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elf64-ia64-vms.c revision 1.1
      1  1.1  christos /* IA-64 support for OpenVMS
      2  1.1  christos    Copyright 1998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007,
      3  1.1  christos    2008, 2009, 2010, 2012  Free Software Foundation, Inc.
      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 #include "sysdep.h"
     23  1.1  christos #include "bfd.h"
     24  1.1  christos #include "libbfd.h"
     25  1.1  christos #include "elf-bfd.h"
     26  1.1  christos #include "opcode/ia64.h"
     27  1.1  christos #include "elf/ia64.h"
     28  1.1  christos #include "objalloc.h"
     29  1.1  christos #include "hashtab.h"
     30  1.1  christos #include "elfxx-ia64.h"
     31  1.1  christos #include "vms.h"
     32  1.1  christos #include "bfdver.h"
     33  1.1  christos 
     34  1.1  christos /* THE RULES for all the stuff the linker creates --
     35  1.1  christos 
     36  1.1  christos   GOT		Entries created in response to LTOFF or LTOFF_FPTR
     37  1.1  christos 		relocations.  Dynamic relocs created for dynamic
     38  1.1  christos 		symbols in an application; REL relocs for locals
     39  1.1  christos 		in a shared library.
     40  1.1  christos 
     41  1.1  christos   FPTR		The canonical function descriptor.  Created for local
     42  1.1  christos 		symbols in applications.  Descriptors for dynamic symbols
     43  1.1  christos 		and local symbols in shared libraries are created by
     44  1.1  christos 		ld.so.  Thus there are no dynamic relocs against these
     45  1.1  christos 		objects.  The FPTR relocs for such _are_ passed through
     46  1.1  christos 		to the dynamic relocation tables.
     47  1.1  christos 
     48  1.1  christos   FULL_PLT	Created for a PCREL21B relocation against a dynamic symbol.
     49  1.1  christos 		Requires the creation of a PLTOFF entry.  This does not
     50  1.1  christos 		require any dynamic relocations.
     51  1.1  christos 
     52  1.1  christos   PLTOFF	Created by PLTOFF relocations.  For local symbols, this
     53  1.1  christos 		is an alternate function descriptor, and in shared libraries
     54  1.1  christos 		requires two REL relocations.  Note that this cannot be
     55  1.1  christos 		transformed into an FPTR relocation, since it must be in
     56  1.1  christos 		range of the GP.  For dynamic symbols, this is a function
     57  1.1  christos 		descriptor.  */
     58  1.1  christos 
     59  1.1  christos typedef struct bfd_hash_entry *(*new_hash_entry_func)
     60  1.1  christos   (struct bfd_hash_entry *, struct bfd_hash_table *, const char *);
     61  1.1  christos 
     62  1.1  christos /* In dynamically (linker-) created sections, we generally need to keep track
     63  1.1  christos    of the place a symbol or expression got allocated to. This is done via hash
     64  1.1  christos    tables that store entries of the following type.  */
     65  1.1  christos 
     66  1.1  christos struct elf64_ia64_dyn_sym_info
     67  1.1  christos {
     68  1.1  christos   /* The addend for which this entry is relevant.  */
     69  1.1  christos   bfd_vma addend;
     70  1.1  christos 
     71  1.1  christos   bfd_vma got_offset;
     72  1.1  christos   bfd_vma fptr_offset;
     73  1.1  christos   bfd_vma pltoff_offset;
     74  1.1  christos   bfd_vma plt_offset;
     75  1.1  christos   bfd_vma plt2_offset;
     76  1.1  christos 
     77  1.1  christos   /* The symbol table entry, if any, that this was derived from.  */
     78  1.1  christos   struct elf_link_hash_entry *h;
     79  1.1  christos 
     80  1.1  christos   /* Used to count non-got, non-plt relocations for delayed sizing
     81  1.1  christos      of relocation sections.  */
     82  1.1  christos   struct elf64_ia64_dyn_reloc_entry
     83  1.1  christos   {
     84  1.1  christos     struct elf64_ia64_dyn_reloc_entry *next;
     85  1.1  christos     asection *srel;
     86  1.1  christos     int type;
     87  1.1  christos     int count;
     88  1.1  christos   } *reloc_entries;
     89  1.1  christos 
     90  1.1  christos   /* TRUE when the section contents have been updated.  */
     91  1.1  christos   unsigned got_done : 1;
     92  1.1  christos   unsigned fptr_done : 1;
     93  1.1  christos   unsigned pltoff_done : 1;
     94  1.1  christos 
     95  1.1  christos   /* TRUE for the different kinds of linker data we want created.  */
     96  1.1  christos   unsigned want_got : 1;
     97  1.1  christos   unsigned want_gotx : 1;
     98  1.1  christos   unsigned want_fptr : 1;
     99  1.1  christos   unsigned want_ltoff_fptr : 1;
    100  1.1  christos   unsigned want_plt : 1;	/* A MIN_PLT entry.  */
    101  1.1  christos   unsigned want_plt2 : 1;	/* A FULL_PLT.  */
    102  1.1  christos   unsigned want_pltoff : 1;
    103  1.1  christos };
    104  1.1  christos 
    105  1.1  christos struct elf64_ia64_local_hash_entry
    106  1.1  christos {
    107  1.1  christos   int id;
    108  1.1  christos   unsigned int r_sym;
    109  1.1  christos   /* The number of elements in elf64_ia64_dyn_sym_info array.  */
    110  1.1  christos   unsigned int count;
    111  1.1  christos   /* The number of sorted elements in elf64_ia64_dyn_sym_info array.  */
    112  1.1  christos   unsigned int sorted_count;
    113  1.1  christos   /* The size of elf64_ia64_dyn_sym_info array.  */
    114  1.1  christos   unsigned int size;
    115  1.1  christos   /* The array of elf64_ia64_dyn_sym_info.  */
    116  1.1  christos   struct elf64_ia64_dyn_sym_info *info;
    117  1.1  christos 
    118  1.1  christos   /* TRUE if this hash entry's addends was translated for
    119  1.1  christos      SHF_MERGE optimization.  */
    120  1.1  christos   unsigned sec_merge_done : 1;
    121  1.1  christos };
    122  1.1  christos 
    123  1.1  christos struct elf64_ia64_link_hash_entry
    124  1.1  christos {
    125  1.1  christos   struct elf_link_hash_entry root;
    126  1.1  christos 
    127  1.1  christos   /* Set if this symbol is defined in a shared library.
    128  1.1  christos      We can't use root.u.def.section->owner as the symbol is an absolute
    129  1.1  christos      symbol.  */
    130  1.1  christos   bfd *shl;
    131  1.1  christos 
    132  1.1  christos   /* The number of elements in elf64_ia64_dyn_sym_info array.  */
    133  1.1  christos   unsigned int count;
    134  1.1  christos   /* The number of sorted elements in elf64_ia64_dyn_sym_info array.  */
    135  1.1  christos   unsigned int sorted_count;
    136  1.1  christos   /* The size of elf64_ia64_dyn_sym_info array.  */
    137  1.1  christos   unsigned int size;
    138  1.1  christos   /* The array of elf64_ia64_dyn_sym_info.  */
    139  1.1  christos   struct elf64_ia64_dyn_sym_info *info;
    140  1.1  christos };
    141  1.1  christos 
    142  1.1  christos struct elf64_ia64_link_hash_table
    143  1.1  christos {
    144  1.1  christos   /* The main hash table.  */
    145  1.1  christos   struct elf_link_hash_table root;
    146  1.1  christos 
    147  1.1  christos   asection *fptr_sec;		/* Function descriptor table (or NULL).  */
    148  1.1  christos   asection *rel_fptr_sec;	/* Dynamic relocation section for same.  */
    149  1.1  christos   asection *pltoff_sec;		/* Private descriptors for plt (or NULL).  */
    150  1.1  christos   asection *fixups_sec;		/* Fixups section.  */
    151  1.1  christos   asection *transfer_sec;	/* Transfer vector section.  */
    152  1.1  christos   asection *note_sec;		/* .note section.  */
    153  1.1  christos 
    154  1.1  christos   /* There are maybe R_IA64_GPREL22 relocations, including those
    155  1.1  christos      optimized from R_IA64_LTOFF22X, against non-SHF_IA_64_SHORT
    156  1.1  christos      sections.  We need to record those sections so that we can choose
    157  1.1  christos      a proper GP to cover all R_IA64_GPREL22 relocations.  */
    158  1.1  christos   asection *max_short_sec;	/* Maximum short output section.  */
    159  1.1  christos   bfd_vma max_short_offset;	/* Maximum short offset.  */
    160  1.1  christos   asection *min_short_sec;	/* Minimum short output section.  */
    161  1.1  christos   bfd_vma min_short_offset;	/* Minimum short offset.  */
    162  1.1  christos 
    163  1.1  christos   htab_t loc_hash_table;
    164  1.1  christos   void *loc_hash_memory;
    165  1.1  christos };
    166  1.1  christos 
    167  1.1  christos struct elf64_ia64_allocate_data
    168  1.1  christos {
    169  1.1  christos   struct bfd_link_info *info;
    170  1.1  christos   bfd_size_type ofs;
    171  1.1  christos };
    172  1.1  christos 
    173  1.1  christos #define elf64_ia64_hash_table(p) \
    174  1.1  christos   (elf_hash_table_id ((struct elf_link_hash_table *) ((p)->hash)) \
    175  1.1  christos   == IA64_ELF_DATA ? ((struct elf64_ia64_link_hash_table *) ((p)->hash)) : NULL)
    176  1.1  christos 
    177  1.1  christos struct elf64_ia64_vms_obj_tdata
    178  1.1  christos {
    179  1.1  christos   struct elf_obj_tdata root;
    180  1.1  christos 
    181  1.1  christos   /* Ident for shared library.  */
    182  1.1  christos   bfd_uint64_t ident;
    183  1.1  christos 
    184  1.1  christos   /* Used only during link: offset in the .fixups section for this bfd.  */
    185  1.1  christos   bfd_vma fixups_off;
    186  1.1  christos 
    187  1.1  christos   /* Max number of shared libraries.  */
    188  1.1  christos   unsigned int needed_count;
    189  1.1  christos };
    190  1.1  christos 
    191  1.1  christos #define elf_ia64_vms_tdata(abfd) \
    192  1.1  christos   ((struct elf64_ia64_vms_obj_tdata *)((abfd)->tdata.any))
    193  1.1  christos #define elf_ia64_vms_ident(abfd) (elf_ia64_vms_tdata(abfd)->ident)
    194  1.1  christos 
    195  1.1  christos struct elf64_vms_transfer
    196  1.1  christos {
    197  1.1  christos   unsigned char size[4];
    198  1.1  christos   unsigned char spare[4];
    199  1.1  christos   unsigned char tfradr1[8];
    200  1.1  christos   unsigned char tfradr2[8];
    201  1.1  christos   unsigned char tfradr3[8];
    202  1.1  christos   unsigned char tfradr4[8];
    203  1.1  christos   unsigned char tfradr5[8];
    204  1.1  christos 
    205  1.1  christos   /* Local function descriptor for tfr3.  */
    206  1.1  christos   unsigned char tfr3_func[8];
    207  1.1  christos   unsigned char tfr3_gp[8];
    208  1.1  christos };
    209  1.1  christos 
    210  1.1  christos typedef struct
    211  1.1  christos {
    212  1.1  christos   Elf64_External_Ehdr ehdr;
    213  1.1  christos   unsigned char vms_needed_count[8];
    214  1.1  christos } Elf64_External_VMS_Ehdr;
    215  1.1  christos 
    216  1.1  christos static struct elf64_ia64_dyn_sym_info * get_dyn_sym_info
    217  1.1  christos   (struct elf64_ia64_link_hash_table *,
    218  1.1  christos    struct elf_link_hash_entry *,
    219  1.1  christos    bfd *, const Elf_Internal_Rela *, bfd_boolean);
    220  1.1  christos static bfd_boolean elf64_ia64_dynamic_symbol_p
    221  1.1  christos   (struct elf_link_hash_entry *);
    222  1.1  christos static bfd_boolean elf64_ia64_choose_gp
    223  1.1  christos   (bfd *, struct bfd_link_info *, bfd_boolean);
    224  1.1  christos static void elf64_ia64_dyn_sym_traverse
    225  1.1  christos   (struct elf64_ia64_link_hash_table *,
    226  1.1  christos    bfd_boolean (*) (struct elf64_ia64_dyn_sym_info *, void *),
    227  1.1  christos    void *);
    228  1.1  christos static bfd_boolean allocate_global_data_got
    229  1.1  christos   (struct elf64_ia64_dyn_sym_info *, void *);
    230  1.1  christos static bfd_boolean allocate_global_fptr_got
    231  1.1  christos   (struct elf64_ia64_dyn_sym_info *, void *);
    232  1.1  christos static bfd_boolean allocate_local_got
    233  1.1  christos   (struct elf64_ia64_dyn_sym_info *, void *);
    234  1.1  christos static bfd_boolean allocate_dynrel_entries
    235  1.1  christos   (struct elf64_ia64_dyn_sym_info *, void *);
    236  1.1  christos static asection *get_pltoff
    237  1.1  christos   (bfd *, struct elf64_ia64_link_hash_table *);
    238  1.1  christos static asection *get_got
    239  1.1  christos   (bfd *, struct elf64_ia64_link_hash_table *);
    240  1.1  christos 
    241  1.1  christos 
    242  1.1  christos /* Given a ELF reloc, return the matching HOWTO structure.  */
    243  1.1  christos 
    244  1.1  christos static void
    245  1.1  christos elf64_ia64_info_to_howto (bfd *abfd ATTRIBUTE_UNUSED,
    246  1.1  christos 			  arelent *bfd_reloc,
    247  1.1  christos 			  Elf_Internal_Rela *elf_reloc)
    248  1.1  christos {
    249  1.1  christos   bfd_reloc->howto
    250  1.1  christos     = ia64_elf_lookup_howto ((unsigned int) ELF64_R_TYPE (elf_reloc->r_info));
    251  1.1  christos }
    252  1.1  christos 
    253  1.1  christos 
    254  1.1  christos #define PLT_FULL_ENTRY_SIZE	(2 * 16)
    255  1.1  christos 
    256  1.1  christos static const bfd_byte plt_full_entry[PLT_FULL_ENTRY_SIZE] =
    257  1.1  christos {
    258  1.1  christos   0x0b, 0x78, 0x00, 0x02, 0x00, 0x24,  /*   [MMI]       addl r15=0,r1;;   */
    259  1.1  christos   0x00, 0x41, 0x3c, 0x70, 0x29, 0xc0,  /*               ld8.acq r16=[r15],8*/
    260  1.1  christos   0x01, 0x08, 0x00, 0x84,              /*               mov r14=r1;;      */
    261  1.1  christos   0x11, 0x08, 0x00, 0x1e, 0x18, 0x10,  /*   [MIB]       ld8 r1=[r15]      */
    262  1.1  christos   0x60, 0x80, 0x04, 0x80, 0x03, 0x00,  /*               mov b6=r16        */
    263  1.1  christos   0x60, 0x00, 0x80, 0x00               /*               br.few b6;;       */
    264  1.1  christos };
    265  1.1  christos 
    266  1.1  christos static const bfd_byte oor_brl[16] =
    267  1.1  christos {
    268  1.1  christos   0x05, 0x00, 0x00, 0x00, 0x01, 0x00,  /*  [MLX]        nop.m 0           */
    269  1.1  christos   0x00, 0x00, 0x00, 0x00, 0x00, 0x00,  /*               brl.sptk.few tgt;;*/
    270  1.1  christos   0x00, 0x00, 0x00, 0xc0
    271  1.1  christos };
    272  1.1  christos 
    273  1.1  christos 
    274  1.1  christos /* These functions do relaxation for IA-64 ELF.  */
    275  1.1  christos 
    276  1.1  christos /* Rename some of the generic section flags to better document how they
    277  1.1  christos    are used here.  */
    278  1.1  christos #define skip_relax_pass_0 sec_flg0
    279  1.1  christos #define skip_relax_pass_1 sec_flg1
    280  1.1  christos 
    281  1.1  christos static void
    282  1.1  christos elf64_ia64_update_short_info (asection *sec, bfd_vma offset,
    283  1.1  christos 			      struct elf64_ia64_link_hash_table *ia64_info)
    284  1.1  christos {
    285  1.1  christos   /* Skip ABS and SHF_IA_64_SHORT sections.  */
    286  1.1  christos   if (sec == bfd_abs_section_ptr
    287  1.1  christos       || (sec->flags & SEC_SMALL_DATA) != 0)
    288  1.1  christos     return;
    289  1.1  christos 
    290  1.1  christos   if (!ia64_info->min_short_sec)
    291  1.1  christos     {
    292  1.1  christos       ia64_info->max_short_sec = sec;
    293  1.1  christos       ia64_info->max_short_offset = offset;
    294  1.1  christos       ia64_info->min_short_sec = sec;
    295  1.1  christos       ia64_info->min_short_offset = offset;
    296  1.1  christos     }
    297  1.1  christos   else if (sec == ia64_info->max_short_sec
    298  1.1  christos 	   && offset > ia64_info->max_short_offset)
    299  1.1  christos     ia64_info->max_short_offset = offset;
    300  1.1  christos   else if (sec == ia64_info->min_short_sec
    301  1.1  christos 	   && offset < ia64_info->min_short_offset)
    302  1.1  christos     ia64_info->min_short_offset = offset;
    303  1.1  christos   else if (sec->output_section->vma
    304  1.1  christos 	   > ia64_info->max_short_sec->vma)
    305  1.1  christos     {
    306  1.1  christos       ia64_info->max_short_sec = sec;
    307  1.1  christos       ia64_info->max_short_offset = offset;
    308  1.1  christos     }
    309  1.1  christos   else if (sec->output_section->vma
    310  1.1  christos 	   < ia64_info->min_short_sec->vma)
    311  1.1  christos     {
    312  1.1  christos       ia64_info->min_short_sec = sec;
    313  1.1  christos       ia64_info->min_short_offset = offset;
    314  1.1  christos     }
    315  1.1  christos }
    316  1.1  christos 
    317  1.1  christos /* Use a two passes algorithm.  In the first pass, branches are relaxed
    318  1.1  christos    (which may increase the size of the section).  In the second pass,
    319  1.1  christos    the other relaxations are done.
    320  1.1  christos */
    321  1.1  christos 
    322  1.1  christos static bfd_boolean
    323  1.1  christos elf64_ia64_relax_section (bfd *abfd, asection *sec,
    324  1.1  christos 			  struct bfd_link_info *link_info,
    325  1.1  christos 			  bfd_boolean *again)
    326  1.1  christos {
    327  1.1  christos   struct one_fixup
    328  1.1  christos     {
    329  1.1  christos       struct one_fixup *next;
    330  1.1  christos       asection *tsec;
    331  1.1  christos       bfd_vma toff;
    332  1.1  christos       bfd_vma trampoff;
    333  1.1  christos     };
    334  1.1  christos 
    335  1.1  christos   Elf_Internal_Shdr *symtab_hdr;
    336  1.1  christos   Elf_Internal_Rela *internal_relocs;
    337  1.1  christos   Elf_Internal_Rela *irel, *irelend;
    338  1.1  christos   bfd_byte *contents;
    339  1.1  christos   Elf_Internal_Sym *isymbuf = NULL;
    340  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
    341  1.1  christos   struct one_fixup *fixups = NULL;
    342  1.1  christos   bfd_boolean changed_contents = FALSE;
    343  1.1  christos   bfd_boolean changed_relocs = FALSE;
    344  1.1  christos   bfd_boolean skip_relax_pass_0 = TRUE;
    345  1.1  christos   bfd_boolean skip_relax_pass_1 = TRUE;
    346  1.1  christos   bfd_vma gp = 0;
    347  1.1  christos 
    348  1.1  christos   /* Assume we're not going to change any sizes, and we'll only need
    349  1.1  christos      one pass.  */
    350  1.1  christos   *again = FALSE;
    351  1.1  christos 
    352  1.1  christos   if (link_info->relocatable)
    353  1.1  christos     (*link_info->callbacks->einfo)
    354  1.1  christos       (_("%P%F: --relax and -r may not be used together\n"));
    355  1.1  christos 
    356  1.1  christos   /* Don't even try to relax for non-ELF outputs.  */
    357  1.1  christos   if (!is_elf_hash_table (link_info->hash))
    358  1.1  christos     return FALSE;
    359  1.1  christos 
    360  1.1  christos   /* Nothing to do if there are no relocations or there is no need for
    361  1.1  christos      the current pass.  */
    362  1.1  christos   if ((sec->flags & SEC_RELOC) == 0
    363  1.1  christos       || sec->reloc_count == 0
    364  1.1  christos       || (link_info->relax_pass == 0 && sec->skip_relax_pass_0)
    365  1.1  christos       || (link_info->relax_pass == 1 && sec->skip_relax_pass_1))
    366  1.1  christos     return TRUE;
    367  1.1  christos 
    368  1.1  christos   ia64_info = elf64_ia64_hash_table (link_info);
    369  1.1  christos   if (ia64_info == NULL)
    370  1.1  christos     return FALSE;
    371  1.1  christos 
    372  1.1  christos   symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
    373  1.1  christos 
    374  1.1  christos   /* Load the relocations for this section.  */
    375  1.1  christos   internal_relocs = (_bfd_elf_link_read_relocs
    376  1.1  christos 		     (abfd, sec, NULL, (Elf_Internal_Rela *) NULL,
    377  1.1  christos 		      link_info->keep_memory));
    378  1.1  christos   if (internal_relocs == NULL)
    379  1.1  christos     return FALSE;
    380  1.1  christos 
    381  1.1  christos   irelend = internal_relocs + sec->reloc_count;
    382  1.1  christos 
    383  1.1  christos   /* Get the section contents.  */
    384  1.1  christos   if (elf_section_data (sec)->this_hdr.contents != NULL)
    385  1.1  christos     contents = elf_section_data (sec)->this_hdr.contents;
    386  1.1  christos   else
    387  1.1  christos     {
    388  1.1  christos       if (!bfd_malloc_and_get_section (abfd, sec, &contents))
    389  1.1  christos 	goto error_return;
    390  1.1  christos     }
    391  1.1  christos 
    392  1.1  christos   for (irel = internal_relocs; irel < irelend; irel++)
    393  1.1  christos     {
    394  1.1  christos       unsigned long r_type = ELF64_R_TYPE (irel->r_info);
    395  1.1  christos       bfd_vma symaddr, reladdr, trampoff, toff, roff;
    396  1.1  christos       asection *tsec;
    397  1.1  christos       struct one_fixup *f;
    398  1.1  christos       bfd_size_type amt;
    399  1.1  christos       bfd_boolean is_branch;
    400  1.1  christos       struct elf64_ia64_dyn_sym_info *dyn_i;
    401  1.1  christos 
    402  1.1  christos       switch (r_type)
    403  1.1  christos 	{
    404  1.1  christos 	case R_IA64_PCREL21B:
    405  1.1  christos 	case R_IA64_PCREL21BI:
    406  1.1  christos 	case R_IA64_PCREL21M:
    407  1.1  christos 	case R_IA64_PCREL21F:
    408  1.1  christos 	  /* In pass 1, all br relaxations are done. We can skip it. */
    409  1.1  christos 	  if (link_info->relax_pass == 1)
    410  1.1  christos 	    continue;
    411  1.1  christos 	  skip_relax_pass_0 = FALSE;
    412  1.1  christos 	  is_branch = TRUE;
    413  1.1  christos 	  break;
    414  1.1  christos 
    415  1.1  christos 	case R_IA64_PCREL60B:
    416  1.1  christos 	  /* We can't optimize brl to br in pass 0 since br relaxations
    417  1.1  christos 	     will increase the code size. Defer it to pass 1.  */
    418  1.1  christos 	  if (link_info->relax_pass == 0)
    419  1.1  christos 	    {
    420  1.1  christos 	      skip_relax_pass_1 = FALSE;
    421  1.1  christos 	      continue;
    422  1.1  christos 	    }
    423  1.1  christos 	  is_branch = TRUE;
    424  1.1  christos 	  break;
    425  1.1  christos 
    426  1.1  christos 	case R_IA64_GPREL22:
    427  1.1  christos 	  /* Update max_short_sec/min_short_sec.  */
    428  1.1  christos 
    429  1.1  christos 	case R_IA64_LTOFF22X:
    430  1.1  christos 	case R_IA64_LDXMOV:
    431  1.1  christos 	  /* We can't relax ldx/mov in pass 0 since br relaxations will
    432  1.1  christos 	     increase the code size. Defer it to pass 1.  */
    433  1.1  christos 	  if (link_info->relax_pass == 0)
    434  1.1  christos 	    {
    435  1.1  christos 	      skip_relax_pass_1 = FALSE;
    436  1.1  christos 	      continue;
    437  1.1  christos 	    }
    438  1.1  christos 	  is_branch = FALSE;
    439  1.1  christos 	  break;
    440  1.1  christos 
    441  1.1  christos 	default:
    442  1.1  christos 	  continue;
    443  1.1  christos 	}
    444  1.1  christos 
    445  1.1  christos       /* Get the value of the symbol referred to by the reloc.  */
    446  1.1  christos       if (ELF64_R_SYM (irel->r_info) < symtab_hdr->sh_info)
    447  1.1  christos 	{
    448  1.1  christos 	  /* A local symbol.  */
    449  1.1  christos 	  Elf_Internal_Sym *isym;
    450  1.1  christos 
    451  1.1  christos 	  /* Read this BFD's local symbols.  */
    452  1.1  christos 	  if (isymbuf == NULL)
    453  1.1  christos 	    {
    454  1.1  christos 	      isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents;
    455  1.1  christos 	      if (isymbuf == NULL)
    456  1.1  christos 		isymbuf = bfd_elf_get_elf_syms (abfd, symtab_hdr,
    457  1.1  christos 						symtab_hdr->sh_info, 0,
    458  1.1  christos 						NULL, NULL, NULL);
    459  1.1  christos 	      if (isymbuf == 0)
    460  1.1  christos 		goto error_return;
    461  1.1  christos 	    }
    462  1.1  christos 
    463  1.1  christos 	  isym = isymbuf + ELF64_R_SYM (irel->r_info);
    464  1.1  christos 	  if (isym->st_shndx == SHN_UNDEF)
    465  1.1  christos 	    continue;	/* We can't do anything with undefined symbols.  */
    466  1.1  christos 	  else if (isym->st_shndx == SHN_ABS)
    467  1.1  christos 	    tsec = bfd_abs_section_ptr;
    468  1.1  christos 	  else if (isym->st_shndx == SHN_COMMON)
    469  1.1  christos 	    tsec = bfd_com_section_ptr;
    470  1.1  christos 	  else if (isym->st_shndx == SHN_IA_64_ANSI_COMMON)
    471  1.1  christos 	    tsec = bfd_com_section_ptr;
    472  1.1  christos 	  else
    473  1.1  christos 	    tsec = bfd_section_from_elf_index (abfd, isym->st_shndx);
    474  1.1  christos 
    475  1.1  christos 	  toff = isym->st_value;
    476  1.1  christos 	  dyn_i = get_dyn_sym_info (ia64_info, NULL, abfd, irel, FALSE);
    477  1.1  christos 	}
    478  1.1  christos       else
    479  1.1  christos 	{
    480  1.1  christos 	  unsigned long indx;
    481  1.1  christos 	  struct elf_link_hash_entry *h;
    482  1.1  christos 
    483  1.1  christos 	  indx = ELF64_R_SYM (irel->r_info) - symtab_hdr->sh_info;
    484  1.1  christos 	  h = elf_sym_hashes (abfd)[indx];
    485  1.1  christos 	  BFD_ASSERT (h != NULL);
    486  1.1  christos 
    487  1.1  christos 	  while (h->root.type == bfd_link_hash_indirect
    488  1.1  christos 		 || h->root.type == bfd_link_hash_warning)
    489  1.1  christos 	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
    490  1.1  christos 
    491  1.1  christos 	  dyn_i = get_dyn_sym_info (ia64_info, h, abfd, irel, FALSE);
    492  1.1  christos 
    493  1.1  christos 	  /* For branches to dynamic symbols, we're interested instead
    494  1.1  christos 	     in a branch to the PLT entry.  */
    495  1.1  christos 	  if (is_branch && dyn_i && dyn_i->want_plt2)
    496  1.1  christos 	    {
    497  1.1  christos 	      /* Internal branches shouldn't be sent to the PLT.
    498  1.1  christos 		 Leave this for now and we'll give an error later.  */
    499  1.1  christos 	      if (r_type != R_IA64_PCREL21B)
    500  1.1  christos 		continue;
    501  1.1  christos 
    502  1.1  christos 	      tsec = ia64_info->root.splt;
    503  1.1  christos 	      toff = dyn_i->plt2_offset;
    504  1.1  christos 	      BFD_ASSERT (irel->r_addend == 0);
    505  1.1  christos 	    }
    506  1.1  christos 
    507  1.1  christos 	  /* Can't do anything else with dynamic symbols.  */
    508  1.1  christos 	  else if (elf64_ia64_dynamic_symbol_p (h))
    509  1.1  christos 	    continue;
    510  1.1  christos 
    511  1.1  christos 	  else
    512  1.1  christos 	    {
    513  1.1  christos 	      /* We can't do anything with undefined symbols.  */
    514  1.1  christos 	      if (h->root.type == bfd_link_hash_undefined
    515  1.1  christos 		  || h->root.type == bfd_link_hash_undefweak)
    516  1.1  christos 		continue;
    517  1.1  christos 
    518  1.1  christos 	      tsec = h->root.u.def.section;
    519  1.1  christos 	      toff = h->root.u.def.value;
    520  1.1  christos 	    }
    521  1.1  christos 	}
    522  1.1  christos 
    523  1.1  christos       toff += irel->r_addend;
    524  1.1  christos 
    525  1.1  christos       symaddr = tsec->output_section->vma + tsec->output_offset + toff;
    526  1.1  christos 
    527  1.1  christos       roff = irel->r_offset;
    528  1.1  christos 
    529  1.1  christos       if (is_branch)
    530  1.1  christos 	{
    531  1.1  christos 	  bfd_signed_vma offset;
    532  1.1  christos 
    533  1.1  christos 	  reladdr = (sec->output_section->vma
    534  1.1  christos 		     + sec->output_offset
    535  1.1  christos 		     + roff) & (bfd_vma) -4;
    536  1.1  christos 
    537  1.1  christos 	  /* The .plt section is aligned at 32byte and the .text section
    538  1.1  christos 	     is aligned at 64byte. The .text section is right after the
    539  1.1  christos 	     .plt section.  After the first relaxation pass, linker may
    540  1.1  christos 	     increase the gap between the .plt and .text sections up
    541  1.1  christos 	     to 32byte.  We assume linker will always insert 32byte
    542  1.1  christos 	     between the .plt and .text sections after the first
    543  1.1  christos 	     relaxation pass.  */
    544  1.1  christos 	  if (tsec == ia64_info->root.splt)
    545  1.1  christos 	    offset = -0x1000000 + 32;
    546  1.1  christos 	  else
    547  1.1  christos 	    offset = -0x1000000;
    548  1.1  christos 
    549  1.1  christos 	  /* If the branch is in range, no need to do anything.  */
    550  1.1  christos 	  if ((bfd_signed_vma) (symaddr - reladdr) >= offset
    551  1.1  christos 	      && (bfd_signed_vma) (symaddr - reladdr) <= 0x0FFFFF0)
    552  1.1  christos 	    {
    553  1.1  christos 	      /* If the 60-bit branch is in 21-bit range, optimize it. */
    554  1.1  christos 	      if (r_type == R_IA64_PCREL60B)
    555  1.1  christos 		{
    556  1.1  christos 		  ia64_elf_relax_brl (contents, roff);
    557  1.1  christos 
    558  1.1  christos 		  irel->r_info = ELF64_R_INFO (ELF64_R_SYM (irel->r_info),
    559  1.1  christos                                                R_IA64_PCREL21B);
    560  1.1  christos 
    561  1.1  christos 		  /* If the original relocation offset points to slot
    562  1.1  christos 		     1, change it to slot 2.  */
    563  1.1  christos 		  if ((irel->r_offset & 3) == 1)
    564  1.1  christos 		    irel->r_offset += 1;
    565  1.1  christos 		}
    566  1.1  christos 
    567  1.1  christos 	      continue;
    568  1.1  christos 	    }
    569  1.1  christos 	  else if (r_type == R_IA64_PCREL60B)
    570  1.1  christos 	    continue;
    571  1.1  christos 	  else if (ia64_elf_relax_br (contents, roff))
    572  1.1  christos 	    {
    573  1.1  christos 	      irel->r_info = ELF64_R_INFO (ELF64_R_SYM (irel->r_info),
    574  1.1  christos                                            R_IA64_PCREL60B);
    575  1.1  christos 
    576  1.1  christos 	      /* Make the relocation offset point to slot 1.  */
    577  1.1  christos 	      irel->r_offset = (irel->r_offset & ~((bfd_vma) 0x3)) + 1;
    578  1.1  christos 	      continue;
    579  1.1  christos 	    }
    580  1.1  christos 
    581  1.1  christos 	  /* We can't put a trampoline in a .init/.fini section. Issue
    582  1.1  christos 	     an error.  */
    583  1.1  christos 	  if (strcmp (sec->output_section->name, ".init") == 0
    584  1.1  christos 	      || strcmp (sec->output_section->name, ".fini") == 0)
    585  1.1  christos 	    {
    586  1.1  christos 	      (*_bfd_error_handler)
    587  1.1  christos 		(_("%B: Can't relax br at 0x%lx in section `%A'. Please use brl or indirect branch."),
    588  1.1  christos 		 sec->owner, sec, (unsigned long) roff);
    589  1.1  christos 	      bfd_set_error (bfd_error_bad_value);
    590  1.1  christos 	      goto error_return;
    591  1.1  christos 	    }
    592  1.1  christos 
    593  1.1  christos 	  /* If the branch and target are in the same section, you've
    594  1.1  christos 	     got one honking big section and we can't help you unless
    595  1.1  christos 	     you are branching backwards.  You'll get an error message
    596  1.1  christos 	     later.  */
    597  1.1  christos 	  if (tsec == sec && toff > roff)
    598  1.1  christos 	    continue;
    599  1.1  christos 
    600  1.1  christos 	  /* Look for an existing fixup to this address.  */
    601  1.1  christos 	  for (f = fixups; f ; f = f->next)
    602  1.1  christos 	    if (f->tsec == tsec && f->toff == toff)
    603  1.1  christos 	      break;
    604  1.1  christos 
    605  1.1  christos 	  if (f == NULL)
    606  1.1  christos 	    {
    607  1.1  christos 	      /* Two alternatives: If it's a branch to a PLT entry, we can
    608  1.1  christos 		 make a copy of the FULL_PLT entry.  Otherwise, we'll have
    609  1.1  christos 		 to use a `brl' insn to get where we're going.  */
    610  1.1  christos 
    611  1.1  christos 	      size_t size;
    612  1.1  christos 
    613  1.1  christos 	      if (tsec == ia64_info->root.splt)
    614  1.1  christos 		size = sizeof (plt_full_entry);
    615  1.1  christos 	      else
    616  1.1  christos 		size = sizeof (oor_brl);
    617  1.1  christos 
    618  1.1  christos 	      /* Resize the current section to make room for the new branch. */
    619  1.1  christos 	      trampoff = (sec->size + 15) & (bfd_vma) -16;
    620  1.1  christos 
    621  1.1  christos 	      /* If trampoline is out of range, there is nothing we
    622  1.1  christos 		 can do.  */
    623  1.1  christos 	      offset = trampoff - (roff & (bfd_vma) -4);
    624  1.1  christos 	      if (offset < -0x1000000 || offset > 0x0FFFFF0)
    625  1.1  christos 		continue;
    626  1.1  christos 
    627  1.1  christos 	      amt = trampoff + size;
    628  1.1  christos 	      contents = (bfd_byte *) bfd_realloc (contents, amt);
    629  1.1  christos 	      if (contents == NULL)
    630  1.1  christos 		goto error_return;
    631  1.1  christos 	      sec->size = amt;
    632  1.1  christos 
    633  1.1  christos 	      if (tsec == ia64_info->root.splt)
    634  1.1  christos 		{
    635  1.1  christos 		  memcpy (contents + trampoff, plt_full_entry, size);
    636  1.1  christos 
    637  1.1  christos 		  /* Hijack the old relocation for use as the PLTOFF reloc.  */
    638  1.1  christos 		  irel->r_info = ELF64_R_INFO (ELF64_R_SYM (irel->r_info),
    639  1.1  christos 					       R_IA64_PLTOFF22);
    640  1.1  christos 		  irel->r_offset = trampoff;
    641  1.1  christos 		}
    642  1.1  christos 	      else
    643  1.1  christos 		{
    644  1.1  christos                   memcpy (contents + trampoff, oor_brl, size);
    645  1.1  christos                   irel->r_info = ELF64_R_INFO (ELF64_R_SYM (irel->r_info),
    646  1.1  christos                                                R_IA64_PCREL60B);
    647  1.1  christos                   irel->r_offset = trampoff + 2;
    648  1.1  christos 		}
    649  1.1  christos 
    650  1.1  christos 	      /* Record the fixup so we don't do it again this section.  */
    651  1.1  christos 	      f = (struct one_fixup *)
    652  1.1  christos 		bfd_malloc ((bfd_size_type) sizeof (*f));
    653  1.1  christos 	      f->next = fixups;
    654  1.1  christos 	      f->tsec = tsec;
    655  1.1  christos 	      f->toff = toff;
    656  1.1  christos 	      f->trampoff = trampoff;
    657  1.1  christos 	      fixups = f;
    658  1.1  christos 	    }
    659  1.1  christos 	  else
    660  1.1  christos 	    {
    661  1.1  christos 	      /* If trampoline is out of range, there is nothing we
    662  1.1  christos 		 can do.  */
    663  1.1  christos 	      offset = f->trampoff - (roff & (bfd_vma) -4);
    664  1.1  christos 	      if (offset < -0x1000000 || offset > 0x0FFFFF0)
    665  1.1  christos 		continue;
    666  1.1  christos 
    667  1.1  christos 	      /* Nop out the reloc, since we're finalizing things here.  */
    668  1.1  christos 	      irel->r_info = ELF64_R_INFO (0, R_IA64_NONE);
    669  1.1  christos 	    }
    670  1.1  christos 
    671  1.1  christos 	  /* Fix up the existing branch to hit the trampoline.  */
    672  1.1  christos 	  if (ia64_elf_install_value (contents + roff, offset, r_type)
    673  1.1  christos 	      != bfd_reloc_ok)
    674  1.1  christos 	    goto error_return;
    675  1.1  christos 
    676  1.1  christos 	  changed_contents = TRUE;
    677  1.1  christos 	  changed_relocs = TRUE;
    678  1.1  christos 	}
    679  1.1  christos       else
    680  1.1  christos 	{
    681  1.1  christos 	  /* Fetch the gp.  */
    682  1.1  christos 	  if (gp == 0)
    683  1.1  christos 	    {
    684  1.1  christos 	      bfd *obfd = sec->output_section->owner;
    685  1.1  christos 	      gp = _bfd_get_gp_value (obfd);
    686  1.1  christos 	      if (gp == 0)
    687  1.1  christos 		{
    688  1.1  christos 		  if (!elf64_ia64_choose_gp (obfd, link_info, FALSE))
    689  1.1  christos 		    goto error_return;
    690  1.1  christos 		  gp = _bfd_get_gp_value (obfd);
    691  1.1  christos 		}
    692  1.1  christos 	    }
    693  1.1  christos 
    694  1.1  christos 	  /* If the data is out of range, do nothing.  */
    695  1.1  christos 	  if ((bfd_signed_vma) (symaddr - gp) >= 0x200000
    696  1.1  christos 	      ||(bfd_signed_vma) (symaddr - gp) < -0x200000)
    697  1.1  christos 	    continue;
    698  1.1  christos 
    699  1.1  christos 	  if (r_type == R_IA64_GPREL22)
    700  1.1  christos 	    elf64_ia64_update_short_info (tsec->output_section,
    701  1.1  christos 					  tsec->output_offset + toff,
    702  1.1  christos 					  ia64_info);
    703  1.1  christos 	  else if (r_type == R_IA64_LTOFF22X)
    704  1.1  christos 	    {
    705  1.1  christos               /* Can't deal yet correctly with ABS symbols.  */
    706  1.1  christos               if (bfd_is_abs_section (tsec))
    707  1.1  christos                 continue;
    708  1.1  christos 
    709  1.1  christos 	      irel->r_info = ELF64_R_INFO (ELF64_R_SYM (irel->r_info),
    710  1.1  christos 					   R_IA64_GPREL22);
    711  1.1  christos 	      changed_relocs = TRUE;
    712  1.1  christos 
    713  1.1  christos 	      elf64_ia64_update_short_info (tsec->output_section,
    714  1.1  christos 					    tsec->output_offset + toff,
    715  1.1  christos 					    ia64_info);
    716  1.1  christos 	    }
    717  1.1  christos 	  else
    718  1.1  christos 	    {
    719  1.1  christos 	      ia64_elf_relax_ldxmov (contents, roff);
    720  1.1  christos 	      irel->r_info = ELF64_R_INFO (0, R_IA64_NONE);
    721  1.1  christos 	      changed_contents = TRUE;
    722  1.1  christos 	      changed_relocs = TRUE;
    723  1.1  christos 	    }
    724  1.1  christos 	}
    725  1.1  christos     }
    726  1.1  christos 
    727  1.1  christos   /* ??? If we created fixups, this may push the code segment large
    728  1.1  christos      enough that the data segment moves, which will change the GP.
    729  1.1  christos      Reset the GP so that we re-calculate next round.  We need to
    730  1.1  christos      do this at the _beginning_ of the next round; now will not do.  */
    731  1.1  christos 
    732  1.1  christos   /* Clean up and go home.  */
    733  1.1  christos   while (fixups)
    734  1.1  christos     {
    735  1.1  christos       struct one_fixup *f = fixups;
    736  1.1  christos       fixups = fixups->next;
    737  1.1  christos       free (f);
    738  1.1  christos     }
    739  1.1  christos 
    740  1.1  christos   if (isymbuf != NULL
    741  1.1  christos       && symtab_hdr->contents != (unsigned char *) isymbuf)
    742  1.1  christos     {
    743  1.1  christos       if (! link_info->keep_memory)
    744  1.1  christos 	free (isymbuf);
    745  1.1  christos       else
    746  1.1  christos 	{
    747  1.1  christos 	  /* Cache the symbols for elf_link_input_bfd.  */
    748  1.1  christos 	  symtab_hdr->contents = (unsigned char *) isymbuf;
    749  1.1  christos 	}
    750  1.1  christos     }
    751  1.1  christos 
    752  1.1  christos   if (contents != NULL
    753  1.1  christos       && elf_section_data (sec)->this_hdr.contents != contents)
    754  1.1  christos     {
    755  1.1  christos       if (!changed_contents && !link_info->keep_memory)
    756  1.1  christos 	free (contents);
    757  1.1  christos       else
    758  1.1  christos 	{
    759  1.1  christos 	  /* Cache the section contents for elf_link_input_bfd.  */
    760  1.1  christos 	  elf_section_data (sec)->this_hdr.contents = contents;
    761  1.1  christos 	}
    762  1.1  christos     }
    763  1.1  christos 
    764  1.1  christos   if (elf_section_data (sec)->relocs != internal_relocs)
    765  1.1  christos     {
    766  1.1  christos       if (!changed_relocs)
    767  1.1  christos 	free (internal_relocs);
    768  1.1  christos       else
    769  1.1  christos 	elf_section_data (sec)->relocs = internal_relocs;
    770  1.1  christos     }
    771  1.1  christos 
    772  1.1  christos   if (link_info->relax_pass == 0)
    773  1.1  christos     {
    774  1.1  christos       /* Pass 0 is only needed to relax br.  */
    775  1.1  christos       sec->skip_relax_pass_0 = skip_relax_pass_0;
    776  1.1  christos       sec->skip_relax_pass_1 = skip_relax_pass_1;
    777  1.1  christos     }
    778  1.1  christos 
    779  1.1  christos   *again = changed_contents || changed_relocs;
    780  1.1  christos   return TRUE;
    781  1.1  christos 
    782  1.1  christos  error_return:
    783  1.1  christos   if (isymbuf != NULL && (unsigned char *) isymbuf != symtab_hdr->contents)
    784  1.1  christos     free (isymbuf);
    785  1.1  christos   if (contents != NULL
    786  1.1  christos       && elf_section_data (sec)->this_hdr.contents != contents)
    787  1.1  christos     free (contents);
    788  1.1  christos   if (internal_relocs != NULL
    789  1.1  christos       && elf_section_data (sec)->relocs != internal_relocs)
    790  1.1  christos     free (internal_relocs);
    791  1.1  christos   return FALSE;
    792  1.1  christos }
    793  1.1  christos #undef skip_relax_pass_0
    794  1.1  christos #undef skip_relax_pass_1
    795  1.1  christos 
    796  1.1  christos /* Return TRUE if NAME is an unwind table section name.  */
    797  1.1  christos 
    798  1.1  christos static inline bfd_boolean
    799  1.1  christos is_unwind_section_name (bfd *abfd ATTRIBUTE_UNUSED, const char *name)
    800  1.1  christos {
    801  1.1  christos   return ((CONST_STRNEQ (name, ELF_STRING_ia64_unwind)
    802  1.1  christos 	   && ! CONST_STRNEQ (name, ELF_STRING_ia64_unwind_info))
    803  1.1  christos 	  || CONST_STRNEQ (name, ELF_STRING_ia64_unwind_once));
    804  1.1  christos }
    805  1.1  christos 
    806  1.1  christos 
    807  1.1  christos /* Convert IA-64 specific section flags to bfd internal section flags.  */
    808  1.1  christos 
    809  1.1  christos /* ??? There is no bfd internal flag equivalent to the SHF_IA_64_NORECOV
    810  1.1  christos    flag.  */
    811  1.1  christos 
    812  1.1  christos static bfd_boolean
    813  1.1  christos elf64_ia64_section_flags (flagword *flags,
    814  1.1  christos 			  const Elf_Internal_Shdr *hdr)
    815  1.1  christos {
    816  1.1  christos   if (hdr->sh_flags & SHF_IA_64_SHORT)
    817  1.1  christos     *flags |= SEC_SMALL_DATA;
    818  1.1  christos 
    819  1.1  christos   return TRUE;
    820  1.1  christos }
    821  1.1  christos 
    822  1.1  christos /* Set the correct type for an IA-64 ELF section.  We do this by the
    823  1.1  christos    section name, which is a hack, but ought to work.  */
    824  1.1  christos 
    825  1.1  christos static bfd_boolean
    826  1.1  christos elf64_ia64_fake_sections (bfd *abfd, Elf_Internal_Shdr *hdr,
    827  1.1  christos 			  asection *sec)
    828  1.1  christos {
    829  1.1  christos   const char *name;
    830  1.1  christos 
    831  1.1  christos   name = bfd_get_section_name (abfd, sec);
    832  1.1  christos 
    833  1.1  christos   if (is_unwind_section_name (abfd, name))
    834  1.1  christos     {
    835  1.1  christos       /* We don't have the sections numbered at this point, so sh_info
    836  1.1  christos 	 is set later, in elf64_ia64_final_write_processing.  */
    837  1.1  christos       hdr->sh_type = SHT_IA_64_UNWIND;
    838  1.1  christos       hdr->sh_flags |= SHF_LINK_ORDER;
    839  1.1  christos     }
    840  1.1  christos   else if (strcmp (name, ELF_STRING_ia64_archext) == 0)
    841  1.1  christos     hdr->sh_type = SHT_IA_64_EXT;
    842  1.1  christos 
    843  1.1  christos   if (sec->flags & SEC_SMALL_DATA)
    844  1.1  christos     hdr->sh_flags |= SHF_IA_64_SHORT;
    845  1.1  christos 
    846  1.1  christos   return TRUE;
    847  1.1  christos }
    848  1.1  christos 
    849  1.1  christos /* Hook called by the linker routine which adds symbols from an object
    850  1.1  christos    file.  We use it to put .comm items in .sbss, and not .bss.  */
    851  1.1  christos 
    852  1.1  christos static bfd_boolean
    853  1.1  christos elf64_ia64_add_symbol_hook (bfd *abfd,
    854  1.1  christos 			    struct bfd_link_info *info,
    855  1.1  christos 			    Elf_Internal_Sym *sym,
    856  1.1  christos 			    const char **namep ATTRIBUTE_UNUSED,
    857  1.1  christos 			    flagword *flagsp ATTRIBUTE_UNUSED,
    858  1.1  christos 			    asection **secp,
    859  1.1  christos 			    bfd_vma *valp)
    860  1.1  christos {
    861  1.1  christos   if (sym->st_shndx == SHN_COMMON
    862  1.1  christos       && !info->relocatable
    863  1.1  christos       && sym->st_size <= elf_gp_size (abfd))
    864  1.1  christos     {
    865  1.1  christos       /* Common symbols less than or equal to -G nn bytes are
    866  1.1  christos 	 automatically put into .sbss.  */
    867  1.1  christos 
    868  1.1  christos       asection *scomm = bfd_get_section_by_name (abfd, ".scommon");
    869  1.1  christos 
    870  1.1  christos       if (scomm == NULL)
    871  1.1  christos 	{
    872  1.1  christos 	  scomm = bfd_make_section_with_flags (abfd, ".scommon",
    873  1.1  christos 					       (SEC_ALLOC
    874  1.1  christos 						| SEC_IS_COMMON
    875  1.1  christos 						| SEC_LINKER_CREATED));
    876  1.1  christos 	  if (scomm == NULL)
    877  1.1  christos 	    return FALSE;
    878  1.1  christos 	}
    879  1.1  christos 
    880  1.1  christos       *secp = scomm;
    881  1.1  christos       *valp = sym->st_size;
    882  1.1  christos     }
    883  1.1  christos 
    884  1.1  christos   return TRUE;
    885  1.1  christos }
    886  1.1  christos 
    887  1.1  christos /* According to the Tahoe assembler spec, all labels starting with a
    888  1.1  christos    '.' are local.  */
    889  1.1  christos 
    890  1.1  christos static bfd_boolean
    891  1.1  christos elf64_ia64_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED,
    892  1.1  christos 				const char *name)
    893  1.1  christos {
    894  1.1  christos   return name[0] == '.';
    895  1.1  christos }
    896  1.1  christos 
    897  1.1  christos /* Should we do dynamic things to this symbol?  */
    898  1.1  christos 
    899  1.1  christos static bfd_boolean
    900  1.1  christos elf64_ia64_dynamic_symbol_p (struct elf_link_hash_entry *h)
    901  1.1  christos {
    902  1.1  christos   return h != NULL && h->def_dynamic;
    903  1.1  christos }
    904  1.1  christos 
    905  1.1  christos static struct bfd_hash_entry*
    906  1.1  christos elf64_ia64_new_elf_hash_entry (struct bfd_hash_entry *entry,
    907  1.1  christos 			       struct bfd_hash_table *table,
    908  1.1  christos 			       const char *string)
    909  1.1  christos {
    910  1.1  christos   struct elf64_ia64_link_hash_entry *ret;
    911  1.1  christos   ret = (struct elf64_ia64_link_hash_entry *) entry;
    912  1.1  christos 
    913  1.1  christos   /* Allocate the structure if it has not already been allocated by a
    914  1.1  christos      subclass.  */
    915  1.1  christos   if (!ret)
    916  1.1  christos     ret = bfd_hash_allocate (table, sizeof (*ret));
    917  1.1  christos 
    918  1.1  christos   if (!ret)
    919  1.1  christos     return 0;
    920  1.1  christos 
    921  1.1  christos   /* Call the allocation method of the superclass.  */
    922  1.1  christos   ret = ((struct elf64_ia64_link_hash_entry *)
    923  1.1  christos 	 _bfd_elf_link_hash_newfunc ((struct bfd_hash_entry *) ret,
    924  1.1  christos 				     table, string));
    925  1.1  christos 
    926  1.1  christos   ret->info = NULL;
    927  1.1  christos   ret->count = 0;
    928  1.1  christos   ret->sorted_count = 0;
    929  1.1  christos   ret->size = 0;
    930  1.1  christos   return (struct bfd_hash_entry *) ret;
    931  1.1  christos }
    932  1.1  christos 
    933  1.1  christos static void
    934  1.1  christos elf64_ia64_hash_hide_symbol (struct bfd_link_info *info,
    935  1.1  christos 			     struct elf_link_hash_entry *xh,
    936  1.1  christos 			     bfd_boolean force_local)
    937  1.1  christos {
    938  1.1  christos   struct elf64_ia64_link_hash_entry *h;
    939  1.1  christos   struct elf64_ia64_dyn_sym_info *dyn_i;
    940  1.1  christos   unsigned int count;
    941  1.1  christos 
    942  1.1  christos   h = (struct elf64_ia64_link_hash_entry *)xh;
    943  1.1  christos 
    944  1.1  christos   _bfd_elf_link_hash_hide_symbol (info, &h->root, force_local);
    945  1.1  christos 
    946  1.1  christos   for (count = h->count, dyn_i = h->info;
    947  1.1  christos        count != 0;
    948  1.1  christos        count--, dyn_i++)
    949  1.1  christos     {
    950  1.1  christos       dyn_i->want_plt2 = 0;
    951  1.1  christos       dyn_i->want_plt = 0;
    952  1.1  christos     }
    953  1.1  christos }
    954  1.1  christos 
    955  1.1  christos /* Compute a hash of a local hash entry.  */
    956  1.1  christos 
    957  1.1  christos static hashval_t
    958  1.1  christos elf64_ia64_local_htab_hash (const void *ptr)
    959  1.1  christos {
    960  1.1  christos   struct elf64_ia64_local_hash_entry *entry
    961  1.1  christos     = (struct elf64_ia64_local_hash_entry *) ptr;
    962  1.1  christos 
    963  1.1  christos   return ELF_LOCAL_SYMBOL_HASH (entry->id, entry->r_sym);
    964  1.1  christos }
    965  1.1  christos 
    966  1.1  christos /* Compare local hash entries.  */
    967  1.1  christos 
    968  1.1  christos static int
    969  1.1  christos elf64_ia64_local_htab_eq (const void *ptr1, const void *ptr2)
    970  1.1  christos {
    971  1.1  christos   struct elf64_ia64_local_hash_entry *entry1
    972  1.1  christos     = (struct elf64_ia64_local_hash_entry *) ptr1;
    973  1.1  christos   struct elf64_ia64_local_hash_entry *entry2
    974  1.1  christos     = (struct elf64_ia64_local_hash_entry *) ptr2;
    975  1.1  christos 
    976  1.1  christos   return entry1->id == entry2->id && entry1->r_sym == entry2->r_sym;
    977  1.1  christos }
    978  1.1  christos 
    979  1.1  christos /* Create the derived linker hash table.  The IA-64 ELF port uses this
    980  1.1  christos    derived hash table to keep information specific to the IA-64 ElF
    981  1.1  christos    linker (without using static variables).  */
    982  1.1  christos 
    983  1.1  christos static struct bfd_link_hash_table *
    984  1.1  christos elf64_ia64_hash_table_create (bfd *abfd)
    985  1.1  christos {
    986  1.1  christos   struct elf64_ia64_link_hash_table *ret;
    987  1.1  christos 
    988  1.1  christos   ret = bfd_zmalloc ((bfd_size_type) sizeof (*ret));
    989  1.1  christos   if (!ret)
    990  1.1  christos     return NULL;
    991  1.1  christos 
    992  1.1  christos   if (!_bfd_elf_link_hash_table_init (&ret->root, abfd,
    993  1.1  christos 				      elf64_ia64_new_elf_hash_entry,
    994  1.1  christos 				      sizeof (struct elf64_ia64_link_hash_entry),
    995  1.1  christos 				      IA64_ELF_DATA))
    996  1.1  christos     {
    997  1.1  christos       free (ret);
    998  1.1  christos       return NULL;
    999  1.1  christos     }
   1000  1.1  christos 
   1001  1.1  christos   ret->loc_hash_table = htab_try_create (1024, elf64_ia64_local_htab_hash,
   1002  1.1  christos 					 elf64_ia64_local_htab_eq, NULL);
   1003  1.1  christos   ret->loc_hash_memory = objalloc_create ();
   1004  1.1  christos   if (!ret->loc_hash_table || !ret->loc_hash_memory)
   1005  1.1  christos     {
   1006  1.1  christos       free (ret);
   1007  1.1  christos       return NULL;
   1008  1.1  christos     }
   1009  1.1  christos 
   1010  1.1  christos   return &ret->root.root;
   1011  1.1  christos }
   1012  1.1  christos 
   1013  1.1  christos /* Free the global elf64_ia64_dyn_sym_info array.  */
   1014  1.1  christos 
   1015  1.1  christos static bfd_boolean
   1016  1.1  christos elf64_ia64_global_dyn_info_free (void **xentry,
   1017  1.1  christos 				 void * unused ATTRIBUTE_UNUSED)
   1018  1.1  christos {
   1019  1.1  christos   struct elf64_ia64_link_hash_entry *entry
   1020  1.1  christos     = (struct elf64_ia64_link_hash_entry *) xentry;
   1021  1.1  christos 
   1022  1.1  christos   if (entry->root.root.type == bfd_link_hash_warning)
   1023  1.1  christos     entry = (struct elf64_ia64_link_hash_entry *) entry->root.root.u.i.link;
   1024  1.1  christos 
   1025  1.1  christos   if (entry->info)
   1026  1.1  christos     {
   1027  1.1  christos       free (entry->info);
   1028  1.1  christos       entry->info = NULL;
   1029  1.1  christos       entry->count = 0;
   1030  1.1  christos       entry->sorted_count = 0;
   1031  1.1  christos       entry->size = 0;
   1032  1.1  christos     }
   1033  1.1  christos 
   1034  1.1  christos   return TRUE;
   1035  1.1  christos }
   1036  1.1  christos 
   1037  1.1  christos /* Free the local elf64_ia64_dyn_sym_info array.  */
   1038  1.1  christos 
   1039  1.1  christos static bfd_boolean
   1040  1.1  christos elf64_ia64_local_dyn_info_free (void **slot,
   1041  1.1  christos 				void * unused ATTRIBUTE_UNUSED)
   1042  1.1  christos {
   1043  1.1  christos   struct elf64_ia64_local_hash_entry *entry
   1044  1.1  christos     = (struct elf64_ia64_local_hash_entry *) *slot;
   1045  1.1  christos 
   1046  1.1  christos   if (entry->info)
   1047  1.1  christos     {
   1048  1.1  christos       free (entry->info);
   1049  1.1  christos       entry->info = NULL;
   1050  1.1  christos       entry->count = 0;
   1051  1.1  christos       entry->sorted_count = 0;
   1052  1.1  christos       entry->size = 0;
   1053  1.1  christos     }
   1054  1.1  christos 
   1055  1.1  christos   return TRUE;
   1056  1.1  christos }
   1057  1.1  christos 
   1058  1.1  christos /* Destroy IA-64 linker hash table.  */
   1059  1.1  christos 
   1060  1.1  christos static void
   1061  1.1  christos elf64_ia64_hash_table_free (struct bfd_link_hash_table *hash)
   1062  1.1  christos {
   1063  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info
   1064  1.1  christos     = (struct elf64_ia64_link_hash_table *) hash;
   1065  1.1  christos   if (ia64_info->loc_hash_table)
   1066  1.1  christos     {
   1067  1.1  christos       htab_traverse (ia64_info->loc_hash_table,
   1068  1.1  christos 		     elf64_ia64_local_dyn_info_free, NULL);
   1069  1.1  christos       htab_delete (ia64_info->loc_hash_table);
   1070  1.1  christos     }
   1071  1.1  christos   if (ia64_info->loc_hash_memory)
   1072  1.1  christos     objalloc_free ((struct objalloc *) ia64_info->loc_hash_memory);
   1073  1.1  christos   elf_link_hash_traverse (&ia64_info->root,
   1074  1.1  christos 			  elf64_ia64_global_dyn_info_free, NULL);
   1075  1.1  christos   _bfd_elf_link_hash_table_free (hash);
   1076  1.1  christos }
   1077  1.1  christos 
   1078  1.1  christos /* Traverse both local and global hash tables.  */
   1079  1.1  christos 
   1080  1.1  christos struct elf64_ia64_dyn_sym_traverse_data
   1081  1.1  christos {
   1082  1.1  christos   bfd_boolean (*func) (struct elf64_ia64_dyn_sym_info *, void *);
   1083  1.1  christos   void * data;
   1084  1.1  christos };
   1085  1.1  christos 
   1086  1.1  christos static bfd_boolean
   1087  1.1  christos elf64_ia64_global_dyn_sym_thunk (struct bfd_hash_entry *xentry,
   1088  1.1  christos 				 void * xdata)
   1089  1.1  christos {
   1090  1.1  christos   struct elf64_ia64_link_hash_entry *entry
   1091  1.1  christos     = (struct elf64_ia64_link_hash_entry *) xentry;
   1092  1.1  christos   struct elf64_ia64_dyn_sym_traverse_data *data
   1093  1.1  christos     = (struct elf64_ia64_dyn_sym_traverse_data *) xdata;
   1094  1.1  christos   struct elf64_ia64_dyn_sym_info *dyn_i;
   1095  1.1  christos   unsigned int count;
   1096  1.1  christos 
   1097  1.1  christos   if (entry->root.root.type == bfd_link_hash_warning)
   1098  1.1  christos     entry = (struct elf64_ia64_link_hash_entry *) entry->root.root.u.i.link;
   1099  1.1  christos 
   1100  1.1  christos   for (count = entry->count, dyn_i = entry->info;
   1101  1.1  christos        count != 0;
   1102  1.1  christos        count--, dyn_i++)
   1103  1.1  christos     if (! (*data->func) (dyn_i, data->data))
   1104  1.1  christos       return FALSE;
   1105  1.1  christos   return TRUE;
   1106  1.1  christos }
   1107  1.1  christos 
   1108  1.1  christos static bfd_boolean
   1109  1.1  christos elf64_ia64_local_dyn_sym_thunk (void **slot, void * xdata)
   1110  1.1  christos {
   1111  1.1  christos   struct elf64_ia64_local_hash_entry *entry
   1112  1.1  christos     = (struct elf64_ia64_local_hash_entry *) *slot;
   1113  1.1  christos   struct elf64_ia64_dyn_sym_traverse_data *data
   1114  1.1  christos     = (struct elf64_ia64_dyn_sym_traverse_data *) xdata;
   1115  1.1  christos   struct elf64_ia64_dyn_sym_info *dyn_i;
   1116  1.1  christos   unsigned int count;
   1117  1.1  christos 
   1118  1.1  christos   for (count = entry->count, dyn_i = entry->info;
   1119  1.1  christos        count != 0;
   1120  1.1  christos        count--, dyn_i++)
   1121  1.1  christos     if (! (*data->func) (dyn_i, data->data))
   1122  1.1  christos       return FALSE;
   1123  1.1  christos   return TRUE;
   1124  1.1  christos }
   1125  1.1  christos 
   1126  1.1  christos static void
   1127  1.1  christos elf64_ia64_dyn_sym_traverse (struct elf64_ia64_link_hash_table *ia64_info,
   1128  1.1  christos 			     bfd_boolean (*func) (struct elf64_ia64_dyn_sym_info *, void *),
   1129  1.1  christos 			     void * data)
   1130  1.1  christos {
   1131  1.1  christos   struct elf64_ia64_dyn_sym_traverse_data xdata;
   1132  1.1  christos 
   1133  1.1  christos   xdata.func = func;
   1134  1.1  christos   xdata.data = data;
   1135  1.1  christos 
   1136  1.1  christos   elf_link_hash_traverse (&ia64_info->root,
   1137  1.1  christos 			  elf64_ia64_global_dyn_sym_thunk, &xdata);
   1138  1.1  christos   htab_traverse (ia64_info->loc_hash_table,
   1139  1.1  christos 		 elf64_ia64_local_dyn_sym_thunk, &xdata);
   1140  1.1  christos }
   1141  1.1  christos 
   1142  1.1  christos #define NOTE_NAME "IPF/VMS"
   1143  1.1  christos 
   1144  1.1  christos static bfd_boolean
   1145  1.1  christos create_ia64_vms_notes (bfd *abfd, struct bfd_link_info *info,
   1146  1.1  christos                        unsigned int time_hi, unsigned int time_lo)
   1147  1.1  christos {
   1148  1.1  christos #define NBR_NOTES 7
   1149  1.1  christos   Elf_Internal_Note notes[NBR_NOTES];
   1150  1.1  christos   char *module_name;
   1151  1.1  christos   int module_name_len;
   1152  1.1  christos   unsigned char cur_time[8];
   1153  1.1  christos   Elf64_External_VMS_ORIG_DYN_Note *orig_dyn;
   1154  1.1  christos   unsigned int orig_dyn_size;
   1155  1.1  christos   unsigned int note_size;
   1156  1.1  christos   int i;
   1157  1.1  christos   unsigned char *noteptr;
   1158  1.1  christos   unsigned char *note_contents;
   1159  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   1160  1.1  christos 
   1161  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   1162  1.1  christos 
   1163  1.1  christos   module_name = vms_get_module_name (bfd_get_filename (abfd), TRUE);
   1164  1.1  christos   module_name_len = strlen (module_name) + 1;
   1165  1.1  christos 
   1166  1.1  christos   bfd_putl32 (time_lo, cur_time + 0);
   1167  1.1  christos   bfd_putl32 (time_hi, cur_time + 4);
   1168  1.1  christos 
   1169  1.1  christos   /* Note 0: IMGNAM.  */
   1170  1.1  christos   notes[0].type = NT_VMS_IMGNAM;
   1171  1.1  christos   notes[0].descdata = module_name;
   1172  1.1  christos   notes[0].descsz = module_name_len;
   1173  1.1  christos 
   1174  1.1  christos   /* Note 1: GSTNAM.  */
   1175  1.1  christos   notes[1].type = NT_VMS_GSTNAM;
   1176  1.1  christos   notes[1].descdata = module_name;
   1177  1.1  christos   notes[1].descsz = module_name_len;
   1178  1.1  christos 
   1179  1.1  christos   /* Note 2: IMGID.  */
   1180  1.1  christos #define IMG_ID "V1.0"
   1181  1.1  christos   notes[2].type = NT_VMS_IMGID;
   1182  1.1  christos   notes[2].descdata = IMG_ID;
   1183  1.1  christos   notes[2].descsz = sizeof (IMG_ID);
   1184  1.1  christos 
   1185  1.1  christos   /* Note 3: Linktime.  */
   1186  1.1  christos   notes[3].type = NT_VMS_LINKTIME;
   1187  1.1  christos   notes[3].descdata = (char *)cur_time;
   1188  1.1  christos   notes[3].descsz = sizeof (cur_time);
   1189  1.1  christos 
   1190  1.1  christos   /* Note 4: Linker id.  */
   1191  1.1  christos   notes[4].type = NT_VMS_LINKID;
   1192  1.1  christos   notes[4].descdata = "GNU ld " BFD_VERSION_STRING;
   1193  1.1  christos   notes[4].descsz = strlen (notes[4].descdata) + 1;
   1194  1.1  christos 
   1195  1.1  christos   /* Note 5: Original dyn.  */
   1196  1.1  christos   orig_dyn_size = (sizeof (*orig_dyn) + sizeof (IMG_ID) - 1 + 7) & ~7;
   1197  1.1  christos   orig_dyn = bfd_zalloc (abfd, orig_dyn_size);
   1198  1.1  christos   if (orig_dyn == NULL)
   1199  1.1  christos     return FALSE;
   1200  1.1  christos   bfd_putl32 (1, orig_dyn->major_id);
   1201  1.1  christos   bfd_putl32 (3, orig_dyn->minor_id);
   1202  1.1  christos   memcpy (orig_dyn->manipulation_date, cur_time, sizeof (cur_time));
   1203  1.1  christos   bfd_putl64 (VMS_LF_IMGSTA | VMS_LF_MAIN, orig_dyn->link_flags);
   1204  1.1  christos   bfd_putl32 (EF_IA_64_ABI64, orig_dyn->elf_flags);
   1205  1.1  christos   memcpy (orig_dyn->imgid, IMG_ID, sizeof (IMG_ID));
   1206  1.1  christos   notes[5].type = NT_VMS_ORIG_DYN;
   1207  1.1  christos   notes[5].descdata = (char *)orig_dyn;
   1208  1.1  christos   notes[5].descsz = orig_dyn_size;
   1209  1.1  christos 
   1210  1.1  christos   /* Note 3: Patchtime.  */
   1211  1.1  christos   notes[6].type = NT_VMS_PATCHTIME;
   1212  1.1  christos   notes[6].descdata = (char *)cur_time;
   1213  1.1  christos   notes[6].descsz = sizeof (cur_time);
   1214  1.1  christos 
   1215  1.1  christos   /* Compute notes size.  */
   1216  1.1  christos   note_size = 0;
   1217  1.1  christos   for (i = 0; i < NBR_NOTES; i++)
   1218  1.1  christos     note_size += sizeof (Elf64_External_VMS_Note) - 1
   1219  1.1  christos       + ((sizeof (NOTE_NAME) - 1 + 7) & ~7)
   1220  1.1  christos       + ((notes[i].descsz + 7) & ~7);
   1221  1.1  christos 
   1222  1.1  christos   /* Malloc a temporary buffer large enough for most notes */
   1223  1.1  christos   note_contents = (unsigned char *) bfd_zalloc (abfd, note_size);
   1224  1.1  christos   if (note_contents == NULL)
   1225  1.1  christos     return FALSE;
   1226  1.1  christos   noteptr = note_contents;
   1227  1.1  christos 
   1228  1.1  christos   /* Fill notes.  */
   1229  1.1  christos   for (i = 0; i < NBR_NOTES; i++)
   1230  1.1  christos     {
   1231  1.1  christos       Elf64_External_VMS_Note *enote = (Elf64_External_VMS_Note *) noteptr;
   1232  1.1  christos 
   1233  1.1  christos       bfd_putl64 (sizeof (NOTE_NAME) - 1, enote->namesz);
   1234  1.1  christos       bfd_putl64 (notes[i].descsz, enote->descsz);
   1235  1.1  christos       bfd_putl64 (notes[i].type, enote->type);
   1236  1.1  christos 
   1237  1.1  christos       noteptr = (unsigned char *)enote->name;
   1238  1.1  christos       memcpy (noteptr, NOTE_NAME, sizeof (NOTE_NAME) - 1);
   1239  1.1  christos       noteptr += (sizeof (NOTE_NAME) - 1 + 7) & ~7;
   1240  1.1  christos       memcpy (noteptr, notes[i].descdata, notes[i].descsz);
   1241  1.1  christos       noteptr += (notes[i].descsz + 7) & ~7;
   1242  1.1  christos     }
   1243  1.1  christos 
   1244  1.1  christos   ia64_info->note_sec->contents = note_contents;
   1245  1.1  christos   ia64_info->note_sec->size = note_size;
   1246  1.1  christos 
   1247  1.1  christos   free (module_name);
   1248  1.1  christos 
   1249  1.1  christos   return TRUE;
   1250  1.1  christos }
   1251  1.1  christos 
   1252  1.1  christos static bfd_boolean
   1253  1.1  christos elf64_ia64_create_dynamic_sections (bfd *abfd,
   1254  1.1  christos 				    struct bfd_link_info *info)
   1255  1.1  christos {
   1256  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   1257  1.1  christos   asection *s;
   1258  1.1  christos   flagword flags;
   1259  1.1  christos   const struct elf_backend_data *bed;
   1260  1.1  christos 
   1261  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   1262  1.1  christos   if (ia64_info == NULL)
   1263  1.1  christos     return FALSE;
   1264  1.1  christos 
   1265  1.1  christos   if (elf_hash_table (info)->dynamic_sections_created)
   1266  1.1  christos     return TRUE;
   1267  1.1  christos 
   1268  1.1  christos   abfd = elf_hash_table (info)->dynobj;
   1269  1.1  christos   bed = get_elf_backend_data (abfd);
   1270  1.1  christos 
   1271  1.1  christos   flags = bed->dynamic_sec_flags;
   1272  1.1  christos 
   1273  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".dynamic",
   1274  1.1  christos 					  flags | SEC_READONLY);
   1275  1.1  christos   if (s == NULL
   1276  1.1  christos       || ! bfd_set_section_alignment (abfd, s, bed->s->log_file_align))
   1277  1.1  christos     return FALSE;
   1278  1.1  christos 
   1279  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".plt", flags | SEC_READONLY);
   1280  1.1  christos   if (s == NULL
   1281  1.1  christos       || ! bfd_set_section_alignment (abfd, s, bed->plt_alignment))
   1282  1.1  christos     return FALSE;
   1283  1.1  christos   ia64_info->root.splt = s;
   1284  1.1  christos 
   1285  1.1  christos   if (!get_got (abfd, ia64_info))
   1286  1.1  christos     return FALSE;
   1287  1.1  christos 
   1288  1.1  christos   if (!get_pltoff (abfd, ia64_info))
   1289  1.1  christos     return FALSE;
   1290  1.1  christos 
   1291  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".vmsdynstr",
   1292  1.1  christos 					  (SEC_ALLOC
   1293  1.1  christos 					   | SEC_HAS_CONTENTS
   1294  1.1  christos 					   | SEC_IN_MEMORY
   1295  1.1  christos 					   | SEC_LINKER_CREATED));
   1296  1.1  christos   if (s == NULL
   1297  1.1  christos       || !bfd_set_section_alignment (abfd, s, 0))
   1298  1.1  christos     return FALSE;
   1299  1.1  christos 
   1300  1.1  christos   /* Create a fixup section.  */
   1301  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".fixups",
   1302  1.1  christos 					  (SEC_ALLOC
   1303  1.1  christos 					   | SEC_HAS_CONTENTS
   1304  1.1  christos 					   | SEC_IN_MEMORY
   1305  1.1  christos 					   | SEC_LINKER_CREATED));
   1306  1.1  christos   if (s == NULL
   1307  1.1  christos       || !bfd_set_section_alignment (abfd, s, 3))
   1308  1.1  christos     return FALSE;
   1309  1.1  christos   ia64_info->fixups_sec = s;
   1310  1.1  christos 
   1311  1.1  christos   /* Create the transfer fixup section.  */
   1312  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".transfer",
   1313  1.1  christos 					  (SEC_ALLOC
   1314  1.1  christos 					   | SEC_HAS_CONTENTS
   1315  1.1  christos 					   | SEC_IN_MEMORY
   1316  1.1  christos 					   | SEC_LINKER_CREATED));
   1317  1.1  christos   if (s == NULL
   1318  1.1  christos       || !bfd_set_section_alignment (abfd, s, 3))
   1319  1.1  christos     return FALSE;
   1320  1.1  christos   s->size = sizeof (struct elf64_vms_transfer);
   1321  1.1  christos   ia64_info->transfer_sec = s;
   1322  1.1  christos 
   1323  1.1  christos   /* Create note section.  */
   1324  1.1  christos   s = bfd_make_section_anyway_with_flags (abfd, ".vms.note",
   1325  1.1  christos                                           (SEC_LINKER_CREATED
   1326  1.1  christos                                            | SEC_HAS_CONTENTS
   1327  1.1  christos                                            | SEC_IN_MEMORY
   1328  1.1  christos                                            | SEC_READONLY));
   1329  1.1  christos   if (s == NULL
   1330  1.1  christos       || !bfd_set_section_alignment (abfd, s, 3))
   1331  1.1  christos     return FALSE;
   1332  1.1  christos   ia64_info->note_sec = s;
   1333  1.1  christos 
   1334  1.1  christos   elf_hash_table (info)->dynamic_sections_created = TRUE;
   1335  1.1  christos   return TRUE;
   1336  1.1  christos }
   1337  1.1  christos 
   1338  1.1  christos /* Find and/or create a hash entry for local symbol.  */
   1339  1.1  christos static struct elf64_ia64_local_hash_entry *
   1340  1.1  christos get_local_sym_hash (struct elf64_ia64_link_hash_table *ia64_info,
   1341  1.1  christos 		    bfd *abfd, const Elf_Internal_Rela *rel,
   1342  1.1  christos 		    bfd_boolean create)
   1343  1.1  christos {
   1344  1.1  christos   struct elf64_ia64_local_hash_entry e, *ret;
   1345  1.1  christos   asection *sec = abfd->sections;
   1346  1.1  christos   hashval_t h = ELF_LOCAL_SYMBOL_HASH (sec->id,
   1347  1.1  christos 				       ELF64_R_SYM (rel->r_info));
   1348  1.1  christos   void **slot;
   1349  1.1  christos 
   1350  1.1  christos   e.id = sec->id;
   1351  1.1  christos   e.r_sym = ELF64_R_SYM (rel->r_info);
   1352  1.1  christos   slot = htab_find_slot_with_hash (ia64_info->loc_hash_table, &e, h,
   1353  1.1  christos 				   create ? INSERT : NO_INSERT);
   1354  1.1  christos 
   1355  1.1  christos   if (!slot)
   1356  1.1  christos     return NULL;
   1357  1.1  christos 
   1358  1.1  christos   if (*slot)
   1359  1.1  christos     return (struct elf64_ia64_local_hash_entry *) *slot;
   1360  1.1  christos 
   1361  1.1  christos   ret = (struct elf64_ia64_local_hash_entry *)
   1362  1.1  christos 	objalloc_alloc ((struct objalloc *) ia64_info->loc_hash_memory,
   1363  1.1  christos 			sizeof (struct elf64_ia64_local_hash_entry));
   1364  1.1  christos   if (ret)
   1365  1.1  christos     {
   1366  1.1  christos       memset (ret, 0, sizeof (*ret));
   1367  1.1  christos       ret->id = sec->id;
   1368  1.1  christos       ret->r_sym = ELF64_R_SYM (rel->r_info);
   1369  1.1  christos       *slot = ret;
   1370  1.1  christos     }
   1371  1.1  christos   return ret;
   1372  1.1  christos }
   1373  1.1  christos 
   1374  1.1  christos /* Used to sort elf64_ia64_dyn_sym_info array.  */
   1375  1.1  christos 
   1376  1.1  christos static int
   1377  1.1  christos addend_compare (const void *xp, const void *yp)
   1378  1.1  christos {
   1379  1.1  christos   const struct elf64_ia64_dyn_sym_info *x
   1380  1.1  christos     = (const struct elf64_ia64_dyn_sym_info *) xp;
   1381  1.1  christos   const struct elf64_ia64_dyn_sym_info *y
   1382  1.1  christos     = (const struct elf64_ia64_dyn_sym_info *) yp;
   1383  1.1  christos 
   1384  1.1  christos   return x->addend < y->addend ? -1 : x->addend > y->addend ? 1 : 0;
   1385  1.1  christos }
   1386  1.1  christos 
   1387  1.1  christos /* Sort elf64_ia64_dyn_sym_info array and remove duplicates.  */
   1388  1.1  christos 
   1389  1.1  christos static unsigned int
   1390  1.1  christos sort_dyn_sym_info (struct elf64_ia64_dyn_sym_info *info,
   1391  1.1  christos 		   unsigned int count)
   1392  1.1  christos {
   1393  1.1  christos   bfd_vma curr, prev, got_offset;
   1394  1.1  christos   unsigned int i, kept, dupes, diff, dest, src, len;
   1395  1.1  christos 
   1396  1.1  christos   qsort (info, count, sizeof (*info), addend_compare);
   1397  1.1  christos 
   1398  1.1  christos   /* Find the first duplicate.  */
   1399  1.1  christos   prev = info [0].addend;
   1400  1.1  christos   got_offset = info [0].got_offset;
   1401  1.1  christos   for (i = 1; i < count; i++)
   1402  1.1  christos     {
   1403  1.1  christos       curr = info [i].addend;
   1404  1.1  christos       if (curr == prev)
   1405  1.1  christos 	{
   1406  1.1  christos 	  /* For duplicates, make sure that GOT_OFFSET is valid.  */
   1407  1.1  christos 	  if (got_offset == (bfd_vma) -1)
   1408  1.1  christos 	    got_offset = info [i].got_offset;
   1409  1.1  christos 	  break;
   1410  1.1  christos 	}
   1411  1.1  christos       got_offset = info [i].got_offset;
   1412  1.1  christos       prev = curr;
   1413  1.1  christos     }
   1414  1.1  christos 
   1415  1.1  christos   /* We may move a block of elements to here.  */
   1416  1.1  christos   dest = i++;
   1417  1.1  christos 
   1418  1.1  christos   /* Remove duplicates.  */
   1419  1.1  christos   if (i < count)
   1420  1.1  christos     {
   1421  1.1  christos       while (i < count)
   1422  1.1  christos 	{
   1423  1.1  christos 	  /* For duplicates, make sure that the kept one has a valid
   1424  1.1  christos 	     got_offset.  */
   1425  1.1  christos 	  kept = dest - 1;
   1426  1.1  christos 	  if (got_offset != (bfd_vma) -1)
   1427  1.1  christos 	    info [kept].got_offset = got_offset;
   1428  1.1  christos 
   1429  1.1  christos 	  curr = info [i].addend;
   1430  1.1  christos 	  got_offset = info [i].got_offset;
   1431  1.1  christos 
   1432  1.1  christos 	  /* Move a block of elements whose first one is different from
   1433  1.1  christos 	     the previous.  */
   1434  1.1  christos 	  if (curr == prev)
   1435  1.1  christos 	    {
   1436  1.1  christos 	      for (src = i + 1; src < count; src++)
   1437  1.1  christos 		{
   1438  1.1  christos 		  if (info [src].addend != curr)
   1439  1.1  christos 		    break;
   1440  1.1  christos 		  /* For duplicates, make sure that GOT_OFFSET is
   1441  1.1  christos 		     valid.  */
   1442  1.1  christos 		  if (got_offset == (bfd_vma) -1)
   1443  1.1  christos 		    got_offset = info [src].got_offset;
   1444  1.1  christos 		}
   1445  1.1  christos 
   1446  1.1  christos 	      /* Make sure that the kept one has a valid got_offset.  */
   1447  1.1  christos 	      if (got_offset != (bfd_vma) -1)
   1448  1.1  christos 		info [kept].got_offset = got_offset;
   1449  1.1  christos 	    }
   1450  1.1  christos 	  else
   1451  1.1  christos 	    src = i;
   1452  1.1  christos 
   1453  1.1  christos 	  if (src >= count)
   1454  1.1  christos 	    break;
   1455  1.1  christos 
   1456  1.1  christos 	  /* Find the next duplicate.  SRC will be kept.  */
   1457  1.1  christos 	  prev = info [src].addend;
   1458  1.1  christos 	  got_offset = info [src].got_offset;
   1459  1.1  christos 	  for (dupes = src + 1; dupes < count; dupes ++)
   1460  1.1  christos 	    {
   1461  1.1  christos 	      curr = info [dupes].addend;
   1462  1.1  christos 	      if (curr == prev)
   1463  1.1  christos 		{
   1464  1.1  christos 		  /* Make sure that got_offset is valid.  */
   1465  1.1  christos 		  if (got_offset == (bfd_vma) -1)
   1466  1.1  christos 		    got_offset = info [dupes].got_offset;
   1467  1.1  christos 
   1468  1.1  christos 		  /* For duplicates, make sure that the kept one has
   1469  1.1  christos 		     a valid got_offset.  */
   1470  1.1  christos 		  if (got_offset != (bfd_vma) -1)
   1471  1.1  christos 		    info [dupes - 1].got_offset = got_offset;
   1472  1.1  christos 		  break;
   1473  1.1  christos 		}
   1474  1.1  christos 	      got_offset = info [dupes].got_offset;
   1475  1.1  christos 	      prev = curr;
   1476  1.1  christos 	    }
   1477  1.1  christos 
   1478  1.1  christos 	  /* How much to move.  */
   1479  1.1  christos 	  len = dupes - src;
   1480  1.1  christos 	  i = dupes + 1;
   1481  1.1  christos 
   1482  1.1  christos 	  if (len == 1 && dupes < count)
   1483  1.1  christos 	    {
   1484  1.1  christos 	      /* If we only move 1 element, we combine it with the next
   1485  1.1  christos 		 one.  There must be at least a duplicate.  Find the
   1486  1.1  christos 		 next different one.  */
   1487  1.1  christos 	      for (diff = dupes + 1, src++; diff < count; diff++, src++)
   1488  1.1  christos 		{
   1489  1.1  christos 		  if (info [diff].addend != curr)
   1490  1.1  christos 		    break;
   1491  1.1  christos 		  /* Make sure that got_offset is valid.  */
   1492  1.1  christos 		  if (got_offset == (bfd_vma) -1)
   1493  1.1  christos 		    got_offset = info [diff].got_offset;
   1494  1.1  christos 		}
   1495  1.1  christos 
   1496  1.1  christos 	      /* Makre sure that the last duplicated one has an valid
   1497  1.1  christos 		 offset.  */
   1498  1.1  christos 	      BFD_ASSERT (curr == prev);
   1499  1.1  christos 	      if (got_offset != (bfd_vma) -1)
   1500  1.1  christos 		info [diff - 1].got_offset = got_offset;
   1501  1.1  christos 
   1502  1.1  christos 	      if (diff < count)
   1503  1.1  christos 		{
   1504  1.1  christos 		  /* Find the next duplicate.  Track the current valid
   1505  1.1  christos 		     offset.  */
   1506  1.1  christos 		  prev = info [diff].addend;
   1507  1.1  christos 		  got_offset = info [diff].got_offset;
   1508  1.1  christos 		  for (dupes = diff + 1; dupes < count; dupes ++)
   1509  1.1  christos 		    {
   1510  1.1  christos 		      curr = info [dupes].addend;
   1511  1.1  christos 		      if (curr == prev)
   1512  1.1  christos 			{
   1513  1.1  christos 			  /* For duplicates, make sure that GOT_OFFSET
   1514  1.1  christos 			     is valid.  */
   1515  1.1  christos 			  if (got_offset == (bfd_vma) -1)
   1516  1.1  christos 			    got_offset = info [dupes].got_offset;
   1517  1.1  christos 			  break;
   1518  1.1  christos 			}
   1519  1.1  christos 		      got_offset = info [dupes].got_offset;
   1520  1.1  christos 		      prev = curr;
   1521  1.1  christos 		      diff++;
   1522  1.1  christos 		    }
   1523  1.1  christos 
   1524  1.1  christos 		  len = diff - src + 1;
   1525  1.1  christos 		  i = diff + 1;
   1526  1.1  christos 		}
   1527  1.1  christos 	    }
   1528  1.1  christos 
   1529  1.1  christos 	  memmove (&info [dest], &info [src], len * sizeof (*info));
   1530  1.1  christos 
   1531  1.1  christos 	  dest += len;
   1532  1.1  christos 	}
   1533  1.1  christos 
   1534  1.1  christos       count = dest;
   1535  1.1  christos     }
   1536  1.1  christos   else
   1537  1.1  christos     {
   1538  1.1  christos       /* When we get here, either there is no duplicate at all or
   1539  1.1  christos 	 the only duplicate is the last element.  */
   1540  1.1  christos       if (dest < count)
   1541  1.1  christos 	{
   1542  1.1  christos 	  /* If the last element is a duplicate, make sure that the
   1543  1.1  christos 	     kept one has a valid got_offset.  We also update count.  */
   1544  1.1  christos 	  if (got_offset != (bfd_vma) -1)
   1545  1.1  christos 	    info [dest - 1].got_offset = got_offset;
   1546  1.1  christos 	  count = dest;
   1547  1.1  christos 	}
   1548  1.1  christos     }
   1549  1.1  christos 
   1550  1.1  christos   return count;
   1551  1.1  christos }
   1552  1.1  christos 
   1553  1.1  christos /* Find and/or create a descriptor for dynamic symbol info.  This will
   1554  1.1  christos    vary based on global or local symbol, and the addend to the reloc.
   1555  1.1  christos 
   1556  1.1  christos    We don't sort when inserting.  Also, we sort and eliminate
   1557  1.1  christos    duplicates if there is an unsorted section.  Typically, this will
   1558  1.1  christos    only happen once, because we do all insertions before lookups.  We
   1559  1.1  christos    then use bsearch to do a lookup.  This also allows lookups to be
   1560  1.1  christos    fast.  So we have fast insertion (O(log N) due to duplicate check),
   1561  1.1  christos    fast lookup (O(log N)) and one sort (O(N log N) expected time).
   1562  1.1  christos    Previously, all lookups were O(N) because of the use of the linked
   1563  1.1  christos    list and also all insertions were O(N) because of the check for
   1564  1.1  christos    duplicates.  There are some complications here because the array
   1565  1.1  christos    size grows occasionally, which may add an O(N) factor, but this
   1566  1.1  christos    should be rare.  Also,  we free the excess array allocation, which
   1567  1.1  christos    requires a copy which is O(N), but this only happens once.  */
   1568  1.1  christos 
   1569  1.1  christos static struct elf64_ia64_dyn_sym_info *
   1570  1.1  christos get_dyn_sym_info (struct elf64_ia64_link_hash_table *ia64_info,
   1571  1.1  christos 		  struct elf_link_hash_entry *h, bfd *abfd,
   1572  1.1  christos 		  const Elf_Internal_Rela *rel, bfd_boolean create)
   1573  1.1  christos {
   1574  1.1  christos   struct elf64_ia64_dyn_sym_info **info_p, *info, *dyn_i, key;
   1575  1.1  christos   unsigned int *count_p, *sorted_count_p, *size_p;
   1576  1.1  christos   unsigned int count, sorted_count, size;
   1577  1.1  christos   bfd_vma addend = rel ? rel->r_addend : 0;
   1578  1.1  christos   bfd_size_type amt;
   1579  1.1  christos 
   1580  1.1  christos   if (h)
   1581  1.1  christos     {
   1582  1.1  christos       struct elf64_ia64_link_hash_entry *global_h;
   1583  1.1  christos 
   1584  1.1  christos       global_h = (struct elf64_ia64_link_hash_entry *) h;
   1585  1.1  christos       info_p = &global_h->info;
   1586  1.1  christos       count_p = &global_h->count;
   1587  1.1  christos       sorted_count_p = &global_h->sorted_count;
   1588  1.1  christos       size_p = &global_h->size;
   1589  1.1  christos     }
   1590  1.1  christos   else
   1591  1.1  christos     {
   1592  1.1  christos       struct elf64_ia64_local_hash_entry *loc_h;
   1593  1.1  christos 
   1594  1.1  christos       loc_h = get_local_sym_hash (ia64_info, abfd, rel, create);
   1595  1.1  christos       if (!loc_h)
   1596  1.1  christos 	{
   1597  1.1  christos 	  BFD_ASSERT (!create);
   1598  1.1  christos 	  return NULL;
   1599  1.1  christos 	}
   1600  1.1  christos 
   1601  1.1  christos       info_p = &loc_h->info;
   1602  1.1  christos       count_p = &loc_h->count;
   1603  1.1  christos       sorted_count_p = &loc_h->sorted_count;
   1604  1.1  christos       size_p = &loc_h->size;
   1605  1.1  christos     }
   1606  1.1  christos 
   1607  1.1  christos   count = *count_p;
   1608  1.1  christos   sorted_count = *sorted_count_p;
   1609  1.1  christos   size = *size_p;
   1610  1.1  christos   info = *info_p;
   1611  1.1  christos   if (create)
   1612  1.1  christos     {
   1613  1.1  christos       /* When we create the array, we don't check for duplicates,
   1614  1.1  christos          except in the previously sorted section if one exists, and
   1615  1.1  christos 	 against the last inserted entry.  This allows insertions to
   1616  1.1  christos 	 be fast.  */
   1617  1.1  christos       if (info)
   1618  1.1  christos 	{
   1619  1.1  christos 	  if (sorted_count)
   1620  1.1  christos 	    {
   1621  1.1  christos 	      /* Try bsearch first on the sorted section.  */
   1622  1.1  christos 	      key.addend = addend;
   1623  1.1  christos 	      dyn_i = bsearch (&key, info, sorted_count,
   1624  1.1  christos 			       sizeof (*info), addend_compare);
   1625  1.1  christos 
   1626  1.1  christos 	      if (dyn_i)
   1627  1.1  christos 		{
   1628  1.1  christos 		  return dyn_i;
   1629  1.1  christos 		}
   1630  1.1  christos 	    }
   1631  1.1  christos 
   1632  1.1  christos 	  /* Do a quick check for the last inserted entry.  */
   1633  1.1  christos 	  dyn_i = info + count - 1;
   1634  1.1  christos 	  if (dyn_i->addend == addend)
   1635  1.1  christos 	    {
   1636  1.1  christos 	      return dyn_i;
   1637  1.1  christos 	    }
   1638  1.1  christos 	}
   1639  1.1  christos 
   1640  1.1  christos       if (size == 0)
   1641  1.1  christos 	{
   1642  1.1  christos 	  /* It is the very first element. We create the array of size
   1643  1.1  christos 	     1.  */
   1644  1.1  christos 	  size = 1;
   1645  1.1  christos 	  amt = size * sizeof (*info);
   1646  1.1  christos 	  info = bfd_malloc (amt);
   1647  1.1  christos 	}
   1648  1.1  christos       else if (size <= count)
   1649  1.1  christos 	{
   1650  1.1  christos 	  /* We double the array size every time when we reach the
   1651  1.1  christos 	     size limit.  */
   1652  1.1  christos 	  size += size;
   1653  1.1  christos 	  amt = size * sizeof (*info);
   1654  1.1  christos 	  info = bfd_realloc (info, amt);
   1655  1.1  christos 	}
   1656  1.1  christos       else
   1657  1.1  christos 	goto has_space;
   1658  1.1  christos 
   1659  1.1  christos       if (info == NULL)
   1660  1.1  christos 	return NULL;
   1661  1.1  christos       *size_p = size;
   1662  1.1  christos       *info_p = info;
   1663  1.1  christos 
   1664  1.1  christos has_space:
   1665  1.1  christos       /* Append the new one to the array.  */
   1666  1.1  christos       dyn_i = info + count;
   1667  1.1  christos       memset (dyn_i, 0, sizeof (*dyn_i));
   1668  1.1  christos       dyn_i->got_offset = (bfd_vma) -1;
   1669  1.1  christos       dyn_i->addend = addend;
   1670  1.1  christos 
   1671  1.1  christos       /* We increment count only since the new ones are unsorted and
   1672  1.1  christos 	 may have duplicate.  */
   1673  1.1  christos       (*count_p)++;
   1674  1.1  christos     }
   1675  1.1  christos   else
   1676  1.1  christos     {
   1677  1.1  christos       /* It is a lookup without insertion.  Sort array if part of the
   1678  1.1  christos 	 array isn't sorted.  */
   1679  1.1  christos       if (count != sorted_count)
   1680  1.1  christos 	{
   1681  1.1  christos 	  count = sort_dyn_sym_info (info, count);
   1682  1.1  christos 	  *count_p = count;
   1683  1.1  christos 	  *sorted_count_p = count;
   1684  1.1  christos 	}
   1685  1.1  christos 
   1686  1.1  christos       /* Free unused memory.  */
   1687  1.1  christos       if (size != count)
   1688  1.1  christos 	{
   1689  1.1  christos 	  amt = count * sizeof (*info);
   1690  1.1  christos 	  info = bfd_malloc (amt);
   1691  1.1  christos 	  if (info != NULL)
   1692  1.1  christos 	    {
   1693  1.1  christos 	      memcpy (info, *info_p, amt);
   1694  1.1  christos 	      free (*info_p);
   1695  1.1  christos 	      *size_p = count;
   1696  1.1  christos 	      *info_p = info;
   1697  1.1  christos 	    }
   1698  1.1  christos 	}
   1699  1.1  christos 
   1700  1.1  christos       key.addend = addend;
   1701  1.1  christos       dyn_i = bsearch (&key, info, count,
   1702  1.1  christos 		       sizeof (*info), addend_compare);
   1703  1.1  christos     }
   1704  1.1  christos 
   1705  1.1  christos   return dyn_i;
   1706  1.1  christos }
   1707  1.1  christos 
   1708  1.1  christos static asection *
   1709  1.1  christos get_got (bfd *abfd, struct elf64_ia64_link_hash_table *ia64_info)
   1710  1.1  christos {
   1711  1.1  christos   asection *got;
   1712  1.1  christos   bfd *dynobj;
   1713  1.1  christos 
   1714  1.1  christos   got = ia64_info->root.sgot;
   1715  1.1  christos   if (!got)
   1716  1.1  christos     {
   1717  1.1  christos       flagword flags;
   1718  1.1  christos 
   1719  1.1  christos       dynobj = ia64_info->root.dynobj;
   1720  1.1  christos       if (!dynobj)
   1721  1.1  christos 	ia64_info->root.dynobj = dynobj = abfd;
   1722  1.1  christos 
   1723  1.1  christos       /* The .got section is always aligned at 8 bytes.  */
   1724  1.1  christos       flags = get_elf_backend_data (dynobj)->dynamic_sec_flags;
   1725  1.1  christos       got = bfd_make_section_anyway_with_flags (dynobj, ".got",
   1726  1.1  christos 						flags | SEC_SMALL_DATA);
   1727  1.1  christos       if (got == NULL
   1728  1.1  christos           || !bfd_set_section_alignment (dynobj, got, 3))
   1729  1.1  christos         return NULL;
   1730  1.1  christos       ia64_info->root.sgot = got;
   1731  1.1  christos     }
   1732  1.1  christos 
   1733  1.1  christos   return got;
   1734  1.1  christos }
   1735  1.1  christos 
   1736  1.1  christos /* Create function descriptor section (.opd).  This section is called .opd
   1737  1.1  christos    because it contains "official procedure descriptors".  The "official"
   1738  1.1  christos    refers to the fact that these descriptors are used when taking the address
   1739  1.1  christos    of a procedure, thus ensuring a unique address for each procedure.  */
   1740  1.1  christos 
   1741  1.1  christos static asection *
   1742  1.1  christos get_fptr (bfd *abfd, struct bfd_link_info *info,
   1743  1.1  christos 	  struct elf64_ia64_link_hash_table *ia64_info)
   1744  1.1  christos {
   1745  1.1  christos   asection *fptr;
   1746  1.1  christos   bfd *dynobj;
   1747  1.1  christos 
   1748  1.1  christos   fptr = ia64_info->fptr_sec;
   1749  1.1  christos   if (!fptr)
   1750  1.1  christos     {
   1751  1.1  christos       dynobj = ia64_info->root.dynobj;
   1752  1.1  christos       if (!dynobj)
   1753  1.1  christos 	ia64_info->root.dynobj = dynobj = abfd;
   1754  1.1  christos 
   1755  1.1  christos       fptr = bfd_make_section_anyway_with_flags (dynobj, ".opd",
   1756  1.1  christos 						 (SEC_ALLOC
   1757  1.1  christos 						  | SEC_LOAD
   1758  1.1  christos 						  | SEC_HAS_CONTENTS
   1759  1.1  christos 						  | SEC_IN_MEMORY
   1760  1.1  christos 						  | (info->pie ? 0
   1761  1.1  christos 						     : SEC_READONLY)
   1762  1.1  christos 						  | SEC_LINKER_CREATED));
   1763  1.1  christos       if (!fptr
   1764  1.1  christos 	  || !bfd_set_section_alignment (dynobj, fptr, 4))
   1765  1.1  christos 	{
   1766  1.1  christos 	  BFD_ASSERT (0);
   1767  1.1  christos 	  return NULL;
   1768  1.1  christos 	}
   1769  1.1  christos 
   1770  1.1  christos       ia64_info->fptr_sec = fptr;
   1771  1.1  christos 
   1772  1.1  christos       if (info->pie)
   1773  1.1  christos 	{
   1774  1.1  christos 	  asection *fptr_rel;
   1775  1.1  christos 	  fptr_rel = bfd_make_section_anyway_with_flags (dynobj, ".rela.opd",
   1776  1.1  christos 							 (SEC_ALLOC | SEC_LOAD
   1777  1.1  christos 							  | SEC_HAS_CONTENTS
   1778  1.1  christos 							  | SEC_IN_MEMORY
   1779  1.1  christos 							  | SEC_LINKER_CREATED
   1780  1.1  christos 							  | SEC_READONLY));
   1781  1.1  christos 	  if (fptr_rel == NULL
   1782  1.1  christos 	      || !bfd_set_section_alignment (dynobj, fptr_rel, 3))
   1783  1.1  christos 	    {
   1784  1.1  christos 	      BFD_ASSERT (0);
   1785  1.1  christos 	      return NULL;
   1786  1.1  christos 	    }
   1787  1.1  christos 
   1788  1.1  christos 	  ia64_info->rel_fptr_sec = fptr_rel;
   1789  1.1  christos 	}
   1790  1.1  christos     }
   1791  1.1  christos 
   1792  1.1  christos   return fptr;
   1793  1.1  christos }
   1794  1.1  christos 
   1795  1.1  christos static asection *
   1796  1.1  christos get_pltoff (bfd *abfd, struct elf64_ia64_link_hash_table *ia64_info)
   1797  1.1  christos {
   1798  1.1  christos   asection *pltoff;
   1799  1.1  christos   bfd *dynobj;
   1800  1.1  christos 
   1801  1.1  christos   pltoff = ia64_info->pltoff_sec;
   1802  1.1  christos   if (!pltoff)
   1803  1.1  christos     {
   1804  1.1  christos       dynobj = ia64_info->root.dynobj;
   1805  1.1  christos       if (!dynobj)
   1806  1.1  christos 	ia64_info->root.dynobj = dynobj = abfd;
   1807  1.1  christos 
   1808  1.1  christos       pltoff = bfd_make_section_anyway_with_flags (dynobj,
   1809  1.1  christos 						   ELF_STRING_ia64_pltoff,
   1810  1.1  christos 						   (SEC_ALLOC
   1811  1.1  christos 						    | SEC_LOAD
   1812  1.1  christos 						    | SEC_HAS_CONTENTS
   1813  1.1  christos 						    | SEC_IN_MEMORY
   1814  1.1  christos 						    | SEC_SMALL_DATA
   1815  1.1  christos 						    | SEC_LINKER_CREATED));
   1816  1.1  christos       if (!pltoff
   1817  1.1  christos 	  || !bfd_set_section_alignment (dynobj, pltoff, 4))
   1818  1.1  christos 	{
   1819  1.1  christos 	  BFD_ASSERT (0);
   1820  1.1  christos 	  return NULL;
   1821  1.1  christos 	}
   1822  1.1  christos 
   1823  1.1  christos       ia64_info->pltoff_sec = pltoff;
   1824  1.1  christos     }
   1825  1.1  christos 
   1826  1.1  christos   return pltoff;
   1827  1.1  christos }
   1828  1.1  christos 
   1829  1.1  christos static asection *
   1830  1.1  christos get_reloc_section (bfd *abfd,
   1831  1.1  christos 		   struct elf64_ia64_link_hash_table *ia64_info,
   1832  1.1  christos 		   asection *sec, bfd_boolean create)
   1833  1.1  christos {
   1834  1.1  christos   const char *srel_name;
   1835  1.1  christos   asection *srel;
   1836  1.1  christos   bfd *dynobj;
   1837  1.1  christos 
   1838  1.1  christos   srel_name = (bfd_elf_string_from_elf_section
   1839  1.1  christos 	       (abfd, elf_elfheader(abfd)->e_shstrndx,
   1840  1.1  christos 		_bfd_elf_single_rel_hdr (sec)->sh_name));
   1841  1.1  christos   if (srel_name == NULL)
   1842  1.1  christos     return NULL;
   1843  1.1  christos 
   1844  1.1  christos   BFD_ASSERT ((CONST_STRNEQ (srel_name, ".rela")
   1845  1.1  christos 	       && strcmp (bfd_get_section_name (abfd, sec),
   1846  1.1  christos 			  srel_name+5) == 0)
   1847  1.1  christos 	      || (CONST_STRNEQ (srel_name, ".rel")
   1848  1.1  christos 		  && strcmp (bfd_get_section_name (abfd, sec),
   1849  1.1  christos 			     srel_name+4) == 0));
   1850  1.1  christos 
   1851  1.1  christos   dynobj = ia64_info->root.dynobj;
   1852  1.1  christos   if (!dynobj)
   1853  1.1  christos     ia64_info->root.dynobj = dynobj = abfd;
   1854  1.1  christos 
   1855  1.1  christos   srel = bfd_get_linker_section (dynobj, srel_name);
   1856  1.1  christos   if (srel == NULL && create)
   1857  1.1  christos     {
   1858  1.1  christos       srel = bfd_make_section_anyway_with_flags (dynobj, srel_name,
   1859  1.1  christos 						 (SEC_ALLOC | SEC_LOAD
   1860  1.1  christos 						  | SEC_HAS_CONTENTS
   1861  1.1  christos 						  | SEC_IN_MEMORY
   1862  1.1  christos 						  | SEC_LINKER_CREATED
   1863  1.1  christos 						  | SEC_READONLY));
   1864  1.1  christos       if (srel == NULL
   1865  1.1  christos 	  || !bfd_set_section_alignment (dynobj, srel, 3))
   1866  1.1  christos 	return NULL;
   1867  1.1  christos     }
   1868  1.1  christos 
   1869  1.1  christos   return srel;
   1870  1.1  christos }
   1871  1.1  christos 
   1872  1.1  christos static bfd_boolean
   1873  1.1  christos count_dyn_reloc (bfd *abfd, struct elf64_ia64_dyn_sym_info *dyn_i,
   1874  1.1  christos 		 asection *srel, int type)
   1875  1.1  christos {
   1876  1.1  christos   struct elf64_ia64_dyn_reloc_entry *rent;
   1877  1.1  christos 
   1878  1.1  christos   for (rent = dyn_i->reloc_entries; rent; rent = rent->next)
   1879  1.1  christos     if (rent->srel == srel && rent->type == type)
   1880  1.1  christos       break;
   1881  1.1  christos 
   1882  1.1  christos   if (!rent)
   1883  1.1  christos     {
   1884  1.1  christos       rent = ((struct elf64_ia64_dyn_reloc_entry *)
   1885  1.1  christos 	      bfd_alloc (abfd, (bfd_size_type) sizeof (*rent)));
   1886  1.1  christos       if (!rent)
   1887  1.1  christos 	return FALSE;
   1888  1.1  christos 
   1889  1.1  christos       rent->next = dyn_i->reloc_entries;
   1890  1.1  christos       rent->srel = srel;
   1891  1.1  christos       rent->type = type;
   1892  1.1  christos       rent->count = 0;
   1893  1.1  christos       dyn_i->reloc_entries = rent;
   1894  1.1  christos     }
   1895  1.1  christos   rent->count++;
   1896  1.1  christos 
   1897  1.1  christos   return TRUE;
   1898  1.1  christos }
   1899  1.1  christos 
   1900  1.1  christos static bfd_boolean
   1901  1.1  christos elf64_ia64_check_relocs (bfd *abfd, struct bfd_link_info *info,
   1902  1.1  christos 			 asection *sec,
   1903  1.1  christos 			 const Elf_Internal_Rela *relocs)
   1904  1.1  christos {
   1905  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   1906  1.1  christos   const Elf_Internal_Rela *relend;
   1907  1.1  christos   Elf_Internal_Shdr *symtab_hdr;
   1908  1.1  christos   const Elf_Internal_Rela *rel;
   1909  1.1  christos   asection *got, *fptr, *srel, *pltoff;
   1910  1.1  christos   enum {
   1911  1.1  christos     NEED_GOT = 1,
   1912  1.1  christos     NEED_GOTX = 2,
   1913  1.1  christos     NEED_FPTR = 4,
   1914  1.1  christos     NEED_PLTOFF = 8,
   1915  1.1  christos     NEED_MIN_PLT = 16,
   1916  1.1  christos     NEED_FULL_PLT = 32,
   1917  1.1  christos     NEED_DYNREL = 64,
   1918  1.1  christos     NEED_LTOFF_FPTR = 128
   1919  1.1  christos   };
   1920  1.1  christos   int need_entry;
   1921  1.1  christos   struct elf_link_hash_entry *h;
   1922  1.1  christos   unsigned long r_symndx;
   1923  1.1  christos   bfd_boolean maybe_dynamic;
   1924  1.1  christos 
   1925  1.1  christos   if (info->relocatable)
   1926  1.1  christos     return TRUE;
   1927  1.1  christos 
   1928  1.1  christos   symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
   1929  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   1930  1.1  christos   if (ia64_info == NULL)
   1931  1.1  christos     return FALSE;
   1932  1.1  christos 
   1933  1.1  christos   got = fptr = srel = pltoff = NULL;
   1934  1.1  christos 
   1935  1.1  christos   relend = relocs + sec->reloc_count;
   1936  1.1  christos 
   1937  1.1  christos   /* We scan relocations first to create dynamic relocation arrays.  We
   1938  1.1  christos      modified get_dyn_sym_info to allow fast insertion and support fast
   1939  1.1  christos      lookup in the next loop.  */
   1940  1.1  christos   for (rel = relocs; rel < relend; ++rel)
   1941  1.1  christos     {
   1942  1.1  christos       r_symndx = ELF64_R_SYM (rel->r_info);
   1943  1.1  christos       if (r_symndx >= symtab_hdr->sh_info)
   1944  1.1  christos 	{
   1945  1.1  christos 	  long indx = r_symndx - symtab_hdr->sh_info;
   1946  1.1  christos 	  h = elf_sym_hashes (abfd)[indx];
   1947  1.1  christos 	  while (h->root.type == bfd_link_hash_indirect
   1948  1.1  christos 		 || h->root.type == bfd_link_hash_warning)
   1949  1.1  christos 	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
   1950  1.1  christos 	}
   1951  1.1  christos       else
   1952  1.1  christos 	h = NULL;
   1953  1.1  christos 
   1954  1.1  christos       /* We can only get preliminary data on whether a symbol is
   1955  1.1  christos 	 locally or externally defined, as not all of the input files
   1956  1.1  christos 	 have yet been processed.  Do something with what we know, as
   1957  1.1  christos 	 this may help reduce memory usage and processing time later.  */
   1958  1.1  christos       maybe_dynamic = (h && ((!info->executable
   1959  1.1  christos 			      && (!SYMBOLIC_BIND (info, h)
   1960  1.1  christos 				  || info->unresolved_syms_in_shared_libs == RM_IGNORE))
   1961  1.1  christos 			     || !h->def_regular
   1962  1.1  christos 			     || h->root.type == bfd_link_hash_defweak));
   1963  1.1  christos 
   1964  1.1  christos       need_entry = 0;
   1965  1.1  christos       switch (ELF64_R_TYPE (rel->r_info))
   1966  1.1  christos 	{
   1967  1.1  christos 	case R_IA64_TPREL64MSB:
   1968  1.1  christos 	case R_IA64_TPREL64LSB:
   1969  1.1  christos 	case R_IA64_LTOFF_TPREL22:
   1970  1.1  christos 	case R_IA64_DTPREL32MSB:
   1971  1.1  christos 	case R_IA64_DTPREL32LSB:
   1972  1.1  christos 	case R_IA64_DTPREL64MSB:
   1973  1.1  christos 	case R_IA64_DTPREL64LSB:
   1974  1.1  christos 	case R_IA64_LTOFF_DTPREL22:
   1975  1.1  christos 	case R_IA64_DTPMOD64MSB:
   1976  1.1  christos 	case R_IA64_DTPMOD64LSB:
   1977  1.1  christos 	case R_IA64_LTOFF_DTPMOD22:
   1978  1.1  christos           abort ();
   1979  1.1  christos 	  break;
   1980  1.1  christos 
   1981  1.1  christos 	case R_IA64_IPLTMSB:
   1982  1.1  christos 	case R_IA64_IPLTLSB:
   1983  1.1  christos           break;
   1984  1.1  christos 
   1985  1.1  christos 	case R_IA64_LTOFF_FPTR22:
   1986  1.1  christos 	case R_IA64_LTOFF_FPTR64I:
   1987  1.1  christos 	case R_IA64_LTOFF_FPTR32MSB:
   1988  1.1  christos 	case R_IA64_LTOFF_FPTR32LSB:
   1989  1.1  christos 	case R_IA64_LTOFF_FPTR64MSB:
   1990  1.1  christos 	case R_IA64_LTOFF_FPTR64LSB:
   1991  1.1  christos 	  need_entry = NEED_FPTR | NEED_GOT | NEED_LTOFF_FPTR;
   1992  1.1  christos 	  break;
   1993  1.1  christos 
   1994  1.1  christos 	case R_IA64_FPTR64I:
   1995  1.1  christos 	case R_IA64_FPTR32MSB:
   1996  1.1  christos 	case R_IA64_FPTR32LSB:
   1997  1.1  christos 	case R_IA64_FPTR64MSB:
   1998  1.1  christos 	case R_IA64_FPTR64LSB:
   1999  1.1  christos 	  if (info->shared || h)
   2000  1.1  christos 	    need_entry = NEED_FPTR | NEED_DYNREL;
   2001  1.1  christos 	  else
   2002  1.1  christos 	    need_entry = NEED_FPTR;
   2003  1.1  christos 	  break;
   2004  1.1  christos 
   2005  1.1  christos 	case R_IA64_LTOFF22:
   2006  1.1  christos 	case R_IA64_LTOFF64I:
   2007  1.1  christos 	  need_entry = NEED_GOT;
   2008  1.1  christos 	  break;
   2009  1.1  christos 
   2010  1.1  christos 	case R_IA64_LTOFF22X:
   2011  1.1  christos 	  need_entry = NEED_GOTX;
   2012  1.1  christos 	  break;
   2013  1.1  christos 
   2014  1.1  christos 	case R_IA64_PLTOFF22:
   2015  1.1  christos 	case R_IA64_PLTOFF64I:
   2016  1.1  christos 	case R_IA64_PLTOFF64MSB:
   2017  1.1  christos 	case R_IA64_PLTOFF64LSB:
   2018  1.1  christos 	  need_entry = NEED_PLTOFF;
   2019  1.1  christos 	  if (h)
   2020  1.1  christos 	    {
   2021  1.1  christos 	      if (maybe_dynamic)
   2022  1.1  christos 		need_entry |= NEED_MIN_PLT;
   2023  1.1  christos 	    }
   2024  1.1  christos 	  else
   2025  1.1  christos 	    {
   2026  1.1  christos 	      (*info->callbacks->warning)
   2027  1.1  christos 		(info, _("@pltoff reloc against local symbol"), 0,
   2028  1.1  christos 		 abfd, 0, (bfd_vma) 0);
   2029  1.1  christos 	    }
   2030  1.1  christos 	  break;
   2031  1.1  christos 
   2032  1.1  christos 	case R_IA64_PCREL21B:
   2033  1.1  christos         case R_IA64_PCREL60B:
   2034  1.1  christos 	  /* Depending on where this symbol is defined, we may or may not
   2035  1.1  christos 	     need a full plt entry.  Only skip if we know we'll not need
   2036  1.1  christos 	     the entry -- static or symbolic, and the symbol definition
   2037  1.1  christos 	     has already been seen.  */
   2038  1.1  christos 	  if (maybe_dynamic && rel->r_addend == 0)
   2039  1.1  christos 	    need_entry = NEED_FULL_PLT;
   2040  1.1  christos 	  break;
   2041  1.1  christos 
   2042  1.1  christos 	case R_IA64_IMM14:
   2043  1.1  christos 	case R_IA64_IMM22:
   2044  1.1  christos 	case R_IA64_IMM64:
   2045  1.1  christos 	case R_IA64_DIR32MSB:
   2046  1.1  christos 	case R_IA64_DIR32LSB:
   2047  1.1  christos 	case R_IA64_DIR64MSB:
   2048  1.1  christos 	case R_IA64_DIR64LSB:
   2049  1.1  christos 	  /* Shared objects will always need at least a REL relocation.  */
   2050  1.1  christos 	  if (info->shared || maybe_dynamic)
   2051  1.1  christos 	    need_entry = NEED_DYNREL;
   2052  1.1  christos 	  break;
   2053  1.1  christos 
   2054  1.1  christos 	case R_IA64_PCREL22:
   2055  1.1  christos 	case R_IA64_PCREL64I:
   2056  1.1  christos 	case R_IA64_PCREL32MSB:
   2057  1.1  christos 	case R_IA64_PCREL32LSB:
   2058  1.1  christos 	case R_IA64_PCREL64MSB:
   2059  1.1  christos 	case R_IA64_PCREL64LSB:
   2060  1.1  christos 	  if (maybe_dynamic)
   2061  1.1  christos 	    need_entry = NEED_DYNREL;
   2062  1.1  christos 	  break;
   2063  1.1  christos 	}
   2064  1.1  christos 
   2065  1.1  christos       if (!need_entry)
   2066  1.1  christos 	continue;
   2067  1.1  christos 
   2068  1.1  christos       if ((need_entry & NEED_FPTR) != 0
   2069  1.1  christos 	  && rel->r_addend)
   2070  1.1  christos 	{
   2071  1.1  christos 	  (*info->callbacks->warning)
   2072  1.1  christos 	    (info, _("non-zero addend in @fptr reloc"), 0,
   2073  1.1  christos 	     abfd, 0, (bfd_vma) 0);
   2074  1.1  christos 	}
   2075  1.1  christos 
   2076  1.1  christos       if (get_dyn_sym_info (ia64_info, h, abfd, rel, TRUE) == NULL)
   2077  1.1  christos 	return FALSE;
   2078  1.1  christos     }
   2079  1.1  christos 
   2080  1.1  christos   /* Now, we only do lookup without insertion, which is very fast
   2081  1.1  christos      with the modified get_dyn_sym_info.  */
   2082  1.1  christos   for (rel = relocs; rel < relend; ++rel)
   2083  1.1  christos     {
   2084  1.1  christos       struct elf64_ia64_dyn_sym_info *dyn_i;
   2085  1.1  christos       int dynrel_type = R_IA64_NONE;
   2086  1.1  christos 
   2087  1.1  christos       r_symndx = ELF64_R_SYM (rel->r_info);
   2088  1.1  christos       if (r_symndx >= symtab_hdr->sh_info)
   2089  1.1  christos 	{
   2090  1.1  christos 	  /* We're dealing with a global symbol -- find its hash entry
   2091  1.1  christos 	     and mark it as being referenced.  */
   2092  1.1  christos 	  long indx = r_symndx - symtab_hdr->sh_info;
   2093  1.1  christos 	  h = elf_sym_hashes (abfd)[indx];
   2094  1.1  christos 	  while (h->root.type == bfd_link_hash_indirect
   2095  1.1  christos 		 || h->root.type == bfd_link_hash_warning)
   2096  1.1  christos 	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
   2097  1.1  christos 
   2098  1.1  christos 	  h->ref_regular = 1;
   2099  1.1  christos 	}
   2100  1.1  christos       else
   2101  1.1  christos 	h = NULL;
   2102  1.1  christos 
   2103  1.1  christos       /* We can only get preliminary data on whether a symbol is
   2104  1.1  christos 	 locally or externally defined, as not all of the input files
   2105  1.1  christos 	 have yet been processed.  Do something with what we know, as
   2106  1.1  christos 	 this may help reduce memory usage and processing time later.  */
   2107  1.1  christos       maybe_dynamic = (h && ((!info->executable
   2108  1.1  christos 			      && (!SYMBOLIC_BIND (info, h)
   2109  1.1  christos 				  || info->unresolved_syms_in_shared_libs == RM_IGNORE))
   2110  1.1  christos 			     || !h->def_regular
   2111  1.1  christos 			     || h->root.type == bfd_link_hash_defweak));
   2112  1.1  christos 
   2113  1.1  christos       need_entry = 0;
   2114  1.1  christos       switch (ELF64_R_TYPE (rel->r_info))
   2115  1.1  christos 	{
   2116  1.1  christos 	case R_IA64_TPREL64MSB:
   2117  1.1  christos 	case R_IA64_TPREL64LSB:
   2118  1.1  christos 	case R_IA64_LTOFF_TPREL22:
   2119  1.1  christos 	case R_IA64_DTPREL32MSB:
   2120  1.1  christos 	case R_IA64_DTPREL32LSB:
   2121  1.1  christos 	case R_IA64_DTPREL64MSB:
   2122  1.1  christos 	case R_IA64_DTPREL64LSB:
   2123  1.1  christos 	case R_IA64_LTOFF_DTPREL22:
   2124  1.1  christos 	case R_IA64_DTPMOD64MSB:
   2125  1.1  christos 	case R_IA64_DTPMOD64LSB:
   2126  1.1  christos 	case R_IA64_LTOFF_DTPMOD22:
   2127  1.1  christos           abort ();
   2128  1.1  christos 	  break;
   2129  1.1  christos 
   2130  1.1  christos 	case R_IA64_LTOFF_FPTR22:
   2131  1.1  christos 	case R_IA64_LTOFF_FPTR64I:
   2132  1.1  christos 	case R_IA64_LTOFF_FPTR32MSB:
   2133  1.1  christos 	case R_IA64_LTOFF_FPTR32LSB:
   2134  1.1  christos 	case R_IA64_LTOFF_FPTR64MSB:
   2135  1.1  christos 	case R_IA64_LTOFF_FPTR64LSB:
   2136  1.1  christos 	  need_entry = NEED_FPTR | NEED_GOT | NEED_LTOFF_FPTR;
   2137  1.1  christos 	  break;
   2138  1.1  christos 
   2139  1.1  christos 	case R_IA64_FPTR64I:
   2140  1.1  christos 	case R_IA64_FPTR32MSB:
   2141  1.1  christos 	case R_IA64_FPTR32LSB:
   2142  1.1  christos 	case R_IA64_FPTR64MSB:
   2143  1.1  christos 	case R_IA64_FPTR64LSB:
   2144  1.1  christos 	  if (info->shared || h)
   2145  1.1  christos 	    need_entry = NEED_FPTR | NEED_DYNREL;
   2146  1.1  christos 	  else
   2147  1.1  christos 	    need_entry = NEED_FPTR;
   2148  1.1  christos 	  dynrel_type = R_IA64_FPTR64LSB;
   2149  1.1  christos 	  break;
   2150  1.1  christos 
   2151  1.1  christos 	case R_IA64_LTOFF22:
   2152  1.1  christos 	case R_IA64_LTOFF64I:
   2153  1.1  christos 	  need_entry = NEED_GOT;
   2154  1.1  christos 	  break;
   2155  1.1  christos 
   2156  1.1  christos 	case R_IA64_LTOFF22X:
   2157  1.1  christos 	  need_entry = NEED_GOTX;
   2158  1.1  christos 	  break;
   2159  1.1  christos 
   2160  1.1  christos 	case R_IA64_PLTOFF22:
   2161  1.1  christos 	case R_IA64_PLTOFF64I:
   2162  1.1  christos 	case R_IA64_PLTOFF64MSB:
   2163  1.1  christos 	case R_IA64_PLTOFF64LSB:
   2164  1.1  christos 	  need_entry = NEED_PLTOFF;
   2165  1.1  christos 	  if (h)
   2166  1.1  christos 	    {
   2167  1.1  christos 	      if (maybe_dynamic)
   2168  1.1  christos 		need_entry |= NEED_MIN_PLT;
   2169  1.1  christos 	    }
   2170  1.1  christos 	  break;
   2171  1.1  christos 
   2172  1.1  christos 	case R_IA64_PCREL21B:
   2173  1.1  christos         case R_IA64_PCREL60B:
   2174  1.1  christos 	  /* Depending on where this symbol is defined, we may or may not
   2175  1.1  christos 	     need a full plt entry.  Only skip if we know we'll not need
   2176  1.1  christos 	     the entry -- static or symbolic, and the symbol definition
   2177  1.1  christos 	     has already been seen.  */
   2178  1.1  christos 	  if (maybe_dynamic && rel->r_addend == 0)
   2179  1.1  christos 	    need_entry = NEED_FULL_PLT;
   2180  1.1  christos 	  break;
   2181  1.1  christos 
   2182  1.1  christos 	case R_IA64_IMM14:
   2183  1.1  christos 	case R_IA64_IMM22:
   2184  1.1  christos 	case R_IA64_IMM64:
   2185  1.1  christos 	case R_IA64_DIR32MSB:
   2186  1.1  christos 	case R_IA64_DIR32LSB:
   2187  1.1  christos 	case R_IA64_DIR64MSB:
   2188  1.1  christos 	case R_IA64_DIR64LSB:
   2189  1.1  christos 	  /* Shared objects will always need at least a REL relocation.  */
   2190  1.1  christos 	  if (info->shared || maybe_dynamic)
   2191  1.1  christos 	    need_entry = NEED_DYNREL;
   2192  1.1  christos 	  dynrel_type = R_IA64_DIR64LSB;
   2193  1.1  christos 	  break;
   2194  1.1  christos 
   2195  1.1  christos 	case R_IA64_IPLTMSB:
   2196  1.1  christos 	case R_IA64_IPLTLSB:
   2197  1.1  christos 	  break;
   2198  1.1  christos 
   2199  1.1  christos 	case R_IA64_PCREL22:
   2200  1.1  christos 	case R_IA64_PCREL64I:
   2201  1.1  christos 	case R_IA64_PCREL32MSB:
   2202  1.1  christos 	case R_IA64_PCREL32LSB:
   2203  1.1  christos 	case R_IA64_PCREL64MSB:
   2204  1.1  christos 	case R_IA64_PCREL64LSB:
   2205  1.1  christos 	  if (maybe_dynamic)
   2206  1.1  christos 	    need_entry = NEED_DYNREL;
   2207  1.1  christos 	  dynrel_type = R_IA64_PCREL64LSB;
   2208  1.1  christos 	  break;
   2209  1.1  christos 	}
   2210  1.1  christos 
   2211  1.1  christos       if (!need_entry)
   2212  1.1  christos 	continue;
   2213  1.1  christos 
   2214  1.1  christos       dyn_i = get_dyn_sym_info (ia64_info, h, abfd, rel, FALSE);
   2215  1.1  christos 
   2216  1.1  christos       /* Record whether or not this is a local symbol.  */
   2217  1.1  christos       dyn_i->h = h;
   2218  1.1  christos 
   2219  1.1  christos       /* Create what's needed.  */
   2220  1.1  christos       if (need_entry & (NEED_GOT | NEED_GOTX))
   2221  1.1  christos 	{
   2222  1.1  christos 	  if (!got)
   2223  1.1  christos 	    {
   2224  1.1  christos 	      got = get_got (abfd, ia64_info);
   2225  1.1  christos 	      if (!got)
   2226  1.1  christos 		return FALSE;
   2227  1.1  christos 	    }
   2228  1.1  christos 	  if (need_entry & NEED_GOT)
   2229  1.1  christos 	    dyn_i->want_got = 1;
   2230  1.1  christos 	  if (need_entry & NEED_GOTX)
   2231  1.1  christos 	    dyn_i->want_gotx = 1;
   2232  1.1  christos 	}
   2233  1.1  christos       if (need_entry & NEED_FPTR)
   2234  1.1  christos 	{
   2235  1.1  christos           /* Create the .opd section.  */
   2236  1.1  christos 	  if (!fptr)
   2237  1.1  christos 	    {
   2238  1.1  christos 	      fptr = get_fptr (abfd, info, ia64_info);
   2239  1.1  christos 	      if (!fptr)
   2240  1.1  christos 		return FALSE;
   2241  1.1  christos 	    }
   2242  1.1  christos 	  dyn_i->want_fptr = 1;
   2243  1.1  christos 	}
   2244  1.1  christos       if (need_entry & NEED_LTOFF_FPTR)
   2245  1.1  christos 	dyn_i->want_ltoff_fptr = 1;
   2246  1.1  christos       if (need_entry & (NEED_MIN_PLT | NEED_FULL_PLT))
   2247  1.1  christos 	{
   2248  1.1  christos           if (!ia64_info->root.dynobj)
   2249  1.1  christos 	    ia64_info->root.dynobj = abfd;
   2250  1.1  christos 	  h->needs_plt = 1;
   2251  1.1  christos 	  dyn_i->want_plt = 1;
   2252  1.1  christos 	}
   2253  1.1  christos       if (need_entry & NEED_FULL_PLT)
   2254  1.1  christos 	dyn_i->want_plt2 = 1;
   2255  1.1  christos       if (need_entry & NEED_PLTOFF)
   2256  1.1  christos 	{
   2257  1.1  christos 	  /* This is needed here, in case @pltoff is used in a non-shared
   2258  1.1  christos 	     link.  */
   2259  1.1  christos 	  if (!pltoff)
   2260  1.1  christos 	    {
   2261  1.1  christos 	      pltoff = get_pltoff (abfd, ia64_info);
   2262  1.1  christos 	      if (!pltoff)
   2263  1.1  christos 		return FALSE;
   2264  1.1  christos 	    }
   2265  1.1  christos 
   2266  1.1  christos 	  dyn_i->want_pltoff = 1;
   2267  1.1  christos 	}
   2268  1.1  christos       if ((need_entry & NEED_DYNREL) && (sec->flags & SEC_ALLOC))
   2269  1.1  christos 	{
   2270  1.1  christos 	  if (!srel)
   2271  1.1  christos 	    {
   2272  1.1  christos 	      srel = get_reloc_section (abfd, ia64_info, sec, TRUE);
   2273  1.1  christos 	      if (!srel)
   2274  1.1  christos 		return FALSE;
   2275  1.1  christos 	    }
   2276  1.1  christos 	  if (!count_dyn_reloc (abfd, dyn_i, srel, dynrel_type))
   2277  1.1  christos 	    return FALSE;
   2278  1.1  christos 	}
   2279  1.1  christos     }
   2280  1.1  christos 
   2281  1.1  christos   return TRUE;
   2282  1.1  christos }
   2283  1.1  christos 
   2284  1.1  christos /* For cleanliness, and potentially faster dynamic loading, allocate
   2285  1.1  christos    external GOT entries first.  */
   2286  1.1  christos 
   2287  1.1  christos static bfd_boolean
   2288  1.1  christos allocate_global_data_got (struct elf64_ia64_dyn_sym_info *dyn_i,
   2289  1.1  christos 			  void * data)
   2290  1.1  christos {
   2291  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *)data;
   2292  1.1  christos 
   2293  1.1  christos   if ((dyn_i->want_got || dyn_i->want_gotx)
   2294  1.1  christos       && ! dyn_i->want_fptr
   2295  1.1  christos       && elf64_ia64_dynamic_symbol_p (dyn_i->h))
   2296  1.1  christos      {
   2297  1.1  christos        /* GOT entry with FPTR is done by allocate_global_fptr_got.  */
   2298  1.1  christos        dyn_i->got_offset = x->ofs;
   2299  1.1  christos        x->ofs += 8;
   2300  1.1  christos      }
   2301  1.1  christos   return TRUE;
   2302  1.1  christos }
   2303  1.1  christos 
   2304  1.1  christos /* Next, allocate all the GOT entries used by LTOFF_FPTR relocs.  */
   2305  1.1  christos 
   2306  1.1  christos static bfd_boolean
   2307  1.1  christos allocate_global_fptr_got (struct elf64_ia64_dyn_sym_info *dyn_i,
   2308  1.1  christos 			  void * data)
   2309  1.1  christos {
   2310  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *)data;
   2311  1.1  christos 
   2312  1.1  christos   if (dyn_i->want_got
   2313  1.1  christos       && dyn_i->want_fptr
   2314  1.1  christos       && elf64_ia64_dynamic_symbol_p (dyn_i->h))
   2315  1.1  christos     {
   2316  1.1  christos       dyn_i->got_offset = x->ofs;
   2317  1.1  christos       x->ofs += 8;
   2318  1.1  christos     }
   2319  1.1  christos   return TRUE;
   2320  1.1  christos }
   2321  1.1  christos 
   2322  1.1  christos /* Lastly, allocate all the GOT entries for local data.  */
   2323  1.1  christos 
   2324  1.1  christos static bfd_boolean
   2325  1.1  christos allocate_local_got (struct elf64_ia64_dyn_sym_info *dyn_i,
   2326  1.1  christos 		    void * data)
   2327  1.1  christos {
   2328  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *) data;
   2329  1.1  christos 
   2330  1.1  christos   if ((dyn_i->want_got || dyn_i->want_gotx)
   2331  1.1  christos       && !elf64_ia64_dynamic_symbol_p (dyn_i->h))
   2332  1.1  christos     {
   2333  1.1  christos       dyn_i->got_offset = x->ofs;
   2334  1.1  christos       x->ofs += 8;
   2335  1.1  christos     }
   2336  1.1  christos   return TRUE;
   2337  1.1  christos }
   2338  1.1  christos 
   2339  1.1  christos /* Allocate function descriptors.  We can do these for every function
   2340  1.1  christos    in a main executable that is not exported.  */
   2341  1.1  christos 
   2342  1.1  christos static bfd_boolean
   2343  1.1  christos allocate_fptr (struct elf64_ia64_dyn_sym_info *dyn_i, void * data)
   2344  1.1  christos {
   2345  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *) data;
   2346  1.1  christos 
   2347  1.1  christos   if (dyn_i->want_fptr)
   2348  1.1  christos     {
   2349  1.1  christos       struct elf_link_hash_entry *h = dyn_i->h;
   2350  1.1  christos 
   2351  1.1  christos       if (h)
   2352  1.1  christos 	while (h->root.type == bfd_link_hash_indirect
   2353  1.1  christos 	       || h->root.type == bfd_link_hash_warning)
   2354  1.1  christos 	  h = (struct elf_link_hash_entry *) h->root.u.i.link;
   2355  1.1  christos 
   2356  1.1  christos       if (h == NULL || !h->def_dynamic)
   2357  1.1  christos 	{
   2358  1.1  christos           /*  A non dynamic symbol.  */
   2359  1.1  christos 	  dyn_i->fptr_offset = x->ofs;
   2360  1.1  christos 	  x->ofs += 16;
   2361  1.1  christos 	}
   2362  1.1  christos       else
   2363  1.1  christos 	dyn_i->want_fptr = 0;
   2364  1.1  christos     }
   2365  1.1  christos   return TRUE;
   2366  1.1  christos }
   2367  1.1  christos 
   2368  1.1  christos /* Allocate all the minimal PLT entries.  */
   2369  1.1  christos 
   2370  1.1  christos static bfd_boolean
   2371  1.1  christos allocate_plt_entries (struct elf64_ia64_dyn_sym_info *dyn_i,
   2372  1.1  christos 		      void * data ATTRIBUTE_UNUSED)
   2373  1.1  christos {
   2374  1.1  christos   if (dyn_i->want_plt)
   2375  1.1  christos     {
   2376  1.1  christos       struct elf_link_hash_entry *h = dyn_i->h;
   2377  1.1  christos 
   2378  1.1  christos       if (h)
   2379  1.1  christos 	while (h->root.type == bfd_link_hash_indirect
   2380  1.1  christos 	       || h->root.type == bfd_link_hash_warning)
   2381  1.1  christos 	  h = (struct elf_link_hash_entry *) h->root.u.i.link;
   2382  1.1  christos 
   2383  1.1  christos       /* ??? Versioned symbols seem to lose NEEDS_PLT.  */
   2384  1.1  christos       if (elf64_ia64_dynamic_symbol_p (h))
   2385  1.1  christos 	{
   2386  1.1  christos 	  dyn_i->want_pltoff = 1;
   2387  1.1  christos 	}
   2388  1.1  christos       else
   2389  1.1  christos 	{
   2390  1.1  christos 	  dyn_i->want_plt = 0;
   2391  1.1  christos 	  dyn_i->want_plt2 = 0;
   2392  1.1  christos 	}
   2393  1.1  christos     }
   2394  1.1  christos   return TRUE;
   2395  1.1  christos }
   2396  1.1  christos 
   2397  1.1  christos /* Allocate all the full PLT entries.  */
   2398  1.1  christos 
   2399  1.1  christos static bfd_boolean
   2400  1.1  christos allocate_plt2_entries (struct elf64_ia64_dyn_sym_info *dyn_i,
   2401  1.1  christos 		       void * data)
   2402  1.1  christos {
   2403  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *)data;
   2404  1.1  christos 
   2405  1.1  christos   if (dyn_i->want_plt2)
   2406  1.1  christos     {
   2407  1.1  christos       struct elf_link_hash_entry *h = dyn_i->h;
   2408  1.1  christos       bfd_size_type ofs = x->ofs;
   2409  1.1  christos 
   2410  1.1  christos       dyn_i->plt2_offset = ofs;
   2411  1.1  christos       x->ofs = ofs + PLT_FULL_ENTRY_SIZE;
   2412  1.1  christos 
   2413  1.1  christos       while (h->root.type == bfd_link_hash_indirect
   2414  1.1  christos 	     || h->root.type == bfd_link_hash_warning)
   2415  1.1  christos 	h = (struct elf_link_hash_entry *) h->root.u.i.link;
   2416  1.1  christos       dyn_i->h->plt.offset = ofs;
   2417  1.1  christos     }
   2418  1.1  christos   return TRUE;
   2419  1.1  christos }
   2420  1.1  christos 
   2421  1.1  christos /* Allocate all the PLTOFF entries requested by relocations and
   2422  1.1  christos    plt entries.  We can't share space with allocated FPTR entries,
   2423  1.1  christos    because the latter are not necessarily addressable by the GP.
   2424  1.1  christos    ??? Relaxation might be able to determine that they are.  */
   2425  1.1  christos 
   2426  1.1  christos static bfd_boolean
   2427  1.1  christos allocate_pltoff_entries (struct elf64_ia64_dyn_sym_info *dyn_i,
   2428  1.1  christos 			 void * data)
   2429  1.1  christos {
   2430  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *)data;
   2431  1.1  christos 
   2432  1.1  christos   if (dyn_i->want_pltoff)
   2433  1.1  christos     {
   2434  1.1  christos       dyn_i->pltoff_offset = x->ofs;
   2435  1.1  christos       x->ofs += 16;
   2436  1.1  christos     }
   2437  1.1  christos   return TRUE;
   2438  1.1  christos }
   2439  1.1  christos 
   2440  1.1  christos /* Allocate dynamic relocations for those symbols that turned out
   2441  1.1  christos    to be dynamic.  */
   2442  1.1  christos 
   2443  1.1  christos static bfd_boolean
   2444  1.1  christos allocate_dynrel_entries (struct elf64_ia64_dyn_sym_info *dyn_i,
   2445  1.1  christos 			 void * data)
   2446  1.1  christos {
   2447  1.1  christos   struct elf64_ia64_allocate_data *x = (struct elf64_ia64_allocate_data *)data;
   2448  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   2449  1.1  christos   struct elf64_ia64_dyn_reloc_entry *rent;
   2450  1.1  christos   bfd_boolean dynamic_symbol, shared, resolved_zero;
   2451  1.1  christos   struct elf64_ia64_link_hash_entry *h_ia64;
   2452  1.1  christos 
   2453  1.1  christos   ia64_info = elf64_ia64_hash_table (x->info);
   2454  1.1  christos   if (ia64_info == NULL)
   2455  1.1  christos     return FALSE;
   2456  1.1  christos 
   2457  1.1  christos   /* Note that this can't be used in relation to FPTR relocs below.  */
   2458  1.1  christos   dynamic_symbol = elf64_ia64_dynamic_symbol_p (dyn_i->h);
   2459  1.1  christos 
   2460  1.1  christos   shared = x->info->shared;
   2461  1.1  christos   resolved_zero = (dyn_i->h
   2462  1.1  christos 		   && ELF_ST_VISIBILITY (dyn_i->h->other)
   2463  1.1  christos 		   && dyn_i->h->root.type == bfd_link_hash_undefweak);
   2464  1.1  christos 
   2465  1.1  christos   /* Take care of the GOT and PLT relocations.  */
   2466  1.1  christos 
   2467  1.1  christos   if ((!resolved_zero
   2468  1.1  christos        && (dynamic_symbol || shared)
   2469  1.1  christos        && (dyn_i->want_got || dyn_i->want_gotx))
   2470  1.1  christos       || (dyn_i->want_ltoff_fptr
   2471  1.1  christos 	  && dyn_i->h
   2472  1.1  christos 	  && dyn_i->h->def_dynamic))
   2473  1.1  christos     {
   2474  1.1  christos       /* VMS: FIX64.  */
   2475  1.1  christos       if (dyn_i->h != NULL && dyn_i->h->def_dynamic)
   2476  1.1  christos         {
   2477  1.1  christos           h_ia64 = (struct elf64_ia64_link_hash_entry *) dyn_i->h;
   2478  1.1  christos           elf_ia64_vms_tdata (h_ia64->shl)->fixups_off +=
   2479  1.1  christos             sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2480  1.1  christos           ia64_info->fixups_sec->size +=
   2481  1.1  christos             sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2482  1.1  christos         }
   2483  1.1  christos     }
   2484  1.1  christos 
   2485  1.1  christos   if (ia64_info->rel_fptr_sec && dyn_i->want_fptr)
   2486  1.1  christos     {
   2487  1.1  christos       /* VMS: only image reloc.  */
   2488  1.1  christos       if (dyn_i->h == NULL || dyn_i->h->root.type != bfd_link_hash_undefweak)
   2489  1.1  christos 	ia64_info->rel_fptr_sec->size += sizeof (Elf64_External_Rela);
   2490  1.1  christos     }
   2491  1.1  christos 
   2492  1.1  christos   if (!resolved_zero && dyn_i->want_pltoff)
   2493  1.1  christos     {
   2494  1.1  christos       /* VMS: FIXFD.  */
   2495  1.1  christos       if (dyn_i->h != NULL && dyn_i->h->def_dynamic)
   2496  1.1  christos         {
   2497  1.1  christos           h_ia64 = (struct elf64_ia64_link_hash_entry *) dyn_i->h;
   2498  1.1  christos           elf_ia64_vms_tdata (h_ia64->shl)->fixups_off +=
   2499  1.1  christos             sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2500  1.1  christos           ia64_info->fixups_sec->size +=
   2501  1.1  christos             sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2502  1.1  christos         }
   2503  1.1  christos     }
   2504  1.1  christos 
   2505  1.1  christos   /* Take care of the normal data relocations.  */
   2506  1.1  christos 
   2507  1.1  christos   for (rent = dyn_i->reloc_entries; rent; rent = rent->next)
   2508  1.1  christos     {
   2509  1.1  christos       int count = rent->count;
   2510  1.1  christos 
   2511  1.1  christos       switch (rent->type)
   2512  1.1  christos 	{
   2513  1.1  christos 	case R_IA64_FPTR32LSB:
   2514  1.1  christos 	case R_IA64_FPTR64LSB:
   2515  1.1  christos 	  /* Allocate one iff !want_fptr and not PIE, which by this point
   2516  1.1  christos 	     will be true only if we're actually allocating one statically
   2517  1.1  christos 	     in the main executable.  Position independent executables
   2518  1.1  christos 	     need a relative reloc.  */
   2519  1.1  christos 	  if (dyn_i->want_fptr && !x->info->pie)
   2520  1.1  christos 	    continue;
   2521  1.1  christos 	  break;
   2522  1.1  christos 	case R_IA64_PCREL32LSB:
   2523  1.1  christos 	case R_IA64_PCREL64LSB:
   2524  1.1  christos 	  if (!dynamic_symbol)
   2525  1.1  christos 	    continue;
   2526  1.1  christos 	  break;
   2527  1.1  christos 	case R_IA64_DIR32LSB:
   2528  1.1  christos 	case R_IA64_DIR64LSB:
   2529  1.1  christos 	  if (!dynamic_symbol && !shared)
   2530  1.1  christos 	    continue;
   2531  1.1  christos 	  break;
   2532  1.1  christos 	case R_IA64_IPLTLSB:
   2533  1.1  christos 	  if (!dynamic_symbol && !shared)
   2534  1.1  christos 	    continue;
   2535  1.1  christos 	  /* Use two REL relocations for IPLT relocations
   2536  1.1  christos 	     against local symbols.  */
   2537  1.1  christos 	  if (!dynamic_symbol)
   2538  1.1  christos 	    count *= 2;
   2539  1.1  christos 	  break;
   2540  1.1  christos 	case R_IA64_DTPREL32LSB:
   2541  1.1  christos 	case R_IA64_TPREL64LSB:
   2542  1.1  christos 	case R_IA64_DTPREL64LSB:
   2543  1.1  christos 	case R_IA64_DTPMOD64LSB:
   2544  1.1  christos 	  break;
   2545  1.1  christos 	default:
   2546  1.1  christos 	  abort ();
   2547  1.1  christos 	}
   2548  1.1  christos 
   2549  1.1  christos       /* Add a fixup.  */
   2550  1.1  christos       if (!dynamic_symbol)
   2551  1.1  christos         abort ();
   2552  1.1  christos 
   2553  1.1  christos       h_ia64 = (struct elf64_ia64_link_hash_entry *) dyn_i->h;
   2554  1.1  christos       elf_ia64_vms_tdata (h_ia64->shl)->fixups_off +=
   2555  1.1  christos         sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2556  1.1  christos       ia64_info->fixups_sec->size +=
   2557  1.1  christos         sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2558  1.1  christos     }
   2559  1.1  christos 
   2560  1.1  christos   return TRUE;
   2561  1.1  christos }
   2562  1.1  christos 
   2563  1.1  christos static bfd_boolean
   2564  1.1  christos elf64_ia64_adjust_dynamic_symbol (struct bfd_link_info *info ATTRIBUTE_UNUSED,
   2565  1.1  christos 				  struct elf_link_hash_entry *h)
   2566  1.1  christos {
   2567  1.1  christos   /* ??? Undefined symbols with PLT entries should be re-defined
   2568  1.1  christos      to be the PLT entry.  */
   2569  1.1  christos 
   2570  1.1  christos   /* If this is a weak symbol, and there is a real definition, the
   2571  1.1  christos      processor independent code will have arranged for us to see the
   2572  1.1  christos      real definition first, and we can just use the same value.  */
   2573  1.1  christos   if (h->u.weakdef != NULL)
   2574  1.1  christos     {
   2575  1.1  christos       BFD_ASSERT (h->u.weakdef->root.type == bfd_link_hash_defined
   2576  1.1  christos                   || h->u.weakdef->root.type == bfd_link_hash_defweak);
   2577  1.1  christos       h->root.u.def.section = h->u.weakdef->root.u.def.section;
   2578  1.1  christos       h->root.u.def.value = h->u.weakdef->root.u.def.value;
   2579  1.1  christos       return TRUE;
   2580  1.1  christos     }
   2581  1.1  christos 
   2582  1.1  christos   /* If this is a reference to a symbol defined by a dynamic object which
   2583  1.1  christos      is not a function, we might allocate the symbol in our .dynbss section
   2584  1.1  christos      and allocate a COPY dynamic relocation.
   2585  1.1  christos 
   2586  1.1  christos      But IA-64 code is canonically PIC, so as a rule we can avoid this sort
   2587  1.1  christos      of hackery.  */
   2588  1.1  christos 
   2589  1.1  christos   return TRUE;
   2590  1.1  christos }
   2591  1.1  christos 
   2592  1.1  christos static bfd_boolean
   2593  1.1  christos elf64_ia64_size_dynamic_sections (bfd *output_bfd ATTRIBUTE_UNUSED,
   2594  1.1  christos 				  struct bfd_link_info *info)
   2595  1.1  christos {
   2596  1.1  christos   struct elf64_ia64_allocate_data data;
   2597  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   2598  1.1  christos   asection *sec;
   2599  1.1  christos   bfd *dynobj;
   2600  1.1  christos   struct elf_link_hash_table *hash_table;
   2601  1.1  christos 
   2602  1.1  christos   hash_table = elf_hash_table (info);
   2603  1.1  christos   dynobj = hash_table->dynobj;
   2604  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   2605  1.1  christos   if (ia64_info == NULL)
   2606  1.1  christos     return FALSE;
   2607  1.1  christos   BFD_ASSERT(dynobj != NULL);
   2608  1.1  christos   data.info = info;
   2609  1.1  christos 
   2610  1.1  christos   /* Allocate the GOT entries.  */
   2611  1.1  christos 
   2612  1.1  christos   if (ia64_info->root.sgot)
   2613  1.1  christos     {
   2614  1.1  christos       data.ofs = 0;
   2615  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_global_data_got, &data);
   2616  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_global_fptr_got, &data);
   2617  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_local_got, &data);
   2618  1.1  christos       ia64_info->root.sgot->size = data.ofs;
   2619  1.1  christos     }
   2620  1.1  christos 
   2621  1.1  christos   /* Allocate the FPTR entries.  */
   2622  1.1  christos 
   2623  1.1  christos   if (ia64_info->fptr_sec)
   2624  1.1  christos     {
   2625  1.1  christos       data.ofs = 0;
   2626  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_fptr, &data);
   2627  1.1  christos       ia64_info->fptr_sec->size = data.ofs;
   2628  1.1  christos     }
   2629  1.1  christos 
   2630  1.1  christos   /* Now that we've seen all of the input files, we can decide which
   2631  1.1  christos      symbols need plt entries.  Allocate the minimal PLT entries first.
   2632  1.1  christos      We do this even though dynamic_sections_created may be FALSE, because
   2633  1.1  christos      this has the side-effect of clearing want_plt and want_plt2.  */
   2634  1.1  christos 
   2635  1.1  christos   data.ofs = 0;
   2636  1.1  christos   elf64_ia64_dyn_sym_traverse (ia64_info, allocate_plt_entries, &data);
   2637  1.1  christos 
   2638  1.1  christos   /* Align the pointer for the plt2 entries.  */
   2639  1.1  christos   data.ofs = (data.ofs + 31) & (bfd_vma) -32;
   2640  1.1  christos 
   2641  1.1  christos   elf64_ia64_dyn_sym_traverse (ia64_info, allocate_plt2_entries, &data);
   2642  1.1  christos   if (data.ofs != 0 || ia64_info->root.dynamic_sections_created)
   2643  1.1  christos     {
   2644  1.1  christos       /* FIXME: we always reserve the memory for dynamic linker even if
   2645  1.1  christos 	 there are no PLT entries since dynamic linker may assume the
   2646  1.1  christos 	 reserved memory always exists.  */
   2647  1.1  christos 
   2648  1.1  christos       BFD_ASSERT (ia64_info->root.dynamic_sections_created);
   2649  1.1  christos 
   2650  1.1  christos       ia64_info->root.splt->size = data.ofs;
   2651  1.1  christos     }
   2652  1.1  christos 
   2653  1.1  christos   /* Allocate the PLTOFF entries.  */
   2654  1.1  christos 
   2655  1.1  christos   if (ia64_info->pltoff_sec)
   2656  1.1  christos     {
   2657  1.1  christos       data.ofs = 0;
   2658  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_pltoff_entries, &data);
   2659  1.1  christos       ia64_info->pltoff_sec->size = data.ofs;
   2660  1.1  christos     }
   2661  1.1  christos 
   2662  1.1  christos   if (ia64_info->root.dynamic_sections_created)
   2663  1.1  christos     {
   2664  1.1  christos       /* Allocate space for the dynamic relocations that turned out to be
   2665  1.1  christos 	 required.  */
   2666  1.1  christos       elf64_ia64_dyn_sym_traverse (ia64_info, allocate_dynrel_entries, &data);
   2667  1.1  christos     }
   2668  1.1  christos 
   2669  1.1  christos   /* We have now determined the sizes of the various dynamic sections.
   2670  1.1  christos      Allocate memory for them.  */
   2671  1.1  christos   for (sec = dynobj->sections; sec != NULL; sec = sec->next)
   2672  1.1  christos     {
   2673  1.1  christos       bfd_boolean strip;
   2674  1.1  christos 
   2675  1.1  christos       if (!(sec->flags & SEC_LINKER_CREATED))
   2676  1.1  christos 	continue;
   2677  1.1  christos 
   2678  1.1  christos       /* If we don't need this section, strip it from the output file.
   2679  1.1  christos 	 There were several sections primarily related to dynamic
   2680  1.1  christos 	 linking that must be create before the linker maps input
   2681  1.1  christos 	 sections to output sections.  The linker does that before
   2682  1.1  christos 	 bfd_elf_size_dynamic_sections is called, and it is that
   2683  1.1  christos 	 function which decides whether anything needs to go into
   2684  1.1  christos 	 these sections.  */
   2685  1.1  christos 
   2686  1.1  christos       strip = (sec->size == 0);
   2687  1.1  christos 
   2688  1.1  christos       if (sec == ia64_info->root.sgot)
   2689  1.1  christos 	strip = FALSE;
   2690  1.1  christos       else if (sec == ia64_info->root.srelgot)
   2691  1.1  christos 	{
   2692  1.1  christos 	  if (strip)
   2693  1.1  christos 	    ia64_info->root.srelgot = NULL;
   2694  1.1  christos 	  else
   2695  1.1  christos 	    /* We use the reloc_count field as a counter if we need to
   2696  1.1  christos 	       copy relocs into the output file.  */
   2697  1.1  christos 	    sec->reloc_count = 0;
   2698  1.1  christos 	}
   2699  1.1  christos       else if (sec == ia64_info->fptr_sec)
   2700  1.1  christos 	{
   2701  1.1  christos 	  if (strip)
   2702  1.1  christos 	    ia64_info->fptr_sec = NULL;
   2703  1.1  christos 	}
   2704  1.1  christos       else if (sec == ia64_info->rel_fptr_sec)
   2705  1.1  christos 	{
   2706  1.1  christos 	  if (strip)
   2707  1.1  christos 	    ia64_info->rel_fptr_sec = NULL;
   2708  1.1  christos 	  else
   2709  1.1  christos 	    /* We use the reloc_count field as a counter if we need to
   2710  1.1  christos 	       copy relocs into the output file.  */
   2711  1.1  christos 	    sec->reloc_count = 0;
   2712  1.1  christos 	}
   2713  1.1  christos       else if (sec == ia64_info->root.splt)
   2714  1.1  christos 	{
   2715  1.1  christos 	  if (strip)
   2716  1.1  christos 	    ia64_info->root.splt = NULL;
   2717  1.1  christos 	}
   2718  1.1  christos       else if (sec == ia64_info->pltoff_sec)
   2719  1.1  christos 	{
   2720  1.1  christos 	  if (strip)
   2721  1.1  christos 	    ia64_info->pltoff_sec = NULL;
   2722  1.1  christos 	}
   2723  1.1  christos       else if (sec == ia64_info->fixups_sec)
   2724  1.1  christos 	{
   2725  1.1  christos           if (strip)
   2726  1.1  christos             ia64_info->fixups_sec = NULL;
   2727  1.1  christos 	}
   2728  1.1  christos       else if (sec == ia64_info->transfer_sec)
   2729  1.1  christos         {
   2730  1.1  christos           ;
   2731  1.1  christos         }
   2732  1.1  christos       else
   2733  1.1  christos 	{
   2734  1.1  christos 	  const char *name;
   2735  1.1  christos 
   2736  1.1  christos 	  /* It's OK to base decisions on the section name, because none
   2737  1.1  christos 	     of the dynobj section names depend upon the input files.  */
   2738  1.1  christos 	  name = bfd_get_section_name (dynobj, sec);
   2739  1.1  christos 
   2740  1.1  christos 	  if (strcmp (name, ".got.plt") == 0)
   2741  1.1  christos 	    strip = FALSE;
   2742  1.1  christos 	  else if (CONST_STRNEQ (name, ".rel"))
   2743  1.1  christos 	    {
   2744  1.1  christos 	      if (!strip)
   2745  1.1  christos 		{
   2746  1.1  christos 		  /* We use the reloc_count field as a counter if we need to
   2747  1.1  christos 		     copy relocs into the output file.  */
   2748  1.1  christos 		  sec->reloc_count = 0;
   2749  1.1  christos 		}
   2750  1.1  christos 	    }
   2751  1.1  christos 	  else
   2752  1.1  christos 	    continue;
   2753  1.1  christos 	}
   2754  1.1  christos 
   2755  1.1  christos       if (strip)
   2756  1.1  christos 	sec->flags |= SEC_EXCLUDE;
   2757  1.1  christos       else
   2758  1.1  christos 	{
   2759  1.1  christos 	  /* Allocate memory for the section contents.  */
   2760  1.1  christos 	  sec->contents = (bfd_byte *) bfd_zalloc (dynobj, sec->size);
   2761  1.1  christos 	  if (sec->contents == NULL && sec->size != 0)
   2762  1.1  christos 	    return FALSE;
   2763  1.1  christos 	}
   2764  1.1  christos     }
   2765  1.1  christos 
   2766  1.1  christos   if (elf_hash_table (info)->dynamic_sections_created)
   2767  1.1  christos     {
   2768  1.1  christos       bfd *abfd;
   2769  1.1  christos       asection *dynsec;
   2770  1.1  christos       asection *dynstrsec;
   2771  1.1  christos       Elf_Internal_Dyn dyn;
   2772  1.1  christos       const struct elf_backend_data *bed;
   2773  1.1  christos       unsigned int shl_num = 0;
   2774  1.1  christos       bfd_vma fixups_off = 0;
   2775  1.1  christos       bfd_vma strdyn_off;
   2776  1.1  christos       unsigned int time_hi, time_lo;
   2777  1.1  christos 
   2778  1.1  christos       /* The .dynamic section must exist and be empty.  */
   2779  1.1  christos       dynsec = bfd_get_linker_section (hash_table->dynobj, ".dynamic");
   2780  1.1  christos       BFD_ASSERT (dynsec != NULL);
   2781  1.1  christos       BFD_ASSERT (dynsec->size == 0);
   2782  1.1  christos 
   2783  1.1  christos       dynstrsec = bfd_get_linker_section (hash_table->dynobj, ".vmsdynstr");
   2784  1.1  christos       BFD_ASSERT (dynstrsec != NULL);
   2785  1.1  christos       BFD_ASSERT (dynstrsec->size == 0);
   2786  1.1  christos       dynstrsec->size = 1;	/* Initial blank.  */
   2787  1.1  christos 
   2788  1.1  christos       /* Ident + link time.  */
   2789  1.1  christos       vms_get_time (&time_hi, &time_lo);
   2790  1.1  christos 
   2791  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_IDENT, 0))
   2792  1.1  christos         return FALSE;
   2793  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_LINKTIME,
   2794  1.1  christos                                        (((bfd_uint64_t)time_hi) << 32)
   2795  1.1  christos                                        + time_lo))
   2796  1.1  christos         return FALSE;
   2797  1.1  christos 
   2798  1.1  christos       /* Strtab.  */
   2799  1.1  christos       strdyn_off = dynsec->size;
   2800  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_STRTAB_OFFSET, 0))
   2801  1.1  christos         return FALSE;
   2802  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_STRSZ, 0))
   2803  1.1  christos         return FALSE;
   2804  1.1  christos 
   2805  1.1  christos       /* PLTGOT  */
   2806  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_PLTGOT_SEG, 0))
   2807  1.1  christos         return FALSE;
   2808  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_PLTGOT_OFFSET, 0))
   2809  1.1  christos         return FALSE;
   2810  1.1  christos 
   2811  1.1  christos       /* Misc.  */
   2812  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_FPMODE, 0x9800000))
   2813  1.1  christos         return FALSE;
   2814  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_LNKFLAGS,
   2815  1.1  christos                                        VMS_LF_IMGSTA | VMS_LF_MAIN))
   2816  1.1  christos         return FALSE;
   2817  1.1  christos 
   2818  1.1  christos       /* Add entries for shared libraries.  */
   2819  1.1  christos       for (abfd = info->input_bfds; abfd; abfd = abfd->link_next)
   2820  1.1  christos         {
   2821  1.1  christos           char *soname;
   2822  1.1  christos           size_t soname_len;
   2823  1.1  christos           bfd_size_type strindex;
   2824  1.1  christos           bfd_byte *newcontents;
   2825  1.1  christos           bfd_vma fixups_shl_off;
   2826  1.1  christos 
   2827  1.1  christos           if (!(abfd->flags & DYNAMIC))
   2828  1.1  christos             continue;
   2829  1.1  christos           BFD_ASSERT (abfd->xvec == output_bfd->xvec);
   2830  1.1  christos 
   2831  1.1  christos           if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_NEEDED_IDENT,
   2832  1.1  christos                                            elf_ia64_vms_ident (abfd)))
   2833  1.1  christos             return FALSE;
   2834  1.1  christos 
   2835  1.1  christos           soname = vms_get_module_name (abfd->filename, TRUE);
   2836  1.1  christos           if (soname == NULL)
   2837  1.1  christos             return FALSE;
   2838  1.1  christos           strindex = dynstrsec->size;
   2839  1.1  christos           soname_len = strlen (soname) + 1;
   2840  1.1  christos           newcontents = (bfd_byte *) bfd_realloc (dynstrsec->contents,
   2841  1.1  christos                                                   strindex + soname_len);
   2842  1.1  christos           if (newcontents == NULL)
   2843  1.1  christos             return FALSE;
   2844  1.1  christos           memcpy (newcontents + strindex, soname, soname_len);
   2845  1.1  christos           dynstrsec->size += soname_len;
   2846  1.1  christos           dynstrsec->contents = newcontents;
   2847  1.1  christos 
   2848  1.1  christos           if (!_bfd_elf_add_dynamic_entry (info, DT_NEEDED, strindex))
   2849  1.1  christos             return FALSE;
   2850  1.1  christos 
   2851  1.1  christos           if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_FIXUP_NEEDED,
   2852  1.1  christos                                            shl_num))
   2853  1.1  christos             return FALSE;
   2854  1.1  christos           shl_num++;
   2855  1.1  christos 
   2856  1.1  christos           /* The fixups_off was in fact containing the size of the fixup
   2857  1.1  christos              section.  Remap into the offset.  */
   2858  1.1  christos           fixups_shl_off = elf_ia64_vms_tdata (abfd)->fixups_off;
   2859  1.1  christos           elf_ia64_vms_tdata (abfd)->fixups_off = fixups_off;
   2860  1.1  christos 
   2861  1.1  christos           if (!_bfd_elf_add_dynamic_entry
   2862  1.1  christos               (info, DT_IA_64_VMS_FIXUP_RELA_CNT,
   2863  1.1  christos                fixups_shl_off / sizeof (Elf64_External_VMS_IMAGE_FIXUP)))
   2864  1.1  christos             return FALSE;
   2865  1.1  christos           if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_FIXUP_RELA_OFF,
   2866  1.1  christos                                            fixups_off))
   2867  1.1  christos             return FALSE;
   2868  1.1  christos           fixups_off += fixups_shl_off;
   2869  1.1  christos         }
   2870  1.1  christos 
   2871  1.1  christos       /* Unwind.  */
   2872  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_UNWINDSZ, 0))
   2873  1.1  christos         return FALSE;
   2874  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_UNWIND_CODSEG, 0))
   2875  1.1  christos         return FALSE;
   2876  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_UNWIND_INFOSEG, 0))
   2877  1.1  christos         return FALSE;
   2878  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_UNWIND_OFFSET, 0))
   2879  1.1  christos         return FALSE;
   2880  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_IA_64_VMS_UNWIND_SEG, 0))
   2881  1.1  christos         return FALSE;
   2882  1.1  christos 
   2883  1.1  christos       if (!_bfd_elf_add_dynamic_entry (info, DT_NULL, 0xdead))
   2884  1.1  christos             return FALSE;
   2885  1.1  christos 
   2886  1.1  christos       /* Fix the strtab entries.  */
   2887  1.1  christos       bed = get_elf_backend_data (hash_table->dynobj);
   2888  1.1  christos 
   2889  1.1  christos       if (dynstrsec->size > 1)
   2890  1.1  christos         dynstrsec->contents[0] = 0;
   2891  1.1  christos       else
   2892  1.1  christos         dynstrsec->size = 0;
   2893  1.1  christos 
   2894  1.1  christos       /* Note: one 'spare' (ie DT_NULL) entry is added by
   2895  1.1  christos          bfd_elf_size_dynsym_hash_dynstr.  */
   2896  1.1  christos       dyn.d_tag = DT_IA_64_VMS_STRTAB_OFFSET;
   2897  1.1  christos       dyn.d_un.d_val = dynsec->size /* + sizeof (Elf64_External_Dyn) */;
   2898  1.1  christos       bed->s->swap_dyn_out (hash_table->dynobj, &dyn,
   2899  1.1  christos                             dynsec->contents + strdyn_off);
   2900  1.1  christos 
   2901  1.1  christos       dyn.d_tag = DT_STRSZ;
   2902  1.1  christos       dyn.d_un.d_val = dynstrsec->size;
   2903  1.1  christos       bed->s->swap_dyn_out (hash_table->dynobj, &dyn,
   2904  1.1  christos                             dynsec->contents + strdyn_off + bed->s->sizeof_dyn);
   2905  1.1  christos 
   2906  1.1  christos       elf_ia64_vms_tdata (output_bfd)->needed_count = shl_num;
   2907  1.1  christos 
   2908  1.1  christos       /* Note section.  */
   2909  1.1  christos       if (!create_ia64_vms_notes (output_bfd, info, time_hi, time_lo))
   2910  1.1  christos         return FALSE;
   2911  1.1  christos     }
   2912  1.1  christos 
   2913  1.1  christos   /* ??? Perhaps force __gp local.  */
   2914  1.1  christos 
   2915  1.1  christos   return TRUE;
   2916  1.1  christos }
   2917  1.1  christos 
   2918  1.1  christos static void
   2919  1.1  christos elf64_ia64_install_fixup (bfd *output_bfd,
   2920  1.1  christos                           struct elf64_ia64_link_hash_table *ia64_info,
   2921  1.1  christos                           struct elf_link_hash_entry *h,
   2922  1.1  christos                           unsigned int type, asection *sec, bfd_vma offset,
   2923  1.1  christos                           bfd_vma addend)
   2924  1.1  christos {
   2925  1.1  christos   asection *relsec;
   2926  1.1  christos   Elf64_External_VMS_IMAGE_FIXUP *fixup;
   2927  1.1  christos   struct elf64_ia64_link_hash_entry *h_ia64;
   2928  1.1  christos   bfd_vma fixoff;
   2929  1.1  christos   Elf_Internal_Phdr *phdr;
   2930  1.1  christos 
   2931  1.1  christos   if (h == NULL || !h->def_dynamic)
   2932  1.1  christos     abort ();
   2933  1.1  christos 
   2934  1.1  christos   h_ia64 = (struct elf64_ia64_link_hash_entry *) h;
   2935  1.1  christos   fixoff = elf_ia64_vms_tdata (h_ia64->shl)->fixups_off;
   2936  1.1  christos   elf_ia64_vms_tdata (h_ia64->shl)->fixups_off +=
   2937  1.1  christos     sizeof (Elf64_External_VMS_IMAGE_FIXUP);
   2938  1.1  christos   relsec = ia64_info->fixups_sec;
   2939  1.1  christos 
   2940  1.1  christos   fixup = (Elf64_External_VMS_IMAGE_FIXUP *)(relsec->contents + fixoff);
   2941  1.1  christos   offset += sec->output_section->vma + sec->output_offset;
   2942  1.1  christos 
   2943  1.1  christos   /* FIXME: this is slow.  We should cache the last one used, or create a
   2944  1.1  christos      map.  */
   2945  1.1  christos   phdr = _bfd_elf_find_segment_containing_section
   2946  1.1  christos     (output_bfd, sec->output_section);
   2947  1.1  christos   BFD_ASSERT (phdr != NULL);
   2948  1.1  christos 
   2949  1.1  christos   bfd_putl64 (offset - phdr->p_vaddr, fixup->fixup_offset);
   2950  1.1  christos   bfd_putl32 (type, fixup->type);
   2951  1.1  christos   bfd_putl32 (phdr - elf_tdata (output_bfd)->phdr, fixup->fixup_seg);
   2952  1.1  christos   bfd_putl64 (addend, fixup->addend);
   2953  1.1  christos   bfd_putl32 (h->root.u.def.value, fixup->symvec_index);
   2954  1.1  christos   bfd_putl32 (2, fixup->data_type);
   2955  1.1  christos }
   2956  1.1  christos 
   2957  1.1  christos /* Store an entry for target address TARGET_ADDR in the linkage table
   2958  1.1  christos    and return the gp-relative address of the linkage table entry.  */
   2959  1.1  christos 
   2960  1.1  christos static bfd_vma
   2961  1.1  christos set_got_entry (bfd *abfd, struct bfd_link_info *info,
   2962  1.1  christos 	       struct elf64_ia64_dyn_sym_info *dyn_i,
   2963  1.1  christos 	       bfd_vma addend, bfd_vma value, unsigned int dyn_r_type)
   2964  1.1  christos {
   2965  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   2966  1.1  christos   asection *got_sec;
   2967  1.1  christos   bfd_boolean done;
   2968  1.1  christos   bfd_vma got_offset;
   2969  1.1  christos 
   2970  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   2971  1.1  christos   if (ia64_info == NULL)
   2972  1.1  christos     return 0;
   2973  1.1  christos 
   2974  1.1  christos   got_sec = ia64_info->root.sgot;
   2975  1.1  christos 
   2976  1.1  christos   switch (dyn_r_type)
   2977  1.1  christos     {
   2978  1.1  christos     case R_IA64_TPREL64LSB:
   2979  1.1  christos     case R_IA64_DTPMOD64LSB:
   2980  1.1  christos     case R_IA64_DTPREL32LSB:
   2981  1.1  christos     case R_IA64_DTPREL64LSB:
   2982  1.1  christos       abort ();
   2983  1.1  christos       break;
   2984  1.1  christos     default:
   2985  1.1  christos       done = dyn_i->got_done;
   2986  1.1  christos       dyn_i->got_done = TRUE;
   2987  1.1  christos       got_offset = dyn_i->got_offset;
   2988  1.1  christos       break;
   2989  1.1  christos     }
   2990  1.1  christos 
   2991  1.1  christos   BFD_ASSERT ((got_offset & 7) == 0);
   2992  1.1  christos 
   2993  1.1  christos   if (! done)
   2994  1.1  christos     {
   2995  1.1  christos       /* Store the target address in the linkage table entry.  */
   2996  1.1  christos       bfd_put_64 (abfd, value, got_sec->contents + got_offset);
   2997  1.1  christos 
   2998  1.1  christos       /* Install a dynamic relocation if needed.  */
   2999  1.1  christos       if (((info->shared
   3000  1.1  christos 	    && (!dyn_i->h
   3001  1.1  christos 		|| ELF_ST_VISIBILITY (dyn_i->h->other) == STV_DEFAULT
   3002  1.1  christos 		|| dyn_i->h->root.type != bfd_link_hash_undefweak))
   3003  1.1  christos            || elf64_ia64_dynamic_symbol_p (dyn_i->h))
   3004  1.1  christos 	  && (!dyn_i->want_ltoff_fptr
   3005  1.1  christos 	      || !info->pie
   3006  1.1  christos 	      || !dyn_i->h
   3007  1.1  christos 	      || dyn_i->h->root.type != bfd_link_hash_undefweak))
   3008  1.1  christos 	{
   3009  1.1  christos 	  if (!dyn_i->h || !dyn_i->h->def_dynamic)
   3010  1.1  christos 	    {
   3011  1.1  christos 	      dyn_r_type = R_IA64_REL64LSB;
   3012  1.1  christos 	      addend = value;
   3013  1.1  christos 	    }
   3014  1.1  christos 
   3015  1.1  christos           /* VMS: install a FIX32 or FIX64.  */
   3016  1.1  christos           switch (dyn_r_type)
   3017  1.1  christos             {
   3018  1.1  christos             case R_IA64_DIR32LSB:
   3019  1.1  christos             case R_IA64_FPTR32LSB:
   3020  1.1  christos               dyn_r_type = R_IA64_VMS_FIX32;
   3021  1.1  christos               break;
   3022  1.1  christos             case R_IA64_DIR64LSB:
   3023  1.1  christos             case R_IA64_FPTR64LSB:
   3024  1.1  christos               dyn_r_type = R_IA64_VMS_FIX64;
   3025  1.1  christos               break;
   3026  1.1  christos             default:
   3027  1.1  christos               BFD_ASSERT (FALSE);
   3028  1.1  christos               break;
   3029  1.1  christos             }
   3030  1.1  christos           elf64_ia64_install_fixup
   3031  1.1  christos             (info->output_bfd, ia64_info, dyn_i->h,
   3032  1.1  christos              dyn_r_type, got_sec, got_offset, addend);
   3033  1.1  christos         }
   3034  1.1  christos     }
   3035  1.1  christos 
   3036  1.1  christos   /* Return the address of the linkage table entry.  */
   3037  1.1  christos   value = (got_sec->output_section->vma
   3038  1.1  christos 	   + got_sec->output_offset
   3039  1.1  christos 	   + got_offset);
   3040  1.1  christos 
   3041  1.1  christos   return value;
   3042  1.1  christos }
   3043  1.1  christos 
   3044  1.1  christos /* Fill in a function descriptor consisting of the function's code
   3045  1.1  christos    address and its global pointer.  Return the descriptor's address.  */
   3046  1.1  christos 
   3047  1.1  christos static bfd_vma
   3048  1.1  christos set_fptr_entry (bfd *abfd, struct bfd_link_info *info,
   3049  1.1  christos 		struct elf64_ia64_dyn_sym_info *dyn_i,
   3050  1.1  christos 		bfd_vma value)
   3051  1.1  christos {
   3052  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3053  1.1  christos   asection *fptr_sec;
   3054  1.1  christos 
   3055  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3056  1.1  christos   if (ia64_info == NULL)
   3057  1.1  christos     return 0;
   3058  1.1  christos 
   3059  1.1  christos   fptr_sec = ia64_info->fptr_sec;
   3060  1.1  christos 
   3061  1.1  christos   if (!dyn_i->fptr_done)
   3062  1.1  christos     {
   3063  1.1  christos       dyn_i->fptr_done = 1;
   3064  1.1  christos 
   3065  1.1  christos       /* Fill in the function descriptor.  */
   3066  1.1  christos       bfd_put_64 (abfd, value, fptr_sec->contents + dyn_i->fptr_offset);
   3067  1.1  christos       bfd_put_64 (abfd, _bfd_get_gp_value (abfd),
   3068  1.1  christos 		  fptr_sec->contents + dyn_i->fptr_offset + 8);
   3069  1.1  christos     }
   3070  1.1  christos 
   3071  1.1  christos   /* Return the descriptor's address.  */
   3072  1.1  christos   value = (fptr_sec->output_section->vma
   3073  1.1  christos 	   + fptr_sec->output_offset
   3074  1.1  christos 	   + dyn_i->fptr_offset);
   3075  1.1  christos 
   3076  1.1  christos   return value;
   3077  1.1  christos }
   3078  1.1  christos 
   3079  1.1  christos /* Fill in a PLTOFF entry consisting of the function's code address
   3080  1.1  christos    and its global pointer.  Return the descriptor's address.  */
   3081  1.1  christos 
   3082  1.1  christos static bfd_vma
   3083  1.1  christos set_pltoff_entry (bfd *abfd, struct bfd_link_info *info,
   3084  1.1  christos 		  struct elf64_ia64_dyn_sym_info *dyn_i,
   3085  1.1  christos 		  bfd_vma value, bfd_boolean is_plt)
   3086  1.1  christos {
   3087  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3088  1.1  christos   asection *pltoff_sec;
   3089  1.1  christos 
   3090  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3091  1.1  christos   if (ia64_info == NULL)
   3092  1.1  christos     return 0;
   3093  1.1  christos 
   3094  1.1  christos   pltoff_sec = ia64_info->pltoff_sec;
   3095  1.1  christos 
   3096  1.1  christos   /* Don't do anything if this symbol uses a real PLT entry.  In
   3097  1.1  christos      that case, we'll fill this in during finish_dynamic_symbol.  */
   3098  1.1  christos   if ((! dyn_i->want_plt || is_plt)
   3099  1.1  christos       && !dyn_i->pltoff_done)
   3100  1.1  christos     {
   3101  1.1  christos       bfd_vma gp = _bfd_get_gp_value (abfd);
   3102  1.1  christos 
   3103  1.1  christos       /* Fill in the function descriptor.  */
   3104  1.1  christos       bfd_put_64 (abfd, value, pltoff_sec->contents + dyn_i->pltoff_offset);
   3105  1.1  christos       bfd_put_64 (abfd, gp, pltoff_sec->contents + dyn_i->pltoff_offset + 8);
   3106  1.1  christos 
   3107  1.1  christos       /* Install dynamic relocations if needed.  */
   3108  1.1  christos       if (!is_plt
   3109  1.1  christos 	  && info->shared
   3110  1.1  christos 	  && (!dyn_i->h
   3111  1.1  christos 	      || ELF_ST_VISIBILITY (dyn_i->h->other) == STV_DEFAULT
   3112  1.1  christos 	      || dyn_i->h->root.type != bfd_link_hash_undefweak))
   3113  1.1  christos 	{
   3114  1.1  christos           /* VMS:  */
   3115  1.1  christos           abort ();
   3116  1.1  christos 	}
   3117  1.1  christos 
   3118  1.1  christos       dyn_i->pltoff_done = 1;
   3119  1.1  christos     }
   3120  1.1  christos 
   3121  1.1  christos   /* Return the descriptor's address.  */
   3122  1.1  christos   value = (pltoff_sec->output_section->vma
   3123  1.1  christos 	   + pltoff_sec->output_offset
   3124  1.1  christos 	   + dyn_i->pltoff_offset);
   3125  1.1  christos 
   3126  1.1  christos   return value;
   3127  1.1  christos }
   3128  1.1  christos 
   3129  1.1  christos /* Called through qsort to sort the .IA_64.unwind section during a
   3130  1.1  christos    non-relocatable link.  Set elf64_ia64_unwind_entry_compare_bfd
   3131  1.1  christos    to the output bfd so we can do proper endianness frobbing.  */
   3132  1.1  christos 
   3133  1.1  christos static bfd *elf64_ia64_unwind_entry_compare_bfd;
   3134  1.1  christos 
   3135  1.1  christos static int
   3136  1.1  christos elf64_ia64_unwind_entry_compare (const void * a, const void * b)
   3137  1.1  christos {
   3138  1.1  christos   bfd_vma av, bv;
   3139  1.1  christos 
   3140  1.1  christos   av = bfd_get_64 (elf64_ia64_unwind_entry_compare_bfd, a);
   3141  1.1  christos   bv = bfd_get_64 (elf64_ia64_unwind_entry_compare_bfd, b);
   3142  1.1  christos 
   3143  1.1  christos   return (av < bv ? -1 : av > bv ? 1 : 0);
   3144  1.1  christos }
   3145  1.1  christos 
   3146  1.1  christos /* Make sure we've got ourselves a nice fat __gp value.  */
   3147  1.1  christos static bfd_boolean
   3148  1.1  christos elf64_ia64_choose_gp (bfd *abfd, struct bfd_link_info *info, bfd_boolean final)
   3149  1.1  christos {
   3150  1.1  christos   bfd_vma min_vma = (bfd_vma) -1, max_vma = 0;
   3151  1.1  christos   bfd_vma min_short_vma = min_vma, max_short_vma = 0;
   3152  1.1  christos   struct elf_link_hash_entry *gp;
   3153  1.1  christos   bfd_vma gp_val;
   3154  1.1  christos   asection *os;
   3155  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3156  1.1  christos 
   3157  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3158  1.1  christos   if (ia64_info == NULL)
   3159  1.1  christos     return FALSE;
   3160  1.1  christos 
   3161  1.1  christos   /* Find the min and max vma of all sections marked short.  Also collect
   3162  1.1  christos      min and max vma of any type, for use in selecting a nice gp.  */
   3163  1.1  christos   for (os = abfd->sections; os ; os = os->next)
   3164  1.1  christos     {
   3165  1.1  christos       bfd_vma lo, hi;
   3166  1.1  christos 
   3167  1.1  christos       if ((os->flags & SEC_ALLOC) == 0)
   3168  1.1  christos 	continue;
   3169  1.1  christos 
   3170  1.1  christos       lo = os->vma;
   3171  1.1  christos       /* When this function is called from elfNN_ia64_final_link
   3172  1.1  christos 	 the correct value to use is os->size.  When called from
   3173  1.1  christos 	 elfNN_ia64_relax_section we are in the middle of section
   3174  1.1  christos 	 sizing; some sections will already have os->size set, others
   3175  1.1  christos 	 will have os->size zero and os->rawsize the previous size.  */
   3176  1.1  christos       hi = os->vma + (!final && os->rawsize ? os->rawsize : os->size);
   3177  1.1  christos       if (hi < lo)
   3178  1.1  christos 	hi = (bfd_vma) -1;
   3179  1.1  christos 
   3180  1.1  christos       if (min_vma > lo)
   3181  1.1  christos 	min_vma = lo;
   3182  1.1  christos       if (max_vma < hi)
   3183  1.1  christos 	max_vma = hi;
   3184  1.1  christos       if (os->flags & SEC_SMALL_DATA)
   3185  1.1  christos 	{
   3186  1.1  christos 	  if (min_short_vma > lo)
   3187  1.1  christos 	    min_short_vma = lo;
   3188  1.1  christos 	  if (max_short_vma < hi)
   3189  1.1  christos 	    max_short_vma = hi;
   3190  1.1  christos 	}
   3191  1.1  christos     }
   3192  1.1  christos 
   3193  1.1  christos   if (ia64_info->min_short_sec)
   3194  1.1  christos     {
   3195  1.1  christos       if (min_short_vma
   3196  1.1  christos 	  > (ia64_info->min_short_sec->vma
   3197  1.1  christos 	     + ia64_info->min_short_offset))
   3198  1.1  christos 	min_short_vma = (ia64_info->min_short_sec->vma
   3199  1.1  christos 			 + ia64_info->min_short_offset);
   3200  1.1  christos       if (max_short_vma
   3201  1.1  christos 	  < (ia64_info->max_short_sec->vma
   3202  1.1  christos 	     + ia64_info->max_short_offset))
   3203  1.1  christos 	max_short_vma = (ia64_info->max_short_sec->vma
   3204  1.1  christos 			 + ia64_info->max_short_offset);
   3205  1.1  christos     }
   3206  1.1  christos 
   3207  1.1  christos   /* See if the user wants to force a value.  */
   3208  1.1  christos   gp = elf_link_hash_lookup (elf_hash_table (info), "__gp", FALSE,
   3209  1.1  christos 			     FALSE, FALSE);
   3210  1.1  christos 
   3211  1.1  christos   if (gp
   3212  1.1  christos       && (gp->root.type == bfd_link_hash_defined
   3213  1.1  christos 	  || gp->root.type == bfd_link_hash_defweak))
   3214  1.1  christos     {
   3215  1.1  christos       asection *gp_sec = gp->root.u.def.section;
   3216  1.1  christos       gp_val = (gp->root.u.def.value
   3217  1.1  christos 		+ gp_sec->output_section->vma
   3218  1.1  christos 		+ gp_sec->output_offset);
   3219  1.1  christos     }
   3220  1.1  christos   else
   3221  1.1  christos     {
   3222  1.1  christos       /* Pick a sensible value.  */
   3223  1.1  christos 
   3224  1.1  christos       if (ia64_info->min_short_sec)
   3225  1.1  christos 	{
   3226  1.1  christos 	  bfd_vma short_range = max_short_vma - min_short_vma;
   3227  1.1  christos 
   3228  1.1  christos 	  /* If min_short_sec is set, pick one in the middle bewteen
   3229  1.1  christos 	     min_short_vma and max_short_vma.  */
   3230  1.1  christos 	  if (short_range >= 0x400000)
   3231  1.1  christos 	    goto overflow;
   3232  1.1  christos 	  gp_val = min_short_vma + short_range / 2;
   3233  1.1  christos 	}
   3234  1.1  christos       else
   3235  1.1  christos 	{
   3236  1.1  christos 	  asection *got_sec = ia64_info->root.sgot;
   3237  1.1  christos 
   3238  1.1  christos 	  /* Start with just the address of the .got.  */
   3239  1.1  christos 	  if (got_sec)
   3240  1.1  christos 	    gp_val = got_sec->output_section->vma;
   3241  1.1  christos 	  else if (max_short_vma != 0)
   3242  1.1  christos 	    gp_val = min_short_vma;
   3243  1.1  christos 	  else if (max_vma - min_vma < 0x200000)
   3244  1.1  christos 	    gp_val = min_vma;
   3245  1.1  christos 	  else
   3246  1.1  christos 	    gp_val = max_vma - 0x200000 + 8;
   3247  1.1  christos 	}
   3248  1.1  christos 
   3249  1.1  christos       /* If it is possible to address the entire image, but we
   3250  1.1  christos 	 don't with the choice above, adjust.  */
   3251  1.1  christos       if (max_vma - min_vma < 0x400000
   3252  1.1  christos 	  && (max_vma - gp_val >= 0x200000
   3253  1.1  christos 	      || gp_val - min_vma > 0x200000))
   3254  1.1  christos 	gp_val = min_vma + 0x200000;
   3255  1.1  christos       else if (max_short_vma != 0)
   3256  1.1  christos 	{
   3257  1.1  christos 	  /* If we don't cover all the short data, adjust.  */
   3258  1.1  christos 	  if (max_short_vma - gp_val >= 0x200000)
   3259  1.1  christos 	    gp_val = min_short_vma + 0x200000;
   3260  1.1  christos 
   3261  1.1  christos 	  /* If we're addressing stuff past the end, adjust back.  */
   3262  1.1  christos 	  if (gp_val > max_vma)
   3263  1.1  christos 	    gp_val = max_vma - 0x200000 + 8;
   3264  1.1  christos 	}
   3265  1.1  christos     }
   3266  1.1  christos 
   3267  1.1  christos   /* Validate whether all SHF_IA_64_SHORT sections are within
   3268  1.1  christos      range of the chosen GP.  */
   3269  1.1  christos 
   3270  1.1  christos   if (max_short_vma != 0)
   3271  1.1  christos     {
   3272  1.1  christos       if (max_short_vma - min_short_vma >= 0x400000)
   3273  1.1  christos 	{
   3274  1.1  christos overflow:
   3275  1.1  christos 	  (*_bfd_error_handler)
   3276  1.1  christos 	    (_("%s: short data segment overflowed (0x%lx >= 0x400000)"),
   3277  1.1  christos 	     bfd_get_filename (abfd),
   3278  1.1  christos 	     (unsigned long) (max_short_vma - min_short_vma));
   3279  1.1  christos 	  return FALSE;
   3280  1.1  christos 	}
   3281  1.1  christos       else if ((gp_val > min_short_vma
   3282  1.1  christos 		&& gp_val - min_short_vma > 0x200000)
   3283  1.1  christos 	       || (gp_val < max_short_vma
   3284  1.1  christos 		   && max_short_vma - gp_val >= 0x200000))
   3285  1.1  christos 	{
   3286  1.1  christos 	  (*_bfd_error_handler)
   3287  1.1  christos 	    (_("%s: __gp does not cover short data segment"),
   3288  1.1  christos 	     bfd_get_filename (abfd));
   3289  1.1  christos 	  return FALSE;
   3290  1.1  christos 	}
   3291  1.1  christos     }
   3292  1.1  christos 
   3293  1.1  christos   _bfd_set_gp_value (abfd, gp_val);
   3294  1.1  christos 
   3295  1.1  christos   return TRUE;
   3296  1.1  christos }
   3297  1.1  christos 
   3298  1.1  christos static bfd_boolean
   3299  1.1  christos elf64_ia64_final_link (bfd *abfd, struct bfd_link_info *info)
   3300  1.1  christos {
   3301  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3302  1.1  christos   asection *unwind_output_sec;
   3303  1.1  christos 
   3304  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3305  1.1  christos   if (ia64_info == NULL)
   3306  1.1  christos     return FALSE;
   3307  1.1  christos 
   3308  1.1  christos   /* Make sure we've got ourselves a nice fat __gp value.  */
   3309  1.1  christos   if (!info->relocatable)
   3310  1.1  christos     {
   3311  1.1  christos       bfd_vma gp_val;
   3312  1.1  christos       struct elf_link_hash_entry *gp;
   3313  1.1  christos 
   3314  1.1  christos       /* We assume after gp is set, section size will only decrease. We
   3315  1.1  christos 	 need to adjust gp for it.  */
   3316  1.1  christos       _bfd_set_gp_value (abfd, 0);
   3317  1.1  christos       if (! elf64_ia64_choose_gp (abfd, info, TRUE))
   3318  1.1  christos 	return FALSE;
   3319  1.1  christos       gp_val = _bfd_get_gp_value (abfd);
   3320  1.1  christos 
   3321  1.1  christos       gp = elf_link_hash_lookup (elf_hash_table (info), "__gp", FALSE,
   3322  1.1  christos 			         FALSE, FALSE);
   3323  1.1  christos       if (gp)
   3324  1.1  christos 	{
   3325  1.1  christos 	  gp->root.type = bfd_link_hash_defined;
   3326  1.1  christos 	  gp->root.u.def.value = gp_val;
   3327  1.1  christos 	  gp->root.u.def.section = bfd_abs_section_ptr;
   3328  1.1  christos 	}
   3329  1.1  christos     }
   3330  1.1  christos 
   3331  1.1  christos   /* If we're producing a final executable, we need to sort the contents
   3332  1.1  christos      of the .IA_64.unwind section.  Force this section to be relocated
   3333  1.1  christos      into memory rather than written immediately to the output file.  */
   3334  1.1  christos   unwind_output_sec = NULL;
   3335  1.1  christos   if (!info->relocatable)
   3336  1.1  christos     {
   3337  1.1  christos       asection *s = bfd_get_section_by_name (abfd, ELF_STRING_ia64_unwind);
   3338  1.1  christos       if (s)
   3339  1.1  christos 	{
   3340  1.1  christos 	  unwind_output_sec = s->output_section;
   3341  1.1  christos 	  unwind_output_sec->contents
   3342  1.1  christos 	    = bfd_malloc (unwind_output_sec->size);
   3343  1.1  christos 	  if (unwind_output_sec->contents == NULL)
   3344  1.1  christos 	    return FALSE;
   3345  1.1  christos 	}
   3346  1.1  christos     }
   3347  1.1  christos 
   3348  1.1  christos   /* Invoke the regular ELF backend linker to do all the work.  */
   3349  1.1  christos   if (!bfd_elf_final_link (abfd, info))
   3350  1.1  christos     return FALSE;
   3351  1.1  christos 
   3352  1.1  christos   if (unwind_output_sec)
   3353  1.1  christos     {
   3354  1.1  christos       elf64_ia64_unwind_entry_compare_bfd = abfd;
   3355  1.1  christos       qsort (unwind_output_sec->contents,
   3356  1.1  christos 	     (size_t) (unwind_output_sec->size / 24),
   3357  1.1  christos 	     24,
   3358  1.1  christos 	     elf64_ia64_unwind_entry_compare);
   3359  1.1  christos 
   3360  1.1  christos       if (! bfd_set_section_contents (abfd, unwind_output_sec,
   3361  1.1  christos 				      unwind_output_sec->contents, (bfd_vma) 0,
   3362  1.1  christos 				      unwind_output_sec->size))
   3363  1.1  christos 	return FALSE;
   3364  1.1  christos     }
   3365  1.1  christos 
   3366  1.1  christos   return TRUE;
   3367  1.1  christos }
   3368  1.1  christos 
   3369  1.1  christos static bfd_boolean
   3370  1.1  christos elf64_ia64_relocate_section (bfd *output_bfd,
   3371  1.1  christos 			     struct bfd_link_info *info,
   3372  1.1  christos 			     bfd *input_bfd,
   3373  1.1  christos 			     asection *input_section,
   3374  1.1  christos 			     bfd_byte *contents,
   3375  1.1  christos 			     Elf_Internal_Rela *relocs,
   3376  1.1  christos 			     Elf_Internal_Sym *local_syms,
   3377  1.1  christos 			     asection **local_sections)
   3378  1.1  christos {
   3379  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3380  1.1  christos   Elf_Internal_Shdr *symtab_hdr;
   3381  1.1  christos   Elf_Internal_Rela *rel;
   3382  1.1  christos   Elf_Internal_Rela *relend;
   3383  1.1  christos   bfd_boolean ret_val = TRUE;	/* for non-fatal errors */
   3384  1.1  christos   bfd_vma gp_val;
   3385  1.1  christos 
   3386  1.1  christos   symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
   3387  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3388  1.1  christos   if (ia64_info == NULL)
   3389  1.1  christos     return FALSE;
   3390  1.1  christos 
   3391  1.1  christos   /* Infect various flags from the input section to the output section.  */
   3392  1.1  christos   if (info->relocatable)
   3393  1.1  christos     {
   3394  1.1  christos       bfd_vma flags;
   3395  1.1  christos 
   3396  1.1  christos       flags = elf_section_data(input_section)->this_hdr.sh_flags;
   3397  1.1  christos       flags &= SHF_IA_64_NORECOV;
   3398  1.1  christos 
   3399  1.1  christos       elf_section_data(input_section->output_section)
   3400  1.1  christos 	->this_hdr.sh_flags |= flags;
   3401  1.1  christos     }
   3402  1.1  christos 
   3403  1.1  christos   gp_val = _bfd_get_gp_value (output_bfd);
   3404  1.1  christos 
   3405  1.1  christos   rel = relocs;
   3406  1.1  christos   relend = relocs + input_section->reloc_count;
   3407  1.1  christos   for (; rel < relend; ++rel)
   3408  1.1  christos     {
   3409  1.1  christos       struct elf_link_hash_entry *h;
   3410  1.1  christos       struct elf64_ia64_dyn_sym_info *dyn_i;
   3411  1.1  christos       bfd_reloc_status_type r;
   3412  1.1  christos       reloc_howto_type *howto;
   3413  1.1  christos       unsigned long r_symndx;
   3414  1.1  christos       Elf_Internal_Sym *sym;
   3415  1.1  christos       unsigned int r_type;
   3416  1.1  christos       bfd_vma value;
   3417  1.1  christos       asection *sym_sec;
   3418  1.1  christos       bfd_byte *hit_addr;
   3419  1.1  christos       bfd_boolean dynamic_symbol_p;
   3420  1.1  christos       bfd_boolean undef_weak_ref;
   3421  1.1  christos 
   3422  1.1  christos       r_type = ELF64_R_TYPE (rel->r_info);
   3423  1.1  christos       if (r_type > R_IA64_MAX_RELOC_CODE)
   3424  1.1  christos 	{
   3425  1.1  christos 	  (*_bfd_error_handler)
   3426  1.1  christos 	    (_("%B: unknown relocation type %d"),
   3427  1.1  christos 	     input_bfd, (int) r_type);
   3428  1.1  christos 	  bfd_set_error (bfd_error_bad_value);
   3429  1.1  christos 	  ret_val = FALSE;
   3430  1.1  christos 	  continue;
   3431  1.1  christos 	}
   3432  1.1  christos 
   3433  1.1  christos       howto = ia64_elf_lookup_howto (r_type);
   3434  1.1  christos       r_symndx = ELF64_R_SYM (rel->r_info);
   3435  1.1  christos       h = NULL;
   3436  1.1  christos       sym = NULL;
   3437  1.1  christos       sym_sec = NULL;
   3438  1.1  christos       undef_weak_ref = FALSE;
   3439  1.1  christos 
   3440  1.1  christos       if (r_symndx < symtab_hdr->sh_info)
   3441  1.1  christos 	{
   3442  1.1  christos 	  /* Reloc against local symbol.  */
   3443  1.1  christos 	  asection *msec;
   3444  1.1  christos 	  sym = local_syms + r_symndx;
   3445  1.1  christos 	  sym_sec = local_sections[r_symndx];
   3446  1.1  christos 	  msec = sym_sec;
   3447  1.1  christos 	  value = _bfd_elf_rela_local_sym (output_bfd, sym, &msec, rel);
   3448  1.1  christos 	  if (!info->relocatable
   3449  1.1  christos 	      && (sym_sec->flags & SEC_MERGE) != 0
   3450  1.1  christos 	      && ELF_ST_TYPE (sym->st_info) == STT_SECTION
   3451  1.1  christos 	      && sym_sec->sec_info_type == SEC_INFO_TYPE_MERGE)
   3452  1.1  christos 	    {
   3453  1.1  christos 	      struct elf64_ia64_local_hash_entry *loc_h;
   3454  1.1  christos 
   3455  1.1  christos 	      loc_h = get_local_sym_hash (ia64_info, input_bfd, rel, FALSE);
   3456  1.1  christos 	      if (loc_h && ! loc_h->sec_merge_done)
   3457  1.1  christos 		{
   3458  1.1  christos 		  struct elf64_ia64_dyn_sym_info *dynent;
   3459  1.1  christos 		  unsigned int count;
   3460  1.1  christos 
   3461  1.1  christos 		  for (count = loc_h->count, dynent = loc_h->info;
   3462  1.1  christos 		       count != 0;
   3463  1.1  christos 		       count--, dynent++)
   3464  1.1  christos 		    {
   3465  1.1  christos 		      msec = sym_sec;
   3466  1.1  christos 		      dynent->addend =
   3467  1.1  christos 			_bfd_merged_section_offset (output_bfd, &msec,
   3468  1.1  christos 						    elf_section_data (msec)->
   3469  1.1  christos 						    sec_info,
   3470  1.1  christos 						    sym->st_value
   3471  1.1  christos 						    + dynent->addend);
   3472  1.1  christos 		      dynent->addend -= sym->st_value;
   3473  1.1  christos 		      dynent->addend += msec->output_section->vma
   3474  1.1  christos 					+ msec->output_offset
   3475  1.1  christos 					- sym_sec->output_section->vma
   3476  1.1  christos 					- sym_sec->output_offset;
   3477  1.1  christos 		    }
   3478  1.1  christos 
   3479  1.1  christos 		  /* We may have introduced duplicated entries. We need
   3480  1.1  christos 		     to remove them properly.  */
   3481  1.1  christos 		  count = sort_dyn_sym_info (loc_h->info, loc_h->count);
   3482  1.1  christos 		  if (count != loc_h->count)
   3483  1.1  christos 		    {
   3484  1.1  christos 		      loc_h->count = count;
   3485  1.1  christos 		      loc_h->sorted_count = count;
   3486  1.1  christos 		    }
   3487  1.1  christos 
   3488  1.1  christos 		  loc_h->sec_merge_done = 1;
   3489  1.1  christos 		}
   3490  1.1  christos 	    }
   3491  1.1  christos 	}
   3492  1.1  christos       else
   3493  1.1  christos 	{
   3494  1.1  christos 	  bfd_boolean unresolved_reloc;
   3495  1.1  christos 	  bfd_boolean warned;
   3496  1.1  christos 	  struct elf_link_hash_entry **sym_hashes = elf_sym_hashes (input_bfd);
   3497  1.1  christos 
   3498  1.1  christos 	  RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel,
   3499  1.1  christos 				   r_symndx, symtab_hdr, sym_hashes,
   3500  1.1  christos 				   h, sym_sec, value,
   3501  1.1  christos 				   unresolved_reloc, warned);
   3502  1.1  christos 
   3503  1.1  christos 	  if (h->root.type == bfd_link_hash_undefweak)
   3504  1.1  christos 	    undef_weak_ref = TRUE;
   3505  1.1  christos 	  else if (warned)
   3506  1.1  christos 	    continue;
   3507  1.1  christos 	}
   3508  1.1  christos 
   3509  1.1  christos       /* For relocs against symbols from removed linkonce sections,
   3510  1.1  christos 	 or sections discarded by a linker script, we just want the
   3511  1.1  christos 	 section contents zeroed.  Avoid any special processing.  */
   3512  1.1  christos       if (sym_sec != NULL && discarded_section (sym_sec))
   3513  1.1  christos 	RELOC_AGAINST_DISCARDED_SECTION (info, input_bfd, input_section,
   3514  1.1  christos 					 rel, 1, relend, howto, 0, contents);
   3515  1.1  christos 
   3516  1.1  christos       if (info->relocatable)
   3517  1.1  christos 	continue;
   3518  1.1  christos 
   3519  1.1  christos       hit_addr = contents + rel->r_offset;
   3520  1.1  christos       value += rel->r_addend;
   3521  1.1  christos       dynamic_symbol_p = elf64_ia64_dynamic_symbol_p (h);
   3522  1.1  christos 
   3523  1.1  christos       switch (r_type)
   3524  1.1  christos 	{
   3525  1.1  christos 	case R_IA64_NONE:
   3526  1.1  christos 	case R_IA64_LDXMOV:
   3527  1.1  christos 	  continue;
   3528  1.1  christos 
   3529  1.1  christos 	case R_IA64_IMM14:
   3530  1.1  christos 	case R_IA64_IMM22:
   3531  1.1  christos 	case R_IA64_IMM64:
   3532  1.1  christos 	case R_IA64_DIR32MSB:
   3533  1.1  christos 	case R_IA64_DIR32LSB:
   3534  1.1  christos 	case R_IA64_DIR64MSB:
   3535  1.1  christos 	case R_IA64_DIR64LSB:
   3536  1.1  christos 	  /* Install a dynamic relocation for this reloc.  */
   3537  1.1  christos 	  if ((dynamic_symbol_p || info->shared)
   3538  1.1  christos 	      && r_symndx != 0
   3539  1.1  christos 	      && (input_section->flags & SEC_ALLOC) != 0)
   3540  1.1  christos 	    {
   3541  1.1  christos 	      unsigned int dyn_r_type;
   3542  1.1  christos 	      bfd_vma addend;
   3543  1.1  christos 
   3544  1.1  christos 	      switch (r_type)
   3545  1.1  christos 		{
   3546  1.1  christos 		case R_IA64_IMM14:
   3547  1.1  christos 		case R_IA64_IMM22:
   3548  1.1  christos 		case R_IA64_IMM64:
   3549  1.1  christos 		  /* ??? People shouldn't be doing non-pic code in
   3550  1.1  christos 		     shared libraries nor dynamic executables.  */
   3551  1.1  christos 		  (*_bfd_error_handler)
   3552  1.1  christos 		    (_("%B: non-pic code with imm relocation against dynamic symbol `%s'"),
   3553  1.1  christos 		     input_bfd,
   3554  1.1  christos 		     h ? h->root.root.string
   3555  1.1  christos 		       : bfd_elf_sym_name (input_bfd, symtab_hdr, sym,
   3556  1.1  christos 					   sym_sec));
   3557  1.1  christos 		  ret_val = FALSE;
   3558  1.1  christos 		  continue;
   3559  1.1  christos 
   3560  1.1  christos 		default:
   3561  1.1  christos 		  break;
   3562  1.1  christos 		}
   3563  1.1  christos 
   3564  1.1  christos 	      /* If we don't need dynamic symbol lookup, find a
   3565  1.1  christos 		 matching RELATIVE relocation.  */
   3566  1.1  christos 	      dyn_r_type = r_type;
   3567  1.1  christos 	      if (dynamic_symbol_p)
   3568  1.1  christos 		{
   3569  1.1  christos 		  addend = rel->r_addend;
   3570  1.1  christos 		  value = 0;
   3571  1.1  christos 		}
   3572  1.1  christos 	      else
   3573  1.1  christos 		{
   3574  1.1  christos 		  addend = value;
   3575  1.1  christos 		}
   3576  1.1  christos 
   3577  1.1  christos               /* VMS: install a FIX64.  */
   3578  1.1  christos               switch (dyn_r_type)
   3579  1.1  christos                 {
   3580  1.1  christos                 case R_IA64_DIR32LSB:
   3581  1.1  christos                   dyn_r_type = R_IA64_VMS_FIX32;
   3582  1.1  christos                   break;
   3583  1.1  christos                 case R_IA64_DIR64LSB:
   3584  1.1  christos                   dyn_r_type = R_IA64_VMS_FIX64;
   3585  1.1  christos                   break;
   3586  1.1  christos                 default:
   3587  1.1  christos                   BFD_ASSERT (FALSE);
   3588  1.1  christos                   break;
   3589  1.1  christos                 }
   3590  1.1  christos               elf64_ia64_install_fixup
   3591  1.1  christos                 (output_bfd, ia64_info, h,
   3592  1.1  christos                  dyn_r_type, input_section, rel->r_offset, addend);
   3593  1.1  christos               r = bfd_reloc_ok;
   3594  1.1  christos               break;
   3595  1.1  christos 	    }
   3596  1.1  christos 	  /* Fall through.  */
   3597  1.1  christos 
   3598  1.1  christos 	case R_IA64_LTV32MSB:
   3599  1.1  christos 	case R_IA64_LTV32LSB:
   3600  1.1  christos 	case R_IA64_LTV64MSB:
   3601  1.1  christos 	case R_IA64_LTV64LSB:
   3602  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3603  1.1  christos 	  break;
   3604  1.1  christos 
   3605  1.1  christos 	case R_IA64_GPREL22:
   3606  1.1  christos 	case R_IA64_GPREL64I:
   3607  1.1  christos 	case R_IA64_GPREL32MSB:
   3608  1.1  christos 	case R_IA64_GPREL32LSB:
   3609  1.1  christos 	case R_IA64_GPREL64MSB:
   3610  1.1  christos 	case R_IA64_GPREL64LSB:
   3611  1.1  christos 	  if (dynamic_symbol_p)
   3612  1.1  christos 	    {
   3613  1.1  christos 	      (*_bfd_error_handler)
   3614  1.1  christos 		(_("%B: @gprel relocation against dynamic symbol %s"),
   3615  1.1  christos 		 input_bfd,
   3616  1.1  christos 		 h ? h->root.root.string
   3617  1.1  christos 		   : bfd_elf_sym_name (input_bfd, symtab_hdr, sym,
   3618  1.1  christos 				       sym_sec));
   3619  1.1  christos 	      ret_val = FALSE;
   3620  1.1  christos 	      continue;
   3621  1.1  christos 	    }
   3622  1.1  christos 	  value -= gp_val;
   3623  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3624  1.1  christos 	  break;
   3625  1.1  christos 
   3626  1.1  christos 	case R_IA64_LTOFF22:
   3627  1.1  christos 	case R_IA64_LTOFF22X:
   3628  1.1  christos 	case R_IA64_LTOFF64I:
   3629  1.1  christos           dyn_i = get_dyn_sym_info (ia64_info, h, input_bfd, rel, FALSE);
   3630  1.1  christos 	  value = set_got_entry (input_bfd, info, dyn_i,
   3631  1.1  christos 				 rel->r_addend, value, R_IA64_DIR64LSB);
   3632  1.1  christos 	  value -= gp_val;
   3633  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3634  1.1  christos 	  break;
   3635  1.1  christos 
   3636  1.1  christos 	case R_IA64_PLTOFF22:
   3637  1.1  christos 	case R_IA64_PLTOFF64I:
   3638  1.1  christos 	case R_IA64_PLTOFF64MSB:
   3639  1.1  christos 	case R_IA64_PLTOFF64LSB:
   3640  1.1  christos           dyn_i = get_dyn_sym_info (ia64_info, h, input_bfd, rel, FALSE);
   3641  1.1  christos 	  value = set_pltoff_entry (output_bfd, info, dyn_i, value, FALSE);
   3642  1.1  christos 	  value -= gp_val;
   3643  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3644  1.1  christos 	  break;
   3645  1.1  christos 
   3646  1.1  christos 	case R_IA64_FPTR64I:
   3647  1.1  christos 	case R_IA64_FPTR32MSB:
   3648  1.1  christos 	case R_IA64_FPTR32LSB:
   3649  1.1  christos 	case R_IA64_FPTR64MSB:
   3650  1.1  christos 	case R_IA64_FPTR64LSB:
   3651  1.1  christos           dyn_i = get_dyn_sym_info (ia64_info, h, input_bfd, rel, FALSE);
   3652  1.1  christos 	  if (dyn_i->want_fptr)
   3653  1.1  christos 	    {
   3654  1.1  christos 	      if (!undef_weak_ref)
   3655  1.1  christos 		value = set_fptr_entry (output_bfd, info, dyn_i, value);
   3656  1.1  christos 	    }
   3657  1.1  christos 	  if (!dyn_i->want_fptr || info->pie)
   3658  1.1  christos 	    {
   3659  1.1  christos 	      /* Otherwise, we expect the dynamic linker to create
   3660  1.1  christos 		 the entry.  */
   3661  1.1  christos 
   3662  1.1  christos 	      if (dyn_i->want_fptr)
   3663  1.1  christos 		{
   3664  1.1  christos 		  if (r_type == R_IA64_FPTR64I)
   3665  1.1  christos 		    {
   3666  1.1  christos 		      /* We can't represent this without a dynamic symbol.
   3667  1.1  christos 			 Adjust the relocation to be against an output
   3668  1.1  christos 			 section symbol, which are always present in the
   3669  1.1  christos 			 dynamic symbol table.  */
   3670  1.1  christos 		      /* ??? People shouldn't be doing non-pic code in
   3671  1.1  christos 			 shared libraries.  Hork.  */
   3672  1.1  christos 		      (*_bfd_error_handler)
   3673  1.1  christos 			(_("%B: linking non-pic code in a position independent executable"),
   3674  1.1  christos 			 input_bfd);
   3675  1.1  christos 		      ret_val = FALSE;
   3676  1.1  christos 		      continue;
   3677  1.1  christos 		    }
   3678  1.1  christos 		}
   3679  1.1  christos 	      else
   3680  1.1  christos 		{
   3681  1.1  christos 		  value = 0;
   3682  1.1  christos 		}
   3683  1.1  christos 
   3684  1.1  christos               /* VMS: FIXFD.  */
   3685  1.1  christos               elf64_ia64_install_fixup
   3686  1.1  christos                 (output_bfd, ia64_info, h, R_IA64_VMS_FIXFD,
   3687  1.1  christos                  input_section, rel->r_offset, 0);
   3688  1.1  christos               r = bfd_reloc_ok;
   3689  1.1  christos               break;
   3690  1.1  christos 	    }
   3691  1.1  christos 
   3692  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3693  1.1  christos 	  break;
   3694  1.1  christos 
   3695  1.1  christos 	case R_IA64_LTOFF_FPTR22:
   3696  1.1  christos 	case R_IA64_LTOFF_FPTR64I:
   3697  1.1  christos 	case R_IA64_LTOFF_FPTR32MSB:
   3698  1.1  christos 	case R_IA64_LTOFF_FPTR32LSB:
   3699  1.1  christos 	case R_IA64_LTOFF_FPTR64MSB:
   3700  1.1  christos 	case R_IA64_LTOFF_FPTR64LSB:
   3701  1.1  christos           dyn_i = get_dyn_sym_info (ia64_info, h, input_bfd, rel, FALSE);
   3702  1.1  christos           if (dyn_i->want_fptr)
   3703  1.1  christos             {
   3704  1.1  christos               BFD_ASSERT (h == NULL || !h->def_dynamic);
   3705  1.1  christos               if (!undef_weak_ref)
   3706  1.1  christos                 value = set_fptr_entry (output_bfd, info, dyn_i, value);
   3707  1.1  christos             }
   3708  1.1  christos           else
   3709  1.1  christos             value = 0;
   3710  1.1  christos 
   3711  1.1  christos           value = set_got_entry (output_bfd, info, dyn_i,
   3712  1.1  christos                                  rel->r_addend, value, R_IA64_FPTR64LSB);
   3713  1.1  christos           value -= gp_val;
   3714  1.1  christos           r = ia64_elf_install_value (hit_addr, value, r_type);
   3715  1.1  christos 	  break;
   3716  1.1  christos 
   3717  1.1  christos 	case R_IA64_PCREL32MSB:
   3718  1.1  christos 	case R_IA64_PCREL32LSB:
   3719  1.1  christos 	case R_IA64_PCREL64MSB:
   3720  1.1  christos 	case R_IA64_PCREL64LSB:
   3721  1.1  christos 	  /* Install a dynamic relocation for this reloc.  */
   3722  1.1  christos 	  if (dynamic_symbol_p && r_symndx != 0)
   3723  1.1  christos 	    {
   3724  1.1  christos               /* VMS: doesn't exist ???  */
   3725  1.1  christos               abort ();
   3726  1.1  christos 	    }
   3727  1.1  christos 	  goto finish_pcrel;
   3728  1.1  christos 
   3729  1.1  christos 	case R_IA64_PCREL21B:
   3730  1.1  christos 	case R_IA64_PCREL60B:
   3731  1.1  christos 	  /* We should have created a PLT entry for any dynamic symbol.  */
   3732  1.1  christos 	  dyn_i = NULL;
   3733  1.1  christos 	  if (h)
   3734  1.1  christos 	    dyn_i = get_dyn_sym_info (ia64_info, h, NULL, NULL, FALSE);
   3735  1.1  christos 
   3736  1.1  christos 	  if (dyn_i && dyn_i->want_plt2)
   3737  1.1  christos 	    {
   3738  1.1  christos 	      /* Should have caught this earlier.  */
   3739  1.1  christos 	      BFD_ASSERT (rel->r_addend == 0);
   3740  1.1  christos 
   3741  1.1  christos 	      value = (ia64_info->root.splt->output_section->vma
   3742  1.1  christos 		       + ia64_info->root.splt->output_offset
   3743  1.1  christos 		       + dyn_i->plt2_offset);
   3744  1.1  christos 	    }
   3745  1.1  christos 	  else
   3746  1.1  christos 	    {
   3747  1.1  christos 	      /* Since there's no PLT entry, Validate that this is
   3748  1.1  christos 		 locally defined.  */
   3749  1.1  christos 	      BFD_ASSERT (undef_weak_ref || sym_sec->output_section != NULL);
   3750  1.1  christos 
   3751  1.1  christos 	      /* If the symbol is undef_weak, we shouldn't be trying
   3752  1.1  christos 		 to call it.  There's every chance that we'd wind up
   3753  1.1  christos 		 with an out-of-range fixup here.  Don't bother setting
   3754  1.1  christos 		 any value at all.  */
   3755  1.1  christos 	      if (undef_weak_ref)
   3756  1.1  christos 		continue;
   3757  1.1  christos 	    }
   3758  1.1  christos 	  goto finish_pcrel;
   3759  1.1  christos 
   3760  1.1  christos 	case R_IA64_PCREL21BI:
   3761  1.1  christos 	case R_IA64_PCREL21F:
   3762  1.1  christos 	case R_IA64_PCREL21M:
   3763  1.1  christos 	case R_IA64_PCREL22:
   3764  1.1  christos 	case R_IA64_PCREL64I:
   3765  1.1  christos 	  /* The PCREL21BI reloc is specifically not intended for use with
   3766  1.1  christos 	     dynamic relocs.  PCREL21F and PCREL21M are used for speculation
   3767  1.1  christos 	     fixup code, and thus probably ought not be dynamic.  The
   3768  1.1  christos 	     PCREL22 and PCREL64I relocs aren't emitted as dynamic relocs.  */
   3769  1.1  christos 	  if (dynamic_symbol_p)
   3770  1.1  christos 	    {
   3771  1.1  christos 	      const char *msg;
   3772  1.1  christos 
   3773  1.1  christos 	      if (r_type == R_IA64_PCREL21BI)
   3774  1.1  christos 		msg = _("%B: @internal branch to dynamic symbol %s");
   3775  1.1  christos 	      else if (r_type == R_IA64_PCREL21F || r_type == R_IA64_PCREL21M)
   3776  1.1  christos 		msg = _("%B: speculation fixup to dynamic symbol %s");
   3777  1.1  christos 	      else
   3778  1.1  christos 		msg = _("%B: @pcrel relocation against dynamic symbol %s");
   3779  1.1  christos 	      (*_bfd_error_handler) (msg, input_bfd,
   3780  1.1  christos 				     h ? h->root.root.string
   3781  1.1  christos 				       : bfd_elf_sym_name (input_bfd,
   3782  1.1  christos 							   symtab_hdr,
   3783  1.1  christos 							   sym,
   3784  1.1  christos 							   sym_sec));
   3785  1.1  christos 	      ret_val = FALSE;
   3786  1.1  christos 	      continue;
   3787  1.1  christos 	    }
   3788  1.1  christos 	  goto finish_pcrel;
   3789  1.1  christos 
   3790  1.1  christos 	finish_pcrel:
   3791  1.1  christos 	  /* Make pc-relative.  */
   3792  1.1  christos 	  value -= (input_section->output_section->vma
   3793  1.1  christos 		    + input_section->output_offset
   3794  1.1  christos 		    + rel->r_offset) & ~ (bfd_vma) 0x3;
   3795  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3796  1.1  christos 	  break;
   3797  1.1  christos 
   3798  1.1  christos 	case R_IA64_SEGREL32MSB:
   3799  1.1  christos 	case R_IA64_SEGREL32LSB:
   3800  1.1  christos 	case R_IA64_SEGREL64MSB:
   3801  1.1  christos 	case R_IA64_SEGREL64LSB:
   3802  1.1  christos 	    {
   3803  1.1  christos 	      /* Find the segment that contains the output_section.  */
   3804  1.1  christos 	      Elf_Internal_Phdr *p = _bfd_elf_find_segment_containing_section
   3805  1.1  christos 		(output_bfd, sym_sec->output_section);
   3806  1.1  christos 
   3807  1.1  christos 	      if (p == NULL)
   3808  1.1  christos 		{
   3809  1.1  christos 		  r = bfd_reloc_notsupported;
   3810  1.1  christos 		}
   3811  1.1  christos 	      else
   3812  1.1  christos 		{
   3813  1.1  christos 		  /* The VMA of the segment is the vaddr of the associated
   3814  1.1  christos 		     program header.  */
   3815  1.1  christos 		  if (value > p->p_vaddr)
   3816  1.1  christos 		    value -= p->p_vaddr;
   3817  1.1  christos 		  else
   3818  1.1  christos 		    value = 0;
   3819  1.1  christos 		  r = ia64_elf_install_value (hit_addr, value, r_type);
   3820  1.1  christos 		}
   3821  1.1  christos 	      break;
   3822  1.1  christos 	    }
   3823  1.1  christos 
   3824  1.1  christos 	case R_IA64_SECREL32MSB:
   3825  1.1  christos 	case R_IA64_SECREL32LSB:
   3826  1.1  christos 	case R_IA64_SECREL64MSB:
   3827  1.1  christos 	case R_IA64_SECREL64LSB:
   3828  1.1  christos 	  /* Make output-section relative to section where the symbol
   3829  1.1  christos 	     is defined. PR 475  */
   3830  1.1  christos 	  if (sym_sec)
   3831  1.1  christos 	    value -= sym_sec->output_section->vma;
   3832  1.1  christos 	  r = ia64_elf_install_value (hit_addr, value, r_type);
   3833  1.1  christos 	  break;
   3834  1.1  christos 
   3835  1.1  christos 	case R_IA64_IPLTMSB:
   3836  1.1  christos 	case R_IA64_IPLTLSB:
   3837  1.1  christos 	  /* Install a dynamic relocation for this reloc.  */
   3838  1.1  christos 	  if ((dynamic_symbol_p || info->shared)
   3839  1.1  christos 	      && (input_section->flags & SEC_ALLOC) != 0)
   3840  1.1  christos 	    {
   3841  1.1  christos               /* VMS: FIXFD ??  */
   3842  1.1  christos               abort ();
   3843  1.1  christos 	    }
   3844  1.1  christos 
   3845  1.1  christos 	  if (r_type == R_IA64_IPLTMSB)
   3846  1.1  christos 	    r_type = R_IA64_DIR64MSB;
   3847  1.1  christos 	  else
   3848  1.1  christos 	    r_type = R_IA64_DIR64LSB;
   3849  1.1  christos 	  ia64_elf_install_value (hit_addr, value, r_type);
   3850  1.1  christos 	  r = ia64_elf_install_value (hit_addr + 8, gp_val, r_type);
   3851  1.1  christos 	  break;
   3852  1.1  christos 
   3853  1.1  christos 	case R_IA64_TPREL14:
   3854  1.1  christos 	case R_IA64_TPREL22:
   3855  1.1  christos 	case R_IA64_TPREL64I:
   3856  1.1  christos 	  r = bfd_reloc_notsupported;
   3857  1.1  christos 	  break;
   3858  1.1  christos 
   3859  1.1  christos 	case R_IA64_DTPREL14:
   3860  1.1  christos 	case R_IA64_DTPREL22:
   3861  1.1  christos 	case R_IA64_DTPREL64I:
   3862  1.1  christos 	case R_IA64_DTPREL32LSB:
   3863  1.1  christos 	case R_IA64_DTPREL32MSB:
   3864  1.1  christos 	case R_IA64_DTPREL64LSB:
   3865  1.1  christos 	case R_IA64_DTPREL64MSB:
   3866  1.1  christos 	  r = bfd_reloc_notsupported;
   3867  1.1  christos 	  break;
   3868  1.1  christos 
   3869  1.1  christos 	case R_IA64_LTOFF_TPREL22:
   3870  1.1  christos 	case R_IA64_LTOFF_DTPMOD22:
   3871  1.1  christos 	case R_IA64_LTOFF_DTPREL22:
   3872  1.1  christos 	  r = bfd_reloc_notsupported;
   3873  1.1  christos 	  break;
   3874  1.1  christos 
   3875  1.1  christos 	default:
   3876  1.1  christos 	  r = bfd_reloc_notsupported;
   3877  1.1  christos 	  break;
   3878  1.1  christos 	}
   3879  1.1  christos 
   3880  1.1  christos       switch (r)
   3881  1.1  christos 	{
   3882  1.1  christos 	case bfd_reloc_ok:
   3883  1.1  christos 	  break;
   3884  1.1  christos 
   3885  1.1  christos 	case bfd_reloc_undefined:
   3886  1.1  christos 	  /* This can happen for global table relative relocs if
   3887  1.1  christos 	     __gp is undefined.  This is a panic situation so we
   3888  1.1  christos 	     don't try to continue.  */
   3889  1.1  christos 	  (*info->callbacks->undefined_symbol)
   3890  1.1  christos 	    (info, "__gp", input_bfd, input_section, rel->r_offset, 1);
   3891  1.1  christos 	  return FALSE;
   3892  1.1  christos 
   3893  1.1  christos 	case bfd_reloc_notsupported:
   3894  1.1  christos 	  {
   3895  1.1  christos 	    const char *name;
   3896  1.1  christos 
   3897  1.1  christos 	    if (h)
   3898  1.1  christos 	      name = h->root.root.string;
   3899  1.1  christos 	    else
   3900  1.1  christos 	      name = bfd_elf_sym_name (input_bfd, symtab_hdr, sym,
   3901  1.1  christos 				       sym_sec);
   3902  1.1  christos 	    if (!(*info->callbacks->warning) (info, _("unsupported reloc"),
   3903  1.1  christos 					      name, input_bfd,
   3904  1.1  christos 					      input_section, rel->r_offset))
   3905  1.1  christos 	      return FALSE;
   3906  1.1  christos 	    ret_val = FALSE;
   3907  1.1  christos 	  }
   3908  1.1  christos 	  break;
   3909  1.1  christos 
   3910  1.1  christos 	case bfd_reloc_dangerous:
   3911  1.1  christos 	case bfd_reloc_outofrange:
   3912  1.1  christos 	case bfd_reloc_overflow:
   3913  1.1  christos 	default:
   3914  1.1  christos 	  {
   3915  1.1  christos 	    const char *name;
   3916  1.1  christos 
   3917  1.1  christos 	    if (h)
   3918  1.1  christos 	      name = h->root.root.string;
   3919  1.1  christos 	    else
   3920  1.1  christos 	      name = bfd_elf_sym_name (input_bfd, symtab_hdr, sym,
   3921  1.1  christos 				       sym_sec);
   3922  1.1  christos 
   3923  1.1  christos 	    switch (r_type)
   3924  1.1  christos 	      {
   3925  1.1  christos 	      case R_IA64_TPREL14:
   3926  1.1  christos 	      case R_IA64_TPREL22:
   3927  1.1  christos 	      case R_IA64_TPREL64I:
   3928  1.1  christos 	      case R_IA64_DTPREL14:
   3929  1.1  christos 	      case R_IA64_DTPREL22:
   3930  1.1  christos 	      case R_IA64_DTPREL64I:
   3931  1.1  christos 	      case R_IA64_DTPREL32LSB:
   3932  1.1  christos 	      case R_IA64_DTPREL32MSB:
   3933  1.1  christos 	      case R_IA64_DTPREL64LSB:
   3934  1.1  christos 	      case R_IA64_DTPREL64MSB:
   3935  1.1  christos 	      case R_IA64_LTOFF_TPREL22:
   3936  1.1  christos 	      case R_IA64_LTOFF_DTPMOD22:
   3937  1.1  christos 	      case R_IA64_LTOFF_DTPREL22:
   3938  1.1  christos 		(*_bfd_error_handler)
   3939  1.1  christos 		  (_("%B: missing TLS section for relocation %s against `%s' at 0x%lx in section `%A'."),
   3940  1.1  christos 		   input_bfd, input_section, howto->name, name,
   3941  1.1  christos 		   rel->r_offset);
   3942  1.1  christos 		break;
   3943  1.1  christos 
   3944  1.1  christos 	      case R_IA64_PCREL21B:
   3945  1.1  christos 	      case R_IA64_PCREL21BI:
   3946  1.1  christos 	      case R_IA64_PCREL21M:
   3947  1.1  christos 	      case R_IA64_PCREL21F:
   3948  1.1  christos 		if (is_elf_hash_table (info->hash))
   3949  1.1  christos 		  {
   3950  1.1  christos 		    /* Relaxtion is always performed for ELF output.
   3951  1.1  christos 		       Overflow failures for those relocations mean
   3952  1.1  christos 		       that the section is too big to relax.  */
   3953  1.1  christos 		    (*_bfd_error_handler)
   3954  1.1  christos 		      (_("%B: Can't relax br (%s) to `%s' at 0x%lx in section `%A' with size 0x%lx (> 0x1000000)."),
   3955  1.1  christos 		       input_bfd, input_section, howto->name, name,
   3956  1.1  christos 		       rel->r_offset, input_section->size);
   3957  1.1  christos 		    break;
   3958  1.1  christos 		  }
   3959  1.1  christos 	      default:
   3960  1.1  christos 		if (!(*info->callbacks->reloc_overflow) (info,
   3961  1.1  christos 							 &h->root,
   3962  1.1  christos 							 name,
   3963  1.1  christos 							 howto->name,
   3964  1.1  christos 							 (bfd_vma) 0,
   3965  1.1  christos 							 input_bfd,
   3966  1.1  christos 							 input_section,
   3967  1.1  christos 							 rel->r_offset))
   3968  1.1  christos 		  return FALSE;
   3969  1.1  christos 		break;
   3970  1.1  christos 	      }
   3971  1.1  christos 
   3972  1.1  christos 	    ret_val = FALSE;
   3973  1.1  christos 	  }
   3974  1.1  christos 	  break;
   3975  1.1  christos 	}
   3976  1.1  christos     }
   3977  1.1  christos 
   3978  1.1  christos   return ret_val;
   3979  1.1  christos }
   3980  1.1  christos 
   3981  1.1  christos static bfd_boolean
   3982  1.1  christos elf64_ia64_finish_dynamic_symbol (bfd *output_bfd,
   3983  1.1  christos 				  struct bfd_link_info *info,
   3984  1.1  christos 				  struct elf_link_hash_entry *h,
   3985  1.1  christos 				  Elf_Internal_Sym *sym)
   3986  1.1  christos {
   3987  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   3988  1.1  christos   struct elf64_ia64_dyn_sym_info *dyn_i;
   3989  1.1  christos 
   3990  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   3991  1.1  christos   if (ia64_info == NULL)
   3992  1.1  christos     return FALSE;
   3993  1.1  christos 
   3994  1.1  christos   dyn_i = get_dyn_sym_info (ia64_info, h, NULL, NULL, FALSE);
   3995  1.1  christos 
   3996  1.1  christos   /* Fill in the PLT data, if required.  */
   3997  1.1  christos   if (dyn_i && dyn_i->want_plt)
   3998  1.1  christos     {
   3999  1.1  christos       bfd_byte *loc;
   4000  1.1  christos       asection *plt_sec;
   4001  1.1  christos       bfd_vma plt_addr, pltoff_addr, gp_val;
   4002  1.1  christos 
   4003  1.1  christos       gp_val = _bfd_get_gp_value (output_bfd);
   4004  1.1  christos 
   4005  1.1  christos       plt_sec = ia64_info->root.splt;
   4006  1.1  christos       plt_addr = 0;  /* Not used as overriden by FIXUPs.  */
   4007  1.1  christos       pltoff_addr = set_pltoff_entry (output_bfd, info, dyn_i, plt_addr, TRUE);
   4008  1.1  christos 
   4009  1.1  christos       /* Initialize the FULL PLT entry, if needed.  */
   4010  1.1  christos       if (dyn_i->want_plt2)
   4011  1.1  christos 	{
   4012  1.1  christos 	  loc = plt_sec->contents + dyn_i->plt2_offset;
   4013  1.1  christos 
   4014  1.1  christos 	  memcpy (loc, plt_full_entry, PLT_FULL_ENTRY_SIZE);
   4015  1.1  christos 	  ia64_elf_install_value (loc, pltoff_addr - gp_val, R_IA64_IMM22);
   4016  1.1  christos 
   4017  1.1  christos 	  /* Mark the symbol as undefined, rather than as defined in the
   4018  1.1  christos 	     plt section.  Leave the value alone.  */
   4019  1.1  christos 	  /* ??? We didn't redefine it in adjust_dynamic_symbol in the
   4020  1.1  christos 	     first place.  But perhaps elflink.c did some for us.  */
   4021  1.1  christos 	  if (!h->def_regular)
   4022  1.1  christos 	    sym->st_shndx = SHN_UNDEF;
   4023  1.1  christos 	}
   4024  1.1  christos 
   4025  1.1  christos       /* VMS: FIXFD.  */
   4026  1.1  christos       elf64_ia64_install_fixup
   4027  1.1  christos         (output_bfd, ia64_info, h, R_IA64_VMS_FIXFD, ia64_info->pltoff_sec,
   4028  1.1  christos          pltoff_addr - (ia64_info->pltoff_sec->output_section->vma
   4029  1.1  christos                         + ia64_info->pltoff_sec->output_offset), 0);
   4030  1.1  christos     }
   4031  1.1  christos 
   4032  1.1  christos   /* Mark some specially defined symbols as absolute.  */
   4033  1.1  christos   if (h == ia64_info->root.hdynamic
   4034  1.1  christos       || h == ia64_info->root.hgot
   4035  1.1  christos       || h == ia64_info->root.hplt)
   4036  1.1  christos     sym->st_shndx = SHN_ABS;
   4037  1.1  christos 
   4038  1.1  christos   return TRUE;
   4039  1.1  christos }
   4040  1.1  christos 
   4041  1.1  christos static bfd_boolean
   4042  1.1  christos elf64_ia64_finish_dynamic_sections (bfd *abfd,
   4043  1.1  christos 				    struct bfd_link_info *info)
   4044  1.1  christos {
   4045  1.1  christos   struct elf64_ia64_link_hash_table *ia64_info;
   4046  1.1  christos   bfd *dynobj;
   4047  1.1  christos 
   4048  1.1  christos   ia64_info = elf64_ia64_hash_table (info);
   4049  1.1  christos   if (ia64_info == NULL)
   4050  1.1  christos     return FALSE;
   4051  1.1  christos 
   4052  1.1  christos   dynobj = ia64_info->root.dynobj;
   4053  1.1  christos 
   4054  1.1  christos   if (elf_hash_table (info)->dynamic_sections_created)
   4055  1.1  christos     {
   4056  1.1  christos       Elf64_External_Dyn *dyncon, *dynconend;
   4057  1.1  christos       asection *sdyn;
   4058  1.1  christos       asection *unwind_sec;
   4059  1.1  christos       bfd_vma gp_val;
   4060  1.1  christos       unsigned int gp_seg;
   4061  1.1  christos       bfd_vma gp_off;
   4062  1.1  christos       Elf_Internal_Phdr *phdr;
   4063  1.1  christos       Elf_Internal_Phdr *base_phdr;
   4064  1.1  christos       unsigned int unwind_seg = 0;
   4065  1.1  christos       unsigned int code_seg = 0;
   4066  1.1  christos 
   4067  1.1  christos       sdyn = bfd_get_linker_section (dynobj, ".dynamic");
   4068  1.1  christos       BFD_ASSERT (sdyn != NULL);
   4069  1.1  christos       dyncon = (Elf64_External_Dyn *) sdyn->contents;
   4070  1.1  christos       dynconend = (Elf64_External_Dyn *) (sdyn->contents + sdyn->size);
   4071  1.1  christos 
   4072  1.1  christos       gp_val = _bfd_get_gp_value (abfd);
   4073  1.1  christos       phdr = _bfd_elf_find_segment_containing_section
   4074  1.1  christos         (info->output_bfd, ia64_info->pltoff_sec->output_section);
   4075  1.1  christos       BFD_ASSERT (phdr != NULL);
   4076  1.1  christos       base_phdr = elf_tdata (info->output_bfd)->phdr;
   4077  1.1  christos       gp_seg = phdr - base_phdr;
   4078  1.1  christos       gp_off = gp_val - phdr->p_vaddr;
   4079  1.1  christos 
   4080  1.1  christos       unwind_sec = bfd_get_section_by_name (abfd, ELF_STRING_ia64_unwind);
   4081  1.1  christos       if (unwind_sec != NULL)
   4082  1.1  christos         {
   4083  1.1  christos           asection *code_sec;
   4084  1.1  christos 
   4085  1.1  christos           phdr = _bfd_elf_find_segment_containing_section (abfd, unwind_sec);
   4086  1.1  christos           BFD_ASSERT (phdr != NULL);
   4087  1.1  christos           unwind_seg = phdr - base_phdr;
   4088  1.1  christos 
   4089  1.1  christos           code_sec = bfd_get_section_by_name (abfd, "$CODE$");
   4090  1.1  christos           phdr = _bfd_elf_find_segment_containing_section (abfd, code_sec);
   4091  1.1  christos           BFD_ASSERT (phdr != NULL);
   4092  1.1  christos           code_seg = phdr - base_phdr;
   4093  1.1  christos         }
   4094  1.1  christos 
   4095  1.1  christos       for (; dyncon < dynconend; dyncon++)
   4096  1.1  christos 	{
   4097  1.1  christos 	  Elf_Internal_Dyn dyn;
   4098  1.1  christos 
   4099  1.1  christos 	  bfd_elf64_swap_dyn_in (dynobj, dyncon, &dyn);
   4100  1.1  christos 
   4101  1.1  christos 	  switch (dyn.d_tag)
   4102  1.1  christos 	    {
   4103  1.1  christos             case DT_IA_64_VMS_FIXUP_RELA_OFF:
   4104  1.1  christos               dyn.d_un.d_val +=
   4105  1.1  christos                 (ia64_info->fixups_sec->output_section->vma
   4106  1.1  christos                  + ia64_info->fixups_sec->output_offset)
   4107  1.1  christos                 - (sdyn->output_section->vma + sdyn->output_offset);
   4108  1.1  christos               break;
   4109  1.1  christos 
   4110  1.1  christos             case DT_IA_64_VMS_PLTGOT_OFFSET:
   4111  1.1  christos               dyn.d_un.d_val = gp_off;
   4112  1.1  christos               break;
   4113  1.1  christos 
   4114  1.1  christos             case DT_IA_64_VMS_PLTGOT_SEG:
   4115  1.1  christos               dyn.d_un.d_val = gp_seg;
   4116  1.1  christos               break;
   4117  1.1  christos 
   4118  1.1  christos             case DT_IA_64_VMS_UNWINDSZ:
   4119  1.1  christos               if (unwind_sec == NULL)
   4120  1.1  christos                 {
   4121  1.1  christos                   dyn.d_tag = DT_NULL;
   4122  1.1  christos                   dyn.d_un.d_val = 0xdead;
   4123  1.1  christos                 }
   4124  1.1  christos               else
   4125  1.1  christos                 dyn.d_un.d_val = unwind_sec->size;
   4126  1.1  christos               break;
   4127  1.1  christos 
   4128  1.1  christos             case DT_IA_64_VMS_UNWIND_CODSEG:
   4129  1.1  christos               dyn.d_un.d_val = code_seg;
   4130  1.1  christos               break;
   4131  1.1  christos 
   4132  1.1  christos             case DT_IA_64_VMS_UNWIND_INFOSEG:
   4133  1.1  christos             case DT_IA_64_VMS_UNWIND_SEG:
   4134  1.1  christos               dyn.d_un.d_val = unwind_seg;
   4135  1.1  christos               break;
   4136  1.1  christos 
   4137  1.1  christos             case DT_IA_64_VMS_UNWIND_OFFSET:
   4138  1.1  christos               break;
   4139  1.1  christos 
   4140  1.1  christos             default:
   4141  1.1  christos               /* No need to rewrite the entry.  */
   4142  1.1  christos               continue;
   4143  1.1  christos 	    }
   4144  1.1  christos 
   4145  1.1  christos 	  bfd_elf64_swap_dyn_out (abfd, &dyn, dyncon);
   4146  1.1  christos 	}
   4147  1.1  christos     }
   4148  1.1  christos 
   4149  1.1  christos   /* Handle transfer addresses.  */
   4150  1.1  christos   {
   4151  1.1  christos     asection *tfr_sec = ia64_info->transfer_sec;
   4152  1.1  christos     struct elf64_vms_transfer *tfr;
   4153  1.1  christos     struct elf_link_hash_entry *tfr3;
   4154  1.1  christos 
   4155  1.1  christos     tfr = (struct elf64_vms_transfer *)tfr_sec->contents;
   4156  1.1  christos     bfd_putl32 (6 * 8, tfr->size);
   4157  1.1  christos     bfd_putl64 (tfr_sec->output_section->vma
   4158  1.1  christos                 + tfr_sec->output_offset
   4159  1.1  christos                 + 6 * 8, tfr->tfradr3);
   4160  1.1  christos 
   4161  1.1  christos     tfr3 = elf_link_hash_lookup (elf_hash_table (info), "ELF$TFRADR", FALSE,
   4162  1.1  christos                                  FALSE, FALSE);
   4163  1.1  christos 
   4164  1.1  christos     if (tfr3
   4165  1.1  christos         && (tfr3->root.type == bfd_link_hash_defined
   4166  1.1  christos             || tfr3->root.type == bfd_link_hash_defweak))
   4167  1.1  christos       {
   4168  1.1  christos         asection *tfr3_sec = tfr3->root.u.def.section;
   4169  1.1  christos         bfd_vma tfr3_val;
   4170  1.1  christos 
   4171  1.1  christos         tfr3_val = (tfr3->root.u.def.value
   4172  1.1  christos                     + tfr3_sec->output_section->vma
   4173  1.1  christos                     + tfr3_sec->output_offset);
   4174  1.1  christos 
   4175  1.1  christos         bfd_putl64 (tfr3_val, tfr->tfr3_func);
   4176  1.1  christos         bfd_putl64 (_bfd_get_gp_value (info->output_bfd), tfr->tfr3_gp);
   4177  1.1  christos       }
   4178  1.1  christos 
   4179  1.1  christos     /* FIXME: set linker flags,
   4180  1.1  christos        handle lib$initialize.  */
   4181  1.1  christos   }
   4182  1.1  christos 
   4183  1.1  christos   return TRUE;
   4184  1.1  christos }
   4185  1.1  christos 
   4186  1.1  christos /* ELF file flag handling:  */
   4187  1.1  christos 
   4188  1.1  christos /* Function to keep IA-64 specific file flags.  */
   4189  1.1  christos static bfd_boolean
   4190  1.1  christos elf64_ia64_set_private_flags (bfd *abfd, flagword flags)
   4191  1.1  christos {
   4192  1.1  christos   BFD_ASSERT (!elf_flags_init (abfd)
   4193  1.1  christos 	      || elf_elfheader (abfd)->e_flags == flags);
   4194  1.1  christos 
   4195  1.1  christos   elf_elfheader (abfd)->e_flags = flags;
   4196  1.1  christos   elf_flags_init (abfd) = TRUE;
   4197  1.1  christos   return TRUE;
   4198  1.1  christos }
   4199  1.1  christos 
   4200  1.1  christos /* Merge backend specific data from an object file to the output
   4201  1.1  christos    object file when linking.  */
   4202  1.1  christos static bfd_boolean
   4203  1.1  christos elf64_ia64_merge_private_bfd_data (bfd *ibfd, bfd *obfd)
   4204  1.1  christos {
   4205  1.1  christos   flagword out_flags;
   4206  1.1  christos   flagword in_flags;
   4207  1.1  christos   bfd_boolean ok = TRUE;
   4208  1.1  christos 
   4209  1.1  christos   /* Don't even pretend to support mixed-format linking.  */
   4210  1.1  christos   if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
   4211  1.1  christos       || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
   4212  1.1  christos     return FALSE;
   4213  1.1  christos 
   4214  1.1  christos   in_flags  = elf_elfheader (ibfd)->e_flags;
   4215  1.1  christos   out_flags = elf_elfheader (obfd)->e_flags;
   4216  1.1  christos 
   4217  1.1  christos   if (! elf_flags_init (obfd))
   4218  1.1  christos     {
   4219  1.1  christos       elf_flags_init (obfd) = TRUE;
   4220  1.1  christos       elf_elfheader (obfd)->e_flags = in_flags;
   4221  1.1  christos 
   4222  1.1  christos       if (bfd_get_arch (obfd) == bfd_get_arch (ibfd)
   4223  1.1  christos 	  && bfd_get_arch_info (obfd)->the_default)
   4224  1.1  christos 	{
   4225  1.1  christos 	  return bfd_set_arch_mach (obfd, bfd_get_arch (ibfd),
   4226  1.1  christos 				    bfd_get_mach (ibfd));
   4227  1.1  christos 	}
   4228  1.1  christos 
   4229  1.1  christos       return TRUE;
   4230  1.1  christos     }
   4231  1.1  christos 
   4232  1.1  christos   /* Check flag compatibility.  */
   4233  1.1  christos   if (in_flags == out_flags)
   4234  1.1  christos     return TRUE;
   4235  1.1  christos 
   4236  1.1  christos   /* Output has EF_IA_64_REDUCEDFP set only if all inputs have it set.  */
   4237  1.1  christos   if (!(in_flags & EF_IA_64_REDUCEDFP) && (out_flags & EF_IA_64_REDUCEDFP))
   4238  1.1  christos     elf_elfheader (obfd)->e_flags &= ~EF_IA_64_REDUCEDFP;
   4239  1.1  christos 
   4240  1.1  christos   if ((in_flags & EF_IA_64_TRAPNIL) != (out_flags & EF_IA_64_TRAPNIL))
   4241  1.1  christos     {
   4242  1.1  christos       (*_bfd_error_handler)
   4243  1.1  christos 	(_("%B: linking trap-on-NULL-dereference with non-trapping files"),
   4244  1.1  christos 	 ibfd);
   4245  1.1  christos 
   4246  1.1  christos       bfd_set_error (bfd_error_bad_value);
   4247  1.1  christos       ok = FALSE;
   4248  1.1  christos     }
   4249  1.1  christos   if ((in_flags & EF_IA_64_BE) != (out_flags & EF_IA_64_BE))
   4250  1.1  christos     {
   4251  1.1  christos       (*_bfd_error_handler)
   4252  1.1  christos 	(_("%B: linking big-endian files with little-endian files"),
   4253  1.1  christos 	 ibfd);
   4254  1.1  christos 
   4255  1.1  christos       bfd_set_error (bfd_error_bad_value);
   4256  1.1  christos       ok = FALSE;
   4257  1.1  christos     }
   4258  1.1  christos   if ((in_flags & EF_IA_64_ABI64) != (out_flags & EF_IA_64_ABI64))
   4259  1.1  christos     {
   4260  1.1  christos       (*_bfd_error_handler)
   4261  1.1  christos 	(_("%B: linking 64-bit files with 32-bit files"),
   4262  1.1  christos 	 ibfd);
   4263  1.1  christos 
   4264  1.1  christos       bfd_set_error (bfd_error_bad_value);
   4265  1.1  christos       ok = FALSE;
   4266  1.1  christos     }
   4267  1.1  christos   if ((in_flags & EF_IA_64_CONS_GP) != (out_flags & EF_IA_64_CONS_GP))
   4268  1.1  christos     {
   4269  1.1  christos       (*_bfd_error_handler)
   4270  1.1  christos 	(_("%B: linking constant-gp files with non-constant-gp files"),
   4271  1.1  christos 	 ibfd);
   4272  1.1  christos 
   4273  1.1  christos       bfd_set_error (bfd_error_bad_value);
   4274  1.1  christos       ok = FALSE;
   4275  1.1  christos     }
   4276  1.1  christos   if ((in_flags & EF_IA_64_NOFUNCDESC_CONS_GP)
   4277  1.1  christos       != (out_flags & EF_IA_64_NOFUNCDESC_CONS_GP))
   4278  1.1  christos     {
   4279  1.1  christos       (*_bfd_error_handler)
   4280  1.1  christos 	(_("%B: linking auto-pic files with non-auto-pic files"),
   4281  1.1  christos 	 ibfd);
   4282  1.1  christos 
   4283  1.1  christos       bfd_set_error (bfd_error_bad_value);
   4284  1.1  christos       ok = FALSE;
   4285  1.1  christos     }
   4286  1.1  christos 
   4287  1.1  christos   return ok;
   4288  1.1  christos }
   4289  1.1  christos 
   4290  1.1  christos static bfd_boolean
   4291  1.1  christos elf64_ia64_print_private_bfd_data (bfd *abfd, void * ptr)
   4292  1.1  christos {
   4293  1.1  christos   FILE *file = (FILE *) ptr;
   4294  1.1  christos   flagword flags = elf_elfheader (abfd)->e_flags;
   4295  1.1  christos 
   4296  1.1  christos   BFD_ASSERT (abfd != NULL && ptr != NULL);
   4297  1.1  christos 
   4298  1.1  christos   fprintf (file, "private flags = %s%s%s%s%s%s%s%s\n",
   4299  1.1  christos 	   (flags & EF_IA_64_TRAPNIL) ? "TRAPNIL, " : "",
   4300  1.1  christos 	   (flags & EF_IA_64_EXT) ? "EXT, " : "",
   4301  1.1  christos 	   (flags & EF_IA_64_BE) ? "BE, " : "LE, ",
   4302  1.1  christos 	   (flags & EF_IA_64_REDUCEDFP) ? "REDUCEDFP, " : "",
   4303  1.1  christos 	   (flags & EF_IA_64_CONS_GP) ? "CONS_GP, " : "",
   4304  1.1  christos 	   (flags & EF_IA_64_NOFUNCDESC_CONS_GP) ? "NOFUNCDESC_CONS_GP, " : "",
   4305  1.1  christos 	   (flags & EF_IA_64_ABSOLUTE) ? "ABSOLUTE, " : "",
   4306  1.1  christos 	   (flags & EF_IA_64_ABI64) ? "ABI64" : "ABI32");
   4307  1.1  christos 
   4308  1.1  christos   _bfd_elf_print_private_bfd_data (abfd, ptr);
   4309  1.1  christos   return TRUE;
   4310  1.1  christos }
   4311  1.1  christos 
   4312  1.1  christos static enum elf_reloc_type_class
   4313  1.1  christos elf64_ia64_reloc_type_class (const Elf_Internal_Rela *rela)
   4314  1.1  christos {
   4315  1.1  christos   switch ((int) ELF64_R_TYPE (rela->r_info))
   4316  1.1  christos     {
   4317  1.1  christos     case R_IA64_REL32MSB:
   4318  1.1  christos     case R_IA64_REL32LSB:
   4319  1.1  christos     case R_IA64_REL64MSB:
   4320  1.1  christos     case R_IA64_REL64LSB:
   4321  1.1  christos       return reloc_class_relative;
   4322  1.1  christos     case R_IA64_IPLTMSB:
   4323  1.1  christos     case R_IA64_IPLTLSB:
   4324  1.1  christos       return reloc_class_plt;
   4325  1.1  christos     case R_IA64_COPY:
   4326  1.1  christos       return reloc_class_copy;
   4327  1.1  christos     default:
   4328  1.1  christos       return reloc_class_normal;
   4329  1.1  christos     }
   4330  1.1  christos }
   4331  1.1  christos 
   4332  1.1  christos static const struct bfd_elf_special_section elf64_ia64_special_sections[] =
   4333  1.1  christos {
   4334  1.1  christos   { STRING_COMMA_LEN (".sbss"),  -1, SHT_NOBITS,   SHF_ALLOC + SHF_WRITE + SHF_IA_64_SHORT },
   4335  1.1  christos   { STRING_COMMA_LEN (".sdata"), -1, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE + SHF_IA_64_SHORT },
   4336  1.1  christos   { NULL,                    0,   0, 0,            0 }
   4337  1.1  christos };
   4338  1.1  christos 
   4339  1.1  christos static bfd_boolean
   4340  1.1  christos elf64_ia64_object_p (bfd *abfd)
   4341  1.1  christos {
   4342  1.1  christos   asection *sec;
   4343  1.1  christos   asection *group, *unwi, *unw;
   4344  1.1  christos   flagword flags;
   4345  1.1  christos   const char *name;
   4346  1.1  christos   char *unwi_name, *unw_name;
   4347  1.1  christos   bfd_size_type amt;
   4348  1.1  christos 
   4349  1.1  christos   if (abfd->flags & DYNAMIC)
   4350  1.1  christos     return TRUE;
   4351  1.1  christos 
   4352  1.1  christos   /* Flags for fake group section.  */
   4353  1.1  christos   flags = (SEC_LINKER_CREATED | SEC_GROUP | SEC_LINK_ONCE
   4354  1.1  christos 	   | SEC_EXCLUDE);
   4355  1.1  christos 
   4356  1.1  christos   /* We add a fake section group for each .gnu.linkonce.t.* section,
   4357  1.1  christos      which isn't in a section group, and its unwind sections.  */
   4358  1.1  christos   for (sec = abfd->sections; sec != NULL; sec = sec->next)
   4359  1.1  christos     {
   4360  1.1  christos       if (elf_sec_group (sec) == NULL
   4361  1.1  christos 	  && ((sec->flags & (SEC_LINK_ONCE | SEC_CODE | SEC_GROUP))
   4362  1.1  christos 	      == (SEC_LINK_ONCE | SEC_CODE))
   4363  1.1  christos 	  && CONST_STRNEQ (sec->name, ".gnu.linkonce.t."))
   4364  1.1  christos 	{
   4365  1.1  christos 	  name = sec->name + 16;
   4366  1.1  christos 
   4367  1.1  christos 	  amt = strlen (name) + sizeof (".gnu.linkonce.ia64unwi.");
   4368  1.1  christos 	  unwi_name = bfd_alloc (abfd, amt);
   4369  1.1  christos 	  if (!unwi_name)
   4370  1.1  christos 	    return FALSE;
   4371  1.1  christos 
   4372  1.1  christos 	  strcpy (stpcpy (unwi_name, ".gnu.linkonce.ia64unwi."), name);
   4373  1.1  christos 	  unwi = bfd_get_section_by_name (abfd, unwi_name);
   4374  1.1  christos 
   4375  1.1  christos 	  amt = strlen (name) + sizeof (".gnu.linkonce.ia64unw.");
   4376  1.1  christos 	  unw_name = bfd_alloc (abfd, amt);
   4377  1.1  christos 	  if (!unw_name)
   4378  1.1  christos 	    return FALSE;
   4379  1.1  christos 
   4380  1.1  christos 	  strcpy (stpcpy (unw_name, ".gnu.linkonce.ia64unw."), name);
   4381  1.1  christos 	  unw = bfd_get_section_by_name (abfd, unw_name);
   4382  1.1  christos 
   4383  1.1  christos 	  /* We need to create a fake group section for it and its
   4384  1.1  christos 	     unwind sections.  */
   4385  1.1  christos 	  group = bfd_make_section_anyway_with_flags (abfd, name,
   4386  1.1  christos 						      flags);
   4387  1.1  christos 	  if (group == NULL)
   4388  1.1  christos 	    return FALSE;
   4389  1.1  christos 
   4390  1.1  christos 	  /* Move the fake group section to the beginning.  */
   4391  1.1  christos 	  bfd_section_list_remove (abfd, group);
   4392  1.1  christos 	  bfd_section_list_prepend (abfd, group);
   4393  1.1  christos 
   4394  1.1  christos 	  elf_next_in_group (group) = sec;
   4395  1.1  christos 
   4396  1.1  christos 	  elf_group_name (sec) = name;
   4397  1.1  christos 	  elf_next_in_group (sec) = sec;
   4398  1.1  christos 	  elf_sec_group (sec) = group;
   4399  1.1  christos 
   4400  1.1  christos 	  if (unwi)
   4401  1.1  christos 	    {
   4402  1.1  christos 	      elf_group_name (unwi) = name;
   4403  1.1  christos 	      elf_next_in_group (unwi) = sec;
   4404  1.1  christos 	      elf_next_in_group (sec) = unwi;
   4405  1.1  christos 	      elf_sec_group (unwi) = group;
   4406  1.1  christos 	    }
   4407  1.1  christos 
   4408  1.1  christos 	   if (unw)
   4409  1.1  christos 	     {
   4410  1.1  christos 	       elf_group_name (unw) = name;
   4411  1.1  christos 	       if (unwi)
   4412  1.1  christos 		 {
   4413  1.1  christos 		   elf_next_in_group (unw) = elf_next_in_group (unwi);
   4414  1.1  christos 		   elf_next_in_group (unwi) = unw;
   4415  1.1  christos 		 }
   4416  1.1  christos 	       else
   4417  1.1  christos 		 {
   4418  1.1  christos 		   elf_next_in_group (unw) = sec;
   4419  1.1  christos 		   elf_next_in_group (sec) = unw;
   4420  1.1  christos 		 }
   4421  1.1  christos 	       elf_sec_group (unw) = group;
   4422  1.1  christos 	     }
   4423  1.1  christos 
   4424  1.1  christos 	   /* Fake SHT_GROUP section header.  */
   4425  1.1  christos 	  elf_section_data (group)->this_hdr.bfd_section = group;
   4426  1.1  christos 	  elf_section_data (group)->this_hdr.sh_type = SHT_GROUP;
   4427  1.1  christos 	}
   4428  1.1  christos     }
   4429  1.1  christos   return TRUE;
   4430  1.1  christos }
   4431  1.1  christos 
   4432  1.1  christos /* Handle an IA-64 specific section when reading an object file.  This
   4433  1.1  christos    is called when bfd_section_from_shdr finds a section with an unknown
   4434  1.1  christos    type.  */
   4435  1.1  christos 
   4436  1.1  christos static bfd_boolean
   4437  1.1  christos elf64_vms_section_from_shdr (bfd *abfd,
   4438  1.1  christos 			     Elf_Internal_Shdr *hdr,
   4439  1.1  christos 			     const char *name,
   4440  1.1  christos 			     int shindex)
   4441  1.1  christos {
   4442  1.1  christos   flagword secflags = 0;
   4443  1.1  christos 
   4444  1.1  christos   switch (hdr->sh_type)
   4445  1.1  christos     {
   4446  1.1  christos     case SHT_IA_64_VMS_TRACE:
   4447  1.1  christos     case SHT_IA_64_VMS_DEBUG:
   4448  1.1  christos     case SHT_IA_64_VMS_DEBUG_STR:
   4449  1.1  christos       secflags = SEC_DEBUGGING;
   4450  1.1  christos       break;
   4451  1.1  christos 
   4452  1.1  christos     case SHT_IA_64_UNWIND:
   4453  1.1  christos     case SHT_IA_64_HP_OPT_ANOT:
   4454  1.1  christos       break;
   4455  1.1  christos 
   4456  1.1  christos     case SHT_IA_64_EXT:
   4457  1.1  christos       if (strcmp (name, ELF_STRING_ia64_archext) != 0)
   4458  1.1  christos 	return FALSE;
   4459  1.1  christos       break;
   4460  1.1  christos 
   4461  1.1  christos     default:
   4462  1.1  christos       return FALSE;
   4463  1.1  christos     }
   4464  1.1  christos 
   4465  1.1  christos   if (! _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex))
   4466  1.1  christos     return FALSE;
   4467  1.1  christos 
   4468  1.1  christos   if (secflags != 0)
   4469  1.1  christos     {
   4470  1.1  christos       asection *newsect = hdr->bfd_section;
   4471  1.1  christos 
   4472  1.1  christos       if (! bfd_set_section_flags
   4473  1.1  christos           (abfd, newsect, bfd_get_section_flags (abfd, newsect) | secflags))
   4474  1.1  christos 	return FALSE;
   4475  1.1  christos     }
   4476  1.1  christos 
   4477  1.1  christos   return TRUE;
   4478  1.1  christos }
   4479  1.1  christos 
   4480  1.1  christos static bfd_boolean
   4481  1.1  christos elf64_vms_object_p (bfd *abfd)
   4482  1.1  christos {
   4483  1.1  christos   Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd);
   4484  1.1  christos   Elf_Internal_Phdr *i_phdr = elf_tdata (abfd)->phdr;
   4485  1.1  christos   unsigned int i;
   4486  1.1  christos   unsigned int num_text = 0;
   4487  1.1  christos   unsigned int num_data = 0;
   4488  1.1  christos   unsigned int num_rodata = 0;
   4489  1.1  christos   char name[16];
   4490  1.1  christos 
   4491  1.1  christos   if (!elf64_ia64_object_p (abfd))
   4492  1.1  christos     return FALSE;
   4493  1.1  christos 
   4494  1.1  christos   /* Many VMS compilers do not generate sections for the corresponding
   4495  1.1  christos      segment.  This is boring as binutils tools won't be able to disassemble
   4496  1.1  christos      the code.  So we simply create all the missing sections.  */
   4497  1.1  christos   for (i = 0; i < i_ehdrp->e_phnum; i++, i_phdr++)
   4498  1.1  christos     {
   4499  1.1  christos       /* Is there a section for this segment?  */
   4500  1.1  christos       bfd_vma base_vma = i_phdr->p_vaddr;
   4501  1.1  christos       bfd_vma limit_vma = base_vma + i_phdr->p_filesz;
   4502  1.1  christos 
   4503  1.1  christos       if (i_phdr->p_type != PT_LOAD)
   4504  1.1  christos 	continue;
   4505  1.1  christos 
   4506  1.1  christos       /* We need to cover from base_vms to limit_vma.  */
   4507  1.1  christos     again:
   4508  1.1  christos       while (base_vma < limit_vma)
   4509  1.1  christos 	{
   4510  1.1  christos 	  bfd_vma next_vma = limit_vma;
   4511  1.1  christos 	  asection *nsec;
   4512  1.1  christos 	  asection *sec;
   4513  1.1  christos 	  flagword flags;
   4514  1.1  christos 	  char *nname = NULL;
   4515  1.1  christos 
   4516  1.1  christos 	  /* Find a section covering [base_vma;limit_vma)  */
   4517  1.1  christos 	  for (sec = abfd->sections; sec != NULL; sec = sec->next)
   4518  1.1  christos 	    {
   4519  1.1  christos 	      /* Skip uninteresting sections (either not in memory or
   4520  1.1  christos 		 below base_vma.  */
   4521  1.1  christos 	      if ((sec->flags & (SEC_ALLOC | SEC_LOAD)) == 0
   4522  1.1  christos 		  || sec->vma + sec->size <= base_vma)
   4523  1.1  christos 		continue;
   4524  1.1  christos 	      if (sec->vma <= base_vma)
   4525  1.1  christos 		{
   4526  1.1  christos 		  /* This section covers (maybe partially) the beginning
   4527  1.1  christos 		     of the range.  */
   4528  1.1  christos 		  base_vma = sec->vma + sec->size;
   4529  1.1  christos 		  goto again;
   4530  1.1  christos 		}
   4531  1.1  christos 	      if (sec->vma < next_vma)
   4532  1.1  christos 		{
   4533  1.1  christos 		  /* This section partially covers the end of the range.
   4534  1.1  christos 		     Used to compute the size of the hole.  */
   4535  1.1  christos 		  next_vma = sec->vma;
   4536  1.1  christos 		}
   4537  1.1  christos 	    }
   4538  1.1  christos 
   4539  1.1  christos 	  /* No section covering [base_vma; next_vma).  Create a fake one.  */
   4540  1.1  christos 	  flags = SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS;
   4541  1.1  christos 	  if (i_phdr->p_flags & PF_X)
   4542  1.1  christos 	    {
   4543  1.1  christos 	      flags |= SEC_CODE;
   4544  1.1  christos 	      if (num_text++ == 0)
   4545  1.1  christos 		nname = ".text";
   4546  1.1  christos 	      else
   4547  1.1  christos 		sprintf (name, ".text$%u", num_text);
   4548  1.1  christos 	    }
   4549  1.1  christos 	  else if ((i_phdr->p_flags & (PF_R | PF_W)) == PF_R)
   4550  1.1  christos 	    {
   4551  1.1  christos 	      flags |= SEC_READONLY;
   4552  1.1  christos 	      sprintf (name, ".rodata$%u", num_rodata++);
   4553  1.1  christos 	    }
   4554  1.1  christos 	  else
   4555  1.1  christos 	    {
   4556  1.1  christos 	      flags |= SEC_DATA;
   4557  1.1  christos 	      sprintf (name, ".data$%u", num_data++);
   4558  1.1  christos 	    }
   4559  1.1  christos 
   4560  1.1  christos 	  /* Allocate name.  */
   4561  1.1  christos 	  if (nname == NULL)
   4562  1.1  christos 	    {
   4563  1.1  christos 	      size_t name_len = strlen (name) + 1;
   4564  1.1  christos 	      nname = bfd_alloc (abfd, name_len);
   4565  1.1  christos 	      if (nname == NULL)
   4566  1.1  christos 		return FALSE;
   4567  1.1  christos 	      memcpy (nname, name, name_len);
   4568  1.1  christos 	    }
   4569  1.1  christos 
   4570  1.1  christos 	  /* Create and fill new section.  */
   4571  1.1  christos 	  nsec = bfd_make_section_anyway_with_flags (abfd, nname, flags);
   4572  1.1  christos 	  if (nsec == NULL)
   4573  1.1  christos 	    return FALSE;
   4574  1.1  christos 	  nsec->vma = base_vma;
   4575  1.1  christos 	  nsec->size = next_vma - base_vma;
   4576  1.1  christos 	  nsec->filepos = i_phdr->p_offset + (base_vma - i_phdr->p_vaddr);
   4577  1.1  christos 
   4578  1.1  christos 	  base_vma = next_vma;
   4579  1.1  christos 	}
   4580  1.1  christos     }
   4581  1.1  christos   return TRUE;
   4582  1.1  christos }
   4583  1.1  christos 
   4584  1.1  christos static void
   4585  1.1  christos elf64_vms_post_process_headers (bfd *abfd,
   4586  1.1  christos 				struct bfd_link_info *info ATTRIBUTE_UNUSED)
   4587  1.1  christos {
   4588  1.1  christos   Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd);
   4589  1.1  christos 
   4590  1.1  christos   i_ehdrp->e_ident[EI_OSABI] = ELFOSABI_OPENVMS;
   4591  1.1  christos   i_ehdrp->e_ident[EI_ABIVERSION] = 2;
   4592  1.1  christos }
   4593  1.1  christos 
   4594  1.1  christos static bfd_boolean
   4595  1.1  christos elf64_vms_section_processing (bfd *abfd ATTRIBUTE_UNUSED,
   4596  1.1  christos 			      Elf_Internal_Shdr *hdr)
   4597  1.1  christos {
   4598  1.1  christos   if (hdr->bfd_section != NULL)
   4599  1.1  christos     {
   4600  1.1  christos       const char *name = bfd_get_section_name (abfd, hdr->bfd_section);
   4601  1.1  christos 
   4602  1.1  christos       if (strcmp (name, ".text") == 0)
   4603  1.1  christos 	hdr->sh_flags |= SHF_IA_64_VMS_SHARED;
   4604  1.1  christos       else if ((strcmp (name, ".debug") == 0)
   4605  1.1  christos 	    || (strcmp (name, ".debug_abbrev") == 0)
   4606  1.1  christos 	    || (strcmp (name, ".debug_aranges") == 0)
   4607  1.1  christos 	    || (strcmp (name, ".debug_frame") == 0)
   4608  1.1  christos 	    || (strcmp (name, ".debug_info") == 0)
   4609  1.1  christos 	    || (strcmp (name, ".debug_loc") == 0)
   4610  1.1  christos 	    || (strcmp (name, ".debug_macinfo") == 0)
   4611  1.1  christos 	    || (strcmp (name, ".debug_pubnames") == 0)
   4612  1.1  christos 	    || (strcmp (name, ".debug_pubtypes") == 0))
   4613  1.1  christos 	hdr->sh_type = SHT_IA_64_VMS_DEBUG;
   4614  1.1  christos       else if ((strcmp (name, ".debug_line") == 0)
   4615  1.1  christos 	    || (strcmp (name, ".debug_ranges") == 0)
   4616  1.1  christos 	    || (strcmp (name, ".trace_info") == 0)
   4617  1.1  christos 	    || (strcmp (name, ".trace_abbrev") == 0)
   4618  1.1  christos 	    || (strcmp (name, ".trace_aranges") == 0))
   4619  1.1  christos 	hdr->sh_type = SHT_IA_64_VMS_TRACE;
   4620  1.1  christos       else if (strcmp (name, ".debug_str") == 0)
   4621  1.1  christos 	hdr->sh_type = SHT_IA_64_VMS_DEBUG_STR;
   4622  1.1  christos     }
   4623  1.1  christos 
   4624  1.1  christos   return TRUE;
   4625  1.1  christos }
   4626  1.1  christos 
   4627  1.1  christos /* The final processing done just before writing out a VMS IA-64 ELF
   4628  1.1  christos    object file.  */
   4629  1.1  christos 
   4630  1.1  christos static void
   4631  1.1  christos elf64_vms_final_write_processing (bfd *abfd,
   4632  1.1  christos 				  bfd_boolean linker ATTRIBUTE_UNUSED)
   4633  1.1  christos {
   4634  1.1  christos   Elf_Internal_Shdr *hdr;
   4635  1.1  christos   asection *s;
   4636  1.1  christos   int unwind_info_sect_idx = 0;
   4637  1.1  christos 
   4638  1.1  christos   for (s = abfd->sections; s; s = s->next)
   4639  1.1  christos     {
   4640  1.1  christos       hdr = &elf_section_data (s)->this_hdr;
   4641  1.1  christos 
   4642  1.1  christos       if (strcmp (bfd_get_section_name (abfd, hdr->bfd_section),
   4643  1.1  christos 		  ".IA_64.unwind_info") == 0)
   4644  1.1  christos 	unwind_info_sect_idx = elf_section_data (s)->this_idx;
   4645  1.1  christos 
   4646  1.1  christos       switch (hdr->sh_type)
   4647  1.1  christos 	{
   4648  1.1  christos 	case SHT_IA_64_UNWIND:
   4649  1.1  christos 	  /* VMS requires sh_info to point to the unwind info section.  */
   4650  1.1  christos           hdr->sh_info = unwind_info_sect_idx;
   4651  1.1  christos 	  break;
   4652  1.1  christos 	}
   4653  1.1  christos     }
   4654  1.1  christos 
   4655  1.1  christos   if (! elf_flags_init (abfd))
   4656  1.1  christos     {
   4657  1.1  christos       unsigned long flags = 0;
   4658  1.1  christos 
   4659  1.1  christos       if (abfd->xvec->byteorder == BFD_ENDIAN_BIG)
   4660  1.1  christos 	flags |= EF_IA_64_BE;
   4661  1.1  christos       if (bfd_get_mach (abfd) == bfd_mach_ia64_elf64)
   4662  1.1  christos 	flags |= EF_IA_64_ABI64;
   4663  1.1  christos 
   4664  1.1  christos       elf_elfheader (abfd)->e_flags = flags;
   4665  1.1  christos       elf_flags_init (abfd) = TRUE;
   4666  1.1  christos     }
   4667  1.1  christos }
   4668  1.1  christos 
   4669  1.1  christos static bfd_boolean
   4670  1.1  christos elf64_vms_write_shdrs_and_ehdr (bfd *abfd)
   4671  1.1  christos {
   4672  1.1  christos   unsigned char needed_count[8];
   4673  1.1  christos 
   4674  1.1  christos   if (!bfd_elf64_write_shdrs_and_ehdr (abfd))
   4675  1.1  christos     return FALSE;
   4676  1.1  christos 
   4677  1.1  christos   bfd_putl64 (elf_ia64_vms_tdata (abfd)->needed_count, needed_count);
   4678  1.1  christos 
   4679  1.1  christos   if (bfd_seek (abfd, sizeof (Elf64_External_Ehdr), SEEK_SET) != 0
   4680  1.1  christos       || bfd_bwrite (needed_count, 8, abfd) != 8)
   4681  1.1  christos     return FALSE;
   4682  1.1  christos 
   4683  1.1  christos   return TRUE;
   4684  1.1  christos }
   4685  1.1  christos 
   4686  1.1  christos static bfd_boolean
   4687  1.1  christos elf64_vms_close_and_cleanup (bfd *abfd)
   4688  1.1  christos {
   4689  1.1  christos   if (bfd_get_format (abfd) == bfd_object)
   4690  1.1  christos     {
   4691  1.1  christos       long isize;
   4692  1.1  christos 
   4693  1.1  christos       /* Pad to 8 byte boundary for IPF/VMS.  */
   4694  1.1  christos       isize = bfd_get_size (abfd);
   4695  1.1  christos       if ((isize & 7) != 0)
   4696  1.1  christos 	{
   4697  1.1  christos 	  int ishort = 8 - (isize & 7);
   4698  1.1  christos           bfd_uint64_t pad = 0;
   4699  1.1  christos 
   4700  1.1  christos 	  bfd_seek (abfd, isize, SEEK_SET);
   4701  1.1  christos 	  bfd_bwrite (&pad, ishort, abfd);
   4702  1.1  christos 	}
   4703  1.1  christos     }
   4704  1.1  christos 
   4705  1.1  christos   return _bfd_elf_close_and_cleanup (abfd);
   4706  1.1  christos }
   4707  1.1  christos 
   4708  1.1  christos /* Add symbols from an ELF object file to the linker hash table.  */
   4709  1.1  christos 
   4710  1.1  christos static bfd_boolean
   4711  1.1  christos elf64_vms_link_add_object_symbols (bfd *abfd, struct bfd_link_info *info)
   4712  1.1  christos {
   4713  1.1  christos   Elf_Internal_Shdr *hdr;
   4714  1.1  christos   bfd_size_type symcount;
   4715  1.1  christos   bfd_size_type extsymcount;
   4716  1.1  christos   bfd_size_type extsymoff;
   4717  1.1  christos   struct elf_link_hash_entry **sym_hash;
   4718  1.1  christos   bfd_boolean dynamic;
   4719  1.1  christos   Elf_Internal_Sym *isymbuf = NULL;
   4720  1.1  christos   Elf_Internal_Sym *isym;
   4721  1.1  christos   Elf_Internal_Sym *isymend;
   4722  1.1  christos   const struct elf_backend_data *bed;
   4723  1.1  christos   struct elf_link_hash_table *htab;
   4724  1.1  christos   bfd_size_type amt;
   4725  1.1  christos 
   4726  1.1  christos   htab = elf_hash_table (info);
   4727  1.1  christos   bed = get_elf_backend_data (abfd);
   4728  1.1  christos 
   4729  1.1  christos   if ((abfd->flags & DYNAMIC) == 0)
   4730  1.1  christos     dynamic = FALSE;
   4731  1.1  christos   else
   4732  1.1  christos     {
   4733  1.1  christos       dynamic = TRUE;
   4734  1.1  christos 
   4735  1.1  christos       /* You can't use -r against a dynamic object.  Also, there's no
   4736  1.1  christos 	 hope of using a dynamic object which does not exactly match
   4737  1.1  christos 	 the format of the output file.  */
   4738  1.1  christos       if (info->relocatable
   4739  1.1  christos 	  || !is_elf_hash_table (htab)
   4740  1.1  christos 	  || info->output_bfd->xvec != abfd->xvec)
   4741  1.1  christos 	{
   4742  1.1  christos 	  if (info->relocatable)
   4743  1.1  christos 	    bfd_set_error (bfd_error_invalid_operation);
   4744  1.1  christos 	  else
   4745  1.1  christos 	    bfd_set_error (bfd_error_wrong_format);
   4746  1.1  christos 	  goto error_return;
   4747  1.1  christos 	}
   4748  1.1  christos     }
   4749  1.1  christos 
   4750  1.1  christos   if (! dynamic)
   4751  1.1  christos     {
   4752  1.1  christos       /* If we are creating a shared library, create all the dynamic
   4753  1.1  christos 	 sections immediately.  We need to attach them to something,
   4754  1.1  christos 	 so we attach them to this BFD, provided it is the right
   4755  1.1  christos 	 format.  FIXME: If there are no input BFD's of the same
   4756  1.1  christos 	 format as the output, we can't make a shared library.  */
   4757  1.1  christos       if (info->shared
   4758  1.1  christos 	  && is_elf_hash_table (htab)
   4759  1.1  christos 	  && info->output_bfd->xvec == abfd->xvec
   4760  1.1  christos 	  && !htab->dynamic_sections_created)
   4761  1.1  christos 	{
   4762  1.1  christos 	  if (! elf64_ia64_create_dynamic_sections (abfd, info))
   4763  1.1  christos 	    goto error_return;
   4764  1.1  christos 	}
   4765  1.1  christos     }
   4766  1.1  christos   else if (!is_elf_hash_table (htab))
   4767  1.1  christos     goto error_return;
   4768  1.1  christos   else
   4769  1.1  christos     {
   4770  1.1  christos       asection *s;
   4771  1.1  christos       bfd_byte *dynbuf;
   4772  1.1  christos       bfd_byte *extdyn;
   4773  1.1  christos 
   4774  1.1  christos       /* ld --just-symbols and dynamic objects don't mix very well.
   4775  1.1  christos 	 ld shouldn't allow it.  */
   4776  1.1  christos       if ((s = abfd->sections) != NULL
   4777  1.1  christos 	  && s->sec_info_type == SEC_INFO_TYPE_JUST_SYMS)
   4778  1.1  christos 	abort ();
   4779  1.1  christos 
   4780  1.1  christos       /* Be sure there are dynamic sections.  */
   4781  1.1  christos       if (! elf64_ia64_create_dynamic_sections (htab->dynobj, info))
   4782  1.1  christos         goto error_return;
   4783  1.1  christos 
   4784  1.1  christos       s = bfd_get_section_by_name (abfd, ".dynamic");
   4785  1.1  christos       if (s == NULL)
   4786  1.1  christos         {
   4787  1.1  christos           /* VMS libraries do not have dynamic sections.  Create one from
   4788  1.1  christos              the segment.  */
   4789  1.1  christos           Elf_Internal_Phdr *phdr;
   4790  1.1  christos           unsigned int i, phnum;
   4791  1.1  christos 
   4792  1.1  christos           phdr = elf_tdata (abfd)->phdr;
   4793  1.1  christos           if (phdr == NULL)
   4794  1.1  christos             goto error_return;
   4795  1.1  christos           phnum = elf_elfheader (abfd)->e_phnum;
   4796  1.1  christos           for (i = 0; i < phnum; phdr++)
   4797  1.1  christos             if (phdr->p_type == PT_DYNAMIC)
   4798  1.1  christos               {
   4799  1.1  christos                 s = bfd_make_section (abfd, ".dynamic");
   4800  1.1  christos                 if (s == NULL)
   4801  1.1  christos                   goto error_return;
   4802  1.1  christos                 s->vma = phdr->p_vaddr;
   4803  1.1  christos                 s->lma = phdr->p_paddr;
   4804  1.1  christos                 s->size = phdr->p_filesz;
   4805  1.1  christos                 s->filepos = phdr->p_offset;
   4806  1.1  christos                 s->flags |= SEC_HAS_CONTENTS;
   4807  1.1  christos                 s->alignment_power = bfd_log2 (phdr->p_align);
   4808  1.1  christos                 break;
   4809  1.1  christos               }
   4810  1.1  christos           if (s == NULL)
   4811  1.1  christos             goto error_return;
   4812  1.1  christos         }
   4813  1.1  christos 
   4814  1.1  christos       /* Extract IDENT.  */
   4815  1.1  christos       if (!bfd_malloc_and_get_section (abfd, s, &dynbuf))
   4816  1.1  christos         {
   4817  1.1  christos error_free_dyn:
   4818  1.1  christos           free (dynbuf);
   4819  1.1  christos           goto error_return;
   4820  1.1  christos         }
   4821  1.1  christos 
   4822  1.1  christos       for (extdyn = dynbuf;
   4823  1.1  christos            extdyn < dynbuf + s->size;
   4824  1.1  christos            extdyn += bed->s->sizeof_dyn)
   4825  1.1  christos         {
   4826  1.1  christos           Elf_Internal_Dyn dyn;
   4827  1.1  christos 
   4828  1.1  christos           bed->s->swap_dyn_in (abfd, extdyn, &dyn);
   4829  1.1  christos           if (dyn.d_tag == DT_IA_64_VMS_IDENT)
   4830  1.1  christos             {
   4831  1.1  christos               bfd_uint64_t tagv = dyn.d_un.d_val;
   4832  1.1  christos               elf_ia64_vms_ident (abfd) = tagv;
   4833  1.1  christos               break;
   4834  1.1  christos             }
   4835  1.1  christos         }
   4836  1.1  christos       if (extdyn >= dynbuf + s->size)
   4837  1.1  christos         {
   4838  1.1  christos           /* Ident not found.  */
   4839  1.1  christos           goto error_free_dyn;
   4840  1.1  christos         }
   4841  1.1  christos       free (dynbuf);
   4842  1.1  christos 
   4843  1.1  christos       /* We do not want to include any of the sections in a dynamic
   4844  1.1  christos 	 object in the output file.  We hack by simply clobbering the
   4845  1.1  christos 	 list of sections in the BFD.  This could be handled more
   4846  1.1  christos 	 cleanly by, say, a new section flag; the existing
   4847  1.1  christos 	 SEC_NEVER_LOAD flag is not the one we want, because that one
   4848  1.1  christos 	 still implies that the section takes up space in the output
   4849  1.1  christos 	 file.  */
   4850  1.1  christos       bfd_section_list_clear (abfd);
   4851  1.1  christos 
   4852  1.1  christos       /* FIXME: should we detect if this library is already included ?
   4853  1.1  christos          This should be harmless and shouldn't happen in practice.  */
   4854  1.1  christos     }
   4855  1.1  christos 
   4856  1.1  christos   hdr = &elf_tdata (abfd)->symtab_hdr;
   4857  1.1  christos   symcount = hdr->sh_size / bed->s->sizeof_sym;
   4858  1.1  christos 
   4859  1.1  christos   /* The sh_info field of the symtab header tells us where the
   4860  1.1  christos      external symbols start.  We don't care about the local symbols at
   4861  1.1  christos      this point.  */
   4862  1.1  christos   extsymcount = symcount - hdr->sh_info;
   4863  1.1  christos   extsymoff = hdr->sh_info;
   4864  1.1  christos 
   4865  1.1  christos   sym_hash = NULL;
   4866  1.1  christos   if (extsymcount != 0)
   4867  1.1  christos     {
   4868  1.1  christos       isymbuf = bfd_elf_get_elf_syms (abfd, hdr, extsymcount, extsymoff,
   4869  1.1  christos 				      NULL, NULL, NULL);
   4870  1.1  christos       if (isymbuf == NULL)
   4871  1.1  christos 	goto error_return;
   4872  1.1  christos 
   4873  1.1  christos       /* We store a pointer to the hash table entry for each external
   4874  1.1  christos 	 symbol.  */
   4875  1.1  christos       amt = extsymcount * sizeof (struct elf_link_hash_entry *);
   4876  1.1  christos       sym_hash = (struct elf_link_hash_entry **) bfd_alloc (abfd, amt);
   4877  1.1  christos       if (sym_hash == NULL)
   4878  1.1  christos 	goto error_free_sym;
   4879  1.1  christos       elf_sym_hashes (abfd) = sym_hash;
   4880  1.1  christos     }
   4881  1.1  christos 
   4882  1.1  christos   for (isym = isymbuf, isymend = isymbuf + extsymcount;
   4883  1.1  christos        isym < isymend;
   4884  1.1  christos        isym++, sym_hash++)
   4885  1.1  christos     {
   4886  1.1  christos       int bind;
   4887  1.1  christos       bfd_vma value;
   4888  1.1  christos       asection *sec, *new_sec;
   4889  1.1  christos       flagword flags;
   4890  1.1  christos       const char *name;
   4891  1.1  christos       struct elf_link_hash_entry *h;
   4892  1.1  christos       bfd_boolean definition;
   4893  1.1  christos       bfd_boolean size_change_ok;
   4894  1.1  christos       bfd_boolean type_change_ok;
   4895  1.1  christos       bfd_boolean common;
   4896  1.1  christos       unsigned int old_alignment;
   4897  1.1  christos       bfd *old_bfd;
   4898  1.1  christos 
   4899  1.1  christos       flags = BSF_NO_FLAGS;
   4900  1.1  christos       sec = NULL;
   4901  1.1  christos       value = isym->st_value;
   4902  1.1  christos       *sym_hash = NULL;
   4903  1.1  christos       common = bed->common_definition (isym);
   4904  1.1  christos 
   4905  1.1  christos       bind = ELF_ST_BIND (isym->st_info);
   4906  1.1  christos       switch (bind)
   4907  1.1  christos 	{
   4908  1.1  christos 	case STB_LOCAL:
   4909  1.1  christos 	  /* This should be impossible, since ELF requires that all
   4910  1.1  christos 	     global symbols follow all local symbols, and that sh_info
   4911  1.1  christos 	     point to the first global symbol.  Unfortunately, Irix 5
   4912  1.1  christos 	     screws this up.  */
   4913  1.1  christos 	  continue;
   4914  1.1  christos 
   4915  1.1  christos 	case STB_GLOBAL:
   4916  1.1  christos 	  if (isym->st_shndx != SHN_UNDEF && !common)
   4917  1.1  christos 	    flags = BSF_GLOBAL;
   4918  1.1  christos 	  break;
   4919  1.1  christos 
   4920  1.1  christos 	case STB_WEAK:
   4921  1.1  christos 	  flags = BSF_WEAK;
   4922  1.1  christos 	  break;
   4923  1.1  christos 
   4924  1.1  christos 	case STB_GNU_UNIQUE:
   4925  1.1  christos 	  flags = BSF_GNU_UNIQUE;
   4926  1.1  christos 	  break;
   4927  1.1  christos 
   4928  1.1  christos 	default:
   4929  1.1  christos 	  /* Leave it up to the processor backend.  */
   4930  1.1  christos 	  break;
   4931  1.1  christos 	}
   4932  1.1  christos 
   4933  1.1  christos       if (isym->st_shndx == SHN_UNDEF)
   4934  1.1  christos 	sec = bfd_und_section_ptr;
   4935  1.1  christos       else if (isym->st_shndx == SHN_ABS)
   4936  1.1  christos 	sec = bfd_abs_section_ptr;
   4937  1.1  christos       else if (isym->st_shndx == SHN_COMMON)
   4938  1.1  christos 	{
   4939  1.1  christos 	  sec = bfd_com_section_ptr;
   4940  1.1  christos 	  /* What ELF calls the size we call the value.  What ELF
   4941  1.1  christos 	     calls the value we call the alignment.  */
   4942  1.1  christos 	  value = isym->st_size;
   4943  1.1  christos 	}
   4944  1.1  christos       else
   4945  1.1  christos 	{
   4946  1.1  christos 	  sec = bfd_section_from_elf_index (abfd, isym->st_shndx);
   4947  1.1  christos 	  if (sec == NULL)
   4948  1.1  christos 	    sec = bfd_abs_section_ptr;
   4949  1.1  christos 	  else if (sec->kept_section)
   4950  1.1  christos 	    {
   4951  1.1  christos 	      /* Symbols from discarded section are undefined.  We keep
   4952  1.1  christos 		 its visibility.  */
   4953  1.1  christos 	      sec = bfd_und_section_ptr;
   4954  1.1  christos 	      isym->st_shndx = SHN_UNDEF;
   4955  1.1  christos 	    }
   4956  1.1  christos 	  else if ((abfd->flags & (EXEC_P | DYNAMIC)) != 0)
   4957  1.1  christos 	    value -= sec->vma;
   4958  1.1  christos 	}
   4959  1.1  christos 
   4960  1.1  christos       name = bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
   4961  1.1  christos 					      isym->st_name);
   4962  1.1  christos       if (name == NULL)
   4963  1.1  christos 	goto error_free_vers;
   4964  1.1  christos 
   4965  1.1  christos       if (bed->elf_add_symbol_hook)
   4966  1.1  christos 	{
   4967  1.1  christos 	  if (! (*bed->elf_add_symbol_hook) (abfd, info, isym, &name, &flags,
   4968  1.1  christos 					     &sec, &value))
   4969  1.1  christos 	    goto error_free_vers;
   4970  1.1  christos 
   4971  1.1  christos 	  /* The hook function sets the name to NULL if this symbol
   4972  1.1  christos 	     should be skipped for some reason.  */
   4973  1.1  christos 	  if (name == NULL)
   4974  1.1  christos 	    continue;
   4975  1.1  christos 	}
   4976  1.1  christos 
   4977  1.1  christos       /* Sanity check that all possibilities were handled.  */
   4978  1.1  christos       if (sec == NULL)
   4979  1.1  christos 	{
   4980  1.1  christos 	  bfd_set_error (bfd_error_bad_value);
   4981  1.1  christos 	  goto error_free_vers;
   4982  1.1  christos 	}
   4983  1.1  christos 
   4984  1.1  christos       if (bfd_is_und_section (sec)
   4985  1.1  christos 	  || bfd_is_com_section (sec))
   4986  1.1  christos 	definition = FALSE;
   4987  1.1  christos       else
   4988  1.1  christos 	definition = TRUE;
   4989  1.1  christos 
   4990  1.1  christos       size_change_ok = FALSE;
   4991  1.1  christos       type_change_ok = bed->type_change_ok;
   4992  1.1  christos       old_alignment = 0;
   4993  1.1  christos       old_bfd = NULL;
   4994  1.1  christos       new_sec = sec;
   4995  1.1  christos 
   4996  1.1  christos       if (! bfd_is_und_section (sec))
   4997  1.1  christos         h = elf_link_hash_lookup (htab, name, TRUE, FALSE, FALSE);
   4998  1.1  christos       else
   4999  1.1  christos         h = ((struct elf_link_hash_entry *) bfd_wrapped_link_hash_lookup
   5000  1.1  christos              (abfd, info, name, TRUE, FALSE, FALSE));
   5001  1.1  christos       if (h == NULL)
   5002  1.1  christos         goto error_free_sym;
   5003  1.1  christos 
   5004  1.1  christos       *sym_hash = h;
   5005  1.1  christos 
   5006  1.1  christos       if (is_elf_hash_table (htab))
   5007  1.1  christos 	{
   5008  1.1  christos 	  while (h->root.type == bfd_link_hash_indirect
   5009  1.1  christos 		 || h->root.type == bfd_link_hash_warning)
   5010  1.1  christos 	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
   5011  1.1  christos 
   5012  1.1  christos 	  /* Remember the old alignment if this is a common symbol, so
   5013  1.1  christos 	     that we don't reduce the alignment later on.  We can't
   5014  1.1  christos 	     check later, because _bfd_generic_link_add_one_symbol
   5015  1.1  christos 	     will set a default for the alignment which we want to
   5016  1.1  christos 	     override. We also remember the old bfd where the existing
   5017  1.1  christos 	     definition comes from.  */
   5018  1.1  christos 	  switch (h->root.type)
   5019  1.1  christos 	    {
   5020  1.1  christos 	    default:
   5021  1.1  christos 	      break;
   5022  1.1  christos 
   5023  1.1  christos 	    case bfd_link_hash_defined:
   5024  1.1  christos               if (abfd->selective_search)
   5025  1.1  christos                 continue;
   5026  1.1  christos               /* Fall-through.  */
   5027  1.1  christos 	    case bfd_link_hash_defweak:
   5028  1.1  christos 	      old_bfd = h->root.u.def.section->owner;
   5029  1.1  christos 	      break;
   5030  1.1  christos 
   5031  1.1  christos 	    case bfd_link_hash_common:
   5032  1.1  christos 	      old_bfd = h->root.u.c.p->section->owner;
   5033  1.1  christos 	      old_alignment = h->root.u.c.p->alignment_power;
   5034  1.1  christos 	      break;
   5035  1.1  christos 	    }
   5036  1.1  christos 	}
   5037  1.1  christos 
   5038  1.1  christos       if (! (_bfd_generic_link_add_one_symbol
   5039  1.1  christos 	     (info, abfd, name, flags, sec, value, NULL, FALSE, bed->collect,
   5040  1.1  christos 	      (struct bfd_link_hash_entry **) sym_hash)))
   5041  1.1  christos 	goto error_free_vers;
   5042  1.1  christos 
   5043  1.1  christos       h = *sym_hash;
   5044  1.1  christos       while (h->root.type == bfd_link_hash_indirect
   5045  1.1  christos 	     || h->root.type == bfd_link_hash_warning)
   5046  1.1  christos 	h = (struct elf_link_hash_entry *) h->root.u.i.link;
   5047  1.1  christos 
   5048  1.1  christos       *sym_hash = h;
   5049  1.1  christos       if (definition)
   5050  1.1  christos 	h->unique_global = (flags & BSF_GNU_UNIQUE) != 0;
   5051  1.1  christos 
   5052  1.1  christos       /* Set the alignment of a common symbol.  */
   5053  1.1  christos       if ((common || bfd_is_com_section (sec))
   5054  1.1  christos 	  && h->root.type == bfd_link_hash_common)
   5055  1.1  christos 	{
   5056  1.1  christos 	  unsigned int align;
   5057  1.1  christos 
   5058  1.1  christos 	  if (common)
   5059  1.1  christos 	    align = bfd_log2 (isym->st_value);
   5060  1.1  christos 	  else
   5061  1.1  christos 	    {
   5062  1.1  christos 	      /* The new symbol is a common symbol in a shared object.
   5063  1.1  christos 		 We need to get the alignment from the section.  */
   5064  1.1  christos 	      align = new_sec->alignment_power;
   5065  1.1  christos 	    }
   5066  1.1  christos 	  if (align > old_alignment
   5067  1.1  christos 	      /* Permit an alignment power of zero if an alignment of one
   5068  1.1  christos 		 is specified and no other alignments have been specified.  */
   5069  1.1  christos 	      || (isym->st_value == 1 && old_alignment == 0))
   5070  1.1  christos 	    h->root.u.c.p->alignment_power = align;
   5071  1.1  christos 	  else
   5072  1.1  christos 	    h->root.u.c.p->alignment_power = old_alignment;
   5073  1.1  christos 	}
   5074  1.1  christos 
   5075  1.1  christos       if (is_elf_hash_table (htab))
   5076  1.1  christos 	{
   5077  1.1  christos 	  /* Check the alignment when a common symbol is involved. This
   5078  1.1  christos 	     can change when a common symbol is overridden by a normal
   5079  1.1  christos 	     definition or a common symbol is ignored due to the old
   5080  1.1  christos 	     normal definition. We need to make sure the maximum
   5081  1.1  christos 	     alignment is maintained.  */
   5082  1.1  christos 	  if ((old_alignment || common)
   5083  1.1  christos 	      && h->root.type != bfd_link_hash_common)
   5084  1.1  christos 	    {
   5085  1.1  christos 	      unsigned int common_align;
   5086  1.1  christos 	      unsigned int normal_align;
   5087  1.1  christos 	      unsigned int symbol_align;
   5088  1.1  christos 	      bfd *normal_bfd;
   5089  1.1  christos 	      bfd *common_bfd;
   5090  1.1  christos 
   5091  1.1  christos 	      symbol_align = ffs (h->root.u.def.value) - 1;
   5092  1.1  christos 	      if (h->root.u.def.section->owner != NULL
   5093  1.1  christos 		  && (h->root.u.def.section->owner->flags & DYNAMIC) == 0)
   5094  1.1  christos 		{
   5095  1.1  christos 		  normal_align = h->root.u.def.section->alignment_power;
   5096  1.1  christos 		  if (normal_align > symbol_align)
   5097  1.1  christos 		    normal_align = symbol_align;
   5098  1.1  christos 		}
   5099  1.1  christos 	      else
   5100  1.1  christos 		normal_align = symbol_align;
   5101  1.1  christos 
   5102  1.1  christos 	      if (old_alignment)
   5103  1.1  christos 		{
   5104  1.1  christos 		  common_align = old_alignment;
   5105  1.1  christos 		  common_bfd = old_bfd;
   5106  1.1  christos 		  normal_bfd = abfd;
   5107  1.1  christos 		}
   5108  1.1  christos 	      else
   5109  1.1  christos 		{
   5110  1.1  christos 		  common_align = bfd_log2 (isym->st_value);
   5111  1.1  christos 		  common_bfd = abfd;
   5112  1.1  christos 		  normal_bfd = old_bfd;
   5113  1.1  christos 		}
   5114  1.1  christos 
   5115  1.1  christos 	      if (normal_align < common_align)
   5116  1.1  christos 		{
   5117  1.1  christos 		  /* PR binutils/2735 */
   5118  1.1  christos 		  if (normal_bfd == NULL)
   5119  1.1  christos 		    (*_bfd_error_handler)
   5120  1.1  christos 		      (_("Warning: alignment %u of common symbol `%s' in %B"
   5121  1.1  christos 			 " is greater than the alignment (%u) of its section %A"),
   5122  1.1  christos 		       common_bfd, h->root.u.def.section,
   5123  1.1  christos 		       1 << common_align, name, 1 << normal_align);
   5124  1.1  christos 		  else
   5125  1.1  christos 		    (*_bfd_error_handler)
   5126  1.1  christos 		      (_("Warning: alignment %u of symbol `%s' in %B"
   5127  1.1  christos 			 " is smaller than %u in %B"),
   5128  1.1  christos 		       normal_bfd, common_bfd,
   5129  1.1  christos 		       1 << normal_align, name, 1 << common_align);
   5130  1.1  christos 		}
   5131  1.1  christos 	    }
   5132  1.1  christos 
   5133  1.1  christos 	  /* Remember the symbol size if it isn't undefined.  */
   5134  1.1  christos 	  if ((isym->st_size != 0 && isym->st_shndx != SHN_UNDEF)
   5135  1.1  christos 	      && (definition || h->size == 0))
   5136  1.1  christos 	    {
   5137  1.1  christos 	      if (h->size != 0
   5138  1.1  christos 		  && h->size != isym->st_size
   5139  1.1  christos 		  && ! size_change_ok)
   5140  1.1  christos 		(*_bfd_error_handler)
   5141  1.1  christos 		  (_("Warning: size of symbol `%s' changed"
   5142  1.1  christos 		     " from %lu in %B to %lu in %B"),
   5143  1.1  christos 		   old_bfd, abfd,
   5144  1.1  christos 		   name, (unsigned long) h->size,
   5145  1.1  christos 		   (unsigned long) isym->st_size);
   5146  1.1  christos 
   5147  1.1  christos 	      h->size = isym->st_size;
   5148  1.1  christos 	    }
   5149  1.1  christos 
   5150  1.1  christos 	  /* If this is a common symbol, then we always want H->SIZE
   5151  1.1  christos 	     to be the size of the common symbol.  The code just above
   5152  1.1  christos 	     won't fix the size if a common symbol becomes larger.  We
   5153  1.1  christos 	     don't warn about a size change here, because that is
   5154  1.1  christos 	     covered by --warn-common.  Allow changed between different
   5155  1.1  christos 	     function types.  */
   5156  1.1  christos 	  if (h->root.type == bfd_link_hash_common)
   5157  1.1  christos 	    h->size = h->root.u.c.size;
   5158  1.1  christos 
   5159  1.1  christos 	  if (ELF_ST_TYPE (isym->st_info) != STT_NOTYPE
   5160  1.1  christos 	      && (definition || h->type == STT_NOTYPE))
   5161  1.1  christos 	    {
   5162  1.1  christos 	      unsigned int type = ELF_ST_TYPE (isym->st_info);
   5163  1.1  christos 
   5164  1.1  christos 	      if (h->type != type)
   5165  1.1  christos 		{
   5166  1.1  christos 		  if (h->type != STT_NOTYPE && ! type_change_ok)
   5167  1.1  christos 		    (*_bfd_error_handler)
   5168  1.1  christos 		      (_("Warning: type of symbol `%s' changed"
   5169  1.1  christos 			 " from %d to %d in %B"),
   5170  1.1  christos 		       abfd, name, h->type, type);
   5171  1.1  christos 
   5172  1.1  christos 		  h->type = type;
   5173  1.1  christos 		}
   5174  1.1  christos 	    }
   5175  1.1  christos 
   5176  1.1  christos 	  /* Set a flag in the hash table entry indicating the type of
   5177  1.1  christos 	     reference or definition we just found.  Keep a count of
   5178  1.1  christos 	     the number of dynamic symbols we find.  A dynamic symbol
   5179  1.1  christos 	     is one which is referenced or defined by both a regular
   5180  1.1  christos 	     object and a shared object.  */
   5181  1.1  christos 	  if (! dynamic)
   5182  1.1  christos 	    {
   5183  1.1  christos 	      if (! definition)
   5184  1.1  christos 		{
   5185  1.1  christos 		  h->ref_regular = 1;
   5186  1.1  christos 		  if (bind != STB_WEAK)
   5187  1.1  christos 		    h->ref_regular_nonweak = 1;
   5188  1.1  christos 		}
   5189  1.1  christos 	      else
   5190  1.1  christos 		{
   5191  1.1  christos                   BFD_ASSERT (!h->def_dynamic);
   5192  1.1  christos 		  h->def_regular = 1;
   5193  1.1  christos 		}
   5194  1.1  christos 	    }
   5195  1.1  christos 	  else
   5196  1.1  christos 	    {
   5197  1.1  christos 	      BFD_ASSERT (definition);
   5198  1.1  christos               h->def_dynamic = 1;
   5199  1.1  christos               h->dynindx = -2;
   5200  1.1  christos               ((struct elf64_ia64_link_hash_entry *)h)->shl = abfd;
   5201  1.1  christos 	    }
   5202  1.1  christos 	}
   5203  1.1  christos     }
   5204  1.1  christos 
   5205  1.1  christos   if (isymbuf != NULL)
   5206  1.1  christos     {
   5207  1.1  christos       free (isymbuf);
   5208  1.1  christos       isymbuf = NULL;
   5209  1.1  christos     }
   5210  1.1  christos 
   5211  1.1  christos   /* If this object is the same format as the output object, and it is
   5212  1.1  christos      not a shared library, then let the backend look through the
   5213  1.1  christos      relocs.
   5214  1.1  christos 
   5215  1.1  christos      This is required to build global offset table entries and to
   5216  1.1  christos      arrange for dynamic relocs.  It is not required for the
   5217  1.1  christos      particular common case of linking non PIC code, even when linking
   5218  1.1  christos      against shared libraries, but unfortunately there is no way of
   5219  1.1  christos      knowing whether an object file has been compiled PIC or not.
   5220  1.1  christos      Looking through the relocs is not particularly time consuming.
   5221  1.1  christos      The problem is that we must either (1) keep the relocs in memory,
   5222  1.1  christos      which causes the linker to require additional runtime memory or
   5223  1.1  christos      (2) read the relocs twice from the input file, which wastes time.
   5224  1.1  christos      This would be a good case for using mmap.
   5225  1.1  christos 
   5226  1.1  christos      I have no idea how to handle linking PIC code into a file of a
   5227  1.1  christos      different format.  It probably can't be done.  */
   5228  1.1  christos   if (! dynamic
   5229  1.1  christos       && is_elf_hash_table (htab)
   5230  1.1  christos       && bed->check_relocs != NULL
   5231  1.1  christos       && (*bed->relocs_compatible) (abfd->xvec, info->output_bfd->xvec))
   5232  1.1  christos     {
   5233  1.1  christos       asection *o;
   5234  1.1  christos 
   5235  1.1  christos       for (o = abfd->sections; o != NULL; o = o->next)
   5236  1.1  christos 	{
   5237  1.1  christos 	  Elf_Internal_Rela *internal_relocs;
   5238  1.1  christos 	  bfd_boolean ok;
   5239  1.1  christos 
   5240  1.1  christos 	  if ((o->flags & SEC_RELOC) == 0
   5241  1.1  christos 	      || o->reloc_count == 0
   5242  1.1  christos 	      || ((info->strip == strip_all || info->strip == strip_debugger)
   5243  1.1  christos 		  && (o->flags & SEC_DEBUGGING) != 0)
   5244  1.1  christos 	      || bfd_is_abs_section (o->output_section))
   5245  1.1  christos 	    continue;
   5246  1.1  christos 
   5247  1.1  christos 	  internal_relocs = _bfd_elf_link_read_relocs (abfd, o, NULL, NULL,
   5248  1.1  christos 						       info->keep_memory);
   5249  1.1  christos 	  if (internal_relocs == NULL)
   5250  1.1  christos 	    goto error_return;
   5251  1.1  christos 
   5252  1.1  christos 	  ok = (*bed->check_relocs) (abfd, info, o, internal_relocs);
   5253  1.1  christos 
   5254  1.1  christos 	  if (elf_section_data (o)->relocs != internal_relocs)
   5255  1.1  christos 	    free (internal_relocs);
   5256  1.1  christos 
   5257  1.1  christos 	  if (! ok)
   5258  1.1  christos 	    goto error_return;
   5259  1.1  christos 	}
   5260  1.1  christos     }
   5261  1.1  christos 
   5262  1.1  christos   return TRUE;
   5263  1.1  christos 
   5264  1.1  christos  error_free_vers:
   5265  1.1  christos  error_free_sym:
   5266  1.1  christos   if (isymbuf != NULL)
   5267  1.1  christos     free (isymbuf);
   5268  1.1  christos  error_return:
   5269  1.1  christos   return FALSE;
   5270  1.1  christos }
   5271  1.1  christos 
   5272  1.1  christos static bfd_boolean
   5273  1.1  christos elf64_vms_link_add_archive_symbols (bfd *abfd, struct bfd_link_info *info)
   5274  1.1  christos {
   5275  1.1  christos   int pass;
   5276  1.1  christos   struct bfd_link_hash_entry **pundef;
   5277  1.1  christos   struct bfd_link_hash_entry **next_pundef;
   5278  1.1  christos 
   5279  1.1  christos   /* We only accept VMS libraries.  */
   5280  1.1  christos   if (info->output_bfd->xvec != abfd->xvec)
   5281  1.1  christos     {
   5282  1.1  christos       bfd_set_error (bfd_error_wrong_format);
   5283  1.1  christos       return FALSE;
   5284  1.1  christos     }
   5285  1.1  christos 
   5286  1.1  christos   /* The archive_pass field in the archive itself is used to
   5287  1.1  christos      initialize PASS, since we may search the same archive multiple
   5288  1.1  christos      times.  */
   5289  1.1  christos   pass = ++abfd->archive_pass;
   5290  1.1  christos 
   5291  1.1  christos   /* Look through the list of undefined symbols.  */
   5292  1.1  christos   for (pundef = &info->hash->undefs; *pundef != NULL; pundef = next_pundef)
   5293  1.1  christos     {
   5294  1.1  christos       struct bfd_link_hash_entry *h;
   5295  1.1  christos       symindex symidx;
   5296  1.1  christos       bfd *element;
   5297  1.1  christos       bfd *orig_element;
   5298  1.1  christos 
   5299  1.1  christos       h = *pundef;
   5300  1.1  christos       next_pundef = &(*pundef)->u.undef.next;
   5301  1.1  christos 
   5302  1.1  christos       /* When a symbol is defined, it is not necessarily removed from
   5303  1.1  christos 	 the list.  */
   5304  1.1  christos       if (h->type != bfd_link_hash_undefined
   5305  1.1  christos 	  && h->type != bfd_link_hash_common)
   5306  1.1  christos 	{
   5307  1.1  christos 	  /* Remove this entry from the list, for general cleanliness
   5308  1.1  christos 	     and because we are going to look through the list again
   5309  1.1  christos 	     if we search any more libraries.  We can't remove the
   5310  1.1  christos 	     entry if it is the tail, because that would lose any
   5311  1.1  christos 	     entries we add to the list later on.  */
   5312  1.1  christos 	  if (*pundef != info->hash->undefs_tail)
   5313  1.1  christos             {
   5314  1.1  christos               *pundef = *next_pundef;
   5315  1.1  christos               next_pundef = pundef;
   5316  1.1  christos             }
   5317  1.1  christos 	  continue;
   5318  1.1  christos 	}
   5319  1.1  christos 
   5320  1.1  christos       /* Look for this symbol in the archive hash table.  */
   5321  1.1  christos       symidx = _bfd_vms_lib_find_symbol (abfd, h->root.string);
   5322  1.1  christos       if (symidx == BFD_NO_MORE_SYMBOLS)
   5323  1.1  christos 	{
   5324  1.1  christos 	  /* Nothing in this slot.  */
   5325  1.1  christos 	  continue;
   5326  1.1  christos 	}
   5327  1.1  christos 
   5328  1.1  christos       element = bfd_get_elt_at_index (abfd, symidx);
   5329  1.1  christos       if (element == NULL)
   5330  1.1  christos 	return FALSE;
   5331  1.1  christos 
   5332  1.1  christos       if (element->archive_pass == -1 || element->archive_pass == pass)
   5333  1.1  christos         {
   5334  1.1  christos           /* Next symbol if this archive is wrong or already handled.  */
   5335  1.1  christos           continue;
   5336  1.1  christos         }
   5337  1.1  christos 
   5338  1.1  christos       orig_element = element;
   5339  1.1  christos       if (bfd_is_thin_archive (abfd))
   5340  1.1  christos         {
   5341  1.1  christos           element = _bfd_vms_lib_get_imagelib_file (element);
   5342  1.1  christos           if (element == NULL || !bfd_check_format (element, bfd_object))
   5343  1.1  christos             {
   5344  1.1  christos               orig_element->archive_pass = -1;
   5345  1.1  christos               return FALSE;
   5346  1.1  christos             }
   5347  1.1  christos         }
   5348  1.1  christos       else if (! bfd_check_format (element, bfd_object))
   5349  1.1  christos         {
   5350  1.1  christos           element->archive_pass = -1;
   5351  1.1  christos           return FALSE;
   5352  1.1  christos         }
   5353  1.1  christos 
   5354  1.1  christos       /* Unlike the generic linker, we know that this element provides
   5355  1.1  christos 	 a definition for an undefined symbol and we know that we want
   5356  1.1  christos 	 to include it.  We don't need to check anything.  */
   5357  1.1  christos       if (! (*info->callbacks->add_archive_element) (info, element,
   5358  1.1  christos                                                      h->root.string, &element))
   5359  1.1  christos 	return FALSE;
   5360  1.1  christos       if (! elf64_vms_link_add_object_symbols (element, info))
   5361  1.1  christos 	return FALSE;
   5362  1.1  christos 
   5363  1.1  christos       orig_element->archive_pass = pass;
   5364  1.1  christos     }
   5365  1.1  christos 
   5366  1.1  christos   return TRUE;
   5367  1.1  christos }
   5368  1.1  christos 
   5369  1.1  christos static bfd_boolean
   5370  1.1  christos elf64_vms_bfd_link_add_symbols (bfd *abfd, struct bfd_link_info *info)
   5371  1.1  christos {
   5372  1.1  christos   switch (bfd_get_format (abfd))
   5373  1.1  christos     {
   5374  1.1  christos     case bfd_object:
   5375  1.1  christos       return elf64_vms_link_add_object_symbols (abfd, info);
   5376  1.1  christos       break;
   5377  1.1  christos     case bfd_archive:
   5378  1.1  christos       return elf64_vms_link_add_archive_symbols (abfd, info);
   5379  1.1  christos       break;
   5380  1.1  christos     default:
   5381  1.1  christos       bfd_set_error (bfd_error_wrong_format);
   5382  1.1  christos       return FALSE;
   5383  1.1  christos     }
   5384  1.1  christos }
   5385  1.1  christos 
   5386  1.1  christos static bfd_boolean
   5387  1.1  christos elf64_ia64_vms_mkobject (bfd *abfd)
   5388  1.1  christos {
   5389  1.1  christos   return bfd_elf_allocate_object
   5390  1.1  christos     (abfd, sizeof (struct elf64_ia64_vms_obj_tdata), IA64_ELF_DATA);
   5391  1.1  christos }
   5392  1.1  christos 
   5393  1.1  christos 
   5394  1.1  christos /* Size-dependent data and functions.  */
   5395  1.1  christos static const struct elf_size_info elf64_ia64_vms_size_info = {
   5396  1.1  christos   sizeof (Elf64_External_VMS_Ehdr),
   5397  1.1  christos   sizeof (Elf64_External_Phdr),
   5398  1.1  christos   sizeof (Elf64_External_Shdr),
   5399  1.1  christos   sizeof (Elf64_External_Rel),
   5400  1.1  christos   sizeof (Elf64_External_Rela),
   5401  1.1  christos   sizeof (Elf64_External_Sym),
   5402  1.1  christos   sizeof (Elf64_External_Dyn),
   5403  1.1  christos   sizeof (Elf_External_Note),
   5404  1.1  christos   4,
   5405  1.1  christos   1,
   5406  1.1  christos   64, 3, /* ARCH_SIZE, LOG_FILE_ALIGN */
   5407  1.1  christos   ELFCLASS64, EV_CURRENT,
   5408  1.1  christos   bfd_elf64_write_out_phdrs,
   5409  1.1  christos   elf64_vms_write_shdrs_and_ehdr,
   5410  1.1  christos   bfd_elf64_checksum_contents,
   5411  1.1  christos   bfd_elf64_write_relocs,
   5412  1.1  christos   bfd_elf64_swap_symbol_in,
   5413  1.1  christos   bfd_elf64_swap_symbol_out,
   5414  1.1  christos   bfd_elf64_slurp_reloc_table,
   5415  1.1  christos   bfd_elf64_slurp_symbol_table,
   5416  1.1  christos   bfd_elf64_swap_dyn_in,
   5417  1.1  christos   bfd_elf64_swap_dyn_out,
   5418  1.1  christos   bfd_elf64_swap_reloc_in,
   5419  1.1  christos   bfd_elf64_swap_reloc_out,
   5420  1.1  christos   bfd_elf64_swap_reloca_in,
   5421  1.1  christos   bfd_elf64_swap_reloca_out
   5422  1.1  christos };
   5423  1.1  christos 
   5424  1.1  christos #define ELF_ARCH			bfd_arch_ia64
   5425  1.1  christos #define ELF_MACHINE_CODE		EM_IA_64
   5426  1.1  christos #define ELF_MAXPAGESIZE			0x10000	/* 64KB */
   5427  1.1  christos #define ELF_COMMONPAGESIZE		0x200	/* 16KB */
   5428  1.1  christos 
   5429  1.1  christos #define elf_backend_section_from_shdr \
   5430  1.1  christos 	elf64_ia64_section_from_shdr
   5431  1.1  christos #define elf_backend_section_flags \
   5432  1.1  christos 	elf64_ia64_section_flags
   5433  1.1  christos #define elf_backend_fake_sections \
   5434  1.1  christos 	elf64_ia64_fake_sections
   5435  1.1  christos #define elf_backend_final_write_processing \
   5436  1.1  christos 	elf64_ia64_final_write_processing
   5437  1.1  christos #define elf_backend_add_symbol_hook \
   5438  1.1  christos 	elf64_ia64_add_symbol_hook
   5439  1.1  christos #define elf_info_to_howto \
   5440  1.1  christos 	elf64_ia64_info_to_howto
   5441  1.1  christos 
   5442  1.1  christos #define bfd_elf64_bfd_reloc_type_lookup \
   5443  1.1  christos 	ia64_elf_reloc_type_lookup
   5444  1.1  christos #define bfd_elf64_bfd_reloc_name_lookup \
   5445  1.1  christos 	ia64_elf_reloc_name_lookup
   5446  1.1  christos #define bfd_elf64_bfd_is_local_label_name \
   5447  1.1  christos 	elf64_ia64_is_local_label_name
   5448  1.1  christos #define bfd_elf64_bfd_relax_section \
   5449  1.1  christos 	elf64_ia64_relax_section
   5450  1.1  christos 
   5451  1.1  christos #define elf_backend_object_p \
   5452  1.1  christos 	elf64_ia64_object_p
   5453  1.1  christos 
   5454  1.1  christos /* Stuff for the BFD linker: */
   5455  1.1  christos #define bfd_elf64_bfd_link_hash_table_create \
   5456  1.1  christos 	elf64_ia64_hash_table_create
   5457  1.1  christos #define bfd_elf64_bfd_link_hash_table_free \
   5458  1.1  christos 	elf64_ia64_hash_table_free
   5459  1.1  christos #define elf_backend_create_dynamic_sections \
   5460  1.1  christos 	elf64_ia64_create_dynamic_sections
   5461  1.1  christos #define elf_backend_check_relocs \
   5462  1.1  christos 	elf64_ia64_check_relocs
   5463  1.1  christos #define elf_backend_adjust_dynamic_symbol \
   5464  1.1  christos 	elf64_ia64_adjust_dynamic_symbol
   5465  1.1  christos #define elf_backend_size_dynamic_sections \
   5466  1.1  christos 	elf64_ia64_size_dynamic_sections
   5467  1.1  christos #define elf_backend_omit_section_dynsym \
   5468  1.1  christos   ((bfd_boolean (*) (bfd *, struct bfd_link_info *, asection *)) bfd_true)
   5469  1.1  christos #define elf_backend_relocate_section \
   5470  1.1  christos 	elf64_ia64_relocate_section
   5471  1.1  christos #define elf_backend_finish_dynamic_symbol \
   5472  1.1  christos 	elf64_ia64_finish_dynamic_symbol
   5473  1.1  christos #define elf_backend_finish_dynamic_sections \
   5474  1.1  christos 	elf64_ia64_finish_dynamic_sections
   5475  1.1  christos #define bfd_elf64_bfd_final_link \
   5476  1.1  christos 	elf64_ia64_final_link
   5477  1.1  christos 
   5478  1.1  christos #define bfd_elf64_bfd_merge_private_bfd_data \
   5479  1.1  christos 	elf64_ia64_merge_private_bfd_data
   5480  1.1  christos #define bfd_elf64_bfd_set_private_flags \
   5481  1.1  christos 	elf64_ia64_set_private_flags
   5482  1.1  christos #define bfd_elf64_bfd_print_private_bfd_data \
   5483  1.1  christos 	elf64_ia64_print_private_bfd_data
   5484  1.1  christos 
   5485  1.1  christos #define elf_backend_plt_readonly	1
   5486  1.1  christos #define elf_backend_want_plt_sym	0
   5487  1.1  christos #define elf_backend_plt_alignment	5
   5488  1.1  christos #define elf_backend_got_header_size	0
   5489  1.1  christos #define elf_backend_want_got_plt	1
   5490  1.1  christos #define elf_backend_may_use_rel_p	1
   5491  1.1  christos #define elf_backend_may_use_rela_p	1
   5492  1.1  christos #define elf_backend_default_use_rela_p	1
   5493  1.1  christos #define elf_backend_want_dynbss		0
   5494  1.1  christos #define elf_backend_hide_symbol		elf64_ia64_hash_hide_symbol
   5495  1.1  christos #define elf_backend_fixup_symbol	_bfd_elf_link_hash_fixup_symbol
   5496  1.1  christos #define elf_backend_reloc_type_class	elf64_ia64_reloc_type_class
   5497  1.1  christos #define elf_backend_rela_normal		1
   5498  1.1  christos #define elf_backend_special_sections	elf64_ia64_special_sections
   5499  1.1  christos #define elf_backend_default_execstack	0
   5500  1.1  christos 
   5501  1.1  christos /* FIXME: PR 290: The Intel C compiler generates SHT_IA_64_UNWIND with
   5502  1.1  christos    SHF_LINK_ORDER. But it doesn't set the sh_link or sh_info fields.
   5503  1.1  christos    We don't want to flood users with so many error messages. We turn
   5504  1.1  christos    off the warning for now. It will be turned on later when the Intel
   5505  1.1  christos    compiler is fixed.   */
   5506  1.1  christos #define elf_backend_link_order_error_handler NULL
   5507  1.1  christos 
   5508  1.1  christos /* VMS-specific vectors.  */
   5509  1.1  christos 
   5510  1.1  christos #undef  TARGET_LITTLE_SYM
   5511  1.1  christos #define TARGET_LITTLE_SYM		bfd_elf64_ia64_vms_vec
   5512  1.1  christos #undef  TARGET_LITTLE_NAME
   5513  1.1  christos #define TARGET_LITTLE_NAME		"elf64-ia64-vms"
   5514  1.1  christos #undef  TARGET_BIG_SYM
   5515  1.1  christos #undef  TARGET_BIG_NAME
   5516  1.1  christos 
   5517  1.1  christos /* These are VMS specific functions.  */
   5518  1.1  christos 
   5519  1.1  christos #undef  elf_backend_object_p
   5520  1.1  christos #define elf_backend_object_p elf64_vms_object_p
   5521  1.1  christos 
   5522  1.1  christos #undef  elf_backend_section_from_shdr
   5523  1.1  christos #define elf_backend_section_from_shdr elf64_vms_section_from_shdr
   5524  1.1  christos 
   5525  1.1  christos #undef  elf_backend_post_process_headers
   5526  1.1  christos #define elf_backend_post_process_headers elf64_vms_post_process_headers
   5527  1.1  christos 
   5528  1.1  christos #undef  elf_backend_section_processing
   5529  1.1  christos #define elf_backend_section_processing elf64_vms_section_processing
   5530  1.1  christos 
   5531  1.1  christos #undef  elf_backend_final_write_processing
   5532  1.1  christos #define elf_backend_final_write_processing elf64_vms_final_write_processing
   5533  1.1  christos 
   5534  1.1  christos #undef  bfd_elf64_close_and_cleanup
   5535  1.1  christos #define bfd_elf64_close_and_cleanup elf64_vms_close_and_cleanup
   5536  1.1  christos 
   5537  1.1  christos #undef  elf_backend_section_from_bfd_section
   5538  1.1  christos 
   5539  1.1  christos #undef  elf_backend_symbol_processing
   5540  1.1  christos 
   5541  1.1  christos #undef  elf_backend_want_p_paddr_set_to_zero
   5542  1.1  christos 
   5543  1.1  christos #undef  ELF_OSABI
   5544  1.1  christos #define ELF_OSABI			ELFOSABI_OPENVMS
   5545  1.1  christos 
   5546  1.1  christos #undef  ELF_MAXPAGESIZE
   5547  1.1  christos #define ELF_MAXPAGESIZE			0x10000	/* 64KB */
   5548  1.1  christos 
   5549  1.1  christos #undef  elf64_bed
   5550  1.1  christos #define elf64_bed elf64_ia64_vms_bed
   5551  1.1  christos 
   5552  1.1  christos #define elf_backend_size_info elf64_ia64_vms_size_info
   5553  1.1  christos 
   5554  1.1  christos /* Use VMS-style archives (in particular, don't use the standard coff
   5555  1.1  christos    archive format).  */
   5556  1.1  christos #define bfd_elf64_archive_functions
   5557  1.1  christos 
   5558  1.1  christos #undef bfd_elf64_archive_p
   5559  1.1  christos #define bfd_elf64_archive_p _bfd_vms_lib_ia64_archive_p
   5560  1.1  christos #undef bfd_elf64_write_archive_contents
   5561  1.1  christos #define bfd_elf64_write_archive_contents _bfd_vms_lib_write_archive_contents
   5562  1.1  christos #undef bfd_elf64_mkarchive
   5563  1.1  christos #define bfd_elf64_mkarchive _bfd_vms_lib_ia64_mkarchive
   5564  1.1  christos 
   5565  1.1  christos #define bfd_elf64_archive_slurp_armap \
   5566  1.1  christos   _bfd_vms_lib_slurp_armap
   5567  1.1  christos #define bfd_elf64_archive_slurp_extended_name_table \
   5568  1.1  christos   _bfd_vms_lib_slurp_extended_name_table
   5569  1.1  christos #define bfd_elf64_archive_construct_extended_name_table \
   5570  1.1  christos   _bfd_vms_lib_construct_extended_name_table
   5571  1.1  christos #define bfd_elf64_archive_truncate_arname \
   5572  1.1  christos   _bfd_vms_lib_truncate_arname
   5573  1.1  christos #define bfd_elf64_archive_write_armap \
   5574  1.1  christos   _bfd_vms_lib_write_armap
   5575  1.1  christos #define bfd_elf64_archive_read_ar_hdr \
   5576  1.1  christos   _bfd_vms_lib_read_ar_hdr
   5577  1.1  christos #define bfd_elf64_archive_write_ar_hdr \
   5578  1.1  christos   _bfd_vms_lib_write_ar_hdr
   5579  1.1  christos #define bfd_elf64_archive_openr_next_archived_file \
   5580  1.1  christos   _bfd_vms_lib_openr_next_archived_file
   5581  1.1  christos #define bfd_elf64_archive_get_elt_at_index \
   5582  1.1  christos   _bfd_vms_lib_get_elt_at_index
   5583  1.1  christos #define bfd_elf64_archive_generic_stat_arch_elt \
   5584  1.1  christos   _bfd_vms_lib_generic_stat_arch_elt
   5585  1.1  christos #define bfd_elf64_archive_update_armap_timestamp \
   5586  1.1  christos   _bfd_vms_lib_update_armap_timestamp
   5587  1.1  christos 
   5588  1.1  christos /* VMS link methods.  */
   5589  1.1  christos #undef  bfd_elf64_bfd_link_add_symbols
   5590  1.1  christos #define bfd_elf64_bfd_link_add_symbols 	elf64_vms_bfd_link_add_symbols
   5591  1.1  christos 
   5592  1.1  christos #undef  elf_backend_want_got_sym
   5593  1.1  christos #define elf_backend_want_got_sym 	0
   5594  1.1  christos 
   5595  1.1  christos #undef  bfd_elf64_mkobject
   5596  1.1  christos #define bfd_elf64_mkobject		elf64_ia64_vms_mkobject
   5597  1.1  christos 
   5598  1.1  christos /* Redefine to align segments on block size.  */
   5599  1.1  christos #undef  ELF_MAXPAGESIZE
   5600  1.1  christos #define ELF_MAXPAGESIZE			0x200 /* 512B  */
   5601  1.1  christos 
   5602  1.1  christos #undef  elf_backend_want_got_plt
   5603  1.1  christos #define elf_backend_want_got_plt	0
   5604  1.1  christos 
   5605  1.1  christos #include "elf64-target.h"
   5606