d66aa3c701
by Bernhard Reutner-Fischer function old new delta df_main 664 795 +131 packed_usage 24812 24862 +50 make_human_readable_str 213 262 +49 static.ignored_mounts - 8 +8 static.unit_chars - 7 +7 static.zero_and_units 6 - -6 ------------------------------------------------------------------------------ (add/remove: 2/1 grow/shrink: 3/0 up/down: 245/-6) Total: 239 bytes
98 lines
2.7 KiB
C
98 lines
2.7 KiB
C
/* vi: set sw=4 ts=4: */
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/*
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* June 30, 2001 Manuel Novoa III
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*
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* All-integer version (hey, not everyone has floating point) of
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* make_human_readable_str, modified from similar code I had written
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* for busybox several months ago.
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*
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* Notes:
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* 1) I'm using an unsigned long long to hold the product size * block_size,
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* as df (which calls this routine) could request a representation of a
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* partition size in bytes > max of unsigned long. If long longs aren't
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* available, it would be possible to do what's needed using polynomial
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* representations (say, powers of 1024) and manipulating coefficients.
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* The base ten "bytes" output could be handled similarly.
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*
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* 2) This routine always outputs a decimal point and a tenths digit when
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* display_unit != 0. Hence, it isn't uncommon for the returned string
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* to have a length of 5 or 6.
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*
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* It might be nice to add a flag to indicate no decimal digits in
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* that case. This could be either an additional parameter, or a
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* special value of display_unit. Such a flag would also be nice for du.
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*
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* Some code to omit the decimal point and tenths digit is sketched out
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* and "#if 0"'d below.
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*/
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#include "libbb.h"
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const char* FAST_FUNC make_human_readable_str(unsigned long long size,
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unsigned long block_size, unsigned long display_unit)
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{
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/* The code will adjust for additional (appended) units */
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static const char unit_chars[] ALIGN1 = {
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'\0', 'K', 'M', 'G', 'T', 'P', 'E'
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};
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static const char fmt[] ALIGN1 = "%llu";
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static const char fmt_tenths[] ALIGN1 = "%llu.%d%c";
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static char str[21] ALIGN1; /* Sufficient for 64 bit unsigned integers */
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unsigned long long val;
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int frac;
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const char *u;
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const char *f;
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smallint no_tenths;
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if (size == 0)
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return "0";
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/* If block_size is 0 then do not print tenths */
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no_tenths = 0;
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if (block_size == 0) {
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no_tenths = 1;
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block_size = 1;
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}
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u = unit_chars;
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val = size * block_size;
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f = fmt;
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frac = 0;
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if (display_unit) {
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val += display_unit/2; /* Deal with rounding */
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val /= display_unit; /* Don't combine with the line above!!! */
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/* will just print it as ulonglong (below) */
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} else {
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while ((val >= 1024)
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&& (u < unit_chars + sizeof(unit_chars) - 1)
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) {
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f = fmt_tenths;
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u++;
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frac = (((int)(val % 1024)) * 10 + 1024/2) / 1024;
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val /= 1024;
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}
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if (frac >= 10) { /* We need to round up here. */
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++val;
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frac = 0;
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}
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#if 1
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/* Sample code to omit decimal point and tenths digit. */
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if (no_tenths) {
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if (frac >= 5) {
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++val;
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}
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f = "%llu%*c" /* fmt_no_tenths */;
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frac = 1;
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}
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#endif
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}
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/* If f==fmt then 'frac' and 'u' are ignored. */
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snprintf(str, sizeof(str), f, val, frac, *u);
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return str;
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}
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