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			132 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			132 lines
		
	
	
		
			5.7 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#ifndef MYSQL_SERVICE_ENCRYPTION_INCLUDED
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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 02110-1335  USA */
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/**
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  @file
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  encryption service
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  Functions to support data encryption and encryption key management.
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  They are normally implemented in an encryption plugin, so this service
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  connects encryption *consumers* (e.g. storage engines) to the encryption
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  *provider* (encryption plugin).
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#ifndef MYSQL_ABI_CHECK
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#ifdef _WIN32
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#include <malloc.h>
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#ifndef __cplusplus
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#define inline __inline
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#endif
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#elif defined(__FreeBSD__) || defined(__OpenBSD__) || defined(__NetBSD__) || defined(__DragonFly__)
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#include <stdlib.h>
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#else
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#include <alloca.h>
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#endif
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#endif
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/* returned from encryption_key_get_latest_version() */
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#define ENCRYPTION_KEY_VERSION_INVALID        (~(unsigned int)0)
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#define ENCRYPTION_KEY_NOT_ENCRYPTED          (0)
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#define ENCRYPTION_KEY_SYSTEM_DATA             1
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#define ENCRYPTION_KEY_TEMPORARY_DATA          2
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/* returned from encryption_key_get()  */
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#define ENCRYPTION_KEY_BUFFER_TOO_SMALL    (100)
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#define ENCRYPTION_FLAG_DECRYPT     0
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#define ENCRYPTION_FLAG_ENCRYPT     1
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#define ENCRYPTION_FLAG_NOPAD       2
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struct encryption_service_st {
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  unsigned int (*encryption_key_get_latest_version_func)(unsigned int key_id);
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  unsigned int (*encryption_key_get_func)(unsigned int key_id, unsigned int key_version,
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                                          unsigned char* buffer, unsigned int* length);
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  unsigned int (*encryption_ctx_size_func)(unsigned int key_id, unsigned int key_version);
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  int (*encryption_ctx_init_func)(void *ctx, const unsigned char* key, unsigned int klen,
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                                  const unsigned char* iv, unsigned int ivlen,
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                                  int flags, unsigned int key_id,
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                                  unsigned int key_version);
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  int (*encryption_ctx_update_func)(void *ctx, const unsigned char* src, unsigned int slen,
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                                    unsigned char* dst, unsigned int* dlen);
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  int (*encryption_ctx_finish_func)(void *ctx, unsigned char* dst, unsigned int* dlen);
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  unsigned int (*encryption_encrypted_length_func)(unsigned int slen, unsigned int key_id, unsigned int key_version);
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};
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#ifdef MYSQL_DYNAMIC_PLUGIN
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extern struct encryption_service_st *encryption_service;
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#define encryption_key_get_latest_version(KI) encryption_service->encryption_key_get_latest_version_func(KI)
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#define encryption_key_get(KI,KV,K,S) encryption_service->encryption_key_get_func((KI),(KV),(K),(S))
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#define encryption_ctx_size(KI,KV) encryption_service->encryption_ctx_size_func((KI),(KV))
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#define encryption_ctx_init(CTX,K,KL,IV,IVL,F,KI,KV) encryption_service->encryption_ctx_init_func((CTX),(K),(KL),(IV),(IVL),(F),(KI),(KV))
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#define encryption_ctx_update(CTX,S,SL,D,DL) encryption_service->encryption_ctx_update_func((CTX),(S),(SL),(D),(DL))
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#define encryption_ctx_finish(CTX,D,DL) encryption_service->encryption_ctx_finish_func((CTX),(D),(DL))
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#define encryption_encrypted_length(SL,KI,KV) encryption_service->encryption_encrypted_length_func((SL),(KI),(KV))
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#else
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extern struct encryption_service_st encryption_handler;
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#define encryption_key_get_latest_version(KI) encryption_handler.encryption_key_get_latest_version_func(KI)
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#define encryption_key_get(KI,KV,K,S) encryption_handler.encryption_key_get_func((KI),(KV),(K),(S))
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#define encryption_ctx_size(KI,KV) encryption_handler.encryption_ctx_size_func((KI),(KV))
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#define encryption_ctx_init(CTX,K,KL,IV,IVL,F,KI,KV) encryption_handler.encryption_ctx_init_func((CTX),(K),(KL),(IV),(IVL),(F),(KI),(KV))
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#define encryption_ctx_update(CTX,S,SL,D,DL) encryption_handler.encryption_ctx_update_func((CTX),(S),(SL),(D),(DL))
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#define encryption_ctx_finish(CTX,D,DL) encryption_handler.encryption_ctx_finish_func((CTX),(D),(DL))
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#define encryption_encrypted_length(SL,KI,KV) encryption_handler.encryption_encrypted_length_func((SL),(KI),(KV))
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#endif
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static inline unsigned int encryption_key_id_exists(unsigned int id)
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{
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  return encryption_key_get_latest_version(id) != ENCRYPTION_KEY_VERSION_INVALID;
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}
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static inline unsigned int encryption_key_version_exists(unsigned int id, unsigned int version)
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{
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  unsigned int unused;
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  return encryption_key_get(id, version, NULL, &unused) != ENCRYPTION_KEY_VERSION_INVALID;
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}
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static inline int encryption_crypt(const unsigned char* src, unsigned int slen,
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                                   unsigned char* dst, unsigned int* dlen,
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                                   const unsigned char* key, unsigned int klen,
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                                   const unsigned char* iv, unsigned int ivlen,
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                                   int flags, unsigned int key_id, unsigned int key_version)
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{
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  void *ctx= alloca(encryption_ctx_size(key_id, key_version));
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  int res1, res2;
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  unsigned int d1, d2;
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  if ((res1= encryption_ctx_init(ctx, key, klen, iv, ivlen, flags, key_id, key_version)))
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    return res1;
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  res1= encryption_ctx_update(ctx, src, slen, dst, &d1);
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  res2= encryption_ctx_finish(ctx, dst + d1, &d2);
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  *dlen= d1 + d2;
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  return res1 ? res1 : res2;
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}
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#ifdef __cplusplus
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}
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#endif
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#define MYSQL_SERVICE_ENCRYPTION_INCLUDED
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#endif
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