2022-10-22 18:41:00 +08:00
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/* TomsFastMath, a fast ISO C bignum library.
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*
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* This project is meant to fill in where LibTomMath
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* falls short. That is speed ;-)
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*
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* This project is public domain and free for all purposes.
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*
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* Tom St Denis, tomstdenis@gmail.com
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*/
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2023-01-14 18:28:39 +08:00
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#include <tfm_private.h>
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2022-10-22 18:41:00 +08:00
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static int fp_invmod_slow (fp_int * a, fp_int * b, fp_int * c)
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{
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fp_int x, y, u, v, A, B, C, D;
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int res;
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/* b cannot be negative */
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if (b->sign == FP_NEG || fp_iszero(b) == 1) {
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return FP_VAL;
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}
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/* init temps */
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fp_init(&x); fp_init(&y);
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fp_init(&u); fp_init(&v);
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fp_init(&A); fp_init(&B);
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fp_init(&C); fp_init(&D);
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/* x = a, y = b */
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if ((res = fp_mod(a, b, &x)) != FP_OKAY) {
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return res;
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}
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fp_copy(b, &y);
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/* 2. [modified] if x,y are both even then return an error! */
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if (fp_iseven (&x) == 1 && fp_iseven (&y) == 1) {
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return FP_VAL;
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}
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/* 3. u=x, v=y, A=1, B=0, C=0,D=1 */
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fp_copy (&x, &u);
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fp_copy (&y, &v);
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fp_set (&A, 1);
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fp_set (&D, 1);
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top:
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/* 4. while u is even do */
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while (fp_iseven (&u) == 1) {
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/* 4.1 u = u/2 */
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fp_div_2 (&u, &u);
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/* 4.2 if A or B is odd then */
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if (fp_isodd (&A) == 1 || fp_isodd (&B) == 1) {
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/* A = (A+y)/2, B = (B-x)/2 */
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fp_add (&A, &y, &A);
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fp_sub (&B, &x, &B);
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}
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/* A = A/2, B = B/2 */
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fp_div_2 (&A, &A);
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fp_div_2 (&B, &B);
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}
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/* 5. while v is even do */
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while (fp_iseven (&v) == 1) {
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/* 5.1 v = v/2 */
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fp_div_2 (&v, &v);
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/* 5.2 if C or D is odd then */
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if (fp_isodd (&C) == 1 || fp_isodd (&D) == 1) {
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/* C = (C+y)/2, D = (D-x)/2 */
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fp_add (&C, &y, &C);
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fp_sub (&D, &x, &D);
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}
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/* C = C/2, D = D/2 */
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fp_div_2 (&C, &C);
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fp_div_2 (&D, &D);
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}
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/* 6. if u >= v then */
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if (fp_cmp (&u, &v) != FP_LT) {
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/* u = u - v, A = A - C, B = B - D */
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fp_sub (&u, &v, &u);
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fp_sub (&A, &C, &A);
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fp_sub (&B, &D, &B);
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} else {
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/* v - v - u, C = C - A, D = D - B */
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fp_sub (&v, &u, &v);
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fp_sub (&C, &A, &C);
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fp_sub (&D, &B, &D);
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}
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/* if not zero goto step 4 */
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if (fp_iszero (&u) == 0)
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goto top;
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/* now a = C, b = D, gcd == g*v */
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/* if v != 1 then there is no inverse */
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if (fp_cmp_d (&v, 1) != FP_EQ) {
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return FP_VAL;
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}
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/* if its too low */
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while (fp_cmp_d(&C, 0) == FP_LT) {
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fp_add(&C, b, &C);
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}
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/* too big */
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while (fp_cmp_mag(&C, b) != FP_LT) {
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fp_sub(&C, b, &C);
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}
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/* C is now the inverse */
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fp_copy(&C, c);
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return FP_OKAY;
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}
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/* c = 1/a (mod b) for odd b only */
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int fp_invmod(fp_int *a, fp_int *b, fp_int *c)
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{
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fp_int x, y, u, v, B, D;
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int neg;
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/* 2. [modified] b must be odd */
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if (fp_iseven (b) == FP_YES) {
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return fp_invmod_slow(a,b,c);
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}
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/* init all our temps */
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fp_init(&x); fp_init(&y);
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fp_init(&u); fp_init(&v);
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fp_init(&B); fp_init(&D);
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/* x == modulus, y == value to invert */
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fp_copy(b, &x);
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/* we need y = |a| */
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fp_abs(a, &y);
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/* 3. u=x, v=y, A=1, B=0, C=0,D=1 */
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fp_copy(&x, &u);
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fp_copy(&y, &v);
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fp_set (&D, 1);
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top:
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/* 4. while u is even do */
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while (fp_iseven (&u) == FP_YES) {
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/* 4.1 u = u/2 */
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fp_div_2 (&u, &u);
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/* 4.2 if B is odd then */
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if (fp_isodd (&B) == FP_YES) {
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fp_sub (&B, &x, &B);
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}
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/* B = B/2 */
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fp_div_2 (&B, &B);
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}
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/* 5. while v is even do */
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while (fp_iseven (&v) == FP_YES) {
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/* 5.1 v = v/2 */
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fp_div_2 (&v, &v);
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/* 5.2 if D is odd then */
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if (fp_isodd (&D) == FP_YES) {
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/* D = (D-x)/2 */
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fp_sub (&D, &x, &D);
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}
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/* D = D/2 */
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fp_div_2 (&D, &D);
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}
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/* 6. if u >= v then */
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if (fp_cmp (&u, &v) != FP_LT) {
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/* u = u - v, B = B - D */
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fp_sub (&u, &v, &u);
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fp_sub (&B, &D, &B);
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} else {
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/* v - v - u, D = D - B */
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fp_sub (&v, &u, &v);
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fp_sub (&D, &B, &D);
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}
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/* if not zero goto step 4 */
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if (fp_iszero (&u) == FP_NO) {
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goto top;
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}
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/* now a = C, b = D, gcd == g*v */
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/* if v != 1 then there is no inverse */
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if (fp_cmp_d (&v, 1) != FP_EQ) {
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return FP_VAL;
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}
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/* b is now the inverse */
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neg = a->sign;
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while (D.sign == FP_NEG) {
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fp_add (&D, b, &D);
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}
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fp_copy (&D, c);
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c->sign = neg;
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return FP_OKAY;
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}
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2023-01-14 18:28:39 +08:00
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/* $Source$ */
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/* $Revision$ */
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/* $Date$ */
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