Coverage Report

Created: 2025-11-16 06:40

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl33/include/crypto/md32_common.h
Line
Count
Source
1
/*
2
 * Copyright 1999-2022 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (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
/*-
11
 * This is a generic 32 bit "collector" for message digest algorithms.
12
 * Whenever needed it collects input character stream into chunks of
13
 * 32 bit values and invokes a block function that performs actual hash
14
 * calculations.
15
 *
16
 * Porting guide.
17
 *
18
 * Obligatory macros:
19
 *
20
 * DATA_ORDER_IS_BIG_ENDIAN or DATA_ORDER_IS_LITTLE_ENDIAN
21
 *      this macro defines byte order of input stream.
22
 * HASH_CBLOCK
23
 *      size of a unit chunk HASH_BLOCK operates on.
24
 * HASH_LONG
25
 *      has to be at least 32 bit wide.
26
 * HASH_CTX
27
 *      context structure that at least contains following
28
 *      members:
29
 *              typedef struct {
30
 *                      ...
31
 *                      HASH_LONG       Nl,Nh;
32
 *                      either {
33
 *                      HASH_LONG       data[HASH_LBLOCK];
34
 *                      unsigned char   data[HASH_CBLOCK];
35
 *                      };
36
 *                      unsigned int    num;
37
 *                      ...
38
 *                      } HASH_CTX;
39
 *      data[] vector is expected to be zeroed upon first call to
40
 *      HASH_UPDATE.
41
 * HASH_UPDATE
42
 *      name of "Update" function, implemented here.
43
 * HASH_TRANSFORM
44
 *      name of "Transform" function, implemented here.
45
 * HASH_FINAL
46
 *      name of "Final" function, implemented here.
47
 * HASH_BLOCK_DATA_ORDER
48
 *      name of "block" function capable of treating *unaligned* input
49
 *      message in original (data) byte order, implemented externally.
50
 * HASH_MAKE_STRING
51
 *      macro converting context variables to an ASCII hash string.
52
 *
53
 * MD5 example:
54
 *
55
 *      #define DATA_ORDER_IS_LITTLE_ENDIAN
56
 *
57
 *      #define HASH_LONG               MD5_LONG
58
 *      #define HASH_CTX                MD5_CTX
59
 *      #define HASH_CBLOCK             MD5_CBLOCK
60
 *      #define HASH_UPDATE             MD5_Update
61
 *      #define HASH_TRANSFORM          MD5_Transform
62
 *      #define HASH_FINAL              MD5_Final
63
 *      #define HASH_BLOCK_DATA_ORDER   md5_block_data_order
64
 */
65
66
#ifndef OSSL_CRYPTO_MD32_COMMON_H
67
# define OSSL_CRYPTO_MD32_COMMON_H
68
# pragma once
69
70
# include <openssl/crypto.h>
71
72
# if !defined(DATA_ORDER_IS_BIG_ENDIAN) && !defined(DATA_ORDER_IS_LITTLE_ENDIAN)
73
#  error "DATA_ORDER must be defined!"
74
# endif
75
76
# ifndef HASH_CBLOCK
77
#  error "HASH_CBLOCK must be defined!"
78
# endif
79
# ifndef HASH_LONG
80
#  error "HASH_LONG must be defined!"
81
# endif
82
# ifndef HASH_CTX
83
#  error "HASH_CTX must be defined!"
84
# endif
85
86
# ifndef HASH_UPDATE
87
#  error "HASH_UPDATE must be defined!"
88
# endif
89
# ifndef HASH_TRANSFORM
90
#  error "HASH_TRANSFORM must be defined!"
91
# endif
92
# ifndef HASH_FINAL
93
#  error "HASH_FINAL must be defined!"
94
# endif
95
96
# ifndef HASH_BLOCK_DATA_ORDER
97
#  error "HASH_BLOCK_DATA_ORDER must be defined!"
98
# endif
99
100
559M
# define ROTATE(a,n)     (((a)<<(n))|(((a)&0xffffffff)>>(32-(n))))
101
102
#ifndef PEDANTIC
103
# if defined(__GNUC__) && __GNUC__>=2 && \
104
     !defined(OPENSSL_NO_ASM) && !defined(OPENSSL_NO_INLINE_ASM)
105
#  if defined(__riscv_zbb) || defined(__riscv_zbkb)
106
#   if __riscv_xlen == 64
107
#   undef ROTATE
108
#   define ROTATE(x, n) ({ MD32_REG_T ret;            \
109
                       asm ("roriw %0, %1, %2"        \
110
                       : "=r"(ret)                    \
111
                       : "r"(x), "i"(32 - (n))); ret;})
112
#   endif
113
#   if __riscv_xlen == 32
114
#   undef ROTATE
115
#   define ROTATE(x, n) ({ MD32_REG_T ret;            \
116
                       asm ("rori %0, %1, %2"         \
117
                       : "=r"(ret)                    \
118
                       : "r"(x), "i"(32 - (n))); ret;})
119
#   endif
120
#  endif
121
# endif
122
#endif
123
124
# if defined(DATA_ORDER_IS_BIG_ENDIAN)
125
126
946k
#  define HOST_c2l(c,l)  (l =(((unsigned long)(*((c)++)))<<24),          \
127
946k
                         l|=(((unsigned long)(*((c)++)))<<16),          \
128
946k
                         l|=(((unsigned long)(*((c)++)))<< 8),          \
129
946k
                         l|=(((unsigned long)(*((c)++)))    )           )
130
3.97G
#  define HOST_l2c(l,c)  (*((c)++)=(unsigned char)(((l)>>24)&0xff),      \
131
3.97G
                         *((c)++)=(unsigned char)(((l)>>16)&0xff),      \
132
3.97G
                         *((c)++)=(unsigned char)(((l)>> 8)&0xff),      \
133
3.97G
                         *((c)++)=(unsigned char)(((l)    )&0xff),      \
134
3.97G
                         l)
135
136
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
137
138
26.3M
#  define HOST_c2l(c,l)  (l =(((unsigned long)(*((c)++)))    ),          \
139
26.3M
                         l|=(((unsigned long)(*((c)++)))<< 8),          \
140
26.3M
                         l|=(((unsigned long)(*((c)++)))<<16),          \
141
26.3M
                         l|=(((unsigned long)(*((c)++)))<<24)           )
142
14.3M
#  define HOST_l2c(l,c)  (*((c)++)=(unsigned char)(((l)    )&0xff),      \
143
14.3M
                         *((c)++)=(unsigned char)(((l)>> 8)&0xff),      \
144
14.3M
                         *((c)++)=(unsigned char)(((l)>>16)&0xff),      \
145
14.3M
                         *((c)++)=(unsigned char)(((l)>>24)&0xff),      \
146
14.3M
                         l)
147
148
# endif
149
150
/*
151
 * Time for some action :-)
152
 */
153
154
int HASH_UPDATE(HASH_CTX *c, const void *data_, size_t len)
155
852M
{
156
852M
    const unsigned char *data = data_;
157
852M
    unsigned char *p;
158
852M
    HASH_LONG l;
159
852M
    size_t n;
160
161
852M
    if (len == 0)
162
0
        return 1;
163
164
852M
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
852M
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
852M
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
852M
    c->Nl = l;
170
171
852M
    n = c->num;
172
852M
    if (n != 0) {
173
423M
        p = (unsigned char *)c->data;
174
175
423M
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
211M
            memcpy(p + n, data, HASH_CBLOCK - n);
177
211M
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
211M
            n = HASH_CBLOCK - n;
179
211M
            data += n;
180
211M
            len -= n;
181
211M
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
211M
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
211M
        } else {
190
211M
            memcpy(p + n, data, len);
191
211M
            c->num += (unsigned int)len;
192
211M
            return 1;
193
211M
        }
194
423M
    }
195
196
640M
    n = len / HASH_CBLOCK;
197
640M
    if (n > 0) {
198
1.85M
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
1.85M
        n *= HASH_CBLOCK;
200
1.85M
        data += n;
201
1.85M
        len -= n;
202
1.85M
    }
203
204
640M
    if (len != 0) {
205
427M
        p = (unsigned char *)c->data;
206
427M
        c->num = (unsigned int)len;
207
427M
        memcpy(p, data, len);
208
427M
    }
209
640M
    return 1;
210
852M
}
SHA1_Update
Line
Count
Source
155
1.38M
{
156
1.38M
    const unsigned char *data = data_;
157
1.38M
    unsigned char *p;
158
1.38M
    HASH_LONG l;
159
1.38M
    size_t n;
160
161
1.38M
    if (len == 0)
162
0
        return 1;
163
164
1.38M
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
1.38M
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
1.38M
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
1.38M
    c->Nl = l;
170
171
1.38M
    n = c->num;
172
1.38M
    if (n != 0) {
173
148k
        p = (unsigned char *)c->data;
174
175
148k
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
69.2k
            memcpy(p + n, data, HASH_CBLOCK - n);
177
69.2k
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
69.2k
            n = HASH_CBLOCK - n;
179
69.2k
            data += n;
180
69.2k
            len -= n;
181
69.2k
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
69.2k
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
79.2k
        } else {
190
79.2k
            memcpy(p + n, data, len);
191
79.2k
            c->num += (unsigned int)len;
192
79.2k
            return 1;
193
79.2k
        }
194
148k
    }
195
196
1.30M
    n = len / HASH_CBLOCK;
197
1.30M
    if (n > 0) {
198
441k
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
441k
        n *= HASH_CBLOCK;
200
441k
        data += n;
201
441k
        len -= n;
202
441k
    }
203
204
1.30M
    if (len != 0) {
205
1.16M
        p = (unsigned char *)c->data;
206
1.16M
        c->num = (unsigned int)len;
207
1.16M
        memcpy(p, data, len);
208
1.16M
    }
209
1.30M
    return 1;
210
1.38M
}
SHA256_Update
Line
Count
Source
155
849M
{
156
849M
    const unsigned char *data = data_;
157
849M
    unsigned char *p;
158
849M
    HASH_LONG l;
159
849M
    size_t n;
160
161
849M
    if (len == 0)
162
0
        return 1;
163
164
849M
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
849M
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
849M
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
849M
    c->Nl = l;
170
171
849M
    n = c->num;
172
849M
    if (n != 0) {
173
423M
        p = (unsigned char *)c->data;
174
175
423M
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
211M
            memcpy(p + n, data, HASH_CBLOCK - n);
177
211M
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
211M
            n = HASH_CBLOCK - n;
179
211M
            data += n;
180
211M
            len -= n;
181
211M
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
211M
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
211M
        } else {
190
211M
            memcpy(p + n, data, len);
191
211M
            c->num += (unsigned int)len;
192
211M
            return 1;
193
211M
        }
194
423M
    }
195
196
637M
    n = len / HASH_CBLOCK;
197
637M
    if (n > 0) {
198
1.33M
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
1.33M
        n *= HASH_CBLOCK;
200
1.33M
        data += n;
201
1.33M
        len -= n;
202
1.33M
    }
203
204
637M
    if (len != 0) {
205
425M
        p = (unsigned char *)c->data;
206
425M
        c->num = (unsigned int)len;
207
425M
        memcpy(p, data, len);
208
425M
    }
209
637M
    return 1;
210
849M
}
Unexecuted instantiation: MD4_Update
MD5_Update
Line
Count
Source
155
607k
{
156
607k
    const unsigned char *data = data_;
157
607k
    unsigned char *p;
158
607k
    HASH_LONG l;
159
607k
    size_t n;
160
161
607k
    if (len == 0)
162
0
        return 1;
163
164
607k
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
607k
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
607k
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
607k
    c->Nl = l;
170
171
607k
    n = c->num;
172
607k
    if (n != 0) {
173
167k
        p = (unsigned char *)c->data;
174
175
167k
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
78.6k
            memcpy(p + n, data, HASH_CBLOCK - n);
177
78.6k
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
78.6k
            n = HASH_CBLOCK - n;
179
78.6k
            data += n;
180
78.6k
            len -= n;
181
78.6k
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
78.6k
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
89.2k
        } else {
190
89.2k
            memcpy(p + n, data, len);
191
89.2k
            c->num += (unsigned int)len;
192
89.2k
            return 1;
193
89.2k
        }
194
167k
    }
195
196
517k
    n = len / HASH_CBLOCK;
197
517k
    if (n > 0) {
198
74.8k
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
74.8k
        n *= HASH_CBLOCK;
200
74.8k
        data += n;
201
74.8k
        len -= n;
202
74.8k
    }
203
204
517k
    if (len != 0) {
205
475k
        p = (unsigned char *)c->data;
206
475k
        c->num = (unsigned int)len;
207
475k
        memcpy(p, data, len);
208
475k
    }
209
517k
    return 1;
210
607k
}
RIPEMD160_Update
Line
Count
Source
155
1.25M
{
156
1.25M
    const unsigned char *data = data_;
157
1.25M
    unsigned char *p;
158
1.25M
    HASH_LONG l;
159
1.25M
    size_t n;
160
161
1.25M
    if (len == 0)
162
0
        return 1;
163
164
1.25M
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
1.25M
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
1.25M
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
1.25M
    c->Nl = l;
170
171
1.25M
    n = c->num;
172
1.25M
    if (n != 0) {
173
564
        p = (unsigned char *)c->data;
174
175
564
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
199
            memcpy(p + n, data, HASH_CBLOCK - n);
177
199
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
199
            n = HASH_CBLOCK - n;
179
199
            data += n;
180
199
            len -= n;
181
199
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
199
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
365
        } else {
190
365
            memcpy(p + n, data, len);
191
365
            c->num += (unsigned int)len;
192
365
            return 1;
193
365
        }
194
564
    }
195
196
1.25M
    n = len / HASH_CBLOCK;
197
1.25M
    if (n > 0) {
198
1.91k
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
1.91k
        n *= HASH_CBLOCK;
200
1.91k
        data += n;
201
1.91k
        len -= n;
202
1.91k
    }
203
204
1.25M
    if (len != 0) {
205
1.25M
        p = (unsigned char *)c->data;
206
1.25M
        c->num = (unsigned int)len;
207
1.25M
        memcpy(p, data, len);
208
1.25M
    }
209
1.25M
    return 1;
210
1.25M
}
ossl_sm3_update
Line
Count
Source
155
4.37k
{
156
4.37k
    const unsigned char *data = data_;
157
4.37k
    unsigned char *p;
158
4.37k
    HASH_LONG l;
159
4.37k
    size_t n;
160
161
4.37k
    if (len == 0)
162
0
        return 1;
163
164
4.37k
    l = (c->Nl + (((HASH_LONG) len) << 3)) & 0xffffffffUL;
165
4.37k
    if (l < c->Nl)              /* overflow */
166
0
        c->Nh++;
167
4.37k
    c->Nh += (HASH_LONG) (len >> 29); /* might cause compiler warning on
168
                                       * 16-bit */
169
4.37k
    c->Nl = l;
170
171
4.37k
    n = c->num;
172
4.37k
    if (n != 0) {
173
387
        p = (unsigned char *)c->data;
174
175
387
        if (len >= HASH_CBLOCK || len + n >= HASH_CBLOCK) {
176
155
            memcpy(p + n, data, HASH_CBLOCK - n);
177
155
            HASH_BLOCK_DATA_ORDER(c, p, 1);
178
155
            n = HASH_CBLOCK - n;
179
155
            data += n;
180
155
            len -= n;
181
155
            c->num = 0;
182
            /*
183
             * We use memset rather than OPENSSL_cleanse() here deliberately.
184
             * Using OPENSSL_cleanse() here could be a performance issue. It
185
             * will get properly cleansed on finalisation so this isn't a
186
             * security problem.
187
             */
188
155
            memset(p, 0, HASH_CBLOCK); /* keep it zeroed */
189
232
        } else {
190
232
            memcpy(p + n, data, len);
191
232
            c->num += (unsigned int)len;
192
232
            return 1;
193
232
        }
194
387
    }
195
196
4.14k
    n = len / HASH_CBLOCK;
197
4.14k
    if (n > 0) {
198
1.97k
        HASH_BLOCK_DATA_ORDER(c, data, n);
199
1.97k
        n *= HASH_CBLOCK;
200
1.97k
        data += n;
201
1.97k
        len -= n;
202
1.97k
    }
203
204
4.14k
    if (len != 0) {
205
2.28k
        p = (unsigned char *)c->data;
206
2.28k
        c->num = (unsigned int)len;
207
2.28k
        memcpy(p, data, len);
208
2.28k
    }
209
4.14k
    return 1;
210
4.37k
}
211
212
void HASH_TRANSFORM(HASH_CTX *c, const unsigned char *data)
213
1.07M
{
214
1.07M
    HASH_BLOCK_DATA_ORDER(c, data, 1);
215
1.07M
}
SHA1_Transform
Line
Count
Source
213
849k
{
214
849k
    HASH_BLOCK_DATA_ORDER(c, data, 1);
215
849k
}
SHA256_Transform
Line
Count
Source
213
227k
{
214
227k
    HASH_BLOCK_DATA_ORDER(c, data, 1);
215
227k
}
Unexecuted instantiation: MD4_Transform
Unexecuted instantiation: MD5_Transform
Unexecuted instantiation: RIPEMD160_Transform
Unexecuted instantiation: ossl_sm3_transform
216
217
int HASH_FINAL(unsigned char *md, HASH_CTX *c)
218
400M
{
219
400M
    unsigned char *p = (unsigned char *)c->data;
220
400M
    size_t n = c->num;
221
222
400M
    p[n] = 0x80;                /* there is always room for one */
223
400M
    n++;
224
225
400M
    if (n > (HASH_CBLOCK - 8)) {
226
94.3k
        memset(p + n, 0, HASH_CBLOCK - n);
227
94.3k
        n = 0;
228
94.3k
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
94.3k
    }
230
400M
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
400M
    p += HASH_CBLOCK - 8;
233
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
398M
    (void)HOST_l2c(c->Nh, p);
235
398M
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
2.13M
    (void)HOST_l2c(c->Nl, p);
238
2.13M
    (void)HOST_l2c(c->Nh, p);
239
# endif
240
400M
    p -= HASH_CBLOCK;
241
400M
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
400M
    c->num = 0;
243
400M
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
400M
    HASH_MAKE_STRING(c, md);
249
396M
# endif
250
251
396M
    return 1;
252
400M
}
SHA1_Final
Line
Count
Source
218
1.52M
{
219
1.52M
    unsigned char *p = (unsigned char *)c->data;
220
1.52M
    size_t n = c->num;
221
222
1.52M
    p[n] = 0x80;                /* there is always room for one */
223
1.52M
    n++;
224
225
1.52M
    if (n > (HASH_CBLOCK - 8)) {
226
81.3k
        memset(p + n, 0, HASH_CBLOCK - n);
227
81.3k
        n = 0;
228
81.3k
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
81.3k
    }
230
1.52M
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
1.52M
    p += HASH_CBLOCK - 8;
233
1.52M
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
1.52M
    (void)HOST_l2c(c->Nh, p);
235
1.52M
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
    (void)HOST_l2c(c->Nl, p);
238
    (void)HOST_l2c(c->Nh, p);
239
# endif
240
1.52M
    p -= HASH_CBLOCK;
241
1.52M
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
1.52M
    c->num = 0;
243
1.52M
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
1.52M
    HASH_MAKE_STRING(c, md);
249
1.52M
# endif
250
251
1.52M
    return 1;
252
1.52M
}
SHA256_Final
Line
Count
Source
218
396M
{
219
396M
    unsigned char *p = (unsigned char *)c->data;
220
396M
    size_t n = c->num;
221
222
396M
    p[n] = 0x80;                /* there is always room for one */
223
396M
    n++;
224
225
396M
    if (n > (HASH_CBLOCK - 8)) {
226
6.41k
        memset(p + n, 0, HASH_CBLOCK - n);
227
6.41k
        n = 0;
228
6.41k
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
6.41k
    }
230
396M
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
396M
    p += HASH_CBLOCK - 8;
233
396M
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
396M
    (void)HOST_l2c(c->Nh, p);
235
396M
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
    (void)HOST_l2c(c->Nl, p);
238
    (void)HOST_l2c(c->Nh, p);
239
# endif
240
396M
    p -= HASH_CBLOCK;
241
396M
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
396M
    c->num = 0;
243
396M
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
396M
    HASH_MAKE_STRING(c, md);
249
396M
# endif
250
251
396M
    return 1;
252
396M
}
Unexecuted instantiation: MD4_Final
MD5_Final
Line
Count
Source
218
600k
{
219
600k
    unsigned char *p = (unsigned char *)c->data;
220
600k
    size_t n = c->num;
221
222
600k
    p[n] = 0x80;                /* there is always room for one */
223
600k
    n++;
224
225
600k
    if (n > (HASH_CBLOCK - 8)) {
226
6.38k
        memset(p + n, 0, HASH_CBLOCK - n);
227
6.38k
        n = 0;
228
6.38k
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
6.38k
    }
230
600k
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
600k
    p += HASH_CBLOCK - 8;
233
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
    (void)HOST_l2c(c->Nh, p);
235
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
600k
    (void)HOST_l2c(c->Nl, p);
238
600k
    (void)HOST_l2c(c->Nh, p);
239
600k
# endif
240
600k
    p -= HASH_CBLOCK;
241
600k
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
600k
    c->num = 0;
243
600k
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
600k
    HASH_MAKE_STRING(c, md);
249
600k
# endif
250
251
600k
    return 1;
252
600k
}
RIPEMD160_Final
Line
Count
Source
218
1.53M
{
219
1.53M
    unsigned char *p = (unsigned char *)c->data;
220
1.53M
    size_t n = c->num;
221
222
1.53M
    p[n] = 0x80;                /* there is always room for one */
223
1.53M
    n++;
224
225
1.53M
    if (n > (HASH_CBLOCK - 8)) {
226
182
        memset(p + n, 0, HASH_CBLOCK - n);
227
182
        n = 0;
228
182
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
182
    }
230
1.53M
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
1.53M
    p += HASH_CBLOCK - 8;
233
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
    (void)HOST_l2c(c->Nh, p);
235
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
1.53M
    (void)HOST_l2c(c->Nl, p);
238
1.53M
    (void)HOST_l2c(c->Nh, p);
239
1.53M
# endif
240
1.53M
    p -= HASH_CBLOCK;
241
1.53M
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
1.53M
    c->num = 0;
243
1.53M
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
1.53M
    HASH_MAKE_STRING(c, md);
249
1.53M
# endif
250
251
1.53M
    return 1;
252
1.53M
}
ossl_sm3_final
Line
Count
Source
218
2.15k
{
219
2.15k
    unsigned char *p = (unsigned char *)c->data;
220
2.15k
    size_t n = c->num;
221
222
2.15k
    p[n] = 0x80;                /* there is always room for one */
223
2.15k
    n++;
224
225
2.15k
    if (n > (HASH_CBLOCK - 8)) {
226
45
        memset(p + n, 0, HASH_CBLOCK - n);
227
45
        n = 0;
228
45
        HASH_BLOCK_DATA_ORDER(c, p, 1);
229
45
    }
230
2.15k
    memset(p + n, 0, HASH_CBLOCK - 8 - n);
231
232
2.15k
    p += HASH_CBLOCK - 8;
233
2.15k
# if   defined(DATA_ORDER_IS_BIG_ENDIAN)
234
2.15k
    (void)HOST_l2c(c->Nh, p);
235
2.15k
    (void)HOST_l2c(c->Nl, p);
236
# elif defined(DATA_ORDER_IS_LITTLE_ENDIAN)
237
    (void)HOST_l2c(c->Nl, p);
238
    (void)HOST_l2c(c->Nh, p);
239
# endif
240
2.15k
    p -= HASH_CBLOCK;
241
2.15k
    HASH_BLOCK_DATA_ORDER(c, p, 1);
242
2.15k
    c->num = 0;
243
2.15k
    OPENSSL_cleanse(p, HASH_CBLOCK);
244
245
# ifndef HASH_MAKE_STRING
246
#  error "HASH_MAKE_STRING must be defined!"
247
# else
248
2.15k
    HASH_MAKE_STRING(c, md);
249
2.15k
# endif
250
251
2.15k
    return 1;
252
2.15k
}
253
254
# ifndef MD32_REG_T
255
#  if defined(__alpha) || defined(__sparcv9) || defined(__mips)
256
#   define MD32_REG_T long
257
/*
258
 * This comment was originally written for MD5, which is why it
259
 * discusses A-D. But it basically applies to all 32-bit digests,
260
 * which is why it was moved to common header file.
261
 *
262
 * In case you wonder why A-D are declared as long and not
263
 * as MD5_LONG. Doing so results in slight performance
264
 * boost on LP64 architectures. The catch is we don't
265
 * really care if 32 MSBs of a 64-bit register get polluted
266
 * with eventual overflows as we *save* only 32 LSBs in
267
 * *either* case. Now declaring 'em long excuses the compiler
268
 * from keeping 32 MSBs zeroed resulting in 13% performance
269
 * improvement under SPARC Solaris7/64 and 5% under AlphaLinux.
270
 * Well, to be honest it should say that this *prevents*
271
 * performance degradation.
272
 */
273
#  else
274
/*
275
 * Above is not absolute and there are LP64 compilers that
276
 * generate better code if MD32_REG_T is defined int. The above
277
 * pre-processor condition reflects the circumstances under which
278
 * the conclusion was made and is subject to further extension.
279
 */
280
#   define MD32_REG_T int
281
#  endif
282
# endif
283
284
#endif