341 lines
14 KiB
C++
341 lines
14 KiB
C++
#include "Plottables.h"
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#include "Curve_Sampling.h"
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#include "../plot/Plot_Core.h"
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#include "../render/Blend2D_Cache.h"
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#include <algorithm>
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#include <cmath>
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#include <iomanip>
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#include <sstream>
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namespace renderive {
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namespace {
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RectF axes_rect(const Axis_Transform& horizontal, const Axis_Transform& vertical) {
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const double x1 = horizontal.coord_to_pixel(horizontal.coordinate_range.origin);
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const double x2 = horizontal.coord_to_pixel(horizontal.coordinate_range.target);
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const double y1 = vertical.coord_to_pixel(vertical.coordinate_range.origin);
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const double y2 = vertical.coord_to_pixel(vertical.coordinate_range.target);
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return {std::min(x1, x2), std::min(y1, y2), std::abs(x2 - x1), std::abs(y2 - y1)};
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}
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void draw_curve(detail::Painter& painter,
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std::span<const double> values,
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Range domain,
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const Axis_Transform& x_axis,
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const Axis_Transform& y_axis,
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bool visible_only,
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Line_Interpolation_Mode interpolation,
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const Pen& pen,
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const Brush& brush) {
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auto points = detail::curve_points(values, domain, x_axis, y_axis,
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visible_only, interpolation);
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if (points.size() < 2)
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return;
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if (brush.enabled()) {
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std::vector<PointF> polygon;
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polygon.reserve(points.size() + 2);
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polygon.push_back({points.front().x, y_axis.coord_to_pixel(y_axis.coordinate_range.target)});
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polygon.insert(polygon.end(), points.begin(), points.end());
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polygon.push_back({points.back().x, y_axis.coord_to_pixel(y_axis.coordinate_range.target)});
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painter.polygon(polygon, Pen{.style = Line_Style::None}, brush);
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}
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painter.polyline(points, pen);
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}
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} // namespace
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Spectrum::Spectrum(Plot_Core& plot,
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std::shared_ptr<Frequency_Axis> frequency_axis,
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std::shared_ptr<Axis> power_axis)
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: Renderable(plot), state_{} {
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state_.frequency_axis = std::move(frequency_axis);
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state_.power_axis = std::move(power_axis);
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}
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#define RENDERIVE_SPECTRUM_PROPERTY(Type, Method, Field) \
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Type Spectrum::Method() const { std::lock_guard lock(mutex_); return state_.Field; } \
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void Spectrum::set_##Method(Type value) { { std::lock_guard lock(mutex_); state_.Field = std::move(value); } changed(); }
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RENDERIVE_SPECTRUM_PROPERTY(std::shared_ptr<Frequency_Axis>, frequency_axis, frequency_axis)
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RENDERIVE_SPECTRUM_PROPERTY(std::shared_ptr<Axis>, power_axis, power_axis)
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RENDERIVE_SPECTRUM_PROPERTY(Range, frequency_range, frequency_range)
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RENDERIVE_SPECTRUM_PROPERTY(double, center_frequency, center_frequency)
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RENDERIVE_SPECTRUM_PROPERTY(Range, sweep_frequency_range, sweep_range)
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RENDERIVE_SPECTRUM_PROPERTY(bool, max_hold_visible, max_hold)
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RENDERIVE_SPECTRUM_PROPERTY(bool, min_hold_visible, min_hold)
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RENDERIVE_SPECTRUM_PROPERTY(bool, max_marker_visible, max_marker)
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RENDERIVE_SPECTRUM_PROPERTY(bool, use_min_marker, min_marker)
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RENDERIVE_SPECTRUM_PROPERTY(bool, sweep_region_visible, sweep_visible)
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RENDERIVE_SPECTRUM_PROPERTY(bool, visible_range_only, visible_only)
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RENDERIVE_SPECTRUM_PROPERTY(Line_Interpolation_Mode, interpolation_mode, interpolation)
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RENDERIVE_SPECTRUM_PROPERTY(Brush, max_brush, max_brush)
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RENDERIVE_SPECTRUM_PROPERTY(Brush, current_brush, current_brush)
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RENDERIVE_SPECTRUM_PROPERTY(Brush, min_brush, min_brush)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, max_pen, max_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, current_pen, current_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, min_pen, min_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, selected_marker_pen, selected_marker_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, marker_pen, marker_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Pen, middle_frequency_pen, middle_pen)
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RENDERIVE_SPECTRUM_PROPERTY(Brush, sweep_region_brush, sweep_brush)
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#undef RENDERIVE_SPECTRUM_PROPERTY
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int Spectrum::frequency_point_size() const {
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std::lock_guard lock(mutex_);
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return state_.point_count;
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}
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void Spectrum::set_frequency_point_size(int value) {
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{ std::lock_guard lock(mutex_); state_.point_count = std::max(0, value); }
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changed();
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}
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void Spectrum::update_samples(std::span<const double> values) {
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{
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std::lock_guard lock(mutex_);
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state_.samples.assign(values.begin(), values.end());
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if (state_.point_count <= 0)
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state_.point_count = static_cast<int>(values.size());
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if (state_.maxima.size() != values.size())
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state_.maxima.assign(values.begin(), values.end());
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else
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for (std::size_t index = 0; index < values.size(); ++index)
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state_.maxima[index] = std::max(state_.maxima[index], values[index]);
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if (state_.minima.size() != values.size())
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state_.minima.assign(values.begin(), values.end());
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else
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for (std::size_t index = 0; index < values.size(); ++index)
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state_.minima[index] = std::min(state_.minima[index], values[index]);
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}
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changed();
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}
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void Spectrum::update_samples(std::pmr::vector<double>&& values) {
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update_samples(std::span<const double>(values.data(), values.size()));
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}
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double Spectrum::power_at(double frequency, bool& ok) const {
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std::lock_guard lock(mutex_);
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ok = false;
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if (state_.samples.empty() || !state_.frequency_range.contains(frequency) ||
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state_.frequency_range.length() == 0.0)
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return 0.0;
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const double normalized = (frequency - state_.frequency_range.origin) /
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state_.frequency_range.length();
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const double position = std::clamp(normalized, 0.0, 1.0) *
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static_cast<double>(state_.samples.size() - 1);
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const auto lower = static_cast<std::size_t>(std::floor(position));
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const auto upper = std::min(lower + 1, state_.samples.size() - 1);
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const double fraction = position - static_cast<double>(lower);
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ok = true;
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return state_.samples[lower] * (1.0 - fraction) + state_.samples[upper] * fraction;
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}
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void Spectrum::add_custom_marker(double frequency) { add_custom_line_marker(frequency); }
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void Spectrum::add_custom_line_marker(double frequency) {
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{ std::lock_guard lock(mutex_); state_.markers.push_back(frequency); }
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changed();
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}
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void Spectrum::remove_custom_marker(double frequency) {
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{
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std::lock_guard lock(mutex_);
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if (state_.markers.empty())
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return;
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auto closest = std::min_element(state_.markers.begin(), state_.markers.end(),
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[frequency](double left, double right) {
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return std::abs(left - frequency) < std::abs(right - frequency);
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});
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const int removed = static_cast<int>(std::distance(state_.markers.begin(), closest));
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state_.markers.erase(closest);
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if (state_.selected_marker == removed)
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state_.selected_marker = -1;
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else if (state_.selected_marker > removed)
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--state_.selected_marker;
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}
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changed();
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}
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void Spectrum::remove_selected_marker() {
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{
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std::lock_guard lock(mutex_);
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if (state_.selected_marker < 0 || state_.selected_marker >= static_cast<int>(state_.markers.size()))
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return;
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state_.markers.erase(state_.markers.begin() + state_.selected_marker);
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state_.selected_marker = -1;
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}
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changed();
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}
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void Spectrum::clear_custom_markers() {
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{ std::lock_guard lock(mutex_); state_.markers.clear(); state_.selected_marker = -1; }
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changed();
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}
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int Spectrum::selectable_line_marker_count() const {
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std::lock_guard lock(mutex_);
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return static_cast<int>(state_.markers.size());
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}
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int Spectrum::selected_marker_index() const { std::lock_guard lock(mutex_); return state_.selected_marker; }
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void Spectrum::set_selected_marker_index(int index) {
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{
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std::lock_guard lock(mutex_);
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state_.selected_marker = index >= 0 && index < static_cast<int>(state_.markers.size()) ? index : -1;
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}
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changed();
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}
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void Spectrum::select_next_marker() {
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std::lock_guard lock(mutex_);
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if (state_.markers.empty())
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state_.selected_marker = -1;
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else
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state_.selected_marker = (state_.selected_marker + 1) % static_cast<int>(state_.markers.size());
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invalidate_cache();
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plot().notify_model_dirty();
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}
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void Spectrum::select_previous_marker() {
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std::lock_guard lock(mutex_);
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if (state_.markers.empty())
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state_.selected_marker = -1;
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else
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state_.selected_marker = (state_.selected_marker <= 0
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? static_cast<int>(state_.markers.size())
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: state_.selected_marker) - 1;
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invalidate_cache();
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plot().notify_model_dirty();
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}
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void Spectrum::clear_marker_selection() { set_selected_marker_index(-1); }
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double Spectrum::marker_frequency(int index) const {
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std::lock_guard lock(mutex_);
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return index >= 0 && index < static_cast<int>(state_.markers.size()) ? state_.markers[index] : 0.0;
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}
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void Spectrum::set_marker_frequency(int index, double frequency) {
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{
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std::lock_guard lock(mutex_);
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if (index < 0 || index >= static_cast<int>(state_.markers.size()))
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return;
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state_.markers[index] = frequency;
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}
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changed();
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}
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void Spectrum::set_current_marker_frequency(double frequency) {
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const int index = selected_marker_index();
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if (index >= 0)
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set_marker_frequency(index, frequency);
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}
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Spectrum::State Spectrum::state_snapshot() const {
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std::lock_guard lock(mutex_);
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return state_;
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}
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void Spectrum::handle_event(const Event& event) {
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update_hover(event);
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}
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void Spectrum::paint(detail::Painter& painter) {
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const State state = state_snapshot();
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if (!state.frequency_axis || !state.power_axis)
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return;
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const Axis_Transform horizontal = state.frequency_axis->transform();
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const Axis_Transform vertical = state.power_axis->transform();
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const RectF content = axes_rect(horizontal, vertical);
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if (state.sweep_visible) {
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const double first = horizontal.coord_to_pixel(state.sweep_range.origin);
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const double last = horizontal.coord_to_pixel(state.sweep_range.target);
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painter.rect({std::min(first, last), content.y, std::abs(last - first), content.height},
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Pen{.style = Line_Style::None}, state.sweep_brush);
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}
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if (state.max_hold)
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draw_curve(painter, state.maxima, state.frequency_range, horizontal, vertical,
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state.visible_only, state.interpolation, state.max_pen, state.max_brush);
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if (state.min_hold)
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draw_curve(painter, state.minima, state.frequency_range, horizontal, vertical,
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state.visible_only, state.interpolation, state.min_pen, state.min_brush);
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draw_curve(painter, state.samples, state.frequency_range, horizontal, vertical,
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state.visible_only, state.interpolation, state.current_pen, state.current_brush);
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if (state.middle_pen.enabled()) {
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const double x = horizontal.coord_to_pixel(state.center_frequency);
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painter.line({x, content.y}, {x, content.bottom()}, state.middle_pen);
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}
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for (std::size_t index = 0; index < state.markers.size(); ++index) {
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const double frequency = state.markers[index];
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const double x = horizontal.coord_to_pixel(frequency);
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const Pen& pen = static_cast<int>(index) == state.selected_marker
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? state.selected_marker_pen
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: state.marker_pen;
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painter.line({x, content.y}, {x, content.bottom()}, pen);
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}
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if (!state.samples.empty() && (state.max_marker || state.min_marker)) {
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const auto draw_extreme = [&](bool maximum) {
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auto iterator = maximum ? std::max_element(state.samples.begin(), state.samples.end())
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: std::min_element(state.samples.begin(), state.samples.end());
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const std::size_t index = static_cast<std::size_t>(std::distance(state.samples.begin(), iterator));
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const double denominator = state.samples.size() > 1 ? state.samples.size() - 1.0 : 1.0;
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const double frequency = state.frequency_range.origin +
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state.frequency_range.length() * index / denominator;
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const PointF point{horizontal.coord_to_pixel(frequency), vertical.coord_to_pixel(*iterator)};
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const Pen& pen = maximum ? state.max_pen : state.min_pen;
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painter.circle(point, 3.0, pen, Brush{pen.color, Brush_Style::Solid});
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};
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if (state.max_marker)
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draw_extreme(true);
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if (state.min_marker)
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draw_extreme(false);
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}
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const Hover_Tooltip_Snapshot tooltip = tooltip_snapshot();
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if (tooltip.enabled && tooltip.active && content.contains(tooltip.position)) {
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const double frequency = horizontal.pixel_to_coord(tooltip.position.x);
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bool ok{};
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const double power = power_at(frequency, ok);
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if (ok) {
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std::ostringstream text;
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text << std::fixed << std::setprecision(2) << frequency << " Hz " << power;
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const RectF box{tooltip.position.x + 8.0, tooltip.position.y + 8.0, 170.0, 24.0};
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painter.rect(box, Pen{tooltip.text_pen.color}, tooltip.background);
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painter.text({box.x + 4.0, box.y + 3.0}, text.str(), tooltip.font, tooltip.text_pen);
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}
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}
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}
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Spectrum::Builder::Builder(std::shared_ptr<Renderable> parent,
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std::shared_ptr<Frequency_Axis> frequency_axis,
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std::shared_ptr<Axis> power_axis)
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: parent_(std::move(parent)), frequency_axis_(std::move(frequency_axis)),
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power_axis_(std::move(power_axis)) {}
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std::shared_ptr<Spectrum> Spectrum::Builder::build() {
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if (!parent_ || !frequency_axis_ || !power_axis_)
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return {};
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auto result = parent_->plot().make_renderable<Spectrum>(parent_, frequency_axis_, power_axis_);
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result->set_frequency_range(frequency_range_);
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result->set_frequency_point_size(point_count_);
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result->set_center_frequency(center_);
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result->set_sweep_frequency_range(sweep_range_);
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result->set_max_hold_visible(max_hold_);
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result->set_min_hold_visible(min_hold_);
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result->set_max_marker_visible(max_marker_);
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result->set_use_min_marker(min_marker_);
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result->set_sweep_region_visible(sweep_visible_);
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result->set_visible_range_only(visible_only_);
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result->set_interpolation_mode(interpolation_);
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return result;
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}
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} // namespace renderive
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