Coverage Report

Created: 2025-06-13 06:55

/src/openssl/crypto/evp/e_chacha20_poly1305.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 2015-2023 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
#include <stdio.h>
11
#include "internal/cryptlib.h"
12
#include "internal/endian.h"
13
14
#ifndef OPENSSL_NO_CHACHA
15
16
# include <openssl/evp.h>
17
# include <openssl/objects.h>
18
# include "crypto/evp.h"
19
# include "evp_local.h"
20
# include "crypto/chacha.h"
21
22
typedef struct {
23
    union {
24
        OSSL_UNION_ALIGN;  /* this ensures even sizeof(EVP_CHACHA_KEY)%8==0 */
25
        unsigned int d[CHACHA_KEY_SIZE / 4];
26
    } key;
27
    unsigned int  counter[CHACHA_CTR_SIZE / 4];
28
    unsigned char buf[CHACHA_BLK_SIZE];
29
    unsigned int  partial_len;
30
} EVP_CHACHA_KEY;
31
32
0
#define data(ctx)   ((EVP_CHACHA_KEY *)(ctx)->cipher_data)
33
34
0
#define CHACHA20_POLY1305_MAX_IVLEN     12
35
36
static int chacha_init_key(EVP_CIPHER_CTX *ctx,
37
                           const unsigned char user_key[CHACHA_KEY_SIZE],
38
                           const unsigned char iv[CHACHA_CTR_SIZE], int enc)
39
0
{
40
0
    EVP_CHACHA_KEY *key = data(ctx);
41
0
    unsigned int i;
42
43
0
    if (user_key)
44
0
        for (i = 0; i < CHACHA_KEY_SIZE; i+=4) {
45
0
            key->key.d[i/4] = CHACHA_U8TOU32(user_key+i);
46
0
        }
47
48
0
    if (iv)
49
0
        for (i = 0; i < CHACHA_CTR_SIZE; i+=4) {
50
0
            key->counter[i/4] = CHACHA_U8TOU32(iv+i);
51
0
        }
52
53
0
    key->partial_len = 0;
54
55
0
    return 1;
56
0
}
57
58
static int chacha_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
59
                         const unsigned char *inp, size_t len)
60
0
{
61
0
    EVP_CHACHA_KEY *key = data(ctx);
62
0
    unsigned int n, rem, ctr32;
63
64
0
    if ((n = key->partial_len)) {
65
0
        while (len && n < CHACHA_BLK_SIZE) {
66
0
            *out++ = *inp++ ^ key->buf[n++];
67
0
            len--;
68
0
        }
69
0
        key->partial_len = n;
70
71
0
        if (len == 0)
72
0
            return 1;
73
74
0
        if (n == CHACHA_BLK_SIZE) {
75
0
            key->partial_len = 0;
76
0
            key->counter[0]++;
77
0
            if (key->counter[0] == 0)
78
0
                key->counter[1]++;
79
0
        }
80
0
    }
81
82
0
    rem = (unsigned int)(len % CHACHA_BLK_SIZE);
83
0
    len -= rem;
84
0
    ctr32 = key->counter[0];
85
0
    while (len >= CHACHA_BLK_SIZE) {
86
0
        size_t blocks = len / CHACHA_BLK_SIZE;
87
        /*
88
         * 1<<28 is just a not-so-small yet not-so-large number...
89
         * Below condition is practically never met, but it has to
90
         * be checked for code correctness.
91
         */
92
0
        if (sizeof(size_t)>sizeof(unsigned int) && blocks>(1U<<28))
93
0
            blocks = (1U<<28);
94
95
        /*
96
         * As ChaCha20_ctr32 operates on 32-bit counter, caller
97
         * has to handle overflow. 'if' below detects the
98
         * overflow, which is then handled by limiting the
99
         * amount of blocks to the exact overflow point...
100
         */
101
0
        ctr32 += (unsigned int)blocks;
102
0
        if (ctr32 < blocks) {
103
0
            blocks -= ctr32;
104
0
            ctr32 = 0;
105
0
        }
106
0
        blocks *= CHACHA_BLK_SIZE;
107
0
        ChaCha20_ctr32(out, inp, blocks, key->key.d, key->counter);
108
0
        len -= blocks;
109
0
        inp += blocks;
110
0
        out += blocks;
111
112
0
        key->counter[0] = ctr32;
113
0
        if (ctr32 == 0) key->counter[1]++;
114
0
    }
115
116
0
    if (rem) {
117
0
        memset(key->buf, 0, sizeof(key->buf));
118
0
        ChaCha20_ctr32(key->buf, key->buf, CHACHA_BLK_SIZE,
119
0
                       key->key.d, key->counter);
120
0
        for (n = 0; n < rem; n++)
121
0
            out[n] = inp[n] ^ key->buf[n];
122
0
        key->partial_len = rem;
123
0
    }
124
125
0
    return 1;
126
0
}
127
128
static const EVP_CIPHER chacha20 = {
129
    NID_chacha20,
130
    1,                      /* block_size */
131
    CHACHA_KEY_SIZE,        /* key_len */
132
    CHACHA_CTR_SIZE,        /* iv_len, 128-bit counter in the context */
133
    EVP_CIPH_CUSTOM_IV | EVP_CIPH_ALWAYS_CALL_INIT,
134
    EVP_ORIG_GLOBAL,
135
    chacha_init_key,
136
    chacha_cipher,
137
    NULL,
138
    sizeof(EVP_CHACHA_KEY),
139
    NULL,
140
    NULL,
141
    NULL,
142
    NULL
143
};
144
145
const EVP_CIPHER *EVP_chacha20(void)
146
2
{
147
2
    return &chacha20;
148
2
}
149
150
# ifndef OPENSSL_NO_POLY1305
151
#  include "crypto/poly1305.h"
152
153
typedef struct {
154
    EVP_CHACHA_KEY key;
155
    unsigned int nonce[12/4];
156
    unsigned char tag[POLY1305_BLOCK_SIZE];
157
    unsigned char tls_aad[POLY1305_BLOCK_SIZE];
158
    struct { uint64_t aad, text; } len;
159
    int aad, mac_inited, tag_len, nonce_len;
160
    size_t tls_payload_length;
161
} EVP_CHACHA_AEAD_CTX;
162
163
0
#  define NO_TLS_PAYLOAD_LENGTH ((size_t)-1)
164
0
#  define aead_data(ctx)        ((EVP_CHACHA_AEAD_CTX *)(ctx)->cipher_data)
165
0
#  define POLY1305_ctx(actx)    ((POLY1305 *)(actx + 1))
166
167
static int chacha20_poly1305_init_key(EVP_CIPHER_CTX *ctx,
168
                                      const unsigned char *inkey,
169
                                      const unsigned char *iv, int enc)
170
0
{
171
0
    EVP_CHACHA_AEAD_CTX *actx = aead_data(ctx);
172
173
0
    if (!inkey && !iv)
174
0
        return 1;
175
176
0
    actx->len.aad = 0;
177
0
    actx->len.text = 0;
178
0
    actx->aad = 0;
179
0
    actx->mac_inited = 0;
180
0
    actx->tls_payload_length = NO_TLS_PAYLOAD_LENGTH;
181
182
0
    if (iv != NULL) {
183
0
        unsigned char temp[CHACHA_CTR_SIZE] = { 0 };
184
185
        /* pad on the left */
186
0
        if (actx->nonce_len <= CHACHA_CTR_SIZE)
187
0
            memcpy(temp + CHACHA_CTR_SIZE - actx->nonce_len, iv,
188
0
                   actx->nonce_len);
189
190
0
        chacha_init_key(ctx, inkey, temp, enc);
191
192
0
        actx->nonce[0] = actx->key.counter[1];
193
0
        actx->nonce[1] = actx->key.counter[2];
194
0
        actx->nonce[2] = actx->key.counter[3];
195
0
    } else {
196
0
        chacha_init_key(ctx, inkey, NULL, enc);
197
0
    }
198
199
0
    return 1;
200
0
}
201
202
#  if !defined(OPENSSL_SMALL_FOOTPRINT)
203
204
#   if defined(POLY1305_ASM) && (defined(__x86_64) || defined(__x86_64__) || \
205
                                 defined(_M_AMD64) || defined(_M_X64))
206
#    define XOR128_HELPERS
207
void *xor128_encrypt_n_pad(void *out, const void *inp, void *otp, size_t len);
208
void *xor128_decrypt_n_pad(void *out, const void *inp, void *otp, size_t len);
209
static const unsigned char zero[4 * CHACHA_BLK_SIZE] = { 0 };
210
#   else
211
static const unsigned char zero[2 * CHACHA_BLK_SIZE] = { 0 };
212
#   endif
213
214
static int chacha20_poly1305_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
215
                                        const unsigned char *in, size_t len)
216
0
{
217
0
    EVP_CHACHA_AEAD_CTX *actx = aead_data(ctx);
218
0
    size_t tail, tohash_len, buf_len, plen = actx->tls_payload_length;
219
0
    unsigned char *buf, *tohash, *ctr, storage[sizeof(zero) + 32];
220
221
0
    if (len != plen + POLY1305_BLOCK_SIZE)
222
0
        return -1;
223
224
0
    buf = storage + ((0 - (size_t)storage) & 15);   /* align */
225
0
    ctr = buf + CHACHA_BLK_SIZE;
226
0
    tohash = buf + CHACHA_BLK_SIZE - POLY1305_BLOCK_SIZE;
227
228
0
#   ifdef XOR128_HELPERS
229
0
    if (plen <= 3 * CHACHA_BLK_SIZE) {
230
0
        actx->key.counter[0] = 0;
231
0
        buf_len = (plen + 2 * CHACHA_BLK_SIZE - 1) & (0 - CHACHA_BLK_SIZE);
232
0
        ChaCha20_ctr32(buf, zero, buf_len, actx->key.key.d,
233
0
                       actx->key.counter);
234
0
        Poly1305_Init(POLY1305_ctx(actx), buf);
235
0
        actx->key.partial_len = 0;
236
0
        memcpy(tohash, actx->tls_aad, POLY1305_BLOCK_SIZE);
237
0
        tohash_len = POLY1305_BLOCK_SIZE;
238
0
        actx->len.aad = EVP_AEAD_TLS1_AAD_LEN;
239
0
        actx->len.text = plen;
240
241
0
        if (plen) {
242
0
            if (EVP_CIPHER_CTX_is_encrypting(ctx))
243
0
                ctr = xor128_encrypt_n_pad(out, in, ctr, plen);
244
0
            else
245
0
                ctr = xor128_decrypt_n_pad(out, in, ctr, plen);
246
247
0
            in += plen;
248
0
            out += plen;
249
0
            tohash_len = (size_t)(ctr - tohash);
250
0
        }
251
0
    }
252
#   else
253
    if (plen <= CHACHA_BLK_SIZE) {
254
        size_t i;
255
256
        actx->key.counter[0] = 0;
257
        ChaCha20_ctr32(buf, zero, (buf_len = 2 * CHACHA_BLK_SIZE),
258
                       actx->key.key.d, actx->key.counter);
259
        Poly1305_Init(POLY1305_ctx(actx), buf);
260
        actx->key.partial_len = 0;
261
        memcpy(tohash, actx->tls_aad, POLY1305_BLOCK_SIZE);
262
        tohash_len = POLY1305_BLOCK_SIZE;
263
        actx->len.aad = EVP_AEAD_TLS1_AAD_LEN;
264
        actx->len.text = plen;
265
266
        if (EVP_CIPHER_CTX_is_encrypting(ctx)) {
267
            for (i = 0; i < plen; i++) {
268
                out[i] = ctr[i] ^= in[i];
269
            }
270
        } else {
271
            for (i = 0; i < plen; i++) {
272
                unsigned char c = in[i];
273
                out[i] = ctr[i] ^ c;
274
                ctr[i] = c;
275
            }
276
        }
277
278
        in += i;
279
        out += i;
280
281
        tail = (0 - i) & (POLY1305_BLOCK_SIZE - 1);
282
        memset(ctr + i, 0, tail);
283
        ctr += i + tail;
284
        tohash_len += i + tail;
285
    }
286
#   endif
287
0
    else {
288
0
        actx->key.counter[0] = 0;
289
0
        ChaCha20_ctr32(buf, zero, (buf_len = CHACHA_BLK_SIZE),
290
0
                       actx->key.key.d, actx->key.counter);
291
0
        Poly1305_Init(POLY1305_ctx(actx), buf);
292
0
        actx->key.counter[0] = 1;
293
0
        actx->key.partial_len = 0;
294
0
        Poly1305_Update(POLY1305_ctx(actx), actx->tls_aad, POLY1305_BLOCK_SIZE);
295
0
        tohash = ctr;
296
0
        tohash_len = 0;
297
0
        actx->len.aad = EVP_AEAD_TLS1_AAD_LEN;
298
0
        actx->len.text = plen;
299
300
0
        if (EVP_CIPHER_CTX_is_encrypting(ctx)) {
301
0
            ChaCha20_ctr32(out, in, plen, actx->key.key.d, actx->key.counter);
302
0
            Poly1305_Update(POLY1305_ctx(actx), out, plen);
303
0
        } else {
304
0
            Poly1305_Update(POLY1305_ctx(actx), in, plen);
305
0
            ChaCha20_ctr32(out, in, plen, actx->key.key.d, actx->key.counter);
306
0
        }
307
308
0
        in += plen;
309
0
        out += plen;
310
0
        tail = (0 - plen) & (POLY1305_BLOCK_SIZE - 1);
311
0
        Poly1305_Update(POLY1305_ctx(actx), zero, tail);
312
0
    }
313
314
0
    {
315
0
        DECLARE_IS_ENDIAN;
316
317
0
        if (IS_LITTLE_ENDIAN) {
318
0
            memcpy(ctr, (unsigned char *)&actx->len, POLY1305_BLOCK_SIZE);
319
0
        } else {
320
0
            ctr[0]  = (unsigned char)(actx->len.aad);
321
0
            ctr[1]  = (unsigned char)(actx->len.aad>>8);
322
0
            ctr[2]  = (unsigned char)(actx->len.aad>>16);
323
0
            ctr[3]  = (unsigned char)(actx->len.aad>>24);
324
0
            ctr[4]  = (unsigned char)(actx->len.aad>>32);
325
0
            ctr[5]  = (unsigned char)(actx->len.aad>>40);
326
0
            ctr[6]  = (unsigned char)(actx->len.aad>>48);
327
0
            ctr[7]  = (unsigned char)(actx->len.aad>>56);
328
329
0
            ctr[8]  = (unsigned char)(actx->len.text);
330
0
            ctr[9]  = (unsigned char)(actx->len.text>>8);
331
0
            ctr[10] = (unsigned char)(actx->len.text>>16);
332
0
            ctr[11] = (unsigned char)(actx->len.text>>24);
333
0
            ctr[12] = (unsigned char)(actx->len.text>>32);
334
0
            ctr[13] = (unsigned char)(actx->len.text>>40);
335
0
            ctr[14] = (unsigned char)(actx->len.text>>48);
336
0
            ctr[15] = (unsigned char)(actx->len.text>>56);
337
0
        }
338
0
        tohash_len += POLY1305_BLOCK_SIZE;
339
0
    }
340
341
0
    Poly1305_Update(POLY1305_ctx(actx), tohash, tohash_len);
342
0
    OPENSSL_cleanse(buf, buf_len);
343
0
    Poly1305_Final(POLY1305_ctx(actx),
344
0
                   EVP_CIPHER_CTX_is_encrypting(ctx) ? actx->tag : tohash);
345
346
0
    actx->tls_payload_length = NO_TLS_PAYLOAD_LENGTH;
347
348
0
    if (EVP_CIPHER_CTX_is_encrypting(ctx)) {
349
0
        memcpy(out, actx->tag, POLY1305_BLOCK_SIZE);
350
0
    } else {
351
0
        if (CRYPTO_memcmp(tohash, in, POLY1305_BLOCK_SIZE)) {
352
0
            memset(out - (len - POLY1305_BLOCK_SIZE), 0,
353
0
                   len - POLY1305_BLOCK_SIZE);
354
0
            return -1;
355
0
        }
356
0
    }
357
358
0
    return len;
359
0
}
360
#  else
361
static const unsigned char zero[CHACHA_BLK_SIZE] = { 0 };
362
#  endif
363
364
static int chacha20_poly1305_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
365
                                    const unsigned char *in, size_t len)
366
0
{
367
0
    EVP_CHACHA_AEAD_CTX *actx = aead_data(ctx);
368
0
    size_t rem, plen = actx->tls_payload_length;
369
370
0
    if (!actx->mac_inited) {
371
0
#  if !defined(OPENSSL_SMALL_FOOTPRINT)
372
0
        if (plen != NO_TLS_PAYLOAD_LENGTH && out != NULL)
373
0
            return chacha20_poly1305_tls_cipher(ctx, out, in, len);
374
0
#  endif
375
0
        actx->key.counter[0] = 0;
376
0
        ChaCha20_ctr32(actx->key.buf, zero, CHACHA_BLK_SIZE,
377
0
                       actx->key.key.d, actx->key.counter);
378
0
        Poly1305_Init(POLY1305_ctx(actx), actx->key.buf);
379
0
        actx->key.counter[0] = 1;
380
0
        actx->key.partial_len = 0;
381
0
        actx->len.aad = actx->len.text = 0;
382
0
        actx->mac_inited = 1;
383
0
        if (plen != NO_TLS_PAYLOAD_LENGTH) {
384
0
            Poly1305_Update(POLY1305_ctx(actx), actx->tls_aad,
385
0
                            EVP_AEAD_TLS1_AAD_LEN);
386
0
            actx->len.aad = EVP_AEAD_TLS1_AAD_LEN;
387
0
            actx->aad = 1;
388
0
        }
389
0
    }
390
391
0
    if (in) {                                   /* aad or text */
392
0
        if (out == NULL) {                      /* aad */
393
0
            Poly1305_Update(POLY1305_ctx(actx), in, len);
394
0
            actx->len.aad += len;
395
0
            actx->aad = 1;
396
0
            return len;
397
0
        } else {                                /* plain- or ciphertext */
398
0
            if (actx->aad) {                    /* wrap up aad */
399
0
                if ((rem = (size_t)actx->len.aad % POLY1305_BLOCK_SIZE))
400
0
                    Poly1305_Update(POLY1305_ctx(actx), zero,
401
0
                                    POLY1305_BLOCK_SIZE - rem);
402
0
                actx->aad = 0;
403
0
            }
404
405
0
            actx->tls_payload_length = NO_TLS_PAYLOAD_LENGTH;
406
0
            if (plen == NO_TLS_PAYLOAD_LENGTH)
407
0
                plen = len;
408
0
            else if (len != plen + POLY1305_BLOCK_SIZE)
409
0
                return -1;
410
411
0
            if (EVP_CIPHER_CTX_is_encrypting(ctx)) {    /* plaintext */
412
0
                chacha_cipher(ctx, out, in, plen);
413
0
                Poly1305_Update(POLY1305_ctx(actx), out, plen);
414
0
                in += plen;
415
0
                out += plen;
416
0
                actx->len.text += plen;
417
0
            } else {                            /* ciphertext */
418
0
                Poly1305_Update(POLY1305_ctx(actx), in, plen);
419
0
                chacha_cipher(ctx, out, in, plen);
420
0
                in += plen;
421
0
                out += plen;
422
0
                actx->len.text += plen;
423
0
            }
424
0
        }
425
0
    }
426
0
    if (in == NULL                              /* explicit final */
427
0
        || plen != len) {                       /* or tls mode */
428
0
        DECLARE_IS_ENDIAN;
429
0
        unsigned char temp[POLY1305_BLOCK_SIZE];
430
431
0
        if (actx->aad) {                        /* wrap up aad */
432
0
            if ((rem = (size_t)actx->len.aad % POLY1305_BLOCK_SIZE))
433
0
                Poly1305_Update(POLY1305_ctx(actx), zero,
434
0
                                POLY1305_BLOCK_SIZE - rem);
435
0
            actx->aad = 0;
436
0
        }
437
438
0
        if ((rem = (size_t)actx->len.text % POLY1305_BLOCK_SIZE))
439
0
            Poly1305_Update(POLY1305_ctx(actx), zero,
440
0
                            POLY1305_BLOCK_SIZE - rem);
441
442
0
        if (IS_LITTLE_ENDIAN) {
443
0
            Poly1305_Update(POLY1305_ctx(actx),
444
0
                            (unsigned char *)&actx->len, POLY1305_BLOCK_SIZE);
445
0
        } else {
446
0
            temp[0]  = (unsigned char)(actx->len.aad);
447
0
            temp[1]  = (unsigned char)(actx->len.aad>>8);
448
0
            temp[2]  = (unsigned char)(actx->len.aad>>16);
449
0
            temp[3]  = (unsigned char)(actx->len.aad>>24);
450
0
            temp[4]  = (unsigned char)(actx->len.aad>>32);
451
0
            temp[5]  = (unsigned char)(actx->len.aad>>40);
452
0
            temp[6]  = (unsigned char)(actx->len.aad>>48);
453
0
            temp[7]  = (unsigned char)(actx->len.aad>>56);
454
455
0
            temp[8]  = (unsigned char)(actx->len.text);
456
0
            temp[9]  = (unsigned char)(actx->len.text>>8);
457
0
            temp[10] = (unsigned char)(actx->len.text>>16);
458
0
            temp[11] = (unsigned char)(actx->len.text>>24);
459
0
            temp[12] = (unsigned char)(actx->len.text>>32);
460
0
            temp[13] = (unsigned char)(actx->len.text>>40);
461
0
            temp[14] = (unsigned char)(actx->len.text>>48);
462
0
            temp[15] = (unsigned char)(actx->len.text>>56);
463
464
0
            Poly1305_Update(POLY1305_ctx(actx), temp, POLY1305_BLOCK_SIZE);
465
0
        }
466
0
        Poly1305_Final(POLY1305_ctx(actx),
467
0
                       EVP_CIPHER_CTX_is_encrypting(ctx) ? actx->tag : temp);
468
0
        actx->mac_inited = 0;
469
470
0
        if (in != NULL && len != plen) {        /* tls mode */
471
0
            if (EVP_CIPHER_CTX_is_encrypting(ctx)) {
472
0
                memcpy(out, actx->tag, POLY1305_BLOCK_SIZE);
473
0
            } else {
474
0
                if (CRYPTO_memcmp(temp, in, POLY1305_BLOCK_SIZE)) {
475
0
                    memset(out - plen, 0, plen);
476
0
                    return -1;
477
0
                }
478
0
            }
479
0
        }
480
0
        else if (!EVP_CIPHER_CTX_is_encrypting(ctx)) {
481
0
            if (CRYPTO_memcmp(temp, actx->tag, actx->tag_len))
482
0
                return -1;
483
0
        }
484
0
    }
485
0
    return len;
486
0
}
487
488
static int chacha20_poly1305_cleanup(EVP_CIPHER_CTX *ctx)
489
0
{
490
0
    EVP_CHACHA_AEAD_CTX *actx = aead_data(ctx);
491
0
    if (actx)
492
0
        OPENSSL_cleanse(ctx->cipher_data, sizeof(*actx) + Poly1305_ctx_size());
493
0
    return 1;
494
0
}
495
496
static int chacha20_poly1305_ctrl(EVP_CIPHER_CTX *ctx, int type, int arg,
497
                                  void *ptr)
498
0
{
499
0
    EVP_CHACHA_AEAD_CTX *actx = aead_data(ctx);
500
501
0
    switch (type) {
502
0
    case EVP_CTRL_INIT:
503
0
        if (actx == NULL)
504
0
            actx = ctx->cipher_data
505
0
                 = OPENSSL_zalloc(sizeof(*actx) + Poly1305_ctx_size());
506
0
        if (actx == NULL) {
507
0
            ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);
508
0
            return 0;
509
0
        }
510
0
        actx->len.aad = 0;
511
0
        actx->len.text = 0;
512
0
        actx->aad = 0;
513
0
        actx->mac_inited = 0;
514
0
        actx->tag_len = 0;
515
0
        actx->nonce_len = 12;
516
0
        actx->tls_payload_length = NO_TLS_PAYLOAD_LENGTH;
517
0
        memset(actx->tls_aad, 0, POLY1305_BLOCK_SIZE);
518
0
        return 1;
519
520
0
    case EVP_CTRL_COPY:
521
0
        if (actx) {
522
0
            EVP_CIPHER_CTX *dst = (EVP_CIPHER_CTX *)ptr;
523
524
0
            dst->cipher_data =
525
0
                   OPENSSL_memdup(actx, sizeof(*actx) + Poly1305_ctx_size());
526
0
            if (dst->cipher_data == NULL) {
527
0
                ERR_raise(ERR_LIB_EVP, EVP_R_COPY_ERROR);
528
0
                return 0;
529
0
            }
530
0
        }
531
0
        return 1;
532
533
0
    case EVP_CTRL_GET_IVLEN:
534
0
        *(int *)ptr = actx->nonce_len;
535
0
        return 1;
536
537
0
    case EVP_CTRL_AEAD_SET_IVLEN:
538
0
        if (arg <= 0 || arg > CHACHA20_POLY1305_MAX_IVLEN)
539
0
            return 0;
540
0
        actx->nonce_len = arg;
541
0
        return 1;
542
543
0
    case EVP_CTRL_AEAD_SET_IV_FIXED:
544
0
        if (arg != 12)
545
0
            return 0;
546
0
        actx->nonce[0] = actx->key.counter[1]
547
0
                       = CHACHA_U8TOU32((unsigned char *)ptr);
548
0
        actx->nonce[1] = actx->key.counter[2]
549
0
                       = CHACHA_U8TOU32((unsigned char *)ptr+4);
550
0
        actx->nonce[2] = actx->key.counter[3]
551
0
                       = CHACHA_U8TOU32((unsigned char *)ptr+8);
552
0
        return 1;
553
554
0
    case EVP_CTRL_AEAD_SET_TAG:
555
0
        if (arg <= 0 || arg > POLY1305_BLOCK_SIZE)
556
0
            return 0;
557
0
        if (ptr != NULL) {
558
0
            memcpy(actx->tag, ptr, arg);
559
0
            actx->tag_len = arg;
560
0
        }
561
0
        return 1;
562
563
0
    case EVP_CTRL_AEAD_GET_TAG:
564
0
        if (arg <= 0 || arg > POLY1305_BLOCK_SIZE ||
565
0
                !EVP_CIPHER_CTX_is_encrypting(ctx))
566
0
            return 0;
567
0
        memcpy(ptr, actx->tag, arg);
568
0
        return 1;
569
570
0
    case EVP_CTRL_AEAD_TLS1_AAD:
571
0
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
572
0
            return 0;
573
0
        {
574
0
            unsigned int len;
575
0
            unsigned char *aad = ptr;
576
577
0
            memcpy(actx->tls_aad, ptr, EVP_AEAD_TLS1_AAD_LEN);
578
0
            len = aad[EVP_AEAD_TLS1_AAD_LEN - 2] << 8 |
579
0
                  aad[EVP_AEAD_TLS1_AAD_LEN - 1];
580
0
            aad = actx->tls_aad;
581
0
            if (!EVP_CIPHER_CTX_is_encrypting(ctx)) {
582
0
                if (len < POLY1305_BLOCK_SIZE)
583
0
                    return 0;
584
0
                len -= POLY1305_BLOCK_SIZE;     /* discount attached tag */
585
0
                aad[EVP_AEAD_TLS1_AAD_LEN - 2] = (unsigned char)(len >> 8);
586
0
                aad[EVP_AEAD_TLS1_AAD_LEN - 1] = (unsigned char)len;
587
0
            }
588
0
            actx->tls_payload_length = len;
589
590
            /*
591
             * merge record sequence number as per RFC7905
592
             */
593
0
            actx->key.counter[1] = actx->nonce[0];
594
0
            actx->key.counter[2] = actx->nonce[1] ^ CHACHA_U8TOU32(aad);
595
0
            actx->key.counter[3] = actx->nonce[2] ^ CHACHA_U8TOU32(aad+4);
596
0
            actx->mac_inited = 0;
597
598
0
            return POLY1305_BLOCK_SIZE;         /* tag length */
599
0
        }
600
601
0
    case EVP_CTRL_AEAD_SET_MAC_KEY:
602
        /* no-op */
603
0
        return 1;
604
605
0
    default:
606
0
        return -1;
607
0
    }
608
0
}
609
610
static EVP_CIPHER chacha20_poly1305 = {
611
    NID_chacha20_poly1305,
612
    1,                  /* block_size */
613
    CHACHA_KEY_SIZE,    /* key_len */
614
    12,                 /* iv_len, 96-bit nonce in the context */
615
    EVP_CIPH_FLAG_AEAD_CIPHER | EVP_CIPH_CUSTOM_IV |
616
    EVP_CIPH_ALWAYS_CALL_INIT | EVP_CIPH_CTRL_INIT |
617
    EVP_CIPH_CUSTOM_COPY | EVP_CIPH_FLAG_CUSTOM_CIPHER |
618
    EVP_CIPH_CUSTOM_IV_LENGTH,
619
    EVP_ORIG_GLOBAL,
620
    chacha20_poly1305_init_key,
621
    chacha20_poly1305_cipher,
622
    chacha20_poly1305_cleanup,
623
    0,          /* 0 moves context-specific structure allocation to ctrl */
624
    NULL,       /* set_asn1_parameters */
625
    NULL,       /* get_asn1_parameters */
626
    chacha20_poly1305_ctrl,
627
    NULL        /* app_data */
628
};
629
630
const EVP_CIPHER *EVP_chacha20_poly1305(void)
631
2
{
632
2
    return(&chacha20_poly1305);
633
2
}
634
# endif
635
#endif