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/*
 * Original Guava code is copyright (C) 2015 The Guava Authors.
 * Modifications from Guava are copyright (C) 2015 DiffPlug.
 *
 * 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.
 */
package com.google.common.hash;

import java.io.ByteArrayOutputStream;
import java.io.IOException;
import java.nio.charset.Charset;

import com.google.common.base.Preconditions;

/**
 * Skeleton implementation of {@link HashFunction}, appropriate for non-streaming algorithms.
 * All the hash computation done using {@linkplain #newHasher()} are delegated to the {@linkplain
 * #hashBytes(byte[], int, int)} method.
 *
 * @author Dimitris Andreou
 */
abstract class AbstractNonStreamingHashFunction implements HashFunction {
	@Override
	public Hasher newHasher() {
		return new BufferingHasher(32);
	}

	@Override
	public Hasher newHasher(int expectedInputSize) {
		Preconditions.checkArgument(expectedInputSize >= 0);
		return new BufferingHasher(expectedInputSize);
	}

	@Override
	public  HashCode hashObject(T instance, Funnel funnel) {
		return newHasher().putObject(instance, funnel).hash();
	}

	@Override
	public HashCode hashUnencodedChars(CharSequence input) {
		int len = input.length();
		Hasher hasher = newHasher(len * 2);
		for (int i = 0; i < len; i++) {
			hasher.putChar(input.charAt(i));
		}
		return hasher.hash();
	}

	@Override
	public HashCode hashString(CharSequence input, Charset charset) {
		return hashBytes(input.toString().getBytes(charset));
	}

	@Override
	public HashCode hashInt(int input) {
		return newHasher(4).putInt(input).hash();
	}

	@Override
	public HashCode hashLong(long input) {
		return newHasher(8).putLong(input).hash();
	}

	@Override
	public HashCode hashBytes(byte[] input) {
		return hashBytes(input, 0, input.length);
	}

	/**
	 * In-memory stream-based implementation of Hasher.
	 */
	private final class BufferingHasher extends AbstractHasher {
		final ExposedByteArrayOutputStream stream;
		static final int BOTTOM_BYTE = 0xFF;

		BufferingHasher(int expectedInputSize) {
			this.stream = new ExposedByteArrayOutputStream(expectedInputSize);
		}

		@Override
		public Hasher putByte(byte b) {
			stream.write(b);
			return this;
		}

		@Override
		public Hasher putBytes(byte[] bytes) {
			try {
				stream.write(bytes);
			} catch (IOException e) {
				throw new RuntimeException(e);
			}
			return this;
		}

		@Override
		public Hasher putBytes(byte[] bytes, int off, int len) {
			stream.write(bytes, off, len);
			return this;
		}

		@Override
		public Hasher putShort(short s) {
			stream.write(s & BOTTOM_BYTE);
			stream.write((s >>> 8) & BOTTOM_BYTE);
			return this;
		}

		@Override
		public Hasher putInt(int i) {
			stream.write(i & BOTTOM_BYTE);
			stream.write((i >>> 8) & BOTTOM_BYTE);
			stream.write((i >>> 16) & BOTTOM_BYTE);
			stream.write((i >>> 24) & BOTTOM_BYTE);
			return this;
		}

		@Override
		public Hasher putLong(long l) {
			for (int i = 0; i < 64; i += 8) {
				stream.write((byte) ((l >>> i) & BOTTOM_BYTE));
			}
			return this;
		}

		@Override
		public Hasher putChar(char c) {
			stream.write(c & BOTTOM_BYTE);
			stream.write((c >>> 8) & BOTTOM_BYTE);
			return this;
		}

		@Override
		public  Hasher putObject(T instance, Funnel funnel) {
			funnel.funnel(instance, this);
			return this;
		}

		@Override
		public HashCode hash() {
			return hashBytes(stream.byteArray(), 0, stream.length());
		}
	}

	// Just to access the byte[] without introducing an unnecessary copy
	private static final class ExposedByteArrayOutputStream extends ByteArrayOutputStream {
		ExposedByteArrayOutputStream(int expectedInputSize) {
			super(expectedInputSize);
		}

		byte[] byteArray() {
			return buf;
		}

		int length() {
			return count;
		}
	}
}




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