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Co-authored-by: Alexander Trofimov <alexander.trofimov@onlyoffice.com> Co-committed-by: Alexander Trofimov <alexander.trofimov@onlyoffice.com>
267 lines
6.9 KiB
C++
267 lines
6.9 KiB
C++
/*
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* Copyright (C) Ascensio System SIA, 2009-2026
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*
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* This program is a free software product. You can redistribute it and/or
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* modify it under the terms of the GNU Affero General Public License (AGPL)
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* version 3 as published by the Free Software Foundation, together with the
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* additional terms provided in the LICENSE file.
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*
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* This program is distributed WITHOUT ANY WARRANTY; without even the implied
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* warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. For
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* details, see the GNU AGPL at: https://www.gnu.org/licenses/agpl-3.0.html
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*
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* You can contact Ascensio System SIA by email at info@onlyoffice.com
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* or by postal mail at 20A-6 Ernesta Birznieka-Upisha Street, Riga,
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* LV-1050, Latvia, European Union.
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*
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* The interactive user interfaces in modified versions of the Program
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* are required to display Appropriate Legal Notices in accordance with
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* Section 5 of the GNU AGPL version 3.
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*
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* No trademark rights are granted under this License.
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*
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* All non-code elements of the Product, including illustrations,
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* icon sets, and technical writing content, are licensed under the
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* Creative Commons Attribution-ShareAlike 4.0 International License:
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* https://creativecommons.org/licenses/by-sa/4.0/legalcode
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*
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* This license applies only to such non-code elements and does not
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* modify or replace the licensing terms applicable to the Program's
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* source code, which remains licensed under the GNU Affero General
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* Public License v3.
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*
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* SPDX-License-Identifier: AGPL-3.0-only
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*/
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#pragma once
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#include <string>
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#include <vector>
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#include <boost/shared_ptr.hpp>
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namespace CRYPT_METHOD
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{
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enum _hashAlgorithm
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{
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None,
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MD5,
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SHA1,
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SHA224,
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SHA256,
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SHA384,
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SHA512,
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PBKDF2
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};
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enum _cipherAlgorithm
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{
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XOR,
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RC4,
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AES_CBC,
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AES_CFB,
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AES_ECB,
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Blowfish_CFB,
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DES_CBC,
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DES_ECB
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};
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}
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namespace CRYPT
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{
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class Decryptor
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{
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public:
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virtual void Decrypt(char* data, const size_t size, const unsigned long stream_pos, const size_t block_size) = 0;
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virtual void Decrypt(char* data, const size_t size, const unsigned long block_index) = 0;
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virtual bool SetPassword(std::wstring password) = 0;
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virtual void Init(const unsigned long val) = 0;
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virtual bool IsVerify() = 0;
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};
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typedef boost::shared_ptr<Decryptor> DecryptorPtr;
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struct _ecmaWriteProtectData
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{
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CRYPT_METHOD::_hashAlgorithm hashAlgorithm = CRYPT_METHOD::SHA512;
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int spinCount = 100000;
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std::string saltValue;
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std::string hashValue;
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};
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typedef _ecmaWriteProtectData _odfWriteProtectData;
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struct _ecmaCryptData
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{
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//default ms2010
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//_ecmaCryptData() : cipherAlgorithm(), hashAlgorithm(), spinCount(100000),
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// keySize(0x10), hashSize(), blockSize(0x10), saltSize(0x10), bAgile(true)
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//default ms2013/ms2016
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//_cryptData(): cipherAlgorithm(CRYPT_METHOD::AES_CBC), hashAlgorithm(CRYPT_METHOD::SHA256), spinCount(100000),
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// keySize(0x20), hashSize(0x40), blockSize(0x10), saltSize(0x10), bAgile(true)
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//{
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//}
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CRYPT_METHOD::_cipherAlgorithm cipherAlgorithm = CRYPT_METHOD::AES_CBC;
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CRYPT_METHOD::_hashAlgorithm hashAlgorithm = CRYPT_METHOD::SHA1;
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int spinCount = 100000;
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int keySize = 0x10;
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int hashSize = 0x14;
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int blockSize = 0x10;
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int saltSize = 0x10;
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std::string saltValue;
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std::string encryptedKeyValue;
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std::string encryptedVerifierInput;
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std::string encryptedVerifierValue;
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std::string encryptedHmacKey;
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std::string encryptedHmacValue;
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//---------------------------------------------------------------------------------------------
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CRYPT_METHOD::_hashAlgorithm dataHashAlgorithm = CRYPT_METHOD::SHA1;
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CRYPT_METHOD::_cipherAlgorithm dataCipherAlgorithm = CRYPT_METHOD::AES_CBC;
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std::string dataSaltValue;
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int dataKeySize = 0x10;
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int dataHashSize = 0x14;
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int dataBlockSize = 0x10;
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int dataSaltSize = 0x10;
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bool bAgile = true;
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//..........
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bool fDocProps = true;
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};
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struct _odfCryptData
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{
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CRYPT_METHOD::_cipherAlgorithm cipherAlgorithm = CRYPT_METHOD::AES_CBC;
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CRYPT_METHOD::_hashAlgorithm start_hashAlgorithm = CRYPT_METHOD::SHA1;
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int start_hashSize = 20;
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int spinCount = 1024;
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int keySize = 16;
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std::string saltValue;
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std::string initializationVector;
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std::string checksum;
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int checksum_size = 1024;
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CRYPT_METHOD::_hashAlgorithm checksum_hashAlgorithm = CRYPT_METHOD::SHA1;
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};
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//---------------------------------------------------------------------------------------------------
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class ECMAWriteProtect
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{
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public:
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ECMAWriteProtect(){}
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virtual ~ECMAWriteProtect(){}
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void SetPassword (const std::wstring &password);
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void SetCryptData(_ecmaWriteProtectData &data);
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void GetCryptData(_ecmaWriteProtectData &data);
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void Generate();
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bool Verify();
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bool VerifyWrike();
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private:
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std::wstring password;
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_ecmaWriteProtectData data;
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};
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//---------------------------------------------------------------------------------------------------
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class ODFWriteProtect
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{
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public:
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ODFWriteProtect(){}
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virtual ~ODFWriteProtect(){}
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void SetPassword (const std::wstring &password);
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void SetCryptData(_odfWriteProtectData &data);
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void GetCryptData(_odfWriteProtectData &data);
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void Generate();
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bool Verify();
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private:
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std::wstring password;
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_odfWriteProtectData data;
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};
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//---------------------------------------------------------------------------------------------------
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class ECMAEncryptor
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{
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public:
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ECMAEncryptor();
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virtual ~ECMAEncryptor(){}
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void SetPassword (std::wstring password);
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void SetCryptData(_ecmaCryptData &data);
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void GetCryptData(_ecmaCryptData &data);
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int Encrypt (unsigned char* data, int size, unsigned char*& data_out);
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void UpdateDataIntegrity(unsigned char* data, int size);
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private:
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std::wstring password;
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_ecmaCryptData cryptData;
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};
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class ECMADecryptor : public Decryptor
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{
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public:
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ECMADecryptor();
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virtual ~ECMADecryptor();
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virtual void Init(const unsigned long val) {}
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virtual void Decrypt (char* data, const size_t size, const unsigned long stream_pos, const size_t block_size);
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virtual void Decrypt (char* data, const size_t size, const unsigned long start_iv_block);
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virtual bool SetPassword (std::wstring password);
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virtual bool IsVerify();
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bool CheckDataIntegrity(unsigned char* data, int size);
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void SetCryptData(_ecmaCryptData &data);
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void Decrypt (unsigned char* data, int size, unsigned char*& data_out, unsigned long start_iv_block);
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private:
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std::wstring password;
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_ecmaCryptData cryptData;
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bool bVerify;
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};
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class ODFDecryptor
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{
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public:
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ODFDecryptor();
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virtual ~ODFDecryptor(){}
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void SetCryptData(_odfCryptData &data);
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bool Decrypt (const std::wstring &wpassword, unsigned char* data_inp, int size_inp, unsigned char*& data_out, int &size_out);
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private:
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_odfCryptData cryptData;
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bool bVerify;
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};
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class ODFEncryptor
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{
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public:
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ODFEncryptor(){}
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virtual ~ODFEncryptor(){}
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void SetCryptData(_odfCryptData &data);
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void GetCryptData(_odfCryptData &data);
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int Encrypt (const std::wstring &password, unsigned char* data, int size, unsigned char*& data_out);
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private:
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_odfCryptData cryptData;
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};
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}
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