26bd46095a
Just skipping historical information fields. Bug: 11281877 Change-Id: I43d2adaa576b7da11ed3ca54990265dbb6f53b08
576 lines
26 KiB
Java
576 lines
26 KiB
Java
/*
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* Copyright (C) 2013 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package com.android.inputmethod.latin;
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import android.test.AndroidTestCase;
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import android.test.suitebuilder.annotation.LargeTest;
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import android.util.Pair;
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import com.android.inputmethod.latin.makedict.CodePointUtils;
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import com.android.inputmethod.latin.makedict.DictDecoder;
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import com.android.inputmethod.latin.makedict.FormatSpec;
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import com.android.inputmethod.latin.makedict.FusionDictionary;
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import com.android.inputmethod.latin.makedict.FusionDictionary.PtNode;
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import com.android.inputmethod.latin.makedict.UnsupportedFormatException;
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import com.android.inputmethod.latin.utils.FileUtils;
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import java.io.File;
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import java.io.IOException;
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import java.util.ArrayList;
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import java.util.HashMap;
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import java.util.Locale;
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import java.util.Map;
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import java.util.Random;
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import java.util.concurrent.TimeUnit;
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@LargeTest
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public class BinaryDictionaryDecayingTests extends AndroidTestCase {
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private static final String TEST_DICT_FILE_EXTENSION = ".testDict";
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private static final String TEST_LOCALE = "test";
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private static final int DUMMY_PROBABILITY = 0;
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private int mCurrentTime = 0;
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@Override
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protected void setUp() throws Exception {
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super.setUp();
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mCurrentTime = 0;
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}
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@Override
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protected void tearDown() throws Exception {
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super.tearDown();
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stopTestModeInNativeCode();
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}
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private void addUnigramWord(final BinaryDictionary binaryDictionary, final String word,
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final int probability) {
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binaryDictionary.addUnigramWord(word, probability, "" /* shortcutTarget */,
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BinaryDictionary.NOT_A_PROBABILITY /* shortcutProbability */,
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false /* isNotAWord */, false /* isBlacklisted */,
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mCurrentTime /* timestamp */);
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}
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private void addBigramWords(final BinaryDictionary binaryDictionary, final String word0,
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final String word1, final int probability) {
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binaryDictionary.addBigramWords(word0, word1, probability,
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mCurrentTime /* timestamp */);
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}
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private void forcePassingShortTime(final BinaryDictionary binaryDictionary) {
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// 4 days.
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final int timeToElapse = (int)TimeUnit.SECONDS.convert(4, TimeUnit.DAYS);
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mCurrentTime += timeToElapse;
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setCurrentTimeForTestMode(mCurrentTime);
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binaryDictionary.flushWithGC();
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}
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private void forcePassingLongTime(final BinaryDictionary binaryDictionary) {
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// 60 days.
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final int timeToElapse = (int)TimeUnit.SECONDS.convert(60, TimeUnit.DAYS);
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mCurrentTime += timeToElapse;
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setCurrentTimeForTestMode(mCurrentTime);
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binaryDictionary.flushWithGC();
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}
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private File createEmptyDictionaryAndGetFile(final String dictId,
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final int formatVersion) throws IOException {
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if (formatVersion == FormatSpec.VERSION4) {
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return createEmptyVer4DictionaryAndGetFile(dictId);
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} else {
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throw new IOException("Dictionary format version " + formatVersion
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+ " is not supported.");
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}
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}
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private File createEmptyVer4DictionaryAndGetFile(final String dictId) throws IOException {
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final File file = File.createTempFile(dictId, TEST_DICT_FILE_EXTENSION,
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getContext().getCacheDir());
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FileUtils.deleteRecursively(file);
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Map<String, String> attributeMap = new HashMap<String, String>();
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attributeMap.put(FormatSpec.FileHeader.DICTIONARY_ID_ATTRIBUTE, dictId);
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attributeMap.put(FormatSpec.FileHeader.DICTIONARY_LOCALE_ATTRIBUTE, dictId);
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attributeMap.put(FormatSpec.FileHeader.DICTIONARY_VERSION_ATTRIBUTE,
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String.valueOf(TimeUnit.MILLISECONDS.toSeconds(System.currentTimeMillis())));
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attributeMap.put(FormatSpec.FileHeader.USES_FORGETTING_CURVE_ATTRIBUTE,
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FormatSpec.FileHeader.ATTRIBUTE_VALUE_TRUE);
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attributeMap.put(FormatSpec.FileHeader.HAS_HISTORICAL_INFO_ATTRIBUTE,
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FormatSpec.FileHeader.ATTRIBUTE_VALUE_TRUE);
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if (BinaryDictionary.createEmptyDictFile(file.getAbsolutePath(),
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FormatSpec.VERSION4, attributeMap)) {
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return file;
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} else {
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throw new IOException("Empty dictionary " + file.getAbsolutePath()
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+ " cannot be created.");
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}
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}
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private static int setCurrentTimeForTestMode(final int currentTime) {
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return BinaryDictionary.setCurrentTimeForTest(currentTime);
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}
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private static int stopTestModeInNativeCode() {
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return BinaryDictionary.setCurrentTimeForTest(-1);
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}
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public void testReadDictInJavaSide() {
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testReadDictInJavaSide(FormatSpec.VERSION4);
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}
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private void testReadDictInJavaSide(final int formatVersion) {
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setCurrentTimeForTestMode(mCurrentTime);
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "ab", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "aaa", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "aaa", DUMMY_PROBABILITY);
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binaryDictionary.flushWithGC();
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binaryDictionary.close();
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final DictDecoder dictDecoder = FormatSpec.getDictDecoder(dictFile);
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try {
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final FusionDictionary dict = dictDecoder.readDictionaryBinary(null,
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false /* deleteDictIfBroken */);
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PtNode ptNode = FusionDictionary.findWordInTree(dict.mRootNodeArray, "a");
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assertNotNull(ptNode);
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assertTrue(ptNode.isTerminal());
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assertNotNull(ptNode.getBigram("aaa"));
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ptNode = FusionDictionary.findWordInTree(dict.mRootNodeArray, "ab");
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assertNotNull(ptNode);
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assertTrue(ptNode.isTerminal());
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ptNode = FusionDictionary.findWordInTree(dict.mRootNodeArray, "aaa");
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assertNotNull(ptNode);
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assertTrue(ptNode.isTerminal());
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} catch (IOException e) {
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fail("IOException while reading dictionary: " + e);
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} catch (UnsupportedFormatException e) {
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fail("Unsupported format: " + e);
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}
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dictFile.delete();
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}
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public void testControlCurrentTime() {
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testControlCurrentTime(FormatSpec.VERSION4);
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}
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private void testControlCurrentTime(final int formatVersion) {
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final int TEST_COUNT = 1000;
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final long seed = System.currentTimeMillis();
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final Random random = new Random(seed);
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final int startTime = stopTestModeInNativeCode();
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for (int i = 0; i < TEST_COUNT; i++) {
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final int currentTime = random.nextInt(Integer.MAX_VALUE);
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final int currentTimeInNativeCode = setCurrentTimeForTestMode(currentTime);
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assertEquals(currentTime, currentTimeInNativeCode);
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}
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final int endTime = stopTestModeInNativeCode();
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final int MAX_ALLOWED_ELAPSED_TIME = 10;
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assertTrue(startTime <= endTime && endTime <= startTime + MAX_ALLOWED_ELAPSED_TIME);
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}
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public void testAddValidAndInvalidWords() {
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testAddValidAndInvalidWords(FormatSpec.VERSION4);
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}
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private void testAddValidAndInvalidWords(final int formatVersion) {
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
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addUnigramWord(binaryDictionary, "a", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "a", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "a", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "a", Dictionary.NOT_A_PROBABILITY);
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assertTrue(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidWord("b"));
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addBigramWords(binaryDictionary, "a", "b", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidBigram("a", "b"));
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addBigramWords(binaryDictionary, "a", "b", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidBigram("a", "b"));
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addBigramWords(binaryDictionary, "a", "b", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidBigram("a", "b"));
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addBigramWords(binaryDictionary, "a", "b", Dictionary.NOT_A_PROBABILITY);
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assertTrue(binaryDictionary.isValidBigram("a", "b"));
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addUnigramWord(binaryDictionary, "c", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "c", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidBigram("a", "c"));
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// Add bigrams of not valid unigrams.
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addBigramWords(binaryDictionary, "x", "y", Dictionary.NOT_A_PROBABILITY);
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assertFalse(binaryDictionary.isValidBigram("x", "y"));
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addBigramWords(binaryDictionary, "x", "y", DUMMY_PROBABILITY);
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assertFalse(binaryDictionary.isValidBigram("x", "y"));
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binaryDictionary.close();
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dictFile.delete();
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}
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public void testDecayingProbability() {
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testDecayingProbability(FormatSpec.VERSION4);
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}
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private void testDecayingProbability(final int formatVersion) {
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidWord("a"));
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forcePassingShortTime(binaryDictionary);
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assertFalse(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidWord("a"));
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forcePassingShortTime(binaryDictionary);
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assertTrue(binaryDictionary.isValidWord("a"));
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forcePassingLongTime(binaryDictionary);
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assertFalse(binaryDictionary.isValidWord("a"));
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidBigram("a", "b"));
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forcePassingShortTime(binaryDictionary);
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assertFalse(binaryDictionary.isValidBigram("a", "b"));
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "a", DUMMY_PROBABILITY);
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addUnigramWord(binaryDictionary, "b", DUMMY_PROBABILITY);
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addBigramWords(binaryDictionary, "a", "b", DUMMY_PROBABILITY);
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assertTrue(binaryDictionary.isValidBigram("a", "b"));
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forcePassingShortTime(binaryDictionary);
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assertTrue(binaryDictionary.isValidBigram("a", "b"));
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forcePassingLongTime(binaryDictionary);
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assertFalse(binaryDictionary.isValidBigram("a", "b"));
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binaryDictionary.close();
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dictFile.delete();
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}
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public void testAddManyUnigramsToDecayingDict() {
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testAddManyUnigramsToDecayingDict(FormatSpec.VERSION4);
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}
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private void testAddManyUnigramsToDecayingDict(final int formatVersion) {
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final int unigramCount = 30000;
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final int unigramTypedCount = 100000;
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final int codePointSetSize = 50;
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final long seed = System.currentTimeMillis();
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final Random random = new Random(seed);
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
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setCurrentTimeForTestMode(mCurrentTime);
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final int[] codePointSet = CodePointUtils.generateCodePointSet(codePointSetSize, random);
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final ArrayList<String> words = new ArrayList<String>();
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for (int i = 0; i < unigramCount; i++) {
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final String word = CodePointUtils.generateWord(random, codePointSet);
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words.add(word);
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}
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final int maxUnigramCount = Integer.parseInt(
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binaryDictionary.getPropertyForTest(BinaryDictionary.MAX_UNIGRAM_COUNT_QUERY));
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for (int i = 0; i < unigramTypedCount; i++) {
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final String word = words.get(random.nextInt(words.size()));
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addUnigramWord(binaryDictionary, word, DUMMY_PROBABILITY);
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if (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
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final int unigramCountBeforeGC =
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Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY));
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while (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
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forcePassingShortTime(binaryDictionary);
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}
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final int unigramCountAfterGC =
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Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY));
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assertTrue(unigramCountBeforeGC > unigramCountAfterGC);
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}
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}
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assertTrue(Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY)) > 0);
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assertTrue(Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY)) <= maxUnigramCount);
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forcePassingLongTime(binaryDictionary);
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assertEquals(0, Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY)));
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}
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public void testOverflowUnigrams() {
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testOverflowUnigrams(FormatSpec.VERSION4);
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}
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private void testOverflowUnigrams(final int formatVersion) {
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final int unigramCount = 20000;
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final int eachUnigramTypedCount = 5;
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final int strongUnigramTypedCount = 20;
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final int weakUnigramTypedCount = 1;
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final int codePointSetSize = 50;
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final long seed = System.currentTimeMillis();
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final Random random = new Random(seed);
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
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setCurrentTimeForTestMode(mCurrentTime);
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final int[] codePointSet = CodePointUtils.generateCodePointSet(codePointSetSize, random);
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final String strong = "strong";
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final String weak = "weak";
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for (int j = 0; j < strongUnigramTypedCount; j++) {
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addUnigramWord(binaryDictionary, strong, DUMMY_PROBABILITY);
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}
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for (int j = 0; j < weakUnigramTypedCount; j++) {
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addUnigramWord(binaryDictionary, weak, DUMMY_PROBABILITY);
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}
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assertTrue(binaryDictionary.isValidWord(strong));
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assertTrue(binaryDictionary.isValidWord(weak));
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for (int i = 0; i < unigramCount; i++) {
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final String word = CodePointUtils.generateWord(random, codePointSet);
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for (int j = 0; j < eachUnigramTypedCount; j++) {
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addUnigramWord(binaryDictionary, word, DUMMY_PROBABILITY);
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}
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if (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
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final int unigramCountBeforeGC =
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Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY));
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assertTrue(binaryDictionary.isValidWord(strong));
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assertTrue(binaryDictionary.isValidWord(weak));
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binaryDictionary.flushWithGC();
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final int unigramCountAfterGC =
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Integer.parseInt(binaryDictionary.getPropertyForTest(
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BinaryDictionary.UNIGRAM_COUNT_QUERY));
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assertTrue(unigramCountBeforeGC > unigramCountAfterGC);
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assertFalse(binaryDictionary.isValidWord(weak));
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assertTrue(binaryDictionary.isValidWord(strong));
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break;
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}
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}
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}
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public void testAddManyBigramsToDecayingDict() {
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testAddManyBigramsToDecayingDict(FormatSpec.VERSION4);
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}
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private void testAddManyBigramsToDecayingDict(final int formatVersion) {
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final int unigramCount = 5000;
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final int bigramCount = 30000;
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final int bigramTypedCount = 100000;
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final int codePointSetSize = 50;
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final long seed = System.currentTimeMillis();
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final Random random = new Random(seed);
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File dictFile = null;
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try {
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dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
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} catch (IOException e) {
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fail("IOException while writing an initial dictionary : " + e);
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}
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BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
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0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
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Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
|
|
setCurrentTimeForTestMode(mCurrentTime);
|
|
|
|
final int[] codePointSet = CodePointUtils.generateCodePointSet(codePointSetSize, random);
|
|
final ArrayList<String> words = new ArrayList<String>();
|
|
final ArrayList<Pair<String, String>> bigrams = new ArrayList<Pair<String, String>>();
|
|
|
|
for (int i = 0; i < unigramCount; ++i) {
|
|
final String word = CodePointUtils.generateWord(random, codePointSet);
|
|
words.add(word);
|
|
}
|
|
for (int i = 0; i < bigramCount; ++i) {
|
|
final int word0Index = random.nextInt(words.size());
|
|
int word1Index = random.nextInt(words.size() - 1);
|
|
if (word1Index >= word0Index) {
|
|
word1Index += 1;
|
|
}
|
|
final String word0 = words.get(word0Index);
|
|
final String word1 = words.get(word1Index);
|
|
final Pair<String, String> bigram = new Pair<String, String>(word0, word1);
|
|
bigrams.add(bigram);
|
|
}
|
|
|
|
final int maxBigramCount = Integer.parseInt(
|
|
binaryDictionary.getPropertyForTest(BinaryDictionary.MAX_BIGRAM_COUNT_QUERY));
|
|
for (int i = 0; i < bigramTypedCount; ++i) {
|
|
final Pair<String, String> bigram = bigrams.get(random.nextInt(bigrams.size()));
|
|
addUnigramWord(binaryDictionary, bigram.first, DUMMY_PROBABILITY);
|
|
addUnigramWord(binaryDictionary, bigram.second, DUMMY_PROBABILITY);
|
|
addBigramWords(binaryDictionary, bigram.first, bigram.second, DUMMY_PROBABILITY);
|
|
|
|
if (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
|
|
final int bigramCountBeforeGC =
|
|
Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY));
|
|
while (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
|
|
forcePassingShortTime(binaryDictionary);
|
|
}
|
|
final int bigramCountAfterGC =
|
|
Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY));
|
|
assertTrue(bigramCountBeforeGC > bigramCountAfterGC);
|
|
}
|
|
}
|
|
|
|
assertTrue(Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY)) > 0);
|
|
assertTrue(Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY)) <= maxBigramCount);
|
|
forcePassingLongTime(binaryDictionary);
|
|
assertEquals(0, Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY)));
|
|
}
|
|
|
|
public void testOverflowBigrams() {
|
|
testOverflowBigrams(FormatSpec.VERSION4);
|
|
}
|
|
|
|
private void testOverflowBigrams(final int formatVersion) {
|
|
final int bigramCount = 20000;
|
|
final int unigramCount = 1000;
|
|
final int unigramTypedCount = 20;
|
|
final int eachBigramTypedCount = 5;
|
|
final int strongBigramTypedCount = 20;
|
|
final int weakBigramTypedCount = 1;
|
|
final int codePointSetSize = 50;
|
|
final long seed = System.currentTimeMillis();
|
|
final Random random = new Random(seed);
|
|
|
|
File dictFile = null;
|
|
try {
|
|
dictFile = createEmptyDictionaryAndGetFile("TestBinaryDictionary", formatVersion);
|
|
} catch (IOException e) {
|
|
fail("IOException while writing an initial dictionary : " + e);
|
|
}
|
|
BinaryDictionary binaryDictionary = new BinaryDictionary(dictFile.getAbsolutePath(),
|
|
0 /* offset */, dictFile.length(), true /* useFullEditDistance */,
|
|
Locale.getDefault(), TEST_LOCALE, true /* isUpdatable */);
|
|
setCurrentTimeForTestMode(mCurrentTime);
|
|
final int[] codePointSet = CodePointUtils.generateCodePointSet(codePointSetSize, random);
|
|
|
|
final ArrayList<String> words = new ArrayList<String>();
|
|
for (int i = 0; i < unigramCount; i++) {
|
|
final String word = CodePointUtils.generateWord(random, codePointSet);
|
|
words.add(word);
|
|
for (int j = 0; j < unigramTypedCount; j++) {
|
|
addUnigramWord(binaryDictionary, word, DUMMY_PROBABILITY);
|
|
}
|
|
}
|
|
final String strong = "strong";
|
|
final String weak = "weak";
|
|
final String target = "target";
|
|
for (int j = 0; j < unigramTypedCount; j++) {
|
|
addUnigramWord(binaryDictionary, strong, DUMMY_PROBABILITY);
|
|
addUnigramWord(binaryDictionary, weak, DUMMY_PROBABILITY);
|
|
addUnigramWord(binaryDictionary, target, DUMMY_PROBABILITY);
|
|
}
|
|
binaryDictionary.flushWithGC();
|
|
for (int j = 0; j < strongBigramTypedCount; j++) {
|
|
addBigramWords(binaryDictionary, strong, target, DUMMY_PROBABILITY);
|
|
}
|
|
for (int j = 0; j < weakBigramTypedCount; j++) {
|
|
addBigramWords(binaryDictionary, weak, target, DUMMY_PROBABILITY);
|
|
}
|
|
assertTrue(binaryDictionary.isValidBigram(strong, target));
|
|
assertTrue(binaryDictionary.isValidBigram(weak, target));
|
|
|
|
for (int i = 0; i < bigramCount; i++) {
|
|
final int word0Index = random.nextInt(words.size());
|
|
final String word0 = words.get(word0Index);
|
|
final int index = random.nextInt(words.size() - 1);
|
|
final int word1Index = (index >= word0Index) ? index + 1 : index;
|
|
final String word1 = words.get(word1Index);
|
|
|
|
for (int j = 0; j < eachBigramTypedCount; j++) {
|
|
addBigramWords(binaryDictionary, word0, word1, DUMMY_PROBABILITY);
|
|
}
|
|
if (binaryDictionary.needsToRunGC(true /* mindsBlockByGC */)) {
|
|
final int bigramCountBeforeGC =
|
|
Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY));
|
|
binaryDictionary.flushWithGC();
|
|
final int bigramCountAfterGC =
|
|
Integer.parseInt(binaryDictionary.getPropertyForTest(
|
|
BinaryDictionary.BIGRAM_COUNT_QUERY));
|
|
assertTrue(bigramCountBeforeGC > bigramCountAfterGC);
|
|
assertTrue(binaryDictionary.isValidBigram(strong, target));
|
|
assertFalse(binaryDictionary.isValidBigram(weak, target));
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|