279 lines
15 KiB
C++
279 lines
15 KiB
C++
#include <render_2D/plottable/Plottables.hpp>
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#include <render_2D/base/Frame_2D.hpp>
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#include <render_2D/scene/Render_Scene_2D.hpp>
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#include <gtest/gtest.h>
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#include <array>
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namespace {
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using namespace aethera;
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using namespace aethera::render_2d;
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template <typename Object, typename... Args>
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std::unique_ptr<Object> build_object(Args&&... args) {
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typename Object::Builder builder(std::forward<Args>(args)...);
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auto result = builder.build();
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if (!result) std::terminate();
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return std::move(result).value();
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}
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template <typename Scene, typename... Renderables>
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std::unique_ptr<Scene> build_scene(Renderables*... renderables) {
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typename Scene::Builder builder;
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(builder.add_renderable(renderables), ...);
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auto result = builder.build();
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if (!result) std::terminate();
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return std::move(result).value();
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}
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template <typename Axis>
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void configure_axis(Axis* axis, Axis_Orientation orientation, Point_F position, Axis_Pixel_Length length, Size canvas) {
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axis->template set<&Abs_Axis::Prop::orientation>(orientation);
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axis->template set<&Abs_Axis::Prop::position>(position);
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axis->template set<&Abs_Axis::Prop::pixel_length>(length);
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}
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template <typename Scene>
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void render_once(Scene* scene) {
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static std::uint64_t sequence{1};
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Frame_2D frame{Frame_Identity{sequence++, 0}};
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scene->set_frame_callback([](Frame_2D*) {});
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EXPECT_TRUE(scene->render(&frame).has_value());
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}
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}
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TEST(plottable_migration, curve_plots_share_partitioned_rendering) {
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using Scene = Impl<Render_Scene_2D>;
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using Frequency = Impl<Frequency_Axis>;
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using Numeric = Impl<Numeric_Axis>;
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using Time = Impl<Time_Axis>;
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using Trace = Impl<Frequency_Trace>;
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using Sweep = Impl<Sweep_Spectrum>;
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initialize_runtime({.workers = 2});
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const Size canvas{160, 120};
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auto frequency = build_object<Frequency>();
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auto power = build_object<Numeric>();
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auto time = build_object<Time>();
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auto value = build_object<Numeric>();
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configure_axis(frequency.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(power.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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configure_axis(time.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(value.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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frequency->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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power->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{-100.0, 0.0});
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value->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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auto trace = build_object<Trace>(time.get(), value.get());
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auto sweep = build_object<Sweep>(frequency.get(), power.get());
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trace->set<&Frequency_Trace::Prop::partition_mode>(Plot_Partition_Mode::fixed);
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trace->set<&Frequency_Trace::Prop::partition_count>(2u);
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trace->submit_stream<Frequency_Trace_Stream_Tag>(
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Frequency_Trace_Sample{time->append_time({1'000}), 10.0});
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trace->submit_stream<Frequency_Trace_Stream_Tag>(
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Frequency_Trace_Sample{time->append_time({2'000}), 50.0});
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trace->submit_stream<Frequency_Trace_Stream_Tag>(
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Frequency_Trace_Sample{time->append_time({3'000}), 90.0});
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trace->mark_dirty<Prepare_Data_Tag>();
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sweep->set<&Sweep_Spectrum::Prop::frequency_range>(Axis_Range{0.0, 100.0});
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sweep->set<&Sweep_Spectrum::Prop::block_count>(2u);
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sweep->set<&Sweep_Spectrum::Prop::partition_mode>(Plot_Partition_Mode::fixed);
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sweep->set<&Sweep_Spectrum::Prop::partition_count>(2u);
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const std::array<Plot_Value, 4> first_block{-90.0, -60.0, -30.0, -10.0};
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const std::array<Plot_Value, 4> second_block{-80.0, -50.0, -20.0, -5.0};
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const std::array<Plot_Value, 4> replacement_block{-70.0, -40.0, -15.0, -2.0};
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sweep->submit_stream<Sweep_Spectrum_Stream_Tag>(
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std::make_shared<const Sweep_Spectrum_Block>(Sweep_Spectrum_Block{
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0, {first_block.begin(), first_block.end()}}));
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sweep->submit_stream<Sweep_Spectrum_Stream_Tag>(
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std::make_shared<const Sweep_Spectrum_Block>(Sweep_Spectrum_Block{
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1, {second_block.begin(), second_block.end()}}));
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sweep->mark_dirty<Prepare_Data_Tag>();
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auto scene = build_scene<Scene>(trace.get(), sweep.get());
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scene->set<&Render_Scene_2D::Prop::viewport>(canvas);
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scene->activate_view();
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render_once(scene.get());
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EXPECT_EQ(trace->access_rendering_stream<Frequency_Trace_Stream_Tag>(
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[](std::span<Frequency_Trace_Sample> samples) { return samples.size(); }), 3u);
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EXPECT_EQ(sweep->access_rendering_stream<Sweep_Spectrum_Stream_Tag>(
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[](std::span<std::shared_ptr<const Sweep_Spectrum_Block>> blocks) { return blocks.size(); }), 2u);
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sweep->submit_stream<Sweep_Spectrum_Stream_Tag>(
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std::make_shared<const Sweep_Spectrum_Block>(Sweep_Spectrum_Block{
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0, {replacement_block.begin(), replacement_block.end()}}));
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trace->submit_stream<Frequency_Trace_Stream_Tag>(
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Frequency_Trace_Sample{time->append_time({4'000}), 60.0});
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trace->mark_dirty<Prepare_Data_Tag>();
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sweep->mark_dirty<Prepare_Data_Tag>();
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render_once(scene.get());
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EXPECT_EQ(trace->access_rendering_stream<Frequency_Trace_Stream_Tag>(
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[](std::span<Frequency_Trace_Sample> samples) { return samples.size(); }), 4u);
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EXPECT_EQ(sweep->access_query_stream<Sweep_Spectrum_Stream_Tag>(
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[](std::span<const std::shared_ptr<const Sweep_Spectrum_Block>> blocks) { return blocks.size(); }), 2u);
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}
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TEST(plottable_migration, raster_plots_share_partitioned_color_blocks) {
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using Scene = Impl<Render_Scene_2D>;
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using Frequency = Impl<Frequency_Axis>;
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using Numeric = Impl<Numeric_Axis>;
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using Time = Impl<Time_Axis>;
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using Glow = Impl<Afterglow>;
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using Fall = Impl<Waterfall>;
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initialize_runtime({.workers = 2});
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const Size canvas{160, 120};
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auto frequency = build_object<Frequency>();
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auto power = build_object<Numeric>();
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auto time = build_object<Time>();
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configure_axis(frequency.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(power.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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configure_axis(time.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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frequency->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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power->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{-100.0, 0.0});
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auto glow = build_object<Glow>(frequency.get(), power.get());
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auto waterfall = build_object<Fall>(frequency.get(), time.get());
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glow->set<&Afterglow::Prop::frequency_range>(Axis_Range{0.0, 100.0});
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glow->set<&Afterglow::Prop::power_range>(Axis_Range{-100.0, 0.0});
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glow->set<&Afterglow::Prop::power_point_size>(16u);
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waterfall->set<&Waterfall::Prop::frequency_range>(Axis_Range{0.0, 100.0});
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waterfall->set<&Waterfall::Prop::power_range>(Axis_Range{-100.0, 0.0});
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const std::array<Plot_Value, 4> row{-90.0, -60.0, -30.0, -10.0};
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glow->submit_stream<Afterglow_Stream_Tag>(
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std::make_shared<const std::vector<Plot_Value>>(row.begin(), row.end()));
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glow->mark_dirty<Prepare_Data_Tag>();
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waterfall->submit_stream<Waterfall_Stream_Tag>(std::make_shared<const Waterfall_Row>(
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Waterfall_Row{time->append_time({1'000}), {row.begin(), row.end()}}));
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waterfall->submit_stream<Waterfall_Stream_Tag>(std::make_shared<const Waterfall_Row>(
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Waterfall_Row{time->append_time({2'000}), {row.begin(), row.end()}}));
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waterfall->mark_dirty<Prepare_Data_Tag>();
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auto scene = build_scene<Scene>(glow.get(), waterfall.get());
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scene->set<&Render_Scene_2D::Prop::viewport>(canvas);
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scene->activate_view();
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render_once(scene.get());
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EXPECT_EQ(glow->access_rendering_stream<Afterglow_Stream_Tag>(
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[](std::span<std::shared_ptr<const std::vector<Plot_Value>>> spectra) { return spectra.size(); }), 1u);
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EXPECT_EQ(waterfall->access_rendering_stream<Waterfall_Stream_Tag>(
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[](std::span<std::shared_ptr<const Waterfall_Row>> rows) { return rows.size(); }), 2u);
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glow->submit_stream<Afterglow_Stream_Tag>(
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std::make_shared<const std::vector<Plot_Value>>(row.begin(), row.end()));
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glow->mark_dirty<Prepare_Data_Tag>();
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waterfall->submit_stream<Waterfall_Stream_Tag>(std::make_shared<const Waterfall_Row>(
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Waterfall_Row{time->append_time({3'000}), {row.begin(), row.end()}}));
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waterfall->mark_dirty<Prepare_Data_Tag>();
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render_once(scene.get());
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EXPECT_EQ(glow->access_rendering_stream<Afterglow_Stream_Tag>(
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[](std::span<std::shared_ptr<const std::vector<Plot_Value>>> spectra) { return spectra.size(); }), 2u);
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EXPECT_EQ(waterfall->access_rendering_stream<Waterfall_Stream_Tag>(
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[](std::span<std::shared_ptr<const Waterfall_Row>> rows) { return rows.size(); }), 3u);
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}
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TEST(plottable_migration, direct_overlay_and_constellation_build_and_render) {
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using Scene = Impl<Render_Scene_2D>;
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using Numeric = Impl<Numeric_Axis>;
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using Diagram = Impl<Constellation_Diagram>;
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using Overlay = Impl<Selection_Rectangle_Overlay>;
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initialize_runtime({.workers = 2});
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const Size canvas{160, 120};
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auto horizontal = build_object<Numeric>();
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auto vertical = build_object<Numeric>();
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configure_axis(horizontal.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(vertical.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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horizontal->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{-1.0, 1.0});
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vertical->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{-1.0, 1.0});
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auto diagram = build_object<Diagram>(horizontal.get(), vertical.get());
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auto overlay = build_object<Overlay>(horizontal.get(), vertical.get());
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diagram->set<&Constellation_Diagram::Prop::i_range>(Axis_Range{-1.0, 1.0});
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diagram->set<&Constellation_Diagram::Prop::q_range>(Axis_Range{-1.0, 1.0});
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diagram->submit_stream<Constellation_Stream_Tag>(
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Constellation_Point{{0.25, -0.25}, monotonic_milliseconds()});
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diagram->mark_dirty<Prepare_Data_Tag>();
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auto scene = build_scene<Scene>(diagram.get(), overlay.get());
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scene->set<&Render_Scene_2D::Prop::viewport>(canvas);
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scene->activate_view();
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render_once(scene.get());
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EXPECT_EQ(diagram->access_rendering_stream<Constellation_Stream_Tag>(
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[](std::span<Constellation_Point> points) { return points.size(); }), 1u);
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EXPECT_EQ(overlay->read_state<Renderable::Base_Tag>().prepare_task_count, 0u);
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EXPECT_EQ(overlay->read_state<Renderable::Base_Tag>().paint_task_count, 1u);
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}
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TEST(selection_overlay, control_extends_selection_and_plain_click_clears_it) {
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using Scene = Impl<Render_Scene_2D>;
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using Numeric = Impl<Numeric_Axis>;
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using Overlay = Impl<Selection_Rectangle_Overlay>;
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initialize_runtime({.workers = 2});
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const Size canvas{160, 120};
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auto horizontal = build_object<Numeric>();
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auto vertical = build_object<Numeric>();
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configure_axis(horizontal.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(vertical.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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horizontal->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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vertical->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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auto overlay = build_object<Overlay>(horizontal.get(), vertical.get());
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auto scene = build_scene<Scene>(overlay.get());
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scene->set<&Render_Scene_2D::Prop::viewport>(canvas);
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scene->activate_view();
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render_once(scene.get());
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const auto drag = [&](Point_F first, Point_F second, Keyboard_Modifier modifiers) {
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auto press = scene->make_event<Pointer_Event>(Event_Type::pointer_press);
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press->position = first;
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press->button = Mouse_Button::left;
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press->modifiers = modifiers;
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scene->submit_stream<Scene_Event_Stream_Tag>(press);
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auto move = scene->make_event<Pointer_Event>(Event_Type::pointer_move);
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move->position = second;
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move->modifiers = modifiers;
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scene->submit_stream<Scene_Event_Stream_Tag>(move);
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auto release = scene->make_event<Pointer_Event>(Event_Type::pointer_release);
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release->position = second;
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release->button = Mouse_Button::left;
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release->modifiers = modifiers;
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scene->submit_stream<Scene_Event_Stream_Tag>(release);
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render_once(scene.get());
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};
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drag({30.0, 90.0}, {60.0, 60.0}, Keyboard_Modifier::none);
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EXPECT_EQ(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.size(), 1u);
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drag({70.0, 90.0}, {100.0, 60.0}, Keyboard_Modifier::control);
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EXPECT_EQ(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.size(), 2u);
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drag({120.0, 40.0}, {120.0, 40.0}, Keyboard_Modifier::none);
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EXPECT_TRUE(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.empty());
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}
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TEST(selection_overlay, time_axis_selection_keeps_axis_coordinates_while_window_moves) {
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using Scene = Impl<Render_Scene_2D>;
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using Time = Impl<Time_Axis>;
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using Numeric = Impl<Numeric_Axis>;
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using Overlay = Impl<Selection_Rectangle_Overlay>;
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initialize_runtime({.workers = 2});
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const Size canvas{160, 120};
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auto time = build_object<Time>();
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auto value = build_object<Numeric>();
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configure_axis(time.get(), Axis_Orientation::horizontal, {20.0, 100.0}, 120.0, canvas);
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configure_axis(value.get(), Axis_Orientation::vertical, {20.0, 100.0}, -80.0, canvas);
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time->set<&Time_Axis::Prop::visible_count>(10);
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value->set<&Numeric_Axis::Prop::coordinate_range>(Axis_Range{0.0, 100.0});
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time->append_time({1'000});
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time->append_time({2'000});
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time->append_time({3'000});
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auto overlay = build_object<Overlay>(time.get(), value.get());
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auto scene = build_scene<Scene>(overlay.get());
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scene->set<&Render_Scene_2D::Prop::viewport>(canvas);
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scene->activate_view();
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render_once(scene.get());
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auto press = scene->make_event<Pointer_Event>(Event_Type::pointer_press);
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press->position = {92.0, 88.0};
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press->button = Mouse_Button::left;
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scene->submit_stream<Scene_Event_Stream_Tag>(press);
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auto move = scene->make_event<Pointer_Event>(Event_Type::pointer_move);
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move->position = {116.0, 56.0};
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scene->submit_stream<Scene_Event_Stream_Tag>(move);
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auto release = scene->make_event<Pointer_Event>(Event_Type::pointer_release);
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release->position = {116.0, 56.0};
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release->button = Mouse_Button::left;
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scene->submit_stream<Scene_Event_Stream_Tag>(release);
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render_once(scene.get());
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ASSERT_EQ(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.size(), 1u);
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const Axis_Rectangle selected = overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.front();
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const auto pixel_before = time->coordinate_to_pixel(selected.horizontal.center());
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time->append_time({4'000});
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render_once(scene.get());
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ASSERT_EQ(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.size(), 1u);
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EXPECT_EQ(overlay->read_prop<Selection_Rectangle_Overlay::Base_Tag>().selected_regions.front(), selected);
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EXPECT_NE(time->coordinate_to_pixel(selected.horizontal.center()), pixel_before);
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}
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