source: EcnlProtoTool/trunk/openssl-1.1.0e/crypto/pkcs12/p12_utl.c

Last change on this file was 331, checked in by coas-nagasima, 6 years ago

prototoolに関連するプロジェクトをnewlibからmuslを使うよう変更・更新
ntshellをnewlibの下位の実装から、muslのsyscallの実装に変更・更新
以下のOSSをアップデート
・mruby-1.3.0
・musl-1.1.18
・onigmo-6.1.3
・tcc-0.9.27
以下のOSSを追加
・openssl-1.1.0e
・curl-7.57.0
・zlib-1.2.11
以下のmrbgemsを追加
・iij/mruby-digest
・iij/mruby-env
・iij/mruby-errno
・iij/mruby-iijson
・iij/mruby-ipaddr
・iij/mruby-mock
・iij/mruby-require
・iij/mruby-tls-openssl

  • Property svn:eol-style set to native
  • Property svn:mime-type set to text/x-csrc
File size: 7.1 KB
Line 
1/*
2 * Copyright 1999-2016 The OpenSSL Project Authors. All Rights Reserved.
3 *
4 * Licensed under the OpenSSL license (the "License"). You may not use
5 * this file except in compliance with the License. You can obtain a copy
6 * in the file LICENSE in the source distribution or at
7 * https://www.openssl.org/source/license.html
8 */
9
10#include <stdio.h>
11#include "internal/cryptlib.h"
12#include <openssl/pkcs12.h>
13
14/* Cheap and nasty Unicode stuff */
15
16unsigned char *OPENSSL_asc2uni(const char *asc, int asclen,
17 unsigned char **uni, int *unilen)
18{
19 int ulen, i;
20 unsigned char *unitmp;
21
22 if (asclen == -1)
23 asclen = strlen(asc);
24 ulen = asclen * 2 + 2;
25 if ((unitmp = OPENSSL_malloc(ulen)) == NULL)
26 return NULL;
27 for (i = 0; i < ulen - 2; i += 2) {
28 unitmp[i] = 0;
29 unitmp[i + 1] = asc[i >> 1];
30 }
31 /* Make result double null terminated */
32 unitmp[ulen - 2] = 0;
33 unitmp[ulen - 1] = 0;
34 if (unilen)
35 *unilen = ulen;
36 if (uni)
37 *uni = unitmp;
38 return unitmp;
39}
40
41char *OPENSSL_uni2asc(const unsigned char *uni, int unilen)
42{
43 int asclen, i;
44 char *asctmp;
45 /* string must contain an even number of bytes */
46 if (unilen & 1)
47 return NULL;
48 asclen = unilen / 2;
49 /* If no terminating zero allow for one */
50 if (!unilen || uni[unilen - 1])
51 asclen++;
52 uni++;
53 if ((asctmp = OPENSSL_malloc(asclen)) == NULL)
54 return NULL;
55 for (i = 0; i < unilen; i += 2)
56 asctmp[i >> 1] = uni[i];
57 asctmp[asclen - 1] = 0;
58 return asctmp;
59}
60
61/*
62 * OPENSSL_{utf82uni|uni2utf8} perform conversion between UTF-8 and
63 * PKCS#12 BMPString format, which is specified as big-endian UTF-16.
64 * One should keep in mind that even though BMPString is passed as
65 * unsigned char *, it's not the kind of string you can exercise e.g.
66 * strlen on. Caller also has to keep in mind that its length is
67 * expressed not in number of UTF-16 characters, but in number of
68 * bytes the string occupies, and treat it, the length, accordingly.
69 */
70unsigned char *OPENSSL_utf82uni(const char *asc, int asclen,
71 unsigned char **uni, int *unilen)
72{
73 int ulen, i, j;
74 unsigned char *unitmp, *ret;
75 unsigned long utf32chr = 0;
76
77 if (asclen == -1)
78 asclen = strlen(asc);
79
80 for (ulen = 0, i = 0; i < asclen; i += j) {
81 j = UTF8_getc((const unsigned char *)asc+i, asclen-i, &utf32chr);
82
83 /*
84 * Following condition is somewhat opportunistic is sense that
85 * decoding failure is used as *indirect* indication that input
86 * string might in fact be extended ASCII/ANSI/ISO-8859-X. The
87 * fallback is taken in hope that it would allow to process
88 * files created with previous OpenSSL version, which used the
89 * naive OPENSSL_asc2uni all along. It might be worth noting
90 * that probability of false positive depends on language. In
91 * cases covered by ISO Latin 1 probability is very low, because
92 * any printable non-ASCII alphabet letter followed by another
93 * or any ASCII character will trigger failure and fallback.
94 * In other cases situation can be intensified by the fact that
95 * English letters are not part of alternative keyboard layout,
96 * but even then there should be plenty of pairs that trigger
97 * decoding failure...
98 */
99 if (j < 0)
100 return OPENSSL_asc2uni(asc, asclen, uni, unilen);
101
102 if (utf32chr > 0x10FFFF) /* UTF-16 cap */
103 return NULL;
104
105 if (utf32chr >= 0x10000) /* pair of UTF-16 characters */
106 ulen += 2*2;
107 else /* or just one */
108 ulen += 2;
109 }
110
111 ulen += 2; /* for trailing UTF16 zero */
112
113 if ((ret = OPENSSL_malloc(ulen)) == NULL)
114 return NULL;
115
116 /* re-run the loop writing down UTF-16 characters in big-endian order */
117 for (unitmp = ret, i = 0; i < asclen; i += j) {
118 j = UTF8_getc((const unsigned char *)asc+i, asclen-i, &utf32chr);
119 if (utf32chr >= 0x10000) { /* pair if UTF-16 characters */
120 unsigned int hi, lo;
121
122 utf32chr -= 0x10000;
123 hi = 0xD800 + (utf32chr>>10);
124 lo = 0xDC00 + (utf32chr&0x3ff);
125 *unitmp++ = (unsigned char)(hi>>8);
126 *unitmp++ = (unsigned char)(hi);
127 *unitmp++ = (unsigned char)(lo>>8);
128 *unitmp++ = (unsigned char)(lo);
129 } else { /* or just one */
130 *unitmp++ = (unsigned char)(utf32chr>>8);
131 *unitmp++ = (unsigned char)(utf32chr);
132 }
133 }
134 /* Make result double null terminated */
135 *unitmp++ = 0;
136 *unitmp++ = 0;
137 if (unilen)
138 *unilen = ulen;
139 if (uni)
140 *uni = ret;
141 return ret;
142}
143
144static int bmp_to_utf8(char *str, const unsigned char *utf16, int len)
145{
146 unsigned long utf32chr;
147
148 if (len == 0) return 0;
149
150 if (len < 2) return -1;
151
152 /* pull UTF-16 character in big-endian order */
153 utf32chr = (utf16[0]<<8) | utf16[1];
154
155 if (utf32chr >= 0xD800 && utf32chr < 0xE000) { /* two chars */
156 unsigned int lo;
157
158 if (len < 4) return -1;
159
160 utf32chr -= 0xD800;
161 utf32chr <<= 10;
162 lo = (utf16[2]<<8) | utf16[3];
163 if (lo < 0xDC00 || lo >= 0xE000) return -1;
164 utf32chr |= lo-0xDC00;
165 utf32chr += 0x10000;
166 }
167
168 return UTF8_putc((unsigned char *)str, len > 4 ? 4 : len, utf32chr);
169}
170
171char *OPENSSL_uni2utf8(const unsigned char *uni, int unilen)
172{
173 int asclen, i, j;
174 char *asctmp;
175
176 /* string must contain an even number of bytes */
177 if (unilen & 1)
178 return NULL;
179
180 for (asclen = 0, i = 0; i < unilen; ) {
181 j = bmp_to_utf8(NULL, uni+i, unilen-i);
182 /*
183 * falling back to OPENSSL_uni2asc makes lesser sense [than
184 * falling back to OPENSSL_asc2uni in OPENSSL_utf82uni above],
185 * it's done rather to maintain symmetry...
186 */
187 if (j < 0) return OPENSSL_uni2asc(uni, unilen);
188 if (j == 4) i += 4;
189 else i += 2;
190 asclen += j;
191 }
192
193 /* If no terminating zero allow for one */
194 if (!unilen || (uni[unilen-2]||uni[unilen - 1]))
195 asclen++;
196
197 if ((asctmp = OPENSSL_malloc(asclen)) == NULL)
198 return NULL;
199
200 /* re-run the loop emitting UTF-8 string */
201 for (asclen = 0, i = 0; i < unilen; ) {
202 j = bmp_to_utf8(asctmp+asclen, uni+i, unilen-i);
203 if (j == 4) i += 4;
204 else i += 2;
205 asclen += j;
206 }
207
208 /* If no terminating zero write one */
209 if (!unilen || (uni[unilen-2]||uni[unilen - 1]))
210 asctmp[asclen] = '\0';
211
212 return asctmp;
213}
214
215int i2d_PKCS12_bio(BIO *bp, PKCS12 *p12)
216{
217 return ASN1_item_i2d_bio(ASN1_ITEM_rptr(PKCS12), bp, p12);
218}
219
220#ifndef OPENSSL_NO_STDIO
221int i2d_PKCS12_fp(FILE *fp, PKCS12 *p12)
222{
223 return ASN1_item_i2d_fp(ASN1_ITEM_rptr(PKCS12), fp, p12);
224}
225#endif
226
227PKCS12 *d2i_PKCS12_bio(BIO *bp, PKCS12 **p12)
228{
229 return ASN1_item_d2i_bio(ASN1_ITEM_rptr(PKCS12), bp, p12);
230}
231
232#ifndef OPENSSL_NO_STDIO
233PKCS12 *d2i_PKCS12_fp(FILE *fp, PKCS12 **p12)
234{
235 return ASN1_item_d2i_fp(ASN1_ITEM_rptr(PKCS12), fp, p12);
236}
237#endif
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