2020-08-15 19:26:25 +01:00
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#include "poly.h"
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static uint16_t mod3(uint16_t a) {
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uint16_t r;
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int16_t t, c;
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r = (a >> 8) + (a & 0xff); // r mod 255 == a mod 255
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r = (r >> 4) + (r & 0xf); // r' mod 15 == r mod 15
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r = (r >> 2) + (r & 0x3); // r' mod 3 == r mod 3
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r = (r >> 2) + (r & 0x3); // r' mod 3 == r mod 3
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t = r - 3;
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c = t >> 15;
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return (c & r) ^ (~c & t);
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}
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void PQCLEAN_NTRUHPS2048509_CLEAN_poly_mod_3_Phi_n(poly *r) {
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int i;
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for (i = 0; i < NTRU_N; i++) {
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r->coeffs[i] = mod3(r->coeffs[i] + 2 * r->coeffs[NTRU_N - 1]);
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}
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}
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void PQCLEAN_NTRUHPS2048509_CLEAN_poly_mod_q_Phi_n(poly *r) {
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int i;
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for (i = 0; i < NTRU_N; i++) {
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r->coeffs[i] = r->coeffs[i] - r->coeffs[NTRU_N - 1];
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}
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}
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void PQCLEAN_NTRUHPS2048509_CLEAN_poly_Rq_to_S3(poly *r, const poly *a) {
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int i;
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2020-10-09 20:13:48 +01:00
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uint16_t flag;
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2020-08-15 19:26:25 +01:00
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2020-10-09 20:13:48 +01:00
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/* The coefficients of a are stored as non-negative integers. */
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/* We must translate to representatives in [-q/2, q/2) before */
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/* reduction mod 3. */
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2020-08-15 19:26:25 +01:00
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for (i = 0; i < NTRU_N; i++) {
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2020-10-09 20:13:48 +01:00
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/* Need an explicit reduction mod q here */
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r->coeffs[i] = MODQ(a->coeffs[i]);
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/* flag = 1 if r[i] >= q/2 else 0 */
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flag = r->coeffs[i] >> (NTRU_LOGQ - 1);
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/* Now we will add (-q) mod 3 if r[i] >= q/2 */
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/* Note (-q) mod 3=(-2^k) mod 3=1<<(1-(k&1)) */
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r->coeffs[i] += flag << (1 - (NTRU_LOGQ & 1));
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2020-08-15 19:26:25 +01:00
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}
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PQCLEAN_NTRUHPS2048509_CLEAN_poly_mod_3_Phi_n(r);
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}
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