391 lines
No EOL
10 KiB
Java
391 lines
No EOL
10 KiB
Java
/*
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The contents of this file are subject to the THDL Open Community License
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Version 1.0 (the "License"); you may not use this file except in compliance
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with the License. You may obtain a copy of the License on the THDL web site
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(http://www.thdl.org/).
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Software distributed under the License is distributed on an "AS IS" basis,
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WITHOUT WARRANTY OF ANY KIND, either express or implied. See the
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License for the specific terms governing rights and limitations under the
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License.
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The Initial Developer of this software is the Tibetan and Himalayan Digital
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Library (THDL). Portions created by the THDL are Copyright 2001 THDL.
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All Rights Reserved.
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Contributor(s): ______________________________________.
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*/
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package org.thdl.tib.text;
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import java.util.*;
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import java.io.*;
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import java.lang.*;
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import java.net.URL;
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/**
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* An alternate (non-Extended Wylie) keyboard input
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* method. A keyboard URL is passed to its constructor. This URL
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* must follow a particular format, and include particular subparts.
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* For example, the keyboard URL must specify values for various
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* input parameters, as well as correspondences for the Wylie
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* characters this keyboard allows the user to input. For an example,
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* see the file 'sambhota_keyboard.ini' found in the same
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* directory as this class.
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* <p>
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* It is normative practice for a null keyboard to be
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* interpreted as the default Wylie keyboard.
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* A non-null keyboard defines a transformation of the default
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* Wylie keyboard, setting new values for each Wylie value, as
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* well as (re-)defining various parameters.
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*
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* @author Edward Garrett, Tibetan and Himalayan Digital Library
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* @version 1.0
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*/
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public class TibetanKeyboard {
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private boolean hasDisambiguatingKey;
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private char disambiguatingKey;
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private boolean hasSanskritStackingKey;
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private boolean hasTibetanStackingKey;
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private boolean isStackingMedial;
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private char stackingKey;
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private boolean isAChenRequiredBeforeVowel;
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private boolean isAChungConsonant;
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private boolean hasAVowel;
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private Map charMap;
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private Map vowelMap;
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private Map puncMap;
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private int command;
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private final int NO_COMMAND = 0;
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private final int PARAMETERS = 1;
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private final int CHARACTERS = 2;
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private final int VOWELS = 3;
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private final int PUNCTUATION = 4;
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/**
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* A generic Exception to indicate an invalid keyboard.
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*/
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public class InvalidKeyboardException extends Exception {
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}
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/**
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* Opens the URL specified by the parameter,
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* and tries to construct a keyboard from it. If the file is
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* missing, or is invalid, an InvalidKeyboardException is
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* thrown.
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*
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* @param url the URL of the keyboard
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* @throws InvalidKeyboardException a valid keyboard cannot be
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* constructed from this URL
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*/
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public TibetanKeyboard(URL url) throws InvalidKeyboardException {
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try {
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InputStreamReader isr = new InputStreamReader(url.openStream());
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BufferedReader in = new BufferedReader(isr);
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System.out.println("reading "+url.toString());
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String line;
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charMap = new HashMap();
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vowelMap = new HashMap();
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puncMap = new HashMap();
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command = NO_COMMAND;
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boolean bool;
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while ((line = in.readLine()) != null) {
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if (line.startsWith("<?")) { //line is command
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if (line.equalsIgnoreCase("<?parameters?>"))
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command = PARAMETERS;
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else if (line.equalsIgnoreCase("<?characters?>"))
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command = CHARACTERS;
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else if (line.equalsIgnoreCase("<?vowels?>"))
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command = VOWELS;
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else if (line.equalsIgnoreCase("<?punctuation?>"))
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command = PUNCTUATION;
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}
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else if (line.equals("")) //empty string
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;
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else {
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StringTokenizer st = new StringTokenizer(line,"=");
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String left = null, right = null;
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if (st.hasMoreTokens())
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left = st.nextToken();
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if (st.hasMoreTokens())
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right = st.nextToken();
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switch (command) {
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case NO_COMMAND:
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break;
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case PARAMETERS:
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if (left == null)
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throw new InvalidKeyboardException();
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if (right == null)
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break;
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if (left.equals("stack key")) {
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stackingKey = right.charAt(0);
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break;
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}
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if (left.equals("disambiguating key")) {
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disambiguatingKey = right.charAt(0);
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break;
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}
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bool = new Boolean(right).booleanValue();
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if (left.equalsIgnoreCase("has sanskrit stacking"))
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hasSanskritStackingKey = bool;
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if (left.equalsIgnoreCase("has tibetan stacking"))
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hasTibetanStackingKey = bool;
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if (left.equalsIgnoreCase("is stacking medial"))
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isStackingMedial = bool;
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if (left.equalsIgnoreCase("has disambiguating key"))
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hasDisambiguatingKey = bool;
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if (left.equalsIgnoreCase("needs achen before vowels"))
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isAChenRequiredBeforeVowel = bool;
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if (left.equalsIgnoreCase("has 'a' vowel"))
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hasAVowel = bool;
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if (left.equalsIgnoreCase("is achung consonant"))
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isAChungConsonant = bool;
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break;
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case CHARACTERS:
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if (left == null)
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throw new InvalidKeyboardException();
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if (right == null)
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break;
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charMap.put(right, left);
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break;
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case VOWELS:
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if (left == null)
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throw new InvalidKeyboardException();
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if (right == null)
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break;
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vowelMap.put(right, left);
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break;
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case PUNCTUATION:
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if (left == null)
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throw new InvalidKeyboardException();
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if (right == null)
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break;
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puncMap.put(right, left);
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break;
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}
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}
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}
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}
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catch (Exception e) {
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throw new InvalidKeyboardException();
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}
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}
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/**
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* Does this keyboard have a disambiguating key?
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* @return true if this keyboard has a disambiguating key, e.g.
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* the period in Wylie 'g.y' vs. Wylie 'gy', false otherwise
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*/
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public boolean hasDisambiguatingKey() {
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return hasDisambiguatingKey;
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}
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/**
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* Gets the disambiguating key for this keyboard.
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* @return the disambiguating key, assuming this keyboard has one
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*/
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public char getDisambiguatingKey() {
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return disambiguatingKey;
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}
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/**
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* Does this keyboard require a stacking key for Sanskrit stacks?
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* @return true if this keyboard requires a
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* stacking key for Sanskrit stacks
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*/
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public boolean hasSanskritStackingKey() {
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return hasSanskritStackingKey;
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}
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/**
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* Does this keyboard require a stacking key for Tibetan stacks?
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* @return true if this keyboard requires a
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* stacking key for Tibetan stacks
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*/
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public boolean hasTibetanStackingKey() {
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return hasTibetanStackingKey;
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}
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/**
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* Is stacking medial?
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* @return true if this keyboard has stacking, and
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* if that stacking is medial rather than pre/post.
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* In other words, if you want a stack consisting
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* of the (Wylie) characters 's', 'g', and 'r', and
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* if the stack key is '+', then if you get the
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* stack by typing 's+g+r', then this method returns
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* true. If you get it by typing '+sgr' or '+sgr+',
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* then the method returns false.
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*/
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public boolean isStackingMedial() {
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return isStackingMedial;
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}
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/**
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* Gets the stacking key.
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* @return the stacking key, if there is one
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*/
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public char getStackingKey() {
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return stackingKey;
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}
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/**
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* Must achen be typed first if you want achen plus a vowel?
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* @return true if it is necessary in this keyboard to
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* type achen plus a vowel to get achen plus a vowel,
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* or if you can (as in Wylie), simply type the vowel,
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* and then automatically get achen plus the vowel,
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* assuming there is no preceding consonant.
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*/
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public boolean isAChenRequiredBeforeVowel() {
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return isAChenRequiredBeforeVowel;
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}
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/**
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* Is achung treated as an ordinary consonant?
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* @return true if achung is counted as a consonant,
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* and thus treated as stackable like any other
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* consonant; false if achung is treated as a vowel,
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* as in Wylie.
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*/
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public boolean isAChungConsonant() {
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return isAChungConsonant;
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}
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/**
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* Does the keyboard have a key for the invisible 'a' vowel?
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* @return true if this keyboard has a keystroke
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* sequence for the invisible Wylie vowel 'a', false
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* if there is no way to type this invisible vowel.
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*/
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public boolean hasAVowel() {
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return hasAVowel;
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}
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/**
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* Decides whether or not a string is a character in this keyboard.
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* @return true if the parameter is a character
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* in this keyboard. This method checks to see
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* if the passed string has been mapped to a
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* Wylie character - if not, then it returns false.
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*
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* @param s the possible character
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*/
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public boolean isChar(String s) {
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if (charMap.containsKey(s))
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return true;
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else
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return false;
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}
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/**
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* Gets the Extended Wylie corresponding to this character.
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* @return the Wylie value corresponding to this
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* parameter, assuming it is in fact a character
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* in this keyboard; if not, returns null.
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*
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* @param the possible character
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*/
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public String getWylieForChar(String s) {
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if (!charMap.containsKey(s))
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return null;
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return (String)charMap.get(s);
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}
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/**
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* Decides whether or not a string is a punctuation mark in this keyboard?
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* @return true if the parameter is punctuation
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* in this keyboard. This method checks to see if the
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* passed string has been mapped to Wylie punctuation -
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* if not, then it returns false.
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*
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* @param s the possible punctuation
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*/
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public boolean isPunc(String s) {
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if (puncMap.containsKey(s))
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return true;
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else
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return false;
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}
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/**
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* Gets the Extended Wylie corresponding to this punctuation.
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* @return the Wylie value corresponding to this
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* parameter, assuming it is in fact punctuation
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* in this keyboard; if not, returns null.
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*
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* @param s the possible punctuation
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*/
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public String getWylieForPunc(String s) {
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if (!puncMap.containsKey(s))
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return null;
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return (String)puncMap.get(s);
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}
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/**
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* Decides whether or not the string is a vowel in this keyboard.
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* @return true if the parameter is a vowel
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* in this keyboard. This method checks to see if the
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* passed string has been mapped to a Wylie vowel -
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* if not, then it returns false.
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*
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* @param s the possible vowel
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*/
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public boolean isVowel(String s) {
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if (vowelMap.containsKey(s))
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return true;
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else
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return false;
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}
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/**
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* Gets the Extended Wylie corresponding to this vowel.
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* @return the Wylie value corresponding to this
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* parameter, assuming it is in fact a vowel
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* in this keyboard; if not, returns null.
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*
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* @param the possible vowel
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*/
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public String getWylieForVowel(String s) {
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if (!vowelMap.containsKey(s))
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return null;
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return (String)vowelMap.get(s);
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}
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} |