am be963611: Merge "Check contents in user history dictionary tests"
* commit 'be9636115689689a1f60da35658cacf0df90608d': Check contents in user history dictionary testsmain
commit
011ce47f12
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@ -24,6 +24,7 @@ import com.android.inputmethod.annotations.UsedForTesting;
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import com.android.inputmethod.keyboard.ProximityInfo;
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import com.android.inputmethod.latin.SuggestedWords.SuggestedWordInfo;
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import com.android.inputmethod.latin.personalization.DynamicPersonalizationDictionaryWriter;
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import com.android.inputmethod.latin.personalization.DynamicPredictionDictionaryBase;
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import com.android.inputmethod.latin.utils.CollectionUtils;
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import java.io.File;
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@ -72,7 +73,7 @@ abstract public class ExpandableBinaryDictionary extends Dictionary {
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private BinaryDictionary mBinaryDictionary;
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/** The in-memory dictionary used to generate the binary dictionary. */
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private AbstractDictionaryWriter mDictionaryWriter;
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protected AbstractDictionaryWriter mDictionaryWriter;
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/**
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* The name of this dictionary, used as the filename for storing the binary dictionary. Multiple
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@ -624,4 +625,35 @@ abstract public class ExpandableBinaryDictionary extends Dictionary {
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mLocalDictionaryController.writeLock().unlock();
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}
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}
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// TODO: Implement native binary methods once the dynamic dictionary implementation is done.
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@UsedForTesting
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public boolean isInDictionaryForTests(final String word) {
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mLocalDictionaryController.writeLock().lock();
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try {
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if (mDictType == Dictionary.TYPE_USER_HISTORY) {
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return ((DynamicPersonalizationDictionaryWriter) mDictionaryWriter)
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.isInDictionaryForTests(word);
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}
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} finally {
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mLocalDictionaryController.writeLock().unlock();
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}
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return false;
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}
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// TODO: Remove and use addToPersonalizationPredictionDictionary instead!!!!!!!!!!!!!!!!
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@UsedForTesting
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public void forceAddWordForTest(
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final String word0, final String word1, final boolean isValid) {
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mLocalDictionaryController.writeLock().lock();
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try {
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mDictionaryWriter.addUnigramWord(word1, null /* the "shortcut" parameter is null */,
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DynamicPredictionDictionaryBase.FREQUENCY_FOR_TYPED, false /* isNotAWord */);
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mDictionaryWriter.addBigramWords(word0, word1,
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DynamicPredictionDictionaryBase.FREQUENCY_FOR_TYPED, isValid,
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0 /* lastTouchedTime */);
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} finally {
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mLocalDictionaryController.writeLock().unlock();
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}
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}
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}
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@ -265,10 +265,10 @@ public class ExpandableDictionary extends Dictionary {
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return (node == null) ? false : !node.mShortcutOnly;
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}
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public boolean removeBigram(final String word1, final String word2) {
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public boolean removeBigram(final String word0, final String word1) {
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// Refer to addOrSetBigram() about word1.toLowerCase()
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final Node firstWord = searchWord(mRoots, word1.toLowerCase(), 0, null);
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final Node secondWord = searchWord(mRoots, word2, 0, null);
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final Node firstWord = searchWord(mRoots, word0.toLowerCase(), 0, null);
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final Node secondWord = searchWord(mRoots, word1, 0, null);
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LinkedList<NextWord> bigrams = firstWord.mNGrams;
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NextWord bigramNode = null;
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if (bigrams == null || bigrams.size() == 0) {
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@ -297,10 +297,10 @@ public class ExpandableDictionary extends Dictionary {
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return (node == null) ? -1 : node.mFrequency;
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}
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public NextWord getBigramWord(final String word1, final String word2) {
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// Refer to addOrSetBigram() about word1.toLowerCase()
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final Node firstWord = searchWord(mRoots, word1.toLowerCase(), 0, null);
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final Node secondWord = searchWord(mRoots, word2, 0, null);
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public NextWord getBigramWord(final String word0, final String word1) {
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// Refer to addOrSetBigram() about word0.toLowerCase()
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final Node firstWord = searchWord(mRoots, word0.toLowerCase(), 0, null);
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final Node secondWord = searchWord(mRoots, word1, 0, null);
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LinkedList<NextWord> bigrams = firstWord.mNGrams;
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if (bigrams == null || bigrams.size() == 0) {
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return null;
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@ -473,37 +473,41 @@ public class ExpandableDictionary extends Dictionary {
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}
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}
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public int setBigramAndGetFrequency(final String word1, final String word2,
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public int setBigramAndGetFrequency(final String word0, final String word1,
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final int frequency) {
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return setBigramAndGetFrequency(word1, word2, frequency, null /* unused */);
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return setBigramAndGetFrequency(word0, word1, frequency, null /* unused */);
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}
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public int setBigramAndGetFrequency(final String word1, final String word2,
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public int setBigramAndGetFrequency(final String word0, final String word1,
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final ForgettingCurveParams fcp) {
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return setBigramAndGetFrequency(word1, word2, 0 /* unused */, fcp);
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return setBigramAndGetFrequency(word0, word1, 0 /* unused */, fcp);
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}
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/**
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* Adds bigrams to the in-memory trie structure that is being used to retrieve any word
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* @param word1 the first word of this bigram
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* @param word2 the second word of this bigram
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* @param word0 the first word of this bigram
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* @param word1 the second word of this bigram
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* @param frequency frequency for this bigram
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* @param fcp an instance of ForgettingCurveParams to use for decay policy
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* @return returns the final bigram frequency
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*/
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private int setBigramAndGetFrequency(final String word1, final String word2,
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private int setBigramAndGetFrequency(final String word0, final String word1,
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final int frequency, final ForgettingCurveParams fcp) {
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if (TextUtils.isEmpty(word0)) {
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Log.e(TAG, "Invalid bigram previous word: " + word0);
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return frequency;
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}
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// We don't want results to be different according to case of the looked up left hand side
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// word. We do want however to return the correct case for the right hand side.
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// So we want to squash the case of the left hand side, and preserve that of the right
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// hand side word.
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final String word1Lower = word1.toLowerCase();
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if (TextUtils.isEmpty(word1Lower) || TextUtils.isEmpty(word2)) {
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Log.e(TAG, "Invalid bigram pair: " + word1 + ", " + word1Lower + ", " + word2);
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final String word0Lower = word0.toLowerCase();
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if (TextUtils.isEmpty(word0Lower) || TextUtils.isEmpty(word1)) {
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Log.e(TAG, "Invalid bigram pair: " + word0 + ", " + word0Lower + ", " + word1);
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return frequency;
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}
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final Node firstWord = searchWord(mRoots, word1Lower, 0, null);
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final Node secondWord = searchWord(mRoots, word2, 0, null);
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final Node firstWord = searchWord(mRoots, word0Lower, 0, null);
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final Node secondWord = searchWord(mRoots, word1, 0, null);
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LinkedList<NextWord> bigrams = firstWord.mNGrams;
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if (bigrams == null || bigrams.size() == 0) {
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firstWord.mNGrams = CollectionUtils.newLinkedList();
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@ -18,6 +18,7 @@ package com.android.inputmethod.latin.personalization;
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import android.content.Context;
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import com.android.inputmethod.annotations.UsedForTesting;
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import com.android.inputmethod.keyboard.ProximityInfo;
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import com.android.inputmethod.latin.AbstractDictionaryWriter;
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import com.android.inputmethod.latin.ExpandableDictionary;
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@ -156,4 +157,10 @@ public class DynamicPersonalizationDictionaryWriter extends AbstractDictionaryWr
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public boolean isValidWord(final String word) {
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return mExpandableDictionary.isValidWord(word);
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}
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@UsedForTesting
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public boolean isInDictionaryForTests(final String word) {
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// TODO: Use native method to determine whether the word is in dictionary or not
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return mBigramList.containsKey(word);
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}
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}
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@ -196,12 +196,6 @@ public abstract class DynamicPredictionDictionaryBase extends ExpandableBinaryDi
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return mLocale;
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}
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@UsedForTesting
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/* package for test */ void forceAddWordForTest(
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final String word0, final String word1, final boolean isValid) {
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addToPersonalizationPredictionDictionary(word0, word1, isValid);
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}
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public void registerUpdateSession(PersonalizationDictionaryUpdateSession session) {
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session.setPredictionDictionary(this);
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mSessions.add(session);
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@ -97,6 +97,10 @@ public final class UserHistoryDictionaryBigramList {
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return mBigramMap.isEmpty();
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}
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public boolean containsKey(String word) {
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return mBigramMap.containsKey(word);
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}
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public Set<String> keySet() {
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return mBigramMap.keySet();
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}
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@ -82,14 +82,29 @@ public class UserHistoryDictionaryTests extends AndroidTestCase {
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}
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}
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/**
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* @param checksContents if true, checks whether written words are actually in the dictionary
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* or not.
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*/
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private void addAndWriteRandomWords(final String testFilenameSuffix, final int numberOfWords,
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final Random random) {
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final Random random, final boolean checksContents) {
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final List<String> words = generateWords(numberOfWords, random);
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final UserHistoryPredictionDictionary dict =
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PersonalizationHelper.getUserHistoryPredictionDictionary(getContext(),
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testFilenameSuffix /* locale */, mPrefs);
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// Add random words to the user history dictionary.
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addToDict(dict, words);
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if (checksContents) {
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try {
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Thread.sleep(TimeUnit.MILLISECONDS.convert(5L, TimeUnit.SECONDS));
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} catch (InterruptedException e) {
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}
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for (int i = 0; i < 10 && i < numberOfWords; ++i) {
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final String word = words.get(i);
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// This may fail as long as we use tryLock on inserting the bigram words
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assertTrue(dict.isInDictionaryForTests(word));
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}
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}
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// write to file.
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dict.close();
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}
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@ -103,7 +118,8 @@ public class UserHistoryDictionaryTests extends AndroidTestCase {
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final Random random = new Random(123456);
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try {
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addAndWriteRandomWords(testFilenameSuffix, numberOfWords, random);
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addAndWriteRandomWords(testFilenameSuffix, numberOfWords, random,
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true /* checksContents */);
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} finally {
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try {
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Log.d(TAG, "waiting for writing ...");
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@ -148,7 +164,8 @@ public class UserHistoryDictionaryTests extends AndroidTestCase {
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final int index = i % numberOfLanguages;
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// Switch languages to testFilenameSuffixes[index].
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addAndWriteRandomWords(testFilenameSuffixes[index],
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numberOfWordsInsertedForEachLanguageSwitch, random);
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numberOfWordsInsertedForEachLanguageSwitch, random,
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false /* checksContents */);
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}
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final long end = System.currentTimeMillis();
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