/* * Copyright (c) 1995, 2013, Oracle and/or its affiliates. All rights reserved. * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * This code is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License version 2 only, as * published by the Free Software Foundation. Oracle designates this * particular file as subject to the "Classpath" exception as provided * by Oracle in the LICENSE file that accompanied this code. * * This code is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License * version 2 for more details (a copy is included in the LICENSE file that * accompanied this code). * * You should have received a copy of the GNU General Public License version * 2 along with this work; if not, write to the Free Software Foundation, * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. * * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA * or visit www.oracle.com if you need additional information or have any * questions. */ package java.util; import android.compat.annotation.UnsupportedAppUsage; @SuppressWarnings({"unchecked", "deprecation", "all"}) public class Random implements java.io.Serializable { public Random() { throw new RuntimeException("Stub!"); } public Random(long seed) { throw new RuntimeException("Stub!"); } @UnsupportedAppUsage private static long seedUniquifier() { throw new RuntimeException("Stub!"); } private static long initialScramble(long seed) { throw new RuntimeException("Stub!"); } public synchronized void setSeed(long seed) { throw new RuntimeException("Stub!"); } protected int next(int bits) { throw new RuntimeException("Stub!"); } public void nextBytes(byte[] bytes) { throw new RuntimeException("Stub!"); } final long internalNextLong(long origin, long bound) { throw new RuntimeException("Stub!"); } final int internalNextInt(int origin, int bound) { throw new RuntimeException("Stub!"); } final double internalNextDouble(double origin, double bound) { throw new RuntimeException("Stub!"); } public int nextInt() { throw new RuntimeException("Stub!"); } public int nextInt(int bound) { throw new RuntimeException("Stub!"); } public long nextLong() { throw new RuntimeException("Stub!"); } public boolean nextBoolean() { throw new RuntimeException("Stub!"); } public float nextFloat() { throw new RuntimeException("Stub!"); } public double nextDouble() { throw new RuntimeException("Stub!"); } public synchronized double nextGaussian() { throw new RuntimeException("Stub!"); } public java.util.stream.IntStream ints(long streamSize) { throw new RuntimeException("Stub!"); } public java.util.stream.IntStream ints() { throw new RuntimeException("Stub!"); } public java.util.stream.IntStream ints( long streamSize, int randomNumberOrigin, int randomNumberBound) { throw new RuntimeException("Stub!"); } public java.util.stream.IntStream ints(int randomNumberOrigin, int randomNumberBound) { throw new RuntimeException("Stub!"); } public java.util.stream.LongStream longs(long streamSize) { throw new RuntimeException("Stub!"); } public java.util.stream.LongStream longs() { throw new RuntimeException("Stub!"); } public java.util.stream.LongStream longs( long streamSize, long randomNumberOrigin, long randomNumberBound) { throw new RuntimeException("Stub!"); } public java.util.stream.LongStream longs(long randomNumberOrigin, long randomNumberBound) { throw new RuntimeException("Stub!"); } public java.util.stream.DoubleStream doubles(long streamSize) { throw new RuntimeException("Stub!"); } public java.util.stream.DoubleStream doubles() { throw new RuntimeException("Stub!"); } public java.util.stream.DoubleStream doubles( long streamSize, double randomNumberOrigin, double randomNumberBound) { throw new RuntimeException("Stub!"); } public java.util.stream.DoubleStream doubles( double randomNumberOrigin, double randomNumberBound) { throw new RuntimeException("Stub!"); } private void readObject(java.io.ObjectInputStream s) throws java.lang.ClassNotFoundException, java.io.IOException { throw new RuntimeException("Stub!"); } private synchronized void writeObject(java.io.ObjectOutputStream s) throws java.io.IOException { throw new RuntimeException("Stub!"); } private void resetSeed(long seedVal) { throw new RuntimeException("Stub!"); } static final java.lang.String BadBound = "bound must be positive"; static final java.lang.String BadRange = "bound must be greater than origin"; static final java.lang.String BadSize = "size must be non-negative"; private static final double DOUBLE_UNIT = 1.1102230246251565E-16; private static final long addend = 11L; // 0xbL private boolean haveNextNextGaussian = false; private static final long mask = 281474976710655L; // 0xffffffffffffL private static final long multiplier = 25214903917L; // 0x5deece66dL private double nextNextGaussian; private final java.util.concurrent.atomic.AtomicLong seed; { seed = null; } private static final long seedOffset; static { seedOffset = 0; } private static final java.util.concurrent.atomic.AtomicLong seedUniquifier; static { seedUniquifier = null; } private static final java.io.ObjectStreamField[] serialPersistentFields; static { serialPersistentFields = new java.io.ObjectStreamField[0]; } static final long serialVersionUID = 3905348978240129619L; // 0x363296344bf00a53L private static final sun.misc.Unsafe unsafe; static { unsafe = null; } @SuppressWarnings({"unchecked", "deprecation", "all"}) static final class RandomDoublesSpliterator implements java.util.Spliterator.OfDouble { RandomDoublesSpliterator( java.util.Random rng, long index, long fence, double origin, double bound) { throw new RuntimeException("Stub!"); } public java.util.Random.RandomDoublesSpliterator trySplit() { throw new RuntimeException("Stub!"); } public long estimateSize() { throw new RuntimeException("Stub!"); } public int characteristics() { throw new RuntimeException("Stub!"); } public boolean tryAdvance(java.util.function.DoubleConsumer consumer) { throw new RuntimeException("Stub!"); } public void forEachRemaining(java.util.function.DoubleConsumer consumer) { throw new RuntimeException("Stub!"); } final double bound; { bound = 0; } final long fence; { fence = 0; } long index; final double origin; { origin = 0; } final java.util.Random rng; { rng = null; } } @SuppressWarnings({"unchecked", "deprecation", "all"}) static final class RandomIntsSpliterator implements java.util.Spliterator.OfInt { RandomIntsSpliterator(java.util.Random rng, long index, long fence, int origin, int bound) { throw new RuntimeException("Stub!"); } public java.util.Random.RandomIntsSpliterator trySplit() { throw new RuntimeException("Stub!"); } public long estimateSize() { throw new RuntimeException("Stub!"); } public int characteristics() { throw new RuntimeException("Stub!"); } public boolean tryAdvance(java.util.function.IntConsumer consumer) { throw new RuntimeException("Stub!"); } public void forEachRemaining(java.util.function.IntConsumer consumer) { throw new RuntimeException("Stub!"); } final int bound; { bound = 0; } final long fence; { fence = 0; } long index; final int origin; { origin = 0; } final java.util.Random rng; { rng = null; } } @SuppressWarnings({"unchecked", "deprecation", "all"}) static final class RandomLongsSpliterator implements java.util.Spliterator.OfLong { RandomLongsSpliterator( java.util.Random rng, long index, long fence, long origin, long bound) { throw new RuntimeException("Stub!"); } public java.util.Random.RandomLongsSpliterator trySplit() { throw new RuntimeException("Stub!"); } public long estimateSize() { throw new RuntimeException("Stub!"); } public int characteristics() { throw new RuntimeException("Stub!"); } public boolean tryAdvance(java.util.function.LongConsumer consumer) { throw new RuntimeException("Stub!"); } public void forEachRemaining(java.util.function.LongConsumer consumer) { throw new RuntimeException("Stub!"); } final long bound; { bound = 0; } final long fence; { fence = 0; } long index; final long origin; { origin = 0; } final java.util.Random rng; { rng = null; } } }