280 lines
7.7 KiB
C
280 lines
7.7 KiB
C
/*
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cipher.c -- Symmetric block cipher handling
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Copyright (C) 2007 Guus Sliepen <guus@tinc-vpn.org>
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "system.h"
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#include "cipher.h"
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#include "logger.h"
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#include "xalloc.h"
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static struct {
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const char *name;
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int algo;
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int mode;
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int nid;
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} ciphertable[] = {
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{"none", GCRY_CIPHER_NONE, GCRY_CIPHER_MODE_NONE, 0},
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{NULL, GCRY_CIPHER_BLOWFISH, GCRY_CIPHER_MODE_ECB, 92},
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{"blowfish", GCRY_CIPHER_BLOWFISH, GCRY_CIPHER_MODE_CBC, 91},
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{NULL, GCRY_CIPHER_BLOWFISH, GCRY_CIPHER_MODE_CFB, 93},
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{NULL, GCRY_CIPHER_BLOWFISH, GCRY_CIPHER_MODE_OFB, 94},
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{NULL, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_ECB, 418},
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{"aes", GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CBC, 419},
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{NULL, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_CFB, 421},
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{NULL, GCRY_CIPHER_AES, GCRY_CIPHER_MODE_OFB, 420},
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{NULL, GCRY_CIPHER_AES192, GCRY_CIPHER_MODE_ECB, 422},
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{"aes192", GCRY_CIPHER_AES192, GCRY_CIPHER_MODE_CBC, 423},
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{NULL, GCRY_CIPHER_AES192, GCRY_CIPHER_MODE_CFB, 425},
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{NULL, GCRY_CIPHER_AES192, GCRY_CIPHER_MODE_OFB, 424},
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{NULL, GCRY_CIPHER_AES256, GCRY_CIPHER_MODE_ECB, 426},
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{"aes256", GCRY_CIPHER_AES256, GCRY_CIPHER_MODE_CBC, 427},
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{NULL, GCRY_CIPHER_AES256, GCRY_CIPHER_MODE_CFB, 429},
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{NULL, GCRY_CIPHER_AES256, GCRY_CIPHER_MODE_OFB, 428},
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};
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static bool nametocipher(const char *name, int *algo, int *mode) {
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size_t i;
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for(i = 0; i < sizeof ciphertable / sizeof *ciphertable; i++) {
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if(ciphertable[i].name && !strcasecmp(name, ciphertable[i].name)) {
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*algo = ciphertable[i].algo;
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*mode = ciphertable[i].mode;
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return true;
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}
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}
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return false;
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}
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static bool nidtocipher(int nid, int *algo, int *mode) {
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size_t i;
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for(i = 0; i < sizeof ciphertable / sizeof *ciphertable; i++) {
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if(nid == ciphertable[i].nid) {
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*algo = ciphertable[i].algo;
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*mode = ciphertable[i].mode;
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return true;
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}
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}
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return false;
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}
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static bool ciphertonid(int algo, int mode, int *nid) {
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size_t i;
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for(i = 0; i < sizeof ciphertable / sizeof *ciphertable; i++) {
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if(algo == ciphertable[i].algo && mode == ciphertable[i].mode) {
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*nid = ciphertable[i].nid;
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return true;
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}
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}
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return false;
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}
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static bool cipher_open(cipher_t *cipher, int algo, int mode) {
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gcry_error_t err;
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if(!ciphertonid(algo, mode, &cipher->nid)) {
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logger(LOG_DEBUG, "Cipher %d mode %d has no corresponding nid!", algo, mode);
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return false;
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}
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if((err = gcry_cipher_open(&cipher->handle, algo, mode, 0))) {
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logger(LOG_DEBUG, "Unable to intialise cipher %d mode %d: %s", algo, mode, gcry_strerror(err));
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return false;
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}
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cipher->keylen = gcry_cipher_get_algo_keylen(algo);
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cipher->blklen = gcry_cipher_get_algo_blklen(algo);
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cipher->key = xmalloc(cipher->keylen + cipher->blklen);
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cipher->padding = mode == GCRY_CIPHER_MODE_ECB || mode == GCRY_CIPHER_MODE_CBC;
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return true;
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}
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bool cipher_open_by_name(cipher_t *cipher, const char *name) {
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int algo, mode;
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if(!nametocipher(name, &algo, &mode)) {
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logger(LOG_DEBUG, "Unknown cipher name '%s'!", name);
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return false;
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}
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return cipher_open(cipher, algo, mode);
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}
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bool cipher_open_by_nid(cipher_t *cipher, int nid) {
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int algo, mode;
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if(!nidtocipher(nid, &algo, &mode)) {
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logger(LOG_DEBUG, "Unknown cipher ID %d!", nid);
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return false;
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}
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return cipher_open(cipher, algo, mode);
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}
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bool cipher_open_blowfish_ofb(cipher_t *cipher) {
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return cipher_open(cipher, GCRY_CIPHER_BLOWFISH, GCRY_CIPHER_MODE_OFB);
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}
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void cipher_close(cipher_t *cipher) {
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if(cipher->handle) {
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gcry_cipher_close(cipher->handle);
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cipher->handle = NULL;
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}
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if(cipher->key) {
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free(cipher->key);
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cipher->key = NULL;
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}
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}
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size_t cipher_keylength(const cipher_t *cipher) {
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return cipher->keylen + cipher->blklen;
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}
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void cipher_get_key(const cipher_t *cipher, void *key) {
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memcpy(key, cipher->key, cipher->keylen + cipher->blklen);
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}
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bool cipher_set_key(cipher_t *cipher, void *key, bool encrypt) {
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memcpy(cipher->key, key, cipher->keylen + cipher->blklen);
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gcry_cipher_setkey(cipher->handle, cipher->key, cipher->keylen);
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gcry_cipher_setiv(cipher->handle, cipher->key + cipher->keylen, cipher->blklen);
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return true;
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}
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bool cipher_set_key_from_rsa(cipher_t *cipher, void *key, size_t len, bool encrypt) {
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memcpy(cipher->key, key + len - cipher->keylen, cipher->keylen + cipher->blklen);
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memcpy(cipher->key + cipher->keylen, key + len - cipher->keylen - cipher->blklen, cipher->blklen);
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gcry_cipher_setkey(cipher->handle, cipher->key, cipher->keylen);
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gcry_cipher_setiv(cipher->handle, cipher->key + cipher->keylen, cipher->blklen);
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return true;
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}
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bool cipher_regenerate_key(cipher_t *cipher, bool encrypt) {
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gcry_create_nonce(cipher->key, cipher->keylen + cipher->blklen);
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gcry_cipher_setkey(cipher->handle, cipher->key, cipher->keylen);
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gcry_cipher_setiv(cipher->handle, cipher->key + cipher->keylen, cipher->blklen);
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return true;
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}
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bool cipher_encrypt(cipher_t *cipher, const void *indata, size_t inlen, void *outdata, size_t *outlen, bool oneshot) {
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gcry_error_t err;
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uint8_t pad[cipher->blklen];
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if(cipher->padding) {
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if(!oneshot)
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return false;
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size_t reqlen = ((inlen + cipher->blklen) / cipher->blklen) * cipher->blklen;
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if(*outlen < reqlen) {
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logger(LOG_ERR, "Error while encrypting: not enough room for padding");
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return false;
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}
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uint8_t padbyte = reqlen - inlen;
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inlen = reqlen - cipher->blklen;
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for(int i = 0; i < cipher->blklen; i++)
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if(i < cipher->blklen - padbyte)
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pad[i] = ((uint8_t *)indata)[inlen + i];
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else
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pad[i] = padbyte;
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}
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if(oneshot)
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gcry_cipher_setiv(cipher->handle, cipher->key + cipher->keylen, cipher->blklen);
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if((err = gcry_cipher_encrypt(cipher->handle, outdata, *outlen, indata, inlen))) {
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logger(LOG_ERR, "Error while encrypting: %s", gcry_strerror(err));
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return false;
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}
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if(cipher->padding) {
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if((err = gcry_cipher_encrypt(cipher->handle, outdata + inlen, cipher->blklen, pad, cipher->blklen))) {
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logger(LOG_ERR, "Error while encrypting: %s", gcry_strerror(err));
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return false;
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}
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inlen += cipher->blklen;
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}
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*outlen = inlen;
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return true;
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}
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bool cipher_decrypt(cipher_t *cipher, const void *indata, size_t inlen, void *outdata, size_t *outlen, bool oneshot) {
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gcry_error_t err;
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if(oneshot)
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gcry_cipher_setiv(cipher->handle, cipher->key + cipher->keylen, cipher->blklen);
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if((err = gcry_cipher_decrypt(cipher->handle, outdata, *outlen, indata, inlen))) {
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logger(LOG_ERR, "Error while decrypting: %s", gcry_strerror(err));
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return false;
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}
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if(cipher->padding) {
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if(!oneshot)
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return false;
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uint8_t padbyte = ((uint8_t *)outdata)[inlen - 1];
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if(padbyte == 0 || padbyte > cipher->blklen || padbyte > inlen) {
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logger(LOG_ERR, "Error while decrypting: invalid padding");
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return false;
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}
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size_t origlen = inlen - padbyte;
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for(int i = inlen - 1; i >= origlen; i--)
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if(((uint8_t *)outdata)[i] != padbyte) {
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logger(LOG_ERR, "Error while decrypting: invalid padding");
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return false;
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}
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*outlen = origlen;
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} else
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*outlen = inlen;
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return true;
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}
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int cipher_get_nid(const cipher_t *cipher) {
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return cipher->nid;
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}
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bool cipher_active(const cipher_t *cipher) {
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return cipher->nid != 0;
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}
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