174 lines
5.8 KiB
Markdown
174 lines
5.8 KiB
Markdown
[complex.ops]
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# 29 Numerics library [[numerics]](./#numerics)
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## 29.4 Complex numbers [[complex.numbers]](complex.numbers#complex.ops)
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### 29.4.6 Non-member operations [complex.ops]
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[ð](#lib:operator+,complex)
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`template<class T> constexpr complex<T> operator+(const complex<T>& lhs);
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`
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[1](#1)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L606)
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*Returns*: complex<T>(lhs)[.](#1.sentence-1)
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[ð](#itemdecl:2)
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`template<class T> constexpr complex<T> operator+(const complex<T>& lhs, const complex<T>& rhs);
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template<class T> constexpr complex<T> operator+(const complex<T>& lhs, const T& rhs);
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template<class T> constexpr complex<T> operator+(const T& lhs, const complex<T>& rhs);
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`
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[2](#2)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L618)
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*Returns*: complex<T>(lhs) += rhs[.](#2.sentence-1)
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[ð](#lib:operator-,complex)
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`template<class T> constexpr complex<T> operator-(const complex<T>& lhs);
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`
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[3](#3)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L629)
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*Returns*: complex<T>(-lhs.real(),-lhs.imag())[.](#3.sentence-1)
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[ð](#lib:operator-,complex_)
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`template<class T> constexpr complex<T> operator-(const complex<T>& lhs, const complex<T>& rhs);
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template<class T> constexpr complex<T> operator-(const complex<T>& lhs, const T& rhs);
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template<class T> constexpr complex<T> operator-(const T& lhs, const complex<T>& rhs);
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`
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[4](#4)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L642)
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*Returns*: complex<T>(lhs) -= rhs[.](#4.sentence-1)
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[ð](#lib:operator*,complex)
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`template<class T> constexpr complex<T> operator*(const complex<T>& lhs, const complex<T>& rhs);
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template<class T> constexpr complex<T> operator*(const complex<T>& lhs, const T& rhs);
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template<class T> constexpr complex<T> operator*(const T& lhs, const complex<T>& rhs);
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`
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[5](#5)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L655)
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*Returns*: complex<T>(lhs) *= rhs[.](#5.sentence-1)
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[ð](#lib:operator/,complex)
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`template<class T> constexpr complex<T> operator/(const complex<T>& lhs, const complex<T>& rhs);
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template<class T> constexpr complex<T> operator/(const complex<T>& lhs, const T& rhs);
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template<class T> constexpr complex<T> operator/(const T& lhs, const complex<T>& rhs);
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`
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[6](#6)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L668)
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*Returns*: complex<T>(lhs) /= rhs[.](#6.sentence-1)
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[ð](#lib:operator==,complex)
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`template<class T> constexpr bool operator==(const complex<T>& lhs, const complex<T>& rhs);
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template<class T> constexpr bool operator==(const complex<T>& lhs, const T& rhs);
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`
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[7](#7)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L680)
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*Returns*: lhs.real() == rhs.real() && lhs.imag() == rhs.imag()[.](#7.sentence-1)
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[8](#8)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L684)
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*Remarks*: The imaginary part is assumed to beT(),
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or 0.0, for theT arguments[.](#8.sentence-1)
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[ð](#lib:operator%3e%3e,complex)
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`template<class T, class charT, class traits>
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basic_istream<charT, traits>& operator>>(basic_istream<charT, traits>& is, complex<T>& x);
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`
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[9](#9)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L700)
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*Preconditions*: The input values are convertible toT[.](#9.sentence-1)
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[10](#10)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L705)
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*Effects*: Extracts a complex number x of the form:u,(u),
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or(u,v),
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whereu is the real part andv is the imaginary part ([[istream.formatted]](istream.formatted "31.7.5.3 Formatted input functions"))[.](#10.sentence-1)
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[11](#11)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L718)
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If bad input is encountered, callsis.setstate(ios_base::failbit) (which may throwios_base::failure ([[iostate.flags]](iostate.flags "31.5.4.4 Flags functions")))[.](#11.sentence-1)
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[12](#12)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L724)
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*Returns*: is[.](#12.sentence-1)
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[13](#13)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L728)
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*Remarks*: This extraction is performed as a series of simpler
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extractions[.](#13.sentence-1)
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Therefore, the skipping of whitespace is specified to be
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the same for each of the simpler extractions[.](#13.sentence-2)
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[ð](#lib:operator%3c%3c,complex)
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`template<class T, class charT, class traits>
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basic_ostream<charT, traits>& operator<<(basic_ostream<charT, traits>& o, const complex<T>& x);
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`
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[14](#14)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L743)
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*Effects*: Inserts the complex number x onto the stream o as if it were implemented as follows:basic_ostringstream<charT, traits> s;
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s.flags(o.flags());
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s.imbue(o.getloc());
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s.precision(o.precision());
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s << '(' << x.real() << ',' << x.imag() << ')';return o << s.str();
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[15](#15)
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[#](http://github.com/Eelis/draft/tree/9adde4bc1c62ec234483e63ea3b70a59724c745a/source/numerics.tex#L756)
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[*Note [1](#note-1)*:
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In a locale in which comma is used as a decimal point character, the
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use of comma as a field separator can be ambiguous[.](#15.sentence-1)
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Insertingshowpoint into the output stream forces all outputs to
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show an explicit decimal point character; as a result, all inserted sequences of
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complex numbers can be extracted unambiguously[.](#15.sentence-2)
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â *end note*]
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