1 /* IBM S/390-specific support for 32-bit ELF
2 Copyright 2000, 2001, 2002, 2003, 2004 Free Software Foundation, Inc.
3 Contributed by Carl B. Pedersen and Martin Schwidefsky.
5 This file is part of BFD, the Binary File Descriptor library.
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
28 static reloc_howto_type
*elf_s390_reloc_type_lookup
29 PARAMS ((bfd
*, bfd_reloc_code_real_type
));
30 static void elf_s390_info_to_howto
31 PARAMS ((bfd
*, arelent
*, Elf_Internal_Rela
*));
32 static bfd_boolean elf_s390_is_local_label_name
33 PARAMS ((bfd
*, const char *));
34 static struct bfd_hash_entry
*link_hash_newfunc
35 PARAMS ((struct bfd_hash_entry
*, struct bfd_hash_table
*, const char *));
36 static struct bfd_link_hash_table
*elf_s390_link_hash_table_create
38 static bfd_boolean create_got_section
39 PARAMS((bfd
*, struct bfd_link_info
*));
40 static bfd_boolean elf_s390_create_dynamic_sections
41 PARAMS((bfd
*, struct bfd_link_info
*));
42 static void elf_s390_copy_indirect_symbol
43 PARAMS ((const struct elf_backend_data
*, struct elf_link_hash_entry
*,
44 struct elf_link_hash_entry
*));
45 static bfd_boolean elf_s390_check_relocs
46 PARAMS ((bfd
*, struct bfd_link_info
*, asection
*,
47 const Elf_Internal_Rela
*));
48 static asection
*elf_s390_gc_mark_hook
49 PARAMS ((asection
*, struct bfd_link_info
*, Elf_Internal_Rela
*,
50 struct elf_link_hash_entry
*, Elf_Internal_Sym
*));
51 static bfd_boolean elf_s390_gc_sweep_hook
52 PARAMS ((bfd
*, struct bfd_link_info
*, asection
*,
53 const Elf_Internal_Rela
*));
54 struct elf_s390_link_hash_entry
;
55 static void elf_s390_adjust_gotplt
56 PARAMS ((struct elf_s390_link_hash_entry
*));
57 static bfd_boolean elf_s390_adjust_dynamic_symbol
58 PARAMS ((struct bfd_link_info
*, struct elf_link_hash_entry
*));
59 static bfd_boolean allocate_dynrelocs
60 PARAMS ((struct elf_link_hash_entry
*, PTR
));
61 static bfd_boolean readonly_dynrelocs
62 PARAMS ((struct elf_link_hash_entry
*, PTR
));
63 static bfd_boolean elf_s390_size_dynamic_sections
64 PARAMS ((bfd
*, struct bfd_link_info
*));
65 static bfd_boolean elf_s390_relocate_section
66 PARAMS ((bfd
*, struct bfd_link_info
*, bfd
*, asection
*, bfd_byte
*,
67 Elf_Internal_Rela
*, Elf_Internal_Sym
*, asection
**));
68 static bfd_boolean elf_s390_finish_dynamic_symbol
69 PARAMS ((bfd
*, struct bfd_link_info
*, struct elf_link_hash_entry
*,
71 static enum elf_reloc_type_class elf_s390_reloc_type_class
72 PARAMS ((const Elf_Internal_Rela
*));
73 static bfd_boolean elf_s390_finish_dynamic_sections
74 PARAMS ((bfd
*, struct bfd_link_info
*));
75 static bfd_boolean elf_s390_mkobject
77 static bfd_boolean elf_s390_object_p
79 static bfd_boolean elf_s390_grok_prstatus
80 PARAMS ((bfd
*, Elf_Internal_Note
*));
81 static int elf_s390_tls_transition
82 PARAMS ((struct bfd_link_info
*, int, int));
83 static bfd_reloc_status_type s390_tls_reloc
84 PARAMS ((bfd
*, arelent
*, asymbol
*, PTR
, asection
*, bfd
*, char **));
85 static bfd_vma dtpoff_base
86 PARAMS ((struct bfd_link_info
*));
88 PARAMS ((struct bfd_link_info
*, bfd_vma
));
89 static void invalid_tls_insn
90 PARAMS ((bfd
*, asection
*, Elf_Internal_Rela
*));
91 static bfd_reloc_status_type s390_elf_ldisp_reloc
92 PARAMS ((bfd
*, arelent
*, asymbol
*, PTR
, asection
*, bfd
*, char **));
96 /* The relocation "howto" table. */
98 static reloc_howto_type elf_howto_table
[] =
100 HOWTO (R_390_NONE
, /* type */
102 0, /* size (0 = byte, 1 = short, 2 = long) */
104 FALSE
, /* pc_relative */
106 complain_overflow_dont
, /* complain_on_overflow */
107 bfd_elf_generic_reloc
, /* special_function */
108 "R_390_NONE", /* name */
109 FALSE
, /* partial_inplace */
112 FALSE
), /* pcrel_offset */
114 HOWTO(R_390_8
, 0, 0, 8, FALSE
, 0, complain_overflow_bitfield
,
115 bfd_elf_generic_reloc
, "R_390_8", FALSE
, 0,0x000000ff, FALSE
),
116 HOWTO(R_390_12
, 0, 1, 12, FALSE
, 0, complain_overflow_dont
,
117 bfd_elf_generic_reloc
, "R_390_12", FALSE
, 0,0x00000fff, FALSE
),
118 HOWTO(R_390_16
, 0, 1, 16, FALSE
, 0, complain_overflow_bitfield
,
119 bfd_elf_generic_reloc
, "R_390_16", FALSE
, 0,0x0000ffff, FALSE
),
120 HOWTO(R_390_32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
121 bfd_elf_generic_reloc
, "R_390_32", FALSE
, 0,0xffffffff, FALSE
),
122 HOWTO(R_390_PC32
, 0, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
123 bfd_elf_generic_reloc
, "R_390_PC32", FALSE
, 0,0xffffffff, TRUE
),
124 HOWTO(R_390_GOT12
, 0, 1, 12, FALSE
, 0, complain_overflow_bitfield
,
125 bfd_elf_generic_reloc
, "R_390_GOT12", FALSE
, 0,0x00000fff, FALSE
),
126 HOWTO(R_390_GOT32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
127 bfd_elf_generic_reloc
, "R_390_GOT32", FALSE
, 0,0xffffffff, FALSE
),
128 HOWTO(R_390_PLT32
, 0, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
129 bfd_elf_generic_reloc
, "R_390_PLT32", FALSE
, 0,0xffffffff, TRUE
),
130 HOWTO(R_390_COPY
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
131 bfd_elf_generic_reloc
, "R_390_COPY", FALSE
, 0,0xffffffff, FALSE
),
132 HOWTO(R_390_GLOB_DAT
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
133 bfd_elf_generic_reloc
, "R_390_GLOB_DAT", FALSE
, 0,0xffffffff, FALSE
),
134 HOWTO(R_390_JMP_SLOT
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
135 bfd_elf_generic_reloc
, "R_390_JMP_SLOT", FALSE
, 0,0xffffffff, FALSE
),
136 HOWTO(R_390_RELATIVE
, 0, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
137 bfd_elf_generic_reloc
, "R_390_RELATIVE", FALSE
, 0,0xffffffff, FALSE
),
138 HOWTO(R_390_GOTOFF32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
139 bfd_elf_generic_reloc
, "R_390_GOTOFF32", FALSE
, 0,0xffffffff, FALSE
),
140 HOWTO(R_390_GOTPC
, 0, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
141 bfd_elf_generic_reloc
, "R_390_GOTPC", FALSE
, 0,0xffffffff, TRUE
),
142 HOWTO(R_390_GOT16
, 0, 1, 16, FALSE
, 0, complain_overflow_bitfield
,
143 bfd_elf_generic_reloc
, "R_390_GOT16", FALSE
, 0,0x0000ffff, FALSE
),
144 HOWTO(R_390_PC16
, 0, 1, 16, TRUE
, 0, complain_overflow_bitfield
,
145 bfd_elf_generic_reloc
, "R_390_PC16", FALSE
, 0,0x0000ffff, TRUE
),
146 HOWTO(R_390_PC16DBL
, 1, 1, 16, TRUE
, 0, complain_overflow_bitfield
,
147 bfd_elf_generic_reloc
, "R_390_PC16DBL", FALSE
, 0,0x0000ffff, TRUE
),
148 HOWTO(R_390_PLT16DBL
, 1, 1, 16, TRUE
, 0, complain_overflow_bitfield
,
149 bfd_elf_generic_reloc
, "R_390_PLT16DBL", FALSE
, 0,0x0000ffff, TRUE
),
150 HOWTO(R_390_PC32DBL
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
151 bfd_elf_generic_reloc
, "R_390_PC32DBL", FALSE
, 0,0xffffffff, TRUE
),
152 HOWTO(R_390_PLT32DBL
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
153 bfd_elf_generic_reloc
, "R_390_PLT32DBL", FALSE
, 0,0xffffffff, TRUE
),
154 HOWTO(R_390_GOTPCDBL
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
155 bfd_elf_generic_reloc
, "R_390_GOTPCDBL", FALSE
, 0,0xffffffff, TRUE
),
156 EMPTY_HOWTO (R_390_64
), /* Empty entry for R_390_64. */
157 EMPTY_HOWTO (R_390_PC64
), /* Empty entry for R_390_PC64. */
158 EMPTY_HOWTO (R_390_GOT64
), /* Empty entry for R_390_GOT64. */
159 EMPTY_HOWTO (R_390_PLT64
), /* Empty entry for R_390_PLT64. */
160 HOWTO(R_390_GOTENT
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
161 bfd_elf_generic_reloc
, "R_390_GOTENT", FALSE
, 0,0xffffffff, TRUE
),
162 HOWTO(R_390_GOTOFF16
, 0, 1, 16, FALSE
, 0, complain_overflow_bitfield
,
163 bfd_elf_generic_reloc
, "R_390_GOTOFF16", FALSE
, 0,0x0000ffff, FALSE
),
164 EMPTY_HOWTO (R_390_GOTOFF64
), /* Empty entry for R_390_GOTOFF64. */
165 HOWTO(R_390_GOTPLT12
, 0, 1, 12, FALSE
, 0, complain_overflow_dont
,
166 bfd_elf_generic_reloc
, "R_390_GOTPLT12", FALSE
, 0,0x00000fff, FALSE
),
167 HOWTO(R_390_GOTPLT16
, 0, 1, 16, FALSE
, 0, complain_overflow_bitfield
,
168 bfd_elf_generic_reloc
, "R_390_GOTPLT16", FALSE
, 0,0x0000ffff, FALSE
),
169 HOWTO(R_390_GOTPLT32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
170 bfd_elf_generic_reloc
, "R_390_GOTPLT32", FALSE
, 0,0xffffffff, FALSE
),
171 EMPTY_HOWTO (R_390_GOTPLT64
), /* Empty entry for R_390_GOTPLT64. */
172 HOWTO(R_390_GOTPLTENT
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
173 bfd_elf_generic_reloc
, "R_390_GOTPLTENT",FALSE
, 0,0xffffffff, TRUE
),
174 HOWTO(R_390_PLTOFF16
, 0, 1, 16, FALSE
, 0, complain_overflow_bitfield
,
175 bfd_elf_generic_reloc
, "R_390_PLTOFF16", FALSE
, 0,0x0000ffff, FALSE
),
176 HOWTO(R_390_PLTOFF32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
177 bfd_elf_generic_reloc
, "R_390_PLTOFF32", FALSE
, 0,0xffffffff, FALSE
),
178 EMPTY_HOWTO (R_390_PLTOFF64
), /* Empty entry for R_390_PLTOFF64. */
179 HOWTO(R_390_TLS_LOAD
, 0, 0, 0, FALSE
, 0, complain_overflow_dont
,
180 s390_tls_reloc
, "R_390_TLS_LOAD", FALSE
, 0, 0, FALSE
),
181 HOWTO(R_390_TLS_GDCALL
, 0, 0, 0, FALSE
, 0, complain_overflow_dont
,
182 s390_tls_reloc
, "R_390_TLS_GDCALL", FALSE
, 0, 0, FALSE
),
183 HOWTO(R_390_TLS_LDCALL
, 0, 0, 0, FALSE
, 0, complain_overflow_dont
,
184 s390_tls_reloc
, "R_390_TLS_LDCALL", FALSE
, 0, 0, FALSE
),
185 HOWTO(R_390_TLS_GD32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
186 bfd_elf_generic_reloc
, "R_390_TLS_GD32", FALSE
, 0, 0xffffffff, FALSE
),
187 EMPTY_HOWTO (R_390_TLS_GD64
), /* Empty entry for R_390_TLS_GD64. */
188 HOWTO(R_390_TLS_GOTIE12
, 0, 1, 12, FALSE
, 0, complain_overflow_dont
,
189 bfd_elf_generic_reloc
, "R_390_TLS_GOTIE12", FALSE
, 0, 0x00000fff, FALSE
),
190 HOWTO(R_390_TLS_GOTIE32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
191 bfd_elf_generic_reloc
, "R_390_TLS_GOTIE32", FALSE
, 0, 0xffffffff, FALSE
),
192 EMPTY_HOWTO (R_390_TLS_GOTIE64
), /* Empty entry for R_390_TLS_GOTIE64. */
193 HOWTO(R_390_TLS_LDM32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
194 bfd_elf_generic_reloc
, "R_390_TLS_LDM32", FALSE
, 0, 0xffffffff, FALSE
),
195 EMPTY_HOWTO (R_390_TLS_LDM64
), /* Empty entry for R_390_TLS_LDM64. */
196 HOWTO(R_390_TLS_IE32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
197 bfd_elf_generic_reloc
, "R_390_TLS_IE32", FALSE
, 0, 0xffffffff, FALSE
),
198 EMPTY_HOWTO (R_390_TLS_IE64
), /* Empty entry for R_390_TLS_IE64. */
199 HOWTO(R_390_TLS_IEENT
, 1, 2, 32, TRUE
, 0, complain_overflow_bitfield
,
200 bfd_elf_generic_reloc
, "R_390_TLS_IEENT", FALSE
, 0, 0xffffffff, TRUE
),
201 HOWTO(R_390_TLS_LE32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
202 bfd_elf_generic_reloc
, "R_390_TLS_LE32", FALSE
, 0, 0xffffffff, FALSE
),
203 EMPTY_HOWTO (R_390_TLS_LE64
), /* Empty entry for R_390_TLS_LE64. */
204 HOWTO(R_390_TLS_LDO32
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
205 bfd_elf_generic_reloc
, "R_390_TLS_LDO32", FALSE
, 0, 0xffffffff, FALSE
),
206 EMPTY_HOWTO (R_390_TLS_LDO64
), /* Empty entry for R_390_TLS_LDO64. */
207 HOWTO(R_390_TLS_DTPMOD
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
208 bfd_elf_generic_reloc
, "R_390_TLS_DTPMOD", FALSE
, 0, 0xffffffff, FALSE
),
209 HOWTO(R_390_TLS_DTPOFF
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
210 bfd_elf_generic_reloc
, "R_390_TLS_DTPOFF", FALSE
, 0, 0xffffffff, FALSE
),
211 HOWTO(R_390_TLS_TPOFF
, 0, 2, 32, FALSE
, 0, complain_overflow_bitfield
,
212 bfd_elf_generic_reloc
, "R_390_TLS_TPOFF", FALSE
, 0, 0xffffffff, FALSE
),
213 HOWTO(R_390_20
, 0, 2, 20, FALSE
, 8, complain_overflow_dont
,
214 s390_elf_ldisp_reloc
, "R_390_20", FALSE
, 0,0x0fffff00, FALSE
),
215 HOWTO(R_390_GOT20
, 0, 2, 20, FALSE
, 8, complain_overflow_dont
,
216 s390_elf_ldisp_reloc
, "R_390_GOT20", FALSE
, 0,0x0fffff00, FALSE
),
217 HOWTO(R_390_GOTPLT20
, 0, 2, 20, FALSE
, 8, complain_overflow_dont
,
218 s390_elf_ldisp_reloc
, "R_390_GOTPLT20", FALSE
, 0,0x0fffff00, FALSE
),
219 HOWTO(R_390_TLS_GOTIE20
, 0, 2, 20, FALSE
, 8, complain_overflow_dont
,
220 s390_elf_ldisp_reloc
, "R_390_TLS_GOTIE20", FALSE
, 0,0x0fffff00, FALSE
),
223 /* GNU extension to record C++ vtable hierarchy. */
224 static reloc_howto_type elf32_s390_vtinherit_howto
=
225 HOWTO (R_390_GNU_VTINHERIT
, 0,2,0,FALSE
,0,complain_overflow_dont
, NULL
, "R_390_GNU_VTINHERIT", FALSE
,0, 0, FALSE
);
226 static reloc_howto_type elf32_s390_vtentry_howto
=
227 HOWTO (R_390_GNU_VTENTRY
, 0,2,0,FALSE
,0,complain_overflow_dont
, _bfd_elf_rel_vtable_reloc_fn
,"R_390_GNU_VTENTRY", FALSE
,0,0, FALSE
);
229 static reloc_howto_type
*
230 elf_s390_reloc_type_lookup (abfd
, code
)
231 bfd
*abfd ATTRIBUTE_UNUSED
;
232 bfd_reloc_code_real_type code
;
237 return &elf_howto_table
[(int) R_390_NONE
];
239 return &elf_howto_table
[(int) R_390_8
];
240 case BFD_RELOC_390_12
:
241 return &elf_howto_table
[(int) R_390_12
];
243 return &elf_howto_table
[(int) R_390_16
];
245 return &elf_howto_table
[(int) R_390_32
];
247 return &elf_howto_table
[(int) R_390_32
];
248 case BFD_RELOC_32_PCREL
:
249 return &elf_howto_table
[(int) R_390_PC32
];
250 case BFD_RELOC_390_GOT12
:
251 return &elf_howto_table
[(int) R_390_GOT12
];
252 case BFD_RELOC_32_GOT_PCREL
:
253 return &elf_howto_table
[(int) R_390_GOT32
];
254 case BFD_RELOC_390_PLT32
:
255 return &elf_howto_table
[(int) R_390_PLT32
];
256 case BFD_RELOC_390_COPY
:
257 return &elf_howto_table
[(int) R_390_COPY
];
258 case BFD_RELOC_390_GLOB_DAT
:
259 return &elf_howto_table
[(int) R_390_GLOB_DAT
];
260 case BFD_RELOC_390_JMP_SLOT
:
261 return &elf_howto_table
[(int) R_390_JMP_SLOT
];
262 case BFD_RELOC_390_RELATIVE
:
263 return &elf_howto_table
[(int) R_390_RELATIVE
];
264 case BFD_RELOC_32_GOTOFF
:
265 return &elf_howto_table
[(int) R_390_GOTOFF32
];
266 case BFD_RELOC_390_GOTPC
:
267 return &elf_howto_table
[(int) R_390_GOTPC
];
268 case BFD_RELOC_390_GOT16
:
269 return &elf_howto_table
[(int) R_390_GOT16
];
270 case BFD_RELOC_16_PCREL
:
271 return &elf_howto_table
[(int) R_390_PC16
];
272 case BFD_RELOC_390_PC16DBL
:
273 return &elf_howto_table
[(int) R_390_PC16DBL
];
274 case BFD_RELOC_390_PLT16DBL
:
275 return &elf_howto_table
[(int) R_390_PLT16DBL
];
276 case BFD_RELOC_390_PC32DBL
:
277 return &elf_howto_table
[(int) R_390_PC32DBL
];
278 case BFD_RELOC_390_PLT32DBL
:
279 return &elf_howto_table
[(int) R_390_PLT32DBL
];
280 case BFD_RELOC_390_GOTPCDBL
:
281 return &elf_howto_table
[(int) R_390_GOTPCDBL
];
282 case BFD_RELOC_390_GOTENT
:
283 return &elf_howto_table
[(int) R_390_GOTENT
];
284 case BFD_RELOC_16_GOTOFF
:
285 return &elf_howto_table
[(int) R_390_GOTOFF16
];
286 case BFD_RELOC_390_GOTPLT12
:
287 return &elf_howto_table
[(int) R_390_GOTPLT12
];
288 case BFD_RELOC_390_GOTPLT16
:
289 return &elf_howto_table
[(int) R_390_GOTPLT16
];
290 case BFD_RELOC_390_GOTPLT32
:
291 return &elf_howto_table
[(int) R_390_GOTPLT32
];
292 case BFD_RELOC_390_GOTPLTENT
:
293 return &elf_howto_table
[(int) R_390_GOTPLTENT
];
294 case BFD_RELOC_390_PLTOFF16
:
295 return &elf_howto_table
[(int) R_390_PLTOFF16
];
296 case BFD_RELOC_390_PLTOFF32
:
297 return &elf_howto_table
[(int) R_390_PLTOFF32
];
298 case BFD_RELOC_390_TLS_LOAD
:
299 return &elf_howto_table
[(int) R_390_TLS_LOAD
];
300 case BFD_RELOC_390_TLS_GDCALL
:
301 return &elf_howto_table
[(int) R_390_TLS_GDCALL
];
302 case BFD_RELOC_390_TLS_LDCALL
:
303 return &elf_howto_table
[(int) R_390_TLS_LDCALL
];
304 case BFD_RELOC_390_TLS_GD32
:
305 return &elf_howto_table
[(int) R_390_TLS_GD32
];
306 case BFD_RELOC_390_TLS_GOTIE12
:
307 return &elf_howto_table
[(int) R_390_TLS_GOTIE12
];
308 case BFD_RELOC_390_TLS_GOTIE32
:
309 return &elf_howto_table
[(int) R_390_TLS_GOTIE32
];
310 case BFD_RELOC_390_TLS_LDM32
:
311 return &elf_howto_table
[(int) R_390_TLS_LDM32
];
312 case BFD_RELOC_390_TLS_IE32
:
313 return &elf_howto_table
[(int) R_390_TLS_IE32
];
314 case BFD_RELOC_390_TLS_IEENT
:
315 return &elf_howto_table
[(int) R_390_TLS_IEENT
];
316 case BFD_RELOC_390_TLS_LE32
:
317 return &elf_howto_table
[(int) R_390_TLS_LE32
];
318 case BFD_RELOC_390_TLS_LDO32
:
319 return &elf_howto_table
[(int) R_390_TLS_LDO32
];
320 case BFD_RELOC_390_TLS_DTPMOD
:
321 return &elf_howto_table
[(int) R_390_TLS_DTPMOD
];
322 case BFD_RELOC_390_TLS_DTPOFF
:
323 return &elf_howto_table
[(int) R_390_TLS_DTPOFF
];
324 case BFD_RELOC_390_TLS_TPOFF
:
325 return &elf_howto_table
[(int) R_390_TLS_TPOFF
];
326 case BFD_RELOC_390_20
:
327 return &elf_howto_table
[(int) R_390_20
];
328 case BFD_RELOC_390_GOT20
:
329 return &elf_howto_table
[(int) R_390_GOT20
];
330 case BFD_RELOC_390_GOTPLT20
:
331 return &elf_howto_table
[(int) R_390_GOTPLT20
];
332 case BFD_RELOC_390_TLS_GOTIE20
:
333 return &elf_howto_table
[(int) R_390_TLS_GOTIE20
];
334 case BFD_RELOC_VTABLE_INHERIT
:
335 return &elf32_s390_vtinherit_howto
;
336 case BFD_RELOC_VTABLE_ENTRY
:
337 return &elf32_s390_vtentry_howto
;
344 /* We need to use ELF32_R_TYPE so we have our own copy of this function,
345 and elf32-s390.c has its own copy. */
348 elf_s390_info_to_howto (abfd
, cache_ptr
, dst
)
349 bfd
*abfd ATTRIBUTE_UNUSED
;
351 Elf_Internal_Rela
*dst
;
353 switch (ELF32_R_TYPE(dst
->r_info
))
355 case R_390_GNU_VTINHERIT
:
356 cache_ptr
->howto
= &elf32_s390_vtinherit_howto
;
359 case R_390_GNU_VTENTRY
:
360 cache_ptr
->howto
= &elf32_s390_vtentry_howto
;
364 BFD_ASSERT (ELF32_R_TYPE(dst
->r_info
) < (unsigned int) R_390_max
);
365 cache_ptr
->howto
= &elf_howto_table
[ELF32_R_TYPE(dst
->r_info
)];
369 /* A relocation function which doesn't do anything. */
370 static bfd_reloc_status_type
371 s390_tls_reloc (abfd
, reloc_entry
, symbol
, data
, input_section
,
372 output_bfd
, error_message
)
373 bfd
*abfd ATTRIBUTE_UNUSED
;
374 arelent
*reloc_entry
;
375 asymbol
*symbol ATTRIBUTE_UNUSED
;
376 PTR data ATTRIBUTE_UNUSED
;
377 asection
*input_section
;
379 char **error_message ATTRIBUTE_UNUSED
;
382 reloc_entry
->address
+= input_section
->output_offset
;
386 /* Handle the large displacement relocs. */
387 static bfd_reloc_status_type
388 s390_elf_ldisp_reloc (abfd
, reloc_entry
, symbol
, data
, input_section
,
389 output_bfd
, error_message
)
390 bfd
*abfd ATTRIBUTE_UNUSED
;
391 arelent
*reloc_entry
;
393 PTR data ATTRIBUTE_UNUSED
;
394 asection
*input_section
;
396 char **error_message ATTRIBUTE_UNUSED
;
398 reloc_howto_type
*howto
= reloc_entry
->howto
;
402 if (output_bfd
!= (bfd
*) NULL
403 && (symbol
->flags
& BSF_SECTION_SYM
) == 0
404 && (! howto
->partial_inplace
405 || reloc_entry
->addend
== 0))
407 reloc_entry
->address
+= input_section
->output_offset
;
411 if (output_bfd
!= NULL
)
412 return bfd_reloc_continue
;
414 if (reloc_entry
->address
> bfd_get_section_limit (abfd
, input_section
))
415 return bfd_reloc_outofrange
;
417 relocation
= (symbol
->value
418 + symbol
->section
->output_section
->vma
419 + symbol
->section
->output_offset
);
420 relocation
+= reloc_entry
->addend
;
421 if (howto
->pc_relative
)
423 relocation
-= (input_section
->output_section
->vma
424 + input_section
->output_offset
);
425 relocation
-= reloc_entry
->address
;
428 insn
= bfd_get_32 (abfd
, (bfd_byte
*) data
+ reloc_entry
->address
);
429 insn
|= (relocation
& 0xfff) << 16 | (relocation
& 0xff000) >> 4;
430 bfd_put_32 (abfd
, insn
, (bfd_byte
*) data
+ reloc_entry
->address
);
432 if ((bfd_signed_vma
) relocation
< - 0x80000
433 || (bfd_signed_vma
) relocation
> 0x7ffff)
434 return bfd_reloc_overflow
;
440 elf_s390_is_local_label_name (abfd
, name
)
444 if (name
[0] == '.' && (name
[1] == 'X' || name
[1] == 'L'))
447 return _bfd_elf_is_local_label_name (abfd
, name
);
450 /* Functions for the 390 ELF linker. */
452 /* The name of the dynamic interpreter. This is put in the .interp
455 #define ELF_DYNAMIC_INTERPRETER "/usr/lib/ld.so.1"
457 /* If ELIMINATE_COPY_RELOCS is non-zero, the linker will try to avoid
458 copying dynamic variables from a shared lib into an app's dynbss
459 section, and instead use a dynamic relocation to point into the
461 #define ELIMINATE_COPY_RELOCS 1
463 /* The size in bytes of the first entry in the procedure linkage table. */
464 #define PLT_FIRST_ENTRY_SIZE 32
465 /* The size in bytes of an entry in the procedure linkage table. */
466 #define PLT_ENTRY_SIZE 32
468 #define GOT_ENTRY_SIZE 4
470 /* The first three entries in a procedure linkage table are reserved,
471 and the initial contents are unimportant (we zero them out).
472 Subsequent entries look like this. See the SVR4 ABI 386
473 supplement to see how this works. */
475 /* For the s390, simple addr offset can only be 0 - 4096.
476 To use the full 2 GB address space, several instructions
477 are needed to load an address in a register and execute
478 a branch( or just saving the address)
480 Furthermore, only r 0 and 1 are free to use!!! */
482 /* The first 3 words in the GOT are then reserved.
483 Word 0 is the address of the dynamic table.
484 Word 1 is a pointer to a structure describing the object
485 Word 2 is used to point to the loader entry address.
487 The code for position independent PLT entries looks like this:
489 r12 holds addr of the current GOT at entry to the PLT
491 The GOT holds the address in the PLT to be executed.
492 The loader then gets:
493 24(15) = Pointer to the structure describing the object.
494 28(15) = Offset in symbol table
496 The loader must then find the module where the function is
497 and insert the address in the GOT.
499 Note: 390 can only address +- 64 K relative.
500 We check if offset > 65536, then make a relative branch -64xxx
501 back to a previous defined branch
503 PLT1: BASR 1,0 # 2 bytes
504 L 1,22(1) # 4 bytes Load offset in GOT in r 1
505 L 1,(1,12) # 4 bytes Load address from GOT in r1
506 BCR 15,1 # 2 bytes Jump to address
507 RET1: BASR 1,0 # 2 bytes Return from GOT 1st time
508 L 1,14(1) # 4 bytes Load offset in symol table in r1
509 BRC 15,-x # 4 bytes Jump to start of PLT
510 .word 0 # 2 bytes filler
511 .long ? # 4 bytes offset in GOT
512 .long ? # 4 bytes offset into symbol table
514 This was the general case. There are two additional, optimizes PLT
515 definitions. One for GOT offsets < 4096 and one for GOT offsets < 32768.
516 First the one for GOT offsets < 4096:
518 PLT1: L 1,<offset>(12) # 4 bytes Load address from GOT in R1
519 BCR 15,1 # 2 bytes Jump to address
520 .word 0,0,0 # 6 bytes filler
521 RET1: BASR 1,0 # 2 bytes Return from GOT 1st time
522 L 1,14(1) # 4 bytes Load offset in symbol table in r1
523 BRC 15,-x # 4 bytes Jump to start of PLT
524 .word 0,0,0 # 6 bytes filler
525 .long ? # 4 bytes offset into symbol table
527 Second the one for GOT offsets < 32768:
529 PLT1: LHI 1,<offset> # 4 bytes Load offset in GOT to r1
530 L 1,(1,12) # 4 bytes Load address from GOT to r1
531 BCR 15,1 # 2 bytes Jump to address
532 .word 0 # 2 bytes filler
533 RET1: BASR 1,0 # 2 bytes Return from GOT 1st time
534 L 1,14(1) # 4 bytes Load offset in symbol table in r1
535 BRC 15,-x # 4 bytes Jump to start of PLT
536 .word 0,0,0 # 6 bytes filler
537 .long ? # 4 bytes offset into symbol table
539 Total = 32 bytes per PLT entry
541 The code for static build PLT entries looks like this:
543 PLT1: BASR 1,0 # 2 bytes
544 L 1,22(1) # 4 bytes Load address of GOT entry
545 L 1,0(0,1) # 4 bytes Load address from GOT in r1
546 BCR 15,1 # 2 bytes Jump to address
547 RET1: BASR 1,0 # 2 bytes Return from GOT 1st time
548 L 1,14(1) # 4 bytes Load offset in symbol table in r1
549 BRC 15,-x # 4 bytes Jump to start of PLT
550 .word 0 # 2 bytes filler
551 .long ? # 4 bytes address of GOT entry
552 .long ? # 4 bytes offset into symbol table */
554 #define PLT_PIC_ENTRY_WORD0 0x0d105810
555 #define PLT_PIC_ENTRY_WORD1 0x10165811
556 #define PLT_PIC_ENTRY_WORD2 0xc00007f1
557 #define PLT_PIC_ENTRY_WORD3 0x0d105810
558 #define PLT_PIC_ENTRY_WORD4 0x100ea7f4
560 #define PLT_PIC12_ENTRY_WORD0 0x5810c000
561 #define PLT_PIC12_ENTRY_WORD1 0x07f10000
562 #define PLT_PIC12_ENTRY_WORD2 0x00000000
563 #define PLT_PIC12_ENTRY_WORD3 0x0d105810
564 #define PLT_PIC12_ENTRY_WORD4 0x100ea7f4
566 #define PLT_PIC16_ENTRY_WORD0 0xa7180000
567 #define PLT_PIC16_ENTRY_WORD1 0x5811c000
568 #define PLT_PIC16_ENTRY_WORD2 0x07f10000
569 #define PLT_PIC16_ENTRY_WORD3 0x0d105810
570 #define PLT_PIC16_ENTRY_WORD4 0x100ea7f4
572 #define PLT_ENTRY_WORD0 0x0d105810
573 #define PLT_ENTRY_WORD1 0x10165810
574 #define PLT_ENTRY_WORD2 0x100007f1
575 #define PLT_ENTRY_WORD3 0x0d105810
576 #define PLT_ENTRY_WORD4 0x100ea7f4
578 /* The first PLT entry pushes the offset into the symbol table
579 from R1 onto the stack at 8(15) and the loader object info
580 at 12(15), loads the loader address in R1 and jumps to it. */
582 /* The first entry in the PLT for PIC code:
585 ST 1,28(15) # R1 has offset into symbol table
586 L 1,4(12) # Get loader ino(object struct address)
587 ST 1,24(15) # Store address
588 L 1,8(12) # Entry address of loader in R1
589 BR 1 # Jump to loader
591 The first entry in the PLT for static code:
594 ST 1,28(15) # R1 has offset into symbol table
596 L 1,18(0,1) # Get address of GOT
597 MVC 24(4,15),4(1) # Move loader ino to stack
598 L 1,8(1) # Get address of loader
599 BR 1 # Jump to loader
601 .long got # address of GOT */
603 #define PLT_PIC_FIRST_ENTRY_WORD0 0x5010f01c
604 #define PLT_PIC_FIRST_ENTRY_WORD1 0x5810c004
605 #define PLT_PIC_FIRST_ENTRY_WORD2 0x5010f018
606 #define PLT_PIC_FIRST_ENTRY_WORD3 0x5810c008
607 #define PLT_PIC_FIRST_ENTRY_WORD4 0x07f10000
609 #define PLT_FIRST_ENTRY_WORD0 0x5010f01c
610 #define PLT_FIRST_ENTRY_WORD1 0x0d105810
611 #define PLT_FIRST_ENTRY_WORD2 0x1012D203
612 #define PLT_FIRST_ENTRY_WORD3 0xf0181004
613 #define PLT_FIRST_ENTRY_WORD4 0x58101008
614 #define PLT_FIRST_ENTRY_WORD5 0x07f10000
616 /* The s390 linker needs to keep track of the number of relocs that it
617 decides to copy as dynamic relocs in check_relocs for each symbol.
618 This is so that it can later discard them if they are found to be
619 unnecessary. We store the information in a field extending the
620 regular ELF linker hash table. */
622 struct elf_s390_dyn_relocs
624 struct elf_s390_dyn_relocs
*next
;
626 /* The input section of the reloc. */
629 /* Total number of relocs copied for the input section. */
632 /* Number of pc-relative relocs copied for the input section. */
633 bfd_size_type pc_count
;
636 /* s390 ELF linker hash entry. */
638 struct elf_s390_link_hash_entry
640 struct elf_link_hash_entry elf
;
642 /* Track dynamic relocs copied for this symbol. */
643 struct elf_s390_dyn_relocs
*dyn_relocs
;
645 /* Number of GOTPLT references for a function. */
646 bfd_signed_vma gotplt_refcount
;
648 #define GOT_UNKNOWN 0
652 #define GOT_TLS_IE_NLT 4
653 unsigned char tls_type
;
656 #define elf_s390_hash_entry(ent) \
657 ((struct elf_s390_link_hash_entry *)(ent))
659 struct elf_s390_obj_tdata
661 struct elf_obj_tdata root
;
663 /* tls_type for each local got entry. */
664 char *local_got_tls_type
;
667 #define elf_s390_tdata(abfd) \
668 ((struct elf_s390_obj_tdata *) (abfd)->tdata.any)
670 #define elf_s390_local_got_tls_type(abfd) \
671 (elf_s390_tdata (abfd)->local_got_tls_type)
674 elf_s390_mkobject (abfd
)
677 bfd_size_type amt
= sizeof (struct elf_s390_obj_tdata
);
678 abfd
->tdata
.any
= bfd_zalloc (abfd
, amt
);
679 if (abfd
->tdata
.any
== NULL
)
685 elf_s390_object_p (abfd
)
688 /* Set the right machine number for an s390 elf32 file. */
689 return bfd_default_set_arch_mach (abfd
, bfd_arch_s390
, bfd_mach_s390_31
);
692 /* s390 ELF linker hash table. */
694 struct elf_s390_link_hash_table
696 struct elf_link_hash_table elf
;
698 /* Short-cuts to get to dynamic linker sections. */
708 bfd_signed_vma refcount
;
712 /* Small local sym to section mapping cache. */
713 struct sym_sec_cache sym_sec
;
716 /* Get the s390 ELF linker hash table from a link_info structure. */
718 #define elf_s390_hash_table(p) \
719 ((struct elf_s390_link_hash_table *) ((p)->hash))
721 /* Create an entry in an s390 ELF linker hash table. */
723 static struct bfd_hash_entry
*
724 link_hash_newfunc (entry
, table
, string
)
725 struct bfd_hash_entry
*entry
;
726 struct bfd_hash_table
*table
;
729 /* Allocate the structure if it has not already been allocated by a
733 entry
= bfd_hash_allocate (table
,
734 sizeof (struct elf_s390_link_hash_entry
));
739 /* Call the allocation method of the superclass. */
740 entry
= _bfd_elf_link_hash_newfunc (entry
, table
, string
);
743 struct elf_s390_link_hash_entry
*eh
;
745 eh
= (struct elf_s390_link_hash_entry
*) entry
;
746 eh
->dyn_relocs
= NULL
;
747 eh
->gotplt_refcount
= 0;
748 eh
->tls_type
= GOT_UNKNOWN
;
754 /* Create an s390 ELF linker hash table. */
756 static struct bfd_link_hash_table
*
757 elf_s390_link_hash_table_create (abfd
)
760 struct elf_s390_link_hash_table
*ret
;
761 bfd_size_type amt
= sizeof (struct elf_s390_link_hash_table
);
763 ret
= (struct elf_s390_link_hash_table
*) bfd_malloc (amt
);
767 if (! _bfd_elf_link_hash_table_init (&ret
->elf
, abfd
, link_hash_newfunc
))
780 ret
->tls_ldm_got
.refcount
= 0;
781 ret
->sym_sec
.abfd
= NULL
;
783 return &ret
->elf
.root
;
786 /* Create .got, .gotplt, and .rela.got sections in DYNOBJ, and set up
787 shortcuts to them in our hash table. */
790 create_got_section (dynobj
, info
)
792 struct bfd_link_info
*info
;
794 struct elf_s390_link_hash_table
*htab
;
796 if (! _bfd_elf_create_got_section (dynobj
, info
))
799 htab
= elf_s390_hash_table (info
);
800 htab
->sgot
= bfd_get_section_by_name (dynobj
, ".got");
801 htab
->sgotplt
= bfd_get_section_by_name (dynobj
, ".got.plt");
802 if (!htab
->sgot
|| !htab
->sgotplt
)
805 htab
->srelgot
= bfd_make_section (dynobj
, ".rela.got");
806 if (htab
->srelgot
== NULL
807 || ! bfd_set_section_flags (dynobj
, htab
->srelgot
,
808 (SEC_ALLOC
| SEC_LOAD
| SEC_HAS_CONTENTS
809 | SEC_IN_MEMORY
| SEC_LINKER_CREATED
811 || ! bfd_set_section_alignment (dynobj
, htab
->srelgot
, 2))
816 /* Create .plt, .rela.plt, .got, .got.plt, .rela.got, .dynbss, and
817 .rela.bss sections in DYNOBJ, and set up shortcuts to them in our
821 elf_s390_create_dynamic_sections (dynobj
, info
)
823 struct bfd_link_info
*info
;
825 struct elf_s390_link_hash_table
*htab
;
827 htab
= elf_s390_hash_table (info
);
828 if (!htab
->sgot
&& !create_got_section (dynobj
, info
))
831 if (!_bfd_elf_create_dynamic_sections (dynobj
, info
))
834 htab
->splt
= bfd_get_section_by_name (dynobj
, ".plt");
835 htab
->srelplt
= bfd_get_section_by_name (dynobj
, ".rela.plt");
836 htab
->sdynbss
= bfd_get_section_by_name (dynobj
, ".dynbss");
838 htab
->srelbss
= bfd_get_section_by_name (dynobj
, ".rela.bss");
840 if (!htab
->splt
|| !htab
->srelplt
|| !htab
->sdynbss
841 || (!info
->shared
&& !htab
->srelbss
))
847 /* Copy the extra info we tack onto an elf_link_hash_entry. */
850 elf_s390_copy_indirect_symbol (bed
, dir
, ind
)
851 const struct elf_backend_data
*bed
;
852 struct elf_link_hash_entry
*dir
, *ind
;
854 struct elf_s390_link_hash_entry
*edir
, *eind
;
856 edir
= (struct elf_s390_link_hash_entry
*) dir
;
857 eind
= (struct elf_s390_link_hash_entry
*) ind
;
859 if (eind
->dyn_relocs
!= NULL
)
861 if (edir
->dyn_relocs
!= NULL
)
863 struct elf_s390_dyn_relocs
**pp
;
864 struct elf_s390_dyn_relocs
*p
;
866 if (ind
->root
.type
== bfd_link_hash_indirect
)
869 /* Add reloc counts against the weak sym to the strong sym
870 list. Merge any entries against the same section. */
871 for (pp
= &eind
->dyn_relocs
; (p
= *pp
) != NULL
; )
873 struct elf_s390_dyn_relocs
*q
;
875 for (q
= edir
->dyn_relocs
; q
!= NULL
; q
= q
->next
)
876 if (q
->sec
== p
->sec
)
878 q
->pc_count
+= p
->pc_count
;
879 q
->count
+= p
->count
;
886 *pp
= edir
->dyn_relocs
;
889 edir
->dyn_relocs
= eind
->dyn_relocs
;
890 eind
->dyn_relocs
= NULL
;
893 if (ind
->root
.type
== bfd_link_hash_indirect
894 && dir
->got
.refcount
<= 0)
896 edir
->tls_type
= eind
->tls_type
;
897 eind
->tls_type
= GOT_UNKNOWN
;
900 if (ELIMINATE_COPY_RELOCS
901 && ind
->root
.type
!= bfd_link_hash_indirect
902 && dir
->dynamic_adjusted
)
904 /* If called to transfer flags for a weakdef during processing
905 of elf_adjust_dynamic_symbol, don't copy non_got_ref.
906 We clear it ourselves for ELIMINATE_COPY_RELOCS. */
907 dir
->ref_dynamic
|= ind
->ref_dynamic
;
908 dir
->ref_regular
|= ind
->ref_regular
;
909 dir
->ref_regular_nonweak
|= ind
->ref_regular_nonweak
;
910 dir
->needs_plt
|= ind
->needs_plt
;
913 _bfd_elf_link_hash_copy_indirect (bed
, dir
, ind
);
917 elf_s390_tls_transition (info
, r_type
, is_local
)
918 struct bfd_link_info
*info
;
930 return R_390_TLS_LE32
;
931 return R_390_TLS_IE32
;
932 case R_390_TLS_GOTIE32
:
934 return R_390_TLS_LE32
;
935 return R_390_TLS_GOTIE32
;
936 case R_390_TLS_LDM32
:
937 return R_390_TLS_LE32
;
943 /* Look through the relocs for a section during the first phase, and
944 allocate space in the global offset table or procedure linkage
948 elf_s390_check_relocs (abfd
, info
, sec
, relocs
)
950 struct bfd_link_info
*info
;
952 const Elf_Internal_Rela
*relocs
;
954 struct elf_s390_link_hash_table
*htab
;
955 Elf_Internal_Shdr
*symtab_hdr
;
956 struct elf_link_hash_entry
**sym_hashes
;
957 const Elf_Internal_Rela
*rel
;
958 const Elf_Internal_Rela
*rel_end
;
960 bfd_signed_vma
*local_got_refcounts
;
961 int tls_type
, old_tls_type
;
963 if (info
->relocatable
)
966 htab
= elf_s390_hash_table (info
);
967 symtab_hdr
= &elf_tdata (abfd
)->symtab_hdr
;
968 sym_hashes
= elf_sym_hashes (abfd
);
969 local_got_refcounts
= elf_local_got_refcounts (abfd
);
973 rel_end
= relocs
+ sec
->reloc_count
;
974 for (rel
= relocs
; rel
< rel_end
; rel
++)
977 unsigned long r_symndx
;
978 struct elf_link_hash_entry
*h
;
980 r_symndx
= ELF32_R_SYM (rel
->r_info
);
982 if (r_symndx
>= NUM_SHDR_ENTRIES (symtab_hdr
))
984 (*_bfd_error_handler
) (_("%B: bad symbol index: %d"),
989 if (r_symndx
< symtab_hdr
->sh_info
)
992 h
= sym_hashes
[r_symndx
- symtab_hdr
->sh_info
];
994 /* Create got section and local_got_refcounts array if they
996 r_type
= elf_s390_tls_transition (info
,
997 ELF32_R_TYPE (rel
->r_info
),
1006 case R_390_GOTPLT12
:
1007 case R_390_GOTPLT16
:
1008 case R_390_GOTPLT20
:
1009 case R_390_GOTPLT32
:
1010 case R_390_GOTPLTENT
:
1011 case R_390_TLS_GD32
:
1012 case R_390_TLS_GOTIE12
:
1013 case R_390_TLS_GOTIE20
:
1014 case R_390_TLS_GOTIE32
:
1015 case R_390_TLS_IEENT
:
1016 case R_390_TLS_IE32
:
1017 case R_390_TLS_LDM32
:
1019 && local_got_refcounts
== NULL
)
1023 size
= symtab_hdr
->sh_info
;
1024 size
*= (sizeof (bfd_signed_vma
) + sizeof(char));
1025 local_got_refcounts
= ((bfd_signed_vma
*)
1026 bfd_zalloc (abfd
, size
));
1027 if (local_got_refcounts
== NULL
)
1029 elf_local_got_refcounts (abfd
) = local_got_refcounts
;
1030 elf_s390_local_got_tls_type (abfd
)
1031 = (char *) (local_got_refcounts
+ symtab_hdr
->sh_info
);
1034 case R_390_GOTOFF16
:
1035 case R_390_GOTOFF32
:
1037 case R_390_GOTPCDBL
:
1038 if (htab
->sgot
== NULL
)
1040 if (htab
->elf
.dynobj
== NULL
)
1041 htab
->elf
.dynobj
= abfd
;
1042 if (!create_got_section (htab
->elf
.dynobj
, info
))
1049 case R_390_GOTOFF16
:
1050 case R_390_GOTOFF32
:
1052 case R_390_GOTPCDBL
:
1053 /* Got is created, nothing to be done. */
1056 case R_390_PLT16DBL
:
1057 case R_390_PLT32DBL
:
1059 case R_390_PLTOFF16
:
1060 case R_390_PLTOFF32
:
1061 /* This symbol requires a procedure linkage table entry. We
1062 actually build the entry in adjust_dynamic_symbol,
1063 because this might be a case of linking PIC code which is
1064 never referenced by a dynamic object, in which case we
1065 don't need to generate a procedure linkage table entry
1068 /* If this is a local symbol, we resolve it directly without
1069 creating a procedure linkage table entry. */
1073 h
->plt
.refcount
+= 1;
1077 case R_390_GOTPLT12
:
1078 case R_390_GOTPLT16
:
1079 case R_390_GOTPLT20
:
1080 case R_390_GOTPLT32
:
1081 case R_390_GOTPLTENT
:
1082 /* This symbol requires either a procedure linkage table entry
1083 or an entry in the local got. We actually build the entry
1084 in adjust_dynamic_symbol because whether this is really a
1085 global reference can change and with it the fact if we have
1086 to create a plt entry or a local got entry. To be able to
1087 make a once global symbol a local one we have to keep track
1088 of the number of gotplt references that exist for this
1092 ((struct elf_s390_link_hash_entry
*) h
)->gotplt_refcount
++;
1094 h
->plt
.refcount
+= 1;
1097 local_got_refcounts
[r_symndx
] += 1;
1100 case R_390_TLS_LDM32
:
1101 htab
->tls_ldm_got
.refcount
+= 1;
1104 case R_390_TLS_IE32
:
1105 case R_390_TLS_GOTIE12
:
1106 case R_390_TLS_GOTIE20
:
1107 case R_390_TLS_GOTIE32
:
1108 case R_390_TLS_IEENT
:
1110 info
->flags
|= DF_STATIC_TLS
;
1118 case R_390_TLS_GD32
:
1119 /* This symbol requires a global offset table entry. */
1128 tls_type
= GOT_NORMAL
;
1130 case R_390_TLS_GD32
:
1131 tls_type
= GOT_TLS_GD
;
1133 case R_390_TLS_IE32
:
1134 case R_390_TLS_GOTIE32
:
1135 tls_type
= GOT_TLS_IE
;
1137 case R_390_TLS_GOTIE12
:
1138 case R_390_TLS_GOTIE20
:
1139 case R_390_TLS_IEENT
:
1140 tls_type
= GOT_TLS_IE_NLT
;
1146 h
->got
.refcount
+= 1;
1147 old_tls_type
= elf_s390_hash_entry(h
)->tls_type
;
1151 local_got_refcounts
[r_symndx
] += 1;
1152 old_tls_type
= elf_s390_local_got_tls_type (abfd
) [r_symndx
];
1154 /* If a TLS symbol is accessed using IE at least once,
1155 there is no point to use dynamic model for it. */
1156 if (old_tls_type
!= tls_type
&& old_tls_type
!= GOT_UNKNOWN
)
1158 if (old_tls_type
== GOT_NORMAL
|| tls_type
== GOT_NORMAL
)
1160 (*_bfd_error_handler
)
1161 (_("%B: `%s' accessed both as normal and thread local symbol"),
1162 abfd
, h
->root
.root
.string
);
1165 if (old_tls_type
> tls_type
)
1166 tls_type
= old_tls_type
;
1169 if (old_tls_type
!= tls_type
)
1172 elf_s390_hash_entry (h
)->tls_type
= tls_type
;
1174 elf_s390_local_got_tls_type (abfd
) [r_symndx
] = tls_type
;
1177 if (r_type
!= R_390_TLS_IE32
)
1181 case R_390_TLS_LE32
:
1184 info
->flags
|= DF_STATIC_TLS
;
1194 if (h
!= NULL
&& !info
->shared
)
1196 /* If this reloc is in a read-only section, we might
1197 need a copy reloc. We can't check reliably at this
1198 stage whether the section is read-only, as input
1199 sections have not yet been mapped to output sections.
1200 Tentatively set the flag for now, and correct in
1201 adjust_dynamic_symbol. */
1204 /* We may need a .plt entry if the function this reloc
1205 refers to is in a shared lib. */
1206 h
->plt
.refcount
+= 1;
1209 /* If we are creating a shared library, and this is a reloc
1210 against a global symbol, or a non PC relative reloc
1211 against a local symbol, then we need to copy the reloc
1212 into the shared library. However, if we are linking with
1213 -Bsymbolic, we do not need to copy a reloc against a
1214 global symbol which is defined in an object we are
1215 including in the link (i.e., DEF_REGULAR is set). At
1216 this point we have not seen all the input files, so it is
1217 possible that DEF_REGULAR is not set now but will be set
1218 later (it is never cleared). In case of a weak definition,
1219 DEF_REGULAR may be cleared later by a strong definition in
1220 a shared library. We account for that possibility below by
1221 storing information in the relocs_copied field of the hash
1222 table entry. A similar situation occurs when creating
1223 shared libraries and symbol visibility changes render the
1226 If on the other hand, we are creating an executable, we
1227 may need to keep relocations for symbols satisfied by a
1228 dynamic library if we manage to avoid copy relocs for the
1231 && (sec
->flags
& SEC_ALLOC
) != 0
1232 && ((ELF32_R_TYPE (rel
->r_info
) != R_390_PC16
1233 && ELF32_R_TYPE (rel
->r_info
) != R_390_PC16DBL
1234 && ELF32_R_TYPE (rel
->r_info
) != R_390_PC32DBL
1235 && ELF32_R_TYPE (rel
->r_info
) != R_390_PC32
)
1237 && (! info
->symbolic
1238 || h
->root
.type
== bfd_link_hash_defweak
1239 || !h
->def_regular
))))
1240 || (ELIMINATE_COPY_RELOCS
1242 && (sec
->flags
& SEC_ALLOC
) != 0
1244 && (h
->root
.type
== bfd_link_hash_defweak
1245 || !h
->def_regular
)))
1247 struct elf_s390_dyn_relocs
*p
;
1248 struct elf_s390_dyn_relocs
**head
;
1250 /* We must copy these reloc types into the output file.
1251 Create a reloc section in dynobj and make room for
1258 name
= (bfd_elf_string_from_elf_section
1260 elf_elfheader (abfd
)->e_shstrndx
,
1261 elf_section_data (sec
)->rel_hdr
.sh_name
));
1265 if (strncmp (name
, ".rela", 5) != 0
1266 || strcmp (bfd_get_section_name (abfd
, sec
),
1269 (*_bfd_error_handler
)
1270 (_("%B: bad relocation section name `%s\'"),
1274 if (htab
->elf
.dynobj
== NULL
)
1275 htab
->elf
.dynobj
= abfd
;
1277 dynobj
= htab
->elf
.dynobj
;
1278 sreloc
= bfd_get_section_by_name (dynobj
, name
);
1283 sreloc
= bfd_make_section (dynobj
, name
);
1284 flags
= (SEC_HAS_CONTENTS
| SEC_READONLY
1285 | SEC_IN_MEMORY
| SEC_LINKER_CREATED
);
1286 if ((sec
->flags
& SEC_ALLOC
) != 0)
1287 flags
|= SEC_ALLOC
| SEC_LOAD
;
1289 || ! bfd_set_section_flags (dynobj
, sreloc
, flags
)
1290 || ! bfd_set_section_alignment (dynobj
, sreloc
, 2))
1293 elf_section_data (sec
)->sreloc
= sreloc
;
1296 /* If this is a global symbol, we count the number of
1297 relocations we need for this symbol. */
1300 head
= &((struct elf_s390_link_hash_entry
*) h
)->dyn_relocs
;
1304 /* Track dynamic relocs needed for local syms too.
1305 We really need local syms available to do this
1309 s
= bfd_section_from_r_symndx (abfd
, &htab
->sym_sec
,
1314 head
= ((struct elf_s390_dyn_relocs
**)
1315 &elf_section_data (s
)->local_dynrel
);
1319 if (p
== NULL
|| p
->sec
!= sec
)
1321 bfd_size_type amt
= sizeof *p
;
1323 p
= ((struct elf_s390_dyn_relocs
*)
1324 bfd_alloc (htab
->elf
.dynobj
, amt
));
1335 if (ELF32_R_TYPE (rel
->r_info
) == R_390_PC16
1336 || ELF32_R_TYPE (rel
->r_info
) == R_390_PC16DBL
1337 || ELF32_R_TYPE (rel
->r_info
) == R_390_PC32DBL
1338 || ELF32_R_TYPE (rel
->r_info
) == R_390_PC32
)
1343 /* This relocation describes the C++ object vtable hierarchy.
1344 Reconstruct it for later use during GC. */
1345 case R_390_GNU_VTINHERIT
:
1346 if (!bfd_elf_gc_record_vtinherit (abfd
, sec
, h
, rel
->r_offset
))
1350 /* This relocation describes which C++ vtable entries are actually
1351 used. Record for later use during GC. */
1352 case R_390_GNU_VTENTRY
:
1353 if (!bfd_elf_gc_record_vtentry (abfd
, sec
, h
, rel
->r_addend
))
1365 /* Return the section that should be marked against GC for a given
1369 elf_s390_gc_mark_hook (sec
, info
, rel
, h
, sym
)
1371 struct bfd_link_info
*info ATTRIBUTE_UNUSED
;
1372 Elf_Internal_Rela
*rel
;
1373 struct elf_link_hash_entry
*h
;
1374 Elf_Internal_Sym
*sym
;
1378 switch (ELF32_R_TYPE (rel
->r_info
))
1380 case R_390_GNU_VTINHERIT
:
1381 case R_390_GNU_VTENTRY
:
1385 switch (h
->root
.type
)
1387 case bfd_link_hash_defined
:
1388 case bfd_link_hash_defweak
:
1389 return h
->root
.u
.def
.section
;
1391 case bfd_link_hash_common
:
1392 return h
->root
.u
.c
.p
->section
;
1400 return bfd_section_from_elf_index (sec
->owner
, sym
->st_shndx
);
1405 /* Update the got entry reference counts for the section being removed. */
1408 elf_s390_gc_sweep_hook (abfd
, info
, sec
, relocs
)
1410 struct bfd_link_info
*info
;
1412 const Elf_Internal_Rela
*relocs
;
1414 Elf_Internal_Shdr
*symtab_hdr
;
1415 struct elf_link_hash_entry
**sym_hashes
;
1416 bfd_signed_vma
*local_got_refcounts
;
1417 const Elf_Internal_Rela
*rel
, *relend
;
1419 elf_section_data (sec
)->local_dynrel
= NULL
;
1421 symtab_hdr
= &elf_tdata (abfd
)->symtab_hdr
;
1422 sym_hashes
= elf_sym_hashes (abfd
);
1423 local_got_refcounts
= elf_local_got_refcounts (abfd
);
1425 relend
= relocs
+ sec
->reloc_count
;
1426 for (rel
= relocs
; rel
< relend
; rel
++)
1428 unsigned long r_symndx
;
1429 unsigned int r_type
;
1430 struct elf_link_hash_entry
*h
= NULL
;
1432 r_symndx
= ELF32_R_SYM (rel
->r_info
);
1433 if (r_symndx
>= symtab_hdr
->sh_info
)
1435 struct elf_s390_link_hash_entry
*eh
;
1436 struct elf_s390_dyn_relocs
**pp
;
1437 struct elf_s390_dyn_relocs
*p
;
1439 h
= sym_hashes
[r_symndx
- symtab_hdr
->sh_info
];
1440 eh
= (struct elf_s390_link_hash_entry
*) h
;
1442 for (pp
= &eh
->dyn_relocs
; (p
= *pp
) != NULL
; pp
= &p
->next
)
1445 /* Everything must go for SEC. */
1451 r_type
= ELF32_R_TYPE (rel
->r_info
);
1452 r_type
= elf_s390_tls_transition (info
, r_type
, h
!= NULL
);
1455 case R_390_TLS_LDM32
:
1456 if (elf_s390_hash_table (info
)->tls_ldm_got
.refcount
> 0)
1457 elf_s390_hash_table (info
)->tls_ldm_got
.refcount
-= 1;
1460 case R_390_TLS_GD32
:
1461 case R_390_TLS_IE32
:
1462 case R_390_TLS_GOTIE12
:
1463 case R_390_TLS_GOTIE20
:
1464 case R_390_TLS_GOTIE32
:
1465 case R_390_TLS_IEENT
:
1470 case R_390_GOTOFF16
:
1471 case R_390_GOTOFF32
:
1473 case R_390_GOTPCDBL
:
1477 if (h
->got
.refcount
> 0)
1478 h
->got
.refcount
-= 1;
1480 else if (local_got_refcounts
!= NULL
)
1482 if (local_got_refcounts
[r_symndx
] > 0)
1483 local_got_refcounts
[r_symndx
] -= 1;
1500 case R_390_PLT16DBL
:
1501 case R_390_PLT32DBL
:
1503 case R_390_PLTOFF16
:
1504 case R_390_PLTOFF32
:
1507 if (h
->plt
.refcount
> 0)
1508 h
->plt
.refcount
-= 1;
1512 case R_390_GOTPLT12
:
1513 case R_390_GOTPLT16
:
1514 case R_390_GOTPLT20
:
1515 case R_390_GOTPLT32
:
1516 case R_390_GOTPLTENT
:
1519 if (h
->plt
.refcount
> 0)
1521 ((struct elf_s390_link_hash_entry
*) h
)->gotplt_refcount
--;
1522 h
->plt
.refcount
-= 1;
1525 else if (local_got_refcounts
!= NULL
)
1527 if (local_got_refcounts
[r_symndx
] > 0)
1528 local_got_refcounts
[r_symndx
] -= 1;
1540 /* Make sure we emit a GOT entry if the symbol was supposed to have a PLT
1541 entry but we found we will not create any. Called when we find we will
1542 not have any PLT for this symbol, by for example
1543 elf_s390_adjust_dynamic_symbol when we're doing a proper dynamic link,
1544 or elf_s390_size_dynamic_sections if no dynamic sections will be
1545 created (we're only linking static objects). */
1548 elf_s390_adjust_gotplt (h
)
1549 struct elf_s390_link_hash_entry
*h
;
1551 if (h
->elf
.root
.type
== bfd_link_hash_warning
)
1552 h
= (struct elf_s390_link_hash_entry
*) h
->elf
.root
.u
.i
.link
;
1554 if (h
->gotplt_refcount
<= 0)
1557 /* We simply add the number of gotplt references to the number
1558 * of got references for this symbol. */
1559 h
->elf
.got
.refcount
+= h
->gotplt_refcount
;
1560 h
->gotplt_refcount
= -1;
1563 /* Adjust a symbol defined by a dynamic object and referenced by a
1564 regular object. The current definition is in some section of the
1565 dynamic object, but we're not including those sections. We have to
1566 change the definition to something the rest of the link can
1570 elf_s390_adjust_dynamic_symbol (info
, h
)
1571 struct bfd_link_info
*info
;
1572 struct elf_link_hash_entry
*h
;
1574 struct elf_s390_link_hash_table
*htab
;
1576 unsigned int power_of_two
;
1578 /* If this is a function, put it in the procedure linkage table. We
1579 will fill in the contents of the procedure linkage table later
1580 (although we could actually do it here). */
1581 if (h
->type
== STT_FUNC
1584 if (h
->plt
.refcount
<= 0
1588 && h
->root
.type
!= bfd_link_hash_undefweak
1589 && h
->root
.type
!= bfd_link_hash_undefined
))
1591 /* This case can occur if we saw a PLT32 reloc in an input
1592 file, but the symbol was never referred to by a dynamic
1593 object, or if all references were garbage collected. In
1594 such a case, we don't actually need to build a procedure
1595 linkage table, and we can just do a PC32 reloc instead. */
1596 h
->plt
.offset
= (bfd_vma
) -1;
1598 elf_s390_adjust_gotplt((struct elf_s390_link_hash_entry
*) h
);
1604 /* It's possible that we incorrectly decided a .plt reloc was
1605 needed for an R_390_PC32 reloc to a non-function sym in
1606 check_relocs. We can't decide accurately between function and
1607 non-function syms in check-relocs; Objects loaded later in
1608 the link may change h->type. So fix it now. */
1609 h
->plt
.offset
= (bfd_vma
) -1;
1611 /* If this is a weak symbol, and there is a real definition, the
1612 processor independent code will have arranged for us to see the
1613 real definition first, and we can just use the same value. */
1614 if (h
->u
.weakdef
!= NULL
)
1616 BFD_ASSERT (h
->u
.weakdef
->root
.type
== bfd_link_hash_defined
1617 || h
->u
.weakdef
->root
.type
== bfd_link_hash_defweak
);
1618 h
->root
.u
.def
.section
= h
->u
.weakdef
->root
.u
.def
.section
;
1619 h
->root
.u
.def
.value
= h
->u
.weakdef
->root
.u
.def
.value
;
1620 if (ELIMINATE_COPY_RELOCS
|| info
->nocopyreloc
)
1621 h
->non_got_ref
= h
->u
.weakdef
->non_got_ref
;
1625 /* This is a reference to a symbol defined by a dynamic object which
1626 is not a function. */
1628 /* If we are creating a shared library, we must presume that the
1629 only references to the symbol are via the global offset table.
1630 For such cases we need not do anything here; the relocations will
1631 be handled correctly by relocate_section. */
1635 /* If there are no references to this symbol that do not use the
1636 GOT, we don't need to generate a copy reloc. */
1637 if (!h
->non_got_ref
)
1640 /* If -z nocopyreloc was given, we won't generate them either. */
1641 if (info
->nocopyreloc
)
1647 if (ELIMINATE_COPY_RELOCS
)
1649 struct elf_s390_link_hash_entry
* eh
;
1650 struct elf_s390_dyn_relocs
*p
;
1652 eh
= (struct elf_s390_link_hash_entry
*) h
;
1653 for (p
= eh
->dyn_relocs
; p
!= NULL
; p
= p
->next
)
1655 s
= p
->sec
->output_section
;
1656 if (s
!= NULL
&& (s
->flags
& SEC_READONLY
) != 0)
1660 /* If we didn't find any dynamic relocs in read-only sections, then
1661 we'll be keeping the dynamic relocs and avoiding the copy reloc. */
1669 /* We must allocate the symbol in our .dynbss section, which will
1670 become part of the .bss section of the executable. There will be
1671 an entry for this symbol in the .dynsym section. The dynamic
1672 object will contain position independent code, so all references
1673 from the dynamic object to this symbol will go through the global
1674 offset table. The dynamic linker will use the .dynsym entry to
1675 determine the address it must put in the global offset table, so
1676 both the dynamic object and the regular object will refer to the
1677 same memory location for the variable. */
1679 htab
= elf_s390_hash_table (info
);
1681 /* We must generate a R_390_COPY reloc to tell the dynamic linker to
1682 copy the initial value out of the dynamic object and into the
1683 runtime process image. */
1684 if ((h
->root
.u
.def
.section
->flags
& SEC_ALLOC
) != 0)
1686 htab
->srelbss
->size
+= sizeof (Elf32_External_Rela
);
1690 /* We need to figure out the alignment required for this symbol. I
1691 have no idea how ELF linkers handle this. */
1692 power_of_two
= bfd_log2 (h
->size
);
1693 if (power_of_two
> 3)
1696 /* Apply the required alignment. */
1698 s
->size
= BFD_ALIGN (s
->size
, (bfd_size_type
) (1 << power_of_two
));
1699 if (power_of_two
> bfd_get_section_alignment (htab
->elf
.dynobj
, s
))
1701 if (! bfd_set_section_alignment (htab
->elf
.dynobj
, s
, power_of_two
))
1705 /* Define the symbol as being at this point in the section. */
1706 h
->root
.u
.def
.section
= s
;
1707 h
->root
.u
.def
.value
= s
->size
;
1709 /* Increment the section size to make room for the symbol. */
1715 /* Allocate space in .plt, .got and associated reloc sections for
1719 allocate_dynrelocs (h
, inf
)
1720 struct elf_link_hash_entry
*h
;
1723 struct bfd_link_info
*info
;
1724 struct elf_s390_link_hash_table
*htab
;
1725 struct elf_s390_link_hash_entry
*eh
;
1726 struct elf_s390_dyn_relocs
*p
;
1728 if (h
->root
.type
== bfd_link_hash_indirect
)
1731 if (h
->root
.type
== bfd_link_hash_warning
)
1732 /* When warning symbols are created, they **replace** the "real"
1733 entry in the hash table, thus we never get to see the real
1734 symbol in a hash traversal. So look at it now. */
1735 h
= (struct elf_link_hash_entry
*) h
->root
.u
.i
.link
;
1737 info
= (struct bfd_link_info
*) inf
;
1738 htab
= elf_s390_hash_table (info
);
1740 if (htab
->elf
.dynamic_sections_created
1741 && h
->plt
.refcount
> 0
1742 && (ELF_ST_VISIBILITY (h
->other
) == STV_DEFAULT
1743 || h
->root
.type
!= bfd_link_hash_undefweak
))
1745 /* Make sure this symbol is output as a dynamic symbol.
1746 Undefined weak syms won't yet be marked as dynamic. */
1747 if (h
->dynindx
== -1
1748 && !h
->forced_local
)
1750 if (! bfd_elf_link_record_dynamic_symbol (info
, h
))
1755 || WILL_CALL_FINISH_DYNAMIC_SYMBOL (1, 0, h
))
1757 asection
*s
= htab
->splt
;
1759 /* If this is the first .plt entry, make room for the special
1762 s
->size
+= PLT_FIRST_ENTRY_SIZE
;
1764 h
->plt
.offset
= s
->size
;
1766 /* If this symbol is not defined in a regular file, and we are
1767 not generating a shared library, then set the symbol to this
1768 location in the .plt. This is required to make function
1769 pointers compare as equal between the normal executable and
1770 the shared library. */
1774 h
->root
.u
.def
.section
= s
;
1775 h
->root
.u
.def
.value
= h
->plt
.offset
;
1778 /* Make room for this entry. */
1779 s
->size
+= PLT_ENTRY_SIZE
;
1781 /* We also need to make an entry in the .got.plt section, which
1782 will be placed in the .got section by the linker script. */
1783 htab
->sgotplt
->size
+= GOT_ENTRY_SIZE
;
1785 /* We also need to make an entry in the .rela.plt section. */
1786 htab
->srelplt
->size
+= sizeof (Elf32_External_Rela
);
1790 h
->plt
.offset
= (bfd_vma
) -1;
1792 elf_s390_adjust_gotplt((struct elf_s390_link_hash_entry
*) h
);
1797 h
->plt
.offset
= (bfd_vma
) -1;
1799 elf_s390_adjust_gotplt((struct elf_s390_link_hash_entry
*) h
);
1802 /* If R_390_TLS_{IE32,GOTIE32,GOTIE12,IEENT} symbol is now local to
1803 the binary, we can optimize a bit. IE32 and GOTIE32 get converted
1804 to R_390_TLS_LE32 requiring no TLS entry. For GOTIE12 and IEENT
1805 we can save the dynamic TLS relocation. */
1806 if (h
->got
.refcount
> 0
1809 && elf_s390_hash_entry(h
)->tls_type
>= GOT_TLS_IE
)
1811 if (elf_s390_hash_entry(h
)->tls_type
== GOT_TLS_IE_NLT
)
1812 /* For the GOTIE access without a literal pool entry the offset has
1813 to be stored somewhere. The immediate value in the instruction
1814 is not bit enough so the value is stored in the got. */
1816 h
->got
.offset
= htab
->sgot
->size
;
1817 htab
->sgot
->size
+= GOT_ENTRY_SIZE
;
1820 h
->got
.offset
= (bfd_vma
) -1;
1822 else if (h
->got
.refcount
> 0)
1826 int tls_type
= elf_s390_hash_entry(h
)->tls_type
;
1828 /* Make sure this symbol is output as a dynamic symbol.
1829 Undefined weak syms won't yet be marked as dynamic. */
1830 if (h
->dynindx
== -1
1831 && !h
->forced_local
)
1833 if (! bfd_elf_link_record_dynamic_symbol (info
, h
))
1838 h
->got
.offset
= s
->size
;
1839 s
->size
+= GOT_ENTRY_SIZE
;
1840 /* R_390_TLS_GD32 needs 2 consecutive GOT slots. */
1841 if (tls_type
== GOT_TLS_GD
)
1842 s
->size
+= GOT_ENTRY_SIZE
;
1843 dyn
= htab
->elf
.dynamic_sections_created
;
1844 /* R_390_TLS_IE32 needs one dynamic relocation,
1845 R_390_TLS_GD32 needs one if local symbol and two if global. */
1846 if ((tls_type
== GOT_TLS_GD
&& h
->dynindx
== -1)
1847 || tls_type
>= GOT_TLS_IE
)
1848 htab
->srelgot
->size
+= sizeof (Elf32_External_Rela
);
1849 else if (tls_type
== GOT_TLS_GD
)
1850 htab
->srelgot
->size
+= 2 * sizeof (Elf32_External_Rela
);
1851 else if ((ELF_ST_VISIBILITY (h
->other
) == STV_DEFAULT
1852 || h
->root
.type
!= bfd_link_hash_undefweak
)
1854 || WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn
, 0, h
)))
1855 htab
->srelgot
->size
+= sizeof (Elf32_External_Rela
);
1858 h
->got
.offset
= (bfd_vma
) -1;
1860 eh
= (struct elf_s390_link_hash_entry
*) h
;
1861 if (eh
->dyn_relocs
== NULL
)
1864 /* In the shared -Bsymbolic case, discard space allocated for
1865 dynamic pc-relative relocs against symbols which turn out to be
1866 defined in regular objects. For the normal shared case, discard
1867 space for pc-relative relocs that have become local due to symbol
1868 visibility changes. */
1872 if (SYMBOL_REFERENCES_LOCAL (info
, h
))
1874 struct elf_s390_dyn_relocs
**pp
;
1876 for (pp
= &eh
->dyn_relocs
; (p
= *pp
) != NULL
; )
1878 p
->count
-= p
->pc_count
;
1887 /* Also discard relocs on undefined weak syms with non-default
1889 if (ELF_ST_VISIBILITY (h
->other
) != STV_DEFAULT
1890 && h
->root
.type
== bfd_link_hash_undefweak
)
1891 eh
->dyn_relocs
= NULL
;
1893 else if (ELIMINATE_COPY_RELOCS
)
1895 /* For the non-shared case, discard space for relocs against
1896 symbols which turn out to need copy relocs or are not
1902 || (htab
->elf
.dynamic_sections_created
1903 && (h
->root
.type
== bfd_link_hash_undefweak
1904 || h
->root
.type
== bfd_link_hash_undefined
))))
1906 /* Make sure this symbol is output as a dynamic symbol.
1907 Undefined weak syms won't yet be marked as dynamic. */
1908 if (h
->dynindx
== -1
1909 && !h
->forced_local
)
1911 if (! bfd_elf_link_record_dynamic_symbol (info
, h
))
1915 /* If that succeeded, we know we'll be keeping all the
1917 if (h
->dynindx
!= -1)
1921 eh
->dyn_relocs
= NULL
;
1926 /* Finally, allocate space. */
1927 for (p
= eh
->dyn_relocs
; p
!= NULL
; p
= p
->next
)
1929 asection
*sreloc
= elf_section_data (p
->sec
)->sreloc
;
1931 sreloc
->size
+= p
->count
* sizeof (Elf32_External_Rela
);
1937 /* Find any dynamic relocs that apply to read-only sections. */
1940 readonly_dynrelocs (h
, inf
)
1941 struct elf_link_hash_entry
*h
;
1944 struct elf_s390_link_hash_entry
*eh
;
1945 struct elf_s390_dyn_relocs
*p
;
1947 if (h
->root
.type
== bfd_link_hash_warning
)
1948 h
= (struct elf_link_hash_entry
*) h
->root
.u
.i
.link
;
1950 eh
= (struct elf_s390_link_hash_entry
*) h
;
1951 for (p
= eh
->dyn_relocs
; p
!= NULL
; p
= p
->next
)
1953 asection
*s
= p
->sec
->output_section
;
1955 if (s
!= NULL
&& (s
->flags
& SEC_READONLY
) != 0)
1957 struct bfd_link_info
*info
= (struct bfd_link_info
*) inf
;
1959 info
->flags
|= DF_TEXTREL
;
1961 /* Not an error, just cut short the traversal. */
1968 /* Set the sizes of the dynamic sections. */
1971 elf_s390_size_dynamic_sections (output_bfd
, info
)
1972 bfd
*output_bfd ATTRIBUTE_UNUSED
;
1973 struct bfd_link_info
*info
;
1975 struct elf_s390_link_hash_table
*htab
;
1981 htab
= elf_s390_hash_table (info
);
1982 dynobj
= htab
->elf
.dynobj
;
1986 if (htab
->elf
.dynamic_sections_created
)
1988 /* Set the contents of the .interp section to the interpreter. */
1989 if (info
->executable
)
1991 s
= bfd_get_section_by_name (dynobj
, ".interp");
1994 s
->size
= sizeof ELF_DYNAMIC_INTERPRETER
;
1995 s
->contents
= (unsigned char *) ELF_DYNAMIC_INTERPRETER
;
1999 /* Set up .got offsets for local syms, and space for local dynamic
2001 for (ibfd
= info
->input_bfds
; ibfd
!= NULL
; ibfd
= ibfd
->link_next
)
2003 bfd_signed_vma
*local_got
;
2004 bfd_signed_vma
*end_local_got
;
2005 char *local_tls_type
;
2006 bfd_size_type locsymcount
;
2007 Elf_Internal_Shdr
*symtab_hdr
;
2010 if (bfd_get_flavour (ibfd
) != bfd_target_elf_flavour
)
2013 for (s
= ibfd
->sections
; s
!= NULL
; s
= s
->next
)
2015 struct elf_s390_dyn_relocs
*p
;
2017 for (p
= *((struct elf_s390_dyn_relocs
**)
2018 &elf_section_data (s
)->local_dynrel
);
2022 if (!bfd_is_abs_section (p
->sec
)
2023 && bfd_is_abs_section (p
->sec
->output_section
))
2025 /* Input section has been discarded, either because
2026 it is a copy of a linkonce section or due to
2027 linker script /DISCARD/, so we'll be discarding
2030 else if (p
->count
!= 0)
2032 srela
= elf_section_data (p
->sec
)->sreloc
;
2033 srela
->size
+= p
->count
* sizeof (Elf32_External_Rela
);
2034 if ((p
->sec
->output_section
->flags
& SEC_READONLY
) != 0)
2035 info
->flags
|= DF_TEXTREL
;
2040 local_got
= elf_local_got_refcounts (ibfd
);
2044 symtab_hdr
= &elf_tdata (ibfd
)->symtab_hdr
;
2045 locsymcount
= symtab_hdr
->sh_info
;
2046 end_local_got
= local_got
+ locsymcount
;
2047 local_tls_type
= elf_s390_local_got_tls_type (ibfd
);
2049 srela
= htab
->srelgot
;
2050 for (; local_got
< end_local_got
; ++local_got
, ++local_tls_type
)
2054 *local_got
= s
->size
;
2055 s
->size
+= GOT_ENTRY_SIZE
;
2056 if (*local_tls_type
== GOT_TLS_GD
)
2057 s
->size
+= GOT_ENTRY_SIZE
;
2059 srela
->size
+= sizeof (Elf32_External_Rela
);
2062 *local_got
= (bfd_vma
) -1;
2066 if (htab
->tls_ldm_got
.refcount
> 0)
2068 /* Allocate 2 got entries and 1 dynamic reloc for R_390_TLS_LDM32
2070 htab
->tls_ldm_got
.offset
= htab
->sgot
->size
;
2071 htab
->sgot
->size
+= 2 * GOT_ENTRY_SIZE
;
2072 htab
->srelgot
->size
+= sizeof (Elf32_External_Rela
);
2075 htab
->tls_ldm_got
.offset
= -1;
2077 /* Allocate global sym .plt and .got entries, and space for global
2078 sym dynamic relocs. */
2079 elf_link_hash_traverse (&htab
->elf
, allocate_dynrelocs
, (PTR
) info
);
2081 /* We now have determined the sizes of the various dynamic sections.
2082 Allocate memory for them. */
2084 for (s
= dynobj
->sections
; s
!= NULL
; s
= s
->next
)
2086 if ((s
->flags
& SEC_LINKER_CREATED
) == 0)
2091 || s
== htab
->sgotplt
)
2093 /* Strip this section if we don't need it; see the
2096 else if (strncmp (bfd_get_section_name (dynobj
, s
), ".rela", 5) == 0)
2101 /* We use the reloc_count field as a counter if we need
2102 to copy relocs into the output file. */
2107 /* It's not one of our sections, so don't allocate space. */
2113 /* If we don't need this section, strip it from the
2114 output file. This is to handle .rela.bss and
2115 .rela.plt. We must create it in
2116 create_dynamic_sections, because it must be created
2117 before the linker maps input sections to output
2118 sections. The linker does that before
2119 adjust_dynamic_symbol is called, and it is that
2120 function which decides whether anything needs to go
2121 into these sections. */
2123 _bfd_strip_section_from_output (info
, s
);
2127 /* Allocate memory for the section contents. We use bfd_zalloc
2128 here in case unused entries are not reclaimed before the
2129 section's contents are written out. This should not happen,
2130 but this way if it does, we get a R_390_NONE reloc instead
2132 s
->contents
= (bfd_byte
*) bfd_zalloc (dynobj
, s
->size
);
2133 if (s
->contents
== NULL
)
2137 if (htab
->elf
.dynamic_sections_created
)
2139 /* Add some entries to the .dynamic section. We fill in the
2140 values later, in elf_s390_finish_dynamic_sections, but we
2141 must add the entries now so that we get the correct size for
2142 the .dynamic section. The DT_DEBUG entry is filled in by the
2143 dynamic linker and used by the debugger. */
2144 #define add_dynamic_entry(TAG, VAL) \
2145 _bfd_elf_add_dynamic_entry (info, TAG, VAL)
2147 if (info
->executable
)
2149 if (!add_dynamic_entry (DT_DEBUG
, 0))
2153 if (htab
->splt
->size
!= 0)
2155 if (!add_dynamic_entry (DT_PLTGOT
, 0)
2156 || !add_dynamic_entry (DT_PLTRELSZ
, 0)
2157 || !add_dynamic_entry (DT_PLTREL
, DT_RELA
)
2158 || !add_dynamic_entry (DT_JMPREL
, 0))
2164 if (!add_dynamic_entry (DT_RELA
, 0)
2165 || !add_dynamic_entry (DT_RELASZ
, 0)
2166 || !add_dynamic_entry (DT_RELAENT
, sizeof (Elf32_External_Rela
)))
2169 /* If any dynamic relocs apply to a read-only section,
2170 then we need a DT_TEXTREL entry. */
2171 if ((info
->flags
& DF_TEXTREL
) == 0)
2172 elf_link_hash_traverse (&htab
->elf
, readonly_dynrelocs
,
2175 if ((info
->flags
& DF_TEXTREL
) != 0)
2177 if (!add_dynamic_entry (DT_TEXTREL
, 0))
2182 #undef add_dynamic_entry
2187 /* Return the base VMA address which should be subtracted from real addresses
2188 when resolving @dtpoff relocation.
2189 This is PT_TLS segment p_vaddr. */
2193 struct bfd_link_info
*info
;
2195 /* If tls_sec is NULL, we should have signalled an error already. */
2196 if (elf_hash_table (info
)->tls_sec
== NULL
)
2198 return elf_hash_table (info
)->tls_sec
->vma
;
2201 /* Return the relocation value for @tpoff relocation
2202 if STT_TLS virtual address is ADDRESS. */
2205 tpoff (info
, address
)
2206 struct bfd_link_info
*info
;
2209 struct elf_link_hash_table
*htab
= elf_hash_table (info
);
2211 /* If tls_sec is NULL, we should have signalled an error already. */
2212 if (htab
->tls_sec
== NULL
)
2214 return htab
->tls_size
+ htab
->tls_sec
->vma
- address
;
2217 /* Complain if TLS instruction relocation is against an invalid
2221 invalid_tls_insn (input_bfd
, input_section
, rel
)
2223 asection
*input_section
;
2224 Elf_Internal_Rela
*rel
;
2226 reloc_howto_type
*howto
;
2228 howto
= elf_howto_table
+ ELF32_R_TYPE (rel
->r_info
);
2229 (*_bfd_error_handler
)
2230 (_("%B(%A+0x%lx): invalid instruction for TLS relocation %s"),
2233 (long) rel
->r_offset
,
2237 /* Relocate a 390 ELF section. */
2240 elf_s390_relocate_section (output_bfd
, info
, input_bfd
, input_section
,
2241 contents
, relocs
, local_syms
, local_sections
)
2243 struct bfd_link_info
*info
;
2245 asection
*input_section
;
2247 Elf_Internal_Rela
*relocs
;
2248 Elf_Internal_Sym
*local_syms
;
2249 asection
**local_sections
;
2251 struct elf_s390_link_hash_table
*htab
;
2252 Elf_Internal_Shdr
*symtab_hdr
;
2253 struct elf_link_hash_entry
**sym_hashes
;
2254 bfd_vma
*local_got_offsets
;
2255 Elf_Internal_Rela
*rel
;
2256 Elf_Internal_Rela
*relend
;
2258 if (info
->relocatable
)
2261 htab
= elf_s390_hash_table (info
);
2262 symtab_hdr
= &elf_tdata (input_bfd
)->symtab_hdr
;
2263 sym_hashes
= elf_sym_hashes (input_bfd
);
2264 local_got_offsets
= elf_local_got_offsets (input_bfd
);
2267 relend
= relocs
+ input_section
->reloc_count
;
2268 for (; rel
< relend
; rel
++)
2270 unsigned int r_type
;
2271 reloc_howto_type
*howto
;
2272 unsigned long r_symndx
;
2273 struct elf_link_hash_entry
*h
;
2274 Elf_Internal_Sym
*sym
;
2278 bfd_boolean unresolved_reloc
;
2279 bfd_reloc_status_type r
;
2282 r_type
= ELF32_R_TYPE (rel
->r_info
);
2283 if (r_type
== (int) R_390_GNU_VTINHERIT
2284 || r_type
== (int) R_390_GNU_VTENTRY
)
2286 if (r_type
>= (int) R_390_max
)
2288 bfd_set_error (bfd_error_bad_value
);
2292 howto
= elf_howto_table
+ r_type
;
2293 r_symndx
= ELF32_R_SYM (rel
->r_info
);
2295 /* This is a final link. */
2299 unresolved_reloc
= FALSE
;
2300 if (r_symndx
< symtab_hdr
->sh_info
)
2302 sym
= local_syms
+ r_symndx
;
2303 sec
= local_sections
[r_symndx
];
2304 relocation
= _bfd_elf_rela_local_sym (output_bfd
, sym
, &sec
, rel
);
2308 bfd_boolean warned ATTRIBUTE_UNUSED
;
2310 RELOC_FOR_GLOBAL_SYMBOL (info
, input_bfd
, input_section
, rel
,
2311 r_symndx
, symtab_hdr
, sym_hashes
,
2313 unresolved_reloc
, warned
);
2318 case R_390_GOTPLT12
:
2319 case R_390_GOTPLT16
:
2320 case R_390_GOTPLT20
:
2321 case R_390_GOTPLT32
:
2322 case R_390_GOTPLTENT
:
2323 /* There are three cases for a GOTPLT relocation. 1) The
2324 relocation is against the jump slot entry of a plt that
2325 will get emitted to the output file. 2) The relocation
2326 is against the jump slot of a plt entry that has been
2327 removed. elf_s390_adjust_gotplt has created a GOT entry
2328 as replacement. 3) The relocation is against a local symbol.
2329 Cases 2) and 3) are the same as the GOT relocation code
2330 so we just have to test for case 1 and fall through for
2332 if (h
!= NULL
&& h
->plt
.offset
!= (bfd_vma
) -1)
2337 Current offset - size first entry / entry size. */
2338 plt_index
= (h
->plt
.offset
- PLT_FIRST_ENTRY_SIZE
) /
2341 /* Offset in GOT is PLT index plus GOT headers(3) times 4,
2343 relocation
= (plt_index
+ 3) * GOT_ENTRY_SIZE
;
2344 unresolved_reloc
= FALSE
;
2346 if (r_type
== R_390_GOTPLTENT
)
2347 relocation
+= htab
->sgot
->output_section
->vma
;
2357 /* Relocation is to the entry for this symbol in the global
2359 if (htab
->sgot
== NULL
)
2366 off
= h
->got
.offset
;
2367 dyn
= htab
->elf
.dynamic_sections_created
;
2368 if (! WILL_CALL_FINISH_DYNAMIC_SYMBOL (dyn
, info
->shared
, h
)
2374 || (ELF_ST_VISIBILITY (h
->other
)
2375 && h
->root
.type
== bfd_link_hash_undefweak
))
2377 /* This is actually a static link, or it is a
2378 -Bsymbolic link and the symbol is defined
2379 locally, or the symbol was forced to be local
2380 because of a version file. We must initialize
2381 this entry in the global offset table. Since the
2382 offset must always be a multiple of 2, we use the
2383 least significant bit to record whether we have
2384 initialized it already.
2386 When doing a dynamic link, we create a .rel.got
2387 relocation entry to initialize the value. This
2388 is done in the finish_dynamic_symbol routine. */
2393 bfd_put_32 (output_bfd
, relocation
,
2394 htab
->sgot
->contents
+ off
);
2399 unresolved_reloc
= FALSE
;
2403 if (local_got_offsets
== NULL
)
2406 off
= local_got_offsets
[r_symndx
];
2408 /* The offset must always be a multiple of 4. We use
2409 the least significant bit to record whether we have
2410 already generated the necessary reloc. */
2415 bfd_put_32 (output_bfd
, relocation
,
2416 htab
->sgot
->contents
+ off
);
2421 Elf_Internal_Rela outrel
;
2424 srelgot
= htab
->srelgot
;
2425 if (srelgot
== NULL
)
2428 outrel
.r_offset
= (htab
->sgot
->output_section
->vma
2429 + htab
->sgot
->output_offset
2431 outrel
.r_info
= ELF32_R_INFO (0, R_390_RELATIVE
);
2432 outrel
.r_addend
= relocation
;
2433 loc
= srelgot
->contents
;
2434 loc
+= srelgot
->reloc_count
++ * sizeof (Elf32_External_Rela
);
2435 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2438 local_got_offsets
[r_symndx
] |= 1;
2442 if (off
>= (bfd_vma
) -2)
2445 relocation
= htab
->sgot
->output_offset
+ off
;
2447 /* For @GOTENT the relocation is against the offset between
2448 the instruction and the symbols entry in the GOT and not
2449 between the start of the GOT and the symbols entry. We
2450 add the vma of the GOT to get the correct value. */
2451 if ( r_type
== R_390_GOTENT
2452 || r_type
== R_390_GOTPLTENT
)
2453 relocation
+= htab
->sgot
->output_section
->vma
;
2457 case R_390_GOTOFF16
:
2458 case R_390_GOTOFF32
:
2459 /* Relocation is relative to the start of the global offset
2462 /* Note that sgot->output_offset is not involved in this
2463 calculation. We always want the start of .got. If we
2464 defined _GLOBAL_OFFSET_TABLE in a different way, as is
2465 permitted by the ABI, we might have to change this
2467 relocation
-= htab
->sgot
->output_section
->vma
;
2471 case R_390_GOTPCDBL
:
2472 /* Use global offset table as symbol value. */
2473 relocation
= htab
->sgot
->output_section
->vma
;
2474 unresolved_reloc
= FALSE
;
2477 case R_390_PLT16DBL
:
2478 case R_390_PLT32DBL
:
2480 /* Relocation is to the entry for this symbol in the
2481 procedure linkage table. */
2483 /* Resolve a PLT32 reloc against a local symbol directly,
2484 without using the procedure linkage table. */
2488 if (h
->plt
.offset
== (bfd_vma
) -1
2489 || htab
->splt
== NULL
)
2491 /* We didn't make a PLT entry for this symbol. This
2492 happens when statically linking PIC code, or when
2493 using -Bsymbolic. */
2497 relocation
= (htab
->splt
->output_section
->vma
2498 + htab
->splt
->output_offset
2500 unresolved_reloc
= FALSE
;
2503 case R_390_PLTOFF16
:
2504 case R_390_PLTOFF32
:
2505 /* Relocation is to the entry for this symbol in the
2506 procedure linkage table relative to the start of the GOT. */
2508 /* For local symbols or if we didn't make a PLT entry for
2509 this symbol resolve the symbol directly. */
2511 || h
->plt
.offset
== (bfd_vma
) -1
2512 || htab
->splt
== NULL
)
2514 relocation
-= htab
->sgot
->output_section
->vma
;
2518 relocation
= (htab
->splt
->output_section
->vma
2519 + htab
->splt
->output_offset
2521 - htab
->sgot
->output_section
->vma
);
2522 unresolved_reloc
= FALSE
;
2532 /* r_symndx will be zero only for relocs against symbols
2533 from removed linkonce sections, or sections discarded by
2536 || (input_section
->flags
& SEC_ALLOC
) == 0)
2541 || ELF_ST_VISIBILITY (h
->other
) == STV_DEFAULT
2542 || h
->root
.type
!= bfd_link_hash_undefweak
)
2543 && ((r_type
!= R_390_PC16
2544 && r_type
!= R_390_PC16DBL
2545 && r_type
!= R_390_PC32DBL
2546 && r_type
!= R_390_PC32
)
2548 && !SYMBOL_REFERENCES_LOCAL (info
, h
))))
2549 || (ELIMINATE_COPY_RELOCS
2556 || h
->root
.type
== bfd_link_hash_undefweak
2557 || h
->root
.type
== bfd_link_hash_undefined
)))
2559 Elf_Internal_Rela outrel
;
2560 bfd_boolean skip
, relocate
;
2564 /* When generating a shared object, these relocations
2565 are copied into the output file to be resolved at run
2572 _bfd_elf_section_offset (output_bfd
, info
, input_section
,
2574 if (outrel
.r_offset
== (bfd_vma
) -1)
2576 else if (outrel
.r_offset
== (bfd_vma
) -2)
2577 skip
= TRUE
, relocate
= TRUE
;
2578 outrel
.r_offset
+= (input_section
->output_section
->vma
2579 + input_section
->output_offset
);
2582 memset (&outrel
, 0, sizeof outrel
);
2585 && (r_type
== R_390_PC16
2586 || r_type
== R_390_PC16DBL
2587 || r_type
== R_390_PC32DBL
2588 || r_type
== R_390_PC32
2591 || !h
->def_regular
))
2593 outrel
.r_info
= ELF32_R_INFO (h
->dynindx
, r_type
);
2594 outrel
.r_addend
= rel
->r_addend
;
2598 /* This symbol is local, or marked to become local. */
2599 outrel
.r_addend
= relocation
+ rel
->r_addend
;
2600 if (r_type
== R_390_32
)
2603 outrel
.r_info
= ELF32_R_INFO (0, R_390_RELATIVE
);
2609 if (bfd_is_abs_section (sec
))
2611 else if (sec
== NULL
|| sec
->owner
== NULL
)
2613 bfd_set_error(bfd_error_bad_value
);
2620 osec
= sec
->output_section
;
2621 sindx
= elf_section_data (osec
)->dynindx
;
2622 BFD_ASSERT (sindx
> 0);
2624 /* We are turning this relocation into one
2625 against a section symbol, so subtract out
2626 the output section's address but not the
2627 offset of the input section in the output
2630 outrel
.r_addend
-= osec
->vma
;
2632 outrel
.r_info
= ELF32_R_INFO (sindx
, r_type
);
2636 sreloc
= elf_section_data (input_section
)->sreloc
;
2640 loc
= sreloc
->contents
;
2641 loc
+= sreloc
->reloc_count
++ * sizeof (Elf32_External_Rela
);
2642 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2644 /* If this reloc is against an external symbol, we do
2645 not want to fiddle with the addend. Otherwise, we
2646 need to include the symbol value so that it becomes
2647 an addend for the dynamic reloc. */
2653 /* Relocations for tls literal pool entries. */
2654 case R_390_TLS_IE32
:
2657 Elf_Internal_Rela outrel
;
2661 outrel
.r_offset
= rel
->r_offset
2662 + input_section
->output_section
->vma
2663 + input_section
->output_offset
;
2664 outrel
.r_info
= ELF32_R_INFO (0, R_390_RELATIVE
);
2665 sreloc
= elf_section_data (input_section
)->sreloc
;
2668 loc
= sreloc
->contents
;
2669 loc
+= sreloc
->reloc_count
++ * sizeof (Elf32_External_Rela
);
2670 bfd_elf32_swap_reloc_out (output_bfd
, &outrel
, loc
);
2674 case R_390_TLS_GD32
:
2675 case R_390_TLS_GOTIE32
:
2676 r_type
= elf_s390_tls_transition (info
, r_type
, h
== NULL
);
2677 tls_type
= GOT_UNKNOWN
;
2678 if (h
== NULL
&& local_got_offsets
)
2679 tls_type
= elf_s390_local_got_tls_type (input_bfd
) [r_symndx
];
2682 tls_type
= elf_s390_hash_entry(h
)->tls_type
;
2683 if (!info
->shared
&& h
->dynindx
== -1 && tls_type
>= GOT_TLS_IE
)
2684 r_type
= R_390_TLS_LE32
;
2686 if (r_type
== R_390_TLS_GD32
&& tls_type
>= GOT_TLS_IE
)
2687 r_type
= R_390_TLS_IE32
;
2689 if (r_type
== R_390_TLS_LE32
)
2691 /* This relocation gets optimized away by the local exec
2692 access optimization. */
2693 BFD_ASSERT (! unresolved_reloc
);
2694 bfd_put_32 (output_bfd
, -tpoff (info
, relocation
),
2695 contents
+ rel
->r_offset
);
2699 if (htab
->sgot
== NULL
)
2703 off
= h
->got
.offset
;
2706 if (local_got_offsets
== NULL
)
2709 off
= local_got_offsets
[r_symndx
];
2718 Elf_Internal_Rela outrel
;
2722 if (htab
->srelgot
== NULL
)
2725 outrel
.r_offset
= (htab
->sgot
->output_section
->vma
2726 + htab
->sgot
->output_offset
+ off
);
2728 indx
= h
&& h
->dynindx
!= -1 ? h
->dynindx
: 0;
2729 if (r_type
== R_390_TLS_GD32
)
2730 dr_type
= R_390_TLS_DTPMOD
;
2732 dr_type
= R_390_TLS_TPOFF
;
2733 if (dr_type
== R_390_TLS_TPOFF
&& indx
== 0)
2734 outrel
.r_addend
= relocation
- dtpoff_base (info
);
2736 outrel
.r_addend
= 0;
2737 outrel
.r_info
= ELF32_R_INFO (indx
, dr_type
);
2738 loc
= htab
->srelgot
->contents
;
2739 loc
+= htab
->srelgot
->reloc_count
++
2740 * sizeof (Elf32_External_Rela
);
2741 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2743 if (r_type
== R_390_TLS_GD32
)
2747 BFD_ASSERT (! unresolved_reloc
);
2748 bfd_put_32 (output_bfd
,
2749 relocation
- dtpoff_base (info
),
2750 htab
->sgot
->contents
+ off
+ GOT_ENTRY_SIZE
);
2754 outrel
.r_info
= ELF32_R_INFO (indx
, R_390_TLS_DTPOFF
);
2755 outrel
.r_offset
+= GOT_ENTRY_SIZE
;
2756 outrel
.r_addend
= 0;
2757 htab
->srelgot
->reloc_count
++;
2758 loc
+= sizeof (Elf32_External_Rela
);
2759 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2766 local_got_offsets
[r_symndx
] |= 1;
2769 if (off
>= (bfd_vma
) -2)
2771 if (r_type
== ELF32_R_TYPE (rel
->r_info
))
2773 relocation
= htab
->sgot
->output_offset
+ off
;
2774 if (r_type
== R_390_TLS_IE32
|| r_type
== R_390_TLS_IEENT
)
2775 relocation
+= htab
->sgot
->output_section
->vma
;
2776 unresolved_reloc
= FALSE
;
2780 bfd_put_32 (output_bfd
, htab
->sgot
->output_offset
+ off
,
2781 contents
+ rel
->r_offset
);
2786 case R_390_TLS_GOTIE12
:
2787 case R_390_TLS_GOTIE20
:
2788 case R_390_TLS_IEENT
:
2791 if (local_got_offsets
== NULL
)
2793 off
= local_got_offsets
[r_symndx
];
2795 goto emit_tls_relocs
;
2799 off
= h
->got
.offset
;
2800 tls_type
= elf_s390_hash_entry(h
)->tls_type
;
2801 if (info
->shared
|| h
->dynindx
!= -1 || tls_type
< GOT_TLS_IE
)
2802 goto emit_tls_relocs
;
2805 if (htab
->sgot
== NULL
)
2808 BFD_ASSERT (! unresolved_reloc
);
2809 bfd_put_32 (output_bfd
, -tpoff (info
, relocation
),
2810 htab
->sgot
->contents
+ off
);
2811 relocation
= htab
->sgot
->output_offset
+ off
;
2812 if (r_type
== R_390_TLS_IEENT
)
2813 relocation
+= htab
->sgot
->output_section
->vma
;
2814 unresolved_reloc
= FALSE
;
2817 case R_390_TLS_LDM32
:
2819 /* The literal pool entry this relocation refers to gets ignored
2820 by the optimized code of the local exec model. Do nothing
2821 and the value will turn out zero. */
2824 if (htab
->sgot
== NULL
)
2827 off
= htab
->tls_ldm_got
.offset
;
2832 Elf_Internal_Rela outrel
;
2835 if (htab
->srelgot
== NULL
)
2838 outrel
.r_offset
= (htab
->sgot
->output_section
->vma
2839 + htab
->sgot
->output_offset
+ off
);
2841 bfd_put_32 (output_bfd
, 0,
2842 htab
->sgot
->contents
+ off
+ GOT_ENTRY_SIZE
);
2843 outrel
.r_info
= ELF32_R_INFO (0, R_390_TLS_DTPMOD
);
2844 outrel
.r_addend
= 0;
2845 loc
= htab
->srelgot
->contents
;
2846 loc
+= htab
->srelgot
->reloc_count
++
2847 * sizeof (Elf32_External_Rela
);
2848 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2849 htab
->tls_ldm_got
.offset
|= 1;
2851 relocation
= htab
->sgot
->output_offset
+ off
;
2852 unresolved_reloc
= FALSE
;
2855 case R_390_TLS_LE32
:
2858 /* Linking a shared library with non-fpic code requires
2859 a R_390_TLS_TPOFF relocation. */
2860 Elf_Internal_Rela outrel
;
2865 outrel
.r_offset
= rel
->r_offset
2866 + input_section
->output_section
->vma
2867 + input_section
->output_offset
;
2868 if (h
!= NULL
&& h
->dynindx
!= -1)
2872 outrel
.r_info
= ELF32_R_INFO (indx
, R_390_TLS_TPOFF
);
2874 outrel
.r_addend
= relocation
- dtpoff_base (info
);
2876 outrel
.r_addend
= 0;
2877 sreloc
= elf_section_data (input_section
)->sreloc
;
2880 loc
= sreloc
->contents
;
2881 loc
+= sreloc
->reloc_count
++ * sizeof (Elf32_External_Rela
);
2882 bfd_elf32_swap_reloca_out (output_bfd
, &outrel
, loc
);
2886 BFD_ASSERT (! unresolved_reloc
);
2887 bfd_put_32 (output_bfd
, -tpoff (info
, relocation
),
2888 contents
+ rel
->r_offset
);
2892 case R_390_TLS_LDO32
:
2893 if (info
->shared
|| (input_section
->flags
& SEC_CODE
) == 0)
2894 relocation
-= dtpoff_base (info
);
2896 /* When converting LDO to LE, we must negate. */
2897 relocation
= -tpoff (info
, relocation
);
2900 /* Relocations for tls instructions. */
2901 case R_390_TLS_LOAD
:
2902 case R_390_TLS_GDCALL
:
2903 case R_390_TLS_LDCALL
:
2904 tls_type
= GOT_UNKNOWN
;
2905 if (h
== NULL
&& local_got_offsets
)
2906 tls_type
= elf_s390_local_got_tls_type (input_bfd
) [r_symndx
];
2908 tls_type
= elf_s390_hash_entry(h
)->tls_type
;
2910 if (tls_type
== GOT_TLS_GD
)
2913 if (r_type
== R_390_TLS_LOAD
)
2915 if (!info
->shared
&& (h
== NULL
|| h
->dynindx
== -1))
2917 /* IE->LE transition. Four valid cases:
2918 l %rx,0(0,%ry) -> lr %rx,%ry + bcr 0,0
2919 l %rx,0(%ry,0) -> lr %rx,%ry + bcr 0,0
2920 l %rx,0(%ry,%r12) -> lr %rx,%ry + bcr 0,0
2921 l %rx,0(%r12,%ry) -> lr %rx,%ry + bcr 0,0 */
2922 unsigned int insn
, ry
;
2924 insn
= bfd_get_32 (input_bfd
, contents
+ rel
->r_offset
);
2926 if ((insn
& 0xff00f000) == 0x58000000)
2927 /* l %rx,0(%ry,0) -> lr %rx,%ry + bcr 0,0 */
2928 ry
= (insn
& 0x000f0000);
2929 else if ((insn
& 0xff0f0000) == 0x58000000)
2930 /* l %rx,0(0,%ry) -> lr %rx,%ry + bcr 0,0 */
2931 ry
= (insn
& 0x0000f000) << 4;
2932 else if ((insn
& 0xff00f000) == 0x5800c000)
2933 /* l %rx,0(%ry,%r12) -> lr %rx,%ry + bcr 0,0 */
2934 ry
= (insn
& 0x000f0000);
2935 else if ((insn
& 0xff0f0000) == 0x580c0000)
2936 /* l %rx,0(%r12,%ry) -> lr %rx,%ry + bcr 0,0 */
2937 ry
= (insn
& 0x0000f000) << 4;
2939 invalid_tls_insn (input_bfd
, input_section
, rel
);
2940 insn
= 0x18000700 | (insn
& 0x00f00000) | ry
;
2941 bfd_put_32 (output_bfd
, insn
, contents
+ rel
->r_offset
);
2944 else if (r_type
== R_390_TLS_GDCALL
)
2948 insn
= bfd_get_32 (input_bfd
, contents
+ rel
->r_offset
);
2949 if ((insn
& 0xff000fff) != 0x4d000000)
2950 invalid_tls_insn (input_bfd
, input_section
, rel
);
2951 if (!info
->shared
&& (h
== NULL
|| h
->dynindx
== -1))
2952 /* GD->LE transition.
2953 bas %r14,0(%rx,%r13) -> bc 0,0 */
2956 /* GD->IE transition.
2957 bas %r14,0(%rx,%r13) -> l %r2,0(%r2,%r12) */
2959 bfd_put_32 (output_bfd
, insn
, contents
+ rel
->r_offset
);
2961 else if (r_type
== R_390_TLS_LDCALL
)
2967 insn
= bfd_get_32 (input_bfd
, contents
+ rel
->r_offset
);
2968 if ((insn
& 0xff000fff) != 0x4d000000)
2969 invalid_tls_insn (input_bfd
, input_section
, rel
);
2970 /* LD->LE transition.
2971 bas %r14,0(%rx,%r13) -> bc 0,0 */
2973 bfd_put_32 (output_bfd
, insn
, contents
+ rel
->r_offset
);
2982 /* Dynamic relocs are not propagated for SEC_DEBUGGING sections
2983 because such sections are not SEC_ALLOC and thus ld.so will
2984 not process them. */
2985 if (unresolved_reloc
2986 && !((input_section
->flags
& SEC_DEBUGGING
) != 0
2988 (*_bfd_error_handler
)
2989 (_("%B(%A+0x%lx): unresolvable relocation against symbol `%s'"),
2992 (long) rel
->r_offset
,
2993 h
->root
.root
.string
);
2995 if (r_type
== R_390_20
2996 || r_type
== R_390_GOT20
2997 || r_type
== R_390_GOTPLT20
2998 || r_type
== R_390_TLS_GOTIE20
)
3000 relocation
+= rel
->r_addend
;
3001 relocation
= (relocation
&0xfff) << 8 | (relocation
&0xff000) >> 12;
3002 r
= _bfd_final_link_relocate (howto
, input_bfd
, input_section
,
3003 contents
, rel
->r_offset
,
3007 r
= _bfd_final_link_relocate (howto
, input_bfd
, input_section
,
3008 contents
, rel
->r_offset
,
3009 relocation
, rel
->r_addend
);
3011 if (r
!= bfd_reloc_ok
)
3016 name
= h
->root
.root
.string
;
3019 name
= bfd_elf_string_from_elf_section (input_bfd
,
3020 symtab_hdr
->sh_link
,
3025 name
= bfd_section_name (input_bfd
, sec
);
3028 if (r
== bfd_reloc_overflow
)
3031 if (! ((*info
->callbacks
->reloc_overflow
)
3032 (info
, name
, howto
->name
, (bfd_vma
) 0,
3033 input_bfd
, input_section
, rel
->r_offset
)))
3038 (*_bfd_error_handler
)
3039 (_("%B(%A+0x%lx): reloc against `%s': error %d"),
3040 input_bfd
, input_section
,
3041 (long) rel
->r_offset
, name
, (int) r
);
3050 /* Finish up dynamic symbol handling. We set the contents of various
3051 dynamic sections here. */
3054 elf_s390_finish_dynamic_symbol (output_bfd
, info
, h
, sym
)
3056 struct bfd_link_info
*info
;
3057 struct elf_link_hash_entry
*h
;
3058 Elf_Internal_Sym
*sym
;
3060 struct elf_s390_link_hash_table
*htab
;
3062 htab
= elf_s390_hash_table (info
);
3064 if (h
->plt
.offset
!= (bfd_vma
) -1)
3068 Elf_Internal_Rela rela
;
3070 bfd_vma relative_offset
;
3072 /* This symbol has an entry in the procedure linkage table. Set
3074 if (h
->dynindx
== -1
3075 || htab
->splt
== NULL
3076 || htab
->sgotplt
== NULL
3077 || htab
->srelplt
== NULL
)
3081 Current offset - size first entry / entry size. */
3082 plt_index
= (h
->plt
.offset
- PLT_FIRST_ENTRY_SIZE
) / PLT_ENTRY_SIZE
;
3084 /* Offset in GOT is PLT index plus GOT headers(3) times 4,
3086 got_offset
= (plt_index
+ 3) * GOT_ENTRY_SIZE
;
3088 /* S390 uses halfwords for relative branch calc! */
3089 relative_offset
= - ((PLT_FIRST_ENTRY_SIZE
+
3090 (PLT_ENTRY_SIZE
* plt_index
) + 18) / 2);
3091 /* If offset is > 32768, branch to a previous branch
3092 390 can only handle +-64 K jumps. */
3093 if ( -32768 > (int) relative_offset
)
3095 = -(unsigned) (((65536 / PLT_ENTRY_SIZE
- 1) * PLT_ENTRY_SIZE
) / 2);
3097 /* Fill in the entry in the procedure linkage table. */
3100 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_ENTRY_WORD0
,
3101 htab
->splt
->contents
+ h
->plt
.offset
);
3102 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_ENTRY_WORD1
,
3103 htab
->splt
->contents
+ h
->plt
.offset
+ 4);
3104 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_ENTRY_WORD2
,
3105 htab
->splt
->contents
+ h
->plt
.offset
+ 8);
3106 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_ENTRY_WORD3
,
3107 htab
->splt
->contents
+ h
->plt
.offset
+ 12);
3108 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_ENTRY_WORD4
,
3109 htab
->splt
->contents
+ h
->plt
.offset
+ 16);
3110 bfd_put_32 (output_bfd
, (bfd_vma
) 0+(relative_offset
<< 16),
3111 htab
->splt
->contents
+ h
->plt
.offset
+ 20);
3112 bfd_put_32 (output_bfd
,
3113 (htab
->sgotplt
->output_section
->vma
3114 + htab
->sgotplt
->output_offset
3116 htab
->splt
->contents
+ h
->plt
.offset
+ 24);
3118 else if (got_offset
< 4096)
3120 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC12_ENTRY_WORD0
+ got_offset
,
3121 htab
->splt
->contents
+ h
->plt
.offset
);
3122 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC12_ENTRY_WORD1
,
3123 htab
->splt
->contents
+ h
->plt
.offset
+ 4);
3124 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC12_ENTRY_WORD2
,
3125 htab
->splt
->contents
+ h
->plt
.offset
+ 8);
3126 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC12_ENTRY_WORD3
,
3127 htab
->splt
->contents
+ h
->plt
.offset
+ 12);
3128 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC12_ENTRY_WORD4
,
3129 htab
->splt
->contents
+ h
->plt
.offset
+ 16);
3130 bfd_put_32 (output_bfd
, (bfd_vma
) 0+(relative_offset
<< 16),
3131 htab
->splt
->contents
+ h
->plt
.offset
+ 20);
3132 bfd_put_32 (output_bfd
, (bfd_vma
) 0,
3133 htab
->splt
->contents
+ h
->plt
.offset
+ 24);
3135 else if (got_offset
< 32768)
3137 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC16_ENTRY_WORD0
+ got_offset
,
3138 htab
->splt
->contents
+ h
->plt
.offset
);
3139 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC16_ENTRY_WORD1
,
3140 htab
->splt
->contents
+ h
->plt
.offset
+ 4);
3141 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC16_ENTRY_WORD2
,
3142 htab
->splt
->contents
+ h
->plt
.offset
+ 8);
3143 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC16_ENTRY_WORD3
,
3144 htab
->splt
->contents
+ h
->plt
.offset
+ 12);
3145 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC16_ENTRY_WORD4
,
3146 htab
->splt
->contents
+ h
->plt
.offset
+ 16);
3147 bfd_put_32 (output_bfd
, (bfd_vma
) 0+(relative_offset
<< 16),
3148 htab
->splt
->contents
+ h
->plt
.offset
+ 20);
3149 bfd_put_32 (output_bfd
, (bfd_vma
) 0,
3150 htab
->splt
->contents
+ h
->plt
.offset
+ 24);
3154 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_ENTRY_WORD0
,
3155 htab
->splt
->contents
+ h
->plt
.offset
);
3156 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_ENTRY_WORD1
,
3157 htab
->splt
->contents
+ h
->plt
.offset
+ 4);
3158 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_ENTRY_WORD2
,
3159 htab
->splt
->contents
+ h
->plt
.offset
+ 8);
3160 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_ENTRY_WORD3
,
3161 htab
->splt
->contents
+ h
->plt
.offset
+ 12);
3162 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_ENTRY_WORD4
,
3163 htab
->splt
->contents
+ h
->plt
.offset
+ 16);
3164 bfd_put_32 (output_bfd
, (bfd_vma
) 0+(relative_offset
<< 16),
3165 htab
->splt
->contents
+ h
->plt
.offset
+ 20);
3166 bfd_put_32 (output_bfd
, got_offset
,
3167 htab
->splt
->contents
+ h
->plt
.offset
+ 24);
3169 /* Insert offset into reloc. table here. */
3170 bfd_put_32 (output_bfd
, plt_index
* sizeof (Elf32_External_Rela
),
3171 htab
->splt
->contents
+ h
->plt
.offset
+ 28);
3173 /* Fill in the entry in the global offset table.
3174 Points to instruction after GOT offset. */
3175 bfd_put_32 (output_bfd
,
3176 (htab
->splt
->output_section
->vma
3177 + htab
->splt
->output_offset
3180 htab
->sgotplt
->contents
+ got_offset
);
3182 /* Fill in the entry in the .rela.plt section. */
3183 rela
.r_offset
= (htab
->sgotplt
->output_section
->vma
3184 + htab
->sgotplt
->output_offset
3186 rela
.r_info
= ELF32_R_INFO (h
->dynindx
, R_390_JMP_SLOT
);
3188 loc
= htab
->srelplt
->contents
+ plt_index
* sizeof (Elf32_External_Rela
);
3189 bfd_elf32_swap_reloca_out (output_bfd
, &rela
, loc
);
3191 if (!h
->def_regular
)
3193 /* Mark the symbol as undefined, rather than as defined in
3194 the .plt section. Leave the value alone. This is a clue
3195 for the dynamic linker, to make function pointer
3196 comparisons work between an application and shared
3198 sym
->st_shndx
= SHN_UNDEF
;
3202 if (h
->got
.offset
!= (bfd_vma
) -1
3203 && elf_s390_hash_entry(h
)->tls_type
!= GOT_TLS_GD
3204 && elf_s390_hash_entry(h
)->tls_type
!= GOT_TLS_IE
3205 && elf_s390_hash_entry(h
)->tls_type
!= GOT_TLS_IE_NLT
)
3207 Elf_Internal_Rela rela
;
3210 /* This symbol has an entry in the global offset table. Set it
3213 if (htab
->sgot
== NULL
|| htab
->srelgot
== NULL
)
3216 rela
.r_offset
= (htab
->sgot
->output_section
->vma
3217 + htab
->sgot
->output_offset
3218 + (h
->got
.offset
&~ (bfd_vma
) 1));
3220 /* If this is a static link, or it is a -Bsymbolic link and the
3221 symbol is defined locally or was forced to be local because
3222 of a version file, we just want to emit a RELATIVE reloc.
3223 The entry in the global offset table will already have been
3224 initialized in the relocate_section function. */
3231 BFD_ASSERT((h
->got
.offset
& 1) != 0);
3232 rela
.r_info
= ELF32_R_INFO (0, R_390_RELATIVE
);
3233 rela
.r_addend
= (h
->root
.u
.def
.value
3234 + h
->root
.u
.def
.section
->output_section
->vma
3235 + h
->root
.u
.def
.section
->output_offset
);
3239 BFD_ASSERT((h
->got
.offset
& 1) == 0);
3240 bfd_put_32 (output_bfd
, (bfd_vma
) 0, htab
->sgot
->contents
+ h
->got
.offset
);
3241 rela
.r_info
= ELF32_R_INFO (h
->dynindx
, R_390_GLOB_DAT
);
3245 loc
= htab
->srelgot
->contents
;
3246 loc
+= htab
->srelgot
->reloc_count
++ * sizeof (Elf32_External_Rela
);
3247 bfd_elf32_swap_reloca_out (output_bfd
, &rela
, loc
);
3252 Elf_Internal_Rela rela
;
3255 /* This symbols needs a copy reloc. Set it up. */
3257 if (h
->dynindx
== -1
3258 || (h
->root
.type
!= bfd_link_hash_defined
3259 && h
->root
.type
!= bfd_link_hash_defweak
)
3260 || htab
->srelbss
== NULL
)
3263 rela
.r_offset
= (h
->root
.u
.def
.value
3264 + h
->root
.u
.def
.section
->output_section
->vma
3265 + h
->root
.u
.def
.section
->output_offset
);
3266 rela
.r_info
= ELF32_R_INFO (h
->dynindx
, R_390_COPY
);
3268 loc
= htab
->srelbss
->contents
;
3269 loc
+= htab
->srelbss
->reloc_count
++ * sizeof (Elf32_External_Rela
);
3270 bfd_elf32_swap_reloca_out (output_bfd
, &rela
, loc
);
3273 /* Mark some specially defined symbols as absolute. */
3274 if (strcmp (h
->root
.root
.string
, "_DYNAMIC") == 0
3275 || strcmp (h
->root
.root
.string
, "_GLOBAL_OFFSET_TABLE_") == 0
3276 || strcmp (h
->root
.root
.string
, "_PROCEDURE_LINKAGE_TABLE_") == 0)
3277 sym
->st_shndx
= SHN_ABS
;
3282 /* Used to decide how to sort relocs in an optimal manner for the
3283 dynamic linker, before writing them out. */
3285 static enum elf_reloc_type_class
3286 elf_s390_reloc_type_class (rela
)
3287 const Elf_Internal_Rela
*rela
;
3289 switch ((int) ELF32_R_TYPE (rela
->r_info
))
3291 case R_390_RELATIVE
:
3292 return reloc_class_relative
;
3293 case R_390_JMP_SLOT
:
3294 return reloc_class_plt
;
3296 return reloc_class_copy
;
3298 return reloc_class_normal
;
3302 /* Finish up the dynamic sections. */
3305 elf_s390_finish_dynamic_sections (output_bfd
, info
)
3307 struct bfd_link_info
*info
;
3309 struct elf_s390_link_hash_table
*htab
;
3313 htab
= elf_s390_hash_table (info
);
3314 dynobj
= htab
->elf
.dynobj
;
3315 sdyn
= bfd_get_section_by_name (dynobj
, ".dynamic");
3317 if (htab
->elf
.dynamic_sections_created
)
3319 Elf32_External_Dyn
*dyncon
, *dynconend
;
3321 if (sdyn
== NULL
|| htab
->sgot
== NULL
)
3324 dyncon
= (Elf32_External_Dyn
*) sdyn
->contents
;
3325 dynconend
= (Elf32_External_Dyn
*) (sdyn
->contents
+ sdyn
->size
);
3326 for (; dyncon
< dynconend
; dyncon
++)
3328 Elf_Internal_Dyn dyn
;
3331 bfd_elf32_swap_dyn_in (dynobj
, dyncon
, &dyn
);
3339 dyn
.d_un
.d_ptr
= htab
->sgot
->output_section
->vma
;
3343 dyn
.d_un
.d_ptr
= htab
->srelplt
->output_section
->vma
;
3347 s
= htab
->srelplt
->output_section
;
3348 dyn
.d_un
.d_val
= s
->size
;
3352 bfd_elf32_swap_dyn_out (output_bfd
, &dyn
, dyncon
);
3355 /* Fill in the special first entry in the procedure linkage table. */
3356 if (htab
->splt
&& htab
->splt
->size
> 0)
3358 memset (htab
->splt
->contents
, 0, PLT_FIRST_ENTRY_SIZE
);
3361 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_FIRST_ENTRY_WORD0
,
3362 htab
->splt
->contents
);
3363 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_FIRST_ENTRY_WORD1
,
3364 htab
->splt
->contents
+4 );
3365 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_FIRST_ENTRY_WORD2
,
3366 htab
->splt
->contents
+8 );
3367 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_FIRST_ENTRY_WORD3
,
3368 htab
->splt
->contents
+12 );
3369 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_PIC_FIRST_ENTRY_WORD4
,
3370 htab
->splt
->contents
+16 );
3374 bfd_put_32 (output_bfd
, (bfd_vma
)PLT_FIRST_ENTRY_WORD0
,
3375 htab
->splt
->contents
);
3376 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_FIRST_ENTRY_WORD1
,
3377 htab
->splt
->contents
+4 );
3378 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_FIRST_ENTRY_WORD2
,
3379 htab
->splt
->contents
+8 );
3380 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_FIRST_ENTRY_WORD3
,
3381 htab
->splt
->contents
+12 );
3382 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_FIRST_ENTRY_WORD4
,
3383 htab
->splt
->contents
+16 );
3384 bfd_put_32 (output_bfd
, (bfd_vma
) PLT_FIRST_ENTRY_WORD5
,
3385 htab
->splt
->contents
+20 );
3386 bfd_put_32 (output_bfd
,
3387 htab
->sgotplt
->output_section
->vma
3388 + htab
->sgotplt
->output_offset
,
3389 htab
->splt
->contents
+ 24);
3391 elf_section_data (htab
->splt
->output_section
)
3392 ->this_hdr
.sh_entsize
= 4;
3399 /* Fill in the first three entries in the global offset table. */
3400 if (htab
->sgotplt
->size
> 0)
3402 bfd_put_32 (output_bfd
,
3403 (sdyn
== NULL
? (bfd_vma
) 0
3404 : sdyn
->output_section
->vma
+ sdyn
->output_offset
),
3405 htab
->sgotplt
->contents
);
3406 /* One entry for shared object struct ptr. */
3407 bfd_put_32 (output_bfd
, (bfd_vma
) 0, htab
->sgotplt
->contents
+ 4);
3408 /* One entry for _dl_runtime_resolve. */
3409 bfd_put_32 (output_bfd
, (bfd_vma
) 0, htab
->sgotplt
->contents
+ 8);
3412 elf_section_data (htab
->sgotplt
->output_section
)
3413 ->this_hdr
.sh_entsize
= 4;
3419 elf_s390_grok_prstatus (abfd
, note
)
3421 Elf_Internal_Note
* note
;
3426 switch (note
->descsz
)
3431 case 224: /* S/390 Linux. */
3433 elf_tdata (abfd
)->core_signal
= bfd_get_16 (abfd
, note
->descdata
+ 12);
3436 elf_tdata (abfd
)->core_pid
= bfd_get_32 (abfd
, note
->descdata
+ 24);
3444 /* Make a ".reg/999" section. */
3445 return _bfd_elfcore_make_pseudosection (abfd
, ".reg",
3446 size
, note
->descpos
+ offset
);
3449 /* Return address for Ith PLT stub in section PLT, for relocation REL
3450 or (bfd_vma) -1 if it should not be included. */
3453 elf_s390_plt_sym_val (bfd_vma i
, const asection
*plt
,
3454 const arelent
*rel ATTRIBUTE_UNUSED
)
3456 return plt
->vma
+ PLT_FIRST_ENTRY_SIZE
+ i
* PLT_ENTRY_SIZE
;
3460 #define TARGET_BIG_SYM bfd_elf32_s390_vec
3461 #define TARGET_BIG_NAME "elf32-s390"
3462 #define ELF_ARCH bfd_arch_s390
3463 #define ELF_MACHINE_CODE EM_S390
3464 #define ELF_MACHINE_ALT1 EM_S390_OLD
3465 #define ELF_MAXPAGESIZE 0x1000
3467 #define elf_backend_can_gc_sections 1
3468 #define elf_backend_can_refcount 1
3469 #define elf_backend_want_got_plt 1
3470 #define elf_backend_plt_readonly 1
3471 #define elf_backend_want_plt_sym 0
3472 #define elf_backend_got_header_size 12
3473 #define elf_backend_rela_normal 1
3475 #define elf_info_to_howto elf_s390_info_to_howto
3477 #define bfd_elf32_bfd_is_local_label_name elf_s390_is_local_label_name
3478 #define bfd_elf32_bfd_link_hash_table_create elf_s390_link_hash_table_create
3479 #define bfd_elf32_bfd_reloc_type_lookup elf_s390_reloc_type_lookup
3481 #define elf_backend_adjust_dynamic_symbol elf_s390_adjust_dynamic_symbol
3482 #define elf_backend_check_relocs elf_s390_check_relocs
3483 #define elf_backend_copy_indirect_symbol elf_s390_copy_indirect_symbol
3484 #define elf_backend_create_dynamic_sections elf_s390_create_dynamic_sections
3485 #define elf_backend_finish_dynamic_sections elf_s390_finish_dynamic_sections
3486 #define elf_backend_finish_dynamic_symbol elf_s390_finish_dynamic_symbol
3487 #define elf_backend_gc_mark_hook elf_s390_gc_mark_hook
3488 #define elf_backend_gc_sweep_hook elf_s390_gc_sweep_hook
3489 #define elf_backend_reloc_type_class elf_s390_reloc_type_class
3490 #define elf_backend_relocate_section elf_s390_relocate_section
3491 #define elf_backend_size_dynamic_sections elf_s390_size_dynamic_sections
3492 #define elf_backend_reloc_type_class elf_s390_reloc_type_class
3493 #define elf_backend_grok_prstatus elf_s390_grok_prstatus
3494 #define elf_backend_plt_sym_val elf_s390_plt_sym_val
3496 #define bfd_elf32_mkobject elf_s390_mkobject
3497 #define elf_backend_object_p elf_s390_object_p
3499 #include "elf32-target.h"