libtommath/bn_mp_read_radix.c

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#include "tommath_private.h"
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#ifdef BN_MP_READ_RADIX_C
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/* LibTomMath, multiple-precision integer library -- Tom St Denis */
/* SPDX-License-Identifier: Unlicense */
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#define MP_TOUPPER(c) ((((c) >= 'a') && ((c) <= 'z')) ? (((c) + 'A') - 'a') : (c))
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/* read a string [ASCII] in a given radix */
mp_err mp_read_radix(mp_int *a, const char *str, int radix)
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{
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mp_err err;
int y;
mp_sign neg;
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unsigned pos;
char ch;
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/* zero the digit bignum */
mp_zero(a);
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/* make sure the radix is ok */
if ((radix < 2) || (radix > 64)) {
return MP_VAL;
}
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/* if the leading digit is a
* minus set the sign to negative.
*/
if (*str == '-') {
++str;
neg = MP_NEG;
} else {
neg = MP_ZPOS;
}
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/* set the integer to the default of zero */
mp_zero(a);
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/* process each digit of the string */
while (*str != '\0') {
/* if the radix <= 36 the conversion is case insensitive
* this allows numbers like 1AB and 1ab to represent the same value
* [e.g. in hex]
*/
ch = (radix <= 36) ? (char)MP_TOUPPER((int)*str) : *str;
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pos = (unsigned)(ch - '(');
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if (mp_s_rmap_reverse_sz < pos) {
break;
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}
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y = (int)mp_s_rmap_reverse[pos];
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/* if the char was found in the map
* and is less than the given radix add it
* to the number, otherwise exit the loop.
*/
if ((y == 0xff) || (y >= radix)) {
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break;
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}
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if ((err = mp_mul_d(a, (mp_digit)radix, a)) != MP_OKAY) {
return err;
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}
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if ((err = mp_add_d(a, (mp_digit)y, a)) != MP_OKAY) {
return err;
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}
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++str;
}
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/* if an illegal character was found, fail. */
if (!((*str == '\0') || (*str == '\r') || (*str == '\n'))) {
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mp_zero(a);
return MP_VAL;
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}
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/* set the sign only if a != 0 */
if (!MP_IS_ZERO(a)) {
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a->sign = neg;
}
return MP_OKAY;
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}
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#endif