kb-visualize — see the bundle as a graph
Render a bundle as an interactive force-directed graph of its concepts, so a
human can see its shape — hubs, clusters, orphans, and how concepts connect. You author the view from
a deterministic graph model, so it can adapt to the request (a whole-bundle map, or a subgraph around
one concept); it is not a fixed template.
1. Extract the graph model
Run the bundled extractor against the target bundle (default
). It is a zero-dependency
Node script (
);
is this skill's directory —
under
Claude Code, or whatever path your host exposes for the skill:
node "<skill-dir>/scripts/graph.mjs" <bundle-dir>
It prints JSON:
(including
, display metadata,
,
,
, derived
,
, derived
, structured
, attestation metadata,
,
, and
), the distinct
, and
. Backlinks (
) and
edges are already computed from the cross-links in concept bodies. If the user scoped the request to
one concept/area, filter the model to that node plus its neighbors.
The renderer MUST consume the model produced by this extractor invocation. Do not reuse a
previous run's cached graph JSON or a generator hard-coded to another cache filename. If the host
requires scratch files, overwrite one explicit model path, pass that same path to the renderer, and
remove it after verification.
Completion criterion: you have the graph model, and (if scoped) filtered it to the requested
subgraph.
2. Choose the output form by host capability
- Host renders interactive UI (e.g. Claude Desktop, Codex Desktop, an MCP-Apps host): render the
graph as native UI so it's live in the conversation.
- Host is text/artifact only (e.g. Claude Code, a terminal): write a self-contained HTML file
(single file, no backend, CDN libs only) next to the bundle or as an artifact, and give the user
the path.
If unsure whether the host renders UI, default to the HTML file — it works everywhere.
Completion criterion: the output form matches the host's capability.
3. Render the view
Whichever form, the view must show (mirroring a conformant OKF viewer):
- A force-directed graph: one node per concept, colored by , directed edges from
each cross-link. A layout the user can switch (e.g. cose / concentric / breadth-first / grid) is a
plus.
- A detail panel for the selected node: its frontmatter (, as a link,
, lifecycle/freshness, provenance, trust tier, and Attested Computation contract when
present) and its rendered markdown , with internal concept links rewired to navigate within
the view (select that node) rather than following a file path.
- A "Cited by" list per node, from (the reverse link graph).
- A search box (matches title, id, tags) and a type filter.
For the HTML form, a proven stack is Cytoscape.js (graph) + marked (markdown) from a CDN, with the
graph model inlined as a JSON literal so the file is self-contained and nothing leaves the page. All
node data is already in the model from step 1 — do not re-read the bundle.
Verify the output against the fresh model: node and edge counts match, and every concept added or
superseded in the current run appears by ID. A rendered file that merely exists is not sufficient.
Completion criterion: the rendered view shows the graph (colored by type), a working detail panel
with in-view link navigation, backlinks, search, and type filter; its node/edge counts and changed
concept IDs match the freshly extracted model.
4. Deliver
Hand over the result: for UI, the live view; for HTML, the file path (and note it can be committed
next to the bundle, shared as an artifact, or hosted on any static file server). This is a read-only
consumer — it never modifies the bundle, so no log entry.
Completion criterion: the user has the view or its path.