Files
Renderive/render_2D/plottable/Frequency_Trace.cpp
T

55 lines
2.3 KiB
C++

#include "Frequency_Trace.h"
#include "Plottable_Real_Time_Data.h"
#include "../render/Blend2D_Cache.h"
#include <algorithm>
#include <deque>
#include <vector>
namespace renderive {
namespace detail {
namespace {
using Frequency_Trace_History = Plottable_History_Real_Time_Data<std::pair<int, double>, std::deque<std::pair<int, double>>>;
}
struct Frequency_Trace_Control::Impl {
Impl(Frequency_Trace_Control& owner, std::shared_ptr<Time_Axis> time, std::shared_ptr<Axis> value)
: time_axis(std::move(time)), value_axis(std::move(value)), samples(observe_real_time_data(owner)) {}
std::shared_ptr<Time_Axis> time_axis;
std::shared_ptr<Axis> value_axis;
Frequency_Trace_History samples;
};
Frequency_Trace_Control::Frequency_Trace_Control(Plot_Core& plot, const Frequency_Trace_Properties& properties, std::shared_ptr<Time_Axis> time_axis, std::shared_ptr<Axis> value_axis)
: Plottable_State(plot, properties), impl_(std::make_unique<Impl>(*this, std::move(time_axis), std::move(value_axis))) {}
Frequency_Trace_Control::~Frequency_Trace_Control() = default;
void Frequency_Trace_Control::append_sample(int tick, double value) {
const int limit = std::max(2, impl_->time_axis->visible_time_point_count());
impl_->samples.update({tick, value}, static_cast<std::size_t>(limit));
changed();
}
void Frequency_Trace_Control::append_sample(Time_Of_Day time, double value) {
append_sample(impl_->time_axis->append_time(time), value);
}
std::size_t Frequency_Trace_Control::sample_count() const {
return impl_->samples.size();
}
std::size_t Frequency_Trace_Control::rendered_point_count() const {
const std::size_t count = sample_count();
return count >= 2 ? count : 0;
}
void Frequency_Trace_Control::publish() {
publish_properties();
}
void Frequency_Trace_Control::paint(Painter& painter) {
const auto state = render_properties();
const auto samples = impl_->samples.snapshot();
if(samples.size() < 2)
return;
const Axis_Transform x = impl_->time_axis->transform();
const Axis_Transform y = impl_->value_axis->transform();
std::vector<PointF> points;
points.reserve(samples.size());
for(const auto& [tick, value] : samples)
points.push_back({x.coord_to_pixel(tick), y.coord_to_pixel(value)});
painter.polyline(points, state.pen);
}
}
}