E.V.E
v2023.02.15
 
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◆ absmax

eve::absmax = functor<absmax_t>
inlineconstexpr

Header file

#include <eve/module/core.hpp>

Callable Signatures

namespace eve
{
// Regular overloads
constexpr auto absmax(eve::value auto x, eve::value auto ... xs) noexcept; // 1
constexpr auto absmax(kumi::non_empty_product_type auto const& tup) noexcept; // 2
// Lanes masking
constexpr auto absmax[conditional_expr auto c](/* any of the above overloads */) noexcept; // 3
constexpr auto absmax[logical_value auto m](/* any of the above overloads */) noexcept; // 3
// Semantic option
constexpr auto absmax[saturated](/* any of the above overloads */) noexcept; // 4
// Exclusive Semantic options - Only one of those can be set at once
constexpr auto absmax[pedantic](/* any of the above overloads */) noexcept; // 5.1
constexpr auto absmax[numeric ](/* any of the above overloads */) noexcept; // 5.2
}
Specifies that a type is a Conditional Expression.
Definition: conditional.hpp:27
The concept logical_value<T> is satisfied if and only if T satisfies eve::value and the element type ...
Definition: value.hpp:107
The concept value<T> is satisfied if and only if T satisfies either eve::scalar_value or eve::simd_va...
Definition: value.hpp:33
constexpr auto absmax
tuple_callable computing the absolute value of the maximal element.
Definition: absmax.hpp:91
EVE Main Namespace.
Definition: abi.hpp:18

Parameters

  • x, ...xs: real arguments.
  • tup: non empty tuple of arguments.
  • c: Conditional expression masking the operation.
  • m: Logical value masking the operation.

Return value

The absolute value of the maximal element is returned.

  1. If any element of the inputs is a NaN the corresponding output element is system-dependent
  2. equivalent to the call on the elements of the tuple.
  3. The operation is performed conditionnaly
  4. computation internally uses abs[saturated] instead of abs
  5. with numeric (resp. pedantic) max[numeric] (5.1) (resp. max[pedantic] (5.2)) is used internally

Example

// revision 0
#include <eve/module/core.hpp>
#include <iostream>
int main()
{
eve::wide wf0{0.0, 1.0, 2.0, 3.0, -1.0, -2.0, -3.0, -4.0};
eve::wide wf1{0.0, -4.0, 1.0, -1.0, 2.0, -2.0, 3.0, -3.0};
eve::wide wi0{0, 1, 2, 3, -1, -2, -3, -4};
eve::wide wi1{0, -4, 1, -1, 2, -2, 3, -3};
eve::wide wu0{0u, 1u, 2u, 3u, 4u, 5u, 6u, 7u};
eve::wide wu1{7u, 6u, 5u, 4u, 3u, 2u, 1u, 0u};
std::cout << "<- wf0 = " << wf0 << "\n";
std::cout << "<- wf1 = " << wf1 << "\n";
std::cout << "<- wi0 = " << wi0 << "\n";
std::cout << "<- wi1 = " << wi1 << "\n";
std::cout << "<- wu0 = " << wu0 << "\n";
std::cout << "<- wu1 = " << wu1 << "\n";
std::cout << "-> absmax(wf0, wf1) = " << eve::absmax(wf0, wf1) << "\n";
std::cout << "-> absmax[ignore_last(2)](wf0, wf1) = " << eve::absmax[eve::ignore_last(2)](wf0, wf1) << "\n";
std::cout << "-> absmax[wf0 != 0](wf0, wf1) = " << eve::absmax[wf0 != 0](wf0, wf1) << "\n";
std::cout << "-> absmax[pedantic](wf0, wf1) = " << eve::absmax[eve::pedantic](wf0, wf1) << "\n";
std::cout << "-> absmax[numeric ](wf0, wf1) = " << eve::absmax[eve::numeric ](wf0, wf1) << "\n";
std::cout << "-> absmax(wu0, wu1) = " << eve::absmax(wu0, wu1) << "\n";
std::cout << "-> absmax(wi0, wi1) = " << eve::absmax(wi0, wi1) << "\n";
}
Conditional expression ignoring the k last lanes from a eve::simd_value.
Definition: conditional.hpp:304
Wrapper for SIMD registers.
Definition: wide.hpp:71