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+66
-29
@@ -45,16 +45,19 @@ The client (`pagerite.js`) POSTs fire-and-forget pings to `/_a` with
|
||||
back), so the exit URL is not necessarily the last trail entry. Outbound
|
||||
links are stored by full URL so several links to the same domain remain
|
||||
distinct.
|
||||
- **Excluded**: back/forward (popstate) navigations, navigation involving
|
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the analytics page itself (`/_a`), and everything while the user has the
|
||||
editor open (`body.editing`). Admin noise, not visits.
|
||||
- **Excluded**: back/forward (popstate) navigations, navigating *to* the
|
||||
analytics page (`/_a` — its GET is untracked, and the server rejects it
|
||||
as a ping target anyway), and everything while the user has the editor
|
||||
open (`body.editing`). Admin noise, not visits. Navigating *away* from
|
||||
`/_a` does ping: the fetch-navigation already GET-ed the target page
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||||
without the preload header, and without the ping that GET would flush to
|
||||
the crawler list.
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||||
- **Admins**: when SSO is in use and the session is known to be an admin,
|
||||
the client still pings but adds `hide=1`. The server then records
|
||||
nothing — and if the same client session already had a visit from before
|
||||
logging in, that visit is removed from the JSON along with the counts
|
||||
recorded when it was created (site visit, entry view, entry transition).
|
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Views/transitions logged by later pings inside such a visit lack
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||||
per-event timestamps and are left as-is. With no auth proxy (dev/test)
|
||||
logging in, that visit is removed from the JSON along with every count
|
||||
it recorded — an in-memory per-visit log of count events makes full
|
||||
reversal possible. With no auth proxy (dev/test)
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||||
"admin" is everyone's state, so `hide` stays 0 and everything is recorded.
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||||
- The server validates `to`: internal paths must be valid slug paths
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("/" or `[a-z0-9_-]` segments), external ones are re-derived to the
|
||||
@@ -147,6 +150,8 @@ Each `Visit` record:
|
||||
does not append.
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||||
- `utm` — `utm_*` query parameters from the landing URL, as a dict.
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||||
- `read` — active reading time per path (seconds), keyed by path.
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||||
- `statuses` — HTTP status of the response when each path was first seen
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(200 or 404), keyed by path.
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||||
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Each `CrawlerHit` record:
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@@ -154,7 +159,9 @@ Each `CrawlerHit` record:
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- `entry` — page path requested,
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- `client` — 6-byte blake3 hash referencing `Analytics.clients`,
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||||
- `referer` — external https origin of the request, `""` for direct/none,
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||||
- `query` — raw query string of the request.
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- `query` — raw query string of the request,
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- `status` — HTTP status of the served response (200 for a real page, 404
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for a category placeholder or missing page).
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Each `AbuseHit` record:
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@@ -173,6 +180,10 @@ that triggered classification are lifted to the top, followed by other 404s
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and then document GETs from the abuser. Within each category paths are
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||||
sorted by count descending, then by their earliest hit.
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||||
|
||||
In the visitor and crawler tables, internal paths that returned a 404 status
|
||||
are shown in red and the link title includes the status code, so it is easy
|
||||
to tell misses from real pages at a glance.
|
||||
|
||||
## Aggregates
|
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|
||||
- `transitions`: time series of page transitions, sparse nested dict
|
||||
@@ -216,12 +227,11 @@ spans less than 24 hours, otherwise `week`.
|
||||
`AnalyticsView.vue` is no longer a full-screen overlay; the `body.analytics-open`
|
||||
page-chrome hiding and `#/analytics/<range>` hash routing have been removed.
|
||||
|
||||
Charts are SVG curves (Catmull-Rom over an edge-aware adaptive Gaussian —
|
||||
a change-point detector splits the series at traffic-level shifts, then
|
||||
each segment is smoothed with a bandwidth that ramps with a broad pilot
|
||||
estimate of the local rate: isolated events stay narrow (~0.4-unit sigma,
|
||||
peaking at ~1 event/unit), busy traffic widens to a 1-unit sigma. The raw
|
||||
series is drawn faint underneath). Values are
|
||||
Charts are SVG curves (Catmull-Rom over an edge-aware Gaussian — a
|
||||
change-point detector splits the series at traffic-level shifts, then each
|
||||
segment is smoothed independently with a fixed sigma chosen so N events in
|
||||
a single bucket peak at N events per unit. The raw series is drawn faint
|
||||
underneath). Values are
|
||||
**per-unit rates** — per hour on the week view (5-minute bucket counts × 12,
|
||||
plotted at native 5-minute resolution), per day on the month+ ranges — and
|
||||
the smoothing time scale follows the unit: the month+ sigmas are 24× the
|
||||
@@ -232,31 +242,58 @@ labeled intervals, minor lines at fifths when integral; the minimum y-axis
|
||||
range is 10 so tiny values such as a single visit are not stretched to a
|
||||
fractional scale).
|
||||
The week range is aligned to Monday 00:00 UTC and overlays up to 8 previous
|
||||
weeks in the same accent color at decreasing opacity (the current week is
|
||||
weeks in the muted color at decreasing opacity (the current week keeps the
|
||||
accent color and is
|
||||
truncated at the current bucket, never drawing fake zeroes for the future);
|
||||
its x labels are weekday names centered at midday UTC, without vertical grid
|
||||
a compact legend inside the top right of the visits chart marks the current
|
||||
ISO week in accent and the overlaid past weeks as "Week M" or "Week M–N" on
|
||||
a muted specimen. Its x labels are weekday names centered at midday UTC, without
|
||||
vertical grid
|
||||
lines (day boundaries would be misleading in the viewer's timezone). The
|
||||
month view labels days the same lineless way — day numbers at noon UTC,
|
||||
with the month name substituted for the 1st. Year is a rolling 365-day window ending at now, re-bucketed to daily points,
|
||||
with boundary lines at months/years. All uses the full data reach, but keeps
|
||||
at least the past 30 days so the chart never collapses to a tiny sliver when
|
||||
the site is young. Below the charts: a radial **transition map** (all pages from
|
||||
`/_api/pages` — front page at the center, each slug level on its own ring,
|
||||
siblings clockwise in navigation order from the top, radial gap equal to
|
||||
the arc spacing — opposite transition directions joined into organic
|
||||
with the month name substituted for the 1st. Month, year and all are
|
||||
rolling windows ending at now, aligned to UTC day boundaries at the start
|
||||
so the labels span the whole range; the bucket size follows the window —
|
||||
6 hours up to 31 days, daily beyond — with boundary lines at months/years
|
||||
on the longer ranges. All uses the full data reach, but keeps
|
||||
at least the past 30 days (identical to the month view when the site is
|
||||
younger than that, bucket size included) so the chart never collapses to a
|
||||
tiny sliver when the site is young. Below the charts: a **transition map** (all pages from
|
||||
`/_api/pages` — top-level menu items on a large-radius circular arc whose
|
||||
bottom point is the last item (each earlier item a bit higher), connected
|
||||
by a top lane labeled 🏠︎ beside the home pill (50% thicker than
|
||||
the branch lanes, its label font and guide offset scaled along), each item's
|
||||
subtree fanning out below it in menu order along a large-radius circular
|
||||
arc that leaves heading
|
||||
straight down and gradually bends right, index pages without views omitted
|
||||
and their children promoted in their place. The submenu structure is drawn
|
||||
as wide branch lanes: one per path prefix with at least two visible
|
||||
nodes, running behind the branch's node pills as circle arcs concentric
|
||||
with the fan (parent levels one radius step outward, so all lanes of a
|
||||
group share exactly one form), each labeled with its branch slug
|
||||
left-aligned just past the first pill and allowed to run along the lane to
|
||||
its end, disappearing under later pills when long — so the lanes reflect
|
||||
the path
|
||||
structure even where index pages are omitted — opposite transition
|
||||
directions joined into organic
|
||||
tapered connections whose middle width grows logarithmically with the
|
||||
count (a single count renders as a ~1 px line, uncapped), connections
|
||||
count (uncapped), connections
|
||||
carrying less than 1% of the total traffic
|
||||
pruned; beads are simulated one by one in JS (requestAnimationFrame) and
|
||||
flow along each edge, emitted at a rate linearly proportional
|
||||
pruned, as are those whose thin middle would render below ~0.8 px —
|
||||
fainter strands are invisible and only their wide end flares would show; beads are simulated one by one in JS (requestAnimationFrame) and
|
||||
flow along each edge, persisting across data reloads (emitters are keyed
|
||||
per edge direction and beads tracked by progress, so an unrelated count
|
||||
change never reshuffles them), emitted at a rate linearly proportional
|
||||
to the directional count with no in-flight limit, opposing directions
|
||||
offset onto parallel lanes. External sources show as a node row above the
|
||||
offset onto parallel lanes. External sources and exits whose connectors are
|
||||
all culled by the width threshold are dropped from their rows themselves
|
||||
(the site's own page nodes always stay, connected or not). External sources show as a node row above the
|
||||
map: each visit is attributed to `utm_campaign`, then `utm_source`, then the
|
||||
referer origin, then any other `utm_*` tag, so UTM-tagged visits are grouped
|
||||
under their campaign/source value rather than the referer domain. A UTM
|
||||
source node only links to its referer when every visit carrying that tag
|
||||
came from the same origin. External exits are small nodes fanned outwards
|
||||
from their source page), per-page view
|
||||
came from the same origin. External exits are full-size nodes in a matching
|
||||
row centered below the map, so the site itself stays in the middle), per-page view
|
||||
counts, the top transitions and the 50 most recent visit trails. Data is
|
||||
streamed live over `WebSocket /_api/ws/analytics`, which pushes the latest
|
||||
JSON snapshot on connect and again whenever the analytics file is updated
|
||||
|
||||
@@ -45,7 +45,7 @@ Pagerite is a single-user CMS/blog. This document records the initial high-level
|
||||
## Editing
|
||||
|
||||
- Editing happens **in place**, in two modes opened by two pens:
|
||||
- **Page mode** — the 🖊️ next to a page's heading (including 404s, which is how new pages start) opens a CodeMirror Markdown editor docked to the left of the article: the host sits inside `#content` (below the banner, never over the footer), the content shifts right and the sidebar hides while editing. Preview renders server-side per keystroke (no debouncing) straight into the visible article's heading and body.
|
||||
- **Page mode** — the 🖊️ next to a page's heading (including 404s, which is how new pages start) opens a CodeMirror Markdown editor docked to the left of the article: the panel is fixed to the viewport's left edge (its top tracks the banner's bottom until the banner scrolls away), the content shifts right and the sidebar hides while editing. Preview renders server-side per keystroke (no debouncing) straight into the visible article's heading and body.
|
||||
- **Site mode** — the 🖊️ on the banner opens a panel with the site **brand** (applied to the header live), a **theme** selector (swapping the theme stylesheet in place), **font** picks (heading/body/brand — stored as plain `:root` rows inside the custom CSS, referencing the base stylesheet's per-family font variables), a **site-wide custom CSS** field (injected into `<style id="pagerite-user">` in the live page head and swapped during fetch-navigation), the page's **banner design** selector (inherit / none / any design found on disk, inherited by children), the page's **banner HTML** field (supplementing the design, previewed into the real banner region, so you see exactly which banner you're editing) and the **structure tree**. Everything saves immediately as you edit — no save button, no edit mode.
|
||||
- Clicking a pen again closes the editor (without saving; a dirty preview reloads the page). The pens are `<button>`s wired up by `pagerite.js` — editing is an action, not a navigation. The editor's WebSocket **reconnects automatically** with local text and pending saves preserved. (All users are trusted authors for now; access control later with SSO.)
|
||||
- **CodeMirror 6** for Markdown editing (no WYSIWYG), title/published controls. Images can be pasted straight into the editor or chosen via a file input: they upload to the content store (`PUT /_api/files/...`) and insert `` at the cursor.
|
||||
|
||||
+1
-1
@@ -6,7 +6,7 @@ The Vue editor is a single tabbed `EditorShell.vue` mounted in a host div create
|
||||
|
||||
The shell hosts four kept-alive tabs (ordered site-wide first — site, structure — then, after a visual break, the per-page tabs — article, banner):
|
||||
|
||||
- `PageEditor.vue` — CodeMirror + server-rendered preview over WebSocket `/_api/ws/editor`, previewing into the visible article; editor scroll drives the article scroll — while any editor is open the window scroll is locked (`body.editing`), the panel exactly fills the available window height, and only `#main` scrolls; a format bar offers Markdown helpers — bold/italic/code/link/table/image upload, with Ctrl/Cmd-B/I/S bindings — for the hard-to-remember syntax. Edits content and title only, never the path.
|
||||
- `PageEditor.vue` — CodeMirror + server-rendered preview over WebSocket `/_api/ws/editor`, previewing into the visible article; editor and article scrolls are linked proportionally both ways, applied instantly (the window keeps scrolling normally while any editor is open — the panel is fixed to the viewport's left edge, its top tracking the banner's bottom edge until the banner scrolls away — and the panel scrolls internally); a format bar offers Markdown helpers — bold/italic/code/link/table/image upload, with Ctrl/Cmd-B/I/S bindings — for the hard-to-remember syntax. Edits content and title only, never the path.
|
||||
- `BannerEditor.vue` — per-page banner HTML + banner design selector, previewed into `#page-banner`.
|
||||
- `SiteEditor.vue` — site brand + optional custom brand HTML with image/video upload + theme selector + font picker + favicon upload — clicking the preview tile picks a new one — + site-wide custom CSS, CSS injected into `<head id="pagerite-user">`.
|
||||
- `StructureEditor.vue` — the vue-draggable structure tree with always-editable title/slug inputs per row.
|
||||
|
||||
@@ -5,7 +5,13 @@
|
||||
// visit/crawler tables. Read-only.
|
||||
// See docs/analytics.md for the data format.
|
||||
import { computed, onMounted, onUnmounted, ref, watch } from 'vue'
|
||||
import { RANGES } from './analytics/time.js'
|
||||
import {
|
||||
RANGES,
|
||||
rangeWindow,
|
||||
filterRecordsByRange,
|
||||
filterTransitionsByRange,
|
||||
filterViewsByRange,
|
||||
} from './analytics/time.js'
|
||||
import {
|
||||
calcReadStats,
|
||||
calcTotalViews,
|
||||
@@ -20,6 +26,11 @@ import TrailLink from './TrailLink.vue'
|
||||
import VisitorCell from './VisitorCell.vue'
|
||||
import TransitionGraph from './TransitionGraph.vue'
|
||||
import VisitorCharts from './VisitorCharts.vue'
|
||||
import { VIEW_W } from './analytics/chart.js'
|
||||
|
||||
// Same centering margin as the charts, so the totals row's left edge
|
||||
// aligns with the chart svg above the natural width.
|
||||
const CHART_MARGIN = `max(0px, calc(50% - ${VIEW_W / 2}px))`
|
||||
|
||||
const ABUSE_MAX_LINES = 5
|
||||
|
||||
@@ -90,8 +101,25 @@ onUnmounted(() => {
|
||||
}
|
||||
})
|
||||
|
||||
const visits = computed(() => data.value?.visits || [])
|
||||
const totalViews = computed(() => calcTotalViews(data.value?.views))
|
||||
const window = computed(() => rangeWindow(range.value))
|
||||
|
||||
// All non-chart stats follow the selected range; the charts keep their own
|
||||
// range-specific x windows (week overlays previous weeks aligned to Monday).
|
||||
const rangeData = computed(() => {
|
||||
if (!data.value) return null
|
||||
const { t0, t1 } = window.value
|
||||
return {
|
||||
...data.value,
|
||||
transitions: filterTransitionsByRange(data.value.transitions, t0, t1),
|
||||
views: filterViewsByRange(data.value.views, t0, t1),
|
||||
visits: filterRecordsByRange(data.value.visits, t0, t1),
|
||||
crawlers: filterRecordsByRange(data.value.crawlers, t0, t1),
|
||||
abuse: filterRecordsByRange(data.value.abuse, t0, t1),
|
||||
}
|
||||
})
|
||||
|
||||
const visits = computed(() => rangeData.value?.visits || [])
|
||||
const totalViews = computed(() => calcTotalViews(rangeData.value?.views))
|
||||
const readStats = computed(() => calcReadStats(visits.value))
|
||||
|
||||
// Keep the URL shareable when the range changes.
|
||||
@@ -103,9 +131,9 @@ watch(range, (r) => {
|
||||
|
||||
const clients = computed(() => data.value?.clients || {})
|
||||
const visitRows = computed(() => formatVisitRows(visits.value, clients.value, pageTree.value, now.value))
|
||||
const crawlers = computed(() => data.value?.crawlers || [])
|
||||
const crawlers = computed(() => rangeData.value?.crawlers || [])
|
||||
const crawlerRows = computed(() => formatCrawlerRows(crawlers.value, clients.value, pageTree.value, now.value))
|
||||
const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], clients.value, now.value))
|
||||
const abuseRows = computed(() => formatAbuseRows(rangeData.value?.abuse || [], clients.value, now.value))
|
||||
|
||||
</script>
|
||||
|
||||
@@ -125,15 +153,15 @@ const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], client
|
||||
<p v-if="error" class="error">⚠️ {{ error }}</p>
|
||||
<p v-else-if="!data" class="loading">loading…</p>
|
||||
<template v-else>
|
||||
<section class="totals">
|
||||
<section class="totals" :style="{ marginLeft: CHART_MARGIN }">
|
||||
<div><strong :title="String(visits.length)">{{ formatCount(visits.length) }}</strong> visits</div>
|
||||
<div><strong :title="String(totalViews)">{{ formatCount(totalViews) }}</strong> page views</div>
|
||||
<div><strong>{{ readStats.avgMinPerVisit }}</strong> min/visit</div>
|
||||
<div><strong>{{ readStats.avgArticleMedianMin }}</strong> min article read</div>
|
||||
<div><strong>{{ readStats.avgArticleMedianMin }}</strong> min/read</div>
|
||||
</section>
|
||||
|
||||
<VisitorCharts :data="data" :range="range" />
|
||||
<TransitionGraph :data="data" :range="range" :page-tree="pageTree" />
|
||||
<TransitionGraph :data="rangeData" :window="window" :page-tree="pageTree" />
|
||||
|
||||
<section>
|
||||
<h2>Recent visits</h2>
|
||||
@@ -205,7 +233,6 @@ const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], client
|
||||
</tbody>
|
||||
</table>
|
||||
</div>
|
||||
<p v-else class="empty">no crawler hits recorded yet</p>
|
||||
|
||||
<div v-if="abuseRows.length" class="visit-table-wrap">
|
||||
<table class="visit-table">
|
||||
@@ -265,6 +292,8 @@ const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], client
|
||||
width: 100%;
|
||||
/* Same 1.25rem side spacing as main's article padding. */
|
||||
padding: 1.5rem 1.25rem 4rem;
|
||||
/* Container for cqw-based shrink-to-fit (see .totals). */
|
||||
container-type: inline-size;
|
||||
}
|
||||
|
||||
.analytics-panel header {
|
||||
@@ -331,12 +360,15 @@ const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], client
|
||||
.analytics-view :deep(.muted) { color: var(--muted); }
|
||||
.analytics-view :deep(.small) { font-size: 0.75em; }
|
||||
|
||||
/* One line at any width: the gap shrinks first, then the font (the number
|
||||
scales along in em), both following the panel's container width. */
|
||||
.totals {
|
||||
display: flex;
|
||||
gap: 2rem;
|
||||
font-size: 1.1rem;
|
||||
gap: clamp(0.5rem, 3cqw, 2rem);
|
||||
font-size: clamp(0.6rem, 2.2cqw, 1.1rem);
|
||||
white-space: nowrap;
|
||||
}
|
||||
.totals strong { font-size: 1.5rem; }
|
||||
.totals strong { font-size: 1.36em; }
|
||||
|
||||
.visit-table-wrap {
|
||||
overflow-x: auto;
|
||||
@@ -392,6 +424,11 @@ const abuseRows = computed(() => formatAbuseRows(data.value?.abuse || [], client
|
||||
margin-left: 0.5rem;
|
||||
}
|
||||
|
||||
.analytics-view :deep(.trail-link.error),
|
||||
.analytics-view :deep(.trail-link.error:hover) {
|
||||
color: var(--error, #c00);
|
||||
}
|
||||
|
||||
.visit-table .utm-tag {
|
||||
display: inline-block;
|
||||
max-width: 100%;
|
||||
|
||||
+36
-12
@@ -4,9 +4,9 @@
|
||||
// (/_api/ws/editor). Docked left of the article on the page itself.
|
||||
// The socket connects when the editor is opened and reconnects with
|
||||
// exponential backoff after a failure; unsaved text and pending saves
|
||||
// survive a disconnect. Editor scroll drives the article scroll (while
|
||||
// editing the window scroll is locked and only #main scrolls), keeping the
|
||||
// rendered article at the cursor's position. Saving (💾 / Ctrl+S) is explicit
|
||||
// survive a disconnect. Editor and article (window) scrolls are linked
|
||||
// proportionally both ways (syncWindowToEditor / syncEditorToWindow).
|
||||
// Saving (💾 / Ctrl+S) is explicit
|
||||
// and refreshes the page regions in place — never a reload — so the editor
|
||||
// state (unsaved text included) also survives closing the shell; it is lost
|
||||
// only on a real page reload.
|
||||
@@ -307,19 +307,37 @@ function onEditorShown() {
|
||||
if (dirty.value) requestRender()
|
||||
}
|
||||
|
||||
function syncScroll() {
|
||||
// Editor scroll drives the article: keep the rendered page at the same
|
||||
// proportional position as the cursor area in the editor. While editing
|
||||
// the window scroll is locked and #main is the scrolling element.
|
||||
// Bidirectional proportional scroll sync between the CodeMirror scroller
|
||||
// and the window (the article's scroller, also while editing). Both
|
||||
// directions apply instantly (never smooth — a smooth window scroll feeds
|
||||
// its intermediate positions back into the editor and fights the user's
|
||||
// scrolling) and coalesce to one update per frame. Loops are broken two
|
||||
// ways: a one-frame driver flag, and a 1px tolerance so the scroll events
|
||||
// caused by our own writes are no-ops. When the panel's height changes
|
||||
// mid-scroll (its top tracks the banner), the page is the driver: the
|
||||
// editor is re-matched to the page's position, never vice versa.
|
||||
function syncWindowToEditor() {
|
||||
if (syncingScroll || !view) return
|
||||
const main = document.getElementById('main')
|
||||
if (!main) return
|
||||
syncingScroll = true
|
||||
requestAnimationFrame(() => {
|
||||
const scroller = view.scrollDOM
|
||||
const max = scroller.scrollHeight - scroller.clientHeight
|
||||
const pct = max > 0 ? scroller.scrollTop / max : 0
|
||||
main.scrollTop = pct * (main.scrollHeight - main.clientHeight)
|
||||
const y = pct * Math.max(0, document.documentElement.scrollHeight - innerHeight)
|
||||
if (Math.abs(scrollY - y) > 1) scrollTo({ top: y, behavior: 'instant' })
|
||||
syncingScroll = false
|
||||
})
|
||||
}
|
||||
|
||||
function syncEditorToWindow() {
|
||||
if (syncingScroll || !view) return
|
||||
syncingScroll = true
|
||||
requestAnimationFrame(() => {
|
||||
const scroller = view.scrollDOM
|
||||
const pageMax = Math.max(0, document.documentElement.scrollHeight - innerHeight)
|
||||
const pct = pageMax > 0 ? scrollY / pageMax : 0
|
||||
const top = pct * Math.max(0, scroller.scrollHeight - scroller.clientHeight)
|
||||
if (Math.abs(scroller.scrollTop - top) > 1) scroller.scrollTop = top
|
||||
syncingScroll = false
|
||||
})
|
||||
}
|
||||
@@ -379,7 +397,11 @@ onMounted(() => {
|
||||
}),
|
||||
parent: editorEl.value,
|
||||
})
|
||||
view.scrollDOM.addEventListener('scroll', syncScroll)
|
||||
view.scrollDOM.addEventListener('scroll', syncWindowToEditor)
|
||||
// Page → editor: window scroll (and resizes, e.g. the panel growing when
|
||||
// the banner scrolls away) re-match the editor to the page's position.
|
||||
addEventListener('scroll', syncEditorToWindow, { passive: true })
|
||||
addEventListener('resize', syncEditorToWindow)
|
||||
// Opening the editor means you want to write: start focused.
|
||||
view.focus()
|
||||
window.__pageritePageEditor = {
|
||||
@@ -399,6 +421,8 @@ onUnmounted(() => {
|
||||
}
|
||||
view?.destroy()
|
||||
delete window.__pageritePageEditor
|
||||
removeEventListener('scroll', syncEditorToWindow)
|
||||
removeEventListener('resize', syncEditorToWindow)
|
||||
removeEventListener('keydown', onKeydown)
|
||||
removeEventListener('pagerite:editor-shown', onEditorShown)
|
||||
})
|
||||
@@ -606,7 +630,7 @@ onUnmounted(() => {
|
||||
|
||||
/* CodeMirror sits inside a bordered box, like a dialog's input area, with
|
||||
a slight margin to the panel edges. Wheel scroll stays in the editor and
|
||||
drives the article (syncScroll) instead of double-scrolling. */
|
||||
drives the article (syncWindowToEditor) instead of double-scrolling. */
|
||||
.editor {
|
||||
flex: 1;
|
||||
min-width: 0;
|
||||
|
||||
@@ -1,18 +1,33 @@
|
||||
<script setup>
|
||||
import { formatCount } from './analytics/format.js'
|
||||
import { computed } from 'vue'
|
||||
import { formatCount, formatReadTime } from './analytics/format.js'
|
||||
|
||||
defineProps({
|
||||
const props = defineProps({
|
||||
step: { type: Object, required: true },
|
||||
count: { type: Number, default: 0 },
|
||||
})
|
||||
|
||||
defineEmits(['close'])
|
||||
|
||||
const hasError = computed(() => props.step.status >= 400)
|
||||
|
||||
const title = computed(() => {
|
||||
const parts = [props.step.title]
|
||||
if (props.step.readSeconds > 0) {
|
||||
parts.push(formatReadTime(props.step.readSeconds))
|
||||
}
|
||||
if (hasError.value) {
|
||||
parts.push(`${props.step.status}`)
|
||||
}
|
||||
return parts.filter(Boolean).join(' — ')
|
||||
})
|
||||
</script>
|
||||
|
||||
<template>
|
||||
<a class="trail-link"
|
||||
:class="{ error: hasError }"
|
||||
:href="step.path"
|
||||
:title="count > 1 ? `${step.title} (${count} hits)` : step.title"
|
||||
:title="title"
|
||||
:target="step.external ? '_blank' : undefined"
|
||||
:rel="step.external ? 'noopener' : undefined"
|
||||
@click="(e) => { if (!step.external) $emit('close') }">
|
||||
|
||||
+152
-128
@@ -1,165 +1,168 @@
|
||||
<script setup>
|
||||
/**
|
||||
* Radial transition map filtered to the selected time range.
|
||||
* Radial transition map for a pre-filtered time range.
|
||||
*
|
||||
* Transitions are stored per 5-minute bucket (from -> to -> bucket ->
|
||||
* count), so the graph sums the buckets falling inside the selected
|
||||
* range, exactly like the charts and per-page views do.
|
||||
* The parent filters transitions, views and visits to the selected range
|
||||
* before passing them in; `window` carries the absolute [t0, t1) window
|
||||
* so the visual scale can normalize against a one-week reference.
|
||||
*/
|
||||
import { computed, onBeforeUnmount, onMounted, ref, shallowRef, watch } from 'vue'
|
||||
import { rangeWindow, WEEK } from './analytics/time.js'
|
||||
import { computed, onBeforeUnmount, onMounted, shallowRef, watch } from 'vue'
|
||||
import { DAY, WEEK } from './analytics/time.js'
|
||||
import { formatCount } from './analytics/format.js'
|
||||
import {
|
||||
TNODE_W,
|
||||
TNODE_H,
|
||||
BEAD_R,
|
||||
BEAD_SPEED,
|
||||
buildTransitionGraph,
|
||||
filterTransitionsByRange,
|
||||
filterViewsByRange,
|
||||
filterVisitsByRange,
|
||||
} from './analytics/transitions.js'
|
||||
|
||||
const props = defineProps({
|
||||
data: { type: Object, default: null },
|
||||
range: { type: String, required: true },
|
||||
window: { type: Object, required: true },
|
||||
pageTree: { type: Array, default: null },
|
||||
})
|
||||
|
||||
const window = computed(() => rangeWindow(props.range))
|
||||
|
||||
const visualScale = computed(() => {
|
||||
const { t0, t1 } = window.value
|
||||
const { t0, t1 } = props.window
|
||||
if (t0 != null && t1 != null) return WEEK / (t1 - t0)
|
||||
// 'all': scale by the actual data span.
|
||||
// 'all': scale by the actual data span, but never less than the 30-day
|
||||
// minimum the plot enforces, so sparse young data is not over-amplified.
|
||||
const times = new Set()
|
||||
for (const buckets of Object.values(props.data?.views || {})) {
|
||||
for (const k of Object.keys(buckets)) times.add(Date.parse(k))
|
||||
}
|
||||
const arr = [...times]
|
||||
if (arr.length < 2) return 1
|
||||
return WEEK / (Math.max(...arr) - Math.min(...arr))
|
||||
const span = Math.max(...arr) - Math.min(...arr)
|
||||
return WEEK / Math.max(span, 30 * DAY)
|
||||
})
|
||||
|
||||
const filteredData = computed(() => {
|
||||
if (!props.data) return null
|
||||
const { t0, t1 } = window.value
|
||||
return {
|
||||
transitions: filterTransitionsByRange(props.data.transitions, t0, t1),
|
||||
views: filterViewsByRange(props.data.views, t0, t1),
|
||||
}
|
||||
})
|
||||
|
||||
const filteredVisits = computed(() =>
|
||||
filterVisitsByRange(props.data?.visits, window.value.t0, window.value.t1),
|
||||
)
|
||||
|
||||
const graph = computed(() =>
|
||||
filteredData.value
|
||||
? buildTransitionGraph(filteredData.value, props.pageTree, filteredVisits.value, visualScale.value)
|
||||
props.data
|
||||
? buildTransitionGraph(props.data, props.pageTree, props.data.visits || [], visualScale.value)
|
||||
: null,
|
||||
)
|
||||
|
||||
// Bead animation: every bead is simulated independently in JS. Each flow
|
||||
// (one per edge direction) emits a bead every `interval` seconds; beads
|
||||
// travel at BEAD_SPEED along the segment and are dropped at the end.
|
||||
// cross their segment in a constant TRAVERSAL_S seconds (speed relative
|
||||
// to span length) and are dropped at the end.
|
||||
// There is deliberately no cap on beads in flight.
|
||||
// Emitters persist across data reloads, keyed by flow.key: an unchanged
|
||||
// link keeps its emission phase and in-flight beads (tracked by progress,
|
||||
// not absolute time), so a count change elsewhere never reshuffles them.
|
||||
const beads = shallowRef([])
|
||||
let rafId = 0
|
||||
const emitters = new Map() // flow.key -> { flow, interval, next, alive }
|
||||
const live = [] // { e, p } — beads in flight, p = progress 0..1
|
||||
let lastTick = 0
|
||||
|
||||
const MAX_BEAD_RATE = 120 // upper bound on total beads per second
|
||||
const TRAVERSAL_S = 1.5 // seconds to cross any segment, end to end
|
||||
|
||||
const startBeads = (flows) => {
|
||||
cancelAnimationFrame(rafId)
|
||||
beads.value = []
|
||||
if (!flows?.length) return
|
||||
if (matchMedia('(prefers-reduced-motion: reduce)').matches) return
|
||||
|
||||
const syncBeads = (flows) => {
|
||||
const reduced = matchMedia('(prefers-reduced-motion: reduce)').matches
|
||||
if (!flows?.length || reduced) {
|
||||
emitters.clear()
|
||||
live.length = 0
|
||||
beads.value = []
|
||||
return
|
||||
}
|
||||
// Cap the total bead emission rate so a busy range cannot spawn enough
|
||||
// beads to kill the page. Existing per-range time scaling is preserved;
|
||||
// this is only a proportional emergency throttle when the limit is hit.
|
||||
const totalRate = flows.reduce((s, f) => s + 1 / f.interval, 0)
|
||||
const scale = totalRate > MAX_BEAD_RATE ? MAX_BEAD_RATE / totalRate : 1
|
||||
|
||||
const live = [] // { flow, t0 } — one entry per bead in flight
|
||||
const now = performance.now()
|
||||
const emitters = flows.map((flow) => {
|
||||
const seen = new Set()
|
||||
for (const flow of flows) {
|
||||
seen.add(flow.key)
|
||||
const interval = (flow.interval / scale) * 1000
|
||||
// Pre-fill the traversal with evenly spaced beads (random phase), so
|
||||
// the flow appears already running instead of starting empty.
|
||||
const e = emitters.get(flow.key)
|
||||
if (e) {
|
||||
e.flow = flow // pick up new geometry/rate, keep the phase
|
||||
e.interval = interval
|
||||
continue
|
||||
}
|
||||
// New emitter: pre-fill the traversal with evenly spaced beads (random
|
||||
// phase), so the flow appears already running instead of empty.
|
||||
const phase = Math.random() * interval
|
||||
for (let t = now - (flow.len / BEAD_SPEED) * 1000 + phase; t <= now; t += interval) {
|
||||
live.push({ flow, t0: t })
|
||||
const dp = interval / 1000 / TRAVERSAL_S
|
||||
const ne = { flow, interval, next: now + phase, alive: true }
|
||||
for (let p = 1 - phase / 1000 / TRAVERSAL_S; p > 0; p -= dp) {
|
||||
live.push({ e: ne, p })
|
||||
}
|
||||
return { flow, interval, next: now + phase }
|
||||
})
|
||||
|
||||
const tick = (t) => {
|
||||
for (const e of emitters) {
|
||||
while (e.next <= t) {
|
||||
live.push({ flow: e.flow, t0: e.next })
|
||||
e.next += e.interval
|
||||
}
|
||||
}
|
||||
const out = []
|
||||
for (let i = live.length - 1; i >= 0; i--) {
|
||||
const b = live[i]
|
||||
const p = ((t - b.t0) / 1000) * BEAD_SPEED / b.flow.len
|
||||
if (p >= 1) {
|
||||
live.splice(i, 1)
|
||||
continue
|
||||
}
|
||||
out.push({
|
||||
x: b.flow.x1 + (b.flow.x2 - b.flow.x1) * p,
|
||||
y: b.flow.y1 + (b.flow.y2 - b.flow.y1) * p,
|
||||
})
|
||||
}
|
||||
beads.value = out
|
||||
rafId = requestAnimationFrame(tick)
|
||||
emitters.set(flow.key, ne)
|
||||
}
|
||||
for (const [key, e] of emitters) {
|
||||
if (!seen.has(key)) {
|
||||
e.alive = false
|
||||
emitters.delete(key)
|
||||
}
|
||||
}
|
||||
for (let i = live.length - 1; i >= 0; i--) {
|
||||
if (!live[i].e.alive) live.splice(i, 1)
|
||||
}
|
||||
}
|
||||
|
||||
const tick = (t) => {
|
||||
const dt = lastTick ? (t - lastTick) / 1000 : 0
|
||||
lastTick = t
|
||||
for (const e of emitters.values()) {
|
||||
while (e.next <= t) {
|
||||
live.push({ e, p: 0 })
|
||||
e.next += e.interval
|
||||
}
|
||||
}
|
||||
const out = []
|
||||
for (let i = live.length - 1; i >= 0; i--) {
|
||||
const b = live[i]
|
||||
b.p += dt / TRAVERSAL_S
|
||||
if (b.p >= 1) {
|
||||
live.splice(i, 1)
|
||||
continue
|
||||
}
|
||||
const f = b.e.flow
|
||||
out.push({ x: f.x1 + (f.x2 - f.x1) * b.p, y: f.y1 + (f.y2 - f.y1) * b.p })
|
||||
}
|
||||
beads.value = out
|
||||
rafId = requestAnimationFrame(tick)
|
||||
}
|
||||
|
||||
watch(() => graph.value?.flows, startBeads, { immediate: true })
|
||||
watch(() => graph.value?.flows, syncBeads, { immediate: true })
|
||||
onMounted(() => {
|
||||
if (!matchMedia('(prefers-reduced-motion: reduce)').matches) {
|
||||
rafId = requestAnimationFrame(tick)
|
||||
}
|
||||
})
|
||||
onBeforeUnmount(() => cancelAnimationFrame(rafId))
|
||||
|
||||
// Text in the graph must render at a constant screen size regardless of
|
||||
// how far the enlarged graph's viewBox is scaled down to fit the panel:
|
||||
// measure the unit→pixel ratio and expose it as --u on the svg, which the
|
||||
// font-size rules divide by. Falls back to 1 (raw units) until measured.
|
||||
const svgEl = ref(null)
|
||||
const pxPerUnit = ref(1)
|
||||
let resizeObs = null
|
||||
// The svg never renders larger than its natural size (1 viewBox unit = 1
|
||||
// px, max-width below): the layout geometry is designed in pixel-like
|
||||
// units, and upscaling would blow up the pills around their text. Narrow
|
||||
// panels scale the graph down to fit (width: 100%), text along with it.
|
||||
|
||||
function updateScale() {
|
||||
const el = svgEl.value
|
||||
if (el && el.viewBox.baseVal.width) {
|
||||
pxPerUnit.value = el.clientWidth / el.viewBox.baseVal.width
|
||||
}
|
||||
}
|
||||
// Pill text is not truncated: text is clipped at the pill's rounded border
|
||||
// (clipPath per node, inset a few units for padding). Captions center when
|
||||
// they fit; overlong ones anchor left so their beginning (not their
|
||||
// middle) survives the clip. Width estimate: ~0.52 em per glyph.
|
||||
const fitsPill = (label, fontPx = 19) => label.length * 0.52 * fontPx <= TNODE_W - 16
|
||||
|
||||
onMounted(() => {
|
||||
resizeObs = new ResizeObserver(updateScale)
|
||||
})
|
||||
watch(svgEl, (el) => {
|
||||
resizeObs?.disconnect()
|
||||
if (el) resizeObs?.observe(el)
|
||||
})
|
||||
watch(() => graph.value?.bounds, updateScale)
|
||||
onBeforeUnmount(() => resizeObs?.disconnect())
|
||||
|
||||
// Font size (px) that fits a label inside the pill width at the current
|
||||
// zoom: ~0.52 em average glyph width, 12 px padding per side, capped.
|
||||
const fitPx = (label) =>
|
||||
Math.min(15, (TNODE_W * pxPerUnit.value - 24) / (0.52 * Math.max(label.length, 1)))
|
||||
const countLabel = (n) =>
|
||||
n.readMin ? `${formatCount(n.views)}×${n.readMin}m` : formatCount(n.views)
|
||||
</script>
|
||||
|
||||
<template>
|
||||
<section v-if="graph">
|
||||
<svg ref="svgEl" class="tmap" :style="{ '--u': pxPerUnit }" :viewBox="`${graph.bounds.x0} ${graph.bounds.y0} ${graph.bounds.x1 - graph.bounds.x0} ${graph.bounds.y1 - graph.bounds.y0}`"
|
||||
<svg class="tmap" :style="{ maxWidth: `${graph.bounds.x1 - graph.bounds.x0}px` }" :viewBox="`${graph.bounds.x0} ${graph.bounds.y0} ${graph.bounds.x1 - graph.bounds.x0} ${graph.bounds.y1 - graph.bounds.y0}`"
|
||||
role="img" aria-label="map of transitions between pages">
|
||||
<path v-for="(a, i) in graph.arcs" :key="'a' + i"
|
||||
:d="a.d" class="tarc" />
|
||||
:id="`tarc${i}`" :d="a.d" :class="['tarc', a.top && 'tarc-top']" />
|
||||
<template v-for="(a, i) in graph.arcs" :key="'t' + i">
|
||||
<path v-if="a.ld" :id="`tarcl${i}`" :d="a.ld" fill="none" stroke="none" />
|
||||
<text v-if="a.ld" class="tarclabel" :class="{ 'tarclabel-top': a.top }"><textPath :href="`#tarcl${i}`" startOffset="0">{{ a.label }}</textPath></text>
|
||||
</template>
|
||||
<path v-for="(e, i) in graph.edges" :key="'e' + i"
|
||||
:d="e.d" :class="['tconn', e.external && 'tconn-exit']">
|
||||
<title>{{ e.title }}</title>
|
||||
@@ -167,35 +170,44 @@ const fitPx = (label) =>
|
||||
<circle v-for="(b, i) in beads" :key="'b' + i"
|
||||
:cx="b.x" :cy="b.y" :r="BEAD_R" class="tbead" />
|
||||
<g v-for="(x, i) in graph.extNodes" :key="'x' + i">
|
||||
<clipPath :id="`xclip${i}`">
|
||||
<rect :x="x.x - TNODE_W/2 + 6" :y="x.y - TNODE_H/2" :width="TNODE_W - 12"
|
||||
:height="TNODE_H" :rx="TNODE_H/2 - 4" />
|
||||
</clipPath>
|
||||
<a v-if="x.href" :href="x.href" target="_blank" rel="noopener">
|
||||
<title>{{ x.path }}</title>
|
||||
<rect :x="x.x - TNODE_W/2" :y="x.y - TNODE_H/2" :width="TNODE_W" :height="TNODE_H" :rx="TNODE_H/2"
|
||||
:class="['txnode', x.kind === 'source' ? 'txnode-source' : 'txnode-exit']" />
|
||||
<text :x="x.x" :y="x.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle"
|
||||
:style="{ '--slug-px': `${fitPx(x.label)}px` }">{{ x.label }}</text>
|
||||
<text :x="x.x" :y="x.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">{{ formatCount(x.count) }}</text>
|
||||
<g :clip-path="`url(#xclip${i})`">
|
||||
<text :x="fitsPill(x.label) ? x.x : x.x - TNODE_W/2 + 8" :y="x.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle" :style="{ textAnchor: fitsPill(x.label) ? 'middle' : 'start' }">{{ x.label }}</text>
|
||||
<text :x="x.x" :y="x.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">{{ formatCount(x.count) }}</text>
|
||||
</g>
|
||||
</a>
|
||||
<g v-else>
|
||||
<title>{{ x.path }}</title>
|
||||
<rect :x="x.x - TNODE_W/2" :y="x.y - TNODE_H/2" :width="TNODE_W" :height="TNODE_H" :rx="TNODE_H/2"
|
||||
:class="['txnode', x.kind === 'source' ? 'txnode-source' : 'txnode-exit']" />
|
||||
<text :x="x.x" :y="x.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle"
|
||||
:style="{ '--slug-px': `${fitPx(x.label)}px` }">{{ x.label }}</text>
|
||||
<text :x="x.x" :y="x.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">{{ formatCount(x.count) }}</text>
|
||||
<g :clip-path="`url(#xclip${i})`">
|
||||
<text :x="fitsPill(x.label) ? x.x : x.x - TNODE_W/2 + 8" :y="x.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle" :style="{ textAnchor: fitsPill(x.label) ? 'middle' : 'start' }">{{ x.label }}</text>
|
||||
<text :x="x.x" :y="x.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">{{ formatCount(x.count) }}</text>
|
||||
</g>
|
||||
</g>
|
||||
</g>
|
||||
<g v-for="n in graph.nodes" :key="n.path">
|
||||
<g v-for="(n, i) in graph.nodes" :key="n.path">
|
||||
<clipPath :id="`nclip${i}`">
|
||||
<rect :x="n.x - TNODE_W/2 + 6" :y="n.y - TNODE_H/2" :width="TNODE_W - 12"
|
||||
:height="TNODE_H" :rx="TNODE_H/2 - 4" />
|
||||
</clipPath>
|
||||
<a :href="n.path">
|
||||
<title>{{ n.title }}</title>
|
||||
<rect :x="n.x - TNODE_W/2" :y="n.y - TNODE_H/2" :width="TNODE_W" :height="TNODE_H" :rx="TNODE_H/2" class="tnode" />
|
||||
<text :x="n.x" :y="n.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle"
|
||||
:style="{ '--slug-px': `${fitPx(n.label)}px` }">{{ n.label }}</text>
|
||||
<text :x="n.x" :y="n.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">
|
||||
{{ n.readMin ? `${formatCount(n.views)}×${n.readMin}m` : formatCount(n.views) }}
|
||||
</text>
|
||||
<g :clip-path="`url(#nclip${i})`">
|
||||
<text :x="fitsPill(n.label) ? n.x : n.x - TNODE_W/2 + 8" :y="n.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle" :style="{ textAnchor: fitsPill(n.label) ? 'middle' : 'start' }">{{ n.label }}</text>
|
||||
<text :x="n.x" :y="n.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">
|
||||
{{ countLabel(n) }}
|
||||
</text>
|
||||
</g>
|
||||
</a>
|
||||
<text v-if="n.crumb" :x="n.x" :y="n.y - TNODE_H/2 - 10"
|
||||
:class="['tnodepath', n.path === '/' && 'tnodepath-home']">{{ n.crumb }}</text>
|
||||
</g>
|
||||
</svg>
|
||||
</section>
|
||||
@@ -206,7 +218,9 @@ const fitPx = (label) =>
|
||||
.tmap {
|
||||
display: block;
|
||||
width: 100%;
|
||||
max-width: 100%;
|
||||
/* max-width is set inline to the natural content width (px = viewBox
|
||||
units), so wide panels never upscale the graph beyond 1:1. */
|
||||
margin: 0 auto;
|
||||
}
|
||||
.tmap .tconn {
|
||||
fill: var(--accent);
|
||||
@@ -226,36 +240,46 @@ const fitPx = (label) =>
|
||||
}
|
||||
.tmap .txnode-source { fill: var(--text); }
|
||||
.tmap .txnode-exit { fill: var(--text); }
|
||||
/* Branch lanes: one wide concentric arc per path prefix, running behind
|
||||
the node pills around the fan's circle center; parent levels sit one
|
||||
indent (radius step) outward. Each lane's label follows a short guide
|
||||
arc across the first inter-node gap (the part pills never cover). */
|
||||
.tmap .tarc {
|
||||
fill: none;
|
||||
stroke: var(--line);
|
||||
stroke-width: 1;
|
||||
stroke: var(--muted);
|
||||
stroke-width: 16;
|
||||
opacity: 0.25;
|
||||
}
|
||||
.tmap .tarc-top { stroke-width: 24; }
|
||||
/* Lane labels are left-aligned: each guide arc starts just past the source
|
||||
pill's edge, the earliest point where the text is visible. */
|
||||
.tmap .tarclabel {
|
||||
fill: var(--muted);
|
||||
font-size: 13px;
|
||||
text-anchor: start;
|
||||
}
|
||||
/* The top lane is 50% thicker; its 🏠︎ label scales along. */
|
||||
.tmap .tarclabel-top {
|
||||
font-size: 19.5px;
|
||||
}
|
||||
.tmap .tnode {
|
||||
fill: var(--accent);
|
||||
stroke: none;
|
||||
}
|
||||
/* Text renders at a constant screen size: --u (set from JS) is the
|
||||
viewBox-unit → pixel ratio of the rendered svg, so dividing by it makes
|
||||
the sizes independent of how far the graph is scaled down. */
|
||||
/* Text sizes are viewBox units: they shrink along with the graph on
|
||||
narrow panels. Overlong labels are clipped at the pill border. */
|
||||
.tmap .tnodeslug {
|
||||
fill: var(--bg, Canvas);
|
||||
font-size: calc(var(--slug-px, 15px) / var(--u, 1));
|
||||
text-anchor: middle;
|
||||
font-size: 19px;
|
||||
text-anchor: start;
|
||||
}
|
||||
.tmap a { cursor: pointer; }
|
||||
.tmap .tnodecount {
|
||||
fill: var(--bg, Canvas);
|
||||
opacity: 0.75;
|
||||
font-size: calc(13px / var(--u, 1));
|
||||
font-size: 15px;
|
||||
text-anchor: middle;
|
||||
}
|
||||
.tmap .tnodepath {
|
||||
fill: var(--muted);
|
||||
font-size: calc(11px / var(--u, 1));
|
||||
text-anchor: middle;
|
||||
}
|
||||
.tmap .tnodepath-home { font-size: calc(17px / var(--u, 1)); }
|
||||
|
||||
section { margin-top: 1.8rem; }
|
||||
</style>
|
||||
|
||||
+93
-108
@@ -4,10 +4,23 @@
|
||||
*/
|
||||
import { computed, onMounted, onUnmounted, ref } from 'vue'
|
||||
import { makeSeries } from './analytics/time.js'
|
||||
import { CHART_H, CHART_W, buildChart, fmtY } from './analytics/chart.js'
|
||||
import {
|
||||
CHART_H,
|
||||
CHART_W,
|
||||
MARGIN_B,
|
||||
MARGIN_L,
|
||||
VIEW_H,
|
||||
VIEW_W,
|
||||
buildChart,
|
||||
} from './analytics/chart.js'
|
||||
|
||||
const DAY_REFRESH_MS = 15000
|
||||
|
||||
// Keep the whole svg within page bounds: full width below the natural
|
||||
// size, centered with equal side margins above it (max() clamps the
|
||||
// centering margin to 0 at the breakpoint, so the rule is continuous).
|
||||
const CHART_MARGIN = `max(0px, calc(50% - ${VIEW_W / 2}px))`
|
||||
|
||||
const props = defineProps({
|
||||
data: { type: Object, default: null },
|
||||
range: { type: String, required: true },
|
||||
@@ -29,6 +42,17 @@ function freqLabel(unit) {
|
||||
return unit === '5min' ? '5 min' : unit === 'hour' ? 'hourly' : 'daily'
|
||||
}
|
||||
|
||||
/** Vertical axis caption: "visits / 5 min" on the day view, else "hourly visits" style. */
|
||||
function axisLabel(unit, ylabel) {
|
||||
return unit === '5min' ? `${ylabel} / 5 min` : `${freqLabel(unit)} ${ylabel}`
|
||||
}
|
||||
|
||||
/** Legend label for the overlaid past weeks: "Week M" or "Week M–N". */
|
||||
function pastLabel(series) {
|
||||
const oldest = series.at(-1).label.slice(5) // strip "Week "
|
||||
return series.length > 2 ? `Week ${oldest}–${series[1].label.slice(5)}` : `Week ${oldest}`
|
||||
}
|
||||
|
||||
const now = ref(Date.now())
|
||||
let refreshInterval = null
|
||||
onMounted(() => {
|
||||
@@ -44,107 +68,86 @@ const viewChart = computed(() => buildChart(viewSeries.value, now.value))
|
||||
|
||||
<template>
|
||||
<section v-for="c in [
|
||||
{ ylabel: 'visits', chart: visitChart, empty: 'no visits recorded yet' },
|
||||
{ ylabel: 'views', chart: viewChart, empty: 'no views recorded yet' },
|
||||
{ ylabel: 'visits', chart: visitChart, legend: true },
|
||||
{ ylabel: 'views', chart: viewChart, legend: false },
|
||||
]" :key="c.ylabel">
|
||||
<template v-if="c.chart">
|
||||
<div class="chartwrap">
|
||||
<div class="plot">
|
||||
<div class="plotarea">
|
||||
<span class="yaxis-label">{{ freqLabel(c.chart.unit) }} {{ c.ylabel }}</span>
|
||||
<svg class="chart" :viewBox="`0 0 ${CHART_W} ${CHART_H}`"
|
||||
preserveAspectRatio="none" role="img" :aria-label="`${freqLabel(c.chart.unit)} ${c.ylabel}`">
|
||||
<line v-for="g in c.chart.majors.slice(1)" :key="'j' + g.value"
|
||||
:x1="0" :x2="CHART_W" :y1="g.y" :y2="g.y" class="major" />
|
||||
<template v-for="t in c.chart.xticks" :key="'t' + t.x">
|
||||
<line v-if="t.line" :x1="t.x" :x2="t.x" :y1="0" :y2="CHART_H"
|
||||
class="minor vertical" />
|
||||
</template>
|
||||
<template v-if="c.chart.bars">
|
||||
<rect v-for="(b, i) in c.chart.bars" :key="'b' + i"
|
||||
:x="b.x" :y="b.y" :width="b.width" :height="b.height" class="bar" />
|
||||
<path :d="c.chart.skyline" class="line" />
|
||||
</template>
|
||||
<template v-else>
|
||||
<template v-for="(s, i) in c.chart.series" :key="i">
|
||||
<path v-if="s.area" :d="s.area" class="area" />
|
||||
<path :d="s.line" class="line" :style="{ opacity: s.opacity }" />
|
||||
</template>
|
||||
</template>
|
||||
<line :x1="0" :x2="CHART_W" :y1="CHART_H - 0.5" :y2="CHART_H - 0.5"
|
||||
class="axis" />
|
||||
</svg>
|
||||
<span v-for="g in c.chart.majors" :key="g.value" class="ylab"
|
||||
:style="{ bottom: g.bottom + '%' }">{{ fmtY(g.value) }}</span>
|
||||
</div>
|
||||
<div class="xlabels">
|
||||
<span v-for="t in c.chart.xticks" :key="t.x" class="xlab"
|
||||
:style="{ left: t.left + '%' }">{{ t.label }}</span>
|
||||
</div>
|
||||
</div>
|
||||
</div>
|
||||
<div v-if="c.chart.series && c.chart.series.length > 1" class="legend">
|
||||
<span v-for="(s, i) in c.chart.series" :key="i" :style="{ opacity: s.opacity }">
|
||||
● {{ s.label }}
|
||||
</span>
|
||||
</div>
|
||||
<svg class="chart" :viewBox="`${-MARGIN_L} 0 ${VIEW_W} ${VIEW_H}`"
|
||||
:style="{ maxWidth: `${VIEW_W}px`, marginLeft: CHART_MARGIN }"
|
||||
role="img" :aria-label="axisLabel(c.chart.unit, c.ylabel)">
|
||||
<line v-for="g in c.chart.majors.slice(1)" :key="'j' + g.value"
|
||||
:x1="0" :x2="CHART_W" :y1="g.y" :y2="g.y" class="major" />
|
||||
<template v-for="t in c.chart.xticks" :key="'t' + t.x">
|
||||
<line v-if="t.line" :x1="t.x" :x2="t.x" :y1="0" :y2="CHART_H"
|
||||
class="minor vertical" />
|
||||
</template>
|
||||
<template v-if="c.chart.bars">
|
||||
<rect v-for="(b, i) in c.chart.bars" :key="'b' + i"
|
||||
:x="b.x" :y="b.y" :width="b.width" :height="b.height" class="bar" />
|
||||
<path :d="c.chart.skyline" class="line" />
|
||||
</template>
|
||||
<template v-else>
|
||||
<!-- Oldest overlay weeks first so the current week paints on top. -->
|
||||
<template v-for="(s, i) in [...c.chart.series].reverse()" :key="i">
|
||||
<path v-if="s.area" :d="s.area" class="area" />
|
||||
<path :d="s.line" class="line" :class="{ past: s.past }"
|
||||
:style="{ opacity: s.opacity }" />
|
||||
</template>
|
||||
</template>
|
||||
<line :x1="0" :x2="CHART_W" :y1="CHART_H - 0.5" :y2="CHART_H - 0.5"
|
||||
class="axis" />
|
||||
<text v-for="g in c.chart.majors" :key="'y' + g.value" x="-5" :y="g.y"
|
||||
text-anchor="end" dominant-baseline="middle" class="ylab">{{ g.label }}</text>
|
||||
<text :x="-(MARGIN_L - 10)" :y="CHART_H / 2" text-anchor="middle"
|
||||
:transform="`rotate(-90 ${-(MARGIN_L - 10)} ${CHART_H / 2})`"
|
||||
class="yaxis-label">{{ axisLabel(c.chart.unit, c.ylabel) }}</text>
|
||||
<text v-for="t in c.chart.xticks" :key="'x' + t.x" :x="t.x" :y="CHART_H + MARGIN_B - 8"
|
||||
text-anchor="middle" class="xlab">{{ t.label }}</text>
|
||||
<!-- Week overlay legend, top right inside the plot: current week in
|
||||
accent, one muted specimen for the whole past range. -->
|
||||
<g v-if="c.legend && c.chart.series.length > 1">
|
||||
<line :x1="CHART_W - 98" :x2="CHART_W - 78" y1="10" y2="10" class="line" />
|
||||
<text :x="CHART_W - 72" y="10" dominant-baseline="middle"
|
||||
class="leglab">{{ c.chart.series[0].label }}</text>
|
||||
<line :x1="CHART_W - 98" :x2="CHART_W - 78" y1="25" y2="25"
|
||||
class="line past" style="opacity: 0.6" />
|
||||
<text :x="CHART_W - 72" y="25" dominant-baseline="middle"
|
||||
class="leglab">{{ pastLabel(c.chart.series) }}</text>
|
||||
</g>
|
||||
</svg>
|
||||
</template>
|
||||
<p v-else class="empty">{{ c.empty }}</p>
|
||||
</section>
|
||||
</template>
|
||||
|
||||
<style scoped>
|
||||
/* The svg is stretched (preserveAspectRatio none), so all text lives in
|
||||
HTML overlays positioned by the same fractions the geometry uses. */
|
||||
.chartwrap {
|
||||
padding-left: 2.8rem; /* y labels */
|
||||
}
|
||||
|
||||
.plot {
|
||||
display: flex;
|
||||
flex-direction: column;
|
||||
width: 100%;
|
||||
}
|
||||
|
||||
.plotarea {
|
||||
position: relative;
|
||||
height: 8rem;
|
||||
}
|
||||
|
||||
.xlabels {
|
||||
position: relative;
|
||||
height: 1.2rem;
|
||||
}
|
||||
|
||||
/* Each chart is a self-contained SVG: the viewBox includes the axis label
|
||||
margins, so nothing is positioned with HTML overlays. Never upscale past
|
||||
the natural size (1 viewBox unit = 1 px, max-width set inline) — that
|
||||
would blow up the constant-size text; smaller panels still scale the
|
||||
chart down to fit. The margin-left (set inline) centers the chart above
|
||||
its natural width; the svg always stays within page bounds.
|
||||
overflow: visible lets wider fonts extend past the viewBox instead of
|
||||
clipping. */
|
||||
.chart {
|
||||
display: block;
|
||||
width: 100%;
|
||||
height: 100%;
|
||||
height: auto;
|
||||
overflow: visible;
|
||||
}
|
||||
|
||||
.ylab {
|
||||
position: absolute;
|
||||
left: -2.8rem;
|
||||
width: 2.6rem;
|
||||
text-align: right;
|
||||
transform: translateY(50%);
|
||||
font-size: 0.75rem;
|
||||
color: var(--muted);
|
||||
.chart .ylab,
|
||||
.chart .xlab,
|
||||
.chart .yaxis-label,
|
||||
.chart .leglab {
|
||||
font-family: system-ui, sans-serif; /* theme fonts can be overly styled */
|
||||
font-size: 11px;
|
||||
fill: var(--muted);
|
||||
}
|
||||
|
||||
.chart .ylab {
|
||||
font-variant-numeric: tabular-nums;
|
||||
}
|
||||
|
||||
.xlab {
|
||||
position: absolute;
|
||||
top: 0.25rem;
|
||||
transform: translateX(-50%);
|
||||
font-size: 0.75rem;
|
||||
color: var(--muted);
|
||||
white-space: nowrap;
|
||||
}
|
||||
|
||||
.xlabels .xlab:first-child { transform: none; }
|
||||
.xlabels .xlab:last-child { transform: translateX(-100%); }
|
||||
|
||||
.chart .minor {
|
||||
stroke: var(--line);
|
||||
stroke-width: 1;
|
||||
@@ -189,28 +192,10 @@ const viewChart = computed(() => buildChart(viewSeries.value, now.value))
|
||||
stroke-linecap: round;
|
||||
}
|
||||
|
||||
.legend {
|
||||
display: flex;
|
||||
gap: 1.2rem;
|
||||
margin-top: 0.4rem;
|
||||
font-size: 0.75rem;
|
||||
color: var(--muted);
|
||||
/* Past overlay weeks contrast with the current week's accent color. */
|
||||
.chart .line.past {
|
||||
stroke: var(--muted);
|
||||
}
|
||||
|
||||
.legend span { color: var(--accent); }
|
||||
|
||||
.yaxis-label {
|
||||
position: absolute;
|
||||
top: 50%;
|
||||
left: -2.8rem;
|
||||
font-size: 0.75rem;
|
||||
color: var(--muted);
|
||||
writing-mode: vertical-rl;
|
||||
white-space: nowrap;
|
||||
transform: translateY(-50%) rotate(180deg);
|
||||
}
|
||||
|
||||
section { margin-top: 1.8rem; }
|
||||
|
||||
.empty { color: var(--muted); }
|
||||
</style>
|
||||
|
||||
+63
-110
@@ -1,16 +1,21 @@
|
||||
/**
|
||||
* Chart geometry, smoothing, and SVG path generation for analytics charts.
|
||||
*
|
||||
* Fixed 720x180 viewBox, stretched to the panel width; values are per-unit
|
||||
* rates (hour on the week view, day on month+).
|
||||
* Fixed 720x180 plot area inside a larger viewBox that also holds the axis
|
||||
* labels, so each chart SVG is self-contained; values are per-unit rates
|
||||
* (hour on the week view, day on month+).
|
||||
*/
|
||||
|
||||
import { DAY, HOUR, MIN5, WEEK, mondayUTC } from './time.js'
|
||||
import { formatCount } from './format.js'
|
||||
|
||||
export const CHART_W = 720
|
||||
export const CHART_H = 180
|
||||
export const CHART_W = 1000
|
||||
export const CHART_H = 150
|
||||
export const PAD_TOP = 14 // room above the highest point
|
||||
export const MARGIN_L = 40 // y tick labels + vertical axis label
|
||||
export const MARGIN_B = 24 // x tick labels
|
||||
export const VIEW_W = MARGIN_L + CHART_W + 8
|
||||
export const VIEW_H = CHART_H + MARGIN_B
|
||||
|
||||
/**
|
||||
* Y always starts at 0; the max is a multiple of a 1-2-5 major step with at
|
||||
@@ -37,24 +42,19 @@ export function yScale(maxValue) {
|
||||
}
|
||||
|
||||
/**
|
||||
* Edge-aware adaptive Gaussian smoothing. A change-point detector first
|
||||
* finds traffic-level shifts (two-unit totals compared on both sides of
|
||||
* each bucket; strong ratio + significance marks a candidate, and each run
|
||||
* of candidates keeps only its best-scoring bucket as an edge). Each
|
||||
* edge-delimited segment is then smoothed independently: a broad two-unit
|
||||
* pilot estimates the local traffic rate, which ramps the Gaussian sigma
|
||||
* from ~0.4 units (isolated events stay narrow, peaking at ~1 event/unit)
|
||||
* up to 1 unit (busy traffic gets full smoothing), and every bucket spreads
|
||||
* its count with its local sigma, clipped to the segment and renormalized
|
||||
* so total visitor count is preserved exactly. The unit is one hour on the
|
||||
* week view and one day on the month+ views, so the smoothing time scale
|
||||
* follows the range (month+ sigmas are 24x the hourly ones). The raw series
|
||||
* is drawn faintly behind the curve for reference. Operates on raw counts.
|
||||
* Edge-aware Gaussian smoothing with a fixed bandwidth. A change-point
|
||||
* detector first finds traffic-level shifts (two-unit totals compared on
|
||||
* both sides of each bucket; strong ratio + significance marks a candidate,
|
||||
* and each run of candidates keeps only its best-scoring bucket as an
|
||||
* edge). Each edge-delimited segment is then smoothed independently: every
|
||||
* bucket spreads its count with a fixed Gaussian sigma chosen so N events
|
||||
* in a single bucket peak at N events per unit, clipped to the segment and
|
||||
* renormalized so total visitor count is preserved exactly. The unit is
|
||||
* one hour on the week view and one day on the month+ views, so the
|
||||
* smoothing time scale follows the range. The raw series is drawn faintly
|
||||
* behind the curve for reference. Operates on raw counts.
|
||||
*/
|
||||
export function smooth(counts, binMinutes, unitMinutes, {
|
||||
minSigmaMinutes = unitMinutes / Math.sqrt(2 * Math.PI),
|
||||
maxSigmaMinutes = unitMinutes,
|
||||
pilotSigmaMinutes = 2 * unitMinutes,
|
||||
detectorWindowMinutes = 2 * unitMinutes,
|
||||
// Count thresholds are defined per hour and scale with the unit, so
|
||||
// "low traffic" means the same thing on hourly and daily views
|
||||
@@ -62,8 +62,6 @@ export function smooth(counts, binMinutes, unitMinutes, {
|
||||
highTrafficEvents = 10 * unitMinutes / 60,
|
||||
minRatio = 2.5,
|
||||
minSignificance = 4,
|
||||
sigmaRampStart = 5 * unitMinutes / 60,
|
||||
sigmaRampEnd = 20 * unitMinutes / 60,
|
||||
} = {}) {
|
||||
const n = counts.length
|
||||
if (!n) return counts
|
||||
@@ -105,68 +103,25 @@ export function smooth(counts, binMinutes, unitMinutes, {
|
||||
i = j
|
||||
}
|
||||
|
||||
const reflectIndex = (i, length) => {
|
||||
while (i < 0 || i >= length) {
|
||||
i = i < 0 ? -i - 1 : 2 * length - i - 1
|
||||
}
|
||||
return i
|
||||
}
|
||||
// Fixed sigma: N events in one bucket peak at N events per unit.
|
||||
// sigma_bins * sqrt(2*pi) = rate = unitMinutes / binMinutes.
|
||||
const sigmaBins = unitMinutes / (binMinutes * Math.sqrt(2 * Math.PI))
|
||||
const radius = Math.ceil(4 * sigmaBins)
|
||||
|
||||
const gaussianFilterReflect = (values, sigmaBins) => {
|
||||
const length = values.length
|
||||
const radius = Math.ceil(4 * sigmaBins)
|
||||
const kernel = new Float64Array(radius * 2 + 1)
|
||||
let sum = 0
|
||||
for (let k = -radius; k <= radius; k++) {
|
||||
const w = Math.exp(-0.5 * (k / sigmaBins) ** 2)
|
||||
kernel[k + radius] = w
|
||||
sum += w
|
||||
}
|
||||
for (let i = 0; i < kernel.length; i++) kernel[i] /= sum
|
||||
const out = new Float64Array(length)
|
||||
for (let i = 0; i < length; i++) {
|
||||
let value = 0
|
||||
for (let k = -radius; k <= radius; k++) {
|
||||
value += values[reflectIndex(i + k, length)] * kernel[k + radius]
|
||||
}
|
||||
out[i] = value
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
// Process each discontinuity-delimited regime independently so neither
|
||||
// the pilot nor the final Gaussian can see through a detected boundary.
|
||||
// Process each discontinuity-delimited regime independently so the
|
||||
// Gaussian cannot see through a detected boundary. Each input bin spreads
|
||||
// its count with the fixed sigma; the kernel is renormalized after
|
||||
// clipping to the segment, preserving total visitor count apart from
|
||||
// floating-point error.
|
||||
const bounds = [0, ...edges, n]
|
||||
const smoothed = new Float64Array(n)
|
||||
for (let b = 0; b < bounds.length - 1; b++) {
|
||||
const lo = bounds[b]
|
||||
const length = bounds[b + 1] - lo
|
||||
const segment = counts.slice(lo, lo + length)
|
||||
|
||||
// Broad pilot estimates only the generic local traffic level used for
|
||||
// choosing sigma; it is not the final displayed curve.
|
||||
const pilot = gaussianFilterReflect(segment, pilotSigmaMinutes / binMinutes)
|
||||
|
||||
// Keep isolated/sparse traffic at the minimum bandwidth through
|
||||
// sigmaRampStart events, then ramp toward maxSigmaMinutes (thresholds
|
||||
// are per-hour rates scaled to the unit: low traffic is low traffic
|
||||
// on every range).
|
||||
const sigmaMinutes = new Float64Array(length)
|
||||
for (let i = 0; i < length; i++) {
|
||||
const ratePerUnit = pilot[i] * unitMinutes / binMinutes
|
||||
let mix = (ratePerUnit - sigmaRampStart) / (sigmaRampEnd - sigmaRampStart)
|
||||
mix = Math.sqrt(Math.max(0, Math.min(1, mix)))
|
||||
sigmaMinutes[i] = minSigmaMinutes + mix * (maxSigmaMinutes - minSigmaMinutes)
|
||||
}
|
||||
|
||||
// Each input bin spreads its own count using its local sigma. The
|
||||
// per-bin kernel is renormalized after clipping to the segment,
|
||||
// preserving total visitor count apart from floating-point error.
|
||||
for (let j = 0; j < length; j++) {
|
||||
const count = segment[j]
|
||||
if (!count) continue
|
||||
const sigmaBins = sigmaMinutes[j] / binMinutes
|
||||
const radius = Math.ceil(4 * sigmaBins)
|
||||
const start = Math.max(0, j - radius)
|
||||
const end = Math.min(length, j + radius + 1)
|
||||
let weightSum = 0
|
||||
@@ -201,7 +156,7 @@ export function spline(pts) {
|
||||
const c1y = clampY(p1.y + (p2.y - p0.y) / 6)
|
||||
const c2y = clampY(p2.y - (p3.y - p1.y) / 6)
|
||||
d += `C${p1.x + (p2.x - p0.x) / 6},${c1y} `
|
||||
+ `${p2.x - (p3.x - p1.x) / 6},${c2y} ${p2.x},${p2.y}`
|
||||
+ `${p2.x - (p3.x - p1.x) / 6},${c2y} ${p2.x},${p2.y}`
|
||||
}
|
||||
return d
|
||||
}
|
||||
@@ -240,7 +195,7 @@ export function buildChart(input, now = Date.now()) {
|
||||
const nMajor = Math.round(max / step)
|
||||
for (let k = 0; k <= nMajor; k++) {
|
||||
const v = k * step
|
||||
majors.push({ value: v, y: y(v), bottom: (1 - PAD_TOP / CHART_H) * (v / max) * 100 })
|
||||
majors.push({ value: v, y: y(v), label: fmtY(v) })
|
||||
}
|
||||
if (minor) {
|
||||
for (let v = minor; v < max; v += minor) {
|
||||
@@ -254,37 +209,37 @@ export function buildChart(input, now = Date.now()) {
|
||||
// ranges: boundary lines at Mondays / months / years.
|
||||
const isWeek = t1 - t0 === WEEK
|
||||
const isMonth = !isWeek && t1 - t0 <= 31 * DAY
|
||||
const xticks = isWeek
|
||||
? Array.from({ length: 7 }, (_, d) => {
|
||||
const t = t0 + d * DAY + 12 * HOUR
|
||||
return {
|
||||
x: x(t), left: ((t - t0) / (t1 - t0)) * 100,
|
||||
label: new Date(t).toLocaleDateString(undefined, {
|
||||
weekday: 'short', timeZone: 'UTC',
|
||||
}),
|
||||
line: false,
|
||||
}
|
||||
let xticks
|
||||
if (isWeek) {
|
||||
xticks = Array.from({ length: 7 }, (_, d) => {
|
||||
const t = t0 + d * DAY + 12 * HOUR
|
||||
return {
|
||||
x: x(t),
|
||||
label: new Date(t).toLocaleDateString(undefined, {
|
||||
weekday: 'short', timeZone: 'UTC',
|
||||
}),
|
||||
line: false,
|
||||
}
|
||||
})
|
||||
} else if (isMonth) {
|
||||
// t0 is day-aligned; label every day whose noon falls inside the range.
|
||||
xticks = []
|
||||
for (let day = t0; day + 12 * HOUR < t1; day += DAY) {
|
||||
const date = new Date(day)
|
||||
const t = day + 12 * HOUR
|
||||
xticks.push({
|
||||
x: x(t),
|
||||
label: date.getUTCDate() === 1
|
||||
? date.toLocaleDateString(undefined, { month: 'short', timeZone: 'UTC' })
|
||||
: String(date.getUTCDate()),
|
||||
line: false,
|
||||
})
|
||||
: isMonth
|
||||
? Array.from(
|
||||
{ length: Math.floor((t1 - Math.ceil(t0 / DAY) * DAY) / DAY) },
|
||||
(_, d) => {
|
||||
const day = Math.ceil(t0 / DAY) * DAY + d * DAY
|
||||
const date = new Date(day)
|
||||
const t = day + 12 * HOUR
|
||||
return {
|
||||
x: x(t), left: ((t - t0) / (t1 - t0)) * 100,
|
||||
label: date.getUTCDate() === 1
|
||||
? date.toLocaleDateString(undefined, { month: 'short', timeZone: 'UTC' })
|
||||
: String(date.getUTCDate()),
|
||||
line: false,
|
||||
}
|
||||
},
|
||||
)
|
||||
: xticksFor(t0, t1).map((t) => ({
|
||||
x: x(t), left: ((t - t0) / (t1 - t0)) * 100,
|
||||
label: fmtTick(t, t1 - t0), line: true,
|
||||
}))
|
||||
}
|
||||
} else {
|
||||
xticks = xticksFor(t0, t1).map((t) => ({
|
||||
x: x(t), label: fmtTick(t, t1 - t0), line: true,
|
||||
}))
|
||||
}
|
||||
return { max, majors, minors, series: drawn, xticks, unit }
|
||||
}
|
||||
|
||||
@@ -347,7 +302,7 @@ export function buildDayChart(input, now = Date.now()) {
|
||||
const nMajor = Math.round(max / step)
|
||||
for (let k = 0; k <= nMajor; k++) {
|
||||
const v = k * step
|
||||
majors.push({ value: v, y: y(v), bottom: (1 - PAD_TOP / CHART_H) * (v / max) * 100 })
|
||||
majors.push({ value: v, y: y(v), label: fmtY(v) })
|
||||
}
|
||||
if (minor) {
|
||||
for (let v = minor; v < max; v += minor) {
|
||||
@@ -363,12 +318,10 @@ export function buildDayChart(input, now = Date.now()) {
|
||||
const d = new Date(t)
|
||||
xticks.push({
|
||||
x: ((t - t0) / (t1 - t0)) * CHART_W,
|
||||
left: ((t - t0) / (t1 - t0)) * 100,
|
||||
label: `${String(d.getUTCHours()).padStart(2, '0')}:00`,
|
||||
line: false,
|
||||
})
|
||||
}
|
||||
|
||||
return { bars, skyline: skyline.trim(), max, majors, minors, xticks, unit: '5min', series: [] }
|
||||
}
|
||||
|
||||
@@ -386,7 +339,7 @@ export function xticksFor(t0, t1) {
|
||||
if (span <= 4 * 365 * DAY) {
|
||||
const d = new Date(t0)
|
||||
let t = Date.UTC(d.getUTCFullYear(), d.getUTCMonth() + 1, 1)
|
||||
for (; t <= t1; ) {
|
||||
for (; t <= t1;) {
|
||||
ticks.push(t)
|
||||
const m = new Date(t)
|
||||
t = Date.UTC(m.getUTCFullYear(), m.getUTCMonth() + 1, 1)
|
||||
|
||||
@@ -240,6 +240,14 @@ export function formatWhenIso(ts) {
|
||||
return `${new Date(ts).toISOString().split('.')[0]}Z`
|
||||
}
|
||||
|
||||
/**
|
||||
* Compact read time for tooltips: "50s" under a minute, "1m23s" otherwise.
|
||||
*/
|
||||
export function formatReadTime(seconds) {
|
||||
if (seconds < 60) return `${seconds}s`
|
||||
return `${Math.floor(seconds / 60)}m${seconds % 60}s`
|
||||
}
|
||||
|
||||
/**
|
||||
* Compact visitor counts: plain below 1k, then 1.2k / 10k / 1.2M.
|
||||
* Truncated, not rounded.
|
||||
@@ -359,13 +367,16 @@ export function formatCrawlerRows(crawlers, clients, pageTree, now = Date.now())
|
||||
const start = new Date(c.start).getTime()
|
||||
if (start > g.lastStart) g.lastStart = start
|
||||
if (c.entry?.startsWith('/')) {
|
||||
g.pages.set(c.entry, (g.pages.get(c.entry) || 0) + 1)
|
||||
const existing = g.pages.get(c.entry) || { count: 0, status: c.status || 200 }
|
||||
existing.count += 1
|
||||
if (c.status != null) existing.status = c.status
|
||||
g.pages.set(c.entry, existing)
|
||||
}
|
||||
groups.set(c.client, g)
|
||||
}
|
||||
const totalHits = (g) => {
|
||||
let n = 0
|
||||
for (const c of g.pages.values()) n += c
|
||||
for (const p of g.pages.values()) n += p.count
|
||||
return n
|
||||
}
|
||||
return [...groups.values()]
|
||||
@@ -380,8 +391,8 @@ export function formatCrawlerRows(crawlers, clients, pageTree, now = Date.now())
|
||||
lastSeenIso: formatWhenIso(g.lastStart),
|
||||
lastSeenLocal: formatWhenLocal(g.lastStart),
|
||||
pages: [...g.pages.entries()]
|
||||
.sort((a, b) => b[1] - a[1])
|
||||
.map(([path, count]) => ({ ...stepOf(path, titles), count })),
|
||||
.sort((a, b) => b[1].count - a[1].count)
|
||||
.map(([path, info]) => ({ ...stepOf(path, titles), count: info.count, status: info.status })),
|
||||
ip: client.ip || '',
|
||||
ipDisplay: isHost ? mainDomain(host) : hostIP(client.ip) || client.ip || '—',
|
||||
isHost,
|
||||
@@ -499,8 +510,17 @@ export function formatVisitRows(visits, clients, pageTree, now = Date.now()) {
|
||||
const titles = buildTitleMap(pageTree)
|
||||
return [...(visits || [])].reverse().slice(0, 20).map((v) => {
|
||||
const client = (clients || {})[v.client] || {}
|
||||
const read = v.read || {}
|
||||
const statuses = v.statuses || {}
|
||||
const trail = [v.entry, ...(v.trail || [])]
|
||||
.map((p) => stepOf(p, titles))
|
||||
.map((p) => {
|
||||
const step = stepOf(p, titles)
|
||||
if (step) {
|
||||
if (read[p]) step.readSeconds = read[p]
|
||||
if (statuses[p]) step.status = statuses[p]
|
||||
}
|
||||
return step
|
||||
})
|
||||
.filter(Boolean)
|
||||
const utmKeys = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content']
|
||||
const utmValues = utmKeys.map((k) => (v.utm || {})[k]).filter(Boolean)
|
||||
|
||||
+118
-21
@@ -26,6 +26,15 @@ export function mondayUTC(t) {
|
||||
return (d - ((d + 3) % 7)) * DAY
|
||||
}
|
||||
|
||||
/** ISO 8601 week number of the week containing t (via its Thursday). */
|
||||
export function isoWeek(t) {
|
||||
const d = new Date(t)
|
||||
d.setUTCHours(0, 0, 0, 0)
|
||||
d.setUTCDate(d.getUTCDate() + 4 - (d.getUTCDay() || 7))
|
||||
const yearStart = Date.UTC(d.getUTCFullYear(), 0, 1)
|
||||
return Math.ceil(((d - yearStart) / DAY + 1) / 7)
|
||||
}
|
||||
|
||||
/** Parse sparse timestamp buckets into a { epochMs: count } map. */
|
||||
export function rawTimes(buckets) {
|
||||
const raw = {}
|
||||
@@ -44,7 +53,9 @@ export function sumRange(raw, t0, t1) {
|
||||
/**
|
||||
* One series per overlaid week: [this week, 1 week ago, ...], at native
|
||||
* 5-minute resolution, up to 8 weeks back (and only weeks that overlap the
|
||||
* recorded data at all). The current week is truncated at the current bucket
|
||||
* recorded data at all). Each older week's timestamps are shifted forward
|
||||
* onto the current week's axis so all curves overlay inside the plot.
|
||||
* The current week is truncated at the current bucket
|
||||
* — no fake zeroes drawn for the future. Counts are rates per hour
|
||||
* (bucket count * 12): a lone visit in a 5-minute bucket reads as "12/h".
|
||||
* The coarser ranges use per-day rates instead (unitMinutes = 24*60).
|
||||
@@ -52,9 +63,24 @@ export function sumRange(raw, t0, t1) {
|
||||
export function weeklySeries(buckets) {
|
||||
const raw = rawTimes(buckets)
|
||||
const times = Object.keys(raw).map(Number)
|
||||
if (!times.length) return null
|
||||
const now = Date.now()
|
||||
const thisMonday = mondayUTC(now)
|
||||
if (!times.length) {
|
||||
const points = []
|
||||
const end = Math.min(thisMonday + WEEK, Math.floor(now / MIN5) * MIN5 + MIN5)
|
||||
for (let t = thisMonday; t < end; t += MIN5) {
|
||||
points.push({ t, count: 0 })
|
||||
}
|
||||
return {
|
||||
series: [{ points, label: `Week ${isoWeek(thisMonday)}`, opacity: 1, area: true }],
|
||||
t0: thisMonday,
|
||||
t1: thisMonday + WEEK,
|
||||
rate: HOUR / MIN5,
|
||||
binMinutes: 5,
|
||||
unitMinutes: 60,
|
||||
unit: 'hour',
|
||||
}
|
||||
}
|
||||
const oldest = Math.min(...times)
|
||||
// Weeks back as far as the data reaches: difference in Monday indices.
|
||||
const available = (thisMonday - mondayUTC(oldest)) / WEEK + 1
|
||||
@@ -67,12 +93,13 @@ export function weeklySeries(buckets) {
|
||||
: start + WEEK
|
||||
const points = []
|
||||
for (let t = start; t < end; t += MIN5) {
|
||||
points.push({ t, count: raw[t] || 0 })
|
||||
points.push({ t: t + back * WEEK, count: raw[t] || 0 })
|
||||
}
|
||||
out.push({
|
||||
points,
|
||||
label: back === 0 ? 'this week' : `${back}w ago`,
|
||||
label: `Week ${isoWeek(start)}`,
|
||||
opacity: Math.max(0.15, 1 - back * 0.25),
|
||||
past: back > 0,
|
||||
area: back === 0,
|
||||
})
|
||||
}
|
||||
@@ -92,27 +119,52 @@ export function weeklySeries(buckets) {
|
||||
* to per-day rates (the unit the month+ charts are read in).
|
||||
* Ranges without a fixed span use the full data reach, but never less than
|
||||
* their configured minSpan so the chart keeps a readable minimum x scale.
|
||||
* t0 is aligned to the UTC day so the x labels cover the whole range;
|
||||
* t1 is now, so the scale never extends into the future. The bucket size
|
||||
* follows the resulting window (6h up to 31 days, daily beyond), so ranges
|
||||
* covering the same window — "all" at its 30-day minimum vs "month" —
|
||||
* render the identical curve.
|
||||
*/
|
||||
export function rollingSeries(buckets, rangeKey) {
|
||||
const raw = rawTimes(buckets)
|
||||
const times = Object.keys(raw).map(Number)
|
||||
if (!times.length) return null
|
||||
const { span, bucket, minSpan = 0 } = RANGES[rangeKey]
|
||||
const t1 = Math.floor(Date.now() / bucket) * bucket + bucket
|
||||
const earliest = Math.floor(Math.min(...times) / bucket) * bucket
|
||||
const t0 = span != null
|
||||
const t1 = Date.now()
|
||||
const t0 = Math.floor((span != null
|
||||
? t1 - span
|
||||
: Math.min(earliest, t1 - minSpan)
|
||||
: Math.min(times.length ? Math.min(...times) : Infinity, t1 - minSpan)) / DAY) * DAY
|
||||
if (!times.length) {
|
||||
const bucketMs = t1 - t0 <= 31 * DAY ? Math.min(bucket, 6 * HOUR) : bucket
|
||||
const points = []
|
||||
for (let t = t0; t < t1; t += bucketMs) {
|
||||
points.push({ t, count: 0 })
|
||||
}
|
||||
return {
|
||||
series: [{ points, label: '', opacity: 1, area: true }],
|
||||
t0,
|
||||
t1,
|
||||
rate: DAY / bucketMs,
|
||||
binMinutes: bucketMs / 60e3,
|
||||
unitMinutes: 24 * 60,
|
||||
unit: 'day',
|
||||
}
|
||||
}
|
||||
// The bucket follows the actual window length, not the range key: when
|
||||
// "all" is capped to its 30-day minimum it covers the very window "month"
|
||||
// does, and daily bins would draw a different curve over the same data
|
||||
// (coarser edge detection, points a day apart plotted at bin starts, the
|
||||
// last point stuck at today's midnight instead of reaching now).
|
||||
const bucketMs = t1 - t0 <= 31 * DAY ? Math.min(bucket, 6 * HOUR) : bucket
|
||||
const points = []
|
||||
for (let t = t0; t < t1; t += bucket) {
|
||||
points.push({ t, count: sumRange(raw, t, t + bucket) })
|
||||
for (let t = t0; t < t1; t += bucketMs) {
|
||||
points.push({ t, count: sumRange(raw, t, t + bucketMs) })
|
||||
}
|
||||
return {
|
||||
series: [{ points, label: '', opacity: 1, area: true }],
|
||||
t0,
|
||||
t1,
|
||||
rate: DAY / bucket,
|
||||
binMinutes: bucket / 60e3,
|
||||
rate: DAY / bucketMs,
|
||||
binMinutes: bucketMs / 60e3,
|
||||
unitMinutes: 24 * 60,
|
||||
unit: 'day',
|
||||
}
|
||||
@@ -152,19 +204,64 @@ export function makeSeries(buckets, rangeKey) {
|
||||
|
||||
/**
|
||||
* Absolute UTC time window for a given range key. Used to filter visits,
|
||||
* transitions and views to the same period the charts are showing.
|
||||
* transitions and views for the non-chart stats on the analytics page.
|
||||
* Every bounded range is a rolling span ending at now; the charts instead
|
||||
* align week to Monday 00:00 UTC (overlaying previous weeks) and month+
|
||||
* to UTC day boundaries, so their x windows differ from the stats range
|
||||
* on purpose.
|
||||
* Returns { t0, t1 } where null means unbounded.
|
||||
*/
|
||||
export function rangeWindow(rangeKey) {
|
||||
const now = Date.now()
|
||||
if (rangeKey === 'week') {
|
||||
const start = mondayUTC(now)
|
||||
return { t0: start, t1: start + WEEK }
|
||||
}
|
||||
if (rangeKey === 'all') {
|
||||
return { t0: null, t1: null }
|
||||
}
|
||||
const { span, bucket } = RANGES[rangeKey]
|
||||
const t1 = Math.floor(now / bucket) * bucket + bucket
|
||||
return { t0: t1 - span, t1 }
|
||||
const span = rangeKey === 'week' ? WEEK : RANGES[rangeKey].span
|
||||
return { t0: now - span, t1: now }
|
||||
}
|
||||
|
||||
/**
|
||||
* Sum the bucketed transition matrix (from -> to -> bucket ISO -> count)
|
||||
* into a plain from -> to -> count matrix for the window [t0, t1).
|
||||
*/
|
||||
export function filterTransitionsByRange(transitions, t0, t1) {
|
||||
const out = {}
|
||||
for (const [fr, tos] of Object.entries(transitions || {})) {
|
||||
for (const [to, buckets] of Object.entries(tos)) {
|
||||
let n = 0
|
||||
for (const [k, c] of Object.entries(buckets)) {
|
||||
const t = Date.parse(k)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) n += c
|
||||
}
|
||||
if (n) {
|
||||
out[fr] = out[fr] || {}
|
||||
out[fr][to] = n
|
||||
}
|
||||
}
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
/** Keep only the 5-minute view buckets that fall inside [t0, t1). */
|
||||
export function filterViewsByRange(views, t0, t1) {
|
||||
const filtered = {}
|
||||
for (const [path, buckets] of Object.entries(views || {})) {
|
||||
const out = {}
|
||||
for (const [k, c] of Object.entries(buckets)) {
|
||||
const t = Date.parse(k)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) out[k] = c
|
||||
}
|
||||
if (Object.keys(out).length) filtered[path] = out
|
||||
}
|
||||
return filtered
|
||||
}
|
||||
|
||||
/** Keep only records whose start time falls inside [t0, t1). */
|
||||
export function filterRecordsByRange(records, t0, t1) {
|
||||
const out = []
|
||||
for (const r of records || []) {
|
||||
const t = Date.parse(r.start)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) out.push(r)
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
@@ -22,9 +22,10 @@
|
||||
* referer, then other utm_* tags. Visits with a UTM tag are grouped under
|
||||
* that tag's value, not under the referer domain. A UTM source node only
|
||||
* becomes a clickable link when every visit carrying that UTM tag came
|
||||
* from the same referer. External exits are full-size nodes just outside
|
||||
* their source page, angled away from the center. Each distinct full exit
|
||||
* URL is its own node. Self-loops (reload pings) are skipped.
|
||||
* from the same referer. External exits are full-size nodes in a row below
|
||||
* the map, mirroring the source row, so the site itself stays in the
|
||||
* middle. Each distinct full exit URL is its own node. Self-loops (reload
|
||||
* pings) are skipped.
|
||||
*/
|
||||
|
||||
import { MIN_READ_SECONDS } from './format.js'
|
||||
@@ -123,27 +124,29 @@ const pillTangent = (s, margin = 0) => {
|
||||
|
||||
// Edge width (half-width of the thin middle) grows logarithmically with
|
||||
// the count. The constants are scaled down by ~10× so busy ranges (day,
|
||||
// year) do not overwhelm the graph with fat connectors. A single recorded
|
||||
// transition still renders as a faint ~0.4 px line. Connections carrying
|
||||
// less than PRUNE_FRACTION of the total traffic are not drawn at all (this
|
||||
// also keeps the graph under ~100 connections).
|
||||
// year) do not overwhelm the graph with fat connectors. Connections whose
|
||||
// thin middle would render below MIN_WMID are culled entirely: fainter
|
||||
// strands are practically invisible and only their wide end flares would
|
||||
// show. Connections carrying less than PRUNE_FRACTION of the total traffic
|
||||
// are likewise not drawn (this also keeps the graph under ~100 connections).
|
||||
const WMID_MIN = 0.2
|
||||
const WIDTH_GROWTH = 0.15
|
||||
const PRUNE_FRACTION = 0.01
|
||||
// ~0.8 px full width at natural size (1 viewBox unit = 1 px).
|
||||
const MIN_WMID = 0.4
|
||||
|
||||
// Beads: each edge direction emits beads at count * BEAD_RATE beads per
|
||||
// second (linear in the count). The rate is reduced ~10× across all time
|
||||
// scales to keep the animation lightweight. The component simulates every
|
||||
// bead independently in JS at BEAD_SPEED along the edge, with no limit on
|
||||
// beads in flight.
|
||||
export const BEAD_SPEED = 180 // svg units per second
|
||||
// bead independently in JS with a constant traversal time per edge (speed
|
||||
// relative to span length), with no limit on beads in flight.
|
||||
export const BEAD_R = 3.2
|
||||
const BEAD_RATE = 0.012 // beads per second per recorded transition
|
||||
const FLOW_OFFSET = 3 // lane offset to the right of the travel direction
|
||||
|
||||
const MAX_EXT_IN = 8 // referer nodes in the top row
|
||||
const MAX_EXT_OUT = 12 // exit nodes, at most MAX_EXT_OUT_PER_PAGE per page
|
||||
const MAX_EXT_OUT_PER_PAGE = 3
|
||||
const MAX_EXT_OUT = 12 // exit nodes in the bottom row
|
||||
const EXT_GAP = 12 // vertical margin of the source/exit rows to the map
|
||||
|
||||
/** Flatten the site tree into navigation order via DFS. */
|
||||
function buildNavigationOrder(pageTree) {
|
||||
@@ -184,14 +187,13 @@ function collectInternalTransitions(transitions) {
|
||||
return internal
|
||||
}
|
||||
|
||||
/** Domain-only label for an external origin (path and www. removed). */
|
||||
/** Domain-only label for an external origin (path and www. removed).
|
||||
* Pills clip the text at their border; no length cap needed. */
|
||||
function extLabel(ext) {
|
||||
try {
|
||||
const host = new URL(ext).hostname.replace(/^www\./, '')
|
||||
return host.length > 25 ? `${host.slice(0, 24)}…` : host
|
||||
return new URL(ext).hostname.replace(/^www\./, '')
|
||||
} catch {
|
||||
const s = ext.replace(/^https?:\/\//, '').replace(/^www\./, '').split('/')[0]
|
||||
return s.length > 25 ? `${s.slice(0, 24)}…` : s
|
||||
return ext.replace(/^https?:\/\//, '').replace(/^www\./, '').split('/')[0]
|
||||
}
|
||||
}
|
||||
|
||||
@@ -286,17 +288,9 @@ function annotateNodes(nodes, viewsData, titles, readMinutes) {
|
||||
for (const n of nodes) {
|
||||
n.views = viewCount(n.path)
|
||||
n.readMin = readMinutes[n.path] || 0
|
||||
// Article title inside the pill (shortened with ellipsis as needed),
|
||||
// slug as fallback for pages missing from the site tree. The short
|
||||
// path (last two segments, no leading /) renders above the pill; the
|
||||
// front page shows a home symbol there instead (larger).
|
||||
const slug = n.path.split('/').pop()
|
||||
const label = titles.get(n.path) || (n.path === '/' ? '🏠︎' : slug)
|
||||
n.label = label.length > 24 ? `${label.slice(0, 23)}…` : label
|
||||
const segs = n.path.split('/').filter(Boolean)
|
||||
n.crumb = n.path === '/'
|
||||
? '🏠︎'
|
||||
: segs.length > 2 ? `…/${segs.slice(-2).join('/')}` : segs.join('/')
|
||||
// Article title inside the pill (clipped at the pill border on
|
||||
// render), slug as fallback for pages missing from the site tree.
|
||||
n.label = titles.get(n.path) || (n.path === '/' ? '🏠︎' : n.path.split('/').pop())
|
||||
n.title = titles.get(n.path) || ''
|
||||
// Category (non-leaf) pages with no views in this window are omitted:
|
||||
// their children move up in their place (see layoutGroups).
|
||||
@@ -310,15 +304,13 @@ function annotateNodes(nodes, viewsData, titles, readMinutes) {
|
||||
* the row following a shallow circular sag (center lowest) so connections
|
||||
* between neighbors do not overlap the pills in between. Each top item's
|
||||
* whole subtree fans out from it in menu (DFS preorder) order along a
|
||||
* parabola that leaves the parent heading straight down and gradually
|
||||
* bends to the right — no horizontal space is reserved for fans, they
|
||||
* large-radius circular arc that leaves the parent heading straight down
|
||||
* and gradually bends to the right — no horizontal space is reserved for fans, they
|
||||
* extend under the slots to their right. Hidden index pages are omitted
|
||||
* from the fan; when the top item itself is hidden, the fan shifts one
|
||||
* slot up, the first visible child taking the top position. The short
|
||||
* path shown above each pill (last two segments) keeps the omitted menu
|
||||
* level visible.
|
||||
* Also returns curved spoke paths tracing each fan: top slot to first
|
||||
* member, then member to member in menu order, each bowed to the right.
|
||||
* slot up, the first visible child taking the top position. Branch lanes
|
||||
* labeled with the branch slug (see the branch-lane pass at the end)
|
||||
* keep the omitted menu levels visible.
|
||||
*/
|
||||
function layoutGroups(root) {
|
||||
// Top slots are spaced well over one pill width apart regardless of
|
||||
@@ -328,8 +320,10 @@ function layoutGroups(root) {
|
||||
|
||||
// First pass: visible members per group, in menu order. Hidden index
|
||||
// pages are skipped, but their children still appear. The front page
|
||||
// forms its own group.
|
||||
// forms its own group. groupRoots keeps each group's subtree root for
|
||||
// the branch-curve pass below.
|
||||
const groups = []
|
||||
const groupRoots = []
|
||||
for (const g of [root, ...root.children]) {
|
||||
const members = []
|
||||
if (g === root) {
|
||||
@@ -341,53 +335,139 @@ function layoutGroups(root) {
|
||||
}
|
||||
walk(g)
|
||||
}
|
||||
if (members.length) groups.push(members)
|
||||
if (members.length) {
|
||||
groups.push(members)
|
||||
groupRoots.push(g)
|
||||
}
|
||||
}
|
||||
|
||||
// Top row on a true circular sag: center lowest, edges raised by SAG.
|
||||
// Top row on a large-radius circular arc whose bottom point is the
|
||||
// LAST top item: each earlier item sits a bit higher (drop = 15% of
|
||||
// the row span). Flat row when there is a single group.
|
||||
const half = ((groups.length - 1) * SLOT) / 2 || 1
|
||||
const SAG = TNODE_H * 0.6
|
||||
const Rc = (half * half + SAG * SAG) / (2 * SAG)
|
||||
const topY = (x) => SAG - Rc + Math.sqrt(Rc * Rc - x * x)
|
||||
const span = (groups.length - 1) * SLOT
|
||||
const topD = span * 0.15
|
||||
const R_T = span ? (span * span + topD * topD) / (2 * topD) : 0
|
||||
const topY = span
|
||||
? (x) => topD - R_T + Math.sqrt(R_T * R_T - (x - half) * (x - half))
|
||||
: () => 0
|
||||
|
||||
// Second pass: place groups. Fan members follow a right-opening cubic
|
||||
// p(t) = (gx + B t³, y0 + t): the tangent stays vertical near the
|
||||
// parent (leaving almost straight down) and bends right gently,
|
||||
// reaching ~50° from vertical at the last member. Member spacing along
|
||||
// the curve is the pill clearance (dt integrated against curve speed).
|
||||
const spokePairs = [] // [from node, to node] — paths emitted below
|
||||
// Second pass: place groups. Fan members follow a circular arc of
|
||||
// large radius FAN_R centered at (gx + FAN_R, y0): the trail leaves
|
||||
// the top node heading straight down (vertical tangent) and bends
|
||||
// right gently, member i at arc angle π − i·CLEAR/FAN_R (spaced by
|
||||
// arc length CLEAR). A circle — not a spline — so the branch lanes
|
||||
// below can be concentric arcs: identical forms, only radii differ.
|
||||
const FAN_R = 1000
|
||||
groups.forEach((members, gi) => {
|
||||
const gx = gi * SLOT - half
|
||||
const y0 = topY(gx)
|
||||
members[0].x = gx
|
||||
members[0].y = y0
|
||||
const m = members.length - 1
|
||||
if (!m) return
|
||||
const tMax = m * CLEAR * 0.9
|
||||
const B = 0.4 / (tMax * tMax)
|
||||
let t = 0
|
||||
for (let i = 1; i <= m; i++) {
|
||||
const bend = 3 * B * t * t
|
||||
t += CLEAR / Math.hypot(bend, 1)
|
||||
const n = members[i]
|
||||
n.x = gx + B * t * t * t
|
||||
n.y = y0 + t
|
||||
spokePairs.push([members[i - 1], n])
|
||||
for (let i = 1; i < members.length; i++) {
|
||||
const th = Math.PI - (i * CLEAR) / FAN_R
|
||||
members[i].x = gx + FAN_R * (1 + Math.cos(th))
|
||||
members[i].y = y0 + FAN_R * Math.sin(th)
|
||||
}
|
||||
})
|
||||
|
||||
// Fan spokes bow to the right via a quadratic control point pushed
|
||||
// rightward from the segment midpoint.
|
||||
const spokes = spokePairs.map(([p, n]) => {
|
||||
const mx = (p.x + n.x) / 2
|
||||
const my = (p.y + n.y) / 2
|
||||
const bow = Math.hypot(n.x - p.x, n.y - p.y) * 0.18
|
||||
return {
|
||||
d: `M ${p.x.toFixed(2)} ${p.y.toFixed(2)} `
|
||||
+ `Q ${(mx + bow).toFixed(2)} ${my.toFixed(2)} ${n.x.toFixed(2)} ${n.y.toFixed(2)}`,
|
||||
// Branch lanes: one wide arc per path prefix (slug depth ≥ 1) whose
|
||||
// subtree holds at least two visible nodes (a branch's visible nodes
|
||||
// form one contiguous run in the fan's DFS preorder). Every lane of a
|
||||
// group is an arc around the group's fan center with a radius one
|
||||
// INDENT larger per parent level — concentric circles, so all lanes
|
||||
// share exactly one form. Lanes span their branch's nodes plus a
|
||||
// little extra tucked under the first/last pill (so the line caps are
|
||||
// never visible) and run behind the pills. A label arc carries the
|
||||
// branch slug, left-aligned just past the first pill and free to run
|
||||
// to the lane's end — longer text simply passes under later pills,
|
||||
// which are drawn on top. Hidden (unplaced) index pages still
|
||||
// define a lane: it follows their promoted children, so lanes reflect
|
||||
// the path structure rather than page existence.
|
||||
const INDENT = 20 // lane spacing (radius) per nesting level (> lane width)
|
||||
const END_TUCK = 22 // arc units tucked under the first/last pill
|
||||
const GAP_TRIM = 32 // label arc clearance from the pills
|
||||
// Labels are left-aligned on their guide: the guide starts just past the
|
||||
// source pill's edge, the earliest point where the text is visible.
|
||||
const LABEL_PAD = 6
|
||||
// The label guide rides GUIDE_OFF outward of the lane centerline: the
|
||||
// text's alphabetic baseline sits on the guide, so this puts the
|
||||
// glyph middle (not the baseline) on the lane center at any zoom —
|
||||
// dominant-baseline tricks are em-based and break under downscale.
|
||||
const GUIDE_OFF = 3.5
|
||||
const branches = []
|
||||
groups.forEach((members, gi) => {
|
||||
const g = groupRoots[gi]
|
||||
if (g === root || members.length < 2) return
|
||||
const idx = new Map(members.map((n, i) => [n, i]))
|
||||
const C = [gi * SLOT - half + FAN_R, topY(gi * SLOT - half)]
|
||||
const walk = (n) => {
|
||||
let first = Infinity
|
||||
let last = -1
|
||||
const span = (m) => {
|
||||
const k = idx.get(m)
|
||||
if (k !== undefined) {
|
||||
first = Math.min(first, k)
|
||||
last = Math.max(last, k)
|
||||
}
|
||||
m.children.forEach(span)
|
||||
}
|
||||
span(n)
|
||||
if (n.depth >= 1 && last > first) {
|
||||
branches.push({ depth: n.depth, name: n.path.split('/').pop(), C, first, last })
|
||||
}
|
||||
n.children.forEach(walk)
|
||||
}
|
||||
walk(g)
|
||||
})
|
||||
return { GAP: TNODE_H * 2.6, spokes }
|
||||
const depthMax = branches.reduce((d, b) => Math.max(d, b.depth), 1)
|
||||
let arcLeft = Infinity // leftmost lane point, for the bounding box
|
||||
const arcs = branches.map(({ depth, name, C, first, last }) => {
|
||||
const R = FAN_R + (depthMax - depth) * INDENT
|
||||
const th = (i) => Math.PI - (i * CLEAR) / FAN_R
|
||||
const pt = (a, r) => [C[0] + r * Math.cos(a), C[1] + r * Math.sin(a)]
|
||||
// Arc from angle a down to angle b (a > b; visually counterclockwise
|
||||
// from the west point downward, hence sweep flag 0).
|
||||
const arc = (a, b, r) => {
|
||||
const [x0, y0] = pt(a, r)
|
||||
const [x1, y1] = pt(b, r)
|
||||
return `M ${x0.toFixed(2)} ${y0.toFixed(2)} A ${r.toFixed(2)} ${r.toFixed(2)} 0 0 0 ${x1.toFixed(2)} ${y1.toFixed(2)}`
|
||||
}
|
||||
const d = arc(th(first) + END_TUCK / R, th(last) - END_TUCK / R, R)
|
||||
// Start just past the first pill: lanes leave the source node nearly
|
||||
// vertically, so the pill's extent along the arc is its half height.
|
||||
// The guide runs to the lane's end so long slugs are never cut off.
|
||||
const ld = arc(th(first) - (TNODE_H / 2 + LABEL_PAD) / R,
|
||||
th(last) - END_TUCK / R, R + GUIDE_OFF)
|
||||
arcLeft = Math.min(arcLeft, pt(th(first) + END_TUCK / R, R)[0])
|
||||
return { d, ld, label: name }
|
||||
})
|
||||
// Top lane: an arc along the top row's own circle, connecting
|
||||
// the top nodes of all groups and tucked under the first and last of
|
||||
// them (the arc bottoms at the last item, so it continues rightward
|
||||
// under its pill). Drawn 50% thicker than branch lanes. A 🏠︎ label
|
||||
// marks the lane right after the home pill, on a guide arc like
|
||||
// the branch labels but with the offset and clearance scaled up by the
|
||||
// same 50% to keep the glyph centered on the wider lane.
|
||||
if (span) {
|
||||
const d = `M ${(-half - END_TUCK).toFixed(2)} ${topY(-half - END_TUCK).toFixed(2)} `
|
||||
+ `A ${R_T.toFixed(2)} ${R_T.toFixed(2)} 0 0 0 ${(half + END_TUCK).toFixed(2)} ${topY(half + END_TUCK).toFixed(2)}`
|
||||
const rG = R_T + GUIDE_OFF * 1.5
|
||||
const ptG = (x) => [x, topD - R_T + Math.sqrt(rG * rG - (x - half) ** 2)]
|
||||
// Left-aligned like the branch labels: the guide starts just past the
|
||||
// home pill's edge (scaled with the lane thickness).
|
||||
const g0 = -half + TNODE_W / 2 + LABEL_PAD * 1.5
|
||||
const g1 = SLOT - half - TNODE_W / 2 - GAP_TRIM * 1.5
|
||||
const [gx0, gy0] = ptG(g0)
|
||||
const [gx1, gy1] = ptG(g1)
|
||||
arcs.unshift({
|
||||
d,
|
||||
ld: `M ${gx0.toFixed(2)} ${gy0.toFixed(2)} A ${rG.toFixed(2)} ${rG.toFixed(2)} 0 0 0 ${gx1.toFixed(2)} ${gy1.toFixed(2)}`,
|
||||
label: '🏠︎',
|
||||
top: true,
|
||||
})
|
||||
}
|
||||
return { arcs, arcLeft }
|
||||
}
|
||||
|
||||
/** Collapse opposite transition directions into one unordered pair per page pair. */
|
||||
@@ -573,16 +653,18 @@ function buildFlows(a, b, ab, ba, visualScale = 1) {
|
||||
}
|
||||
}
|
||||
const flows = []
|
||||
if (ab) flows.push(flow(ab, t0, t1))
|
||||
if (ba) flows.push(flow(ba, t1, t0))
|
||||
// Stable key per edge direction so the component's bead simulation can
|
||||
// match flows across data reloads and keep bead phases/positions.
|
||||
if (ab) flows.push({ ...flow(ab, t0, t1), key: `${a.path} ${b.path}` })
|
||||
if (ba) flows.push({ ...flow(ba, t1, t0), key: `${b.path} ${a.path}` })
|
||||
return flows
|
||||
}
|
||||
|
||||
/**
|
||||
* Half-width for a connection middle: logarithmic in the count, anchored
|
||||
* so a single count lands exactly at WMID_MIN (~1 px line), uncapped.
|
||||
* Absolute on purpose — cool routes stay visible regardless of how hot
|
||||
* the hottest connection is.
|
||||
* at WMID_MIN, uncapped. Absolute on purpose — cool routes stay visible
|
||||
* regardless of how hot the hottest connection is. Callers cull results
|
||||
* below MIN_WMID.
|
||||
*/
|
||||
const scaledWidth = (count) => {
|
||||
if (count <= 0) return 0
|
||||
@@ -608,59 +690,13 @@ function buildInternalEdges(pairs, byPath, visualScale = 1) {
|
||||
const b = byPath.get(pt)
|
||||
if (a.hidden || b.hidden) continue // unplaced index pages are omitted
|
||||
const wMid = scaledWidth((ab + ba) * visualScale)
|
||||
if (wMid <= 0) continue
|
||||
if (wMid < MIN_WMID) continue
|
||||
edges.push(buildRibbon(a, b, ab, ba, wMid))
|
||||
flows.push(...buildFlows(a, b, ab, ba, visualScale))
|
||||
}
|
||||
return { edges, flows }
|
||||
}
|
||||
|
||||
/**
|
||||
* Sum the bucketed transition matrix (from -> to -> bucket ISO -> count)
|
||||
* into a plain from -> to -> count matrix for the window [t0, t1).
|
||||
*/
|
||||
export function filterTransitionsByRange(transitions, t0, t1) {
|
||||
const out = {}
|
||||
for (const [fr, tos] of Object.entries(transitions || {})) {
|
||||
for (const [to, buckets] of Object.entries(tos)) {
|
||||
let n = 0
|
||||
for (const [k, c] of Object.entries(buckets)) {
|
||||
const t = Date.parse(k)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) n += c
|
||||
}
|
||||
if (n) {
|
||||
out[fr] = out[fr] || {}
|
||||
out[fr][to] = n
|
||||
}
|
||||
}
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
/** Keep only the 5-minute view buckets that fall inside [t0, t1). */
|
||||
export function filterViewsByRange(views, t0, t1) {
|
||||
const filtered = {}
|
||||
for (const [path, buckets] of Object.entries(views || {})) {
|
||||
const out = {}
|
||||
for (const [k, c] of Object.entries(buckets)) {
|
||||
const t = Date.parse(k)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) out[k] = c
|
||||
}
|
||||
if (Object.keys(out).length) filtered[path] = out
|
||||
}
|
||||
return filtered
|
||||
}
|
||||
|
||||
/** Keep only visits whose start time falls inside [t0, t1). */
|
||||
export function filterVisitsByRange(visits, t0, t1) {
|
||||
const out = []
|
||||
for (const v of visits || []) {
|
||||
const t = Date.parse(v.start)
|
||||
if ((t0 == null || t >= t0) && (t1 == null || t < t1)) out.push(v)
|
||||
}
|
||||
return out
|
||||
}
|
||||
|
||||
const UTM_PRIORITY = ['utm_campaign', 'utm_source']
|
||||
const UTM_FALLBACK = ['utm_medium', 'utm_content', 'utm_term', 'utm_id']
|
||||
|
||||
@@ -726,11 +762,13 @@ function collectSourcePairs(visits) {
|
||||
* flows.
|
||||
* Sources (incoming links) are derived from visit UTM/referer data and form
|
||||
* a row centered above the map, hottest first; exits come from the
|
||||
* transition matrix and sit just outside their source page.
|
||||
* transition matrix and form a matching row centered below the map, so
|
||||
* the site itself stays in the middle. Both rows sit EXT_GAP beyond the
|
||||
* map's bounds.
|
||||
* Widths and pruning use the same log scale and traffic-share rule as
|
||||
* internal connections.
|
||||
*/
|
||||
function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale = 1) {
|
||||
function buildExternal({ sources, exits }, byPath, innerBounds, visualScale = 1) {
|
||||
const extNodes = []
|
||||
const edges = []
|
||||
const flows = []
|
||||
@@ -744,17 +782,9 @@ function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale
|
||||
|
||||
const width = (count) => scaledWidth(count * visualScale)
|
||||
|
||||
// Pill-shape overlap test (axis-aligned pills): much tighter than the
|
||||
// bounding-circle test, so diagonal placements can sit close.
|
||||
const overlaps = (x, y) =>
|
||||
[...byPath.values(), ...extNodes].some(
|
||||
(n) => !n.hidden
|
||||
&& Math.abs(n.x - x) < TNODE_W + 12
|
||||
&& Math.abs(n.y - y) < TNODE_H + 12,
|
||||
)
|
||||
|
||||
// Incoming: one source node per identified source, in a row centered
|
||||
// above the map, with an edge to each page that source led to.
|
||||
// above the map, with an edge to each page that source led to. A source
|
||||
// whose connectors are all culled (below MIN_WMID) is dropped itself.
|
||||
const bySource = new Map() // source -> pairs, sorted by total incoming count
|
||||
for (const p of liveSources.filter((p) => p.in >= minCount)) {
|
||||
const g = bySource.get(p.source) || []
|
||||
@@ -771,9 +801,11 @@ function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale
|
||||
}))
|
||||
.sort((a, b) => b.total - a.total)
|
||||
.slice(0, MAX_EXT_IN)
|
||||
.filter(({ ps }) =>
|
||||
ps.some((p) => !byPath.get(p.page).hidden && width(p.in) >= MIN_WMID))
|
||||
if (origins.length) {
|
||||
const cx = (innerBounds.x0 + innerBounds.x1) / 2
|
||||
const y = innerBounds.y0 - TNODE_BOUND - 64
|
||||
const y = innerBounds.y0 - TNODE_BOUND - EXT_GAP
|
||||
const spacing = TNODE_W + 44
|
||||
const x0 = cx - ((origins.length - 1) * spacing) / 2
|
||||
origins.forEach(({ source, ps, total, href, isUtm }, i) => {
|
||||
@@ -781,7 +813,7 @@ function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale
|
||||
const xn = {
|
||||
path: source,
|
||||
href,
|
||||
label: label.length > 25 ? `${label.slice(0, 24)}…` : label,
|
||||
label, // clipped at the pill border on render
|
||||
x: x0 + i * spacing,
|
||||
y,
|
||||
count: total,
|
||||
@@ -792,79 +824,56 @@ function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale
|
||||
const page = byPath.get(p.page)
|
||||
if (page.hidden) continue
|
||||
const wMid = width(p.in)
|
||||
if (wMid <= 0) continue
|
||||
if (wMid < MIN_WMID) continue
|
||||
edges.push(buildRibbon(xn, page, p.in, 0, wMid, true))
|
||||
flows.push(...buildFlows(xn, page, p.in, 0, visualScale))
|
||||
}
|
||||
})
|
||||
}
|
||||
|
||||
// Outgoing: group by full URL so several links to the same domain stay
|
||||
// distinct; each shows the total count across all pages linking to it.
|
||||
// Placement looks for empty space around the source page, always
|
||||
// leftward: diagonal down-left first (often right beside the source,
|
||||
// no need to drop below the fans), then left, up-left, and steeper
|
||||
// fallbacks; the distance grows until a spot is free. Several exits of
|
||||
// one page start at different directions.
|
||||
const GAP = gap
|
||||
const DIRS = [
|
||||
(3 * Math.PI) / 4, // diagonal down-left
|
||||
Math.PI, // left
|
||||
(5 * Math.PI) / 4, // diagonal up-left
|
||||
Math.PI / 2 + 0.35, // steep down-left
|
||||
Math.PI - 0.35, // shallow up-left
|
||||
(3 * Math.PI) / 4 + 0.5, // far down-left
|
||||
]
|
||||
const outgoing = liveExits.filter((p) => p.out >= minCount)
|
||||
.sort((a, b) => b.out - a.out)
|
||||
const perPage = new Map()
|
||||
const selected = []
|
||||
for (const p of outgoing) {
|
||||
const used = perPage.get(p.page) || 0
|
||||
if (used >= MAX_EXT_OUT_PER_PAGE) continue
|
||||
perPage.set(p.page, used + 1)
|
||||
selected.push(p)
|
||||
if (selected.length >= MAX_EXT_OUT) break
|
||||
// Outgoing: one exit node per distinct full URL (so several links to
|
||||
// the same domain stay distinct), showing the total count across all
|
||||
// pages linking to it, in a row centered below the map (hottest
|
||||
// first), mirroring the source row above. Each (URL, page) pair
|
||||
// contributes an edge from that page. An exit whose connectors are all
|
||||
// culled (below MIN_WMID) is dropped itself.
|
||||
const byExt = new Map() // full URL -> { ext, out, pairs }
|
||||
for (const p of liveExits.filter((p) => p.out >= minCount)) {
|
||||
const g = byExt.get(p.ext) || { ext: p.ext, out: 0, pairs: [] }
|
||||
g.out += p.out
|
||||
g.pairs.push(p)
|
||||
byExt.set(p.ext, g)
|
||||
}
|
||||
|
||||
const exitNodes = new Map() // full URL -> node
|
||||
const placedPerPage = new Map() // for the placement direction offset
|
||||
for (const p of selected) {
|
||||
const page = byPath.get(p.page)
|
||||
if (page.hidden) continue
|
||||
let xn = exitNodes.get(p.ext)
|
||||
if (!xn) {
|
||||
const used = placedPerPage.get(p.page) || 0
|
||||
placedPerPage.set(p.page, used + 1)
|
||||
let x = 0
|
||||
let y = 0
|
||||
let found = false
|
||||
for (let di = 0; di < DIRS.length && !found; di++) {
|
||||
const ang = DIRS[(used + di) % DIRS.length]
|
||||
for (let dist = GAP; dist <= GAP * 3.5; dist += GAP * 0.4) {
|
||||
x = page.x + Math.cos(ang) * dist
|
||||
y = page.y + Math.sin(ang) * dist
|
||||
if (!overlaps(x, y)) { found = true; break }
|
||||
}
|
||||
}
|
||||
if (!found) continue // no empty space near the page: leave it out
|
||||
xn = {
|
||||
path: p.ext,
|
||||
href: p.ext,
|
||||
label: extLabel(p.ext),
|
||||
x,
|
||||
const targets = [...byExt.values()]
|
||||
.sort((a, b) => b.out - a.out)
|
||||
.slice(0, MAX_EXT_OUT)
|
||||
.filter(({ pairs }) =>
|
||||
pairs.some((p) => !byPath.get(p.page).hidden && width(p.out) >= MIN_WMID))
|
||||
if (targets.length) {
|
||||
const cx = (innerBounds.x0 + innerBounds.x1) / 2
|
||||
const y = innerBounds.y1 + TNODE_BOUND + EXT_GAP
|
||||
const spacing = TNODE_W + 44
|
||||
const x0 = cx - ((targets.length - 1) * spacing) / 2
|
||||
targets.forEach(({ ext, out, pairs }, i) => {
|
||||
const xn = {
|
||||
path: ext,
|
||||
href: ext,
|
||||
label: extLabel(ext),
|
||||
x: x0 + i * spacing,
|
||||
y,
|
||||
count: 0,
|
||||
count: out,
|
||||
kind: 'exit',
|
||||
}
|
||||
exitNodes.set(p.ext, xn)
|
||||
extNodes.push(xn)
|
||||
}
|
||||
xn.count += p.out
|
||||
const wMid = width(p.out)
|
||||
if (wMid <= 0) continue
|
||||
edges.push(buildRibbon(page, xn, p.out, 0, wMid, true))
|
||||
flows.push(...buildFlows(page, xn, p.out, 0, visualScale))
|
||||
for (const p of pairs) {
|
||||
const page = byPath.get(p.page)
|
||||
if (page.hidden) continue
|
||||
const wMid = width(p.out)
|
||||
if (wMid < MIN_WMID) continue
|
||||
edges.push(buildRibbon(page, xn, p.out, 0, wMid, true))
|
||||
flows.push(...buildFlows(page, xn, p.out, 0, visualScale))
|
||||
}
|
||||
})
|
||||
}
|
||||
|
||||
return { extNodes, edges, flows }
|
||||
@@ -873,7 +882,7 @@ function buildExternal({ sources, exits }, byPath, gap, innerBounds, visualScale
|
||||
/**
|
||||
* Build the transition map model.
|
||||
* Returns { nodes, edges, flows, extNodes, arcs, bounds } or null when
|
||||
* there is nothing to show. `arcs` holds the family spokes; `nodes` only
|
||||
* there is nothing to show. `arcs` holds the branch curves; `nodes` only
|
||||
* contains placed (visible) nodes.
|
||||
*/
|
||||
export function buildTransitionGraph(data, pageTree, visits = [], visualScale = 1) {
|
||||
@@ -889,28 +898,34 @@ export function buildTransitionGraph(data, pageTree, visits = [], visualScale =
|
||||
const { nodes, byPath, root } = buildNodeTree(internal, navOrder)
|
||||
sortByNav(root, navOrder)
|
||||
annotateNodes(nodes, data?.views, titles, readMinutes)
|
||||
const { GAP, spokes } = layoutGroups(root)
|
||||
const { arcs, arcLeft } = layoutGroups(root)
|
||||
const placed = nodes.filter((n) => !n.hidden)
|
||||
const pairs = aggregatePairs(internal)
|
||||
const { edges, flows } = buildInternalEdges(pairs, byPath, visualScale)
|
||||
|
||||
// Tight bounding box of the placed page nodes; external nodes extend it.
|
||||
const pad = 16
|
||||
// Tight bounding box of the placed page nodes, extended to cover the
|
||||
// branch curves running left of the pills; external nodes extend it.
|
||||
// Margins cover just the ribbon surround (pill outline + flare margin
|
||||
// S=4) plus a small pad: the pill's half width/height, not its diagonal
|
||||
// radius, so the map crops tight especially at top and bottom.
|
||||
const pad = 8
|
||||
const MX = TNODE_W / 2 + 4 + pad
|
||||
const MY = TNODE_H / 2 + 4 + pad
|
||||
const xs = placed.map((n) => n.x)
|
||||
const ys = placed.map((n) => n.y)
|
||||
const bounds = {
|
||||
x0: Math.min(...xs) - TNODE_BOUND - pad,
|
||||
y0: Math.min(...ys) - TNODE_BOUND - pad,
|
||||
x1: Math.max(...xs) + TNODE_BOUND + pad,
|
||||
y1: Math.max(...ys) + TNODE_BOUND + pad,
|
||||
x0: Math.min(Math.min(...xs) - MX, arcLeft - pad),
|
||||
y0: Math.min(...ys) - MY,
|
||||
x1: Math.max(...xs) + MX,
|
||||
y1: Math.max(...ys) + MY,
|
||||
}
|
||||
|
||||
const ext = buildExternal({ sources, exits }, byPath, GAP, bounds, visualScale)
|
||||
const ext = buildExternal({ sources, exits }, byPath, bounds, visualScale)
|
||||
for (const xn of ext.extNodes) {
|
||||
bounds.x0 = Math.min(bounds.x0, xn.x - TNODE_BOUND - pad)
|
||||
bounds.y0 = Math.min(bounds.y0, xn.y - TNODE_BOUND - pad)
|
||||
bounds.x1 = Math.max(bounds.x1, xn.x + TNODE_BOUND + pad)
|
||||
bounds.y1 = Math.max(bounds.y1, xn.y + TNODE_BOUND + pad)
|
||||
bounds.x0 = Math.min(bounds.x0, xn.x - MX)
|
||||
bounds.y0 = Math.min(bounds.y0, xn.y - MY)
|
||||
bounds.x1 = Math.max(bounds.x1, xn.x + MX)
|
||||
bounds.y1 = Math.max(bounds.y1, xn.y + MY)
|
||||
}
|
||||
|
||||
return {
|
||||
@@ -918,7 +933,7 @@ export function buildTransitionGraph(data, pageTree, visits = [], visualScale =
|
||||
edges: [...edges, ...ext.edges],
|
||||
flows: [...flows, ...ext.flows],
|
||||
extNodes: ext.extNodes,
|
||||
arcs: spokes,
|
||||
arcs,
|
||||
bounds,
|
||||
}
|
||||
}
|
||||
|
||||
@@ -192,6 +192,10 @@ body {
|
||||
/* One line always: pagerite.js shrinks the font size to fit instead of
|
||||
wrapping (the themed size is the maximum). */
|
||||
white-space: nowrap;
|
||||
/* Shrink-wrap to the text: as a flex child of the column-direction
|
||||
#banner it would otherwise stretch full-width, making the empty banner
|
||||
area beside the text a link to the front page. */
|
||||
align-self: flex-start;
|
||||
margin: auto 1.25rem 0;
|
||||
padding-top: 1.5rem;
|
||||
color: var(--text);
|
||||
@@ -265,10 +269,9 @@ body:has(.multicol) #content {
|
||||
|
||||
body.editing #content {
|
||||
margin-left: var(--editor-w);
|
||||
padding-left: 1rem;
|
||||
/* gap between the docked editor and the content */
|
||||
/* No overflow clipping here: .editor-host lives outside this box
|
||||
(negative left), and .wide shrink-wraps to the remaining space. */
|
||||
/* No padding/gap here: the article area starts flush at the panel's right
|
||||
edge so that full-bleed .wide images (anchored to that edge below) line
|
||||
up with it exactly. */
|
||||
}
|
||||
|
||||
/* The sidebar's gutter space is needed by the editor instead. */
|
||||
@@ -276,33 +279,17 @@ body.editing #sidebar {
|
||||
display: none;
|
||||
}
|
||||
|
||||
/* While editing, the window itself does not scroll: the editor panel is
|
||||
exactly the remaining window height, and only the article area (#main)
|
||||
scrolls. Without the editor, normal full-page scroll applies. */
|
||||
body.editing {
|
||||
height: 100vh;
|
||||
overflow: hidden;
|
||||
}
|
||||
|
||||
body.editing #content {
|
||||
min-height: 0;
|
||||
grid-template-rows: 100%;
|
||||
}
|
||||
|
||||
body.editing #main {
|
||||
height: 100%;
|
||||
min-height: 0;
|
||||
overflow-y: auto;
|
||||
}
|
||||
|
||||
/* The editor host lives inside #content: it starts below the banner and
|
||||
ends above the footer. With the page scroll locked while editing, the
|
||||
panel exactly fills that space — the full available window height. */
|
||||
/* While editing, the window keeps scrolling normally (the overlay
|
||||
scrollbars take no layout space, so the vw-based .wide bleed stays exact
|
||||
and no horizontal scrollbar appears). The editor panel is fixed to the
|
||||
viewport's left edge; main.js sets its top each scroll frame — the
|
||||
banner's bottom edge while the banner is visible, else the viewport top.
|
||||
The panel scrolls internally. */
|
||||
.editor-host {
|
||||
position: absolute;
|
||||
top: 0;
|
||||
position: fixed;
|
||||
top: 0; /* main.js: banner bottom while visible, else 0 */
|
||||
bottom: 0;
|
||||
left: calc(0px - var(--editor-w));
|
||||
left: 0;
|
||||
width: var(--editor-w);
|
||||
}
|
||||
|
||||
@@ -822,18 +809,18 @@ body:has(.multicol) figure:has(.wide) {
|
||||
margin-inline: calc(-20vw - 1.25rem) 0;
|
||||
}
|
||||
|
||||
/* Editing: shrink the bleed to the space right of the docked editor. */
|
||||
/* Editing: shrink the bleed to the space right of the docked editor. The
|
||||
window keeps its overlay scrollbars while editing, so — unlike a classic
|
||||
scrollbar — they take no layout space and the vw math stays exact. */
|
||||
body.editing figure:has(.wide) {
|
||||
width: calc(100vw - var(--editor-w));
|
||||
margin-inline: calc(50% - (100vw - var(--editor-w)) / 2);
|
||||
}
|
||||
|
||||
/* Editing + multicol: the left gutter is 1/5 of the space right of the
|
||||
editor, and the bleed also crosses #content's 1rem editing gap plus
|
||||
main's 1.25rem left padding (the gutter shrink from the padding roughly
|
||||
cancels the rounding): −2rem in total. */
|
||||
editor, and the bleed also crosses main's 1.25rem left padding. */
|
||||
body.editing:has(.multicol) figure:has(.wide) {
|
||||
margin-inline: calc((100vw - var(--editor-w)) / -5 - 2rem) 0;
|
||||
margin-inline: calc((100vw - var(--editor-w)) / -5 - 1.25rem) 0;
|
||||
}
|
||||
|
||||
/* Narrow windows with a sidebar: below 102rem the symmetric gutters can no
|
||||
@@ -907,6 +894,30 @@ article h2 {
|
||||
(explicit img widths still shrink-wrap), while .wide keeps its full
|
||||
viewport bleed. */
|
||||
@media (max-width: 48rem) {
|
||||
/* Nav type shrinks fluidly as space runs out. The nav font-size is
|
||||
em-based both in base and in every theme override, so scaling the
|
||||
banner's font-size (nothing else in the banner is em-sized — brand and
|
||||
gaps use rem) reaches the nav through all themes with a single rule.
|
||||
2.6vw crosses 1rem at ≈38.5rem, so only genuinely narrow viewports
|
||||
shrink. */
|
||||
#banner {
|
||||
font-size: clamp(0.65rem, 2.6vw, 1rem);
|
||||
}
|
||||
|
||||
/* Tighter margins/padding/gaps: the 1.25rem side gutter is wasted space
|
||||
on a phone. */
|
||||
#brand {
|
||||
margin-inline: 0.6rem;
|
||||
}
|
||||
|
||||
#nav {
|
||||
padding: 0.25rem 0.6rem;
|
||||
}
|
||||
|
||||
#nav ul {
|
||||
gap: 0.15rem 0.9rem;
|
||||
}
|
||||
|
||||
#content {
|
||||
display: flex;
|
||||
flex-direction: column;
|
||||
@@ -918,7 +929,11 @@ article h2 {
|
||||
max-height: none;
|
||||
overflow-y: visible;
|
||||
border-radius: 0;
|
||||
padding: 0.5rem 1rem;
|
||||
padding: 0.4rem 0.8rem;
|
||||
/* Smaller type: the horizontal link strip fits roughly a third more
|
||||
items per line. The nested-list gaps below are em-based and shrink
|
||||
along. */
|
||||
font-size: 0.8rem;
|
||||
}
|
||||
|
||||
/* Only the main level becomes a horizontal wrapping strip; submenus stay
|
||||
@@ -926,7 +941,7 @@ article h2 {
|
||||
#sidebar > ul {
|
||||
flex-direction: row;
|
||||
flex-wrap: wrap;
|
||||
gap: 0.5rem 1.2rem;
|
||||
gap: 0.3rem 0.75rem;
|
||||
}
|
||||
|
||||
figure:has(.right),
|
||||
|
||||
+25
-1
@@ -23,6 +23,28 @@ let app = null
|
||||
let savedTitle = null
|
||||
let visible = false
|
||||
|
||||
// The panel is fixed to the viewport's left edge (pagerite.css) but tracks
|
||||
// the page: its top is the banner's bottom edge while the banner is visible
|
||||
// (= #content's top edge), and the viewport top once the banner has
|
||||
// scrolled away. The window keeps scrolling normally while editing.
|
||||
function trackPanelTop() {
|
||||
const content = document.getElementById('content')
|
||||
if (host && content) {
|
||||
host.style.top = `${Math.max(0, content.getBoundingClientRect().top)}px`
|
||||
}
|
||||
}
|
||||
|
||||
function startTrackingPanel() {
|
||||
trackPanelTop()
|
||||
addEventListener('scroll', trackPanelTop, { passive: true })
|
||||
addEventListener('resize', trackPanelTop)
|
||||
}
|
||||
|
||||
function stopTrackingPanel() {
|
||||
removeEventListener('scroll', trackPanelTop)
|
||||
removeEventListener('resize', trackPanelTop)
|
||||
}
|
||||
|
||||
export function openEditor(path, { mode = 'page' } = {}) {
|
||||
if (app) {
|
||||
// Shell already mounted: re-show it if hidden, switch to the requested
|
||||
@@ -36,9 +58,9 @@ export function openEditor(path, { mode = 'page' } = {}) {
|
||||
savedTitle = document.title
|
||||
host = document.createElement('div')
|
||||
host.className = 'editor-host'
|
||||
// Docked inside #content: below the banner, next to the article only.
|
||||
document.getElementById('content').prepend(host)
|
||||
document.body.classList.add('editing')
|
||||
startTrackingPanel()
|
||||
// Which tab is active; pagerite.js uses this to decide whether a pen click
|
||||
// closes the panel or switches tabs.
|
||||
document.body.dataset.editorMode = mode
|
||||
@@ -65,6 +87,7 @@ function showEditor() {
|
||||
host.style.display = ''
|
||||
host.firstElementChild?.classList.remove('closing')
|
||||
document.body.classList.add('editing')
|
||||
startTrackingPanel()
|
||||
visible = true
|
||||
dispatchEvent(new CustomEvent('pagerite:editor-shown'))
|
||||
}
|
||||
@@ -72,6 +95,7 @@ function showEditor() {
|
||||
export function closeEditor() {
|
||||
if (!visible) return
|
||||
visible = false
|
||||
stopTrackingPanel()
|
||||
document.body.classList.remove('editing')
|
||||
// dataset.editorMode is kept while hidden: the tabs use it to tell whether
|
||||
// a pagerite:editor-shown event targets them.
|
||||
|
||||
@@ -385,9 +385,11 @@ import "overlayscrollbars/overlayscrollbars.css";
|
||||
// Reading time pauses after 1 minute of inactivity and resumes on the
|
||||
// next mouse/touch/scroll/keyboard event.
|
||||
// Excluded: back/forward (popstate never pings), everything while the
|
||||
// editor is open (body.editing — admin noise, not visits), and the
|
||||
// analytics page itself (/_a), even though fetch-navigation treats it
|
||||
// like a normal article.
|
||||
// editor is open (body.editing — admin noise, not visits), and
|
||||
// navigations TO the analytics page (/_a — admin machinery, and the
|
||||
// server rejects it as a ping target anyway). Navigations AWAY from /_a
|
||||
// must ping: load() already fetched the target page without the preload
|
||||
// header, and without the ping that GET would flush to the crawler list.
|
||||
// Admins (when SSO is actually in use — with no auth proxy "admin" is
|
||||
// everyone's state) ping normally but with hide=1: the server then
|
||||
// records nothing and scrubs any session the same browser accumulated
|
||||
@@ -395,7 +397,7 @@ import "overlayscrollbars/overlayscrollbars.css";
|
||||
// See docs/analytics.md.
|
||||
function ping(to, fr = currentPath, read = 0) {
|
||||
if (document.body.classList.contains("editing")) return;
|
||||
if ((to && to === "/_a") || fr === "/_a") return;
|
||||
if (to && to === "/_a") return;
|
||||
const hide = ssoAvailable && isAdmin ? 1 : 0;
|
||||
const body = JSON.stringify({
|
||||
fr, to, hide,
|
||||
|
||||
+78
-33
@@ -109,6 +109,8 @@ class Visit(msgspec.Struct, omit_defaults=True):
|
||||
utm: dict[str, str] = {}
|
||||
#: Active reading time per path (seconds), keyed by path.
|
||||
read: dict[str, int] = {}
|
||||
#: HTTP status of the response when the path was first seen (200 or 404).
|
||||
statuses: dict[str, int] = {}
|
||||
|
||||
|
||||
class CrawlerHit(msgspec.Struct, omit_defaults=True):
|
||||
@@ -125,6 +127,8 @@ class CrawlerHit(msgspec.Struct, omit_defaults=True):
|
||||
referer: str = ""
|
||||
#: Raw query string of the landing URL (UTM tags can be parsed from it).
|
||||
query: str = ""
|
||||
#: HTTP status of the served response (200 or 404 for content pages).
|
||||
status: int = 200
|
||||
|
||||
|
||||
class AbuseHit(msgspec.Struct, omit_defaults=True):
|
||||
@@ -246,15 +250,15 @@ def _utm_tags(query: str) -> dict[str, str]:
|
||||
_CRAWLER_TIMEOUT = timedelta(seconds=10)
|
||||
|
||||
#: UAs of JS-running crawlers, which would register as visitors on their
|
||||
#: ping. Anything calling itself a "bot" matches; known crawlers without
|
||||
#: that token (GoogleOther) are listed as extra alternates. No source
|
||||
#: verification: a spoofed bot UA just lands in the crawler list, and
|
||||
#: ping. Anything calling itself a "bot" or "spider" matches; known crawlers
|
||||
#: without those tokens (GoogleOther) are listed as extra alternates. No
|
||||
#: source verification: a spoofed bot UA just lands in the crawler list, and
|
||||
#: scanners that probe telltale paths are caught by the abuse rules anyway.
|
||||
_BOT_UA = re.compile(r"bot|googleother", re.IGNORECASE)
|
||||
_BOT_UA = re.compile(r"bot|spider|googleother", re.IGNORECASE)
|
||||
|
||||
|
||||
def _is_bot_ua(ua: str) -> bool:
|
||||
"""True when the UA claims a crawler identity (Googlebot, Applebot, ...)."""
|
||||
"""True when the UA claims a crawler identity (bot or spider)."""
|
||||
return bool(_BOT_UA.search(ua))
|
||||
|
||||
#: Plain-404 count per IP that classifies it as abuse even without a
|
||||
@@ -312,6 +316,10 @@ class Store:
|
||||
pass # legacy schema / corrupt or unreadable file: start fresh
|
||||
#: client hash -> index of the current visit in data.visits
|
||||
self.sessions: dict[bytes, int] = {}
|
||||
#: visit index -> count events recorded for that visit, so
|
||||
#: ``_remove_visit`` can reverse all of them — not just the ones
|
||||
#: from the visit's creation. In-memory only, like ``sessions``.
|
||||
self._count_log: dict[int, list[tuple]] = {}
|
||||
#: ip -> external https origin of the latest document GET carrying
|
||||
#: one, stashed for the visit the client's initial ping starts.
|
||||
#: Internal or absent referers never touch the table.
|
||||
@@ -324,6 +332,9 @@ class Store:
|
||||
#: Document GETs that have not yet been matched by a ping. Kept
|
||||
#: in RAM only; expired entries are written to ``data.crawlers``.
|
||||
self.pending_crawlers: list[CrawlerHit] = []
|
||||
#: client hash -> {path: status} for recent document GETs, consumed
|
||||
#: by the matching ping to record the status of each visited path.
|
||||
self.pending_statuses: dict[bytes, dict[str, int]] = {}
|
||||
#: ip -> number of plain (non-telltale) 404s seen, in RAM only;
|
||||
#: reaching ``_ABUSE_404_THRESHOLD`` classifies the IP as abuse.
|
||||
self.not_found_counts: dict[str, int] = {}
|
||||
@@ -396,35 +407,44 @@ class Store:
|
||||
del table[key]
|
||||
|
||||
def _remove_visit(self, index: int) -> None:
|
||||
"""Delete a visit and reverse the counts its creation recorded.
|
||||
"""Delete a visit and reverse every count it recorded.
|
||||
|
||||
Used when a known visitor turns out to be an admin (hide=1 ping):
|
||||
the session is scrubbed from the stats. Views/transitions logged
|
||||
by later pings inside the visit lack per-event timestamps and are
|
||||
left as-is.
|
||||
the session is scrubbed from the stats. The in-memory
|
||||
``_count_log`` tracks each site-visit/view/transition count the
|
||||
visit produced, so the scrub reverses all of them — including the
|
||||
ones logged by later pings inside the visit.
|
||||
"""
|
||||
visit = self.data.visits[index]
|
||||
bucket = _bucket(visit.start)
|
||||
self._uncount(self.data.site_visits, bucket)
|
||||
views = self.data.views.get(visit.entry)
|
||||
if views is not None:
|
||||
self._uncount(views, bucket)
|
||||
if not views:
|
||||
del self.data.views[visit.entry]
|
||||
fr_map = self.data.transitions.get(visit.referer or "(direct)")
|
||||
if fr_map is not None:
|
||||
buckets = fr_map.get(visit.entry)
|
||||
if buckets is not None:
|
||||
self._uncount(buckets, bucket)
|
||||
if not buckets:
|
||||
del fr_map[visit.entry]
|
||||
if not fr_map:
|
||||
del self.data.transitions[visit.referer or "(direct)"]
|
||||
for event in self._count_log.pop(index, ()):
|
||||
kind = event[0]
|
||||
if kind == "site":
|
||||
self._uncount(self.data.site_visits, event[1])
|
||||
elif kind == "view":
|
||||
views = self.data.views.get(event[1])
|
||||
if views is not None:
|
||||
self._uncount(views, event[2])
|
||||
if not views:
|
||||
del self.data.views[event[1]]
|
||||
else: # transition
|
||||
_, fr, to, bucket = event
|
||||
fr_map = self.data.transitions.get(fr)
|
||||
if fr_map is not None:
|
||||
buckets = fr_map.get(to)
|
||||
if buckets is not None:
|
||||
self._uncount(buckets, bucket)
|
||||
if not buckets:
|
||||
del fr_map[to]
|
||||
if not fr_map:
|
||||
del self.data.transitions[fr]
|
||||
del self.data.visits[index]
|
||||
# Sessions store list indices; shift the ones past the removed visit.
|
||||
# Sessions and count logs store list indices; shift the ones past
|
||||
# the removed visit.
|
||||
for key, i in list(self.sessions.items()):
|
||||
if i > index:
|
||||
self.sessions[key] = i - 1
|
||||
self._count_log = {
|
||||
i - 1 if i > index else i: log for i, log in self._count_log.items()
|
||||
}
|
||||
|
||||
def _client_ip(self, client_hash: bytes) -> str:
|
||||
"""Return the IP stored for ``client_hash``, or "" if missing."""
|
||||
@@ -571,6 +591,7 @@ class Store:
|
||||
referer: str,
|
||||
client_hash: bytes,
|
||||
utm: dict[str, str] | None = None,
|
||||
status: int = 200,
|
||||
) -> Visit:
|
||||
now = datetime.now(UTC)
|
||||
visit = Visit(
|
||||
@@ -580,11 +601,20 @@ class Store:
|
||||
client=client_hash,
|
||||
utm=utm or {},
|
||||
)
|
||||
visit.statuses[entry] = status
|
||||
self.data.visits.append(visit)
|
||||
self.sessions[client_hash] = len(self.data.visits) - 1
|
||||
self._count(self.data.site_visits, _bucket(now))
|
||||
self._count(self.data.views.setdefault(entry, {}), _bucket(now))
|
||||
self._count_transition(referer or "(direct)", entry, now)
|
||||
index = len(self.data.visits) - 1
|
||||
self.sessions[client_hash] = index
|
||||
bucket = _bucket(now)
|
||||
fr = referer or "(direct)"
|
||||
self._count(self.data.site_visits, bucket)
|
||||
self._count(self.data.views.setdefault(entry, {}), bucket)
|
||||
self._count_transition(fr, entry, now)
|
||||
self._count_log[index] = [
|
||||
("site", bucket),
|
||||
("view", entry, bucket),
|
||||
("transition", fr, entry, bucket),
|
||||
]
|
||||
return visit
|
||||
|
||||
def track_entry(
|
||||
@@ -595,6 +625,8 @@ class Store:
|
||||
ua: str,
|
||||
full_path: str,
|
||||
accept_language: str = "",
|
||||
*,
|
||||
status: int = 200,
|
||||
) -> list[bytes]:
|
||||
"""Stash the entry referer/UTM tags and queue a pending crawler hit.
|
||||
|
||||
@@ -642,8 +674,10 @@ class Store:
|
||||
client=client_hash,
|
||||
referer=self.pending_referers.get(ip, ""),
|
||||
query=query,
|
||||
status=status,
|
||||
)
|
||||
)
|
||||
self.pending_statuses.setdefault(client_hash, {})[entry] = status
|
||||
return flushed
|
||||
|
||||
def _add_read(self, client_hash: bytes, path: str, seconds: int) -> None:
|
||||
@@ -697,8 +731,9 @@ class Store:
|
||||
if hide:
|
||||
# Admin ping: cancel pending crawler hits and scrub the session.
|
||||
self.pending_crawlers = [
|
||||
hit for hit in self.pending_crawlers if hit.client == client_hash
|
||||
hit for hit in self.pending_crawlers if hit.client != client_hash
|
||||
]
|
||||
self.pending_statuses.pop(client_hash, None)
|
||||
index = self.sessions.pop(client_hash, None)
|
||||
if index is not None and index < len(self.data.visits):
|
||||
self._remove_visit(index)
|
||||
@@ -730,6 +765,10 @@ class Store:
|
||||
return None, flushed
|
||||
index = self.sessions.get(client_hash)
|
||||
fr = fr_path or "(direct)"
|
||||
statuses = self.pending_statuses.setdefault(client_hash, {})
|
||||
target_status = statuses.pop(target, None) or 200
|
||||
if not statuses:
|
||||
self.pending_statuses.pop(client_hash, None)
|
||||
if index is None or index >= len(self.data.visits):
|
||||
# No known session: the initial ping of a fresh page load (or
|
||||
# missing data after a server restart) — start a visit.
|
||||
@@ -740,16 +779,22 @@ class Store:
|
||||
self.pending_referers.pop(ip, ""),
|
||||
client_hash,
|
||||
utm=self.pending_utms.pop(ip, {}),
|
||||
status=target_status,
|
||||
)
|
||||
else:
|
||||
visit = self.data.visits[index]
|
||||
now = datetime.now(UTC)
|
||||
bucket = _bucket(now)
|
||||
log = self._count_log.setdefault(index, [])
|
||||
if target.startswith("/"):
|
||||
self._count(self.data.views.setdefault(target, {}), _bucket(now))
|
||||
self._count(self.data.views.setdefault(target, {}), bucket)
|
||||
log.append(("view", target, bucket))
|
||||
self._count_transition(fr, target, now)
|
||||
log.append(("transition", fr, target, bucket))
|
||||
# First-seen only: repeat pages and repeated exits don't append.
|
||||
if visit.entry != target and target not in visit.trail:
|
||||
visit.trail.append(target)
|
||||
visit.statuses[target] = target_status
|
||||
self._save()
|
||||
visit_index = index if index is not None and index < len(self.data.visits) else None
|
||||
return visit_index, flushed
|
||||
|
||||
+4
-3
@@ -853,7 +853,7 @@ async def analytics_ping(ping: AnalyticsPing, request: Request) -> None:
|
||||
_schedule_client_enrichment(flushed_clients)
|
||||
|
||||
|
||||
def _track_entry(path: str, request: Request) -> list[bytes]:
|
||||
def _track_entry(path: str, request: Request, *, status: int = 200) -> list[bytes]:
|
||||
"""Stash the referer/UTM tags and queue a pending crawler hit for the GET.
|
||||
|
||||
Nothing is counted on the GET itself — the client's /_a ping starts the
|
||||
@@ -890,6 +890,7 @@ def _track_entry(path: str, request: Request) -> list[bytes]:
|
||||
request.headers.get("user-agent", ""),
|
||||
full_path,
|
||||
request.headers.get("accept-language", ""),
|
||||
status=status,
|
||||
)
|
||||
|
||||
|
||||
@@ -1228,7 +1229,7 @@ async def show_page(request: Request, path: str) -> Response:
|
||||
# Category label without a landing page: placeholder with the pen
|
||||
# to create it (404 — no page here, but the node is real).
|
||||
if _is_trackable_path(path):
|
||||
flushed = _track_entry(path, request)
|
||||
flushed = _track_entry(path, request, status=404)
|
||||
_schedule_client_enrichment(flushed)
|
||||
return _html_response(
|
||||
request,
|
||||
@@ -1254,6 +1255,6 @@ async def show_page(request: Request, path: str) -> Response:
|
||||
accept_language,
|
||||
)
|
||||
asyncio.create_task(_enrich_client(client_hash))
|
||||
flushed = _track_entry(path, request)
|
||||
flushed = _track_entry(path, request, status=404)
|
||||
_schedule_client_enrichment(flushed)
|
||||
return _html_response(request, "not-found", path, 404)
|
||||
|
||||
@@ -27,15 +27,30 @@
|
||||
let my = 0
|
||||
let lastMove = 0
|
||||
|
||||
addEventListener('mousemove', e => {
|
||||
// Mouse and touch tracked with separate listeners (pointer events arrive
|
||||
// too late on some mobile browsers). Passive listeners: a drag on the
|
||||
// banner still scrolls the page — on browsers that stop delivering
|
||||
// touchmove once scrolling takes over, the gaze just follows until then.
|
||||
const track = (x, y) => {
|
||||
const r = c.getBoundingClientRect()
|
||||
|
||||
// Convert viewport coordinates into the canvas' CSS-pixel coordinate
|
||||
// system. This remains correct with browser zoom, CSS transforms, etc.
|
||||
mx = (e.clientX - r.left) * c.clientWidth / r.width
|
||||
my = (e.clientY - r.top) * c.clientHeight / r.height
|
||||
mx = (x - r.left) * c.clientWidth / r.width
|
||||
my = (y - r.top) * c.clientHeight / r.height
|
||||
lastMove = performance.now()
|
||||
})
|
||||
}
|
||||
|
||||
addEventListener('mousemove', e => track(e.clientX, e.clientY))
|
||||
|
||||
const trackTouch = e => {
|
||||
const t = e.touches[0]
|
||||
|
||||
if (t) track(t.clientX, t.clientY)
|
||||
}
|
||||
|
||||
addEventListener('touchstart', trackTouch, { passive: true })
|
||||
addEventListener('touchmove', trackTouch, { passive: true })
|
||||
|
||||
let gx = 0.5
|
||||
let gy = 0.5
|
||||
|
||||
Reference in New Issue
Block a user