1 1.60 riastrad /* $NetBSD: mdreloc.c,v 1.60 2024/08/03 21:59:58 riastradh Exp $ */ 2 1.1 christos 3 1.1 christos /*- 4 1.27 mycroft * Copyright (c) 1999, 2002 The NetBSD Foundation, Inc. 5 1.1 christos * All rights reserved. 6 1.1 christos * 7 1.1 christos * This code is derived from software contributed to The NetBSD Foundation 8 1.29 mycroft * by Paul Kranenburg and by Charles M. Hannum. 9 1.1 christos * 10 1.1 christos * Redistribution and use in source and binary forms, with or without 11 1.1 christos * modification, are permitted provided that the following conditions 12 1.1 christos * are met: 13 1.1 christos * 1. Redistributions of source code must retain the above copyright 14 1.1 christos * notice, this list of conditions and the following disclaimer. 15 1.1 christos * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 christos * notice, this list of conditions and the following disclaimer in the 17 1.1 christos * documentation and/or other materials provided with the distribution. 18 1.1 christos * 19 1.1 christos * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 20 1.1 christos * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 21 1.1 christos * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 22 1.1 christos * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 23 1.1 christos * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 24 1.1 christos * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 25 1.1 christos * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 26 1.1 christos * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 27 1.1 christos * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 28 1.1 christos * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 29 1.1 christos * POSSIBILITY OF SUCH DAMAGE. 30 1.1 christos */ 31 1.1 christos 32 1.59 uwe /* 33 1.59 uwe * SPARC ELF relocations. 34 1.59 uwe * 35 1.59 uwe * Reference: 36 1.59 uwe * 37 1.59 uwe * SPARC Compliance Definition 2.4.1 38 1.59 uwe * http://sparc.org/wp-content/uploads/2014/01/SCD.2.4.1.pdf.gz 39 1.59 uwe */ 40 1.59 uwe 41 1.37 skrll #include <sys/cdefs.h> 42 1.37 skrll #ifndef lint 43 1.60 riastrad __RCSID("$NetBSD: mdreloc.c,v 1.60 2024/08/03 21:59:58 riastradh Exp $"); 44 1.37 skrll #endif /* not lint */ 45 1.37 skrll 46 1.54 joerg #include <machine/elf_support.h> 47 1.54 joerg 48 1.1 christos #include <errno.h> 49 1.1 christos #include <stdio.h> 50 1.1 christos #include <stdlib.h> 51 1.1 christos #include <string.h> 52 1.1 christos #include <unistd.h> 53 1.1 christos 54 1.1 christos #include "rtldenv.h" 55 1.1 christos #include "debug.h" 56 1.1 christos #include "rtld.h" 57 1.1 christos 58 1.1 christos /* 59 1.1 christos * The following table holds for each relocation type: 60 1.1 christos * - the width in bits of the memory location the relocation 61 1.1 christos * applies to (not currently used) 62 1.1 christos * - the number of bits the relocation value must be shifted to the 63 1.1 christos * right (i.e. discard least significant bits) to fit into 64 1.1 christos * the appropriate field in the instruction word. 65 1.1 christos * - flags indicating whether 66 1.1 christos * * the relocation involves a symbol 67 1.1 christos * * the relocation is relative to the current position 68 1.1 christos * * the relocation is for a GOT entry 69 1.1 christos * * the relocation is relative to the load address 70 1.1 christos * 71 1.1 christos */ 72 1.1 christos #define _RF_S 0x80000000 /* Resolve symbol */ 73 1.1 christos #define _RF_A 0x40000000 /* Use addend */ 74 1.1 christos #define _RF_P 0x20000000 /* Location relative */ 75 1.1 christos #define _RF_G 0x10000000 /* GOT offset */ 76 1.1 christos #define _RF_B 0x08000000 /* Load address relative */ 77 1.34 martin #define _RF_U 0x04000000 /* Unaligned */ 78 1.1 christos #define _RF_SZ(s) (((s) & 0xff) << 8) /* memory target size */ 79 1.1 christos #define _RF_RS(s) ( (s) & 0xff) /* right shift */ 80 1.46 martin static const int reloc_target_flags[R_TYPE(TLS_TPOFF64)+1] = { 81 1.1 christos 0, /* NONE */ 82 1.1 christos _RF_S|_RF_A| _RF_SZ(8) | _RF_RS(0), /* RELOC_8 */ 83 1.1 christos _RF_S|_RF_A| _RF_SZ(16) | _RF_RS(0), /* RELOC_16 */ 84 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(0), /* RELOC_32 */ 85 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(8) | _RF_RS(0), /* DISP_8 */ 86 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(16) | _RF_RS(0), /* DISP_16 */ 87 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(32) | _RF_RS(0), /* DISP_32 */ 88 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(32) | _RF_RS(2), /* WDISP_30 */ 89 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(32) | _RF_RS(2), /* WDISP_22 */ 90 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(10), /* HI22 */ 91 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(0), /* 22 */ 92 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(0), /* 13 */ 93 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(0), /* LO10 */ 94 1.1 christos _RF_G| _RF_SZ(32) | _RF_RS(0), /* GOT10 */ 95 1.1 christos _RF_G| _RF_SZ(32) | _RF_RS(0), /* GOT13 */ 96 1.1 christos _RF_G| _RF_SZ(32) | _RF_RS(10), /* GOT22 */ 97 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(32) | _RF_RS(0), /* PC10 */ 98 1.1 christos _RF_S|_RF_A|_RF_P| _RF_SZ(32) | _RF_RS(10), /* PC22 */ 99 1.1 christos _RF_A|_RF_P| _RF_SZ(32) | _RF_RS(2), /* WPLT30 */ 100 1.1 christos _RF_SZ(32) | _RF_RS(0), /* COPY */ 101 1.1 christos _RF_S|_RF_A| _RF_SZ(32) | _RF_RS(0), /* GLOB_DAT */ 102 1.1 christos _RF_SZ(32) | _RF_RS(0), /* JMP_SLOT */ 103 1.2 pk _RF_A| _RF_B| _RF_SZ(32) | _RF_RS(0), /* RELATIVE */ 104 1.34 martin _RF_S|_RF_A| _RF_U| _RF_SZ(32) | _RF_RS(0), /* UA_32 */ 105 1.46 martin 106 1.46 martin /* TLS and 64 bit relocs not listed here... */ 107 1.1 christos }; 108 1.1 christos 109 1.1 christos #ifdef RTLD_DEBUG_RELOC 110 1.1 christos static const char *reloc_names[] = { 111 1.1 christos "NONE", "RELOC_8", "RELOC_16", "RELOC_32", "DISP_8", 112 1.1 christos "DISP_16", "DISP_32", "WDISP_30", "WDISP_22", "HI22", 113 1.1 christos "22", "13", "LO10", "GOT10", "GOT13", 114 1.1 christos "GOT22", "PC10", "PC22", "WPLT30", "COPY", 115 1.47 nakayama "GLOB_DAT", "JMP_SLOT", "RELATIVE", "UA_32", 116 1.46 martin 117 1.46 martin /* not used with 32bit userland, besides a few of the TLS ones */ 118 1.46 martin "PLT32", 119 1.46 martin "HIPLT22", "LOPLT10", "LOPLT10", "PCPLT22", "PCPLT32", 120 1.46 martin "10", "11", "64", "OLO10", "HH22", 121 1.60 riastrad "HM10", "LM22", "PC_HH22", "PC_HM10", "PC_LM22", 122 1.46 martin "WDISP16", "WDISP19", "GLOB_JMP", "7", "5", "6", 123 1.60 riastrad "DISP64", "PLT64", "HIX22", "LOX10", "H44", "M44", 124 1.46 martin "L44", "REGISTER", "UA64", "UA16", 125 1.46 martin "TLS_GD_HI22", "TLS_GD_LO10", "TLS_GD_ADD", "TLS_GD_CALL", 126 1.46 martin "TLS_LDM_HI22", "TLS_LDM_LO10", "TLS_LDM_ADD", "TLS_LDM_CALL", 127 1.60 riastrad "TLS_LDO_HIX22", "TLS_LDO_LOX10", "TLS_LDO_ADD", "TLS_IE_HI22", 128 1.60 riastrad "TLS_IE_LO10", "TLS_IE_LD", "TLS_IE_LDX", "TLS_IE_ADD", "TLS_LE_HIX22", 129 1.60 riastrad "TLS_LE_LOX10", "TLS_DTPMOD32", "TLS_DTPMOD64", "TLS_DTPOFF32", 130 1.46 martin "TLS_DTPOFF64", "TLS_TPOFF32", "TLS_TPOFF64", 131 1.1 christos }; 132 1.1 christos #endif 133 1.1 christos 134 1.1 christos #define RELOC_RESOLVE_SYMBOL(t) ((reloc_target_flags[t] & _RF_S) != 0) 135 1.1 christos #define RELOC_PC_RELATIVE(t) ((reloc_target_flags[t] & _RF_P) != 0) 136 1.2 pk #define RELOC_BASE_RELATIVE(t) ((reloc_target_flags[t] & _RF_B) != 0) 137 1.34 martin #define RELOC_UNALIGNED(t) ((reloc_target_flags[t] & _RF_U) != 0) 138 1.34 martin #define RELOC_USE_ADDEND(t) ((reloc_target_flags[t] & _RF_A) != 0) 139 1.1 christos #define RELOC_TARGET_SIZE(t) ((reloc_target_flags[t] >> 8) & 0xff) 140 1.1 christos #define RELOC_VALUE_RIGHTSHIFT(t) (reloc_target_flags[t] & 0xff) 141 1.46 martin #define RELOC_TLS(t) (t >= R_TYPE(TLS_GD_HI22)) 142 1.1 christos 143 1.21 mycroft static const int reloc_target_bitmask[] = { 144 1.1 christos #define _BM(x) (~(-(1ULL << (x)))) 145 1.1 christos 0, /* NONE */ 146 1.1 christos _BM(8), _BM(16), _BM(32), /* RELOC_8, _16, _32 */ 147 1.1 christos _BM(8), _BM(16), _BM(32), /* DISP8, DISP16, DISP32 */ 148 1.1 christos _BM(30), _BM(22), /* WDISP30, WDISP22 */ 149 1.1 christos _BM(22), _BM(22), /* HI22, _22 */ 150 1.1 christos _BM(13), _BM(10), /* RELOC_13, _LO10 */ 151 1.1 christos _BM(10), _BM(13), _BM(22), /* GOT10, GOT13, GOT22 */ 152 1.60 riastrad _BM(10), _BM(22), /* _PC10, _PC22 */ 153 1.1 christos _BM(30), 0, /* _WPLT30, _COPY */ 154 1.4 pk -1, -1, -1, /* _GLOB_DAT, JMP_SLOT, _RELATIVE */ 155 1.35 martin _BM(32) /* _UA32 */ 156 1.1 christos #undef _BM 157 1.1 christos }; 158 1.1 christos #define RELOC_VALUE_BITMASK(t) (reloc_target_bitmask[t]) 159 1.1 christos 160 1.25 mycroft void _rtld_bind_start(void); 161 1.24 mycroft void _rtld_relocate_nonplt_self(Elf_Dyn *, Elf_Addr); 162 1.33 skrll caddr_t _rtld_bind(const Obj_Entry *, Elf_Word); 163 1.36 skrll static inline int _rtld_relocate_plt_object(const Obj_Entry *, 164 1.36 skrll const Elf_Rela *, Elf_Addr *); 165 1.13 mycroft 166 1.13 mycroft void 167 1.13 mycroft _rtld_setup_pltgot(const Obj_Entry *obj) 168 1.13 mycroft { 169 1.13 mycroft /* 170 1.13 mycroft * PLTGOT is the PLT on the sparc. 171 1.13 mycroft * The first entry holds the call the dynamic linker. 172 1.13 mycroft * We construct a `call' sequence that transfers 173 1.13 mycroft * to `_rtld_bind_start()'. 174 1.13 mycroft * The second entry holds the object identification. 175 1.13 mycroft * Note: each PLT entry is three words long. 176 1.13 mycroft */ 177 1.30 mycroft #define SAVE 0x9de3bfa0 /* i.e. `save %sp,-96,%sp' */ 178 1.13 mycroft #define CALL 0x40000000 179 1.13 mycroft #define NOP 0x01000000 180 1.13 mycroft obj->pltgot[0] = SAVE; 181 1.13 mycroft obj->pltgot[1] = CALL | 182 1.13 mycroft ((Elf_Addr) &_rtld_bind_start - (Elf_Addr) &obj->pltgot[1]) >> 2; 183 1.13 mycroft obj->pltgot[2] = NOP; 184 1.13 mycroft obj->pltgot[3] = (Elf_Addr) obj; 185 1.13 mycroft } 186 1.13 mycroft 187 1.24 mycroft void 188 1.33 skrll _rtld_relocate_nonplt_self(Elf_Dyn *dynp, Elf_Addr relocbase) 189 1.24 mycroft { 190 1.24 mycroft const Elf_Rela *rela = 0, *relalim; 191 1.24 mycroft Elf_Addr relasz = 0; 192 1.24 mycroft Elf_Addr *where; 193 1.24 mycroft 194 1.24 mycroft for (; dynp->d_tag != DT_NULL; dynp++) { 195 1.24 mycroft switch (dynp->d_tag) { 196 1.24 mycroft case DT_RELA: 197 1.24 mycroft rela = (const Elf_Rela *)(relocbase + dynp->d_un.d_ptr); 198 1.24 mycroft break; 199 1.24 mycroft case DT_RELASZ: 200 1.24 mycroft relasz = dynp->d_un.d_val; 201 1.24 mycroft break; 202 1.24 mycroft } 203 1.24 mycroft } 204 1.42 lukem relalim = (const Elf_Rela *)((const uint8_t *)rela + relasz); 205 1.24 mycroft for (; rela < relalim; rela++) { 206 1.24 mycroft where = (Elf_Addr *)(relocbase + rela->r_offset); 207 1.24 mycroft *where += (Elf_Addr)(relocbase + rela->r_addend); 208 1.24 mycroft } 209 1.24 mycroft } 210 1.24 mycroft 211 1.13 mycroft int 212 1.44 joerg _rtld_relocate_nonplt_objects(Obj_Entry *obj) 213 1.1 christos { 214 1.14 mycroft const Elf_Rela *rela; 215 1.50 joerg const Elf_Sym *def = NULL; 216 1.50 joerg const Obj_Entry *defobj = NULL; 217 1.50 joerg unsigned long last_symnum = ULONG_MAX; 218 1.24 mycroft 219 1.14 mycroft for (rela = obj->rela; rela < obj->relalim; rela++) { 220 1.14 mycroft Elf_Addr *where; 221 1.14 mycroft Elf_Word type, value, mask; 222 1.15 mycroft unsigned long symnum; 223 1.14 mycroft 224 1.14 mycroft where = (Elf_Addr *) (obj->relocbase + rela->r_offset); 225 1.14 mycroft 226 1.14 mycroft type = ELF_R_TYPE(rela->r_info); 227 1.14 mycroft if (type == R_TYPE(NONE)) 228 1.17 mycroft continue; 229 1.14 mycroft 230 1.27 mycroft /* We do JMP_SLOTs in _rtld_bind() below */ 231 1.14 mycroft if (type == R_TYPE(JMP_SLOT)) 232 1.17 mycroft continue; 233 1.14 mycroft 234 1.52 joerg /* IFUNC relocations are handled in _rtld_call_ifunc */ 235 1.52 joerg if (type == R_TYPE(IRELATIVE)) { 236 1.55 joerg if (obj->ifunc_remaining_nonplt == 0) { 237 1.55 joerg obj->ifunc_remaining_nonplt = 238 1.55 joerg obj->relalim - rela; 239 1.55 joerg } 240 1.52 joerg continue; 241 1.52 joerg } 242 1.52 joerg 243 1.14 mycroft /* COPY relocs are also handled elsewhere */ 244 1.14 mycroft if (type == R_TYPE(COPY)) 245 1.17 mycroft continue; 246 1.1 christos 247 1.14 mycroft /* 248 1.14 mycroft * We use the fact that relocation types are an `enum' 249 1.46 martin * Note: R_SPARC_TLS_TPOFF64 is currently numerically largest. 250 1.14 mycroft */ 251 1.46 martin if (type > R_TYPE(TLS_TPOFF64)) 252 1.14 mycroft return (-1); 253 1.4 pk 254 1.14 mycroft value = rela->r_addend; 255 1.1 christos 256 1.50 joerg if (RELOC_RESOLVE_SYMBOL(type) || RELOC_TLS(type)) { 257 1.50 joerg symnum = ELF_R_SYM(rela->r_info); 258 1.50 joerg if (last_symnum != symnum) { 259 1.50 joerg last_symnum = symnum; 260 1.50 joerg def = _rtld_find_symdef(symnum, obj, &defobj, 261 1.50 joerg false); 262 1.50 joerg if (def == NULL) 263 1.50 joerg return -1; 264 1.50 joerg } 265 1.50 joerg } 266 1.50 joerg 267 1.14 mycroft /* 268 1.46 martin * Handle TLS relocations here, they are different. 269 1.46 martin */ 270 1.46 martin if (RELOC_TLS(type)) { 271 1.46 martin switch (type) { 272 1.49 joerg case R_TYPE(TLS_DTPMOD32): 273 1.49 joerg *where = (Elf_Addr)defobj->tlsindex; 274 1.49 joerg 275 1.49 joerg rdbg(("TLS_DTPMOD32 %s in %s --> %p", 276 1.49 joerg obj->strtab + 277 1.49 joerg obj->symtab[symnum].st_name, 278 1.49 joerg obj->path, (void *)*where)); 279 1.49 joerg 280 1.49 joerg break; 281 1.49 joerg 282 1.49 joerg case R_TYPE(TLS_DTPOFF32): 283 1.49 joerg *where = (Elf_Addr)(def->st_value 284 1.49 joerg + rela->r_addend); 285 1.49 joerg 286 1.49 joerg rdbg(("TLS_DTPOFF32 %s in %s --> %p", 287 1.49 joerg obj->strtab + 288 1.49 joerg obj->symtab[symnum].st_name, 289 1.49 joerg obj->path, (void *)*where)); 290 1.49 joerg 291 1.49 joerg break; 292 1.49 joerg 293 1.49 joerg case R_TYPE(TLS_TPOFF32): 294 1.57 joerg if (!defobj->tls_static && 295 1.57 joerg _rtld_tls_offset_allocate(__UNCONST(defobj))) 296 1.57 joerg return -1; 297 1.49 joerg 298 1.49 joerg *where = (Elf_Addr)(def->st_value - 299 1.49 joerg defobj->tlsoffset + rela->r_addend); 300 1.49 joerg 301 1.49 joerg rdbg(("TLS_TPOFF32 %s in %s --> %p", 302 1.49 joerg obj->strtab + 303 1.49 joerg obj->symtab[symnum].st_name, 304 1.49 joerg obj->path, (void *)*where)); 305 1.46 martin 306 1.49 joerg break; 307 1.46 martin } 308 1.46 martin continue; 309 1.46 martin } 310 1.46 martin 311 1.46 martin /* 312 1.46 martin * If it is no TLS relocation (handled above), we can not 313 1.56 andvar * deal with it if it is beyond R_SPARC_6. 314 1.46 martin */ 315 1.46 martin if (type > R_TYPE(6)) 316 1.46 martin return (-1); 317 1.46 martin 318 1.46 martin /* 319 1.24 mycroft * Handle relative relocs here, as an optimization. 320 1.14 mycroft */ 321 1.22 mycroft if (type == R_TYPE(RELATIVE)) { 322 1.24 mycroft *where += (Elf_Addr)(obj->relocbase + value); 323 1.26 mycroft rdbg(("RELATIVE in %s --> %p", obj->path, 324 1.24 mycroft (void *)*where)); 325 1.17 mycroft continue; 326 1.14 mycroft } 327 1.1 christos 328 1.14 mycroft if (RELOC_RESOLVE_SYMBOL(type)) { 329 1.14 mycroft /* Add in the symbol's absolute address */ 330 1.14 mycroft value += (Elf_Word)(defobj->relocbase + def->st_value); 331 1.14 mycroft } 332 1.1 christos 333 1.14 mycroft if (RELOC_PC_RELATIVE(type)) { 334 1.14 mycroft value -= (Elf_Word)where; 335 1.14 mycroft } 336 1.2 pk 337 1.14 mycroft if (RELOC_BASE_RELATIVE(type)) { 338 1.14 mycroft /* 339 1.14 mycroft * Note that even though sparcs use `Elf_rela' 340 1.14 mycroft * exclusively we still need the implicit memory addend 341 1.14 mycroft * in relocations referring to GOT entries. 342 1.14 mycroft * Undoubtedly, someone f*cked this up in the distant 343 1.14 mycroft * past, and now we're stuck with it in the name of 344 1.14 mycroft * compatibility for all eternity.. 345 1.14 mycroft * 346 1.14 mycroft * In any case, the implicit and explicit should be 347 1.14 mycroft * mutually exclusive. We provide a check for that 348 1.14 mycroft * here. 349 1.14 mycroft */ 350 1.5 pk #define DIAGNOSTIC 351 1.5 pk #ifdef DIAGNOSTIC 352 1.14 mycroft if (value != 0 && *where != 0) { 353 1.14 mycroft xprintf("BASE_REL(%s): where=%p, *where 0x%x, " 354 1.14 mycroft "addend=0x%x, base %p\n", 355 1.14 mycroft obj->path, where, *where, 356 1.14 mycroft rela->r_addend, obj->relocbase); 357 1.14 mycroft } 358 1.14 mycroft #endif 359 1.14 mycroft value += (Elf_Word)(obj->relocbase + *where); 360 1.5 pk } 361 1.1 christos 362 1.14 mycroft mask = RELOC_VALUE_BITMASK(type); 363 1.14 mycroft value >>= RELOC_VALUE_RIGHTSHIFT(type); 364 1.14 mycroft value &= mask; 365 1.14 mycroft 366 1.34 martin if (RELOC_UNALIGNED(type)) { 367 1.34 martin /* Handle unaligned relocations. */ 368 1.34 martin Elf_Addr tmp = 0; 369 1.34 martin char *ptr = (char *)where; 370 1.34 martin int i, size = RELOC_TARGET_SIZE(type)/8; 371 1.34 martin 372 1.34 martin /* Read it in one byte at a time. */ 373 1.34 martin for (i=0; i<size; i++) 374 1.34 martin tmp = (tmp << 8) | ptr[i]; 375 1.34 martin 376 1.34 martin tmp &= ~mask; 377 1.34 martin tmp |= value; 378 1.34 martin 379 1.34 martin /* Write it back out. */ 380 1.34 martin for (i=0; i<size; i++) 381 1.34 martin ptr[i] = ((tmp >> (8*i)) & 0xff); 382 1.34 martin #ifdef RTLD_DEBUG_RELOC 383 1.34 martin value = (Elf_Word)tmp; 384 1.34 martin #endif 385 1.34 martin 386 1.34 martin } else { 387 1.34 martin *where &= ~mask; 388 1.34 martin *where |= value; 389 1.34 martin #ifdef RTLD_DEBUG_RELOC 390 1.34 martin value = (Elf_Word)*where; 391 1.34 martin #endif 392 1.34 martin } 393 1.1 christos #ifdef RTLD_DEBUG_RELOC 394 1.14 mycroft if (RELOC_RESOLVE_SYMBOL(type)) { 395 1.26 mycroft rdbg(("%s %s in %s --> %p in %s", reloc_names[type], 396 1.58 martin obj->strtab + obj->symtab[ELF_R_SYM(rela->r_info)].st_name, 397 1.34 martin obj->path, (void *)value, defobj->path)); 398 1.16 mycroft } else { 399 1.26 mycroft rdbg(("%s in %s --> %p", reloc_names[type], 400 1.34 martin obj->path, (void *)value)); 401 1.14 mycroft } 402 1.14 mycroft #endif 403 1.1 christos } 404 1.18 mycroft return (0); 405 1.18 mycroft } 406 1.18 mycroft 407 1.18 mycroft int 408 1.51 joerg _rtld_relocate_plt_lazy(Obj_Entry *obj) 409 1.18 mycroft { 410 1.52 joerg const Elf_Rela *rela; 411 1.52 joerg 412 1.52 joerg for (rela = obj->pltrelalim; rela-- > obj->pltrela; ) { 413 1.52 joerg if (ELF_R_TYPE(rela->r_info) == R_TYPE(JMP_IREL)) 414 1.52 joerg obj->ifunc_remaining = obj->pltrelalim - rela + 1; 415 1.52 joerg } 416 1.52 joerg 417 1.52 joerg return 0; 418 1.52 joerg } 419 1.52 joerg 420 1.27 mycroft caddr_t 421 1.33 skrll _rtld_bind(const Obj_Entry *obj, Elf_Word reloff) 422 1.27 mycroft { 423 1.42 lukem const Elf_Rela *rela = (const Elf_Rela *)((const uint8_t *)obj->pltrela + reloff); 424 1.35 martin Elf_Addr value; 425 1.35 martin int err; 426 1.35 martin 427 1.39 mrg value = 0; /* XXX gcc */ 428 1.39 mrg 429 1.45 joerg _rtld_shared_enter(); 430 1.35 martin err = _rtld_relocate_plt_object(obj, rela, &value); 431 1.43 christos if (err) 432 1.35 martin _rtld_die(); 433 1.45 joerg _rtld_shared_exit(); 434 1.35 martin 435 1.35 martin return (caddr_t)value; 436 1.35 martin } 437 1.35 martin 438 1.35 martin int 439 1.35 martin _rtld_relocate_plt_objects(const Obj_Entry *obj) 440 1.35 martin { 441 1.35 martin const Elf_Rela *rela = obj->pltrela; 442 1.35 martin 443 1.35 martin for (; rela < obj->pltrelalim; rela++) 444 1.35 martin if (_rtld_relocate_plt_object(obj, rela, NULL) < 0) 445 1.35 martin return -1; 446 1.35 martin 447 1.35 martin return 0; 448 1.35 martin } 449 1.35 martin 450 1.35 martin static inline int 451 1.35 martin _rtld_relocate_plt_object(const Obj_Entry *obj, const Elf_Rela *rela, Elf_Addr *tp) 452 1.35 martin { 453 1.27 mycroft const Elf_Sym *def; 454 1.27 mycroft const Obj_Entry *defobj; 455 1.28 mycroft Elf_Word *where = (Elf_Addr *)(obj->relocbase + rela->r_offset); 456 1.27 mycroft Elf_Addr value; 457 1.43 christos unsigned long info = rela->r_info; 458 1.27 mycroft 459 1.52 joerg if (ELF_R_TYPE(info) == R_TYPE(JMP_IREL)) 460 1.52 joerg return 0; 461 1.52 joerg 462 1.43 christos assert(ELF_R_TYPE(info) == R_TYPE(JMP_SLOT)); 463 1.27 mycroft 464 1.43 christos def = _rtld_find_plt_symdef(ELF_R_SYM(info), obj, &defobj, tp != NULL); 465 1.43 christos if (__predict_false(def == NULL)) 466 1.35 martin return -1; 467 1.43 christos if (__predict_false(def == &_rtld_sym_zero)) 468 1.43 christos return 0; 469 1.27 mycroft 470 1.48 joerg if (ELF_ST_TYPE(def->st_info) == STT_GNU_IFUNC) { 471 1.48 joerg if (tp == NULL) 472 1.48 joerg return 0; 473 1.48 joerg value = _rtld_resolve_ifunc(defobj, def); 474 1.48 joerg } else { 475 1.48 joerg value = (Elf_Addr)(defobj->relocbase + def->st_value); 476 1.48 joerg } 477 1.60 riastrad rdbg(("bind now/fixup in %s --> new=%p", 478 1.31 mycroft defobj->strtab + def->st_name, (void *)value)); 479 1.27 mycroft 480 1.54 joerg sparc_write_branch(where + 1, (void *)value); 481 1.27 mycroft 482 1.35 martin if (tp) 483 1.35 martin *tp = value; 484 1.35 martin 485 1.35 martin return 0; 486 1.1 christos } 487