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Author SHA1 Message Date
LeoVasanko 09ebc63690 Record response status per path; mark 404 trails red in the viewer
Document GETs now stash their status (200/404) in a pending table,
consumed by the matching ping: visits gain a per-path statuses map and
crawler hits a status field. Trail links with a 404 status render in
red with the status code in the tooltip, alongside the read time.
2026-08-24 19:43:23 +00:00
LeoVasanko 2868843028 Fix inverted client filter in admin hide ping
The hide=1 branch kept the admin's own pending crawler hits (==) instead
of discarding them (!=), so an admin's document GETs flushed to the
crawler list 10s later while every other client's pending hits were
wrongly dropped. This is why ordinary admin browsers showed up as
crawlers.
2026-08-24 19:40:12 +00:00
LeoVasanko 6fcebaea3f Transition map: svg-scaled fonts, border-clipped pill text, tight crop
- Fonts scale with the svg instead of the --u constant-screen-size
  compensation (ResizeObserver machinery removed)
- Larger node text (slug 19px, count 15px)
- Pill labels no longer ellipsis-truncated: text is clipped at the pill
  border via per-node clipPaths; captions center when they fit and anchor
  left on overflow so the title's beginning survives; count lines stay
  centered
- Bounding box crops to pill half extents plus the ribbon halo instead of
  the diagonal radius, removing the large top/bottom margins
2026-08-24 18:35:36 +00:00
LeoVasanko 4a48d08a19 Analytics layout: larger charts with natural-width cap, one-line totals
- Charts grow to a larger intrinsic size (1052x174) and never upscale
  past it; centered with equal side margins above the cap, full width
  below, svg always within page bounds; overflow visible so wider fonts
  don't clip at the viewBox edge
- Totals row aligns its left edge with the charts and shrinks (gap first,
  then font) via container units to always stay on one line
2026-08-24 18:21:58 +00:00
LeoVasanko e3e29251ca Transition map: cull invisible connectors, stable beads, lane labels
- Cull connections whose thin middle would render below ~0.8px
  (MIN_WMID); drop external source/exit nodes whose connectors are
  all culled, while site page nodes always stay
- Bead simulation persists across data reloads: emitters keyed per edge
  direction, beads tracked by progress, so unrelated count changes no
  longer reshuffle bead positions
- Bead speed relative to span length: constant 1.5s traversal per edge
- Top lane labeled with a house icon; all lane labels left-aligned just
  past the source pill (half height on near-vertical branch lanes), with
  guides running to the lane end so long slugs are never truncated
2026-08-24 17:58:02 +00:00
LeoVasanko 8affc41289 Tighter analytics chart chrome
- Unified chart text at 11px system-ui; fixed size independent of theme font
- Day view y axis reads "visits / 5 min" / "views / 5 min"
- Left margin and y tick spacing tightened (MARGIN_L 56 -> 40)
- Gap between visits and views charts removed
- Legend repositioned for the larger font
2026-08-24 17:26:30 +00:00
LeoVasanko 2de4717230 Fix week overlay alignment, in-plot ISO week legend, shorter charts
- weeklySeries shifts overlaid weeks onto the current week's time axis so
  they overlay inside the plot instead of overflowing left; oldest weeks
  paint first, current week on top
- Legend moved inside the visits chart's top right: current ISO week in
  accent, past weeks as a single muted "Week M" / "Week M–N" specimen
- Past week curves use the muted color instead of faded accent
- Chart height reduced ~30% (180 -> 126)
2026-08-24 17:03:49 +00:00
LeoVasanko 563e8fcaf2 Rework analytics chart scaling; self-contained SVG charts
- Charts render as single SVGs with axis labels inside the viewBox,
  replacing the stretched plot + HTML overlay labels
- Rolling ranges end at now, t0 aligned to UTC day; bucket size follows
  the window (6h up to 31 days) so "all" at its 30-day minimum renders
  identically to "month"
- X labels always centered on their true position; no edge-align shifting
- rangeWindow simplified to rolling spans ending at now
- TransitionGraph "all" visual scale floored at the 30-day plot minimum
2026-08-24 12:31:25 +00:00
LeoVasanko 921a5484a2 Fixed-sigma smoothing of traffic history plots. 2026-08-24 05:54:43 +00:00
LeoVasanko 0e2e52fa45 Use last 24h/7d/30d/365d/all analytics data. Previously some fields were unfiltered and weekly view was based on calendar weeks. 2026-08-24 05:42:32 +00:00
LeoVasanko 075848f782 Crawlers should include all sorts of spiders along with bots and googleother. 2026-08-24 05:28:05 +00:00
LeoVasanko 7b8899af92 Transition map: bounded node scaling, concentric branch lanes, exit row at bottom 2026-08-24 04:47:06 +00:00
LeoVasanko 6d2ae104d7 Fix analytics classification: ignore bot-UA pings, skip preload GETs.
JS-running crawlers (Googlebot, GoogleOther, Applebot) execute pagerite.js
and send navigation pings, registering as visitors. Pings whose User-Agent
matches _is_bot_ua (any "bot" token plus listed exceptions) are now
ignored, so their document GETs flush to the crawler list as intended. No
source verification: a spoofed bot UA merely lands in the crawler stats,
and path-based abuse classification catches scanners regardless.

Idle-time link preloads from pagerite.js were queued as pending crawler
hits and flushed to the crawler list whenever the user navigated more than
10s later, so real visitors' subpage loads showed up as crawler hits.
Preload fetches now carry an x-pagerite-preload header and the document
GET handler skips tracking for them; the ping sent on actual navigation
does the counting.
2026-08-22 18:23:38 +00:00
LeoVasanko b7fc543a83 Transition graph layout follows navigation. 2026-08-22 18:10:44 +00:00
LeoVasanko b868033ddc Pill shaped nodes 2026-08-22 15:48:33 +00:00
LeoVasanko 8aad64cced Analytics layout update, larger, consistent text sizing. 2026-08-22 14:45:56 +00:00
LeoVasanko 319163ee7e Page caching and zstd compression. Avoid useless fetching. Mobile layouts of navigation menus improved. 2026-08-22 14:05:12 +00:00
LeoVasanko 87b16b7144 Implement /robots.txt and /sitemap.xml. Update dev proxy to all-by-default. 2026-08-22 12:13:17 +00:00
LeoVasanko 20ae6501f2 Add dynamic /sitemap.xml and /robots.txt endpoints 2026-08-22 12:01:18 +00:00
LeoVasanko a16fe88114 Auto select day if less than 24h data for new sites. 2026-08-22 01:51:36 +00:00
LeoVasanko c77598adc7 Fine tuning date formatting. 2026-08-22 00:09:57 +00:00
LeoVasanko 29f8fac013 Slightly prettier analytics URL 2026-08-21 23:58:00 +00:00
LeoVasanko 6199e5a69e Support for UTM tags in transition graph as source sites. 2026-08-21 23:50:01 +00:00
LeoVasanko 375b4b6bdb analytics: unify visitor cell across visits, crawlers and abuse tables 2026-08-21 23:32:46 +00:00
LeoVasanko fdb3e42d6f analytics: shared Client struct, grouped abuse paths, unified visitor cell 2026-08-21 23:16:15 +00:00
LeoVasanko 51a6a16221 Neater abuse table formatting. 2026-08-21 22:31:37 +00:00
LeoVasanko 0798e24d24 Desaturated house emojis 2026-08-21 22:03:55 +00:00
LeoVasanko 3be2d08ac9 SI formatting of large visitor numbers. 2026-08-21 21:36:57 +00:00
LeoVasanko b7d5b23ae6 Cleaner formatting of utm tags in visitor table. 2026-08-21 21:22:16 +00:00
LeoVasanko 6eaa1c1a8b analytics: 24h day view with bar chart for precise realtime stats. Tables redesigned with cleaner layout. Tracking article read times. Adjust connection graph visualizations by time range. Other cleanup and supporting systems. 2026-08-21 20:14:04 +00:00
LeoVasanko f341d22aa0 Improved fake traffic generation with abuse bots, utm tags etc. 2026-08-21 20:10:41 +00:00
LeoVasanko 1a479ceb24 Add --dbip CLI flag to auto-download/update the DB-IP MMDB database.
Downloads the latest dbip-city-lite-YYYY-MM.mmdb.gz before starting the
server, skipping when the local database is current, falling back to the
previous month on 404, and removing older databases after an update.
Promotes httpx to a runtime dependency.
2026-08-21 03:09:04 +00:00
LeoVasanko ff553d018a Default scheme, host and port for fake_traffic script. 2026-08-21 02:52:53 +00:00
LeoVasanko c807d48a13 Add more external content in seed data. 2026-08-21 02:50:36 +00:00
LeoVasanko 9c383c1c8b Change default port mapping to 8100/8200/8210 (prod/vite/dev). Vite gets different port to avoid caching problems when switching between it and prod. 2026-08-21 02:49:18 +00:00
LeoVasanko 462e995adc Add external link (referer/outgoing) display on connection graph. 2026-08-21 02:44:54 +00:00
LeoVasanko ea069b98da Fix analytics app not mounting on fetch-navigation to /_a
load() queried the live document for the pagerite:analytics-src meta,
but the swap never touches <head> — the meta only exists in the fetched
doc, so the app never mounted unless /_a was loaded directly. Also cache
the fetched HTML so the post-swap preload doesn't re-GET the page we
just navigated to.
2026-08-21 01:53:39 +00:00
LeoVasanko deb5419c47 analytics improvements:
- keep visitor charts y-axis minimum range at 10
- keep 'all' chart x-axis minimum span at 30 days
- group crawler hits by (ip, ua) and list top pages visited, show crawler page load counts as N× prefix
- store and display geoip city, keep geoip country overwrite
- stream live updates over WebSocket /_api/ws/analytics
- include family ring arcs in transition map crop bounds
- remove top UA summary, limit crawlers to 10 and visits to 20
- human-readable relative timestamps with UTC tooltip
2026-08-21 01:36:58 +00:00
LeoVasanko 242b62784c Add fake traffic generator script
Uses Playwright to drive Chromium through real internal link clicks,
so pagerite.js analytics pings create normal visits. Also fires HTTP
GETs with crawler user-agents to record crawler hits.

Features:
- script-local deps via uv add --script (playwright, httpx)
- rotating pool of real public IPs via X-Forwarded-For
- Poisson inter-arrival delays between sessions/hits
- configurable browsers, crawlers, clicks, and dwell time
2026-08-20 23:37:02 +00:00
LeoVasanko f78229bd30 Refactor analytics to /_a instead of under article pages. 2026-08-20 23:16:51 +00:00
LeoVasanko 7f4bc8efa4 Ignore devserver health probe in analytics tracking
The devserver polls /?from=devserver.py to check backend readiness.
Without this exclusion each poll is recorded as a crawler hit. Only
exclude the exact case: front page, that query string, and 127.0.0.1,
so remote visitors cannot hide traffic by copying the parameter.
2026-08-20 22:16:11 +00:00
LeoVasanko 3100010335 Transition map: count-scaled edges, bead flows, external links
- Edge widths grow logarithmically with the connection count (~1 px at
  a single count, uncapped); connections below 1% of total traffic are
  pruned, bounding the graph to ~100 edges.
- Beads: per-direction flows emitted at a rate linear in the count,
  each bead simulated independently in JS (no in-flight limit), offset
  onto right-hand lanes so opposing flows don't collide, running under
  the node circles with a glow.
- External links: referer origins as a node row above the map, exit
  origins fanned outwards from their source page.
- Transitions are now stored per 5-minute bucket (sparse
  from -> to -> bucket -> count) so the graph filters by time range
  like the other series; legacy analytics files are discarded.
2026-08-20 22:06:29 +00:00
LeoVasanko 7556bb7f4f analytics: add crawler tracking, pretty UA/IP display and copy-to-clipboard 2026-08-20 20:31:04 +00:00
LeoVasanko 1a1a21712e Add country flags. 2026-08-20 19:47:56 +00:00
LeoVasanko f0e6162f02 Extended analytics data collection. 2026-08-20 19:40:05 +00:00
LeoVasanko b4e8fad090 Implement analytics feature
Add server-side visit analytics collection, a public-page ping endpoint,
and a full-screen AnalyticsView for admins.

Backend:
- Add pagerite/analytics.py: Analytics/Visit model, Store, and persistence
- Wire /_a ping endpoint and GET /_api/analytics into pagerite/app.py

Frontend:
- Add full-screen AnalyticsView with visitor charts and transition map
- Add VisitorCharts and TransitionGraph subcomponents
- Add analytics JS helpers in frontend/src/analytics/
- Send navigation pings from frontend/src/pagerite.js
- Mount AnalyticsView from frontend/src/main.js
- Document the feature in docs/analytics.md and update AGENTS.md
2026-08-20 18:43:57 +00:00
LeoVasanko 11f8de2df5 Fix pretty scrollbars not appearing in production. 2026-08-19 16:33:44 +00:00
LeoVasanko 81f08e7760 Updated docs 2026-08-19 16:11:42 +00:00
LeoVasanko 1d65a57fdf SEO/social meta for content pages; full-height site editor
- views.py: description, canonical, Open Graph and twitter:card tags
  from heuristics over the rendered article — first paragraph as
  description, share image prefers a {.hero} image, then first raster,
  then first SVG; first <video> becomes og:video; published/modified
  times from the node. Absolute URLs from the request base.
- SiteEditor: panel fills the full window height; the brand-HTML and
  custom-CSS CodeMirror windows grow to share leftover space equally
  instead of fixed max-heights.
2026-08-19 15:52:24 +00:00
LeoVasanko e175b39f35 Full height site editor panel. 2026-08-19 02:19:30 +00:00
38 changed files with 6881 additions and 688 deletions
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@@ -2,6 +2,8 @@
!.gitignore
*.lock
*.kantadb
pagerite.analytics.json
dbip-*.mmdb*
/pagerite/frontend-build
package-lock.json
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@@ -5,297 +5,38 @@
Please instead ask the user to see from dev tools what you need, e.g. to look up something in DOM or log. Use console.log for debugging where needed (and otherwise for permanently kept useful messages in the app).
## What this is
Pagerite: a single-user CMS/blog. FastAPI serves HTML rendered in Python
with html5tagger; content is persisted in a kanta database and rendered on
the fly per request. Vue is used only for interactive bits (editing tools),
not for the public pages. See `docs/design-principles.md` for the design.
## Layout
- `pagerite/` — the Python backend package (hatchling build target).
- Server run by CLI entry point `uv run pagerite` (no auto reloads, build needed)
- Dev mode `scripts/devserver.py` (which the user mostly uses for auto reloads, no build needed)
- Avoid running the server yourself, ask the user to test
- `app.py`the FastAPI app. FastAPI's built-in API docs are disabled
(`docs_url`/`redoc_url`/`openapi_url=None`) because `/docs` belongs to
our content. Our own routes (content pages, `/_api/...`, `/_f/...`) are
registered BEFORE `frontend.route(app, "/")` is called: fastapi-vue
inserts its file routes at the position where
`route()` was called (during `load()` in the lifespan), so anything
defined earlier wins. The one exception is the content catch-all
`/{path:path}`, registered AFTER `frontend.route()` so that built
frontend assets still take priority over content slugs. The `Frontend`
is constructed with `spa=False` explicitly: it only serves the built
files without a catch-all. The build mirrors the URL space — hashed
immutable assets under `/_assets/`, `favicon.ico` at the site root —
and an `index.html` in the build would become a `/` route, so leave it
out of the build to keep `/` ours.
- `data.py` — msgspec Structs for the kanta database. The site structure
is a tree: `Data.menu` maps top-level slugs to `Node`s, each with
`children` keyed by slug — the URL path is the slug chain. The front
page is whichever top-level node has slug "" (parallel to the other
main level pages, not their parent); it cannot have children, and
renaming its slug away leaves no front page ("/" redirects to the
first nav item). `Node.content` is
the Markdown page, or None for a pure category label whose URL renders
a placeholder page (while nav links to it point at its first child);
every label's title and slug are editable. Siblings order by the fractional `Node.order` key: a moved
item gets a fresh key relative to its new siblings, all others keep
theirs. `resolve`/`find_slot` walk the tree by path; moves are slot
detach/attach carrying the whole subtree. Legacy flat `Data.pages`
(pre-tree databases) migrates into `menu` on startup. The app owns
the `Data` object; reads are plain attribute access, writes in
`kanta.transaction(...)`.
`Data.files` is a content-addressed store (blake3[:12] + extension)
mapping file names to bytes, served at `/_f/{name}` with immutable
caching; pages reference files by absolute `/_f/` URLs so hierarchy
moves never break them. `Node.banner` is a raw trusted HTML snippet
for the header banner (img, styled div, canvas+script...); empty
inherits from the node's ancestors (front page last). It is rendered
AFTER the banner design's artwork, so author code (e.g. a `<style>`
override) always wins over the design's own styles.
`Node.banner_design` picks a banner design: a theme folder name whose
`banner.css` styles it and whose `banner.html` (arbitrary markup:
canvas + style + script) or `banner.svg` supplies the inline artwork
(wrapped in `div[data-design]`); "" = explicitly no design, None =
inherit (nearest ancestor, front page last, then the active theme's
own design if it ships banner.css/banner.svg/banner.html). The design's banner.css
is linked in `<head>` (id `pagerite-banner`) between the theme and the
custom CSS.
`Data.version` is bumped on every write
and embedded in page ETags so nav-affecting changes invalidate caches.
`Data.brand` is the site name (header link + `<title>` suffix), editable
in the site editor via `/_api/settings`; empty = no header link and
no `<title>` suffix. `Data.brand_html` is raw trusted HTML replacing the
brand link entirely (rendered in a `#brand` div on top of the banner,
next to the nav) — site-wide, not per-page like banners; edited in the
site editor with image/video upload into `Data.files`. `Data.theme` is
the active theme name (empty =
none/base only); themes are folders in `pagerite/themes/{name}`
containing `theme.css` and/or `banner.css` (+ `banner.svg` artwork and
any extra assets the CSS references, like summer's `grass.svg`),
served by the backend at `/_themes/{name}/...` — read from disk per
request (etag by mtime), never built, so on-disk edits show on the
next page load even in prod. The theme selector and banner-design
selector enumerate these folders via `GET /_api/settings`.
`Data.custom_css` is raw trusted CSS injected inline in every page
`<head>` (id `pagerite-user`) and swapped during fetch-navigation;
editable in the site editor. Font picks (heading/body/brand) in the
site editor are stored as plain `:root` rows in `custom_css`
(`--font-body: var(--font-source-sans);` format — parsed out and
rewritten on change, the `:root` block added/removed as needed),
referencing the per-family variables (`--font-source-sans` etc.) from
pagerite.css;
the base stylesheet's `--font-brand` defaults to `var(--font-heading)`.
`Data.favicon` names a file in the content-addressed `files` store,
uploaded/cleared in the site editor via `PUT`/`DELETE
/_api/settings/favicon`; when set it is linked as `<link rel="icon">`
on every page, otherwise browsers fall back to the build's
`/favicon.ico` by convention.
- `markdown.py` — markdown-it-py renderer (html passthrough + attrs,
footnote, deflist, tasklists, admon, gfm_autolink, sub/superscript
plugins; typographer + breaks on). Custom
image rule: relative srcs resolve against the page path; an image
standing alone in its paragraph becomes a figure (captioned when
titled), while inline-with-text images and raw <img> HTML stay plain.
A `{dates}` line expands to the article's
published/updated dateline (`p.dateline`, from `Node.created`/
`modified`; left literal in previews of unsaved pages).
- `views.py` — the shared page layout as an html5tagger `Template` with
placeholders (`Title`, `Brand`, `Banner`, `Nav`, `Sidebar`, `Main`), nav
rendering straight from the `Data.menu` tree (siblings sorted by
`Node.order`; nav links to content-less labels point at their first
child via `first_leaf`, the first published descendant with content),
and page/404 rendering. If the markdown contains its own h1, the page title
is NOT rendered as an additional h1 (it still supplies <title> and nav
labels). The navbar holds
top-level items only; the current section's subitems go to a left
`#sidebar` as a nested list (the section's direct children plain,
deeper levels indented with article-list-style markers), which is
rendered when the section offers at least two
published items, or exactly one while viewing anything other than that
only page — the section index, a 404, a grandchild (so those pages can
reach the child), and also on that only page itself when it has
published children of its own; no aside element at all on the front
page, leaf
pages and the sole childless page of a one-page section. Also,
category labels are nodes without content — None *or* empty markdown —
and their nav links point at their first child page. Dynamic regions have stable ids
(`#page-banner`, `#nav`, `#sidebar`, `#main`) for fetch-navigation swaps
(`#sidebar` may be absent on either side of a swap).
- `seed.py` — demo content written only when the database is first
created, via a `@kanta.bootstrap` handler in `app.py`.
- `frontend/src/` — the Vue editor and public-page entries.
- `main.js` — Vue editor app entry, mounts the tabbed EditorShell.
- `pagerite.js` — public page entry; runs fetch-navigation (backed by an
in-memory page cache: every visible internal link — and the current
page — is fetched once at load, clicks are then served from JS with no
fetch, and the editors' `loadPlain` keeps the cache current via a
`pagerite:page-fetched` event; articles are `cache-control: no-cache`
on the wire), scroll-reveal,
OverlayScrollbars on `document.body` (floating, auto-hiding scrollbars
that never reserve layout space or shift the page when appearing;
native scroll APIs like `window.scrollTo` keep working; themed via the
`--os-*` variables in pagerite.css),
brand shrink-to-fit (the themed size is the maximum; JS reduces the
font-size so a long brand or narrow viewport still fits one line),
code copy buttons, and the auth check. It first probes `GET /auth/api/settings`
to detect whether Paskia SSO is available, then `GET /_api/settings` to
learn the current session's admin status. The same reverse proxy that
gates `/_api` returns 401 for anonymous users, 403 for users without
the admin permission, and 200 for admins. When Paskia is detected, a
🔑 login link (anonymous) or 🔐 profile link (logged in) is shown in
the banner corner; both are plain `<a href="/auth/">` links (Paskia
does not support being iframed, so we navigate normally), and a
`pageshow` handler re-probes auth when history navigation restores a
cached page. Admins also get the 🖊️ page/banner edit pens
and a ⚙️ site-settings pen (asset URLs from the
`pagerite:editor-src`/`-css` meta tags). If no Paskia SSO is
detected (dev/no proxy), editing is left open. Pages themselves render
identically for everyone; the real gate is the auth proxy in front of
all of `/_api`. The backend links the stylesheets in a fixed order —
base (Vite build), theme, banner design, custom CSS last — each with
a stable id so the site editor can swap them in place.
- `assets/` — shared styles and data files built by Vite and served hashed
under `/_assets/`: `pagerite.css` (base layout + conservative
variables), `pygments.css`,
and `fonts/` (self-hosted Source
Sans 3/Source Serif 4/Fraunces/Literata/Cormorant/Playfair
Display/Inter/Montserrat/Fira Code/Cause/Exo 2/New Rocker
variable woff2). The `::view-transition*` block at the end of `pagerite.css` (from
termotohtori.fi) is fragile — do not tweak. Themes are NOT built:
`pagerite/themes/{name}/theme.css` (theme overrides and font picks:
`purple` = dark dusk palette with Fraunces/Literata and a tilted
oversized gradient brand; `corporate` = light-first with automatic
`prefers-color-scheme` dark mode, Montserrat/Inter and a huge solid
brand; `nitro` = racing/HUD style following `prefers-color-scheme`
(warm light-grey page, deep violet in dark), Montserrat/Literata,
black as an accent only, a straight orange blade under the banner, and
an orange racing-tab nav clipped with a bezier `shape()`; `summer` =
light playful meadow, one palette sampled from its illustrated
`banner.svg` (sky/grass/sun/flower pink), Fraunces/Literata, a tilted
gradient brand, flower bullets, and a layered-parallax banner (sun
rises, clouds drift, nearer hills move less) with idle animations
(swaying flowers, floating clouds, breathing sun glow) wrapped in
`prefers-reduced-motion: no-preference`); standalone banner designs
(no theme.css) ship as `eyes` (a canvas critter in the grass) and
`stars` (a drifting starfield)) and the
companion `banner.css` banner designs are served by the backend.
- Vite builds ES-module `.js` outputs; the backend renders `<script
type="module">` for them (module scripts defer by default).
- The database file is `pagerite.kantadb` in the cwd (`PAGERITE_DB`
overrides); gitignored. Do not delete it without asking.
- `scripts/fastapi-vue/` — helper scripts from the fastapi-vue template
(build hook etc.), do not edit.
- `frontend/` — the Vue editor as a single tabbed `EditorShell.vue` mounted
in a host div created inside the static document. 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 — `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">`), and `StructureEditor.vue` (the
vue-draggable structure tree with
always-editable title/slug inputs per row). Media uploads everywhere use
🖼️ icon buttons (pasting into the editor works too). The article, banner and
site-settings pens are shorthands that open the shell on the matching tab;
once open, clicking a pen switches tabs (and retargets the editors to the
current page) instead of closing/remounting. The ✕ in the tab bar closes
the shell (Escape too); tabs have no close buttons of their own. Closing
only HIDES the shell — the Vue app stays mounted, so page-editor state
(unsaved text included) survives until a real page reload; saving there is
explicit (💾/Ctrl+S) and refreshes the page regions in place. Admin panels
never reload the page. In-place
page re-rendering shared by the banner/site/structure tabs lives in
`swapdoc.js` (`runScripts`/`loadPlain`: fetch a page, swap the dynamic
regions, replaceState). Placeholder texts are reserved for showing the
actual default in effect when a field is left empty (e.g. the pending
row's slug derived from its title); labels and help are real elements or
tooltips, never placeholders.
Everything saves immediately as you edit (brand/title/CSS debounced,
slug on commit since it renames the path), theme change swaps the
stylesheet in place, tree rows navigate in place without transitions when
focused, and the front page is a root-only row whose empty slug is
editable like any other. Every
non-empty list (and the root) ends with a non-draggable footer row
(vuedraggable `#footer` slot): clicking it starts a new pending page at
that level (its slug placeholder shows the slug derived live from the
title being typed), and while dragging it is the list's "end of list" drop
target. Committing a pending page PUTs it with empty markdown (creates
an empty page that renders with its title — saving never deletes;
deletion is the page editor's explicit choice: saving trimmed-empty
text issues a REST DELETE), then switches to the page editor tab for
the actual writing. Dropping ON the lower part of a row moves the page
under that row (the child list's container invisibly overlaps its own
row's bottom via negative margin — Sortable inserts it as the first child
natively), while a row's exposed top edge inserts a sibling before it. Row
indentation is structural (each nested list margin-indents itself), so a
dragged row previews its whole subtree at the target list's depth. The
shell is dynamic-imported onto the content page by pagerite.js when an edit
pen is clicked (the pens are injected by pagerite.js after the session
validates; they carry `data-editor-src`/`data-editor-css`/`data-editor-mode`).
In dev, modules load from the Vite dev server (`PAGERITE_VITE_URL`),
in prod from the hashed build assets resolved via
`frontend-build/.vite/manifest.json`. `vite.config.js` sets
`appType: 'mpa'` (no SPA fallback) and builds with `manifest: true`,
`assetsDir: '_/assets'` (so the build mirrors the URL space;
`frontend/public/favicon.ico` lands at the build root and is served at
`/favicon.ico`). JS inputs are `src/main.js` and `src/pagerite.js`, plus
`src/assets/pagerite.css` as a separate stylesheet entry; theme and
banner-design CSS are NOT built — they live in `pagerite/themes/{name}/`
and are served by the backend. There
is no `index.html` source (it would shadow `/` and turn missing dev paths
into an empty Vue shell). All outputs are ES modules. The build sets
`preserveEntrySignatures: 'exports-only'` because main.js is consumed
via dynamic `import()` for its `openEditor`/`closeEditor` exports — Vite
app builds otherwise strip unused entry exports, leaving dead edit pens.
In dev the backend links theme/banner-design stylesheets like in prod
(`/_themes/...`); only the base CSS is Vite-injected from JS, and
pagerite.js then re-appends the `#pagerite-theme`/`#pagerite-banner`/
`#pagerite-user` elements to restore the canonical order (base < theme <
design < custom CSS). Theme switches in the site editor simply swap the
`#pagerite-theme` link href, identically in dev and prod.
vite-plugin-fastapi.js has an
auto-upgrade marker — edit `vite.config.js`, not the plugin.
- `docs/` — design documentation.
Pagerite is a CMS. See `docs` for the full design and implementation details. Key files for code changes:
- `pagerite/` — Python backend package (hatchling build target).
- `app.py` — FastAPI app and route registration.
- `data.py`msgspec Structs for the kanta database.
- `markdown.py` — markdown-it-py renderer.
- `views.py` — shared page layout and rendering.
- `seed.py` — demo content, written only on first database creation.
- `analytics.py` — visit analytics collection (see `docs/analytics.md`).
- `frontend/src/` — Vue editor and public-page JS entries.
- `main.js` — Vue editor app entry.
- `analytics-main.js` — analytics page entry (mounts `AnalyticsView` at `/_a`).
- `pagerite.js` — public page entry.
- `assets/` — base CSS, Pygments styles, fonts.
- `scripts/devserver.py` — dev server with auto reload (the user mostly uses this; avoid running the server yourself, ask the user to test).
Server run by CLI entry point `uv run pagerite` (no auto reloads, build needed). Dev mode is `scripts/devserver.py` (auto reloads, no build needed).
## Toolchain
- Python >= 3.14, managed with **uv**. Dependencies: `fastapi[standard]`,
`fastapi-vue`, `html5tagger`, `kanta`, `markdown-it-py`, `mdit-py-plugins`,
`pygments`, `tracerite`; dev group has `httpx`. Run anything via
`uv run ...` (the venv is `.venv`).
- Python >= 3.14, managed with **uv**. Dependencies: `fastapi[standard]`, `fastapi-vue`, `html5tagger`, `kanta`, `markdown-it-py`, `mdit-py-plugins`, `pygments`, `tracerite`; dev group has `httpx`. Run anything via `uv run ...` (the venv is `.venv`).
- Key libraries:
- **html5tagger** — all HTML generation (`E`, `Document`, `Template`,
`HTML` for trusted/raw HTML).
- **html5tagger** — all HTML generation (`E`, `Document`, `Template`, `HTML` for trusted/raw HTML).
- To create stand alone pages, begin with `doc = Document(...)` that gives a HTML5 page header
- Chain with `doc.p("text").br`: every attribute access creates element to doc (returning self), calls add content to current element.
- Closing tags are not used where optional, e.g. no `</p>` or `</li>` is ever included in output. Due to this proper "nesting" of content is NOT required and should be avoided. Where needed, () directly after tag define attributes and content INSIDE the element, then close the element. `with doc.ul:` and such may be used for larger chunks.
- Prefer building directly on one builder with `with` blocks (recursing
inside a with block for hierarchies) over preparing `E.` snippets into
variables and composing them. Note `with doc.li:` alone fails (`li`
has an optional end tag) — use `with doc.li.ul:` style chains, or
`doc.li.a(...)` followed by a nested `with doc.ul:` block.
- `Template(builder)` freezes a builder with **Capitalized** attribute
placeholders (e.g. `E.Title`, `doc.main(E.Main, id="main")`); calling
it fills the slots with escaping — pass `HTML(...)` for raw HTML.
Passing a list to a template slot expands it; passing a list to a
normal builder call does NOT (spread it: `E.ul(*items)`).
- Prefer building directly on one builder with `with` blocks (recursing inside a with block for hierarchies) over preparing `E.` snippets into variables and composing them. Note `with doc.li:` alone fails (`li` has an optional end tag) — use `with doc.li.ul:` style chains, or `doc.li.a(...)` followed by a nested `with doc.ul:` block.
- `Template(builder)` freezes a builder with **Capitalized** attribute placeholders (e.g. `E.Title`, `doc.main(E.Main, id="main")`); calling it fills the slots with escaping — pass `HTML(...)` for raw HTML. Passing a list to a template slot expands it; passing a list to a normal builder call does NOT (spread it: `E.ul(*items)`).
- To create plain HTML snippets use `E.div(E.p("content"))` etc using the `E` empty builder.
- **kanta** — asyncio-native embedded database: `Kanta(filename, data)`
root object, `transaction`, `flush`, snapshot/replay-log persistence.
- **kanta** — asyncio-native embedded database: `Kanta(filename, data)` root object, `transaction`, `flush`, snapshot/replay-log persistence.
- `async with Kanta(Data(),...) as kanta:` (or await kanta.open/close)
- `with kanta.transaction(...) as data:` - transactions only for writes
- `data` may be referenced directly to read anywhere and to modify in transactions (`as data` is just a shorthand access)
@@ -303,32 +44,12 @@ not for the public pages. See `docs/design-principles.md` for the design.
- We prefer objects rather than lists, as this works better in change diffs. E.g. `dict[str, True]` where the keys indicate presence and always have value `True`.
- Maintaining and owning the app's own `Data` object is preferable; Kanta never copies this, only edits in place
- Note: besides opening it every access is immediate direct variable access: no `await`, no locks, no delays
- **fastapi-vue** — template glue for serving/building the Vue frontend;
keep its integration points (`Frontend`, build hook) intact.
- **markdown-it-py** — Markdown rendering with `html=True` raw
passthrough; mdit-py-plugins for footnote/deflist/tasklists/attrs;
**Pygments** for server-side code highlighting (`nowrap` spans, styled
by `frontend/src/assets/pygments.css` which maps token classes 1:1 onto
the `--code-*` variables; light/dark palette sets live in
`pagerite.css` and resolve via `light-dark()` from the theme's
`color-scheme` — themes pick a set, not individual colors).
- **fastapi-vue** — template glue for serving/building the Vue frontend; keep its integration points (`Frontend`, build hook) intact.
- **markdown-it-py** — Markdown rendering with `html=True` raw passthrough; mdit-py-plugins for footnote/deflist/tasklists/attrs; **Pygments** for server-side code highlighting (`nowrap` spans, styled by `frontend/src/assets/pygments.css` which maps token classes 1:1 onto the `--code-*` variables; light/dark palette sets live in `pagerite.css` and resolve via `light-dark()` from the theme's `color-scheme` — themes pick a set, not individual colors).
## Conventions
- Keep dependencies minimal; add via `uv add` and mention it.
- The public URL space belongs to content (pretty slugs at root). Reserve
only `/_` for the machinery (`/_api/`, `/_f/`, `/_assets/`), plus
`/favicon.ico` from the build. Slugs are lowercase ASCII letters, digits,
hyphens and underscores `[a-z0-9_-]` (the site editor filters input live
via `slugify.js`, built on the `transliteration` npm package — unicode
folds to ASCII, spaces become hyphens; an empty slug on a new page is
derived from its title), may not begin with `_` or `.`, and such URLs are
never looked up as content.
- No auth in core code; the SSO/reverse proxy gates all of `/_api`
(forward-auth) and owns `/auth/` (login/logout, session validation).
Pages render identically for everyone; pagerite.js adds the editing UI
only after the auth server validates the session. Never add output
sanitization "for safety" against the author — embedded HTML/scripts in
Markdown are passed through deliberately.
- Update this file and `docs/design-principles.md` when architecture,
tooling, or conventions change.
- The public URL space belongs to content (pretty slugs at root). Reserve only `/_` for the machinery (`/_api/`, `/_f/`, `/_assets/`), plus `/favicon.ico` from the build. Slugs are lowercase ASCII letters, digits, hyphens and underscores `[a-z0-9_-]` (the site editor filters input live via `slugify.js`, built on the `transliteration` npm package — unicode folds to ASCII, spaces become hyphens; an empty slug on a new page is derived from its title), may not begin with `_` or `.`, and such URLs are never looked up as content.
- No auth in core code; the SSO/reverse proxy gates all of `/_api` (forward-auth) and owns `/auth/` (login/logout, session validation). Pages render identically for everyone; pagerite.js adds the editing UI only after the auth server validates the session.
- Update the relevant MarkDown files when architecture, tooling, or conventions change.
+1 -3
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@@ -1,5 +1,3 @@
# Pagerite
A single-user CMS/blog. FastAPI serves HTML rendered in Python with html5tagger,
content is persisted in a kanta database and rendered on the fly per request.
Vue is used only for the interactive editing tools, not for the public pages.
A single-user CMS/blog. FastAPI serves HTML rendered in Python with html5tagger, content is persisted in a kanta database and rendered on the fly per request. Vue is used only for the interactive editing tools, not for the public pages.
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@@ -0,0 +1,297 @@
# Analytics
Server-side visit analytics. Data lives in a plain JSON file — a msgspec
Struct dumped to disk — separate from the kanta content database, path from
`PAGERITE_ANALYTICS` (default: the database path with `.kantadb` replaced by
`.analytics.json`, e.g. `pagerite.analytics.json`).
- `pagerite/analytics.py` — data model (`Analytics`, `Client`, `Visit`,
`CrawlerHit`, `AbuseHit`) and the `Store` (in-memory data + session map,
atomic JSON persistence).
- `pagerite/app.py` — entry-referer stashing in `show_page` (`_track_entry`),
the `POST /_a` ping endpoint, and `WebSocket /_api/ws/analytics`
(admin-gated like every `/_api` endpoint).
- `frontend/src/pagerite.js` — client navigation pings and the 📊 pen.
- `frontend/src/AnalyticsView.vue` — viewer component rendered inside the
normal site layout on the `/_a` analytics page.
- `frontend/src/analytics-main.js` — page entry that mounts `AnalyticsView`
into `#analytics-app` inside `#main`.
## What is collected
The client (`pagerite.js`) POSTs fire-and-forget pings to `/_a` with
`{fr, to}` (`fr` = source path):
- **Initial page load**: `to` is the loaded path. This ping is what starts
the visit and counts the entry page view — the document GET alone records
nothing, so bots and admin browsing never register. JS-running crawlers
(Googlebot, GoogleOther, Applebot, ...) do ping, but their User-Agent
gives them away: pings whose UA matches `_is_bot_ua` (anything calling
itself a "bot", plus known exceptions such as GoogleOther) are ignored
server-side, and their document GETs land in the crawler list instead.
No source-IP verification is done: a spoofed bot UA merely lands in the
crawler stats, and scanners that probe telltale paths are caught by the
abuse rules regardless. Reloads are not
visits: the ping is skipped (PerformanceNavigationTiming `reload`), so a
refresh neither counts a second view nor logs a self-transition. The GET
handler stashes a cross-origin https `Referer` (origin part only) and any
`utm_*` query parameters in in-memory IP tables, consumed by the ping that
starts the visit; internal or absent referers never touch the referer table.
- **Internal fetch-navigations**: `to` is the target path, sent only after
the swap actually happened (a failed swap falls back to a full load,
whose initial ping counts the view instead — no gap, no double count).
- **External links** (`https` only): `to` is the link's full URL. This is the
exit-link record; the user may continue navigating afterwards (new tab,
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
the analytics page itself (`/_a`), and everything while the user has the
editor open (`body.editing`). Admin noise, not visits.
- **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).
Views/transitions logged by later pings inside such a visit lack
per-event timestamps and are left as-is. With no auth proxy (dev/test)
"admin" is everyone's state, so `hide` stays 0 and everything is recorded.
- The server validates `to`: internal paths must be valid slug paths
("/" or `[a-z0-9_-]` segments), external ones are re-derived to the
https origin and accepted only when the client sent exactly that.
- **Client records**: the visitor's IP (IPv4 or IPv6 /64 network), raw
`User-Agent` and extracted `Accept-Language` tag are hashed with blake3;
the first 6 bytes identify a shared `Client` record. The `Client` stores
the full IP, `User-Agent`, compact `ua_pretty`, `lang`, initial
`country` from the language-region subtag, and asynchronously-filled
`country`/`city` from DB-IP geoip plus reverse-DNS `host`. Visits,
crawler hits and abuse hits all reference this record by its hash, so
client metadata is stored once instead of repeated per event.
- The visitor IP is stored in the `Client`. A reverse-DNS lookup is
attempted for each new client and the result, when available, is stored as
`host`; local/reserved/multicast addresses are skipped. If a DB-IP MMDB
file (`dbip-*.mmdb` or `dbip-*.mmdb.gz`) is present in the repository
root, it is loaded at startup and used to look up `country`/`city`. These
lookups run in background tasks after the event is stored, so the `/_a`
response is never delayed. The decompressed `dbip-*.mmdb` file is kept in
the repository root and ignored by git. The CLI flag `--dbip`
(`uv run pagerite --dbip`) downloads the latest
`dbip-city-lite-YYYY-MM.mmdb.gz` from DB-IP before the server starts,
skipping the download when the local database is already current and
removing older versions after an update; without the flag only an existing
file is used.
- **Crawler hits**: every document GET is queued in RAM as a pending crawler
hit — except idle-time link preloads from pagerite.js, which carry an
`x-pagerite-preload` header and are not tracked at all (the ping sent when
the user actually navigates to a preloaded page does the counting; forging
the header only hides a GET from the crawler stats, the path-based abuse
classification is unaffected). If a ping
from the same client arrives within 10 seconds the hit is discarded;
otherwise it is written to `crawlers`. Crawlers do not count as
visits or views. The `Accept-Language` header is stored on the shared
`Client` immediately; reverse-DNS host names and DB-IP geoip
country/city are filled in asynchronously, just like for real visits. In
the analytics viewer, crawler hits are grouped by client hash and shown as
a trail of internal pages that crawler visited; the crawler table lists
the most active crawlers first rather than the most recent hits.
- **Abuse (scanner) hits**: a 404 for a telltale path — any URL segment
starting with a dot (`/.env`, `/.git/config`) or ending in `.php`
classifies the source IP as abuse immediately, and ten plain 404s from one
IP do too. Classification reclassifies history: all earlier crawler hits
from that IP (persisted and pending) move to the `abuse` list, so a
random-UA scanner no longer pollutes the crawler stats of the legitimate
bot it impersonates. Once classified, every document GET and 404 from the
IP is recorded as an abuse hit with the full request path (query string
included), and its pings are ignored. The classified IP set (`abuse_ips`)
is persisted in the JSON file; the plain-404 counters are RAM-only. In the
viewer, abuse hits are grouped by IP (never by client/UA — scanners
randomize theirs) in a separate "Abuse" table. Identical paths are
collapsed into one entry with their hit count; flagged paths that
triggered classification are lifted to the top, followed by other 404s and
then document GETs from the abuser. Raw User-Agent strings are shown one
per line with their occurrence counts, and the full lists are click-to-copy.
## Visits and sessions
There are no cookies. A visit is tied together by a client hash — the first
6 bytes of a blake3 digest over the prettified IP (IPv4 unchanged, IPv6
/64 network), the raw `User-Agent` string and the extracted
`Accept-Language` tag. The first ping from a client hash starts a new
visit; subsequent pings extend it. Pings arriving with no known session
(server restart) start a fresh visit from the first ping — treated as
missing data rather than dropped. The client-hash → visit map and the IP →
entry-referer/UTM tables are in-memory only; client metadata is stored in
`Analytics.clients` keyed by the client hash.
Each `Client` record:
- `ip` — visitor IP address (first `X-Forwarded-For` hop, or direct peer),
- `host` — reverse-DNS host name for `ip` when resolvable, else `""`,
- `lang` — first `Accept-Language` tag, lowercased (e.g. `"en-us"`),
- `country` — two-letter country code. Initially derived from the
`Accept-Language` region subtag, but overwritten by the DB-IP MMDB result
when a database is available,
- `city` — city name from the DB-IP MMDB lookup, when available,
- `ua` — raw `User-Agent` string,
- `ua_pretty` — compact display form of the UA (browser/OS/device) when
parsable, otherwise the raw string.
Each `Visit` record:
- `start` — timestamp of the first event,
- `entry` — first page (path) seen,
- `referer` — external https origin of the initial load, `""` for direct,
- `client` — 6-byte blake3 hash referencing `Analytics.clients`,
- `trail` — everything seen afterwards in first-seen order: page paths and
external exit URLs. Re-visiting an already seen page (incl. the entry)
does not append.
- `utm``utm_*` query parameters from the landing URL, as a dict.
- `read` — active reading time per path (seconds), keyed by path.
- `statuses` — HTTP status of the response when each path was first seen
(200 or 404), keyed by path.
Each `CrawlerHit` record:
- `start` — timestamp of the document GET,
- `entry` — page path requested,
- `client` — 6-byte blake3 hash referencing `Analytics.clients`,
- `referer` — external https origin of the request, `""` for direct/none,
- `query` — raw query string of the request,
- `status` — HTTP status of the served response (200 for a real page, 404
for a category placeholder or missing page).
Each `AbuseHit` record:
- `start` — timestamp of the request,
- `path` — full request path including the query string (e.g. `/.env?x=1`),
- `client` — 6-byte blake3 hash referencing `Analytics.clients`,
- `flag` — true for the path that triggered abuse classification (telltale
path or the 404 that crossed the threshold),
- `is_404` — true for 404 responses, false for document GETs from the
abuser.
Crawler hits are grouped by client hash in the analytics viewer; abuse hits
are grouped by IP alone (resolved from the referenced `Client`). In the
Abuse table identical paths are collapsed with their counts; flagged paths
that triggered classification are lifted to the top, followed by other 404s
and then document GETs from the abuser. Within each category paths are
sorted by count descending, then by their earliest hit.
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
- `transitions`: time series of page transitions, sparse nested dict
`from -> to -> bucket -> count` with the same 5-minute bucketing as
`views`. `from` is the referer origin or `"(direct)"` for initial loads,
a page path for pings.
- `views`: time series of page loads, `path -> bucket -> count`, sparse: only
non-zero 5-minute buckets exist (bucket key is its floored ISO timestamp).
Every load counts, including repeats within a visit; external exit origins
are not page views and are not counted here.
- `site_visits`: `bucket -> count` of new visits started, same sparse
5-minute bucketing.
Sparseness keeps quiet sites small; dropping old data is a matter of deleting
list/dict entries (`visits` is a plain append-only list, buckets plain keys).
## Persistence
The whole `Analytics` struct is JSON-encoded and written atomically
(temp file + rename) on every recorded event. Traffic on a small CMS makes
this cheap enough; batching can be added later without changing the format.
## Viewing
The 📊 pen in the banner corner (admins only, injected by pagerite.js next to
the edit pens) links to `/_a`, the analytics page. It is a normal site page:
the standard banner, navigation and footer stay in place, and the analytics
content is rendered inside `#main`. The page itself is public, but the data
stream comes from `WebSocket /_api/ws/analytics`, which remains admin-gated
like the rest of the management API; visitors without access see the viewer
with a "could not be loaded" message.
Because it is a real page, fetch-navigation handles it like any other internal
link: clicking the 📊 pen (or any link to `/_a`) fetches the server-rendered
HTML, swaps the dynamic regions and mounts the Vue analytics app in place. The
range selector updates the URL hash (`#week` etc.) so links to a specific
range can be shared. When the URL has no hash, the client derives the
default from the first analytics snapshot: `day` if the recorded history
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 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
hourly ones. The y max is derived from the smoothed curves so single-bucket
spikes don't blow up the scale, and raw spikes are clamped into the plot.
Axes always start at 0 and end at a multiple of a 1-2-5 major step (max 5
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 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);
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 MN" 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. 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 (uncapped), connections
carrying less than 1% of the total traffic
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 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 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
(with a small server-side debounce to avoid flooding under high traffic).
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# Backend
The Python backend lives in `pagerite/`.
## `app.py`
The FastAPI app. FastAPI's built-in API docs are disabled (`docs_url`/`redoc_url`/`openapi_url=None`) because `/docs` belongs to our content. Our own routes (content pages, `/_api/...`, `/_f/...`) are registered BEFORE `frontend.route(app, "/")` is called: fastapi-vue inserts its file routes at the position where `route()` was called (during `load()` in the lifespan), so anything defined earlier wins. The one exception is the content catch-all `/{path:path}`, registered AFTER `frontend.route()` so that built frontend assets still take priority over content slugs. The `Frontend` is constructed with `spa=False` explicitly: it only serves the built files without a catch-all.
The build mirrors the URL space — hashed immutable assets under `/_assets/`, `favicon.ico` at the site root — and an `index.html` in the build would become a `/` route, so leave it out of the build to keep `/` ours.
Generated HTML pages (content pages, category/404 placeholders, `/_a`) go through `_html_response`: zstd-compressed per request at level 9 when the client sends `accept-encoding: zstd` (no gzip fallback; static assets are pre-compressed by the `Frontend`), with `vary: accept-encoding` set and the ETag kept identical across encodings so `if-none-match` revalidation still works. In production the rendered bodies are cached in an LRU keyed by everything the output depends on — page kind, path, the site origin (social meta), encoding, and `data.version`, which bumps on every content/settings change and so transparently invalidates the whole cache. The cache is bypassed in dev, where theme/design CSS is re-read from disk per request. Content pages carry an ETag built from the node's modified timestamp and `data.version`; `/_a` instead gets a blake3 hash of the rendered body (it has no Node), with matching `if-none-match` revalidations answered by a 304.
## `data.py`
msgspec Structs for the kanta database. See `docs/content-model.md` for the full data model.
## `markdown.py`
markdown-it-py renderer (html passthrough + attrs, footnote, deflist, tasklists, admon, gfm_autolink, sub/superscript plugins; typographer + breaks on). Custom image rule: relative srcs resolve against the page path; an image standing alone in its paragraph becomes a figure (captioned when titled), while inline-with-text images and raw `<img>` HTML stay plain. A `{dates}` line expands to the article's published/updated dateline (`p.dateline`, from `Node.created`/`modified`; left literal in previews of unsaved pages).
## `views.py`
The shared page layout as an html5tagger `Template` with placeholders (`Title`, `Brand`, `Banner`, `Nav`, `Sidebar`, `Main`), nav rendering straight from the `Data.menu` tree (siblings sorted by `Node.order`; nav links to content-less labels point at their first child via `first_leaf`, the first published descendant with content), and page/404 rendering.
Content pages get SEO/social meta (description, canonical link, Open Graph + twitter card) from heuristics over the rendered article: the description is the first paragraph's text, the share image prefers a `{.hero}`-classed image, then the first raster `<img>`, then the first SVG; the first `<video>` yields `og:video`; URLs are made absolute with the site origin (`Data.site_url` — learned from admin browsers reporting their `location.origin` via `POST /_api/site-url`, correct even behind reverse proxies; until learned, the request's own base URL is the fallback); `article:published/modified_time` come from `Node.created`/`modified`. If the markdown contains its own h1, the page title is NOT rendered as an additional h1 (it still supplies `<title>` and nav labels).
The navbar holds top-level items only; the current section's subitems go to a left `#sidebar` as a nested list (the section's direct children plain, deeper levels indented with article-list-style markers), which is rendered when the section offers at least two published items, or exactly one while viewing anything other than that only page — the section index, a 404, a grandchild (so those pages can reach the child), and also on that only page itself when it has published children of its own; no aside element at all on the front page, leaf pages and the sole childless page of a one-page section. Also, category labels are nodes without content — None *or* empty markdown — and their nav links point at their first child page. Dynamic regions have stable ids (`#page-banner`, `#nav`, `#sidebar`, `#main`) for fetch-navigation swaps (`#sidebar` may be absent on either side of a swap).
## `seed.py`
Demo content written only when the database is first created, via a `@kanta.bootstrap` handler in `app.py`.
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# Content model
The site structure is stored in the kanta database managed by `pagerite/data.py`.
## Site tree
`Data.menu` maps top-level slugs to `Node`s, each with `children` keyed by slug — the URL path is the slug chain. The front page is whichever top-level node has slug "" (parallel to the other main level pages, not their parent); it cannot have children, and renaming its slug away leaves no front page ("/" redirects to the first nav item).
`Node.content` is the Markdown page, or None for a pure category label whose URL renders a placeholder page (while nav links to it point at its first child); every label's title and slug are editable.
Siblings order by the fractional `Node.order` key: a moved item gets a fresh key relative to its new siblings, all others keep theirs. `resolve`/`find_slot` walk the tree by path; moves are slot detach/attach carrying the whole subtree. Legacy flat `Data.pages` (pre-tree databases) migrates into `menu` on startup. The app owns the `Data` object; reads are plain attribute access, writes in `kanta.transaction(...)`.
`Data.version` is bumped on every write and embedded in page ETags so nav-affecting changes invalidate caches.
## Files
`Data.files` is a content-addressed store (blake3[:12] + extension) mapping file names to bytes, served at `/_f/{name}` with immutable caching; pages reference files by absolute `/_f/` URLs so hierarchy moves never break them.
## Banners
`Node.banner` is a raw trusted HTML snippet for the header banner (img, styled div, canvas+script...); empty inherits from the node's ancestors (front page last). It is rendered AFTER the banner design's artwork, so author code (e.g. a `<style>` override) always wins over the design's own styles.
`Node.banner_design` picks a banner design: a theme folder name whose `banner.css` styles it and whose `banner.html` (arbitrary markup: canvas + style + script) or `banner.svg` supplies the inline artwork (wrapped in `div[data-design]`); "" = explicitly no design, None = inherit (nearest ancestor, front page last, then the active theme's own design if it ships banner.css/banner.svg/banner.html). The design's banner.css lives in `<head>` (id `pagerite-banner`) between the theme and the custom CSS — a `<link>` in dev, an inline `<style>` in production.
## Site settings
`Data.brand` is the site name (header link + `<title>` suffix), editable in the site editor via `/_api/settings`; empty = no header link and no `<title>` suffix.
`Data.brand_html` is raw trusted HTML replacing the brand link entirely (rendered in a `#brand` div on top of the banner, next to the nav) — site-wide, not per-page like banners; edited in the site editor with image/video upload into `Data.files`.
`Data.theme` is the active theme name (empty = none/base only); themes are folders in `pagerite/themes/{name}` containing `theme.css` and/or `banner.css` (+ `banner.svg` artwork and any extra assets the CSS references, like summer's `grass.svg`), served by the backend at `/_themes/{name}/...` — read from disk per request (etag by mtime), never built, so on-disk edits show on the next page load even in prod. The theme selector and banner-design selector enumerate these folders via `GET /_api/settings`.
`Data.custom_css` is raw trusted CSS injected inline in every page `<head>` (id `pagerite-user`) and swapped during fetch-navigation; editable in the site editor. Font picks (heading/body/brand) in the site editor are stored as plain `:root` rows in `custom_css` (`--font-body: var(--font-source-sans);` format — parsed out and rewritten on change, the `:root` block added/removed as needed), referencing the per-family variables (`--font-source-sans` etc.) from `pagerite.css`; the base stylesheet's `--font-brand` defaults to `var(--font-heading)`.
`Data.favicon` names a file in the content-addressed `files` store, uploaded/cleared in the site editor via `PUT`/`DELETE /_api/settings/favicon`; when set it is linked as `<link rel="icon">` on every page, otherwise browsers fall back to the build's `/favicon.ico` by convention.
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# Pagerite Design Principles
Pagerite is a single-user CMS/blog. This document records the initial
high-level design decisions; it will be refined as the implementation
evolves.
Pagerite is a single-user CMS/blog. This document records the initial high-level design decisions; it will be refined as the implementation evolves.
## Architecture
- **Server-side rendered.** FastAPI serves complete HTML pages, generated in
Python with **html5tagger**. There is no client-side templating or SPA for
the public site.
- **Vue only where interactivity demands it.** Small interactive islands
(editing tools mainly) are Vue components mounted into specific elements of
the server-rendered pages. The public reading experience has no scripting
requirement.
- **Persistence via kanta.** Content is stored in an asyncio-friendly kanta
database. Rendering happens on the fly on each request — there are no
pre-built static artifacts.
- **Server-side rendered.** FastAPI serves complete HTML pages, generated in Python with **html5tagger**. There is no client-side templating or SPA for the public site.
- **Vue only where interactivity demands it.** Small interactive islands (editing tools mainly) are Vue components mounted into specific elements of the server-rendered pages. The public reading experience has no scripting requirement.
- **Persistence via kanta.** Content is stored in an asyncio-friendly kanta database. Rendering happens on the fly on each request — there are no pre-built static artifacts.
## Content model
- Pages and blog articles are fundamentally the same kind of thing: named
pieces of content. The blog/website distinction is blurred; an article is
just a page (possibly with metadata such as a publication date and
listing in a feed).
- **Pretty URLs.** Content is addressed by its name (slug), not by technical
constructs — no `/cms/...` or `/blog/post1` prefixes. Slugs usually live
directly at the site root; structured content may nest
(`/docs/design-principles`-style). The URL space is the author's, so
reserved prefixes must be kept few and deliberate: everything internal
lives under `/_` (`/_api/`, `/_f/`, `/_assets/`). The only
other reserved root path is `/favicon.ico`, served from the build.
Slugs are lowercase ASCII letters, digits, hyphens and underscores
(`[a-z0-9_-]`; input is transliterated and filtered as you type, and a
new page's empty slug is derived from its title), may not begin with
`_` or `.`, and such URLs are never looked up as content.
- **Single user, trusted author.** No auth concerns in the core design.
Everything published is public; only editing tools will later sit behind
access control (external SSO when that time comes). The author is trusted
to create well-meaning slugs and content — no sanitization for safety,
only for correctness.
- **Commenting** is not planned now but the model should not preclude it
later.
- Pages and blog articles are fundamentally the same kind of thing: named pieces of content. The blog/website distinction is blurred; an article is just a page (possibly with metadata such as a publication date and listing in a feed).
- **Pretty URLs.** Content is addressed by its name (slug), not by technical constructs — no `/cms/...` or `/blog/post1` prefixes. Slugs usually live directly at the site root; structured content may nest (`/docs/design-principles`-style). The URL space is the author's, so reserved prefixes must be kept few and deliberate: everything internal lives under `/_` (`/_api/`, `/_f/`, `/_assets/`). The only other reserved root path is `/favicon.ico`, served from the build. Slugs are lowercase ASCII letters, digits, hyphens and underscores (`[a-z0-9_-]`; input is transliterated and filtered as you type, and a new page's empty slug is derived from its title), may not begin with `_` or `.`, and such URLs are never looked up as content.
- **Single user, trusted author.** No auth concerns in the core design. Everything published is public; only editing tools will later sit behind access control (external SSO when that time comes). The author is trusted to create well-meaning slugs and content — no sanitization for safety, only for correctness.
- **Commenting** is not planned now but the model should not preclude it later.
## Authoring format
- Content is written in **Markdown** with powerful extensions (tables,
footnotes, code highlighting, etc.).
- **Embedded HTML is passed through unfiltered**, including inline scripts
and other dynamic content the author wants to post. This is safe by the
single-trusted-author assumption above.
- Renderer: **markdown-it-py** with mdit-py-plugins (footnotes, definition
lists, task lists, brace-attributes; tables and strikethrough from the
default preset), with `html=True` for raw passthrough,
`typographer=True` for SmartyPants-style replacements in body text (curly
quotes, `--` / `---` → en / em dashes, `...` → ellipsis, `(c)` → ©, etc.),
and `breaks=True` so single line breaks inside paragraphs become `<br>`.
Code spans/blocks and raw HTML are left untouched. Fenced code blocks are
highlighted server-side with
**Pygments** (`nowrap` spans styled by
`/_assets/pygments-*.css`, which maps every token class onto the `--code-*`
variables; the base stylesheet defines light and dark palette sets resolved
via `light-dark()`, so each theme gets the set matching its `color-scheme`
and may only retint `--code-bg` to keep the well in the page's color
family); a JS copy button appears on hover. Should this
prove limiting, we implement our own renderer on top of html5tagger,
which we already use for all HTML generation.
- **Files are content-addressed.** Uploads (`PUT /_api/files/{filename}`)
are stored by content hash — blake3, first 6 bytes hex + original
extension — and served immutable from `/_f/{hash}.ext`. Absolute URLs
that survive page renames and dedupe identical content; pages no longer
own files. An image standing alone in its paragraph becomes a block
`<figure>` — with `<figcaption>` when it has a title; images inline
with text and raw `<img>` HTML stay plain inline images. Positioning
is by attribute classes:
`![alt](/_f/….avif "Caption"){.right}``{.right}`, `{.left}` float at
30% of the text column (the caption wraps within it; an explicit
`width=300` makes the figure shrink-wrap the image instead),
`{.wide}` goes full bleed (viewport edge to edge, or up to the docked
editor; the sidebar stacks on top of it); plain attributes like `width=300`
work too. Headings (h1/h2) clear floats, so images never overflow into the
next section.
- Content is written in **Markdown** with powerful extensions (tables, footnotes, code highlighting, etc.).
- **Embedded HTML is passed through unfiltered**, including inline scripts and other dynamic content the author wants to post. This is safe by the single-trusted-author assumption above.
- Renderer: **markdown-it-py** with mdit-py-plugins (footnotes, definition lists, task lists, brace-attributes; tables and strikethrough from the default preset), with `html=True` for raw passthrough, `typographer=True` for SmartyPants-style replacements in body text (curly quotes, `--` / `---` → en / em dashes, `...` → ellipsis, `(c)` → ©, etc.), and `breaks=True` so single line breaks inside paragraphs become `<br>`. Code spans/blocks and raw HTML are left untouched. Fenced code blocks are highlighted server-side with **Pygments** (`nowrap` spans styled by `/_assets/pygments-*.css`, which maps every token class onto the `--code-*` variables; the base stylesheet defines light and dark palette sets resolved via `light-dark()`, so each theme gets the set matching its `color-scheme` and may only retint `--code-bg` to keep the well in the page's color family); a JS copy button appears on hover. Should this prove limiting, we implement our own renderer on top of html5tagger, which we already use for all HTML generation.
- **Files are content-addressed.** Uploads (`PUT /_api/files/{filename}`) are stored by content hash — blake3, first 6 bytes hex + original extension — and served immutable from `/_f/{hash}.ext`. Absolute URLs that survive page renames and dedupe identical content; pages no longer own files. An image standing alone in its paragraph becomes a block `<figure>` — with `<figcaption>` when it has a title; images inline with text and raw `<img>` HTML stay plain inline images. Positioning is by attribute classes: `![alt](/_f/….avif "Caption"){.right}``{.right}`, `{.left}` float at 30% of the text column (the caption wraps within it; an explicit `width=300` makes the figure shrink-wrap the image instead), `{.wide}` goes full bleed (viewport edge to edge, or up to the docked editor; the sidebar stacks on top of it); plain attributes like `width=300` work too. Headings (h1/h2) clear floats, so images never overflow into the next section.
## Page structure and navigation
- All pages share one static layout, defined once as an **html5tagger
Template** with capitalized placeholders (`Title`, `Banner`, `Nav`,
`Sidebar`, `Main`) filled per request. The dynamic regions carry stable
ids (`#page-banner`, `#nav`, `#sidebar`, `#main`).
- The page top is a **full-width banner header** with the site name and the
navigation bar overlaid on it — no separate chrome header. The banner
combines two layers, stacked in `#page-banner` (a grid, so they overlay):
first the **banner design** — a named design living in a theme folder
(`pagerite/themes/{name}/banner.css` plus artwork as `banner.html`
arbitrary markup like canvas + style + script — or `banner.svg`),
chosen per page via
`Node.banner_design` (a design name, "" for none, None to inherit from
the nearest ancestor, then the front page, then the active theme's own
design). The artwork is inlined into a `div[data-design]` wrapper: SVG
artwork can be recolored from the theme stylesheet (corporate's single
SVG serves both light and dark mode via `var()`-driven stops). Second,
**per-page author code**: `Node.banner` holds an arbitrary trusted HTML
snippet (an image, a styled div, canvas + script — anything), resolved by
walking up the node's ancestors to the front page and rendered **after**
the design artwork, so author styles always win over the design's own.
The base stylesheet falls back to a plain gradient. There is deliberately
no scrim fading the banner into the page background — any such fade would
ruin user-supplied designs; themes that want one bake it into their SVG
(purple does).
- **Fetch-navigation.** Links are plain `<a href>`; a small script
(`frontend/src/pagerite.js`) intercepts same-origin clicks, fetches the
page, and swaps the `#page-banner`, `#nav`, `#sidebar` and `#main` regions,
the document title, and the site-wide custom CSS (`<style id="pagerite-user">`
in `<head>`), keeping the rest of `<head>` and the layout chrome. Without JS
everything works as normal page loads. Scripts inside fetched banner and
content regions are re-created so they execute. Swaps run inside `document.startViewTransition` for a rotating
cube page transition (CSS adapted from termotohtori.fi — the
`::view-transition*` block is fragile, do not tweak; skipped under
`prefers-reduced-motion`). Navigation within the same top-level section
crossfades instead of rotating; browser back navigation rotates in
reverse.
- **The site structure is a tree of labels.** `Data.menu` holds the
top-level items by slug, each with `children` keyed by slug — the URL
path is the slug chain. The front page is a top-level node with slug ""
(an item *parallel* to the other main level pages, not their parent) and
cannot have children. The header navbar holds only the top level; a
top-level item is highlighted when viewing any of its subpages. When the
current page is inside a main level section with children, those direct
children are listed in a **left sidebar** (`#sidebar`), one level deep.
The sidebar exists only when there is something to navigate — sections
with fewer than two published items, leaf pages and the front page render
no aside element at all. Other sections' subitems
are never shown without navigating into them first.
- **Landing pages are optional.** Every label can either have content
(`Node.content`, a Markdown page) or none — a content-less label renders
a placeholder page (404 with a pen to create it) instead of redirecting,
while nav links to it point straight at its first child, so categories
need no filler content and normal navigation never sees the placeholder.
Title and slug of every label are editable; renaming a
slug moves the whole subtree. The sidebar never lists the section
itself, avoiding title duplication with the navbar.
- **Menu order is manual.** Each node has a fractional `order` key among
its siblings; reordering/moving writes only the moved node (it takes a
fresh value halfway between its new siblings; all other items keep
theirs). New pages append at the end of their menu. Structure edits
(reorder, move/rename with the whole subtree, retitle) go through
`POST /_api/structure` and the editor's structure panel.
- All pages share one static layout, defined once as an **html5tagger Template** with capitalized placeholders (`Title`, `Banner`, `Nav`, `Sidebar`, `Main`) filled per request. The dynamic regions carry stable ids (`#page-banner`, `#nav`, `#sidebar`, `#main`).
- The page top is a **full-width banner header** with the site name and the navigation bar overlaid on it — no separate chrome header. The banner combines two layers, stacked in `#page-banner` (a grid, so they overlay): first the **banner design** — a named design living in a theme folder (`pagerite/themes/{name}/banner.css` plus artwork as `banner.html` — arbitrary markup like canvas + style + script — or `banner.svg`), chosen per page via `Node.banner_design` (a design name, "" for none, None to inherit from the nearest ancestor, then the front page, then the active theme's own design). The artwork is inlined into a `div[data-design]` wrapper: SVG artwork can be recolored from the theme stylesheet (corporate's single SVG serves both light and dark mode via `var()`-driven stops). Second, **per-page author code**: `Node.banner` holds an arbitrary trusted HTML snippet (an image, a styled div, canvas + script — anything), resolved by walking up the node's ancestors to the front page and rendered **after** the design artwork, so author styles always win over the design's own. The base stylesheet falls back to a plain gradient. There is deliberately no scrim fading the banner into the page background — any such fade would ruin user-supplied designs; themes that want one bake it into their SVG (purple does).
- **Fetch-navigation.** Links are plain `<a href>`; a small script (`frontend/src/pagerite.js`) intercepts same-origin clicks, fetches the page, and swaps the `#page-banner`, `#nav`, `#sidebar` and `#main` regions, the document title, and the site-wide custom CSS (`<style id="pagerite-user">` in `<head>`), keeping the rest of `<head>` and the layout chrome. Without JS everything works as normal page loads. Scripts inside fetched banner and content regions are re-created so they execute. Swaps run inside `document.startViewTransition` for a rotating cube page transition (CSS adapted from termotohtori.fi — the `::view-transition*` block is fragile, do not tweak; skipped under `prefers-reduced-motion`). Navigation within the same top-level section crossfades instead of rotating; browser back navigation rotates in reverse.
- **The site structure is a tree of labels.** `Data.menu` holds the top-level items by slug, each with `children` keyed by slug — the URL path is the slug chain. The front page is a top-level node with slug "" (an item *parallel* to the other main level pages, not their parent) and cannot have children. The header navbar holds only the top level; a top-level item is highlighted when viewing any of its subpages. When the current page is inside a main level section with children, those direct children are listed in a **left sidebar** (`#sidebar`), one level deep. The sidebar exists only when there is something to navigate — sections with fewer than two published items, leaf pages and the front page render no aside element at all. Other sections' subitems are never shown without navigating into them first.
- **Landing pages are optional.** Every label can either have content (`Node.content`, a Markdown page) or none — a content-less label renders a placeholder page (404 with a pen to create it) instead of redirecting, while nav links to it point straight at its first child, so categories need no filler content and normal navigation never sees the placeholder. Title and slug of every label are editable; renaming a slug moves the whole subtree. The sidebar never lists the section itself, avoiding title duplication with the navbar.
- **Menu order is manual.** Each node has a fractional `order` key among its siblings; reordering/moving writes only the moved node (it takes a fresh value halfway between its new siblings; all other items keep theirs). New pages append at the end of their menu. Structure edits (reorder, move/rename with the whole subtree, retitle) go through `POST /_api/structure` and the editor's structure panel.
- Unpublished pages are hidden from both nav and URL access (404).
## Reading experience
- The article column is sized by the **viewport, never by content**: a
symmetric grid (`1fr minmax(0, 78rem) 1fr`) with flexible gutters keeps
the layout stable across navigation. The sidebar occupies the left
gutter, the right gutter balances it; wide screens get columns inside
long articles without changing the article's width.
- A gentle **scroll-reveal** of headings, figures and block-level elements
(IntersectionObserver). It is layout-level: articles need no support
for it, and `prefers-reduced-motion` disables all motion.
- The article column is sized by the **viewport, never by content**: a symmetric grid (`1fr minmax(0, 78rem) 1fr`) with flexible gutters keeps the layout stable across navigation. The sidebar occupies the left gutter, the right gutter balances it; wide screens get columns inside long articles without changing the article's width.
- A gentle **scroll-reveal** of headings, figures and block-level elements (IntersectionObserver). It is layout-level: articles need no support for it, and `prefers-reduced-motion` disables all motion.
## Styling
- The base stylesheet `frontend/src/assets/pagerite.css` provides the layout,
typography and interaction rules with conservative CSS variables. A theme layer
(`pagerite/themes/{name}/theme.css` — currently `purple`, `corporate`
and `nitro`, served by the backend at `/_themes/{name}/theme.css` straight
from disk, never built) overrides those variables and
adds the visual styling; `Data.theme` selects the active theme (empty = none/base
only) and the site editor can switch it, choosing from the theme folders
found on disk. Vue may add per-component styles on top
where needed. The corporate and nitro themes switch palettes automatically via
`prefers-color-scheme` (corporate is light-first with a matching dark palette;
nitro a warm light-grey page or, in dark mode, a deep violet one — its dark
banner and orange accents carry over unchanged); purple (dusk) uses one
fixed palette for everyone. Themes may restyle structural details the base
leaves plain — heading colors and underlines, list markers, nav treatment,
brand sizing. A theme folder may also ship a **banner design**
(`banner.css` + `banner.svg`), selectable per page independently of the
active theme. The banner artwork has scroll parallax: pagerite.js sets the
`--pry` scroll parameter on `<html>` (event-driven, so it is still when the
page is idle), the banner contents drift within their window (with scale
overscan so no edge shows), and designs may key their own effects off the
same parameter — purple's sun rises as you scroll.
- Fonts, the shared stylesheet and pygments styles
live under `frontend/src/assets/` and are emitted as hashed assets under
`/_assets/`
(Source Serif 4 for headings, Source Sans 3 for body, Fira Code for code
by default; Fraunces, Literata, Cormorant, Playfair Display, Inter,
Montserrat, Cause, Exo 2 and New Rocker kept as woff2 options with
local `@font-face`, variable-weight where available). No third-party
requests.
- The base stylesheet `frontend/src/assets/pagerite.css` provides the layout, typography and interaction rules with conservative CSS variables. A theme layer (`pagerite/themes/{name}/theme.css` — currently `purple`, `corporate` and `nitro`, served by the backend at `/_themes/{name}/theme.css` straight from disk, never built) overrides those variables and adds the visual styling; `Data.theme` selects the active theme (empty = none/base only) and the site editor can switch it, choosing from the theme folders found on disk. Vue may add per-component styles on top where needed. The corporate and nitro themes switch palettes automatically via `prefers-color-scheme` (corporate is light-first with a matching dark palette; nitro a warm light-grey page or, in dark mode, a deep violet one — its dark banner and orange accents carry over unchanged); purple (dusk) uses one fixed palette for everyone. Themes may restyle structural details the base leaves plain — heading colors and underlines, list markers, nav treatment, brand sizing. A theme folder may also ship a **banner design** (`banner.css` + `banner.svg`), selectable per page independently of the active theme. The banner artwork has scroll parallax: pagerite.js sets the `--pry` scroll parameter on `<html>` (event-driven, so it is still when the page is idle), the banner contents drift within their window (with scale overscan so no edge shows), and designs may key their own effects off the same parameter — purple's sun rises as you scroll.
- Fonts, the shared stylesheet and pygments styles live under `frontend/src/assets/` and are emitted as hashed assets under `/_assets/` (Source Serif 4 for headings, Source Sans 3 for body, Fira Code for code by default; Fraunces, Literata, Cormorant, Playfair Display, Inter, Montserrat, Cause, Exo 2 and New Rocker kept as woff2 options with local `@font-face`, variable-weight where available). No third-party requests.
## 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.
- **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 `![alt](/_f/hash.ext)` at the cursor.
- The **structure panel** (vue-draggable tree of the whole site, in site
mode) covers page management: reorder any menu level, drag across
sections, add, delete (two clicks: the button arms, then deletes — no
dialogs). Every node is a real label — content-less category rows offer
a to give them a landing page.
Deleting a category removes only its landing page (the label and its
subpages stay). Every non-empty list ends with a row that starts a
new page as a local-only tree row at that level; the row can be dragged
into place before its title and slug are filled in and is persisted only
on commit. While dragging, these rows double as "end of this list"
drop targets; dropping ON the lower part of a row makes the page that
row's first child (even a leaf's, creating a sublist), while a row's
exposed top edge inserts a sibling before it. A dragged row's
indentation previews the target list's depth. Rows are always
editable: titles save while typing, slug edits commit on blur/Enter
since they rename the path (moving the whole subtree). The front page
is the root row with an empty slug — renaming it away leaves no front
page ("/" redirects to the first nav item), and giving another
top-level row the empty slug makes it the front page.
- Preview and saving go over a **WebSocket** (`/_api/ws/editor`) with a
stateless JSON protocol (`open`/`render`/`save`; on save all fields are
optional and absent ones keep their old values, `move_from` renames),
avoiding REST polling and races. Rendering always stays server-side.
- A REST API also exists for scripting, all under `/_api/`:
`GET pages` (the full tree), `PUT/DELETE pages/{path}`,
`GET/PUT settings` (site brand, theme and custom CSS), `POST structure`
(reorder/move/retitle), file upload/removal via `PUT/DELETE files/{name}`.
- On startup, seed pages from `pagerite/seed.py` are added **only if
missing** — existing user content is never overwritten.
- **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.
- **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 `![alt](/_f/hash.ext)` at the cursor.
- The **structure panel** (vue-draggable tree of the whole site, in site mode) covers page management: reorder any menu level, drag across sections, add, delete (two clicks: the button arms, then deletes — no dialogs). Every node is a real label — content-less category rows offer a to give them a landing page. Deleting a category removes only its landing page (the label and its subpages stay). Every non-empty list ends with a row that starts a new page as a local-only tree row at that level; the row can be dragged into place before its title and slug are filled in and is persisted only on commit. While dragging, these rows double as "end of this list" drop targets; dropping ON the lower part of a row makes the page that row's first child (even a leaf's, creating a sublist), while a row's exposed top edge inserts a sibling before it. A dragged row's indentation previews the target list's depth. Rows are always editable: titles save while typing, slug edits commit on blur/Enter since they rename the path (moving the whole subtree). The front page is the root row with an empty slug — renaming it away leaves no front page ("/" redirects to the first nav item), and giving another top-level row the empty slug makes it the front page.
- Preview and saving go over a **WebSocket** (`/_api/ws/editor`) with a stateless JSON protocol (`open`/`render`/`save`; on save all fields are optional and absent ones keep their old values, `move_from` renames), avoiding REST polling and races. Rendering always stays server-side.
- A REST API also exists for scripting, all under `/_api/`: `GET pages` (the full tree), `PUT/DELETE pages/{path}`, `GET/PUT settings` (site brand, theme and custom CSS), `POST structure` (reorder/move/retitle), file upload/removal via `PUT/DELETE files/{name}`.
- On startup, seed pages from `pagerite/seed.py` are added **only if missing** — existing user content is never overwritten.
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# Editing interface
The Vue editor is a single tabbed `EditorShell.vue` mounted in a host div created inside the static document.
## Tabs
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.
- `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.
Media uploads everywhere use the image icon buttons (pasting into the editor works too). The article, banner and site-settings pens are shorthands that open the shell on the matching tab; once open, clicking a pen switches tabs (and retargets the editors to the current page) instead of closing/remounting. The close button in the tab bar closes the shell (Escape too); tabs have no close buttons of their own. Closing only HIDES the shell — the Vue app stays mounted, so page-editor state (unsaved text included) survives until a real page reload; saving there is explicit (Ctrl+S) and refreshes the page regions in place. Admin panels never reload the page.
In-place page re-rendering shared by the banner/site/structure tabs lives in `swapdoc.js` (`runScripts`/`loadPlain`: fetch a page, swap the dynamic regions, replaceState). Placeholder texts are reserved for showing the actual default in effect when a field is left empty (e.g. the pending row's slug derived from its title); labels and help are real elements or tooltips, never placeholders.
## Saving behavior
Everything saves immediately as you edit (brand/title/CSS debounced, slug on commit since it renames the path), theme change swaps the stylesheet in place, tree rows navigate in place without transitions when focused, and the front page is a root-only row whose empty slug is editable like any other.
Every non-empty list (and the root) ends with a non-draggable plus footer row (vuedraggable `#footer` slot): clicking it starts a new pending page at that level (its slug placeholder shows the slug derived live from the title being typed), and while dragging it is the list's "end of list" drop target. Committing a pending page PUTs it with empty markdown (creates an empty page that renders with its title — saving never deletes; deletion is the page editor's explicit choice: saving trimmed-empty text issues a REST DELETE), then switches to the page editor tab for the actual writing.
Dropping ON the lower part of a row moves the page under that row (the child list's container invisibly overlaps its own row's bottom via negative margin — Sortable inserts it as the first child natively), while a row's exposed top edge inserts a sibling before it. Row indentation is structural (each nested list margin-indents itself), so a dragged row previews its whole subtree at the target list's depth.
The shell is dynamic-imported onto the content page by pagerite.js when an edit pen is clicked (the pens are injected by pagerite.js after the session validates; they carry `data-editor-src`/`data-editor-css`/`data-editor-mode`). In dev, modules load from the Vite dev server (`PAGERITE_VITE_URL`), in prod from the hashed build assets resolved via `frontend-build/.vite/manifest.json`.
`vite.config.js` sets `appType: 'mpa'` (no SPA fallback) and builds with `manifest: true`, `assetsDir: '_/assets'` (so the build mirrors the URL space; `frontend/public/favicon.ico` lands at the build root and is served at `/favicon.ico`). JS inputs are `src/main.js` and `src/pagerite.js`, plus `src/assets/pagerite.css` as a separate stylesheet entry; theme and banner-design CSS are NOT built — they live in `pagerite/themes/{name}/` and are served by the backend. There is no `index.html` source (it would shadow `/` and turn missing dev paths into an empty Vue shell). All outputs are ES modules. The build sets `preserveEntrySignatures: 'exports-only'` because main.js is consumed via dynamic `import()` for its `openEditor`/`closeEditor` exports — Vite app builds otherwise strip unused entry exports, leaving dead edit pens. In dev the backend links theme/banner-design stylesheets like in prod (`/_themes/...`); only the base CSS is Vite-injected from JS, and pagerite.js then re-appends the `#pagerite-theme`/`#pagerite-banner`/`#pagerite-user` elements to restore the canonical order (base < theme < design < custom CSS). In production all page assets are inlined instead (styles as `<style id="pagerite-…">` in `<head>`, scripts at the end of the body). Theme switches in the site editor swap the `#pagerite-theme` element in place — the link href in dev, the inline style's text (fetched from `/_themes/...`) in prod.
`vite-plugin-fastapi.js` has an auto-upgrade marker — edit `vite.config.js`, not the plugin.
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# Frontend runtime
The public page runtime lives in `frontend/src/`.
## `main.js`
Vue editor app entry, mounts the tabbed `EditorShell`. See `docs/editing.md` for the editor UI.
## `pagerite.js`
Public page entry; runs fetch-navigation (backed by an in-memory page cache: every visible internal link is fetched once at load and clicks are then served from JS with no fetch — the current page itself is not refetched, it enters the cache when navigated to — and the editors' `loadPlain` keeps the cache current via a `pagerite:page-fetched` event; articles are `cache-control: no-cache` on the wire), scroll-reveal, OverlayScrollbars on `document.body` (floating, auto-hiding scrollbars that never reserve layout space or shift the page when appearing; native scroll APIs like `window.scrollTo` keep working; themed via the `--os-*` variables in pagerite.css), brand shrink-to-fit (the themed size is the maximum; JS reduces the font-size so a long brand or narrow viewport still fits one line), nav condense-to-fit (the top nav stays on one row: link gaps shrink first, then the side padding, then the font size; `flex-wrap: wrap` remains the no-JS fallback), code copy buttons, and the auth check.
It first probes `GET /auth/api/settings` to detect whether Paskia SSO is available, then `GET /_api/settings` to learn the current session's admin status. The same reverse proxy that gates `/_api` returns 401 for anonymous users, 403 for users without the admin permission, and 200 for admins. When Paskia is detected, a login link (anonymous) or profile link (logged in) is shown in the banner corner; both are plain `<a href="/auth/">` links (Paskia does not support being iframed, so we navigate normally), and a `pageshow` handler re-probes auth when history navigation restores a cached page. Admins also get the page/banner edit pens and a site-settings pen, plus a `modulepreload` warm-up of the editor bundle (the hashed asset is immutable, so it costs nothing). If no Paskia SSO is detected (dev/no proxy), editing is left open. Pages themselves render identically for everyone; the real gate is the auth proxy in front of all of `/_api`.
Asset wiring differs by mode. In dev the backend links the Vite dev-server URLs (`pagerite:editor-src`/`-css`/`pagerite:analytics-src` meta tags, `<link>` stylesheets) and Vite injects the entry CSS from JS for hot reloads. In production there are no pagerite meta tags: all page assets are inlined into the document — stylesheets as `<style>` elements in `<head>` (fixed order: base, theme, banner design, entry sheets, custom CSS last), module scripts as inline `<script>`s at the end of the body (relative chunk imports are rewritten to absolute `/_assets/` paths) — and the on-demand bundles' URLs ride in a `<script type="application/json" id="pagerite-assets">` config. The editor bundle always stays external, imported on demand when a pen is opened. Every stylesheet element carries a stable id so fetch-navigation and the site editor can sync `<head>` positionally across swaps (the analytics sheet exists on `/_a` only and is added/removed as you navigate). The analytics entry is inlined into the `/_a` page itself; pagerite.js re-creates that script element after fetch-navigating there (inline scripts don't execute on a DOM swap) and calls the module's exposed unmount before swapping away.
## `assets/`
Shared styles and data files built by Vite and served hashed under `/_assets/`: `pagerite.css` (base layout + conservative variables), `pygments.css`, and `fonts/` (self-hosted Source Sans 3/Source Serif 4/Fraunces/Literata/Cormorant/Playfair Display/Inter/Montserrat/Fira Code/Cause/Exo 2/New Rocker variable woff2).
The `::view-transition*` block at the end of `pagerite.css` (from termotohtori.fi) is fragile — do not tweak. Themes and banner designs are NOT built — they live in `pagerite/themes/{name}/` and are served by the backend. See `docs/themes-and-assets.md` for details.
Vite builds ES-module `.js` outputs; in dev the backend links them as `<script type="module">` (module scripts defer by default), in production it inlines them at the end of the body.
## Database file
The database file is `pagerite.kantadb` in the cwd (`PAGERITE_DB` overrides); gitignored. Do not delete it without asking.
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# Pagerite overview
Pagerite is a single-user CMS/blog. FastAPI serves HTML rendered in Python with html5tagger; content is persisted in a kanta database and rendered on the fly per request. Vue is used only for interactive bits (editing tools), not for the public pages.
See `docs/design-principles.md` for the high-level design and the other `docs/*.md` files for implementation details.
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# Themes and assets
## Built assets
Files under `frontend/src/assets/` are built by Vite and served hashed under `/_assets/`:
- `pagerite.css` — base layout + conservative variables.
- `pygments.css` — Pygments token styles mapped onto the `--code-*` variables.
- `fonts/` — self-hosted variable woff2 files for Source Sans 3, Source Serif 4, Fraunces, Literata, Cormorant, Playfair Display, Inter, Montserrat, Fira Code, Cause, Exo 2 and New Rocker.
The `::view-transition*` block at the end of `pagerite.css` (from termotohtori.fi) is fragile — do not tweak.
## Themes
Themes are folders in `pagerite/themes/{name}/` containing `theme.css` and/or `banner.css` (+ `banner.svg` artwork and any extra assets the CSS references, like summer's `grass.svg`). They are served by the backend at `/_themes/{name}/...` — read from disk per request (etag by mtime), never built, so on-disk edits show on the next page load even in prod.
`Data.theme` selects the active theme (empty = none/base only) and the site editor can switch it, choosing from the theme folders found on disk. Vue may add per-component styles on top where needed.
Current themes:
- `purple` — dark dusk palette with Fraunces/Literata and a tilted oversized gradient brand.
- `corporate` — light-first with automatic `prefers-color-scheme` dark mode, Montserrat/Inter and a huge solid brand.
- `nitro` — racing/HUD style following `prefers-color-scheme` (warm light-grey page, deep violet in dark), Montserrat/Literata, black as an accent only, a straight orange blade under the banner, and an orange racing-tab nav clipped with a bezier `shape()`.
- `summer` — light playful meadow, one palette sampled from its illustrated `banner.svg` (sky/grass/sun/flower pink), Fraunces/Literata, a tilted gradient brand, flower bullets, and a layered-parallax banner (sun rises, clouds drift, nearer hills move less) with idle animations (swaying flowers, floating clouds, breathing sun glow) wrapped in `prefers-reduced-motion: no-preference`.
## Banner designs
A theme folder may also ship a banner design (`banner.css` + `banner.html` arbitrary markup or `banner.svg`), selectable per page independently of the active theme. Standalone banner designs (no theme.css) ship as:
- `eyes` — a canvas critter in the grass.
- `stars` — a drifting starfield.
The banner artwork has scroll parallax: pagerite.js sets the `--pry` scroll parameter on `<html>` (event-driven, so it is still when the page is idle), the banner contents drift within their window (with scale overscan so no edge shows), and designs may key their own effects off the same parameter.
## Stylesheet order
The backend emits the stylesheets in a fixed order — base (Vite build), theme, banner design, entry sheets, custom CSS last — each with a stable id so fetch-navigation and the site editor can sync them in place. In dev they are `<link>`s (the base is Vite-injected from JS instead); in production they are inlined as `<style>` elements. The base stylesheet's `--font-brand` defaults to `var(--font-heading)`.
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"@codemirror/view": "^6.43.8",
"@lezer/highlight": "^1.2.3",
"codemirror": "^6.0.2",
"country-flag-icons": "^1.6.20",
"overlayscrollbars": "^2.16.0",
"transliteration": "^2.6.1",
"vue": "^3.5.26",
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<script setup>
// Analytics viewer rendered as a normal page inside #main. Receives live
// analytics data over /_api/ws/analytics (admin-gated by the auth proxy) and
// renders totals, smoothed visit/views curves, a transition map, and recent
// visit/crawler tables. Read-only.
// See docs/analytics.md for the data format.
import { computed, onMounted, onUnmounted, ref, watch } from 'vue'
import {
RANGES,
rangeWindow,
filterRecordsByRange,
filterTransitionsByRange,
filterViewsByRange,
} from './analytics/time.js'
import {
calcReadStats,
calcTotalViews,
copyIp,
copyList,
formatCount,
formatAbuseRows,
formatCrawlerRows,
formatVisitRows,
} from './analytics/format.js'
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% - ${VIEW_W / 2}px))`
const ABUSE_MAX_LINES = 5
const data = ref(null)
const pageTree = ref(null)
const error = ref('')
const now = ref(Date.now())
let ws = null
let reconnectTimeout = null
let timeInterval = null
// The initial range comes from the URL hash (shareable links); without one,
// it is derived from the first analytics snapshot: day when the recorded
// history is shorter than 24 h, week otherwise.
const hashRange = location.hash.slice(1)
const range = ref(RANGES[hashRange] ? hashRange : 'week')
let rangePinned = Boolean(RANGES[hashRange])
function connectAnalytics() {
if (ws) return
const proto = location.protocol === 'https:' ? 'wss:' : 'ws:'
ws = new WebSocket(`${proto}//${location.host}/_api/ws/analytics`)
ws.onopen = () => { error.value = '' }
ws.onmessage = (event) => {
try {
data.value = JSON.parse(event.data)
if (!rangePinned) {
rangePinned = true
const starts = (data.value?.visits || [])
.map((v) => Date.parse(v.start))
.filter((t) => !Number.isNaN(t))
if (starts.length && Date.now() - Math.min(...starts) < 24 * 3600 * 1000) {
range.value = 'day'
}
}
} catch {
error.value = 'analytics data could not be loaded'
}
}
ws.onerror = () => {
error.value = 'analytics data could not be loaded'
}
ws.onclose = () => {
ws = null
reconnectTimeout = setTimeout(connectAnalytics, 2000)
}
}
onMounted(async () => {
connectAnalytics()
now.value = Date.now()
timeInterval = setInterval(() => { now.value = Date.now() }, 1000)
// The site tree for the transition map (all pages in menu order). Not
// fatal: without it the map just narrows to pages seen in transitions.
try {
const res = await fetch('/_api/pages')
if (res.ok) pageTree.value = await res.json()
} catch { /* map just narrows to pages seen in transitions */ }
})
onUnmounted(() => {
if (reconnectTimeout) clearTimeout(reconnectTimeout)
if (timeInterval) clearInterval(timeInterval)
if (ws) {
ws.onclose = null
ws.close()
ws = null
}
})
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.
watch(range, (r) => {
const url = new URL(location.href)
url.hash = r
history.replaceState(null, '', url)
})
const clients = computed(() => data.value?.clients || {})
const visitRows = computed(() => formatVisitRows(visits.value, clients.value, pageTree.value, now.value))
const crawlers = computed(() => rangeData.value?.crawlers || [])
const crawlerRows = computed(() => formatCrawlerRows(crawlers.value, clients.value, pageTree.value, now.value))
const abuseRows = computed(() => formatAbuseRows(rangeData.value?.abuse || [], clients.value, now.value))
</script>
<template>
<div class="analytics-view">
<div class="analytics-panel">
<header>
<h1>Analytics</h1>
<nav class="ranges">
<button v-for="(r, key) in RANGES" :key="key" type="button"
:class="{ active: range === key }" @click="range = key">
{{ r.label }}
</button>
</nav>
<a href="/" class="close" title="home"></a>
</header>
<p v-if="error" class="error"> {{ error }}</p>
<p v-else-if="!data" class="loading">loading</p>
<template v-else>
<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/read</div>
</section>
<VisitorCharts :data="data" :range="range" />
<TransitionGraph :data="rangeData" :window="window" :page-tree="pageTree" />
<section>
<h2>Recent visits</h2>
<div v-if="visitRows.length" class="visit-table-wrap">
<table class="visit-table">
<thead>
<tr>
<th>trail</th>
<th>visitor</th>
<th class="last-seen">last seen</th>
</tr>
</thead>
<tbody>
<tr v-for="(v, i) in visitRows" :key="i">
<td class="trail">
<TrailLink v-if="v.refererStep" :step="v.refererStep" @close="$emit('close')" />
<span v-if="v.utm && v.utm !== '—'" class="utm-tag small muted" :title="v.utmTitle">{{ v.utm }}</span>
<TrailLink v-for="(s, si) in v.trail" :key="si" :step="s" @close="$emit('close')" />
</td>
<VisitorCell
:ip="v.ip"
:ip-display="v.ipDisplay"
:ua="v.ua"
:ua-raw="v.uaRaw"
:country="v.country"
:city="v.city"
:lang="v.lang"
:lang-display="v.langDisplay"
:is-host="v.isHost"
/>
<td class="last-seen muted"
:title="v.lastSeenLocal"
@click="copyList(v.lastSeenIso, $event)">{{ v.lastSeen }}</td>
</tr>
</tbody>
</table>
</div>
<p v-else class="empty">no visits recorded yet</p>
<div v-if="crawlerRows.length" class="visit-table-wrap">
<table class="visit-table">
<thead>
<tr>
<th>pages crawled</th>
<th>visitor</th>
<th class="last-seen">last seen</th>
</tr>
</thead>
<tbody>
<tr v-for="(c, i) in crawlerRows" :key="i">
<td class="trail">
<TrailLink v-for="(s, si) in c.pages" :key="si" :step="s" :count="s.count" @close="$emit('close')" />
</td>
<VisitorCell
:ip="c.ip"
:ip-display="c.ipDisplay"
:ua="c.ua"
:ua-raw="c.uaRaw"
:country="c.country"
:city="c.city"
:lang="c.lang"
:lang-display="c.langDisplay"
:is-host="c.isHost"
/>
<td class="last-seen muted"
:title="c.lastSeenLocal"
@click="copyList(c.lastSeenIso, $event)">{{ c.lastSeen }}</td>
</tr>
</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">
<thead>
<tr>
<th>paths abused</th>
<th>visitor</th>
<th class="last-seen">last seen</th>
</tr>
</thead>
<tbody>
<tr v-for="(a, i) in abuseRows" :key="i">
<td class="trail abuse-list clickable-list"
@click="copyList(a.allPaths, $event)">
<div class="abuse-items">
<span v-for="(p, pi) in a.paths.slice(0, ABUSE_MAX_LINES)" :key="pi"
class="inline-item">
<small v-if="p.count > 1" class="muted">{{ formatCount(p.count) }}×</small>{{ p.path }}
</span>
<small v-if="a.paths.length > ABUSE_MAX_LINES" class="muted">+{{ a.paths.length - ABUSE_MAX_LINES }} more</small>
</div>
</td>
<VisitorCell
:ip="a.ip"
:ip-display="a.ipDisplay"
:ua="a.ua"
:ua-raw="a.uaRaw"
:country="a.country"
:city="a.city"
:lang="a.lang"
:lang-display="a.langDisplay"
:is-host="a.isHost"
:variant-count="a.clientCount"
/>
<td class="last-seen muted"
:title="a.lastSeenLocal"
@click="copyList(a.lastSeenIso, $event)">{{ a.lastSeen }}</td>
</tr>
</tbody>
</table>
</div>
</section>
</template>
</div>
</div>
</template>
<style scoped>
.analytics-view {
min-height: 100vh;
background: var(--bg, Canvas);
color: var(--text, CanvasText);
}
.analytics-panel {
margin: 0;
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 {
display: flex;
align-items: center;
gap: 1rem;
}
.analytics-panel h1 {
margin: 0;
font-size: 1.4rem;
}
.ranges {
display: flex;
gap: 0.25rem;
margin-left: auto;
}
.ranges button {
padding: 0.2rem 0.7rem;
font: inherit;
font-size: 0.9rem;
color: var(--muted);
background: none;
border: 1px solid var(--line);
border-radius: 1rem;
cursor: pointer;
}
.ranges button:hover { color: var(--text); }
.ranges button.active {
color: var(--text);
border-color: var(--accent);
}
.close {
padding: 0 0.3rem;
background: none;
border: none;
color: var(--muted);
font-size: 1.2rem;
cursor: pointer;
}
.close:hover { color: var(--text); }
.analytics-panel h2 {
margin: 0 0 0.6rem;
font-size: 1rem;
color: var(--muted);
}
.analytics-panel section {
margin-top: 1.8rem;
}
.analytics-view a {
color: var(--text);
text-decoration: none;
}
.analytics-view a:hover { color: var(--accent); }
.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: clamp(0.5rem, 3cqw, 2rem);
font-size: clamp(0.6rem, 2.2cqw, 1.1rem);
white-space: nowrap;
}
.totals strong { font-size: 1.36em; }
.visit-table-wrap {
overflow-x: auto;
}
.visit-table {
width: 100%;
border-collapse: collapse;
font-size: 0.9rem;
line-height: 1.3;
}
.visit-table th,
.visit-table td {
padding: 0.25rem 0.5rem;
border-bottom: 1px solid var(--line);
text-align: left;
vertical-align: top;
}
.visit-table th {
color: var(--muted);
font-weight: normal;
text-transform: lowercase;
position: sticky;
top: 0;
background: var(--bg, Canvas);
}
.visit-table .last-seen {
width: 6rem;
text-align: right;
white-space: nowrap;
cursor: pointer;
}
.visit-table .trail {
max-width: 20rem;
overflow-wrap: break-word;
}
.visit-table .trail a,
.visit-table .trail-link {
display: inline-block;
max-width: 8rem;
white-space: nowrap;
overflow: hidden;
text-overflow: ellipsis;
vertical-align: bottom;
}
.visit-table .trail > * + * {
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%;
padding: 0.05rem 0.4rem;
border: 1px solid var(--line);
border-radius: 0.25rem;
white-space: nowrap;
overflow: hidden;
text-overflow: ellipsis;
vertical-align: bottom;
}
.visit-table .clickable-list {
cursor: pointer;
max-width: 22rem;
}
.visit-table .abuse-items {
display: flex;
flex-wrap: wrap;
gap: 0.15rem 0.5rem;
align-items: baseline;
}
.visit-table .inline-item {
max-width: 18rem;
min-width: 0;
white-space: nowrap;
overflow: hidden;
text-overflow: ellipsis;
word-break: keep-all;
hyphens: none;
}
.visit-table :deep(.clickable-ip),
.visit-table .clickable-list,
.visit-table .last-seen {
cursor: pointer;
position: relative;
}
.visit-table :deep(.copy-popup) {
position: absolute;
bottom: calc(100% + 0.25rem);
left: 50%;
transform: translateX(-50%);
padding: 0.15rem 0.4rem;
background: var(--text, CanvasText);
color: var(--bg, Canvas);
border-radius: 0.25rem;
font-size: 0.75rem;
white-space: nowrap;
pointer-events: none;
z-index: 10;
}
.crawler-top-uas {
font-size: 0.9rem;
margin-bottom: 0.6rem;
}
.crawler-top-uas strong {
color: var(--muted);
}
.empty, .loading, .error { color: var(--muted); }
.error { color: var(--error, #c00); }
</style>
+48 -40
View File
@@ -242,30 +242,43 @@ async function saveSettings(opts = {}) {
async function onThemeChange() {
await saveSettings()
// Theme CSS is backend-served at /_themes/{theme}/theme.css in both dev
// and prod: swap the link in place, then re-render (the theme's default
// banner design and the page's stylesheet links may change with it).
let link = document.getElementById('pagerite-theme')
// and prod, but rendered differently: a <link> in dev, an inline <style>
// in prod. Swap it in place, then re-render (the theme's default banner
// design and the page's stylesheets may change with it).
let el = document.getElementById('pagerite-theme')
const url = `/_themes/${theme.value}/theme.css`
if (theme.value) {
const href = `/_themes/${theme.value}/theme.css`
if (link) {
link.href = href
} else {
if (el?.tagName === 'STYLE') {
el.textContent = await (await fetch(url)).text()
} else if (el) {
el.href = url
} else if (import.meta.env.DEV) {
// Re-create after "none": keep base < theme < design < custom CSS.
// In dev there is no #pagerite-base link (the base is a
// In dev there is no #pagerite-base element (the base is a
// Vite-injected <style>), so anchor to the next sheet instead of
// prepending before the base styles.
link = document.createElement('link')
link.rel = 'stylesheet'
link.id = 'pagerite-theme'
link.href = href
el = document.createElement('link')
el.rel = 'stylesheet'
el.id = 'pagerite-theme'
el.href = url
const before = document.getElementById('pagerite-base')?.nextSibling
?? document.getElementById('pagerite-banner')
?? document.getElementById('pagerite-user')
if (before) before.before(link)
else document.head.append(link)
if (before) before.before(el)
else document.head.append(el)
} else {
// Prod: inline <style>, fetched from the backend-served URL.
el = document.createElement('style')
el.id = 'pagerite-theme'
el.textContent = await (await fetch(url)).text()
const before = document.getElementById('pagerite-base')?.nextSibling
?? document.getElementById('pagerite-banner')
?? document.getElementById('pagerite-user')
if (before) before.before(el)
else document.head.append(el)
}
} else if (link) {
link.remove()
} else if (el) {
el.remove()
}
loadPlain(path.value)
}
@@ -561,7 +574,7 @@ onUnmounted(() => {
</div>
</section>
<section class="block" @paste="onBrandPaste">
<section class="block grow" @paste="onBrandPaste">
<div class="block-head">
<span class="field-label">brand code (replaces the brand link)</span>
<button
@@ -581,7 +594,7 @@ onUnmounted(() => {
<div ref="brandEl" class="brand-cm" />
</section>
<section class="block">
<section class="block grow">
<div class="block-head">
<span class="field-label">custom CSS (applies to every page, on top of the theme)</span>
</div>
@@ -595,6 +608,7 @@ onUnmounted(() => {
display: flex;
flex-direction: column;
overflow-y: auto;
background: var(--surface);
}
.block {
@@ -606,6 +620,13 @@ onUnmounted(() => {
background: var(--surface);
}
/* Editor blocks (brand HTML, custom CSS) share the leftover panel height
equally; their CodeMirror windows fill the block and scroll internally. */
.block.grow {
flex: 1;
min-height: 7rem;
}
.block-head {
display: flex;
align-items: center;
@@ -775,42 +796,29 @@ onUnmounted(() => {
border-color: var(--accent);
}
/* Small CodeMirror window for the custom brand HTML; scrolls internally. */
.brand-cm {
border: 1px solid var(--line);
border-radius: 4px;
overflow: hidden;
}
.brand-cm :deep(.cm-editor) {
max-height: 7rem;
font-size: 0.85rem;
}
.brand-cm :deep(.cm-scroller) {
overflow: auto;
}
.brand-cm :deep(.cm-gutters) {
display: none;
}
/* CodeMirror window for site-wide custom CSS. */
/* CodeMirror windows for the brand HTML and custom CSS: fill the growing
block, scroll internally. */
.brand-cm,
.css-cm {
flex: 1;
min-height: 0;
border: 1px solid var(--line);
border-radius: 4px;
overflow: hidden;
}
.brand-cm :deep(.cm-editor),
.css-cm :deep(.cm-editor) {
max-height: 12rem;
height: 100%;
font-size: 0.85rem;
}
.brand-cm :deep(.cm-scroller),
.css-cm :deep(.cm-scroller) {
overflow: auto;
}
.brand-cm :deep(.cm-gutters),
.css-cm :deep(.cm-gutters) {
display: none;
}
+37
View File
@@ -0,0 +1,37 @@
<script setup>
import { computed } from 'vue'
import { formatCount, formatReadTime } from './analytics/format.js'
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="title"
:target="step.external ? '_blank' : undefined"
:rel="step.external ? 'noopener' : undefined"
@click="(e) => { if (!step.external) $emit('close') }">
<small v-if="count > 1" class="muted">{{ formatCount(count) }}×</small>
<span>{{ step.slug }}</span>
</a>
</template>
+285
View File
@@ -0,0 +1,285 @@
<script setup>
/**
* Radial transition map for a pre-filtered time range.
*
* 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, shallowRef, watch } from 'vue'
import { DAY, WEEK } from './analytics/time.js'
import { formatCount } from './analytics/format.js'
import {
TNODE_W,
TNODE_H,
BEAD_R,
buildTransitionGraph,
} from './analytics/transitions.js'
const props = defineProps({
data: { type: Object, default: null },
window: { type: Object, required: true },
pageTree: { type: Array, default: null },
})
const visualScale = computed(() => {
const { t0, t1 } = props.window
if (t0 != null && t1 != null) return WEEK / (t1 - t0)
// '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
const span = Math.max(...arr) - Math.min(...arr)
return WEEK / Math.max(span, 30 * DAY)
})
const graph = computed(() =>
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
// 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 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 now = performance.now()
const seen = new Set()
for (const flow of flows) {
seen.add(flow.key)
const interval = (flow.interval / scale) * 1000
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
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 })
}
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, syncBeads, { immediate: true })
onMounted(() => {
if (!matchMedia('(prefers-reduced-motion: reduce)').matches) {
rafId = requestAnimationFrame(tick)
}
})
onBeforeUnmount(() => cancelAnimationFrame(rafId))
// 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.
// 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
const countLabel = (n) =>
n.readMin ? `${formatCount(n.views)}×${n.readMin}m` : formatCount(n.views)
</script>
<template>
<section v-if="graph">
<svg class="tmap" :style="{ maxWidth: `${graph.bounds.x1 - graph.bounds.x0}px` }" :viewBox="`${graph.bounds.x0} ${graph.bounds.y0} ${graph.bounds.x1 - graph.bounds.x0} ${graph.bounds.y1 - graph.bounds.y0}`"
role="img" aria-label="map of transitions between pages">
<path v-for="(a, i) in graph.arcs" :key="'a' + i"
:id="`tarc${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>
</path>
<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${i}`">
<rect :x="x.x - TNODE_W/2 + 6" :y="x.y - TNODE_H/2" :width="TNODE_W - 12"
:height="TNODE_H" :rx="TNODE_H/2 - 4" />
</clipPath>
<a v-if="x.href" :href="x.href" target="_blank" rel="noopener">
<title>{{ x.path }}</title>
<rect :x="x.x - TNODE_W/2" :y="x.y - TNODE_H/2" :width="TNODE_W" :height="TNODE_H" :rx="TNODE_H/2"
:class="['txnode', x.kind === 'source' ? 'txnode-source' : 'txnode-exit']" />
<g :clip-path="`url(#xclip${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']" />
<g :clip-path="`url(#xclip${i})`">
<text :x="fitsPill(x.label) ? x.x : x.x - TNODE_W/2 + 8" :y="x.y - TNODE_H*0.16" class="tnodeslug" dominant-baseline="middle" :style="{ textAnchor: fitsPill(x.label) ? 'middle' : 'start' }">{{ x.label }}</text>
<text :x="x.x" :y="x.y + TNODE_H*0.24" class="tnodecount" dominant-baseline="middle">{{ formatCount(x.count) }}</text>
</g>
</g>
</g>
<g v-for="(n, i) in graph.nodes" :key="n.path">
<clipPath :id="`nclip${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" />
<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>
</g>
</svg>
</section>
</template>
<style scoped>
/* Transition map: radial graph of internal page-to-page transitions. */
.tmap {
display: block;
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);
opacity: 0.4; /* uniform, not strength-encoded: width carries that */
}
.tmap .tconn-exit {
fill: var(--text);
}
.tmap .tbead {
fill: var(--accent);
opacity: 0.85;
filter: drop-shadow(0 0 2.5px var(--accent));
}
.tmap .txnode {
fill: var(--text);
stroke: none;
}
.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(--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 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: 19px;
text-anchor: start;
}
.tmap a { cursor: pointer; }
.tmap .tnodecount {
fill: var(--bg, Canvas);
opacity: 0.75;
font-size: 15px;
text-anchor: middle;
}
section { margin-top: 1.8rem; }
</style>
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<script setup>
// Visitor metadata cell shared by the recent-visits, crawlers, and abuse tables.
// Displays IP/network/host, country flag/city, UA, and language when available.
// Clicking the IP copies the full address to the clipboard.
// ``variantCount`` overrides the UA line to warn when multiple client
// fingerprints share the same IP (e.g. a scanner rotating UAs).
import { computed } from 'vue'
import * as flagSvgs from 'country-flag-icons/string/3x2'
import { copyIp, formatLang } from './analytics/format.js'
const props = defineProps({
ip: { type: String, default: '' },
ipDisplay: { type: String, default: '—' },
ua: { type: String, default: '' },
uaRaw: { type: String, default: '' },
country: { type: String, default: '' },
city: { type: String, default: '' },
lang: { type: String, default: '' },
langDisplay: { type: String, default: '' },
isHost: { type: Boolean, default: false },
variantCount: { type: Number, default: 1 },
})
const hasCountry = computed(() => !!(props.country && props.country !== '—'))
const hasCity = computed(() => !!(props.city && props.city !== '—'))
const hasLocale = computed(() => hasCountry.value || hasCity.value)
const langValue = computed(() => props.langDisplay || formatLang(props.lang))
const showLang = computed(() => langValue.value && langValue.value !== '—')
function flagSvg(code) {
return flagSvgs[code?.toUpperCase()] || ''
}
function countryName(code) {
if (!code) return ''
try {
return new Intl.DisplayNames(['en'], { type: 'region' }).of(code.toUpperCase())
} catch {
return ''
}
}
</script>
<template>
<td class="visitor-cell" :class="{ 'host-cell': isHost }">
<div class="visitor-rows">
<div class="visitor-row">
<div class="locale-line">
<span v-if="flagSvg(country)" class="flag" v-html="flagSvg(country)" :title="countryName(country) || country"></span>
<template v-if="hasCity"><small class="city-name muted">{{ city }}</small></template>
<template v-else-if="!hasLocale"></template>
</div>
<div class="ip-line">
<span class="clickable-ip small muted"
:title="ip"
@click="copyIp(ip, $event)">{{ ipDisplay }}</span>
</div>
</div>
<div class="visitor-row">
<div class="ua-line">
<small v-if="variantCount > 1" class="muted variant-hint">{{ variantCount }} client variations</small>
<small v-else class="muted" :title="uaRaw">{{ ua || '—' }}</small>
</div>
<div v-if="showLang && variantCount <= 1" class="locale-lang"><small class="muted">{{ langValue }}</small></div>
</div>
</div>
</td>
</template>
<style scoped>
.visitor-cell {
width: 18em;
max-width: 18em;
overflow: hidden;
text-overflow: ellipsis;
vertical-align: top;
}
.visitor-cell.host-cell {
text-align: right;
}
.visitor-rows {
display: flex;
flex-direction: column;
gap: 0.15rem;
}
.visitor-row {
display: flex;
align-items: center;
justify-content: space-between;
gap: 0.5rem;
}
.visitor-row > * {
min-width: 0;
}
.locale-line,
.ip-line,
.ua-line {
flex: 1 1 auto;
overflow: hidden;
text-overflow: ellipsis;
white-space: nowrap;
}
.locale-line {
text-align: left;
display: flex;
align-items: center;
gap: 0.3rem;
}
.ip-line {
text-align: right;
}
.ua-line {
text-align: left;
}
.locale-lang {
flex: 0 0 auto;
overflow: hidden;
text-overflow: ellipsis;
white-space: nowrap;
text-align: right;
}
.city-name {
display: inline-block;
overflow: hidden;
text-overflow: ellipsis;
white-space: nowrap;
vertical-align: middle;
}
.flag {
display: inline-flex;
width: 18px;
height: 12px;
border-radius: 2px;
overflow: hidden;
border: 1px solid var(--line);
box-shadow: 0 0 0 1px rgba(0, 0, 0, 0.2) inset;
vertical-align: middle;
}
.flag :deep(svg) {
width: 100%;
height: 100%;
display: block;
}
</style>
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<script setup>
/**
* Visitor and page-view smoothed curves for a single shared time range.
*/
import { computed, onMounted, onUnmounted, ref } from 'vue'
import { makeSeries } from './analytics/time.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% - ${VIEW_W / 2}px))`
const props = defineProps({
data: { type: Object, default: null },
range: { type: String, required: true },
})
// Views across all pages combined into one raw bucket map.
const allViews = computed(() => {
const all = {}
for (const buckets of Object.values(props.data?.views || {})) {
for (const [k, c] of Object.entries(buckets)) all[k] = (all[k] || 0) + c
}
return all
})
const visitSeries = computed(() => makeSeries(props.data?.site_visits, props.range))
const viewSeries = computed(() => makeSeries(allViews.value, props.range))
function freqLabel(unit) {
return unit === '5min' ? '5 min' : unit === 'hour' ? 'hourly' : 'daily'
}
/** Vertical axis caption: "visits / 5 min" on the day view, else "hourly visits" style. */
function axisLabel(unit, ylabel) {
return unit === '5min' ? `${ylabel} / 5 min` : `${freqLabel(unit)} ${ylabel}`
}
/** Legend label for the overlaid past weeks: "Week M" or "Week MN". */
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 ${oldest}`
}
const now = ref(Date.now())
let refreshInterval = null
onMounted(() => {
refreshInterval = setInterval(() => { now.value = Date.now() }, DAY_REFRESH_MS)
})
onUnmounted(() => {
if (refreshInterval) clearInterval(refreshInterval)
})
const visitChart = computed(() => buildChart(visitSeries.value, now.value))
const viewChart = computed(() => buildChart(viewSeries.value, now.value))
</script>
<template>
<section v-for="c in [
{ ylabel: 'visits', chart: visitChart, legend: true, empty: 'no visits recorded yet' },
{ ylabel: 'views', chart: viewChart, legend: false, empty: 'no views recorded yet' },
]" :key="c.ylabel">
<template v-if="c.chart">
<svg class="chart" :viewBox="`${-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>
/* 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: auto;
overflow: visible;
}
.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;
}
.chart .minor {
stroke: var(--line);
stroke-width: 1;
vector-effect: non-scaling-stroke;
opacity: 0.35;
}
.chart .minor.vertical {
opacity: 0.25;
}
.chart .major {
stroke: var(--line);
stroke-width: 1;
vector-effect: non-scaling-stroke;
stroke-dasharray: 3 4;
opacity: 0.8;
}
.chart .axis {
stroke: var(--line);
stroke-width: 1;
vector-effect: non-scaling-stroke;
}
.chart .area {
fill: var(--accent);
opacity: 0.15;
}
.chart .bar {
fill: var(--accent);
opacity: 0.15;
}
.chart .line {
fill: none;
stroke: var(--accent);
stroke-width: 2;
vector-effect: non-scaling-stroke;
stroke-linejoin: round;
stroke-linecap: round;
}
/* Past overlay weeks contrast with the current week's accent color. */
.chart .line.past {
stroke: var(--muted);
}
.empty { color: var(--muted); }
</style>
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// Analytics page entry: mounts AnalyticsView inside the normal page layout.
// In production the backend inlines this module into the /_a page (and
// pagerite.js re-creates the script element after fetch-navigations there);
// in dev pagerite.js imports it from the Vite dev server on demand. Either
// way it auto-mounts on #analytics-app when it evaluates, and unmounts when
// pagerite.js announces a swap away from /_a.
import { createApp } from 'vue'
import AnalyticsView from './AnalyticsView.vue'
let app = null
export function mount(container) {
if (app) return
app = createApp(AnalyticsView)
app.mount(container)
}
export function unmount() {
app?.unmount()
app = null
}
// pagerite.js calls this before swapping away from /_a; each evaluation
// (the inlined production module evaluates fresh on every visit) replaces
// the handle.
window.__pageriteAnalyticsUnmount = unmount
// Auto-mount when the page holding #analytics-app is present.
const container = document.getElementById('analytics-app')
if (container) mount(container)
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/**
* Chart geometry, smoothing, and SVG path generation for analytics charts.
*
* 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 = 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
* most 5 intervals, so labeled ticks are always round and evenly divided.
* A minimum range of 10 keeps tiny near-zero values (e.g. a single visit)
* from being enlarged to a fractional scale; minor lines subdivide each
* major step in five when that yields integers.
*/
export function yScale(maxValue) {
let step = 1
outer: for (let exp = -3; exp < 8; exp++) {
for (const base of [1, 2, 5]) {
step = base * 10 ** exp
if (Math.ceil(maxValue / step) <= 5) break outer
}
}
let max = Math.ceil(maxValue / step) * step
if (max < 10) {
max = 10
step = 2
}
const minor = step >= 5 && step % 5 === 0 ? step / 5 : null
return { max, step, minor }
}
/**
* 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, {
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
// (5-20 events/hour = 120-480/day on the month+ ranges).
highTrafficEvents = 10 * unitMinutes / 60,
minRatio = 2.5,
minSignificance = 4,
} = {}) {
const n = counts.length
if (!n) return counts
const detectorWindowBins = Math.max(1, Math.round(detectorWindowMinutes / binMinutes))
const cumsum = new Float64Array(n + 1)
for (let i = 0; i < n; i++) cumsum[i + 1] = cumsum[i] + counts[i]
// Detect abrupt regime changes from aggregated traffic on both sides.
// Individual bins are deliberately ignored because even high traffic
// produces many 0-1 count bins at five-minute resolution.
const score = new Float64Array(n)
const candidate = new Uint8Array(n)
for (let i = detectorWindowBins; i < n - detectorWindowBins; i++) {
const left = cumsum[i] - cumsum[i - detectorWindowBins]
const right = cumsum[i + detectorWindowBins] - cumsum[i]
const high = Math.max(left, right)
const low = Math.min(left, right)
if (high < highTrafficEvents) continue
const ratio = (high + 1) / (low + 1)
const significance = (high - low) / Math.sqrt(high + low + 1)
if (ratio >= minRatio && significance >= minSignificance) {
candidate[i] = 1
score[i] = significance * Math.log(ratio)
}
}
// Collapse each continuous detector region to its strongest boundary.
const edges = []
for (let i = 0; i < n;) {
if (!candidate[i]) { i++; continue }
let j = i + 1
while (j < n && candidate[j]) j++
let best = i
for (let k = i + 1; k < j; k++) {
if (score[k] > score[best]) best = k
}
edges.push(best)
i = j
}
// 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)
// 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)
for (let j = 0; j < length; j++) {
const count = segment[j]
if (!count) continue
const start = Math.max(0, j - radius)
const end = Math.min(length, j + radius + 1)
let weightSum = 0
for (let i = start; i < end; i++) {
const d = i - j
weightSum += Math.exp(-0.5 * (d / sigmaBins) ** 2)
}
for (let i = start; i < end; i++) {
const d = i - j
smoothed[lo + i] += count * Math.exp(-0.5 * (d / sigmaBins) ** 2) / weightSum
}
}
}
return [...smoothed]
}
/**
* Catmull-Rom spline through the (smoothed) points, control points clamped
* to the plot area so the curve can never dip below zero or above the max.
*/
export function spline(pts) {
if (pts.length < 3) {
return `M${pts.map((p) => `${p.x},${p.y}`).join('L')}`
}
const clampY = (y) => Math.min(CHART_H, Math.max(PAD_TOP, y))
let d = `M${pts[0].x},${pts[0].y}`
for (let i = 0; i < pts.length - 1; i++) {
const p0 = pts[i - 1] || pts[i]
const p1 = pts[i]
const p2 = pts[i + 1]
const p3 = pts[i + 2] || p2
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}`
}
return d
}
/** Build a full chart model from a series descriptor produced by time.js. */
export function buildChart(input, now = Date.now()) {
if (!input || !input.series.length) return null
if (input.unit === '5min') return buildDayChart(input, now)
const { series, t0, t1, rate, binMinutes, unitMinutes, unit } = input
// Values are per-unit rates (hour on the week view, day on month+); the
// y max is derived from the *smoothed* curves so random single-bucket
// spikes don't blow up the scale. Smoothing works on raw counts (its edge
// detector thresholds are count-based), the result is scaled back to rates.
const smoothed = series.map((s) =>
smooth(s.points.map((p) => p.count), binMinutes, unitMinutes).map((v) => v * rate))
// Scale from the current/primary series only; older overlay weeks are drawn
// with the same scale and allowed to overflow if they are busier.
const highest = Math.max(0, ...smoothed[0])
const { max, step, minor } = yScale(highest)
const x = (t) => ((t - t0) / (t1 - t0)) * CHART_W
const y = (v) => PAD_TOP + (1 - Math.max(0, v) / max) * (CHART_H - PAD_TOP)
const drawn = series.map((s, si) => {
const pts = s.points.map((p, i) => ({ x: x(p.t), y: y(smoothed[si][i]) }))
const line = spline(pts)
const first = pts[0]
const last = pts.at(-1)
return {
...s,
line,
area: s.area ? `${line}L${last.x},${CHART_H}L${first.x},${CHART_H}Z` : null,
}
})
// Major (labeled) and minor (hairline) y grid ticks.
const majors = []
const minors = []
const nMajor = Math.round(max / step)
for (let k = 0; k <= nMajor; k++) {
const v = k * step
majors.push({ value: v, y: y(v), label: fmtY(v) })
}
if (minor) {
for (let v = minor; v < max; v += minor) {
if (v % step !== 0) minors.push({ y: y(v) })
}
}
// X ticks. Week view: weekday labels centered at midday UTC, no vertical
// lines (day boundaries would be misleading in the viewer's timezone).
// Month view: likewise lineless, day numbers at noon UTC with the month
// name substituted for the 1st (marking the month change). Longer
// ranges: boundary lines at Mondays / months / years.
const isWeek = t1 - t0 === WEEK
const isMonth = !isWeek && t1 - t0 <= 31 * DAY
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,
})
}
} 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 }
}
/**
* Day view: 5-minute bars for the last 24 hours. Bars are drawn at raw
* counts; the skyline uses a projected full-bucket value for the still-open
* final bucket. The y scale is derived from the projected skyline maximum.
*/
export function buildDayChart(input, now = Date.now()) {
const { series, t0, t1 } = input
const points = series[0]?.points || []
const n = points.length
if (!n) return null
const bucketMs = (t1 - t0) / n
const bucketWidth = CHART_W / n
const gap = 0.2
const barWidth = Math.max(0.2, bucketWidth - gap)
const x = (i) => i * bucketWidth + gap / 2
const prevRaw = n > 1 ? points[n - 2].count : 0
const projected = points.map((p, i) => {
if (i !== n - 1) return p.count
const bucketStart = t0 + i * bucketMs
const elapsed = Math.max(1, Math.min(bucketMs, now - bucketStart))
// Blend the observed partial bucket with the previous full bucket:
// the longer the current bucket has run, the less we borrow from it.
const share = elapsed / bucketMs
return p.count + prevRaw * (1 - share)
})
const highest = Math.max(0, ...projected)
const { max, step, minor } = yScale(highest)
const y = (v) => PAD_TOP + (1 - Math.max(0, v) / max) * (CHART_H - PAD_TOP)
const bars = points.map((p, i) => {
const bx = x(i)
const by = y(p.count)
return {
x: bx,
y: by,
width: barWidth,
height: CHART_H - by,
raw: p.count,
projected: projected[i],
}
})
let skyline = ''
for (let i = 0; i < bars.length; i++) {
const b = bars[i]
const top = y(b.projected)
if (i === 0) {
skyline += `M${b.x},${top} H${b.x + b.width}`
} else {
skyline += ` V${top} H${b.x + b.width}`
}
}
const majors = []
const minors = []
const nMajor = Math.round(max / step)
for (let k = 0; k <= nMajor; k++) {
const v = k * step
majors.push({ value: v, y: y(v), label: fmtY(v) })
}
if (minor) {
for (let v = minor; v < max; v += minor) {
if (v % step !== 0) minors.push({ y: y(v) })
}
}
const xticks = []
const tickStep = 3 * HOUR
const firstTick = Math.ceil(t0 / tickStep) * tickStep
for (let t = firstTick; t < t1; t += tickStep) {
if (t < t0) continue
const d = new Date(t)
xticks.push({
x: ((t - t0) / (t1 - t0)) * CHART_W,
label: `${String(d.getUTCHours()).padStart(2, '0')}:00`,
line: false,
})
}
return { bars, skyline: skyline.trim(), max, majors, minors, xticks, unit: '5min', series: [] }
}
/** X ticks for year/all: Monday boundaries up to a quarter, UTC month
* boundaries up to a few years, then years. */
export function xticksFor(t0, t1) {
const span = t1 - t0
const ticks = []
if (span <= 100 * DAY) {
for (let t = mondayUTC(t0); t <= t1; t += WEEK) {
if (t >= t0) ticks.push(t)
}
return ticks
}
if (span <= 4 * 365 * DAY) {
const d = new Date(t0)
let t = Date.UTC(d.getUTCFullYear(), d.getUTCMonth() + 1, 1)
for (; t <= t1;) {
ticks.push(t)
const m = new Date(t)
t = Date.UTC(m.getUTCFullYear(), m.getUTCMonth() + 1, 1)
}
return ticks
}
const d = new Date(t0)
for (let yr = d.getUTCFullYear() + 1; Date.UTC(yr, 0, 1) <= t1; yr++) {
ticks.push(Date.UTC(yr, 0, 1))
}
return ticks
}
export function fmtTick(t, span) {
const d = new Date(t)
if (span <= 100 * DAY) {
return d.toLocaleDateString(undefined, { month: 'short', day: 'numeric', timeZone: 'UTC' })
}
if (span <= 4 * 365 * DAY) {
return d.getUTCMonth() === 0
? d.toLocaleDateString(undefined, { year: 'numeric', timeZone: 'UTC' })
: d.toLocaleDateString(undefined, { month: 'short', timeZone: 'UTC' })
}
return d.toLocaleDateString(undefined, { year: 'numeric', timeZone: 'UTC' })
}
/** Y labels use the same compact formatter as text labels. */
export function fmtY(v) {
return formatCount(v)
}
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/**
* Formatters and aggregators for summary sections: totals and the recent
* visit trail.
*/
/**
* IPv4 unchanged, IPv6 returns the /64 network prefix in compact form.
* Falls back to the original value when parsing fails.
*/
export const hostIP = (ip) => {
try {
if (!ip || !ip.includes(':')) return ip
const strip = (s) => s.replace(/^\[|\]$/g, '')
const norm = strip(new URL(`http://[${ip}]/`).hostname)
const [l, r] = norm.split('::').map((s) => (s ? s.split(':') : []))
const full = r
? [...l, ...Array(8 - l.length - r.length).fill('0'), ...r]
: l
return strip(
new URL(`http://[${full.slice(0, 4).join(':')}::]/`).hostname,
).replace(/::$/, '')
} catch (e) {
console.error('hostIP processing failed for:', ip, e)
return ip
}
}
function showCopiedFeedback(el) {
if (!el || typeof document === 'undefined') return
const popup = document.createElement('span')
popup.textContent = 'Copied!'
popup.className = 'copy-popup'
popup.style.cssText =
'position:absolute;bottom:calc(100% + 0.25rem);left:50%;' +
'transform:translateX(-50%);padding:0.15rem 0.4rem;' +
'background:var(--text, CanvasText);color:var(--bg, Canvas);' +
'border-radius:0.25rem;font-size:0.75rem;white-space:nowrap;' +
'pointer-events:none;z-index:10;'
el.classList.add('has-copy-popup')
el.appendChild(popup)
setTimeout(() => {
popup.remove()
el.classList.remove('has-copy-popup')
}, 1200)
}
/** Copy the full IP to the clipboard and show a brief "Copied!" popup. */
export async function copyIp(ip, event) {
if (!ip) return
const el = event?.currentTarget
try {
await navigator.clipboard.writeText(ip)
showCopiedFeedback(el)
} catch {
/* ignore */
}
}
/** Copy arbitrary text to the clipboard and show a brief "Copied!" popup. */
export async function copyList(text, event) {
if (!text) return
const el = event?.currentTarget
try {
await navigator.clipboard.writeText(text)
showCopiedFeedback(el)
} catch {
/* ignore */
}
}
/** Total page views across every page and every bucket. */
export function calcTotalViews(views) {
let n = 0
for (const buckets of Object.values(views || {})) {
for (const c of Object.values(buckets)) n += c
}
return n
}
// Very short reads are navigation/skims, not real reading time.
export const MIN_READ_SECONDS = 10
/** Average minutes per visit and average of per-article median read minutes. */
export function calcReadStats(visits) {
const perArticle = {}
let totalVisitSeconds = 0
let visitCount = 0
for (const v of visits || []) {
const secs = Object.values(v.read || {}).filter((s) => s >= MIN_READ_SECONDS)
if (!secs.length) continue
visitCount++
totalVisitSeconds += secs.reduce((a, b) => a + b, 0)
for (const [path, s] of Object.entries(v.read || {})) {
if (s >= MIN_READ_SECONDS) {
; (perArticle[path] || (perArticle[path] = [])).push(s)
}
}
}
const avgMinPerVisit = visitCount
? Math.max(1, Math.round(totalVisitSeconds / visitCount / 60))
: 0
let articleMedianSum = 0
const articleCount = Object.keys(perArticle).length
for (const arr of Object.values(perArticle)) {
arr.sort((a, b) => a - b)
const mid = Math.floor(arr.length / 2)
const median = arr.length % 2 ? arr[mid] : (arr[mid - 1] + arr[mid]) / 2
articleMedianSum += Math.max(MIN_READ_SECONDS, median)
}
const avgArticleMedianMin = articleCount
? Math.max(1, Math.round(articleMedianSum / articleCount / 60))
: 0
return { avgMinPerVisit, avgArticleMedianMin }
}
/** Build a path -> page title lookup from the site tree. */
function buildTitleMap(pageTree) {
const titles = new Map()
const walk = (items) => {
for (const item of items || []) {
titles.set(`/${item.path}`, item.title)
walk(item.children)
}
}
walk(pageTree)
return titles
}
/** Last path segment for display; front page becomes a house icon. */
function slugOf(path) {
return path === '/' ? '🏠︎' : path.split('/').pop()
}
/** Host name of an external https origin, with scheme and www. stripped. */
function externalSlug(origin) {
try {
return new URL(origin).host.replace(/^www\./, '')
} catch {
return origin.replace(/^https?:\/\//, '').replace(/^www\./, '')
}
}
/** Format one trail step: an internal page or an external https origin. */
function stepOf(path, titles) {
if (path?.startsWith('/')) {
return { path, slug: slugOf(path), title: titles.get(path) || '', external: false, home: path === '/' }
}
if (path?.startsWith('https://')) {
return {
path,
slug: externalSlug(path),
title: 'External site',
external: true,
}
}
return null
}
/**
* Human-readable relative timestamp. Adapted from cista-storage: uses
* ``Intl.RelativeTimeFormat`` for short intervals and a compact date for
* anything older than a week.
*/
export function formatWhen(ts, now = Date.now()) {
const date = new Date(ts)
const diff = date.getTime() - now
const adiff = Math.abs(diff)
const formatter = new Intl.RelativeTimeFormat('en', { numeric: 'auto' })
if (adiff <= 5000) return 'now'
if (adiff <= 60000) {
return formatter
.format(Math.round(diff / 1000), 'second')
.replace(' ago', '')
.replaceAll(' ', '\u202F')
}
if (adiff <= 3600000) {
return formatter
.format(Math.round(diff / 60000), 'minute')
.replace('utes', '')
.replace('ute', '')
.replaceAll(' ', '\u202F')
}
if (adiff <= 86400000) {
return formatter
.format(Math.round(diff / 3600000), 'hour')
.replace('hours', 'h')
.replace('hour', 'h')
.replaceAll(' ', '\u202F')
}
if (adiff <= 604800000) {
return formatter
.format(Math.round(diff / 86400000), 'day')
.replaceAll(' ', '\u202F')
}
let d = date
.toLocaleDateString('en-ie', {
weekday: 'short',
year: 'numeric',
month: 'short',
day: 'numeric',
})
.replace('Sept', 'Sep')
if (d.length === 14) d = d.replace(' ', ' \u2007')
d = d.replaceAll(' ', '\u202F').replace('\u202F', '\u00A0')
d = d.slice(0, -4) + d.slice(-2)
return d
}
/** Full UTC timestamp for tooltips, e.g. "2026-08-21 00:20:48 UTC". */
export function formatWhenTooltip(ts) {
return new Date(ts).toISOString().replace('T', ' ').replace('Z', ' UTC')
}
/** Full local timestamp for tooltips, e.g. "21 Aug 2026, 17:38:48". */
export function formatWhenLocal(ts) {
return new Date(ts).toLocaleString('en-ie', {
year: 'numeric',
month: 'short',
day: 'numeric',
hour: '2-digit',
minute: '2-digit',
second: '2-digit',
})
}
/** Preserve locale case with the region/country subtag upper-cased. */
export function formatLang(value) {
if (!value || value === '—') return value
const parts = value.split('-')
if (parts.length > 1) {
parts[parts.length - 1] = parts[parts.length - 1].toUpperCase()
}
return parts.join('-')
}
/** ISO 8601 UTC timestamp without subseconds, e.g. "2026-08-21T00:20:48Z". */
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${seconds % 60}s`
}
/**
* Compact visitor counts: plain below 1k, then 1.2k / 10k / 1.2M.
* Truncated, not rounded.
*/
export function formatCount(n) {
if (n < 1000) return String(n)
if (n < 10000) return `${Math.trunc(n / 1000)}.${Math.trunc((n % 1000) / 100)}k`
if (n < 1_000_000) return `${Math.trunc(n / 1000)}k`
return `${Math.trunc(n / 1_000_000)}.${Math.trunc((n % 1_000_000) / 100_000)}M`
}
/**
* Format recent visits for display, newest first. Each step is a linked slug
* pointing to its article; external referers/origins are shown as their
* domain name with the full origin as the link href. The link title shows the
* article heading when known, or "External site" for origins.
*/
export function formatRecentVisits(visits, pageTree, limit = 50) {
const titles = buildTitleMap(pageTree)
return [...visits]
.reverse()
.map((v) => ({
when: new Date(v.start).toLocaleString(),
steps: [v.referer, v.entry, ...(v.trail || [])]
.map((p) => stepOf(p, titles))
.filter(Boolean),
}))
.filter((v) => v.steps.length)
.slice(0, limit)
}
/**
* Count distinct values of a visit field, sorted most-common first.
* Returns an array of [value, count] pairs.
*/
export function countByField(visits, field) {
const counts = {}
for (const v of visits || []) {
const value = v[field]
if (!value) continue
counts[value] = (counts[value] || 0) + 1
}
return Object.entries(counts).sort((a, b) => b[1] - a[1])
}
/**
* Count UTM parameter occurrences across visits. Each distinct
* ``parameter: value`` pair is counted separately. Returns [pair, count].
*/
export function countUtmTags(visits) {
const counts = {}
for (const v of visits || []) {
for (const [key, value] of Object.entries(v.utm || {})) {
const label = `${key}: ${value}`
counts[label] = (counts[label] || 0) + 1
}
}
return Object.entries(counts).sort((a, b) => b[1] - a[1])
}
/** Format a list of [value, count] pairs for inline display. */
export function formatCounts(entries) {
return entries.map(([value, count]) => `${value} (${count})`).join(', ')
}
/**
* Count distinct User-Agent strings among crawler hits, most common first.
* Returns an array of [ua, count] pairs. ``clients`` maps client hashes to
* client records.
*/
export function countCrawlerUas(crawlers, clients) {
const counts = {}
for (const c of crawlers || []) {
const client = (clients || {})[c.client] || {}
const value = client.ua_pretty || client.ua || '(no UA)'
counts[value] = (counts[value] || 0) + 1
}
return Object.entries(counts).sort((a, b) => b[1] - a[1])
}
/**
* Reduce a reverse-DNS hostname to its right-most components that fit
* within ``limit`` characters. This keeps the meaningful main domain
* while avoiding absurdly long subdomains like ``xxx.yyy.zzz...provider.net``.
*/
export function mainDomain(host, limit = 24) {
if (!host) return host
const labels = host.split('.').filter(Boolean)
if (!labels.length) return host
const parts = [labels.pop()]
while (labels.length) {
const next = labels[labels.length - 1]
const candidate = `${next}.${parts.join('.')}`
if (candidate.length > limit) break
parts.unshift(labels.pop())
}
return parts.join('.')
}
/**
* Group raw crawler hits by client hash and format each group as a row showing
* every internal page that crawler visited. Rows are sorted by total hits,
* most active crawler first, rather than by most recent hit.
* ``clients`` maps client hashes to client records.
*/
export function formatCrawlerRows(crawlers, clients, pageTree, now = Date.now()) {
const titles = buildTitleMap(pageTree)
const groups = new Map()
for (const c of crawlers || []) {
const client = (clients || {})[c.client] || {}
const g = groups.get(c.client) || {
clientHash: c.client,
client,
lastStart: 0,
pages: new Map(),
}
const start = new Date(c.start).getTime()
if (start > g.lastStart) g.lastStart = start
if (c.entry?.startsWith('/')) {
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 p of g.pages.values()) n += p.count
return n
}
return [...groups.values()]
.sort((a, b) => totalHits(b) - totalHits(a) || b.lastStart - a.lastStart)
.slice(0, 10)
.map((g) => {
const client = g.client || {}
const host = client.host || ''
const isHost = !!host
return {
lastSeen: formatWhen(g.lastStart, now),
lastSeenIso: formatWhenIso(g.lastStart),
lastSeenLocal: formatWhenLocal(g.lastStart),
pages: [...g.pages.entries()]
.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,
ua: client.ua_pretty || client.ua || '—',
uaRaw: client.ua || '',
lang: client.lang || '—',
langDisplay: formatLang(client.lang),
country: client.country || '—',
city: client.city || '—',
total: totalHits(g),
}
})
}
/**
* Group abuse hits by IP and format each group as a row with the full paths
* probed. Identical paths are collapsed into one entry with their hit count.
* Flagged paths (the ones that triggered abuse classification) are lifted to
* the top, followed by other 404s, then document GETs from the abuser. Within
* each category paths are sorted by count descending, then earliest first.
* Rows are sorted by most recent hit first. Visitor metadata comes from the
* latest client hash seen for the IP; ``clientCount`` tells the visitor cell
* how many distinct client variations the IP produced. Paths are shown
* verbatim (query string included), not resolved against the page tree.
* ``clients`` maps client hashes to client records.
*/
export function formatAbuseRows(abuse, clients, now = Date.now()) {
const groups = new Map()
for (const a of abuse || []) {
const client = (clients || {})[a.client] || {}
const ip = client.ip || ''
const g = groups.get(ip) || {
ip,
pathCounts: new Map(),
clientHashes: new Set(),
lastStart: 0,
lastClient: a.client,
}
const start = new Date(a.start).getTime()
if (start > g.lastStart) {
g.lastStart = start
g.lastClient = a.client
}
const path = a.path || ''
const existing = g.pathCounts.get(path) || {
path,
count: 0,
firstStart: start,
flag: a.flag || false,
is_404: a.is_404 || false,
}
existing.count += 1
if (start < existing.firstStart) existing.firstStart = start
if (a.flag) existing.flag = true
if (!a.is_404) existing.is_404 = false
g.pathCounts.set(path, existing)
g.clientHashes.add(a.client)
groups.set(ip, g)
}
const totalHits = (g) => {
let n = 0
for (const p of g.pathCounts.values()) n += p.count
return n
}
return [...groups.values()]
.sort((a, b) => b.lastStart - a.lastStart)
.slice(0, 10)
.map((g) => {
const pathCategory = (p) => (p.flag ? 0 : p.is_404 ? 1 : 2)
const paths = [...g.pathCounts.values()].sort(
(a, b) =>
pathCategory(a) - pathCategory(b) ||
b.count - a.count ||
a.firstStart - b.firstStart,
)
const client = (clients || {})[g.lastClient] || {}
const host = client.host || ''
const isHost = !!host
return {
lastSeen: formatWhen(g.lastStart, now),
lastSeenIso: formatWhenIso(g.lastStart),
lastSeenLocal: formatWhenLocal(g.lastStart),
paths: paths.map((p) => ({
path: p.path,
count: p.count,
flag: p.flag,
is_404: p.is_404,
})),
allPaths: paths
.map((p) => (p.count > 1 ? `${p.count}× ${p.path}` : p.path))
.join('\n'),
clientCount: g.clientHashes.size,
ip: client.ip || g.ip,
ipDisplay: isHost ? mainDomain(host) : hostIP(client.ip || g.ip) || client.ip || g.ip || '—',
isHost,
ua: client.ua_pretty || client.ua || '—',
uaRaw: client.ua || '',
lang: client.lang || '—',
langDisplay: formatLang(client.lang),
country: client.country || '—',
city: client.city || '—',
total: totalHits(g),
}
})
}
/**
* Format raw visit records as rows for a technical table. Returns objects
* with display strings; missing values become "—". ``trail`` starts with the
* external referer (when present), then the entry page and any further internal
* pages or external exit origins. Only the 20 most recent visits are shown.
* ``clients`` maps client hashes to client records.
*/
export function formatVisitRows(visits, clients, pageTree, now = Date.now()) {
const titles = buildTitleMap(pageTree)
return [...(visits || [])].reverse().slice(0, 20).map((v) => {
const client = (clients || {})[v.client] || {}
const read = v.read || {}
const statuses = v.statuses || {}
const trail = [v.entry, ...(v.trail || [])]
.map((p) => {
const step = stepOf(p, titles)
if (step) {
if (read[p]) step.readSeconds = read[p]
if (statuses[p]) step.status = statuses[p]
}
return step
})
.filter(Boolean)
const utmKeys = ['utm_source', 'utm_medium', 'utm_campaign', 'utm_term', 'utm_content']
const utmValues = utmKeys.map((k) => (v.utm || {})[k]).filter(Boolean)
const utm = utmValues.length ? utmValues.join(' · ') : ''
const utmTitle = Object.entries(v.utm || {})
.map(([k, value]) => `${k}=${value}`)
.join(', ')
const dash = (s) => (s || '—')
const host = client.host || ''
const isHost = !!host
return {
lastSeen: formatWhen(v.start, now),
lastSeenIso: formatWhenIso(v.start),
lastSeenLocal: formatWhenLocal(v.start),
langDisplay: formatLang(client.lang),
trail,
refererStep: stepOf(v.referer, titles),
referer: dash(v.referer),
ip: client.ip || '',
ipDisplay: isHost ? mainDomain(host) : hostIP(client.ip) || client.ip || '—',
isHost,
lang: dash(client.lang),
country: dash(client.country),
city: dash(client.city),
ua: client.ua_pretty || client.ua || '—',
uaRaw: client.ua || '',
utm: utm || '—',
utmTitle,
}
})
}
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/**
* Time ranges, week alignment and re-bucketing for analytics charts.
*
* Raw data comes as sparse 5-minute buckets; the range picks the x window
* and a coarser bucket size to keep point counts sane. The week range is
* aligned to Monday 00:00 UTC and overlays previous weeks' curves (fading
* with age), so weekly patterns compare directly.
*/
export const MIN5 = 5 * 60e3
export const HOUR = 3600e3
export const DAY = 86400e3
export const WEEK = 7 * DAY
export const RANGES = {
day: { label: 'day', span: DAY, bucket: MIN5 },
week: { label: 'week' },
month: { label: 'month', span: 30 * DAY, bucket: 6 * HOUR },
year: { label: 'year', span: 365 * DAY, bucket: DAY },
all: { label: 'all', span: null, bucket: DAY, minSpan: 30 * DAY },
}
/** Monday 00:00 UTC of the week containing t (epoch day 0 was a Thursday). */
export function mondayUTC(t) {
const d = Math.floor(t / DAY)
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 = {}
// Key by parsed timestamp: Python writes "+00:00", JS ISO uses "Z".
for (const [k, c] of Object.entries(buckets || {})) raw[Date.parse(k)] = c
return raw
}
/** Sum counts from raw 5-minute buckets between t0 (inclusive) and t1 (exclusive). */
export function sumRange(raw, t0, t1) {
let n = 0
for (let s = t0; s < t1; s += MIN5) n += raw[s] || 0
return n
}
/**
* 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). 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).
*/
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)
const oldest = Math.min(...times)
// Weeks back as far as the data reaches: difference in Monday indices.
const available = (thisMonday - mondayUTC(oldest)) / WEEK + 1
const count = Math.min(available, 8)
const out = []
for (let back = 0; back < count; back++) {
const start = thisMonday - back * WEEK
const end = back === 0
? Math.min(start + WEEK, Math.floor(now / MIN5) * MIN5 + MIN5)
: start + WEEK
const points = []
for (let t = start; t < end; t += MIN5) {
points.push({ t: t + back * WEEK, count: raw[t] || 0 })
}
out.push({
points,
label: `Week ${isoWeek(start)}`,
opacity: Math.max(0.15, 1 - back * 0.25),
past: back > 0,
area: back === 0,
})
}
return {
series: out,
t0: thisMonday,
t1: thisMonday + WEEK,
rate: HOUR / MIN5,
binMinutes: 5,
unitMinutes: 60,
unit: 'hour',
}
}
/**
* Rolling window for the non-week ranges (x max = now), counts converted
* 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 = Date.now()
const earliest = Math.min(...times)
const t0 = Math.floor((span != null
? t1 - span
: Math.min(earliest, t1 - minSpan)) / DAY) * 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 += bucketMs) {
points.push({ t, count: sumRange(raw, t, t + bucketMs) })
}
return {
series: [{ points, label: '', opacity: 1, area: true }],
t0,
t1,
rate: DAY / bucketMs,
binMinutes: bucketMs / 60e3,
unitMinutes: 24 * 60,
unit: 'day',
}
}
/**
* Day view: raw 5-minute bucket counts for the current 24-hour window.
* No smoothing or rate conversion is applied; counts are used as-is.
*/
export function daySeries(buckets) {
const raw = rawTimes(buckets)
const now = Date.now()
const { span, bucket } = RANGES.day
const t1 = Math.floor(now / bucket) * bucket + bucket
const t0 = t1 - span
const points = []
for (let t = t0; t < t1; t += bucket) {
points.push({ t, count: raw[t] || 0 })
}
return {
series: [{ points, label: '', opacity: 1, area: false }],
t0,
t1,
rate: 1,
binMinutes: bucket / 60e3,
unitMinutes: bucket / 60e3,
unit: '5min',
}
}
/** Dispatch to daily, weekly or rolling series based on the selected range. */
export function makeSeries(buckets, rangeKey) {
if (rangeKey === 'day') return daySeries(buckets)
if (rangeKey === 'week') return weeklySeries(buckets)
return rollingSeries(buckets, rangeKey)
}
/**
* Absolute UTC time window for a given range key. Used to filter visits,
* 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 === 'all') {
return { t0: null, t1: null }
}
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
}
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/**
* Radial transition map and helpers.
*
* Site map following the menu structure: top-level items in a row at the
* top (below the external source row), each item's subtree fanning out
* below it in menu order along a slightly circular downward arc. Index
* pages with no views are omitted, their children moving up in their
* place. All pages of the site are shown (from /_api/pages), plus any
* extra paths seen in transitions (deleted pages); these form their own
* top-level groups. Internal path -> path transitions join opposite
* directions into straight connections (middle width = total
* count; connectors flare into the node pills at both ends and wrap
* around their backs, surrounding them; the pills are drawn on top). Connection width grows
* logarithmically with the count (a single count renders as a ~1 px
* line, uncapped growth); connections carrying less than 1% of the total
* traffic are pruned, which naturally keeps the graph under ~100
* connections. Animated beads flow along every edge in each direction,
* emitted at time intervals inversely proportional (linear) to the
* directional count.
* External sources appear as nodes in a row above the map. Sources are
* identified from visit records in this order: utm_campaign, utm_source,
* 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 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'
// Nodes are constant-size pills (stadium rects) holding the slug and the
// view count on two centered lines. TNODE_BOUND is the pill's bounding
// radius, used for layout clearance and placement; connectors and flows
// use the exact outline geometry instead (pillContact below).
export const TNODE_W = 160
export const TNODE_H = 54
const TNODE_BOUND = Math.hypot(TNODE_W, TNODE_H) / 2
const PILL_R = TNODE_H / 2 // cap radius and straight-section half-height
const PILL_OFF = TNODE_W / 2 - PILL_R // x offset of the cap centers
/**
* Where the ray from a node center along (ux, uy) exits the pill outline
* (a capsule: straight top/bottom plus semicircular caps), enlarged by
* `margin`. Returns the distance `t` to the contact point and the outline
* arc position `s` of that point (see pillPointAt).
*/
const pillContact = (ux, uy, margin = 0) => {
const r = PILL_R + margin
const off = PILL_OFF + margin
const q = (Math.PI / 2) * r
// Straight top/bottom: valid when the crossing lands on the flat section.
let tf = Infinity
if (Math.abs(uy) > 1e-9) {
const t = r / Math.abs(uy)
if (Math.abs(t * ux) <= off + 1e-9) tf = t
}
// Rounded cap on the side the ray points to.
const cx = off * (ux >= 0 ? 1 : -1)
const disc = r * r - (cx * uy) ** 2
const tc = disc >= 0 ? cx * ux + Math.sqrt(disc) : Infinity
if (tf <= tc) {
const x = tf * ux
return { t: tf, s: uy > 0 ? q + off - x : q + 2 * off + Math.PI * r + x + off }
}
if (tc < Infinity) {
let th = Math.atan2(tc * uy, tc * ux - cx)
if (th < 0) th += 2 * Math.PI
const s = cx > 0
? th <= Math.PI / 2
? th * r
: q + 4 * off + Math.PI * r + (th - (3 * Math.PI) / 2) * r
: q + 2 * off + (th - Math.PI / 2) * r
return { t: tc, s }
}
return { t: TNODE_BOUND + margin, s: 0 }
}
/** Total perimeter of the (margined) pill outline. */
const pillPerimeter = (margin = 0) =>
4 * (PILL_OFF + margin) + 2 * Math.PI * (PILL_R + margin)
/**
* Point on the pill outline at arc position `s`, counterclockwise from the
* right cap tip: right cap up, top flat right-to-left, left cap down,
* bottom flat left-to-right, right cap up to the tip. Pills are never
* rotated, so the returned offset from the node center is in absolute
* coordinates.
*/
const pillPointAt = (s, margin = 0) => {
const r = PILL_R + margin
const off = PILL_OFF + margin
const P = pillPerimeter(margin)
const q = (Math.PI / 2) * r
s = ((s % P) + P) % P
if (s < q) {
const th = s / r
return [off + r * Math.cos(th), r * Math.sin(th)]
}
s -= q
if (s < 2 * off) return [off - s, r]
s -= 2 * off
if (s < Math.PI * r) {
const th = Math.PI / 2 + s / r
return [-off + r * Math.cos(th), r * Math.sin(th)]
}
s -= Math.PI * r
if (s < 2 * off) return [-off + s, -r]
s -= 2 * off
const th = (3 * Math.PI) / 2 + s / r
return [off + r * Math.cos(th), r * Math.sin(th)]
}
/** Unit tangent to the pill outline at arc position `s`, in the direction
* of increasing `s` (numeric; exact on both flats and caps). */
const pillTangent = (s, margin = 0) => {
const [x1, y1] = pillPointAt(s - 0.5, margin)
const [x2, y2] = pillPointAt(s + 0.5, margin)
const m = Math.hypot(x2 - x1, y2 - y1) || 1
return [(x2 - x1) / m, (y2 - y1) / m]
}
// 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. 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 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 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) {
const order = new Map()
const walk = (items) => {
for (const item of items || []) {
const p = `/${item.path}`
if (!order.has(p)) order.set(p, order.size)
walk(item.children)
}
}
walk(pageTree)
return order
}
/** Map page paths to their article titles from the site tree. */
function buildTitleMap(pageTree) {
const titles = new Map()
const walk = (items) => {
for (const item of items || []) {
titles.set(`/${item.path}`, item.title)
walk(item.children)
}
}
walk(pageTree)
return titles
}
/** Extract internal page-to-page transitions, excluding self-loops. */
function collectInternalTransitions(transitions) {
const internal = []
for (const [fr, tos] of Object.entries(transitions || {})) {
if (!fr.startsWith('/')) continue
for (const [to, count] of Object.entries(tos)) {
if (to.startsWith('/') && to !== fr) internal.push({ fr, to, count })
}
}
return internal
}
/** Domain-only label for an external origin (path and www. removed).
* Pills clip the text at their border; no length cap needed. */
function extLabel(ext) {
try {
return new URL(ext).hostname.replace(/^www\./, '')
} catch {
return ext.replace(/^https?:\/\//, '').replace(/^www\./, '').split('/')[0]
}
}
/**
* Collect outgoing external transitions: page path -> full exit URL.
* Aggregated per (URL, page) pair. Incoming external links are now derived
* from visit records (which carry UTM tags), so only exits remain here.
*/
function collectExitPairs(transitions) {
const pairs = new Map() // `${ext} ${page}` -> {ext, page, out}
for (const [fr, tos] of Object.entries(transitions || {})) {
if (!fr.startsWith('/')) continue // ignore external -> anything
for (const [to, count] of Object.entries(tos)) {
if (!to.startsWith('http')) continue
const k = `${to} ${fr}`
const p = pairs.get(k) || { ext: to, page: fr, out: 0 }
p.out += count
pairs.set(k, p)
}
}
return [...pairs.values()]
}
/** Build nodes with depth and a path lookup map; children are wired to parents. */
function buildNodeTree(internal, navOrder) {
const paths = new Set(['/', ...navOrder.keys()])
for (const e of internal) { paths.add(e.fr); paths.add(e.to) }
const depth = (p) => (p === '/' ? 0 : p.split('/').length - 1)
const nodes = [...paths].map((p) => ({
path: p, depth: depth(p), angle: 0, children: [],
}))
const byPath = new Map(nodes.map((n) => [n.path, n]))
// Parent is the nearest ancestor present in the map, front page last.
const parentOf = (p) => {
let q = p
while (q !== '/') {
q = q.slice(0, q.lastIndexOf('/')) || '/'
if (byPath.has(q)) return byPath.get(q)
}
return byPath.get('/')
}
for (const n of nodes) {
if (n.path !== '/') parentOf(n.path).children.push(n)
}
return { nodes, byPath, root: byPath.get('/') }
}
/** Sort each node's children by navigation order, recursively. */
function sortByNav(root, navOrder) {
const byNav = (a, b) =>
(navOrder.get(a.path) ?? Infinity) - (navOrder.get(b.path) ?? Infinity)
|| a.path.localeCompare(b.path)
const walk = (n) => {
n.children.sort(byNav)
n.children.forEach(walk)
}
walk(root)
}
/** Compute median reading time per article in whole minutes. */
function buildReadMinutes(visits) {
const times = {}
for (const v of visits || []) {
for (const [path, sec] of Object.entries(v.read || {})) {
if (sec >= MIN_READ_SECONDS) {
;(times[path] || (times[path] = [])).push(sec)
}
}
}
const minutes = {}
for (const [path, arr] of Object.entries(times)) {
arr.sort((a, b) => a - b)
const mid = Math.floor(arr.length / 2)
const median =
arr.length % 2 ? arr[mid] : (arr[mid - 1] + arr[mid]) / 2
minutes[path] = Math.max(1, Math.round(median / 60))
}
return minutes
}
/** Compute view counts, labels and hidden flags for each node. */
function annotateNodes(nodes, viewsData, titles, readMinutes) {
const viewCount = (p) => {
let n = 0
for (const c of Object.values(viewsData?.[p] || {})) n += c
return n
}
for (const n of nodes) {
n.views = viewCount(n.path)
n.readMin = readMinutes[n.path] || 0
// 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).
n.hidden = n.children.length > 0 && n.views === 0
}
}
/**
* Top-down layout following the menu structure: top-level items in an
* equally spaced row at the top (right below the external source row),
* 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
* 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. 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
// fan sizes.
const SLOT = TNODE_W + 100
const CLEAR = TNODE_W * 0.8 // fan spacing per member along the curve
// 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. 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) {
if (!g.hidden) members.push(g)
} else {
const walk = (n) => {
if (!n.hidden) members.push(n)
n.children.forEach(walk)
}
walk(g)
}
if (members.length) {
groups.push(members)
groupRoots.push(g)
}
}
// 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 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 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
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)
}
})
// 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)
})
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)} ${gy1.toFixed(2)}`,
label: '🏠︎',
top: true,
})
}
return { arcs, arcLeft }
}
/** Collapse opposite transition directions into one unordered pair per page pair. */
function aggregatePairs(internal) {
const pairs = new Map() // unordered pair key -> [countAB, countBA]
for (const e of internal) {
const forward = e.fr < e.to
const k = forward ? `${e.fr} ${e.to}` : `${e.to} ${e.fr}`
const c = pairs.get(k) || [0, 0]
c[forward ? 0 : 1] += e.count
pairs.set(k, c)
}
return pairs
}
const fmtPt = (p) => `${p[0].toFixed(2)} ${p[1].toFixed(2)}`
/**
* Build one ribbon edge between two nodes with counts ab and ba.
* `wMid` is the half-width of the thin middle (already strength-scaled by
* the caller). Each end flares into the node's pill surround (the outline
* enlarged by margin S): the flare contact points follow the pill outline
* a constant arc distance to each side of the direct contact point, and
* the back of the ribbon wraps all the way around the pill between them,
* surrounding the node. The pills themselves are drawn on top.
*/
function buildRibbon(a, b, ab, ba, wMid, external = false) {
const count = ab + ba
const len = Math.hypot(b.x - a.x, b.y - a.y) || 1
const ux = (b.x - a.x) / len
const uy = (b.y - a.y) / len
const nx = -uy
const ny = ux
// Direct contact: where the centerline exits each pill's surround.
const S = 4
const cA = pillContact(ux, uy, S)
const cB = pillContact(-ux, -uy, S)
// Flares take a fair share of the free span while leaving the
// count-scaled thin middle a visible share of the connection length.
// The maximum flare length scales with the contact distance so wide
// approach angles still show a wide connector end.
const free = Math.max(0, len - cA.t - cB.t)
const FLARE = Math.min(Math.max(cA.t, cB.t) * 1.2, free * 0.4)
// Flare endpoints: walk the outline a constant arc distance to each
// side of the direct contact point (spanning flats and caps alike).
const D = (Math.PI / 4) * (PILL_R + S)
// Per node: endpoints for the +n (left) and -n (right) flare sides,
// each with its arc position, absolute point, and an outline tangent
// oriented back toward the direct contact point.
const ends = (cx, cy, contact) => {
const pick = (s) => {
const [px, py] = pillPointAt(s, S)
// Outline tangent oriented back toward the direct contact point
// (the flare side sweeps from the contact point around to its
// endpoint and into the connection), so it can never fork outward.
const tan = pillTangent(s, S)
if (s > contact.s) { tan[0] = -tan[0]; tan[1] = -tan[1] }
return { s, p: [cx + px, cy + py], tan, side: px * nx + py * ny }
}
const plus = pick(contact.s + D)
const minus = pick(contact.s - D)
return plus.side >= 0 ? [plus, minus] : [minus, plus]
}
const [aLeftEnd, aRightEnd] = ends(a.x, a.y, cA)
const [bLeftEnd, bRightEnd] = ends(b.x, b.y, cB)
// Point on the connection centerline at distance t from A, offset s
// perpendicular to it.
const P = (t, s) => [
a.x + t * ux + s * nx,
a.y + t * uy + s * ny,
]
// One side of a flare: from the outline endpoint, leaving tangent to
// the pill outline, to the connection middle arriving parallel with
// the centerline. The tangent pull is clamped so the control point
// stays well on its own side of the centerline — otherwise a long
// flare on a rounded cap crosses the opposite side.
const flarePoints = (end, midT, s, dir) => {
let hEnd = FLARE * 0.65
const hMid = FLARE * 0.4
const tanS = end.tan[0] * nx + end.tan[1] * ny // inward rate
if (tanS * end.side < 0) {
hEnd = Math.min(hEnd, (Math.abs(end.side) * 0.6) / Math.abs(tanS))
}
return {
pEnd: end.p,
cEnd: [end.p[0] + end.tan[0] * hEnd, end.p[1] + end.tan[1] * hEnd],
cMid: P(midT - dir * hMid, s * wMid),
pMid: P(midT, s * wMid),
}
}
// Emit a cubic in either traversal direction. Reversing a cubic requires
// swapping its control points, rather than recalculating the geometry.
const curve = (f, reverse = false) => {
if (!reverse) {
return `C ${fmtPt(f.cEnd)} ${fmtPt(f.cMid)} ${fmtPt(f.pMid)} `
}
return `C ${fmtPt(f.cMid)} ${fmtPt(f.cEnd)} ${fmtPt(f.pEnd)} `
}
// Trace the surround outline the long way around (behind the node) from
// arc s1 to arc s2. Sampled as a polyline: the visible result is a thin
// halo hugging the pill, so exact arc segments are unnecessary.
const outlineWrap = (cx, cy, s1, s2) => {
const per = pillPerimeter(S)
const dPlus = ((s2 - s1) % per + per) % per
const total = dPlus > per / 2 ? dPlus : per - dPlus
const dir = dPlus > per / 2 ? 1 : -1
const n = Math.max(4, Math.ceil(total / 6))
let out = ''
for (let i = 1; i <= n; i++) {
const [x, y] = pillPointAt(s1 + (dir * total * i) / n, S)
out += `L ${(cx + x).toFixed(2)} ${(cy + y).toFixed(2)} `
}
return out
}
const aLeft = flarePoints(aLeftEnd, cA.t + FLARE, 1, 1)
const bLeft = flarePoints(bLeftEnd, len - cB.t - FLARE, 1, -1)
const bRight = flarePoints(bRightEnd, len - cB.t - FLARE, -1, -1)
const aRight = flarePoints(aRightEnd, cA.t + FLARE, -1, 1)
// Each end wraps the full back of the node pill between its two flare
// contact points (bLeft -> bRight around B, aRight -> aLeft around A).
const d = `M ${fmtPt(aLeft.pEnd)} `
+ curve(aLeft)
+ `L ${fmtPt(bLeft.pMid)} `
+ curve(bLeft, true)
+ outlineWrap(b.x, b.y, bLeftEnd.s, bRightEnd.s)
+ curve(bRight)
+ `L ${fmtPt(aRight.pMid)} `
+ curve(aRight, true)
+ outlineWrap(a.x, a.y, aRightEnd.s, aLeftEnd.s)
+ 'Z'
return {
d,
title: `${a.path}${b.path}: ${count} (${ab} / ${ba})`,
external,
}
}
/**
* Flow descriptors for the bead animation, one per edge direction with a
* nonzero count: a straight segment running from inside the source node
* to inside the target node (beads render under the node pills, so
* they emerge from and vanish beneath the nodes rather than popping in
* at the surround), plus the emission interval (seconds between beads,
* inverse of count * BEAD_RATE). Each segment is offset to the
* right-hand side of its travel direction, so opposing flows on the same
* edge run on parallel lanes instead of colliding. The component turns
* these into independently simulated beads.
*/
function buildFlows(a, b, ab, ba, visualScale = 1) {
const len = Math.hypot(b.x - a.x, b.y - a.y) || 1
const ux = (b.x - a.x) / len
const uy = (b.y - a.y) / len
const rA = pillContact(ux, uy).t
const rB = pillContact(-ux, -uy).t
const t0 = rA / 3
const t1 = len - rB / 3
if (t1 - t0 < 12) return []
// Unit normal pointing to the visual right of the A -> B direction.
const rx = -uy
const ry = ux
const span = t1 - t0
const flow = (count, fromT, toT) => {
// Each direction shifts to its own right, away from the opposing lane.
const s = fromT < toT ? FLOW_OFFSET : -FLOW_OFFSET
return {
x1: a.x + fromT * ux + s * rx,
y1: a.y + fromT * uy + s * ry,
x2: a.x + toT * ux + s * rx,
y2: a.y + toT * uy + s * ry,
len: span,
interval: 1 / (count * BEAD_RATE * visualScale),
}
}
const flows = []
// Stable key per edge direction so the component's bead simulation can
// match flows across data reloads and keep bead phases/positions.
if (ab) flows.push({ ...flow(ab, t0, t1), key: `${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
* 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
return WMID_MIN + WIDTH_GROWTH * Math.log1p(count - 1)
}
/**
* Build ribbon edges and bead flows for every aggregated page-to-page
* pair. Pairs carrying less than PRUNE_FRACTION of the total internal
* traffic are pruned (this naturally bounds the graph to ~100 edges).
*/
function buildInternalEdges(pairs, byPath, visualScale = 1) {
let total = 0
for (const [, [ab, ba]] of pairs) total += ab + ba
const minCount = total * PRUNE_FRACTION
const edges = []
const flows = []
for (const [k, [ab, ba]] of pairs) {
if (ab + ba < minCount) continue
const [pf, pt] = k.split(' ')
const a = byPath.get(pf)
const b = byPath.get(pt)
if (a.hidden || b.hidden) continue // unplaced index pages are omitted
const wMid = scaledWidth((ab + ba) * visualScale)
if (wMid < MIN_WMID) continue
edges.push(buildRibbon(a, b, ab, ba, wMid))
flows.push(...buildFlows(a, b, ab, ba, visualScale))
}
return { edges, flows }
}
const UTM_PRIORITY = ['utm_campaign', 'utm_source']
const UTM_FALLBACK = ['utm_medium', 'utm_content', 'utm_term', 'utm_id']
/** Identify the source of a visit according to the requested priority. */
function identifySource(visit) {
const utm = visit.utm || {}
for (const k of UTM_PRIORITY) {
const v = utm[k]
if (v) return { value: v, isUtm: true }
}
if (visit.referer?.startsWith('http')) {
return { value: visit.referer, isUtm: false }
}
for (const k of UTM_FALLBACK) {
const v = utm[k]
if (v) return { value: v, isUtm: true }
}
return null
}
/**
* Collect source -> entry page pairs from visit records. Sources are
* identified by UTM campaign/source (then referer, then other UTM tags).
* A UTM source only gets a link href when every visit using that source
* came from the same referer; referer sources always link to their origin.
*/
function collectSourcePairs(visits) {
const groups = new Map() // `${source}\0${page}` -> pair
for (const v of visits || []) {
const src = identifySource(v)
if (!src) continue
const k = `${src.value}\0${v.entry}`
const p = groups.get(k) || {
source: src.value,
page: v.entry,
in: 0,
refs: new Set(),
missingRef: false,
href: null,
isUtm: src.isUtm,
}
p.in += 1
if (v.referer?.startsWith('http')) {
p.refs.add(v.referer)
} else {
p.missingRef = true
}
groups.set(k, p)
}
for (const p of groups.values()) {
if (p.isUtm && !p.missingRef && p.refs.size === 1) {
const ref = [...p.refs][0]
if (ref.startsWith('http')) p.href = ref
} else if (!p.isUtm && p.source.startsWith('http')) {
p.href = p.source
}
}
return [...groups.values()]
}
/**
* Place external source and exit nodes and build their edges and bead
* 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 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, innerBounds, visualScale = 1) {
const extNodes = []
const edges = []
const flows = []
let extTotal = 0
for (const p of sources) extTotal += p.in
for (const p of exits) extTotal += p.out
const minCount = extTotal * PRUNE_FRACTION
const liveSources = sources.filter((p) => byPath.has(p.page))
const liveExits = exits.filter((p) => byPath.has(p.page))
if (!liveSources.length && !liveExits.length) return { extNodes, edges, flows }
const width = (count) => scaledWidth(count * visualScale)
// Incoming: one source node per identified source, in a row centered
// 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) || []
g.push(p)
bySource.set(p.source, g)
}
const origins = [...bySource]
.map(([source, ps]) => ({
source,
ps,
total: ps.reduce((s, p) => s + p.in, 0),
href: ps[0].href,
isUtm: ps[0].isUtm,
}))
.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 - EXT_GAP
const spacing = TNODE_W + 44
const x0 = cx - ((origins.length - 1) * spacing) / 2
origins.forEach(({ source, ps, total, href, isUtm }, i) => {
const label = isUtm ? source : extLabel(source)
const xn = {
path: source,
href,
label, // clipped at the pill border on render
x: x0 + i * spacing,
y,
count: total,
kind: 'source',
}
extNodes.push(xn)
for (const p of ps) {
const page = byPath.get(p.page)
if (page.hidden) continue
const wMid = width(p.in)
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: 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 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: out,
kind: 'exit',
}
extNodes.push(xn)
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 }
}
/**
* Build the transition map model.
* Returns { nodes, edges, flows, extNodes, arcs, bounds } or null when
* there is nothing to show. `arcs` holds the branch curves; `nodes` only
* contains placed (visible) nodes.
*/
export function buildTransitionGraph(data, pageTree, visits = [], visualScale = 1) {
const internal = collectInternalTransitions(data?.transitions)
const sources = collectSourcePairs(visits)
const exits = collectExitPairs(data?.transitions)
const navOrder = buildNavigationOrder(pageTree)
const titles = buildTitleMap(pageTree)
const readMinutes = buildReadMinutes(visits)
if (!internal.length && !navOrder.size) return null
const { nodes, byPath, root } = buildNodeTree(internal, navOrder)
sortByNav(root, navOrder)
annotateNodes(nodes, data?.views, titles, readMinutes)
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, 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(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, bounds, visualScale)
for (const xn of ext.extNodes) {
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 {
nodes: placed,
edges: [...edges, ...ext.edges],
flows: [...flows, ...ext.flows],
extNodes: ext.extNodes,
arcs,
bounds,
}
}
+15 -10
View File
@@ -65,6 +65,12 @@
box-sizing: border-box;
}
/* Links never underline — including SVG link text, which the UA stylesheet
underlines by default. */
a {
text-decoration: none;
}
html {
scroll-behavior: smooth;
/* Native-scrollbar fallback styling (JS off or before pagerite.js runs):
@@ -596,7 +602,7 @@ blockquote p {
background: color-mix(in srgb, var(--admonition-color, var(--accent)) 7%, transparent);
}
.admonition > :last-child {
.admonition> :last-child {
margin-bottom: 0;
}
@@ -698,12 +704,6 @@ td {
transparent 75%);
}
tbody tr:nth-child(even) td {
background: linear-gradient(160deg,
color-mix(in srgb, var(--table-tint, var(--accent)) 9%, transparent),
color-mix(in srgb, var(--table-tint, var(--accent)) 3%, transparent) 75%);
}
tbody tr+tr td {
border-top: 1px solid color-mix(in srgb, var(--table-tint, var(--accent)) 12%, transparent);
}
@@ -797,8 +797,11 @@ figure:has(img[width]) {
The rules below re-anchor the bleed for the layouts where the article
is not viewport-centered; each just overrides width/margin-inline, and
later rules win at equal specificity. */
figure:has(.wide) {
later rules win at equal specificity. The analytics dashboard uses the
same breakout directly on its container (div.wide — it is the page's
whole content, not a figure). */
figure:has(.wide),
div.wide {
width: 100vw;
max-width: none;
margin-inline: calc(50% - 50vw);
@@ -918,7 +921,9 @@ article h2 {
padding: 0.5rem 1rem;
}
#sidebar ul {
/* Only the main level becomes a horizontal wrapping strip; submenus stay
vertical blocks attached under their parent item. */
#sidebar > ul {
flex-direction: row;
flex-wrap: wrap;
gap: 0.5rem 1.2rem;
+2
View File
@@ -96,3 +96,5 @@ export function closeEditor() {
if (!visible && restoreTitle != null) document.title = restoreTitle
})
}
+325 -29
View File
@@ -55,6 +55,19 @@ import "overlayscrollbars/overlayscrollbars.css";
let isAdmin = false;
let editorMeta = null;
// Asset URLs for the on-demand bundles. Dev renders them as
// pagerite:* meta tags (Vite dev-server URLs); production inlines all
// page assets and carries the on-demand URLs in a JSON script instead.
const assets = (() => {
const el = document.getElementById("pagerite-assets");
if (el) return JSON.parse(el.textContent);
const map = {};
for (const m of document.querySelectorAll('meta[name^="pagerite:"]')) {
map[m.name] = m.content;
}
return map;
})();
function makePen(mode) {
const btn = document.createElement("button");
btn.type = "button";
@@ -97,28 +110,38 @@ import "overlayscrollbars/overlayscrollbars.css";
// Editing is open for admins and, as a dev/no-proxy fallback, when no
// Paskia SSO is detected at all.
const canEdit = isAdmin || !ssoAvailable;
// The analytics page is a read-only dashboard: editing pens and the side
// panel do not apply there. Login/logout links are still useful.
const onAnalytics = currentPath === "/_a";
const banner = document.getElementById("page-banner");
if (banner) {
const old = banner.parentElement.querySelector(".editor-pens");
if (old) old.remove();
const pens = document.createElement("div");
pens.className = "editor-pens";
if (canEdit) {
if (canEdit && !onAnalytics) {
pens.append(makePen("banner"));
pens.append(makePen("site"));
// Analytics viewer is now a normal page at /_a.
const a = document.createElement("a");
a.className = "edit-link analytics-link";
a.href = "/_a";
a.title = "analytics";
a.textContent = "📊";
pens.append(a);
}
if (ssoAvailable) pens.append(makeAuthLink(isAdmin));
banner.after(pens);
}
if (canEdit) injectPagePen();
if (canEdit && !onAnalytics) injectPagePen();
}
async function setupAuth() {
const src = document.querySelector('meta[name="pagerite:editor-src"]')?.content;
if (!src) return;
const src = assets["pagerite:editor-src"];
if (!src) { pingEntryOnce(); return; }
editorMeta = {
src,
css: document.querySelector('meta[name="pagerite:editor-css"]')?.content,
css: assets["pagerite:editor-css"],
};
// Detect whether Paskia SSO is available on this site.
@@ -137,7 +160,28 @@ import "overlayscrollbars/overlayscrollbars.css";
// No auth proxy / dev.
}
if (isAdmin) {
// Teach the backend the site's public origin (used for absolute
// social/canonical URLs): unlike request headers, location.origin
// reflects the real scheme and host even behind reverse proxies.
fetch("/_api/site-url", {
method: "POST",
headers: { "content-type": "application/json" },
body: JSON.stringify({ url: location.origin }),
}).catch(() => {});
// Warm the cache with the editor bundle: the hashed asset is
// immutable, so preloading costs nothing and the pens then open
// instantly. The analytics page has no editor.
if (currentPath !== "/_a" && !import.meta.env.DEV) {
const preload = document.createElement("link");
preload.rel = "modulepreload";
preload.href = src;
document.head.append(preload);
}
}
renderAuthUi();
pingEntryOnce();
}
// Returning to the page via history back/forward may restore a cached
@@ -219,6 +263,7 @@ import "overlayscrollbars/overlayscrollbars.css";
// buttons; re-add whichever auth UI is appropriate for this session.
renderAuthUi();
placeEditPen();
fitNav();
// Multi-column layout only when there is enough text to justify it.
// Split the body into columned segments: h1s, h2s and wide figures are
// full-width separators and never go inside columns.
@@ -274,14 +319,17 @@ import "overlayscrollbars/overlayscrollbars.css";
// internal link is fetched exactly once, and navigation is served from
// memory with no fetch at all. Editor re-renders (swapdoc.loadPlain)
// announce their fresh copies via pagerite:page-fetched, keeping the
// cache in sync after edits.
// cache in sync after edits. The current page is NOT preloaded: we just
// received it as the document (re-fetching would be redundant, and
// browser heuristics may send it without if-none-match, defeating the
// conditional request); it enters the cache when navigated to.
const pageCache = new Map(); // pathname -> HTML text
addEventListener("pagerite:page-fetched", (ev) => {
pageCache.set(new URL(ev.detail.url, location.href).pathname, ev.detail.html);
});
function preload() {
const urls = new Set([location.pathname]);
const urls = new Set();
for (const a of document.querySelectorAll(
'#nav a[href^="/"], #sidebar a[href^="/"], #main a[href^="/"]',
)) {
@@ -289,7 +337,10 @@ import "overlayscrollbars/overlayscrollbars.css";
}
for (const url of urls) {
if (pageCache.has(url)) continue;
fetch(url)
// x-pagerite-preload: idle cache warm-up, not a page view — the
// server excludes these GETs from analytics (the ping sent on actual
// navigation does the counting).
fetch(url, { headers: { "x-pagerite-preload": "1" } })
.then((r) => (r.ok && (r.headers.get("content-type") || "").includes("text/html")
? r.text() : ""))
.then((html) => { if (html) pageCache.set(url, html); })
@@ -326,6 +377,162 @@ import "overlayscrollbars/overlayscrollbars.css";
}, { passive: true });
}
// --- Analytics pings ---------------------------------------------------
// Fire-and-forget POST /_a {fr, to, read}: on the initial page load
// (starts the visit — the server counts nothing from the document GET
// alone), for internal fetch-navigations, for external https exits, and
// on window close. ``read`` is the active time (ms) spent on ``fr``.
// 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.
// 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
// before logging in, so admins never show up as visits or crawlers.
// 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;
const hide = ssoAvailable && isAdmin ? 1 : 0;
const body = JSON.stringify({
fr, to, hide,
read: Math.max(0, Math.round(read / 1000)),
});
try {
fetch("/_a", {
method: "POST",
keepalive: true,
headers: { "content-type": "application/json" },
body,
});
} catch { /* analytics must never break navigation */ }
}
// Active reading time for the current page. The clock stops after 1 minute
// without activity and restarts on the next mouse/touch/scroll/keyboard
// event.
const INACTIVE_MS = 60_000;
let readStart = performance.now();
let readElapsed = 0;
let reading = true;
let readInactivityTimer = null;
let closePingedFor = null;
function markReadActivity() {
if (!reading) {
reading = true;
readStart = performance.now();
}
clearTimeout(readInactivityTimer);
readInactivityTimer = setTimeout(() => {
if (reading) {
readElapsed += performance.now() - readStart;
reading = false;
}
}, INACTIVE_MS);
}
function takeReadTime() {
if (reading) {
readElapsed += performance.now() - readStart;
readStart = performance.now();
}
const ms = Math.max(0, Math.round(readElapsed));
readElapsed = 0;
return ms;
}
function resetReadTime() {
readElapsed = 0;
reading = true;
readStart = performance.now();
clearTimeout(readInactivityTimer);
}
function sendClosePing() {
if (closePingedFor === currentPath) return;
const read = Math.max(0, Math.round(takeReadTime() / 1000));
if (read <= 0) return;
const hide = ssoAvailable && isAdmin ? 1 : 0;
const body = JSON.stringify({ fr: currentPath, hide, read });
const blob = new Blob([body], { type: "application/json" });
try {
if (navigator.sendBeacon) {
navigator.sendBeacon("/_a", blob);
} else {
fetch("/_a", {
method: "POST",
keepalive: true,
headers: { "content-type": "application/json" },
body,
});
}
} catch { /* analytics must never break navigation */ }
closePingedFor = currentPath;
}
for (const ev of ["mousemove", "mousedown", "touchstart", "touchmove", "scroll", "keydown"]) {
addEventListener(ev, markReadActivity, { passive: true });
}
addEventListener("pagehide", sendClosePing);
// The initial page load pings too — it is what starts the visit and
// counts the entry page view (the document GET alone records nothing).
// Sent once per load, after the auth probes so the admin gate applies;
// the pageshow re-probe must not ping again. Reloads are not visits:
// pinging them would double-count the view and log a self-transition.
let entryPinged = false;
function pingEntryOnce() {
if (entryPinged) return;
entryPinged = true;
const nav = performance.getEntriesByType?.("navigation")[0];
if (nav ? nav.type === "reload" : performance.navigation?.type === 1) return;
ping(currentPath);
}
// --- Analytics page mount/unmount --------------------------------------
// The analytics page is a normal page whose body is rendered by the server
// but whose content is a Vue app. In dev the entry module is imported from
// the Vite dev server on demand; in production it is inlined into the /_a
// page as script#pagerite-js-analytics, which a fetch-navigation swap does
// not execute — re-create the element so the fresh module auto-mounts on
// #analytics-app (see analytics-main.js). The module exposes its unmount
// as window.__pageriteAnalyticsUnmount.
function teardownAnalytics() {
// Remove even the server-rendered script element so a later return to
// /_a re-mounts from a fresh copy (the module has torn itself down).
document.getElementById("pagerite-js-analytics")?.remove();
window.__pageriteAnalyticsUnmount?.();
window.__pageriteAnalyticsUnmount = null;
}
async function mountAnalytics(doc) {
if (!doc.getElementById("analytics-app")) return;
// Already mounted: on a full /_a load the inline script has run.
if (document.getElementById("pagerite-js-analytics")) return;
const inline = doc.getElementById("pagerite-js-analytics");
if (inline) {
const s = document.createElement("script");
for (const a of inline.attributes) s.setAttribute(a.name, a.value);
s.textContent = inline.textContent;
document.body.append(s);
return;
}
try {
// Dev: the cached module auto-mounts only on its first evaluation,
// so call mount() explicitly for repeat visits (it no-ops when the
// app is already up).
const mod = await import(/* @vite-ignore */ assets["pagerite:analytics-src"]);
const container = document.getElementById("analytics-app");
if (container) mod.mount(container);
} catch (e) {
console.error("analytics mount failed:", e);
}
}
// --- Fetch navigation ------------------------------------------------
async function load(url, push = true, back = false) {
// Navigating with the editor open closes it; unsaved edits are lost
@@ -333,6 +540,7 @@ import "overlayscrollbars/overlayscrollbars.css";
if (document.body.classList.contains("editing")) {
editorModule?.then((m) => m.closeEditor());
}
teardownAnalytics();
let doc;
let finalUrl = url;
const cached = pageCache.get(new URL(url, location.href).pathname);
@@ -345,15 +553,19 @@ import "overlayscrollbars/overlayscrollbars.css";
if (!res.ok || !type.includes("text/html")) throw new Error("not a page");
// Reflect any redirect the server issued.
if (res.redirected) finalUrl = res.url;
doc = new DOMParser().parseFromString(await res.text(), "text/html");
const html = await res.text();
// Populate the cache too, so returning here (back/forward, or a
// self-link in the nav) is served from memory.
pageCache.set(new URL(finalUrl, location.href).pathname, html);
doc = new DOMParser().parseFromString(html, "text/html");
} catch {
location.href = url; // fall back to a normal navigation
return;
return false;
}
}
if (REGIONS.some((id) => !doc.getElementById(id))) {
location.href = url;
return;
return false;
}
const doit = () => {
for (const id of REGIONS) {
@@ -372,25 +584,48 @@ import "overlayscrollbars/overlayscrollbars.css";
} else if (oldSidebar) {
oldSidebar.remove();
}
// Site-wide custom CSS lives in <head id="pagerite-user"> and must be
// kept in sync across fetch-navigations. It is kept last in <head>:
// in dev Vite injects the base stylesheet after the server-rendered
// tag, and equal-specificity :root rules are decided by order.
const oldUserStyle = document.getElementById("pagerite-user");
const newUserStyle = doc.getElementById("pagerite-user");
if (oldUserStyle && newUserStyle) {
oldUserStyle.textContent = newUserStyle.textContent;
document.head.appendChild(oldUserStyle);
} else if (newUserStyle) {
document.head.appendChild(document.importNode(newUserStyle, true));
} else if (oldUserStyle) {
oldUserStyle.remove();
// Stylesheets live in <head> with stable ids — links in dev, inline
// <style> elements in production — and must follow the swap: the
// analytics sheet exists on /_a only, and theme/banner/custom CSS
// may have changed since this page was loaded. Diff by id, keeping
// the fresh document's order; unchanged sheets keep their elements
// so their @keyframes are never torn down. Editor-injected sheets
// (data-pagerite, no id) and Vite's dev styles (no id) are left
// alone. Mirrors the head sync in swapdoc.js.
const sel = 'link[rel="stylesheet"][id], style[id]';
const fresh = [...doc.head.querySelectorAll(sel)];
const freshIds = new Set(fresh.map((el) => el.id));
for (const el of [...document.head.querySelectorAll(sel)]) {
if (!freshIds.has(el.id)) el.remove();
}
let anchor = null;
for (const el of fresh) {
const cur = document.getElementById(el.id);
if (cur && cur.outerHTML === el.outerHTML) {
anchor = cur;
continue;
}
const imported = document.importNode(el, true);
if (cur) cur.replaceWith(imported);
else if (anchor) anchor.after(imported);
else {
const base = document.getElementById("pagerite-base");
if (base) base.after(imported);
else document.head.append(imported);
}
anchor = imported;
}
// Custom CSS must stay last: equal-specificity :root rules (font
// variables) are decided by order, and in dev Vite injects the base
// stylesheet after the server-rendered tag.
const userStyle = document.getElementById("pagerite-user");
if (userStyle) document.head.appendChild(userStyle);
document.title = doc.title;
// Banners may contain scripts (canvas etc.), content pages may too.
runScripts(document.getElementById("page-banner"));
runScripts(document.getElementById("main"));
applyEffects();
mountAnalytics(doc);
};
// Rotating cube page transition (see the FRAGILE block in pagerite.css);
// mirrored when navigating back through history. Navigation within the
@@ -410,6 +645,7 @@ import "overlayscrollbars/overlayscrollbars.css";
currentPath = new URL(finalUrl, location.href).pathname;
if (push) history.pushState(null, "", finalUrl);
scrollTo(0, 0);
return true;
}
addEventListener("click", (ev) => {
@@ -447,16 +683,37 @@ import "overlayscrollbars/overlayscrollbars.css";
const a = ev.target.closest("a[href]");
if (!a || a.target || a.hasAttribute("download")) return;
const url = new URL(a.href, location.href);
if (url.origin !== location.origin) return;
if (url.origin !== location.origin) {
// External link: the browser navigates; record the full https URL so
// different links to the same domain stay distinct in analytics.
if (url.protocol === "https:") {
closePingedFor = currentPath;
ping(url.href, currentPath, takeReadTime());
}
return;
}
// Same-page anchor links (footnotes etc.): let the browser handle them
if (url.pathname === location.pathname && url.hash) return;
// Machinery and auth endpoints are never fetch-navigated.
if (url.pathname.startsWith("/_") || url.pathname.startsWith("/auth")) return;
// Machinery and auth endpoints are never fetch-navigated, except the
// public analytics viewer page at /_a.
if ((url.pathname.startsWith("/_") && url.pathname !== "/_a")
|| url.pathname.startsWith("/auth")) return;
ev.preventDefault();
load(url);
// Capture the source now: load() updates currentPath before pinging.
const from = currentPath;
load(url).then((ok) => {
if (!ok) return;
closePingedFor = null;
ping(url.pathname, from, takeReadTime());
resetReadTime();
});
});
addEventListener("popstate", () => load(location.href, false, true));
addEventListener("popstate", () => {
// Hash-only history entries are not navigations.
if (location.pathname === currentPath) return;
load(location.href, false, true);
});
// --- Task-list checkboxes ------------------------------------------------
// Checkboxes in the rendered article are live: toggling them edits the
@@ -520,6 +777,45 @@ import "overlayscrollbars/overlayscrollbars.css";
fit();
}
// --- Nav condense-to-fit -------------------------------------------------
// The top nav stays on one row even on too-narrow screens: first the link
// gaps shrink, then the nav's side padding, and only in extreme cases the
// font size. #nav is replaced on fetch-navigation swaps, so this re-runs
// from applyEffects (fresh elements each time); CSS keeps flex-wrap: wrap
// as the no-JS fallback.
function fitNav() {
const nav = document.getElementById("nav");
const ul = nav?.querySelector("ul");
if (!ul) return;
// Restore the themed defaults before measuring.
nav.style.fontSize = "";
nav.style.paddingInline = "";
ul.style.columnGap = "";
ul.style.flexWrap = "nowrap";
const overflow = () => ul.scrollWidth - ul.clientWidth;
if (overflow() <= 0) return;
// 1) shrink the gaps between items (down to a fifth of the themed gap)
const gap = parseFloat(getComputedStyle(ul).columnGap) || 0;
const joints = Math.max(ul.children.length - 1, 1);
if (gap > 0) {
ul.style.columnGap = `${Math.max(0.2 * gap, gap - overflow() / joints)}px`;
}
// 2) shrink the nav's side padding (down to 0.4x)
if (overflow() > 0) {
const pad = parseFloat(getComputedStyle(nav).paddingInlineStart) || 0;
nav.style.paddingInline = `${Math.max(0.4 * pad, pad - overflow() / 2)}px`;
}
// 3) shrink the font to fit what remains
if (overflow() > 0) {
const fs = parseFloat(getComputedStyle(nav).fontSize);
nav.style.fontSize = `${fs * ul.clientWidth / ul.scrollWidth}px`;
}
}
addEventListener("resize", fitNav);
document.fonts?.ready.then(fitNav);
setupAuth();
applyEffects();
mountAnalytics(document);
})();
+26 -19
View File
@@ -59,32 +59,39 @@ function swapRegions(doc) {
curUserStyle.remove()
}
// Theme and other public stylesheets live in <head>, rendered with stable
// ids by the backend; sync them positionally so the custom CSS (rendered
// last) always keeps winning by order. Diff-based: unchanged sheets keep
// their elements, so their @keyframes are never torn down (re-creating
// keyframes would replay the editor's slide-in animation).
const freshLinks = [...doc.head.querySelectorAll('link[rel="stylesheet"]')]
const freshIds = new Set(freshLinks.map((l) => l.id))
for (const link of [...document.head.querySelectorAll('link[rel="stylesheet"]')]) {
if (!link.dataset.pagerite && !freshIds.has(link.id)) link.remove()
// ids by the backend (links in dev, inline <style> elements in prod);
// sync them positionally so the custom CSS (rendered last) always keeps
// winning by order. Diff-based: unchanged sheets keep their elements, so
// their @keyframes are never torn down (re-creating keyframes would
// replay the editor's slide-in animation).
const sel = 'link[rel="stylesheet"][id], style[id]'
const freshEls = [...doc.head.querySelectorAll(sel)]
const freshIds = new Set(freshEls.map((el) => el.id))
for (const el of [...document.head.querySelectorAll(sel)]) {
if (!freshIds.has(el.id)) el.remove()
}
// Insert missing sheets in the fresh document's order, each right after
// its predecessor's element. The first sheet rendered is always the base
// CSS, so its link doubles as the fallback anchor when nothing matched yet
// (e.g. no theme was selected before and the position is otherwise lost).
// CSS, so its element doubles as the fallback anchor when nothing matched
// yet (e.g. no theme was selected before and the position is otherwise
// lost).
let anchor = null
for (const link of freshLinks) {
const cur = link.id && document.getElementById(link.id)
if (cur && cur.href === link.href) {
for (const el of freshEls) {
const cur = el.id && document.getElementById(el.id)
if (cur && cur.outerHTML === el.outerHTML) {
anchor = cur
continue
}
const el = document.importNode(link, true)
// Same id, new URL (theme switch): replace in place, keeping position.
if (cur) cur.replaceWith(el)
else if (anchor) anchor.after(el)
else document.getElementById('pagerite-base')?.after(el) ?? document.head.append(el)
anchor = el
const imported = document.importNode(el, true)
// Same id, new content (theme switch): replace in place, keeping position.
if (cur) cur.replaceWith(imported)
else if (anchor) anchor.after(imported)
else {
const base = document.getElementById('pagerite-base')
if (base) base.after(imported)
else document.head.append(imported)
}
anchor = imported
}
// The editor keeps its own title while open; only inherit the server title
// when navigating outside the editor (e.g. fetch-navigation swaps).
+1 -1
View File
@@ -11,7 +11,7 @@
*/
export default function fastapiVue({ paths = ["/api"] } = {}) {
const backendUrl = process.env.PAGERITE_BACKEND_URL || "http://localhost:3200"
const backendUrl = process.env.PAGERITE_BACKEND_URL || "http://localhost:8210"
// Build proxy configuration for each path
const proxy = {}
+6 -5
View File
@@ -7,15 +7,15 @@ import vueDevTools from 'vite-plugin-vue-devtools'
const backendUrl = process.env.PAGERITE_BACKEND_URL || 'http://localhost:3200'
// Proxy content pages (/slug, /path/to/slug) to the FastAPI backend in dev.
// Excludes Vite internals (/@..., /src, /node_modules, /__...) and the
// backend's /_ prefix. /_api and /_f are handled by the fastapi-vue plugin.
const CONTENT_PROXY = '^\\/(?!_|@|src|node_modules|__)(?:[^./?]+(?:\\/[^./?]+)*)?(?:\\?.*)?$'
// Proxy everything except Vite's own dev-time paths and the backend machinery
// to the FastAPI backend in dev. /_api, /_f, /_themes and /_a are handled by
// the fastapi-vue plugin, and /@..., /src, /node_modules, /__... stay with Vite.
const CONTENT_PROXY = '^(?!/_|/@|/src|/node_modules|/__).*$'
// https://vite.dev/config/
export default defineConfig({
plugins: [
fastapiVue({ paths: ["/_api", "/_f", "/_themes"] }),
fastapiVue({ paths: ["/_api", "/_f", "/_themes", "/_a"] }),
vue(),
vueDevTools(),
],
@@ -39,6 +39,7 @@ export default defineConfig({
input: {
main: fileURLToPath(new URL('./src/main.js', import.meta.url)),
pagerite: fileURLToPath(new URL('./src/pagerite.js', import.meta.url)),
analytics: fileURLToPath(new URL('./src/analytics-main.js', import.meta.url)),
// Only the base CSS is built; theme/banner-design stylesheets live
// in pagerite/themes/{name}/ and are served by the backend as-is.
pagerite_base: fileURLToPath(new URL('./src/assets/pagerite.css', import.meta.url)),
+69 -2
View File
@@ -1,14 +1,74 @@
# auto-upgrade@fastapi-vue-setup - remove this if you modify this file
"""Command-line entry point for running the backend server."""
import argparse
import gzip
import os
import sys
from datetime import date
from pathlib import Path
import httpx
from fastapi_vue import server
DEFAULT_PORT = 3100
DEFAULT_PORT = 8100
DEVMODE = os.getenv("PAGERITE_DEV") == "1"
# Repository root (pagerite/__main__.py -> ..), where the MMDB lives.
_REPO_ROOT = Path(__file__).resolve().parent.parent
DBIP_URL = "https://download.db-ip.com/free/dbip-city-lite-{month}.mmdb.gz"
def _download_dbip() -> None:
"""Download the latest dbip-city-lite MMDB if ours is missing or older."""
today = date.today()
months = [f"{today:%Y-%m}"]
# The current month's file may not be published yet; fall back to last month.
prev = (today.replace(day=1) - date.resolution).replace(day=1)
months.append(f"{prev:%Y-%m}")
existing = sorted(
p.stem.removeprefix("dbip-city-lite-").removesuffix(".mmdb")
for p in _REPO_ROOT.glob("dbip-city-lite-*.mmdb*")
)
if existing and existing[-1] >= months[0]:
print(f"pagerite: DB-IP database is current ({existing[-1]}), skipping download")
return
for month in months:
url = DBIP_URL.format(month=month)
target = _REPO_ROOT / f"dbip-city-lite-{month}.mmdb.gz"
tmp = target.with_suffix(".mmdb.gz.tmp")
print(f"pagerite: downloading {url}")
try:
with httpx.stream("GET", url, follow_redirects=True, timeout=120) as r:
if r.status_code == 404:
continue
r.raise_for_status()
with open(tmp, "wb") as f:
for chunk in r.iter_bytes():
f.write(chunk)
except httpx.HTTPError as e:
print(f"pagerite: DB-IP download failed: {e}", file=sys.stderr)
tmp.unlink(missing_ok=True)
continue
# Verify it is actually gzip data before installing it.
try:
with gzip.open(tmp, "rb") as f:
f.read(1)
except OSError:
print(f"pagerite: DB-IP download for {month} was not valid gzip", file=sys.stderr)
tmp.unlink(missing_ok=True)
continue
os.replace(tmp, target)
# Drop older databases so the app never picks up a stale one.
for old in _REPO_ROOT.glob("dbip-city-lite-*.mmdb*"):
if old.name != target.name:
old.unlink()
print(f"pagerite: DB-IP database updated to {target.name}")
return
print("pagerite: could not download a DB-IP database", file=sys.stderr)
def main() -> None:
"""Run the backend server with optional arguments."""
@@ -19,7 +79,14 @@ def main() -> None:
action="append",
help=(f"Endpoint (default: localhost:{DEFAULT_PORT})."),
)
parser.add_argument(
"--dbip",
action="store_true",
help="Download/update the DB-IP city lite database before starting.",
)
args = parser.parse_args()
if args.dbip:
_download_dbip()
dev = {"reload": True, "reload_dirs": ["pagerite"]} if DEVMODE else {}
server.run(
"pagerite.app:app",
+775
View File
@@ -0,0 +1,775 @@
"""Server-side visit analytics (collection only; see docs/analytics.md).
Events come from navigation pings POSTed to /_a by pagerite.js: the first
ping on page load starts a visit, later pings extend it, and pings with no
known session start a fresh one (missing data, not dropped). The document
GET handler stashes the entry referer (external https origin) and any
utm_* query parameters in in-memory IP tables, consumed when the ping
starts the visit; nothing is counted without a ping (plain bots that only
fetch documents end up in the crawler list). JS-running crawlers
(Googlebot, GoogleOther, Applebot, ...) do ping, but their UA gives them
away (``_is_bot_ua``) and their pings are ignored, so they land in the
crawler list too. Idle-time link preloads from pagerite.js carry an
``x-pagerite-preload`` header and are not tracked at all — the ping sent
when the user actually navigates does the counting.
Admin clients ping with ``hide=1``, which records nothing and removes any
visit the session accumulated before logging in. Scanner telltale 404s
(dotpaths, *.php) classify the source IP as abuse; its hits — including
earlier crawler hits — are moved to the abuse list, which the viewer
groups by IP with full request paths. Client metadata (IP, UA, language,
country/city, host) is stored once per unique client hash and referenced
from visits, crawler hits and abuse hits. The session map is in-memory
only.
Data is a msgspec Struct JSON-dumped to its own file (not the kanta db),
rewritten atomically on every recorded event.
"""
import ipaddress
import os
import re
import tempfile
from collections.abc import Callable
from contextlib import suppress
from datetime import UTC, datetime, timedelta
from pathlib import Path
from urllib.parse import parse_qs, urlparse
import blake3
import msgspec
from ua_parser import parse
def _compact_user_agent(ua: str) -> str:
"""Format a User-Agent string into a compact display form.
Returns the original UA when the parser cannot identify the browser/OS.
"""
if not ua or not ua.strip() or ua == "-":
return ""
r = parse(ua)
browser = r.user_agent.family if r.user_agent else None
ver = r.user_agent.major if r.user_agent else ""
os_name = r.os.family if r.os else None
dev = r.device.family if r.device else None
if browser in (None, "Other") and os_name in (None, "Other"):
return ua
if browser and browser != "Other":
browser = browser.split()[0]
else:
browser = ""
os_name = os_name if os_name and os_name != "Other" else ""
if dev in (None, "Other") or dev == browser:
dev = ""
parts = [f"{browser}/{ver}" if browser else "", os_name, dev]
return " ".join(p for p in parts if p).strip()
class Client(msgspec.Struct, omit_defaults=True):
"""Client metadata shared by visits, crawler hits and abuse hits.
Identified by a 6-byte blake3 hash of the IPv4 address or IPv6 /64
network, the full User-Agent string and the extracted language tag.
Country/city/host are filled in asynchronously after the first event.
"""
#: Visitor IP address (first X-Forwarded-For hop or direct peer).
ip: str = ""
#: Reverse-DNS host name for ``ip`` when resolvable, else "".
host: str = ""
#: First Accept-Language tag, lowercased (e.g. "en-us").
lang: str = ""
#: Two-letter country code from the DB-IP geoip lookup, or "".
country: str = ""
#: City name from the DB-IP geoip lookup, or "".
city: str = ""
#: Raw User-Agent header.
ua: str = ""
#: Compact display form of ``ua`` (browser/OS/device) when parsable.
ua_pretty: str = ""
class Visit(msgspec.Struct, omit_defaults=True):
"""One visit: the initial-load data plus everything seen afterwards.
``trail`` holds page paths and external exit URLs in first-seen
order; re-visiting an already seen page does not append. The entry
page itself is in ``entry``, not in the trail. Client metadata is
held in ``Analytics.clients`` keyed by ``client``.
"""
start: datetime
entry: str
#: External https origin of the initial load, "" for direct visits.
referer: str = ""
#: 6-byte blake3 hash referencing ``Analytics.clients``.
client: bytes = b""
trail: list[str] = []
#: UTM query parameters from the landing URL, keyed by parameter name.
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):
"""A document GET that was never followed by an analytics ping.
Client metadata is held in ``Analytics.clients`` keyed by ``client``.
"""
start: datetime
entry: str
#: 6-byte blake3 hash referencing ``Analytics.clients``.
client: bytes = b""
#: External https origin of the initial load, "" for direct/none.
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):
"""A request from an IP classified as a scanner/abuser.
Unlike crawler hits the full request path (query string included) is
kept: the interesting part is exactly which paths were probed.
``flag`` marks the path that triggered classification; ``is_404``
distinguishes 404 responses from document GETs made by the abuser.
Client metadata is held in ``Analytics.clients`` keyed by ``client``.
"""
start: datetime
#: Full request path including the query string (e.g. "/.env?x=1").
path: str
#: 6-byte blake3 hash referencing ``Analytics.clients``.
client: bytes = b""
#: True when this path triggered abuse classification (telltale path
#: or the 404 that crossed the threshold).
flag: bool = False
#: True for 404 responses; false for document GETs from the abuser.
is_404: bool = False
class Analytics(msgspec.Struct, omit_defaults=True):
"""Root of the analytics JSON file. Append-only by design: old data is
dropped by deleting list entries / bucket keys."""
visits: list[Visit] = []
#: Document GETs that never produced a ping, treated as crawler/bot hits.
crawlers: list[CrawlerHit] = []
#: Requests from abusive IPs (see AbuseHit), grouped by IP in the viewer.
abuse: list[AbuseHit] = []
#: Client metadata keyed by 6-byte blake3 hash.
clients: dict[bytes, Client] = {}
#: IPs classified as scanners/abusers (keys; values always True).
abuse_ips: dict[str, bool] = {}
#: Page transitions per 5-minute bucket (sparse):
#: from -> to -> bucket ISO -> count. ``from`` is the referer origin or
#: "(direct)" for initial loads, a page path for pings.
transitions: dict[str, dict[str, dict[str, int]]] = {}
#: Page views per 5-minute bucket: path -> bucket ISO -> count (sparse).
views: dict[str, dict[str, int]] = {}
#: New visits per 5-minute bucket: bucket ISO -> count (sparse).
site_visits: dict[str, int] = {}
def _bucket(now: datetime) -> str:
"""Start of the 5-minute interval containing ``now``, as ISO string."""
return now.replace(minute=now.minute // 5 * 5, second=0, microsecond=0).isoformat()
def _origin(url: str) -> str | None:
"""The origin part of an https URL (scheme://host[:port]), else None."""
try:
parsed = urlparse(url)
except ValueError:
return None
if parsed.scheme != "https" or not parsed.netloc:
return None
return f"https://{parsed.netloc}"
def _external_target(url: str) -> str | None:
"""A valid https URL (origin or full page), else None."""
try:
parsed = urlparse(url)
except ValueError:
return None
if parsed.scheme != "https" or not parsed.netloc:
return None
return url
_SEGMENT = re.compile(r"[a-z0-9][a-z0-9_-]*")
def _internal_path(to: str) -> str | None:
"""A valid internal page path ("/" or slug segments), else None."""
path = to.split("?")[0].split("#")[0].strip("/")
if not path:
return "/"
if all(_SEGMENT.fullmatch(seg) for seg in path.split("/")):
return f"/{path}"
return None
def _parse_accept_language(value: str) -> tuple[str, str]:
"""First Accept-Language tag and the region/country subtag if present.
``en-US, fr;q=0.9`` -> ("en-us", "US"). Wildcards and missing regions
produce an empty country. The region is intentionally approximate:
it reflects the browser's language preference, not geo-location.
"""
if not value:
return "", ""
tag = value.split(",")[0].split(";")[0].strip()
if not tag or tag == "*":
return "", ""
lang = tag.lower()
country = ""
# Region subtags follow the initial language tag (en-US, zh-Hans-CN).
# A bare two-letter tag such as "fr" is a language code, not a region.
for part in reversed(tag.split("-")[1:]):
if len(part) == 2 and part.isalpha():
country = part.upper()
break
return lang, country
def _utm_tags(query: str) -> dict[str, str]:
"""UTM parameters from a query string, keeping only the first value."""
if not query:
return {}
parsed = parse_qs(query, keep_blank_values=True)
return {k: v[0] for k, v in parsed.items() if k.startswith("utm_")}
_CRAWLER_TIMEOUT = timedelta(seconds=10)
#: UAs of JS-running crawlers, which would register as visitors on their
#: 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|spider|googleother", re.IGNORECASE)
def _is_bot_ua(ua: str) -> bool:
"""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
#: telltale path hit.
_ABUSE_404_THRESHOLD = 10
#: Paths that instantly classify an IP as abuse when they 404: any segment
#: starting with a dot ("/.env", "/.git/config") or ending in ".php".
_ABUSE_PATH = re.compile(r"(^|/)\.|\.php$", re.IGNORECASE)
def _is_abuse_path(path: str) -> bool:
"""Telltale scanner path: dot segment or *.php."""
return bool(_ABUSE_PATH.search(path.split("?")[0]))
def _network_ip(ip: str) -> str:
"""IPv4 address unchanged, IPv6 collapsed to its /64 network address.
We hash the network rather than the full address so that clients in the
same /64 (a typical end-user allocation) are treated as one visitor.
"""
if not ip:
return ip
try:
addr = ipaddress.ip_address(ip)
except ValueError:
return ip
if isinstance(addr, ipaddress.IPv6Address):
return str(ipaddress.IPv6Network(f"{ip}/64", strict=False).network_address)
return ip
def _client_hash(ip: str, ua: str, lang: str) -> bytes:
"""6-byte blake3 digest identifying a visitor/client tuple.
The key is the prettified IP (IPv6 /64), the raw UA string and the
extracted language tag, separated by null bytes.
"""
return blake3.blake3(
f"{_network_ip(ip)}\0{ua}\0{lang}".encode()
).digest()[:6]
class Store:
"""In-memory analytics data plus the client-hash -> visit session map."""
def __init__(self, path: Path) -> None:
self.path = path
self.data = Analytics()
if path.exists():
try:
self.data = msgspec.json.decode(path.read_bytes(), type=Analytics)
except msgspec.DecodeError, OSError:
pass # legacy schema / corrupt or unreadable file: start fresh
#: client hash -> index of the current visit in data.visits
self.sessions: dict[bytes, int] = {}
#: 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.
self.pending_referers: dict[str, str] = {}
#: ip -> utm_* query parameters from the latest document GET that
#: carried any, stashed for the visit the client's initial ping starts.
#: Only non-empty sets are stored, so a later parameter-less page
#: does not overwrite an earlier tagged landing URL.
self.pending_utms: dict[str, dict[str, str]] = {}
#: 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] = {}
#: Callables to notify when persisted data changes. Registered by the
#: analytics WebSocket broadcaster.
self._on_change: list[Callable[[], None]] = []
def subscribe(self, callback: Callable[[], None]) -> None:
"""Register a callback to be called after every persisted change."""
if callback not in self._on_change:
self._on_change.append(callback)
def unsubscribe(self, callback: Callable[[], None]) -> None:
"""Remove a previously registered change callback."""
with suppress(ValueError):
self._on_change.remove(callback)
def _notify(self) -> None:
for callback in self._on_change:
callback()
def _save(self) -> None:
"""Rewrite the JSON file atomically (temp file + rename)."""
try:
fd, tmp = tempfile.mkstemp(
dir=self.path.parent, prefix=self.path.name, suffix=".tmp"
)
with os.fdopen(fd, "wb") as f:
f.write(msgspec.json.encode(self.data))
os.replace(tmp, self.path)
except OSError:
pass # analytics must never break page serving
else:
self._notify()
def _flush_crawlers(self, now: datetime | None = None) -> list[bytes]:
"""Move expired pending crawler hits into persistent ``data.crawlers``.
Returns the client hashes of the newly flushed hits so callers can
schedule async enrichment.
"""
if not self.pending_crawlers:
return []
now = now or datetime.now(UTC)
cutoff = now - _CRAWLER_TIMEOUT
expired: list[CrawlerHit] = []
remaining: list[CrawlerHit] = []
for hit in self.pending_crawlers:
(expired if hit.start <= cutoff else remaining).append(hit)
if not expired:
return []
self.pending_crawlers = remaining
self.data.crawlers.extend(expired)
self._save()
return [hit.client for hit in expired]
def _count(self, table: dict[str, int], key: str) -> None:
table[key] = table.get(key, 0) + 1
def _count_transition(self, fr: str, to: str, now: datetime) -> None:
"""Count one transition in its 5-minute bucket (sparse matrix)."""
buckets = self.data.transitions.setdefault(fr, {}).setdefault(to, {})
self._count(buckets, _bucket(now))
def _uncount(self, table: dict[str, int], key: str) -> None:
"""Reverse one ``_count``: decrement and drop empty keys."""
if key in table:
table[key] -= 1
if table[key] <= 0:
del table[key]
def _remove_visit(self, index: int) -> None:
"""Delete a visit and reverse the counts its creation 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.
"""
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)"]
del self.data.visits[index]
# Sessions 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
def _client_ip(self, client_hash: bytes) -> str:
"""Return the IP stored for ``client_hash``, or "" if missing."""
client = self.data.clients.get(client_hash)
return client.ip if client else ""
def _ensure_client(
self,
ip: str,
ua: str,
lang: str,
*,
country: str = "",
) -> bytes:
"""Get or create a ``Client`` record; return its 6-byte hash."""
h = _client_hash(ip, ua, lang)
if h not in self.data.clients:
self.data.clients[h] = Client(
ip=ip,
ua=ua,
ua_pretty=_compact_user_agent(ua),
lang=lang,
country=country,
)
self._save()
return h
def enrich_client(
self,
client_hash: bytes,
*,
host: str = "",
country: str = "",
city: str = "",
) -> None:
"""Fill in host/geoip fields on a client record after async lookups."""
client = self.data.clients.get(client_hash)
if client is None:
return
changed = False
if host and not client.host:
client.host = host
changed = True
if country:
client.country = country
changed = True
if city:
client.city = city
changed = True
if changed:
self._save()
def _abuse_hit(
self,
client_hash: bytes,
path: str,
start: datetime | None = None,
*,
flag: bool = False,
is_404: bool = False,
) -> None:
"""Append one abuse hit referencing a client by hash."""
self.data.abuse.append(
AbuseHit(
start=start or datetime.now(UTC),
path=path,
client=client_hash,
flag=flag,
is_404=is_404,
)
)
def classify_abuse(
self,
ip: str,
client_hash: bytes,
path: str,
*,
flag: bool = False,
is_404: bool = False,
) -> None:
"""Classify an IP as a scanner/abuser and record the triggering hit.
All earlier crawler hits from the same IP (persisted and pending)
are moved to the abuse list — a random-UA scanner must not pollute
the crawler stats of the legitimate bots it impersonates.
"""
if ip not in self.data.abuse_ips:
self.data.abuse_ips[ip] = True
moved = [h for h in self.data.crawlers if self._client_ip(h.client) == ip]
if moved:
self.data.crawlers = [h for h in self.data.crawlers if self._client_ip(h.client) != ip]
for h in moved:
self._abuse_hit(
h.client,
h.entry + (f"?{h.query}" if h.query else ""),
start=h.start,
)
pending = [h for h in self.pending_crawlers if self._client_ip(h.client) == ip]
if pending:
self.pending_crawlers = [h for h in self.pending_crawlers if self._client_ip(h.client) != ip]
for h in pending:
self._abuse_hit(
h.client,
h.entry + (f"?{h.query}" if h.query else ""),
start=h.start,
)
self._abuse_hit(client_hash, path, flag=flag, is_404=is_404)
self._save()
def track_404(
self,
ip: str,
ua: str,
path: str,
accept_language: str = "",
) -> bytes:
"""Record a 404 response for ``path`` (full path, query included).
A telltale path (dot segment or *.php) classifies the IP as abuse
immediately; enough plain 404s from one IP do too. Hits from
already-classified IPs go straight to the abuse list.
Returns the client hash so callers can schedule async enrichment.
"""
lang, country = _parse_accept_language(accept_language)
client_hash = self._ensure_client(ip, ua, lang, country=country)
if ip in self.data.abuse_ips:
self._abuse_hit(client_hash, path, flag=_is_abuse_path(path), is_404=True)
self._save()
return client_hash
if _is_abuse_path(path):
self.classify_abuse(ip, client_hash, path, flag=True, is_404=True)
return client_hash
self.not_found_counts[ip] = self.not_found_counts.get(ip, 0) + 1
if self.not_found_counts[ip] >= _ABUSE_404_THRESHOLD:
self.classify_abuse(ip, client_hash, path, flag=True, is_404=True)
return client_hash
return client_hash
def _new_visit(
self,
entry: str,
referer: str,
client_hash: bytes,
utm: dict[str, str] | None = None,
status: int = 200,
) -> Visit:
now = datetime.now(UTC)
visit = Visit(
start=now,
entry=entry,
referer=referer,
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)
return visit
def track_entry(
self,
referer: str,
own_origin: str,
ip: str,
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.
Nothing is counted here — the client's initial /_a ping starts the
visit (only non-admin clients ping). Only a cross-origin https
referer updates the table; an internal or absent referer leaves any
stashed origin untouched. UTM parameters are kept only when the
landing URL actually carries them, so a subsequent parameter-less page
does not erase an earlier tagged landing.
Every document GET is also queued as a pending crawler hit. If a ping
from the same client arrives within ``_CRAWLER_TIMEOUT``, the hit is
discarded; otherwise it is flushed to ``data.crawlers``. The
Accept-Language header is stored on the client record immediately;
host/geoip are filled in later by async enrichment.
GETs from IPs already classified as abuse are recorded as abuse hits
with the full request path (query string included).
Returns the client hashes of any hits flushed to persistent storage,
so callers can schedule async enrichment.
"""
entry = full_path.split("?")[0]
query = full_path.split("?", 1)[1] if "?" in full_path else ""
lang, country = _parse_accept_language(accept_language)
client_hash = self._ensure_client(ip, ua, lang, country=country)
if ip in self.data.abuse_ips:
flushed = self._flush_crawlers()
self._abuse_hit(client_hash, full_path, is_404=False, flag=False)
self._save()
return flushed
now = datetime.now(UTC)
flushed = self._flush_crawlers(now)
if referer:
origin = _origin(referer)
if origin is not None and origin != own_origin:
self.pending_referers[ip] = origin
utms = _utm_tags(query)
if utms:
self.pending_utms[ip] = utms
self.pending_crawlers.append(
CrawlerHit(
start=now,
entry=entry,
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:
"""Add ``seconds`` of reading time for ``path`` to the current visit."""
if seconds <= 0:
return
index = self.sessions.get(client_hash)
if index is None or index >= len(self.data.visits):
return
visit = self.data.visits[index]
visit.read[path] = visit.read.get(path, 0) + seconds
def ping(
self,
from_: str,
to: str | None,
ip: str,
ua: str,
accept_language: str = "",
hide: bool = False,
read: int = 0,
) -> tuple[int | None, list[bytes]]:
"""Record a client navigation ping ({from, to, read} from pagerite.js).
``to`` is an internal path ("/...") or an https URL for exit links; a
missing/empty ``to`` means the page is being closed and only the
``read`` time should be recorded. The transition is always counted when
``to`` is present; the trail only grows on first sight of a page within
the visit. ``read`` is the active time (seconds) spent on ``from_``.
A ping with no known session starts a fresh visit, consuming the
referer and UTM tags stashed by the document GET if there are any.
``hide`` is set by admin clients: the ping cancels pending crawler
hits as usual, and any existing visit for this client session is
removed from the stats (the admin browsed anonymously before logging
in). Nothing new is recorded.
Pings from IPs classified as abuse, and pings whose User-Agent
claims a JS-running crawler identity (``_is_bot_ua``), are ignored
entirely — the crawler's pending hits stay queued and flush to
``data.crawlers`` normally.
Returns the index of the new visit when one is created (or None) and
the client hashes of any crawler hits flushed by this call, so callers
can schedule async enrichment (host, geoip country/city).
"""
flushed = self._flush_crawlers()
lang, country = _parse_accept_language(accept_language)
client_hash = _client_hash(ip, ua, lang)
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
]
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)
self._save()
return None, flushed
if ip in self.data.abuse_ips:
return None, flushed
if _is_bot_ua(ua):
# A JS-running crawler (Googlebot, GoogleOther, Applebot execute
# JS and ping): never a visit. Its pending crawler hits are
# kept and flush to ``data.crawlers`` normally.
return None, flushed
# A real visitor ping cancels any pending crawler hits from this client.
self.pending_crawlers = [
hit for hit in self.pending_crawlers if hit.client != client_hash
]
fr_path = _internal_path(from_) if from_ else ""
if fr_path and read > 0:
self._add_read(client_hash, fr_path, read)
if not to:
if read > 0:
self._save()
return None, flushed
if to.startswith("/") and not to.startswith("//"):
target = _internal_path(to) or ""
else:
target = _external_target(to) or ""
if not target:
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.
index = len(self.data.visits)
self._ensure_client(ip, ua, lang, country=country)
self._new_visit(
target,
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)
if target.startswith("/"):
self._count(self.data.views.setdefault(target, {}), _bucket(now))
self._count_transition(fr, target, now)
# 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
+542 -9
View File
@@ -12,23 +12,33 @@ walking the tree (``resolve``), moves are slot detach/attach
(``find_slot``) with a fresh order key from the new siblings.
"""
import asyncio
import gzip
import ipaddress
import mimetypes
import os
import re
import shutil
import socket
from collections.abc import AsyncIterator
from contextlib import asynccontextmanager
from datetime import UTC, datetime
from email.utils import format_datetime
from functools import lru_cache
from pathlib import Path
from urllib.parse import urlparse
from xml.sax.saxutils import escape as xml_escape
import blake3
import msgspec
from fastapi import FastAPI, HTTPException, Request, WebSocket, WebSocketDisconnect
from fastapi.responses import HTMLResponse, RedirectResponse, Response
from fastapi.responses import RedirectResponse, Response
from fastapi_vue import Frontend
from kanta import Kanta
from pydantic import BaseModel
from zstandard import ZstdCompressor
from pagerite import seed, views
from pagerite import analytics, seed, views
from pagerite.__main__ import DEVMODE
from pagerite.data import (
Data,
@@ -43,6 +53,104 @@ from pagerite.markdown import has_h1, render, toggle_task
DB_PATH = os.getenv("PAGERITE_DB", "pagerite.kantadb")
# Visit analytics go to their own JSON file, not the kanta database.
ANALYTICS_PATH = Path(
os.getenv("PAGERITE_ANALYTICS", DB_PATH.replace(".kantadb", "") + ".analytics.json")
)
analytics_store = analytics.Store(ANALYTICS_PATH)
# Live WebSocket clients for the analytics stream.
_analytics_ws_clients: set[WebSocket] = set()
_analytics_broadcast_task: asyncio.Task | None = None
# Repository root from this file's location (pagerite/app.py -> ..).
_REPO_ROOT = Path(__file__).resolve().parent.parent
def _geoip_db_path() -> Path | None:
"""Find a DB-IP MMDB in the repo root, preferring an already-decompressed
``.mmdb`` over the matching ``.mmdb.gz``. Returns None if none is present.
"""
mmdb = sorted(_REPO_ROOT.glob("dbip-*.mmdb"))
if mmdb:
return mmdb[0]
gz = sorted(_REPO_ROOT.glob("dbip-*.mmdb.gz"))
if gz:
return gz[0]
return None
class GeoIP:
"""Lazy DB-IP MMDB reader. Call ``_load()`` once at startup before
concurrent requests arrive; ``country()`` is read-only and safe to call
from ``asyncio.to_thread`` workers afterwards.
"""
def __init__(self) -> None:
self._reader: object | None = None
def _decompress(self, source: Path, target: Path) -> None:
if target.exists():
return
tmp = target.with_suffix(target.suffix + ".tmp")
with gzip.open(source, "rb") as src, open(tmp, "wb") as dst:
shutil.copyfileobj(src, dst)
os.replace(tmp, target)
def _load(self) -> None:
if self._reader is not None:
return
source = _geoip_db_path()
if source is None:
return
if source.suffix == ".gz":
target = source.with_suffix("")
self._decompress(source, target)
source = target
try:
import maxminddb
self._reader = maxminddb.open_database(str(source))
except Exception:
pass
def country(self, ip: str) -> str:
"""Two-letter ISO country code for ``ip``, or "" when unavailable."""
if not ip or self._reader is None:
return ""
try:
rec = self._reader.get(ip)
if rec:
return (rec.get("country") or {}).get("iso_code", "")
except Exception:
pass
return ""
def city(self, ip: str) -> str:
"""City name for ``ip``, or "" when unavailable.
GeoIP sometimes appends district names in parentheses (e.g.
"Berlin (Bezirk Tempelhof-Schöneberg)"); those are stripped before
the value is stored.
"""
if not ip or self._reader is None:
return ""
try:
rec = self._reader.get(ip)
if rec:
city = (rec.get("city") or {}).get("names", {}).get("en", "")
if city:
city = re.sub(r"\s*\([^)]*\)", "", city).strip()
return city
except Exception:
pass
return ""
_geoip = GeoIP()
# Our own data root; kanta edits it in place, reads are plain attribute access.
data = Data()
kanta = Kanta(DB_PATH, data)
@@ -142,11 +250,16 @@ def _seed(data: Data) -> None:
@asynccontextmanager
async def lifespan(_app: FastAPI) -> AsyncIterator[None]:
"""Open the database, migrate legacy content, load assets."""
"""Open the database, migrate legacy content, load assets, load GeoIP."""
await kanta.open()
_migrate_legacy()
await frontend.load()
# Decompress/open the DB-IP MMDB once at startup. Lookups are then
# read-only and safe to run in background ``to_thread`` workers.
await asyncio.to_thread(_geoip._load)
analytics_store.subscribe(_schedule_analytics_broadcast)
yield
analytics_store.unsubscribe(_schedule_analytics_broadcast)
await kanta.close()
@@ -170,6 +283,79 @@ async def _headers(request: Request, call_next) -> Response:
return response
# Dynamic HTML is compressed per request at level 9 (static assets are
# already pre-compressed by fastapi-vue's Frontend).
_zstd = ZstdCompressor(9)
def _render_html(kind: str, path: str, base_url: str) -> str:
"""Render one of the generated pages (see _html_response)."""
if kind == "page":
return views.render_page(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html, base_url)
if kind == "category":
return views.render_category(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html)
if kind == "not-found":
return views.render_not_found(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html)
return views.render_analytics(data.menu, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html)
@lru_cache(maxsize=128)
def _cached_body(kind: str, path: str, base_url: str, version: int, zstd: bool) -> bytes:
"""Rendered page body. Every input the output depends on is in the key:
data.version bumps on any content/settings change, base_url feeds the
social meta URLs, and zstd selects the stored encoding (both variants
are cached rather than re-compressed).
"""
body = _render_html(kind, path, base_url).encode()
return _zstd.compress(body) if zstd else body
def _html_response(
request: Request,
kind: str,
path: str,
status_code: int = 200,
headers: dict | None = None,
etag: bool = False,
) -> Response:
"""Response for a generated page, zstd-compressed when the client
accepts it (no gzip fallback).
Done per handler rather than in middleware so that Frontend's
already-compressed asset responses are never touched. The ETag stays
identical across encodings (revalidation compares it before
compression); ``vary: accept-encoding`` keeps caches from mixing the
representations. In dev the cache is bypassed so theme/design edits on
disk apply immediately.
``etag=True`` derives the validator from a blake3 hash of the
(uncompressed) body — for pages like /_a that have no Node whose
modified timestamp could serve as one — and answers matching
if-none-match revalidations with a 304.
"""
zstd = "zstd" in request.headers.get("accept-encoding", "")
# Absolute social/canonical URLs use the learned public origin; until
# an admin visit teaches it, fall back to the request's own base URL.
base_url = data.site_url or str(request.base_url).rstrip("/")
if DEVMODE:
identity = _render_html(kind, path, base_url).encode()
body = _zstd.compress(identity) if zstd else identity
else:
identity = _cached_body(kind, path, base_url, data.version, False)
body = _cached_body(kind, path, base_url, data.version, True) if zstd else identity
h = dict(headers or {})
if zstd:
h["vary"] = "accept-encoding"
if etag:
tag = f'"{blake3.blake3(identity).hexdigest()[:32]}"'
h["etag"] = tag
if request.headers.get("if-none-match") == tag:
return Response(status_code=304, headers=h)
if zstd:
h["content-encoding"] = "zstd"
return Response(body, status_code, h, media_type="text/html")
class PageIn(BaseModel):
"""Payload for creating or replacing a page."""
@@ -323,6 +509,33 @@ async def put_settings(settings: SettingsIn) -> None:
data.version += 1
class SiteUrlIn(BaseModel):
"""Payload for learning the site's public origin."""
url: str
@app.post("/_api/site-url", status_code=204)
async def learn_site_url(payload: SiteUrlIn) -> None:
"""Learn the site's public origin (scheme + host) from an admin browser.
pagerite.js reports location.origin once an admin session is detected:
unlike request Host headers it reflects the real public scheme and host
even behind reverse proxies, with zero manual configuration. Stored in
the database with a version bump so cached pages re-render with correct
absolute social/canonical URLs.
"""
url = payload.url.rstrip("/")
parsed = urlparse(url)
if parsed.scheme not in ("http", "https") or not parsed.netloc or parsed.path:
raise HTTPException(400, "not an origin")
if url == data.site_url:
return
with kanta.transaction("learn site url"):
data.site_url = url
data.version += 1
@app.put("/_api/settings/favicon")
async def put_favicon(request: Request) -> dict[str, str]:
"""Upload a favicon into the content-addressed store and activate it.
@@ -495,6 +708,192 @@ async def delete_page(path: str) -> None:
_SLUG_RE = re.compile(r"^[a-z0-9][a-z0-9_-]*$")
def _client_ip(request: Request) -> str:
"""Client IP: first X-Forwarded-For hop (we sit behind a proxy), else
the direct peer."""
forwarded = request.headers.get("x-forwarded-for", "").split(",")[0].strip()
return forwarded or (request.client.host if request.client else "")
def _query_suffix(request: Request) -> str:
"""The request's query string as a "?..." suffix, or "" when absent."""
query = str(request.url.query)
return f"?{query}" if query else ""
@lru_cache(maxsize=4096)
def _cached_ptr(ip: str) -> str:
"""Reverse-DNS lookup with in-RAM LRU cache. Returns the host name or ""."""
if not ip:
return ""
try:
addr = ipaddress.ip_address(ip)
except ValueError:
return ""
if addr.is_private or addr.is_loopback or addr.is_reserved or addr.is_multicast or addr.is_link_local:
return ""
try:
host, _, _ = socket.gethostbyaddr(ip)
except socket.herror:
return ""
return host
async def _lookup_host(ip: str) -> str:
"""Async wrapper around ``_cached_ptr``; runs the blocking lookup in a thread."""
return await asyncio.to_thread(_cached_ptr, ip)
async def _geoip_country(ip: str) -> str:
"""Async wrapper around the DB-IP MMDB lookup."""
return await asyncio.to_thread(_geoip.country, ip)
async def _geoip_city(ip: str) -> str:
"""Async wrapper around the DB-IP MMDB city lookup."""
return await asyncio.to_thread(_geoip.city, ip)
async def _enrich_client(client_hash: bytes) -> None:
"""Run non-blocking reverse-DNS and geoip enrichment for a client."""
client = analytics_store.data.clients.get(client_hash)
if not client or not client.ip:
return
host = await _lookup_host(client.ip)
country = await _geoip_country(client.ip)
city = await _geoip_city(client.ip)
analytics_store.enrich_client(client_hash, host=host, country=country, city=city)
def _schedule_client_enrichment(client_hashes: list[bytes]) -> None:
"""Start background host/geoip enrichment for the given client hashes."""
for client_hash in client_hashes:
asyncio.create_task(_enrich_client(client_hash))
async def _broadcast_analytics() -> None:
"""Send the current analytics snapshot to every connected WS client."""
if not _analytics_ws_clients:
return
payload = msgspec.json.encode(analytics_store.data).decode()
closed = set()
for ws in _analytics_ws_clients:
try:
await ws.send_text(payload)
except Exception:
closed.add(ws)
for ws in closed:
_analytics_ws_clients.discard(ws)
async def _debounced_analytics_broadcast() -> None:
"""Wait briefly, then broadcast the latest snapshot once."""
await asyncio.sleep(0.2)
await _broadcast_analytics()
def _schedule_analytics_broadcast() -> None:
"""Schedule a single debounced broadcast, ignoring duplicate triggers."""
global _analytics_broadcast_task
if _analytics_broadcast_task is not None and not _analytics_broadcast_task.done():
return
_analytics_broadcast_task = asyncio.get_running_loop().create_task(
_debounced_analytics_broadcast()
)
class AnalyticsPing(BaseModel):
"""Navigation ping from pagerite.js (see docs/analytics.md)."""
fr: str = ""
to: str | None = None
#: 1 from admin clients: scrub the session instead of recording it.
hide: int = 0
#: Active reading time on ``fr`` (ms), if any.
read: int = 0
@app.get("/_a", response_model=None)
async def analytics_page(request: Request) -> Response:
"""Render the analytics viewer as a normal site page at /_a.
The page itself is public, but the data stream (/_api/ws/analytics) stays
admin-gated like the rest of /_api, so only authorized users see the
statistics; others get the viewer with a "could not be loaded" message.
"""
return _html_response(
request,
"analytics",
"",
headers={"cache-control": "no-cache"},
etag=True,
)
@app.post("/_a", status_code=204)
async def analytics_ping(ping: AnalyticsPing, request: Request) -> None:
"""Record a navigation ping ({fr, to}); fire-and-forget, never fails.
The reverse-DNS and DB-IP geoip lookups happen in a background task so
the response is never delayed by slow DNS or the first MMDB decompress.
"""
ip = _client_ip(request)
visit_index, flushed_clients = analytics_store.ping(
ping.fr,
ping.to,
ip,
request.headers.get("user-agent", ""),
request.headers.get("accept-language", ""),
hide=bool(ping.hide),
read=ping.read,
)
if visit_index is not None:
visit = analytics_store.data.visits[visit_index]
asyncio.create_task(_enrich_client(visit.client))
_schedule_client_enrichment(flushed_clients)
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
visit, so bots never register as visits (JS-running crawlers ping too,
but the ping handler ignores known bot UAs). (Admin clients ping too,
but with hide=1, which scrubs their session instead of recording it.)
The devserver's health probe (``GET /?from=devserver.py`` from
``127.0.0.1``) is ignored: it is not real traffic and would otherwise be
logged as a crawler hit. The root-path and localhost checks prevent
remote visitors from hiding traffic with the same query string.
Returns the client hashes of any pending crawler hits flushed to persistent
storage, so callers can schedule async geoip and reverse-DNS enrichment.
"""
if request.headers.get("x-pagerite-preload"):
# Idle-time page-cache warm-up by pagerite.js, not a page view: the
# ping sent when the user actually navigates does the counting.
# (Forging the header only hides a GET from the crawler stats; the
# path-based abuse classification is unaffected.)
return []
if (
path == ""
and str(request.url.query) == "from=devserver.py"
and _client_ip(request) == "127.0.0.1"
):
return []
own_origin = f"https://{urlparse(str(request.base_url)).netloc}"
full_path = f"{request.url.path}{_query_suffix(request)}"
return analytics_store.track_entry(
request.headers.get("referer", ""),
own_origin,
_client_ip(request),
request.headers.get("user-agent", ""),
full_path,
request.headers.get("accept-language", ""),
status=status,
)
def _http_date(dt: datetime) -> str:
"""RFC 7231 date for the Last-Modified header."""
return format_datetime(dt.astimezone(UTC), usegmt=True)
@@ -510,6 +909,15 @@ def _is_reserved(path: str) -> bool:
return any(not _SLUG_RE.match(seg) for seg in path.split("/"))
def _is_trackable_path(path: str) -> bool:
"""Content URLs only: skip auth endpoints and reserved/machinery paths."""
if not path:
return True
if path == "auth" or path.startswith("auth/"):
return False
return not _is_reserved(path)
def _check_reserved(path: str) -> None:
"""Reject paths that do not follow the slug charset."""
if _is_reserved(path):
@@ -519,6 +927,25 @@ def _check_reserved(path: str) -> None:
)
@app.websocket("/_api/ws/analytics")
async def analytics_websocket(ws: WebSocket) -> None:
"""Stream the analytics snapshot, then push updates as they happen.
Admin-only via the /_api forward-auth gate, like every management
endpoint. Powers the analytics viewer rendered at /_a.
"""
await ws.accept()
await ws.send_text(msgspec.json.encode(analytics_store.data).decode())
_analytics_ws_clients.add(ws)
try:
while True:
await ws.receive_text()
except Exception:
pass
finally:
_analytics_ws_clients.discard(ws)
@app.websocket("/_api/ws/editor")
async def editor_ws(ws: WebSocket) -> None:
"""Editor session: open pages, render previews, save — over one socket.
@@ -670,22 +1097,108 @@ async def front_page(request: Request) -> Response:
return await show_page(request, "")
@app.get("/sitemap.xml")
async def sitemap(request: Request) -> Response:
"""Dynamically generate a sitemap of all published article pages."""
base = str(request.base_url).rstrip("/")
entries: list[tuple[str, datetime, int]] = []
def walk(
nodes: dict[str, Node], prefix: str, parent_has_content: bool = True
) -> None:
first_content_slug = next(
(
slug
for slug, node in sorted_nodes(nodes)
if node.published and node.content is not None
),
None,
)
for slug, node in sorted_nodes(nodes):
path = f"{prefix}/{slug}" if prefix else slug
depth = path.count("/") if path else 0
if (
not parent_has_content
and slug == first_content_slug
and node.published
and node.content is not None
and depth > 0
):
depth -= 1
if node.published and node.content is not None:
entries.append((path, node.modified, depth))
if node.children:
walk(node.children, path, node.content is not None)
walk(data.menu, "")
def priority(depth: int) -> float:
return max(0.1, 1.0 - depth * 0.2)
lines = [
'<?xml version="1.0" encoding="UTF-8"?>',
'<urlset xmlns="http://www.sitemaps.org/schemas/sitemap/0.9">',
]
for path, modified, depth in entries:
loc = xml_escape(f"{base}/{path}" if path else base)
lastmod = (
modified.astimezone(UTC).replace(microsecond=0).isoformat().replace("+00:00", "Z")
)
lines.append(
f" <url>"
f"<loc>{loc}</loc>"
f"<lastmod>{lastmod}</lastmod>"
f"<priority>{priority(depth):.1f}</priority>"
f"</url>"
)
lines.append("</urlset>")
return Response(
"\n".join(lines),
media_type="application/xml",
headers={"cache-control": "no-cache"},
)
@app.get("/robots.txt")
async def robots_txt(request: Request) -> Response:
"""Allow all crawling and point crawlers at the sitemap."""
base = str(request.base_url).rstrip("/")
body = f"User-agent: *\nAllow: /\nSitemap: {base}/sitemap.xml\n"
return Response(
body,
media_type="text/plain",
headers={"cache-control": "no-cache"},
)
# Vue build asset routes are inserted at this position during load(): the
# build mirrors the URL space (/_assets/*, /favicon.ico at the root).
frontend.route(app, "/")
@app.get("/{path:path}", response_model=None)
async def show_page(request: Request, path: str) -> HTMLResponse | Response:
async def show_page(request: Request, path: str) -> Response:
"""Render the content page at a slug path, or 404.
A node without content is a category label: its URL renders a
placeholder page (nav links point straight at its first child).
"""
path = path.strip("/")
ua = request.headers.get("user-agent", "")
accept_language = request.headers.get("accept-language", "")
if path and _is_reserved(path):
# Invalid slug shape: not a content URL, let FastAPI return its
# built-in 404 instead of rendering an editable article page.
# Scanner telltales (dotpaths like /.env, *.php) classify the IP
# as abuse in analytics.
client_hash = analytics_store.track_404(
_client_ip(request),
ua,
f"/{path}{_query_suffix(request)}",
accept_language,
)
asyncio.create_task(_enrich_client(client_hash))
raise HTTPException(404)
chain = resolve(data.menu, path)
node = chain[-1] if chain else None
@@ -699,8 +1212,13 @@ async def show_page(request: Request, path: str) -> HTMLResponse | Response:
etag = f'"{path}@{node.modified.timestamp()}v{data.version}"'
if request.headers.get("if-none-match") == etag:
return Response(status_code=304)
return HTMLResponse(
views.render_page(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html),
if _is_trackable_path(path):
flushed = _track_entry(path, request)
_schedule_client_enrichment(flushed)
return _html_response(
request,
"page",
path,
headers={
"etag": etag,
"last-modified": _http_date(node.modified),
@@ -710,8 +1228,13 @@ async def show_page(request: Request, path: str) -> HTMLResponse | Response:
if node is not None and node.published and node.content is None:
# Category label without a landing page: placeholder with the pen
# to create it (404 — no page here, but the node is real).
return HTMLResponse(
views.render_category(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html),
if _is_trackable_path(path):
flushed = _track_entry(path, request, status=404)
_schedule_client_enrichment(flushed)
return _html_response(
request,
"category",
path,
404,
headers={
"last-modified": _http_date(node.modified),
@@ -724,4 +1247,14 @@ async def show_page(request: Request, path: str) -> HTMLResponse | Response:
for slug, item in sorted_nodes(data.menu):
if item.published:
return RedirectResponse(f"/{slug}")
return HTMLResponse(views.render_not_found(data.menu, path, data.brand, data.custom_css, data.theme, data.favicon, data.brand_html), 404)
if _is_trackable_path(path):
client_hash = analytics_store.track_404(
_client_ip(request),
ua,
f"/{path}{_query_suffix(request)}",
accept_language,
)
asyncio.create_task(_enrich_client(client_hash))
flushed = _track_entry(path, request, status=404)
_schedule_client_enrichment(flushed)
return _html_response(request, "not-found", path, 404)
+6
View File
@@ -100,6 +100,12 @@ class Data(msgspec.Struct):
#: Favicon: name of a file in `files` (content-addressed), linked as
#: <link rel="icon"> on every page. Empty = the build's /favicon.ico.
favicon: str = ""
#: Public origin (scheme + host) of the site, learned from admin
#: browsers (POST /_api/site-url — location.origin is correct even
#: behind reverse proxies, unlike request Host headers). Used for
#: absolute social/canonical URLs; empty = fall back to the request's
#: own base URL.
site_url: str = ""
#: Legacy flat page store (pre-tree databases); migrated into `menu`
#: on startup, then cleared. Never written otherwise.
pages: dict[str, Page] = {}
+5 -3
View File
@@ -29,6 +29,7 @@ Where to go next:
- The [docs](/docs/editing) section explains how to edit this site and shows every supported Markdown feature, source and result side by side.
- The [showcase](/showcase/gallery) section shows what finished pages can look like: image positioning, banners, a long read.
- Click the 🖊️ pen on any page to open the editor, and the ⚙️ pen for site settings and the structure tree.
- Elsewhere on the web: [![xkcd 927: Standards](https://imgs.xkcd.com/comics/standards.png "xkcd 927: Standards"){width=240}](https://xkcd.com/927/) — a cautionary tale about adding one more standard.
![Abstract waves](waves.svg "Generated SVG artwork, attached to this page"){width=420}
@@ -68,15 +69,15 @@ Every feature below is shown twice: first the Markdown source, then how it rende
### A subsection
*Emphasis*, **strong**, ~~strikethrough~~, `inline code`, and a
[link to the front page](/). Plain URLs become links automatically:
https://example.com — and a hard line break
[link to the front page](/). An image that links to its page:
[![xkcd 1179: ISO 8601](https://imgs.xkcd.com/comics/iso_8601.png "xkcd 1179: ISO 8601"){width=240}](https://xkcd.com/1179/) — and a hard line break
is just a newline.
```
## A section heading
### A subsection
*Emphasis*, **strong**, ~~strikethrough~~, `inline code`, and a [link to the front page](/). Plain URLs become links automatically: https://example.com — and a hard line break
*Emphasis*, **strong**, ~~strikethrough~~, `inline code`, and a [link to the front page](/). An image that links to its page: [![xkcd 1179: ISO 8601](https://imgs.xkcd.com/comics/iso_8601.png "xkcd 1179: ISO 8601"){width=240}](https://xkcd.com/1179/) — and a hard line break
is just a newline.
## Lists and quotes
@@ -354,6 +355,7 @@ This site runs on **Pagerite**: FastAPI + html5tagger + kanta, with content writ
- [How to edit this site](/docs/editing)
- [Markdown features](/docs/markdown/basics)
- [The showcase](/showcase/gallery)
- [![xkcd 2347: Dependency](https://imgs.xkcd.com/comics/dependency.png "xkcd 2347: Dependency"){width=240}](https://xkcd.com/2347/) — a small comic about small dependencies
*Replace this page with whatever your site is about.*
"""
+277 -28
View File
@@ -15,8 +15,10 @@ own URL renders a placeholder page (render_category).
"""
from pathlib import Path
from html import unescape
import json
import os
import re
from html5tagger import HTML, Document, E, Template
@@ -108,56 +110,139 @@ def _editor_css_url(vite_url: str | None) -> str | None:
return None
def _inline_asset(url: str) -> str:
"""Read a served asset's content for inlining into the page (prod only).
Handles build assets (``/_assets/...`` from the Vite build) and theme
files (``/_themes/{name}/...`` from pagerite/themes/).
"""
if url.startswith("/_themes/"):
name, _, file = url.removeprefix("/_themes/").partition("/")
if _valid_name(name) and _valid_name(file):
return (THEMES / name / file).read_text()
raise ValueError(f"not a theme asset: {url}")
return (BUILD / url.lstrip("/")).read_text()
def _inline_script(url: str) -> str:
"""Read a built JS bundle for inlining (prod only).
Inline modules resolve relative imports against the document URL, not
the bundle's directory, so rewrite the build's relative chunk
specifiers ("./chunk.js") to absolute /_assets/ paths.
"""
js = _inline_asset(url)
for chunk in _manifest().values():
file = chunk.get("file", "")
if file.endswith(".js"):
js = js.replace(f'"./{file.rsplit("/", 1)[-1]}"', f'"/{file}"')
return js
def _layout(
modules: list[str] = (),
stylesheets: list[str] = (),
custom_css: str = "",
theme: str = "",
banner_design: str = "",
favicon: str = "",
social: dict[str, str] | None = None,
) -> Template:
"""Page layout template with standard asset URLs and ES-module scripts.
"""Page layout template with standard assets and ES-module scripts.
Stylesheets use ``blocking="render"`` so the browser waits for them before
showing the page, avoiding a flash of unstyled content. Order matters and
is fixed: base (Vite build, absent in dev where Vite injects it from JS),
theme and banner design (backend-served from pagerite/themes/), then the
user's custom CSS last so it always wins.
In dev (PAGERITE_VITE_URL set) assets are linked from the Vite dev
server and stylesheets use ``blocking="render"`` so the browser waits
for them before showing the page, avoiding a flash of unstyled content.
In production all page assets are inlined into the document: stylesheets
become ``<style>`` elements and module scripts inline ``<script>``s, so
a page loads with no asset round trips. The on-demand bundles (editor,
analytics) stay external in both modes.
Order matters and is fixed: base (Vite build, absent in dev where Vite
injects it from JS), theme and banner design (from pagerite/themes/),
entry-specific stylesheets (e.g. overlayscrollbars.css), then the user's
custom CSS last so it always wins.
In dev, pagerite.js re-appends the backend-rendered theme/design links
(and the custom CSS) after the Vite-injected base styles, keeping this
order intact.
``social`` maps meta keys to contents: ``og:*``/``article:*`` go out as
property attributes, everything else (description, twitter:*) as name.
"""
doc = Document(E.Title, lang="en")
# Responsive layout (see the 48rem breakpoint in pagerite.css) needs
# the real device width, not the default 980px layout viewport.
doc.meta(name="viewport", content="width=device-width, initial-scale=1")
for key, value in (social or {}).items():
if value:
if key.startswith(("og:", "article:")):
doc.meta(property=key, content=value)
elif key == "canonical":
doc.link(rel="canonical", href=value)
else:
doc.meta(name=key, content=value)
# A custom favicon (from the site editor) is linked explicitly; without
# one, browsers fall back to the build's /favicon.ico by convention.
if favicon:
doc.link(rel="icon", href=f"/_f/{favicon}", id="pagerite-favicon")
# Editor asset URLs for pagerite.js, which injects the 🖊️ edit pens
# itself once it has validated the session (pages render identically
# for everyone; editing is gated by the auth proxy in front of /_api).
script, editor_css = _editor_assets()
doc.meta(name="pagerite:editor-src", content=script[-1])
if editor_css:
doc.meta(name="pagerite:editor-css", content=editor_css)
# Stylesheet links carry stable ids so the site editor's hot swap can
# keep each sheet at its rendered position (see swapRegions).
# Asset URLs for the on-demand bundles (editor, analytics) for
# pagerite.js, which injects the 🖊️ edit pens itself once it has
# validated the session (pages render identically for everyone; editing
# is gated by the auth proxy in front of /_api). Dev passes the Vite
# dev-server URLs as meta tags (Vite serves the modules and injects
# their CSS for hot reloads); production inlines all page assets and
# carries the on-demand URLs in one JSON script instead.
vite_url = os.environ.get("PAGERITE_VITE_URL")
editor_scripts, editor_css = _editor_assets()
config = {
"pagerite:editor-src": editor_scripts[-1],
"pagerite:analytics-src": _analytics_assets()[0][0],
}
if editor_css:
config["pagerite:editor-css"] = editor_css
if vite_url:
for key, value in config.items():
doc.meta(name=key, content=value)
else:
# Inert JSON script; URLs never contain "</", but stay safe.
doc.script(
HTML(json.dumps(config).replace("</", "<\\/")),
type="application/json",
id="pagerite-assets",
)
# Stylesheets carry stable ids so the fetch-navigation and the site
# editor's hot swap can sync <head> positionally (see swapdoc.js).
# Production inlines the CSS as <style> elements: one less round trip
# per sheet, and fetch-navigation can carry them across swaps whole.
sheets = [
("pagerite-base", _base_css_url(vite_url)),
("pagerite-theme", _theme_css_url(theme)),
("pagerite-banner", _banner_css_url(banner_design)),
]
for id_, url in sheets:
if url:
if not url:
continue
if vite_url:
doc.link(rel="stylesheet", href=url, blocking="render", id=id_)
else:
doc.style(HTML(_inline_asset(url)), id=id_)
for url in stylesheets:
if vite_url:
doc.link(rel="stylesheet", href=url, blocking="render")
else:
# Id from the file stem minus the content hash, so the head
# sync can match sheets across pages (e.g. the analytics sheet
# exists on /_a only and is added/removed on swaps).
stem = url.rsplit("/", 1)[-1].removesuffix(".css")
name = re.sub(r"-[A-Za-z0-9_-]{8}$", "", stem)
doc.style(HTML(_inline_asset(url)), id=f"pagerite-css-{name}")
for src in modules:
doc.script(src=src, type="module")
if vite_url:
doc.script(src=src, type="module")
if custom_css.strip():
doc.style(custom_css, id="pagerite-user")
return Template(
body = (
doc
.header(
E.div(E.Banner, id="page-banner"),
@@ -170,8 +255,23 @@ def _layout(
E.main(E.Main, id="main"),
id="content",
)
.footer(None), # kept empty for now; zero-height (see pagerite.css)
.footer(None) # kept empty for now; zero-height (see pagerite.css)
)
if not vite_url:
# Inline the bundles at the end of the body: module scripts are
# deferred anyway, and the page can render before they execute.
# Escape "</script" so it cannot terminate the element early (only
# ever occurs inside string literals, where the backslash escape is
# a no-op).
for src in modules:
js = re.sub(r"</script", r"<\\/script", _inline_script(src), flags=re.I)
# Stable id from the file stem minus the content hash; the
# analytics page's script (pagerite-js-analytics) is found and
# re-created by pagerite.js on fetch-navigations to /_a.
stem = src.rsplit("/", 1)[-1].removesuffix(".js")
name = re.sub(r"-[A-Za-z0-9_-]{8}$", "", stem)
body.script(HTML(js), type="module", id=f"pagerite-js-{name}")
return Template(body)
def _brand_link(brand: str, brand_html: str = "") -> HTML:
@@ -426,6 +526,87 @@ def page_content(menu: dict[str, Node], path: str) -> HTML:
return HTML(str(doc))
_FIRST_P = re.compile(r"<p[^>]*>(.*?)</p>", re.S)
_TAG = re.compile(r"<[^>]+>")
_IMG_TAG = re.compile(r"<img\b[^>]*>")
_VIDEO_TAG = re.compile(r"<video\b[^>]*>")
_ATTR_SRC = re.compile(r'src="([^"]+)"')
_ATTR_CLASS = re.compile(r'class="([^"]*)"')
def _share_media(html: str, base_url: str) -> tuple[str, str]:
"""(image, video) share URLs from the rendered article.
Image preference: an image with class "hero" (author override, may
appear anywhere in the article), then the first raster image (SVGs
rasterize poorly or not at all on many social scrapers), then the
first SVG. Video: the first <video> — og:video is in the OGP spec and
honored mainly by Facebook; X/Twitter ignores it. Absolute URLs are
built from the request base, scrapers cannot use relative ones.
"""
if not base_url:
return "", ""
def absolute(src: str) -> str:
src = unescape(src)
return src if src.startswith(("http://", "https://")) else f"{base_url}{src}"
hero = raster = svg = video = ""
for tag in _IMG_TAG.findall(html):
if not (src := _ATTR_SRC.search(tag)):
continue
src = src.group(1)
cls = _ATTR_CLASS.search(tag)
if cls and "hero" in cls.group(1).split():
hero = src
break
if src.lower().split("?")[0].endswith(".svg"):
svg = svg or src
else:
raster = raster or src
# Keep scanning: a later hero still wins.
for tag in _VIDEO_TAG.findall(html):
if m := _ATTR_SRC.search(tag):
video = m.group(1)
break
image = hero or raster or svg
return (absolute(image) if image else "", absolute(video) if video else "")
def _social_meta(
node: Node, path: str, title: str, html: str, brand: str, base_url: str,
) -> dict[str, str]:
"""Open Graph/Twitter/SEO meta tags for a content page.
Heuristics over the rendered article: the description is the first
paragraph's text (truncated at ~200 chars on a word boundary), the
share image the article's first <img> — authors lead with their most
representative figure. Absolute URLs are built from the request's base
(social scrapers cannot use relative ones).
"""
url = f"{base_url}/{path}" if base_url else ""
m = _FIRST_P.search(html)
text = unescape(_TAG.sub("", m.group(1) if m else ""))
text = " ".join(text.split())
if len(text) > 200:
text = text[:200].rsplit(" ", 1)[0] + ""
image, video = _share_media(html, base_url)
return {
"description": text,
"canonical": url,
"og:type": "article",
"og:title": title,
"og:description": text,
"og:url": url,
"og:site_name": brand,
"og:image": image,
"og:video": video,
"article:published_time": node.created.isoformat(),
"article:modified_time": node.modified.isoformat(),
"twitter:card": "summary_large_image" if image else "summary",
}
def render_page(
menu: dict[str, Node],
path: str,
@@ -434,18 +615,24 @@ def render_page(
theme: str = "",
favicon: str = "",
brand_html: str = "",
base_url: str = "",
) -> str:
"""Render a full HTML page for the slug path."""
node = resolve(menu, path)[-1]
title = _title(path.rpartition("/")[2], node)
main = page_content(menu, path)
social = _social_meta(node, path, title, str(main), brand, base_url)
return str(
_layout(_page_assets(), custom_css, theme, banner_design(menu, path, theme), favicon)(
_layout(
*_page_assets(), custom_css, theme, banner_design(menu, path, theme),
favicon, social,
)(
Title=f"{title} {brand}" if brand else title,
Brand=_brand_link(brand, brand_html),
Nav=nav_html(menu, path),
Sidebar=sidebar_html(menu, path),
Banner=banner_html(menu, path, theme),
Main=page_content(menu, path),
Main=main,
),
)
@@ -476,7 +663,7 @@ def render_category(
else:
doc.p("This section has no page of its own yet.")
return str(
_layout(_page_assets(), custom_css, theme, banner_design(menu, path, theme), favicon)(
_layout(*_page_assets(), custom_css, theme, banner_design(menu, path, theme), favicon)(
Title=f"{title} {brand}" if brand else title,
Brand=_brand_link(brand, brand_html),
Nav=nav_html(menu, path),
@@ -502,7 +689,7 @@ def render_not_found(
doc.h1("Not Found")
doc.p(f"No article at /{path}. If there was before, it may have been deleted.")
return str(
_layout(_page_assets(), custom_css, theme, banner_design(menu, path, theme), favicon)(
_layout(*_page_assets(), custom_css, theme, banner_design(menu, path, theme), favicon)(
Title=f"Not Found {brand}" if brand else "Not Found",
Brand=_brand_link(brand, brand_html),
Nav=nav_html(menu, path),
@@ -513,19 +700,23 @@ def render_not_found(
)
def _page_assets() -> list[str]:
"""Script URLs for public pages (pagerite entry).
def _page_assets() -> tuple[list[str], list[str]]:
"""Script and stylesheet URLs for public pages (pagerite entry).
Dev mode loads the entry from the Vite dev server; production uses
the Vite build manifest to resolve the hashed asset names.
the Vite build manifest to resolve the hashed asset names. CSS imported
by the entry (e.g. overlayscrollbars.css) is extracted by Vite and must
be linked separately.
"""
vite_url = os.environ.get("PAGERITE_VITE_URL")
if vite_url:
return [f"{vite_url}/src/pagerite.js"]
return [f"{vite_url}/src/pagerite.js"], []
if "page" not in _asset_cache:
manifest = _manifest()
entry = manifest["src/pagerite.js"]
_asset_cache["page"] = [f"/{entry['file']}"]
scripts = [f"/{entry['file']}"]
stylesheets = [f"/{css}" for css in entry.get("css", [])]
_asset_cache["page"] = scripts, stylesheets
return _asset_cache["page"]
@@ -543,3 +734,61 @@ def _editor_assets() -> tuple[list[str], str | None]:
entry = manifest["src/main.js"]
_asset_cache["editor"] = [f"/{entry['file']}"], _editor_css_url(None)
return _asset_cache["editor"]
def _analytics_assets() -> tuple[list[str], list[str]]:
"""Script and stylesheet URLs for the analytics page entry."""
vite_url = os.environ.get("PAGERITE_VITE_URL")
if vite_url:
return [f"{vite_url}/src/analytics-main.js"], []
if "analytics" not in _asset_cache:
manifest = _manifest()
entry = manifest["src/analytics-main.js"]
scripts = [f"/{entry['file']}"]
stylesheets = [f"/{css}" for css in entry.get("css", [])]
_asset_cache["analytics"] = scripts, stylesheets
return _asset_cache["analytics"]
def render_analytics(
menu: dict[str, Node],
brand: str = SITE_NAME,
custom_css: str = "",
theme: str = "",
favicon: str = "",
brand_html: str = "",
) -> str:
"""Render the analytics viewer as a normal page at /_a.
The analytics entry is inlined into this page only (prod) or loaded
from the Vite dev server (dev); its stylesheet rides along in <head>
so fetch-navigations can sync it into the live document. The initial
range is not rendered in: the client takes it from the URL hash or
derives it from the analytics data itself.
"""
page_scripts, page_stylesheets = _page_assets()
analytics_scripts, analytics_stylesheets = _analytics_assets()
scripts = page_scripts + analytics_scripts
stylesheets = page_stylesheets + analytics_stylesheets
doc = E.article
with doc:
# .wide: the dashboard breaks out of the article column to the full
# viewport width, like wide figures (see the .wide rules).
doc.div(id="analytics-app", class_="wide")
return str(
_layout(
scripts,
stylesheets,
custom_css,
theme,
banner_design(menu, "_a", theme),
favicon,
)(
Title=f"Analytics {brand}" if brand else "Analytics",
Brand=_brand_link(brand, brand_html),
Nav=nav_html(menu, "_a"),
Sidebar=sidebar_html(menu, "_a"),
Banner=banner_html(menu, "_a", theme),
Main=HTML(str(doc)),
),
)
+5 -3
View File
@@ -20,10 +20,14 @@ dependencies = [
"fastapi-vue>=1.3.1",
"fastapi[standard]>=0.141.1",
"html5tagger>=2.0.0",
"httpx>=0.28.1",
"kanta>=0.8.1",
"markdown-it-py>=4.2.0",
"maxminddb>=3.1.1",
"mdit-py-plugins>=0.6.1",
"pygments>=2.20.0",
"ua-parser>=1.0.2",
"zstandard>=0.25.0",
]
[project.scripts]
@@ -33,9 +37,7 @@ pagerite = "pagerite.__main__:main"
Repository = "https://git.zi.fi/LeoVasanko/pagerite"
[dependency-groups]
dev = [
"httpx>=0.28.1",
]
dev = []
[tool.hatch.version]
source = "vcs"
+2 -2
View File
@@ -19,8 +19,8 @@ from devutil import (
setup_vite,
)
DEFAULT_VITE_PORT = 3100
DEFAULT_DEV_PORT = 3200
DEFAULT_VITE_PORT = 8200
DEFAULT_DEV_PORT = 8210
HEALTH = "/?from=devserver.py"
+941
View File
@@ -0,0 +1,941 @@
#!/usr/bin/env -S uv run --script
# /// script
# requires-python = ">=3.14"
# dependencies = [
# "httpx>=0.28.1",
# "playwright>=1.45.0",
# ]
# ///
"""Generate fake browser visits, crawler hits, and abuse scans for a Pagerite site.
Browser sessions (ordinary users) come from realistic residential IPv4 and IPv6
addresses and stay mostly stable; an IPv6 host part may rotate once mid-session,
and an IPv4 session may switch to another residential address. Crawler hits come
from datacenter IPs, with each crawler profile paired to a matching provider IP
when possible. Abuse scanners fire bursts of vulnerability probes from pinned
datacenter IPs.
Run against a local dev server, e.g.:
uv run scripts/fake_traffic.py http://localhost:3200
Repeat whenever you want more traffic; each run appends new events to the
site's analytics file.
"""
from __future__ import annotations
import argparse
import logging
import random
import sys
import time
from collections.abc import Sequence
from dataclasses import dataclass
from datetime import UTC, datetime
from typing import Any
from urllib.parse import urlencode, urljoin, urlparse
import httpx
logging.basicConfig(level=logging.INFO, format="%(message)s")
logger = logging.getLogger("fake-traffic")
@dataclass(frozen=True)
class BrowserProfile:
name: str
user_agent: str
accept_language: str
viewport: tuple[int, int]
@dataclass(frozen=True)
class CrawlerProfile:
name: str
user_agent: str
ip: str
BROWSER_PROFILES: list[BrowserProfile] = [
BrowserProfile(
"chrome-desktop",
"Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 "
"(KHTML, like Gecko) Chrome/128.0.0.0 Safari/537.36",
"en-US,en;q=0.9",
(1366, 768),
),
BrowserProfile(
"safari-desktop",
"Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7) AppleWebKit/605.1.15 "
"(KHTML, like Gecko) Version/17.5 Safari/605.1.15",
"en-GB,en;q=0.9",
(1440, 900),
),
BrowserProfile(
"firefox-desktop",
"Mozilla/5.0 (X11; Linux x86_64; rv:130.0) Gecko/20100101 Firefox/130.0",
"en-CA,en;q=0.8,fr;q=0.5",
(1920, 1080),
),
BrowserProfile(
"chrome-mobile",
"Mozilla/5.0 (Linux; Android 14; SM-S918B) AppleWebKit/537.36 "
"(KHTML, like Gecko) Chrome/128.0.0.0 Mobile Safari/537.36",
"es-ES,es;q=0.9",
(390, 844),
),
]
CRAWLER_PROFILES: list[CrawlerProfile] = [
CrawlerProfile(
"googlebot",
"Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; Googlebot/2.1; +http://www.google.com/bot.html) Chrome/128.0.0.0 Safari/537.36",
"66.249.64.66", # US, Google
),
CrawlerProfile(
"bingbot",
"Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; bingbot/2.0; +http://www.bing.com/bingbot.htm) Chrome/128.0.0.0 Safari/537.36",
"40.77.167.0", # US, Microsoft
),
CrawlerProfile(
"duckduckbot",
"DuckDuckBot/1.1; (+http://duckduckgo.com/duckduckbot.html)",
"95.217.0.1", # Germany, Hetzner VPS
),
CrawlerProfile(
"curl",
"curl/8.5.0",
"139.162.0.1", # Singapore, Linode VPS
),
]
# Residential IPv4 addresses and IPv6 /64 prefixes used for ordinary browser
# sessions. IPv6 entries keep the network part stable and randomise only the
# host part; the host may rotate once mid-session.
RESIDENTIAL_SOURCE_IPS: list[str] = [
# Residential IPv4
"91.154.140.209", # Finland, Elisa
"84.143.145.207", # Germany, Deutsche Telekom
"220.165.255.254", # China, Chinanet / China Telecom
"84.235.83.162", # Saudi Arabia, SaudiNet / STC
# Residential IPv6 /64 prefixes
"2a02:8109:ac82:6f0c::/64", # Germany, Deutsche Telekom
"240e:45d:1e60:5b0::/64", # China, China Telecom
"2409:8904:6720:4123::/64", # China, China Unicom
]
# Concrete datacenter IPs used for abuse scanner bursts. They stay pinned for
# the whole scan burst.
# Index 0 randomises its UA per request, index 1 uses a fixed browser UA,
# and index 2 uses a fixed crawler UA.
ABUSE_SOURCE_IPS: list[str] = [
"45.63.0.12", # US, Vultr VPS
"138.197.0.89", # US, DigitalOcean / Cloudways
"2a01:4f8:0:2::1234", # Germany, Hetzner VPS
]
# Paths commonly probed by attackers looking for exposed config, admin panels,
# version control, credentials, backups, or debug endpoints.
SUSPICIOUS_PATHS: list[str] = [
"/.env",
"/env",
"/.env.local",
"/env.development",
"/config",
"/config.json",
"/config.yaml",
"/config.yml",
"/configuration.json",
"/configuration.yaml",
"/configuration.yml",
"/settings.json",
"/settings.yaml",
"/settings.yml",
"/app.config",
"/appsettings.json",
"/appsettings.Development.json",
"/credentials",
"/credentials.json",
"/secrets",
"/secrets.json",
"/.aws/credentials",
"/.ssh/id_rsa",
"/id_rsa",
"/id_rsa.pub",
"/known_hosts",
"/sftp-config.json",
"/admin",
"/administrator",
"/adminer.php",
"/login",
"/signin",
"/auth/login",
"/api/login",
"/api/.env",
"/api/config",
"/api/v1/config",
"/api/v2/config",
"/webhook",
"/webhooks",
"/callback",
"/proxy",
"/image",
"/images",
"/preview",
"/download",
"/downloads",
"/log",
"/logs",
"/debug",
"/trace",
"/phpinfo.php",
"/info.php",
"/phpmyadmin",
"/pma",
"/myadmin",
"/phpMyAdmin",
"/wp-admin",
"/wp-login.php",
"/wp-config.php",
"/xmlrpc.php",
"/wp-json/wp/v2/users",
"/.git/config",
"/.git/HEAD",
"/git/config",
"/swagger-ui.html",
"/v2/api-docs",
"/actuator/env",
"/actuator/health",
"/actuator/configprops",
"/server-status",
"/.htaccess",
"/web.config",
"/package.json",
"/composer.json",
"/vendor/autoload.php",
"/docker-compose.yml",
"/Dockerfile",
"/manage",
"/console",
"/manager",
"/manager/html",
"/metrics",
"/prometheus",
"/healthz",
"/_api",
"/api",
"/api/v1/",
"/api/v2/",
"/graphql",
"/query",
"/feed",
"/rss",
"/_debug",
"/test",
"/testing",
"/tmp",
"/temp",
"/backup",
"/backups",
"/dump",
"/dumps",
"/sql",
"/db",
"/database",
"/dump.sql",
"/backup.sql",
"/db.sql",
"/backup.zip",
"/backup.tar.gz",
"/site.zip",
"/site.tar.gz",
"/source.zip",
"/src.zip",
"/upload",
"/uploads",
"/import",
"/export",
"/token",
"/tokens",
"/oauth",
"/oauth2",
"/openid",
"/jwks",
"/keys",
"/key",
"/private",
"/public",
]
# Realistic external referers. Most sessions arrive with a generic referer;
# a subset carries matching UTM tags on the landing URL.
PLAIN_REFERRERS: list[str] = [
"https://example.com/",
"https://somedomain.com/",
"https://another-site.org/",
"https://friend-site.net/",
]
# (referer origin, utm parameter dict) pairs used for tagged traffic.
TAGGED_REFERRERS: list[tuple[str, dict[str, str]]] = [
("https://chatgpt.com/", {"utm_source": "chatgpt.com"}),
("https://www.google.com/", {"utm_source": "google", "utm_medium": "organic"}),
("https://twitter.com/", {"utm_source": "twitter", "utm_medium": "social"}),
("https://www.linkedin.com/", {"utm_source": "linkedin", "utm_medium": "social"}),
("https://github.com/", {"utm_source": "github", "utm_medium": "referral"}),
("https://news.ycombinator.com/", {"utm_source": "hackernews", "utm_medium": "referral"}),
("https://www.reddit.com/", {"utm_source": "reddit", "utm_medium": "social"}),
("https://medium.com/", {"utm_source": "medium", "utm_medium": "referral"}),
("https://www.producthunt.com/", {"utm_source": "producthunt", "utm_medium": "referral"}),
]
# Fraction of referered sessions that also carry UTM tags.
UTM_RATE = 0.25
# Innocent-looking paths that do not exist on a Pagerite site. Hitting many of
# these from a single IP is itself a telltale of a spray-and-pray scanner.
NORMAL_404_PATHS: list[str] = [
"/about",
"/about-us",
"/services",
"/products",
"/contact",
"/contact-us",
"/team",
"/careers",
"/jobs",
"/pricing",
"/features",
"/demo",
"/trial",
"/docs",
"/documentation",
"/api-docs",
"/support",
"/help",
"/faq",
"/knowledge-base",
"/terms",
"/terms-of-service",
"/privacy",
"/privacy-policy",
"/legal",
"/blog",
"/news",
"/articles",
"/press",
"/events",
"/webinars",
"/podcast",
"/videos",
"/resources",
"/whitepapers",
"/case-studies",
"/customers",
"/clients",
"/testimonials",
"/reviews",
"/partners",
"/integrations",
"/api-reference",
"/developers",
"/status",
"/security",
"/trust",
"/compliance",
"/gdpr",
"/ccpa",
"/sitemap",
"/archive",
"/tags",
"/categories",
"/search",
"/users",
"/accounts",
"/dashboard",
"/profile",
"/settings",
"/preferences",
"/notifications",
"/messages",
"/inbox",
"/calendar",
"/reports",
"/analytics",
"/billing",
"/invoice",
"/orders",
"/cart",
"/checkout",
"/store",
"/shop",
"/home",
"/main",
"/start",
"/welcome",
"/intro",
"/overview",
"/summary",
"/portfolio",
"/projects",
"/work",
"/solutions",
]
ABUSE_USER_AGENTS: list[str] = [
# Desktop browsers
"Mozilla/5.0 (Windows NT 10.0; Win64; x64) AppleWebKit/537.36 "
"(KHTML, like Gecko) Chrome/128.0.0.0 Safari/537.36",
"Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7) AppleWebKit/605.1.15 "
"(KHTML, like Gecko) Version/17.5 Safari/605.1.15",
"Mozilla/5.0 (X11; Linux x86_64; rv:130.0) Gecko/20100101 Firefox/130.0",
"Mozilla/5.0 (Windows NT 10.0; Win64; x64; rv:130.0) Gecko/20100101 Firefox/130.0",
"Mozilla/5.0 (Linux; Android 14; SM-S918B) AppleWebKit/537.36 "
"(KHTML, like Gecko) Chrome/128.0.0.0 Mobile Safari/537.36",
"Mozilla/5.0 (iPhone; CPU iPhone OS 17_5 like Mac OS X) AppleWebKit/605.1.15 "
"(KHTML, like Gecko) Version/17.5 Mobile/15E148 Safari/604.1",
# Well-known crawlers / bots
"Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; Googlebot/2.1; "
"+http://www.google.com/bot.html) Chrome/128.0.0.0 Safari/537.36",
"Mozilla/5.0 AppleWebKit/537.36 (KHTML, like Gecko; compatible; bingbot/2.0; "
"+http://www.bing.com/bingbot.htm) Chrome/128.0.0.0 Safari/537.36",
"Mozilla/5.0 (compatible; DuckDuckBot/1.1; +http://duckduckgo.com/duckduckbot.html)",
"Mozilla/5.0 (compatible; Baiduspider/2.0; +http://www.baidu.com/search/spider.html)",
"Mozilla/5.0 (Linux; Android 6.0.1; Nexus 5X Build/MMB29P) AppleWebKit/537.36 "
"(KHTML, like Gecko) Chrome/128.0.0.0 Mobile Safari/537.36 "
"(compatible; Googlebot/2.1; +http://www.google.com/bot.html)",
"Mozilla/5.0 (compatible; YandexBot/3.0; +http://yandex.com/bots)",
"Mozilla/5.0 (compatible; DotBot/1.2; +https://opensiteexplorer.org/dotbot; help@moz.com)",
"Mozilla/5.0 (compatible; SemrushBot/7~bl; +http://www.semrush.com/bot.html)",
"Mozilla/5.0 (compatible; AhrefsBot/7.0; +http://ahrefs.com/robot/)",
# Social / service fetchers
"facebookexternalhit/1.1 (+http://www.facebook.com/externalhit_uatext.php)",
"Twitterbot/1.0",
"LinkedInBot/1.0 (compatible; Mozilla/5.0; Apache-HttpClient +http://www.linkedin.com)",
"Slackbot-LinkExpanding 1.0 (+https://api.slack.com/robots)",
"WhatsApp/2.23.20.0",
# Command-line / library clients
"curl/8.5.0",
"Wget/1.21.4 (linux-gnu)",
"python-requests/2.32.3",
"Go-http-client/1.1",
"Node.js/20.5.1",
]
def _random_ipv6_host(prefix: str) -> str:
"""Return a concrete address within an IPv6 /64 prefix.
The host part is generated randomly, mimicking a fresh OS privacy address.
The input prefix must end in ``::/64`` (e.g. ``2a02:8109:ac82:6f0c::/64``).
"""
if "/" not in prefix:
return prefix
base, mask = prefix.split("/")
if mask != "64":
raise ValueError(f"only /64 IPv6 prefixes are supported, got {prefix!r}")
if base.endswith("::"):
base = base[:-2]
host = ":".join(f"{random.randint(0, 0xffff):04x}" for _ in range(4))
return f"{base}:{host}"
def _concretize_ip(entry: str) -> str:
"""Return a concrete IP address; randomise the host part for IPv6 /64 prefixes."""
if ":" in entry and "/" in entry:
return _random_ipv6_host(entry)
return entry
class _SessionIP:
"""Stable IP for a browser session, with one optional mid-session rotation.
IPv6 prefixes get a fresh random host part; IPv4 addresses are swapped for
another address from the residential pool.
"""
def __init__(self, entry: str, pool: Sequence[str]):
self.entry = entry
self.pool = pool
self._value = _concretize_ip(entry)
def current(self) -> str:
return self._value
def rotate(self) -> None:
if ":" in self.entry and "/" in self.entry:
self._value = _random_ipv6_host(self.entry)
return
# IPv4: switch to another IPv4 address from the residential pool.
for _ in range(20):
candidate_entry = random.choice(self.pool)
if ":" in candidate_entry and "/" in candidate_entry:
continue
candidate = _concretize_ip(candidate_entry)
if candidate != self._value:
self._value = candidate
return
def _sleep(base: float, jitter: float) -> None:
time.sleep(max(0.0, base + random.uniform(-jitter, jitter)))
def _normalize_url(url: str) -> str:
"""Return a usable base URL, adding missing scheme/host/port parts.
- bare ``:PORT`` becomes ``http://localhost:PORT``
- missing scheme becomes ``http://``
- otherwise returned as-is
Raises ``ValueError`` when the result is not a valid http(s) URL.
"""
raw = url.strip()
if not raw:
raise ValueError("empty URL")
if raw.startswith(":"):
raw = f"http://localhost{raw}"
elif raw.isdigit():
raw = f"http://localhost:{raw}"
elif not raw.startswith(("http://", "https://")):
raw = f"http://{raw}"
parsed = urlparse(raw)
if parsed.scheme not in ("http", "https") or not parsed.netloc:
raise ValueError(f"invalid URL: {url!r}")
return raw
def _poisson_wait(rate: float) -> float:
"""Return an exponential inter-arrival time for the given Poisson rate."""
if rate <= 0:
return 0.0
return random.expovariate(rate)
def _collect_links(page: Any, include_external: bool = False) -> list[dict[str, Any]]:
"""Return links from the current page, excluding the current page.
Internal links stay on the site; external links are real https URLs found
in the page content and are marked with ``external: true``.
"""
return page.evaluate(
"""(includeExternal) => {
const loc = new URL(location.href);
const out = [];
for (const a of document.querySelectorAll('a[href]')) {
try {
const u = new URL(a.href);
const rect = a.getBoundingClientRect();
const item = {
href: a.href,
text: (a.innerText || a.title || '').trim().slice(0, 60),
visible: !!(rect.width && rect.height && rect.top < window.innerHeight && rect.bottom > 0),
};
if (u.origin === loc.origin
&& !u.pathname.startsWith('/_')
&& !u.pathname.startsWith('/auth')
&& u.pathname !== '/favicon.ico'
&& u.pathname !== loc.pathname) {
out.push(item);
} else if (includeExternal && u.protocol === 'https:' && u.origin !== loc.origin) {
out.push({ ...item, external: true });
}
} catch { /* ignore malformed hrefs */ }
}
return out;
}""",
include_external,
)
def _click_link(page: Any, link: dict[str, Any], timeout: float = 10.0) -> bool:
"""Click an internal link and wait for the client-side URL to change."""
start_url = page.url
try:
# Prefer Playwright's native click; fall back to a JS click if the
# locator cannot be resolved or times out.
try:
page.locator(f"a[href='{link['href']}']").first.click(timeout=2000)
except Exception: # noqa: BLE001
clicked = page.evaluate(
"""(href) => {
const a = Array.from(document.querySelectorAll('a[href]'))
.find(el => el.href === href);
if (a) { a.click(); return true; }
return false;
}""",
link["href"],
)
if not clicked:
return False
# Wait for the client-side navigation to update the URL.
deadline = time.time() + timeout
while time.time() < deadline:
if page.url != start_url:
return True
page.wait_for_timeout(100)
return False
except Exception as exc: # noqa: BLE001
logger.debug("click failed on %s: %s", link.get("href"), exc)
return False
def _run_browser_session(
base: str,
paths: Sequence[str],
profile: BrowserProfile,
session_index: int,
ip_entry: str,
) -> dict[str, Any]:
from playwright.sync_api import sync_playwright
MAX_CLICKS = 6
STAY = (2.0, 6.0)
HEADLESS = True
REFERER_RATE = 0.75
INCLUDE_EXTERNAL = True
ip_provider = _SessionIP(ip_entry, RESIDENTIAL_SOURCE_IPS)
ips_used: list[str] = [ip_provider.current()]
trail: list[str] = []
start_time = datetime.now(UTC)
try:
with sync_playwright() as p:
browser = p.chromium.launch(
headless=HEADLESS,
args=["--no-sandbox", "--disable-dev-shm-usage"],
)
extra_headers = {
"X-Forwarded-For": ip_provider.current(),
"Accept-Language": profile.accept_language,
}
# Most sessions arrive from an external origin; some are direct.
# A subset of referered sessions carries realistic UTM tags on the
# landing URL; the referer origin is paired with the UTM source.
tagged: dict[str, str] = {}
if random.random() < REFERER_RATE:
if random.random() < UTM_RATE:
referer, tagged = random.choice(TAGGED_REFERRERS)
else:
referer = random.choice(PLAIN_REFERRERS)
extra_headers["Referer"] = referer
context = browser.new_context(
user_agent=profile.user_agent,
viewport={"width": profile.viewport[0], "height": profile.viewport[1]},
extra_http_headers=extra_headers,
)
page = context.new_page()
# Update X-Forwarded-For per request; the value stays stable unless we
# explicitly rotate it once mid-session.
def _route_handler(route, request):
headers = dict(request.headers)
headers["X-Forwarded-For"] = ip_provider.current()
ips_used.append(headers["X-Forwarded-For"])
route.continue_(headers=headers)
page.route("**/*", _route_handler)
# Pick one point during the session to emulate an IP rotation.
rotate_at = random.randint(0, MAX_CLICKS - 1) if MAX_CLICKS > 0 else -1
entry = random.choice(paths) if paths else "/"
landing = urljoin(base, entry)
if tagged:
sep = "&" if "?" in landing else "?"
landing += sep + urlencode(tagged)
page.goto(landing, wait_until="networkidle")
trail.append(page.url)
for click_idx in range(MAX_CLICKS):
_sleep(random.uniform(*STAY) / 2, 0.3)
if click_idx == rotate_at:
ip_provider.rotate()
ips_used.append(ip_provider.current())
logger.debug("rotated session IP to %s", ip_provider.current())
links = _collect_links(page, INCLUDE_EXTERNAL)
visible = [item for item in links if item.get("visible")]
if not visible:
visible = links
if not visible:
break
link = random.choice(visible)
ok = _click_link(page, link)
if not ok:
# Retry once with any link (sometimes visible calc misses nav).
alt = random.choice(links) if links else None
if alt and alt is not link:
ok = _click_link(page, alt)
if not ok:
break
if link.get("external"):
# Outbound navigation: the analytics exit ping is already
# in flight. Record the external URL and end the session.
trail.append(page.url)
_sleep(0.5, 0.2)
break
page.wait_for_load_state("networkidle")
trail.append(page.url)
_sleep(random.uniform(*STAY), 0.5)
browser.close()
return {
"profile": profile.name,
"entry": entry,
"ip": ips_used[0],
"ips_seen": len(set(ips_used)),
"pages": len(trail),
"trail": [urlparse(u).path or "/" for u in trail],
"duration": (datetime.now(UTC) - start_time).total_seconds(),
}
except Exception as exc: # noqa: BLE001
logger.warning("browser session failed: %s", exc)
return {"profile": profile.name, "error": str(exc), "trail": trail}
def _run_crawler_hit(
base: str,
paths: Sequence[str],
profile: CrawlerProfile,
) -> dict[str, Any]:
path = random.choice(paths) if paths else "/"
url = urljoin(base, path)
fake_ip = profile.ip
headers = {
"User-Agent": profile.user_agent,
"X-Forwarded-For": fake_ip,
"Accept": "text/html,application/xhtml+xml,application/xml;q=0.9,*/*;q=0.8",
"Accept-Language": "en-US,en;q=0.5",
}
try:
with httpx.Client(follow_redirects=True, timeout=15.0) as client:
r = client.get(url, headers=headers)
return {
"profile": profile.name,
"path": path,
"status": r.status_code,
"ip": fake_ip,
}
except Exception as exc: # noqa: BLE001
return {"profile": profile.name, "path": path, "error": str(exc)}
def _abuse_ua() -> str:
"""Return a randomized, syntactically valid user agent for an abuse scan."""
return random.choice(ABUSE_USER_AGENTS)
def _run_abuse_scanner(base: str, ip_index: int) -> dict[str, Any]:
"""Fire a burst of vulnerability probes from a single fake IP.
Scanner 0 randomises its user agent every request, scanner 1 uses a fixed
browser UA, and scanner 2 uses a fixed crawler UA.
"""
ip_entry = ABUSE_SOURCE_IPS[ip_index % len(ABUSE_SOURCE_IPS)]
if ":" in ip_entry and "/" in ip_entry:
fake_ip = _random_ipv6_host(ip_entry)
else:
fake_ip = ip_entry
MIN_HITS = 15
MAX_HITS = 25
total_hits = random.randint(MIN_HITS, MAX_HITS)
# Ensure the burst contains both telltales: suspicious paths and more
# than ten normal-looking 404 paths.
suspicious_count = max(5, total_hits // 3)
normal_count = total_hits - suspicious_count
if normal_count < 11:
normal_count = 11
suspicious_count = max(3, total_hits - normal_count)
paths = random.choices(SUSPICIOUS_PATHS, k=suspicious_count) + random.choices(
NORMAL_404_PATHS, k=normal_count
)
random.shuffle(paths)
ua_mode = ip_index % 3
if ua_mode == 0:
get_ua = _abuse_ua
elif ua_mode == 1:
def get_ua() -> str:
return BROWSER_PROFILES[0].user_agent
else:
def get_ua() -> str:
return CRAWLER_PROFILES[0].user_agent
scan_results: list[dict[str, Any]] = []
with httpx.Client(follow_redirects=True, timeout=15.0) as client:
for path in paths:
headers = {
"User-Agent": get_ua(),
"X-Forwarded-For": fake_ip,
"Accept": "text/html,application/xhtml+xml,application/xml;q=0.9,*/*;q=0.8",
"Accept-Language": random.choice(
["en-US,en;q=0.9", "en-GB,en;q=0.8", "en;q=0.7"]
),
}
try:
r = client.get(urljoin(base, path), headers=headers)
scan_results.append(
{"path": path, "status": r.status_code, "ua": headers["User-Agent"]}
)
except Exception as exc: # noqa: BLE001
scan_results.append({"path": path, "error": str(exc)})
_sleep(0.15, 0.1)
return {
"scanner": ip_index + 1,
"ip": fake_ip,
"hits": len(scan_results),
"results": scan_results,
}
def _parse_args(argv: Sequence[str] | None) -> argparse.Namespace:
parser = argparse.ArgumentParser(
description="Generate fake traffic for a Pagerite site.",
formatter_class=argparse.ArgumentDefaultsHelpFormatter,
)
parser.add_argument(
"url",
nargs="?",
default="http://localhost:8200",
help="Base URL of the Pagerite site (default: http://localhost:8200). "
"A bare :PORT or PORT is treated as http://localhost:PORT; a "
"missing scheme defaults to http://.",
)
parser.add_argument(
"-t",
"--duration",
type=float,
default=60.0,
metavar="SECONDS",
help="Rough maximum time to generate traffic (0 runs one preset batch)",
)
parser.add_argument("-v", "--verbose", action="store_true", help="Debug logging")
return parser.parse_args(argv)
def main(argv: Sequence[str] | None = None) -> int:
args = _parse_args(argv)
if args.verbose:
logger.setLevel(logging.DEBUG)
try:
base = _normalize_url(args.url).rstrip("/")
except ValueError as exc:
logger.error("%s", exc)
return 2
# Discover content paths from the public page tree if we can.
paths: list[str] = []
try:
r = httpx.get(urljoin(base, "/_api/pages"), timeout=10.0)
if r.status_code == 200:
paths = [page["path"] for page in r.json() if page.get("has_content")]
except Exception as exc: # noqa: BLE001
logger.debug("could not fetch page list: %s", exc)
if not paths:
paths = ["/"]
logger.info(
"Generating fake traffic against %s (%d content paths, duration=%ss)",
base,
len(paths),
args.duration,
)
results: list[dict[str, Any]] = []
arrival_rate = 1.0
def _wait() -> None:
wait = _poisson_wait(arrival_rate)
logger.debug("waiting %.2fs before next session", wait)
time.sleep(wait)
if args.duration <= 0:
# One preset batch.
for i in range(5):
if i > 0:
_wait()
profile = random.choice(BROWSER_PROFILES)
ip_entry = random.choice(RESIDENTIAL_SOURCE_IPS)
logger.info(
"browser session: %s (ip=%s)",
profile.name,
_concretize_ip(ip_entry),
)
result = _run_browser_session(base, paths, profile, i, ip_entry)
results.append(result)
logger.debug(" trail: %s", result.get("trail", []))
for i in range(10):
if i > 0:
_wait()
profile = random.choice(CRAWLER_PROFILES)
logger.info(
"crawler hit: %s (ip=%s)",
profile.name,
profile.ip,
)
result = _run_crawler_hit(base, paths, profile)
results.append(result)
for i in range(3):
if i > 0:
_wait()
ip_entry = ABUSE_SOURCE_IPS[i % len(ABUSE_SOURCE_IPS)]
logger.info("abuse scanner: %s", ip_entry)
result = _run_abuse_scanner(base, i)
results.append(result)
logger.debug(
" hits: %s", [r.get("path") for r in result.get("results", [])]
)
else:
deadline = time.time() + args.duration
session_index = 0
while time.time() < deadline:
if session_index > 0:
_wait()
phase = session_index % 3
if phase == 0:
profile = random.choice(BROWSER_PROFILES)
ip_entry = random.choice(RESIDENTIAL_SOURCE_IPS)
logger.info(
"browser session: %s (ip=%s)",
profile.name,
_concretize_ip(ip_entry),
)
result = _run_browser_session(
base, paths, profile, session_index, ip_entry
)
logger.debug(" trail: %s", result.get("trail", []))
elif phase == 1:
profile = random.choice(CRAWLER_PROFILES)
logger.info(
"crawler hit: %s (ip=%s)",
profile.name,
profile.ip,
)
result = _run_crawler_hit(base, paths, profile)
else:
ip_entry = ABUSE_SOURCE_IPS[session_index % len(ABUSE_SOURCE_IPS)]
logger.info("abuse scanner: %s", ip_entry)
result = _run_abuse_scanner(base, session_index // 3)
logger.debug(
" hits: %s",
[r.get("path") for r in result.get("results", [])],
)
results.append(result)
session_index += 1
ok = sum(1 for r in results if "error" not in r)
logger.info("Done: %d/%d requests succeeded.", ok, len(results))
return 0 if ok == len(results) else 1
if __name__ == "__main__":
sys.exit(main())