{==============================================================================| | Project : Ararat Synapse | 001.001.000 | |==============================================================================| | Content: Encryption support | |==============================================================================| | Copyright (c)2007-2011, Lukas Gebauer | | All rights reserved. | | | | Redistribution and use in source and binary forms, with or without | | modification, are permitted provided that the following conditions are met: | | | | Redistributions of source code must retain the above copyright notice, this | | list of conditions and the following disclaimer. | | | | Redistributions in binary form must reproduce the above copyright notice, | | this list of conditions and the following disclaimer in the documentation | | and/or other materials provided with the distribution. | | | | Neither the name of Lukas Gebauer nor the names of its contributors may | | be used to endorse or promote products derived from this software without | | specific prior written permission. | | | | THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | | AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | | IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | | ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE FOR | | ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL | | DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR | | SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER | | CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT | | LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY | | OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH | | DAMAGE. | |==============================================================================| | The Initial Developer of the Original Code is Lukas Gebauer (Czech Republic).| | Portions created by Lukas Gebauer are Copyright (c)2007-2011. | | All Rights Reserved. | | Based on work of David Barton and Eric Young | |==============================================================================| | Contributor(s): | |==============================================================================| | History: see HISTORY.HTM from distribution package | | (Found at URL: http://www.ararat.cz/synapse/) | |==============================================================================} {:@abstract(Encryption support) Implemented are DES and 3DES encryption/decryption by ECB, CBC, CFB-8bit, CFB-block, OFB and CTR methods. } {$IFDEF FPC} {$MODE DELPHI} {$ENDIF} {$Q-} {$R-} {$H+} {$IFDEF UNICODE} {$WARN IMPLICIT_STRING_CAST OFF} {$WARN IMPLICIT_STRING_CAST_LOSS OFF} {$ENDIF} unit synacrypt; interface uses SysUtils, Classes, synautil, synafpc; type {:@abstract(Implementation of common routines block ciphers (dafault size is 64-bits)) Do not use this class directly, use descendants only!} TSynaBlockCipher= class(TObject) protected procedure InitKey(Key: AnsiString); virtual; function GetSize: byte; virtual; private IV, CV: AnsiString; procedure IncCounter; public {:Sets the IV to Value and performs a reset} procedure SetIV(const Value: AnsiString); virtual; {:Returns the current chaining information, not the actual IV} function GetIV: AnsiString; virtual; {:Reset any stored chaining information} procedure Reset; virtual; {:Encrypt a 64-bit block of data using the ECB method of encryption} function EncryptECB(const InData: AnsiString): AnsiString; virtual; {:Decrypt a 64-bit block of data using the ECB method of decryption} function DecryptECB(const InData: AnsiString): AnsiString; virtual; {:Encrypt data using the CBC method of encryption} function EncryptCBC(const Indata: AnsiString): AnsiString; virtual; {:Decrypt data using the CBC method of decryption} function DecryptCBC(const Indata: AnsiString): AnsiString; virtual; {:Encrypt data using the CFB (8 bit) method of encryption} function EncryptCFB8bit(const Indata: AnsiString): AnsiString; virtual; {:Decrypt data using the CFB (8 bit) method of decryption} function DecryptCFB8bit(const Indata: AnsiString): AnsiString; virtual; {:Encrypt data using the CFB (block) method of encryption} function EncryptCFBblock(const Indata: AnsiString): AnsiString; virtual; {:Decrypt data using the CFB (block) method of decryption} function DecryptCFBblock(const Indata: AnsiString): AnsiString; virtual; {:Encrypt data using the OFB method of encryption} function EncryptOFB(const Indata: AnsiString): AnsiString; virtual; {:Decrypt data using the OFB method of decryption} function DecryptOFB(const Indata: AnsiString): AnsiString; virtual; {:Encrypt data using the CTR method of encryption} function EncryptCTR(const Indata: AnsiString): AnsiString; virtual; {:Decrypt data using the CTR method of decryption} function DecryptCTR(const Indata: AnsiString): AnsiString; virtual; {:Create a encryptor/decryptor instance and initialize it by the Key.} constructor Create(Key: AnsiString); end; {:@abstract(Datatype for holding one DES key data) This data type is used internally.} TDesKeyData = array[0..31] of integer; {:@abstract(Implementation of common routines for DES encryption) Do not use this class directly, use descendants only!} TSynaCustomDes = class(TSynaBlockcipher) protected procedure DoInit(KeyB: AnsiString; var KeyData: TDesKeyData); function EncryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString; function DecryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString; end; {:@abstract(Implementation of DES encryption)} TSynaDes= class(TSynaCustomDes) protected KeyData: TDesKeyData; procedure InitKey(Key: AnsiString); override; public {:Encrypt a 64-bit block of data using the ECB method of encryption} function EncryptECB(const InData: AnsiString): AnsiString; override; {:Decrypt a 64-bit block of data using the ECB method of decryption} function DecryptECB(const InData: AnsiString): AnsiString; override; end; {:@abstract(Implementation of 3DES encryption)} TSyna3Des= class(TSynaCustomDes) protected KeyData: array[0..2] of TDesKeyData; procedure InitKey(Key: AnsiString); override; public {:Encrypt a 64-bit block of data using the ECB method of encryption} function EncryptECB(const InData: AnsiString): AnsiString; override; {:Decrypt a 64-bit block of data using the ECB method of decryption} function DecryptECB(const InData: AnsiString): AnsiString; override; end; const BC = 4; MAXROUNDS = 14; type {:@abstract(Implementation of AES encryption)} TSynaAes= class(TSynaBlockcipher) protected numrounds: longword; rk, drk: array[0..MAXROUNDS,0..7] of longword; procedure InitKey(Key: AnsiString); override; function GetSize: byte; override; public {:Encrypt a 128-bit block of data using the ECB method of encryption} function EncryptECB(const InData: AnsiString): AnsiString; override; {:Decrypt a 128-bit block of data using the ECB method of decryption} function DecryptECB(const InData: AnsiString): AnsiString; override; end; {:Call internal test of all DES encryptions. Returns @true if all is OK.} function TestDes: boolean; {:Call internal test of all 3DES encryptions. Returns @true if all is OK.} function Test3Des: boolean; {:Call internal test of all AES encryptions. Returns @true if all is OK.} function TestAes: boolean; {==============================================================================} implementation //DES consts const shifts2: array[0..15]of byte= (0,0,1,1,1,1,1,1,0,1,1,1,1,1,1,0); des_skb: array[0..7,0..63]of integer=( ( (* for C bits (numbered as per FIPS 46) 1 2 3 4 5 6 *) integer($00000000),integer($00000010),integer($20000000),integer($20000010), integer($00010000),integer($00010010),integer($20010000),integer($20010010), integer($00000800),integer($00000810),integer($20000800),integer($20000810), integer($00010800),integer($00010810),integer($20010800),integer($20010810), integer($00000020),integer($00000030),integer($20000020),integer($20000030), integer($00010020),integer($00010030),integer($20010020),integer($20010030), integer($00000820),integer($00000830),integer($20000820),integer($20000830), integer($00010820),integer($00010830),integer($20010820),integer($20010830), integer($00080000),integer($00080010),integer($20080000),integer($20080010), integer($00090000),integer($00090010),integer($20090000),integer($20090010), integer($00080800),integer($00080810),integer($20080800),integer($20080810), integer($00090800),integer($00090810),integer($20090800),integer($20090810), integer($00080020),integer($00080030),integer($20080020),integer($20080030), integer($00090020),integer($00090030),integer($20090020),integer($20090030), integer($00080820),integer($00080830),integer($20080820),integer($20080830), integer($00090820),integer($00090830),integer($20090820),integer($20090830) ),( (* for C bits (numbered as per FIPS 46) 7 8 10 11 12 13 *) integer($00000000),integer($02000000),integer($00002000),integer($02002000), integer($00200000),integer($02200000),integer($00202000),integer($02202000), integer($00000004),integer($02000004),integer($00002004),integer($02002004), integer($00200004),integer($02200004),integer($00202004),integer($02202004), integer($00000400),integer($02000400),integer($00002400),integer($02002400), integer($00200400),integer($02200400),integer($00202400),integer($02202400), integer($00000404),integer($02000404),integer($00002404),integer($02002404), integer($00200404),integer($02200404),integer($00202404),integer($02202404), integer($10000000),integer($12000000),integer($10002000),integer($12002000), integer($10200000),integer($12200000),integer($10202000),integer($12202000), integer($10000004),integer($12000004),integer($10002004),integer($12002004), integer($10200004),integer($12200004),integer($10202004),integer($12202004), integer($10000400),integer($12000400),integer($10002400),integer($12002400), integer($10200400),integer($12200400),integer($10202400),integer($12202400), integer($10000404),integer($12000404),integer($10002404),integer($12002404), integer($10200404),integer($12200404),integer($10202404),integer($12202404) ),( (* for C bits (numbered as per FIPS 46) 14 15 16 17 19 20 *) integer($00000000),integer($00000001),integer($00040000),integer($00040001), integer($01000000),integer($01000001),integer($01040000),integer($01040001), integer($00000002),integer($00000003),integer($00040002),integer($00040003), integer($01000002),integer($01000003),integer($01040002),integer($01040003), integer($00000200),integer($00000201),integer($00040200),integer($00040201), integer($01000200),integer($01000201),integer($01040200),integer($01040201), integer($00000202),integer($00000203),integer($00040202),integer($00040203), integer($01000202),integer($01000203),integer($01040202),integer($01040203), integer($08000000),integer($08000001),integer($08040000),integer($08040001), integer($09000000),integer($09000001),integer($09040000),integer($09040001), integer($08000002),integer($08000003),integer($08040002),integer($08040003), integer($09000002),integer($09000003),integer($09040002),integer($09040003), integer($08000200),integer($08000201),integer($08040200),integer($08040201), integer($09000200),integer($09000201),integer($09040200),integer($09040201), integer($08000202),integer($08000203),integer($08040202),integer($08040203), integer($09000202),integer($09000203),integer($09040202),integer($09040203) ),( (* for C bits (numbered as per FIPS 46) 21 23 24 26 27 28 *) integer($00000000),integer($00100000),integer($00000100),integer($00100100), integer($00000008),integer($00100008),integer($00000108),integer($00100108), integer($00001000),integer($00101000),integer($00001100),integer($00101100), integer($00001008),integer($00101008),integer($00001108),integer($00101108), integer($04000000),integer($04100000),integer($04000100),integer($04100100), integer($04000008),integer($04100008),integer($04000108),integer($04100108), integer($04001000),integer($04101000),integer($04001100),integer($04101100), integer($04001008),integer($04101008),integer($04001108),integer($04101108), integer($00020000),integer($00120000),integer($00020100),integer($00120100), integer($00020008),integer($00120008),integer($00020108),integer($00120108), integer($00021000),integer($00121000),integer($00021100),integer($00121100), integer($00021008),integer($00121008),integer($00021108),integer($00121108), integer($04020000),integer($04120000),integer($04020100),integer($04120100), integer($04020008),integer($04120008),integer($04020108),integer($04120108), integer($04021000),integer($04121000),integer($04021100),integer($04121100), integer($04021008),integer($04121008),integer($04021108),integer($04121108) ),( (* for D bits (numbered as per FIPS 46) 1 2 3 4 5 6 *) integer($00000000),integer($10000000),integer($00010000),integer($10010000), integer($00000004),integer($10000004),integer($00010004),integer($10010004), integer($20000000),integer($30000000),integer($20010000),integer($30010000), integer($20000004),integer($30000004),integer($20010004),integer($30010004), integer($00100000),integer($10100000),integer($00110000),integer($10110000), integer($00100004),integer($10100004),integer($00110004),integer($10110004), integer($20100000),integer($30100000),integer($20110000),integer($30110000), integer($20100004),integer($30100004),integer($20110004),integer($30110004), integer($00001000),integer($10001000),integer($00011000),integer($10011000), integer($00001004),integer($10001004),integer($00011004),integer($10011004), integer($20001000),integer($30001000),integer($20011000),integer($30011000), integer($20001004),integer($30001004),integer($20011004),integer($30011004), integer($00101000),integer($10101000),integer($00111000),integer($10111000), integer($00101004),integer($10101004),integer($00111004),integer($10111004), integer($20101000),integer($30101000),integer($20111000),integer($30111000), integer($20101004),integer($30101004),integer($20111004),integer($30111004) ),( (* for D bits (numbered as per FIPS 46) 8 9 11 12 13 14 *) integer($00000000),integer($08000000),integer($00000008),integer($08000008), integer($00000400),integer($08000400),integer($00000408),integer($08000408), integer($00020000),integer($08020000),integer($00020008),integer($08020008), integer($00020400),integer($08020400),integer($00020408),integer($08020408), integer($00000001),integer($08000001),integer($00000009),integer($08000009), integer($00000401),integer($08000401),integer($00000409),integer($08000409), integer($00020001),integer($08020001),integer($00020009),integer($08020009), integer($00020401),integer($08020401),integer($00020409),integer($08020409), integer($02000000),integer($0A000000),integer($02000008),integer($0A000008), integer($02000400),integer($0A000400),integer($02000408),integer($0A000408), integer($02020000),integer($0A020000),integer($02020008),integer($0A020008), integer($02020400),integer($0A020400),integer($02020408),integer($0A020408), integer($02000001),integer($0A000001),integer($02000009),integer($0A000009), integer($02000401),integer($0A000401),integer($02000409),integer($0A000409), integer($02020001),integer($0A020001),integer($02020009),integer($0A020009), integer($02020401),integer($0A020401),integer($02020409),integer($0A020409) ),( (* for D bits (numbered as per FIPS 46) 16 17 18 19 20 21 *) integer($00000000),integer($00000100),integer($00080000),integer($00080100), integer($01000000),integer($01000100),integer($01080000),integer($01080100), integer($00000010),integer($00000110),integer($00080010),integer($00080110), integer($01000010),integer($01000110),integer($01080010),integer($01080110), integer($00200000),integer($00200100),integer($00280000),integer($00280100), integer($01200000),integer($01200100),integer($01280000),integer($01280100), integer($00200010),integer($00200110),integer($00280010),integer($00280110), integer($01200010),integer($01200110),integer($01280010),integer($01280110), integer($00000200),integer($00000300),integer($00080200),integer($00080300), integer($01000200),integer($01000300),integer($01080200),integer($01080300), integer($00000210),integer($00000310),integer($00080210),integer($00080310), integer($01000210),integer($01000310),integer($01080210),integer($01080310), integer($00200200),integer($00200300),integer($00280200),integer($00280300), integer($01200200),integer($01200300),integer($01280200),integer($01280300), integer($00200210),integer($00200310),integer($00280210),integer($00280310), integer($01200210),integer($01200310),integer($01280210),integer($01280310) ),( (* for D bits (numbered as per FIPS 46) 22 23 24 25 27 28 *) integer($00000000),integer($04000000),integer($00040000),integer($04040000), integer($00000002),integer($04000002),integer($00040002),integer($04040002), integer($00002000),integer($04002000),integer($00042000),integer($04042000), integer($00002002),integer($04002002),integer($00042002),integer($04042002), integer($00000020),integer($04000020),integer($00040020),integer($04040020), integer($00000022),integer($04000022),integer($00040022),integer($04040022), integer($00002020),integer($04002020),integer($00042020),integer($04042020), integer($00002022),integer($04002022),integer($00042022),integer($04042022), integer($00000800),integer($04000800),integer($00040800),integer($04040800), integer($00000802),integer($04000802),integer($00040802),integer($04040802), integer($00002800),integer($04002800),integer($00042800),integer($04042800), integer($00002802),integer($04002802),integer($00042802),integer($04042802), integer($00000820),integer($04000820),integer($00040820),integer($04040820), integer($00000822),integer($04000822),integer($00040822),integer($04040822), integer($00002820),integer($04002820),integer($00042820),integer($04042820), integer($00002822),integer($04002822),integer($00042822),integer($04042822) )); des_sptrans: array[0..7,0..63] of integer=( ( (* nibble 0 *) integer($02080800), integer($00080000), integer($02000002), integer($02080802), integer($02000000), integer($00080802), integer($00080002), integer($02000002), integer($00080802), integer($02080800), integer($02080000), integer($00000802), integer($02000802), integer($02000000), integer($00000000), integer($00080002), integer($00080000), integer($00000002), integer($02000800), integer($00080800), integer($02080802), integer($02080000), integer($00000802), integer($02000800), integer($00000002), integer($00000800), integer($00080800), integer($02080002), integer($00000800), integer($02000802), integer($02080002), integer($00000000), integer($00000000), integer($02080802), integer($02000800), integer($00080002), integer($02080800), integer($00080000), integer($00000802), integer($02000800), integer($02080002), integer($00000800), integer($00080800), integer($02000002), integer($00080802), integer($00000002), integer($02000002), integer($02080000), integer($02080802), integer($00080800), integer($02080000), integer($02000802), integer($02000000), integer($00000802), integer($00080002), integer($00000000), integer($00080000), integer($02000000), integer($02000802), integer($02080800), integer($00000002), integer($02080002), integer($00000800), integer($00080802) ),( (* nibble 1 *) integer($40108010), integer($00000000), integer($00108000), integer($40100000), integer($40000010), integer($00008010), integer($40008000), integer($00108000), integer($00008000), integer($40100010), integer($00000010), integer($40008000), integer($00100010), integer($40108000), integer($40100000), integer($00000010), integer($00100000), integer($40008010), integer($40100010), integer($00008000), integer($00108010), integer($40000000), integer($00000000), integer($00100010), integer($40008010), integer($00108010), integer($40108000), integer($40000010), integer($40000000), integer($00100000), integer($00008010), integer($40108010), integer($00100010), integer($40108000), integer($40008000), integer($00108010), integer($40108010), integer($00100010), integer($40000010), integer($00000000), integer($40000000), integer($00008010), integer($00100000), integer($40100010), integer($00008000), integer($40000000), integer($00108010), integer($40008010), integer($40108000), integer($00008000), integer($00000000), integer($40000010), integer($00000010), integer($40108010), integer($00108000), integer($40100000), integer($40100010), integer($00100000), integer($00008010), integer($40008000), integer($40008010), integer($00000010), integer($40100000), integer($00108000) ),( (* nibble 2 *) integer($04000001), integer($04040100), integer($00000100), integer($04000101), integer($00040001), integer($04000000), integer($04000101), integer($00040100), integer($04000100), integer($00040000), integer($04040000), integer($00000001), integer($04040101), integer($00000101), integer($00000001), integer($04040001), integer($00000000), integer($00040001), integer($04040100), integer($00000100), integer($00000101), integer($04040101), integer($00040000), integer($04000001), integer($04040001), integer($04000100), integer($00040101), integer($04040000), integer($00040100), integer($00000000), integer($04000000), integer($00040101), integer($04040100), integer($00000100), integer($00000001), integer($00040000), integer($00000101), integer($00040001), integer($04040000), integer($04000101), integer($00000000), integer($04040100), integer($00040100), integer($04040001), integer($00040001), integer($04000000), integer($04040101), integer($00000001), integer($00040101), integer($04000001), integer($04000000), integer($04040101), integer($00040000), integer($04000100), integer($04000101), integer($00040100), integer($04000100), integer($00000000), integer($04040001), integer($00000101), integer($04000001), integer($00040101), integer($00000100), integer($04040000) ),( (* nibble 3 *) integer($00401008), integer($10001000), integer($00000008), integer($10401008), integer($00000000), integer($10400000), integer($10001008), integer($00400008), integer($10401000), integer($10000008), integer($10000000), integer($00001008), integer($10000008), integer($00401008), integer($00400000), integer($10000000), integer($10400008), integer($00401000), integer($00001000), integer($00000008), integer($00401000), integer($10001008), integer($10400000), integer($00001000), integer($00001008), integer($00000000), integer($00400008), integer($10401000), integer($10001000), integer($10400008), integer($10401008), integer($00400000), integer($10400008), integer($00001008), integer($00400000), integer($10000008), integer($00401000), integer($10001000), integer($00000008), integer($10400000), integer($10001008), integer($00000000), integer($00001000), integer($00400008), integer($00000000), integer($10400008), integer($10401000), integer($00001000), integer($10000000), integer($10401008), integer($00401008), integer($00400000), integer($10401008), integer($00000008), integer($10001000), integer($00401008), integer($00400008), integer($00401000), integer($10400000), integer($10001008), integer($00001008), integer($10000000), integer($10000008), integer($10401000) ),( (* nibble 4 *) integer($08000000), integer($00010000), integer($00000400), integer($08010420), integer($08010020), integer($08000400), integer($00010420), integer($08010000), integer($00010000), integer($00000020), integer($08000020), integer($00010400), integer($08000420), integer($08010020), integer($08010400), integer($00000000), integer($00010400), integer($08000000), integer($00010020), integer($00000420), integer($08000400), integer($00010420), integer($00000000), integer($08000020), integer($00000020), integer($08000420), integer($08010420), integer($00010020), integer($08010000), integer($00000400), integer($00000420), integer($08010400), integer($08010400), integer($08000420), integer($00010020), integer($08010000), integer($00010000), integer($00000020), integer($08000020), integer($08000400), integer($08000000), integer($00010400), integer($08010420), integer($00000000), integer($00010420), integer($08000000), integer($00000400), integer($00010020), integer($08000420), integer($00000400), integer($00000000), integer($08010420), integer($08010020), integer($08010400), integer($00000420), integer($00010000), integer($00010400), integer($08010020), integer($08000400), integer($00000420), integer($00000020), integer($00010420), integer($08010000), integer($08000020) ),( (* nibble 5 *) integer($80000040), integer($00200040), integer($00000000), integer($80202000), integer($00200040), integer($00002000), integer($80002040), integer($00200000), integer($00002040), integer($80202040), integer($00202000), integer($80000000), integer($80002000), integer($80000040), integer($80200000), integer($00202040), integer($00200000), integer($80002040), integer($80200040), integer($00000000), integer($00002000), integer($00000040), integer($80202000), integer($80200040), integer($80202040), integer($80200000), integer($80000000), integer($00002040), integer($00000040), integer($00202000), integer($00202040), integer($80002000), integer($00002040), integer($80000000), integer($80002000), integer($00202040), integer($80202000), integer($00200040), integer($00000000), integer($80002000), integer($80000000), integer($00002000), integer($80200040), integer($00200000), integer($00200040), integer($80202040), integer($00202000), integer($00000040), integer($80202040), integer($00202000), integer($00200000), integer($80002040), integer($80000040), integer($80200000), integer($00202040), integer($00000000), integer($00002000), integer($80000040), integer($80002040), integer($80202000), integer($80200000), integer($00002040), integer($00000040), integer($80200040) ),( (* nibble 6 *) integer($00004000), integer($00000200), integer($01000200), integer($01000004), integer($01004204), integer($00004004), integer($00004200), integer($00000000), integer($01000000), integer($01000204), integer($00000204), integer($01004000), integer($00000004), integer($01004200), integer($01004000), integer($00000204), integer($01000204), integer($00004000), integer($00004004), integer($01004204), integer($00000000), integer($01000200), integer($01000004), integer($00004200), integer($01004004), integer($00004204), integer($01004200), integer($00000004), integer($00004204), integer($01004004), integer($00000200), integer($01000000), integer($00004204), integer($01004000), integer($01004004), integer($00000204), integer($00004000), integer($00000200), integer($01000000), integer($01004004), integer($01000204), integer($00004204), integer($00004200), integer($00000000), integer($00000200), integer($01000004), integer($00000004), integer($01000200), integer($00000000), integer($01000204), integer($01000200), integer($00004200), integer($00000204), integer($00004000), integer($01004204), integer($01000000), integer($01004200), integer($00000004), integer($00004004), integer($01004204), integer($01000004), integer($01004200), integer($01004000), integer($00004004) ),( (* nibble 7 *) integer($20800080), integer($20820000), integer($00020080), integer($00000000), integer($20020000), integer($00800080), integer($20800000), integer($20820080), integer($00000080), integer($20000000), integer($00820000), integer($00020080), integer($00820080), integer($20020080), integer($20000080), integer($20800000), integer($00020000), integer($00820080), integer($00800080), integer($20020000), integer($20820080), integer($20000080), integer($00000000), integer($00820000), integer($20000000), integer($00800000), integer($20020080), integer($20800080), integer($00800000), integer($00020000), integer($20820000), integer($00000080), integer($00800000), integer($00020000), integer($20000080), integer($20820080), integer($00020080), integer($20000000), integer($00000000), integer($00820000), integer($20800080), integer($20020080), integer($20020000), integer($00800080), integer($20820000), integer($00000080), integer($00800080), integer($20020000), integer($20820080), integer($00800000), integer($20800000), integer($20000080), integer($00820000), integer($00020080), integer($20020080), integer($20800000), integer($00000080), integer($20820000), integer($00820080), integer($00000000), integer($20000000), integer($20800080), integer($00020000), integer($00820080) )); //AES consts const MAXBC= 8; MAXKC= 8; S: array[0..255] of byte= ( 99, 124, 119, 123, 242, 107, 111, 197, 48, 1, 103, 43, 254, 215, 171, 118, 202, 130, 201, 125, 250, 89, 71, 240, 173, 212, 162, 175, 156, 164, 114, 192, 183, 253, 147, 38, 54, 63, 247, 204, 52, 165, 229, 241, 113, 216, 49, 21, 4, 199, 35, 195, 24, 150, 5, 154, 7, 18, 128, 226, 235, 39, 178, 117, 9, 131, 44, 26, 27, 110, 90, 160, 82, 59, 214, 179, 41, 227, 47, 132, 83, 209, 0, 237, 32, 252, 177, 91, 106, 203, 190, 57, 74, 76, 88, 207, 208, 239, 170, 251, 67, 77, 51, 133, 69, 249, 2, 127, 80, 60, 159, 168, 81, 163, 64, 143, 146, 157, 56, 245, 188, 182, 218, 33, 16, 255, 243, 210, 205, 12, 19, 236, 95, 151, 68, 23, 196, 167, 126, 61, 100, 93, 25, 115, 96, 129, 79, 220, 34, 42, 144, 136, 70, 238, 184, 20, 222, 94, 11, 219, 224, 50, 58, 10, 73, 6, 36, 92, 194, 211, 172, 98, 145, 149, 228, 121, 231, 200, 55, 109, 141, 213, 78, 169, 108, 86, 244, 234, 101, 122, 174, 8, 186, 120, 37, 46, 28, 166, 180, 198, 232, 221, 116, 31, 75, 189, 139, 138, 112, 62, 181, 102, 72, 3, 246, 14, 97, 53, 87, 185, 134, 193, 29, 158, 225, 248, 152, 17, 105, 217, 142, 148, 155, 30, 135, 233, 206, 85, 40, 223, 140, 161, 137, 13, 191, 230, 66, 104, 65, 153, 45, 15, 176, 84, 187, 22); T1: array[0..255,0..3] of byte= ( ($c6,$63,$63,$a5), ($f8,$7c,$7c,$84), ($ee,$77,$77,$99), ($f6,$7b,$7b,$8d), ($ff,$f2,$f2,$0d), ($d6,$6b,$6b,$bd), ($de,$6f,$6f,$b1), ($91,$c5,$c5,$54), ($60,$30,$30,$50), ($02,$01,$01,$03), ($ce,$67,$67,$a9), ($56,$2b,$2b,$7d), ($e7,$fe,$fe,$19), ($b5,$d7,$d7,$62), ($4d,$ab,$ab,$e6), ($ec,$76,$76,$9a), ($8f,$ca,$ca,$45), ($1f,$82,$82,$9d), ($89,$c9,$c9,$40), ($fa,$7d,$7d,$87), ($ef,$fa,$fa,$15), ($b2,$59,$59,$eb), ($8e,$47,$47,$c9), ($fb,$f0,$f0,$0b), ($41,$ad,$ad,$ec), ($b3,$d4,$d4,$67), ($5f,$a2,$a2,$fd), ($45,$af,$af,$ea), ($23,$9c,$9c,$bf), ($53,$a4,$a4,$f7), ($e4,$72,$72,$96), ($9b,$c0,$c0,$5b), ($75,$b7,$b7,$c2), ($e1,$fd,$fd,$1c), ($3d,$93,$93,$ae), ($4c,$26,$26,$6a), ($6c,$36,$36,$5a), ($7e,$3f,$3f,$41), ($f5,$f7,$f7,$02), ($83,$cc,$cc,$4f), ($68,$34,$34,$5c), ($51,$a5,$a5,$f4), ($d1,$e5,$e5,$34), ($f9,$f1,$f1,$08), ($e2,$71,$71,$93), ($ab,$d8,$d8,$73), ($62,$31,$31,$53), ($2a,$15,$15,$3f), ($08,$04,$04,$0c), ($95,$c7,$c7,$52), ($46,$23,$23,$65), ($9d,$c3,$c3,$5e), ($30,$18,$18,$28), ($37,$96,$96,$a1), ($0a,$05,$05,$0f), ($2f,$9a,$9a,$b5), ($0e,$07,$07,$09), ($24,$12,$12,$36), ($1b,$80,$80,$9b), ($df,$e2,$e2,$3d), ($cd,$eb,$eb,$26), ($4e,$27,$27,$69), ($7f,$b2,$b2,$cd), ($ea,$75,$75,$9f), ($12,$09,$09,$1b), ($1d,$83,$83,$9e), ($58,$2c,$2c,$74), ($34,$1a,$1a,$2e), ($36,$1b,$1b,$2d), ($dc,$6e,$6e,$b2), ($b4,$5a,$5a,$ee), ($5b,$a0,$a0,$fb), ($a4,$52,$52,$f6), ($76,$3b,$3b,$4d), ($b7,$d6,$d6,$61), ($7d,$b3,$b3,$ce), ($52,$29,$29,$7b), ($dd,$e3,$e3,$3e), ($5e,$2f,$2f,$71), ($13,$84,$84,$97), ($a6,$53,$53,$f5), ($b9,$d1,$d1,$68), ($00,$00,$00,$00), ($c1,$ed,$ed,$2c), ($40,$20,$20,$60), ($e3,$fc,$fc,$1f), ($79,$b1,$b1,$c8), ($b6,$5b,$5b,$ed), ($d4,$6a,$6a,$be), ($8d,$cb,$cb,$46), ($67,$be,$be,$d9), ($72,$39,$39,$4b), ($94,$4a,$4a,$de), ($98,$4c,$4c,$d4), ($b0,$58,$58,$e8), ($85,$cf,$cf,$4a), ($bb,$d0,$d0,$6b), ($c5,$ef,$ef,$2a), ($4f,$aa,$aa,$e5), ($ed,$fb,$fb,$16), ($86,$43,$43,$c5), ($9a,$4d,$4d,$d7), ($66,$33,$33,$55), ($11,$85,$85,$94), ($8a,$45,$45,$cf), ($e9,$f9,$f9,$10), ($04,$02,$02,$06), ($fe,$7f,$7f,$81), ($a0,$50,$50,$f0), ($78,$3c,$3c,$44), ($25,$9f,$9f,$ba), ($4b,$a8,$a8,$e3), ($a2,$51,$51,$f3), ($5d,$a3,$a3,$fe), ($80,$40,$40,$c0), ($05,$8f,$8f,$8a), ($3f,$92,$92,$ad), ($21,$9d,$9d,$bc), ($70,$38,$38,$48), ($f1,$f5,$f5,$04), ($63,$bc,$bc,$df), ($77,$b6,$b6,$c1), ($af,$da,$da,$75), ($42,$21,$21,$63), ($20,$10,$10,$30), ($e5,$ff,$ff,$1a), ($fd,$f3,$f3,$0e), ($bf,$d2,$d2,$6d), ($81,$cd,$cd,$4c), ($18,$0c,$0c,$14), ($26,$13,$13,$35), ($c3,$ec,$ec,$2f), ($be,$5f,$5f,$e1), ($35,$97,$97,$a2), ($88,$44,$44,$cc), ($2e,$17,$17,$39), ($93,$c4,$c4,$57), ($55,$a7,$a7,$f2), ($fc,$7e,$7e,$82), ($7a,$3d,$3d,$47), ($c8,$64,$64,$ac), ($ba,$5d,$5d,$e7), ($32,$19,$19,$2b), ($e6,$73,$73,$95), ($c0,$60,$60,$a0), ($19,$81,$81,$98), ($9e,$4f,$4f,$d1), ($a3,$dc,$dc,$7f), ($44,$22,$22,$66), ($54,$2a,$2a,$7e), ($3b,$90,$90,$ab), ($0b,$88,$88,$83), ($8c,$46,$46,$ca), ($c7,$ee,$ee,$29), ($6b,$b8,$b8,$d3), ($28,$14,$14,$3c), ($a7,$de,$de,$79), ($bc,$5e,$5e,$e2), ($16,$0b,$0b,$1d), ($ad,$db,$db,$76), ($db,$e0,$e0,$3b), ($64,$32,$32,$56), ($74,$3a,$3a,$4e), ($14,$0a,$0a,$1e), ($92,$49,$49,$db), ($0c,$06,$06,$0a), ($48,$24,$24,$6c), ($b8,$5c,$5c,$e4), ($9f,$c2,$c2,$5d), ($bd,$d3,$d3,$6e), ($43,$ac,$ac,$ef), ($c4,$62,$62,$a6), ($39,$91,$91,$a8), ($31,$95,$95,$a4), ($d3,$e4,$e4,$37), ($f2,$79,$79,$8b), ($d5,$e7,$e7,$32), ($8b,$c8,$c8,$43), ($6e,$37,$37,$59), ($da,$6d,$6d,$b7), ($01,$8d,$8d,$8c), ($b1,$d5,$d5,$64), ($9c,$4e,$4e,$d2), ($49,$a9,$a9,$e0), ($d8,$6c,$6c,$b4), ($ac,$56,$56,$fa), ($f3,$f4,$f4,$07), ($cf,$ea,$ea,$25), ($ca,$65,$65,$af), ($f4,$7a,$7a,$8e), ($47,$ae,$ae,$e9), ($10,$08,$08,$18), ($6f,$ba,$ba,$d5), ($f0,$78,$78,$88), ($4a,$25,$25,$6f), ($5c,$2e,$2e,$72), ($38,$1c,$1c,$24), ($57,$a6,$a6,$f1), ($73,$b4,$b4,$c7), ($97,$c6,$c6,$51), ($cb,$e8,$e8,$23), ($a1,$dd,$dd,$7c), ($e8,$74,$74,$9c), ($3e,$1f,$1f,$21), ($96,$4b,$4b,$dd), ($61,$bd,$bd,$dc), ($0d,$8b,$8b,$86), ($0f,$8a,$8a,$85), ($e0,$70,$70,$90), ($7c,$3e,$3e,$42), ($71,$b5,$b5,$c4), ($cc,$66,$66,$aa), ($90,$48,$48,$d8), ($06,$03,$03,$05), ($f7,$f6,$f6,$01), ($1c,$0e,$0e,$12), ($c2,$61,$61,$a3), ($6a,$35,$35,$5f), ($ae,$57,$57,$f9), ($69,$b9,$b9,$d0), ($17,$86,$86,$91), ($99,$c1,$c1,$58), ($3a,$1d,$1d,$27), ($27,$9e,$9e,$b9), ($d9,$e1,$e1,$38), ($eb,$f8,$f8,$13), ($2b,$98,$98,$b3), ($22,$11,$11,$33), ($d2,$69,$69,$bb), ($a9,$d9,$d9,$70), ($07,$8e,$8e,$89), ($33,$94,$94,$a7), ($2d,$9b,$9b,$b6), ($3c,$1e,$1e,$22), ($15,$87,$87,$92), ($c9,$e9,$e9,$20), ($87,$ce,$ce,$49), ($aa,$55,$55,$ff), ($50,$28,$28,$78), ($a5,$df,$df,$7a), ($03,$8c,$8c,$8f), ($59,$a1,$a1,$f8), ($09,$89,$89,$80), ($1a,$0d,$0d,$17), ($65,$bf,$bf,$da), ($d7,$e6,$e6,$31), ($84,$42,$42,$c6), ($d0,$68,$68,$b8), ($82,$41,$41,$c3), ($29,$99,$99,$b0), ($5a,$2d,$2d,$77), ($1e,$0f,$0f,$11), ($7b,$b0,$b0,$cb), ($a8,$54,$54,$fc), ($6d,$bb,$bb,$d6), ($2c,$16,$16,$3a)); T2: array[0..255,0..3] of byte= ( ($a5,$c6,$63,$63), ($84,$f8,$7c,$7c), ($99,$ee,$77,$77), ($8d,$f6,$7b,$7b), ($0d,$ff,$f2,$f2), ($bd,$d6,$6b,$6b), ($b1,$de,$6f,$6f), ($54,$91,$c5,$c5), ($50,$60,$30,$30), ($03,$02,$01,$01), ($a9,$ce,$67,$67), ($7d,$56,$2b,$2b), ($19,$e7,$fe,$fe), ($62,$b5,$d7,$d7), ($e6,$4d,$ab,$ab), ($9a,$ec,$76,$76), ($45,$8f,$ca,$ca), ($9d,$1f,$82,$82), ($40,$89,$c9,$c9), ($87,$fa,$7d,$7d), ($15,$ef,$fa,$fa), ($eb,$b2,$59,$59), ($c9,$8e,$47,$47), ($0b,$fb,$f0,$f0), ($ec,$41,$ad,$ad), ($67,$b3,$d4,$d4), ($fd,$5f,$a2,$a2), ($ea,$45,$af,$af), ($bf,$23,$9c,$9c), ($f7,$53,$a4,$a4), ($96,$e4,$72,$72), ($5b,$9b,$c0,$c0), ($c2,$75,$b7,$b7), ($1c,$e1,$fd,$fd), ($ae,$3d,$93,$93), ($6a,$4c,$26,$26), ($5a,$6c,$36,$36), ($41,$7e,$3f,$3f), ($02,$f5,$f7,$f7), ($4f,$83,$cc,$cc), ($5c,$68,$34,$34), ($f4,$51,$a5,$a5), ($34,$d1,$e5,$e5), ($08,$f9,$f1,$f1), ($93,$e2,$71,$71), ($73,$ab,$d8,$d8), ($53,$62,$31,$31), ($3f,$2a,$15,$15), ($0c,$08,$04,$04), ($52,$95,$c7,$c7), ($65,$46,$23,$23), ($5e,$9d,$c3,$c3), ($28,$30,$18,$18), ($a1,$37,$96,$96), ($0f,$0a,$05,$05), ($b5,$2f,$9a,$9a), ($09,$0e,$07,$07), ($36,$24,$12,$12), ($9b,$1b,$80,$80), ($3d,$df,$e2,$e2), ($26,$cd,$eb,$eb), ($69,$4e,$27,$27), ($cd,$7f,$b2,$b2), ($9f,$ea,$75,$75), ($1b,$12,$09,$09), ($9e,$1d,$83,$83), ($74,$58,$2c,$2c), ($2e,$34,$1a,$1a), ($2d,$36,$1b,$1b), ($b2,$dc,$6e,$6e), ($ee,$b4,$5a,$5a), ($fb,$5b,$a0,$a0), ($f6,$a4,$52,$52), ($4d,$76,$3b,$3b), ($61,$b7,$d6,$d6), ($ce,$7d,$b3,$b3), ($7b,$52,$29,$29), ($3e,$dd,$e3,$e3), ($71,$5e,$2f,$2f), ($97,$13,$84,$84), ($f5,$a6,$53,$53), ($68,$b9,$d1,$d1), ($00,$00,$00,$00), ($2c,$c1,$ed,$ed), ($60,$40,$20,$20), ($1f,$e3,$fc,$fc), ($c8,$79,$b1,$b1), ($ed,$b6,$5b,$5b), ($be,$d4,$6a,$6a), ($46,$8d,$cb,$cb), ($d9,$67,$be,$be), ($4b,$72,$39,$39), ($de,$94,$4a,$4a), ($d4,$98,$4c,$4c), ($e8,$b0,$58,$58), ($4a,$85,$cf,$cf), ($6b,$bb,$d0,$d0), ($2a,$c5,$ef,$ef), ($e5,$4f,$aa,$aa), ($16,$ed,$fb,$fb), ($c5,$86,$43,$43), ($d7,$9a,$4d,$4d), ($55,$66,$33,$33), ($94,$11,$85,$85), ($cf,$8a,$45,$45), ($10,$e9,$f9,$f9), ($06,$04,$02,$02), ($81,$fe,$7f,$7f), ($f0,$a0,$50,$50), ($44,$78,$3c,$3c), ($ba,$25,$9f,$9f), ($e3,$4b,$a8,$a8), ($f3,$a2,$51,$51), ($fe,$5d,$a3,$a3), ($c0,$80,$40,$40), ($8a,$05,$8f,$8f), ($ad,$3f,$92,$92), ($bc,$21,$9d,$9d), ($48,$70,$38,$38), ($04,$f1,$f5,$f5), ($df,$63,$bc,$bc), ($c1,$77,$b6,$b6), ($75,$af,$da,$da), ($63,$42,$21,$21), ($30,$20,$10,$10), ($1a,$e5,$ff,$ff), ($0e,$fd,$f3,$f3), ($6d,$bf,$d2,$d2), ($4c,$81,$cd,$cd), ($14,$18,$0c,$0c), ($35,$26,$13,$13), ($2f,$c3,$ec,$ec), ($e1,$be,$5f,$5f), ($a2,$35,$97,$97), ($cc,$88,$44,$44), ($39,$2e,$17,$17), ($57,$93,$c4,$c4), ($f2,$55,$a7,$a7), ($82,$fc,$7e,$7e), ($47,$7a,$3d,$3d), ($ac,$c8,$64,$64), ($e7,$ba,$5d,$5d), ($2b,$32,$19,$19), ($95,$e6,$73,$73), ($a0,$c0,$60,$60), ($98,$19,$81,$81), ($d1,$9e,$4f,$4f), ($7f,$a3,$dc,$dc), ($66,$44,$22,$22), ($7e,$54,$2a,$2a), ($ab,$3b,$90,$90), ($83,$0b,$88,$88), ($ca,$8c,$46,$46), ($29,$c7,$ee,$ee), ($d3,$6b,$b8,$b8), ($3c,$28,$14,$14), ($79,$a7,$de,$de), ($e2,$bc,$5e,$5e), ($1d,$16,$0b,$0b), ($76,$ad,$db,$db), ($3b,$db,$e0,$e0), ($56,$64,$32,$32), ($4e,$74,$3a,$3a), ($1e,$14,$0a,$0a), ($db,$92,$49,$49), ($0a,$0c,$06,$06), ($6c,$48,$24,$24), ($e4,$b8,$5c,$5c), ($5d,$9f,$c2,$c2), ($6e,$bd,$d3,$d3), ($ef,$43,$ac,$ac), ($a6,$c4,$62,$62), ($a8,$39,$91,$91), ($a4,$31,$95,$95), ($37,$d3,$e4,$e4), ($8b,$f2,$79,$79), ($32,$d5,$e7,$e7), ($43,$8b,$c8,$c8), ($59,$6e,$37,$37), ($b7,$da,$6d,$6d), ($8c,$01,$8d,$8d), ($64,$b1,$d5,$d5), ($d2,$9c,$4e,$4e), ($e0,$49,$a9,$a9), ($b4,$d8,$6c,$6c), ($fa,$ac,$56,$56), ($07,$f3,$f4,$f4), ($25,$cf,$ea,$ea), ($af,$ca,$65,$65), ($8e,$f4,$7a,$7a), ($e9,$47,$ae,$ae), ($18,$10,$08,$08), ($d5,$6f,$ba,$ba), ($88,$f0,$78,$78), ($6f,$4a,$25,$25), ($72,$5c,$2e,$2e), ($24,$38,$1c,$1c), ($f1,$57,$a6,$a6), ($c7,$73,$b4,$b4), ($51,$97,$c6,$c6), ($23,$cb,$e8,$e8), ($7c,$a1,$dd,$dd), ($9c,$e8,$74,$74), ($21,$3e,$1f,$1f), ($dd,$96,$4b,$4b), ($dc,$61,$bd,$bd), ($86,$0d,$8b,$8b), ($85,$0f,$8a,$8a), ($90,$e0,$70,$70), ($42,$7c,$3e,$3e), ($c4,$71,$b5,$b5), ($aa,$cc,$66,$66), ($d8,$90,$48,$48), ($05,$06,$03,$03), ($01,$f7,$f6,$f6), ($12,$1c,$0e,$0e), ($a3,$c2,$61,$61), ($5f,$6a,$35,$35), ($f9,$ae,$57,$57), ($d0,$69,$b9,$b9), ($91,$17,$86,$86), ($58,$99,$c1,$c1), ($27,$3a,$1d,$1d), ($b9,$27,$9e,$9e), ($38,$d9,$e1,$e1), ($13,$eb,$f8,$f8), ($b3,$2b,$98,$98), ($33,$22,$11,$11), ($bb,$d2,$69,$69), ($70,$a9,$d9,$d9), ($89,$07,$8e,$8e), ($a7,$33,$94,$94), ($b6,$2d,$9b,$9b), ($22,$3c,$1e,$1e), ($92,$15,$87,$87), ($20,$c9,$e9,$e9), 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($ac,$99,$3b,$c8), ($a5,$94,$30,$c6), ($d2,$df,$59,$9c), ($db,$d2,$52,$92), ($c0,$c5,$4f,$80), ($c9,$c8,$44,$8e), ($f6,$eb,$75,$a4), ($ff,$e6,$7e,$aa), ($e4,$f1,$63,$b8), ($ed,$fc,$68,$b6), ($0a,$67,$b1,$0c), ($03,$6a,$ba,$02), ($18,$7d,$a7,$10), ($11,$70,$ac,$1e), ($2e,$53,$9d,$34), ($27,$5e,$96,$3a), ($3c,$49,$8b,$28), ($35,$44,$80,$26), ($42,$0f,$e9,$7c), ($4b,$02,$e2,$72), ($50,$15,$ff,$60), ($59,$18,$f4,$6e), ($66,$3b,$c5,$44), ($6f,$36,$ce,$4a), ($74,$21,$d3,$58), ($7d,$2c,$d8,$56), ($a1,$0c,$7a,$37), ($a8,$01,$71,$39), ($b3,$16,$6c,$2b), ($ba,$1b,$67,$25), ($85,$38,$56,$0f), ($8c,$35,$5d,$01), ($97,$22,$40,$13), ($9e,$2f,$4b,$1d), ($e9,$64,$22,$47), ($e0,$69,$29,$49), ($fb,$7e,$34,$5b), ($f2,$73,$3f,$55), ($cd,$50,$0e,$7f), ($c4,$5d,$05,$71), ($df,$4a,$18,$63), ($d6,$47,$13,$6d), ($31,$dc,$ca,$d7), ($38,$d1,$c1,$d9), ($23,$c6,$dc,$cb), ($2a,$cb,$d7,$c5), ($15,$e8,$e6,$ef), ($1c,$e5,$ed,$e1), ($07,$f2,$f0,$f3), ($0e,$ff,$fb,$fd), ($79,$b4,$92,$a7), ($70,$b9,$99,$a9), ($6b,$ae,$84,$bb), ($62,$a3,$8f,$b5), ($5d,$80,$be,$9f), ($54,$8d,$b5,$91), ($4f,$9a,$a8,$83), ($46,$97,$a3,$8d)); rcon: array[0..29] of cardinal= ( $01, $02, $04, $08, $10, $20, $40, $80, $1b, $36, $6c, $d8, $ab, $4d, $9a, $2f, $5e, $bc, $63, $c6, $97, $35, $6a, $d4, $b3, $7d, $fa, $ef, $c5, $91); {==============================================================================} type PDWord = ^LongWord; procedure hperm_op(var a, t: integer; n, m: integer); begin t:= ((a shl (16 - n)) xor a) and m; a:= a xor t xor (t shr (16 - n)); end; procedure perm_op(var a, b, t: integer; n, m: integer); begin t:= ((a shr n) xor b) and m; b:= b xor t; a:= a xor (t shl n); end; {==============================================================================} function TSynaBlockCipher.GetSize: byte; begin Result := 8; end; procedure TSynaBlockCipher.IncCounter; var i: integer; begin Inc(CV[GetSize]); i:= GetSize -1; while (i> 0) and (CV[i + 1] = #0) do begin Inc(CV[i]); Dec(i); end; end; procedure TSynaBlockCipher.Reset; begin CV := IV; end; procedure TSynaBlockCipher.InitKey(Key: AnsiString); begin end; procedure TSynaBlockCipher.SetIV(const Value: AnsiString); begin IV := PadString(Value, GetSize, #0); Reset; end; function TSynaBlockCipher.GetIV: AnsiString; begin Result := CV; end; function TSynaBlockCipher.EncryptECB(const InData: AnsiString): AnsiString; begin Result := InData; end; function TSynaBlockCipher.DecryptECB(const InData: AnsiString): AnsiString; begin Result := InData; end; function TSynaBlockCipher.EncryptCBC(const Indata: AnsiString): AnsiString; var i: integer; s: ansistring; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, CV); s := EncryptECB(s); CV := s; Result := Result + s; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.DecryptCBC(const Indata: AnsiString): AnsiString; var i: integer; s, temp: ansistring; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin s := copy(Indata, (i - 1) * bs + 1, bs); temp := s; s := DecryptECB(s); s := XorString(s, CV); Result := Result + s; CV := Temp; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.EncryptCFB8bit(const Indata: AnsiString): AnsiString; var i: integer; Temp: AnsiString; c: AnsiChar; begin Result := ''; for i:= 1 to Length(Indata) do begin Temp := EncryptECB(CV); c := AnsiChar(ord(InData[i]) xor ord(temp[1])); Result := Result + c; Delete(CV, 1, 1); CV := CV + c; end; end; function TSynaBlockCipher.DecryptCFB8bit(const Indata: AnsiString): AnsiString; var i: integer; Temp: AnsiString; c: AnsiChar; begin Result := ''; for i:= 1 to length(Indata) do begin c:= Indata[i]; Temp := EncryptECB(CV); Result := Result + AnsiChar(ord(InData[i]) xor ord(temp[1])); Delete(CV, 1, 1); CV := CV + c; end; end; function TSynaBlockCipher.EncryptCFBblock(const Indata: AnsiString): AnsiString; var i: integer; s: AnsiString; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin CV := EncryptECB(CV); s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, CV); Result := Result + s; CV := s; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.DecryptCFBblock(const Indata: AnsiString): AnsiString; var i: integer; S, Temp: AnsiString; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin s := copy(Indata, (i - 1) * bs + 1, bs); Temp := s; CV := EncryptECB(CV); s := XorString(s, CV); Result := result + s; CV := temp; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.EncryptOFB(const Indata: AnsiString): AnsiString; var i: integer; s: AnsiString; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin CV := EncryptECB(CV); s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, CV); Result := Result + s; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.DecryptOFB(const Indata: AnsiString): AnsiString; var i: integer; s: AnsiString; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin Cv := EncryptECB(CV); s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, CV); Result := Result + s; end; if (l mod bs)<> 0 then begin CV := EncryptECB(CV); s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, CV); Result := Result + s; end; end; function TSynaBlockCipher.EncryptCTR(const Indata: AnsiString): AnsiString; var temp: AnsiString; i: integer; s: AnsiString; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin temp := EncryptECB(CV); IncCounter; s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, temp); Result := Result + s; end; if (l mod bs)<> 0 then begin temp := EncryptECB(CV); IncCounter; s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, temp); Result := Result + s; end; end; function TSynaBlockCipher.DecryptCTR(const Indata: AnsiString): AnsiString; var temp: AnsiString; s: AnsiString; i: integer; l: integer; bs: byte; begin Result := ''; l := Length(InData); bs := GetSize; for i:= 1 to (l div bs) do begin temp := EncryptECB(CV); IncCounter; s := copy(Indata, (i - 1) * bs + 1, bs); s := XorString(s, temp); Result := Result + s; end; if (l mod bs)<> 0 then begin temp := EncryptECB(CV); IncCounter; s := copy(Indata, (l div bs) * bs + 1, l mod bs); s := XorString(s, temp); Result := Result + s; end; end; constructor TSynaBlockCipher.Create(Key: AnsiString); begin inherited Create; InitKey(Key); IV := StringOfChar(#0, GetSize); IV := EncryptECB(IV); Reset; end; {==============================================================================} procedure TSynaCustomDes.DoInit(KeyB: AnsiString; var KeyData: TDesKeyData); var c, d, t, s, t2, i: integer; begin KeyB := PadString(KeyB, 8, #0); c:= ord(KeyB[1]) or (ord(KeyB[2]) shl 8) or (ord(KeyB[3]) shl 16) or (ord(KeyB[4]) shl 24); d:= ord(KeyB[5]) or (ord(KeyB[6]) shl 8) or (ord(KeyB[7]) shl 16) or (ord(KeyB[8]) shl 24); perm_op(d,c,t,4,integer($0f0f0f0f)); hperm_op(c,t,integer(-2),integer($cccc0000)); hperm_op(d,t,integer(-2),integer($cccc0000)); perm_op(d,c,t,1,integer($55555555)); perm_op(c,d,t,8,integer($00ff00ff)); perm_op(d,c,t,1,integer($55555555)); d:= ((d and $ff) shl 16) or (d and $ff00) or ((d and $ff0000) shr 16) or ((c and integer($f0000000)) shr 4); c:= c and $fffffff; for i:= 0 to 15 do begin if shifts2[i]<> 0 then begin c:= ((c shr 2) or (c shl 26)); d:= ((d shr 2) or (d shl 26)); end else begin c:= ((c shr 1) or (c shl 27)); d:= ((d shr 1) or (d shl 27)); end; c:= c and $fffffff; d:= d and $fffffff; s:= des_skb[0,c and $3f] or des_skb[1,((c shr 6) and $03) or ((c shr 7) and $3c)] or des_skb[2,((c shr 13) and $0f) or ((c shr 14) and $30)] or des_skb[3,((c shr 20) and $01) or ((c shr 21) and $06) or ((c shr 22) and $38)]; t:= des_skb[4,d and $3f] or des_skb[5,((d shr 7) and $03) or ((d shr 8) and $3c)] or des_skb[6, (d shr 15) and $3f ] or des_skb[7,((d shr 21) and $0f) or ((d shr 22) and $30)]; t2:= ((t shl 16) or (s and $ffff)); KeyData[(i shl 1)]:= ((t2 shl 2) or (t2 shr 30)); t2:= ((s shr 16) or (t and integer($ffff0000))); KeyData[(i shl 1)+1]:= ((t2 shl 6) or (t2 shr 26)); end; end; function TSynaCustomDes.EncryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString; var l, r, t, u: integer; i: longint; begin r := Swapbytes(DecodeLongint(Indata, 1)); l := swapbytes(DecodeLongint(Indata, 5)); t:= ((l shr 4) xor r) and $0f0f0f0f; r:= r xor t; l:= l xor (t shl 4); t:= ((r shr 16) xor l) and $0000ffff; l:= l xor t; r:= r xor (t shl 16); t:= ((l shr 2) xor r) and $33333333; r:= r xor t; l:= l xor (t shl 2); t:= ((r shr 8) xor l) and $00ff00ff; l:= l xor t; r:= r xor (t shl 8); t:= ((l shr 1) xor r) and $55555555; r:= r xor t; l:= l xor (t shl 1); r:= (r shr 29) or (r shl 3); l:= (l shr 29) or (l shl 3); i:= 0; while i< 32 do begin u:= r xor KeyData[i ]; t:= r xor KeyData[i+1]; t:= (t shr 4) or (t shl 28); l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= l xor KeyData[i+2]; t:= l xor KeyData[i+3]; t:= (t shr 4) or (t shl 28); r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= r xor KeyData[i+4]; t:= r xor KeyData[i+5]; t:= (t shr 4) or (t shl 28); l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= l xor KeyData[i+6]; t:= l xor KeyData[i+7]; t:= (t shr 4) or (t shl 28); r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; Inc(i,8); end; r:= (r shr 3) or (r shl 29); l:= (l shr 3) or (l shl 29); t:= ((r shr 1) xor l) and $55555555; l:= l xor t; r:= r xor (t shl 1); t:= ((l shr 8) xor r) and $00ff00ff; r:= r xor t; l:= l xor (t shl 8); t:= ((r shr 2) xor l) and $33333333; l:= l xor t; r:= r xor (t shl 2); t:= ((l shr 16) xor r) and $0000ffff; r:= r xor t; l:= l xor (t shl 16); t:= ((r shr 4) xor l) and $0f0f0f0f; l:= l xor t; r:= r xor (t shl 4); Result := CodeLongInt(Swapbytes(l)) + CodeLongInt(Swapbytes(r)); end; function TSynaCustomDes.DecryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString; var l, r, t, u: integer; i: longint; begin r := Swapbytes(DecodeLongint(Indata, 1)); l := Swapbytes(DecodeLongint(Indata, 5)); t:= ((l shr 4) xor r) and $0f0f0f0f; r:= r xor t; l:= l xor (t shl 4); t:= ((r shr 16) xor l) and $0000ffff; l:= l xor t; r:= r xor (t shl 16); t:= ((l shr 2) xor r) and $33333333; r:= r xor t; l:= l xor (t shl 2); t:= ((r shr 8) xor l) and $00ff00ff; l:= l xor t; r:= r xor (t shl 8); t:= ((l shr 1) xor r) and $55555555; r:= r xor t; l:= l xor (t shl 1); r:= (r shr 29) or (r shl 3); l:= (l shr 29) or (l shl 3); i:= 30; while i> 0 do begin u:= r xor KeyData[i ]; t:= r xor KeyData[i+1]; t:= (t shr 4) or (t shl 28); l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= l xor KeyData[i-2]; t:= l xor KeyData[i-1]; t:= (t shr 4) or (t shl 28); r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= r xor KeyData[i-4]; t:= r xor KeyData[i-3]; t:= (t shr 4) or (t shl 28); l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; u:= l xor KeyData[i-6]; t:= l xor KeyData[i-5]; t:= (t shr 4) or (t shl 28); r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor des_SPtrans[2,(u shr 10) and $3f] xor des_SPtrans[4,(u shr 18) and $3f] xor des_SPtrans[6,(u shr 26) and $3f] xor des_SPtrans[1,(t shr 2) and $3f] xor des_SPtrans[3,(t shr 10) and $3f] xor des_SPtrans[5,(t shr 18) and $3f] xor des_SPtrans[7,(t shr 26) and $3f]; Dec(i,8); end; r:= (r shr 3) or (r shl 29); l:= (l shr 3) or (l shl 29); t:= ((r shr 1) xor l) and $55555555; l:= l xor t; r:= r xor (t shl 1); t:= ((l shr 8) xor r) and $00ff00ff; r:= r xor t; l:= l xor (t shl 8); t:= ((r shr 2) xor l) and $33333333; l:= l xor t; r:= r xor (t shl 2); t:= ((l shr 16) xor r) and $0000ffff; r:= r xor t; l:= l xor (t shl 16); t:= ((r shr 4) xor l) and $0f0f0f0f; l:= l xor t; r:= r xor (t shl 4); Result := CodeLongInt(Swapbytes(l)) + CodeLongInt(Swapbytes(r)); end; {==============================================================================} procedure TSynaDes.InitKey(Key: AnsiString); begin Key := PadString(Key, 8, #0); DoInit(Key,KeyData); end; function TSynaDes.EncryptECB(const InData: AnsiString): AnsiString; begin Result := EncryptBlock(InData,KeyData); end; function TSynaDes.DecryptECB(const InData: AnsiString): AnsiString; begin Result := DecryptBlock(Indata,KeyData); end; {==============================================================================} procedure TSyna3Des.InitKey(Key: AnsiString); var Size: integer; n: integer; begin Size := length(Key); key := PadString(key, 3 * 8, #0); DoInit(Copy(key, 1, 8),KeyData[0]); DoInit(Copy(key, 9, 8),KeyData[1]); if Size > 16 then DoInit(Copy(key, 17, 8),KeyData[2]) else for n := 0 to high(KeyData[0]) do KeyData[2][n] := Keydata[0][n]; end; function TSyna3Des.EncryptECB(const InData: AnsiString): AnsiString; begin Result := EncryptBlock(Indata,KeyData[0]); Result := DecryptBlock(Result,KeyData[1]); Result := EncryptBlock(Result,KeyData[2]); end; function TSyna3Des.DecryptECB(const InData: AnsiString): AnsiString; begin Result := DecryptBlock(InData,KeyData[2]); Result := EncryptBlock(Result,KeyData[1]); Result := DecryptBlock(Result,KeyData[0]); end; {==============================================================================} procedure InvMixColumn(a: PByteArray; BC: byte); var j: longword; begin for j:= 0 to (BC-1) do PDWord(@(a^[j*4]))^:= PDWord(@U1[a^[j*4+0]])^ xor PDWord(@U2[a^[j*4+1]])^ xor PDWord(@U3[a^[j*4+2]])^ xor PDWord(@U4[a^[j*4+3]])^; end; {==============================================================================} function TSynaAes.GetSize: byte; begin Result := 16; end; procedure TSynaAes.InitKey(Key: AnsiString); var Size: integer; KC, ROUNDS, j, r, t, rconpointer: longword; tk: array[0..MAXKC-1,0..3] of byte; begin FillChar(tk,Sizeof(tk),0); //key must have at least 128 bits and max 256 bits if length(key) < 16 then key := PadString(key, 16, #0); if length(key) > 32 then delete(key, 33, maxint); Size := length(Key); Move(PAnsiChar(Key)^, tk, Size); if Size<= 16 then begin KC:= 4; Rounds:= 10; end else if Size<= 24 then begin KC:= 6; Rounds:= 12; end else begin KC:= 8; Rounds:= 14; end; numrounds:= rounds; r:= 0; t:= 0; j:= 0; while (j< KC) and (r< (rounds+1)) do begin while (j< KC) and (t< BC) do begin rk[r,t]:= PDWord(@tk[j])^; Inc(j); Inc(t); end; if t= BC then begin t:= 0; Inc(r); end; end; rconpointer:= 0; while (r< (rounds+1)) do begin tk[0,0]:= tk[0,0] xor S[tk[KC-1,1]]; tk[0,1]:= tk[0,1] xor S[tk[KC-1,2]]; tk[0,2]:= tk[0,2] xor S[tk[KC-1,3]]; tk[0,3]:= tk[0,3] xor S[tk[KC-1,0]]; tk[0,0]:= tk[0,0] xor rcon[rconpointer]; Inc(rconpointer); if KC<> 8 then begin for j:= 1 to (KC-1) do PDWord(@tk[j])^:= PDWord(@tk[j])^ xor PDWord(@tk[j-1])^; end else begin for j:= 1 to ((KC div 2)-1) do PDWord(@tk[j])^:= PDWord(@tk[j])^ xor PDWord(@tk[j-1])^; tk[KC div 2,0]:= tk[KC div 2,0] xor S[tk[KC div 2 - 1,0]]; tk[KC div 2,1]:= tk[KC div 2,1] xor S[tk[KC div 2 - 1,1]]; tk[KC div 2,2]:= tk[KC div 2,2] xor S[tk[KC div 2 - 1,2]]; tk[KC div 2,3]:= tk[KC div 2,3] xor S[tk[KC div 2 - 1,3]]; for j:= ((KC div 2) + 1) to (KC-1) do PDWord(@tk[j])^:= PDWord(@tk[j])^ xor PDWord(@tk[j-1])^; end; j:= 0; while (j< KC) and (r< (rounds+1)) do begin while (j< KC) and (t< BC) do begin rk[r,t]:= PDWord(@tk[j])^; Inc(j); Inc(t); end; if t= BC then begin Inc(r); t:= 0; end; end; end; Move(rk,drk,Sizeof(rk)); for r:= 1 to (numrounds-1) do InvMixColumn(@drk[r],BC); end; function TSynaAes.EncryptECB(const InData: AnsiString): AnsiString; var r: longword; tempb: array[0..MAXBC-1,0..3] of byte; a: array[0..MAXBC,0..3] of byte; p: pointer; begin p := @a[0,0]; move(pointer(InData)^, p^, 16); for r:= 0 to (numrounds-2) do begin PDWord(@tempb[0])^:= PDWord(@a[0])^ xor rk[r,0]; PDWord(@tempb[1])^:= PDWord(@a[1])^ xor rk[r,1]; PDWord(@tempb[2])^:= PDWord(@a[2])^ xor rk[r,2]; PDWord(@tempb[3])^:= PDWord(@a[3])^ xor rk[r,3]; PDWord(@a[0])^:= PDWord(@T1[tempb[0,0]])^ xor PDWord(@T2[tempb[1,1]])^ xor PDWord(@T3[tempb[2,2]])^ xor PDWord(@T4[tempb[3,3]])^; PDWord(@a[1])^:= PDWord(@T1[tempb[1,0]])^ xor PDWord(@T2[tempb[2,1]])^ xor PDWord(@T3[tempb[3,2]])^ xor PDWord(@T4[tempb[0,3]])^; PDWord(@a[2])^:= PDWord(@T1[tempb[2,0]])^ xor PDWord(@T2[tempb[3,1]])^ xor PDWord(@T3[tempb[0,2]])^ xor PDWord(@T4[tempb[1,3]])^; PDWord(@a[3])^:= PDWord(@T1[tempb[3,0]])^ xor PDWord(@T2[tempb[0,1]])^ xor PDWord(@T3[tempb[1,2]])^ xor PDWord(@T4[tempb[2,3]])^; end; PDWord(@tempb[0])^:= PDWord(@a[0])^ xor rk[numrounds-1,0]; PDWord(@tempb[1])^:= PDWord(@a[1])^ xor rk[numrounds-1,1]; PDWord(@tempb[2])^:= PDWord(@a[2])^ xor rk[numrounds-1,2]; PDWord(@tempb[3])^:= PDWord(@a[3])^ xor rk[numrounds-1,3]; a[0,0]:= T1[tempb[0,0],1]; a[0,1]:= T1[tempb[1,1],1]; a[0,2]:= T1[tempb[2,2],1]; a[0,3]:= T1[tempb[3,3],1]; a[1,0]:= T1[tempb[1,0],1]; a[1,1]:= T1[tempb[2,1],1]; a[1,2]:= T1[tempb[3,2],1]; a[1,3]:= T1[tempb[0,3],1]; a[2,0]:= T1[tempb[2,0],1]; a[2,1]:= T1[tempb[3,1],1]; a[2,2]:= T1[tempb[0,2],1]; a[2,3]:= T1[tempb[1,3],1]; a[3,0]:= T1[tempb[3,0],1]; a[3,1]:= T1[tempb[0,1],1]; a[3,2]:= T1[tempb[1,2],1]; a[3,3]:= T1[tempb[2,3],1]; PDWord(@a[0])^:= PDWord(@a[0])^ xor rk[numrounds,0]; PDWord(@a[1])^:= PDWord(@a[1])^ xor rk[numrounds,1]; PDWord(@a[2])^:= PDWord(@a[2])^ xor rk[numrounds,2]; PDWord(@a[3])^:= PDWord(@a[3])^ xor rk[numrounds,3]; Result := StringOfChar(#0, 16); move(p^, pointer(Result)^, 16); end; function TSynaAes.DecryptECB(const InData: AnsiString): AnsiString; var r: longword; tempb: array[0..MAXBC-1,0..3] of byte; a: array[0..MAXBC,0..3] of byte; p: pointer; begin p := @a[0,0]; move(pointer(InData)^, p^, 16); for r:= NumRounds downto 2 do begin PDWord(@tempb[0])^:= PDWord(@a[0])^ xor drk[r,0]; PDWord(@tempb[1])^:= PDWord(@a[1])^ xor drk[r,1]; PDWord(@tempb[2])^:= PDWord(@a[2])^ xor drk[r,2]; PDWord(@tempb[3])^:= PDWord(@a[3])^ xor drk[r,3]; PDWord(@a[0])^:= PDWord(@T5[tempb[0,0]])^ xor PDWord(@T6[tempb[3,1]])^ xor PDWord(@T7[tempb[2,2]])^ xor PDWord(@T8[tempb[1,3]])^; PDWord(@a[1])^:= PDWord(@T5[tempb[1,0]])^ xor PDWord(@T6[tempb[0,1]])^ xor PDWord(@T7[tempb[3,2]])^ xor PDWord(@T8[tempb[2,3]])^; PDWord(@a[2])^:= PDWord(@T5[tempb[2,0]])^ xor PDWord(@T6[tempb[1,1]])^ xor PDWord(@T7[tempb[0,2]])^ xor PDWord(@T8[tempb[3,3]])^; PDWord(@a[3])^:= PDWord(@T5[tempb[3,0]])^ xor PDWord(@T6[tempb[2,1]])^ xor PDWord(@T7[tempb[1,2]])^ xor PDWord(@T8[tempb[0,3]])^; end; PDWord(@tempb[0])^:= PDWord(@a[0])^ xor drk[1,0]; PDWord(@tempb[1])^:= PDWord(@a[1])^ xor drk[1,1]; PDWord(@tempb[2])^:= PDWord(@a[2])^ xor drk[1,2]; PDWord(@tempb[3])^:= PDWord(@a[3])^ xor drk[1,3]; a[0,0]:= S5[tempb[0,0]]; a[0,1]:= S5[tempb[3,1]]; a[0,2]:= S5[tempb[2,2]]; a[0,3]:= S5[tempb[1,3]]; a[1,0]:= S5[tempb[1,0]]; a[1,1]:= S5[tempb[0,1]]; a[1,2]:= S5[tempb[3,2]]; a[1,3]:= S5[tempb[2,3]]; a[2,0]:= S5[tempb[2,0]]; a[2,1]:= S5[tempb[1,1]]; a[2,2]:= S5[tempb[0,2]]; a[2,3]:= S5[tempb[3,3]]; a[3,0]:= S5[tempb[3,0]]; a[3,1]:= S5[tempb[2,1]]; a[3,2]:= S5[tempb[1,2]]; a[3,3]:= S5[tempb[0,3]]; PDWord(@a[0])^:= PDWord(@a[0])^ xor drk[0,0]; PDWord(@a[1])^:= PDWord(@a[1])^ xor drk[0,1]; PDWord(@a[2])^:= PDWord(@a[2])^ xor drk[0,2]; PDWord(@a[3])^:= PDWord(@a[3])^ xor drk[0,3]; Result := StringOfChar(#0, 16); move(p^, pointer(Result)^, 16); end; {==============================================================================} function TestDes: boolean; var des: TSynaDes; s, t: string; const key = '01234567'; data1= '01234567'; data2= '0123456789abcdefghij'; begin //ECB des := TSynaDes.Create(key); try s := des.EncryptECB(data1); t := strtohex(s); result := t = 'c50ad028c6da9800'; s := des.DecryptECB(s); result := result and (data1 = s); finally des.free; end; //CBC des := TSynaDes.Create(key); try s := des.EncryptCBC(data2); t := strtohex(s); result := result and (t = 'eec50f6353115ad6dee90a22ed1b6a88a0926e35'); des.Reset; s := des.DecryptCBC(s); result := result and (data2 = s); finally des.free; end; //CFB-8bit des := TSynaDes.Create(key); try s := des.EncryptCFB8bit(data2); t := strtohex(s); result := result and (t = 'eb6aa12c2f0ff634b4dfb6da6cb2af8f9c5c1452'); des.Reset; s := des.DecryptCFB8bit(s); result := result and (data2 = s); finally des.free; end; //CFB-block des := TSynaDes.Create(key); try s := des.EncryptCFBblock(data2); t := strtohex(s); result := result and (t = 'ebdbbaa7f9286cdec28605e07f9b7f3be1053257'); des.Reset; s := des.DecryptCFBblock(s); result := result and (data2 = s); finally des.free; end; //OFB des := TSynaDes.Create(key); try s := des.EncryptOFB(data2); t := strtohex(s); result := result and (t = 'ebdbbaa7f9286cdee0b8b3798c4c34baac87dbdc'); des.Reset; s := des.DecryptOFB(s); result := result and (data2 = s); finally des.free; end; //CTR des := TSynaDes.Create(key); try s := des.EncryptCTR(data2); t := strtohex(s); result := result and (t = 'ebdbbaa7f9286cde0dd20b45f3afd9aa1b91b87e'); des.Reset; s := des.DecryptCTR(s); result := result and (data2 = s); finally des.free; end; end; function Test3Des: boolean; var des: TSyna3Des; s, t: string; const key = '0123456789abcdefghijklmn'; data1= '01234567'; data2= '0123456789abcdefghij'; begin //ECB des := TSyna3Des.Create(key); try s := des.EncryptECB(data1); t := strtohex(s); result := t = 'e0dee91008dc460c'; s := des.DecryptECB(s); result := result and (data1 = s); finally des.free; end; //CBC des := TSyna3Des.Create(key); try s := des.EncryptCBC(data2); t := strtohex(s); result := result and (t = 'ee844a2a4f49c01b91a1599b8eba29128c1ad87a'); des.Reset; s := des.DecryptCBC(s); result := result and (data2 = s); finally des.free; end; //CFB-8bit des := TSyna3Des.Create(key); try s := des.EncryptCFB8bit(data2); t := strtohex(s); result := result and (t = '935bbf5210c32cfa1faf61f91e8dc02dfa0ff1e8'); des.Reset; s := des.DecryptCFB8bit(s); result := result and (data2 = s); finally des.free; end; //CFB-block des := TSyna3Des.Create(key); try s := des.EncryptCFBblock(data2); t := strtohex(s); result := result and (t = '93754e3d54828fbf4bd81f1739419e8d2cfe1671'); des.Reset; s := des.DecryptCFBblock(s); result := result and (data2 = s); finally des.free; end; //OFB des := TSyna3Des.Create(key); try s := des.EncryptOFB(data2); t := strtohex(s); result := result and (t = '93754e3d54828fbf04ef0a5efc926ebdf2d95f20'); des.Reset; s := des.DecryptOFB(s); result := result and (data2 = s); finally des.free; end; //CTR des := TSyna3Des.Create(key); try s := des.EncryptCTR(data2); t := strtohex(s); result := result and (t = '93754e3d54828fbf1c51a121d2c93f989e70b3ad'); des.Reset; s := des.DecryptCTR(s); result := result and (data2 = s); finally des.free; end; end; function TestAes: boolean; var aes: TSynaAes; s, t: string; const key1 = #$00#$01#$02#$03#$05#$06#$07#$08#$0A#$0B#$0C#$0D#$0F#$10#$11#$12; data1= #$50#$68#$12#$A4#$5F#$08#$C8#$89#$B9#$7F#$59#$80#$03#$8B#$83#$59; key2 = #$A0#$A1#$A2#$A3#$A5#$A6#$A7#$A8#$AA#$AB#$AC#$AD#$AF#$B0#$B1#$B2#$B4#$B5#$B6#$B7#$B9#$BA#$BB#$BC; data2= #$4F#$1C#$76#$9D#$1E#$5B#$05#$52#$C7#$EC#$A8#$4D#$EA#$26#$A5#$49; key3 = #$00#$01#$02#$03#$05#$06#$07#$08#$0A#$0B#$0C#$0D#$0F#$10#$11#$12#$14#$15#$16#$17#$19#$1A#$1B#$1C#$1E#$1F#$20#$21#$23#$24#$25#$26; data3= #$5E#$25#$CA#$78#$F0#$DE#$55#$80#$25#$24#$D3#$8D#$A3#$FE#$44#$56; begin //ECB aes := TSynaAes.Create(key1); try t := aes.EncryptECB(data1); result := t = #$D8#$F5#$32#$53#$82#$89#$EF#$7D#$06#$B5#$06#$A4#$FD#$5B#$E9#$C9; s := aes.DecryptECB(t); result := result and (data1 = s); finally aes.free; end; aes := TSynaAes.Create(key2); try t := aes.EncryptECB(data2); result := result and (t = #$F3#$84#$72#$10#$D5#$39#$1E#$23#$60#$60#$8E#$5A#$CB#$56#$05#$81); s := aes.DecryptECB(t); result := result and (data2 = s); finally aes.free; end; aes := TSynaAes.Create(key3); try t := aes.EncryptECB(data3); result := result and (t = #$E8#$B7#$2B#$4E#$8B#$E2#$43#$43#$8C#$9F#$FF#$1F#$0E#$20#$58#$72); s := aes.DecryptECB(t); result := result and (data3 = s); finally aes.free; end; end; {==============================================================================} end.