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O_DIRECT compile fix
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7d13299d
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1/*
2 * Generic Dynamic compiler generator
3 *
4 * Copyright (c) 2003 Fabrice Bellard
5 *
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.
10 *
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.
15 *
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.
19 */
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20#include <stdlib.h>
21#include <stdio.h>
04369ff2 22#include <string.h>
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23#include <stdarg.h>
24#include <inttypes.h>
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25#include <unistd.h>
26#include <fcntl.h>
27
abcd5da7 28#include "config-host.h"
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29
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
32 platform) */
33#if defined(HOST_I386)
34
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
39
40#elif defined(HOST_PPC)
41
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
46
47#elif defined(HOST_S390)
48
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
367e86e8 53
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54#elif defined(HOST_ALPHA)
55
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
60
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61#elif defined(HOST_IA64)
62
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
67
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68#elif defined(HOST_SPARC)
69
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
74
75#elif defined(HOST_SPARC64)
76
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
81
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82#elif defined(HOST_ARM)
83
84#define ELF_CLASS ELFCLASS32
85#define ELF_ARCH EM_ARM
86#define elf_check_arch(x) ((x) == EM_ARM)
87#define ELF_USES_RELOC
88
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89#elif defined(HOST_M68K)
90
91#define ELF_CLASS ELFCLASS32
92#define ELF_ARCH EM_68K
93#define elf_check_arch(x) ((x) == EM_68K)
94#define ELF_USES_RELOCA
95
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96#else
97#error unsupported CPU - please update the code
98#endif
99
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100#include "elf.h"
101
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102#if ELF_CLASS == ELFCLASS32
103typedef int32_t host_long;
104typedef uint32_t host_ulong;
efdea7bf 105#define swabls(x) swab32s(x)
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106#else
107typedef int64_t host_long;
108typedef uint64_t host_ulong;
efdea7bf 109#define swabls(x) swab64s(x)
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110#endif
111
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112#ifdef ELF_USES_RELOCA
113#define SHT_RELOC SHT_RELA
114#else
115#define SHT_RELOC SHT_REL
116#endif
117
abcd5da7 118#include "bswap.h"
ce11fedc 119
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120enum {
121 OUT_GEN_OP,
122 OUT_CODE,
123 OUT_INDEX_OP,
124};
125
367e86e8 126/* all dynamically generated functions begin with this code */
dc99065b 127#define OP_PREFIX "op_"
367e86e8 128
ce11fedc 129int elf_must_swap(struct elfhdr *h)
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130{
131 union {
132 uint32_t i;
133 uint8_t b[4];
134 } swaptest;
135
136 swaptest.i = 1;
137 return (h->e_ident[EI_DATA] == ELFDATA2MSB) !=
138 (swaptest.b[0] == 0);
139}
140
141void swab16s(uint16_t *p)
142{
143 *p = bswap16(*p);
144}
145
146void swab32s(uint32_t *p)
147{
148 *p = bswap32(*p);
149}
150
ce11fedc 151void swab64s(uint64_t *p)
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152{
153 *p = bswap64(*p);
154}
155
ce11fedc 156void elf_swap_ehdr(struct elfhdr *h)
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157{
158 swab16s(&h->e_type); /* Object file type */
159 swab16s(&h-> e_machine); /* Architecture */
160 swab32s(&h-> e_version); /* Object file version */
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161 swabls(&h-> e_entry); /* Entry point virtual address */
162 swabls(&h-> e_phoff); /* Program header table file offset */
163 swabls(&h-> e_shoff); /* Section header table file offset */
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164 swab32s(&h-> e_flags); /* Processor-specific flags */
165 swab16s(&h-> e_ehsize); /* ELF header size in bytes */
166 swab16s(&h-> e_phentsize); /* Program header table entry size */
167 swab16s(&h-> e_phnum); /* Program header table entry count */
168 swab16s(&h-> e_shentsize); /* Section header table entry size */
169 swab16s(&h-> e_shnum); /* Section header table entry count */
170 swab16s(&h-> e_shstrndx); /* Section header string table index */
171}
172
ce11fedc 173void elf_swap_shdr(struct elf_shdr *h)
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174{
175 swab32s(&h-> sh_name); /* Section name (string tbl index) */
176 swab32s(&h-> sh_type); /* Section type */
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177 swabls(&h-> sh_flags); /* Section flags */
178 swabls(&h-> sh_addr); /* Section virtual addr at execution */
179 swabls(&h-> sh_offset); /* Section file offset */
180 swabls(&h-> sh_size); /* Section size in bytes */
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181 swab32s(&h-> sh_link); /* Link to another section */
182 swab32s(&h-> sh_info); /* Additional section information */
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183 swabls(&h-> sh_addralign); /* Section alignment */
184 swabls(&h-> sh_entsize); /* Entry size if section holds table */
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185}
186
ce11fedc 187void elf_swap_phdr(struct elf_phdr *h)
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188{
189 swab32s(&h->p_type); /* Segment type */
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190 swabls(&h->p_offset); /* Segment file offset */
191 swabls(&h->p_vaddr); /* Segment virtual address */
192 swabls(&h->p_paddr); /* Segment physical address */
193 swabls(&h->p_filesz); /* Segment size in file */
194 swabls(&h->p_memsz); /* Segment size in memory */
367e86e8 195 swab32s(&h->p_flags); /* Segment flags */
ce11fedc 196 swabls(&h->p_align); /* Segment alignment */
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197}
198
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199void elf_swap_rel(ELF_RELOC *rel)
200{
201 swabls(&rel->r_offset);
202 swabls(&rel->r_info);
203#ifdef ELF_USES_RELOCA
204 swabls(&rel->r_addend);
205#endif
206}
207
d4e8164f 208/* ELF file info */
367e86e8 209int do_swap;
d4e8164f 210struct elf_shdr *shdr;
fe319756 211uint8_t **sdata;
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212struct elfhdr ehdr;
213ElfW(Sym) *symtab;
214int nb_syms;
215char *strtab;
fe319756 216int text_shndx;
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217
218uint16_t get16(uint16_t *p)
219{
220 uint16_t val;
221 val = *p;
222 if (do_swap)
223 val = bswap16(val);
224 return val;
225}
226
227uint32_t get32(uint32_t *p)
228{
229 uint32_t val;
230 val = *p;
231 if (do_swap)
232 val = bswap32(val);
233 return val;
234}
235
236void put16(uint16_t *p, uint16_t val)
237{
238 if (do_swap)
239 val = bswap16(val);
240 *p = val;
241}
242
243void put32(uint32_t *p, uint32_t val)
244{
245 if (do_swap)
246 val = bswap32(val);
247 *p = val;
248}
249
efdea7bf 250void __attribute__((noreturn)) __attribute__((format (printf, 1, 2))) error(const char *fmt, ...)
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251{
252 va_list ap;
253 va_start(ap, fmt);
254 fprintf(stderr, "dyngen: ");
255 vfprintf(stderr, fmt, ap);
256 fprintf(stderr, "\n");
257 va_end(ap);
258 exit(1);
259}
260
261
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262struct elf_shdr *find_elf_section(struct elf_shdr *shdr, int shnum, const char *shstr,
263 const char *name)
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264{
265 int i;
266 const char *shname;
ce11fedc 267 struct elf_shdr *sec;
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268
269 for(i = 0; i < shnum; i++) {
270 sec = &shdr[i];
271 if (!sec->sh_name)
272 continue;
273 shname = shstr + sec->sh_name;
274 if (!strcmp(shname, name))
275 return sec;
276 }
277 return NULL;
278}
279
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280int find_reloc(int sh_index)
281{
282 struct elf_shdr *sec;
283 int i;
284
285 for(i = 0; i < ehdr.e_shnum; i++) {
286 sec = &shdr[i];
287 if (sec->sh_type == SHT_RELOC && sec->sh_info == sh_index)
288 return i;
289 }
290 return 0;
291}
292
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293void *load_data(int fd, long offset, unsigned int size)
294{
295 char *data;
296
297 data = malloc(size);
298 if (!data)
299 return NULL;
300 lseek(fd, offset, SEEK_SET);
301 if (read(fd, data, size) != size) {
302 free(data);
303 return NULL;
304 }
305 return data;
306}
307
308int strstart(const char *str, const char *val, const char **ptr)
309{
310 const char *p, *q;
311 p = str;
312 q = val;
313 while (*q != '\0') {
314 if (*p != *q)
315 return 0;
316 p++;
317 q++;
318 }
319 if (ptr)
320 *ptr = p;
321 return 1;
322}
323
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324#ifdef HOST_ARM
325
326int arm_emit_ldr_info(const char *name, unsigned long start_offset,
327 FILE *outfile, uint8_t *p_start, uint8_t *p_end,
328 ELF_RELOC *relocs, int nb_relocs)
329{
330 uint8_t *p;
331 uint32_t insn;
332 int offset, min_offset, pc_offset, data_size;
333 uint8_t data_allocated[1024];
334 unsigned int data_index;
335
336 memset(data_allocated, 0, sizeof(data_allocated));
337
338 p = p_start;
339 min_offset = p_end - p_start;
340 while (p < p_start + min_offset) {
341 insn = get32((uint32_t *)p);
342 if ((insn & 0x0d5f0000) == 0x051f0000) {
343 /* ldr reg, [pc, #im] */
344 offset = insn & 0xfff;
345 if (!(insn & 0x00800000))
346 offset = -offset;
347 if ((offset & 3) !=0)
348 error("%s:%04x: ldr pc offset must be 32 bit aligned",
349 name, start_offset + p - p_start);
350 pc_offset = p - p_start + offset + 8;
351 if (pc_offset <= (p - p_start) ||
352 pc_offset >= (p_end - p_start))
353 error("%s:%04x: ldr pc offset must point inside the function code",
354 name, start_offset + p - p_start);
355 if (pc_offset < min_offset)
356 min_offset = pc_offset;
357 if (outfile) {
358 /* ldr position */
359 fprintf(outfile, " arm_ldr_ptr->ptr = gen_code_ptr + %d;\n",
360 p - p_start);
361 /* ldr data index */
362 data_index = ((p_end - p_start) - pc_offset - 4) >> 2;
363 fprintf(outfile, " arm_ldr_ptr->data_ptr = arm_data_ptr + %d;\n",
364 data_index);
365 fprintf(outfile, " arm_ldr_ptr++;\n");
366 if (data_index >= sizeof(data_allocated))
367 error("%s: too many data", name);
368 if (!data_allocated[data_index]) {
369 ELF_RELOC *rel;
370 int i, addend, type;
371 const char *sym_name, *p;
372 char relname[1024];
373
374 data_allocated[data_index] = 1;
375
376 /* data value */
377 addend = get32((uint32_t *)(p_start + pc_offset));
378 relname[0] = '\0';
379 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
380 if (rel->r_offset == (pc_offset + start_offset)) {
381 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
382 /* the compiler leave some unnecessary references to the code */
383 if (strstart(sym_name, "__op_param", &p)) {
384 snprintf(relname, sizeof(relname), "param%s", p);
385 } else {
386 snprintf(relname, sizeof(relname), "(long)(&%s)", sym_name);
387 }
388 type = ELF32_R_TYPE(rel->r_info);
389 if (type != R_ARM_ABS32)
390 error("%s: unsupported data relocation", name);
391 break;
392 }
393 }
394 fprintf(outfile, " arm_data_ptr[%d] = 0x%x",
395 data_index, addend);
396 if (relname[0] != '\0')
397 fprintf(outfile, " + %s", relname);
398 fprintf(outfile, ";\n");
399 }
400 }
401 }
402 p += 4;
403 }
404 data_size = (p_end - p_start) - min_offset;
405 if (data_size > 0 && outfile) {
406 fprintf(outfile, " arm_data_ptr += %d;\n", data_size >> 2);
407 }
408
409 /* the last instruction must be a mov pc, lr */
410 if (p == p_start)
411 goto arm_ret_error;
412 p -= 4;
413 insn = get32((uint32_t *)p);
414 if ((insn & 0xffff0000) != 0xe91b0000) {
415 arm_ret_error:
416 if (!outfile)
417 printf("%s: invalid epilog\n", name);
418 }
419 return p - p_start;
420}
421#endif
422
423
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424#define MAX_ARGS 3
425
426/* generate op code */
ce11fedc 427void gen_code(const char *name, host_ulong offset, host_ulong size,
fe319756 428 FILE *outfile, uint8_t *text, ELF_RELOC *relocs, int nb_relocs,
d4e8164f 429 int gen_switch)
367e86e8
FB
430{
431 int copy_size = 0;
432 uint8_t *p_start, *p_end;
ae228531 433 host_ulong start_offset;
ce11fedc 434 int nb_args, i, n;
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435 uint8_t args_present[MAX_ARGS];
436 const char *sym_name, *p;
ce11fedc 437 ELF_RELOC *rel;
367e86e8 438
ae228531
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439 /* Compute exact size excluding prologue and epilogue instructions.
440 * Increment start_offset to skip epilogue instructions, then compute
441 * copy_size the indicate the size of the remaining instructions (in
442 * bytes).
443 */
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444 p_start = text + offset;
445 p_end = p_start + size;
ae228531 446 start_offset = offset;
ce11fedc 447 switch(ELF_ARCH) {
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448 case EM_386:
449 {
d4e8164f
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450 int len;
451 len = p_end - p_start;
452 if (len == 0)
367e86e8 453 error("empty code for %s", name);
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FB
454 if (p_end[-1] == 0xc3) {
455 len--;
456 } else {
457 error("ret or jmp expected at the end of %s", name);
458 }
459 copy_size = len;
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FB
460 }
461 break;
462 case EM_PPC:
463 {
464 uint8_t *p;
465 p = (void *)(p_end - 4);
367e86e8
FB
466 if (p == p_start)
467 error("empty code for %s", name);
04369ff2
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468 if (get32((uint32_t *)p) != 0x4e800020)
469 error("blr expected at the end of %s", name);
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470 copy_size = p - p_start;
471 }
472 break;
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473 case EM_S390:
474 {
475 uint8_t *p;
476 p = (void *)(p_end - 2);
477 if (p == p_start)
478 error("empty code for %s", name);
479 if (get16((uint16_t *)p) != 0x07fe && get16((uint16_t *)p) != 0x07f4)
efdea7bf 480 error("br %%r14 expected at the end of %s", name);
fb3e5849
FB
481 copy_size = p - p_start;
482 }
483 break;
efdea7bf
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484 case EM_ALPHA:
485 {
486 uint8_t *p;
487 p = p_end - 4;
630be16f
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488#if 0
489 /* XXX: check why it occurs */
efdea7bf
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490 if (p == p_start)
491 error("empty code for %s", name);
630be16f 492#endif
efdea7bf
FB
493 if (get32((uint32_t *)p) != 0x6bfa8001)
494 error("ret expected at the end of %s", name);
495 copy_size = p - p_start;
496 }
497 break;
498 case EM_IA_64:
499 {
500 uint8_t *p;
501 p = (void *)(p_end - 4);
502 if (p == p_start)
503 error("empty code for %s", name);
504 /* br.ret.sptk.many b0;; */
505 /* 08 00 84 00 */
506 if (get32((uint32_t *)p) != 0x00840008)
507 error("br.ret.sptk.many b0;; expected at the end of %s", name);
508 copy_size = p - p_start;
509 }
510 break;
d014c98c
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511 case EM_SPARC:
512 case EM_SPARC32PLUS:
513 {
ff1f20a3 514 uint32_t start_insn, end_insn1, end_insn2;
d014c98c
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515 uint8_t *p;
516 p = (void *)(p_end - 8);
517 if (p <= p_start)
518 error("empty code for %s", name);
ae228531
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519 start_insn = get32((uint32_t *)(p_start + 0x0));
520 end_insn1 = get32((uint32_t *)(p + 0x0));
521 end_insn2 = get32((uint32_t *)(p + 0x4));
522 if ((start_insn & ~0x1fff) == 0x9de3a000) {
523 p_start += 0x4;
524 start_offset += 0x4;
525 if ((int)(start_insn | ~0x1fff) < -128)
526 error("Found bogus save at the start of %s", name);
527 if (end_insn1 != 0x81c7e008 || end_insn2 != 0x81e80000)
528 error("ret; restore; not found at end of %s", name);
529 } else {
530 error("No save at the beginning of %s", name);
531 }
ff1f20a3 532#if 0
ae228531
FB
533 /* Skip a preceeding nop, if present. */
534 if (p > p_start) {
535 skip_insn = get32((uint32_t *)(p - 0x4));
536 if (skip_insn == 0x01000000)
537 p -= 4;
538 }
ff1f20a3 539#endif
d014c98c
FB
540 copy_size = p - p_start;
541 }
542 break;
543 case EM_SPARCV9:
544 {
ae228531 545 uint32_t start_insn, end_insn1, end_insn2, skip_insn;
d014c98c
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546 uint8_t *p;
547 p = (void *)(p_end - 8);
548 if (p <= p_start)
549 error("empty code for %s", name);
ae228531
FB
550 start_insn = get32((uint32_t *)(p_start + 0x0));
551 end_insn1 = get32((uint32_t *)(p + 0x0));
552 end_insn2 = get32((uint32_t *)(p + 0x4));
553 if ((start_insn & ~0x1fff) == 0x9de3a000) {
554 p_start += 0x4;
555 start_offset += 0x4;
556 if ((int)(start_insn | ~0x1fff) < -256)
557 error("Found bogus save at the start of %s", name);
558 if (end_insn1 != 0x81c7e008 || end_insn2 != 0x81e80000)
559 error("ret; restore; not found at end of %s", name);
560 } else {
561 error("No save at the beginning of %s", name);
562 }
563
564 /* Skip a preceeding nop, if present. */
565 if (p > p_start) {
566 skip_insn = get32((uint32_t *)(p - 0x4));
567 if (skip_insn == 0x01000000)
568 p -= 4;
569 }
570
d014c98c
FB
571 copy_size = p - p_start;
572 }
573 break;
ff1f20a3
FB
574#ifdef HOST_ARM
575 case EM_ARM:
576 if ((p_end - p_start) <= 16)
577 error("%s: function too small", name);
578 if (get32((uint32_t *)p_start) != 0xe1a0c00d ||
579 (get32((uint32_t *)(p_start + 4)) & 0xffff0000) != 0xe92d0000 ||
580 get32((uint32_t *)(p_start + 8)) != 0xe24cb004)
581 error("%s: invalid prolog", name);
582 p_start += 12;
583 start_offset += 12;
584 copy_size = arm_emit_ldr_info(name, start_offset, NULL, p_start, p_end,
585 relocs, nb_relocs);
586 break;
587#endif
38e584a0
FB
588 case EM_68K:
589 {
590 uint8_t *p;
591 p = (void *)(p_end - 2);
592 if (p == p_start)
593 error("empty code for %s", name);
594 // remove NOP's, probably added for alignment
595 while ((get16((uint16_t *)p) == 0x4e71) &&
596 (p>p_start))
597 p -= 2;
598 if (get16((uint16_t *)p) != 0x4e75)
599 error("rts expected at the end of %s", name);
600 copy_size = p - p_start;
601 }
602 break;
efdea7bf
FB
603 default:
604 error("unknown ELF architecture");
367e86e8
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605 }
606
607 /* compute the number of arguments by looking at the relocations */
608 for(i = 0;i < MAX_ARGS; i++)
609 args_present[i] = 0;
610
ce11fedc 611 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531 612 if (rel->r_offset >= start_offset &&
ff1f20a3 613 rel->r_offset < start_offset + (p_end - p_start)) {
ce11fedc
FB
614 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
615 if (strstart(sym_name, "__op_param", &p)) {
616 n = strtoul(p, NULL, 10);
d4e8164f 617 if (n > MAX_ARGS)
ce11fedc
FB
618 error("too many arguments in %s", name);
619 args_present[n - 1] = 1;
367e86e8
FB
620 }
621 }
622 }
623
624 nb_args = 0;
625 while (nb_args < MAX_ARGS && args_present[nb_args])
626 nb_args++;
627 for(i = nb_args; i < MAX_ARGS; i++) {
628 if (args_present[i])
629 error("inconsistent argument numbering in %s", name);
630 }
631
0ea00c9a 632 if (gen_switch == 2) {
a513fe19 633 fprintf(outfile, "DEF(%s, %d, %d)\n", name + 3, nb_args, copy_size);
0ea00c9a 634 } else if (gen_switch == 1) {
dc99065b
FB
635
636 /* output C code */
637 fprintf(outfile, "case INDEX_%s: {\n", name);
638 if (nb_args > 0) {
639 fprintf(outfile, " long ");
640 for(i = 0; i < nb_args; i++) {
641 if (i != 0)
642 fprintf(outfile, ", ");
643 fprintf(outfile, "param%d", i + 1);
644 }
645 fprintf(outfile, ";\n");
367e86e8 646 }
dc99065b
FB
647 fprintf(outfile, " extern void %s();\n", name);
648
ce11fedc 649 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531 650 if (rel->r_offset >= start_offset &&
ff1f20a3 651 rel->r_offset < start_offset + (p_end - p_start)) {
efdea7bf 652 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
d4e8164f
FB
653 if (*sym_name &&
654 !strstart(sym_name, "__op_param", NULL) &&
655 !strstart(sym_name, "__op_jmp", NULL)) {
d014c98c
FB
656#if defined(HOST_SPARC)
657 if (sym_name[0] == '.') {
658 fprintf(outfile,
659 "extern char __dot_%s __asm__(\"%s\");\n",
660 sym_name+1, sym_name);
661 continue;
662 }
663#endif
ce11fedc 664 fprintf(outfile, "extern char %s;\n", sym_name);
dc99065b
FB
665 }
666 }
667 }
668
ae228531 669 fprintf(outfile, " memcpy(gen_code_ptr, (void *)((char *)&%s+%d), %d);\n", name, start_offset - offset, copy_size);
d4e8164f
FB
670
671 /* emit code offset information */
672 {
673 ElfW(Sym) *sym;
674 const char *sym_name, *p;
abcd5da7 675 unsigned long val;
d4e8164f
FB
676 int n;
677
678 for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
679 sym_name = strtab + sym->st_name;
680 if (strstart(sym_name, "__op_label", &p)) {
c1e42a13 681 uint8_t *ptr;
fe319756
FB
682 unsigned long offset;
683
d4e8164f
FB
684 /* test if the variable refers to a label inside
685 the code we are generating */
fe319756
FB
686 ptr = sdata[sym->st_shndx];
687 if (!ptr)
688 error("__op_labelN in invalid section");
689 offset = sym->st_value;
abcd5da7 690 val = *(unsigned long *)(ptr + offset);
fe319756
FB
691#ifdef ELF_USES_RELOCA
692 {
693 int reloc_shndx, nb_relocs1, j;
694
695 /* try to find a matching relocation */
696 reloc_shndx = find_reloc(sym->st_shndx);
697 if (reloc_shndx) {
698 nb_relocs1 = shdr[reloc_shndx].sh_size /
699 shdr[reloc_shndx].sh_entsize;
700 rel = (ELF_RELOC *)sdata[reloc_shndx];
701 for(j = 0; j < nb_relocs1; j++) {
702 if (rel->r_offset == offset) {
039de852 703 val = rel->r_addend;
fe319756
FB
704 break;
705 }
706 rel++;
707 }
708 }
709 }
710#endif
fe319756 711
d4e8164f
FB
712 if (val >= start_offset && val < start_offset + copy_size) {
713 n = strtol(p, NULL, 10);
abcd5da7 714 fprintf(outfile, " label_offsets[%d] = %ld + (gen_code_ptr - gen_code_buf);\n", n, val - start_offset);
d4e8164f
FB
715 }
716 }
717 }
718 }
719
720 /* load parameres in variables */
dc99065b
FB
721 for(i = 0; i < nb_args; i++) {
722 fprintf(outfile, " param%d = *opparam_ptr++;\n", i + 1);
723 }
724
725 /* patch relocations */
ce11fedc 726#if defined(HOST_I386)
dc99065b 727 {
dc99065b
FB
728 char name[256];
729 int type;
ce11fedc 730 int addend;
dc99065b 731 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531
FB
732 if (rel->r_offset >= start_offset &&
733 rel->r_offset < start_offset + copy_size) {
efdea7bf 734 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
ecd854fd
FB
735 if (strstart(sym_name, "__op_jmp", &p)) {
736 int n;
737 n = strtol(p, NULL, 10);
738 /* __op_jmp relocations are done at
739 runtime to do translated block
740 chaining: the offset of the instruction
741 needs to be stored */
742 fprintf(outfile, " jmp_offsets[%d] = %d + (gen_code_ptr - gen_code_buf);\n",
743 n, rel->r_offset - start_offset);
744 continue;
745 }
746
367e86e8
FB
747 if (strstart(sym_name, "__op_param", &p)) {
748 snprintf(name, sizeof(name), "param%s", p);
749 } else {
750 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
751 }
752 type = ELF32_R_TYPE(rel->r_info);
753 addend = get32((uint32_t *)(text + rel->r_offset));
754 switch(type) {
755 case R_386_32:
ce11fedc 756 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 757 rel->r_offset - start_offset, name, addend);
367e86e8
FB
758 break;
759 case R_386_PC32:
ce11fedc 760 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %d) + %d;\n",
ae228531 761 rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
367e86e8
FB
762 break;
763 default:
764 error("unsupported i386 relocation (%d)", type);
765 }
766 }
dc99065b
FB
767 }
768 }
ce11fedc 769#elif defined(HOST_PPC)
04369ff2 770 {
04369ff2
FB
771 char name[256];
772 int type;
ce11fedc 773 int addend;
04369ff2 774 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531
FB
775 if (rel->r_offset >= start_offset &&
776 rel->r_offset < start_offset + copy_size) {
efdea7bf 777 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
d4e8164f
FB
778 if (strstart(sym_name, "__op_jmp", &p)) {
779 int n;
780 n = strtol(p, NULL, 10);
781 /* __op_jmp relocations are done at
782 runtime to do translated block
783 chaining: the offset of the instruction
784 needs to be stored */
785 fprintf(outfile, " jmp_offsets[%d] = %d + (gen_code_ptr - gen_code_buf);\n",
786 n, rel->r_offset - start_offset);
787 continue;
788 }
789
04369ff2
FB
790 if (strstart(sym_name, "__op_param", &p)) {
791 snprintf(name, sizeof(name), "param%s", p);
792 } else {
793 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
794 }
795 type = ELF32_R_TYPE(rel->r_info);
796 addend = rel->r_addend;
797 switch(type) {
798 case R_PPC_ADDR32:
ce11fedc 799 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 800 rel->r_offset - start_offset, name, addend);
04369ff2
FB
801 break;
802 case R_PPC_ADDR16_LO:
ce11fedc 803 fprintf(outfile, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d);\n",
ae228531 804 rel->r_offset - start_offset, name, addend);
04369ff2
FB
805 break;
806 case R_PPC_ADDR16_HI:
ce11fedc 807 fprintf(outfile, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d) >> 16;\n",
ae228531 808 rel->r_offset - start_offset, name, addend);
04369ff2
FB
809 break;
810 case R_PPC_ADDR16_HA:
ce11fedc 811 fprintf(outfile, " *(uint16_t *)(gen_code_ptr + %d) = (%s + %d + 0x8000) >> 16;\n",
ae228531 812 rel->r_offset - start_offset, name, addend);
04369ff2
FB
813 break;
814 case R_PPC_REL24:
815 /* warning: must be at 32 MB distancy */
ce11fedc 816 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = (*(uint32_t *)(gen_code_ptr + %d) & ~0x03fffffc) | ((%s - (long)(gen_code_ptr + %d) + %d) & 0x03fffffc);\n",
ae228531 817 rel->r_offset - start_offset, rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
04369ff2
FB
818 break;
819 default:
820 error("unsupported powerpc relocation (%d)", type);
821 }
822 }
823 }
824 }
ce11fedc 825#elif defined(HOST_S390)
fb3e5849 826 {
fb3e5849
FB
827 char name[256];
828 int type;
ce11fedc 829 int addend;
fb3e5849 830 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531
FB
831 if (rel->r_offset >= start_offset &&
832 rel->r_offset < start_offset + copy_size) {
efdea7bf 833 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
fb3e5849
FB
834 if (strstart(sym_name, "__op_param", &p)) {
835 snprintf(name, sizeof(name), "param%s", p);
836 } else {
837 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
838 }
839 type = ELF32_R_TYPE(rel->r_info);
840 addend = rel->r_addend;
841 switch(type) {
842 case R_390_32:
ce11fedc 843 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 844 rel->r_offset - start_offset, name, addend);
fb3e5849
FB
845 break;
846 case R_390_16:
ce11fedc 847 fprintf(outfile, " *(uint16_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 848 rel->r_offset - start_offset, name, addend);
fb3e5849
FB
849 break;
850 case R_390_8:
ce11fedc 851 fprintf(outfile, " *(uint8_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 852 rel->r_offset - start_offset, name, addend);
fb3e5849
FB
853 break;
854 default:
855 error("unsupported s390 relocation (%d)", type);
856 }
857 }
858 }
859 }
efdea7bf
FB
860#elif defined(HOST_ALPHA)
861 {
862 for (i = 0, rel = relocs; i < nb_relocs; i++, rel++) {
ae228531 863 if (rel->r_offset >= start_offset && rel->r_offset < start_offset + copy_size) {
efdea7bf 864 int type;
74c95119 865
efdea7bf 866 type = ELF64_R_TYPE(rel->r_info);
74c95119 867 sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
efdea7bf
FB
868 switch (type) {
869 case R_ALPHA_GPDISP:
74c95119
FB
870 /* The gp is just 32 bit, and never changes, so it's easiest to emit it
871 as an immediate instead of constructing it from the pv or ra. */
872 fprintf(outfile, " immediate_ldah(gen_code_ptr + %ld, gp);\n",
ae228531 873 rel->r_offset - start_offset);
74c95119 874 fprintf(outfile, " immediate_lda(gen_code_ptr + %ld, gp);\n",
ae228531 875 rel->r_offset - start_offset + rel->r_addend);
efdea7bf
FB
876 break;
877 case R_ALPHA_LITUSE:
878 /* jsr to literal hint. Could be used to optimize to bsr. Ignore for
879 now, since some called functions (libc) need pv to be set up. */
880 break;
881 case R_ALPHA_HINT:
882 /* Branch target prediction hint. Ignore for now. Should be already
883 correct for in-function jumps. */
884 break;
885 case R_ALPHA_LITERAL:
74c95119
FB
886 /* Load a literal from the GOT relative to the gp. Since there's only a
887 single gp, nothing is to be done. */
888 break;
889 case R_ALPHA_GPRELHIGH:
890 /* Handle fake relocations against __op_param symbol. Need to emit the
891 high part of the immediate value instead. Other symbols need no
892 special treatment. */
893 if (strstart(sym_name, "__op_param", &p))
894 fprintf(outfile, " immediate_ldah(gen_code_ptr + %ld, param%s);\n",
ae228531 895 rel->r_offset - start_offset, p);
74c95119
FB
896 break;
897 case R_ALPHA_GPRELLOW:
898 if (strstart(sym_name, "__op_param", &p))
899 fprintf(outfile, " immediate_lda(gen_code_ptr + %ld, param%s);\n",
ae228531 900 rel->r_offset - start_offset, p);
74c95119
FB
901 break;
902 case R_ALPHA_BRSGP:
903 /* PC-relative jump. Tweak offset to skip the two instructions that try to
904 set up the gp from the pv. */
2f87c607 905 fprintf(outfile, " fix_bsr(gen_code_ptr + %ld, (uint8_t *) &%s - (gen_code_ptr + %ld + 4) + 8);\n",
ae228531 906 rel->r_offset - start_offset, sym_name, rel->r_offset - start_offset);
efdea7bf
FB
907 break;
908 default:
909 error("unsupported Alpha relocation (%d)", type);
910 }
911 }
912 }
913 }
914#elif defined(HOST_IA64)
915 {
916 char name[256];
917 int type;
918 int addend;
919 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531 920 if (rel->r_offset >= start_offset && rel->r_offset < start_offset + copy_size) {
efdea7bf
FB
921 sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
922 if (strstart(sym_name, "__op_param", &p)) {
923 snprintf(name, sizeof(name), "param%s", p);
924 } else {
925 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
926 }
927 type = ELF64_R_TYPE(rel->r_info);
928 addend = rel->r_addend;
929 switch(type) {
930 case R_IA64_LTOFF22:
931 error("must implemnt R_IA64_LTOFF22 relocation");
932 case R_IA64_PCREL21B:
933 error("must implemnt R_IA64_PCREL21B relocation");
934 default:
935 error("unsupported ia64 relocation (%d)", type);
936 }
937 }
938 }
939 }
d014c98c
FB
940#elif defined(HOST_SPARC)
941 {
942 char name[256];
943 int type;
944 int addend;
945 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531
FB
946 if (rel->r_offset >= start_offset &&
947 rel->r_offset < start_offset + copy_size) {
d014c98c
FB
948 sym_name = strtab + symtab[ELF32_R_SYM(rel->r_info)].st_name;
949 if (strstart(sym_name, "__op_param", &p)) {
950 snprintf(name, sizeof(name), "param%s", p);
951 } else {
952 if (sym_name[0] == '.')
953 snprintf(name, sizeof(name),
954 "(long)(&__dot_%s)",
955 sym_name + 1);
956 else
957 snprintf(name, sizeof(name),
958 "(long)(&%s)", sym_name);
959 }
960 type = ELF32_R_TYPE(rel->r_info);
961 addend = rel->r_addend;
962 switch(type) {
963 case R_SPARC_32:
964 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 965 rel->r_offset - start_offset, name, addend);
d014c98c
FB
966 break;
967 case R_SPARC_HI22:
968 fprintf(outfile,
969 " *(uint32_t *)(gen_code_ptr + %d) = "
970 "((*(uint32_t *)(gen_code_ptr + %d)) "
971 " & ~0x3fffff) "
ae228531
FB
972 " | (((%s + %d) >> 10) & 0x3fffff);\n",
973 rel->r_offset - start_offset,
974 rel->r_offset - start_offset,
d014c98c
FB
975 name, addend);
976 break;
977 case R_SPARC_LO10:
978 fprintf(outfile,
979 " *(uint32_t *)(gen_code_ptr + %d) = "
980 "((*(uint32_t *)(gen_code_ptr + %d)) "
981 " & ~0x3ff) "
982 " | ((%s + %d) & 0x3ff);\n",
ae228531
FB
983 rel->r_offset - start_offset,
984 rel->r_offset - start_offset,
d014c98c
FB
985 name, addend);
986 break;
987 case R_SPARC_WDISP30:
988 fprintf(outfile,
989 " *(uint32_t *)(gen_code_ptr + %d) = "
990 "((*(uint32_t *)(gen_code_ptr + %d)) "
991 " & ~0x3fffffff) "
ae228531 992 " | ((((%s + %d) - (long)(gen_code_ptr + %d))>>2) "
d014c98c 993 " & 0x3fffffff);\n",
ae228531
FB
994 rel->r_offset - start_offset,
995 rel->r_offset - start_offset,
996 name, addend,
997 rel->r_offset - start_offset);
d014c98c
FB
998 break;
999 default:
1000 error("unsupported sparc relocation (%d)", type);
1001 }
1002 }
1003 }
1004 }
1005#elif defined(HOST_SPARC64)
1006 {
1007 char name[256];
1008 int type;
1009 int addend;
1010 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
ae228531
FB
1011 if (rel->r_offset >= start_offset &&
1012 rel->r_offset < start_offset + copy_size) {
d014c98c
FB
1013 sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
1014 if (strstart(sym_name, "__op_param", &p)) {
1015 snprintf(name, sizeof(name), "param%s", p);
1016 } else {
1017 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1018 }
1019 type = ELF64_R_TYPE(rel->r_info);
1020 addend = rel->r_addend;
1021 switch(type) {
1022 case R_SPARC_32:
1023 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
ae228531 1024 rel->r_offset - start_offset, name, addend);
d014c98c
FB
1025 break;
1026 case R_SPARC_HI22:
1027 fprintf(outfile,
1028 " *(uint32_t *)(gen_code_ptr + %d) = "
1029 "((*(uint32_t *)(gen_code_ptr + %d)) "
1030 " & ~0x3fffff) "
ae228531
FB
1031 " | (((%s + %d) >> 10) & 0x3fffff);\n",
1032 rel->r_offset - start_offset,
1033 rel->r_offset - start_offset,
d014c98c
FB
1034 name, addend);
1035 break;
1036 case R_SPARC_LO10:
1037 fprintf(outfile,
1038 " *(uint32_t *)(gen_code_ptr + %d) = "
1039 "((*(uint32_t *)(gen_code_ptr + %d)) "
1040 " & ~0x3ff) "
1041 " | ((%s + %d) & 0x3ff);\n",
ae228531
FB
1042 rel->r_offset - start_offset,
1043 rel->r_offset - start_offset,
d014c98c
FB
1044 name, addend);
1045 break;
1046 case R_SPARC_WDISP30:
1047 fprintf(outfile,
1048 " *(uint32_t *)(gen_code_ptr + %d) = "
1049 "((*(uint32_t *)(gen_code_ptr + %d)) "
1050 " & ~0x3fffffff) "
ae228531 1051 " | ((((%s + %d) - (long)(gen_code_ptr + %d))>>2) "
d014c98c 1052 " & 0x3fffffff);\n",
ae228531
FB
1053 rel->r_offset - start_offset,
1054 rel->r_offset - start_offset,
1055 name, addend,
1056 rel->r_offset - start_offset);
d014c98c
FB
1057 break;
1058 default:
1059 error("unsupported sparc64 relocation (%d)", type);
1060 }
1061 }
1062 }
1063 }
ff1f20a3
FB
1064#elif defined(HOST_ARM)
1065 {
1066 char name[256];
1067 int type;
1068 int addend;
1069
1070 arm_emit_ldr_info(name, start_offset, outfile, p_start, p_end,
1071 relocs, nb_relocs);
1072
1073 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1074 if (rel->r_offset >= start_offset &&
1075 rel->r_offset < start_offset + copy_size) {
1076 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
1077 /* the compiler leave some unnecessary references to the code */
1078 if (sym_name[0] == '\0')
1079 continue;
1080 if (strstart(sym_name, "__op_param", &p)) {
1081 snprintf(name, sizeof(name), "param%s", p);
1082 } else {
1083 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1084 }
1085 type = ELF32_R_TYPE(rel->r_info);
1086 addend = get32((uint32_t *)(text + rel->r_offset));
1087 switch(type) {
1088 case R_ARM_ABS32:
1089 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
1090 rel->r_offset - start_offset, name, addend);
1091 break;
1092 case R_ARM_PC24:
1093 fprintf(outfile, " arm_reloc_pc24((uint32_t *)(gen_code_ptr + %d), 0x%x, %s);\n",
1094 rel->r_offset - start_offset, addend, name);
1095 break;
1096 default:
1097 error("unsupported arm relocation (%d)", type);
1098 }
1099 }
1100 }
38e584a0
FB
1101 }
1102#elif defined(HOST_M68K)
1103 {
1104 char name[256];
1105 int type;
1106 int addend;
1107 Elf32_Sym *sym;
1108 for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1109 if (rel->r_offset >= start_offset &&
1110 rel->r_offset < start_offset + copy_size) {
1111 sym = &(symtab[ELFW(R_SYM)(rel->r_info)]);
1112 sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
1113 if (strstart(sym_name, "__op_param", &p)) {
1114 snprintf(name, sizeof(name), "param%s", p);
1115 } else {
1116 snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1117 }
1118 type = ELF32_R_TYPE(rel->r_info);
1119 addend = get32((uint32_t *)(text + rel->r_offset)) + rel->r_addend;
1120 switch(type) {
1121 case R_68K_32:
1122 fprintf(outfile, " /* R_68K_32 RELOC, offset %x */\n", rel->r_offset) ;
1123 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s + %#x;\n",
1124 rel->r_offset - start_offset, name, addend );
1125 break;
1126 case R_68K_PC32:
1127 fprintf(outfile, " /* R_68K_PC32 RELOC, offset %x */\n", rel->r_offset);
1128 fprintf(outfile, " *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %#x) + %#x;\n",
1129 rel->r_offset - start_offset, name, rel->r_offset - start_offset, /*sym->st_value+*/ addend);
1130 break;
1131 default:
1132 error("unsupported m68k relocation (%d)", type);
1133 }
1134 }
1135 }
ff1f20a3 1136 }
ce11fedc
FB
1137#else
1138#error unsupported CPU
1139#endif
dc99065b
FB
1140 fprintf(outfile, " gen_code_ptr += %d;\n", copy_size);
1141 fprintf(outfile, "}\n");
1142 fprintf(outfile, "break;\n\n");
1143 } else {
1144 fprintf(outfile, "static inline void gen_%s(", name);
1145 if (nb_args == 0) {
1146 fprintf(outfile, "void");
1147 } else {
1148 for(i = 0; i < nb_args; i++) {
1149 if (i != 0)
1150 fprintf(outfile, ", ");
1151 fprintf(outfile, "long param%d", i + 1);
367e86e8
FB
1152 }
1153 }
dc99065b
FB
1154 fprintf(outfile, ")\n");
1155 fprintf(outfile, "{\n");
1156 for(i = 0; i < nb_args; i++) {
1157 fprintf(outfile, " *gen_opparam_ptr++ = param%d;\n", i + 1);
1158 }
1159 fprintf(outfile, " *gen_opc_ptr++ = INDEX_%s;\n", name);
1160 fprintf(outfile, "}\n\n");
367e86e8 1161 }
367e86e8
FB
1162}
1163
1164/* load an elf object file */
d219f7e7 1165int load_elf(const char *filename, FILE *outfile, int out_type)
367e86e8
FB
1166{
1167 int fd;
d4e8164f
FB
1168 struct elf_shdr *sec, *symtab_sec, *strtab_sec, *text_sec;
1169 int i, j;
1170 ElfW(Sym) *sym;
c1e42a13 1171 char *shstr;
367e86e8 1172 uint8_t *text;
fe319756
FB
1173 ELF_RELOC *relocs;
1174 int nb_relocs;
1175 ELF_RELOC *rel;
367e86e8
FB
1176
1177 fd = open(filename, O_RDONLY);
1178 if (fd < 0)
1179 error("can't open file '%s'", filename);
1180
1181 /* Read ELF header. */
1182 if (read(fd, &ehdr, sizeof (ehdr)) != sizeof (ehdr))
1183 error("unable to read file header");
1184
1185 /* Check ELF identification. */
1186 if (ehdr.e_ident[EI_MAG0] != ELFMAG0
1187 || ehdr.e_ident[EI_MAG1] != ELFMAG1
1188 || ehdr.e_ident[EI_MAG2] != ELFMAG2
1189 || ehdr.e_ident[EI_MAG3] != ELFMAG3
367e86e8
FB
1190 || ehdr.e_ident[EI_VERSION] != EV_CURRENT) {
1191 error("bad ELF header");
1192 }
1193
1194 do_swap = elf_must_swap(&ehdr);
1195 if (do_swap)
1196 elf_swap_ehdr(&ehdr);
ce11fedc
FB
1197 if (ehdr.e_ident[EI_CLASS] != ELF_CLASS)
1198 error("Unsupported ELF class");
367e86e8
FB
1199 if (ehdr.e_type != ET_REL)
1200 error("ELF object file expected");
1201 if (ehdr.e_version != EV_CURRENT)
1202 error("Invalid ELF version");
ce11fedc
FB
1203 if (!elf_check_arch(ehdr.e_machine))
1204 error("Unsupported CPU (e_machine=%d)", ehdr.e_machine);
367e86e8
FB
1205
1206 /* read section headers */
ce11fedc 1207 shdr = load_data(fd, ehdr.e_shoff, ehdr.e_shnum * sizeof(struct elf_shdr));
367e86e8
FB
1208 if (do_swap) {
1209 for(i = 0; i < ehdr.e_shnum; i++) {
1210 elf_swap_shdr(&shdr[i]);
1211 }
1212 }
1213
fe319756
FB
1214 /* read all section data */
1215 sdata = malloc(sizeof(void *) * ehdr.e_shnum);
1216 memset(sdata, 0, sizeof(void *) * ehdr.e_shnum);
1217
1218 for(i = 0;i < ehdr.e_shnum; i++) {
1219 sec = &shdr[i];
1220 if (sec->sh_type != SHT_NOBITS)
1221 sdata[i] = load_data(fd, sec->sh_offset, sec->sh_size);
1222 }
1223
367e86e8 1224 sec = &shdr[ehdr.e_shstrndx];
fe319756 1225 shstr = sdata[ehdr.e_shstrndx];
367e86e8 1226
fe319756
FB
1227 /* swap relocations */
1228 for(i = 0; i < ehdr.e_shnum; i++) {
1229 sec = &shdr[i];
1230 if (sec->sh_type == SHT_RELOC) {
1231 nb_relocs = sec->sh_size / sec->sh_entsize;
1232 if (do_swap) {
1233 for(j = 0, rel = (ELF_RELOC *)sdata[i]; j < nb_relocs; j++, rel++)
1234 elf_swap_rel(rel);
1235 }
1236 }
1237 }
367e86e8
FB
1238 /* text section */
1239
1240 text_sec = find_elf_section(shdr, ehdr.e_shnum, shstr, ".text");
1241 if (!text_sec)
1242 error("could not find .text section");
fe319756
FB
1243 text_shndx = text_sec - shdr;
1244 text = sdata[text_shndx];
367e86e8
FB
1245
1246 /* find text relocations, if any */
367e86e8 1247 relocs = NULL;
fe319756
FB
1248 nb_relocs = 0;
1249 i = find_reloc(text_shndx);
1250 if (i != 0) {
1251 relocs = (ELF_RELOC *)sdata[i];
1252 nb_relocs = shdr[i].sh_size / shdr[i].sh_entsize;
367e86e8
FB
1253 }
1254
1255 symtab_sec = find_elf_section(shdr, ehdr.e_shnum, shstr, ".symtab");
1256 if (!symtab_sec)
1257 error("could not find .symtab section");
1258 strtab_sec = &shdr[symtab_sec->sh_link];
1259
fe319756
FB
1260 symtab = (ElfW(Sym) *)sdata[symtab_sec - shdr];
1261 strtab = sdata[symtab_sec->sh_link];
367e86e8 1262
efdea7bf 1263 nb_syms = symtab_sec->sh_size / sizeof(ElfW(Sym));
367e86e8
FB
1264 if (do_swap) {
1265 for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
1266 swab32s(&sym->st_name);
ce11fedc
FB
1267 swabls(&sym->st_value);
1268 swabls(&sym->st_size);
367e86e8
FB
1269 swab16s(&sym->st_shndx);
1270 }
1271 }
1272
d219f7e7 1273 if (out_type == OUT_INDEX_OP) {
a513fe19 1274 fprintf(outfile, "DEF(end, 0, 0)\n");
e477b8b8
FB
1275 fprintf(outfile, "DEF(nop, 0, 0)\n");
1276 fprintf(outfile, "DEF(nop1, 1, 0)\n");
1277 fprintf(outfile, "DEF(nop2, 2, 0)\n");
1278 fprintf(outfile, "DEF(nop3, 3, 0)\n");
dc99065b
FB
1279 for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
1280 const char *name, *p;
1281 name = strtab + sym->st_name;
1282 if (strstart(name, OP_PREFIX, &p)) {
0ea00c9a 1283 gen_code(name, sym->st_value, sym->st_size, outfile,
fe319756 1284 text, relocs, nb_relocs, 2);
dc99065b
FB
1285 }
1286 }
d219f7e7
FB
1287 } else if (out_type == OUT_GEN_OP) {
1288 /* generate gen_xxx functions */
1289
1290 for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
1291 const char *name;
1292 name = strtab + sym->st_name;
1293 if (strstart(name, OP_PREFIX, NULL)) {
1294 if (sym->st_shndx != (text_sec - shdr))
1295 error("invalid section for opcode (0x%x)", sym->st_shndx);
1296 gen_code(name, sym->st_value, sym->st_size, outfile,
1297 text, relocs, nb_relocs, 0);
1298 }
1299 }
1300
dc99065b
FB
1301 } else {
1302 /* generate big code generation switch */
1303fprintf(outfile,
1304"int dyngen_code(uint8_t *gen_code_buf,\n"
d4e8164f 1305" uint16_t *label_offsets, uint16_t *jmp_offsets,\n"
dc99065b
FB
1306" const uint16_t *opc_buf, const uint32_t *opparam_buf)\n"
1307"{\n"
1308" uint8_t *gen_code_ptr;\n"
1309" const uint16_t *opc_ptr;\n"
ff1f20a3
FB
1310" const uint32_t *opparam_ptr;\n");
1311
1312#ifdef HOST_ARM
1313fprintf(outfile,
1314" uint8_t *last_gen_code_ptr = gen_code_buf;\n"
1315" LDREntry *arm_ldr_ptr = arm_ldr_table;\n"
1316" uint32_t *arm_data_ptr = arm_data_table;\n");
1317#endif
1318
1319fprintf(outfile,
1320"\n"
dc99065b
FB
1321" gen_code_ptr = gen_code_buf;\n"
1322" opc_ptr = opc_buf;\n"
ae228531
FB
1323" opparam_ptr = opparam_buf;\n");
1324
1325 /* Generate prologue, if needed. */
ae228531
FB
1326
1327fprintf(outfile,
dc99065b
FB
1328" for(;;) {\n"
1329" switch(*opc_ptr++) {\n"
1330);
367e86e8 1331
dc99065b
FB
1332 for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
1333 const char *name;
1334 name = strtab + sym->st_name;
1335 if (strstart(name, OP_PREFIX, NULL)) {
367e86e8 1336#if 0
dc99065b
FB
1337 printf("%4d: %s pos=0x%08x len=%d\n",
1338 i, name, sym->st_value, sym->st_size);
367e86e8 1339#endif
dc99065b
FB
1340 if (sym->st_shndx != (text_sec - shdr))
1341 error("invalid section for opcode (0x%x)", sym->st_shndx);
1342 gen_code(name, sym->st_value, sym->st_size, outfile,
fe319756 1343 text, relocs, nb_relocs, 1);
dc99065b
FB
1344 }
1345 }
1346
1347fprintf(outfile,
8ef9a8ec
FB
1348" case INDEX_op_nop:\n"
1349" break;\n"
1350" case INDEX_op_nop1:\n"
1351" opparam_ptr++;\n"
1352" break;\n"
1353" case INDEX_op_nop2:\n"
1354" opparam_ptr += 2;\n"
1355" break;\n"
1356" case INDEX_op_nop3:\n"
1357" opparam_ptr += 3;\n"
1358" break;\n"
dc99065b
FB
1359" default:\n"
1360" goto the_end;\n"
ff1f20a3
FB
1361" }\n");
1362
1363#ifdef HOST_ARM
1364/* generate constant table if needed */
1365fprintf(outfile,
1366" if ((gen_code_ptr - last_gen_code_ptr) >= (MAX_FRAG_SIZE - MAX_OP_SIZE)) {\n"
1367" gen_code_ptr = arm_flush_ldr(gen_code_ptr, arm_ldr_table, arm_ldr_ptr, arm_data_table, arm_data_ptr, 1);\n"
1368" last_gen_code_ptr = gen_code_ptr;\n"
1369" arm_ldr_ptr = arm_ldr_table;\n"
1370" arm_data_ptr = arm_data_table;\n"
1371" }\n");
1372#endif
1373
1374
1375fprintf(outfile,
dc99065b
FB
1376" }\n"
1377" the_end:\n"
1378);
1379
9621339d
FB
1380/* generate some code patching */
1381#ifdef HOST_ARM
1382fprintf(outfile, "gen_code_ptr = arm_flush_ldr(gen_code_ptr, arm_ldr_table, arm_ldr_ptr, arm_data_table, arm_data_ptr, 0);\n");
1383#endif
d219f7e7
FB
1384 /* flush instruction cache */
1385 fprintf(outfile, "flush_icache_range((unsigned long)gen_code_buf, (unsigned long)gen_code_ptr);\n");
1386
dc99065b
FB
1387 fprintf(outfile, "return gen_code_ptr - gen_code_buf;\n");
1388 fprintf(outfile, "}\n\n");
1389
367e86e8
FB
1390 }
1391
1392 close(fd);
1393 return 0;
1394}
1395
1396void usage(void)
1397{
1398 printf("dyngen (c) 2003 Fabrice Bellard\n"
dc99065b
FB
1399 "usage: dyngen [-o outfile] [-c] objfile\n"
1400 "Generate a dynamic code generator from an object file\n"
1401 "-c output enum of operations\n"
d219f7e7 1402 "-g output gen_op_xx() functions\n"
dc99065b 1403 );
367e86e8
FB
1404 exit(1);
1405}
1406
1407int main(int argc, char **argv)
1408{
d219f7e7 1409 int c, out_type;
367e86e8
FB
1410 const char *filename, *outfilename;
1411 FILE *outfile;
1412
1413 outfilename = "out.c";
d219f7e7 1414 out_type = OUT_CODE;
367e86e8 1415 for(;;) {
d219f7e7 1416 c = getopt(argc, argv, "ho:cg");
367e86e8
FB
1417 if (c == -1)
1418 break;
1419 switch(c) {
1420 case 'h':
1421 usage();
1422 break;
1423 case 'o':
1424 outfilename = optarg;
1425 break;
dc99065b 1426 case 'c':
d219f7e7
FB
1427 out_type = OUT_INDEX_OP;
1428 break;
1429 case 'g':
1430 out_type = OUT_GEN_OP;
dc99065b 1431 break;
367e86e8
FB
1432 }
1433 }
1434 if (optind >= argc)
1435 usage();
1436 filename = argv[optind];
1437 outfile = fopen(outfilename, "w");
1438 if (!outfile)
1439 error("could not open '%s'", outfilename);
d219f7e7 1440 load_elf(filename, outfile, out_type);
367e86e8
FB
1441 fclose(outfile);
1442 return 0;
1443}