Merge "Make prevWord = null if the next word starts from a connector."
commit
83d2bc656f
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@ -547,14 +547,17 @@ public final class RichInputConnection {
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// Get information of the nth word before cursor. n = 1 retrieves the word immediately before
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// Get information of the nth word before cursor. n = 1 retrieves the word immediately before
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// the cursor, n = 2 retrieves the word before that, and so on. This splits on whitespace only.
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// the cursor, n = 2 retrieves the word before that, and so on. This splits on whitespace only.
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// Also, it won't return words that end in a separator (if the nth word before the cursor
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// Also, it won't return words that end in a separator (if the nth word before the cursor
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// ends in a separator, it returns information represents beginning-of-sentence).
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// ends in a separator, it returns information representing beginning-of-sentence).
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// Example :
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// Example :
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// (n = 1) "abc def|" -> def
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// (n = 1) "abc def|" -> def
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// (n = 1) "abc def |" -> def
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// (n = 1) "abc def |" -> def
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// (n = 1) "abc 'def|" -> 'def
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// (n = 1) "abc def. |" -> beginning-of-sentence
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// (n = 1) "abc def. |" -> beginning-of-sentence
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// (n = 1) "abc def . |" -> beginning-of-sentence
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// (n = 1) "abc def . |" -> beginning-of-sentence
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// (n = 2) "abc def|" -> abc
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// (n = 2) "abc def|" -> abc
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// (n = 2) "abc def |" -> abc
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// (n = 2) "abc def |" -> abc
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// (n = 2) "abc 'def|" -> empty. The context is different from "abc def", but we cannot
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// represent this situation using PrevWordsInfo. See TODO in the method.
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// (n = 2) "abc def. |" -> abc
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// (n = 2) "abc def. |" -> abc
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// (n = 2) "abc def . |" -> def
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// (n = 2) "abc def . |" -> def
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// (n = 2) "abc|" -> beginning-of-sentence
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// (n = 2) "abc|" -> beginning-of-sentence
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@ -565,6 +568,19 @@ public final class RichInputConnection {
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if (prev == null) return PrevWordsInfo.EMPTY_PREV_WORDS_INFO;
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if (prev == null) return PrevWordsInfo.EMPTY_PREV_WORDS_INFO;
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final String[] w = spaceRegex.split(prev);
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final String[] w = spaceRegex.split(prev);
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// Referring to the word after the nth word.
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if ((n - 1) > 0 && (n - 1) <= w.length) {
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final String wordFollowingTheNthPrevWord = w[w.length - n + 1];
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if (!wordFollowingTheNthPrevWord.isEmpty()) {
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final char firstChar = wordFollowingTheNthPrevWord.charAt(0);
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if (spacingAndPunctuations.isWordConnector(firstChar)) {
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// The word following the n-th prev word is starting with a word connector.
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// TODO: Return meaningful context for this case.
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return PrevWordsInfo.EMPTY_PREV_WORDS_INFO;
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}
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}
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}
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// If we can't find n words, or we found an empty word, the context is
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// If we can't find n words, or we found an empty word, the context is
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// beginning-of-sentence.
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// beginning-of-sentence.
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if (w.length < n) {
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if (w.length < n) {
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@ -704,11 +704,10 @@ public final class InputLogic {
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(!mConnection.isCursorTouchingWord(settingsValues.mSpacingAndPunctuations)
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(!mConnection.isCursorTouchingWord(settingsValues.mSpacingAndPunctuations)
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|| !settingsValues.mSpacingAndPunctuations.mCurrentLanguageHasSpaces)) {
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|| !settingsValues.mSpacingAndPunctuations.mCurrentLanguageHasSpaces)) {
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// Reset entirely the composing state anyway, then start composing a new word unless
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// Reset entirely the composing state anyway, then start composing a new word unless
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// the character is a single quote or a dash. The idea here is, single quote and dash
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// the character is a word connector. The idea here is, word connectors are not
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// are not separators and they should be treated as normal characters, except in the
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// separators and they should be treated as normal characters, except in the first
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// first position where they should not start composing a word.
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// position where they should not start composing a word.
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isComposingWord = (Constants.CODE_SINGLE_QUOTE != codePoint
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isComposingWord = !settingsValues.mSpacingAndPunctuations.isWordConnector(codePoint);
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&& Constants.CODE_DASH != codePoint);
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// Here we don't need to reset the last composed word. It will be reset
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// Here we don't need to reset the last composed word. It will be reset
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// when we commit this one, if we ever do; if on the other hand we backspace
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// when we commit this one, if we ever do; if on the other hand we backspace
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// it entirely and resume suggestions on the previous word, we'd like to still
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// it entirely and resume suggestions on the previous word, we'd like to still
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@ -719,12 +718,15 @@ public final class InputLogic {
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mWordComposer.processEvent(inputTransaction.mEvent);
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mWordComposer.processEvent(inputTransaction.mEvent);
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// If it's the first letter, make note of auto-caps state
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// If it's the first letter, make note of auto-caps state
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if (mWordComposer.isSingleLetter()) {
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if (mWordComposer.isSingleLetter()) {
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// We pass 1 to getPreviousWordForSuggestion because we were not composing a word
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// We pass 2 to getPreviousWordForSuggestion when the previous code point is a word
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// yet, so the word we want is the 1st word before the cursor.
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// connector. Otherwise, we pass 1 because we were not composing a word yet, so the
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// word we want is the 1st word before the cursor.
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mWordComposer.setCapitalizedModeAndPreviousWordAtStartComposingTime(
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mWordComposer.setCapitalizedModeAndPreviousWordAtStartComposingTime(
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inputTransaction.mShiftState,
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inputTransaction.mShiftState,
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getPrevWordsInfoFromNthPreviousWordForSuggestion(
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getPrevWordsInfoFromNthPreviousWordForSuggestion(
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settingsValues.mSpacingAndPunctuations, 1 /* nthPreviousWord */));
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settingsValues.mSpacingAndPunctuations,
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settingsValues.mSpacingAndPunctuations.isWordConnector(
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mConnection.getCodePointBeforeCursor()) ? 2 : 1));
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}
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}
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mConnection.setComposingText(getTextWithUnderline(
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mConnection.setComposingText(getTextWithUnderline(
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mWordComposer.getTypedWord()), 1);
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mWordComposer.getTypedWord()), 1);
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@ -186,6 +186,8 @@ public class RichInputConnectionAndTextRangeTests extends AndroidTestCase {
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"abc def", mSpacingAndPunctuations, 1).mPrevWord, "def");
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"abc def", mSpacingAndPunctuations, 1).mPrevWord, "def");
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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"abc def ", mSpacingAndPunctuations, 1).mPrevWord, "def");
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"abc def ", mSpacingAndPunctuations, 1).mPrevWord, "def");
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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"abc 'def", mSpacingAndPunctuations, 1).mPrevWord, "'def");
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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"abc def.", mSpacingAndPunctuations, 1), PrevWordsInfo.BEGINNING_OF_SENTENCE);
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"abc def.", mSpacingAndPunctuations, 1), PrevWordsInfo.BEGINNING_OF_SENTENCE);
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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@ -196,6 +198,8 @@ public class RichInputConnectionAndTextRangeTests extends AndroidTestCase {
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"abc? def", mSpacingAndPunctuations, 2), PrevWordsInfo.EMPTY_PREV_WORDS_INFO);
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"abc? def", mSpacingAndPunctuations, 2), PrevWordsInfo.EMPTY_PREV_WORDS_INFO);
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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"abc! def", mSpacingAndPunctuations, 2), PrevWordsInfo.EMPTY_PREV_WORDS_INFO);
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"abc! def", mSpacingAndPunctuations, 2), PrevWordsInfo.EMPTY_PREV_WORDS_INFO);
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assertEquals(RichInputConnection.getPrevWordsInfoFromNthPreviousWord(
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"abc 'def", mSpacingAndPunctuations, 2), PrevWordsInfo.EMPTY_PREV_WORDS_INFO);
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}
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}
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/**
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/**
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