BN_MASK2
h = ((h << BN_BITS4) | (l >> BN_BITS4)) & BN_MASK2;
r = (l - q * d) & BN_MASK2;
return BN_MASK2;
return (BN_MASK2);
tmp.d[0] = (0 - m - >d[0]) & BN_MASK2; /* 2^(top*BN_BITS2) - m */
tmp.d[i] = (~m->d[i]) & BN_MASK2;
*out_r0 = r & BN_MASK2;
*out_r0 = r & BN_MASK2;
*out_r0 = r & BN_MASK2;
*out_r0 = r & BN_MASK2;
*out_r0 = r & BN_MASK2;
a->d[w] &= ~(BN_MASK2 << b);
maxdelta = BN_MASK2 - primes[NUMPRIMES - 1];
w &= BN_MASK2;
w &= BN_MASK2;
a->d[i] = l = (a->d[i] + w) & BN_MASK2;
w &= BN_MASK2;
a->d[i] = (a->d[i] - w) & BN_MASK2;
w &= BN_MASK2;
w &= BN_MASK2;
.out_word = BN_MASK2,
.out_word = BN_MASK2,
.out_word = BN_MASK2,
.mod_word = BN_MASK2,
.out_word = BN_MASK2,
.mod_word = BN_MASK2,
.out_word = BN_MASK2,