QuickPow2Check() private méthode

private QuickPow2Check ( ) : bool
Résultat bool
Exemple #1
0
        public BigInteger Divide(
            BigInteger val) {
            if (val.sign == 0)
                throw new ArithmeticException("Division by zero error");

            if (sign == 0)
                return Zero;

            if (val.QuickPow2Check()) // val is power of two
			{
                BigInteger result = this.Abs().ShiftRight(val.Abs().BitLength - 1);
                return val.sign == this.sign ? result : result.Negate();
            }

            int[] mag = (int[])this.magnitude.Clone();

            return new BigInteger(this.sign * val.sign, Divide(mag, val.magnitude), true);
        }
Exemple #2
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        public BigInteger Multiply(
            BigInteger val) {
            if (sign == 0 || val.sign == 0)
                return Zero;

            if (val.QuickPow2Check()) // val is power of two
			{
                BigInteger result = this.ShiftLeft(val.Abs().BitLength - 1);
                return val.sign > 0 ? result : result.Negate();
            }

            if (this.QuickPow2Check()) // this is power of two
			{
                BigInteger result = val.ShiftLeft(this.Abs().BitLength - 1);
                return this.sign > 0 ? result : result.Negate();
            }

            int resLength = (this.BitLength + val.BitLength) / BitsPerInt + 1;
            int[] res = new int[resLength];

            if (val == this) {
                Square(res, this.magnitude);
            }
            else {
                Multiply(res, this.magnitude, val.magnitude);
            }

            return new BigInteger(sign * val.sign, res, true);
        }
Exemple #3
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        public BigInteger Remainder(
            BigInteger n) {
            if (n.sign == 0)
                throw new ArithmeticException("Division by zero error");

            if (this.sign == 0)
                return Zero;

            // For small values, use fast remainder method
            if (n.magnitude.Length == 1) {
                int val = n.magnitude[0];

                if (val > 0) {
                    if (val == 1)
                        return Zero;

                    // TODO Make this func work on uint, and handle val == 1?
                    int rem = Remainder(val);

                    return rem == 0
                        ? Zero
                        : new BigInteger(sign, new int[] { rem }, false);
                }
            }

            if (CompareNoLeadingZeroes(0, magnitude, 0, n.magnitude) < 0)
                return this;

            int[] result;
            if (n.QuickPow2Check())  // n is power of two
			{
                // TODO Move before small values branch above?
                result = LastNBits(n.Abs().BitLength - 1);
            }
            else {
                result = (int[])this.magnitude.Clone();
                result = Remainder(result, n.magnitude);
            }

            return new BigInteger(sign, result, true);
        }
Exemple #4
0
        public BigInteger[] DivideAndRemainder(
            BigInteger val) {
            if (val.sign == 0)
                throw new ArithmeticException("Division by zero error");

            BigInteger[] biggies = new BigInteger[2];

            if (sign == 0) {
                biggies[0] = Zero;
                biggies[1] = Zero;
            }
            else if (val.QuickPow2Check()) // val is power of two
			{
                int e = val.Abs().BitLength - 1;
                BigInteger quotient = this.Abs().ShiftRight(e);
                int[] remainder = this.LastNBits(e);

                biggies[0] = val.sign == this.sign ? quotient : quotient.Negate();
                biggies[1] = new BigInteger(this.sign, remainder, true);
            }
            else {
                int[] remainder = (int[])this.magnitude.Clone();
                int[] quotient = Divide(remainder, val.magnitude);

                biggies[0] = new BigInteger(this.sign * val.sign, quotient, true);
                biggies[1] = new BigInteger(this.sign, remainder, true);
            }

            return biggies;
        }