.
[coreutils.git] / src / od.c
blob00b8f993988e54ba8732772dbb208b2681da624b
1 /* od -- dump files in octal and other formats
2 Copyright (C) 92, 1995-2004 Free Software Foundation, Inc.
4 This program is free software; you can redistribute it and/or modify
5 it under the terms of the GNU General Public License as published by
6 the Free Software Foundation; either version 2, or (at your option)
7 any later version.
9 This program is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 GNU General Public License for more details.
14 You should have received a copy of the GNU General Public License
15 along with this program; if not, write to the Free Software Foundation,
16 Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
18 /* Written by Jim Meyering. */
20 #include <config.h>
22 #include <stdio.h>
23 #include <assert.h>
24 #include <getopt.h>
25 #include <sys/types.h>
26 #include "system.h"
27 #include "error.h"
28 #include "posixver.h"
29 #include "xstrtol.h"
31 /* The official name of this program (e.g., no `g' prefix). */
32 #define PROGRAM_NAME "od"
34 #define AUTHORS "Jim Meyering"
36 #if defined(__GNUC__) || defined(STDC_HEADERS)
37 # include <float.h>
38 #endif
40 #ifdef HAVE_LONG_DOUBLE
41 typedef long double LONG_DOUBLE;
42 #else
43 typedef double LONG_DOUBLE;
44 #endif
46 /* The default number of input bytes per output line. */
47 #define DEFAULT_BYTES_PER_BLOCK 16
49 /* The number of decimal digits of precision in a float. */
50 #ifndef FLT_DIG
51 # define FLT_DIG 7
52 #endif
54 /* The number of decimal digits of precision in a double. */
55 #ifndef DBL_DIG
56 # define DBL_DIG 15
57 #endif
59 /* The number of decimal digits of precision in a long double. */
60 #ifndef LDBL_DIG
61 # define LDBL_DIG DBL_DIG
62 #endif
64 #if HAVE_UNSIGNED_LONG_LONG
65 typedef unsigned long long ulonglong_t;
66 #else
67 /* This is just a place-holder to avoid a few `#if' directives.
68 In this case, the type isn't actually used. */
69 typedef unsigned long int ulonglong_t;
70 #endif
72 enum size_spec
74 NO_SIZE,
75 CHAR,
76 SHORT,
77 INT,
78 LONG,
79 LONG_LONG,
80 /* FIXME: add INTMAX support, too */
81 FLOAT_SINGLE,
82 FLOAT_DOUBLE,
83 FLOAT_LONG_DOUBLE,
84 N_SIZE_SPECS
87 enum output_format
89 SIGNED_DECIMAL,
90 UNSIGNED_DECIMAL,
91 OCTAL,
92 HEXADECIMAL,
93 FLOATING_POINT,
94 NAMED_CHARACTER,
95 CHARACTER
98 /* Each output format specification (from `-t spec' or from
99 old-style options) is represented by one of these structures. */
100 struct tspec
102 enum output_format fmt;
103 enum size_spec size;
104 void (*print_function) (size_t, const char *, const char *);
105 char *fmt_string;
106 int hexl_mode_trailer;
107 int field_width;
110 /* The name this program was run with. */
111 char *program_name;
113 /* Convert the number of 8-bit bytes of a binary representation to
114 the number of characters (digits + sign if the type is signed)
115 required to represent the same quantity in the specified base/type.
116 For example, a 32-bit (4-byte) quantity may require a field width
117 as wide as the following for these types:
118 11 unsigned octal
119 11 signed decimal
120 10 unsigned decimal
121 8 unsigned hexadecimal */
123 static const unsigned int bytes_to_oct_digits[] =
124 {0, 3, 6, 8, 11, 14, 16, 19, 22, 25, 27, 30, 32, 35, 38, 41, 43};
126 static const unsigned int bytes_to_signed_dec_digits[] =
127 {1, 4, 6, 8, 11, 13, 16, 18, 20, 23, 25, 28, 30, 33, 35, 37, 40};
129 static const unsigned int bytes_to_unsigned_dec_digits[] =
130 {0, 3, 5, 8, 10, 13, 15, 17, 20, 22, 25, 27, 29, 32, 34, 37, 39};
132 static const unsigned int bytes_to_hex_digits[] =
133 {0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 30, 32};
135 /* Convert enum size_spec to the size of the named type. */
136 static const int width_bytes[] =
139 sizeof (char),
140 sizeof (short int),
141 sizeof (int),
142 sizeof (long int),
143 sizeof (ulonglong_t),
144 sizeof (float),
145 sizeof (double),
146 sizeof (LONG_DOUBLE)
149 /* Ensure that for each member of `enum size_spec' there is an
150 initializer in the width_bytes array. */
151 struct dummy
153 int assert_width_bytes_matches_size_spec_decl
154 [sizeof width_bytes / sizeof width_bytes[0] == N_SIZE_SPECS ? 1 : -1];
157 /* Names for some non-printing characters. */
158 static const char *const charname[33] =
160 "nul", "soh", "stx", "etx", "eot", "enq", "ack", "bel",
161 "bs", "ht", "nl", "vt", "ff", "cr", "so", "si",
162 "dle", "dc1", "dc2", "dc3", "dc4", "nak", "syn", "etb",
163 "can", "em", "sub", "esc", "fs", "gs", "rs", "us",
164 "sp"
167 /* Address base (8, 10 or 16). */
168 static int address_base;
170 /* The number of octal digits required to represent the largest
171 address value. */
172 #define MAX_ADDRESS_LENGTH \
173 ((sizeof (uintmax_t) * CHAR_BIT + CHAR_BIT - 1) / 3)
175 /* Width of a normal address. */
176 static int address_pad_len;
178 static size_t string_min;
179 static int flag_dump_strings;
181 /* Non-zero if we should recognize the older non-option arguments
182 that specified at most one file and optional arguments specifying
183 offset and pseudo-start address. */
184 static int traditional;
186 /* Non-zero if an old-style `pseudo-address' was specified. */
187 static int flag_pseudo_start;
189 /* The difference between the old-style pseudo starting address and
190 the number of bytes to skip. */
191 static uintmax_t pseudo_offset;
193 /* Function that accepts an address and an optional following char,
194 and prints the address and char to stdout. */
195 static void (*format_address) (uintmax_t, char);
197 /* The number of input bytes to skip before formatting and writing. */
198 static uintmax_t n_bytes_to_skip = 0;
200 /* When zero, MAX_BYTES_TO_FORMAT and END_OFFSET are ignored, and all
201 input is formatted. */
202 static int limit_bytes_to_format = 0;
204 /* The maximum number of bytes that will be formatted. */
205 static uintmax_t max_bytes_to_format;
207 /* The offset of the first byte after the last byte to be formatted. */
208 static uintmax_t end_offset;
210 /* When nonzero and two or more consecutive blocks are equal, format
211 only the first block and output an asterisk alone on the following
212 line to indicate that identical blocks have been elided. */
213 static int abbreviate_duplicate_blocks = 1;
215 /* An array of specs describing how to format each input block. */
216 static struct tspec *spec;
218 /* The number of format specs. */
219 static size_t n_specs;
221 /* The allocated length of SPEC. */
222 static size_t n_specs_allocated;
224 /* The number of input bytes formatted per output line. It must be
225 a multiple of the least common multiple of the sizes associated with
226 the specified output types. It should be as large as possible, but
227 no larger than 16 -- unless specified with the -w option. */
228 static size_t bytes_per_block;
230 /* Human-readable representation of *file_list (for error messages).
231 It differs from *file_list only when *file_list is "-". */
232 static char const *input_filename;
234 /* A NULL-terminated list of the file-arguments from the command line. */
235 static char const *const *file_list;
237 /* Initializer for file_list if no file-arguments
238 were specified on the command line. */
239 static char const *const default_file_list[] = {"-", NULL};
241 /* The input stream associated with the current file. */
242 static FILE *in_stream;
244 /* If nonzero, at least one of the files we read was standard input. */
245 static int have_read_stdin;
247 #define MAX_INTEGRAL_TYPE_SIZE sizeof (ulonglong_t)
248 static enum size_spec integral_type_size[MAX_INTEGRAL_TYPE_SIZE + 1];
250 #define MAX_FP_TYPE_SIZE sizeof(LONG_DOUBLE)
251 static enum size_spec fp_type_size[MAX_FP_TYPE_SIZE + 1];
253 #define COMMON_SHORT_OPTIONS "A:N:abcdfhij:lot:vx"
255 /* For long options that have no equivalent short option, use a
256 non-character as a pseudo short option, starting with CHAR_MAX + 1. */
257 enum
259 TRADITIONAL_OPTION = CHAR_MAX + 1
262 static struct option const long_options[] =
264 {"skip-bytes", required_argument, NULL, 'j'},
265 {"address-radix", required_argument, NULL, 'A'},
266 {"read-bytes", required_argument, NULL, 'N'},
267 {"format", required_argument, NULL, 't'},
268 {"output-duplicates", no_argument, NULL, 'v'},
269 {"strings", optional_argument, NULL, 's'},
270 {"traditional", no_argument, NULL, TRADITIONAL_OPTION},
271 {"width", optional_argument, NULL, 'w'},
273 {GETOPT_HELP_OPTION_DECL},
274 {GETOPT_VERSION_OPTION_DECL},
275 {NULL, 0, NULL, 0}
278 void
279 usage (int status)
281 if (status != EXIT_SUCCESS)
282 fprintf (stderr, _("Try `%s --help' for more information.\n"),
283 program_name);
284 else
286 printf (_("\
287 Usage: %s [OPTION]... [FILE]...\n\
288 or: %s --traditional [FILE] [[+]OFFSET [[+]LABEL]]\n\
290 program_name, program_name);
291 fputs (_("\n\
292 Write an unambiguous representation, octal bytes by default,\n\
293 of FILE to standard output. With more than one FILE argument,\n\
294 concatenate them in the listed order to form the input.\n\
295 With no FILE, or when FILE is -, read standard input.\n\
297 "), stdout);
298 fputs (_("\
299 All arguments to long options are mandatory for short options.\n\
300 "), stdout);
301 fputs (_("\
302 -A, --address-radix=RADIX decide how file offsets are printed\n\
303 -j, --skip-bytes=BYTES skip BYTES input bytes first\n\
304 "), stdout);
305 fputs (_("\
306 -N, --read-bytes=BYTES limit dump to BYTES input bytes\n\
307 -s, --strings[=BYTES] output strings of at least BYTES graphic chars\n\
308 -t, --format=TYPE select output format or formats\n\
309 -v, --output-duplicates do not use * to mark line suppression\n\
310 -w, --width[=BYTES] output BYTES bytes per output line\n\
311 --traditional accept arguments in traditional form\n\
312 "), stdout);
313 fputs (HELP_OPTION_DESCRIPTION, stdout);
314 fputs (VERSION_OPTION_DESCRIPTION, stdout);
315 fputs (_("\
317 Traditional format specifications may be intermixed; they accumulate:\n\
318 -a same as -t a, select named characters\n\
319 -b same as -t oC, select octal bytes\n\
320 -c same as -t c, select ASCII characters or backslash escapes\n\
321 -d same as -t u2, select unsigned decimal shorts\n\
322 "), stdout);
323 fputs (_("\
324 -f same as -t fF, select floats\n\
325 -h same as -t x2, select hexadecimal shorts\n\
326 -i same as -t d2, select decimal shorts\n\
327 -l same as -t d4, select decimal longs\n\
328 -o same as -t o2, select octal shorts\n\
329 -x same as -t x2, select hexadecimal shorts\n\
330 "), stdout);
331 fputs (_("\
333 For older syntax (second call format), OFFSET means -j OFFSET. LABEL\n\
334 is the pseudo-address at first byte printed, incremented when dump is\n\
335 progressing. For OFFSET and LABEL, a 0x or 0X prefix indicates\n\
336 hexadecimal, suffixes may be . for octal and b for multiply by 512.\n\
338 TYPE is made up of one or more of these specifications:\n\
340 a named character\n\
341 c ASCII character or backslash escape\n\
342 "), stdout);
343 fputs (_("\
344 d[SIZE] signed decimal, SIZE bytes per integer\n\
345 f[SIZE] floating point, SIZE bytes per integer\n\
346 o[SIZE] octal, SIZE bytes per integer\n\
347 u[SIZE] unsigned decimal, SIZE bytes per integer\n\
348 x[SIZE] hexadecimal, SIZE bytes per integer\n\
349 "), stdout);
350 fputs (_("\
352 SIZE is a number. For TYPE in doux, SIZE may also be C for\n\
353 sizeof(char), S for sizeof(short), I for sizeof(int) or L for\n\
354 sizeof(long). If TYPE is f, SIZE may also be F for sizeof(float), D\n\
355 for sizeof(double) or L for sizeof(long double).\n\
356 "), stdout);
357 fputs (_("\
359 RADIX is d for decimal, o for octal, x for hexadecimal or n for none.\n\
360 BYTES is hexadecimal with 0x or 0X prefix, it is multiplied by 512\n\
361 with b suffix, by 1024 with k and by 1048576 with m. Adding a z suffix to\n\
362 any type adds a display of printable characters to the end of each line\n\
363 of output. \
364 "), stdout);
365 fputs (_("\
366 --string without a number implies 3. --width without a number\n\
367 implies 32. By default, od uses -A o -t d2 -w 16.\n\
368 "), stdout);
369 printf (_("\nReport bugs to <%s>.\n"), PACKAGE_BUGREPORT);
371 exit (status);
374 /* Compute the greatest common denominator of U and V
375 using Euclid's algorithm. */
377 static unsigned int
378 gcd (unsigned int u, unsigned int v)
380 unsigned int t;
381 while (v != 0)
383 t = u % v;
384 u = v;
385 v = t;
387 return u;
390 /* Compute the least common multiple of U and V. */
392 static unsigned int
393 lcm (unsigned int u, unsigned int v)
395 unsigned int t = gcd (u, v);
396 if (t == 0)
397 return 0;
398 return u * v / t;
401 static void
402 print_s_char (size_t n_bytes, const char *block, const char *fmt_string)
404 size_t i;
405 for (i = n_bytes; i > 0; i--)
407 int tmp = (unsigned) *(const unsigned char *) block;
408 if (tmp > SCHAR_MAX)
409 tmp -= SCHAR_MAX - SCHAR_MIN + 1;
410 assert (tmp <= SCHAR_MAX);
411 printf (fmt_string, tmp);
412 block += sizeof (unsigned char);
416 static void
417 print_char (size_t n_bytes, const char *block, const char *fmt_string)
419 size_t i;
420 for (i = n_bytes; i > 0; i--)
422 unsigned int tmp = *(const unsigned char *) block;
423 printf (fmt_string, tmp);
424 block += sizeof (unsigned char);
428 static void
429 print_s_short (size_t n_bytes, const char *block, const char *fmt_string)
431 size_t i;
432 for (i = n_bytes / sizeof (unsigned short); i > 0; i--)
434 int tmp = (unsigned) *(const unsigned short *) block;
435 if (tmp > SHRT_MAX)
436 tmp -= SHRT_MAX - SHRT_MIN + 1;
437 assert (tmp <= SHRT_MAX);
438 printf (fmt_string, tmp);
439 block += sizeof (unsigned short);
443 static void
444 print_short (size_t n_bytes, const char *block, const char *fmt_string)
446 size_t i;
447 for (i = n_bytes / sizeof (unsigned short); i > 0; i--)
449 unsigned int tmp = *(const unsigned short *) block;
450 printf (fmt_string, tmp);
451 block += sizeof (unsigned short);
455 static void
456 print_int (size_t n_bytes, const char *block, const char *fmt_string)
458 size_t i;
459 for (i = n_bytes / sizeof (unsigned int); i > 0; i--)
461 unsigned int tmp = *(const unsigned int *) block;
462 printf (fmt_string, tmp);
463 block += sizeof (unsigned int);
467 static void
468 print_long (size_t n_bytes, const char *block, const char *fmt_string)
470 size_t i;
471 for (i = n_bytes / sizeof (unsigned long); i > 0; i--)
473 unsigned long tmp = *(const unsigned long *) block;
474 printf (fmt_string, tmp);
475 block += sizeof (unsigned long);
479 static void
480 print_long_long (size_t n_bytes, const char *block, const char *fmt_string)
482 size_t i;
483 for (i = n_bytes / sizeof (ulonglong_t); i > 0; i--)
485 ulonglong_t tmp = *(const ulonglong_t *) block;
486 printf (fmt_string, tmp);
487 block += sizeof (ulonglong_t);
491 static void
492 print_float (size_t n_bytes, const char *block, const char *fmt_string)
494 size_t i;
495 for (i = n_bytes / sizeof (float); i > 0; i--)
497 float tmp = *(const float *) block;
498 printf (fmt_string, tmp);
499 block += sizeof (float);
503 static void
504 print_double (size_t n_bytes, const char *block, const char *fmt_string)
506 size_t i;
507 for (i = n_bytes / sizeof (double); i > 0; i--)
509 double tmp = *(const double *) block;
510 printf (fmt_string, tmp);
511 block += sizeof (double);
515 #ifdef HAVE_LONG_DOUBLE
516 static void
517 print_long_double (size_t n_bytes, const char *block, const char *fmt_string)
519 size_t i;
520 for (i = n_bytes / sizeof (LONG_DOUBLE); i > 0; i--)
522 LONG_DOUBLE tmp = *(const LONG_DOUBLE *) block;
523 printf (fmt_string, tmp);
524 block += sizeof (LONG_DOUBLE);
528 #endif
530 static void
531 dump_hexl_mode_trailer (size_t n_bytes, const char *block)
533 size_t i;
534 fputs (" >", stdout);
535 for (i = n_bytes; i > 0; i--)
537 unsigned int c = *(const unsigned char *) block;
538 unsigned int c2 = (ISPRINT(c) ? c : '.');
539 putchar (c2);
540 block += sizeof (unsigned char);
542 putchar ('<');
545 static void
546 print_named_ascii (size_t n_bytes, const char *block,
547 const char *unused_fmt_string ATTRIBUTE_UNUSED)
549 size_t i;
550 for (i = n_bytes; i > 0; i--)
552 unsigned int c = *(const unsigned char *) block;
553 unsigned int masked_c = (0x7f & c);
554 const char *s;
555 char buf[5];
557 if (masked_c == 127)
558 s = "del";
559 else if (masked_c <= 040)
560 s = charname[masked_c];
561 else
563 sprintf (buf, " %c", masked_c);
564 s = buf;
567 printf (" %3s", s);
568 block += sizeof (unsigned char);
572 static void
573 print_ascii (size_t n_bytes, const char *block,
574 const char *unused_fmt_string ATTRIBUTE_UNUSED)
576 size_t i;
577 for (i = n_bytes; i > 0; i--)
579 unsigned int c = *(const unsigned char *) block;
580 const char *s;
581 char buf[5];
583 switch (c)
585 case '\0':
586 s = " \\0";
587 break;
589 case '\007':
590 s = " \\a";
591 break;
593 case '\b':
594 s = " \\b";
595 break;
597 case '\f':
598 s = " \\f";
599 break;
601 case '\n':
602 s = " \\n";
603 break;
605 case '\r':
606 s = " \\r";
607 break;
609 case '\t':
610 s = " \\t";
611 break;
613 case '\v':
614 s = " \\v";
615 break;
617 default:
618 sprintf (buf, (ISPRINT (c) ? " %c" : "%03o"), c);
619 s = (const char *) buf;
622 printf (" %3s", s);
623 block += sizeof (unsigned char);
627 /* Convert a null-terminated (possibly zero-length) string S to an
628 unsigned long integer value. If S points to a non-digit set *P to S,
629 *VAL to 0, and return 0. Otherwise, accumulate the integer value of
630 the string of digits. If the string of digits represents a value
631 larger than ULONG_MAX, don't modify *VAL or *P and return nonzero.
632 Otherwise, advance *P to the first non-digit after S, set *VAL to
633 the result of the conversion and return zero. */
635 static int
636 simple_strtoul (const char *s, const char **p, long unsigned int *val)
638 unsigned long int sum;
640 sum = 0;
641 while (ISDIGIT (*s))
643 unsigned int c = *s++ - '0';
644 if (sum > (ULONG_MAX - c) / 10)
645 return 1;
646 sum = sum * 10 + c;
648 *p = s;
649 *val = sum;
650 return 0;
653 /* If S points to a single valid modern od format string, put
654 a description of that format in *TSPEC, make *NEXT point at the
655 character following the just-decoded format (if *NEXT is non-NULL),
656 and return zero. If S is not valid, don't modify *NEXT or *TSPEC,
657 give a diagnostic, and return nonzero. For example, if S were
658 "d4afL" *NEXT would be set to "afL" and *TSPEC would be
660 fmt = SIGNED_DECIMAL;
661 size = INT or LONG; (whichever integral_type_size[4] resolves to)
662 print_function = print_int; (assuming size == INT)
663 fmt_string = "%011d%c";
665 S_ORIG is solely for reporting errors. It should be the full format
666 string argument.
669 static int
670 decode_one_format (const char *s_orig, const char *s, const char **next,
671 struct tspec *tspec)
673 enum size_spec size_spec;
674 unsigned long int size;
675 enum output_format fmt;
676 const char *pre_fmt_string;
677 char *fmt_string;
678 void (*print_function) (size_t, const char *, const char *);
679 const char *p;
680 unsigned int c;
681 unsigned int field_width = 0;
683 assert (tspec != NULL);
685 switch (*s)
687 case 'd':
688 case 'o':
689 case 'u':
690 case 'x':
691 c = *s;
692 ++s;
693 switch (*s)
695 case 'C':
696 ++s;
697 size = sizeof (char);
698 break;
700 case 'S':
701 ++s;
702 size = sizeof (short);
703 break;
705 case 'I':
706 ++s;
707 size = sizeof (int);
708 break;
710 case 'L':
711 ++s;
712 size = sizeof (long int);
713 break;
715 default:
716 if (simple_strtoul (s, &p, &size) != 0)
718 /* The integer at P in S would overflow an unsigned long.
719 A digit string that long is sufficiently odd looking
720 that the following diagnostic is sufficient. */
721 error (0, 0, _("invalid type string `%s'"), s_orig);
722 return 1;
724 if (p == s)
725 size = sizeof (int);
726 else
728 if (MAX_INTEGRAL_TYPE_SIZE < size
729 || integral_type_size[size] == NO_SIZE)
731 error (0, 0, _("invalid type string `%s';\n\
732 this system doesn't provide a %lu-byte integral type"), s_orig, size);
733 return 1;
735 s = p;
737 break;
740 #define ISPEC_TO_FORMAT(Spec, Min_format, Long_format, Max_format) \
741 ((Spec) == LONG_LONG ? (Max_format) \
742 : ((Spec) == LONG ? (Long_format) \
743 : (Min_format))) \
745 #define FMT_BYTES_ALLOCATED 9
746 fmt_string = xmalloc (FMT_BYTES_ALLOCATED);
748 size_spec = integral_type_size[size];
750 switch (c)
752 case 'd':
753 fmt = SIGNED_DECIMAL;
754 sprintf (fmt_string, " %%%u%s",
755 (field_width = bytes_to_signed_dec_digits[size]),
756 ISPEC_TO_FORMAT (size_spec, "d", "ld", PRIdMAX));
757 break;
759 case 'o':
760 fmt = OCTAL;
761 sprintf (fmt_string, " %%0%u%s",
762 (field_width = bytes_to_oct_digits[size]),
763 ISPEC_TO_FORMAT (size_spec, "o", "lo", PRIoMAX));
764 break;
766 case 'u':
767 fmt = UNSIGNED_DECIMAL;
768 sprintf (fmt_string, " %%%u%s",
769 (field_width = bytes_to_unsigned_dec_digits[size]),
770 ISPEC_TO_FORMAT (size_spec, "u", "lu", PRIuMAX));
771 break;
773 case 'x':
774 fmt = HEXADECIMAL;
775 sprintf (fmt_string, " %%0%u%s",
776 (field_width = bytes_to_hex_digits[size]),
777 ISPEC_TO_FORMAT (size_spec, "x", "lx", PRIxMAX));
778 break;
780 default:
781 abort ();
784 assert (strlen (fmt_string) < FMT_BYTES_ALLOCATED);
786 switch (size_spec)
788 case CHAR:
789 print_function = (fmt == SIGNED_DECIMAL
790 ? print_s_char
791 : print_char);
792 break;
794 case SHORT:
795 print_function = (fmt == SIGNED_DECIMAL
796 ? print_s_short
797 : print_short);
798 break;
800 case INT:
801 print_function = print_int;
802 break;
804 case LONG:
805 print_function = print_long;
806 break;
808 case LONG_LONG:
809 print_function = print_long_long;
810 break;
812 default:
813 abort ();
815 break;
817 case 'f':
818 fmt = FLOATING_POINT;
819 ++s;
820 switch (*s)
822 case 'F':
823 ++s;
824 size = sizeof (float);
825 break;
827 case 'D':
828 ++s;
829 size = sizeof (double);
830 break;
832 case 'L':
833 ++s;
834 size = sizeof (LONG_DOUBLE);
835 break;
837 default:
838 if (simple_strtoul (s, &p, &size) != 0)
840 /* The integer at P in S would overflow an unsigned long.
841 A digit string that long is sufficiently odd looking
842 that the following diagnostic is sufficient. */
843 error (0, 0, _("invalid type string `%s'"), s_orig);
844 return 1;
846 if (p == s)
847 size = sizeof (double);
848 else
850 if (size > MAX_FP_TYPE_SIZE
851 || fp_type_size[size] == NO_SIZE)
853 error (0, 0, _("invalid type string `%s';\n\
854 this system doesn't provide a %lu-byte floating point type"), s_orig, size);
855 return 1;
857 s = p;
859 break;
861 size_spec = fp_type_size[size];
863 switch (size_spec)
865 case FLOAT_SINGLE:
866 print_function = print_float;
867 /* Don't use %#e; not all systems support it. */
868 pre_fmt_string = " %%%d.%de";
869 fmt_string = xmalloc (strlen (pre_fmt_string));
870 sprintf (fmt_string, pre_fmt_string,
871 (field_width = FLT_DIG + 8), FLT_DIG);
872 break;
874 case FLOAT_DOUBLE:
875 print_function = print_double;
876 pre_fmt_string = " %%%d.%de";
877 fmt_string = xmalloc (strlen (pre_fmt_string));
878 sprintf (fmt_string, pre_fmt_string,
879 (field_width = DBL_DIG + 8), DBL_DIG);
880 break;
882 #ifdef HAVE_LONG_DOUBLE
883 case FLOAT_LONG_DOUBLE:
884 print_function = print_long_double;
885 pre_fmt_string = " %%%d.%dLe";
886 fmt_string = xmalloc (strlen (pre_fmt_string));
887 sprintf (fmt_string, pre_fmt_string,
888 (field_width = LDBL_DIG + 8), LDBL_DIG);
889 break;
890 #endif
892 default:
893 abort ();
895 break;
897 case 'a':
898 ++s;
899 fmt = NAMED_CHARACTER;
900 size_spec = CHAR;
901 fmt_string = NULL;
902 print_function = print_named_ascii;
903 field_width = 3;
904 break;
906 case 'c':
907 ++s;
908 fmt = CHARACTER;
909 size_spec = CHAR;
910 fmt_string = NULL;
911 print_function = print_ascii;
912 field_width = 3;
913 break;
915 default:
916 error (0, 0, _("invalid character `%c' in type string `%s'"),
917 *s, s_orig);
918 return 1;
921 tspec->size = size_spec;
922 tspec->fmt = fmt;
923 tspec->print_function = print_function;
924 tspec->fmt_string = fmt_string;
926 tspec->field_width = field_width;
927 tspec->hexl_mode_trailer = (*s == 'z');
928 if (tspec->hexl_mode_trailer)
929 s++;
931 if (next != NULL)
932 *next = s;
934 return 0;
937 /* Given a list of one or more input filenames FILE_LIST, set the global
938 file pointer IN_STREAM and the global string INPUT_FILENAME to the
939 first one that can be successfully opened. Modify FILE_LIST to
940 reference the next filename in the list. A file name of "-" is
941 interpreted as standard input. If any file open fails, give an error
942 message and return nonzero. */
944 static int
945 open_next_file (void)
947 int err = 0;
951 input_filename = *file_list;
952 if (input_filename == NULL)
953 return err;
954 ++file_list;
956 if (STREQ (input_filename, "-"))
958 input_filename = _("standard input");
959 in_stream = stdin;
960 have_read_stdin = 1;
962 else
964 in_stream = fopen (input_filename, "r");
965 if (in_stream == NULL)
967 error (0, errno, "%s", input_filename);
968 err = 1;
972 while (in_stream == NULL);
974 if (limit_bytes_to_format && !flag_dump_strings)
975 SETVBUF (in_stream, NULL, _IONBF, 0);
976 SET_BINARY (fileno (in_stream));
978 return err;
981 /* Test whether there have been errors on in_stream, and close it if
982 it is not standard input. Return nonzero if there has been an error
983 on in_stream or stdout; return zero otherwise. This function will
984 report more than one error only if both a read and a write error
985 have occurred. IN_ERRNO, if nonzero, is the error number
986 corresponding to the most recent action for IN_STREAM. */
988 static int
989 check_and_close (int in_errno)
991 int err = 0;
993 if (in_stream != NULL)
995 if (ferror (in_stream))
997 error (0, in_errno, _("%s: read error"), input_filename);
998 if (in_stream != stdin)
999 fclose (in_stream);
1000 err = 1;
1002 else if (in_stream != stdin && fclose (in_stream) == EOF)
1004 error (0, errno, "%s", input_filename);
1005 err = 1;
1008 in_stream = NULL;
1011 if (ferror (stdout))
1013 error (0, 0, _("write error"));
1014 err = 1;
1017 return err;
1020 /* Decode the modern od format string S. Append the decoded
1021 representation to the global array SPEC, reallocating SPEC if
1022 necessary. Return zero if S is valid, nonzero otherwise. */
1024 static int
1025 decode_format_string (const char *s)
1027 const char *s_orig = s;
1028 assert (s != NULL);
1030 while (*s != '\0')
1032 struct tspec tspec;
1033 const char *next;
1035 if (decode_one_format (s_orig, s, &next, &tspec))
1036 return 1;
1038 assert (s != next);
1039 s = next;
1041 if (n_specs_allocated <= n_specs)
1042 spec = x2nrealloc (spec, &n_specs_allocated, sizeof *spec);
1044 memcpy (&spec[n_specs], &tspec, sizeof *spec);
1045 ++n_specs;
1048 return 0;
1051 /* Given a list of one or more input filenames FILE_LIST, set the global
1052 file pointer IN_STREAM to position N_SKIP in the concatenation of
1053 those files. If any file operation fails or if there are fewer than
1054 N_SKIP bytes in the combined input, give an error message and return
1055 nonzero. When possible, use seek rather than read operations to
1056 advance IN_STREAM. */
1058 static int
1059 skip (uintmax_t n_skip)
1061 int err = 0;
1062 int in_errno = 0;
1064 if (n_skip == 0)
1065 return 0;
1067 while (in_stream != NULL) /* EOF. */
1069 struct stat file_stats;
1071 /* First try seeking. For large offsets, this extra work is
1072 worthwhile. If the offset is below some threshold it may be
1073 more efficient to move the pointer by reading. There are two
1074 issues when trying to seek:
1075 - the file must be seekable.
1076 - before seeking to the specified position, make sure
1077 that the new position is in the current file.
1078 Try to do that by getting file's size using fstat.
1079 But that will work only for regular files. */
1081 if (fstat (fileno (in_stream), &file_stats) == 0)
1083 /* The st_size field is valid only for regular files
1084 (and for symbolic links, which cannot occur here).
1085 If the number of bytes left to skip is at least
1086 as large as the size of the current file, we can
1087 decrement n_skip and go on to the next file. */
1089 if (S_ISREG (file_stats.st_mode) && 0 <= file_stats.st_size)
1091 if ((uintmax_t) file_stats.st_size <= n_skip)
1092 n_skip -= file_stats.st_size;
1093 else
1095 if (fseeko (in_stream, n_skip, SEEK_CUR) != 0)
1097 in_errno = errno;
1098 err = 1;
1100 n_skip = 0;
1104 /* If it's not a regular file with nonnegative size,
1105 position the file pointer by reading. */
1107 else
1109 char buf[BUFSIZ];
1110 size_t n_bytes_read, n_bytes_to_read = BUFSIZ;
1112 while (0 < n_skip)
1114 if (n_skip < n_bytes_to_read)
1115 n_bytes_to_read = n_skip;
1116 n_bytes_read = fread (buf, 1, n_bytes_to_read, in_stream);
1117 n_skip -= n_bytes_read;
1118 if (n_bytes_read != n_bytes_to_read)
1120 in_errno = errno;
1121 err = 1;
1122 n_skip = 0;
1123 break;
1128 if (n_skip == 0)
1129 break;
1132 else /* cannot fstat() file */
1134 error (0, errno, "%s", input_filename);
1135 err = 1;
1138 err |= check_and_close (in_errno);
1140 err |= open_next_file ();
1143 if (n_skip != 0)
1144 error (EXIT_FAILURE, 0, _("cannot skip past end of combined input"));
1146 return err;
1149 static void
1150 format_address_none (uintmax_t address ATTRIBUTE_UNUSED, char c ATTRIBUTE_UNUSED)
1154 static void
1155 format_address_std (uintmax_t address, char c)
1157 char buf[MAX_ADDRESS_LENGTH + 2];
1158 char *p = buf + sizeof buf;
1159 char const *pbound;
1161 *--p = '\0';
1162 *--p = c;
1163 pbound = p - address_pad_len;
1165 /* Use a special case of the code for each base. This is measurably
1166 faster than generic code. */
1167 switch (address_base)
1169 case 8:
1171 *--p = '0' + (address & 7);
1172 while ((address >>= 3) != 0);
1173 break;
1175 case 10:
1177 *--p = '0' + (address % 10);
1178 while ((address /= 10) != 0);
1179 break;
1181 case 16:
1183 *--p = "0123456789abcdef"[address & 15];
1184 while ((address >>= 4) != 0);
1185 break;
1188 while (pbound < p)
1189 *--p = '0';
1191 fputs (p, stdout);
1194 static void
1195 format_address_paren (uintmax_t address, char c)
1197 putchar ('(');
1198 format_address_std (address, ')');
1199 putchar (c);
1202 static void
1203 format_address_label (uintmax_t address, char c)
1205 format_address_std (address, ' ');
1206 format_address_paren (address + pseudo_offset, c);
1209 /* Write N_BYTES bytes from CURR_BLOCK to standard output once for each
1210 of the N_SPEC format specs. CURRENT_OFFSET is the byte address of
1211 CURR_BLOCK in the concatenation of input files, and it is printed
1212 (optionally) only before the output line associated with the first
1213 format spec. When duplicate blocks are being abbreviated, the output
1214 for a sequence of identical input blocks is the output for the first
1215 block followed by an asterisk alone on a line. It is valid to compare
1216 the blocks PREV_BLOCK and CURR_BLOCK only when N_BYTES == BYTES_PER_BLOCK.
1217 That condition may be false only for the last input block -- and then
1218 only when it has not been padded to length BYTES_PER_BLOCK. */
1220 static void
1221 write_block (uintmax_t current_offset, size_t n_bytes,
1222 const char *prev_block, const char *curr_block)
1224 static int first = 1;
1225 static int prev_pair_equal = 0;
1227 #define EQUAL_BLOCKS(b1, b2) (memcmp ((b1), (b2), bytes_per_block) == 0)
1229 if (abbreviate_duplicate_blocks
1230 && !first && n_bytes == bytes_per_block
1231 && EQUAL_BLOCKS (prev_block, curr_block))
1233 if (prev_pair_equal)
1235 /* The two preceding blocks were equal, and the current
1236 block is the same as the last one, so print nothing. */
1238 else
1240 printf ("*\n");
1241 prev_pair_equal = 1;
1244 else
1246 size_t i;
1248 prev_pair_equal = 0;
1249 for (i = 0; i < n_specs; i++)
1251 if (i == 0)
1252 format_address (current_offset, '\0');
1253 else
1254 printf ("%*s", address_pad_len, "");
1255 (*spec[i].print_function) (n_bytes, curr_block, spec[i].fmt_string);
1256 if (spec[i].hexl_mode_trailer)
1258 /* space-pad out to full line width, then dump the trailer */
1259 int datum_width = width_bytes[spec[i].size];
1260 int blank_fields = (bytes_per_block - n_bytes) / datum_width;
1261 int field_width = spec[i].field_width + 1;
1262 printf ("%*s", blank_fields * field_width, "");
1263 dump_hexl_mode_trailer (n_bytes, curr_block);
1265 putchar ('\n');
1268 first = 0;
1271 /* Read a single byte into *C from the concatenation of the input files
1272 named in the global array FILE_LIST. On the first call to this
1273 function, the global variable IN_STREAM is expected to be an open
1274 stream associated with the input file INPUT_FILENAME. If IN_STREAM
1275 is at end-of-file, close it and update the global variables IN_STREAM
1276 and INPUT_FILENAME so they correspond to the next file in the list.
1277 Then try to read a byte from the newly opened file. Repeat if
1278 necessary until EOF is reached for the last file in FILE_LIST, then
1279 set *C to EOF and return. Subsequent calls do likewise. The return
1280 value is nonzero if any errors occured, zero otherwise. */
1282 static int
1283 read_char (int *c)
1285 int err = 0;
1287 *c = EOF;
1289 while (in_stream != NULL) /* EOF. */
1291 *c = fgetc (in_stream);
1293 if (*c != EOF)
1294 break;
1296 err |= check_and_close (errno);
1298 err |= open_next_file ();
1301 return err;
1304 /* Read N bytes into BLOCK from the concatenation of the input files
1305 named in the global array FILE_LIST. On the first call to this
1306 function, the global variable IN_STREAM is expected to be an open
1307 stream associated with the input file INPUT_FILENAME. If all N
1308 bytes cannot be read from IN_STREAM, close IN_STREAM and update
1309 the global variables IN_STREAM and INPUT_FILENAME. Then try to
1310 read the remaining bytes from the newly opened file. Repeat if
1311 necessary until EOF is reached for the last file in FILE_LIST.
1312 On subsequent calls, don't modify BLOCK and return zero. Set
1313 *N_BYTES_IN_BUFFER to the number of bytes read. If an error occurs,
1314 it will be detected through ferror when the stream is about to be
1315 closed. If there is an error, give a message but continue reading
1316 as usual and return nonzero. Otherwise return zero. */
1318 static int
1319 read_block (size_t n, char *block, size_t *n_bytes_in_buffer)
1321 int err = 0;
1323 assert (0 < n && n <= bytes_per_block);
1325 *n_bytes_in_buffer = 0;
1327 if (n == 0)
1328 return 0;
1330 while (in_stream != NULL) /* EOF. */
1332 size_t n_needed;
1333 size_t n_read;
1335 n_needed = n - *n_bytes_in_buffer;
1336 n_read = fread (block + *n_bytes_in_buffer, 1, n_needed, in_stream);
1338 *n_bytes_in_buffer += n_read;
1340 if (n_read == n_needed)
1341 break;
1343 err |= check_and_close (errno);
1345 err |= open_next_file ();
1348 return err;
1351 /* Return the least common multiple of the sizes associated
1352 with the format specs. */
1354 static int
1355 get_lcm (void)
1357 size_t i;
1358 int l_c_m = 1;
1360 for (i = 0; i < n_specs; i++)
1361 l_c_m = lcm (l_c_m, width_bytes[(int) spec[i].size]);
1362 return l_c_m;
1365 /* If S is a valid traditional offset specification with an optional
1366 leading '+' return nonzero and set *OFFSET to the offset it denotes. */
1368 static int
1369 parse_old_offset (const char *s, uintmax_t *offset)
1371 int radix;
1372 enum strtol_error s_err;
1374 if (*s == '\0')
1375 return 0;
1377 /* Skip over any leading '+'. */
1378 if (s[0] == '+')
1379 ++s;
1381 /* Determine the radix we'll use to interpret S. If there is a `.',
1382 it's decimal, otherwise, if the string begins with `0X'or `0x',
1383 it's hexadecimal, else octal. */
1384 if (strchr (s, '.') != NULL)
1385 radix = 10;
1386 else
1388 if (s[0] == '0' && (s[1] == 'x' || s[1] == 'X'))
1389 radix = 16;
1390 else
1391 radix = 8;
1394 s_err = xstrtoumax (s, NULL, radix, offset, "Bb");
1395 if (s_err != LONGINT_OK)
1397 STRTOL_FAIL_WARN (s, _("old-style offset"), s_err);
1398 return 0;
1400 return 1;
1403 /* Read a chunk of size BYTES_PER_BLOCK from the input files, write the
1404 formatted block to standard output, and repeat until the specified
1405 maximum number of bytes has been read or until all input has been
1406 processed. If the last block read is smaller than BYTES_PER_BLOCK
1407 and its size is not a multiple of the size associated with a format
1408 spec, extend the input block with zero bytes until its length is a
1409 multiple of all format spec sizes. Write the final block. Finally,
1410 write on a line by itself the offset of the byte after the last byte
1411 read. Accumulate return values from calls to read_block and
1412 check_and_close, and if any was nonzero, return nonzero.
1413 Otherwise, return zero. */
1415 static int
1416 dump (void)
1418 char *block[2];
1419 uintmax_t current_offset;
1420 int idx;
1421 int err;
1422 size_t n_bytes_read;
1424 block[0] = xnmalloc (2, bytes_per_block);
1425 block[1] = block[0] + bytes_per_block;
1427 current_offset = n_bytes_to_skip;
1429 idx = 0;
1430 err = 0;
1431 if (limit_bytes_to_format)
1433 while (1)
1435 size_t n_needed;
1436 if (current_offset >= end_offset)
1438 n_bytes_read = 0;
1439 break;
1441 n_needed = MIN (end_offset - current_offset,
1442 (uintmax_t) bytes_per_block);
1443 err |= read_block (n_needed, block[idx], &n_bytes_read);
1444 if (n_bytes_read < bytes_per_block)
1445 break;
1446 assert (n_bytes_read == bytes_per_block);
1447 write_block (current_offset, n_bytes_read,
1448 block[!idx], block[idx]);
1449 current_offset += n_bytes_read;
1450 idx = !idx;
1453 else
1455 while (1)
1457 err |= read_block (bytes_per_block, block[idx], &n_bytes_read);
1458 if (n_bytes_read < bytes_per_block)
1459 break;
1460 assert (n_bytes_read == bytes_per_block);
1461 write_block (current_offset, n_bytes_read,
1462 block[!idx], block[idx]);
1463 current_offset += n_bytes_read;
1464 idx = !idx;
1468 if (n_bytes_read > 0)
1470 int l_c_m;
1471 size_t bytes_to_write;
1473 l_c_m = get_lcm ();
1475 /* Make bytes_to_write the smallest multiple of l_c_m that
1476 is at least as large as n_bytes_read. */
1477 bytes_to_write = l_c_m * ((n_bytes_read + l_c_m - 1) / l_c_m);
1479 memset (block[idx] + n_bytes_read, 0, bytes_to_write - n_bytes_read);
1480 write_block (current_offset, bytes_to_write,
1481 block[!idx], block[idx]);
1482 current_offset += n_bytes_read;
1485 format_address (current_offset, '\n');
1487 if (limit_bytes_to_format && current_offset >= end_offset)
1488 err |= check_and_close (0);
1490 free (block[0]);
1492 return err;
1495 /* STRINGS mode. Find each "string constant" in the input.
1496 A string constant is a run of at least `string_min' ASCII
1497 graphic (or formatting) characters terminated by a null.
1498 Based on a function written by Richard Stallman for a
1499 traditional version of od. Return nonzero if an error
1500 occurs. Otherwise, return zero. */
1502 static int
1503 dump_strings (void)
1505 size_t bufsize = MAX (100, string_min);
1506 char *buf = xmalloc (bufsize);
1507 uintmax_t address = n_bytes_to_skip;
1508 int err;
1510 err = 0;
1511 while (1)
1513 size_t i;
1514 int c;
1516 /* See if the next `string_min' chars are all printing chars. */
1517 tryline:
1519 if (limit_bytes_to_format
1520 && (end_offset < string_min || end_offset - string_min <= address))
1521 break;
1523 for (i = 0; i < string_min; i++)
1525 err |= read_char (&c);
1526 address++;
1527 if (c < 0)
1529 free (buf);
1530 return err;
1532 if (!ISPRINT (c))
1533 /* Found a non-printing. Try again starting with next char. */
1534 goto tryline;
1535 buf[i] = c;
1538 /* We found a run of `string_min' printable characters.
1539 Now see if it is terminated with a null byte. */
1540 while (!limit_bytes_to_format || address < end_offset)
1542 if (i == bufsize)
1544 buf = x2nrealloc (buf, &bufsize, sizeof *buf);
1546 err |= read_char (&c);
1547 address++;
1548 if (c < 0)
1550 free (buf);
1551 return err;
1553 if (c == '\0')
1554 break; /* It is; print this string. */
1555 if (!ISPRINT (c))
1556 goto tryline; /* It isn't; give up on this string. */
1557 buf[i++] = c; /* String continues; store it all. */
1560 /* If we get here, the string is all printable and null-terminated,
1561 so print it. It is all in `buf' and `i' is its length. */
1562 buf[i] = 0;
1563 format_address (address - i - 1, ' ');
1565 for (i = 0; (c = buf[i]); i++)
1567 switch (c)
1569 case '\007':
1570 fputs ("\\a", stdout);
1571 break;
1573 case '\b':
1574 fputs ("\\b", stdout);
1575 break;
1577 case '\f':
1578 fputs ("\\f", stdout);
1579 break;
1581 case '\n':
1582 fputs ("\\n", stdout);
1583 break;
1585 case '\r':
1586 fputs ("\\r", stdout);
1587 break;
1589 case '\t':
1590 fputs ("\\t", stdout);
1591 break;
1593 case '\v':
1594 fputs ("\\v", stdout);
1595 break;
1597 default:
1598 putc (c, stdout);
1601 putchar ('\n');
1604 /* We reach this point only if we search through
1605 (max_bytes_to_format - string_min) bytes before reaching EOF. */
1607 free (buf);
1609 err |= check_and_close (0);
1610 return err;
1614 main (int argc, char **argv)
1616 int c;
1617 int n_files;
1618 size_t i;
1619 int l_c_m;
1620 size_t desired_width IF_LINT (= 0);
1621 int width_specified = 0;
1622 int n_failed_decodes = 0;
1623 int err;
1624 char const *short_options = (posix2_version () < 200112
1625 ? COMMON_SHORT_OPTIONS "s::w::"
1626 : COMMON_SHORT_OPTIONS "s:w:");
1628 /* The old-style `pseudo starting address' to be printed in parentheses
1629 after any true address. */
1630 uintmax_t pseudo_start IF_LINT (= 0);
1632 initialize_main (&argc, &argv);
1633 program_name = argv[0];
1634 setlocale (LC_ALL, "");
1635 bindtextdomain (PACKAGE, LOCALEDIR);
1636 textdomain (PACKAGE);
1638 atexit (close_stdout);
1640 err = 0;
1642 for (i = 0; i <= MAX_INTEGRAL_TYPE_SIZE; i++)
1643 integral_type_size[i] = NO_SIZE;
1645 integral_type_size[sizeof (char)] = CHAR;
1646 integral_type_size[sizeof (short int)] = SHORT;
1647 integral_type_size[sizeof (int)] = INT;
1648 integral_type_size[sizeof (long int)] = LONG;
1649 #if HAVE_UNSIGNED_LONG_LONG
1650 /* If `long' and `long long' have the same size, it's fine
1651 to overwrite the entry for `long' with this one. */
1652 integral_type_size[sizeof (ulonglong_t)] = LONG_LONG;
1653 #endif
1655 for (i = 0; i <= MAX_FP_TYPE_SIZE; i++)
1656 fp_type_size[i] = NO_SIZE;
1658 fp_type_size[sizeof (float)] = FLOAT_SINGLE;
1659 /* The array entry for `double' is filled in after that for LONG_DOUBLE
1660 so that if `long double' is the same type or if long double isn't
1661 supported FLOAT_LONG_DOUBLE will never be used. */
1662 fp_type_size[sizeof (LONG_DOUBLE)] = FLOAT_LONG_DOUBLE;
1663 fp_type_size[sizeof (double)] = FLOAT_DOUBLE;
1665 n_specs = 0;
1666 n_specs_allocated = 0;
1667 spec = NULL;
1669 format_address = format_address_std;
1670 address_base = 8;
1671 address_pad_len = 7;
1672 flag_dump_strings = 0;
1674 while ((c = getopt_long (argc, argv, short_options, long_options, NULL))
1675 != -1)
1677 uintmax_t tmp;
1678 enum strtol_error s_err;
1680 switch (c)
1682 case 0:
1683 break;
1685 case 'A':
1686 switch (optarg[0])
1688 case 'd':
1689 format_address = format_address_std;
1690 address_base = 10;
1691 address_pad_len = 7;
1692 break;
1693 case 'o':
1694 format_address = format_address_std;
1695 address_base = 8;
1696 address_pad_len = 7;
1697 break;
1698 case 'x':
1699 format_address = format_address_std;
1700 address_base = 16;
1701 address_pad_len = 6;
1702 break;
1703 case 'n':
1704 format_address = format_address_none;
1705 address_pad_len = 0;
1706 break;
1707 default:
1708 error (EXIT_FAILURE, 0,
1709 _("invalid output address radix `%c'; \
1710 it must be one character from [doxn]"),
1711 optarg[0]);
1712 break;
1714 break;
1716 case 'j':
1717 s_err = xstrtoumax (optarg, NULL, 0, &n_bytes_to_skip, "bkm");
1718 if (s_err != LONGINT_OK)
1719 STRTOL_FATAL_ERROR (optarg, _("skip argument"), s_err);
1720 break;
1722 case 'N':
1723 limit_bytes_to_format = 1;
1725 s_err = xstrtoumax (optarg, NULL, 0, &max_bytes_to_format, "bkm");
1726 if (s_err != LONGINT_OK)
1727 STRTOL_FATAL_ERROR (optarg, _("limit argument"), s_err);
1728 break;
1730 case 's':
1731 if (optarg == NULL)
1732 string_min = 3;
1733 else
1735 s_err = xstrtoumax (optarg, NULL, 0, &tmp, "bkm");
1736 if (s_err != LONGINT_OK)
1737 STRTOL_FATAL_ERROR (optarg, _("minimum string length"), s_err);
1739 /* The minimum string length may be no larger than SIZE_MAX,
1740 since we may allocate a buffer of this size. */
1741 if (SIZE_MAX < tmp)
1742 error (EXIT_FAILURE, 0, _("%s is too large"), optarg);
1744 string_min = tmp;
1746 flag_dump_strings = 1;
1747 break;
1749 case 't':
1750 if (decode_format_string (optarg))
1751 ++n_failed_decodes;
1752 break;
1754 case 'v':
1755 abbreviate_duplicate_blocks = 0;
1756 break;
1758 case TRADITIONAL_OPTION:
1759 traditional = 1;
1760 break;
1762 /* The next several cases map the traditional format
1763 specification options to the corresponding modern format
1764 specs. GNU od accepts any combination of old- and
1765 new-style options. Format specification options accumulate. */
1767 #define CASE_OLD_ARG(old_char,new_string) \
1768 case old_char: \
1770 if (decode_format_string (new_string)) \
1771 ++n_failed_decodes; \
1773 break
1775 CASE_OLD_ARG ('a', "a");
1776 CASE_OLD_ARG ('b', "oC");
1777 CASE_OLD_ARG ('c', "c");
1778 CASE_OLD_ARG ('d', "u2");
1779 CASE_OLD_ARG ('f', "fF");
1780 CASE_OLD_ARG ('h', "x2");
1781 CASE_OLD_ARG ('i', "d2");
1782 CASE_OLD_ARG ('l', "d4");
1783 CASE_OLD_ARG ('o', "o2");
1784 CASE_OLD_ARG ('x', "x2");
1786 /* FIXME: POSIX 1003.1-2001 with XSI requires this:
1788 CASE_OLD_ARG ('s', "d2");
1790 for the traditional syntax, but this conflicts with case
1791 's' above. */
1793 #undef CASE_OLD_ARG
1795 case 'w':
1796 width_specified = 1;
1797 if (optarg == NULL)
1799 desired_width = 32;
1801 else
1803 uintmax_t w_tmp;
1804 s_err = xstrtoumax (optarg, NULL, 10, &w_tmp, "");
1805 if (s_err != LONGINT_OK)
1806 STRTOL_FATAL_ERROR (optarg, _("width specification"), s_err);
1807 if (SIZE_MAX < w_tmp)
1808 error (EXIT_FAILURE, 0, _("%s is too large"), optarg);
1809 desired_width = w_tmp;
1811 break;
1813 case_GETOPT_HELP_CHAR;
1815 case_GETOPT_VERSION_CHAR (PROGRAM_NAME, AUTHORS);
1817 default:
1818 usage (EXIT_FAILURE);
1819 break;
1823 if (n_failed_decodes > 0)
1824 exit (EXIT_FAILURE);
1826 if (flag_dump_strings && n_specs > 0)
1827 error (EXIT_FAILURE, 0,
1828 _("no type may be specified when dumping strings"));
1830 n_files = argc - optind;
1832 /* If the --traditional option is used, there may be from
1833 0 to 3 remaining command line arguments; handle each case
1834 separately.
1835 od [file] [[+]offset[.][b] [[+]label[.][b]]]
1836 The offset and pseudo_start have the same syntax.
1838 FIXME: POSIX 1003.1-2001 with XSI requires support for the
1839 traditional syntax even if --traditional is not given. */
1841 if (traditional)
1843 uintmax_t offset;
1845 if (n_files == 1)
1847 if (parse_old_offset (argv[optind], &offset))
1849 n_bytes_to_skip = offset;
1850 --n_files;
1851 ++argv;
1854 else if (n_files == 2)
1856 uintmax_t o1, o2;
1857 if (parse_old_offset (argv[optind], &o1)
1858 && parse_old_offset (argv[optind + 1], &o2))
1860 n_bytes_to_skip = o1;
1861 flag_pseudo_start = 1;
1862 pseudo_start = o2;
1863 argv += 2;
1864 n_files -= 2;
1866 else if (parse_old_offset (argv[optind + 1], &o2))
1868 n_bytes_to_skip = o2;
1869 --n_files;
1870 argv[optind + 1] = argv[optind];
1871 ++argv;
1873 else
1875 error (0, 0,
1876 _("invalid second operand in compatibility mode `%s'"),
1877 argv[optind + 1]);
1878 usage (EXIT_FAILURE);
1881 else if (n_files == 3)
1883 uintmax_t o1, o2;
1884 if (parse_old_offset (argv[optind + 1], &o1)
1885 && parse_old_offset (argv[optind + 2], &o2))
1887 n_bytes_to_skip = o1;
1888 flag_pseudo_start = 1;
1889 pseudo_start = o2;
1890 argv[optind + 2] = argv[optind];
1891 argv += 2;
1892 n_files -= 2;
1894 else
1896 error (0, 0,
1897 _("in compatibility mode, the last two arguments must be offsets"));
1898 usage (EXIT_FAILURE);
1901 else if (n_files > 3)
1903 error (0, 0,
1904 _("compatibility mode supports at most three arguments"));
1905 usage (EXIT_FAILURE);
1908 if (flag_pseudo_start)
1910 if (format_address == format_address_none)
1912 address_base = 8;
1913 address_pad_len = 7;
1914 format_address = format_address_paren;
1916 else
1917 format_address = format_address_label;
1921 if (limit_bytes_to_format)
1923 end_offset = n_bytes_to_skip + max_bytes_to_format;
1924 if (end_offset < n_bytes_to_skip)
1925 error (EXIT_FAILURE, 0, _("skip-bytes + read-bytes is too large"));
1928 if (n_specs == 0)
1930 if (decode_format_string ("o2"))
1932 /* This happens on Cray systems that don't have a 2-byte
1933 integral type. */
1934 exit (EXIT_FAILURE);
1937 n_specs = 1;
1940 if (n_files > 0)
1942 /* Set the global pointer FILE_LIST so that it
1943 references the first file-argument on the command-line. */
1945 file_list = (char const *const *) &argv[optind];
1947 else
1949 /* No files were listed on the command line.
1950 Set the global pointer FILE_LIST so that it
1951 references the null-terminated list of one name: "-". */
1953 file_list = default_file_list;
1956 /* open the first input file */
1957 err |= open_next_file ();
1958 if (in_stream == NULL)
1959 goto cleanup;
1961 /* skip over any unwanted header bytes */
1962 err |= skip (n_bytes_to_skip);
1963 if (in_stream == NULL)
1964 goto cleanup;
1966 pseudo_offset = (flag_pseudo_start ? pseudo_start - n_bytes_to_skip : 0);
1968 /* Compute output block length. */
1969 l_c_m = get_lcm ();
1971 if (width_specified)
1973 if (desired_width != 0 && desired_width % l_c_m == 0)
1974 bytes_per_block = desired_width;
1975 else
1977 error (0, 0, _("warning: invalid width %lu; using %d instead"),
1978 (unsigned long) desired_width, l_c_m);
1979 bytes_per_block = l_c_m;
1982 else
1984 if (l_c_m < DEFAULT_BYTES_PER_BLOCK)
1985 bytes_per_block = l_c_m * (DEFAULT_BYTES_PER_BLOCK / l_c_m);
1986 else
1987 bytes_per_block = l_c_m;
1990 #ifdef DEBUG
1991 for (i = 0; i < n_specs; i++)
1993 printf (_("%d: fmt=\"%s\" width=%d\n"),
1994 i, spec[i].fmt_string, width_bytes[spec[i].size]);
1996 #endif
1998 err |= (flag_dump_strings ? dump_strings () : dump ());
2000 cleanup:;
2002 if (have_read_stdin && fclose (stdin) == EOF)
2003 error (EXIT_FAILURE, errno, _("standard input"));
2005 exit (err == 0 ? EXIT_SUCCESS : EXIT_FAILURE);