terion/Source/VectorScope.cpp

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2026-09-16 17:47:45 +02:00
#include "VectorScope.h"
VectorScope::VectorScope(TerionProcessor& p)
: processor(p)
{
startTimerHz(30);
}
VectorScope::~VectorScope()
{
stopTimer();
}
void VectorScope::timerCallback()
{
repaint();
}
float VectorScope::getRadius() const
{
auto bounds = getLocalBounds();
return juce::jmin(bounds.getWidth(), bounds.getHeight()) * 0.5f * 0.85f;
}
void VectorScope::resized()
{
auto bounds = getLocalBounds();
trail = juce::Image(juce::Image::ARGB, bounds.getWidth(), bounds.getHeight(), true);
}
void VectorScope::paint(juce::Graphics& g)
{
auto bounds = getLocalBounds();
const int w = bounds.getWidth();
const int h = bounds.getHeight();
const float cx = w * 0.5f;
const float cy = h * 0.5f;
const float radius = getRadius();
const float dotSize = processor.apvts.getRawParameterValue("dotSize")->load();
const float frozen = processor.apvts.getRawParameterValue("freeze")->load();
// Rebuild the trail from live points each frame (only if not frozen).
// The trail is fully cleared first, then every point with age < fadeTime
// is redrawn with its age-based alpha, so dots past fadeTime disappear
// completely instead of leaving an asymptotic dark-grey residue.
if (trail.isValid() && frozen < 0.5f)
{
juce::Graphics trailG(trail);
trailG.setColour(juce::Colours::black);
trailG.fillRect(trail.getBounds().toFloat());
const auto& points = processor.getPoints();
const float fadeTime = processor.apvts.getRawParameterValue("fadeTime")->load();
for (const auto& pt : points)
{
if (pt.age > fadeTime)
continue;
float normAge = pt.age / fadeTime;
float alpha = 1.0f - normAge;
alpha = alpha * alpha;
float x = cx + pt.side * radius * 2.0f;
float y = cy - pt.mid * radius * 2.0f;
float phase = std::abs(pt.side) / (std::abs(pt.mid) + 0.0001f);
phase = juce::jmin(phase, 1.0f);
juce::Colour color = juce::Colour::fromFloatRGBA(
0.2f + phase * 0.8f,
1.0f - phase * 0.4f,
1.0f - phase * 0.6f,
alpha * 0.9f);
trailG.setColour(color);
trailG.fillRect(x - dotSize * 0.5f, y - dotSize * 0.5f, dotSize, dotSize);
}
}
// Draw background
g.fillAll(juce::Colour(0xff0a0a0f));
// Draw the trail
if (trail.isValid())
g.drawImageAt(trail, 0, 0);
// Concentric circles with dB labels
g.setColour(juce::Colour(0xff1a1a25));
const float dBValues[] = { -12.0f, -6.0f, 0.0f };
const float dBFactors[] = { 0.25f, 0.5f, 1.0f };
for (int i = 0; i < 3; ++i)
{
float r = radius * dBFactors[i];
g.drawEllipse(cx - r, cy - r, r * 2.0f, r * 2.0f, 0.5f);
// dB label at top-right of each circle
g.setColour(juce::Colour(0xff444455));
g.setFont(9.0f);
juce::String dbLabel = juce::String(dBValues[i], 0) + "dB";
g.drawText(dbLabel, cx + r + 3, cy - r - 2, 40, 14, juce::Justification::centredLeft);
g.setColour(juce::Colour(0xff1a1a25));
}
// 45-degree lines (L=R and L=-R)
g.setColour(juce::Colour(0xff181822));
g.drawLine(cx - radius, cy - radius, cx + radius, cy + radius, 0.5f);
g.drawLine(cx - radius, cy + radius, cx + radius, cy - radius, 0.5f);
// Hair cross (brighter, thin)
drawHairCross(g, cx, cy);
// Legends
drawLegends(g, cx, cy, radius);
// Metrics overlay
drawMetricsOverlay(g, bounds);
// Border
g.setColour(juce::Colour(0xff333340));
g.drawRect(bounds, 1);
}
void VectorScope::drawHairCross(juce::Graphics& g, float cx, float cy)
{
auto bounds = getLocalBounds().toFloat();
// Bright center cross — two short, bright strokes
g.setColour(juce::Colour(0xff666680));
// Horizontal
g.drawLine(bounds.getX() + 8.0f, cy, bounds.getRight() - 8.0f, cy, 0.5f);
// Vertical
g.drawLine(cx, bounds.getY() + 8.0f, cx, bounds.getBottom() - 8.0f, 0.5f);
// Tiny center dot
g.setColour(juce::Colour(0xff8888aa));
g.fillEllipse(cx - 2.0f, cy - 2.0f, 4.0f, 4.0f);
}
void VectorScope::drawLegends(juce::Graphics& g, float cx, float cy, float radius)
{
g.setColour(juce::Colour(0xff666677));
g.setFont(10.0f);
// Side label (X axis, right side)
g.drawText("Side", cx + radius + 4.0f, cy + 4.0f, 40, 14, juce::Justification::centredLeft);
// Mid label (Y axis, top)
g.drawText("Mid", cx + 4.0f, cy - radius - 16.0f, 40, 14, juce::Justification::centredLeft);
// Diagonal labels: in M/S space these are the pure-channel loci
g.setColour(juce::Colour(0xff444455));
g.setFont(8.0f);
// L = 0 (right channel only): line y = x through centre
float diagX = cx + radius * 0.71f;
g.drawText("R only", diagX + 4.0f, cy + radius * 0.71f, 30, 12, juce::Justification::centredLeft);
// R = 0 (left channel only): line y = -x through centre
g.drawText("L only", diagX + 4.0f, cy - radius * 0.71f - 12.0f, 30, 12, juce::Justification::centredLeft);
}
void VectorScope::drawMetricsOverlay(juce::Graphics& g, const juce::Rectangle<int>& bounds)
{
const auto& metrics = processor.getMetrics();
const int margin = 10;
const int lineHeight = 14;
const int startY = bounds.getBottom() - margin - (7 * lineHeight);
// Background panel
juce::Rectangle<int> panelRect(bounds.getX() + margin, startY - 5, 120, 7 * lineHeight + 10);
g.setColour(juce::Colour(0xff0a0a0f).withAlpha(0.8f));
g.fillRect(panelRect);
g.setColour(juce::Colour(0xff333340));
g.drawRect(panelRect, 1);
// Metrics text
g.setFont(9.0f);
g.setColour(juce::Colour(0xff888899));
auto drawMetric = [&](const juce::String& label, float value, const juce::String& unit, int y)
{
g.drawText(label, panelRect.getX() + 5, y, 50, lineHeight, juce::Justification::centredLeft);
g.setColour(juce::Colour(0xffccccdd));
g.drawText(juce::String(value, 1) + unit, panelRect.getX() + 55, y, 60, lineHeight, juce::Justification::centredRight);
g.setColour(juce::Colour(0xff888899));
};
int y = startY;
drawMetric("Corr", metrics.correlation, "", y); y += lineHeight;
drawMetric("Width", metrics.stereoWidth, "dB", y); y += lineHeight;
drawMetric("Mid", metrics.midLevel, "dB", y); y += lineHeight;
drawMetric("Side", metrics.sideLevel, "dB", y); y += lineHeight;
drawMetric("Balance", metrics.balance, "dB", y); y += lineHeight;
drawMetric("Phase", metrics.phaseAngle, "\u00B0", y); y += lineHeight;
drawMetric("Crest", metrics.crestFactor, "dB", y); y += lineHeight;
}