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https://github.com/openhwgroup/cvw
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73 lines
2.0 KiB
C
73 lines
2.0 KiB
C
// gfmul.c - Galois Field multiplication
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// James Stine and David Harris 16 May 2024
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#include <stdio.h>
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/* return ab mod m(x) - long multiplication in GF(2^n) with polynomial m */
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int gfmul(int a, int b, int n, int m) {
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int result = 0;
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while (b) {
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if (b & 1) result = result ^ a; /* if bit of b is set add a */
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a = a << 1; /* multiply a by x */
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if (a & 1 << n)
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a = a ^ m; /* reduce/sub modulo AES m(x) = 100011011 */
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//printf("a = %x, b = %x, result = %x\n", a, b, result);
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b = b >> 1; /* get next bit of b */
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}
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return result;
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}
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void inverses(void) {
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int i, j, k, num;
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printf("\nTable of inverses in GF(2^8) with polynomial m(x) = 100011011\n");
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for (i=0; i<16; i++) {
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for (j=0; j<16; j++) {
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num = i*16+j;
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if (num ==0) printf ("00 ");
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else for (k=1; k<256; k++) {
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if (gfmul(num, k, 8, 0b100011011) == 1) {
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printf("%02x ", k);
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break;
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}
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}
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}
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printf("\n");
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}
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}
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void inverses3(void) {
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int k, num;
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printf("\nTable of inverses in GF(2^8) with polynomial m(x) = 100011011\n");
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for (num=0; num<8; num++) {
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if (num == 0) printf ("0 ");
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else for (k=1; k<8; k++) {
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if (gfmul(num, k, 3, 0b1011) == 1) {
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printf("%d ", k);
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break;
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}
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}
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}
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printf("\n");
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}
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int main() {
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int a = 0xC5;
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int b = 0xA1;
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printf("The GF(2^8) result is %x\n", gfmul(a,b, 8, 0b100011011));
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printf("The GF(2^8) result is %x\n", gfmul(0xC1, 0x28, 8, 0b100011011));
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inverses();
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// tabulate inverses for GF(2^3)
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inverses3();
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// check worked examples
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printf("The GF(2^3) result is %d\n", gfmul(0b101,0b011, 3, 0b1011));
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printf("The GF(2^3) result is %d\n", gfmul(0b101,0b010, 3, 0b1011));
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printf("The GF(2^3) result is %d\n", gfmul(0b101,0b100, 3, 0b1011));
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printf("The GF(2^3) result is %d\n", gfmul(0b101,0b011, 3, 0b1011));
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}
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