1 1.1 christos /* BFD back-end for National Semiconductor's CR16 ELF 2 1.10 christos Copyright (C) 2007-2025 Free Software Foundation, Inc. 3 1.1 christos Written by M R Swami Reddy. 4 1.1 christos 5 1.1 christos This file is part of BFD, the Binary File Descriptor library. 6 1.1 christos 7 1.1 christos This program is free software; you can redistribute it and/or modify 8 1.1 christos it under the terms of the GNU General Public License as published by 9 1.1 christos the Free Software Foundation; either version 3 of the License, or 10 1.1 christos (at your option) any later version. 11 1.1 christos 12 1.1 christos This program is distributed in the hope that it will be useful, 13 1.1 christos but WITHOUT ANY WARRANTY; without even the implied warranty of 14 1.1 christos MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 15 1.1 christos GNU General Public License for more details. 16 1.1 christos 17 1.1 christos You should have received a copy of the GNU General Public License 18 1.1 christos along with this program; if not, write to the Free Software Foundation, 19 1.1 christos Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */ 20 1.1 christos 21 1.1 christos #include "sysdep.h" 22 1.1 christos #include "bfd.h" 23 1.1 christos #include "bfdlink.h" 24 1.1 christos #include "libbfd.h" 25 1.1 christos #include "libiberty.h" 26 1.1 christos #include "elf-bfd.h" 27 1.1 christos #include "elf/cr16.h" 28 1.7 christos #include "elf32-cr16.h" 29 1.1 christos 30 1.1 christos /* The cr16 linker needs to keep track of the number of relocs that 31 1.1 christos it decides to copy in check_relocs for each symbol. This is so 32 1.1 christos that it can discard PC relative relocs if it doesn't need them when 33 1.1 christos linking with -Bsymbolic. We store the information in a field 34 1.1 christos extending the regular ELF linker hash table. */ 35 1.1 christos 36 1.1 christos struct elf32_cr16_link_hash_entry 37 1.1 christos { 38 1.1 christos /* The basic elf link hash table entry. */ 39 1.1 christos struct elf_link_hash_entry root; 40 1.1 christos 41 1.1 christos /* For function symbols, the number of times this function is 42 1.1 christos called directly (ie by name). */ 43 1.1 christos unsigned int direct_calls; 44 1.1 christos 45 1.1 christos /* For function symbols, the size of this function's stack 46 1.1 christos (if <= 255 bytes). We stuff this into "call" instructions 47 1.1 christos to this target when it's valid and profitable to do so. 48 1.1 christos 49 1.1 christos This does not include stack allocated by movm! */ 50 1.1 christos unsigned char stack_size; 51 1.1 christos 52 1.1 christos /* For function symbols, arguments (if any) for movm instruction 53 1.1 christos in the prologue. We stuff this value into "call" instructions 54 1.1 christos to the target when it's valid and profitable to do so. */ 55 1.1 christos unsigned char movm_args; 56 1.1 christos 57 1.1 christos /* For function symbols, the amount of stack space that would be allocated 58 1.1 christos by the movm instruction. This is redundant with movm_args, but we 59 1.1 christos add it to the hash table to avoid computing it over and over. */ 60 1.1 christos unsigned char movm_stack_size; 61 1.1 christos 62 1.1 christos /* Used to mark functions which have had redundant parts of their 63 1.1 christos prologue deleted. */ 64 1.1 christos #define CR16_DELETED_PROLOGUE_BYTES 0x1 65 1.1 christos unsigned char flags; 66 1.1 christos 67 1.1 christos /* Calculated value. */ 68 1.1 christos bfd_vma value; 69 1.1 christos }; 70 1.1 christos 71 1.1 christos /* cr16_reloc_map array maps BFD relocation enum into a CRGAS relocation type. */ 72 1.1 christos 73 1.1 christos struct cr16_reloc_map 74 1.1 christos { 75 1.1 christos bfd_reloc_code_real_type bfd_reloc_enum; /* BFD relocation enum. */ 76 1.6 christos unsigned short cr16_reloc_type; /* CR16 relocation type. */ 77 1.1 christos }; 78 1.1 christos 79 1.1 christos static const struct cr16_reloc_map cr16_reloc_map[R_CR16_MAX] = 80 1.1 christos { 81 1.6 christos {BFD_RELOC_NONE, R_CR16_NONE}, 82 1.6 christos {BFD_RELOC_CR16_NUM8, R_CR16_NUM8}, 83 1.1 christos {BFD_RELOC_CR16_NUM16, R_CR16_NUM16}, 84 1.1 christos {BFD_RELOC_CR16_NUM32, R_CR16_NUM32}, 85 1.1 christos {BFD_RELOC_CR16_NUM32a, R_CR16_NUM32a}, 86 1.1 christos {BFD_RELOC_CR16_REGREL4, R_CR16_REGREL4}, 87 1.1 christos {BFD_RELOC_CR16_REGREL4a, R_CR16_REGREL4a}, 88 1.1 christos {BFD_RELOC_CR16_REGREL14, R_CR16_REGREL14}, 89 1.1 christos {BFD_RELOC_CR16_REGREL14a, R_CR16_REGREL14a}, 90 1.1 christos {BFD_RELOC_CR16_REGREL16, R_CR16_REGREL16}, 91 1.1 christos {BFD_RELOC_CR16_REGREL20, R_CR16_REGREL20}, 92 1.1 christos {BFD_RELOC_CR16_REGREL20a, R_CR16_REGREL20a}, 93 1.1 christos {BFD_RELOC_CR16_ABS20, R_CR16_ABS20}, 94 1.1 christos {BFD_RELOC_CR16_ABS24, R_CR16_ABS24}, 95 1.6 christos {BFD_RELOC_CR16_IMM4, R_CR16_IMM4}, 96 1.6 christos {BFD_RELOC_CR16_IMM8, R_CR16_IMM8}, 97 1.1 christos {BFD_RELOC_CR16_IMM16, R_CR16_IMM16}, 98 1.1 christos {BFD_RELOC_CR16_IMM20, R_CR16_IMM20}, 99 1.1 christos {BFD_RELOC_CR16_IMM24, R_CR16_IMM24}, 100 1.1 christos {BFD_RELOC_CR16_IMM32, R_CR16_IMM32}, 101 1.1 christos {BFD_RELOC_CR16_IMM32a, R_CR16_IMM32a}, 102 1.1 christos {BFD_RELOC_CR16_DISP4, R_CR16_DISP4}, 103 1.1 christos {BFD_RELOC_CR16_DISP8, R_CR16_DISP8}, 104 1.1 christos {BFD_RELOC_CR16_DISP16, R_CR16_DISP16}, 105 1.1 christos {BFD_RELOC_CR16_DISP24, R_CR16_DISP24}, 106 1.1 christos {BFD_RELOC_CR16_DISP24a, R_CR16_DISP24a}, 107 1.1 christos {BFD_RELOC_CR16_SWITCH8, R_CR16_SWITCH8}, 108 1.1 christos {BFD_RELOC_CR16_SWITCH16, R_CR16_SWITCH16}, 109 1.1 christos {BFD_RELOC_CR16_SWITCH32, R_CR16_SWITCH32}, 110 1.1 christos {BFD_RELOC_CR16_GOT_REGREL20, R_CR16_GOT_REGREL20}, 111 1.1 christos {BFD_RELOC_CR16_GOTC_REGREL20, R_CR16_GOTC_REGREL20}, 112 1.1 christos {BFD_RELOC_CR16_GLOB_DAT, R_CR16_GLOB_DAT} 113 1.1 christos }; 114 1.1 christos 115 1.1 christos static reloc_howto_type cr16_elf_howto_table[] = 116 1.1 christos { 117 1.6 christos HOWTO (R_CR16_NONE, /* type */ 118 1.6 christos 0, /* rightshift */ 119 1.8 christos 0, /* size */ 120 1.6 christos 0, /* bitsize */ 121 1.8 christos false, /* pc_relative */ 122 1.6 christos 0, /* bitpos */ 123 1.6 christos complain_overflow_dont, /* complain_on_overflow */ 124 1.6 christos bfd_elf_generic_reloc, /* special_function */ 125 1.6 christos "R_CR16_NONE", /* name */ 126 1.8 christos false, /* partial_inplace */ 127 1.6 christos 0, /* src_mask */ 128 1.6 christos 0, /* dst_mask */ 129 1.8 christos false), /* pcrel_offset */ 130 1.6 christos 131 1.6 christos HOWTO (R_CR16_NUM8, /* type */ 132 1.6 christos 0, /* rightshift */ 133 1.8 christos 1, /* size */ 134 1.6 christos 8, /* bitsize */ 135 1.8 christos false, /* pc_relative */ 136 1.6 christos 0, /* bitpos */ 137 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 138 1.6 christos bfd_elf_generic_reloc, /* special_function */ 139 1.6 christos "R_CR16_NUM8", /* name */ 140 1.8 christos false, /* partial_inplace */ 141 1.6 christos 0x0, /* src_mask */ 142 1.6 christos 0xff, /* dst_mask */ 143 1.8 christos false), /* pcrel_offset */ 144 1.6 christos 145 1.6 christos HOWTO (R_CR16_NUM16, /* type */ 146 1.6 christos 0, /* rightshift */ 147 1.8 christos 2, /* size */ 148 1.6 christos 16, /* bitsize */ 149 1.8 christos false, /* pc_relative */ 150 1.6 christos 0, /* bitpos */ 151 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 152 1.6 christos bfd_elf_generic_reloc, /* special_function */ 153 1.6 christos "R_CR16_NUM16", /* name */ 154 1.8 christos false, /* partial_inplace */ 155 1.6 christos 0x0, /* src_mask */ 156 1.6 christos 0xffff, /* dst_mask */ 157 1.8 christos false), /* pcrel_offset */ 158 1.6 christos 159 1.6 christos HOWTO (R_CR16_NUM32, /* type */ 160 1.6 christos 0, /* rightshift */ 161 1.8 christos 4, /* size */ 162 1.6 christos 32, /* bitsize */ 163 1.8 christos false, /* pc_relative */ 164 1.6 christos 0, /* bitpos */ 165 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 166 1.6 christos bfd_elf_generic_reloc, /* special_function */ 167 1.6 christos "R_CR16_NUM32", /* name */ 168 1.8 christos false, /* partial_inplace */ 169 1.6 christos 0x0, /* src_mask */ 170 1.6 christos 0xffffffff, /* dst_mask */ 171 1.8 christos false), /* pcrel_offset */ 172 1.6 christos 173 1.6 christos HOWTO (R_CR16_NUM32a, /* type */ 174 1.6 christos 1, /* rightshift */ 175 1.8 christos 4, /* size */ 176 1.6 christos 32, /* bitsize */ 177 1.8 christos false, /* pc_relative */ 178 1.6 christos 0, /* bitpos */ 179 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 180 1.6 christos bfd_elf_generic_reloc, /* special_function */ 181 1.6 christos "R_CR16_NUM32a", /* name */ 182 1.8 christos false, /* partial_inplace */ 183 1.6 christos 0x0, /* src_mask */ 184 1.6 christos 0xffffffff, /* dst_mask */ 185 1.8 christos false), /* pcrel_offset */ 186 1.6 christos 187 1.6 christos HOWTO (R_CR16_REGREL4, /* type */ 188 1.6 christos 0, /* rightshift */ 189 1.8 christos 1, /* size */ 190 1.6 christos 4, /* bitsize */ 191 1.8 christos false, /* pc_relative */ 192 1.6 christos 0, /* bitpos */ 193 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 194 1.6 christos bfd_elf_generic_reloc, /* special_function */ 195 1.6 christos "R_CR16_REGREL4", /* name */ 196 1.8 christos false, /* partial_inplace */ 197 1.6 christos 0x0, /* src_mask */ 198 1.6 christos 0xf, /* dst_mask */ 199 1.8 christos false), /* pcrel_offset */ 200 1.6 christos 201 1.6 christos HOWTO (R_CR16_REGREL4a, /* type */ 202 1.6 christos 0, /* rightshift */ 203 1.8 christos 1, /* size */ 204 1.6 christos 4, /* bitsize */ 205 1.8 christos false, /* pc_relative */ 206 1.6 christos 0, /* bitpos */ 207 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 208 1.6 christos bfd_elf_generic_reloc, /* special_function */ 209 1.6 christos "R_CR16_REGREL4a", /* name */ 210 1.8 christos false, /* partial_inplace */ 211 1.6 christos 0x0, /* src_mask */ 212 1.6 christos 0xf, /* dst_mask */ 213 1.8 christos false), /* pcrel_offset */ 214 1.6 christos 215 1.6 christos HOWTO (R_CR16_REGREL14, /* type */ 216 1.6 christos 0, /* rightshift */ 217 1.8 christos 2, /* size */ 218 1.6 christos 14, /* bitsize */ 219 1.8 christos false, /* pc_relative */ 220 1.6 christos 0, /* bitpos */ 221 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 222 1.6 christos bfd_elf_generic_reloc, /* special_function */ 223 1.6 christos "R_CR16_REGREL14", /* name */ 224 1.8 christos false, /* partial_inplace */ 225 1.6 christos 0x0, /* src_mask */ 226 1.6 christos 0x3fff, /* dst_mask */ 227 1.8 christos false), /* pcrel_offset */ 228 1.6 christos 229 1.6 christos HOWTO (R_CR16_REGREL14a, /* type */ 230 1.6 christos 0, /* rightshift */ 231 1.8 christos 2, /* size */ 232 1.6 christos 14, /* bitsize */ 233 1.8 christos false, /* pc_relative */ 234 1.6 christos 0, /* bitpos */ 235 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 236 1.6 christos bfd_elf_generic_reloc, /* special_function */ 237 1.6 christos "R_CR16_REGREL14a", /* name */ 238 1.8 christos false, /* partial_inplace */ 239 1.6 christos 0x0, /* src_mask */ 240 1.6 christos 0x3fff, /* dst_mask */ 241 1.8 christos false), /* pcrel_offset */ 242 1.6 christos 243 1.6 christos HOWTO (R_CR16_REGREL16, /* type */ 244 1.6 christos 0, /* rightshift */ 245 1.8 christos 2, /* size */ 246 1.6 christos 16, /* bitsize */ 247 1.8 christos false, /* pc_relative */ 248 1.6 christos 0, /* bitpos */ 249 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 250 1.6 christos bfd_elf_generic_reloc, /* special_function */ 251 1.6 christos "R_CR16_REGREL16", /* name */ 252 1.8 christos false, /* partial_inplace */ 253 1.6 christos 0x0, /* src_mask */ 254 1.6 christos 0xffff, /* dst_mask */ 255 1.8 christos false), /* pcrel_offset */ 256 1.6 christos 257 1.6 christos HOWTO (R_CR16_REGREL20, /* type */ 258 1.6 christos 0, /* rightshift */ 259 1.8 christos 4, /* size */ 260 1.6 christos 20, /* bitsize */ 261 1.8 christos false, /* pc_relative */ 262 1.6 christos 0, /* bitpos */ 263 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 264 1.6 christos bfd_elf_generic_reloc, /* special_function */ 265 1.6 christos "R_CR16_REGREL20", /* name */ 266 1.8 christos false, /* partial_inplace */ 267 1.6 christos 0x0, /* src_mask */ 268 1.6 christos 0xfffff, /* dst_mask */ 269 1.8 christos false), /* pcrel_offset */ 270 1.6 christos 271 1.6 christos HOWTO (R_CR16_REGREL20a, /* type */ 272 1.6 christos 0, /* rightshift */ 273 1.8 christos 4, /* size */ 274 1.6 christos 20, /* bitsize */ 275 1.8 christos false, /* pc_relative */ 276 1.6 christos 0, /* bitpos */ 277 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 278 1.6 christos bfd_elf_generic_reloc, /* special_function */ 279 1.6 christos "R_CR16_REGREL20a", /* name */ 280 1.8 christos false, /* partial_inplace */ 281 1.6 christos 0x0, /* src_mask */ 282 1.6 christos 0xfffff, /* dst_mask */ 283 1.8 christos false), /* pcrel_offset */ 284 1.6 christos 285 1.6 christos HOWTO (R_CR16_ABS20, /* type */ 286 1.6 christos 0, /* rightshift */ 287 1.8 christos 4, /* size */ 288 1.6 christos 20, /* bitsize */ 289 1.8 christos false, /* pc_relative */ 290 1.6 christos 0, /* bitpos */ 291 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 292 1.6 christos bfd_elf_generic_reloc, /* special_function */ 293 1.6 christos "R_CR16_ABS20", /* name */ 294 1.8 christos false, /* partial_inplace */ 295 1.6 christos 0x0, /* src_mask */ 296 1.6 christos 0xfffff, /* dst_mask */ 297 1.8 christos false), /* pcrel_offset */ 298 1.6 christos 299 1.6 christos HOWTO (R_CR16_ABS24, /* type */ 300 1.6 christos 0, /* rightshift */ 301 1.8 christos 4, /* size */ 302 1.6 christos 24, /* bitsize */ 303 1.8 christos false, /* pc_relative */ 304 1.6 christos 0, /* bitpos */ 305 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 306 1.6 christos bfd_elf_generic_reloc, /* special_function */ 307 1.6 christos "R_CR16_ABS24", /* name */ 308 1.8 christos false, /* partial_inplace */ 309 1.6 christos 0x0, /* src_mask */ 310 1.6 christos 0xffffff, /* dst_mask */ 311 1.8 christos false), /* pcrel_offset */ 312 1.6 christos 313 1.6 christos HOWTO (R_CR16_IMM4, /* type */ 314 1.6 christos 0, /* rightshift */ 315 1.8 christos 1, /* size */ 316 1.6 christos 4, /* bitsize */ 317 1.8 christos false, /* pc_relative */ 318 1.6 christos 0, /* bitpos */ 319 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 320 1.6 christos bfd_elf_generic_reloc, /* special_function */ 321 1.6 christos "R_CR16_IMM4", /* name */ 322 1.8 christos false, /* partial_inplace */ 323 1.6 christos 0x0, /* src_mask */ 324 1.6 christos 0xf, /* dst_mask */ 325 1.8 christos false), /* pcrel_offset */ 326 1.6 christos 327 1.6 christos HOWTO (R_CR16_IMM8, /* type */ 328 1.6 christos 0, /* rightshift */ 329 1.8 christos 1, /* size */ 330 1.6 christos 8, /* bitsize */ 331 1.8 christos false, /* pc_relative */ 332 1.6 christos 0, /* bitpos */ 333 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 334 1.6 christos bfd_elf_generic_reloc, /* special_function */ 335 1.6 christos "R_CR16_IMM8", /* name */ 336 1.8 christos false, /* partial_inplace */ 337 1.6 christos 0x0, /* src_mask */ 338 1.6 christos 0xff, /* dst_mask */ 339 1.8 christos false), /* pcrel_offset */ 340 1.6 christos 341 1.6 christos HOWTO (R_CR16_IMM16, /* type */ 342 1.6 christos 0, /* rightshift */ 343 1.8 christos 2, /* size */ 344 1.6 christos 16, /* bitsize */ 345 1.8 christos false, /* pc_relative */ 346 1.6 christos 0, /* bitpos */ 347 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 348 1.6 christos bfd_elf_generic_reloc, /* special_function */ 349 1.6 christos "R_CR16_IMM16", /* name */ 350 1.8 christos false, /* partial_inplace */ 351 1.6 christos 0x0, /* src_mask */ 352 1.6 christos 0xffff, /* dst_mask */ 353 1.8 christos false), /* pcrel_offset */ 354 1.6 christos 355 1.6 christos HOWTO (R_CR16_IMM20, /* type */ 356 1.6 christos 0, /* rightshift */ 357 1.8 christos 4, /* size */ 358 1.6 christos 20, /* bitsize */ 359 1.8 christos false, /* pc_relative */ 360 1.6 christos 0, /* bitpos */ 361 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 362 1.6 christos bfd_elf_generic_reloc, /* special_function */ 363 1.6 christos "R_CR16_IMM20", /* name */ 364 1.8 christos false, /* partial_inplace */ 365 1.6 christos 0x0, /* src_mask */ 366 1.6 christos 0xfffff, /* dst_mask */ 367 1.8 christos false), /* pcrel_offset */ 368 1.6 christos 369 1.6 christos HOWTO (R_CR16_IMM24, /* type */ 370 1.6 christos 0, /* rightshift */ 371 1.8 christos 4, /* size */ 372 1.6 christos 24, /* bitsize */ 373 1.8 christos false, /* pc_relative */ 374 1.6 christos 0, /* bitpos */ 375 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 376 1.6 christos bfd_elf_generic_reloc, /* special_function */ 377 1.6 christos "R_CR16_IMM24", /* name */ 378 1.8 christos false, /* partial_inplace */ 379 1.6 christos 0x0, /* src_mask */ 380 1.6 christos 0xffffff, /* dst_mask */ 381 1.8 christos false), /* pcrel_offset */ 382 1.6 christos 383 1.6 christos HOWTO (R_CR16_IMM32, /* type */ 384 1.6 christos 0, /* rightshift */ 385 1.8 christos 4, /* size */ 386 1.6 christos 32, /* bitsize */ 387 1.8 christos false, /* pc_relative */ 388 1.6 christos 0, /* bitpos */ 389 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 390 1.6 christos bfd_elf_generic_reloc, /* special_function */ 391 1.6 christos "R_CR16_IMM32", /* name */ 392 1.8 christos false, /* partial_inplace */ 393 1.6 christos 0x0, /* src_mask */ 394 1.6 christos 0xffffffff, /* dst_mask */ 395 1.8 christos false), /* pcrel_offset */ 396 1.6 christos 397 1.6 christos HOWTO (R_CR16_IMM32a, /* type */ 398 1.6 christos 1, /* rightshift */ 399 1.8 christos 4, /* size */ 400 1.6 christos 32, /* bitsize */ 401 1.8 christos false, /* pc_relative */ 402 1.6 christos 0, /* bitpos */ 403 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 404 1.6 christos bfd_elf_generic_reloc, /* special_function */ 405 1.6 christos "R_CR16_IMM32a", /* name */ 406 1.8 christos false, /* partial_inplace */ 407 1.6 christos 0x0, /* src_mask */ 408 1.6 christos 0xffffffff, /* dst_mask */ 409 1.8 christos false), /* pcrel_offset */ 410 1.6 christos 411 1.6 christos HOWTO (R_CR16_DISP4, /* type */ 412 1.6 christos 1, /* rightshift */ 413 1.8 christos 1, /* size */ 414 1.6 christos 4, /* bitsize */ 415 1.8 christos true, /* pc_relative */ 416 1.6 christos 0, /* bitpos */ 417 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 418 1.6 christos bfd_elf_generic_reloc, /* special_function */ 419 1.6 christos "R_CR16_DISP4", /* name */ 420 1.8 christos false, /* partial_inplace */ 421 1.6 christos 0x0, /* src_mask */ 422 1.6 christos 0xf, /* dst_mask */ 423 1.8 christos false), /* pcrel_offset */ 424 1.6 christos 425 1.6 christos HOWTO (R_CR16_DISP8, /* type */ 426 1.6 christos 1, /* rightshift */ 427 1.8 christos 1, /* size */ 428 1.6 christos 8, /* bitsize */ 429 1.8 christos true, /* pc_relative */ 430 1.6 christos 0, /* bitpos */ 431 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 432 1.6 christos bfd_elf_generic_reloc, /* special_function */ 433 1.6 christos "R_CR16_DISP8", /* name */ 434 1.8 christos false, /* partial_inplace */ 435 1.6 christos 0x0, /* src_mask */ 436 1.6 christos 0x1ff, /* dst_mask */ 437 1.8 christos false), /* pcrel_offset */ 438 1.6 christos 439 1.6 christos HOWTO (R_CR16_DISP16, /* type */ 440 1.6 christos 0, /* rightshift REVIITS: To sync with WinIDEA*/ 441 1.8 christos 2, /* size */ 442 1.6 christos 16, /* bitsize */ 443 1.8 christos true, /* pc_relative */ 444 1.6 christos 0, /* bitpos */ 445 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 446 1.6 christos bfd_elf_generic_reloc, /* special_function */ 447 1.6 christos "R_CR16_DISP16", /* name */ 448 1.8 christos false, /* partial_inplace */ 449 1.6 christos 0x0, /* src_mask */ 450 1.6 christos 0x1ffff, /* dst_mask */ 451 1.8 christos false), /* pcrel_offset */ 452 1.1 christos /* REVISIT: DISP24 should be left-shift by 2 as per ISA doc 453 1.1 christos but its not done, to sync with WinIDEA and CR16 4.1 tools */ 454 1.6 christos HOWTO (R_CR16_DISP24, /* type */ 455 1.6 christos 0, /* rightshift */ 456 1.8 christos 4, /* size */ 457 1.6 christos 24, /* bitsize */ 458 1.8 christos true, /* pc_relative */ 459 1.6 christos 0, /* bitpos */ 460 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 461 1.6 christos bfd_elf_generic_reloc, /* special_function */ 462 1.6 christos "R_CR16_DISP24", /* name */ 463 1.8 christos false, /* partial_inplace */ 464 1.6 christos 0x0, /* src_mask */ 465 1.6 christos 0x1ffffff, /* dst_mask */ 466 1.8 christos false), /* pcrel_offset */ 467 1.6 christos 468 1.6 christos HOWTO (R_CR16_DISP24a, /* type */ 469 1.6 christos 0, /* rightshift */ 470 1.8 christos 4, /* size */ 471 1.6 christos 24, /* bitsize */ 472 1.8 christos true, /* pc_relative */ 473 1.6 christos 0, /* bitpos */ 474 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 475 1.6 christos bfd_elf_generic_reloc, /* special_function */ 476 1.6 christos "R_CR16_DISP24a", /* name */ 477 1.8 christos false, /* partial_inplace */ 478 1.6 christos 0x0, /* src_mask */ 479 1.6 christos 0xffffff, /* dst_mask */ 480 1.8 christos false), /* pcrel_offset */ 481 1.1 christos 482 1.1 christos /* An 8 bit switch table entry. This is generated for an expression 483 1.1 christos such as ``.byte L1 - L2''. The offset holds the difference 484 1.1 christos between the reloc address and L2. */ 485 1.6 christos HOWTO (R_CR16_SWITCH8, /* type */ 486 1.6 christos 0, /* rightshift */ 487 1.8 christos 1, /* size */ 488 1.6 christos 8, /* bitsize */ 489 1.8 christos false, /* pc_relative */ 490 1.6 christos 0, /* bitpos */ 491 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 492 1.6 christos bfd_elf_generic_reloc, /* special_function */ 493 1.6 christos "R_CR16_SWITCH8", /* name */ 494 1.8 christos false, /* partial_inplace */ 495 1.6 christos 0x0, /* src_mask */ 496 1.6 christos 0xff, /* dst_mask */ 497 1.8 christos true), /* pcrel_offset */ 498 1.1 christos 499 1.1 christos /* A 16 bit switch table entry. This is generated for an expression 500 1.1 christos such as ``.word L1 - L2''. The offset holds the difference 501 1.1 christos between the reloc address and L2. */ 502 1.6 christos HOWTO (R_CR16_SWITCH16, /* type */ 503 1.6 christos 0, /* rightshift */ 504 1.8 christos 2, /* size */ 505 1.6 christos 16, /* bitsize */ 506 1.8 christos false, /* pc_relative */ 507 1.6 christos 0, /* bitpos */ 508 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 509 1.6 christos bfd_elf_generic_reloc, /* special_function */ 510 1.6 christos "R_CR16_SWITCH16", /* name */ 511 1.8 christos false, /* partial_inplace */ 512 1.6 christos 0x0, /* src_mask */ 513 1.6 christos 0xffff, /* dst_mask */ 514 1.8 christos true), /* pcrel_offset */ 515 1.1 christos 516 1.1 christos /* A 32 bit switch table entry. This is generated for an expression 517 1.1 christos such as ``.long L1 - L2''. The offset holds the difference 518 1.1 christos between the reloc address and L2. */ 519 1.6 christos HOWTO (R_CR16_SWITCH32, /* type */ 520 1.6 christos 0, /* rightshift */ 521 1.8 christos 4, /* size */ 522 1.6 christos 32, /* bitsize */ 523 1.8 christos false, /* pc_relative */ 524 1.6 christos 0, /* bitpos */ 525 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 526 1.6 christos bfd_elf_generic_reloc, /* special_function */ 527 1.6 christos "R_CR16_SWITCH32", /* name */ 528 1.8 christos false, /* partial_inplace */ 529 1.6 christos 0x0, /* src_mask */ 530 1.6 christos 0xffffffff, /* dst_mask */ 531 1.8 christos true), /* pcrel_offset */ 532 1.6 christos 533 1.6 christos HOWTO (R_CR16_GOT_REGREL20, /* type */ 534 1.6 christos 0, /* rightshift */ 535 1.8 christos 4, /* size */ 536 1.6 christos 20, /* bitsize */ 537 1.8 christos false, /* pc_relative */ 538 1.6 christos 0, /* bitpos */ 539 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 540 1.6 christos bfd_elf_generic_reloc, /* special_function */ 541 1.6 christos "R_CR16_GOT_REGREL20", /* name */ 542 1.8 christos true, /* partial_inplace */ 543 1.6 christos 0x0, /* src_mask */ 544 1.6 christos 0xfffff, /* dst_mask */ 545 1.8 christos false), /* pcrel_offset */ 546 1.6 christos 547 1.6 christos HOWTO (R_CR16_GOTC_REGREL20, /* type */ 548 1.6 christos 0, /* rightshift */ 549 1.8 christos 4, /* size */ 550 1.6 christos 20, /* bitsize */ 551 1.8 christos false, /* pc_relative */ 552 1.6 christos 0, /* bitpos */ 553 1.6 christos complain_overflow_bitfield,/* complain_on_overflow */ 554 1.6 christos bfd_elf_generic_reloc, /* special_function */ 555 1.6 christos "R_CR16_GOTC_REGREL20", /* name */ 556 1.8 christos true, /* partial_inplace */ 557 1.6 christos 0x0, /* src_mask */ 558 1.6 christos 0xfffff, /* dst_mask */ 559 1.8 christos false), /* pcrel_offset */ 560 1.6 christos 561 1.6 christos HOWTO (R_CR16_GLOB_DAT, /* type */ 562 1.6 christos 0, /* rightshift */ 563 1.8 christos 4, /* size */ 564 1.6 christos 32, /* bitsize */ 565 1.8 christos false, /* pc_relative */ 566 1.6 christos 0, /* bitpos */ 567 1.6 christos complain_overflow_unsigned, /* complain_on_overflow */ 568 1.6 christos bfd_elf_generic_reloc, /* special_function */ 569 1.6 christos "R_CR16_GLOB_DAT", /* name */ 570 1.8 christos false, /* partial_inplace */ 571 1.6 christos 0x0, /* src_mask */ 572 1.6 christos 0xffffffff, /* dst_mask */ 573 1.8 christos true) /* pcrel_offset */ 574 1.1 christos }; 575 1.1 christos 576 1.1 christos 577 1.1 christos /* Create the GOT section. */ 578 1.1 christos 579 1.8 christos static bool 580 1.1 christos _bfd_cr16_elf_create_got_section (bfd * abfd, struct bfd_link_info * info) 581 1.1 christos { 582 1.1 christos flagword flags; 583 1.1 christos asection * s; 584 1.1 christos struct elf_link_hash_entry * h; 585 1.1 christos const struct elf_backend_data * bed = get_elf_backend_data (abfd); 586 1.6 christos struct elf_link_hash_table *htab = elf_hash_table (info); 587 1.1 christos int ptralign; 588 1.1 christos 589 1.1 christos /* This function may be called more than once. */ 590 1.6 christos if (htab->sgot != NULL) 591 1.8 christos return true; 592 1.1 christos 593 1.1 christos switch (bed->s->arch_size) 594 1.1 christos { 595 1.1 christos case 16: 596 1.1 christos ptralign = 1; 597 1.1 christos break; 598 1.1 christos 599 1.1 christos case 32: 600 1.1 christos ptralign = 2; 601 1.1 christos break; 602 1.1 christos 603 1.1 christos default: 604 1.1 christos bfd_set_error (bfd_error_bad_value); 605 1.8 christos return false; 606 1.1 christos } 607 1.1 christos 608 1.1 christos flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY 609 1.6 christos | SEC_LINKER_CREATED); 610 1.1 christos 611 1.1 christos s = bfd_make_section_anyway_with_flags (abfd, ".got", flags); 612 1.6 christos htab->sgot= s; 613 1.1 christos if (s == NULL 614 1.7 christos || !bfd_set_section_alignment (s, ptralign)) 615 1.8 christos return false; 616 1.1 christos 617 1.1 christos if (bed->want_got_plt) 618 1.1 christos { 619 1.1 christos s = bfd_make_section_anyway_with_flags (abfd, ".got.plt", flags); 620 1.6 christos htab->sgotplt = s; 621 1.1 christos if (s == NULL 622 1.7 christos || !bfd_set_section_alignment (s, ptralign)) 623 1.8 christos return false; 624 1.1 christos } 625 1.1 christos 626 1.1 christos /* Define the symbol _GLOBAL_OFFSET_TABLE_ at the start of the .got 627 1.1 christos (or .got.plt) section. We don't do this in the linker script 628 1.1 christos because we don't want to define the symbol if we are not creating 629 1.1 christos a global offset table. */ 630 1.1 christos h = _bfd_elf_define_linkage_sym (abfd, info, s, "_GLOBAL_OFFSET_TABLE_"); 631 1.6 christos htab->hgot = h; 632 1.1 christos if (h == NULL) 633 1.8 christos return false; 634 1.1 christos 635 1.1 christos /* The first bit of the global offset table is the header. */ 636 1.1 christos s->size += bed->got_header_size; 637 1.1 christos 638 1.8 christos return true; 639 1.1 christos } 640 1.1 christos 641 1.1 christos 642 1.1 christos /* Retrieve a howto ptr using a BFD reloc_code. */ 643 1.1 christos 644 1.1 christos static reloc_howto_type * 645 1.6 christos elf_cr16_reloc_type_lookup (bfd *abfd, 646 1.6 christos bfd_reloc_code_real_type code) 647 1.1 christos { 648 1.1 christos unsigned int i; 649 1.1 christos 650 1.1 christos for (i = 0; i < R_CR16_MAX; i++) 651 1.1 christos if (code == cr16_reloc_map[i].bfd_reloc_enum) 652 1.1 christos return &cr16_elf_howto_table[cr16_reloc_map[i].cr16_reloc_type]; 653 1.1 christos 654 1.6 christos _bfd_error_handler (_("%pB: unsupported relocation type %#x"), 655 1.6 christos abfd, code); 656 1.1 christos return NULL; 657 1.1 christos } 658 1.1 christos 659 1.1 christos static reloc_howto_type * 660 1.1 christos elf_cr16_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED, 661 1.6 christos const char *r_name) 662 1.1 christos { 663 1.1 christos unsigned int i; 664 1.1 christos 665 1.1 christos for (i = 0; ARRAY_SIZE (cr16_elf_howto_table); i++) 666 1.1 christos if (cr16_elf_howto_table[i].name != NULL 667 1.6 christos && strcasecmp (cr16_elf_howto_table[i].name, r_name) == 0) 668 1.1 christos return cr16_elf_howto_table + i; 669 1.1 christos 670 1.1 christos return NULL; 671 1.1 christos } 672 1.1 christos 673 1.1 christos /* Retrieve a howto ptr using an internal relocation entry. */ 674 1.1 christos 675 1.8 christos static bool 676 1.6 christos elf_cr16_info_to_howto (bfd *abfd, arelent *cache_ptr, 677 1.6 christos Elf_Internal_Rela *dst) 678 1.1 christos { 679 1.1 christos unsigned int r_type = ELF32_R_TYPE (dst->r_info); 680 1.1 christos 681 1.3 christos if (r_type >= R_CR16_MAX) 682 1.3 christos { 683 1.6 christos /* xgettext:c-format */ 684 1.6 christos _bfd_error_handler (_("%pB: unsupported relocation type %#x"), 685 1.6 christos abfd, r_type); 686 1.3 christos bfd_set_error (bfd_error_bad_value); 687 1.8 christos return false; 688 1.3 christos } 689 1.1 christos cache_ptr->howto = cr16_elf_howto_table + r_type; 690 1.8 christos return true; 691 1.1 christos } 692 1.1 christos 693 1.1 christos /* Look through the relocs for a section during the first phase. 694 1.1 christos Since we don't do .gots or .plts, we just need to consider the 695 1.1 christos virtual table relocs for gc. */ 696 1.1 christos 697 1.8 christos static bool 698 1.1 christos cr16_elf_check_relocs (bfd *abfd, struct bfd_link_info *info, asection *sec, 699 1.6 christos const Elf_Internal_Rela *relocs) 700 1.1 christos { 701 1.1 christos Elf_Internal_Shdr *symtab_hdr; 702 1.1 christos Elf_Internal_Sym * isymbuf = NULL; 703 1.8 christos struct elf_link_hash_entry **sym_hashes; 704 1.1 christos const Elf_Internal_Rela *rel; 705 1.1 christos const Elf_Internal_Rela *rel_end; 706 1.1 christos bfd * dynobj; 707 1.1 christos bfd_vma * local_got_offsets; 708 1.1 christos asection * sgot; 709 1.1 christos asection * srelgot; 710 1.1 christos 711 1.1 christos sgot = NULL; 712 1.1 christos srelgot = NULL; 713 1.8 christos bool result = false; 714 1.1 christos 715 1.3 christos if (bfd_link_relocatable (info)) 716 1.8 christos return true; 717 1.1 christos 718 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr; 719 1.1 christos sym_hashes = elf_sym_hashes (abfd); 720 1.1 christos 721 1.1 christos dynobj = elf_hash_table (info)->dynobj; 722 1.1 christos local_got_offsets = elf_local_got_offsets (abfd); 723 1.1 christos rel_end = relocs + sec->reloc_count; 724 1.1 christos for (rel = relocs; rel < rel_end; rel++) 725 1.1 christos { 726 1.1 christos struct elf_link_hash_entry *h; 727 1.1 christos unsigned long r_symndx; 728 1.1 christos 729 1.1 christos r_symndx = ELF32_R_SYM (rel->r_info); 730 1.1 christos if (r_symndx < symtab_hdr->sh_info) 731 1.6 christos h = NULL; 732 1.1 christos else 733 1.6 christos { 734 1.6 christos h = sym_hashes[r_symndx - symtab_hdr->sh_info]; 735 1.6 christos while (h->root.type == bfd_link_hash_indirect 736 1.6 christos || h->root.type == bfd_link_hash_warning) 737 1.6 christos h = (struct elf_link_hash_entry *) h->root.u.i.link; 738 1.6 christos } 739 1.1 christos 740 1.1 christos /* Some relocs require a global offset table. */ 741 1.1 christos if (dynobj == NULL) 742 1.6 christos { 743 1.6 christos switch (ELF32_R_TYPE (rel->r_info)) 744 1.6 christos { 745 1.6 christos case R_CR16_GOT_REGREL20: 746 1.6 christos case R_CR16_GOTC_REGREL20: 747 1.6 christos elf_hash_table (info)->dynobj = dynobj = abfd; 748 1.6 christos if (! _bfd_cr16_elf_create_got_section (dynobj, info)) 749 1.6 christos goto fail; 750 1.6 christos break; 751 1.6 christos 752 1.6 christos default: 753 1.6 christos break; 754 1.6 christos } 755 1.6 christos } 756 1.1 christos 757 1.1 christos switch (ELF32_R_TYPE (rel->r_info)) 758 1.6 christos { 759 1.6 christos case R_CR16_GOT_REGREL20: 760 1.6 christos case R_CR16_GOTC_REGREL20: 761 1.6 christos /* This symbol requires a global offset table entry. */ 762 1.6 christos 763 1.6 christos sgot = elf_hash_table (info)->sgot; 764 1.6 christos srelgot = elf_hash_table (info)->srelgot; 765 1.6 christos BFD_ASSERT (sgot != NULL && srelgot != NULL); 766 1.6 christos 767 1.6 christos if (h != NULL) 768 1.6 christos { 769 1.6 christos if (h->got.offset != (bfd_vma) -1) 770 1.6 christos /* We have already allocated space in the .got. */ 771 1.6 christos break; 772 1.6 christos 773 1.6 christos h->got.offset = sgot->size; 774 1.6 christos 775 1.6 christos /* Make sure this symbol is output as a dynamic symbol. */ 776 1.6 christos if (h->dynindx == -1) 777 1.6 christos { 778 1.6 christos if (! bfd_elf_link_record_dynamic_symbol (info, h)) 779 1.6 christos goto fail; 780 1.6 christos } 781 1.6 christos 782 1.6 christos srelgot->size += sizeof (Elf32_External_Rela); 783 1.6 christos } 784 1.6 christos else 785 1.6 christos { 786 1.6 christos /* This is a global offset table entry for a local 787 1.6 christos symbol. */ 788 1.6 christos if (local_got_offsets == NULL) 789 1.6 christos { 790 1.6 christos size_t size; 791 1.6 christos unsigned int i; 792 1.6 christos 793 1.6 christos size = symtab_hdr->sh_info * sizeof (bfd_vma); 794 1.6 christos local_got_offsets = (bfd_vma *) bfd_alloc (abfd, size); 795 1.6 christos 796 1.6 christos if (local_got_offsets == NULL) 797 1.6 christos goto fail; 798 1.6 christos 799 1.6 christos elf_local_got_offsets (abfd) = local_got_offsets; 800 1.6 christos 801 1.6 christos for (i = 0; i < symtab_hdr->sh_info; i++) 802 1.6 christos local_got_offsets[i] = (bfd_vma) -1; 803 1.6 christos } 804 1.6 christos 805 1.6 christos if (local_got_offsets[r_symndx] != (bfd_vma) -1) 806 1.6 christos /* We have already allocated space in the .got. */ 807 1.6 christos break; 808 1.6 christos 809 1.6 christos local_got_offsets[r_symndx] = sgot->size; 810 1.6 christos 811 1.6 christos if (bfd_link_executable (info)) 812 1.6 christos /* If we are generating a shared object, we need to 813 1.6 christos output a R_CR16_RELATIVE reloc so that the dynamic 814 1.6 christos linker can adjust this GOT entry. */ 815 1.6 christos srelgot->size += sizeof (Elf32_External_Rela); 816 1.6 christos } 817 1.1 christos 818 1.6 christos sgot->size += 4; 819 1.6 christos break; 820 1.1 christos 821 1.6 christos } 822 1.1 christos } 823 1.1 christos 824 1.8 christos result = true; 825 1.8 christos fail: 826 1.8 christos free (isymbuf); 827 1.1 christos 828 1.1 christos return result; 829 1.1 christos } 830 1.1 christos 831 1.1 christos /* Perform a relocation as part of a final link. */ 832 1.1 christos 833 1.1 christos static bfd_reloc_status_type 834 1.1 christos cr16_elf_final_link_relocate (reloc_howto_type *howto, 835 1.6 christos bfd *input_bfd, 836 1.6 christos bfd *output_bfd ATTRIBUTE_UNUSED, 837 1.6 christos asection *input_section, 838 1.6 christos bfd_byte *contents, 839 1.6 christos bfd_vma offset, 840 1.6 christos bfd_vma Rvalue, 841 1.6 christos bfd_vma addend, 842 1.6 christos struct elf_link_hash_entry * h, 843 1.6 christos unsigned long symndx ATTRIBUTE_UNUSED, 844 1.6 christos struct bfd_link_info *info ATTRIBUTE_UNUSED, 845 1.6 christos asection *sec ATTRIBUTE_UNUSED, 846 1.6 christos int is_local ATTRIBUTE_UNUSED) 847 1.1 christos { 848 1.1 christos unsigned short r_type = howto->type; 849 1.1 christos bfd_byte *hit_data = contents + offset; 850 1.1 christos bfd_vma reloc_bits, check, Rvalue1; 851 1.1 christos 852 1.1 christos switch (r_type) 853 1.1 christos { 854 1.8 christos case R_CR16_IMM4: 855 1.8 christos case R_CR16_IMM20: 856 1.8 christos case R_CR16_ABS20: 857 1.8 christos break; 858 1.8 christos 859 1.8 christos case R_CR16_IMM8: 860 1.8 christos case R_CR16_IMM16: 861 1.8 christos case R_CR16_IMM32: 862 1.8 christos case R_CR16_IMM32a: 863 1.8 christos case R_CR16_REGREL4: 864 1.8 christos case R_CR16_REGREL4a: 865 1.8 christos case R_CR16_REGREL14: 866 1.8 christos case R_CR16_REGREL14a: 867 1.8 christos case R_CR16_REGREL16: 868 1.8 christos case R_CR16_REGREL20: 869 1.8 christos case R_CR16_REGREL20a: 870 1.8 christos case R_CR16_GOT_REGREL20: 871 1.8 christos case R_CR16_GOTC_REGREL20: 872 1.8 christos case R_CR16_ABS24: 873 1.8 christos case R_CR16_DISP16: 874 1.8 christos case R_CR16_DISP24: 875 1.8 christos /* 'hit_data' is relative to the start of the instruction, not the 876 1.8 christos relocation offset. Advance it to account for the exact offset. */ 877 1.8 christos hit_data += 2; 878 1.8 christos break; 879 1.8 christos 880 1.8 christos case R_CR16_NONE: 881 1.8 christos return bfd_reloc_ok; 882 1.8 christos break; 883 1.1 christos 884 1.8 christos case R_CR16_DISP4: 885 1.8 christos if (is_local) 886 1.6 christos Rvalue += -1; 887 1.8 christos break; 888 1.1 christos 889 1.8 christos case R_CR16_DISP8: 890 1.8 christos case R_CR16_DISP24a: 891 1.8 christos if (is_local) 892 1.6 christos Rvalue -= -1; 893 1.8 christos break; 894 1.1 christos 895 1.8 christos case R_CR16_SWITCH8: 896 1.8 christos case R_CR16_SWITCH16: 897 1.8 christos case R_CR16_SWITCH32: 898 1.8 christos /* We only care about the addend, where the difference between 899 1.8 christos expressions is kept. */ 900 1.8 christos Rvalue = 0; 901 1.3 christos 902 1.8 christos default: 903 1.8 christos break; 904 1.1 christos } 905 1.1 christos 906 1.1 christos if (howto->pc_relative) 907 1.1 christos { 908 1.1 christos /* Subtract the address of the section containing the location. */ 909 1.1 christos Rvalue -= (input_section->output_section->vma 910 1.6 christos + input_section->output_offset); 911 1.1 christos /* Subtract the position of the location within the section. */ 912 1.1 christos Rvalue -= offset; 913 1.1 christos } 914 1.1 christos 915 1.1 christos /* Add in supplied addend. */ 916 1.1 christos Rvalue += addend; 917 1.1 christos 918 1.1 christos /* Complain if the bitfield overflows, whether it is considered 919 1.1 christos as signed or unsigned. */ 920 1.1 christos check = Rvalue >> howto->rightshift; 921 1.1 christos 922 1.8 christos reloc_bits = ((bfd_vma) 1 << (howto->bitsize - 1) << 1) - 1; 923 1.1 christos 924 1.1 christos /* For GOT and GOTC relocs no boundary checks applied. */ 925 1.1 christos if (!((r_type == R_CR16_GOT_REGREL20) 926 1.8 christos || (r_type == R_CR16_GOTC_REGREL20))) 927 1.1 christos { 928 1.1 christos if (((bfd_vma) check & ~reloc_bits) != 0 929 1.6 christos && (((bfd_vma) check & ~reloc_bits) 930 1.8 christos != (-(bfd_vma) 1 & ~reloc_bits))) 931 1.6 christos { 932 1.6 christos /* The above right shift is incorrect for a signed 933 1.6 christos value. See if turning on the upper bits fixes the 934 1.6 christos overflow. */ 935 1.6 christos if (howto->rightshift && (bfd_signed_vma) Rvalue < 0) 936 1.6 christos { 937 1.8 christos check |= ((bfd_vma) -1 938 1.8 christos & ~((bfd_vma) -1 >> howto->rightshift)); 939 1.6 christos 940 1.6 christos if (((bfd_vma) check & ~reloc_bits) 941 1.6 christos != (-(bfd_vma) 1 & ~reloc_bits)) 942 1.8 christos return bfd_reloc_overflow; 943 1.6 christos } 944 1.6 christos else 945 1.6 christos return bfd_reloc_overflow; 946 1.6 christos } 947 1.1 christos 948 1.1 christos /* Drop unwanted bits from the value we are relocating to. */ 949 1.1 christos Rvalue >>= (bfd_vma) howto->rightshift; 950 1.1 christos 951 1.1 christos /* Apply dst_mask to select only relocatable part of the insn. */ 952 1.1 christos Rvalue &= howto->dst_mask; 953 1.1 christos } 954 1.1 christos 955 1.8 christos switch (bfd_get_reloc_size (howto)) 956 1.1 christos { 957 1.8 christos case 1: 958 1.8 christos if (r_type == R_CR16_DISP8) 959 1.8 christos { 960 1.8 christos Rvalue1 = bfd_get_16 (input_bfd, hit_data); 961 1.8 christos Rvalue = ((Rvalue1 & 0xf000) | ((Rvalue << 4) & 0xf00) 962 1.8 christos | (Rvalue1 & 0x00f0) | (Rvalue & 0xf)); 963 1.8 christos bfd_put_16 (input_bfd, Rvalue, hit_data); 964 1.8 christos } 965 1.8 christos else if (r_type == R_CR16_IMM4) 966 1.8 christos { 967 1.8 christos Rvalue1 = bfd_get_16 (input_bfd, hit_data); 968 1.8 christos Rvalue = (((Rvalue1 & 0xff) << 8) | ((Rvalue << 4) & 0xf0) 969 1.8 christos | ((Rvalue1 & 0x0f00) >> 8)); 970 1.8 christos bfd_put_16 (input_bfd, Rvalue, hit_data); 971 1.8 christos } 972 1.8 christos else if (r_type == R_CR16_DISP4) 973 1.8 christos { 974 1.8 christos Rvalue1 = bfd_get_16 (input_bfd, hit_data); 975 1.8 christos Rvalue = (Rvalue1 | ((Rvalue & 0xf) << 4)); 976 1.8 christos bfd_put_16 (input_bfd, Rvalue, hit_data); 977 1.8 christos } 978 1.8 christos else 979 1.8 christos { 980 1.8 christos bfd_put_8 (input_bfd, (unsigned char) Rvalue, hit_data); 981 1.8 christos } 982 1.8 christos break; 983 1.8 christos 984 1.8 christos case 2: 985 1.8 christos if (r_type == R_CR16_DISP16) 986 1.8 christos { 987 1.8 christos Rvalue |= (bfd_get_16 (input_bfd, hit_data)); 988 1.8 christos Rvalue = ((Rvalue & 0xfffe) | ((Rvalue >> 16) & 0x1)); 989 1.8 christos } 990 1.8 christos if (r_type == R_CR16_IMM16) 991 1.8 christos { 992 1.8 christos Rvalue1 = bfd_get_16 (input_bfd, hit_data); 993 1.8 christos 994 1.8 christos Rvalue1 = (Rvalue1 ^ 0x8000) - 0x8000; 995 1.8 christos Rvalue += Rvalue1; 996 1.8 christos 997 1.8 christos /* Check for range. */ 998 1.8 christos if (Rvalue > 0xffff) 999 1.8 christos return bfd_reloc_overflow; 1000 1.8 christos } 1001 1.8 christos 1002 1.8 christos bfd_put_16 (input_bfd, Rvalue, hit_data); 1003 1.8 christos break; 1004 1.8 christos 1005 1.8 christos case 4: 1006 1.8 christos if ((r_type == R_CR16_ABS20) || (r_type == R_CR16_IMM20)) 1007 1.8 christos { 1008 1.8 christos Rvalue1 = (bfd_get_16 (input_bfd, hit_data + 2) 1009 1.8 christos | (((bfd_get_16 (input_bfd, hit_data) & 0xf) << 16))); 1010 1.8 christos 1011 1.8 christos Rvalue1 = (Rvalue1 ^ 0x80000) - 0x80000; 1012 1.8 christos Rvalue += Rvalue1; 1013 1.8 christos 1014 1.8 christos /* Check for range. */ 1015 1.8 christos if (Rvalue > 0xfffff) 1016 1.8 christos return bfd_reloc_overflow; 1017 1.8 christos 1018 1.8 christos bfd_put_16 (input_bfd, ((bfd_get_16 (input_bfd, hit_data) & 0xfff0) 1019 1.8 christos | ((Rvalue >> 16) & 0xf)), hit_data); 1020 1.8 christos bfd_put_16 (input_bfd, (Rvalue) & 0xffff, hit_data + 2); 1021 1.8 christos } 1022 1.8 christos else if (r_type == R_CR16_GOT_REGREL20) 1023 1.8 christos { 1024 1.8 christos asection *sgot = elf_hash_table (info)->sgot; 1025 1.8 christos bfd_vma off; 1026 1.8 christos 1027 1.8 christos if (h != NULL) 1028 1.8 christos { 1029 1.8 christos off = h->got.offset; 1030 1.8 christos BFD_ASSERT (off != (bfd_vma) -1); 1031 1.8 christos 1032 1.8 christos if (! elf_hash_table (info)->dynamic_sections_created 1033 1.8 christos || SYMBOL_REFERENCES_LOCAL (info, h)) 1034 1.8 christos /* This is actually a static link, or it is a 1035 1.8 christos -Bsymbolic link and the symbol is defined 1036 1.8 christos locally, or the symbol was forced to be local 1037 1.8 christos because of a version file. We must initialize 1038 1.8 christos this entry in the global offset table. 1039 1.8 christos When doing a dynamic link, we create a .rela.got 1040 1.8 christos relocation entry to initialize the value. This 1041 1.8 christos is done in the finish_dynamic_symbol routine. */ 1042 1.8 christos bfd_put_32 (output_bfd, Rvalue, sgot->contents + off); 1043 1.8 christos } 1044 1.8 christos else 1045 1.8 christos { 1046 1.8 christos off = elf_local_got_offsets (input_bfd)[symndx]; 1047 1.8 christos bfd_put_32 (output_bfd, Rvalue, sgot->contents + off); 1048 1.8 christos } 1049 1.8 christos 1050 1.8 christos Rvalue = sgot->output_offset + off; 1051 1.8 christos Rvalue += addend; 1052 1.8 christos 1053 1.8 christos /* REVISIT: if ((long) Rvalue > 0xffffff || 1054 1.8 christos (long) Rvalue < -0x800000). */ 1055 1.8 christos if (Rvalue > 0xffffff) 1056 1.8 christos return bfd_reloc_overflow; 1057 1.8 christos 1058 1.8 christos 1059 1.8 christos bfd_put_16 (input_bfd, (bfd_get_16 (input_bfd, hit_data)) 1060 1.8 christos | (((Rvalue >> 16) & 0xf) << 8), hit_data); 1061 1.8 christos bfd_put_16 (input_bfd, (Rvalue) & 0xffff, hit_data + 2); 1062 1.8 christos 1063 1.8 christos } 1064 1.8 christos else if (r_type == R_CR16_GOTC_REGREL20) 1065 1.8 christos { 1066 1.8 christos asection *sgot = elf_hash_table (info)->sgot; 1067 1.8 christos bfd_vma off; 1068 1.8 christos 1069 1.8 christos if (h != NULL) 1070 1.8 christos { 1071 1.8 christos off = h->got.offset; 1072 1.8 christos BFD_ASSERT (off != (bfd_vma) -1); 1073 1.8 christos 1074 1.8 christos Rvalue >>= 1; /* For code symbols. */ 1075 1.8 christos 1076 1.8 christos if (! elf_hash_table (info)->dynamic_sections_created 1077 1.8 christos || SYMBOL_REFERENCES_LOCAL (info, h)) 1078 1.8 christos /* This is actually a static link, or it is a 1079 1.8 christos -Bsymbolic link and the symbol is defined 1080 1.8 christos locally, or the symbol was forced to be local 1081 1.8 christos because of a version file. We must initialize 1082 1.8 christos this entry in the global offset table. 1083 1.8 christos When doing a dynamic link, we create a .rela.got 1084 1.8 christos relocation entry to initialize the value. This 1085 1.8 christos is done in the finish_dynamic_symbol routine. */ 1086 1.8 christos bfd_put_32 (output_bfd, Rvalue, sgot->contents + off); 1087 1.8 christos } 1088 1.8 christos else 1089 1.8 christos { 1090 1.8 christos off = elf_local_got_offsets (input_bfd)[symndx]; 1091 1.8 christos Rvalue >>= 1; 1092 1.8 christos bfd_put_32 (output_bfd, Rvalue, sgot->contents + off); 1093 1.8 christos } 1094 1.8 christos 1095 1.8 christos Rvalue = sgot->output_offset + off; 1096 1.8 christos Rvalue += addend; 1097 1.8 christos 1098 1.8 christos /* Check if any value in DISP. */ 1099 1.8 christos Rvalue1 = bfd_get_32 (input_bfd, hit_data); 1100 1.8 christos Rvalue1 = ((Rvalue1 >> 16) | ((Rvalue1 & 0xfff) >> 8 << 16)); 1101 1.8 christos 1102 1.8 christos Rvalue1 = (Rvalue1 ^ 0x80000) - 0x80000; 1103 1.8 christos Rvalue += Rvalue1; 1104 1.8 christos 1105 1.8 christos /* Check for range. */ 1106 1.8 christos /* REVISIT: if ((long) Rvalue > 0xffffff 1107 1.8 christos || (long) Rvalue < -0x800000). */ 1108 1.8 christos if (Rvalue > 0xffffff) 1109 1.8 christos return bfd_reloc_overflow; 1110 1.8 christos 1111 1.8 christos bfd_put_16 (input_bfd, (bfd_get_16 (input_bfd, hit_data)) 1112 1.8 christos | (((Rvalue >> 16) & 0xf) << 8), hit_data); 1113 1.8 christos bfd_put_16 (input_bfd, (Rvalue) & 0xffff, hit_data + 2); 1114 1.8 christos } 1115 1.8 christos else 1116 1.8 christos { 1117 1.8 christos if (r_type == R_CR16_ABS24) 1118 1.8 christos { 1119 1.8 christos Rvalue1 = bfd_get_32 (input_bfd, hit_data); 1120 1.8 christos Rvalue1 = ((Rvalue1 >> 16) 1121 1.8 christos | ((Rvalue1 & 0xfff) >> 8 << 16) 1122 1.8 christos | ((Rvalue1 & 0xf) << 20)); 1123 1.8 christos 1124 1.8 christos Rvalue1 = (Rvalue1 ^ 0x800000) - 0x800000; 1125 1.6 christos Rvalue += Rvalue1; 1126 1.6 christos 1127 1.8 christos /* Check for Range. */ 1128 1.8 christos if (Rvalue > 0xffffff) 1129 1.8 christos return bfd_reloc_overflow; 1130 1.8 christos 1131 1.8 christos Rvalue = ((((Rvalue >> 20) & 0xf) | (((Rvalue >> 16) & 0xf)<<8) 1132 1.8 christos | (bfd_get_32 (input_bfd, hit_data) & 0xf0f0)) 1133 1.8 christos | ((Rvalue & 0xffff) << 16)); 1134 1.8 christos } 1135 1.8 christos else if (r_type == R_CR16_DISP24) 1136 1.8 christos { 1137 1.8 christos Rvalue = ((((Rvalue >> 20)& 0xf) | (((Rvalue >>16) & 0xf)<<8) 1138 1.8 christos | (bfd_get_16 (input_bfd, hit_data))) 1139 1.8 christos | (((Rvalue & 0xfffe) | ((Rvalue >> 24) & 0x1)) << 16)); 1140 1.8 christos } 1141 1.8 christos else if ((r_type == R_CR16_IMM32) || (r_type == R_CR16_IMM32a)) 1142 1.8 christos { 1143 1.8 christos Rvalue1 = bfd_get_32 (input_bfd, hit_data); 1144 1.8 christos Rvalue1 = (((Rvalue1 >> 16) & 0xffff) 1145 1.8 christos | ((Rvalue1 & 0xffff) << 16)); 1146 1.8 christos 1147 1.8 christos Rvalue1 = (Rvalue1 ^ 0x80000000) - 0x80000000; 1148 1.8 christos Rvalue += Rvalue1; 1149 1.6 christos 1150 1.6 christos /* Check for range. */ 1151 1.8 christos if (Rvalue > 0xffffffff) 1152 1.8 christos return bfd_reloc_overflow; 1153 1.6 christos 1154 1.8 christos Rvalue = (((Rvalue >> 16) & 0xffff) | (Rvalue & 0xffff) << 16); 1155 1.8 christos } 1156 1.8 christos else if (r_type == R_CR16_DISP24a) 1157 1.8 christos { 1158 1.8 christos Rvalue = (((Rvalue & 0xfffffe) | (Rvalue >> 23))); 1159 1.8 christos Rvalue = (((Rvalue >> 16) & 0xff) | ((Rvalue & 0xffff) << 16) 1160 1.8 christos | bfd_get_32 (input_bfd, hit_data)); 1161 1.8 christos } 1162 1.8 christos else if ((r_type == R_CR16_REGREL20) 1163 1.8 christos || (r_type == R_CR16_REGREL20a)) 1164 1.8 christos { 1165 1.8 christos Rvalue1 = bfd_get_32 (input_bfd, hit_data); 1166 1.8 christos Rvalue1 = (((Rvalue1 >> 16) & 0xffff) 1167 1.8 christos | ((Rvalue1 & 0xfff) >> 8 << 16)); 1168 1.6 christos 1169 1.8 christos Rvalue1 = (Rvalue1 ^ 0x80000) - 0x80000; 1170 1.8 christos Rvalue += Rvalue1; 1171 1.6 christos 1172 1.8 christos /* Check for range. */ 1173 1.8 christos if (Rvalue > 0xfffff) 1174 1.8 christos return bfd_reloc_overflow; 1175 1.6 christos 1176 1.8 christos Rvalue = (((((Rvalue >> 20) & 0xf) | (((Rvalue >> 16) & 0xf) << 8) 1177 1.8 christos | ((Rvalue & 0xffff) << 16))) 1178 1.8 christos | (bfd_get_32 (input_bfd, hit_data) & 0xf0ff)); 1179 1.6 christos 1180 1.8 christos } 1181 1.8 christos else if (r_type == R_CR16_NUM32) 1182 1.8 christos { 1183 1.8 christos Rvalue1 = (bfd_get_32 (input_bfd, hit_data)); 1184 1.6 christos 1185 1.8 christos Rvalue1 = (Rvalue1 ^ 0x80000000) - 0x80000000; 1186 1.8 christos Rvalue += Rvalue1; 1187 1.6 christos 1188 1.8 christos /* Check for Range. */ 1189 1.8 christos if (Rvalue > 0xffffffff) 1190 1.8 christos return bfd_reloc_overflow; 1191 1.8 christos } 1192 1.6 christos 1193 1.8 christos bfd_put_32 (input_bfd, Rvalue, hit_data); 1194 1.8 christos } 1195 1.8 christos break; 1196 1.6 christos 1197 1.8 christos default: 1198 1.8 christos return bfd_reloc_notsupported; 1199 1.1 christos } 1200 1.1 christos 1201 1.1 christos return bfd_reloc_ok; 1202 1.1 christos } 1203 1.1 christos 1204 1.1 christos /* Delete some bytes from a section while relaxing. */ 1205 1.1 christos 1206 1.8 christos static bool 1207 1.1 christos elf32_cr16_relax_delete_bytes (struct bfd_link_info *link_info, bfd *abfd, 1208 1.6 christos asection *sec, bfd_vma addr, int count) 1209 1.1 christos { 1210 1.1 christos Elf_Internal_Shdr *symtab_hdr; 1211 1.1 christos unsigned int sec_shndx; 1212 1.1 christos bfd_byte *contents; 1213 1.1 christos Elf_Internal_Rela *irel, *irelend; 1214 1.1 christos bfd_vma toaddr; 1215 1.1 christos Elf_Internal_Sym *isym; 1216 1.1 christos Elf_Internal_Sym *isymend; 1217 1.1 christos struct elf_link_hash_entry **sym_hashes; 1218 1.1 christos struct elf_link_hash_entry **end_hashes; 1219 1.1 christos struct elf_link_hash_entry **start_hashes; 1220 1.1 christos unsigned int symcount; 1221 1.1 christos 1222 1.1 christos sec_shndx = _bfd_elf_section_from_bfd_section (abfd, sec); 1223 1.1 christos 1224 1.1 christos contents = elf_section_data (sec)->this_hdr.contents; 1225 1.1 christos 1226 1.1 christos toaddr = sec->size; 1227 1.1 christos 1228 1.1 christos irel = elf_section_data (sec)->relocs; 1229 1.1 christos irelend = irel + sec->reloc_count; 1230 1.1 christos 1231 1.1 christos /* Actually delete the bytes. */ 1232 1.1 christos memmove (contents + addr, contents + addr + count, 1233 1.6 christos (size_t) (toaddr - addr - count)); 1234 1.1 christos sec->size -= count; 1235 1.1 christos 1236 1.1 christos /* Adjust all the relocs. */ 1237 1.1 christos for (irel = elf_section_data (sec)->relocs; irel < irelend; irel++) 1238 1.1 christos /* Get the new reloc address. */ 1239 1.1 christos if ((irel->r_offset > addr && irel->r_offset < toaddr)) 1240 1.8 christos irel->r_offset -= count; 1241 1.1 christos 1242 1.1 christos /* Adjust the local symbols defined in this section. */ 1243 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr; 1244 1.1 christos isym = (Elf_Internal_Sym *) symtab_hdr->contents; 1245 1.1 christos for (isymend = isym + symtab_hdr->sh_info; isym < isymend; isym++) 1246 1.1 christos { 1247 1.1 christos if (isym->st_shndx == sec_shndx 1248 1.6 christos && isym->st_value > addr 1249 1.6 christos && isym->st_value < toaddr) 1250 1.6 christos { 1251 1.6 christos /* Adjust the addend of SWITCH relocations in this section, 1252 1.6 christos which reference this local symbol. */ 1253 1.1 christos #if 0 1254 1.6 christos for (irel = elf_section_data (sec)->relocs; irel < irelend; irel++) 1255 1.6 christos { 1256 1.6 christos unsigned long r_symndx; 1257 1.6 christos Elf_Internal_Sym *rsym; 1258 1.6 christos bfd_vma addsym, subsym; 1259 1.6 christos 1260 1.6 christos /* Skip if not a SWITCH relocation. */ 1261 1.6 christos if (ELF32_R_TYPE (irel->r_info) != (int) R_CR16_SWITCH8 1262 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_SWITCH16 1263 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_SWITCH32) 1264 1.8 christos continue; 1265 1.6 christos 1266 1.6 christos r_symndx = ELF32_R_SYM (irel->r_info); 1267 1.6 christos rsym = (Elf_Internal_Sym *) symtab_hdr->contents + r_symndx; 1268 1.6 christos 1269 1.6 christos /* Skip if not the local adjusted symbol. */ 1270 1.6 christos if (rsym != isym) 1271 1.6 christos continue; 1272 1.6 christos 1273 1.6 christos addsym = isym->st_value; 1274 1.6 christos subsym = addsym - irel->r_addend; 1275 1.6 christos 1276 1.6 christos /* Fix the addend only when -->> (addsym > addr >= subsym). */ 1277 1.6 christos if (subsym <= addr) 1278 1.6 christos irel->r_addend -= count; 1279 1.6 christos else 1280 1.6 christos continue; 1281 1.6 christos } 1282 1.1 christos #endif 1283 1.1 christos 1284 1.6 christos isym->st_value -= count; 1285 1.6 christos } 1286 1.1 christos } 1287 1.1 christos 1288 1.1 christos /* Now adjust the global symbols defined in this section. */ 1289 1.1 christos symcount = (symtab_hdr->sh_size / sizeof (Elf32_External_Sym) 1290 1.8 christos - symtab_hdr->sh_info); 1291 1.1 christos sym_hashes = start_hashes = elf_sym_hashes (abfd); 1292 1.1 christos end_hashes = sym_hashes + symcount; 1293 1.1 christos 1294 1.1 christos for (; sym_hashes < end_hashes; sym_hashes++) 1295 1.1 christos { 1296 1.1 christos struct elf_link_hash_entry *sym_hash = *sym_hashes; 1297 1.1 christos 1298 1.1 christos /* The '--wrap SYMBOL' option is causing a pain when the object file, 1299 1.6 christos containing the definition of __wrap_SYMBOL, includes a direct 1300 1.6 christos call to SYMBOL as well. Since both __wrap_SYMBOL and SYMBOL reference 1301 1.6 christos the same symbol (which is __wrap_SYMBOL), but still exist as two 1302 1.6 christos different symbols in 'sym_hashes', we don't want to adjust 1303 1.6 christos the global symbol __wrap_SYMBOL twice. 1304 1.6 christos This check is only relevant when symbols are being wrapped. */ 1305 1.1 christos if (link_info->wrap_hash != NULL) 1306 1.6 christos { 1307 1.6 christos struct elf_link_hash_entry **cur_sym_hashes; 1308 1.1 christos 1309 1.6 christos /* Loop only over the symbols whom been already checked. */ 1310 1.6 christos for (cur_sym_hashes = start_hashes; cur_sym_hashes < sym_hashes; 1311 1.6 christos cur_sym_hashes++) 1312 1.6 christos /* If the current symbol is identical to 'sym_hash', that means 1313 1.6 christos the symbol was already adjusted (or at least checked). */ 1314 1.6 christos if (*cur_sym_hashes == sym_hash) 1315 1.6 christos break; 1316 1.6 christos 1317 1.6 christos /* Don't adjust the symbol again. */ 1318 1.6 christos if (cur_sym_hashes < sym_hashes) 1319 1.6 christos continue; 1320 1.6 christos } 1321 1.1 christos 1322 1.1 christos if ((sym_hash->root.type == bfd_link_hash_defined 1323 1.8 christos || sym_hash->root.type == bfd_link_hash_defweak) 1324 1.6 christos && sym_hash->root.u.def.section == sec 1325 1.6 christos && sym_hash->root.u.def.value > addr 1326 1.6 christos && sym_hash->root.u.def.value < toaddr) 1327 1.6 christos sym_hash->root.u.def.value -= count; 1328 1.1 christos } 1329 1.1 christos 1330 1.8 christos return true; 1331 1.1 christos } 1332 1.1 christos 1333 1.1 christos /* Relocate a CR16 ELF section. */ 1334 1.1 christos 1335 1.8 christos static int 1336 1.1 christos elf32_cr16_relocate_section (bfd *output_bfd, struct bfd_link_info *info, 1337 1.6 christos bfd *input_bfd, asection *input_section, 1338 1.6 christos bfd_byte *contents, Elf_Internal_Rela *relocs, 1339 1.6 christos Elf_Internal_Sym *local_syms, 1340 1.6 christos asection **local_sections) 1341 1.1 christos { 1342 1.1 christos Elf_Internal_Shdr *symtab_hdr; 1343 1.1 christos struct elf_link_hash_entry **sym_hashes; 1344 1.1 christos Elf_Internal_Rela *rel, *relend; 1345 1.1 christos 1346 1.1 christos symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr; 1347 1.1 christos sym_hashes = elf_sym_hashes (input_bfd); 1348 1.1 christos 1349 1.1 christos rel = relocs; 1350 1.1 christos relend = relocs + input_section->reloc_count; 1351 1.1 christos for (; rel < relend; rel++) 1352 1.1 christos { 1353 1.1 christos int r_type; 1354 1.1 christos reloc_howto_type *howto; 1355 1.1 christos unsigned long r_symndx; 1356 1.1 christos Elf_Internal_Sym *sym; 1357 1.1 christos asection *sec; 1358 1.1 christos struct elf_link_hash_entry *h; 1359 1.1 christos bfd_vma relocation; 1360 1.1 christos bfd_reloc_status_type r; 1361 1.1 christos 1362 1.1 christos r_symndx = ELF32_R_SYM (rel->r_info); 1363 1.1 christos r_type = ELF32_R_TYPE (rel->r_info); 1364 1.1 christos howto = cr16_elf_howto_table + (r_type); 1365 1.1 christos 1366 1.1 christos h = NULL; 1367 1.1 christos sym = NULL; 1368 1.1 christos sec = NULL; 1369 1.1 christos if (r_symndx < symtab_hdr->sh_info) 1370 1.6 christos { 1371 1.6 christos sym = local_syms + r_symndx; 1372 1.6 christos sec = local_sections[r_symndx]; 1373 1.6 christos relocation = _bfd_elf_rela_local_sym (output_bfd, sym, &sec, rel); 1374 1.6 christos } 1375 1.1 christos else 1376 1.6 christos { 1377 1.8 christos bool unresolved_reloc, warned, ignored; 1378 1.1 christos 1379 1.6 christos RELOC_FOR_GLOBAL_SYMBOL (info, input_bfd, input_section, rel, 1380 1.6 christos r_symndx, symtab_hdr, sym_hashes, 1381 1.6 christos h, sec, relocation, 1382 1.6 christos unresolved_reloc, warned, ignored); 1383 1.6 christos } 1384 1.1 christos 1385 1.1 christos if (sec != NULL && discarded_section (sec)) 1386 1.1 christos RELOC_AGAINST_DISCARDED_SECTION (info, input_bfd, input_section, 1387 1.1 christos rel, 1, relend, howto, 0, contents); 1388 1.1 christos 1389 1.3 christos if (bfd_link_relocatable (info)) 1390 1.6 christos continue; 1391 1.1 christos 1392 1.1 christos r = cr16_elf_final_link_relocate (howto, input_bfd, output_bfd, 1393 1.6 christos input_section, 1394 1.6 christos contents, rel->r_offset, 1395 1.6 christos relocation, rel->r_addend, 1396 1.6 christos (struct elf_link_hash_entry *) h, 1397 1.6 christos r_symndx, 1398 1.6 christos info, sec, h == NULL); 1399 1.1 christos 1400 1.1 christos if (r != bfd_reloc_ok) 1401 1.6 christos { 1402 1.6 christos const char *name; 1403 1.6 christos const char *msg = NULL; 1404 1.6 christos 1405 1.6 christos if (h != NULL) 1406 1.6 christos name = h->root.root.string; 1407 1.6 christos else 1408 1.6 christos { 1409 1.6 christos name = (bfd_elf_string_from_elf_section 1410 1.6 christos (input_bfd, symtab_hdr->sh_link, sym->st_name)); 1411 1.6 christos if (name == NULL || *name == '\0') 1412 1.7 christos name = bfd_section_name (sec); 1413 1.6 christos } 1414 1.6 christos 1415 1.6 christos switch (r) 1416 1.6 christos { 1417 1.8 christos case bfd_reloc_overflow: 1418 1.8 christos (*info->callbacks->reloc_overflow) 1419 1.8 christos (info, (h ? &h->root : NULL), name, howto->name, 1420 1.8 christos (bfd_vma) 0, input_bfd, input_section, rel->r_offset); 1421 1.8 christos break; 1422 1.1 christos 1423 1.8 christos case bfd_reloc_undefined: 1424 1.8 christos (*info->callbacks->undefined_symbol) 1425 1.8 christos (info, name, input_bfd, input_section, rel->r_offset, true); 1426 1.8 christos break; 1427 1.1 christos 1428 1.8 christos case bfd_reloc_outofrange: 1429 1.8 christos msg = _("internal error: out of range error"); 1430 1.8 christos goto common_error; 1431 1.8 christos 1432 1.8 christos case bfd_reloc_notsupported: 1433 1.8 christos msg = _("internal error: unsupported relocation error"); 1434 1.8 christos goto common_error; 1435 1.8 christos 1436 1.8 christos case bfd_reloc_dangerous: 1437 1.8 christos msg = _("internal error: dangerous error"); 1438 1.8 christos goto common_error; 1439 1.1 christos 1440 1.8 christos default: 1441 1.8 christos msg = _("internal error: unknown error"); 1442 1.8 christos /* Fall through. */ 1443 1.1 christos 1444 1.8 christos common_error: 1445 1.8 christos (*info->callbacks->warning) (info, msg, name, input_bfd, 1446 1.8 christos input_section, rel->r_offset); 1447 1.8 christos break; 1448 1.6 christos } 1449 1.6 christos } 1450 1.1 christos } 1451 1.1 christos 1452 1.8 christos return true; 1453 1.1 christos } 1454 1.1 christos 1455 1.1 christos /* This is a version of bfd_generic_get_relocated_section_contents 1456 1.1 christos which uses elf32_cr16_relocate_section. */ 1457 1.1 christos 1458 1.1 christos static bfd_byte * 1459 1.1 christos elf32_cr16_get_relocated_section_contents (bfd *output_bfd, 1460 1.6 christos struct bfd_link_info *link_info, 1461 1.6 christos struct bfd_link_order *link_order, 1462 1.6 christos bfd_byte *data, 1463 1.8 christos bool relocatable, 1464 1.6 christos asymbol **symbols) 1465 1.1 christos { 1466 1.1 christos Elf_Internal_Shdr *symtab_hdr; 1467 1.1 christos asection *input_section = link_order->u.indirect.section; 1468 1.1 christos bfd *input_bfd = input_section->owner; 1469 1.1 christos asection **sections = NULL; 1470 1.1 christos Elf_Internal_Rela *internal_relocs = NULL; 1471 1.1 christos Elf_Internal_Sym *isymbuf = NULL; 1472 1.1 christos 1473 1.1 christos /* We only need to handle the case of relaxing, or of having a 1474 1.1 christos particular set of section contents, specially. */ 1475 1.1 christos if (relocatable 1476 1.1 christos || elf_section_data (input_section)->this_hdr.contents == NULL) 1477 1.1 christos return bfd_generic_get_relocated_section_contents (output_bfd, link_info, 1478 1.6 christos link_order, data, 1479 1.6 christos relocatable, 1480 1.6 christos symbols); 1481 1.1 christos 1482 1.1 christos symtab_hdr = &elf_tdata (input_bfd)->symtab_hdr; 1483 1.1 christos 1484 1.9 christos bfd_byte *orig_data = data; 1485 1.9 christos if (data == NULL) 1486 1.9 christos { 1487 1.9 christos data = bfd_malloc (input_section->size); 1488 1.9 christos if (data == NULL) 1489 1.9 christos return NULL; 1490 1.9 christos } 1491 1.1 christos memcpy (data, elf_section_data (input_section)->this_hdr.contents, 1492 1.6 christos (size_t) input_section->size); 1493 1.1 christos 1494 1.1 christos if ((input_section->flags & SEC_RELOC) != 0 1495 1.1 christos && input_section->reloc_count > 0) 1496 1.1 christos { 1497 1.1 christos Elf_Internal_Sym *isym; 1498 1.1 christos Elf_Internal_Sym *isymend; 1499 1.1 christos asection **secpp; 1500 1.1 christos bfd_size_type amt; 1501 1.1 christos 1502 1.1 christos internal_relocs = _bfd_elf_link_read_relocs (input_bfd, input_section, 1503 1.8 christos NULL, NULL, false); 1504 1.1 christos if (internal_relocs == NULL) 1505 1.6 christos goto error_return; 1506 1.1 christos 1507 1.1 christos if (symtab_hdr->sh_info != 0) 1508 1.6 christos { 1509 1.6 christos isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents; 1510 1.6 christos if (isymbuf == NULL) 1511 1.6 christos isymbuf = bfd_elf_get_elf_syms (input_bfd, symtab_hdr, 1512 1.6 christos symtab_hdr->sh_info, 0, 1513 1.6 christos NULL, NULL, NULL); 1514 1.6 christos if (isymbuf == NULL) 1515 1.6 christos goto error_return; 1516 1.6 christos } 1517 1.1 christos 1518 1.1 christos amt = symtab_hdr->sh_info; 1519 1.1 christos amt *= sizeof (asection *); 1520 1.1 christos sections = bfd_malloc (amt); 1521 1.1 christos if (sections == NULL && amt != 0) 1522 1.6 christos goto error_return; 1523 1.1 christos 1524 1.1 christos isymend = isymbuf + symtab_hdr->sh_info; 1525 1.1 christos for (isym = isymbuf, secpp = sections; isym < isymend; ++isym, ++secpp) 1526 1.6 christos { 1527 1.6 christos asection *isec; 1528 1.1 christos 1529 1.6 christos if (isym->st_shndx == SHN_UNDEF) 1530 1.6 christos isec = bfd_und_section_ptr; 1531 1.6 christos else if (isym->st_shndx == SHN_ABS) 1532 1.6 christos isec = bfd_abs_section_ptr; 1533 1.6 christos else if (isym->st_shndx == SHN_COMMON) 1534 1.6 christos isec = bfd_com_section_ptr; 1535 1.6 christos else 1536 1.6 christos isec = bfd_section_from_elf_index (input_bfd, isym->st_shndx); 1537 1.1 christos 1538 1.6 christos *secpp = isec; 1539 1.6 christos } 1540 1.1 christos 1541 1.1 christos if (! elf32_cr16_relocate_section (output_bfd, link_info, input_bfd, 1542 1.8 christos input_section, data, internal_relocs, 1543 1.8 christos isymbuf, sections)) 1544 1.6 christos goto error_return; 1545 1.1 christos 1546 1.8 christos free (sections); 1547 1.8 christos if (symtab_hdr->contents != (unsigned char *) isymbuf) 1548 1.6 christos free (isymbuf); 1549 1.1 christos if (elf_section_data (input_section)->relocs != internal_relocs) 1550 1.6 christos free (internal_relocs); 1551 1.1 christos } 1552 1.1 christos 1553 1.1 christos return data; 1554 1.1 christos 1555 1.1 christos error_return: 1556 1.8 christos free (sections); 1557 1.8 christos if (symtab_hdr->contents != (unsigned char *) isymbuf) 1558 1.1 christos free (isymbuf); 1559 1.8 christos if (elf_section_data (input_section)->relocs != internal_relocs) 1560 1.1 christos free (internal_relocs); 1561 1.9 christos if (orig_data == NULL) 1562 1.9 christos free (data); 1563 1.1 christos return NULL; 1564 1.1 christos } 1565 1.1 christos 1566 1.1 christos /* Assorted hash table functions. */ 1567 1.1 christos 1568 1.1 christos /* Initialize an entry in the link hash table. */ 1569 1.1 christos 1570 1.1 christos /* Create an entry in an CR16 ELF linker hash table. */ 1571 1.1 christos 1572 1.1 christos static struct bfd_hash_entry * 1573 1.1 christos elf32_cr16_link_hash_newfunc (struct bfd_hash_entry *entry, 1574 1.6 christos struct bfd_hash_table *table, 1575 1.6 christos const char *string) 1576 1.1 christos { 1577 1.1 christos struct elf32_cr16_link_hash_entry *ret = 1578 1.1 christos (struct elf32_cr16_link_hash_entry *) entry; 1579 1.1 christos 1580 1.1 christos /* Allocate the structure if it has not already been allocated by a 1581 1.1 christos subclass. */ 1582 1.1 christos if (ret == (struct elf32_cr16_link_hash_entry *) NULL) 1583 1.1 christos ret = ((struct elf32_cr16_link_hash_entry *) 1584 1.6 christos bfd_hash_allocate (table, 1585 1.6 christos sizeof (struct elf32_cr16_link_hash_entry))); 1586 1.1 christos if (ret == (struct elf32_cr16_link_hash_entry *) NULL) 1587 1.1 christos return (struct bfd_hash_entry *) ret; 1588 1.1 christos 1589 1.1 christos /* Call the allocation method of the superclass. */ 1590 1.1 christos ret = ((struct elf32_cr16_link_hash_entry *) 1591 1.6 christos _bfd_elf_link_hash_newfunc ((struct bfd_hash_entry *) ret, 1592 1.6 christos table, string)); 1593 1.1 christos if (ret != (struct elf32_cr16_link_hash_entry *) NULL) 1594 1.1 christos { 1595 1.1 christos ret->direct_calls = 0; 1596 1.1 christos ret->stack_size = 0; 1597 1.1 christos ret->movm_args = 0; 1598 1.1 christos ret->movm_stack_size = 0; 1599 1.1 christos ret->flags = 0; 1600 1.1 christos ret->value = 0; 1601 1.1 christos } 1602 1.1 christos 1603 1.1 christos return (struct bfd_hash_entry *) ret; 1604 1.1 christos } 1605 1.1 christos 1606 1.1 christos /* Create an cr16 ELF linker hash table. */ 1607 1.1 christos 1608 1.1 christos static struct bfd_link_hash_table * 1609 1.1 christos elf32_cr16_link_hash_table_create (bfd *abfd) 1610 1.1 christos { 1611 1.1 christos struct elf_link_hash_table *ret; 1612 1.8 christos size_t amt = sizeof (struct elf_link_hash_table); 1613 1.1 christos 1614 1.3 christos ret = (struct elf_link_hash_table *) bfd_zmalloc (amt); 1615 1.1 christos if (ret == (struct elf_link_hash_table *) NULL) 1616 1.1 christos return NULL; 1617 1.1 christos 1618 1.1 christos if (!_bfd_elf_link_hash_table_init (ret, abfd, 1619 1.6 christos elf32_cr16_link_hash_newfunc, 1620 1.10 christos sizeof (struct elf32_cr16_link_hash_entry))) 1621 1.1 christos { 1622 1.1 christos free (ret); 1623 1.1 christos return NULL; 1624 1.1 christos } 1625 1.1 christos 1626 1.1 christos return &ret->root; 1627 1.1 christos } 1628 1.1 christos 1629 1.1 christos static unsigned long 1630 1.1 christos elf_cr16_mach (flagword flags) 1631 1.1 christos { 1632 1.1 christos switch (flags) 1633 1.1 christos { 1634 1.8 christos case EM_CR16: 1635 1.8 christos default: 1636 1.1 christos return bfd_mach_cr16; 1637 1.1 christos } 1638 1.1 christos } 1639 1.1 christos 1640 1.1 christos /* The final processing done just before writing out a CR16 ELF object 1641 1.1 christos file. This gets the CR16 architecture right based on the machine 1642 1.1 christos number. */ 1643 1.1 christos 1644 1.8 christos static bool 1645 1.7 christos _bfd_cr16_elf_final_write_processing (bfd *abfd) 1646 1.1 christos { 1647 1.1 christos unsigned long val; 1648 1.1 christos switch (bfd_get_mach (abfd)) 1649 1.1 christos { 1650 1.8 christos default: 1651 1.8 christos case bfd_mach_cr16: 1652 1.8 christos val = EM_CR16; 1653 1.8 christos break; 1654 1.1 christos } 1655 1.7 christos elf_elfheader (abfd)->e_flags |= val; 1656 1.7 christos return _bfd_elf_final_write_processing (abfd); 1657 1.1 christos } 1658 1.1 christos 1659 1.1 christos 1660 1.8 christos static bool 1661 1.1 christos _bfd_cr16_elf_object_p (bfd *abfd) 1662 1.1 christos { 1663 1.1 christos bfd_default_set_arch_mach (abfd, bfd_arch_cr16, 1664 1.6 christos elf_cr16_mach (elf_elfheader (abfd)->e_flags)); 1665 1.8 christos return true; 1666 1.1 christos } 1667 1.1 christos 1668 1.1 christos /* Merge backend specific data from an object file to the output 1669 1.1 christos object file when linking. */ 1670 1.1 christos 1671 1.8 christos static bool 1672 1.6 christos _bfd_cr16_elf_merge_private_bfd_data (bfd *ibfd, struct bfd_link_info *info) 1673 1.1 christos { 1674 1.6 christos bfd *obfd = info->output_bfd; 1675 1.6 christos 1676 1.1 christos if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour 1677 1.1 christos || bfd_get_flavour (obfd) != bfd_target_elf_flavour) 1678 1.8 christos return true; 1679 1.1 christos 1680 1.1 christos if (bfd_get_arch (obfd) == bfd_get_arch (ibfd) 1681 1.1 christos && bfd_get_mach (obfd) < bfd_get_mach (ibfd)) 1682 1.1 christos { 1683 1.1 christos if (! bfd_set_arch_mach (obfd, bfd_get_arch (ibfd), 1684 1.6 christos bfd_get_mach (ibfd))) 1685 1.8 christos return false; 1686 1.8 christos } 1687 1.1 christos 1688 1.8 christos return true; 1689 1.1 christos } 1690 1.1 christos 1691 1.1 christos 1692 1.1 christos /* This function handles relaxing for the CR16. 1693 1.1 christos 1694 1.1 christos There's quite a few relaxing opportunites available on the CR16: 1695 1.1 christos 1696 1.6 christos * bcond:24 -> bcond:16 1 byte 1697 1.6 christos * bcond:16 -> bcond:8 1 byte 1698 1.6 christos * arithmetic imm32 -> arithmetic imm20 12 bits 1699 1.6 christos * arithmetic imm20/imm16 -> arithmetic imm4 12/16 bits 1700 1.1 christos 1701 1.1 christos Symbol- and reloc-reading infrastructure copied from elf-m10200.c. */ 1702 1.1 christos 1703 1.8 christos static bool 1704 1.1 christos elf32_cr16_relax_section (bfd *abfd, asection *sec, 1705 1.8 christos struct bfd_link_info *link_info, bool *again) 1706 1.1 christos { 1707 1.1 christos Elf_Internal_Shdr *symtab_hdr; 1708 1.1 christos Elf_Internal_Rela *internal_relocs; 1709 1.1 christos Elf_Internal_Rela *irel, *irelend; 1710 1.1 christos bfd_byte *contents = NULL; 1711 1.1 christos Elf_Internal_Sym *isymbuf = NULL; 1712 1.1 christos 1713 1.1 christos /* Assume nothing changes. */ 1714 1.8 christos *again = false; 1715 1.1 christos 1716 1.1 christos /* We don't have to do anything for a relocatable link, if 1717 1.1 christos this section does not have relocs, or if this is not a 1718 1.1 christos code section. */ 1719 1.3 christos if (bfd_link_relocatable (link_info) 1720 1.9 christos || sec->reloc_count == 0 1721 1.1 christos || (sec->flags & SEC_RELOC) == 0 1722 1.9 christos || (sec->flags & SEC_HAS_CONTENTS) == 0 1723 1.1 christos || (sec->flags & SEC_CODE) == 0) 1724 1.8 christos return true; 1725 1.1 christos 1726 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr; 1727 1.1 christos 1728 1.1 christos /* Get a copy of the native relocations. */ 1729 1.1 christos internal_relocs = _bfd_elf_link_read_relocs (abfd, sec, NULL, NULL, 1730 1.6 christos link_info->keep_memory); 1731 1.1 christos if (internal_relocs == NULL) 1732 1.1 christos goto error_return; 1733 1.1 christos 1734 1.1 christos /* Walk through them looking for relaxing opportunities. */ 1735 1.1 christos irelend = internal_relocs + sec->reloc_count; 1736 1.1 christos for (irel = internal_relocs; irel < irelend; irel++) 1737 1.1 christos { 1738 1.1 christos bfd_vma symval; 1739 1.1 christos 1740 1.1 christos /* If this isn't something that can be relaxed, then ignore 1741 1.6 christos this reloc. */ 1742 1.1 christos if (ELF32_R_TYPE (irel->r_info) != (int) R_CR16_DISP16 1743 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_DISP24 1744 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_IMM32 1745 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_IMM20 1746 1.6 christos && ELF32_R_TYPE (irel->r_info) != (int) R_CR16_IMM16) 1747 1.6 christos continue; 1748 1.1 christos 1749 1.1 christos /* Get the section contents if we haven't done so already. */ 1750 1.1 christos if (contents == NULL) 1751 1.6 christos { 1752 1.6 christos /* Get cached copy if it exists. */ 1753 1.6 christos if (elf_section_data (sec)->this_hdr.contents != NULL) 1754 1.6 christos contents = elf_section_data (sec)->this_hdr.contents; 1755 1.6 christos /* Go get them off disk. */ 1756 1.6 christos else if (!bfd_malloc_and_get_section (abfd, sec, &contents)) 1757 1.6 christos goto error_return; 1758 1.6 christos } 1759 1.1 christos 1760 1.1 christos /* Read this BFD's local symbols if we haven't done so already. */ 1761 1.1 christos if (isymbuf == NULL && symtab_hdr->sh_info != 0) 1762 1.6 christos { 1763 1.6 christos isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents; 1764 1.6 christos if (isymbuf == NULL) 1765 1.6 christos isymbuf = bfd_elf_get_elf_syms (abfd, symtab_hdr, 1766 1.6 christos symtab_hdr->sh_info, 0, 1767 1.6 christos NULL, NULL, NULL); 1768 1.6 christos if (isymbuf == NULL) 1769 1.6 christos goto error_return; 1770 1.6 christos } 1771 1.1 christos 1772 1.1 christos /* Get the value of the symbol referred to by the reloc. */ 1773 1.1 christos if (ELF32_R_SYM (irel->r_info) < symtab_hdr->sh_info) 1774 1.6 christos { 1775 1.6 christos /* A local symbol. */ 1776 1.6 christos Elf_Internal_Sym *isym; 1777 1.6 christos asection *sym_sec; 1778 1.6 christos 1779 1.6 christos isym = isymbuf + ELF32_R_SYM (irel->r_info); 1780 1.6 christos if (isym->st_shndx == SHN_UNDEF) 1781 1.6 christos sym_sec = bfd_und_section_ptr; 1782 1.6 christos else if (isym->st_shndx == SHN_ABS) 1783 1.6 christos sym_sec = bfd_abs_section_ptr; 1784 1.6 christos else if (isym->st_shndx == SHN_COMMON) 1785 1.6 christos sym_sec = bfd_com_section_ptr; 1786 1.6 christos else 1787 1.6 christos sym_sec = bfd_section_from_elf_index (abfd, isym->st_shndx); 1788 1.6 christos symval = (isym->st_value 1789 1.6 christos + sym_sec->output_section->vma 1790 1.6 christos + sym_sec->output_offset); 1791 1.6 christos } 1792 1.1 christos else 1793 1.6 christos { 1794 1.6 christos unsigned long indx; 1795 1.6 christos struct elf_link_hash_entry *h; 1796 1.6 christos 1797 1.6 christos /* An external symbol. */ 1798 1.6 christos indx = ELF32_R_SYM (irel->r_info) - symtab_hdr->sh_info; 1799 1.6 christos h = elf_sym_hashes (abfd)[indx]; 1800 1.6 christos BFD_ASSERT (h != NULL); 1801 1.6 christos 1802 1.6 christos if (h->root.type != bfd_link_hash_defined 1803 1.6 christos && h->root.type != bfd_link_hash_defweak) 1804 1.6 christos /* This appears to be a reference to an undefined 1805 1.6 christos symbol. Just ignore it--it will be caught by the 1806 1.6 christos regular reloc processing. */ 1807 1.6 christos continue; 1808 1.6 christos 1809 1.6 christos symval = (h->root.u.def.value 1810 1.6 christos + h->root.u.def.section->output_section->vma 1811 1.6 christos + h->root.u.def.section->output_offset); 1812 1.6 christos } 1813 1.1 christos 1814 1.1 christos /* For simplicity of coding, we are going to modify the section 1815 1.6 christos contents, the section relocs, and the BFD symbol table. We 1816 1.6 christos must tell the rest of the code not to free up this 1817 1.6 christos information. It would be possible to instead create a table 1818 1.6 christos of changes which have to be made, as is done in coff-mips.c; 1819 1.6 christos that would be more work, but would require less memory when 1820 1.6 christos the linker is run. */ 1821 1.1 christos 1822 1.1 christos /* Try to turn a 24 branch/call into a 16bit relative 1823 1.6 christos branch/call. */ 1824 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_DISP24) 1825 1.6 christos { 1826 1.6 christos bfd_vma value = symval; 1827 1.1 christos 1828 1.6 christos /* Deal with pc-relative gunk. */ 1829 1.6 christos value -= (sec->output_section->vma + sec->output_offset); 1830 1.6 christos value -= irel->r_offset; 1831 1.6 christos value += irel->r_addend; 1832 1.6 christos 1833 1.6 christos /* See if the value will fit in 16 bits, note the high value is 1834 1.6 christos 0xfffe + 2 as the target will be two bytes closer if we are 1835 1.6 christos able to relax. */ 1836 1.6 christos if ((long) value < 0x10000 && (long) value > -0x10002) 1837 1.6 christos { 1838 1.6 christos unsigned int code; 1839 1.6 christos 1840 1.6 christos /* Get the opcode. */ 1841 1.8 christos code = (unsigned int) bfd_get_32 (abfd, 1842 1.8 christos contents + irel->r_offset); 1843 1.6 christos 1844 1.6 christos /* Verify it's a 'bcond' and fix the opcode. */ 1845 1.6 christos if ((code & 0xffff) == 0x0010) 1846 1.8 christos bfd_put_16 (abfd, 0x1800 | ((0xf & (code >> 20)) << 4), 1847 1.8 christos contents + irel->r_offset); 1848 1.6 christos else 1849 1.6 christos continue; 1850 1.6 christos 1851 1.6 christos /* Note that we've changed the relocs, section contents, etc. */ 1852 1.6 christos elf_section_data (sec)->relocs = internal_relocs; 1853 1.6 christos elf_section_data (sec)->this_hdr.contents = contents; 1854 1.6 christos symtab_hdr->contents = (unsigned char *) isymbuf; 1855 1.6 christos 1856 1.6 christos /* Fix the relocation's type. */ 1857 1.6 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info), 1858 1.6 christos R_CR16_DISP16); 1859 1.6 christos 1860 1.6 christos /* Delete two bytes of data. */ 1861 1.6 christos if (!elf32_cr16_relax_delete_bytes (link_info, abfd, sec, 1862 1.8 christos irel->r_offset + 2, 2)) 1863 1.6 christos goto error_return; 1864 1.6 christos 1865 1.6 christos /* That will change things, so, we should relax again. 1866 1.6 christos Note that this is not required, and it may be slow. */ 1867 1.8 christos *again = true; 1868 1.6 christos } 1869 1.6 christos } 1870 1.1 christos 1871 1.1 christos /* Try to turn a 16bit pc-relative branch into an 1872 1.6 christos 8bit pc-relative branch. */ 1873 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_DISP16) 1874 1.6 christos { 1875 1.6 christos bfd_vma value = symval; 1876 1.1 christos 1877 1.6 christos /* Deal with pc-relative gunk. */ 1878 1.6 christos value -= (sec->output_section->vma + sec->output_offset); 1879 1.6 christos value -= irel->r_offset; 1880 1.6 christos value += irel->r_addend; 1881 1.6 christos 1882 1.6 christos /* See if the value will fit in 8 bits, note the high value is 1883 1.6 christos 0xfc + 2 as the target will be two bytes closer if we are 1884 1.6 christos able to relax. */ 1885 1.6 christos /*if ((long) value < 0x1fa && (long) value > -0x100) REVISIT:range */ 1886 1.6 christos if ((long) value < 0xfa && (long) value > -0x100) 1887 1.6 christos { 1888 1.6 christos unsigned short code; 1889 1.6 christos 1890 1.6 christos /* Get the opcode. */ 1891 1.8 christos code = bfd_get_16 (abfd, contents + irel->r_offset); 1892 1.6 christos 1893 1.6 christos /* Verify it's a 'bcond' and fix the opcode. */ 1894 1.6 christos if ((code & 0xff0f) == 0x1800) 1895 1.6 christos bfd_put_16 (abfd, (code & 0xf0f0), contents + irel->r_offset); 1896 1.6 christos else 1897 1.6 christos continue; 1898 1.6 christos 1899 1.6 christos /* Note that we've changed the relocs, section contents, etc. */ 1900 1.6 christos elf_section_data (sec)->relocs = internal_relocs; 1901 1.6 christos elf_section_data (sec)->this_hdr.contents = contents; 1902 1.6 christos symtab_hdr->contents = (unsigned char *) isymbuf; 1903 1.6 christos 1904 1.6 christos /* Fix the relocation's type. */ 1905 1.6 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info), 1906 1.6 christos R_CR16_DISP8); 1907 1.6 christos 1908 1.6 christos /* Delete two bytes of data. */ 1909 1.6 christos if (!elf32_cr16_relax_delete_bytes (link_info, abfd, sec, 1910 1.8 christos irel->r_offset + 2, 2)) 1911 1.6 christos goto error_return; 1912 1.6 christos 1913 1.6 christos /* That will change things, so, we should relax again. 1914 1.6 christos Note that this is not required, and it may be slow. */ 1915 1.8 christos *again = true; 1916 1.6 christos } 1917 1.6 christos } 1918 1.1 christos 1919 1.1 christos /* Try to turn a 32-bit IMM address into a 20/16-bit IMM address */ 1920 1.1 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_IMM32) 1921 1.6 christos { 1922 1.6 christos bfd_vma value = symval; 1923 1.6 christos unsigned short is_add_mov = 0; 1924 1.6 christos bfd_vma value1 = 0; 1925 1.6 christos 1926 1.6 christos /* Get the existing value from the mcode */ 1927 1.8 christos value1 = bfd_get_32 (abfd, contents + irel->r_offset + 2); 1928 1.8 christos value1 = (value1 >> 16) | ((value1 & 0xffff) << 16); 1929 1.6 christos 1930 1.6 christos /* See if the value will fit in 20 bits. */ 1931 1.6 christos if ((long) (value + value1) < 0xfffff && (long) (value + value1) > 0) 1932 1.6 christos { 1933 1.6 christos unsigned short code; 1934 1.6 christos 1935 1.6 christos /* Get the opcode. */ 1936 1.8 christos code = bfd_get_16 (abfd, contents + irel->r_offset); 1937 1.6 christos 1938 1.6 christos /* Verify it's a 'arithmetic ADDD or MOVD instruction'. 1939 1.6 christos For ADDD and MOVD only, convert to IMM32 -> IMM20. */ 1940 1.6 christos 1941 1.6 christos if (((code & 0xfff0) == 0x0070) || ((code & 0xfff0) == 0x0020)) 1942 1.8 christos is_add_mov = 1; 1943 1.6 christos 1944 1.6 christos if (is_add_mov) 1945 1.6 christos { 1946 1.6 christos /* Note that we've changed the relocs, section contents, 1947 1.6 christos etc. */ 1948 1.6 christos elf_section_data (sec)->relocs = internal_relocs; 1949 1.6 christos elf_section_data (sec)->this_hdr.contents = contents; 1950 1.6 christos symtab_hdr->contents = (unsigned char *) isymbuf; 1951 1.6 christos 1952 1.6 christos /* Fix the opcode. */ 1953 1.6 christos if ((code & 0xfff0) == 0x0070) /* For movd. */ 1954 1.6 christos bfd_put_8 (abfd, 0x05, contents + irel->r_offset + 1); 1955 1.6 christos else /* code == 0x0020 for addd. */ 1956 1.6 christos bfd_put_8 (abfd, 0x04, contents + irel->r_offset + 1); 1957 1.6 christos 1958 1.6 christos bfd_put_8 (abfd, (code & 0xf) << 4, contents + irel->r_offset); 1959 1.6 christos 1960 1.6 christos /* If existing value is nagavive adjust approriately 1961 1.6 christos place the 16-20bits (ie 4 bit) in new opcode, 1962 1.6 christos as the 0xffffxxxx, the higher 2 byte values removed. */ 1963 1.6 christos if (value1 & 0x80000000) 1964 1.8 christos bfd_put_8 (abfd, 1965 1.8 christos (0x0f | (bfd_get_8 (abfd, 1966 1.8 christos contents + irel->r_offset))), 1967 1.8 christos contents + irel->r_offset); 1968 1.6 christos else 1969 1.8 christos bfd_put_8 (abfd, 1970 1.8 christos (((value1 >> 16) & 0xf) 1971 1.8 christos | (bfd_get_8 (abfd, 1972 1.8 christos contents + irel->r_offset))), 1973 1.8 christos contents + irel->r_offset); 1974 1.6 christos 1975 1.6 christos /* Fix the relocation's type. */ 1976 1.6 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info), 1977 1.6 christos R_CR16_IMM20); 1978 1.6 christos 1979 1.6 christos /* Delete two bytes of data. */ 1980 1.6 christos if (!elf32_cr16_relax_delete_bytes (link_info, abfd, sec, 1981 1.6 christos irel->r_offset + 2, 2)) 1982 1.6 christos goto error_return; 1983 1.6 christos 1984 1.6 christos /* That will change things, so, we should relax again. 1985 1.6 christos Note that this is not required, and it may be slow. */ 1986 1.8 christos *again = true; 1987 1.6 christos } 1988 1.6 christos } 1989 1.6 christos 1990 1.6 christos /* See if the value will fit in 16 bits. */ 1991 1.6 christos if ((!is_add_mov) 1992 1.6 christos && ((long)(value + value1) < 0x7fff && (long)(value + value1) > 0)) 1993 1.6 christos { 1994 1.6 christos unsigned short code; 1995 1.6 christos 1996 1.6 christos /* Get the opcode. */ 1997 1.8 christos code = bfd_get_16 (abfd, contents + irel->r_offset); 1998 1.6 christos 1999 1.6 christos /* Note that we've changed the relocs, section contents, etc. */ 2000 1.6 christos elf_section_data (sec)->relocs = internal_relocs; 2001 1.6 christos elf_section_data (sec)->this_hdr.contents = contents; 2002 1.6 christos symtab_hdr->contents = (unsigned char *) isymbuf; 2003 1.6 christos 2004 1.6 christos /* Fix the opcode. */ 2005 1.6 christos if ((code & 0xf0) == 0x70) /* For movd. */ 2006 1.6 christos bfd_put_8 (abfd, 0x54, contents + irel->r_offset + 1); 2007 1.6 christos else if ((code & 0xf0) == 0x20) /* For addd. */ 2008 1.6 christos bfd_put_8 (abfd, 0x60, contents + irel->r_offset + 1); 2009 1.6 christos else if ((code & 0xf0) == 0x90) /* For cmpd. */ 2010 1.6 christos bfd_put_8 (abfd, 0x56, contents + irel->r_offset + 1); 2011 1.6 christos else 2012 1.6 christos continue; 2013 1.6 christos 2014 1.6 christos bfd_put_8 (abfd, 0xb0 | (code & 0xf), contents + irel->r_offset); 2015 1.6 christos 2016 1.6 christos /* If existing value is nagavive adjust approriately 2017 1.6 christos place the 12-16bits (ie 4 bit) in new opcode, 2018 1.6 christos as the 0xfffffxxx, the higher 2 byte values removed. */ 2019 1.6 christos if (value1 & 0x80000000) 2020 1.8 christos bfd_put_8 (abfd, 2021 1.8 christos (0x0f | (bfd_get_8 (abfd, 2022 1.8 christos contents + irel->r_offset))), 2023 1.8 christos contents + irel->r_offset); 2024 1.6 christos else 2025 1.6 christos bfd_put_16 (abfd, value1, contents + irel->r_offset + 2); 2026 1.6 christos 2027 1.6 christos 2028 1.6 christos /* Fix the relocation's type. */ 2029 1.6 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info), 2030 1.6 christos R_CR16_IMM16); 2031 1.6 christos 2032 1.6 christos /* Delete two bytes of data. */ 2033 1.6 christos if (!elf32_cr16_relax_delete_bytes (link_info, abfd, sec, 2034 1.6 christos irel->r_offset + 2, 2)) 2035 1.6 christos goto error_return; 2036 1.6 christos 2037 1.6 christos /* That will change things, so, we should relax again. 2038 1.6 christos Note that this is not required, and it may be slow. */ 2039 1.8 christos *again = true; 2040 1.6 christos } 2041 1.6 christos } 2042 1.1 christos 2043 1.1 christos #if 0 2044 1.1 christos /* Try to turn a 16bit immediate address into a 4bit 2045 1.6 christos immediate address. */ 2046 1.3 christos if ((ELF32_R_TYPE (irel->r_info) == (int) R_CR16_IMM20) 2047 1.6 christos || (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_IMM16)) 2048 1.6 christos { 2049 1.6 christos bfd_vma value = symval; 2050 1.6 christos bfd_vma value1 = 0; 2051 1.6 christos 2052 1.6 christos /* Get the existing value from the mcode */ 2053 1.6 christos value1 = ((bfd_get_16 (abfd, contents + irel->r_offset + 2) & 0xffff)); 2054 1.6 christos 2055 1.6 christos if (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_IMM20) 2056 1.6 christos { 2057 1.8 christos value1 |= ((bfd_get_16 (abfd, contents + irel->r_offset + 1) 2058 1.8 christos & 0xf000) << 0x4); 2059 1.6 christos } 2060 1.6 christos 2061 1.6 christos /* See if the value will fit in 4 bits. */ 2062 1.6 christos if ((((long) (value + value1)) < 0xf) 2063 1.6 christos && (((long) (value + value1)) > 0)) 2064 1.6 christos { 2065 1.6 christos unsigned short code; 2066 1.6 christos 2067 1.6 christos /* Get the opcode. */ 2068 1.8 christos code = bfd_get_16 (abfd, contents + irel->r_offset); 2069 1.6 christos 2070 1.6 christos /* Note that we've changed the relocs, section contents, etc. */ 2071 1.6 christos elf_section_data (sec)->relocs = internal_relocs; 2072 1.6 christos elf_section_data (sec)->this_hdr.contents = contents; 2073 1.6 christos symtab_hdr->contents = (unsigned char *) isymbuf; 2074 1.6 christos 2075 1.6 christos /* Fix the opcode. */ 2076 1.6 christos if (((code & 0x0f00) == 0x0400) || ((code & 0x0f00) == 0x0500)) 2077 1.6 christos { 2078 1.6 christos if ((code & 0x0f00) == 0x0400) /* For movd imm20. */ 2079 1.6 christos bfd_put_8 (abfd, 0x60, contents + irel->r_offset); 2080 1.6 christos else /* For addd imm20. */ 2081 1.6 christos bfd_put_8 (abfd, 0x54, contents + irel->r_offset); 2082 1.8 christos bfd_put_8 (abfd, (code & 0xf0) >> 4, 2083 1.8 christos contents + irel->r_offset + 1); 2084 1.6 christos } 2085 1.6 christos else 2086 1.6 christos { 2087 1.6 christos if ((code & 0xfff0) == 0x56b0) /* For cmpd imm16. */ 2088 1.6 christos bfd_put_8 (abfd, 0x56, contents + irel->r_offset); 2089 1.6 christos else if ((code & 0xfff0) == 0x54b0) /* For movd imm16. */ 2090 1.6 christos bfd_put_8 (abfd, 0x54, contents + irel->r_offset); 2091 1.6 christos else if ((code & 0xfff0) == 0x58b0) /* For movb imm16. */ 2092 1.6 christos bfd_put_8 (abfd, 0x58, contents + irel->r_offset); 2093 1.6 christos else if ((code & 0xfff0) == 0x5Ab0) /* For movw imm16. */ 2094 1.6 christos bfd_put_8 (abfd, 0x5A, contents + irel->r_offset); 2095 1.6 christos else if ((code & 0xfff0) == 0x60b0) /* For addd imm16. */ 2096 1.6 christos bfd_put_8 (abfd, 0x60, contents + irel->r_offset); 2097 1.6 christos else if ((code & 0xfff0) == 0x30b0) /* For addb imm16. */ 2098 1.6 christos bfd_put_8 (abfd, 0x30, contents + irel->r_offset); 2099 1.6 christos else if ((code & 0xfff0) == 0x2Cb0) /* For addub imm16. */ 2100 1.6 christos bfd_put_8 (abfd, 0x2C, contents + irel->r_offset); 2101 1.6 christos else if ((code & 0xfff0) == 0x32b0) /* For adduw imm16. */ 2102 1.6 christos bfd_put_8 (abfd, 0x32, contents + irel->r_offset); 2103 1.6 christos else if ((code & 0xfff0) == 0x38b0) /* For subb imm16. */ 2104 1.6 christos bfd_put_8 (abfd, 0x38, contents + irel->r_offset); 2105 1.6 christos else if ((code & 0xfff0) == 0x3Cb0) /* For subcb imm16. */ 2106 1.6 christos bfd_put_8 (abfd, 0x3C, contents + irel->r_offset); 2107 1.6 christos else if ((code & 0xfff0) == 0x3Fb0) /* For subcw imm16. */ 2108 1.6 christos bfd_put_8 (abfd, 0x3F, contents + irel->r_offset); 2109 1.6 christos else if ((code & 0xfff0) == 0x3Ab0) /* For subw imm16. */ 2110 1.6 christos bfd_put_8 (abfd, 0x3A, contents + irel->r_offset); 2111 1.6 christos else if ((code & 0xfff0) == 0x50b0) /* For cmpb imm16. */ 2112 1.6 christos bfd_put_8 (abfd, 0x50, contents + irel->r_offset); 2113 1.6 christos else if ((code & 0xfff0) == 0x52b0) /* For cmpw imm16. */ 2114 1.6 christos bfd_put_8 (abfd, 0x52, contents + irel->r_offset); 2115 1.6 christos else 2116 1.6 christos continue; 2117 1.6 christos 2118 1.6 christos bfd_put_8 (abfd, (code & 0xf), contents + irel->r_offset + 1); 2119 1.6 christos } 2120 1.6 christos 2121 1.6 christos /* Fix the relocation's type. */ 2122 1.6 christos irel->r_info = ELF32_R_INFO (ELF32_R_SYM (irel->r_info), 2123 1.6 christos R_CR16_IMM4); 2124 1.6 christos 2125 1.6 christos /* Delete two bytes of data. */ 2126 1.6 christos if (!elf32_cr16_relax_delete_bytes (link_info, abfd, sec, 2127 1.6 christos irel->r_offset + 2, 2)) 2128 1.6 christos goto error_return; 2129 1.6 christos 2130 1.6 christos /* That will change things, so, we should relax again. 2131 1.6 christos Note that this is not required, and it may be slow. */ 2132 1.8 christos *again = true; 2133 1.6 christos } 2134 1.6 christos } 2135 1.1 christos #endif 2136 1.1 christos } 2137 1.1 christos 2138 1.1 christos if (isymbuf != NULL 2139 1.1 christos && symtab_hdr->contents != (unsigned char *) isymbuf) 2140 1.1 christos { 2141 1.1 christos if (! link_info->keep_memory) 2142 1.6 christos free (isymbuf); 2143 1.1 christos else 2144 1.8 christos /* Cache the symbols for elf_link_input_bfd. */ 2145 1.8 christos symtab_hdr->contents = (unsigned char *) isymbuf; 2146 1.1 christos } 2147 1.1 christos 2148 1.1 christos if (contents != NULL 2149 1.1 christos && elf_section_data (sec)->this_hdr.contents != contents) 2150 1.1 christos { 2151 1.1 christos if (! link_info->keep_memory) 2152 1.6 christos free (contents); 2153 1.1 christos else 2154 1.8 christos /* Cache the section contents for elf_link_input_bfd. */ 2155 1.8 christos elf_section_data (sec)->this_hdr.contents = contents; 2156 1.3 christos 2157 1.1 christos } 2158 1.1 christos 2159 1.8 christos if (elf_section_data (sec)->relocs != internal_relocs) 2160 1.1 christos free (internal_relocs); 2161 1.1 christos 2162 1.8 christos return true; 2163 1.1 christos 2164 1.1 christos error_return: 2165 1.8 christos if (symtab_hdr->contents != (unsigned char *) isymbuf) 2166 1.1 christos free (isymbuf); 2167 1.8 christos if (elf_section_data (sec)->this_hdr.contents != contents) 2168 1.1 christos free (contents); 2169 1.8 christos if (elf_section_data (sec)->relocs != internal_relocs) 2170 1.1 christos free (internal_relocs); 2171 1.1 christos 2172 1.8 christos return false; 2173 1.1 christos } 2174 1.1 christos 2175 1.1 christos static asection * 2176 1.1 christos elf32_cr16_gc_mark_hook (asection *sec, 2177 1.6 christos struct bfd_link_info *info, 2178 1.6 christos Elf_Internal_Rela *rel, 2179 1.6 christos struct elf_link_hash_entry *h, 2180 1.6 christos Elf_Internal_Sym *sym) 2181 1.1 christos { 2182 1.1 christos return _bfd_elf_gc_mark_hook (sec, info, rel, h, sym); 2183 1.1 christos } 2184 1.1 christos 2185 1.1 christos /* Create dynamic sections when linking against a dynamic object. */ 2186 1.1 christos 2187 1.8 christos static bool 2188 1.1 christos _bfd_cr16_elf_create_dynamic_sections (bfd *abfd, struct bfd_link_info *info) 2189 1.1 christos { 2190 1.1 christos flagword flags; 2191 1.1 christos asection * s; 2192 1.1 christos const struct elf_backend_data * bed = get_elf_backend_data (abfd); 2193 1.6 christos struct elf_link_hash_table *htab = elf_hash_table (info); 2194 1.1 christos int ptralign = 0; 2195 1.1 christos 2196 1.1 christos switch (bed->s->arch_size) 2197 1.1 christos { 2198 1.1 christos case 16: 2199 1.1 christos ptralign = 1; 2200 1.1 christos break; 2201 1.1 christos 2202 1.1 christos case 32: 2203 1.1 christos ptralign = 2; 2204 1.1 christos break; 2205 1.1 christos 2206 1.1 christos default: 2207 1.1 christos bfd_set_error (bfd_error_bad_value); 2208 1.8 christos return false; 2209 1.1 christos } 2210 1.1 christos 2211 1.1 christos /* We need to create .plt, .rel[a].plt, .got, .got.plt, .dynbss, and 2212 1.1 christos .rel[a].bss sections. */ 2213 1.1 christos 2214 1.1 christos flags = (SEC_ALLOC | SEC_LOAD | SEC_HAS_CONTENTS | SEC_IN_MEMORY 2215 1.6 christos | SEC_LINKER_CREATED); 2216 1.1 christos 2217 1.1 christos s = bfd_make_section_anyway_with_flags (abfd, 2218 1.1 christos (bed->default_use_rela_p 2219 1.1 christos ? ".rela.plt" : ".rel.plt"), 2220 1.1 christos flags | SEC_READONLY); 2221 1.6 christos htab->srelplt = s; 2222 1.1 christos if (s == NULL 2223 1.7 christos || !bfd_set_section_alignment (s, ptralign)) 2224 1.8 christos return false; 2225 1.1 christos 2226 1.1 christos if (! _bfd_cr16_elf_create_got_section (abfd, info)) 2227 1.8 christos return false; 2228 1.1 christos 2229 1.1 christos if (bed->want_dynbss) 2230 1.1 christos { 2231 1.1 christos /* The .dynbss section is a place to put symbols which are defined 2232 1.6 christos by dynamic objects, are referenced by regular objects, and are 2233 1.6 christos not functions. We must allocate space for them in the process 2234 1.6 christos image and use a R_*_COPY reloc to tell the dynamic linker to 2235 1.6 christos initialize them at run time. The linker script puts the .dynbss 2236 1.6 christos section into the .bss section of the final image. */ 2237 1.1 christos s = bfd_make_section_anyway_with_flags (abfd, ".dynbss", 2238 1.1 christos SEC_ALLOC | SEC_LINKER_CREATED); 2239 1.1 christos if (s == NULL) 2240 1.8 christos return false; 2241 1.1 christos 2242 1.1 christos /* The .rel[a].bss section holds copy relocs. This section is not 2243 1.6 christos normally needed. We need to create it here, though, so that the 2244 1.6 christos linker will map it to an output section. We can't just create it 2245 1.6 christos only if we need it, because we will not know whether we need it 2246 1.6 christos until we have seen all the input files, and the first time the 2247 1.6 christos main linker code calls BFD after examining all the input files 2248 1.6 christos (size_dynamic_sections) the input sections have already been 2249 1.6 christos mapped to the output sections. If the section turns out not to 2250 1.6 christos be needed, we can discard it later. We will never need this 2251 1.6 christos section when generating a shared object, since they do not use 2252 1.6 christos copy relocs. */ 2253 1.3 christos if (! bfd_link_executable (info)) 2254 1.6 christos { 2255 1.6 christos s = bfd_make_section_anyway_with_flags (abfd, 2256 1.1 christos (bed->default_use_rela_p 2257 1.1 christos ? ".rela.bss" : ".rel.bss"), 2258 1.1 christos flags | SEC_READONLY); 2259 1.6 christos if (s == NULL 2260 1.7 christos || !bfd_set_section_alignment (s, ptralign)) 2261 1.8 christos return false; 2262 1.6 christos } 2263 1.1 christos } 2264 1.1 christos 2265 1.8 christos return true; 2266 1.1 christos } 2267 1.1 christos 2268 1.1 christos /* Adjust a symbol defined by a dynamic object and referenced by a 2270 1.1 christos regular object. The current definition is in some section of the 2271 1.1 christos dynamic object, but we're not including those sections. We have to 2272 1.1 christos change the definition to something the rest of the link can 2273 1.1 christos understand. */ 2274 1.8 christos 2275 1.1 christos static bool 2276 1.6 christos _bfd_cr16_elf_adjust_dynamic_symbol (struct bfd_link_info * info, 2277 1.1 christos struct elf_link_hash_entry * h) 2278 1.1 christos { 2279 1.1 christos bfd * dynobj; 2280 1.1 christos asection * s; 2281 1.1 christos 2282 1.1 christos dynobj = elf_hash_table (info)->dynobj; 2283 1.1 christos 2284 1.1 christos /* Make sure we know what is going on here. */ 2285 1.6 christos BFD_ASSERT (dynobj != NULL 2286 1.6 christos && (h->needs_plt 2287 1.6 christos || h->is_weakalias 2288 1.6 christos || (h->def_dynamic 2289 1.6 christos && h->ref_regular 2290 1.1 christos && !h->def_regular))); 2291 1.1 christos 2292 1.1 christos /* If this is a function, put it in the procedure linkage table. We 2293 1.1 christos will fill in the contents of the procedure linkage table later, 2294 1.1 christos when we know the address of the .got section. */ 2295 1.1 christos if (h->type == STT_FUNC 2296 1.1 christos || h->needs_plt) 2297 1.3 christos { 2298 1.6 christos if (! bfd_link_executable (info) 2299 1.6 christos && !h->def_dynamic 2300 1.6 christos && !h->ref_dynamic) 2301 1.6 christos { 2302 1.6 christos /* This case can occur if we saw a PLT reloc in an input 2303 1.6 christos file, but the symbol was never referred to by a dynamic 2304 1.6 christos object. In such a case, we don't actually need to build 2305 1.6 christos a procedure linkage table, and we can just do a REL32 2306 1.6 christos reloc instead. */ 2307 1.8 christos BFD_ASSERT (h->needs_plt); 2308 1.6 christos return true; 2309 1.1 christos } 2310 1.1 christos 2311 1.1 christos /* Make sure this symbol is output as a dynamic symbol. */ 2312 1.6 christos if (h->dynindx == -1) 2313 1.6 christos { 2314 1.8 christos if (! bfd_elf_link_record_dynamic_symbol (info, h)) 2315 1.6 christos return false; 2316 1.1 christos } 2317 1.1 christos 2318 1.6 christos /* We also need to make an entry in the .got.plt section, which 2319 1.1 christos will be placed in the .got section by the linker script. */ 2320 1.6 christos 2321 1.1 christos s = elf_hash_table (info)->sgotplt; 2322 1.1 christos BFD_ASSERT (s != NULL); 2323 1.1 christos s->size += 4; 2324 1.1 christos 2325 1.1 christos /* We also need to make an entry in the .rela.plt section. */ 2326 1.6 christos 2327 1.1 christos s = elf_hash_table (info)->srelplt; 2328 1.1 christos BFD_ASSERT (s != NULL); 2329 1.1 christos s->size += sizeof (Elf32_External_Rela); 2330 1.8 christos 2331 1.1 christos return true; 2332 1.1 christos } 2333 1.1 christos 2334 1.1 christos /* If this is a weak symbol, and there is a real definition, the 2335 1.1 christos processor independent code will have arranged for us to see the 2336 1.6 christos real definition first, and we can just use the same value. */ 2337 1.1 christos if (h->is_weakalias) 2338 1.6 christos { 2339 1.6 christos struct elf_link_hash_entry *def = weakdef (h); 2340 1.6 christos BFD_ASSERT (def->root.type == bfd_link_hash_defined); 2341 1.6 christos h->root.u.def.section = def->root.u.def.section; 2342 1.8 christos h->root.u.def.value = def->root.u.def.value; 2343 1.1 christos return true; 2344 1.1 christos } 2345 1.1 christos 2346 1.1 christos /* This is a reference to a symbol defined by a dynamic object which 2347 1.1 christos is not a function. */ 2348 1.1 christos 2349 1.1 christos /* If we are creating a shared library, we must presume that the 2350 1.1 christos only references to the symbol are via the global offset table. 2351 1.1 christos For such cases we need not do anything here; the relocations will 2352 1.3 christos be handled correctly by relocate_section. */ 2353 1.8 christos if (bfd_link_executable (info)) 2354 1.1 christos return true; 2355 1.1 christos 2356 1.1 christos /* If there are no references to this symbol that do not use the 2357 1.1 christos GOT, we don't need to generate a copy reloc. */ 2358 1.8 christos if (!h->non_got_ref) 2359 1.1 christos return true; 2360 1.1 christos 2361 1.1 christos /* We must allocate the symbol in our .dynbss section, which will 2362 1.1 christos become part of the .bss section of the executable. There will be 2363 1.1 christos an entry for this symbol in the .dynsym section. The dynamic 2364 1.1 christos object will contain position independent code, so all references 2365 1.1 christos from the dynamic object to this symbol will go through the global 2366 1.1 christos offset table. The dynamic linker will use the .dynsym entry to 2367 1.1 christos determine the address it must put in the global offset table, so 2368 1.1 christos both the dynamic object and the regular object will refer to the 2369 1.1 christos same memory location for the variable. */ 2370 1.1 christos 2371 1.1 christos s = bfd_get_linker_section (dynobj, ".dynbss"); 2372 1.1 christos BFD_ASSERT (s != NULL); 2373 1.1 christos 2374 1.1 christos /* We must generate a R_CR16_COPY reloc to tell the dynamic linker to 2375 1.1 christos copy the initial value out of the dynamic object and into the 2376 1.1 christos runtime process image. We need to remember the offset into the 2377 1.1 christos .rela.bss section we are going to use. */ 2378 1.1 christos if ((h->root.u.def.section->flags & SEC_ALLOC) != 0 && h->size != 0) 2379 1.1 christos { 2380 1.1 christos asection * srel; 2381 1.1 christos 2382 1.1 christos srel = bfd_get_linker_section (dynobj, ".rela.bss"); 2383 1.1 christos BFD_ASSERT (srel != NULL); 2384 1.1 christos srel->size += sizeof (Elf32_External_Rela); 2385 1.1 christos h->needs_copy = 1; 2386 1.1 christos } 2387 1.3 christos 2388 1.1 christos return _bfd_elf_adjust_dynamic_copy (info, h, s); 2389 1.1 christos } 2390 1.1 christos 2391 1.1 christos /* Set the sizes of the dynamic sections. */ 2392 1.8 christos 2393 1.10 christos static bool 2394 1.10 christos _bfd_cr16_elf_late_size_sections (bfd * output_bfd, 2395 1.1 christos struct bfd_link_info * info) 2396 1.1 christos { 2397 1.1 christos bfd * dynobj; 2398 1.8 christos asection * s; 2399 1.1 christos bool relocs; 2400 1.1 christos 2401 1.10 christos dynobj = elf_hash_table (info)->dynobj; 2402 1.10 christos if (dynobj == NULL) 2403 1.1 christos return true; 2404 1.1 christos 2405 1.1 christos if (elf_hash_table (info)->dynamic_sections_created) 2406 1.1 christos { 2407 1.3 christos /* Set the contents of the .interp section to the interpreter. */ 2408 1.6 christos if (bfd_link_executable (info) && !info->nointerp) 2409 1.1 christos { 2410 1.6 christos #if 0 2411 1.6 christos s = bfd_get_linker_section (dynobj, ".interp"); 2412 1.6 christos BFD_ASSERT (s != NULL); 2413 1.6 christos s->size = sizeof ELF_DYNAMIC_INTERPRETER; 2414 1.10 christos s->contents = (unsigned char *) ELF_DYNAMIC_INTERPRETER; 2415 1.1 christos s->alloced = 1; 2416 1.6 christos #endif 2417 1.1 christos } 2418 1.1 christos } 2419 1.1 christos else 2420 1.1 christos { 2421 1.6 christos /* We may have created entries in the .rela.got section. 2422 1.6 christos However, if we are not creating the dynamic sections, we will 2423 1.6 christos not actually use these entries. Reset the size of .rela.got, 2424 1.6 christos which will cause it to get stripped from the output file 2425 1.6 christos below. */ 2426 1.1 christos s = elf_hash_table (info)->srelgot; 2427 1.6 christos if (s != NULL) 2428 1.1 christos s->size = 0; 2429 1.1 christos } 2430 1.1 christos 2431 1.1 christos /* The check_relocs and adjust_dynamic_symbol entry points have 2432 1.1 christos determined the sizes of the various dynamic sections. Allocate 2433 1.8 christos memory for them. */ 2434 1.1 christos relocs = false; 2435 1.1 christos for (s = dynobj->sections; s != NULL; s = s->next) 2436 1.1 christos { 2437 1.1 christos const char * name; 2438 1.1 christos 2439 1.6 christos if ((s->flags & SEC_LINKER_CREATED) == 0) 2440 1.1 christos continue; 2441 1.1 christos 2442 1.6 christos /* It's OK to base decisions on the section name, because none 2443 1.7 christos of the dynobj section names depend upon the input files. */ 2444 1.1 christos name = bfd_section_name (s); 2445 1.1 christos 2446 1.6 christos if (strcmp (name, ".plt") == 0) 2447 1.6 christos { 2448 1.8 christos /* Remember whether there is a PLT. */ 2449 1.6 christos ; 2450 1.8 christos } 2451 1.6 christos else if (startswith (name, ".rela")) 2452 1.6 christos { 2453 1.6 christos if (s->size != 0) 2454 1.6 christos { 2455 1.6 christos /* Remember whether there are any reloc sections other 2456 1.6 christos than .rela.plt. */ 2457 1.8 christos if (strcmp (name, ".rela.plt") != 0) 2458 1.6 christos relocs = true; 2459 1.6 christos 2460 1.6 christos /* We use the reloc_count field as a counter if we need 2461 1.6 christos to copy relocs into the output file. */ 2462 1.6 christos s->reloc_count = 0; 2463 1.6 christos } 2464 1.8 christos } 2465 1.6 christos else if (! startswith (name, ".got") 2466 1.6 christos && strcmp (name, ".dynbss") != 0) 2467 1.6 christos /* It's not one of our sections, so don't allocate space. */ 2468 1.1 christos continue; 2469 1.1 christos 2470 1.6 christos if (s->size == 0) 2471 1.6 christos { 2472 1.6 christos /* If we don't need this section, strip it from the 2473 1.6 christos output file. This is mostly to handle .rela.bss and 2474 1.6 christos .rela.plt. We must create both sections in 2475 1.6 christos create_dynamic_sections, because they must be created 2476 1.6 christos before the linker maps input sections to output 2477 1.6 christos sections. The linker does that before 2478 1.6 christos adjust_dynamic_symbol is called, and it is that 2479 1.6 christos function which decides whether anything needs to go 2480 1.6 christos into these sections. */ 2481 1.6 christos s->flags |= SEC_EXCLUDE; 2482 1.6 christos continue; 2483 1.1 christos } 2484 1.8 christos 2485 1.8 christos if ((s->flags & SEC_HAS_CONTENTS) == 0) 2486 1.1 christos continue; 2487 1.1 christos 2488 1.6 christos /* Allocate memory for the section contents. We use bfd_zalloc 2489 1.6 christos here in case unused entries are not reclaimed before the 2490 1.6 christos section's contents are written out. This should not happen, 2491 1.6 christos but this way if it does, we get a R_CR16_NONE reloc 2492 1.1 christos instead of garbage. */ 2493 1.1 christos s->contents = (bfd_byte *) bfd_zalloc (dynobj, s->size); 2494 1.8 christos if (s->contents == NULL) 2495 1.10 christos return false; 2496 1.1 christos s->alloced = 1; 2497 1.1 christos } 2498 1.8 christos 2499 1.1 christos return _bfd_elf_add_dynamic_tags (output_bfd, info, relocs); 2500 1.1 christos } 2501 1.1 christos 2502 1.1 christos /* Finish up dynamic symbol handling. We set the contents of various 2503 1.1 christos dynamic sections here. */ 2504 1.8 christos 2505 1.1 christos static bool 2506 1.6 christos _bfd_cr16_elf_finish_dynamic_symbol (bfd * output_bfd, 2507 1.6 christos struct bfd_link_info * info, 2508 1.6 christos struct elf_link_hash_entry * h, 2509 1.1 christos Elf_Internal_Sym * sym) 2510 1.1 christos { 2511 1.1 christos bfd * dynobj; 2512 1.1 christos 2513 1.1 christos dynobj = elf_hash_table (info)->dynobj; 2514 1.1 christos 2515 1.1 christos if (h->got.offset != (bfd_vma) -1) 2516 1.6 christos { 2517 1.6 christos asection * sgot; 2518 1.1 christos asection * srel; 2519 1.1 christos Elf_Internal_Rela rel; 2520 1.1 christos 2521 1.1 christos /* This symbol has an entry in the global offset table. Set it up. */ 2522 1.6 christos 2523 1.6 christos sgot = elf_hash_table (info)->sgot; 2524 1.1 christos srel = elf_hash_table (info)->srelgot; 2525 1.1 christos BFD_ASSERT (sgot != NULL && srel != NULL); 2526 1.1 christos 2527 1.6 christos rel.r_offset = (sgot->output_section->vma 2528 1.6 christos + sgot->output_offset 2529 1.1 christos + (h->got.offset & ~1)); 2530 1.1 christos 2531 1.6 christos /* If this is a -Bsymbolic link, and the symbol is defined 2532 1.6 christos locally, we just want to emit a RELATIVE reloc. Likewise if 2533 1.6 christos the symbol was forced to be local because of a version file. 2534 1.6 christos The entry in the global offset table will already have been 2535 1.3 christos initialized in the relocate_section function. */ 2536 1.6 christos if (bfd_link_executable (info) 2537 1.6 christos && (info->symbolic || h->dynindx == -1) 2538 1.6 christos && h->def_regular) 2539 1.6 christos { 2540 1.6 christos rel.r_info = ELF32_R_INFO (0, R_CR16_GOT_REGREL20); 2541 1.6 christos rel.r_addend = (h->root.u.def.value 2542 1.6 christos + h->root.u.def.section->output_section->vma 2543 1.6 christos + h->root.u.def.section->output_offset); 2544 1.1 christos } 2545 1.6 christos else 2546 1.6 christos { 2547 1.6 christos bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents + h->got.offset); 2548 1.6 christos rel.r_info = ELF32_R_INFO (h->dynindx, R_CR16_GOT_REGREL20); 2549 1.6 christos rel.r_addend = 0; 2550 1.1 christos } 2551 1.1 christos 2552 1.6 christos bfd_elf32_swap_reloca_out (output_bfd, &rel, 2553 1.6 christos (bfd_byte *) ((Elf32_External_Rela *) srel->contents 2554 1.1 christos + srel->reloc_count)); 2555 1.1 christos ++ srel->reloc_count; 2556 1.1 christos } 2557 1.1 christos 2558 1.1 christos if (h->needs_copy) 2559 1.6 christos { 2560 1.1 christos asection * s; 2561 1.1 christos Elf_Internal_Rela rel; 2562 1.1 christos 2563 1.1 christos /* This symbol needs a copy reloc. Set it up. */ 2564 1.6 christos BFD_ASSERT (h->dynindx != -1 2565 1.6 christos && (h->root.type == bfd_link_hash_defined 2566 1.1 christos || h->root.type == bfd_link_hash_defweak)); 2567 1.1 christos 2568 1.1 christos s = bfd_get_linker_section (dynobj, ".rela.bss"); 2569 1.1 christos BFD_ASSERT (s != NULL); 2570 1.1 christos 2571 1.6 christos rel.r_offset = (h->root.u.def.value 2572 1.6 christos + h->root.u.def.section->output_section->vma 2573 1.1 christos + h->root.u.def.section->output_offset); 2574 1.1 christos rel.r_info = ELF32_R_INFO (h->dynindx, R_CR16_GOT_REGREL20); 2575 1.1 christos rel.r_addend = 0; 2576 1.6 christos bfd_elf32_swap_reloca_out (output_bfd, &rel, 2577 1.6 christos (bfd_byte *) ((Elf32_External_Rela *) s->contents 2578 1.8 christos + s->reloc_count)); 2579 1.1 christos ++ s->reloc_count; 2580 1.1 christos } 2581 1.1 christos 2582 1.3 christos /* Mark _DYNAMIC and _GLOBAL_OFFSET_TABLE_ as absolute. */ 2583 1.1 christos if (h == elf_hash_table (info)->hdynamic 2584 1.1 christos || h == elf_hash_table (info)->hgot) 2585 1.1 christos sym->st_shndx = SHN_ABS; 2586 1.8 christos 2587 1.1 christos return true; 2588 1.1 christos } 2589 1.1 christos 2590 1.1 christos /* Finish up the dynamic sections. */ 2591 1.8 christos 2592 1.1 christos static bool 2593 1.6 christos _bfd_cr16_elf_finish_dynamic_sections (bfd * output_bfd, 2594 1.1 christos struct bfd_link_info * info) 2595 1.1 christos { 2596 1.1 christos bfd * dynobj; 2597 1.1 christos asection * sgot; 2598 1.1 christos asection * sdyn; 2599 1.1 christos 2600 1.1 christos dynobj = elf_hash_table (info)->dynobj; 2601 1.6 christos 2602 1.1 christos sgot = elf_hash_table (info)->sgotplt; 2603 1.1 christos BFD_ASSERT (sgot != NULL); 2604 1.1 christos sdyn = bfd_get_linker_section (dynobj, ".dynamic"); 2605 1.1 christos 2606 1.1 christos if (elf_hash_table (info)->dynamic_sections_created) 2607 1.1 christos { 2608 1.1 christos Elf32_External_Dyn * dyncon; 2609 1.1 christos Elf32_External_Dyn * dynconend; 2610 1.1 christos 2611 1.1 christos BFD_ASSERT (sdyn != NULL); 2612 1.1 christos 2613 1.1 christos dyncon = (Elf32_External_Dyn *) sdyn->contents; 2614 1.1 christos dynconend = (Elf32_External_Dyn *) (sdyn->contents + sdyn->size); 2615 1.1 christos 2616 1.6 christos for (; dyncon < dynconend; dyncon++) 2617 1.6 christos { 2618 1.6 christos Elf_Internal_Dyn dyn; 2619 1.6 christos asection * s; 2620 1.6 christos 2621 1.6 christos bfd_elf32_swap_dyn_in (dynobj, dyncon, &dyn); 2622 1.6 christos 2623 1.6 christos switch (dyn.d_tag) 2624 1.6 christos { 2625 1.6 christos default: 2626 1.6 christos break; 2627 1.6 christos 2628 1.6 christos case DT_PLTGOT: 2629 1.6 christos s = elf_hash_table (info)->sgotplt; 2630 1.6 christos goto get_vma; 2631 1.6 christos 2632 1.6 christos case DT_JMPREL: 2633 1.6 christos s = elf_hash_table (info)->srelplt; 2634 1.6 christos get_vma: 2635 1.6 christos dyn.d_un.d_ptr = s->output_section->vma + s->output_offset; 2636 1.6 christos bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon); 2637 1.6 christos break; 2638 1.6 christos 2639 1.6 christos case DT_PLTRELSZ: 2640 1.6 christos s = elf_hash_table (info)->srelplt; 2641 1.6 christos dyn.d_un.d_val = s->size; 2642 1.6 christos bfd_elf32_swap_dyn_out (output_bfd, &dyn, dyncon); 2643 1.6 christos break; 2644 1.6 christos } 2645 1.1 christos } 2646 1.1 christos 2647 1.1 christos } 2648 1.1 christos 2649 1.1 christos /* Fill in the first three entries in the global offset table. */ 2650 1.1 christos if (sgot->size > 0) 2651 1.1 christos { 2652 1.6 christos if (sdyn == NULL) 2653 1.1 christos bfd_put_32 (output_bfd, (bfd_vma) 0, sgot->contents); 2654 1.6 christos else 2655 1.6 christos bfd_put_32 (output_bfd, 2656 1.6 christos sdyn->output_section->vma + sdyn->output_offset, 2657 1.1 christos sgot->contents); 2658 1.1 christos } 2659 1.1 christos 2660 1.1 christos elf_section_data (sgot->output_section)->this_hdr.sh_entsize = 4; 2661 1.8 christos 2662 1.1 christos return true; 2663 1.1 christos } 2664 1.1 christos 2665 1.1 christos /* Given a .data.rel section and a .emreloc in-memory section, store 2666 1.1 christos relocation information into the .emreloc section which can be 2667 1.1 christos used at runtime to relocate the section. This is called by the 2668 1.1 christos linker when the --embedded-relocs switch is used. This is called 2669 1.1 christos after the add_symbols entry point has been called for all the 2670 1.1 christos objects, and before the final_link entry point is called. */ 2671 1.8 christos 2672 1.1 christos bool 2673 1.6 christos bfd_cr16_elf32_create_embedded_relocs (bfd *abfd, 2674 1.6 christos struct bfd_link_info *info, 2675 1.6 christos asection *datasec, 2676 1.6 christos asection *relsec, 2677 1.1 christos char **errmsg) 2678 1.1 christos { 2679 1.1 christos Elf_Internal_Shdr *symtab_hdr; 2680 1.1 christos Elf_Internal_Sym *isymbuf = NULL; 2681 1.1 christos Elf_Internal_Rela *internal_relocs = NULL; 2682 1.1 christos Elf_Internal_Rela *irel, *irelend; 2683 1.1 christos bfd_byte *p; 2684 1.1 christos bfd_size_type amt; 2685 1.3 christos 2686 1.1 christos BFD_ASSERT (! bfd_link_relocatable (info)); 2687 1.1 christos 2688 1.1 christos *errmsg = NULL; 2689 1.1 christos 2690 1.8 christos if (datasec->reloc_count == 0) 2691 1.1 christos return true; 2692 1.1 christos 2693 1.1 christos symtab_hdr = &elf_tdata (abfd)->symtab_hdr; 2694 1.1 christos 2695 1.1 christos /* Get a copy of the native relocations. */ 2696 1.6 christos internal_relocs = (_bfd_elf_link_read_relocs 2697 1.1 christos (abfd, datasec, NULL, NULL, info->keep_memory)); 2698 1.1 christos if (internal_relocs == NULL) 2699 1.1 christos goto error_return; 2700 1.1 christos 2701 1.1 christos amt = (bfd_size_type) datasec->reloc_count * 8; 2702 1.1 christos relsec->contents = (bfd_byte *) bfd_alloc (abfd, amt); 2703 1.1 christos if (relsec->contents == NULL) 2704 1.10 christos goto error_return; 2705 1.1 christos relsec->alloced = 1; 2706 1.1 christos 2707 1.1 christos p = relsec->contents; 2708 1.1 christos 2709 1.1 christos irelend = internal_relocs + datasec->reloc_count; 2710 1.1 christos for (irel = internal_relocs; irel < irelend; irel++, p += 8) 2711 1.1 christos { 2712 1.1 christos asection *targetsec; 2713 1.1 christos 2714 1.8 christos /* We are going to write a four byte longword into the runtime 2715 1.8 christos reloc section. The longword will be the address in the data 2716 1.8 christos section which must be relocated. It is followed by the name 2717 1.8 christos of the target section NUL-padded or truncated to 8 2718 1.1 christos characters. */ 2719 1.1 christos 2720 1.1 christos /* We can only relocate absolute longword relocs at run time. */ 2721 1.8 christos if (!((ELF32_R_TYPE (irel->r_info) == (int) R_CR16_NUM32a) 2722 1.6 christos || (ELF32_R_TYPE (irel->r_info) == (int) R_CR16_NUM32))) 2723 1.6 christos { 2724 1.6 christos *errmsg = _("unsupported relocation type"); 2725 1.6 christos bfd_set_error (bfd_error_bad_value); 2726 1.6 christos goto error_return; 2727 1.1 christos } 2728 1.1 christos 2729 1.1 christos /* Get the target section referred to by the reloc. */ 2730 1.6 christos if (ELF32_R_SYM (irel->r_info) < symtab_hdr->sh_info) 2731 1.6 christos { 2732 1.6 christos /* A local symbol. */ 2733 1.6 christos Elf_Internal_Sym *isym; 2734 1.6 christos 2735 1.6 christos /* Read this BFD's local symbols if we haven't done so already. */ 2736 1.6 christos if (isymbuf == NULL) 2737 1.6 christos { 2738 1.6 christos isymbuf = (Elf_Internal_Sym *) symtab_hdr->contents; 2739 1.6 christos if (isymbuf == NULL) 2740 1.6 christos isymbuf = bfd_elf_get_elf_syms (abfd, symtab_hdr, 2741 1.6 christos symtab_hdr->sh_info, 0, 2742 1.6 christos NULL, NULL, NULL); 2743 1.6 christos if (isymbuf == NULL) 2744 1.6 christos goto error_return; 2745 1.6 christos } 2746 1.6 christos 2747 1.6 christos isym = isymbuf + ELF32_R_SYM (irel->r_info); 2748 1.6 christos targetsec = bfd_section_from_elf_index (abfd, isym->st_shndx); 2749 1.1 christos } 2750 1.6 christos else 2751 1.6 christos { 2752 1.6 christos unsigned long indx; 2753 1.6 christos struct elf_link_hash_entry *h; 2754 1.6 christos 2755 1.6 christos /* An external symbol. */ 2756 1.6 christos indx = ELF32_R_SYM (irel->r_info) - symtab_hdr->sh_info; 2757 1.6 christos h = elf_sym_hashes (abfd)[indx]; 2758 1.6 christos BFD_ASSERT (h != NULL); 2759 1.6 christos if (h->root.type == bfd_link_hash_defined 2760 1.6 christos || h->root.type == bfd_link_hash_defweak) 2761 1.6 christos targetsec = h->root.u.def.section; 2762 1.6 christos else 2763 1.6 christos targetsec = NULL; 2764 1.1 christos } 2765 1.1 christos 2766 1.1 christos bfd_put_32 (abfd, irel->r_offset + datasec->output_offset, p); 2767 1.1 christos memset (p + 4, 0, 4); 2768 1.6 christos if ((ELF32_R_TYPE (irel->r_info) == (int) R_CR16_NUM32a) 2769 1.8 christos && (targetsec != NULL) ) 2770 1.1 christos strncpy ((char *) p + 4, targetsec->output_section->name, 4); 2771 1.1 christos } 2772 1.8 christos 2773 1.1 christos if (symtab_hdr->contents != (unsigned char *) isymbuf) 2774 1.8 christos free (isymbuf); 2775 1.1 christos if (elf_section_data (datasec)->relocs != internal_relocs) 2776 1.8 christos free (internal_relocs); 2777 1.1 christos return true; 2778 1.8 christos 2779 1.8 christos error_return: 2780 1.1 christos if (symtab_hdr->contents != (unsigned char *) isymbuf) 2781 1.8 christos free (isymbuf); 2782 1.1 christos if (elf_section_data (datasec)->relocs != internal_relocs) 2783 1.8 christos free (internal_relocs); 2784 1.1 christos return false; 2785 1.1 christos } 2786 1.1 christos 2787 1.1 christos 2788 1.1 christos /* Classify relocation types, such that combreloc can sort them 2789 1.1 christos properly. */ 2790 1.1 christos 2791 1.3 christos static enum elf_reloc_type_class 2792 1.3 christos _bfd_cr16_elf_reloc_type_class (const struct bfd_link_info *info ATTRIBUTE_UNUSED, 2793 1.3 christos const asection *rel_sec ATTRIBUTE_UNUSED, 2794 1.1 christos const Elf_Internal_Rela *rela) 2795 1.1 christos { 2796 1.1 christos switch ((int) ELF32_R_TYPE (rela->r_info)) 2797 1.1 christos { 2798 1.1 christos case R_CR16_GOT_REGREL20: 2799 1.1 christos case R_CR16_GOTC_REGREL20: 2800 1.1 christos return reloc_class_relative; 2801 1.1 christos default: 2802 1.1 christos return reloc_class_normal; 2803 1.1 christos } 2804 1.1 christos } 2805 1.1 christos 2806 1.6 christos /* Definitions for setting CR16 target vector. */ 2807 1.6 christos #define TARGET_LITTLE_SYM cr16_elf32_vec 2808 1.6 christos #define TARGET_LITTLE_NAME "elf32-cr16" 2809 1.10 christos #define ELF_ARCH bfd_arch_cr16 2810 1.6 christos #define ELF_TARGET_ID CR16_ELF_DATA 2811 1.6 christos #define ELF_MACHINE_CODE EM_CR16 2812 1.6 christos #define ELF_MACHINE_ALT1 EM_CR16_OLD 2813 1.6 christos #define ELF_MAXPAGESIZE 0x1 2814 1.6 christos #define elf_symbol_leading_char '_' 2815 1.6 christos 2816 1.6 christos #define bfd_elf32_bfd_reloc_type_lookup elf_cr16_reloc_type_lookup 2817 1.6 christos #define bfd_elf32_bfd_reloc_name_lookup elf_cr16_reloc_name_lookup 2818 1.6 christos #define elf_info_to_howto elf_cr16_info_to_howto 2819 1.6 christos #define elf_info_to_howto_rel NULL 2820 1.6 christos #define elf_backend_relocate_section elf32_cr16_relocate_section 2821 1.1 christos #define bfd_elf32_bfd_relax_section elf32_cr16_relax_section 2822 1.6 christos #define bfd_elf32_bfd_get_relocated_section_contents \ 2823 1.6 christos elf32_cr16_get_relocated_section_contents 2824 1.6 christos #define elf_backend_gc_mark_hook elf32_cr16_gc_mark_hook 2825 1.6 christos #define elf_backend_can_gc_sections 1 2826 1.6 christos #define elf_backend_rela_normal 1 2827 1.1 christos #define elf_backend_check_relocs cr16_elf_check_relocs 2828 1.1 christos /* So we can set bits in e_flags. */ 2829 1.6 christos #define elf_backend_final_write_processing \ 2830 1.6 christos _bfd_cr16_elf_final_write_processing 2831 1.1 christos #define elf_backend_object_p _bfd_cr16_elf_object_p 2832 1.1 christos 2833 1.6 christos #define bfd_elf32_bfd_merge_private_bfd_data \ 2834 1.1 christos _bfd_cr16_elf_merge_private_bfd_data 2835 1.1 christos 2836 1.1 christos 2837 1.6 christos #define bfd_elf32_bfd_link_hash_table_create \ 2838 1.1 christos elf32_cr16_link_hash_table_create 2839 1.1 christos 2840 1.6 christos #define elf_backend_create_dynamic_sections \ 2841 1.1 christos _bfd_cr16_elf_create_dynamic_sections 2842 1.6 christos #define elf_backend_adjust_dynamic_symbol \ 2843 1.10 christos _bfd_cr16_elf_adjust_dynamic_symbol 2844 1.10 christos #define elf_backend_late_size_sections \ 2845 1.6 christos _bfd_cr16_elf_late_size_sections 2846 1.1 christos #define elf_backend_omit_section_dynsym _bfd_elf_omit_section_dynsym_all 2847 1.6 christos #define elf_backend_finish_dynamic_symbol \ 2848 1.1 christos _bfd_cr16_elf_finish_dynamic_symbol 2849 1.6 christos #define elf_backend_finish_dynamic_sections \ 2850 1.1 christos _bfd_cr16_elf_finish_dynamic_sections 2851 1.1 christos 2852 1.1 christos #define elf_backend_reloc_type_class _bfd_cr16_elf_reloc_type_class 2853 1.1 christos 2854 1.6 christos 2855 1.6 christos #define elf_backend_want_got_plt 1 2856 1.6 christos #define elf_backend_plt_readonly 1 2857 1.6 christos #define elf_backend_want_plt_sym 0 2858 1.6 christos #define elf_backend_got_header_size 12 2859 1.1 christos #define elf_backend_dtrel_excludes_plt 1 2860 1.1 christos 2861 #include "elf32-target.h" 2862