19f52a192c
Convert a.out to Human68k ".x" format executable.
580 lines
13 KiB
C
580 lines
13 KiB
C
/*
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* aout2hux - convert a.out executable to Human68k .x format
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*
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* Read two a.out format executables with different load addresses
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* and generate Human68k .x format executable.
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*
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* written by Yasha (ITOH Yasufumi)
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* public domain
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*
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* usage:
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* aout2hux [ -o output.x ] a.out1 loadaddr1 a.out2 loadaddr2
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*
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* The input a.out files must be static OMAGIC/NMAGIC m68k executables.
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* Two a.out files must have different loading addresses.
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* Each of the load address must be a hexadecimal number.
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* Load address shall be multiple of 4 for as / ld of NetBSD/m68k.
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*
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* example:
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* % cc -N -static -Wl,-T,0 -o aout1 *.o
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* % cc -N -static -Wl,-T,10203040 -o aout2 *.o
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* % aout2hux -o foo.x aout1 0 aout2 10203040
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*
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* $NetBSD: aout2hux.c,v 1.1 1998/09/01 19:51:08 itohy Exp $
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*/
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#include <sys/types.h>
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#ifndef NO_UNISTD
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# include <unistd.h>
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#endif
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#ifndef NO_STDLIB
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# include <stdlib.h>
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#endif
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#include <stdio.h>
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#include <string.h>
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#include "type_local.h"
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#include "aout68k.h"
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#include "hux.h"
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#ifndef DEFAULT_OUTPUT_FILE
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# define DEFAULT_OUTPUT_FILE "out.x"
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#endif
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#ifdef DEBUG
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# define DPRINTF(x) printf x
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#else
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# define DPRINTF(x)
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#endif
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unsigned get_uint16 PROTO((be_uint16_t *be));
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u_int32_t get_uint32 PROTO((be_uint32_t *be));
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void put_uint16 PROTO((be_uint16_t *be, unsigned v));
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void put_uint32 PROTO((be_uint32_t *be, u_int32_t v));
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void *do_realloc PROTO((void *p, size_t s));
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FILE *open_aout PROTO((const char *fn, struct aout_m68k *hdr));
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int check_2_aout_hdrs PROTO((struct aout_m68k *h1, struct aout_m68k *h2));
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int aout2hux PROTO((const char *fn1, const char *fn2,
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u_int32_t loadadr1, u_int32_t loadadr2, const char *fnx));
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int gethex PROTO((u_int32_t *pval, const char *str));
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void usage PROTO((const char *name));
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int main PROTO((int argc, char *argv[]));
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#if !defined(bzero) && defined(__SVR4)
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# define bzero(d, n) memset((d), 0, (n))
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#endif
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/*
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* read/write big-endian integer
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*/
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unsigned
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get_uint16(be)
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be_uint16_t *be;
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{
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return be->val[0] << 8 | be->val[1];
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}
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u_int32_t
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get_uint32(be)
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be_uint32_t *be;
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{
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return be->val[0]<<24 | be->val[1]<<16 | be->val[2]<<8 | be->val[3];
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}
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void
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put_uint16(be, v)
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be_uint16_t *be;
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unsigned v;
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{
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be->val[0] = (u_int8_t) (v >> 8);
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be->val[1] = (u_int8_t) v;
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}
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void
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put_uint32(be, v)
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be_uint32_t *be;
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u_int32_t v;
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{
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be->val[0] = (u_int8_t) (v >> 24);
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be->val[1] = (u_int8_t) (v >> 16);
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be->val[2] = (u_int8_t) (v >> 8);
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be->val[3] = (u_int8_t) v;
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}
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void *
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do_realloc(p, s)
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void *p;
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size_t s;
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{
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p = p ? realloc(p, s) : malloc(s); /* for portability */
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if (!p) {
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fprintf(stderr, "malloc failed\n");
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exit(1);
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}
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return p;
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}
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/*
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* open an a.out and check the header
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*/
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FILE *
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open_aout(fn, hdr)
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const char *fn;
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struct aout_m68k *hdr;
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{
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FILE *fp;
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int i;
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if (!(fp = fopen(fn, "r"))) {
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perror(fn);
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return (FILE *) NULL;
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}
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if (fread(hdr, sizeof(struct aout_m68k), 1, fp) != 1) {
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fprintf(stderr, "%s: can't read a.out header\n", fn);
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goto out;
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}
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if ((i = AOUT_GET_MAGIC(hdr)) != AOUT_OMAGIC && i != AOUT_NMAGIC) {
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fprintf(stderr, "%s: not a OMAGIC or NMAGIC a.out\n", fn);
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goto out;
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}
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if ((i = AOUT_GET_MID(hdr)) != AOUT_MID_M68K && i != AOUT_MID_M68K4K) {
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fprintf(stderr, "%s: wrong architecture (mid %d)\n", fn, i);
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goto out;
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}
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/* if unsolved relocations exist, not an executable but an object */
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if (hdr->a_trsize.hostval || hdr->a_drsize.hostval) {
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fprintf(stderr, "%s: not an executable (object file?)\n", fn);
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goto out;
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}
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if (AOUT_GET_FLAGS(hdr) & (AOUT_FLAG_PIC | AOUT_FLAG_DYNAMIC)) {
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fprintf(stderr, "%s: PIC and DYNAMIC are not supported\n", fn);
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goto out;
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}
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/* OK! */
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return fp;
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out: fclose(fp);
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return (FILE *) NULL;
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}
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/*
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* look at two a.out headers and check if they are compatible
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*/
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int
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check_2_aout_hdrs(h1, h2)
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struct aout_m68k *h1, *h2;
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{
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if (/* compare magic */
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h1->a_magic.hostval != h2->a_magic.hostval ||
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/* compare section size */
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h1->a_text.hostval != h2->a_text.hostval ||
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h1->a_data.hostval != h2->a_data.hostval ||
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h1->a_bss.hostval != h2->a_bss.hostval)
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return -1;
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return 0;
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}
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/* allocation unit (in bytes) of relocation table */
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#define RELTBL_CHUNK 8192
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/*
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* add an entry to the relocation table
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*/
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#define ADD_RELTBL(adr) \
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if (relsize + sizeof(struct relinf_l) > relallocsize) \
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reltbl = do_realloc(reltbl, relallocsize += RELTBL_CHUNK); \
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if ((adr) < reladdr + HUX_MINLREL) { \
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struct relinf_s *r = (struct relinf_s *)(reltbl + relsize); \
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put_uint16(&r->locoff_s, (unsigned)((adr) - reladdr)); \
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relsize += sizeof(struct relinf_s); \
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DPRINTF(("short")); \
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} else { \
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struct relinf_l *r = (struct relinf_l *)(reltbl + relsize); \
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put_uint16(&r->lrelmag, HUXLRELMAGIC); \
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put_uint32((be_uint32_t *)r->locoff_l, (adr) - reladdr); \
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relsize += sizeof(struct relinf_l); \
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DPRINTF(("long ")); \
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} \
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DPRINTF((" reloc 0x%06x", (adr))); \
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reladdr = (adr);
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#define ERR1 { if (ferror(fpa1)) perror(fn1); \
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else fprintf(stderr, "%s: unexpected EOF\n", fn1); \
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goto out; }
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#define ERR2 { if (ferror(fpa2)) perror(fn2); \
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else fprintf(stderr, "%s: unexpected EOF\n", fn2); \
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goto out; }
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#define ERRC { fprintf(stderr, "files %s and %s are inconsistent\n", \
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fn1, fn2); \
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goto out; }
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/*
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* read a.out files and output .x body
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* and create relocation table
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*/
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#define CREATE_RELOCATION(segsize) \
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while (segsize > 0 || nbuf) { \
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if (nbuf == 0) { \
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if (fread(&b1.half[0], SIZE_16, 1, fpa1) != 1) \
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ERR1 \
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if (fread(&b2.half[0], SIZE_16, 1, fpa2) != 1) \
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ERR2 \
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nbuf = 1; \
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segsize -= SIZE_16; \
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} else if (nbuf == 1) { \
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if (segsize == 0) { \
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if (b1.half[0].hostval != b2.half[0].hostval) \
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ERRC \
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fwrite(&b1.half[0], SIZE_16, 1, fpx); \
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nbuf = 0; \
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addr += SIZE_16; \
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} else { \
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if (fread(&b1.half[1], SIZE_16, 1, fpa1) != 1)\
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ERR1 \
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if (fread(&b2.half[1], SIZE_16, 1, fpa2) != 1)\
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ERR2 \
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nbuf = 2; \
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segsize -= SIZE_16; \
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} \
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} else /* if (nbuf == 2) */ { \
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if (b1.hostval != b2.hostval && \
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get_uint32(&b1) - loadadr1 \
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== get_uint32(&b2) - loadadr2) {\
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/* do relocation */ \
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ADD_RELTBL(addr) \
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\
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put_uint32(&b1, get_uint32(&b1) - loadadr1); \
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DPRINTF((" v 0x%08x\t", get_uint32(&b1))); \
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fwrite(&b1, SIZE_32, 1, fpx); \
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nbuf = 0; \
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addr += SIZE_32; \
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} else if (b1.half[0].hostval == b2.half[0].hostval) {\
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fwrite(&b1.half[0], SIZE_16, 1, fpx); \
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addr += SIZE_16; \
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b1.half[0] = b1.half[1]; \
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b2.half[0] = b2.half[1]; \
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nbuf = 1; \
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} else \
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ERRC \
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} \
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}
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int
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aout2hux(fn1, fn2, loadadr1, loadadr2, fnx)
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const char *fn1, *fn2, *fnx;
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u_int32_t loadadr1, loadadr2;
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{
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int status = 1; /* the default is "failed" */
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FILE *fpa1 = NULL, *fpa2 = NULL;
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struct aout_m68k hdr1, hdr2;
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FILE *fpx = NULL;
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struct huxhdr xhdr;
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u_int32_t textsize, datasize, pagesize, paddingsize, execoff;
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/* for relocation */
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be_uint32_t b1, b2;
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int nbuf;
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u_int32_t addr;
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/* for relocation table */
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size_t relsize, relallocsize;
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u_int32_t reladdr;
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char *reltbl = NULL;
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/*
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* check load addresses
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*/
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if (loadadr1 == loadadr2) {
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fprintf(stderr, "two load addresses must be different\n");
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return 1;
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}
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/*
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* open a.out files and check the headers
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*/
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if (!(fpa1 = open_aout(fn1, &hdr1)) || !(fpa2 = open_aout(fn2, &hdr2)))
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goto out;
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/*
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* check for consistency
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*/
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if (check_2_aout_hdrs(&hdr1, &hdr2)) {
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fprintf(stderr, "files %s and %s are incompatible\n",
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fn1, fn2);
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goto out;
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}
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/* check entry address */
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if (get_uint32(&hdr1.a_entry) - loadadr1 !=
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get_uint32(&hdr2.a_entry) - loadadr2) {
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fprintf(stderr, "address of %s or %s may be incorrect\n",
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fn1, fn2);
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goto out;
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}
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/*
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* get information from a.out header
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*/
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textsize = get_uint32(&hdr1.a_text);
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pagesize = AOUT_PAGESIZE(&hdr1);
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paddingsize = ((textsize + pagesize - 1) & ~(pagesize - 1)) - textsize;
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datasize = get_uint32(&hdr1.a_data);
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execoff = get_uint32(&hdr1.a_entry) - loadadr1;
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DPRINTF(("text: %u, data: %u, page: %u, pad: %u, bss: %u, exec: %u\n",
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textsize, datasize, pagesize, paddingsize,
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get_uint32(&hdr1.a_bss), execoff));
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if (textsize & 1) {
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fprintf(stderr, "text size is not even\n");
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goto out;
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}
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if (datasize & 1) {
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fprintf(stderr, "data size is not even\n");
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goto out;
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}
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if (execoff >= textsize &&
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(execoff < textsize + paddingsize ||
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execoff >= textsize + paddingsize + datasize)) {
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fprintf(stderr, "exec addr is not in text or data segment\n");
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goto out;
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}
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/*
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* prepare for .x header
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*/
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bzero((void *) &xhdr, sizeof xhdr);
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put_uint16(&xhdr.x_magic, HUXMAGIC);
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put_uint32(&xhdr.x_entry, execoff);
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put_uint32(&xhdr.x_text, textsize + paddingsize);
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xhdr.x_data.hostval = hdr1.a_data.hostval;
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xhdr.x_bss.hostval = hdr1.a_bss.hostval;
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/*
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* create output file
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*/
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if (!(fpx = fopen(fnx, "w")) ||
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fseek(fpx, (off_t) sizeof xhdr, SEEK_SET)) { /* skip header */
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perror(fnx);
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goto out;
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}
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addr = 0;
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nbuf = 0;
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relsize = relallocsize = 0;
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reladdr = 0;
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/*
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* text segment
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*/
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CREATE_RELOCATION(textsize)
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/*
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* page boundary
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*/
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addr += paddingsize;
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while (paddingsize--)
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putc('\0', fpx);
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/*
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* data segment
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*/
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CREATE_RELOCATION(datasize)
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/*
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* error check of the above
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*/
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if (ferror(fpx)) {
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fprintf(stderr, "%s: write failure\n", fnx);
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goto out;
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}
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/*
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* write relocation table
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*/
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if (relsize > 0) {
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DPRINTF(("\n"));
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if (fwrite(reltbl, 1, relsize, fpx) != relsize) {
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perror(fnx);
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goto out;
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}
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}
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/*
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* write .x header at the top of the output file
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*/
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put_uint32(&xhdr.x_rsize, relsize);
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if (fseek(fpx, (off_t) 0, SEEK_SET) ||
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fwrite(&xhdr, sizeof xhdr, 1, fpx) != 1) {
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perror(fnx);
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goto out;
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}
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status = 0; /* all OK */
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out: /*
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* cleanup
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*/
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if (fpa1)
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fclose(fpa1);
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if (fpa2)
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fclose(fpa2);
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if (fpx) {
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if (fclose(fpx) && status == 0) {
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/* Alas, final flush failed! */
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perror(fnx);
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status = 1;
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}
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if (status)
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remove(fnx);
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}
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if (reltbl)
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free(reltbl);
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return status;
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}
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#ifndef NO_BIST
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void bist PROTO((void));
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/*
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* built-in self test
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*/
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void
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bist()
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{
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be_uint16_t be16;
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be_uint32_t be32;
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be_uint32_t be32x2[2];
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be16.val[0] = 0x12; be16.val[1] = 0x34;
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be32.val[0] = 0xfe; be32.val[1] = 0xdc;
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be32.val[2] = 0xba; be32.val[3] = 0x98;
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put_uint16(&be32x2[0].half[1], 0x4567);
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put_uint32(&be32x2[1], 0xa9876543);
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if (sizeof(u_int8_t) != 1 || sizeof(u_int16_t) != 2 ||
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sizeof(u_int32_t) != 4 ||
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SIZE_16 != 2 || SIZE_32 != 4 || sizeof be32x2 != 8 ||
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sizeof(struct relinf_s) != 2 || sizeof(struct relinf_l) != 6 ||
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get_uint16(&be16) != 0x1234 || get_uint32(&be32) != 0xfedcba98 ||
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get_uint16(&be32x2[0].half[1]) != 0x4567 ||
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get_uint32(&be32x2[1]) != 0xa9876543) {
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fprintf(stderr, "BIST failed\n");
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exit(1);
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}
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}
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#endif
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int
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gethex(pval, str)
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u_int32_t *pval;
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const char *str;
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{
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const unsigned char *p = (const unsigned char *) str;
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u_int32_t val;
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int over;
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/* skip leading "0x" if exists */
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if (p[0] == '0' && (p[1] == 'x' || p[1] == 'X'))
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p += 2;
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if (!*p)
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goto bad;
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for (val = 0, over = 0; *p; p++) {
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int digit;
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switch (*p) {
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case '0': case '1': case '2': case '3': case '4':
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case '5': case '6': case '7': case '8': case '9':
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|
digit = *p - '0';
|
|
break;
|
|
case 'a': case 'A': digit = 10; break;
|
|
case 'b': case 'B': digit = 11; break;
|
|
case 'c': case 'C': digit = 12; break;
|
|
case 'd': case 'D': digit = 13; break;
|
|
case 'e': case 'E': digit = 14; break;
|
|
case 'f': case 'F': digit = 15; break;
|
|
default:
|
|
goto bad;
|
|
}
|
|
if (val >= 0x10000000 && !over)
|
|
over = 1;
|
|
val = (val << 4) | digit;
|
|
}
|
|
|
|
if (over)
|
|
fprintf(stderr, "warning: %s: constant overflow\n", str);
|
|
|
|
*pval = val;
|
|
|
|
DPRINTF(("gethex: %s -> 0x%x\n", str, val));
|
|
|
|
return 0;
|
|
|
|
bad:
|
|
fprintf(stderr, "%s: not a hexadecimal number\n", str);
|
|
return 1;
|
|
}
|
|
|
|
void
|
|
usage(name)
|
|
const char *name;
|
|
{
|
|
|
|
fprintf(stderr, "\
|
|
usage: %s [ -o output.x ] a.out1 loadaddr1 a.out2 loadaddr2\n\n\
|
|
The input a.out files must be static OMAGIC/NMAGIC m68k executable.\n\
|
|
Two a.out files must have different loading addresses.\n\
|
|
Each of the load address must be a hexadecimal number.\n\
|
|
The default output filename is \"%s\".\n" ,name, DEFAULT_OUTPUT_FILE);
|
|
|
|
exit(1);
|
|
}
|
|
|
|
int
|
|
main(argc, argv)
|
|
int argc;
|
|
char *argv[];
|
|
{
|
|
const char *outfile = DEFAULT_OUTPUT_FILE;
|
|
u_int32_t adr1, adr2;
|
|
|
|
#ifndef NO_BIST
|
|
bist();
|
|
#endif
|
|
|
|
if (argc > 2 && argv[1][0] == '-' && argv[1][1] == 'o' && !argv[1][2]) {
|
|
outfile = argv[2];
|
|
argv += 2;
|
|
argc -= 2;
|
|
}
|
|
|
|
if (argc != 5)
|
|
usage(argv[0]);
|
|
|
|
if (gethex(&adr1, argv[2]) || gethex(&adr2, argv[4]))
|
|
usage(argv[0]);
|
|
|
|
return aout2hux(argv[1], argv[3], adr1, adr2, outfile);
|
|
}
|