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7bd2f20e88
--encrypt-binlog and --encrypt-tmp-files used to mean "encrypt XXX if encryption is available, otherwise don't encrypt", now they mean "encrypt or fail with an error".
263 lines
7.8 KiB
C++
263 lines
7.8 KiB
C++
/*
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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 02110-1301 USA */
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/*************************************************************************
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Limitation of encrypted IO_CACHEs
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1. Designed to support temporary files only (open_cached_file, fd=-1)
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2. Created with WRITE_CACHE, later can be reinit_io_cache'ed to
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READ_CACHE and WRITE_CACHE in any order arbitrary number of times.
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3. no seeks for writes, but reinit_io_cache(WRITE_CACHE, seek_offset)
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is allowed (there's a special hack in reinit_io_cache() for that)
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*/
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#include "../mysys/mysys_priv.h"
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#include "log.h"
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#include "mysqld.h"
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#include "sql_class.h"
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static uint keyid, keyver;
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#define set_iv(IV, N1, N2) \
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do { \
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compile_time_assert(sizeof(IV) >= sizeof(N1) + sizeof(N2)); \
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memcpy(IV, &(N1), sizeof(N1)); \
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memcpy(IV + sizeof(N1), &(N2), sizeof(N2)); \
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} while(0)
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static int my_b_encr_read(IO_CACHE *info, uchar *Buffer, size_t Count)
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{
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my_off_t pos_in_file= info->pos_in_file + (info->read_end - info->buffer);
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my_off_t old_pos_in_file= pos_in_file, pos_offset= 0;
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IO_CACHE_CRYPT *crypt_data=
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(IO_CACHE_CRYPT *)(info->buffer + info->buffer_length + MY_AES_BLOCK_SIZE);
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uchar *wbuffer= (uchar*)&(crypt_data->inbuf_counter);
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uchar *ebuffer= (uchar*)(crypt_data + 1);
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DBUG_ENTER("my_b_encr_read");
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if (pos_in_file == info->end_of_file)
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{
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info->read_pos= info->read_end= info->buffer;
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info->pos_in_file= pos_in_file;
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info->error= 0;
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DBUG_RETURN(MY_TEST(Count));
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}
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if (info->seek_not_done)
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{
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size_t wpos;
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pos_offset= pos_in_file % info->buffer_length;
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pos_in_file-= pos_offset;
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wpos= pos_in_file / info->buffer_length * crypt_data->block_length;
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if ((mysql_file_seek(info->file, wpos, MY_SEEK_SET, MYF(0))
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== MY_FILEPOS_ERROR))
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{
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info->error= -1;
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DBUG_RETURN(1);
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}
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info->seek_not_done= 0;
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}
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do
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{
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size_t copied;
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uint elength, wlength, length;
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uchar iv[MY_AES_BLOCK_SIZE]= {0};
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DBUG_ASSERT(pos_in_file % info->buffer_length == 0);
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if (info->end_of_file - pos_in_file >= info->buffer_length)
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wlength= crypt_data->block_length;
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else
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wlength= crypt_data->last_block_length;
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if (mysql_file_read(info->file, wbuffer, wlength, info->myflags | MY_NABP))
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{
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info->error= -1;
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DBUG_RETURN(1);
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}
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elength= wlength - (ebuffer - wbuffer);
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set_iv(iv, pos_in_file, crypt_data->inbuf_counter);
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if (encryption_crypt(ebuffer, elength, info->buffer, &length,
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crypt_data->key, sizeof(crypt_data->key),
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iv, sizeof(iv), ENCRYPTION_FLAG_DECRYPT,
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keyid, keyver))
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{
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my_errno= 1;
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DBUG_RETURN(info->error= -1);
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}
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DBUG_ASSERT(length <= info->buffer_length);
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copied= MY_MIN(Count, length - pos_offset);
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memcpy(Buffer, info->buffer + pos_offset, copied);
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Count-= copied;
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Buffer+= copied;
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info->read_pos= info->buffer + pos_offset + copied;
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info->read_end= info->buffer + length;
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info->pos_in_file= pos_in_file;
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pos_in_file+= length;
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pos_offset= 0;
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if (wlength < crypt_data->block_length && pos_in_file < info->end_of_file)
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{
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info->error= pos_in_file - old_pos_in_file;
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DBUG_RETURN(1);
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}
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} while (Count);
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DBUG_RETURN(0);
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}
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static int my_b_encr_write(IO_CACHE *info, const uchar *Buffer, size_t Count)
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{
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IO_CACHE_CRYPT *crypt_data=
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(IO_CACHE_CRYPT *)(info->buffer + info->buffer_length + MY_AES_BLOCK_SIZE);
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uchar *wbuffer= (uchar*)&(crypt_data->inbuf_counter);
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uchar *ebuffer= (uchar*)(crypt_data + 1);
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DBUG_ENTER("my_b_encr_write");
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if (Buffer != info->write_buffer)
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{
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Count-= Count % info->buffer_length;
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if (!Count)
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DBUG_RETURN(0);
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}
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if (info->seek_not_done)
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{
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DBUG_ASSERT(info->pos_in_file == 0);
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if ((mysql_file_seek(info->file, 0, MY_SEEK_SET, MYF(0)) == MY_FILEPOS_ERROR))
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{
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info->error= -1;
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DBUG_RETURN(1);
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}
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info->seek_not_done= 0;
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}
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if (info->pos_in_file == 0)
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{
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if (my_random_bytes(crypt_data->key, sizeof(crypt_data->key)))
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{
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my_errno= 1;
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DBUG_RETURN(info->error= -1);
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}
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crypt_data->counter= 0;
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IF_DBUG(crypt_data->block_length= 0,);
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}
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do
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{
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size_t length= MY_MIN(info->buffer_length, Count);
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uint elength, wlength;
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uchar iv[MY_AES_BLOCK_SIZE]= {0};
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crypt_data->inbuf_counter= crypt_data->counter;
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set_iv(iv, info->pos_in_file, crypt_data->inbuf_counter);
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if (encryption_crypt(Buffer, length, ebuffer, &elength,
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crypt_data->key, sizeof(crypt_data->key),
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iv, sizeof(iv), ENCRYPTION_FLAG_ENCRYPT,
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keyid, keyver))
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{
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my_errno= 1;
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DBUG_RETURN(info->error= -1);
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}
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wlength= elength + ebuffer - wbuffer;
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if (length == info->buffer_length)
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{
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/*
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block_length should be always the same. that is, encrypting
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buffer_length bytes should *always* produce block_length bytes
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*/
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DBUG_ASSERT(crypt_data->block_length == 0 || crypt_data->block_length == wlength);
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DBUG_ASSERT(elength <= encryption_encrypted_length(length, keyid, keyver));
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crypt_data->block_length= wlength;
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}
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else
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{
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/* if we write a partial block, it *must* be the last write */
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IF_DBUG(info->write_function= 0,);
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crypt_data->last_block_length= wlength;
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}
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if (mysql_file_write(info->file, wbuffer, wlength, info->myflags | MY_NABP))
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DBUG_RETURN(info->error= -1);
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Buffer+= length;
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Count-= length;
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info->pos_in_file+= length;
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crypt_data->counter++;
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} while (Count);
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DBUG_RETURN(0);
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}
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/**
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determine what key id and key version to use for IO_CACHE temp files
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First, try key id 2, if it doesn't exist, use key id 1.
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(key id 1 is the default system key id, used pretty much everywhere, it must
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exist. key id 2 is for tempfiles, it can be used, for example, to set a
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faster encryption algorithm for temporary files)
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This looks like it might have a bug: if an encryption plugin is unloaded when
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there's an open IO_CACHE, that IO_CACHE will become unreadable after reinit.
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But in fact it is safe, as an encryption plugin can only be unloaded on
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server shutdown.
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Note that encrypt_tmp_files variable is read-only.
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*/
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int init_io_cache_encryption()
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{
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if (encrypt_tmp_files)
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{
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keyid= ENCRYPTION_KEY_TEMPORARY_DATA;
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keyver= encryption_key_get_latest_version(keyid);
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if (keyver == ENCRYPTION_KEY_VERSION_INVALID)
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{
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keyid= ENCRYPTION_KEY_SYSTEM_DATA;
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keyver= encryption_key_get_latest_version(keyid);
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}
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if (keyver == ENCRYPTION_KEY_VERSION_INVALID)
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{
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sql_print_error("Failed to enable encryption of temporary files");
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return 1;
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}
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if (keyver != ENCRYPTION_KEY_NOT_ENCRYPTED)
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{
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sql_print_information("Using encryption key id %d for temporary files", keyid);
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_my_b_encr_read= my_b_encr_read;
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_my_b_encr_write= my_b_encr_write;
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return 0;
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}
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}
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_my_b_encr_read= 0;
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_my_b_encr_write= 0;
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return 0;
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}
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