[fix](trx-frontend): unify signal markers and clamp axis labels
Render the BW and tuned-frequency markers on a shared overlay and keep spectrum axis labels bold and inside their box. Co-authored-by: OpenAI Codex <codex@openai.com> Signed-off-by: Stan Grams <sjg@haxx.space>
This commit is contained in:
@@ -320,6 +320,8 @@ const ownerSubtitle = document.getElementById("owner-subtitle");
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const loadingTitle = document.getElementById("loading-title");
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const loadingSub = document.getElementById("loading-sub");
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const overviewCanvas = document.getElementById("overview-canvas");
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const signalOverlayCanvas = document.getElementById("signal-overlay-canvas");
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const signalVisualBlockEl = document.querySelector(".signal-visual-block");
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const overviewPeakHoldEl = document.getElementById("overview-peak-hold");
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const themeToggleBtn = document.getElementById("theme-toggle");
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const headerRigSwitchSelect = document.getElementById("header-rig-switch-select");
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@@ -690,6 +692,98 @@ function resizeHeaderSignalCanvas() {
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drawHeaderSignalGraph();
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}
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function signalOverlayHeight() {
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if (!overviewCanvas) return 0;
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let height = overviewCanvas.clientHeight || 0;
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const spectrumCanvasEl = document.getElementById("spectrum-canvas");
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const spectrumPanelEl = document.getElementById("spectrum-panel");
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const spectrumVisible =
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spectrumCanvasEl &&
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spectrumCanvasEl.clientHeight > 0 &&
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spectrumPanelEl &&
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getComputedStyle(spectrumPanelEl).display !== "none";
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if (spectrumVisible) {
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height += spectrumCanvasEl.clientHeight || 0;
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}
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return Math.floor(height);
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}
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function drawSignalOverlay() {
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if (!signalOverlayCanvas || !signalVisualBlockEl) return;
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const cssW = Math.floor(signalVisualBlockEl.clientWidth);
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const cssH = signalOverlayHeight();
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signalOverlayCanvas.style.height = cssH > 0 ? `${cssH}px` : "0";
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if (cssW <= 0 || cssH <= 0) {
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signalOverlayCanvas.width = 0;
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signalOverlayCanvas.height = 0;
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return;
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}
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const dpr = window.devicePixelRatio || 1;
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const nextW = Math.floor(cssW * dpr);
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const nextH = Math.floor(cssH * dpr);
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if (signalOverlayCanvas.width !== nextW || signalOverlayCanvas.height !== nextH) {
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signalOverlayCanvas.width = nextW;
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signalOverlayCanvas.height = nextH;
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}
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const ctx = signalOverlayCanvas.getContext("2d");
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if (!ctx) return;
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ctx.save();
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ctx.scale(dpr, dpr);
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ctx.clearRect(0, 0, cssW, cssH);
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if (lastSpectrumData) {
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const range = spectrumVisibleRange(lastSpectrumData);
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const hzToX = (hz) => ((hz - range.visLoHz) / range.visSpanHz) * cssW;
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if (lastFreqHz != null && currentBandwidthHz > 0) {
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const halfBw = currentBandwidthHz / 2;
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const xL = hzToX(lastFreqHz - halfBw);
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const xR = hzToX(lastFreqHz + halfBw);
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const stripW = xR - xL;
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if (stripW > 1) {
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const grd = ctx.createLinearGradient(xL, 0, xR, 0);
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grd.addColorStop(0, "rgba(240,173,78,0.05)");
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grd.addColorStop(0.2, "rgba(240,173,78,0.14)");
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grd.addColorStop(0.5, "rgba(240,173,78,0.19)");
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grd.addColorStop(0.8, "rgba(240,173,78,0.14)");
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grd.addColorStop(1, "rgba(240,173,78,0.05)");
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ctx.fillStyle = grd;
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ctx.fillRect(xL, 0, stripW, cssH);
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const edgeW = 5;
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ctx.fillStyle = "rgba(240,173,78,0.30)";
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ctx.fillRect(xL, 0, edgeW, cssH);
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ctx.fillRect(xR - edgeW, 0, edgeW, cssH);
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ctx.strokeStyle = "rgba(240,173,78,0.70)";
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ctx.lineWidth = 1.5;
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ctx.beginPath(); ctx.moveTo(xL, 0); ctx.lineTo(xL, cssH); ctx.stroke();
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ctx.beginPath(); ctx.moveTo(xR, 0); ctx.lineTo(xR, cssH); ctx.stroke();
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}
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}
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if (lastFreqHz != null) {
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const xf = hzToX(lastFreqHz);
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if (xf >= 0 && xf <= cssW) {
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ctx.save();
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ctx.setLineDash([4, 4]);
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ctx.strokeStyle = "#ff1744";
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ctx.lineWidth = 1;
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ctx.beginPath();
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ctx.moveTo(xf, 0);
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ctx.lineTo(xf, cssH);
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ctx.stroke();
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ctx.restore();
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}
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}
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}
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ctx.restore();
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}
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function scheduleOverviewDraw() {
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if (!overviewCanvas || overviewDrawPending) return;
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overviewDrawPending = true;
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@@ -766,9 +860,9 @@ function drawHeaderSignalGraph() {
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} else {
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drawOverviewSignalHistory(ctx, w, h, pal);
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}
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drawOverviewTuningOverlay(ctx, w, h);
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ctx.restore();
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positionRdsPsOverlay();
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drawSignalOverlay();
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}
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function _wfDrawRows(oct, rows, startRowIdx, endRowIdx, iW, iH, pal) {
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@@ -838,54 +932,6 @@ function drawOverviewWaterfall(ctx, w, h, pal) {
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ctx.drawImage(_wfOC, 0, 0, w, h);
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}
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function drawOverviewTuningOverlay(ctx, w, h) {
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if (!lastSpectrumData) return;
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const range = spectrumVisibleRange(lastSpectrumData);
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const hzToX = (hz) => ((hz - range.visLoHz) / range.visSpanHz) * w;
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if (lastFreqHz != null && currentBandwidthHz > 0) {
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const halfBw = currentBandwidthHz / 2;
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const xL = hzToX(lastFreqHz - halfBw);
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const xR = hzToX(lastFreqHz + halfBw);
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const stripW = xR - xL;
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if (stripW > 1) {
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const grd = ctx.createLinearGradient(xL, 0, xR, 0);
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grd.addColorStop(0, "rgba(240,173,78,0.05)");
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grd.addColorStop(0.2, "rgba(240,173,78,0.14)");
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grd.addColorStop(0.5, "rgba(240,173,78,0.19)");
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grd.addColorStop(0.8, "rgba(240,173,78,0.14)");
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grd.addColorStop(1, "rgba(240,173,78,0.05)");
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ctx.fillStyle = grd;
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ctx.fillRect(xL, 0, stripW, h);
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const edgeW = 5;
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ctx.fillStyle = "rgba(240,173,78,0.30)";
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ctx.fillRect(xL, 0, edgeW, h);
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ctx.fillRect(xR - edgeW, 0, edgeW, h);
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ctx.strokeStyle = "rgba(240,173,78,0.70)";
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ctx.lineWidth = 1.5;
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ctx.beginPath(); ctx.moveTo(xL, 0); ctx.lineTo(xL, h); ctx.stroke();
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ctx.beginPath(); ctx.moveTo(xR, 0); ctx.lineTo(xR, h); ctx.stroke();
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}
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}
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if (lastFreqHz != null) {
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const xf = hzToX(lastFreqHz);
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if (xf >= 0 && xf <= w) {
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ctx.save();
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ctx.setLineDash([4, 4]);
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ctx.strokeStyle = "#ff1744";
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ctx.lineWidth = 1;
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ctx.beginPath();
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ctx.moveTo(xf, 0);
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ctx.lineTo(xf, h);
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ctx.stroke();
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ctx.restore();
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}
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}
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}
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function drawOverviewSignalHistory(ctx, w, h, pal) {
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const now = Date.now();
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const samples = overviewSignalSamples.filter((sample) => now - sample.t <= HEADER_SIG_WINDOW_MS);
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@@ -3753,66 +3799,37 @@ function drawSpectrum(data) {
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// ── BW strip (drawn before spectrum so traces appear on top) ──────────────
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if (lastFreqHz != null && currentBandwidthHz > 0) {
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const halfBw = currentBandwidthHz / 2;
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const xL = hzToX(lastFreqHz - halfBw);
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const xR = hzToX(lastFreqHz + halfBw);
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const stripW = xR - xL;
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if (stripW > 1) {
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// Warm amber gradient fill
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const grd = ctx.createLinearGradient(xL, 0, xR, 0);
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grd.addColorStop(0, "rgba(240,173,78,0.05)");
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grd.addColorStop(0.2, "rgba(240,173,78,0.14)");
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grd.addColorStop(0.5, "rgba(240,173,78,0.19)");
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grd.addColorStop(0.8, "rgba(240,173,78,0.14)");
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grd.addColorStop(1, "rgba(240,173,78,0.05)");
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ctx.fillStyle = grd;
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ctx.fillRect(xL, 0, stripW, H);
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// Edge handle bars
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const EDGE = 5 * dpr;
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ctx.fillStyle = "rgba(240,173,78,0.30)";
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ctx.fillRect(xL, 0, EDGE, H);
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ctx.fillRect(xR - EDGE, 0, EDGE, H);
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// Edge border lines
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ctx.strokeStyle = "rgba(240,173,78,0.70)";
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ctx.lineWidth = 1.5 * dpr;
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ctx.beginPath(); ctx.moveTo(xL, 0); ctx.lineTo(xL, H); ctx.stroke();
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ctx.beginPath(); ctx.moveTo(xR, 0); ctx.lineTo(xR, H); ctx.stroke();
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if (_bwDragEdge) {
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// Bottom bookmark tab centered on the dial frequency, shown only while resizing BW
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const xMid = hzToX(lastFreqHz);
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const bwText = formatBwLabel(currentBandwidthHz);
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ctx.save();
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ctx.font = `bold ${Math.round(10 * dpr)}px sans-serif`;
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const tw = ctx.measureText(bwText).width;
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const PAD = 6 * dpr;
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const TAB_H = 16 * dpr;
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const TAB_OFFSET = 4 * dpr;
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const tabX = Math.max(0, Math.min(W - tw - PAD * 2, xMid - (tw + PAD * 2) / 2));
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const tabBottom = H - TAB_OFFSET;
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const tabY = tabBottom - TAB_H;
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const r = 3 * dpr;
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// Rounded-bottom tab shape (flat top)
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ctx.fillStyle = "rgba(240,173,78,0.85)";
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ctx.beginPath();
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ctx.moveTo(tabX, tabY);
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ctx.lineTo(tabX + tw + PAD * 2, tabY);
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ctx.lineTo(tabX + tw + PAD * 2, tabBottom - r);
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ctx.arcTo(tabX + tw + PAD * 2, tabBottom, tabX + tw + PAD * 2 - r, tabBottom, r);
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ctx.lineTo(tabX + r, tabBottom);
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ctx.arcTo(tabX, tabBottom, tabX, tabBottom - r, r);
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ctx.lineTo(tabX, tabY);
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ctx.closePath();
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ctx.fill();
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// Tab text
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ctx.fillStyle = spectrumBgColor();
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ctx.textAlign = "left";
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ctx.fillText(bwText, tabX + PAD, tabBottom - 4 * dpr);
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ctx.restore();
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}
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if (_bwDragEdge) {
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const xMid = hzToX(lastFreqHz);
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// Bottom bookmark tab centered on the dial frequency, shown only while resizing BW
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const bwText = formatBwLabel(currentBandwidthHz);
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ctx.save();
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ctx.font = `bold ${Math.round(10 * dpr)}px sans-serif`;
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const tw = ctx.measureText(bwText).width;
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const PAD = 6 * dpr;
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const TAB_H = 16 * dpr;
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const TAB_OFFSET = 4 * dpr;
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const tabX = Math.max(0, Math.min(W - tw - PAD * 2, xMid - (tw + PAD * 2) / 2));
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const tabBottom = H - TAB_OFFSET;
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const tabY = tabBottom - TAB_H;
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const r = 3 * dpr;
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// Rounded-bottom tab shape (flat top)
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ctx.fillStyle = "rgba(240,173,78,0.85)";
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ctx.beginPath();
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ctx.moveTo(tabX, tabY);
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ctx.lineTo(tabX + tw + PAD * 2, tabY);
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ctx.lineTo(tabX + tw + PAD * 2, tabBottom - r);
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ctx.arcTo(tabX + tw + PAD * 2, tabBottom, tabX + tw + PAD * 2 - r, tabBottom, r);
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ctx.lineTo(tabX + r, tabBottom);
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ctx.arcTo(tabX, tabBottom, tabX, tabBottom - r, r);
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ctx.lineTo(tabX, tabY);
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ctx.closePath();
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ctx.fill();
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// Tab text
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ctx.fillStyle = spectrumBgColor();
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ctx.textAlign = "left";
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ctx.fillText(bwText, tabX + PAD, tabBottom - 4 * dpr);
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ctx.restore();
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}
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}
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@@ -3858,20 +3875,8 @@ function drawSpectrum(data) {
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ctx.restore();
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}
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// ── Tuned-frequency marker ────────────────────────────────────────────────
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if (lastFreqHz != null) {
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const xf = hzToX(lastFreqHz);
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if (xf >= 0 && xf <= W) {
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ctx.save();
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ctx.setLineDash([4 * dpr, 4 * dpr]);
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ctx.strokeStyle = "#ff1744";
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ctx.lineWidth = Math.max(1, dpr);
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ctx.beginPath(); ctx.moveTo(xf, 0); ctx.lineTo(xf, H); ctx.stroke();
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ctx.restore();
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}
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}
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updateSpectrumFreqAxis(range);
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drawSignalOverlay();
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}
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function updateSpectrumFreqAxis(range) {
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@@ -3894,6 +3899,8 @@ function updateSpectrumFreqAxis(range) {
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const firstHz = Math.ceil(range.visLoHz / stepHz) * stepHz;
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spectrumFreqAxis.innerHTML = "";
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const axisWidth = spectrumFreqAxis.clientWidth || 0;
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const edgePad = 6;
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for (let hz = firstHz; hz <= range.visHiHz + stepHz * 0.01; hz += stepHz) {
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const frac = (hz - range.visLoHz) / range.visSpanHz;
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if (frac < 0 || frac > 1) continue;
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@@ -3904,8 +3911,17 @@ function updateSpectrumFreqAxis(range) {
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: hz.toFixed(0);
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const span = document.createElement("span");
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span.textContent = label;
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span.style.left = (frac * 100).toFixed(2) + "%";
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spectrumFreqAxis.appendChild(span);
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const labelWidth = span.offsetWidth || 0;
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if (axisWidth > 0 && labelWidth > 0) {
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const minCenter = edgePad + labelWidth / 2;
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const maxCenter = axisWidth - edgePad - labelWidth / 2;
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const desiredCenter = frac * axisWidth;
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const clampedCenter = Math.max(minCenter, Math.min(maxCenter, desiredCenter));
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span.style.left = `${clampedCenter}px`;
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} else {
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span.style.left = (frac * 100).toFixed(2) + "%";
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}
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}
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}
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@@ -101,6 +101,7 @@
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<div id="spectrum-hint" class="spectrum-hint-mouse">Scroll to zoom · Ctrl+Scroll to tune · Drag to pan · Drag BW edges to resize</div>
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<div id="spectrum-hint-touch" class="spectrum-hint-touch">Pinch to zoom · Drag to pan · Drag BW edges to resize</div>
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</div>
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<canvas id="signal-overlay-canvas" aria-hidden="true"></canvas>
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</div>
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<div class="status">
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<div class="full-row freq-row">
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@@ -510,14 +510,23 @@ small { color: var(--text-muted); }
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width: 100%;
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margin: 0;
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position: relative;
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z-index: 4;
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}
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.signal-visual-block {
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position: relative;
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display: flex;
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flex-direction: column;
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gap: 0;
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margin-bottom: 0.9rem;
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}
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#signal-overlay-canvas {
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position: absolute;
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top: 0;
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left: 0;
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width: 100%;
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height: 0;
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pointer-events: none;
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z-index: 4;
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}
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#rds-ps-overlay {
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display: none;
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position: absolute;
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@@ -1041,6 +1050,7 @@ button:focus-visible, input:focus-visible, select:focus-visible {
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transform: translateX(-50%);
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white-space: nowrap;
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top: 2px;
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font-weight: 700;
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}
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#spectrum-tooltip {
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display: none;
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