]> git.ipfire.org Git - thirdparty/glibc.git/blob - sysdeps/mips/dl-machine.h
Update copyright dates with scripts/update-copyrights
[thirdparty/glibc.git] / sysdeps / mips / dl-machine.h
1 /* Machine-dependent ELF dynamic relocation inline functions. MIPS version.
2 Copyright (C) 1996-2021 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
4 Contributed by Kazumoto Kojima <kkojima@info.kanagawa-u.ac.jp>.
5
6 The GNU C Library is free software; you can redistribute it and/or
7 modify it under the terms of the GNU Lesser General Public
8 License as published by the Free Software Foundation; either
9 version 2.1 of the License, or (at your option) any later version.
10
11 The GNU C Library is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 Lesser General Public License for more details.
15
16 You should have received a copy of the GNU Lesser General Public
17 License along with the GNU C Library. If not, see
18 <https://www.gnu.org/licenses/>. */
19
20 /* FIXME: Profiling of shared libraries is not implemented yet. */
21 #ifndef dl_machine_h
22 #define dl_machine_h
23
24 #define ELF_MACHINE_NAME "MIPS"
25
26 #include <entry.h>
27
28 #ifndef ENTRY_POINT
29 #error ENTRY_POINT needs to be defined for MIPS.
30 #endif
31
32 #include <sgidefs.h>
33 #include <sysdep.h>
34 #include <sys/asm.h>
35 #include <dl-tls.h>
36
37 /* The offset of gp from GOT might be system-dependent. It's set by
38 ld. The same value is also */
39 #define OFFSET_GP_GOT 0x7ff0
40
41 #ifndef _RTLD_PROLOGUE
42 # define _RTLD_PROLOGUE(entry) \
43 ".globl\t" __STRING(entry) "\n\t" \
44 ".ent\t" __STRING(entry) "\n\t" \
45 ".type\t" __STRING(entry) ", @function\n" \
46 __STRING(entry) ":\n\t"
47 #endif
48
49 #ifndef _RTLD_EPILOGUE
50 # define _RTLD_EPILOGUE(entry) \
51 ".end\t" __STRING(entry) "\n\t" \
52 ".size\t" __STRING(entry) ", . - " __STRING(entry) "\n\t"
53 #endif
54
55 /* A reloc type used for ld.so cmdline arg lookups to reject PLT entries.
56 This only makes sense on MIPS when using PLTs, so choose the
57 PLT relocation (not encountered when not using PLTs). */
58 #define ELF_MACHINE_JMP_SLOT R_MIPS_JUMP_SLOT
59 #define elf_machine_type_class(type) \
60 ((((type) == ELF_MACHINE_JMP_SLOT) * ELF_RTYPE_CLASS_PLT) \
61 | (((type) == R_MIPS_COPY) * ELF_RTYPE_CLASS_COPY))
62
63 #define ELF_MACHINE_PLT_REL 1
64 #define ELF_MACHINE_NO_REL 0
65 #define ELF_MACHINE_NO_RELA 0
66
67 /* Translate a processor specific dynamic tag to the index
68 in l_info array. */
69 #define DT_MIPS(x) (DT_MIPS_##x - DT_LOPROC + DT_NUM)
70
71 /* If there is a DT_MIPS_RLD_MAP_REL or DT_MIPS_RLD_MAP entry in the dynamic
72 section, fill in the debug map pointer with the run-time address of the
73 r_debug structure. */
74 #define ELF_MACHINE_DEBUG_SETUP(l,r) \
75 do { if ((l)->l_info[DT_MIPS (RLD_MAP_REL)]) \
76 { \
77 char *ptr = (char *)(l)->l_info[DT_MIPS (RLD_MAP_REL)]; \
78 ptr += (l)->l_info[DT_MIPS (RLD_MAP_REL)]->d_un.d_val; \
79 *(ElfW(Addr) *)ptr = (ElfW(Addr)) (r); \
80 } \
81 else if ((l)->l_info[DT_MIPS (RLD_MAP)]) \
82 *(ElfW(Addr) *)((l)->l_info[DT_MIPS (RLD_MAP)]->d_un.d_ptr) = \
83 (ElfW(Addr)) (r); \
84 } while (0)
85
86 #if ((defined __mips_nan2008 && !defined HAVE_MIPS_NAN2008) \
87 || (!defined __mips_nan2008 && defined HAVE_MIPS_NAN2008))
88 # error "Configuration inconsistency: __mips_nan2008 != HAVE_MIPS_NAN2008, overridden CFLAGS?"
89 #endif
90 #ifdef __mips_nan2008
91 # define ELF_MACHINE_NAN2008 EF_MIPS_NAN2008
92 #else
93 # define ELF_MACHINE_NAN2008 0
94 #endif
95
96 /* Return nonzero iff ELF header is compatible with the running host. */
97 static inline int __attribute_used__
98 elf_machine_matches_host (const ElfW(Ehdr) *ehdr)
99 {
100 #if _MIPS_SIM == _ABIO32 || _MIPS_SIM == _ABIN32
101 /* Don't link o32 and n32 together. */
102 if (((ehdr->e_flags & EF_MIPS_ABI2) != 0) != (_MIPS_SIM == _ABIN32))
103 return 0;
104 #endif
105
106 /* Don't link 2008-NaN and legacy-NaN objects together. */
107 if ((ehdr->e_flags & EF_MIPS_NAN2008) != ELF_MACHINE_NAN2008)
108 return 0;
109
110 /* Ensure that the old O32 FP64 ABI is never loaded, it is not supported
111 on linux. */
112 if (ehdr->e_flags & EF_MIPS_FP64)
113 return 0;
114
115 switch (ehdr->e_machine)
116 {
117 case EM_MIPS:
118 case EM_MIPS_RS3_LE:
119 return 1;
120 default:
121 return 0;
122 }
123 }
124
125 static inline ElfW(Addr) *
126 elf_mips_got_from_gpreg (ElfW(Addr) gpreg)
127 {
128 /* FIXME: the offset of gp from GOT may be system-dependent. */
129 return (ElfW(Addr) *) (gpreg - OFFSET_GP_GOT);
130 }
131
132 /* Return the link-time address of _DYNAMIC. Conveniently, this is the
133 first element of the GOT. This must be inlined in a function which
134 uses global data. We assume its $gp points to the primary GOT. */
135 static inline ElfW(Addr)
136 elf_machine_dynamic (void)
137 {
138 register ElfW(Addr) gp __asm__ ("$28");
139 return *elf_mips_got_from_gpreg (gp);
140 }
141
142 #define STRINGXP(X) __STRING(X)
143 #define STRINGXV(X) STRINGV_(X)
144 #define STRINGV_(...) # __VA_ARGS__
145
146 /* Return the run-time load address of the shared object. */
147 static inline ElfW(Addr)
148 elf_machine_load_address (void)
149 {
150 ElfW(Addr) addr;
151 #ifndef __mips16
152 asm (" .set noreorder\n"
153 " " STRINGXP (PTR_LA) " %0, 0f\n"
154 # if !defined __mips_isa_rev || __mips_isa_rev < 6
155 " bltzal $0, 0f\n"
156 " nop\n"
157 "0: " STRINGXP (PTR_SUBU) " %0, $31, %0\n"
158 # else
159 "0: addiupc $31, 0\n"
160 " " STRINGXP (PTR_SUBU) " %0, $31, %0\n"
161 # endif
162 " .set reorder\n"
163 : "=r" (addr)
164 : /* No inputs */
165 : "$31");
166 #else
167 ElfW(Addr) tmp;
168 asm (" .set noreorder\n"
169 " move %1,$gp\n"
170 " lw %1,%%got(0f)(%1)\n"
171 "0: .fill 0\n" /* Clear the ISA bit on 0:. */
172 " la %0,0b\n"
173 " addiu %1,%%lo(0b)\n"
174 " subu %0,%1\n"
175 " .set reorder\n"
176 : "=d" (addr), "=d" (tmp)
177 : /* No inputs */);
178 #endif
179 return addr;
180 }
181
182 /* The MSB of got[1] of a gnu object is set to identify gnu objects. */
183 #if _MIPS_SIM == _ABI64
184 # define ELF_MIPS_GNU_GOT1_MASK 0x8000000000000000L
185 #else
186 # define ELF_MIPS_GNU_GOT1_MASK 0x80000000L
187 #endif
188
189 /* We can't rely on elf_machine_got_rel because _dl_object_relocation_scope
190 fiddles with global data. */
191 #define ELF_MACHINE_BEFORE_RTLD_RELOC(dynamic_info) \
192 do { \
193 struct link_map *map = BOOTSTRAP_MAP; \
194 ElfW(Sym) *sym; \
195 ElfW(Addr) *got; \
196 int i, n; \
197 \
198 got = (ElfW(Addr) *) D_PTR (map, l_info[DT_PLTGOT]); \
199 \
200 if (__builtin_expect (map->l_addr == 0, 1)) \
201 break; \
202 \
203 /* got[0] is reserved. got[1] is also reserved for the dynamic object \
204 generated by gnu ld. Skip these reserved entries from \
205 relocation. */ \
206 i = (got[1] & ELF_MIPS_GNU_GOT1_MASK)? 2 : 1; \
207 n = map->l_info[DT_MIPS (LOCAL_GOTNO)]->d_un.d_val; \
208 \
209 /* Add the run-time displacement to all local got entries. */ \
210 while (i < n) \
211 got[i++] += map->l_addr; \
212 \
213 /* Handle global got entries. */ \
214 got += n; \
215 sym = (ElfW(Sym) *) D_PTR(map, l_info[DT_SYMTAB]) \
216 + map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val; \
217 i = (map->l_info[DT_MIPS (SYMTABNO)]->d_un.d_val \
218 - map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val); \
219 \
220 while (i--) \
221 { \
222 if (sym->st_shndx == SHN_UNDEF || sym->st_shndx == SHN_COMMON) \
223 *got = SYMBOL_ADDRESS (map, sym, true); \
224 else if (ELFW(ST_TYPE) (sym->st_info) == STT_FUNC \
225 && *got != sym->st_value) \
226 *got += map->l_addr; \
227 else if (ELFW(ST_TYPE) (sym->st_info) == STT_SECTION) \
228 { \
229 if (sym->st_other == 0) \
230 *got += map->l_addr; \
231 } \
232 else \
233 *got = SYMBOL_ADDRESS (map, sym, true); \
234 \
235 got++; \
236 sym++; \
237 } \
238 } while(0)
239
240
241 /* Mask identifying addresses reserved for the user program,
242 where the dynamic linker should not map anything. */
243 #define ELF_MACHINE_USER_ADDRESS_MASK 0x80000000UL
244
245
246 /* Initial entry point code for the dynamic linker.
247 The C function `_dl_start' is the real entry point;
248 its return value is the user program's entry point.
249 Note how we have to be careful about two things:
250
251 1) That we allocate a minimal stack of 24 bytes for
252 every function call, the MIPS ABI states that even
253 if all arguments are passed in registers the procedure
254 called can use the 16 byte area pointed to by $sp
255 when it is called to store away the arguments passed
256 to it.
257
258 2) That under Unix the entry is named __start
259 and not just plain _start. */
260
261 #ifndef __mips16
262 # if !defined __mips_isa_rev || __mips_isa_rev < 6
263 # define LCOFF STRINGXP(.Lcof2)
264 # define LOAD_31 STRINGXP(bltzal $8) "," STRINGXP(.Lcof2)
265 # else
266 # define LCOFF STRINGXP(.Lcof1)
267 # define LOAD_31 "addiupc $31, 0"
268 # endif
269 # define RTLD_START asm (\
270 ".text\n\
271 " _RTLD_PROLOGUE(ENTRY_POINT) "\
272 " STRINGXV(SETUP_GPX($25)) "\n\
273 " STRINGXV(SETUP_GPX64($18,$25)) "\n\
274 # i386 ABI book says that the first entry of GOT holds\n\
275 # the address of the dynamic structure. Though MIPS ABI\n\
276 # doesn't say nothing about this, I emulate this here.\n\
277 " STRINGXP(PTR_LA) " $4, _DYNAMIC\n\
278 # Subtract OFFSET_GP_GOT\n\
279 " STRINGXP(PTR_S) " $4, -0x7ff0($28)\n\
280 move $4, $29\n\
281 " STRINGXP(PTR_SUBIU) " $29, 16\n\
282 \n\
283 " STRINGXP(PTR_LA) " $8, " LCOFF "\n\
284 .Lcof1: " LOAD_31 "\n\
285 .Lcof2: " STRINGXP(PTR_SUBU) " $8, $31, $8\n\
286 \n\
287 " STRINGXP(PTR_LA) " $25, _dl_start\n\
288 " STRINGXP(PTR_ADDU) " $25, $8\n\
289 jalr $25\n\
290 \n\
291 " STRINGXP(PTR_ADDIU) " $29, 16\n\
292 # Get the value of label '_dl_start_user' in t9 ($25).\n\
293 " STRINGXP(PTR_LA) " $25, _dl_start_user\n\
294 " _RTLD_EPILOGUE(ENTRY_POINT) "\
295 \n\
296 \n\
297 " _RTLD_PROLOGUE(_dl_start_user) "\
298 " STRINGXP(SETUP_GP) "\n\
299 " STRINGXV(SETUP_GP64($18,_dl_start_user)) "\n\
300 move $16, $28\n\
301 # Save the user entry point address in a saved register.\n\
302 move $17, $2\n\
303 # See if we were run as a command with the executable file\n\
304 # name as an extra leading argument.\n\
305 lw $2, _dl_skip_args\n\
306 beq $2, $0, 1f\n\
307 # Load the original argument count.\n\
308 " STRINGXP(PTR_L) " $4, 0($29)\n\
309 # Subtract _dl_skip_args from it.\n\
310 subu $4, $2\n\
311 # Adjust the stack pointer to skip _dl_skip_args words.\n\
312 sll $2, " STRINGXP (PTRLOG) "\n\
313 " STRINGXP(PTR_ADDU) " $29, $2\n\
314 # Save back the modified argument count.\n\
315 " STRINGXP(PTR_S) " $4, 0($29)\n\
316 1: # Call _dl_init (struct link_map *main_map, int argc, char **argv, char **env) \n\
317 " STRINGXP(PTR_L) " $4, _rtld_local\n\
318 " STRINGXP(PTR_L) /* or lw??? fixme */ " $5, 0($29)\n\
319 " STRINGXP(PTR_LA) " $6, " STRINGXP (PTRSIZE) "($29)\n\
320 sll $7, $5, " STRINGXP (PTRLOG) "\n\
321 " STRINGXP(PTR_ADDU) " $7, $7, $6\n\
322 " STRINGXP(PTR_ADDU) " $7, $7, " STRINGXP (PTRSIZE) " \n\
323 # Make sure the stack pointer is aligned for _dl_init.\n\
324 and $2, $29, -2 * " STRINGXP(SZREG) "\n\
325 move $8, $29\n\
326 " STRINGXP(PTR_SUBIU) " $29, $2, 32\n\
327 " STRINGXP(PTR_S) " $8, (32 - " STRINGXP(SZREG) ")($29)\n\
328 " STRINGXP(SAVE_GP(16)) "\n\
329 # Call the function to run the initializers.\n\
330 jal _dl_init\n\
331 # Restore the stack pointer for _start.\n\
332 " STRINGXP(PTR_L) " $29, (32 - " STRINGXP(SZREG) ")($29)\n\
333 # Pass our finalizer function to the user in $2 as per ELF ABI.\n\
334 " STRINGXP(PTR_LA) " $2, _dl_fini\n\
335 # Jump to the user entry point.\n\
336 move $25, $17\n\
337 jr $25\n\t"\
338 _RTLD_EPILOGUE(_dl_start_user)\
339 ".previous"\
340 );
341
342 #else /* __mips16 */
343 /* MIPS16 version. We currently only support O32 under MIPS16; the proper
344 assembly preprocessor abstractions will need to be added if other ABIs
345 are to be supported. */
346
347 # define RTLD_START asm (\
348 ".text\n\
349 .set mips16\n\
350 " _RTLD_PROLOGUE (ENTRY_POINT) "\
351 # Construct GP value in $3.\n\
352 li $3, %hi(_gp_disp)\n\
353 addiu $4, $pc, %lo(_gp_disp)\n\
354 sll $3, 16\n\
355 addu $3, $4\n\
356 move $28, $3\n\
357 lw $4, %got(_DYNAMIC)($3)\n\
358 sw $4, -0x7ff0($3)\n\
359 move $4, $sp\n\
360 addiu $sp, -16\n\
361 # _dl_start() is sufficiently near to use pc-relative\n\
362 # load address.\n\
363 la $3, _dl_start\n\
364 move $25, $3\n\
365 jalr $3\n\
366 addiu $sp, 16\n\
367 " _RTLD_EPILOGUE (ENTRY_POINT) "\
368 \n\
369 \n\
370 " _RTLD_PROLOGUE (_dl_start_user) "\
371 li $16, %hi(_gp_disp)\n\
372 addiu $4, $pc, %lo(_gp_disp)\n\
373 sll $16, 16\n\
374 addu $16, $4\n\
375 move $17, $2\n\
376 move $28, $16\n\
377 lw $4, %got(_dl_skip_args)($16)\n\
378 lw $4, 0($4)\n\
379 beqz $4, 1f\n\
380 # Load the original argument count.\n\
381 lw $5, 0($sp)\n\
382 # Subtract _dl_skip_args from it.\n\
383 subu $5, $4\n\
384 # Adjust the stack pointer to skip _dl_skip_args words.\n\
385 sll $4, " STRINGXP (PTRLOG) "\n\
386 move $6, $sp\n\
387 addu $6, $4\n\
388 move $sp, $6\n\
389 # Save back the modified argument count.\n\
390 sw $5, 0($sp)\n\
391 1: # Call _dl_init (struct link_map *main_map, int argc, char **argv, char **env) \n\
392 lw $4, %got(_rtld_local)($16)\n\
393 lw $4, 0($4)\n\
394 lw $5, 0($sp)\n\
395 addiu $6, $sp, " STRINGXP (PTRSIZE) "\n\
396 sll $7, $5, " STRINGXP (PTRLOG) "\n\
397 addu $7, $6\n\
398 addu $7, " STRINGXP (PTRSIZE) "\n\
399 # Make sure the stack pointer is aligned for _dl_init.\n\
400 li $2, 2 * " STRINGXP (SZREG) "\n\
401 neg $2, $2\n\
402 move $3, $sp\n\
403 and $2, $3\n\
404 sw $3, -" STRINGXP (SZREG) "($2)\n\
405 addiu $2, -32\n\
406 move $sp, $2\n\
407 sw $16, 16($sp)\n\
408 # Call the function to run the initializers.\n\
409 lw $2, %call16(_dl_init)($16)\n\
410 move $25, $2\n\
411 jalr $2\n\
412 # Restore the stack pointer for _start.\n\
413 lw $2, 32-" STRINGXP (SZREG) "($sp)\n\
414 move $sp, $2\n\
415 move $28, $16\n\
416 # Pass our finalizer function to the user in $2 as per ELF ABI.\n\
417 lw $2, %call16(_dl_fini)($16)\n\
418 # Jump to the user entry point.\n\
419 move $25, $17\n\
420 jr $17\n\t"\
421 _RTLD_EPILOGUE (_dl_start_user)\
422 ".previous"\
423 );
424
425 #endif /* __mips16 */
426
427 /* Names of the architecture-specific auditing callback functions. */
428 # if _MIPS_SIM == _ABIO32
429 # define ARCH_LA_PLTENTER mips_o32_gnu_pltenter
430 # define ARCH_LA_PLTEXIT mips_o32_gnu_pltexit
431 # elif _MIPS_SIM == _ABIN32
432 # define ARCH_LA_PLTENTER mips_n32_gnu_pltenter
433 # define ARCH_LA_PLTEXIT mips_n32_gnu_pltexit
434 # else
435 # define ARCH_LA_PLTENTER mips_n64_gnu_pltenter
436 # define ARCH_LA_PLTEXIT mips_n64_gnu_pltexit
437 # endif
438
439 /* We define an initialization function. This is called very early in
440 _dl_sysdep_start. */
441 #define DL_PLATFORM_INIT dl_platform_init ()
442
443 static inline void __attribute__ ((unused))
444 dl_platform_init (void)
445 {
446 if (GLRO(dl_platform) != NULL && *GLRO(dl_platform) == '\0')
447 /* Avoid an empty string which would disturb us. */
448 GLRO(dl_platform) = NULL;
449 }
450
451 /* For a non-writable PLT, rewrite the .got.plt entry at RELOC_ADDR to
452 point at the symbol with address VALUE. For a writable PLT, rewrite
453 the corresponding PLT entry instead. */
454 static inline ElfW(Addr)
455 elf_machine_fixup_plt (struct link_map *map, lookup_t t,
456 const ElfW(Sym) *refsym, const ElfW(Sym) *sym,
457 const ElfW(Rel) *reloc,
458 ElfW(Addr) *reloc_addr, ElfW(Addr) value)
459 {
460 return *reloc_addr = value;
461 }
462
463 static inline ElfW(Addr)
464 elf_machine_plt_value (struct link_map *map, const ElfW(Rel) *reloc,
465 ElfW(Addr) value)
466 {
467 return value;
468 }
469
470 #endif /* !dl_machine_h */
471
472 #ifdef RESOLVE_MAP
473
474 /* Perform a relocation described by R_INFO at the location pointed to
475 by RELOC_ADDR. SYM is the relocation symbol specified by R_INFO and
476 MAP is the object containing the reloc. */
477
478 auto inline void
479 __attribute__ ((always_inline))
480 elf_machine_reloc (struct link_map *map, ElfW(Addr) r_info,
481 const ElfW(Sym) *sym, const struct r_found_version *version,
482 void *reloc_addr, ElfW(Addr) r_addend, int inplace_p)
483 {
484 const unsigned long int r_type = ELFW(R_TYPE) (r_info);
485 ElfW(Addr) *addr_field = (ElfW(Addr) *) reloc_addr;
486
487 #if !defined RTLD_BOOTSTRAP && !defined SHARED
488 /* This is defined in rtld.c, but nowhere in the static libc.a;
489 make the reference weak so static programs can still link. This
490 declaration cannot be done when compiling rtld.c (i.e. #ifdef
491 RTLD_BOOTSTRAP) because rtld.c contains the common defn for
492 _dl_rtld_map, which is incompatible with a weak decl in the same
493 file. */
494 weak_extern (GL(dl_rtld_map));
495 #endif
496
497 switch (r_type)
498 {
499 #if !defined (RTLD_BOOTSTRAP)
500 # if _MIPS_SIM == _ABI64
501 case R_MIPS_TLS_DTPMOD64:
502 case R_MIPS_TLS_DTPREL64:
503 case R_MIPS_TLS_TPREL64:
504 # else
505 case R_MIPS_TLS_DTPMOD32:
506 case R_MIPS_TLS_DTPREL32:
507 case R_MIPS_TLS_TPREL32:
508 # endif
509 {
510 struct link_map *sym_map = RESOLVE_MAP (&sym, version, r_type);
511
512 switch (r_type)
513 {
514 case R_MIPS_TLS_DTPMOD64:
515 case R_MIPS_TLS_DTPMOD32:
516 if (sym_map)
517 *addr_field = sym_map->l_tls_modid;
518 break;
519
520 case R_MIPS_TLS_DTPREL64:
521 case R_MIPS_TLS_DTPREL32:
522 if (sym)
523 {
524 if (inplace_p)
525 r_addend = *addr_field;
526 *addr_field = r_addend + TLS_DTPREL_VALUE (sym);
527 }
528 break;
529
530 case R_MIPS_TLS_TPREL32:
531 case R_MIPS_TLS_TPREL64:
532 if (sym)
533 {
534 CHECK_STATIC_TLS (map, sym_map);
535 if (inplace_p)
536 r_addend = *addr_field;
537 *addr_field = r_addend + TLS_TPREL_VALUE (sym_map, sym);
538 }
539 break;
540 }
541
542 break;
543 }
544 #endif
545
546 #if _MIPS_SIM == _ABI64
547 case (R_MIPS_64 << 8) | R_MIPS_REL32:
548 #else
549 case R_MIPS_REL32:
550 #endif
551 {
552 int symidx = ELFW(R_SYM) (r_info);
553 ElfW(Addr) reloc_value;
554
555 if (inplace_p)
556 /* Support relocations on mis-aligned offsets. */
557 __builtin_memcpy (&reloc_value, reloc_addr, sizeof (reloc_value));
558 else
559 reloc_value = r_addend;
560
561 if (symidx)
562 {
563 const ElfW(Word) gotsym
564 = (const ElfW(Word)) map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val;
565
566 if ((ElfW(Word))symidx < gotsym)
567 {
568 /* This wouldn't work for a symbol imported from other
569 libraries for which there's no GOT entry, but MIPS
570 requires every symbol referenced in a dynamic
571 relocation to have a GOT entry in the primary GOT,
572 so we only get here for locally-defined symbols.
573 For section symbols, we should *NOT* be adding
574 sym->st_value (per the definition of the meaning of
575 S in reloc expressions in the ELF64 MIPS ABI),
576 since it should have already been added to
577 reloc_value by the linker, but older versions of
578 GNU ld didn't add it, and newer versions don't emit
579 useless relocations to section symbols any more, so
580 it is safe to keep on adding sym->st_value, even
581 though it's not ABI compliant. Some day we should
582 bite the bullet and stop doing this. */
583 #ifndef RTLD_BOOTSTRAP
584 if (map != &GL(dl_rtld_map))
585 #endif
586 reloc_value += SYMBOL_ADDRESS (map, sym, true);
587 }
588 else
589 {
590 #ifndef RTLD_BOOTSTRAP
591 const ElfW(Addr) *got
592 = (const ElfW(Addr) *) D_PTR (map, l_info[DT_PLTGOT]);
593 const ElfW(Word) local_gotno
594 = (const ElfW(Word))
595 map->l_info[DT_MIPS (LOCAL_GOTNO)]->d_un.d_val;
596
597 reloc_value += got[symidx + local_gotno - gotsym];
598 #endif
599 }
600 }
601 else
602 #ifndef RTLD_BOOTSTRAP
603 if (map != &GL(dl_rtld_map))
604 #endif
605 reloc_value += map->l_addr;
606
607 __builtin_memcpy (reloc_addr, &reloc_value, sizeof (reloc_value));
608 }
609 break;
610 #ifndef RTLD_BOOTSTRAP
611 #if _MIPS_SIM == _ABI64
612 case (R_MIPS_64 << 8) | R_MIPS_GLOB_DAT:
613 #else
614 case R_MIPS_GLOB_DAT:
615 #endif
616 {
617 int symidx = ELFW(R_SYM) (r_info);
618 const ElfW(Word) gotsym
619 = (const ElfW(Word)) map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val;
620
621 if (__builtin_expect ((ElfW(Word)) symidx >= gotsym, 1))
622 {
623 const ElfW(Addr) *got
624 = (const ElfW(Addr) *) D_PTR (map, l_info[DT_PLTGOT]);
625 const ElfW(Word) local_gotno
626 = ((const ElfW(Word))
627 map->l_info[DT_MIPS (LOCAL_GOTNO)]->d_un.d_val);
628
629 ElfW(Addr) reloc_value = got[symidx + local_gotno - gotsym];
630 __builtin_memcpy (reloc_addr, &reloc_value, sizeof (reloc_value));
631 }
632 }
633 break;
634 #endif
635 case R_MIPS_NONE: /* Alright, Wilbur. */
636 break;
637
638 case R_MIPS_JUMP_SLOT:
639 {
640 struct link_map *sym_map;
641 ElfW(Addr) value;
642
643 /* The addend for a jump slot relocation must always be zero:
644 calls via the PLT always branch to the symbol's address and
645 not to the address plus a non-zero offset. */
646 if (r_addend != 0)
647 _dl_signal_error (0, map->l_name, NULL,
648 "found jump slot relocation with non-zero addend");
649
650 sym_map = RESOLVE_MAP (&sym, version, r_type);
651 value = SYMBOL_ADDRESS (sym_map, sym, true);
652 *addr_field = value;
653
654 break;
655 }
656
657 case R_MIPS_COPY:
658 {
659 const ElfW(Sym) *const refsym = sym;
660 struct link_map *sym_map;
661 ElfW(Addr) value;
662
663 /* Calculate the address of the symbol. */
664 sym_map = RESOLVE_MAP (&sym, version, r_type);
665 value = SYMBOL_ADDRESS (sym_map, sym, true);
666
667 if (__builtin_expect (sym == NULL, 0))
668 /* This can happen in trace mode if an object could not be
669 found. */
670 break;
671 if (__builtin_expect (sym->st_size > refsym->st_size, 0)
672 || (__builtin_expect (sym->st_size < refsym->st_size, 0)
673 && GLRO(dl_verbose)))
674 {
675 const char *strtab;
676
677 strtab = (const void *) D_PTR (map, l_info[DT_STRTAB]);
678 _dl_error_printf ("\
679 %s: Symbol `%s' has different size in shared object, consider re-linking\n",
680 RTLD_PROGNAME, strtab + refsym->st_name);
681 }
682 memcpy (reloc_addr, (void *) value,
683 sym->st_size < refsym->st_size
684 ? sym->st_size : refsym->st_size);
685 break;
686 }
687
688 #if _MIPS_SIM == _ABI64
689 case R_MIPS_64:
690 /* For full compliance with the ELF64 ABI, one must precede the
691 _REL32/_64 pair of relocations with a _64 relocation, such
692 that the in-place addend is read as a 64-bit value. IRIX
693 didn't pick up on this requirement, so we treat the
694 _REL32/_64 relocation as a 64-bit relocation even if it's by
695 itself. For ABI compliance, we ignore such _64 dummy
696 relocations. For RELA, this may be simply removed, since
697 it's totally unnecessary. */
698 if (ELFW(R_SYM) (r_info) == 0)
699 break;
700 #endif
701 /* Fall through. */
702 default:
703 _dl_reloc_bad_type (map, r_type, 0);
704 break;
705 }
706 }
707
708 /* Perform the relocation specified by RELOC and SYM (which is fully resolved).
709 MAP is the object containing the reloc. */
710
711 auto inline void
712 __attribute__ ((always_inline))
713 elf_machine_rel (struct link_map *map, const ElfW(Rel) *reloc,
714 const ElfW(Sym) *sym, const struct r_found_version *version,
715 void *const reloc_addr, int skip_ifunc)
716 {
717 elf_machine_reloc (map, reloc->r_info, sym, version, reloc_addr, 0, 1);
718 }
719
720 auto inline void
721 __attribute__((always_inline))
722 elf_machine_rel_relative (ElfW(Addr) l_addr, const ElfW(Rel) *reloc,
723 void *const reloc_addr)
724 {
725 /* XXX Nothing to do. There is no relative relocation, right? */
726 }
727
728 auto inline void
729 __attribute__((always_inline))
730 elf_machine_lazy_rel (struct link_map *map,
731 ElfW(Addr) l_addr, const ElfW(Rel) *reloc,
732 int skip_ifunc)
733 {
734 ElfW(Addr) *const reloc_addr = (void *) (l_addr + reloc->r_offset);
735 const unsigned int r_type = ELFW(R_TYPE) (reloc->r_info);
736 /* Check for unexpected PLT reloc type. */
737 if (__builtin_expect (r_type == R_MIPS_JUMP_SLOT, 1))
738 {
739 if (__builtin_expect (map->l_mach.plt, 0) == 0)
740 {
741 /* Nothing is required here since we only support lazy
742 relocation in executables. */
743 }
744 else
745 *reloc_addr = map->l_mach.plt;
746 }
747 else
748 _dl_reloc_bad_type (map, r_type, 1);
749 }
750
751 auto inline void
752 __attribute__ ((always_inline))
753 elf_machine_rela (struct link_map *map, const ElfW(Rela) *reloc,
754 const ElfW(Sym) *sym, const struct r_found_version *version,
755 void *const reloc_addr, int skip_ifunc)
756 {
757 elf_machine_reloc (map, reloc->r_info, sym, version, reloc_addr,
758 reloc->r_addend, 0);
759 }
760
761 auto inline void
762 __attribute__((always_inline))
763 elf_machine_rela_relative (ElfW(Addr) l_addr, const ElfW(Rela) *reloc,
764 void *const reloc_addr)
765 {
766 }
767
768 #ifndef RTLD_BOOTSTRAP
769 /* Relocate GOT. */
770 auto inline void
771 __attribute__((always_inline))
772 elf_machine_got_rel (struct link_map *map, int lazy)
773 {
774 ElfW(Addr) *got;
775 ElfW(Sym) *sym;
776 const ElfW(Half) *vernum;
777 int i, n, symidx;
778
779 #define RESOLVE_GOTSYM(sym,vernum,sym_index,reloc) \
780 ({ \
781 const ElfW(Sym) *ref = sym; \
782 const struct r_found_version *version __attribute__ ((unused)) \
783 = vernum ? &map->l_versions[vernum[sym_index] & 0x7fff] : NULL; \
784 struct link_map *sym_map; \
785 sym_map = RESOLVE_MAP (&ref, version, reloc); \
786 SYMBOL_ADDRESS (sym_map, ref, true); \
787 })
788
789 if (map->l_info[VERSYMIDX (DT_VERSYM)] != NULL)
790 vernum = (const void *) D_PTR (map, l_info[VERSYMIDX (DT_VERSYM)]);
791 else
792 vernum = NULL;
793
794 got = (ElfW(Addr) *) D_PTR (map, l_info[DT_PLTGOT]);
795
796 n = map->l_info[DT_MIPS (LOCAL_GOTNO)]->d_un.d_val;
797 /* The dynamic linker's local got entries have already been relocated. */
798 if (map != &GL(dl_rtld_map))
799 {
800 /* got[0] is reserved. got[1] is also reserved for the dynamic object
801 generated by gnu ld. Skip these reserved entries from relocation. */
802 i = (got[1] & ELF_MIPS_GNU_GOT1_MASK)? 2 : 1;
803
804 /* Add the run-time displacement to all local got entries if
805 needed. */
806 if (__builtin_expect (map->l_addr != 0, 0))
807 {
808 while (i < n)
809 got[i++] += map->l_addr;
810 }
811 }
812
813 /* Handle global got entries. */
814 got += n;
815 /* Keep track of the symbol index. */
816 symidx = map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val;
817 sym = (ElfW(Sym) *) D_PTR (map, l_info[DT_SYMTAB]) + symidx;
818 i = (map->l_info[DT_MIPS (SYMTABNO)]->d_un.d_val
819 - map->l_info[DT_MIPS (GOTSYM)]->d_un.d_val);
820
821 /* This loop doesn't handle Quickstart. */
822 while (i--)
823 {
824 if (sym->st_shndx == SHN_UNDEF)
825 {
826 if (ELFW(ST_TYPE) (sym->st_info) == STT_FUNC && sym->st_value
827 && !(sym->st_other & STO_MIPS_PLT))
828 {
829 if (lazy)
830 *got = SYMBOL_ADDRESS (map, sym, true);
831 else
832 /* This is a lazy-binding stub, so we don't need the
833 canonical address. */
834 *got = RESOLVE_GOTSYM (sym, vernum, symidx, R_MIPS_JUMP_SLOT);
835 }
836 else
837 *got = RESOLVE_GOTSYM (sym, vernum, symidx, R_MIPS_32);
838 }
839 else if (sym->st_shndx == SHN_COMMON)
840 *got = RESOLVE_GOTSYM (sym, vernum, symidx, R_MIPS_32);
841 else if (ELFW(ST_TYPE) (sym->st_info) == STT_FUNC
842 && *got != sym->st_value)
843 {
844 if (lazy)
845 *got += map->l_addr;
846 else
847 /* This is a lazy-binding stub, so we don't need the
848 canonical address. */
849 *got = RESOLVE_GOTSYM (sym, vernum, symidx, R_MIPS_JUMP_SLOT);
850 }
851 else if (ELFW(ST_TYPE) (sym->st_info) == STT_SECTION)
852 {
853 if (sym->st_other == 0)
854 *got += map->l_addr;
855 }
856 else
857 *got = RESOLVE_GOTSYM (sym, vernum, symidx, R_MIPS_32);
858
859 ++got;
860 ++sym;
861 ++symidx;
862 }
863
864 #undef RESOLVE_GOTSYM
865 }
866 #endif
867
868 /* Set up the loaded object described by L so its stub function
869 will jump to the on-demand fixup code __dl_runtime_resolve. */
870
871 auto inline int
872 __attribute__((always_inline))
873 elf_machine_runtime_setup (struct link_map *l, int lazy, int profile)
874 {
875 # ifndef RTLD_BOOTSTRAP
876 ElfW(Addr) *got;
877 extern void _dl_runtime_resolve (ElfW(Word));
878 extern void _dl_runtime_pltresolve (void);
879 extern int _dl_mips_gnu_objects;
880
881 if (lazy)
882 {
883 /* The GOT entries for functions have not yet been filled in.
884 Their initial contents will arrange when called to put an
885 offset into the .dynsym section in t8, the return address
886 in t7 and then jump to _GLOBAL_OFFSET_TABLE[0]. */
887 got = (ElfW(Addr) *) D_PTR (l, l_info[DT_PLTGOT]);
888
889 /* This function will get called to fix up the GOT entry indicated by
890 the register t8, and then jump to the resolved address. */
891 got[0] = (ElfW(Addr)) &_dl_runtime_resolve;
892
893 /* Store l to _GLOBAL_OFFSET_TABLE[1] for gnu object. The MSB
894 of got[1] of a gnu object is set to identify gnu objects.
895 Where we can store l for non gnu objects? XXX */
896 if ((got[1] & ELF_MIPS_GNU_GOT1_MASK) != 0)
897 got[1] = ((ElfW(Addr)) l | ELF_MIPS_GNU_GOT1_MASK);
898 else
899 _dl_mips_gnu_objects = 0;
900 }
901
902 /* Relocate global offset table. */
903 elf_machine_got_rel (l, lazy);
904
905 /* If using PLTs, fill in the first two entries of .got.plt. */
906 if (l->l_info[DT_JMPREL] && lazy)
907 {
908 ElfW(Addr) *gotplt;
909 gotplt = (ElfW(Addr) *) D_PTR (l, l_info[DT_MIPS (PLTGOT)]);
910 /* If a library is prelinked but we have to relocate anyway,
911 we have to be able to undo the prelinking of .got.plt.
912 The prelinker saved the address of .plt for us here. */
913 if (gotplt[1])
914 l->l_mach.plt = gotplt[1] + l->l_addr;
915 gotplt[0] = (ElfW(Addr)) &_dl_runtime_pltresolve;
916 gotplt[1] = (ElfW(Addr)) l;
917 }
918
919 # endif
920 return lazy;
921 }
922
923 #endif /* RESOLVE_MAP */