Coverage Report

Created: 2023-06-08 06:41

/src/openssl30/crypto/des/des_enc.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 1995-2020 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
6
 * 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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 */
9
10
/*
11
 * DES low level APIs are deprecated for public use, but still ok for internal
12
 * use.
13
 */
14
#include "internal/deprecated.h"
15
16
#include <openssl/crypto.h>
17
#include "des_local.h"
18
#include "spr.h"
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20
void DES_encrypt1(DES_LONG *data, DES_key_schedule *ks, int enc)
21
0
{
22
0
    register DES_LONG l, r, t, u;
23
0
    register DES_LONG *s;
24
25
0
    r = data[0];
26
0
    l = data[1];
27
28
0
    IP(r, l);
29
    /*
30
     * Things have been modified so that the initial rotate is done outside
31
     * the loop.  This required the DES_SPtrans values in sp.h to be rotated
32
     * 1 bit to the right. One perl script later and things have a 5% speed
33
     * up on a sparc2. Thanks to Richard Outerbridge for pointing this out.
34
     */
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    /* clear the top bits on machines with 8byte longs */
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    /* shift left by 2 */
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0
    r = ROTATE(r, 29) & 0xffffffffL;
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0
    l = ROTATE(l, 29) & 0xffffffffL;
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40
0
    s = ks->ks->deslong;
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    /*
42
     * I don't know if it is worth the effort of loop unrolling the inner
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     * loop
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     */
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0
    if (enc) {
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0
        D_ENCRYPT(l, r, 0);     /* 1 */
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0
        D_ENCRYPT(r, l, 2);     /* 2 */
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0
        D_ENCRYPT(l, r, 4);     /* 3 */
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0
        D_ENCRYPT(r, l, 6);     /* 4 */
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0
        D_ENCRYPT(l, r, 8);     /* 5 */
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0
        D_ENCRYPT(r, l, 10);    /* 6 */
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0
        D_ENCRYPT(l, r, 12);    /* 7 */
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0
        D_ENCRYPT(r, l, 14);    /* 8 */
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0
        D_ENCRYPT(l, r, 16);    /* 9 */
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0
        D_ENCRYPT(r, l, 18);    /* 10 */
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0
        D_ENCRYPT(l, r, 20);    /* 11 */
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0
        D_ENCRYPT(r, l, 22);    /* 12 */
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0
        D_ENCRYPT(l, r, 24);    /* 13 */
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0
        D_ENCRYPT(r, l, 26);    /* 14 */
60
0
        D_ENCRYPT(l, r, 28);    /* 15 */
61
0
        D_ENCRYPT(r, l, 30);    /* 16 */
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0
    } else {
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0
        D_ENCRYPT(l, r, 30);    /* 16 */
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0
        D_ENCRYPT(r, l, 28);    /* 15 */
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0
        D_ENCRYPT(l, r, 26);    /* 14 */
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0
        D_ENCRYPT(r, l, 24);    /* 13 */
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0
        D_ENCRYPT(l, r, 22);    /* 12 */
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0
        D_ENCRYPT(r, l, 20);    /* 11 */
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0
        D_ENCRYPT(l, r, 18);    /* 10 */
70
0
        D_ENCRYPT(r, l, 16);    /* 9 */
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0
        D_ENCRYPT(l, r, 14);    /* 8 */
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0
        D_ENCRYPT(r, l, 12);    /* 7 */
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0
        D_ENCRYPT(l, r, 10);    /* 6 */
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0
        D_ENCRYPT(r, l, 8);     /* 5 */
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0
        D_ENCRYPT(l, r, 6);     /* 4 */
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0
        D_ENCRYPT(r, l, 4);     /* 3 */
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0
        D_ENCRYPT(l, r, 2);     /* 2 */
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0
        D_ENCRYPT(r, l, 0);     /* 1 */
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0
    }
80
81
    /* rotate and clear the top bits on machines with 8byte longs */
82
0
    l = ROTATE(l, 3) & 0xffffffffL;
83
0
    r = ROTATE(r, 3) & 0xffffffffL;
84
85
0
    FP(r, l);
86
0
    data[0] = l;
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0
    data[1] = r;
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0
    l = r = t = u = 0;
89
0
}
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91
void DES_encrypt2(DES_LONG *data, DES_key_schedule *ks, int enc)
92
47.9k
{
93
47.9k
    register DES_LONG l, r, t, u;
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47.9k
    register DES_LONG *s;
95
96
47.9k
    r = data[0];
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47.9k
    l = data[1];
98
99
    /*
100
     * Things have been modified so that the initial rotate is done outside
101
     * the loop.  This required the DES_SPtrans values in sp.h to be rotated
102
     * 1 bit to the right. One perl script later and things have a 5% speed
103
     * up on a sparc2. Thanks to Richard Outerbridge for pointing this out.
104
     */
105
    /* clear the top bits on machines with 8byte longs */
106
47.9k
    r = ROTATE(r, 29) & 0xffffffffL;
107
47.9k
    l = ROTATE(l, 29) & 0xffffffffL;
108
109
47.9k
    s = ks->ks->deslong;
110
    /*
111
     * I don't know if it is worth the effort of loop unrolling the inner
112
     * loop
113
     */
114
47.9k
    if (enc) {
115
16.9k
        D_ENCRYPT(l, r, 0);     /* 1 */
116
16.9k
        D_ENCRYPT(r, l, 2);     /* 2 */
117
16.9k
        D_ENCRYPT(l, r, 4);     /* 3 */
118
16.9k
        D_ENCRYPT(r, l, 6);     /* 4 */
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16.9k
        D_ENCRYPT(l, r, 8);     /* 5 */
120
16.9k
        D_ENCRYPT(r, l, 10);    /* 6 */
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16.9k
        D_ENCRYPT(l, r, 12);    /* 7 */
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16.9k
        D_ENCRYPT(r, l, 14);    /* 8 */
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16.9k
        D_ENCRYPT(l, r, 16);    /* 9 */
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16.9k
        D_ENCRYPT(r, l, 18);    /* 10 */
125
16.9k
        D_ENCRYPT(l, r, 20);    /* 11 */
126
16.9k
        D_ENCRYPT(r, l, 22);    /* 12 */
127
16.9k
        D_ENCRYPT(l, r, 24);    /* 13 */
128
16.9k
        D_ENCRYPT(r, l, 26);    /* 14 */
129
16.9k
        D_ENCRYPT(l, r, 28);    /* 15 */
130
16.9k
        D_ENCRYPT(r, l, 30);    /* 16 */
131
30.9k
    } else {
132
30.9k
        D_ENCRYPT(l, r, 30);    /* 16 */
133
30.9k
        D_ENCRYPT(r, l, 28);    /* 15 */
134
30.9k
        D_ENCRYPT(l, r, 26);    /* 14 */
135
30.9k
        D_ENCRYPT(r, l, 24);    /* 13 */
136
30.9k
        D_ENCRYPT(l, r, 22);    /* 12 */
137
30.9k
        D_ENCRYPT(r, l, 20);    /* 11 */
138
30.9k
        D_ENCRYPT(l, r, 18);    /* 10 */
139
30.9k
        D_ENCRYPT(r, l, 16);    /* 9 */
140
30.9k
        D_ENCRYPT(l, r, 14);    /* 8 */
141
30.9k
        D_ENCRYPT(r, l, 12);    /* 7 */
142
30.9k
        D_ENCRYPT(l, r, 10);    /* 6 */
143
30.9k
        D_ENCRYPT(r, l, 8);     /* 5 */
144
30.9k
        D_ENCRYPT(l, r, 6);     /* 4 */
145
30.9k
        D_ENCRYPT(r, l, 4);     /* 3 */
146
30.9k
        D_ENCRYPT(l, r, 2);     /* 2 */
147
30.9k
        D_ENCRYPT(r, l, 0);     /* 1 */
148
30.9k
    }
149
    /* rotate and clear the top bits on machines with 8byte longs */
150
47.9k
    data[0] = ROTATE(l, 3) & 0xffffffffL;
151
47.9k
    data[1] = ROTATE(r, 3) & 0xffffffffL;
152
47.9k
    l = r = t = u = 0;
153
47.9k
}
154
155
void DES_encrypt3(DES_LONG *data, DES_key_schedule *ks1,
156
                  DES_key_schedule *ks2, DES_key_schedule *ks3)
157
985
{
158
985
    register DES_LONG l, r;
159
160
985
    l = data[0];
161
985
    r = data[1];
162
985
    IP(l, r);
163
985
    data[0] = l;
164
985
    data[1] = r;
165
985
    DES_encrypt2((DES_LONG *)data, ks1, DES_ENCRYPT);
166
985
    DES_encrypt2((DES_LONG *)data, ks2, DES_DECRYPT);
167
985
    DES_encrypt2((DES_LONG *)data, ks3, DES_ENCRYPT);
168
985
    l = data[0];
169
985
    r = data[1];
170
985
    FP(r, l);
171
985
    data[0] = l;
172
985
    data[1] = r;
173
985
}
174
175
void DES_decrypt3(DES_LONG *data, DES_key_schedule *ks1,
176
                  DES_key_schedule *ks2, DES_key_schedule *ks3)
177
15.0k
{
178
15.0k
    register DES_LONG l, r;
179
180
15.0k
    l = data[0];
181
15.0k
    r = data[1];
182
15.0k
    IP(l, r);
183
15.0k
    data[0] = l;
184
15.0k
    data[1] = r;
185
15.0k
    DES_encrypt2((DES_LONG *)data, ks3, DES_DECRYPT);
186
15.0k
    DES_encrypt2((DES_LONG *)data, ks2, DES_ENCRYPT);
187
15.0k
    DES_encrypt2((DES_LONG *)data, ks1, DES_DECRYPT);
188
15.0k
    l = data[0];
189
15.0k
    r = data[1];
190
15.0k
    FP(r, l);
191
15.0k
    data[0] = l;
192
15.0k
    data[1] = r;
193
15.0k
}
194
195
#ifndef DES_DEFAULT_OPTIONS
196
197
# undef CBC_ENC_C__DONT_UPDATE_IV
198
# include "ncbc_enc.c"          /* DES_ncbc_encrypt */
199
200
void DES_ede3_cbc_encrypt(const unsigned char *input, unsigned char *output,
201
                          long length, DES_key_schedule *ks1,
202
                          DES_key_schedule *ks2, DES_key_schedule *ks3,
203
                          DES_cblock *ivec, int enc)
204
283
{
205
283
    register DES_LONG tin0, tin1;
206
283
    register DES_LONG tout0, tout1, xor0, xor1;
207
283
    register const unsigned char *in;
208
283
    unsigned char *out;
209
283
    register long l = length;
210
283
    DES_LONG tin[2];
211
283
    unsigned char *iv;
212
213
283
    in = input;
214
283
    out = output;
215
283
    iv = &(*ivec)[0];
216
217
283
    if (enc) {
218
207
        c2l(iv, tout0);
219
207
        c2l(iv, tout1);
220
1.19k
        for (l -= 8; l >= 0; l -= 8) {
221
985
            c2l(in, tin0);
222
985
            c2l(in, tin1);
223
985
            tin0 ^= tout0;
224
985
            tin1 ^= tout1;
225
226
985
            tin[0] = tin0;
227
985
            tin[1] = tin1;
228
985
            DES_encrypt3((DES_LONG *)tin, ks1, ks2, ks3);
229
985
            tout0 = tin[0];
230
985
            tout1 = tin[1];
231
232
985
            l2c(tout0, out);
233
985
            l2c(tout1, out);
234
985
        }
235
207
        if (l != -8) {
236
0
            c2ln(in, tin0, tin1, l + 8);
237
0
            tin0 ^= tout0;
238
0
            tin1 ^= tout1;
239
240
0
            tin[0] = tin0;
241
0
            tin[1] = tin1;
242
0
            DES_encrypt3((DES_LONG *)tin, ks1, ks2, ks3);
243
0
            tout0 = tin[0];
244
0
            tout1 = tin[1];
245
246
0
            l2c(tout0, out);
247
0
            l2c(tout1, out);
248
0
        }
249
207
        iv = &(*ivec)[0];
250
207
        l2c(tout0, iv);
251
207
        l2c(tout1, iv);
252
207
    } else {
253
76
        register DES_LONG t0, t1;
254
255
76
        c2l(iv, xor0);
256
76
        c2l(iv, xor1);
257
15.0k
        for (l -= 8; l >= 0; l -= 8) {
258
15.0k
            c2l(in, tin0);
259
15.0k
            c2l(in, tin1);
260
261
15.0k
            t0 = tin0;
262
15.0k
            t1 = tin1;
263
264
15.0k
            tin[0] = tin0;
265
15.0k
            tin[1] = tin1;
266
15.0k
            DES_decrypt3((DES_LONG *)tin, ks1, ks2, ks3);
267
15.0k
            tout0 = tin[0];
268
15.0k
            tout1 = tin[1];
269
270
15.0k
            tout0 ^= xor0;
271
15.0k
            tout1 ^= xor1;
272
15.0k
            l2c(tout0, out);
273
15.0k
            l2c(tout1, out);
274
15.0k
            xor0 = t0;
275
15.0k
            xor1 = t1;
276
15.0k
        }
277
76
        if (l != -8) {
278
0
            c2l(in, tin0);
279
0
            c2l(in, tin1);
280
281
0
            t0 = tin0;
282
0
            t1 = tin1;
283
284
0
            tin[0] = tin0;
285
0
            tin[1] = tin1;
286
0
            DES_decrypt3((DES_LONG *)tin, ks1, ks2, ks3);
287
0
            tout0 = tin[0];
288
0
            tout1 = tin[1];
289
290
0
            tout0 ^= xor0;
291
0
            tout1 ^= xor1;
292
0
            l2cn(tout0, tout1, out, l + 8);
293
0
            xor0 = t0;
294
0
            xor1 = t1;
295
0
        }
296
297
76
        iv = &(*ivec)[0];
298
76
        l2c(xor0, iv);
299
76
        l2c(xor1, iv);
300
76
    }
301
283
    tin0 = tin1 = tout0 = tout1 = xor0 = xor1 = 0;
302
283
    tin[0] = tin[1] = 0;
303
283
}
304
305
#endif                          /* DES_DEFAULT_OPTIONS */