Coverage Report

Created: 2025-06-13 06:58

/src/openssl31/crypto/bn/bn_intern.c
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Count
Source (jump to first uncovered line)
1
/*
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 * Copyright 2014-2020 The OpenSSL Project Authors. All Rights Reserved.
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 *
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 * Licensed under the Apache License 2.0 (the "License").  You may not use
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 * this file except in compliance with the License.  You can obtain a copy
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 * in the file LICENSE in the source distribution or at
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 * https://www.openssl.org/source/license.html
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 */
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#include "internal/cryptlib.h"
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#include "bn_local.h"
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/*
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 * Determine the modified width-(w+1) Non-Adjacent Form (wNAF) of 'scalar'.
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 * This is an array  r[]  of values that are either zero or odd with an
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 * absolute value less than  2^w  satisfying
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 *     scalar = \sum_j r[j]*2^j
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 * where at most one of any  w+1  consecutive digits is non-zero
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 * with the exception that the most significant digit may be only
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 * w-1 zeros away from that next non-zero digit.
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 */
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signed char *bn_compute_wNAF(const BIGNUM *scalar, int w, size_t *ret_len)
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3.35k
{
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3.35k
    int window_val;
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3.35k
    signed char *r = NULL;
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3.35k
    int sign = 1;
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3.35k
    int bit, next_bit, mask;
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3.35k
    size_t len = 0, j;
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3.35k
    if (BN_is_zero(scalar)) {
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50
        r = OPENSSL_malloc(1);
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50
        if (r == NULL) {
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0
            ERR_raise(ERR_LIB_BN, ERR_R_MALLOC_FAILURE);
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0
            goto err;
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0
        }
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50
        r[0] = 0;
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50
        *ret_len = 1;
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50
        return r;
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50
    }
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3.30k
    if (w <= 0 || w > 7) {      /* 'signed char' can represent integers with
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                                 * absolute values less than 2^7 */
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0
        ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
        goto err;
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0
    }
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3.30k
    bit = 1 << w;               /* at most 128 */
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3.30k
    next_bit = bit << 1;        /* at most 256 */
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3.30k
    mask = next_bit - 1;        /* at most 255 */
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50
3.30k
    if (BN_is_negative(scalar)) {
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0
        sign = -1;
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0
    }
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3.30k
    if (scalar->d == NULL || scalar->top == 0) {
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0
        ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
        goto err;
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0
    }
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3.30k
    len = BN_num_bits(scalar);
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3.30k
    r = OPENSSL_malloc(len + 1); /*
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                                  * Modified wNAF may be one digit longer than binary representation
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                                  * (*ret_len will be set to the actual length, i.e. at most
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                                  * BN_num_bits(scalar) + 1)
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                                  */
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3.30k
    if (r == NULL) {
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0
        ERR_raise(ERR_LIB_BN, ERR_R_MALLOC_FAILURE);
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0
        goto err;
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0
    }
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3.30k
    window_val = scalar->d[0] & mask;
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3.30k
    j = 0;
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678k
    while ((window_val != 0) || (j + w + 1 < len)) { /* if j+w+1 >= len,
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                                                      * window_val will not
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                                                      * increase */
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674k
        int digit = 0;
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        /* 0 <= window_val <= 2^(w+1) */
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674k
        if (window_val & 1) {
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            /* 0 < window_val < 2^(w+1) */
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87.5k
            if (window_val & bit) {
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41.8k
                digit = window_val - next_bit; /* -2^w < digit < 0 */
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41.8k
#if 1                           /* modified wNAF */
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41.8k
                if (j + w + 1 >= len) {
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                    /*
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                     * Special case for generating modified wNAFs:
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                     * no new bits will be added into window_val,
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                     * so using a positive digit here will decrease
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                     * the total length of the representation
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                     */
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377
                    digit = window_val & (mask >> 1); /* 0 < digit < 2^w */
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377
                }
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41.8k
#endif
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45.7k
            } else {
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45.7k
                digit = window_val; /* 0 < digit < 2^w */
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45.7k
            }
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87.5k
            if (digit <= -bit || digit >= bit || !(digit & 1)) {
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0
                ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
                goto err;
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0
            }
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87.5k
            window_val -= digit;
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            /*
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             * now window_val is 0 or 2^(w+1) in standard wNAF generation;
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             * for modified window NAFs, it may also be 2^w
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             */
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87.5k
            if (window_val != 0 && window_val != next_bit
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87.5k
                && window_val != bit) {
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0
                ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
                goto err;
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0
            }
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87.5k
        }
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118
674k
        r[j++] = sign * digit;
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120
674k
        window_val >>= 1;
121
674k
        window_val += bit * BN_is_bit_set(scalar, j + w);
122
123
674k
        if (window_val > next_bit) {
124
0
            ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
            goto err;
126
0
        }
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674k
    }
128
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3.30k
    if (j > len + 1) {
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0
        ERR_raise(ERR_LIB_BN, ERR_R_INTERNAL_ERROR);
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0
        goto err;
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0
    }
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3.30k
    *ret_len = j;
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3.30k
    return r;
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136
0
 err:
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0
    OPENSSL_free(r);
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0
    return NULL;
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3.30k
}
140
141
int bn_get_top(const BIGNUM *a)
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181k
{
143
181k
    return a->top;
144
181k
}
145
146
int bn_get_dmax(const BIGNUM *a)
147
0
{
148
0
    return a->dmax;
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0
}
150
151
void bn_set_all_zero(BIGNUM *a)
152
784k
{
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784k
    int i;
154
155
1.73M
    for (i = a->top; i < a->dmax; i++)
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949k
        a->d[i] = 0;
157
784k
}
158
159
int bn_copy_words(BN_ULONG *out, const BIGNUM *in, int size)
160
184k
{
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184k
    if (in->top > size)
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0
        return 0;
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164
184k
    memset(out, 0, sizeof(*out) * size);
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184k
    if (in->d != NULL)
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184k
        memcpy(out, in->d, sizeof(*out) * in->top);
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184k
    return 1;
168
184k
}
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170
BN_ULONG *bn_get_words(const BIGNUM *a)
171
364k
{
172
364k
    return a->d;
173
364k
}
174
175
void bn_set_static_words(BIGNUM *a, const BN_ULONG *words, int size)
176
0
{
177
    /*
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     * |const| qualifier omission is compensated by BN_FLG_STATIC_DATA
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     * flag, which effectively means "read-only data".
180
     */
181
0
    a->d = (BN_ULONG *)words;
182
0
    a->dmax = a->top = size;
183
0
    a->neg = 0;
184
0
    a->flags |= BN_FLG_STATIC_DATA;
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0
    bn_correct_top(a);
186
0
}
187
188
int bn_set_words(BIGNUM *a, const BN_ULONG *words, int num_words)
189
137k
{
190
137k
    if (bn_wexpand(a, num_words) == NULL) {
191
0
        ERR_raise(ERR_LIB_BN, ERR_R_MALLOC_FAILURE);
192
0
        return 0;
193
0
    }
194
195
137k
    memcpy(a->d, words, sizeof(BN_ULONG) * num_words);
196
137k
    a->top = num_words;
197
137k
    bn_correct_top(a);
198
137k
    return 1;
199
137k
}