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[glibc.git] / sysdeps / sparc / sparc32 / dl-machine.h
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1 /* Machine-dependent ELF dynamic relocation inline functions. SPARC version.
2 Copyright (C) 1996-2014 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, see
17 <http://www.gnu.org/licenses/>. */
19 #ifndef dl_machine_h
20 #define dl_machine_h
22 #define ELF_MACHINE_NAME "sparc"
24 #include <string.h>
25 #include <sys/param.h>
26 #include <ldsodefs.h>
27 #include <sysdep.h>
28 #include <tls.h>
29 #include <dl-plt.h>
31 /* Return nonzero iff ELF header is compatible with the running host. */
32 static inline int
33 elf_machine_matches_host (const Elf32_Ehdr *ehdr)
35 if (ehdr->e_machine == EM_SPARC)
36 return 1;
37 else if (ehdr->e_machine == EM_SPARC32PLUS)
39 /* XXX The following is wrong! Dave Miller rejected to implement it
40 correctly. If this causes problems shoot *him*! */
41 #ifdef SHARED
42 return GLRO(dl_hwcap) & GLRO(dl_hwcap_mask) & HWCAP_SPARC_V9;
43 #else
44 return GLRO(dl_hwcap) & HWCAP_SPARC_V9;
45 #endif
47 else
48 return 0;
51 /* We have to do this because elf_machine_{dynamic,load_address} can be
52 invoked from functions that have no GOT references, and thus the compiler
53 has no obligation to load the PIC register. */
54 #define LOAD_PIC_REG(PIC_REG) \
55 do { register Elf32_Addr pc __asm("o7"); \
56 __asm("sethi %%hi(_GLOBAL_OFFSET_TABLE_-4), %1\n\t" \
57 "call 1f\n\t" \
58 "add %1, %%lo(_GLOBAL_OFFSET_TABLE_+4), %1\n" \
59 "1:\tadd %1, %0, %1" \
60 : "=r" (pc), "=r" (PIC_REG)); \
61 } while (0)
63 /* Return the link-time address of _DYNAMIC. Conveniently, this is the
64 first element of the GOT. This must be inlined in a function which
65 uses global data. */
66 static inline Elf32_Addr
67 elf_machine_dynamic (void)
69 register Elf32_Addr *got asm ("%l7");
71 LOAD_PIC_REG (got);
73 return *got;
76 /* Return the run-time load address of the shared object. */
77 static inline Elf32_Addr
78 elf_machine_load_address (void)
80 register Elf32_Addr *pc __asm ("%o7"), *got __asm ("%l7");
82 __asm ("sethi %%hi(_GLOBAL_OFFSET_TABLE_-4), %1\n\t"
83 "call 1f\n\t"
84 " add %1, %%lo(_GLOBAL_OFFSET_TABLE_+4), %1\n\t"
85 "call _DYNAMIC\n\t"
86 "call _GLOBAL_OFFSET_TABLE_\n"
87 "1:\tadd %1, %0, %1\n\t" : "=r" (pc), "=r" (got));
89 /* got is now l_addr + _GLOBAL_OFFSET_TABLE_
90 *got is _DYNAMIC
91 pc[2]*4 is l_addr + _DYNAMIC - (long)pc - 8
92 pc[3]*4 is l_addr + _GLOBAL_OFFSET_TABLE_ - (long)pc - 12 */
93 return (Elf32_Addr) got - *got + (pc[2] - pc[3]) * 4 - 4;
96 /* Set up the loaded object described by L so its unrelocated PLT
97 entries will jump to the on-demand fixup code in dl-runtime.c. */
99 static inline int
100 elf_machine_runtime_setup (struct link_map *l, int lazy, int profile)
102 Elf32_Addr *plt;
103 extern void _dl_runtime_resolve (Elf32_Word);
104 extern void _dl_runtime_profile (Elf32_Word);
106 if (l->l_info[DT_JMPREL] && lazy)
108 Elf32_Addr rfunc;
110 /* The entries for functions in the PLT have not yet been filled in.
111 Their initial contents will arrange when called to set the high 22
112 bits of %g1 with an offset into the .rela.plt section and jump to
113 the beginning of the PLT. */
114 plt = (Elf32_Addr *) D_PTR (l, l_info[DT_PLTGOT]);
115 if (__builtin_expect(profile, 0))
117 rfunc = (Elf32_Addr) &_dl_runtime_profile;
119 if (GLRO(dl_profile) != NULL
120 && _dl_name_match_p (GLRO(dl_profile), l))
121 GL(dl_profile_map) = l;
123 else
125 rfunc = (Elf32_Addr) &_dl_runtime_resolve;
128 /* The beginning of the PLT does:
130 sethi %hi(_dl_runtime_{resolve,profile}), %g2
131 pltpc: jmpl %g2 + %lo(_dl_runtime_{resolve,profile}), %g2
133 .word MAP
135 The PC value (pltpc) saved in %g2 by the jmpl points near the
136 location where we store the link_map pointer for this object. */
138 plt[0] = 0x05000000 | ((rfunc >> 10) & 0x003fffff);
139 plt[1] = 0x85c0a000 | (rfunc & 0x3ff);
140 plt[2] = OPCODE_NOP; /* Fill call delay slot. */
141 plt[3] = (Elf32_Addr) l;
142 if (__builtin_expect (l->l_info[VALIDX(DT_GNU_PRELINKED)] != NULL, 0)
143 || __builtin_expect (l->l_info [VALIDX (DT_GNU_LIBLISTSZ)] != NULL, 0))
145 /* Need to reinitialize .plt to undo prelinking. */
146 Elf32_Rela *rela = (Elf32_Rela *) D_PTR (l, l_info[DT_JMPREL]);
147 Elf32_Rela *relaend
148 = (Elf32_Rela *) ((char *) rela
149 + l->l_info[DT_PLTRELSZ]->d_un.d_val);
150 #if !defined RTLD_BOOTSTRAP && !defined __sparc_v9__
151 /* Note that we don't mask the hwcap here, as the flush is
152 essential to functionality on those cpu's that implement it.
153 For sparcv9 we can assume flush is present. */
154 const int do_flush = GLRO(dl_hwcap) & HWCAP_SPARC_FLUSH;
155 #else
156 const int do_flush = 1;
157 #endif
159 /* prelink must ensure there are no R_SPARC_NONE relocs left
160 in .rela.plt. */
161 while (rela < relaend)
163 *(unsigned int *) (rela->r_offset + l->l_addr)
164 = OPCODE_SETHI_G1 | (rela->r_offset + l->l_addr
165 - (Elf32_Addr) plt);
166 *(unsigned int *) (rela->r_offset + l->l_addr + 4)
167 = OPCODE_BA | ((((Elf32_Addr) plt
168 - rela->r_offset - l->l_addr - 4) >> 2)
169 & 0x3fffff);
170 if (do_flush)
172 __asm __volatile ("flush %0" : : "r" (rela->r_offset
173 + l->l_addr));
174 __asm __volatile ("flush %0+4" : : "r" (rela->r_offset
175 + l->l_addr));
177 ++rela;
182 return lazy;
185 /* ELF_RTYPE_CLASS_PLT iff TYPE describes relocation of a PLT entry, so
186 PLT entries should not be allowed to define the value.
187 ELF_RTYPE_CLASS_NOCOPY iff TYPE should not be allowed to resolve to one
188 of the main executable's symbols, as for a COPY reloc. */
189 #define elf_machine_type_class(type) \
190 ((((type) == R_SPARC_JMP_SLOT \
191 || ((type) >= R_SPARC_TLS_GD_HI22 && (type) <= R_SPARC_TLS_TPOFF64)) \
192 * ELF_RTYPE_CLASS_PLT) \
193 | (((type) == R_SPARC_COPY) * ELF_RTYPE_CLASS_COPY))
195 /* A reloc type used for ld.so cmdline arg lookups to reject PLT entries. */
196 #define ELF_MACHINE_JMP_SLOT R_SPARC_JMP_SLOT
198 /* The SPARC never uses Elf32_Rel relocations. */
199 #define ELF_MACHINE_NO_REL 1
201 /* Undo the sub %sp, 6*4, %sp; add %sp, 22*4, %o0 below to get at the
202 value we want in __libc_stack_end. */
203 #define DL_STACK_END(cookie) \
204 ((void *) (((long) (cookie)) - (22 - 6) * 4))
206 /* Initial entry point code for the dynamic linker.
207 The C function `_dl_start' is the real entry point;
208 its return value is the user program's entry point. */
210 #define RTLD_GOT_ADDRESS(pic_reg, reg, symbol) \
211 "sethi %gdop_hix22(" #symbol "), " #reg "\n\t" \
212 "xor " #reg ", %gdop_lox10(" #symbol "), " #reg "\n\t" \
213 "ld [" #pic_reg " + " #reg "], " #reg ", %gdop(" #symbol ")"
215 #define RTLD_START __asm__ ("\
216 .text\n\
217 .globl _start\n\
218 .type _start, @function\n\
219 .align 32\n\
220 _start:\n\
221 /* Allocate space for functions to drop their arguments. */\n\
222 sub %sp, 6*4, %sp\n\
223 /* Pass pointer to argument block to _dl_start. */\n\
224 call _dl_start\n\
225 add %sp, 22*4, %o0\n\
226 /* FALTHRU */\n\
227 .globl _dl_start_user\n\
228 .type _dl_start_user, @function\n\
229 _dl_start_user:\n\
230 /* Load the PIC register. */\n\
231 1: call 2f\n\
232 sethi %hi(_GLOBAL_OFFSET_TABLE_-(1b-.)), %l7\n\
233 2: or %l7, %lo(_GLOBAL_OFFSET_TABLE_-(1b-.)), %l7\n\
234 add %l7, %o7, %l7\n\
235 /* Save the user entry point address in %l0 */\n\
236 mov %o0, %l0\n\
237 /* See if we were run as a command with the executable file name as an\n\
238 extra leading argument. If so, adjust the contents of the stack. */\n\
239 " RTLD_GOT_ADDRESS(%l7, %g2, _dl_skip_args) "\n\
240 ld [%g2], %i0\n\
241 tst %i0\n\
242 beq 3f\n\
243 ld [%sp+22*4], %i5 /* load argc */\n\
244 /* Find out how far to shift. */\n\
245 " RTLD_GOT_ADDRESS(%l7, %l3, _dl_argv) "\n\
246 sub %i5, %i0, %i5\n\
247 ld [%l3], %l4\n\
248 sll %i0, 2, %i2\n\
249 st %i5, [%sp+22*4]\n\
250 sub %l4, %i2, %l4\n\
251 add %sp, 23*4, %i1\n\
252 add %i1, %i2, %i2\n\
253 st %l4, [%l3]\n\
254 /* Copy down argv */\n\
255 21: ld [%i2], %i3\n\
256 add %i2, 4, %i2\n\
257 tst %i3\n\
258 st %i3, [%i1]\n\
259 bne 21b\n\
260 add %i1, 4, %i1\n\
261 /* Copy down env */\n\
262 22: ld [%i2], %i3\n\
263 add %i2, 4, %i2\n\
264 tst %i3\n\
265 st %i3, [%i1]\n\
266 bne 22b\n\
267 add %i1, 4, %i1\n\
268 /* Copy down auxiliary table. */\n\
269 23: ld [%i2], %i3\n\
270 ld [%i2+4], %i4\n\
271 add %i2, 8, %i2\n\
272 tst %i3\n\
273 st %i3, [%i1]\n\
274 st %i4, [%i1+4]\n\
275 bne 23b\n\
276 add %i1, 8, %i1\n\
277 /* %o0 = _dl_loaded, %o1 = argc, %o2 = argv, %o3 = envp. */\n\
278 3: " RTLD_GOT_ADDRESS(%l7, %o0, _rtld_local) "\n\
279 add %sp, 23*4, %o2\n\
280 sll %i5, 2, %o3\n\
281 add %o3, 4, %o3\n\
282 mov %i5, %o1\n\
283 add %o2, %o3, %o3\n\
284 call _dl_init_internal\n\
285 ld [%o0], %o0\n\
286 /* Pass our finalizer function to the user in %g1. */\n\
287 " RTLD_GOT_ADDRESS(%l7, %g1, _dl_fini) "\n\
288 /* Jump to the user's entry point and deallocate the extra stack we got. */\n\
289 jmp %l0\n\
290 add %sp, 6*4, %sp\n\
291 .size _dl_start_user, . - _dl_start_user\n\
292 .previous");
294 static inline Elf32_Addr
295 elf_machine_fixup_plt (struct link_map *map, lookup_t t,
296 const Elf32_Rela *reloc,
297 Elf32_Addr *reloc_addr, Elf32_Addr value)
299 #ifdef __sparc_v9__
300 /* Sparc v9 can assume flush is always present. */
301 const int do_flush = 1;
302 #else
303 /* Note that we don't mask the hwcap here, as the flush is essential to
304 functionality on those cpu's that implement it. */
305 const int do_flush = GLRO(dl_hwcap) & HWCAP_SPARC_FLUSH;
306 #endif
307 return sparc_fixup_plt (reloc, reloc_addr, value, 1, do_flush);
310 /* Return the final value of a plt relocation. */
311 static inline Elf32_Addr
312 elf_machine_plt_value (struct link_map *map, const Elf32_Rela *reloc,
313 Elf32_Addr value)
315 return value + reloc->r_addend;
318 #endif /* dl_machine_h */
320 #define ARCH_LA_PLTENTER sparc32_gnu_pltenter
321 #define ARCH_LA_PLTEXIT sparc32_gnu_pltexit
323 #ifdef RESOLVE_MAP
325 /* Perform the relocation specified by RELOC and SYM (which is fully resolved).
326 MAP is the object containing the reloc. */
328 auto inline void
329 __attribute__ ((always_inline))
330 elf_machine_rela (struct link_map *map, const Elf32_Rela *reloc,
331 const Elf32_Sym *sym, const struct r_found_version *version,
332 void *const reloc_addr_arg, int skip_ifunc)
334 Elf32_Addr *const reloc_addr = reloc_addr_arg;
335 #if !defined RTLD_BOOTSTRAP && !defined RESOLVE_CONFLICT_FIND_MAP
336 const Elf32_Sym *const refsym = sym;
337 #endif
338 Elf32_Addr value;
339 const unsigned int r_type = ELF32_R_TYPE (reloc->r_info);
340 #if !defined RESOLVE_CONFLICT_FIND_MAP
341 struct link_map *sym_map = NULL;
342 #endif
344 #if !defined RTLD_BOOTSTRAP && !defined HAVE_Z_COMBRELOC
345 /* This is defined in rtld.c, but nowhere in the static libc.a; make the
346 reference weak so static programs can still link. This declaration
347 cannot be done when compiling rtld.c (i.e. #ifdef RTLD_BOOTSTRAP)
348 because rtld.c contains the common defn for _dl_rtld_map, which is
349 incompatible with a weak decl in the same file. */
350 weak_extern (_dl_rtld_map);
351 #endif
353 if (__builtin_expect (r_type == R_SPARC_NONE, 0))
354 return;
356 if (__builtin_expect (r_type == R_SPARC_SIZE32, 0))
358 *reloc_addr = sym->st_size + reloc->r_addend;
359 return;
362 #if !defined RTLD_BOOTSTRAP || !defined HAVE_Z_COMBRELOC
363 if (__builtin_expect (r_type == R_SPARC_RELATIVE, 0))
365 # if !defined RTLD_BOOTSTRAP && !defined HAVE_Z_COMBRELOC
366 if (map != &_dl_rtld_map) /* Already done in rtld itself. */
367 # endif
368 *reloc_addr += map->l_addr + reloc->r_addend;
369 return;
371 #endif
373 #ifndef RESOLVE_CONFLICT_FIND_MAP
374 if (__builtin_expect (ELF32_ST_BIND (sym->st_info) == STB_LOCAL, 0)
375 && sym->st_shndx != SHN_UNDEF)
377 value = map->l_addr;
379 else
381 sym_map = RESOLVE_MAP (&sym, version, r_type);
382 value = sym_map == NULL ? 0 : sym_map->l_addr + sym->st_value;
384 #else
385 value = 0;
386 #endif
388 value += reloc->r_addend; /* Assume copy relocs have zero addend. */
390 if (sym != NULL
391 && __builtin_expect (ELFW(ST_TYPE) (sym->st_info) == STT_GNU_IFUNC, 0)
392 && __builtin_expect (sym->st_shndx != SHN_UNDEF, 1)
393 && __builtin_expect (!skip_ifunc, 1))
395 value = ((Elf32_Addr (*) (int)) value) (GLRO(dl_hwcap));
398 switch (r_type)
400 #if !defined RTLD_BOOTSTRAP && !defined RESOLVE_CONFLICT_FIND_MAP
401 case R_SPARC_COPY:
402 if (sym == NULL)
403 /* This can happen in trace mode if an object could not be
404 found. */
405 break;
406 if (sym->st_size > refsym->st_size
407 || (GLRO(dl_verbose) && sym->st_size < refsym->st_size))
409 const char *strtab;
411 strtab = (const void *) D_PTR (map, l_info[DT_STRTAB]);
412 _dl_error_printf ("\
413 %s: Symbol `%s' has different size in shared object, consider re-linking\n",
414 RTLD_PROGNAME, strtab + refsym->st_name);
416 memcpy (reloc_addr_arg, (void *) value,
417 MIN (sym->st_size, refsym->st_size));
418 break;
419 #endif
420 case R_SPARC_GLOB_DAT:
421 case R_SPARC_32:
422 *reloc_addr = value;
423 break;
424 case R_SPARC_IRELATIVE:
425 value = ((Elf32_Addr (*) (int)) value) (GLRO(dl_hwcap));
426 *reloc_addr = value;
427 break;
428 case R_SPARC_JMP_IREL:
429 value = ((Elf32_Addr (*) (int)) value) (GLRO(dl_hwcap));
430 /* Fall thru */
431 case R_SPARC_JMP_SLOT:
433 #if !defined RTLD_BOOTSTRAP && !defined __sparc_v9__
434 /* Note that we don't mask the hwcap here, as the flush is
435 essential to functionality on those cpu's that implement
436 it. For sparcv9 we can assume flush is present. */
437 const int do_flush = GLRO(dl_hwcap) & HWCAP_SPARC_FLUSH;
438 #else
439 /* Unfortunately, this is necessary, so that we can ensure
440 ld.so will not execute corrupt PLT entry instructions. */
441 const int do_flush = 1;
442 #endif
443 /* At this point we don't need to bother with thread safety,
444 so we can optimize the first instruction of .plt out. */
445 sparc_fixup_plt (reloc, reloc_addr, value, 0, do_flush);
447 break;
448 #ifndef RESOLVE_CONFLICT_FIND_MAP
449 case R_SPARC_TLS_DTPMOD32:
450 /* Get the information from the link map returned by the
451 resolv function. */
452 if (sym_map != NULL)
453 *reloc_addr = sym_map->l_tls_modid;
454 break;
455 case R_SPARC_TLS_DTPOFF32:
456 /* During relocation all TLS symbols are defined and used.
457 Therefore the offset is already correct. */
458 *reloc_addr = (sym == NULL ? 0 : sym->st_value) + reloc->r_addend;
459 break;
460 case R_SPARC_TLS_TPOFF32:
461 /* The offset is negative, forward from the thread pointer. */
462 /* We know the offset of object the symbol is contained in.
463 It is a negative value which will be added to the
464 thread pointer. */
465 if (sym != NULL)
467 CHECK_STATIC_TLS (map, sym_map);
468 *reloc_addr = sym->st_value - sym_map->l_tls_offset
469 + reloc->r_addend;
471 break;
472 # ifndef RTLD_BOOTSTRAP
473 case R_SPARC_TLS_LE_HIX22:
474 case R_SPARC_TLS_LE_LOX10:
475 if (sym != NULL)
477 CHECK_STATIC_TLS (map, sym_map);
478 value = sym->st_value - sym_map->l_tls_offset
479 + reloc->r_addend;
480 if (r_type == R_SPARC_TLS_LE_HIX22)
481 *reloc_addr = (*reloc_addr & 0xffc00000) | ((~value) >> 10);
482 else
483 *reloc_addr = (*reloc_addr & 0xffffe000) | (value & 0x3ff)
484 | 0x1c00;
486 break;
487 # endif
488 #endif
489 #ifndef RTLD_BOOTSTRAP
490 case R_SPARC_8:
491 *(char *) reloc_addr = value;
492 break;
493 case R_SPARC_16:
494 *(short *) reloc_addr = value;
495 break;
496 case R_SPARC_DISP8:
497 *(char *) reloc_addr = (value - (Elf32_Addr) reloc_addr);
498 break;
499 case R_SPARC_DISP16:
500 *(short *) reloc_addr = (value - (Elf32_Addr) reloc_addr);
501 break;
502 case R_SPARC_DISP32:
503 *reloc_addr = (value - (Elf32_Addr) reloc_addr);
504 break;
505 case R_SPARC_LO10:
506 *reloc_addr = (*reloc_addr & ~0x3ff) | (value & 0x3ff);
507 break;
508 case R_SPARC_WDISP30:
509 *reloc_addr = ((*reloc_addr & 0xc0000000)
510 | ((value - (unsigned int) reloc_addr) >> 2));
511 break;
512 case R_SPARC_HI22:
513 *reloc_addr = (*reloc_addr & 0xffc00000) | (value >> 10);
514 break;
515 case R_SPARC_UA16:
516 ((unsigned char *) reloc_addr_arg) [0] = value >> 8;
517 ((unsigned char *) reloc_addr_arg) [1] = value;
518 break;
519 case R_SPARC_UA32:
520 ((unsigned char *) reloc_addr_arg) [0] = value >> 24;
521 ((unsigned char *) reloc_addr_arg) [1] = value >> 16;
522 ((unsigned char *) reloc_addr_arg) [2] = value >> 8;
523 ((unsigned char *) reloc_addr_arg) [3] = value;
524 break;
525 #endif
526 #if !defined RTLD_BOOTSTRAP || defined _NDEBUG
527 default:
528 _dl_reloc_bad_type (map, r_type, 0);
529 break;
530 #endif
534 auto inline void
535 __attribute__ ((always_inline))
536 elf_machine_rela_relative (Elf32_Addr l_addr, const Elf32_Rela *reloc,
537 void *const reloc_addr_arg)
539 Elf32_Addr *const reloc_addr = reloc_addr_arg;
540 *reloc_addr += l_addr + reloc->r_addend;
543 auto inline void
544 __attribute__ ((always_inline))
545 elf_machine_lazy_rel (struct link_map *map,
546 Elf32_Addr l_addr, const Elf32_Rela *reloc,
547 int skip_ifunc)
549 Elf32_Addr *const reloc_addr = (void *) (l_addr + reloc->r_offset);
550 const unsigned int r_type = ELF32_R_TYPE (reloc->r_info);
552 if (__builtin_expect (r_type == R_SPARC_JMP_SLOT, 1))
554 else if (r_type == R_SPARC_JMP_IREL)
556 Elf32_Addr value = map->l_addr + reloc->r_addend;
557 if (__builtin_expect (!skip_ifunc, 1))
558 value = ((Elf32_Addr (*) (int)) value) (GLRO(dl_hwcap));
559 sparc_fixup_plt (reloc, reloc_addr, value, 1, 1);
561 else if (r_type == R_SPARC_NONE)
563 else
564 _dl_reloc_bad_type (map, r_type, 1);
567 #endif /* RESOLVE_MAP */