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ecofflink.c revision 1.1
      1  1.1  christos /* Routines to link ECOFF debugging information.
      2  1.1  christos    Copyright 1993, 1994, 1995, 1996, 1997, 1999, 2000, 2001, 2002, 2003,
      3  1.1  christos    2004, 2005, 2006, 2007, 2008, 2009  Free Software Foundation, Inc.
      4  1.1  christos    Written by Ian Lance Taylor, Cygnus Support, <ian (at) cygnus.com>.
      5  1.1  christos 
      6  1.1  christos    This file is part of BFD, the Binary File Descriptor library.
      7  1.1  christos 
      8  1.1  christos    This program is free software; you can redistribute it and/or modify
      9  1.1  christos    it under the terms of the GNU General Public License as published by
     10  1.1  christos    the Free Software Foundation; either version 3 of the License, or
     11  1.1  christos    (at your option) any later version.
     12  1.1  christos 
     13  1.1  christos    This program is distributed in the hope that it will be useful,
     14  1.1  christos    but WITHOUT ANY WARRANTY; without even the implied warranty of
     15  1.1  christos    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     16  1.1  christos    GNU General Public License for more details.
     17  1.1  christos 
     18  1.1  christos    You should have received a copy of the GNU General Public License
     19  1.1  christos    along with this program; if not, write to the Free Software
     20  1.1  christos    Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
     21  1.1  christos    MA 02110-1301, USA.  */
     22  1.1  christos 
     23  1.1  christos #include "sysdep.h"
     24  1.1  christos #include "bfd.h"
     25  1.1  christos #include "bfdlink.h"
     26  1.1  christos #include "libbfd.h"
     27  1.1  christos #include "objalloc.h"
     28  1.1  christos #include "aout/stab_gnu.h"
     29  1.1  christos #include "coff/internal.h"
     30  1.1  christos #include "coff/sym.h"
     31  1.1  christos #include "coff/symconst.h"
     32  1.1  christos #include "coff/ecoff.h"
     33  1.1  christos #include "libcoff.h"
     34  1.1  christos #include "libecoff.h"
     35  1.1  christos 
     36  1.1  christos static bfd_boolean ecoff_add_bytes
     38  1.1  christos   PARAMS ((char **buf, char **bufend, size_t need));
     39  1.1  christos static struct bfd_hash_entry *string_hash_newfunc
     40  1.1  christos   PARAMS ((struct bfd_hash_entry *, struct bfd_hash_table *,
     41  1.1  christos 	   const char *));
     42  1.1  christos static void ecoff_align_debug
     43  1.1  christos   PARAMS ((bfd *abfd, struct ecoff_debug_info *debug,
     44  1.1  christos 	   const struct ecoff_debug_swap *swap));
     45  1.1  christos static bfd_boolean ecoff_write_symhdr
     46  1.1  christos   PARAMS ((bfd *, struct ecoff_debug_info *, const struct ecoff_debug_swap *,
     47  1.1  christos 	   file_ptr where));
     48  1.1  christos static int cmp_fdrtab_entry
     49  1.1  christos   PARAMS ((const PTR, const PTR));
     50  1.1  christos static bfd_boolean mk_fdrtab
     51  1.1  christos   PARAMS ((bfd *, struct ecoff_debug_info * const,
     52  1.1  christos 	   const struct ecoff_debug_swap * const, struct ecoff_find_line *));
     53  1.1  christos static long fdrtab_lookup
     54  1.1  christos   PARAMS ((struct ecoff_find_line *, bfd_vma));
     55  1.1  christos static bfd_boolean lookup_line
     56  1.1  christos   PARAMS ((bfd *, struct ecoff_debug_info * const,
     57  1.1  christos 	   const struct ecoff_debug_swap * const, struct ecoff_find_line *));
     58  1.1  christos 
     59  1.1  christos /* Routines to swap auxiliary information in and out.  I am assuming
     61  1.1  christos    that the auxiliary information format is always going to be target
     62  1.1  christos    independent.  */
     63  1.1  christos 
     64  1.1  christos /* Swap in a type information record.
     65  1.1  christos    BIGEND says whether AUX symbols are big-endian or little-endian; this
     66  1.1  christos    info comes from the file header record (fh-fBigendian).  */
     67  1.1  christos 
     68  1.1  christos void
     69  1.1  christos _bfd_ecoff_swap_tir_in (bigend, ext_copy, intern)
     70  1.1  christos      int bigend;
     71  1.1  christos      const struct tir_ext *ext_copy;
     72  1.1  christos      TIR *intern;
     73  1.1  christos {
     74  1.1  christos   struct tir_ext ext[1];
     75  1.1  christos 
     76  1.1  christos   *ext = *ext_copy;		/* Make it reasonable to do in-place.  */
     77  1.1  christos 
     78  1.1  christos   /* now the fun stuff...  */
     79  1.1  christos   if (bigend) {
     80  1.1  christos     intern->fBitfield   = 0 != (ext->t_bits1[0] & TIR_BITS1_FBITFIELD_BIG);
     81  1.1  christos     intern->continued   = 0 != (ext->t_bits1[0] & TIR_BITS1_CONTINUED_BIG);
     82  1.1  christos     intern->bt          = (ext->t_bits1[0] & TIR_BITS1_BT_BIG)
     83  1.1  christos 			>>		    TIR_BITS1_BT_SH_BIG;
     84  1.1  christos     intern->tq4         = (ext->t_tq45[0] & TIR_BITS_TQ4_BIG)
     85  1.1  christos 			>>		    TIR_BITS_TQ4_SH_BIG;
     86  1.1  christos     intern->tq5         = (ext->t_tq45[0] & TIR_BITS_TQ5_BIG)
     87  1.1  christos 			>>		    TIR_BITS_TQ5_SH_BIG;
     88  1.1  christos     intern->tq0         = (ext->t_tq01[0] & TIR_BITS_TQ0_BIG)
     89  1.1  christos 			>>		    TIR_BITS_TQ0_SH_BIG;
     90  1.1  christos     intern->tq1         = (ext->t_tq01[0] & TIR_BITS_TQ1_BIG)
     91  1.1  christos 			>>		    TIR_BITS_TQ1_SH_BIG;
     92  1.1  christos     intern->tq2         = (ext->t_tq23[0] & TIR_BITS_TQ2_BIG)
     93  1.1  christos 			>>		    TIR_BITS_TQ2_SH_BIG;
     94  1.1  christos     intern->tq3         = (ext->t_tq23[0] & TIR_BITS_TQ3_BIG)
     95  1.1  christos 			>>		    TIR_BITS_TQ3_SH_BIG;
     96  1.1  christos   } else {
     97  1.1  christos     intern->fBitfield   = 0 != (ext->t_bits1[0] & TIR_BITS1_FBITFIELD_LITTLE);
     98  1.1  christos     intern->continued   = 0 != (ext->t_bits1[0] & TIR_BITS1_CONTINUED_LITTLE);
     99  1.1  christos     intern->bt          = (ext->t_bits1[0] & TIR_BITS1_BT_LITTLE)
    100  1.1  christos 			>>		    TIR_BITS1_BT_SH_LITTLE;
    101  1.1  christos     intern->tq4         = (ext->t_tq45[0] & TIR_BITS_TQ4_LITTLE)
    102  1.1  christos 			>>		    TIR_BITS_TQ4_SH_LITTLE;
    103  1.1  christos     intern->tq5         = (ext->t_tq45[0] & TIR_BITS_TQ5_LITTLE)
    104  1.1  christos 			>>		    TIR_BITS_TQ5_SH_LITTLE;
    105  1.1  christos     intern->tq0         = (ext->t_tq01[0] & TIR_BITS_TQ0_LITTLE)
    106  1.1  christos 			>>		    TIR_BITS_TQ0_SH_LITTLE;
    107  1.1  christos     intern->tq1         = (ext->t_tq01[0] & TIR_BITS_TQ1_LITTLE)
    108  1.1  christos 			>>		    TIR_BITS_TQ1_SH_LITTLE;
    109  1.1  christos     intern->tq2         = (ext->t_tq23[0] & TIR_BITS_TQ2_LITTLE)
    110  1.1  christos 			>>		    TIR_BITS_TQ2_SH_LITTLE;
    111  1.1  christos     intern->tq3         = (ext->t_tq23[0] & TIR_BITS_TQ3_LITTLE)
    112  1.1  christos 			>>		    TIR_BITS_TQ3_SH_LITTLE;
    113  1.1  christos   }
    114  1.1  christos 
    115  1.1  christos #ifdef TEST
    116  1.1  christos   if (memcmp ((char *)ext, (char *)intern, sizeof (*intern)) != 0)
    117  1.1  christos     abort ();
    118  1.1  christos #endif
    119  1.1  christos }
    120  1.1  christos 
    121  1.1  christos /* Swap out a type information record.
    122  1.1  christos    BIGEND says whether AUX symbols are big-endian or little-endian; this
    123  1.1  christos    info comes from the file header record (fh-fBigendian).  */
    124  1.1  christos 
    125  1.1  christos void
    126  1.1  christos _bfd_ecoff_swap_tir_out (bigend, intern_copy, ext)
    127  1.1  christos      int bigend;
    128  1.1  christos      const TIR *intern_copy;
    129  1.1  christos      struct tir_ext *ext;
    130  1.1  christos {
    131  1.1  christos   TIR intern[1];
    132  1.1  christos 
    133  1.1  christos   *intern = *intern_copy;	/* Make it reasonable to do in-place.  */
    134  1.1  christos 
    135  1.1  christos   /* now the fun stuff...  */
    136  1.1  christos   if (bigend) {
    137  1.1  christos     ext->t_bits1[0] = ((intern->fBitfield ? TIR_BITS1_FBITFIELD_BIG : 0)
    138  1.1  christos 		       | (intern->continued ? TIR_BITS1_CONTINUED_BIG : 0)
    139  1.1  christos 		       | ((intern->bt << TIR_BITS1_BT_SH_BIG)
    140  1.1  christos 			  & TIR_BITS1_BT_BIG));
    141  1.1  christos     ext->t_tq45[0] = (((intern->tq4 << TIR_BITS_TQ4_SH_BIG)
    142  1.1  christos 		       & TIR_BITS_TQ4_BIG)
    143  1.1  christos 		      | ((intern->tq5 << TIR_BITS_TQ5_SH_BIG)
    144  1.1  christos 			 & TIR_BITS_TQ5_BIG));
    145  1.1  christos     ext->t_tq01[0] = (((intern->tq0 << TIR_BITS_TQ0_SH_BIG)
    146  1.1  christos 		       & TIR_BITS_TQ0_BIG)
    147  1.1  christos 		      | ((intern->tq1 << TIR_BITS_TQ1_SH_BIG)
    148  1.1  christos 			 & TIR_BITS_TQ1_BIG));
    149  1.1  christos     ext->t_tq23[0] = (((intern->tq2 << TIR_BITS_TQ2_SH_BIG)
    150  1.1  christos 		       & TIR_BITS_TQ2_BIG)
    151  1.1  christos 		      | ((intern->tq3 << TIR_BITS_TQ3_SH_BIG)
    152  1.1  christos 			 & TIR_BITS_TQ3_BIG));
    153  1.1  christos   } else {
    154  1.1  christos     ext->t_bits1[0] = ((intern->fBitfield ? TIR_BITS1_FBITFIELD_LITTLE : 0)
    155  1.1  christos 		       | (intern->continued ? TIR_BITS1_CONTINUED_LITTLE : 0)
    156  1.1  christos 		       | ((intern->bt << TIR_BITS1_BT_SH_LITTLE)
    157  1.1  christos 			  & TIR_BITS1_BT_LITTLE));
    158  1.1  christos     ext->t_tq45[0] = (((intern->tq4 << TIR_BITS_TQ4_SH_LITTLE)
    159  1.1  christos 		       & TIR_BITS_TQ4_LITTLE)
    160  1.1  christos 		      | ((intern->tq5 << TIR_BITS_TQ5_SH_LITTLE)
    161  1.1  christos 			 & TIR_BITS_TQ5_LITTLE));
    162  1.1  christos     ext->t_tq01[0] = (((intern->tq0 << TIR_BITS_TQ0_SH_LITTLE)
    163  1.1  christos 		       & TIR_BITS_TQ0_LITTLE)
    164  1.1  christos 		      | ((intern->tq1 << TIR_BITS_TQ1_SH_LITTLE)
    165  1.1  christos 			 & TIR_BITS_TQ1_LITTLE));
    166  1.1  christos     ext->t_tq23[0] = (((intern->tq2 << TIR_BITS_TQ2_SH_LITTLE)
    167  1.1  christos 		       & TIR_BITS_TQ2_LITTLE)
    168  1.1  christos 		      | ((intern->tq3 << TIR_BITS_TQ3_SH_LITTLE)
    169  1.1  christos 			 & TIR_BITS_TQ3_LITTLE));
    170  1.1  christos   }
    171  1.1  christos 
    172  1.1  christos #ifdef TEST
    173  1.1  christos   if (memcmp ((char *)ext, (char *)intern, sizeof (*intern)) != 0)
    174  1.1  christos     abort ();
    175  1.1  christos #endif
    176  1.1  christos }
    177  1.1  christos 
    178  1.1  christos /* Swap in a relative symbol record.  BIGEND says whether it is in
    179  1.1  christos    big-endian or little-endian format.*/
    180  1.1  christos 
    181  1.1  christos void
    182  1.1  christos _bfd_ecoff_swap_rndx_in (bigend, ext_copy, intern)
    183  1.1  christos      int bigend;
    184  1.1  christos      const struct rndx_ext *ext_copy;
    185  1.1  christos      RNDXR *intern;
    186  1.1  christos {
    187  1.1  christos   struct rndx_ext ext[1];
    188  1.1  christos 
    189  1.1  christos   *ext = *ext_copy;		/* Make it reasonable to do in-place.  */
    190  1.1  christos 
    191  1.1  christos   /* now the fun stuff...  */
    192  1.1  christos   if (bigend) {
    193  1.1  christos     intern->rfd   = (ext->r_bits[0] << RNDX_BITS0_RFD_SH_LEFT_BIG)
    194  1.1  christos 		  | ((ext->r_bits[1] & RNDX_BITS1_RFD_BIG)
    195  1.1  christos 		    		    >> RNDX_BITS1_RFD_SH_BIG);
    196  1.1  christos     intern->index = ((ext->r_bits[1] & RNDX_BITS1_INDEX_BIG)
    197  1.1  christos 		    		    << RNDX_BITS1_INDEX_SH_LEFT_BIG)
    198  1.1  christos 		  | (ext->r_bits[2] << RNDX_BITS2_INDEX_SH_LEFT_BIG)
    199  1.1  christos 		  | (ext->r_bits[3] << RNDX_BITS3_INDEX_SH_LEFT_BIG);
    200  1.1  christos   } else {
    201  1.1  christos     intern->rfd   = (ext->r_bits[0] << RNDX_BITS0_RFD_SH_LEFT_LITTLE)
    202  1.1  christos 		  | ((ext->r_bits[1] & RNDX_BITS1_RFD_LITTLE)
    203  1.1  christos 		    		    << RNDX_BITS1_RFD_SH_LEFT_LITTLE);
    204  1.1  christos     intern->index = ((ext->r_bits[1] & RNDX_BITS1_INDEX_LITTLE)
    205  1.1  christos 		    		    >> RNDX_BITS1_INDEX_SH_LITTLE)
    206  1.1  christos 		  | (ext->r_bits[2] << RNDX_BITS2_INDEX_SH_LEFT_LITTLE)
    207  1.1  christos 		  | ((unsigned int) ext->r_bits[3]
    208  1.1  christos 		     << RNDX_BITS3_INDEX_SH_LEFT_LITTLE);
    209  1.1  christos   }
    210  1.1  christos 
    211  1.1  christos #ifdef TEST
    212  1.1  christos   if (memcmp ((char *)ext, (char *)intern, sizeof (*intern)) != 0)
    213  1.1  christos     abort ();
    214  1.1  christos #endif
    215  1.1  christos }
    216  1.1  christos 
    217  1.1  christos /* Swap out a relative symbol record.  BIGEND says whether it is in
    218  1.1  christos    big-endian or little-endian format.*/
    219  1.1  christos 
    220  1.1  christos void
    221  1.1  christos _bfd_ecoff_swap_rndx_out (bigend, intern_copy, ext)
    222  1.1  christos      int bigend;
    223  1.1  christos      const RNDXR *intern_copy;
    224  1.1  christos      struct rndx_ext *ext;
    225  1.1  christos {
    226  1.1  christos   RNDXR intern[1];
    227  1.1  christos 
    228  1.1  christos   *intern = *intern_copy;	/* Make it reasonable to do in-place.  */
    229  1.1  christos 
    230  1.1  christos   /* now the fun stuff...  */
    231  1.1  christos   if (bigend) {
    232  1.1  christos     ext->r_bits[0] = intern->rfd >> RNDX_BITS0_RFD_SH_LEFT_BIG;
    233  1.1  christos     ext->r_bits[1] = (((intern->rfd << RNDX_BITS1_RFD_SH_BIG)
    234  1.1  christos 		       & RNDX_BITS1_RFD_BIG)
    235  1.1  christos 		      | ((intern->index >> RNDX_BITS1_INDEX_SH_LEFT_BIG)
    236  1.1  christos 			 & RNDX_BITS1_INDEX_BIG));
    237  1.1  christos     ext->r_bits[2] = intern->index >> RNDX_BITS2_INDEX_SH_LEFT_BIG;
    238  1.1  christos     ext->r_bits[3] = intern->index >> RNDX_BITS3_INDEX_SH_LEFT_BIG;
    239  1.1  christos   } else {
    240  1.1  christos     ext->r_bits[0] = intern->rfd >> RNDX_BITS0_RFD_SH_LEFT_LITTLE;
    241  1.1  christos     ext->r_bits[1] = (((intern->rfd >> RNDX_BITS1_RFD_SH_LEFT_LITTLE)
    242  1.1  christos 		       & RNDX_BITS1_RFD_LITTLE)
    243  1.1  christos 		      | ((intern->index << RNDX_BITS1_INDEX_SH_LITTLE)
    244  1.1  christos 			 & RNDX_BITS1_INDEX_LITTLE));
    245  1.1  christos     ext->r_bits[2] = intern->index >> RNDX_BITS2_INDEX_SH_LEFT_LITTLE;
    246  1.1  christos     ext->r_bits[3] = intern->index >> RNDX_BITS3_INDEX_SH_LEFT_LITTLE;
    247  1.1  christos   }
    248  1.1  christos 
    249  1.1  christos #ifdef TEST
    250  1.1  christos   if (memcmp ((char *)ext, (char *)intern, sizeof (*intern)) != 0)
    251  1.1  christos     abort ();
    252  1.1  christos #endif
    253  1.1  christos }
    254  1.1  christos 
    255  1.1  christos /* The minimum amount of data to allocate.  */
    257  1.1  christos #define ALLOC_SIZE (4064)
    258  1.1  christos 
    259  1.1  christos /* Add bytes to a buffer.  Return success.  */
    260  1.1  christos 
    261  1.1  christos static bfd_boolean
    262  1.1  christos ecoff_add_bytes (buf, bufend, need)
    263  1.1  christos      char **buf;
    264  1.1  christos      char **bufend;
    265  1.1  christos      size_t need;
    266  1.1  christos {
    267  1.1  christos   size_t have;
    268  1.1  christos   size_t want;
    269  1.1  christos   char *newbuf;
    270  1.1  christos 
    271  1.1  christos   have = *bufend - *buf;
    272  1.1  christos   if (have > need)
    273  1.1  christos     want = ALLOC_SIZE;
    274  1.1  christos   else
    275  1.1  christos     {
    276  1.1  christos       want = need - have;
    277  1.1  christos       if (want < ALLOC_SIZE)
    278  1.1  christos 	want = ALLOC_SIZE;
    279  1.1  christos     }
    280  1.1  christos   newbuf = (char *) bfd_realloc (*buf, (bfd_size_type) have + want);
    281  1.1  christos   if (newbuf == NULL)
    282  1.1  christos     return FALSE;
    283  1.1  christos   *buf = newbuf;
    284  1.1  christos   *bufend = *buf + have + want;
    285  1.1  christos   return TRUE;
    286  1.1  christos }
    287  1.1  christos 
    288  1.1  christos /* We keep a hash table which maps strings to numbers.  We use it to
    289  1.1  christos    map FDR names to indices in the output file, and to map local
    290  1.1  christos    strings when combining stabs debugging information.  */
    291  1.1  christos 
    292  1.1  christos struct string_hash_entry
    293  1.1  christos {
    294  1.1  christos   struct bfd_hash_entry root;
    295  1.1  christos   /* FDR index or string table offset.  */
    296  1.1  christos   long val;
    297  1.1  christos   /* Next entry in string table.  */
    298  1.1  christos   struct string_hash_entry *next;
    299  1.1  christos };
    300  1.1  christos 
    301  1.1  christos struct string_hash_table
    302  1.1  christos {
    303  1.1  christos   struct bfd_hash_table table;
    304  1.1  christos };
    305  1.1  christos 
    306  1.1  christos /* Routine to create an entry in a string hash table.  */
    307  1.1  christos 
    308  1.1  christos static struct bfd_hash_entry *
    309  1.1  christos string_hash_newfunc (entry, table, string)
    310  1.1  christos      struct bfd_hash_entry *entry;
    311  1.1  christos      struct bfd_hash_table *table;
    312  1.1  christos      const char *string;
    313  1.1  christos {
    314  1.1  christos   struct string_hash_entry *ret = (struct string_hash_entry *) entry;
    315  1.1  christos 
    316  1.1  christos   /* Allocate the structure if it has not already been allocated by a
    317  1.1  christos      subclass.  */
    318  1.1  christos   if (ret == (struct string_hash_entry *) NULL)
    319  1.1  christos     ret = ((struct string_hash_entry *)
    320  1.1  christos 	   bfd_hash_allocate (table, sizeof (struct string_hash_entry)));
    321  1.1  christos   if (ret == (struct string_hash_entry *) NULL)
    322  1.1  christos     return NULL;
    323  1.1  christos 
    324  1.1  christos   /* Call the allocation method of the superclass.  */
    325  1.1  christos   ret = ((struct string_hash_entry *)
    326  1.1  christos 	 bfd_hash_newfunc ((struct bfd_hash_entry *) ret, table, string));
    327  1.1  christos 
    328  1.1  christos   if (ret)
    329  1.1  christos     {
    330  1.1  christos       /* Initialize the local fields.  */
    331  1.1  christos       ret->val = -1;
    332  1.1  christos       ret->next = NULL;
    333  1.1  christos     }
    334  1.1  christos 
    335  1.1  christos   return (struct bfd_hash_entry *) ret;
    336  1.1  christos }
    337  1.1  christos 
    338  1.1  christos /* Look up an entry in an string hash table.  */
    339  1.1  christos 
    340  1.1  christos #define string_hash_lookup(t, string, create, copy) \
    341  1.1  christos   ((struct string_hash_entry *) \
    342  1.1  christos    bfd_hash_lookup (&(t)->table, (string), (create), (copy)))
    343  1.1  christos 
    344  1.1  christos /* We can't afford to read in all the debugging information when we do
    345  1.1  christos    a link.  Instead, we build a list of these structures to show how
    346  1.1  christos    different parts of the input file map to the output file.  */
    347  1.1  christos 
    348  1.1  christos struct shuffle
    349  1.1  christos {
    350  1.1  christos   /* The next entry in this linked list.  */
    351  1.1  christos   struct shuffle *next;
    352  1.1  christos   /* The length of the information.  */
    353  1.1  christos   unsigned long size;
    354  1.1  christos   /* Whether this information comes from a file or not.  */
    355  1.1  christos   bfd_boolean filep;
    356  1.1  christos   union
    357  1.1  christos     {
    358  1.1  christos       struct
    359  1.1  christos 	{
    360  1.1  christos 	  /* The BFD the data comes from.  */
    361  1.1  christos 	  bfd *input_bfd;
    362  1.1  christos 	  /* The offset within input_bfd.  */
    363  1.1  christos 	  file_ptr offset;
    364  1.1  christos 	} file;
    365  1.1  christos       /* The data to be written out.  */
    366  1.1  christos       PTR memory;
    367  1.1  christos     } u;
    368  1.1  christos };
    369  1.1  christos 
    370  1.1  christos /* This structure holds information across calls to
    371  1.1  christos    bfd_ecoff_debug_accumulate.  */
    372  1.1  christos 
    373  1.1  christos struct accumulate
    374  1.1  christos {
    375  1.1  christos   /* The FDR hash table.  */
    376  1.1  christos   struct string_hash_table fdr_hash;
    377  1.1  christos   /* The strings hash table.  */
    378  1.1  christos   struct string_hash_table str_hash;
    379  1.1  christos   /* Linked lists describing how to shuffle the input debug
    380  1.1  christos      information into the output file.  We keep a pointer to both the
    381  1.1  christos      head and the tail.  */
    382  1.1  christos   struct shuffle *line;
    383  1.1  christos   struct shuffle *line_end;
    384  1.1  christos   struct shuffle *pdr;
    385  1.1  christos   struct shuffle *pdr_end;
    386  1.1  christos   struct shuffle *sym;
    387  1.1  christos   struct shuffle *sym_end;
    388  1.1  christos   struct shuffle *opt;
    389  1.1  christos   struct shuffle *opt_end;
    390  1.1  christos   struct shuffle *aux;
    391  1.1  christos   struct shuffle *aux_end;
    392  1.1  christos   struct shuffle *ss;
    393  1.1  christos   struct shuffle *ss_end;
    394  1.1  christos   struct string_hash_entry *ss_hash;
    395  1.1  christos   struct string_hash_entry *ss_hash_end;
    396  1.1  christos   struct shuffle *fdr;
    397  1.1  christos   struct shuffle *fdr_end;
    398  1.1  christos   struct shuffle *rfd;
    399  1.1  christos   struct shuffle *rfd_end;
    400  1.1  christos   /* The size of the largest file shuffle.  */
    401  1.1  christos   unsigned long largest_file_shuffle;
    402  1.1  christos   /* An objalloc for debugging information.  */
    403  1.1  christos   struct objalloc *memory;
    404  1.1  christos };
    405  1.1  christos 
    406  1.1  christos /* Add a file entry to a shuffle list.  */
    407  1.1  christos 
    408  1.1  christos static bfd_boolean add_file_shuffle
    409  1.1  christos   PARAMS ((struct accumulate *, struct shuffle **, struct shuffle **,
    410  1.1  christos 	   bfd *, file_ptr, unsigned long));
    411  1.1  christos 
    412  1.1  christos static bfd_boolean
    413  1.1  christos add_file_shuffle (ainfo, head, tail, input_bfd, offset, size)
    414  1.1  christos      struct accumulate *ainfo;
    415  1.1  christos      struct shuffle **head;
    416  1.1  christos      struct shuffle **tail;
    417  1.1  christos      bfd *input_bfd;
    418  1.1  christos      file_ptr offset;
    419  1.1  christos      unsigned long size;
    420  1.1  christos {
    421  1.1  christos   struct shuffle *n;
    422  1.1  christos 
    423  1.1  christos   if (*tail != (struct shuffle *) NULL
    424  1.1  christos       && (*tail)->filep
    425  1.1  christos       && (*tail)->u.file.input_bfd == input_bfd
    426  1.1  christos       && (*tail)->u.file.offset + (*tail)->size == (unsigned long) offset)
    427  1.1  christos     {
    428  1.1  christos       /* Just merge this entry onto the existing one.  */
    429  1.1  christos       (*tail)->size += size;
    430  1.1  christos       if ((*tail)->size > ainfo->largest_file_shuffle)
    431  1.1  christos 	ainfo->largest_file_shuffle = (*tail)->size;
    432  1.1  christos       return TRUE;
    433  1.1  christos     }
    434  1.1  christos 
    435  1.1  christos   n = (struct shuffle *) objalloc_alloc (ainfo->memory,
    436  1.1  christos 					 sizeof (struct shuffle));
    437  1.1  christos   if (!n)
    438  1.1  christos     {
    439  1.1  christos       bfd_set_error (bfd_error_no_memory);
    440  1.1  christos       return FALSE;
    441  1.1  christos     }
    442  1.1  christos   n->next = NULL;
    443  1.1  christos   n->size = size;
    444  1.1  christos   n->filep = TRUE;
    445  1.1  christos   n->u.file.input_bfd = input_bfd;
    446  1.1  christos   n->u.file.offset = offset;
    447  1.1  christos   if (*head == (struct shuffle *) NULL)
    448  1.1  christos     *head = n;
    449  1.1  christos   if (*tail != (struct shuffle *) NULL)
    450  1.1  christos     (*tail)->next = n;
    451  1.1  christos   *tail = n;
    452  1.1  christos   if (size > ainfo->largest_file_shuffle)
    453  1.1  christos     ainfo->largest_file_shuffle = size;
    454  1.1  christos   return TRUE;
    455  1.1  christos }
    456  1.1  christos 
    457  1.1  christos /* Add a memory entry to a shuffle list.  */
    458  1.1  christos 
    459  1.1  christos static bfd_boolean add_memory_shuffle
    460  1.1  christos   PARAMS ((struct accumulate *, struct shuffle **head, struct shuffle **tail,
    461  1.1  christos 	   bfd_byte *data, unsigned long size));
    462  1.1  christos 
    463  1.1  christos static bfd_boolean
    464  1.1  christos add_memory_shuffle (ainfo, head, tail, data, size)
    465  1.1  christos      struct accumulate *ainfo;
    466  1.1  christos      struct shuffle **head;
    467  1.1  christos      struct shuffle **tail;
    468  1.1  christos      bfd_byte *data;
    469  1.1  christos      unsigned long size;
    470  1.1  christos {
    471  1.1  christos   struct shuffle *n;
    472  1.1  christos 
    473  1.1  christos   n = (struct shuffle *) objalloc_alloc (ainfo->memory,
    474  1.1  christos 					 sizeof (struct shuffle));
    475  1.1  christos   if (!n)
    476  1.1  christos     {
    477  1.1  christos       bfd_set_error (bfd_error_no_memory);
    478  1.1  christos       return FALSE;
    479  1.1  christos     }
    480  1.1  christos   n->next = NULL;
    481  1.1  christos   n->size = size;
    482  1.1  christos   n->filep = FALSE;
    483  1.1  christos   n->u.memory = (PTR) data;
    484  1.1  christos   if (*head == (struct shuffle *) NULL)
    485  1.1  christos     *head = n;
    486  1.1  christos   if (*tail != (struct shuffle *) NULL)
    487  1.1  christos     (*tail)->next = n;
    488  1.1  christos   *tail = n;
    489  1.1  christos   return TRUE;
    490  1.1  christos }
    491  1.1  christos 
    492  1.1  christos /* Initialize the FDR hash table.  This returns a handle which is then
    493  1.1  christos    passed in to bfd_ecoff_debug_accumulate, et. al.  */
    494  1.1  christos 
    495  1.1  christos PTR
    496  1.1  christos bfd_ecoff_debug_init (output_bfd, output_debug, output_swap, info)
    497  1.1  christos      bfd *output_bfd ATTRIBUTE_UNUSED;
    498  1.1  christos      struct ecoff_debug_info *output_debug;
    499  1.1  christos      const struct ecoff_debug_swap *output_swap ATTRIBUTE_UNUSED;
    500  1.1  christos      struct bfd_link_info *info;
    501  1.1  christos {
    502  1.1  christos   struct accumulate *ainfo;
    503  1.1  christos   bfd_size_type amt = sizeof (struct accumulate);
    504  1.1  christos 
    505  1.1  christos   ainfo = (struct accumulate *) bfd_malloc (amt);
    506  1.1  christos   if (!ainfo)
    507  1.1  christos     return NULL;
    508  1.1  christos   if (!bfd_hash_table_init_n (&ainfo->fdr_hash.table, string_hash_newfunc,
    509  1.1  christos 			      sizeof (struct string_hash_entry), 1021))
    510  1.1  christos     return NULL;
    511  1.1  christos 
    512  1.1  christos   ainfo->line = NULL;
    513  1.1  christos   ainfo->line_end = NULL;
    514  1.1  christos   ainfo->pdr = NULL;
    515  1.1  christos   ainfo->pdr_end = NULL;
    516  1.1  christos   ainfo->sym = NULL;
    517  1.1  christos   ainfo->sym_end = NULL;
    518  1.1  christos   ainfo->opt = NULL;
    519  1.1  christos   ainfo->opt_end = NULL;
    520  1.1  christos   ainfo->aux = NULL;
    521  1.1  christos   ainfo->aux_end = NULL;
    522  1.1  christos   ainfo->ss = NULL;
    523  1.1  christos   ainfo->ss_end = NULL;
    524  1.1  christos   ainfo->ss_hash = NULL;
    525  1.1  christos   ainfo->ss_hash_end = NULL;
    526  1.1  christos   ainfo->fdr = NULL;
    527  1.1  christos   ainfo->fdr_end = NULL;
    528  1.1  christos   ainfo->rfd = NULL;
    529  1.1  christos   ainfo->rfd_end = NULL;
    530  1.1  christos 
    531  1.1  christos   ainfo->largest_file_shuffle = 0;
    532  1.1  christos 
    533  1.1  christos   if (! info->relocatable)
    534  1.1  christos     {
    535  1.1  christos       if (!bfd_hash_table_init (&ainfo->str_hash.table, string_hash_newfunc,
    536  1.1  christos 				sizeof (struct string_hash_entry)))
    537  1.1  christos 	return NULL;
    538  1.1  christos 
    539  1.1  christos       /* The first entry in the string table is the empty string.  */
    540  1.1  christos       output_debug->symbolic_header.issMax = 1;
    541  1.1  christos     }
    542  1.1  christos 
    543  1.1  christos   ainfo->memory = objalloc_create ();
    544  1.1  christos   if (ainfo->memory == NULL)
    545  1.1  christos     {
    546  1.1  christos       bfd_set_error (bfd_error_no_memory);
    547  1.1  christos       return NULL;
    548  1.1  christos     }
    549  1.1  christos 
    550  1.1  christos   return (PTR) ainfo;
    551  1.1  christos }
    552  1.1  christos 
    553  1.1  christos /* Free the accumulated debugging information.  */
    554  1.1  christos 
    555  1.1  christos void
    556  1.1  christos bfd_ecoff_debug_free (handle, output_bfd, output_debug, output_swap, info)
    557  1.1  christos      PTR handle;
    558  1.1  christos      bfd *output_bfd ATTRIBUTE_UNUSED;
    559  1.1  christos      struct ecoff_debug_info *output_debug ATTRIBUTE_UNUSED;
    560  1.1  christos      const struct ecoff_debug_swap *output_swap ATTRIBUTE_UNUSED;
    561  1.1  christos      struct bfd_link_info *info;
    562  1.1  christos {
    563  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
    564  1.1  christos 
    565  1.1  christos   bfd_hash_table_free (&ainfo->fdr_hash.table);
    566  1.1  christos 
    567  1.1  christos   if (! info->relocatable)
    568  1.1  christos     bfd_hash_table_free (&ainfo->str_hash.table);
    569  1.1  christos 
    570  1.1  christos   objalloc_free (ainfo->memory);
    571  1.1  christos 
    572  1.1  christos   free (ainfo);
    573  1.1  christos }
    574  1.1  christos 
    575  1.1  christos /* Accumulate the debugging information from INPUT_BFD into
    576  1.1  christos    OUTPUT_BFD.  The INPUT_DEBUG argument points to some ECOFF
    577  1.1  christos    debugging information which we want to link into the information
    578  1.1  christos    pointed to by the OUTPUT_DEBUG argument.  OUTPUT_SWAP and
    579  1.1  christos    INPUT_SWAP point to the swapping information needed.  INFO is the
    580  1.1  christos    linker information structure.  HANDLE is returned by
    581  1.1  christos    bfd_ecoff_debug_init.  */
    582  1.1  christos 
    583  1.1  christos bfd_boolean
    584  1.1  christos bfd_ecoff_debug_accumulate (handle, output_bfd, output_debug, output_swap,
    585  1.1  christos 			    input_bfd, input_debug, input_swap,
    586  1.1  christos 			    info)
    587  1.1  christos      PTR handle;
    588  1.1  christos      bfd *output_bfd;
    589  1.1  christos      struct ecoff_debug_info *output_debug;
    590  1.1  christos      const struct ecoff_debug_swap *output_swap;
    591  1.1  christos      bfd *input_bfd;
    592  1.1  christos      struct ecoff_debug_info *input_debug;
    593  1.1  christos      const struct ecoff_debug_swap *input_swap;
    594  1.1  christos      struct bfd_link_info *info;
    595  1.1  christos {
    596  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
    597  1.1  christos   void (* const swap_sym_in) PARAMS ((bfd *, PTR, SYMR *))
    598  1.1  christos     = input_swap->swap_sym_in;
    599  1.1  christos   void (* const swap_rfd_in) PARAMS ((bfd *, PTR, RFDT *))
    600  1.1  christos     = input_swap->swap_rfd_in;
    601  1.1  christos   void (* const swap_sym_out) PARAMS ((bfd *, const SYMR *, PTR))
    602  1.1  christos     = output_swap->swap_sym_out;
    603  1.1  christos   void (* const swap_fdr_out) PARAMS ((bfd *, const FDR *, PTR))
    604  1.1  christos     = output_swap->swap_fdr_out;
    605  1.1  christos   void (* const swap_rfd_out) PARAMS ((bfd *, const RFDT *, PTR))
    606  1.1  christos     = output_swap->swap_rfd_out;
    607  1.1  christos   bfd_size_type external_pdr_size = output_swap->external_pdr_size;
    608  1.1  christos   bfd_size_type external_sym_size = output_swap->external_sym_size;
    609  1.1  christos   bfd_size_type external_opt_size = output_swap->external_opt_size;
    610  1.1  christos   bfd_size_type external_fdr_size = output_swap->external_fdr_size;
    611  1.1  christos   bfd_size_type external_rfd_size = output_swap->external_rfd_size;
    612  1.1  christos   HDRR * const output_symhdr = &output_debug->symbolic_header;
    613  1.1  christos   HDRR * const input_symhdr = &input_debug->symbolic_header;
    614  1.1  christos   bfd_vma section_adjust[scMax];
    615  1.1  christos   asection *sec;
    616  1.1  christos   bfd_byte *fdr_start;
    617  1.1  christos   bfd_byte *fdr_ptr;
    618  1.1  christos   bfd_byte *fdr_end;
    619  1.1  christos   bfd_size_type fdr_add;
    620  1.1  christos   unsigned int copied;
    621  1.1  christos   RFDT i;
    622  1.1  christos   unsigned long sz;
    623  1.1  christos   bfd_byte *rfd_out;
    624  1.1  christos   bfd_byte *rfd_in;
    625  1.1  christos   bfd_byte *rfd_end;
    626  1.1  christos   long newrfdbase = 0;
    627  1.1  christos   long oldrfdbase = 0;
    628  1.1  christos   bfd_byte *fdr_out;
    629  1.1  christos   bfd_size_type amt;
    630  1.1  christos 
    631  1.1  christos   /* Use section_adjust to hold the value to add to a symbol in a
    632  1.1  christos      particular section.  */
    633  1.1  christos   memset ((PTR) section_adjust, 0, sizeof section_adjust);
    634  1.1  christos 
    635  1.1  christos #define SET(name, indx) \
    636  1.1  christos   sec = bfd_get_section_by_name (input_bfd, name); \
    637  1.1  christos   if (sec != NULL) \
    638  1.1  christos     section_adjust[indx] = (sec->output_section->vma \
    639  1.1  christos 			    + sec->output_offset \
    640  1.1  christos 			    - sec->vma);
    641  1.1  christos 
    642  1.1  christos   SET (".text", scText);
    643  1.1  christos   SET (".data", scData);
    644  1.1  christos   SET (".bss", scBss);
    645  1.1  christos   SET (".sdata", scSData);
    646  1.1  christos   SET (".sbss", scSBss);
    647  1.1  christos   /* scRdata section may be either .rdata or .rodata.  */
    648  1.1  christos   SET (".rdata", scRData);
    649  1.1  christos   SET (".rodata", scRData);
    650  1.1  christos   SET (".init", scInit);
    651  1.1  christos   SET (".fini", scFini);
    652  1.1  christos   SET (".rconst", scRConst);
    653  1.1  christos 
    654  1.1  christos #undef SET
    655  1.1  christos 
    656  1.1  christos   /* Find all the debugging information based on the FDR's.  We need
    657  1.1  christos      to handle them whether they are swapped or not.  */
    658  1.1  christos   if (input_debug->fdr != (FDR *) NULL)
    659  1.1  christos     {
    660  1.1  christos       fdr_start = (bfd_byte *) input_debug->fdr;
    661  1.1  christos       fdr_add = sizeof (FDR);
    662  1.1  christos     }
    663  1.1  christos   else
    664  1.1  christos     {
    665  1.1  christos       fdr_start = (bfd_byte *) input_debug->external_fdr;
    666  1.1  christos       fdr_add = input_swap->external_fdr_size;
    667  1.1  christos     }
    668  1.1  christos   fdr_end = fdr_start + input_symhdr->ifdMax * fdr_add;
    669  1.1  christos 
    670  1.1  christos   amt = input_symhdr->ifdMax;
    671  1.1  christos   amt *= sizeof (RFDT);
    672  1.1  christos   input_debug->ifdmap = (RFDT *) bfd_alloc (input_bfd, amt);
    673  1.1  christos 
    674  1.1  christos   sz = (input_symhdr->crfd + input_symhdr->ifdMax) * external_rfd_size;
    675  1.1  christos   rfd_out = (bfd_byte *) objalloc_alloc (ainfo->memory, sz);
    676  1.1  christos   if (!input_debug->ifdmap || !rfd_out)
    677  1.1  christos     {
    678  1.1  christos       bfd_set_error (bfd_error_no_memory);
    679  1.1  christos       return FALSE;
    680  1.1  christos     }
    681  1.1  christos   if (!add_memory_shuffle (ainfo, &ainfo->rfd, &ainfo->rfd_end, rfd_out, sz))
    682  1.1  christos     return FALSE;
    683  1.1  christos 
    684  1.1  christos   copied = 0;
    685  1.1  christos 
    686  1.1  christos   /* Look through the FDR's to see which ones we are going to include
    687  1.1  christos      in the final output.  We do not want duplicate FDR information
    688  1.1  christos      for header files, because ECOFF debugging is often very large.
    689  1.1  christos      When we find an FDR with no line information which can be merged,
    690  1.1  christos      we look it up in a hash table to ensure that we only include it
    691  1.1  christos      once.  We keep a table mapping FDR numbers to the final number
    692  1.1  christos      they get with the BFD, so that we can refer to it when we write
    693  1.1  christos      out the external symbols.  */
    694  1.1  christos   for (fdr_ptr = fdr_start, i = 0;
    695  1.1  christos        fdr_ptr < fdr_end;
    696  1.1  christos        fdr_ptr += fdr_add, i++, rfd_out += external_rfd_size)
    697  1.1  christos     {
    698  1.1  christos       FDR fdr;
    699  1.1  christos 
    700  1.1  christos       if (input_debug->fdr != (FDR *) NULL)
    701  1.1  christos 	fdr = *(FDR *) fdr_ptr;
    702  1.1  christos       else
    703  1.1  christos 	(*input_swap->swap_fdr_in) (input_bfd, (PTR) fdr_ptr, &fdr);
    704  1.1  christos 
    705  1.1  christos       /* See if this FDR can be merged with an existing one.  */
    706  1.1  christos       if (fdr.cbLine == 0 && fdr.rss != -1 && fdr.fMerge)
    707  1.1  christos 	{
    708  1.1  christos 	  const char *name;
    709  1.1  christos 	  char *lookup;
    710  1.1  christos 	  struct string_hash_entry *fh;
    711  1.1  christos 
    712  1.1  christos 	  /* We look up a string formed from the file name and the
    713  1.1  christos 	     number of symbols and aux entries.  Sometimes an include
    714  1.1  christos 	     file will conditionally define a typedef or something
    715  1.1  christos 	     based on the order of include files.  Using the number of
    716  1.1  christos 	     symbols and aux entries as a hash reduces the chance that
    717  1.1  christos 	     we will merge symbol information that should not be
    718  1.1  christos 	     merged.  */
    719  1.1  christos 	  name = input_debug->ss + fdr.issBase + fdr.rss;
    720  1.1  christos 
    721  1.1  christos 	  lookup = (char *) bfd_malloc ((bfd_size_type) strlen (name) + 20);
    722  1.1  christos 	  if (lookup == NULL)
    723  1.1  christos 	    return FALSE;
    724  1.1  christos 	  sprintf (lookup, "%s %lx %lx", name, (unsigned long) fdr.csym,
    725  1.1  christos 		   (unsigned long) fdr.caux);
    726  1.1  christos 
    727  1.1  christos 	  fh = string_hash_lookup (&ainfo->fdr_hash, lookup, TRUE, TRUE);
    728  1.1  christos 	  free (lookup);
    729  1.1  christos 	  if (fh == (struct string_hash_entry *) NULL)
    730  1.1  christos 	    return FALSE;
    731  1.1  christos 
    732  1.1  christos 	  if (fh->val != -1)
    733  1.1  christos 	    {
    734  1.1  christos 	      input_debug->ifdmap[i] = fh->val;
    735  1.1  christos 	      (*swap_rfd_out) (output_bfd, input_debug->ifdmap + i,
    736  1.1  christos 			       (PTR) rfd_out);
    737  1.1  christos 
    738  1.1  christos 	      /* Don't copy this FDR.  */
    739  1.1  christos 	      continue;
    740  1.1  christos 	    }
    741  1.1  christos 
    742  1.1  christos 	  fh->val = output_symhdr->ifdMax + copied;
    743  1.1  christos 	}
    744  1.1  christos 
    745  1.1  christos       input_debug->ifdmap[i] = output_symhdr->ifdMax + copied;
    746  1.1  christos       (*swap_rfd_out) (output_bfd, input_debug->ifdmap + i, (PTR) rfd_out);
    747  1.1  christos       ++copied;
    748  1.1  christos     }
    749  1.1  christos 
    750  1.1  christos   newrfdbase = output_symhdr->crfd;
    751  1.1  christos   output_symhdr->crfd += input_symhdr->ifdMax;
    752  1.1  christos 
    753  1.1  christos   /* Copy over any existing RFD's.  RFD's are only created by the
    754  1.1  christos      linker, so this will only happen for input files which are the
    755  1.1  christos      result of a partial link.  */
    756  1.1  christos   rfd_in = (bfd_byte *) input_debug->external_rfd;
    757  1.1  christos   rfd_end = rfd_in + input_symhdr->crfd * input_swap->external_rfd_size;
    758  1.1  christos   for (;
    759  1.1  christos        rfd_in < rfd_end;
    760  1.1  christos        rfd_in += input_swap->external_rfd_size)
    761  1.1  christos     {
    762  1.1  christos       RFDT rfd;
    763  1.1  christos 
    764  1.1  christos       (*swap_rfd_in) (input_bfd, (PTR) rfd_in, &rfd);
    765  1.1  christos       BFD_ASSERT (rfd >= 0 && rfd < input_symhdr->ifdMax);
    766  1.1  christos       rfd = input_debug->ifdmap[rfd];
    767  1.1  christos       (*swap_rfd_out) (output_bfd, &rfd, (PTR) rfd_out);
    768  1.1  christos       rfd_out += external_rfd_size;
    769  1.1  christos     }
    770  1.1  christos 
    771  1.1  christos   oldrfdbase = output_symhdr->crfd;
    772  1.1  christos   output_symhdr->crfd += input_symhdr->crfd;
    773  1.1  christos 
    774  1.1  christos   /* Look through the FDR's and copy over all associated debugging
    775  1.1  christos      information.  */
    776  1.1  christos   sz = copied * external_fdr_size;
    777  1.1  christos   fdr_out = (bfd_byte *) objalloc_alloc (ainfo->memory, sz);
    778  1.1  christos   if (!fdr_out)
    779  1.1  christos     {
    780  1.1  christos       bfd_set_error (bfd_error_no_memory);
    781  1.1  christos       return FALSE;
    782  1.1  christos     }
    783  1.1  christos   if (!add_memory_shuffle (ainfo, &ainfo->fdr, &ainfo->fdr_end, fdr_out, sz))
    784  1.1  christos     return FALSE;
    785  1.1  christos   for (fdr_ptr = fdr_start, i = 0;
    786  1.1  christos        fdr_ptr < fdr_end;
    787  1.1  christos        fdr_ptr += fdr_add, i++)
    788  1.1  christos     {
    789  1.1  christos       FDR fdr;
    790  1.1  christos       bfd_byte *sym_out;
    791  1.1  christos       bfd_byte *lraw_src;
    792  1.1  christos       bfd_byte *lraw_end;
    793  1.1  christos       bfd_boolean fgotfilename;
    794  1.1  christos 
    795  1.1  christos       if (input_debug->ifdmap[i] < output_symhdr->ifdMax)
    796  1.1  christos 	{
    797  1.1  christos 	  /* We are not copying this FDR.  */
    798  1.1  christos 	  continue;
    799  1.1  christos 	}
    800  1.1  christos 
    801  1.1  christos       if (input_debug->fdr != (FDR *) NULL)
    802  1.1  christos 	fdr = *(FDR *) fdr_ptr;
    803  1.1  christos       else
    804  1.1  christos 	(*input_swap->swap_fdr_in) (input_bfd, (PTR) fdr_ptr, &fdr);
    805  1.1  christos 
    806  1.1  christos       /* FIXME: It is conceivable that this FDR points to the .init or
    807  1.1  christos 	 .fini section, in which case this will not do the right
    808  1.1  christos 	 thing.  */
    809  1.1  christos       fdr.adr += section_adjust[scText];
    810  1.1  christos 
    811  1.1  christos       /* Swap in the local symbols, adjust their values, and swap them
    812  1.1  christos 	 out again.  */
    813  1.1  christos       fgotfilename = FALSE;
    814  1.1  christos       sz = fdr.csym * external_sym_size;
    815  1.1  christos       sym_out = (bfd_byte *) objalloc_alloc (ainfo->memory, sz);
    816  1.1  christos       if (!sym_out)
    817  1.1  christos 	{
    818  1.1  christos 	  bfd_set_error (bfd_error_no_memory);
    819  1.1  christos 	  return FALSE;
    820  1.1  christos 	}
    821  1.1  christos       if (!add_memory_shuffle (ainfo, &ainfo->sym, &ainfo->sym_end, sym_out,
    822  1.1  christos 			       sz))
    823  1.1  christos 	return FALSE;
    824  1.1  christos       lraw_src = ((bfd_byte *) input_debug->external_sym
    825  1.1  christos 		  + fdr.isymBase * input_swap->external_sym_size);
    826  1.1  christos       lraw_end = lraw_src + fdr.csym * input_swap->external_sym_size;
    827  1.1  christos       for (;  lraw_src < lraw_end;  lraw_src += input_swap->external_sym_size)
    828  1.1  christos 	{
    829  1.1  christos 	  SYMR internal_sym;
    830  1.1  christos 
    831  1.1  christos 	  (*swap_sym_in) (input_bfd, (PTR) lraw_src, &internal_sym);
    832  1.1  christos 
    833  1.1  christos 	  BFD_ASSERT (internal_sym.sc != scCommon
    834  1.1  christos 		      && internal_sym.sc != scSCommon);
    835  1.1  christos 
    836  1.1  christos 	  /* Adjust the symbol value if appropriate.  */
    837  1.1  christos 	  switch (internal_sym.st)
    838  1.1  christos 	    {
    839  1.1  christos 	    case stNil:
    840  1.1  christos 	      if (ECOFF_IS_STAB (&internal_sym))
    841  1.1  christos 		break;
    842  1.1  christos 	      /* Fall through.  */
    843  1.1  christos 	    case stGlobal:
    844  1.1  christos 	    case stStatic:
    845  1.1  christos 	    case stLabel:
    846  1.1  christos 	    case stProc:
    847  1.1  christos 	    case stStaticProc:
    848  1.1  christos 	      internal_sym.value += section_adjust[internal_sym.sc];
    849  1.1  christos 	      break;
    850  1.1  christos 
    851  1.1  christos 	    default:
    852  1.1  christos 	      break;
    853  1.1  christos 	    }
    854  1.1  christos 
    855  1.1  christos 	  /* If we are doing a final link, we hash all the strings in
    856  1.1  christos 	     the local symbol table together.  This reduces the amount
    857  1.1  christos 	     of space required by debugging information.  We don't do
    858  1.1  christos 	     this when performing a relocatable link because it would
    859  1.1  christos 	     prevent us from easily merging different FDR's.  */
    860  1.1  christos 	  if (! info->relocatable)
    861  1.1  christos 	    {
    862  1.1  christos 	      bfd_boolean ffilename;
    863  1.1  christos 	      const char *name;
    864  1.1  christos 
    865  1.1  christos 	      if (! fgotfilename && internal_sym.iss == fdr.rss)
    866  1.1  christos 		ffilename = TRUE;
    867  1.1  christos 	      else
    868  1.1  christos 		ffilename = FALSE;
    869  1.1  christos 
    870  1.1  christos 	      /* Hash the name into the string table.  */
    871  1.1  christos 	      name = input_debug->ss + fdr.issBase + internal_sym.iss;
    872  1.1  christos 	      if (*name == '\0')
    873  1.1  christos 		internal_sym.iss = 0;
    874  1.1  christos 	      else
    875  1.1  christos 		{
    876  1.1  christos 		  struct string_hash_entry *sh;
    877  1.1  christos 
    878  1.1  christos 		  sh = string_hash_lookup (&ainfo->str_hash, name, TRUE, TRUE);
    879  1.1  christos 		  if (sh == (struct string_hash_entry *) NULL)
    880  1.1  christos 		    return FALSE;
    881  1.1  christos 		  if (sh->val == -1)
    882  1.1  christos 		    {
    883  1.1  christos 		      sh->val = output_symhdr->issMax;
    884  1.1  christos 		      output_symhdr->issMax += strlen (name) + 1;
    885  1.1  christos 		      if (ainfo->ss_hash == (struct string_hash_entry *) NULL)
    886  1.1  christos 			ainfo->ss_hash = sh;
    887  1.1  christos 		      if (ainfo->ss_hash_end
    888  1.1  christos 			  != (struct string_hash_entry *) NULL)
    889  1.1  christos 			ainfo->ss_hash_end->next = sh;
    890  1.1  christos 		      ainfo->ss_hash_end = sh;
    891  1.1  christos 		    }
    892  1.1  christos 		  internal_sym.iss = sh->val;
    893  1.1  christos 		}
    894  1.1  christos 
    895  1.1  christos 	      if (ffilename)
    896  1.1  christos 		{
    897  1.1  christos 		  fdr.rss = internal_sym.iss;
    898  1.1  christos 		  fgotfilename = TRUE;
    899  1.1  christos 		}
    900  1.1  christos 	    }
    901  1.1  christos 
    902  1.1  christos 	  (*swap_sym_out) (output_bfd, &internal_sym, sym_out);
    903  1.1  christos 	  sym_out += external_sym_size;
    904  1.1  christos 	}
    905  1.1  christos 
    906  1.1  christos       fdr.isymBase = output_symhdr->isymMax;
    907  1.1  christos       output_symhdr->isymMax += fdr.csym;
    908  1.1  christos 
    909  1.1  christos       /* Copy the information that does not need swapping.  */
    910  1.1  christos 
    911  1.1  christos       /* FIXME: If we are relaxing, we need to adjust the line
    912  1.1  christos 	 numbers.  Frankly, forget it.  Anybody using stabs debugging
    913  1.1  christos 	 information will not use this line number information, and
    914  1.1  christos 	 stabs are adjusted correctly.  */
    915  1.1  christos       if (fdr.cbLine > 0)
    916  1.1  christos 	{
    917  1.1  christos 	  file_ptr pos = input_symhdr->cbLineOffset + fdr.cbLineOffset;
    918  1.1  christos 	  if (!add_file_shuffle (ainfo, &ainfo->line, &ainfo->line_end,
    919  1.1  christos 				 input_bfd, pos, (unsigned long) fdr.cbLine))
    920  1.1  christos 	    return FALSE;
    921  1.1  christos 	  fdr.ilineBase = output_symhdr->ilineMax;
    922  1.1  christos 	  fdr.cbLineOffset = output_symhdr->cbLine;
    923  1.1  christos 	  output_symhdr->ilineMax += fdr.cline;
    924  1.1  christos 	  output_symhdr->cbLine += fdr.cbLine;
    925  1.1  christos 	}
    926  1.1  christos       if (fdr.caux > 0)
    927  1.1  christos 	{
    928  1.1  christos 	  file_ptr pos = (input_symhdr->cbAuxOffset
    929  1.1  christos 			  + fdr.iauxBase * sizeof (union aux_ext));
    930  1.1  christos 	  if (!add_file_shuffle (ainfo, &ainfo->aux, &ainfo->aux_end,
    931  1.1  christos 				 input_bfd, pos,
    932  1.1  christos 				 fdr.caux * sizeof (union aux_ext)))
    933  1.1  christos 	    return FALSE;
    934  1.1  christos 	  fdr.iauxBase = output_symhdr->iauxMax;
    935  1.1  christos 	  output_symhdr->iauxMax += fdr.caux;
    936  1.1  christos 	}
    937  1.1  christos       if (! info->relocatable)
    938  1.1  christos 	{
    939  1.1  christos 
    940  1.1  christos 	  /* When are are hashing strings, we lie about the number of
    941  1.1  christos 	     strings attached to each FDR.  We need to set cbSs
    942  1.1  christos 	     because some versions of dbx apparently use it to decide
    943  1.1  christos 	     how much of the string table to read in.  */
    944  1.1  christos 	  fdr.issBase = 0;
    945  1.1  christos 	  fdr.cbSs = output_symhdr->issMax;
    946  1.1  christos 	}
    947  1.1  christos       else if (fdr.cbSs > 0)
    948  1.1  christos 	{
    949  1.1  christos 	  file_ptr pos = input_symhdr->cbSsOffset + fdr.issBase;
    950  1.1  christos 	  if (!add_file_shuffle (ainfo, &ainfo->ss, &ainfo->ss_end,
    951  1.1  christos 				 input_bfd, pos, (unsigned long) fdr.cbSs))
    952  1.1  christos 	    return FALSE;
    953  1.1  christos 	  fdr.issBase = output_symhdr->issMax;
    954  1.1  christos 	  output_symhdr->issMax += fdr.cbSs;
    955  1.1  christos 	}
    956  1.1  christos 
    957  1.1  christos       if (output_bfd->xvec->header_byteorder
    958  1.1  christos 	  == input_bfd->xvec->header_byteorder)
    959  1.1  christos 	{
    960  1.1  christos 	  /* The two BFD's have the same endianness, and we don't have
    961  1.1  christos 	     to adjust the PDR addresses, so simply copying the
    962  1.1  christos 	     information will suffice.  */
    963  1.1  christos 	  BFD_ASSERT (external_pdr_size == input_swap->external_pdr_size);
    964  1.1  christos 	  if (fdr.cpd > 0)
    965  1.1  christos 	    {
    966  1.1  christos 	      file_ptr pos = (input_symhdr->cbPdOffset
    967  1.1  christos 			      + fdr.ipdFirst * external_pdr_size);
    968  1.1  christos 	      unsigned long size = fdr.cpd * external_pdr_size;
    969  1.1  christos 	      if (!add_file_shuffle (ainfo, &ainfo->pdr, &ainfo->pdr_end,
    970  1.1  christos 				     input_bfd, pos, size))
    971  1.1  christos 		return FALSE;
    972  1.1  christos 	    }
    973  1.1  christos 	  BFD_ASSERT (external_opt_size == input_swap->external_opt_size);
    974  1.1  christos 	  if (fdr.copt > 0)
    975  1.1  christos 	    {
    976  1.1  christos 	      file_ptr pos = (input_symhdr->cbOptOffset
    977  1.1  christos 			      + fdr.ioptBase * external_opt_size);
    978  1.1  christos 	      unsigned long size = fdr.copt * external_opt_size;
    979  1.1  christos 	      if (!add_file_shuffle (ainfo, &ainfo->opt, &ainfo->opt_end,
    980  1.1  christos 				     input_bfd, pos, size))
    981  1.1  christos 		return FALSE;
    982  1.1  christos 	    }
    983  1.1  christos 	}
    984  1.1  christos       else
    985  1.1  christos 	{
    986  1.1  christos 	  bfd_size_type outsz, insz;
    987  1.1  christos 	  bfd_byte *in;
    988  1.1  christos 	  bfd_byte *end;
    989  1.1  christos 	  bfd_byte *out;
    990  1.1  christos 
    991  1.1  christos 	  /* The two BFD's have different endianness, so we must swap
    992  1.1  christos 	     everything in and out.  This code would always work, but
    993  1.1  christos 	     it would be unnecessarily slow in the normal case.  */
    994  1.1  christos 	  outsz = external_pdr_size;
    995  1.1  christos 	  insz = input_swap->external_pdr_size;
    996  1.1  christos 	  in = ((bfd_byte *) input_debug->external_pdr
    997  1.1  christos 		+ fdr.ipdFirst * insz);
    998  1.1  christos 	  end = in + fdr.cpd * insz;
    999  1.1  christos 	  sz = fdr.cpd * outsz;
   1000  1.1  christos 	  out = (bfd_byte *) objalloc_alloc (ainfo->memory, sz);
   1001  1.1  christos 	  if (!out)
   1002  1.1  christos 	    {
   1003  1.1  christos 	      bfd_set_error (bfd_error_no_memory);
   1004  1.1  christos 	      return FALSE;
   1005  1.1  christos 	    }
   1006  1.1  christos 	  if (!add_memory_shuffle (ainfo, &ainfo->pdr, &ainfo->pdr_end, out,
   1007  1.1  christos 				   sz))
   1008  1.1  christos 	    return FALSE;
   1009  1.1  christos 	  for (; in < end; in += insz, out += outsz)
   1010  1.1  christos 	    {
   1011  1.1  christos 	      PDR pdr;
   1012  1.1  christos 
   1013  1.1  christos 	      (*input_swap->swap_pdr_in) (input_bfd, (PTR) in, &pdr);
   1014  1.1  christos 	      (*output_swap->swap_pdr_out) (output_bfd, &pdr, (PTR) out);
   1015  1.1  christos 	    }
   1016  1.1  christos 
   1017  1.1  christos 	  /* Swap over the optimization information.  */
   1018  1.1  christos 	  outsz = external_opt_size;
   1019  1.1  christos 	  insz = input_swap->external_opt_size;
   1020  1.1  christos 	  in = ((bfd_byte *) input_debug->external_opt
   1021  1.1  christos 		+ fdr.ioptBase * insz);
   1022  1.1  christos 	  end = in + fdr.copt * insz;
   1023  1.1  christos 	  sz = fdr.copt * outsz;
   1024  1.1  christos 	  out = (bfd_byte *) objalloc_alloc (ainfo->memory, sz);
   1025  1.1  christos 	  if (!out)
   1026  1.1  christos 	    {
   1027  1.1  christos 	      bfd_set_error (bfd_error_no_memory);
   1028  1.1  christos 	      return FALSE;
   1029  1.1  christos 	    }
   1030  1.1  christos 	  if (!add_memory_shuffle (ainfo, &ainfo->opt, &ainfo->opt_end, out,
   1031  1.1  christos 				   sz))
   1032  1.1  christos 	    return FALSE;
   1033  1.1  christos 	  for (; in < end; in += insz, out += outsz)
   1034  1.1  christos 	    {
   1035  1.1  christos 	      OPTR opt;
   1036  1.1  christos 
   1037  1.1  christos 	      (*input_swap->swap_opt_in) (input_bfd, (PTR) in, &opt);
   1038  1.1  christos 	      (*output_swap->swap_opt_out) (output_bfd, &opt, (PTR) out);
   1039  1.1  christos 	    }
   1040  1.1  christos 	}
   1041  1.1  christos 
   1042  1.1  christos       fdr.ipdFirst = output_symhdr->ipdMax;
   1043  1.1  christos       output_symhdr->ipdMax += fdr.cpd;
   1044  1.1  christos       fdr.ioptBase = output_symhdr->ioptMax;
   1045  1.1  christos       output_symhdr->ioptMax += fdr.copt;
   1046  1.1  christos 
   1047  1.1  christos       if (fdr.crfd <= 0)
   1048  1.1  christos 	{
   1049  1.1  christos 	  /* Point this FDR at the table of RFD's we created.  */
   1050  1.1  christos 	  fdr.rfdBase = newrfdbase;
   1051  1.1  christos 	  fdr.crfd = input_symhdr->ifdMax;
   1052  1.1  christos 	}
   1053  1.1  christos       else
   1054  1.1  christos 	{
   1055  1.1  christos 	  /* Point this FDR at the remapped RFD's.  */
   1056  1.1  christos 	  fdr.rfdBase += oldrfdbase;
   1057  1.1  christos 	}
   1058  1.1  christos 
   1059  1.1  christos       (*swap_fdr_out) (output_bfd, &fdr, fdr_out);
   1060  1.1  christos       fdr_out += external_fdr_size;
   1061  1.1  christos       ++output_symhdr->ifdMax;
   1062  1.1  christos     }
   1063  1.1  christos 
   1064  1.1  christos   return TRUE;
   1065  1.1  christos }
   1066  1.1  christos 
   1067  1.1  christos /* Add a string to the debugging information we are accumulating.
   1068  1.1  christos    Return the offset from the fdr string base.  */
   1069  1.1  christos 
   1070  1.1  christos static long ecoff_add_string
   1071  1.1  christos   PARAMS ((struct accumulate *, struct bfd_link_info *,
   1072  1.1  christos 	   struct ecoff_debug_info *, FDR *fdr, const char *string));
   1073  1.1  christos 
   1074  1.1  christos static long
   1075  1.1  christos ecoff_add_string (ainfo, info, debug, fdr, string)
   1076  1.1  christos      struct accumulate *ainfo;
   1077  1.1  christos      struct bfd_link_info *info;
   1078  1.1  christos      struct ecoff_debug_info *debug;
   1079  1.1  christos      FDR *fdr;
   1080  1.1  christos      const char *string;
   1081  1.1  christos {
   1082  1.1  christos   HDRR *symhdr;
   1083  1.1  christos   size_t len;
   1084  1.1  christos   bfd_size_type ret;
   1085  1.1  christos 
   1086  1.1  christos   symhdr = &debug->symbolic_header;
   1087  1.1  christos   len = strlen (string);
   1088  1.1  christos   if (info->relocatable)
   1089  1.1  christos     {
   1090  1.1  christos       if (!add_memory_shuffle (ainfo, &ainfo->ss, &ainfo->ss_end,
   1091  1.1  christos                                (bfd_byte *) string, len + 1))
   1092  1.1  christos 	return -1;
   1093  1.1  christos       ret = symhdr->issMax;
   1094  1.1  christos       symhdr->issMax += len + 1;
   1095  1.1  christos       fdr->cbSs += len + 1;
   1096  1.1  christos     }
   1097  1.1  christos   else
   1098  1.1  christos     {
   1099  1.1  christos       struct string_hash_entry *sh;
   1100  1.1  christos 
   1101  1.1  christos       sh = string_hash_lookup (&ainfo->str_hash, string, TRUE, TRUE);
   1102  1.1  christos       if (sh == (struct string_hash_entry *) NULL)
   1103  1.1  christos 	return -1;
   1104  1.1  christos       if (sh->val == -1)
   1105  1.1  christos 	{
   1106  1.1  christos 	  sh->val = symhdr->issMax;
   1107  1.1  christos 	  symhdr->issMax += len + 1;
   1108  1.1  christos 	  if (ainfo->ss_hash == (struct string_hash_entry *) NULL)
   1109  1.1  christos 	    ainfo->ss_hash = sh;
   1110  1.1  christos 	  if (ainfo->ss_hash_end
   1111  1.1  christos 	      != (struct string_hash_entry *) NULL)
   1112  1.1  christos 	    ainfo->ss_hash_end->next = sh;
   1113  1.1  christos 	  ainfo->ss_hash_end = sh;
   1114  1.1  christos 	}
   1115  1.1  christos       ret = sh->val;
   1116  1.1  christos     }
   1117  1.1  christos 
   1118  1.1  christos   return ret;
   1119  1.1  christos }
   1120  1.1  christos 
   1121  1.1  christos /* Add debugging information from a non-ECOFF file.  */
   1122  1.1  christos 
   1123  1.1  christos bfd_boolean
   1124  1.1  christos bfd_ecoff_debug_accumulate_other (handle, output_bfd, output_debug,
   1125  1.1  christos 				  output_swap, input_bfd, info)
   1126  1.1  christos      PTR handle;
   1127  1.1  christos      bfd *output_bfd;
   1128  1.1  christos      struct ecoff_debug_info *output_debug;
   1129  1.1  christos      const struct ecoff_debug_swap *output_swap;
   1130  1.1  christos      bfd *input_bfd;
   1131  1.1  christos      struct bfd_link_info *info;
   1132  1.1  christos {
   1133  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
   1134  1.1  christos   void (* const swap_sym_out) PARAMS ((bfd *, const SYMR *, PTR))
   1135  1.1  christos     = output_swap->swap_sym_out;
   1136  1.1  christos   HDRR *output_symhdr = &output_debug->symbolic_header;
   1137  1.1  christos   FDR fdr;
   1138  1.1  christos   asection *sec;
   1139  1.1  christos   asymbol **symbols;
   1140  1.1  christos   asymbol **sym_ptr;
   1141  1.1  christos   asymbol **sym_end;
   1142  1.1  christos   long symsize;
   1143  1.1  christos   long symcount;
   1144  1.1  christos   PTR external_fdr;
   1145  1.1  christos 
   1146  1.1  christos   memset ((PTR) &fdr, 0, sizeof fdr);
   1147  1.1  christos 
   1148  1.1  christos   sec = bfd_get_section_by_name (input_bfd, ".text");
   1149  1.1  christos   if (sec != NULL)
   1150  1.1  christos     fdr.adr = sec->output_section->vma + sec->output_offset;
   1151  1.1  christos   else
   1152  1.1  christos     {
   1153  1.1  christos       /* FIXME: What about .init or .fini?  */
   1154  1.1  christos       fdr.adr = 0;
   1155  1.1  christos     }
   1156  1.1  christos 
   1157  1.1  christos   fdr.issBase = output_symhdr->issMax;
   1158  1.1  christos   fdr.cbSs = 0;
   1159  1.1  christos   fdr.rss = ecoff_add_string (ainfo, info, output_debug, &fdr,
   1160  1.1  christos 			      input_bfd->filename);
   1161  1.1  christos   if (fdr.rss == -1)
   1162  1.1  christos     return FALSE;
   1163  1.1  christos   fdr.isymBase = output_symhdr->isymMax;
   1164  1.1  christos 
   1165  1.1  christos   /* Get the local symbols from the input BFD.  */
   1166  1.1  christos   symsize = bfd_get_symtab_upper_bound (input_bfd);
   1167  1.1  christos   if (symsize < 0)
   1168  1.1  christos     return FALSE;
   1169  1.1  christos   symbols = (asymbol **) bfd_alloc (output_bfd, (bfd_size_type) symsize);
   1170  1.1  christos   if (symbols == (asymbol **) NULL)
   1171  1.1  christos     return FALSE;
   1172  1.1  christos   symcount = bfd_canonicalize_symtab (input_bfd, symbols);
   1173  1.1  christos   if (symcount < 0)
   1174  1.1  christos     return FALSE;
   1175  1.1  christos   sym_end = symbols + symcount;
   1176  1.1  christos 
   1177  1.1  christos   /* Handle the local symbols.  Any external symbols are handled
   1178  1.1  christos      separately.  */
   1179  1.1  christos   fdr.csym = 0;
   1180  1.1  christos   for (sym_ptr = symbols; sym_ptr != sym_end; sym_ptr++)
   1181  1.1  christos     {
   1182  1.1  christos       SYMR internal_sym;
   1183  1.1  christos       PTR external_sym;
   1184  1.1  christos 
   1185  1.1  christos       if (((*sym_ptr)->flags & BSF_EXPORT) != 0)
   1186  1.1  christos 	continue;
   1187  1.1  christos       memset ((PTR) &internal_sym, 0, sizeof internal_sym);
   1188  1.1  christos       internal_sym.iss = ecoff_add_string (ainfo, info, output_debug, &fdr,
   1189  1.1  christos 					   (*sym_ptr)->name);
   1190  1.1  christos 
   1191  1.1  christos       if (internal_sym.iss == -1)
   1192  1.1  christos 	return FALSE;
   1193  1.1  christos       if (bfd_is_com_section ((*sym_ptr)->section)
   1194  1.1  christos 	  || bfd_is_und_section ((*sym_ptr)->section))
   1195  1.1  christos 	internal_sym.value = (*sym_ptr)->value;
   1196  1.1  christos       else
   1197  1.1  christos 	internal_sym.value = ((*sym_ptr)->value
   1198  1.1  christos 			      + (*sym_ptr)->section->output_offset
   1199  1.1  christos 			      + (*sym_ptr)->section->output_section->vma);
   1200  1.1  christos       internal_sym.st = stNil;
   1201  1.1  christos       internal_sym.sc = scUndefined;
   1202  1.1  christos       internal_sym.index = indexNil;
   1203  1.1  christos 
   1204  1.1  christos       external_sym = (PTR) objalloc_alloc (ainfo->memory,
   1205  1.1  christos 					   output_swap->external_sym_size);
   1206  1.1  christos       if (!external_sym)
   1207  1.1  christos 	{
   1208  1.1  christos 	  bfd_set_error (bfd_error_no_memory);
   1209  1.1  christos 	  return FALSE;
   1210  1.1  christos 	}
   1211  1.1  christos       (*swap_sym_out) (output_bfd, &internal_sym, external_sym);
   1212  1.1  christos       add_memory_shuffle (ainfo, &ainfo->sym, &ainfo->sym_end,
   1213  1.1  christos 			  (bfd_byte *) external_sym,
   1214  1.1  christos 			  (unsigned long) output_swap->external_sym_size);
   1215  1.1  christos       ++fdr.csym;
   1216  1.1  christos       ++output_symhdr->isymMax;
   1217  1.1  christos     }
   1218  1.1  christos 
   1219  1.1  christos   bfd_release (output_bfd, (PTR) symbols);
   1220  1.1  christos 
   1221  1.1  christos   /* Leave everything else in the FDR zeroed out.  This will cause
   1222  1.1  christos      the lang field to be langC.  The fBigendian field will
   1223  1.1  christos      indicate little endian format, but it doesn't matter because
   1224  1.1  christos      it only applies to aux fields and there are none.  */
   1225  1.1  christos   external_fdr = (PTR) objalloc_alloc (ainfo->memory,
   1226  1.1  christos 				       output_swap->external_fdr_size);
   1227  1.1  christos   if (!external_fdr)
   1228  1.1  christos     {
   1229  1.1  christos       bfd_set_error (bfd_error_no_memory);
   1230  1.1  christos       return FALSE;
   1231  1.1  christos     }
   1232  1.1  christos   (*output_swap->swap_fdr_out) (output_bfd, &fdr, external_fdr);
   1233  1.1  christos   add_memory_shuffle (ainfo, &ainfo->fdr, &ainfo->fdr_end,
   1234  1.1  christos 		      (bfd_byte *) external_fdr,
   1235  1.1  christos 		      (unsigned long) output_swap->external_fdr_size);
   1236  1.1  christos 
   1237  1.1  christos   ++output_symhdr->ifdMax;
   1238  1.1  christos 
   1239  1.1  christos   return TRUE;
   1240  1.1  christos }
   1241  1.1  christos 
   1242  1.1  christos /* Set up ECOFF debugging information for the external symbols.
   1243  1.1  christos    FIXME: This is done using a memory buffer, but it should be
   1244  1.1  christos    probably be changed to use a shuffle structure.  The assembler uses
   1245  1.1  christos    this interface, so that must be changed to do something else.  */
   1246  1.1  christos 
   1247  1.1  christos bfd_boolean
   1248  1.1  christos bfd_ecoff_debug_externals (abfd, debug, swap, relocatable, get_extr,
   1249  1.1  christos 			   set_index)
   1250  1.1  christos      bfd *abfd;
   1251  1.1  christos      struct ecoff_debug_info *debug;
   1252  1.1  christos      const struct ecoff_debug_swap *swap;
   1253  1.1  christos      bfd_boolean relocatable;
   1254  1.1  christos      bfd_boolean (*get_extr) PARAMS ((asymbol *, EXTR *));
   1255  1.1  christos      void (*set_index) PARAMS ((asymbol *, bfd_size_type));
   1256  1.1  christos {
   1257  1.1  christos   HDRR * const symhdr = &debug->symbolic_header;
   1258  1.1  christos   asymbol **sym_ptr_ptr;
   1259  1.1  christos   size_t c;
   1260  1.1  christos 
   1261  1.1  christos   sym_ptr_ptr = bfd_get_outsymbols (abfd);
   1262  1.1  christos   if (sym_ptr_ptr == NULL)
   1263  1.1  christos     return TRUE;
   1264  1.1  christos 
   1265  1.1  christos   for (c = bfd_get_symcount (abfd); c > 0; c--, sym_ptr_ptr++)
   1266  1.1  christos     {
   1267  1.1  christos       asymbol *sym_ptr;
   1268  1.1  christos       EXTR esym;
   1269  1.1  christos 
   1270  1.1  christos       sym_ptr = *sym_ptr_ptr;
   1271  1.1  christos 
   1272  1.1  christos       /* Get the external symbol information.  */
   1273  1.1  christos       if (! (*get_extr) (sym_ptr, &esym))
   1274  1.1  christos 	continue;
   1275  1.1  christos 
   1276  1.1  christos       /* If we're producing an executable, move common symbols into
   1277  1.1  christos 	 bss.  */
   1278  1.1  christos       if (! relocatable)
   1279  1.1  christos 	{
   1280  1.1  christos 	  if (esym.asym.sc == scCommon)
   1281  1.1  christos 	    esym.asym.sc = scBss;
   1282  1.1  christos 	  else if (esym.asym.sc == scSCommon)
   1283  1.1  christos 	    esym.asym.sc = scSBss;
   1284  1.1  christos 	}
   1285  1.1  christos 
   1286  1.1  christos       if (bfd_is_com_section (sym_ptr->section)
   1287  1.1  christos 	  || bfd_is_und_section (sym_ptr->section)
   1288  1.1  christos 	  || sym_ptr->section->output_section == (asection *) NULL)
   1289  1.1  christos 	{
   1290  1.1  christos 	  /* FIXME: gas does not keep the value of a small undefined
   1291  1.1  christos 	     symbol in the symbol itself, because of relocation
   1292  1.1  christos 	     problems.  */
   1293  1.1  christos 	  if (esym.asym.sc != scSUndefined
   1294  1.1  christos 	      || esym.asym.value == 0
   1295  1.1  christos 	      || sym_ptr->value != 0)
   1296  1.1  christos 	    esym.asym.value = sym_ptr->value;
   1297  1.1  christos 	}
   1298  1.1  christos       else
   1299  1.1  christos 	esym.asym.value = (sym_ptr->value
   1300  1.1  christos 			   + sym_ptr->section->output_offset
   1301  1.1  christos 			   + sym_ptr->section->output_section->vma);
   1302  1.1  christos 
   1303  1.1  christos       if (set_index)
   1304  1.1  christos 	(*set_index) (sym_ptr, (bfd_size_type) symhdr->iextMax);
   1305  1.1  christos 
   1306  1.1  christos       if (! bfd_ecoff_debug_one_external (abfd, debug, swap,
   1307  1.1  christos 					  sym_ptr->name, &esym))
   1308  1.1  christos 	return FALSE;
   1309  1.1  christos     }
   1310  1.1  christos 
   1311  1.1  christos   return TRUE;
   1312  1.1  christos }
   1313  1.1  christos 
   1314  1.1  christos /* Add a single external symbol to the debugging information.  */
   1315  1.1  christos 
   1316  1.1  christos bfd_boolean
   1317  1.1  christos bfd_ecoff_debug_one_external (abfd, debug, swap, name, esym)
   1318  1.1  christos      bfd *abfd;
   1319  1.1  christos      struct ecoff_debug_info *debug;
   1320  1.1  christos      const struct ecoff_debug_swap *swap;
   1321  1.1  christos      const char *name;
   1322  1.1  christos      EXTR *esym;
   1323  1.1  christos {
   1324  1.1  christos   const bfd_size_type external_ext_size = swap->external_ext_size;
   1325  1.1  christos   void (* const swap_ext_out) PARAMS ((bfd *, const EXTR *, PTR))
   1326  1.1  christos     = swap->swap_ext_out;
   1327  1.1  christos   HDRR * const symhdr = &debug->symbolic_header;
   1328  1.1  christos   size_t namelen;
   1329  1.1  christos 
   1330  1.1  christos   namelen = strlen (name);
   1331  1.1  christos 
   1332  1.1  christos   if ((size_t) (debug->ssext_end - debug->ssext)
   1333  1.1  christos       < symhdr->issExtMax + namelen + 1)
   1334  1.1  christos     {
   1335  1.1  christos       if (! ecoff_add_bytes ((char **) &debug->ssext,
   1336  1.1  christos 			     (char **) &debug->ssext_end,
   1337  1.1  christos 			     symhdr->issExtMax + namelen + 1))
   1338  1.1  christos 	return FALSE;
   1339  1.1  christos     }
   1340  1.1  christos   if ((size_t) ((char *) debug->external_ext_end
   1341  1.1  christos 		- (char *) debug->external_ext)
   1342  1.1  christos       < (symhdr->iextMax + 1) * external_ext_size)
   1343  1.1  christos     {
   1344  1.1  christos       char *external_ext = (char *) debug->external_ext;
   1345  1.1  christos       char *external_ext_end = (char *) debug->external_ext_end;
   1346  1.1  christos       if (! ecoff_add_bytes ((char **) &external_ext,
   1347  1.1  christos 			     (char **) &external_ext_end,
   1348  1.1  christos 			     (symhdr->iextMax + 1) * (size_t) external_ext_size))
   1349  1.1  christos 	return FALSE;
   1350  1.1  christos       debug->external_ext = external_ext;
   1351  1.1  christos       debug->external_ext_end = external_ext_end;
   1352  1.1  christos     }
   1353  1.1  christos 
   1354  1.1  christos   esym->asym.iss = symhdr->issExtMax;
   1355  1.1  christos 
   1356  1.1  christos   (*swap_ext_out) (abfd, esym,
   1357  1.1  christos 		   ((char *) debug->external_ext
   1358  1.1  christos 		    + symhdr->iextMax * swap->external_ext_size));
   1359  1.1  christos 
   1360  1.1  christos   ++symhdr->iextMax;
   1361  1.1  christos 
   1362  1.1  christos   strcpy (debug->ssext + symhdr->issExtMax, name);
   1363  1.1  christos   symhdr->issExtMax += namelen + 1;
   1364  1.1  christos 
   1365  1.1  christos   return TRUE;
   1366  1.1  christos }
   1367  1.1  christos 
   1368  1.1  christos /* Align the ECOFF debugging information.  */
   1369  1.1  christos 
   1370  1.1  christos static void
   1371  1.1  christos ecoff_align_debug (abfd, debug, swap)
   1372  1.1  christos      bfd *abfd ATTRIBUTE_UNUSED;
   1373  1.1  christos      struct ecoff_debug_info *debug;
   1374  1.1  christos      const struct ecoff_debug_swap *swap;
   1375  1.1  christos {
   1376  1.1  christos   HDRR * const symhdr = &debug->symbolic_header;
   1377  1.1  christos   bfd_size_type debug_align, aux_align, rfd_align;
   1378  1.1  christos   size_t add;
   1379  1.1  christos 
   1380  1.1  christos   /* Adjust the counts so that structures are aligned.  */
   1381  1.1  christos   debug_align = swap->debug_align;
   1382  1.1  christos   aux_align = debug_align / sizeof (union aux_ext);
   1383  1.1  christos   rfd_align = debug_align / swap->external_rfd_size;
   1384  1.1  christos 
   1385  1.1  christos   add = debug_align - (symhdr->cbLine & (debug_align - 1));
   1386  1.1  christos   if (add != debug_align)
   1387  1.1  christos     {
   1388  1.1  christos       if (debug->line != (unsigned char *) NULL)
   1389  1.1  christos 	memset ((PTR) (debug->line + symhdr->cbLine), 0, add);
   1390  1.1  christos       symhdr->cbLine += add;
   1391  1.1  christos     }
   1392  1.1  christos 
   1393  1.1  christos   add = debug_align - (symhdr->issMax & (debug_align - 1));
   1394  1.1  christos   if (add != debug_align)
   1395  1.1  christos     {
   1396  1.1  christos       if (debug->ss != (char *) NULL)
   1397  1.1  christos 	memset ((PTR) (debug->ss + symhdr->issMax), 0, add);
   1398  1.1  christos       symhdr->issMax += add;
   1399  1.1  christos     }
   1400  1.1  christos 
   1401  1.1  christos   add = debug_align - (symhdr->issExtMax & (debug_align - 1));
   1402  1.1  christos   if (add != debug_align)
   1403  1.1  christos     {
   1404  1.1  christos       if (debug->ssext != (char *) NULL)
   1405  1.1  christos 	memset ((PTR) (debug->ssext + symhdr->issExtMax), 0, add);
   1406  1.1  christos       symhdr->issExtMax += add;
   1407  1.1  christos     }
   1408  1.1  christos 
   1409  1.1  christos   add = aux_align - (symhdr->iauxMax & (aux_align - 1));
   1410  1.1  christos   if (add != aux_align)
   1411  1.1  christos     {
   1412  1.1  christos       if (debug->external_aux != (union aux_ext *) NULL)
   1413  1.1  christos 	memset ((PTR) (debug->external_aux + symhdr->iauxMax), 0,
   1414  1.1  christos 		add * sizeof (union aux_ext));
   1415  1.1  christos       symhdr->iauxMax += add;
   1416  1.1  christos     }
   1417  1.1  christos 
   1418  1.1  christos   add = rfd_align - (symhdr->crfd & (rfd_align - 1));
   1419  1.1  christos   if (add != rfd_align)
   1420  1.1  christos     {
   1421  1.1  christos       if (debug->external_rfd != (PTR) NULL)
   1422  1.1  christos 	memset ((PTR) ((char *) debug->external_rfd
   1423  1.1  christos 		       + symhdr->crfd * swap->external_rfd_size),
   1424  1.1  christos 		0, (size_t) (add * swap->external_rfd_size));
   1425  1.1  christos       symhdr->crfd += add;
   1426  1.1  christos     }
   1427  1.1  christos }
   1428  1.1  christos 
   1429  1.1  christos /* Return the size required by the ECOFF debugging information.  */
   1430  1.1  christos 
   1431  1.1  christos bfd_size_type
   1432  1.1  christos bfd_ecoff_debug_size (abfd, debug, swap)
   1433  1.1  christos      bfd *abfd;
   1434  1.1  christos      struct ecoff_debug_info *debug;
   1435  1.1  christos      const struct ecoff_debug_swap *swap;
   1436  1.1  christos {
   1437  1.1  christos   bfd_size_type tot;
   1438  1.1  christos 
   1439  1.1  christos   ecoff_align_debug (abfd, debug, swap);
   1440  1.1  christos   tot = swap->external_hdr_size;
   1441  1.1  christos 
   1442  1.1  christos #define ADD(count, size) \
   1443  1.1  christos   tot += debug->symbolic_header.count * size
   1444  1.1  christos 
   1445  1.1  christos   ADD (cbLine, sizeof (unsigned char));
   1446  1.1  christos   ADD (idnMax, swap->external_dnr_size);
   1447  1.1  christos   ADD (ipdMax, swap->external_pdr_size);
   1448  1.1  christos   ADD (isymMax, swap->external_sym_size);
   1449  1.1  christos   ADD (ioptMax, swap->external_opt_size);
   1450  1.1  christos   ADD (iauxMax, sizeof (union aux_ext));
   1451  1.1  christos   ADD (issMax, sizeof (char));
   1452  1.1  christos   ADD (issExtMax, sizeof (char));
   1453  1.1  christos   ADD (ifdMax, swap->external_fdr_size);
   1454  1.1  christos   ADD (crfd, swap->external_rfd_size);
   1455  1.1  christos   ADD (iextMax, swap->external_ext_size);
   1456  1.1  christos 
   1457  1.1  christos #undef ADD
   1458  1.1  christos 
   1459  1.1  christos   return tot;
   1460  1.1  christos }
   1461  1.1  christos 
   1462  1.1  christos /* Write out the ECOFF symbolic header, given the file position it is
   1463  1.1  christos    going to be placed at.  This assumes that the counts are set
   1464  1.1  christos    correctly.  */
   1465  1.1  christos 
   1466  1.1  christos static bfd_boolean
   1467  1.1  christos ecoff_write_symhdr (abfd, debug, swap, where)
   1468  1.1  christos      bfd *abfd;
   1469  1.1  christos      struct ecoff_debug_info *debug;
   1470  1.1  christos      const struct ecoff_debug_swap *swap;
   1471  1.1  christos      file_ptr where;
   1472  1.1  christos {
   1473  1.1  christos   HDRR * const symhdr = &debug->symbolic_header;
   1474  1.1  christos   char *buff = NULL;
   1475  1.1  christos 
   1476  1.1  christos   ecoff_align_debug (abfd, debug, swap);
   1477  1.1  christos 
   1478  1.1  christos   /* Go to the right location in the file.  */
   1479  1.1  christos   if (bfd_seek (abfd, where, SEEK_SET) != 0)
   1480  1.1  christos     return FALSE;
   1481  1.1  christos 
   1482  1.1  christos   where += swap->external_hdr_size;
   1483  1.1  christos 
   1484  1.1  christos   symhdr->magic = swap->sym_magic;
   1485  1.1  christos 
   1486  1.1  christos   /* Fill in the file offsets.  */
   1487  1.1  christos #define SET(offset, count, size) \
   1488  1.1  christos   if (symhdr->count == 0) \
   1489  1.1  christos     symhdr->offset = 0; \
   1490  1.1  christos   else \
   1491  1.1  christos     { \
   1492  1.1  christos       symhdr->offset = where; \
   1493  1.1  christos       where += symhdr->count * size; \
   1494  1.1  christos     }
   1495  1.1  christos 
   1496  1.1  christos   SET (cbLineOffset, cbLine, sizeof (unsigned char));
   1497  1.1  christos   SET (cbDnOffset, idnMax, swap->external_dnr_size);
   1498  1.1  christos   SET (cbPdOffset, ipdMax, swap->external_pdr_size);
   1499  1.1  christos   SET (cbSymOffset, isymMax, swap->external_sym_size);
   1500  1.1  christos   SET (cbOptOffset, ioptMax, swap->external_opt_size);
   1501  1.1  christos   SET (cbAuxOffset, iauxMax, sizeof (union aux_ext));
   1502  1.1  christos   SET (cbSsOffset, issMax, sizeof (char));
   1503  1.1  christos   SET (cbSsExtOffset, issExtMax, sizeof (char));
   1504  1.1  christos   SET (cbFdOffset, ifdMax, swap->external_fdr_size);
   1505  1.1  christos   SET (cbRfdOffset, crfd, swap->external_rfd_size);
   1506  1.1  christos   SET (cbExtOffset, iextMax, swap->external_ext_size);
   1507  1.1  christos #undef SET
   1508  1.1  christos 
   1509  1.1  christos   buff = (char *) bfd_malloc (swap->external_hdr_size);
   1510  1.1  christos   if (buff == NULL && swap->external_hdr_size != 0)
   1511  1.1  christos     goto error_return;
   1512  1.1  christos 
   1513  1.1  christos   (*swap->swap_hdr_out) (abfd, symhdr, buff);
   1514  1.1  christos   if (bfd_bwrite (buff, swap->external_hdr_size, abfd)
   1515  1.1  christos       != swap->external_hdr_size)
   1516  1.1  christos     goto error_return;
   1517  1.1  christos 
   1518  1.1  christos   if (buff != NULL)
   1519  1.1  christos     free (buff);
   1520  1.1  christos   return TRUE;
   1521  1.1  christos  error_return:
   1522  1.1  christos   if (buff != NULL)
   1523  1.1  christos     free (buff);
   1524  1.1  christos   return FALSE;
   1525  1.1  christos }
   1526  1.1  christos 
   1527  1.1  christos /* Write out the ECOFF debugging information.  This function assumes
   1528  1.1  christos    that the information (the pointers and counts) in *DEBUG have been
   1529  1.1  christos    set correctly.  WHERE is the position in the file to write the
   1530  1.1  christos    information to.  This function fills in the file offsets in the
   1531  1.1  christos    symbolic header.  */
   1532  1.1  christos 
   1533  1.1  christos bfd_boolean
   1534  1.1  christos bfd_ecoff_write_debug (abfd, debug, swap, where)
   1535  1.1  christos      bfd *abfd;
   1536  1.1  christos      struct ecoff_debug_info *debug;
   1537  1.1  christos      const struct ecoff_debug_swap *swap;
   1538  1.1  christos      file_ptr where;
   1539  1.1  christos {
   1540  1.1  christos   HDRR * const symhdr = &debug->symbolic_header;
   1541  1.1  christos 
   1542  1.1  christos   if (! ecoff_write_symhdr (abfd, debug, swap, where))
   1543  1.1  christos     return FALSE;
   1544  1.1  christos 
   1545  1.1  christos #define WRITE(ptr, count, size, offset) \
   1546  1.1  christos   BFD_ASSERT (symhdr->offset == 0 \
   1547  1.1  christos 	      || (bfd_vma) bfd_tell (abfd) == symhdr->offset); \
   1548  1.1  christos   if (bfd_bwrite ((PTR) debug->ptr, (bfd_size_type) size * symhdr->count, abfd)\
   1549  1.1  christos       != size * symhdr->count) \
   1550  1.1  christos     return FALSE;
   1551  1.1  christos 
   1552  1.1  christos   WRITE (line, cbLine, sizeof (unsigned char), cbLineOffset);
   1553  1.1  christos   WRITE (external_dnr, idnMax, swap->external_dnr_size, cbDnOffset);
   1554  1.1  christos   WRITE (external_pdr, ipdMax, swap->external_pdr_size, cbPdOffset);
   1555  1.1  christos   WRITE (external_sym, isymMax, swap->external_sym_size, cbSymOffset);
   1556  1.1  christos   WRITE (external_opt, ioptMax, swap->external_opt_size, cbOptOffset);
   1557  1.1  christos   WRITE (external_aux, iauxMax, (bfd_size_type) sizeof (union aux_ext),
   1558  1.1  christos 	 cbAuxOffset);
   1559  1.1  christos   WRITE (ss, issMax, sizeof (char), cbSsOffset);
   1560  1.1  christos   WRITE (ssext, issExtMax, sizeof (char), cbSsExtOffset);
   1561  1.1  christos   WRITE (external_fdr, ifdMax, swap->external_fdr_size, cbFdOffset);
   1562  1.1  christos   WRITE (external_rfd, crfd, swap->external_rfd_size, cbRfdOffset);
   1563  1.1  christos   WRITE (external_ext, iextMax, swap->external_ext_size, cbExtOffset);
   1564  1.1  christos #undef WRITE
   1565  1.1  christos 
   1566  1.1  christos   return TRUE;
   1567  1.1  christos }
   1568  1.1  christos 
   1569  1.1  christos /* Write out a shuffle list.  */
   1570  1.1  christos 
   1571  1.1  christos static bfd_boolean ecoff_write_shuffle
   1572  1.1  christos   PARAMS ((bfd *, const struct ecoff_debug_swap *, struct shuffle *,
   1573  1.1  christos 	   PTR space));
   1574  1.1  christos 
   1575  1.1  christos static bfd_boolean
   1576  1.1  christos ecoff_write_shuffle (abfd, swap, shuffle, space)
   1577  1.1  christos      bfd *abfd;
   1578  1.1  christos      const struct ecoff_debug_swap *swap;
   1579  1.1  christos      struct shuffle *shuffle;
   1580  1.1  christos      PTR space;
   1581  1.1  christos {
   1582  1.1  christos   register struct shuffle *l;
   1583  1.1  christos   unsigned long total;
   1584  1.1  christos 
   1585  1.1  christos   total = 0;
   1586  1.1  christos   for (l = shuffle; l != (struct shuffle *) NULL; l = l->next)
   1587  1.1  christos     {
   1588  1.1  christos       if (! l->filep)
   1589  1.1  christos 	{
   1590  1.1  christos 	  if (bfd_bwrite (l->u.memory, (bfd_size_type) l->size, abfd)
   1591  1.1  christos 	      != l->size)
   1592  1.1  christos 	    return FALSE;
   1593  1.1  christos 	}
   1594  1.1  christos       else
   1595  1.1  christos 	{
   1596  1.1  christos 	  if (bfd_seek (l->u.file.input_bfd, l->u.file.offset, SEEK_SET) != 0
   1597  1.1  christos 	      || bfd_bread (space, (bfd_size_type) l->size,
   1598  1.1  christos 			   l->u.file.input_bfd) != l->size
   1599  1.1  christos 	      || bfd_bwrite (space, (bfd_size_type) l->size, abfd) != l->size)
   1600  1.1  christos 	    return FALSE;
   1601  1.1  christos 	}
   1602  1.1  christos       total += l->size;
   1603  1.1  christos     }
   1604  1.1  christos 
   1605  1.1  christos   if ((total & (swap->debug_align - 1)) != 0)
   1606  1.1  christos     {
   1607  1.1  christos       unsigned int i;
   1608  1.1  christos       bfd_byte *s;
   1609  1.1  christos 
   1610  1.1  christos       i = swap->debug_align - (total & (swap->debug_align - 1));
   1611  1.1  christos       s = (bfd_byte *) bfd_zmalloc ((bfd_size_type) i);
   1612  1.1  christos       if (s == NULL && i != 0)
   1613  1.1  christos 	return FALSE;
   1614  1.1  christos 
   1615  1.1  christos       if (bfd_bwrite ((PTR) s, (bfd_size_type) i, abfd) != i)
   1616  1.1  christos 	{
   1617  1.1  christos 	  free (s);
   1618  1.1  christos 	  return FALSE;
   1619  1.1  christos 	}
   1620  1.1  christos       free (s);
   1621  1.1  christos     }
   1622  1.1  christos 
   1623  1.1  christos   return TRUE;
   1624  1.1  christos }
   1625  1.1  christos 
   1626  1.1  christos /* Write out debugging information using accumulated linker
   1627  1.1  christos    information.  */
   1628  1.1  christos 
   1629  1.1  christos bfd_boolean
   1630  1.1  christos bfd_ecoff_write_accumulated_debug (handle, abfd, debug, swap, info, where)
   1631  1.1  christos      PTR handle;
   1632  1.1  christos      bfd *abfd;
   1633  1.1  christos      struct ecoff_debug_info *debug;
   1634  1.1  christos      const struct ecoff_debug_swap *swap;
   1635  1.1  christos      struct bfd_link_info *info;
   1636  1.1  christos      file_ptr where;
   1637  1.1  christos {
   1638  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
   1639  1.1  christos   PTR space = NULL;
   1640  1.1  christos   bfd_size_type amt;
   1641  1.1  christos 
   1642  1.1  christos   if (! ecoff_write_symhdr (abfd, debug, swap, where))
   1643  1.1  christos     goto error_return;
   1644  1.1  christos 
   1645  1.1  christos   amt = ainfo->largest_file_shuffle;
   1646  1.1  christos   space = (PTR) bfd_malloc (amt);
   1647  1.1  christos   if (space == NULL && ainfo->largest_file_shuffle != 0)
   1648  1.1  christos     goto error_return;
   1649  1.1  christos 
   1650  1.1  christos   if (! ecoff_write_shuffle (abfd, swap, ainfo->line, space)
   1651  1.1  christos       || ! ecoff_write_shuffle (abfd, swap, ainfo->pdr, space)
   1652  1.1  christos       || ! ecoff_write_shuffle (abfd, swap, ainfo->sym, space)
   1653  1.1  christos       || ! ecoff_write_shuffle (abfd, swap, ainfo->opt, space)
   1654  1.1  christos       || ! ecoff_write_shuffle (abfd, swap, ainfo->aux, space))
   1655  1.1  christos     goto error_return;
   1656  1.1  christos 
   1657  1.1  christos   /* The string table is written out from the hash table if this is a
   1658  1.1  christos      final link.  */
   1659  1.1  christos   if (info->relocatable)
   1660  1.1  christos     {
   1661  1.1  christos       BFD_ASSERT (ainfo->ss_hash == (struct string_hash_entry *) NULL);
   1662  1.1  christos       if (! ecoff_write_shuffle (abfd, swap, ainfo->ss, space))
   1663  1.1  christos 	goto error_return;
   1664  1.1  christos     }
   1665  1.1  christos   else
   1666  1.1  christos     {
   1667  1.1  christos       unsigned long total;
   1668  1.1  christos       bfd_byte null;
   1669  1.1  christos       struct string_hash_entry *sh;
   1670  1.1  christos 
   1671  1.1  christos       BFD_ASSERT (ainfo->ss == (struct shuffle *) NULL);
   1672  1.1  christos       null = 0;
   1673  1.1  christos       if (bfd_bwrite ((PTR) &null, (bfd_size_type) 1, abfd) != 1)
   1674  1.1  christos 	goto error_return;
   1675  1.1  christos       total = 1;
   1676  1.1  christos       BFD_ASSERT (ainfo->ss_hash == NULL || ainfo->ss_hash->val == 1);
   1677  1.1  christos       for (sh = ainfo->ss_hash;
   1678  1.1  christos 	   sh != (struct string_hash_entry *) NULL;
   1679  1.1  christos 	   sh = sh->next)
   1680  1.1  christos 	{
   1681  1.1  christos 	  size_t len;
   1682  1.1  christos 
   1683  1.1  christos 	  len = strlen (sh->root.string);
   1684  1.1  christos 	  amt = len + 1;
   1685  1.1  christos 	  if (bfd_bwrite ((PTR) sh->root.string, amt, abfd) != amt)
   1686  1.1  christos 	    goto error_return;
   1687  1.1  christos 	  total += len + 1;
   1688  1.1  christos 	}
   1689  1.1  christos 
   1690  1.1  christos       if ((total & (swap->debug_align - 1)) != 0)
   1691  1.1  christos 	{
   1692  1.1  christos 	  unsigned int i;
   1693  1.1  christos 	  bfd_byte *s;
   1694  1.1  christos 
   1695  1.1  christos 	  i = swap->debug_align - (total & (swap->debug_align - 1));
   1696  1.1  christos 	  s = (bfd_byte *) bfd_zmalloc ((bfd_size_type) i);
   1697  1.1  christos 	  if (s == NULL && i != 0)
   1698  1.1  christos 	    goto error_return;
   1699  1.1  christos 
   1700  1.1  christos 	  if (bfd_bwrite ((PTR) s, (bfd_size_type) i, abfd) != i)
   1701  1.1  christos 	    {
   1702  1.1  christos 	      free (s);
   1703  1.1  christos 	      goto error_return;
   1704  1.1  christos 	    }
   1705  1.1  christos 	  free (s);
   1706  1.1  christos 	}
   1707  1.1  christos     }
   1708  1.1  christos 
   1709  1.1  christos   /* The external strings and symbol are not converted over to using
   1710  1.1  christos      shuffles.  FIXME: They probably should be.  */
   1711  1.1  christos   amt = debug->symbolic_header.issExtMax;
   1712  1.1  christos   if (bfd_bwrite (debug->ssext, amt, abfd) != amt)
   1713  1.1  christos     goto error_return;
   1714  1.1  christos   if ((debug->symbolic_header.issExtMax & (swap->debug_align - 1)) != 0)
   1715  1.1  christos     {
   1716  1.1  christos       unsigned int i;
   1717  1.1  christos       bfd_byte *s;
   1718  1.1  christos 
   1719  1.1  christos       i = (swap->debug_align
   1720  1.1  christos 	   - (debug->symbolic_header.issExtMax & (swap->debug_align - 1)));
   1721  1.1  christos       s = (bfd_byte *) bfd_zmalloc ((bfd_size_type) i);
   1722  1.1  christos       if (s == NULL && i != 0)
   1723  1.1  christos 	goto error_return;
   1724  1.1  christos 
   1725  1.1  christos       if (bfd_bwrite ((PTR) s, (bfd_size_type) i, abfd) != i)
   1726  1.1  christos 	{
   1727  1.1  christos 	  free (s);
   1728  1.1  christos 	  goto error_return;
   1729  1.1  christos 	}
   1730  1.1  christos       free (s);
   1731  1.1  christos     }
   1732  1.1  christos 
   1733  1.1  christos   if (! ecoff_write_shuffle (abfd, swap, ainfo->fdr, space)
   1734  1.1  christos       || ! ecoff_write_shuffle (abfd, swap, ainfo->rfd, space))
   1735  1.1  christos     goto error_return;
   1736  1.1  christos 
   1737  1.1  christos   BFD_ASSERT (debug->symbolic_header.cbExtOffset == 0
   1738  1.1  christos 	      || (debug->symbolic_header.cbExtOffset
   1739  1.1  christos 		  == (bfd_vma) bfd_tell (abfd)));
   1740  1.1  christos 
   1741  1.1  christos   amt = debug->symbolic_header.iextMax * swap->external_ext_size;
   1742  1.1  christos   if (bfd_bwrite (debug->external_ext, amt, abfd) != amt)
   1743  1.1  christos     goto error_return;
   1744  1.1  christos 
   1745  1.1  christos   if (space != NULL)
   1746  1.1  christos     free (space);
   1747  1.1  christos   return TRUE;
   1748  1.1  christos 
   1749  1.1  christos  error_return:
   1750  1.1  christos   if (space != NULL)
   1751  1.1  christos     free (space);
   1752  1.1  christos   return FALSE;
   1753  1.1  christos }
   1754  1.1  christos 
   1755  1.1  christos /* Handle the find_nearest_line function for both ECOFF and MIPS ELF
   1757  1.1  christos    files.  */
   1758  1.1  christos 
   1759  1.1  christos /* Compare FDR entries.  This is called via qsort.  */
   1760  1.1  christos 
   1761  1.1  christos static int
   1762  1.1  christos cmp_fdrtab_entry (leftp, rightp)
   1763  1.1  christos      const PTR leftp;
   1764  1.1  christos      const PTR rightp;
   1765  1.1  christos {
   1766  1.1  christos   const struct ecoff_fdrtab_entry *lp =
   1767  1.1  christos     (const struct ecoff_fdrtab_entry *) leftp;
   1768  1.1  christos   const struct ecoff_fdrtab_entry *rp =
   1769  1.1  christos     (const struct ecoff_fdrtab_entry *) rightp;
   1770  1.1  christos 
   1771  1.1  christos   if (lp->base_addr < rp->base_addr)
   1772  1.1  christos     return -1;
   1773  1.1  christos   if (lp->base_addr > rp->base_addr)
   1774  1.1  christos     return 1;
   1775  1.1  christos   return 0;
   1776  1.1  christos }
   1777  1.1  christos 
   1778  1.1  christos /* Each file descriptor (FDR) has a memory address, to simplify
   1779  1.1  christos    looking up an FDR by address, we build a table covering all FDRs
   1780  1.1  christos    that have a least one procedure descriptor in them.  The final
   1781  1.1  christos    table will be sorted by address so we can look it up via binary
   1782  1.1  christos    search.  */
   1783  1.1  christos 
   1784  1.1  christos static bfd_boolean
   1785  1.1  christos mk_fdrtab (abfd, debug_info, debug_swap, line_info)
   1786  1.1  christos      bfd *abfd;
   1787  1.1  christos      struct ecoff_debug_info * const debug_info;
   1788  1.1  christos      const struct ecoff_debug_swap * const debug_swap;
   1789  1.1  christos      struct ecoff_find_line *line_info;
   1790  1.1  christos {
   1791  1.1  christos   struct ecoff_fdrtab_entry *tab;
   1792  1.1  christos   FDR *fdr_ptr;
   1793  1.1  christos   FDR *fdr_start;
   1794  1.1  christos   FDR *fdr_end;
   1795  1.1  christos   bfd_boolean stabs;
   1796  1.1  christos   long len;
   1797  1.1  christos   bfd_size_type amt;
   1798  1.1  christos 
   1799  1.1  christos   fdr_start = debug_info->fdr;
   1800  1.1  christos   fdr_end = fdr_start + debug_info->symbolic_header.ifdMax;
   1801  1.1  christos 
   1802  1.1  christos   /* First, let's see how long the table needs to be.  */
   1803  1.1  christos   for (len = 0, fdr_ptr = fdr_start; fdr_ptr < fdr_end; fdr_ptr++)
   1804  1.1  christos     {
   1805  1.1  christos       if (fdr_ptr->cpd == 0)	/* Skip FDRs that have no PDRs.  */
   1806  1.1  christos 	continue;
   1807  1.1  christos       ++len;
   1808  1.1  christos     }
   1809  1.1  christos 
   1810  1.1  christos   /* Now, create and fill in the table.  */
   1811  1.1  christos   amt = (bfd_size_type) len * sizeof (struct ecoff_fdrtab_entry);
   1812  1.1  christos   line_info->fdrtab = (struct ecoff_fdrtab_entry*) bfd_zalloc (abfd, amt);
   1813  1.1  christos   if (line_info->fdrtab == NULL)
   1814  1.1  christos     return FALSE;
   1815  1.1  christos   line_info->fdrtab_len = len;
   1816  1.1  christos 
   1817  1.1  christos   tab = line_info->fdrtab;
   1818  1.1  christos   for (fdr_ptr = fdr_start; fdr_ptr < fdr_end; fdr_ptr++)
   1819  1.1  christos     {
   1820  1.1  christos       if (fdr_ptr->cpd == 0)
   1821  1.1  christos 	continue;
   1822  1.1  christos 
   1823  1.1  christos       /* Check whether this file has stabs debugging information.  In
   1824  1.1  christos 	 a file with stabs debugging information, the second local
   1825  1.1  christos 	 symbol is named @stabs.  */
   1826  1.1  christos       stabs = FALSE;
   1827  1.1  christos       if (fdr_ptr->csym >= 2)
   1828  1.1  christos 	{
   1829  1.1  christos 	  char *sym_ptr;
   1830  1.1  christos 	  SYMR sym;
   1831  1.1  christos 
   1832  1.1  christos 	  sym_ptr = ((char *) debug_info->external_sym
   1833  1.1  christos 		     + (fdr_ptr->isymBase + 1) * debug_swap->external_sym_size);
   1834  1.1  christos 	  (*debug_swap->swap_sym_in) (abfd, sym_ptr, &sym);
   1835  1.1  christos 	  if (strcmp (debug_info->ss + fdr_ptr->issBase + sym.iss,
   1836  1.1  christos 		      STABS_SYMBOL) == 0)
   1837  1.1  christos 	    stabs = TRUE;
   1838  1.1  christos 	}
   1839  1.1  christos 
   1840  1.1  christos       if (!stabs)
   1841  1.1  christos 	{
   1842  1.1  christos 	  /* eraxxon: There are at least two problems with this computation:
   1843  1.1  christos 	     1) PDRs do *not* contain offsets but full vma's; and typically the
   1844  1.1  christos 	     address of the first PDR is the address of the FDR, which will
   1845  1.1  christos 	     make (most) of the results of the original computation 0!
   1846  1.1  christos 	     2) Once in a wacky while, the Compaq compiler generated PDR
   1847  1.1  christos 	     addresses do not equal the FDR vma, but they (the PDR address)
   1848  1.1  christos 	     are still vma's and not offsets.  Cf. comments in
   1849  1.1  christos 	     'lookup_line'.  */
   1850  1.1  christos 	  /* The address of the first PDR is the offset of that
   1851  1.1  christos 	     procedure relative to the beginning of file FDR.  */
   1852  1.1  christos 	  tab->base_addr = fdr_ptr->adr;
   1853  1.1  christos 	}
   1854  1.1  christos       else
   1855  1.1  christos 	{
   1856  1.1  christos 	  /* XXX I don't know about stabs, so this is a guess
   1857  1.1  christos 	     (davidm (at) cs.arizona.edu).  */
   1858  1.1  christos 	  tab->base_addr = fdr_ptr->adr;
   1859  1.1  christos 	}
   1860  1.1  christos       tab->fdr = fdr_ptr;
   1861  1.1  christos       ++tab;
   1862  1.1  christos     }
   1863  1.1  christos 
   1864  1.1  christos   /* Finally, the table is sorted in increasing memory-address order.
   1865  1.1  christos      The table is mostly sorted already, but there are cases (e.g.,
   1866  1.1  christos      static functions in include files), where this does not hold.
   1867  1.1  christos      Use "odump -PFv" to verify...  */
   1868  1.1  christos   qsort ((PTR) line_info->fdrtab, (size_t) len,
   1869  1.1  christos 	 sizeof (struct ecoff_fdrtab_entry), cmp_fdrtab_entry);
   1870  1.1  christos 
   1871  1.1  christos   return TRUE;
   1872  1.1  christos }
   1873  1.1  christos 
   1874  1.1  christos /* Return index of first FDR that covers to OFFSET.  */
   1875  1.1  christos 
   1876  1.1  christos static long
   1877  1.1  christos fdrtab_lookup (line_info, offset)
   1878  1.1  christos      struct ecoff_find_line *line_info;
   1879  1.1  christos      bfd_vma offset;
   1880  1.1  christos {
   1881  1.1  christos   long low, high, len;
   1882  1.1  christos   long mid = -1;
   1883  1.1  christos   struct ecoff_fdrtab_entry *tab;
   1884  1.1  christos 
   1885  1.1  christos   len = line_info->fdrtab_len;
   1886  1.1  christos   if (len == 0)
   1887  1.1  christos     return -1;
   1888  1.1  christos 
   1889  1.1  christos   tab = line_info->fdrtab;
   1890  1.1  christos   for (low = 0, high = len - 1 ; low != high ;)
   1891  1.1  christos     {
   1892  1.1  christos       mid = (high + low) / 2;
   1893  1.1  christos       if (offset >= tab[mid].base_addr && offset < tab[mid + 1].base_addr)
   1894  1.1  christos 	goto find_min;
   1895  1.1  christos 
   1896  1.1  christos       if (tab[mid].base_addr > offset)
   1897  1.1  christos 	high = mid;
   1898  1.1  christos       else
   1899  1.1  christos 	low = mid + 1;
   1900  1.1  christos     }
   1901  1.1  christos 
   1902  1.1  christos   /* eraxxon: at this point 'offset' is either lower than the lowest entry or
   1903  1.1  christos      higher than the highest entry. In the former case high = low = mid = 0;
   1904  1.1  christos      we want to return -1.  In the latter case, low = high and mid = low - 1;
   1905  1.1  christos      we want to return the index of the highest entry.  Only in former case
   1906  1.1  christos      will the following 'catch-all' test be true.  */
   1907  1.1  christos   ++mid;
   1908  1.1  christos 
   1909  1.1  christos   /* Last entry is catch-all for all higher addresses.  */
   1910  1.1  christos   if (offset < tab[mid].base_addr)
   1911  1.1  christos     return -1;
   1912  1.1  christos 
   1913  1.1  christos  find_min:
   1914  1.1  christos 
   1915  1.1  christos   /* eraxxon: There may be multiple FDRs in the table with the
   1916  1.1  christos      same base_addr; make sure that we are at the first one.  */
   1917  1.1  christos   while (mid > 0 && tab[mid - 1].base_addr == tab[mid].base_addr)
   1918  1.1  christos     --mid;
   1919  1.1  christos 
   1920  1.1  christos   return mid;
   1921  1.1  christos }
   1922  1.1  christos 
   1923  1.1  christos /* Look up a line given an address, storing the information in
   1924  1.1  christos    LINE_INFO->cache.  */
   1925  1.1  christos 
   1926  1.1  christos static bfd_boolean
   1927  1.1  christos lookup_line (abfd, debug_info, debug_swap, line_info)
   1928  1.1  christos      bfd *abfd;
   1929  1.1  christos      struct ecoff_debug_info * const debug_info;
   1930  1.1  christos      const struct ecoff_debug_swap * const debug_swap;
   1931  1.1  christos      struct ecoff_find_line *line_info;
   1932  1.1  christos {
   1933  1.1  christos   struct ecoff_fdrtab_entry *tab;
   1934  1.1  christos   bfd_vma offset;
   1935  1.1  christos   bfd_boolean stabs;
   1936  1.1  christos   FDR *fdr_ptr;
   1937  1.1  christos   int i;
   1938  1.1  christos 
   1939  1.1  christos   /* eraxxon: note that 'offset' is the full vma, not a section offset.  */
   1940  1.1  christos   offset = line_info->cache.start;
   1941  1.1  christos 
   1942  1.1  christos   /* Build FDR table (sorted by object file's base-address) if we
   1943  1.1  christos      don't have it already.  */
   1944  1.1  christos   if (line_info->fdrtab == NULL
   1945  1.1  christos       && !mk_fdrtab (abfd, debug_info, debug_swap, line_info))
   1946  1.1  christos     return FALSE;
   1947  1.1  christos 
   1948  1.1  christos   tab = line_info->fdrtab;
   1949  1.1  christos 
   1950  1.1  christos   /* Find first FDR for address OFFSET.  */
   1951  1.1  christos   i = fdrtab_lookup (line_info, offset);
   1952  1.1  christos   if (i < 0)
   1953  1.1  christos     return FALSE;		/* no FDR, no fun...  */
   1954  1.1  christos 
   1955  1.1  christos   /* eraxxon: 'fdrtab_lookup' doesn't give what we want, at least for Compaq's
   1956  1.1  christos      C++ compiler 6.2.  Consider three FDRs with starting addresses of x, y,
   1957  1.1  christos      and z, respectively, such that x < y < z.  Assume further that
   1958  1.1  christos      y < 'offset' < z.  It is possible at times that the PDR for 'offset' is
   1959  1.1  christos      associated with FDR x and *not* with FDR y.  Erg!!
   1960  1.1  christos 
   1961  1.1  christos      From a binary dump of my C++ test case 'moo' using Compaq's coffobjanl
   1962  1.1  christos      (output format has been edited for our purposes):
   1963  1.1  christos 
   1964  1.1  christos      FDR [2]: (main.C): First instruction: 0x12000207c <x>
   1965  1.1  christos        PDR [5] for File [2]: LoopTest__Xv                 <0x1200020a0> (a)
   1966  1.1  christos        PDR [7] for File [2]: foo__Xv                      <0x120002168>
   1967  1.1  christos      FDR [1]: (-1):     First instruction: 0x1200020e8 <y>
   1968  1.1  christos        PDR [3] for File [1]:                              <0x120001ad0> (b)
   1969  1.1  christos      FDR [6]: (-1):     First instruction: 0x1200026f0 <z>
   1970  1.1  christos 
   1971  1.1  christos      (a) In the case of PDR5, the vma is such that the first few instructions
   1972  1.1  christos      of the procedure can be found.  But since the size of this procedure is
   1973  1.1  christos      160b, the vma will soon cross into the 'address space' of FDR1 and no
   1974  1.1  christos      debugging info will be found.  How repugnant!
   1975  1.1  christos 
   1976  1.1  christos      (b) It is also possible for a PDR to have a *lower* vma than its associated
   1977  1.1  christos      FDR; see FDR1 and PDR3.  Gross!
   1978  1.1  christos 
   1979  1.1  christos      Since the FDRs that are causing so much havok (in this case) 1) do not
   1980  1.1  christos      describe actual files (fdr.rss == -1), and 2) contain only compiler
   1981  1.1  christos      generated routines, I thought a simple fix would be to exclude them from
   1982  1.1  christos      the FDR table in 'mk_fdrtab'.  But, besides not knowing for certain
   1983  1.1  christos      whether this would be correct, it creates an additional problem.  If we
   1984  1.1  christos      happen to ask for source file info on a compiler generated (procedure)
   1985  1.1  christos      symbol -- which is still in the symbol table -- the result can be
   1986  1.1  christos      information from a real procedure!  This is because compiler generated
   1987  1.1  christos      procedures with vma's higher than the last FDR in the fdr table will be
   1988  1.1  christos      associated with a PDR from this FDR, specifically the PDR with the
   1989  1.1  christos      highest vma.  This wasn't a problem before, because each procedure had a
   1990  1.1  christos      PDR.  (Yes, this problem could be eliminated if we kept the size of the
   1991  1.1  christos      last PDR around, but things are already getting ugly).
   1992  1.1  christos 
   1993  1.1  christos      Probably, a better solution would be to have a sorted PDR table.  Each
   1994  1.1  christos      PDR would have a pointer to its FDR so file information could still be
   1995  1.1  christos      obtained.  A FDR table could still be constructed if necessary -- since
   1996  1.1  christos      it only contains pointers, not much extra memory would be used -- but
   1997  1.1  christos      the PDR table would be searched to locate debugging info.
   1998  1.1  christos 
   1999  1.1  christos      There is still at least one remaining issue.  Sometimes a FDR can have a
   2000  1.1  christos      bogus name, but contain PDRs that should belong to another FDR with a
   2001  1.1  christos      real name.  E.g:
   2002  1.1  christos 
   2003  1.1  christos      FDR [3]: 0000000120001b50 (/home/.../Array.H~alt~deccxx_5E5A62AD)
   2004  1.1  christos        PDR [a] for File [3]: 0000000120001b50
   2005  1.1  christos        PDR [b] for File [3]: 0000000120001cf0
   2006  1.1  christos        PDR [c] for File [3]: 0000000120001dc8
   2007  1.1  christos        PDR [d] for File [3]: 0000000120001e40
   2008  1.1  christos        PDR [e] for File [3]: 0000000120001eb8
   2009  1.1  christos        PDR [f] for File [3]: 0000000120001f4c
   2010  1.1  christos      FDR [4]: 0000000120001b50 (/home/.../Array.H)
   2011  1.1  christos 
   2012  1.1  christos      Here, FDR4 has the correct name, but should (seemingly) contain PDRa-f.
   2013  1.1  christos      The symbol table for PDR4 does contain symbols for PDRa-f, but so does
   2014  1.1  christos      the symbol table for FDR3.  However the former is different; perhaps this
   2015  1.1  christos      can be detected easily. (I'm not sure at this point.)  This problem only
   2016  1.1  christos      seems to be associated with files with templates.  I am assuming the idea
   2017  1.1  christos      is that there is a 'fake' FDR (with PDRs) for each differently typed set
   2018  1.1  christos      of templates that must be generated.  Currently, FDR4 is completely
   2019  1.1  christos      excluded from the FDR table in 'mk_fdrtab' because it contains no PDRs.
   2020  1.1  christos 
   2021  1.1  christos      Since I don't have time to prepare a real fix for this right now, be
   2022  1.1  christos      prepared for 'A Horrible Hack' to force the inspection of all non-stabs
   2023  1.1  christos      FDRs.  It's coming...  */
   2024  1.1  christos   fdr_ptr = tab[i].fdr;
   2025  1.1  christos 
   2026  1.1  christos   /* Check whether this file has stabs debugging information.  In a
   2027  1.1  christos      file with stabs debugging information, the second local symbol is
   2028  1.1  christos      named @stabs.  */
   2029  1.1  christos   stabs = FALSE;
   2030  1.1  christos   if (fdr_ptr->csym >= 2)
   2031  1.1  christos     {
   2032  1.1  christos       char *sym_ptr;
   2033  1.1  christos       SYMR sym;
   2034  1.1  christos 
   2035  1.1  christos       sym_ptr = ((char *) debug_info->external_sym
   2036  1.1  christos 		 + (fdr_ptr->isymBase + 1) * debug_swap->external_sym_size);
   2037  1.1  christos       (*debug_swap->swap_sym_in) (abfd, sym_ptr, &sym);
   2038  1.1  christos       if (strcmp (debug_info->ss + fdr_ptr->issBase + sym.iss,
   2039  1.1  christos 		  STABS_SYMBOL) == 0)
   2040  1.1  christos 	stabs = TRUE;
   2041  1.1  christos     }
   2042  1.1  christos 
   2043  1.1  christos   if (!stabs)
   2044  1.1  christos     {
   2045  1.1  christos       bfd_size_type external_pdr_size;
   2046  1.1  christos       char *pdr_ptr;
   2047  1.1  christos       char *best_pdr = NULL;
   2048  1.1  christos       FDR *best_fdr;
   2049  1.1  christos       bfd_signed_vma best_dist = -1;
   2050  1.1  christos       PDR pdr;
   2051  1.1  christos       unsigned char *line_ptr;
   2052  1.1  christos       unsigned char *line_end;
   2053  1.1  christos       int lineno;
   2054  1.1  christos       /* This file uses ECOFF debugging information.  Each FDR has a
   2055  1.1  christos          list of procedure descriptors (PDR).  The address in the FDR
   2056  1.1  christos          is the absolute address of the first procedure.  The address
   2057  1.1  christos          in the first PDR gives the offset of that procedure relative
   2058  1.1  christos          to the object file's base-address.  The addresses in
   2059  1.1  christos          subsequent PDRs specify each procedure's address relative to
   2060  1.1  christos          the object file's base-address.  To make things more juicy,
   2061  1.1  christos          whenever the PROF bit in the PDR is set, the real entry point
   2062  1.1  christos          of the procedure may be 16 bytes below what would normally be
   2063  1.1  christos          the procedure's entry point.  Instead, DEC came up with a
   2064  1.1  christos          wicked scheme to create profiled libraries "on the fly":
   2065  1.1  christos          instead of shipping a regular and a profiled version of each
   2066  1.1  christos          library, they insert 16 bytes of unused space in front of
   2067  1.1  christos          each procedure and set the "prof" bit in the PDR to indicate
   2068  1.1  christos          that there is a gap there (this is done automagically by "as"
   2069  1.1  christos          when option "-pg" is specified).  Thus, normally, you link
   2070  1.1  christos          against such a library and, except for lots of 16 byte gaps
   2071  1.1  christos          between functions, things will behave as usual.  However,
   2072  1.1  christos          when invoking "ld" with option "-pg", it will fill those gaps
   2073  1.1  christos          with code that calls mcount().  It then moves the function's
   2074  1.1  christos          entry point down by 16 bytes, and out pops a binary that has
   2075  1.1  christos          all functions profiled.
   2076  1.1  christos 
   2077  1.1  christos          NOTE: Neither FDRs nor PDRs are strictly sorted in memory
   2078  1.1  christos                order.  For example, when including header-files that
   2079  1.1  christos                define functions, the FDRs follow behind the including
   2080  1.1  christos                file, even though their code may have been generated at
   2081  1.1  christos                a lower address.  File coff-alpha.c from libbfd
   2082  1.1  christos                illustrates this (use "odump -PFv" to look at a file's
   2083  1.1  christos                FDR/PDR).  Similarly, PDRs are sometimes out of order
   2084  1.1  christos                as well.  An example of this is OSF/1 v3.0 libc's
   2085  1.1  christos                malloc.c.  I'm not sure why this happens, but it could
   2086  1.1  christos                be due to optimizations that reorder a function's
   2087  1.1  christos                position within an object-file.
   2088  1.1  christos 
   2089  1.1  christos          Strategy:
   2090  1.1  christos 
   2091  1.1  christos          On the first call to this function, we build a table of FDRs
   2092  1.1  christos          that is sorted by the base-address of the object-file the FDR
   2093  1.1  christos          is referring to.  Notice that each object-file may contain
   2094  1.1  christos          code from multiple source files (e.g., due to code defined in
   2095  1.1  christos          include files).  Thus, for any given base-address, there may
   2096  1.1  christos          be multiple FDRs (but this case is, fortunately, uncommon).
   2097  1.1  christos          lookup(addr) guarantees to return the first FDR that applies
   2098  1.1  christos          to address ADDR.  Thus, after invoking lookup(), we have a
   2099  1.1  christos          list of FDRs that may contain the PDR for ADDR.  Next, we
   2100  1.1  christos          walk through the PDRs of these FDRs and locate the one that
   2101  1.1  christos          is closest to ADDR (i.e., for which the difference between
   2102  1.1  christos          ADDR and the PDR's entry point is positive and minimal).
   2103  1.1  christos          Once, the right FDR and PDR are located, we simply walk
   2104  1.1  christos          through the line-number table to lookup the line-number that
   2105  1.1  christos          best matches ADDR.  Obviously, things could be sped up by
   2106  1.1  christos          keeping a sorted list of PDRs instead of a sorted list of
   2107  1.1  christos          FDRs.  However, this would increase space requirements
   2108  1.1  christos          considerably, which is undesirable.  */
   2109  1.1  christos       external_pdr_size = debug_swap->external_pdr_size;
   2110  1.1  christos 
   2111  1.1  christos       /* eraxxon: The Horrible Hack: Because of the problems above, set 'i'
   2112  1.1  christos 	 to 0 so we look through all FDRs.
   2113  1.1  christos 
   2114  1.1  christos 	 Because FDR's without any symbols are assumed to be non-stabs,
   2115  1.1  christos 	 searching through all FDRs may cause the following code to try to
   2116  1.1  christos 	 read stabs FDRs as ECOFF ones.  However, I don't think this will
   2117  1.1  christos 	 harm anything.  */
   2118  1.1  christos       i = 0;
   2119  1.1  christos 
   2120  1.1  christos       /* Search FDR list starting at tab[i] for the PDR that best matches
   2121  1.1  christos          OFFSET.  Normally, the FDR list is only one entry long.  */
   2122  1.1  christos       best_fdr = NULL;
   2123  1.1  christos       do
   2124  1.1  christos 	{
   2125  1.1  christos 	  /* eraxxon: 'dist' and 'min_dist' can be negative now
   2126  1.1  christos              because we iterate over every FDR rather than just ones
   2127  1.1  christos              with a base address less than or equal to 'offset'.  */
   2128  1.1  christos 	  bfd_signed_vma dist = -1, min_dist = -1;
   2129  1.1  christos 	  char *pdr_hold;
   2130  1.1  christos 	  char *pdr_end;
   2131  1.1  christos 
   2132  1.1  christos 	  fdr_ptr = tab[i].fdr;
   2133  1.1  christos 
   2134  1.1  christos 	  pdr_ptr = ((char *) debug_info->external_pdr
   2135  1.1  christos 		     + fdr_ptr->ipdFirst * external_pdr_size);
   2136  1.1  christos 	  pdr_end = pdr_ptr + fdr_ptr->cpd * external_pdr_size;
   2137  1.1  christos 	  (*debug_swap->swap_pdr_in) (abfd, (PTR) pdr_ptr, &pdr);
   2138  1.1  christos 	  /* Find PDR that is closest to OFFSET.  If pdr.prof is set,
   2139  1.1  christos 	     the procedure entry-point *may* be 0x10 below pdr.adr.  We
   2140  1.1  christos 	     simply pretend that pdr.prof *implies* a lower entry-point.
   2141  1.1  christos 	     This is safe because it just means that may identify 4 NOPs
   2142  1.1  christos 	     in front of the function as belonging to the function.  */
   2143  1.1  christos 	  for (pdr_hold = NULL;
   2144  1.1  christos 	       pdr_ptr < pdr_end;
   2145  1.1  christos 	       (pdr_ptr += external_pdr_size,
   2146  1.1  christos 		(*debug_swap->swap_pdr_in) (abfd, (PTR) pdr_ptr, &pdr)))
   2147  1.1  christos 	    {
   2148  1.1  christos 	      if (offset >= (pdr.adr - 0x10 * pdr.prof))
   2149  1.1  christos 		{
   2150  1.1  christos 		  dist = offset - (pdr.adr - 0x10 * pdr.prof);
   2151  1.1  christos 
   2152  1.1  christos 		  /* eraxxon: 'dist' can be negative now.  Note that
   2153  1.1  christos                      'min_dist' can be negative if 'pdr_hold' below is NULL.  */
   2154  1.1  christos 		  if (!pdr_hold || (dist >= 0 && dist < min_dist))
   2155  1.1  christos 		    {
   2156  1.1  christos 		      min_dist = dist;
   2157  1.1  christos 		      pdr_hold = pdr_ptr;
   2158  1.1  christos 		    }
   2159  1.1  christos 		}
   2160  1.1  christos 	    }
   2161  1.1  christos 
   2162  1.1  christos 	  if (!best_pdr || (min_dist >= 0 && min_dist < best_dist))
   2163  1.1  christos 	    {
   2164  1.1  christos 	      best_dist = (bfd_vma) min_dist;
   2165  1.1  christos 	      best_fdr = fdr_ptr;
   2166  1.1  christos 	      best_pdr = pdr_hold;
   2167  1.1  christos 	    }
   2168  1.1  christos 	  /* Continue looping until base_addr of next entry is different.  */
   2169  1.1  christos 	}
   2170  1.1  christos       /* eraxxon: We want to iterate over all FDRs.
   2171  1.1  christos 	 See previous comment about 'fdrtab_lookup'.  */
   2172  1.1  christos       while (++i < line_info->fdrtab_len);
   2173  1.1  christos 
   2174  1.1  christos       if (!best_fdr || !best_pdr)
   2175  1.1  christos 	return FALSE;			/* Shouldn't happen...  */
   2176  1.1  christos 
   2177  1.1  christos       /* Phew, finally we got something that we can hold onto.  */
   2178  1.1  christos       fdr_ptr = best_fdr;
   2179  1.1  christos       pdr_ptr = best_pdr;
   2180  1.1  christos       (*debug_swap->swap_pdr_in) (abfd, (PTR) pdr_ptr, &pdr);
   2181  1.1  christos       /* Now we can look for the actual line number.  The line numbers
   2182  1.1  christos          are stored in a very funky format, which I won't try to
   2183  1.1  christos          describe.  The search is bounded by the end of the FDRs line
   2184  1.1  christos          number entries.  */
   2185  1.1  christos       line_end = debug_info->line + fdr_ptr->cbLineOffset + fdr_ptr->cbLine;
   2186  1.1  christos 
   2187  1.1  christos       /* Make offset relative to procedure entry.  */
   2188  1.1  christos       offset -= pdr.adr - 0x10 * pdr.prof;
   2189  1.1  christos       lineno = pdr.lnLow;
   2190  1.1  christos       line_ptr = debug_info->line + fdr_ptr->cbLineOffset + pdr.cbLineOffset;
   2191  1.1  christos       while (line_ptr < line_end)
   2192  1.1  christos 	{
   2193  1.1  christos 	  int delta;
   2194  1.1  christos 	  unsigned int count;
   2195  1.1  christos 
   2196  1.1  christos 	  delta = *line_ptr >> 4;
   2197  1.1  christos 	  if (delta >= 0x8)
   2198  1.1  christos 	    delta -= 0x10;
   2199  1.1  christos 	  count = (*line_ptr & 0xf) + 1;
   2200  1.1  christos 	  ++line_ptr;
   2201  1.1  christos 	  if (delta == -8)
   2202  1.1  christos 	    {
   2203  1.1  christos 	      delta = (((line_ptr[0]) & 0xff) << 8) + ((line_ptr[1]) & 0xff);
   2204  1.1  christos 	      if (delta >= 0x8000)
   2205  1.1  christos 		delta -= 0x10000;
   2206  1.1  christos 	      line_ptr += 2;
   2207  1.1  christos 	    }
   2208  1.1  christos 	  lineno += delta;
   2209  1.1  christos 	  if (offset < count * 4)
   2210  1.1  christos 	    {
   2211  1.1  christos 	      line_info->cache.stop += count * 4 - offset;
   2212  1.1  christos 	      break;
   2213  1.1  christos 	    }
   2214  1.1  christos 	  offset -= count * 4;
   2215  1.1  christos 	}
   2216  1.1  christos 
   2217  1.1  christos       /* If fdr_ptr->rss is -1, then this file does not have full
   2218  1.1  christos          symbols, at least according to gdb/mipsread.c.  */
   2219  1.1  christos       if (fdr_ptr->rss == -1)
   2220  1.1  christos 	{
   2221  1.1  christos 	  line_info->cache.filename = NULL;
   2222  1.1  christos 	  if (pdr.isym == -1)
   2223  1.1  christos 	    line_info->cache.functionname = NULL;
   2224  1.1  christos 	  else
   2225  1.1  christos 	    {
   2226  1.1  christos 	      EXTR proc_ext;
   2227  1.1  christos 
   2228  1.1  christos 	      (*debug_swap->swap_ext_in)
   2229  1.1  christos 		(abfd,
   2230  1.1  christos 		 ((char *) debug_info->external_ext
   2231  1.1  christos 		  + pdr.isym * debug_swap->external_ext_size),
   2232  1.1  christos 		 &proc_ext);
   2233  1.1  christos 	      line_info->cache.functionname = (debug_info->ssext
   2234  1.1  christos 					       + proc_ext.asym.iss);
   2235  1.1  christos 	    }
   2236  1.1  christos 	}
   2237  1.1  christos       else
   2238  1.1  christos 	{
   2239  1.1  christos 	  SYMR proc_sym;
   2240  1.1  christos 
   2241  1.1  christos 	  line_info->cache.filename = (debug_info->ss
   2242  1.1  christos 				       + fdr_ptr->issBase
   2243  1.1  christos 				       + fdr_ptr->rss);
   2244  1.1  christos 	  (*debug_swap->swap_sym_in)
   2245  1.1  christos 	    (abfd,
   2246  1.1  christos 	     ((char *) debug_info->external_sym
   2247  1.1  christos 	      + ((fdr_ptr->isymBase + pdr.isym)
   2248  1.1  christos 		 * debug_swap->external_sym_size)),
   2249  1.1  christos 	     &proc_sym);
   2250  1.1  christos 	  line_info->cache.functionname = (debug_info->ss
   2251  1.1  christos 					   + fdr_ptr->issBase
   2252  1.1  christos 					   + proc_sym.iss);
   2253  1.1  christos 	}
   2254  1.1  christos       if (lineno == ilineNil)
   2255  1.1  christos 	lineno = 0;
   2256  1.1  christos       line_info->cache.line_num = lineno;
   2257  1.1  christos     }
   2258  1.1  christos   else
   2259  1.1  christos     {
   2260  1.1  christos       bfd_size_type external_sym_size;
   2261  1.1  christos       const char *directory_name;
   2262  1.1  christos       const char *main_file_name;
   2263  1.1  christos       const char *current_file_name;
   2264  1.1  christos       const char *function_name;
   2265  1.1  christos       const char *line_file_name;
   2266  1.1  christos       bfd_vma low_func_vma;
   2267  1.1  christos       bfd_vma low_line_vma;
   2268  1.1  christos       bfd_boolean past_line;
   2269  1.1  christos       bfd_boolean past_fn;
   2270  1.1  christos       char *sym_ptr, *sym_ptr_end;
   2271  1.1  christos       size_t len, funclen;
   2272  1.1  christos       char *buffer = NULL;
   2273  1.1  christos 
   2274  1.1  christos       /* This file uses stabs debugging information.  When gcc is not
   2275  1.1  christos 	 optimizing, it will put the line number information before
   2276  1.1  christos 	 the function name stabs entry.  When gcc is optimizing, it
   2277  1.1  christos 	 will put the stabs entry for all the function first, followed
   2278  1.1  christos 	 by the line number information.  (This appears to happen
   2279  1.1  christos 	 because of the two output files used by the -mgpopt switch,
   2280  1.1  christos 	 which is implied by -O).  This means that we must keep
   2281  1.1  christos 	 looking through the symbols until we find both a line number
   2282  1.1  christos 	 and a function name which are beyond the address we want.  */
   2283  1.1  christos 
   2284  1.1  christos       line_info->cache.filename = NULL;
   2285  1.1  christos       line_info->cache.functionname = NULL;
   2286  1.1  christos       line_info->cache.line_num = 0;
   2287  1.1  christos 
   2288  1.1  christos       directory_name = NULL;
   2289  1.1  christos       main_file_name = NULL;
   2290  1.1  christos       current_file_name = NULL;
   2291  1.1  christos       function_name = NULL;
   2292  1.1  christos       line_file_name = NULL;
   2293  1.1  christos       low_func_vma = 0;
   2294  1.1  christos       low_line_vma = 0;
   2295  1.1  christos       past_line = FALSE;
   2296  1.1  christos       past_fn = FALSE;
   2297  1.1  christos 
   2298  1.1  christos       external_sym_size = debug_swap->external_sym_size;
   2299  1.1  christos 
   2300  1.1  christos       sym_ptr = ((char *) debug_info->external_sym
   2301  1.1  christos 		 + (fdr_ptr->isymBase + 2) * external_sym_size);
   2302  1.1  christos       sym_ptr_end = sym_ptr + (fdr_ptr->csym - 2) * external_sym_size;
   2303  1.1  christos       for (;
   2304  1.1  christos 	   sym_ptr < sym_ptr_end && (! past_line || ! past_fn);
   2305  1.1  christos 	   sym_ptr += external_sym_size)
   2306  1.1  christos 	{
   2307  1.1  christos 	  SYMR sym;
   2308  1.1  christos 
   2309  1.1  christos 	  (*debug_swap->swap_sym_in) (abfd, sym_ptr, &sym);
   2310  1.1  christos 
   2311  1.1  christos 	  if (ECOFF_IS_STAB (&sym))
   2312  1.1  christos 	    {
   2313  1.1  christos 	      switch (ECOFF_UNMARK_STAB (sym.index))
   2314  1.1  christos 		{
   2315  1.1  christos 		case N_SO:
   2316  1.1  christos 		  main_file_name = current_file_name =
   2317  1.1  christos 		    debug_info->ss + fdr_ptr->issBase + sym.iss;
   2318  1.1  christos 
   2319  1.1  christos 		  /* Check the next symbol to see if it is also an
   2320  1.1  christos                      N_SO symbol.  */
   2321  1.1  christos 		  if (sym_ptr + external_sym_size < sym_ptr_end)
   2322  1.1  christos 		    {
   2323  1.1  christos 		      SYMR nextsym;
   2324  1.1  christos 
   2325  1.1  christos 		      (*debug_swap->swap_sym_in) (abfd,
   2326  1.1  christos 						  sym_ptr + external_sym_size,
   2327  1.1  christos 						  &nextsym);
   2328  1.1  christos 		      if (ECOFF_IS_STAB (&nextsym)
   2329  1.1  christos 			  && ECOFF_UNMARK_STAB (nextsym.index) == N_SO)
   2330  1.1  christos 			{
   2331  1.1  christos  			  directory_name = current_file_name;
   2332  1.1  christos 			  main_file_name = current_file_name =
   2333  1.1  christos 			    debug_info->ss + fdr_ptr->issBase + nextsym.iss;
   2334  1.1  christos 			  sym_ptr += external_sym_size;
   2335  1.1  christos 			}
   2336  1.1  christos 		    }
   2337  1.1  christos 		  break;
   2338  1.1  christos 
   2339  1.1  christos 		case N_SOL:
   2340  1.1  christos 		  current_file_name =
   2341  1.1  christos 		    debug_info->ss + fdr_ptr->issBase + sym.iss;
   2342  1.1  christos 		  break;
   2343  1.1  christos 
   2344  1.1  christos 		case N_FUN:
   2345  1.1  christos 		  if (sym.value > offset)
   2346  1.1  christos 		    past_fn = TRUE;
   2347  1.1  christos 		  else if (sym.value >= low_func_vma)
   2348  1.1  christos 		    {
   2349  1.1  christos 		      low_func_vma = sym.value;
   2350  1.1  christos 		      function_name =
   2351  1.1  christos 			debug_info->ss + fdr_ptr->issBase + sym.iss;
   2352  1.1  christos 		    }
   2353  1.1  christos 		  break;
   2354  1.1  christos 		}
   2355  1.1  christos 	    }
   2356  1.1  christos 	  else if (sym.st == stLabel && sym.index != indexNil)
   2357  1.1  christos 	    {
   2358  1.1  christos 	      if (sym.value > offset)
   2359  1.1  christos 		past_line = TRUE;
   2360  1.1  christos 	      else if (sym.value >= low_line_vma)
   2361  1.1  christos 		{
   2362  1.1  christos 		  low_line_vma = sym.value;
   2363  1.1  christos 		  line_file_name = current_file_name;
   2364  1.1  christos 		  line_info->cache.line_num = sym.index;
   2365  1.1  christos 		}
   2366  1.1  christos 	    }
   2367  1.1  christos 	}
   2368  1.1  christos 
   2369  1.1  christos       if (line_info->cache.line_num != 0)
   2370  1.1  christos 	main_file_name = line_file_name;
   2371  1.1  christos 
   2372  1.1  christos       /* We need to remove the stuff after the colon in the function
   2373  1.1  christos          name.  We also need to put the directory name and the file
   2374  1.1  christos          name together.  */
   2375  1.1  christos       if (function_name == NULL)
   2376  1.1  christos 	len = funclen = 0;
   2377  1.1  christos       else
   2378  1.1  christos 	len = funclen = strlen (function_name) + 1;
   2379  1.1  christos 
   2380  1.1  christos       if (main_file_name != NULL
   2381  1.1  christos 	  && directory_name != NULL
   2382  1.1  christos 	  && main_file_name[0] != '/')
   2383  1.1  christos 	len += strlen (directory_name) + strlen (main_file_name) + 1;
   2384  1.1  christos 
   2385  1.1  christos       if (len != 0)
   2386  1.1  christos 	{
   2387  1.1  christos 	  if (line_info->find_buffer != NULL)
   2388  1.1  christos 	    free (line_info->find_buffer);
   2389  1.1  christos 	  buffer = (char *) bfd_malloc ((bfd_size_type) len);
   2390  1.1  christos 	  if (buffer == NULL)
   2391  1.1  christos 	    return FALSE;
   2392  1.1  christos 	  line_info->find_buffer = buffer;
   2393  1.1  christos 	}
   2394  1.1  christos 
   2395  1.1  christos       if (function_name != NULL)
   2396  1.1  christos 	{
   2397  1.1  christos 	  char *colon;
   2398  1.1  christos 
   2399  1.1  christos 	  strcpy (buffer, function_name);
   2400  1.1  christos 	  colon = strchr (buffer, ':');
   2401  1.1  christos 	  if (colon != NULL)
   2402  1.1  christos 	    *colon = '\0';
   2403  1.1  christos 	  line_info->cache.functionname = buffer;
   2404  1.1  christos 	}
   2405  1.1  christos 
   2406  1.1  christos       if (main_file_name != NULL)
   2407  1.1  christos 	{
   2408  1.1  christos 	  if (directory_name == NULL || main_file_name[0] == '/')
   2409  1.1  christos 	    line_info->cache.filename = main_file_name;
   2410  1.1  christos 	  else
   2411  1.1  christos 	    {
   2412  1.1  christos 	      sprintf (buffer + funclen, "%s%s", directory_name,
   2413  1.1  christos 		       main_file_name);
   2414  1.1  christos 	      line_info->cache.filename = buffer + funclen;
   2415  1.1  christos 	    }
   2416  1.1  christos 	}
   2417  1.1  christos     }
   2418  1.1  christos 
   2419  1.1  christos   return TRUE;
   2420  1.1  christos }
   2421  1.1  christos 
   2422  1.1  christos /* Do the work of find_nearest_line.  */
   2423  1.1  christos 
   2424  1.1  christos bfd_boolean
   2425  1.1  christos _bfd_ecoff_locate_line (abfd, section, offset, debug_info, debug_swap,
   2426  1.1  christos 			line_info, filename_ptr, functionname_ptr, retline_ptr)
   2427  1.1  christos      bfd *abfd;
   2428  1.1  christos      asection *section;
   2429  1.1  christos      bfd_vma offset;
   2430  1.1  christos      struct ecoff_debug_info * const debug_info;
   2431  1.1  christos      const struct ecoff_debug_swap * const debug_swap;
   2432  1.1  christos      struct ecoff_find_line *line_info;
   2433  1.1  christos      const char **filename_ptr;
   2434  1.1  christos      const char **functionname_ptr;
   2435  1.1  christos      unsigned int *retline_ptr;
   2436  1.1  christos {
   2437  1.1  christos   offset += section->vma;
   2438  1.1  christos 
   2439  1.1  christos   if (line_info->cache.sect == NULL
   2440  1.1  christos       || line_info->cache.sect != section
   2441  1.1  christos       || offset < line_info->cache.start
   2442  1.1  christos       || offset >= line_info->cache.stop)
   2443  1.1  christos     {
   2444  1.1  christos       line_info->cache.sect = section;
   2445  1.1  christos       line_info->cache.start = offset;
   2446  1.1  christos       line_info->cache.stop = offset;
   2447  1.1  christos       if (! lookup_line (abfd, debug_info, debug_swap, line_info))
   2448  1.1  christos 	{
   2449  1.1  christos 	  line_info->cache.sect = NULL;
   2450  1.1  christos 	  return FALSE;
   2451  1.1  christos 	}
   2452  1.1  christos     }
   2453  1.1  christos 
   2454  1.1  christos   *filename_ptr = line_info->cache.filename;
   2455  1.1  christos   *functionname_ptr = line_info->cache.functionname;
   2456  1.1  christos   *retline_ptr = line_info->cache.line_num;
   2457  1.1  christos 
   2458  1.1  christos   return TRUE;
   2459  1.1  christos }
   2460  1.1  christos 
   2461  1.1  christos /* These routines copy symbolic information into a memory buffer.
   2463  1.1  christos 
   2464  1.1  christos    FIXME: The whole point of the shuffle code is to avoid storing
   2465  1.1  christos    everything in memory, since the linker is such a memory hog.  This
   2466  1.1  christos    code makes that effort useless.  It is only called by the MIPS ELF
   2467  1.1  christos    code when generating a shared library, so it is not that big a
   2468  1.1  christos    deal, but it should be fixed eventually.  */
   2469  1.1  christos 
   2470  1.1  christos /* Collect a shuffle into a memory buffer.  */
   2471  1.1  christos 
   2472  1.1  christos static bfd_boolean ecoff_collect_shuffle
   2473  1.1  christos   PARAMS ((struct shuffle *, bfd_byte *));
   2474  1.1  christos 
   2475  1.1  christos static bfd_boolean
   2476  1.1  christos ecoff_collect_shuffle (l, buff)
   2477  1.1  christos      struct shuffle *l;
   2478  1.1  christos      bfd_byte *buff;
   2479  1.1  christos {
   2480  1.1  christos   unsigned long total;
   2481  1.1  christos 
   2482  1.1  christos   total = 0;
   2483  1.1  christos   for (; l != (struct shuffle *) NULL; l = l->next)
   2484  1.1  christos     {
   2485  1.1  christos       if (! l->filep)
   2486  1.1  christos 	memcpy (buff, l->u.memory, l->size);
   2487  1.1  christos       else
   2488  1.1  christos 	{
   2489  1.1  christos 	  if (bfd_seek (l->u.file.input_bfd, l->u.file.offset, SEEK_SET) != 0
   2490  1.1  christos 	      || (bfd_bread (buff, (bfd_size_type) l->size, l->u.file.input_bfd)
   2491  1.1  christos 		  != l->size))
   2492  1.1  christos 	    return FALSE;
   2493  1.1  christos 	}
   2494  1.1  christos       total += l->size;
   2495  1.1  christos       buff += l->size;
   2496  1.1  christos     }
   2497  1.1  christos 
   2498  1.1  christos   return TRUE;
   2499  1.1  christos }
   2500  1.1  christos 
   2501  1.1  christos /* Copy PDR information into a memory buffer.  */
   2502  1.1  christos 
   2503  1.1  christos bfd_boolean
   2504  1.1  christos _bfd_ecoff_get_accumulated_pdr (handle, buff)
   2505  1.1  christos      PTR handle;
   2506  1.1  christos      bfd_byte *buff;
   2507  1.1  christos {
   2508  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
   2509  1.1  christos 
   2510  1.1  christos   return ecoff_collect_shuffle (ainfo->pdr, buff);
   2511  1.1  christos }
   2512  1.1  christos 
   2513  1.1  christos /* Copy symbol information into a memory buffer.  */
   2514  1.1  christos 
   2515  1.1  christos bfd_boolean
   2516  1.1  christos _bfd_ecoff_get_accumulated_sym (handle, buff)
   2517  1.1  christos      PTR handle;
   2518  1.1  christos      bfd_byte *buff;
   2519  1.1  christos {
   2520  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
   2521  1.1  christos 
   2522  1.1  christos   return ecoff_collect_shuffle (ainfo->sym, buff);
   2523  1.1  christos }
   2524  1.1  christos 
   2525  1.1  christos /* Copy the string table into a memory buffer.  */
   2526  1.1  christos 
   2527  1.1  christos bfd_boolean
   2528  1.1  christos _bfd_ecoff_get_accumulated_ss (handle, buff)
   2529  1.1  christos      PTR handle;
   2530  1.1  christos      bfd_byte *buff;
   2531  1.1  christos {
   2532  1.1  christos   struct accumulate *ainfo = (struct accumulate *) handle;
   2533  1.1  christos   struct string_hash_entry *sh;
   2534  1.1  christos   unsigned long total;
   2535  1.1  christos 
   2536  1.1  christos   /* The string table is written out from the hash table if this is a
   2537  1.1  christos      final link.  */
   2538  1.1  christos   BFD_ASSERT (ainfo->ss == (struct shuffle *) NULL);
   2539  1.1  christos   *buff++ = '\0';
   2540  1.1  christos   total = 1;
   2541  1.1  christos   BFD_ASSERT (ainfo->ss_hash == NULL || ainfo->ss_hash->val == 1);
   2542  1.1  christos   for (sh = ainfo->ss_hash;
   2543  1.1  christos        sh != (struct string_hash_entry *) NULL;
   2544  1.1  christos        sh = sh->next)
   2545  1.1  christos     {
   2546  1.1  christos       size_t len;
   2547  1.1  christos 
   2548  1.1  christos       len = strlen (sh->root.string);
   2549  1.1  christos       memcpy (buff, (PTR) sh->root.string, len + 1);
   2550  1.1  christos       total += len + 1;
   2551                      buff += len + 1;
   2552                    }
   2553                
   2554                  return TRUE;
   2555                }
   2556