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      std::sqrt,std::sqrtf,std::sqrtl

      From cppreference.com
      <cpp‎ |numeric‎ |math
       
       
       
      Common mathematical functions
      Nearest integer floating point operations
      (C++11)(C++11)(C++11)
      (C++11)
      (C++11)
      (C++11)(C++11)(C++11)
      Floating point manipulation functions
      (C++11)(C++11)
      (C++11)
      (C++11)
      Classification and comparison
      (C++11)
      (C++11)
      (C++11)
      (C++11)
      (C++11)
      (C++11)
      Types
      (C++11)
      (C++11)
      (C++11)
      Macro constants
       
      Defined in header<cmath>
      (1)
      float       sqrt(float num);

      double      sqrt(double num);

      longdouble sqrt(longdouble num);
      (until C++23)
      /*floating-point-type*/
                  sqrt(/*floating-point-type*/ num);
      (since C++23)
      (constexpr since C++26)
      float       sqrtf(float num);
      (2)(since C++11)
      (constexpr since C++26)
      longdouble sqrtl(longdouble num);
      (3)(since C++11)
      (constexpr since C++26)
      SIMD overload(since C++26)
      Defined in header<simd>
      template</*math-floating-point*/ V>

      constexpr/*deduced-simd-t*/<V>

                  sqrt(const V& v_num);
      (S)(since C++26)
      Defined in header<cmath>
      template<class Integer>
      double      sqrt( Integer num);
      (A)(constexpr since C++26)
      1-3) Computes the square root ofnum. The library provides overloads ofstd::sqrt for all cv-unqualified floating-point types as the type of the parameter.(since C++23)
      S) The SIMD overload performs an element-wisestd::sqrt onv_num.
      (Seemath-floating-point anddeduced-simd-t for their definitions.)
      (since C++26)
      A) Additional overloads are provided for all integer types, which are treated asdouble.
      (since C++11)

      Contents

      [edit]Parameters

      num - floating-point or integer value

      [edit]Return value

      If no errors occur, square root ofnum (\({\small \sqrt{num} }\)num), is returned.

      If a domain error occurs, an implementation-defined value is returned (NaN where supported).

      If a range error occurs due to underflow, the correct result (after rounding) is returned.

      [edit]Error handling

      Errors are reported as specified inmath_errhandling.

      Domain error occurs ifnum is less than zero.

      If the implementation supports IEEE floating-point arithmetic (IEC 60559),

      • If the argument is less than -0,FE_INVALID is raised and NaN is returned.
      • If the argument is +∞ or ±0, it is returned, unmodified.
      • If the argument is NaN, NaN is returned.

      [edit]Notes

      std::sqrt is required by the IEEE standard to be correctly rounded from the infinitely precise result. In particular, the exact result is produced if it can be represented in the floating-point type. The only other operations which require this are thearithmetic operators and the functionstd::fma. Other functions, includingstd::pow, are not so constrained.

      The additional overloads are not required to be provided exactly as(A). They only need to be sufficient to ensure that for their argumentnum of integer type,std::sqrt(num) has the same effect asstd::sqrt(static_cast<double>(num)).

      [edit]Example

      Run this code
      #include <cerrno>#include <cfenv>#include <cmath>#include <cstring>#include <iostream>// #pragma STDC FENV_ACCESS ON int main(){// normal usestd::cout<<"sqrt(100) = "<< std::sqrt(100)<<'\n'<<"sqrt(2) = "<< std::sqrt(2)<<'\n'<<"golden ratio = "<<(1+ std::sqrt(5))/2<<'\n'; // special valuesstd::cout<<"sqrt(-0) = "<< std::sqrt(-0.0)<<'\n'; // error handlingerrno=0;std::feclearexcept(FE_ALL_EXCEPT); std::cout<<"sqrt(-1.0) = "<< std::sqrt(-1)<<'\n';if(errno==EDOM)std::cout<<"    errno = EDOM "<<std::strerror(errno)<<'\n';if(std::fetestexcept(FE_INVALID))std::cout<<"    FE_INVALID raised\n";}

      Possible output:

      sqrt(100) = 10sqrt(2) = 1.41421golden ratio = 1.61803sqrt(-0) = -0sqrt(-1.0) = -nan    errno = EDOM Numerical argument out of domain    FE_INVALID raised

      [edit]See also

      (C++11)(C++11)
      raises a number to the given power (\(\small{x^y}\)xy)
      (function)[edit]
      (C++11)(C++11)(C++11)
      computes cube root (\(\small{\sqrt[3]{x}}\)3x)
      (function)[edit]
      (C++11)(C++11)(C++11)
      computes hypotenuse\(\scriptsize{\sqrt{x^2+y^2}}\)x2
      +y2
      and\(\scriptsize{\sqrt{x^2+y^2+z^2}}\)x2
      +y2
      +z2
      (since C++17)

      (function)[edit]
      complex square root in the range of the right half-plane
      (function template)[edit]
      applies the functionstd::sqrt to each element of valarray
      (function template)[edit]
      Retrieved from "https://en.cppreference.com/mwiki/index.php?title=cpp/numeric/math/sqrt&oldid=160742"

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