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/*
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 *  Generic Dynamic compiler generator
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 * 
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 *  Copyright (c) 2003 Fabrice Bellard
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 *
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 *  The COFF object format support was extracted from Kazu's QEMU port
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 *  to Win32.
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 *
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 *  Mach-O Support by Matt Reda and Pierre d'Herbemont
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 *
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 *  This program is free software; you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  (at your option) any later version.
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 *
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 *  This program is distributed in the hope that it will be useful,
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 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  GNU General Public License for more details.
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 *
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 *  You should have received a copy of the GNU General Public License
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 *  along with this program; if not, write to the Free Software
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 *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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 */
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdarg.h>
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#include <inttypes.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include "config-host.h"
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/* NOTE: we test CONFIG_WIN32 instead of _WIN32 to enabled cross
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   compilation */
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#if defined(CONFIG_WIN32)
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#define CONFIG_FORMAT_COFF
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#elif defined(CONFIG_DARWIN)
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#define CONFIG_FORMAT_MACH
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#else
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#define CONFIG_FORMAT_ELF
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#endif
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#ifdef CONFIG_FORMAT_ELF
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/* elf format definitions. We use these macros to test the CPU to
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   allow cross compilation (this tool must be ran on the build
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   platform) */
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#if defined(HOST_I386)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_386
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#define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
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#undef ELF_USES_RELOCA
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#elif defined(HOST_X86_64)
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#define ELF_CLASS        ELFCLASS64
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#define ELF_ARCH        EM_X86_64
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#define elf_check_arch(x) ((x) == EM_X86_64)
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#define ELF_USES_RELOCA
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#elif defined(HOST_PPC)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_PPC
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#define elf_check_arch(x) ((x) == EM_PPC)
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#define ELF_USES_RELOCA
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#elif defined(HOST_S390)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_S390
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#define elf_check_arch(x) ((x) == EM_S390)
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#define ELF_USES_RELOCA
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#elif defined(HOST_ALPHA)
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#define ELF_CLASS        ELFCLASS64
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#define ELF_ARCH        EM_ALPHA
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#define elf_check_arch(x) ((x) == EM_ALPHA)
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#define ELF_USES_RELOCA
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#elif defined(HOST_IA64)
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#define ELF_CLASS        ELFCLASS64
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#define ELF_ARCH        EM_IA_64
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#define elf_check_arch(x) ((x) == EM_IA_64)
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#define ELF_USES_RELOCA
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#elif defined(HOST_SPARC)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_SPARC
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#define elf_check_arch(x) ((x) == EM_SPARC || (x) == EM_SPARC32PLUS)
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#define ELF_USES_RELOCA
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#elif defined(HOST_SPARC64)
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#define ELF_CLASS        ELFCLASS64
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#define ELF_ARCH        EM_SPARCV9
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#define elf_check_arch(x) ((x) == EM_SPARCV9)
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#define ELF_USES_RELOCA
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#elif defined(HOST_ARM)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_ARM
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#define elf_check_arch(x) ((x) == EM_ARM)
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#define ELF_USES_RELOC
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#elif defined(HOST_M68K)
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#define ELF_CLASS        ELFCLASS32
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#define ELF_ARCH        EM_68K
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#define elf_check_arch(x) ((x) == EM_68K)
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#define ELF_USES_RELOCA
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#else
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#error unsupported CPU - please update the code
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#endif
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#include "elf.h"
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#if ELF_CLASS == ELFCLASS32
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typedef int32_t host_long;
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typedef uint32_t host_ulong;
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#define swabls(x) swab32s(x)
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#else
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typedef int64_t host_long;
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typedef uint64_t host_ulong;
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#define swabls(x) swab64s(x)
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#endif
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#ifdef ELF_USES_RELOCA
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#define SHT_RELOC SHT_RELA
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#else
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#define SHT_RELOC SHT_REL
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#endif
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#define EXE_RELOC ELF_RELOC
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#define EXE_SYM ElfW(Sym)
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#endif /* CONFIG_FORMAT_ELF */
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#ifdef CONFIG_FORMAT_COFF
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#include "a.out.h"
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typedef int32_t host_long;
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typedef uint32_t host_ulong;
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#define FILENAMELEN 256
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typedef struct coff_sym {
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    struct external_syment *st_syment;
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    char st_name[FILENAMELEN];
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    uint32_t st_value;
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    int  st_size;
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    uint8_t st_type;
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    uint8_t st_shndx;
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} coff_Sym;
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typedef struct coff_rel {
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    struct external_reloc *r_reloc;
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    int  r_offset;
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    uint8_t r_type;
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} coff_Rel;
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#define EXE_RELOC struct coff_rel
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#define EXE_SYM struct coff_sym
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#endif /* CONFIG_FORMAT_COFF */
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#ifdef CONFIG_FORMAT_MACH
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#include <mach-o/loader.h>
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#include <mach-o/nlist.h>
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#include <mach-o/reloc.h>
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#include <mach-o/ppc/reloc.h>
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# define check_mach_header(x) (x.magic == MH_MAGIC)
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typedef int32_t host_long;
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typedef uint32_t host_ulong;
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struct nlist_extended
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{
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   union {
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   char *n_name; 
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   long  n_strx; 
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   } n_un;
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   unsigned char n_type; 
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   unsigned char n_sect; 
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   short st_desc;
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   unsigned long st_value;
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   unsigned long st_size;
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};
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#define EXE_RELOC struct relocation_info
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#define EXE_SYM struct nlist_extended
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#endif /* CONFIG_FORMAT_MACH */
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#include "bswap.h"
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enum {
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    OUT_GEN_OP,
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    OUT_CODE,
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    OUT_INDEX_OP,
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};
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/* all dynamically generated functions begin with this code */
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#define OP_PREFIX "op_"
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int do_swap;
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void __attribute__((noreturn)) __attribute__((format (printf, 1, 2))) error(const char *fmt, ...)
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{
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    va_list ap;
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    va_start(ap, fmt);
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    fprintf(stderr, "dyngen: ");
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    vfprintf(stderr, fmt, ap);
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    fprintf(stderr, "\n");
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    va_end(ap);
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    exit(1);
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}
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void *load_data(int fd, long offset, unsigned int size)
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{
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    char *data;
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    data = malloc(size);
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    if (!data)
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        return NULL;
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    lseek(fd, offset, SEEK_SET);
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    if (read(fd, data, size) != size) {
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        free(data);
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        return NULL;
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    }
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    return data;
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}
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int strstart(const char *str, const char *val, const char **ptr)
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{
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    const char *p, *q;
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    p = str;
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    q = val;
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    while (*q != '\0') {
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        if (*p != *q)
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            return 0;
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        p++;
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        q++;
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    }
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    if (ptr)
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        *ptr = p;
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    return 1;
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}
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void pstrcpy(char *buf, int buf_size, const char *str)
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{
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    int c;
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    char *q = buf;
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    if (buf_size <= 0)
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        return;
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    for(;;) {
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        c = *str++;
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        if (c == 0 || q >= buf + buf_size - 1)
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            break;
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        *q++ = c;
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    }
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    *q = '\0';
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}
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void swab16s(uint16_t *p)
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{
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    *p = bswap16(*p);
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}
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void swab32s(uint32_t *p)
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{
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    *p = bswap32(*p);
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}
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void swab64s(uint64_t *p)
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{
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    *p = bswap64(*p);
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}
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uint16_t get16(uint16_t *p)
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{
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    uint16_t val;
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    val = *p;
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    if (do_swap)
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        val = bswap16(val);
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    return val;
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}
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uint32_t get32(uint32_t *p)
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{
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    uint32_t val;
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    val = *p;
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    if (do_swap)
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        val = bswap32(val);
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    return val;
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}
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void put16(uint16_t *p, uint16_t val)
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{
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    if (do_swap)
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        val = bswap16(val);
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    *p = val;
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}
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void put32(uint32_t *p, uint32_t val)
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{
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    if (do_swap)
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        val = bswap32(val);
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    *p = val;
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}
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/* executable information */
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EXE_SYM *symtab;
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int nb_syms;
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int text_shndx;
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uint8_t *text;
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EXE_RELOC *relocs;
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int nb_relocs;
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#ifdef CONFIG_FORMAT_ELF
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/* ELF file info */
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struct elf_shdr *shdr;
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uint8_t **sdata;
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struct elfhdr ehdr;
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char *strtab;
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int elf_must_swap(struct elfhdr *h)
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{
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  union {
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      uint32_t i;
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      uint8_t b[4];
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  } swaptest;
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  swaptest.i = 1;
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  return (h->e_ident[EI_DATA] == ELFDATA2MSB) != 
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      (swaptest.b[0] == 0);
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}
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void elf_swap_ehdr(struct elfhdr *h)
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{
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    swab16s(&h->e_type);                        /* Object file type */
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    swab16s(&h->        e_machine);                /* Architecture */
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    swab32s(&h->        e_version);                /* Object file version */
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    swabls(&h->        e_entry);                /* Entry point virtual address */
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    swabls(&h->        e_phoff);                /* Program header table file offset */
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    swabls(&h->        e_shoff);                /* Section header table file offset */
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    swab32s(&h->        e_flags);                /* Processor-specific flags */
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    swab16s(&h->        e_ehsize);                /* ELF header size in bytes */
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    swab16s(&h->        e_phentsize);                /* Program header table entry size */
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    swab16s(&h->        e_phnum);                /* Program header table entry count */
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    swab16s(&h->        e_shentsize);                /* Section header table entry size */
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    swab16s(&h->        e_shnum);                /* Section header table entry count */
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    swab16s(&h->        e_shstrndx);                /* Section header string table index */
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}
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void elf_swap_shdr(struct elf_shdr *h)
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{
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  swab32s(&h->        sh_name);                /* Section name (string tbl index) */
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  swab32s(&h->        sh_type);                /* Section type */
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  swabls(&h->        sh_flags);                /* Section flags */
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  swabls(&h->        sh_addr);                /* Section virtual addr at execution */
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  swabls(&h->        sh_offset);                /* Section file offset */
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  swabls(&h->        sh_size);                /* Section size in bytes */
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  swab32s(&h->        sh_link);                /* Link to another section */
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  swab32s(&h->        sh_info);                /* Additional section information */
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  swabls(&h->        sh_addralign);                /* Section alignment */
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  swabls(&h->        sh_entsize);                /* Entry size if section holds table */
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}
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void elf_swap_phdr(struct elf_phdr *h)
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{
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    swab32s(&h->p_type);                        /* Segment type */
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    swabls(&h->p_offset);                /* Segment file offset */
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    swabls(&h->p_vaddr);                /* Segment virtual address */
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    swabls(&h->p_paddr);                /* Segment physical address */
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    swabls(&h->p_filesz);                /* Segment size in file */
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    swabls(&h->p_memsz);                /* Segment size in memory */
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    swab32s(&h->p_flags);                /* Segment flags */
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    swabls(&h->p_align);                /* Segment alignment */
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}
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void elf_swap_rel(ELF_RELOC *rel)
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{
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    swabls(&rel->r_offset);
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    swabls(&rel->r_info);
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#ifdef ELF_USES_RELOCA
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    swabls(&rel->r_addend);
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#endif
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}
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struct elf_shdr *find_elf_section(struct elf_shdr *shdr, int shnum, const char *shstr, 
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                                  const char *name)
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{
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    int i;
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    const char *shname;
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    struct elf_shdr *sec;
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    for(i = 0; i < shnum; i++) {
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        sec = &shdr[i];
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        if (!sec->sh_name)
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            continue;
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        shname = shstr + sec->sh_name;
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        if (!strcmp(shname, name))
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            return sec;
418 67b915a5 bellard
    }
419 67b915a5 bellard
    return NULL;
420 67b915a5 bellard
}
421 67b915a5 bellard
422 67b915a5 bellard
int find_reloc(int sh_index)
423 367e86e8 bellard
{
424 67b915a5 bellard
    struct elf_shdr *sec;
425 67b915a5 bellard
    int i;
426 67b915a5 bellard
427 67b915a5 bellard
    for(i = 0; i < ehdr.e_shnum; i++) {
428 67b915a5 bellard
        sec = &shdr[i];
429 67b915a5 bellard
        if (sec->sh_type == SHT_RELOC && sec->sh_info == sh_index) 
430 67b915a5 bellard
            return i;
431 67b915a5 bellard
    }
432 67b915a5 bellard
    return 0;
433 367e86e8 bellard
}
434 367e86e8 bellard
435 82eec0a1 bellard
static host_ulong get_rel_offset(EXE_RELOC *rel)
436 82eec0a1 bellard
{
437 82eec0a1 bellard
    return rel->r_offset;
438 82eec0a1 bellard
}
439 82eec0a1 bellard
440 67b915a5 bellard
static char *get_rel_sym_name(EXE_RELOC *rel)
441 367e86e8 bellard
{
442 67b915a5 bellard
    return strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
443 67b915a5 bellard
}
444 67b915a5 bellard
445 67b915a5 bellard
static char *get_sym_name(EXE_SYM *sym)
446 67b915a5 bellard
{
447 67b915a5 bellard
    return strtab + sym->st_name;
448 67b915a5 bellard
}
449 67b915a5 bellard
450 67b915a5 bellard
/* load an elf object file */
451 67b915a5 bellard
int load_object(const char *filename)
452 67b915a5 bellard
{
453 67b915a5 bellard
    int fd;
454 67b915a5 bellard
    struct elf_shdr *sec, *symtab_sec, *strtab_sec, *text_sec;
455 67b915a5 bellard
    int i, j;
456 67b915a5 bellard
    ElfW(Sym) *sym;
457 67b915a5 bellard
    char *shstr;
458 67b915a5 bellard
    ELF_RELOC *rel;
459 67b915a5 bellard
    
460 67b915a5 bellard
    fd = open(filename, O_RDONLY);
461 67b915a5 bellard
    if (fd < 0) 
462 67b915a5 bellard
        error("can't open file '%s'", filename);
463 67b915a5 bellard
    
464 67b915a5 bellard
    /* Read ELF header.  */
465 67b915a5 bellard
    if (read(fd, &ehdr, sizeof (ehdr)) != sizeof (ehdr))
466 67b915a5 bellard
        error("unable to read file header");
467 67b915a5 bellard
468 67b915a5 bellard
    /* Check ELF identification.  */
469 67b915a5 bellard
    if (ehdr.e_ident[EI_MAG0] != ELFMAG0
470 67b915a5 bellard
     || ehdr.e_ident[EI_MAG1] != ELFMAG1
471 67b915a5 bellard
     || ehdr.e_ident[EI_MAG2] != ELFMAG2
472 67b915a5 bellard
     || ehdr.e_ident[EI_MAG3] != ELFMAG3
473 67b915a5 bellard
     || ehdr.e_ident[EI_VERSION] != EV_CURRENT) {
474 67b915a5 bellard
        error("bad ELF header");
475 67b915a5 bellard
    }
476 67b915a5 bellard
477 67b915a5 bellard
    do_swap = elf_must_swap(&ehdr);
478 367e86e8 bellard
    if (do_swap)
479 67b915a5 bellard
        elf_swap_ehdr(&ehdr);
480 67b915a5 bellard
    if (ehdr.e_ident[EI_CLASS] != ELF_CLASS)
481 67b915a5 bellard
        error("Unsupported ELF class");
482 67b915a5 bellard
    if (ehdr.e_type != ET_REL)
483 67b915a5 bellard
        error("ELF object file expected");
484 67b915a5 bellard
    if (ehdr.e_version != EV_CURRENT)
485 67b915a5 bellard
        error("Invalid ELF version");
486 67b915a5 bellard
    if (!elf_check_arch(ehdr.e_machine))
487 67b915a5 bellard
        error("Unsupported CPU (e_machine=%d)", ehdr.e_machine);
488 67b915a5 bellard
489 67b915a5 bellard
    /* read section headers */
490 67b915a5 bellard
    shdr = load_data(fd, ehdr.e_shoff, ehdr.e_shnum * sizeof(struct elf_shdr));
491 67b915a5 bellard
    if (do_swap) {
492 67b915a5 bellard
        for(i = 0; i < ehdr.e_shnum; i++) {
493 67b915a5 bellard
            elf_swap_shdr(&shdr[i]);
494 67b915a5 bellard
        }
495 67b915a5 bellard
    }
496 67b915a5 bellard
497 67b915a5 bellard
    /* read all section data */
498 67b915a5 bellard
    sdata = malloc(sizeof(void *) * ehdr.e_shnum);
499 67b915a5 bellard
    memset(sdata, 0, sizeof(void *) * ehdr.e_shnum);
500 67b915a5 bellard
    
501 67b915a5 bellard
    for(i = 0;i < ehdr.e_shnum; i++) {
502 67b915a5 bellard
        sec = &shdr[i];
503 67b915a5 bellard
        if (sec->sh_type != SHT_NOBITS)
504 67b915a5 bellard
            sdata[i] = load_data(fd, sec->sh_offset, sec->sh_size);
505 67b915a5 bellard
    }
506 67b915a5 bellard
507 67b915a5 bellard
    sec = &shdr[ehdr.e_shstrndx];
508 67b915a5 bellard
    shstr = sdata[ehdr.e_shstrndx];
509 67b915a5 bellard
510 67b915a5 bellard
    /* swap relocations */
511 67b915a5 bellard
    for(i = 0; i < ehdr.e_shnum; i++) {
512 67b915a5 bellard
        sec = &shdr[i];
513 67b915a5 bellard
        if (sec->sh_type == SHT_RELOC) {
514 67b915a5 bellard
            nb_relocs = sec->sh_size / sec->sh_entsize;
515 67b915a5 bellard
            if (do_swap) {
516 67b915a5 bellard
                for(j = 0, rel = (ELF_RELOC *)sdata[i]; j < nb_relocs; j++, rel++)
517 67b915a5 bellard
                    elf_swap_rel(rel);
518 67b915a5 bellard
            }
519 67b915a5 bellard
        }
520 67b915a5 bellard
    }
521 67b915a5 bellard
    /* text section */
522 67b915a5 bellard
523 67b915a5 bellard
    text_sec = find_elf_section(shdr, ehdr.e_shnum, shstr, ".text");
524 67b915a5 bellard
    if (!text_sec)
525 67b915a5 bellard
        error("could not find .text section");
526 67b915a5 bellard
    text_shndx = text_sec - shdr;
527 67b915a5 bellard
    text = sdata[text_shndx];
528 67b915a5 bellard
529 67b915a5 bellard
    /* find text relocations, if any */
530 67b915a5 bellard
    relocs = NULL;
531 67b915a5 bellard
    nb_relocs = 0;
532 67b915a5 bellard
    i = find_reloc(text_shndx);
533 67b915a5 bellard
    if (i != 0) {
534 67b915a5 bellard
        relocs = (ELF_RELOC *)sdata[i];
535 67b915a5 bellard
        nb_relocs = shdr[i].sh_size / shdr[i].sh_entsize;
536 67b915a5 bellard
    }
537 67b915a5 bellard
538 67b915a5 bellard
    symtab_sec = find_elf_section(shdr, ehdr.e_shnum, shstr, ".symtab");
539 67b915a5 bellard
    if (!symtab_sec)
540 67b915a5 bellard
        error("could not find .symtab section");
541 67b915a5 bellard
    strtab_sec = &shdr[symtab_sec->sh_link];
542 67b915a5 bellard
543 67b915a5 bellard
    symtab = (ElfW(Sym) *)sdata[symtab_sec - shdr];
544 67b915a5 bellard
    strtab = sdata[symtab_sec->sh_link];
545 67b915a5 bellard
    
546 67b915a5 bellard
    nb_syms = symtab_sec->sh_size / sizeof(ElfW(Sym));
547 67b915a5 bellard
    if (do_swap) {
548 67b915a5 bellard
        for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
549 67b915a5 bellard
            swab32s(&sym->st_name);
550 67b915a5 bellard
            swabls(&sym->st_value);
551 67b915a5 bellard
            swabls(&sym->st_size);
552 67b915a5 bellard
            swab16s(&sym->st_shndx);
553 67b915a5 bellard
        }
554 67b915a5 bellard
    }
555 67b915a5 bellard
    close(fd);
556 67b915a5 bellard
    return 0;
557 67b915a5 bellard
}
558 67b915a5 bellard
559 67b915a5 bellard
#endif /* CONFIG_FORMAT_ELF */
560 67b915a5 bellard
561 67b915a5 bellard
#ifdef CONFIG_FORMAT_COFF
562 67b915a5 bellard
563 67b915a5 bellard
/* COFF file info */
564 67b915a5 bellard
struct external_scnhdr *shdr;
565 67b915a5 bellard
uint8_t **sdata;
566 67b915a5 bellard
struct external_filehdr fhdr;
567 67b915a5 bellard
struct external_syment *coff_symtab;
568 67b915a5 bellard
char *strtab;
569 67b915a5 bellard
int coff_text_shndx, coff_data_shndx;
570 67b915a5 bellard
571 67b915a5 bellard
int data_shndx;
572 67b915a5 bellard
573 67b915a5 bellard
#define STRTAB_SIZE 4
574 67b915a5 bellard
575 67b915a5 bellard
#define DIR32   0x06
576 67b915a5 bellard
#define DISP32  0x14
577 67b915a5 bellard
578 67b915a5 bellard
#define T_FUNCTION  0x20
579 67b915a5 bellard
#define C_EXTERNAL  2
580 67b915a5 bellard
581 67b915a5 bellard
void sym_ent_name(struct external_syment *ext_sym, EXE_SYM *sym)
582 67b915a5 bellard
{
583 67b915a5 bellard
    char *q;
584 67b915a5 bellard
    int c, i, len;
585 67b915a5 bellard
    
586 67b915a5 bellard
    if (ext_sym->e.e.e_zeroes != 0) {
587 67b915a5 bellard
        q = sym->st_name;
588 67b915a5 bellard
        for(i = 0; i < 8; i++) {
589 67b915a5 bellard
            c = ext_sym->e.e_name[i];
590 67b915a5 bellard
            if (c == '\0')
591 67b915a5 bellard
                break;
592 67b915a5 bellard
            *q++ = c;
593 67b915a5 bellard
        }
594 67b915a5 bellard
        *q = '\0';
595 67b915a5 bellard
    } else {
596 67b915a5 bellard
        pstrcpy(sym->st_name, sizeof(sym->st_name), strtab + ext_sym->e.e.e_offset);
597 67b915a5 bellard
    }
598 67b915a5 bellard
599 67b915a5 bellard
    /* now convert the name to a C name (suppress the leading '_') */
600 67b915a5 bellard
    if (sym->st_name[0] == '_') {
601 67b915a5 bellard
        len = strlen(sym->st_name);
602 67b915a5 bellard
        memmove(sym->st_name, sym->st_name + 1, len - 1);
603 67b915a5 bellard
        sym->st_name[len - 1] = '\0';
604 67b915a5 bellard
    }
605 367e86e8 bellard
}
606 367e86e8 bellard
607 67b915a5 bellard
char *name_for_dotdata(struct coff_rel *rel)
608 367e86e8 bellard
{
609 67b915a5 bellard
        int i;
610 67b915a5 bellard
        struct coff_sym *sym;
611 67b915a5 bellard
        uint32_t text_data;
612 67b915a5 bellard
613 67b915a5 bellard
        text_data = *(uint32_t *)(text + rel->r_offset);
614 67b915a5 bellard
615 67b915a5 bellard
        for (i = 0, sym = symtab; i < nb_syms; i++, sym++) {
616 67b915a5 bellard
                if (sym->st_syment->e_scnum == data_shndx &&
617 67b915a5 bellard
                    text_data >= sym->st_value &&
618 67b915a5 bellard
                    text_data < sym->st_value + sym->st_size) {
619 67b915a5 bellard
                    
620 67b915a5 bellard
                    return sym->st_name;
621 67b915a5 bellard
622 67b915a5 bellard
                }
623 67b915a5 bellard
        }
624 67b915a5 bellard
        return NULL;
625 367e86e8 bellard
}
626 367e86e8 bellard
627 67b915a5 bellard
static char *get_sym_name(EXE_SYM *sym)
628 367e86e8 bellard
{
629 67b915a5 bellard
    return sym->st_name;
630 367e86e8 bellard
}
631 367e86e8 bellard
632 67b915a5 bellard
static char *get_rel_sym_name(EXE_RELOC *rel)
633 367e86e8 bellard
{
634 67b915a5 bellard
    char *name;
635 67b915a5 bellard
    name = get_sym_name(symtab + *(uint32_t *)(rel->r_reloc->r_symndx));
636 67b915a5 bellard
    if (!strcmp(name, ".data"))
637 67b915a5 bellard
        name = name_for_dotdata(rel);
638 67b915a5 bellard
    return name;
639 367e86e8 bellard
}
640 367e86e8 bellard
641 82eec0a1 bellard
static host_ulong get_rel_offset(EXE_RELOC *rel)
642 82eec0a1 bellard
{
643 82eec0a1 bellard
    return rel->r_offset;
644 82eec0a1 bellard
}
645 82eec0a1 bellard
646 67b915a5 bellard
struct external_scnhdr *find_coff_section(struct external_scnhdr *shdr, int shnum, const char *name)
647 367e86e8 bellard
{
648 367e86e8 bellard
    int i;
649 367e86e8 bellard
    const char *shname;
650 67b915a5 bellard
    struct external_scnhdr *sec;
651 367e86e8 bellard
652 367e86e8 bellard
    for(i = 0; i < shnum; i++) {
653 367e86e8 bellard
        sec = &shdr[i];
654 67b915a5 bellard
        if (!sec->s_name)
655 367e86e8 bellard
            continue;
656 67b915a5 bellard
        shname = sec->s_name;
657 367e86e8 bellard
        if (!strcmp(shname, name))
658 367e86e8 bellard
            return sec;
659 367e86e8 bellard
    }
660 367e86e8 bellard
    return NULL;
661 367e86e8 bellard
}
662 367e86e8 bellard
663 67b915a5 bellard
/* load a coff object file */
664 67b915a5 bellard
int load_object(const char *filename)
665 fe319756 bellard
{
666 67b915a5 bellard
    int fd;
667 67b915a5 bellard
    struct external_scnhdr *sec, *text_sec, *data_sec;
668 fe319756 bellard
    int i;
669 67b915a5 bellard
    struct external_syment *ext_sym;
670 67b915a5 bellard
    struct external_reloc *coff_relocs;
671 67b915a5 bellard
    struct external_reloc *ext_rel;
672 67b915a5 bellard
    uint32_t *n_strtab;
673 67b915a5 bellard
    EXE_SYM *sym;
674 67b915a5 bellard
    EXE_RELOC *rel;
675 67b915a5 bellard
        
676 67b915a5 bellard
    fd = open(filename, O_RDONLY 
677 67b915a5 bellard
#ifdef _WIN32
678 67b915a5 bellard
              | O_BINARY
679 67b915a5 bellard
#endif
680 67b915a5 bellard
              );
681 67b915a5 bellard
    if (fd < 0) 
682 67b915a5 bellard
        error("can't open file '%s'", filename);
683 67b915a5 bellard
    
684 67b915a5 bellard
    /* Read COFF header.  */
685 67b915a5 bellard
    if (read(fd, &fhdr, sizeof (fhdr)) != sizeof (fhdr))
686 67b915a5 bellard
        error("unable to read file header");
687 fe319756 bellard
688 67b915a5 bellard
    /* Check COFF identification.  */
689 67b915a5 bellard
    if (fhdr.f_magic != I386MAGIC) {
690 67b915a5 bellard
        error("bad COFF header");
691 67b915a5 bellard
    }
692 67b915a5 bellard
    do_swap = 0;
693 67b915a5 bellard
694 67b915a5 bellard
    /* read section headers */
695 67b915a5 bellard
    shdr = load_data(fd, sizeof(struct external_filehdr) + fhdr.f_opthdr, fhdr.f_nscns * sizeof(struct external_scnhdr));
696 67b915a5 bellard
        
697 67b915a5 bellard
    /* read all section data */
698 67b915a5 bellard
    sdata = malloc(sizeof(void *) * fhdr.f_nscns);
699 67b915a5 bellard
    memset(sdata, 0, sizeof(void *) * fhdr.f_nscns);
700 67b915a5 bellard
    
701 67b915a5 bellard
    const char *p;
702 67b915a5 bellard
    for(i = 0;i < fhdr.f_nscns; i++) {
703 fe319756 bellard
        sec = &shdr[i];
704 67b915a5 bellard
        if (!strstart(sec->s_name,  ".bss", &p))
705 67b915a5 bellard
            sdata[i] = load_data(fd, sec->s_scnptr, sec->s_size);
706 fe319756 bellard
    }
707 fe319756 bellard
708 367e86e8 bellard
709 67b915a5 bellard
    /* text section */
710 67b915a5 bellard
    text_sec = find_coff_section(shdr, fhdr.f_nscns, ".text");
711 67b915a5 bellard
    if (!text_sec)
712 67b915a5 bellard
        error("could not find .text section");
713 67b915a5 bellard
    coff_text_shndx = text_sec - shdr;
714 67b915a5 bellard
    text = sdata[coff_text_shndx];
715 67b915a5 bellard
716 67b915a5 bellard
    /* data section */
717 67b915a5 bellard
    data_sec = find_coff_section(shdr, fhdr.f_nscns, ".data");
718 67b915a5 bellard
    if (!data_sec)
719 67b915a5 bellard
        error("could not find .data section");
720 67b915a5 bellard
    coff_data_shndx = data_sec - shdr;
721 67b915a5 bellard
    
722 67b915a5 bellard
    coff_symtab = load_data(fd, fhdr.f_symptr, fhdr.f_nsyms*SYMESZ);
723 67b915a5 bellard
    for (i = 0, ext_sym = coff_symtab; i < nb_syms; i++, ext_sym++) {
724 67b915a5 bellard
        for(i=0;i<8;i++)
725 67b915a5 bellard
            printf(" %02x", ((uint8_t *)ext_sym->e.e_name)[i]);
726 67b915a5 bellard
        printf("\n");
727 367e86e8 bellard
    }
728 367e86e8 bellard
729 67b915a5 bellard
730 67b915a5 bellard
    n_strtab = load_data(fd, (fhdr.f_symptr + fhdr.f_nsyms*SYMESZ), STRTAB_SIZE);
731 67b915a5 bellard
    strtab = load_data(fd, (fhdr.f_symptr + fhdr.f_nsyms*SYMESZ), *n_strtab); 
732 67b915a5 bellard
    
733 67b915a5 bellard
    nb_syms = fhdr.f_nsyms;
734 67b915a5 bellard
735 67b915a5 bellard
    for (i = 0, ext_sym = coff_symtab; i < nb_syms; i++, ext_sym++) {
736 67b915a5 bellard
      if (strstart(ext_sym->e.e_name, ".text", NULL))
737 67b915a5 bellard
                  text_shndx = ext_sym->e_scnum;
738 67b915a5 bellard
          if (strstart(ext_sym->e.e_name, ".data", NULL))
739 67b915a5 bellard
                  data_shndx = ext_sym->e_scnum;
740 367e86e8 bellard
    }
741 67b915a5 bellard
742 67b915a5 bellard
        /* set coff symbol */
743 67b915a5 bellard
        symtab = malloc(sizeof(struct coff_sym) * nb_syms);
744 67b915a5 bellard
745 67b915a5 bellard
        int aux_size, j;
746 67b915a5 bellard
        for (i = 0, ext_sym = coff_symtab, sym = symtab; i < nb_syms; i++, ext_sym++, sym++) {
747 67b915a5 bellard
                memset(sym, 0, sizeof(*sym));
748 67b915a5 bellard
                sym->st_syment = ext_sym;
749 67b915a5 bellard
                sym_ent_name(ext_sym, sym);
750 67b915a5 bellard
                sym->st_value = ext_sym->e_value;
751 67b915a5 bellard
752 67b915a5 bellard
                aux_size = *(int8_t *)ext_sym->e_numaux;
753 67b915a5 bellard
                if (ext_sym->e_scnum == text_shndx && ext_sym->e_type == T_FUNCTION) {
754 67b915a5 bellard
                        for (j = aux_size + 1; j < nb_syms - i; j++) {
755 67b915a5 bellard
                                if ((ext_sym + j)->e_scnum == text_shndx &&
756 67b915a5 bellard
                                        (ext_sym + j)->e_type == T_FUNCTION ){
757 67b915a5 bellard
                                        sym->st_size = (ext_sym + j)->e_value - ext_sym->e_value;
758 67b915a5 bellard
                                        break;
759 67b915a5 bellard
                                } else if (j == nb_syms - i - 1) {
760 67b915a5 bellard
                                        sec = &shdr[coff_text_shndx];
761 67b915a5 bellard
                                        sym->st_size = sec->s_size - ext_sym->e_value;
762 67b915a5 bellard
                                        break;
763 67b915a5 bellard
                                }
764 67b915a5 bellard
                        }
765 67b915a5 bellard
                } else if (ext_sym->e_scnum == data_shndx && *(uint8_t *)ext_sym->e_sclass == C_EXTERNAL) {
766 67b915a5 bellard
                        for (j = aux_size + 1; j < nb_syms - i; j++) {
767 67b915a5 bellard
                                if ((ext_sym + j)->e_scnum == data_shndx) {
768 67b915a5 bellard
                                        sym->st_size = (ext_sym + j)->e_value - ext_sym->e_value;
769 67b915a5 bellard
                                        break;
770 67b915a5 bellard
                                } else if (j == nb_syms - i - 1) {
771 67b915a5 bellard
                                        sec = &shdr[coff_data_shndx];
772 67b915a5 bellard
                                        sym->st_size = sec->s_size - ext_sym->e_value;
773 67b915a5 bellard
                                        break;
774 67b915a5 bellard
                                }
775 67b915a5 bellard
                        }
776 67b915a5 bellard
                } else {
777 67b915a5 bellard
                        sym->st_size = 0;
778 67b915a5 bellard
                }
779 67b915a5 bellard
                
780 67b915a5 bellard
                sym->st_type = ext_sym->e_type;
781 67b915a5 bellard
                sym->st_shndx = ext_sym->e_scnum;
782 67b915a5 bellard
        }
783 67b915a5 bellard
784 67b915a5 bellard
                
785 67b915a5 bellard
    /* find text relocations, if any */
786 67b915a5 bellard
    sec = &shdr[coff_text_shndx];
787 67b915a5 bellard
    coff_relocs = load_data(fd, sec->s_relptr, sec->s_nreloc*RELSZ);
788 67b915a5 bellard
    nb_relocs = sec->s_nreloc;
789 67b915a5 bellard
790 67b915a5 bellard
    /* set coff relocation */
791 67b915a5 bellard
    relocs = malloc(sizeof(struct coff_rel) * nb_relocs);
792 67b915a5 bellard
    for (i = 0, ext_rel = coff_relocs, rel = relocs; i < nb_relocs; 
793 67b915a5 bellard
         i++, ext_rel++, rel++) {
794 67b915a5 bellard
        memset(rel, 0, sizeof(*rel));
795 67b915a5 bellard
        rel->r_reloc = ext_rel;
796 67b915a5 bellard
        rel->r_offset = *(uint32_t *)ext_rel->r_vaddr;
797 67b915a5 bellard
        rel->r_type = *(uint16_t *)ext_rel->r_type;
798 67b915a5 bellard
    }
799 67b915a5 bellard
    return 0;
800 367e86e8 bellard
}
801 367e86e8 bellard
802 67b915a5 bellard
#endif /* CONFIG_FORMAT_COFF */
803 67b915a5 bellard
804 82eec0a1 bellard
#ifdef CONFIG_FORMAT_MACH
805 82eec0a1 bellard
806 82eec0a1 bellard
/* File Header */
807 82eec0a1 bellard
struct mach_header         mach_hdr;
808 82eec0a1 bellard
809 82eec0a1 bellard
/* commands */
810 82eec0a1 bellard
struct segment_command         *segment = 0;
811 82eec0a1 bellard
struct dysymtab_command *dysymtabcmd = 0;
812 82eec0a1 bellard
struct symtab_command         *symtabcmd = 0;
813 82eec0a1 bellard
814 82eec0a1 bellard
/* section */
815 82eec0a1 bellard
struct section         *section_hdr;
816 82eec0a1 bellard
struct section *text_sec_hdr;
817 82eec0a1 bellard
uint8_t         **sdata;
818 82eec0a1 bellard
819 82eec0a1 bellard
/* relocs */
820 82eec0a1 bellard
struct relocation_info *relocs;
821 82eec0a1 bellard
        
822 82eec0a1 bellard
/* symbols */
823 82eec0a1 bellard
EXE_SYM                        *symtab;
824 82eec0a1 bellard
struct nlist         *symtab_std;
825 82eec0a1 bellard
char                        *strtab;
826 82eec0a1 bellard
827 82eec0a1 bellard
/* indirect symbols */
828 82eec0a1 bellard
uint32_t         *tocdylib;
829 82eec0a1 bellard
830 82eec0a1 bellard
/* Utility functions */
831 82eec0a1 bellard
832 82eec0a1 bellard
static inline char *find_str_by_index(int index)
833 82eec0a1 bellard
{
834 82eec0a1 bellard
    return strtab+index;
835 82eec0a1 bellard
}
836 82eec0a1 bellard
837 82eec0a1 bellard
/* Used by dyngen common code */
838 82eec0a1 bellard
static char *get_sym_name(EXE_SYM *sym)
839 82eec0a1 bellard
{
840 82eec0a1 bellard
        char *name = find_str_by_index(sym->n_un.n_strx);
841 82eec0a1 bellard
        
842 82eec0a1 bellard
        if ( sym->n_type & N_STAB ) /* Debug symbols are ignored */
843 82eec0a1 bellard
                return "debug";
844 82eec0a1 bellard
                        
845 82eec0a1 bellard
        if(!name)
846 82eec0a1 bellard
                return name;
847 82eec0a1 bellard
        if(name[0]=='_')
848 82eec0a1 bellard
                return name + 1;
849 82eec0a1 bellard
        else
850 82eec0a1 bellard
                return name;
851 82eec0a1 bellard
}
852 82eec0a1 bellard
853 82eec0a1 bellard
/* find a section index given its segname, sectname */
854 82eec0a1 bellard
static int find_mach_sec_index(struct section *section_hdr, int shnum, const char *segname, 
855 82eec0a1 bellard
                                  const char *sectname)
856 82eec0a1 bellard
{
857 82eec0a1 bellard
    int i;
858 82eec0a1 bellard
    struct section *sec = section_hdr;
859 82eec0a1 bellard
860 82eec0a1 bellard
    for(i = 0; i < shnum; i++, sec++) {
861 82eec0a1 bellard
        if (!sec->segname || !sec->sectname)
862 82eec0a1 bellard
            continue;
863 82eec0a1 bellard
        if (!strcmp(sec->sectname, sectname) && !strcmp(sec->segname, segname))
864 82eec0a1 bellard
            return i;
865 82eec0a1 bellard
    }
866 82eec0a1 bellard
    return -1;
867 82eec0a1 bellard
}
868 82eec0a1 bellard
869 82eec0a1 bellard
/* find a section header given its segname, sectname */
870 82eec0a1 bellard
struct section *find_mach_sec_hdr(struct section *section_hdr, int shnum, const char *segname, 
871 82eec0a1 bellard
                                  const char *sectname)
872 82eec0a1 bellard
{
873 82eec0a1 bellard
    int index = find_mach_sec_index(section_hdr, shnum, segname, sectname);
874 82eec0a1 bellard
        if(index == -1)
875 82eec0a1 bellard
                return NULL;
876 82eec0a1 bellard
        return section_hdr+index;
877 82eec0a1 bellard
}
878 82eec0a1 bellard
879 82eec0a1 bellard
880 82eec0a1 bellard
static inline void fetch_next_pair_value(struct relocation_info * rel, unsigned int *value)
881 82eec0a1 bellard
{
882 82eec0a1 bellard
    struct scattered_relocation_info * scarel;
883 82eec0a1 bellard
        
884 82eec0a1 bellard
    if(R_SCATTERED & rel->r_address) {
885 82eec0a1 bellard
        scarel = (struct scattered_relocation_info*)rel;
886 82eec0a1 bellard
        if(scarel->r_type != PPC_RELOC_PAIR)
887 82eec0a1 bellard
            error("fetch_next_pair_value: looking for a pair which was not found (1)");
888 82eec0a1 bellard
        *value = scarel->r_value;
889 82eec0a1 bellard
    } else {
890 82eec0a1 bellard
                if(rel->r_type != PPC_RELOC_PAIR)
891 82eec0a1 bellard
                        error("fetch_next_pair_value: looking for a pair which was not found (2)");
892 82eec0a1 bellard
                *value = rel->r_address;
893 82eec0a1 bellard
        }
894 82eec0a1 bellard
}
895 82eec0a1 bellard
896 82eec0a1 bellard
/* find a sym name given its value, in a section number */
897 82eec0a1 bellard
static const char * find_sym_with_value_and_sec_number( int value, int sectnum, int * offset )
898 82eec0a1 bellard
{
899 82eec0a1 bellard
        int i, ret = -1;
900 82eec0a1 bellard
        
901 82eec0a1 bellard
        for( i = 0 ; i < nb_syms; i++ )
902 82eec0a1 bellard
        {
903 82eec0a1 bellard
            if( !(symtab[i].n_type & N_STAB) && (symtab[i].n_type & N_SECT) &&
904 82eec0a1 bellard
                         (symtab[i].n_sect ==  sectnum) && (symtab[i].st_value <= value) )
905 82eec0a1 bellard
                {
906 82eec0a1 bellard
                        if( (ret<0) || (symtab[i].st_value >= symtab[ret].st_value) )
907 82eec0a1 bellard
                                ret = i;
908 82eec0a1 bellard
                }
909 82eec0a1 bellard
        }
910 82eec0a1 bellard
        if( ret < 0 ) {
911 82eec0a1 bellard
                *offset = 0;
912 82eec0a1 bellard
                return 0;
913 82eec0a1 bellard
        } else {
914 82eec0a1 bellard
                *offset = value - symtab[ret].st_value;
915 82eec0a1 bellard
                return get_sym_name(&symtab[ret]);
916 82eec0a1 bellard
        }
917 82eec0a1 bellard
}
918 82eec0a1 bellard
919 82eec0a1 bellard
/* 
920 82eec0a1 bellard
 *  Find symbol name given a (virtual) address, and a section which is of type 
921 82eec0a1 bellard
 *  S_NON_LAZY_SYMBOL_POINTERS or S_LAZY_SYMBOL_POINTERS or S_SYMBOL_STUBS
922 82eec0a1 bellard
 */
923 82eec0a1 bellard
static const char * find_reloc_name_in_sec_ptr(int address, struct section * sec_hdr)
924 82eec0a1 bellard
{
925 82eec0a1 bellard
    unsigned int tocindex, symindex, size;
926 82eec0a1 bellard
    const char *name = 0;
927 82eec0a1 bellard
    
928 82eec0a1 bellard
    /* Sanity check */
929 82eec0a1 bellard
    if(!( address >= sec_hdr->addr && address < (sec_hdr->addr + sec_hdr->size) ) )
930 82eec0a1 bellard
        return (char*)0;
931 82eec0a1 bellard
                
932 82eec0a1 bellard
        if( sec_hdr->flags & S_SYMBOL_STUBS ){
933 82eec0a1 bellard
                size = sec_hdr->reserved2;
934 82eec0a1 bellard
                if(size == 0)
935 82eec0a1 bellard
                    error("size = 0");
936 82eec0a1 bellard
                
937 82eec0a1 bellard
        }
938 82eec0a1 bellard
        else if( sec_hdr->flags & S_LAZY_SYMBOL_POINTERS ||
939 82eec0a1 bellard
                    sec_hdr->flags & S_NON_LAZY_SYMBOL_POINTERS)
940 82eec0a1 bellard
                size = sizeof(unsigned long);
941 82eec0a1 bellard
        else
942 82eec0a1 bellard
                return 0;
943 82eec0a1 bellard
                
944 82eec0a1 bellard
    /* Compute our index in toc */
945 82eec0a1 bellard
        tocindex = (address - sec_hdr->addr)/size;
946 82eec0a1 bellard
        symindex = tocdylib[sec_hdr->reserved1 + tocindex];
947 82eec0a1 bellard
        
948 82eec0a1 bellard
        name = get_sym_name(&symtab[symindex]);
949 82eec0a1 bellard
950 82eec0a1 bellard
    return name;
951 82eec0a1 bellard
}
952 82eec0a1 bellard
953 82eec0a1 bellard
static const char * find_reloc_name_given_its_address(int address)
954 82eec0a1 bellard
{
955 82eec0a1 bellard
    unsigned int i;
956 82eec0a1 bellard
    for(i = 0; i < segment->nsects ; i++)
957 82eec0a1 bellard
    {
958 82eec0a1 bellard
        const char * name = find_reloc_name_in_sec_ptr(address, &section_hdr[i]);
959 82eec0a1 bellard
        if((long)name != -1)
960 82eec0a1 bellard
            return name;
961 82eec0a1 bellard
    }
962 82eec0a1 bellard
    return 0;
963 82eec0a1 bellard
}
964 82eec0a1 bellard
965 82eec0a1 bellard
static const char * get_reloc_name(EXE_RELOC * rel, int * sslide)
966 82eec0a1 bellard
{
967 82eec0a1 bellard
        char * name = 0;
968 82eec0a1 bellard
        struct scattered_relocation_info * sca_rel = (struct scattered_relocation_info*)rel;
969 82eec0a1 bellard
        int sectnum = rel->r_symbolnum;
970 82eec0a1 bellard
        int sectoffset;
971 82eec0a1 bellard
        int other_half=0;
972 82eec0a1 bellard
        
973 82eec0a1 bellard
        /* init the slide value */
974 82eec0a1 bellard
        *sslide = 0;
975 82eec0a1 bellard
        
976 82eec0a1 bellard
        if(R_SCATTERED & rel->r_address)
977 82eec0a1 bellard
                return (char *)find_reloc_name_given_its_address(sca_rel->r_value);
978 82eec0a1 bellard
979 82eec0a1 bellard
        if(rel->r_extern)
980 82eec0a1 bellard
        {
981 82eec0a1 bellard
                /* ignore debug sym */
982 82eec0a1 bellard
                if ( symtab[rel->r_symbolnum].n_type & N_STAB ) 
983 82eec0a1 bellard
                        return 0;
984 82eec0a1 bellard
                return get_sym_name(&symtab[rel->r_symbolnum]);
985 82eec0a1 bellard
        }
986 82eec0a1 bellard
987 82eec0a1 bellard
        /* Intruction contains an offset to the symbols pointed to, in the rel->r_symbolnum section */
988 82eec0a1 bellard
        sectoffset = *(uint32_t *)(text + rel->r_address) & 0xffff;
989 82eec0a1 bellard
                        
990 82eec0a1 bellard
        if(sectnum==0xffffff)
991 82eec0a1 bellard
                return 0;
992 82eec0a1 bellard
993 82eec0a1 bellard
        /* Sanity Check */
994 82eec0a1 bellard
        if(sectnum > segment->nsects)
995 82eec0a1 bellard
                error("sectnum > segment->nsects");
996 82eec0a1 bellard
997 82eec0a1 bellard
        switch(rel->r_type)
998 82eec0a1 bellard
        {
999 82eec0a1 bellard
                case PPC_RELOC_LO16: fetch_next_pair_value(rel+1, &other_half); sectoffset = (sectoffset & 0xffff);
1000 82eec0a1 bellard
                        break;
1001 82eec0a1 bellard
                case PPC_RELOC_HI16: fetch_next_pair_value(rel+1, &other_half); sectoffset = (other_half & 0xffff);
1002 82eec0a1 bellard
                        break;
1003 82eec0a1 bellard
                case PPC_RELOC_HA16: fetch_next_pair_value(rel+1, &other_half); sectoffset = (other_half & 0xffff);
1004 82eec0a1 bellard
                        break;
1005 82eec0a1 bellard
                case PPC_RELOC_BR24:
1006 82eec0a1 bellard
                        sectoffset = ( *(uint32_t *)(text + rel->r_address) & 0x03fffffc );
1007 82eec0a1 bellard
                        if (sectoffset & 0x02000000) sectoffset |= 0xfc000000;
1008 82eec0a1 bellard
                        break;
1009 82eec0a1 bellard
                default:
1010 82eec0a1 bellard
                        error("switch(rel->type) not found");
1011 82eec0a1 bellard
        }
1012 82eec0a1 bellard
1013 82eec0a1 bellard
        if(rel->r_pcrel)
1014 82eec0a1 bellard
                sectoffset += rel->r_address;
1015 82eec0a1 bellard
                        
1016 82eec0a1 bellard
        if (rel->r_type == PPC_RELOC_BR24)
1017 82eec0a1 bellard
                name = (char *)find_reloc_name_in_sec_ptr((int)sectoffset, &section_hdr[sectnum-1]);
1018 82eec0a1 bellard
1019 82eec0a1 bellard
        /* search it in the full symbol list, if not found */
1020 82eec0a1 bellard
        if(!name)
1021 82eec0a1 bellard
                name = (char *)find_sym_with_value_and_sec_number(sectoffset, sectnum, sslide);
1022 82eec0a1 bellard
        
1023 82eec0a1 bellard
        return name;
1024 82eec0a1 bellard
}
1025 82eec0a1 bellard
1026 82eec0a1 bellard
/* Used by dyngen common code */
1027 82eec0a1 bellard
static const char * get_rel_sym_name(EXE_RELOC * rel)
1028 82eec0a1 bellard
{
1029 82eec0a1 bellard
        int sslide;
1030 82eec0a1 bellard
        return get_reloc_name( rel, &sslide);
1031 82eec0a1 bellard
}
1032 82eec0a1 bellard
1033 82eec0a1 bellard
/* Used by dyngen common code */
1034 82eec0a1 bellard
static host_ulong get_rel_offset(EXE_RELOC *rel)
1035 82eec0a1 bellard
{
1036 82eec0a1 bellard
        struct scattered_relocation_info * sca_rel = (struct scattered_relocation_info*)rel;
1037 82eec0a1 bellard
    if(R_SCATTERED & rel->r_address)
1038 82eec0a1 bellard
                return sca_rel->r_address;
1039 82eec0a1 bellard
        else
1040 82eec0a1 bellard
                return rel->r_address;
1041 82eec0a1 bellard
}
1042 82eec0a1 bellard
1043 82eec0a1 bellard
/* load a mach-o object file */
1044 82eec0a1 bellard
int load_object(const char *filename)
1045 82eec0a1 bellard
{
1046 82eec0a1 bellard
        int fd;
1047 82eec0a1 bellard
        unsigned int offset_to_segment = 0;
1048 82eec0a1 bellard
    unsigned int offset_to_dysymtab = 0;
1049 82eec0a1 bellard
    unsigned int offset_to_symtab = 0;
1050 82eec0a1 bellard
    struct load_command lc;
1051 82eec0a1 bellard
    unsigned int i, j;
1052 82eec0a1 bellard
        EXE_SYM *sym;
1053 82eec0a1 bellard
        struct nlist *syment;
1054 82eec0a1 bellard
    
1055 82eec0a1 bellard
        fd = open(filename, O_RDONLY);
1056 82eec0a1 bellard
    if (fd < 0) 
1057 82eec0a1 bellard
        error("can't open file '%s'", filename);
1058 82eec0a1 bellard
                
1059 82eec0a1 bellard
    /* Read Mach header.  */
1060 82eec0a1 bellard
    if (read(fd, &mach_hdr, sizeof (mach_hdr)) != sizeof (mach_hdr))
1061 82eec0a1 bellard
        error("unable to read file header");
1062 82eec0a1 bellard
1063 82eec0a1 bellard
    /* Check Mach identification.  */
1064 82eec0a1 bellard
    if (!check_mach_header(mach_hdr)) {
1065 82eec0a1 bellard
        error("bad Mach header");
1066 82eec0a1 bellard
    }
1067 82eec0a1 bellard
    
1068 82eec0a1 bellard
    if (mach_hdr.cputype != CPU_TYPE_POWERPC)
1069 82eec0a1 bellard
        error("Unsupported CPU");
1070 82eec0a1 bellard
        
1071 82eec0a1 bellard
    if (mach_hdr.filetype != MH_OBJECT)
1072 82eec0a1 bellard
        error("Unsupported Mach Object");
1073 82eec0a1 bellard
    
1074 82eec0a1 bellard
    /* read segment headers */
1075 82eec0a1 bellard
    for(i=0, j=sizeof(mach_hdr); i<mach_hdr.ncmds ; i++)
1076 82eec0a1 bellard
    {
1077 82eec0a1 bellard
        if(read(fd, &lc, sizeof(struct load_command)) != sizeof(struct load_command))
1078 82eec0a1 bellard
            error("unable to read load_command");
1079 82eec0a1 bellard
        if(lc.cmd == LC_SEGMENT)
1080 82eec0a1 bellard
        {
1081 82eec0a1 bellard
            offset_to_segment = j;
1082 82eec0a1 bellard
            lseek(fd, offset_to_segment, SEEK_SET);
1083 82eec0a1 bellard
            segment = malloc(sizeof(struct segment_command));
1084 82eec0a1 bellard
            if(read(fd, segment, sizeof(struct segment_command)) != sizeof(struct segment_command))
1085 82eec0a1 bellard
                error("unable to read LC_SEGMENT");
1086 82eec0a1 bellard
        }
1087 82eec0a1 bellard
        if(lc.cmd == LC_DYSYMTAB)
1088 82eec0a1 bellard
        {
1089 82eec0a1 bellard
            offset_to_dysymtab = j;
1090 82eec0a1 bellard
            lseek(fd, offset_to_dysymtab, SEEK_SET);
1091 82eec0a1 bellard
            dysymtabcmd = malloc(sizeof(struct dysymtab_command));
1092 82eec0a1 bellard
            if(read(fd, dysymtabcmd, sizeof(struct dysymtab_command)) != sizeof(struct dysymtab_command))
1093 82eec0a1 bellard
                error("unable to read LC_DYSYMTAB");
1094 82eec0a1 bellard
        }
1095 82eec0a1 bellard
        if(lc.cmd == LC_SYMTAB)
1096 82eec0a1 bellard
        {
1097 82eec0a1 bellard
            offset_to_symtab = j;
1098 82eec0a1 bellard
            lseek(fd, offset_to_symtab, SEEK_SET);
1099 82eec0a1 bellard
            symtabcmd = malloc(sizeof(struct symtab_command));
1100 82eec0a1 bellard
            if(read(fd, symtabcmd, sizeof(struct symtab_command)) != sizeof(struct symtab_command))
1101 82eec0a1 bellard
                error("unable to read LC_SYMTAB");
1102 82eec0a1 bellard
        }
1103 82eec0a1 bellard
        j+=lc.cmdsize;
1104 82eec0a1 bellard
1105 82eec0a1 bellard
        lseek(fd, j, SEEK_SET);
1106 82eec0a1 bellard
    }
1107 82eec0a1 bellard
1108 82eec0a1 bellard
    if(!segment)
1109 82eec0a1 bellard
        error("unable to find LC_SEGMENT");
1110 82eec0a1 bellard
1111 82eec0a1 bellard
    /* read section headers */
1112 82eec0a1 bellard
    section_hdr = load_data(fd, offset_to_segment + sizeof(struct segment_command), segment->nsects * sizeof(struct section));
1113 82eec0a1 bellard
1114 82eec0a1 bellard
    /* read all section data */
1115 82eec0a1 bellard
    sdata = (uint8_t **)malloc(sizeof(void *) * segment->nsects);
1116 82eec0a1 bellard
    memset(sdata, 0, sizeof(void *) * segment->nsects);
1117 82eec0a1 bellard
    
1118 82eec0a1 bellard
        /* Load the data in section data */
1119 82eec0a1 bellard
        for(i = 0; i < segment->nsects; i++) {
1120 82eec0a1 bellard
        sdata[i] = load_data(fd, section_hdr[i].offset, section_hdr[i].size);
1121 82eec0a1 bellard
    }
1122 82eec0a1 bellard
        
1123 82eec0a1 bellard
    /* text section */
1124 82eec0a1 bellard
        text_sec_hdr = find_mach_sec_hdr(section_hdr, segment->nsects, SEG_TEXT, SECT_TEXT);
1125 82eec0a1 bellard
        i = find_mach_sec_index(section_hdr, segment->nsects, SEG_TEXT, SECT_TEXT);
1126 82eec0a1 bellard
        if (i == -1 || !text_sec_hdr)
1127 82eec0a1 bellard
        error("could not find __TEXT,__text section");
1128 82eec0a1 bellard
    text = sdata[i];
1129 82eec0a1 bellard
        
1130 82eec0a1 bellard
    /* Make sure dysym was loaded */
1131 82eec0a1 bellard
    if(!(int)dysymtabcmd)
1132 82eec0a1 bellard
        error("could not find __DYSYMTAB segment");
1133 82eec0a1 bellard
    
1134 82eec0a1 bellard
    /* read the table of content of the indirect sym */
1135 82eec0a1 bellard
    tocdylib = load_data( fd, dysymtabcmd->indirectsymoff, dysymtabcmd->nindirectsyms * sizeof(uint32_t) );
1136 82eec0a1 bellard
    
1137 82eec0a1 bellard
    /* Make sure symtab was loaded  */
1138 82eec0a1 bellard
    if(!(int)symtabcmd)
1139 82eec0a1 bellard
        error("could not find __SYMTAB segment");
1140 82eec0a1 bellard
    nb_syms = symtabcmd->nsyms;
1141 82eec0a1 bellard
1142 82eec0a1 bellard
    symtab_std = load_data(fd, symtabcmd->symoff, symtabcmd->nsyms * sizeof(struct nlist));
1143 82eec0a1 bellard
    strtab = load_data(fd, symtabcmd->stroff, symtabcmd->strsize);
1144 82eec0a1 bellard
        
1145 82eec0a1 bellard
        symtab = malloc(sizeof(EXE_SYM) * nb_syms);
1146 82eec0a1 bellard
        
1147 82eec0a1 bellard
        /* Now transform the symtab, to an extended version, with the sym size, and the C name */
1148 82eec0a1 bellard
        for(i = 0, sym = symtab, syment = symtab_std; i < nb_syms; i++, sym++, syment++) {
1149 82eec0a1 bellard
        const char *name;
1150 82eec0a1 bellard
        struct nlist *sym_follow, *sym_next = 0;
1151 82eec0a1 bellard
        unsigned int j;
1152 82eec0a1 bellard
        name = find_str_by_index(sym->n_un.n_strx);
1153 82eec0a1 bellard
                memset(sym, 0, sizeof(*sym));
1154 82eec0a1 bellard
                
1155 82eec0a1 bellard
                if ( sym->n_type & N_STAB ) /* Debug symbols are skipped */
1156 82eec0a1 bellard
            continue;
1157 82eec0a1 bellard
                        
1158 82eec0a1 bellard
                memcpy(sym, syment, sizeof(*syment));
1159 82eec0a1 bellard
                        
1160 82eec0a1 bellard
                /* Find the following symbol in order to get the current symbol size */
1161 82eec0a1 bellard
        for(j = 0, sym_follow = symtab_std; j < nb_syms; j++, sym_follow++) {
1162 82eec0a1 bellard
            if ( sym_follow->n_sect != 1 || sym_follow->n_type & N_STAB || !(sym_follow->n_value > sym->st_value))
1163 82eec0a1 bellard
                continue;
1164 82eec0a1 bellard
            if(!sym_next) {
1165 82eec0a1 bellard
                sym_next = sym_follow;
1166 82eec0a1 bellard
                continue;
1167 82eec0a1 bellard
            }
1168 82eec0a1 bellard
            if(!(sym_next->n_value > sym_follow->n_value))
1169 82eec0a1 bellard
                continue;
1170 82eec0a1 bellard
            sym_next = sym_follow;
1171 82eec0a1 bellard
        }
1172 82eec0a1 bellard
                if(sym_next)
1173 82eec0a1 bellard
            sym->st_size = sym_next->n_value - sym->st_value;
1174 82eec0a1 bellard
                else
1175 82eec0a1 bellard
            sym->st_size = text_sec_hdr->size - sym->st_value;
1176 82eec0a1 bellard
        }
1177 82eec0a1 bellard
        
1178 82eec0a1 bellard
    /* Find Reloc */
1179 82eec0a1 bellard
    relocs = load_data(fd, text_sec_hdr->reloff, text_sec_hdr->nreloc * sizeof(struct relocation_info));
1180 82eec0a1 bellard
    nb_relocs = text_sec_hdr->nreloc;
1181 82eec0a1 bellard
1182 82eec0a1 bellard
        close(fd);
1183 82eec0a1 bellard
        return 0;
1184 82eec0a1 bellard
}
1185 82eec0a1 bellard
1186 82eec0a1 bellard
#endif /* CONFIG_FORMAT_MACH */
1187 82eec0a1 bellard
1188 ff1f20a3 bellard
#ifdef HOST_ARM
1189 ff1f20a3 bellard
1190 ff1f20a3 bellard
int arm_emit_ldr_info(const char *name, unsigned long start_offset,
1191 ff1f20a3 bellard
                      FILE *outfile, uint8_t *p_start, uint8_t *p_end,
1192 ff1f20a3 bellard
                      ELF_RELOC *relocs, int nb_relocs)
1193 ff1f20a3 bellard
{
1194 ff1f20a3 bellard
    uint8_t *p;
1195 ff1f20a3 bellard
    uint32_t insn;
1196 ff1f20a3 bellard
    int offset, min_offset, pc_offset, data_size;
1197 ff1f20a3 bellard
    uint8_t data_allocated[1024];
1198 ff1f20a3 bellard
    unsigned int data_index;
1199 ff1f20a3 bellard
    
1200 ff1f20a3 bellard
    memset(data_allocated, 0, sizeof(data_allocated));
1201 ff1f20a3 bellard
    
1202 ff1f20a3 bellard
    p = p_start;
1203 ff1f20a3 bellard
    min_offset = p_end - p_start;
1204 ff1f20a3 bellard
    while (p < p_start + min_offset) {
1205 ff1f20a3 bellard
        insn = get32((uint32_t *)p);
1206 ff1f20a3 bellard
        if ((insn & 0x0d5f0000) == 0x051f0000) {
1207 ff1f20a3 bellard
            /* ldr reg, [pc, #im] */
1208 ff1f20a3 bellard
            offset = insn & 0xfff;
1209 ff1f20a3 bellard
            if (!(insn & 0x00800000))
1210 ff1f20a3 bellard
                        offset = -offset;
1211 ff1f20a3 bellard
            if ((offset & 3) !=0)
1212 ff1f20a3 bellard
                error("%s:%04x: ldr pc offset must be 32 bit aligned", 
1213 ff1f20a3 bellard
                      name, start_offset + p - p_start);
1214 ff1f20a3 bellard
            pc_offset = p - p_start + offset + 8;
1215 ff1f20a3 bellard
            if (pc_offset <= (p - p_start) || 
1216 ff1f20a3 bellard
                pc_offset >= (p_end - p_start))
1217 ff1f20a3 bellard
                error("%s:%04x: ldr pc offset must point inside the function code", 
1218 ff1f20a3 bellard
                      name, start_offset + p - p_start);
1219 ff1f20a3 bellard
            if (pc_offset < min_offset)
1220 ff1f20a3 bellard
                min_offset = pc_offset;
1221 ff1f20a3 bellard
            if (outfile) {
1222 ff1f20a3 bellard
                /* ldr position */
1223 ff1f20a3 bellard
                fprintf(outfile, "    arm_ldr_ptr->ptr = gen_code_ptr + %d;\n", 
1224 ff1f20a3 bellard
                        p - p_start);
1225 ff1f20a3 bellard
                /* ldr data index */
1226 ff1f20a3 bellard
                data_index = ((p_end - p_start) - pc_offset - 4) >> 2;
1227 ff1f20a3 bellard
                fprintf(outfile, "    arm_ldr_ptr->data_ptr = arm_data_ptr + %d;\n", 
1228 ff1f20a3 bellard
                        data_index);
1229 ff1f20a3 bellard
                fprintf(outfile, "    arm_ldr_ptr++;\n");
1230 ff1f20a3 bellard
                if (data_index >= sizeof(data_allocated))
1231 ff1f20a3 bellard
                    error("%s: too many data", name);
1232 ff1f20a3 bellard
                if (!data_allocated[data_index]) {
1233 ff1f20a3 bellard
                    ELF_RELOC *rel;
1234 ff1f20a3 bellard
                    int i, addend, type;
1235 ff1f20a3 bellard
                    const char *sym_name, *p;
1236 ff1f20a3 bellard
                    char relname[1024];
1237 ff1f20a3 bellard
1238 ff1f20a3 bellard
                    data_allocated[data_index] = 1;
1239 ff1f20a3 bellard
1240 ff1f20a3 bellard
                    /* data value */
1241 ff1f20a3 bellard
                    addend = get32((uint32_t *)(p_start + pc_offset));
1242 ff1f20a3 bellard
                    relname[0] = '\0';
1243 ff1f20a3 bellard
                    for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1244 ff1f20a3 bellard
                        if (rel->r_offset == (pc_offset + start_offset)) {
1245 67b915a5 bellard
                            sym_name = get_rel_sym_name(rel);
1246 ff1f20a3 bellard
                            /* the compiler leave some unnecessary references to the code */
1247 ff1f20a3 bellard
                            if (strstart(sym_name, "__op_param", &p)) {
1248 ff1f20a3 bellard
                                snprintf(relname, sizeof(relname), "param%s", p);
1249 ff1f20a3 bellard
                            } else {
1250 ff1f20a3 bellard
                                snprintf(relname, sizeof(relname), "(long)(&%s)", sym_name);
1251 ff1f20a3 bellard
                            }
1252 ff1f20a3 bellard
                            type = ELF32_R_TYPE(rel->r_info);
1253 ff1f20a3 bellard
                            if (type != R_ARM_ABS32)
1254 ff1f20a3 bellard
                                error("%s: unsupported data relocation", name);
1255 ff1f20a3 bellard
                            break;
1256 ff1f20a3 bellard
                        }
1257 ff1f20a3 bellard
                    }
1258 ff1f20a3 bellard
                    fprintf(outfile, "    arm_data_ptr[%d] = 0x%x",
1259 ff1f20a3 bellard
                            data_index, addend);
1260 ff1f20a3 bellard
                    if (relname[0] != '\0')
1261 ff1f20a3 bellard
                        fprintf(outfile, " + %s", relname);
1262 ff1f20a3 bellard
                    fprintf(outfile, ";\n");
1263 ff1f20a3 bellard
                }
1264 ff1f20a3 bellard
            }
1265 ff1f20a3 bellard
        }
1266 ff1f20a3 bellard
        p += 4;
1267 ff1f20a3 bellard
    }
1268 ff1f20a3 bellard
    data_size = (p_end - p_start) - min_offset;
1269 ff1f20a3 bellard
    if (data_size > 0 && outfile) {
1270 ff1f20a3 bellard
        fprintf(outfile, "    arm_data_ptr += %d;\n", data_size >> 2);
1271 ff1f20a3 bellard
    }
1272 ff1f20a3 bellard
1273 ff1f20a3 bellard
    /* the last instruction must be a mov pc, lr */
1274 ff1f20a3 bellard
    if (p == p_start)
1275 ff1f20a3 bellard
        goto arm_ret_error;
1276 ff1f20a3 bellard
    p -= 4;
1277 ff1f20a3 bellard
    insn = get32((uint32_t *)p);
1278 ff1f20a3 bellard
    if ((insn & 0xffff0000) != 0xe91b0000) {
1279 ff1f20a3 bellard
    arm_ret_error:
1280 ff1f20a3 bellard
        if (!outfile)
1281 ff1f20a3 bellard
            printf("%s: invalid epilog\n", name);
1282 ff1f20a3 bellard
    }
1283 ff1f20a3 bellard
    return p - p_start;            
1284 ff1f20a3 bellard
}
1285 ff1f20a3 bellard
#endif
1286 ff1f20a3 bellard
1287 ff1f20a3 bellard
1288 367e86e8 bellard
#define MAX_ARGS 3
1289 367e86e8 bellard
1290 367e86e8 bellard
/* generate op code */
1291 ce11fedc bellard
void gen_code(const char *name, host_ulong offset, host_ulong size, 
1292 67b915a5 bellard
              FILE *outfile, int gen_switch)
1293 367e86e8 bellard
{
1294 367e86e8 bellard
    int copy_size = 0;
1295 367e86e8 bellard
    uint8_t *p_start, *p_end;
1296 ae228531 bellard
    host_ulong start_offset;
1297 ce11fedc bellard
    int nb_args, i, n;
1298 367e86e8 bellard
    uint8_t args_present[MAX_ARGS];
1299 367e86e8 bellard
    const char *sym_name, *p;
1300 67b915a5 bellard
    EXE_RELOC *rel;
1301 367e86e8 bellard
1302 ae228531 bellard
    /* Compute exact size excluding prologue and epilogue instructions.
1303 ae228531 bellard
     * Increment start_offset to skip epilogue instructions, then compute
1304 ae228531 bellard
     * copy_size the indicate the size of the remaining instructions (in
1305 ae228531 bellard
     * bytes).
1306 ae228531 bellard
     */
1307 367e86e8 bellard
    p_start = text + offset;
1308 367e86e8 bellard
    p_end = p_start + size;
1309 ae228531 bellard
    start_offset = offset;
1310 c4687878 bellard
#if defined(HOST_I386) || defined(HOST_X86_64)
1311 67b915a5 bellard
#ifdef CONFIG_FORMAT_COFF
1312 67b915a5 bellard
    {
1313 67b915a5 bellard
        uint8_t *p;
1314 67b915a5 bellard
        p = p_end - 1;
1315 67b915a5 bellard
        if (p == p_start)
1316 67b915a5 bellard
            error("empty code for %s", name);
1317 67b915a5 bellard
        while (*p != 0xc3) {
1318 67b915a5 bellard
            p--;
1319 67b915a5 bellard
            if (p <= p_start)
1320 d4e8164f bellard
                error("ret or jmp expected at the end of %s", name);
1321 367e86e8 bellard
        }
1322 67b915a5 bellard
        copy_size = p - p_start;
1323 67b915a5 bellard
    }
1324 67b915a5 bellard
#else
1325 67b915a5 bellard
    {
1326 67b915a5 bellard
        int len;
1327 67b915a5 bellard
        len = p_end - p_start;
1328 67b915a5 bellard
        if (len == 0)
1329 67b915a5 bellard
            error("empty code for %s", name);
1330 67b915a5 bellard
        if (p_end[-1] == 0xc3) {
1331 67b915a5 bellard
            len--;
1332 67b915a5 bellard
        } else {
1333 67b915a5 bellard
            error("ret or jmp expected at the end of %s", name);
1334 367e86e8 bellard
        }
1335 67b915a5 bellard
        copy_size = len;
1336 67b915a5 bellard
    }
1337 67b915a5 bellard
#endif    
1338 67b915a5 bellard
#elif defined(HOST_PPC)
1339 67b915a5 bellard
    {
1340 67b915a5 bellard
        uint8_t *p;
1341 67b915a5 bellard
        p = (void *)(p_end - 4);
1342 67b915a5 bellard
        if (p == p_start)
1343 67b915a5 bellard
            error("empty code for %s", name);
1344 67b915a5 bellard
        if (get32((uint32_t *)p) != 0x4e800020)
1345 67b915a5 bellard
            error("blr expected at the end of %s", name);
1346 67b915a5 bellard
        copy_size = p - p_start;
1347 67b915a5 bellard
    }
1348 67b915a5 bellard
#elif defined(HOST_S390)
1349 67b915a5 bellard
    {
1350 67b915a5 bellard
        uint8_t *p;
1351 67b915a5 bellard
        p = (void *)(p_end - 2);
1352 67b915a5 bellard
        if (p == p_start)
1353 67b915a5 bellard
            error("empty code for %s", name);
1354 67b915a5 bellard
        if (get16((uint16_t *)p) != 0x07fe && get16((uint16_t *)p) != 0x07f4)
1355 67b915a5 bellard
            error("br %%r14 expected at the end of %s", name);
1356 67b915a5 bellard
        copy_size = p - p_start;
1357 67b915a5 bellard
    }
1358 67b915a5 bellard
#elif defined(HOST_ALPHA)
1359 67b915a5 bellard
    {
1360 67b915a5 bellard
        uint8_t *p;
1361 67b915a5 bellard
        p = p_end - 4;
1362 630be16f bellard
#if 0
1363 67b915a5 bellard
        /* XXX: check why it occurs */
1364 67b915a5 bellard
        if (p == p_start)
1365 67b915a5 bellard
            error("empty code for %s", name);
1366 630be16f bellard
#endif
1367 67b915a5 bellard
        if (get32((uint32_t *)p) != 0x6bfa8001)
1368 67b915a5 bellard
            error("ret expected at the end of %s", name);
1369 67b915a5 bellard
        copy_size = p - p_start;            
1370 67b915a5 bellard
    }
1371 67b915a5 bellard
#elif defined(HOST_IA64)
1372 67b915a5 bellard
    {
1373 67b915a5 bellard
        uint8_t *p;
1374 67b915a5 bellard
        p = (void *)(p_end - 4);
1375 67b915a5 bellard
        if (p == p_start)
1376 67b915a5 bellard
            error("empty code for %s", name);
1377 67b915a5 bellard
        /* br.ret.sptk.many b0;; */
1378 67b915a5 bellard
        /* 08 00 84 00 */
1379 67b915a5 bellard
        if (get32((uint32_t *)p) != 0x00840008)
1380 67b915a5 bellard
            error("br.ret.sptk.many b0;; expected at the end of %s", name);
1381 67b915a5 bellard
        copy_size = p - p_start;
1382 67b915a5 bellard
    }
1383 67b915a5 bellard
#elif defined(HOST_SPARC)
1384 67b915a5 bellard
    {
1385 67b915a5 bellard
        uint32_t start_insn, end_insn1, end_insn2;
1386 67b915a5 bellard
        uint8_t *p;
1387 67b915a5 bellard
        p = (void *)(p_end - 8);
1388 67b915a5 bellard
        if (p <= p_start)
1389 67b915a5 bellard
            error("empty code for %s", name);
1390 67b915a5 bellard
        start_insn = get32((uint32_t *)(p_start + 0x0));
1391 67b915a5 bellard
        end_insn1 = get32((uint32_t *)(p + 0x0));
1392 67b915a5 bellard
        end_insn2 = get32((uint32_t *)(p + 0x4));
1393 67b915a5 bellard
        if ((start_insn & ~0x1fff) == 0x9de3a000) {
1394 67b915a5 bellard
            p_start += 0x4;
1395 67b915a5 bellard
            start_offset += 0x4;
1396 67b915a5 bellard
            if ((int)(start_insn | ~0x1fff) < -128)
1397 67b915a5 bellard
                error("Found bogus save at the start of %s", name);
1398 67b915a5 bellard
            if (end_insn1 != 0x81c7e008 || end_insn2 != 0x81e80000)
1399 67b915a5 bellard
                error("ret; restore; not found at end of %s", name);
1400 67b915a5 bellard
        } else {
1401 67b915a5 bellard
            error("No save at the beginning of %s", name);
1402 67b915a5 bellard
        }
1403 ff1f20a3 bellard
#if 0
1404 67b915a5 bellard
        /* Skip a preceeding nop, if present.  */
1405 67b915a5 bellard
        if (p > p_start) {
1406 67b915a5 bellard
            skip_insn = get32((uint32_t *)(p - 0x4));
1407 67b915a5 bellard
            if (skip_insn == 0x01000000)
1408 67b915a5 bellard
                p -= 4;
1409 67b915a5 bellard
        }
1410 ff1f20a3 bellard
#endif
1411 67b915a5 bellard
        copy_size = p - p_start;
1412 67b915a5 bellard
    }
1413 67b915a5 bellard
#elif defined(HOST_SPARC64)
1414 67b915a5 bellard
    {
1415 67b915a5 bellard
        uint32_t start_insn, end_insn1, end_insn2, skip_insn;
1416 67b915a5 bellard
        uint8_t *p;
1417 67b915a5 bellard
        p = (void *)(p_end - 8);
1418 67b915a5 bellard
        if (p <= p_start)
1419 67b915a5 bellard
            error("empty code for %s", name);
1420 67b915a5 bellard
        start_insn = get32((uint32_t *)(p_start + 0x0));
1421 67b915a5 bellard
        end_insn1 = get32((uint32_t *)(p + 0x0));
1422 67b915a5 bellard
        end_insn2 = get32((uint32_t *)(p + 0x4));
1423 67b915a5 bellard
        if ((start_insn & ~0x1fff) == 0x9de3a000) {
1424 67b915a5 bellard
            p_start += 0x4;
1425 67b915a5 bellard
            start_offset += 0x4;
1426 67b915a5 bellard
            if ((int)(start_insn | ~0x1fff) < -256)
1427 67b915a5 bellard
                error("Found bogus save at the start of %s", name);
1428 67b915a5 bellard
            if (end_insn1 != 0x81c7e008 || end_insn2 != 0x81e80000)
1429 67b915a5 bellard
                error("ret; restore; not found at end of %s", name);
1430 67b915a5 bellard
        } else {
1431 67b915a5 bellard
            error("No save at the beginning of %s", name);
1432 67b915a5 bellard
        }
1433 67b915a5 bellard
        
1434 67b915a5 bellard
        /* Skip a preceeding nop, if present.  */
1435 67b915a5 bellard
        if (p > p_start) {
1436 67b915a5 bellard
            skip_insn = get32((uint32_t *)(p - 0x4));
1437 67b915a5 bellard
            if (skip_insn == 0x01000000)
1438 67b915a5 bellard
                p -= 4;
1439 67b915a5 bellard
        }
1440 67b915a5 bellard
        
1441 67b915a5 bellard
        copy_size = p - p_start;
1442 67b915a5 bellard
    }
1443 67b915a5 bellard
#elif defined(HOST_ARM)
1444 67b915a5 bellard
    {
1445 ff1f20a3 bellard
        if ((p_end - p_start) <= 16)
1446 ff1f20a3 bellard
            error("%s: function too small", name);
1447 ff1f20a3 bellard
        if (get32((uint32_t *)p_start) != 0xe1a0c00d ||
1448 ff1f20a3 bellard
            (get32((uint32_t *)(p_start + 4)) & 0xffff0000) != 0xe92d0000 ||
1449 ff1f20a3 bellard
            get32((uint32_t *)(p_start + 8)) != 0xe24cb004)
1450 ff1f20a3 bellard
            error("%s: invalid prolog", name);
1451 ff1f20a3 bellard
        p_start += 12;
1452 ff1f20a3 bellard
        start_offset += 12;
1453 ff1f20a3 bellard
        copy_size = arm_emit_ldr_info(name, start_offset, NULL, p_start, p_end, 
1454 ff1f20a3 bellard
                                      relocs, nb_relocs);
1455 367e86e8 bellard
    }
1456 67b915a5 bellard
#elif defined(HOST_M68K)
1457 67b915a5 bellard
    {
1458 67b915a5 bellard
        uint8_t *p;
1459 67b915a5 bellard
        p = (void *)(p_end - 2);
1460 67b915a5 bellard
        if (p == p_start)
1461 67b915a5 bellard
            error("empty code for %s", name);
1462 67b915a5 bellard
        // remove NOP's, probably added for alignment
1463 67b915a5 bellard
        while ((get16((uint16_t *)p) == 0x4e71) &&
1464 67b915a5 bellard
               (p>p_start)) 
1465 67b915a5 bellard
            p -= 2;
1466 67b915a5 bellard
        if (get16((uint16_t *)p) != 0x4e75)
1467 67b915a5 bellard
            error("rts expected at the end of %s", name);
1468 67b915a5 bellard
        copy_size = p - p_start;
1469 67b915a5 bellard
    }
1470 67b915a5 bellard
#else
1471 67b915a5 bellard
#error unsupported CPU
1472 67b915a5 bellard
#endif
1473 367e86e8 bellard
1474 367e86e8 bellard
    /* compute the number of arguments by looking at the relocations */
1475 367e86e8 bellard
    for(i = 0;i < MAX_ARGS; i++)
1476 367e86e8 bellard
        args_present[i] = 0;
1477 367e86e8 bellard
1478 ce11fedc bellard
    for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1479 82eec0a1 bellard
        host_ulong offset = get_rel_offset(rel);
1480 82eec0a1 bellard
        if (offset >= start_offset &&
1481 82eec0a1 bellard
            offset < start_offset + (p_end - p_start)) {
1482 67b915a5 bellard
            sym_name = get_rel_sym_name(rel);
1483 82eec0a1 bellard
            if(!sym_name)
1484 82eec0a1 bellard
                continue;
1485 c4687878 bellard
            if (strstart(sym_name, "__op_param", &p) ||
1486 c4687878 bellard
                strstart(sym_name, "__op_gen_label", &p)) {
1487 ce11fedc bellard
                n = strtoul(p, NULL, 10);
1488 d4e8164f bellard
                if (n > MAX_ARGS)
1489 ce11fedc bellard
                    error("too many arguments in %s", name);
1490 ce11fedc bellard
                args_present[n - 1] = 1;
1491 367e86e8 bellard
            }
1492 367e86e8 bellard
        }
1493 367e86e8 bellard
    }
1494 367e86e8 bellard
    
1495 367e86e8 bellard
    nb_args = 0;
1496 367e86e8 bellard
    while (nb_args < MAX_ARGS && args_present[nb_args])
1497 367e86e8 bellard
        nb_args++;
1498 367e86e8 bellard
    for(i = nb_args; i < MAX_ARGS; i++) {
1499 367e86e8 bellard
        if (args_present[i])
1500 367e86e8 bellard
            error("inconsistent argument numbering in %s", name);
1501 367e86e8 bellard
    }
1502 367e86e8 bellard
1503 0ea00c9a bellard
    if (gen_switch == 2) {
1504 a513fe19 bellard
        fprintf(outfile, "DEF(%s, %d, %d)\n", name + 3, nb_args, copy_size);
1505 0ea00c9a bellard
    } else if (gen_switch == 1) {
1506 dc99065b bellard
1507 dc99065b bellard
        /* output C code */
1508 dc99065b bellard
        fprintf(outfile, "case INDEX_%s: {\n", name);
1509 dc99065b bellard
        if (nb_args > 0) {
1510 dc99065b bellard
            fprintf(outfile, "    long ");
1511 dc99065b bellard
            for(i = 0; i < nb_args; i++) {
1512 dc99065b bellard
                if (i != 0)
1513 dc99065b bellard
                    fprintf(outfile, ", ");
1514 dc99065b bellard
                fprintf(outfile, "param%d", i + 1);
1515 dc99065b bellard
            }
1516 dc99065b bellard
            fprintf(outfile, ";\n");
1517 367e86e8 bellard
        }
1518 dc99065b bellard
        fprintf(outfile, "    extern void %s();\n", name);
1519 dc99065b bellard
1520 ce11fedc bellard
        for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1521 82eec0a1 bellard
            host_ulong offset = get_rel_offset(rel);
1522 82eec0a1 bellard
            if (offset >= start_offset &&
1523 82eec0a1 bellard
                offset < start_offset + (p_end - p_start)) {
1524 67b915a5 bellard
                sym_name = get_rel_sym_name(rel);
1525 82eec0a1 bellard
                if(!sym_name)
1526 82eec0a1 bellard
                    continue;
1527 d4e8164f bellard
                if (*sym_name && 
1528 d4e8164f bellard
                    !strstart(sym_name, "__op_param", NULL) &&
1529 c4687878 bellard
                    !strstart(sym_name, "__op_jmp", NULL) &&
1530 c4687878 bellard
                    !strstart(sym_name, "__op_gen_label", NULL)) {
1531 d014c98c bellard
#if defined(HOST_SPARC)
1532 d014c98c bellard
                    if (sym_name[0] == '.') {
1533 d014c98c bellard
                        fprintf(outfile,
1534 d014c98c bellard
                                "extern char __dot_%s __asm__(\"%s\");\n",
1535 d014c98c bellard
                                sym_name+1, sym_name);
1536 d014c98c bellard
                        continue;
1537 d014c98c bellard
                    }
1538 d014c98c bellard
#endif
1539 82eec0a1 bellard
#ifdef __APPLE__
1540 82eec0a1 bellard
/* set __attribute((unused)) on darwin because we wan't to avoid warning when we don't use the symbol */
1541 82eec0a1 bellard
                    fprintf(outfile, "extern char %s __attribute__((unused));\n", sym_name);
1542 82eec0a1 bellard
#else
1543 ce11fedc bellard
                    fprintf(outfile, "extern char %s;\n", sym_name);
1544 82eec0a1 bellard
#endif
1545 dc99065b bellard
                }
1546 dc99065b bellard
            }
1547 dc99065b bellard
        }
1548 dc99065b bellard
1549 82eec0a1 bellard
        fprintf(outfile, "    memcpy(gen_code_ptr, (void *)((char *)&%s+%d), %d);\n",
1550 82eec0a1 bellard
                                        name, (int)(start_offset - offset), copy_size);
1551 d4e8164f bellard
1552 d4e8164f bellard
        /* emit code offset information */
1553 d4e8164f bellard
        {
1554 67b915a5 bellard
            EXE_SYM *sym;
1555 d4e8164f bellard
            const char *sym_name, *p;
1556 abcd5da7 bellard
            unsigned long val;
1557 d4e8164f bellard
            int n;
1558 d4e8164f bellard
1559 d4e8164f bellard
            for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
1560 67b915a5 bellard
                sym_name = get_sym_name(sym);
1561 d4e8164f bellard
                if (strstart(sym_name, "__op_label", &p)) {
1562 c1e42a13 bellard
                    uint8_t *ptr;
1563 fe319756 bellard
                    unsigned long offset;
1564 fe319756 bellard
                    
1565 d4e8164f bellard
                    /* test if the variable refers to a label inside
1566 d4e8164f bellard
                       the code we are generating */
1567 67b915a5 bellard
#ifdef CONFIG_FORMAT_COFF
1568 67b915a5 bellard
                    if (sym->st_shndx == text_shndx) {
1569 67b915a5 bellard
                        ptr = sdata[coff_text_shndx];
1570 67b915a5 bellard
                    } else if (sym->st_shndx == data_shndx) {
1571 67b915a5 bellard
                        ptr = sdata[coff_data_shndx];
1572 67b915a5 bellard
                    } else {
1573 67b915a5 bellard
                        ptr = NULL;
1574 67b915a5 bellard
                    }
1575 82eec0a1 bellard
#elif defined(CONFIG_FORMAT_MACH)
1576 82eec0a1 bellard
                    if(!sym->n_sect)
1577 82eec0a1 bellard
                        continue;
1578 82eec0a1 bellard
                    ptr = sdata[sym->n_sect-1];
1579 67b915a5 bellard
#else
1580 fe319756 bellard
                    ptr = sdata[sym->st_shndx];
1581 67b915a5 bellard
#endif
1582 fe319756 bellard
                    if (!ptr)
1583 fe319756 bellard
                        error("__op_labelN in invalid section");
1584 fe319756 bellard
                    offset = sym->st_value;
1585 82eec0a1 bellard
#ifdef CONFIG_FORMAT_MACH
1586 82eec0a1 bellard
                    offset -= section_hdr[sym->n_sect-1].addr;
1587 82eec0a1 bellard
#endif
1588 abcd5da7 bellard
                    val = *(unsigned long *)(ptr + offset);
1589 fe319756 bellard
#ifdef ELF_USES_RELOCA
1590 fe319756 bellard
                    {
1591 fe319756 bellard
                        int reloc_shndx, nb_relocs1, j;
1592 fe319756 bellard
1593 fe319756 bellard
                        /* try to find a matching relocation */
1594 fe319756 bellard
                        reloc_shndx = find_reloc(sym->st_shndx);
1595 fe319756 bellard
                        if (reloc_shndx) {
1596 fe319756 bellard
                            nb_relocs1 = shdr[reloc_shndx].sh_size / 
1597 fe319756 bellard
                                shdr[reloc_shndx].sh_entsize;
1598 fe319756 bellard
                            rel = (ELF_RELOC *)sdata[reloc_shndx];
1599 fe319756 bellard
                            for(j = 0; j < nb_relocs1; j++) {
1600 fe319756 bellard
                                if (rel->r_offset == offset) {
1601 039de852 bellard
                                    val = rel->r_addend;
1602 fe319756 bellard
                                    break;
1603 fe319756 bellard
                                }
1604 fe319756 bellard
                                rel++;
1605 fe319756 bellard
                            }
1606 fe319756 bellard
                        }
1607 fe319756 bellard
                    }
1608 fe319756 bellard
#endif                    
1609 c4687878 bellard
                    if (val >= start_offset && val <= start_offset + copy_size) {
1610 d4e8164f bellard
                        n = strtol(p, NULL, 10);
1611 abcd5da7 bellard
                        fprintf(outfile, "    label_offsets[%d] = %ld + (gen_code_ptr - gen_code_buf);\n", n, val - start_offset);
1612 d4e8164f bellard
                    }
1613 d4e8164f bellard
                }
1614 d4e8164f bellard
            }
1615 d4e8164f bellard
        }
1616 d4e8164f bellard
1617 d4e8164f bellard
        /* load parameres in variables */
1618 dc99065b bellard
        for(i = 0; i < nb_args; i++) {
1619 dc99065b bellard
            fprintf(outfile, "    param%d = *opparam_ptr++;\n", i + 1);
1620 dc99065b bellard
        }
1621 dc99065b bellard
1622 dc99065b bellard
        /* patch relocations */
1623 ce11fedc bellard
#if defined(HOST_I386)
1624 dc99065b bellard
            {
1625 dc99065b bellard
                char name[256];
1626 dc99065b bellard
                int type;
1627 ce11fedc bellard
                int addend;
1628 dc99065b bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1629 ae228531 bellard
                if (rel->r_offset >= start_offset &&
1630 ae228531 bellard
                    rel->r_offset < start_offset + copy_size) {
1631 67b915a5 bellard
                    sym_name = get_rel_sym_name(rel);
1632 ecd854fd bellard
                    if (strstart(sym_name, "__op_jmp", &p)) {
1633 ecd854fd bellard
                        int n;
1634 ecd854fd bellard
                        n = strtol(p, NULL, 10);
1635 ecd854fd bellard
                        /* __op_jmp relocations are done at
1636 ecd854fd bellard
                           runtime to do translated block
1637 ecd854fd bellard
                           chaining: the offset of the instruction
1638 ecd854fd bellard
                           needs to be stored */
1639 ecd854fd bellard
                        fprintf(outfile, "    jmp_offsets[%d] = %d + (gen_code_ptr - gen_code_buf);\n",
1640 ecd854fd bellard
                                n, rel->r_offset - start_offset);
1641 ecd854fd bellard
                        continue;
1642 ecd854fd bellard
                    }
1643 ecd854fd bellard
                        
1644 367e86e8 bellard
                    if (strstart(sym_name, "__op_param", &p)) {
1645 367e86e8 bellard
                        snprintf(name, sizeof(name), "param%s", p);
1646 c4687878 bellard
                    } else if (strstart(sym_name, "__op_gen_label", &p)) {
1647 c4687878 bellard
                        snprintf(name, sizeof(name), "gen_labels[param%s]", p);
1648 367e86e8 bellard
                    } else {
1649 367e86e8 bellard
                        snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1650 367e86e8 bellard
                    }
1651 367e86e8 bellard
                    addend = get32((uint32_t *)(text + rel->r_offset));
1652 67b915a5 bellard
#ifdef CONFIG_FORMAT_ELF
1653 67b915a5 bellard
                    type = ELF32_R_TYPE(rel->r_info);
1654 367e86e8 bellard
                    switch(type) {
1655 367e86e8 bellard
                    case R_386_32:
1656 ce11fedc bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1657 ae228531 bellard
                                rel->r_offset - start_offset, name, addend);
1658 367e86e8 bellard
                        break;
1659 367e86e8 bellard
                    case R_386_PC32:
1660 ce11fedc bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %d) + %d;\n", 
1661 ae228531 bellard
                                rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
1662 367e86e8 bellard
                        break;
1663 367e86e8 bellard
                    default:
1664 367e86e8 bellard
                        error("unsupported i386 relocation (%d)", type);
1665 367e86e8 bellard
                    }
1666 67b915a5 bellard
#elif defined(CONFIG_FORMAT_COFF)
1667 40c3bac3 bellard
                    {
1668 40c3bac3 bellard
                        char *temp_name;
1669 40c3bac3 bellard
                        int j;
1670 40c3bac3 bellard
                        EXE_SYM *sym;
1671 40c3bac3 bellard
                        temp_name = get_sym_name(symtab + *(uint32_t *)(rel->r_reloc->r_symndx));
1672 40c3bac3 bellard
                        if (!strcmp(temp_name, ".data")) {
1673 40c3bac3 bellard
                            for (j = 0, sym = symtab; j < nb_syms; j++, sym++) {
1674 40c3bac3 bellard
                                if (strstart(sym->st_name, sym_name, NULL)) {
1675 40c3bac3 bellard
                                    addend -= sym->st_value;
1676 40c3bac3 bellard
                                }
1677 40c3bac3 bellard
                            }
1678 40c3bac3 bellard
                        }
1679 40c3bac3 bellard
                    }
1680 67b915a5 bellard
                    type = rel->r_type;
1681 67b915a5 bellard
                    switch(type) {
1682 67b915a5 bellard
                    case DIR32:
1683 67b915a5 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1684 67b915a5 bellard
                                rel->r_offset - start_offset, name, addend);
1685 67b915a5 bellard
                        break;
1686 67b915a5 bellard
                    case DISP32:
1687 67b915a5 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %d) + %d -4;\n", 
1688 67b915a5 bellard
                                rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
1689 67b915a5 bellard
                        break;
1690 67b915a5 bellard
                    default:
1691 67b915a5 bellard
                        error("unsupported i386 relocation (%d)", type);
1692 67b915a5 bellard
                    }
1693 67b915a5 bellard
#else
1694 67b915a5 bellard
#error unsupport object format
1695 67b915a5 bellard
#endif
1696 367e86e8 bellard
                }
1697 dc99065b bellard
                }
1698 dc99065b bellard
            }
1699 c4687878 bellard
#elif defined(HOST_X86_64)
1700 bc51c5c9 bellard
            {
1701 bc51c5c9 bellard
                char name[256];
1702 bc51c5c9 bellard
                int type;
1703 bc51c5c9 bellard
                int addend;
1704 bc51c5c9 bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1705 bc51c5c9 bellard
                if (rel->r_offset >= start_offset &&
1706 bc51c5c9 bellard
                    rel->r_offset < start_offset + copy_size) {
1707 bc51c5c9 bellard
                    sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
1708 bc51c5c9 bellard
                    if (strstart(sym_name, "__op_param", &p)) {
1709 bc51c5c9 bellard
                        snprintf(name, sizeof(name), "param%s", p);
1710 bc51c5c9 bellard
                    } else {
1711 bc51c5c9 bellard
                        snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1712 bc51c5c9 bellard
                    }
1713 bc51c5c9 bellard
                    type = ELF32_R_TYPE(rel->r_info);
1714 bc51c5c9 bellard
                    addend = rel->r_addend;
1715 bc51c5c9 bellard
                    switch(type) {
1716 bc51c5c9 bellard
                    case R_X86_64_32:
1717 bc51c5c9 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = (uint32_t)%s + %d;\n", 
1718 bc51c5c9 bellard
                                rel->r_offset - start_offset, name, addend);
1719 bc51c5c9 bellard
                        break;
1720 bc51c5c9 bellard
                    case R_X86_64_32S:
1721 bc51c5c9 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = (int32_t)%s + %d;\n", 
1722 bc51c5c9 bellard
                                rel->r_offset - start_offset, name, addend);
1723 bc51c5c9 bellard
                        break;
1724 bc51c5c9 bellard
                    case R_X86_64_PC32:
1725 bc51c5c9 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %d) + %d;\n", 
1726 bc51c5c9 bellard
                                rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
1727 bc51c5c9 bellard
                        break;
1728 bc51c5c9 bellard
                    default:
1729 c4687878 bellard
                        error("unsupported X86_64 relocation (%d)", type);
1730 bc51c5c9 bellard
                    }
1731 bc51c5c9 bellard
                }
1732 bc51c5c9 bellard
                }
1733 bc51c5c9 bellard
            }
1734 ce11fedc bellard
#elif defined(HOST_PPC)
1735 04369ff2 bellard
            {
1736 82eec0a1 bellard
#ifdef CONFIG_FORMAT_ELF
1737 04369ff2 bellard
                char name[256];
1738 04369ff2 bellard
                int type;
1739 ce11fedc bellard
                int addend;
1740 04369ff2 bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1741 ae228531 bellard
                    if (rel->r_offset >= start_offset &&
1742 ae228531 bellard
                        rel->r_offset < start_offset + copy_size) {
1743 efdea7bf bellard
                        sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
1744 d4e8164f bellard
                        if (strstart(sym_name, "__op_jmp", &p)) {
1745 d4e8164f bellard
                            int n;
1746 d4e8164f bellard
                            n = strtol(p, NULL, 10);
1747 d4e8164f bellard
                            /* __op_jmp relocations are done at
1748 d4e8164f bellard
                               runtime to do translated block
1749 d4e8164f bellard
                               chaining: the offset of the instruction
1750 d4e8164f bellard
                               needs to be stored */
1751 d4e8164f bellard
                            fprintf(outfile, "    jmp_offsets[%d] = %d + (gen_code_ptr - gen_code_buf);\n",
1752 d4e8164f bellard
                                    n, rel->r_offset - start_offset);
1753 d4e8164f bellard
                            continue;
1754 d4e8164f bellard
                        }
1755 d4e8164f bellard
                        
1756 04369ff2 bellard
                        if (strstart(sym_name, "__op_param", &p)) {
1757 04369ff2 bellard
                            snprintf(name, sizeof(name), "param%s", p);
1758 04369ff2 bellard
                        } else {
1759 04369ff2 bellard
                            snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1760 04369ff2 bellard
                        }
1761 04369ff2 bellard
                        type = ELF32_R_TYPE(rel->r_info);
1762 04369ff2 bellard
                        addend = rel->r_addend;
1763 04369ff2 bellard
                        switch(type) {
1764 04369ff2 bellard
                        case R_PPC_ADDR32:
1765 ce11fedc bellard
                            fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1766 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1767 04369ff2 bellard
                            break;
1768 04369ff2 bellard
                        case R_PPC_ADDR16_LO:
1769 ce11fedc bellard
                            fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d) = (%s + %d);\n", 
1770 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1771 04369ff2 bellard
                            break;
1772 04369ff2 bellard
                        case R_PPC_ADDR16_HI:
1773 ce11fedc bellard
                            fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d) = (%s + %d) >> 16;\n", 
1774 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1775 04369ff2 bellard
                            break;
1776 04369ff2 bellard
                        case R_PPC_ADDR16_HA:
1777 ce11fedc bellard
                            fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d) = (%s + %d + 0x8000) >> 16;\n", 
1778 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1779 04369ff2 bellard
                            break;
1780 04369ff2 bellard
                        case R_PPC_REL24:
1781 04369ff2 bellard
                            /* warning: must be at 32 MB distancy */
1782 ce11fedc bellard
                            fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = (*(uint32_t *)(gen_code_ptr + %d) & ~0x03fffffc) | ((%s - (long)(gen_code_ptr + %d) + %d) & 0x03fffffc);\n", 
1783 ae228531 bellard
                                    rel->r_offset - start_offset, rel->r_offset - start_offset, name, rel->r_offset - start_offset, addend);
1784 04369ff2 bellard
                            break;
1785 04369ff2 bellard
                        default:
1786 04369ff2 bellard
                            error("unsupported powerpc relocation (%d)", type);
1787 04369ff2 bellard
                        }
1788 04369ff2 bellard
                    }
1789 04369ff2 bellard
                }
1790 82eec0a1 bellard
#elif defined(CONFIG_FORMAT_MACH)
1791 82eec0a1 bellard
                                struct scattered_relocation_info *scarel;
1792 82eec0a1 bellard
                                struct relocation_info * rel;
1793 82eec0a1 bellard
                                char final_sym_name[256];
1794 82eec0a1 bellard
                                const char *sym_name;
1795 82eec0a1 bellard
                                const char *p;
1796 82eec0a1 bellard
                                int slide, sslide;
1797 82eec0a1 bellard
                                int i;
1798 82eec0a1 bellard
        
1799 82eec0a1 bellard
                                for(i = 0, rel = relocs; i < nb_relocs; i++, rel++) {
1800 82eec0a1 bellard
                                        unsigned int offset, length, value = 0;
1801 82eec0a1 bellard
                                        unsigned int type, pcrel, isym = 0;
1802 82eec0a1 bellard
                                        unsigned int usesym = 0;
1803 82eec0a1 bellard
                                
1804 82eec0a1 bellard
                                        if(R_SCATTERED & rel->r_address) {
1805 82eec0a1 bellard
                                                scarel = (struct scattered_relocation_info*)rel;
1806 82eec0a1 bellard
                                                offset = (unsigned int)scarel->r_address;
1807 82eec0a1 bellard
                                                length = scarel->r_length;
1808 82eec0a1 bellard
                                                pcrel = scarel->r_pcrel;
1809 82eec0a1 bellard
                                                type = scarel->r_type;
1810 82eec0a1 bellard
                                                value = scarel->r_value;
1811 82eec0a1 bellard
                                        } else {
1812 82eec0a1 bellard
                                                value = isym = rel->r_symbolnum;
1813 82eec0a1 bellard
                                                usesym = (rel->r_extern);
1814 82eec0a1 bellard
                                                offset = rel->r_address;
1815 82eec0a1 bellard
                                                length = rel->r_length;
1816 82eec0a1 bellard
                                                pcrel = rel->r_pcrel;
1817 82eec0a1 bellard
                                                type = rel->r_type;
1818 82eec0a1 bellard
                                        }
1819 82eec0a1 bellard
                                
1820 82eec0a1 bellard
                                        slide = offset - start_offset;
1821 82eec0a1 bellard
                
1822 82eec0a1 bellard
                                        if (!(offset >= start_offset && offset < start_offset + size)) 
1823 82eec0a1 bellard
                                                continue;  /* not in our range */
1824 82eec0a1 bellard
1825 82eec0a1 bellard
                                        sym_name = get_reloc_name(rel, &sslide);
1826 82eec0a1 bellard
                                        
1827 82eec0a1 bellard
                                        if(usesym && symtab[isym].n_type & N_STAB)
1828 82eec0a1 bellard
                                                continue; /* don't handle STAB (debug sym) */
1829 82eec0a1 bellard
                                        
1830 82eec0a1 bellard
                                        if (sym_name && strstart(sym_name, "__op_jmp", &p)) {
1831 82eec0a1 bellard
                                                int n;
1832 82eec0a1 bellard
                                                n = strtol(p, NULL, 10);
1833 82eec0a1 bellard
                                                fprintf(outfile, "    jmp_offsets[%d] = %d + (gen_code_ptr - gen_code_buf);\n",
1834 82eec0a1 bellard
                                                        n, slide);
1835 82eec0a1 bellard
                                                continue; /* Nothing more to do */
1836 82eec0a1 bellard
                                        }
1837 82eec0a1 bellard
                                        
1838 82eec0a1 bellard
                                        if(!sym_name)
1839 82eec0a1 bellard
                                        {
1840 82eec0a1 bellard
                                                fprintf(outfile, "/* #warning relocation not handled in %s (value 0x%x, %s, offset 0x%x, length 0x%x, %s, type 0x%x) */\n",
1841 82eec0a1 bellard
                                                           name, value, usesym ? "use sym" : "don't use sym", offset, length, pcrel ? "pcrel":"", type);
1842 82eec0a1 bellard
                                                continue; /* dunno how to handle without final_sym_name */
1843 82eec0a1 bellard
                                        }
1844 82eec0a1 bellard
                                                                                                           
1845 82eec0a1 bellard
                                        if (strstart(sym_name, "__op_param", &p)) {
1846 82eec0a1 bellard
                                                snprintf(final_sym_name, sizeof(final_sym_name), "param%s", p);
1847 82eec0a1 bellard
                                        } else {
1848 82eec0a1 bellard
                                                snprintf(final_sym_name, sizeof(final_sym_name), "(long)(&%s)", sym_name);
1849 82eec0a1 bellard
                                        }
1850 82eec0a1 bellard
                        
1851 82eec0a1 bellard
                                        switch(type) {
1852 82eec0a1 bellard
                                        case PPC_RELOC_BR24:
1853 82eec0a1 bellard
                                                fprintf(outfile, "{\n");
1854 82eec0a1 bellard
                                                fprintf(outfile, "    uint32_t imm = *(uint32_t *)(gen_code_ptr + %d) & 0x3fffffc;\n", slide);
1855 82eec0a1 bellard
                                                fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = (*(uint32_t *)(gen_code_ptr + %d) & ~0x03fffffc) | ((imm + ((long)%s - (long)gen_code_ptr) + %d) & 0x03fffffc);\n", 
1856 82eec0a1 bellard
                                                                                        slide, slide, name, sslide );
1857 82eec0a1 bellard
                                                fprintf(outfile, "}\n");
1858 82eec0a1 bellard
                                                break;
1859 82eec0a1 bellard
                                        case PPC_RELOC_HI16:
1860 82eec0a1 bellard
                                                fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d + 2) = (%s + %d) >> 16;\n", 
1861 82eec0a1 bellard
                                                        slide, final_sym_name, sslide);
1862 82eec0a1 bellard
                                                break;
1863 82eec0a1 bellard
                                        case PPC_RELOC_LO16:
1864 82eec0a1 bellard
                                                fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d + 2) = (%s + %d);\n", 
1865 82eec0a1 bellard
                                        slide, final_sym_name, sslide);
1866 82eec0a1 bellard
                            break;
1867 82eec0a1 bellard
                                        case PPC_RELOC_HA16:
1868 82eec0a1 bellard
                                                fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d + 2) = (%s + %d + 0x8000) >> 16;\n", 
1869 82eec0a1 bellard
                                                        slide, final_sym_name, sslide);
1870 82eec0a1 bellard
                                                break;
1871 82eec0a1 bellard
                                default:
1872 82eec0a1 bellard
                                        error("unsupported powerpc relocation (%d)", type);
1873 82eec0a1 bellard
                                }
1874 82eec0a1 bellard
                        }
1875 82eec0a1 bellard
#else
1876 82eec0a1 bellard
#error unsupport object format
1877 82eec0a1 bellard
#endif
1878 04369ff2 bellard
            }
1879 ce11fedc bellard
#elif defined(HOST_S390)
1880 fb3e5849 bellard
            {
1881 fb3e5849 bellard
                char name[256];
1882 fb3e5849 bellard
                int type;
1883 ce11fedc bellard
                int addend;
1884 fb3e5849 bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1885 ae228531 bellard
                    if (rel->r_offset >= start_offset &&
1886 ae228531 bellard
                        rel->r_offset < start_offset + copy_size) {
1887 efdea7bf bellard
                        sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
1888 fb3e5849 bellard
                        if (strstart(sym_name, "__op_param", &p)) {
1889 fb3e5849 bellard
                            snprintf(name, sizeof(name), "param%s", p);
1890 fb3e5849 bellard
                        } else {
1891 fb3e5849 bellard
                            snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1892 fb3e5849 bellard
                        }
1893 fb3e5849 bellard
                        type = ELF32_R_TYPE(rel->r_info);
1894 fb3e5849 bellard
                        addend = rel->r_addend;
1895 fb3e5849 bellard
                        switch(type) {
1896 fb3e5849 bellard
                        case R_390_32:
1897 ce11fedc bellard
                            fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1898 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1899 fb3e5849 bellard
                            break;
1900 fb3e5849 bellard
                        case R_390_16:
1901 ce11fedc bellard
                            fprintf(outfile, "    *(uint16_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1902 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1903 fb3e5849 bellard
                            break;
1904 fb3e5849 bellard
                        case R_390_8:
1905 ce11fedc bellard
                            fprintf(outfile, "    *(uint8_t *)(gen_code_ptr + %d) = %s + %d;\n", 
1906 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
1907 fb3e5849 bellard
                            break;
1908 fb3e5849 bellard
                        default:
1909 fb3e5849 bellard
                            error("unsupported s390 relocation (%d)", type);
1910 fb3e5849 bellard
                        }
1911 fb3e5849 bellard
                    }
1912 fb3e5849 bellard
                }
1913 fb3e5849 bellard
            }
1914 efdea7bf bellard
#elif defined(HOST_ALPHA)
1915 efdea7bf bellard
            {
1916 efdea7bf bellard
                for (i = 0, rel = relocs; i < nb_relocs; i++, rel++) {
1917 ae228531 bellard
                    if (rel->r_offset >= start_offset && rel->r_offset < start_offset + copy_size) {
1918 efdea7bf bellard
                        int type;
1919 74c95119 bellard
1920 efdea7bf bellard
                        type = ELF64_R_TYPE(rel->r_info);
1921 74c95119 bellard
                        sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
1922 efdea7bf bellard
                        switch (type) {
1923 efdea7bf bellard
                        case R_ALPHA_GPDISP:
1924 74c95119 bellard
                            /* The gp is just 32 bit, and never changes, so it's easiest to emit it
1925 74c95119 bellard
                               as an immediate instead of constructing it from the pv or ra.  */
1926 74c95119 bellard
                            fprintf(outfile, "    immediate_ldah(gen_code_ptr + %ld, gp);\n",
1927 ae228531 bellard
                                    rel->r_offset - start_offset);
1928 74c95119 bellard
                            fprintf(outfile, "    immediate_lda(gen_code_ptr + %ld, gp);\n",
1929 ae228531 bellard
                                    rel->r_offset - start_offset + rel->r_addend);
1930 efdea7bf bellard
                            break;
1931 efdea7bf bellard
                        case R_ALPHA_LITUSE:
1932 efdea7bf bellard
                            /* jsr to literal hint. Could be used to optimize to bsr. Ignore for
1933 efdea7bf bellard
                               now, since some called functions (libc) need pv to be set up.  */
1934 efdea7bf bellard
                            break;
1935 efdea7bf bellard
                        case R_ALPHA_HINT:
1936 efdea7bf bellard
                            /* Branch target prediction hint. Ignore for now.  Should be already
1937 efdea7bf bellard
                               correct for in-function jumps.  */
1938 efdea7bf bellard
                            break;
1939 efdea7bf bellard
                        case R_ALPHA_LITERAL:
1940 74c95119 bellard
                            /* Load a literal from the GOT relative to the gp.  Since there's only a
1941 74c95119 bellard
                               single gp, nothing is to be done.  */
1942 74c95119 bellard
                            break;
1943 74c95119 bellard
                        case R_ALPHA_GPRELHIGH:
1944 74c95119 bellard
                            /* Handle fake relocations against __op_param symbol.  Need to emit the
1945 74c95119 bellard
                               high part of the immediate value instead.  Other symbols need no
1946 74c95119 bellard
                               special treatment.  */
1947 74c95119 bellard
                            if (strstart(sym_name, "__op_param", &p))
1948 74c95119 bellard
                                fprintf(outfile, "    immediate_ldah(gen_code_ptr + %ld, param%s);\n",
1949 ae228531 bellard
                                        rel->r_offset - start_offset, p);
1950 74c95119 bellard
                            break;
1951 74c95119 bellard
                        case R_ALPHA_GPRELLOW:
1952 74c95119 bellard
                            if (strstart(sym_name, "__op_param", &p))
1953 74c95119 bellard
                                fprintf(outfile, "    immediate_lda(gen_code_ptr + %ld, param%s);\n",
1954 ae228531 bellard
                                        rel->r_offset - start_offset, p);
1955 74c95119 bellard
                            break;
1956 74c95119 bellard
                        case R_ALPHA_BRSGP:
1957 74c95119 bellard
                            /* PC-relative jump. Tweak offset to skip the two instructions that try to
1958 74c95119 bellard
                               set up the gp from the pv.  */
1959 2f87c607 bellard
                            fprintf(outfile, "    fix_bsr(gen_code_ptr + %ld, (uint8_t *) &%s - (gen_code_ptr + %ld + 4) + 8);\n",
1960 ae228531 bellard
                                    rel->r_offset - start_offset, sym_name, rel->r_offset - start_offset);
1961 efdea7bf bellard
                            break;
1962 efdea7bf bellard
                        default:
1963 efdea7bf bellard
                            error("unsupported Alpha relocation (%d)", type);
1964 efdea7bf bellard
                        }
1965 efdea7bf bellard
                    }
1966 efdea7bf bellard
                }
1967 efdea7bf bellard
            }
1968 efdea7bf bellard
#elif defined(HOST_IA64)
1969 efdea7bf bellard
            {
1970 efdea7bf bellard
                char name[256];
1971 efdea7bf bellard
                int type;
1972 efdea7bf bellard
                int addend;
1973 efdea7bf bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
1974 ae228531 bellard
                    if (rel->r_offset >= start_offset && rel->r_offset < start_offset + copy_size) {
1975 efdea7bf bellard
                        sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
1976 efdea7bf bellard
                        if (strstart(sym_name, "__op_param", &p)) {
1977 efdea7bf bellard
                            snprintf(name, sizeof(name), "param%s", p);
1978 efdea7bf bellard
                        } else {
1979 efdea7bf bellard
                            snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
1980 efdea7bf bellard
                        }
1981 efdea7bf bellard
                        type = ELF64_R_TYPE(rel->r_info);
1982 efdea7bf bellard
                        addend = rel->r_addend;
1983 efdea7bf bellard
                        switch(type) {
1984 efdea7bf bellard
                        case R_IA64_LTOFF22:
1985 efdea7bf bellard
                            error("must implemnt R_IA64_LTOFF22 relocation");
1986 efdea7bf bellard
                        case R_IA64_PCREL21B:
1987 efdea7bf bellard
                            error("must implemnt R_IA64_PCREL21B relocation");
1988 efdea7bf bellard
                        default:
1989 efdea7bf bellard
                            error("unsupported ia64 relocation (%d)", type);
1990 efdea7bf bellard
                        }
1991 efdea7bf bellard
                    }
1992 efdea7bf bellard
                }
1993 efdea7bf bellard
            }
1994 d014c98c bellard
#elif defined(HOST_SPARC)
1995 d014c98c bellard
            {
1996 d014c98c bellard
                char name[256];
1997 d014c98c bellard
                int type;
1998 d014c98c bellard
                int addend;
1999 d014c98c bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
2000 ae228531 bellard
                    if (rel->r_offset >= start_offset &&
2001 ae228531 bellard
                        rel->r_offset < start_offset + copy_size) {
2002 d014c98c bellard
                        sym_name = strtab + symtab[ELF32_R_SYM(rel->r_info)].st_name;
2003 d014c98c bellard
                        if (strstart(sym_name, "__op_param", &p)) {
2004 d014c98c bellard
                            snprintf(name, sizeof(name), "param%s", p);
2005 d014c98c bellard
                        } else {
2006 d014c98c bellard
                                if (sym_name[0] == '.')
2007 d014c98c bellard
                                        snprintf(name, sizeof(name),
2008 d014c98c bellard
                                                 "(long)(&__dot_%s)",
2009 d014c98c bellard
                                                 sym_name + 1);
2010 d014c98c bellard
                                else
2011 d014c98c bellard
                                        snprintf(name, sizeof(name),
2012 d014c98c bellard
                                                 "(long)(&%s)", sym_name);
2013 d014c98c bellard
                        }
2014 d014c98c bellard
                        type = ELF32_R_TYPE(rel->r_info);
2015 d014c98c bellard
                        addend = rel->r_addend;
2016 d014c98c bellard
                        switch(type) {
2017 d014c98c bellard
                        case R_SPARC_32:
2018 d014c98c bellard
                            fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
2019 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
2020 d014c98c bellard
                            break;
2021 d014c98c bellard
                        case R_SPARC_HI22:
2022 d014c98c bellard
                            fprintf(outfile,
2023 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2024 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2025 d014c98c bellard
                                    " & ~0x3fffff) "
2026 ae228531 bellard
                                    " | (((%s + %d) >> 10) & 0x3fffff);\n",
2027 ae228531 bellard
                                    rel->r_offset - start_offset,
2028 ae228531 bellard
                                    rel->r_offset - start_offset,
2029 d014c98c bellard
                                    name, addend);
2030 d014c98c bellard
                            break;
2031 d014c98c bellard
                        case R_SPARC_LO10:
2032 d014c98c bellard
                            fprintf(outfile,
2033 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2034 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2035 d014c98c bellard
                                    " & ~0x3ff) "
2036 d014c98c bellard
                                    " | ((%s + %d) & 0x3ff);\n",
2037 ae228531 bellard
                                    rel->r_offset - start_offset,
2038 ae228531 bellard
                                    rel->r_offset - start_offset,
2039 d014c98c bellard
                                    name, addend);
2040 d014c98c bellard
                            break;
2041 d014c98c bellard
                        case R_SPARC_WDISP30:
2042 d014c98c bellard
                            fprintf(outfile,
2043 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2044 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2045 d014c98c bellard
                                    " & ~0x3fffffff) "
2046 ae228531 bellard
                                    " | ((((%s + %d) - (long)(gen_code_ptr + %d))>>2) "
2047 d014c98c bellard
                                    "    & 0x3fffffff);\n",
2048 ae228531 bellard
                                    rel->r_offset - start_offset,
2049 ae228531 bellard
                                    rel->r_offset - start_offset,
2050 ae228531 bellard
                                    name, addend,
2051 ae228531 bellard
                                    rel->r_offset - start_offset);
2052 d014c98c bellard
                            break;
2053 d014c98c bellard
                        default:
2054 d014c98c bellard
                            error("unsupported sparc relocation (%d)", type);
2055 d014c98c bellard
                        }
2056 d014c98c bellard
                    }
2057 d014c98c bellard
                }
2058 d014c98c bellard
            }
2059 d014c98c bellard
#elif defined(HOST_SPARC64)
2060 d014c98c bellard
            {
2061 d014c98c bellard
                char name[256];
2062 d014c98c bellard
                int type;
2063 d014c98c bellard
                int addend;
2064 d014c98c bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
2065 ae228531 bellard
                    if (rel->r_offset >= start_offset &&
2066 ae228531 bellard
                        rel->r_offset < start_offset + copy_size) {
2067 d014c98c bellard
                        sym_name = strtab + symtab[ELF64_R_SYM(rel->r_info)].st_name;
2068 d014c98c bellard
                        if (strstart(sym_name, "__op_param", &p)) {
2069 d014c98c bellard
                            snprintf(name, sizeof(name), "param%s", p);
2070 d014c98c bellard
                        } else {
2071 d014c98c bellard
                            snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
2072 d014c98c bellard
                        }
2073 d014c98c bellard
                        type = ELF64_R_TYPE(rel->r_info);
2074 d014c98c bellard
                        addend = rel->r_addend;
2075 d014c98c bellard
                        switch(type) {
2076 d014c98c bellard
                        case R_SPARC_32:
2077 d014c98c bellard
                            fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n",
2078 ae228531 bellard
                                    rel->r_offset - start_offset, name, addend);
2079 d014c98c bellard
                            break;
2080 d014c98c bellard
                        case R_SPARC_HI22:
2081 d014c98c bellard
                            fprintf(outfile,
2082 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2083 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2084 d014c98c bellard
                                    " & ~0x3fffff) "
2085 ae228531 bellard
                                    " | (((%s + %d) >> 10) & 0x3fffff);\n",
2086 ae228531 bellard
                                    rel->r_offset - start_offset,
2087 ae228531 bellard
                                    rel->r_offset - start_offset,
2088 d014c98c bellard
                                    name, addend);
2089 d014c98c bellard
                            break;
2090 d014c98c bellard
                        case R_SPARC_LO10:
2091 d014c98c bellard
                            fprintf(outfile,
2092 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2093 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2094 d014c98c bellard
                                    " & ~0x3ff) "
2095 d014c98c bellard
                                    " | ((%s + %d) & 0x3ff);\n",
2096 ae228531 bellard
                                    rel->r_offset - start_offset,
2097 ae228531 bellard
                                    rel->r_offset - start_offset,
2098 d014c98c bellard
                                    name, addend);
2099 d014c98c bellard
                            break;
2100 d014c98c bellard
                        case R_SPARC_WDISP30:
2101 d014c98c bellard
                            fprintf(outfile,
2102 d014c98c bellard
                                    "    *(uint32_t *)(gen_code_ptr + %d) = "
2103 d014c98c bellard
                                    "((*(uint32_t *)(gen_code_ptr + %d)) "
2104 d014c98c bellard
                                    " & ~0x3fffffff) "
2105 ae228531 bellard
                                    " | ((((%s + %d) - (long)(gen_code_ptr + %d))>>2) "
2106 d014c98c bellard
                                    "    & 0x3fffffff);\n",
2107 ae228531 bellard
                                    rel->r_offset - start_offset,
2108 ae228531 bellard
                                    rel->r_offset - start_offset,
2109 ae228531 bellard
                                    name, addend,
2110 ae228531 bellard
                                    rel->r_offset - start_offset);
2111 d014c98c bellard
                            break;
2112 d014c98c bellard
                        default:
2113 d014c98c bellard
                            error("unsupported sparc64 relocation (%d)", type);
2114 d014c98c bellard
                        }
2115 d014c98c bellard
                    }
2116 d014c98c bellard
                }
2117 d014c98c bellard
            }
2118 ff1f20a3 bellard
#elif defined(HOST_ARM)
2119 ff1f20a3 bellard
            {
2120 ff1f20a3 bellard
                char name[256];
2121 ff1f20a3 bellard
                int type;
2122 ff1f20a3 bellard
                int addend;
2123 ff1f20a3 bellard
2124 ff1f20a3 bellard
                arm_emit_ldr_info(name, start_offset, outfile, p_start, p_end,
2125 ff1f20a3 bellard
                                  relocs, nb_relocs);
2126 ff1f20a3 bellard
2127 ff1f20a3 bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
2128 ff1f20a3 bellard
                if (rel->r_offset >= start_offset &&
2129 ff1f20a3 bellard
                    rel->r_offset < start_offset + copy_size) {
2130 ff1f20a3 bellard
                    sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
2131 ff1f20a3 bellard
                    /* the compiler leave some unnecessary references to the code */
2132 ff1f20a3 bellard
                    if (sym_name[0] == '\0')
2133 ff1f20a3 bellard
                        continue;
2134 ff1f20a3 bellard
                    if (strstart(sym_name, "__op_param", &p)) {
2135 ff1f20a3 bellard
                        snprintf(name, sizeof(name), "param%s", p);
2136 ff1f20a3 bellard
                    } else {
2137 ff1f20a3 bellard
                        snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
2138 ff1f20a3 bellard
                    }
2139 ff1f20a3 bellard
                    type = ELF32_R_TYPE(rel->r_info);
2140 ff1f20a3 bellard
                    addend = get32((uint32_t *)(text + rel->r_offset));
2141 ff1f20a3 bellard
                    switch(type) {
2142 ff1f20a3 bellard
                    case R_ARM_ABS32:
2143 ff1f20a3 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %d;\n", 
2144 ff1f20a3 bellard
                                rel->r_offset - start_offset, name, addend);
2145 ff1f20a3 bellard
                        break;
2146 ff1f20a3 bellard
                    case R_ARM_PC24:
2147 ff1f20a3 bellard
                        fprintf(outfile, "    arm_reloc_pc24((uint32_t *)(gen_code_ptr + %d), 0x%x, %s);\n", 
2148 ff1f20a3 bellard
                                rel->r_offset - start_offset, addend, name);
2149 ff1f20a3 bellard
                        break;
2150 ff1f20a3 bellard
                    default:
2151 ff1f20a3 bellard
                        error("unsupported arm relocation (%d)", type);
2152 ff1f20a3 bellard
                    }
2153 ff1f20a3 bellard
                }
2154 ff1f20a3 bellard
                }
2155 38e584a0 bellard
            }
2156 38e584a0 bellard
#elif defined(HOST_M68K)
2157 38e584a0 bellard
            {
2158 38e584a0 bellard
                char name[256];
2159 38e584a0 bellard
                int type;
2160 38e584a0 bellard
                int addend;
2161 38e584a0 bellard
                Elf32_Sym *sym;
2162 38e584a0 bellard
                for(i = 0, rel = relocs;i < nb_relocs; i++, rel++) {
2163 38e584a0 bellard
                if (rel->r_offset >= start_offset &&
2164 38e584a0 bellard
                    rel->r_offset < start_offset + copy_size) {
2165 38e584a0 bellard
                    sym = &(symtab[ELFW(R_SYM)(rel->r_info)]);
2166 38e584a0 bellard
                    sym_name = strtab + symtab[ELFW(R_SYM)(rel->r_info)].st_name;
2167 38e584a0 bellard
                    if (strstart(sym_name, "__op_param", &p)) {
2168 38e584a0 bellard
                        snprintf(name, sizeof(name), "param%s", p);
2169 38e584a0 bellard
                    } else {
2170 38e584a0 bellard
                        snprintf(name, sizeof(name), "(long)(&%s)", sym_name);
2171 38e584a0 bellard
                    }
2172 38e584a0 bellard
                    type = ELF32_R_TYPE(rel->r_info);
2173 38e584a0 bellard
                    addend = get32((uint32_t *)(text + rel->r_offset)) + rel->r_addend;
2174 38e584a0 bellard
                    switch(type) {
2175 38e584a0 bellard
                    case R_68K_32:
2176 38e584a0 bellard
                        fprintf(outfile, "    /* R_68K_32 RELOC, offset %x */\n", rel->r_offset) ;
2177 38e584a0 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s + %#x;\n", 
2178 38e584a0 bellard
                                rel->r_offset - start_offset, name, addend );
2179 38e584a0 bellard
                        break;
2180 38e584a0 bellard
                    case R_68K_PC32:
2181 38e584a0 bellard
                        fprintf(outfile, "    /* R_68K_PC32 RELOC, offset %x */\n", rel->r_offset);
2182 38e584a0 bellard
                        fprintf(outfile, "    *(uint32_t *)(gen_code_ptr + %d) = %s - (long)(gen_code_ptr + %#x) + %#x;\n", 
2183 38e584a0 bellard
                                rel->r_offset - start_offset, name, rel->r_offset - start_offset, /*sym->st_value+*/ addend);
2184 38e584a0 bellard
                        break;
2185 38e584a0 bellard
                    default:
2186 38e584a0 bellard
                        error("unsupported m68k relocation (%d)", type);
2187 38e584a0 bellard
                    }
2188 38e584a0 bellard
                }
2189 38e584a0 bellard
                }
2190 ff1f20a3 bellard
            }
2191 ce11fedc bellard
#else
2192 ce11fedc bellard
#error unsupported CPU
2193 ce11fedc bellard
#endif
2194 dc99065b bellard
        fprintf(outfile, "    gen_code_ptr += %d;\n", copy_size);
2195 dc99065b bellard
        fprintf(outfile, "}\n");
2196 dc99065b bellard
        fprintf(outfile, "break;\n\n");
2197 dc99065b bellard
    } else {
2198 dc99065b bellard
        fprintf(outfile, "static inline void gen_%s(", name);
2199 dc99065b bellard
        if (nb_args == 0) {
2200 dc99065b bellard
            fprintf(outfile, "void");
2201 dc99065b bellard
        } else {
2202 dc99065b bellard
            for(i = 0; i < nb_args; i++) {
2203 dc99065b bellard
                if (i != 0)
2204 dc99065b bellard
                    fprintf(outfile, ", ");
2205 dc99065b bellard
                fprintf(outfile, "long param%d", i + 1);
2206 367e86e8 bellard
            }
2207 367e86e8 bellard
        }
2208 dc99065b bellard
        fprintf(outfile, ")\n");
2209 dc99065b bellard
        fprintf(outfile, "{\n");
2210 dc99065b bellard
        for(i = 0; i < nb_args; i++) {
2211 dc99065b bellard
            fprintf(outfile, "    *gen_opparam_ptr++ = param%d;\n", i + 1);
2212 dc99065b bellard
        }
2213 dc99065b bellard
        fprintf(outfile, "    *gen_opc_ptr++ = INDEX_%s;\n", name);
2214 dc99065b bellard
        fprintf(outfile, "}\n\n");
2215 367e86e8 bellard
    }
2216 367e86e8 bellard
}
2217 367e86e8 bellard
2218 67b915a5 bellard
int gen_file(FILE *outfile, int out_type)
2219 367e86e8 bellard
{
2220 67b915a5 bellard
    int i;
2221 67b915a5 bellard
    EXE_SYM *sym;
2222 367e86e8 bellard
2223 d219f7e7 bellard
    if (out_type == OUT_INDEX_OP) {
2224 a513fe19 bellard
        fprintf(outfile, "DEF(end, 0, 0)\n");
2225 e477b8b8 bellard
        fprintf(outfile, "DEF(nop, 0, 0)\n");
2226 e477b8b8 bellard
        fprintf(outfile, "DEF(nop1, 1, 0)\n");
2227 e477b8b8 bellard
        fprintf(outfile, "DEF(nop2, 2, 0)\n");
2228 e477b8b8 bellard
        fprintf(outfile, "DEF(nop3, 3, 0)\n");
2229 dc99065b bellard
        for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
2230 82eec0a1 bellard
            const char *name;
2231 67b915a5 bellard
            name = get_sym_name(sym);
2232 82eec0a1 bellard
            if (strstart(name, OP_PREFIX, NULL)) {
2233 67b915a5 bellard
                gen_code(name, sym->st_value, sym->st_size, outfile, 2);
2234 dc99065b bellard
            }
2235 dc99065b bellard
        }
2236 d219f7e7 bellard
    } else if (out_type == OUT_GEN_OP) {
2237 d219f7e7 bellard
        /* generate gen_xxx functions */
2238 c4687878 bellard
        fprintf(outfile, "#include \"dyngen-op.h\"\n");
2239 d219f7e7 bellard
        for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
2240 d219f7e7 bellard
            const char *name;
2241 67b915a5 bellard
            name = get_sym_name(sym);
2242 d219f7e7 bellard
            if (strstart(name, OP_PREFIX, NULL)) {
2243 82eec0a1 bellard
#if defined(CONFIG_FORMAT_ELF) || defined(CONFIG_FORMAT_COFF)
2244 67b915a5 bellard
                if (sym->st_shndx != text_shndx)
2245 d219f7e7 bellard
                    error("invalid section for opcode (0x%x)", sym->st_shndx);
2246 82eec0a1 bellard
#endif
2247 67b915a5 bellard
                gen_code(name, sym->st_value, sym->st_size, outfile, 0);
2248 d219f7e7 bellard
            }
2249 d219f7e7 bellard
        }
2250 d219f7e7 bellard
        
2251 dc99065b bellard
    } else {
2252 dc99065b bellard
        /* generate big code generation switch */
2253 dc99065b bellard
fprintf(outfile,
2254 dc99065b bellard
"int dyngen_code(uint8_t *gen_code_buf,\n"
2255 d4e8164f bellard
"                uint16_t *label_offsets, uint16_t *jmp_offsets,\n"
2256 c4687878 bellard
"                const uint16_t *opc_buf, const uint32_t *opparam_buf, const long *gen_labels)\n"
2257 dc99065b bellard
"{\n"
2258 dc99065b bellard
"    uint8_t *gen_code_ptr;\n"
2259 dc99065b bellard
"    const uint16_t *opc_ptr;\n"
2260 ff1f20a3 bellard
"    const uint32_t *opparam_ptr;\n");
2261 ff1f20a3 bellard
2262 ff1f20a3 bellard
#ifdef HOST_ARM
2263 ff1f20a3 bellard
fprintf(outfile,
2264 ff1f20a3 bellard
"    uint8_t *last_gen_code_ptr = gen_code_buf;\n"
2265 ff1f20a3 bellard
"    LDREntry *arm_ldr_ptr = arm_ldr_table;\n"
2266 ff1f20a3 bellard
"    uint32_t *arm_data_ptr = arm_data_table;\n");
2267 ff1f20a3 bellard
#endif
2268 ff1f20a3 bellard
2269 ff1f20a3 bellard
fprintf(outfile,
2270 ff1f20a3 bellard
"\n"
2271 dc99065b bellard
"    gen_code_ptr = gen_code_buf;\n"
2272 dc99065b bellard
"    opc_ptr = opc_buf;\n"
2273 ae228531 bellard
"    opparam_ptr = opparam_buf;\n");
2274 ae228531 bellard
2275 ae228531 bellard
        /* Generate prologue, if needed. */ 
2276 ae228531 bellard
2277 ae228531 bellard
fprintf(outfile,
2278 dc99065b bellard
"    for(;;) {\n"
2279 dc99065b bellard
"        switch(*opc_ptr++) {\n"
2280 dc99065b bellard
);
2281 367e86e8 bellard
2282 dc99065b bellard
        for(i = 0, sym = symtab; i < nb_syms; i++, sym++) {
2283 dc99065b bellard
            const char *name;
2284 67b915a5 bellard
            name = get_sym_name(sym);
2285 dc99065b bellard
            if (strstart(name, OP_PREFIX, NULL)) {
2286 367e86e8 bellard
#if 0
2287 dc99065b bellard
                printf("%4d: %s pos=0x%08x len=%d\n", 
2288 dc99065b bellard
                       i, name, sym->st_value, sym->st_size);
2289 367e86e8 bellard
#endif
2290 82eec0a1 bellard
#if defined(CONFIG_FORMAT_ELF) || defined(CONFIG_FORMAT_COFF)
2291 67b915a5 bellard
                if (sym->st_shndx != text_shndx)
2292 dc99065b bellard
                    error("invalid section for opcode (0x%x)", sym->st_shndx);
2293 82eec0a1 bellard
#endif
2294 67b915a5 bellard
                gen_code(name, sym->st_value, sym->st_size, outfile, 1);
2295 dc99065b bellard
            }
2296 dc99065b bellard
        }
2297 dc99065b bellard
2298 dc99065b bellard
fprintf(outfile,
2299 8ef9a8ec bellard
"        case INDEX_op_nop:\n"
2300 8ef9a8ec bellard
"            break;\n"
2301 8ef9a8ec bellard
"        case INDEX_op_nop1:\n"
2302 8ef9a8ec bellard
"            opparam_ptr++;\n"
2303 8ef9a8ec bellard
"            break;\n"
2304 8ef9a8ec bellard
"        case INDEX_op_nop2:\n"
2305 8ef9a8ec bellard
"            opparam_ptr += 2;\n"
2306 8ef9a8ec bellard
"            break;\n"
2307 8ef9a8ec bellard
"        case INDEX_op_nop3:\n"
2308 8ef9a8ec bellard
"            opparam_ptr += 3;\n"
2309 8ef9a8ec bellard
"            break;\n"
2310 dc99065b bellard
"        default:\n"
2311 dc99065b bellard
"            goto the_end;\n"
2312 ff1f20a3 bellard
"        }\n");
2313 ff1f20a3 bellard
2314 ff1f20a3 bellard
#ifdef HOST_ARM
2315 ff1f20a3 bellard
/* generate constant table if needed */
2316 ff1f20a3 bellard
fprintf(outfile,
2317 ff1f20a3 bellard
"        if ((gen_code_ptr - last_gen_code_ptr) >= (MAX_FRAG_SIZE - MAX_OP_SIZE)) {\n"
2318 ff1f20a3 bellard
"            gen_code_ptr = arm_flush_ldr(gen_code_ptr, arm_ldr_table, arm_ldr_ptr, arm_data_table, arm_data_ptr, 1);\n"
2319 ff1f20a3 bellard
"            last_gen_code_ptr = gen_code_ptr;\n"
2320 ff1f20a3 bellard
"            arm_ldr_ptr = arm_ldr_table;\n"
2321 ff1f20a3 bellard
"            arm_data_ptr = arm_data_table;\n"
2322 ff1f20a3 bellard
"        }\n");         
2323 ff1f20a3 bellard
#endif
2324 ff1f20a3 bellard
2325 ff1f20a3 bellard
2326 ff1f20a3 bellard
fprintf(outfile,
2327 dc99065b bellard
"    }\n"
2328 dc99065b bellard
" the_end:\n"
2329 dc99065b bellard
);
2330 dc99065b bellard
2331 9621339d bellard
/* generate some code patching */ 
2332 9621339d bellard
#ifdef HOST_ARM
2333 9621339d bellard
fprintf(outfile, "gen_code_ptr = arm_flush_ldr(gen_code_ptr, arm_ldr_table, arm_ldr_ptr, arm_data_table, arm_data_ptr, 0);\n");
2334 9621339d bellard
#endif
2335 d219f7e7 bellard
    /* flush instruction cache */
2336 d219f7e7 bellard
    fprintf(outfile, "flush_icache_range((unsigned long)gen_code_buf, (unsigned long)gen_code_ptr);\n");
2337 d219f7e7 bellard
2338 dc99065b bellard
    fprintf(outfile, "return gen_code_ptr -  gen_code_buf;\n");
2339 dc99065b bellard
    fprintf(outfile, "}\n\n");
2340 dc99065b bellard
2341 367e86e8 bellard
    }
2342 367e86e8 bellard
2343 367e86e8 bellard
    return 0;
2344 367e86e8 bellard
}
2345 367e86e8 bellard
2346 367e86e8 bellard
void usage(void)
2347 367e86e8 bellard
{
2348 367e86e8 bellard
    printf("dyngen (c) 2003 Fabrice Bellard\n"
2349 dc99065b bellard
           "usage: dyngen [-o outfile] [-c] objfile\n"
2350 dc99065b bellard
           "Generate a dynamic code generator from an object file\n"
2351 dc99065b bellard
           "-c     output enum of operations\n"
2352 d219f7e7 bellard
           "-g     output gen_op_xx() functions\n"
2353 dc99065b bellard
           );
2354 367e86e8 bellard
    exit(1);
2355 367e86e8 bellard
}
2356 367e86e8 bellard
2357 367e86e8 bellard
int main(int argc, char **argv)
2358 367e86e8 bellard
{
2359 d219f7e7 bellard
    int c, out_type;
2360 367e86e8 bellard
    const char *filename, *outfilename;
2361 367e86e8 bellard
    FILE *outfile;
2362 367e86e8 bellard
2363 367e86e8 bellard
    outfilename = "out.c";
2364 d219f7e7 bellard
    out_type = OUT_CODE;
2365 367e86e8 bellard
    for(;;) {
2366 d219f7e7 bellard
        c = getopt(argc, argv, "ho:cg");
2367 367e86e8 bellard
        if (c == -1)
2368 367e86e8 bellard
            break;
2369 367e86e8 bellard
        switch(c) {
2370 367e86e8 bellard
        case 'h':
2371 367e86e8 bellard
            usage();
2372 367e86e8 bellard
            break;
2373 367e86e8 bellard
        case 'o':
2374 367e86e8 bellard
            outfilename = optarg;
2375 367e86e8 bellard
            break;
2376 dc99065b bellard
        case 'c':
2377 d219f7e7 bellard
            out_type = OUT_INDEX_OP;
2378 d219f7e7 bellard
            break;
2379 d219f7e7 bellard
        case 'g':
2380 d219f7e7 bellard
            out_type = OUT_GEN_OP;
2381 dc99065b bellard
            break;
2382 367e86e8 bellard
        }
2383 367e86e8 bellard
    }
2384 367e86e8 bellard
    if (optind >= argc)
2385 367e86e8 bellard
        usage();
2386 367e86e8 bellard
    filename = argv[optind];
2387 367e86e8 bellard
    outfile = fopen(outfilename, "w");
2388 367e86e8 bellard
    if (!outfile)
2389 367e86e8 bellard
        error("could not open '%s'", outfilename);
2390 67b915a5 bellard
2391 67b915a5 bellard
    load_object(filename);
2392 67b915a5 bellard
    gen_file(outfile, out_type);
2393 367e86e8 bellard
    fclose(outfile);
2394 367e86e8 bellard
    return 0;
2395 367e86e8 bellard
}