libdpf/include/grotto/gadgets/elementary/geq.hpp

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/// @file grotto/gadgets/elementary/geq.hpp
/// @author Ryan Henry <ryan.henry@ucalgary.ca>
/// @brief Cleartext reference for `geq`.
/// @copyright Copyright (c) 2019-2023 Ryan Henry and others
/// @license Released under a GNU General Public v2.0 (GPLv2) license;
/// see [LICENSE.md](@ref license) for details.
#ifndef LIBDPF_INCLUDE_GROTTO_GADGETS_ELEMENTARY_GEQ_HPP__
#define LIBDPF_INCLUDE_GROTTO_GADGETS_ELEMENTARY_GEQ_HPP__
#include <array>
#include <limits>
#include "grotto/gadget_hints.hpp"
namespace grotto
{
namespace gadgets
{
/// @brief Cleartext `geq`.
/// @see grotto::make_threshold_lut
/// @tparam target functor parameter (a `double` bound or scale)
/// @note Straight-line cleartext. Fixed-point evaluation is the symbol in `@see` when that symbol is a LUT or an `eval_*` function.
/// \complexity One evaluation of `operator()` as written in this header. There is no domain scan and no loop. `Θ(1)` time and extra space relative to that expression.
template <double const & target>
struct geq
{
/// @brief Evaluate the cleartext map.
/// @tparam T argument and result type
/// @param x the input
/// @return the cleartext image of `x`
/// \complexity The body is straight-line. `Θ(1)` time and extra space.
template <typename T>
T operator()(T x) { return x >= target; }
};
template <double const & target>
struct gadget_hints<geq<target>>
{
static constexpr double min = std::numeric_limits<double>::min();
static constexpr double max = std::numeric_limits<double>::max();
static constexpr double poles[] = { };
static constexpr double interesting_points[] = { target };
static constexpr bool has_canonical_representation = true;
static constexpr unsigned degree = 0;
static constexpr double canonical_bounds[] = { target, target };
static constexpr std::array<double, degree+1> canonical_polys[] = { 0, 1, 1 };
};
} // namespace gadgets
} // namespace grotto
#endif // LIBDPF_INCLUDE_GROTTO_GADGETS_ELEMENTARY_GEQ_HPP__