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coff-alpha.c revision 1.2
      1  1.1  skrll /* BFD back-end for ALPHA Extended-Coff files.
      2  1.1  skrll    Copyright 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002,
      3  1.1  skrll    2003, 2004, 2005, 2007, 2008 Free Software Foundation, Inc.
      4  1.1  skrll    Modified from coff-mips.c by Steve Chamberlain <sac (at) cygnus.com> and
      5  1.1  skrll    Ian Lance Taylor <ian (at) cygnus.com>.
      6  1.1  skrll 
      7  1.1  skrll    This file is part of BFD, the Binary File Descriptor library.
      8  1.1  skrll 
      9  1.1  skrll    This program is free software; you can redistribute it and/or modify
     10  1.1  skrll    it under the terms of the GNU General Public License as published by
     11  1.1  skrll    the Free Software Foundation; either version 3 of the License, or
     12  1.1  skrll    (at your option) any later version.
     13  1.1  skrll 
     14  1.1  skrll    This program is distributed in the hope that it will be useful,
     15  1.1  skrll    but WITHOUT ANY WARRANTY; without even the implied warranty of
     16  1.1  skrll    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     17  1.1  skrll    GNU General Public License for more details.
     18  1.1  skrll 
     19  1.1  skrll    You should have received a copy of the GNU General Public License
     20  1.1  skrll    along with this program; if not, write to the Free Software
     21  1.1  skrll    Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
     22  1.1  skrll    MA 02110-1301, USA.  */
     23  1.1  skrll 
     24  1.1  skrll #include "sysdep.h"
     25  1.1  skrll #include "bfd.h"
     26  1.1  skrll #include "bfdlink.h"
     27  1.1  skrll #include "libbfd.h"
     28  1.1  skrll #include "coff/internal.h"
     29  1.1  skrll #include "coff/sym.h"
     30  1.1  skrll #include "coff/symconst.h"
     31  1.1  skrll #include "coff/ecoff.h"
     32  1.1  skrll #include "coff/alpha.h"
     33  1.1  skrll #include "aout/ar.h"
     34  1.1  skrll #include "libcoff.h"
     35  1.1  skrll #include "libecoff.h"
     36  1.1  skrll 
     37  1.1  skrll /* Prototypes for static functions.  */
     39  1.1  skrll 
     40  1.1  skrll static const bfd_target *alpha_ecoff_object_p
     41  1.1  skrll   PARAMS ((bfd *));
     42  1.1  skrll static bfd_boolean alpha_ecoff_bad_format_hook
     43  1.1  skrll   PARAMS ((bfd *abfd, PTR filehdr));
     44  1.1  skrll static PTR alpha_ecoff_mkobject_hook
     45  1.1  skrll   PARAMS ((bfd *, PTR filehdr, PTR aouthdr));
     46  1.1  skrll static void alpha_ecoff_swap_reloc_in
     47  1.1  skrll   PARAMS ((bfd *, PTR, struct internal_reloc *));
     48  1.1  skrll static void alpha_ecoff_swap_reloc_out
     49  1.1  skrll   PARAMS ((bfd *, const struct internal_reloc *, PTR));
     50  1.1  skrll static void alpha_adjust_reloc_in
     51  1.1  skrll   PARAMS ((bfd *, const struct internal_reloc *, arelent *));
     52  1.1  skrll static void alpha_adjust_reloc_out
     53  1.1  skrll   PARAMS ((bfd *, const arelent *, struct internal_reloc *));
     54  1.1  skrll static reloc_howto_type *alpha_bfd_reloc_type_lookup
     55  1.1  skrll   PARAMS ((bfd *, bfd_reloc_code_real_type));
     56  1.1  skrll static bfd_byte *alpha_ecoff_get_relocated_section_contents
     57  1.1  skrll   PARAMS ((bfd *abfd, struct bfd_link_info *, struct bfd_link_order *,
     58  1.1  skrll 	   bfd_byte *data, bfd_boolean relocatable, asymbol **symbols));
     59  1.1  skrll static bfd_vma alpha_convert_external_reloc
     60  1.1  skrll   PARAMS ((bfd *, struct bfd_link_info *, bfd *, struct external_reloc *,
     61  1.1  skrll 	   struct ecoff_link_hash_entry *));
     62  1.1  skrll static bfd_boolean alpha_relocate_section
     63  1.1  skrll   PARAMS ((bfd *, struct bfd_link_info *, bfd *, asection *, bfd_byte *, PTR));
     64  1.1  skrll static bfd_boolean alpha_adjust_headers
     65  1.1  skrll   PARAMS ((bfd *, struct internal_filehdr *, struct internal_aouthdr *));
     66  1.1  skrll static PTR alpha_ecoff_read_ar_hdr
     67  1.1  skrll   PARAMS ((bfd *));
     68  1.1  skrll static bfd *alpha_ecoff_get_elt_at_filepos
     69  1.1  skrll   PARAMS ((bfd *, file_ptr));
     70  1.1  skrll static bfd *alpha_ecoff_openr_next_archived_file
     71  1.1  skrll   PARAMS ((bfd *, bfd *));
     72  1.1  skrll static bfd *alpha_ecoff_get_elt_at_index
     73  1.1  skrll   PARAMS ((bfd *, symindex));
     74  1.1  skrll 
     75  1.1  skrll /* ECOFF has COFF sections, but the debugging information is stored in
     77  1.1  skrll    a completely different format.  ECOFF targets use some of the
     78  1.1  skrll    swapping routines from coffswap.h, and some of the generic COFF
     79  1.1  skrll    routines in coffgen.c, but, unlike the real COFF targets, do not
     80  1.1  skrll    use coffcode.h itself.
     81  1.1  skrll 
     82  1.1  skrll    Get the generic COFF swapping routines, except for the reloc,
     83  1.1  skrll    symbol, and lineno ones.  Give them ecoff names.  Define some
     84  1.1  skrll    accessor macros for the large sizes used for Alpha ECOFF.  */
     85  1.1  skrll 
     86  1.1  skrll #define GET_FILEHDR_SYMPTR H_GET_64
     87  1.1  skrll #define PUT_FILEHDR_SYMPTR H_PUT_64
     88  1.1  skrll #define GET_AOUTHDR_TSIZE H_GET_64
     89  1.1  skrll #define PUT_AOUTHDR_TSIZE H_PUT_64
     90  1.1  skrll #define GET_AOUTHDR_DSIZE H_GET_64
     91  1.1  skrll #define PUT_AOUTHDR_DSIZE H_PUT_64
     92  1.1  skrll #define GET_AOUTHDR_BSIZE H_GET_64
     93  1.1  skrll #define PUT_AOUTHDR_BSIZE H_PUT_64
     94  1.1  skrll #define GET_AOUTHDR_ENTRY H_GET_64
     95  1.1  skrll #define PUT_AOUTHDR_ENTRY H_PUT_64
     96  1.1  skrll #define GET_AOUTHDR_TEXT_START H_GET_64
     97  1.1  skrll #define PUT_AOUTHDR_TEXT_START H_PUT_64
     98  1.1  skrll #define GET_AOUTHDR_DATA_START H_GET_64
     99  1.1  skrll #define PUT_AOUTHDR_DATA_START H_PUT_64
    100  1.1  skrll #define GET_SCNHDR_PADDR H_GET_64
    101  1.1  skrll #define PUT_SCNHDR_PADDR H_PUT_64
    102  1.1  skrll #define GET_SCNHDR_VADDR H_GET_64
    103  1.1  skrll #define PUT_SCNHDR_VADDR H_PUT_64
    104  1.1  skrll #define GET_SCNHDR_SIZE H_GET_64
    105  1.1  skrll #define PUT_SCNHDR_SIZE H_PUT_64
    106  1.1  skrll #define GET_SCNHDR_SCNPTR H_GET_64
    107  1.1  skrll #define PUT_SCNHDR_SCNPTR H_PUT_64
    108  1.1  skrll #define GET_SCNHDR_RELPTR H_GET_64
    109  1.1  skrll #define PUT_SCNHDR_RELPTR H_PUT_64
    110  1.1  skrll #define GET_SCNHDR_LNNOPTR H_GET_64
    111  1.1  skrll #define PUT_SCNHDR_LNNOPTR H_PUT_64
    112  1.1  skrll 
    113  1.1  skrll #define ALPHAECOFF
    114  1.1  skrll 
    115  1.1  skrll #define NO_COFF_RELOCS
    116  1.1  skrll #define NO_COFF_SYMBOLS
    117  1.1  skrll #define NO_COFF_LINENOS
    118  1.1  skrll #define coff_swap_filehdr_in alpha_ecoff_swap_filehdr_in
    119  1.1  skrll #define coff_swap_filehdr_out alpha_ecoff_swap_filehdr_out
    120  1.1  skrll #define coff_swap_aouthdr_in alpha_ecoff_swap_aouthdr_in
    121  1.1  skrll #define coff_swap_aouthdr_out alpha_ecoff_swap_aouthdr_out
    122  1.1  skrll #define coff_swap_scnhdr_in alpha_ecoff_swap_scnhdr_in
    123  1.1  skrll #define coff_swap_scnhdr_out alpha_ecoff_swap_scnhdr_out
    124  1.1  skrll #include "coffswap.h"
    125  1.1  skrll 
    126  1.1  skrll /* Get the ECOFF swapping routines.  */
    127  1.1  skrll #define ECOFF_64
    128  1.1  skrll #include "ecoffswap.h"
    129  1.1  skrll 
    130  1.1  skrll /* How to process the various reloc types.  */
    132  1.1  skrll 
    133  1.1  skrll static bfd_reloc_status_type reloc_nil
    134  1.1  skrll   PARAMS ((bfd *, arelent *, asymbol *, PTR, asection *, bfd *, char **));
    135  1.1  skrll 
    136  1.1  skrll static bfd_reloc_status_type
    137  1.1  skrll reloc_nil (abfd, reloc, sym, data, sec, output_bfd, error_message)
    138  1.1  skrll      bfd *abfd ATTRIBUTE_UNUSED;
    139  1.1  skrll      arelent *reloc ATTRIBUTE_UNUSED;
    140  1.1  skrll      asymbol *sym ATTRIBUTE_UNUSED;
    141  1.1  skrll      PTR data ATTRIBUTE_UNUSED;
    142  1.1  skrll      asection *sec ATTRIBUTE_UNUSED;
    143  1.1  skrll      bfd *output_bfd ATTRIBUTE_UNUSED;
    144  1.1  skrll      char **error_message ATTRIBUTE_UNUSED;
    145  1.1  skrll {
    146  1.1  skrll   return bfd_reloc_ok;
    147  1.1  skrll }
    148  1.1  skrll 
    149  1.1  skrll /* In case we're on a 32-bit machine, construct a 64-bit "-1" value
    150  1.1  skrll    from smaller values.  Start with zero, widen, *then* decrement.  */
    151  1.1  skrll #define MINUS_ONE	(((bfd_vma)0) - 1)
    152  1.1  skrll 
    153  1.1  skrll static reloc_howto_type alpha_howto_table[] =
    154  1.1  skrll {
    155  1.1  skrll   /* Reloc type 0 is ignored by itself.  However, it appears after a
    156  1.1  skrll      GPDISP reloc to identify the location where the low order 16 bits
    157  1.1  skrll      of the gp register are loaded.  */
    158  1.1  skrll   HOWTO (ALPHA_R_IGNORE,	/* type */
    159  1.1  skrll 	 0,			/* rightshift */
    160  1.1  skrll 	 0,			/* size (0 = byte, 1 = short, 2 = long) */
    161  1.1  skrll 	 8,			/* bitsize */
    162  1.1  skrll 	 TRUE,			/* pc_relative */
    163  1.1  skrll 	 0,			/* bitpos */
    164  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    165  1.1  skrll 	 reloc_nil,		/* special_function */
    166  1.1  skrll 	 "IGNORE",		/* name */
    167  1.1  skrll 	 TRUE,			/* partial_inplace */
    168  1.1  skrll 	 0,			/* src_mask */
    169  1.1  skrll 	 0,			/* dst_mask */
    170  1.1  skrll 	 TRUE),			/* pcrel_offset */
    171  1.1  skrll 
    172  1.1  skrll   /* A 32 bit reference to a symbol.  */
    173  1.1  skrll   HOWTO (ALPHA_R_REFLONG,	/* type */
    174  1.1  skrll 	 0,			/* rightshift */
    175  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    176  1.1  skrll 	 32,			/* bitsize */
    177  1.1  skrll 	 FALSE,			/* pc_relative */
    178  1.1  skrll 	 0,			/* bitpos */
    179  1.1  skrll 	 complain_overflow_bitfield, /* complain_on_overflow */
    180  1.1  skrll 	 0,			/* special_function */
    181  1.1  skrll 	 "REFLONG",		/* name */
    182  1.1  skrll 	 TRUE,			/* partial_inplace */
    183  1.1  skrll 	 0xffffffff,		/* src_mask */
    184  1.1  skrll 	 0xffffffff,		/* dst_mask */
    185  1.1  skrll 	 FALSE),		/* pcrel_offset */
    186  1.1  skrll 
    187  1.1  skrll   /* A 64 bit reference to a symbol.  */
    188  1.1  skrll   HOWTO (ALPHA_R_REFQUAD,	/* type */
    189  1.1  skrll 	 0,			/* rightshift */
    190  1.1  skrll 	 4,			/* size (0 = byte, 1 = short, 2 = long) */
    191  1.1  skrll 	 64,			/* bitsize */
    192  1.1  skrll 	 FALSE,			/* pc_relative */
    193  1.1  skrll 	 0,			/* bitpos */
    194  1.1  skrll 	 complain_overflow_bitfield, /* complain_on_overflow */
    195  1.1  skrll 	 0,			/* special_function */
    196  1.1  skrll 	 "REFQUAD",		/* name */
    197  1.1  skrll 	 TRUE,			/* partial_inplace */
    198  1.1  skrll 	 MINUS_ONE,		/* src_mask */
    199  1.1  skrll 	 MINUS_ONE,		/* dst_mask */
    200  1.1  skrll 	 FALSE),		/* pcrel_offset */
    201  1.1  skrll 
    202  1.1  skrll   /* A 32 bit GP relative offset.  This is just like REFLONG except
    203  1.1  skrll      that when the value is used the value of the gp register will be
    204  1.1  skrll      added in.  */
    205  1.1  skrll   HOWTO (ALPHA_R_GPREL32,	/* type */
    206  1.1  skrll 	 0,			/* rightshift */
    207  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    208  1.1  skrll 	 32,			/* bitsize */
    209  1.1  skrll 	 FALSE,			/* pc_relative */
    210  1.1  skrll 	 0,			/* bitpos */
    211  1.1  skrll 	 complain_overflow_bitfield, /* complain_on_overflow */
    212  1.1  skrll 	 0,			/* special_function */
    213  1.1  skrll 	 "GPREL32",		/* name */
    214  1.1  skrll 	 TRUE,			/* partial_inplace */
    215  1.1  skrll 	 0xffffffff,		/* src_mask */
    216  1.1  skrll 	 0xffffffff,		/* dst_mask */
    217  1.1  skrll 	 FALSE),		/* pcrel_offset */
    218  1.1  skrll 
    219  1.1  skrll   /* Used for an instruction that refers to memory off the GP
    220  1.1  skrll      register.  The offset is 16 bits of the 32 bit instruction.  This
    221  1.1  skrll      reloc always seems to be against the .lita section.  */
    222  1.1  skrll   HOWTO (ALPHA_R_LITERAL,	/* type */
    223  1.1  skrll 	 0,			/* rightshift */
    224  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    225  1.1  skrll 	 16,			/* bitsize */
    226  1.1  skrll 	 FALSE,			/* pc_relative */
    227  1.1  skrll 	 0,			/* bitpos */
    228  1.1  skrll 	 complain_overflow_signed, /* complain_on_overflow */
    229  1.1  skrll 	 0,			/* special_function */
    230  1.1  skrll 	 "LITERAL",		/* name */
    231  1.1  skrll 	 TRUE,			/* partial_inplace */
    232  1.1  skrll 	 0xffff,		/* src_mask */
    233  1.1  skrll 	 0xffff,		/* dst_mask */
    234  1.1  skrll 	 FALSE),		/* pcrel_offset */
    235  1.1  skrll 
    236  1.1  skrll   /* This reloc only appears immediately following a LITERAL reloc.
    237  1.1  skrll      It identifies a use of the literal.  It seems that the linker can
    238  1.1  skrll      use this to eliminate a portion of the .lita section.  The symbol
    239  1.1  skrll      index is special: 1 means the literal address is in the base
    240  1.1  skrll      register of a memory format instruction; 2 means the literal
    241  1.1  skrll      address is in the byte offset register of a byte-manipulation
    242  1.1  skrll      instruction; 3 means the literal address is in the target
    243  1.1  skrll      register of a jsr instruction.  This does not actually do any
    244  1.1  skrll      relocation.  */
    245  1.1  skrll   HOWTO (ALPHA_R_LITUSE,	/* type */
    246  1.1  skrll 	 0,			/* rightshift */
    247  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    248  1.1  skrll 	 32,			/* bitsize */
    249  1.1  skrll 	 FALSE,			/* pc_relative */
    250  1.1  skrll 	 0,			/* bitpos */
    251  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    252  1.1  skrll 	 reloc_nil,		/* special_function */
    253  1.1  skrll 	 "LITUSE",		/* name */
    254  1.1  skrll 	 FALSE,			/* partial_inplace */
    255  1.1  skrll 	 0,			/* src_mask */
    256  1.1  skrll 	 0,			/* dst_mask */
    257  1.1  skrll 	 FALSE),		/* pcrel_offset */
    258  1.1  skrll 
    259  1.1  skrll   /* Load the gp register.  This is always used for a ldah instruction
    260  1.1  skrll      which loads the upper 16 bits of the gp register.  The next reloc
    261  1.1  skrll      will be an IGNORE reloc which identifies the location of the lda
    262  1.1  skrll      instruction which loads the lower 16 bits.  The symbol index of
    263  1.1  skrll      the GPDISP instruction appears to actually be the number of bytes
    264  1.1  skrll      between the ldah and lda instructions.  This gives two different
    265  1.1  skrll      ways to determine where the lda instruction is; I don't know why
    266  1.1  skrll      both are used.  The value to use for the relocation is the
    267  1.1  skrll      difference between the GP value and the current location; the
    268  1.1  skrll      load will always be done against a register holding the current
    269  1.1  skrll      address.  */
    270  1.1  skrll   HOWTO (ALPHA_R_GPDISP,	/* type */
    271  1.1  skrll 	 16,			/* rightshift */
    272  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    273  1.1  skrll 	 16,			/* bitsize */
    274  1.1  skrll 	 TRUE,			/* pc_relative */
    275  1.1  skrll 	 0,			/* bitpos */
    276  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    277  1.1  skrll 	 reloc_nil,		/* special_function */
    278  1.1  skrll 	 "GPDISP",		/* name */
    279  1.1  skrll 	 TRUE,			/* partial_inplace */
    280  1.1  skrll 	 0xffff,		/* src_mask */
    281  1.1  skrll 	 0xffff,		/* dst_mask */
    282  1.1  skrll 	 TRUE),			/* pcrel_offset */
    283  1.1  skrll 
    284  1.1  skrll   /* A 21 bit branch.  The native assembler generates these for
    285  1.1  skrll      branches within the text segment, and also fills in the PC
    286  1.1  skrll      relative offset in the instruction.  */
    287  1.1  skrll   HOWTO (ALPHA_R_BRADDR,	/* type */
    288  1.1  skrll 	 2,			/* rightshift */
    289  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    290  1.1  skrll 	 21,			/* bitsize */
    291  1.1  skrll 	 TRUE,			/* pc_relative */
    292  1.1  skrll 	 0,			/* bitpos */
    293  1.1  skrll 	 complain_overflow_signed, /* complain_on_overflow */
    294  1.1  skrll 	 0,			/* special_function */
    295  1.1  skrll 	 "BRADDR",		/* name */
    296  1.1  skrll 	 TRUE,			/* partial_inplace */
    297  1.1  skrll 	 0x1fffff,		/* src_mask */
    298  1.1  skrll 	 0x1fffff,		/* dst_mask */
    299  1.1  skrll 	 FALSE),		/* pcrel_offset */
    300  1.1  skrll 
    301  1.1  skrll   /* A hint for a jump to a register.  */
    302  1.1  skrll   HOWTO (ALPHA_R_HINT,		/* type */
    303  1.1  skrll 	 2,			/* rightshift */
    304  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    305  1.1  skrll 	 14,			/* bitsize */
    306  1.1  skrll 	 TRUE,			/* pc_relative */
    307  1.1  skrll 	 0,			/* bitpos */
    308  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    309  1.1  skrll 	 0,			/* special_function */
    310  1.1  skrll 	 "HINT",		/* name */
    311  1.1  skrll 	 TRUE,			/* partial_inplace */
    312  1.1  skrll 	 0x3fff,		/* src_mask */
    313  1.1  skrll 	 0x3fff,		/* dst_mask */
    314  1.1  skrll 	 FALSE),		/* pcrel_offset */
    315  1.1  skrll 
    316  1.1  skrll   /* 16 bit PC relative offset.  */
    317  1.1  skrll   HOWTO (ALPHA_R_SREL16,	/* type */
    318  1.1  skrll 	 0,			/* rightshift */
    319  1.1  skrll 	 1,			/* size (0 = byte, 1 = short, 2 = long) */
    320  1.1  skrll 	 16,			/* bitsize */
    321  1.1  skrll 	 TRUE,			/* pc_relative */
    322  1.1  skrll 	 0,			/* bitpos */
    323  1.1  skrll 	 complain_overflow_signed, /* complain_on_overflow */
    324  1.1  skrll 	 0,			/* special_function */
    325  1.1  skrll 	 "SREL16",		/* name */
    326  1.1  skrll 	 TRUE,			/* partial_inplace */
    327  1.1  skrll 	 0xffff,		/* src_mask */
    328  1.1  skrll 	 0xffff,		/* dst_mask */
    329  1.1  skrll 	 FALSE),		/* pcrel_offset */
    330  1.1  skrll 
    331  1.1  skrll   /* 32 bit PC relative offset.  */
    332  1.1  skrll   HOWTO (ALPHA_R_SREL32,	/* type */
    333  1.1  skrll 	 0,			/* rightshift */
    334  1.1  skrll 	 2,			/* size (0 = byte, 1 = short, 2 = long) */
    335  1.1  skrll 	 32,			/* bitsize */
    336  1.1  skrll 	 TRUE,			/* pc_relative */
    337  1.1  skrll 	 0,			/* bitpos */
    338  1.1  skrll 	 complain_overflow_signed, /* complain_on_overflow */
    339  1.1  skrll 	 0,			/* special_function */
    340  1.1  skrll 	 "SREL32",		/* name */
    341  1.1  skrll 	 TRUE,			/* partial_inplace */
    342  1.1  skrll 	 0xffffffff,		/* src_mask */
    343  1.1  skrll 	 0xffffffff,		/* dst_mask */
    344  1.1  skrll 	 FALSE),		/* pcrel_offset */
    345  1.1  skrll 
    346  1.1  skrll   /* A 64 bit PC relative offset.  */
    347  1.1  skrll   HOWTO (ALPHA_R_SREL64,	/* type */
    348  1.1  skrll 	 0,			/* rightshift */
    349  1.1  skrll 	 4,			/* size (0 = byte, 1 = short, 2 = long) */
    350  1.1  skrll 	 64,			/* bitsize */
    351  1.1  skrll 	 TRUE,			/* pc_relative */
    352  1.1  skrll 	 0,			/* bitpos */
    353  1.1  skrll 	 complain_overflow_signed, /* complain_on_overflow */
    354  1.1  skrll 	 0,			/* special_function */
    355  1.1  skrll 	 "SREL64",		/* name */
    356  1.1  skrll 	 TRUE,			/* partial_inplace */
    357  1.1  skrll 	 MINUS_ONE,		/* src_mask */
    358  1.1  skrll 	 MINUS_ONE,		/* dst_mask */
    359  1.1  skrll 	 FALSE),		/* pcrel_offset */
    360  1.1  skrll 
    361  1.1  skrll   /* Push a value on the reloc evaluation stack.  */
    362  1.1  skrll   HOWTO (ALPHA_R_OP_PUSH,	/* type */
    363  1.1  skrll 	 0,			/* rightshift */
    364  1.1  skrll 	 0,			/* size (0 = byte, 1 = short, 2 = long) */
    365  1.1  skrll 	 0,			/* bitsize */
    366  1.1  skrll 	 FALSE,			/* pc_relative */
    367  1.1  skrll 	 0,			/* bitpos */
    368  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    369  1.1  skrll 	 0,			/* special_function */
    370  1.1  skrll 	 "OP_PUSH",		/* name */
    371  1.1  skrll 	 FALSE,			/* partial_inplace */
    372  1.1  skrll 	 0,			/* src_mask */
    373  1.1  skrll 	 0,			/* dst_mask */
    374  1.1  skrll 	 FALSE),		/* pcrel_offset */
    375  1.1  skrll 
    376  1.1  skrll   /* Store the value from the stack at the given address.  Store it in
    377  1.1  skrll      a bitfield of size r_size starting at bit position r_offset.  */
    378  1.1  skrll   HOWTO (ALPHA_R_OP_STORE,	/* type */
    379  1.1  skrll 	 0,			/* rightshift */
    380  1.1  skrll 	 4,			/* size (0 = byte, 1 = short, 2 = long) */
    381  1.1  skrll 	 64,			/* bitsize */
    382  1.1  skrll 	 FALSE,			/* pc_relative */
    383  1.1  skrll 	 0,			/* bitpos */
    384  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    385  1.1  skrll 	 0,			/* special_function */
    386  1.1  skrll 	 "OP_STORE",		/* name */
    387  1.1  skrll 	 FALSE,			/* partial_inplace */
    388  1.1  skrll 	 0,			/* src_mask */
    389  1.1  skrll 	 MINUS_ONE,		/* dst_mask */
    390  1.1  skrll 	 FALSE),		/* pcrel_offset */
    391  1.1  skrll 
    392  1.1  skrll   /* Subtract the reloc address from the value on the top of the
    393  1.1  skrll      relocation stack.  */
    394  1.1  skrll   HOWTO (ALPHA_R_OP_PSUB,	/* type */
    395  1.1  skrll 	 0,			/* rightshift */
    396  1.1  skrll 	 0,			/* size (0 = byte, 1 = short, 2 = long) */
    397  1.1  skrll 	 0,			/* bitsize */
    398  1.1  skrll 	 FALSE,			/* pc_relative */
    399  1.1  skrll 	 0,			/* bitpos */
    400  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    401  1.1  skrll 	 0,			/* special_function */
    402  1.1  skrll 	 "OP_PSUB",		/* name */
    403  1.1  skrll 	 FALSE,			/* partial_inplace */
    404  1.1  skrll 	 0,			/* src_mask */
    405  1.1  skrll 	 0,			/* dst_mask */
    406  1.1  skrll 	 FALSE),		/* pcrel_offset */
    407  1.1  skrll 
    408  1.1  skrll   /* Shift the value on the top of the relocation stack right by the
    409  1.1  skrll      given value.  */
    410  1.1  skrll   HOWTO (ALPHA_R_OP_PRSHIFT,	/* type */
    411  1.1  skrll 	 0,			/* rightshift */
    412  1.1  skrll 	 0,			/* size (0 = byte, 1 = short, 2 = long) */
    413  1.1  skrll 	 0,			/* bitsize */
    414  1.1  skrll 	 FALSE,			/* pc_relative */
    415  1.1  skrll 	 0,			/* bitpos */
    416  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    417  1.1  skrll 	 0,			/* special_function */
    418  1.1  skrll 	 "OP_PRSHIFT",		/* name */
    419  1.1  skrll 	 FALSE,			/* partial_inplace */
    420  1.1  skrll 	 0,			/* src_mask */
    421  1.1  skrll 	 0,			/* dst_mask */
    422  1.1  skrll 	 FALSE),		/* pcrel_offset */
    423  1.1  skrll 
    424  1.1  skrll   /* Adjust the GP value for a new range in the object file.  */
    425  1.1  skrll   HOWTO (ALPHA_R_GPVALUE,	/* type */
    426  1.1  skrll 	 0,			/* rightshift */
    427  1.1  skrll 	 0,			/* size (0 = byte, 1 = short, 2 = long) */
    428  1.1  skrll 	 0,			/* bitsize */
    429  1.1  skrll 	 FALSE,			/* pc_relative */
    430  1.1  skrll 	 0,			/* bitpos */
    431  1.1  skrll 	 complain_overflow_dont, /* complain_on_overflow */
    432  1.1  skrll 	 0,			/* special_function */
    433  1.1  skrll 	 "GPVALUE",		/* name */
    434  1.1  skrll 	 FALSE,			/* partial_inplace */
    435  1.1  skrll 	 0,			/* src_mask */
    436  1.1  skrll 	 0,			/* dst_mask */
    437  1.1  skrll 	 FALSE)			/* pcrel_offset */
    438  1.1  skrll };
    439  1.1  skrll 
    440  1.1  skrll /* Recognize an Alpha ECOFF file.  */
    442  1.1  skrll 
    443  1.1  skrll static const bfd_target *
    444  1.1  skrll alpha_ecoff_object_p (abfd)
    445  1.1  skrll      bfd *abfd;
    446  1.1  skrll {
    447  1.1  skrll   static const bfd_target *ret;
    448  1.1  skrll 
    449  1.1  skrll   ret = coff_object_p (abfd);
    450  1.1  skrll 
    451  1.1  skrll   if (ret != NULL)
    452  1.1  skrll     {
    453  1.1  skrll       asection *sec;
    454  1.1  skrll 
    455  1.1  skrll       /* Alpha ECOFF has a .pdata section.  The lnnoptr field of the
    456  1.1  skrll 	 .pdata section is the number of entries it contains.  Each
    457  1.1  skrll 	 entry takes up 8 bytes.  The number of entries is required
    458  1.1  skrll 	 since the section is aligned to a 16 byte boundary.  When we
    459  1.1  skrll 	 link .pdata sections together, we do not want to include the
    460  1.1  skrll 	 alignment bytes.  We handle this on input by faking the size
    461  1.1  skrll 	 of the .pdata section to remove the unwanted alignment bytes.
    462  1.1  skrll 	 On output we will set the lnnoptr field and force the
    463  1.1  skrll 	 alignment.  */
    464  1.1  skrll       sec = bfd_get_section_by_name (abfd, _PDATA);
    465  1.1  skrll       if (sec != (asection *) NULL)
    466  1.1  skrll 	{
    467  1.1  skrll 	  bfd_size_type size;
    468  1.1  skrll 
    469  1.1  skrll 	  size = sec->line_filepos * 8;
    470  1.1  skrll 	  BFD_ASSERT (size == sec->size
    471  1.1  skrll 		      || size + 8 == sec->size);
    472  1.1  skrll 	  if (! bfd_set_section_size (abfd, sec, size))
    473  1.1  skrll 	    return NULL;
    474  1.1  skrll 	}
    475  1.1  skrll     }
    476  1.1  skrll 
    477  1.1  skrll   return ret;
    478  1.1  skrll }
    479  1.1  skrll 
    480  1.1  skrll /* See whether the magic number matches.  */
    481  1.1  skrll 
    482  1.1  skrll static bfd_boolean
    483  1.1  skrll alpha_ecoff_bad_format_hook (abfd, filehdr)
    484  1.1  skrll      bfd *abfd ATTRIBUTE_UNUSED;
    485  1.1  skrll      PTR filehdr;
    486  1.1  skrll {
    487  1.1  skrll   struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
    488  1.1  skrll 
    489  1.1  skrll   if (! ALPHA_ECOFF_BADMAG (*internal_f))
    490  1.1  skrll     return TRUE;
    491  1.1  skrll 
    492  1.1  skrll   if (ALPHA_ECOFF_COMPRESSEDMAG (*internal_f))
    493  1.1  skrll     (*_bfd_error_handler)
    494  1.1  skrll       (_("%B: Cannot handle compressed Alpha binaries.\n"
    495  1.1  skrll 	 "   Use compiler flags, or objZ, to generate uncompressed binaries."),
    496  1.1  skrll        abfd);
    497  1.1  skrll 
    498  1.1  skrll   return FALSE;
    499  1.1  skrll }
    500  1.1  skrll 
    501  1.1  skrll /* This is a hook called by coff_real_object_p to create any backend
    502  1.1  skrll    specific information.  */
    503  1.1  skrll 
    504  1.1  skrll static PTR
    505  1.1  skrll alpha_ecoff_mkobject_hook (abfd, filehdr, aouthdr)
    506  1.1  skrll      bfd *abfd;
    507  1.1  skrll      PTR filehdr;
    508  1.1  skrll      PTR aouthdr;
    509  1.1  skrll {
    510  1.1  skrll   PTR ecoff;
    511  1.1  skrll 
    512  1.1  skrll   ecoff = _bfd_ecoff_mkobject_hook (abfd, filehdr, aouthdr);
    513  1.1  skrll 
    514  1.1  skrll   if (ecoff != NULL)
    515  1.1  skrll     {
    516  1.1  skrll       struct internal_filehdr *internal_f = (struct internal_filehdr *) filehdr;
    517  1.1  skrll 
    518  1.1  skrll       /* Set additional BFD flags according to the object type from the
    519  1.1  skrll 	 machine specific file header flags.  */
    520  1.1  skrll       switch (internal_f->f_flags & F_ALPHA_OBJECT_TYPE_MASK)
    521  1.1  skrll 	{
    522  1.1  skrll 	case F_ALPHA_SHARABLE:
    523  1.1  skrll 	  abfd->flags |= DYNAMIC;
    524  1.1  skrll 	  break;
    525  1.1  skrll 	case F_ALPHA_CALL_SHARED:
    526  1.1  skrll 	  /* Always executable if using shared libraries as the run time
    527  1.1  skrll 	     loader might resolve undefined references.  */
    528  1.1  skrll 	  abfd->flags |= (DYNAMIC | EXEC_P);
    529  1.1  skrll 	  break;
    530  1.1  skrll 	}
    531  1.1  skrll     }
    532  1.1  skrll   return ecoff;
    533  1.1  skrll }
    534  1.1  skrll 
    535  1.1  skrll /* Reloc handling.  */
    537  1.1  skrll 
    538  1.1  skrll /* Swap a reloc in.  */
    539  1.1  skrll 
    540  1.1  skrll static void
    541  1.1  skrll alpha_ecoff_swap_reloc_in (abfd, ext_ptr, intern)
    542  1.1  skrll      bfd *abfd;
    543  1.1  skrll      PTR ext_ptr;
    544  1.1  skrll      struct internal_reloc *intern;
    545  1.1  skrll {
    546  1.1  skrll   const RELOC *ext = (RELOC *) ext_ptr;
    547  1.1  skrll 
    548  1.1  skrll   intern->r_vaddr = H_GET_64 (abfd, ext->r_vaddr);
    549  1.1  skrll   intern->r_symndx = H_GET_32 (abfd, ext->r_symndx);
    550  1.1  skrll 
    551  1.1  skrll   BFD_ASSERT (bfd_header_little_endian (abfd));
    552  1.1  skrll 
    553  1.1  skrll   intern->r_type = ((ext->r_bits[0] & RELOC_BITS0_TYPE_LITTLE)
    554  1.1  skrll 		    >> RELOC_BITS0_TYPE_SH_LITTLE);
    555  1.1  skrll   intern->r_extern = (ext->r_bits[1] & RELOC_BITS1_EXTERN_LITTLE) != 0;
    556  1.1  skrll   intern->r_offset = ((ext->r_bits[1] & RELOC_BITS1_OFFSET_LITTLE)
    557  1.1  skrll 		      >> RELOC_BITS1_OFFSET_SH_LITTLE);
    558  1.1  skrll   /* Ignored the reserved bits.  */
    559  1.1  skrll   intern->r_size = ((ext->r_bits[3] & RELOC_BITS3_SIZE_LITTLE)
    560  1.1  skrll 		    >> RELOC_BITS3_SIZE_SH_LITTLE);
    561  1.1  skrll 
    562  1.1  skrll   if (intern->r_type == ALPHA_R_LITUSE
    563  1.1  skrll       || intern->r_type == ALPHA_R_GPDISP)
    564  1.1  skrll     {
    565  1.1  skrll       /* Handle the LITUSE and GPDISP relocs specially.  Its symndx
    566  1.1  skrll 	 value is not actually a symbol index, but is instead a
    567  1.1  skrll 	 special code.  We put the code in the r_size field, and
    568  1.1  skrll 	 clobber the symndx.  */
    569  1.1  skrll       if (intern->r_size != 0)
    570  1.1  skrll 	abort ();
    571  1.1  skrll       intern->r_size = intern->r_symndx;
    572  1.1  skrll       intern->r_symndx = RELOC_SECTION_NONE;
    573  1.1  skrll     }
    574  1.1  skrll   else if (intern->r_type == ALPHA_R_IGNORE)
    575  1.1  skrll     {
    576  1.1  skrll       /* The IGNORE reloc generally follows a GPDISP reloc, and is
    577  1.1  skrll 	 against the .lita section.  The section is irrelevant.  */
    578  1.1  skrll       if (! intern->r_extern &&
    579  1.1  skrll 	  intern->r_symndx == RELOC_SECTION_ABS)
    580  1.1  skrll 	abort ();
    581  1.1  skrll       if (! intern->r_extern && intern->r_symndx == RELOC_SECTION_LITA)
    582  1.1  skrll 	intern->r_symndx = RELOC_SECTION_ABS;
    583  1.1  skrll     }
    584  1.1  skrll }
    585  1.1  skrll 
    586  1.1  skrll /* Swap a reloc out.  */
    587  1.1  skrll 
    588  1.1  skrll static void
    589  1.1  skrll alpha_ecoff_swap_reloc_out (abfd, intern, dst)
    590  1.1  skrll      bfd *abfd;
    591  1.1  skrll      const struct internal_reloc *intern;
    592  1.1  skrll      PTR dst;
    593  1.1  skrll {
    594  1.1  skrll   RELOC *ext = (RELOC *) dst;
    595  1.1  skrll   long symndx;
    596  1.1  skrll   unsigned char size;
    597  1.1  skrll 
    598  1.1  skrll   /* Undo the hackery done in swap_reloc_in.  */
    599  1.1  skrll   if (intern->r_type == ALPHA_R_LITUSE
    600  1.1  skrll       || intern->r_type == ALPHA_R_GPDISP)
    601  1.1  skrll     {
    602  1.1  skrll       symndx = intern->r_size;
    603  1.1  skrll       size = 0;
    604  1.1  skrll     }
    605  1.1  skrll   else if (intern->r_type == ALPHA_R_IGNORE
    606  1.1  skrll 	   && ! intern->r_extern
    607  1.1  skrll 	   && intern->r_symndx == RELOC_SECTION_ABS)
    608  1.1  skrll     {
    609  1.1  skrll       symndx = RELOC_SECTION_LITA;
    610  1.1  skrll       size = intern->r_size;
    611  1.1  skrll     }
    612  1.1  skrll   else
    613  1.1  skrll     {
    614  1.1  skrll       symndx = intern->r_symndx;
    615  1.1  skrll       size = intern->r_size;
    616  1.1  skrll     }
    617  1.1  skrll 
    618  1.1  skrll   /* XXX FIXME:  The maximum symndx value used to be 14 but this
    619  1.1  skrll      fails with object files produced by DEC's C++ compiler.
    620  1.1  skrll      Where does the value 14 (or 15) come from anyway ?  */
    621  1.1  skrll   BFD_ASSERT (intern->r_extern
    622  1.1  skrll 	      || (intern->r_symndx >= 0 && intern->r_symndx <= 15));
    623  1.1  skrll 
    624  1.1  skrll   H_PUT_64 (abfd, intern->r_vaddr, ext->r_vaddr);
    625  1.1  skrll   H_PUT_32 (abfd, symndx, ext->r_symndx);
    626  1.1  skrll 
    627  1.1  skrll   BFD_ASSERT (bfd_header_little_endian (abfd));
    628  1.1  skrll 
    629  1.1  skrll   ext->r_bits[0] = ((intern->r_type << RELOC_BITS0_TYPE_SH_LITTLE)
    630  1.1  skrll 		    & RELOC_BITS0_TYPE_LITTLE);
    631  1.1  skrll   ext->r_bits[1] = ((intern->r_extern ? RELOC_BITS1_EXTERN_LITTLE : 0)
    632  1.1  skrll 		    | ((intern->r_offset << RELOC_BITS1_OFFSET_SH_LITTLE)
    633  1.1  skrll 		       & RELOC_BITS1_OFFSET_LITTLE));
    634  1.1  skrll   ext->r_bits[2] = 0;
    635  1.1  skrll   ext->r_bits[3] = ((size << RELOC_BITS3_SIZE_SH_LITTLE)
    636  1.1  skrll 		    & RELOC_BITS3_SIZE_LITTLE);
    637  1.1  skrll }
    638  1.1  skrll 
    639  1.1  skrll /* Finish canonicalizing a reloc.  Part of this is generic to all
    640  1.1  skrll    ECOFF targets, and that part is in ecoff.c.  The rest is done in
    641  1.1  skrll    this backend routine.  It must fill in the howto field.  */
    642  1.1  skrll 
    643  1.1  skrll static void
    644  1.1  skrll alpha_adjust_reloc_in (abfd, intern, rptr)
    645  1.1  skrll      bfd *abfd;
    646  1.1  skrll      const struct internal_reloc *intern;
    647  1.1  skrll      arelent *rptr;
    648  1.1  skrll {
    649  1.1  skrll   if (intern->r_type > ALPHA_R_GPVALUE)
    650  1.1  skrll     {
    651  1.1  skrll       (*_bfd_error_handler)
    652  1.1  skrll 	(_("%B: unknown/unsupported relocation type %d"),
    653  1.1  skrll 	 abfd, intern->r_type);
    654  1.1  skrll       bfd_set_error (bfd_error_bad_value);
    655  1.1  skrll       rptr->addend = 0;
    656  1.1  skrll       rptr->howto  = NULL;
    657  1.1  skrll       return;
    658  1.1  skrll     }
    659  1.1  skrll 
    660  1.1  skrll   switch (intern->r_type)
    661  1.1  skrll     {
    662  1.1  skrll     case ALPHA_R_BRADDR:
    663  1.1  skrll     case ALPHA_R_SREL16:
    664  1.1  skrll     case ALPHA_R_SREL32:
    665  1.1  skrll     case ALPHA_R_SREL64:
    666  1.1  skrll       /* This relocs appear to be fully resolved when they are against
    667  1.1  skrll          internal symbols.  Against external symbols, BRADDR at least
    668  1.1  skrll          appears to be resolved against the next instruction.  */
    669  1.1  skrll       if (! intern->r_extern)
    670  1.1  skrll 	rptr->addend = 0;
    671  1.1  skrll       else
    672  1.1  skrll 	rptr->addend = - (intern->r_vaddr + 4);
    673  1.1  skrll       break;
    674  1.1  skrll 
    675  1.1  skrll     case ALPHA_R_GPREL32:
    676  1.1  skrll     case ALPHA_R_LITERAL:
    677  1.1  skrll       /* Copy the gp value for this object file into the addend, to
    678  1.1  skrll 	 ensure that we are not confused by the linker.  */
    679  1.1  skrll       if (! intern->r_extern)
    680  1.1  skrll 	rptr->addend += ecoff_data (abfd)->gp;
    681  1.1  skrll       break;
    682  1.1  skrll 
    683  1.1  skrll     case ALPHA_R_LITUSE:
    684  1.1  skrll     case ALPHA_R_GPDISP:
    685  1.1  skrll       /* The LITUSE and GPDISP relocs do not use a symbol, or an
    686  1.1  skrll 	 addend, but they do use a special code.  Put this code in the
    687  1.1  skrll 	 addend field.  */
    688  1.1  skrll       rptr->addend = intern->r_size;
    689  1.2  skrll       break;
    690  1.1  skrll 
    691  1.2  skrll     case ALPHA_R_OP_STORE:
    692  1.1  skrll       /* The STORE reloc needs the size and offset fields.  We store
    693  1.1  skrll 	 them in the addend.  */
    694  1.1  skrll #if 0
    695  1.1  skrll       BFD_ASSERT (intern->r_offset <= 256);
    696  1.1  skrll #endif
    697  1.1  skrll       rptr->addend = (intern->r_offset << 8) + intern->r_size;
    698  1.1  skrll       break;
    699  1.1  skrll 
    700  1.1  skrll     case ALPHA_R_OP_PUSH:
    701  1.1  skrll     case ALPHA_R_OP_PSUB:
    702  1.1  skrll     case ALPHA_R_OP_PRSHIFT:
    703  1.1  skrll       /* The PUSH, PSUB and PRSHIFT relocs do not actually use an
    704  1.1  skrll 	 address.  I believe that the address supplied is really an
    705  1.1  skrll 	 addend.  */
    706  1.1  skrll       rptr->addend = intern->r_vaddr;
    707  1.1  skrll       break;
    708  1.1  skrll 
    709  1.1  skrll     case ALPHA_R_GPVALUE:
    710  1.1  skrll       /* Set the addend field to the new GP value.  */
    711  1.1  skrll       rptr->addend = intern->r_symndx + ecoff_data (abfd)->gp;
    712  1.1  skrll       break;
    713  1.1  skrll 
    714  1.1  skrll     case ALPHA_R_IGNORE:
    715  1.1  skrll       /* If the type is ALPHA_R_IGNORE, make sure this is a reference
    716  1.1  skrll 	 to the absolute section so that the reloc is ignored.  For
    717  1.1  skrll 	 some reason the address of this reloc type is not adjusted by
    718  1.1  skrll 	 the section vma.  We record the gp value for this object file
    719  1.1  skrll 	 here, for convenience when doing the GPDISP relocation.  */
    720  1.1  skrll       rptr->sym_ptr_ptr = bfd_abs_section_ptr->symbol_ptr_ptr;
    721  1.1  skrll       rptr->address = intern->r_vaddr;
    722  1.1  skrll       rptr->addend = ecoff_data (abfd)->gp;
    723  1.1  skrll       break;
    724  1.1  skrll 
    725  1.1  skrll     default:
    726  1.1  skrll       break;
    727  1.1  skrll     }
    728  1.1  skrll 
    729  1.1  skrll   rptr->howto = &alpha_howto_table[intern->r_type];
    730  1.1  skrll }
    731  1.1  skrll 
    732  1.1  skrll /* When writing out a reloc we need to pull some values back out of
    733  1.1  skrll    the addend field into the reloc.  This is roughly the reverse of
    734  1.1  skrll    alpha_adjust_reloc_in, except that there are several changes we do
    735  1.1  skrll    not need to undo.  */
    736  1.1  skrll 
    737  1.1  skrll static void
    738  1.1  skrll alpha_adjust_reloc_out (abfd, rel, intern)
    739  1.1  skrll      bfd *abfd ATTRIBUTE_UNUSED;
    740  1.1  skrll      const arelent *rel;
    741  1.1  skrll      struct internal_reloc *intern;
    742  1.1  skrll {
    743  1.1  skrll   switch (intern->r_type)
    744  1.1  skrll     {
    745  1.1  skrll     case ALPHA_R_LITUSE:
    746  1.1  skrll     case ALPHA_R_GPDISP:
    747  1.1  skrll       intern->r_size = rel->addend;
    748  1.1  skrll       break;
    749  1.1  skrll 
    750  1.1  skrll     case ALPHA_R_OP_STORE:
    751  1.1  skrll       intern->r_size = rel->addend & 0xff;
    752  1.1  skrll       intern->r_offset = (rel->addend >> 8) & 0xff;
    753  1.1  skrll       break;
    754  1.1  skrll 
    755  1.1  skrll     case ALPHA_R_OP_PUSH:
    756  1.1  skrll     case ALPHA_R_OP_PSUB:
    757  1.1  skrll     case ALPHA_R_OP_PRSHIFT:
    758  1.1  skrll       intern->r_vaddr = rel->addend;
    759  1.1  skrll       break;
    760  1.1  skrll 
    761  1.1  skrll     case ALPHA_R_IGNORE:
    762  1.1  skrll       intern->r_vaddr = rel->address;
    763  1.1  skrll       break;
    764  1.1  skrll 
    765  1.1  skrll     default:
    766  1.1  skrll       break;
    767  1.1  skrll     }
    768  1.1  skrll }
    769  1.1  skrll 
    770  1.1  skrll /* The size of the stack for the relocation evaluator.  */
    771  1.1  skrll #define RELOC_STACKSIZE (10)
    772  1.1  skrll 
    773  1.1  skrll /* Alpha ECOFF relocs have a built in expression evaluator as well as
    774  1.1  skrll    other interdependencies.  Rather than use a bunch of special
    775  1.1  skrll    functions and global variables, we use a single routine to do all
    776  1.1  skrll    the relocation for a section.  I haven't yet worked out how the
    777  1.1  skrll    assembler is going to handle this.  */
    778  1.1  skrll 
    779  1.1  skrll static bfd_byte *
    780  1.1  skrll alpha_ecoff_get_relocated_section_contents (abfd, link_info, link_order,
    781  1.1  skrll 					    data, relocatable, symbols)
    782  1.1  skrll      bfd *abfd;
    783  1.1  skrll      struct bfd_link_info *link_info;
    784  1.1  skrll      struct bfd_link_order *link_order;
    785  1.1  skrll      bfd_byte *data;
    786  1.1  skrll      bfd_boolean relocatable;
    787  1.1  skrll      asymbol **symbols;
    788  1.1  skrll {
    789  1.1  skrll   bfd *input_bfd = link_order->u.indirect.section->owner;
    790  1.1  skrll   asection *input_section = link_order->u.indirect.section;
    791  1.1  skrll   long reloc_size = bfd_get_reloc_upper_bound (input_bfd, input_section);
    792  1.1  skrll   arelent **reloc_vector = NULL;
    793  1.1  skrll   long reloc_count;
    794  1.1  skrll   bfd *output_bfd = relocatable ? abfd : (bfd *) NULL;
    795  1.1  skrll   bfd_vma gp;
    796  1.1  skrll   bfd_size_type sz;
    797  1.1  skrll   bfd_boolean gp_undefined;
    798  1.1  skrll   bfd_vma stack[RELOC_STACKSIZE];
    799  1.1  skrll   int tos = 0;
    800  1.1  skrll 
    801  1.1  skrll   if (reloc_size < 0)
    802  1.1  skrll     goto error_return;
    803  1.1  skrll   reloc_vector = (arelent **) bfd_malloc ((bfd_size_type) reloc_size);
    804  1.1  skrll   if (reloc_vector == NULL && reloc_size != 0)
    805  1.1  skrll     goto error_return;
    806  1.1  skrll 
    807  1.1  skrll   sz = input_section->rawsize ? input_section->rawsize : input_section->size;
    808  1.1  skrll   if (! bfd_get_section_contents (input_bfd, input_section, data, 0, sz))
    809  1.1  skrll     goto error_return;
    810  1.1  skrll 
    811  1.1  skrll   reloc_count = bfd_canonicalize_reloc (input_bfd, input_section,
    812  1.1  skrll 					reloc_vector, symbols);
    813  1.1  skrll   if (reloc_count < 0)
    814  1.1  skrll     goto error_return;
    815  1.1  skrll   if (reloc_count == 0)
    816  1.1  skrll     goto successful_return;
    817  1.1  skrll 
    818  1.1  skrll   /* Get the GP value for the output BFD.  */
    819  1.1  skrll   gp_undefined = FALSE;
    820  1.1  skrll   gp = _bfd_get_gp_value (abfd);
    821  1.1  skrll   if (gp == 0)
    822  1.1  skrll     {
    823  1.1  skrll       if (relocatable)
    824  1.1  skrll 	{
    825  1.1  skrll 	  asection *sec;
    826  1.1  skrll 	  bfd_vma lo;
    827  1.1  skrll 
    828  1.1  skrll 	  /* Make up a value.  */
    829  1.1  skrll 	  lo = (bfd_vma) -1;
    830  1.1  skrll 	  for (sec = abfd->sections; sec != NULL; sec = sec->next)
    831  1.1  skrll 	    {
    832  1.1  skrll 	      if (sec->vma < lo
    833  1.1  skrll 		  && (strcmp (sec->name, ".sbss") == 0
    834  1.1  skrll 		      || strcmp (sec->name, ".sdata") == 0
    835  1.1  skrll 		      || strcmp (sec->name, ".lit4") == 0
    836  1.1  skrll 		      || strcmp (sec->name, ".lit8") == 0
    837  1.1  skrll 		      || strcmp (sec->name, ".lita") == 0))
    838  1.1  skrll 		lo = sec->vma;
    839  1.1  skrll 	    }
    840  1.1  skrll 	  gp = lo + 0x8000;
    841  1.1  skrll 	  _bfd_set_gp_value (abfd, gp);
    842  1.1  skrll 	}
    843  1.1  skrll       else
    844  1.1  skrll 	{
    845  1.1  skrll 	  struct bfd_link_hash_entry *h;
    846  1.1  skrll 
    847  1.1  skrll 	  h = bfd_link_hash_lookup (link_info->hash, "_gp", FALSE, FALSE,
    848  1.1  skrll 				    TRUE);
    849  1.1  skrll 	  if (h == (struct bfd_link_hash_entry *) NULL
    850  1.1  skrll 	      || h->type != bfd_link_hash_defined)
    851  1.1  skrll 	    gp_undefined = TRUE;
    852  1.1  skrll 	  else
    853  1.1  skrll 	    {
    854  1.1  skrll 	      gp = (h->u.def.value
    855  1.1  skrll 		    + h->u.def.section->output_section->vma
    856  1.1  skrll 		    + h->u.def.section->output_offset);
    857  1.1  skrll 	      _bfd_set_gp_value (abfd, gp);
    858  1.1  skrll 	    }
    859  1.1  skrll 	}
    860  1.1  skrll     }
    861  1.1  skrll 
    862  1.1  skrll   for (; *reloc_vector != (arelent *) NULL; reloc_vector++)
    863  1.1  skrll     {
    864  1.1  skrll       arelent *rel;
    865  1.1  skrll       bfd_reloc_status_type r;
    866  1.1  skrll       char *err;
    867  1.1  skrll 
    868  1.1  skrll       rel = *reloc_vector;
    869  1.1  skrll       r = bfd_reloc_ok;
    870  1.1  skrll       switch (rel->howto->type)
    871  1.1  skrll 	{
    872  1.1  skrll 	case ALPHA_R_IGNORE:
    873  1.1  skrll 	  rel->address += input_section->output_offset;
    874  1.1  skrll 	  break;
    875  1.1  skrll 
    876  1.1  skrll 	case ALPHA_R_REFLONG:
    877  1.1  skrll 	case ALPHA_R_REFQUAD:
    878  1.1  skrll 	case ALPHA_R_BRADDR:
    879  1.1  skrll 	case ALPHA_R_HINT:
    880  1.1  skrll 	case ALPHA_R_SREL16:
    881  1.1  skrll 	case ALPHA_R_SREL32:
    882  1.1  skrll 	case ALPHA_R_SREL64:
    883  1.1  skrll 	  if (relocatable
    884  1.1  skrll 	      && ((*rel->sym_ptr_ptr)->flags & BSF_SECTION_SYM) == 0)
    885  1.1  skrll 	    {
    886  1.1  skrll 	      rel->address += input_section->output_offset;
    887  1.1  skrll 	      break;
    888  1.1  skrll 	    }
    889  1.1  skrll 	  r = bfd_perform_relocation (input_bfd, rel, data, input_section,
    890  1.1  skrll 				      output_bfd, &err);
    891  1.1  skrll 	  break;
    892  1.1  skrll 
    893  1.1  skrll 	case ALPHA_R_GPREL32:
    894  1.1  skrll 	  /* This relocation is used in a switch table.  It is a 32
    895  1.1  skrll 	     bit offset from the current GP value.  We must adjust it
    896  1.1  skrll 	     by the different between the original GP value and the
    897  1.1  skrll 	     current GP value.  The original GP value is stored in the
    898  1.1  skrll 	     addend.  We adjust the addend and let
    899  1.1  skrll 	     bfd_perform_relocation finish the job.  */
    900  1.1  skrll 	  rel->addend -= gp;
    901  1.1  skrll 	  r = bfd_perform_relocation (input_bfd, rel, data, input_section,
    902  1.1  skrll 				      output_bfd, &err);
    903  1.1  skrll 	  if (r == bfd_reloc_ok && gp_undefined)
    904  1.1  skrll 	    {
    905  1.1  skrll 	      r = bfd_reloc_dangerous;
    906  1.1  skrll 	      err = (char *) _("GP relative relocation used when GP not defined");
    907  1.1  skrll 	    }
    908  1.1  skrll 	  break;
    909  1.1  skrll 
    910  1.1  skrll 	case ALPHA_R_LITERAL:
    911  1.1  skrll 	  /* This is a reference to a literal value, generally
    912  1.1  skrll 	     (always?) in the .lita section.  This is a 16 bit GP
    913  1.1  skrll 	     relative relocation.  Sometimes the subsequent reloc is a
    914  1.1  skrll 	     LITUSE reloc, which indicates how this reloc is used.
    915  1.1  skrll 	     This sometimes permits rewriting the two instructions
    916  1.1  skrll 	     referred to by the LITERAL and the LITUSE into different
    917  1.1  skrll 	     instructions which do not refer to .lita.  This can save
    918  1.1  skrll 	     a memory reference, and permits removing a value from
    919  1.1  skrll 	     .lita thus saving GP relative space.
    920  1.1  skrll 
    921  1.1  skrll 	     We do not these optimizations.  To do them we would need
    922  1.1  skrll 	     to arrange to link the .lita section first, so that by
    923  1.1  skrll 	     the time we got here we would know the final values to
    924  1.1  skrll 	     use.  This would not be particularly difficult, but it is
    925  1.1  skrll 	     not currently implemented.  */
    926  1.1  skrll 
    927  1.1  skrll 	  {
    928  1.1  skrll 	    unsigned long insn;
    929  1.1  skrll 
    930  1.1  skrll 	    /* I believe that the LITERAL reloc will only apply to a
    931  1.1  skrll 	       ldq or ldl instruction, so check my assumption.  */
    932  1.1  skrll 	    insn = bfd_get_32 (input_bfd, data + rel->address);
    933  1.1  skrll 	    BFD_ASSERT (((insn >> 26) & 0x3f) == 0x29
    934  1.1  skrll 			|| ((insn >> 26) & 0x3f) == 0x28);
    935  1.1  skrll 
    936  1.1  skrll 	    rel->addend -= gp;
    937  1.1  skrll 	    r = bfd_perform_relocation (input_bfd, rel, data, input_section,
    938  1.1  skrll 					output_bfd, &err);
    939  1.1  skrll 	    if (r == bfd_reloc_ok && gp_undefined)
    940  1.1  skrll 	      {
    941  1.1  skrll 		r = bfd_reloc_dangerous;
    942  1.1  skrll 		err =
    943  1.1  skrll 		  (char *) _("GP relative relocation used when GP not defined");
    944  1.1  skrll 	      }
    945  1.1  skrll 	  }
    946  1.1  skrll 	  break;
    947  1.1  skrll 
    948  1.1  skrll 	case ALPHA_R_LITUSE:
    949  1.1  skrll 	  /* See ALPHA_R_LITERAL above for the uses of this reloc.  It
    950  1.1  skrll 	     does not cause anything to happen, itself.  */
    951  1.1  skrll 	  rel->address += input_section->output_offset;
    952  1.1  skrll 	  break;
    953  1.1  skrll 
    954  1.1  skrll 	case ALPHA_R_GPDISP:
    955  1.1  skrll 	  /* This marks the ldah of an ldah/lda pair which loads the
    956  1.1  skrll 	     gp register with the difference of the gp value and the
    957  1.1  skrll 	     current location.  The second of the pair is r_size bytes
    958  1.1  skrll 	     ahead; it used to be marked with an ALPHA_R_IGNORE reloc,
    959  1.1  skrll 	     but that no longer happens in OSF/1 3.2.  */
    960  1.1  skrll 	  {
    961  1.1  skrll 	    unsigned long insn1, insn2;
    962  1.1  skrll 	    bfd_vma addend;
    963  1.1  skrll 
    964  1.1  skrll 	    /* Get the two instructions.  */
    965  1.1  skrll 	    insn1 = bfd_get_32 (input_bfd, data + rel->address);
    966  1.1  skrll 	    insn2 = bfd_get_32 (input_bfd, data + rel->address + rel->addend);
    967  1.1  skrll 
    968  1.1  skrll 	    BFD_ASSERT (((insn1 >> 26) & 0x3f) == 0x09); /* ldah */
    969  1.1  skrll 	    BFD_ASSERT (((insn2 >> 26) & 0x3f) == 0x08); /* lda */
    970  1.1  skrll 
    971  1.1  skrll 	    /* Get the existing addend.  We must account for the sign
    972  1.1  skrll 	       extension done by lda and ldah.  */
    973  1.1  skrll 	    addend = ((insn1 & 0xffff) << 16) + (insn2 & 0xffff);
    974  1.1  skrll 	    if (insn1 & 0x8000)
    975  1.1  skrll 	      {
    976  1.1  skrll 		addend -= 0x80000000;
    977  1.1  skrll 		addend -= 0x80000000;
    978  1.1  skrll 	      }
    979  1.1  skrll 	    if (insn2 & 0x8000)
    980  1.1  skrll 	      addend -= 0x10000;
    981  1.1  skrll 
    982  1.1  skrll 	    /* The existing addend includes the different between the
    983  1.1  skrll 	       gp of the input BFD and the address in the input BFD.
    984  1.1  skrll 	       Subtract this out.  */
    985  1.1  skrll 	    addend -= (ecoff_data (input_bfd)->gp
    986  1.1  skrll 		       - (input_section->vma + rel->address));
    987  1.1  skrll 
    988  1.1  skrll 	    /* Now add in the final gp value, and subtract out the
    989  1.1  skrll 	       final address.  */
    990  1.1  skrll 	    addend += (gp
    991  1.1  skrll 		       - (input_section->output_section->vma
    992  1.1  skrll 			  + input_section->output_offset
    993  1.1  skrll 			  + rel->address));
    994  1.1  skrll 
    995  1.1  skrll 	    /* Change the instructions, accounting for the sign
    996  1.1  skrll 	       extension, and write them out.  */
    997  1.1  skrll 	    if (addend & 0x8000)
    998  1.1  skrll 	      addend += 0x10000;
    999  1.1  skrll 	    insn1 = (insn1 & 0xffff0000) | ((addend >> 16) & 0xffff);
   1000  1.1  skrll 	    insn2 = (insn2 & 0xffff0000) | (addend & 0xffff);
   1001  1.1  skrll 
   1002  1.1  skrll 	    bfd_put_32 (input_bfd, (bfd_vma) insn1, data + rel->address);
   1003  1.1  skrll 	    bfd_put_32 (input_bfd, (bfd_vma) insn2,
   1004  1.1  skrll 			data + rel->address + rel->addend);
   1005  1.1  skrll 
   1006  1.1  skrll 	    rel->address += input_section->output_offset;
   1007  1.1  skrll 	  }
   1008  1.1  skrll 	  break;
   1009  1.1  skrll 
   1010  1.1  skrll 	case ALPHA_R_OP_PUSH:
   1011  1.1  skrll 	  /* Push a value on the reloc evaluation stack.  */
   1012  1.1  skrll 	  {
   1013  1.1  skrll 	    asymbol *symbol;
   1014  1.1  skrll 	    bfd_vma relocation;
   1015  1.1  skrll 
   1016  1.1  skrll 	    if (relocatable)
   1017  1.1  skrll 	      {
   1018  1.1  skrll 		rel->address += input_section->output_offset;
   1019  1.1  skrll 		break;
   1020  1.1  skrll 	      }
   1021  1.1  skrll 
   1022  1.1  skrll 	    /* Figure out the relocation of this symbol.  */
   1023  1.1  skrll 	    symbol = *rel->sym_ptr_ptr;
   1024  1.1  skrll 
   1025  1.1  skrll 	    if (bfd_is_und_section (symbol->section))
   1026  1.1  skrll 	      r = bfd_reloc_undefined;
   1027  1.1  skrll 
   1028  1.1  skrll 	    if (bfd_is_com_section (symbol->section))
   1029  1.1  skrll 	      relocation = 0;
   1030  1.1  skrll 	    else
   1031  1.1  skrll 	      relocation = symbol->value;
   1032  1.1  skrll 	    relocation += symbol->section->output_section->vma;
   1033  1.1  skrll 	    relocation += symbol->section->output_offset;
   1034  1.1  skrll 	    relocation += rel->addend;
   1035  1.1  skrll 
   1036  1.1  skrll 	    if (tos >= RELOC_STACKSIZE)
   1037  1.1  skrll 	      abort ();
   1038  1.1  skrll 
   1039  1.1  skrll 	    stack[tos++] = relocation;
   1040  1.1  skrll 	  }
   1041  1.1  skrll 	  break;
   1042  1.1  skrll 
   1043  1.1  skrll 	case ALPHA_R_OP_STORE:
   1044  1.1  skrll 	  /* Store a value from the reloc stack into a bitfield.  */
   1045  1.1  skrll 	  {
   1046  1.1  skrll 	    bfd_vma val;
   1047  1.1  skrll 	    int offset, size;
   1048  1.1  skrll 
   1049  1.1  skrll 	    if (relocatable)
   1050  1.1  skrll 	      {
   1051  1.1  skrll 		rel->address += input_section->output_offset;
   1052  1.1  skrll 		break;
   1053  1.1  skrll 	      }
   1054  1.1  skrll 
   1055  1.1  skrll 	    if (tos == 0)
   1056  1.1  skrll 	      abort ();
   1057  1.1  skrll 
   1058  1.1  skrll 	    /* The offset and size for this reloc are encoded into the
   1059  1.1  skrll 	       addend field by alpha_adjust_reloc_in.  */
   1060  1.1  skrll 	    offset = (rel->addend >> 8) & 0xff;
   1061  1.1  skrll 	    size = rel->addend & 0xff;
   1062  1.1  skrll 
   1063  1.1  skrll 	    val = bfd_get_64 (abfd, data + rel->address);
   1064  1.1  skrll 	    val &=~ (((1 << size) - 1) << offset);
   1065  1.1  skrll 	    val |= (stack[--tos] & ((1 << size) - 1)) << offset;
   1066  1.1  skrll 	    bfd_put_64 (abfd, val, data + rel->address);
   1067  1.1  skrll 	  }
   1068  1.1  skrll 	  break;
   1069  1.1  skrll 
   1070  1.1  skrll 	case ALPHA_R_OP_PSUB:
   1071  1.1  skrll 	  /* Subtract a value from the top of the stack.  */
   1072  1.1  skrll 	  {
   1073  1.1  skrll 	    asymbol *symbol;
   1074  1.1  skrll 	    bfd_vma relocation;
   1075  1.1  skrll 
   1076  1.1  skrll 	    if (relocatable)
   1077  1.1  skrll 	      {
   1078  1.1  skrll 		rel->address += input_section->output_offset;
   1079  1.1  skrll 		break;
   1080  1.1  skrll 	      }
   1081  1.1  skrll 
   1082  1.1  skrll 	    /* Figure out the relocation of this symbol.  */
   1083  1.1  skrll 	    symbol = *rel->sym_ptr_ptr;
   1084  1.1  skrll 
   1085  1.1  skrll 	    if (bfd_is_und_section (symbol->section))
   1086  1.1  skrll 	      r = bfd_reloc_undefined;
   1087  1.1  skrll 
   1088  1.1  skrll 	    if (bfd_is_com_section (symbol->section))
   1089  1.1  skrll 	      relocation = 0;
   1090  1.1  skrll 	    else
   1091  1.1  skrll 	      relocation = symbol->value;
   1092  1.1  skrll 	    relocation += symbol->section->output_section->vma;
   1093  1.1  skrll 	    relocation += symbol->section->output_offset;
   1094  1.1  skrll 	    relocation += rel->addend;
   1095  1.1  skrll 
   1096  1.1  skrll 	    if (tos == 0)
   1097  1.1  skrll 	      abort ();
   1098  1.1  skrll 
   1099  1.1  skrll 	    stack[tos - 1] -= relocation;
   1100  1.1  skrll 	  }
   1101  1.1  skrll 	  break;
   1102  1.1  skrll 
   1103  1.1  skrll 	case ALPHA_R_OP_PRSHIFT:
   1104  1.1  skrll 	  /* Shift the value on the top of the stack.  */
   1105  1.1  skrll 	  {
   1106  1.1  skrll 	    asymbol *symbol;
   1107  1.1  skrll 	    bfd_vma relocation;
   1108  1.1  skrll 
   1109  1.1  skrll 	    if (relocatable)
   1110  1.1  skrll 	      {
   1111  1.1  skrll 		rel->address += input_section->output_offset;
   1112  1.1  skrll 		break;
   1113  1.1  skrll 	      }
   1114  1.1  skrll 
   1115  1.1  skrll 	    /* Figure out the relocation of this symbol.  */
   1116  1.1  skrll 	    symbol = *rel->sym_ptr_ptr;
   1117  1.1  skrll 
   1118  1.1  skrll 	    if (bfd_is_und_section (symbol->section))
   1119  1.1  skrll 	      r = bfd_reloc_undefined;
   1120  1.1  skrll 
   1121  1.1  skrll 	    if (bfd_is_com_section (symbol->section))
   1122  1.1  skrll 	      relocation = 0;
   1123  1.1  skrll 	    else
   1124  1.1  skrll 	      relocation = symbol->value;
   1125  1.1  skrll 	    relocation += symbol->section->output_section->vma;
   1126  1.1  skrll 	    relocation += symbol->section->output_offset;
   1127  1.1  skrll 	    relocation += rel->addend;
   1128  1.1  skrll 
   1129  1.1  skrll 	    if (tos == 0)
   1130  1.1  skrll 	      abort ();
   1131  1.1  skrll 
   1132  1.1  skrll 	    stack[tos - 1] >>= relocation;
   1133  1.1  skrll 	  }
   1134  1.1  skrll 	  break;
   1135  1.1  skrll 
   1136  1.1  skrll 	case ALPHA_R_GPVALUE:
   1137  1.1  skrll 	  /* I really don't know if this does the right thing.  */
   1138  1.1  skrll 	  gp = rel->addend;
   1139  1.1  skrll 	  gp_undefined = FALSE;
   1140  1.1  skrll 	  break;
   1141  1.1  skrll 
   1142  1.1  skrll 	default:
   1143  1.1  skrll 	  abort ();
   1144  1.1  skrll 	}
   1145  1.1  skrll 
   1146  1.1  skrll       if (relocatable)
   1147  1.1  skrll 	{
   1148  1.1  skrll 	  asection *os = input_section->output_section;
   1149  1.1  skrll 
   1150  1.1  skrll 	  /* A partial link, so keep the relocs.  */
   1151  1.1  skrll 	  os->orelocation[os->reloc_count] = rel;
   1152  1.1  skrll 	  os->reloc_count++;
   1153  1.1  skrll 	}
   1154  1.1  skrll 
   1155  1.1  skrll       if (r != bfd_reloc_ok)
   1156  1.1  skrll 	{
   1157  1.1  skrll 	  switch (r)
   1158  1.1  skrll 	    {
   1159  1.1  skrll 	    case bfd_reloc_undefined:
   1160  1.1  skrll 	      if (! ((*link_info->callbacks->undefined_symbol)
   1161  1.1  skrll 		     (link_info, bfd_asymbol_name (*rel->sym_ptr_ptr),
   1162  1.1  skrll 		      input_bfd, input_section, rel->address, TRUE)))
   1163  1.1  skrll 		goto error_return;
   1164  1.1  skrll 	      break;
   1165  1.1  skrll 	    case bfd_reloc_dangerous:
   1166  1.1  skrll 	      if (! ((*link_info->callbacks->reloc_dangerous)
   1167  1.1  skrll 		     (link_info, err, input_bfd, input_section,
   1168  1.1  skrll 		      rel->address)))
   1169  1.1  skrll 		goto error_return;
   1170  1.1  skrll 	      break;
   1171  1.1  skrll 	    case bfd_reloc_overflow:
   1172  1.1  skrll 	      if (! ((*link_info->callbacks->reloc_overflow)
   1173  1.1  skrll 		     (link_info, NULL,
   1174  1.1  skrll 		      bfd_asymbol_name (*rel->sym_ptr_ptr),
   1175  1.1  skrll 		      rel->howto->name, rel->addend, input_bfd,
   1176  1.1  skrll 		      input_section, rel->address)))
   1177  1.1  skrll 		goto error_return;
   1178  1.1  skrll 	      break;
   1179  1.1  skrll 	    case bfd_reloc_outofrange:
   1180  1.1  skrll 	    default:
   1181  1.1  skrll 	      abort ();
   1182  1.1  skrll 	      break;
   1183  1.1  skrll 	    }
   1184  1.1  skrll 	}
   1185  1.1  skrll     }
   1186  1.1  skrll 
   1187  1.1  skrll   if (tos != 0)
   1188  1.1  skrll     abort ();
   1189  1.1  skrll 
   1190  1.1  skrll  successful_return:
   1191  1.1  skrll   if (reloc_vector != NULL)
   1192  1.1  skrll     free (reloc_vector);
   1193  1.1  skrll   return data;
   1194  1.1  skrll 
   1195  1.1  skrll  error_return:
   1196  1.1  skrll   if (reloc_vector != NULL)
   1197  1.1  skrll     free (reloc_vector);
   1198  1.1  skrll   return NULL;
   1199  1.1  skrll }
   1200  1.1  skrll 
   1201  1.1  skrll /* Get the howto structure for a generic reloc type.  */
   1202  1.1  skrll 
   1203  1.1  skrll static reloc_howto_type *
   1204  1.1  skrll alpha_bfd_reloc_type_lookup (abfd, code)
   1205  1.1  skrll      bfd *abfd ATTRIBUTE_UNUSED;
   1206  1.1  skrll      bfd_reloc_code_real_type code;
   1207  1.1  skrll {
   1208  1.1  skrll   int alpha_type;
   1209  1.1  skrll 
   1210  1.1  skrll   switch (code)
   1211  1.1  skrll     {
   1212  1.1  skrll     case BFD_RELOC_32:
   1213  1.1  skrll       alpha_type = ALPHA_R_REFLONG;
   1214  1.1  skrll       break;
   1215  1.1  skrll     case BFD_RELOC_64:
   1216  1.1  skrll     case BFD_RELOC_CTOR:
   1217  1.1  skrll       alpha_type = ALPHA_R_REFQUAD;
   1218  1.1  skrll       break;
   1219  1.1  skrll     case BFD_RELOC_GPREL32:
   1220  1.1  skrll       alpha_type = ALPHA_R_GPREL32;
   1221  1.1  skrll       break;
   1222  1.1  skrll     case BFD_RELOC_ALPHA_LITERAL:
   1223  1.1  skrll       alpha_type = ALPHA_R_LITERAL;
   1224  1.1  skrll       break;
   1225  1.1  skrll     case BFD_RELOC_ALPHA_LITUSE:
   1226  1.1  skrll       alpha_type = ALPHA_R_LITUSE;
   1227  1.1  skrll       break;
   1228  1.1  skrll     case BFD_RELOC_ALPHA_GPDISP_HI16:
   1229  1.1  skrll       alpha_type = ALPHA_R_GPDISP;
   1230  1.1  skrll       break;
   1231  1.1  skrll     case BFD_RELOC_ALPHA_GPDISP_LO16:
   1232  1.1  skrll       alpha_type = ALPHA_R_IGNORE;
   1233  1.1  skrll       break;
   1234  1.1  skrll     case BFD_RELOC_23_PCREL_S2:
   1235  1.1  skrll       alpha_type = ALPHA_R_BRADDR;
   1236  1.1  skrll       break;
   1237  1.1  skrll     case BFD_RELOC_ALPHA_HINT:
   1238  1.1  skrll       alpha_type = ALPHA_R_HINT;
   1239  1.1  skrll       break;
   1240  1.1  skrll     case BFD_RELOC_16_PCREL:
   1241  1.1  skrll       alpha_type = ALPHA_R_SREL16;
   1242  1.1  skrll       break;
   1243  1.1  skrll     case BFD_RELOC_32_PCREL:
   1244  1.1  skrll       alpha_type = ALPHA_R_SREL32;
   1245  1.1  skrll       break;
   1246  1.1  skrll     case BFD_RELOC_64_PCREL:
   1247  1.1  skrll       alpha_type = ALPHA_R_SREL64;
   1248  1.1  skrll       break;
   1249  1.1  skrll     default:
   1250  1.1  skrll       return (reloc_howto_type *) NULL;
   1251  1.1  skrll     }
   1252  1.1  skrll 
   1253  1.1  skrll   return &alpha_howto_table[alpha_type];
   1254  1.1  skrll }
   1255  1.1  skrll 
   1256  1.1  skrll static reloc_howto_type *
   1257  1.1  skrll alpha_bfd_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
   1258  1.1  skrll 			     const char *r_name)
   1259  1.1  skrll {
   1260  1.1  skrll   unsigned int i;
   1261  1.1  skrll 
   1262  1.1  skrll   for (i = 0;
   1263  1.1  skrll        i < sizeof (alpha_howto_table) / sizeof (alpha_howto_table[0]);
   1264  1.1  skrll        i++)
   1265  1.1  skrll     if (alpha_howto_table[i].name != NULL
   1266  1.1  skrll 	&& strcasecmp (alpha_howto_table[i].name, r_name) == 0)
   1267  1.1  skrll       return &alpha_howto_table[i];
   1268  1.1  skrll 
   1269  1.1  skrll   return NULL;
   1270  1.1  skrll }
   1271  1.1  skrll 
   1272  1.1  skrll /* A helper routine for alpha_relocate_section which converts an
   1274  1.1  skrll    external reloc when generating relocatable output.  Returns the
   1275  1.1  skrll    relocation amount.  */
   1276  1.1  skrll 
   1277  1.1  skrll static bfd_vma
   1278  1.1  skrll alpha_convert_external_reloc (output_bfd, info, input_bfd, ext_rel, h)
   1279  1.1  skrll      bfd *output_bfd ATTRIBUTE_UNUSED;
   1280  1.1  skrll      struct bfd_link_info *info;
   1281  1.1  skrll      bfd *input_bfd;
   1282  1.1  skrll      struct external_reloc *ext_rel;
   1283  1.1  skrll      struct ecoff_link_hash_entry *h;
   1284  1.1  skrll {
   1285  1.1  skrll   unsigned long r_symndx;
   1286  1.1  skrll   bfd_vma relocation;
   1287  1.1  skrll 
   1288  1.1  skrll   BFD_ASSERT (info->relocatable);
   1289  1.1  skrll 
   1290  1.1  skrll   if (h->root.type == bfd_link_hash_defined
   1291  1.1  skrll       || h->root.type == bfd_link_hash_defweak)
   1292  1.1  skrll     {
   1293  1.1  skrll       asection *hsec;
   1294  1.1  skrll       const char *name;
   1295  1.1  skrll 
   1296  1.1  skrll       /* This symbol is defined in the output.  Convert the reloc from
   1297  1.1  skrll 	 being against the symbol to being against the section.  */
   1298  1.1  skrll 
   1299  1.1  skrll       /* Clear the r_extern bit.  */
   1300  1.1  skrll       ext_rel->r_bits[1] &=~ RELOC_BITS1_EXTERN_LITTLE;
   1301  1.1  skrll 
   1302  1.1  skrll       /* Compute a new r_symndx value.  */
   1303  1.1  skrll       hsec = h->root.u.def.section;
   1304  1.1  skrll       name = bfd_get_section_name (output_bfd, hsec->output_section);
   1305  1.1  skrll 
   1306  1.1  skrll       r_symndx = (unsigned long) -1;
   1307  1.1  skrll       switch (name[1])
   1308  1.1  skrll 	{
   1309  1.1  skrll 	case 'A':
   1310  1.1  skrll 	  if (strcmp (name, "*ABS*") == 0)
   1311  1.1  skrll 	    r_symndx = RELOC_SECTION_ABS;
   1312  1.1  skrll 	  break;
   1313  1.1  skrll 	case 'b':
   1314  1.1  skrll 	  if (strcmp (name, ".bss") == 0)
   1315  1.1  skrll 	    r_symndx = RELOC_SECTION_BSS;
   1316  1.1  skrll 	  break;
   1317  1.1  skrll 	case 'd':
   1318  1.1  skrll 	  if (strcmp (name, ".data") == 0)
   1319  1.1  skrll 	    r_symndx = RELOC_SECTION_DATA;
   1320  1.1  skrll 	  break;
   1321  1.1  skrll 	case 'f':
   1322  1.1  skrll 	  if (strcmp (name, ".fini") == 0)
   1323  1.1  skrll 	    r_symndx = RELOC_SECTION_FINI;
   1324  1.1  skrll 	  break;
   1325  1.1  skrll 	case 'i':
   1326  1.1  skrll 	  if (strcmp (name, ".init") == 0)
   1327  1.1  skrll 	    r_symndx = RELOC_SECTION_INIT;
   1328  1.1  skrll 	  break;
   1329  1.1  skrll 	case 'l':
   1330  1.1  skrll 	  if (strcmp (name, ".lita") == 0)
   1331  1.1  skrll 	    r_symndx = RELOC_SECTION_LITA;
   1332  1.1  skrll 	  else if (strcmp (name, ".lit8") == 0)
   1333  1.1  skrll 	    r_symndx = RELOC_SECTION_LIT8;
   1334  1.1  skrll 	  else if (strcmp (name, ".lit4") == 0)
   1335  1.1  skrll 	    r_symndx = RELOC_SECTION_LIT4;
   1336  1.1  skrll 	  break;
   1337  1.1  skrll 	case 'p':
   1338  1.1  skrll 	  if (strcmp (name, ".pdata") == 0)
   1339  1.1  skrll 	    r_symndx = RELOC_SECTION_PDATA;
   1340  1.1  skrll 	  break;
   1341  1.1  skrll 	case 'r':
   1342  1.1  skrll 	  if (strcmp (name, ".rdata") == 0)
   1343  1.1  skrll 	    r_symndx = RELOC_SECTION_RDATA;
   1344  1.1  skrll 	  else if (strcmp (name, ".rconst") == 0)
   1345  1.1  skrll 	    r_symndx = RELOC_SECTION_RCONST;
   1346  1.1  skrll 	  break;
   1347  1.1  skrll 	case 's':
   1348  1.1  skrll 	  if (strcmp (name, ".sdata") == 0)
   1349  1.1  skrll 	    r_symndx = RELOC_SECTION_SDATA;
   1350  1.1  skrll 	  else if (strcmp (name, ".sbss") == 0)
   1351  1.1  skrll 	    r_symndx = RELOC_SECTION_SBSS;
   1352  1.1  skrll 	  break;
   1353  1.1  skrll 	case 't':
   1354  1.1  skrll 	  if (strcmp (name, ".text") == 0)
   1355  1.1  skrll 	    r_symndx = RELOC_SECTION_TEXT;
   1356  1.1  skrll 	  break;
   1357  1.1  skrll 	case 'x':
   1358  1.1  skrll 	  if (strcmp (name, ".xdata") == 0)
   1359  1.1  skrll 	    r_symndx = RELOC_SECTION_XDATA;
   1360  1.1  skrll 	  break;
   1361  1.1  skrll 	}
   1362  1.1  skrll 
   1363  1.1  skrll       if (r_symndx == (unsigned long) -1)
   1364  1.1  skrll 	abort ();
   1365  1.1  skrll 
   1366  1.1  skrll       /* Add the section VMA and the symbol value.  */
   1367  1.1  skrll       relocation = (h->root.u.def.value
   1368  1.1  skrll 		    + hsec->output_section->vma
   1369  1.1  skrll 		    + hsec->output_offset);
   1370  1.1  skrll     }
   1371  1.1  skrll   else
   1372  1.1  skrll     {
   1373  1.1  skrll       /* Change the symndx value to the right one for
   1374  1.1  skrll 	 the output BFD.  */
   1375  1.1  skrll       r_symndx = h->indx;
   1376  1.1  skrll       if (r_symndx == (unsigned long) -1)
   1377  1.1  skrll 	{
   1378  1.1  skrll 	  /* Caller must give an error.  */
   1379  1.1  skrll 	  r_symndx = 0;
   1380  1.1  skrll 	}
   1381  1.1  skrll       relocation = 0;
   1382  1.1  skrll     }
   1383  1.1  skrll 
   1384  1.1  skrll   /* Write out the new r_symndx value.  */
   1385  1.1  skrll   H_PUT_32 (input_bfd, r_symndx, ext_rel->r_symndx);
   1386  1.1  skrll 
   1387  1.1  skrll   return relocation;
   1388  1.1  skrll }
   1389  1.1  skrll 
   1390  1.1  skrll /* Relocate a section while linking an Alpha ECOFF file.  This is
   1391  1.1  skrll    quite similar to get_relocated_section_contents.  Perhaps they
   1392  1.1  skrll    could be combined somehow.  */
   1393  1.1  skrll 
   1394  1.1  skrll static bfd_boolean
   1395  1.1  skrll alpha_relocate_section (output_bfd, info, input_bfd, input_section,
   1396  1.1  skrll 			contents, external_relocs)
   1397  1.1  skrll      bfd *output_bfd;
   1398  1.1  skrll      struct bfd_link_info *info;
   1399  1.1  skrll      bfd *input_bfd;
   1400  1.1  skrll      asection *input_section;
   1401  1.1  skrll      bfd_byte *contents;
   1402  1.1  skrll      PTR external_relocs;
   1403  1.1  skrll {
   1404  1.1  skrll   asection **symndx_to_section, *lita_sec;
   1405  1.1  skrll   struct ecoff_link_hash_entry **sym_hashes;
   1406  1.1  skrll   bfd_vma gp;
   1407  1.1  skrll   bfd_boolean gp_undefined;
   1408  1.1  skrll   bfd_vma stack[RELOC_STACKSIZE];
   1409  1.1  skrll   int tos = 0;
   1410  1.1  skrll   struct external_reloc *ext_rel;
   1411  1.1  skrll   struct external_reloc *ext_rel_end;
   1412  1.1  skrll   bfd_size_type amt;
   1413  1.1  skrll 
   1414  1.1  skrll   /* We keep a table mapping the symndx found in an internal reloc to
   1415  1.1  skrll      the appropriate section.  This is faster than looking up the
   1416  1.1  skrll      section by name each time.  */
   1417  1.1  skrll   symndx_to_section = ecoff_data (input_bfd)->symndx_to_section;
   1418  1.1  skrll   if (symndx_to_section == (asection **) NULL)
   1419  1.1  skrll     {
   1420  1.1  skrll       amt = NUM_RELOC_SECTIONS * sizeof (asection *);
   1421  1.1  skrll       symndx_to_section = (asection **) bfd_alloc (input_bfd, amt);
   1422  1.1  skrll       if (!symndx_to_section)
   1423  1.1  skrll 	return FALSE;
   1424  1.1  skrll 
   1425  1.1  skrll       symndx_to_section[RELOC_SECTION_NONE] = NULL;
   1426  1.1  skrll       symndx_to_section[RELOC_SECTION_TEXT] =
   1427  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".text");
   1428  1.1  skrll       symndx_to_section[RELOC_SECTION_RDATA] =
   1429  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".rdata");
   1430  1.1  skrll       symndx_to_section[RELOC_SECTION_DATA] =
   1431  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".data");
   1432  1.1  skrll       symndx_to_section[RELOC_SECTION_SDATA] =
   1433  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".sdata");
   1434  1.1  skrll       symndx_to_section[RELOC_SECTION_SBSS] =
   1435  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".sbss");
   1436  1.1  skrll       symndx_to_section[RELOC_SECTION_BSS] =
   1437  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".bss");
   1438  1.1  skrll       symndx_to_section[RELOC_SECTION_INIT] =
   1439  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".init");
   1440  1.1  skrll       symndx_to_section[RELOC_SECTION_LIT8] =
   1441  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".lit8");
   1442  1.1  skrll       symndx_to_section[RELOC_SECTION_LIT4] =
   1443  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".lit4");
   1444  1.1  skrll       symndx_to_section[RELOC_SECTION_XDATA] =
   1445  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".xdata");
   1446  1.1  skrll       symndx_to_section[RELOC_SECTION_PDATA] =
   1447  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".pdata");
   1448  1.1  skrll       symndx_to_section[RELOC_SECTION_FINI] =
   1449  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".fini");
   1450  1.1  skrll       symndx_to_section[RELOC_SECTION_LITA] =
   1451  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".lita");
   1452  1.1  skrll       symndx_to_section[RELOC_SECTION_ABS] = bfd_abs_section_ptr;
   1453  1.1  skrll       symndx_to_section[RELOC_SECTION_RCONST] =
   1454  1.1  skrll 	bfd_get_section_by_name (input_bfd, ".rconst");
   1455  1.1  skrll 
   1456  1.1  skrll       ecoff_data (input_bfd)->symndx_to_section = symndx_to_section;
   1457  1.1  skrll     }
   1458  1.1  skrll 
   1459  1.1  skrll   sym_hashes = ecoff_data (input_bfd)->sym_hashes;
   1460  1.1  skrll 
   1461  1.1  skrll   /* On the Alpha, the .lita section must be addressable by the global
   1462  1.1  skrll      pointer.  To support large programs, we need to allow multiple
   1463  1.1  skrll      global pointers.  This works as long as each input .lita section
   1464  1.1  skrll      is <64KB big.  This implies that when producing relocatable
   1465  1.1  skrll      output, the .lita section is limited to 64KB. .  */
   1466  1.1  skrll 
   1467  1.1  skrll   lita_sec = symndx_to_section[RELOC_SECTION_LITA];
   1468  1.1  skrll   gp = _bfd_get_gp_value (output_bfd);
   1469  1.1  skrll   if (! info->relocatable && lita_sec != NULL)
   1470  1.1  skrll     {
   1471  1.1  skrll       struct ecoff_section_tdata *lita_sec_data;
   1472  1.1  skrll 
   1473  1.1  skrll       /* Make sure we have a section data structure to which we can
   1474  1.1  skrll 	 hang on to the gp value we pick for the section.  */
   1475  1.1  skrll       lita_sec_data = ecoff_section_data (input_bfd, lita_sec);
   1476  1.1  skrll       if (lita_sec_data == NULL)
   1477  1.1  skrll 	{
   1478  1.1  skrll 	  amt = sizeof (struct ecoff_section_tdata);
   1479  1.1  skrll 	  lita_sec_data = ((struct ecoff_section_tdata *)
   1480  1.1  skrll 			   bfd_zalloc (input_bfd, amt));
   1481  1.1  skrll 	  lita_sec->used_by_bfd = lita_sec_data;
   1482  1.1  skrll 	}
   1483  1.1  skrll 
   1484  1.1  skrll       if (lita_sec_data->gp != 0)
   1485  1.1  skrll 	{
   1486  1.1  skrll 	  /* If we already assigned a gp to this section, we better
   1487  1.1  skrll 	     stick with that value.  */
   1488  1.1  skrll 	  gp = lita_sec_data->gp;
   1489  1.1  skrll 	}
   1490  1.1  skrll       else
   1491  1.1  skrll 	{
   1492  1.1  skrll 	  bfd_vma lita_vma;
   1493  1.1  skrll 	  bfd_size_type lita_size;
   1494  1.1  skrll 
   1495  1.1  skrll 	  lita_vma = lita_sec->output_offset + lita_sec->output_section->vma;
   1496  1.1  skrll 	  lita_size = lita_sec->size;
   1497  1.1  skrll 
   1498  1.1  skrll 	  if (gp == 0
   1499  1.1  skrll 	      || lita_vma <  gp - 0x8000
   1500  1.1  skrll 	      || lita_vma + lita_size >= gp + 0x8000)
   1501  1.1  skrll 	    {
   1502  1.1  skrll 	      /* Either gp hasn't been set at all or the current gp
   1503  1.1  skrll 		 cannot address this .lita section.  In both cases we
   1504  1.1  skrll 		 reset the gp to point into the "middle" of the
   1505  1.1  skrll 		 current input .lita section.  */
   1506  1.1  skrll 	      if (gp && !ecoff_data (output_bfd)->issued_multiple_gp_warning)
   1507  1.1  skrll 		{
   1508  1.1  skrll 		  (*info->callbacks->warning) (info,
   1509  1.1  skrll 					       _("using multiple gp values"),
   1510  1.1  skrll 					       (char *) NULL, output_bfd,
   1511  1.1  skrll 					       (asection *) NULL, (bfd_vma) 0);
   1512  1.1  skrll 		  ecoff_data (output_bfd)->issued_multiple_gp_warning = TRUE;
   1513  1.1  skrll 		}
   1514  1.1  skrll 	      if (lita_vma < gp - 0x8000)
   1515  1.1  skrll 		gp = lita_vma + lita_size - 0x8000;
   1516  1.1  skrll 	      else
   1517  1.1  skrll 		gp = lita_vma + 0x8000;
   1518  1.1  skrll 
   1519  1.1  skrll 	    }
   1520  1.1  skrll 
   1521  1.1  skrll 	  lita_sec_data->gp = gp;
   1522  1.1  skrll 	}
   1523  1.1  skrll 
   1524  1.1  skrll       _bfd_set_gp_value (output_bfd, gp);
   1525  1.1  skrll     }
   1526  1.1  skrll 
   1527  1.1  skrll   gp_undefined = (gp == 0);
   1528  1.1  skrll 
   1529  1.1  skrll   BFD_ASSERT (bfd_header_little_endian (output_bfd));
   1530  1.1  skrll   BFD_ASSERT (bfd_header_little_endian (input_bfd));
   1531  1.1  skrll 
   1532  1.1  skrll   ext_rel = (struct external_reloc *) external_relocs;
   1533  1.1  skrll   ext_rel_end = ext_rel + input_section->reloc_count;
   1534  1.1  skrll   for (; ext_rel < ext_rel_end; ext_rel++)
   1535  1.1  skrll     {
   1536  1.1  skrll       bfd_vma r_vaddr;
   1537  1.1  skrll       unsigned long r_symndx;
   1538  1.1  skrll       int r_type;
   1539  1.1  skrll       int r_extern;
   1540  1.1  skrll       int r_offset;
   1541  1.1  skrll       int r_size;
   1542  1.1  skrll       bfd_boolean relocatep;
   1543  1.1  skrll       bfd_boolean adjust_addrp;
   1544  1.1  skrll       bfd_boolean gp_usedp;
   1545  1.1  skrll       bfd_vma addend;
   1546  1.1  skrll 
   1547  1.1  skrll       r_vaddr = H_GET_64 (input_bfd, ext_rel->r_vaddr);
   1548  1.1  skrll       r_symndx = H_GET_32 (input_bfd, ext_rel->r_symndx);
   1549  1.1  skrll 
   1550  1.1  skrll       r_type = ((ext_rel->r_bits[0] & RELOC_BITS0_TYPE_LITTLE)
   1551  1.1  skrll 		>> RELOC_BITS0_TYPE_SH_LITTLE);
   1552  1.1  skrll       r_extern = (ext_rel->r_bits[1] & RELOC_BITS1_EXTERN_LITTLE) != 0;
   1553  1.1  skrll       r_offset = ((ext_rel->r_bits[1] & RELOC_BITS1_OFFSET_LITTLE)
   1554  1.1  skrll 		  >> RELOC_BITS1_OFFSET_SH_LITTLE);
   1555  1.1  skrll       /* Ignored the reserved bits.  */
   1556  1.1  skrll       r_size = ((ext_rel->r_bits[3] & RELOC_BITS3_SIZE_LITTLE)
   1557  1.1  skrll 		>> RELOC_BITS3_SIZE_SH_LITTLE);
   1558  1.1  skrll 
   1559  1.1  skrll       relocatep = FALSE;
   1560  1.1  skrll       adjust_addrp = TRUE;
   1561  1.1  skrll       gp_usedp = FALSE;
   1562  1.1  skrll       addend = 0;
   1563  1.1  skrll 
   1564  1.1  skrll       switch (r_type)
   1565  1.1  skrll 	{
   1566  1.1  skrll 	case ALPHA_R_GPRELHIGH:
   1567  1.1  skrll 	  (*_bfd_error_handler)
   1568  1.1  skrll 	    (_("%B: unsupported relocation: ALPHA_R_GPRELHIGH"),
   1569  1.1  skrll 	     input_bfd);
   1570  1.1  skrll 	  bfd_set_error (bfd_error_bad_value);
   1571  1.1  skrll 	  continue;
   1572  1.1  skrll 
   1573  1.1  skrll 	case ALPHA_R_GPRELLOW:
   1574  1.1  skrll 	  (*_bfd_error_handler)
   1575  1.1  skrll 	    (_("%B: unsupported relocation: ALPHA_R_GPRELLOW"),
   1576  1.1  skrll 	     input_bfd);
   1577  1.1  skrll 	  bfd_set_error (bfd_error_bad_value);
   1578  1.1  skrll 	  continue;
   1579  1.1  skrll 
   1580  1.1  skrll 	default:
   1581  1.1  skrll 	  (*_bfd_error_handler)
   1582  1.1  skrll 	    (_("%B: unknown relocation type %d"),
   1583  1.1  skrll 	     input_bfd, (int) r_type);
   1584  1.1  skrll 	  bfd_set_error (bfd_error_bad_value);
   1585  1.1  skrll 	  continue;
   1586  1.1  skrll 
   1587  1.1  skrll 	case ALPHA_R_IGNORE:
   1588  1.1  skrll 	  /* This reloc appears after a GPDISP reloc.  On earlier
   1589  1.1  skrll 	     versions of OSF/1, It marked the position of the second
   1590  1.1  skrll 	     instruction to be altered by the GPDISP reloc, but it is
   1591  1.1  skrll 	     not otherwise used for anything.  For some reason, the
   1592  1.1  skrll 	     address of the relocation does not appear to include the
   1593  1.1  skrll 	     section VMA, unlike the other relocation types.  */
   1594  1.1  skrll 	  if (info->relocatable)
   1595  1.1  skrll 	    H_PUT_64 (input_bfd, input_section->output_offset + r_vaddr,
   1596  1.1  skrll 		      ext_rel->r_vaddr);
   1597  1.1  skrll 	  adjust_addrp = FALSE;
   1598  1.1  skrll 	  break;
   1599  1.1  skrll 
   1600  1.1  skrll 	case ALPHA_R_REFLONG:
   1601  1.1  skrll 	case ALPHA_R_REFQUAD:
   1602  1.1  skrll 	case ALPHA_R_HINT:
   1603  1.1  skrll 	  relocatep = TRUE;
   1604  1.1  skrll 	  break;
   1605  1.1  skrll 
   1606  1.1  skrll 	case ALPHA_R_BRADDR:
   1607  1.1  skrll 	case ALPHA_R_SREL16:
   1608  1.1  skrll 	case ALPHA_R_SREL32:
   1609  1.1  skrll 	case ALPHA_R_SREL64:
   1610  1.1  skrll 	  if (r_extern)
   1611  1.1  skrll 	    addend += - (r_vaddr + 4);
   1612  1.1  skrll 	  relocatep = TRUE;
   1613  1.1  skrll 	  break;
   1614  1.1  skrll 
   1615  1.1  skrll 	case ALPHA_R_GPREL32:
   1616  1.1  skrll 	  /* This relocation is used in a switch table.  It is a 32
   1617  1.1  skrll 	     bit offset from the current GP value.  We must adjust it
   1618  1.1  skrll 	     by the different between the original GP value and the
   1619  1.1  skrll 	     current GP value.  */
   1620  1.1  skrll 	  relocatep = TRUE;
   1621  1.1  skrll 	  addend = ecoff_data (input_bfd)->gp - gp;
   1622  1.1  skrll 	  gp_usedp = TRUE;
   1623  1.1  skrll 	  break;
   1624  1.1  skrll 
   1625  1.1  skrll 	case ALPHA_R_LITERAL:
   1626  1.1  skrll 	  /* This is a reference to a literal value, generally
   1627  1.1  skrll 	     (always?) in the .lita section.  This is a 16 bit GP
   1628  1.1  skrll 	     relative relocation.  Sometimes the subsequent reloc is a
   1629  1.1  skrll 	     LITUSE reloc, which indicates how this reloc is used.
   1630  1.1  skrll 	     This sometimes permits rewriting the two instructions
   1631  1.1  skrll 	     referred to by the LITERAL and the LITUSE into different
   1632  1.1  skrll 	     instructions which do not refer to .lita.  This can save
   1633  1.1  skrll 	     a memory reference, and permits removing a value from
   1634  1.1  skrll 	     .lita thus saving GP relative space.
   1635  1.1  skrll 
   1636  1.1  skrll 	     We do not these optimizations.  To do them we would need
   1637  1.1  skrll 	     to arrange to link the .lita section first, so that by
   1638  1.1  skrll 	     the time we got here we would know the final values to
   1639  1.1  skrll 	     use.  This would not be particularly difficult, but it is
   1640  1.1  skrll 	     not currently implemented.  */
   1641  1.1  skrll 
   1642  1.1  skrll 	  /* I believe that the LITERAL reloc will only apply to a ldq
   1643  1.1  skrll 	     or ldl instruction, so check my assumption.  */
   1644  1.1  skrll 	  {
   1645  1.1  skrll 	    unsigned long insn;
   1646  1.1  skrll 
   1647  1.1  skrll 	    insn = bfd_get_32 (input_bfd,
   1648  1.1  skrll 			       contents + r_vaddr - input_section->vma);
   1649  1.1  skrll 	    BFD_ASSERT (((insn >> 26) & 0x3f) == 0x29
   1650  1.1  skrll 			|| ((insn >> 26) & 0x3f) == 0x28);
   1651  1.1  skrll 	  }
   1652  1.1  skrll 
   1653  1.1  skrll 	  relocatep = TRUE;
   1654  1.1  skrll 	  addend = ecoff_data (input_bfd)->gp - gp;
   1655  1.1  skrll 	  gp_usedp = TRUE;
   1656  1.1  skrll 	  break;
   1657  1.1  skrll 
   1658  1.1  skrll 	case ALPHA_R_LITUSE:
   1659  1.1  skrll 	  /* See ALPHA_R_LITERAL above for the uses of this reloc.  It
   1660  1.1  skrll 	     does not cause anything to happen, itself.  */
   1661  1.1  skrll 	  break;
   1662  1.1  skrll 
   1663  1.1  skrll 	case ALPHA_R_GPDISP:
   1664  1.1  skrll 	  /* This marks the ldah of an ldah/lda pair which loads the
   1665  1.1  skrll 	     gp register with the difference of the gp value and the
   1666  1.1  skrll 	     current location.  The second of the pair is r_symndx
   1667  1.1  skrll 	     bytes ahead.  It used to be marked with an ALPHA_R_IGNORE
   1668  1.1  skrll 	     reloc, but OSF/1 3.2 no longer does that.  */
   1669  1.1  skrll 	  {
   1670  1.1  skrll 	    unsigned long insn1, insn2;
   1671  1.1  skrll 
   1672  1.1  skrll 	    /* Get the two instructions.  */
   1673  1.1  skrll 	    insn1 = bfd_get_32 (input_bfd,
   1674  1.1  skrll 				contents + r_vaddr - input_section->vma);
   1675  1.1  skrll 	    insn2 = bfd_get_32 (input_bfd,
   1676  1.1  skrll 				(contents
   1677  1.1  skrll 				 + r_vaddr
   1678  1.1  skrll 				 - input_section->vma
   1679  1.1  skrll 				 + r_symndx));
   1680  1.1  skrll 
   1681  1.1  skrll 	    BFD_ASSERT (((insn1 >> 26) & 0x3f) == 0x09); /* ldah */
   1682  1.1  skrll 	    BFD_ASSERT (((insn2 >> 26) & 0x3f) == 0x08); /* lda */
   1683  1.1  skrll 
   1684  1.1  skrll 	    /* Get the existing addend.  We must account for the sign
   1685  1.1  skrll 	       extension done by lda and ldah.  */
   1686  1.1  skrll 	    addend = ((insn1 & 0xffff) << 16) + (insn2 & 0xffff);
   1687  1.1  skrll 	    if (insn1 & 0x8000)
   1688  1.1  skrll 	      {
   1689  1.1  skrll 		/* This is addend -= 0x100000000 without causing an
   1690  1.1  skrll 		   integer overflow on a 32 bit host.  */
   1691  1.1  skrll 		addend -= 0x80000000;
   1692  1.1  skrll 		addend -= 0x80000000;
   1693  1.1  skrll 	      }
   1694  1.1  skrll 	    if (insn2 & 0x8000)
   1695  1.1  skrll 	      addend -= 0x10000;
   1696  1.1  skrll 
   1697  1.1  skrll 	    /* The existing addend includes the difference between the
   1698  1.1  skrll 	       gp of the input BFD and the address in the input BFD.
   1699  1.1  skrll 	       We want to change this to the difference between the
   1700  1.1  skrll 	       final GP and the final address.  */
   1701  1.1  skrll 	    addend += (gp
   1702  1.1  skrll 		       - ecoff_data (input_bfd)->gp
   1703  1.1  skrll 		       + input_section->vma
   1704  1.1  skrll 		       - (input_section->output_section->vma
   1705  1.1  skrll 			  + input_section->output_offset));
   1706  1.1  skrll 
   1707  1.1  skrll 	    /* Change the instructions, accounting for the sign
   1708  1.1  skrll 	       extension, and write them out.  */
   1709  1.1  skrll 	    if (addend & 0x8000)
   1710  1.1  skrll 	      addend += 0x10000;
   1711  1.1  skrll 	    insn1 = (insn1 & 0xffff0000) | ((addend >> 16) & 0xffff);
   1712  1.1  skrll 	    insn2 = (insn2 & 0xffff0000) | (addend & 0xffff);
   1713  1.1  skrll 
   1714  1.1  skrll 	    bfd_put_32 (input_bfd, (bfd_vma) insn1,
   1715  1.1  skrll 			contents + r_vaddr - input_section->vma);
   1716  1.1  skrll 	    bfd_put_32 (input_bfd, (bfd_vma) insn2,
   1717  1.1  skrll 			contents + r_vaddr - input_section->vma + r_symndx);
   1718  1.1  skrll 
   1719  1.1  skrll 	    gp_usedp = TRUE;
   1720  1.1  skrll 	  }
   1721  1.1  skrll 	  break;
   1722  1.1  skrll 
   1723  1.1  skrll 	case ALPHA_R_OP_PUSH:
   1724  1.1  skrll 	case ALPHA_R_OP_PSUB:
   1725  1.1  skrll 	case ALPHA_R_OP_PRSHIFT:
   1726  1.1  skrll 	  /* Manipulate values on the reloc evaluation stack.  The
   1727  1.1  skrll 	     r_vaddr field is not an address in input_section, it is
   1728  1.1  skrll 	     the current value (including any addend) of the object
   1729  1.1  skrll 	     being used.  */
   1730  1.1  skrll 	  if (! r_extern)
   1731  1.1  skrll 	    {
   1732  1.1  skrll 	      asection *s;
   1733  1.1  skrll 
   1734  1.1  skrll 	      s = symndx_to_section[r_symndx];
   1735  1.1  skrll 	      if (s == (asection *) NULL)
   1736  1.1  skrll 		abort ();
   1737  1.1  skrll 	      addend = s->output_section->vma + s->output_offset - s->vma;
   1738  1.1  skrll 	    }
   1739  1.1  skrll 	  else
   1740  1.1  skrll 	    {
   1741  1.1  skrll 	      struct ecoff_link_hash_entry *h;
   1742  1.1  skrll 
   1743  1.1  skrll 	      h = sym_hashes[r_symndx];
   1744  1.1  skrll 	      if (h == (struct ecoff_link_hash_entry *) NULL)
   1745  1.1  skrll 		abort ();
   1746  1.1  skrll 
   1747  1.1  skrll 	      if (! info->relocatable)
   1748  1.1  skrll 		{
   1749  1.1  skrll 		  if (h->root.type == bfd_link_hash_defined
   1750  1.1  skrll 		      || h->root.type == bfd_link_hash_defweak)
   1751  1.1  skrll 		    addend = (h->root.u.def.value
   1752  1.1  skrll 			      + h->root.u.def.section->output_section->vma
   1753  1.1  skrll 			      + h->root.u.def.section->output_offset);
   1754  1.1  skrll 		  else
   1755  1.1  skrll 		    {
   1756  1.1  skrll 		      /* Note that we pass the address as 0, since we
   1757  1.1  skrll 			 do not have a meaningful number for the
   1758  1.1  skrll 			 location within the section that is being
   1759  1.1  skrll 			 relocated.  */
   1760  1.1  skrll 		      if (! ((*info->callbacks->undefined_symbol)
   1761  1.1  skrll 			     (info, h->root.root.string, input_bfd,
   1762  1.1  skrll 			      input_section, (bfd_vma) 0, TRUE)))
   1763  1.1  skrll 			return FALSE;
   1764  1.1  skrll 		      addend = 0;
   1765  1.1  skrll 		    }
   1766  1.1  skrll 		}
   1767  1.1  skrll 	      else
   1768  1.1  skrll 		{
   1769  1.1  skrll 		  if (h->root.type != bfd_link_hash_defined
   1770  1.1  skrll 		      && h->root.type != bfd_link_hash_defweak
   1771  1.1  skrll 		      && h->indx == -1)
   1772  1.1  skrll 		    {
   1773  1.1  skrll 		      /* This symbol is not being written out.  Pass
   1774  1.1  skrll 			 the address as 0, as with undefined_symbol,
   1775  1.1  skrll 			 above.  */
   1776  1.1  skrll 		      if (! ((*info->callbacks->unattached_reloc)
   1777  1.1  skrll 			     (info, h->root.root.string, input_bfd,
   1778  1.1  skrll 			      input_section, (bfd_vma) 0)))
   1779  1.1  skrll 			return FALSE;
   1780  1.1  skrll 		    }
   1781  1.1  skrll 
   1782  1.1  skrll 		  addend = alpha_convert_external_reloc (output_bfd, info,
   1783  1.1  skrll 							 input_bfd,
   1784  1.1  skrll 							 ext_rel, h);
   1785  1.1  skrll 		}
   1786  1.1  skrll 	    }
   1787  1.1  skrll 
   1788  1.1  skrll 	  addend += r_vaddr;
   1789  1.1  skrll 
   1790  1.1  skrll 	  if (info->relocatable)
   1791  1.1  skrll 	    {
   1792  1.1  skrll 	      /* Adjust r_vaddr by the addend.  */
   1793  1.1  skrll 	      H_PUT_64 (input_bfd, addend, ext_rel->r_vaddr);
   1794  1.1  skrll 	    }
   1795  1.1  skrll 	  else
   1796  1.1  skrll 	    {
   1797  1.1  skrll 	      switch (r_type)
   1798  1.1  skrll 		{
   1799  1.1  skrll 		case ALPHA_R_OP_PUSH:
   1800  1.1  skrll 		  if (tos >= RELOC_STACKSIZE)
   1801  1.1  skrll 		    abort ();
   1802  1.1  skrll 		  stack[tos++] = addend;
   1803  1.1  skrll 		  break;
   1804  1.1  skrll 
   1805  1.1  skrll 		case ALPHA_R_OP_PSUB:
   1806  1.1  skrll 		  if (tos == 0)
   1807  1.1  skrll 		    abort ();
   1808  1.1  skrll 		  stack[tos - 1] -= addend;
   1809  1.1  skrll 		  break;
   1810  1.1  skrll 
   1811  1.1  skrll 		case ALPHA_R_OP_PRSHIFT:
   1812  1.1  skrll 		  if (tos == 0)
   1813  1.1  skrll 		    abort ();
   1814  1.1  skrll 		  stack[tos - 1] >>= addend;
   1815  1.1  skrll 		  break;
   1816  1.1  skrll 		}
   1817  1.1  skrll 	    }
   1818  1.1  skrll 
   1819  1.1  skrll 	  adjust_addrp = FALSE;
   1820  1.1  skrll 	  break;
   1821  1.1  skrll 
   1822  1.1  skrll 	case ALPHA_R_OP_STORE:
   1823  1.1  skrll 	  /* Store a value from the reloc stack into a bitfield.  If
   1824  1.1  skrll 	     we are generating relocatable output, all we do is
   1825  1.1  skrll 	     adjust the address of the reloc.  */
   1826  1.1  skrll 	  if (! info->relocatable)
   1827  1.1  skrll 	    {
   1828  1.1  skrll 	      bfd_vma mask;
   1829  1.1  skrll 	      bfd_vma val;
   1830  1.1  skrll 
   1831  1.1  skrll 	      if (tos == 0)
   1832  1.1  skrll 		abort ();
   1833  1.1  skrll 
   1834  1.1  skrll 	      /* Get the relocation mask.  The separate steps and the
   1835  1.1  skrll 		 casts to bfd_vma are attempts to avoid a bug in the
   1836  1.1  skrll 		 Alpha OSF 1.3 C compiler.  See reloc.c for more
   1837  1.1  skrll 		 details.  */
   1838  1.1  skrll 	      mask = 1;
   1839  1.1  skrll 	      mask <<= (bfd_vma) r_size;
   1840  1.1  skrll 	      mask -= 1;
   1841  1.1  skrll 
   1842  1.1  skrll 	      /* FIXME: I don't know what kind of overflow checking,
   1843  1.1  skrll 		 if any, should be done here.  */
   1844  1.1  skrll 	      val = bfd_get_64 (input_bfd,
   1845  1.1  skrll 				contents + r_vaddr - input_section->vma);
   1846  1.1  skrll 	      val &=~ mask << (bfd_vma) r_offset;
   1847  1.1  skrll 	      val |= (stack[--tos] & mask) << (bfd_vma) r_offset;
   1848  1.1  skrll 	      bfd_put_64 (input_bfd, val,
   1849  1.1  skrll 			  contents + r_vaddr - input_section->vma);
   1850  1.1  skrll 	    }
   1851  1.1  skrll 	  break;
   1852  1.1  skrll 
   1853  1.1  skrll 	case ALPHA_R_GPVALUE:
   1854  1.1  skrll 	  /* I really don't know if this does the right thing.  */
   1855  1.1  skrll 	  gp = ecoff_data (input_bfd)->gp + r_symndx;
   1856  1.1  skrll 	  gp_undefined = FALSE;
   1857  1.1  skrll 	  break;
   1858  1.1  skrll 	}
   1859  1.1  skrll 
   1860  1.1  skrll       if (relocatep)
   1861  1.1  skrll 	{
   1862  1.1  skrll 	  reloc_howto_type *howto;
   1863  1.1  skrll 	  struct ecoff_link_hash_entry *h = NULL;
   1864  1.1  skrll 	  asection *s = NULL;
   1865  1.1  skrll 	  bfd_vma relocation;
   1866  1.1  skrll 	  bfd_reloc_status_type r;
   1867  1.1  skrll 
   1868  1.1  skrll 	  /* Perform a relocation.  */
   1869  1.1  skrll 
   1870  1.1  skrll 	  howto = &alpha_howto_table[r_type];
   1871  1.1  skrll 
   1872  1.1  skrll 	  if (r_extern)
   1873  1.1  skrll 	    {
   1874  1.1  skrll 	      h = sym_hashes[r_symndx];
   1875  1.1  skrll 	      /* If h is NULL, that means that there is a reloc
   1876  1.1  skrll 		 against an external symbol which we thought was just
   1877  1.1  skrll 		 a debugging symbol.  This should not happen.  */
   1878  1.1  skrll 	      if (h == (struct ecoff_link_hash_entry *) NULL)
   1879  1.1  skrll 		abort ();
   1880  1.1  skrll 	    }
   1881  1.1  skrll 	  else
   1882  1.1  skrll 	    {
   1883  1.1  skrll 	      if (r_symndx >= NUM_RELOC_SECTIONS)
   1884  1.1  skrll 		s = NULL;
   1885  1.1  skrll 	      else
   1886  1.1  skrll 		s = symndx_to_section[r_symndx];
   1887  1.1  skrll 
   1888  1.1  skrll 	      if (s == (asection *) NULL)
   1889  1.1  skrll 		abort ();
   1890  1.1  skrll 	    }
   1891  1.1  skrll 
   1892  1.1  skrll 	  if (info->relocatable)
   1893  1.1  skrll 	    {
   1894  1.1  skrll 	      /* We are generating relocatable output, and must
   1895  1.1  skrll 		 convert the existing reloc.  */
   1896  1.1  skrll 	      if (r_extern)
   1897  1.1  skrll 		{
   1898  1.1  skrll 		  if (h->root.type != bfd_link_hash_defined
   1899  1.1  skrll 		      && h->root.type != bfd_link_hash_defweak
   1900  1.1  skrll 		      && h->indx == -1)
   1901  1.1  skrll 		    {
   1902  1.1  skrll 		      /* This symbol is not being written out.  */
   1903  1.1  skrll 		      if (! ((*info->callbacks->unattached_reloc)
   1904  1.1  skrll 			     (info, h->root.root.string, input_bfd,
   1905  1.1  skrll 			      input_section, r_vaddr - input_section->vma)))
   1906  1.1  skrll 			return FALSE;
   1907  1.1  skrll 		    }
   1908  1.1  skrll 
   1909  1.1  skrll 		  relocation = alpha_convert_external_reloc (output_bfd,
   1910  1.1  skrll 							     info,
   1911  1.1  skrll 							     input_bfd,
   1912  1.1  skrll 							     ext_rel,
   1913  1.1  skrll 							     h);
   1914  1.1  skrll 		}
   1915  1.1  skrll 	      else
   1916  1.1  skrll 		{
   1917  1.1  skrll 		  /* This is a relocation against a section.  Adjust
   1918  1.1  skrll 		     the value by the amount the section moved.  */
   1919  1.1  skrll 		  relocation = (s->output_section->vma
   1920  1.1  skrll 				+ s->output_offset
   1921  1.1  skrll 				- s->vma);
   1922  1.1  skrll 		}
   1923  1.1  skrll 
   1924  1.1  skrll 	      /* If this is PC relative, the existing object file
   1925  1.1  skrll 		 appears to already have the reloc worked out.  We
   1926  1.1  skrll 		 must subtract out the old value and add in the new
   1927  1.1  skrll 		 one.  */
   1928  1.1  skrll 	      if (howto->pc_relative)
   1929  1.1  skrll 		relocation -= (input_section->output_section->vma
   1930  1.1  skrll 			       + input_section->output_offset
   1931  1.1  skrll 			       - input_section->vma);
   1932  1.1  skrll 
   1933  1.1  skrll 	      /* Put in any addend.  */
   1934  1.1  skrll 	      relocation += addend;
   1935  1.1  skrll 
   1936  1.1  skrll 	      /* Adjust the contents.  */
   1937  1.1  skrll 	      r = _bfd_relocate_contents (howto, input_bfd, relocation,
   1938  1.1  skrll 					  (contents
   1939  1.1  skrll 					   + r_vaddr
   1940  1.1  skrll 					   - input_section->vma));
   1941  1.1  skrll 	    }
   1942  1.1  skrll 	  else
   1943  1.1  skrll 	    {
   1944  1.1  skrll 	      /* We are producing a final executable.  */
   1945  1.1  skrll 	      if (r_extern)
   1946  1.1  skrll 		{
   1947  1.1  skrll 		  /* This is a reloc against a symbol.  */
   1948  1.1  skrll 		  if (h->root.type == bfd_link_hash_defined
   1949  1.1  skrll 		      || h->root.type == bfd_link_hash_defweak)
   1950  1.1  skrll 		    {
   1951  1.1  skrll 		      asection *hsec;
   1952  1.1  skrll 
   1953  1.1  skrll 		      hsec = h->root.u.def.section;
   1954  1.1  skrll 		      relocation = (h->root.u.def.value
   1955  1.1  skrll 				    + hsec->output_section->vma
   1956  1.1  skrll 				    + hsec->output_offset);
   1957  1.1  skrll 		    }
   1958  1.1  skrll 		  else
   1959  1.1  skrll 		    {
   1960  1.1  skrll 		      if (! ((*info->callbacks->undefined_symbol)
   1961  1.1  skrll 			     (info, h->root.root.string, input_bfd,
   1962  1.1  skrll 			      input_section,
   1963  1.1  skrll 			      r_vaddr - input_section->vma, TRUE)))
   1964  1.1  skrll 			return FALSE;
   1965  1.1  skrll 		      relocation = 0;
   1966  1.1  skrll 		    }
   1967  1.1  skrll 		}
   1968  1.1  skrll 	      else
   1969  1.1  skrll 		{
   1970  1.1  skrll 		  /* This is a reloc against a section.  */
   1971  1.1  skrll 		  relocation = (s->output_section->vma
   1972  1.1  skrll 				+ s->output_offset
   1973  1.1  skrll 				- s->vma);
   1974  1.1  skrll 
   1975  1.1  skrll 		  /* Adjust a PC relative relocation by removing the
   1976  1.1  skrll 		     reference to the original source section.  */
   1977  1.1  skrll 		  if (howto->pc_relative)
   1978  1.1  skrll 		    relocation += input_section->vma;
   1979  1.1  skrll 		}
   1980  1.1  skrll 
   1981  1.1  skrll 	      r = _bfd_final_link_relocate (howto,
   1982  1.1  skrll 					    input_bfd,
   1983  1.1  skrll 					    input_section,
   1984  1.1  skrll 					    contents,
   1985  1.1  skrll 					    r_vaddr - input_section->vma,
   1986  1.1  skrll 					    relocation,
   1987  1.1  skrll 					    addend);
   1988  1.1  skrll 	    }
   1989  1.1  skrll 
   1990  1.1  skrll 	  if (r != bfd_reloc_ok)
   1991  1.1  skrll 	    {
   1992  1.1  skrll 	      switch (r)
   1993  1.1  skrll 		{
   1994  1.1  skrll 		default:
   1995  1.1  skrll 		case bfd_reloc_outofrange:
   1996  1.1  skrll 		  abort ();
   1997  1.1  skrll 		case bfd_reloc_overflow:
   1998  1.1  skrll 		  {
   1999  1.1  skrll 		    const char *name;
   2000  1.1  skrll 
   2001  1.1  skrll 		    if (r_extern)
   2002  1.1  skrll 		      name = sym_hashes[r_symndx]->root.root.string;
   2003  1.1  skrll 		    else
   2004  1.1  skrll 		      name = bfd_section_name (input_bfd,
   2005  1.1  skrll 					       symndx_to_section[r_symndx]);
   2006  1.1  skrll 		    if (! ((*info->callbacks->reloc_overflow)
   2007  1.1  skrll 			   (info, NULL, name,
   2008  1.1  skrll 			    alpha_howto_table[r_type].name,
   2009  1.1  skrll 			    (bfd_vma) 0, input_bfd, input_section,
   2010  1.1  skrll 			    r_vaddr - input_section->vma)))
   2011  1.1  skrll 		      return FALSE;
   2012  1.1  skrll 		  }
   2013  1.1  skrll 		  break;
   2014  1.1  skrll 		}
   2015  1.1  skrll 	    }
   2016  1.1  skrll 	}
   2017  1.1  skrll 
   2018  1.1  skrll       if (info->relocatable && adjust_addrp)
   2019  1.1  skrll 	{
   2020  1.1  skrll 	  /* Change the address of the relocation.  */
   2021  1.1  skrll 	  H_PUT_64 (input_bfd,
   2022  1.1  skrll 		    (input_section->output_section->vma
   2023  1.1  skrll 		     + input_section->output_offset
   2024  1.1  skrll 		     - input_section->vma
   2025  1.1  skrll 		     + r_vaddr),
   2026  1.1  skrll 		    ext_rel->r_vaddr);
   2027  1.1  skrll 	}
   2028  1.1  skrll 
   2029  1.1  skrll       if (gp_usedp && gp_undefined)
   2030  1.1  skrll 	{
   2031  1.1  skrll 	  if (! ((*info->callbacks->reloc_dangerous)
   2032  1.1  skrll 		 (info, _("GP relative relocation used when GP not defined"),
   2033  1.1  skrll 		  input_bfd, input_section, r_vaddr - input_section->vma)))
   2034  1.1  skrll 	    return FALSE;
   2035  1.1  skrll 	  /* Only give the error once per link.  */
   2036  1.1  skrll 	  gp = 4;
   2037  1.1  skrll 	  _bfd_set_gp_value (output_bfd, gp);
   2038  1.1  skrll 	  gp_undefined = FALSE;
   2039  1.1  skrll 	}
   2040  1.1  skrll     }
   2041  1.1  skrll 
   2042  1.1  skrll   if (tos != 0)
   2043  1.1  skrll     abort ();
   2044  1.1  skrll 
   2045  1.1  skrll   return TRUE;
   2046  1.1  skrll }
   2047  1.1  skrll 
   2048  1.1  skrll /* Do final adjustments to the filehdr and the aouthdr.  This routine
   2050  1.1  skrll    sets the dynamic bits in the file header.  */
   2051  1.1  skrll 
   2052  1.1  skrll static bfd_boolean
   2053  1.1  skrll alpha_adjust_headers (abfd, fhdr, ahdr)
   2054  1.1  skrll      bfd *abfd;
   2055  1.1  skrll      struct internal_filehdr *fhdr;
   2056  1.1  skrll      struct internal_aouthdr *ahdr ATTRIBUTE_UNUSED;
   2057  1.1  skrll {
   2058  1.1  skrll   if ((abfd->flags & (DYNAMIC | EXEC_P)) == (DYNAMIC | EXEC_P))
   2059  1.1  skrll     fhdr->f_flags |= F_ALPHA_CALL_SHARED;
   2060  1.1  skrll   else if ((abfd->flags & DYNAMIC) != 0)
   2061  1.1  skrll     fhdr->f_flags |= F_ALPHA_SHARABLE;
   2062  1.1  skrll   return TRUE;
   2063  1.1  skrll }
   2064  1.1  skrll 
   2065  1.1  skrll /* Archive handling.  In OSF/1 (or Digital Unix) v3.2, Digital
   2067  1.1  skrll    introduced archive packing, in which the elements in an archive are
   2068  1.1  skrll    optionally compressed using a simple dictionary scheme.  We know
   2069  1.1  skrll    how to read such archives, but we don't write them.  */
   2070  1.1  skrll 
   2071  1.1  skrll #define alpha_ecoff_slurp_armap _bfd_ecoff_slurp_armap
   2072  1.1  skrll #define alpha_ecoff_slurp_extended_name_table \
   2073  1.1  skrll   _bfd_ecoff_slurp_extended_name_table
   2074  1.1  skrll #define alpha_ecoff_construct_extended_name_table \
   2075  1.1  skrll   _bfd_ecoff_construct_extended_name_table
   2076  1.1  skrll #define alpha_ecoff_truncate_arname _bfd_ecoff_truncate_arname
   2077  1.1  skrll #define alpha_ecoff_write_armap _bfd_ecoff_write_armap
   2078  1.1  skrll #define alpha_ecoff_generic_stat_arch_elt _bfd_ecoff_generic_stat_arch_elt
   2079  1.1  skrll #define alpha_ecoff_update_armap_timestamp _bfd_ecoff_update_armap_timestamp
   2080  1.1  skrll 
   2081  1.1  skrll /* A compressed file uses this instead of ARFMAG.  */
   2082  1.1  skrll 
   2083  1.1  skrll #define ARFZMAG "Z\012"
   2084  1.1  skrll 
   2085  1.1  skrll /* Read an archive header.  This is like the standard routine, but it
   2086  1.1  skrll    also accepts ARFZMAG.  */
   2087  1.1  skrll 
   2088  1.1  skrll static PTR
   2089  1.1  skrll alpha_ecoff_read_ar_hdr (abfd)
   2090  1.1  skrll      bfd *abfd;
   2091  1.1  skrll {
   2092  1.1  skrll   struct areltdata *ret;
   2093  1.1  skrll   struct ar_hdr *h;
   2094  1.1  skrll 
   2095  1.1  skrll   ret = (struct areltdata *) _bfd_generic_read_ar_hdr_mag (abfd, ARFZMAG);
   2096  1.1  skrll   if (ret == NULL)
   2097  1.1  skrll     return NULL;
   2098  1.1  skrll 
   2099  1.1  skrll   h = (struct ar_hdr *) ret->arch_header;
   2100  1.1  skrll   if (strncmp (h->ar_fmag, ARFZMAG, 2) == 0)
   2101  1.1  skrll     {
   2102  1.1  skrll       bfd_byte ab[8];
   2103  1.1  skrll 
   2104  1.1  skrll       /* This is a compressed file.  We must set the size correctly.
   2105  1.1  skrll          The size is the eight bytes after the dummy file header.  */
   2106  1.1  skrll       if (bfd_seek (abfd, (file_ptr) FILHSZ, SEEK_CUR) != 0
   2107  1.1  skrll 	  || bfd_bread (ab, (bfd_size_type) 8, abfd) != 8
   2108  1.1  skrll 	  || bfd_seek (abfd, (file_ptr) (- (FILHSZ + 8)), SEEK_CUR) != 0)
   2109  1.1  skrll 	return NULL;
   2110  1.1  skrll 
   2111  1.1  skrll       ret->parsed_size = H_GET_64 (abfd, ab);
   2112  1.1  skrll     }
   2113  1.1  skrll 
   2114  1.1  skrll   return (PTR) ret;
   2115  1.1  skrll }
   2116  1.1  skrll 
   2117  1.1  skrll /* Get an archive element at a specified file position.  This is where
   2118  1.1  skrll    we uncompress the archive element if necessary.  */
   2119  1.1  skrll 
   2120  1.1  skrll static bfd *
   2121  1.1  skrll alpha_ecoff_get_elt_at_filepos (archive, filepos)
   2122  1.1  skrll      bfd *archive;
   2123  1.1  skrll      file_ptr filepos;
   2124  1.1  skrll {
   2125  1.1  skrll   bfd *nbfd = NULL;
   2126  1.1  skrll   struct areltdata *tdata;
   2127  1.1  skrll   struct ar_hdr *hdr;
   2128  1.1  skrll   bfd_byte ab[8];
   2129  1.1  skrll   bfd_size_type size;
   2130  1.1  skrll   bfd_byte *buf, *p;
   2131  1.1  skrll   struct bfd_in_memory *bim;
   2132  1.1  skrll 
   2133  1.1  skrll   nbfd = _bfd_get_elt_at_filepos (archive, filepos);
   2134  1.1  skrll   if (nbfd == NULL)
   2135  1.1  skrll     goto error_return;
   2136  1.1  skrll 
   2137  1.1  skrll   if ((nbfd->flags & BFD_IN_MEMORY) != 0)
   2138  1.1  skrll     {
   2139  1.1  skrll       /* We have already expanded this BFD.  */
   2140  1.1  skrll       return nbfd;
   2141  1.1  skrll     }
   2142  1.1  skrll 
   2143  1.1  skrll   tdata = (struct areltdata *) nbfd->arelt_data;
   2144  1.1  skrll   hdr = (struct ar_hdr *) tdata->arch_header;
   2145  1.1  skrll   if (strncmp (hdr->ar_fmag, ARFZMAG, 2) != 0)
   2146  1.1  skrll     return nbfd;
   2147  1.1  skrll 
   2148  1.1  skrll   /* We must uncompress this element.  We do this by copying it into a
   2149  1.1  skrll      memory buffer, and making bfd_bread and bfd_seek use that buffer.
   2150  1.1  skrll      This can use a lot of memory, but it's simpler than getting a
   2151  1.1  skrll      temporary file, making that work with the file descriptor caching
   2152  1.1  skrll      code, and making sure that it is deleted at all appropriate
   2153  1.1  skrll      times.  It can be changed if it ever becomes important.  */
   2154  1.1  skrll 
   2155  1.1  skrll   /* The compressed file starts with a dummy ECOFF file header.  */
   2156  1.1  skrll   if (bfd_seek (nbfd, (file_ptr) FILHSZ, SEEK_SET) != 0)
   2157  1.1  skrll     goto error_return;
   2158  1.1  skrll 
   2159  1.1  skrll   /* The next eight bytes are the real file size.  */
   2160  1.1  skrll   if (bfd_bread (ab, (bfd_size_type) 8, nbfd) != 8)
   2161  1.1  skrll     goto error_return;
   2162  1.1  skrll   size = H_GET_64 (nbfd, ab);
   2163  1.1  skrll 
   2164  1.1  skrll   if (size == 0)
   2165  1.1  skrll     buf = NULL;
   2166  1.1  skrll   else
   2167  1.1  skrll     {
   2168  1.1  skrll       bfd_size_type left;
   2169  1.1  skrll       bfd_byte dict[4096];
   2170  1.1  skrll       unsigned int h;
   2171  1.1  skrll       bfd_byte b;
   2172  1.1  skrll 
   2173  1.1  skrll       buf = (bfd_byte *) bfd_alloc (nbfd, size);
   2174  1.1  skrll       if (buf == NULL)
   2175  1.1  skrll 	goto error_return;
   2176  1.1  skrll       p = buf;
   2177  1.1  skrll 
   2178  1.1  skrll       left = size;
   2179  1.1  skrll 
   2180  1.1  skrll       /* I don't know what the next eight bytes are for.  */
   2181  1.1  skrll       if (bfd_bread (ab, (bfd_size_type) 8, nbfd) != 8)
   2182  1.1  skrll 	goto error_return;
   2183  1.1  skrll 
   2184  1.1  skrll       /* This is the uncompression algorithm.  It's a simple
   2185  1.1  skrll 	 dictionary based scheme in which each character is predicted
   2186  1.1  skrll 	 by a hash of the previous three characters.  A control byte
   2187  1.1  skrll 	 indicates whether the character is predicted or whether it
   2188  1.1  skrll 	 appears in the input stream; each control byte manages the
   2189  1.1  skrll 	 next eight bytes in the output stream.  */
   2190  1.1  skrll       memset (dict, 0, sizeof dict);
   2191  1.1  skrll       h = 0;
   2192  1.1  skrll       while (bfd_bread (&b, (bfd_size_type) 1, nbfd) == 1)
   2193  1.1  skrll 	{
   2194  1.1  skrll 	  unsigned int i;
   2195  1.1  skrll 
   2196  1.1  skrll 	  for (i = 0; i < 8; i++, b >>= 1)
   2197  1.1  skrll 	    {
   2198  1.1  skrll 	      bfd_byte n;
   2199  1.1  skrll 
   2200  1.1  skrll 	      if ((b & 1) == 0)
   2201  1.1  skrll 		n = dict[h];
   2202  1.1  skrll 	      else
   2203  1.1  skrll 		{
   2204  1.1  skrll 		  if (! bfd_bread (&n, (bfd_size_type) 1, nbfd))
   2205  1.1  skrll 		    goto error_return;
   2206  1.1  skrll 		  dict[h] = n;
   2207  1.1  skrll 		}
   2208  1.1  skrll 
   2209  1.1  skrll 	      *p++ = n;
   2210  1.1  skrll 
   2211  1.1  skrll 	      --left;
   2212  1.1  skrll 	      if (left == 0)
   2213  1.1  skrll 		break;
   2214  1.1  skrll 
   2215  1.1  skrll 	      h <<= 4;
   2216  1.1  skrll 	      h ^= n;
   2217  1.1  skrll 	      h &= sizeof dict - 1;
   2218  1.1  skrll 	    }
   2219  1.1  skrll 
   2220  1.1  skrll 	  if (left == 0)
   2221  1.1  skrll 	    break;
   2222  1.1  skrll 	}
   2223  1.1  skrll     }
   2224  1.1  skrll 
   2225  1.1  skrll   /* Now the uncompressed file contents are in buf.  */
   2226  1.1  skrll   bim = ((struct bfd_in_memory *)
   2227  1.1  skrll 	 bfd_alloc (nbfd, (bfd_size_type) sizeof (struct bfd_in_memory)));
   2228  1.1  skrll   if (bim == NULL)
   2229  1.1  skrll     goto error_return;
   2230  1.1  skrll   bim->size = size;
   2231  1.1  skrll   bim->buffer = buf;
   2232  1.1  skrll 
   2233  1.1  skrll   nbfd->mtime_set = TRUE;
   2234  1.1  skrll   nbfd->mtime = strtol (hdr->ar_date, (char **) NULL, 10);
   2235  1.1  skrll 
   2236  1.1  skrll   nbfd->flags |= BFD_IN_MEMORY;
   2237  1.1  skrll   nbfd->iostream = (PTR) bim;
   2238  1.1  skrll   BFD_ASSERT (! nbfd->cacheable);
   2239  1.1  skrll 
   2240  1.1  skrll   return nbfd;
   2241  1.1  skrll 
   2242  1.1  skrll  error_return:
   2243  1.1  skrll   if (nbfd != NULL)
   2244  1.1  skrll     bfd_close (nbfd);
   2245  1.1  skrll   return NULL;
   2246  1.1  skrll }
   2247  1.1  skrll 
   2248  1.1  skrll /* Open the next archived file.  */
   2249  1.1  skrll 
   2250  1.1  skrll static bfd *
   2251  1.1  skrll alpha_ecoff_openr_next_archived_file (archive, last_file)
   2252  1.1  skrll      bfd *archive;
   2253  1.1  skrll      bfd *last_file;
   2254  1.1  skrll {
   2255  1.1  skrll   file_ptr filestart;
   2256  1.1  skrll 
   2257  1.1  skrll   if (last_file == NULL)
   2258  1.1  skrll     filestart = bfd_ardata (archive)->first_file_filepos;
   2259  1.1  skrll   else
   2260  1.1  skrll     {
   2261  1.1  skrll       struct areltdata *t;
   2262  1.1  skrll       struct ar_hdr *h;
   2263  1.1  skrll       bfd_size_type size;
   2264  1.1  skrll 
   2265  1.1  skrll       /* We can't use arelt_size here, because that uses parsed_size,
   2266  1.1  skrll          which is the uncompressed size.  We need the compressed size.  */
   2267  1.1  skrll       t = (struct areltdata *) last_file->arelt_data;
   2268  1.1  skrll       h = (struct ar_hdr *) t->arch_header;
   2269  1.1  skrll       size = strtol (h->ar_size, (char **) NULL, 10);
   2270  1.1  skrll 
   2271  1.1  skrll       /* Pad to an even boundary...
   2272  1.1  skrll 	 Note that last_file->origin can be odd in the case of
   2273  1.1  skrll 	 BSD-4.4-style element with a long odd size.  */
   2274  1.1  skrll       filestart = last_file->origin + size;
   2275  1.1  skrll       filestart += filestart % 2;
   2276  1.1  skrll     }
   2277  1.1  skrll 
   2278  1.1  skrll   return alpha_ecoff_get_elt_at_filepos (archive, filestart);
   2279  1.1  skrll }
   2280  1.1  skrll 
   2281  1.1  skrll /* Open the archive file given an index into the armap.  */
   2282  1.1  skrll 
   2283  1.1  skrll static bfd *
   2284  1.1  skrll alpha_ecoff_get_elt_at_index (abfd, index)
   2285  1.1  skrll      bfd *abfd;
   2286  1.1  skrll      symindex index;
   2287  1.1  skrll {
   2288  1.1  skrll   carsym *entry;
   2289  1.1  skrll 
   2290  1.1  skrll   entry = bfd_ardata (abfd)->symdefs + index;
   2291  1.1  skrll   return alpha_ecoff_get_elt_at_filepos (abfd, entry->file_offset);
   2292  1.1  skrll }
   2293  1.1  skrll 
   2294  1.1  skrll /* This is the ECOFF backend structure.  The backend field of the
   2296  1.1  skrll    target vector points to this.  */
   2297  1.1  skrll 
   2298  1.1  skrll static const struct ecoff_backend_data alpha_ecoff_backend_data =
   2299  1.1  skrll {
   2300  1.1  skrll   /* COFF backend structure.  */
   2301  1.1  skrll   {
   2302  1.1  skrll     (void (*) PARAMS ((bfd *,PTR,int,int,int,int,PTR))) bfd_void, /* aux_in */
   2303  1.1  skrll     (void (*) PARAMS ((bfd *,PTR,PTR))) bfd_void, /* sym_in */
   2304  1.1  skrll     (void (*) PARAMS ((bfd *,PTR,PTR))) bfd_void, /* lineno_in */
   2305  1.1  skrll     (unsigned (*) PARAMS ((bfd *,PTR,int,int,int,int,PTR)))bfd_void,/*aux_out*/
   2306  1.1  skrll     (unsigned (*) PARAMS ((bfd *,PTR,PTR))) bfd_void, /* sym_out */
   2307  1.1  skrll     (unsigned (*) PARAMS ((bfd *,PTR,PTR))) bfd_void, /* lineno_out */
   2308  1.1  skrll     (unsigned (*) PARAMS ((bfd *,PTR,PTR))) bfd_void, /* reloc_out */
   2309  1.1  skrll     alpha_ecoff_swap_filehdr_out, alpha_ecoff_swap_aouthdr_out,
   2310  1.1  skrll     alpha_ecoff_swap_scnhdr_out,
   2311  1.1  skrll     FILHSZ, AOUTSZ, SCNHSZ, 0, 0, 0, 0, FILNMLEN, TRUE, FALSE, 4, FALSE, 2,
   2312  1.1  skrll     alpha_ecoff_swap_filehdr_in, alpha_ecoff_swap_aouthdr_in,
   2313  1.1  skrll     alpha_ecoff_swap_scnhdr_in, NULL,
   2314  1.1  skrll     alpha_ecoff_bad_format_hook, _bfd_ecoff_set_arch_mach_hook,
   2315  1.1  skrll     alpha_ecoff_mkobject_hook, _bfd_ecoff_styp_to_sec_flags,
   2316  1.1  skrll     _bfd_ecoff_set_alignment_hook, _bfd_ecoff_slurp_symbol_table,
   2317  1.1  skrll     NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL,
   2318  1.1  skrll     NULL, NULL, NULL, NULL
   2319  1.1  skrll   },
   2320  1.1  skrll   /* Supported architecture.  */
   2321  1.1  skrll   bfd_arch_alpha,
   2322  1.1  skrll   /* Initial portion of armap string.  */
   2323  1.1  skrll   "________64",
   2324  1.1  skrll   /* The page boundary used to align sections in a demand-paged
   2325  1.1  skrll      executable file.  E.g., 0x1000.  */
   2326  1.1  skrll   0x2000,
   2327  1.1  skrll   /* TRUE if the .rdata section is part of the text segment, as on the
   2328  1.1  skrll      Alpha.  FALSE if .rdata is part of the data segment, as on the
   2329  1.1  skrll      MIPS.  */
   2330  1.1  skrll   TRUE,
   2331  1.1  skrll   /* Bitsize of constructor entries.  */
   2332  1.1  skrll   64,
   2333  1.1  skrll   /* Reloc to use for constructor entries.  */
   2334  1.1  skrll   &alpha_howto_table[ALPHA_R_REFQUAD],
   2335  1.1  skrll   {
   2336  1.1  skrll     /* Symbol table magic number.  */
   2337  1.1  skrll     magicSym2,
   2338  1.1  skrll     /* Alignment of debugging information.  E.g., 4.  */
   2339  1.1  skrll     8,
   2340  1.1  skrll     /* Sizes of external symbolic information.  */
   2341  1.1  skrll     sizeof (struct hdr_ext),
   2342  1.1  skrll     sizeof (struct dnr_ext),
   2343  1.1  skrll     sizeof (struct pdr_ext),
   2344  1.1  skrll     sizeof (struct sym_ext),
   2345  1.1  skrll     sizeof (struct opt_ext),
   2346  1.1  skrll     sizeof (struct fdr_ext),
   2347  1.1  skrll     sizeof (struct rfd_ext),
   2348  1.1  skrll     sizeof (struct ext_ext),
   2349  1.1  skrll     /* Functions to swap in external symbolic data.  */
   2350  1.1  skrll     ecoff_swap_hdr_in,
   2351  1.1  skrll     ecoff_swap_dnr_in,
   2352  1.1  skrll     ecoff_swap_pdr_in,
   2353  1.1  skrll     ecoff_swap_sym_in,
   2354  1.1  skrll     ecoff_swap_opt_in,
   2355  1.1  skrll     ecoff_swap_fdr_in,
   2356  1.1  skrll     ecoff_swap_rfd_in,
   2357  1.1  skrll     ecoff_swap_ext_in,
   2358  1.1  skrll     _bfd_ecoff_swap_tir_in,
   2359  1.1  skrll     _bfd_ecoff_swap_rndx_in,
   2360  1.1  skrll     /* Functions to swap out external symbolic data.  */
   2361  1.1  skrll     ecoff_swap_hdr_out,
   2362  1.1  skrll     ecoff_swap_dnr_out,
   2363  1.1  skrll     ecoff_swap_pdr_out,
   2364  1.1  skrll     ecoff_swap_sym_out,
   2365  1.1  skrll     ecoff_swap_opt_out,
   2366  1.1  skrll     ecoff_swap_fdr_out,
   2367  1.1  skrll     ecoff_swap_rfd_out,
   2368  1.1  skrll     ecoff_swap_ext_out,
   2369  1.1  skrll     _bfd_ecoff_swap_tir_out,
   2370  1.1  skrll     _bfd_ecoff_swap_rndx_out,
   2371  1.1  skrll     /* Function to read in symbolic data.  */
   2372  1.1  skrll     _bfd_ecoff_slurp_symbolic_info
   2373  1.1  skrll   },
   2374  1.1  skrll   /* External reloc size.  */
   2375  1.1  skrll   RELSZ,
   2376  1.1  skrll   /* Reloc swapping functions.  */
   2377  1.1  skrll   alpha_ecoff_swap_reloc_in,
   2378  1.1  skrll   alpha_ecoff_swap_reloc_out,
   2379  1.1  skrll   /* Backend reloc tweaking.  */
   2380  1.1  skrll   alpha_adjust_reloc_in,
   2381  1.1  skrll   alpha_adjust_reloc_out,
   2382  1.1  skrll   /* Relocate section contents while linking.  */
   2383  1.1  skrll   alpha_relocate_section,
   2384  1.1  skrll   /* Do final adjustments to filehdr and aouthdr.  */
   2385  1.1  skrll   alpha_adjust_headers,
   2386  1.1  skrll   /* Read an element from an archive at a given file position.  */
   2387  1.1  skrll   alpha_ecoff_get_elt_at_filepos
   2388  1.1  skrll };
   2389  1.1  skrll 
   2390  1.1  skrll /* Looking up a reloc type is Alpha specific.  */
   2391  1.1  skrll #define _bfd_ecoff_bfd_reloc_type_lookup alpha_bfd_reloc_type_lookup
   2392  1.1  skrll #define _bfd_ecoff_bfd_reloc_name_lookup \
   2393  1.1  skrll   alpha_bfd_reloc_name_lookup
   2394  1.1  skrll 
   2395  1.1  skrll /* So is getting relocated section contents.  */
   2396  1.1  skrll #define _bfd_ecoff_bfd_get_relocated_section_contents \
   2397  1.1  skrll   alpha_ecoff_get_relocated_section_contents
   2398  1.1  skrll 
   2399  1.1  skrll /* Handling file windows is generic.  */
   2400  1.1  skrll #define _bfd_ecoff_get_section_contents_in_window \
   2401  1.1  skrll   _bfd_generic_get_section_contents_in_window
   2402  1.1  skrll 
   2403  1.1  skrll /* Relaxing sections is generic.  */
   2404  1.1  skrll #define _bfd_ecoff_bfd_relax_section bfd_generic_relax_section
   2405  1.1  skrll #define _bfd_ecoff_bfd_gc_sections bfd_generic_gc_sections
   2406  1.1  skrll #define _bfd_ecoff_bfd_merge_sections bfd_generic_merge_sections
   2407  1.1  skrll #define _bfd_ecoff_bfd_is_group_section bfd_generic_is_group_section
   2408  1.1  skrll #define _bfd_ecoff_bfd_discard_group bfd_generic_discard_group
   2409  1.1  skrll #define _bfd_ecoff_section_already_linked \
   2410  1.1  skrll   _bfd_generic_section_already_linked
   2411  1.1  skrll 
   2412  1.1  skrll const bfd_target ecoffalpha_little_vec =
   2413  1.1  skrll {
   2414  1.1  skrll   "ecoff-littlealpha",		/* name */
   2415  1.1  skrll   bfd_target_ecoff_flavour,
   2416  1.1  skrll   BFD_ENDIAN_LITTLE,		/* data byte order is little */
   2417  1.1  skrll   BFD_ENDIAN_LITTLE,		/* header byte order is little */
   2418  1.1  skrll 
   2419  1.1  skrll   (HAS_RELOC | EXEC_P |		/* object flags */
   2420  1.1  skrll    HAS_LINENO | HAS_DEBUG |
   2421  1.1  skrll    HAS_SYMS | HAS_LOCALS | DYNAMIC | WP_TEXT | D_PAGED),
   2422  1.1  skrll 
   2423  1.1  skrll   (SEC_HAS_CONTENTS | SEC_ALLOC | SEC_LOAD | SEC_RELOC | SEC_CODE | SEC_DATA),
   2424  1.1  skrll   0,				/* leading underscore */
   2425  1.1  skrll   ' ',				/* ar_pad_char */
   2426  1.1  skrll   15,				/* ar_max_namelen */
   2427  1.1  skrll   bfd_getl64, bfd_getl_signed_64, bfd_putl64,
   2428  1.1  skrll      bfd_getl32, bfd_getl_signed_32, bfd_putl32,
   2429  1.1  skrll      bfd_getl16, bfd_getl_signed_16, bfd_putl16, /* data */
   2430  1.1  skrll   bfd_getl64, bfd_getl_signed_64, bfd_putl64,
   2431  1.1  skrll      bfd_getl32, bfd_getl_signed_32, bfd_putl32,
   2432  1.1  skrll      bfd_getl16, bfd_getl_signed_16, bfd_putl16, /* hdrs */
   2433  1.1  skrll 
   2434  1.1  skrll   {_bfd_dummy_target, alpha_ecoff_object_p, /* bfd_check_format */
   2435  1.1  skrll      bfd_generic_archive_p, _bfd_dummy_target},
   2436  1.1  skrll   {bfd_false, _bfd_ecoff_mkobject,  /* bfd_set_format */
   2437  1.1  skrll      _bfd_generic_mkarchive, bfd_false},
   2438  1.1  skrll   {bfd_false, _bfd_ecoff_write_object_contents, /* bfd_write_contents */
   2439  1.1  skrll      _bfd_write_archive_contents, bfd_false},
   2440  1.1  skrll 
   2441  1.1  skrll      BFD_JUMP_TABLE_GENERIC (_bfd_ecoff),
   2442  1.1  skrll      BFD_JUMP_TABLE_COPY (_bfd_ecoff),
   2443  1.1  skrll      BFD_JUMP_TABLE_CORE (_bfd_nocore),
   2444  1.1  skrll      BFD_JUMP_TABLE_ARCHIVE (alpha_ecoff),
   2445  1.1  skrll      BFD_JUMP_TABLE_SYMBOLS (_bfd_ecoff),
   2446                  BFD_JUMP_TABLE_RELOCS (_bfd_ecoff),
   2447                  BFD_JUMP_TABLE_WRITE (_bfd_ecoff),
   2448                  BFD_JUMP_TABLE_LINK (_bfd_ecoff),
   2449                  BFD_JUMP_TABLE_DYNAMIC (_bfd_nodynamic),
   2450             
   2451               NULL,
   2452             
   2453               (PTR) &alpha_ecoff_backend_data
   2454             };
   2455