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peicode.h revision 1.6.4.1
      1      1.1  christos /* Support for the generic parts of PE/PEI, for BFD.
      2  1.6.4.1  christos    Copyright (C) 1995-2017 Free Software Foundation, Inc.
      3      1.1  christos    Written by Cygnus Solutions.
      4      1.1  christos 
      5      1.1  christos    This file is part of BFD, the Binary File Descriptor library.
      6      1.1  christos 
      7      1.1  christos    This program is free software; you can redistribute it and/or modify
      8      1.1  christos    it under the terms of the GNU General Public License as published by
      9      1.1  christos    the Free Software Foundation; either version 3 of the License, or
     10      1.1  christos    (at your option) any later version.
     11      1.1  christos 
     12      1.1  christos    This program is distributed in the hope that it will be useful,
     13      1.1  christos    but WITHOUT ANY WARRANTY; without even the implied warranty of
     14      1.1  christos    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     15      1.1  christos    GNU General Public License for more details.
     16      1.1  christos 
     17      1.1  christos    You should have received a copy of the GNU General Public License
     18      1.1  christos    along with this program; if not, write to the Free Software
     19      1.1  christos    Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
     20      1.1  christos    MA 02110-1301, USA.  */
     21      1.1  christos 
     22      1.1  christos 
     23      1.1  christos /* Most of this hacked by  Steve Chamberlain,
     24      1.1  christos 			sac (at) cygnus.com
     25      1.1  christos 
     26      1.1  christos    PE/PEI rearrangement (and code added): Donn Terry
     27      1.1  christos                                        Softway Systems, Inc.  */
     28      1.1  christos 
     29      1.1  christos /* Hey look, some documentation [and in a place you expect to find it]!
     30      1.1  christos 
     31      1.1  christos    The main reference for the pei format is "Microsoft Portable Executable
     32      1.1  christos    and Common Object File Format Specification 4.1".  Get it if you need to
     33      1.1  christos    do some serious hacking on this code.
     34      1.1  christos 
     35      1.1  christos    Another reference:
     36      1.1  christos    "Peering Inside the PE: A Tour of the Win32 Portable Executable
     37      1.1  christos    File Format", MSJ 1994, Volume 9.
     38      1.1  christos 
     39      1.1  christos    The *sole* difference between the pe format and the pei format is that the
     40      1.1  christos    latter has an MSDOS 2.0 .exe header on the front that prints the message
     41      1.1  christos    "This app must be run under Windows." (or some such).
     42      1.1  christos    (FIXME: Whether that statement is *really* true or not is unknown.
     43      1.1  christos    Are there more subtle differences between pe and pei formats?
     44      1.1  christos    For now assume there aren't.  If you find one, then for God sakes
     45      1.1  christos    document it here!)
     46      1.1  christos 
     47      1.1  christos    The Microsoft docs use the word "image" instead of "executable" because
     48      1.1  christos    the former can also refer to a DLL (shared library).  Confusion can arise
     49      1.1  christos    because the `i' in `pei' also refers to "image".  The `pe' format can
     50      1.1  christos    also create images (i.e. executables), it's just that to run on a win32
     51      1.1  christos    system you need to use the pei format.
     52      1.1  christos 
     53      1.1  christos    FIXME: Please add more docs here so the next poor fool that has to hack
     54      1.1  christos    on this code has a chance of getting something accomplished without
     55      1.1  christos    wasting too much time.  */
     56      1.1  christos 
     57      1.1  christos #include "libpei.h"
     58      1.1  christos 
     59      1.1  christos static bfd_boolean (*pe_saved_coff_bfd_print_private_bfd_data) (bfd *, void *) =
     60      1.1  christos #ifndef coff_bfd_print_private_bfd_data
     61      1.1  christos      NULL;
     62      1.1  christos #else
     63      1.1  christos      coff_bfd_print_private_bfd_data;
     64      1.1  christos #undef coff_bfd_print_private_bfd_data
     65      1.1  christos #endif
     66      1.1  christos 
     67      1.1  christos static bfd_boolean                      pe_print_private_bfd_data (bfd *, void *);
     68      1.1  christos #define coff_bfd_print_private_bfd_data pe_print_private_bfd_data
     69      1.1  christos 
     70      1.1  christos static bfd_boolean (*pe_saved_coff_bfd_copy_private_bfd_data) (bfd *, bfd *) =
     71      1.1  christos #ifndef coff_bfd_copy_private_bfd_data
     72      1.1  christos      NULL;
     73      1.1  christos #else
     74      1.1  christos      coff_bfd_copy_private_bfd_data;
     75      1.1  christos #undef coff_bfd_copy_private_bfd_data
     76      1.1  christos #endif
     77      1.1  christos 
     78      1.1  christos static bfd_boolean                     pe_bfd_copy_private_bfd_data (bfd *, bfd *);
     79      1.1  christos #define coff_bfd_copy_private_bfd_data pe_bfd_copy_private_bfd_data
     80      1.1  christos 
     81      1.1  christos #define coff_mkobject      pe_mkobject
     82      1.1  christos #define coff_mkobject_hook pe_mkobject_hook
     83      1.1  christos 
     84      1.1  christos #ifdef COFF_IMAGE_WITH_PE
     85      1.1  christos /* This structure contains static variables used by the ILF code.  */
     86      1.1  christos typedef asection * asection_ptr;
     87      1.1  christos 
     88      1.1  christos typedef struct
     89      1.1  christos {
     90      1.1  christos   bfd *			abfd;
     91      1.1  christos   bfd_byte *		data;
     92      1.1  christos   struct bfd_in_memory * bim;
     93      1.1  christos   unsigned short        magic;
     94      1.1  christos 
     95      1.1  christos   arelent *		reltab;
     96      1.1  christos   unsigned int 		relcount;
     97      1.1  christos 
     98      1.1  christos   coff_symbol_type * 	sym_cache;
     99      1.1  christos   coff_symbol_type * 	sym_ptr;
    100      1.1  christos   unsigned int       	sym_index;
    101      1.1  christos 
    102      1.1  christos   unsigned int * 	sym_table;
    103      1.1  christos   unsigned int * 	table_ptr;
    104      1.1  christos 
    105      1.1  christos   combined_entry_type * native_syms;
    106      1.1  christos   combined_entry_type * native_ptr;
    107      1.1  christos 
    108      1.1  christos   coff_symbol_type **	sym_ptr_table;
    109      1.1  christos   coff_symbol_type **	sym_ptr_ptr;
    110      1.1  christos 
    111      1.1  christos   unsigned int		sec_index;
    112      1.1  christos 
    113      1.1  christos   char *                string_table;
    114      1.1  christos   char *                string_ptr;
    115      1.1  christos   char *		end_string_ptr;
    116      1.1  christos 
    117      1.1  christos   SYMENT *              esym_table;
    118      1.1  christos   SYMENT *              esym_ptr;
    119      1.1  christos 
    120      1.1  christos   struct internal_reloc * int_reltab;
    121      1.1  christos }
    122      1.1  christos pe_ILF_vars;
    123      1.1  christos #endif /* COFF_IMAGE_WITH_PE */
    124      1.1  christos 
    125      1.1  christos const bfd_target *coff_real_object_p
    126      1.1  christos   (bfd *, unsigned, struct internal_filehdr *, struct internal_aouthdr *);
    127      1.1  christos 
    128      1.1  christos #ifndef NO_COFF_RELOCS
    130      1.1  christos static void
    131      1.1  christos coff_swap_reloc_in (bfd * abfd, void * src, void * dst)
    132      1.1  christos {
    133      1.1  christos   RELOC *reloc_src = (RELOC *) src;
    134      1.1  christos   struct internal_reloc *reloc_dst = (struct internal_reloc *) dst;
    135      1.1  christos 
    136      1.1  christos   reloc_dst->r_vaddr  = H_GET_32 (abfd, reloc_src->r_vaddr);
    137      1.1  christos   reloc_dst->r_symndx = H_GET_S32 (abfd, reloc_src->r_symndx);
    138      1.1  christos   reloc_dst->r_type   = H_GET_16 (abfd, reloc_src->r_type);
    139      1.1  christos #ifdef SWAP_IN_RELOC_OFFSET
    140      1.1  christos   reloc_dst->r_offset = SWAP_IN_RELOC_OFFSET (abfd, reloc_src->r_offset);
    141      1.1  christos #endif
    142      1.1  christos }
    143      1.1  christos 
    144      1.1  christos static unsigned int
    145      1.1  christos coff_swap_reloc_out (bfd * abfd, void * src, void * dst)
    146      1.1  christos {
    147      1.1  christos   struct internal_reloc *reloc_src = (struct internal_reloc *) src;
    148      1.1  christos   struct external_reloc *reloc_dst = (struct external_reloc *) dst;
    149      1.1  christos 
    150      1.1  christos   H_PUT_32 (abfd, reloc_src->r_vaddr, reloc_dst->r_vaddr);
    151      1.1  christos   H_PUT_32 (abfd, reloc_src->r_symndx, reloc_dst->r_symndx);
    152      1.1  christos   H_PUT_16 (abfd, reloc_src->r_type, reloc_dst->r_type);
    153      1.1  christos 
    154      1.1  christos #ifdef SWAP_OUT_RELOC_OFFSET
    155      1.1  christos   SWAP_OUT_RELOC_OFFSET (abfd, reloc_src->r_offset, reloc_dst->r_offset);
    156      1.1  christos #endif
    157      1.1  christos #ifdef SWAP_OUT_RELOC_EXTRA
    158      1.1  christos   SWAP_OUT_RELOC_EXTRA (abfd, reloc_src, reloc_dst);
    159      1.1  christos #endif
    160      1.1  christos   return RELSZ;
    161      1.1  christos }
    162      1.1  christos #endif /* not NO_COFF_RELOCS */
    163      1.1  christos 
    164      1.1  christos #ifdef COFF_IMAGE_WITH_PE
    165      1.1  christos #undef FILHDR
    166      1.1  christos #define FILHDR struct external_PEI_IMAGE_hdr
    167      1.1  christos #endif
    168      1.1  christos 
    169      1.1  christos static void
    170      1.1  christos coff_swap_filehdr_in (bfd * abfd, void * src, void * dst)
    171      1.1  christos {
    172      1.1  christos   FILHDR *filehdr_src = (FILHDR *) src;
    173      1.1  christos   struct internal_filehdr *filehdr_dst = (struct internal_filehdr *) dst;
    174      1.1  christos 
    175      1.1  christos   filehdr_dst->f_magic  = H_GET_16 (abfd, filehdr_src->f_magic);
    176      1.1  christos   filehdr_dst->f_nscns  = H_GET_16 (abfd, filehdr_src->f_nscns);
    177      1.1  christos   filehdr_dst->f_timdat = H_GET_32 (abfd, filehdr_src->f_timdat);
    178      1.1  christos   filehdr_dst->f_nsyms  = H_GET_32 (abfd, filehdr_src->f_nsyms);
    179      1.1  christos   filehdr_dst->f_flags  = H_GET_16 (abfd, filehdr_src->f_flags);
    180      1.1  christos   filehdr_dst->f_symptr = H_GET_32 (abfd, filehdr_src->f_symptr);
    181      1.1  christos 
    182      1.1  christos   /* Other people's tools sometimes generate headers with an nsyms but
    183      1.1  christos      a zero symptr.  */
    184      1.1  christos   if (filehdr_dst->f_nsyms != 0 && filehdr_dst->f_symptr == 0)
    185      1.1  christos     {
    186      1.1  christos       filehdr_dst->f_nsyms = 0;
    187      1.1  christos       filehdr_dst->f_flags |= F_LSYMS;
    188      1.1  christos     }
    189      1.1  christos 
    190      1.1  christos   filehdr_dst->f_opthdr = H_GET_16 (abfd, filehdr_src-> f_opthdr);
    191      1.1  christos }
    192      1.1  christos 
    193      1.1  christos #ifdef COFF_IMAGE_WITH_PE
    194      1.1  christos # define coff_swap_filehdr_out _bfd_XXi_only_swap_filehdr_out
    195      1.1  christos #elif defined COFF_WITH_pex64
    196      1.1  christos # define coff_swap_filehdr_out _bfd_pex64_only_swap_filehdr_out
    197      1.1  christos #elif defined COFF_WITH_pep
    198      1.1  christos # define coff_swap_filehdr_out _bfd_pep_only_swap_filehdr_out
    199      1.1  christos #else
    200      1.1  christos # define coff_swap_filehdr_out _bfd_pe_only_swap_filehdr_out
    201      1.1  christos #endif
    202      1.1  christos 
    203      1.1  christos static void
    204      1.1  christos coff_swap_scnhdr_in (bfd * abfd, void * ext, void * in)
    205      1.1  christos {
    206      1.1  christos   SCNHDR *scnhdr_ext = (SCNHDR *) ext;
    207      1.1  christos   struct internal_scnhdr *scnhdr_int = (struct internal_scnhdr *) in;
    208      1.1  christos 
    209      1.1  christos   memcpy (scnhdr_int->s_name, scnhdr_ext->s_name, sizeof (scnhdr_int->s_name));
    210      1.1  christos 
    211      1.1  christos   scnhdr_int->s_vaddr   = GET_SCNHDR_VADDR (abfd, scnhdr_ext->s_vaddr);
    212      1.1  christos   scnhdr_int->s_paddr   = GET_SCNHDR_PADDR (abfd, scnhdr_ext->s_paddr);
    213      1.1  christos   scnhdr_int->s_size    = GET_SCNHDR_SIZE (abfd, scnhdr_ext->s_size);
    214      1.1  christos   scnhdr_int->s_scnptr  = GET_SCNHDR_SCNPTR (abfd, scnhdr_ext->s_scnptr);
    215      1.1  christos   scnhdr_int->s_relptr  = GET_SCNHDR_RELPTR (abfd, scnhdr_ext->s_relptr);
    216      1.1  christos   scnhdr_int->s_lnnoptr = GET_SCNHDR_LNNOPTR (abfd, scnhdr_ext->s_lnnoptr);
    217      1.1  christos   scnhdr_int->s_flags   = H_GET_32 (abfd, scnhdr_ext->s_flags);
    218      1.1  christos 
    219      1.1  christos   /* MS handles overflow of line numbers by carrying into the reloc
    220      1.1  christos      field (it appears).  Since it's supposed to be zero for PE
    221      1.1  christos      *IMAGE* format, that's safe.  This is still a bit iffy.  */
    222      1.1  christos #ifdef COFF_IMAGE_WITH_PE
    223      1.1  christos   scnhdr_int->s_nlnno = (H_GET_16 (abfd, scnhdr_ext->s_nlnno)
    224      1.1  christos 			 + (H_GET_16 (abfd, scnhdr_ext->s_nreloc) << 16));
    225      1.1  christos   scnhdr_int->s_nreloc = 0;
    226      1.1  christos #else
    227      1.1  christos   scnhdr_int->s_nreloc = H_GET_16 (abfd, scnhdr_ext->s_nreloc);
    228      1.1  christos   scnhdr_int->s_nlnno = H_GET_16 (abfd, scnhdr_ext->s_nlnno);
    229      1.1  christos #endif
    230      1.1  christos 
    231      1.1  christos   if (scnhdr_int->s_vaddr != 0)
    232      1.1  christos     {
    233      1.1  christos       scnhdr_int->s_vaddr += pe_data (abfd)->pe_opthdr.ImageBase;
    234      1.1  christos       /* Do not cut upper 32-bits for 64-bit vma.  */
    235      1.1  christos #ifndef COFF_WITH_pex64
    236      1.1  christos       scnhdr_int->s_vaddr &= 0xffffffff;
    237      1.1  christos #endif
    238      1.1  christos     }
    239      1.1  christos 
    240      1.1  christos #ifndef COFF_NO_HACK_SCNHDR_SIZE
    241      1.1  christos   /* If this section holds uninitialized data and is from an object file
    242      1.1  christos      or from an executable image that has not initialized the field,
    243      1.1  christos      or if the image is an executable file and the physical size is padded,
    244      1.1  christos      use the virtual size (stored in s_paddr) instead.  */
    245      1.1  christos   if (scnhdr_int->s_paddr > 0
    246      1.1  christos       && (((scnhdr_int->s_flags & IMAGE_SCN_CNT_UNINITIALIZED_DATA) != 0
    247      1.1  christos 	   && (! bfd_pei_p (abfd) || scnhdr_int->s_size == 0))
    248      1.1  christos           || (bfd_pei_p (abfd) && (scnhdr_int->s_size > scnhdr_int->s_paddr))))
    249      1.1  christos   /* This code used to set scnhdr_int->s_paddr to 0.  However,
    250      1.1  christos      coff_set_alignment_hook stores s_paddr in virt_size, which
    251      1.1  christos      only works if it correctly holds the virtual size of the
    252      1.1  christos      section.  */
    253      1.1  christos     scnhdr_int->s_size = scnhdr_int->s_paddr;
    254      1.1  christos #endif
    255      1.1  christos }
    256      1.1  christos 
    257      1.1  christos static bfd_boolean
    258      1.1  christos pe_mkobject (bfd * abfd)
    259      1.1  christos {
    260      1.1  christos   pe_data_type *pe;
    261      1.1  christos   bfd_size_type amt = sizeof (pe_data_type);
    262      1.1  christos 
    263      1.1  christos   abfd->tdata.pe_obj_data = (struct pe_tdata *) bfd_zalloc (abfd, amt);
    264      1.1  christos 
    265      1.1  christos   if (abfd->tdata.pe_obj_data == 0)
    266      1.1  christos     return FALSE;
    267      1.1  christos 
    268      1.1  christos   pe = pe_data (abfd);
    269      1.1  christos 
    270      1.1  christos   pe->coff.pe = 1;
    271      1.1  christos 
    272      1.1  christos   /* in_reloc_p is architecture dependent.  */
    273      1.1  christos   pe->in_reloc_p = in_reloc_p;
    274      1.3  christos 
    275      1.1  christos   memset (& pe->pe_opthdr, 0, sizeof pe->pe_opthdr);
    276      1.1  christos   return TRUE;
    277      1.1  christos }
    278      1.1  christos 
    279      1.1  christos /* Create the COFF backend specific information.  */
    280      1.1  christos 
    281      1.1  christos static void *
    282      1.1  christos pe_mkobject_hook (bfd * abfd,
    283      1.1  christos 		  void * filehdr,
    284      1.1  christos 		  void * aouthdr ATTRIBUTE_UNUSED)
    285      1.1  christos {
    286      1.1  christos   struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
    287      1.1  christos   pe_data_type *pe;
    288      1.1  christos 
    289      1.1  christos   if (! pe_mkobject (abfd))
    290      1.1  christos     return NULL;
    291      1.1  christos 
    292      1.1  christos   pe = pe_data (abfd);
    293      1.1  christos   pe->coff.sym_filepos = internal_f->f_symptr;
    294      1.1  christos   /* These members communicate important constants about the symbol
    295      1.1  christos      table to GDB's symbol-reading code.  These `constants'
    296      1.1  christos      unfortunately vary among coff implementations...  */
    297      1.1  christos   pe->coff.local_n_btmask = N_BTMASK;
    298      1.1  christos   pe->coff.local_n_btshft = N_BTSHFT;
    299      1.1  christos   pe->coff.local_n_tmask = N_TMASK;
    300      1.1  christos   pe->coff.local_n_tshift = N_TSHIFT;
    301      1.1  christos   pe->coff.local_symesz = SYMESZ;
    302      1.1  christos   pe->coff.local_auxesz = AUXESZ;
    303      1.1  christos   pe->coff.local_linesz = LINESZ;
    304      1.1  christos 
    305      1.1  christos   pe->coff.timestamp = internal_f->f_timdat;
    306      1.1  christos 
    307      1.1  christos   obj_raw_syment_count (abfd) =
    308      1.1  christos     obj_conv_table_size (abfd) =
    309      1.1  christos       internal_f->f_nsyms;
    310      1.1  christos 
    311      1.1  christos   pe->real_flags = internal_f->f_flags;
    312      1.1  christos 
    313      1.1  christos   if ((internal_f->f_flags & F_DLL) != 0)
    314      1.1  christos     pe->dll = 1;
    315      1.1  christos 
    316      1.1  christos   if ((internal_f->f_flags & IMAGE_FILE_DEBUG_STRIPPED) == 0)
    317      1.1  christos     abfd->flags |= HAS_DEBUG;
    318      1.1  christos 
    319      1.1  christos #ifdef COFF_IMAGE_WITH_PE
    320      1.1  christos   if (aouthdr)
    321      1.1  christos     pe->pe_opthdr = ((struct internal_aouthdr *) aouthdr)->pe;
    322      1.1  christos #endif
    323      1.1  christos 
    324      1.1  christos #ifdef ARM
    325      1.1  christos   if (! _bfd_coff_arm_set_private_flags (abfd, internal_f->f_flags))
    326      1.1  christos     coff_data (abfd) ->flags = 0;
    327      1.1  christos #endif
    328      1.1  christos 
    329      1.1  christos   return (void *) pe;
    330      1.1  christos }
    331      1.1  christos 
    332      1.1  christos static bfd_boolean
    333      1.1  christos pe_print_private_bfd_data (bfd *abfd, void * vfile)
    334      1.1  christos {
    335      1.1  christos   FILE *file = (FILE *) vfile;
    336      1.1  christos 
    337      1.1  christos   if (!_bfd_XX_print_private_bfd_data_common (abfd, vfile))
    338      1.1  christos     return FALSE;
    339      1.1  christos 
    340      1.1  christos   if (pe_saved_coff_bfd_print_private_bfd_data == NULL)
    341      1.1  christos     return TRUE;
    342      1.1  christos 
    343      1.1  christos   fputc ('\n', file);
    344      1.1  christos 
    345      1.1  christos   return pe_saved_coff_bfd_print_private_bfd_data (abfd, vfile);
    346      1.1  christos }
    347      1.1  christos 
    348      1.1  christos /* Copy any private info we understand from the input bfd
    349      1.1  christos    to the output bfd.  */
    350      1.1  christos 
    351      1.1  christos static bfd_boolean
    352      1.1  christos pe_bfd_copy_private_bfd_data (bfd *ibfd, bfd *obfd)
    353      1.1  christos {
    354      1.1  christos   /* PR binutils/716: Copy the large address aware flag.
    355      1.1  christos      XXX: Should we be copying other flags or other fields in the pe_data()
    356      1.1  christos      structure ?  */
    357      1.1  christos   if (pe_data (obfd) != NULL
    358      1.1  christos       && pe_data (ibfd) != NULL
    359      1.1  christos       && pe_data (ibfd)->real_flags & IMAGE_FILE_LARGE_ADDRESS_AWARE)
    360      1.1  christos     pe_data (obfd)->real_flags |= IMAGE_FILE_LARGE_ADDRESS_AWARE;
    361      1.1  christos 
    362      1.1  christos   if (!_bfd_XX_bfd_copy_private_bfd_data_common (ibfd, obfd))
    363      1.1  christos     return FALSE;
    364      1.1  christos 
    365      1.1  christos   if (pe_saved_coff_bfd_copy_private_bfd_data)
    366      1.1  christos     return pe_saved_coff_bfd_copy_private_bfd_data (ibfd, obfd);
    367      1.1  christos 
    368      1.1  christos   return TRUE;
    369      1.1  christos }
    370      1.1  christos 
    371      1.1  christos #define coff_bfd_copy_private_section_data \
    372      1.1  christos   _bfd_XX_bfd_copy_private_section_data
    373      1.1  christos 
    374      1.1  christos #define coff_get_symbol_info _bfd_XX_get_symbol_info
    375      1.1  christos 
    376      1.1  christos #ifdef COFF_IMAGE_WITH_PE
    377      1.1  christos 
    378      1.1  christos /* Code to handle Microsoft's Image Library Format.
    380      1.1  christos    Also known as LINK6 format.
    381      1.1  christos    Documentation about this format can be found at:
    382      1.1  christos 
    383      1.1  christos    http://msdn.microsoft.com/library/specs/pecoff_section8.htm  */
    384      1.1  christos 
    385      1.1  christos /* The following constants specify the sizes of the various data
    386      1.1  christos    structures that we have to create in order to build a bfd describing
    387      1.1  christos    an ILF object file.  The final "+ 1" in the definitions of SIZEOF_IDATA6
    388      1.1  christos    and SIZEOF_IDATA7 below is to allow for the possibility that we might
    389      1.1  christos    need a padding byte in order to ensure 16 bit alignment for the section's
    390      1.1  christos    contents.
    391      1.1  christos 
    392      1.1  christos    The value for SIZEOF_ILF_STRINGS is computed as follows:
    393      1.1  christos 
    394      1.1  christos       There will be NUM_ILF_SECTIONS section symbols.  Allow 9 characters
    395      1.1  christos       per symbol for their names (longest section name is .idata$x).
    396      1.1  christos 
    397      1.1  christos       There will be two symbols for the imported value, one the symbol name
    398      1.1  christos       and one with _imp__ prefixed.  Allowing for the terminating nul's this
    399      1.1  christos       is strlen (symbol_name) * 2 + 8 + 21 + strlen (source_dll).
    400      1.1  christos 
    401      1.1  christos       The strings in the string table must start STRING__SIZE_SIZE bytes into
    402      1.1  christos       the table in order to for the string lookup code in coffgen/coffcode to
    403      1.1  christos       work.  */
    404      1.1  christos #define NUM_ILF_RELOCS		8
    405      1.1  christos #define NUM_ILF_SECTIONS        6
    406      1.1  christos #define NUM_ILF_SYMS 		(2 + NUM_ILF_SECTIONS)
    407      1.1  christos 
    408      1.1  christos #define SIZEOF_ILF_SYMS		 (NUM_ILF_SYMS * sizeof (* vars.sym_cache))
    409      1.1  christos #define SIZEOF_ILF_SYM_TABLE	 (NUM_ILF_SYMS * sizeof (* vars.sym_table))
    410      1.1  christos #define SIZEOF_ILF_NATIVE_SYMS	 (NUM_ILF_SYMS * sizeof (* vars.native_syms))
    411      1.1  christos #define SIZEOF_ILF_SYM_PTR_TABLE (NUM_ILF_SYMS * sizeof (* vars.sym_ptr_table))
    412      1.1  christos #define SIZEOF_ILF_EXT_SYMS	 (NUM_ILF_SYMS * sizeof (* vars.esym_table))
    413      1.1  christos #define SIZEOF_ILF_RELOCS	 (NUM_ILF_RELOCS * sizeof (* vars.reltab))
    414      1.1  christos #define SIZEOF_ILF_INT_RELOCS	 (NUM_ILF_RELOCS * sizeof (* vars.int_reltab))
    415      1.1  christos #define SIZEOF_ILF_STRINGS	 (strlen (symbol_name) * 2 + 8 \
    416      1.1  christos 					+ 21 + strlen (source_dll) \
    417      1.1  christos 					+ NUM_ILF_SECTIONS * 9 \
    418      1.1  christos 					+ STRING_SIZE_SIZE)
    419      1.1  christos #define SIZEOF_IDATA2		(5 * 4)
    420      1.1  christos 
    421      1.1  christos /* For PEx64 idata4 & 5 have thumb size of 8 bytes.  */
    422      1.1  christos #ifdef COFF_WITH_pex64
    423      1.1  christos #define SIZEOF_IDATA4		(2 * 4)
    424      1.1  christos #define SIZEOF_IDATA5		(2 * 4)
    425      1.1  christos #else
    426      1.1  christos #define SIZEOF_IDATA4		(1 * 4)
    427      1.1  christos #define SIZEOF_IDATA5		(1 * 4)
    428      1.1  christos #endif
    429      1.1  christos 
    430      1.1  christos #define SIZEOF_IDATA6		(2 + strlen (symbol_name) + 1 + 1)
    431      1.1  christos #define SIZEOF_IDATA7		(strlen (source_dll) + 1 + 1)
    432      1.1  christos #define SIZEOF_ILF_SECTIONS     (NUM_ILF_SECTIONS * sizeof (struct coff_section_tdata))
    433      1.1  christos 
    434      1.1  christos #define ILF_DATA_SIZE				\
    435      1.1  christos     + SIZEOF_ILF_SYMS				\
    436      1.1  christos     + SIZEOF_ILF_SYM_TABLE			\
    437      1.1  christos     + SIZEOF_ILF_NATIVE_SYMS			\
    438      1.1  christos     + SIZEOF_ILF_SYM_PTR_TABLE			\
    439      1.1  christos     + SIZEOF_ILF_EXT_SYMS			\
    440      1.1  christos     + SIZEOF_ILF_RELOCS				\
    441      1.1  christos     + SIZEOF_ILF_INT_RELOCS			\
    442      1.1  christos     + SIZEOF_ILF_STRINGS			\
    443      1.1  christos     + SIZEOF_IDATA2				\
    444      1.1  christos     + SIZEOF_IDATA4				\
    445      1.1  christos     + SIZEOF_IDATA5				\
    446      1.1  christos     + SIZEOF_IDATA6				\
    447      1.1  christos     + SIZEOF_IDATA7				\
    448      1.1  christos     + SIZEOF_ILF_SECTIONS			\
    449      1.1  christos     + MAX_TEXT_SECTION_SIZE
    450      1.1  christos 
    451      1.1  christos /* Create an empty relocation against the given symbol.  */
    452      1.1  christos 
    453      1.1  christos static void
    454      1.1  christos pe_ILF_make_a_symbol_reloc (pe_ILF_vars *               vars,
    455      1.1  christos 			    bfd_vma                     address,
    456      1.1  christos 			    bfd_reloc_code_real_type    reloc,
    457      1.1  christos 			    struct bfd_symbol **  	sym,
    458      1.1  christos 			    unsigned int                sym_index)
    459      1.1  christos {
    460      1.1  christos   arelent * entry;
    461      1.1  christos   struct internal_reloc * internal;
    462      1.1  christos 
    463      1.1  christos   entry = vars->reltab + vars->relcount;
    464      1.1  christos   internal = vars->int_reltab + vars->relcount;
    465      1.1  christos 
    466      1.1  christos   entry->address     = address;
    467      1.1  christos   entry->addend      = 0;
    468      1.1  christos   entry->howto       = bfd_reloc_type_lookup (vars->abfd, reloc);
    469      1.1  christos   entry->sym_ptr_ptr = sym;
    470      1.1  christos 
    471      1.1  christos   internal->r_vaddr  = address;
    472      1.1  christos   internal->r_symndx = sym_index;
    473      1.1  christos   internal->r_type   = entry->howto->type;
    474      1.1  christos 
    475      1.1  christos   vars->relcount ++;
    476      1.1  christos 
    477      1.1  christos   BFD_ASSERT (vars->relcount <= NUM_ILF_RELOCS);
    478      1.1  christos }
    479      1.1  christos 
    480      1.1  christos /* Create an empty relocation against the given section.  */
    481      1.1  christos 
    482      1.1  christos static void
    483      1.1  christos pe_ILF_make_a_reloc (pe_ILF_vars *             vars,
    484      1.1  christos 		     bfd_vma                   address,
    485      1.1  christos 		     bfd_reloc_code_real_type  reloc,
    486      1.1  christos 		     asection_ptr              sec)
    487      1.1  christos {
    488      1.1  christos   pe_ILF_make_a_symbol_reloc (vars, address, reloc, sec->symbol_ptr_ptr,
    489      1.1  christos 			      coff_section_data (vars->abfd, sec)->i);
    490      1.1  christos }
    491      1.1  christos 
    492      1.1  christos /* Move the queued relocs into the given section.  */
    493      1.1  christos 
    494      1.1  christos static void
    495      1.1  christos pe_ILF_save_relocs (pe_ILF_vars * vars,
    496      1.1  christos 		    asection_ptr  sec)
    497      1.1  christos {
    498      1.1  christos   /* Make sure that there is somewhere to store the internal relocs.  */
    499      1.1  christos   if (coff_section_data (vars->abfd, sec) == NULL)
    500      1.1  christos     /* We should probably return an error indication here.  */
    501      1.1  christos     abort ();
    502      1.1  christos 
    503      1.1  christos   coff_section_data (vars->abfd, sec)->relocs = vars->int_reltab;
    504      1.1  christos   coff_section_data (vars->abfd, sec)->keep_relocs = TRUE;
    505      1.1  christos 
    506      1.1  christos   sec->relocation  = vars->reltab;
    507      1.1  christos   sec->reloc_count = vars->relcount;
    508      1.1  christos   sec->flags      |= SEC_RELOC;
    509      1.1  christos 
    510      1.1  christos   vars->reltab     += vars->relcount;
    511      1.1  christos   vars->int_reltab += vars->relcount;
    512      1.1  christos   vars->relcount   = 0;
    513      1.1  christos 
    514      1.1  christos   BFD_ASSERT ((bfd_byte *) vars->int_reltab < (bfd_byte *) vars->string_table);
    515      1.1  christos }
    516      1.1  christos 
    517      1.1  christos /* Create a global symbol and add it to the relevant tables.  */
    518      1.1  christos 
    519      1.1  christos static void
    520      1.1  christos pe_ILF_make_a_symbol (pe_ILF_vars *  vars,
    521      1.1  christos 		      const char *   prefix,
    522      1.1  christos 		      const char *   symbol_name,
    523      1.1  christos 		      asection_ptr   section,
    524      1.1  christos 		      flagword       extra_flags)
    525      1.1  christos {
    526      1.1  christos   coff_symbol_type * sym;
    527      1.1  christos   combined_entry_type * ent;
    528      1.1  christos   SYMENT * esym;
    529      1.1  christos   unsigned short sclass;
    530      1.1  christos 
    531      1.1  christos   if (extra_flags & BSF_LOCAL)
    532      1.1  christos     sclass = C_STAT;
    533      1.1  christos   else
    534      1.1  christos     sclass = C_EXT;
    535      1.1  christos 
    536      1.1  christos #ifdef THUMBPEMAGIC
    537      1.1  christos   if (vars->magic == THUMBPEMAGIC)
    538      1.1  christos     {
    539      1.1  christos       if (extra_flags & BSF_FUNCTION)
    540      1.1  christos 	sclass = C_THUMBEXTFUNC;
    541      1.1  christos       else if (extra_flags & BSF_LOCAL)
    542      1.1  christos 	sclass = C_THUMBSTAT;
    543      1.1  christos       else
    544      1.1  christos 	sclass = C_THUMBEXT;
    545      1.1  christos     }
    546      1.1  christos #endif
    547      1.1  christos 
    548      1.1  christos   BFD_ASSERT (vars->sym_index < NUM_ILF_SYMS);
    549      1.1  christos 
    550      1.1  christos   sym = vars->sym_ptr;
    551      1.1  christos   ent = vars->native_ptr;
    552      1.1  christos   esym = vars->esym_ptr;
    553      1.1  christos 
    554      1.1  christos   /* Copy the symbol's name into the string table.  */
    555      1.1  christos   sprintf (vars->string_ptr, "%s%s", prefix, symbol_name);
    556      1.1  christos 
    557      1.1  christos   if (section == NULL)
    558      1.1  christos     section = bfd_und_section_ptr;
    559      1.1  christos 
    560      1.1  christos   /* Initialise the external symbol.  */
    561      1.1  christos   H_PUT_32 (vars->abfd, vars->string_ptr - vars->string_table,
    562      1.1  christos 	    esym->e.e.e_offset);
    563      1.1  christos   H_PUT_16 (vars->abfd, section->target_index, esym->e_scnum);
    564      1.1  christos   esym->e_sclass[0] = sclass;
    565      1.1  christos 
    566      1.1  christos   /* The following initialisations are unnecessary - the memory is
    567      1.1  christos      zero initialised.  They are just kept here as reminders.  */
    568      1.1  christos 
    569      1.1  christos   /* Initialise the internal symbol structure.  */
    570      1.1  christos   ent->u.syment.n_sclass          = sclass;
    571      1.3  christos   ent->u.syment.n_scnum           = section->target_index;
    572      1.1  christos   ent->u.syment._n._n_n._n_offset = (bfd_hostptr_t) sym;
    573      1.1  christos   ent->is_sym = TRUE;
    574      1.1  christos 
    575      1.1  christos   sym->symbol.the_bfd = vars->abfd;
    576      1.1  christos   sym->symbol.name    = vars->string_ptr;
    577      1.1  christos   sym->symbol.flags   = BSF_EXPORT | BSF_GLOBAL | extra_flags;
    578      1.1  christos   sym->symbol.section = section;
    579      1.1  christos   sym->native         = ent;
    580      1.1  christos 
    581      1.1  christos   * vars->table_ptr = vars->sym_index;
    582      1.1  christos   * vars->sym_ptr_ptr = sym;
    583      1.1  christos 
    584      1.1  christos   /* Adjust pointers for the next symbol.  */
    585      1.1  christos   vars->sym_index ++;
    586      1.1  christos   vars->sym_ptr ++;
    587      1.1  christos   vars->sym_ptr_ptr ++;
    588      1.1  christos   vars->table_ptr ++;
    589      1.1  christos   vars->native_ptr ++;
    590      1.1  christos   vars->esym_ptr ++;
    591      1.1  christos   vars->string_ptr += strlen (symbol_name) + strlen (prefix) + 1;
    592      1.1  christos 
    593      1.1  christos   BFD_ASSERT (vars->string_ptr < vars->end_string_ptr);
    594      1.1  christos }
    595      1.1  christos 
    596      1.1  christos /* Create a section.  */
    597      1.1  christos 
    598      1.1  christos static asection_ptr
    599      1.1  christos pe_ILF_make_a_section (pe_ILF_vars * vars,
    600      1.1  christos 		       const char *  name,
    601      1.1  christos 		       unsigned int  size,
    602      1.1  christos 		       flagword      extra_flags)
    603      1.1  christos {
    604      1.1  christos   asection_ptr sec;
    605      1.1  christos   flagword     flags;
    606      1.1  christos 
    607      1.1  christos   sec = bfd_make_section_old_way (vars->abfd, name);
    608      1.1  christos   if (sec == NULL)
    609      1.1  christos     return NULL;
    610      1.1  christos 
    611      1.1  christos   flags = SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_KEEP | SEC_IN_MEMORY;
    612      1.1  christos 
    613      1.1  christos   bfd_set_section_flags (vars->abfd, sec, flags | extra_flags);
    614      1.1  christos 
    615      1.1  christos   (void) bfd_set_section_alignment (vars->abfd, sec, 2);
    616      1.1  christos 
    617      1.1  christos   /* Check that we will not run out of space.  */
    618      1.1  christos   BFD_ASSERT (vars->data + size < vars->bim->buffer + vars->bim->size);
    619      1.1  christos 
    620      1.1  christos   /* Set the section size and contents.  The actual
    621      1.1  christos      contents are filled in by our parent.  */
    622      1.1  christos   bfd_set_section_size (vars->abfd, sec, (bfd_size_type) size);
    623      1.1  christos   sec->contents = vars->data;
    624      1.1  christos   sec->target_index = vars->sec_index ++;
    625      1.1  christos 
    626      1.1  christos   /* Advance data pointer in the vars structure.  */
    627      1.1  christos   vars->data += size;
    628      1.1  christos 
    629      1.1  christos   /* Skip the padding byte if it was not needed.
    630      1.1  christos      The logic here is that if the string length is odd,
    631      1.1  christos      then the entire string length, including the null byte,
    632      1.1  christos      is even and so the extra, padding byte, is not needed.  */
    633      1.1  christos   if (size & 1)
    634      1.6  christos     vars->data --;
    635      1.6  christos 
    636      1.6  christos # if (GCC_VERSION >= 3000)
    637      1.6  christos   /* PR 18758: See note in pe_ILF_buid_a_bfd.  We must make sure that we
    638      1.6  christos      preserve host alignment requirements.  We test 'size' rather than
    639      1.6  christos      vars.data as we cannot perform binary arithmetic on pointers.  We assume
    640      1.6  christos      that vars.data was sufficiently aligned upon entry to this function.
    641      1.6  christos      The BFD_ASSERTs in this functions will warn us if we run out of room,
    642      1.6  christos      but we should already have enough padding built in to ILF_DATA_SIZE.  */
    643      1.6  christos   {
    644      1.6  christos     unsigned int alignment = __alignof__ (struct coff_section_tdata);
    645      1.6  christos 
    646      1.6  christos     if (size & (alignment - 1))
    647      1.6  christos       vars->data += alignment - (size & (alignment - 1));
    648      1.1  christos   }
    649      1.1  christos #endif
    650      1.1  christos   /* Create a coff_section_tdata structure for our use.  */
    651      1.1  christos   sec->used_by_bfd = (struct coff_section_tdata *) vars->data;
    652      1.1  christos   vars->data += sizeof (struct coff_section_tdata);
    653      1.1  christos 
    654      1.1  christos   BFD_ASSERT (vars->data <= vars->bim->buffer + vars->bim->size);
    655      1.1  christos 
    656      1.1  christos   /* Create a symbol to refer to this section.  */
    657      1.1  christos   pe_ILF_make_a_symbol (vars, "", name, sec, BSF_LOCAL);
    658      1.1  christos 
    659      1.1  christos   /* Cache the index to the symbol in the coff_section_data structure.  */
    660      1.1  christos   coff_section_data (vars->abfd, sec)->i = vars->sym_index - 1;
    661      1.1  christos 
    662      1.1  christos   return sec;
    663      1.1  christos }
    664      1.1  christos 
    665      1.1  christos /* This structure contains the code that goes into the .text section
    666      1.1  christos    in order to perform a jump into the DLL lookup table.  The entries
    667      1.1  christos    in the table are index by the magic number used to represent the
    668      1.1  christos    machine type in the PE file.  The contents of the data[] arrays in
    669      1.1  christos    these entries are stolen from the jtab[] arrays in ld/pe-dll.c.
    670      1.1  christos    The SIZE field says how many bytes in the DATA array are actually
    671      1.1  christos    used.  The OFFSET field says where in the data array the address
    672      1.1  christos    of the .idata$5 section should be placed.  */
    673      1.1  christos #define MAX_TEXT_SECTION_SIZE 32
    674      1.1  christos 
    675      1.1  christos typedef struct
    676      1.1  christos {
    677      1.1  christos   unsigned short magic;
    678      1.1  christos   unsigned char  data[MAX_TEXT_SECTION_SIZE];
    679      1.1  christos   unsigned int   size;
    680      1.1  christos   unsigned int   offset;
    681      1.1  christos }
    682      1.1  christos jump_table;
    683      1.1  christos 
    684      1.1  christos static jump_table jtab[] =
    685      1.1  christos {
    686      1.1  christos #ifdef I386MAGIC
    687      1.1  christos   { I386MAGIC,
    688      1.1  christos     { 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, 0x90, 0x90 },
    689      1.1  christos     8, 2
    690      1.1  christos   },
    691      1.1  christos #endif
    692      1.1  christos 
    693      1.1  christos #ifdef AMD64MAGIC
    694      1.1  christos   { AMD64MAGIC,
    695      1.1  christos     { 0xff, 0x25, 0x00, 0x00, 0x00, 0x00, 0x90, 0x90 },
    696      1.1  christos     8, 2
    697      1.1  christos   },
    698      1.1  christos #endif
    699      1.1  christos 
    700      1.1  christos #ifdef  MC68MAGIC
    701      1.1  christos   { MC68MAGIC,
    702      1.1  christos     { /* XXX fill me in */ },
    703      1.1  christos     0, 0
    704      1.1  christos   },
    705      1.1  christos #endif
    706      1.1  christos 
    707      1.1  christos #ifdef  MIPS_ARCH_MAGIC_WINCE
    708      1.1  christos   { MIPS_ARCH_MAGIC_WINCE,
    709      1.1  christos     { 0x00, 0x00, 0x08, 0x3c, 0x00, 0x00, 0x08, 0x8d,
    710      1.1  christos       0x08, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x00 },
    711      1.1  christos     16, 0
    712      1.1  christos   },
    713      1.1  christos #endif
    714      1.1  christos 
    715      1.1  christos #ifdef  SH_ARCH_MAGIC_WINCE
    716      1.1  christos   { SH_ARCH_MAGIC_WINCE,
    717      1.1  christos     { 0x01, 0xd0, 0x02, 0x60, 0x2b, 0x40,
    718      1.1  christos       0x09, 0x00, 0x00, 0x00, 0x00, 0x00 },
    719      1.1  christos     12, 8
    720      1.1  christos   },
    721      1.1  christos #endif
    722      1.1  christos 
    723      1.1  christos #ifdef  ARMPEMAGIC
    724      1.1  christos   { ARMPEMAGIC,
    725      1.1  christos     { 0x00, 0xc0, 0x9f, 0xe5, 0x00, 0xf0,
    726      1.1  christos       0x9c, 0xe5, 0x00, 0x00, 0x00, 0x00},
    727      1.1  christos     12, 8
    728      1.1  christos   },
    729      1.1  christos #endif
    730      1.1  christos 
    731      1.1  christos #ifdef  THUMBPEMAGIC
    732      1.1  christos   { THUMBPEMAGIC,
    733      1.1  christos     { 0x40, 0xb4, 0x02, 0x4e, 0x36, 0x68, 0xb4, 0x46,
    734      1.1  christos       0x40, 0xbc, 0x60, 0x47, 0x00, 0x00, 0x00, 0x00 },
    735      1.1  christos     16, 12
    736      1.1  christos   },
    737      1.1  christos #endif
    738      1.1  christos   { 0, { 0 }, 0, 0 }
    739      1.1  christos };
    740      1.1  christos 
    741      1.1  christos #ifndef NUM_ENTRIES
    742      1.1  christos #define NUM_ENTRIES(a) (sizeof (a) / sizeof (a)[0])
    743      1.1  christos #endif
    744      1.1  christos 
    745      1.1  christos /* Build a full BFD from the information supplied in a ILF object.  */
    746      1.1  christos 
    747      1.1  christos static bfd_boolean
    748      1.1  christos pe_ILF_build_a_bfd (bfd *           abfd,
    749      1.1  christos 		    unsigned int    magic,
    750      1.1  christos 		    char *          symbol_name,
    751      1.1  christos 		    char *          source_dll,
    752      1.1  christos 		    unsigned int    ordinal,
    753      1.1  christos 		    unsigned int    types)
    754      1.1  christos {
    755      1.1  christos   bfd_byte *               ptr;
    756      1.1  christos   pe_ILF_vars              vars;
    757      1.1  christos   struct internal_filehdr  internal_f;
    758      1.1  christos   unsigned int             import_type;
    759      1.1  christos   unsigned int             import_name_type;
    760      1.1  christos   asection_ptr             id4, id5, id6 = NULL, text = NULL;
    761      1.1  christos   coff_symbol_type **      imp_sym;
    762      1.1  christos   unsigned int             imp_index;
    763      1.1  christos 
    764      1.1  christos   /* Decode and verify the types field of the ILF structure.  */
    765      1.1  christos   import_type = types & 0x3;
    766      1.1  christos   import_name_type = (types & 0x1c) >> 2;
    767      1.1  christos 
    768      1.1  christos   switch (import_type)
    769      1.1  christos     {
    770      1.1  christos     case IMPORT_CODE:
    771      1.1  christos     case IMPORT_DATA:
    772      1.1  christos       break;
    773      1.1  christos 
    774  1.6.4.1  christos     case IMPORT_CONST:
    775      1.1  christos       /* XXX code yet to be written.  */
    776      1.1  christos       /* xgettext:c-format */
    777      1.1  christos       _bfd_error_handler (_("%B: Unhandled import type; %x"),
    778      1.1  christos 			  abfd, import_type);
    779      1.1  christos       return FALSE;
    780  1.6.4.1  christos 
    781      1.1  christos     default:
    782      1.1  christos       /* xgettext:c-format */
    783      1.1  christos       _bfd_error_handler (_("%B: Unrecognised import type; %x"),
    784      1.1  christos 			  abfd, import_type);
    785      1.1  christos       return FALSE;
    786      1.1  christos     }
    787      1.1  christos 
    788      1.1  christos   switch (import_name_type)
    789      1.1  christos     {
    790      1.1  christos     case IMPORT_ORDINAL:
    791      1.1  christos     case IMPORT_NAME:
    792      1.1  christos     case IMPORT_NAME_NOPREFIX:
    793      1.1  christos     case IMPORT_NAME_UNDECORATE:
    794      1.1  christos       break;
    795  1.6.4.1  christos 
    796      1.1  christos     default:
    797      1.1  christos       /* xgettext:c-format */
    798      1.1  christos       _bfd_error_handler (_("%B: Unrecognised import name type; %x"),
    799      1.1  christos 			  abfd, import_name_type);
    800      1.1  christos       return FALSE;
    801      1.1  christos     }
    802      1.1  christos 
    803      1.1  christos   /* Initialise local variables.
    804      1.1  christos 
    805      1.1  christos      Note these are kept in a structure rather than being
    806      1.1  christos      declared as statics since bfd frowns on global variables.
    807      1.1  christos 
    808      1.1  christos      We are going to construct the contents of the BFD in memory,
    809      1.1  christos      so allocate all the space that we will need right now.  */
    810      1.1  christos   vars.bim
    811      1.1  christos     = (struct bfd_in_memory *) bfd_malloc ((bfd_size_type) sizeof (*vars.bim));
    812      1.1  christos   if (vars.bim == NULL)
    813      1.1  christos     return FALSE;
    814      1.1  christos 
    815      1.1  christos   ptr = (bfd_byte *) bfd_zmalloc ((bfd_size_type) ILF_DATA_SIZE);
    816      1.1  christos   vars.bim->buffer = ptr;
    817      1.1  christos   vars.bim->size   = ILF_DATA_SIZE;
    818      1.1  christos   if (ptr == NULL)
    819      1.1  christos     goto error_return;
    820      1.1  christos 
    821      1.1  christos   /* Initialise the pointers to regions of the memory and the
    822      1.1  christos      other contents of the pe_ILF_vars structure as well.  */
    823      1.1  christos   vars.sym_cache = (coff_symbol_type *) ptr;
    824      1.1  christos   vars.sym_ptr   = (coff_symbol_type *) ptr;
    825      1.1  christos   vars.sym_index = 0;
    826      1.1  christos   ptr += SIZEOF_ILF_SYMS;
    827      1.1  christos 
    828      1.1  christos   vars.sym_table = (unsigned int *) ptr;
    829      1.1  christos   vars.table_ptr = (unsigned int *) ptr;
    830      1.1  christos   ptr += SIZEOF_ILF_SYM_TABLE;
    831      1.1  christos 
    832      1.1  christos   vars.native_syms = (combined_entry_type *) ptr;
    833      1.1  christos   vars.native_ptr  = (combined_entry_type *) ptr;
    834      1.1  christos   ptr += SIZEOF_ILF_NATIVE_SYMS;
    835      1.1  christos 
    836      1.1  christos   vars.sym_ptr_table = (coff_symbol_type **) ptr;
    837      1.1  christos   vars.sym_ptr_ptr   = (coff_symbol_type **) ptr;
    838      1.1  christos   ptr += SIZEOF_ILF_SYM_PTR_TABLE;
    839      1.1  christos 
    840      1.1  christos   vars.esym_table = (SYMENT *) ptr;
    841      1.1  christos   vars.esym_ptr   = (SYMENT *) ptr;
    842      1.1  christos   ptr += SIZEOF_ILF_EXT_SYMS;
    843      1.1  christos 
    844      1.1  christos   vars.reltab   = (arelent *) ptr;
    845      1.1  christos   vars.relcount = 0;
    846      1.1  christos   ptr += SIZEOF_ILF_RELOCS;
    847      1.1  christos 
    848      1.1  christos   vars.int_reltab  = (struct internal_reloc *) ptr;
    849      1.1  christos   ptr += SIZEOF_ILF_INT_RELOCS;
    850      1.1  christos 
    851      1.1  christos   vars.string_table = (char *) ptr;
    852      1.1  christos   vars.string_ptr   = (char *) ptr + STRING_SIZE_SIZE;
    853      1.1  christos   ptr += SIZEOF_ILF_STRINGS;
    854      1.1  christos   vars.end_string_ptr = (char *) ptr;
    855      1.1  christos 
    856      1.6  christos   /* The remaining space in bim->buffer is used
    857      1.6  christos      by the pe_ILF_make_a_section() function.  */
    858      1.6  christos # if (GCC_VERSION >= 3000)
    859      1.6  christos   /* PR 18758: Make sure that the data area is sufficiently aligned for
    860      1.6  christos      pointers on the host.  __alignof__ is a gcc extension, hence the test
    861      1.6  christos      above.  For other compilers we will have to assume that the alignment is
    862      1.6  christos      unimportant, or else extra code can be added here and in
    863      1.6  christos      pe_ILF_make_a_section.
    864      1.6  christos 
    865      1.6  christos      Note - we cannot test 'ptr' directly as it is illegal to perform binary
    866      1.6  christos      arithmetic on pointers, but we know that the strings section is the only
    867      1.6  christos      one that might end on an unaligned boundary.  */
    868      1.6  christos   {
    869      1.6  christos     unsigned int alignment = __alignof__ (char *);
    870      1.6  christos 
    871      1.6  christos     if (SIZEOF_ILF_STRINGS & (alignment - 1))
    872      1.6  christos       ptr += alignment - (SIZEOF_ILF_STRINGS & (alignment - 1));
    873      1.6  christos   }
    874      1.1  christos #endif
    875      1.1  christos 
    876      1.1  christos   vars.data = ptr;
    877      1.1  christos   vars.abfd = abfd;
    878      1.1  christos   vars.sec_index = 0;
    879      1.1  christos   vars.magic = magic;
    880      1.1  christos 
    881      1.1  christos   /* Create the initial .idata$<n> sections:
    882      1.1  christos      [.idata$2:  Import Directory Table -- not needed]
    883      1.1  christos      .idata$4:  Import Lookup Table
    884      1.1  christos      .idata$5:  Import Address Table
    885      1.1  christos 
    886      1.1  christos      Note we do not create a .idata$3 section as this is
    887      1.1  christos      created for us by the linker script.  */
    888      1.1  christos   id4 = pe_ILF_make_a_section (& vars, ".idata$4", SIZEOF_IDATA4, 0);
    889      1.1  christos   id5 = pe_ILF_make_a_section (& vars, ".idata$5", SIZEOF_IDATA5, 0);
    890      1.1  christos   if (id4 == NULL || id5 == NULL)
    891      1.1  christos     goto error_return;
    892      1.1  christos 
    893      1.1  christos   /* Fill in the contents of these sections.  */
    894      1.1  christos   if (import_name_type == IMPORT_ORDINAL)
    895  1.6.4.1  christos     {
    896  1.6.4.1  christos       if (ordinal == 0)
    897      1.1  christos 	/* See PR 20907 for a reproducer.  */
    898      1.1  christos 	goto error_return;
    899      1.1  christos 
    900      1.1  christos #ifdef COFF_WITH_pex64
    901      1.1  christos       ((unsigned int *) id4->contents)[0] = ordinal;
    902      1.1  christos       ((unsigned int *) id4->contents)[1] = 0x80000000;
    903      1.1  christos       ((unsigned int *) id5->contents)[0] = ordinal;
    904      1.1  christos       ((unsigned int *) id5->contents)[1] = 0x80000000;
    905      1.1  christos #else
    906      1.1  christos       * (unsigned int *) id4->contents = ordinal | 0x80000000;
    907      1.1  christos       * (unsigned int *) id5->contents = ordinal | 0x80000000;
    908      1.1  christos #endif
    909      1.1  christos     }
    910      1.1  christos   else
    911      1.1  christos     {
    912      1.1  christos       char * symbol;
    913      1.1  christos       unsigned int len;
    914      1.1  christos 
    915      1.1  christos       /* Create .idata$6 - the Hint Name Table.  */
    916      1.1  christos       id6 = pe_ILF_make_a_section (& vars, ".idata$6", SIZEOF_IDATA6, 0);
    917      1.1  christos       if (id6 == NULL)
    918      1.1  christos 	goto error_return;
    919      1.1  christos 
    920      1.1  christos       /* If necessary, trim the import symbol name.  */
    921      1.1  christos       symbol = symbol_name;
    922      1.1  christos 
    923      1.1  christos       /* As used by MS compiler, '_', '@', and '?' are alternative
    924      1.1  christos 	 forms of USER_LABEL_PREFIX, with '?' for c++ mangled names,
    925      1.1  christos 	 '@' used for fastcall (in C),  '_' everywhere else.  Only one
    926      1.1  christos 	 of these is used for a symbol.  We strip this leading char for
    927      1.1  christos 	 IMPORT_NAME_NOPREFIX and IMPORT_NAME_UNDECORATE as per the
    928      1.1  christos 	 PE COFF 6.0 spec (section 8.3, Import Name Type).  */
    929      1.1  christos 
    930      1.1  christos       if (import_name_type != IMPORT_NAME)
    931      1.1  christos 	{
    932      1.1  christos 	  char c = symbol[0];
    933      1.1  christos 
    934      1.1  christos 	  /* Check that we don't remove for targets with empty
    935      1.1  christos 	     USER_LABEL_PREFIX the leading underscore.  */
    936      1.1  christos 	  if ((c == '_' && abfd->xvec->symbol_leading_char != 0)
    937      1.1  christos 	      || c == '@' || c == '?')
    938      1.1  christos 	    symbol++;
    939      1.1  christos 	}
    940      1.1  christos 
    941      1.1  christos       len = strlen (symbol);
    942      1.1  christos       if (import_name_type == IMPORT_NAME_UNDECORATE)
    943      1.1  christos 	{
    944      1.1  christos 	  /* Truncate at the first '@'.  */
    945      1.1  christos 	  char *at = strchr (symbol, '@');
    946      1.1  christos 
    947      1.1  christos 	  if (at != NULL)
    948      1.1  christos 	    len = at - symbol;
    949      1.1  christos 	}
    950      1.1  christos 
    951      1.1  christos       id6->contents[0] = ordinal & 0xff;
    952      1.1  christos       id6->contents[1] = ordinal >> 8;
    953      1.1  christos 
    954      1.1  christos       memcpy ((char *) id6->contents + 2, symbol, len);
    955      1.1  christos       id6->contents[len + 2] = '\0';
    956      1.1  christos     }
    957      1.1  christos 
    958      1.1  christos   if (import_name_type != IMPORT_ORDINAL)
    959      1.1  christos     {
    960      1.1  christos       pe_ILF_make_a_reloc (&vars, (bfd_vma) 0, BFD_RELOC_RVA, id6);
    961      1.1  christos       pe_ILF_save_relocs (&vars, id4);
    962      1.1  christos 
    963      1.1  christos       pe_ILF_make_a_reloc (&vars, (bfd_vma) 0, BFD_RELOC_RVA, id6);
    964      1.1  christos       pe_ILF_save_relocs (&vars, id5);
    965      1.6  christos     }
    966      1.6  christos 
    967      1.6  christos   /* Create an import symbol.  */
    968      1.6  christos   pe_ILF_make_a_symbol (& vars, "__imp_", symbol_name, id5, 0);
    969      1.6  christos   imp_sym   = vars.sym_ptr_ptr - 1;
    970      1.1  christos   imp_index = vars.sym_index - 1;
    971      1.1  christos 
    972      1.1  christos   /* Create extra sections depending upon the type of import we are dealing with.  */
    973      1.1  christos   switch (import_type)
    974      1.1  christos     {
    975      1.1  christos       int i;
    976      1.6  christos 
    977      1.6  christos     case IMPORT_CODE:
    978      1.1  christos       /* CODE functions are special, in that they get a trampoline that
    979      1.1  christos          jumps to the main import symbol.  Create a .text section to hold it.
    980      1.1  christos 	 First we need to look up its contents in the jump table.  */
    981      1.1  christos       for (i = NUM_ENTRIES (jtab); i--;)
    982      1.1  christos 	{
    983      1.1  christos 	  if (jtab[i].size == 0)
    984      1.1  christos 	    continue;
    985      1.1  christos 	  if (jtab[i].magic == magic)
    986      1.1  christos 	    break;
    987      1.1  christos 	}
    988      1.1  christos       /* If we did not find a matching entry something is wrong.  */
    989      1.1  christos       if (i < 0)
    990      1.1  christos 	abort ();
    991      1.1  christos 
    992      1.1  christos       /* Create the .text section.  */
    993      1.1  christos       text = pe_ILF_make_a_section (& vars, ".text", jtab[i].size, SEC_CODE);
    994      1.1  christos       if (text == NULL)
    995      1.1  christos 	goto error_return;
    996      1.1  christos 
    997      1.1  christos       /* Copy in the jump code.  */
    998      1.1  christos       memcpy (text->contents, jtab[i].data, jtab[i].size);
    999      1.1  christos 
   1000      1.1  christos       /* Create a reloc for the data in the text section.  */
   1001      1.1  christos #ifdef MIPS_ARCH_MAGIC_WINCE
   1002      1.1  christos       if (magic == MIPS_ARCH_MAGIC_WINCE)
   1003      1.1  christos 	{
   1004      1.1  christos 	  pe_ILF_make_a_symbol_reloc (&vars, (bfd_vma) 0, BFD_RELOC_HI16_S,
   1005      1.1  christos 				      (struct bfd_symbol **) imp_sym,
   1006      1.1  christos 				      imp_index);
   1007      1.1  christos 	  pe_ILF_make_a_reloc (&vars, (bfd_vma) 0, BFD_RELOC_LO16, text);
   1008      1.1  christos 	  pe_ILF_make_a_symbol_reloc (&vars, (bfd_vma) 4, BFD_RELOC_LO16,
   1009      1.1  christos 				      (struct bfd_symbol **) imp_sym,
   1010      1.1  christos 				      imp_index);
   1011      1.1  christos 	}
   1012      1.5  christos       else
   1013      1.5  christos #endif
   1014      1.5  christos #ifdef AMD64MAGIC
   1015      1.5  christos       if (magic == AMD64MAGIC)
   1016      1.5  christos 	{
   1017      1.5  christos 	  pe_ILF_make_a_symbol_reloc (&vars, (bfd_vma) jtab[i].offset,
   1018      1.5  christos 				      BFD_RELOC_32_PCREL, (asymbol **) imp_sym,
   1019      1.5  christos 				      imp_index);
   1020      1.5  christos 	}
   1021      1.1  christos       else
   1022      1.1  christos #endif
   1023      1.1  christos 	pe_ILF_make_a_symbol_reloc (&vars, (bfd_vma) jtab[i].offset,
   1024      1.1  christos 				    BFD_RELOC_32, (asymbol **) imp_sym,
   1025      1.1  christos 				    imp_index);
   1026      1.1  christos 
   1027      1.1  christos       pe_ILF_save_relocs (& vars, text);
   1028      1.1  christos       break;
   1029      1.1  christos 
   1030      1.1  christos     case IMPORT_DATA:
   1031      1.1  christos       break;
   1032      1.1  christos 
   1033      1.1  christos     default:
   1034      1.1  christos       /* XXX code not yet written.  */
   1035      1.1  christos       abort ();
   1036      1.1  christos     }
   1037      1.1  christos 
   1038      1.1  christos   /* Initialise the bfd.  */
   1039      1.1  christos   memset (& internal_f, 0, sizeof (internal_f));
   1040      1.1  christos 
   1041      1.1  christos   internal_f.f_magic  = magic;
   1042      1.1  christos   internal_f.f_symptr = 0;
   1043      1.1  christos   internal_f.f_nsyms  = 0;
   1044      1.1  christos   internal_f.f_flags  = F_AR32WR | F_LNNO; /* XXX is this correct ?  */
   1045      1.1  christos 
   1046      1.1  christos   if (   ! bfd_set_start_address (abfd, (bfd_vma) 0)
   1047      1.1  christos       || ! bfd_coff_set_arch_mach_hook (abfd, & internal_f))
   1048      1.1  christos     goto error_return;
   1049      1.1  christos 
   1050      1.1  christos   if (bfd_coff_mkobject_hook (abfd, (void *) & internal_f, NULL) == NULL)
   1051      1.1  christos     goto error_return;
   1052      1.1  christos 
   1053      1.1  christos   coff_data (abfd)->pe = 1;
   1054      1.1  christos #ifdef THUMBPEMAGIC
   1055      1.1  christos   if (vars.magic == THUMBPEMAGIC)
   1056      1.1  christos     /* Stop some linker warnings about thumb code not supporting interworking.  */
   1057      1.1  christos     coff_data (abfd)->flags |= F_INTERWORK | F_INTERWORK_SET;
   1058      1.1  christos #endif
   1059      1.1  christos 
   1060      1.1  christos   /* Switch from file contents to memory contents.  */
   1061      1.1  christos   bfd_cache_close (abfd);
   1062      1.1  christos 
   1063      1.1  christos   abfd->iostream = (void *) vars.bim;
   1064      1.1  christos   abfd->flags |= BFD_IN_MEMORY /* | HAS_LOCALS */;
   1065      1.1  christos   abfd->iovec = &_bfd_memory_iovec;
   1066      1.1  christos   abfd->where = 0;
   1067      1.1  christos   abfd->origin = 0;
   1068      1.1  christos   obj_sym_filepos (abfd) = 0;
   1069      1.1  christos 
   1070      1.1  christos   /* Now create a symbol describing the imported value.  */
   1071      1.1  christos   switch (import_type)
   1072      1.1  christos     {
   1073      1.1  christos     case IMPORT_CODE:
   1074      1.1  christos       pe_ILF_make_a_symbol (& vars, "", symbol_name, text,
   1075      1.1  christos 			    BSF_NOT_AT_END | BSF_FUNCTION);
   1076      1.1  christos 
   1077      1.1  christos       break;
   1078      1.1  christos 
   1079      1.1  christos     case IMPORT_DATA:
   1080      1.1  christos       /* Nothing to do here.  */
   1081      1.1  christos       break;
   1082      1.1  christos 
   1083      1.1  christos     default:
   1084      1.1  christos       /* XXX code not yet written.  */
   1085      1.1  christos       abort ();
   1086      1.6  christos     }
   1087      1.6  christos 
   1088      1.6  christos   /* Create an import symbol for the DLL, without the .dll suffix.  */
   1089      1.6  christos   ptr = (bfd_byte *) strrchr (source_dll, '.');
   1090      1.6  christos   if (ptr)
   1091      1.6  christos     * ptr = 0;
   1092      1.6  christos   pe_ILF_make_a_symbol (& vars, "__IMPORT_DESCRIPTOR_", source_dll, NULL, 0);
   1093      1.6  christos   if (ptr)
   1094      1.1  christos     * ptr = '.';
   1095      1.1  christos 
   1096      1.1  christos   /* Point the bfd at the symbol table.  */
   1097      1.1  christos   obj_symbols (abfd) = vars.sym_cache;
   1098      1.1  christos   bfd_get_symcount (abfd) = vars.sym_index;
   1099      1.1  christos 
   1100      1.1  christos   obj_raw_syments (abfd) = vars.native_syms;
   1101      1.1  christos   obj_raw_syment_count (abfd) = vars.sym_index;
   1102      1.1  christos 
   1103      1.1  christos   obj_coff_external_syms (abfd) = (void *) vars.esym_table;
   1104      1.1  christos   obj_coff_keep_syms (abfd) = TRUE;
   1105      1.1  christos 
   1106      1.1  christos   obj_convert (abfd) = vars.sym_table;
   1107      1.1  christos   obj_conv_table_size (abfd) = vars.sym_index;
   1108      1.1  christos 
   1109      1.1  christos   obj_coff_strings (abfd) = vars.string_table;
   1110      1.1  christos   obj_coff_keep_strings (abfd) = TRUE;
   1111      1.1  christos 
   1112      1.1  christos   abfd->flags |= HAS_SYMS;
   1113      1.1  christos 
   1114      1.1  christos   return TRUE;
   1115      1.1  christos 
   1116      1.1  christos  error_return:
   1117      1.1  christos   if (vars.bim->buffer != NULL)
   1118      1.1  christos     free (vars.bim->buffer);
   1119      1.1  christos   free (vars.bim);
   1120      1.1  christos   return FALSE;
   1121      1.1  christos }
   1122      1.1  christos 
   1123      1.1  christos /* We have detected a Image Library Format archive element.
   1124      1.1  christos    Decode the element and return the appropriate target.  */
   1125      1.1  christos 
   1126      1.1  christos static const bfd_target *
   1127      1.3  christos pe_ILF_object_p (bfd * abfd)
   1128      1.1  christos {
   1129      1.1  christos   bfd_byte        buffer[14];
   1130      1.1  christos   bfd_byte *      ptr;
   1131      1.1  christos   char *          symbol_name;
   1132      1.1  christos   char *          source_dll;
   1133      1.1  christos   unsigned int    machine;
   1134      1.1  christos   bfd_size_type   size;
   1135      1.1  christos   unsigned int    ordinal;
   1136      1.1  christos   unsigned int    types;
   1137      1.3  christos   unsigned int    magic;
   1138      1.1  christos 
   1139      1.3  christos   /* Upon entry the first six bytes of the ILF header have
   1140      1.1  christos       already been read.  Now read the rest of the header.  */
   1141      1.1  christos   if (bfd_bread (buffer, (bfd_size_type) 14, abfd) != 14)
   1142      1.1  christos     return NULL;
   1143      1.1  christos 
   1144      1.1  christos   ptr = buffer;
   1145      1.1  christos 
   1146      1.1  christos   machine = H_GET_16 (abfd, ptr);
   1147      1.1  christos   ptr += 2;
   1148      1.1  christos 
   1149      1.1  christos   /* Check that the machine type is recognised.  */
   1150      1.1  christos   magic = 0;
   1151      1.1  christos 
   1152      1.1  christos   switch (machine)
   1153      1.1  christos     {
   1154      1.1  christos     case IMAGE_FILE_MACHINE_UNKNOWN:
   1155      1.1  christos     case IMAGE_FILE_MACHINE_ALPHA:
   1156      1.1  christos     case IMAGE_FILE_MACHINE_ALPHA64:
   1157      1.1  christos     case IMAGE_FILE_MACHINE_IA64:
   1158      1.1  christos       break;
   1159      1.1  christos 
   1160      1.1  christos     case IMAGE_FILE_MACHINE_I386:
   1161      1.1  christos #ifdef I386MAGIC
   1162      1.1  christos       magic = I386MAGIC;
   1163      1.1  christos #endif
   1164      1.1  christos       break;
   1165      1.1  christos 
   1166      1.1  christos     case IMAGE_FILE_MACHINE_AMD64:
   1167      1.1  christos #ifdef AMD64MAGIC
   1168      1.1  christos       magic = AMD64MAGIC;
   1169      1.1  christos #endif
   1170      1.1  christos       break;
   1171      1.1  christos 
   1172      1.1  christos     case IMAGE_FILE_MACHINE_M68K:
   1173      1.1  christos #ifdef MC68AGIC
   1174      1.1  christos       magic = MC68MAGIC;
   1175      1.1  christos #endif
   1176      1.1  christos       break;
   1177      1.1  christos 
   1178      1.1  christos     case IMAGE_FILE_MACHINE_R3000:
   1179      1.1  christos     case IMAGE_FILE_MACHINE_R4000:
   1180      1.1  christos     case IMAGE_FILE_MACHINE_R10000:
   1181      1.1  christos 
   1182      1.1  christos     case IMAGE_FILE_MACHINE_MIPS16:
   1183      1.1  christos     case IMAGE_FILE_MACHINE_MIPSFPU:
   1184      1.1  christos     case IMAGE_FILE_MACHINE_MIPSFPU16:
   1185      1.1  christos #ifdef MIPS_ARCH_MAGIC_WINCE
   1186      1.1  christos       magic = MIPS_ARCH_MAGIC_WINCE;
   1187      1.1  christos #endif
   1188      1.1  christos       break;
   1189      1.1  christos 
   1190      1.1  christos     case IMAGE_FILE_MACHINE_SH3:
   1191      1.1  christos     case IMAGE_FILE_MACHINE_SH4:
   1192      1.1  christos #ifdef SH_ARCH_MAGIC_WINCE
   1193      1.1  christos       magic = SH_ARCH_MAGIC_WINCE;
   1194      1.1  christos #endif
   1195      1.1  christos       break;
   1196      1.1  christos 
   1197      1.1  christos     case IMAGE_FILE_MACHINE_ARM:
   1198      1.1  christos #ifdef ARMPEMAGIC
   1199      1.1  christos       magic = ARMPEMAGIC;
   1200      1.1  christos #endif
   1201      1.1  christos       break;
   1202      1.1  christos 
   1203      1.1  christos     case IMAGE_FILE_MACHINE_THUMB:
   1204      1.1  christos #ifdef THUMBPEMAGIC
   1205      1.1  christos       {
   1206      1.1  christos 	extern const bfd_target TARGET_LITTLE_SYM;
   1207      1.1  christos 
   1208      1.1  christos 	if (abfd->xvec == & TARGET_LITTLE_SYM)
   1209      1.1  christos 	  magic = THUMBPEMAGIC;
   1210      1.1  christos       }
   1211      1.1  christos #endif
   1212      1.1  christos       break;
   1213      1.1  christos 
   1214      1.1  christos     case IMAGE_FILE_MACHINE_POWERPC:
   1215      1.1  christos       /* We no longer support PowerPC.  */
   1216  1.6.4.1  christos     default:
   1217      1.1  christos       _bfd_error_handler
   1218      1.1  christos 	/* xgettext:c-format */
   1219      1.1  christos 	(_("%B: Unrecognised machine type (0x%x)"
   1220      1.1  christos 	   " in Import Library Format archive"),
   1221      1.1  christos 	 abfd, machine);
   1222      1.1  christos       bfd_set_error (bfd_error_malformed_archive);
   1223      1.1  christos 
   1224      1.1  christos       return NULL;
   1225      1.1  christos       break;
   1226      1.1  christos     }
   1227      1.1  christos 
   1228      1.1  christos   if (magic == 0)
   1229  1.6.4.1  christos     {
   1230      1.1  christos       _bfd_error_handler
   1231      1.1  christos 	/* xgettext:c-format */
   1232      1.1  christos 	(_("%B: Recognised but unhandled machine type (0x%x)"
   1233      1.1  christos 	   " in Import Library Format archive"),
   1234      1.1  christos 	 abfd, machine);
   1235      1.1  christos       bfd_set_error (bfd_error_wrong_format);
   1236      1.1  christos 
   1237      1.1  christos       return NULL;
   1238      1.1  christos     }
   1239      1.1  christos 
   1240      1.1  christos   /* We do not bother to check the date.
   1241      1.1  christos      date = H_GET_32 (abfd, ptr);  */
   1242      1.1  christos   ptr += 4;
   1243      1.1  christos 
   1244      1.1  christos   size = H_GET_32 (abfd, ptr);
   1245      1.1  christos   ptr += 4;
   1246      1.1  christos 
   1247      1.1  christos   if (size == 0)
   1248      1.1  christos     {
   1249      1.1  christos       _bfd_error_handler
   1250      1.1  christos 	(_("%B: size field is zero in Import Library Format header"), abfd);
   1251      1.1  christos       bfd_set_error (bfd_error_malformed_archive);
   1252      1.1  christos 
   1253      1.1  christos       return NULL;
   1254      1.1  christos     }
   1255      1.1  christos 
   1256      1.1  christos   ordinal = H_GET_16 (abfd, ptr);
   1257      1.1  christos   ptr += 2;
   1258      1.1  christos 
   1259      1.1  christos   types = H_GET_16 (abfd, ptr);
   1260      1.1  christos   /* ptr += 2; */
   1261      1.1  christos 
   1262      1.1  christos   /* Now read in the two strings that follow.  */
   1263      1.1  christos   ptr = (bfd_byte *) bfd_alloc (abfd, size);
   1264      1.1  christos   if (ptr == NULL)
   1265      1.1  christos     return NULL;
   1266      1.1  christos 
   1267      1.1  christos   if (bfd_bread (ptr, size, abfd) != size)
   1268      1.1  christos     {
   1269      1.1  christos       bfd_release (abfd, ptr);
   1270      1.1  christos       return NULL;
   1271      1.1  christos     }
   1272  1.6.4.1  christos 
   1273  1.6.4.1  christos   symbol_name = (char *) ptr;
   1274      1.1  christos   /* See PR 20905 for an example of where the strnlen is necessary.  */
   1275      1.1  christos   source_dll  = symbol_name + strnlen (symbol_name, size - 1) + 1;
   1276      1.1  christos 
   1277      1.1  christos   /* Verify that the strings are null terminated.  */
   1278      1.1  christos   if (ptr[size - 1] != 0
   1279      1.1  christos       || (bfd_size_type) ((bfd_byte *) source_dll - ptr) >= size)
   1280      1.1  christos     {
   1281      1.1  christos       _bfd_error_handler
   1282      1.1  christos 	(_("%B: string not null terminated in ILF object file."), abfd);
   1283      1.1  christos       bfd_set_error (bfd_error_malformed_archive);
   1284      1.1  christos       bfd_release (abfd, ptr);
   1285      1.1  christos       return NULL;
   1286      1.1  christos     }
   1287      1.1  christos 
   1288      1.1  christos   /* Now construct the bfd.  */
   1289      1.1  christos   if (! pe_ILF_build_a_bfd (abfd, magic, symbol_name,
   1290      1.1  christos 			    source_dll, ordinal, types))
   1291      1.1  christos     {
   1292      1.1  christos       bfd_release (abfd, ptr);
   1293      1.1  christos       return NULL;
   1294      1.1  christos     }
   1295      1.1  christos 
   1296      1.1  christos   return abfd->xvec;
   1297      1.5  christos }
   1298  1.6.4.1  christos 
   1299      1.5  christos static void
   1300      1.5  christos pe_bfd_read_buildid (bfd *abfd)
   1301      1.5  christos {
   1302      1.5  christos   pe_data_type *pe = pe_data (abfd);
   1303      1.5  christos   struct internal_extra_pe_aouthdr *extra = &pe->pe_opthdr;
   1304      1.5  christos   asection *section;
   1305      1.5  christos   bfd_byte *data = 0;
   1306      1.5  christos   bfd_size_type dataoff;
   1307      1.5  christos   unsigned int i;
   1308      1.5  christos 
   1309      1.5  christos   bfd_vma addr = extra->DataDirectory[PE_DEBUG_DATA].VirtualAddress;
   1310      1.5  christos   bfd_size_type size = extra->DataDirectory[PE_DEBUG_DATA].Size;
   1311      1.5  christos 
   1312      1.5  christos   if (size == 0)
   1313      1.5  christos     return;
   1314      1.5  christos 
   1315  1.6.4.1  christos   addr += extra->ImageBase;
   1316      1.5  christos 
   1317      1.5  christos   /* Search for the section containing the DebugDirectory.  */
   1318      1.5  christos   for (section = abfd->sections; section != NULL; section = section->next)
   1319      1.5  christos     {
   1320      1.5  christos       if ((addr >= section->vma) && (addr < (section->vma + section->size)))
   1321      1.5  christos         break;
   1322      1.5  christos     }
   1323  1.6.4.1  christos 
   1324  1.6.4.1  christos   if (section == NULL)
   1325  1.6.4.1  christos     return;
   1326  1.6.4.1  christos 
   1327      1.5  christos   if (!(section->flags & SEC_HAS_CONTENTS))
   1328      1.5  christos     return;
   1329      1.5  christos 
   1330  1.6.4.1  christos   dataoff = addr - section->vma;
   1331  1.6.4.1  christos 
   1332  1.6.4.1  christos   /* PR 20605: Make sure that the data is really there.  */
   1333  1.6.4.1  christos   if (dataoff + size > section->size)
   1334  1.6.4.1  christos     {
   1335  1.6.4.1  christos       _bfd_error_handler (_("%B: Error: Debug Data ends beyond end of debug directory."),
   1336  1.6.4.1  christos 			  abfd);
   1337  1.6.4.1  christos       return;
   1338      1.5  christos     }
   1339      1.5  christos 
   1340      1.5  christos   /* Read the whole section. */
   1341      1.5  christos   if (!bfd_malloc_and_get_section (abfd, section, &data))
   1342      1.5  christos     {
   1343      1.5  christos       if (data != NULL)
   1344      1.5  christos 	free (data);
   1345      1.5  christos       return;
   1346      1.5  christos     }
   1347      1.5  christos 
   1348      1.5  christos   /* Search for a CodeView entry in the DebugDirectory */
   1349      1.5  christos   for (i = 0; i < size / sizeof (struct external_IMAGE_DEBUG_DIRECTORY); i++)
   1350      1.5  christos     {
   1351      1.5  christos       struct external_IMAGE_DEBUG_DIRECTORY *ext
   1352      1.5  christos 	= &((struct external_IMAGE_DEBUG_DIRECTORY *)(data + dataoff))[i];
   1353      1.5  christos       struct internal_IMAGE_DEBUG_DIRECTORY idd;
   1354      1.5  christos 
   1355      1.5  christos       _bfd_XXi_swap_debugdir_in (abfd, ext, &idd);
   1356      1.5  christos 
   1357      1.5  christos       if (idd.Type == PE_IMAGE_DEBUG_TYPE_CODEVIEW)
   1358      1.5  christos         {
   1359      1.5  christos           char buffer[256 + 1];
   1360      1.5  christos           CODEVIEW_INFO *cvinfo = (CODEVIEW_INFO *) buffer;
   1361      1.5  christos 
   1362      1.5  christos           /*
   1363      1.5  christos             The debug entry doesn't have to have to be in a section, in which
   1364      1.5  christos             case AddressOfRawData is 0, so always use PointerToRawData.
   1365      1.5  christos           */
   1366      1.5  christos           if (_bfd_XXi_slurp_codeview_record (abfd,
   1367      1.5  christos                                               (file_ptr) idd.PointerToRawData,
   1368  1.6.4.1  christos                                               idd.SizeOfData, cvinfo))
   1369  1.6.4.1  christos             {
   1370      1.5  christos               struct bfd_build_id* build_id = bfd_alloc (abfd,
   1371      1.5  christos                          sizeof (struct bfd_build_id) + cvinfo->SignatureLength);
   1372      1.5  christos               if (build_id)
   1373      1.5  christos                 {
   1374      1.5  christos                   build_id->size = cvinfo->SignatureLength;
   1375      1.5  christos                   memcpy(build_id->data,  cvinfo->Signature,
   1376      1.5  christos                          cvinfo->SignatureLength);
   1377      1.5  christos                   abfd->build_id = build_id;
   1378      1.5  christos                 }
   1379      1.5  christos             }
   1380      1.5  christos           break;
   1381      1.5  christos         }
   1382      1.5  christos     }
   1383      1.1  christos }
   1384      1.1  christos 
   1385      1.1  christos static const bfd_target *
   1386      1.3  christos pe_bfd_object_p (bfd * abfd)
   1387      1.1  christos {
   1388      1.1  christos   bfd_byte buffer[6];
   1389      1.1  christos   struct external_PEI_DOS_hdr dos_hdr;
   1390      1.1  christos   struct external_PEI_IMAGE_hdr image_hdr;
   1391      1.1  christos   struct internal_filehdr internal_f;
   1392      1.1  christos   struct internal_aouthdr internal_a;
   1393      1.5  christos   file_ptr opt_hdr_size;
   1394      1.1  christos   file_ptr offset;
   1395      1.1  christos   const bfd_target *result;
   1396      1.3  christos 
   1397      1.1  christos   /* Detect if this a Microsoft Import Library Format element.  */
   1398      1.3  christos   /* First read the beginning of the header.  */
   1399      1.1  christos   if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0
   1400      1.1  christos       || bfd_bread (buffer, (bfd_size_type) 6, abfd) != 6)
   1401      1.1  christos     {
   1402      1.1  christos       if (bfd_get_error () != bfd_error_system_call)
   1403      1.1  christos 	bfd_set_error (bfd_error_wrong_format);
   1404      1.1  christos       return NULL;
   1405      1.3  christos     }
   1406      1.3  christos 
   1407      1.3  christos   /* Then check the magic and the version (only 0 is supported).  */
   1408      1.1  christos   if (H_GET_32 (abfd, buffer) == 0xffff0000
   1409      1.1  christos       && H_GET_16 (abfd, buffer + 4) == 0)
   1410      1.1  christos     return pe_ILF_object_p (abfd);
   1411      1.1  christos 
   1412      1.1  christos   if (bfd_seek (abfd, (file_ptr) 0, SEEK_SET) != 0
   1413      1.1  christos       || bfd_bread (&dos_hdr, (bfd_size_type) sizeof (dos_hdr), abfd)
   1414      1.1  christos 	 != sizeof (dos_hdr))
   1415      1.1  christos     {
   1416      1.1  christos       if (bfd_get_error () != bfd_error_system_call)
   1417      1.1  christos 	bfd_set_error (bfd_error_wrong_format);
   1418      1.1  christos       return NULL;
   1419      1.1  christos     }
   1420      1.1  christos 
   1421      1.1  christos   /* There are really two magic numbers involved; the magic number
   1422      1.1  christos      that says this is a NT executable (PEI) and the magic number that
   1423      1.1  christos      determines the architecture.  The former is DOSMAGIC, stored in
   1424      1.1  christos      the e_magic field.  The latter is stored in the f_magic field.
   1425      1.1  christos      If the NT magic number isn't valid, the architecture magic number
   1426      1.1  christos      could be mimicked by some other field (specifically, the number
   1427      1.1  christos      of relocs in section 3).  Since this routine can only be called
   1428      1.1  christos      correctly for a PEI file, check the e_magic number here, and, if
   1429      1.1  christos      it doesn't match, clobber the f_magic number so that we don't get
   1430      1.1  christos      a false match.  */
   1431      1.1  christos   if (H_GET_16 (abfd, dos_hdr.e_magic) != DOSMAGIC)
   1432      1.1  christos     {
   1433      1.1  christos       bfd_set_error (bfd_error_wrong_format);
   1434      1.1  christos       return NULL;
   1435      1.1  christos     }
   1436      1.1  christos 
   1437      1.1  christos   offset = H_GET_32 (abfd, dos_hdr.e_lfanew);
   1438      1.1  christos   if (bfd_seek (abfd, offset, SEEK_SET) != 0
   1439      1.1  christos       || (bfd_bread (&image_hdr, (bfd_size_type) sizeof (image_hdr), abfd)
   1440      1.1  christos 	  != sizeof (image_hdr)))
   1441      1.1  christos     {
   1442      1.1  christos       if (bfd_get_error () != bfd_error_system_call)
   1443      1.1  christos 	bfd_set_error (bfd_error_wrong_format);
   1444      1.1  christos       return NULL;
   1445      1.1  christos     }
   1446      1.1  christos 
   1447      1.1  christos   if (H_GET_32 (abfd, image_hdr.nt_signature) != 0x4550)
   1448      1.1  christos     {
   1449      1.1  christos       bfd_set_error (bfd_error_wrong_format);
   1450      1.1  christos       return NULL;
   1451      1.1  christos     }
   1452      1.1  christos 
   1453      1.3  christos   /* Swap file header, so that we get the location for calling
   1454      1.1  christos      real_object_p.  */
   1455      1.1  christos   bfd_coff_swap_filehdr_in (abfd, &image_hdr, &internal_f);
   1456      1.1  christos 
   1457      1.1  christos   if (! bfd_coff_bad_format_hook (abfd, &internal_f)
   1458      1.1  christos       || internal_f.f_opthdr > bfd_coff_aoutsz (abfd))
   1459      1.1  christos     {
   1460      1.1  christos       bfd_set_error (bfd_error_wrong_format);
   1461      1.1  christos       return NULL;
   1462      1.1  christos     }
   1463      1.1  christos 
   1464      1.1  christos   /* Read the optional header, which has variable size.  */
   1465      1.1  christos   opt_hdr_size = internal_f.f_opthdr;
   1466      1.1  christos 
   1467      1.3  christos   if (opt_hdr_size != 0)
   1468      1.3  christos     {
   1469      1.3  christos       bfd_size_type amt = opt_hdr_size;
   1470      1.3  christos       void * opthdr;
   1471      1.3  christos 
   1472      1.3  christos       /* PR 17521 file: 230-131433-0.004.  */
   1473      1.1  christos       if (amt < sizeof (PEAOUTHDR))
   1474      1.3  christos 	amt = sizeof (PEAOUTHDR);
   1475      1.1  christos 
   1476      1.1  christos       opthdr = bfd_zalloc (abfd, amt);
   1477      1.1  christos       if (opthdr == NULL)
   1478      1.1  christos 	return NULL;
   1479      1.1  christos       if (bfd_bread (opthdr, opt_hdr_size, abfd)
   1480      1.1  christos 	  != (bfd_size_type) opt_hdr_size)
   1481      1.5  christos 	return NULL;
   1482      1.3  christos 
   1483      1.5  christos       bfd_set_error (bfd_error_no_error);
   1484      1.5  christos       bfd_coff_swap_aouthdr_in (abfd, opthdr, & internal_a);
   1485      1.5  christos       if (bfd_get_error () != bfd_error_no_error)
   1486      1.5  christos 	return NULL;
   1487      1.5  christos     }
   1488      1.5  christos 
   1489      1.5  christos 
   1490      1.5  christos   result = coff_real_object_p (abfd, internal_f.f_nscns, &internal_f,
   1491      1.5  christos                                (opt_hdr_size != 0
   1492      1.5  christos                                 ? &internal_a
   1493      1.5  christos                                 : (struct internal_aouthdr *) NULL));
   1494      1.5  christos 
   1495      1.5  christos 
   1496      1.5  christos   if (result)
   1497      1.5  christos     {
   1498      1.1  christos       /* Now the whole header has been processed, see if there is a build-id */
   1499      1.1  christos       pe_bfd_read_buildid(abfd);
   1500      1.5  christos     }
   1501      1.1  christos 
   1502      1.1  christos   return result;
   1503      1.1  christos }
   1504      1.1  christos 
   1505                    #define coff_object_p pe_bfd_object_p
   1506                    #endif /* COFF_IMAGE_WITH_PE */
   1507