1612 lines
68 KiB
JavaScript
1612 lines
68 KiB
JavaScript
class ConfluenceChart {
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constructor() {
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this.chart = null;
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this.candles = null;
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this.resizeObserver = null;
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this.plotResizeObserver = null;
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this.observedPlotCanvas = null;
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this.levelSeries = new Map();
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this.priceLines = new Map();
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this.previewLine = null;
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this.projectionLayer = null;
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this.bars = [];
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this.levels = [];
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this.onChartClick = null;
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this.tooltip = null;
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this.chartEl = null;
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this.clickListener = null;
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this.selectedLineId = null;
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this.anchorHandles = [];
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this.lineHitTarget = null;
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this.lineFocus = null;
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this.lineFocusTimer = null;
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this.draggingLine = null;
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this.lineMoveListener = null;
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this.lineUpListener = null;
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this.draggingAnchor = null;
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this.onLineChange = null;
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this.anchorMoveListener = null;
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this.anchorUpListener = null;
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this.contextMenu = null;
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this.contextCutoff = null;
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this.contextLineId = null;
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this.contextEndButton = null;
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this.contextListener = null;
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this.onLineEnd = null;
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this.onLineDuplicate = null;
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this.onLineDelete = null;
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// Tool arming: the sidebar decides what the next chart gesture creates.
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this.armedTool = null;
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this.gesture = null;
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this.pendingAnchor = null;
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this.onToolComplete = null;
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this.snapToBars = true;
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this.priceTag = null;
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this.toolDownListener = null;
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this.toolMoveListener = null;
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this.toolUpListener = null;
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this.pendingView = null;
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this.overlayLayer = null;
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this.snapDot = null;
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this.snapLabel = null;
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this.snapLeader = null;
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this.snapLeaderLine = null;
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this.comments = [];
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this.commentNodes = new Map();
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this.commentLayer = null;
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this.contextLabelLayer = null;
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this.contextLabelFrame = null;
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this.onCommentToggle = null;
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this.onCommentMove = null;
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this.onCommentSelect = null;
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this.lastSnapDiagnostic = null;
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}
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static TICK = 0.25;
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// Pixels of travel between press and release that make a gesture a drag
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// rather than a click. Wide enough to survive a twitch on a deliberate click.
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static DRAG_THRESHOLD = 12;
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/**
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* Whether to report snap geometry to the server.
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*
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* `?diag=1` turns it on and remembers it; `?diag=0` turns it off. Kept out of
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* the way rather than always on: it exists because the browser runs on a
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* different machine from whoever is debugging it.
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*/
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static diagnosticMode() {
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const asked = new URLSearchParams(location.search).get('diag');
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if (asked === '1') localStorage.setItem('chart-diag', '1');
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if (asked === '0') localStorage.removeItem('chart-diag');
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return localStorage.getItem('chart-diag') === '1';
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}
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static snapToTick(price) {
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return Math.round(price / ConfluenceChart.TICK) * ConfluenceChart.TICK;
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}
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create(el) {
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this.chartEl = el;
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this.chart = LightweightCharts.createChart(el, {
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autoSize: true,
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layout: {
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background: { color: getComputedStyle(document.documentElement).getPropertyValue('--chart-bg').trim() },
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textColor: getComputedStyle(document.documentElement).getPropertyValue('--muted').trim(),
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attributionLogo: false,
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},
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grid: {
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vertLines: { color: 'rgba(128,128,128,.10)' },
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horzLines: { color: 'rgba(128,128,128,.10)' },
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},
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timeScale: {
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timeVisible: true,
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secondsVisible: false,
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// The library is timezone-agnostic: it reads epoch seconds as UTC and
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// labels them as UTC. Bars stay in UTC — that convention holds
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// everywhere in this codebase, and shifting the values themselves would
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// put every trendline anchor, hit test and alert an offset out. Only
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// the label is localised, via the browser's own zone.
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tickMarkFormatter: (time, tickMarkType) => {
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const at = new Date(time * 1000);
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const daily = this.bars[0]?.tf === '1d';
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if (tickMarkType === LightweightCharts.TickMarkType.Year) {
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return String(daily ? at.getUTCFullYear() : at.getFullYear());
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}
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if (tickMarkType === LightweightCharts.TickMarkType.Month) {
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return at.toLocaleString(undefined, { month: 'short', ...(daily ? { timeZone: 'UTC' } : {}) });
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}
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if (tickMarkType === LightweightCharts.TickMarkType.DayOfMonth) {
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return String(daily ? at.getUTCDate() : at.getDate());
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}
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return at.toLocaleTimeString(undefined, {
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hour12: false, hour: '2-digit', minute: '2-digit',
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...(tickMarkType === LightweightCharts.TickMarkType.TimeWithSeconds
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? { second: '2-digit' } : {}),
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});
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},
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},
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localization: {
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// The crosshair readout, which would otherwise disagree with the axis.
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timeFormatter: time => {
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const daily = this.bars[0]?.tf === '1d';
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return new Date(time * 1000).toLocaleString(undefined, daily
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? { timeZone: 'UTC', year: 'numeric', month: 'short', day: 'numeric' }
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: { hour12: false, month: 'short', day: 'numeric', hour: '2-digit', minute: '2-digit' });
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},
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},
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rightPriceScale: { borderVisible: false },
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// Every price-bearing series shares this scale. A second autoscaled price
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// axis can place the same numeric price at a different y, which makes
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// daily context look comparable to intraday price when it is not.
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leftPriceScale: { visible: false },
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// Never magnet. The default snaps the crosshair to the bar's *close*, so
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// hovering beside a low reads a price several ticks away, and everything
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// that snaps in this app snaps to extremes. The crosshair tracks the
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// cursor; the snap dot says where an anchor would actually land.
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crosshair: { mode: LightweightCharts.CrosshairMode.Normal },
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});
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this.candles = this.chart.addSeries(LightweightCharts.CandlestickSeries, {
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upColor: '#27825c', downColor: '#bd4545', borderVisible: true,
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borderUpColor: '#1d6849', borderDownColor: '#963737',
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wickUpColor: '#1d6849', wickDownColor: '#963737',
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});
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// Volume as an overlay on its own hidden scale, confined to the bottom
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// fifth. An overlay rather than a pane so it cannot alter the price scale:
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// volumes are five figures and prices four, and sharing a scale would
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// flatten the candles into a line.
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this.volume = this.chart.addSeries(LightweightCharts.HistogramSeries, {
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priceScaleId: 'volume',
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priceFormat: { type: 'volume' },
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lastValueVisible: false,
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priceLineVisible: false,
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});
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this.chart.priceScale('volume').applyOptions({
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scaleMargins: { top: 0.88, bottom: 0 },
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visible: false,
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});
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// The default leaves a tenth of the pane empty beneath the lowest bar,
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// which is where the volume draws and where a cursor tracing swing lows
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// naturally sits — far from any actual price. Give most of it back.
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this.chart.priceScale('right').applyOptions({ scaleMargins: { top: 0.12, bottom: 0.04 } });
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this.resizeObserver = new ResizeObserver(() => {
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this.chart.applyOptions({ width: el.clientWidth, height: el.clientHeight });
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requestAnimationFrame(() => {
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this.observePlotCanvas();
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this.renderAnchorHandles();
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this.renderTrendlineProjections();
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this.renderComments();
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this.renderContextLabels();
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});
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});
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this.resizeObserver.observe(el);
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// Every overlay lives in here, and this is positioned over the *plot* — not
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// the element, which also contains the price scales. Lightweight Charts
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// reports coordinates from the plot's origin, so anchoring the container
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// there lets each overlay use those coordinates untranslated. Keep the
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// measurement even with no left scale: future layout changes must not
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// silently displace snap indicators, comments or trendline handles.
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this.overlayLayer = document.createElement('div');
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this.overlayLayer.className = 'chart-overlays';
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el.appendChild(this.overlayLayer);
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this.contextLabelLayer = document.createElement('div');
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this.contextLabelLayer.className = 'chart-context-labels';
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this.overlayLayer.appendChild(this.contextLabelLayer);
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this.tooltip = document.createElement('div');
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this.tooltip.className = 'chart-tooltip';
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this.overlayLayer.appendChild(this.tooltip);
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const preview = document.createElementNS('http://www.w3.org/2000/svg', 'svg');
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preview.classList.add('chart-preview');
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preview.setAttribute('aria-hidden', 'true');
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this.previewLine = document.createElementNS('http://www.w3.org/2000/svg', 'line');
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this.previewLine.setAttribute('hidden', '');
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preview.appendChild(this.previewLine);
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this.overlayLayer.appendChild(preview);
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this.projectionLayer = document.createElementNS('http://www.w3.org/2000/svg', 'svg');
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this.projectionLayer.classList.add('chart-projections');
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this.projectionLayer.setAttribute('aria-hidden', 'true');
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this.overlayLayer.appendChild(this.projectionLayer);
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const handles = document.createElementNS('http://www.w3.org/2000/svg', 'svg');
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handles.classList.add('chart-handles');
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handles.setAttribute('aria-hidden', 'true');
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this.lineFocus = document.createElementNS('http://www.w3.org/2000/svg', 'line');
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this.lineFocus.classList.add('chart-line-focus');
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this.lineFocus.setAttribute('hidden', '');
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handles.appendChild(this.lineFocus);
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this.lineHitTarget = document.createElementNS('http://www.w3.org/2000/svg', 'line');
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this.lineHitTarget.classList.add('chart-line-hit');
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this.lineHitTarget.setAttribute('hidden', '');
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this.lineHitTarget.addEventListener('pointerdown', event => this.startLineDrag(event));
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handles.appendChild(this.lineHitTarget);
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for (const anchor of ['start', 'end']) {
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const handle = document.createElementNS('http://www.w3.org/2000/svg', 'circle');
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handle.classList.add('chart-anchor');
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handle.dataset.anchor = anchor;
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handle.setAttribute('r', '6');
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handle.setAttribute('hidden', '');
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handle.addEventListener('pointerdown', event => this.startAnchorDrag(event, anchor));
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handle.addEventListener('click', event => event.stopPropagation());
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handles.appendChild(handle);
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this.anchorHandles.push(handle);
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}
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this.overlayLayer.appendChild(handles);
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this.contextMenu = document.createElement('div');
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this.contextMenu.className = 'chart-context-menu';
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this.contextMenu.hidden = true;
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const endHere = document.createElement('button');
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endHere.type = 'button';
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endHere.textContent = 'End trendline here';
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endHere.addEventListener('click', event => {
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event.stopPropagation();
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this.endSelectedLineHere();
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});
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this.contextEndButton = endHere;
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const duplicate = document.createElement('button');
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duplicate.type = 'button';
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duplicate.dataset.action = 'duplicate';
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duplicate.textContent = 'Duplicate 10 bars right';
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duplicate.addEventListener('click', event => {
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event.stopPropagation();
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const level = this.levels.find(value => value.id === this.contextLineId);
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this.hideContextMenu();
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if (level && this.onLineDuplicate) this.onLineDuplicate({ ...level });
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});
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const deleteLine = document.createElement('button');
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deleteLine.type = 'button';
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deleteLine.dataset.action = 'delete';
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deleteLine.textContent = 'Delete';
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deleteLine.addEventListener('click', event => {
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event.stopPropagation();
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const id = this.contextLineId;
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this.hideContextMenu();
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if (id && this.onLineDelete) this.onLineDelete(id);
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});
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this.contextMenu.addEventListener('click', event => event.stopPropagation());
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this.contextMenu.append(endHere, duplicate, deleteLine);
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this.overlayLayer.appendChild(this.contextMenu);
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this.priceTag = document.createElement('div');
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this.priceTag.className = 'chart-price-tag';
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this.priceTag.hidden = true;
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this.overlayLayer.appendChild(this.priceTag);
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this.snapDot = document.createElement('div');
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this.snapDot.className = 'chart-snap-dot';
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this.snapDot.hidden = true;
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this.overlayLayer.appendChild(this.snapDot);
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// States the price the anchor will use. Useful in itself, and it means a
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// single screenshot answers "is the dot in the wrong place, or on the
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// wrong bar?" without anyone pasting console output.
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this.snapLabel = document.createElement('div');
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this.snapLabel.className = 'chart-snap-label';
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this.snapLabel.hidden = true;
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this.overlayLayer.appendChild(this.snapLabel);
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// A leader from the cursor to the target. The snap is often far from the
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// pointer — hovering below the candles legitimately snaps up to a bar's low
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// — and without a line joining them the dot reads as unrelated to where you
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// are pointing.
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this.snapLeader = document.createElementNS('http://www.w3.org/2000/svg', 'svg');
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this.snapLeader.classList.add('chart-snap-leader');
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this.snapLeader.setAttribute('aria-hidden', 'true');
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this.snapLeaderLine = document.createElementNS('http://www.w3.org/2000/svg', 'line');
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this.snapLeader.appendChild(this.snapLeaderLine);
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this.overlayLayer.appendChild(this.snapLeader);
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this.commentLayer = document.createElement('div');
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this.commentLayer.className = 'chart-comments';
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this.overlayLayer.appendChild(this.commentLayer);
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this.toolDownListener = event => this.startToolGesture(event);
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this.toolMoveListener = event => this.moveToolGesture(event);
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this.toolUpListener = event => this.finishToolGesture(event);
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el.addEventListener('pointerdown', this.toolDownListener);
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window.addEventListener('pointermove', this.toolMoveListener);
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window.addEventListener('pointerup', this.toolUpListener);
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this.anchorMoveListener = event => this.moveAnchor(event);
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this.anchorUpListener = event => this.finishAnchorDrag(event);
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window.addEventListener('pointermove', this.anchorMoveListener);
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window.addEventListener('pointerup', this.anchorUpListener);
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this.lineMoveListener = event => this.moveLine(event);
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this.lineUpListener = event => this.finishLineDrag(event);
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window.addEventListener('pointermove', this.lineMoveListener);
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window.addEventListener('pointerup', this.lineUpListener);
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this.contextListener = event => this.showContextMenu(event);
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el.addEventListener('contextmenu', this.contextListener);
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this.clickListener = event => {
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this.hideContextMenu();
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// A placement gesture ends in a click too; selecting on it would pick
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// whatever the new line happens to overlap.
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if (this.armedTool) return;
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if (!this.onChartClick) return;
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const point = this.eventPoint(event);
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if (point && this.withinPlot(point) && point.t != null) {
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this.onChartClick({ point, time: point.t });
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}
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};
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el.addEventListener('click', this.clickListener);
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this.chart.subscribeCrosshairMove(param => {
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this.scheduleContextLabels();
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if (!param.point || !param.time) {
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this.tooltip.hidden = true;
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return;
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}
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this.updateLineTooltip(param);
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});
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requestAnimationFrame(() => this.observePlotCanvas());
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this.chart.timeScale().subscribeVisibleLogicalRangeChange(() => {
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this.renderAnchorHandles();
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this.renderTrendlineProjections();
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this.renderComments();
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this.renderContextLabels();
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});
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}
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setBars(bars) {
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this.bars = bars;
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const candleData = bars.map(this.toCandle);
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this.candles.setData(candleData);
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this.volume.setData(bars.map(ConfluenceChart.toVolume));
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// Anchored by time, not by logical index. A logical index addresses the
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// chart's *shared* scale — the union of every series' time points — not
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// this array. The daily MAs land straight after with hundreds of points
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// pre-dating the 1m window, and prepending them shifts every logical index
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// by that count, silently dragging the view ten hours off the live edge.
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// A time range names the instant, so later series cannot move it.
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if (bars.length) {
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const last = bars[bars.length - 1];
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// Keep the old five bars of right-hand breathing room, in seconds.
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const step = bars.length > 1 ? last.t - bars[bars.length - 2].t : 60;
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this.pendingView = {
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from: bars[Math.max(0, bars.length - 160)].t,
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to: last.t + step * 5,
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};
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this.chart.timeScale().setVisibleRange(this.pendingView);
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}
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requestAnimationFrame(() => this.renderAnchorHandles());
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// The bar grid just changed underneath every pinned comment.
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this.renderComments();
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this.renderContextLabels();
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this.renderTrendlineProjections();
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}
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updateBar(bar) {
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// update() throws on anything older than the series' last point, which
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// takes the whole app down rather than dropping one stale bar. Ticks made
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// this reachable often enough to matter, so refuse it here as well as at
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// the source: a bar behind the last one has nothing to contribute.
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const last = this.bars[this.bars.length - 1];
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if (last && bar.t < last.t) return;
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this.candles.update(this.toCandle(bar));
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this.volume.update(ConfluenceChart.toVolume(bar));
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if (this.bars.length && this.bars[this.bars.length - 1].t === bar.t) this.bars[this.bars.length - 1] = bar;
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else this.bars.push(bar);
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this.renderAnchorHandles();
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this.renderContextLabels();
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this.renderTrendlineProjections();
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}
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setComments(comments) {
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this.comments = comments;
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this.renderComments();
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}
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setCommentHandlers({ onToggle, onMove, onSelect }) {
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this.onCommentToggle = onToggle;
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this.onCommentMove = onMove;
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this.onCommentSelect = onSelect;
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}
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// Comments are DOM, not canvas: they hold arbitrary text, need to collapse,
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// and a floating one must ignore the time scale entirely.
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renderComments() {
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if (!this.commentLayer) return;
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const width = this.chartEl.clientWidth;
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const height = this.chartEl.clientHeight;
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const seen = new Set();
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for (const comment of this.comments || []) {
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seen.add(comment.id);
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let node = this.commentNodes.get(comment.id);
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if (!node) {
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node = this.buildCommentNode(comment);
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this.commentNodes.set(comment.id, node);
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this.commentLayer.appendChild(node.root);
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}
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node.comment = comment;
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node.root.classList.toggle('collapsed', !!comment.collapsed);
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node.root.classList.toggle('floating', !comment.pinned);
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node.label.textContent = comment.collapsed ? String(comment.number) : comment.note;
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node.root.style.borderColor = comment.color;
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node.root.style.setProperty('--comment-focus-color', comment.color || '#c8992f');
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node.root.title = comment.note;
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if (!comment.pinned) {
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// A fraction of the pane, so it holds its place through any zoom.
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node.root.style.left = `${Math.round(comment.x * width)}px`;
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node.root.style.top = `${Math.round(comment.y * height)}px`;
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node.root.classList.remove('off-left', 'off-right');
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continue;
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}
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const placed = this.anchorCoordinate(comment.anchor_t);
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const x = placed.x;
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const y = this.candles.priceToCoordinate(comment.anchor_p);
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// Scrolled past: park it on the edge it went off, pointing that way,
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// rather than letting it vanish and be hard to find again.
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const offLeft = placed.before || (x !== null && x < 0);
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const offRight = placed.after || (x !== null && x > width);
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node.root.classList.toggle('off-left', offLeft && !offRight);
|
|
node.root.classList.toggle('off-right', offRight);
|
|
const clampedX = offLeft ? 4 : offRight ? width - node.root.offsetWidth - 4 : x;
|
|
node.root.style.left = `${Math.round(clampedX)}px`;
|
|
node.root.style.top = `${Math.round(Math.min(Math.max(y == null ? 24 : y, 4), height - 28))}px`;
|
|
}
|
|
for (const [id, node] of this.commentNodes) {
|
|
if (!seen.has(id)) {
|
|
clearTimeout(node.focusTimer);
|
|
node.root.remove();
|
|
this.commentNodes.delete(id);
|
|
}
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Where an anchor time sits on the current timeframe.
|
|
*
|
|
* timeToCoordinate answers only for times that are data points on the series,
|
|
* so a comment placed on a 30m bar returned null the moment the chart
|
|
* switched to 15m or 1h — and null was being read as "off the left edge",
|
|
* which slid every such comment to the far left. The anchor is resolved to
|
|
* the bar that *contains* it instead, which is timeframe-independent: a 09:30
|
|
* note lands on the 09:30 bar at 15m and on the 09:00 bar at 1h.
|
|
*/
|
|
anchorCoordinate(anchorT) {
|
|
if (!this.bars.length) return { x: null, before: false, after: false };
|
|
if (anchorT < this.bars[0].t) return { x: null, before: true, after: false };
|
|
const lastBar = this.bars[this.bars.length - 1];
|
|
if (anchorT > lastBar.t) {
|
|
// Past the newest bar is not off the chart — the right edge carries
|
|
// whitespace, so ask the scale directly and only park it if it answers.
|
|
const beyond = this.chart.timeScale().timeToCoordinate(lastBar.t);
|
|
return { x: beyond, before: false, after: beyond === null };
|
|
}
|
|
let lo = 0;
|
|
let hi = this.bars.length - 1;
|
|
while (lo < hi) {
|
|
const mid = (lo + hi + 1) >> 1;
|
|
if (this.bars[mid].t <= anchorT) lo = mid;
|
|
else hi = mid - 1;
|
|
}
|
|
return { x: this.chart.timeScale().timeToCoordinate(this.bars[lo].t), before: false, after: false };
|
|
}
|
|
|
|
buildCommentNode(comment) {
|
|
const root = document.createElement('div');
|
|
root.className = 'chart-comment';
|
|
const focus = document.createElement('span');
|
|
focus.className = 'chart-comment-focus';
|
|
focus.setAttribute('aria-hidden', 'true');
|
|
const label = document.createElement('span');
|
|
label.className = 'chart-comment-text';
|
|
root.append(focus, label);
|
|
const node = { root, focus, label, comment };
|
|
root.addEventListener('click', event => {
|
|
event.stopPropagation();
|
|
this.focusComment(node.comment.id);
|
|
if (this.onCommentSelect) this.onCommentSelect(node.comment);
|
|
if (this.onCommentToggle) this.onCommentToggle(node.comment);
|
|
});
|
|
// Floating comments are dragged; pinned ones belong to their bar.
|
|
root.addEventListener('pointerdown', event => {
|
|
if (node.comment.pinned) return;
|
|
event.stopPropagation();
|
|
const bounds = this.chartEl.getBoundingClientRect();
|
|
const move = moveEvent => {
|
|
root.style.left = `${Math.round(moveEvent.clientX - bounds.left - 8)}px`;
|
|
root.style.top = `${Math.round(moveEvent.clientY - bounds.top - 8)}px`;
|
|
};
|
|
const up = upEvent => {
|
|
window.removeEventListener('pointermove', move);
|
|
window.removeEventListener('pointerup', up);
|
|
const x = (upEvent.clientX - bounds.left - 8) / bounds.width;
|
|
const y = (upEvent.clientY - bounds.top - 8) / bounds.height;
|
|
const clamp = value => Math.min(Math.max(value, 0), 1);
|
|
if (this.onCommentMove) this.onCommentMove(node.comment, clamp(x), clamp(y));
|
|
};
|
|
window.addEventListener('pointermove', move);
|
|
window.addEventListener('pointerup', up);
|
|
});
|
|
return node;
|
|
}
|
|
|
|
// A typed price alert is a manual line with zero slope. Treating it as flat
|
|
// here is what makes it render as a level rather than a stubby segment.
|
|
static isFlat(level) {
|
|
return level.kind === 'horizontal' || (level.kind === 'manual' && level.slope === 0);
|
|
}
|
|
|
|
static isContextLevel(level) {
|
|
return level.kind === 'ma' || level.kind === 'vwap' || level.kind === 'horizontal';
|
|
}
|
|
|
|
seriesTitle(level) {
|
|
if (ConfluenceChart.isContextLevel(level)) return '';
|
|
if (level.kind === 'manual') {
|
|
return level.id === this.selectedLineId ? level.label : `#${level.number}`;
|
|
}
|
|
return level.label;
|
|
}
|
|
|
|
// Flat levels are drawn as price lines rather than two-point series: they
|
|
// span the whole chart regardless of scroll and get a price-axis label.
|
|
syncPriceLines(levels) {
|
|
const flat = levels.filter(level => ConfluenceChart.isFlat(level) && !level.hidden);
|
|
const wanted = new Set(flat.map(level => level.id));
|
|
for (const [id, entry] of this.priceLines) {
|
|
if (!wanted.has(id)) {
|
|
entry.host.removePriceLine(entry.line);
|
|
this.priceLines.delete(id);
|
|
}
|
|
}
|
|
for (const level of flat) {
|
|
const options = {
|
|
price: level.anchor_p,
|
|
color: ConfluenceChart.levelColor(level),
|
|
lineWidth: level.line_width || 1,
|
|
lineStyle: LightweightCharts.LineStyle.Dashed,
|
|
axisLabelVisible: level.kind !== 'horizontal',
|
|
title: this.seriesTitle(level),
|
|
};
|
|
const existing = this.priceLines.get(level.id);
|
|
if (existing) existing.line.applyOptions(options);
|
|
else {
|
|
const host = this.candles;
|
|
this.priceLines.set(level.id, { host, line: host.createPriceLine(options) });
|
|
}
|
|
}
|
|
}
|
|
|
|
// Level points are sampled on their own timeframe — VWAP every minute, the
|
|
// daily averages once a session — and every distinct timestamp claims its own
|
|
// slot on the chart's shared scale. Left raw, a minute-resolution VWAP spread
|
|
// 160 hourly candles across 908 slots and drew them as unreadable slivers.
|
|
// Snapping onto the candle grid preserves the line's shape while keeping the
|
|
// scale one slot per candle, which is what makes the bars their proper width.
|
|
snapPointsToBars(points) {
|
|
if (!this.bars.length || !points.length) return points;
|
|
const times = this.bars.map(bar => bar.t);
|
|
const last = times[times.length - 1];
|
|
const byTime = new Map();
|
|
for (const point of points) {
|
|
// Clamped, not passed through: on a daily chart every one of VWAP's ~760
|
|
// minute points falls after the last candle's session open, and letting
|
|
// them keep their own times put all 760 back on the scale. Projection to
|
|
// the right of the last bar is handled by the caller instead.
|
|
if (point.time >= last) {
|
|
byTime.set(last, point.value);
|
|
continue;
|
|
}
|
|
let lo = 0;
|
|
let hi = times.length - 1;
|
|
while (lo < hi) {
|
|
const mid = (lo + hi) >> 1;
|
|
if (times[mid] < point.time) lo = mid + 1;
|
|
else hi = mid;
|
|
}
|
|
// Points older than the window collapse onto the first candle; the newest
|
|
// of them wins, which is the value in force when the window opens.
|
|
byTime.set(times[lo], point.value);
|
|
}
|
|
return [...byTime.entries()]
|
|
.sort((a, b) => a[0] - b[0])
|
|
.map(([time, value]) => ({ time, value }));
|
|
}
|
|
|
|
syncLevels(levels) {
|
|
this.levels = levels;
|
|
this.syncPriceLines(levels);
|
|
const drawn = levels.filter(level => !ConfluenceChart.isFlat(level));
|
|
const wanted = new Set(drawn.filter(level => !level.hidden).map(level => level.id));
|
|
for (const [id, entry] of this.levelSeries) {
|
|
if (!wanted.has(id)) {
|
|
this.chart.removeSeries(entry.series);
|
|
this.levelSeries.delete(id);
|
|
}
|
|
}
|
|
for (const level of drawn) {
|
|
if (level.hidden) continue;
|
|
let entry = this.levelSeries.get(level.id);
|
|
// Both trace a series of points, but a higher-timeframe average holds its
|
|
// value between closes while VWAP moves continuously.
|
|
const hasPoints = level.kind === 'ma' || level.kind === 'vwap';
|
|
const isMa = level.kind === 'ma';
|
|
const dailyChart = this.bars[0]?.tf === '1d';
|
|
const options = {
|
|
color: ConfluenceChart.levelColor(level),
|
|
lineWidth: level.line_width || (level.tf === '1d' ? 2 : 1),
|
|
// A daily value is held constant while projected over intraday bars,
|
|
// but on the daily chart each point is a new sample and should connect
|
|
// normally rather than drawing a staircase.
|
|
lineType: isMa && !dailyChart
|
|
? LightweightCharts.LineType.WithSteps
|
|
: LightweightCharts.LineType.Simple,
|
|
lineStyle: level.provisional ? LightweightCharts.LineStyle.Dashed : LightweightCharts.LineStyle.Solid,
|
|
priceLineVisible: false,
|
|
lastValueVisible: !ConfluenceChart.isContextLevel(level) && level.cutoff_t == null,
|
|
title: this.seriesTitle(level),
|
|
// Overlays outside the visible price range must not flatten the candles.
|
|
autoscaleInfoProvider: () => null,
|
|
};
|
|
if (!entry) {
|
|
entry = {
|
|
series: this.chart.addSeries(LightweightCharts.LineSeries,
|
|
{ ...options, priceScaleId: 'right' }),
|
|
};
|
|
this.levelSeries.set(level.id, entry);
|
|
} else {
|
|
entry.series.applyOptions(options);
|
|
}
|
|
let data;
|
|
if (hasPoints) {
|
|
data = this.snapPointsToBars((level.points || []).map(([time, value]) => ({ time, value })));
|
|
const latestTime = this.bars[this.bars.length - 1]?.t;
|
|
const latestValue = data[data.length - 1]?.value;
|
|
if (latestTime != null && latestValue != null && latestTime > data[data.length - 1].time) {
|
|
data.push({ time: latestTime, value: latestValue });
|
|
}
|
|
} else {
|
|
data = level.kind === 'manual' ? this.seriesLineData(level) : this.lineData(level);
|
|
}
|
|
entry.series.setData(data);
|
|
}
|
|
// Re-anchor once, after the level series have reshaped the scale. setBars
|
|
// runs before them, so the width it asked for was derived from the previous
|
|
// timeframe's point density and the chart holds that width as new series
|
|
// arrive. Consumed rather than reapplied every time: VWAP resyncs a level
|
|
// every minute, and re-anchoring on each would yank the view back from
|
|
// wherever the user had panned it.
|
|
if (this.pendingView) {
|
|
this.chart.timeScale().setVisibleRange(this.pendingView);
|
|
this.pendingView = null;
|
|
}
|
|
this.renderAnchorHandles();
|
|
this.renderTrendlineProjections();
|
|
this.renderContextLabels();
|
|
}
|
|
|
|
renderContextLabels() {
|
|
if (!this.contextLabelLayer || !this.candles) return;
|
|
const height = this.plotCanvas()?.getBoundingClientRect().height || 0;
|
|
const labels = this.levels
|
|
.filter(level => !level.hidden && ConfluenceChart.isContextLevel(level))
|
|
.map(level => {
|
|
const points = level.points || [];
|
|
const value = level.current_p ?? points[points.length - 1]?.[1] ?? level.anchor_p;
|
|
const y = value == null ? null : this.candles.priceToCoordinate(value);
|
|
return { level, value, y };
|
|
})
|
|
.filter(item => item.y != null && item.y >= 0 && item.y <= height)
|
|
.sort((a, b) => a.y - b.y);
|
|
|
|
const gap = 18;
|
|
const top = 10;
|
|
const bottom = Math.max(top, height - 10);
|
|
labels.forEach((item, index) => {
|
|
item.placedY = index === 0 ? Math.max(top, item.y) : Math.max(item.y, labels[index - 1].placedY + gap);
|
|
});
|
|
if (labels.length && labels[labels.length - 1].placedY > bottom) {
|
|
const shift = labels[labels.length - 1].placedY - bottom;
|
|
labels.forEach(item => { item.placedY -= shift; });
|
|
}
|
|
|
|
this.contextLabelLayer.replaceChildren(...labels.map(({ level, value, y, placedY }) => {
|
|
const node = document.createElement('div');
|
|
node.className = 'chart-context-label';
|
|
node.textContent = `${level.label} ${Number(value).toFixed(2)}`;
|
|
node.style.top = `${Math.max(top, placedY)}px`;
|
|
node.style.borderColor = ConfluenceChart.levelColor(level);
|
|
return node;
|
|
}));
|
|
}
|
|
|
|
scheduleContextLabels() {
|
|
if (this.contextLabelFrame != null) return;
|
|
this.contextLabelFrame = requestAnimationFrame(() => {
|
|
this.contextLabelFrame = null;
|
|
this.renderContextLabels();
|
|
});
|
|
}
|
|
|
|
// --- tool arming and placement gestures ---------------------------------
|
|
|
|
setToolCompleteHandler(handler) { this.onToolComplete = handler; }
|
|
|
|
setSnap(enabled) { this.snapToBars = enabled; }
|
|
|
|
/**
|
|
* Arm a tool so the next chart gesture places one. Panning is suspended
|
|
* while armed, otherwise the drag that draws a line also drags the chart out
|
|
* from under it.
|
|
*/
|
|
armTool(tool) {
|
|
this.armedTool = tool;
|
|
this.chart.applyOptions({ handleScroll: !tool, handleScale: !tool });
|
|
this.hideSnapDot();
|
|
this.chartEl.classList.toggle('armed', Boolean(tool));
|
|
this.pendingAnchor = null;
|
|
this.clearGesture();
|
|
this.clearLinePreview();
|
|
}
|
|
|
|
/**
|
|
* Pixels between the element's left edge and the plot area.
|
|
*
|
|
* Lightweight Charts measures coordinates from the plot, not the element.
|
|
* The helper remains the single source of truth if axes or panes change the
|
|
* plot bounds again.
|
|
*/
|
|
/** Put the overlay container exactly over the plot area. */
|
|
syncOverlayLayer() {
|
|
if (!this.overlayLayer || !this.chartEl) return;
|
|
const canvas = this.plotCanvas();
|
|
if (!canvas) return;
|
|
const chartRect = this.chartEl.getBoundingClientRect();
|
|
const plot = canvas.getBoundingClientRect();
|
|
this.overlayLayer.style.left = `${Math.round(plot.left - chartRect.left)}px`;
|
|
this.overlayLayer.style.top = `${Math.round(plot.top - chartRect.top)}px`;
|
|
this.overlayLayer.style.width = `${Math.round(plot.width)}px`;
|
|
this.overlayLayer.style.height = `${Math.round(plot.height)}px`;
|
|
}
|
|
|
|
/**
|
|
* Keep overlays aligned as Lightweight Charts sizes its internal price scales.
|
|
*
|
|
* The chart element itself does not resize when an axis label changes the
|
|
* plot bounds; the plot canvas does. Observing the canvas catches both initial
|
|
* settling and later digit-width changes.
|
|
*/
|
|
observePlotCanvas() {
|
|
const canvas = this.plotCanvas();
|
|
if (!canvas) return;
|
|
if (canvas !== this.observedPlotCanvas) {
|
|
if (this.plotResizeObserver) this.plotResizeObserver.disconnect();
|
|
this.observedPlotCanvas = canvas;
|
|
this.plotResizeObserver = new ResizeObserver(() => {
|
|
this.syncOverlayLayer();
|
|
this.renderAnchorHandles();
|
|
this.renderTrendlineProjections();
|
|
this.renderComments();
|
|
this.renderContextLabels();
|
|
if (this.armedTool) this.renderGesture();
|
|
});
|
|
this.plotResizeObserver.observe(canvas);
|
|
}
|
|
this.syncOverlayLayer();
|
|
}
|
|
|
|
plotCanvas() {
|
|
if (!this.chartEl) return null;
|
|
return [...this.chartEl.querySelectorAll('canvas')]
|
|
.sort((a, b) => (b.width * b.height) - (a.width * a.height))[0] || null;
|
|
}
|
|
|
|
plotOffsetX() {
|
|
if (!this.chartEl) return 0;
|
|
const canvas = this.plotCanvas();
|
|
if (!canvas) return 0;
|
|
return canvas.getBoundingClientRect().left - this.chartEl.getBoundingClientRect().left;
|
|
}
|
|
|
|
eventPoint(event) {
|
|
const plot = this.plotCanvas()?.getBoundingClientRect();
|
|
if (!plot) return null;
|
|
const x = event.clientX - plot.left;
|
|
const y = event.clientY - plot.top;
|
|
const price = this.candles.coordinateToPrice(y);
|
|
if (price == null) return null;
|
|
const time = this.chart.timeScale().coordinateToTime(x);
|
|
const index = time == null ? this.indexAtCoordinate(x) : null;
|
|
const projectedTime = index == null ? null : this.timeAtIndex(index);
|
|
return { x, y, p: price, t: time == null ? projectedTime : Number(time) };
|
|
}
|
|
|
|
indexAtCoordinate(x) {
|
|
if (!this.bars.length) return null;
|
|
const scale = this.chart.timeScale();
|
|
const logical = scale.coordinateToLogical(x);
|
|
const lastX = scale.timeToCoordinate(this.bars[this.bars.length - 1].t);
|
|
const lastLogical = lastX == null ? null : scale.coordinateToLogical(lastX);
|
|
if (logical == null || lastLogical == null) return null;
|
|
return this.bars.length - 1 + Number(logical) - Number(lastLogical);
|
|
}
|
|
|
|
coordinateAtIndex(index) {
|
|
if (!this.bars.length) return null;
|
|
const scale = this.chart.timeScale();
|
|
const lastX = scale.timeToCoordinate(this.bars[this.bars.length - 1].t);
|
|
const lastLogical = lastX == null ? null : scale.coordinateToLogical(lastX);
|
|
if (lastLogical == null) return null;
|
|
return scale.logicalToCoordinate(Number(lastLogical) + index - (this.bars.length - 1));
|
|
}
|
|
|
|
coordinateAtTime(time) {
|
|
const last = this.bars[this.bars.length - 1];
|
|
if (!last) return null;
|
|
if (time <= last.t) {
|
|
const direct = this.chart.timeScale().timeToCoordinate(time);
|
|
if (direct != null) return direct;
|
|
}
|
|
return this.coordinateAtIndex(this.indexAt(time));
|
|
}
|
|
|
|
startToolGesture(event) {
|
|
if (!this.armedTool || event.button !== 0) return;
|
|
const point = this.eventPoint(event);
|
|
if (!point) return;
|
|
event.preventDefault();
|
|
this.gesture = { start: point, end: point };
|
|
this.chartEl.setPointerCapture?.(event.pointerId);
|
|
this.renderGesture();
|
|
}
|
|
|
|
moveToolGesture(event) {
|
|
if (!this.armedTool) return;
|
|
const point = this.eventPoint(event);
|
|
if (!point) return;
|
|
// The listener is on window, so it fires over the sidebar and the price
|
|
// axis too. Reported from a real session: x=1409 on a 1280-wide chart, which
|
|
// has no time under it — and the snap fell back to the newest bar, throwing
|
|
// the dot to the right-hand edge.
|
|
if (!this.withinPlot(point)) {
|
|
this.hideSnapDot();
|
|
return;
|
|
}
|
|
if (this.armedTool !== 'level') this.showSnapDot(this.snapPoint(point), point);
|
|
if (this.gesture) {
|
|
this.gesture.end = point;
|
|
this.renderGesture();
|
|
return;
|
|
}
|
|
// Waiting on the second click: rubber-band from the placed anchor.
|
|
if (this.pendingAnchor) this.renderPending(this.pendingAnchor, this.snapPoint(point));
|
|
}
|
|
|
|
showSnapDot(snapped, point = {}) {
|
|
if (snapped.t == null) return this.hideSnapDot();
|
|
const x = this.coordinateAtTime(snapped.t);
|
|
const y = this.candles.priceToCoordinate(snapped.p);
|
|
if (x == null || y == null) return this.hideSnapDot();
|
|
this.snapDot.hidden = false;
|
|
this.snapDot.style.left = `${Math.round(x)}px`;
|
|
this.snapDot.style.top = `${Math.round(y)}px`;
|
|
// Says which it is before you commit, since the extreme decides the side.
|
|
this.snapDot.dataset.side = snapped.snappedSide || '';
|
|
|
|
// Diagnostic mode: report what the client computed so it can be read on
|
|
// the server. Off unless asked for, because the browser is usually on a
|
|
// different machine and this is the only way to see its numbers.
|
|
// turn on: ?diag=1 (remembered) turn off: ?diag=0
|
|
if (ConfluenceChart.diagnosticMode() && snapped.t != null && this.bars.length) {
|
|
const step = this.bars.length > 1
|
|
? this.bars[this.bars.length - 1].t - this.bars[this.bars.length - 2].t : 60;
|
|
const drift = point.t == null ? null : Math.abs(snapped.t - point.t);
|
|
{
|
|
const now = Date.now();
|
|
if (!this._lastSnapReport || now - this._lastSnapReport > 900) {
|
|
this._lastSnapReport = now;
|
|
const body = {
|
|
cursor_t: point.t, cursor_p: point.p, cursor_x: Math.round(point.x),
|
|
snapped_t: snapped.t, snapped_p: snapped.p,
|
|
bars_held: this.bars.length,
|
|
first_bar_t: this.bars[0].t, last_bar_t: this.bars[this.bars.length - 1].t,
|
|
chart_w: this.chartEl.clientWidth,
|
|
chart_h: this.chartEl.clientHeight,
|
|
cursor_y: Math.round(point.y),
|
|
dot_y: this.snapDot && !this.snapDot.hidden
|
|
? Math.round(this.snapDot.getBoundingClientRect().top
|
|
- this.chartEl.getBoundingClientRect().top) + 5
|
|
: null,
|
|
expected_y: Math.round(y),
|
|
bar_low_y: (() => {
|
|
const bar = this.bars.find(candle => candle.t === snapped.t);
|
|
const at = bar && this.candles.priceToCoordinate(bar.l);
|
|
return at == null ? null : Math.round(at);
|
|
})(),
|
|
bar_high_y: (() => {
|
|
const bar = this.bars.find(candle => candle.t === snapped.t);
|
|
const at = bar && this.candles.priceToCoordinate(bar.h);
|
|
return at == null ? null : Math.round(at);
|
|
})(),
|
|
note: point.t == null
|
|
? 'coordinateToTime returned null'
|
|
: `drift ${drift}s (${Math.round(drift / step)} bars), step ${step}s`,
|
|
};
|
|
this.lastSnapDiagnostic = body;
|
|
fetch('/api/debug/snap', {
|
|
method: 'POST',
|
|
headers: { 'Content-Type': 'application/json',
|
|
...(localStorage.getItem('chart-token') ? { 'X-Chart-Token': localStorage.getItem('chart-token') } : {}) },
|
|
body: JSON.stringify(body),
|
|
}).catch(() => {});
|
|
}
|
|
}
|
|
}
|
|
|
|
const side = snapped.snappedSide === 'resistance' ? 'H' : snapped.snappedSide === 'support' ? 'L' : '';
|
|
const clock = new Date(snapped.t * 1000)
|
|
.toLocaleTimeString(undefined, { hour12: false, hour: '2-digit', minute: '2-digit' });
|
|
this.snapLabel.hidden = false;
|
|
this.snapLabel.dataset.side = snapped.snappedSide || '';
|
|
this.snapLabel.textContent = `${snapped.p.toFixed(2)}${side ? ' ' + side : ''} · ${clock}`;
|
|
// Flipped to the left near the right-hand edge so it never leaves the pane.
|
|
const flip = x > this.chartEl.clientWidth - 120;
|
|
this.snapLabel.style.left = `${Math.round(flip ? x - 12 : x + 12)}px`;
|
|
this.snapLabel.style.top = `${Math.round(y)}px`;
|
|
this.snapLabel.style.transform = flip ? 'translate(-100%, -50%)' : 'translate(0, -50%)';
|
|
|
|
if (point.x != null && point.y != null) {
|
|
this.snapLeaderLine.setAttribute('x1', point.x);
|
|
this.snapLeaderLine.setAttribute('y1', point.y);
|
|
this.snapLeaderLine.setAttribute('x2', x);
|
|
this.snapLeaderLine.setAttribute('y2', y);
|
|
this.snapLeader.style.display = '';
|
|
} else {
|
|
this.snapLeader.style.display = 'none';
|
|
}
|
|
}
|
|
|
|
hideSnapDot() {
|
|
if (this.snapDot) this.snapDot.hidden = true;
|
|
if (this.snapLabel) this.snapLabel.hidden = true;
|
|
if (this.snapLeader) this.snapLeader.style.display = 'none';
|
|
}
|
|
|
|
renderPending(a, b) {
|
|
if (a.t != null && b.t != null) this.setLinePreview(a, b, '#65b7cf', 2);
|
|
}
|
|
|
|
finishToolGesture(event) {
|
|
if (!this.armedTool || !this.gesture) return;
|
|
const tool = this.armedTool;
|
|
const { start, end } = this.gesture;
|
|
this.clearGesture();
|
|
this.chartEl.releasePointerCapture?.(event.pointerId);
|
|
|
|
if (tool === 'comment') {
|
|
// Both placements come from one gesture: the time and price under the
|
|
// cursor for a pinned comment, and the same spot as a fraction of the
|
|
// pane for a floating one, so the tool decides which without a second
|
|
// interaction.
|
|
this.onToolComplete?.({
|
|
tool,
|
|
time: end.t,
|
|
price: ConfluenceChart.snapToTick(end.p),
|
|
x: Math.min(Math.max(end.x / this.chartEl.clientWidth, 0), 1),
|
|
y: Math.min(Math.max(end.y / this.chartEl.clientHeight, 0), 1),
|
|
});
|
|
return;
|
|
}
|
|
|
|
if (tool === 'level') {
|
|
// A click with no drag is a valid placement; the drag is only there to
|
|
// let you fine-tune the price before committing.
|
|
this.onToolComplete?.({ tool, price: ConfluenceChart.snapToTick(end.p) });
|
|
return;
|
|
}
|
|
|
|
// Both idioms are supported. Press-drag-release places a trendline in one
|
|
// gesture; a plain click sets the first anchor and the next click finishes
|
|
// it. Rejecting short gestures outright left the tool armed and silent, so
|
|
// the next click began a whole new line — which read as the line suddenly
|
|
// continuing at a different slope.
|
|
// Deliberate drag or click? At 5px a twitch while pressing the second click
|
|
// counted as a drag, which threw away the anchor placed by the first click
|
|
// and restarted the line under the cursor. Making a pending anchor always
|
|
// win fixed that and broke the other direction: a real press-drag begun
|
|
// after an abandoned click was hijacked by that stale anchor, starting the
|
|
// line far from where the drag did. So the threshold decides, and it is
|
|
// wide enough that only a deliberate drag clears the anchor.
|
|
const dragged = Math.hypot(end.x - start.x, end.y - start.y) >= ConfluenceChart.DRAG_THRESHOLD;
|
|
const b = this.snapPoint(end);
|
|
if (!dragged && !this.pendingAnchor) {
|
|
this.pendingAnchor = b;
|
|
this.renderPending(b, b);
|
|
return;
|
|
}
|
|
// A drag says everything it needs to on its own; anything half-placed
|
|
// before it is abandoned rather than silently adopted.
|
|
const a = dragged ? this.snapPoint(start) : this.pendingAnchor;
|
|
this.pendingAnchor = null;
|
|
this.clearLinePreview();
|
|
if (a.t == null || b.t == null || a.t === b.t) return;
|
|
this.onToolComplete?.({ tool, start: a, end: b });
|
|
}
|
|
|
|
/**
|
|
* Trendline anchors snap to bar extremes; levels snap to the tick grid.
|
|
*
|
|
* With snapping on, an anchor always lands on the nearer extreme of the
|
|
* nearest bar — there is no proximity gate. An 8px one used to let the
|
|
* cursor fall between the high and the low and snap to neither, so the
|
|
* preview showed a raw mid-bar price and the side quietly fell back to the
|
|
* dropdown. Which extreme you land on *is* the side: a high is resistance, a
|
|
* low is support, so the choice is made by where you point rather than by a
|
|
* control you have to remember to set. An already-snapped point carries no
|
|
* cursor y, so it is returned untouched rather than re-snapped against NaN.
|
|
*/
|
|
/** Is this point over the plotted area, rather than an axis or the sidebar? */
|
|
withinPlot(point) {
|
|
const plot = this.plotCanvas()?.getBoundingClientRect();
|
|
if (!plot) return true;
|
|
const width = plot.width;
|
|
const height = plot.height;
|
|
return point.x >= 0 && point.x <= width && point.y >= 0 && point.y <= height;
|
|
}
|
|
|
|
/**
|
|
* The bar nearest a pixel, when the time scale will not name one.
|
|
*
|
|
* coordinateToTime answers null over the right-hand whitespace and the price
|
|
* axis. Treating that as "the newest bar" put the anchor at the live edge
|
|
* however far away the cursor was.
|
|
*/
|
|
barNearestX(x) {
|
|
let best = null;
|
|
const timeScale = this.chart.timeScale();
|
|
for (const bar of this.bars) {
|
|
const coordinate = timeScale.timeToCoordinate(bar.t);
|
|
if (coordinate == null) continue;
|
|
const distance = Math.abs(coordinate - x);
|
|
if (!best || distance < best.distance) best = { distance, t: bar.t };
|
|
}
|
|
return best ? best.t : null;
|
|
}
|
|
|
|
snapPoint(point) {
|
|
const fallbackT = point.t ?? (point.x == null ? null : this.barNearestX(point.x));
|
|
const base = { t: fallbackT, p: point.p, snappedSide: point.snappedSide ?? null };
|
|
if (!this.snapToBars || !this.bars.length || fallbackT == null) return base;
|
|
const last = this.bars[this.bars.length - 1];
|
|
if (fallbackT > last.t) {
|
|
const index = Math.round(this.indexAt(fallbackT));
|
|
return { t: this.timeAtIndex(index), p: ConfluenceChart.snapToTick(point.p), snappedSide: null };
|
|
}
|
|
// An already-snapped point carries no cursor position; return it untouched
|
|
// rather than measuring against undefined.
|
|
if (point.y == null) return base;
|
|
|
|
// Horizontal position chooses the bar, vertical position chooses which of
|
|
// its extremes. Nothing else — a nearest-in-2D search was tried and is
|
|
// wrong: sweeping along the bottom of the chart, whichever nearby bar had
|
|
// the lowest low won on total distance, so the dot skipped off the bar
|
|
// under the cursor entirely instead of tracing each bar's low in turn.
|
|
const nearest = this.bars.reduce(
|
|
(best, bar) => (Math.abs(bar.t - fallbackT) < Math.abs(best.t - fallbackT) ? bar : best),
|
|
);
|
|
const candidates = [
|
|
{ p: nearest.h, side: 'resistance' },
|
|
{ p: nearest.l, side: 'support' },
|
|
];
|
|
const snapped = candidates
|
|
.map(value => ({ ...value, distance: Math.abs(this.candles.priceToCoordinate(value.p) - point.y) }))
|
|
.sort((a, b) => a.distance - b.distance)[0];
|
|
return { t: nearest.t, p: snapped.p, snappedSide: snapped.side };
|
|
}
|
|
|
|
|
|
renderGesture() {
|
|
if (!this.gesture) return;
|
|
const { start, end } = this.gesture;
|
|
if (this.armedTool === 'level') {
|
|
const price = ConfluenceChart.snapToTick(end.p);
|
|
const y = this.candles.priceToCoordinate(price);
|
|
if (y == null) return;
|
|
this.previewLine.removeAttribute('hidden');
|
|
this.previewLine.setAttribute('x1', 0);
|
|
this.previewLine.setAttribute('y1', y);
|
|
this.previewLine.setAttribute('x2', this.chartEl.clientWidth);
|
|
this.previewLine.setAttribute('y2', y);
|
|
this.previewLine.setAttribute('stroke', '#e0a34a');
|
|
this.previewLine.setAttribute('stroke-width', 2);
|
|
this.previewLine.setAttribute('stroke-dasharray', '6 4');
|
|
this.priceTag.hidden = false;
|
|
this.priceTag.textContent = price.toFixed(2);
|
|
this.priceTag.style.top = `${y}px`;
|
|
this.priceTag.style.left = `${Math.min(end.x + 14, this.chartEl.clientWidth - 70)}px`;
|
|
return;
|
|
}
|
|
const a = this.snapPoint(start);
|
|
const b = this.snapPoint(end);
|
|
if (a.t != null && b.t != null) this.setLinePreview(a, b, '#65b7cf', 2);
|
|
}
|
|
|
|
clearGesture() {
|
|
this.gesture = null;
|
|
if (this.priceTag) this.priceTag.hidden = true;
|
|
// The pending anchor's rubber band must survive between the two clicks.
|
|
if (!this.pendingAnchor) this.clearLinePreview();
|
|
}
|
|
|
|
setClickHandler(handler) { this.onChartClick = handler; }
|
|
|
|
setLineChangeHandler(handler) { this.onLineChange = handler; }
|
|
|
|
setLineEndHandler(handler) { this.onLineEnd = handler; }
|
|
|
|
setLineDuplicateHandler(handler) { this.onLineDuplicate = handler; }
|
|
|
|
setLineDeleteHandler(handler) { this.onLineDelete = handler; }
|
|
|
|
setSelectedLine(id) {
|
|
this.selectedLineId = id;
|
|
this.hideContextMenu();
|
|
for (const level of this.levels.filter(value => value.kind === 'manual')) {
|
|
if (ConfluenceChart.isFlat(level)) {
|
|
this.priceLines.get(level.id)?.line.applyOptions({ title: this.seriesTitle(level) });
|
|
} else {
|
|
this.levelSeries.get(level.id)?.series.applyOptions({ title: this.seriesTitle(level) });
|
|
}
|
|
}
|
|
this.renderAnchorHandles();
|
|
}
|
|
|
|
focusLine(id) {
|
|
this.setSelectedLine(id);
|
|
const level = this.levels.find(value => value.id === id && value.kind === 'manual');
|
|
if (!level) return;
|
|
if (ConfluenceChart.isFlat(level)) {
|
|
const y = this.candles.priceToCoordinate(level.anchor_p);
|
|
if (y == null) return;
|
|
this.lineFocus.setAttribute('x1', 0);
|
|
this.lineFocus.setAttribute('y1', y);
|
|
this.lineFocus.setAttribute('x2', this.overlayLayer.getBoundingClientRect().width);
|
|
this.lineFocus.setAttribute('y2', y);
|
|
} else {
|
|
if (this.lineHitTarget.hasAttribute('hidden')) return;
|
|
for (const attribute of ['x1', 'y1', 'x2', 'y2']) {
|
|
this.lineFocus.setAttribute(attribute, this.lineHitTarget.getAttribute(attribute));
|
|
}
|
|
}
|
|
this.lineFocus.setAttribute('stroke', ConfluenceChart.levelColor(level));
|
|
const lineWidth = level.line_width || 2;
|
|
this.lineFocus.style.setProperty('--line-focus-start-width', `${lineWidth + 10}px`);
|
|
this.lineFocus.style.setProperty('--line-focus-width', `${lineWidth}px`);
|
|
this.lineFocus.removeAttribute('hidden');
|
|
this.lineFocus.style.animation = 'none';
|
|
void this.lineFocus.getBoundingClientRect();
|
|
this.lineFocus.style.animation = '';
|
|
clearTimeout(this.lineFocusTimer);
|
|
this.lineFocusTimer = setTimeout(() => this.lineFocus.setAttribute('hidden', ''), 800);
|
|
}
|
|
|
|
focusComment(id) {
|
|
const node = this.commentNodes.get(id);
|
|
if (!node) return;
|
|
clearTimeout(node.focusTimer);
|
|
node.root.classList.remove('focus');
|
|
void node.root.getBoundingClientRect();
|
|
node.root.classList.add('focus');
|
|
node.focusTimer = setTimeout(() => node.root.classList.remove('focus'), 800);
|
|
}
|
|
|
|
setLinePreview(start, end, color, lineWidth) {
|
|
if (start.t === end.t) return;
|
|
const x1 = this.chart.timeScale().timeToCoordinate(start.t);
|
|
const x2 = this.chart.timeScale().timeToCoordinate(end.t);
|
|
const y1 = this.candles.priceToCoordinate(start.p);
|
|
const y2 = this.candles.priceToCoordinate(end.p);
|
|
if ([x1, x2, y1, y2].some(value => value == null)) return;
|
|
this.previewLine.removeAttribute('hidden');
|
|
this.previewLine.setAttribute('x1', x1);
|
|
this.previewLine.setAttribute('y1', y1);
|
|
this.previewLine.setAttribute('x2', x2);
|
|
this.previewLine.setAttribute('y2', y2);
|
|
this.previewLine.setAttribute('stroke', color);
|
|
this.previewLine.setAttribute('stroke-width', lineWidth);
|
|
this.previewLine.setAttribute('stroke-dasharray', '6 4');
|
|
}
|
|
|
|
clearLinePreview() {
|
|
if (this.previewLine) this.previewLine.setAttribute('hidden', '');
|
|
}
|
|
|
|
updateLineTooltip(param) {
|
|
const id = this.hitTest(param);
|
|
const line = this.levels.find(level => level.id === id);
|
|
this.tooltip.hidden = !line;
|
|
if (!line) return;
|
|
this.tooltip.textContent = `#${line.number} ${line.label}`;
|
|
this.tooltip.style.left = `${param.point.x + 12}px`;
|
|
this.tooltip.style.top = `${Math.max(8, param.point.y - 30)}px`;
|
|
}
|
|
|
|
hitTest(param) {
|
|
let best = null;
|
|
const visible = this.visibleBarIndexes();
|
|
if (!visible) return null;
|
|
for (const level of this.levels.filter(value =>
|
|
value.kind === 'manual' && ConfluenceChart.isFlat(value) && !value.hidden)) {
|
|
const y = this.candles.priceToCoordinate(level.anchor_p);
|
|
const distance = y == null ? Infinity : Math.abs(y - param.point.y);
|
|
if (distance <= 6 && (!best || distance < best.distance)) best = { id: level.id, distance };
|
|
}
|
|
for (const level of this.levels.filter(value => value.kind === 'manual' && !ConfluenceChart.isFlat(value))) {
|
|
const startIndex = Math.max(this.indexAt(level.anchor_t), visible.from);
|
|
const naturalEnd = level.cutoff_t == null ? visible.to : this.indexAt(level.cutoff_t);
|
|
const endIndex = Math.min(naturalEnd, visible.to);
|
|
if (endIndex <= startIndex) continue;
|
|
const start = {
|
|
x: this.coordinateAtIndex(startIndex),
|
|
y: this.candles.priceToCoordinate(this.linePriceAtIndex(level, startIndex)),
|
|
};
|
|
const end = {
|
|
x: this.coordinateAtIndex(endIndex),
|
|
y: this.candles.priceToCoordinate(this.linePriceAtIndex(level, endIndex)),
|
|
};
|
|
if ([start.x, start.y, end.x, end.y].some(value => value == null) || start.x === end.x) continue;
|
|
if (param.point.x < Math.min(start.x, end.x) - 6 || param.point.x > Math.max(start.x, end.x) + 6) continue;
|
|
const lineY = start.y + (end.y - start.y) * (param.point.x - start.x) / (end.x - start.x);
|
|
const distance = Math.abs(lineY - param.point.y);
|
|
if (distance <= 6 && (!best || distance < best.distance)) best = { id: level.id, distance };
|
|
}
|
|
return best?.id || null;
|
|
}
|
|
|
|
/**
|
|
* Fractional index of a timestamp in the bar series. Mirrors index_at() in
|
|
* app/analysis/bar_space.py — the chart spaces bars evenly however much time
|
|
* separates them, so this is the space a straight line is straight in.
|
|
*/
|
|
indexAt(time) {
|
|
const bars = this.bars;
|
|
if (bars.length < 2) return 0;
|
|
if (time <= bars[0].t) {
|
|
const step = bars[1].t - bars[0].t;
|
|
return step ? (time - bars[0].t) / step : 0;
|
|
}
|
|
const last = bars.length - 1;
|
|
if (time >= bars[last].t) {
|
|
const step = bars[last].t - bars[last - 1].t;
|
|
return last + (step ? (time - bars[last].t) / step : 0);
|
|
}
|
|
let lo = 0;
|
|
let hi = last;
|
|
while (hi - lo > 1) {
|
|
const mid = (lo + hi) >> 1;
|
|
if (bars[mid].t <= time) lo = mid; else hi = mid;
|
|
}
|
|
const span = bars[hi].t - bars[lo].t;
|
|
return lo + (span ? (time - bars[lo].t) / span : 0);
|
|
}
|
|
|
|
timeAtIndex(index) {
|
|
const bars = this.bars;
|
|
if (bars.length < 2) return bars[0]?.t ?? 0;
|
|
if (index <= 0) return Math.round(bars[0].t + index * (bars[1].t - bars[0].t));
|
|
const last = bars.length - 1;
|
|
if (index >= last) {
|
|
return Math.round(bars[last].t + (index - last) * (bars[last].t - bars[last - 1].t));
|
|
}
|
|
const lower = Math.floor(index);
|
|
const fraction = index - lower;
|
|
return Math.round(bars[lower].t + fraction * (bars[lower + 1].t - bars[lower].t));
|
|
}
|
|
|
|
visibleBarIndexes() {
|
|
const plot = this.plotCanvas()?.getBoundingClientRect();
|
|
if (!plot) return null;
|
|
const from = this.indexAtCoordinate(0);
|
|
const to = this.indexAtCoordinate(plot.width);
|
|
return from == null || to == null ? null : { from, to };
|
|
}
|
|
|
|
linePriceAtIndex(level, index) {
|
|
const start = this.indexAt(level.anchor_t);
|
|
const end = this.indexAt(level.last_t);
|
|
const endPrice = level.anchor_p + level.slope * (level.last_t - level.anchor_t);
|
|
return end === start
|
|
? level.anchor_p
|
|
: level.anchor_p + (endPrice - level.anchor_p) * (index - start) / (end - start);
|
|
}
|
|
|
|
seriesLineData(level) {
|
|
if (!this.bars.length) return [];
|
|
const start = this.indexAt(level.anchor_t);
|
|
const lastBar = this.bars.length - 1;
|
|
const cutoff = level.cutoff_t == null ? lastBar : this.indexAt(level.cutoff_t);
|
|
const end = Math.min(lastBar, cutoff);
|
|
if (start > end) return [];
|
|
const anchorEnd = this.indexAt(level.last_t);
|
|
const indexes = [start];
|
|
if (anchorEnd > start && anchorEnd < end) indexes.push(anchorEnd);
|
|
if (end > indexes[indexes.length - 1]) indexes.push(end);
|
|
return indexes.map(index => ({
|
|
time: this.timeAtIndex(index),
|
|
value: this.linePriceAtIndex(level, index),
|
|
}));
|
|
}
|
|
|
|
renderTrendlineProjections() {
|
|
if (!this.projectionLayer || !this.bars.length) return;
|
|
const visible = this.visibleBarIndexes();
|
|
if (!visible) return;
|
|
const lastBar = this.bars.length - 1;
|
|
const lines = this.levels
|
|
.filter(level => level.kind === 'manual' && !level.hidden && !ConfluenceChart.isFlat(level))
|
|
.map(level => {
|
|
const start = Math.max(lastBar, this.indexAt(level.anchor_t), visible.from);
|
|
const naturalEnd = level.cutoff_t == null ? visible.to : this.indexAt(level.cutoff_t);
|
|
const end = Math.min(naturalEnd, visible.to);
|
|
if (end <= start) return null;
|
|
const x1 = this.coordinateAtIndex(start);
|
|
const x2 = this.coordinateAtIndex(end);
|
|
const y1 = this.candles.priceToCoordinate(this.linePriceAtIndex(level, start));
|
|
const y2 = this.candles.priceToCoordinate(this.linePriceAtIndex(level, end));
|
|
if ([x1, x2, y1, y2].some(value => value == null)) return null;
|
|
const node = document.createElementNS('http://www.w3.org/2000/svg', 'line');
|
|
node.dataset.lineId = level.id;
|
|
node.setAttribute('x1', x1);
|
|
node.setAttribute('y1', y1);
|
|
node.setAttribute('x2', x2);
|
|
node.setAttribute('y2', y2);
|
|
node.setAttribute('stroke', ConfluenceChart.levelColor(level));
|
|
node.setAttribute('stroke-width', level.line_width || 2);
|
|
return node;
|
|
})
|
|
.filter(Boolean);
|
|
this.projectionLayer.replaceChildren(...lines);
|
|
}
|
|
|
|
lineData(level) {
|
|
// Interpolated across bars, matching what the server scores the level at.
|
|
// Doing it per second instead kicked the line upward at every session gap,
|
|
// because a one-hour halt is one bar wide but an hour of slope.
|
|
const endPrice = level.anchor_p + level.slope * (level.last_t - level.anchor_t);
|
|
const times = [level.anchor_t, level.last_t];
|
|
const cutoffIndex = level.cutoff_t == null
|
|
? -1
|
|
: this.bars.findIndex(bar => bar.t >= level.cutoff_t);
|
|
const target = cutoffIndex >= 0 ? this.bars[cutoffIndex] : this.bars[this.bars.length - 1];
|
|
if (target && target.t > level.last_t) times.push(target.t);
|
|
|
|
const startIndex = this.indexAt(level.anchor_t);
|
|
const span = this.indexAt(level.last_t) - startIndex;
|
|
return times
|
|
.filter((time, index) => index === 0 || time !== times[index - 1])
|
|
.map(time => ({
|
|
time,
|
|
value: span
|
|
? level.anchor_p + (endPrice - level.anchor_p) * (this.indexAt(time) - startIndex) / span
|
|
: level.anchor_p,
|
|
}));
|
|
}
|
|
|
|
renderAnchorHandles() {
|
|
const level = this.levels.find(
|
|
value => value.id === this.selectedLineId && value.kind === 'manual' && !ConfluenceChart.isFlat(value),
|
|
);
|
|
if (!level || !this.anchorHandles.length) {
|
|
this.anchorHandles.forEach(handle => handle.setAttribute('hidden', ''));
|
|
this.lineHitTarget?.setAttribute('hidden', '');
|
|
return;
|
|
}
|
|
const points = [
|
|
{ time: level.anchor_t, value: level.anchor_p },
|
|
{
|
|
time: level.last_t,
|
|
value: level.anchor_p + level.slope * (level.last_t - level.anchor_t),
|
|
},
|
|
];
|
|
const visible = this.visibleBarIndexes();
|
|
const hitEnd = level.cutoff_t == null ? visible?.to : this.indexAt(level.cutoff_t);
|
|
const hitIndexes = [this.indexAt(level.anchor_t), hitEnd];
|
|
const hitPoints = hitIndexes.map(index => ({
|
|
x: index == null ? null : this.coordinateAtIndex(index),
|
|
y: index == null ? null : this.candles.priceToCoordinate(this.linePriceAtIndex(level, index)),
|
|
}));
|
|
if (hitPoints.some(point => point.x == null || point.y == null)) {
|
|
this.lineHitTarget.setAttribute('hidden', '');
|
|
} else {
|
|
this.lineHitTarget.removeAttribute('hidden');
|
|
this.lineHitTarget.setAttribute('x1', hitPoints[0].x);
|
|
this.lineHitTarget.setAttribute('y1', hitPoints[0].y);
|
|
this.lineHitTarget.setAttribute('x2', hitPoints[1].x);
|
|
this.lineHitTarget.setAttribute('y2', hitPoints[1].y);
|
|
}
|
|
points.forEach((point, index) => {
|
|
const x = this.coordinateAtTime(point.time);
|
|
const y = this.candles.priceToCoordinate(point.value);
|
|
const handle = this.anchorHandles[index];
|
|
if (x == null || y == null) {
|
|
handle.setAttribute('hidden', '');
|
|
return;
|
|
}
|
|
handle.removeAttribute('hidden');
|
|
handle.setAttribute('cx', x);
|
|
handle.setAttribute('cy', y);
|
|
handle.setAttribute('fill', ConfluenceChart.levelColor(level));
|
|
});
|
|
}
|
|
|
|
startLineDrag(event) {
|
|
if (event.button !== 0) return;
|
|
const level = this.levels.find(value => value.id === this.selectedLineId);
|
|
const point = this.eventPoint(event);
|
|
if (!level || !point || point.t == null) return;
|
|
event.preventDefault();
|
|
event.stopPropagation();
|
|
this.draggingLine = {
|
|
id: level.id,
|
|
start: point,
|
|
original: { ...level },
|
|
moved: false,
|
|
};
|
|
event.currentTarget.setPointerCapture?.(event.pointerId);
|
|
}
|
|
|
|
moveLine(event) {
|
|
if (!this.draggingLine) return;
|
|
const point = this.eventPoint(event);
|
|
const level = this.levels.find(value => value.id === this.draggingLine.id);
|
|
if (!point || point.t == null || !this.withinPlot(point) || !level) return;
|
|
event.preventDefault();
|
|
const { original, start } = this.draggingLine;
|
|
const indexShift = Math.round(this.indexAt(point.t) - this.indexAt(start.t));
|
|
const priceShift = ConfluenceChart.snapToTick(point.p - start.p);
|
|
const anchorT = this.timeAtIndex(this.indexAt(original.anchor_t) + indexShift);
|
|
const lastT = this.timeAtIndex(this.indexAt(original.last_t) + indexShift);
|
|
const endPrice = original.anchor_p
|
|
+ original.slope * (original.last_t - original.anchor_t) + priceShift;
|
|
level.anchor_t = anchorT;
|
|
level.last_t = lastT;
|
|
level.anchor_p = original.anchor_p + priceShift;
|
|
level.slope = (endPrice - level.anchor_p) / (lastT - anchorT);
|
|
if (original.cutoff_t != null) {
|
|
level.cutoff_t = this.timeAtIndex(this.indexAt(original.cutoff_t) + indexShift);
|
|
}
|
|
this.draggingLine.moved = indexShift !== 0 || priceShift !== 0;
|
|
const entry = this.levelSeries.get(level.id);
|
|
if (entry) entry.series.setData(this.seriesLineData(level));
|
|
this.renderAnchorHandles();
|
|
this.renderTrendlineProjections();
|
|
}
|
|
|
|
finishLineDrag(event) {
|
|
if (!this.draggingLine) return;
|
|
event.preventDefault();
|
|
const level = this.levels.find(value => value.id === this.draggingLine.id);
|
|
const moved = this.draggingLine.moved;
|
|
this.draggingLine = null;
|
|
if (moved && level && this.onLineChange) this.onLineChange({ ...level });
|
|
}
|
|
|
|
startAnchorDrag(event, anchor) {
|
|
event.preventDefault();
|
|
event.stopPropagation();
|
|
this.draggingAnchor = { id: this.selectedLineId, anchor };
|
|
event.currentTarget.setPointerCapture?.(event.pointerId);
|
|
}
|
|
|
|
moveAnchor(event) {
|
|
if (!this.draggingAnchor || !this.chartEl) return;
|
|
const level = this.levels.find(value => value.id === this.draggingAnchor.id);
|
|
if (!level || !this.bars.length) return;
|
|
const point = this.eventPoint(event);
|
|
if (!point || !this.withinPlot(point)) {
|
|
this.hideSnapDot();
|
|
return;
|
|
}
|
|
const snapped = this.snapPoint(point);
|
|
if (snapped.t == null || snapped.p == null) return;
|
|
const time = snapped.t;
|
|
const price = snapped.p;
|
|
if (this.snapToBars) this.showSnapDot(snapped, point);
|
|
const secondPrice = level.anchor_p + level.slope * (level.last_t - level.anchor_t);
|
|
if (this.draggingAnchor.anchor === 'start') {
|
|
if (time >= level.last_t) return;
|
|
level.anchor_t = time;
|
|
level.anchor_p = price;
|
|
level.slope = (secondPrice - price) / (level.last_t - time);
|
|
} else {
|
|
if (time <= level.anchor_t) return;
|
|
if (level.cutoff_t != null && time >= level.cutoff_t) return;
|
|
level.last_t = time;
|
|
level.slope = (price - level.anchor_p) / (time - level.anchor_t);
|
|
}
|
|
const entry = this.levelSeries.get(level.id);
|
|
if (entry) entry.series.setData(this.seriesLineData(level));
|
|
this.renderAnchorHandles();
|
|
this.renderTrendlineProjections();
|
|
}
|
|
|
|
finishAnchorDrag(event) {
|
|
if (!this.draggingAnchor) return;
|
|
event.preventDefault();
|
|
const level = this.levels.find(value => value.id === this.draggingAnchor.id);
|
|
this.draggingAnchor = null;
|
|
this.hideSnapDot();
|
|
if (level && this.onLineChange) this.onLineChange({ ...level });
|
|
}
|
|
|
|
showContextMenu(event) {
|
|
const level = this.levels.find(
|
|
value => value.id === this.selectedLineId && value.kind === 'manual' && !ConfluenceChart.isFlat(value),
|
|
);
|
|
if (!level || !this.bars.length) return;
|
|
event.preventDefault();
|
|
const point = this.eventPoint(event);
|
|
if (!point || !this.withinPlot(point) || point.t == null) return;
|
|
const cutoff = this.bars.reduce((nearest, bar) =>
|
|
Math.abs(bar.t - point.t) < Math.abs(nearest.t - point.t) ? bar : nearest
|
|
).t;
|
|
this.contextLineId = level.id;
|
|
this.contextCutoff = cutoff > level.last_t ? cutoff : null;
|
|
this.contextEndButton.hidden = this.contextCutoff == null;
|
|
this.contextMenu.hidden = false;
|
|
const plot = this.plotCanvas().getBoundingClientRect();
|
|
this.contextMenu.style.left = `${Math.max(4, Math.min(point.x, plot.width - 170))}px`;
|
|
this.contextMenu.style.top = `${Math.max(4, Math.min(point.y, plot.height - this.contextMenu.offsetHeight - 4))}px`;
|
|
}
|
|
|
|
hideContextMenu() {
|
|
if (this.contextMenu) this.contextMenu.hidden = true;
|
|
this.contextCutoff = null;
|
|
this.contextLineId = null;
|
|
}
|
|
|
|
dismissContextMenu() {
|
|
if (!this.contextMenu || this.contextMenu.hidden) return false;
|
|
this.hideContextMenu();
|
|
return true;
|
|
}
|
|
|
|
endSelectedLineHere() {
|
|
const level = this.levels.find(value => value.id === this.selectedLineId);
|
|
if (!level || this.contextCutoff == null) return;
|
|
level.cutoff_t = this.contextCutoff;
|
|
const entry = this.levelSeries.get(level.id);
|
|
if (entry) entry.series.setData(this.seriesLineData(level));
|
|
this.renderTrendlineProjections();
|
|
this.hideContextMenu();
|
|
if (this.onLineEnd) this.onLineEnd({ ...level });
|
|
}
|
|
|
|
// Tinted by the bar's own direction, muted so the candles stay the subject.
|
|
static toVolume(bar) {
|
|
return {
|
|
time: bar.t,
|
|
value: bar.v,
|
|
color: bar.c >= bar.o ? 'rgba(39,130,92,.38)' : 'rgba(189,69,69,.38)',
|
|
};
|
|
}
|
|
|
|
toCandle(bar) {
|
|
return { time: bar.t, open: bar.o, high: bar.h, low: bar.l, close: bar.c };
|
|
}
|
|
|
|
destroy() {
|
|
if (this.resizeObserver) this.resizeObserver.disconnect();
|
|
if (this.plotResizeObserver) this.plotResizeObserver.disconnect();
|
|
if (this.contextLabelFrame != null) cancelAnimationFrame(this.contextLabelFrame);
|
|
clearTimeout(this.lineFocusTimer);
|
|
for (const node of this.commentNodes.values()) clearTimeout(node.focusTimer);
|
|
if (this.chartEl && this.clickListener) this.chartEl.removeEventListener('click', this.clickListener);
|
|
if (this.chartEl && this.contextListener) this.chartEl.removeEventListener('contextmenu', this.contextListener);
|
|
if (this.anchorMoveListener) window.removeEventListener('pointermove', this.anchorMoveListener);
|
|
if (this.anchorUpListener) window.removeEventListener('pointerup', this.anchorUpListener);
|
|
if (this.lineMoveListener) window.removeEventListener('pointermove', this.lineMoveListener);
|
|
if (this.lineUpListener) window.removeEventListener('pointerup', this.lineUpListener);
|
|
if (this.chartEl && this.toolDownListener) this.chartEl.removeEventListener('pointerdown', this.toolDownListener);
|
|
if (this.toolMoveListener) window.removeEventListener('pointermove', this.toolMoveListener);
|
|
if (this.toolUpListener) window.removeEventListener('pointerup', this.toolUpListener);
|
|
if (this.chart) this.chart.remove();
|
|
}
|
|
}
|
|
|
|
ConfluenceChart.tfColors = {
|
|
'1m':'#82909f', '2m':'#8a92df', '5m':'#65b7cf', '15m':'#45c39b',
|
|
'30m':'#a8c85d', '1h':'#efb643', '1d':'#d96073',
|
|
};
|
|
|
|
// VWAP and the prior-day levels are both stamped 1d, so without their own
|
|
// colours they would be indistinguishable from the daily moving averages.
|
|
ConfluenceChart.kindColors = { vwap: '#b07ad6', horizontal: '#9fb0c4' };
|
|
|
|
ConfluenceChart.levelColor = level =>
|
|
level.color || ConfluenceChart.kindColors[level.kind] || ConfluenceChart.tfColors[level.tf];
|
|
|
|
window.ConfluenceChart = ConfluenceChart;
|