1 /* Machine-dependent ELF dynamic relocation inline functions. SH version.
2 Copyright (C) 1999-2024 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 <https://www.gnu.org/licenses/>. */
22 #define ELF_MACHINE_NAME "SH"
24 #include <sys/param.h>
27 #include <dl-static-tls.h>
28 #include <dl-machine-rel.h>
30 /* Return nonzero iff ELF header is compatible with the running host. */
31 static inline int __attribute__ ((unused
))
32 elf_machine_matches_host (const Elf32_Ehdr
*ehdr
)
34 return ehdr
->e_machine
== EM_SH
;
38 /* Return the link-time address of _DYNAMIC. Conveniently, this is the
39 first element of the GOT. This must be inlined in a function which
41 static inline Elf32_Addr
__attribute__ ((unused
))
42 elf_machine_dynamic (void)
44 register Elf32_Addr
*got
;
45 asm ("mov r12,%0" :"=r" (got
));
50 /* Return the run-time load address of the shared object. */
51 static inline Elf32_Addr
__attribute__ ((unused
))
52 elf_machine_load_address (void)
62 1: .long _dl_start@GOT\n\
63 3: .long _dl_start@GOTOFF\n\
65 : "=r" (addr
) : : "r0", "r1", "r2");
70 /* Set up the loaded object described by L so its unrelocated PLT
71 entries will jump to the on-demand fixup code in dl-runtime.c. */
73 static inline int __attribute__ ((unused
, always_inline
))
74 elf_machine_runtime_setup (struct link_map
*l
, struct r_scope_elem
*scope
[],
75 int lazy
, int profile
)
78 extern void _dl_runtime_resolve (Elf32_Word
);
79 extern void _dl_runtime_profile (Elf32_Word
);
81 if (l
->l_info
[DT_JMPREL
] && lazy
)
83 /* The GOT entries for functions in the PLT have not yet been filled
84 in. Their initial contents will arrange when called to load an
85 offset into the .rela.plt section and _GLOBAL_OFFSET_TABLE_[1],
86 and then jump to _GLOBAL_OFFSET_TABLE[2]. */
87 got
= (Elf32_Addr
*) D_PTR (l
, l_info
[DT_PLTGOT
]);
88 /* If a library is prelinked but we have to relocate anyway,
89 we have to be able to undo the prelinking of .got.plt.
90 The prelinker saved us here address of .plt + 36. */
93 l
->l_mach
.plt
= got
[1] + l
->l_addr
;
94 l
->l_mach
.gotplt
= (Elf32_Addr
) &got
[3];
96 got
[1] = (Elf32_Addr
) l
; /* Identify this shared object. */
98 /* The got[2] entry contains the address of a function which gets
99 called to get the address of a so far unresolved function and
100 jump to it. The profiling extension of the dynamic linker allows
101 to intercept the calls to collect information. In this case we
102 don't store the address in the GOT so that all future calls also
103 end in this function. */
107 got
[2] = (Elf32_Addr
) &_dl_runtime_profile
;
108 /* Say that we really want profiling and the timers are started. */
109 if (GLRO(dl_profile
) != NULL
110 && _dl_name_match_p (GLRO(dl_profile
), l
))
111 GL(dl_profile_map
) = l
;
115 /* This function will get called to fix up the GOT entry indicated by
116 the offset on the stack, and then jump to the resolved address. */
117 got
[2] = (Elf32_Addr
) &_dl_runtime_resolve
;
122 #define ELF_MACHINE_RUNTIME_FIXUP_ARGS int plt_type
123 #define ELF_MACHINE_RUNTIME_FIXUP_PARAMS plt_type
125 /* Mask identifying addresses reserved for the user program,
126 where the dynamic linker should not map anything. */
127 #define ELF_MACHINE_USER_ADDRESS_MASK 0x80000000UL
129 /* Initial entry point code for the dynamic linker.
130 The C function `_dl_start' is the real entry point;
131 its return value is the user program's entry point. */
133 #define RTLD_START asm ("\
136 .globl _dl_start_user\n\
139 mov.l .L_dl_start,r1\n\
140 mova .L_dl_start,r0\n\
145 ! Save the user entry point address in r8.\n\
147 ! Point r12 at the GOT.\n\
153 1: .long _GLOBAL_OFFSET_TABLE_\n\
154 2: ! Get the original argument count.\n\
156 ! Compute argv address and envp.\n\
163 mov.l .L_dl_loaded,r0\n\
164 mov.l @(r0,r12),r0\n\
167 mov.l .L_dl_init,r1\n\
168 mova .L_dl_init,r0\n\
172 1: ! Pass our finalizer function to the user in r4, as per ELF ABI.\n\
173 mov.l .L_dl_fini,r0\n\
174 mov.l @(r0,r12),r4\n\
175 ! Jump to the user's entry point.\n\
180 .long _dl_start@PLT\n\
182 .long _dl_init@PLT\n\
184 .long _rtld_local@GOT\n\
186 .long _dl_fini@GOT\n\
187 .type __fpscr_values,@object\n\
188 .global __fpscr_values\n\
192 .weak __fpscr_values\n\
196 /* ELF_RTYPE_CLASS_PLT iff TYPE describes relocation of a PLT entry or
197 TLS variable, so undefined references should not be allowed to
199 ELF_RTYPE_CLASS_COPY iff TYPE should not be allowed to resolve to one
200 of the main executable's symbols, as for a COPY reloc. */
201 #define elf_machine_type_class(type) \
202 ((((type) == R_SH_JMP_SLOT || (type) == R_SH_TLS_DTPMOD32 \
203 || (type) == R_SH_TLS_DTPOFF32 || (type) == R_SH_TLS_TPOFF32) \
204 * ELF_RTYPE_CLASS_PLT) \
205 | (((type) == R_SH_COPY) * ELF_RTYPE_CLASS_COPY))
207 /* A reloc type used for ld.so cmdline arg lookups to reject PLT entries. */
208 #define ELF_MACHINE_JMP_SLOT R_SH_JMP_SLOT
210 /* We define an initialization functions. This is called very early in
212 #define DL_PLATFORM_INIT dl_platform_init ()
214 static inline void __attribute__ ((unused
))
215 dl_platform_init (void)
217 if (GLRO(dl_platform
) != NULL
&& *GLRO(dl_platform
) == '\0')
218 /* Avoid an empty string which would disturb us. */
219 GLRO(dl_platform
) = NULL
;
222 static inline Elf32_Addr
223 elf_machine_fixup_plt (struct link_map
*map
, lookup_t t
,
224 const ElfW(Sym
) *refsym
, const ElfW(Sym
) *sym
,
225 const Elf32_Rela
*reloc
,
226 Elf32_Addr
*reloc_addr
, Elf32_Addr value
)
228 return *reloc_addr
= value
;
231 /* Return the final value of a plt relocation. */
232 static inline Elf32_Addr
233 elf_machine_plt_value (struct link_map
*map
, const Elf32_Rela
*reloc
,
236 return value
+ reloc
->r_addend
;
239 #define ARCH_LA_PLTENTER sh_gnu_pltenter
240 #define ARCH_LA_PLTEXIT sh_gnu_pltexit
242 #endif /* !dl_machine_h */
246 /* Perform the relocation specified by RELOC and SYM (which is fully resolved).
247 MAP is the object containing the reloc. */
250 __attribute ((always_inline
))
251 elf_machine_rela (struct link_map
*map
, struct r_scope_elem
*scope
[],
252 const Elf32_Rela
*reloc
, const Elf32_Sym
*sym
,
253 const struct r_found_version
*version
,
254 void *const reloc_addr_arg
, int skip_ifunc
)
256 Elf32_Addr
*const reloc_addr
= reloc_addr_arg
;
257 const unsigned int r_type
= ELF32_R_TYPE (reloc
->r_info
);
260 #define COPY_UNALIGNED_WORD(swp, twp, align) \
262 void *__s = (swp), *__t = (twp); \
263 unsigned char *__s1 = __s, *__t1 = __t; \
264 unsigned short *__s2 = __s, *__t2 = __t; \
265 unsigned long *__s4 = __s, *__t4 = __t; \
284 if (__glibc_unlikely (r_type
== R_SH_RELATIVE
))
286 #ifndef RTLD_BOOTSTRAP
287 if (map
!= &GL(dl_rtld_map
)) /* Already done in rtld itself. */
291 value
= map
->l_addr
+ reloc
->r_addend
;
294 COPY_UNALIGNED_WORD (reloc_addr_arg
, &value
,
295 (int) reloc_addr_arg
& 3);
296 value
+= map
->l_addr
;
298 COPY_UNALIGNED_WORD (&value
, reloc_addr_arg
,
299 (int) reloc_addr_arg
& 3);
302 #ifndef RTLD_BOOTSTRAP
303 else if (__glibc_unlikely (r_type
== R_SH_NONE
))
308 const Elf32_Sym
*const refsym
= sym
;
309 struct link_map
*sym_map
= RESOLVE_MAP (map
, scope
, &sym
, version
,
312 value
= SYMBOL_ADDRESS (sym_map
, sym
, true);
313 value
+= reloc
->r_addend
;
319 /* This can happen in trace mode if an object could not be
322 if (sym
->st_size
> refsym
->st_size
323 || (sym
->st_size
< refsym
->st_size
&& GLRO(dl_verbose
)))
327 strtab
= (const char *) D_PTR (map
, l_info
[DT_STRTAB
]);
329 %s: Symbol `%s' has different size in shared object, consider re-linking\n",
330 RTLD_PROGNAME
, strtab
+ refsym
->st_name
);
332 memcpy (reloc_addr_arg
, (void *) value
,
333 MIN (sym
->st_size
, refsym
->st_size
));
337 /* These addresses are always aligned. */
340 /* XXX Remove TLS relocations which are not needed. */
341 case R_SH_TLS_DTPMOD32
:
342 #ifdef RTLD_BOOTSTRAP
343 /* During startup the dynamic linker is always the module
345 XXX If this relocation is necessary move before RESOLVE
349 /* Get the information from the link map returned by the
352 *reloc_addr
= sym_map
->l_tls_modid
;
355 case R_SH_TLS_DTPOFF32
:
356 #ifndef RTLD_BOOTSTRAP
357 /* During relocation all TLS symbols are defined and used.
358 Therefore the offset is already correct. */
360 *reloc_addr
= sym
->st_value
;
363 case R_SH_TLS_TPOFF32
:
364 /* The offset is positive, afterward from the thread pointer. */
365 #ifdef RTLD_BOOTSTRAP
366 *reloc_addr
= map
->l_tls_offset
+ sym
->st_value
+ reloc
->r_addend
;
368 /* We know the offset of object the symbol is contained in.
369 It is a positive value which will be added to the thread
370 pointer. To get the variable position in the TLS block
371 we add the offset from that of the TLS block. */
374 CHECK_STATIC_TLS (map
, sym_map
);
375 *reloc_addr
= sym_map
->l_tls_offset
+ sym
->st_value
382 #if !defined RTLD_BOOTSTRAP
383 /* This is defined in rtld.c, but nowhere in the static
384 libc.a; make the reference weak so static programs can
385 still link. This declaration cannot be done when
386 compiling rtld.c (i.e. #ifdef RTLD_BOOTSTRAP) because
387 rtld.c contains the common defn for _dl_rtld_map, which
388 is incompatible with a weak decl in the same file. */
390 weak_extern (_dl_rtld_map
);
392 if (map
== &GL(dl_rtld_map
))
393 /* Undo the relocation done here during bootstrapping.
394 Now we will relocate it anew, possibly using a
395 binding found in the user program or a loaded library
396 rather than the dynamic linker's built-in definitions
397 used while loading those libraries. */
398 value
-= SYMBOL_ADDRESS (map
, refsym
, true) + reloc
->r_addend
;
400 COPY_UNALIGNED_WORD (&value
, reloc_addr_arg
,
401 (int) reloc_addr_arg
& 3);
405 value
= (value
- (Elf32_Addr
) reloc_addr
);
406 COPY_UNALIGNED_WORD (&value
, reloc_addr_arg
,
407 (int) reloc_addr_arg
& 3);
410 _dl_reloc_bad_type (map
, r_type
, 0);
417 __attribute__ ((always_inline
))
418 elf_machine_rela_relative (Elf32_Addr l_addr
, const Elf32_Rela
*reloc
,
419 void *const reloc_addr_arg
)
424 value
= l_addr
+ reloc
->r_addend
;
427 COPY_UNALIGNED_WORD (reloc_addr_arg
, &value
, (int) reloc_addr_arg
& 3);
430 COPY_UNALIGNED_WORD (&value
, reloc_addr_arg
, (int) reloc_addr_arg
& 3);
432 #undef COPY_UNALIGNED_WORD
436 __attribute__ ((always_inline
))
437 elf_machine_lazy_rel (struct link_map
*map
, struct r_scope_elem
*scope
[],
438 Elf32_Addr l_addr
, const Elf32_Rela
*reloc
,
441 Elf32_Addr
*const reloc_addr
= (void *) (l_addr
+ reloc
->r_offset
);
442 /* Check for unexpected PLT reloc type. */
443 if (ELF32_R_TYPE (reloc
->r_info
) == R_SH_JMP_SLOT
)
445 if (__builtin_expect (map
->l_mach
.plt
, 0) == 0)
446 *reloc_addr
+= l_addr
;
450 + (((Elf32_Addr
) reloc_addr
) - map
->l_mach
.gotplt
) * 7;
453 _dl_reloc_bad_type (map
, ELF32_R_TYPE (reloc
->r_info
), 1);
456 #endif /* RESOLVE_MAP */