     return 'N';
    649       1.1     skrll   if ((section->flags & SEC_HAS_CONTENTS) && (section->flags & SEC_READONLY))
    650       1.1     skrll     return 'n';
    651       1.1     skrll 
    652       1.1     skrll   return '?';
    653       1.1     skrll }
    654       1.1     skrll 
    655       1.1     skrll /*
    656       1.1     skrll FUNCTION
    657       1.1     skrll 	bfd_decode_symclass
    658       1.1     skrll 
    659  1.1.1.11  christos SYNOPSIS
    660  1.1.1.11  christos 	int bfd_decode_symclass (asymbol *symbol);
    661  1.1.1.11  christos 
    662       1.1     skrll DESCRIPTION
    663       1.1     skrll 	Return a character corresponding to the symbol
    664       1.1     skrll 	class of @var{symbol}, or '?' for an unknown class.
    665       1.1     skrll */
    666       1.1     skrll int
    667       1.1     skrll bfd_decode_symclass (asymbol *symbol)
    668       1.1     skrll {
    669       1.1     skrll   char c;
    670       1.1     skrll 
    671  1.1.1.10  christos   /* Paranoia...  */
    672  1.1.1.10  christos   if (symbol == NULL || symbol->section == NULL)
    673  1.1.1.10  christos     return '?';
    674  1.1.1.10  christos 
    675       1.1     skrll   if (symbol->section && bfd_is_com_section (symbol->section))
    676  1.1.1.10  christos     {
    677  1.1.1.10  christos       if (symbol->section->flags & SEC_SMALL_DATA)
    678  1.1.1.10  christos 	return 'c';
    679  1.1.1.10  christos       else
    680  1.1.1.10  christos 	return 'C';
    681  1.1.1.10  christos     }
    682       1.1     skrll   if (bfd_is_und_section (symbol->section))
    683       1.1     skrll     {
    684       1.1     skrll       if (symbol->flags & BSF_WEAK)
    685       1.1     skrll 	{
    686       1.1     skrll 	  /* If weak, determine if it's specifically an object
    687       1.1     skrll 	     or non-object weak.  */
    688       1.1     skrll 	  if (symbol->flags & BSF_OBJECT)
    689       1.1     skrll 	    return 'v';
    690       1.1     skrll 	  else
    691       1.1     skrll 	    return 'w';
    692       1.1     skrll 	}
    693       1.1     skrll       else
    694       1.1     skrll 	return 'U';
    695       1.1     skrll     }
    696       1.1     skrll   if (bfd_is_ind_section (symbol->section))
    697       1.1     skrll     return 'I';
    698   1.1.1.3  christos   if (symbol->flags & BSF_GNU_INDIRECT_FUNCTION)
    699   1.1.1.3  christos     return 'i';
    700       1.1     skrll   if (symbol->flags & BSF_WEAK)
    701       1.1     skrll     {
    702       1.1     skrll       /* If weak, determine if it's specifically an object
    703       1.1     skrll 	 or non-object weak.  */
    704       1.1     skrll       if (symbol->flags & BSF_OBJECT)
    705       1.1     skrll 	return 'V';
    706       1.1     skrll       else
    707       1.1     skrll 	return 'W';
    708       1.1     skrll     }
    709   1.1.1.3  christos   if (symbol->flags & BSF_GNU_UNIQUE)
    710   1.1.1.3  christos     return 'u';
    711       1.1     skrll   if (!(symbol->flags & (BSF_GLOBAL | BSF_LOCAL)))
    712       1.1     skrll     return '?';
    713       1.1     skrll 
    714       1.1     skrll   if (bfd_is_abs_section (symbol->section))
    715       1.1     skrll     c = 'a';
    716       1.1     skrll   else if (symbol->section)
    717       1.1     skrll     {
    718  1.1.1.10  christos       c = coff_section_type (symbol->section->name);
    719       1.1     skrll       if (c == '?')
    720  1.1.1.10  christos 	c = decode_section_type (symbol->section);
    721       1.1     skrll     }
    722       1.1     skrll   else
    723       1.1     skrll     return '?';
    724       1.1     skrll   if (symbol->flags & BSF_GLOBAL)
    725       1.1     skrll     c = TOUPPER (c);
    726       1.1     skrll   return c;
    727       1.1     skrll 
    728       1.1     skrll   /* We don't have to handle these cases just yet, but we will soon:
    729       1.1     skrll      N_SETV: 'v';
    730       1.1     skrll      N_SETA: 'l';
    731       1.1     skrll      N_SETT: 'x';
    732       1.1     skrll      N_SETD: 'z';
    733       1.1     skrll      N_SETB: 's';
    734       1.1     skrll      N_INDR: 'i';
    735       1.1     skrll      */
    736       1.1     skrll }
    737       1.1     skrll 
    738       1.1     skrll /*
    739       1.1     skrll FUNCTION
    740       1.1     skrll 	bfd_is_undefined_symclass
    741       1.1     skrll 
    742  1.1.1.11  christos SYNOPSIS
    743  1.1.1.11  christos 	bool bfd_is_undefined_symclass (int symclass);
    744  1.1.1.11  christos 
    745       1.1     skrll DESCRIPTION
    746       1.1     skrll 	Returns non-zero if the class symbol returned by
    747       1.1     skrll 	bfd_decode_symclass represents an undefined symbol.
    748       1.1     skrll 	Returns zero otherwise.
    749       1.1     skrll */
    750       1.1     skrll 
    751  1.1.1.10  christos bool
    752       1.1     skrll bfd_is_undefined_symclass (int symclass)
    753       1.1     skrll {
    754       1.1     skrll   return symclass == 'U' || symclass == 'w' || symclass == 'v';
    755       1.1     skrll }
    756       1.1     skrll 
    757       1.1     skrll /*
    758       1.1     skrll FUNCTION
    759       1.1     skrll 	bfd_symbol_info
    760       1.1     skrll 
    761  1.1.1.11  christos SYNOPSIS
    762  1.1.1.11  christos 	void bfd_symbol_info (asymbol *symbol, symbol_info *ret);
    763  1.1.1.11  christos 
    764       1.1     skrll DESCRIPTION
    765       1.1     skrll 	Fill in the basic info about symbol that nm needs.
    766       1.1     skrll 	Additional info may be added by the back-ends after
    767       1.1     skrll 	calling this function.
    768       1.1     skrll */
    769       1.1     skrll 
    770       1.1     skrll void
    771       1.1     skrll bfd_symbol_info (asymbol *symbol, symbol_info *ret)
    772       1.1     skrll {
    773       1.1     skrll   ret->type = bfd_decode_symclass (symbol);
    774       1.1     skrll 
    775       1.1     skrll   if (bfd_is_undefined_symclass (ret->type))
    776       1.1     skrll     ret->value = 0;
    777       1.1     skrll   else
    778       1.1     skrll     ret->value = symbol->value + symbol->section->vma;
    779       1.1     skrll 
    780       1.1     skrll   ret->name = symbol->name;
    781       1.1     skrll }
    782       1.1     skrll 
    783       1.1     skrll /*
    784       1.1     skrll FUNCTION
    785       1.1     skrll 	bfd_copy_private_symbol_data
    786       1.1     skrll 
    787       1.1     skrll SYNOPSIS
    788  1.1.1.10  christos 	bool bfd_copy_private_symbol_data
    789       1.1     skrll 	  (bfd *ibfd, asymbol *isym, bfd *obfd, asymbol *osym);
    790       1.1     skrll 
    791       1.1     skrll DESCRIPTION
    792       1.1     skrll 	Copy private symbol information from @var{isym} in the BFD
    793       1.1     skrll 	@var{ibfd} to the symbol @var{osym} in the BFD @var{obfd}.
    794       1.1     skrll 	Return <<TRUE>> on success, <<FALSE>> on error.  Possible error
    795       1.1     skrll 	returns are:
    796       1.1     skrll 
    797       1.1     skrll 	o <<bfd_error_no_memory>> -
    798       1.1     skrll 	Not enough memory exists to create private data for @var{osec}.
    799       1.1     skrll 
    800       1.1     skrll .#define bfd_copy_private_symbol_data(ibfd, isymbol, obfd, osymbol) \
    801   1.1.1.7  christos .	BFD_SEND (obfd, _bfd_copy_private_symbol_data, \
    802   1.1.1.7  christos .		  (ibfd, isymbol, obfd, osymbol))
    803       1.1     skrll .
    804       1.1     skrll */
    805       1.1     skrll 
    806       1.1     skrll /* The generic version of the function which returns mini symbols.
    807       1.1     skrll    This is used when the backend does not provide a more efficient
    808       1.1     skrll    version.  It just uses BFD asymbol structures as mini symbols.  */
    809       1.1     skrll 
    810       1.1     skrll long
    811       1.1     skrll _bfd_generic_read_minisymbols (bfd *abfd,
    812  1.1.1.10  christos 			       bool dynamic,
    813       1.1     skrll 			       void **minisymsp,
    814       1.1     skrll 			       unsigned int *sizep)
    815       1.1     skrll {
    816       1.1     skrll   long storage;
    817       1.1     skrll   asymbol **syms = NULL;
    818       1.1     skrll   long symcount;
    819       1.1     skrll 
    820       1.1     skrll   if (dynamic)
    821       1.1     skrll     storage = bfd_get_dynamic_symtab_upper_bound (abfd);
    822       1.1     skrll   else
    823       1.1     skrll     storage = bfd_get_symtab_upper_bound (abfd);
    824       1.1     skrll   if (storage < 0)
    825       1.1     skrll     goto error_return;
    826       1.1     skrll   if (storage == 0)
    827       1.1     skrll     return 0;
    828       1.1     skrll 
    829   1.1.1.3  christos   syms = (asymbol **) bfd_malloc (storage);
    830       1.1     skrll   if (syms == NULL)
    831       1.1     skrll     goto error_return;
    832       1.1     skrll 
    833       1.1     skrll   if (dynamic)
    834       1.1     skrll     symcount = bfd_canonicalize_dynamic_symtab (abfd, syms);
    835       1.1     skrll   else
    836       1.1     skrll     symcount = bfd_canonicalize_symtab (abfd, syms);
    837       1.1     skrll   if (symcount < 0)
    838       1.1     skrll     goto error_return;
    839       1.1     skrll 
    840   1.1.1.9  christos   if (symcount == 0)
    841   1.1.1.9  christos     /* We return 0 above when storage is 0.  Exit in the same state
    842   1.1.1.9  christos        here, so as to not complicate callers with having to deal with
    843   1.1.1.9  christos        freeing memory for zero symcount.  */
    844   1.1.1.9  christos     free (syms);
    845   1.1.1.9  christos   else
    846   1.1.1.9  christos     {
    847   1.1.1.9  christos       *minisymsp = syms;
    848   1.1.1.9  christos       *sizep = sizeof (asymbol *);
    849   1.1.1.9  christos     }
    850       1.1     skrll   return symcount;
    851       1.1     skrll 
    852       1.1     skrll  error_return:
    853       1.1     skrll   bfd_set_error (bfd_error_no_symbols);
    854  1.1.1.10  christos   free (syms);
    855       1.1     skrll   return -1;
    856       1.1     skrll }
    857       1.1     skrll 
    858       1.1     skrll /* The generic version of the function which converts a minisymbol to
    859       1.1     skrll    an asymbol.  We don't worry about the sym argument we are passed;
    860       1.1     skrll    we just return the asymbol the minisymbol points to.  */
    861       1.1     skrll 
    862       1.1     skrll asymbol *
    863       1.1     skrll _bfd_generic_minisymbol_to_symbol (bfd *abfd ATTRIBUTE_UNUSED,
    864  1.1.1.10  christos 				   bool dynamic ATTRIBUTE_UNUSED,
    865       1.1     skrll 				   const void *minisym,
    866       1.1     skrll 				   asymbol *sym ATTRIBUTE_UNUSED)
    867       1.1     skrll {
    868       1.1     skrll   return *(asymbol **) minisym;
    869       1.1     skrll }
    870       1.1     skrll 
    871       1.1     skrll /* Look through stabs debugging information in .stab and .stabstr
    872       1.1     skrll    sections to find the source file and line closest to a desired
    873       1.1     skrll    location.  This is used by COFF and ELF targets.  It sets *pfound
    874       1.1     skrll    to TRUE if it finds some information.  The *pinfo field is used to
    875       1.1     skrll    pass cached information in and out of this routine; this first time
    876       1.1     skrll    the routine is called for a BFD, *pinfo should be NULL.  The value
    877       1.1     skrll    placed in *pinfo should be saved with the BFD, and passed back each
    878       1.1     skrll    time this function is called.  */
    879       1.1     skrll 
    880       1.1     skrll /* We use a cache by default.  */
    881       1.1     skrll 
    882       1.1     skrll #define ENABLE_CACHING
    883       1.1     skrll 
    884       1.1     skrll /* We keep an array of indexentry structures to record where in the
    885       1.1     skrll    stabs section we should look to find line number information for a
    886       1.1     skrll    particular address.  */
    887       1.1     skrll 
    888       1.1     skrll struct indexentry
    889       1.1     skrll {
    890       1.1     skrll   bfd_vma val;
    891       1.1     skrll   bfd_byte *stab;
    892       1.1     skrll   bfd_byte *str;
    893       1.1     skrll   char *directory_name;
    894       1.1     skrll   char *file_name;
    895       1.1     skrll   char *function_name;
    896   1.1.1.9  christos   int idx;
    897       1.1     skrll };
    898       1.1     skrll 
    899       1.1     skrll /* Compare two indexentry structures.  This is called via qsort.  */
    900       1.1     skrll 
    901       1.1     skrll static int
    902       1.1     skrll cmpindexentry (const void *a, const void *b)
    903       1.1     skrll {
    904   1.1.1.3  christos   const struct indexentry *contestantA = (const struct indexentry *) a;
    905   1.1.1.3  christos   const struct indexentry *contestantB = (const struct indexentry *) b;
    906       1.1     skrll 
    907       1.1     skrll   if (contestantA->val < contestantB->val)
    908       1.1     skrll     return -1;
    909   1.1.1.9  christos   if (contestantA->val > contestantB->val)
    910       1.1     skrll     return 1;
    911   1.1.1.9  christos   return contestantA->idx - contestantB->idx;
    912       1.1     skrll }
    913       1.1     skrll 
    914       1.1     skrll /* A pointer to this structure is stored in *pinfo.  */
    915       1.1     skrll 
    916       1.1     skrll struct stab_find_info
    917       1.1     skrll {
    918       1.1     skrll   /* The .stab section.  */
    919       1.1     skrll   asection *stabsec;
    920       1.1     skrll   /* The .stabstr section.  */
    921       1.1     skrll   asection *strsec;
    922       1.1     skrll   /* The contents of the .stab section.  */
    923       1.1     skrll   bfd_byte *stabs;
    924       1.1     skrll   /* The contents of the .stabstr section.  */
    925       1.1     skrll   bfd_byte *strs;
    926       1.1     skrll 
    927       1.1     skrll   /* A table that indexes stabs by memory address.  */
    928       1.1     skrll   struct indexentry *indextable;
    929       1.1     skrll   /* The number of entries in indextable.  */
    930       1.1     skrll   int indextablesize;
    931       1.1     skrll 
    932       1.1     skrll #ifdef ENABLE_CACHING
    933       1.1     skrll   /* Cached values to restart quickly.  */
    934       1.1     skrll   struct indexentry *cached_indexentry;
    935       1.1     skrll   bfd_vma cached_offset;
    936       1.1     skrll   bfd_byte *cached_stab;
    937       1.1     skrll   char *cached_file_name;
    938       1.1     skrll #endif
    939       1.1     skrll 
    940       1.1     skrll   /* Saved ptr to malloc'ed filename.  */
    941       1.1     skrll   char *filename;
    942       1.1     skrll };
    943       1.1     skrll 
    944  1.1.1.10  christos bool
    945       1.1     skrll _bfd_stab_section_find_nearest_line (bfd *abfd,
    946       1.1     skrll 				     asymbol **symbols,
    947       1.1     skrll 				     asection *section,
    948       1.1     skrll 				     bfd_vma offset,
    949  1.1.1.10  christos 				     bool *pfound,
    950       1.1     skrll 				     const char **pfilename,
    951       1.1     skrll 				     const char **pfnname,
    952       1.1     skrll 				     unsigned int *pline,
    953       1.1     skrll 				     void **pinfo)
    954       1.1     skrll {
    955       1.1     skrll   struct stab_find_info *info;
    956       1.1     skrll   bfd_size_type stabsize, strsize;
    957       1.1     skrll   bfd_byte *stab, *str;
    958   1.1.1.5  christos   bfd_byte *nul_fun, *nul_str;
    959       1.1     skrll   bfd_size_type stroff;
    960       1.1     skrll   struct indexentry *indexentry;
    961       1.1     skrll   char *file_name;
    962       1.1     skrll   char *directory_name;
    963  1.1.1.10  christos   bool saw_line, saw_func;
    964       1.1     skrll 
    965  1.1.1.10  christos   *pfound = false;
    966       1.1     skrll   *pfilename = bfd_get_filename (abfd);
    967       1.1     skrll   *pfnname = NULL;
    968       1.1     skrll   *pline = 0;
    969       1.1     skrll 
    970       1.1     skrll   /* Stabs entries use a 12 byte format:
    971       1.1     skrll        4 byte string table index
    972       1.1     skrll        1 byte stab type
    973       1.1     skrll        1 byte stab other field
    974       1.1     skrll        2 byte stab desc field
    975       1.1     skrll        4 byte stab value
    976       1.1     skrll      FIXME: This will have to change for a 64 bit object format.
    977       1.1     skrll 
    978       1.1     skrll      The stabs symbols are divided into compilation units.  For the
    979       1.1     skrll      first entry in each unit, the type of 0, the value is the length
    980       1.1     skrll      of the string table for this unit, and the desc field is the
    981       1.1     skrll      number of stabs symbols for this unit.  */
    982       1.1     skrll 
    983       1.1     skrll #define STRDXOFF (0)
    984       1.1     skrll #define TYPEOFF (4)
    985       1.1     skrll #define OTHEROFF (5)
    986       1.1     skrll #define DESCOFF (6)
    987       1.1     skrll #define VALOFF (8)
    988       1.1     skrll #define STABSIZE (12)
    989       1.1     skrll 
    990   1.1.1.3  christos   info = (struct stab_find_info *) *pinfo;
    991       1.1     skrll   if (info != NULL)
    992       1.1     skrll     {
    993       1.1     skrll       if (info->stabsec == NULL || info->strsec == NULL)
    994       1.1     skrll 	{
    995  1.1.1.11  christos 	  /* No usable stabs debugging information.  */
    996  1.1.1.10  christos 	  return true;
    997       1.1     skrll 	}
    998       1.1     skrll 
    999       1.1     skrll       stabsize = (info->stabsec->rawsize
   1000       1.1     skrll 		  ? info->stabsec->rawsize
   1001       1.1     skrll 		  : info->stabsec->size);
   1002       1.1     skrll       strsize = (info->strsec->rawsize
   1003       1.1     skrll 		 ? info->strsec->rawsize
   1004       1.1     skrll 		 : info->strsec->size);
   1005       1.1     skrll     }
   1006       1.1     skrll   else
   1007       1.1     skrll     {
   1008       1.1     skrll       long reloc_size, reloc_count;
   1009       1.1     skrll       arelent **reloc_vector;
   1010       1.1     skrll       int i;
   1011       1.1     skrll       char *function_name;
   1012       1.1     skrll       bfd_size_type amt = sizeof *info;
   1013       1.1     skrll 
   1014   1.1.1.3  christos       info = (struct stab_find_info *) bfd_zalloc (abfd, amt);
   1015       1.1     skrll       if (info == NULL)
   1016  1.1.1.10  christos 	return false;
   1017  1.1.1.11  christos       *pinfo = info;
   1018       1.1     skrll 
   1019       1.1     skrll       /* FIXME: When using the linker --split-by-file or
   1020       1.1     skrll 	 --split-by-reloc options, it is possible for the .stab and
   1021       1.1     skrll 	 .stabstr sections to be split.  We should handle that.  */
   1022       1.1     skrll 
   1023       1.1     skrll       info->stabsec = bfd_get_section_by_name (abfd, ".stab");
   1024       1.1     skrll       info->strsec = bfd_get_section_by_name (abfd, ".stabstr");
   1025       1.1     skrll 
   1026       1.1     skrll       if (info->stabsec == NULL || info->strsec == NULL)
   1027       1.1     skrll 	{
   1028       1.1     skrll 	  /* Try SOM section names.  */
   1029       1.1     skrll 	  info->stabsec = bfd_get_section_by_name (abfd, "$GDB_SYMBOLS$");
   1030       1.1     skrll 	  info->strsec  = bfd_get_section_by_name (abfd, "$GDB_STRINGS$");
   1031   1.1.1.5  christos 
   1032       1.1     skrll 	  if (info->stabsec == NULL || info->strsec == NULL)
   1033  1.1.1.11  christos 	    return true;
   1034       1.1     skrll 	}
   1035       1.1     skrll 
   1036  1.1.1.11  christos       if ((info->stabsec->flags & SEC_HAS_CONTENTS) == 0
   1037  1.1.1.11  christos 	  || (info->strsec->flags & SEC_HAS_CONTENTS) == 0)
   1038  1.1.1.11  christos 	goto out;
   1039  1.1.1.11  christos 
   1040       1.1     skrll       stabsize = (info->stabsec->rawsize
   1041       1.1     skrll 		  ? info->stabsec->rawsize
   1042       1.1     skrll 		  : info->stabsec->size);
   1043   1.1.1.5  christos       stabsize = (stabsize / STABSIZE) * STABSIZE;
   1044       1.1     skrll       strsize = (info->strsec->rawsize
   1045       1.1     skrll 		 ? info->strsec->rawsize
   1046       1.1     skrll 		 : info->strsec->size);
   1047       1.1     skrll 
   1048  1.1.1.11  christos       if (stabsize == 0 || strsize == 0)
   1049  1.1.1.11  christos 	goto out;
   1050       1.1     skrll 
   1051  1.1.1.11  christos       if (!bfd_malloc_and_get_section (abfd, info->stabsec, &info->stabs))
   1052  1.1.1.11  christos 	goto out;
   1053  1.1.1.11  christos       if (!bfd_malloc_and_get_section (abfd, info->strsec, &info->strs))
   1054  1.1.1.11  christos 	goto out1;
   1055       1.1     skrll 
   1056   1.1.1.9  christos       /* Stab strings ought to be nul terminated.  Ensure the last one
   1057   1.1.1.9  christos 	 is, to prevent running off the end of the buffer.  */
   1058   1.1.1.9  christos       info->strs[strsize - 1] = 0;
   1059   1.1.1.9  christos 
   1060       1.1     skrll       /* If this is a relocatable object file, we have to relocate
   1061       1.1     skrll 	 the entries in .stab.  This should always be simple 32 bit
   1062       1.1     skrll 	 relocations against symbols defined in this object file, so
   1063       1.1     skrll 	 this should be no big deal.  */
   1064       1.1     skrll       reloc_size = bfd_get_reloc_upper_bound (abfd, info->stabsec);
   1065       1.1     skrll       if (reloc_size < 0)
   1066  1.1.1.11  christos 	goto out2;
   1067   1.1.1.3  christos       reloc_vector = (arelent **) bfd_malloc (reloc_size);
   1068       1.1     skrll       if (reloc_vector == NULL && reloc_size != 0)
   1069  1.1.1.11  christos 	goto out2;
   1070       1.1     skrll       reloc_count = bfd_canonicalize_reloc (abfd, info->stabsec, reloc_vector,
   1071       1.1     skrll 					    symbols);
   1072       1.1     skrll       if (reloc_count < 0)
   1073       1.1     skrll 	{
   1074  1.1.1.11  christos 	out3:
   1075  1.1.1.10  christos 	  free (reloc_vector);
   1076  1.1.1.11  christos 	out2:
   1077  1.1.1.11  christos 	  free (info->strs);
   1078  1.1.1.11  christos 	  info->strs = NULL;
   1079  1.1.1.11  christos 	out1:
   1080  1.1.1.11  christos 	  free (info->stabs);
   1081  1.1.1.11  christos 	  info->stabs = NULL;
   1082  1.1.1.11  christos 	out:
   1083  1.1.1.11  christos 	  info->stabsec = NULL;
   1084  1.1.1.10  christos 	  return false;
   1085       1.1     skrll 	}
   1086       1.1     skrll       if (reloc_count > 0)
   1087       1.1     skrll 	{
   1088       1.1     skrll 	  arelent **pr;
   1089       1.1     skrll 
   1090       1.1     skrll 	  for (pr = reloc_vector; *pr != NULL; pr++)
   1091       1.1     skrll 	    {
   1092       1.1     skrll 	      arelent *r;
   1093       1.1     skrll 	      unsigned long val;
   1094       1.1     skrll 	      asymbol *sym;
   1095   1.1.1.9  christos 	      bfd_size_type octets;
   1096       1.1     skrll 
   1097       1.1     skrll 	      r = *pr;
   1098       1.1     skrll 	      /* Ignore R_*_NONE relocs.  */
   1099       1.1     skrll 	      if (r->howto->dst_mask == 0)
   1100       1.1     skrll 		continue;
   1101       1.1     skrll 
   1102   1.1.1.9  christos 	      octets = r->address * bfd_octets_per_byte (abfd, NULL);
   1103       1.1     skrll 	      if (r->howto->rightshift != 0
   1104  1.1.1.10  christos 		  || bfd_get_reloc_size (r->howto) != 4
   1105       1.1     skrll 		  || r->howto->bitsize != 32
   1106       1.1     skrll 		  || r->howto->pc_relative
   1107       1.1     skrll 		  || r->howto->bitpos != 0
   1108   1.1.1.9  christos 		  || r->howto->dst_mask != 0xffffffff
   1109  1.1.1.11  christos 		  || octets > stabsize - 4)
   1110       1.1     skrll 		{
   1111   1.1.1.7  christos 		  _bfd_error_handler
   1112   1.1.1.8  christos 		    (_("unsupported .stab relocation"));
   1113       1.1     skrll 		  bfd_set_error (bfd_error_invalid_operation);
   1114  1.1.1.11  christos 		  goto out3;
   1115       1.1     skrll 		}
   1116       1.1     skrll 
   1117   1.1.1.9  christos 	      val = bfd_get_32 (abfd, info->stabs + octets);
   1118       1.1     skrll 	      val &= r->howto->src_mask;
   1119       1.1     skrll 	      sym = *r->sym_ptr_ptr;
   1120       1.1     skrll 	      val += sym->value + sym->section->vma + r->addend;
   1121   1.1.1.9  christos 	      bfd_put_32 (abfd, (bfd_vma) val, info->stabs + octets);
   1122       1.1     skrll 	    }
   1123       1.1     skrll 	}
   1124       1.1     skrll 
   1125  1.1.1.10  christos       free (reloc_vector);
   1126       1.1     skrll 
   1127       1.1     skrll       /* First time through this function, build a table matching
   1128       1.1     skrll 	 function VM addresses to stabs, then sort based on starting
   1129       1.1     skrll 	 VM address.  Do this in two passes: once to count how many
   1130       1.1     skrll 	 table entries we'll need, and a second to actually build the
   1131       1.1     skrll 	 table.  */
   1132       1.1     skrll 
   1133       1.1     skrll       info->indextablesize = 0;
   1134   1.1.1.5  christos       nul_fun = NULL;
   1135       1.1     skrll       for (stab = info->stabs; stab < info->stabs + stabsize; stab += STABSIZE)
   1136       1.1     skrll 	{
   1137       1.1     skrll 	  if (stab[TYPEOFF] == (bfd_byte) N_SO)
   1138       1.1     skrll 	    {
   1139       1.1     skrll 	      /* if we did not see a function def, leave space for one.  */
   1140   1.1.1.5  christos 	      if (nul_fun != NULL)
   1141       1.1     skrll 		++info->indextablesize;
   1142       1.1     skrll 
   1143   1.1.1.5  christos 	      /* N_SO with null name indicates EOF */
   1144   1.1.1.5  christos 	      if (bfd_get_32 (abfd, stab + STRDXOFF) == 0)
   1145   1.1.1.5  christos 		nul_fun = NULL;
   1146   1.1.1.5  christos 	      else
   1147       1.1     skrll 		{
   1148   1.1.1.5  christos 		  nul_fun = stab;
   1149   1.1.1.5  christos 
   1150   1.1.1.5  christos 		  /* two N_SO's in a row is a filename and directory. Skip */
   1151   1.1.1.5  christos 		  if (stab + STABSIZE + TYPEOFF < info->stabs + stabsize
   1152   1.1.1.5  christos 		      && *(stab + STABSIZE + TYPEOFF) == (bfd_byte) N_SO)
   1153   1.1.1.5  christos 		    stab += STABSIZE;
   1154       1.1     skrll 		}
   1155       1.1     skrll 	    }
   1156   1.1.1.5  christos 	  else if (stab[TYPEOFF] == (bfd_byte) N_FUN
   1157   1.1.1.5  christos 		   && bfd_get_32 (abfd, stab + STRDXOFF) != 0)
   1158       1.1     skrll 	    {
   1159   1.1.1.5  christos 	      nul_fun = NULL;
   1160       1.1     skrll 	      ++info->indextablesize;
   1161       1.1     skrll 	    }
   1162       1.1     skrll 	}
   1163       1.1     skrll 
   1164   1.1.1.5  christos       if (nul_fun != NULL)
   1165       1.1     skrll 	++info->indextablesize;
   1166       1.1     skrll 
   1167       1.1     skrll       if (info->indextablesize == 0)
   1168  1.1.1.11  christos 	{
   1169  1.1.1.11  christos 	  free (info->strs);
   1170  1.1.1.11  christos 	  info->strs = NULL;
   1171  1.1.1.11  christos 	  free (info->stabs);
   1172  1.1.1.11  christos 	  info->stabs = NULL;
   1173  1.1.1.11  christos 	  info->stabsec = NULL;
   1174  1.1.1.11  christos 	  return true;
   1175  1.1.1.11  christos 	}
   1176       1.1     skrll       ++info->indextablesize;
   1177       1.1     skrll 
   1178       1.1     skrll       amt = info->indextablesize;
   1179       1.1     skrll       amt *= sizeof (struct indexentry);
   1180  1.1.1.11  christos       info->indextable = (struct indexentry *) bfd_malloc (amt);
   1181       1.1     skrll       if (info->indextable == NULL)
   1182  1.1.1.11  christos 	goto out3;
   1183       1.1     skrll 
   1184       1.1     skrll       file_name = NULL;
   1185       1.1     skrll       directory_name = NULL;
   1186   1.1.1.5  christos       nul_fun = NULL;
   1187   1.1.1.5  christos       stroff = 0;
   1188       1.1     skrll 
   1189   1.1.1.5  christos       for (i = 0, stab = info->stabs, nul_str = str = info->strs;
   1190       1.1     skrll 	   i < info->indextablesize && stab < info->stabs + stabsize;
   1191       1.1     skrll 	   stab += STABSIZE)
   1192       1.1     skrll 	{
   1193       1.1     skrll 	  switch (stab[TYPEOFF])
   1194       1.1     skrll 	    {
   1195       1.1     skrll 	    case 0:
   1196       1.1     skrll 	      /* This is the first entry in a compilation unit.  */
   1197       1.1     skrll 	      if ((bfd_size_type) ((info->strs + strsize) - str) < stroff)
   1198       1.1     skrll 		break;
   1199       1.1     skrll 	      str += stroff;
   1200       1.1     skrll 	      stroff = bfd_get_32 (abfd, stab + VALOFF);
   1201       1.1     skrll 	      break;
   1202       1.1     skrll 
   1203       1.1     skrll 	    case N_SO:
   1204       1.1     skrll 	      /* The main file name.  */
   1205       1.1     skrll 
   1206       1.1     skrll 	      /* The following code creates a new indextable entry with
   1207   1.1.1.7  christos 		 a NULL function name if there were no N_FUNs in a file.
   1208   1.1.1.7  christos 		 Note that a N_SO without a file name is an EOF and
   1209   1.1.1.7  christos 		 there could be 2 N_SO following it with the new filename
   1210   1.1.1.7  christos 		 and directory.  */
   1211   1.1.1.5  christos 	      if (nul_fun != NULL)
   1212       1.1     skrll 		{
   1213   1.1.1.5  christos 		  info->indextable[i].val = bfd_get_32 (abfd, nul_fun + VALOFF);
   1214   1.1.1.5  christos 		  info->indextable[i].stab = nul_fun;
   1215   1.1.1.5  christos 		  info->indextable[i].str = nul_str;
   1216       1.1     skrll 		  info->indextable[i].directory_name = directory_name;
   1217       1.1     skrll 		  info->indextable[i].file_name = file_name;
   1218       1.1     skrll 		  info->indextable[i].function_name = NULL;
   1219   1.1.1.9  christos 		  info->indextable[i].idx = i;
   1220       1.1     skrll 		  ++i;
   1221       1.1     skrll 		}
   1222       1.1     skrll 
   1223   1.1.1.5  christos 	      directory_name = NULL;
   1224       1.1     skrll 	      file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
   1225   1.1.1.5  christos 	      if (file_name == (char *) str)
   1226       1.1     skrll 		{
   1227       1.1     skrll 		  file_name = NULL;
   1228   1.1.1.5  christos 		  nul_fun = NULL;
   1229       1.1     skrll 		}
   1230       1.1     skrll 	      else
   1231       1.1     skrll 		{
   1232   1.1.1.5  christos 		  nul_fun = stab;
   1233   1.1.1.5  christos 		  nul_str = str;
   1234   1.1.1.9  christos 		  if (file_name >= (char *) info->strs + strsize
   1235   1.1.1.9  christos 		      || file_name < (char *) str)
   1236   1.1.1.5  christos 		    file_name = NULL;
   1237   1.1.1.5  christos 		  if (stab + STABSIZE + TYPEOFF < info->stabs + stabsize
   1238   1.1.1.5  christos 		      && *(stab + STABSIZE + TYPEOFF) == (bfd_byte) N_SO)
   1239       1.1     skrll 		    {
   1240       1.1     skrll 		      /* Two consecutive N_SOs are a directory and a
   1241       1.1     skrll 			 file name.  */
   1242       1.1     skrll 		      stab += STABSIZE;
   1243       1.1     skrll 		      directory_name = file_name;
   1244       1.1     skrll 		      file_name = ((char *) str
   1245       1.1     skrll 				   + bfd_get_32 (abfd, stab + STRDXOFF));
   1246   1.1.1.9  christos 		      if (file_name >= (char *) info->strs + strsize
   1247   1.1.1.9  christos 			  || file_name < (char *) str)
   1248   1.1.1.5  christos 			file_name = NULL;
   1249       1.1     skrll 		    }
   1250       1.1     skrll 		}
   1251       1.1     skrll 	      break;
   1252       1.1     skrll 
   1253       1.1     skrll 	    case N_SOL:
   1254       1.1     skrll 	      /* The name of an include file.  */
   1255       1.1     skrll 	      file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
   1256   1.1.1.5  christos 	      /* PR 17512: file: 0c680a1f.  */
   1257   1.1.1.5  christos 	      /* PR 17512: file: 5da8aec4.  */
   1258   1.1.1.9  christos 	      if (file_name >= (char *) info->strs + strsize
   1259   1.1.1.9  christos 		  || file_name < (char *) str)
   1260   1.1.1.5  christos 		file_name = NULL;
   1261       1.1     skrll 	      break;
   1262       1.1     skrll 
   1263       1.1     skrll 	    case N_FUN:
   1264       1.1     skrll 	      /* A function name.  */
   1265   1.1.1.5  christos 	      function_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
   1266   1.1.1.5  christos 	      if (function_name == (char *) str)
   1267       1.1     skrll 		continue;
   1268   1.1.1.9  christos 	      if (function_name >= (char *) info->strs + strsize
   1269   1.1.1.9  christos 		  || function_name < (char *) str)
   1270   1.1.1.5  christos 		function_name = NULL;
   1271       1.1     skrll 
   1272   1.1.1.5  christos 	      nul_fun = NULL;
   1273       1.1     skrll 	      info->indextable[i].val = bfd_get_32 (abfd, stab + VALOFF);
   1274       1.1     skrll 	      info->indextable[i].stab = stab;
   1275       1.1     skrll 	      info->indextable[i].str = str;
   1276       1.1     skrll 	      info->indextable[i].directory_name = directory_name;
   1277       1.1     skrll 	      info->indextable[i].file_name = file_name;
   1278       1.1     skrll 	      info->indextable[i].function_name = function_name;
   1279   1.1.1.9  christos 	      info->indextable[i].idx = i;
   1280       1.1     skrll 	      ++i;
   1281       1.1     skrll 	      break;
   1282       1.1     skrll 	    }
   1283       1.1     skrll 	}
   1284       1.1     skrll 
   1285   1.1.1.5  christos       if (nul_fun != NULL)
   1286       1.1     skrll 	{
   1287   1.1.1.5  christos 	  info->indextable[i].val = bfd_get_32 (abfd, nul_fun + VALOFF);
   1288   1.1.1.5  christos 	  info->indextable[i].stab = nul_fun;
   1289   1.1.1.5  christos 	  info->indextable[i].str = nul_str;
   1290       1.1     skrll 	  info->indextable[i].directory_name = directory_name;
   1291       1.1     skrll 	  info->indextable[i].file_name = file_name;
   1292       1.1     skrll 	  info->indextable[i].function_name = NULL;
   1293   1.1.1.9  christos 	  info->indextable[i].idx = i;
   1294       1.1     skrll 	  ++i;
   1295       1.1     skrll 	}
   1296       1.1     skrll 
   1297       1.1     skrll       info->indextable[i].val = (bfd_vma) -1;
   1298       1.1     skrll       info->indextable[i].stab = info->stabs + stabsize;
   1299       1.1     skrll       info->indextable[i].str = str;
   1300       1.1     skrll       info->indextable[i].directory_name = NULL;
   1301       1.1     skrll       info->indextable[i].file_name = NULL;
   1302       1.1     skrll       info->indextable[i].function_name = NULL;
   1303   1.1.1.9  christos       info->indextable[i].idx = i;
   1304       1.1     skrll       ++i;
   1305       1.1     skrll 
   1306       1.1     skrll       info->indextablesize = i;
   1307       1.1     skrll       qsort (info->indextable, (size_t) i, sizeof (struct indexentry),
   1308       1.1     skrll 	     cmpindexentry);
   1309       1.1     skrll     }
   1310       1.1     skrll 
   1311       1.1     skrll   /* We are passed a section relative offset.  The offsets in the
   1312       1.1     skrll      stabs information are absolute.  */
   1313   1.1.1.9  christos   offset += bfd_section_vma (section);
   1314       1.1     skrll 
   1315       1.1     skrll #ifdef ENABLE_CACHING
   1316       1.1     skrll   if (info->cached_indexentry != NULL
   1317       1.1     skrll       && offset >= info->cached_offset
   1318       1.1     skrll       && offset < (info->cached_indexentry + 1)->val)
   1319       1.1     skrll     {
   1320       1.1     skrll       stab = info->cached_stab;
   1321       1.1     skrll       indexentry = info->cached_indexentry;
   1322       1.1     skrll       file_name = info->cached_file_name;
   1323       1.1     skrll     }
   1324       1.1     skrll   else
   1325       1.1     skrll #endif
   1326       1.1     skrll     {
   1327       1.1     skrll       long low, high;
   1328       1.1     skrll       long mid = -1;
   1329       1.1     skrll 
   1330       1.1     skrll       /* Cache non-existent or invalid.  Do binary search on
   1331   1.1.1.7  christos 	 indextable.  */
   1332       1.1     skrll       indexentry = NULL;
   1333       1.1     skrll 
   1334       1.1     skrll       low = 0;
   1335       1.1     skrll       high = info->indextablesize - 1;
   1336       1.1     skrll       while (low != high)
   1337       1.1     skrll 	{
   1338       1.1     skrll 	  mid = (high + low) / 2;
   1339       1.1     skrll 	  if (offset >= info->indextable[mid].val
   1340       1.1     skrll 	      && offset < info->indextable[mid + 1].val)
   1341       1.1     skrll 	    {
   1342       1.1     skrll 	      indexentry = &info->indextable[mid];
   1343       1.1     skrll 	      break;
   1344       1.1     skrll 	    }
   1345       1.1     skrll 
   1346       1.1     skrll 	  if (info->indextable[mid].val > offset)
   1347       1.1     skrll 	    high = mid;
   1348       1.1     skrll 	  else
   1349       1.1     skrll 	    low = mid + 1;
   1350       1.1     skrll 	}
   1351       1.1     skrll 
   1352       1.1     skrll       if (indexentry == NULL)
   1353  1.1.1.10  christos 	return true;
   1354       1.1     skrll 
   1355       1.1     skrll       stab = indexentry->stab + STABSIZE;
   1356       1.1     skrll       file_name = indexentry->file_name;
   1357       1.1     skrll     }
   1358       1.1     skrll 
   1359       1.1     skrll   directory_name = indexentry->directory_name;
   1360       1.1     skrll   str = indexentry->str;
   1361       1.1     skrll 
   1362  1.1.1.10  christos   saw_line = false;
   1363  1.1.1.10  christos   saw_func = false;
   1364       1.1     skrll   for (; stab < (indexentry+1)->stab; stab += STABSIZE)
   1365       1.1     skrll     {
   1366  1.1.1.10  christos       bool done;
   1367       1.1     skrll       bfd_vma val;
   1368       1.1     skrll 
   1369  1.1.1.10  christos       done = false;
   1370       1.1     skrll 
   1371       1.1     skrll       switch (stab[TYPEOFF])
   1372       1.1     skrll 	{
   1373       1.1     skrll 	case N_SOL:
   1374       1.1     skrll 	  /* The name of an include file.  */
   1375       1.1     skrll 	  val = bfd_get_32 (abfd, stab + VALOFF);
   1376       1.1     skrll 	  if (val <= offset)
   1377       1.1     skrll 	    {
   1378       1.1     skrll 	      file_name = (char *) str + bfd_get_32 (abfd, stab + STRDXOFF);
   1379   1.1.1.9  christos 	      if (file_name >= (char *) info->strs + strsize
   1380   1.1.1.9  christos 		  || file_name < (char *) str)
   1381   1.1.1.5  christos 		file_name = NULL;
   1382       1.1     skrll 	      *pline = 0;
   1383       1.1     skrll 	    }
   1384       1.1     skrll 	  break;
   1385       1.1     skrll 
   1386       1.1     skrll 	case N_SLINE:
   1387       1.1     skrll 	case N_DSLINE:
   1388       1.1     skrll 	case N_BSLINE:
   1389       1.1     skrll 	  /* A line number.  If the function was specified, then the value
   1390       1.1     skrll 	     is relative to the start of the function.  Otherwise, the
   1391       1.1     skrll 	     value is an absolute address.  */
   1392       1.1     skrll 	  val = ((indexentry->function_name ? indexentry->val : 0)
   1393       1.1     skrll 		 + bfd_get_32 (abfd, stab + VALOFF));
   1394       1.1     skrll 	  /* If this line starts before our desired offset, or if it's
   1395       1.1     skrll 	     the first line we've been able to find, use it.  The
   1396       1.1     skrll 	     !saw_line check works around a bug in GCC 2.95.3, which emits
   1397       1.1     skrll 	     the first N_SLINE late.  */
   1398       1.1     skrll 	  if (!saw_line || val <= offset)
   1399       1.1     skrll 	    {
   1400       1.1     skrll 	      *pline = bfd_get_16 (abfd, stab + DESCOFF);
   1401       1.1     skrll 
   1402       1.1     skrll #ifdef ENABLE_CACHING
   1403       1.1     skrll 	      info->cached_stab = stab;
   1404       1.1     skrll 	      info->cached_offset = val;
   1405       1.1     skrll 	      info->cached_file_name = file_name;
   1406       1.1     skrll 	      info->cached_indexentry = indexentry;
   1407       1.1     skrll #endif
   1408       1.1     skrll 	    }
   1409       1.1     skrll 	  if (val > offset)
   1410  1.1.1.10  christos 	    done = true;
   1411  1.1.1.10  christos 	  saw_line = true;
   1412       1.1     skrll 	  break;
   1413       1.1     skrll 
   1414       1.1     skrll 	case N_FUN:
   1415       1.1     skrll 	case N_SO:
   1416       1.1     skrll 	  if (saw_func || saw_line)
   1417  1.1.1.10  christos 	    done = true;
   1418  1.1.1.10  christos 	  saw_func = true;
   1419       1.1     skrll 	  break;
   1420       1.1     skrll 	}
   1421       1.1     skrll 
   1422       1.1     skrll       if (done)
   1423       1.1     skrll 	break;
   1424       1.1     skrll     }
   1425       1.1     skrll 
   1426  1.1.1.10  christos   *pfound = true;
   1427       1.1     skrll 
   1428       1.1     skrll   if (file_name == NULL || IS_ABSOLUTE_PATH (file_name)
   1429       1.1     skrll       || directory_name == NULL)
   1430       1.1     skrll     *pfilename = file_name;
   1431       1.1     skrll   else
   1432       1.1     skrll     {
   1433       1.1     skrll       size_t dirlen;
   1434       1.1     skrll 
   1435       1.1     skrll       dirlen = strlen (directory_name);
   1436       1.1     skrll       if (info->filename == NULL
   1437   1.1.1.4  christos 	  || filename_ncmp (info->filename, directory_name, dirlen) != 0
   1438   1.1.1.4  christos 	  || filename_cmp (info->filename + dirlen, file_name) != 0)
   1439       1.1     skrll 	{
   1440       1.1     skrll 	  size_t len;
   1441       1.1     skrll 
   1442   1.1.1.2     skrll 	  /* Don't free info->filename here.  objdump and other
   1443   1.1.1.2     skrll 	     apps keep a copy of a previously returned file name
   1444   1.1.1.2     skrll 	     pointer.  */
   1445       1.1     skrll 	  len = strlen (file_name) + 1;
   1446   1.1.1.3  christos 	  info->filename = (char *) bfd_alloc (abfd, dirlen + len);
   1447       1.1     skrll 	  if (info->filename == NULL)
   1448  1.1.1.10  christos 	    return false;
   1449       1.1     skrll 	  memcpy (info->filename, directory_name, dirlen);
   1450       1.1     skrll 	  memcpy (info->filename + dirlen, file_name, len);
   1451       1.1     skrll 	}
   1452       1.1     skrll 
   1453       1.1     skrll       *pfilename = info->filename;
   1454       1.1     skrll     }
   1455       1.1     skrll 
   1456       1.1     skrll   if (indexentry->function_name != NULL)
   1457       1.1     skrll     {
   1458       1.1     skrll       char *s;
   1459       1.1     skrll 
   1460       1.1     skrll       /* This will typically be something like main:F(0,1), so we want
   1461   1.1.1.7  christos 	 to clobber the colon.  It's OK to change the name, since the
   1462   1.1.1.7  christos 	 string is in our own local storage anyhow.  */
   1463       1.1     skrll       s = strchr (indexentry->function_name, ':');
   1464       1.1     skrll       if (s != NULL)
   1465       1.1     skrll 	*s = '\0';
   1466       1.1     skrll 
   1467       1.1     skrll       *pfnname = indexentry->function_name;
   1468       1.1     skrll     }
   1469       1.1     skrll 
   1470  1.1.1.10  christos   return true;
   1471       1.1     skrll }
   1472   1.1.1.8  christos 
   1473  1.1.1.11  christos void
   1474  1.1.1.11  christos _bfd_stab_cleanup (bfd *abfd ATTRIBUTE_UNUSED, void **pinfo)
   1475  1.1.1.11  christos {
   1476  1.1.1.11  christos   struct stab_find_info *info = (struct stab_find_info *) *pinfo;
   1477  1.1.1.11  christos   if (info == NULL)
   1478  1.1.1.11  christos     return;
   1479  1.1.1.11  christos 
   1480  1.1.1.11  christos   free (info->indextable);
   1481  1.1.1.11  christos   free (info->strs);
   1482  1.1.1.11  christos   free (info->stabs);
   1483  1.1.1.11  christos }
   1484  1.1.1.11  christos 
   1485   1.1.1.8  christos long
   1486   1.1.1.8  christos _bfd_nosymbols_canonicalize_symtab (bfd *abfd ATTRIBUTE_UNUSED,
   1487   1.1.1.8  christos 				    asymbol **location ATTRIBUTE_UNUSED)
   1488   1.1.1.8  christos {
   1489   1.1.1.8  christos   return 0;
   1490   1.1.1.8  christos }
   1491   1.1.1.8  christos 
   1492   1.1.1.8  christos void
   1493   1.1.1.8  christos _bfd_nosymbols_print_symbol (bfd *abfd ATTRIBUTE_UNUSED,
   1494   1.1.1.8  christos 			     void *afile ATTRIBUTE_UNUSED,
   1495   1.1.1.8  christos 			     asymbol *symbol ATTRIBUTE_UNUSED,
   1496   1.1.1.8  christos 			     bfd_print_symbol_type how ATTRIBUTE_UNUSED)
   1497   1.1.1.8  christos {
   1498   1.1.1.8  christos }
   1499   1.1.1.8  christos 
   1500   1.1.1.8  christos void
   1501   1.1.1.8  christos _bfd_nosymbols_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED,
   1502   1.1.1.8  christos 				asymbol *sym ATTRIBUTE_UNUSED,
   1503   1.1.1.8  christos 				symbol_info *ret ATTRIBUTE_UNUSED)
   1504   1.1.1.8  christos {
   1505   1.1.1.8  christos }
   1506   1.1.1.8  christos 
   1507   1.1.1.8  christos const char *
   1508   1.1.1.8  christos _bfd_nosymbols_get_symbol_version_string (bfd *abfd,
   1509   1.1.1.8  christos 					  asymbol *symbol ATTRIBUTE_UNUSED,
   1510  1.1.1.10  christos 					  bool base_p ATTRIBUTE_UNUSED,
   1511  1.1.1.10  christos 					  bool *hidden ATTRIBUTE_UNUSED)
   1512   1.1.1.8  christos {
   1513   1.1.1.8  christos   return (const char *) _bfd_ptr_bfd_null_error (abfd);
   1514   1.1.1.8  christos }
   1515   1.1.1.8  christos 
   1516  1.1.1.10  christos bool
   1517   1.1.1.8  christos _bfd_nosymbols_bfd_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED,
   1518   1.1.1.8  christos 					const char *name ATTRIBUTE_UNUSED)
   1519   1.1.1.8  christos {
   1520  1.1.1.10  christos   return false;
   1521   1.1.1.8  christos }
   1522   1.1.1.8  christos 
   1523   1.1.1.8  christos alent *
   1524   1.1.1.8  christos _bfd_nosymbols_get_lineno (bfd *abfd, asymbol *sym ATTRIBUTE_UNUSED)
   1525   1.1.1.8  christos {
   1526   1.1.1.8  christos   return (alent *) _bfd_ptr_bfd_null_error (abfd);
   1527   1.1.1.8  christos }
   1528   1.1.1.8  christos 
   1529  1.1.1.10  christos bool
   1530   1.1.1.8  christos _bfd_nosymbols_find_nearest_line
   1531   1.1.1.8  christos     (bfd *abfd,
   1532   1.1.1.8  christos      asymbol **symbols ATTRIBUTE_UNUSED,
   1533   1.1.1.8  christos      asection *section ATTRIBUTE_UNUSED,
   1534   1.1.1.8  christos      bfd_vma offset ATTRIBUTE_UNUSED,
   1535   1.1.1.8  christos      const char **filename_ptr ATTRIBUTE_UNUSED,
   1536   1.1.1.8  christos      const char **functionname_ptr ATTRIBUTE_UNUSED,
   1537   1.1.1.8  christos      unsigned int *line_ptr ATTRIBUTE_UNUSED,
   1538   1.1.1.8  christos      unsigned int *discriminator_ptr ATTRIBUTE_UNUSED)
   1539   1.1.1.8  christos {
   1540   1.1.1.8  christos   return _bfd_bool_bfd_false_error (abfd);
   1541   1.1.1.8  christos }
   1542   1.1.1.8  christos 
   1543  1.1.1.10  christos bool
   1544  1.1.1.11  christos _bfd_nosymbols_find_nearest_line_with_alt
   1545  1.1.1.11  christos     (bfd *abfd,
   1546  1.1.1.11  christos      const char *alt_filename ATTRIBUTE_UNUSED,
   1547  1.1.1.11  christos      asymbol **symbols ATTRIBUTE_UNUSED,
   1548  1.1.1.11  christos      asection *section ATTRIBUTE_UNUSED,
   1549  1.1.1.11  christos      bfd_vma offset ATTRIBUTE_UNUSED,
   1550  1.1.1.11  christos      const char **filename_ptr ATTRIBUTE_UNUSED,
   1551  1.1.1.11  christos      const char **functionname_ptr ATTRIBUTE_UNUSED,
   1552  1.1.1.11  christos      unsigned int *line_ptr ATTRIBUTE_UNUSED,
   1553  1.1.1.11  christos      unsigned int *discriminator_ptr ATTRIBUTE_UNUSED)
   1554  1.1.1.11  christos {
   1555  1.1.1.11  christos   return _bfd_bool_bfd_false_error (abfd);
   1556  1.1.1.11  christos }
   1557  1.1.1.11  christos 
   1558  1.1.1.11  christos bool
   1559   1.1.1.8  christos _bfd_nosymbols_find_line (bfd *abfd,
   1560   1.1.1.8  christos 			  asymbol **symbols ATTRIBUTE_UNUSED,
   1561   1.1.1.8  christos 			  asymbol *symbol ATTRIBUTE_UNUSED,
   1562   1.1.1.8  christos 			  const char **filename_ptr ATTRIBUTE_UNUSED,
   1563   1.1.1.8  christos 			  unsigned int *line_ptr ATTRIBUTE_UNUSED)
   1564   1.1.1.8  christos {
   1565   1.1.1.8  christos   return _bfd_bool_bfd_false_error (abfd);
   1566   1.1.1.8  christos }
   1567   1.1.1.8  christos 
   1568  1.1.1.10  christos bool
   1569   1.1.1.8  christos _bfd_nosymbols_find_inliner_info
   1570   1.1.1.8  christos     (bfd *abfd,
   1571   1.1.1.8  christos      const char **filename_ptr ATTRIBUTE_UNUSED,
   1572   1.1.1.8  christos      const char **functionname_ptr ATTRIBUTE_UNUSED,
   1573   1.1.1.8  christos      unsigned int *line_ptr ATTRIBUTE_UNUSED)
   1574   1.1.1.8  christos {
   1575   1.1.1.8  christos   return _bfd_bool_bfd_false_error (abfd);
   1576   1.1.1.8  christos }
   1577   1.1.1.8  christos 
   1578   1.1.1.8  christos asymbol *
   1579  1.1.1.11  christos _bfd_nosymbols_bfd_make_debug_symbol (bfd *abfd)
   1580   1.1.1.8  christos {
   1581   1.1.1.8  christos   return (asymbol *) _bfd_ptr_bfd_null_error (abfd);
   1582   1.1.1.8  christos }
   1583   1.1.1.8  christos 
   1584   1.1.1.8  christos long
   1585   1.1.1.8  christos _bfd_nosymbols_read_minisymbols (bfd *abfd,
   1586  1.1.1.10  christos 				 bool dynamic ATTRIBUTE_UNUSED,
   1587   1.1.1.8  christos 				 void **minisymsp ATTRIBUTE_UNUSED,
   1588   1.1.1.8  christos 				 unsigned int *sizep ATTRIBUTE_UNUSED)
   1589   1.1.1.8  christos {
   1590   1.1.1.8  christos   return _bfd_long_bfd_n1_error (abfd);
   1591   1.1.1.8  christos }
   1592   1.1.1.8  christos 
   1593   1.1.1.8  christos asymbol *
   1594   1.1.1.8  christos _bfd_nosymbols_minisymbol_to_symbol (bfd *abfd,
   1595  1.1.1.10  christos 				     bool dynamic ATTRIBUTE_UNUSED,
   1596   1.1.1.8  christos 				     const void *minisym ATTRIBUTE_UNUSED,
   1597   1.1.1.8  christos 				     asymbol *sym ATTRIBUTE_UNUSED)
   1598   1.1.1.8  christos {
   1599   1.1.1.8  christos   return (asymbol *) _bfd_ptr_bfd_null_error (abfd);
   1600   1.1.1.8  christos }
   1601   1.1.1.8  christos 
   1602   1.1.1.8  christos long
   1603   1.1.1.8  christos _bfd_nodynamic_get_synthetic_symtab (bfd *abfd,
   1604   1.1.1.8  christos 				     long symcount ATTRIBUTE_UNUSED,
   1605   1.1.1.8  christos 				     asymbol **syms ATTRIBUTE_UNUSED,
   1606   1.1.1.8  christos 				     long dynsymcount ATTRIBUTE_UNUSED,
   1607   1.1.1.8  christos 				     asymbol **dynsyms ATTRIBUTE_UNUSED,
   1608   1.1.1.8  christos 				     asymbol **ret ATTRIBUTE_UNUSED)
   1609   1.1.1.8  christos {
   1610   1.1.1.8  christos   return _bfd_long_bfd_n1_error (abfd);
   1611   1.1.1.8  christos }
   1612