Classify touches into three types.
Change-Id: I7c1d42835e0c15d596a1b66d421b0aa514ec0890main
parent
43149e454c
commit
258bfe66e0
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@ -31,141 +31,145 @@
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android:label="@string/subtype_en_US"
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android:imeSubtypeLocale="en_US"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="TrySuppressingImeSwitcher,AsciiCapable"
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android:imeSubtypeExtraValue="TrySuppressingImeSwitcher,AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_en_GB"
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android:imeSubtypeLocale="en_GB"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="TrySuppressingImeSwitcher,AsciiCapable"
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android:imeSubtypeExtraValue="TrySuppressingImeSwitcher,AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="ar"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="cs"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="da"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="de"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_de_qwerty"
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android:imeSubtypeLocale="de"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable,KeyboardLocale=de_ZZ"
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android:imeSubtypeExtraValue="AsciiCapable,KeyboardLocale=de_ZZ,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="es"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="fi"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="fr"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="fr_CA"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="fr_CH"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="hr"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="hu"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="it"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<!-- Java uses the deprecated "iw" code instead of the standard "he" code for Hebrew. -->
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="iw"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="nb"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="nl"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="pl"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="pt"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="ru"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="sr"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="sv"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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<subtype android:icon="@drawable/ic_subtype_keyboard"
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android:label="@string/subtype_generic"
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android:imeSubtypeLocale="tr"
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android:imeSubtypeMode="keyboard"
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android:imeSubtypeExtraValue="AsciiCapable"
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android:imeSubtypeExtraValue="AsciiCapable,SupportTouchPositionCorrection"
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/>
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</input-method>
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@ -19,6 +19,7 @@ package com.android.inputmethod.keyboard;
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import android.graphics.Rect;
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import com.android.inputmethod.keyboard.Key;
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import com.android.inputmethod.latin.SubtypeSwitcher;
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import com.android.inputmethod.latin.Utils;
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import com.android.inputmethod.latin.spellcheck.SpellCheckerProximityInfo;
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@ -31,6 +32,8 @@ public class ProximityInfo {
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/** Number of key widths from current touch point to search for nearest keys. */
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private static float SEARCH_DISTANCE = 1.2f;
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private static final int[] EMPTY_INT_ARRAY = new int[0];
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private static final String SUPPORT_TOUCH_POSITION_CORRECTION =
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"SupportTouchPositionCorrection";
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private final int mKeyHeight;
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private final int mGridWidth;
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@ -120,8 +123,10 @@ public class ProximityInfo {
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keyCharCodes[i] = key.mCode;
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}
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final SubtypeSwitcher switcher = SubtypeSwitcher.getInstance();
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final boolean hasTouchPositionCorrectionData =
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mTouchPositionCorrectionXs != null
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switcher.currentSubtypeContainsExtraValueKey(SUPPORT_TOUCH_POSITION_CORRECTION)
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&& mTouchPositionCorrectionXs != null
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&& mTouchPositionCorrectionYs != null
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&& mTouchPositionCorrectionRadii != null
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&& mTouchPositionCorrectionXs.length > 0
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@ -113,6 +113,9 @@ bool Correction::initProcessState(const int outputIndex) {
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mInputIndex = mCorrectionStates[outputIndex].mInputIndex;
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mNeedsToTraverseAllNodes = mCorrectionStates[outputIndex].mNeedsToTraverseAllNodes;
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mEquivalentCharStrongCount = mCorrectionStates[outputIndex].mEquivalentCharStrongCount;
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mEquivalentCharNormalCount = mCorrectionStates[outputIndex].mEquivalentCharNormalCount;
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mEquivalentCharWeakCount = mCorrectionStates[outputIndex].mEquivalentCharWeakCount;
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mProximityCount = mCorrectionStates[outputIndex].mProximityCount;
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mTransposedCount = mCorrectionStates[outputIndex].mTransposedCount;
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mExcessiveCount = mCorrectionStates[outputIndex].mExcessiveCount;
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@ -167,6 +170,9 @@ void Correction::incrementOutputIndex() {
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mCorrectionStates[mOutputIndex].mInputIndex = mInputIndex;
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mCorrectionStates[mOutputIndex].mNeedsToTraverseAllNodes = mNeedsToTraverseAllNodes;
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mCorrectionStates[mOutputIndex].mEquivalentCharStrongCount = mEquivalentCharStrongCount;
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mCorrectionStates[mOutputIndex].mEquivalentCharNormalCount = mEquivalentCharNormalCount;
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mCorrectionStates[mOutputIndex].mEquivalentCharWeakCount = mEquivalentCharWeakCount;
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mCorrectionStates[mOutputIndex].mProximityCount = mProximityCount;
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mCorrectionStates[mOutputIndex].mTransposedCount = mTransposedCount;
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mCorrectionStates[mOutputIndex].mExcessiveCount = mExcessiveCount;
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@ -208,6 +214,12 @@ Correction::CorrectionType Correction::processSkipChar(
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}
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}
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inline bool isEquivalentChar(ProximityInfo::ProximityType type) {
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// 'type ProximityInfo::EQUIVALENT_CHAR_WEAK' means that
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// type == ..._WEAK or type == ..._NORMAL or type == ..._STRONG.
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return type <= ProximityInfo::EQUIVALENT_CHAR_WEAK;
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}
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Correction::CorrectionType Correction::processCharAndCalcState(
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const int32_t c, const bool isTerminal) {
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const int correctionCount = (mSkippedCount + mExcessiveCount + mTransposedCount);
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@ -219,8 +231,9 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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bool incremented = false;
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if (mLastCharExceeded && mInputIndex == mInputLength - 1) {
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// TODO: Do not check the proximity if EditDistance exceeds the threshold
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const int matchId = mProximityInfo->getMatchedProximityId(mInputIndex, c, true);
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if (matchId == ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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const ProximityInfo::ProximityType matchId =
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mProximityInfo->getMatchedProximityId(mInputIndex, c, true);
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if (isEquivalentChar(matchId)) {
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mLastCharExceeded = false;
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--mExcessiveCount;
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} else if (matchId == ProximityInfo::NEAR_PROXIMITY_CHAR) {
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@ -264,8 +277,7 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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bool secondTransposing = false;
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if (mTransposedCount % 2 == 1) {
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if (mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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if (isEquivalentChar(mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false))) {
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++mTransposedCount;
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secondTransposing = true;
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} else if (mCorrectionStates[mOutputIndex].mExceeding) {
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@ -286,8 +298,8 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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// TODO: Change the limit if we'll allow two or more proximity chars with corrections
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const bool checkProximityChars = noCorrectionsHappenedSoFar || mProximityCount == 0;
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const int matchedProximityCharId = secondTransposing
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? ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR
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const ProximityInfo::ProximityType matchedProximityCharId = secondTransposing
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? ProximityInfo::EQUIVALENT_CHAR_NORMAL
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: mProximityInfo->getMatchedProximityId(mInputIndex, c, checkProximityChars);
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if (ProximityInfo::UNRELATED_CHAR == matchedProximityCharId) {
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@ -297,19 +309,18 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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// here refers to the previous state.
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if (canTryCorrection && mCorrectionStates[mOutputIndex].mProximityMatching
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&& mCorrectionStates[mOutputIndex].mExceeding
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&& mProximityInfo->getMatchedProximityId(mInputIndex, mWord[mOutputIndex], false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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&& isEquivalentChar(mProximityInfo->getMatchedProximityId(
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mInputIndex, mWord[mOutputIndex], false))) {
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// Conversion p->e
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++mExcessiveCount;
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--mProximityCount;
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} else if (mInputIndex < mInputLength - 1 && mOutputIndex > 0 && mTransposedCount > 0
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&& !mCorrectionStates[mOutputIndex].mTransposing
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&& mCorrectionStates[mOutputIndex - 1].mTransposing
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&& mProximityInfo->getMatchedProximityId(
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mInputIndex, mWord[mOutputIndex - 1], false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR
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&& mProximityInfo->getMatchedProximityId(mInputIndex + 1, c, false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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&& isEquivalentChar(mProximityInfo->getMatchedProximityId(
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mInputIndex, mWord[mOutputIndex - 1], false))
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&& isEquivalentChar(
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mProximityInfo->getMatchedProximityId(mInputIndex + 1, c, false))) {
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// Conversion t->e
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// Example:
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// occaisional -> occa sional
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@ -320,8 +331,8 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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} else if (mOutputIndex > 0 && mInputIndex > 0 && mTransposedCount > 0
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&& !mCorrectionStates[mOutputIndex].mTransposing
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&& mCorrectionStates[mOutputIndex - 1].mTransposing
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&& mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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&& isEquivalentChar(
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mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false))) {
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// Conversion t->s
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// Example:
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// chcolate -> chocolate
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@ -332,8 +343,8 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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} else if (canTryCorrection && mInputIndex > 0
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&& mCorrectionStates[mOutputIndex].mProximityMatching
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&& mCorrectionStates[mOutputIndex].mSkipping
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&& mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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&& isEquivalentChar(
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mProximityInfo->getMatchedProximityId(mInputIndex - 1, c, false))) {
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// Conversion p->s
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// Note: This logic tries saving cases like contrst --> contrast -- "a" is one of
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// proximity chars of "s", but it should rather be handled as a skipped char.
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@ -341,8 +352,8 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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--mProximityCount;
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return processSkipChar(c, isTerminal, false);
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} else if ((mExceeding || mTransposing) && mInputIndex - 1 < mInputLength
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&& mProximityInfo->getMatchedProximityId(mInputIndex + 1, c, false)
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== ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR) {
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&& isEquivalentChar(
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mProximityInfo->getMatchedProximityId(mInputIndex + 1, c, false))) {
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// 1.2. Excessive or transpose correction
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if (mTransposing) {
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++mTransposedCount;
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@ -362,14 +373,28 @@ Correction::CorrectionType Correction::processCharAndCalcState(
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}
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return UNRELATED;
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}
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} else if (secondTransposing
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|| ProximityInfo::SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR == matchedProximityCharId) {
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} else if (secondTransposing) {
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// If inputIndex is greater than mInputLength, that means there is no
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// proximity chars. So, we don't need to check proximity.
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mMatching = true;
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} else if (isEquivalentChar(matchedProximityCharId)) {
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mMatching = true;
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switch (matchedProximityCharId) {
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case ProximityInfo::EQUIVALENT_CHAR_STRONG:
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++mEquivalentCharStrongCount;
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break;
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case ProximityInfo::EQUIVALENT_CHAR_NORMAL:
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++mEquivalentCharNormalCount;
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break;
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case ProximityInfo::EQUIVALENT_CHAR_WEAK:
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++mEquivalentCharWeakCount;
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break;
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default:
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assert(false);
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}
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} else if (ProximityInfo::NEAR_PROXIMITY_CHAR == matchedProximityCharId) {
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mProximityMatching = true;
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incrementProximityCount();
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++mProximityCount;
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}
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mWord[mOutputIndex] = c;
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@ -102,11 +102,6 @@ private:
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inline CorrectionType processSkipChar(
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const int32_t c, const bool isTerminal, const bool inputIndexIncremented);
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// TODO: remove
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inline void incrementProximityCount() {
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++mProximityCount;
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}
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const int TYPED_LETTER_MULTIPLIER;
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const int FULL_WORD_MULTIPLIER;
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const ProximityInfo *mProximityInfo;
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@ -130,6 +125,9 @@ private:
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int mOutputIndex;
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int mInputIndex;
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int mEquivalentCharStrongCount;
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int mEquivalentCharNormalCount;
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int mEquivalentCharWeakCount;
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int mProximityCount;
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||||
int mExcessiveCount;
|
||||
int mTransposedCount;
|
||||
|
|
|
@ -29,6 +29,9 @@ struct CorrectionState {
|
|||
uint16_t mChildCount;
|
||||
uint8_t mInputIndex;
|
||||
|
||||
uint8_t mEquivalentCharStrongCount;
|
||||
uint8_t mEquivalentCharNormalCount;
|
||||
uint8_t mEquivalentCharWeakCount;
|
||||
uint8_t mProximityCount;
|
||||
uint8_t mTransposedCount;
|
||||
uint8_t mExcessiveCount;
|
||||
|
@ -63,7 +66,9 @@ inline static void initCorrectionState(CorrectionState *state, const int rootPos
|
|||
state->mExcessivePos = -1;
|
||||
state->mSkipPos = -1;
|
||||
|
||||
|
||||
state->mEquivalentCharStrongCount = 0;
|
||||
state->mEquivalentCharNormalCount = 0;
|
||||
state->mEquivalentCharWeakCount = 0;
|
||||
state->mProximityCount = 0;
|
||||
state->mTransposedCount = 0;
|
||||
state->mExcessiveCount = 0;
|
||||
|
|
|
@ -165,6 +165,8 @@ static void dumpWord(const unsigned short* word, const int length) {
|
|||
|
||||
#define KEYCODE_SPACE ' '
|
||||
|
||||
#define CALIBRATE_SCORE_BY_TOUCH_COORDINATES false
|
||||
|
||||
#define SUGGEST_WORDS_WITH_MISSING_CHARACTER true
|
||||
#define SUGGEST_WORDS_WITH_MISSING_SPACE_CHARACTER true
|
||||
#define SUGGEST_WORDS_WITH_EXCESSIVE_CHARACTER true
|
||||
|
@ -204,4 +206,7 @@ static void dumpWord(const unsigned short* word, const int length) {
|
|||
#define min(a,b) ((a)<(b)?(a):(b))
|
||||
#define max(a,b) ((a)>(b)?(a):(b))
|
||||
|
||||
// The ratio of neutral area radius to sweet spot radius.
|
||||
#define NEUTRAL_AREA_RADIUS_RATIO 1.3f
|
||||
|
||||
#endif // LATINIME_DEFINES_H
|
||||
|
|
|
@ -43,7 +43,8 @@ ProximityInfo::ProximityInfo(const int maxProximityCharsSize, const int keyboard
|
|||
KEYBOARD_HEIGHT(keyboardHeight), GRID_WIDTH(gridWidth), GRID_HEIGHT(gridHeight),
|
||||
CELL_WIDTH((keyboardWidth + gridWidth - 1) / gridWidth),
|
||||
CELL_HEIGHT((keyboardHeight + gridHeight - 1) / gridHeight),
|
||||
KEY_COUNT(min(keyCount, MAX_KEY_COUNT_IN_A_KEYBOARD)) {
|
||||
KEY_COUNT(min(keyCount, MAX_KEY_COUNT_IN_A_KEYBOARD)),
|
||||
mInputXCoordinates(NULL), mInputYCoordinates(NULL) {
|
||||
const int len = GRID_WIDTH * GRID_HEIGHT * MAX_PROXIMITY_CHARS_SIZE;
|
||||
mProximityCharsArray = new uint32_t[len];
|
||||
if (DEBUG_PROXIMITY_INFO) {
|
||||
|
@ -103,8 +104,11 @@ bool ProximityInfo::hasSpaceProximity(const int x, const int y) const {
|
|||
}
|
||||
|
||||
// TODO: Calculate nearby codes here.
|
||||
void ProximityInfo::setInputParams(const int* inputCodes, const int inputLength) {
|
||||
void ProximityInfo::setInputParams(const int* inputCodes, const int inputLength,
|
||||
const int* xCoordinates, const int* yCoordinates) {
|
||||
mInputCodes = inputCodes;
|
||||
mInputXCoordinates = xCoordinates;
|
||||
mInputYCoordinates = yCoordinates;
|
||||
mInputLength = inputLength;
|
||||
for (int i = 0; i < inputLength; ++i) {
|
||||
mPrimaryInputWord[i] = getPrimaryCharAt(i);
|
||||
|
@ -158,19 +162,37 @@ bool ProximityInfo::existsAdjacentProximityChars(const int index) const {
|
|||
ProximityInfo::ProximityType ProximityInfo::getMatchedProximityId(
|
||||
const int index, const unsigned short c, const bool checkProximityChars) const {
|
||||
const int *currentChars = getProximityCharsAt(index);
|
||||
const int firstChar = currentChars[0];
|
||||
const unsigned short baseLowerC = Dictionary::toBaseLowerCase(c);
|
||||
|
||||
// The first char in the array is what user typed. If it matches right away,
|
||||
// that means the user typed that same char for this pos.
|
||||
if (currentChars[0] == baseLowerC || currentChars[0] == c)
|
||||
return SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR;
|
||||
if (firstChar == baseLowerC || firstChar == c) {
|
||||
if (CALIBRATE_SCORE_BY_TOUCH_COORDINATES) {
|
||||
const SweetSpotType result = calculateSweetSpotType(index, baseLowerC);
|
||||
switch (result) {
|
||||
case UNKNOWN:
|
||||
return EQUIVALENT_CHAR_NORMAL;
|
||||
case IN_SWEET_SPOT:
|
||||
return EQUIVALENT_CHAR_STRONG;
|
||||
case IN_NEUTRAL_AREA:
|
||||
return EQUIVALENT_CHAR_NORMAL;
|
||||
case OUT_OF_NEUTRAL_AREA:
|
||||
return EQUIVALENT_CHAR_WEAK;
|
||||
default:
|
||||
assert(false);
|
||||
}
|
||||
} else {
|
||||
return EQUIVALENT_CHAR_NORMAL;
|
||||
}
|
||||
}
|
||||
|
||||
if (!checkProximityChars) return UNRELATED_CHAR;
|
||||
|
||||
// If the non-accented, lowercased version of that first character matches c,
|
||||
// then we have a non-accented version of the accented character the user
|
||||
// typed. Treat it as a close char.
|
||||
if (Dictionary::toBaseLowerCase(currentChars[0]) == baseLowerC)
|
||||
if (Dictionary::toBaseLowerCase(firstChar) == baseLowerC)
|
||||
return NEAR_PROXIMITY_CHAR;
|
||||
|
||||
// Not an exact nor an accent-alike match: search the list of close keys
|
||||
|
@ -185,6 +207,38 @@ ProximityInfo::ProximityType ProximityInfo::getMatchedProximityId(
|
|||
return UNRELATED_CHAR;
|
||||
}
|
||||
|
||||
inline float square(const float x) { return x * x; }
|
||||
|
||||
ProximityInfo::SweetSpotType ProximityInfo::calculateSweetSpotType(
|
||||
int index, unsigned short baseLowerC) const {
|
||||
if (KEY_COUNT == 0 || !mInputXCoordinates || !mInputYCoordinates
|
||||
|| baseLowerC > MAX_CHAR_CODE) {
|
||||
return UNKNOWN;
|
||||
}
|
||||
const int keyIndex = mCodeToKeyIndex[baseLowerC];
|
||||
if (keyIndex < 0) {
|
||||
return UNKNOWN;
|
||||
}
|
||||
const float sweetSpotRadius = mSweetSpotRadii[keyIndex];
|
||||
if (sweetSpotRadius <= 0.0) {
|
||||
return UNKNOWN;
|
||||
}
|
||||
const float sweetSpotCenterX = mSweetSpotCenterXs[keyIndex];
|
||||
const float sweetSpotCenterY = mSweetSpotCenterXs[keyIndex];
|
||||
const float inputX = (float)mInputXCoordinates[index];
|
||||
const float inputY = (float)mInputYCoordinates[index];
|
||||
const float squaredDistance =
|
||||
square(inputX - sweetSpotCenterX) + square(inputY - sweetSpotCenterY);
|
||||
const float squaredSweetSpotRadius = square(sweetSpotRadius);
|
||||
if (squaredDistance <= squaredSweetSpotRadius) {
|
||||
return IN_SWEET_SPOT;
|
||||
}
|
||||
if (squaredDistance <= square(NEUTRAL_AREA_RADIUS_RATIO) * squaredSweetSpotRadius) {
|
||||
return IN_NEUTRAL_AREA;
|
||||
}
|
||||
return OUT_OF_NEUTRAL_AREA;
|
||||
}
|
||||
|
||||
bool ProximityInfo::sameAsTyped(const unsigned short *word, int length) const {
|
||||
if (length != mInputLength) {
|
||||
return false;
|
||||
|
|
|
@ -27,10 +27,18 @@ class Correction;
|
|||
|
||||
class ProximityInfo {
|
||||
public:
|
||||
typedef enum { // Used as a return value for character comparison
|
||||
SAME_OR_ACCENTED_OR_CAPITALIZED_CHAR, // Same char, possibly with different case or accent
|
||||
NEAR_PROXIMITY_CHAR, // It is a char located nearby on the keyboard
|
||||
UNRELATED_CHAR // It is an unrelated char
|
||||
// Used as a return value for character comparison
|
||||
typedef enum {
|
||||
// Same char, possibly with different case or accent, and in the sweet spot of the char
|
||||
EQUIVALENT_CHAR_STRONG,
|
||||
// Same char, possibly with different case or accent, and in the outer sweet spot
|
||||
EQUIVALENT_CHAR_NORMAL,
|
||||
// Same char, possibly with different case or accent, and in the hit box of the char
|
||||
EQUIVALENT_CHAR_WEAK,
|
||||
// It is a char located nearby on the keyboard
|
||||
NEAR_PROXIMITY_CHAR,
|
||||
// It is an unrelated char
|
||||
UNRELATED_CHAR
|
||||
} ProximityType;
|
||||
|
||||
ProximityInfo(const int maxProximityCharsSize, const int keyboardWidth,
|
||||
|
@ -41,7 +49,8 @@ public:
|
|||
const float *sweetSpotCenterYs, const float *sweetSpotRadii);
|
||||
~ProximityInfo();
|
||||
bool hasSpaceProximity(const int x, const int y) const;
|
||||
void setInputParams(const int* inputCodes, const int inputLength);
|
||||
void setInputParams(const int* inputCodes, const int inputLength,
|
||||
const int *xCoordinates, const int *yCoordinates);
|
||||
const int* getProximityCharsAt(const int index) const;
|
||||
unsigned short getPrimaryCharAt(const int index) const;
|
||||
bool existsCharInProximityAt(const int index, const int c) const;
|
||||
|
@ -59,8 +68,20 @@ private:
|
|||
// The upper limit of the char code in mCodeToKeyIndex
|
||||
static const int MAX_CHAR_CODE = 127;
|
||||
|
||||
typedef enum {
|
||||
// cannot figure out the sweet spot type
|
||||
UNKNOWN,
|
||||
// touch position is out of neutral area of the given char
|
||||
OUT_OF_NEUTRAL_AREA,
|
||||
// touch position is in the neutral area of the given char
|
||||
IN_NEUTRAL_AREA,
|
||||
// touch position is in the sweet spot of the given char
|
||||
IN_SWEET_SPOT
|
||||
} SweetSpotType;
|
||||
|
||||
int getStartIndexFromCoordinates(const int x, const int y) const;
|
||||
void initializeCodeToKeyIndex();
|
||||
SweetSpotType calculateSweetSpotType(int index, unsigned short baseLowerC) const;
|
||||
const int MAX_PROXIMITY_CHARS_SIZE;
|
||||
const int KEYBOARD_WIDTH;
|
||||
const int KEYBOARD_HEIGHT;
|
||||
|
@ -70,6 +91,8 @@ private:
|
|||
const int CELL_HEIGHT;
|
||||
const int KEY_COUNT;
|
||||
const int *mInputCodes;
|
||||
const int *mInputXCoordinates;
|
||||
const int *mInputYCoordinates;
|
||||
uint32_t *mProximityCharsArray;
|
||||
int32_t mKeyXCoordinates[MAX_KEY_COUNT_IN_A_KEYBOARD];
|
||||
int32_t mKeyYCoordinates[MAX_KEY_COUNT_IN_A_KEYBOARD];
|
||||
|
|
|
@ -238,8 +238,8 @@ void UnigramDictionary::getWordSuggestions(ProximityInfo *proximityInfo,
|
|||
PROF_END(6);
|
||||
}
|
||||
|
||||
void UnigramDictionary::initSuggestions(ProximityInfo *proximityInfo, const int *xcoordinates,
|
||||
const int *ycoordinates, const int *codes, const int codesSize,
|
||||
void UnigramDictionary::initSuggestions(ProximityInfo *proximityInfo, const int *xCoordinates,
|
||||
const int *yCoordinates, const int *codes, const int codesSize,
|
||||
unsigned short *outWords, int *frequencies) {
|
||||
if (DEBUG_DICT) {
|
||||
LOGI("initSuggest");
|
||||
|
@ -247,7 +247,7 @@ void UnigramDictionary::initSuggestions(ProximityInfo *proximityInfo, const int
|
|||
mFrequencies = frequencies;
|
||||
mOutputChars = outWords;
|
||||
mInputLength = codesSize;
|
||||
proximityInfo->setInputParams(codes, codesSize);
|
||||
proximityInfo->setInputParams(codes, codesSize, xCoordinates, yCoordinates);
|
||||
mProximityInfo = proximityInfo;
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in New Issue