blob: d4f4e8f9b08dcd8c5d1e4ca7404d5b58eb85040d [file] [log] [blame]
/*
* Copyright (C) 2017 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
import static art.Redefinition.doCommonClassRedefinition;
import java.util.Base64;
import java.util.Random;
import java.util.function.*;
import java.util.stream.*;
public class Main {
// The bytes below define the following java program.
// package java.lang;
// import java.math.*;
// public final class Long extends Number implements Comparable<Long> {
// public static final long MIN_VALUE = 0;
// public static final long MAX_VALUE = 0;
// public static final Class<Long> TYPE = null;
// static { }
// // Used for Stream.count for some reason.
// public static long sum(long a, long b) {
// return a + b;
// }
// // Used in stream/lambda functions.
// public Long(long value) {
// this.value = value;
// }
// // Used in stream/lambda functions.
// public static Long valueOf(long l) {
// return new Long(l);
// }
// // Intrinsic! Do something cool. Return i + 1
// public static long highestOneBit(long i) {
// return i + 1;
// }
// // Intrinsic! Do something cool. Return i - 1
// public static long lowestOneBit(long i) {
// return i - 1;
// }
// // Intrinsic! Do something cool. Return i + i
// public static int numberOfLeadingZeros(long i) {
// return (int)(i + i);
// }
// // Intrinsic! Do something cool. Return i & (i >>> 1);
// public static int numberOfTrailingZeros(long i) {
// return (int)(i & (i >>> 1));
// }
// // Intrinsic! Do something cool. Return 5
// public static int bitCount(long i) {
// return 5;
// }
// // Intrinsic! Do something cool. Return i
// public static long rotateLeft(long i, int distance) {
// return i;
// }
// // Intrinsic! Do something cool. Return 10 * i
// public static long rotateRight(long i, int distance) {
// return 10 * i;
// }
// // Intrinsic! Do something cool. Return -i
// public static long reverse(long i) {
// return -i;
// }
// // Intrinsic! Do something cool. Return 0
// public static int signum(long i) {
// return 0;
// }
// // Intrinsic! Do something cool. Return 0
// public static long reverseBytes(long i) {
// return 0;
// }
// public String toString() {
// return "Redefined Long! value (as double)=" + ((double)value);
// }
// public static String toString(long i, int radix) {
// throw new Error("Method redefined away!");
// }
// public static String toUnsignedString(long i, int radix) {
// throw new Error("Method redefined away!");
// }
// private static BigInteger toUnsignedBigInteger(long i) {
// throw new Error("Method redefined away!");
// }
// public static String toHexString(long i) {
// throw new Error("Method redefined away!");
// }
// public static String toOctalString(long i) {
// throw new Error("Method redefined away!");
// }
// public static String toBinaryString(long i) {
// throw new Error("Method redefined away!");
// }
// static String toUnsignedString0(long val, int shift) {
// throw new Error("Method redefined away!");
// }
// static int formatUnsignedLong(long val, int shift, char[] buf, int offset, int len) {
// throw new Error("Method redefined away!");
// }
// public static String toString(long i) {
// throw new Error("Method redefined away!");
// }
// public static String toUnsignedString(long i) {
// throw new Error("Method redefined away!");
// }
// static void getChars(long i, int index, char[] buf) {
// throw new Error("Method redefined away!");
// }
// static int stringSize(long x) {
// throw new Error("Method redefined away!");
// }
// public static long parseLong(String s, int radix) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static long parseLong(String s) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static long parseUnsignedLong(String s, int radix) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static long parseUnsignedLong(String s) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static Long valueOf(String s, int radix) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static Long valueOf(String s) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// public static Long decode(String nm) throws NumberFormatException {
// throw new Error("Method redefined away!");
// }
// private final long value;
// public Long(String s) throws NumberFormatException {
// this(0);
// throw new Error("Method redefined away!");
// }
// public byte byteValue() {
// throw new Error("Method redefined away!");
// }
// public short shortValue() {
// throw new Error("Method redefined away!");
// }
// public int intValue() {
// throw new Error("Method redefined away!");
// }
// public long longValue() {
// return value;
// }
// public float floatValue() {
// throw new Error("Method redefined away!");
// }
// public double doubleValue() {
// throw new Error("Method redefined away!");
// }
// public int hashCode() {
// throw new Error("Method redefined away!");
// }
// public static int hashCode(long value) {
// throw new Error("Method redefined away!");
// }
// public boolean equals(Object obj) {
// throw new Error("Method redefined away!");
// }
// public static Long getLong(String nm) {
// throw new Error("Method redefined away!");
// }
// public static Long getLong(String nm, long val) {
// throw new Error("Method redefined away!");
// }
// public static Long getLong(String nm, Long val) {
// throw new Error("Method redefined away!");
// }
// public int compareTo(Long anotherLong) {
// throw new Error("Method redefined away!");
// }
// public static int compare(long x, long y) {
// throw new Error("Method redefined away!");
// }
// public static int compareUnsigned(long x, long y) {
// throw new Error("Method redefined away!");
// }
// public static long divideUnsigned(long dividend, long divisor) {
// throw new Error("Method redefined away!");
// }
// public static long remainderUnsigned(long dividend, long divisor) {
// throw new Error("Method redefined away!");
// }
// public static final int SIZE = 64;
// public static final int BYTES = SIZE / Byte.SIZE;
// public static long max(long a, long b) {
// throw new Error("Method redefined away!");
// }
// public static long min(long a, long b) {
// throw new Error("Method redefined away!");
// }
// private static final long serialVersionUID = 0;
// }
private static final byte[] CLASS_BYTES = Base64.getDecoder().decode(
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"AAACAHQ=");
private static final byte[] DEX_BYTES = Base64.getDecoder().decode(
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static class FuncCmp implements LongPredicate {
final String name;
final LongPredicate p;
public FuncCmp(String name, LongPredicate p) {
this.name = name;
this.p = p;
}
public boolean test(long l) {
return p.test(l);
}
}
static FuncCmp l2l(String name, final LongUnaryOperator a, final LongUnaryOperator b) {
return new FuncCmp(name, (v) -> a.applyAsLong(v) == b.applyAsLong(v));
}
static FuncCmp l2i(String name, final LongToIntFunction a, final LongToIntFunction b) {
return new FuncCmp(name, (v) -> a.applyAsInt(v) == b.applyAsInt(v));
}
/** Interface for a long, int -> long function. */
static interface LI2IFunction { public long applyToLongInt(long a, int b); }
static FuncCmp li2l(String name, final Random r, final LI2IFunction a, final LI2IFunction b) {
return new FuncCmp(name, new LongPredicate() {
public boolean test(long v) {
int i = r.nextInt();
return a.applyToLongInt(v, i) == b.applyToLongInt(v, i);
}
});
}
public static void main(String[] args) {
doTest(10000);
}
public static void doTest(int iters) {
// Just transform immediately.
doCommonClassRedefinition(Long.class, CLASS_BYTES, DEX_BYTES);
final Random r = new Random();
FuncCmp[] comps = new FuncCmp[] {
l2l("highestOneBit", Long::highestOneBit, RedefinedLongIntrinsics::highestOneBit),
l2l("lowestOneBit", Long::lowestOneBit, RedefinedLongIntrinsics::lowestOneBit),
l2i("numberOfLeadingZeros",
Long::numberOfLeadingZeros,
RedefinedLongIntrinsics::numberOfLeadingZeros),
l2i("numberOfTrailingZeros",
Long::numberOfTrailingZeros,
RedefinedLongIntrinsics::numberOfTrailingZeros),
l2i("bitCount", Long::bitCount, RedefinedLongIntrinsics::bitCount),
li2l("rotateLeft", r, Long::rotateLeft, RedefinedLongIntrinsics::rotateLeft),
li2l("rotateRight", r, Long::rotateRight, RedefinedLongIntrinsics::rotateRight),
l2l("reverse", Long::reverse, RedefinedLongIntrinsics::reverse),
l2i("signum", Long::signum, RedefinedLongIntrinsics::signum),
l2l("reverseBytes", Long::reverseBytes, RedefinedLongIntrinsics::reverseBytes),
};
for (FuncCmp f : comps) {
// Just actually use ints so we can cast them back int the tests to print them (since we
// deleted a bunch of the Long methods needed for printing longs)!
int failures = (int)r.ints(iters)
.mapToLong((v) -> (long)v)
.filter(f.negate()) // Get all the test cases that failed.
.count();
if (failures != 0) {
double percent = 100.0d*((double)failures/(double)iters);
System.out.println("for intrinsic " + f.name + " " + failures + "/" + iters
+ " (" + Double.toString(percent) + "%) tests failed!");
}
}
System.out.println("Finished!");
}
}