Coverage Report

Created: 2025-12-10 06:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl/crypto/pkcs12/p12_utl.c
Line
Count
Source
1
/*
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 * Copyright 1999-2025 The OpenSSL Project Authors. All Rights Reserved.
3
 *
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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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10
#include <stdio.h>
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#include "internal/cryptlib.h"
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#include <openssl/pkcs12.h>
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#include "p12_local.h"
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#include "crypto/pkcs7/pk7_local.h"
15
16
/* Cheap and nasty Unicode stuff */
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unsigned char *OPENSSL_asc2uni(const char *asc, int asclen,
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    unsigned char **uni, int *unilen)
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0
{
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0
    int ulen, i;
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0
    unsigned char *unitmp;
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24
0
    if (asclen == -1)
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0
        asclen = (int)strlen(asc);
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0
    if (asclen < 0)
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0
        return NULL;
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0
    ulen = asclen * 2 + 2;
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0
    if ((unitmp = OPENSSL_malloc(ulen)) == NULL)
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0
        return NULL;
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0
    for (i = 0; i < ulen - 2; i += 2) {
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0
        unitmp[i] = 0;
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0
        unitmp[i + 1] = asc[i >> 1];
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0
    }
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    /* Make result double null terminated */
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0
    unitmp[ulen - 2] = 0;
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0
    unitmp[ulen - 1] = 0;
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0
    if (unilen)
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0
        *unilen = ulen;
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0
    if (uni)
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0
        *uni = unitmp;
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0
    return unitmp;
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0
}
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char *OPENSSL_uni2asc(const unsigned char *uni, int unilen)
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0
{
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0
    int asclen, i;
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0
    char *asctmp;
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50
    /* string must contain an even number of bytes */
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0
    if (unilen & 1)
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0
        return NULL;
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0
    if (unilen < 0)
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0
        return NULL;
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0
    asclen = unilen / 2;
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    /* If no terminating zero allow for one */
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0
    if (!unilen || uni[unilen - 1])
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0
        asclen++;
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0
    uni++;
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0
    if ((asctmp = OPENSSL_malloc(asclen)) == NULL)
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0
        return NULL;
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0
    for (i = 0; i < unilen; i += 2)
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0
        asctmp[i >> 1] = uni[i];
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0
    asctmp[asclen - 1] = 0;
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0
    return asctmp;
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0
}
67
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/*
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 * OPENSSL_{utf82uni|uni2utf8} perform conversion between UTF-8 and
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 * PKCS#12 BMPString format, which is specified as big-endian UTF-16.
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 * One should keep in mind that even though BMPString is passed as
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 * unsigned char *, it's not the kind of string you can exercise e.g.
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 * strlen on. Caller also has to keep in mind that its length is
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 * expressed not in number of UTF-16 characters, but in number of
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 * bytes the string occupies, and treat it, the length, accordingly.
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 */
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unsigned char *OPENSSL_utf82uni(const char *asc, int asclen,
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    unsigned char **uni, int *unilen)
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0
{
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0
    int ulen, i, j;
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0
    unsigned char *unitmp, *ret;
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0
    unsigned long utf32chr = 0;
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84
0
    if (asclen == -1)
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0
        asclen = (int)strlen(asc);
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0
    for (ulen = 0, i = 0; i < asclen; i += j) {
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0
        j = UTF8_getc((const unsigned char *)asc + i, asclen - i, &utf32chr);
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        /*
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         * Following condition is somewhat opportunistic is sense that
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         * decoding failure is used as *indirect* indication that input
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         * string might in fact be extended ASCII/ANSI/ISO-8859-X. The
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         * fallback is taken in hope that it would allow to process
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         * files created with previous OpenSSL version, which used the
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         * naive OPENSSL_asc2uni all along. It might be worth noting
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         * that probability of false positive depends on language. In
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         * cases covered by ISO Latin 1 probability is very low, because
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         * any printable non-ASCII alphabet letter followed by another
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         * or any ASCII character will trigger failure and fallback.
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         * In other cases situation can be intensified by the fact that
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         * English letters are not part of alternative keyboard layout,
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         * but even then there should be plenty of pairs that trigger
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         * decoding failure...
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         */
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0
        if (j < 0)
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0
            return OPENSSL_asc2uni(asc, asclen, uni, unilen);
108
109
0
        if (utf32chr > 0x10FFFF) /* UTF-16 cap */
110
0
            return NULL;
111
112
0
        if (utf32chr >= 0x10000) /* pair of UTF-16 characters */
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0
            ulen += 2 * 2;
114
0
        else /* or just one */
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0
            ulen += 2;
116
0
    }
117
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0
    ulen += 2; /* for trailing UTF16 zero */
119
120
0
    if ((ret = OPENSSL_malloc(ulen)) == NULL)
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0
        return NULL;
122
    /* re-run the loop writing down UTF-16 characters in big-endian order */
123
0
    for (unitmp = ret, i = 0; i < asclen; i += j) {
124
0
        j = UTF8_getc((const unsigned char *)asc + i, asclen - i, &utf32chr);
125
0
        if (utf32chr >= 0x10000) { /* pair if UTF-16 characters */
126
0
            unsigned int hi, lo;
127
128
0
            utf32chr -= 0x10000;
129
0
            hi = 0xD800 + (utf32chr >> 10);
130
0
            lo = 0xDC00 + (utf32chr & 0x3ff);
131
0
            *unitmp++ = (unsigned char)(hi >> 8);
132
0
            *unitmp++ = (unsigned char)(hi);
133
0
            *unitmp++ = (unsigned char)(lo >> 8);
134
0
            *unitmp++ = (unsigned char)(lo);
135
0
        } else { /* or just one */
136
0
            *unitmp++ = (unsigned char)(utf32chr >> 8);
137
0
            *unitmp++ = (unsigned char)(utf32chr);
138
0
        }
139
0
    }
140
    /* Make result double null terminated */
141
0
    *unitmp++ = 0;
142
0
    *unitmp++ = 0;
143
0
    if (unilen)
144
0
        *unilen = ulen;
145
0
    if (uni)
146
0
        *uni = ret;
147
0
    return ret;
148
0
}
149
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static int bmp_to_utf8(char *str, const unsigned char *utf16, int len)
151
0
{
152
0
    unsigned long utf32chr;
153
154
0
    if (len == 0)
155
0
        return 0;
156
157
0
    if (len < 2)
158
0
        return -1;
159
160
    /* pull UTF-16 character in big-endian order */
161
0
    utf32chr = (utf16[0] << 8) | utf16[1];
162
163
0
    if (utf32chr >= 0xD800 && utf32chr < 0xE000) { /* two chars */
164
0
        unsigned int lo;
165
166
0
        if (len < 4)
167
0
            return -1;
168
169
0
        utf32chr -= 0xD800;
170
0
        utf32chr <<= 10;
171
0
        lo = (utf16[2] << 8) | utf16[3];
172
0
        if (lo < 0xDC00 || lo >= 0xE000)
173
0
            return -1;
174
0
        utf32chr |= lo - 0xDC00;
175
0
        utf32chr += 0x10000;
176
0
    }
177
178
0
    return UTF8_putc((unsigned char *)str, len > 4 ? 4 : len, utf32chr);
179
0
}
180
181
char *OPENSSL_uni2utf8(const unsigned char *uni, int unilen)
182
0
{
183
0
    int asclen, i, j;
184
0
    char *asctmp;
185
186
    /* string must contain an even number of bytes */
187
0
    if (unilen & 1)
188
0
        return NULL;
189
190
0
    for (asclen = 0, i = 0; i < unilen;) {
191
0
        j = bmp_to_utf8(NULL, uni + i, unilen - i);
192
        /*
193
         * falling back to OPENSSL_uni2asc makes lesser sense [than
194
         * falling back to OPENSSL_asc2uni in OPENSSL_utf82uni above],
195
         * it's done rather to maintain symmetry...
196
         */
197
0
        if (j < 0)
198
0
            return OPENSSL_uni2asc(uni, unilen);
199
0
        if (j == 4)
200
0
            i += 4;
201
0
        else
202
0
            i += 2;
203
0
        asclen += j;
204
0
    }
205
206
    /* If no terminating zero allow for one */
207
0
    if (!unilen || (uni[unilen - 2] || uni[unilen - 1]))
208
0
        asclen++;
209
210
0
    if ((asctmp = OPENSSL_malloc(asclen)) == NULL)
211
0
        return NULL;
212
213
    /* re-run the loop emitting UTF-8 string */
214
0
    for (asclen = 0, i = 0; i < unilen;) {
215
0
        j = bmp_to_utf8(asctmp + asclen, uni + i, unilen - i);
216
0
        if (j == 4)
217
0
            i += 4;
218
0
        else
219
0
            i += 2;
220
0
        asclen += j;
221
0
    }
222
223
    /* If no terminating zero write one */
224
0
    if (!unilen || (uni[unilen - 2] || uni[unilen - 1]))
225
0
        asctmp[asclen] = '\0';
226
227
0
    return asctmp;
228
0
}
229
230
int i2d_PKCS12_bio(BIO *bp, const PKCS12 *p12)
231
0
{
232
0
    return ASN1_item_i2d_bio(ASN1_ITEM_rptr(PKCS12), bp, p12);
233
0
}
234
235
#ifndef OPENSSL_NO_STDIO
236
int i2d_PKCS12_fp(FILE *fp, const PKCS12 *p12)
237
0
{
238
0
    return ASN1_item_i2d_fp(ASN1_ITEM_rptr(PKCS12), fp, p12);
239
0
}
240
#endif
241
242
PKCS12 *d2i_PKCS12_bio(BIO *bp, PKCS12 **p12)
243
0
{
244
0
    OSSL_LIB_CTX *libctx = NULL;
245
0
    const char *propq = NULL;
246
0
    const PKCS7_CTX *p7ctx = NULL;
247
248
0
    if (p12 != NULL) {
249
0
        p7ctx = ossl_pkcs12_get0_pkcs7ctx(*p12);
250
0
        if (p7ctx != NULL) {
251
0
            libctx = ossl_pkcs7_ctx_get0_libctx(p7ctx);
252
0
            propq = ossl_pkcs7_ctx_get0_propq(p7ctx);
253
0
        }
254
0
    }
255
0
    return ASN1_item_d2i_bio_ex(ASN1_ITEM_rptr(PKCS12), bp, p12, libctx, propq);
256
0
}
257
258
#ifndef OPENSSL_NO_STDIO
259
PKCS12 *d2i_PKCS12_fp(FILE *fp, PKCS12 **p12)
260
0
{
261
0
    OSSL_LIB_CTX *libctx = NULL;
262
0
    const char *propq = NULL;
263
0
    const PKCS7_CTX *p7ctx = NULL;
264
265
0
    if (p12 != NULL) {
266
0
        p7ctx = ossl_pkcs12_get0_pkcs7ctx(*p12);
267
0
        if (p7ctx != NULL) {
268
0
            libctx = ossl_pkcs7_ctx_get0_libctx(p7ctx);
269
0
            propq = ossl_pkcs7_ctx_get0_propq(p7ctx);
270
0
        }
271
0
    }
272
0
    return ASN1_item_d2i_fp_ex(ASN1_ITEM_rptr(PKCS12), fp, p12, libctx, propq);
273
0
}
274
#endif