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package com.sun.tools.javac.util;

import com.sun.tools.javac.code.Type;

Utilities for operating on constant values.

This is NOT part of any supported API. If you write code that depends on this, you do so at your own risk. This code and its internal interfaces are subject to change or deletion without notice.

/** * Utilities for operating on constant values. * * <p><b>This is NOT part of any supported API. * If you write code that depends on this, you do so at your own risk. * This code and its internal interfaces are subject to change or * deletion without notice.</b> */
public class Constants {
Converts a constant in internal representation (in which boolean, char, byte, short, and int are each represented by an Integer) into standard representation. Other values (including null) are returned unchanged.
/** * Converts a constant in internal representation (in which * boolean, char, byte, short, and int are each represented by an * Integer) into standard representation. Other values (including * null) are returned unchanged. */
public static Object decode(Object value, Type type) { if (value instanceof Integer) { int i = (Integer) value; switch (type.getTag()) { case BOOLEAN: return i != 0; case CHAR: return (char) i; case BYTE: return (byte) i; case SHORT: return (short) i; } } return value; }
Returns a string representation of a constant value (given in internal representation), quoted and formatted as in Java source.
/** * Returns a string representation of a constant value (given in * internal representation), quoted and formatted as in Java source. */
public static String format(Object value, Type type) { value = decode(value, type); switch (type.getTag()) { case BYTE: return formatByte((Byte) value); case LONG: return formatLong((Long) value); case FLOAT: return formatFloat((Float) value); case DOUBLE: return formatDouble((Double) value); case CHAR: return formatChar((Character) value); } if (value instanceof String) return formatString((String) value); return value + ""; }
Returns a string representation of a constant value (given in standard wrapped representation), quoted and formatted as in Java source.
/** * Returns a string representation of a constant value (given in * standard wrapped representation), quoted and formatted as in * Java source. */
public static String format(Object value) { if (value instanceof Byte) return formatByte((Byte) value); if (value instanceof Short) return formatShort((Short) value); if (value instanceof Long) return formatLong((Long) value); if (value instanceof Float) return formatFloat((Float) value); if (value instanceof Double) return formatDouble((Double) value); if (value instanceof Character) return formatChar((Character) value); if (value instanceof String) return formatString((String) value); if (value instanceof Integer || value instanceof Boolean) return value.toString(); else throw new IllegalArgumentException("Argument is not a primitive type or a string; it " + ((value == null) ? "is a null value." : "has class " + value.getClass().getName()) + "." ); } private static String formatByte(byte b) { return String.format("(byte)0x%02x", b); } private static String formatShort(short s) { return String.format("(short)%d", s); } private static String formatLong(long lng) { return lng + "L"; } private static String formatFloat(float f) { if (Float.isNaN(f)) return "0.0f/0.0f"; else if (Float.isInfinite(f)) return (f < 0) ? "-1.0f/0.0f" : "1.0f/0.0f"; else return f + "f"; } private static String formatDouble(double d) { if (Double.isNaN(d)) return "0.0/0.0"; else if (Double.isInfinite(d)) return (d < 0) ? "-1.0/0.0" : "1.0/0.0"; else return d + ""; } private static String formatChar(char c) { return '\'' + Convert.quote(c) + '\''; } private static String formatString(String s) { return '"' + Convert.quote(s) + '"'; } }