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📄 des.c

📁 本代码用C语言封装了3DES等加解密算法的函数实现
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/*         DES 算法程序*///#include "Des.h"#include 	<stdio.h>#include 	<string.h>#define		ENCRYPT		0#define		DESCRYPT	1#define     PINLEN      9    	unsigned char cdesoutput[9];	unsigned char 	cascoutput[17]; 		unsigned char cdeskey[9];	unsigned char cdesinput[9];	unsigned char	KS[16][48];    unsigned char	E[64];void AscToBcd( unsigned char* charbcd, unsigned char* charasc, int len )                    {	unsigned char cbuf[300], ubuf[300];  	int lenchar, lenover;	int i;	lenchar = strlen((const char*)charasc);//	TRACE("AtoB: lenchar[%d]\n",lenchar);	if( lenchar < len*2 )	{		lenover = len*2 - lenchar;		for( i=0; i<lenover;i++) 		{			cbuf[i] = '0';		}		memcpy(&cbuf[i],charasc,lenchar);		//memcpy(&cbuf[0],charasc,lenchar);	}	else    memcpy(cbuf, charasc,len*2);	cbuf[len*2] = '\0';	//	TRACE("AtoB: cbuf[%s] len[%d]\n",cbuf,len);	  	    for(i=0;i<(len*2);i++)    {        if (cbuf[i]>='a')             cbuf[i]=cbuf[i]-'a'+10;        else if (cbuf[i]>='A')             cbuf[i]=cbuf[i]-'A'+10;        else if (cbuf[i]>='0')             cbuf[i]-='0';        else cbuf[i]-=' ';            //lht if (cbuf[i]<0) cbuf[i]=0; //    TRACE("AtoB: cbuf[%02x]\n",cbuf[i]);    }    for(i=0;i<(len*2);i+=2)    	ubuf[i/2]=cbuf[i]*16+cbuf[i+1]%16;         memcpy(charbcd, ubuf, len );	}void BcdToAsc( unsigned char* charasc,unsigned char *charbcd,int len ) {	int i;	unsigned char cbuf[300], ubuf[300];//	if( len == 0) return;	memcpy(ubuf, (const char*)charbcd, len);	for(i=0;i<len;i++)	{		cbuf[2*i] = (ubuf[i] >> 4) ;		cbuf[2*i+1] = (ubuf[i] & 0x0f) ;     	} 	for(i=0;i<len*2;i++)	{		if(cbuf[i] < 10 ) cbuf[i] += '0' ;		else cbuf[i] += 'A' - 10;	}	     	memcpy( charasc, cbuf, len*2);	charasc[len*2] = '\0';}void ShowHex(char* name, unsigned char* string, int len ){   int i;//   TRACE("SHowHex len[%d] name[%s] =",len,name);   for(i=1;i<len+1;i++)    {//       if( i%10 == 0 ) TRACE("\n");//       TRACE("%02x ",*string);       string ++;   }//   TRACE("\n");}    void key_encrypt_Asc(unsigned char* input,unsigned char* key){    		AscToBcd(cdeskey,key,8);	AscToBcd(cdesinput,input,8);	key_encrypt_Bcd(cdesinput,cdeskey);}int key_encrypt_Bcd(unsigned char* input,unsigned char* key){    		int		i,len;	unsigned char	clear_txt[PINLEN],cipher_txt[PINLEN];	unsigned char	key_block[PINLEN];	unsigned char	bits[64];	memcpy(cdeskey, key, 8 );	memcpy(cdesinput,input, 8 );	cdeskey[8] ='\0';	cdesinput[8] = '\0';		for(i=0;i<8;i++)	  key_block[i] = cdeskey[i];	len=strlen( (const char*)cdesinput);//	if(len%2)//	{//		TRACE("密码不能为奇数 ..1!!\n");		//MessageBox("密码不能为奇数","PIN ERROR",MB_OK);//	}           	for (i=0;i<8;i++)		clear_txt[i] = cdesinput[i];	expand(key_block,bits);	setkey(bits);	expand(clear_txt,bits);			encrypt(bits,ENCRYPT);			compress(bits,cipher_txt);	//memcpy(cipher_pin ,cipher_txt,8);	cipher_txt[8]='\0';		memcpy(cdesoutput, cipher_txt, 8);	cdesoutput[8] = '0';	BcdToAsc(cascoutput,cdesoutput,8);	cascoutput[16] = '\0';	//return cipher_txt;	return 0;}                   int setkey(unsigned char* key){	// ADD for include		static	unsigned char	e[] = {	32, 1, 2, 3, 4, 5,	 4, 5, 6, 7, 8, 9,	 8, 9,10,11,12,13,	12,13,14,15,16,17,	16,17,18,19,20,21,	20,21,22,23,24,25,	24,25,26,27,28,29,	28,29,30,31,32, 1,	};  	static	unsigned char	C[64];	static	unsigned char	D[64];		 /* Permuted-choice 1 from the key bits	 * to yield C and D.	 * Note that bits 8,16... are left out:	 * They are intended for a parity check.	 */           	// for setkey 	static	unsigned char	PC1_C[] = {		57,49,41,33,25,17, 9,		 1,58,50,42,34,26,18,		10, 2,59,51,43,35,27,		19,11, 3,60,52,44,36,	};		// for setkey	static	unsigned char	PC1_D[] = {		63,55,47,39,31,23,15,		 7,62,54,46,38,30,22,		14, 6,61,53,45,37,29,		21,13, 5,28,20,12, 4,	};		/*	 * Sequence of shifts used for the key schedule.	*/    		//For setkey	static	unsigned char	shifts[] = {		1,1,2,2,2,2,2,2,1,2,2,2,2,2,2,1,	};		/*	 * Permuted-choice 2, to pick out the bits from	 * the CD array that generate the key schedule.	 */   	 	// for setkey 	static	unsigned char	PC2_C[] = {		14,17,11,24, 1, 5,		 3,28,15, 6,21,10,		23,19,12, 4,26, 8,		16, 7,27,20,13, 2,	};	// for setkey 	static	unsigned char	PC2_D[] = {		41,52,31,37,47,55,		30,40,51,45,33,48,		44,49,39,56,34,53,		46,42,50,36,29,32,	};	// END	register i, j, k;	int t;	/*	 * First, generate C and D by permuting	 * the key.  The low order bit of each	 * 8-bit unsigned char is not used, so C and D are only 28	 * bits apiece.	 */	for (i=0; i<28; i++) 	{		C[i] = key[PC1_C[i]-1];		D[i] = key[PC1_D[i]-1];	}		/*	 * To generate Ki, rotate C and D according	 * to schedule and pick up a permutation	 * using PC2.	 */	for (i=0; i<16; i++) 	{				 //rotate.				for (k=0; k<shifts[i]; k++) 		{			t = C[0];			for (j=0; j<28-1; j++)				C[j] = C[j+1];			C[27] = t;			t = D[0];			for (j=0; j<28-1; j++)				D[j] = D[j+1];			D[27] = t;		}		/*		 * get Ki. Note C and D are concatenated.		 */		for (j=0; j<24; j++)		{			KS[i][j] = C[PC2_C[j]-1];			KS[i][j+24] = D[PC2_D[j]-28-1];		}	}	for(i=0;i<48;i++)		E[i] = e[i];			return 0;}int encrypt(unsigned char* block, int edflag){	// ADD include		static	unsigned char	IP[] = {		58,50,42,34,26,18,10, 2,		60,52,44,36,28,20,12, 4,		62,54,46,38,30,22,14, 6,		64,56,48,40,32,24,16, 8,		57,49,41,33,25,17, 9, 1,		59,51,43,35,27,19,11, 3,		61,53,45,37,29,21,13, 5,		63,55,47,39,31,23,15, 7,	};		/*	 * Final permutation, FP = IP^(-1)	 */   	 	// For encrypt 	static	unsigned char	FP[] = {		40, 8,48,16,56,24,64,32,		39, 7,47,15,55,23,63,31,		38, 6,46,14,54,22,62,30,		37, 5,45,13,53,21,61,29,		36, 4,44,12,52,20,60,28,		35, 3,43,11,51,19,59,27,		34, 2,42,10,50,18,58,26,		33, 1,41, 9,49,17,57,25,	};		static	unsigned char	S[8][64] = {		14, 4,13, 1, 2,15,11, 8, 3,10, 6,12, 5, 9, 0, 7,		 0,15, 7, 4,14, 2,13, 1,10, 6,12,11, 9, 5, 3, 8,		 4, 1,14, 8,13, 6, 2,11,15,12, 9, 7, 3,10, 5, 0,		15,12, 8, 2, 4, 9, 1, 7, 5,11, 3,14,10, 0, 6,13,			15, 1, 8,14, 6,11, 3, 4, 9, 7, 2,13,12, 0, 5,10,		 3,13, 4, 7,15, 2, 8,14,12, 0, 1,10, 6, 9,11, 5,		 0,14, 7,11,10, 4,13, 1, 5, 8,12, 6, 9, 3, 2,15,		13, 8,10, 1, 3,15, 4, 2,11, 6, 7,12, 0, 5,14, 9,			10, 0, 9,14, 6, 3,15, 5, 1,13,12, 7,11, 4, 2, 8,		13, 7, 0, 9, 3, 4, 6,10, 2, 8, 5,14,12,11,15, 1,		13, 6, 4, 9, 8,15, 3, 0,11, 1, 2,12, 5,10,14, 7,		 1,10,13, 0, 6, 9, 8, 7, 4,15,14, 3,11, 5, 2,12,			 7,13,14, 3, 0, 6, 9,10, 1, 2, 8, 5,11,12, 4,15,		13, 8,11, 5, 6,15, 0, 3, 4, 7, 2,12, 1,10,14, 9,		10, 6, 9, 0,12,11, 7,13,15, 1, 3,14, 5, 2, 8, 4,		 3,15, 0, 6,10, 1,13, 8, 9, 4, 5,11,12, 7, 2,14,			 2,12, 4, 1, 7,10,11, 6, 8, 5, 3,15,13, 0,14, 9,		14,11, 2,12, 4, 7,13, 1, 5, 0,15,10, 3, 9, 8, 6,		 4, 2, 1,11,10,13, 7, 8,15, 9,12, 5, 6, 3, 0,14,		11, 8,12, 7, 1,14, 2,13, 6,15, 0, 9,10, 4, 5, 3,			12, 1,10,15, 9, 2, 6, 8, 0,13, 3, 4,14, 7, 5,11,		10,15, 4, 2, 7,12, 9, 5, 6, 1,13,14, 0,11, 3, 8,		 9,14,15, 5, 2, 8,12, 3, 7, 0, 4,10, 1,13,11, 6,		 4, 3, 2,12, 9, 5,15,10,11,14, 1, 7, 6, 0, 8,13,			 4,11, 2,14,15, 0, 8,13, 3,12, 9, 7, 5,10, 6, 1,		13, 0,11, 7, 4, 9, 1,10,14, 3, 5,12, 2,15, 8, 6,		 1, 4,11,13,12, 3, 7,14,10,15, 6, 8, 0, 5, 9, 2,		 6,11,13, 8, 1, 4,10, 7, 9, 5, 0,15,14, 2, 3,12,			13, 2, 8, 4, 6,15,11, 1,10, 9, 3,14, 5, 0,12, 7,		 1,15,13, 8,10, 3, 7, 4,12, 5, 6,11, 0,14, 9, 2,		 7,11, 4, 1, 9,12,14, 2, 0, 6,10,13,15, 3, 5, 8,		 2, 1,14, 7, 4,10, 8,13,15,12, 9, 0, 3, 5, 6,11,	};		/*	 * P is a permutation on the selected combination	 * of the current L and key.	 */	static	unsigned char	P[] = {		16, 7,20,21,		29,12,28,17,		 1,15,23,26,		 5,18,31,10,		 2, 8,24,14,		32,27, 3, 9,		19,13,30, 6,		22,11, 4,25,	};		/*	 * The current block, divided into 2 halves.	 */	static	unsigned  char	L[64], R[64];	static	unsigned char	tempL[64];	static	unsigned char	f[64];		/*	 * The combination of the key and the input, before selection.	 */	static	unsigned char	preS[64];	/*	 * The payoff: encrypt a block.	 */			// END include	int i, ii;	register t, j, k;	/*	 * First, permute the bits in the input	 */	for (j=0; j<64; j++)		L[j] = block[IP[j]-1];/*============================================== */	for (j=0;j<32;j++)		R[j] = L[j+32];/*============================================== */	/*	 * Perform an encryption operation 16 times.	 */	for (ii=0; ii<16; ii++) 	{		/*		 * Set direction		 */		if (edflag)			i = 15-ii;		else

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