540 lines
25 KiB
C++
540 lines
25 KiB
C++
#pragma once
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#include "Gallery_Renderables.h"
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#include "adminive/adminive.hpp"
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#include "adminive/adapters/nlohmann_json.hpp"
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#include <algorithm>
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#include <array>
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#include <cctype>
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#include <cmath>
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#include <cstdio>
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#include <optional>
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#include <string>
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#include <string_view>
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#include <utility>
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#include <vector>
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namespace renderive::web::gallery_adminive {
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enum class Number_Locale_Choice { Point, Comma };
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enum class Color_Map_Choice { Spectrum, Ember, Grayscale };
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template <class Enum>
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struct Enum_Metadata;
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#define RENDERIVE_ENUM_METADATA(Type, ...) \
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template <> struct Enum_Metadata<Type> { static constexpr auto values = std::array{__VA_ARGS__}; }
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RENDERIVE_ENUM_METADATA(Orientation,
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std::pair{Orientation::Horizontal, std::string_view{"Horizontal"}},
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std::pair{Orientation::Vertical, std::string_view{"Vertical"}});
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RENDERIVE_ENUM_METADATA(Renderable_Cache_Mode,
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std::pair{Renderable_Cache_Mode::Direct, std::string_view{"Direct"}},
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std::pair{Renderable_Cache_Mode::Local_Pixel, std::string_view{"Local_Pixel"}});
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RENDERIVE_ENUM_METADATA(Line_Interpolation_Mode,
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std::pair{Line_Interpolation_Mode::Nearest_Sample, std::string_view{"Nearest_Sample"}},
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std::pair{Line_Interpolation_Mode::Linear_Value, std::string_view{"Linear_Value"}},
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std::pair{Line_Interpolation_Mode::Linear_Power_Domain, std::string_view{"Linear_Power_Domain"}},
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std::pair{Line_Interpolation_Mode::Step_Left, std::string_view{"Step_Left"}},
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std::pair{Line_Interpolation_Mode::Step_Right, std::string_view{"Step_Right"}},
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std::pair{Line_Interpolation_Mode::Cubic_Value, std::string_view{"Cubic_Value"}});
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RENDERIVE_ENUM_METADATA(Image_Interpolation_Mode,
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std::pair{Image_Interpolation_Mode::Nearest, std::string_view{"Nearest"}},
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std::pair{Image_Interpolation_Mode::Bilinear, std::string_view{"Bilinear"}},
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std::pair{Image_Interpolation_Mode::Bicubic, std::string_view{"Bicubic"}});
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RENDERIVE_ENUM_METADATA(Constellation_Diagram_Type,
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std::pair{Constellation_Diagram_Type::Psk4, std::string_view{"PSK4"}},
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std::pair{Constellation_Diagram_Type::Psk8, std::string_view{"PSK8"}},
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std::pair{Constellation_Diagram_Type::Psk16, std::string_view{"PSK16"}});
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RENDERIVE_ENUM_METADATA(Line_Style,
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std::pair{Line_Style::None, std::string_view{"None"}},
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std::pair{Line_Style::Solid, std::string_view{"Solid"}},
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std::pair{Line_Style::Dash, std::string_view{"Dash"}},
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std::pair{Line_Style::Dot, std::string_view{"Dot"}});
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RENDERIVE_ENUM_METADATA(Line_Cap,
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std::pair{Line_Cap::Butt, std::string_view{"Butt"}},
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std::pair{Line_Cap::Square, std::string_view{"Square"}},
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std::pair{Line_Cap::Round, std::string_view{"Round"}});
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RENDERIVE_ENUM_METADATA(Line_Join,
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std::pair{Line_Join::Miter, std::string_view{"Miter"}},
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std::pair{Line_Join::Bevel, std::string_view{"Bevel"}},
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std::pair{Line_Join::Round, std::string_view{"Round"}});
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RENDERIVE_ENUM_METADATA(Brush_Style,
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std::pair{Brush_Style::None, std::string_view{"None"}},
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std::pair{Brush_Style::Solid, std::string_view{"Solid"}});
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RENDERIVE_ENUM_METADATA(Number_Locale_Choice,
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std::pair{Number_Locale_Choice::Point, std::string_view{"."}},
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std::pair{Number_Locale_Choice::Comma, std::string_view{","}});
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RENDERIVE_ENUM_METADATA(Color_Map_Choice,
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std::pair{Color_Map_Choice::Spectrum, std::string_view{"Spectrum"}},
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std::pair{Color_Map_Choice::Ember, std::string_view{"Ember"}},
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std::pair{Color_Map_Choice::Grayscale, std::string_view{"Grayscale"}});
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#undef RENDERIVE_ENUM_METADATA
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template <class Enum>
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struct Actual_Enum_Adapter {
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static std::vector<Enum> values() {
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std::vector<Enum> result;
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result.reserve(Enum_Metadata<Enum>::values.size());
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for (const auto& [value, name] : Enum_Metadata<Enum>::values)
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result.push_back(value);
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return result;
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}
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static std::string_view name(Enum value) {
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for (const auto& [candidate, name] : Enum_Metadata<Enum>::values) {
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if (candidate == value)
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return name;
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}
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return {};
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}
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static std::optional<Enum> cast(std::string_view name) {
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for (const auto& [value, candidate] : Enum_Metadata<Enum>::values) {
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if (candidate == name)
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return value;
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}
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return std::nullopt;
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}
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};
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inline Color blend(Color first, Color second, double amount) {
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const auto channel = [amount](std::uint8_t a, std::uint8_t b) {
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return static_cast<std::uint8_t>(std::clamp(
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std::lround(a + (b - a) * amount), 0L, 255L));
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};
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return {channel(first.r, second.r), channel(first.g, second.g),
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channel(first.b, second.b), channel(first.a, second.a)};
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}
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inline Color_Map color_map(std::string_view palette) {
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std::array<Color, 5> stops{
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Color{5, 10, 25, 255}, Color{20, 52, 112, 255}, Color{39, 196, 181, 255},
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Color{242, 201, 76, 255}, Color{255, 76, 106, 255}
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};
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if (palette == "Ember") {
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stops = {Color{10, 5, 8, 255}, Color{62, 18, 30, 255}, Color{153, 47, 39, 255},
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Color{244, 132, 48, 255}, Color{255, 238, 166, 255}};
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} else if (palette == "Grayscale") {
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stops = {Color{0, 0, 0, 255}, Color{52, 52, 52, 255}, Color{112, 112, 112, 255},
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Color{188, 188, 188, 255}, Color{255, 255, 255, 255}};
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}
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std::vector<Pixel> colors;
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colors.reserve(256);
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for (int index = 0; index < 256; ++index) {
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const double position = index / 255.0 * (stops.size() - 1);
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const auto first = static_cast<std::size_t>(std::floor(position));
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const auto second = std::min(first + 1, stops.size() - 1);
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colors.push_back(premultiply(blend(stops[first], stops[second], position - first)));
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}
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return Color_Map(std::move(colors));
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}
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inline std::string color_map_name(const Color_Map& value) {
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for (const std::string_view name : {std::string_view{"Spectrum"},
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std::string_view{"Ember"},
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std::string_view{"Grayscale"}}) {
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if (value.colors() == color_map(name).colors())
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return std::string(name);
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}
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return "Spectrum";
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}
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template <auto Member>
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auto editable(std::string name, std::string label, adminive::Field_Control control) {
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return adminive::field<Member>(std::move(name), std::move(label))
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.editable().control(control);
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}
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template <auto Member>
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auto number(std::string name, std::string label) {
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return editable<Member>(std::move(name), std::move(label), adminive::Field_Control::number);
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}
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template <auto Member>
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auto boolean(std::string name, std::string label) {
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return editable<Member>(std::move(name), std::move(label), adminive::Field_Control::boolean);
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}
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template <auto Member>
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auto select(std::string name, std::string label) {
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return editable<Member>(std::move(name), std::move(label), adminive::Field_Control::select);
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}
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template <auto Member>
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auto color(std::string name, std::string label) {
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return editable<Member>(std::move(name), std::move(label), adminive::Field_Control::color);
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}
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template <class Object, auto Member>
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auto property(std::string name, std::string label, adminive::Field_Control control) {
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return adminive::field(std::move(name), std::move(label),
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Gallery_Property_Accessor<Object, Member>{})
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.editable()
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.unsynchronized()
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.control(control);
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}
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template <class Object, auto Member>
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auto readonly_property(std::string name, std::string label) {
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return adminive::field(std::move(name), std::move(label),
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Gallery_Property_Accessor<Object, Member>{});
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}
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template <class Object, auto Member>
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auto property_number(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::number);
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}
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template <class Object, auto Member>
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auto property_boolean(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::boolean);
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}
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template <class Object, auto Member>
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auto property_select(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::select);
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}
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template <class Object, auto Member>
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auto property_color(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::color);
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}
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template <class Object, auto Member>
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auto property_object(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::automatic);
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}
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template <class Object, auto Member>
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auto property_text(std::string name, std::string label) {
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return property<Object, Member>(std::move(name), std::move(label),
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adminive::Field_Control::text);
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}
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} // namespace renderive::web::gallery_adminive
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namespace adminive {
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template <class Validator>
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struct Renderive_Validator_Metadata {};
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template <class T, T Minimum, T Maximum>
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struct Renderive_Validator_Metadata<::Range_Validator<T, Minimum, Maximum>> {
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static constexpr T minimum = Minimum;
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static constexpr T maximum = Maximum;
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};
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template <class T, class Validator, class Json>
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struct Value_Adapter<::Validated_Value<T, Validator>, Json>
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: Renderive_Validator_Metadata<Validator> {
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using Storage = ::Validated_Value<T, Validator>;
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using value_type = T;
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static const T& read(const Storage& value) noexcept { return value.get(); }
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static void write(Storage& target, T value) { target = std::move(value); }
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};
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#define RENDERIVE_ENUM_ADAPTER(Type) \
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template <> struct Enum_Adapter<renderive::Type> \
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: renderive::web::gallery_adminive::Actual_Enum_Adapter<renderive::Type> {}
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RENDERIVE_ENUM_ADAPTER(Orientation);
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RENDERIVE_ENUM_ADAPTER(Renderable_Cache_Mode);
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RENDERIVE_ENUM_ADAPTER(Line_Interpolation_Mode);
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RENDERIVE_ENUM_ADAPTER(Image_Interpolation_Mode);
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RENDERIVE_ENUM_ADAPTER(Constellation_Diagram_Type);
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RENDERIVE_ENUM_ADAPTER(Line_Style);
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RENDERIVE_ENUM_ADAPTER(Line_Cap);
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RENDERIVE_ENUM_ADAPTER(Line_Join);
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RENDERIVE_ENUM_ADAPTER(Brush_Style);
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#undef RENDERIVE_ENUM_ADAPTER
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template <>
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struct Enum_Adapter<renderive::web::gallery_adminive::Number_Locale_Choice>
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: renderive::web::gallery_adminive::Actual_Enum_Adapter<
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renderive::web::gallery_adminive::Number_Locale_Choice> {};
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template <>
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struct Enum_Adapter<renderive::web::gallery_adminive::Color_Map_Choice>
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: renderive::web::gallery_adminive::Actual_Enum_Adapter<
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renderive::web::gallery_adminive::Color_Map_Choice> {};
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template <class Json>
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struct Value_Adapter<renderive::Color, Json> {
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using value_type = std::string;
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static std::string read(renderive::Color value) {
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char result[8]{};
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std::snprintf(result, sizeof(result), "#%02x%02x%02x", value.r, value.g, value.b);
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return result;
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}
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static void write(renderive::Color& target, const std::string& value) {
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if (value.size() != 7 || value.front() != '#' ||
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!std::all_of(value.begin() + 1, value.end(), [](unsigned char character) {
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return std::isxdigit(character) != 0;
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}))
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throw std::invalid_argument("color must use #RRGGBB");
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const auto channel = [&value](std::size_t offset) {
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return static_cast<std::uint8_t>(std::stoul(value.substr(offset, 2), nullptr, 16));
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};
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target.r = channel(1);
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target.g = channel(3);
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target.b = channel(5);
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}
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};
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template <class Json>
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struct Value_Adapter<renderive::Number_Locale, Json> {
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using Choice = renderive::web::gallery_adminive::Number_Locale_Choice;
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using value_type = Choice;
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static Choice read(renderive::Number_Locale value) {
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return value.decimal_point == ',' ? Choice::Comma : Choice::Point;
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}
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static void write(renderive::Number_Locale& target, Choice value) {
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target.decimal_point = value == Choice::Comma ? ',' : '.';
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}
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};
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template <class T, T Minimum, T Maximum, T Default, class Json>
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struct Value_Adapter<renderive::Clamped_Property<T, Minimum, Maximum, Default>, Json> {
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using Storage = renderive::Clamped_Property<T, Minimum, Maximum, Default>;
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using value_type = T;
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static constexpr T minimum = Minimum;
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static constexpr T maximum = Maximum;
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static T read(const Storage& value) noexcept { return value.get(); }
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static void write(Storage& target, T value) { target = value; }
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};
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template <class Json>
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struct Value_Adapter<renderive::Unit_Interval, Json> {
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using value_type = double;
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static constexpr double minimum = 0.0;
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static constexpr double maximum = 1.0;
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static constexpr double multiple_of = 0.01;
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static double read(const renderive::Unit_Interval& value) noexcept { return value.get(); }
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static void write(renderive::Unit_Interval& target, double value) { target = value; }
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};
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template <class Json>
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struct Value_Adapter<renderive::Color_Map, Json> {
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using Choice = renderive::web::gallery_adminive::Color_Map_Choice;
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using value_type = Choice;
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static Choice read(const renderive::Color_Map& value) {
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const auto name = renderive::web::gallery_adminive::color_map_name(value);
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if (name == "Ember")
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return Choice::Ember;
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if (name == "Grayscale")
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return Choice::Grayscale;
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return Choice::Spectrum;
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}
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static void write(renderive::Color_Map& target, Choice value) {
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const std::string_view name = value == Choice::Ember ? "Ember" :
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value == Choice::Grayscale ? "Grayscale" : "Spectrum";
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target = renderive::web::gallery_adminive::color_map(name);
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}
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};
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template <>
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struct Type_Descriptor<renderive::Range> {
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static auto get() {
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using T = renderive::Range;
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using namespace renderive::web::gallery_adminive;
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return adminive::object<T>("range", "Range",
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number<&T::origin>("origin", "Origin"),
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number<&T::target>("target", "Target"));
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}
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};
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template <>
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struct Type_Descriptor<renderive::Pen> {
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static auto get() {
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using T = renderive::Pen;
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using namespace renderive::web::gallery_adminive;
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return adminive::object<T>("pen", "Pen",
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color<&T::color>("color", "Color"),
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number<&T::width>("width", "Width"),
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select<&T::style>("style", "Style"),
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select<&T::cap>("cap", "Cap"),
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select<&T::join>("join", "Join"));
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}
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};
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template <>
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struct Type_Descriptor<renderive::Brush> {
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static auto get() {
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using T = renderive::Brush;
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using namespace renderive::web::gallery_adminive;
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return adminive::object<T>("brush", "Brush",
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color<&T::color>("color", "Color"),
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select<&T::style>("style", "Style"));
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}
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};
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template <>
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struct Type_Descriptor<renderive::Font> {
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static auto get() {
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using T = renderive::Font;
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using namespace renderive::web::gallery_adminive;
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return adminive::object<T>("font", "Font",
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number<&T::size>("size", "Size"),
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number<&T::weight>("weight", "Weight"),
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boolean<&T::italic>("italic", "Italic"));
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}
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};
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#define RENDERIVE_AXIS_DESCRIPTOR(GalleryType, Name, Label) \
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template <> struct Type_Descriptor<renderive::web::GalleryType> { \
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static auto get() { \
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using T = renderive::web::GalleryType; \
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using B = renderive::Axis_Base_Properties; \
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using P = renderive::Axis_Properties; \
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using namespace renderive::web::gallery_adminive; \
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return adminive::object<T>(Name, Label, \
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readonly_property<T, &B::x>("x", "X"), \
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readonly_property<T, &B::y>("y", "Y"), \
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property_select<T, &B::orientation>("orientation", "Orientation"), \
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readonly_property<T, &B::pixel_length>("pixel_length", "Pixel length"), \
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property_number<T, &B::tick_length>("tick_length", "Tick length"), \
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property_number<T, &B::sub_tick_length>("sub_tick_length", "Sub tick length"), \
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property_color<T, &B::color>("color", "Color"), \
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property_select<T, &B::locale>("locale", "Decimal separator"), \
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property_text<T, &B::unit_text>("unit_text", "Unit text"), \
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property_object<T, &B::unit_text_font>("unit_text_font", "Unit font"), \
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property_object<T, &B::unit_text_pen>("unit_text_pen", "Unit pen"), \
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property_object<T, &B::unit_text_background_brush>("unit_text_background_brush", "Unit background"), \
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property_number<T, &B::label_rotation_degrees>("label_rotation_degrees", "Label rotation"), \
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property_object<T, &P::coordinates>("coordinates", "Coordinates"), \
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property_number<T, &P::precision>("precision", "Precision"), \
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property_boolean<T, &P::wheel>("wheel", "Wheel zoom"), \
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property_boolean<T, &P::drag>("drag", "Drag pan")); \
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} \
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}
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RENDERIVE_AXIS_DESCRIPTOR(Gallery_Axis, "gallery_axis", "Axis");
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RENDERIVE_AXIS_DESCRIPTOR(Gallery_Frequency_Axis, "gallery_frequency_axis", "Frequency axis");
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#undef RENDERIVE_AXIS_DESCRIPTOR
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template <>
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struct Type_Descriptor<renderive::web::Gallery_Time_Axis> {
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static auto get() {
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using T = renderive::web::Gallery_Time_Axis;
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using B = renderive::Axis_Base_Properties;
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using P = renderive::Time_Axis_Properties;
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using namespace renderive::web::gallery_adminive;
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return adminive::object<T>("gallery_time_axis", "Time axis",
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readonly_property<T, &B::x>("x", "X"),
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readonly_property<T, &B::y>("y", "Y"),
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property_select<T, &B::orientation>("orientation", "Orientation"),
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readonly_property<T, &B::pixel_length>("pixel_length", "Pixel length"),
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property_number<T, &B::tick_length>("tick_length", "Tick length"),
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property_number<T, &B::sub_tick_length>("sub_tick_length", "Sub tick length"),
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property_color<T, &B::color>("color", "Color"),
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property_select<T, &B::locale>("locale", "Decimal separator"),
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property_text<T, &B::unit_text>("unit_text", "Unit text"),
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property_object<T, &B::unit_text_font>("unit_text_font", "Unit font"),
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property_object<T, &B::unit_text_pen>("unit_text_pen", "Unit pen"),
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property_object<T, &B::unit_text_background_brush>("unit_text_background_brush", "Unit background"),
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property_number<T, &B::label_rotation_degrees>("label_rotation_degrees", "Label rotation"),
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property_number<T, &P::visible_count>("visible_count", "Visible points"),
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property_number<T, &P::tick_label_spacing_px>("tick_label_spacing_px", "Label spacing"),
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property_text<T, &P::format>("format", "Time format"),
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property_boolean<T, &P::newest_at_start>("newest_at_start", "Newest at start"));
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}
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};
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#define RENDERIVE_GALLERY_DESCRIPTOR(GalleryType, PropertiesType, Label, ...) \
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template <> struct Type_Descriptor<renderive::web::GalleryType> { \
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static auto get() { \
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using T = renderive::web::GalleryType; \
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using P = renderive::PropertiesType; \
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using namespace renderive::web::gallery_adminive; \
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return adminive::object<T>(#GalleryType, Label, __VA_ARGS__); \
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} \
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}
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Spectrum, Spectrum_Properties, "Spectrum",
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property_number<T, &P::frequency_point_size>("frequency_point_size", "Frequency points"),
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property_object<T, &P::frequency_range>("frequency_range", "Frequency range"),
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property_number<T, &P::center_frequency>("center_frequency", "Center frequency"),
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property_object<T, &P::sweep_frequency_range>("sweep_frequency_range", "Sweep range"),
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property_boolean<T, &P::max_hold_visible>("max_hold_visible", "Max hold"),
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property_boolean<T, &P::min_hold_visible>("min_hold_visible", "Min hold"),
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property_boolean<T, &P::max_marker_visible>("max_marker_visible", "Max marker"),
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property_boolean<T, &P::use_min_marker>("use_min_marker", "Use min marker"),
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property_boolean<T, &P::sweep_region_visible>("sweep_region_visible", "Sweep region"),
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property_boolean<T, &P::visible_range_only>("visible_range_only", "Visible range only"),
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property_select<T, &P::interpolation_mode>("interpolation_mode", "Interpolation"),
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property_object<T, &P::max_brush>("max_brush", "Max brush"),
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property_object<T, &P::current_brush>("current_brush", "Current brush"),
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property_object<T, &P::min_brush>("min_brush", "Min brush"),
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property_object<T, &P::max_pen>("max_pen", "Max pen"),
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property_object<T, &P::current_pen>("current_pen", "Current pen"),
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property_object<T, &P::min_pen>("min_pen", "Min pen"),
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property_object<T, &P::selected_marker_pen>("selected_marker_pen", "Selected marker pen"),
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property_object<T, &P::marker_pen>("marker_pen", "Marker pen"),
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property_object<T, &P::middle_frequency_pen>("middle_frequency_pen", "Middle frequency pen"),
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property_object<T, &P::sweep_region_brush>("sweep_region_brush", "Sweep region brush"),
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property_boolean<T, &P::tooltip_enabled>("tooltip_enabled", "Tooltip"),
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property_object<T, &P::tooltip_font>("tooltip_font", "Tooltip font"),
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property_object<T, &P::tooltip_text_pen>("tooltip_text_pen", "Tooltip text pen"),
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property_object<T, &P::tooltip_background_brush>("tooltip_background_brush", "Tooltip background"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Waterfall, Waterfall_Properties, "Waterfall",
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property_object<T, &P::frequency_range>("frequency_range", "Frequency range"),
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property_object<T, &P::power_range>("power_range", "Power range"),
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property_number<T, &P::frequency_bin_count>("frequency_bin_count", "Frequency bins"),
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property_boolean<T, &P::visible_range_only>("visible_range_only", "Visible range only"),
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property_select<T, &P::interpolation_mode>("interpolation_mode", "Interpolation"),
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property_select<T, &P::color_map>("color_map", "Color map"),
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property_boolean<T, &P::tooltip_enabled>("tooltip_enabled", "Tooltip"),
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property_object<T, &P::tooltip_font>("tooltip_font", "Tooltip font"),
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property_object<T, &P::tooltip_text_pen>("tooltip_text_pen", "Tooltip text pen"),
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property_object<T, &P::tooltip_background_brush>("tooltip_background_brush", "Tooltip background"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Afterglow, Afterglow_Properties, "Afterglow",
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property_object<T, &P::frequency_range>("frequency_range", "Frequency range"),
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property_object<T, &P::power_range>("power_range", "Power range"),
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property_number<T, &P::frequency_point_size>("frequency_point_size", "Frequency points"),
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property_number<T, &P::power_point_size>("power_point_size", "Power points"),
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property_boolean<T, &P::interpolate>("interpolate", "Interpolate power"),
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property_number<T, &P::attenuation_rate>("attenuation_rate", "Attenuation"),
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property_select<T, &P::color_map>("color_map", "Color map"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Sweep_Spectrum, Sweep_Spectrum_Properties, "Sweep spectrum",
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property_object<T, &P::frequency_range>("frequency_range", "Frequency range"),
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property_number<T, &P::bins_per_block>("bins_per_block", "Bins per block"),
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property_number<T, &P::block_count>("block_count", "Block count"),
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property_object<T, &P::pen>("pen", "Sweep pen"),
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property_object<T, &P::current_frequency_pen>("current_frequency_pen", "Current frequency pen"),
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property_boolean<T, &P::visible_range_only>("visible_range_only", "Visible range only"),
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property_select<T, &P::interpolation_mode>("interpolation_mode", "Interpolation"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Frequency_Trace, Frequency_Trace_Properties, "Frequency trace",
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property_object<T, &P::pen>("pen", "Trace pen"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Selection_Rectangle_Overlay, Selection_Rectangle_Overlay_Properties, "Selection overlay",
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property_object<T, &P::label_font>("label_font", "Label font"),
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property_object<T, &P::label_pen>("label_pen", "Label pen"),
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property_object<T, &P::selection_brush>("selection_brush", "Selection brush"),
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property_object<T, &P::selection_border_pen>("selection_border_pen", "Selection border"));
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RENDERIVE_GALLERY_DESCRIPTOR(Gallery_Constellation_Diagram, Constellation_Diagram_Properties, "Constellation diagram",
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property_object<T, &P::i_range>("i_range", "I range"),
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property_object<T, &P::q_range>("q_range", "Q range"),
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property_color<T, &P::point_color>("point_color", "Point color"),
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property_color<T, &P::anchor_color>("anchor_color", "Anchor color"),
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property_number<T, &P::point_lifetime_ms>("point_lifetime_ms", "Point lifetime"),
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property_select<T, &P::type>("type", "Constellation"),
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property_number<T, &P::phase_offset_radians>("phase_offset_radians", "Phase offset"));
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#undef RENDERIVE_GALLERY_DESCRIPTOR
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} // namespace adminive
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