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2 * Generic Dynamic compiler generator
4 * Copyright (c) 2003 Fabrice Bellard
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program 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
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
30 /* elf format definitions. We use these macros to test the CPU to
31 allow cross compilation (this tool must be ran on the build
33 #if defined(HOST_I386)
35 #define ELF_CLASS ELFCLASS32
36 #define ELF_ARCH EM_386
37 #define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
38 #undef ELF_USES_RELOCA
40 #elif defined(HOST_PPC)
42 #define ELF_CLASS ELFCLASS32
43 #define ELF_ARCH EM_PPC
44 #define elf_check_arch(x) ((x) == EM_PPC)
45 #define ELF_USES_RELOCA
47 #elif defined(HOST_S390)
49 #define ELF_CLASS ELFCLASS32
50 #define ELF_ARCH EM_S390
51 #define elf_check_arch(x) ((x) == EM_S390)
52 #define ELF_USES_RELOCA
54 #elif defined(HOST_ALPHA)
56 #define ELF_CLASS ELFCLASS64
57 #define ELF_ARCH EM_ALPHA
58 #define elf_check_arch(x) ((x) == EM_ALPHA)
59 #define ELF_USES_RELOCA
61 #elif defined(HOST_IA64)
63 #define ELF_CLASS ELFCLASS64
64 #define ELF_ARCH EM_IA_64
65 #define elf_check_arch(x) ((x) == EM_IA_64)
66 #define ELF_USES_RELOCA
68 #elif defined(HOST_SPARC)
70 #define ELF_CLASS ELFCLASS32
71 #define ELF_ARCH EM_SPARC
72 #define elf_check_arch(x) ((x) == EM_SPARC || (x) == EM_SPARC32PLUS)
73 #define ELF_USES_RELOCA
75 #elif defined(HOST_SPARC64)
77 #define ELF_CLASS ELFCLASS64
78 #define ELF_ARCH EM_SPARCV9
79 #define elf_check_arch(x) ((x) == EM_SPARCV9)
80 #define ELF_USES_RELOCA
83 #error unsupported CPU - please update the code
88 #if ELF_CLASS == ELFCLASS32
89 typedef int32_t host_long
;
90 typedef uint32_t host_ulong
;
91 #define swabls(x) swab32s(x)
93 typedef int64_t host_long
;
94 typedef uint64_t host_ulong
;
95 #define swabls(x) swab64s(x)
100 /* all dynamically generated functions begin with this code */
101 #define OP_PREFIX "op_"
103 int elf_must_swap(struct elfhdr
*h
)
111 return (h
->e_ident
[EI_DATA
] == ELFDATA2MSB
) !=
112 (swaptest
.b
[0] == 0);
115 void swab16s(uint16_t *p
)
120 void swab32s(uint32_t *p
)
125 void swab64s(uint64_t *p
)
130 void elf_swap_ehdr(struct elfhdr
*h
)
132 swab16s(&h
->e_type
); /* Object file type */
133 swab16s(&h
-> e_machine
); /* Architecture */
134 swab32s(&h
-> e_version
); /* Object file version */
135 swabls(&h
-> e_entry
); /* Entry point virtual address */
136 swabls(&h
-> e_phoff
); /* Program header table file offset */
137 swabls(&h
-> e_shoff
); /* Section header table file offset */
138 swab32s(&h
-> e_flags
); /* Processor-specific flags */
139 swab16s(&h
-> e_ehsize
); /* ELF header size in bytes */
140 swab16s(&h
-> e_phentsize
); /* Program header table entry size */
141 swab16s(&h
-> e_phnum
); /* Program header table entry count */
142 swab16s(&h
-> e_shentsize
); /* Section header table entry size */
143 swab16s(&h
-> e_shnum
); /* Section header table entry count */
144 swab16s(&h
-> e_shstrndx
); /* Section header string table index */
147 void elf_swap_shdr(struct elf_shdr
*h
)
149 swab32s(&h
-> sh_name
); /* Section name (string tbl index) */
150 swab32s(&h
-> sh_type
); /* Section type */
151 swabls(&h
-> sh_flags
); /* Section flags */
152 swabls(&h
-> sh_addr
); /* Section virtual addr at execution */
153 swabls(&h
-> sh_offset
); /* Section file offset */
154 swabls(&h
-> sh_size
); /* Section size in bytes */
155 swab32s(&h
-> sh_link
); /* Link to another section */
156 swab32s(&h
-> sh_info
); /* Additional section information */
157 swabls(&h
-> sh_addralign
); /* Section alignment */
158 swabls(&h
-> sh_entsize
); /* Entry size if section holds table */
161 void elf_swap_phdr(struct elf_phdr
*h
)
163 swab32s(&h
->p_type
); /* Segment type */
164 swabls(&h
->p_offset
); /* Segment file offset */
165 swabls(&h
->p_vaddr
); /* Segment virtual address */
166 swabls(&h
->p_paddr
); /* Segment physical address */
167 swabls(&h
->p_filesz
); /* Segment size in file */
168 swabls(&h
->p_memsz
); /* Segment size in memory */
169 swab32s(&h
->p_flags
); /* Segment flags */
170 swabls(&h
->p_align
); /* Segment alignment */
175 uint16_t get16(uint16_t *p
)
184 uint32_t get32(uint32_t *p
)
193 void put16(uint16_t *p
, uint16_t val
)
200 void put32(uint32_t *p
, uint32_t val
)
207 void __attribute__((noreturn
)) __attribute__((format (printf
, 1, 2))) error(const char *fmt
, ...)
211 fprintf(stderr
, "dyngen: ");
212 vfprintf(stderr
, fmt
, ap
);
213 fprintf(stderr
, "\n");
219 struct elf_shdr
*find_elf_section(struct elf_shdr
*shdr
, int shnum
, const char *shstr
,
224 struct elf_shdr
*sec
;
226 for(i
= 0; i
< shnum
; i
++) {
230 shname
= shstr
+ sec
->sh_name
;
231 if (!strcmp(shname
, name
))
237 void *load_data(int fd
, long offset
, unsigned int size
)
244 lseek(fd
, offset
, SEEK_SET
);
245 if (read(fd
, data
, size
) != size
) {
252 int strstart(const char *str
, const char *val
, const char **ptr
)
270 /* generate op code */
271 void gen_code(const char *name
, host_ulong offset
, host_ulong size
,
272 FILE *outfile
, uint8_t *text
, ELF_RELOC
*relocs
, int nb_relocs
, int reloc_sh_type
,
273 ElfW(Sym
) *symtab
, char *strtab
, int gen_switch
)
276 uint8_t *p_start
, *p_end
;
278 uint8_t args_present
[MAX_ARGS
];
279 const char *sym_name
, *p
;
282 /* compute exact size excluding return instruction */
283 p_start
= text
+ offset
;
284 p_end
= p_start
+ size
;
291 error("empty code for %s", name
);
293 error("ret expected at the end of %s", name
);
294 copy_size
= p
- p_start
;
300 p
= (void *)(p_end
- 4);
302 error("empty code for %s", name
);
303 if (get32((uint32_t *)p
) != 0x4e800020)
304 error("blr expected at the end of %s", name
);
305 copy_size
= p
- p_start
;
311 p
= (void *)(p_end
- 2);
313 error("empty code for %s", name
);
314 if (get16((uint16_t *)p
) != 0x07fe && get16((uint16_t *)p
) != 0x07f4)
315 error("br %%r14 expected at the end of %s", name
);
316 copy_size
= p
- p_start
;
324 error("empty code for %s", name
);
325 if (get32((uint32_t *)p
) != 0x6bfa8001)
326 error("ret expected at the end of %s", name
);
327 copy_size
= p
- p_start
;
333 p
= (void *)(p_end
- 4);
335 error("empty code for %s", name
);
336 /* br.ret.sptk.many b0;; */
338 if (get32((uint32_t *)p
) != 0x00840008)
339 error("br.ret.sptk.many b0;; expected at the end of %s", name
);
340 copy_size
= p
- p_start
;
347 p
= (void *)(p_end
- 8);
349 error("empty code for %s", name
);
350 if (get32((uint32_t *)(p_start
+ 0x0)) != 0x9de3bf98)
351 error("save %%sp,-104,%%sp expected at the start of %s "
353 name
, get32((uint32_t *)(p_start
+ 0x0)));
354 if (get32((uint32_t *)(p
+ 0x0)) != 0x81c7e008 ||
355 get32((uint32_t *)(p
+ 0x4)) != 0x81e80000)
356 error("ret; restore; expected at the end of %s found [%08x:%08x]",
358 get32((uint32_t *)(p
+ 0x0)),
359 get32((uint32_t *)(p
+ 0x4)));
361 copy_size
= p
- p_start
;
367 p
= (void *)(p_end
- 8);
369 error("empty code for %s", name
);
370 if (get32((uint32_t *)(p_start
+ 0x0)) != 0x9de3bf40)
371 error("save %%sp,-192,%%sp expected at the start of %s "
373 name
, get32((uint32_t *)(p_start
+ 0x0)));
374 if (get32((uint32_t *)(p
+ 0x0)) != 0x81cfe008 ||
375 get32((uint32_t *)(p
+ 0x4)) != 0x01000000)
376 error("rett %%i7+8; nop; expected at the end of %s "
379 get32((uint32_t *)(p
+ 0x0)),
380 get32((uint32_t *)(p
+ 0x4)));
381 copy_size
= p
- p_start
;
385 error("unknown ELF architecture");
388 /* compute the number of arguments by looking at the relocations */
389 for(i
= 0;i
< MAX_ARGS
; i
++)
392 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
393 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
394 sym_name
= strtab
+ symtab
[ELFW(R_SYM
)(rel
->r_info
)].st_name
;
395 if (strstart(sym_name
, "__op_param", &p
)) {
396 n
= strtoul(p
, NULL
, 10);
398 error("too many arguments in %s", name
);
399 args_present
[n
- 1] = 1;
405 while (nb_args
< MAX_ARGS
&& args_present
[nb_args
])
407 for(i
= nb_args
; i
< MAX_ARGS
; i
++) {
409 error("inconsistent argument numbering in %s", name
);
412 if (gen_switch
== 2) {
413 fprintf(outfile
, "DEF(%s, %d)\n", name
+ 3, nb_args
);
414 } else if (gen_switch
== 1) {
417 fprintf(outfile
, "case INDEX_%s: {\n", name
);
419 fprintf(outfile
, " long ");
420 for(i
= 0; i
< nb_args
; i
++) {
422 fprintf(outfile
, ", ");
423 fprintf(outfile
, "param%d", i
+ 1);
425 fprintf(outfile
, ";\n");
427 fprintf(outfile
, " extern void %s();\n", name
);
429 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
430 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
431 sym_name
= strtab
+ symtab
[ELFW(R_SYM
)(rel
->r_info
)].st_name
;
432 if (!strstart(sym_name
, "__op_param", &p
)) {
433 #if defined(HOST_SPARC)
434 if (sym_name
[0] == '.') {
436 "extern char __dot_%s __asm__(\"%s\");\n",
437 sym_name
+1, sym_name
);
441 fprintf(outfile
, "extern char %s;\n", sym_name
);
446 fprintf(outfile
, " memcpy(gen_code_ptr, &%s, %d);\n", name
, copy_size
);
447 for(i
= 0; i
< nb_args
; i
++) {
448 fprintf(outfile
, " param%d = *opparam_ptr++;\n", i
+ 1);
451 /* patch relocations */
452 #if defined(HOST_I386)
457 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
458 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
459 sym_name
= strtab
+ symtab
[ELFW(R_SYM
)(rel
->r_info
)].st_name
;
460 if (strstart(sym_name
, "__op_param", &p
)) {
461 snprintf(name
, sizeof(name
), "param%s", p
);
463 snprintf(name
, sizeof(name
), "(long)(&%s)", sym_name
);
465 type
= ELF32_R_TYPE(rel
->r_info
);
466 addend
= get32((uint32_t *)(text
+ rel
->r_offset
));
469 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
470 rel
->r_offset
- offset
, name
, addend
);
473 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %d) + %d;\n",
474 rel
->r_offset
- offset
, name
, rel
->r_offset
- offset
, addend
);
477 error("unsupported i386 relocation (%d)", type
);
482 #elif defined(HOST_PPC)
487 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
488 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
489 sym_name
= strtab
+ symtab
[ELFW(R_SYM
)(rel
->r_info
)].st_name
;
490 if (strstart(sym_name
, "__op_param", &p
)) {
491 snprintf(name
, sizeof(name
), "param%s", p
);
493 snprintf(name
, sizeof(name
), "(long)(&%s)", sym_name
);
495 type
= ELF32_R_TYPE(rel
->r_info
);
496 addend
= rel
->r_addend
;
499 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
500 rel
->r_offset
- offset
, name
, addend
);
502 case R_PPC_ADDR16_LO
:
503 fprintf(outfile
, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d);\n",
504 rel
->r_offset
- offset
, name
, addend
);
506 case R_PPC_ADDR16_HI
:
507 fprintf(outfile
, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d) >> 16;\n",
508 rel
->r_offset
- offset
, name
, addend
);
510 case R_PPC_ADDR16_HA
:
511 fprintf(outfile
, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d + 0x8000) >> 16;\n",
512 rel
->r_offset
- offset
, name
, addend
);
515 /* warning: must be at 32 MB distancy */
516 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = (*(uint32_t *)(gen_code_ptr + %d) & ~0x03fffffc) | ((%s - (long)(gen_code_ptr + %d) + %d) & 0x03fffffc);\n",
517 rel
->r_offset
- offset
, rel
->r_offset
- offset
, name
, rel
->r_offset
- offset
, addend
);
520 error("unsupported powerpc relocation (%d)", type
);
525 #elif defined(HOST_S390)
530 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
531 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
532 sym_name
= strtab
+ symtab
[ELFW(R_SYM
)(rel
->r_info
)].st_name
;
533 if (strstart(sym_name
, "__op_param", &p
)) {
534 snprintf(name
, sizeof(name
), "param%s", p
);
536 snprintf(name
, sizeof(name
), "(long)(&%s)", sym_name
);
538 type
= ELF32_R_TYPE(rel
->r_info
);
539 addend
= rel
->r_addend
;
542 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
543 rel
->r_offset
- offset
, name
, addend
);
546 fprintf(outfile
, " *(uint16_t *)(gen_code_ptr + %d) = %s + %d;\n",
547 rel
->r_offset
- offset
, name
, addend
);
550 fprintf(outfile
, " *(uint8_t *)(gen_code_ptr + %d) = %s + %d;\n",
551 rel
->r_offset
- offset
, name
, addend
);
554 error("unsupported s390 relocation (%d)", type
);
559 #elif defined(HOST_ALPHA)
561 for (i
= 0, rel
= relocs
; i
< nb_relocs
; i
++, rel
++) {
562 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
564 sym_name
= strtab
+ symtab
[ELF64_R_SYM(rel
->r_info
)].st_name
;
566 type
= ELF64_R_TYPE(rel
->r_info
);
569 /* Instructions to set up the gp can be nopped, since we keep it current
570 all the time. FIXME assert that target is really gp */
571 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = 0x2ffe0000; /* unop */\n",
572 rel
->r_offset
- offset
);
575 /* jsr to literal hint. Could be used to optimize to bsr. Ignore for
576 now, since some called functions (libc) need pv to be set up. */
579 /* Branch target prediction hint. Ignore for now. Should be already
580 correct for in-function jumps. */
582 case R_ALPHA_LITERAL
:
583 /* Load a literal from the GOT relative to the gp. Need to patch the
584 16-bit immediate offset. */
585 fprintf(outfile
, " *(int16_t *)(gen_code_ptr + %d) = gp - (long)(&%s);\n",
586 rel
->r_offset
- offset
, name
);
589 error("unsupported Alpha relocation (%d)", type
);
594 #elif defined(HOST_IA64)
599 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
600 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
601 sym_name
= strtab
+ symtab
[ELF64_R_SYM(rel
->r_info
)].st_name
;
602 if (strstart(sym_name
, "__op_param", &p
)) {
603 snprintf(name
, sizeof(name
), "param%s", p
);
605 snprintf(name
, sizeof(name
), "(long)(&%s)", sym_name
);
607 type
= ELF64_R_TYPE(rel
->r_info
);
608 addend
= rel
->r_addend
;
611 error("must implemnt R_IA64_LTOFF22 relocation");
612 case R_IA64_PCREL21B
:
613 error("must implemnt R_IA64_PCREL21B relocation");
615 error("unsupported ia64 relocation (%d)", type
);
620 #elif defined(HOST_SPARC)
625 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
626 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
627 sym_name
= strtab
+ symtab
[ELF32_R_SYM(rel
->r_info
)].st_name
;
628 if (strstart(sym_name
, "__op_param", &p
)) {
629 snprintf(name
, sizeof(name
), "param%s", p
);
631 if (sym_name
[0] == '.')
632 snprintf(name
, sizeof(name
),
636 snprintf(name
, sizeof(name
),
637 "(long)(&%s)", sym_name
);
639 type
= ELF32_R_TYPE(rel
->r_info
);
640 addend
= rel
->r_addend
;
643 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
644 rel
->r_offset
- offset
, name
, addend
);
648 " *(uint32_t *)(gen_code_ptr + %d) = "
649 "((*(uint32_t *)(gen_code_ptr + %d)) "
651 " | ((%s + %d) & 0x3fffff);\n",
652 rel
->r_offset
- offset
,
653 rel
->r_offset
- offset
,
658 " *(uint32_t *)(gen_code_ptr + %d) = "
659 "((*(uint32_t *)(gen_code_ptr + %d)) "
661 " | ((%s + %d) & 0x3ff);\n",
662 rel
->r_offset
- offset
,
663 rel
->r_offset
- offset
,
666 case R_SPARC_WDISP30
:
668 " *(uint32_t *)(gen_code_ptr + %d) = "
669 "((*(uint32_t *)(gen_code_ptr + %d)) "
671 " | ((((%s + %d) - (long)gen_code_ptr)>>2) "
673 rel
->r_offset
- offset
,
674 rel
->r_offset
- offset
,
678 error("unsupported sparc relocation (%d)", type
);
683 #elif defined(HOST_SPARC64)
688 for(i
= 0, rel
= relocs
;i
< nb_relocs
; i
++, rel
++) {
689 if (rel
->r_offset
>= offset
&& rel
->r_offset
< offset
+ copy_size
) {
690 sym_name
= strtab
+ symtab
[ELF64_R_SYM(rel
->r_info
)].st_name
;
691 if (strstart(sym_name
, "__op_param", &p
)) {
692 snprintf(name
, sizeof(name
), "param%s", p
);
694 snprintf(name
, sizeof(name
), "(long)(&%s)", sym_name
);
696 type
= ELF64_R_TYPE(rel
->r_info
);
697 addend
= rel
->r_addend
;
700 fprintf(outfile
, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
701 rel
->r_offset
- offset
, name
, addend
);
705 " *(uint32_t *)(gen_code_ptr + %d) = "
706 "((*(uint32_t *)(gen_code_ptr + %d)) "
708 " | ((%s + %d) & 0x3fffff);\n",
709 rel
->r_offset
- offset
,
710 rel
->r_offset
- offset
,
715 " *(uint32_t *)(gen_code_ptr + %d) = "
716 "((*(uint32_t *)(gen_code_ptr + %d)) "
718 " | ((%s + %d) & 0x3ff);\n",
719 rel
->r_offset
- offset
,
720 rel
->r_offset
- offset
,
723 case R_SPARC_WDISP30
:
725 " *(uint32_t *)(gen_code_ptr + %d) = "
726 "((*(uint32_t *)(gen_code_ptr + %d)) "
728 " | ((((%s + %d) - (long)gen_code_ptr)>>2) "
730 rel
->r_offset
- offset
,
731 rel
->r_offset
- offset
,
735 error("unsupported sparc64 relocation (%d)", type
);
741 #error unsupported CPU
743 fprintf(outfile
, " gen_code_ptr += %d;\n", copy_size
);
744 fprintf(outfile
, "}\n");
745 fprintf(outfile
, "break;\n\n");
747 fprintf(outfile
, "static inline void gen_%s(", name
);
749 fprintf(outfile
, "void");
751 for(i
= 0; i
< nb_args
; i
++) {
753 fprintf(outfile
, ", ");
754 fprintf(outfile
, "long param%d", i
+ 1);
757 fprintf(outfile
, ")\n");
758 fprintf(outfile
, "{\n");
759 for(i
= 0; i
< nb_args
; i
++) {
760 fprintf(outfile
, " *gen_opparam_ptr++ = param%d;\n", i
+ 1);
762 fprintf(outfile
, " *gen_opc_ptr++ = INDEX_%s;\n", name
);
763 fprintf(outfile
, "}\n\n");
767 /* load an elf object file */
768 int load_elf(const char *filename
, FILE *outfile
, int do_print_enum
)
772 struct elf_shdr
*sec
, *shdr
, *symtab_sec
, *strtab_sec
, *text_sec
;
774 ElfW(Sym
) *symtab
, *sym
;
775 char *shstr
, *strtab
;
778 int nb_relocs
, reloc_sh_type
;
780 fd
= open(filename
, O_RDONLY
);
782 error("can't open file '%s'", filename
);
784 /* Read ELF header. */
785 if (read(fd
, &ehdr
, sizeof (ehdr
)) != sizeof (ehdr
))
786 error("unable to read file header");
788 /* Check ELF identification. */
789 if (ehdr
.e_ident
[EI_MAG0
] != ELFMAG0
790 || ehdr
.e_ident
[EI_MAG1
] != ELFMAG1
791 || ehdr
.e_ident
[EI_MAG2
] != ELFMAG2
792 || ehdr
.e_ident
[EI_MAG3
] != ELFMAG3
793 || ehdr
.e_ident
[EI_VERSION
] != EV_CURRENT
) {
794 error("bad ELF header");
797 do_swap
= elf_must_swap(&ehdr
);
799 elf_swap_ehdr(&ehdr
);
800 if (ehdr
.e_ident
[EI_CLASS
] != ELF_CLASS
)
801 error("Unsupported ELF class");
802 if (ehdr
.e_type
!= ET_REL
)
803 error("ELF object file expected");
804 if (ehdr
.e_version
!= EV_CURRENT
)
805 error("Invalid ELF version");
806 if (!elf_check_arch(ehdr
.e_machine
))
807 error("Unsupported CPU (e_machine=%d)", ehdr
.e_machine
);
809 /* read section headers */
810 shdr
= load_data(fd
, ehdr
.e_shoff
, ehdr
.e_shnum
* sizeof(struct elf_shdr
));
812 for(i
= 0; i
< ehdr
.e_shnum
; i
++) {
813 elf_swap_shdr(&shdr
[i
]);
817 sec
= &shdr
[ehdr
.e_shstrndx
];
818 shstr
= load_data(fd
, sec
->sh_offset
, sec
->sh_size
);
822 text_sec
= find_elf_section(shdr
, ehdr
.e_shnum
, shstr
, ".text");
824 error("could not find .text section");
825 text
= load_data(fd
, text_sec
->sh_offset
, text_sec
->sh_size
);
827 /* find text relocations, if any */
831 for(i
= 0; i
< ehdr
.e_shnum
; i
++) {
833 if ((sec
->sh_type
== SHT_REL
|| sec
->sh_type
== SHT_RELA
) &&
834 sec
->sh_info
== (text_sec
- shdr
)) {
835 reloc_sh_type
= sec
->sh_type
;
836 relocs
= load_data(fd
, sec
->sh_offset
, sec
->sh_size
);
837 nb_relocs
= sec
->sh_size
/ sec
->sh_entsize
;
839 if (sec
->sh_type
== SHT_REL
) {
840 ElfW(Rel
) *rel
= relocs
;
841 for(j
= 0, rel
= relocs
; j
< nb_relocs
; j
++, rel
++) {
842 swabls(&rel
->r_offset
);
843 swabls(&rel
->r_info
);
846 ElfW(Rela
) *rel
= relocs
;
847 for(j
= 0, rel
= relocs
; j
< nb_relocs
; j
++, rel
++) {
848 swabls(&rel
->r_offset
);
849 swabls(&rel
->r_info
);
850 swabls(&rel
->r_addend
);
858 symtab_sec
= find_elf_section(shdr
, ehdr
.e_shnum
, shstr
, ".symtab");
860 error("could not find .symtab section");
861 strtab_sec
= &shdr
[symtab_sec
->sh_link
];
863 symtab
= load_data(fd
, symtab_sec
->sh_offset
, symtab_sec
->sh_size
);
864 strtab
= load_data(fd
, strtab_sec
->sh_offset
, strtab_sec
->sh_size
);
866 nb_syms
= symtab_sec
->sh_size
/ sizeof(ElfW(Sym
));
868 for(i
= 0, sym
= symtab
; i
< nb_syms
; i
++, sym
++) {
869 swab32s(&sym
->st_name
);
870 swabls(&sym
->st_value
);
871 swabls(&sym
->st_size
);
872 swab16s(&sym
->st_shndx
);
877 fprintf(outfile
, "DEF(end, 0)\n");
878 for(i
= 0, sym
= symtab
; i
< nb_syms
; i
++, sym
++) {
879 const char *name
, *p
;
880 name
= strtab
+ sym
->st_name
;
881 if (strstart(name
, OP_PREFIX
, &p
)) {
882 gen_code(name
, sym
->st_value
, sym
->st_size
, outfile
,
883 text
, relocs
, nb_relocs
, reloc_sh_type
, symtab
, strtab
, 2);
887 /* generate big code generation switch */
889 fprintf(outfile
, "register long gp asm(\"%%$29\");\n");
892 "int dyngen_code(uint8_t *gen_code_buf,\n"
893 " const uint16_t *opc_buf, const uint32_t *opparam_buf)\n"
895 " uint8_t *gen_code_ptr;\n"
896 " const uint16_t *opc_ptr;\n"
897 " const uint32_t *opparam_ptr;\n"
898 " gen_code_ptr = gen_code_buf;\n"
899 " opc_ptr = opc_buf;\n"
900 " opparam_ptr = opparam_buf;\n"
902 " switch(*opc_ptr++) {\n"
905 for(i
= 0, sym
= symtab
; i
< nb_syms
; i
++, sym
++) {
907 name
= strtab
+ sym
->st_name
;
908 if (strstart(name
, OP_PREFIX
, NULL
)) {
910 printf("%4d: %s pos=0x%08x len=%d\n",
911 i
, name
, sym
->st_value
, sym
->st_size
);
913 if (sym
->st_shndx
!= (text_sec
- shdr
))
914 error("invalid section for opcode (0x%x)", sym
->st_shndx
);
915 gen_code(name
, sym
->st_value
, sym
->st_size
, outfile
,
916 text
, relocs
, nb_relocs
, reloc_sh_type
, symtab
, strtab
, 1);
928 /* generate a return */
931 fprintf(outfile
, "*gen_code_ptr++ = 0xc3; /* ret */\n");
934 fprintf(outfile
, "*((uint32_t *)gen_code_ptr)++ = 0x4e800020; /* blr */\n");
937 fprintf(outfile
, "*((uint16_t *)gen_code_ptr)++ = 0x07fe; /* br %%r14 */\n");
940 fprintf(outfile
, "*((uint32_t *)gen_code_ptr)++ = 0x6bfa8001; /* ret */\n");
943 fprintf(outfile
, "*((uint32_t *)gen_code_ptr)++ = 0x00840008; /* br.ret.sptk.many b0;; */\n");
948 /* Fill the delay slot. */
949 fprintf(outfile
, "*((uint32_t *)gen_code_ptr) = *((uint32_t *)gen_code_ptr - 1); /* delay slot */\n");
950 fprintf(outfile
, "*((uint32_t *)gen_code_ptr - 1) = 0x81c3e008; /* retl */\n");
951 fprintf(outfile
, "gen_code_ptr++;\n");
954 error("unknown ELF architecture");
957 fprintf(outfile
, "return gen_code_ptr - gen_code_buf;\n");
958 fprintf(outfile
, "}\n\n");
960 /* generate gen_xxx functions */
961 /* XXX: suppress the use of these functions to simplify code */
962 for(i
= 0, sym
= symtab
; i
< nb_syms
; i
++, sym
++) {
964 name
= strtab
+ sym
->st_name
;
965 if (strstart(name
, OP_PREFIX
, NULL
)) {
966 if (sym
->st_shndx
!= (text_sec
- shdr
))
967 error("invalid section for opcode (0x%x)", sym
->st_shndx
);
968 gen_code(name
, sym
->st_value
, sym
->st_size
, outfile
,
969 text
, relocs
, nb_relocs
, reloc_sh_type
, symtab
, strtab
, 0);
980 printf("dyngen (c) 2003 Fabrice Bellard\n"
981 "usage: dyngen [-o outfile] [-c] objfile\n"
982 "Generate a dynamic code generator from an object file\n"
983 "-c output enum of operations\n"
988 int main(int argc
, char **argv
)
990 int c
, do_print_enum
;
991 const char *filename
, *outfilename
;
994 outfilename
= "out.c";
997 c
= getopt(argc
, argv
, "ho:c");
1005 outfilename
= optarg
;
1014 filename
= argv
[optind
];
1015 outfile
= fopen(outfilename
, "w");
1017 error("could not open '%s'", outfilename
);
1018 load_elf(filename
, outfile
, do_print_enum
);