acme mode fully replaced the internal-CA path (which required installing a private
CA on every device — the exact pain, esp. on Android, that acme avoids). Remove
`internal` entirely and simplify how services declare host routes.
- Generator (caddyfile.py): drop the `tls internal` branch — modes are now
`off` | `acme`. In acme mode the published subdomain is the **first DNS label**
of `proxy.caddy.host` (a bare `claw`, or a legacy `claw.civil.lan`, both →
`claw.<domain>`), so services stay domain-agnostic and the declared value is
authoritative again (no more silent service-name override). Shared
`_host_matcher_block` reused by off-mode and the acme wildcard site.
- castle-api: delete `GET /gateway/ca.crt`, `_gateway_ca_pem`, `_ca_fingerprint`
and the now-unused imports; drop `ca_fingerprint` from `GatewayInfo` (keep
`tls`).
- Dashboard: remove the CA-cert download button + unused imports; drop
`ca_fingerprint` from the `GatewayInfo` type.
- Tests: replace TestCaddyfileTlsInternal with an off-mode class (keeps the
runner-agnostic host-route coverage); acme tests assert first-label derivation
incl. label-wins-over-service-name; drop the castle-api CA-endpoint test.
- Docs: registry.md + dns-and-tls.md — two-mode tables (off|acme), remove the
internal sections/CA-download, document the bare-label host convention; note a
domain-less node stays on `off`.
When the gateway serves internal-CA HTTPS (gateway.tls=internal), other devices
must trust Caddy's root CA to accept *.lan HTTPS. Surface that from the dashboard
instead of hand-copying root.crt around.
- API: GET /gateway/ca.crt returns the public root cert (PEM) as a download,
sourced from Caddy's admin API (/pki/ca/local — matches the running gateway)
with an on-disk root.crt fallback. 404 unless tls=internal. GatewayInfo gains
`tls` and `ca_fingerprint` (SHA-256, for out-of-band verification). The CA
private key is never exposed — only the public root.
- UI: a "CA cert" button in the Gateway panel, shown only when tls=internal,
linking to the download with the fingerprint in its tooltip.
- Tests for the tls=off defaults and the 404-without-internal-tls path; docs note
the button + endpoint.
Sort routes by address in GET /gateway and 'castle gateway status' (so the
dashboard + CLI tables read alphabetically). The Caddyfile keeps its
precedence-sensitive order — only the display is sorted.
The gateway does two things — reverse-proxy services and serve static
frontends — but the dashboard/API route table only ever showed the proxy
routes, so 'serving a frontend' and 'proxying a service' looked like unrelated
features and castle-app/power-graph-app were invisible in the route view.
Now there's one concept: a route maps an address (path '/foo' or host 'foo.lan')
to a target of one kind — static (a built dist served by file_server), proxy
(a local service port), or remote (a service on another node).
- core: caddyfile.py gains compute_routes() — the single source of truth for
the route list; generate_caddyfile_from_registry renders it (output byte-for-
byte identical, verified against the live Caddyfile). Adds a GatewayRoute
dataclass.
- api: GatewayRoute model → {address, kind, target, name, node}; GET /gateway
builds from compute_routes (incl. config for static frontends + mesh for
remote), so the table matches what Caddy actually does.
- app: Gateway panel shows Address · Kind · Target for every route (static
frontends + host routes now appear); program detail shows 'Reachable at
/foo/ · served (static)' for static frontends.
- cli: 'castle gateway status' prints the full route table.
- docs: registry.md/design.md/CLAUDE.md describe routes as one concept with
three target kinds.
core 94 / cli 24 / api 52 green; ruff + app build clean; Caddyfile unchanged.
The config editor read service/job detail 'manifest' as the castle.yaml spec
but the endpoint returned the flat *runtime registry* shape for deployed
entries — so service fields (port/health/proxy) never prefilled and a save
would 422/corrupt. Detail 'manifest' is now always the editable castle.yaml
ServiceSpec/JobSpec when the entry is declared there; the flat registry shape
is a display-only fallback for entries that exist only at runtime.
Also:
- ServiceSummary/JobSummary gain run_target (what it runs) + program ref;
ServiceSummary gains proxy_host.
- ProgramSummary gains services[]/jobs[] — the deployments referencing a
program (a program → 0-N services/jobs), for linking + create prefill.
- App types updated to match; deleted orphaned DeploymentEditor/AddDeployment
(leftovers from the removed ConfigEditor).
Verified live: service manifest nested (expose.http.internal.port, proxy.caddy
.host prefill), run_target=lakehoused, program lakehouse → services:[lakehouse].
api 52 green; ruff + app build clean.
Convergent deploy (prefix-based prune): castle deploy now removes orphaned
castle-* systemd units/timers no longer in the registry. Full deploy only;
partial (--name) deploys preserve siblings. Fixes the orphaned-timer / stale-
path drift class.
Container runner: derive --name from the service name (castle-<name>) instead
of the image name; skip the <PREFIX>_DATA_DIR env injection for containers
(avoids colliding with image env namespaces like NEO4J_*).
Unified active lifecycle (core/lifecycle.py): install/uninstall keep their
names but become activate/deactivate, dispatching by behavior — tool→PATH,
daemon/self-serving-frontend/job→systemd, static frontend→served. is_active
reports a uniform state (PATH-independent for tools). The CLI install/uninstall
and service enable/disable route through the extracted core.
API + dashboard: surface a uniform `active` state on programs alongside
`installed`; ProgramDetail shows active/inactive.
Tests: test_deploy_prune (6), test_lifecycle (5). 168 tests pass; lint clean.
Eliminates inconsistency where tools had their own filtered view but daemons and frontends didn't.
Changes:
- API: Removed tools router and ToolSummary/ToolDetail models. Added optional behavior query parameter to GET /programs for filtering by program type (tool, daemon, frontend).
- Frontend: Updated hooks to pass behavior param to usePrograms instead of separate useTools. Updated components to use ProgramSummary type. Removed useToolDetail hook.
- Docs: Updated API documentation to reflect program behavior filtering.
Move all instance state into ~/.castle/ with clear separation:
- code/ — user project source (was components/)
- artifacts/ — generated specs, built content (was generated/, static/)
- data/ — service runtime data (was /data/castle/)
- secrets/ — credentials
castle.yaml moves to ~/.castle/castle.yaml as the canonical location.
Source paths use repo: prefix for git repo programs (castle-api, app)
and relative paths for user projects (code/central-context).
Add idempotent install.sh for bootstrapping infrastructure (Docker,
Caddy, MQTT, Postgres, Neo4j) with interactive service detection.
Remove components/ from repo (now in ~/.castle/code/), deinit
submodules, remove .gitmodules.
- Updated the terminology from "components" to "programs" across the codebase, including in config loading, saving, and manifest specifications.
- Introduced a new `stacks.py` file to handle lifecycle actions for development stacks, implementing handlers for Python and React Vite stacks.
- Adjusted tests to reflect the new program structure and ensure proper functionality.
- Revised documentation to align with the new terminology and structure, ensuring clarity on the purpose and configuration of programs, services, and jobs.
feat: implement HealthBadge and RoleBadge components for displaying health status and roles
feat: create LogViewer component for streaming logs of services
feat: develop SecretsEditor for managing secrets with CRUD operations
feat: introduce ToolCard component for displaying tool information
style: add global CSS variables and styles for consistent theming
feat: set up API client for handling requests to the backend
feat: implement hooks for fetching components, statuses, and tools
feat: create routes for dashboard, component details, and tools
feat: add service management endpoints for starting, stopping, and restarting services
feat: implement event bus for handling real-time updates via SSE
feat: create health check and logs endpoints for monitoring services
feat: add tests for health and tools endpoints to ensure functionality
chore: update project configuration files and dependencies for better development experience