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			246 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			246 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* Copyright (C) 2015 MariaDB
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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; version 2 of the License.
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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
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   along with this program; if not, write to the Free Software
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   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1335  USA */
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#include <my_global.h>
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#include <mysql/plugin_encryption.h>
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#include "log.h"
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#include "sql_plugin.h"
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#include <my_crypt.h>
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/* there can be only one encryption plugin enabled */
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static plugin_ref encryption_manager= 0;
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struct encryption_service_st encryption_handler;
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extern "C" {
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uint no_get_key(uint, uint, uchar*, uint*)
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{
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  return ENCRYPTION_KEY_VERSION_INVALID;
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}
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uint no_key(uint)
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{
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  return ENCRYPTION_KEY_VERSION_INVALID;
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}
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uint zero_size(uint,uint)
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{
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  return 0;
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}
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static int ctx_init(void *ctx, const unsigned char* key, unsigned int klen,
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                    const unsigned char* iv, unsigned int ivlen, int flags,
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                    unsigned int key_id, unsigned int key_version)
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{
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  return my_aes_crypt_init(ctx, MY_AES_CBC, flags, key, klen, iv, ivlen);
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}
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static unsigned int get_length(unsigned int slen, unsigned int key_id,
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                               unsigned int key_version)
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{
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  return my_aes_get_size(MY_AES_CBC, slen);
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}
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uint ctx_size(unsigned int, unsigned int)
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{
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  return MY_AES_CTX_SIZE;
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}
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} /* extern "C" */
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int initialize_encryption_plugin(st_plugin_int *plugin)
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{
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  if (encryption_manager)
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    return 1;
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  if (plugin->plugin->init && plugin->plugin->init(plugin))
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  {
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    sql_print_error("Plugin '%s' init function returned error.",
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                    plugin->name.str);
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    return 1;
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  }
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  encryption_manager= plugin_lock(NULL, plugin_int_to_ref(plugin));
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  st_mariadb_encryption *handle=
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    (struct st_mariadb_encryption*) plugin->plugin->info;
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  /*
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    Compiler on Spark doesn't like the '?' operator here as it
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    believes the (uint (*)...) implies the C++ call model.
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  */
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  if (handle->crypt_ctx_size)
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    encryption_handler.encryption_ctx_size_func= handle->crypt_ctx_size;
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  else
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    encryption_handler.encryption_ctx_size_func= ctx_size;
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  encryption_handler.encryption_ctx_init_func=
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    handle->crypt_ctx_init ? handle->crypt_ctx_init : ctx_init;
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  encryption_handler.encryption_ctx_update_func=
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    handle->crypt_ctx_update ? handle->crypt_ctx_update : my_aes_crypt_update;
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  encryption_handler.encryption_ctx_finish_func=
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    handle->crypt_ctx_finish ? handle->crypt_ctx_finish : my_aes_crypt_finish;
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  encryption_handler.encryption_encrypted_length_func=
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    handle->encrypted_length ? handle->encrypted_length : get_length;
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  encryption_handler.encryption_key_get_func=
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    handle->get_key;
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  encryption_handler.encryption_key_get_latest_version_func=
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    handle->get_latest_key_version; // must be the last
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  return 0;
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}
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int finalize_encryption_plugin(st_plugin_int *plugin)
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{
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  bool used= plugin_ref_to_int(encryption_manager) == plugin;
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  if (used)
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  {
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    encryption_handler.encryption_key_get_func= no_get_key;
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    encryption_handler.encryption_key_get_latest_version_func= no_key;
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    encryption_handler.encryption_ctx_size_func= zero_size;
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  }
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  if (plugin && plugin->plugin->deinit && plugin->plugin->deinit(NULL))
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  {
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    DBUG_PRINT("warning", ("Plugin '%s' deinit function returned error.",
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                           plugin->name.str));
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  }
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  if (used)
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  {
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    plugin_unlock(NULL, encryption_manager);
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    encryption_manager= 0;
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  }
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  return 0;
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}
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/******************************************************************
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  Encryption Scheme service
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******************************************************************/
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static uint scheme_get_key(st_encryption_scheme *scheme,
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                           st_encryption_scheme_key *key)
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{
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  if (scheme->locker)
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    scheme->locker(scheme, 0);
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  // Check if we already have key
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  for (uint i = 0; i < array_elements(scheme->key); i++)
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  {
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    if (scheme->key[i].version == 0) // no more keys
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      break;
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    if (scheme->key[i].version == key->version)
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    {
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      *key= scheme->key[i];
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      if (scheme->locker)
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        scheme->locker(scheme, 1);
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      return 0;
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    }
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  }
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  // Not found!
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  scheme->keyserver_requests++;
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  uchar global_key[MY_AES_MAX_KEY_LENGTH];
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  uint  global_key_len= sizeof(global_key), key_len;
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  uint rc = encryption_key_get(scheme->key_id, key->version,
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                              global_key, & global_key_len);
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  if (rc)
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    goto ret;
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  /* Now generate the local key by encrypting IV using the global key */
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  rc = my_aes_crypt(MY_AES_ECB, ENCRYPTION_FLAG_ENCRYPT | ENCRYPTION_FLAG_NOPAD,
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                    scheme->iv, sizeof(scheme->iv), key->key, &key_len,
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                    global_key, global_key_len, NULL, 0);
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  DBUG_ASSERT(key_len == sizeof(key->key));
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  if (rc)
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    goto ret;
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  // Rotate keys to make room for a new
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  for (uint i = array_elements(scheme->key) - 1; i; i--)
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    scheme->key[i] = scheme->key[i - 1];
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  scheme->key[0]= *key;
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ret:
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  if (scheme->locker)
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    scheme->locker(scheme, 1);
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  return rc;
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}
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int do_crypt(const unsigned char* src, unsigned int slen,
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             unsigned char* dst, unsigned int* dlen,
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             struct st_encryption_scheme *scheme,
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             unsigned int key_version, unsigned int i32_1,
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             unsigned int i32_2, unsigned long long i64,
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             int flag)
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{
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  compile_time_assert(ENCRYPTION_SCHEME_KEY_INVALID ==
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                      (int)ENCRYPTION_KEY_VERSION_INVALID);
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  // Maybe temporal solution for MDEV-8173
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  // Rationale: scheme->type is currently global/object
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  // and when used here might not represent actual state
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  // of smaller granularity objects e.g. InnoDB page state
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  // as type is stored to tablespace (FIL) and could represent
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  // state where key rotation is trying to reach
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  //DBUG_ASSERT(scheme->type == 1);
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  if (key_version == ENCRYPTION_KEY_VERSION_INVALID ||
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      key_version == ENCRYPTION_KEY_NOT_ENCRYPTED)
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    return ENCRYPTION_SCHEME_KEY_INVALID;
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  st_encryption_scheme_key key;
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  key.version= key_version;
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  uint rc= scheme_get_key(scheme, &key);
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  if (rc)
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    return (int)rc;
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  unsigned char iv[4 + 4 + 8];
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  int4store(iv + 0, i32_1);
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  int4store(iv + 4, i32_2);
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  int8store(iv + 8, i64);
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  return encryption_crypt(src, slen, dst, dlen, key.key, sizeof(key.key),
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                          iv, sizeof(iv), flag, scheme->key_id, key_version);
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}
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int encryption_scheme_encrypt(const unsigned char* src, unsigned int slen,
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                              unsigned char* dst, unsigned int* dlen,
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                              struct st_encryption_scheme *scheme,
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                              unsigned int key_version, unsigned int i32_1,
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                              unsigned int i32_2, unsigned long long i64)
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{
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  return do_crypt(src, slen, dst, dlen, scheme, key_version, i32_1,
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                  i32_2, i64, ENCRYPTION_FLAG_NOPAD | ENCRYPTION_FLAG_ENCRYPT);
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}
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int encryption_scheme_decrypt(const unsigned char* src, unsigned int slen,
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                              unsigned char* dst, unsigned int* dlen,
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                              struct st_encryption_scheme *scheme,
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                              unsigned int key_version, unsigned int i32_1,
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                              unsigned int i32_2, unsigned long long i64)
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{
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  return do_crypt(src, slen, dst, dlen, scheme, key_version, i32_1,
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                  i32_2, i64, ENCRYPTION_FLAG_NOPAD | ENCRYPTION_FLAG_DECRYPT);
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}
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