(() => { const mapElement = document.getElementById("ride-map"); const routeElement = document.getElementById("ride-route"); const profileElement = document.getElementById("ride-profile"); const canvas = document.getElementById("ride-profile-chart"); const hoverOutput = document.getElementById("ride-profile-hover"); if (!mapElement || !routeElement || !profileElement || !canvas || !hoverOutput) return; const colorProbe = document.createElement("span"); colorProbe.hidden = true; document.body.append(colorProbe); const resolveColor = (name) => { colorProbe.style.color = `var(${name})`; return getComputedStyle(colorProbe).color; }; const colors = { accent: resolveColor("--color-accent"), forest: resolveColor("--color-forest"), subtle: resolveColor("--color-subtle"), plotSurface: resolveColor("--color-plot-surface"), plotSurfaceOverlay: resolveColor("--color-plot-surface-overlay"), grid: resolveColor("--color-plot-grid"), accentFill: resolveColor("--color-accent-fill"), climbLabel: resolveColor("--color-climb-label"), crossing: resolveColor("--color-crossing"), crossingLabel: resolveColor("--color-crossing-label"), hoverLine: resolveColor("--color-hover-line"), climbRoute: resolveColor("--color-climb-route"), climbFocusFill: resolveColor("--color-climb-focus-fill"), }; colorProbe.remove(); const route = JSON.parse(routeElement.textContent); const profile = JSON.parse(profileElement.textContent); const map = L.map(mapElement); const tiles = L.tileLayer("https://tile.openstreetmap.org/{z}/{x}/{y}.png", { maxZoom: 19, attribution: '© OpenStreetMap contributors', }); tiles.addTo(map); const routeLayer = L.geoJSON(route, { style: { color: colors.accent, weight: 4, opacity: 0.9 }, }).addTo(map); const bounds = routeLayer.getBounds(); if (bounds.isValid()) { map.fitBounds(bounds, { padding: [24, 24], maxZoom: 15 }); } const points = profile.points || []; if (points.length === 0) return; const climbItems = [...document.querySelectorAll("[data-climb-item]")]; const previousClimbButton = document.querySelector("[data-climb-previous]"); const nextClimbButton = document.querySelector("[data-climb-next]"); const climbPosition = document.querySelector("[data-climb-position]"); const climbLayers = []; for (const climb of profile.climbs || []) { if (!Number.isInteger(climb.startIndex) || !Number.isInteger(climb.endIndex) || climb.startIndex < 0 || climb.endIndex >= points.length || climb.startIndex >= climb.endIndex) { climbLayers.push(null); continue; } const coordinates = points.slice(climb.startIndex, climb.endIndex + 1).map((point) => [point.latitude, point.longitude]); climbLayers.push(L.polyline(coordinates, { color: colors.climbRoute, weight: 7, opacity: 0.65, lineCap: "round", lineJoin: "round", interactive: false }).addTo(map)); } const routeCursor = L.circleMarker([points[0].latitude, points[0].longitude], { color: colors.forest, fillColor: colors.accent, fillOpacity: 0, opacity: 0, radius: 7, weight: 3, interactive: false, }).addTo(map); const context = canvas.getContext("2d"); if (!context) return; const state = { hoveredIndex: -1, focusedClimbIndex: 0, climbBounds: (profile.climbs || []).map((climb) => ({ startIndex: climb.startIndex, endIndex: climb.endIndex })), plot: null, width: 0, height: 0, }; const minDistance = points[0].distanceKm; const maxDistance = points[points.length - 1].distanceKm; let minElevation = points[0].elevationM; let maxElevation = points[0].elevationM; for (const point of points) { minElevation = Math.min(minElevation, point.elevationM); maxElevation = Math.max(maxElevation, point.elevationM); } const elevationPadding = Math.max((maxElevation - minElevation) * 0.1, 20); minElevation -= elevationPadding; maxElevation += elevationPadding; const formatDistance = (distance) => `${distance.toFixed(distance < 10 ? 1 : 0)} km`; const formatElevation = (elevation) => `${Math.round(elevation)} m`; const clamp = (value, min, max) => Math.max(min, Math.min(max, value)); const xForDistance = (distance) => { const span = Math.max(maxDistance - minDistance, 1); return state.plot.left + (distance - minDistance) / span * (state.plot.right - state.plot.left); }; const yForElevation = (elevation) => { const span = Math.max(maxElevation - minElevation, 1); return state.plot.bottom - (elevation - minElevation) / span * (state.plot.bottom - state.plot.top); }; const nearestPointIndex = (distance) => { let low = 0; let high = points.length - 1; while (low < high) { const middle = Math.floor((low + high) / 2); if (points[middle].distanceKm < distance) low = middle + 1; else high = middle; } if (low === 0) return low; const previous = points[low - 1]; return distance - previous.distanceKm < points[low].distanceKm - distance ? low - 1 : low; }; const nearestMapPointIndex = (latitude, longitude) => { let nearestIndex = 0; let nearestDistance = Infinity; for (let index = 0; index < points.length; index++) { const point = points[index]; const distance = L.latLng(point.latitude, point.longitude).distanceTo([latitude, longitude]); if (distance < nearestDistance) { nearestIndex = index; nearestDistance = distance; } } return nearestIndex; }; const boundaryForms = [...document.querySelectorAll("[data-official-climb-form]")]; let activeBoundary = null; const boundaryLabel = (index) => { const point = points[index]; return `${formatDistance(point.distanceKm)} · ${formatElevation(point.elevationM)}`; }; const categoryForScore = (score) => { if (score < 35) return "NO"; if (score < 80) return "Cat 4"; if (score < 180) return "Cat 3"; if (score < 250) return "Cat 2"; if (score < 600) return "Cat 1"; return "HC"; }; const elevationAtDistance = (index, distanceM) => { if (index + 1 >= points.length) return points[index].elevationM; const startDistanceM = points[index].distanceKm * 1000; const endDistanceM = points[index + 1].distanceKm * 1000; const fraction = (distanceM - startDistanceM) / (endDistanceM - startDistanceM); return points[index].elevationM + fraction * (points[index + 1].elevationM - points[index].elevationM); }; const cotacolForClimb = (startIndex, endIndex) => { const startDistanceM = points[startIndex].distanceKm * 1000; const lastDistanceM = points[endIndex].distanceKm * 1000; if (lastDistanceM <= startDistanceM) return 0; let score = 0; let pointIndex = startIndex; for (let segmentStartM = startDistanceM; segmentStartM < lastDistanceM; segmentStartM += 100) { const segmentEndM = Math.min(segmentStartM + 100, lastDistanceM); while (pointIndex < endIndex && points[pointIndex + 1].distanceKm * 1000 <= segmentStartM) pointIndex++; const startElevation = elevationAtDistance(pointIndex, segmentStartM); while (pointIndex < endIndex && points[pointIndex + 1].distanceKm * 1000 < segmentEndM) pointIndex++; const endElevation = elevationAtDistance(pointIndex, segmentEndM); const slope = (endElevation - startElevation) / (segmentEndM - segmentStartM); if (slope > 0) score += (segmentEndM - segmentStartM) / 1000 * (slope * 100) ** 2; } return score; }; const climbMetrics = (index) => { const bounds = state.climbBounds[index]; if (!bounds || !Number.isInteger(bounds.startIndex) || !Number.isInteger(bounds.endIndex) || bounds.startIndex < 0 || bounds.endIndex >= points.length || bounds.startIndex >= bounds.endIndex) return null; const start = points[bounds.startIndex]; const end = points[bounds.endIndex]; const distanceKm = end.distanceKm - start.distanceKm; const elevationGain = end.elevationM - start.elevationM; const slope = distanceKm > 0 ? elevationGain / (distanceKm * 10) : 0; const score = distanceKm > 0 ? Math.abs(elevationGain) * elevationGain / (distanceKm * 1000) * 10 : 0; return { start, end, distanceKm, elevationGain, slope, score, cotacol: cotacolForClimb(bounds.startIndex, bounds.endIndex), category: categoryForScore(score) }; }; const clearBoundarySelection = () => { activeBoundary = null; for (const form of boundaryForms) { for (const button of form.querySelectorAll("[data-boundary-button]")) button.classList.remove("active"); } }; const updateBoundaryPreview = (form) => { const preview = form.querySelector("[data-boundary-preview]"); const item = form.closest("[data-climb-item]"); const climbIndex = Number.parseInt(item.dataset.climbIndex, 10); const metrics = climbMetrics(climbIndex); if (!metrics) { preview.textContent = "Choose an end point after the start point."; return; } const summary = item.querySelector("[data-climb-summary]"); const metricsOutput = item.querySelector("[data-climb-metrics]"); summary.textContent = `${formatDistance(metrics.start.distanceKm)}–${formatDistance(metrics.end.distanceKm)}`; metricsOutput.textContent = `${metrics.category} · ${formatDistance(metrics.distanceKm)} at ${metrics.slope.toFixed(1)}% · Cotacol ${metrics.cotacol.toFixed(1)}`; preview.textContent = `Preview: ${formatDistance(metrics.distanceKm)} · ${metrics.elevationGain >= 0 ? "+" : ""}${formatElevation(metrics.elevationGain)} · ${metrics.slope.toFixed(1)}% · Cotacol ${metrics.cotacol.toFixed(1)}`; }; const updateClimbLayer = (index) => { const layer = climbLayers[index]; const metrics = climbMetrics(index); if (!layer) return; if (!metrics) { layer.setLatLngs([]); return; } const bounds = state.climbBounds[index]; layer.setLatLngs(points.slice(bounds.startIndex, bounds.endIndex + 1).map((point) => [point.latitude, point.longitude])); const active = index === state.focusedClimbIndex; layer.setStyle({ weight: active ? 9 : 7, opacity: active ? 1 : 0.65 }); }; const chooseBoundary = (index) => { if (!activeBoundary) return; const { form, target } = activeBoundary; const item = form.closest("[data-climb-item]"); const climbIndex = Number.parseInt(item.dataset.climbIndex, 10); const input = form.querySelector(`[data-boundary-input="${target}"]`); const output = form.querySelector(`[data-boundary-output="${target}"]`); input.value = index; output.textContent = boundaryLabel(index); state.climbBounds[climbIndex][`${target}Index`] = index; updateBoundaryPreview(form); updateClimbLayer(climbIndex); clearBoundarySelection(); showPoint(index); }; for (const form of boundaryForms) { const item = form.closest("[data-climb-item]"); const climbIndex = Number.parseInt(item.dataset.climbIndex, 10); state.climbBounds[climbIndex] = { startIndex: Number.parseInt(form.querySelector('[data-boundary-input="start"]').value, 10), endIndex: Number.parseInt(form.querySelector('[data-boundary-input="end"]').value, 10), }; updateBoundaryPreview(form); for (const button of form.querySelectorAll("[data-boundary-button]")) { button.addEventListener("click", () => { clearBoundarySelection(); activeBoundary = { form, target: button.dataset.boundaryButton, source: button.dataset.boundarySource }; button.classList.add("active"); const surface = activeBoundary.source === "map" ? "map" : "profile"; hoverOutput.textContent = `Click the ${surface} to select the ${activeBoundary.target} point.`; }); } } const draw = () => { const rect = canvas.getBoundingClientRect(); if (rect.width === 0 || rect.height === 0) return; const ratio = window.devicePixelRatio || 1; canvas.width = Math.floor(rect.width * ratio); canvas.height = Math.floor(rect.height * ratio); context.setTransform(ratio, 0, 0, ratio, 0, 0); state.width = rect.width; state.height = rect.height; state.plot = { left: 52, right: rect.width - 20, top: 24, bottom: rect.height - 34 }; const plot = state.plot; context.clearRect(0, 0, rect.width, rect.height); context.fillStyle = colors.plotSurface; context.fillRect(0, 0, rect.width, rect.height); context.font = "12px system-ui, sans-serif"; context.textBaseline = "middle"; for (let step = 0; step <= 4; step++) { const fraction = step / 4; const y = plot.top + fraction * (plot.bottom - plot.top); const elevation = maxElevation - fraction * (maxElevation - minElevation); context.strokeStyle = colors.grid; context.lineWidth = 1; context.beginPath(); context.moveTo(plot.left, y); context.lineTo(plot.right, y); context.stroke(); context.fillStyle = colors.subtle; context.textAlign = "right"; context.fillText(formatElevation(elevation), plot.left - 8, y); } for (let climbIndex = 0; climbIndex < (profile.climbs || []).length; climbIndex++) { const climb = profile.climbs[climbIndex]; const metrics = climbMetrics(climbIndex); if (!metrics) continue; const startX = clamp(xForDistance(metrics.start.distanceKm), plot.left, plot.right); const endX = clamp(xForDistance(metrics.end.distanceKm), plot.left, plot.right); context.fillStyle = climbIndex === state.focusedClimbIndex ? colors.climbFocusFill : colors.accentFill; context.fillRect(startX, plot.top, Math.max(endX - startX, 1), plot.bottom - plot.top); const label = climb.name || `${metrics.category} ${Math.round(metrics.score)}`; context.fillStyle = colors.climbLabel; context.textAlign = "center"; context.textBaseline = "top"; context.fillText(label, clamp((startX + endX) / 2, plot.left + 24, plot.right - 24), plot.top + 4); } for (const crossing of profile.crossings || []) { const x = xForDistance(crossing.distanceKm); context.strokeStyle = colors.crossing; context.lineWidth = 1; context.setLineDash([4, 3]); context.beginPath(); context.moveTo(x, plot.top); context.lineTo(x, plot.bottom); context.stroke(); context.setLineDash([]); } context.beginPath(); context.moveTo(xForDistance(points[0].distanceKm), plot.bottom); for (const point of points) context.lineTo(xForDistance(point.distanceKm), yForElevation(point.elevationM)); context.lineTo(xForDistance(points[points.length - 1].distanceKm), plot.bottom); context.closePath(); context.fillStyle = colors.accentFill; context.fill(); context.beginPath(); for (let i = 0; i < points.length; i++) { const point = points[i]; if (i === 0) context.moveTo(xForDistance(point.distanceKm), yForElevation(point.elevationM)); else context.lineTo(xForDistance(point.distanceKm), yForElevation(point.elevationM)); } context.strokeStyle = colors.accent; context.lineWidth = 2.5; context.stroke(); for (const crossing of profile.crossings || []) { const x = xForDistance(crossing.distanceKm); const label = `${crossing.name} ${Math.round(crossing.passElevationM)} m`; const labelWidth = context.measureText(label).width; const labelX = clamp(x, plot.left + labelWidth / 2 + 3, plot.right - labelWidth / 2 - 3); const labelY = plot.top - 6; context.fillStyle = colors.plotSurfaceOverlay; context.fillRect(labelX - labelWidth / 2 - 3, labelY - 15, labelWidth + 6, 16); context.fillStyle = colors.crossingLabel; context.textAlign = "center"; context.textBaseline = "bottom"; context.fillText(label, labelX, labelY); } context.fillStyle = colors.subtle; context.textAlign = "center"; context.textBaseline = "top"; for (let step = 0; step <= 4; step++) { const distance = minDistance + step / 4 * (maxDistance - minDistance); context.fillText(formatDistance(distance), xForDistance(distance), plot.bottom + 10); } if (state.hoveredIndex >= 0) { const point = points[state.hoveredIndex]; const x = xForDistance(point.distanceKm); const y = yForElevation(point.elevationM); context.strokeStyle = colors.hoverLine; context.lineWidth = 1; context.setLineDash([3, 3]); context.beginPath(); context.moveTo(x, plot.top); context.lineTo(x, plot.bottom); context.stroke(); context.setLineDash([]); context.fillStyle = colors.forest; context.beginPath(); context.arc(x, y, 5, 0, 2 * Math.PI); context.fill(); } }; const clearHover = () => { state.hoveredIndex = -1; routeCursor.setStyle({ opacity: 0, fillOpacity: 0 }); hoverOutput.textContent = "Hover or focus the profile to inspect elevation."; draw(); }; const showPoint = (index) => { state.hoveredIndex = clamp(index, 0, points.length - 1); const point = points[state.hoveredIndex]; routeCursor.setLatLng([point.latitude, point.longitude]); routeCursor.setStyle({ opacity: 1, fillOpacity: 0.9 }); hoverOutput.textContent = `${formatDistance(point.distanceKm)} · ${formatElevation(point.elevationM)}`; draw(); }; const zoomToClimb = (index) => { const climbBounds = state.climbBounds[index]; if (!climbBounds || !Number.isInteger(climbBounds.startIndex) || !Number.isInteger(climbBounds.endIndex)) return; const climbPoints = points.slice(climbBounds.startIndex, climbBounds.endIndex + 1); const mapBounds = L.latLngBounds(climbPoints.map((point) => [point.latitude, point.longitude])); if (mapBounds.isValid()) map.fitBounds(mapBounds, { padding: [32, 32], maxZoom: 15 }); }; const updateClimbFocus = (index, zoom) => { if (climbItems.length === 0) return; state.focusedClimbIndex = clamp(index, 0, climbItems.length - 1); for (let itemIndex = 0; itemIndex < climbItems.length; itemIndex++) { const active = itemIndex === state.focusedClimbIndex; climbItems[itemIndex].hidden = !active; climbItems[itemIndex].setAttribute("aria-hidden", String(!active)); if (climbLayers[itemIndex]) { updateClimbLayer(itemIndex); } } if (climbPosition) climbPosition.textContent = `Climb ${state.focusedClimbIndex + 1} of ${climbItems.length}`; if (previousClimbButton) previousClimbButton.disabled = state.focusedClimbIndex === 0; if (nextClimbButton) nextClimbButton.disabled = state.focusedClimbIndex === climbItems.length - 1; clearBoundarySelection(); draw(); if (zoom) zoomToClimb(state.focusedClimbIndex); }; if (previousClimbButton) previousClimbButton.addEventListener("click", () => updateClimbFocus(state.focusedClimbIndex - 1, true)); if (nextClimbButton) nextClimbButton.addEventListener("click", () => updateClimbFocus(state.focusedClimbIndex + 1, true)); canvas.addEventListener("pointermove", (event) => { if (!state.plot) return; const rect = canvas.getBoundingClientRect(); const x = event.clientX - rect.left; if (x < state.plot.left || x > state.plot.right) { clearHover(); return; } const distance = minDistance + (x - state.plot.left) / (state.plot.right - state.plot.left) * (maxDistance - minDistance); showPoint(nearestPointIndex(distance)); }); canvas.addEventListener("pointerleave", clearHover); canvas.addEventListener("pointercancel", clearHover); canvas.addEventListener("click", (event) => { if (!activeBoundary || activeBoundary.source !== "profile" || !state.plot) return; const rect = canvas.getBoundingClientRect(); const x = event.clientX - rect.left; if (x < state.plot.left || x > state.plot.right) return; const distance = minDistance + (x - state.plot.left) / (state.plot.right - state.plot.left) * (maxDistance - minDistance); chooseBoundary(nearestPointIndex(distance)); }); map.on("click", (event) => { if (!activeBoundary || activeBoundary.source !== "map") return; chooseBoundary(nearestMapPointIndex(event.latlng.lat, event.latlng.lng)); }); canvas.addEventListener("keydown", (event) => { if (event.key !== "ArrowLeft" && event.key !== "ArrowRight") return; event.preventDefault(); const direction = event.key === "ArrowRight" ? 1 : -1; const index = state.hoveredIndex < 0 ? (direction > 0 ? 0 : points.length - 1) : state.hoveredIndex + direction; showPoint(index); }); window.addEventListener("resize", draw); if (climbItems.length > 0) updateClimbFocus(0, false); else draw(); })();