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[/] [or1k/] [tags/] [nog_patch_47/] [or1ksim/] [cpu/] [common/] [parse.c] - Blame information for rev 848

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Line No. Rev Author Line
1 138 markom
/* parce.c -- Architecture independent load
2 2 cvs
   Copyright (C) 1999 Damjan Lampret, lampret@opencores.org
3
 
4
This file is part of OpenRISC 1000 Architectural Simulator.
5
 
6
This program is free software; you can redistribute it and/or modify
7
it under the terms of the GNU General Public License as published by
8
the Free Software Foundation; either version 2 of the License, or
9
(at your option) any later version.
10
 
11
This program is distributed in the hope that it will be useful,
12
but WITHOUT ANY WARRANTY; without even the implied warranty of
13
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14
GNU General Public License for more details.
15
 
16
You should have received a copy of the GNU General Public License
17
along with this program; if not, write to the Free Software
18
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
19
 
20
#include <stdio.h>
21
#include <ctype.h>
22
#include <string.h>
23
#include <stdlib.h>
24
 
25
#include "abstract.h"
26 18 lampret
#include "arch.h"
27 67 lampret
#include "dmmu.h"
28 28 lampret
#include "coff.h"
29 808 simons
#include "elf.h"
30 138 markom
#include "debug_unit.h"
31 134 markom
#include "opcode/or32.h"
32 138 markom
#include "parse.h"
33 242 markom
#include "sim-config.h"
34 2 cvs
 
35 221 markom
#define MEMORY_LEN 0x100000000
36 361 markom
#define MAXLINE_LEN 18000
37 2 cvs
 
38 694 markom
/* Whether to do immediate statistics */
39
#define IMM_STATS 0
40
 
41 28 lampret
extern char *disassembled;
42
 
43 2 cvs
/* Unused mem memory marker. It is used when allocating program and data memory
44
   during parsing */
45
unsigned int freemem;
46
 
47 67 lampret
/* Translation table provided by microkernel. Only used if simulating microkernel. */
48
static unsigned long transl_table;
49
 
50
/* Used to signal whether during loading of programs a translation fault occured. */
51
static unsigned long transl_error;
52
 
53
 
54 2 cvs
char *strtoken(char *in, char *out, int which)
55
{
56 361 markom
  char  *super;
57
  char  *sub;
58
  char  *newline;
59
 
60
  super = strdup(in);
61
  sub = strtok(super, " \t");
62
  while (sub && --which)
63
    sub = strtok(NULL, " \t");
64
  if (sub && !which) {
65
    if ((newline = strchr(sub, '\n')))
66
      newline[0] = '\0';
67
    strcpy(out, sub);
68
  } else
69
    out[0] = '\0';
70
  free(super);
71
  if ((newline = strchr(out, '\r')))  /* get rid of CR */
72
    newline[0] = '\0';
73
  return(out);
74 2 cvs
}
75
 
76 304 markom
char *
77
stripwhite (string)
78
     char *string;
79
{
80
  register char *s, *t;
81
 
82
  for (s = string; whitespace (*s); s++)
83
    ;
84
 
85
  if (*s == 0)
86
    return (s);
87
 
88
  t = s + strlen (s) - 1;
89
  while (t > s && whitespace (*t))
90
    t--;
91
  *++t = '\0';
92
 
93
  return s;
94
}
95
 
96
char *
97
dupstr (s)
98
     char *s;
99
{
100
  char *r;
101
 
102 306 markom
  r = (char *)malloc (strlen (s) + 1);
103 304 markom
  strcpy (r, s);
104
  return (r);
105
}
106
 
107 848 markom
/* Parses string line and puts up to maxparam parameters into argv[]; number of parameters is returned */
108
int tokenize_line (char *str, char *argv[], int maxparam)
109
{
110
  int i, param = 0;
111
  str = stripwhite (str);
112
  while (*str) {
113
    char *p;
114
    argv[param] = str;
115
    while (*str && !isblank (*str)) str++;
116
    param++;
117
    p = str;
118
    if (param >= maxparam) break;
119
    while (*str && isblank (*str)) str++;
120
    *p = 0;
121
  }
122
  for (i = 0; i < param; i++) argv[i] = stripwhite (argv[i]);
123
  return param;
124
}
125
 
126 221 markom
/* Used only by the simulator loader to translate logical addresses into physical.
127 67 lampret
   If loadcode() is called with valid virtphy_transl pointer to a table of
128
   translations then translate() performs translation otherwise phy address is
129
   equal to logical. */
130 123 markom
static unsigned int translate(unsigned int laddr,int* breakpoint)
131 67 lampret
{
132 361 markom
  int i;
133
 
134
  /* No translation (i.e. when loading kernel into simulator)
135
/*  printf("transl_table=%x  laddr=%x\n", transl_table, laddr);
136
  printf("laddr=%x\n", laddr);*/
137
  if (transl_table == 0)
138
    return laddr;
139
 
140
  /* Try to find our translation in the table. */
141
  for(i = 0; i < (MEMORY_LEN / PAGE_SIZE) * 16; i += 16)
142
    if ((laddr & ~(PAGE_SIZE - 1)) == evalsim_mem32(transl_table + i)) {
143
      setsim_mem32(transl_table + i + 8, -2); /* Page modified */
144
      printf("found paddr=%x\n", evalsim_mem32(transl_table + i + 4) | (laddr & (PAGE_SIZE - 1)));
145
      return (unsigned long)evalsim_mem32(transl_table + i + 4) | (laddr & (unsigned long)(PAGE_SIZE - 1));
146
    }
147 67 lampret
 
148 361 markom
  /* Allocate new phy page for us. */
149
  for(i = 0; i < (MEMORY_LEN / PAGE_SIZE) * 16; i += 16)
150
    if (evalsim_mem32(transl_table + i + 8) == 0) {
151
      setsim_mem32(transl_table + i, laddr & ~(PAGE_SIZE - 1)); /* VPN */
152
      setsim_mem32(transl_table + i + 4, (i/16) * PAGE_SIZE); /* PPN */
153
      setsim_mem32(transl_table + i + 8, -2); /* Page modified */
154
      printf("newly allocated ppn=%x\n", (unsigned long)evalsim_mem32(transl_table + i + 4));
155
      printf("newly allocated .ppn=%x\n", (unsigned long)transl_table + i + 4);
156
      printf("newly allocated ofs=%x\n", (unsigned long)(laddr & (PAGE_SIZE - 1)));
157
      printf("newly allocated paddr=%x\n", (unsigned long)evalsim_mem32(transl_table + i + 4) | (laddr & (PAGE_SIZE - 1)));
158
      return (unsigned long)evalsim_mem32(transl_table + i + 4) | (laddr & (unsigned long)(PAGE_SIZE - 1));
159
    }
160
  /* If we come this far then all phy memory is used and we can't find our page
161
     nor allocate new page. */
162
  transl_error = 1;
163
 
164
  printf("can't translate\n", laddr);
165
  exit(1);
166
  return -1;
167 67 lampret
}
168
 
169 694 markom
#if IMM_STATS
170 703 markom
int bcnt[33][3] = {0};
171
int bsum[3] = {0};
172
unsigned long movhi = 0;
173 694 markom
 
174
int bits (unsigned long val) {
175
  int i = 1;
176
  if (!val) return 0;
177 703 markom
  while (val != 0 && (signed long)val != -1) {i++; val = (signed long)val >> 1;}
178 694 markom
  return i;
179
}
180
 
181
void check_insn (unsigned long insn) {
182
  int insn_index = insn_decode (insn);
183
  struct insn_op_struct *opd = op_start[insn_index];
184
  unsigned long data = 0;
185
  int dis = 0;
186 703 markom
  const char *name;
187 694 markom
  if (!insn || insn_index < 0) return;
188
  name = insn_name (insn_index);
189 703 markom
  if (strcmp (name, "l.nop") == 0 || strcmp (name, "l.sys") == 0) return;
190 694 markom
 
191
  while (1)
192
    {
193
      unsigned long tmp = 0, nbits = 0;
194
      while (1)
195
        {
196
          tmp |= ((insn  >> (opd->type & OPTYPE_SHR)) & ((1 << opd->data) - 1)) << nbits;
197
          nbits += opd->data;
198
          if (opd->type & OPTYPE_OP)
199
            break;
200
          opd++;
201
        }
202
 
203
      /* Do we have to sign extend? */
204
      if (opd->type & OPTYPE_SIG)
205
        {
206
          int sbit = (opd->type & OPTYPE_SBIT) >> OPTYPE_SBIT_SHR;
207
          if (tmp & (1 << sbit))
208
            tmp |= 0xFFFFFFFF << sbit;
209
        }
210
      if (opd->type & OPTYPE_DIS) {
211
        /* We have to read register later.  */
212
        data += tmp;
213
        dis = 1;
214
      } else
215
        {
216
          if (!(opd->type & OPTYPE_REG) || dis) {
217
            if (!dis) data = tmp;
218 703 markom
            if (strcmp (name, "l.movhi") == 0) {
219
              movhi = data << 16;
220
            } else {
221
              data |= movhi;
222
              //printf ("%08x %s\n", data, name);
223
              if (!(or32_opcodes[insn_index].flags & OR32_IF_DELAY)) {
224
                bcnt[bits(data)][0]++; bsum[0]++;
225
              } else {
226
                if (strcmp (name, "l.bf") == 0 || strcmp (name, "l.bnf") == 0) {
227
                  bcnt[bits(data)][1]++; bsum[1]++;
228
                } else {
229
                  bcnt[bits(data)][2]++; bsum[2]++;
230
                }
231
              }
232
            }
233 694 markom
          }
234
          data = 0;
235
          dis = 0;
236
        }
237
      if(opd->type & OPTYPE_LAST) {
238
        return;
239
      }
240
      opd++;
241
    }
242
}
243
#endif
244
 
245 28 lampret
char null_str[1] = "\0";
246
 
247 123 markom
/* Replaced several calls to translate(freemem) with vaddr */
248
/* Added new mode execution code */
249
/* Changed parameters so address can be passed as argument */
250 138 markom
void addprogram(unsigned long address, unsigned long insn, int* breakpoint)
251 2 cvs
{
252 138 markom
  char insn_first2_char[3];
253 361 markom
  int vaddr = (!runtime.sim.filename) ? translate(address,breakpoint) : translate(freemem,breakpoint);
254 138 markom
 
255
  setsim_mem32 (vaddr, insn);
256 694 markom
#if IMM_STATS
257
  check_insn (insn);
258
#endif
259 361 markom
  if(runtime.sim.filename)
260 138 markom
    freemem += insn_len (insn_decode (insn));
261 2 cvs
}
262
 
263 694 markom
/* Load big-endian COFF file.  */
264 28 lampret
 
265
void readfile_coff(char *filename, short sections)
266
{
267 361 markom
  FILE *inputfs;
268
  char inputbuf[4];
269
  unsigned long insn;
270
  signed long sectsize;
271
  COFF_AOUTHDR coffaouthdr;
272
  struct COFF_scnhdr coffscnhdr;
273
  int  len;
274
  char item[MAXLINE_LEN];
275
  char item2[MAXLINE_LEN];
276
  int  firstthree = 0;
277
  int breakpoint = 0;
278 123 markom
 
279 361 markom
  if (!(inputfs = fopen(filename, "r"))) {
280
    perror("readfile_coff");
281
    exit(1);
282
  }
283 28 lampret
 
284 361 markom
  if (fseek(inputfs, sizeof(struct COFF_filehdr), SEEK_SET) == -1) {
285
    fclose(inputfs);
286
    perror("readfile_coff");
287
    exit(1);
288
  }
289 28 lampret
 
290 361 markom
  if (fread(&coffaouthdr, sizeof(coffaouthdr), 1, inputfs) != 1) {
291
    fclose(inputfs);
292
    perror("readfile_coff");
293
    exit(1);
294
  }
295
 
296
  while(sections--) {
297
    long scnhdr_pos = sizeof(struct COFF_filehdr) + sizeof(coffaouthdr)
298
        + sizeof(struct COFF_scnhdr) * firstthree;
299
    if (fseek(inputfs, scnhdr_pos, SEEK_SET) == -1) {
300
      fclose(inputfs);
301
      perror("readfile_coff");
302
      exit(1);
303
    }
304
    if (fread(&coffscnhdr, sizeof(struct COFF_scnhdr), 1, inputfs) != 1) {
305
      fclose(inputfs);
306
      perror("readfile_coff");
307
      exit(1);
308
    }
309
    printf("Section: %s,", coffscnhdr.s_name);
310
    printf(" paddr: 0x%.8x,", COFF_LONG_H(coffscnhdr.s_paddr));
311
    printf(" vaddr: 0x%.8x,", COFF_LONG_H(coffscnhdr.s_vaddr));
312
    printf(" size: 0x%.8x,", COFF_LONG_H(coffscnhdr.s_size));
313
    printf(" scnptr: 0x%.8x\n", COFF_LONG_H(coffscnhdr.s_scnptr));
314
 
315
    sectsize = COFF_LONG_H(coffscnhdr.s_size);
316 221 markom
#if 0
317 361 markom
    /* A couple of sanity checks. */
318
    if (translate(COFF_LONG_H(coffscnhdr.s_vaddr),&breakpoint) < MEMORY_START) {
319
      printf("Section %s starts out of ", coffscnhdr.s_name);
320
      printf("memory (at %x)\n", COFF_LONG_H(coffscnhdr.s_vaddr));
321
      exit(1);
322
    }
323
    if (translate(COFF_LONG_H(coffscnhdr.s_vaddr) + sectsize,&breakpoint) >
324
        MEMORY_START + MEMORY_LEN) {
325
      printf("Section %s ends out of ", coffscnhdr.s_name);
326
      printf("memory.\n");
327
      exit(1);
328
    }
329 221 markom
#endif
330 167 markom
#if 0
331 361 markom
    if (++firstthree == 1 && strcmp(coffscnhdr.s_name, ".text") != 0) {
332
      printf("First section should be .text (%s instead)\n", coffscnhdr.s_name);
333
      exit(1);
334
    }
335
    if (firstthree == 2 && strcmp(coffscnhdr.s_name, ".data") != 0) {
336
      printf("Second section should be .data (%s instead)\n", coffscnhdr.s_name);
337
      exit(1);
338
    }
339
    if (firstthree == 3 && strcmp(coffscnhdr.s_name, ".bss") != 0) {
340
      printf("Third section should be .bss (%s instead)\n", coffscnhdr.s_name);
341
      exit(1);
342
    }
343 167 markom
#else
344 361 markom
    ++firstthree;
345 167 markom
#endif
346 28 lampret
 
347 361 markom
    /* loading section */
348
    freemem = COFF_LONG_H(coffscnhdr.s_paddr);
349
    debug(2,"Starting to load at 0x%x\n", freemem);
350
    if (fseek(inputfs, COFF_LONG_H(coffscnhdr.s_scnptr), SEEK_SET) == -1) {
351
      fclose(inputfs);
352
      perror("readfile_coff");
353
      exit(1);
354
    }
355
    while (sectsize > 0 && (len = fread(&inputbuf, sizeof(inputbuf), 1, inputfs))) {
356
      insn = COFF_LONG_H(inputbuf);
357
      len = insn_len (insn_decode (insn));
358
      if (len == 2)
359
        {
360
          fseek(inputfs, -2, SEEK_CUR);
361
          debug(8,"readfile_coff: %x 0x%x   \n", sectsize, insn >> 16);
362
        }
363
      else
364
        debug(8,"readfile_coff: %x 0x%x   \n", sectsize, insn);
365
      addprogram (freemem, insn, &breakpoint);
366
      sectsize -= len;
367
    }
368
  }
369
  if (firstthree < 3) {
370
    printf("One or more missing sections. At least");
371
    printf(" three sections expected (.text, .data, .bss).\n");
372
    exit(1);
373
  }
374
  if (firstthree > 3) {
375
    printf("Warning: one or more extra sections. These");
376
    printf(" sections were handled as .data sections.\n");
377
  }
378 41 lampret
 
379 361 markom
  fclose(inputfs);
380
  printf("Finished loading COFF.\n");
381
  return;
382 28 lampret
}
383
 
384
/* Load symbols from big-endian COFF file. */
385
 
386
void readsyms_coff(char *filename, unsigned long symptr, long syms)
387
{
388 173 markom
  FILE *inputfs;
389
  struct COFF_syment coffsymhdr;
390
  int breakpoint = 0;
391
  int count = 0;
392
  long nsyms = syms;
393
  if (!(inputfs = fopen(filename, "r"))) {
394
    perror("readsyms_coff");
395
    exit(1);
396
  }
397
 
398
  if (fseek(inputfs, symptr, SEEK_SET) == -1) {
399
    fclose(inputfs);
400
    perror("readsyms_coff");
401
    exit(1);
402
  }
403
 
404
  while(syms--) {
405
    int i, n;
406
    if (fread(&coffsymhdr, COFF_SYMESZ, 1, inputfs) != 1) {
407
      fclose(inputfs);
408
      perror("readsyms_coff");
409
      exit(1);
410
    }
411
 
412
    n = (unsigned char)coffsymhdr.e_numaux[0];
413 513 markom
 
414
    /* check whether this symbol belongs to a section and is external symbol; ignore all others */
415
    if (COFF_SHORT_H(coffsymhdr.e_scnum) >= 0 && coffsymhdr.e_sclass[0] == C_EXT) {
416
#if 0
417 173 markom
    /* If not important or not in text, skip. */
418 513 markom
    if(COFF_SHORT_H(coffsymhdr.e_type) & COFF_N_TMASK & COFF_STYP_TEXT) {
419
#endif
420
 
421 173 markom
      if (*((unsigned long *)coffsymhdr.e.e.e_zeroes)) {
422 513 markom
        if (strlen(coffsymhdr.e.e_name) && strlen(coffsymhdr.e.e_name) < 9)
423
          add_label(COFF_LONG_H(coffsymhdr.e_value), coffsymhdr.e.e_name);
424
        debug(8, "[%i] Symbol: %s,", count++, coffsymhdr.e.e_name);
425 173 markom
      } else {
426 513 markom
        long fpos = ftell (inputfs);
427 361 markom
 
428 513 markom
        if (fseek(inputfs, symptr + nsyms * COFF_SYMESZ + COFF_LONG_H(coffsymhdr.e.e.e_offset), SEEK_SET) == 0) {
429
          char tmp[33], *s = &tmp[0];
430
          while (s != &tmp[32])
431
            if ((*(s++) = fgetc(inputfs)) == 0) break;
432
          tmp[32] = 0;
433
          add_label(COFF_LONG_H(coffsymhdr.e_value), &tmp[0]);
434
          debug(8, "[%i] Symbol: %s,", count++, &tmp[0]);
435
        }
436
        fseek(inputfs, fpos, SEEK_SET);
437 173 markom
      }
438
 
439 344 markom
      debug(9, " val: 0x%.8x,", COFF_LONG_H(coffsymhdr.e_value));
440
      debug(9, " type: %x, %x, auxs: %i\n", COFF_SHORT_H(coffsymhdr.e_type), *((unsigned short *)coffsymhdr.e_type), n);
441 173 markom
    }
442 28 lampret
 
443 173 markom
    for (i = 0; i < n; i++)
444
      if (fread(&coffsymhdr, COFF_SYMESZ, 1, inputfs) != 1) {
445 513 markom
        fclose(inputfs);
446
        perror("readsyms_coff3");
447
        exit(1);
448 173 markom
      }
449
    syms -= n;
450
    count += n;
451
  }
452 28 lampret
 
453 173 markom
  fclose(inputfs);
454
  printf("Finished loading symbols.\n");
455
  return;
456 28 lampret
}
457
 
458 808 simons
void readfile_elf(char *filename)
459
{
460
 
461
  FILE *inputfs;
462
  struct elf32_hdr elfhdr;
463
  struct elf32_phdr *elf_phdata;
464
  struct elf32_shdr *elf_spnt, *elf_shdata;
465
  struct elf32_sym *sym_tbl = (struct elf32_sym *)0;
466
  unsigned long syms = 0;
467
  char *str_tbl = (char *)0;
468
  char *s_str = (char *)0;
469
  int breakpoint = 0;
470
  unsigned long inputbuf;
471
  unsigned long insn, padd;
472
  int i, j, sectsize, len;
473
 
474
  if (!(inputfs = fopen(filename, "r"))) {
475
    perror("readfile_elf");
476
    exit(1);
477
  }
478
 
479
  if (fread(&elfhdr, sizeof(elfhdr), 1, inputfs) != 1) {
480
    perror("readfile_elf");
481
    exit(1);
482
  }
483
 
484
  if ((elf_shdata = (struct elf32_shdr *)malloc(ELF_SHORT_H(elfhdr.e_shentsize) * ELF_SHORT_H(elfhdr.e_shnum))) == NULL) {
485
     perror("readfile_elf");
486
     exit(1);
487
  }
488
 
489
  if (fseek(inputfs, ELF_LONG_H(elfhdr.e_shoff), SEEK_SET) != 0) {
490
    perror("readfile_elf");
491
    exit(1);
492
  }
493
 
494
  if (fread(elf_shdata, ELF_SHORT_H(elfhdr.e_shentsize) * ELF_SHORT_H(elfhdr.e_shnum), 1, inputfs) != 1) {
495
    perror("readfile_elf");
496
    exit(1);
497
  }
498
 
499
  if (ELF_LONG_H(elfhdr.e_phoff)) {
500
 
501
    if((elf_phdata = (struct elf32_phdr *)malloc(ELF_SHORT_H(elfhdr.e_phnum) * ELF_SHORT_H(elfhdr.e_phentsize))) == NULL) {
502
      perror("readfile_elf");
503
      exit(1);
504
    }
505
 
506
    if (fseek(inputfs, ELF_LONG_H(elfhdr.e_phoff), SEEK_SET) != 0) {
507
      perror("readfile_elf");
508
      exit(1);
509
    }
510
 
511
    if (fread(elf_phdata, ELF_SHORT_H(elfhdr.e_phnum) * ELF_SHORT_H(elfhdr.e_phentsize), 1, inputfs) != 1) {
512
      perror("readfile_elf");
513
      exit(1);
514
    }
515
  }
516
 
517
  for(i = 0, elf_spnt = elf_shdata; i < ELF_SHORT_H(elfhdr.e_shnum); i++, elf_spnt++) {
518
 
519
    if(ELF_LONG_H(elf_spnt->sh_type) == SHT_STRTAB) {
520
 
521
      if((str_tbl = (char *)malloc(ELF_LONG_H(elf_spnt->sh_size))) == NULL) {
522
        perror("readfile_elf");
523
        exit(1);
524
      }
525
 
526
      if (fseek(inputfs, ELF_LONG_H(elf_spnt->sh_offset), SEEK_SET) != 0) {
527
        perror("readfile_elf");
528
        exit(1);
529
      }
530
 
531
      if (fread(str_tbl, ELF_LONG_H(elf_spnt->sh_size), 1, inputfs) != 1) {
532
        perror("readfile_elf");
533
        exit(1);
534
      }
535
    }
536
    else if(ELF_LONG_H(elf_spnt->sh_type) == SHT_SYMTAB) {
537
 
538
      if((sym_tbl = (char *)malloc(ELF_LONG_H(elf_spnt->sh_size))) == NULL) {
539
        perror("readfile_elf");
540
        exit(1);
541
      }
542
 
543
      if (fseek(inputfs, ELF_LONG_H(elf_spnt->sh_offset), SEEK_SET) != 0) {
544
        perror("readfile_elf");
545
        exit(1);
546
      }
547
 
548
      if (fread(sym_tbl, ELF_LONG_H(elf_spnt->sh_size), 1, inputfs) != 1) {
549
        perror("readfile_elf");
550
        exit(1);
551
      }
552
 
553
      syms = ELF_LONG_H(elf_spnt->sh_size) / ELF_LONG_H(elf_spnt->sh_entsize);
554
    }
555
  }
556
 
557
  if (ELF_SHORT_H(elfhdr.e_shstrndx) != SHN_UNDEF) {
558
    elf_spnt = &elf_shdata[ELF_SHORT_H(elfhdr.e_shstrndx)];
559
 
560
    if((s_str = (char *)malloc(ELF_LONG_H(elf_spnt->sh_size))) == NULL) {
561
      perror("readfile_elf");
562
      exit(1);
563
    }
564
 
565
    if (fseek(inputfs, ELF_LONG_H(elf_spnt->sh_offset), SEEK_SET) != 0) {
566
      perror("readfile_elf");
567
      exit(1);
568
    }
569
 
570
    if (fread(s_str, ELF_LONG_H(elf_spnt->sh_size), 1, inputfs) != 1) {
571
      perror("readfile_elf");
572
      exit(1);
573
    }
574
  }
575
 
576
 
577
  for(i = 0, elf_spnt = elf_shdata; i < ELF_SHORT_H(elfhdr.e_shnum); i++, elf_spnt++) {
578
 
579
    if((ELF_LONG_H(elf_spnt->sh_type) & SHT_PROGBITS) && (ELF_LONG_H(elf_spnt->sh_flags) & SHF_ALLOC)) {
580
 
581
      padd = ELF_LONG_H(elf_spnt->sh_addr);
582
      for(j = 0; j < ELF_SHORT_H(elfhdr.e_phnum); j++) {
583
        if(ELF_LONG_H(elf_phdata[j].p_offset) &&
584
           ELF_LONG_H(elf_phdata[j].p_offset) <= ELF_LONG_H(elf_spnt->sh_offset) &&
585
          (ELF_LONG_H(elf_phdata[j].p_offset) + ELF_LONG_H(elf_phdata[j].p_memsz)) > ELF_LONG_H(elf_spnt->sh_offset))
586
          padd = ELF_LONG_H(elf_phdata[j].p_paddr) + ELF_LONG_H(elf_spnt->sh_offset) - ELF_LONG_H(elf_phdata[j].p_offset);
587
      }
588
 
589
 
590
 
591
      if (ELF_LONG_H(elf_spnt->sh_name) && s_str)
592
        printf("Section: %s,", &s_str[ELF_LONG_H(elf_spnt->sh_name)]);
593
      else
594
        printf("Section: noname,");
595
      printf(" vaddr: 0x%.8x,", ELF_LONG_H(elf_spnt->sh_addr));
596
      printf(" paddr: 0x%.8x,", padd);
597
      printf(" offset: 0x%.8x,", ELF_LONG_H(elf_spnt->sh_offset));
598
      printf(" size: 0x%.8x\n", ELF_LONG_H(elf_spnt->sh_size));
599
 
600 819 simons
      freemem = padd;
601 808 simons
      sectsize = ELF_LONG_H(elf_spnt->sh_size);
602
 
603
      if (fseek(inputfs, ELF_LONG_H(elf_spnt->sh_offset), SEEK_SET) != 0) {
604
        perror("readfile_elf");
605
        exit(1);
606
      }
607
 
608
      while (sectsize > 0 && (len = fread(&inputbuf, sizeof(inputbuf), 1, inputfs))) {
609
        insn = ELF_LONG_H(inputbuf);
610
        len = insn_len (insn_decode (insn));
611
        if (len == 2)
612
          {
613
            fseek(inputfs, -2, SEEK_CUR);
614
            debug(8, "readfile_elf: %x 0x%x   \n", sectsize, insn >> 16);
615
          }
616
        else
617
          debug(8, "readfile_elf: %x 0x%x   \n", sectsize, insn);
618
        addprogram (freemem, insn, &breakpoint);
619
        sectsize -= len;
620
      }
621
    }
622
  }
623
 
624
  if (str_tbl) {
625
    i = 0;
626
    while(syms--) {
627
      if (sym_tbl[i].st_name)
628
        add_label(ELF_LONG_H(sym_tbl[i].st_value), &str_tbl[ELF_LONG_H(sym_tbl[i].st_name)]);
629
      i++;
630
    }
631
  }
632
}
633
 
634 28 lampret
/* Identify file type and call appropriate readfile_X routine. It only
635
handles orX-coff-big executables at the moment. */
636
 
637
void identifyfile(char *filename)
638
{
639 361 markom
  FILE *inputfs;
640
  struct COFF_filehdr coffhdr;
641 808 simons
  struct elf32_hdr elfhdr;
642 361 markom
  size_t len;
643
 
644
  if (!(inputfs = fopen(filename, "r"))) {
645
    fprintf(stderr, "xx %s", filename);
646
    perror("identifyfile1");
647
    fflush(stdout);
648
    fflush(stderr);
649
    exit(1);
650
  }
651
 
652
  if (fread(&coffhdr, sizeof(coffhdr), 1, inputfs) == 1) {
653
    if (COFF_SHORT_H(coffhdr.f_magic) == 0x17a) {
654
          unsigned long opthdr_size;
655
      printf("COFF magic: 0x%.4x\n", COFF_SHORT_H(coffhdr.f_magic));
656
      printf("COFF flags: 0x%.4x\n", COFF_SHORT_H(coffhdr.f_flags));
657
      printf("COFF symptr: 0x%.8x\n", COFF_LONG_H(coffhdr.f_symptr));
658
      if ((COFF_SHORT_H(coffhdr.f_flags) & COFF_F_EXEC) != COFF_F_EXEC) {
659
        printf("This COFF is not an executable.\n");
660
        exit(1);
661
      }
662
      opthdr_size = COFF_SHORT_H(coffhdr.f_opthdr);
663
      if (opthdr_size != sizeof(COFF_AOUTHDR)) {
664
        printf("COFF optional header is missing or not recognized.\n");
665
        printf("COFF f_opthdr: 0x%.2x\n", opthdr_size);
666
        exit(1);
667
      }
668
      fclose(inputfs);
669
      readfile_coff(filename, COFF_SHORT_H(coffhdr.f_nscns));
670
      readsyms_coff(filename, COFF_LONG_H(coffhdr.f_symptr), COFF_LONG_H(coffhdr.f_nsyms));
671
      return;
672
    }
673
    else {
674 808 simons
      printf("Not COFF file format\n");
675
      fseek(inputfs, 0, SEEK_SET);
676
    }
677
  }
678
  if (fread(&elfhdr, sizeof(elfhdr), 1, inputfs) == 1) {
679
    if (elfhdr.e_ident[0] == 0x7f && elfhdr.e_ident[1] == 0x45 && elfhdr.e_ident[2] == 0x4c && elfhdr.e_ident[3] == 0x46) {
680
      printf("ELF type: 0x%.4x\n", ELF_SHORT_H(elfhdr.e_type));
681
      printf("ELF machine: 0x%.4x\n", ELF_SHORT_H(elfhdr.e_machine));
682
      printf("ELF version: 0x%.8x\n", ELF_LONG_H(elfhdr.e_version));
683
      printf("ELF sec = %d\n", ELF_SHORT_H(elfhdr.e_shnum));
684
      if (ELF_SHORT_H(elfhdr.e_type) != ET_EXEC ) {
685
        printf("This ELF is not an executable.\n");
686
        exit(1);
687
      }
688 361 markom
      fclose(inputfs);
689 808 simons
      readfile_elf(filename);
690
      return;
691 361 markom
    }
692 808 simons
    else {
693
      printf("Not ELF file format.\n");
694
      fseek(inputfs, 0, SEEK_SET);
695
    }
696 361 markom
  }
697 808 simons
 
698
  perror("identifyfile2");
699 361 markom
  fclose(inputfs);
700 28 lampret
 
701 361 markom
  return;
702 2 cvs
}
703
 
704 67 lampret
 
705
/* Loads file to memory starting at address startaddr and returns freemem. */
706
unsigned long loadcode(char *filename, unsigned long startaddr, unsigned long virtphy_transl)
707 2 cvs
{
708 123 markom
  int breakpoint = 0;
709
 
710 361 markom
  transl_error = 0;
711
  transl_table = virtphy_transl;
712
  freemem = startaddr;
713 808 simons
  printf("loadcode: filename %s  startaddr=%x  virtphy_transl=%x\n", filename, startaddr, virtphy_transl);
714 361 markom
  identifyfile(filename);
715 694 markom
 
716
#if IMM_STATS  
717
  {
718 703 markom
    int i = 0, a = 0, b = 0, c = 0;
719
    printf ("index:arith/branch/jump\n");
720
    for (i = 0; i < 33; i++) printf ("%2i:\t%3.0f%% / %3.0f%%/ %3.0f%%\t%5i / %5i / %5i\n", i, 100.* (a += bcnt[i][0])/bsum[0],
721
        100.* (b += bcnt[i][1])/bsum[1], 100.* (c += bcnt[i][2])/bsum[2], bcnt[i][0], bcnt[i][1], bcnt[i][2]);
722
    printf ("\nsum %i %i %i\n", bsum[0], bsum[1], bsum[2]);
723 694 markom
  }
724
#endif
725
 
726 361 markom
  if (transl_error)
727
    return -1;
728
  else
729
    return translate(freemem,&breakpoint);
730 694 markom
 
731 2 cvs
}

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