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126 lines
5.2 KiB
C++
126 lines
5.2 KiB
C++
/*
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* Copyright (C) 2007-2009 Petri Damstén <damu@iki.fi>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU Library General Public License as
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* published by the Free Software Foundation; either version 2, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this program; if not, write to the
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* Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include "temperature.h"
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#include "converter.h"
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#include <klocale.h>
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using namespace KUnitConversion;
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class CelsiusConv : public Complex
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{
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double toDefault(double value) const { return value + 273.15; };
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double fromDefault(double value) const { return value - 273.15; };
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};
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class FahrenheitConv : public Complex
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{
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double toDefault(double value) const { return (value + 459.67) * 5.0 / 9.0; };
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double fromDefault(double value) const { return (value * 9.0 / 5.0) - 459.67; };
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};
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class DelisleConv : public Complex
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{
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double toDefault(double value) const { return 373.15 - (value * 2.0 / 3.0); };
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double fromDefault(double value) const { return (373.15 - value) * 3.0 / 2.0; };
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};
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class NewtonConv : public Complex
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{
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double toDefault(double value) const { return (value * 100.0 / 33.0) + 273.15; };
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double fromDefault(double value) const { return (value - 273.15) * 33.0 / 100.0; };
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};
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class ReaumurConv : public Complex
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{
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double toDefault(double value) const { return (value * 5.0 / 4.0) + 273.15; };
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double fromDefault(double value) const { return (value - 273.15) * 4.0 / 5.0; };
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};
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class RomerConv : public Complex
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{
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double toDefault(double value) const { return (value - 7.5) * 40.0 / 21.0 + 273.15; };
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double fromDefault(double value) const { return (value - 273.15) * 21.0 / 40.0 + 7.5; };
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};
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Temperature::Temperature() : UnitCategory(TemperatureCategory)
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{
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setName(i18n("Temperature"));
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setSymbolStringFormat(ki18nc("%1 value, %2 unit symbol (temperature)", "%1 %2"));
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setDefaultUnit(UP(Kelvin, 1,
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i18nc("temperature unit symbol", "K"),
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i18nc("unit description in lists", "kelvins"),
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i18nc("unit synonyms for matching user input", "kelvin;kelvins;K"),
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ki18nc("amount in units (real)", "%1 kelvins"),
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ki18ncp("amount in units (integer)", "%1 kelvin", "%1 kelvins")
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));
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U(Celsius, new CelsiusConv(),
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i18nc("temperature unit symbol", "°C"),
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i18nc("unit description in lists", "Celsius"),
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i18nc("unit synonyms for matching user input", "Celsius;°C;C"),
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ki18nc("amount in units (real)", "%1 degrees Celsius"),
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ki18ncp("amount in units (integer)", "%1 degree Celsius", "%1 degrees Celsius")
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);
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U(Fahrenheit, new FahrenheitConv(),
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i18nc("temperature unit symbol", "°F"),
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i18nc("unit description in lists", "Fahrenheit"),
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i18nc("unit synonyms for matching user input", "Fahrenheit;°F;F"),
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ki18nc("amount in units (real)", "%1 degrees Fahrenheit"),
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ki18ncp("amount in units (integer)", "%1 degree Fahrenheit", "%1 degrees Fahrenheit")
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);
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U(Rankine, 0.555556,
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i18nc("temperature unit symbol", "R"),
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i18nc("unit description in lists", "Rankine"),
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i18nc("unit synonyms for matching user input", "Rankine;°R;R;Ra"),
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ki18nc("amount in units (real)", "%1 Rankine"),
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ki18ncp("amount in units (integer)", "%1 Rankine", "%1 Rankine")
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);
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U(Delisle, new DelisleConv(),
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i18nc("temperature unit symbol", "°De"),
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i18nc("unit description in lists", "Delisle"),
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i18nc("unit synonyms for matching user input", "Delisle;°De;De"),
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ki18nc("amount in units (real)", "%1 degrees Delisle"),
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ki18ncp("amount in units (integer)", "%1 degree Delisle", "%1 degrees Delisle")
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);
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U(TemperatureNewton, new NewtonConv(),
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i18nc("temperature unit symbol", "°N"),
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i18nc("unit description in lists", "Newton"),
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i18nc("unit synonyms for matching user input", "Newton;°N;N"),
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ki18nc("amount in units (real)", "%1 degrees Newton"),
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ki18ncp("amount in units (integer)", "%1 degree Newton", "%1 degrees Newton")
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);
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U(Reaumur, new ReaumurConv(),
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i18nc("temperature unit symbol", "°Ré"),
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i18nc("unit description in lists", "Réaumur"),
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i18nc("unit synonyms for matching user input", "Réaumur;°Ré;Ré;Reaumur;°Re;Re"),
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ki18nc("amount in units (real)", "%1 degrees Réaumur"),
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ki18ncp("amount in units (integer)", "%1 degree Réaumur", "%1 degrees Réaumur")
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);
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U(Romer, new RomerConv(),
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i18nc("temperature unit symbol", "°Rø"),
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i18nc("unit description in lists", "Rømer"),
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i18nc("unit synonyms for matching user input", "Rømer;°Rø;Rø;Romer;°Ro;Ro"),
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ki18nc("amount in units (real)", "%1 degrees Rømer"),
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ki18ncp("amount in units (integer)", "%1 degree Rømer", "%1 degrees Rømer")
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);
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setMostCommonUnits(QList<int>() << Kelvin << Celsius << Fahrenheit);
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}
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