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elf32-spu.c revision 1.1.1.8
      1      1.1  christos /* SPU specific support for 32-bit ELF
      2      1.1  christos 
      3  1.1.1.8  christos    Copyright (C) 2006-2019 Free Software Foundation, Inc.
      4      1.1  christos 
      5      1.1  christos    This file is part of BFD, the Binary File Descriptor library.
      6      1.1  christos 
      7      1.1  christos    This program is free software; you can redistribute it and/or modify
      8      1.1  christos    it under the terms of the GNU General Public License as published by
      9      1.1  christos    the Free Software Foundation; either version 3 of the License, or
     10      1.1  christos    (at your option) any later version.
     11      1.1  christos 
     12      1.1  christos    This program is distributed in the hope that it will be useful,
     13      1.1  christos    but WITHOUT ANY WARRANTY; without even the implied warranty of
     14      1.1  christos    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     15      1.1  christos    GNU General Public License for more details.
     16      1.1  christos 
     17      1.1  christos    You should have received a copy of the GNU General Public License along
     18      1.1  christos    with this program; if not, write to the Free Software Foundation, Inc.,
     19      1.1  christos    51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.  */
     20      1.1  christos 
     21      1.1  christos #include "sysdep.h"
     22      1.1  christos #include "libiberty.h"
     23      1.1  christos #include "bfd.h"
     24      1.1  christos #include "bfdlink.h"
     25      1.1  christos #include "libbfd.h"
     26      1.1  christos #include "elf-bfd.h"
     27      1.1  christos #include "elf/spu.h"
     28      1.1  christos #include "elf32-spu.h"
     29      1.1  christos 
     30      1.1  christos /* We use RELA style relocs.  Don't define USE_REL.  */
     31      1.1  christos 
     32      1.1  christos static bfd_reloc_status_type spu_elf_rel9 (bfd *, arelent *, asymbol *,
     33      1.1  christos 					   void *, asection *,
     34      1.1  christos 					   bfd *, char **);
     35      1.1  christos 
     36      1.1  christos /* Values of type 'enum elf_spu_reloc_type' are used to index this
     37      1.1  christos    array, so it must be declared in the order of that type.  */
     38      1.1  christos 
     39      1.1  christos static reloc_howto_type elf_howto_table[] = {
     40  1.1.1.8  christos   HOWTO (R_SPU_NONE,	   0, 3,  0, FALSE,  0, complain_overflow_dont,
     41      1.1  christos 	 bfd_elf_generic_reloc, "SPU_NONE",
     42      1.1  christos 	 FALSE, 0, 0x00000000, FALSE),
     43  1.1.1.8  christos   HOWTO (R_SPU_ADDR10,	   4, 2, 10, FALSE, 14, complain_overflow_bitfield,
     44      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR10",
     45      1.1  christos 	 FALSE, 0, 0x00ffc000, FALSE),
     46  1.1.1.8  christos   HOWTO (R_SPU_ADDR16,	   2, 2, 16, FALSE,  7, complain_overflow_bitfield,
     47      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR16",
     48      1.1  christos 	 FALSE, 0, 0x007fff80, FALSE),
     49      1.1  christos   HOWTO (R_SPU_ADDR16_HI, 16, 2, 16, FALSE,  7, complain_overflow_bitfield,
     50      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR16_HI",
     51      1.1  christos 	 FALSE, 0, 0x007fff80, FALSE),
     52      1.1  christos   HOWTO (R_SPU_ADDR16_LO,  0, 2, 16, FALSE,  7, complain_overflow_dont,
     53      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR16_LO",
     54      1.1  christos 	 FALSE, 0, 0x007fff80, FALSE),
     55  1.1.1.8  christos   HOWTO (R_SPU_ADDR18,	   0, 2, 18, FALSE,  7, complain_overflow_bitfield,
     56      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR18",
     57      1.1  christos 	 FALSE, 0, 0x01ffff80, FALSE),
     58  1.1.1.8  christos   HOWTO (R_SPU_ADDR32,	   0, 2, 32, FALSE,  0, complain_overflow_dont,
     59      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR32",
     60      1.1  christos 	 FALSE, 0, 0xffffffff, FALSE),
     61  1.1.1.8  christos   HOWTO (R_SPU_REL16,	   2, 2, 16,  TRUE,  7, complain_overflow_bitfield,
     62      1.1  christos 	 bfd_elf_generic_reloc, "SPU_REL16",
     63      1.1  christos 	 FALSE, 0, 0x007fff80, TRUE),
     64  1.1.1.8  christos   HOWTO (R_SPU_ADDR7,	   0, 2,  7, FALSE, 14, complain_overflow_dont,
     65      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR7",
     66      1.1  christos 	 FALSE, 0, 0x001fc000, FALSE),
     67  1.1.1.8  christos   HOWTO (R_SPU_REL9,	   2, 2,  9,  TRUE,  0, complain_overflow_signed,
     68  1.1.1.8  christos 	 spu_elf_rel9,		"SPU_REL9",
     69      1.1  christos 	 FALSE, 0, 0x0180007f, TRUE),
     70  1.1.1.8  christos   HOWTO (R_SPU_REL9I,	   2, 2,  9,  TRUE,  0, complain_overflow_signed,
     71  1.1.1.8  christos 	 spu_elf_rel9,		"SPU_REL9I",
     72      1.1  christos 	 FALSE, 0, 0x0000c07f, TRUE),
     73  1.1.1.8  christos   HOWTO (R_SPU_ADDR10I,	   0, 2, 10, FALSE, 14, complain_overflow_signed,
     74      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR10I",
     75      1.1  christos 	 FALSE, 0, 0x00ffc000, FALSE),
     76  1.1.1.8  christos   HOWTO (R_SPU_ADDR16I,	   0, 2, 16, FALSE,  7, complain_overflow_signed,
     77      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR16I",
     78      1.1  christos 	 FALSE, 0, 0x007fff80, FALSE),
     79  1.1.1.8  christos   HOWTO (R_SPU_REL32,	   0, 2, 32, TRUE,  0, complain_overflow_dont,
     80      1.1  christos 	 bfd_elf_generic_reloc, "SPU_REL32",
     81      1.1  christos 	 FALSE, 0, 0xffffffff, TRUE),
     82  1.1.1.8  christos   HOWTO (R_SPU_ADDR16X,	   0, 2, 16, FALSE,  7, complain_overflow_bitfield,
     83      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADDR16X",
     84      1.1  christos 	 FALSE, 0, 0x007fff80, FALSE),
     85  1.1.1.8  christos   HOWTO (R_SPU_PPU32,	   0, 2, 32, FALSE,  0, complain_overflow_dont,
     86      1.1  christos 	 bfd_elf_generic_reloc, "SPU_PPU32",
     87      1.1  christos 	 FALSE, 0, 0xffffffff, FALSE),
     88  1.1.1.8  christos   HOWTO (R_SPU_PPU64,	   0, 4, 64, FALSE,  0, complain_overflow_dont,
     89      1.1  christos 	 bfd_elf_generic_reloc, "SPU_PPU64",
     90      1.1  christos 	 FALSE, 0, -1, FALSE),
     91  1.1.1.8  christos   HOWTO (R_SPU_ADD_PIC,	     0, 0, 0, FALSE,  0, complain_overflow_dont,
     92      1.1  christos 	 bfd_elf_generic_reloc, "SPU_ADD_PIC",
     93      1.1  christos 	 FALSE, 0, 0x00000000, FALSE),
     94      1.1  christos };
     95      1.1  christos 
     96      1.1  christos static struct bfd_elf_special_section const spu_elf_special_sections[] = {
     97      1.1  christos   { "._ea", 4, 0, SHT_PROGBITS, SHF_WRITE },
     98      1.1  christos   { ".toe", 4, 0, SHT_NOBITS, SHF_ALLOC },
     99      1.1  christos   { NULL, 0, 0, 0, 0 }
    100      1.1  christos };
    101      1.1  christos 
    102      1.1  christos static enum elf_spu_reloc_type
    103      1.1  christos spu_elf_bfd_to_reloc_type (bfd_reloc_code_real_type code)
    104      1.1  christos {
    105      1.1  christos   switch (code)
    106      1.1  christos     {
    107      1.1  christos     default:
    108  1.1.1.5  christos       return (enum elf_spu_reloc_type) -1;
    109  1.1.1.5  christos     case BFD_RELOC_NONE:
    110      1.1  christos       return R_SPU_NONE;
    111      1.1  christos     case BFD_RELOC_SPU_IMM10W:
    112      1.1  christos       return R_SPU_ADDR10;
    113      1.1  christos     case BFD_RELOC_SPU_IMM16W:
    114      1.1  christos       return R_SPU_ADDR16;
    115      1.1  christos     case BFD_RELOC_SPU_LO16:
    116      1.1  christos       return R_SPU_ADDR16_LO;
    117      1.1  christos     case BFD_RELOC_SPU_HI16:
    118      1.1  christos       return R_SPU_ADDR16_HI;
    119      1.1  christos     case BFD_RELOC_SPU_IMM18:
    120      1.1  christos       return R_SPU_ADDR18;
    121      1.1  christos     case BFD_RELOC_SPU_PCREL16:
    122      1.1  christos       return R_SPU_REL16;
    123      1.1  christos     case BFD_RELOC_SPU_IMM7:
    124      1.1  christos       return R_SPU_ADDR7;
    125      1.1  christos     case BFD_RELOC_SPU_IMM8:
    126      1.1  christos       return R_SPU_NONE;
    127      1.1  christos     case BFD_RELOC_SPU_PCREL9a:
    128      1.1  christos       return R_SPU_REL9;
    129      1.1  christos     case BFD_RELOC_SPU_PCREL9b:
    130      1.1  christos       return R_SPU_REL9I;
    131      1.1  christos     case BFD_RELOC_SPU_IMM10:
    132      1.1  christos       return R_SPU_ADDR10I;
    133      1.1  christos     case BFD_RELOC_SPU_IMM16:
    134      1.1  christos       return R_SPU_ADDR16I;
    135      1.1  christos     case BFD_RELOC_32:
    136      1.1  christos       return R_SPU_ADDR32;
    137      1.1  christos     case BFD_RELOC_32_PCREL:
    138      1.1  christos       return R_SPU_REL32;
    139      1.1  christos     case BFD_RELOC_SPU_PPU32:
    140      1.1  christos       return R_SPU_PPU32;
    141      1.1  christos     case BFD_RELOC_SPU_PPU64:
    142      1.1  christos       return R_SPU_PPU64;
    143      1.1  christos     case BFD_RELOC_SPU_ADD_PIC:
    144      1.1  christos       return R_SPU_ADD_PIC;
    145      1.1  christos     }
    146      1.1  christos }
    147      1.1  christos 
    148  1.1.1.8  christos static bfd_boolean
    149  1.1.1.8  christos spu_elf_info_to_howto (bfd *abfd,
    150      1.1  christos 		       arelent *cache_ptr,
    151      1.1  christos 		       Elf_Internal_Rela *dst)
    152      1.1  christos {
    153      1.1  christos   enum elf_spu_reloc_type r_type;
    154      1.1  christos 
    155      1.1  christos   r_type = (enum elf_spu_reloc_type) ELF32_R_TYPE (dst->r_info);
    156  1.1.1.5  christos   /* PR 17512: file: 90c2a92e.  */
    157  1.1.1.5  christos   if (r_type >= R_SPU_max)
    158  1.1.1.5  christos     {
    159  1.1.1.7  christos       /* xgettext:c-format */
    160  1.1.1.8  christos       _bfd_error_handler (_("%pB: unsupported relocation type %#x"),
    161  1.1.1.7  christos 			  abfd, r_type);
    162  1.1.1.5  christos       bfd_set_error (bfd_error_bad_value);
    163  1.1.1.8  christos       return FALSE;
    164  1.1.1.5  christos     }
    165      1.1  christos   cache_ptr->howto = &elf_howto_table[(int) r_type];
    166  1.1.1.8  christos   return TRUE;
    167      1.1  christos }
    168      1.1  christos 
    169      1.1  christos static reloc_howto_type *
    170      1.1  christos spu_elf_reloc_type_lookup (bfd *abfd ATTRIBUTE_UNUSED,
    171      1.1  christos 			   bfd_reloc_code_real_type code)
    172      1.1  christos {
    173      1.1  christos   enum elf_spu_reloc_type r_type = spu_elf_bfd_to_reloc_type (code);
    174      1.1  christos 
    175  1.1.1.5  christos   if (r_type == (enum elf_spu_reloc_type) -1)
    176      1.1  christos     return NULL;
    177      1.1  christos 
    178      1.1  christos   return elf_howto_table + r_type;
    179      1.1  christos }
    180      1.1  christos 
    181      1.1  christos static reloc_howto_type *
    182      1.1  christos spu_elf_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
    183      1.1  christos 			   const char *r_name)
    184      1.1  christos {
    185      1.1  christos   unsigned int i;
    186      1.1  christos 
    187      1.1  christos   for (i = 0; i < sizeof (elf_howto_table) / sizeof (elf_howto_table[0]); i++)
    188      1.1  christos     if (elf_howto_table[i].name != NULL
    189      1.1  christos 	&& strcasecmp (elf_howto_table[i].name, r_name) == 0)
    190      1.1  christos       return &elf_howto_table[i];
    191      1.1  christos 
    192      1.1  christos   return NULL;
    193      1.1  christos }
    194      1.1  christos 
    195      1.1  christos /* Apply R_SPU_REL9 and R_SPU_REL9I relocs.  */
    196      1.1  christos 
    197      1.1  christos static bfd_reloc_status_type
    198      1.1  christos spu_elf_rel9 (bfd *abfd, arelent *reloc_entry, asymbol *symbol,
    199      1.1  christos 	      void *data, asection *input_section,
    200      1.1  christos 	      bfd *output_bfd, char **error_message)
    201      1.1  christos {
    202      1.1  christos   bfd_size_type octets;
    203      1.1  christos   bfd_vma val;
    204      1.1  christos   long insn;
    205      1.1  christos 
    206      1.1  christos   /* If this is a relocatable link (output_bfd test tells us), just
    207      1.1  christos      call the generic function.  Any adjustment will be done at final
    208      1.1  christos      link time.  */
    209      1.1  christos   if (output_bfd != NULL)
    210      1.1  christos     return bfd_elf_generic_reloc (abfd, reloc_entry, symbol, data,
    211      1.1  christos 				  input_section, output_bfd, error_message);
    212      1.1  christos 
    213      1.1  christos   if (reloc_entry->address > bfd_get_section_limit (abfd, input_section))
    214      1.1  christos     return bfd_reloc_outofrange;
    215      1.1  christos   octets = reloc_entry->address * bfd_octets_per_byte (abfd);
    216      1.1  christos 
    217      1.1  christos   /* Get symbol value.  */
    218      1.1  christos   val = 0;
    219      1.1  christos   if (!bfd_is_com_section (symbol->section))
    220      1.1  christos     val = symbol->value;
    221      1.1  christos   if (symbol->section->output_section)
    222      1.1  christos     val += symbol->section->output_section->vma;
    223      1.1  christos 
    224      1.1  christos   val += reloc_entry->addend;
    225      1.1  christos 
    226      1.1  christos   /* Make it pc-relative.  */
    227      1.1  christos   val -= input_section->output_section->vma + input_section->output_offset;
    228      1.1  christos 
    229      1.1  christos   val >>= 2;
    230      1.1  christos   if (val + 256 >= 512)
    231      1.1  christos     return bfd_reloc_overflow;
    232      1.1  christos 
    233      1.1  christos   insn = bfd_get_32 (abfd, (bfd_byte *) data + octets);
    234      1.1  christos 
    235      1.1  christos   /* Move two high bits of value to REL9I and REL9 position.
    236      1.1  christos      The mask will take care of selecting the right field.  */
    237      1.1  christos   val = (val & 0x7f) | ((val & 0x180) << 7) | ((val & 0x180) << 16);
    238      1.1  christos   insn &= ~reloc_entry->howto->dst_mask;
    239      1.1  christos   insn |= val & reloc_entry->howto->dst_mask;
    240      1.1  christos   bfd_put_32 (abfd, insn, (bfd_byte *) data + octets);
    241      1.1  christos   return bfd_reloc_ok;
    242      1.1  christos }
    243      1.1  christos 
    244      1.1  christos static bfd_boolean
    245      1.1  christos spu_elf_new_section_hook (bfd *abfd, asection *sec)
    246      1.1  christos {
    247      1.1  christos   if (!sec->used_by_bfd)
    248      1.1  christos     {
    249      1.1  christos       struct _spu_elf_section_data *sdata;
    250      1.1  christos 
    251      1.1  christos       sdata = bfd_zalloc (abfd, sizeof (*sdata));
    252      1.1  christos       if (sdata == NULL)
    253      1.1  christos 	return FALSE;
    254      1.1  christos       sec->used_by_bfd = sdata;
    255      1.1  christos     }
    256      1.1  christos 
    257      1.1  christos   return _bfd_elf_new_section_hook (abfd, sec);
    258      1.1  christos }
    259      1.1  christos 
    260      1.1  christos /* Set up overlay info for executables.  */
    261      1.1  christos 
    262      1.1  christos static bfd_boolean
    263      1.1  christos spu_elf_object_p (bfd *abfd)
    264      1.1  christos {
    265      1.1  christos   if ((abfd->flags & (EXEC_P | DYNAMIC)) != 0)
    266      1.1  christos     {
    267      1.1  christos       unsigned int i, num_ovl, num_buf;
    268      1.1  christos       Elf_Internal_Phdr *phdr = elf_tdata (abfd)->phdr;
    269      1.1  christos       Elf_Internal_Ehdr *ehdr = elf_elfheader (abfd);
    270      1.1  christos       Elf_Internal_Phdr *last_phdr = NULL;
    271      1.1  christos 
    272      1.1  christos       for (num_buf = 0, num_ovl = 0, i = 0; i < ehdr->e_phnum; i++, phdr++)
    273      1.1  christos 	if (phdr->p_type == PT_LOAD && (phdr->p_flags & PF_OVERLAY) != 0)
    274      1.1  christos 	  {
    275      1.1  christos 	    unsigned int j;
    276      1.1  christos 
    277      1.1  christos 	    ++num_ovl;
    278      1.1  christos 	    if (last_phdr == NULL
    279      1.1  christos 		|| ((last_phdr->p_vaddr ^ phdr->p_vaddr) & 0x3ffff) != 0)
    280      1.1  christos 	      ++num_buf;
    281      1.1  christos 	    last_phdr = phdr;
    282      1.1  christos 	    for (j = 1; j < elf_numsections (abfd); j++)
    283      1.1  christos 	      {
    284      1.1  christos 		Elf_Internal_Shdr *shdr = elf_elfsections (abfd)[j];
    285      1.1  christos 
    286      1.1  christos 		if (ELF_SECTION_SIZE (shdr, phdr) != 0
    287      1.1  christos 		    && ELF_SECTION_IN_SEGMENT (shdr, phdr))
    288      1.1  christos 		  {
    289      1.1  christos 		    asection *sec = shdr->bfd_section;
    290      1.1  christos 		    spu_elf_section_data (sec)->u.o.ovl_index = num_ovl;
    291      1.1  christos 		    spu_elf_section_data (sec)->u.o.ovl_buf = num_buf;
    292      1.1  christos 		  }
    293      1.1  christos 	      }
    294      1.1  christos 	  }
    295      1.1  christos     }
    296      1.1  christos   return TRUE;
    297      1.1  christos }
    298      1.1  christos 
    299      1.1  christos /* Specially mark defined symbols named _EAR_* with BSF_KEEP so that
    300      1.1  christos    strip --strip-unneeded will not remove them.  */
    301      1.1  christos 
    302      1.1  christos static void
    303      1.1  christos spu_elf_backend_symbol_processing (bfd *abfd ATTRIBUTE_UNUSED, asymbol *sym)
    304      1.1  christos {
    305      1.1  christos   if (sym->name != NULL
    306      1.1  christos       && sym->section != bfd_abs_section_ptr
    307      1.1  christos       && strncmp (sym->name, "_EAR_", 5) == 0)
    308      1.1  christos     sym->flags |= BSF_KEEP;
    309      1.1  christos }
    310      1.1  christos 
    311      1.1  christos /* SPU ELF linker hash table.  */
    312      1.1  christos 
    313      1.1  christos struct spu_link_hash_table
    314      1.1  christos {
    315      1.1  christos   struct elf_link_hash_table elf;
    316      1.1  christos 
    317      1.1  christos   struct spu_elf_params *params;
    318      1.1  christos 
    319      1.1  christos   /* Shortcuts to overlay sections.  */
    320      1.1  christos   asection *ovtab;
    321      1.1  christos   asection *init;
    322      1.1  christos   asection *toe;
    323      1.1  christos   asection **ovl_sec;
    324      1.1  christos 
    325      1.1  christos   /* Count of stubs in each overlay section.  */
    326      1.1  christos   unsigned int *stub_count;
    327      1.1  christos 
    328      1.1  christos   /* The stub section for each overlay section.  */
    329      1.1  christos   asection **stub_sec;
    330      1.1  christos 
    331      1.1  christos   struct elf_link_hash_entry *ovly_entry[2];
    332      1.1  christos 
    333      1.1  christos   /* Number of overlay buffers.  */
    334      1.1  christos   unsigned int num_buf;
    335      1.1  christos 
    336      1.1  christos   /* Total number of overlays.  */
    337      1.1  christos   unsigned int num_overlays;
    338      1.1  christos 
    339      1.1  christos   /* For soft icache.  */
    340      1.1  christos   unsigned int line_size_log2;
    341      1.1  christos   unsigned int num_lines_log2;
    342      1.1  christos   unsigned int fromelem_size_log2;
    343      1.1  christos 
    344      1.1  christos   /* How much memory we have.  */
    345      1.1  christos   unsigned int local_store;
    346      1.1  christos 
    347      1.1  christos   /* Count of overlay stubs needed in non-overlay area.  */
    348      1.1  christos   unsigned int non_ovly_stub;
    349      1.1  christos 
    350      1.1  christos   /* Pointer to the fixup section */
    351      1.1  christos   asection *sfixup;
    352      1.1  christos 
    353      1.1  christos   /* Set on error.  */
    354      1.1  christos   unsigned int stub_err : 1;
    355      1.1  christos };
    356      1.1  christos 
    357      1.1  christos /* Hijack the generic got fields for overlay stub accounting.  */
    358      1.1  christos 
    359      1.1  christos struct got_entry
    360      1.1  christos {
    361      1.1  christos   struct got_entry *next;
    362      1.1  christos   unsigned int ovl;
    363      1.1  christos   union {
    364      1.1  christos     bfd_vma addend;
    365      1.1  christos     bfd_vma br_addr;
    366      1.1  christos   };
    367      1.1  christos   bfd_vma stub_addr;
    368      1.1  christos };
    369      1.1  christos 
    370      1.1  christos #define spu_hash_table(p) \
    371      1.1  christos   (elf_hash_table_id ((struct elf_link_hash_table *) ((p)->hash)) \
    372      1.1  christos   == SPU_ELF_DATA ? ((struct spu_link_hash_table *) ((p)->hash)) : NULL)
    373      1.1  christos 
    374      1.1  christos struct call_info
    375      1.1  christos {
    376      1.1  christos   struct function_info *fun;
    377      1.1  christos   struct call_info *next;
    378      1.1  christos   unsigned int count;
    379      1.1  christos   unsigned int max_depth;
    380      1.1  christos   unsigned int is_tail : 1;
    381      1.1  christos   unsigned int is_pasted : 1;
    382      1.1  christos   unsigned int broken_cycle : 1;
    383      1.1  christos   unsigned int priority : 13;
    384      1.1  christos };
    385      1.1  christos 
    386      1.1  christos struct function_info
    387      1.1  christos {
    388      1.1  christos   /* List of functions called.  Also branches to hot/cold part of
    389      1.1  christos      function.  */
    390      1.1  christos   struct call_info *call_list;
    391      1.1  christos   /* For hot/cold part of function, point to owner.  */
    392      1.1  christos   struct function_info *start;
    393      1.1  christos   /* Symbol at start of function.  */
    394      1.1  christos   union {
    395      1.1  christos     Elf_Internal_Sym *sym;
    396      1.1  christos     struct elf_link_hash_entry *h;
    397      1.1  christos   } u;
    398      1.1  christos   /* Function section.  */
    399      1.1  christos   asection *sec;
    400      1.1  christos   asection *rodata;
    401      1.1  christos   /* Where last called from, and number of sections called from.  */
    402      1.1  christos   asection *last_caller;
    403      1.1  christos   unsigned int call_count;
    404      1.1  christos   /* Address range of (this part of) function.  */
    405      1.1  christos   bfd_vma lo, hi;
    406      1.1  christos   /* Offset where we found a store of lr, or -1 if none found.  */
    407      1.1  christos   bfd_vma lr_store;
    408      1.1  christos   /* Offset where we found the stack adjustment insn.  */
    409      1.1  christos   bfd_vma sp_adjust;
    410      1.1  christos   /* Stack usage.  */
    411      1.1  christos   int stack;
    412      1.1  christos   /* Distance from root of call tree.  Tail and hot/cold branches
    413      1.1  christos      count as one deeper.  We aren't counting stack frames here.  */
    414      1.1  christos   unsigned int depth;
    415      1.1  christos   /* Set if global symbol.  */
    416      1.1  christos   unsigned int global : 1;
    417      1.1  christos   /* Set if known to be start of function (as distinct from a hunk
    418      1.1  christos      in hot/cold section.  */
    419      1.1  christos   unsigned int is_func : 1;
    420      1.1  christos   /* Set if not a root node.  */
    421      1.1  christos   unsigned int non_root : 1;
    422      1.1  christos   /* Flags used during call tree traversal.  It's cheaper to replicate
    423      1.1  christos      the visit flags than have one which needs clearing after a traversal.  */
    424      1.1  christos   unsigned int visit1 : 1;
    425      1.1  christos   unsigned int visit2 : 1;
    426      1.1  christos   unsigned int marking : 1;
    427      1.1  christos   unsigned int visit3 : 1;
    428      1.1  christos   unsigned int visit4 : 1;
    429      1.1  christos   unsigned int visit5 : 1;
    430      1.1  christos   unsigned int visit6 : 1;
    431      1.1  christos   unsigned int visit7 : 1;
    432      1.1  christos };
    433      1.1  christos 
    434      1.1  christos struct spu_elf_stack_info
    435      1.1  christos {
    436      1.1  christos   int num_fun;
    437      1.1  christos   int max_fun;
    438      1.1  christos   /* Variable size array describing functions, one per contiguous
    439      1.1  christos      address range belonging to a function.  */
    440      1.1  christos   struct function_info fun[1];
    441      1.1  christos };
    442      1.1  christos 
    443      1.1  christos static struct function_info *find_function (asection *, bfd_vma,
    444      1.1  christos 					    struct bfd_link_info *);
    445      1.1  christos 
    446      1.1  christos /* Create a spu ELF linker hash table.  */
    447      1.1  christos 
    448      1.1  christos static struct bfd_link_hash_table *
    449      1.1  christos spu_elf_link_hash_table_create (bfd *abfd)
    450      1.1  christos {
    451      1.1  christos   struct spu_link_hash_table *htab;
    452      1.1  christos 
    453  1.1.1.2  christos   htab = bfd_zmalloc (sizeof (*htab));
    454      1.1  christos   if (htab == NULL)
    455      1.1  christos     return NULL;
    456      1.1  christos 
    457      1.1  christos   if (!_bfd_elf_link_hash_table_init (&htab->elf, abfd,
    458      1.1  christos 				      _bfd_elf_link_hash_newfunc,
    459      1.1  christos 				      sizeof (struct elf_link_hash_entry),
    460      1.1  christos 				      SPU_ELF_DATA))
    461      1.1  christos     {
    462      1.1  christos       free (htab);
    463      1.1  christos       return NULL;
    464      1.1  christos     }
    465      1.1  christos 
    466      1.1  christos   htab->elf.init_got_refcount.refcount = 0;
    467      1.1  christos   htab->elf.init_got_refcount.glist = NULL;
    468      1.1  christos   htab->elf.init_got_offset.offset = 0;
    469      1.1  christos   htab->elf.init_got_offset.glist = NULL;
    470      1.1  christos   return &htab->elf.root;
    471      1.1  christos }
    472      1.1  christos 
    473      1.1  christos void
    474      1.1  christos spu_elf_setup (struct bfd_link_info *info, struct spu_elf_params *params)
    475      1.1  christos {
    476      1.1  christos   bfd_vma max_branch_log2;
    477      1.1  christos 
    478      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
    479      1.1  christos   htab->params = params;
    480      1.1  christos   htab->line_size_log2 = bfd_log2 (htab->params->line_size);
    481      1.1  christos   htab->num_lines_log2 = bfd_log2 (htab->params->num_lines);
    482      1.1  christos 
    483      1.1  christos   /* For the software i-cache, we provide a "from" list whose size
    484      1.1  christos      is a power-of-two number of quadwords, big enough to hold one
    485      1.1  christos      byte per outgoing branch.  Compute this number here.  */
    486      1.1  christos   max_branch_log2 = bfd_log2 (htab->params->max_branch);
    487      1.1  christos   htab->fromelem_size_log2 = max_branch_log2 > 4 ? max_branch_log2 - 4 : 0;
    488      1.1  christos }
    489      1.1  christos 
    490      1.1  christos /* Find the symbol for the given R_SYMNDX in IBFD and set *HP and *SYMP
    491      1.1  christos    to (hash, NULL) for global symbols, and (NULL, sym) for locals.  Set
    492      1.1  christos    *SYMSECP to the symbol's section.  *LOCSYMSP caches local syms.  */
    493      1.1  christos 
    494      1.1  christos static bfd_boolean
    495      1.1  christos get_sym_h (struct elf_link_hash_entry **hp,
    496      1.1  christos 	   Elf_Internal_Sym **symp,
    497      1.1  christos 	   asection **symsecp,
    498      1.1  christos 	   Elf_Internal_Sym **locsymsp,
    499      1.1  christos 	   unsigned long r_symndx,
    500      1.1  christos 	   bfd *ibfd)
    501      1.1  christos {
    502      1.1  christos   Elf_Internal_Shdr *symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
    503      1.1  christos 
    504      1.1  christos   if (r_symndx >= symtab_hdr->sh_info)
    505      1.1  christos     {
    506      1.1  christos       struct elf_link_hash_entry **sym_hashes = elf_sym_hashes (ibfd);
    507      1.1  christos       struct elf_link_hash_entry *h;
    508      1.1  christos 
    509      1.1  christos       h = sym_hashes[r_symndx - symtab_hdr->sh_info];
    510      1.1  christos       while (h->root.type == bfd_link_hash_indirect
    511      1.1  christos 	     || h->root.type == bfd_link_hash_warning)
    512      1.1  christos 	h = (struct elf_link_hash_entry *) h->root.u.i.link;
    513      1.1  christos 
    514      1.1  christos       if (hp != NULL)
    515      1.1  christos 	*hp = h;
    516      1.1  christos 
    517      1.1  christos       if (symp != NULL)
    518      1.1  christos 	*symp = NULL;
    519      1.1  christos 
    520      1.1  christos       if (symsecp != NULL)
    521      1.1  christos 	{
    522      1.1  christos 	  asection *symsec = NULL;
    523      1.1  christos 	  if (h->root.type == bfd_link_hash_defined
    524      1.1  christos 	      || h->root.type == bfd_link_hash_defweak)
    525      1.1  christos 	    symsec = h->root.u.def.section;
    526      1.1  christos 	  *symsecp = symsec;
    527      1.1  christos 	}
    528      1.1  christos     }
    529      1.1  christos   else
    530      1.1  christos     {
    531      1.1  christos       Elf_Internal_Sym *sym;
    532      1.1  christos       Elf_Internal_Sym *locsyms = *locsymsp;
    533      1.1  christos 
    534      1.1  christos       if (locsyms == NULL)
    535      1.1  christos 	{
    536      1.1  christos 	  locsyms = (Elf_Internal_Sym *) symtab_hdr->contents;
    537      1.1  christos 	  if (locsyms == NULL)
    538      1.1  christos 	    locsyms = bfd_elf_get_elf_syms (ibfd, symtab_hdr,
    539      1.1  christos 					    symtab_hdr->sh_info,
    540      1.1  christos 					    0, NULL, NULL, NULL);
    541      1.1  christos 	  if (locsyms == NULL)
    542      1.1  christos 	    return FALSE;
    543      1.1  christos 	  *locsymsp = locsyms;
    544      1.1  christos 	}
    545      1.1  christos       sym = locsyms + r_symndx;
    546      1.1  christos 
    547      1.1  christos       if (hp != NULL)
    548      1.1  christos 	*hp = NULL;
    549      1.1  christos 
    550      1.1  christos       if (symp != NULL)
    551      1.1  christos 	*symp = sym;
    552      1.1  christos 
    553      1.1  christos       if (symsecp != NULL)
    554      1.1  christos 	*symsecp = bfd_section_from_elf_index (ibfd, sym->st_shndx);
    555      1.1  christos     }
    556      1.1  christos 
    557      1.1  christos   return TRUE;
    558      1.1  christos }
    559      1.1  christos 
    560      1.1  christos /* Create the note section if not already present.  This is done early so
    561      1.1  christos    that the linker maps the sections to the right place in the output.  */
    562      1.1  christos 
    563      1.1  christos bfd_boolean
    564      1.1  christos spu_elf_create_sections (struct bfd_link_info *info)
    565      1.1  christos {
    566      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
    567      1.1  christos   bfd *ibfd;
    568      1.1  christos 
    569  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
    570      1.1  christos     if (bfd_get_section_by_name (ibfd, SPU_PTNOTE_SPUNAME) != NULL)
    571      1.1  christos       break;
    572      1.1  christos 
    573      1.1  christos   if (ibfd == NULL)
    574      1.1  christos     {
    575      1.1  christos       /* Make SPU_PTNOTE_SPUNAME section.  */
    576      1.1  christos       asection *s;
    577      1.1  christos       size_t name_len;
    578      1.1  christos       size_t size;
    579      1.1  christos       bfd_byte *data;
    580      1.1  christos       flagword flags;
    581      1.1  christos 
    582      1.1  christos       ibfd = info->input_bfds;
    583  1.1.1.8  christos       /* This should really be SEC_LINKER_CREATED, but then we'd need
    584  1.1.1.8  christos 	 to write out the section ourselves.  */
    585      1.1  christos       flags = SEC_LOAD | SEC_READONLY | SEC_HAS_CONTENTS | SEC_IN_MEMORY;
    586      1.1  christos       s = bfd_make_section_anyway_with_flags (ibfd, SPU_PTNOTE_SPUNAME, flags);
    587      1.1  christos       if (s == NULL
    588      1.1  christos 	  || !bfd_set_section_alignment (ibfd, s, 4))
    589      1.1  christos 	return FALSE;
    590  1.1.1.8  christos       /* Because we didn't set SEC_LINKER_CREATED we need to set the
    591  1.1.1.8  christos 	 proper section type.  */
    592  1.1.1.8  christos       elf_section_type (s) = SHT_NOTE;
    593      1.1  christos 
    594      1.1  christos       name_len = strlen (bfd_get_filename (info->output_bfd)) + 1;
    595      1.1  christos       size = 12 + ((sizeof (SPU_PLUGIN_NAME) + 3) & -4);
    596      1.1  christos       size += (name_len + 3) & -4;
    597      1.1  christos 
    598      1.1  christos       if (!bfd_set_section_size (ibfd, s, size))
    599      1.1  christos 	return FALSE;
    600      1.1  christos 
    601      1.1  christos       data = bfd_zalloc (ibfd, size);
    602      1.1  christos       if (data == NULL)
    603      1.1  christos 	return FALSE;
    604      1.1  christos 
    605      1.1  christos       bfd_put_32 (ibfd, sizeof (SPU_PLUGIN_NAME), data + 0);
    606      1.1  christos       bfd_put_32 (ibfd, name_len, data + 4);
    607      1.1  christos       bfd_put_32 (ibfd, 1, data + 8);
    608      1.1  christos       memcpy (data + 12, SPU_PLUGIN_NAME, sizeof (SPU_PLUGIN_NAME));
    609      1.1  christos       memcpy (data + 12 + ((sizeof (SPU_PLUGIN_NAME) + 3) & -4),
    610      1.1  christos 	      bfd_get_filename (info->output_bfd), name_len);
    611      1.1  christos       s->contents = data;
    612      1.1  christos     }
    613      1.1  christos 
    614      1.1  christos   if (htab->params->emit_fixups)
    615      1.1  christos     {
    616      1.1  christos       asection *s;
    617      1.1  christos       flagword flags;
    618      1.1  christos 
    619      1.1  christos       if (htab->elf.dynobj == NULL)
    620      1.1  christos 	htab->elf.dynobj = ibfd;
    621      1.1  christos       ibfd = htab->elf.dynobj;
    622      1.1  christos       flags = (SEC_LOAD | SEC_ALLOC | SEC_READONLY | SEC_HAS_CONTENTS
    623      1.1  christos 	       | SEC_IN_MEMORY | SEC_LINKER_CREATED);
    624      1.1  christos       s = bfd_make_section_anyway_with_flags (ibfd, ".fixup", flags);
    625      1.1  christos       if (s == NULL || !bfd_set_section_alignment (ibfd, s, 2))
    626      1.1  christos 	return FALSE;
    627      1.1  christos       htab->sfixup = s;
    628      1.1  christos     }
    629      1.1  christos 
    630      1.1  christos   return TRUE;
    631      1.1  christos }
    632      1.1  christos 
    633      1.1  christos /* qsort predicate to sort sections by vma.  */
    634      1.1  christos 
    635      1.1  christos static int
    636      1.1  christos sort_sections (const void *a, const void *b)
    637      1.1  christos {
    638      1.1  christos   const asection *const *s1 = a;
    639      1.1  christos   const asection *const *s2 = b;
    640      1.1  christos   bfd_signed_vma delta = (*s1)->vma - (*s2)->vma;
    641      1.1  christos 
    642      1.1  christos   if (delta != 0)
    643      1.1  christos     return delta < 0 ? -1 : 1;
    644      1.1  christos 
    645      1.1  christos   return (*s1)->index - (*s2)->index;
    646      1.1  christos }
    647      1.1  christos 
    648      1.1  christos /* Identify overlays in the output bfd, and number them.
    649      1.1  christos    Returns 0 on error, 1 if no overlays, 2 if overlays.  */
    650      1.1  christos 
    651      1.1  christos int
    652      1.1  christos spu_elf_find_overlays (struct bfd_link_info *info)
    653      1.1  christos {
    654      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
    655      1.1  christos   asection **alloc_sec;
    656      1.1  christos   unsigned int i, n, ovl_index, num_buf;
    657      1.1  christos   asection *s;
    658      1.1  christos   bfd_vma ovl_end;
    659      1.1  christos   static const char *const entry_names[2][2] = {
    660      1.1  christos     { "__ovly_load", "__icache_br_handler" },
    661      1.1  christos     { "__ovly_return", "__icache_call_handler" }
    662      1.1  christos   };
    663      1.1  christos 
    664      1.1  christos   if (info->output_bfd->section_count < 2)
    665      1.1  christos     return 1;
    666      1.1  christos 
    667      1.1  christos   alloc_sec
    668      1.1  christos     = bfd_malloc (info->output_bfd->section_count * sizeof (*alloc_sec));
    669      1.1  christos   if (alloc_sec == NULL)
    670      1.1  christos     return 0;
    671      1.1  christos 
    672      1.1  christos   /* Pick out all the alloced sections.  */
    673      1.1  christos   for (n = 0, s = info->output_bfd->sections; s != NULL; s = s->next)
    674      1.1  christos     if ((s->flags & SEC_ALLOC) != 0
    675      1.1  christos 	&& (s->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) != SEC_THREAD_LOCAL
    676      1.1  christos 	&& s->size != 0)
    677      1.1  christos       alloc_sec[n++] = s;
    678      1.1  christos 
    679      1.1  christos   if (n == 0)
    680      1.1  christos     {
    681      1.1  christos       free (alloc_sec);
    682      1.1  christos       return 1;
    683      1.1  christos     }
    684      1.1  christos 
    685      1.1  christos   /* Sort them by vma.  */
    686      1.1  christos   qsort (alloc_sec, n, sizeof (*alloc_sec), sort_sections);
    687      1.1  christos 
    688      1.1  christos   ovl_end = alloc_sec[0]->vma + alloc_sec[0]->size;
    689      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
    690      1.1  christos     {
    691      1.1  christos       unsigned int prev_buf = 0, set_id = 0;
    692      1.1  christos 
    693      1.1  christos       /* Look for an overlapping vma to find the first overlay section.  */
    694      1.1  christos       bfd_vma vma_start = 0;
    695      1.1  christos 
    696      1.1  christos       for (i = 1; i < n; i++)
    697      1.1  christos 	{
    698      1.1  christos 	  s = alloc_sec[i];
    699      1.1  christos 	  if (s->vma < ovl_end)
    700      1.1  christos 	    {
    701      1.1  christos 	      asection *s0 = alloc_sec[i - 1];
    702      1.1  christos 	      vma_start = s0->vma;
    703      1.1  christos 	      ovl_end = (s0->vma
    704      1.1  christos 			 + ((bfd_vma) 1
    705      1.1  christos 			    << (htab->num_lines_log2 + htab->line_size_log2)));
    706      1.1  christos 	      --i;
    707      1.1  christos 	      break;
    708      1.1  christos 	    }
    709      1.1  christos 	  else
    710      1.1  christos 	    ovl_end = s->vma + s->size;
    711      1.1  christos 	}
    712      1.1  christos 
    713      1.1  christos       /* Now find any sections within the cache area.  */
    714      1.1  christos       for (ovl_index = 0, num_buf = 0; i < n; i++)
    715      1.1  christos 	{
    716      1.1  christos 	  s = alloc_sec[i];
    717      1.1  christos 	  if (s->vma >= ovl_end)
    718      1.1  christos 	    break;
    719      1.1  christos 
    720      1.1  christos 	  /* A section in an overlay area called .ovl.init is not
    721      1.1  christos 	     an overlay, in the sense that it might be loaded in
    722      1.1  christos 	     by the overlay manager, but rather the initial
    723      1.1  christos 	     section contents for the overlay buffer.  */
    724      1.1  christos 	  if (strncmp (s->name, ".ovl.init", 9) != 0)
    725      1.1  christos 	    {
    726      1.1  christos 	      num_buf = ((s->vma - vma_start) >> htab->line_size_log2) + 1;
    727      1.1  christos 	      set_id = (num_buf == prev_buf)? set_id + 1 : 0;
    728      1.1  christos 	      prev_buf = num_buf;
    729      1.1  christos 
    730      1.1  christos 	      if ((s->vma - vma_start) & (htab->params->line_size - 1))
    731      1.1  christos 		{
    732  1.1.1.8  christos 		  info->callbacks->einfo (_("%X%P: overlay section %pA "
    733  1.1.1.8  christos 					    "does not start on a cache line\n"),
    734      1.1  christos 					  s);
    735      1.1  christos 		  bfd_set_error (bfd_error_bad_value);
    736      1.1  christos 		  return 0;
    737      1.1  christos 		}
    738      1.1  christos 	      else if (s->size > htab->params->line_size)
    739      1.1  christos 		{
    740  1.1.1.8  christos 		  info->callbacks->einfo (_("%X%P: overlay section %pA "
    741  1.1.1.8  christos 					    "is larger than a cache line\n"),
    742      1.1  christos 					  s);
    743      1.1  christos 		  bfd_set_error (bfd_error_bad_value);
    744      1.1  christos 		  return 0;
    745      1.1  christos 		}
    746      1.1  christos 
    747      1.1  christos 	      alloc_sec[ovl_index++] = s;
    748      1.1  christos 	      spu_elf_section_data (s)->u.o.ovl_index
    749      1.1  christos 		= (set_id << htab->num_lines_log2) + num_buf;
    750      1.1  christos 	      spu_elf_section_data (s)->u.o.ovl_buf = num_buf;
    751      1.1  christos 	    }
    752      1.1  christos 	}
    753      1.1  christos 
    754      1.1  christos       /* Ensure there are no more overlay sections.  */
    755      1.1  christos       for ( ; i < n; i++)
    756      1.1  christos 	{
    757      1.1  christos 	  s = alloc_sec[i];
    758      1.1  christos 	  if (s->vma < ovl_end)
    759      1.1  christos 	    {
    760  1.1.1.8  christos 	      info->callbacks->einfo (_("%X%P: overlay section %pA "
    761  1.1.1.8  christos 					"is not in cache area\n"),
    762      1.1  christos 				      alloc_sec[i-1]);
    763      1.1  christos 	      bfd_set_error (bfd_error_bad_value);
    764      1.1  christos 	      return 0;
    765      1.1  christos 	    }
    766      1.1  christos 	  else
    767      1.1  christos 	    ovl_end = s->vma + s->size;
    768      1.1  christos 	}
    769      1.1  christos     }
    770      1.1  christos   else
    771      1.1  christos     {
    772      1.1  christos       /* Look for overlapping vmas.  Any with overlap must be overlays.
    773      1.1  christos 	 Count them.  Also count the number of overlay regions.  */
    774      1.1  christos       for (ovl_index = 0, num_buf = 0, i = 1; i < n; i++)
    775      1.1  christos 	{
    776      1.1  christos 	  s = alloc_sec[i];
    777      1.1  christos 	  if (s->vma < ovl_end)
    778      1.1  christos 	    {
    779      1.1  christos 	      asection *s0 = alloc_sec[i - 1];
    780      1.1  christos 
    781      1.1  christos 	      if (spu_elf_section_data (s0)->u.o.ovl_index == 0)
    782      1.1  christos 		{
    783      1.1  christos 		  ++num_buf;
    784      1.1  christos 		  if (strncmp (s0->name, ".ovl.init", 9) != 0)
    785      1.1  christos 		    {
    786      1.1  christos 		      alloc_sec[ovl_index] = s0;
    787      1.1  christos 		      spu_elf_section_data (s0)->u.o.ovl_index = ++ovl_index;
    788      1.1  christos 		      spu_elf_section_data (s0)->u.o.ovl_buf = num_buf;
    789      1.1  christos 		    }
    790      1.1  christos 		  else
    791      1.1  christos 		    ovl_end = s->vma + s->size;
    792      1.1  christos 		}
    793      1.1  christos 	      if (strncmp (s->name, ".ovl.init", 9) != 0)
    794      1.1  christos 		{
    795      1.1  christos 		  alloc_sec[ovl_index] = s;
    796      1.1  christos 		  spu_elf_section_data (s)->u.o.ovl_index = ++ovl_index;
    797      1.1  christos 		  spu_elf_section_data (s)->u.o.ovl_buf = num_buf;
    798      1.1  christos 		  if (s0->vma != s->vma)
    799      1.1  christos 		    {
    800  1.1.1.7  christos 		      /* xgettext:c-format */
    801  1.1.1.8  christos 		      info->callbacks->einfo (_("%X%P: overlay sections %pA "
    802  1.1.1.8  christos 						"and %pA do not start at the "
    803  1.1.1.8  christos 						"same address\n"),
    804      1.1  christos 					      s0, s);
    805      1.1  christos 		      bfd_set_error (bfd_error_bad_value);
    806      1.1  christos 		      return 0;
    807      1.1  christos 		    }
    808      1.1  christos 		  if (ovl_end < s->vma + s->size)
    809      1.1  christos 		    ovl_end = s->vma + s->size;
    810      1.1  christos 		}
    811      1.1  christos 	    }
    812      1.1  christos 	  else
    813      1.1  christos 	    ovl_end = s->vma + s->size;
    814      1.1  christos 	}
    815      1.1  christos     }
    816      1.1  christos 
    817      1.1  christos   htab->num_overlays = ovl_index;
    818      1.1  christos   htab->num_buf = num_buf;
    819      1.1  christos   htab->ovl_sec = alloc_sec;
    820      1.1  christos 
    821      1.1  christos   if (ovl_index == 0)
    822      1.1  christos     return 1;
    823      1.1  christos 
    824      1.1  christos   for (i = 0; i < 2; i++)
    825      1.1  christos     {
    826      1.1  christos       const char *name;
    827      1.1  christos       struct elf_link_hash_entry *h;
    828      1.1  christos 
    829      1.1  christos       name = entry_names[i][htab->params->ovly_flavour];
    830      1.1  christos       h = elf_link_hash_lookup (&htab->elf, name, TRUE, FALSE, FALSE);
    831      1.1  christos       if (h == NULL)
    832      1.1  christos 	return 0;
    833      1.1  christos 
    834      1.1  christos       if (h->root.type == bfd_link_hash_new)
    835      1.1  christos 	{
    836      1.1  christos 	  h->root.type = bfd_link_hash_undefined;
    837      1.1  christos 	  h->ref_regular = 1;
    838      1.1  christos 	  h->ref_regular_nonweak = 1;
    839      1.1  christos 	  h->non_elf = 0;
    840      1.1  christos 	}
    841      1.1  christos       htab->ovly_entry[i] = h;
    842      1.1  christos     }
    843      1.1  christos 
    844      1.1  christos   return 2;
    845      1.1  christos }
    846      1.1  christos 
    847      1.1  christos /* Non-zero to use bra in overlay stubs rather than br.  */
    848      1.1  christos #define BRA_STUBS 0
    849      1.1  christos 
    850      1.1  christos #define BRA	0x30000000
    851      1.1  christos #define BRASL	0x31000000
    852      1.1  christos #define BR	0x32000000
    853      1.1  christos #define BRSL	0x33000000
    854      1.1  christos #define NOP	0x40200000
    855      1.1  christos #define LNOP	0x00200000
    856      1.1  christos #define ILA	0x42000000
    857      1.1  christos 
    858      1.1  christos /* Return true for all relative and absolute branch instructions.
    859      1.1  christos    bra   00110000 0..
    860      1.1  christos    brasl 00110001 0..
    861      1.1  christos    br    00110010 0..
    862      1.1  christos    brsl  00110011 0..
    863      1.1  christos    brz   00100000 0..
    864      1.1  christos    brnz  00100001 0..
    865      1.1  christos    brhz  00100010 0..
    866      1.1  christos    brhnz 00100011 0..  */
    867      1.1  christos 
    868      1.1  christos static bfd_boolean
    869      1.1  christos is_branch (const unsigned char *insn)
    870      1.1  christos {
    871      1.1  christos   return (insn[0] & 0xec) == 0x20 && (insn[1] & 0x80) == 0;
    872      1.1  christos }
    873      1.1  christos 
    874      1.1  christos /* Return true for all indirect branch instructions.
    875      1.1  christos    bi     00110101 000
    876      1.1  christos    bisl   00110101 001
    877      1.1  christos    iret   00110101 010
    878      1.1  christos    bisled 00110101 011
    879      1.1  christos    biz    00100101 000
    880      1.1  christos    binz   00100101 001
    881      1.1  christos    bihz   00100101 010
    882      1.1  christos    bihnz  00100101 011  */
    883      1.1  christos 
    884      1.1  christos static bfd_boolean
    885      1.1  christos is_indirect_branch (const unsigned char *insn)
    886      1.1  christos {
    887      1.1  christos   return (insn[0] & 0xef) == 0x25 && (insn[1] & 0x80) == 0;
    888      1.1  christos }
    889      1.1  christos 
    890      1.1  christos /* Return true for branch hint instructions.
    891      1.1  christos    hbra  0001000..
    892      1.1  christos    hbrr  0001001..  */
    893      1.1  christos 
    894      1.1  christos static bfd_boolean
    895      1.1  christos is_hint (const unsigned char *insn)
    896      1.1  christos {
    897      1.1  christos   return (insn[0] & 0xfc) == 0x10;
    898      1.1  christos }
    899      1.1  christos 
    900      1.1  christos /* True if INPUT_SECTION might need overlay stubs.  */
    901      1.1  christos 
    902      1.1  christos static bfd_boolean
    903      1.1  christos maybe_needs_stubs (asection *input_section)
    904      1.1  christos {
    905      1.1  christos   /* No stubs for debug sections and suchlike.  */
    906      1.1  christos   if ((input_section->flags & SEC_ALLOC) == 0)
    907      1.1  christos     return FALSE;
    908      1.1  christos 
    909      1.1  christos   /* No stubs for link-once sections that will be discarded.  */
    910      1.1  christos   if (input_section->output_section == bfd_abs_section_ptr)
    911      1.1  christos     return FALSE;
    912      1.1  christos 
    913      1.1  christos   /* Don't create stubs for .eh_frame references.  */
    914      1.1  christos   if (strcmp (input_section->name, ".eh_frame") == 0)
    915      1.1  christos     return FALSE;
    916      1.1  christos 
    917      1.1  christos   return TRUE;
    918      1.1  christos }
    919      1.1  christos 
    920      1.1  christos enum _stub_type
    921      1.1  christos {
    922      1.1  christos   no_stub,
    923      1.1  christos   call_ovl_stub,
    924      1.1  christos   br000_ovl_stub,
    925      1.1  christos   br001_ovl_stub,
    926      1.1  christos   br010_ovl_stub,
    927      1.1  christos   br011_ovl_stub,
    928      1.1  christos   br100_ovl_stub,
    929      1.1  christos   br101_ovl_stub,
    930      1.1  christos   br110_ovl_stub,
    931      1.1  christos   br111_ovl_stub,
    932      1.1  christos   nonovl_stub,
    933      1.1  christos   stub_error
    934      1.1  christos };
    935      1.1  christos 
    936      1.1  christos /* Return non-zero if this reloc symbol should go via an overlay stub.
    937      1.1  christos    Return 2 if the stub must be in non-overlay area.  */
    938      1.1  christos 
    939      1.1  christos static enum _stub_type
    940      1.1  christos needs_ovl_stub (struct elf_link_hash_entry *h,
    941      1.1  christos 		Elf_Internal_Sym *sym,
    942      1.1  christos 		asection *sym_sec,
    943      1.1  christos 		asection *input_section,
    944      1.1  christos 		Elf_Internal_Rela *irela,
    945      1.1  christos 		bfd_byte *contents,
    946      1.1  christos 		struct bfd_link_info *info)
    947      1.1  christos {
    948      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
    949      1.1  christos   enum elf_spu_reloc_type r_type;
    950      1.1  christos   unsigned int sym_type;
    951      1.1  christos   bfd_boolean branch, hint, call;
    952      1.1  christos   enum _stub_type ret = no_stub;
    953      1.1  christos   bfd_byte insn[4];
    954      1.1  christos 
    955      1.1  christos   if (sym_sec == NULL
    956      1.1  christos       || sym_sec->output_section == bfd_abs_section_ptr
    957      1.1  christos       || spu_elf_section_data (sym_sec->output_section) == NULL)
    958      1.1  christos     return ret;
    959      1.1  christos 
    960      1.1  christos   if (h != NULL)
    961      1.1  christos     {
    962      1.1  christos       /* Ensure no stubs for user supplied overlay manager syms.  */
    963      1.1  christos       if (h == htab->ovly_entry[0] || h == htab->ovly_entry[1])
    964      1.1  christos 	return ret;
    965      1.1  christos 
    966      1.1  christos       /* setjmp always goes via an overlay stub, because then the return
    967      1.1  christos 	 and hence the longjmp goes via __ovly_return.  That magically
    968      1.1  christos 	 makes setjmp/longjmp between overlays work.  */
    969      1.1  christos       if (strncmp (h->root.root.string, "setjmp", 6) == 0
    970      1.1  christos 	  && (h->root.root.string[6] == '\0' || h->root.root.string[6] == '@'))
    971      1.1  christos 	ret = call_ovl_stub;
    972      1.1  christos     }
    973      1.1  christos 
    974      1.1  christos   if (h != NULL)
    975      1.1  christos     sym_type = h->type;
    976      1.1  christos   else
    977      1.1  christos     sym_type = ELF_ST_TYPE (sym->st_info);
    978      1.1  christos 
    979      1.1  christos   r_type = ELF32_R_TYPE (irela->r_info);
    980      1.1  christos   branch = FALSE;
    981      1.1  christos   hint = FALSE;
    982      1.1  christos   call = FALSE;
    983      1.1  christos   if (r_type == R_SPU_REL16 || r_type == R_SPU_ADDR16)
    984      1.1  christos     {
    985      1.1  christos       if (contents == NULL)
    986      1.1  christos 	{
    987      1.1  christos 	  contents = insn;
    988      1.1  christos 	  if (!bfd_get_section_contents (input_section->owner,
    989      1.1  christos 					 input_section,
    990      1.1  christos 					 contents,
    991      1.1  christos 					 irela->r_offset, 4))
    992      1.1  christos 	    return stub_error;
    993      1.1  christos 	}
    994      1.1  christos       else
    995      1.1  christos 	contents += irela->r_offset;
    996      1.1  christos 
    997      1.1  christos       branch = is_branch (contents);
    998      1.1  christos       hint = is_hint (contents);
    999      1.1  christos       if (branch || hint)
   1000      1.1  christos 	{
   1001      1.1  christos 	  call = (contents[0] & 0xfd) == 0x31;
   1002      1.1  christos 	  if (call
   1003      1.1  christos 	      && sym_type != STT_FUNC
   1004      1.1  christos 	      && contents != insn)
   1005      1.1  christos 	    {
   1006      1.1  christos 	      /* It's common for people to write assembly and forget
   1007      1.1  christos 		 to give function symbols the right type.  Handle
   1008      1.1  christos 		 calls to such symbols, but warn so that (hopefully)
   1009      1.1  christos 		 people will fix their code.  We need the symbol
   1010      1.1  christos 		 type to be correct to distinguish function pointer
   1011      1.1  christos 		 initialisation from other pointer initialisations.  */
   1012      1.1  christos 	      const char *sym_name;
   1013      1.1  christos 
   1014      1.1  christos 	      if (h != NULL)
   1015      1.1  christos 		sym_name = h->root.root.string;
   1016      1.1  christos 	      else
   1017      1.1  christos 		{
   1018      1.1  christos 		  Elf_Internal_Shdr *symtab_hdr;
   1019      1.1  christos 		  symtab_hdr = &elf_tdata (input_section->owner)->symtab_hdr;
   1020      1.1  christos 		  sym_name = bfd_elf_sym_name (input_section->owner,
   1021      1.1  christos 					       symtab_hdr,
   1022      1.1  christos 					       sym,
   1023      1.1  christos 					       sym_sec);
   1024      1.1  christos 		}
   1025  1.1.1.7  christos 	      _bfd_error_handler
   1026  1.1.1.7  christos 		/* xgettext:c-format */
   1027  1.1.1.8  christos 		(_("warning: call to non-function symbol %s defined in %pB"),
   1028  1.1.1.7  christos 		 sym_name, sym_sec->owner);
   1029      1.1  christos 
   1030      1.1  christos 	    }
   1031      1.1  christos 	}
   1032      1.1  christos     }
   1033      1.1  christos 
   1034      1.1  christos   if ((!branch && htab->params->ovly_flavour == ovly_soft_icache)
   1035      1.1  christos       || (sym_type != STT_FUNC
   1036      1.1  christos 	  && !(branch || hint)
   1037      1.1  christos 	  && (sym_sec->flags & SEC_CODE) == 0))
   1038      1.1  christos     return no_stub;
   1039      1.1  christos 
   1040      1.1  christos   /* Usually, symbols in non-overlay sections don't need stubs.  */
   1041      1.1  christos   if (spu_elf_section_data (sym_sec->output_section)->u.o.ovl_index == 0
   1042      1.1  christos       && !htab->params->non_overlay_stubs)
   1043      1.1  christos     return ret;
   1044      1.1  christos 
   1045      1.1  christos   /* A reference from some other section to a symbol in an overlay
   1046      1.1  christos      section needs a stub.  */
   1047      1.1  christos   if (spu_elf_section_data (sym_sec->output_section)->u.o.ovl_index
   1048      1.1  christos        != spu_elf_section_data (input_section->output_section)->u.o.ovl_index)
   1049      1.1  christos     {
   1050      1.1  christos       unsigned int lrlive = 0;
   1051      1.1  christos       if (branch)
   1052      1.1  christos 	lrlive = (contents[1] & 0x70) >> 4;
   1053      1.1  christos 
   1054      1.1  christos       if (!lrlive && (call || sym_type == STT_FUNC))
   1055      1.1  christos 	ret = call_ovl_stub;
   1056      1.1  christos       else
   1057      1.1  christos 	ret = br000_ovl_stub + lrlive;
   1058      1.1  christos     }
   1059      1.1  christos 
   1060      1.1  christos   /* If this insn isn't a branch then we are possibly taking the
   1061      1.1  christos      address of a function and passing it out somehow.  Soft-icache code
   1062      1.1  christos      always generates inline code to do indirect branches.  */
   1063      1.1  christos   if (!(branch || hint)
   1064      1.1  christos       && sym_type == STT_FUNC
   1065      1.1  christos       && htab->params->ovly_flavour != ovly_soft_icache)
   1066      1.1  christos     ret = nonovl_stub;
   1067      1.1  christos 
   1068      1.1  christos   return ret;
   1069      1.1  christos }
   1070      1.1  christos 
   1071      1.1  christos static bfd_boolean
   1072      1.1  christos count_stub (struct spu_link_hash_table *htab,
   1073      1.1  christos 	    bfd *ibfd,
   1074      1.1  christos 	    asection *isec,
   1075      1.1  christos 	    enum _stub_type stub_type,
   1076      1.1  christos 	    struct elf_link_hash_entry *h,
   1077      1.1  christos 	    const Elf_Internal_Rela *irela)
   1078      1.1  christos {
   1079      1.1  christos   unsigned int ovl = 0;
   1080      1.1  christos   struct got_entry *g, **head;
   1081      1.1  christos   bfd_vma addend;
   1082      1.1  christos 
   1083      1.1  christos   /* If this instruction is a branch or call, we need a stub
   1084      1.1  christos      for it.  One stub per function per overlay.
   1085      1.1  christos      If it isn't a branch, then we are taking the address of
   1086      1.1  christos      this function so need a stub in the non-overlay area
   1087      1.1  christos      for it.  One stub per function.  */
   1088      1.1  christos   if (stub_type != nonovl_stub)
   1089      1.1  christos     ovl = spu_elf_section_data (isec->output_section)->u.o.ovl_index;
   1090      1.1  christos 
   1091      1.1  christos   if (h != NULL)
   1092      1.1  christos     head = &h->got.glist;
   1093      1.1  christos   else
   1094      1.1  christos     {
   1095      1.1  christos       if (elf_local_got_ents (ibfd) == NULL)
   1096      1.1  christos 	{
   1097      1.1  christos 	  bfd_size_type amt = (elf_tdata (ibfd)->symtab_hdr.sh_info
   1098      1.1  christos 			       * sizeof (*elf_local_got_ents (ibfd)));
   1099      1.1  christos 	  elf_local_got_ents (ibfd) = bfd_zmalloc (amt);
   1100      1.1  christos 	  if (elf_local_got_ents (ibfd) == NULL)
   1101      1.1  christos 	    return FALSE;
   1102      1.1  christos 	}
   1103      1.1  christos       head = elf_local_got_ents (ibfd) + ELF32_R_SYM (irela->r_info);
   1104      1.1  christos     }
   1105      1.1  christos 
   1106      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   1107      1.1  christos     {
   1108      1.1  christos       htab->stub_count[ovl] += 1;
   1109      1.1  christos       return TRUE;
   1110      1.1  christos     }
   1111      1.1  christos 
   1112      1.1  christos   addend = 0;
   1113      1.1  christos   if (irela != NULL)
   1114      1.1  christos     addend = irela->r_addend;
   1115      1.1  christos 
   1116      1.1  christos   if (ovl == 0)
   1117      1.1  christos     {
   1118      1.1  christos       struct got_entry *gnext;
   1119      1.1  christos 
   1120      1.1  christos       for (g = *head; g != NULL; g = g->next)
   1121      1.1  christos 	if (g->addend == addend && g->ovl == 0)
   1122      1.1  christos 	  break;
   1123      1.1  christos 
   1124      1.1  christos       if (g == NULL)
   1125      1.1  christos 	{
   1126      1.1  christos 	  /* Need a new non-overlay area stub.  Zap other stubs.  */
   1127      1.1  christos 	  for (g = *head; g != NULL; g = gnext)
   1128      1.1  christos 	    {
   1129      1.1  christos 	      gnext = g->next;
   1130      1.1  christos 	      if (g->addend == addend)
   1131      1.1  christos 		{
   1132      1.1  christos 		  htab->stub_count[g->ovl] -= 1;
   1133      1.1  christos 		  free (g);
   1134      1.1  christos 		}
   1135      1.1  christos 	    }
   1136      1.1  christos 	}
   1137      1.1  christos     }
   1138      1.1  christos   else
   1139      1.1  christos     {
   1140      1.1  christos       for (g = *head; g != NULL; g = g->next)
   1141      1.1  christos 	if (g->addend == addend && (g->ovl == ovl || g->ovl == 0))
   1142      1.1  christos 	  break;
   1143      1.1  christos     }
   1144      1.1  christos 
   1145      1.1  christos   if (g == NULL)
   1146      1.1  christos     {
   1147      1.1  christos       g = bfd_malloc (sizeof *g);
   1148      1.1  christos       if (g == NULL)
   1149      1.1  christos 	return FALSE;
   1150      1.1  christos       g->ovl = ovl;
   1151      1.1  christos       g->addend = addend;
   1152      1.1  christos       g->stub_addr = (bfd_vma) -1;
   1153      1.1  christos       g->next = *head;
   1154      1.1  christos       *head = g;
   1155      1.1  christos 
   1156      1.1  christos       htab->stub_count[ovl] += 1;
   1157      1.1  christos     }
   1158      1.1  christos 
   1159      1.1  christos   return TRUE;
   1160      1.1  christos }
   1161      1.1  christos 
   1162      1.1  christos /* Support two sizes of overlay stubs, a slower more compact stub of two
   1163  1.1.1.3  christos    instructions, and a faster stub of four instructions.
   1164      1.1  christos    Soft-icache stubs are four or eight words.  */
   1165      1.1  christos 
   1166      1.1  christos static unsigned int
   1167      1.1  christos ovl_stub_size (struct spu_elf_params *params)
   1168      1.1  christos {
   1169      1.1  christos   return 16 << params->ovly_flavour >> params->compact_stub;
   1170      1.1  christos }
   1171      1.1  christos 
   1172      1.1  christos static unsigned int
   1173      1.1  christos ovl_stub_size_log2 (struct spu_elf_params *params)
   1174      1.1  christos {
   1175      1.1  christos   return 4 + params->ovly_flavour - params->compact_stub;
   1176      1.1  christos }
   1177      1.1  christos 
   1178      1.1  christos /* Two instruction overlay stubs look like:
   1179      1.1  christos 
   1180      1.1  christos    brsl $75,__ovly_load
   1181      1.1  christos    .word target_ovl_and_address
   1182      1.1  christos 
   1183      1.1  christos    ovl_and_address is a word with the overlay number in the top 14 bits
   1184      1.1  christos    and local store address in the bottom 18 bits.
   1185      1.1  christos 
   1186      1.1  christos    Four instruction overlay stubs look like:
   1187      1.1  christos 
   1188      1.1  christos    ila $78,ovl_number
   1189      1.1  christos    lnop
   1190      1.1  christos    ila $79,target_address
   1191      1.1  christos    br __ovly_load
   1192      1.1  christos 
   1193      1.1  christos    Software icache stubs are:
   1194      1.1  christos 
   1195      1.1  christos    .word target_index
   1196      1.1  christos    .word target_ia;
   1197      1.1  christos    .word lrlive_branchlocalstoreaddr;
   1198      1.1  christos    brasl $75,__icache_br_handler
   1199      1.1  christos    .quad xor_pattern
   1200      1.1  christos */
   1201      1.1  christos 
   1202      1.1  christos static bfd_boolean
   1203      1.1  christos build_stub (struct bfd_link_info *info,
   1204      1.1  christos 	    bfd *ibfd,
   1205      1.1  christos 	    asection *isec,
   1206      1.1  christos 	    enum _stub_type stub_type,
   1207      1.1  christos 	    struct elf_link_hash_entry *h,
   1208      1.1  christos 	    const Elf_Internal_Rela *irela,
   1209      1.1  christos 	    bfd_vma dest,
   1210      1.1  christos 	    asection *dest_sec)
   1211      1.1  christos {
   1212      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1213      1.1  christos   unsigned int ovl, dest_ovl, set_id;
   1214      1.1  christos   struct got_entry *g, **head;
   1215      1.1  christos   asection *sec;
   1216      1.1  christos   bfd_vma addend, from, to, br_dest, patt;
   1217      1.1  christos   unsigned int lrlive;
   1218      1.1  christos 
   1219      1.1  christos   ovl = 0;
   1220      1.1  christos   if (stub_type != nonovl_stub)
   1221      1.1  christos     ovl = spu_elf_section_data (isec->output_section)->u.o.ovl_index;
   1222      1.1  christos 
   1223      1.1  christos   if (h != NULL)
   1224      1.1  christos     head = &h->got.glist;
   1225      1.1  christos   else
   1226      1.1  christos     head = elf_local_got_ents (ibfd) + ELF32_R_SYM (irela->r_info);
   1227      1.1  christos 
   1228      1.1  christos   addend = 0;
   1229      1.1  christos   if (irela != NULL)
   1230      1.1  christos     addend = irela->r_addend;
   1231      1.1  christos 
   1232      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   1233      1.1  christos     {
   1234      1.1  christos       g = bfd_malloc (sizeof *g);
   1235      1.1  christos       if (g == NULL)
   1236      1.1  christos 	return FALSE;
   1237      1.1  christos       g->ovl = ovl;
   1238      1.1  christos       g->br_addr = 0;
   1239      1.1  christos       if (irela != NULL)
   1240      1.1  christos 	g->br_addr = (irela->r_offset
   1241      1.1  christos 		      + isec->output_offset
   1242      1.1  christos 		      + isec->output_section->vma);
   1243      1.1  christos       g->next = *head;
   1244      1.1  christos       *head = g;
   1245      1.1  christos     }
   1246      1.1  christos   else
   1247      1.1  christos     {
   1248      1.1  christos       for (g = *head; g != NULL; g = g->next)
   1249      1.1  christos 	if (g->addend == addend && (g->ovl == ovl || g->ovl == 0))
   1250      1.1  christos 	  break;
   1251      1.1  christos       if (g == NULL)
   1252      1.1  christos 	abort ();
   1253      1.1  christos 
   1254      1.1  christos       if (g->ovl == 0 && ovl != 0)
   1255      1.1  christos 	return TRUE;
   1256      1.1  christos 
   1257      1.1  christos       if (g->stub_addr != (bfd_vma) -1)
   1258      1.1  christos 	return TRUE;
   1259      1.1  christos     }
   1260      1.1  christos 
   1261      1.1  christos   sec = htab->stub_sec[ovl];
   1262      1.1  christos   dest += dest_sec->output_offset + dest_sec->output_section->vma;
   1263      1.1  christos   from = sec->size + sec->output_offset + sec->output_section->vma;
   1264      1.1  christos   g->stub_addr = from;
   1265      1.1  christos   to = (htab->ovly_entry[0]->root.u.def.value
   1266      1.1  christos 	+ htab->ovly_entry[0]->root.u.def.section->output_offset
   1267      1.1  christos 	+ htab->ovly_entry[0]->root.u.def.section->output_section->vma);
   1268      1.1  christos 
   1269      1.1  christos   if (((dest | to | from) & 3) != 0)
   1270      1.1  christos     {
   1271      1.1  christos       htab->stub_err = 1;
   1272      1.1  christos       return FALSE;
   1273      1.1  christos     }
   1274      1.1  christos   dest_ovl = spu_elf_section_data (dest_sec->output_section)->u.o.ovl_index;
   1275      1.1  christos 
   1276      1.1  christos   if (htab->params->ovly_flavour == ovly_normal
   1277      1.1  christos       && !htab->params->compact_stub)
   1278      1.1  christos     {
   1279      1.1  christos       bfd_put_32 (sec->owner, ILA + ((dest_ovl << 7) & 0x01ffff80) + 78,
   1280      1.1  christos 		  sec->contents + sec->size);
   1281      1.1  christos       bfd_put_32 (sec->owner, LNOP,
   1282      1.1  christos 		  sec->contents + sec->size + 4);
   1283      1.1  christos       bfd_put_32 (sec->owner, ILA + ((dest << 7) & 0x01ffff80) + 79,
   1284      1.1  christos 		  sec->contents + sec->size + 8);
   1285      1.1  christos       if (!BRA_STUBS)
   1286      1.1  christos 	bfd_put_32 (sec->owner, BR + (((to - (from + 12)) << 5) & 0x007fff80),
   1287      1.1  christos 		    sec->contents + sec->size + 12);
   1288      1.1  christos       else
   1289      1.1  christos 	bfd_put_32 (sec->owner, BRA + ((to << 5) & 0x007fff80),
   1290      1.1  christos 		    sec->contents + sec->size + 12);
   1291      1.1  christos     }
   1292      1.1  christos   else if (htab->params->ovly_flavour == ovly_normal
   1293      1.1  christos 	   && htab->params->compact_stub)
   1294      1.1  christos     {
   1295      1.1  christos       if (!BRA_STUBS)
   1296      1.1  christos 	bfd_put_32 (sec->owner, BRSL + (((to - from) << 5) & 0x007fff80) + 75,
   1297      1.1  christos 		    sec->contents + sec->size);
   1298      1.1  christos       else
   1299      1.1  christos 	bfd_put_32 (sec->owner, BRASL + ((to << 5) & 0x007fff80) + 75,
   1300      1.1  christos 		    sec->contents + sec->size);
   1301      1.1  christos       bfd_put_32 (sec->owner, (dest & 0x3ffff) | (dest_ovl << 18),
   1302      1.1  christos 		  sec->contents + sec->size + 4);
   1303      1.1  christos     }
   1304      1.1  christos   else if (htab->params->ovly_flavour == ovly_soft_icache
   1305      1.1  christos 	   && htab->params->compact_stub)
   1306      1.1  christos     {
   1307      1.1  christos       lrlive = 0;
   1308      1.1  christos       if (stub_type == nonovl_stub)
   1309      1.1  christos 	;
   1310      1.1  christos       else if (stub_type == call_ovl_stub)
   1311      1.1  christos 	/* A brsl makes lr live and *(*sp+16) is live.
   1312      1.1  christos 	   Tail calls have the same liveness.  */
   1313      1.1  christos 	lrlive = 5;
   1314      1.1  christos       else if (!htab->params->lrlive_analysis)
   1315      1.1  christos 	/* Assume stack frame and lr save.  */
   1316      1.1  christos 	lrlive = 1;
   1317      1.1  christos       else if (irela != NULL)
   1318      1.1  christos 	{
   1319      1.1  christos 	  /* Analyse branch instructions.  */
   1320      1.1  christos 	  struct function_info *caller;
   1321      1.1  christos 	  bfd_vma off;
   1322      1.1  christos 
   1323      1.1  christos 	  caller = find_function (isec, irela->r_offset, info);
   1324      1.1  christos 	  if (caller->start == NULL)
   1325      1.1  christos 	    off = irela->r_offset;
   1326      1.1  christos 	  else
   1327      1.1  christos 	    {
   1328      1.1  christos 	      struct function_info *found = NULL;
   1329      1.1  christos 
   1330      1.1  christos 	      /* Find the earliest piece of this function that
   1331      1.1  christos 		 has frame adjusting instructions.  We might
   1332      1.1  christos 		 see dynamic frame adjustment (eg. for alloca)
   1333      1.1  christos 		 in some later piece, but functions using
   1334      1.1  christos 		 alloca always set up a frame earlier.  Frame
   1335      1.1  christos 		 setup instructions are always in one piece.  */
   1336      1.1  christos 	      if (caller->lr_store != (bfd_vma) -1
   1337      1.1  christos 		  || caller->sp_adjust != (bfd_vma) -1)
   1338      1.1  christos 		found = caller;
   1339      1.1  christos 	      while (caller->start != NULL)
   1340      1.1  christos 		{
   1341      1.1  christos 		  caller = caller->start;
   1342      1.1  christos 		  if (caller->lr_store != (bfd_vma) -1
   1343      1.1  christos 		      || caller->sp_adjust != (bfd_vma) -1)
   1344      1.1  christos 		    found = caller;
   1345      1.1  christos 		}
   1346      1.1  christos 	      if (found != NULL)
   1347      1.1  christos 		caller = found;
   1348      1.1  christos 	      off = (bfd_vma) -1;
   1349      1.1  christos 	    }
   1350      1.1  christos 
   1351      1.1  christos 	  if (off > caller->sp_adjust)
   1352      1.1  christos 	    {
   1353      1.1  christos 	      if (off > caller->lr_store)
   1354      1.1  christos 		/* Only *(*sp+16) is live.  */
   1355      1.1  christos 		lrlive = 1;
   1356      1.1  christos 	      else
   1357      1.1  christos 		/* If no lr save, then we must be in a
   1358      1.1  christos 		   leaf function with a frame.
   1359      1.1  christos 		   lr is still live.  */
   1360      1.1  christos 		lrlive = 4;
   1361      1.1  christos 	    }
   1362      1.1  christos 	  else if (off > caller->lr_store)
   1363      1.1  christos 	    {
   1364      1.1  christos 	      /* Between lr save and stack adjust.  */
   1365      1.1  christos 	      lrlive = 3;
   1366      1.1  christos 	      /* This should never happen since prologues won't
   1367      1.1  christos 		 be split here.  */
   1368      1.1  christos 	      BFD_ASSERT (0);
   1369      1.1  christos 	    }
   1370      1.1  christos 	  else
   1371      1.1  christos 	    /* On entry to function.  */
   1372      1.1  christos 	    lrlive = 5;
   1373      1.1  christos 
   1374      1.1  christos 	  if (stub_type != br000_ovl_stub
   1375      1.1  christos 	      && lrlive != stub_type - br000_ovl_stub)
   1376  1.1.1.7  christos 	    /* xgettext:c-format */
   1377  1.1.1.8  christos 	    info->callbacks->einfo (_("%pA:0x%v lrlive .brinfo (%u) differs "
   1378      1.1  christos 				      "from analysis (%u)\n"),
   1379      1.1  christos 				    isec, irela->r_offset, lrlive,
   1380      1.1  christos 				    stub_type - br000_ovl_stub);
   1381      1.1  christos 	}
   1382      1.1  christos 
   1383      1.1  christos       /* If given lrlive info via .brinfo, use it.  */
   1384      1.1  christos       if (stub_type > br000_ovl_stub)
   1385      1.1  christos 	lrlive = stub_type - br000_ovl_stub;
   1386      1.1  christos 
   1387      1.1  christos       if (ovl == 0)
   1388      1.1  christos 	to = (htab->ovly_entry[1]->root.u.def.value
   1389      1.1  christos 	      + htab->ovly_entry[1]->root.u.def.section->output_offset
   1390      1.1  christos 	      + htab->ovly_entry[1]->root.u.def.section->output_section->vma);
   1391      1.1  christos 
   1392      1.1  christos       /* The branch that uses this stub goes to stub_addr + 4.  We'll
   1393      1.1  christos 	 set up an xor pattern that can be used by the icache manager
   1394      1.1  christos 	 to modify this branch to go directly to its destination.  */
   1395      1.1  christos       g->stub_addr += 4;
   1396      1.1  christos       br_dest = g->stub_addr;
   1397      1.1  christos       if (irela == NULL)
   1398      1.1  christos 	{
   1399      1.1  christos 	  /* Except in the case of _SPUEAR_ stubs, the branch in
   1400      1.1  christos 	     question is the one in the stub itself.  */
   1401      1.1  christos 	  BFD_ASSERT (stub_type == nonovl_stub);
   1402      1.1  christos 	  g->br_addr = g->stub_addr;
   1403      1.1  christos 	  br_dest = to;
   1404      1.1  christos 	}
   1405      1.1  christos 
   1406      1.1  christos       set_id = ((dest_ovl - 1) >> htab->num_lines_log2) + 1;
   1407      1.1  christos       bfd_put_32 (sec->owner, (set_id << 18) | (dest & 0x3ffff),
   1408      1.1  christos 		  sec->contents + sec->size);
   1409      1.1  christos       bfd_put_32 (sec->owner, BRASL + ((to << 5) & 0x007fff80) + 75,
   1410      1.1  christos 		  sec->contents + sec->size + 4);
   1411      1.1  christos       bfd_put_32 (sec->owner, (lrlive << 29) | (g->br_addr & 0x3ffff),
   1412      1.1  christos 		  sec->contents + sec->size + 8);
   1413      1.1  christos       patt = dest ^ br_dest;
   1414      1.1  christos       if (irela != NULL && ELF32_R_TYPE (irela->r_info) == R_SPU_REL16)
   1415      1.1  christos 	patt = (dest - g->br_addr) ^ (br_dest - g->br_addr);
   1416      1.1  christos       bfd_put_32 (sec->owner, (patt << 5) & 0x007fff80,
   1417      1.1  christos 		  sec->contents + sec->size + 12);
   1418      1.1  christos 
   1419      1.1  christos       if (ovl == 0)
   1420      1.1  christos 	/* Extra space for linked list entries.  */
   1421      1.1  christos 	sec->size += 16;
   1422      1.1  christos     }
   1423      1.1  christos   else
   1424      1.1  christos     abort ();
   1425      1.1  christos 
   1426      1.1  christos   sec->size += ovl_stub_size (htab->params);
   1427      1.1  christos 
   1428      1.1  christos   if (htab->params->emit_stub_syms)
   1429      1.1  christos     {
   1430      1.1  christos       size_t len;
   1431      1.1  christos       char *name;
   1432      1.1  christos       int add;
   1433      1.1  christos 
   1434      1.1  christos       len = 8 + sizeof (".ovl_call.") - 1;
   1435      1.1  christos       if (h != NULL)
   1436      1.1  christos 	len += strlen (h->root.root.string);
   1437      1.1  christos       else
   1438      1.1  christos 	len += 8 + 1 + 8;
   1439      1.1  christos       add = 0;
   1440      1.1  christos       if (irela != NULL)
   1441      1.1  christos 	add = (int) irela->r_addend & 0xffffffff;
   1442      1.1  christos       if (add != 0)
   1443      1.1  christos 	len += 1 + 8;
   1444  1.1.1.2  christos       name = bfd_malloc (len + 1);
   1445      1.1  christos       if (name == NULL)
   1446      1.1  christos 	return FALSE;
   1447      1.1  christos 
   1448      1.1  christos       sprintf (name, "%08x.ovl_call.", g->ovl);
   1449      1.1  christos       if (h != NULL)
   1450      1.1  christos 	strcpy (name + 8 + sizeof (".ovl_call.") - 1, h->root.root.string);
   1451      1.1  christos       else
   1452      1.1  christos 	sprintf (name + 8 + sizeof (".ovl_call.") - 1, "%x:%x",
   1453      1.1  christos 		 dest_sec->id & 0xffffffff,
   1454      1.1  christos 		 (int) ELF32_R_SYM (irela->r_info) & 0xffffffff);
   1455      1.1  christos       if (add != 0)
   1456      1.1  christos 	sprintf (name + len - 9, "+%x", add);
   1457      1.1  christos 
   1458      1.1  christos       h = elf_link_hash_lookup (&htab->elf, name, TRUE, TRUE, FALSE);
   1459      1.1  christos       free (name);
   1460      1.1  christos       if (h == NULL)
   1461      1.1  christos 	return FALSE;
   1462      1.1  christos       if (h->root.type == bfd_link_hash_new)
   1463      1.1  christos 	{
   1464      1.1  christos 	  h->root.type = bfd_link_hash_defined;
   1465      1.1  christos 	  h->root.u.def.section = sec;
   1466      1.1  christos 	  h->size = ovl_stub_size (htab->params);
   1467      1.1  christos 	  h->root.u.def.value = sec->size - h->size;
   1468      1.1  christos 	  h->type = STT_FUNC;
   1469      1.1  christos 	  h->ref_regular = 1;
   1470      1.1  christos 	  h->def_regular = 1;
   1471      1.1  christos 	  h->ref_regular_nonweak = 1;
   1472      1.1  christos 	  h->forced_local = 1;
   1473      1.1  christos 	  h->non_elf = 0;
   1474      1.1  christos 	}
   1475      1.1  christos     }
   1476      1.1  christos 
   1477      1.1  christos   return TRUE;
   1478      1.1  christos }
   1479      1.1  christos 
   1480      1.1  christos /* Called via elf_link_hash_traverse to allocate stubs for any _SPUEAR_
   1481      1.1  christos    symbols.  */
   1482      1.1  christos 
   1483      1.1  christos static bfd_boolean
   1484      1.1  christos allocate_spuear_stubs (struct elf_link_hash_entry *h, void *inf)
   1485      1.1  christos {
   1486      1.1  christos   /* Symbols starting with _SPUEAR_ need a stub because they may be
   1487      1.1  christos      invoked by the PPU.  */
   1488      1.1  christos   struct bfd_link_info *info = inf;
   1489      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1490      1.1  christos   asection *sym_sec;
   1491      1.1  christos 
   1492      1.1  christos   if ((h->root.type == bfd_link_hash_defined
   1493      1.1  christos        || h->root.type == bfd_link_hash_defweak)
   1494      1.1  christos       && h->def_regular
   1495      1.1  christos       && strncmp (h->root.root.string, "_SPUEAR_", 8) == 0
   1496      1.1  christos       && (sym_sec = h->root.u.def.section) != NULL
   1497      1.1  christos       && sym_sec->output_section != bfd_abs_section_ptr
   1498      1.1  christos       && spu_elf_section_data (sym_sec->output_section) != NULL
   1499      1.1  christos       && (spu_elf_section_data (sym_sec->output_section)->u.o.ovl_index != 0
   1500      1.1  christos 	  || htab->params->non_overlay_stubs))
   1501      1.1  christos     {
   1502      1.1  christos       return count_stub (htab, NULL, NULL, nonovl_stub, h, NULL);
   1503      1.1  christos     }
   1504  1.1.1.2  christos 
   1505      1.1  christos   return TRUE;
   1506      1.1  christos }
   1507      1.1  christos 
   1508      1.1  christos static bfd_boolean
   1509      1.1  christos build_spuear_stubs (struct elf_link_hash_entry *h, void *inf)
   1510      1.1  christos {
   1511      1.1  christos   /* Symbols starting with _SPUEAR_ need a stub because they may be
   1512      1.1  christos      invoked by the PPU.  */
   1513      1.1  christos   struct bfd_link_info *info = inf;
   1514      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1515      1.1  christos   asection *sym_sec;
   1516      1.1  christos 
   1517      1.1  christos   if ((h->root.type == bfd_link_hash_defined
   1518      1.1  christos        || h->root.type == bfd_link_hash_defweak)
   1519      1.1  christos       && h->def_regular
   1520      1.1  christos       && strncmp (h->root.root.string, "_SPUEAR_", 8) == 0
   1521      1.1  christos       && (sym_sec = h->root.u.def.section) != NULL
   1522      1.1  christos       && sym_sec->output_section != bfd_abs_section_ptr
   1523      1.1  christos       && spu_elf_section_data (sym_sec->output_section) != NULL
   1524      1.1  christos       && (spu_elf_section_data (sym_sec->output_section)->u.o.ovl_index != 0
   1525      1.1  christos 	  || htab->params->non_overlay_stubs))
   1526      1.1  christos     {
   1527      1.1  christos       return build_stub (info, NULL, NULL, nonovl_stub, h, NULL,
   1528      1.1  christos 			 h->root.u.def.value, sym_sec);
   1529      1.1  christos     }
   1530  1.1.1.2  christos 
   1531      1.1  christos   return TRUE;
   1532      1.1  christos }
   1533      1.1  christos 
   1534      1.1  christos /* Size or build stubs.  */
   1535      1.1  christos 
   1536      1.1  christos static bfd_boolean
   1537      1.1  christos process_stubs (struct bfd_link_info *info, bfd_boolean build)
   1538      1.1  christos {
   1539      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1540      1.1  christos   bfd *ibfd;
   1541      1.1  christos 
   1542  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   1543      1.1  christos     {
   1544  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   1545      1.1  christos       Elf_Internal_Shdr *symtab_hdr;
   1546      1.1  christos       asection *isec;
   1547      1.1  christos       Elf_Internal_Sym *local_syms = NULL;
   1548      1.1  christos 
   1549  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   1550      1.1  christos 	continue;
   1551      1.1  christos 
   1552      1.1  christos       /* We'll need the symbol table in a second.  */
   1553      1.1  christos       symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
   1554      1.1  christos       if (symtab_hdr->sh_info == 0)
   1555      1.1  christos 	continue;
   1556      1.1  christos 
   1557      1.1  christos       /* Walk over each section attached to the input bfd.  */
   1558      1.1  christos       for (isec = ibfd->sections; isec != NULL; isec = isec->next)
   1559      1.1  christos 	{
   1560      1.1  christos 	  Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
   1561      1.1  christos 
   1562      1.1  christos 	  /* If there aren't any relocs, then there's nothing more to do.  */
   1563      1.1  christos 	  if ((isec->flags & SEC_RELOC) == 0
   1564      1.1  christos 	      || isec->reloc_count == 0)
   1565      1.1  christos 	    continue;
   1566      1.1  christos 
   1567      1.1  christos 	  if (!maybe_needs_stubs (isec))
   1568      1.1  christos 	    continue;
   1569      1.1  christos 
   1570      1.1  christos 	  /* Get the relocs.  */
   1571      1.1  christos 	  internal_relocs = _bfd_elf_link_read_relocs (ibfd, isec, NULL, NULL,
   1572      1.1  christos 						       info->keep_memory);
   1573      1.1  christos 	  if (internal_relocs == NULL)
   1574      1.1  christos 	    goto error_ret_free_local;
   1575      1.1  christos 
   1576      1.1  christos 	  /* Now examine each relocation.  */
   1577      1.1  christos 	  irela = internal_relocs;
   1578      1.1  christos 	  irelaend = irela + isec->reloc_count;
   1579      1.1  christos 	  for (; irela < irelaend; irela++)
   1580      1.1  christos 	    {
   1581      1.1  christos 	      enum elf_spu_reloc_type r_type;
   1582      1.1  christos 	      unsigned int r_indx;
   1583      1.1  christos 	      asection *sym_sec;
   1584      1.1  christos 	      Elf_Internal_Sym *sym;
   1585      1.1  christos 	      struct elf_link_hash_entry *h;
   1586      1.1  christos 	      enum _stub_type stub_type;
   1587      1.1  christos 
   1588      1.1  christos 	      r_type = ELF32_R_TYPE (irela->r_info);
   1589      1.1  christos 	      r_indx = ELF32_R_SYM (irela->r_info);
   1590      1.1  christos 
   1591      1.1  christos 	      if (r_type >= R_SPU_max)
   1592      1.1  christos 		{
   1593      1.1  christos 		  bfd_set_error (bfd_error_bad_value);
   1594      1.1  christos 		error_ret_free_internal:
   1595      1.1  christos 		  if (elf_section_data (isec)->relocs != internal_relocs)
   1596      1.1  christos 		    free (internal_relocs);
   1597      1.1  christos 		error_ret_free_local:
   1598      1.1  christos 		  if (local_syms != NULL
   1599      1.1  christos 		      && (symtab_hdr->contents
   1600      1.1  christos 			  != (unsigned char *) local_syms))
   1601      1.1  christos 		    free (local_syms);
   1602      1.1  christos 		  return FALSE;
   1603      1.1  christos 		}
   1604      1.1  christos 
   1605      1.1  christos 	      /* Determine the reloc target section.  */
   1606      1.1  christos 	      if (!get_sym_h (&h, &sym, &sym_sec, &local_syms, r_indx, ibfd))
   1607      1.1  christos 		goto error_ret_free_internal;
   1608      1.1  christos 
   1609      1.1  christos 	      stub_type = needs_ovl_stub (h, sym, sym_sec, isec, irela,
   1610      1.1  christos 					  NULL, info);
   1611      1.1  christos 	      if (stub_type == no_stub)
   1612      1.1  christos 		continue;
   1613      1.1  christos 	      else if (stub_type == stub_error)
   1614      1.1  christos 		goto error_ret_free_internal;
   1615      1.1  christos 
   1616      1.1  christos 	      if (htab->stub_count == NULL)
   1617      1.1  christos 		{
   1618      1.1  christos 		  bfd_size_type amt;
   1619      1.1  christos 		  amt = (htab->num_overlays + 1) * sizeof (*htab->stub_count);
   1620      1.1  christos 		  htab->stub_count = bfd_zmalloc (amt);
   1621      1.1  christos 		  if (htab->stub_count == NULL)
   1622      1.1  christos 		    goto error_ret_free_internal;
   1623      1.1  christos 		}
   1624      1.1  christos 
   1625      1.1  christos 	      if (!build)
   1626      1.1  christos 		{
   1627      1.1  christos 		  if (!count_stub (htab, ibfd, isec, stub_type, h, irela))
   1628      1.1  christos 		    goto error_ret_free_internal;
   1629      1.1  christos 		}
   1630      1.1  christos 	      else
   1631      1.1  christos 		{
   1632      1.1  christos 		  bfd_vma dest;
   1633      1.1  christos 
   1634      1.1  christos 		  if (h != NULL)
   1635      1.1  christos 		    dest = h->root.u.def.value;
   1636      1.1  christos 		  else
   1637      1.1  christos 		    dest = sym->st_value;
   1638      1.1  christos 		  dest += irela->r_addend;
   1639      1.1  christos 		  if (!build_stub (info, ibfd, isec, stub_type, h, irela,
   1640      1.1  christos 				   dest, sym_sec))
   1641      1.1  christos 		    goto error_ret_free_internal;
   1642      1.1  christos 		}
   1643      1.1  christos 	    }
   1644      1.1  christos 
   1645      1.1  christos 	  /* We're done with the internal relocs, free them.  */
   1646      1.1  christos 	  if (elf_section_data (isec)->relocs != internal_relocs)
   1647      1.1  christos 	    free (internal_relocs);
   1648      1.1  christos 	}
   1649      1.1  christos 
   1650      1.1  christos       if (local_syms != NULL
   1651      1.1  christos 	  && symtab_hdr->contents != (unsigned char *) local_syms)
   1652      1.1  christos 	{
   1653      1.1  christos 	  if (!info->keep_memory)
   1654      1.1  christos 	    free (local_syms);
   1655      1.1  christos 	  else
   1656      1.1  christos 	    symtab_hdr->contents = (unsigned char *) local_syms;
   1657      1.1  christos 	}
   1658      1.1  christos     }
   1659      1.1  christos 
   1660      1.1  christos   return TRUE;
   1661      1.1  christos }
   1662      1.1  christos 
   1663      1.1  christos /* Allocate space for overlay call and return stubs.
   1664      1.1  christos    Return 0 on error, 1 if no overlays, 2 otherwise.  */
   1665      1.1  christos 
   1666      1.1  christos int
   1667      1.1  christos spu_elf_size_stubs (struct bfd_link_info *info)
   1668      1.1  christos {
   1669      1.1  christos   struct spu_link_hash_table *htab;
   1670      1.1  christos   bfd *ibfd;
   1671      1.1  christos   bfd_size_type amt;
   1672      1.1  christos   flagword flags;
   1673      1.1  christos   unsigned int i;
   1674      1.1  christos   asection *stub;
   1675      1.1  christos 
   1676      1.1  christos   if (!process_stubs (info, FALSE))
   1677      1.1  christos     return 0;
   1678      1.1  christos 
   1679      1.1  christos   htab = spu_hash_table (info);
   1680      1.1  christos   elf_link_hash_traverse (&htab->elf, allocate_spuear_stubs, info);
   1681      1.1  christos   if (htab->stub_err)
   1682      1.1  christos     return 0;
   1683      1.1  christos 
   1684      1.1  christos   ibfd = info->input_bfds;
   1685      1.1  christos   if (htab->stub_count != NULL)
   1686      1.1  christos     {
   1687      1.1  christos       amt = (htab->num_overlays + 1) * sizeof (*htab->stub_sec);
   1688      1.1  christos       htab->stub_sec = bfd_zmalloc (amt);
   1689      1.1  christos       if (htab->stub_sec == NULL)
   1690      1.1  christos 	return 0;
   1691      1.1  christos 
   1692      1.1  christos       flags = (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_READONLY
   1693      1.1  christos 	       | SEC_HAS_CONTENTS | SEC_IN_MEMORY);
   1694      1.1  christos       stub = bfd_make_section_anyway_with_flags (ibfd, ".stub", flags);
   1695      1.1  christos       htab->stub_sec[0] = stub;
   1696      1.1  christos       if (stub == NULL
   1697      1.1  christos 	  || !bfd_set_section_alignment (ibfd, stub,
   1698      1.1  christos 					 ovl_stub_size_log2 (htab->params)))
   1699      1.1  christos 	return 0;
   1700      1.1  christos       stub->size = htab->stub_count[0] * ovl_stub_size (htab->params);
   1701      1.1  christos       if (htab->params->ovly_flavour == ovly_soft_icache)
   1702      1.1  christos 	/* Extra space for linked list entries.  */
   1703      1.1  christos 	stub->size += htab->stub_count[0] * 16;
   1704      1.1  christos 
   1705      1.1  christos       for (i = 0; i < htab->num_overlays; ++i)
   1706      1.1  christos 	{
   1707      1.1  christos 	  asection *osec = htab->ovl_sec[i];
   1708      1.1  christos 	  unsigned int ovl = spu_elf_section_data (osec)->u.o.ovl_index;
   1709      1.1  christos 	  stub = bfd_make_section_anyway_with_flags (ibfd, ".stub", flags);
   1710      1.1  christos 	  htab->stub_sec[ovl] = stub;
   1711      1.1  christos 	  if (stub == NULL
   1712      1.1  christos 	      || !bfd_set_section_alignment (ibfd, stub,
   1713      1.1  christos 					     ovl_stub_size_log2 (htab->params)))
   1714      1.1  christos 	    return 0;
   1715      1.1  christos 	  stub->size = htab->stub_count[ovl] * ovl_stub_size (htab->params);
   1716      1.1  christos 	}
   1717      1.1  christos     }
   1718      1.1  christos 
   1719      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   1720      1.1  christos     {
   1721      1.1  christos       /* Space for icache manager tables.
   1722      1.1  christos 	 a) Tag array, one quadword per cache line.
   1723      1.1  christos 	 b) Rewrite "to" list, one quadword per cache line.
   1724      1.1  christos 	 c) Rewrite "from" list, one byte per outgoing branch (rounded up to
   1725      1.1  christos 	    a power-of-two number of full quadwords) per cache line.  */
   1726      1.1  christos 
   1727      1.1  christos       flags = SEC_ALLOC;
   1728      1.1  christos       htab->ovtab = bfd_make_section_anyway_with_flags (ibfd, ".ovtab", flags);
   1729      1.1  christos       if (htab->ovtab == NULL
   1730      1.1  christos 	  || !bfd_set_section_alignment (ibfd, htab->ovtab, 4))
   1731      1.1  christos 	return 0;
   1732      1.1  christos 
   1733      1.1  christos       htab->ovtab->size = (16 + 16 + (16 << htab->fromelem_size_log2))
   1734      1.1  christos 			  << htab->num_lines_log2;
   1735      1.1  christos 
   1736      1.1  christos       flags = SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY;
   1737      1.1  christos       htab->init = bfd_make_section_anyway_with_flags (ibfd, ".ovini", flags);
   1738      1.1  christos       if (htab->init == NULL
   1739      1.1  christos 	  || !bfd_set_section_alignment (ibfd, htab->init, 4))
   1740      1.1  christos 	return 0;
   1741      1.1  christos 
   1742      1.1  christos       htab->init->size = 16;
   1743      1.1  christos     }
   1744      1.1  christos   else if (htab->stub_count == NULL)
   1745      1.1  christos     return 1;
   1746      1.1  christos   else
   1747      1.1  christos     {
   1748      1.1  christos       /* htab->ovtab consists of two arrays.
   1749      1.1  christos 	 .	struct {
   1750      1.1  christos 	 .	  u32 vma;
   1751      1.1  christos 	 .	  u32 size;
   1752      1.1  christos 	 .	  u32 file_off;
   1753      1.1  christos 	 .	  u32 buf;
   1754      1.1  christos 	 .	} _ovly_table[];
   1755      1.1  christos 	 .
   1756      1.1  christos 	 .	struct {
   1757      1.1  christos 	 .	  u32 mapped;
   1758      1.1  christos 	 .	} _ovly_buf_table[];
   1759      1.1  christos 	 .  */
   1760      1.1  christos 
   1761      1.1  christos       flags = SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY;
   1762      1.1  christos       htab->ovtab = bfd_make_section_anyway_with_flags (ibfd, ".ovtab", flags);
   1763      1.1  christos       if (htab->ovtab == NULL
   1764      1.1  christos 	  || !bfd_set_section_alignment (ibfd, htab->ovtab, 4))
   1765      1.1  christos 	return 0;
   1766      1.1  christos 
   1767      1.1  christos       htab->ovtab->size = htab->num_overlays * 16 + 16 + htab->num_buf * 4;
   1768      1.1  christos     }
   1769      1.1  christos 
   1770      1.1  christos   htab->toe = bfd_make_section_anyway_with_flags (ibfd, ".toe", SEC_ALLOC);
   1771      1.1  christos   if (htab->toe == NULL
   1772      1.1  christos       || !bfd_set_section_alignment (ibfd, htab->toe, 4))
   1773      1.1  christos     return 0;
   1774      1.1  christos   htab->toe->size = 16;
   1775      1.1  christos 
   1776      1.1  christos   return 2;
   1777      1.1  christos }
   1778      1.1  christos 
   1779      1.1  christos /* Called from ld to place overlay manager data sections.  This is done
   1780      1.1  christos    after the overlay manager itself is loaded, mainly so that the
   1781      1.1  christos    linker's htab->init section is placed after any other .ovl.init
   1782      1.1  christos    sections.  */
   1783      1.1  christos 
   1784      1.1  christos void
   1785      1.1  christos spu_elf_place_overlay_data (struct bfd_link_info *info)
   1786      1.1  christos {
   1787      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1788      1.1  christos   unsigned int i;
   1789      1.1  christos 
   1790      1.1  christos   if (htab->stub_sec != NULL)
   1791      1.1  christos     {
   1792      1.1  christos       (*htab->params->place_spu_section) (htab->stub_sec[0], NULL, ".text");
   1793      1.1  christos 
   1794      1.1  christos       for (i = 0; i < htab->num_overlays; ++i)
   1795      1.1  christos 	{
   1796      1.1  christos 	  asection *osec = htab->ovl_sec[i];
   1797      1.1  christos 	  unsigned int ovl = spu_elf_section_data (osec)->u.o.ovl_index;
   1798      1.1  christos 	  (*htab->params->place_spu_section) (htab->stub_sec[ovl], osec, NULL);
   1799      1.1  christos 	}
   1800      1.1  christos     }
   1801      1.1  christos 
   1802      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   1803      1.1  christos     (*htab->params->place_spu_section) (htab->init, NULL, ".ovl.init");
   1804      1.1  christos 
   1805      1.1  christos   if (htab->ovtab != NULL)
   1806      1.1  christos     {
   1807      1.1  christos       const char *ovout = ".data";
   1808      1.1  christos       if (htab->params->ovly_flavour == ovly_soft_icache)
   1809      1.1  christos 	ovout = ".bss";
   1810      1.1  christos       (*htab->params->place_spu_section) (htab->ovtab, NULL, ovout);
   1811      1.1  christos     }
   1812      1.1  christos 
   1813      1.1  christos   if (htab->toe != NULL)
   1814      1.1  christos     (*htab->params->place_spu_section) (htab->toe, NULL, ".toe");
   1815      1.1  christos }
   1816      1.1  christos 
   1817      1.1  christos /* Functions to handle embedded spu_ovl.o object.  */
   1818      1.1  christos 
   1819      1.1  christos static void *
   1820      1.1  christos ovl_mgr_open (struct bfd *nbfd ATTRIBUTE_UNUSED, void *stream)
   1821      1.1  christos {
   1822      1.1  christos   return stream;
   1823      1.1  christos }
   1824      1.1  christos 
   1825      1.1  christos static file_ptr
   1826      1.1  christos ovl_mgr_pread (struct bfd *abfd ATTRIBUTE_UNUSED,
   1827      1.1  christos 	       void *stream,
   1828      1.1  christos 	       void *buf,
   1829      1.1  christos 	       file_ptr nbytes,
   1830      1.1  christos 	       file_ptr offset)
   1831      1.1  christos {
   1832      1.1  christos   struct _ovl_stream *os;
   1833      1.1  christos   size_t count;
   1834      1.1  christos   size_t max;
   1835      1.1  christos 
   1836      1.1  christos   os = (struct _ovl_stream *) stream;
   1837      1.1  christos   max = (const char *) os->end - (const char *) os->start;
   1838      1.1  christos 
   1839      1.1  christos   if ((ufile_ptr) offset >= max)
   1840      1.1  christos     return 0;
   1841      1.1  christos 
   1842      1.1  christos   count = nbytes;
   1843      1.1  christos   if (count > max - offset)
   1844      1.1  christos     count = max - offset;
   1845      1.1  christos 
   1846      1.1  christos   memcpy (buf, (const char *) os->start + offset, count);
   1847      1.1  christos   return count;
   1848      1.1  christos }
   1849      1.1  christos 
   1850  1.1.1.4  christos static int
   1851  1.1.1.4  christos ovl_mgr_stat (struct bfd *abfd ATTRIBUTE_UNUSED,
   1852  1.1.1.4  christos 	      void *stream,
   1853  1.1.1.4  christos 	      struct stat *sb)
   1854  1.1.1.4  christos {
   1855  1.1.1.4  christos   struct _ovl_stream *os = (struct _ovl_stream *) stream;
   1856  1.1.1.4  christos 
   1857  1.1.1.4  christos   memset (sb, 0, sizeof (*sb));
   1858  1.1.1.4  christos   sb->st_size = (const char *) os->end - (const char *) os->start;
   1859  1.1.1.4  christos   return 0;
   1860  1.1.1.4  christos }
   1861  1.1.1.4  christos 
   1862      1.1  christos bfd_boolean
   1863      1.1  christos spu_elf_open_builtin_lib (bfd **ovl_bfd, const struct _ovl_stream *stream)
   1864      1.1  christos {
   1865      1.1  christos   *ovl_bfd = bfd_openr_iovec ("builtin ovl_mgr",
   1866      1.1  christos 			      "elf32-spu",
   1867      1.1  christos 			      ovl_mgr_open,
   1868      1.1  christos 			      (void *) stream,
   1869      1.1  christos 			      ovl_mgr_pread,
   1870      1.1  christos 			      NULL,
   1871  1.1.1.4  christos 			      ovl_mgr_stat);
   1872      1.1  christos   return *ovl_bfd != NULL;
   1873      1.1  christos }
   1874      1.1  christos 
   1875      1.1  christos static unsigned int
   1876      1.1  christos overlay_index (asection *sec)
   1877      1.1  christos {
   1878      1.1  christos   if (sec == NULL
   1879      1.1  christos       || sec->output_section == bfd_abs_section_ptr)
   1880      1.1  christos     return 0;
   1881      1.1  christos   return spu_elf_section_data (sec->output_section)->u.o.ovl_index;
   1882      1.1  christos }
   1883      1.1  christos 
   1884      1.1  christos /* Define an STT_OBJECT symbol.  */
   1885      1.1  christos 
   1886      1.1  christos static struct elf_link_hash_entry *
   1887      1.1  christos define_ovtab_symbol (struct spu_link_hash_table *htab, const char *name)
   1888      1.1  christos {
   1889      1.1  christos   struct elf_link_hash_entry *h;
   1890      1.1  christos 
   1891      1.1  christos   h = elf_link_hash_lookup (&htab->elf, name, TRUE, FALSE, FALSE);
   1892      1.1  christos   if (h == NULL)
   1893      1.1  christos     return NULL;
   1894      1.1  christos 
   1895      1.1  christos   if (h->root.type != bfd_link_hash_defined
   1896      1.1  christos       || !h->def_regular)
   1897      1.1  christos     {
   1898      1.1  christos       h->root.type = bfd_link_hash_defined;
   1899      1.1  christos       h->root.u.def.section = htab->ovtab;
   1900      1.1  christos       h->type = STT_OBJECT;
   1901      1.1  christos       h->ref_regular = 1;
   1902      1.1  christos       h->def_regular = 1;
   1903      1.1  christos       h->ref_regular_nonweak = 1;
   1904      1.1  christos       h->non_elf = 0;
   1905      1.1  christos     }
   1906      1.1  christos   else if (h->root.u.def.section->owner != NULL)
   1907      1.1  christos     {
   1908  1.1.1.7  christos       /* xgettext:c-format */
   1909  1.1.1.8  christos       _bfd_error_handler (_("%pB is not allowed to define %s"),
   1910  1.1.1.7  christos 			  h->root.u.def.section->owner,
   1911  1.1.1.7  christos 			  h->root.root.string);
   1912      1.1  christos       bfd_set_error (bfd_error_bad_value);
   1913      1.1  christos       return NULL;
   1914      1.1  christos     }
   1915      1.1  christos   else
   1916      1.1  christos     {
   1917  1.1.1.7  christos       _bfd_error_handler (_("you are not allowed to define %s in a script"),
   1918  1.1.1.7  christos 			  h->root.root.string);
   1919      1.1  christos       bfd_set_error (bfd_error_bad_value);
   1920      1.1  christos       return NULL;
   1921      1.1  christos     }
   1922      1.1  christos 
   1923      1.1  christos   return h;
   1924      1.1  christos }
   1925      1.1  christos 
   1926      1.1  christos /* Fill in all stubs and the overlay tables.  */
   1927      1.1  christos 
   1928      1.1  christos static bfd_boolean
   1929      1.1  christos spu_elf_build_stubs (struct bfd_link_info *info)
   1930      1.1  christos {
   1931      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   1932      1.1  christos   struct elf_link_hash_entry *h;
   1933      1.1  christos   bfd_byte *p;
   1934      1.1  christos   asection *s;
   1935      1.1  christos   bfd *obfd;
   1936      1.1  christos   unsigned int i;
   1937      1.1  christos 
   1938      1.1  christos   if (htab->num_overlays != 0)
   1939      1.1  christos     {
   1940      1.1  christos       for (i = 0; i < 2; i++)
   1941      1.1  christos 	{
   1942      1.1  christos 	  h = htab->ovly_entry[i];
   1943      1.1  christos 	  if (h != NULL
   1944      1.1  christos 	      && (h->root.type == bfd_link_hash_defined
   1945      1.1  christos 		  || h->root.type == bfd_link_hash_defweak)
   1946      1.1  christos 	      && h->def_regular)
   1947      1.1  christos 	    {
   1948      1.1  christos 	      s = h->root.u.def.section->output_section;
   1949      1.1  christos 	      if (spu_elf_section_data (s)->u.o.ovl_index)
   1950      1.1  christos 		{
   1951  1.1.1.7  christos 		  _bfd_error_handler (_("%s in overlay section"),
   1952  1.1.1.7  christos 				      h->root.root.string);
   1953      1.1  christos 		  bfd_set_error (bfd_error_bad_value);
   1954      1.1  christos 		  return FALSE;
   1955      1.1  christos 		}
   1956      1.1  christos 	    }
   1957      1.1  christos 	}
   1958      1.1  christos     }
   1959      1.1  christos 
   1960      1.1  christos   if (htab->stub_sec != NULL)
   1961      1.1  christos     {
   1962      1.1  christos       for (i = 0; i <= htab->num_overlays; i++)
   1963      1.1  christos 	if (htab->stub_sec[i]->size != 0)
   1964      1.1  christos 	  {
   1965      1.1  christos 	    htab->stub_sec[i]->contents = bfd_zalloc (htab->stub_sec[i]->owner,
   1966      1.1  christos 						      htab->stub_sec[i]->size);
   1967      1.1  christos 	    if (htab->stub_sec[i]->contents == NULL)
   1968      1.1  christos 	      return FALSE;
   1969      1.1  christos 	    htab->stub_sec[i]->rawsize = htab->stub_sec[i]->size;
   1970      1.1  christos 	    htab->stub_sec[i]->size = 0;
   1971      1.1  christos 	  }
   1972      1.1  christos 
   1973      1.1  christos       /* Fill in all the stubs.  */
   1974      1.1  christos       process_stubs (info, TRUE);
   1975      1.1  christos       if (!htab->stub_err)
   1976      1.1  christos 	elf_link_hash_traverse (&htab->elf, build_spuear_stubs, info);
   1977      1.1  christos 
   1978      1.1  christos       if (htab->stub_err)
   1979      1.1  christos 	{
   1980  1.1.1.7  christos 	  _bfd_error_handler (_("overlay stub relocation overflow"));
   1981      1.1  christos 	  bfd_set_error (bfd_error_bad_value);
   1982      1.1  christos 	  return FALSE;
   1983      1.1  christos 	}
   1984      1.1  christos 
   1985      1.1  christos       for (i = 0; i <= htab->num_overlays; i++)
   1986      1.1  christos 	{
   1987      1.1  christos 	  if (htab->stub_sec[i]->size != htab->stub_sec[i]->rawsize)
   1988      1.1  christos 	    {
   1989  1.1.1.7  christos 	      _bfd_error_handler  (_("stubs don't match calculated size"));
   1990      1.1  christos 	      bfd_set_error (bfd_error_bad_value);
   1991      1.1  christos 	      return FALSE;
   1992      1.1  christos 	    }
   1993      1.1  christos 	  htab->stub_sec[i]->rawsize = 0;
   1994      1.1  christos 	}
   1995      1.1  christos     }
   1996      1.1  christos 
   1997      1.1  christos   if (htab->ovtab == NULL || htab->ovtab->size == 0)
   1998      1.1  christos     return TRUE;
   1999      1.1  christos 
   2000      1.1  christos   htab->ovtab->contents = bfd_zalloc (htab->ovtab->owner, htab->ovtab->size);
   2001      1.1  christos   if (htab->ovtab->contents == NULL)
   2002      1.1  christos     return FALSE;
   2003      1.1  christos 
   2004      1.1  christos   p = htab->ovtab->contents;
   2005      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   2006      1.1  christos     {
   2007      1.1  christos       bfd_vma off;
   2008      1.1  christos 
   2009      1.1  christos       h = define_ovtab_symbol (htab, "__icache_tag_array");
   2010      1.1  christos       if (h == NULL)
   2011      1.1  christos 	return FALSE;
   2012      1.1  christos       h->root.u.def.value = 0;
   2013      1.1  christos       h->size = 16 << htab->num_lines_log2;
   2014      1.1  christos       off = h->size;
   2015      1.1  christos 
   2016      1.1  christos       h = define_ovtab_symbol (htab, "__icache_tag_array_size");
   2017      1.1  christos       if (h == NULL)
   2018      1.1  christos 	return FALSE;
   2019      1.1  christos       h->root.u.def.value = 16 << htab->num_lines_log2;
   2020      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2021      1.1  christos 
   2022      1.1  christos       h = define_ovtab_symbol (htab, "__icache_rewrite_to");
   2023      1.1  christos       if (h == NULL)
   2024      1.1  christos 	return FALSE;
   2025      1.1  christos       h->root.u.def.value = off;
   2026      1.1  christos       h->size = 16 << htab->num_lines_log2;
   2027      1.1  christos       off += h->size;
   2028      1.1  christos 
   2029      1.1  christos       h = define_ovtab_symbol (htab, "__icache_rewrite_to_size");
   2030      1.1  christos       if (h == NULL)
   2031      1.1  christos 	return FALSE;
   2032      1.1  christos       h->root.u.def.value = 16 << htab->num_lines_log2;
   2033      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2034      1.1  christos 
   2035      1.1  christos       h = define_ovtab_symbol (htab, "__icache_rewrite_from");
   2036      1.1  christos       if (h == NULL)
   2037      1.1  christos 	return FALSE;
   2038      1.1  christos       h->root.u.def.value = off;
   2039      1.1  christos       h->size = 16 << (htab->fromelem_size_log2 + htab->num_lines_log2);
   2040      1.1  christos       off += h->size;
   2041      1.1  christos 
   2042      1.1  christos       h = define_ovtab_symbol (htab, "__icache_rewrite_from_size");
   2043      1.1  christos       if (h == NULL)
   2044      1.1  christos 	return FALSE;
   2045      1.1  christos       h->root.u.def.value = 16 << (htab->fromelem_size_log2
   2046      1.1  christos 				   + htab->num_lines_log2);
   2047      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2048      1.1  christos 
   2049      1.1  christos       h = define_ovtab_symbol (htab, "__icache_log2_fromelemsize");
   2050      1.1  christos       if (h == NULL)
   2051      1.1  christos 	return FALSE;
   2052      1.1  christos       h->root.u.def.value = htab->fromelem_size_log2;
   2053      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2054      1.1  christos 
   2055      1.1  christos       h = define_ovtab_symbol (htab, "__icache_base");
   2056      1.1  christos       if (h == NULL)
   2057      1.1  christos 	return FALSE;
   2058      1.1  christos       h->root.u.def.value = htab->ovl_sec[0]->vma;
   2059      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2060      1.1  christos       h->size = htab->num_buf << htab->line_size_log2;
   2061      1.1  christos 
   2062      1.1  christos       h = define_ovtab_symbol (htab, "__icache_linesize");
   2063      1.1  christos       if (h == NULL)
   2064      1.1  christos 	return FALSE;
   2065      1.1  christos       h->root.u.def.value = 1 << htab->line_size_log2;
   2066      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2067      1.1  christos 
   2068      1.1  christos       h = define_ovtab_symbol (htab, "__icache_log2_linesize");
   2069      1.1  christos       if (h == NULL)
   2070      1.1  christos 	return FALSE;
   2071      1.1  christos       h->root.u.def.value = htab->line_size_log2;
   2072      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2073      1.1  christos 
   2074      1.1  christos       h = define_ovtab_symbol (htab, "__icache_neg_log2_linesize");
   2075      1.1  christos       if (h == NULL)
   2076      1.1  christos 	return FALSE;
   2077      1.1  christos       h->root.u.def.value = -htab->line_size_log2;
   2078      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2079      1.1  christos 
   2080      1.1  christos       h = define_ovtab_symbol (htab, "__icache_cachesize");
   2081      1.1  christos       if (h == NULL)
   2082      1.1  christos 	return FALSE;
   2083      1.1  christos       h->root.u.def.value = 1 << (htab->num_lines_log2 + htab->line_size_log2);
   2084      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2085      1.1  christos 
   2086      1.1  christos       h = define_ovtab_symbol (htab, "__icache_log2_cachesize");
   2087      1.1  christos       if (h == NULL)
   2088      1.1  christos 	return FALSE;
   2089      1.1  christos       h->root.u.def.value = htab->num_lines_log2 + htab->line_size_log2;
   2090      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2091      1.1  christos 
   2092      1.1  christos       h = define_ovtab_symbol (htab, "__icache_neg_log2_cachesize");
   2093      1.1  christos       if (h == NULL)
   2094      1.1  christos 	return FALSE;
   2095      1.1  christos       h->root.u.def.value = -(htab->num_lines_log2 + htab->line_size_log2);
   2096      1.1  christos       h->root.u.def.section = bfd_abs_section_ptr;
   2097      1.1  christos 
   2098      1.1  christos       if (htab->init != NULL && htab->init->size != 0)
   2099      1.1  christos 	{
   2100      1.1  christos 	  htab->init->contents = bfd_zalloc (htab->init->owner,
   2101      1.1  christos 					     htab->init->size);
   2102      1.1  christos 	  if (htab->init->contents == NULL)
   2103      1.1  christos 	    return FALSE;
   2104      1.1  christos 
   2105      1.1  christos 	  h = define_ovtab_symbol (htab, "__icache_fileoff");
   2106      1.1  christos 	  if (h == NULL)
   2107      1.1  christos 	    return FALSE;
   2108      1.1  christos 	  h->root.u.def.value = 0;
   2109      1.1  christos 	  h->root.u.def.section = htab->init;
   2110      1.1  christos 	  h->size = 8;
   2111      1.1  christos 	}
   2112      1.1  christos     }
   2113      1.1  christos   else
   2114      1.1  christos     {
   2115      1.1  christos       /* Write out _ovly_table.  */
   2116      1.1  christos       /* set low bit of .size to mark non-overlay area as present.  */
   2117      1.1  christos       p[7] = 1;
   2118      1.1  christos       obfd = htab->ovtab->output_section->owner;
   2119      1.1  christos       for (s = obfd->sections; s != NULL; s = s->next)
   2120      1.1  christos 	{
   2121      1.1  christos 	  unsigned int ovl_index = spu_elf_section_data (s)->u.o.ovl_index;
   2122      1.1  christos 
   2123      1.1  christos 	  if (ovl_index != 0)
   2124      1.1  christos 	    {
   2125      1.1  christos 	      unsigned long off = ovl_index * 16;
   2126      1.1  christos 	      unsigned int ovl_buf = spu_elf_section_data (s)->u.o.ovl_buf;
   2127      1.1  christos 
   2128      1.1  christos 	      bfd_put_32 (htab->ovtab->owner, s->vma, p + off);
   2129      1.1  christos 	      bfd_put_32 (htab->ovtab->owner, (s->size + 15) & -16,
   2130      1.1  christos 			  p + off + 4);
   2131      1.1  christos 	      /* file_off written later in spu_elf_modify_program_headers.  */
   2132      1.1  christos 	      bfd_put_32 (htab->ovtab->owner, ovl_buf, p + off + 12);
   2133      1.1  christos 	    }
   2134      1.1  christos 	}
   2135      1.1  christos 
   2136      1.1  christos       h = define_ovtab_symbol (htab, "_ovly_table");
   2137      1.1  christos       if (h == NULL)
   2138      1.1  christos 	return FALSE;
   2139      1.1  christos       h->root.u.def.value = 16;
   2140      1.1  christos       h->size = htab->num_overlays * 16;
   2141      1.1  christos 
   2142      1.1  christos       h = define_ovtab_symbol (htab, "_ovly_table_end");
   2143      1.1  christos       if (h == NULL)
   2144      1.1  christos 	return FALSE;
   2145      1.1  christos       h->root.u.def.value = htab->num_overlays * 16 + 16;
   2146      1.1  christos       h->size = 0;
   2147      1.1  christos 
   2148      1.1  christos       h = define_ovtab_symbol (htab, "_ovly_buf_table");
   2149      1.1  christos       if (h == NULL)
   2150      1.1  christos 	return FALSE;
   2151      1.1  christos       h->root.u.def.value = htab->num_overlays * 16 + 16;
   2152      1.1  christos       h->size = htab->num_buf * 4;
   2153      1.1  christos 
   2154      1.1  christos       h = define_ovtab_symbol (htab, "_ovly_buf_table_end");
   2155      1.1  christos       if (h == NULL)
   2156      1.1  christos 	return FALSE;
   2157      1.1  christos       h->root.u.def.value = htab->num_overlays * 16 + 16 + htab->num_buf * 4;
   2158      1.1  christos       h->size = 0;
   2159      1.1  christos     }
   2160      1.1  christos 
   2161      1.1  christos   h = define_ovtab_symbol (htab, "_EAR_");
   2162      1.1  christos   if (h == NULL)
   2163      1.1  christos     return FALSE;
   2164      1.1  christos   h->root.u.def.section = htab->toe;
   2165      1.1  christos   h->root.u.def.value = 0;
   2166      1.1  christos   h->size = 16;
   2167      1.1  christos 
   2168      1.1  christos   return TRUE;
   2169      1.1  christos }
   2170      1.1  christos 
   2171      1.1  christos /* Check that all loadable section VMAs lie in the range
   2172      1.1  christos    LO .. HI inclusive, and stash some parameters for --auto-overlay.  */
   2173      1.1  christos 
   2174      1.1  christos asection *
   2175      1.1  christos spu_elf_check_vma (struct bfd_link_info *info)
   2176      1.1  christos {
   2177      1.1  christos   struct elf_segment_map *m;
   2178      1.1  christos   unsigned int i;
   2179      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   2180      1.1  christos   bfd *abfd = info->output_bfd;
   2181      1.1  christos   bfd_vma hi = htab->params->local_store_hi;
   2182      1.1  christos   bfd_vma lo = htab->params->local_store_lo;
   2183      1.1  christos 
   2184      1.1  christos   htab->local_store = hi + 1 - lo;
   2185      1.1  christos 
   2186  1.1.1.2  christos   for (m = elf_seg_map (abfd); m != NULL; m = m->next)
   2187      1.1  christos     if (m->p_type == PT_LOAD)
   2188      1.1  christos       for (i = 0; i < m->count; i++)
   2189      1.1  christos 	if (m->sections[i]->size != 0
   2190      1.1  christos 	    && (m->sections[i]->vma < lo
   2191      1.1  christos 		|| m->sections[i]->vma > hi
   2192      1.1  christos 		|| m->sections[i]->vma + m->sections[i]->size - 1 > hi))
   2193      1.1  christos 	  return m->sections[i];
   2194      1.1  christos 
   2195      1.1  christos   return NULL;
   2196      1.1  christos }
   2197      1.1  christos 
   2198      1.1  christos /* OFFSET in SEC (presumably) is the beginning of a function prologue.
   2199      1.1  christos    Search for stack adjusting insns, and return the sp delta.
   2200      1.1  christos    If a store of lr is found save the instruction offset to *LR_STORE.
   2201      1.1  christos    If a stack adjusting instruction is found, save that offset to
   2202      1.1  christos    *SP_ADJUST.  */
   2203      1.1  christos 
   2204      1.1  christos static int
   2205      1.1  christos find_function_stack_adjust (asection *sec,
   2206      1.1  christos 			    bfd_vma offset,
   2207      1.1  christos 			    bfd_vma *lr_store,
   2208      1.1  christos 			    bfd_vma *sp_adjust)
   2209      1.1  christos {
   2210      1.1  christos   int reg[128];
   2211      1.1  christos 
   2212      1.1  christos   memset (reg, 0, sizeof (reg));
   2213      1.1  christos   for ( ; offset + 4 <= sec->size; offset += 4)
   2214      1.1  christos     {
   2215      1.1  christos       unsigned char buf[4];
   2216      1.1  christos       int rt, ra;
   2217      1.1  christos       int imm;
   2218      1.1  christos 
   2219      1.1  christos       /* Assume no relocs on stack adjusing insns.  */
   2220      1.1  christos       if (!bfd_get_section_contents (sec->owner, sec, buf, offset, 4))
   2221      1.1  christos 	break;
   2222      1.1  christos 
   2223      1.1  christos       rt = buf[3] & 0x7f;
   2224      1.1  christos       ra = ((buf[2] & 0x3f) << 1) | (buf[3] >> 7);
   2225      1.1  christos 
   2226      1.1  christos       if (buf[0] == 0x24 /* stqd */)
   2227      1.1  christos 	{
   2228      1.1  christos 	  if (rt == 0 /* lr */ && ra == 1 /* sp */)
   2229      1.1  christos 	    *lr_store = offset;
   2230      1.1  christos 	  continue;
   2231      1.1  christos 	}
   2232      1.1  christos 
   2233      1.1  christos       /* Partly decoded immediate field.  */
   2234      1.1  christos       imm = (buf[1] << 9) | (buf[2] << 1) | (buf[3] >> 7);
   2235      1.1  christos 
   2236      1.1  christos       if (buf[0] == 0x1c /* ai */)
   2237      1.1  christos 	{
   2238      1.1  christos 	  imm >>= 7;
   2239      1.1  christos 	  imm = (imm ^ 0x200) - 0x200;
   2240      1.1  christos 	  reg[rt] = reg[ra] + imm;
   2241      1.1  christos 
   2242      1.1  christos 	  if (rt == 1 /* sp */)
   2243      1.1  christos 	    {
   2244      1.1  christos 	      if (reg[rt] > 0)
   2245      1.1  christos 		break;
   2246      1.1  christos 	      *sp_adjust = offset;
   2247      1.1  christos 	      return reg[rt];
   2248      1.1  christos 	    }
   2249      1.1  christos 	}
   2250      1.1  christos       else if (buf[0] == 0x18 && (buf[1] & 0xe0) == 0 /* a */)
   2251      1.1  christos 	{
   2252      1.1  christos 	  int rb = ((buf[1] & 0x1f) << 2) | ((buf[2] & 0xc0) >> 6);
   2253      1.1  christos 
   2254      1.1  christos 	  reg[rt] = reg[ra] + reg[rb];
   2255      1.1  christos 	  if (rt == 1)
   2256      1.1  christos 	    {
   2257      1.1  christos 	      if (reg[rt] > 0)
   2258      1.1  christos 		break;
   2259      1.1  christos 	      *sp_adjust = offset;
   2260      1.1  christos 	      return reg[rt];
   2261      1.1  christos 	    }
   2262      1.1  christos 	}
   2263      1.1  christos       else if (buf[0] == 0x08 && (buf[1] & 0xe0) == 0 /* sf */)
   2264      1.1  christos 	{
   2265      1.1  christos 	  int rb = ((buf[1] & 0x1f) << 2) | ((buf[2] & 0xc0) >> 6);
   2266      1.1  christos 
   2267      1.1  christos 	  reg[rt] = reg[rb] - reg[ra];
   2268      1.1  christos 	  if (rt == 1)
   2269      1.1  christos 	    {
   2270      1.1  christos 	      if (reg[rt] > 0)
   2271      1.1  christos 		break;
   2272      1.1  christos 	      *sp_adjust = offset;
   2273      1.1  christos 	      return reg[rt];
   2274      1.1  christos 	    }
   2275      1.1  christos 	}
   2276      1.1  christos       else if ((buf[0] & 0xfc) == 0x40 /* il, ilh, ilhu, ila */)
   2277      1.1  christos 	{
   2278      1.1  christos 	  if (buf[0] >= 0x42 /* ila */)
   2279      1.1  christos 	    imm |= (buf[0] & 1) << 17;
   2280      1.1  christos 	  else
   2281      1.1  christos 	    {
   2282      1.1  christos 	      imm &= 0xffff;
   2283      1.1  christos 
   2284      1.1  christos 	      if (buf[0] == 0x40 /* il */)
   2285      1.1  christos 		{
   2286      1.1  christos 		  if ((buf[1] & 0x80) == 0)
   2287      1.1  christos 		    continue;
   2288      1.1  christos 		  imm = (imm ^ 0x8000) - 0x8000;
   2289      1.1  christos 		}
   2290      1.1  christos 	      else if ((buf[1] & 0x80) == 0 /* ilhu */)
   2291      1.1  christos 		imm <<= 16;
   2292      1.1  christos 	    }
   2293      1.1  christos 	  reg[rt] = imm;
   2294      1.1  christos 	  continue;
   2295      1.1  christos 	}
   2296      1.1  christos       else if (buf[0] == 0x60 && (buf[1] & 0x80) != 0 /* iohl */)
   2297      1.1  christos 	{
   2298      1.1  christos 	  reg[rt] |= imm & 0xffff;
   2299      1.1  christos 	  continue;
   2300      1.1  christos 	}
   2301      1.1  christos       else if (buf[0] == 0x04 /* ori */)
   2302      1.1  christos 	{
   2303      1.1  christos 	  imm >>= 7;
   2304      1.1  christos 	  imm = (imm ^ 0x200) - 0x200;
   2305      1.1  christos 	  reg[rt] = reg[ra] | imm;
   2306      1.1  christos 	  continue;
   2307      1.1  christos 	}
   2308      1.1  christos       else if (buf[0] == 0x32 && (buf[1] & 0x80) != 0 /* fsmbi */)
   2309      1.1  christos 	{
   2310      1.1  christos 	  reg[rt] = (  ((imm & 0x8000) ? 0xff000000 : 0)
   2311      1.1  christos 		     | ((imm & 0x4000) ? 0x00ff0000 : 0)
   2312      1.1  christos 		     | ((imm & 0x2000) ? 0x0000ff00 : 0)
   2313      1.1  christos 		     | ((imm & 0x1000) ? 0x000000ff : 0));
   2314      1.1  christos 	  continue;
   2315      1.1  christos 	}
   2316      1.1  christos       else if (buf[0] == 0x16 /* andbi */)
   2317      1.1  christos 	{
   2318      1.1  christos 	  imm >>= 7;
   2319      1.1  christos 	  imm &= 0xff;
   2320      1.1  christos 	  imm |= imm << 8;
   2321      1.1  christos 	  imm |= imm << 16;
   2322      1.1  christos 	  reg[rt] = reg[ra] & imm;
   2323      1.1  christos 	  continue;
   2324      1.1  christos 	}
   2325      1.1  christos       else if (buf[0] == 0x33 && imm == 1 /* brsl .+4 */)
   2326      1.1  christos 	{
   2327      1.1  christos 	  /* Used in pic reg load.  Say rt is trashed.  Won't be used
   2328      1.1  christos 	     in stack adjust, but we need to continue past this branch.  */
   2329      1.1  christos 	  reg[rt] = 0;
   2330      1.1  christos 	  continue;
   2331      1.1  christos 	}
   2332      1.1  christos       else if (is_branch (buf) || is_indirect_branch (buf))
   2333      1.1  christos 	/* If we hit a branch then we must be out of the prologue.  */
   2334      1.1  christos 	break;
   2335      1.1  christos     }
   2336      1.1  christos 
   2337      1.1  christos   return 0;
   2338      1.1  christos }
   2339      1.1  christos 
   2340      1.1  christos /* qsort predicate to sort symbols by section and value.  */
   2341      1.1  christos 
   2342      1.1  christos static Elf_Internal_Sym *sort_syms_syms;
   2343      1.1  christos static asection **sort_syms_psecs;
   2344      1.1  christos 
   2345      1.1  christos static int
   2346      1.1  christos sort_syms (const void *a, const void *b)
   2347      1.1  christos {
   2348      1.1  christos   Elf_Internal_Sym *const *s1 = a;
   2349      1.1  christos   Elf_Internal_Sym *const *s2 = b;
   2350      1.1  christos   asection *sec1,*sec2;
   2351      1.1  christos   bfd_signed_vma delta;
   2352      1.1  christos 
   2353      1.1  christos   sec1 = sort_syms_psecs[*s1 - sort_syms_syms];
   2354      1.1  christos   sec2 = sort_syms_psecs[*s2 - sort_syms_syms];
   2355      1.1  christos 
   2356      1.1  christos   if (sec1 != sec2)
   2357      1.1  christos     return sec1->index - sec2->index;
   2358      1.1  christos 
   2359      1.1  christos   delta = (*s1)->st_value - (*s2)->st_value;
   2360      1.1  christos   if (delta != 0)
   2361      1.1  christos     return delta < 0 ? -1 : 1;
   2362      1.1  christos 
   2363      1.1  christos   delta = (*s2)->st_size - (*s1)->st_size;
   2364      1.1  christos   if (delta != 0)
   2365      1.1  christos     return delta < 0 ? -1 : 1;
   2366      1.1  christos 
   2367      1.1  christos   return *s1 < *s2 ? -1 : 1;
   2368      1.1  christos }
   2369      1.1  christos 
   2370      1.1  christos /* Allocate a struct spu_elf_stack_info with MAX_FUN struct function_info
   2371      1.1  christos    entries for section SEC.  */
   2372      1.1  christos 
   2373      1.1  christos static struct spu_elf_stack_info *
   2374      1.1  christos alloc_stack_info (asection *sec, int max_fun)
   2375      1.1  christos {
   2376      1.1  christos   struct _spu_elf_section_data *sec_data = spu_elf_section_data (sec);
   2377      1.1  christos   bfd_size_type amt;
   2378      1.1  christos 
   2379      1.1  christos   amt = sizeof (struct spu_elf_stack_info);
   2380      1.1  christos   amt += (max_fun - 1) * sizeof (struct function_info);
   2381      1.1  christos   sec_data->u.i.stack_info = bfd_zmalloc (amt);
   2382      1.1  christos   if (sec_data->u.i.stack_info != NULL)
   2383      1.1  christos     sec_data->u.i.stack_info->max_fun = max_fun;
   2384      1.1  christos   return sec_data->u.i.stack_info;
   2385      1.1  christos }
   2386      1.1  christos 
   2387      1.1  christos /* Add a new struct function_info describing a (part of a) function
   2388      1.1  christos    starting at SYM_H.  Keep the array sorted by address.  */
   2389      1.1  christos 
   2390      1.1  christos static struct function_info *
   2391      1.1  christos maybe_insert_function (asection *sec,
   2392      1.1  christos 		       void *sym_h,
   2393      1.1  christos 		       bfd_boolean global,
   2394      1.1  christos 		       bfd_boolean is_func)
   2395      1.1  christos {
   2396      1.1  christos   struct _spu_elf_section_data *sec_data = spu_elf_section_data (sec);
   2397      1.1  christos   struct spu_elf_stack_info *sinfo = sec_data->u.i.stack_info;
   2398      1.1  christos   int i;
   2399      1.1  christos   bfd_vma off, size;
   2400      1.1  christos 
   2401      1.1  christos   if (sinfo == NULL)
   2402      1.1  christos     {
   2403      1.1  christos       sinfo = alloc_stack_info (sec, 20);
   2404      1.1  christos       if (sinfo == NULL)
   2405      1.1  christos 	return NULL;
   2406      1.1  christos     }
   2407      1.1  christos 
   2408      1.1  christos   if (!global)
   2409      1.1  christos     {
   2410      1.1  christos       Elf_Internal_Sym *sym = sym_h;
   2411      1.1  christos       off = sym->st_value;
   2412      1.1  christos       size = sym->st_size;
   2413      1.1  christos     }
   2414      1.1  christos   else
   2415      1.1  christos     {
   2416      1.1  christos       struct elf_link_hash_entry *h = sym_h;
   2417      1.1  christos       off = h->root.u.def.value;
   2418      1.1  christos       size = h->size;
   2419      1.1  christos     }
   2420      1.1  christos 
   2421      1.1  christos   for (i = sinfo->num_fun; --i >= 0; )
   2422      1.1  christos     if (sinfo->fun[i].lo <= off)
   2423      1.1  christos       break;
   2424      1.1  christos 
   2425      1.1  christos   if (i >= 0)
   2426      1.1  christos     {
   2427      1.1  christos       /* Don't add another entry for an alias, but do update some
   2428      1.1  christos 	 info.  */
   2429      1.1  christos       if (sinfo->fun[i].lo == off)
   2430      1.1  christos 	{
   2431      1.1  christos 	  /* Prefer globals over local syms.  */
   2432      1.1  christos 	  if (global && !sinfo->fun[i].global)
   2433      1.1  christos 	    {
   2434      1.1  christos 	      sinfo->fun[i].global = TRUE;
   2435      1.1  christos 	      sinfo->fun[i].u.h = sym_h;
   2436      1.1  christos 	    }
   2437      1.1  christos 	  if (is_func)
   2438      1.1  christos 	    sinfo->fun[i].is_func = TRUE;
   2439      1.1  christos 	  return &sinfo->fun[i];
   2440      1.1  christos 	}
   2441      1.1  christos       /* Ignore a zero-size symbol inside an existing function.  */
   2442      1.1  christos       else if (sinfo->fun[i].hi > off && size == 0)
   2443      1.1  christos 	return &sinfo->fun[i];
   2444      1.1  christos     }
   2445      1.1  christos 
   2446      1.1  christos   if (sinfo->num_fun >= sinfo->max_fun)
   2447      1.1  christos     {
   2448      1.1  christos       bfd_size_type amt = sizeof (struct spu_elf_stack_info);
   2449      1.1  christos       bfd_size_type old = amt;
   2450      1.1  christos 
   2451      1.1  christos       old += (sinfo->max_fun - 1) * sizeof (struct function_info);
   2452      1.1  christos       sinfo->max_fun += 20 + (sinfo->max_fun >> 1);
   2453      1.1  christos       amt += (sinfo->max_fun - 1) * sizeof (struct function_info);
   2454      1.1  christos       sinfo = bfd_realloc (sinfo, amt);
   2455      1.1  christos       if (sinfo == NULL)
   2456      1.1  christos 	return NULL;
   2457      1.1  christos       memset ((char *) sinfo + old, 0, amt - old);
   2458      1.1  christos       sec_data->u.i.stack_info = sinfo;
   2459      1.1  christos     }
   2460      1.1  christos 
   2461      1.1  christos   if (++i < sinfo->num_fun)
   2462      1.1  christos     memmove (&sinfo->fun[i + 1], &sinfo->fun[i],
   2463      1.1  christos 	     (sinfo->num_fun - i) * sizeof (sinfo->fun[i]));
   2464      1.1  christos   sinfo->fun[i].is_func = is_func;
   2465      1.1  christos   sinfo->fun[i].global = global;
   2466      1.1  christos   sinfo->fun[i].sec = sec;
   2467      1.1  christos   if (global)
   2468      1.1  christos     sinfo->fun[i].u.h = sym_h;
   2469      1.1  christos   else
   2470      1.1  christos     sinfo->fun[i].u.sym = sym_h;
   2471      1.1  christos   sinfo->fun[i].lo = off;
   2472      1.1  christos   sinfo->fun[i].hi = off + size;
   2473      1.1  christos   sinfo->fun[i].lr_store = -1;
   2474      1.1  christos   sinfo->fun[i].sp_adjust = -1;
   2475      1.1  christos   sinfo->fun[i].stack = -find_function_stack_adjust (sec, off,
   2476      1.1  christos 						     &sinfo->fun[i].lr_store,
   2477      1.1  christos 						     &sinfo->fun[i].sp_adjust);
   2478      1.1  christos   sinfo->num_fun += 1;
   2479      1.1  christos   return &sinfo->fun[i];
   2480      1.1  christos }
   2481      1.1  christos 
   2482      1.1  christos /* Return the name of FUN.  */
   2483      1.1  christos 
   2484      1.1  christos static const char *
   2485      1.1  christos func_name (struct function_info *fun)
   2486      1.1  christos {
   2487      1.1  christos   asection *sec;
   2488      1.1  christos   bfd *ibfd;
   2489      1.1  christos   Elf_Internal_Shdr *symtab_hdr;
   2490      1.1  christos 
   2491      1.1  christos   while (fun->start != NULL)
   2492      1.1  christos     fun = fun->start;
   2493      1.1  christos 
   2494      1.1  christos   if (fun->global)
   2495      1.1  christos     return fun->u.h->root.root.string;
   2496      1.1  christos 
   2497      1.1  christos   sec = fun->sec;
   2498      1.1  christos   if (fun->u.sym->st_name == 0)
   2499      1.1  christos     {
   2500      1.1  christos       size_t len = strlen (sec->name);
   2501      1.1  christos       char *name = bfd_malloc (len + 10);
   2502      1.1  christos       if (name == NULL)
   2503      1.1  christos 	return "(null)";
   2504      1.1  christos       sprintf (name, "%s+%lx", sec->name,
   2505      1.1  christos 	       (unsigned long) fun->u.sym->st_value & 0xffffffff);
   2506      1.1  christos       return name;
   2507      1.1  christos     }
   2508      1.1  christos   ibfd = sec->owner;
   2509      1.1  christos   symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
   2510      1.1  christos   return bfd_elf_sym_name (ibfd, symtab_hdr, fun->u.sym, sec);
   2511      1.1  christos }
   2512      1.1  christos 
   2513      1.1  christos /* Read the instruction at OFF in SEC.  Return true iff the instruction
   2514      1.1  christos    is a nop, lnop, or stop 0 (all zero insn).  */
   2515      1.1  christos 
   2516      1.1  christos static bfd_boolean
   2517      1.1  christos is_nop (asection *sec, bfd_vma off)
   2518      1.1  christos {
   2519      1.1  christos   unsigned char insn[4];
   2520      1.1  christos 
   2521      1.1  christos   if (off + 4 > sec->size
   2522      1.1  christos       || !bfd_get_section_contents (sec->owner, sec, insn, off, 4))
   2523      1.1  christos     return FALSE;
   2524      1.1  christos   if ((insn[0] & 0xbf) == 0 && (insn[1] & 0xe0) == 0x20)
   2525      1.1  christos     return TRUE;
   2526      1.1  christos   if (insn[0] == 0 && insn[1] == 0 && insn[2] == 0 && insn[3] == 0)
   2527      1.1  christos     return TRUE;
   2528      1.1  christos   return FALSE;
   2529      1.1  christos }
   2530      1.1  christos 
   2531      1.1  christos /* Extend the range of FUN to cover nop padding up to LIMIT.
   2532      1.1  christos    Return TRUE iff some instruction other than a NOP was found.  */
   2533      1.1  christos 
   2534      1.1  christos static bfd_boolean
   2535      1.1  christos insns_at_end (struct function_info *fun, bfd_vma limit)
   2536      1.1  christos {
   2537      1.1  christos   bfd_vma off = (fun->hi + 3) & -4;
   2538      1.1  christos 
   2539      1.1  christos   while (off < limit && is_nop (fun->sec, off))
   2540      1.1  christos     off += 4;
   2541      1.1  christos   if (off < limit)
   2542      1.1  christos     {
   2543      1.1  christos       fun->hi = off;
   2544      1.1  christos       return TRUE;
   2545      1.1  christos     }
   2546      1.1  christos   fun->hi = limit;
   2547      1.1  christos   return FALSE;
   2548      1.1  christos }
   2549      1.1  christos 
   2550      1.1  christos /* Check and fix overlapping function ranges.  Return TRUE iff there
   2551      1.1  christos    are gaps in the current info we have about functions in SEC.  */
   2552      1.1  christos 
   2553      1.1  christos static bfd_boolean
   2554      1.1  christos check_function_ranges (asection *sec, struct bfd_link_info *info)
   2555      1.1  christos {
   2556      1.1  christos   struct _spu_elf_section_data *sec_data = spu_elf_section_data (sec);
   2557      1.1  christos   struct spu_elf_stack_info *sinfo = sec_data->u.i.stack_info;
   2558      1.1  christos   int i;
   2559      1.1  christos   bfd_boolean gaps = FALSE;
   2560      1.1  christos 
   2561      1.1  christos   if (sinfo == NULL)
   2562      1.1  christos     return FALSE;
   2563      1.1  christos 
   2564      1.1  christos   for (i = 1; i < sinfo->num_fun; i++)
   2565      1.1  christos     if (sinfo->fun[i - 1].hi > sinfo->fun[i].lo)
   2566      1.1  christos       {
   2567      1.1  christos 	/* Fix overlapping symbols.  */
   2568      1.1  christos 	const char *f1 = func_name (&sinfo->fun[i - 1]);
   2569      1.1  christos 	const char *f2 = func_name (&sinfo->fun[i]);
   2570      1.1  christos 
   2571  1.1.1.7  christos 	/* xgettext:c-format */
   2572      1.1  christos 	info->callbacks->einfo (_("warning: %s overlaps %s\n"), f1, f2);
   2573      1.1  christos 	sinfo->fun[i - 1].hi = sinfo->fun[i].lo;
   2574      1.1  christos       }
   2575      1.1  christos     else if (insns_at_end (&sinfo->fun[i - 1], sinfo->fun[i].lo))
   2576      1.1  christos       gaps = TRUE;
   2577      1.1  christos 
   2578      1.1  christos   if (sinfo->num_fun == 0)
   2579      1.1  christos     gaps = TRUE;
   2580      1.1  christos   else
   2581      1.1  christos     {
   2582      1.1  christos       if (sinfo->fun[0].lo != 0)
   2583      1.1  christos 	gaps = TRUE;
   2584      1.1  christos       if (sinfo->fun[sinfo->num_fun - 1].hi > sec->size)
   2585      1.1  christos 	{
   2586      1.1  christos 	  const char *f1 = func_name (&sinfo->fun[sinfo->num_fun - 1]);
   2587      1.1  christos 
   2588      1.1  christos 	  info->callbacks->einfo (_("warning: %s exceeds section size\n"), f1);
   2589      1.1  christos 	  sinfo->fun[sinfo->num_fun - 1].hi = sec->size;
   2590      1.1  christos 	}
   2591      1.1  christos       else if (insns_at_end (&sinfo->fun[sinfo->num_fun - 1], sec->size))
   2592      1.1  christos 	gaps = TRUE;
   2593      1.1  christos     }
   2594      1.1  christos   return gaps;
   2595      1.1  christos }
   2596      1.1  christos 
   2597      1.1  christos /* Search current function info for a function that contains address
   2598      1.1  christos    OFFSET in section SEC.  */
   2599      1.1  christos 
   2600      1.1  christos static struct function_info *
   2601      1.1  christos find_function (asection *sec, bfd_vma offset, struct bfd_link_info *info)
   2602      1.1  christos {
   2603      1.1  christos   struct _spu_elf_section_data *sec_data = spu_elf_section_data (sec);
   2604      1.1  christos   struct spu_elf_stack_info *sinfo = sec_data->u.i.stack_info;
   2605      1.1  christos   int lo, hi, mid;
   2606      1.1  christos 
   2607      1.1  christos   lo = 0;
   2608      1.1  christos   hi = sinfo->num_fun;
   2609      1.1  christos   while (lo < hi)
   2610      1.1  christos     {
   2611      1.1  christos       mid = (lo + hi) / 2;
   2612      1.1  christos       if (offset < sinfo->fun[mid].lo)
   2613      1.1  christos 	hi = mid;
   2614      1.1  christos       else if (offset >= sinfo->fun[mid].hi)
   2615      1.1  christos 	lo = mid + 1;
   2616      1.1  christos       else
   2617      1.1  christos 	return &sinfo->fun[mid];
   2618      1.1  christos     }
   2619  1.1.1.7  christos   /* xgettext:c-format */
   2620  1.1.1.8  christos   info->callbacks->einfo (_("%pA:0x%v not found in function table\n"),
   2621      1.1  christos 			  sec, offset);
   2622      1.1  christos   bfd_set_error (bfd_error_bad_value);
   2623      1.1  christos   return NULL;
   2624      1.1  christos }
   2625      1.1  christos 
   2626      1.1  christos /* Add CALLEE to CALLER call list if not already present.  Return TRUE
   2627      1.1  christos    if CALLEE was new.  If this function return FALSE, CALLEE should
   2628      1.1  christos    be freed.  */
   2629      1.1  christos 
   2630      1.1  christos static bfd_boolean
   2631      1.1  christos insert_callee (struct function_info *caller, struct call_info *callee)
   2632      1.1  christos {
   2633      1.1  christos   struct call_info **pp, *p;
   2634      1.1  christos 
   2635      1.1  christos   for (pp = &caller->call_list; (p = *pp) != NULL; pp = &p->next)
   2636      1.1  christos     if (p->fun == callee->fun)
   2637      1.1  christos       {
   2638      1.1  christos 	/* Tail calls use less stack than normal calls.  Retain entry
   2639      1.1  christos 	   for normal call over one for tail call.  */
   2640      1.1  christos 	p->is_tail &= callee->is_tail;
   2641      1.1  christos 	if (!p->is_tail)
   2642      1.1  christos 	  {
   2643      1.1  christos 	    p->fun->start = NULL;
   2644      1.1  christos 	    p->fun->is_func = TRUE;
   2645      1.1  christos 	  }
   2646      1.1  christos 	p->count += callee->count;
   2647      1.1  christos 	/* Reorder list so most recent call is first.  */
   2648      1.1  christos 	*pp = p->next;
   2649      1.1  christos 	p->next = caller->call_list;
   2650      1.1  christos 	caller->call_list = p;
   2651      1.1  christos 	return FALSE;
   2652      1.1  christos       }
   2653      1.1  christos   callee->next = caller->call_list;
   2654      1.1  christos   caller->call_list = callee;
   2655      1.1  christos   return TRUE;
   2656      1.1  christos }
   2657      1.1  christos 
   2658      1.1  christos /* Copy CALL and insert the copy into CALLER.  */
   2659      1.1  christos 
   2660      1.1  christos static bfd_boolean
   2661      1.1  christos copy_callee (struct function_info *caller, const struct call_info *call)
   2662      1.1  christos {
   2663      1.1  christos   struct call_info *callee;
   2664      1.1  christos   callee = bfd_malloc (sizeof (*callee));
   2665      1.1  christos   if (callee == NULL)
   2666      1.1  christos     return FALSE;
   2667      1.1  christos   *callee = *call;
   2668      1.1  christos   if (!insert_callee (caller, callee))
   2669      1.1  christos     free (callee);
   2670      1.1  christos   return TRUE;
   2671      1.1  christos }
   2672      1.1  christos 
   2673      1.1  christos /* We're only interested in code sections.  Testing SEC_IN_MEMORY excludes
   2674      1.1  christos    overlay stub sections.  */
   2675      1.1  christos 
   2676      1.1  christos static bfd_boolean
   2677      1.1  christos interesting_section (asection *s)
   2678      1.1  christos {
   2679      1.1  christos   return (s->output_section != bfd_abs_section_ptr
   2680      1.1  christos 	  && ((s->flags & (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_IN_MEMORY))
   2681      1.1  christos 	      == (SEC_ALLOC | SEC_LOAD | SEC_CODE))
   2682      1.1  christos 	  && s->size != 0);
   2683      1.1  christos }
   2684      1.1  christos 
   2685      1.1  christos /* Rummage through the relocs for SEC, looking for function calls.
   2686      1.1  christos    If CALL_TREE is true, fill in call graph.  If CALL_TREE is false,
   2687      1.1  christos    mark destination symbols on calls as being functions.  Also
   2688      1.1  christos    look at branches, which may be tail calls or go to hot/cold
   2689      1.1  christos    section part of same function.  */
   2690      1.1  christos 
   2691      1.1  christos static bfd_boolean
   2692      1.1  christos mark_functions_via_relocs (asection *sec,
   2693      1.1  christos 			   struct bfd_link_info *info,
   2694      1.1  christos 			   int call_tree)
   2695      1.1  christos {
   2696      1.1  christos   Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
   2697      1.1  christos   Elf_Internal_Shdr *symtab_hdr;
   2698      1.1  christos   void *psyms;
   2699      1.1  christos   unsigned int priority = 0;
   2700      1.1  christos   static bfd_boolean warned;
   2701      1.1  christos 
   2702      1.1  christos   if (!interesting_section (sec)
   2703      1.1  christos       || sec->reloc_count == 0)
   2704      1.1  christos     return TRUE;
   2705      1.1  christos 
   2706      1.1  christos   internal_relocs = _bfd_elf_link_read_relocs (sec->owner, sec, NULL, NULL,
   2707      1.1  christos 					       info->keep_memory);
   2708      1.1  christos   if (internal_relocs == NULL)
   2709      1.1  christos     return FALSE;
   2710      1.1  christos 
   2711      1.1  christos   symtab_hdr = &elf_tdata (sec->owner)->symtab_hdr;
   2712      1.1  christos   psyms = &symtab_hdr->contents;
   2713      1.1  christos   irela = internal_relocs;
   2714      1.1  christos   irelaend = irela + sec->reloc_count;
   2715      1.1  christos   for (; irela < irelaend; irela++)
   2716      1.1  christos     {
   2717      1.1  christos       enum elf_spu_reloc_type r_type;
   2718      1.1  christos       unsigned int r_indx;
   2719      1.1  christos       asection *sym_sec;
   2720      1.1  christos       Elf_Internal_Sym *sym;
   2721      1.1  christos       struct elf_link_hash_entry *h;
   2722      1.1  christos       bfd_vma val;
   2723      1.1  christos       bfd_boolean nonbranch, is_call;
   2724      1.1  christos       struct function_info *caller;
   2725      1.1  christos       struct call_info *callee;
   2726      1.1  christos 
   2727      1.1  christos       r_type = ELF32_R_TYPE (irela->r_info);
   2728      1.1  christos       nonbranch = r_type != R_SPU_REL16 && r_type != R_SPU_ADDR16;
   2729      1.1  christos 
   2730      1.1  christos       r_indx = ELF32_R_SYM (irela->r_info);
   2731      1.1  christos       if (!get_sym_h (&h, &sym, &sym_sec, psyms, r_indx, sec->owner))
   2732      1.1  christos 	return FALSE;
   2733      1.1  christos 
   2734      1.1  christos       if (sym_sec == NULL
   2735      1.1  christos 	  || sym_sec->output_section == bfd_abs_section_ptr)
   2736      1.1  christos 	continue;
   2737      1.1  christos 
   2738      1.1  christos       is_call = FALSE;
   2739      1.1  christos       if (!nonbranch)
   2740      1.1  christos 	{
   2741      1.1  christos 	  unsigned char insn[4];
   2742      1.1  christos 
   2743      1.1  christos 	  if (!bfd_get_section_contents (sec->owner, sec, insn,
   2744      1.1  christos 					 irela->r_offset, 4))
   2745      1.1  christos 	    return FALSE;
   2746      1.1  christos 	  if (is_branch (insn))
   2747      1.1  christos 	    {
   2748      1.1  christos 	      is_call = (insn[0] & 0xfd) == 0x31;
   2749      1.1  christos 	      priority = insn[1] & 0x0f;
   2750      1.1  christos 	      priority <<= 8;
   2751      1.1  christos 	      priority |= insn[2];
   2752      1.1  christos 	      priority <<= 8;
   2753      1.1  christos 	      priority |= insn[3];
   2754      1.1  christos 	      priority >>= 7;
   2755      1.1  christos 	      if ((sym_sec->flags & (SEC_ALLOC | SEC_LOAD | SEC_CODE))
   2756      1.1  christos 		  != (SEC_ALLOC | SEC_LOAD | SEC_CODE))
   2757      1.1  christos 		{
   2758      1.1  christos 		  if (!warned)
   2759      1.1  christos 		    info->callbacks->einfo
   2760  1.1.1.7  christos 		      /* xgettext:c-format */
   2761  1.1.1.8  christos 		      (_("%pB(%pA+0x%v): call to non-code section"
   2762  1.1.1.8  christos 			 " %pB(%pA), analysis incomplete\n"),
   2763      1.1  christos 		       sec->owner, sec, irela->r_offset,
   2764      1.1  christos 		       sym_sec->owner, sym_sec);
   2765      1.1  christos 		  warned = TRUE;
   2766      1.1  christos 		  continue;
   2767      1.1  christos 		}
   2768      1.1  christos 	    }
   2769      1.1  christos 	  else
   2770      1.1  christos 	    {
   2771      1.1  christos 	      nonbranch = TRUE;
   2772      1.1  christos 	      if (is_hint (insn))
   2773      1.1  christos 		continue;
   2774      1.1  christos 	    }
   2775      1.1  christos 	}
   2776      1.1  christos 
   2777      1.1  christos       if (nonbranch)
   2778      1.1  christos 	{
   2779      1.1  christos 	  /* For --auto-overlay, count possible stubs we need for
   2780      1.1  christos 	     function pointer references.  */
   2781      1.1  christos 	  unsigned int sym_type;
   2782      1.1  christos 	  if (h)
   2783      1.1  christos 	    sym_type = h->type;
   2784      1.1  christos 	  else
   2785      1.1  christos 	    sym_type = ELF_ST_TYPE (sym->st_info);
   2786      1.1  christos 	  if (sym_type == STT_FUNC)
   2787      1.1  christos 	    {
   2788      1.1  christos 	      if (call_tree && spu_hash_table (info)->params->auto_overlay)
   2789      1.1  christos 		spu_hash_table (info)->non_ovly_stub += 1;
   2790      1.1  christos 	      /* If the symbol type is STT_FUNC then this must be a
   2791      1.1  christos 		 function pointer initialisation.  */
   2792      1.1  christos 	      continue;
   2793      1.1  christos 	    }
   2794      1.1  christos 	  /* Ignore data references.  */
   2795      1.1  christos 	  if ((sym_sec->flags & (SEC_ALLOC | SEC_LOAD | SEC_CODE))
   2796      1.1  christos 	      != (SEC_ALLOC | SEC_LOAD | SEC_CODE))
   2797      1.1  christos 	    continue;
   2798      1.1  christos 	  /* Otherwise we probably have a jump table reloc for
   2799      1.1  christos 	     a switch statement or some other reference to a
   2800      1.1  christos 	     code label.  */
   2801      1.1  christos 	}
   2802      1.1  christos 
   2803      1.1  christos       if (h)
   2804      1.1  christos 	val = h->root.u.def.value;
   2805      1.1  christos       else
   2806      1.1  christos 	val = sym->st_value;
   2807      1.1  christos       val += irela->r_addend;
   2808      1.1  christos 
   2809      1.1  christos       if (!call_tree)
   2810      1.1  christos 	{
   2811      1.1  christos 	  struct function_info *fun;
   2812      1.1  christos 
   2813      1.1  christos 	  if (irela->r_addend != 0)
   2814      1.1  christos 	    {
   2815      1.1  christos 	      Elf_Internal_Sym *fake = bfd_zmalloc (sizeof (*fake));
   2816      1.1  christos 	      if (fake == NULL)
   2817      1.1  christos 		return FALSE;
   2818      1.1  christos 	      fake->st_value = val;
   2819      1.1  christos 	      fake->st_shndx
   2820      1.1  christos 		= _bfd_elf_section_from_bfd_section (sym_sec->owner, sym_sec);
   2821      1.1  christos 	      sym = fake;
   2822      1.1  christos 	    }
   2823      1.1  christos 	  if (sym)
   2824      1.1  christos 	    fun = maybe_insert_function (sym_sec, sym, FALSE, is_call);
   2825      1.1  christos 	  else
   2826      1.1  christos 	    fun = maybe_insert_function (sym_sec, h, TRUE, is_call);
   2827      1.1  christos 	  if (fun == NULL)
   2828      1.1  christos 	    return FALSE;
   2829      1.1  christos 	  if (irela->r_addend != 0
   2830      1.1  christos 	      && fun->u.sym != sym)
   2831      1.1  christos 	    free (sym);
   2832      1.1  christos 	  continue;
   2833      1.1  christos 	}
   2834      1.1  christos 
   2835      1.1  christos       caller = find_function (sec, irela->r_offset, info);
   2836      1.1  christos       if (caller == NULL)
   2837      1.1  christos 	return FALSE;
   2838      1.1  christos       callee = bfd_malloc (sizeof *callee);
   2839      1.1  christos       if (callee == NULL)
   2840      1.1  christos 	return FALSE;
   2841      1.1  christos 
   2842      1.1  christos       callee->fun = find_function (sym_sec, val, info);
   2843      1.1  christos       if (callee->fun == NULL)
   2844      1.1  christos 	return FALSE;
   2845      1.1  christos       callee->is_tail = !is_call;
   2846      1.1  christos       callee->is_pasted = FALSE;
   2847      1.1  christos       callee->broken_cycle = FALSE;
   2848      1.1  christos       callee->priority = priority;
   2849      1.1  christos       callee->count = nonbranch? 0 : 1;
   2850      1.1  christos       if (callee->fun->last_caller != sec)
   2851      1.1  christos 	{
   2852      1.1  christos 	  callee->fun->last_caller = sec;
   2853      1.1  christos 	  callee->fun->call_count += 1;
   2854      1.1  christos 	}
   2855      1.1  christos       if (!insert_callee (caller, callee))
   2856      1.1  christos 	free (callee);
   2857      1.1  christos       else if (!is_call
   2858      1.1  christos 	       && !callee->fun->is_func
   2859      1.1  christos 	       && callee->fun->stack == 0)
   2860      1.1  christos 	{
   2861      1.1  christos 	  /* This is either a tail call or a branch from one part of
   2862      1.1  christos 	     the function to another, ie. hot/cold section.  If the
   2863      1.1  christos 	     destination has been called by some other function then
   2864      1.1  christos 	     it is a separate function.  We also assume that functions
   2865      1.1  christos 	     are not split across input files.  */
   2866      1.1  christos 	  if (sec->owner != sym_sec->owner)
   2867      1.1  christos 	    {
   2868      1.1  christos 	      callee->fun->start = NULL;
   2869      1.1  christos 	      callee->fun->is_func = TRUE;
   2870      1.1  christos 	    }
   2871      1.1  christos 	  else if (callee->fun->start == NULL)
   2872      1.1  christos 	    {
   2873      1.1  christos 	      struct function_info *caller_start = caller;
   2874      1.1  christos 	      while (caller_start->start)
   2875      1.1  christos 		caller_start = caller_start->start;
   2876      1.1  christos 
   2877      1.1  christos 	      if (caller_start != callee->fun)
   2878      1.1  christos 		callee->fun->start = caller_start;
   2879      1.1  christos 	    }
   2880      1.1  christos 	  else
   2881      1.1  christos 	    {
   2882      1.1  christos 	      struct function_info *callee_start;
   2883      1.1  christos 	      struct function_info *caller_start;
   2884      1.1  christos 	      callee_start = callee->fun;
   2885      1.1  christos 	      while (callee_start->start)
   2886      1.1  christos 		callee_start = callee_start->start;
   2887      1.1  christos 	      caller_start = caller;
   2888      1.1  christos 	      while (caller_start->start)
   2889      1.1  christos 		caller_start = caller_start->start;
   2890      1.1  christos 	      if (caller_start != callee_start)
   2891      1.1  christos 		{
   2892      1.1  christos 		  callee->fun->start = NULL;
   2893      1.1  christos 		  callee->fun->is_func = TRUE;
   2894      1.1  christos 		}
   2895      1.1  christos 	    }
   2896      1.1  christos 	}
   2897      1.1  christos     }
   2898      1.1  christos 
   2899      1.1  christos   return TRUE;
   2900      1.1  christos }
   2901      1.1  christos 
   2902      1.1  christos /* Handle something like .init or .fini, which has a piece of a function.
   2903      1.1  christos    These sections are pasted together to form a single function.  */
   2904      1.1  christos 
   2905      1.1  christos static bfd_boolean
   2906      1.1  christos pasted_function (asection *sec)
   2907      1.1  christos {
   2908      1.1  christos   struct bfd_link_order *l;
   2909      1.1  christos   struct _spu_elf_section_data *sec_data;
   2910      1.1  christos   struct spu_elf_stack_info *sinfo;
   2911      1.1  christos   Elf_Internal_Sym *fake;
   2912      1.1  christos   struct function_info *fun, *fun_start;
   2913      1.1  christos 
   2914      1.1  christos   fake = bfd_zmalloc (sizeof (*fake));
   2915      1.1  christos   if (fake == NULL)
   2916      1.1  christos     return FALSE;
   2917      1.1  christos   fake->st_value = 0;
   2918      1.1  christos   fake->st_size = sec->size;
   2919      1.1  christos   fake->st_shndx
   2920      1.1  christos     = _bfd_elf_section_from_bfd_section (sec->owner, sec);
   2921      1.1  christos   fun = maybe_insert_function (sec, fake, FALSE, FALSE);
   2922      1.1  christos   if (!fun)
   2923      1.1  christos     return FALSE;
   2924      1.1  christos 
   2925      1.1  christos   /* Find a function immediately preceding this section.  */
   2926      1.1  christos   fun_start = NULL;
   2927      1.1  christos   for (l = sec->output_section->map_head.link_order; l != NULL; l = l->next)
   2928      1.1  christos     {
   2929      1.1  christos       if (l->u.indirect.section == sec)
   2930      1.1  christos 	{
   2931      1.1  christos 	  if (fun_start != NULL)
   2932      1.1  christos 	    {
   2933      1.1  christos 	      struct call_info *callee = bfd_malloc (sizeof *callee);
   2934      1.1  christos 	      if (callee == NULL)
   2935      1.1  christos 		return FALSE;
   2936      1.1  christos 
   2937      1.1  christos 	      fun->start = fun_start;
   2938      1.1  christos 	      callee->fun = fun;
   2939      1.1  christos 	      callee->is_tail = TRUE;
   2940      1.1  christos 	      callee->is_pasted = TRUE;
   2941      1.1  christos 	      callee->broken_cycle = FALSE;
   2942      1.1  christos 	      callee->priority = 0;
   2943      1.1  christos 	      callee->count = 1;
   2944      1.1  christos 	      if (!insert_callee (fun_start, callee))
   2945      1.1  christos 		free (callee);
   2946      1.1  christos 	      return TRUE;
   2947      1.1  christos 	    }
   2948      1.1  christos 	  break;
   2949      1.1  christos 	}
   2950      1.1  christos       if (l->type == bfd_indirect_link_order
   2951      1.1  christos 	  && (sec_data = spu_elf_section_data (l->u.indirect.section)) != NULL
   2952      1.1  christos 	  && (sinfo = sec_data->u.i.stack_info) != NULL
   2953      1.1  christos 	  && sinfo->num_fun != 0)
   2954      1.1  christos 	fun_start = &sinfo->fun[sinfo->num_fun - 1];
   2955      1.1  christos     }
   2956      1.1  christos 
   2957      1.1  christos   /* Don't return an error if we did not find a function preceding this
   2958      1.1  christos      section.  The section may have incorrect flags.  */
   2959      1.1  christos   return TRUE;
   2960      1.1  christos }
   2961      1.1  christos 
   2962      1.1  christos /* Map address ranges in code sections to functions.  */
   2963      1.1  christos 
   2964      1.1  christos static bfd_boolean
   2965      1.1  christos discover_functions (struct bfd_link_info *info)
   2966      1.1  christos {
   2967      1.1  christos   bfd *ibfd;
   2968      1.1  christos   int bfd_idx;
   2969      1.1  christos   Elf_Internal_Sym ***psym_arr;
   2970      1.1  christos   asection ***sec_arr;
   2971      1.1  christos   bfd_boolean gaps = FALSE;
   2972      1.1  christos 
   2973      1.1  christos   bfd_idx = 0;
   2974  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   2975      1.1  christos     bfd_idx++;
   2976      1.1  christos 
   2977      1.1  christos   psym_arr = bfd_zmalloc (bfd_idx * sizeof (*psym_arr));
   2978      1.1  christos   if (psym_arr == NULL)
   2979      1.1  christos     return FALSE;
   2980      1.1  christos   sec_arr = bfd_zmalloc (bfd_idx * sizeof (*sec_arr));
   2981      1.1  christos   if (sec_arr == NULL)
   2982      1.1  christos     return FALSE;
   2983  1.1.1.2  christos 
   2984      1.1  christos   for (ibfd = info->input_bfds, bfd_idx = 0;
   2985      1.1  christos        ibfd != NULL;
   2986  1.1.1.4  christos        ibfd = ibfd->link.next, bfd_idx++)
   2987      1.1  christos     {
   2988  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   2989      1.1  christos       Elf_Internal_Shdr *symtab_hdr;
   2990      1.1  christos       asection *sec;
   2991      1.1  christos       size_t symcount;
   2992      1.1  christos       Elf_Internal_Sym *syms, *sy, **psyms, **psy;
   2993      1.1  christos       asection **psecs, **p;
   2994      1.1  christos 
   2995  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   2996      1.1  christos 	continue;
   2997      1.1  christos 
   2998      1.1  christos       /* Read all the symbols.  */
   2999      1.1  christos       symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
   3000      1.1  christos       symcount = symtab_hdr->sh_size / symtab_hdr->sh_entsize;
   3001      1.1  christos       if (symcount == 0)
   3002      1.1  christos 	{
   3003      1.1  christos 	  if (!gaps)
   3004      1.1  christos 	    for (sec = ibfd->sections; sec != NULL && !gaps; sec = sec->next)
   3005      1.1  christos 	      if (interesting_section (sec))
   3006      1.1  christos 		{
   3007      1.1  christos 		  gaps = TRUE;
   3008      1.1  christos 		  break;
   3009      1.1  christos 		}
   3010      1.1  christos 	  continue;
   3011      1.1  christos 	}
   3012      1.1  christos 
   3013      1.1  christos       if (symtab_hdr->contents != NULL)
   3014      1.1  christos 	{
   3015      1.1  christos 	  /* Don't use cached symbols since the generic ELF linker
   3016  1.1.1.2  christos 	     code only reads local symbols, and we need globals too.  */
   3017      1.1  christos 	  free (symtab_hdr->contents);
   3018      1.1  christos 	  symtab_hdr->contents = NULL;
   3019      1.1  christos 	}
   3020      1.1  christos       syms = bfd_elf_get_elf_syms (ibfd, symtab_hdr, symcount, 0,
   3021      1.1  christos 				   NULL, NULL, NULL);
   3022      1.1  christos       symtab_hdr->contents = (void *) syms;
   3023      1.1  christos       if (syms == NULL)
   3024      1.1  christos 	return FALSE;
   3025      1.1  christos 
   3026      1.1  christos       /* Select defined function symbols that are going to be output.  */
   3027      1.1  christos       psyms = bfd_malloc ((symcount + 1) * sizeof (*psyms));
   3028      1.1  christos       if (psyms == NULL)
   3029      1.1  christos 	return FALSE;
   3030      1.1  christos       psym_arr[bfd_idx] = psyms;
   3031      1.1  christos       psecs = bfd_malloc (symcount * sizeof (*psecs));
   3032      1.1  christos       if (psecs == NULL)
   3033      1.1  christos 	return FALSE;
   3034      1.1  christos       sec_arr[bfd_idx] = psecs;
   3035      1.1  christos       for (psy = psyms, p = psecs, sy = syms; sy < syms + symcount; ++p, ++sy)
   3036      1.1  christos 	if (ELF_ST_TYPE (sy->st_info) == STT_NOTYPE
   3037      1.1  christos 	    || ELF_ST_TYPE (sy->st_info) == STT_FUNC)
   3038      1.1  christos 	  {
   3039      1.1  christos 	    asection *s;
   3040      1.1  christos 
   3041      1.1  christos 	    *p = s = bfd_section_from_elf_index (ibfd, sy->st_shndx);
   3042      1.1  christos 	    if (s != NULL && interesting_section (s))
   3043      1.1  christos 	      *psy++ = sy;
   3044      1.1  christos 	  }
   3045      1.1  christos       symcount = psy - psyms;
   3046      1.1  christos       *psy = NULL;
   3047      1.1  christos 
   3048      1.1  christos       /* Sort them by section and offset within section.  */
   3049      1.1  christos       sort_syms_syms = syms;
   3050      1.1  christos       sort_syms_psecs = psecs;
   3051      1.1  christos       qsort (psyms, symcount, sizeof (*psyms), sort_syms);
   3052      1.1  christos 
   3053      1.1  christos       /* Now inspect the function symbols.  */
   3054      1.1  christos       for (psy = psyms; psy < psyms + symcount; )
   3055      1.1  christos 	{
   3056      1.1  christos 	  asection *s = psecs[*psy - syms];
   3057      1.1  christos 	  Elf_Internal_Sym **psy2;
   3058      1.1  christos 
   3059      1.1  christos 	  for (psy2 = psy; ++psy2 < psyms + symcount; )
   3060      1.1  christos 	    if (psecs[*psy2 - syms] != s)
   3061      1.1  christos 	      break;
   3062      1.1  christos 
   3063      1.1  christos 	  if (!alloc_stack_info (s, psy2 - psy))
   3064      1.1  christos 	    return FALSE;
   3065      1.1  christos 	  psy = psy2;
   3066      1.1  christos 	}
   3067      1.1  christos 
   3068      1.1  christos       /* First install info about properly typed and sized functions.
   3069      1.1  christos 	 In an ideal world this will cover all code sections, except
   3070      1.1  christos 	 when partitioning functions into hot and cold sections,
   3071      1.1  christos 	 and the horrible pasted together .init and .fini functions.  */
   3072      1.1  christos       for (psy = psyms; psy < psyms + symcount; ++psy)
   3073      1.1  christos 	{
   3074      1.1  christos 	  sy = *psy;
   3075      1.1  christos 	  if (ELF_ST_TYPE (sy->st_info) == STT_FUNC)
   3076      1.1  christos 	    {
   3077      1.1  christos 	      asection *s = psecs[sy - syms];
   3078      1.1  christos 	      if (!maybe_insert_function (s, sy, FALSE, TRUE))
   3079      1.1  christos 		return FALSE;
   3080      1.1  christos 	    }
   3081      1.1  christos 	}
   3082      1.1  christos 
   3083      1.1  christos       for (sec = ibfd->sections; sec != NULL && !gaps; sec = sec->next)
   3084      1.1  christos 	if (interesting_section (sec))
   3085      1.1  christos 	  gaps |= check_function_ranges (sec, info);
   3086      1.1  christos     }
   3087      1.1  christos 
   3088      1.1  christos   if (gaps)
   3089      1.1  christos     {
   3090      1.1  christos       /* See if we can discover more function symbols by looking at
   3091      1.1  christos 	 relocations.  */
   3092      1.1  christos       for (ibfd = info->input_bfds, bfd_idx = 0;
   3093      1.1  christos 	   ibfd != NULL;
   3094  1.1.1.4  christos 	   ibfd = ibfd->link.next, bfd_idx++)
   3095      1.1  christos 	{
   3096      1.1  christos 	  asection *sec;
   3097      1.1  christos 
   3098      1.1  christos 	  if (psym_arr[bfd_idx] == NULL)
   3099      1.1  christos 	    continue;
   3100      1.1  christos 
   3101      1.1  christos 	  for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   3102      1.1  christos 	    if (!mark_functions_via_relocs (sec, info, FALSE))
   3103      1.1  christos 	      return FALSE;
   3104      1.1  christos 	}
   3105      1.1  christos 
   3106      1.1  christos       for (ibfd = info->input_bfds, bfd_idx = 0;
   3107      1.1  christos 	   ibfd != NULL;
   3108  1.1.1.4  christos 	   ibfd = ibfd->link.next, bfd_idx++)
   3109      1.1  christos 	{
   3110      1.1  christos 	  Elf_Internal_Shdr *symtab_hdr;
   3111      1.1  christos 	  asection *sec;
   3112      1.1  christos 	  Elf_Internal_Sym *syms, *sy, **psyms, **psy;
   3113      1.1  christos 	  asection **psecs;
   3114      1.1  christos 
   3115      1.1  christos 	  if ((psyms = psym_arr[bfd_idx]) == NULL)
   3116      1.1  christos 	    continue;
   3117      1.1  christos 
   3118      1.1  christos 	  psecs = sec_arr[bfd_idx];
   3119      1.1  christos 
   3120      1.1  christos 	  symtab_hdr = &elf_tdata (ibfd)->symtab_hdr;
   3121      1.1  christos 	  syms = (Elf_Internal_Sym *) symtab_hdr->contents;
   3122      1.1  christos 
   3123      1.1  christos 	  gaps = FALSE;
   3124      1.1  christos 	  for (sec = ibfd->sections; sec != NULL && !gaps; sec = sec->next)
   3125      1.1  christos 	    if (interesting_section (sec))
   3126      1.1  christos 	      gaps |= check_function_ranges (sec, info);
   3127      1.1  christos 	  if (!gaps)
   3128      1.1  christos 	    continue;
   3129      1.1  christos 
   3130      1.1  christos 	  /* Finally, install all globals.  */
   3131      1.1  christos 	  for (psy = psyms; (sy = *psy) != NULL; ++psy)
   3132      1.1  christos 	    {
   3133      1.1  christos 	      asection *s;
   3134      1.1  christos 
   3135      1.1  christos 	      s = psecs[sy - syms];
   3136      1.1  christos 
   3137      1.1  christos 	      /* Global syms might be improperly typed functions.  */
   3138      1.1  christos 	      if (ELF_ST_TYPE (sy->st_info) != STT_FUNC
   3139      1.1  christos 		  && ELF_ST_BIND (sy->st_info) == STB_GLOBAL)
   3140      1.1  christos 		{
   3141      1.1  christos 		  if (!maybe_insert_function (s, sy, FALSE, FALSE))
   3142      1.1  christos 		    return FALSE;
   3143      1.1  christos 		}
   3144      1.1  christos 	    }
   3145      1.1  christos 	}
   3146      1.1  christos 
   3147  1.1.1.4  christos       for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   3148      1.1  christos 	{
   3149  1.1.1.4  christos 	  extern const bfd_target spu_elf32_vec;
   3150      1.1  christos 	  asection *sec;
   3151      1.1  christos 
   3152  1.1.1.4  christos 	  if (ibfd->xvec != &spu_elf32_vec)
   3153      1.1  christos 	    continue;
   3154      1.1  christos 
   3155      1.1  christos 	  /* Some of the symbols we've installed as marking the
   3156      1.1  christos 	     beginning of functions may have a size of zero.  Extend
   3157      1.1  christos 	     the range of such functions to the beginning of the
   3158      1.1  christos 	     next symbol of interest.  */
   3159      1.1  christos 	  for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   3160      1.1  christos 	    if (interesting_section (sec))
   3161      1.1  christos 	      {
   3162      1.1  christos 		struct _spu_elf_section_data *sec_data;
   3163      1.1  christos 		struct spu_elf_stack_info *sinfo;
   3164      1.1  christos 
   3165      1.1  christos 		sec_data = spu_elf_section_data (sec);
   3166      1.1  christos 		sinfo = sec_data->u.i.stack_info;
   3167      1.1  christos 		if (sinfo != NULL && sinfo->num_fun != 0)
   3168      1.1  christos 		  {
   3169      1.1  christos 		    int fun_idx;
   3170      1.1  christos 		    bfd_vma hi = sec->size;
   3171      1.1  christos 
   3172      1.1  christos 		    for (fun_idx = sinfo->num_fun; --fun_idx >= 0; )
   3173      1.1  christos 		      {
   3174      1.1  christos 			sinfo->fun[fun_idx].hi = hi;
   3175      1.1  christos 			hi = sinfo->fun[fun_idx].lo;
   3176      1.1  christos 		      }
   3177      1.1  christos 
   3178      1.1  christos 		    sinfo->fun[0].lo = 0;
   3179      1.1  christos 		  }
   3180      1.1  christos 		/* No symbols in this section.  Must be .init or .fini
   3181      1.1  christos 		   or something similar.  */
   3182      1.1  christos 		else if (!pasted_function (sec))
   3183      1.1  christos 		  return FALSE;
   3184      1.1  christos 	      }
   3185      1.1  christos 	}
   3186      1.1  christos     }
   3187      1.1  christos 
   3188      1.1  christos   for (ibfd = info->input_bfds, bfd_idx = 0;
   3189      1.1  christos        ibfd != NULL;
   3190  1.1.1.4  christos        ibfd = ibfd->link.next, bfd_idx++)
   3191      1.1  christos     {
   3192      1.1  christos       if (psym_arr[bfd_idx] == NULL)
   3193      1.1  christos 	continue;
   3194      1.1  christos 
   3195      1.1  christos       free (psym_arr[bfd_idx]);
   3196      1.1  christos       free (sec_arr[bfd_idx]);
   3197      1.1  christos     }
   3198      1.1  christos 
   3199      1.1  christos   free (psym_arr);
   3200      1.1  christos   free (sec_arr);
   3201      1.1  christos 
   3202      1.1  christos   return TRUE;
   3203      1.1  christos }
   3204      1.1  christos 
   3205      1.1  christos /* Iterate over all function_info we have collected, calling DOIT on
   3206      1.1  christos    each node if ROOT_ONLY is false.  Only call DOIT on root nodes
   3207      1.1  christos    if ROOT_ONLY.  */
   3208      1.1  christos 
   3209      1.1  christos static bfd_boolean
   3210      1.1  christos for_each_node (bfd_boolean (*doit) (struct function_info *,
   3211      1.1  christos 				    struct bfd_link_info *,
   3212      1.1  christos 				    void *),
   3213      1.1  christos 	       struct bfd_link_info *info,
   3214      1.1  christos 	       void *param,
   3215      1.1  christos 	       int root_only)
   3216      1.1  christos {
   3217      1.1  christos   bfd *ibfd;
   3218      1.1  christos 
   3219  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   3220      1.1  christos     {
   3221  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   3222      1.1  christos       asection *sec;
   3223      1.1  christos 
   3224  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   3225      1.1  christos 	continue;
   3226      1.1  christos 
   3227      1.1  christos       for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   3228      1.1  christos 	{
   3229      1.1  christos 	  struct _spu_elf_section_data *sec_data;
   3230      1.1  christos 	  struct spu_elf_stack_info *sinfo;
   3231      1.1  christos 
   3232      1.1  christos 	  if ((sec_data = spu_elf_section_data (sec)) != NULL
   3233      1.1  christos 	      && (sinfo = sec_data->u.i.stack_info) != NULL)
   3234      1.1  christos 	    {
   3235      1.1  christos 	      int i;
   3236      1.1  christos 	      for (i = 0; i < sinfo->num_fun; ++i)
   3237      1.1  christos 		if (!root_only || !sinfo->fun[i].non_root)
   3238      1.1  christos 		  if (!doit (&sinfo->fun[i], info, param))
   3239      1.1  christos 		    return FALSE;
   3240      1.1  christos 	    }
   3241      1.1  christos 	}
   3242      1.1  christos     }
   3243      1.1  christos   return TRUE;
   3244      1.1  christos }
   3245      1.1  christos 
   3246      1.1  christos /* Transfer call info attached to struct function_info entries for
   3247      1.1  christos    all of a given function's sections to the first entry.  */
   3248      1.1  christos 
   3249      1.1  christos static bfd_boolean
   3250      1.1  christos transfer_calls (struct function_info *fun,
   3251      1.1  christos 		struct bfd_link_info *info ATTRIBUTE_UNUSED,
   3252      1.1  christos 		void *param ATTRIBUTE_UNUSED)
   3253      1.1  christos {
   3254      1.1  christos   struct function_info *start = fun->start;
   3255      1.1  christos 
   3256      1.1  christos   if (start != NULL)
   3257      1.1  christos     {
   3258      1.1  christos       struct call_info *call, *call_next;
   3259      1.1  christos 
   3260      1.1  christos       while (start->start != NULL)
   3261      1.1  christos 	start = start->start;
   3262      1.1  christos       for (call = fun->call_list; call != NULL; call = call_next)
   3263      1.1  christos 	{
   3264      1.1  christos 	  call_next = call->next;
   3265      1.1  christos 	  if (!insert_callee (start, call))
   3266      1.1  christos 	    free (call);
   3267      1.1  christos 	}
   3268      1.1  christos       fun->call_list = NULL;
   3269      1.1  christos     }
   3270      1.1  christos   return TRUE;
   3271      1.1  christos }
   3272      1.1  christos 
   3273      1.1  christos /* Mark nodes in the call graph that are called by some other node.  */
   3274      1.1  christos 
   3275      1.1  christos static bfd_boolean
   3276      1.1  christos mark_non_root (struct function_info *fun,
   3277      1.1  christos 	       struct bfd_link_info *info ATTRIBUTE_UNUSED,
   3278      1.1  christos 	       void *param ATTRIBUTE_UNUSED)
   3279      1.1  christos {
   3280      1.1  christos   struct call_info *call;
   3281      1.1  christos 
   3282      1.1  christos   if (fun->visit1)
   3283      1.1  christos     return TRUE;
   3284      1.1  christos   fun->visit1 = TRUE;
   3285      1.1  christos   for (call = fun->call_list; call; call = call->next)
   3286      1.1  christos     {
   3287      1.1  christos       call->fun->non_root = TRUE;
   3288      1.1  christos       mark_non_root (call->fun, 0, 0);
   3289      1.1  christos     }
   3290      1.1  christos   return TRUE;
   3291      1.1  christos }
   3292      1.1  christos 
   3293      1.1  christos /* Remove cycles from the call graph.  Set depth of nodes.  */
   3294      1.1  christos 
   3295      1.1  christos static bfd_boolean
   3296      1.1  christos remove_cycles (struct function_info *fun,
   3297      1.1  christos 	       struct bfd_link_info *info,
   3298      1.1  christos 	       void *param)
   3299      1.1  christos {
   3300      1.1  christos   struct call_info **callp, *call;
   3301      1.1  christos   unsigned int depth = *(unsigned int *) param;
   3302      1.1  christos   unsigned int max_depth = depth;
   3303      1.1  christos 
   3304      1.1  christos   fun->depth = depth;
   3305      1.1  christos   fun->visit2 = TRUE;
   3306      1.1  christos   fun->marking = TRUE;
   3307      1.1  christos 
   3308      1.1  christos   callp = &fun->call_list;
   3309      1.1  christos   while ((call = *callp) != NULL)
   3310      1.1  christos     {
   3311      1.1  christos       call->max_depth = depth + !call->is_pasted;
   3312      1.1  christos       if (!call->fun->visit2)
   3313      1.1  christos 	{
   3314      1.1  christos 	  if (!remove_cycles (call->fun, info, &call->max_depth))
   3315      1.1  christos 	    return FALSE;
   3316      1.1  christos 	  if (max_depth < call->max_depth)
   3317      1.1  christos 	    max_depth = call->max_depth;
   3318      1.1  christos 	}
   3319      1.1  christos       else if (call->fun->marking)
   3320      1.1  christos 	{
   3321      1.1  christos 	  struct spu_link_hash_table *htab = spu_hash_table (info);
   3322      1.1  christos 
   3323      1.1  christos 	  if (!htab->params->auto_overlay
   3324      1.1  christos 	      && htab->params->stack_analysis)
   3325      1.1  christos 	    {
   3326      1.1  christos 	      const char *f1 = func_name (fun);
   3327      1.1  christos 	      const char *f2 = func_name (call->fun);
   3328      1.1  christos 
   3329  1.1.1.7  christos 	      /* xgettext:c-format */
   3330  1.1.1.8  christos 	      info->callbacks->info (_("stack analysis will ignore the call "
   3331      1.1  christos 				       "from %s to %s\n"),
   3332      1.1  christos 				     f1, f2);
   3333      1.1  christos 	    }
   3334      1.1  christos 
   3335      1.1  christos 	  call->broken_cycle = TRUE;
   3336      1.1  christos 	}
   3337      1.1  christos       callp = &call->next;
   3338      1.1  christos     }
   3339      1.1  christos   fun->marking = FALSE;
   3340      1.1  christos   *(unsigned int *) param = max_depth;
   3341      1.1  christos   return TRUE;
   3342      1.1  christos }
   3343      1.1  christos 
   3344      1.1  christos /* Check that we actually visited all nodes in remove_cycles.  If we
   3345      1.1  christos    didn't, then there is some cycle in the call graph not attached to
   3346      1.1  christos    any root node.  Arbitrarily choose a node in the cycle as a new
   3347      1.1  christos    root and break the cycle.  */
   3348      1.1  christos 
   3349      1.1  christos static bfd_boolean
   3350      1.1  christos mark_detached_root (struct function_info *fun,
   3351      1.1  christos 		    struct bfd_link_info *info,
   3352      1.1  christos 		    void *param)
   3353      1.1  christos {
   3354      1.1  christos   if (fun->visit2)
   3355      1.1  christos     return TRUE;
   3356      1.1  christos   fun->non_root = FALSE;
   3357      1.1  christos   *(unsigned int *) param = 0;
   3358      1.1  christos   return remove_cycles (fun, info, param);
   3359      1.1  christos }
   3360      1.1  christos 
   3361      1.1  christos /* Populate call_list for each function.  */
   3362      1.1  christos 
   3363      1.1  christos static bfd_boolean
   3364      1.1  christos build_call_tree (struct bfd_link_info *info)
   3365      1.1  christos {
   3366      1.1  christos   bfd *ibfd;
   3367      1.1  christos   unsigned int depth;
   3368      1.1  christos 
   3369  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   3370      1.1  christos     {
   3371  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   3372      1.1  christos       asection *sec;
   3373      1.1  christos 
   3374  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   3375      1.1  christos 	continue;
   3376      1.1  christos 
   3377      1.1  christos       for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   3378      1.1  christos 	if (!mark_functions_via_relocs (sec, info, TRUE))
   3379      1.1  christos 	  return FALSE;
   3380      1.1  christos     }
   3381      1.1  christos 
   3382      1.1  christos   /* Transfer call info from hot/cold section part of function
   3383      1.1  christos      to main entry.  */
   3384      1.1  christos   if (!spu_hash_table (info)->params->auto_overlay
   3385      1.1  christos       && !for_each_node (transfer_calls, info, 0, FALSE))
   3386      1.1  christos     return FALSE;
   3387      1.1  christos 
   3388      1.1  christos   /* Find the call graph root(s).  */
   3389      1.1  christos   if (!for_each_node (mark_non_root, info, 0, FALSE))
   3390      1.1  christos     return FALSE;
   3391      1.1  christos 
   3392      1.1  christos   /* Remove cycles from the call graph.  We start from the root node(s)
   3393      1.1  christos      so that we break cycles in a reasonable place.  */
   3394      1.1  christos   depth = 0;
   3395      1.1  christos   if (!for_each_node (remove_cycles, info, &depth, TRUE))
   3396      1.1  christos     return FALSE;
   3397      1.1  christos 
   3398      1.1  christos   return for_each_node (mark_detached_root, info, &depth, FALSE);
   3399      1.1  christos }
   3400      1.1  christos 
   3401      1.1  christos /* qsort predicate to sort calls by priority, max_depth then count.  */
   3402      1.1  christos 
   3403      1.1  christos static int
   3404      1.1  christos sort_calls (const void *a, const void *b)
   3405      1.1  christos {
   3406      1.1  christos   struct call_info *const *c1 = a;
   3407      1.1  christos   struct call_info *const *c2 = b;
   3408      1.1  christos   int delta;
   3409      1.1  christos 
   3410      1.1  christos   delta = (*c2)->priority - (*c1)->priority;
   3411      1.1  christos   if (delta != 0)
   3412      1.1  christos     return delta;
   3413      1.1  christos 
   3414      1.1  christos   delta = (*c2)->max_depth - (*c1)->max_depth;
   3415      1.1  christos   if (delta != 0)
   3416      1.1  christos     return delta;
   3417      1.1  christos 
   3418      1.1  christos   delta = (*c2)->count - (*c1)->count;
   3419      1.1  christos   if (delta != 0)
   3420      1.1  christos     return delta;
   3421      1.1  christos 
   3422      1.1  christos   return (char *) c1 - (char *) c2;
   3423      1.1  christos }
   3424      1.1  christos 
   3425      1.1  christos struct _mos_param {
   3426      1.1  christos   unsigned int max_overlay_size;
   3427      1.1  christos };
   3428      1.1  christos 
   3429      1.1  christos /* Set linker_mark and gc_mark on any sections that we will put in
   3430      1.1  christos    overlays.  These flags are used by the generic ELF linker, but we
   3431      1.1  christos    won't be continuing on to bfd_elf_final_link so it is OK to use
   3432      1.1  christos    them.  linker_mark is clear before we get here.  Set segment_mark
   3433      1.1  christos    on sections that are part of a pasted function (excluding the last
   3434      1.1  christos    section).
   3435      1.1  christos 
   3436      1.1  christos    Set up function rodata section if --overlay-rodata.  We don't
   3437      1.1  christos    currently include merged string constant rodata sections since
   3438      1.1  christos 
   3439      1.1  christos    Sort the call graph so that the deepest nodes will be visited
   3440      1.1  christos    first.  */
   3441      1.1  christos 
   3442      1.1  christos static bfd_boolean
   3443      1.1  christos mark_overlay_section (struct function_info *fun,
   3444      1.1  christos 		      struct bfd_link_info *info,
   3445      1.1  christos 		      void *param)
   3446      1.1  christos {
   3447      1.1  christos   struct call_info *call;
   3448      1.1  christos   unsigned int count;
   3449      1.1  christos   struct _mos_param *mos_param = param;
   3450      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   3451      1.1  christos 
   3452      1.1  christos   if (fun->visit4)
   3453      1.1  christos     return TRUE;
   3454      1.1  christos 
   3455      1.1  christos   fun->visit4 = TRUE;
   3456      1.1  christos   if (!fun->sec->linker_mark
   3457      1.1  christos       && (htab->params->ovly_flavour != ovly_soft_icache
   3458      1.1  christos 	  || htab->params->non_ia_text
   3459      1.1  christos 	  || strncmp (fun->sec->name, ".text.ia.", 9) == 0
   3460      1.1  christos 	  || strcmp (fun->sec->name, ".init") == 0
   3461      1.1  christos 	  || strcmp (fun->sec->name, ".fini") == 0))
   3462      1.1  christos     {
   3463      1.1  christos       unsigned int size;
   3464      1.1  christos 
   3465      1.1  christos       fun->sec->linker_mark = 1;
   3466      1.1  christos       fun->sec->gc_mark = 1;
   3467      1.1  christos       fun->sec->segment_mark = 0;
   3468      1.1  christos       /* Ensure SEC_CODE is set on this text section (it ought to
   3469      1.1  christos 	 be!), and SEC_CODE is clear on rodata sections.  We use
   3470      1.1  christos 	 this flag to differentiate the two overlay section types.  */
   3471      1.1  christos       fun->sec->flags |= SEC_CODE;
   3472      1.1  christos 
   3473      1.1  christos       size = fun->sec->size;
   3474      1.1  christos       if (htab->params->auto_overlay & OVERLAY_RODATA)
   3475      1.1  christos 	{
   3476      1.1  christos 	  char *name = NULL;
   3477      1.1  christos 
   3478      1.1  christos 	  /* Find the rodata section corresponding to this function's
   3479      1.1  christos 	     text section.  */
   3480      1.1  christos 	  if (strcmp (fun->sec->name, ".text") == 0)
   3481      1.1  christos 	    {
   3482      1.1  christos 	      name = bfd_malloc (sizeof (".rodata"));
   3483      1.1  christos 	      if (name == NULL)
   3484      1.1  christos 		return FALSE;
   3485      1.1  christos 	      memcpy (name, ".rodata", sizeof (".rodata"));
   3486      1.1  christos 	    }
   3487      1.1  christos 	  else if (strncmp (fun->sec->name, ".text.", 6) == 0)
   3488      1.1  christos 	    {
   3489      1.1  christos 	      size_t len = strlen (fun->sec->name);
   3490      1.1  christos 	      name = bfd_malloc (len + 3);
   3491      1.1  christos 	      if (name == NULL)
   3492      1.1  christos 		return FALSE;
   3493      1.1  christos 	      memcpy (name, ".rodata", sizeof (".rodata"));
   3494      1.1  christos 	      memcpy (name + 7, fun->sec->name + 5, len - 4);
   3495      1.1  christos 	    }
   3496      1.1  christos 	  else if (strncmp (fun->sec->name, ".gnu.linkonce.t.", 16) == 0)
   3497      1.1  christos 	    {
   3498      1.1  christos 	      size_t len = strlen (fun->sec->name) + 1;
   3499      1.1  christos 	      name = bfd_malloc (len);
   3500      1.1  christos 	      if (name == NULL)
   3501      1.1  christos 		return FALSE;
   3502      1.1  christos 	      memcpy (name, fun->sec->name, len);
   3503      1.1  christos 	      name[14] = 'r';
   3504      1.1  christos 	    }
   3505      1.1  christos 
   3506      1.1  christos 	  if (name != NULL)
   3507      1.1  christos 	    {
   3508      1.1  christos 	      asection *rodata = NULL;
   3509      1.1  christos 	      asection *group_sec = elf_section_data (fun->sec)->next_in_group;
   3510      1.1  christos 	      if (group_sec == NULL)
   3511      1.1  christos 		rodata = bfd_get_section_by_name (fun->sec->owner, name);
   3512      1.1  christos 	      else
   3513      1.1  christos 		while (group_sec != NULL && group_sec != fun->sec)
   3514      1.1  christos 		  {
   3515      1.1  christos 		    if (strcmp (group_sec->name, name) == 0)
   3516      1.1  christos 		      {
   3517      1.1  christos 			rodata = group_sec;
   3518      1.1  christos 			break;
   3519      1.1  christos 		      }
   3520      1.1  christos 		    group_sec = elf_section_data (group_sec)->next_in_group;
   3521      1.1  christos 		  }
   3522      1.1  christos 	      fun->rodata = rodata;
   3523      1.1  christos 	      if (fun->rodata)
   3524      1.1  christos 		{
   3525      1.1  christos 		  size += fun->rodata->size;
   3526      1.1  christos 		  if (htab->params->line_size != 0
   3527      1.1  christos 		      && size > htab->params->line_size)
   3528      1.1  christos 		    {
   3529      1.1  christos 		      size -= fun->rodata->size;
   3530      1.1  christos 		      fun->rodata = NULL;
   3531      1.1  christos 		    }
   3532      1.1  christos 		  else
   3533      1.1  christos 		    {
   3534      1.1  christos 		      fun->rodata->linker_mark = 1;
   3535      1.1  christos 		      fun->rodata->gc_mark = 1;
   3536      1.1  christos 		      fun->rodata->flags &= ~SEC_CODE;
   3537      1.1  christos 		    }
   3538      1.1  christos 		}
   3539      1.1  christos 	      free (name);
   3540      1.1  christos 	    }
   3541      1.1  christos 	}
   3542      1.1  christos       if (mos_param->max_overlay_size < size)
   3543      1.1  christos 	mos_param->max_overlay_size = size;
   3544      1.1  christos     }
   3545      1.1  christos 
   3546      1.1  christos   for (count = 0, call = fun->call_list; call != NULL; call = call->next)
   3547      1.1  christos     count += 1;
   3548      1.1  christos 
   3549      1.1  christos   if (count > 1)
   3550      1.1  christos     {
   3551      1.1  christos       struct call_info **calls = bfd_malloc (count * sizeof (*calls));
   3552      1.1  christos       if (calls == NULL)
   3553      1.1  christos 	return FALSE;
   3554      1.1  christos 
   3555      1.1  christos       for (count = 0, call = fun->call_list; call != NULL; call = call->next)
   3556      1.1  christos 	calls[count++] = call;
   3557      1.1  christos 
   3558      1.1  christos       qsort (calls, count, sizeof (*calls), sort_calls);
   3559      1.1  christos 
   3560      1.1  christos       fun->call_list = NULL;
   3561      1.1  christos       while (count != 0)
   3562      1.1  christos 	{
   3563      1.1  christos 	  --count;
   3564      1.1  christos 	  calls[count]->next = fun->call_list;
   3565      1.1  christos 	  fun->call_list = calls[count];
   3566      1.1  christos 	}
   3567      1.1  christos       free (calls);
   3568      1.1  christos     }
   3569      1.1  christos 
   3570      1.1  christos   for (call = fun->call_list; call != NULL; call = call->next)
   3571      1.1  christos     {
   3572      1.1  christos       if (call->is_pasted)
   3573      1.1  christos 	{
   3574      1.1  christos 	  /* There can only be one is_pasted call per function_info.  */
   3575      1.1  christos 	  BFD_ASSERT (!fun->sec->segment_mark);
   3576      1.1  christos 	  fun->sec->segment_mark = 1;
   3577      1.1  christos 	}
   3578      1.1  christos       if (!call->broken_cycle
   3579      1.1  christos 	  && !mark_overlay_section (call->fun, info, param))
   3580      1.1  christos 	return FALSE;
   3581      1.1  christos     }
   3582      1.1  christos 
   3583      1.1  christos   /* Don't put entry code into an overlay.  The overlay manager needs
   3584      1.1  christos      a stack!  Also, don't mark .ovl.init as an overlay.  */
   3585      1.1  christos   if (fun->lo + fun->sec->output_offset + fun->sec->output_section->vma
   3586      1.1  christos       == info->output_bfd->start_address
   3587      1.1  christos       || strncmp (fun->sec->output_section->name, ".ovl.init", 9) == 0)
   3588      1.1  christos     {
   3589      1.1  christos       fun->sec->linker_mark = 0;
   3590      1.1  christos       if (fun->rodata != NULL)
   3591      1.1  christos 	fun->rodata->linker_mark = 0;
   3592      1.1  christos     }
   3593      1.1  christos   return TRUE;
   3594      1.1  christos }
   3595      1.1  christos 
   3596      1.1  christos /* If non-zero then unmark functions called from those within sections
   3597      1.1  christos    that we need to unmark.  Unfortunately this isn't reliable since the
   3598      1.1  christos    call graph cannot know the destination of function pointer calls.  */
   3599      1.1  christos #define RECURSE_UNMARK 0
   3600      1.1  christos 
   3601      1.1  christos struct _uos_param {
   3602      1.1  christos   asection *exclude_input_section;
   3603      1.1  christos   asection *exclude_output_section;
   3604      1.1  christos   unsigned long clearing;
   3605      1.1  christos };
   3606      1.1  christos 
   3607      1.1  christos /* Undo some of mark_overlay_section's work.  */
   3608      1.1  christos 
   3609      1.1  christos static bfd_boolean
   3610      1.1  christos unmark_overlay_section (struct function_info *fun,
   3611      1.1  christos 			struct bfd_link_info *info,
   3612      1.1  christos 			void *param)
   3613      1.1  christos {
   3614      1.1  christos   struct call_info *call;
   3615      1.1  christos   struct _uos_param *uos_param = param;
   3616      1.1  christos   unsigned int excluded = 0;
   3617      1.1  christos 
   3618      1.1  christos   if (fun->visit5)
   3619      1.1  christos     return TRUE;
   3620      1.1  christos 
   3621      1.1  christos   fun->visit5 = TRUE;
   3622      1.1  christos 
   3623      1.1  christos   excluded = 0;
   3624      1.1  christos   if (fun->sec == uos_param->exclude_input_section
   3625      1.1  christos       || fun->sec->output_section == uos_param->exclude_output_section)
   3626      1.1  christos     excluded = 1;
   3627      1.1  christos 
   3628      1.1  christos   if (RECURSE_UNMARK)
   3629      1.1  christos     uos_param->clearing += excluded;
   3630      1.1  christos 
   3631      1.1  christos   if (RECURSE_UNMARK ? uos_param->clearing : excluded)
   3632      1.1  christos     {
   3633      1.1  christos       fun->sec->linker_mark = 0;
   3634      1.1  christos       if (fun->rodata)
   3635      1.1  christos 	fun->rodata->linker_mark = 0;
   3636      1.1  christos     }
   3637      1.1  christos 
   3638      1.1  christos   for (call = fun->call_list; call != NULL; call = call->next)
   3639      1.1  christos     if (!call->broken_cycle
   3640      1.1  christos 	&& !unmark_overlay_section (call->fun, info, param))
   3641      1.1  christos       return FALSE;
   3642      1.1  christos 
   3643      1.1  christos   if (RECURSE_UNMARK)
   3644      1.1  christos     uos_param->clearing -= excluded;
   3645      1.1  christos   return TRUE;
   3646      1.1  christos }
   3647      1.1  christos 
   3648      1.1  christos struct _cl_param {
   3649      1.1  christos   unsigned int lib_size;
   3650      1.1  christos   asection **lib_sections;
   3651      1.1  christos };
   3652      1.1  christos 
   3653      1.1  christos /* Add sections we have marked as belonging to overlays to an array
   3654      1.1  christos    for consideration as non-overlay sections.  The array consist of
   3655      1.1  christos    pairs of sections, (text,rodata), for functions in the call graph.  */
   3656      1.1  christos 
   3657      1.1  christos static bfd_boolean
   3658      1.1  christos collect_lib_sections (struct function_info *fun,
   3659      1.1  christos 		      struct bfd_link_info *info,
   3660      1.1  christos 		      void *param)
   3661      1.1  christos {
   3662      1.1  christos   struct _cl_param *lib_param = param;
   3663      1.1  christos   struct call_info *call;
   3664      1.1  christos   unsigned int size;
   3665      1.1  christos 
   3666      1.1  christos   if (fun->visit6)
   3667      1.1  christos     return TRUE;
   3668      1.1  christos 
   3669      1.1  christos   fun->visit6 = TRUE;
   3670      1.1  christos   if (!fun->sec->linker_mark || !fun->sec->gc_mark || fun->sec->segment_mark)
   3671      1.1  christos     return TRUE;
   3672      1.1  christos 
   3673      1.1  christos   size = fun->sec->size;
   3674      1.1  christos   if (fun->rodata)
   3675      1.1  christos     size += fun->rodata->size;
   3676      1.1  christos 
   3677      1.1  christos   if (size <= lib_param->lib_size)
   3678      1.1  christos     {
   3679      1.1  christos       *lib_param->lib_sections++ = fun->sec;
   3680      1.1  christos       fun->sec->gc_mark = 0;
   3681      1.1  christos       if (fun->rodata && fun->rodata->linker_mark && fun->rodata->gc_mark)
   3682      1.1  christos 	{
   3683      1.1  christos 	  *lib_param->lib_sections++ = fun->rodata;
   3684      1.1  christos 	  fun->rodata->gc_mark = 0;
   3685      1.1  christos 	}
   3686      1.1  christos       else
   3687      1.1  christos 	*lib_param->lib_sections++ = NULL;
   3688      1.1  christos     }
   3689      1.1  christos 
   3690      1.1  christos   for (call = fun->call_list; call != NULL; call = call->next)
   3691      1.1  christos     if (!call->broken_cycle)
   3692      1.1  christos       collect_lib_sections (call->fun, info, param);
   3693      1.1  christos 
   3694      1.1  christos   return TRUE;
   3695      1.1  christos }
   3696      1.1  christos 
   3697      1.1  christos /* qsort predicate to sort sections by call count.  */
   3698      1.1  christos 
   3699      1.1  christos static int
   3700      1.1  christos sort_lib (const void *a, const void *b)
   3701      1.1  christos {
   3702      1.1  christos   asection *const *s1 = a;
   3703      1.1  christos   asection *const *s2 = b;
   3704      1.1  christos   struct _spu_elf_section_data *sec_data;
   3705      1.1  christos   struct spu_elf_stack_info *sinfo;
   3706      1.1  christos   int delta;
   3707      1.1  christos 
   3708      1.1  christos   delta = 0;
   3709      1.1  christos   if ((sec_data = spu_elf_section_data (*s1)) != NULL
   3710      1.1  christos       && (sinfo = sec_data->u.i.stack_info) != NULL)
   3711      1.1  christos     {
   3712      1.1  christos       int i;
   3713      1.1  christos       for (i = 0; i < sinfo->num_fun; ++i)
   3714      1.1  christos 	delta -= sinfo->fun[i].call_count;
   3715      1.1  christos     }
   3716      1.1  christos 
   3717      1.1  christos   if ((sec_data = spu_elf_section_data (*s2)) != NULL
   3718      1.1  christos       && (sinfo = sec_data->u.i.stack_info) != NULL)
   3719      1.1  christos     {
   3720      1.1  christos       int i;
   3721      1.1  christos       for (i = 0; i < sinfo->num_fun; ++i)
   3722      1.1  christos 	delta += sinfo->fun[i].call_count;
   3723      1.1  christos     }
   3724      1.1  christos 
   3725      1.1  christos   if (delta != 0)
   3726      1.1  christos     return delta;
   3727      1.1  christos 
   3728      1.1  christos   return s1 - s2;
   3729      1.1  christos }
   3730      1.1  christos 
   3731      1.1  christos /* Remove some sections from those marked to be in overlays.  Choose
   3732      1.1  christos    those that are called from many places, likely library functions.  */
   3733      1.1  christos 
   3734      1.1  christos static unsigned int
   3735      1.1  christos auto_ovl_lib_functions (struct bfd_link_info *info, unsigned int lib_size)
   3736      1.1  christos {
   3737      1.1  christos   bfd *ibfd;
   3738      1.1  christos   asection **lib_sections;
   3739      1.1  christos   unsigned int i, lib_count;
   3740      1.1  christos   struct _cl_param collect_lib_param;
   3741      1.1  christos   struct function_info dummy_caller;
   3742      1.1  christos   struct spu_link_hash_table *htab;
   3743      1.1  christos 
   3744      1.1  christos   memset (&dummy_caller, 0, sizeof (dummy_caller));
   3745      1.1  christos   lib_count = 0;
   3746  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   3747      1.1  christos     {
   3748  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   3749      1.1  christos       asection *sec;
   3750      1.1  christos 
   3751  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   3752      1.1  christos 	continue;
   3753      1.1  christos 
   3754      1.1  christos       for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   3755      1.1  christos 	if (sec->linker_mark
   3756      1.1  christos 	    && sec->size < lib_size
   3757      1.1  christos 	    && (sec->flags & SEC_CODE) != 0)
   3758      1.1  christos 	  lib_count += 1;
   3759      1.1  christos     }
   3760      1.1  christos   lib_sections = bfd_malloc (lib_count * 2 * sizeof (*lib_sections));
   3761      1.1  christos   if (lib_sections == NULL)
   3762      1.1  christos     return (unsigned int) -1;
   3763      1.1  christos   collect_lib_param.lib_size = lib_size;
   3764      1.1  christos   collect_lib_param.lib_sections = lib_sections;
   3765      1.1  christos   if (!for_each_node (collect_lib_sections, info, &collect_lib_param,
   3766      1.1  christos 		      TRUE))
   3767      1.1  christos     return (unsigned int) -1;
   3768      1.1  christos   lib_count = (collect_lib_param.lib_sections - lib_sections) / 2;
   3769      1.1  christos 
   3770      1.1  christos   /* Sort sections so that those with the most calls are first.  */
   3771      1.1  christos   if (lib_count > 1)
   3772      1.1  christos     qsort (lib_sections, lib_count, 2 * sizeof (*lib_sections), sort_lib);
   3773      1.1  christos 
   3774      1.1  christos   htab = spu_hash_table (info);
   3775      1.1  christos   for (i = 0; i < lib_count; i++)
   3776      1.1  christos     {
   3777      1.1  christos       unsigned int tmp, stub_size;
   3778      1.1  christos       asection *sec;
   3779      1.1  christos       struct _spu_elf_section_data *sec_data;
   3780      1.1  christos       struct spu_elf_stack_info *sinfo;
   3781      1.1  christos 
   3782      1.1  christos       sec = lib_sections[2 * i];
   3783      1.1  christos       /* If this section is OK, its size must be less than lib_size.  */
   3784      1.1  christos       tmp = sec->size;
   3785      1.1  christos       /* If it has a rodata section, then add that too.  */
   3786      1.1  christos       if (lib_sections[2 * i + 1])
   3787      1.1  christos 	tmp += lib_sections[2 * i + 1]->size;
   3788      1.1  christos       /* Add any new overlay call stubs needed by the section.  */
   3789      1.1  christos       stub_size = 0;
   3790      1.1  christos       if (tmp < lib_size
   3791      1.1  christos 	  && (sec_data = spu_elf_section_data (sec)) != NULL
   3792      1.1  christos 	  && (sinfo = sec_data->u.i.stack_info) != NULL)
   3793      1.1  christos 	{
   3794      1.1  christos 	  int k;
   3795      1.1  christos 	  struct call_info *call;
   3796      1.1  christos 
   3797      1.1  christos 	  for (k = 0; k < sinfo->num_fun; ++k)
   3798      1.1  christos 	    for (call = sinfo->fun[k].call_list; call; call = call->next)
   3799      1.1  christos 	      if (call->fun->sec->linker_mark)
   3800      1.1  christos 		{
   3801      1.1  christos 		  struct call_info *p;
   3802      1.1  christos 		  for (p = dummy_caller.call_list; p; p = p->next)
   3803      1.1  christos 		    if (p->fun == call->fun)
   3804      1.1  christos 		      break;
   3805      1.1  christos 		  if (!p)
   3806      1.1  christos 		    stub_size += ovl_stub_size (htab->params);
   3807      1.1  christos 		}
   3808      1.1  christos 	}
   3809      1.1  christos       if (tmp + stub_size < lib_size)
   3810      1.1  christos 	{
   3811      1.1  christos 	  struct call_info **pp, *p;
   3812      1.1  christos 
   3813      1.1  christos 	  /* This section fits.  Mark it as non-overlay.  */
   3814      1.1  christos 	  lib_sections[2 * i]->linker_mark = 0;
   3815      1.1  christos 	  if (lib_sections[2 * i + 1])
   3816      1.1  christos 	    lib_sections[2 * i + 1]->linker_mark = 0;
   3817      1.1  christos 	  lib_size -= tmp + stub_size;
   3818      1.1  christos 	  /* Call stubs to the section we just added are no longer
   3819      1.1  christos 	     needed.  */
   3820      1.1  christos 	  pp = &dummy_caller.call_list;
   3821      1.1  christos 	  while ((p = *pp) != NULL)
   3822      1.1  christos 	    if (!p->fun->sec->linker_mark)
   3823      1.1  christos 	      {
   3824      1.1  christos 		lib_size += ovl_stub_size (htab->params);
   3825      1.1  christos 		*pp = p->next;
   3826      1.1  christos 		free (p);
   3827      1.1  christos 	      }
   3828      1.1  christos 	    else
   3829      1.1  christos 	      pp = &p->next;
   3830      1.1  christos 	  /* Add new call stubs to dummy_caller.  */
   3831      1.1  christos 	  if ((sec_data = spu_elf_section_data (sec)) != NULL
   3832      1.1  christos 	      && (sinfo = sec_data->u.i.stack_info) != NULL)
   3833      1.1  christos 	    {
   3834      1.1  christos 	      int k;
   3835      1.1  christos 	      struct call_info *call;
   3836      1.1  christos 
   3837      1.1  christos 	      for (k = 0; k < sinfo->num_fun; ++k)
   3838      1.1  christos 		for (call = sinfo->fun[k].call_list;
   3839      1.1  christos 		     call;
   3840      1.1  christos 		     call = call->next)
   3841      1.1  christos 		  if (call->fun->sec->linker_mark)
   3842      1.1  christos 		    {
   3843      1.1  christos 		      struct call_info *callee;
   3844      1.1  christos 		      callee = bfd_malloc (sizeof (*callee));
   3845      1.1  christos 		      if (callee == NULL)
   3846      1.1  christos 			return (unsigned int) -1;
   3847      1.1  christos 		      *callee = *call;
   3848      1.1  christos 		      if (!insert_callee (&dummy_caller, callee))
   3849      1.1  christos 			free (callee);
   3850      1.1  christos 		    }
   3851      1.1  christos 	    }
   3852      1.1  christos 	}
   3853      1.1  christos     }
   3854      1.1  christos   while (dummy_caller.call_list != NULL)
   3855      1.1  christos     {
   3856      1.1  christos       struct call_info *call = dummy_caller.call_list;
   3857      1.1  christos       dummy_caller.call_list = call->next;
   3858      1.1  christos       free (call);
   3859      1.1  christos     }
   3860      1.1  christos   for (i = 0; i < 2 * lib_count; i++)
   3861      1.1  christos     if (lib_sections[i])
   3862      1.1  christos       lib_sections[i]->gc_mark = 1;
   3863      1.1  christos   free (lib_sections);
   3864      1.1  christos   return lib_size;
   3865      1.1  christos }
   3866      1.1  christos 
   3867      1.1  christos /* Build an array of overlay sections.  The deepest node's section is
   3868      1.1  christos    added first, then its parent node's section, then everything called
   3869      1.1  christos    from the parent section.  The idea being to group sections to
   3870      1.1  christos    minimise calls between different overlays.  */
   3871      1.1  christos 
   3872      1.1  christos static bfd_boolean
   3873      1.1  christos collect_overlays (struct function_info *fun,
   3874      1.1  christos 		  struct bfd_link_info *info,
   3875      1.1  christos 		  void *param)
   3876      1.1  christos {
   3877      1.1  christos   struct call_info *call;
   3878      1.1  christos   bfd_boolean added_fun;
   3879      1.1  christos   asection ***ovly_sections = param;
   3880      1.1  christos 
   3881      1.1  christos   if (fun->visit7)
   3882      1.1  christos     return TRUE;
   3883      1.1  christos 
   3884      1.1  christos   fun->visit7 = TRUE;
   3885      1.1  christos   for (call = fun->call_list; call != NULL; call = call->next)
   3886      1.1  christos     if (!call->is_pasted && !call->broken_cycle)
   3887      1.1  christos       {
   3888      1.1  christos 	if (!collect_overlays (call->fun, info, ovly_sections))
   3889      1.1  christos 	  return FALSE;
   3890      1.1  christos 	break;
   3891      1.1  christos       }
   3892      1.1  christos 
   3893      1.1  christos   added_fun = FALSE;
   3894      1.1  christos   if (fun->sec->linker_mark && fun->sec->gc_mark)
   3895      1.1  christos     {
   3896      1.1  christos       fun->sec->gc_mark = 0;
   3897      1.1  christos       *(*ovly_sections)++ = fun->sec;
   3898      1.1  christos       if (fun->rodata && fun->rodata->linker_mark && fun->rodata->gc_mark)
   3899      1.1  christos 	{
   3900      1.1  christos 	  fun->rodata->gc_mark = 0;
   3901      1.1  christos 	  *(*ovly_sections)++ = fun->rodata;
   3902      1.1  christos 	}
   3903      1.1  christos       else
   3904      1.1  christos 	*(*ovly_sections)++ = NULL;
   3905      1.1  christos       added_fun = TRUE;
   3906      1.1  christos 
   3907      1.1  christos       /* Pasted sections must stay with the first section.  We don't
   3908      1.1  christos 	 put pasted sections in the array, just the first section.
   3909      1.1  christos 	 Mark subsequent sections as already considered.  */
   3910      1.1  christos       if (fun->sec->segment_mark)
   3911      1.1  christos 	{
   3912      1.1  christos 	  struct function_info *call_fun = fun;
   3913      1.1  christos 	  do
   3914      1.1  christos 	    {
   3915      1.1  christos 	      for (call = call_fun->call_list; call != NULL; call = call->next)
   3916      1.1  christos 		if (call->is_pasted)
   3917      1.1  christos 		  {
   3918      1.1  christos 		    call_fun = call->fun;
   3919      1.1  christos 		    call_fun->sec->gc_mark = 0;
   3920      1.1  christos 		    if (call_fun->rodata)
   3921      1.1  christos 		      call_fun->rodata->gc_mark = 0;
   3922      1.1  christos 		    break;
   3923      1.1  christos 		  }
   3924      1.1  christos 	      if (call == NULL)
   3925      1.1  christos 		abort ();
   3926      1.1  christos 	    }
   3927      1.1  christos 	  while (call_fun->sec->segment_mark);
   3928      1.1  christos 	}
   3929      1.1  christos     }
   3930      1.1  christos 
   3931      1.1  christos   for (call = fun->call_list; call != NULL; call = call->next)
   3932      1.1  christos     if (!call->broken_cycle
   3933      1.1  christos 	&& !collect_overlays (call->fun, info, ovly_sections))
   3934      1.1  christos       return FALSE;
   3935      1.1  christos 
   3936      1.1  christos   if (added_fun)
   3937      1.1  christos     {
   3938      1.1  christos       struct _spu_elf_section_data *sec_data;
   3939      1.1  christos       struct spu_elf_stack_info *sinfo;
   3940      1.1  christos 
   3941      1.1  christos       if ((sec_data = spu_elf_section_data (fun->sec)) != NULL
   3942      1.1  christos 	  && (sinfo = sec_data->u.i.stack_info) != NULL)
   3943      1.1  christos 	{
   3944      1.1  christos 	  int i;
   3945      1.1  christos 	  for (i = 0; i < sinfo->num_fun; ++i)
   3946      1.1  christos 	    if (!collect_overlays (&sinfo->fun[i], info, ovly_sections))
   3947      1.1  christos 	      return FALSE;
   3948      1.1  christos 	}
   3949      1.1  christos     }
   3950      1.1  christos 
   3951      1.1  christos   return TRUE;
   3952      1.1  christos }
   3953      1.1  christos 
   3954      1.1  christos struct _sum_stack_param {
   3955      1.1  christos   size_t cum_stack;
   3956      1.1  christos   size_t overall_stack;
   3957      1.1  christos   bfd_boolean emit_stack_syms;
   3958      1.1  christos };
   3959      1.1  christos 
   3960      1.1  christos /* Descend the call graph for FUN, accumulating total stack required.  */
   3961      1.1  christos 
   3962      1.1  christos static bfd_boolean
   3963      1.1  christos sum_stack (struct function_info *fun,
   3964      1.1  christos 	   struct bfd_link_info *info,
   3965      1.1  christos 	   void *param)
   3966      1.1  christos {
   3967      1.1  christos   struct call_info *call;
   3968      1.1  christos   struct function_info *max;
   3969      1.1  christos   size_t stack, cum_stack;
   3970      1.1  christos   const char *f1;
   3971      1.1  christos   bfd_boolean has_call;
   3972      1.1  christos   struct _sum_stack_param *sum_stack_param = param;
   3973      1.1  christos   struct spu_link_hash_table *htab;
   3974      1.1  christos 
   3975      1.1  christos   cum_stack = fun->stack;
   3976      1.1  christos   sum_stack_param->cum_stack = cum_stack;
   3977      1.1  christos   if (fun->visit3)
   3978      1.1  christos     return TRUE;
   3979      1.1  christos 
   3980      1.1  christos   has_call = FALSE;
   3981      1.1  christos   max = NULL;
   3982      1.1  christos   for (call = fun->call_list; call; call = call->next)
   3983      1.1  christos     {
   3984      1.1  christos       if (call->broken_cycle)
   3985      1.1  christos 	continue;
   3986      1.1  christos       if (!call->is_pasted)
   3987      1.1  christos 	has_call = TRUE;
   3988      1.1  christos       if (!sum_stack (call->fun, info, sum_stack_param))
   3989      1.1  christos 	return FALSE;
   3990      1.1  christos       stack = sum_stack_param->cum_stack;
   3991      1.1  christos       /* Include caller stack for normal calls, don't do so for
   3992      1.1  christos 	 tail calls.  fun->stack here is local stack usage for
   3993      1.1  christos 	 this function.  */
   3994      1.1  christos       if (!call->is_tail || call->is_pasted || call->fun->start != NULL)
   3995      1.1  christos 	stack += fun->stack;
   3996      1.1  christos       if (cum_stack < stack)
   3997      1.1  christos 	{
   3998      1.1  christos 	  cum_stack = stack;
   3999      1.1  christos 	  max = call->fun;
   4000      1.1  christos 	}
   4001      1.1  christos     }
   4002      1.1  christos 
   4003      1.1  christos   sum_stack_param->cum_stack = cum_stack;
   4004      1.1  christos   stack = fun->stack;
   4005      1.1  christos   /* Now fun->stack holds cumulative stack.  */
   4006      1.1  christos   fun->stack = cum_stack;
   4007      1.1  christos   fun->visit3 = TRUE;
   4008      1.1  christos 
   4009      1.1  christos   if (!fun->non_root
   4010      1.1  christos       && sum_stack_param->overall_stack < cum_stack)
   4011      1.1  christos     sum_stack_param->overall_stack = cum_stack;
   4012      1.1  christos 
   4013      1.1  christos   htab = spu_hash_table (info);
   4014      1.1  christos   if (htab->params->auto_overlay)
   4015      1.1  christos     return TRUE;
   4016      1.1  christos 
   4017      1.1  christos   f1 = func_name (fun);
   4018      1.1  christos   if (htab->params->stack_analysis)
   4019      1.1  christos     {
   4020      1.1  christos       if (!fun->non_root)
   4021  1.1.1.7  christos 	info->callbacks->info ("  %s: 0x%v\n", f1, (bfd_vma) cum_stack);
   4022  1.1.1.7  christos       info->callbacks->minfo ("%s: 0x%v 0x%v\n",
   4023      1.1  christos 			      f1, (bfd_vma) stack, (bfd_vma) cum_stack);
   4024      1.1  christos 
   4025      1.1  christos       if (has_call)
   4026      1.1  christos 	{
   4027      1.1  christos 	  info->callbacks->minfo (_("  calls:\n"));
   4028      1.1  christos 	  for (call = fun->call_list; call; call = call->next)
   4029      1.1  christos 	    if (!call->is_pasted && !call->broken_cycle)
   4030      1.1  christos 	      {
   4031      1.1  christos 		const char *f2 = func_name (call->fun);
   4032      1.1  christos 		const char *ann1 = call->fun == max ? "*" : " ";
   4033      1.1  christos 		const char *ann2 = call->is_tail ? "t" : " ";
   4034      1.1  christos 
   4035  1.1.1.7  christos 		info->callbacks->minfo ("   %s%s %s\n", ann1, ann2, f2);
   4036      1.1  christos 	      }
   4037      1.1  christos 	}
   4038      1.1  christos     }
   4039      1.1  christos 
   4040      1.1  christos   if (sum_stack_param->emit_stack_syms)
   4041      1.1  christos     {
   4042      1.1  christos       char *name = bfd_malloc (18 + strlen (f1));
   4043      1.1  christos       struct elf_link_hash_entry *h;
   4044      1.1  christos 
   4045      1.1  christos       if (name == NULL)
   4046      1.1  christos 	return FALSE;
   4047      1.1  christos 
   4048      1.1  christos       if (fun->global || ELF_ST_BIND (fun->u.sym->st_info) == STB_GLOBAL)
   4049      1.1  christos 	sprintf (name, "__stack_%s", f1);
   4050      1.1  christos       else
   4051      1.1  christos 	sprintf (name, "__stack_%x_%s", fun->sec->id & 0xffffffff, f1);
   4052      1.1  christos 
   4053      1.1  christos       h = elf_link_hash_lookup (&htab->elf, name, TRUE, TRUE, FALSE);
   4054      1.1  christos       free (name);
   4055      1.1  christos       if (h != NULL
   4056      1.1  christos 	  && (h->root.type == bfd_link_hash_new
   4057      1.1  christos 	      || h->root.type == bfd_link_hash_undefined
   4058      1.1  christos 	      || h->root.type == bfd_link_hash_undefweak))
   4059      1.1  christos 	{
   4060      1.1  christos 	  h->root.type = bfd_link_hash_defined;
   4061      1.1  christos 	  h->root.u.def.section = bfd_abs_section_ptr;
   4062      1.1  christos 	  h->root.u.def.value = cum_stack;
   4063      1.1  christos 	  h->size = 0;
   4064      1.1  christos 	  h->type = 0;
   4065      1.1  christos 	  h->ref_regular = 1;
   4066      1.1  christos 	  h->def_regular = 1;
   4067      1.1  christos 	  h->ref_regular_nonweak = 1;
   4068      1.1  christos 	  h->forced_local = 1;
   4069      1.1  christos 	  h->non_elf = 0;
   4070      1.1  christos 	}
   4071      1.1  christos     }
   4072      1.1  christos 
   4073      1.1  christos   return TRUE;
   4074      1.1  christos }
   4075      1.1  christos 
   4076      1.1  christos /* SEC is part of a pasted function.  Return the call_info for the
   4077      1.1  christos    next section of this function.  */
   4078      1.1  christos 
   4079      1.1  christos static struct call_info *
   4080      1.1  christos find_pasted_call (asection *sec)
   4081      1.1  christos {
   4082      1.1  christos   struct _spu_elf_section_data *sec_data = spu_elf_section_data (sec);
   4083      1.1  christos   struct spu_elf_stack_info *sinfo = sec_data->u.i.stack_info;
   4084      1.1  christos   struct call_info *call;
   4085      1.1  christos   int k;
   4086      1.1  christos 
   4087      1.1  christos   for (k = 0; k < sinfo->num_fun; ++k)
   4088      1.1  christos     for (call = sinfo->fun[k].call_list; call != NULL; call = call->next)
   4089      1.1  christos       if (call->is_pasted)
   4090      1.1  christos 	return call;
   4091      1.1  christos   abort ();
   4092      1.1  christos   return 0;
   4093      1.1  christos }
   4094      1.1  christos 
   4095      1.1  christos /* qsort predicate to sort bfds by file name.  */
   4096      1.1  christos 
   4097      1.1  christos static int
   4098      1.1  christos sort_bfds (const void *a, const void *b)
   4099      1.1  christos {
   4100      1.1  christos   bfd *const *abfd1 = a;
   4101      1.1  christos   bfd *const *abfd2 = b;
   4102      1.1  christos 
   4103      1.1  christos   return filename_cmp ((*abfd1)->filename, (*abfd2)->filename);
   4104      1.1  christos }
   4105      1.1  christos 
   4106      1.1  christos static unsigned int
   4107      1.1  christos print_one_overlay_section (FILE *script,
   4108      1.1  christos 			   unsigned int base,
   4109      1.1  christos 			   unsigned int count,
   4110      1.1  christos 			   unsigned int ovlynum,
   4111      1.1  christos 			   unsigned int *ovly_map,
   4112      1.1  christos 			   asection **ovly_sections,
   4113      1.1  christos 			   struct bfd_link_info *info)
   4114      1.1  christos {
   4115      1.1  christos   unsigned int j;
   4116  1.1.1.2  christos 
   4117      1.1  christos   for (j = base; j < count && ovly_map[j] == ovlynum; j++)
   4118      1.1  christos     {
   4119      1.1  christos       asection *sec = ovly_sections[2 * j];
   4120      1.1  christos 
   4121      1.1  christos       if (fprintf (script, "   %s%c%s (%s)\n",
   4122      1.1  christos 		   (sec->owner->my_archive != NULL
   4123      1.1  christos 		    ? sec->owner->my_archive->filename : ""),
   4124      1.1  christos 		   info->path_separator,
   4125      1.1  christos 		   sec->owner->filename,
   4126      1.1  christos 		   sec->name) <= 0)
   4127      1.1  christos 	return -1;
   4128      1.1  christos       if (sec->segment_mark)
   4129      1.1  christos 	{
   4130      1.1  christos 	  struct call_info *call = find_pasted_call (sec);
   4131      1.1  christos 	  while (call != NULL)
   4132      1.1  christos 	    {
   4133      1.1  christos 	      struct function_info *call_fun = call->fun;
   4134      1.1  christos 	      sec = call_fun->sec;
   4135      1.1  christos 	      if (fprintf (script, "   %s%c%s (%s)\n",
   4136      1.1  christos 			   (sec->owner->my_archive != NULL
   4137      1.1  christos 			    ? sec->owner->my_archive->filename : ""),
   4138      1.1  christos 			   info->path_separator,
   4139      1.1  christos 			   sec->owner->filename,
   4140      1.1  christos 			   sec->name) <= 0)
   4141      1.1  christos 		return -1;
   4142      1.1  christos 	      for (call = call_fun->call_list; call; call = call->next)
   4143      1.1  christos 		if (call->is_pasted)
   4144      1.1  christos 		  break;
   4145      1.1  christos 	    }
   4146      1.1  christos 	}
   4147      1.1  christos     }
   4148      1.1  christos 
   4149      1.1  christos   for (j = base; j < count && ovly_map[j] == ovlynum; j++)
   4150      1.1  christos     {
   4151      1.1  christos       asection *sec = ovly_sections[2 * j + 1];
   4152      1.1  christos       if (sec != NULL
   4153      1.1  christos 	  && fprintf (script, "   %s%c%s (%s)\n",
   4154      1.1  christos 		      (sec->owner->my_archive != NULL
   4155      1.1  christos 		       ? sec->owner->my_archive->filename : ""),
   4156      1.1  christos 		      info->path_separator,
   4157      1.1  christos 		      sec->owner->filename,
   4158      1.1  christos 		      sec->name) <= 0)
   4159      1.1  christos 	return -1;
   4160      1.1  christos 
   4161      1.1  christos       sec = ovly_sections[2 * j];
   4162      1.1  christos       if (sec->segment_mark)
   4163      1.1  christos 	{
   4164      1.1  christos 	  struct call_info *call = find_pasted_call (sec);
   4165      1.1  christos 	  while (call != NULL)
   4166      1.1  christos 	    {
   4167      1.1  christos 	      struct function_info *call_fun = call->fun;
   4168      1.1  christos 	      sec = call_fun->rodata;
   4169      1.1  christos 	      if (sec != NULL
   4170      1.1  christos 		  && fprintf (script, "   %s%c%s (%s)\n",
   4171      1.1  christos 			      (sec->owner->my_archive != NULL
   4172      1.1  christos 			       ? sec->owner->my_archive->filename : ""),
   4173      1.1  christos 			      info->path_separator,
   4174      1.1  christos 			      sec->owner->filename,
   4175      1.1  christos 			      sec->name) <= 0)
   4176      1.1  christos 		return -1;
   4177      1.1  christos 	      for (call = call_fun->call_list; call; call = call->next)
   4178      1.1  christos 		if (call->is_pasted)
   4179      1.1  christos 		  break;
   4180      1.1  christos 	    }
   4181      1.1  christos 	}
   4182      1.1  christos     }
   4183      1.1  christos 
   4184      1.1  christos   return j;
   4185      1.1  christos }
   4186      1.1  christos 
   4187      1.1  christos /* Handle --auto-overlay.  */
   4188      1.1  christos 
   4189      1.1  christos static void
   4190      1.1  christos spu_elf_auto_overlay (struct bfd_link_info *info)
   4191      1.1  christos {
   4192      1.1  christos   bfd *ibfd;
   4193      1.1  christos   bfd **bfd_arr;
   4194      1.1  christos   struct elf_segment_map *m;
   4195      1.1  christos   unsigned int fixed_size, lo, hi;
   4196      1.1  christos   unsigned int reserved;
   4197      1.1  christos   struct spu_link_hash_table *htab;
   4198      1.1  christos   unsigned int base, i, count, bfd_count;
   4199      1.1  christos   unsigned int region, ovlynum;
   4200      1.1  christos   asection **ovly_sections, **ovly_p;
   4201      1.1  christos   unsigned int *ovly_map;
   4202      1.1  christos   FILE *script;
   4203      1.1  christos   unsigned int total_overlay_size, overlay_size;
   4204      1.1  christos   const char *ovly_mgr_entry;
   4205      1.1  christos   struct elf_link_hash_entry *h;
   4206      1.1  christos   struct _mos_param mos_param;
   4207      1.1  christos   struct _uos_param uos_param;
   4208      1.1  christos   struct function_info dummy_caller;
   4209      1.1  christos 
   4210      1.1  christos   /* Find the extents of our loadable image.  */
   4211      1.1  christos   lo = (unsigned int) -1;
   4212      1.1  christos   hi = 0;
   4213  1.1.1.2  christos   for (m = elf_seg_map (info->output_bfd); m != NULL; m = m->next)
   4214      1.1  christos     if (m->p_type == PT_LOAD)
   4215      1.1  christos       for (i = 0; i < m->count; i++)
   4216      1.1  christos 	if (m->sections[i]->size != 0)
   4217      1.1  christos 	  {
   4218      1.1  christos 	    if (m->sections[i]->vma < lo)
   4219      1.1  christos 	      lo = m->sections[i]->vma;
   4220      1.1  christos 	    if (m->sections[i]->vma + m->sections[i]->size - 1 > hi)
   4221      1.1  christos 	      hi = m->sections[i]->vma + m->sections[i]->size - 1;
   4222      1.1  christos 	  }
   4223      1.1  christos   fixed_size = hi + 1 - lo;
   4224      1.1  christos 
   4225      1.1  christos   if (!discover_functions (info))
   4226      1.1  christos     goto err_exit;
   4227      1.1  christos 
   4228      1.1  christos   if (!build_call_tree (info))
   4229      1.1  christos     goto err_exit;
   4230      1.1  christos 
   4231      1.1  christos   htab = spu_hash_table (info);
   4232      1.1  christos   reserved = htab->params->auto_overlay_reserved;
   4233      1.1  christos   if (reserved == 0)
   4234      1.1  christos     {
   4235      1.1  christos       struct _sum_stack_param sum_stack_param;
   4236      1.1  christos 
   4237      1.1  christos       sum_stack_param.emit_stack_syms = 0;
   4238      1.1  christos       sum_stack_param.overall_stack = 0;
   4239      1.1  christos       if (!for_each_node (sum_stack, info, &sum_stack_param, TRUE))
   4240      1.1  christos 	goto err_exit;
   4241      1.1  christos       reserved = (sum_stack_param.overall_stack
   4242      1.1  christos 		  + htab->params->extra_stack_space);
   4243      1.1  christos     }
   4244      1.1  christos 
   4245      1.1  christos   /* No need for overlays if everything already fits.  */
   4246      1.1  christos   if (fixed_size + reserved <= htab->local_store
   4247      1.1  christos       && htab->params->ovly_flavour != ovly_soft_icache)
   4248      1.1  christos     {
   4249      1.1  christos       htab->params->auto_overlay = 0;
   4250      1.1  christos       return;
   4251      1.1  christos     }
   4252      1.1  christos 
   4253      1.1  christos   uos_param.exclude_input_section = 0;
   4254      1.1  christos   uos_param.exclude_output_section
   4255      1.1  christos     = bfd_get_section_by_name (info->output_bfd, ".interrupt");
   4256      1.1  christos 
   4257      1.1  christos   ovly_mgr_entry = "__ovly_load";
   4258      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   4259      1.1  christos     ovly_mgr_entry = "__icache_br_handler";
   4260      1.1  christos   h = elf_link_hash_lookup (&htab->elf, ovly_mgr_entry,
   4261      1.1  christos 			    FALSE, FALSE, FALSE);
   4262      1.1  christos   if (h != NULL
   4263      1.1  christos       && (h->root.type == bfd_link_hash_defined
   4264      1.1  christos 	  || h->root.type == bfd_link_hash_defweak)
   4265      1.1  christos       && h->def_regular)
   4266      1.1  christos     {
   4267      1.1  christos       /* We have a user supplied overlay manager.  */
   4268      1.1  christos       uos_param.exclude_input_section = h->root.u.def.section;
   4269      1.1  christos     }
   4270      1.1  christos   else
   4271      1.1  christos     {
   4272      1.1  christos       /* If no user overlay manager, spu_elf_load_ovl_mgr will add our
   4273      1.1  christos 	 builtin version to .text, and will adjust .text size.  */
   4274      1.1  christos       fixed_size += (*htab->params->spu_elf_load_ovl_mgr) ();
   4275      1.1  christos     }
   4276      1.1  christos 
   4277      1.1  christos   /* Mark overlay sections, and find max overlay section size.  */
   4278      1.1  christos   mos_param.max_overlay_size = 0;
   4279      1.1  christos   if (!for_each_node (mark_overlay_section, info, &mos_param, TRUE))
   4280      1.1  christos     goto err_exit;
   4281      1.1  christos 
   4282      1.1  christos   /* We can't put the overlay manager or interrupt routines in
   4283      1.1  christos      overlays.  */
   4284      1.1  christos   uos_param.clearing = 0;
   4285      1.1  christos   if ((uos_param.exclude_input_section
   4286      1.1  christos        || uos_param.exclude_output_section)
   4287      1.1  christos       && !for_each_node (unmark_overlay_section, info, &uos_param, TRUE))
   4288      1.1  christos     goto err_exit;
   4289      1.1  christos 
   4290      1.1  christos   bfd_count = 0;
   4291  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   4292      1.1  christos     ++bfd_count;
   4293      1.1  christos   bfd_arr = bfd_malloc (bfd_count * sizeof (*bfd_arr));
   4294      1.1  christos   if (bfd_arr == NULL)
   4295      1.1  christos     goto err_exit;
   4296      1.1  christos 
   4297      1.1  christos   /* Count overlay sections, and subtract their sizes from "fixed_size".  */
   4298      1.1  christos   count = 0;
   4299      1.1  christos   bfd_count = 0;
   4300      1.1  christos   total_overlay_size = 0;
   4301  1.1.1.4  christos   for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   4302      1.1  christos     {
   4303  1.1.1.4  christos       extern const bfd_target spu_elf32_vec;
   4304      1.1  christos       asection *sec;
   4305      1.1  christos       unsigned int old_count;
   4306      1.1  christos 
   4307  1.1.1.4  christos       if (ibfd->xvec != &spu_elf32_vec)
   4308      1.1  christos 	continue;
   4309      1.1  christos 
   4310      1.1  christos       old_count = count;
   4311      1.1  christos       for (sec = ibfd->sections; sec != NULL; sec = sec->next)
   4312      1.1  christos 	if (sec->linker_mark)
   4313      1.1  christos 	  {
   4314      1.1  christos 	    if ((sec->flags & SEC_CODE) != 0)
   4315      1.1  christos 	      count += 1;
   4316      1.1  christos 	    fixed_size -= sec->size;
   4317      1.1  christos 	    total_overlay_size += sec->size;
   4318      1.1  christos 	  }
   4319      1.1  christos 	else if ((sec->flags & (SEC_ALLOC | SEC_LOAD)) == (SEC_ALLOC | SEC_LOAD)
   4320      1.1  christos 		 && sec->output_section->owner == info->output_bfd
   4321      1.1  christos 		 && strncmp (sec->output_section->name, ".ovl.init", 9) == 0)
   4322      1.1  christos 	  fixed_size -= sec->size;
   4323      1.1  christos       if (count != old_count)
   4324      1.1  christos 	bfd_arr[bfd_count++] = ibfd;
   4325      1.1  christos     }
   4326      1.1  christos 
   4327      1.1  christos   /* Since the overlay link script selects sections by file name and
   4328      1.1  christos      section name, ensure that file names are unique.  */
   4329      1.1  christos   if (bfd_count > 1)
   4330      1.1  christos     {
   4331      1.1  christos       bfd_boolean ok = TRUE;
   4332      1.1  christos 
   4333      1.1  christos       qsort (bfd_arr, bfd_count, sizeof (*bfd_arr), sort_bfds);
   4334      1.1  christos       for (i = 1; i < bfd_count; ++i)
   4335      1.1  christos 	if (filename_cmp (bfd_arr[i - 1]->filename, bfd_arr[i]->filename) == 0)
   4336      1.1  christos 	  {
   4337      1.1  christos 	    if (bfd_arr[i - 1]->my_archive == bfd_arr[i]->my_archive)
   4338      1.1  christos 	      {
   4339      1.1  christos 		if (bfd_arr[i - 1]->my_archive && bfd_arr[i]->my_archive)
   4340  1.1.1.7  christos 		  /* xgettext:c-format */
   4341      1.1  christos 		  info->callbacks->einfo (_("%s duplicated in %s\n"),
   4342      1.1  christos 					  bfd_arr[i]->filename,
   4343      1.1  christos 					  bfd_arr[i]->my_archive->filename);
   4344      1.1  christos 		else
   4345      1.1  christos 		  info->callbacks->einfo (_("%s duplicated\n"),
   4346      1.1  christos 					  bfd_arr[i]->filename);
   4347      1.1  christos 		ok = FALSE;
   4348      1.1  christos 	      }
   4349      1.1  christos 	  }
   4350      1.1  christos       if (!ok)
   4351      1.1  christos 	{
   4352      1.1  christos 	  info->callbacks->einfo (_("sorry, no support for duplicate "
   4353      1.1  christos 				    "object files in auto-overlay script\n"));
   4354      1.1  christos 	  bfd_set_error (bfd_error_bad_value);
   4355      1.1  christos 	  goto err_exit;
   4356      1.1  christos 	}
   4357      1.1  christos     }
   4358      1.1  christos   free (bfd_arr);
   4359      1.1  christos 
   4360      1.1  christos   fixed_size += reserved;
   4361      1.1  christos   fixed_size += htab->non_ovly_stub * ovl_stub_size (htab->params);
   4362      1.1  christos   if (fixed_size + mos_param.max_overlay_size <= htab->local_store)
   4363      1.1  christos     {
   4364      1.1  christos       if (htab->params->ovly_flavour == ovly_soft_icache)
   4365      1.1  christos 	{
   4366      1.1  christos 	  /* Stubs in the non-icache area are bigger.  */
   4367      1.1  christos 	  fixed_size += htab->non_ovly_stub * 16;
   4368      1.1  christos 	  /* Space for icache manager tables.
   4369      1.1  christos 	     a) Tag array, one quadword per cache line.
   4370      1.1  christos 	     - word 0: ia address of present line, init to zero.  */
   4371      1.1  christos 	  fixed_size += 16 << htab->num_lines_log2;
   4372      1.1  christos 	  /* b) Rewrite "to" list, one quadword per cache line.  */
   4373      1.1  christos 	  fixed_size += 16 << htab->num_lines_log2;
   4374      1.1  christos 	  /* c) Rewrite "from" list, one byte per outgoing branch (rounded up
   4375      1.1  christos 		to a power-of-two number of full quadwords) per cache line.  */
   4376      1.1  christos 	  fixed_size += 16 << (htab->fromelem_size_log2
   4377      1.1  christos 			       + htab->num_lines_log2);
   4378      1.1  christos 	  /* d) Pointer to __ea backing store (toe), 1 quadword.  */
   4379      1.1  christos 	  fixed_size += 16;
   4380      1.1  christos 	}
   4381      1.1  christos       else
   4382      1.1  christos 	{
   4383      1.1  christos 	  /* Guess number of overlays.  Assuming overlay buffer is on
   4384      1.1  christos 	     average only half full should be conservative.  */
   4385      1.1  christos 	  ovlynum = (total_overlay_size * 2 * htab->params->num_lines
   4386      1.1  christos 		     / (htab->local_store - fixed_size));
   4387      1.1  christos 	  /* Space for _ovly_table[], _ovly_buf_table[] and toe.  */
   4388      1.1  christos 	  fixed_size += ovlynum * 16 + 16 + 4 + 16;
   4389      1.1  christos 	}
   4390      1.1  christos     }
   4391      1.1  christos 
   4392      1.1  christos   if (fixed_size + mos_param.max_overlay_size > htab->local_store)
   4393  1.1.1.7  christos     /* xgettext:c-format */
   4394      1.1  christos     info->callbacks->einfo (_("non-overlay size of 0x%v plus maximum overlay "
   4395      1.1  christos 			      "size of 0x%v exceeds local store\n"),
   4396      1.1  christos 			    (bfd_vma) fixed_size,
   4397      1.1  christos 			    (bfd_vma) mos_param.max_overlay_size);
   4398      1.1  christos 
   4399      1.1  christos   /* Now see if we should put some functions in the non-overlay area.  */
   4400      1.1  christos   else if (fixed_size < htab->params->auto_overlay_fixed)
   4401      1.1  christos     {
   4402      1.1  christos       unsigned int max_fixed, lib_size;
   4403      1.1  christos 
   4404      1.1  christos       max_fixed = htab->local_store - mos_param.max_overlay_size;
   4405      1.1  christos       if (max_fixed > htab->params->auto_overlay_fixed)
   4406      1.1  christos 	max_fixed = htab->params->auto_overlay_fixed;
   4407      1.1  christos       lib_size = max_fixed - fixed_size;
   4408      1.1  christos       lib_size = auto_ovl_lib_functions (info, lib_size);
   4409      1.1  christos       if (lib_size == (unsigned int) -1)
   4410      1.1  christos 	goto err_exit;
   4411      1.1  christos       fixed_size = max_fixed - lib_size;
   4412      1.1  christos     }
   4413      1.1  christos 
   4414      1.1  christos   /* Build an array of sections, suitably sorted to place into
   4415      1.1  christos      overlays.  */
   4416      1.1  christos   ovly_sections = bfd_malloc (2 * count * sizeof (*ovly_sections));
   4417      1.1  christos   if (ovly_sections == NULL)
   4418      1.1  christos     goto err_exit;
   4419      1.1  christos   ovly_p = ovly_sections;
   4420      1.1  christos   if (!for_each_node (collect_overlays, info, &ovly_p, TRUE))
   4421      1.1  christos     goto err_exit;
   4422      1.1  christos   count = (size_t) (ovly_p - ovly_sections) / 2;
   4423      1.1  christos   ovly_map = bfd_malloc (count * sizeof (*ovly_map));
   4424      1.1  christos   if (ovly_map == NULL)
   4425      1.1  christos     goto err_exit;
   4426      1.1  christos 
   4427      1.1  christos   memset (&dummy_caller, 0, sizeof (dummy_caller));
   4428      1.1  christos   overlay_size = (htab->local_store - fixed_size) / htab->params->num_lines;
   4429      1.1  christos   if (htab->params->line_size != 0)
   4430      1.1  christos     overlay_size = htab->params->line_size;
   4431      1.1  christos   base = 0;
   4432      1.1  christos   ovlynum = 0;
   4433      1.1  christos   while (base < count)
   4434      1.1  christos     {
   4435      1.1  christos       unsigned int size = 0, rosize = 0, roalign = 0;
   4436      1.1  christos 
   4437      1.1  christos       for (i = base; i < count; i++)
   4438      1.1  christos 	{
   4439      1.1  christos 	  asection *sec, *rosec;
   4440      1.1  christos 	  unsigned int tmp, rotmp;
   4441      1.1  christos 	  unsigned int num_stubs;
   4442      1.1  christos 	  struct call_info *call, *pasty;
   4443      1.1  christos 	  struct _spu_elf_section_data *sec_data;
   4444      1.1  christos 	  struct spu_elf_stack_info *sinfo;
   4445      1.1  christos 	  unsigned int k;
   4446      1.1  christos 
   4447      1.1  christos 	  /* See whether we can add this section to the current
   4448      1.1  christos 	     overlay without overflowing our overlay buffer.  */
   4449      1.1  christos 	  sec = ovly_sections[2 * i];
   4450      1.1  christos 	  tmp = align_power (size, sec->alignment_power) + sec->size;
   4451      1.1  christos 	  rotmp = rosize;
   4452      1.1  christos 	  rosec = ovly_sections[2 * i + 1];
   4453      1.1  christos 	  if (rosec != NULL)
   4454      1.1  christos 	    {
   4455      1.1  christos 	      rotmp = align_power (rotmp, rosec->alignment_power) + rosec->size;
   4456      1.1  christos 	      if (roalign < rosec->alignment_power)
   4457      1.1  christos 		roalign = rosec->alignment_power;
   4458      1.1  christos 	    }
   4459      1.1  christos 	  if (align_power (tmp, roalign) + rotmp > overlay_size)
   4460      1.1  christos 	    break;
   4461      1.1  christos 	  if (sec->segment_mark)
   4462      1.1  christos 	    {
   4463      1.1  christos 	      /* Pasted sections must stay together, so add their
   4464      1.1  christos 		 sizes too.  */
   4465      1.1  christos 	      pasty = find_pasted_call (sec);
   4466      1.1  christos 	      while (pasty != NULL)
   4467      1.1  christos 		{
   4468      1.1  christos 		  struct function_info *call_fun = pasty->fun;
   4469      1.1  christos 		  tmp = (align_power (tmp, call_fun->sec->alignment_power)
   4470      1.1  christos 			 + call_fun->sec->size);
   4471      1.1  christos 		  if (call_fun->rodata)
   4472      1.1  christos 		    {
   4473      1.1  christos 		      rotmp = (align_power (rotmp,
   4474      1.1  christos 					    call_fun->rodata->alignment_power)
   4475      1.1  christos 			       + call_fun->rodata->size);
   4476      1.1  christos 		      if (roalign < rosec->alignment_power)
   4477      1.1  christos 			roalign = rosec->alignment_power;
   4478      1.1  christos 		    }
   4479      1.1  christos 		  for (pasty = call_fun->call_list; pasty; pasty = pasty->next)
   4480      1.1  christos 		    if (pasty->is_pasted)
   4481      1.1  christos 		      break;
   4482      1.1  christos 		}
   4483      1.1  christos 	    }
   4484      1.1  christos 	  if (align_power (tmp, roalign) + rotmp > overlay_size)
   4485      1.1  christos 	    break;
   4486      1.1  christos 
   4487      1.1  christos 	  /* If we add this section, we might need new overlay call
   4488      1.1  christos 	     stubs.  Add any overlay section calls to dummy_call.  */
   4489      1.1  christos 	  pasty = NULL;
   4490      1.1  christos 	  sec_data = spu_elf_section_data (sec);
   4491      1.1  christos 	  sinfo = sec_data->u.i.stack_info;
   4492      1.1  christos 	  for (k = 0; k < (unsigned) sinfo->num_fun; ++k)
   4493      1.1  christos 	    for (call = sinfo->fun[k].call_list; call; call = call->next)
   4494      1.1  christos 	      if (call->is_pasted)
   4495      1.1  christos 		{
   4496      1.1  christos 		  BFD_ASSERT (pasty == NULL);
   4497      1.1  christos 		  pasty = call;
   4498      1.1  christos 		}
   4499      1.1  christos 	      else if (call->fun->sec->linker_mark)
   4500      1.1  christos 		{
   4501      1.1  christos 		  if (!copy_callee (&dummy_caller, call))
   4502      1.1  christos 		    goto err_exit;
   4503      1.1  christos 		}
   4504      1.1  christos 	  while (pasty != NULL)
   4505      1.1  christos 	    {
   4506      1.1  christos 	      struct function_info *call_fun = pasty->fun;
   4507      1.1  christos 	      pasty = NULL;
   4508      1.1  christos 	      for (call = call_fun->call_list; call; call = call->next)
   4509      1.1  christos 		if (call->is_pasted)
   4510      1.1  christos 		  {
   4511      1.1  christos 		    BFD_ASSERT (pasty == NULL);
   4512      1.1  christos 		    pasty = call;
   4513      1.1  christos 		  }
   4514      1.1  christos 		else if (!copy_callee (&dummy_caller, call))
   4515      1.1  christos 		  goto err_exit;
   4516      1.1  christos 	    }
   4517      1.1  christos 
   4518      1.1  christos 	  /* Calculate call stub size.  */
   4519      1.1  christos 	  num_stubs = 0;
   4520      1.1  christos 	  for (call = dummy_caller.call_list; call; call = call->next)
   4521      1.1  christos 	    {
   4522      1.1  christos 	      unsigned int stub_delta = 1;
   4523      1.1  christos 
   4524      1.1  christos 	      if (htab->params->ovly_flavour == ovly_soft_icache)
   4525      1.1  christos 		stub_delta = call->count;
   4526      1.1  christos 	      num_stubs += stub_delta;
   4527      1.1  christos 
   4528      1.1  christos 	      /* If the call is within this overlay, we won't need a
   4529      1.1  christos 		 stub.  */
   4530      1.1  christos 	      for (k = base; k < i + 1; k++)
   4531      1.1  christos 		if (call->fun->sec == ovly_sections[2 * k])
   4532      1.1  christos 		  {
   4533      1.1  christos 		    num_stubs -= stub_delta;
   4534      1.1  christos 		    break;
   4535      1.1  christos 		  }
   4536      1.1  christos 	    }
   4537      1.1  christos 	  if (htab->params->ovly_flavour == ovly_soft_icache
   4538      1.1  christos 	      && num_stubs > htab->params->max_branch)
   4539      1.1  christos 	    break;
   4540      1.1  christos 	  if (align_power (tmp, roalign) + rotmp
   4541      1.1  christos 	      + num_stubs * ovl_stub_size (htab->params) > overlay_size)
   4542      1.1  christos 	    break;
   4543      1.1  christos 	  size = tmp;
   4544      1.1  christos 	  rosize = rotmp;
   4545      1.1  christos 	}
   4546      1.1  christos 
   4547      1.1  christos       if (i == base)
   4548      1.1  christos 	{
   4549  1.1.1.7  christos 	  /* xgettext:c-format */
   4550  1.1.1.8  christos 	  info->callbacks->einfo (_("%pB:%pA%s exceeds overlay size\n"),
   4551      1.1  christos 				  ovly_sections[2 * i]->owner,
   4552      1.1  christos 				  ovly_sections[2 * i],
   4553      1.1  christos 				  ovly_sections[2 * i + 1] ? " + rodata" : "");
   4554      1.1  christos 	  bfd_set_error (bfd_error_bad_value);
   4555      1.1  christos 	  goto err_exit;
   4556      1.1  christos 	}
   4557      1.1  christos 
   4558      1.1  christos       while (dummy_caller.call_list != NULL)
   4559      1.1  christos 	{
   4560      1.1  christos 	  struct call_info *call = dummy_caller.call_list;
   4561      1.1  christos 	  dummy_caller.call_list = call->next;
   4562      1.1  christos 	  free (call);
   4563      1.1  christos 	}
   4564      1.1  christos 
   4565      1.1  christos       ++ovlynum;
   4566      1.1  christos       while (base < i)
   4567      1.1  christos 	ovly_map[base++] = ovlynum;
   4568      1.1  christos     }
   4569      1.1  christos 
   4570      1.1  christos   script = htab->params->spu_elf_open_overlay_script ();
   4571      1.1  christos 
   4572      1.1  christos   if (htab->params->ovly_flavour == ovly_soft_icache)
   4573      1.1  christos     {
   4574      1.1  christos       if (fprintf (script, "SECTIONS\n{\n") <= 0)
   4575      1.1  christos 	goto file_err;
   4576      1.1  christos 
   4577      1.1  christos       if (fprintf (script,
   4578      1.1  christos 		   " . = ALIGN (%u);\n"
   4579      1.1  christos 		   " .ovl.init : { *(.ovl.init) }\n"
   4580      1.1  christos 		   " . = ABSOLUTE (ADDR (.ovl.init));\n",
   4581      1.1  christos 		   htab->params->line_size) <= 0)
   4582      1.1  christos 	goto file_err;
   4583      1.1  christos 
   4584      1.1  christos       base = 0;
   4585      1.1  christos       ovlynum = 1;
   4586      1.1  christos       while (base < count)
   4587      1.1  christos 	{
   4588      1.1  christos 	  unsigned int indx = ovlynum - 1;
   4589      1.1  christos 	  unsigned int vma, lma;
   4590      1.1  christos 
   4591      1.1  christos 	  vma = (indx & (htab->params->num_lines - 1)) << htab->line_size_log2;
   4592      1.1  christos 	  lma = vma + (((indx >> htab->num_lines_log2) + 1) << 18);
   4593      1.1  christos 
   4594      1.1  christos 	  if (fprintf (script, " .ovly%u ABSOLUTE (ADDR (.ovl.init)) + %u "
   4595      1.1  christos 			       ": AT (LOADADDR (.ovl.init) + %u) {\n",
   4596      1.1  christos 		       ovlynum, vma, lma) <= 0)
   4597      1.1  christos 	    goto file_err;
   4598      1.1  christos 
   4599      1.1  christos 	  base = print_one_overlay_section (script, base, count, ovlynum,
   4600      1.1  christos 					    ovly_map, ovly_sections, info);
   4601      1.1  christos 	  if (base == (unsigned) -1)
   4602      1.1  christos 	    goto file_err;
   4603      1.1  christos 
   4604      1.1  christos 	  if (fprintf (script, "  }\n") <= 0)
   4605      1.1  christos 	    goto file_err;
   4606      1.1  christos 
   4607      1.1  christos 	  ovlynum++;
   4608      1.1  christos 	}
   4609      1.1  christos 
   4610      1.1  christos       if (fprintf (script, " . = ABSOLUTE (ADDR (.ovl.init)) + %u;\n",
   4611      1.1  christos 		   1 << (htab->num_lines_log2 + htab->line_size_log2)) <= 0)
   4612      1.1  christos 	goto file_err;
   4613      1.1  christos 
   4614      1.1  christos       if (fprintf (script, "}\nINSERT AFTER .toe;\n") <= 0)
   4615      1.1  christos 	goto file_err;
   4616      1.1  christos     }
   4617      1.1  christos   else
   4618      1.1  christos     {
   4619      1.1  christos       if (fprintf (script, "SECTIONS\n{\n") <= 0)
   4620      1.1  christos 	goto file_err;
   4621      1.1  christos 
   4622      1.1  christos       if (fprintf (script,
   4623      1.1  christos 		   " . = ALIGN (16);\n"
   4624      1.1  christos 		   " .ovl.init : { *(.ovl.init) }\n"
   4625      1.1  christos 		   " . = ABSOLUTE (ADDR (.ovl.init));\n") <= 0)
   4626      1.1  christos 	goto file_err;
   4627      1.1  christos 
   4628      1.1  christos       for (region = 1; region <= htab->params->num_lines; region++)
   4629      1.1  christos 	{
   4630      1.1  christos 	  ovlynum = region;
   4631      1.1  christos 	  base = 0;
   4632      1.1  christos 	  while (base < count && ovly_map[base] < ovlynum)
   4633      1.1  christos 	    base++;
   4634      1.1  christos 
   4635      1.1  christos 	  if (base == count)
   4636      1.1  christos 	    break;
   4637      1.1  christos 
   4638      1.1  christos 	  if (region == 1)
   4639      1.1  christos 	    {
   4640      1.1  christos 	      /* We need to set lma since we are overlaying .ovl.init.  */
   4641      1.1  christos 	      if (fprintf (script,
   4642      1.1  christos 			   " OVERLAY : AT (ALIGN (LOADADDR (.ovl.init) + SIZEOF (.ovl.init), 16))\n {\n") <= 0)
   4643      1.1  christos 		goto file_err;
   4644      1.1  christos 	    }
   4645      1.1  christos 	  else
   4646      1.1  christos 	    {
   4647      1.1  christos 	      if (fprintf (script, " OVERLAY :\n {\n") <= 0)
   4648      1.1  christos 		goto file_err;
   4649      1.1  christos 	    }
   4650      1.1  christos 
   4651      1.1  christos 	  while (base < count)
   4652      1.1  christos 	    {
   4653      1.1  christos 	      if (fprintf (script, "  .ovly%u {\n", ovlynum) <= 0)
   4654      1.1  christos 		goto file_err;
   4655      1.1  christos 
   4656      1.1  christos 	      base = print_one_overlay_section (script, base, count, ovlynum,
   4657      1.1  christos 						ovly_map, ovly_sections, info);
   4658      1.1  christos 	      if (base == (unsigned) -1)
   4659      1.1  christos 		goto file_err;
   4660      1.1  christos 
   4661      1.1  christos 	      if (fprintf (script, "  }\n") <= 0)
   4662      1.1  christos 		goto file_err;
   4663      1.1  christos 
   4664      1.1  christos 	      ovlynum += htab->params->num_lines;
   4665      1.1  christos 	      while (base < count && ovly_map[base] < ovlynum)
   4666      1.1  christos 		base++;
   4667      1.1  christos 	    }
   4668      1.1  christos 
   4669      1.1  christos 	  if (fprintf (script, " }\n") <= 0)
   4670      1.1  christos 	    goto file_err;
   4671      1.1  christos 	}
   4672      1.1  christos 
   4673      1.1  christos       if (fprintf (script, "}\nINSERT BEFORE .text;\n") <= 0)
   4674      1.1  christos 	goto file_err;
   4675      1.1  christos     }
   4676      1.1  christos 
   4677      1.1  christos   free (ovly_map);
   4678      1.1  christos   free (ovly_sections);
   4679      1.1  christos 
   4680      1.1  christos   if (fclose (script) != 0)
   4681      1.1  christos     goto file_err;
   4682      1.1  christos 
   4683      1.1  christos   if (htab->params->auto_overlay & AUTO_RELINK)
   4684      1.1  christos     (*htab->params->spu_elf_relink) ();
   4685      1.1  christos 
   4686      1.1  christos   xexit (0);
   4687      1.1  christos 
   4688      1.1  christos  file_err:
   4689      1.1  christos   bfd_set_error (bfd_error_system_call);
   4690      1.1  christos  err_exit:
   4691  1.1.1.7  christos   info->callbacks->einfo (_("%F%P: auto overlay error: %E\n"));
   4692      1.1  christos   xexit (1);
   4693      1.1  christos }
   4694      1.1  christos 
   4695      1.1  christos /* Provide an estimate of total stack required.  */
   4696      1.1  christos 
   4697      1.1  christos static bfd_boolean
   4698      1.1  christos spu_elf_stack_analysis (struct bfd_link_info *info)
   4699      1.1  christos {
   4700      1.1  christos   struct spu_link_hash_table *htab;
   4701      1.1  christos   struct _sum_stack_param sum_stack_param;
   4702      1.1  christos 
   4703      1.1  christos   if (!discover_functions (info))
   4704      1.1  christos     return FALSE;
   4705      1.1  christos 
   4706      1.1  christos   if (!build_call_tree (info))
   4707      1.1  christos     return FALSE;
   4708      1.1  christos 
   4709      1.1  christos   htab = spu_hash_table (info);
   4710      1.1  christos   if (htab->params->stack_analysis)
   4711      1.1  christos     {
   4712      1.1  christos       info->callbacks->info (_("Stack size for call graph root nodes.\n"));
   4713      1.1  christos       info->callbacks->minfo (_("\nStack size for functions.  "
   4714      1.1  christos 				"Annotations: '*' max stack, 't' tail call\n"));
   4715      1.1  christos     }
   4716      1.1  christos 
   4717      1.1  christos   sum_stack_param.emit_stack_syms = htab->params->emit_stack_syms;
   4718      1.1  christos   sum_stack_param.overall_stack = 0;
   4719      1.1  christos   if (!for_each_node (sum_stack, info, &sum_stack_param, TRUE))
   4720      1.1  christos     return FALSE;
   4721      1.1  christos 
   4722      1.1  christos   if (htab->params->stack_analysis)
   4723      1.1  christos     info->callbacks->info (_("Maximum stack required is 0x%v\n"),
   4724      1.1  christos 			   (bfd_vma) sum_stack_param.overall_stack);
   4725      1.1  christos   return TRUE;
   4726      1.1  christos }
   4727      1.1  christos 
   4728      1.1  christos /* Perform a final link.  */
   4729      1.1  christos 
   4730      1.1  christos static bfd_boolean
   4731      1.1  christos spu_elf_final_link (bfd *output_bfd, struct bfd_link_info *info)
   4732      1.1  christos {
   4733      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   4734      1.1  christos 
   4735      1.1  christos   if (htab->params->auto_overlay)
   4736      1.1  christos     spu_elf_auto_overlay (info);
   4737      1.1  christos 
   4738      1.1  christos   if ((htab->params->stack_analysis
   4739      1.1  christos        || (htab->params->ovly_flavour == ovly_soft_icache
   4740      1.1  christos 	   && htab->params->lrlive_analysis))
   4741      1.1  christos       && !spu_elf_stack_analysis (info))
   4742  1.1.1.7  christos     info->callbacks->einfo (_("%X%P: stack/lrlive analysis error: %E\n"));
   4743      1.1  christos 
   4744      1.1  christos   if (!spu_elf_build_stubs (info))
   4745  1.1.1.7  christos     info->callbacks->einfo (_("%F%P: can not build overlay stubs: %E\n"));
   4746      1.1  christos 
   4747      1.1  christos   return bfd_elf_final_link (output_bfd, info);
   4748      1.1  christos }
   4749      1.1  christos 
   4750  1.1.1.6  christos /* Called when not normally emitting relocs, ie. !bfd_link_relocatable (info)
   4751      1.1  christos    and !info->emitrelocations.  Returns a count of special relocs
   4752      1.1  christos    that need to be emitted.  */
   4753      1.1  christos 
   4754      1.1  christos static unsigned int
   4755      1.1  christos spu_elf_count_relocs (struct bfd_link_info *info, asection *sec)
   4756      1.1  christos {
   4757      1.1  christos   Elf_Internal_Rela *relocs;
   4758      1.1  christos   unsigned int count = 0;
   4759      1.1  christos 
   4760      1.1  christos   relocs = _bfd_elf_link_read_relocs (sec->owner, sec, NULL, NULL,
   4761      1.1  christos 				      info->keep_memory);
   4762      1.1  christos   if (relocs != NULL)
   4763      1.1  christos     {
   4764      1.1  christos       Elf_Internal_Rela *rel;
   4765      1.1  christos       Elf_Internal_Rela *relend = relocs + sec->reloc_count;
   4766      1.1  christos 
   4767      1.1  christos       for (rel = relocs; rel < relend; rel++)
   4768      1.1  christos 	{
   4769      1.1  christos 	  int r_type = ELF32_R_TYPE (rel->r_info);
   4770      1.1  christos 	  if (r_type == R_SPU_PPU32 || r_type == R_SPU_PPU64)
   4771      1.1  christos 	    ++count;
   4772      1.1  christos 	}
   4773      1.1  christos 
   4774      1.1  christos       if (elf_section_data (sec)->relocs != relocs)
   4775      1.1  christos 	free (relocs);
   4776      1.1  christos     }
   4777      1.1  christos 
   4778      1.1  christos   return count;
   4779      1.1  christos }
   4780      1.1  christos 
   4781      1.1  christos /* Functions for adding fixup records to .fixup */
   4782      1.1  christos 
   4783      1.1  christos #define FIXUP_RECORD_SIZE 4
   4784      1.1  christos 
   4785      1.1  christos #define FIXUP_PUT(output_bfd,htab,index,addr) \
   4786      1.1  christos 	  bfd_put_32 (output_bfd, addr, \
   4787      1.1  christos 		      htab->sfixup->contents + FIXUP_RECORD_SIZE * (index))
   4788      1.1  christos #define FIXUP_GET(output_bfd,htab,index) \
   4789      1.1  christos 	  bfd_get_32 (output_bfd, \
   4790      1.1  christos 		      htab->sfixup->contents + FIXUP_RECORD_SIZE * (index))
   4791      1.1  christos 
   4792      1.1  christos /* Store OFFSET in .fixup.  This assumes it will be called with an
   4793      1.1  christos    increasing OFFSET.  When this OFFSET fits with the last base offset,
   4794      1.1  christos    it just sets a bit, otherwise it adds a new fixup record.  */
   4795      1.1  christos static void
   4796      1.1  christos spu_elf_emit_fixup (bfd * output_bfd, struct bfd_link_info *info,
   4797      1.1  christos 		    bfd_vma offset)
   4798      1.1  christos {
   4799      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   4800      1.1  christos   asection *sfixup = htab->sfixup;
   4801      1.1  christos   bfd_vma qaddr = offset & ~(bfd_vma) 15;
   4802      1.1  christos   bfd_vma bit = ((bfd_vma) 8) >> ((offset & 15) >> 2);
   4803      1.1  christos   if (sfixup->reloc_count == 0)
   4804      1.1  christos     {
   4805      1.1  christos       FIXUP_PUT (output_bfd, htab, 0, qaddr | bit);
   4806      1.1  christos       sfixup->reloc_count++;
   4807      1.1  christos     }
   4808      1.1  christos   else
   4809      1.1  christos     {
   4810      1.1  christos       bfd_vma base = FIXUP_GET (output_bfd, htab, sfixup->reloc_count - 1);
   4811      1.1  christos       if (qaddr != (base & ~(bfd_vma) 15))
   4812      1.1  christos 	{
   4813      1.1  christos 	  if ((sfixup->reloc_count + 1) * FIXUP_RECORD_SIZE > sfixup->size)
   4814  1.1.1.7  christos 	    _bfd_error_handler (_("fatal error while creating .fixup"));
   4815      1.1  christos 	  FIXUP_PUT (output_bfd, htab, sfixup->reloc_count, qaddr | bit);
   4816      1.1  christos 	  sfixup->reloc_count++;
   4817      1.1  christos 	}
   4818      1.1  christos       else
   4819      1.1  christos 	FIXUP_PUT (output_bfd, htab, sfixup->reloc_count - 1, base | bit);
   4820      1.1  christos     }
   4821      1.1  christos }
   4822      1.1  christos 
   4823      1.1  christos /* Apply RELOCS to CONTENTS of INPUT_SECTION from INPUT_BFD.  */
   4824      1.1  christos 
   4825      1.1  christos static int
   4826      1.1  christos spu_elf_relocate_section (bfd *output_bfd,
   4827      1.1  christos 			  struct bfd_link_info *info,
   4828      1.1  christos 			  bfd *input_bfd,
   4829      1.1  christos 			  asection *input_section,
   4830      1.1  christos 			  bfd_byte *contents,
   4831      1.1  christos 			  Elf_Internal_Rela *relocs,
   4832      1.1  christos 			  Elf_Internal_Sym *local_syms,
   4833      1.1  christos 			  asection **local_sections)
   4834      1.1  christos {
   4835      1.1  christos   Elf_Internal_Shdr *symtab_hdr;
   4836      1.1  christos   struct elf_link_hash_entry **sym_hashes;
   4837      1.1  christos   Elf_Internal_Rela *rel, *relend;
   4838      1.1  christos   struct spu_link_hash_table *htab;
   4839      1.1  christos   asection *ea;
   4840      1.1  christos   int ret = TRUE;
   4841      1.1  christos   bfd_boolean emit_these_relocs = FALSE;
   4842      1.1  christos   bfd_boolean is_ea_sym;
   4843      1.1  christos   bfd_boolean stubs;
   4844      1.1  christos   unsigned int iovl = 0;
   4845      1.1  christos 
   4846      1.1  christos   htab = spu_hash_table (info);
   4847      1.1  christos   stubs = (htab->stub_sec != NULL
   4848      1.1  christos 	   && maybe_needs_stubs (input_section));
   4849      1.1  christos   iovl = overlay_index (input_section);
   4850      1.1  christos   ea = bfd_get_section_by_name (output_bfd, "._ea");
   4851      1.1  christos   symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr;
   4852      1.1  christos   sym_hashes = (struct elf_link_hash_entry **) (elf_sym_hashes (input_bfd));
   4853      1.1  christos 
   4854      1.1  christos   rel = relocs;
   4855      1.1  christos   relend = relocs + input_section->reloc_count;
   4856      1.1  christos   for (; rel < relend; rel++)
   4857      1.1  christos     {
   4858      1.1  christos       int r_type;
   4859      1.1  christos       reloc_howto_type *howto;
   4860      1.1  christos       unsigned int r_symndx;
   4861      1.1  christos       Elf_Internal_Sym *sym;
   4862      1.1  christos       asection *sec;
   4863      1.1  christos       struct elf_link_hash_entry *h;
   4864      1.1  christos       const char *sym_name;
   4865      1.1  christos       bfd_vma relocation;
   4866      1.1  christos       bfd_vma addend;
   4867      1.1  christos       bfd_reloc_status_type r;
   4868      1.1  christos       bfd_boolean unresolved_reloc;
   4869      1.1  christos       enum _stub_type stub_type;
   4870      1.1  christos 
   4871      1.1  christos       r_symndx = ELF32_R_SYM (rel->r_info);
   4872      1.1  christos       r_type = ELF32_R_TYPE (rel->r_info);
   4873      1.1  christos       howto = elf_howto_table + r_type;
   4874      1.1  christos       unresolved_reloc = FALSE;
   4875      1.1  christos       h = NULL;
   4876      1.1  christos       sym = NULL;
   4877      1.1  christos       sec = NULL;
   4878      1.1  christos       if (r_symndx < symtab_hdr->sh_info)
   4879      1.1  christos 	{
   4880      1.1  christos 	  sym = local_syms + r_symndx;
   4881      1.1  christos 	  sec = local_sections[r_symndx];
   4882      1.1  christos 	  sym_name = bfd_elf_sym_name (input_bfd, symtab_hdr, sym, sec);
   4883      1.1  christos 	  relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel);
   4884      1.1  christos 	}
   4885      1.1  christos       else
   4886      1.1  christos 	{
   4887      1.1  christos 	  if (sym_hashes == NULL)
   4888      1.1  christos 	    return FALSE;
   4889      1.1  christos 
   4890      1.1  christos 	  h = sym_hashes[r_symndx - symtab_hdr->sh_info];
   4891      1.1  christos 
   4892  1.1.1.4  christos 	  if (info->wrap_hash != NULL
   4893  1.1.1.4  christos 	      && (input_section->flags & SEC_DEBUGGING) != 0)
   4894  1.1.1.4  christos 	    h = ((struct elf_link_hash_entry *)
   4895  1.1.1.4  christos 		 unwrap_hash_lookup (info, input_bfd, &h->root));
   4896  1.1.1.4  christos 
   4897      1.1  christos 	  while (h->root.type == bfd_link_hash_indirect
   4898      1.1  christos 		 || h->root.type == bfd_link_hash_warning)
   4899      1.1  christos 	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
   4900      1.1  christos 
   4901      1.1  christos 	  relocation = 0;
   4902      1.1  christos 	  if (h->root.type == bfd_link_hash_defined
   4903      1.1  christos 	      || h->root.type == bfd_link_hash_defweak)
   4904      1.1  christos 	    {
   4905      1.1  christos 	      sec = h->root.u.def.section;
   4906      1.1  christos 	      if (sec == NULL
   4907      1.1  christos 		  || sec->output_section == NULL)
   4908      1.1  christos 		/* Set a flag that will be cleared later if we find a
   4909      1.1  christos 		   relocation value for this symbol.  output_section
   4910      1.1  christos 		   is typically NULL for symbols satisfied by a shared
   4911      1.1  christos 		   library.  */
   4912      1.1  christos 		unresolved_reloc = TRUE;
   4913      1.1  christos 	      else
   4914      1.1  christos 		relocation = (h->root.u.def.value
   4915      1.1  christos 			      + sec->output_section->vma
   4916      1.1  christos 			      + sec->output_offset);
   4917      1.1  christos 	    }
   4918      1.1  christos 	  else if (h->root.type == bfd_link_hash_undefweak)
   4919      1.1  christos 	    ;
   4920      1.1  christos 	  else if (info->unresolved_syms_in_objects == RM_IGNORE
   4921      1.1  christos 		   && ELF_ST_VISIBILITY (h->other) == STV_DEFAULT)
   4922      1.1  christos 	    ;
   4923  1.1.1.6  christos 	  else if (!bfd_link_relocatable (info)
   4924      1.1  christos 		   && !(r_type == R_SPU_PPU32 || r_type == R_SPU_PPU64))
   4925      1.1  christos 	    {
   4926      1.1  christos 	      bfd_boolean err;
   4927      1.1  christos 	      err = (info->unresolved_syms_in_objects == RM_GENERATE_ERROR
   4928      1.1  christos 		     || ELF_ST_VISIBILITY (h->other) != STV_DEFAULT);
   4929  1.1.1.6  christos 	      (*info->callbacks->undefined_symbol) (info,
   4930  1.1.1.6  christos 						    h->root.root.string,
   4931  1.1.1.6  christos 						    input_bfd,
   4932  1.1.1.6  christos 						    input_section,
   4933  1.1.1.6  christos 						    rel->r_offset, err);
   4934      1.1  christos 	    }
   4935      1.1  christos 	  sym_name = h->root.root.string;
   4936      1.1  christos 	}
   4937      1.1  christos 
   4938  1.1.1.2  christos       if (sec != NULL && discarded_section (sec))
   4939      1.1  christos 	RELOC_AGAINST_DISCARDED_SECTION (info, input_bfd, input_section,
   4940  1.1.1.2  christos 					 rel, 1, relend, howto, 0, contents);
   4941      1.1  christos 
   4942  1.1.1.6  christos       if (bfd_link_relocatable (info))
   4943      1.1  christos 	continue;
   4944      1.1  christos 
   4945      1.1  christos       /* Change "a rt,ra,rb" to "ai rt,ra,0". */
   4946      1.1  christos       if (r_type == R_SPU_ADD_PIC
   4947      1.1  christos 	  && h != NULL
   4948      1.1  christos 	  && !(h->def_regular || ELF_COMMON_DEF_P (h)))
   4949      1.1  christos 	{
   4950      1.1  christos 	  bfd_byte *loc = contents + rel->r_offset;
   4951  1.1.1.2  christos 	  loc[0] = 0x1c;
   4952  1.1.1.2  christos 	  loc[1] = 0x00;
   4953      1.1  christos 	  loc[2] &= 0x3f;
   4954      1.1  christos 	}
   4955      1.1  christos 
   4956      1.1  christos       is_ea_sym = (ea != NULL
   4957      1.1  christos 		   && sec != NULL
   4958      1.1  christos 		   && sec->output_section == ea);
   4959      1.1  christos 
   4960      1.1  christos       /* If this symbol is in an overlay area, we may need to relocate
   4961      1.1  christos 	 to the overlay stub.  */
   4962      1.1  christos       addend = rel->r_addend;
   4963      1.1  christos       if (stubs
   4964      1.1  christos 	  && !is_ea_sym
   4965      1.1  christos 	  && (stub_type = needs_ovl_stub (h, sym, sec, input_section, rel,
   4966      1.1  christos 					  contents, info)) != no_stub)
   4967      1.1  christos 	{
   4968      1.1  christos 	  unsigned int ovl = 0;
   4969      1.1  christos 	  struct got_entry *g, **head;
   4970      1.1  christos 
   4971      1.1  christos 	  if (stub_type != nonovl_stub)
   4972      1.1  christos 	    ovl = iovl;
   4973      1.1  christos 
   4974      1.1  christos 	  if (h != NULL)
   4975      1.1  christos 	    head = &h->got.glist;
   4976      1.1  christos 	  else
   4977      1.1  christos 	    head = elf_local_got_ents (input_bfd) + r_symndx;
   4978      1.1  christos 
   4979      1.1  christos 	  for (g = *head; g != NULL; g = g->next)
   4980      1.1  christos 	    if (htab->params->ovly_flavour == ovly_soft_icache
   4981      1.1  christos 		? (g->ovl == ovl
   4982      1.1  christos 		   && g->br_addr == (rel->r_offset
   4983      1.1  christos 				     + input_section->output_offset
   4984      1.1  christos 				     + input_section->output_section->vma))
   4985      1.1  christos 		: g->addend == addend && (g->ovl == ovl || g->ovl == 0))
   4986      1.1  christos 	      break;
   4987      1.1  christos 	  if (g == NULL)
   4988      1.1  christos 	    abort ();
   4989      1.1  christos 
   4990      1.1  christos 	  relocation = g->stub_addr;
   4991      1.1  christos 	  addend = 0;
   4992      1.1  christos 	}
   4993      1.1  christos       else
   4994      1.1  christos 	{
   4995      1.1  christos 	  /* For soft icache, encode the overlay index into addresses.  */
   4996      1.1  christos 	  if (htab->params->ovly_flavour == ovly_soft_icache
   4997      1.1  christos 	      && (r_type == R_SPU_ADDR16_HI
   4998      1.1  christos 		  || r_type == R_SPU_ADDR32 || r_type == R_SPU_REL32)
   4999      1.1  christos 	      && !is_ea_sym)
   5000      1.1  christos 	    {
   5001      1.1  christos 	      unsigned int ovl = overlay_index (sec);
   5002      1.1  christos 	      if (ovl != 0)
   5003      1.1  christos 		{
   5004      1.1  christos 		  unsigned int set_id = ((ovl - 1) >> htab->num_lines_log2) + 1;
   5005      1.1  christos 		  relocation += set_id << 18;
   5006      1.1  christos 		}
   5007      1.1  christos 	    }
   5008      1.1  christos 	}
   5009      1.1  christos 
   5010  1.1.1.6  christos       if (htab->params->emit_fixups && !bfd_link_relocatable (info)
   5011      1.1  christos 	  && (input_section->flags & SEC_ALLOC) != 0
   5012      1.1  christos 	  && r_type == R_SPU_ADDR32)
   5013      1.1  christos 	{
   5014      1.1  christos 	  bfd_vma offset;
   5015      1.1  christos 	  offset = rel->r_offset + input_section->output_section->vma
   5016      1.1  christos 		   + input_section->output_offset;
   5017      1.1  christos 	  spu_elf_emit_fixup (output_bfd, info, offset);
   5018      1.1  christos 	}
   5019      1.1  christos 
   5020      1.1  christos       if (unresolved_reloc)
   5021      1.1  christos 	;
   5022      1.1  christos       else if (r_type == R_SPU_PPU32 || r_type == R_SPU_PPU64)
   5023      1.1  christos 	{
   5024      1.1  christos 	  if (is_ea_sym)
   5025      1.1  christos 	    {
   5026      1.1  christos 	      /* ._ea is a special section that isn't allocated in SPU
   5027      1.1  christos 		 memory, but rather occupies space in PPU memory as
   5028      1.1  christos 		 part of an embedded ELF image.  If this reloc is
   5029      1.1  christos 		 against a symbol defined in ._ea, then transform the
   5030      1.1  christos 		 reloc into an equivalent one without a symbol
   5031      1.1  christos 		 relative to the start of the ELF image.  */
   5032      1.1  christos 	      rel->r_addend += (relocation
   5033      1.1  christos 				- ea->vma
   5034      1.1  christos 				+ elf_section_data (ea)->this_hdr.sh_offset);
   5035      1.1  christos 	      rel->r_info = ELF32_R_INFO (0, r_type);
   5036      1.1  christos 	    }
   5037      1.1  christos 	  emit_these_relocs = TRUE;
   5038      1.1  christos 	  continue;
   5039      1.1  christos 	}
   5040      1.1  christos       else if (is_ea_sym)
   5041      1.1  christos 	unresolved_reloc = TRUE;
   5042      1.1  christos 
   5043  1.1.1.2  christos       if (unresolved_reloc
   5044  1.1.1.2  christos 	  && _bfd_elf_section_offset (output_bfd, info, input_section,
   5045  1.1.1.2  christos 				      rel->r_offset) != (bfd_vma) -1)
   5046      1.1  christos 	{
   5047  1.1.1.7  christos 	  _bfd_error_handler
   5048  1.1.1.7  christos 	    /* xgettext:c-format */
   5049  1.1.1.8  christos 	    (_("%pB(%s+%#" PRIx64 "): "
   5050  1.1.1.8  christos 	       "unresolvable %s relocation against symbol `%s'"),
   5051      1.1  christos 	     input_bfd,
   5052      1.1  christos 	     bfd_get_section_name (input_bfd, input_section),
   5053  1.1.1.8  christos 	     (uint64_t) rel->r_offset,
   5054      1.1  christos 	     howto->name,
   5055      1.1  christos 	     sym_name);
   5056      1.1  christos 	  ret = FALSE;
   5057      1.1  christos 	}
   5058      1.1  christos 
   5059      1.1  christos       r = _bfd_final_link_relocate (howto,
   5060      1.1  christos 				    input_bfd,
   5061      1.1  christos 				    input_section,
   5062      1.1  christos 				    contents,
   5063      1.1  christos 				    rel->r_offset, relocation, addend);
   5064      1.1  christos 
   5065      1.1  christos       if (r != bfd_reloc_ok)
   5066      1.1  christos 	{
   5067      1.1  christos 	  const char *msg = (const char *) 0;
   5068      1.1  christos 
   5069      1.1  christos 	  switch (r)
   5070      1.1  christos 	    {
   5071      1.1  christos 	    case bfd_reloc_overflow:
   5072  1.1.1.6  christos 	      (*info->callbacks->reloc_overflow)
   5073  1.1.1.6  christos 		(info, (h ? &h->root : NULL), sym_name, howto->name,
   5074  1.1.1.6  christos 		 (bfd_vma) 0, input_bfd, input_section, rel->r_offset);
   5075      1.1  christos 	      break;
   5076      1.1  christos 
   5077      1.1  christos 	    case bfd_reloc_undefined:
   5078  1.1.1.6  christos 	      (*info->callbacks->undefined_symbol)
   5079  1.1.1.6  christos 		(info, sym_name, input_bfd, input_section, rel->r_offset, TRUE);
   5080      1.1  christos 	      break;
   5081      1.1  christos 
   5082      1.1  christos 	    case bfd_reloc_outofrange:
   5083      1.1  christos 	      msg = _("internal error: out of range error");
   5084      1.1  christos 	      goto common_error;
   5085      1.1  christos 
   5086      1.1  christos 	    case bfd_reloc_notsupported:
   5087      1.1  christos 	      msg = _("internal error: unsupported relocation error");
   5088      1.1  christos 	      goto common_error;
   5089      1.1  christos 
   5090      1.1  christos 	    case bfd_reloc_dangerous:
   5091      1.1  christos 	      msg = _("internal error: dangerous error");
   5092      1.1  christos 	      goto common_error;
   5093      1.1  christos 
   5094      1.1  christos 	    default:
   5095      1.1  christos 	      msg = _("internal error: unknown error");
   5096      1.1  christos 	      /* fall through */
   5097      1.1  christos 
   5098      1.1  christos 	    common_error:
   5099      1.1  christos 	      ret = FALSE;
   5100  1.1.1.6  christos 	      (*info->callbacks->warning) (info, msg, sym_name, input_bfd,
   5101  1.1.1.6  christos 					   input_section, rel->r_offset);
   5102      1.1  christos 	      break;
   5103      1.1  christos 	    }
   5104      1.1  christos 	}
   5105      1.1  christos     }
   5106      1.1  christos 
   5107      1.1  christos   if (ret
   5108      1.1  christos       && emit_these_relocs
   5109      1.1  christos       && !info->emitrelocations)
   5110      1.1  christos     {
   5111      1.1  christos       Elf_Internal_Rela *wrel;
   5112      1.1  christos       Elf_Internal_Shdr *rel_hdr;
   5113      1.1  christos 
   5114      1.1  christos       wrel = rel = relocs;
   5115      1.1  christos       relend = relocs + input_section->reloc_count;
   5116      1.1  christos       for (; rel < relend; rel++)
   5117      1.1  christos 	{
   5118      1.1  christos 	  int r_type;
   5119      1.1  christos 
   5120      1.1  christos 	  r_type = ELF32_R_TYPE (rel->r_info);
   5121      1.1  christos 	  if (r_type == R_SPU_PPU32 || r_type == R_SPU_PPU64)
   5122      1.1  christos 	    *wrel++ = *rel;
   5123      1.1  christos 	}
   5124      1.1  christos       input_section->reloc_count = wrel - relocs;
   5125      1.1  christos       /* Backflips for _bfd_elf_link_output_relocs.  */
   5126      1.1  christos       rel_hdr = _bfd_elf_single_rel_hdr (input_section);
   5127      1.1  christos       rel_hdr->sh_size = input_section->reloc_count * rel_hdr->sh_entsize;
   5128      1.1  christos       ret = 2;
   5129      1.1  christos     }
   5130      1.1  christos 
   5131      1.1  christos   return ret;
   5132      1.1  christos }
   5133      1.1  christos 
   5134      1.1  christos static bfd_boolean
   5135      1.1  christos spu_elf_finish_dynamic_sections (bfd *output_bfd ATTRIBUTE_UNUSED,
   5136      1.1  christos 				 struct bfd_link_info *info ATTRIBUTE_UNUSED)
   5137      1.1  christos {
   5138      1.1  christos   return TRUE;
   5139      1.1  christos }
   5140      1.1  christos 
   5141      1.1  christos /* Adjust _SPUEAR_ syms to point at their overlay stubs.  */
   5142      1.1  christos 
   5143      1.1  christos static int
   5144      1.1  christos spu_elf_output_symbol_hook (struct bfd_link_info *info,
   5145      1.1  christos 			    const char *sym_name ATTRIBUTE_UNUSED,
   5146      1.1  christos 			    Elf_Internal_Sym *sym,
   5147      1.1  christos 			    asection *sym_sec ATTRIBUTE_UNUSED,
   5148      1.1  christos 			    struct elf_link_hash_entry *h)
   5149      1.1  christos {
   5150      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   5151      1.1  christos 
   5152  1.1.1.6  christos   if (!bfd_link_relocatable (info)
   5153      1.1  christos       && htab->stub_sec != NULL
   5154      1.1  christos       && h != NULL
   5155      1.1  christos       && (h->root.type == bfd_link_hash_defined
   5156      1.1  christos 	  || h->root.type == bfd_link_hash_defweak)
   5157      1.1  christos       && h->def_regular
   5158      1.1  christos       && strncmp (h->root.root.string, "_SPUEAR_", 8) == 0)
   5159      1.1  christos     {
   5160      1.1  christos       struct got_entry *g;
   5161      1.1  christos 
   5162      1.1  christos       for (g = h->got.glist; g != NULL; g = g->next)
   5163      1.1  christos 	if (htab->params->ovly_flavour == ovly_soft_icache
   5164      1.1  christos 	    ? g->br_addr == g->stub_addr
   5165      1.1  christos 	    : g->addend == 0 && g->ovl == 0)
   5166      1.1  christos 	  {
   5167      1.1  christos 	    sym->st_shndx = (_bfd_elf_section_from_bfd_section
   5168      1.1  christos 			     (htab->stub_sec[0]->output_section->owner,
   5169      1.1  christos 			      htab->stub_sec[0]->output_section));
   5170      1.1  christos 	    sym->st_value = g->stub_addr;
   5171      1.1  christos 	    break;
   5172      1.1  christos 	  }
   5173      1.1  christos     }
   5174      1.1  christos 
   5175      1.1  christos   return 1;
   5176      1.1  christos }
   5177      1.1  christos 
   5178      1.1  christos static int spu_plugin = 0;
   5179      1.1  christos 
   5180      1.1  christos void
   5181      1.1  christos spu_elf_plugin (int val)
   5182      1.1  christos {
   5183      1.1  christos   spu_plugin = val;
   5184      1.1  christos }
   5185      1.1  christos 
   5186      1.1  christos /* Set ELF header e_type for plugins.  */
   5187      1.1  christos 
   5188      1.1  christos static void
   5189  1.1.1.3  christos spu_elf_post_process_headers (bfd *abfd, struct bfd_link_info *info)
   5190      1.1  christos {
   5191      1.1  christos   if (spu_plugin)
   5192      1.1  christos     {
   5193      1.1  christos       Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd);
   5194      1.1  christos 
   5195      1.1  christos       i_ehdrp->e_type = ET_DYN;
   5196      1.1  christos     }
   5197  1.1.1.3  christos 
   5198  1.1.1.3  christos   _bfd_elf_post_process_headers (abfd, info);
   5199      1.1  christos }
   5200      1.1  christos 
   5201      1.1  christos /* We may add an extra PT_LOAD segment for .toe.  We also need extra
   5202      1.1  christos    segments for overlays.  */
   5203      1.1  christos 
   5204      1.1  christos static int
   5205      1.1  christos spu_elf_additional_program_headers (bfd *abfd, struct bfd_link_info *info)
   5206      1.1  christos {
   5207      1.1  christos   int extra = 0;
   5208      1.1  christos   asection *sec;
   5209      1.1  christos 
   5210      1.1  christos   if (info != NULL)
   5211      1.1  christos     {
   5212      1.1  christos       struct spu_link_hash_table *htab = spu_hash_table (info);
   5213      1.1  christos       extra = htab->num_overlays;
   5214      1.1  christos     }
   5215      1.1  christos 
   5216      1.1  christos   if (extra)
   5217      1.1  christos     ++extra;
   5218      1.1  christos 
   5219      1.1  christos   sec = bfd_get_section_by_name (abfd, ".toe");
   5220      1.1  christos   if (sec != NULL && (sec->flags & SEC_LOAD) != 0)
   5221      1.1  christos     ++extra;
   5222      1.1  christos 
   5223      1.1  christos   return extra;
   5224      1.1  christos }
   5225      1.1  christos 
   5226      1.1  christos /* Remove .toe section from other PT_LOAD segments and put it in
   5227      1.1  christos    a segment of its own.  Put overlays in separate segments too.  */
   5228      1.1  christos 
   5229      1.1  christos static bfd_boolean
   5230      1.1  christos spu_elf_modify_segment_map (bfd *abfd, struct bfd_link_info *info)
   5231      1.1  christos {
   5232      1.1  christos   asection *toe, *s;
   5233      1.1  christos   struct elf_segment_map *m, *m_overlay;
   5234  1.1.1.8  christos   struct elf_segment_map **p, **p_overlay, **first_load;
   5235      1.1  christos   unsigned int i;
   5236      1.1  christos 
   5237      1.1  christos   if (info == NULL)
   5238      1.1  christos     return TRUE;
   5239      1.1  christos 
   5240      1.1  christos   toe = bfd_get_section_by_name (abfd, ".toe");
   5241  1.1.1.2  christos   for (m = elf_seg_map (abfd); m != NULL; m = m->next)
   5242      1.1  christos     if (m->p_type == PT_LOAD && m->count > 1)
   5243      1.1  christos       for (i = 0; i < m->count; i++)
   5244      1.1  christos 	if ((s = m->sections[i]) == toe
   5245      1.1  christos 	    || spu_elf_section_data (s)->u.o.ovl_index != 0)
   5246      1.1  christos 	  {
   5247      1.1  christos 	    struct elf_segment_map *m2;
   5248      1.1  christos 	    bfd_vma amt;
   5249      1.1  christos 
   5250      1.1  christos 	    if (i + 1 < m->count)
   5251      1.1  christos 	      {
   5252      1.1  christos 		amt = sizeof (struct elf_segment_map);
   5253      1.1  christos 		amt += (m->count - (i + 2)) * sizeof (m->sections[0]);
   5254      1.1  christos 		m2 = bfd_zalloc (abfd, amt);
   5255      1.1  christos 		if (m2 == NULL)
   5256      1.1  christos 		  return FALSE;
   5257      1.1  christos 		m2->count = m->count - (i + 1);
   5258      1.1  christos 		memcpy (m2->sections, m->sections + i + 1,
   5259      1.1  christos 			m2->count * sizeof (m->sections[0]));
   5260      1.1  christos 		m2->p_type = PT_LOAD;
   5261      1.1  christos 		m2->next = m->next;
   5262      1.1  christos 		m->next = m2;
   5263      1.1  christos 	      }
   5264      1.1  christos 	    m->count = 1;
   5265      1.1  christos 	    if (i != 0)
   5266      1.1  christos 	      {
   5267      1.1  christos 		m->count = i;
   5268      1.1  christos 		amt = sizeof (struct elf_segment_map);
   5269      1.1  christos 		m2 = bfd_zalloc (abfd, amt);
   5270      1.1  christos 		if (m2 == NULL)
   5271      1.1  christos 		  return FALSE;
   5272      1.1  christos 		m2->p_type = PT_LOAD;
   5273      1.1  christos 		m2->count = 1;
   5274      1.1  christos 		m2->sections[0] = s;
   5275      1.1  christos 		m2->next = m->next;
   5276      1.1  christos 		m->next = m2;
   5277      1.1  christos 	      }
   5278      1.1  christos 	    break;
   5279      1.1  christos 	  }
   5280      1.1  christos 
   5281      1.1  christos 
   5282      1.1  christos   /* Some SPU ELF loaders ignore the PF_OVERLAY flag and just load all
   5283      1.1  christos      PT_LOAD segments.  This can cause the .ovl.init section to be
   5284      1.1  christos      overwritten with the contents of some overlay segment.  To work
   5285      1.1  christos      around this issue, we ensure that all PF_OVERLAY segments are
   5286      1.1  christos      sorted first amongst the program headers; this ensures that even
   5287      1.1  christos      with a broken loader, the .ovl.init section (which is not marked
   5288      1.1  christos      as PF_OVERLAY) will be placed into SPU local store on startup.  */
   5289      1.1  christos 
   5290      1.1  christos   /* Move all overlay segments onto a separate list.  */
   5291  1.1.1.2  christos   p = &elf_seg_map (abfd);
   5292      1.1  christos   p_overlay = &m_overlay;
   5293  1.1.1.8  christos   m_overlay = NULL;
   5294  1.1.1.8  christos   first_load = NULL;
   5295      1.1  christos   while (*p != NULL)
   5296      1.1  christos     {
   5297  1.1.1.8  christos       if ((*p)->p_type == PT_LOAD)
   5298      1.1  christos 	{
   5299  1.1.1.8  christos 	  if (!first_load)
   5300  1.1.1.8  christos 	    first_load = p;
   5301  1.1.1.8  christos 	  if ((*p)->count == 1
   5302  1.1.1.8  christos 	      && spu_elf_section_data ((*p)->sections[0])->u.o.ovl_index != 0)
   5303  1.1.1.8  christos 	    {
   5304  1.1.1.8  christos 	      m = *p;
   5305  1.1.1.8  christos 	      *p = m->next;
   5306  1.1.1.8  christos 	      *p_overlay = m;
   5307  1.1.1.8  christos 	      p_overlay = &m->next;
   5308  1.1.1.8  christos 	      continue;
   5309  1.1.1.8  christos 	    }
   5310      1.1  christos 	}
   5311      1.1  christos       p = &((*p)->next);
   5312      1.1  christos     }
   5313      1.1  christos 
   5314      1.1  christos   /* Re-insert overlay segments at the head of the segment map.  */
   5315  1.1.1.8  christos   if (m_overlay != NULL)
   5316  1.1.1.8  christos     {
   5317  1.1.1.8  christos       p = first_load;
   5318  1.1.1.8  christos       if (*p != NULL && (*p)->p_type == PT_LOAD && (*p)->includes_filehdr)
   5319  1.1.1.8  christos 	/* It doesn't really make sense for someone to include the ELF
   5320  1.1.1.8  christos 	   file header into an spu image, but if they do the code that
   5321  1.1.1.8  christos 	   assigns p_offset needs to see the segment containing the
   5322  1.1.1.8  christos 	   header first.  */
   5323  1.1.1.8  christos 	p = &(*p)->next;
   5324  1.1.1.8  christos       *p_overlay = *p;
   5325  1.1.1.8  christos       *p = m_overlay;
   5326  1.1.1.8  christos     }
   5327      1.1  christos 
   5328      1.1  christos   return TRUE;
   5329      1.1  christos }
   5330      1.1  christos 
   5331      1.1  christos /* Tweak the section type of .note.spu_name.  */
   5332      1.1  christos 
   5333      1.1  christos static bfd_boolean
   5334      1.1  christos spu_elf_fake_sections (bfd *obfd ATTRIBUTE_UNUSED,
   5335      1.1  christos 		       Elf_Internal_Shdr *hdr,
   5336      1.1  christos 		       asection *sec)
   5337      1.1  christos {
   5338      1.1  christos   if (strcmp (sec->name, SPU_PTNOTE_SPUNAME) == 0)
   5339      1.1  christos     hdr->sh_type = SHT_NOTE;
   5340      1.1  christos   return TRUE;
   5341      1.1  christos }
   5342      1.1  christos 
   5343      1.1  christos /* Tweak phdrs before writing them out.  */
   5344      1.1  christos 
   5345      1.1  christos static int
   5346      1.1  christos spu_elf_modify_program_headers (bfd *abfd, struct bfd_link_info *info)
   5347      1.1  christos {
   5348      1.1  christos   const struct elf_backend_data *bed;
   5349      1.1  christos   struct elf_obj_tdata *tdata;
   5350      1.1  christos   Elf_Internal_Phdr *phdr, *last;
   5351      1.1  christos   struct spu_link_hash_table *htab;
   5352      1.1  christos   unsigned int count;
   5353      1.1  christos   unsigned int i;
   5354      1.1  christos 
   5355      1.1  christos   if (info == NULL)
   5356      1.1  christos     return TRUE;
   5357      1.1  christos 
   5358      1.1  christos   bed = get_elf_backend_data (abfd);
   5359      1.1  christos   tdata = elf_tdata (abfd);
   5360      1.1  christos   phdr = tdata->phdr;
   5361  1.1.1.2  christos   count = elf_program_header_size (abfd) / bed->s->sizeof_phdr;
   5362      1.1  christos   htab = spu_hash_table (info);
   5363      1.1  christos   if (htab->num_overlays != 0)
   5364      1.1  christos     {
   5365      1.1  christos       struct elf_segment_map *m;
   5366      1.1  christos       unsigned int o;
   5367      1.1  christos 
   5368  1.1.1.2  christos       for (i = 0, m = elf_seg_map (abfd); m; ++i, m = m->next)
   5369      1.1  christos 	if (m->count != 0
   5370      1.1  christos 	    && (o = spu_elf_section_data (m->sections[0])->u.o.ovl_index) != 0)
   5371      1.1  christos 	  {
   5372      1.1  christos 	    /* Mark this as an overlay header.  */
   5373      1.1  christos 	    phdr[i].p_flags |= PF_OVERLAY;
   5374      1.1  christos 
   5375      1.1  christos 	    if (htab->ovtab != NULL && htab->ovtab->size != 0
   5376      1.1  christos 		&& htab->params->ovly_flavour != ovly_soft_icache)
   5377      1.1  christos 	      {
   5378      1.1  christos 		bfd_byte *p = htab->ovtab->contents;
   5379      1.1  christos 		unsigned int off = o * 16 + 8;
   5380      1.1  christos 
   5381      1.1  christos 		/* Write file_off into _ovly_table.  */
   5382      1.1  christos 		bfd_put_32 (htab->ovtab->owner, phdr[i].p_offset, p + off);
   5383      1.1  christos 	      }
   5384      1.1  christos 	  }
   5385      1.1  christos       /* Soft-icache has its file offset put in .ovl.init.  */
   5386      1.1  christos       if (htab->init != NULL && htab->init->size != 0)
   5387      1.1  christos 	{
   5388      1.1  christos 	  bfd_vma val = elf_section_data (htab->ovl_sec[0])->this_hdr.sh_offset;
   5389      1.1  christos 
   5390      1.1  christos 	  bfd_put_32 (htab->init->owner, val, htab->init->contents + 4);
   5391      1.1  christos 	}
   5392      1.1  christos     }
   5393      1.1  christos 
   5394      1.1  christos   /* Round up p_filesz and p_memsz of PT_LOAD segments to multiples
   5395      1.1  christos      of 16.  This should always be possible when using the standard
   5396      1.1  christos      linker scripts, but don't create overlapping segments if
   5397      1.1  christos      someone is playing games with linker scripts.  */
   5398      1.1  christos   last = NULL;
   5399      1.1  christos   for (i = count; i-- != 0; )
   5400      1.1  christos     if (phdr[i].p_type == PT_LOAD)
   5401      1.1  christos       {
   5402      1.1  christos 	unsigned adjust;
   5403      1.1  christos 
   5404      1.1  christos 	adjust = -phdr[i].p_filesz & 15;
   5405      1.1  christos 	if (adjust != 0
   5406      1.1  christos 	    && last != NULL
   5407      1.1  christos 	    && phdr[i].p_offset + phdr[i].p_filesz > last->p_offset - adjust)
   5408      1.1  christos 	  break;
   5409      1.1  christos 
   5410      1.1  christos 	adjust = -phdr[i].p_memsz & 15;
   5411      1.1  christos 	if (adjust != 0
   5412      1.1  christos 	    && last != NULL
   5413      1.1  christos 	    && phdr[i].p_filesz != 0
   5414      1.1  christos 	    && phdr[i].p_vaddr + phdr[i].p_memsz > last->p_vaddr - adjust
   5415      1.1  christos 	    && phdr[i].p_vaddr + phdr[i].p_memsz <= last->p_vaddr)
   5416      1.1  christos 	  break;
   5417      1.1  christos 
   5418      1.1  christos 	if (phdr[i].p_filesz != 0)
   5419      1.1  christos 	  last = &phdr[i];
   5420      1.1  christos       }
   5421      1.1  christos 
   5422      1.1  christos   if (i == (unsigned int) -1)
   5423      1.1  christos     for (i = count; i-- != 0; )
   5424      1.1  christos       if (phdr[i].p_type == PT_LOAD)
   5425      1.1  christos 	{
   5426      1.1  christos 	unsigned adjust;
   5427      1.1  christos 
   5428      1.1  christos 	adjust = -phdr[i].p_filesz & 15;
   5429      1.1  christos 	phdr[i].p_filesz += adjust;
   5430      1.1  christos 
   5431      1.1  christos 	adjust = -phdr[i].p_memsz & 15;
   5432      1.1  christos 	phdr[i].p_memsz += adjust;
   5433      1.1  christos       }
   5434      1.1  christos 
   5435      1.1  christos   return TRUE;
   5436      1.1  christos }
   5437      1.1  christos 
   5438      1.1  christos bfd_boolean
   5439      1.1  christos spu_elf_size_sections (bfd * output_bfd, struct bfd_link_info *info)
   5440      1.1  christos {
   5441      1.1  christos   struct spu_link_hash_table *htab = spu_hash_table (info);
   5442      1.1  christos   if (htab->params->emit_fixups)
   5443      1.1  christos     {
   5444      1.1  christos       asection *sfixup = htab->sfixup;
   5445      1.1  christos       int fixup_count = 0;
   5446      1.1  christos       bfd *ibfd;
   5447      1.1  christos       size_t size;
   5448      1.1  christos 
   5449  1.1.1.4  christos       for (ibfd = info->input_bfds; ibfd != NULL; ibfd = ibfd->link.next)
   5450      1.1  christos 	{
   5451      1.1  christos 	  asection *isec;
   5452      1.1  christos 
   5453      1.1  christos 	  if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
   5454      1.1  christos 	    continue;
   5455      1.1  christos 
   5456      1.1  christos 	  /* Walk over each section attached to the input bfd.  */
   5457      1.1  christos 	  for (isec = ibfd->sections; isec != NULL; isec = isec->next)
   5458      1.1  christos 	    {
   5459      1.1  christos 	      Elf_Internal_Rela *internal_relocs, *irelaend, *irela;
   5460      1.1  christos 	      bfd_vma base_end;
   5461      1.1  christos 
   5462      1.1  christos 	      /* If there aren't any relocs, then there's nothing more
   5463  1.1.1.8  christos 		 to do.  */
   5464      1.1  christos 	      if ((isec->flags & SEC_ALLOC) == 0
   5465      1.1  christos 		  || (isec->flags & SEC_RELOC) == 0
   5466      1.1  christos 		  || isec->reloc_count == 0)
   5467      1.1  christos 		continue;
   5468      1.1  christos 
   5469      1.1  christos 	      /* Get the relocs.  */
   5470      1.1  christos 	      internal_relocs =
   5471      1.1  christos 		_bfd_elf_link_read_relocs (ibfd, isec, NULL, NULL,
   5472      1.1  christos 					   info->keep_memory);
   5473      1.1  christos 	      if (internal_relocs == NULL)
   5474      1.1  christos 		return FALSE;
   5475      1.1  christos 
   5476      1.1  christos 	      /* 1 quadword can contain up to 4 R_SPU_ADDR32
   5477  1.1.1.8  christos 		 relocations.  They are stored in a single word by
   5478  1.1.1.8  christos 		 saving the upper 28 bits of the address and setting the
   5479  1.1.1.8  christos 		 lower 4 bits to a bit mask of the words that have the
   5480  1.1.1.8  christos 		 relocation.  BASE_END keeps track of the next quadword. */
   5481      1.1  christos 	      irela = internal_relocs;
   5482      1.1  christos 	      irelaend = irela + isec->reloc_count;
   5483      1.1  christos 	      base_end = 0;
   5484      1.1  christos 	      for (; irela < irelaend; irela++)
   5485      1.1  christos 		if (ELF32_R_TYPE (irela->r_info) == R_SPU_ADDR32
   5486      1.1  christos 		    && irela->r_offset >= base_end)
   5487      1.1  christos 		  {
   5488      1.1  christos 		    base_end = (irela->r_offset & ~(bfd_vma) 15) + 16;
   5489      1.1  christos 		    fixup_count++;
   5490      1.1  christos 		  }
   5491      1.1  christos 	    }
   5492      1.1  christos 	}
   5493      1.1  christos 
   5494      1.1  christos       /* We always have a NULL fixup as a sentinel */
   5495      1.1  christos       size = (fixup_count + 1) * FIXUP_RECORD_SIZE;
   5496      1.1  christos       if (!bfd_set_section_size (output_bfd, sfixup, size))
   5497      1.1  christos 	return FALSE;
   5498      1.1  christos       sfixup->contents = (bfd_byte *) bfd_zalloc (info->input_bfds, size);
   5499      1.1  christos       if (sfixup->contents == NULL)
   5500      1.1  christos 	return FALSE;
   5501      1.1  christos     }
   5502      1.1  christos   return TRUE;
   5503      1.1  christos }
   5504      1.1  christos 
   5505  1.1.1.4  christos #define TARGET_BIG_SYM		spu_elf32_vec
   5506      1.1  christos #define TARGET_BIG_NAME		"elf32-spu"
   5507      1.1  christos #define ELF_ARCH		bfd_arch_spu
   5508      1.1  christos #define ELF_TARGET_ID		SPU_ELF_DATA
   5509      1.1  christos #define ELF_MACHINE_CODE	EM_SPU
   5510      1.1  christos /* This matches the alignment need for DMA.  */
   5511      1.1  christos #define ELF_MAXPAGESIZE		0x80
   5512  1.1.1.8  christos #define elf_backend_rela_normal		1
   5513      1.1  christos #define elf_backend_can_gc_sections	1
   5514      1.1  christos 
   5515      1.1  christos #define bfd_elf32_bfd_reloc_type_lookup		spu_elf_reloc_type_lookup
   5516      1.1  christos #define bfd_elf32_bfd_reloc_name_lookup		spu_elf_reloc_name_lookup
   5517      1.1  christos #define elf_info_to_howto			spu_elf_info_to_howto
   5518      1.1  christos #define elf_backend_count_relocs		spu_elf_count_relocs
   5519      1.1  christos #define elf_backend_relocate_section		spu_elf_relocate_section
   5520      1.1  christos #define elf_backend_finish_dynamic_sections	spu_elf_finish_dynamic_sections
   5521      1.1  christos #define elf_backend_symbol_processing		spu_elf_backend_symbol_processing
   5522      1.1  christos #define elf_backend_link_output_symbol_hook	spu_elf_output_symbol_hook
   5523      1.1  christos #define elf_backend_object_p			spu_elf_object_p
   5524      1.1  christos #define bfd_elf32_new_section_hook		spu_elf_new_section_hook
   5525      1.1  christos #define bfd_elf32_bfd_link_hash_table_create	spu_elf_link_hash_table_create
   5526      1.1  christos 
   5527      1.1  christos #define elf_backend_additional_program_headers	spu_elf_additional_program_headers
   5528      1.1  christos #define elf_backend_modify_segment_map		spu_elf_modify_segment_map
   5529      1.1  christos #define elf_backend_modify_program_headers	spu_elf_modify_program_headers
   5530  1.1.1.8  christos #define elf_backend_post_process_headers	spu_elf_post_process_headers
   5531      1.1  christos #define elf_backend_fake_sections		spu_elf_fake_sections
   5532      1.1  christos #define elf_backend_special_sections		spu_elf_special_sections
   5533      1.1  christos #define bfd_elf32_bfd_final_link		spu_elf_final_link
   5534      1.1  christos 
   5535      1.1  christos #include "elf32-target.h"
   5536