// The OS/K Team licenses this file to you under the MIT license. // See the LICENSE file in the project root for more information. #include //----------------------------------------------------------------------------// IMPL_START_2(sgn) { v1 = (v2 == 0 ? 0 : ((long)v2 < 0 ? (ulong)-1L : 1)); } IMPL_OUT; IMPL_START_2(sgnf) { v1 = (long)v2 < 0 ? (ulong)-1L : 1; } IMPL_OUT_ZSF; IMPL_START_2(neg) { v1 = ~v2 + 1; } IMPL_OUT; IMPL_START_2(negf) { if (v2 == 0) { flg |= CF; flg &= ~OF; } else { flg &= ~CF; if (v2 == LONG_MIN) flg |= OF; else flg &= ~OF; } v1 = ~v2 + 1; } IMPL_OUT_ZSF; //----------------------------------------------------------------------------// IMPL_START_1(inc) { v1++; } IMPL_OUT; IMPL_START_1(incf) { if (v1 == LONG_MAX) flg |= OF; else flg &= ~OF; v1++; } IMPL_OUT_ZSF; IMPL_START_1(dec) { v1--; } IMPL_OUT; IMPL_START_1(decf) { if (v1 == LONG_MIN) flg |= OF; else flg &= ~OF; v1--; } IMPL_OUT_ZSF; //----------------------------------------------------------------------------// IMPL_START_2(add) { v1 += v2; } IMPL_OUT; IMPL_START_2(xadd) { ulong tmp = v1; v1 += v2; v2 = tmp; } IMPL_OUT_2; IMPL_START_2(addf) { if (v1 + v2 < v1) flg |= OF; else flg &= ~OF; if ( ((v2 > 0) && (v1 > LONG_MAX - v2)) || ((v2 < 0) && (v1 < LONG_MIN - v2)) ) flg |= CF; else flg &= ~CF; v1 += v2; } IMPL_OUT_ZSF; IMPL_START_2(adc) { v1 += v2 + !!(flg&CF); } IMPL_OUT; IMPL_START_2(adcf) { if (v1 + v2 + !!(flg&CF) < v1) flg |= OF; else flg &= ~OF; v1 += !!(flg&CF); if ( ((v2 > 0) && (v1 > LONG_MAX - v2)) || ((v2 < 0) && (v1 < LONG_MIN - v2)) ) flg |= CF; else flg &= ~CF; v1 += v2; } IMPL_OUT_ZSF; //----------------------------------------------------------------------------// IMPL_START_2(sub) { v1 -= v2; } IMPL_OUT; IMPL_START_2(subf) { COMPARE(v1, v2); v1 -= v2; } IMPL_OUT; // // i_subf but discards result // IMPL_START_2(cmp) { COMPARE(v1, v2); } IMPL_END; //----------------------------------------------------------------------------// // // www.codeproject.com/Tips/618570/UInt-Multiplication-Squaring // static void multiply(ulong u, ulong v, ulong *hi, ulong *lo) { ulong u1 = (u & 0xffffffff); ulong v1 = (v & 0xffffffff); ulong t = (u1 * v1); ulong w3 = (t & 0xffffffff); ulong k = (t >> 32); u >>= 32; t = (u * v1) + k; k = (t & 0xffffffff); ulong w1 = (t >> 32); v >>= 32; t = (u1 * v) + k; k = (t >> 32); *hi = (u * v) + w1 + k; *lo = (t << 32) + w3; } IMPL_START_2(mul) { ulong hi; multiply(v1, v2, &hi, &v1); } IMPL_OUT; IMPL_START_2(mulf) { ulong hi; multiply(v1, v2, &hi, &v1); if (hi > 0) { flg |= CF; flg |= OF; } else { flg &= ~CF; flg &= ~OF; } } IMPL_OUT; IMPL_START_3(mulx) { multiply(v2, v3, &v1, &v2); } IMPL_OUT_2; IMPL_START_3(mulfx) { multiply(v2, v3, &v1, &v2); if (v1 > 0) { flg |= CF; flg |= OF; } else { flg &= ~CF; flg &= ~OF; } } IMPL_OUT_2; //----------------------------------------------------------------------------// IMPL_START_2(div) { v1 /= v2; } IMPL_OUT; IMPL_START_2(rem) { v1 %= v2; } IMPL_OUT; IMPL_START_3(divx) { v1 = v2 % v3; v2 = v2 / v3; } IMPL_OUT_2; //----------------------------------------------------------------------------//