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/*
 * Copyright (c) 2012, 2021, Oracle and/or its affiliates. All rights reserved.
 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
 *
 * The Universal Permissive License (UPL), Version 1.0
 *
 * Subject to the condition set forth below, permission is hereby granted to any
 * person obtaining a copy of this software, associated documentation and/or
 * data (collectively the "Software"), free of charge and under any and all
 * copyright rights in the Software, and any and all patent rights owned or
 * freely licensable by each licensor hereunder covering either (i) the
 * unmodified Software as contributed to or provided by such licensor, or (ii)
 * the Larger Works (as defined below), to deal in both
 *
 * (a) the Software, and
 *
 * (b) any piece of software and/or hardware listed in the lrgrwrks.txt file if
 * one is included with the Software each a "Larger Work" to which the Software
 * is contributed by such licensors),
 *
 * without restriction, including without limitation the rights to copy, create
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 * Software and the Larger Work(s), and to sublicense the foregoing rights on
 * either these or other terms.
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 * This license is subject to the following condition:
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 * The above copyright notice and either this complete permission notice or at a
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 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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package org.pkl.thirdparty.truffle.api;

/**
 * This class contains exact math related methods that are generally useful for dynamic language
 * implementations.
 *
 * @since 0.8 or earlier
 */
public final class ExactMath {

    private ExactMath() {
    }

    /**
     * @since 0.8 or earlier
     */
    public static int multiplyHigh(int x, int y) {
        long r = (long) x * (long) y;
        return (int) (r >> 32);
    }

    /**
     * @since 0.8 or earlier
     */
    public static int multiplyHighUnsigned(int x, int y) {
        long xl = x & 0xFFFFFFFFL;
        long yl = y & 0xFFFFFFFFL;
        long r = xl * yl;
        return (int) (r >> 32);
    }

    /**
     * @since 0.8 or earlier
     */
    public static long multiplyHigh(long x, long y) {
        // Checkstyle: stop
        long x0, y0, z0;
        long x1, y1, z1, z2, t;
        // Checkstyle: resume

        x0 = x & 0xFFFFFFFFL;
        x1 = x >> 32;

        y0 = y & 0xFFFFFFFFL;
        y1 = y >> 32;

        z0 = x0 * y0;
        t = x1 * y0 + (z0 >>> 32);
        z1 = t & 0xFFFFFFFFL;
        z2 = t >> 32;
        z1 += x0 * y1;

        return x1 * y1 + z2 + (z1 >> 32);
    }

    /**
     * @since 0.8 or earlier
     */
    public static long multiplyHighUnsigned(long x, long y) {
        // Checkstyle: stop
        long x0, y0, z0;
        long x1, y1, z1, z2, t;
        // Checkstyle: resume

        x0 = x & 0xFFFFFFFFL;
        x1 = x >>> 32;

        y0 = y & 0xFFFFFFFFL;
        y1 = y >>> 32;

        z0 = x0 * y0;
        t = x1 * y0 + (z0 >>> 32);
        z1 = t & 0xFFFFFFFFL;
        z2 = t >>> 32;
        z1 += x0 * y1;

        return x1 * y1 + z2 + (z1 >>> 32);
    }

    /**
     * Removes the decimal part (aka truncation or rounds towards zero) of the given float.
     * 

* This corresponds to the IEEE 754 {@code roundToIntegralTowardZero} operation (IEEE Std * 754-2008, section 5.9, page 41). * * @since 21.1 */ public static float truncate(float x) { return (float) truncate((double) x); } /** * Removes the decimal part (aka truncation or rounds towards zero) of the given double. *

* This corresponds to the IEEE 754 {@code roundToIntegralTowardZero} operation (IEEE Std * 754-2008, section 5.9, page 41). * * @since 21.1 */ public static double truncate(double x) { return x < 0.0 ? Math.ceil(x) : Math.floor(x); } }





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