forked from extern/Unexpected-Keyboard
Allow 8 symbols per key
'Keyboard.Key' now contains an array of size 9, giving each keyvalue an index. The algorithm for finding the nearest key during a swipe now needs 16 segments, which are now calculated as an angle. The algorithm does one more interation instead of 2 more, slightly reducing the sensitivity of corner values. The 'getAtDirection' function is moved into the Pointers class to clearly separate the two systems. The 'edgekey' attribute is now obsolete but is kept for compatibility. The flag is removed internally, key index are simply translated. Similarly, the 'slider' attribute now act on keys at index 5 and 6 instead of 2 and 3.
This commit is contained in:
parent
1f9e92ed60
commit
a6fe5cae00
@ -1,4 +1,25 @@
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<?xml version="1.0" encoding="utf-8"?>
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<!-- This file defines the QWERTY layout.
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A layout is made of keys arranged into rows. Keys can be made bigger with the
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'width' attribute and blank space can be added on the left of a key with the
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'shift' attribute.
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'key0' assigns the symbol on the middle of the key. 'key1', 'key2', etc..
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assign symbols to the corners of a key, they are arranged like this:
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1 7 2
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5 0 6
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3 8 4
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Keys prefixed with 'loc ' are not visible on the keyboard. They are used to
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specify a place for a key, if it needed to be added to the layout later.
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(for example, by the "Add keys to keyboard" option)
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See bottom_row.xml for the definition of the bottom row and neo2.xml for a
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layout that re-defines it.
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See srcs/juloo.keyboard2/KeyValue.java for the keys that have a special meaning.
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-->
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<keyboard>
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<row>
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<key key0="q" key2="1" key4="esc"/>
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@ -202,7 +202,14 @@ final class KeyValue
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@Override
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public boolean equals(Object obj)
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{
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KeyValue snd = (KeyValue)obj;
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return sameKey((KeyValue)obj);
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}
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/** Type-safe alternative to [equals]. */
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public boolean sameKey(KeyValue snd)
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{
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if (snd == null)
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return false;
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return _symbol.equals(snd._symbol) && _code == snd._code;
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}
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@ -260,6 +260,19 @@ public class Keyboard2View extends View
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}
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}
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/** Horizontal and vertical position of the 9 indexes. */
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static final Paint.Align[] LABEL_POSITION_H = new Paint.Align[]{
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Paint.Align.CENTER, Paint.Align.LEFT, Paint.Align.RIGHT, Paint.Align.LEFT,
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Paint.Align.RIGHT, Paint.Align.LEFT, Paint.Align.RIGHT,
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Paint.Align.CENTER, Paint.Align.CENTER
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};
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static final Vertical[] LABEL_POSITION_V = new Vertical[]{
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Vertical.CENTER, Vertical.TOP, Vertical.TOP, Vertical.BOTTOM,
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Vertical.BOTTOM, Vertical.CENTER, Vertical.CENTER, Vertical.TOP,
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Vertical.BOTTOM
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};
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@Override
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protected void onDraw(Canvas canvas)
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{
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@ -282,20 +295,12 @@ public class Keyboard2View extends View
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float keyW = _keyWidth * k.width - _config.keyHorizontalInterval;
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boolean isKeyDown = _pointers.isKeyDown(k);
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drawKeyFrame(canvas, x, y, keyW, keyH, isKeyDown);
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drawLabel(canvas, k.key0, keyW / 2f + x, y, keyH, isKeyDown);
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if (k.edgekeys)
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if (k.keys[0] != null)
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drawLabel(canvas, k.keys[0], keyW / 2f + x, y, keyH, isKeyDown);
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for (int i = 1; i < 9; i++)
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{
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drawSubLabel(canvas, k.key1, x, y, keyW, keyH, Paint.Align.CENTER, Vertical.TOP, isKeyDown);
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drawSubLabel(canvas, k.key3, x, y, keyW, keyH, Paint.Align.LEFT, Vertical.CENTER, isKeyDown);
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drawSubLabel(canvas, k.key2, x, y, keyW, keyH, Paint.Align.RIGHT, Vertical.CENTER, isKeyDown);
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drawSubLabel(canvas, k.key4, x, y, keyW, keyH, Paint.Align.CENTER, Vertical.BOTTOM, isKeyDown);
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}
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else
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{
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drawSubLabel(canvas, k.key1, x, y, keyW, keyH, Paint.Align.LEFT, Vertical.TOP, isKeyDown);
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drawSubLabel(canvas, k.key3, x, y, keyW, keyH, Paint.Align.LEFT, Vertical.BOTTOM, isKeyDown);
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drawSubLabel(canvas, k.key2, x, y, keyW, keyH, Paint.Align.RIGHT, Vertical.TOP, isKeyDown);
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drawSubLabel(canvas, k.key4, x, y, keyW, keyH, Paint.Align.RIGHT, Vertical.BOTTOM, isKeyDown);
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if (k.keys[i] != null)
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drawSubLabel(canvas, k.keys[i], x, y, keyW, keyH, i, isKeyDown);
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}
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if (k.indication != null)
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{
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@ -367,8 +372,6 @@ public class Keyboard2View extends View
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private void drawLabel(Canvas canvas, KeyboardData.Corner k, float x, float y, float keyH, boolean isKeyDown)
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{
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if (k == null)
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return;
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KeyValue kv = KeyModifier.modify(k.kv, _mods);
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if (kv == null)
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return;
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@ -381,11 +384,10 @@ public class Keyboard2View extends View
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}
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private void drawSubLabel(Canvas canvas, KeyboardData.Corner k, float x,
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float y, float keyW, float keyH, Paint.Align a, Vertical v,
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boolean isKeyDown)
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float y, float keyW, float keyH, int sub_index, boolean isKeyDown)
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{
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if (k == null)
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return;
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Paint.Align a = LABEL_POSITION_H[sub_index];
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Vertical v = LABEL_POSITION_V[sub_index];
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KeyValue kv = KeyModifier.modify(k.kv, _mods);
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if (kv == null)
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return;
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@ -5,6 +5,7 @@ import android.content.res.XmlResourceParser;
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import android.util.Xml;
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import java.io.StringReader;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.HashMap;
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import java.util.Iterator;
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import java.util.List;
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@ -278,50 +279,44 @@ class KeyboardData
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public static class Key
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{
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/*
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** 1 2
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** 0
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** 3 4
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/**
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* 1 7 2
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* 5 0 6
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* 3 8 4
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*/
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public final Corner key0;
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public final Corner key1;
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public final Corner key2;
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public final Corner key3;
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public final Corner key4;
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public final Corner[] keys;
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/** Key width in relative unit. */
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public final float width;
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/** Extra empty space on the left of the key. */
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public final float shift;
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/** Put keys 1 to 4 on the edges instead of the corners. */
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public final boolean edgekeys;
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/** Keys 2 and 3 are repeated as the finger moves laterally on the key.
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Used for the left and right arrow keys on the space bar. */
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public final boolean slider;
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/** String printed on the keys. It has no other effect. */
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public final String indication;
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protected Key(Corner k0, Corner k1, Corner k2, Corner k3, Corner k4, float w, float s, boolean e, boolean sl, String i)
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protected Key(Corner[] ks, float w, float s, boolean sl, String i)
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{
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key0 = k0;
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key1 = k1;
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key2 = k2;
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key3 = k3;
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key4 = k4;
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keys = ks;
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width = w;
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shift = s;
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edgekeys = e;
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slider = sl;
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indication = i;
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}
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public static Key parse(XmlPullParser parser) throws Exception
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{
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Corner k0 = Corner.parse_of_attr(parser, "key0");
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Corner k1 = Corner.parse_of_attr(parser, "key1");
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Corner k2 = Corner.parse_of_attr(parser, "key2");
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Corner k3 = Corner.parse_of_attr(parser, "key3");
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Corner k4 = Corner.parse_of_attr(parser, "key4");
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Corner[] ks = new Corner[9];
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ks[0] = Corner.parse_of_attr(parser, "key0");
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ks[1] = Corner.parse_of_attr(parser, "key1");
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ks[2] = Corner.parse_of_attr(parser, "key2");
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ks[3] = Corner.parse_of_attr(parser, "key3");
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ks[4] = Corner.parse_of_attr(parser, "key4");
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ks[5] = Corner.parse_of_attr(parser, "key5");
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ks[6] = Corner.parse_of_attr(parser, "key6");
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ks[7] = Corner.parse_of_attr(parser, "key7");
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ks[8] = Corner.parse_of_attr(parser, "key8");
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float width = attribute_float(parser, "width", 1f);
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float shift = attribute_float(parser, "shift", 0.f);
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boolean edgekeys = attribute_bool(parser, "edgekeys", false);
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@ -329,112 +324,86 @@ class KeyboardData
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String indication = parser.getAttributeValue(null, "indication");
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while (parser.next() != XmlPullParser.END_TAG)
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continue ;
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return new Key(k0, k1, k2, k3, k4, width, shift, edgekeys, slider, indication);
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if (edgekeys)
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ks = rearange_edgekeys(ks);
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return new Key(ks, width, shift, slider, indication);
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}
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/** New key with the width multiplied by 's'. */
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public Key scaleWidth(float s)
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{
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return new Key(key0, key1, key2, key3, key4, width * s, shift, edgekeys,
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slider, indication);
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return new Key(keys, width * s, shift, slider, indication);
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}
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public void getKeys(Set<KeyValue> dst)
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{
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getCorner(dst, key0);
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getCorner(dst, key1);
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getCorner(dst, key2);
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getCorner(dst, key3);
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getCorner(dst, key4);
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for (int i = 0; i < keys.length; i++)
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if (keys[i] != null)
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dst.add(keys[i].kv);
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}
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void getCorner(Set<KeyValue> dst, Corner k) { if (k != null) dst.add(k.kv); }
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public KeyValue getKeyValue(int i)
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{
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Corner c;
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switch (i)
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{
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case 0: c = key0; break;
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case 1: c = key1; break;
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case 2: c = key2; break;
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case 3: c = key3; break;
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case 4: c = key4; break;
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default: c = null; break;
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}
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return (c == null) ? null : c.kv;
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if (keys[i] == null)
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return null;
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return keys[i].kv;
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}
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public Key withKeyValue(int i, KeyValue kv)
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{
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Corner k0 = key0, k1 = key1, k2 = key2, k3 = key3, k4 = key4;
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Corner k = Corner.of_kv(kv);
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switch (i)
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{
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case 0: k0 = k; break;
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case 1: k1 = k; break;
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case 2: k2 = k; break;
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case 3: k3 = k; break;
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case 4: k4 = k; break;
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}
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return new Key(k0, k1, k2, k3, k4, width, shift, edgekeys, slider,
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indication);
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Corner[] ks = Arrays.copyOf(keys, keys.length);
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ks[i] = Corner.of_kv(kv);
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return new Key(ks, width, shift, slider, indication);
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}
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public Key withShift(float s)
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{
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return new Key(key0, key1, key2, key3, key4, width, s, edgekeys, slider,
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indication);
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}
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/**
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* See Pointers.onTouchMove() for the represented direction.
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*/
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public KeyValue getAtDirection(int direction)
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{
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Corner c = null;
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if (edgekeys)
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{
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// \ 1 /
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// \ /
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// 3 0 2
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// / \
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// / 4 \
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switch (direction)
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{
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case 2: case 3: c = key1; break;
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case 4: case 5: c = key2; break;
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case 6: case 7: c = key4; break;
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case 8: case 1: c = key3; break;
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}
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}
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else
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{
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// 1 | 2
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// |
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// --0--
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// |
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// 3 | 4
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switch (direction)
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{
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case 1: case 2: c = key1; break;
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case 3: case 4: c = key2; break;
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case 5: case 6: c = key4; break;
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case 7: case 8: c = key3; break;
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}
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}
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return (c == null) ? null : c.kv;
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return new Key(keys, width, s, slider, indication);
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}
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public boolean hasValue(KeyValue kv)
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{
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return (hasValue(key0, kv) || hasValue(key1, kv) || hasValue(key2, kv) ||
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hasValue(key3, kv) || hasValue(key4, kv));
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for (int i = 0; i < keys.length; i++)
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if (keys[i] != null && keys[i].kv.equals(kv))
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return true;
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return false;
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}
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private static boolean hasValue(Corner c, KeyValue kv)
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public boolean hasValue(KeyValue kv, int i)
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{
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return (c != null && c.kv.equals(kv));
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if (keys[i] == null)
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return false;
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return kv.equals(keys[i].kv);
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}
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/** Transform the key index for edgekeys.
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* This option is no longer useful but is used by some layouts.
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* 1 7 2 5 1 7
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* 5 0 6 → 3 0 2
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* 3 8 4 8 4 6
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*/
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static Corner[] rearange_edgekeys(Corner[] ks)
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{
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Corner[] edge_ks = new Corner[ks.length];
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for (int i = 0; i < ks.length; i++)
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edge_ks[edgekey_index(i)] = ks[i];
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return edge_ks;
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}
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static int edgekey_index(int i)
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{
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switch (i)
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{
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case 5: return 1;
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case 1: return 7;
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case 7: return 2;
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case 3: return 5;
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case 2: return 6;
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case 8: return 3;
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case 4: return 8;
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case 6: return 4;
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default: return i;
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}
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}
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}
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@ -491,15 +460,15 @@ class KeyboardData
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public Key apply(Key k)
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{
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return new Key(apply(k.key0), apply(k.key1), apply(k.key2),
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apply(k.key3), apply(k.key4), k.width, k.shift, k.edgekeys,
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k.slider, k.indication);
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Corner[] ks = new Corner[k.keys.length];
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for (int i = 0; i < ks.length; i++)
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if (k.keys[i] != null)
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ks[i] = apply(k.keys[i]);
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return new Key(ks, k.width, k.shift, k.slider, k.indication);
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}
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protected Corner apply(Corner c)
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{
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if (c == null)
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return null;
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KeyValue kv = apply(c.kv, c.localized);
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return (kv == null) ? null : new Corner(kv, c.localized);
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}
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@ -167,32 +167,49 @@ public final class Pointers implements Handler.Callback
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// Don't take latched modifiers into account if an other key is pressed.
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// The other key already "own" the latched modifiers and will clear them.
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Modifiers mods = getModifiers(isOtherPointerDown());
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KeyValue value = handleKV(key.key0, mods);
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KeyValue value = handleKV(key.keys[0], mods);
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Pointer ptr = new Pointer(pointerId, key, value, x, y, mods);
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_ptrs.add(ptr);
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startKeyRepeat(ptr);
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_handler.onPointerDown(false);
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}
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static final int[] DIRECTION_TO_INDEX = new int[]{
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7, 2, 2, 6, 6, 4, 4, 8, 8, 3, 3, 5, 5, 1, 1, 7
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};
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/**
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* [direction] is an int between [0] and [15] that represent 16 sections of a
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* circle, clockwise, starting at the top.
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*/
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KeyValue getKeyAtDirection(KeyboardData.Key k, int direction)
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{
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int i = DIRECTION_TO_INDEX[direction];
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if (k.keys[i] == null)
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return null;
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return k.keys[i].kv;
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}
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/*
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* Get the KeyValue at the given direction. In case of swipe (!= 0), get the
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* nearest KeyValue that is not key0.
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* Get the KeyValue at the given direction. In case of swipe (direction !=
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* null), get the nearest KeyValue that is not key0.
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* Take care of applying [_handler.onPointerSwipe] to the selected key, this
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* must be done at the same time to be sure to treat removed keys correctly.
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* Return [null] if no key could be found in the given direction or if the
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* selected key didn't change.
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*/
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private KeyValue getKeyAtDirection(Pointer ptr, int direction)
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private KeyValue getNearestKeyAtDirection(Pointer ptr, Integer direction)
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{
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if (direction == 0)
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return handleKV(ptr.key.key0, ptr.modifiers);
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if (direction == null)
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return handleKV(ptr.key.keys[0], ptr.modifiers);
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KeyValue k;
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for (int i = 0; i > -3; i = (~i>>31) - i)
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// [i] is [0, -1, 1, -2, 2, ...]
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for (int i = 0; i > -4; i = (~i>>31) - i)
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{
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int d = (direction + i + 8 - 1) % 8 + 1;
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int d = (direction + i + 16 - 1) % 16;
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// Don't make the difference between a key that doesn't exist and a key
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// that is removed by [_handler]. Triggers side effects.
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k = _handler.modifyKey(ptr.key.getAtDirection(d), ptr.modifiers);
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k = _handler.modifyKey(getKeyAtDirection(ptr.key, d), ptr.modifiers);
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if (k != null)
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return k;
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}
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@ -225,45 +242,32 @@ public final class Pointers implements Handler.Callback
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}
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float dist = Math.abs(dx) + Math.abs(dy);
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int direction;
|
||||
Integer direction;
|
||||
if (dist < _config.swipe_dist_px)
|
||||
{
|
||||
direction = 0;
|
||||
direction = null;
|
||||
}
|
||||
else
|
||||
{
|
||||
// One of the 8 directions:
|
||||
// |\2|3/|
|
||||
// |1\|/4|
|
||||
// |-----|
|
||||
// |8/|\5|
|
||||
// |/7|6\|
|
||||
direction = 1;
|
||||
if (dx > 0) direction += 2;
|
||||
if (dx > Math.abs(dy) || (dx < 0 && dx > -Math.abs(dy))) direction += 1;
|
||||
if (dy > 0) direction = 9 - direction;
|
||||
// See [getKeyAtDirection()] for the meaning. The starting point on the
|
||||
// circle is the top direction.
|
||||
double a = Math.atan2(dy, dx); // between -pi and +pi, 0 is to the right
|
||||
direction = ((int)(a * 16 / (Math.PI * 2)) + 21) % 16;
|
||||
}
|
||||
|
||||
if (direction != ptr.selected_direction)
|
||||
{
|
||||
ptr.selected_direction = direction;
|
||||
KeyValue newValue = getKeyAtDirection(ptr, direction);
|
||||
if (newValue != null && (ptr.value == null || !newValue.equals(ptr.value)))
|
||||
KeyValue newValue = getNearestKeyAtDirection(ptr, direction);
|
||||
if (newValue != null && !newValue.equals(ptr.value))
|
||||
{
|
||||
ptr.value = newValue;
|
||||
ptr.flags = newValue.getFlags();
|
||||
// Sliding mode is entered when key2 or key3 is down on a slider key.
|
||||
if (ptr.key.slider)
|
||||
// Sliding mode is entered when key5 or key6 is down on a slider key.
|
||||
if (ptr.key.slider &&
|
||||
(ptr.key.hasValue(newValue, 5) || ptr.key.hasValue(newValue, 6)))
|
||||
{
|
||||
switch (direction)
|
||||
{
|
||||
case 1:
|
||||
case 8:
|
||||
case 4:
|
||||
case 5:
|
||||
startSliding(ptr, dy);
|
||||
break;
|
||||
}
|
||||
}
|
||||
_handler.onPointerDown(true);
|
||||
}
|
||||
@ -419,9 +423,8 @@ public final class Pointers implements Handler.Callback
|
||||
int count = (int)(dx / _config.slide_step_px);
|
||||
if (count == ptr.sliding_count)
|
||||
return;
|
||||
KeyValue newValue = handleKV(
|
||||
(count < ptr.sliding_count) ? ptr.key.key3 : ptr.key.key2,
|
||||
ptr.modifiers);
|
||||
int key_index = (count < ptr.sliding_count) ? 5 : 6;
|
||||
KeyValue newValue = handleKV(ptr.key.keys[key_index], ptr.modifiers);
|
||||
ptr.sliding_count = count;
|
||||
ptr.value = newValue;
|
||||
if (newValue != null)
|
||||
@ -434,8 +437,8 @@ public final class Pointers implements Handler.Callback
|
||||
public int pointerId;
|
||||
/** The Key pressed by this Pointer */
|
||||
public final KeyboardData.Key key;
|
||||
/** Current direction. */
|
||||
public int selected_direction;
|
||||
/** Current direction. [null] means not swiping. */
|
||||
public Integer selected_direction;
|
||||
/** Selected value with [modifiers] applied. */
|
||||
public KeyValue value;
|
||||
public float downX;
|
||||
@ -455,7 +458,7 @@ public final class Pointers implements Handler.Callback
|
||||
{
|
||||
pointerId = p;
|
||||
key = k;
|
||||
selected_direction = 0;
|
||||
selected_direction = null;
|
||||
value = v;
|
||||
downX = x;
|
||||
downY = y;
|
||||
|
Loading…
Reference in New Issue
Block a user