These were committed on main's local history but this worktree
branched from origin/main, which doesn't have them yet — copying the
files in so subagent-driven-development has a plan to read from this
branch.
server/lib/update-check.js's execGit() and two test helpers
(lanes-cli.test.js, update-check.test.js) shelled out to git with an
explicit `cwd` but no `env` override. A parent git hook process (this
repo's own .husky/pre-commit, which runs `npm run test:server`) sets
GIT_DIR/GIT_INDEX_FILE in its own environment; those leak to every
child process and take precedence over `cwd` for repo discovery, so
every git command these tests ran against their throwaway tmp repos
was silently redirected at the real repo running the hook instead —
reproduced firsthand as four foreign "init"/"fixture" commits
overwriting a worktree branch mid pre-commit run. Fixes it the same
way server/lib/worktree.js already documented and did for its own git
calls: strip the GIT_* vars before exec.
Deletes desktop/ (Electron wrapper), deployments/ (Helm/Kustomize/
Terraform/CI for cloud deploy), and monitoring/ (Prometheus + Grafana
stack) along with DESKTOP.md, DEPLOYMENT.md, docker-compose.full.yml,
their npm scripts, and every dangling reference across README,
ARCHITECTURE, INSTALL, SETUP, docs/, and the repeated per-file
MODULE_GUIDE "Observability" boilerplate comment. The GET /api/metrics
endpoint itself is untouched — it's the dashboard's own route, not
part of the removed monitoring stack.
Lets a lane's pipeline template be switched live from the dashboard
(the same PATCH /api/lanes/:id the CLI's `ccam lanes pipeline` uses),
so lanes created before the picker shipped don't need the terminal.
Both ship-feature skills now force their own template before their
first `ccam stage` call, so the human never has to pick correctly at
lane creation.
Verified against a real claude plugin uninstall: it only drops the plugin
from the enabled list. The server keeps running, the cached source stays on
disk, and the hook entries claude plugin install wrote into settings.json
are left behind pointing at the now-uninstalled cache dir — silently fails
once Claude Code eventually GCs it. The previous instructions ("uninstall
removes the hooks and the cached source") were untested assumptions; this
adds the missing settings.json cleanup step.
claude plugin install materializes the plugin's inline hooks into
~/.claude/settings.json itself, with \${CLAUDE_PLUGIN_ROOT} resolved to the
actual cache path — confirmed by installing the plugin for real and
inspecting the file. Those entries also contain "hook-handler.js", so
isOurEntry()'s plain substring match could not tell a legitimate
plugin-installed hook from a leftover npm run install-hooks entry: every
SessionStart would have stripped the plugin's own working hooks right back
out. isCheckoutHookEntry() only removes entries whose command does NOT
resolve under ~/.claude/plugins/cache/. plugin-doctor.js's duplicate-hook
count uses the same predicate.
resolveAllDashboardPorts() falls back to [DEFAULT_PORT] when the discovery
file has no live entry — a reasonable guess for the CLI/hook handler, but
wrong for the bootstrap's own liveness check: with no server running at all,
the bootstrap believed one was already up and never called startDashboard(),
confirmed against a real plugin install where the dashboard never started.
plugin-doctor.js's "Server" row had the same bug. Both now read the discovery
file directly and check PID liveness via the new liveServers() (livePids()
reused it instead of duplicating the read).
Claude Code's manifest schema requires repository as a URL string, not the
{type,url} object form — the marketplace install failed validation
("expected string, received object") the first time it was tried against a
freshly pushed marketplace.
Adds a root `ccam` plugin (`.claude-plugin/plugin.json`, `"source": "./"`) so
`/plugin marketplace add` + `/plugin install ccam@...` is enough on a machine
with nothing but Claude Code: no clone, no npm run setup, no manual npm start.
- scripts/plugin-bootstrap.js: SessionStart hook. Fast-path exit, Node >=22.5
gate (node:sqlite), mkdir lock with stale reclaim, deps installed into
~/.claude/agent-dashboard/runtime/ (never the plugin cache), legacy
checkout-hook cleanup (backed up), ~/.local/bin/ccam launcher, eager UI
build so client routes like /run work immediately, detached server spawn.
- scripts/plugin-open.js, scripts/plugin-doctor.js: /ccam-open, /ccam-doctor.
- server/index.js: DASHBOARD_CLIENT_DIST override (plugin cache is read-only).
- mcp/build/ is committed (plugin MCP servers start before any bootstrap could
build them) and kept honest by scripts/check-mcp-build.js (content hash,
not mtime), enforced by pre-commit when mcp/src changes.
- plugins/ccam-dashboard/.mcp.json moved under plugins/ccam/ with a working
${CLAUDE_PLUGIN_ROOT} path (the old relative path never resolved from a
marketplace-cached subdir).
- Docs: README, INSTALL, SETUP, ARCHITECTURE, CLAUDE.md, docs/PLUGINS.md,
docs/MCP.md, docs/CLI.md, docs/HOOKS.md.
🤖 Generated with [Claude Code](https://claude.com/claude-code)
Co-Authored-By: Claude <noreply@anthropic.com>
The two `upLane qc option` tests booted a real stack and then only released
the slot. `downLane` locates a service's pid file through the lane's slot
directory, so releasing the slot first orphaned the child with nothing left
able to reach it — one `python3 -m http.server` survived every run, holding
a port from a pool that is only ten wide. Thirteen had accumulated; the
eleventh run onwards fails with EPORTBUSY in whichever test boots next,
which reads as an unrelated flake.
Both tests now stop the stack before releasing the slot, and assert the port
went quiet — so a teardown that breaks again fails here rather than leaking
into the next run. A suite-level `after` covers the case a test throws
before its own teardown; it runs before SUITE_ROOT is removed, since the pid
files it needs live inside it.
`npm run build` runs `tsc -b` first and it has been failing: `api.ts` used
`NamedLock` without importing it, and four lane test fixtures predate
`Lane.active_feature_id` / the widened `LaneRuntime`, so spreading a
`Partial<Lane>` over them no longer satisfied the required fields.
Nothing shipped could be rebuilt while this was red, which is how a client
change reaches a dashboard running in production mode. The fixture fixes are
casts with a note, not type relaxations — the base literals still list every
required field, so the assertion states what they already prove.
Creation is the only point the UI could ever set a lane's template, and it
never offered the choice — so every lane added from "+ Add lane" was born
on `default` and rendered an 8-node map for a 16-node workflow, with no
screen able to change it afterwards. That is the defect that made the
ship-feature template unreachable from the browser.
The modal now shows a *Pipeline template* select fed by
`GET /api/lanes/pipelines`, labelled with each template's node count so the
consequence of the choice is visible. A failed fetch degrades to a `default`
option rather than blocking lane creation.
`pipeline` was already accepted by `POST /api/lanes` but silently dropped by
`/ensure` and `/worktree`, which build their own createLane payloads; both
now pass it through, and both map `EBADPIPELINE` to 400 like `EBADCWD`.
A lane's pipeline map only ever moved when a skill remembered to call
`ccam stage`, and the ship-feature template shipped with no detection rules
at all — so a lane driven by Superpowers skills sat at whatever stage it
last declared, and the `gates` node was never declared by anything.
Detection (`detect` rules on each node) now covers the Superpowers skill
invocations and the `ccam`/`gh` commands the ship-feature-lane skill
actually runs. It stays a safety net, not the mechanism: forward-only,
never `done`, never overriding a declaration. Two rules were deliberately
left out — `git diff` on `review` (this repo's own tests record it pinning
a lane at `review` on a real session) and anything on `merged`/`done`.
Stage vocabulary grows to 50 names over the same 16 nodes, following
Shipyard's PHASES shape: sub-states like `migration-collision`,
`e2e-scoped` and `gate-blocked` say WHY a lane sits on a node without the
map growing a node per reason. Every alias has a source — the skill
declares it, `default.json` uses it, or Shipyard's PHASES lists it.
Two silent failures fixed along the way:
- `lane.stages` is keyed by the raw declared string, so a stage declared
under an alias lost its `--evidence` and rendered amber instead of
green. `stageRecords` resolves each key onto its node.
- `ccam stage <typo>` stored fine and then rendered nowhere. It now warns
on stderr while still exiting 0.
`ccam lanes pipeline` closes the gap that made all of this invisible: a
lane could only be assigned a template at creation, and no screen in the
web UI offers the choice, so every lane added from "+ Add lane" was stuck
on `default`'s 8 nodes. An unknown template id is now refused rather than
silently falling back to `default` on read.
Also merges the repo's own `ship-feature` skill into the Superpowers
workflow: it delegates planning/TDD/review/verification instead of
restating them, and declares a stage at each phase.
The two-way segment used a translucent accent wash for the active state,
which at this size read as a hover tint rather than a selection. Solid
accent plus a shadow makes the choice unambiguous, and `flex-1` stops the
two segments from sizing to their label text.
The lockfile still carried `MIT` and a `funding` URL pointing at an
unrelated sponsors page, both left over from the template this project was
scaffolded from. package.json declares `UNLICENSED` and no funding.
action.start/stop/clear/forget/purge/remove/reset in lanes.json (vi)
were lowercase (bắt đầu, dừng...) while every other button label in the
app capitalizes its first letter. Also gitignore /.ccam/ - the local
lane profile that appears in a repo's own working tree only when that
repo is adopted as its own lane (machine-specific runtime config, not
source).
- Repo mode adopts a directory as-is via /lanes/ensure (no worktree, no
branch fields) - the right choice for a main repo you want stage
detection on. Worktree mode (default) keeps the existing provisioning
flow but now requires a manually-typed branch name instead of deriving
one from the title.
- POST /lanes/worktree accepts an optional `branch`, validated via
`git check-ref-format --branch`; omitting it preserves the CLI's
existing auto-derived-branch behavior.
- New GET /lanes/browse lists a directory's immediate subdirectories,
backing a small folder-browse modal on both path fields - browsers
cannot expose an absolute path from a native picker, so this is
server-backed instead, consistent with the tool's local-first model.
Adopting the main repo as its own lane now gets stage detection
(cwd matches, same as any other lane), and its card lists every
managed-worktree lane provisioned from it with a jump-to link.
Also add the two missing Skill-tool detect rules (implement, ship)
so detection covers all four Superpowers workflow phases, not just
plan/review.
POST /worktree answers with 202 before the background git worktree
add finishes, so profileInit/agentsInstall/mcpSync were racing the
lane's own directory into existence and mostly failing. Poll
GET /api/lanes/:id until provisioning leaves "provisioning" first.
The 3s auto-close timer closed before a user reasonably had time to
look at the setup results, making the feature appear to do nothing.
Require an explicit dismiss (Cancel/X) instead.
The three setup calls (profile/agents/mcp) fired after worktree
creation but their outcome was only logged to the console. Keep the
modal open with a ✓/✗ summary for a few seconds (or until dismissed)
so the user actually sees what happened, matching the original F5 design.
3 tasks: POST /:id/profile/init route (wraps already-built
lane-detect.js), AddLaneModal.tsx wiring (Promise.allSettled over
profile-init + agents-install + mcp-sync, none blocking lane creation
or each other) + client API method + tests, and docs.
One click instead of four: after AddLaneModal creates a worktree lane,
fire profile-init + agents-install + mcp-sync in parallel
(Promise.allSettled, best-effort — none of the three blocks lane
creation or each other). Needs one new route (POST
/:id/profile/init, wrapping already-built lane-detect.js) since
profile-init was CLI-only until now.
LaneCard gets agents-install/mcp-sync buttons, integration status
badges, and a sync-base --check button (read-only preflight only — no
merge button, that stays a session/skill action). Settings gets
skills-install and housekeeping (gc) buttons, machine-wide. Two new
routes needed (POST /api/skills/install, POST /api/lanes/gc) since
those two primitives were CLI-only until now.
Ports the two pieces of Shipyard's lane-gc.sh that match CCAM's actual
architecture: kill Playwright MCP processes reparented to pid 1 (owning
session died), cap hook logs over 10MB back to their last 2MB in place.
Drops auto-removing stale worktrees by age (conflicts with the
never-automatic-destroy rule), state archiving, and scratch-debris
sweep (different storage architecture / files CCAM doesn't generate) —
see docs/superpowers/specs/2026-08-05-lane-gc-design.md.
Scopes lane-gc.sh down to the two pieces that match CCAM's actual
architecture (orphan Playwright MCP reap, oversized-log capping).
Drops auto-removing stale worktrees by age — that's exactly the kind
of automatic destructive action this repo's own CLAUDE.md forbids
(destroy always goes through the three-check guard, never automatic).
State archiving and scratch-debris sweep don't apply either (different
storage architecture; CCAM doesn't generate those files).
Copies .claude/skills/ship-feature-lane/ into ~/.claude/skills/, so
/ship-feature-lane is discoverable from a session running inside any
lane's own working directory — not just inside this repo, which is
where it lived until now (Claude Code only auto-discovers .claude/
directories from the repo that owns them). Pure filesystem action,
same self-location REPO_ROOT already gives lanes profile init.
Found auditing E1-F3a for Shipyard parity: .claude/skills/ship-feature-lane/
only exists inside ccam-lanes' own repo, never installed globally, so
/ship-feature-lane is unreachable from its actual intended invocation
context (a session inside some OTHER lane's repo). Shipyard's own
install-claude-assets.sh solves this for its bundled skills the same way.