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516 lines
15 KiB
C
516 lines
15 KiB
C
/*
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Copyright (c) 2013 Google Inc.
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Copyright (c) 2014, 2015 MariaDB Corporation
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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 "maria_def.h"
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#include "ma_blockrec.h"
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#include <my_crypt.h>
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#define CRYPT_SCHEME_1 1
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#define CRYPT_SCHEME_1_ID_LEN 4 /* 4 bytes for counter-block */
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#define CRYPT_SCHEME_1_IV_LEN 16
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#define CRYPT_SCHEME_1_KEY_VERSION_SIZE 4
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#ifdef HAVE_PSI_INTERFACE
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PSI_mutex_key key_CRYPT_DATA_lock;
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#endif
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struct st_crypt_key
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{
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uint key_version;
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uchar key[CRYPT_SCHEME_1_IV_LEN];
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};
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struct st_maria_crypt_data
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{
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struct st_encryption_scheme scheme;
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uint space;
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mysql_mutex_t lock; /* protecting keys */
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};
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/**
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determine what key id to use for Aria encryption
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Same logic as for tempfiles: if key id 2 exists - use it,
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otherwise use key id 1.
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Key id 1 is system, it always exists. Key id 2 is optional,
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it allows to specify fast low-grade encryption for temporary data.
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*/
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static uint get_encryption_key_id(MARIA_SHARE *share)
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{
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if (share->options & HA_OPTION_TMP_TABLE &&
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encryption_key_id_exists(ENCRYPTION_KEY_TEMPORARY_DATA))
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return ENCRYPTION_KEY_TEMPORARY_DATA;
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else
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return ENCRYPTION_KEY_SYSTEM_DATA;
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}
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uint
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ma_crypt_get_data_page_header_space()
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{
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return CRYPT_SCHEME_1_KEY_VERSION_SIZE;
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}
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uint
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ma_crypt_get_index_page_header_space(MARIA_SHARE *share)
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{
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if (share->base.born_transactional)
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{
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return CRYPT_SCHEME_1_KEY_VERSION_SIZE;
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}
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else
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{
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/* if the index is not transactional, we add 7 bytes LSN anyway
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to be used for counter block
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*/
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return LSN_STORE_SIZE + CRYPT_SCHEME_1_KEY_VERSION_SIZE;
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}
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}
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uint
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ma_crypt_get_file_length()
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{
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return 2 + CRYPT_SCHEME_1_IV_LEN + CRYPT_SCHEME_1_ID_LEN;
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}
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static void crypt_data_scheme_locker(struct st_encryption_scheme *scheme,
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int unlock)
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{
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MARIA_CRYPT_DATA *crypt_data = (MARIA_CRYPT_DATA*)scheme;
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if (unlock)
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mysql_mutex_unlock(&crypt_data->lock);
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else
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mysql_mutex_lock(&crypt_data->lock);
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}
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int
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ma_crypt_create(MARIA_SHARE* share)
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{
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MARIA_CRYPT_DATA *crypt_data=
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(MARIA_CRYPT_DATA*)my_malloc(sizeof(MARIA_CRYPT_DATA), MYF(MY_ZEROFILL));
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crypt_data->scheme.type= CRYPT_SCHEME_1;
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crypt_data->scheme.locker= crypt_data_scheme_locker;
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mysql_mutex_init(key_CRYPT_DATA_lock, &crypt_data->lock, MY_MUTEX_INIT_FAST);
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crypt_data->scheme.key_id= get_encryption_key_id(share);
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my_random_bytes(crypt_data->scheme.iv, sizeof(crypt_data->scheme.iv));
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my_random_bytes((uchar*)&crypt_data->space, sizeof(crypt_data->space));
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share->crypt_data= crypt_data;
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share->crypt_page_header_space= CRYPT_SCHEME_1_KEY_VERSION_SIZE;
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return 0;
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}
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void
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ma_crypt_free(MARIA_SHARE* share)
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{
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if (share->crypt_data != NULL)
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{
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mysql_mutex_destroy(&share->crypt_data->lock);
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my_free(share->crypt_data);
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share->crypt_data= NULL;
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}
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}
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int
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ma_crypt_write(MARIA_SHARE* share, File file)
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{
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MARIA_CRYPT_DATA *crypt_data= share->crypt_data;
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uchar buff[2 + 4 + sizeof(crypt_data->scheme.iv)];
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if (crypt_data == 0)
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return 0;
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buff[0]= crypt_data->scheme.type;
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buff[1]= sizeof(buff) - 2;
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int4store(buff + 2, crypt_data->space);
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memcpy(buff + 6, crypt_data->scheme.iv, sizeof(crypt_data->scheme.iv));
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if (mysql_file_write(file, buff, sizeof(buff), MYF(MY_NABP)))
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return 1;
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return 0;
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}
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uchar*
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ma_crypt_read(MARIA_SHARE* share, uchar *buff)
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{
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uchar type= buff[0];
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uchar iv_length= buff[1];
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/* currently only supported type */
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if (type != CRYPT_SCHEME_1 ||
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iv_length != sizeof(((MARIA_CRYPT_DATA*)1)->scheme.iv) + 4)
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{
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my_printf_error(HA_ERR_UNSUPPORTED,
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"Unsupported crypt scheme! type: %d iv_length: %d\n",
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MYF(ME_FATAL|ME_ERROR_LOG),
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type, iv_length);
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return 0;
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}
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if (share->crypt_data == NULL)
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{
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/* opening a table */
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MARIA_CRYPT_DATA *crypt_data=
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(MARIA_CRYPT_DATA*)my_malloc(sizeof(MARIA_CRYPT_DATA), MYF(MY_ZEROFILL));
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crypt_data->scheme.type= type;
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mysql_mutex_init(key_CRYPT_DATA_lock, &crypt_data->lock,
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MY_MUTEX_INIT_FAST);
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crypt_data->scheme.locker= crypt_data_scheme_locker;
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crypt_data->scheme.key_id= get_encryption_key_id(share);
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crypt_data->space= uint4korr(buff + 2);
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memcpy(crypt_data->scheme.iv, buff + 6, sizeof(crypt_data->scheme.iv));
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share->crypt_data= crypt_data;
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}
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share->crypt_page_header_space= CRYPT_SCHEME_1_KEY_VERSION_SIZE;
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return buff + 2 + iv_length;
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}
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static int ma_encrypt(MARIA_SHARE *, MARIA_CRYPT_DATA *, const uchar *,
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uchar *, uint, uint, LSN, uint *);
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static int ma_decrypt(MARIA_SHARE *, MARIA_CRYPT_DATA *, const uchar *,
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uchar *, uint, uint, LSN, uint);
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static my_bool ma_crypt_pre_read_hook(PAGECACHE_IO_HOOK_ARGS *args)
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{
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MARIA_SHARE *share= (MARIA_SHARE*) args->data;
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uchar *crypt_buf= my_malloc(share->block_size, MYF(0));
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if (crypt_buf == NULL)
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{
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args->crypt_buf= NULL; /* for post-hook */
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return 1;
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}
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/* swap pointers to read into crypt_buf */
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args->crypt_buf= args->page;
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args->page= crypt_buf;
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return 0;
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}
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static my_bool ma_crypt_data_post_read_hook(int res,
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PAGECACHE_IO_HOOK_ARGS *args)
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{
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MARIA_SHARE *share= (MARIA_SHARE*) args->data;
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const uint size= share->block_size;
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const uchar page_type= args->page[PAGE_TYPE_OFFSET] & PAGE_TYPE_MASK;
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const uint32 key_version_offset= (page_type <= TAIL_PAGE) ?
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KEY_VERSION_OFFSET : FULL_PAGE_KEY_VERSION_OFFSET;
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if (res == 0)
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{
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const uchar *src= args->page;
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uchar* dst= args->crypt_buf;
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uint pageno= (uint)args->pageno;
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LSN lsn= lsn_korr(src);
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const uint head= (page_type <= TAIL_PAGE) ?
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PAGE_HEADER_SIZE(share) : FULL_PAGE_HEADER_SIZE(share);
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const uint tail= CRC_SIZE;
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const uint32 key_version= uint4korr(src + key_version_offset);
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/* 1 - copy head */
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memcpy(dst, src, head);
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/* 2 - decrypt page */
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res= ma_decrypt(share, share->crypt_data,
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src + head, dst + head, size - (head + tail), pageno, lsn,
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key_version);
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/* 3 - copy tail */
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memcpy(dst + size - tail, src + size - tail, tail);
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/* 4 clear key version to get correct crc */
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int4store(dst + key_version_offset, 0);
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}
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if (args->crypt_buf != NULL)
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{
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uchar *tmp= args->page;
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args->page= args->crypt_buf;
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args->crypt_buf= NULL;
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my_free(tmp);
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}
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return maria_page_crc_check_data(res, args);
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}
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static void store_rand_lsn(uchar * page)
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{
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LSN lsn= 0;
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lsn+= rand();
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lsn<<= 32;
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lsn+= rand();
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lsn_store(page, lsn);
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}
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static my_bool ma_crypt_data_pre_write_hook(PAGECACHE_IO_HOOK_ARGS *args)
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{
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MARIA_SHARE *share= (MARIA_SHARE*) args->data;
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const uint size= share->block_size;
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uint key_version;
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uchar *crypt_buf= my_malloc(share->block_size, MYF(0));
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if (crypt_buf == NULL)
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{
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args->crypt_buf= NULL; /* for post-hook */
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return 1;
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}
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if (!share->now_transactional)
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{
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/* store a random number instead of LSN (for counter block) */
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store_rand_lsn(args->page);
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}
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maria_page_crc_set_normal(args);
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{
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const uchar *src= args->page;
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uchar* dst= crypt_buf;
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uint pageno= (uint)args->pageno;
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LSN lsn= lsn_korr(src);
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const uchar page_type= src[PAGE_TYPE_OFFSET] & PAGE_TYPE_MASK;
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const uint head= (page_type <= TAIL_PAGE) ?
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PAGE_HEADER_SIZE(share) : FULL_PAGE_HEADER_SIZE(share);
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const uint tail= CRC_SIZE;
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const uint32 key_version_offset= (page_type <= TAIL_PAGE) ?
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KEY_VERSION_OFFSET : FULL_PAGE_KEY_VERSION_OFFSET;
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DBUG_ASSERT(page_type < MAX_PAGE_TYPE);
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/* 1 - copy head */
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memcpy(dst, src, head);
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/* 2 - encrypt page */
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if (ma_encrypt(share, share->crypt_data,
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src + head, dst + head, size - (head + tail), pageno, lsn,
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&key_version))
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return 1;
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/* 3 - copy tail */
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memcpy(dst + size - tail, src + size - tail, tail);
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/* 4 - store key version */
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int4store(dst + key_version_offset, key_version);
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}
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/* swap pointers to instead write out the encrypted block */
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args->crypt_buf= args->page;
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args->page= crypt_buf;
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return 0;
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}
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static void ma_crypt_post_write_hook(int res,
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PAGECACHE_IO_HOOK_ARGS *args)
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{
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if (args->crypt_buf != NULL)
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{
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uchar *tmp= args->page;
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args->page= args->crypt_buf;
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args->crypt_buf= NULL;
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my_free(tmp);
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}
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maria_page_write_failure(res, args);
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}
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void ma_crypt_set_data_pagecache_callbacks(PAGECACHE_FILE *file,
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MARIA_SHARE *share
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__attribute__((unused)))
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{
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/* Only use encryption if we have defined it */
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if (encryption_key_id_exists(get_encryption_key_id(share)))
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{
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file->pre_read_hook= ma_crypt_pre_read_hook;
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file->post_read_hook= ma_crypt_data_post_read_hook;
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file->pre_write_hook= ma_crypt_data_pre_write_hook;
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file->post_write_hook= ma_crypt_post_write_hook;
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}
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}
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static my_bool ma_crypt_index_post_read_hook(int res,
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PAGECACHE_IO_HOOK_ARGS *args)
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{
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MARIA_SHARE *share= (MARIA_SHARE*) args->data;
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const uint block_size= share->block_size;
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const uint page_used= _ma_get_page_used(share, args->page);
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if (res == 0 && page_used <= block_size - CRC_SIZE)
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{
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const uchar *src= args->page;
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uchar* dst= args->crypt_buf;
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uint pageno= (uint)args->pageno;
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LSN lsn= lsn_korr(src);
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const uint head= share->keypage_header;
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const uint tail= CRC_SIZE;
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const uint32 key_version= _ma_get_key_version(share, src);
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/* page_used includes header (but not trailer) */
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const uint size= page_used - head;
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/* 1 - copy head */
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memcpy(dst, src, head);
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/* 2 - decrypt page */
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res= ma_decrypt(share, share->crypt_data,
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src + head, dst + head, size, pageno, lsn, key_version);
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/* 3 - copy tail */
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memcpy(dst + block_size - tail, src + block_size - tail, tail);
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/* 4 clear key version to get correct crc */
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_ma_store_key_version(share, dst, 0);
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}
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if (args->crypt_buf != NULL)
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{
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uchar *tmp= args->page;
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args->page= args->crypt_buf;
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args->crypt_buf= NULL;
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my_free(tmp);
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}
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return maria_page_crc_check_index(res, args);
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}
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static my_bool ma_crypt_index_pre_write_hook(PAGECACHE_IO_HOOK_ARGS *args)
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{
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MARIA_SHARE *share= (MARIA_SHARE*) args->data;
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const uint block_size= share->block_size;
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const uint page_used= _ma_get_page_used(share, args->page);
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uint key_version;
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uchar *crypt_buf= my_malloc(block_size, MYF(0));
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if (crypt_buf == NULL)
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{
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args->crypt_buf= NULL; /* for post-hook */
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return 1;
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}
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if (!share->now_transactional)
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{
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/* store a random number instead of LSN (for counter block) */
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store_rand_lsn(args->page);
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}
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maria_page_crc_set_index(args);
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{
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const uchar *src= args->page;
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uchar* dst= crypt_buf;
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uint pageno= (uint)args->pageno;
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LSN lsn= lsn_korr(src);
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const uint head= share->keypage_header;
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const uint tail= CRC_SIZE;
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/* page_used includes header (but not trailer) */
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const uint size= page_used - head;
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/* 1 - copy head */
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memcpy(dst, src, head);
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/* 2 - encrypt page */
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if (ma_encrypt(share, share->crypt_data,
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src + head, dst + head, size, pageno, lsn, &key_version))
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{
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my_free(crypt_buf);
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return 1;
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}
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/* 3 - copy tail */
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memcpy(dst + block_size - tail, src + block_size - tail, tail);
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/* 4 - store key version */
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_ma_store_key_version(share, dst, key_version);
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#ifdef HAVE_valgrind
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/* 5 - keep valgrind happy by zeroing not used bytes */
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bzero(dst+head+size, block_size - size - tail - head);
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#endif
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}
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/* swap pointers to instead write out the encrypted block */
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args->crypt_buf= args->page;
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args->page= crypt_buf;
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return 0;
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}
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void ma_crypt_set_index_pagecache_callbacks(PAGECACHE_FILE *file,
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MARIA_SHARE *share
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__attribute__((unused)))
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{
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file->pre_read_hook= ma_crypt_pre_read_hook;
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file->post_read_hook= ma_crypt_index_post_read_hook;
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file->pre_write_hook= ma_crypt_index_pre_write_hook;
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file->post_write_hook= ma_crypt_post_write_hook;
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}
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static int ma_encrypt(MARIA_SHARE *share, MARIA_CRYPT_DATA *crypt_data,
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const uchar *src, uchar *dst, uint size,
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uint pageno, LSN lsn,
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uint *key_version)
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{
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int rc;
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uint32 dstlen= 0; /* Must be set because of error message */
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*key_version = encryption_key_get_latest_version(crypt_data->scheme.key_id);
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if (*key_version == ENCRYPTION_KEY_VERSION_INVALID)
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{
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/*
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We use this error for both encryption and decryption, as in normal
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cases it should be impossible to get an error here.
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*/
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my_errno= HA_ERR_DECRYPTION_FAILED;
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my_printf_error(HA_ERR_DECRYPTION_FAILED,
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"Unknown key id %u. Can't continue!",
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MYF(ME_FATAL|ME_ERROR_LOG),
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crypt_data->scheme.key_id);
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return 1;
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}
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rc= encryption_scheme_encrypt(src, size, dst, &dstlen,
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&crypt_data->scheme, *key_version,
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crypt_data->space, pageno, lsn);
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/* The following can only fail if the encryption key is wrong */
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DBUG_ASSERT(!my_assert_on_error || rc == MY_AES_OK);
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DBUG_ASSERT(!my_assert_on_error || dstlen == size);
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if (! (rc == MY_AES_OK && dstlen == size))
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{
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my_errno= HA_ERR_DECRYPTION_FAILED;
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my_printf_error(HA_ERR_DECRYPTION_FAILED,
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"failed to encrypt '%s' rc: %d dstlen: %u size: %u\n",
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MYF(ME_FATAL|ME_ERROR_LOG),
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share->open_file_name.str, rc, dstlen, size);
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return 1;
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}
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return 0;
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}
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static int ma_decrypt(MARIA_SHARE *share, MARIA_CRYPT_DATA *crypt_data,
|
|
const uchar *src, uchar *dst, uint size,
|
|
uint pageno, LSN lsn,
|
|
uint key_version)
|
|
{
|
|
int rc;
|
|
uint32 dstlen= 0; /* Must be set because of error message */
|
|
|
|
rc= encryption_scheme_decrypt(src, size, dst, &dstlen,
|
|
&crypt_data->scheme, key_version,
|
|
crypt_data->space, pageno, lsn);
|
|
|
|
DBUG_ASSERT(!my_assert_on_error || rc == MY_AES_OK);
|
|
DBUG_ASSERT(!my_assert_on_error || dstlen == size);
|
|
if (! (rc == MY_AES_OK && dstlen == size))
|
|
{
|
|
my_errno= HA_ERR_DECRYPTION_FAILED;
|
|
my_printf_error(HA_ERR_DECRYPTION_FAILED,
|
|
"failed to decrypt '%s' rc: %d dstlen: %u size: %u\n",
|
|
MYF(ME_FATAL|ME_ERROR_LOG),
|
|
share->open_file_name.str, rc, dstlen, size);
|
|
return 1;
|
|
}
|
|
return 0;
|
|
}
|