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Renderive/Core2/tests/Core2_Integration_Tests.cpp
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2026-08-11 06:21:51 +08:00

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#include "Core2/export.h"
#include "Core2/plottable/Curve_Sampling.h"
#include "Core2/render/Blend2D_Cache.h"
#include <gtest/gtest.h>
#include <array>
#include <cstddef>
#include <memory_resource>
#include <vector>
namespace renderive {
namespace {
TEST(Renderive_Core2, RootIdentityAndRefreshDiagnosticsComeFromKernelState) {
Plot_Core plot;
plot.init();
const auto root = plot.root_renderable();
ASSERT_TRUE(root);
root->set_object_name("renamed-root");
EXPECT_EQ(plot.root_renderable(), root);
plot.set_viewport_size({32, 24});
plot.activate_view();
plot.set_max_render_fps(144.0);
ASSERT_TRUE(plot.render_frame());
const auto diagnostics = plot.diagnostics();
EXPECT_DOUBLE_EQ(diagnostics.refresh.frequency_hz, 144.0);
EXPECT_EQ(diagnostics.refresh.frame_count, 1u);
}
TEST(Renderive_Core2, EveryCurveInterpolationModeHasDistinctSamplingSemantics) {
const std::array<double, 2> edge_values{0.0, 10.0};
const Range domain{0.0, 1.0};
const auto nearest = detail::curve_sampling::interpolate(
edge_values, domain, Line_Interpolation_Mode::Nearest_Sample);
const auto linear = detail::curve_sampling::interpolate(
edge_values, domain, Line_Interpolation_Mode::Linear_Value);
const auto power = detail::curve_sampling::interpolate(
edge_values, domain, Line_Interpolation_Mode::Linear_Power_Domain);
const auto step_left = detail::curve_sampling::interpolate(
edge_values, domain, Line_Interpolation_Mode::Step_Left);
const auto step_right = detail::curve_sampling::interpolate(
edge_values, domain, Line_Interpolation_Mode::Step_Right);
EXPECT_EQ(nearest.size(), 4u);
EXPECT_EQ(linear.size(), 2u);
ASSERT_EQ(power.size(), 5u);
EXPECT_NEAR(power[2].value, 7.4036269, 1e-6);
ASSERT_EQ(step_left.size(), 3u);
ASSERT_EQ(step_right.size(), 3u);
EXPECT_DOUBLE_EQ(step_left[1].coordinate, 1.0);
EXPECT_DOUBLE_EQ(step_left[1].value, 0.0);
EXPECT_DOUBLE_EQ(step_right[1].coordinate, 0.0);
EXPECT_DOUBLE_EQ(step_right[1].value, 10.0);
const std::array<double, 4> curved_values{0.0, 10.0, 0.0, 10.0};
const auto cubic = detail::curve_sampling::interpolate(
curved_values, {0.0, 3.0}, Line_Interpolation_Mode::Cubic_Value);
ASSERT_EQ(cubic.size(), 13u);
EXPECT_NEAR(cubic[2].value, 5.625, 1e-9);
const std::array<double, 11> visible_values{};
const Axis_Transform visible_x{{4.0, 6.0}, 0.0, 100.0};
const Axis_Transform visible_y{{0.0, 1.0}, 0.0, 100.0};
const auto clipped = detail::curve_points(
visible_values, {0.0, 10.0}, visible_x, visible_y, true,
Line_Interpolation_Mode::Linear_Value);
EXPECT_LT(clipped.size(), visible_values.size());
ASSERT_GE(clipped.size(), 2u);
EXPECT_LE(clipped.front().x, 0.0);
EXPECT_GE(clipped.back().x, 100.0);
}
TEST(Renderive_Core2, BicubicHeatmapUsesRealCubicResampling) {
const std::array<Pixel, 16> source{
pack_rgba(255, 0, 0), pack_rgba(0, 0, 0), pack_rgba(255, 255, 255), pack_rgba(0, 0, 255),
pack_rgba(0, 255, 0), pack_rgba(255, 255, 255), pack_rgba(0, 0, 0), pack_rgba(255, 0, 0),
pack_rgba(0, 0, 255), pack_rgba(0, 0, 0), pack_rgba(255, 255, 255), pack_rgba(0, 255, 0),
pack_rgba(255, 255, 255), pack_rgba(255, 0, 0), pack_rgba(0, 255, 0), pack_rgba(0, 0, 0)
};
const auto render = [&source](Image_Interpolation_Mode interpolation) {
detail::Blend2D_Color_Cache cache;
{
detail::Painter painter(cache, {11, 11});
painter.heatmap({0.0, 0.0, 11.0, 11.0}, 4, 4, source, interpolation);
}
const Image_View view = cache.view();
std::vector<Pixel> pixels;
pixels.reserve(static_cast<std::size_t>(view.width) * view.height);
for (int y = 0; y < view.height; ++y) {
const auto* row = reinterpret_cast<const Pixel*>(
view.data + static_cast<std::ptrdiff_t>(y) * view.stride);
pixels.insert(pixels.end(), row, row + view.width);
}
return pixels;
};
const auto bilinear = render(Image_Interpolation_Mode::Bilinear);
const auto bicubic = render(Image_Interpolation_Mode::Bicubic);
EXPECT_EQ(bilinear.size(), bicubic.size());
EXPECT_NE(bilinear, bicubic);
}
TEST(Renderive_Core2, KernelSceneRendersBusinessObjectsIntoBlend2DFrame) {
Plot_Core plot;
plot.init();
plot.set_viewport_size({320, 180});
plot.activate_view();
const auto root = plot.root_renderable();
ASSERT_TRUE(root);
auto frequency_axis = Frequency_Axis::Builder(root, Orientation::Horizontal)
.set_x(32)
.set_y(150)
.set_pixel_length(270)
.set_coord_range({88.0, 108.0})
.build();
frequency_axis->set_locale({','});
frequency_axis->set_label_rotation_degrees(15);
EXPECT_EQ(frequency_axis->tick_label(88.5), "88,5 Hz");
frequency_axis->set_label_precision(4);
EXPECT_EQ(frequency_axis->tick_label(1'234'567.0), "1,2346 MHz");
auto power_axis = Axis::Builder(root, Orientation::Vertical)
.set_x(32)
.set_y(8)
.set_pixel_length(142)
.set_coord_range({-120.0, 0.0})
.build();
auto spectrum = Spectrum::Builder(root, frequency_axis, power_axis)
.set_frequency_range({88.0, 108.0})
.set_frequency_point_size(64)
.set_max_hold_visible(true)
.build();
std::vector<double> samples(64);
for (std::size_t index = 0; index < samples.size(); ++index)
samples[index] = -100.0 + static_cast<double>(index % 24) * 3.0;
spectrum->update_samples(samples);
ASSERT_TRUE(plot.render_frame());
bool saw_frame = false;
bool saw_drawn_pixel = false;
plot.with_frame([&](Image_View view) {
saw_frame = !view.empty() && view.width == 320 && view.height == 180;
if (!saw_frame)
return;
for (int y = 0; y < view.height && !saw_drawn_pixel; ++y) {
const auto* row = view.data + static_cast<std::ptrdiff_t>(y) * view.stride;
for (int x = 0; x < view.width * static_cast<int>(sizeof(Pixel)); ++x) {
if (row[x] != std::byte{}) {
saw_drawn_pixel = true;
break;
}
}
}
});
EXPECT_TRUE(saw_frame);
EXPECT_TRUE(saw_drawn_pixel);
EXPECT_EQ(plot.diagnostics().refresh.frame_count, 1u);
EXPECT_FALSE(plot.render_frame());
spectrum->update_samples(samples);
EXPECT_TRUE(plot.render_frame());
frequency_axis->set_use_wheel(true);
const Range before_zoom = frequency_axis->coord_range();
Wheel_Event wheel;
wheel.position = {160.0, 150.0};
wheel.angle_delta_y = 120.0;
plot.dispatch_event(wheel);
EXPECT_TRUE(wheel.is_accepted());
EXPECT_LT(frequency_axis->coord_range().size(), before_zoom.size());
EXPECT_TRUE(plot.render_frame());
plot.remove_renderable(spectrum);
EXPECT_TRUE(plot.render_frame(true));
EXPECT_FALSE(plot.render_frame());
}
TEST(Renderive_Core2, TimeAxisUsesOneFontStateAndFormatsConfiguredLabels) {
Plot_Core plot;
plot.init();
const auto root = plot.root_renderable();
auto axis = Time_Axis::Builder(root, Orientation::Horizontal)
.set_time_format("hh-mm-ss.zzz")
.set_font(Font{18.0, 700, true})
.set_tick_label_spacing_px(17)
.build();
ASSERT_TRUE(axis);
const int tick = axis->append_time(Time_Of_Day{3'723'045});
EXPECT_EQ(axis->tick_label(tick), "01-02-03.045");
EXPECT_EQ(axis->font(), (Font{18.0, 700, true}));
EXPECT_EQ(axis->unit_text_font(), axis->font());
EXPECT_EQ(axis->tick_label_spacing_px(), 17);
}
TEST(Renderive_Core2, PerformanceOverlayConsumesKernelFrameDiagnostics) {
Plot_Core plot;
plot.init();
plot.set_viewport_size({160, 90});
plot.activate_view();
plot.set_max_render_fps(120.0);
Performance_Overlay_Options options;
options.log.enabled = false;
const auto overlay = attach_performance_overlay(plot, options);
ASSERT_TRUE(overlay);
set_performance_plot_name(plot, "integration");
set_performance_overlay_enabled(plot, true);
ASSERT_TRUE(plot.render_frame(true));
const auto snapshot = overlay->display_snapshot();
ASSERT_TRUE(snapshot);
EXPECT_EQ(snapshot->plot_name, "integration");
EXPECT_EQ(snapshot->viewport_size, (Size{160, 90}));
EXPECT_FALSE(snapshot->lines.empty());
EXPECT_EQ(snapshot->frame_count, 1u);
EXPECT_DOUBLE_EQ(plot.max_render_fps(), 120.0);
}
TEST(Renderive_Core2, AllFrameControlModesUseKernelStrategiesAndExposeObservers) {
Plot_Core manual(Frame_Control_Mode::Manual);
manual.init();
manual.set_viewport_size({64, 40});
EXPECT_EQ(manual.frame_control_mode(), Frame_Control_Mode::Manual);
ASSERT_TRUE(manual.prepare_frame());
auto manual_observer = manual.frame_observer_snapshot();
EXPECT_EQ(manual_observer.last_event, "prepared");
EXPECT_EQ(manual_observer.pending_frame_count, 1u);
ASSERT_TRUE(manual.refresh_manual_frame());
ASSERT_TRUE(manual.render_prepared_frame());
manual_observer = manual.frame_observer_snapshot();
EXPECT_EQ(manual_observer.last_event, "rendered");
EXPECT_EQ(manual_observer.consumed_frame_count, 1u);
Plot_Core low_latency(Frame_Control_Mode::Low_Latency);
low_latency.init();
low_latency.set_viewport_size({64, 40});
low_latency.activate_view();
ASSERT_TRUE(low_latency.render_frame(true));
const auto low_observer = low_latency.frame_observer_snapshot();
EXPECT_EQ(low_latency.frame_control_mode(), Frame_Control_Mode::Low_Latency);
EXPECT_EQ(low_observer.last_event, "lifecycle_completed");
EXPECT_EQ(low_observer.consumed_frame_count, 1u);
Plot_Core playback(Frame_Control_Mode::Playback);
playback.init();
playback.set_viewport_size({64, 40});
ASSERT_TRUE(playback.prepare_frame());
ASSERT_TRUE(playback.prepare_frame());
ASSERT_TRUE(playback.prepare_frame());
auto playback_observer = playback.frame_observer_snapshot();
EXPECT_EQ(playback.frame_control_mode(), Frame_Control_Mode::Playback);
EXPECT_EQ(playback_observer.last_event, "enqueued");
EXPECT_EQ(playback_observer.pending_frame_count, 3u);
ASSERT_TRUE(playback.render_prepared_frame());
playback_observer = playback.frame_observer_snapshot();
EXPECT_EQ(playback_observer.last_event, "rendered");
EXPECT_EQ(playback_observer.pending_frame_count, 2u);
EXPECT_EQ(playback_observer.consumed_frame_count, 1u);
}
TEST(Renderive_Core2, RetainedAxisAndTimeAxisApisRoundTripWithoutWebAdapters) {
Plot_Core plot;
plot.init();
const auto root = plot.root_renderable();
ASSERT_TRUE(root);
const auto axis = Axis::Builder(root, Orientation::Vertical)
.set_x(31)
.set_y(17)
.set_pixel_length(240)
.set_tick_length(13)
.set_sub_tick_length(7)
.set_color({10, 20, 30, 255})
.set_unit_text("dB")
.set_unit_text_font({15.0, 650, true})
.set_unit_text_pen({Color{40, 50, 60, 255}, 2.0})
.set_unit_text_background_brush(
{Color{3, 4, 5, 255}, Brush_Style::Solid})
.set_label_rotation_degrees(27)
.set_coord_range({-120.0, -20.0})
.set_label_precision(4)
.set_use_wheel(true)
.set_use_drag(true)
.build();
ASSERT_TRUE(axis);
EXPECT_EQ(axis->x(), 31);
EXPECT_EQ(axis->y(), 17);
EXPECT_EQ(axis->orientation(), Orientation::Vertical);
EXPECT_EQ(axis->pixel_length(), 240U);
EXPECT_EQ(axis->tick_length(), 13);
EXPECT_EQ(axis->sub_tick_length(), 7);
EXPECT_EQ(axis->color(), (Color{10, 20, 30, 255}));
EXPECT_EQ(axis->unit_text(), "dB");
EXPECT_EQ(axis->unit_text_font(), (Font{15.0, 650, true}));
EXPECT_EQ(axis->unit_text_pen(), (Pen{Color{40, 50, 60, 255}, 2.0}));
EXPECT_EQ(axis->unit_text_background_brush(),
(Brush{Color{3, 4, 5, 255}, Brush_Style::Solid}));
EXPECT_EQ(axis->label_rotation_degrees(), 27);
EXPECT_EQ(axis->coord_range(), (Range{-120.0, -20.0}));
EXPECT_EQ(axis->label_precision(), 4);
EXPECT_TRUE(axis->use_wheel());
EXPECT_TRUE(axis->use_drag());
axis->set_locale({','});
axis->set_coord_start(-100.0);
axis->set_coord_length(80.0);
EXPECT_EQ(axis->locale(), (Number_Locale{','}));
EXPECT_EQ(axis->coord_range(), (Range{-100.0, -20.0}));
EXPECT_DOUBLE_EQ(axis->pixel_to_coord(axis->coord_to_pixel(-60.0)), -60.0);
EXPECT_GT(axis->pixel_sample_count(), 0);
EXPECT_GT(axis->tick_step(axis->coord_range()), 0.0);
EXPECT_GE(axis->sub_tick_count(axis->tick_step(axis->coord_range())), 0);
const auto time_axis = Time_Axis::Builder(root, Orientation::Horizontal)
.set_x(12)
.set_y(280)
.set_pixel_length(300)
.set_visible_time_point_count(32)
.set_tick_label_spacing_px(19)
.set_time_format("hh:mm:ss.zzz")
.set_font({16.0, 700, true})
.set_newest_at_axis_start(true)
.build();
ASSERT_TRUE(time_axis);
const int first = time_axis->append_time({3'723'004});
const int second = time_axis->append_time({3'724'005});
EXPECT_EQ(time_axis->visible_time_point_count(), 32);
EXPECT_EQ(time_axis->tick_label_spacing_px(), 19);
EXPECT_EQ(time_axis->time_format(), "hh:mm:ss.zzz");
EXPECT_EQ(time_axis->font(), (Font{16.0, 700, true}));
EXPECT_TRUE(time_axis->newest_at_axis_start());
EXPECT_EQ(time_axis->time_point_count(), 2U);
EXPECT_EQ(time_axis->tick_to_time(first), (Time_Of_Day{3'723'004}));
EXPECT_EQ(time_axis->tick_to_time(second), (Time_Of_Day{3'724'005}));
EXPECT_EQ(time_axis->tick_label(first), "01:02:03.004");
}
TEST(Renderive_Core2, RetainedSpectrumApisRoundTripAndMarkersRemainObservable) {
Plot_Core plot;
plot.init();
plot.set_viewport_size({360, 240});
plot.activate_view();
const auto root = plot.root_renderable();
const auto frequency = Frequency_Axis::Builder(root, Orientation::Horizontal)
.set_x(30).set_y(210).set_pixel_length(300)
.set_coord_range({90.0, 110.0}).build();
const auto power = Axis::Builder(root, Orientation::Vertical)
.set_x(30).set_y(20).set_pixel_length(190)
.set_coord_range({-20.0, -120.0}).build();
auto spectrum = Spectrum::Builder(root, frequency, power)
.set_frequency_range({90.0, 110.0})
.set_frequency_point_size(4)
.set_center_frequency(100.0)
.set_sweep_frequency_range({96.0, 104.0})
.set_max_hold_visible(true)
.set_min_hold_visible(true)
.set_max_marker_visible(true)
.set_use_min_marker(true)
.set_sweep_region_visible(true)
.set_visible_range_only(false)
.set_interpolation_mode(Line_Interpolation_Mode::Cubic_Value)
.build();
ASSERT_TRUE(spectrum);
spectrum->set_max_brush({Color{1, 2, 3, 80}, Brush_Style::Solid});
spectrum->set_current_brush({Color{4, 5, 6, 90}, Brush_Style::Solid});
spectrum->set_min_brush({Color{7, 8, 9, 100}, Brush_Style::Solid});
spectrum->set_max_pen({Color{10, 20, 30, 255}, 2.0});
spectrum->set_current_pen({Color{40, 50, 60, 255}, 2.5});
spectrum->set_min_pen({Color{70, 80, 90, 255}, 3.0});
spectrum->set_selected_marker_pen({Color{11, 22, 33, 255}, 4.0});
spectrum->set_marker_pen({Color{44, 55, 66, 255}, 1.5});
spectrum->set_middle_frequency_pen({Color{77, 88, 99, 255}, 1.25});
spectrum->set_sweep_region_brush({Color{12, 34, 56, 70}, Brush_Style::Solid});
EXPECT_EQ(spectrum->frequency_axis(), frequency);
EXPECT_EQ(spectrum->power_axis(), power);
EXPECT_EQ(spectrum->frequency_point_size(), 4);
EXPECT_EQ(spectrum->frequency_range(), (Range{90.0, 110.0}));
EXPECT_DOUBLE_EQ(spectrum->center_frequency(), 100.0);
EXPECT_EQ(spectrum->sweep_frequency_range(), (Range{96.0, 104.0}));
EXPECT_TRUE(spectrum->max_hold_visible());
EXPECT_TRUE(spectrum->min_hold_visible());
EXPECT_TRUE(spectrum->max_marker_visible());
EXPECT_TRUE(spectrum->use_min_marker());
EXPECT_TRUE(spectrum->sweep_region_visible());
EXPECT_FALSE(spectrum->visible_range_only());
EXPECT_EQ(spectrum->interpolation_mode(), Line_Interpolation_Mode::Cubic_Value);
EXPECT_EQ(spectrum->max_brush(), (Brush{Color{1, 2, 3, 80}, Brush_Style::Solid}));
EXPECT_EQ(spectrum->current_pen(), (Pen{Color{40, 50, 60, 255}, 2.5}));
EXPECT_EQ(spectrum->sweep_region_brush(),
(Brush{Color{12, 34, 56, 70}, Brush_Style::Solid}));
std::pmr::vector<double> samples{std::pmr::get_default_resource()};
samples.assign({-100.0, -80.0, -70.0, -50.0});
spectrum->update_samples(std::move(samples));
EXPECT_EQ(spectrum->sample_count(), 4U);
EXPECT_GT(spectrum->rendered_point_count(), 4U);
bool valid{};
EXPECT_DOUBLE_EQ(spectrum->power_at(100.0, valid), -75.0);
EXPECT_TRUE(valid);
EXPECT_DOUBLE_EQ(spectrum->power_at(200.0, valid), 0.0);
EXPECT_FALSE(valid);
spectrum->add_custom_marker(96.0);
spectrum->add_custom_line_marker(102.0);
EXPECT_EQ(spectrum->selectable_line_marker_count(), 2);
spectrum->select_next_marker();
EXPECT_EQ(spectrum->selected_marker_index(), 0);
spectrum->set_current_marker_frequency(97.0);
EXPECT_DOUBLE_EQ(spectrum->marker_frequency(0), 97.0);
spectrum->select_previous_marker();
EXPECT_EQ(spectrum->selected_marker_index(), 1);
spectrum->remove_selected_marker();
EXPECT_EQ(spectrum->selectable_line_marker_count(), 1);
spectrum->remove_custom_marker(97.1);
EXPECT_EQ(spectrum->selectable_line_marker_count(), 0);
spectrum->clear_custom_markers();
EXPECT_EQ(spectrum->selected_marker_index(), -1);
EXPECT_TRUE(plot.render_frame(true));
}
TEST(Renderive_Core2, RetainedHeatmapSweepAndTraceApisPreserveDataShapes) {
Plot_Core plot;
plot.init();
plot.set_viewport_size({420, 280});
plot.activate_view();
const auto root = plot.root_renderable();
const auto frequency = Frequency_Axis::Builder(root, Orientation::Horizontal)
.set_x(40).set_y(250).set_pixel_length(340)
.set_coord_range({0.0, 4.0}).build();
const auto power = Axis::Builder(root, Orientation::Vertical)
.set_x(40).set_y(20).set_pixel_length(230)
.set_coord_range({0.0, -120.0}).build();
const auto time = Time_Axis::Builder(root, Orientation::Vertical)
.set_x(40).set_y(20).set_pixel_length(230)
.set_visible_time_point_count(8).build();
auto waterfall = Waterfall::Builder(root, frequency, time)
.set_frequency_range({0.0, 4.0})
.set_power_range({-120.0, 0.0})
.set_frequency_bin_count(4)
.set_visible_range_only(false)
.set_interpolation_mode(Image_Interpolation_Mode::Bicubic)
.build();
ASSERT_TRUE(waterfall);
EXPECT_EQ(waterfall->frequency_axis(), frequency);
EXPECT_EQ(waterfall->time_axis(), time);
EXPECT_EQ(waterfall->frequency_range(), (Range{0.0, 4.0}));
EXPECT_EQ(waterfall->power_range(), (Range{-120.0, 0.0}));
EXPECT_EQ(waterfall->frequency_bin_count(), 4);
EXPECT_FALSE(waterfall->visible_range_only());
EXPECT_EQ(waterfall->interpolation_mode(), Image_Interpolation_Mode::Bicubic);
const std::array<double, 4> row1{-100.0, -80.0, -60.0, -40.0};
waterfall->append_row(Time_Of_Day{1000}, row1);
std::pmr::vector<double> row2{std::pmr::get_default_resource()};
row2.assign({-90.0, -70.0, -50.0, -30.0});
waterfall->append_row(Time_Of_Day{2000}, std::move(row2));
EXPECT_EQ(waterfall->row_count(), 2U);
EXPECT_EQ(waterfall->stored_point_count(), 8U);
EXPECT_EQ(waterfall->rendered_cell_count(), 8U);
auto afterglow = Afterglow::Builder(root, frequency, power)
.set_frequency_range({0.0, 4.0})
.set_power_range({-120.0, 0.0})
.set_frequency_bin_count(4)
.set_power_bin_count(8)
.set_interpolate_power_bins(false)
.set_decay_rate(0.35)
.build();
ASSERT_TRUE(afterglow);
EXPECT_EQ(afterglow->frequency_axis(), frequency);
EXPECT_EQ(afterglow->power_axis(), power);
EXPECT_EQ(afterglow->frequency_range(), (Range{0.0, 4.0}));
EXPECT_EQ(afterglow->power_range(), (Range{-120.0, 0.0}));
EXPECT_EQ(afterglow->frequency_point_size(), 4);
EXPECT_EQ(afterglow->power_point_size(), 8);
EXPECT_FALSE(afterglow->interpolate());
EXPECT_DOUBLE_EQ(afterglow->attenuation_rate(), 0.35);
afterglow->append_spectrum(row1);
std::pmr::vector<double> glow2{std::pmr::get_default_resource()};
glow2.assign({-95.0, -75.0, -55.0, -35.0});
afterglow->append_spectrum(std::move(glow2));
EXPECT_EQ(afterglow->history_count(), 2U);
EXPECT_EQ(afterglow->latest_spectrum_point_count(), 4U);
EXPECT_EQ(afterglow->rendered_cell_count(), 32U);
afterglow->set_attenuation_rate(2.0);
EXPECT_DOUBLE_EQ(afterglow->attenuation_rate(), 1.0);
auto sweep = Sweep_Spectrum::Builder(root, frequency, power)
.set_frequency_range({0.0, 8.0})
.set_bins_per_block(4)
.set_block_num(2)
.set_pen({Color{1, 120, 220, 255}, 2.0})
.set_current_frequency_pen({Color{240, 80, 20, 255}, 3.0})
.set_visible_range_only(false)
.set_interpolation_mode(Line_Interpolation_Mode::Step_Right)
.build();
ASSERT_TRUE(sweep);
EXPECT_EQ(sweep->frequency_axis(), frequency);
EXPECT_EQ(sweep->power_axis(), power);
EXPECT_EQ(sweep->frequency_range(), (Range{0.0, 8.0}));
EXPECT_EQ(sweep->bins_per_block(), 4);
EXPECT_EQ(sweep->block_count(), 2);
EXPECT_FALSE(sweep->visible_range_only());
EXPECT_EQ(sweep->interpolation_mode(), Line_Interpolation_Mode::Step_Right);
sweep->append_block(row1);
sweep->append_block(row1);
std::pmr::vector<double> block3{std::pmr::get_default_resource()};
block3.assign(row1.begin(), row1.end());
sweep->append_block(std::move(block3));
EXPECT_EQ(sweep->stored_block_count(), 2U);
EXPECT_EQ(sweep->stored_point_count(), 8U);
EXPECT_GT(sweep->rendered_point_count(), 0U);
auto trace = Frequency_Trace::Builder(root, time, power)
.set_pen({Color{120, 240, 80, 255}, 2.0})
.build();
ASSERT_TRUE(trace);
trace->append_sample(Time_Of_Day{3000}, -80.0);
trace->append_sample(Time_Of_Day{4000}, -70.0);
EXPECT_EQ(trace->time_axis(), time);
EXPECT_EQ(trace->value_axis(), power);
EXPECT_EQ(trace->sample_count(), 2U);
EXPECT_EQ(trace->rendered_point_count(), 2U);
EXPECT_TRUE(plot.render_frame(true));
}
TEST(Renderive_Core2, RetainedSelectionAndConstellationApisDriveInteractionAndLayout) {
Plot_Core plot;
plot.init();
plot.set_viewport_size({360, 260});
plot.activate_view();
const auto root = plot.root_renderable();
const auto horizontal = Axis::Builder(root, Orientation::Horizontal)
.set_x(30).set_y(230).set_pixel_length(300)
.set_coord_range({-3.0, 3.0}).build();
const auto vertical = Axis::Builder(root, Orientation::Vertical)
.set_x(30).set_y(20).set_pixel_length(210)
.set_coord_range({3.0, -3.0}).build();
auto selection = Selection_Rectangle_Overlay::Builder(root, horizontal, vertical)
.set_font({14.0, 600, true})
.set_font_pen({Color{20, 220, 180, 255}, 2.0})
.set_rect_brush({Color{20, 80, 220, 60}, Brush_Style::Solid})
.set_border_pen({Color{240, 200, 60, 255}, 2.0, Line_Style::Dash})
.build();
ASSERT_TRUE(selection);
EXPECT_EQ(selection->label_font(), (Font{14.0, 600, true}));
EXPECT_EQ(selection->label_pen(), (Pen{Color{20, 220, 180, 255}, 2.0}));
EXPECT_EQ(selection->selection_brush(),
(Brush{Color{20, 80, 220, 60}, Brush_Style::Solid}));
EXPECT_EQ(selection->selection_border_pen(),
(Pen{Color{240, 200, 60, 255}, 2.0, Line_Style::Dash}));
Pointer_Event press(Event_Type::Pointer_Press);
press.position = {80.0, 70.0};
press.button = Mouse_Button::Left;
selection->handle_event(press);
EXPECT_TRUE(press.is_accepted());
Pointer_Event move(Event_Type::Pointer_Move);
move.position = {260.0, 180.0};
selection->handle_event(move);
EXPECT_TRUE(move.is_accepted());
Pointer_Event release(Event_Type::Pointer_Release);
release.position = {260.0, 180.0};
release.button = Mouse_Button::Left;
selection->handle_event(release);
EXPECT_TRUE(release.is_accepted());
ASSERT_EQ(selection->selected_regions().size(), 1U);
EXPECT_FALSE(selection->selected_regions().front().empty());
selection->clear_selected_regions();
EXPECT_TRUE(selection->selected_regions().empty());
selection->set_horizontal_axis(horizontal);
selection->set_vertical_axis(vertical);
auto constellation = Constellation_Diagram::Builder(root, horizontal, vertical)
.set_i_range({-2.0, 2.0})
.set_q_range({-3.0, 3.0})
.set_point_color({80, 220, 255, 255})
.set_anchor_color({255, 180, 40, 255})
.set_point_lifetime_ms(2000)
.set_type(Constellation_Diagram_Type::Psk16)
.set_phase_offset_radians(0.25)
.build();
ASSERT_TRUE(constellation);
EXPECT_EQ(constellation->i_axis(), horizontal);
EXPECT_EQ(constellation->q_axis(), vertical);
EXPECT_EQ(constellation->i_range(), (Range{-2.0, 2.0}));
EXPECT_EQ(constellation->q_range(), (Range{-3.0, 3.0}));
EXPECT_EQ(constellation->point_color(), (Color{80, 220, 255, 255}));
EXPECT_EQ(constellation->anchor_color(), (Color{255, 180, 40, 255}));
EXPECT_EQ(constellation->point_lifetime_ms(), 2000);
constellation->append_point({0.5, -0.5});
constellation->append_point({-0.5, 0.5});
EXPECT_EQ(constellation->point_count(), 2U);
constellation->fit_square_to_axes();
EXPECT_EQ(horizontal->coord_range(), (Range{-3.0, 3.0}));
EXPECT_EQ(vertical->coord_range(), (Range{3.0, -3.0}));
EXPECT_TRUE(plot.render_frame(true));
}
} // namespace
} // namespace renderive