1 // SPDX-License-Identifier: GPL-2.0-or-later
4 * Copyright (C) 2017 Zihao Yu
9 #include <linux/errno.h>
10 #include <linux/moduleloader.h>
11 #include <linux/vmalloc.h>
12 #include <linux/sizes.h>
13 #include <linux/pgtable.h>
14 #include <asm/sections.h>
16 static int apply_r_riscv_32_rela(struct module
*me
, u32
*location
, Elf_Addr v
)
19 pr_err("%s: value %016llx out of range for 32-bit field\n",
20 me
->name
, (long long)v
);
27 static int apply_r_riscv_64_rela(struct module
*me
, u32
*location
, Elf_Addr v
)
33 static int apply_r_riscv_branch_rela(struct module
*me
, u32
*location
,
36 ptrdiff_t offset
= (void *)v
- (void *)location
;
37 u32 imm12
= (offset
& 0x1000) << (31 - 12);
38 u32 imm11
= (offset
& 0x800) >> (11 - 7);
39 u32 imm10_5
= (offset
& 0x7e0) << (30 - 10);
40 u32 imm4_1
= (offset
& 0x1e) << (11 - 4);
42 *location
= (*location
& 0x1fff07f) | imm12
| imm11
| imm10_5
| imm4_1
;
46 static int apply_r_riscv_jal_rela(struct module
*me
, u32
*location
,
49 ptrdiff_t offset
= (void *)v
- (void *)location
;
50 u32 imm20
= (offset
& 0x100000) << (31 - 20);
51 u32 imm19_12
= (offset
& 0xff000);
52 u32 imm11
= (offset
& 0x800) << (20 - 11);
53 u32 imm10_1
= (offset
& 0x7fe) << (30 - 10);
55 *location
= (*location
& 0xfff) | imm20
| imm19_12
| imm11
| imm10_1
;
59 static int apply_r_riscv_rcv_branch_rela(struct module
*me
, u32
*location
,
62 ptrdiff_t offset
= (void *)v
- (void *)location
;
63 u16 imm8
= (offset
& 0x100) << (12 - 8);
64 u16 imm7_6
= (offset
& 0xc0) >> (6 - 5);
65 u16 imm5
= (offset
& 0x20) >> (5 - 2);
66 u16 imm4_3
= (offset
& 0x18) << (12 - 5);
67 u16 imm2_1
= (offset
& 0x6) << (12 - 10);
69 *(u16
*)location
= (*(u16
*)location
& 0xe383) |
70 imm8
| imm7_6
| imm5
| imm4_3
| imm2_1
;
74 static int apply_r_riscv_rvc_jump_rela(struct module
*me
, u32
*location
,
77 ptrdiff_t offset
= (void *)v
- (void *)location
;
78 u16 imm11
= (offset
& 0x800) << (12 - 11);
79 u16 imm10
= (offset
& 0x400) >> (10 - 8);
80 u16 imm9_8
= (offset
& 0x300) << (12 - 11);
81 u16 imm7
= (offset
& 0x80) >> (7 - 6);
82 u16 imm6
= (offset
& 0x40) << (12 - 11);
83 u16 imm5
= (offset
& 0x20) >> (5 - 2);
84 u16 imm4
= (offset
& 0x10) << (12 - 5);
85 u16 imm3_1
= (offset
& 0xe) << (12 - 10);
87 *(u16
*)location
= (*(u16
*)location
& 0xe003) |
88 imm11
| imm10
| imm9_8
| imm7
| imm6
| imm5
| imm4
| imm3_1
;
92 static int apply_r_riscv_pcrel_hi20_rela(struct module
*me
, u32
*location
,
95 ptrdiff_t offset
= (void *)v
- (void *)location
;
98 if (offset
!= (s32
)offset
) {
100 "%s: target %016llx can not be addressed by the 32-bit offset from PC = %p\n",
101 me
->name
, (long long)v
, location
);
105 hi20
= (offset
+ 0x800) & 0xfffff000;
106 *location
= (*location
& 0xfff) | hi20
;
110 static int apply_r_riscv_pcrel_lo12_i_rela(struct module
*me
, u32
*location
,
114 * v is the lo12 value to fill. It is calculated before calling this
117 *location
= (*location
& 0xfffff) | ((v
& 0xfff) << 20);
121 static int apply_r_riscv_pcrel_lo12_s_rela(struct module
*me
, u32
*location
,
125 * v is the lo12 value to fill. It is calculated before calling this
128 u32 imm11_5
= (v
& 0xfe0) << (31 - 11);
129 u32 imm4_0
= (v
& 0x1f) << (11 - 4);
131 *location
= (*location
& 0x1fff07f) | imm11_5
| imm4_0
;
135 static int apply_r_riscv_hi20_rela(struct module
*me
, u32
*location
,
140 if (IS_ENABLED(CONFIG_CMODEL_MEDLOW
)) {
142 "%s: target %016llx can not be addressed by the 32-bit offset from PC = %p\n",
143 me
->name
, (long long)v
, location
);
147 hi20
= ((s32
)v
+ 0x800) & 0xfffff000;
148 *location
= (*location
& 0xfff) | hi20
;
152 static int apply_r_riscv_lo12_i_rela(struct module
*me
, u32
*location
,
155 /* Skip medlow checking because of filtering by HI20 already */
156 s32 hi20
= ((s32
)v
+ 0x800) & 0xfffff000;
157 s32 lo12
= ((s32
)v
- hi20
);
158 *location
= (*location
& 0xfffff) | ((lo12
& 0xfff) << 20);
162 static int apply_r_riscv_lo12_s_rela(struct module
*me
, u32
*location
,
165 /* Skip medlow checking because of filtering by HI20 already */
166 s32 hi20
= ((s32
)v
+ 0x800) & 0xfffff000;
167 s32 lo12
= ((s32
)v
- hi20
);
168 u32 imm11_5
= (lo12
& 0xfe0) << (31 - 11);
169 u32 imm4_0
= (lo12
& 0x1f) << (11 - 4);
170 *location
= (*location
& 0x1fff07f) | imm11_5
| imm4_0
;
174 static int apply_r_riscv_got_hi20_rela(struct module
*me
, u32
*location
,
177 ptrdiff_t offset
= (void *)v
- (void *)location
;
180 /* Always emit the got entry */
181 if (IS_ENABLED(CONFIG_MODULE_SECTIONS
)) {
182 offset
= module_emit_got_entry(me
, v
);
183 offset
= (void *)offset
- (void *)location
;
186 "%s: can not generate the GOT entry for symbol = %016llx from PC = %p\n",
187 me
->name
, (long long)v
, location
);
191 hi20
= (offset
+ 0x800) & 0xfffff000;
192 *location
= (*location
& 0xfff) | hi20
;
196 static int apply_r_riscv_call_plt_rela(struct module
*me
, u32
*location
,
199 ptrdiff_t offset
= (void *)v
- (void *)location
;
203 if (offset
!= fill_v
) {
204 /* Only emit the plt entry if offset over 32-bit range */
205 if (IS_ENABLED(CONFIG_MODULE_SECTIONS
)) {
206 offset
= module_emit_plt_entry(me
, v
);
207 offset
= (void *)offset
- (void *)location
;
210 "%s: target %016llx can not be addressed by the 32-bit offset from PC = %p\n",
211 me
->name
, (long long)v
, location
);
216 hi20
= (offset
+ 0x800) & 0xfffff000;
217 lo12
= (offset
- hi20
) & 0xfff;
218 *location
= (*location
& 0xfff) | hi20
;
219 *(location
+ 1) = (*(location
+ 1) & 0xfffff) | (lo12
<< 20);
223 static int apply_r_riscv_call_rela(struct module
*me
, u32
*location
,
226 ptrdiff_t offset
= (void *)v
- (void *)location
;
230 if (offset
!= fill_v
) {
232 "%s: target %016llx can not be addressed by the 32-bit offset from PC = %p\n",
233 me
->name
, (long long)v
, location
);
237 hi20
= (offset
+ 0x800) & 0xfffff000;
238 lo12
= (offset
- hi20
) & 0xfff;
239 *location
= (*location
& 0xfff) | hi20
;
240 *(location
+ 1) = (*(location
+ 1) & 0xfffff) | (lo12
<< 20);
244 static int apply_r_riscv_relax_rela(struct module
*me
, u32
*location
,
250 static int apply_r_riscv_align_rela(struct module
*me
, u32
*location
,
254 "%s: The unexpected relocation type 'R_RISCV_ALIGN' from PC = %p\n",
259 static int apply_r_riscv_add32_rela(struct module
*me
, u32
*location
,
262 *(u32
*)location
+= (u32
)v
;
266 static int apply_r_riscv_add64_rela(struct module
*me
, u32
*location
,
269 *(u64
*)location
+= (u64
)v
;
273 static int apply_r_riscv_sub32_rela(struct module
*me
, u32
*location
,
276 *(u32
*)location
-= (u32
)v
;
280 static int apply_r_riscv_sub64_rela(struct module
*me
, u32
*location
,
283 *(u64
*)location
-= (u64
)v
;
287 static int (*reloc_handlers_rela
[]) (struct module
*me
, u32
*location
,
289 [R_RISCV_32
] = apply_r_riscv_32_rela
,
290 [R_RISCV_64
] = apply_r_riscv_64_rela
,
291 [R_RISCV_BRANCH
] = apply_r_riscv_branch_rela
,
292 [R_RISCV_JAL
] = apply_r_riscv_jal_rela
,
293 [R_RISCV_RVC_BRANCH
] = apply_r_riscv_rcv_branch_rela
,
294 [R_RISCV_RVC_JUMP
] = apply_r_riscv_rvc_jump_rela
,
295 [R_RISCV_PCREL_HI20
] = apply_r_riscv_pcrel_hi20_rela
,
296 [R_RISCV_PCREL_LO12_I
] = apply_r_riscv_pcrel_lo12_i_rela
,
297 [R_RISCV_PCREL_LO12_S
] = apply_r_riscv_pcrel_lo12_s_rela
,
298 [R_RISCV_HI20
] = apply_r_riscv_hi20_rela
,
299 [R_RISCV_LO12_I
] = apply_r_riscv_lo12_i_rela
,
300 [R_RISCV_LO12_S
] = apply_r_riscv_lo12_s_rela
,
301 [R_RISCV_GOT_HI20
] = apply_r_riscv_got_hi20_rela
,
302 [R_RISCV_CALL_PLT
] = apply_r_riscv_call_plt_rela
,
303 [R_RISCV_CALL
] = apply_r_riscv_call_rela
,
304 [R_RISCV_RELAX
] = apply_r_riscv_relax_rela
,
305 [R_RISCV_ALIGN
] = apply_r_riscv_align_rela
,
306 [R_RISCV_ADD32
] = apply_r_riscv_add32_rela
,
307 [R_RISCV_ADD64
] = apply_r_riscv_add64_rela
,
308 [R_RISCV_SUB32
] = apply_r_riscv_sub32_rela
,
309 [R_RISCV_SUB64
] = apply_r_riscv_sub64_rela
,
312 int apply_relocate_add(Elf_Shdr
*sechdrs
, const char *strtab
,
313 unsigned int symindex
, unsigned int relsec
,
316 Elf_Rela
*rel
= (void *) sechdrs
[relsec
].sh_addr
;
317 int (*handler
)(struct module
*me
, u32
*location
, Elf_Addr v
);
320 unsigned int i
, type
;
324 pr_debug("Applying relocate section %u to %u\n", relsec
,
325 sechdrs
[relsec
].sh_info
);
327 for (i
= 0; i
< sechdrs
[relsec
].sh_size
/ sizeof(*rel
); i
++) {
328 /* This is where to make the change */
329 location
= (void *)sechdrs
[sechdrs
[relsec
].sh_info
].sh_addr
331 /* This is the symbol it is referring to */
332 sym
= (Elf_Sym
*)sechdrs
[symindex
].sh_addr
333 + ELF_RISCV_R_SYM(rel
[i
].r_info
);
334 if (IS_ERR_VALUE(sym
->st_value
)) {
335 /* Ignore unresolved weak symbol */
336 if (ELF_ST_BIND(sym
->st_info
) == STB_WEAK
)
338 pr_warn("%s: Unknown symbol %s\n",
339 me
->name
, strtab
+ sym
->st_name
);
343 type
= ELF_RISCV_R_TYPE(rel
[i
].r_info
);
345 if (type
< ARRAY_SIZE(reloc_handlers_rela
))
346 handler
= reloc_handlers_rela
[type
];
351 pr_err("%s: Unknown relocation type %u\n",
356 v
= sym
->st_value
+ rel
[i
].r_addend
;
358 if (type
== R_RISCV_PCREL_LO12_I
|| type
== R_RISCV_PCREL_LO12_S
) {
361 for (j
= 0; j
< sechdrs
[relsec
].sh_size
/ sizeof(*rel
); j
++) {
362 unsigned long hi20_loc
=
363 sechdrs
[sechdrs
[relsec
].sh_info
].sh_addr
365 u32 hi20_type
= ELF_RISCV_R_TYPE(rel
[j
].r_info
);
367 /* Find the corresponding HI20 relocation entry */
368 if (hi20_loc
== sym
->st_value
369 && (hi20_type
== R_RISCV_PCREL_HI20
370 || hi20_type
== R_RISCV_GOT_HI20
)) {
373 (Elf_Sym
*)sechdrs
[symindex
].sh_addr
374 + ELF_RISCV_R_SYM(rel
[j
].r_info
);
375 unsigned long hi20_sym_val
=
380 size_t offset
= hi20_sym_val
- hi20_loc
;
381 if (IS_ENABLED(CONFIG_MODULE_SECTIONS
)
382 && hi20_type
== R_RISCV_GOT_HI20
) {
383 offset
= module_emit_got_entry(
385 offset
= offset
- hi20_loc
;
387 hi20
= (offset
+ 0x800) & 0xfffff000;
388 lo12
= offset
- hi20
;
394 if (j
== sechdrs
[relsec
].sh_size
/ sizeof(*rel
)) {
396 "%s: Can not find HI20 relocation information\n",
402 res
= handler(me
, location
, v
);
410 #if defined(CONFIG_MMU) && defined(CONFIG_64BIT)
411 #define VMALLOC_MODULE_START \
412 max(PFN_ALIGN((unsigned long)&_end - SZ_2G), VMALLOC_START)
413 void *module_alloc(unsigned long size
)
415 return __vmalloc_node_range(size
, 1, VMALLOC_MODULE_START
,
416 VMALLOC_END
, GFP_KERNEL
,
417 PAGE_KERNEL_EXEC
, 0, NUMA_NO_NODE
,
418 __builtin_return_address(0));