| name | create-kandev-plugin |
| description | Create, modify, debug, test, package, or publish a Kandev runtime plugin in its dedicated repository. Use only when the requested work targets a Kandev plugin implementation or its release and marketplace lifecycle, including fixing a bug in an existing plugin. Do not use for agent skills, MCP servers, general integrations, or Kandev host, SDK, loader, and registry changes that do not also change a plugin. |
Create Kandev Plugin
Build Kandev runtime plugins from the official template and current public
contracts. Keep plugin source outside the Kandev monorepo and prove the packaged
artifact against a disposable development instance before publishing it.
Start with the canonical plugin authoring guide.
Use this skill for the repository workflow after choosing a recipe there:
choose recipe → edit manifest → implement → validate → package → smoke test.
The guide owns the complete hook/Host matrix; this skill keeps the repository
and verification procedure concise.
Establish The Boundary
- Invoke this skill only when the user intends to create, change, fix, test,
package, release, or submit a Kandev runtime plugin. A passing mention of
plugins, a generic extension request, or the presence of plugin host code in
the Kandev monorepo is not sufficient.
- Confirm the artifact: a Kandev runtime plugin ships a
manifest.yaml, a
platform executable built with the Go pluginsdk, and optionally a native
UI bundle. Agent instruction packages, MCP servers, and other products that
also use the word "plugin" are outside this skill.
- Classify the work as a new plugin, an existing plugin change, a Kandev host
or SDK dependency required by the plugin, or a marketplace-only change.
- Keep each production plugin in one dedicated repository. For an official
plugin, use a public
kdlbs/kandev-plugin-<slug> repository. For a community
plugin, use the author's public repository. Do not add a production plugin
implementation to kdlbs/kandev; the in-tree plugin fixture is test support,
not a starter location.
- Keep host API, SDK, registry runtime, and plugin-loader changes in the Kandev
repository. If the plugin needs a missing host capability, treat that as a
separate Kandev change with its own tests and compatibility review.
Resolve The Owning Repository
Resolve the plugin repository before editing, especially for bug reports:
- Start with repository information in the request, issue, pull request, or
current task. Otherwise match the manifest
id and repo_url against the
official catalog entry or the installed plugin metadata. Do not infer that a
similarly named fixture or host package in kdlbs/kandev owns the bug.
- Check the repositories already materialized for the current task and locate
the worktree whose manifest id matches the target plugin.
- When running as a Kandev task and the repository is not attached, discover
and call
add_branch_to_task_kandev with exactly one of repository_url,
repository_id, or local_path. It defaults to the current task and can
find or add a repository to the workspace, then materialize its branch as a
separate worktree.
add_branch_to_task_kandev only works with the Worktree executor. For other
executors, or when the task tool is unavailable, ask to attach the repository
or create a related task that explicitly targets it. Do not clone a nested
repository inside the Kandev monorepo worktree.
- Change the working directory to the plugin worktree and read its local agent
instructions, manifest, build files, tests, and release workflow. For a bug,
reproduce and fix the behavior there with
/fix and /tdd, then retain this
skill's artifact verification. If the fix also needs a Kandev host or SDK
change, keep the two repository deliverables and verification steps explicit.
Understand The Runtime Model
Treat a plugin as two independently loaded surfaces joined by the manifest:
package tarball -> validate + extract -> supervised plugin executable <-> Host gRPC
|-------> static UI bundle -> browser plugin registry
Kandev event bus -> bounded per-plugin delivery queue -> OnEvent
external or UI request -> declared webhook route -> HandleWebhook
- Kandev owns the executable lifecycle. It starts the declared host-platform
binary with the install directory as its working directory, injects a fresh
Host connection on every start, and supervises crashes and failed health
checks. Do not launch a second long-running server from the plugin.
KANDEV_PLUGIN_DATA_DIR is the plugin-owned durable file directory. It
survives restarts and version upgrades and is deleted on uninstall. Host
state is the better fit for small JSON objects that should participate in
Kandev backups.
- Install attempts to activate the plugin immediately. Disable preserves its
config, state, secrets, versions, and data; uninstall removes them. A config
update restarts an active plugin, so load configuration during startup.
- The UI bundle is served from the extracted package and does not pass through
the plugin process. Its
initialize and optional destroy hooks may run
repeatedly as a plugin is disabled and re-enabled in the same browser tab.
- Capabilities gate Host API methods; they are not an operating-system or
browser sandbox. The plugin executable inherits Kandev's process environment,
and the UI runs as same-origin JavaScript with host store access. Treat
installation as privileged code execution and hold official plugins to
dependency, credential, and data-access review.
Choose the narrowest surface that satisfies the behavior:
| Need | Surface | Contract to design for |
|---|
| React to Kandev activity | OnEvent | Retryable best-effort delivery, bounded in-memory queues, and possible loss require idempotency and reconciliation for critical workflows. |
| Receive an external call or relay a UI request | HandleWebhook | Only declared keys are routed; validate method, authentication, and provider signatures inside the plugin. |
| Store small structured data | Host state | Values are JSON objects keyed by scope and key; there is no transaction or compare-and-swap API. |
| Store files or use a plugin-managed database | KANDEV_PLUGIN_DATA_DIR | The plugin owns schema, locking, migrations, and recovery. |
| Read Kandev entities | Typed Host readers plus api_read | Use opaque pagination cursors and stable SDK DTOs; never query Kandev's database or internal HTTP API. |
| Mutate Kandev entities | Typed Host writers | api_write:tasks gates Tasks().Create/Update; api_write:messages gates Messages().Send. A missing mutation requires a separate Host API change. |
| Notify another plugin | Host.EmitEvent | Events are published as plugin.<id>.<name>; keep names and payloads versionable. |
| Add native interface | UI registry and host.ui | Use host-owned React and components so themes, contexts, portals, and mobile behavior remain compatible. |
Read The Current Contracts
Read these sources before designing the plugin:
docs/public/plugins-authoring.md for the supported backend, Host API,
native UI, recipes, packaging, install, and iteration workflow.
docs/public/plugins-manifest.md for the authoritative manifest fields,
capability gates, and event vocabulary.
docs/public/plugins-marketplace.md when publishing or updating a catalog
entry.
- The current
kdlbs/kandev-plugin-template repository, including its
README.md, Makefile, tests, and release workflow.
Prefer the public authoring docs and current template over old examples. The
frontend contract pair is docs/plans/plugins/PLUGIN-API.md plus
apps/web/lib/plugins/types.ts; concrete UI exports are in
apps/web/lib/plugins/host-api.ts. The backend contract is
apps/backend/pkg/pluginsdk plus apps/backend/proto/kandev/plugin/v1/plugin.proto.
Read docs/plans/plugins/GRPC-CONTRACT.md when changing the wire contract or
when the public docs do not answer a low-level compatibility question.
The frontend and backend matrices in docs/public/plugins-authoring.md,
together with apps/web/lib/plugins/types.ts and apps/backend/pkg/pluginsdk,
are the authoritative record of what exists today. Read them rather than
asserting from memory that a hook is missing, and do not publish a signature
they do not declare.
When debugging a contract discrepancy, verify it at the implementation
boundary: manifest and package rules live under
apps/backend/internal/plugins/manifest and pkgtar; runtime, Host, webhook,
and delivery behavior live under apps/backend/internal/plugins; native UI
loading and registration live under apps/web/lib/plugins.
When Adding Or Changing A Hook
Treat a new hook, Host method, capability, manifest field, or mounted UI slot as
a contract change. Do not implement the runtime surface and leave author docs
for later. In the same change:
- Update the implementation boundary and its focused tests.
- Update the authoritative contract source:
- frontend:
docs/plans/plugins/PLUGIN-API.md plus
apps/web/lib/plugins/types.ts; update host-api.ts, registry.ts, or
the mounted component when the concrete surface changes;
- backend:
apps/backend/pkg/pluginsdk,
apps/backend/proto/kandev/plugin/v1/plugin.proto, and the manifest model
or validator when applicable; update docs/plans/plugins/GRPC-CONTRACT.md
for wire-level changes.
- Update
docs/public/plugins-authoring.md in the same change: add the hook to
the frontend or backend matrix, document inputs/props, capability and
lifecycle/cleanup behavior, and add a copy-pasteable recipe or maintained
fixture link. Adding the row to the matrix is the update — do not introduce
a separate "unavailable" list anywhere.
- Update
docs/public/plugins-manifest.md for capability/manifest changes and
update docs/public/plugins.md, docs/plugins-example.md, or the relevant
ADR when their claims or links change. Keep the public guide as a summary;
never create a second schema or type definition in prose.
- Recheck the root/backend/web
AGENTS.md authority pointers and this skill if
the source-of-truth locations or author workflow changed.
- Run the focused implementation tests plus
node --test scripts/validate-public-docs.test.mjs,
node scripts/validate-public-docs.mjs, and a stale-reference search. Report
the exact commands and results.
A hook absent from the relevant frontend/backend matrix and its corresponding
authoritative contract source does not exist yet; point the author at the
nearest supported recipe instead of publishing a speculative signature, and
do not record the gap as a durable list entry in this skill or an
AGENTS.md — the matrix and the contract sources are the only place
absence or presence is tracked. If the hook is implemented but the
matrix, recipe, fixture, or authoritative contract is missing, the plugin
change is not documentation complete.
Create A New Repository
Skip this section for changes to an existing plugin after resolving its owning
repository above.
- Derive a lowercase plugin id and repository name. For an official plugin,
use the full
kandev-plugin-<slug> value for both. Keep the manifest id,
Go module, Makefile binary and package names, UI registration id, release
asset name, and catalog id synchronized as the template documents.
- Create the repository from
kdlbs/kandev-plugin-template; do not hand-roll
files that the template already maintains.
- For official plugins, create or target
kdlbs/kandev-plugin-<slug> and set
repo_url to that public repository. Do not publish to the organization or
mutate repository settings unless the user requested that external action.
- Inspect repository-local instructions before editing. Replace template
identity and example behavior without deleting its packaging, test, or
release safeguards.
- Materialize the plugin as a sibling of the Kandev checkout, or update the
template's
go.mod replacement deliberately. Until the SDK is a standalone
module, the default replace resolves ../kandev/apps/backend.
If the requested repository does not exist and cannot be created with the
available GitHub tooling, stop after producing a precise repository bootstrap
request. Do not silently substitute a directory in the Kandev monorepo.
Implement With Least Privilege
- Write concrete behavior examples and failure cases before implementation.
Use
/tdd for backend and manifest logic.
- Declare only the capabilities the plugin exercises. Treat
api_read,
state, secrets, event subscriptions, and webhooks as permission
boundaries rather than descriptive metadata.
- Embed
pluginsdk.UnimplementedPlugin, override only required methods, and
access Kandev through the injected Host API. The Host can be unavailable
during construction and isolated tests, so resolve it when handling work.
Honor context cancellation and do not reach into Kandev internal packages,
its database, or undocumented REST endpoints.
- Make event handling idempotent by
EventID. Kandev makes one attempt plus
three retries after 5s, 15s, and 45s, using the same event id. Delivery is
sequential per plugin, but its queue and error-state buffer are bounded and
in memory; backend restarts and sustained overload can lose events. Add a
source-of-truth reconciliation path when missing an event is unacceptable.
- Keep operator credentials in
config_schema secret fields or the Host
secret APIs. GetConfig returns the plugin's own secret values in cleartext,
so never commit real credentials or log complete config objects.
- For a UI bundle, use
host.jsx, host.ui, host.store, and
host.api.fetch as documented. Do not bundle another React or Radix runtime.
Make initialize repeatable and use destroy to remove timers,
subscriptions, and side effects; Kandev revokes registered routes, slots,
handlers, styles, and navigation separately. Use /mobile-parity for
interaction design and /e2e for user-visible flows.
- Treat webhook routes as public ingress. Follow
docs/public/plugins-authoring.md for the current body-size and route
limits. Kandev rejects undeclared keys, but it does not authenticate callers
or enforce the manifest's informational method field. Validate both before
side effects, return status codes from 100 through 599, and avoid reflecting
unsafe headers or bodies.
- Keep package paths and platform declarations synchronized. Build every
executable declared in
runtime.executables; include .exe for Windows.
Verify The Artifact
Run the plugin repository's own formatting, tests, and lint commands first,
then verify the artifact rather than only the source tree:
- Run the plugin repository's tests, vet/lint, and build. Build a host-only
package with the template's
make package-host target for the local loop.
- Confirm the archive contains
manifest.yaml, the current host executable,
optional UI assets, and the generated internal checksums.txt. Never author
the internal checksum file by hand.
- Install the archive into a disposable dev Kandev instance, enable it, and
exercise every declared capability. Cover config validation, permission
failures, lifecycle restart, events or webhooks, and native UI registration
as applicable.
- Exercise the failure guarantees that matter to this plugin: duplicate event
delivery, handler cancellation, missing or invalid webhook authentication,
unavailable dependencies, denied Host calls, and corrupt state. For native
UI, run initialize/destroy twice and verify one plugin's initialization
failure does not break the host or another plugin.
- Verify an upgrade preserves Host state and the data directory when the
plugin owns either. Verify disable preserves operator data and uninstall
removes it when lifecycle behavior is part of the change.
- Bump the manifest version or uninstall the existing version before
reinstalling; Kandev rejects reinstalling the same id and version.
- Before release, run the repository's full cross-platform package workflow
and confirm its release asset name is
<id>-<version>.tar.gz.
There is no standalone exhaustive package checker in this branch. plugin-pack
stages files and generates checksums; install-time pkgtar.Install validates the
manifest, archive safety, checksums, managed runtime, and host executable. These
checks do not execute plugin code or prove browser/module behavior, so the
disposable-instance smoke test remains required.
Do not test with a developer's primary instance, database, or credentials.
Report commands run, artifact name, host platform tested, and any platform or
integration path not exercised.
Publish When Requested
- Keep source public before submitting an official marketplace entry.
- Tag the version through the repository's release workflow. Confirm the
GitHub Release contains the required plugin tarball; the release-level
tarball digest file is optional under the current marketplace contract.
- For the official catalog, add the repository pointer to
plugin-registry/plugins.yaml in kdlbs/kandev only after a valid latest
release exists. Keep catalog id equal to manifest id; leave featured
to maintainers.
- Verify the registry build resolves the latest release and package asset.
Catalog categories are free-form discovery tags and are distinct from the
manifest category enum.
- For an official plugin, review dependencies, release provenance, requested
capabilities, filesystem and network use, secret handling, and UI store
access. Internal package checksums detect corruption but do not prove
provenance; release-level digests are advisory and signature verification is
not wired by default in the shipped product.
Publishing, tagging, creating organization repositories, and marketplace
submission are external side effects. Perform only the actions the user asked
for, while completing local implementation and verification independently.