258 lines
6.1 KiB
C++
258 lines
6.1 KiB
C++
/*
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* The contents of this file are subject to the Mozilla Public
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* License Version 1.1 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS
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* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
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* implied. See the License for the specific language governing
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* rights and limitations under the License.
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*
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* The Original Code is TransforMiiX XSLT processor.
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*
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* The Initial Developer of the Original Code is The MITRE Corporation.
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* Portions created by MITRE are Copyright (C) 1999 The MITRE Corporation.
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*
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* Portions created by Keith Visco as a Non MITRE employee,
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* (C) 1999 Keith Visco. All Rights Reserved.
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*
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* Contributor(s):
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*
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* Keith Visco, kvisco@ziplink.net
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* -- original author.
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*
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* Larry Fitzpatrick, lef@opentext.com
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*
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* Eric Du, duxy@leyou.com.cn
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* -- added fix for FreeBSD
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*
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*/
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#include "primitives.h"
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#include <math.h>
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#ifdef WIN32
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#include <float.h>
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#endif
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//A trick to handle IEEE floating point exceptions on FreeBSD - E.D.
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#ifdef __FreeBSD__
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#include <floatingpoint.h>
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#endif
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//----------------------------/
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//- Implementation of Double -/
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//----------------------------/
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/**
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* A wrapper for the primitive double type, and provides some simple
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* floating point related routines
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**/
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//A trick to handle IEEE floating point exceptions on FreeBSD - E.D.
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#ifdef __FreeBSD__
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fp_except_t allmask = FP_X_INV|FP_X_OFL|FP_X_UFL|FP_X_DZ|FP_X_IMP|FP_X_DNML;
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fp_except_t oldmask = fpsetmask(~allmask);
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#endif
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//-- Initialize Double related constants
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double d0 = 0.0;
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const double Double::NaN = (d0/d0);
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const double Double::NEGATIVE_INFINITY = (-1.0/d0);
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const double Double::POSITIVE_INFINITY = (1.0/d0);
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/**
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* Creates a new Double with it's value initialized to 0;
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**/
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Double::Double() {
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value = 0;
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} //-- Double
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/**
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* Creates a new Double with it's value initialized to the given double
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**/
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Double::Double(double dbl) {
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this->value = dbl;
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} //-- Double
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/**
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* Creates a new Double with it's value initialized from the given String.
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* The String will be converted to a double. If the String does not
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* represent an IEEE 754 double, the value will be initialized to NaN
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**/
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Double::Double(const String& string) {
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this->value = toDouble(string);
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} //-- Double
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/**
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* Returns the value of this Double as a double
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**/
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double Double::doubleValue() {
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return this->value;
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} //-- doubleValue
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/**
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* Returns the value of this Double as an int
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**/
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int Double::intValue() {
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return (int)value;
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} //-- intValue
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/**
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* Determins whether the given double represents positive or negative
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* inifinity
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**/
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MBool Double::isInfinite(double dbl) {
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return (MBool)((dbl == POSITIVE_INFINITY ) || (dbl == NEGATIVE_INFINITY));
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} //-- isInfinite
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/**
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* Determins whether this Double's value represents positive or
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* negative inifinty
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**/
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MBool Double::isInfinite() {
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return (MBool)(( value == POSITIVE_INFINITY ) || (value == NEGATIVE_INFINITY));
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} //-- isInfinite
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/**
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* Determins whether the given double is NaN
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**/
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MBool Double::isNaN(double dbl) {
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#ifdef WIN32
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return _isnan(dbl);
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#else
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return (MBool) isnan(dbl);
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#endif
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} //-- isNaN
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/**
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* Determins whether this Double's value is NaN
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**/
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MBool Double::isNaN() {
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#ifdef WIN32
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return _isnan(value);
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#else
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return (MBool) isnan(value);
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#endif
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} //-- isNaN
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/**
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* Converts the given String to a double, if the String value does not
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* represent a double, NaN will be returned
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**/
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double Double::toDouble(const String& src) {
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double dbl = 0.0;
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double multiplier = 10.0;
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PRInt32 idx = 0;
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double sign = 1.0;
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//-- trim leading whitespace
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for ( ; idx < src.length(); idx++ )
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if ( src.charAt(idx) != ' ' ) break;
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//-- check first character for sign
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if ( idx < src.length() ) {
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PRInt32 ch = src.charAt(idx);
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if ( ch == '-' ) {
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sign = -1.0;
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++idx;
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}
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}
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else {
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return Double::NaN;
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}
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//-- convert remaining to number
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for ( ; idx < src.length(); idx++ ) {
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PRInt32 ch = src.charAt(idx);
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if (( ch >= '0') && (ch <= '9')) {
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if ( multiplier > 1.0 ) {
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dbl = dbl*multiplier;
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dbl += (double) (ch-48);
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}
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else {
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dbl += multiplier * (ch-48);
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multiplier = multiplier * 0.1;
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}
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}
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else if ( ch == '.') {
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if ( multiplier < 1.0 ) return Double::NaN;
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multiplier = 0.1;
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}
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else return Double::NaN;
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}
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dbl = dbl*sign;
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return dbl;
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} //-- toDouble
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/**
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* Converts the value of this Double to a String, and places
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* The result into the destination String.
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* @return the given dest string
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**/
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String& Double::toString(String& dest) {
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return toString(value, dest);
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} //-- toString
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/**
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* Converts the value of the given double to a String, and places
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* The result into the destination String.
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* @return the given dest string
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**/
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String& Double::toString(double value, String& dest) {
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//-- check for special cases
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if ( isNaN(value) ) {
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dest.append("NaN");
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return dest;
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}
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if ( isInfinite(value) ) {
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if (value < 0) dest.append('-');
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dest.append("Infinity");
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return dest;
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}
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MBool isNegative = (MBool)(value<0.0);
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double val = value;
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if ( isNegative ) val = val * -1.0;
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double ival = 0;
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double fval = modf(val, &ival);
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String iStr;
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int temp = (int)ival;
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if ( temp > 0.0 ) {
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while ( temp > 0.0 ) {
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iStr.append( (char) ((temp % 10)+48) );
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temp = temp / 10;
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}
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if ( isNegative ) iStr.append('-');
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iStr.reverse();
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}
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else iStr.append('0');
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iStr.append('.');
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if ( fval > 0.0 ) {
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while ( fval > 0.0000001 ) {
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fval = fval*10.0;
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fval = modf(fval, &ival);
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iStr.append( (char) (ival+48) );
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}
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}
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else iStr.append('0');
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dest.append(iStr);
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return dest;
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} //-- toString
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