/* RC5REF.C -- Reference implementation of RC5-32/12/16 in C. */ /* Copyright (C) 1995 RSA Data Security, Inc. */ #include #include typedef unsigned long int WORD; /* Should be 32-bit = 4 bytes */ #define w 32 /* word size in bits */ #define r 12 /* number of rounds */ #define b 16 /* number of bytes in key */ #define c 4 /* number words in key = ceil(8*b/w)*/ #define t 26 /* size of table S = 2*(r+1) words */ WORD S[t]; /* expanded key table */ WORD P = 0xb7e15163, Q = 0x9e3779b9; /* magic constants */ /* Rotation operators. x must be unsigned, to get logical right shift*/ #define ROTL(x,y) (((x)<<(y&(w-1))) | ((x)>>(w-(y&(w-1))))) #define ROTR(x,y) (((x)>>(y&(w-1))) | ((x)<<(w-(y&(w-1))))) void RC5_ENCRYPT(WORD *pt, WORD *ct) /* 2 WORD input pt/output ct */ { WORD i, A=pt[0]+S[0], B=pt[1]+S[1]; for (i=1; i<=r; i++) { A = ROTL(A^B,B)+S[2*i]; B = ROTL(B^A,A)+S[2*i+1]; } ct[0] = A; ct[1] = B; } void RC5_DECRYPT(WORD *ct, WORD *pt) /* 2 WORD input ct/output pt */ { WORD i, B=ct[1], A=ct[0]; for (i=r; i>0; i--) { B = ROTR(B-S[2*i+1],A)^A; A = ROTR(A-S[2*i],B)^B; } pt[1] = B-S[1]; pt[0] = A-S[0]; } void RC5_SETUP(unsigned char *K) /* secret input key K[0...b-1] */ { WORD i, j, k, u=w/8, A, B, L[c]; /* Initialize L, then S, then mix key into S */ for (i=b-1,L[c-1]=0; i!=-1; i--) L[i/u] = (L[i/u]<<8)+K[i]; for (S[0]=P,i=1; i 3*c */ { A = S[i] = ROTL(S[i]+(A+B),3); B = L[j] = ROTL(L[j]+(A+B),(A+B)); } } void main() { WORD i, j, pt1[2], pt2[2], ct[2] = {0,0}; unsigned char key[b]; time_t t0, t1; if (sizeof(WORD)!=4) printf("RC5 error: WORD has %d bytes.\n",sizeof(WORD)); printf("RC5-32/12/16 examples:\n"); for (i=1;i<6;i++) { /* Initialize pt1 and key pseudorandomly based on previous ct */ pt1[0]=ct[0]; pt1[1]=ct[1]; for (j=0;j ciphertext %.8lX %.8lX \n", pt1[0], pt1[1], ct[0], ct[1]); if (pt1[0]!=pt2[0] || pt1[1]!=pt2[1]) printf("Decryption Error!"); } time (&t0); for (i=1;i<100000;i++) RC5_ENCRYPT(ct,ct); time (&t1); printf ("\n Time_t for 100000 blocks: %ld \n", t1-t0); }